diff options
author | Ian Lance Taylor <ian@gcc.gnu.org> | 2010-12-03 04:34:57 +0000 |
---|---|---|
committer | Ian Lance Taylor <ian@gcc.gnu.org> | 2010-12-03 04:34:57 +0000 |
commit | 7a9389330e91acc3ed05deac2d198af25d13cf3c (patch) | |
tree | 38fe54a4f38ede5d949c915d66191f24a6fe5153 /gcc | |
parent | 1aa6700378e5188a853c018256113ce6e1fb5c05 (diff) | |
download | gcc-7a9389330e91acc3ed05deac2d198af25d13cf3c.zip gcc-7a9389330e91acc3ed05deac2d198af25d13cf3c.tar.gz gcc-7a9389330e91acc3ed05deac2d198af25d13cf3c.tar.bz2 |
Add Go frontend, libgo library, and Go testsuite.
gcc/:
* gcc.c (default_compilers): Add entry for ".go".
* common.opt: Add -static-libgo as a driver option.
* doc/install.texi (Configuration): Mention libgo as an option for
--enable-shared. Mention go as an option for --enable-languages.
* doc/invoke.texi (Overall Options): Mention .go as a file name
suffix. Mention go as a -x option.
* doc/frontends.texi (G++ and GCC): Mention Go as a supported
language.
* doc/sourcebuild.texi (Top Level): Mention libgo.
* doc/standards.texi (Standards): Add section on Go language.
Move references for other languages into their own section.
* doc/contrib.texi (Contributors): Mention that I contributed the
Go frontend.
gcc/testsuite/:
* lib/go.exp: New file.
* lib/go-dg.exp: New file.
* lib/go-torture.exp: New file.
* lib/target-supports.exp (check_compile): Match // Go.
From-SVN: r167407
Diffstat (limited to 'gcc')
672 files changed, 114484 insertions, 12 deletions
diff --git a/gcc/ChangeLog b/gcc/ChangeLog index fde41c8..0c23273 100644 --- a/gcc/ChangeLog +++ b/gcc/ChangeLog @@ -1,3 +1,19 @@ +2010-12-02 Ian Lance Taylor <iant@google.com> + + * gcc.c (default_compilers): Add entry for ".go". + * common.opt: Add -static-libgo as a driver option. + * doc/install.texi (Configuration): Mention libgo as an option for + --enable-shared. Mention go as an option for --enable-languages. + * doc/invoke.texi (Overall Options): Mention .go as a file name + suffix. Mention go as a -x option. + * doc/frontends.texi (G++ and GCC): Mention Go as a supported + language. + * doc/sourcebuild.texi (Top Level): Mention libgo. + * doc/standards.texi (Standards): Add section on Go language. + Move references for other languages into their own section. + * doc/contrib.texi (Contributors): Mention that I contributed the + Go frontend. + 2010-12-03 Laurynas Biveinis <laurynas.biveinis@gmail.com> * tree.h (struct call_expr_arg_iterator_d): Remove GTY tag. diff --git a/gcc/common.opt b/gcc/common.opt index c21c676..25e516e 100644 --- a/gcc/common.opt +++ b/gcc/common.opt @@ -2272,6 +2272,10 @@ Driver static-libstdc++ Driver +static-libgo +Driver +; Documented for Go, but always accepted by driver. + symbolic Driver diff --git a/gcc/doc/contrib.texi b/gcc/doc/contrib.texi index aae1146..e52dcf9 100644 --- a/gcc/doc/contrib.texi +++ b/gcc/doc/contrib.texi @@ -900,8 +900,8 @@ Jeff Sturm for Java porting help, bug fixes, and encouragement. Shigeya Suzuki for this fixes for the bsdi platforms. @item -Ian Lance Taylor for his mips16 work, general configury hacking, -fixincludes, etc. +Ian Lance Taylor for the Go frontend, the initial mips16 and mips64 +support, general configury hacking, fixincludes, etc. @item Holger Teutsch provided the support for the Clipper CPU@. diff --git a/gcc/doc/frontends.texi b/gcc/doc/frontends.texi index 9c2d707..625e26d 100644 --- a/gcc/doc/frontends.texi +++ b/gcc/doc/frontends.texi @@ -11,13 +11,14 @@ @cindex GNU C Compiler @cindex Ada @cindex Fortran +@cindex Go @cindex Java @cindex Objective-C @cindex Objective-C++ GCC stands for ``GNU Compiler Collection''. GCC is an integrated distribution of compilers for several major programming languages. These languages currently include C, C++, Objective-C, Objective-C++, Java, -Fortran, and Ada. +Fortran, Ada, and Go. The abbreviation @dfn{GCC} has multiple meanings in common use. The current official meaning is ``GNU Compiler Collection'', which refers diff --git a/gcc/doc/install.texi b/gcc/doc/install.texi index 5bdd35b..fbb2d4c 100644 --- a/gcc/doc/install.texi +++ b/gcc/doc/install.texi @@ -884,7 +884,7 @@ only for the listed packages. For other packages, only static libraries will be built. Package names currently recognized in the GCC tree are @samp{libgcc} (also known as @samp{gcc}), @samp{libstdc++} (not @samp{libstdc++-v3}), @samp{libffi}, @samp{zlib}, @samp{boehm-gc}, -@samp{ada}, @samp{libada}, @samp{libjava} and @samp{libobjc}. +@samp{ada}, @samp{libada}, @samp{libjava}, @samp{libgo}, and @samp{libobjc}. Note @samp{libiberty} does not support shared libraries at all. Use @option{--disable-shared} to build only static libraries. Note that @@ -1305,15 +1305,12 @@ their runtime libraries should be built. For a list of valid values for grep language= */config-lang.in @end smallexample Currently, you can use any of the following: -@code{all}, @code{ada}, @code{c}, @code{c++}, @code{fortran}, @code{java}, -@code{objc}, @code{obj-c++}. +@code{all}, @code{ada}, @code{c}, @code{c++}, @code{fortran}, +@code{go}, @code{java}, @code{objc}, @code{obj-c++}. Building the Ada compiler has special requirements, see below. If you do not pass this flag, or specify the option @code{all}, then all default languages available in the @file{gcc} sub-tree will be configured. -Ada and Objective-C++ are not default languages; the rest are. -Re-defining @code{LANGUAGES} when calling @samp{make} @strong{does not} -work anymore, as those language sub-directories might not have been -configured! +Ada, Go and Objective-C++ are not default languages; the rest are. @item --enable-stage1-languages=@var{lang1},@var{lang2},@dots{} Specify that a particular subset of compilers and their runtime diff --git a/gcc/doc/invoke.texi b/gcc/doc/invoke.texi index 94e8160..7c80415 100644 --- a/gcc/doc/invoke.texi +++ b/gcc/doc/invoke.texi @@ -1070,6 +1070,9 @@ Free form Fortran source code which should not be preprocessed. Free form Fortran source code which must be preprocessed (with the traditional preprocessor). +@item @var{file}.go +Go source code. + @c FIXME: Descriptions of Java file types. @c @var{file}.java @c @var{file}.class @@ -1123,6 +1126,7 @@ objective-c++ objective-c++-header objective-c++-cpp-output assembler assembler-with-cpp ada f77 f77-cpp-input f95 f95-cpp-input +go java @end smallexample diff --git a/gcc/doc/sourcebuild.texi b/gcc/doc/sourcebuild.texi index 239536c..012e680 100644 --- a/gcc/doc/sourcebuild.texi +++ b/gcc/doc/sourcebuild.texi @@ -81,6 +81,10 @@ The GCC runtime library. @item libgfortran The Fortran runtime library. +@item libgo +The Go runtime library. The bulk of this library is mirrored from the +@uref{http://code.google.com/@/p/@/go, master Go repository}. + @item libgomp The GNU OpenMP runtime library. diff --git a/gcc/doc/standards.texi b/gcc/doc/standards.texi index 59fbf03..90ddd47 100644 --- a/gcc/doc/standards.texi +++ b/gcc/doc/standards.texi @@ -271,6 +271,18 @@ The authoritative manual on Objective-C 2.0 is available from Apple: For more information concerning the history of Objective-C that is available online, see @uref{http://gcc.gnu.org/readings.html} +@section Go language + +The Go language continues to evolve as of this writing; see the +@uref{http://golang.org/@/doc/@/go_spec.html, current language +specifications}. At present there are no specific versions of Go, and +there is no way to describe the language supported by GCC in terms of +a specific version. In general GCC tracks the evolving specification +closely, and any given release will support the language as of the +date that the release was frozen. + +@section References for other languages + @xref{Top, GNAT Reference Manual, About This Guide, gnat_rm, GNAT Reference Manual}, for information on standard conformance and compatibility of the Ada compiler. @@ -896,6 +896,7 @@ static const struct compiler default_compilers[] = {".p", "#Pascal", 0, 0, 0}, {".pas", "#Pascal", 0, 0, 0}, {".java", "#Java", 0, 0, 0}, {".class", "#Java", 0, 0, 0}, {".zip", "#Java", 0, 0, 0}, {".jar", "#Java", 0, 0, 0}, + {".go", "#Go", 0, 1, 0}, /* Next come the entries for C. */ {".c", "@c", 0, 0, 1}, {"@c", diff --git a/gcc/go/Make-lang.in b/gcc/go/Make-lang.in new file mode 100644 index 0000000..971490c --- /dev/null +++ b/gcc/go/Make-lang.in @@ -0,0 +1,267 @@ +# Make-lang.in -- Top level -*- makefile -*- fragment for gcc Go frontend. + +# Copyright (C) 2009, 2010 Free Software Foundation, Inc. + +# This file is part of GCC. + +# GCC is free software; you can redistribute it and/or modify +# it under the terms of the GNU General Public License as published by +# the Free Software Foundation; either version 3, or (at your option) +# any later version. + +# GCC is distributed in the hope that it will be useful, +# but WITHOUT ANY WARRANTY; without even the implied warranty of +# MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the +# GNU General Public License for more details. + +# You should have received a copy of the GNU General Public License +# along with GCC; see the file COPYING3. If not see +# <http://www.gnu.org/licenses/>. + +# This file provides the language dependent support in the main Makefile. + +# Installation name. + +GCCGO_INSTALL_NAME := $(shell echo gccgo|sed '$(program_transform_name)') +GCCGO_TARGET_INSTALL_NAME := $(target_noncanonical)-$(shell echo gccgo|sed '$(program_transform_name)') + +# The name for selecting go in LANGUAGES. +go: go1$(exeext) + +.PHONY: go + +gospec.o: $(srcdir)/go/gospec.c $(SYSTEM_H) coretypes.h $(TM_H) $(GCC_H) \ + $(CONFIG_H) opts.h + (SHLIB_LINK='$(SHLIB_LINK)'; \ + $(COMPILER) -c $(ALL_COMPILERFLAGS) $(ALL_CPPFLAGS) $(DRIVER_DEFINES) \ + $(INCLUDES) $(srcdir)/go/gospec.c) + +GCCGO_OBJS = $(GCC_OBJS) gospec.o intl.o prefix.o version.o +gccgo$(exeext): $(GCCGO_OBJS) $(EXTRA_GCC_OBJS) $(LIBDEPS) + $(LINKER) $(ALL_LINKERFLAGS) $(LDFLAGS) -o $@ \ + $(GCCGO_OBJS) $(EXTRA_GCC_OBJS) $(LIBS) + +# Use strict warnings. +go-warn = $(STRICT_WARN) + +GO_OBJS = \ + go/dataflow.o \ + go/export.o \ + go/expressions.o \ + go/go-dump.o \ + go/go-lang.o \ + go/go.o \ + go/gogo-tree.o \ + go/gogo.o \ + go/import.o \ + go/import-archive.o \ + go/lex.o \ + go/parse.o \ + go/statements.o \ + go/types.o \ + go/unsafe.o + +go1$(exeext): $(GO_OBJS) attribs.o $(BACKEND) $(LIBDEPS) + $(CXX) $(ALL_CXXFLAGS) $(LDFLAGS) -o $@ \ + $(GO_OBJS) attribs.o $(BACKEND) $(LIBS) $(BACKENDLIBS) + +# Documentation. + +GO_TEXI_FILES = \ + go/gccgo.texi \ + $(gcc_docdir)/include/fdl.texi \ + $(gcc_docdir)/include/gpl_v3.texi \ + $(gcc_docdir)/include/gcc-common.texi \ + gcc-vers.texi + +doc/gccgo.info: $(GO_TEXI_FILES) + if test "x$(BUILD_INFO)" = xinfo; then \ + rm -f doc/gccgo.info*; \ + $(MAKEINFO) $(MAKEINFOFLAGS) -I $(gcc_docdir) \ + -I $(gcc_docdir)/include -o $@ $<; \ + else true; fi + +doc/gccgo.dvi: $(GO_TEXI_FILES) + $(TEXI2DVI) -I $(abs_docdir) -I $(abs_docdir)/include -o $@ $< + +doc/gccgo.pdf: $(GO_TEXI_FILES) + $(TEXI2PDF) -I $(abs_docdir) -I $(abs_docdir)/include -o $@ $< + +$(build_htmldir)/go/index.html: $(GO_TEXI_FILES) + $(mkinstalldirs) $(@D) + rm -f $(@D)/* + $(TEXI2HTML) -I $(gcc_docdir) -I $(gcc_docdir)/include \ + -I $(srcdir)/go -o $(@D) $< + +.INTERMEDIATE: gccgo.pod + +gccgo.pod: go/gccgo.texi + -$(TEXI2POD) -D gccgo < $< > $@ + +# Build hooks. + +go.all.cross: gccgo$(exeext) +go.start.encap: gccgo$(exeext) +go.rest.encap: +go.info: doc/gccgo.info +go.dvi: doc/gccgo.dvi +go.pdf: doc/gccgo.pdf +go.html: $(build_htmldir)/go/index.html +go.srcinfo: doc/gccgo.info + -cp -p $^ $(srcdir)/doc +go.srcextra: +go.tags: force + cd $(srcdir)/go; \ + etags -o TAGS.sub *.c *.h gofrontend/*.h gofrontend/*.cc; \ + etags --include TAGS.sub --include ../TAGS.sub +go.man: doc/gccgo.1 +go.srcman: doc/gccgo.1 + -cp -p $^ $(srcdir)/doc + +check-go: +lang_checks += check-go + +# Install hooks. + +go.install-common: installdirs + -rm -f $(DESTDIR)$(bindir)/$(GCCGO_INSTALL_NAME)$(exeext) + -rm -f $(DESTDIR)$(bindir)/$(GCCGO_TARGET_INSTALL_NAME)$(exeext) + $(INSTALL_PROGRAM) gccgo$(exeext) $(DESTDIR)$(bindir)/$(GCCGO_INSTALL_NAME)$(exeext) + if test -f $(DESTDIR)$(bindir)$(GCCGO_TARGET_INSTALL_NAME)$(exeext); then \ + :; \ + else \ + cd $(DESTDIR)$(bindir) && \ + $(LN) $(GCCGO_INSTALL_NAME)$(exeext) $(GCCGO_TARGET_INSTALL_NAME)$(exeext); \ + fi + +go.install-plugin: + +go.install-info: $(DESTDIR)$(infodir)/gccgo.info + +go.install-pdf: doc/gccgo.pdf + @$(NORMAL_INSTALL) + test -z "$(pdfdir)" || $(mkinstalldirs) "$(DESTDIR)$(pdfdir)/gcc" + @for p in doc/gccgo.pdf; do \ + if test -f "$$p"; then d=; else d="$(srcdir)/"; fi; \ + f=$(pdf__strip_dir) \ + echo " $(INSTALL_DATA) '$$d$$p' '$(DESTDIR)$(pdfdir)/gcc/$$f'"; \ + $(INSTALL_DATA) "$$d$$p" "$(DESTDIR)$(pdfdir)/gcc/$$f"; \ + done + +go.install-html: $(build_htmldir)/go + @$(NORMAL_INSTALL) + test -z "$(htmldir)" || $(mkinstalldirs) "$(DESTDIR)$(htmldir)" + @for p in $(build_htmldir)/go; do \ + if test -f "$$p" || test -d "$$p"; then d=""; else d="$(srcdir)/"; fi; \ + f=$(html__strip_dir) \ + if test -d "$$d$$p"; then \ + echo " $(mkinstalldirs) '$(DESTDIR)$(htmldir)/$$f'"; \ + $(mkinstalldirs) "$(DESTDIR)$(htmldir)/$$f" || exit 1; \ + echo " $(INSTALL_DATA) '$$d$$p'/* '$(DESTDIR)$(htmldir)/$$f'"; \ + $(INSTALL_DATA) "$$d$$p"/* "$(DESTDIR)$(htmldir)/$$f"; \ + else \ + echo " $(INSTALL_DATA) '$$d$$p' '$(DESTDIR)$(htmldir)/$$f'"; \ + $(INSTALL_DATA) "$$d$$p" "$(DESTDIR)$(htmldir)/$$f"; \ + fi; \ + done + +go.install-man: $(DESTDIR)$(man1dir)/$(GCCGO_INSTALL_NAME)$(man1ext) + +$(DESTDIR)$(man1dir)/$(GCCGO_INSTALL_NAME)$(man1ext): doc/gccgo.1 installdirs + -rm -f $@ + -$(INSTALL_DATA) $< $@ + -chmod a-x $@ + +go.uninstall: + rm -rf $(DESTDIR)$(bindir)/$(GCCGO_INSTALL_NAME)$(exeext) + rm -rf $(DESTDIR)$(man1dir)/$(GCCGO_INSTALL_NAME)$(man1ext) + rm -rf $(DESTDIR)$(bindir)/$(GCCGO_TARGET_INSTALL_NAME)$(exeext) + rm -rf $(DESTDIR)$(infodir)/gccgo.info* + +# Clean hooks. + +go.mostlyclean: + -rm -f go/*$(objext) + -rm -f go/*$(coverageexts) +go.clean: +go.distclean: +go.maintainer-clean: + -rm -f $(docobjdir)/gccgo.1 + +# Stage hooks. + +go.stage1: stage1-start + -mv go/*$(objext) stage1/go +go.stage2: stage2-start + -mv go/*$(objext) stage2/go +go.stage3: stage3-start + -mv go/*$(objext) stage3/go +go.stage4: stage4-start + -mv go/*$(objext) stage4/go +go.stageprofile: stageprofile-start + -mv go/*$(objext) stageprofile/go +go.stagefeedback: stagefeedback-start + -mv go/*$(objext) stagefeedback/go + +GO_SYSTEM_H = go/go-system.h $(CONFIG_H) $(SYSTEM_H) coretypes.h \ + $(DIAGNOSTIC_CORE_H) $(INPUT_H) + +GO_C_H = go/go-c.h $(MACHMODE_H) +GO_LEX_H = go/gofrontend/lex.h go/gofrontend/operator.h +GO_PARSE_H = go/gofrontend/parse.h +GO_GOGO_H = go/gofrontend/gogo.h +GO_TYPES_H = go/gofrontend/types.h +GO_STATEMENTS_H = go/gofrontend/statements.h go/gofrontend/operator.h +GO_EXPRESSIONS_H = go/gofrontend/expressions.h go/gofrontend/operator.h +GO_IMPORT_H = go/gofrontend/import.h go/gofrontend/export.h + +go/go-lang.o: go/go-lang.c $(GO_SYSTEM_H) coretypes.h opts.h $(TREE_H) \ + $(GIMPLE_H) $(GGC_H) $(TOPLEV_H) debug.h options.h $(FLAGS_H) \ + convert.h langhooks.h $(LANGHOOKS_DEF_H) $(EXCEPT_H) $(TARGET_H) \ + $(DIAGNOSTIC_H) $(GO_C_H) gt-go-go-lang.h gtype-go.h + +GOINCLUDES = -I $(srcdir)/go -I $(srcdir)/go/gofrontend + +go/%.o: go/gofrontend/%.cc + $(CXX) -c $(GOINCLUDES) $(ALL_CPPFLAGS) $(ALL_CXXFLAGS) $< $(OUTPUT_OPTION) + +go/dataflow.o: go/gofrontend/dataflow.cc $(GO_SYSTEM_H) $(GO_GOGO_H) \ + $(GO_EXPRESSIONS_H) $(GO_STATEMENTS_H) go/gofrontend/dataflow.h +go/export.o: go/gofrontend/export.cc $(GO_SYSTEM_H) \ + $(srcdir)/../include/sha1.h $(MACHMODE_H) output.h $(TARGET_H) \ + $(GO_GOGO_H) $(GO_TYPES_H) $(GO_STATEMENTS_H) go/gofrontend/export.h +go/expressions.o: go/gofrontend/expressions.cc $(GO_SYSTEM_H) $(TOPLEV_H) \ + intl.h $(TREE_H) $(GIMPLE_H) tree-iterator.h convert.h $(REAL_H) \ + realmpfr.h $(TM_H) $(TM_P_H) $(GO_C_H) $(GO_GOGO_H) $(GO_TYPES_H) \ + go/gofrontend/export.h $(GO_IMPORT_H) $(GO_STATEMENTS_H) $(GO_LEX_H) \ + $(GO_EXPRESSIONS_H) +go/go.o: go/gofrontend/go.cc $(GO_SYSTEM_H) $(GO_C_H) $(GO_LEX_H) \ + $(GO_PARSE_H) $(GO_GOGO_H) +go/go-dump.o: go/gofrontend/go-dump.cc $(GO_SYSTEM_H) $(GO_C_H) \ + go/gofrontend/go-dump.h +go/gogo-tree.o: go/gofrontend/gogo-tree.cc $(GO_SYSTEM_H) $(TM_H) $(TOPLEV_H) \ + $(TREE_H) $(GIMPLE_H) tree-iterator.h $(CGRAPH_H) langhooks.h \ + convert.h output.h $(DIAGNOSTIC_H) $(RTL_H) $(GO_TYPES_H) \ + $(GO_EXPRESSIONS_H) $(GO_STATEMENTS_H) $(GO_GOGO_H) +go/gogo.o: go/gofrontend/gogo.cc $(GO_SYSTEM_H) $(GO_C_H) \ + go/gofrontend/go-dump.h $(GO_LEX_H) $(GO_TYPES_H) $(GO_STATEMENTS_H) \ + $(GO_EXPRESSIONS_H) go/gofrontend/dataflow.h $(GO_IMPORT_H) \ + go/gofrontend/export.h $(GO_GOGO_H) +go/import.o: go/gofrontend/import.cc $(GO_SYSTEM_H) \ + $(srcdir)/../include/filenames.h $(srcdir)/../include/simple-object.h \ + $(GO_C_H) $(GO_GOGO_H) $(GO_TYPES_H) go/gofrontend/export.h \ + $(GO_IMPORT_H) +go/import-archive.o: go/gofrontend/import-archive.cc $(GO_SYSTEM_H) \ + $(GO_IMPORT_H) +go/lex.o: go/gofrontend/lex.cc $(GO_LEX_H) $(GO_SYSTEM_H) +go/parse.o: go/gofrontend/parse.cc $(GO_SYSTEM_H) $(GO_LEX_H) $(GO_GOGO_H) \ + $(GO_TYPES_H) $(GO_STATEMENTS_H) $(GO_EXPRESSIONS_H) $(GO_PARSE_H) +go/statements.o: go/gofrontend/statements.cc $(GO_SYSTEM_H) intl.h $(TREE_H) \ + $(GIMPLE_H) convert.h tree-iterator.h $(TREE_FLOW_H) $(REAL_H) \ + $(GO_C_H) $(GO_TYPES_H) $(GO_EXPRESSIONS_H) $(GO_GOGO_H) \ + $(GO_STATEMENTS_H) +go/types.o: go/gofrontend/types.cc $(GO_SYSTEM_H) $(TOPLEV_H) intl.h $(TREE_H) \ + $(GIMPLE_H) $(REAL_H) convert.h $(GO_C_H) $(GO_GOGO_H) \ + go/gofrontend/operator.h $(GO_EXPRESSIONS_H) $(GO_STATEMENTS_H) \ + go/gofrontend/export.h $(GO_IMPORT_H) $(GO_TYPES_H) +go/unsafe.o: go/gofrontend/unsafe.cc $(GO_SYSTEM_H) $(GO_TYPES_H) $(GO_GOGO_H) diff --git a/gcc/go/README.gcc b/gcc/go/README.gcc new file mode 100644 index 0000000..3c764f7 --- /dev/null +++ b/gcc/go/README.gcc @@ -0,0 +1,3 @@ +The files in the gofrontend subdirectory are mirrored from the +gofrontend project hosted at http://code.google.com/p/gofrontend. +These files are the ones in the go subdirectory of that project. diff --git a/gcc/go/config-lang.in b/gcc/go/config-lang.in new file mode 100644 index 0000000..47b2605 --- /dev/null +++ b/gcc/go/config-lang.in @@ -0,0 +1,37 @@ +# config-lang.in -- Top level configure fragment for gcc Go frontend. + +# Copyright (C) 2009, 2010 Free Software Foundation, Inc. + +# This file is part of GCC. + +# GCC is free software; you can redistribute it and/or modify +# it under the terms of the GNU General Public License as published by +# the Free Software Foundation; either version 3, or (at your option) +# any later version. + +# GCC is distributed in the hope that it will be useful, +# but WITHOUT ANY WARRANTY; without even the implied warranty of +# MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the +# GNU General Public License for more details. + +# You should have received a copy of the GNU General Public License +# along with GCC; see the file COPYING3. If not see +# <http://www.gnu.org/licenses/>. + +# Configure looks for the existence of this file to auto-config each language. +# We define several parameters used by configure: +# +# language - name of language as it would appear in $(LANGUAGES) +# compilers - value to add to $(COMPILERS) + +language="go" + +compilers="go1\$(exeext)" + +target_libs="target-libgo target-libffi" + +# The Go frontend is written in C++, so we need to build the C++ +# compiler during stage 1. +lang_requires_boot_languages=c++ + +gtfiles="\$(srcdir)/go/go-lang.c" diff --git a/gcc/go/gccgo.texi b/gcc/go/gccgo.texi new file mode 100644 index 0000000..0e41261 --- /dev/null +++ b/gcc/go/gccgo.texi @@ -0,0 +1,348 @@ +\input texinfo @c -*-texinfo-*- +@setfilename gccgo.info +@settitle The GNU Go Compiler + +@c Merge the standard indexes into a single one. +@syncodeindex fn cp +@syncodeindex vr cp +@syncodeindex ky cp +@syncodeindex pg cp +@syncodeindex tp cp + +@include gcc-common.texi + +@c Copyright years for this manual. +@set copyrights-go 2010 + +@copying +@c man begin COPYRIGHT +Copyright @copyright{} @value{copyrights-go} Free Software Foundation, Inc. + +Permission is granted to copy, distribute and/or modify this document +under the terms of the GNU Free Documentation License, Version 1.3 or +any later version published by the Free Software Foundation; with no +Invariant Sections, the Front-Cover Texts being (a) (see below), and +with the Back-Cover Texts being (b) (see below). +A copy of the license is included in the +@c man end +section entitled ``GNU Free Documentation License''. +@ignore +@c man begin COPYRIGHT +man page gfdl(7). +@c man end +@end ignore + +@c man begin COPYRIGHT + +(a) The FSF's Front-Cover Text is: + + A GNU Manual + +(b) The FSF's Back-Cover Text is: + + You have freedom to copy and modify this GNU Manual, like GNU + software. Copies published by the Free Software Foundation raise + funds for GNU development. +@c man end +@end copying + +@ifinfo +@format +@dircategory Software development +@direntry +* Gccgo: (gccgo). A GCC-based compiler for the Go language +@end direntry +@end format + +@insertcopying +@end ifinfo + +@titlepage +@title The GNU Go Compiler +@versionsubtitle +@author Ian Lance Taylor + +@page +@vskip 0pt plus 1filll +Published by the Free Software Foundation @* +51 Franklin Street, Fifth Floor@* +Boston, MA 02110-1301, USA@* +@sp 1 +@insertcopying +@end titlepage +@contents +@page + +@node Top +@top Introduction + +This manual describes how to use @command{gccgo}, the GNU compiler for +the Go programming language. This manual is specifically about +@command{gccgo}. For more information about the Go programming +language in general, including language specifications and standard +package documentation, see @uref{http://golang.org/}. + +@menu +* Copying:: The GNU General Public License. +* GNU Free Documentation License:: + How you can share and copy this manual. +* Invoking gccgo:: How to run gccgo. +* Import and Export:: Importing and exporting package data. +* C Interoperability:: Calling C from Go and vice-vera. +* Index:: Index. +@end menu + + +@include gpl_v3.texi + +@include fdl.texi + + +@node Invoking gccgo +@chapter Invoking gccgo + +@c man title gccgo A GCC-based compiler for the Go language + +@ignore +@c man begin SYNOPSIS gccgo +gccgo [@option{-c}|@option{-S}] + [@option{-g}] [@option{-pg}] [@option{-O}@var{level}] + [@option{-I}@var{dir}@dots{}] [@option{-L}@var{dir}@dots{}] + [@option{-o} @var{outfile}] @var{infile}@dots{} + +Only the most useful options are listed here; see below for the +remainder. +@c man end +@c man begin SEEALSO +gpl(7), gfdl(7), fsf-funding(7), gcc(1) +and the Info entries for @file{gccgo} and @file{gcc}. +@c man end +@end ignore + +@c man begin DESCRIPTION gccgo + +The @command{gccgo} command is a frontend to @command{gcc} and +supports many of the same options. @xref{Option Summary, , Option +Summary, gcc, Using the GNU Compiler Collection (GCC)}. This manual +only documents the options specific to @command{gccgo}. + +The @command{gccgo} command may be used to compile Go source code into +an object file, link a collection of object files together, or do both +in sequence. + +Go source code is compiled as packages. A package consists of one or +more Go source files. All the files in a single package must be +compiled together, by passing all the files as arguments to +@command{gccgo}. A single invocation of @command{gccgo} may only +compile a single package. + +One Go package may @code{import} a different Go package. The imported +package must have already been compiled; @command{gccgo} will read +the import data directly from the compiled package. When this package +is later linked, the compiled form of the package must be included in +the link command. + +@c man end + +@c man begin OPTIONS gccgo + +@table @gcctabopt +@item -I@var{dir} +@cindex @option{-I} +Specify a directory to use when searching for an import package at +compile time. + +@item -L@var{dir} +@cindex @option{-L} +When compiling, synonymous with @option{-I}. When linking, specify a +library search directory, as with @command{gcc}. + +@item -fgo-prefix=@var{string} +@cindex @option{-fgo-prefix} +Go permits a single program to include more than one package with the +same name. This option is required to make this work with +@command{gccgo}. The argument to this option may be any string. Each +package with the same name must use a distinct @option{-fgo-prefix} +option. The argument is typically the full path under which the +package will be installed, as that must obviously be unique. + +@item -frequire-return-statement +@itemx -fno-require-return-statement +@cindex @option{-frequire-return-statement} +@cindex @option{-fno-require-return-statement} +By default @command{gccgo} will warn about functions which have one or +more return parameters but lack an explicit @code{return} statement. +This warning may be disabled using +@option{-fno-require-return-statement}. +@end table + +@c man end + +@node Import and Export +@chapter Import and Export + +When @command{gccgo} compiles a package which exports anything, the +export information will be stored directly in the object file. When a +package is imported, @command{gccgo} must be able to find the file. + +@cindex @file{.gox} +When Go code imports the package @file{gopackage}, @command{gccgo} +will look for the import data using the following filenames, using the +first one that it finds. + +@table @file +@item @var{gopackage}.gox +@item lib@var{gopackage}.so +@item lib@var{gopackage}.a +@item @var{gopackage}.o +@end table + +The compiler will search for these files in the directories named by +any @option{-I} or @option{-L} options, in order in which the +directories appear on the command line. The compiler will then search +several standard system directories. Finally the compiler will search +the current directory (to search the current directory earlier, use +@samp{-I.}). + +The compiler will extract the export information directly from the +compiled object file. The file @file{@var{gopackage}.gox} will +typically contain nothing but export data. This can be generated from +@file{@var{gopackage}.o} via + +@smallexample +objcopy -j .go_export @var{gopackage}.o @var{gopackage}.gox +@end smallexample + +For example, it may be desirable to extract the export information +from several different packages into their independent +@file{@var{gopackage}.gox} files, and then to combine the different +package object files together into a single shared library or archive. + +At link time you must explicitly tell @command{gccgo} which files to +link together into the executable, as is usual with @command{gcc}. +This is different from the behaviour of other Go compilers. + +@node C Interoperability +@chapter C Interoperability + +When using @command{gccgo} there is limited interoperability with C, +or with C++ code compiled using @code{extern "C"}. + +@menu +* C Type Interoperability:: How C and Go types match up. +* Function Names:: How Go functions are named. +@end menu + +@node C Type Interoperability +@section C Type Interoperability + +Basic types map directly: an @code{int} in Go is an @code{int} in C, +etc. Go @code{byte} is equivalent to C @code{unsigned char}. +Pointers in Go are pointers in C. A Go @code{struct} is the same as C +@code{struct} with the same field names and types. + +@cindex @code{string} in C +The Go @code{string} type is currently defined as a two-element +structure: + +@smallexample +struct __go_string @{ + const unsigned char *__data; + int __length; +@}; +@end smallexample + +You can't pass arrays between C and Go. However, a pointer to an +array in Go is equivalent to a C pointer to the equivalent of the +element type. For example, Go @code{*[10]int} is equivalent to C +@code{int*}, assuming that the C pointer does point to 10 elements. + +@cindex @code{slice} in C +A slice in Go is a structure. The current definition is: + +@smallexample +struct __go_slice @{ + void *__values; + int __count; + int __capacity; +@}; +@end smallexample + +The type of a Go function with no receiver is equivalent to a C +function whose parameter types are equivalent. When a Go function +returns more than one value, the C function returns a struct. For +example, these functions have equivalent types: + +@smallexample +func GoFunction(int) (int, float) +struct @{ int i; float f; @} CFunction(int) +@end smallexample + +A pointer to a Go function is equivalent to a pointer to a C function +when the functions have equivalent types. + +Go @code{interface}, @code{channel}, and @code{map} types have no +corresponding C type (@code{interface} is a two-element struct and +@code{channel} and @code{map} are pointers to structs in C, but the +structs are deliberately undocumented). C @code{enum} types +correspond to some integer type, but precisely which one is difficult +to predict in general; use a cast. C @code{union} types have no +corresponding Go type. C @code{struct} types containing bitfields +have no corresponding Go type. C++ @code{class} types have no +corresponding Go type. + +Memory allocation is completely different between C and Go, as Go uses +garbage collection. The exact guidelines in this area are +undetermined, but it is likely that it will be permitted to pass a +pointer to allocated memory from C to Go. The responsibility of +eventually freeing the pointer will remain with C side, and of course +if the C side frees the pointer while the Go side still has a copy the +program will fail. When passing a pointer from Go to C, the Go +function must retain a visible copy of it in some Go variable. +Otherwise the Go garbage collector may delete the pointer while the C +function is still using it. + +@node Function Names +@section Function Names + +@cindex @code{__asm__} +Go code can call C functions directly using a Go extension implemented +in @command{gccgo}: a function declaration may be followed by +@code{__asm__ ("@var{name}")}. For example, here is how the C function +@code{open} can be declared in Go: + +@smallexample +func c_open(name *byte, mode int, perm int) int __asm__ ("open"); +@end smallexample + +The C function naturally expects a nul terminated string, which in Go +is equivalent to a pointer to an array (not a slice!) of @code{byte} +with a terminating zero byte. So a sample call from Go would look +like (after importing the @code{os} package): + +@smallexample +var name = [4]byte@{'f', 'o', 'o', 0@}; +i := c_open(&name[0], os.O_RDONLY, 0); +@end smallexample + +Note that this serves as an example only. To open a file in Go please +use Go's @code{os.Open} function instead. + +The name of Go functions accessed from C is subject to change. At +present the name of a Go function that does not have a receiver is +@code{prefix.package.Functionname}. The prefix is set by the +@option{-fgo-prefix} option used when the package is compiled; if the +option is not used, the default is simply @code{go}. To call the +function from C you must set the name using the @command{gcc} +extension similar to the @command{gccgo} extension. + +@smallexample +extern int go_function(int) __asm__ ("myprefix.mypackage.Function"); +@end smallexample + +@node Index +@unnumbered Index + +@printindex cp + +@bye diff --git a/gcc/go/go-c.h b/gcc/go/go-c.h new file mode 100644 index 0000000..2075494 --- /dev/null +++ b/gcc/go/go-c.h @@ -0,0 +1,66 @@ +/* go-c.h -- Header file for go frontend gcc C interface. + Copyright (C) 2009, 2010 Free Software Foundation, Inc. + +This file is part of GCC. + +GCC is free software; you can redistribute it and/or modify it under +the terms of the GNU General Public License as published by the Free +Software Foundation; either version 3, or (at your option) any later +version. + +GCC is distributed in the hope that it will be useful, but WITHOUT ANY +WARRANTY; without even the implied warranty of MERCHANTABILITY or +FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License +for more details. + +You should have received a copy of the GNU General Public License +along with GCC; see the file COPYING3. If not see +<http://www.gnu.org/licenses/>. */ + +#ifndef GO_GO_C_H +#define GO_GO_C_H + +#ifdef ENABLE_BUILD_WITH_CXX +#define GO_EXTERN_C +#else +#define GO_EXTERN_C extern "C" +#endif + +#if defined(__cplusplus) && !defined(ENABLE_BUILD_WITH_CXX) +extern "C" +{ +#endif + +#include "machmode.h" + +/* Functions defined in the Go frontend proper called by the GCC + interface. */ + +extern int go_enable_dump (const char*); +extern void go_set_prefix (const char*); + +extern void go_add_search_path (const char*); + +extern void go_create_gogo (int int_type_size, int float_type_size, + int pointer_size); + +extern void go_parse_input_files (const char**, unsigned int, + bool only_check_syntax, + bool require_return_statement); +extern void go_write_globals (void); + +extern tree go_type_for_size (unsigned int bits, int unsignedp); +extern tree go_type_for_mode (enum machine_mode, int unsignedp); + +/* Functions defined in the GCC interface called by the Go frontend + proper. */ + +extern void go_preserve_from_gc (tree); + +extern const char *go_localize_identifier (const char*); + +#if defined(__cplusplus) && !defined(ENABLE_BUILD_WITH_CXX) +} /* End extern "C". */ +#endif + +#endif /* !defined(GO_GO_C_H) */ diff --git a/gcc/go/go-lang.c b/gcc/go/go-lang.c new file mode 100644 index 0000000..9c85ab7 --- /dev/null +++ b/gcc/go/go-lang.c @@ -0,0 +1,404 @@ +/* go-lang.c -- Go frontend gcc interface. + Copyright (C) 2009, 2010 Free Software Foundation, Inc. + +This file is part of GCC. + +GCC is free software; you can redistribute it and/or modify it under +the terms of the GNU General Public License as published by the Free +Software Foundation; either version 3, or (at your option) any later +version. + +GCC is distributed in the hope that it will be useful, but WITHOUT ANY +WARRANTY; without even the implied warranty of MERCHANTABILITY or +FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License +for more details. + +You should have received a copy of the GNU General Public License +along with GCC; see the file COPYING3. If not see +<http://www.gnu.org/licenses/>. */ + +#include "config.h" +#include "system.h" +#include "ansidecl.h" +#include "coretypes.h" +#include "opts.h" +#include "tree.h" +#include "gimple.h" +#include "ggc.h" +#include "toplev.h" +#include "debug.h" +#include "options.h" +#include "flags.h" +#include "convert.h" +#include "diagnostic.h" +#include "langhooks.h" +#include "langhooks-def.h" +#include "except.h" +#include "target.h" + +#include <mpfr.h> + +#include "go-c.h" + +/* Language-dependent contents of a type. */ + +struct GTY(()) lang_type +{ + char dummy; +}; + +/* Language-dependent contents of a decl. */ + +struct GTY(()) lang_decl +{ + char dummy; +}; + +/* Language-dependent contents of an identifier. This must include a + tree_identifier. */ + +struct GTY(()) lang_identifier +{ + struct tree_identifier common; +}; + +/* The resulting tree type. */ + +union GTY((desc ("TREE_CODE (&%h.generic) == IDENTIFIER_NODE"), + chain_next ("(union lang_tree_node *) TREE_CHAIN (&%h.generic)"))) +lang_tree_node +{ + union tree_node GTY((tag ("0"), + desc ("tree_node_structure (&%h)"))) generic; + struct lang_identifier GTY((tag ("1"))) identifier; +}; + +/* We don't use language_function. */ + +struct GTY(()) language_function +{ + int dummy; +}; + +/* Language hooks. */ + +static bool +go_langhook_init (void) +{ + build_common_tree_nodes (false); + + /* The sizetype may be "unsigned long" or "unsigned long long". */ + if (TYPE_MODE (long_unsigned_type_node) == ptr_mode) + size_type_node = long_unsigned_type_node; + else if (TYPE_MODE (long_long_unsigned_type_node) == ptr_mode) + size_type_node = long_long_unsigned_type_node; + else + size_type_node = long_unsigned_type_node; + set_sizetype (size_type_node); + + build_common_tree_nodes_2 (0); + + /* We must create the gogo IR after calling build_common_tree_nodes + (because Gogo::define_builtin_function_trees refers indirectly + to, e.g., unsigned_char_type_node) but before calling + build_common_builtin_nodes (because it calls, indirectly, + go_type_for_size). */ + go_create_gogo (INT_TYPE_SIZE, FLOAT_TYPE_SIZE, POINTER_SIZE); + + build_common_builtin_nodes (); + + /* I don't know why this is not done by any of the above. */ + void_list_node = build_tree_list (NULL_TREE, void_type_node); + + /* The default precision for floating point numbers. This is used + for floating point constants with abstract type. This may + eventually be controllable by a command line option. */ + mpfr_set_default_prec (128); + + /* Go uses exceptions. */ + using_eh_for_cleanups (); + + return true; +} + +/* The option mask. */ + +static unsigned int +go_langhook_option_lang_mask (void) +{ + return CL_Go; +} + +/* Initialize the options structure. */ + +static void +go_langhook_init_options_struct (struct gcc_options *opts) +{ + /* Go says that signed overflow is precisely defined. */ + opts->x_flag_wrapv = 1; + + /* We default to using strict aliasing, since Go pointers are safe. + This is turned off for code that imports the "unsafe" package, + because using unsafe.pointer violates C style aliasing + requirements. */ + opts->x_flag_strict_aliasing = 1; + + /* Default to avoiding range issues for complex multiply and + divide. */ + opts->x_flag_complex_method = 2; + + /* The builtin math functions should not set errno. */ + opts->x_flag_errno_math = 0; + + /* By default assume that floating point math does not trap. */ + opts->x_flag_trapping_math = 0; + + /* We turn on stack splitting if we can. */ + if (targetm.supports_split_stack (false, opts)) + opts->x_flag_split_stack = 1; + + /* Exceptions are used to handle recovering from panics. */ + opts->x_flag_exceptions = 1; + opts->x_flag_non_call_exceptions = 1; +} + +/* Handle Go specific options. Return 0 if we didn't do anything. */ + +static bool +go_langhook_handle_option ( + size_t scode, + const char *arg, + int value ATTRIBUTE_UNUSED, + int kind ATTRIBUTE_UNUSED, + location_t loc ATTRIBUTE_UNUSED, + const struct cl_option_handlers *handlers ATTRIBUTE_UNUSED) +{ + enum opt_code code = (enum opt_code) scode; + bool ret = true; + + switch (code) + { + case OPT_I: + case OPT_L: + /* For the compiler, we currently handle -I and -L exactly the + same way: they give us a directory to search for import + statements. */ + go_add_search_path (arg); + break; + + case OPT_fgo_dump_: + ret = go_enable_dump (arg) ? true : false; + break; + + case OPT_fgo_prefix_: + go_set_prefix (arg); + break; + + default: + /* Just return 1 to indicate that the option is valid. */ + break; + } + + return ret; +} + +/* Run after parsing options. */ + +static bool +go_langhook_post_options (const char **pfilename ATTRIBUTE_UNUSED) +{ + gcc_assert (num_in_fnames > 0); + + if (flag_excess_precision_cmdline == EXCESS_PRECISION_DEFAULT) + flag_excess_precision_cmdline = EXCESS_PRECISION_STANDARD; + + /* Returning false means that the backend should be used. */ + return false; +} + +static void +go_langhook_parse_file (void) +{ + go_parse_input_files (in_fnames, num_in_fnames, flag_syntax_only, + go_require_return_statement); +} + +static tree +go_langhook_type_for_size (unsigned int bits, int unsignedp) +{ + return go_type_for_size (bits, unsignedp); +} + +static tree +go_langhook_type_for_mode (enum machine_mode mode, int unsignedp) +{ + return go_type_for_mode (mode, unsignedp); +} + +/* Record a builtin function. We just ignore builtin functions. */ + +static tree +go_langhook_builtin_function (tree decl) +{ + return decl; +} + +static int +go_langhook_global_bindings_p (void) +{ + return current_function_decl == NULL ? 1 : 0; +} + +/* Push a declaration into the current binding level. We can't + usefully implement this since we don't want to convert from tree + back to one of our internal data structures. I think the only way + this is used is to record a decl which is to be returned by + getdecls, and we could implement it for that purpose if + necessary. */ + +static tree +go_langhook_pushdecl (tree decl ATTRIBUTE_UNUSED) +{ + gcc_unreachable (); +} + +/* This hook is used to get the current list of declarations as trees. + We don't support that; instead we use the write_globals hook. This + can't simply crash because it is called by -gstabs. */ + +static tree +go_langhook_getdecls (void) +{ + return NULL; +} + +/* Write out globals. */ + +static void +go_langhook_write_globals (void) +{ + go_write_globals (); +} + +/* Go specific gimplification. We need to gimplify + CALL_EXPR_STATIC_CHAIN, because the gimplifier doesn't handle + it. */ + +static int +go_langhook_gimplify_expr (tree *expr_p, gimple_seq *pre_p, gimple_seq *post_p) +{ + if (TREE_CODE (*expr_p) == CALL_EXPR + && CALL_EXPR_STATIC_CHAIN (*expr_p) != NULL_TREE) + gimplify_expr (&CALL_EXPR_STATIC_CHAIN (*expr_p), pre_p, post_p, + is_gimple_val, fb_rvalue); + return GS_UNHANDLED; +} + +/* Return a decl for the exception personality function. The function + itself is implemented in libgo/runtime/go-unwind.c. */ + +static tree +go_langhook_eh_personality (void) +{ + static tree personality_decl; + if (personality_decl == NULL_TREE) + { + personality_decl = build_personality_function ("gccgo"); + go_preserve_from_gc (personality_decl); + } + return personality_decl; +} + +/* Functions called directly by the generic backend. */ + +tree +convert (tree type, tree expr) +{ + if (type == error_mark_node + || expr == error_mark_node + || TREE_TYPE (expr) == error_mark_node) + return error_mark_node; + + if (type == TREE_TYPE (expr)) + return expr; + + if (TYPE_MAIN_VARIANT (type) == TYPE_MAIN_VARIANT (TREE_TYPE (expr))) + return fold_convert (type, expr); + + switch (TREE_CODE (type)) + { + case VOID_TYPE: + case BOOLEAN_TYPE: + return fold_convert (type, expr); + case INTEGER_TYPE: + return fold (convert_to_integer (type, expr)); + case POINTER_TYPE: + return fold (convert_to_pointer (type, expr)); + case REAL_TYPE: + return fold (convert_to_real (type, expr)); + case COMPLEX_TYPE: + return fold (convert_to_complex (type, expr)); + default: + break; + } + + gcc_unreachable (); +} + +/* FIXME: This is a hack to preserve trees that we create from the + garbage collector. */ + +static GTY(()) tree go_gc_root; + +void +go_preserve_from_gc (tree t) +{ + go_gc_root = tree_cons (NULL_TREE, t, go_gc_root); +} + +/* Convert an identifier for use in an error message. */ + +const char * +go_localize_identifier (const char *ident) +{ + return identifier_to_locale (ident); +} + +#undef LANG_HOOKS_NAME +#undef LANG_HOOKS_INIT +#undef LANG_HOOKS_OPTION_LANG_MASK +#undef LANG_HOOKS_INIT_OPTIONS_STRUCT +#undef LANG_HOOKS_HANDLE_OPTION +#undef LANG_HOOKS_POST_OPTIONS +#undef LANG_HOOKS_PARSE_FILE +#undef LANG_HOOKS_TYPE_FOR_MODE +#undef LANG_HOOKS_TYPE_FOR_SIZE +#undef LANG_HOOKS_BUILTIN_FUNCTION +#undef LANG_HOOKS_GLOBAL_BINDINGS_P +#undef LANG_HOOKS_PUSHDECL +#undef LANG_HOOKS_GETDECLS +#undef LANG_HOOKS_WRITE_GLOBALS +#undef LANG_HOOKS_GIMPLIFY_EXPR +#undef LANG_HOOKS_EH_PERSONALITY + +#define LANG_HOOKS_NAME "GNU Go" +#define LANG_HOOKS_INIT go_langhook_init +#define LANG_HOOKS_OPTION_LANG_MASK go_langhook_option_lang_mask +#define LANG_HOOKS_INIT_OPTIONS_STRUCT go_langhook_init_options_struct +#define LANG_HOOKS_HANDLE_OPTION go_langhook_handle_option +#define LANG_HOOKS_POST_OPTIONS go_langhook_post_options +#define LANG_HOOKS_PARSE_FILE go_langhook_parse_file +#define LANG_HOOKS_TYPE_FOR_MODE go_langhook_type_for_mode +#define LANG_HOOKS_TYPE_FOR_SIZE go_langhook_type_for_size +#define LANG_HOOKS_BUILTIN_FUNCTION go_langhook_builtin_function +#define LANG_HOOKS_GLOBAL_BINDINGS_P go_langhook_global_bindings_p +#define LANG_HOOKS_PUSHDECL go_langhook_pushdecl +#define LANG_HOOKS_GETDECLS go_langhook_getdecls +#define LANG_HOOKS_WRITE_GLOBALS go_langhook_write_globals +#define LANG_HOOKS_GIMPLIFY_EXPR go_langhook_gimplify_expr +#define LANG_HOOKS_EH_PERSONALITY go_langhook_eh_personality + +struct lang_hooks lang_hooks = LANG_HOOKS_INITIALIZER; + +#include "gt-go-go-lang.h" +#include "gtype-go.h" diff --git a/gcc/go/go-system.h b/gcc/go/go-system.h new file mode 100644 index 0000000..e56952d --- /dev/null +++ b/gcc/go/go-system.h @@ -0,0 +1,153 @@ +// go-system.h -- Go frontend inclusion of gcc header files -*- C++ -*- +// Copyright (C) 2009, 2010 Free Software Foundation, Inc. + +// This file is part of GCC. + +// GCC is free software; you can redistribute it and/or modify it under +// the terms of the GNU General Public License as published by the Free +// Software Foundation; either version 3, or (at your option) any later +// version. + +// GCC is distributed in the hope that it will be useful, but WITHOUT ANY +// WARRANTY; without even the implied warranty of MERCHANTABILITY or +// FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License +// for more details. + +// You should have received a copy of the GNU General Public License +// along with GCC; see the file COPYING3. If not see +// <http://www.gnu.org/licenses/>. + +#ifndef GO_SYSTEM_H +#define GO_SYSTEM_H + +#include "config.h" + +// These must be included before the #poison declarations in system.h. + +#include <algorithm> +#include <string> +#include <list> +#include <map> +#include <set> +#include <vector> + +#if defined(HAVE_UNORDERED_MAP) + +# include <unordered_map> +# include <unordered_set> + +# define Unordered_map(KEYTYPE, VALTYPE) \ + std::unordered_map<KEYTYPE, VALTYPE> + +# define Unordered_map_hash(KEYTYPE, VALTYPE, HASHFN, EQFN) \ + std::unordered_map<KEYTYPE, VALTYPE, HASHFN, EQFN> + +# define Unordered_set(KEYTYPE) \ + std::unordered_set<KEYTYPE> + +# define Unordered_set_hash(KEYTYPE, HASHFN, EQFN) \ + std::unordered_set<KEYTYPE, HASHFN, EQFN> + +#elif defined(HAVE_TR1_UNORDERED_MAP) + +# include <tr1/unordered_map> +# include <tr1/unordered_set> + +# define Unordered_map(KEYTYPE, VALTYPE) \ + std::tr1::unordered_map<KEYTYPE, VALTYPE> + +# define Unordered_map_hash(KEYTYPE, VALTYPE, HASHFN, EQFN) \ + std::tr1::unordered_map<KEYTYPE, VALTYPE, HASHFN, EQFN> + +# define Unordered_set(KEYTYPE) \ + std::tr1::unordered_set<KEYTYPE> + +# define Unordered_set_hash(KEYTYPE, HASHFN, EQFN) \ + std::tr1::unordered_set<KEYTYPE, HASHFN, EQFN> + +#elif defined(HAVE_EXT_HASH_MAP) + +# include <ext/hash_map> +# include <ext/hash_set> + +# define Unordered_map(KEYTYPE, VALTYPE) \ + __gnu_cxx::hash_map<KEYTYPE, VALTYPE> + +# define Unordered_map_hash(KEYTYPE, VALTYPE, HASHFN, EQFN) \ + __gnu_cxx::hash_map<KEYTYPE, VALTYPE, HASHFN, EQFN> + +# define Unordered_set(KEYTYPE) \ + __gnu_cxx::hash_set<KEYTYPE> + +# define Unordered_set_hash(KEYTYPE, HASHFN, EQFN) \ + __gnu_cxx::hash_set<KEYTYPE, HASHFN, EQFN> + +// Provide hash functions for strings and pointers. + +namespace __gnu_cxx +{ + +template<> +struct hash<std::string> +{ + size_t + operator()(std::string s) const + { return __stl_hash_string(s.c_str()); } +}; + +template<typename T> +struct hash<T*> +{ + size_t + operator()(T* p) const + { return reinterpret_cast<size_t>(p); } +}; + +} + +#else + +# define Unordered_map(KEYTYPE, VALTYPE) \ + std::map<KEYTYPE, VALTYPE> + +# define Unordered_set(KEYTYPE) \ + std::set<KEYTYPE> + +// We could make this work by writing an adapter class which +// implemented operator< in terms of the hash function. +# error "requires hash table type" + +#endif + +// We don't really need iostream, but some versions of gmp.h include +// it when compiled with C++, which means that we need to include it +// before the macro magic of safe-ctype.h, which is included by +// system.h. +#include <iostream> + +// Some versions of gmp.h assume that #include <iostream> will define +// std::FILE. This is not true with libstdc++ 4.3 and later. This is +// fixed in GMP 4.3, but at this point we don't know which version of +// GMP is in use. Since the top level configure script accepts GMP +// 4.2, at least for now we #include <cstdio> to ensure that GMP 4.2 +// will work. FIXME: This can be removed when we require GMP 4.3 or +// later. +#include <cstdio> + +#ifndef ENABLE_BUILD_WITH_CXX +extern "C" +{ +#endif + +#include "system.h" +#include "ansidecl.h" +#include "coretypes.h" + +#include "diagnostic-core.h" /* For error_at and friends. */ +#include "input.h" /* For source_location. */ + +#ifndef ENABLE_BUILD_WITH_CXX +} // End extern "C" +#endif + +#endif // !defined(GO_SYSTEM_H) diff --git a/gcc/go/gofrontend/LICENSE b/gcc/go/gofrontend/LICENSE new file mode 100644 index 0000000..d77335f --- /dev/null +++ b/gcc/go/gofrontend/LICENSE @@ -0,0 +1,42 @@ +// Copyright (c) 2009 The Go Authors. All rights reserved. +// +// Redistribution and use in source and binary forms, with or without +// modification, are permitted provided that the following conditions are +// met: +// +// * Redistributions of source code must retain the above copyright +// notice, this list of conditions and the following disclaimer. +// * Redistributions in binary form must reproduce the above +// copyright notice, this list of conditions and the following disclaimer +// in the documentation and/or other materials provided with the +// distribution. +// * Neither the name of Google Inc. nor the names of its +// contributors may be used to endorse or promote products derived from +// this software without specific prior written permission. +// +// THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS +// "AS IS" AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT +// LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR +// A PARTICULAR PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT +// OWNER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, +// SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT +// LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, +// DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY +// THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT +// (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE +// OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE. +// +// Subject to the terms and conditions of this License, Google hereby +// grants to You a perpetual, worldwide, non-exclusive, no-charge, +// royalty-free, irrevocable (except as stated in this section) patent +// license to make, have made, use, offer to sell, sell, import, and +// otherwise transfer this implementation of Go, where such license +// applies only to those patent claims licensable by Google that are +// necessarily infringed by use of this implementation of Go. If You +// institute patent litigation against any entity (including a +// cross-claim or counterclaim in a lawsuit) alleging that this +// implementation of Go or a Contribution incorporated within this +// implementation of Go constitutes direct or contributory patent +// infringement, then any patent licenses granted to You under this +// License for this implementation of Go shall terminate as of the date +// such litigation is filed. diff --git a/gcc/go/gofrontend/README b/gcc/go/gofrontend/README new file mode 100644 index 0000000..dd13710 --- /dev/null +++ b/gcc/go/gofrontend/README @@ -0,0 +1,57 @@ +See ../README. + +The frontend is written in C++. + +The frontend lexes and parses the input into an IR specific to this +frontend known as gogo. It then runs a series of passes over the +code. + +Finally it converts gogo to gcc's GENERIC. A goal is to move the gcc +support code into a gcc-interface subdirectory. The gcc code will be +put under the GPL. The rest of the frontend will not include any gcc +header files. + +Issues to be faced in this transition: + +* Representation of source locations. + + Currently the frontend uses gcc's source_location codes, using the + interface in libcpp/line-map.h. + +* Handling of error messages. + + Currently the frontend uses gcc's error_at and warning_at + functions. + + Currently the frontend uses gcc's diagnostic formatter, using + features such as %<%> for appropriate quoting. + + Localization may be an issue. + +* Use of gcc_assert and gcc_unreachable. + +This compiler works, but the code is a work in progress. Notably, the +support for garbage collection is ineffective and needs a complete +rethinking. The frontend pays little attention to its memory usage +and rarely frees any memory. The code could use a general cleanup +which we have not had time to do. + +Contributing +============= + +To contribute patches to the files in this directory, please see +http://golang.org/doc/gccgo_contribute.html . + +Changes to these files require a copyright assignment to Google. This +is required to permit the changes to be copied to the gcc repository, +as Google has a copyright assignment with the Free Software +Foundation. + +If you are the copyright holder, you will need to agree to the +individual contributor license agreement at +http://code.google.com/legal/individual-cla-v1.0.html. This agreement +can be completed online. + +If your organization is the copyright holder, the organization will +need to agree to the corporate contributor license agreement at +http://code.google.com/legal/corporate-cla-v1.0.html. + +If the copyright holder for your code has already completed the +agreement in connection with another Google open source project, it +does not need to be completed again. diff --git a/gcc/go/gofrontend/dataflow.cc b/gcc/go/gofrontend/dataflow.cc new file mode 100644 index 0000000..8170d0a --- /dev/null +++ b/gcc/go/gofrontend/dataflow.cc @@ -0,0 +1,278 @@ +// dataflow.cc -- Go frontend dataflow. + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +#include "go-system.h" + +#include "gogo.h" +#include "expressions.h" +#include "statements.h" +#include "dataflow.h" + +// This class is used to traverse the tree to look for uses of +// variables. + +class Dataflow_traverse_expressions : public Traverse +{ + public: + Dataflow_traverse_expressions(Dataflow* dataflow, Statement* statement) + : Traverse(traverse_blocks | traverse_expressions), + dataflow_(dataflow), statement_(statement) + { } + + protected: + // Only look at top-level expressions: do not descend into blocks. + // They will be examined via Dataflow_traverse_statements. + int + block(Block*) + { return TRAVERSE_SKIP_COMPONENTS; } + + int + expression(Expression**); + + private: + // The dataflow information. + Dataflow* dataflow_; + // The Statement in which we are looking. + Statement* statement_; +}; + +// Given an expression, return the Named_object that it refers to, if +// it is a local variable. + +static Named_object* +get_var(Expression* expr) +{ + Var_expression* ve = expr->var_expression(); + if (ve == NULL) + return NULL; + Named_object* no = ve->named_object(); + gcc_assert(no->is_variable() || no->is_result_variable()); + if (no->is_variable() && no->var_value()->is_global()) + return NULL; + return no; +} + +// Look for a reference to a variable in an expression. + +int +Dataflow_traverse_expressions::expression(Expression** expr) +{ + Named_object* no = get_var(*expr); + if (no != NULL) + this->dataflow_->add_ref(no, this->statement_); + return TRAVERSE_CONTINUE; +} + +// This class is used to handle an assignment statement. + +class Dataflow_traverse_assignment : public Traverse_assignments +{ + public: + Dataflow_traverse_assignment(Dataflow* dataflow, Statement* statement) + : dataflow_(dataflow), statement_(statement) + { } + + protected: + void + initialize_variable(Named_object*); + + void + assignment(Expression** lhs, Expression** rhs); + + void + value(Expression**, bool, bool); + + private: + // The dataflow information. + Dataflow* dataflow_; + // The Statement in which we are looking. + Statement* statement_; +}; + +// Handle a variable initialization. + +void +Dataflow_traverse_assignment::initialize_variable(Named_object* var) +{ + Expression* init = var->var_value()->init(); + this->dataflow_->add_def(var, init, this->statement_, true); + if (init != NULL) + { + Expression* e = init; + this->value(&e, true, true); + gcc_assert(e == init); + } +} + +// Handle an assignment in a statement. + +void +Dataflow_traverse_assignment::assignment(Expression** plhs, Expression** prhs) +{ + Named_object* no = get_var(*plhs); + if (no != NULL) + { + Expression* rhs = prhs == NULL ? NULL : *prhs; + this->dataflow_->add_def(no, rhs, this->statement_, false); + } + else + { + // If this is not a variable it may be some computed lvalue, and + // we want to look for references to variables in that lvalue. + this->value(plhs, false, false); + } + if (prhs != NULL) + this->value(prhs, true, false); +} + +// Handle a value in a statement. + +void +Dataflow_traverse_assignment::value(Expression** pexpr, bool, bool) +{ + Named_object* no = get_var(*pexpr); + if (no != NULL) + this->dataflow_->add_ref(no, this->statement_); + else + { + Dataflow_traverse_expressions dte(this->dataflow_, this->statement_); + Expression::traverse(pexpr, &dte); + } +} + +// This class is used to traverse the tree to look for statements. + +class Dataflow_traverse_statements : public Traverse +{ + public: + Dataflow_traverse_statements(Dataflow* dataflow) + : Traverse(traverse_statements), + dataflow_(dataflow) + { } + + protected: + int + statement(Block*, size_t* pindex, Statement*); + + private: + // The dataflow information. + Dataflow* dataflow_; +}; + +// For each Statement, we look for expressions. + +int +Dataflow_traverse_statements::statement(Block* block, size_t* pindex, + Statement *statement) +{ + Dataflow_traverse_assignment dta(this->dataflow_, statement); + if (!statement->traverse_assignments(&dta)) + { + Dataflow_traverse_expressions dte(this->dataflow_, statement); + statement->traverse(block, pindex, &dte); + } + return TRAVERSE_CONTINUE; +} + +// Compare variables. + +bool +Dataflow::Compare_vars::operator()(const Named_object* no1, + const Named_object* no2) const +{ + if (no1->name() < no2->name()) + return true; + if (no1->name() > no2->name()) + return false; + + // We can have two different variables with the same name. + source_location loc1 = no1->location(); + source_location loc2 = no2->location(); + if (loc1 < loc2) + return false; + if (loc1 > loc2) + return true; + + if (no1 == no2) + return false; + + // We can't have two variables with the same name in the same + // location. + gcc_unreachable(); +} + +// Class Dataflow. + +Dataflow::Dataflow() + : defs_(), refs_() +{ +} + +// Build the dataflow information. + +void +Dataflow::initialize(Gogo* gogo) +{ + Dataflow_traverse_statements dts(this); + gogo->traverse(&dts); +} + +// Add a definition of a variable. + +void +Dataflow::add_def(Named_object* var, Expression* val, Statement* statement, + bool is_init) +{ + Defs* defnull = NULL; + std::pair<Defmap::iterator, bool> ins = + this->defs_.insert(std::make_pair(var, defnull)); + if (ins.second) + ins.first->second = new Defs; + Def def; + def.statement = statement; + def.val = val; + def.is_init = is_init; + ins.first->second->push_back(def); +} + +// Add a reference to a variable. + +void +Dataflow::add_ref(Named_object* var, Statement* statement) +{ + Refs* refnull = NULL; + std::pair<Refmap::iterator, bool> ins = + this->refs_.insert(std::make_pair(var, refnull)); + if (ins.second) + ins.first->second = new Refs; + Ref ref; + ref.statement = statement; + ins.first->second->push_back(ref); +} + +// Return the definitions of a variable. + +const Dataflow::Defs* +Dataflow::find_defs(Named_object* var) const +{ + Defmap::const_iterator p = this->defs_.find(var); + if (p == this->defs_.end()) + return NULL; + else + return p->second; +} + +// Return the references of a variable. + +const Dataflow::Refs* +Dataflow::find_refs(Named_object* var) const +{ + Refmap::const_iterator p = this->refs_.find(var); + if (p == this->refs_.end()) + return NULL; + else + return p->second; +} diff --git a/gcc/go/gofrontend/dataflow.h b/gcc/go/gofrontend/dataflow.h new file mode 100644 index 0000000..a75c8e6 --- /dev/null +++ b/gcc/go/gofrontend/dataflow.h @@ -0,0 +1,91 @@ +// dataflow.h -- Go frontend dataflow. -*- C++ -*- + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +#ifndef GO_DATAFLOW_H +#define GO_DATAFLOW_H + +class Expression; +class Named_object; +class Statement; + +// Dataflow information about the Go program. + +class Dataflow +{ + public: + // A variable definition. + struct Def + { + // The statement where the variable is defined. + Statement* statement; + // The value to which the variable is set. This may be NULL. + Expression* val; + // Whether this is an initialization of the variable. + bool is_init; + }; + + // A variable reference. + struct Ref + { + // The statement where the variable is referenced. + Statement* statement; + }; + + // A list of defs. + typedef std::vector<Def> Defs; + + // A list of refs. + typedef std::vector<Ref> Refs; + + Dataflow(); + + // Initialize the dataflow information. + void + initialize(Gogo*); + + // Add a definition of a variable. STATEMENT assigns a value to + // VAR. VAL is the value if it is known, NULL otherwise. + void + add_def(Named_object* var, Expression* val, Statement* statement, + bool is_init); + + // Add a reference to a variable. VAR is the variable, and + // STATEMENT is the statement which refers to it. + void + add_ref(Named_object* var, Statement* statement); + + // Return the definitions of VAR--the places where it is set. + const Defs* + find_defs(Named_object* var) const; + + // Return the references to VAR--the places where it is used. + const Refs* + find_refs(Named_object* var) const; + + private: + // Order variables in the map. + struct Compare_vars + { + bool + operator()(const Named_object*, const Named_object*) const; + }; + + // Map from variables to a list of defs of the variable. We use a + // map rather than a hash table because the order in which we + // process variables may affect the resulting code. + typedef std::map<Named_object*, Defs*, Compare_vars> Defmap; + + // Map from variables to a list of refs to the vairable. + typedef std::map<Named_object*, Refs*, Compare_vars> Refmap; + + // Variable defs. + Defmap defs_; + // Variable refs; + Refmap refs_; +}; + + +#endif // !defined(GO_DATAFLOW_H) diff --git a/gcc/go/gofrontend/export.cc b/gcc/go/gofrontend/export.cc new file mode 100644 index 0000000..6b42d0c --- /dev/null +++ b/gcc/go/gofrontend/export.cc @@ -0,0 +1,441 @@ +// export.cc -- Export declarations in Go frontend. + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +#include "go-system.h" +#include "sha1.h" + +#ifndef ENABLE_BUILD_WITH_CXX +extern "C" +{ +#endif + +#include "machmode.h" +#include "output.h" +#include "target.h" + +#ifndef ENABLE_BUILD_WITH_CXX +} +#endif + +#include "gogo.h" +#include "types.h" +#include "statements.h" +#include "export.h" + +// This file handles exporting global declarations. + +// Class Export. + +// Version 1 magic number. + +const int Export::v1_magic_len; + +const char Export::v1_magic[Export::v1_magic_len] = + { + 'v', '1', ';', '\n' + }; + +const int Export::v1_checksum_len; + +// Constructor. + +Export::Export(Stream* stream) + : stream_(stream), type_refs_(), type_index_(1) +{ +} + +// A functor to sort Named_object pointers by name. + +struct Sort_bindings +{ + bool + operator()(const Named_object* n1, const Named_object* n2) const + { return n1->name() < n2->name(); } +}; + +// Return true if we should export NO. + +static bool +should_export(Named_object* no) +{ + // We only export objects which are locally defined. + if (no->package() != NULL) + return false; + + // We don't export packages. + if (no->is_package()) + return false; + + // We don't export hidden names. + if (Gogo::is_hidden_name(no->name())) + return false; + + // We don't export nested functions. + if (no->is_function() && no->func_value()->enclosing() != NULL) + return false; + + // We don't export thunks. + if (no->is_function() && Gogo::is_thunk(no)) + return false; + + // Methods are exported with the type, not here. + if (no->is_function() + && no->func_value()->type()->is_method()) + return false; + if (no->is_function_declaration() + && no->func_declaration_value()->type()->is_method()) + return false; + + // Don't export dummy global variables created for initializers when + // used with sinks. + if (no->is_variable() && no->name()[0] == '_' && no->name()[1] == '.') + return false; + + return true; +} + +// Export those identifiers marked for exporting. + +void +Export::export_globals(const std::string& package_name, + const std::string& unique_prefix, + int package_priority, + const std::string& import_init_fn, + const std::set<Import_init>& imported_init_fns, + const Bindings* bindings) +{ + // If there have been any errors so far, don't try to export + // anything. That way the export code doesn't have to worry about + // mismatched types or other confusions. + if (saw_errors()) + return; + + // Export the symbols in sorted order. That will reduce cases where + // irrelevant changes to the source code affect the exported + // interface. + std::vector<Named_object*> exports; + exports.reserve(bindings->size_definitions()); + + for (Bindings::const_definitions_iterator p = bindings->begin_definitions(); + p != bindings->end_definitions(); + ++p) + if (should_export(*p)) + exports.push_back(*p); + + for (Bindings::const_declarations_iterator p = + bindings->begin_declarations(); + p != bindings->end_declarations(); + ++p) + { + // We export a function declaration as it may be implemented in + // supporting C code. We do not export type declarations. + if (p->second->is_function_declaration() + && should_export(p->second)) + exports.push_back(p->second); + } + + std::sort(exports.begin(), exports.end(), Sort_bindings()); + + // Although the export data is readable, at least this version is, + // it is conceptually a binary format. Start with a four byte + // verison number. + this->write_bytes(Export::v1_magic, Export::v1_magic_len); + + // The package name. + this->write_c_string("package "); + this->write_string(package_name); + this->write_c_string(";\n"); + + // The unique prefix. This prefix is used for all global symbols. + this->write_c_string("prefix "); + this->write_string(unique_prefix); + this->write_c_string(";\n"); + + // The package priority. + char buf[100]; + snprintf(buf, sizeof buf, "priority %d;\n", package_priority); + this->write_c_string(buf); + + this->write_imported_init_fns(package_name, package_priority, import_init_fn, + imported_init_fns); + + // FIXME: It might be clever to add something about the processor + // and ABI being used, although ideally any problems in that area + // would be caught by the linker. + + for (std::vector<Named_object*>::const_iterator p = exports.begin(); + p != exports.end(); + ++p) + (*p)->export_named_object(this); + + std::string checksum = this->stream_->checksum(); + std::string s = "checksum "; + for (std::string::const_iterator p = checksum.begin(); + p != checksum.end(); + ++p) + { + unsigned char c = *p; + unsigned int dig = c >> 4; + s += dig < 10 ? '0' + dig : 'A' + dig - 10; + dig = c & 0xf; + s += dig < 10 ? '0' + dig : 'A' + dig - 10; + } + s += ";\n"; + this->stream_->write_checksum(s); +} + +// Write out the import control variables for this package. + +void +Export::write_imported_init_fns( + const std::string& package_name, + int priority, + const std::string& import_init_fn, + const std::set<Import_init>& imported_init_fns) +{ + if (import_init_fn.empty() && imported_init_fns.empty()) + return; + + this->write_c_string("import"); + + if (!import_init_fn.empty()) + { + this->write_c_string(" "); + this->write_string(package_name); + this->write_c_string(" "); + this->write_string(import_init_fn); + char buf[100]; + snprintf(buf, sizeof buf, " %d", priority); + this->write_c_string(buf); + } + + if (!imported_init_fns.empty()) + { + // Sort the list of functions for more consistent output. + std::vector<Import_init> v; + for (std::set<Import_init>::const_iterator p = imported_init_fns.begin(); + p != imported_init_fns.end(); + ++p) + v.push_back(*p); + std::sort(v.begin(), v.end()); + + for (std::vector<Import_init>::const_iterator p = v.begin(); + p != v.end(); + ++p) + { + this->write_c_string(" "); + this->write_string(p->package_name()); + this->write_c_string(" "); + this->write_string(p->init_name()); + char buf[100]; + snprintf(buf, sizeof buf, " %d", p->priority()); + this->write_c_string(buf); + } + } + + this->write_c_string(";\n"); +} + +// Export a type. We have to ensure that on import we create a single +// Named_type node for each named type. We do this by keeping a hash +// table mapping named types to reference numbers. The first time we +// see a named type we assign it a reference number by making an entry +// in the hash table. If we see it again, we just refer to the +// reference number. + +// Named types are, of course, associated with packages. Note that we +// may see a named type when importing one package, and then later see +// the same named type when importing a different package. The home +// package may or may not be imported during this compilation. The +// reference number scheme has to get this all right. Basic approach +// taken from "On the Linearization of Graphs and Writing Symbol +// Files" by Robert Griesemer. + +void +Export::write_type(const Type* type) +{ + // We don't want to assign a reference number to a forward + // declaration to a type which was defined later. + type = type->forwarded(); + + Type_refs::const_iterator p = this->type_refs_.find(type); + if (p != this->type_refs_.end()) + { + // This type was already in the table. + int index = p->second; + gcc_assert(index != 0); + char buf[30]; + snprintf(buf, sizeof buf, "<type %d>", index); + this->write_c_string(buf); + return; + } + + const Named_type* named_type = type->named_type(); + const Forward_declaration_type* forward = type->forward_declaration_type(); + + int index = this->type_index_; + ++this->type_index_; + + char buf[30]; + snprintf(buf, sizeof buf, "<type %d ", index); + this->write_c_string(buf); + + if (named_type != NULL || forward != NULL) + { + const Named_object* named_object; + if (named_type != NULL) + { + // The builtin types should have been predefined. + gcc_assert(named_type->location() != BUILTINS_LOCATION + || (named_type->named_object()->package()->name() + == "unsafe")); + named_object = named_type->named_object(); + } + else + named_object = forward->named_object(); + + const Package* package = named_object->package(); + + std::string s = "\""; + if (package != NULL && !Gogo::is_hidden_name(named_object->name())) + { + s += package->unique_prefix(); + s += '.'; + s += package->name(); + s += '.'; + } + s += named_object->name(); + s += "\" "; + this->write_string(s); + + // We must add a named type to the table now, since the + // definition of the type may refer to the named type via a + // pointer. + this->type_refs_[type] = index; + } + + type->export_type(this); + + this->write_c_string(">"); + + if (named_type == NULL) + this->type_refs_[type] = index; +} + +// Add the builtin types to the export table. + +void +Export::register_builtin_types(Gogo* gogo) +{ + this->register_builtin_type(gogo, "int8", BUILTIN_INT8); + this->register_builtin_type(gogo, "int16", BUILTIN_INT16); + this->register_builtin_type(gogo, "int32", BUILTIN_INT32); + this->register_builtin_type(gogo, "int64", BUILTIN_INT64); + this->register_builtin_type(gogo, "uint8", BUILTIN_UINT8); + this->register_builtin_type(gogo, "uint16", BUILTIN_UINT16); + this->register_builtin_type(gogo, "uint32", BUILTIN_UINT32); + this->register_builtin_type(gogo, "uint64", BUILTIN_UINT64); + this->register_builtin_type(gogo, "float32", BUILTIN_FLOAT32); + this->register_builtin_type(gogo, "float64", BUILTIN_FLOAT64); + this->register_builtin_type(gogo, "complex64", BUILTIN_COMPLEX64); + this->register_builtin_type(gogo, "complex128", BUILTIN_COMPLEX128); + this->register_builtin_type(gogo, "int", BUILTIN_INT); + this->register_builtin_type(gogo, "uint", BUILTIN_UINT); + this->register_builtin_type(gogo, "uintptr", BUILTIN_UINTPTR); + this->register_builtin_type(gogo, "float", BUILTIN_FLOAT); + this->register_builtin_type(gogo, "complex", BUILTIN_COMPLEX); + this->register_builtin_type(gogo, "bool", BUILTIN_BOOL); + this->register_builtin_type(gogo, "string", BUILTIN_STRING); +} + +// Register one builtin type in the export table. + +void +Export::register_builtin_type(Gogo* gogo, const char* name, Builtin_code code) +{ + Named_object* named_object = gogo->lookup_global(name); + gcc_assert(named_object != NULL && named_object->is_type()); + std::pair<Type_refs::iterator, bool> ins = + this->type_refs_.insert(std::make_pair(named_object->type_value(), code)); + gcc_assert(ins.second); + + // We also insert the underlying type. We can see the underlying + // type at least for string and bool. + Type* real_type = named_object->type_value()->real_type(); + ins = this->type_refs_.insert(std::make_pair(real_type, code)); + gcc_assert(ins.second); +} + +// Class Export::Stream. + +Export::Stream::Stream() +{ + this->checksum_ = new sha1_ctx; + memset(this->checksum_, 0, sizeof(sha1_ctx)); + sha1_init_ctx(this->checksum_); +} + +Export::Stream::~Stream() +{ +} + +// Write bytes to the stream. This keeps a checksum of bytes as they +// go by. + +void +Export::Stream::write_and_sum_bytes(const char* bytes, size_t length) +{ + sha1_process_bytes(bytes, length, this->checksum_); + this->do_write(bytes, length); +} + +// Get the checksum. + +std::string +Export::Stream::checksum() +{ + // Use a union to provide the required alignment. + union + { + char checksum[Export::v1_checksum_len]; + long align; + } u; + sha1_finish_ctx(this->checksum_, u.checksum); + return std::string(u.checksum, Export::v1_checksum_len); +} + +// Write the checksum string to the export data. + +void +Export::Stream::write_checksum(const std::string& s) +{ + this->do_write(s.data(), s.length()); +} + +// Class Stream_to_section. + +Stream_to_section::Stream_to_section() + : section_(NULL) +{ +} + +// Write data to a section. + +void +Stream_to_section::do_write(const char* bytes, size_t length) +{ + section* sec = (section*) this->section_; + if (sec == NULL) + { + gcc_assert(targetm.have_named_sections); + + sec = get_section(".go_export", SECTION_DEBUG, NULL); + this->section_ = (void*) sec; + } + + switch_to_section(sec); + assemble_string(bytes, length); +} diff --git a/gcc/go/gofrontend/export.h b/gcc/go/gofrontend/export.h new file mode 100644 index 0000000..90c2465 --- /dev/null +++ b/gcc/go/gofrontend/export.h @@ -0,0 +1,191 @@ +// export.h -- Export declarations in Go frontend. -*- C++ -*- + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +#ifndef GO_EXPORT_H +#define GO_EXPORT_H + +struct sha1_ctx; +class Gogo; +class Import_init; +class Bindings; +class Type; + +// Codes used for the builtin types. These are all negative to make +// them easily distinct from the codes assigned by Export::write_type. +// Note that these codes may not be changed! Changing them would +// break existing export data. + +enum Builtin_code +{ + BUILTIN_INT8 = -1, + BUILTIN_INT16 = -2, + BUILTIN_INT32 = -3, + BUILTIN_INT64 = -4, + BUILTIN_UINT8 = -5, + BUILTIN_UINT16 = -6, + BUILTIN_UINT32 = -7, + BUILTIN_UINT64 = -8, + BUILTIN_FLOAT32 = -9, + BUILTIN_FLOAT64 = -10, + BUILTIN_INT = -11, + BUILTIN_UINT = -12, + BUILTIN_UINTPTR = -13, + BUILTIN_FLOAT = -14, + BUILTIN_BOOL = -15, + BUILTIN_STRING = -16, + BUILTIN_COMPLEX64 = -17, + BUILTIN_COMPLEX128 = -18, + BUILTIN_COMPLEX = -19, + + SMALLEST_BUILTIN_CODE = -19 +}; + +// This class manages exporting Go declarations. It handles the main +// loop of exporting. A pointer to this class is also passed to the +// various specific export implementations. + +class Export +{ + public: + // The Stream class is an interface used to output the exported + // information. The caller should instantiate a child of this + // class. + class Stream + { + public: + Stream(); + virtual ~Stream(); + + // Write a string. + void + write_string(const std::string& s) + { this->write_and_sum_bytes(s.data(), s.length()); } + + // Write a nul terminated string. + void + write_c_string(const char* s) + { this->write_and_sum_bytes(s, strlen(s)); } + + // Write some bytes. + void + write_bytes(const char* bytes, size_t length) + { this->write_and_sum_bytes(bytes, length); } + + // Return the raw bytes of the checksum data. + std::string + checksum(); + + // Write a checksum string to the stream. This will be called at + // the end of the other output. + void + write_checksum(const std::string&); + + protected: + // This function is called with data to export. This data must be + // made available as a contiguous stream for the importer. + virtual void + do_write(const char* bytes, size_t length) = 0; + + private: + void + write_and_sum_bytes(const char*, size_t); + + // The checksum. + sha1_ctx* checksum_; + }; + + Export(Stream*); + + // The magic code for version 1 export data. + static const int v1_magic_len = 4; + static const char v1_magic[v1_magic_len]; + + // The length of the v1 checksum string. + static const int v1_checksum_len = 20; + + // Register the builtin types. + void + register_builtin_types(Gogo*); + + // Export the identifiers in BINDINGS which are marked for export. + // The exporting is done via a series of calls to THIS->STREAM_. If + // is nothing to export, this->stream_->write will not be called. + // UNIQUE_PREFIX is a prefix for all global symbols. + // PACKAGE_PRIORITY is the priority to use for this package. + // IMPORT_INIT_FN is the name of the import initialization function + // for this package; it will be empty if none is needed. + // IMPORTED_INIT_FNS is the list of initialization functions for + // imported packages. + void + export_globals(const std::string& package_name, + const std::string& unique_prefix, + int package_priority, + const std::string& import_init_fn, + const std::set<Import_init>& imported_init_fns, + const Bindings* bindings); + + // Write a string to the export stream. + void + write_string(const std::string& s) + { this->stream_->write_string(s); } + + // Write a nul terminated string to the export stream. + void + write_c_string(const char* s) + { this->stream_->write_c_string(s); } + + // Write some bytes to the export stream. + void + write_bytes(const char* bytes, size_t length) + { this->stream_->write_bytes(bytes, length); } + + // Write out a type. This handles references back to previous + // definitions. + void + write_type(const Type*); + + private: + Export(const Export&); + Export& operator=(const Export&); + + // Write out the imported initialization functions. + void + write_imported_init_fns(const std::string& package_name, int priority, + const std::string&, const std::set<Import_init>&); + + // Register one builtin type. + void + register_builtin_type(Gogo*, const char* name, Builtin_code); + + // Mapping from Type objects to a constant index. + typedef Unordered_map(const Type*, int) Type_refs; + + // The stream to which we are writing data. + Stream* stream_; + // Type mappings. + Type_refs type_refs_; + // Index number of next type. + int type_index_; +}; + +// An export streamer which puts the export stream in a named section. + +class Stream_to_section : public Export::Stream +{ + public: + Stream_to_section(); + + protected: + void + do_write(const char*, size_t); + + private: + // The section we are writing to; this is really union section + // defined in output.h. + void* section_; +}; + +#endif // !defined(GO_EXPORT_H) diff --git a/gcc/go/gofrontend/expressions.cc b/gcc/go/gofrontend/expressions.cc new file mode 100644 index 0000000..f35b3639 --- /dev/null +++ b/gcc/go/gofrontend/expressions.cc @@ -0,0 +1,12264 @@ +// expressions.cc -- Go frontend expression handling. + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +#include "go-system.h" + +#include <gmp.h> + +#ifndef ENABLE_BUILD_WITH_CXX +extern "C" +{ +#endif + +#include "toplev.h" +#include "intl.h" +#include "tree.h" +#include "gimple.h" +#include "tree-iterator.h" +#include "convert.h" +#include "real.h" +#include "realmpfr.h" +#include "tm.h" +#include "tm_p.h" + +#ifndef ENABLE_BUILD_WITH_CXX +} +#endif + +#include "go-c.h" +#include "gogo.h" +#include "types.h" +#include "export.h" +#include "import.h" +#include "statements.h" +#include "lex.h" +#include "expressions.h" + +// Class Expression. + +Expression::Expression(Expression_classification classification, + source_location location) + : classification_(classification), location_(location) +{ +} + +Expression::~Expression() +{ +} + +// If this expression has a constant integer value, return it. + +bool +Expression::integer_constant_value(bool iota_is_constant, mpz_t val, + Type** ptype) const +{ + *ptype = NULL; + return this->do_integer_constant_value(iota_is_constant, val, ptype); +} + +// If this expression has a constant floating point value, return it. + +bool +Expression::float_constant_value(mpfr_t val, Type** ptype) const +{ + *ptype = NULL; + if (this->do_float_constant_value(val, ptype)) + return true; + mpz_t ival; + mpz_init(ival); + Type* t; + bool ret; + if (!this->do_integer_constant_value(false, ival, &t)) + ret = false; + else + { + mpfr_set_z(val, ival, GMP_RNDN); + ret = true; + } + mpz_clear(ival); + return ret; +} + +// If this expression has a constant complex value, return it. + +bool +Expression::complex_constant_value(mpfr_t real, mpfr_t imag, + Type** ptype) const +{ + *ptype = NULL; + if (this->do_complex_constant_value(real, imag, ptype)) + return true; + Type *t; + if (this->float_constant_value(real, &t)) + { + mpfr_set_ui(imag, 0, GMP_RNDN); + return true; + } + return false; +} + +// Traverse the expressions. + +int +Expression::traverse(Expression** pexpr, Traverse* traverse) +{ + Expression* expr = *pexpr; + if ((traverse->traverse_mask() & Traverse::traverse_expressions) != 0) + { + int t = traverse->expression(pexpr); + if (t == TRAVERSE_EXIT) + return TRAVERSE_EXIT; + else if (t == TRAVERSE_SKIP_COMPONENTS) + return TRAVERSE_CONTINUE; + } + return expr->do_traverse(traverse); +} + +// Traverse subexpressions of this expression. + +int +Expression::traverse_subexpressions(Traverse* traverse) +{ + return this->do_traverse(traverse); +} + +// Default implementation for do_traverse for child classes. + +int +Expression::do_traverse(Traverse*) +{ + return TRAVERSE_CONTINUE; +} + +// This virtual function is called by the parser if the value of this +// expression is being discarded. By default, we warn. Expressions +// with side effects override. + +void +Expression::do_discarding_value() +{ + this->warn_about_unused_value(); +} + +// This virtual function is called to export expressions. This will +// only be used by expressions which may be constant. + +void +Expression::do_export(Export*) const +{ + gcc_unreachable(); +} + +// Warn that the value of the expression is not used. + +void +Expression::warn_about_unused_value() +{ + warning_at(this->location(), OPT_Wunused_value, "value computed is not used"); +} + +// Note that this expression is an error. This is called by children +// when they discover an error. + +void +Expression::set_is_error() +{ + this->classification_ = EXPRESSION_ERROR; +} + +// For children to call to report an error conveniently. + +void +Expression::report_error(const char* msg) +{ + error_at(this->location_, "%s", msg); + this->set_is_error(); +} + +// Set types of variables and constants. This is implemented by the +// child class. + +void +Expression::determine_type(const Type_context* context) +{ + this->do_determine_type(context); +} + +// Set types when there is no context. + +void +Expression::determine_type_no_context() +{ + Type_context context; + this->do_determine_type(&context); +} + +// Return a tree handling any conversions which must be done during +// assignment. + +tree +Expression::convert_for_assignment(Translate_context* context, Type* lhs_type, + Type* rhs_type, tree rhs_tree, + source_location location) +{ + if (lhs_type == rhs_type) + return rhs_tree; + + if (lhs_type->is_error_type() || rhs_type->is_error_type()) + return error_mark_node; + + if (lhs_type->is_undefined() || rhs_type->is_undefined()) + { + // Make sure we report the error. + lhs_type->base(); + rhs_type->base(); + return error_mark_node; + } + + if (rhs_tree == error_mark_node || TREE_TYPE(rhs_tree) == error_mark_node) + return error_mark_node; + + Gogo* gogo = context->gogo(); + + tree lhs_type_tree = lhs_type->get_tree(gogo); + if (lhs_type_tree == error_mark_node) + return error_mark_node; + + if (lhs_type->interface_type() != NULL) + { + if (rhs_type->interface_type() == NULL) + return Expression::convert_type_to_interface(context, lhs_type, + rhs_type, rhs_tree, + location); + else + return Expression::convert_interface_to_interface(context, lhs_type, + rhs_type, rhs_tree, + false, location); + } + else if (rhs_type->interface_type() != NULL) + return Expression::convert_interface_to_type(context, lhs_type, rhs_type, + rhs_tree, location); + else if (lhs_type->is_open_array_type() + && rhs_type->is_nil_type()) + { + // Assigning nil to an open array. + gcc_assert(TREE_CODE(lhs_type_tree) == RECORD_TYPE); + + VEC(constructor_elt,gc)* init = VEC_alloc(constructor_elt, gc, 3); + + constructor_elt* elt = VEC_quick_push(constructor_elt, init, NULL); + tree field = TYPE_FIELDS(lhs_type_tree); + gcc_assert(strcmp(IDENTIFIER_POINTER(DECL_NAME(field)), + "__values") == 0); + elt->index = field; + elt->value = fold_convert(TREE_TYPE(field), null_pointer_node); + + elt = VEC_quick_push(constructor_elt, init, NULL); + field = DECL_CHAIN(field); + gcc_assert(strcmp(IDENTIFIER_POINTER(DECL_NAME(field)), + "__count") == 0); + elt->index = field; + elt->value = fold_convert(TREE_TYPE(field), integer_zero_node); + + elt = VEC_quick_push(constructor_elt, init, NULL); + field = DECL_CHAIN(field); + gcc_assert(strcmp(IDENTIFIER_POINTER(DECL_NAME(field)), + "__capacity") == 0); + elt->index = field; + elt->value = fold_convert(TREE_TYPE(field), integer_zero_node); + + tree val = build_constructor(lhs_type_tree, init); + TREE_CONSTANT(val) = 1; + + return val; + } + else if (rhs_type->is_nil_type()) + { + // The left hand side should be a pointer type at the tree + // level. + gcc_assert(POINTER_TYPE_P(lhs_type_tree)); + return fold_convert(lhs_type_tree, null_pointer_node); + } + else if (lhs_type_tree == TREE_TYPE(rhs_tree)) + { + // No conversion is needed. + return rhs_tree; + } + else if (POINTER_TYPE_P(lhs_type_tree) + || INTEGRAL_TYPE_P(lhs_type_tree) + || SCALAR_FLOAT_TYPE_P(lhs_type_tree) + || COMPLEX_FLOAT_TYPE_P(lhs_type_tree)) + return fold_convert_loc(location, lhs_type_tree, rhs_tree); + else if (TREE_CODE(lhs_type_tree) == RECORD_TYPE + && TREE_CODE(TREE_TYPE(rhs_tree)) == RECORD_TYPE) + { + // This conversion must be permitted by Go, or we wouldn't have + // gotten here. + gcc_assert(int_size_in_bytes(lhs_type_tree) + == int_size_in_bytes(TREE_TYPE(rhs_tree))); + return fold_build1_loc(location, VIEW_CONVERT_EXPR, lhs_type_tree, + rhs_tree); + } + else + { + gcc_assert(useless_type_conversion_p(lhs_type_tree, TREE_TYPE(rhs_tree))); + return rhs_tree; + } +} + +// Return a tree for a conversion from a non-interface type to an +// interface type. + +tree +Expression::convert_type_to_interface(Translate_context* context, + Type* lhs_type, Type* rhs_type, + tree rhs_tree, source_location location) +{ + Gogo* gogo = context->gogo(); + Interface_type* lhs_interface_type = lhs_type->interface_type(); + bool lhs_is_empty = lhs_interface_type->is_empty(); + + // Since RHS_TYPE is a static type, we can create the interface + // method table at compile time. + + // When setting an interface to nil, we just set both fields to + // NULL. + if (rhs_type->is_nil_type()) + return lhs_type->get_init_tree(gogo, false); + + // This should have been checked already. + gcc_assert(lhs_interface_type->implements_interface(rhs_type, NULL)); + + tree lhs_type_tree = lhs_type->get_tree(gogo); + if (lhs_type_tree == error_mark_node) + return error_mark_node; + + // An interface is a tuple. If LHS_TYPE is an empty interface type, + // then the first field is the type descriptor for RHS_TYPE. + // Otherwise it is the interface method table for RHS_TYPE. + tree first_field_value; + if (lhs_is_empty) + first_field_value = rhs_type->type_descriptor_pointer(gogo); + else + { + // Build the interface method table for this interface and this + // object type: a list of function pointers for each interface + // method. + Named_type* rhs_named_type = rhs_type->named_type(); + bool is_pointer = false; + if (rhs_named_type == NULL) + { + rhs_named_type = rhs_type->deref()->named_type(); + is_pointer = true; + } + tree method_table; + if (rhs_named_type == NULL) + method_table = null_pointer_node; + else + method_table = + rhs_named_type->interface_method_table(gogo, lhs_interface_type, + is_pointer); + first_field_value = fold_convert_loc(location, const_ptr_type_node, + method_table); + } + + // Start building a constructor for the value we will return. + + VEC(constructor_elt,gc)* init = VEC_alloc(constructor_elt, gc, 2); + + constructor_elt* elt = VEC_quick_push(constructor_elt, init, NULL); + tree field = TYPE_FIELDS(lhs_type_tree); + gcc_assert(strcmp(IDENTIFIER_POINTER(DECL_NAME(field)), + (lhs_is_empty ? "__type_descriptor" : "__methods")) == 0); + elt->index = field; + elt->value = fold_convert_loc(location, TREE_TYPE(field), first_field_value); + + elt = VEC_quick_push(constructor_elt, init, NULL); + field = DECL_CHAIN(field); + gcc_assert(strcmp(IDENTIFIER_POINTER(DECL_NAME(field)), "__object") == 0); + elt->index = field; + + if (rhs_type->points_to() != NULL) + { + // We are assigning a pointer to the interface; the interface + // holds the pointer itself. + elt->value = rhs_tree; + return build_constructor(lhs_type_tree, init); + } + + // We are assigning a non-pointer value to the interface; the + // interface gets a copy of the value in the heap. + + tree object_size = TYPE_SIZE_UNIT(TREE_TYPE(rhs_tree)); + + tree space = gogo->allocate_memory(rhs_type, object_size, location); + space = fold_convert_loc(location, build_pointer_type(TREE_TYPE(rhs_tree)), + space); + space = save_expr(space); + + tree ref = build_fold_indirect_ref_loc(location, space); + TREE_THIS_NOTRAP(ref) = 1; + tree set = fold_build2_loc(location, MODIFY_EXPR, void_type_node, + ref, rhs_tree); + + elt->value = fold_convert_loc(location, TREE_TYPE(field), space); + + return build2(COMPOUND_EXPR, lhs_type_tree, set, + build_constructor(lhs_type_tree, init)); +} + +// Return a tree for the type descriptor of RHS_TREE, which has +// interface type RHS_TYPE. If RHS_TREE is nil the result will be +// NULL. + +tree +Expression::get_interface_type_descriptor(Translate_context*, + Type* rhs_type, tree rhs_tree, + source_location location) +{ + tree rhs_type_tree = TREE_TYPE(rhs_tree); + gcc_assert(TREE_CODE(rhs_type_tree) == RECORD_TYPE); + tree rhs_field = TYPE_FIELDS(rhs_type_tree); + tree v = build3(COMPONENT_REF, TREE_TYPE(rhs_field), rhs_tree, rhs_field, + NULL_TREE); + if (rhs_type->interface_type()->is_empty()) + { + gcc_assert(strcmp(IDENTIFIER_POINTER(DECL_NAME(rhs_field)), + "__type_descriptor") == 0); + return v; + } + + gcc_assert(strcmp(IDENTIFIER_POINTER(DECL_NAME(rhs_field)), "__methods") + == 0); + gcc_assert(POINTER_TYPE_P(TREE_TYPE(v))); + v = save_expr(v); + tree v1 = build_fold_indirect_ref_loc(location, v); + gcc_assert(TREE_CODE(TREE_TYPE(v1)) == RECORD_TYPE); + tree f = TYPE_FIELDS(TREE_TYPE(v1)); + gcc_assert(strcmp(IDENTIFIER_POINTER(DECL_NAME(f)), "__type_descriptor") + == 0); + v1 = build3(COMPONENT_REF, TREE_TYPE(f), v1, f, NULL_TREE); + + tree eq = fold_build2_loc(location, EQ_EXPR, boolean_type_node, v, + fold_convert_loc(location, TREE_TYPE(v), + null_pointer_node)); + tree n = fold_convert_loc(location, TREE_TYPE(v1), null_pointer_node); + return fold_build3_loc(location, COND_EXPR, TREE_TYPE(v1), + eq, n, v1); +} + +// Return a tree for the conversion of an interface type to an +// interface type. + +tree +Expression::convert_interface_to_interface(Translate_context* context, + Type *lhs_type, Type *rhs_type, + tree rhs_tree, bool for_type_guard, + source_location location) +{ + Gogo* gogo = context->gogo(); + Interface_type* lhs_interface_type = lhs_type->interface_type(); + bool lhs_is_empty = lhs_interface_type->is_empty(); + + tree lhs_type_tree = lhs_type->get_tree(gogo); + if (lhs_type_tree == error_mark_node) + return error_mark_node; + + // In the general case this requires runtime examination of the type + // method table to match it up with the interface methods. + + // FIXME: If all of the methods in the right hand side interface + // also appear in the left hand side interface, then we don't need + // to do a runtime check, although we still need to build a new + // method table. + + // Get the type descriptor for the right hand side. This will be + // NULL for a nil interface. + + if (!DECL_P(rhs_tree)) + rhs_tree = save_expr(rhs_tree); + + tree rhs_type_descriptor = + Expression::get_interface_type_descriptor(context, rhs_type, rhs_tree, + location); + + // The result is going to be a two element constructor. + + VEC(constructor_elt,gc)* init = VEC_alloc(constructor_elt, gc, 2); + + constructor_elt* elt = VEC_quick_push(constructor_elt, init, NULL); + tree field = TYPE_FIELDS(lhs_type_tree); + elt->index = field; + + if (for_type_guard) + { + // A type assertion fails when converting a nil interface. + tree lhs_type_descriptor = lhs_type->type_descriptor_pointer(gogo); + static tree assert_interface_decl; + tree call = Gogo::call_builtin(&assert_interface_decl, + location, + "__go_assert_interface", + 2, + ptr_type_node, + TREE_TYPE(lhs_type_descriptor), + lhs_type_descriptor, + TREE_TYPE(rhs_type_descriptor), + rhs_type_descriptor); + // This will panic if the interface conversion fails. + TREE_NOTHROW(assert_interface_decl) = 0; + elt->value = fold_convert_loc(location, TREE_TYPE(field), call); + } + else if (lhs_is_empty) + { + // A convertion to an empty interface always succeeds, and the + // first field is just the type descriptor of the object. + gcc_assert(strcmp(IDENTIFIER_POINTER(DECL_NAME(field)), + "__type_descriptor") == 0); + gcc_assert(TREE_TYPE(field) == TREE_TYPE(rhs_type_descriptor)); + elt->value = rhs_type_descriptor; + } + else + { + // A conversion to a non-empty interface may fail, but unlike a + // type assertion converting nil will always succeed. + gcc_assert(strcmp(IDENTIFIER_POINTER(DECL_NAME(field)), "__methods") + == 0); + tree lhs_type_descriptor = lhs_type->type_descriptor_pointer(gogo); + static tree convert_interface_decl; + tree call = Gogo::call_builtin(&convert_interface_decl, + location, + "__go_convert_interface", + 2, + ptr_type_node, + TREE_TYPE(lhs_type_descriptor), + lhs_type_descriptor, + TREE_TYPE(rhs_type_descriptor), + rhs_type_descriptor); + // This will panic if the interface conversion fails. + TREE_NOTHROW(convert_interface_decl) = 0; + elt->value = fold_convert_loc(location, TREE_TYPE(field), call); + } + + // The second field is simply the object pointer. + + elt = VEC_quick_push(constructor_elt, init, NULL); + field = DECL_CHAIN(field); + gcc_assert(strcmp(IDENTIFIER_POINTER(DECL_NAME(field)), "__object") == 0); + elt->index = field; + + tree rhs_type_tree = TREE_TYPE(rhs_tree); + gcc_assert(TREE_CODE(rhs_type_tree) == RECORD_TYPE); + tree rhs_field = DECL_CHAIN(TYPE_FIELDS(rhs_type_tree)); + gcc_assert(strcmp(IDENTIFIER_POINTER(DECL_NAME(rhs_field)), "__object") == 0); + elt->value = build3(COMPONENT_REF, TREE_TYPE(rhs_field), rhs_tree, rhs_field, + NULL_TREE); + + return build_constructor(lhs_type_tree, init); +} + +// Return a tree for the conversion of an interface type to a +// non-interface type. + +tree +Expression::convert_interface_to_type(Translate_context* context, + Type *lhs_type, Type* rhs_type, + tree rhs_tree, source_location location) +{ + Gogo* gogo = context->gogo(); + tree rhs_type_tree = TREE_TYPE(rhs_tree); + + tree lhs_type_tree = lhs_type->get_tree(gogo); + if (lhs_type_tree == error_mark_node) + return error_mark_node; + + // Call a function to check that the type is valid. The function + // will panic with an appropriate runtime type error if the type is + // not valid. + + tree lhs_type_descriptor = lhs_type->type_descriptor_pointer(gogo); + + if (!DECL_P(rhs_tree)) + rhs_tree = save_expr(rhs_tree); + + tree rhs_type_descriptor = + Expression::get_interface_type_descriptor(context, rhs_type, rhs_tree, + location); + + tree rhs_inter_descriptor = rhs_type->type_descriptor_pointer(gogo); + + static tree check_interface_type_decl; + tree call = Gogo::call_builtin(&check_interface_type_decl, + location, + "__go_check_interface_type", + 3, + void_type_node, + TREE_TYPE(lhs_type_descriptor), + lhs_type_descriptor, + TREE_TYPE(rhs_type_descriptor), + rhs_type_descriptor, + TREE_TYPE(rhs_inter_descriptor), + rhs_inter_descriptor); + // This call will panic if the conversion is invalid. + TREE_NOTHROW(check_interface_type_decl) = 0; + + // If the call succeeds, pull out the value. + gcc_assert(TREE_CODE(rhs_type_tree) == RECORD_TYPE); + tree rhs_field = DECL_CHAIN(TYPE_FIELDS(rhs_type_tree)); + gcc_assert(strcmp(IDENTIFIER_POINTER(DECL_NAME(rhs_field)), "__object") == 0); + tree val = build3(COMPONENT_REF, TREE_TYPE(rhs_field), rhs_tree, rhs_field, + NULL_TREE); + + // If the value is a pointer, then it is the value we want. + // Otherwise it points to the value. + if (lhs_type->points_to() == NULL) + { + val = fold_convert_loc(location, build_pointer_type(lhs_type_tree), val); + val = build_fold_indirect_ref_loc(location, val); + } + + return build2(COMPOUND_EXPR, lhs_type_tree, call, + fold_convert_loc(location, lhs_type_tree, val)); +} + +// Convert an expression to a tree. This is implemented by the child +// class. Not that it is not in general safe to call this multiple +// times for a single expression, but that we don't catch such errors. + +tree +Expression::get_tree(Translate_context* context) +{ + // The child may have marked this expression as having an error. + if (this->classification_ == EXPRESSION_ERROR) + return error_mark_node; + + return this->do_get_tree(context); +} + +// Return a tree for VAL in TYPE. + +tree +Expression::integer_constant_tree(mpz_t val, tree type) +{ + if (type == error_mark_node) + return error_mark_node; + else if (TREE_CODE(type) == INTEGER_TYPE) + return double_int_to_tree(type, + mpz_get_double_int(type, val, true)); + else if (TREE_CODE(type) == REAL_TYPE) + { + mpfr_t fval; + mpfr_init_set_z(fval, val, GMP_RNDN); + tree ret = Expression::float_constant_tree(fval, type); + mpfr_clear(fval); + return ret; + } + else if (TREE_CODE(type) == COMPLEX_TYPE) + { + mpfr_t fval; + mpfr_init_set_z(fval, val, GMP_RNDN); + tree real = Expression::float_constant_tree(fval, TREE_TYPE(type)); + mpfr_clear(fval); + tree imag = build_real_from_int_cst(TREE_TYPE(type), + integer_zero_node); + return build_complex(type, real, imag); + } + else + gcc_unreachable(); +} + +// Return a tree for VAL in TYPE. + +tree +Expression::float_constant_tree(mpfr_t val, tree type) +{ + if (type == error_mark_node) + return error_mark_node; + else if (TREE_CODE(type) == INTEGER_TYPE) + { + mpz_t ival; + mpz_init(ival); + mpfr_get_z(ival, val, GMP_RNDN); + tree ret = Expression::integer_constant_tree(ival, type); + mpz_clear(ival); + return ret; + } + else if (TREE_CODE(type) == REAL_TYPE) + { + REAL_VALUE_TYPE r1; + real_from_mpfr(&r1, val, type, GMP_RNDN); + REAL_VALUE_TYPE r2; + real_convert(&r2, TYPE_MODE(type), &r1); + return build_real(type, r2); + } + else if (TREE_CODE(type) == COMPLEX_TYPE) + { + REAL_VALUE_TYPE r1; + real_from_mpfr(&r1, val, TREE_TYPE(type), GMP_RNDN); + REAL_VALUE_TYPE r2; + real_convert(&r2, TYPE_MODE(TREE_TYPE(type)), &r1); + tree imag = build_real_from_int_cst(TREE_TYPE(type), + integer_zero_node); + return build_complex(type, build_real(TREE_TYPE(type), r2), imag); + } + else + gcc_unreachable(); +} + +// Return a tree for REAL/IMAG in TYPE. + +tree +Expression::complex_constant_tree(mpfr_t real, mpfr_t imag, tree type) +{ + if (TREE_CODE(type) == COMPLEX_TYPE) + { + REAL_VALUE_TYPE r1; + real_from_mpfr(&r1, real, TREE_TYPE(type), GMP_RNDN); + REAL_VALUE_TYPE r2; + real_convert(&r2, TYPE_MODE(TREE_TYPE(type)), &r1); + + REAL_VALUE_TYPE r3; + real_from_mpfr(&r3, imag, TREE_TYPE(type), GMP_RNDN); + REAL_VALUE_TYPE r4; + real_convert(&r4, TYPE_MODE(TREE_TYPE(type)), &r3); + + return build_complex(type, build_real(TREE_TYPE(type), r2), + build_real(TREE_TYPE(type), r4)); + } + else + gcc_unreachable(); +} + +// Return a tree which evaluates to true if VAL, of arbitrary integer +// type, is negative or is more than the maximum value of BOUND_TYPE. +// If SOFAR is not NULL, it is or'red into the result. The return +// value may be NULL if SOFAR is NULL. + +tree +Expression::check_bounds(tree val, tree bound_type, tree sofar, + source_location loc) +{ + tree val_type = TREE_TYPE(val); + tree ret = NULL_TREE; + + if (!TYPE_UNSIGNED(val_type)) + { + ret = fold_build2_loc(loc, LT_EXPR, boolean_type_node, val, + build_int_cst(val_type, 0)); + if (ret == boolean_false_node) + ret = NULL_TREE; + } + + if ((TYPE_UNSIGNED(val_type) && !TYPE_UNSIGNED(bound_type)) + || TYPE_SIZE(val_type) > TYPE_SIZE(bound_type)) + { + tree max = TYPE_MAX_VALUE(bound_type); + tree big = fold_build2_loc(loc, GT_EXPR, boolean_type_node, val, + fold_convert_loc(loc, val_type, max)); + if (big == boolean_false_node) + ; + else if (ret == NULL_TREE) + ret = big; + else + ret = fold_build2_loc(loc, TRUTH_OR_EXPR, boolean_type_node, + ret, big); + } + + if (ret == NULL_TREE) + return sofar; + else if (sofar == NULL_TREE) + return ret; + else + return fold_build2_loc(loc, TRUTH_OR_EXPR, boolean_type_node, + sofar, ret); +} + +// Error expressions. This are used to avoid cascading errors. + +class Error_expression : public Expression +{ + public: + Error_expression(source_location location) + : Expression(EXPRESSION_ERROR, location) + { } + + protected: + bool + do_is_constant() const + { return true; } + + bool + do_integer_constant_value(bool, mpz_t val, Type**) const + { + mpz_set_ui(val, 0); + return true; + } + + bool + do_float_constant_value(mpfr_t val, Type**) const + { + mpfr_set_ui(val, 0, GMP_RNDN); + return true; + } + + bool + do_complex_constant_value(mpfr_t real, mpfr_t imag, Type**) const + { + mpfr_set_ui(real, 0, GMP_RNDN); + mpfr_set_ui(imag, 0, GMP_RNDN); + return true; + } + + void + do_discarding_value() + { } + + Type* + do_type() + { return Type::make_error_type(); } + + void + do_determine_type(const Type_context*) + { } + + Expression* + do_copy() + { return this; } + + bool + do_is_addressable() const + { return true; } + + tree + do_get_tree(Translate_context*) + { return error_mark_node; } +}; + +Expression* +Expression::make_error(source_location location) +{ + return new Error_expression(location); +} + +// An expression which is really a type. This is used during parsing. +// It is an error if these survive after lowering. + +class +Type_expression : public Expression +{ + public: + Type_expression(Type* type, source_location location) + : Expression(EXPRESSION_TYPE, location), + type_(type) + { } + + protected: + int + do_traverse(Traverse* traverse) + { return Type::traverse(this->type_, traverse); } + + Type* + do_type() + { return this->type_; } + + void + do_determine_type(const Type_context*) + { } + + void + do_check_types(Gogo*) + { this->report_error(_("invalid use of type")); } + + Expression* + do_copy() + { return this; } + + tree + do_get_tree(Translate_context*) + { gcc_unreachable(); } + + private: + // The type which we are representing as an expression. + Type* type_; +}; + +Expression* +Expression::make_type(Type* type, source_location location) +{ + return new Type_expression(type, location); +} + +// Class Var_expression. + +// Lower a variable expression. Here we just make sure that the +// initialization expression of the variable has been lowered. This +// ensures that we will be able to determine the type of the variable +// if necessary. + +Expression* +Var_expression::do_lower(Gogo* gogo, Named_object* function, int) +{ + if (this->variable_->is_variable()) + { + Variable* var = this->variable_->var_value(); + // This is either a local variable or a global variable. A + // reference to a variable which is local to an enclosing + // function will be a reference to a field in a closure. + if (var->is_global()) + function = NULL; + var->lower_init_expression(gogo, function); + } + return this; +} + +// Return the name of the variable. + +const std::string& +Var_expression::name() const +{ + return this->variable_->name(); +} + +// Return the type of a reference to a variable. + +Type* +Var_expression::do_type() +{ + if (this->variable_->is_variable()) + return this->variable_->var_value()->type(); + else if (this->variable_->is_result_variable()) + return this->variable_->result_var_value()->type(); + else + gcc_unreachable(); +} + +// Something takes the address of this variable. This means that we +// may want to move the variable onto the heap. + +void +Var_expression::do_address_taken(bool escapes) +{ + if (!escapes) + ; + else if (this->variable_->is_variable()) + this->variable_->var_value()->set_address_taken(); + else if (this->variable_->is_result_variable()) + this->variable_->result_var_value()->set_address_taken(); + else + gcc_unreachable(); +} + +// Get the tree for a reference to a variable. + +tree +Var_expression::do_get_tree(Translate_context* context) +{ + return this->variable_->get_tree(context->gogo(), context->function()); +} + +// Make a reference to a variable in an expression. + +Expression* +Expression::make_var_reference(Named_object* var, source_location location) +{ + if (var->is_sink()) + return Expression::make_sink(location); + + // FIXME: Creating a new object for each reference to a variable is + // wasteful. + return new Var_expression(var, location); +} + +// Class Temporary_reference_expression. + +// The type. + +Type* +Temporary_reference_expression::do_type() +{ + return this->statement_->type(); +} + +// Called if something takes the address of this temporary variable. +// We never have to move temporary variables to the heap, but we do +// need to know that they must live in the stack rather than in a +// register. + +void +Temporary_reference_expression::do_address_taken(bool) +{ + this->statement_->set_is_address_taken(); +} + +// Get a tree referring to the variable. + +tree +Temporary_reference_expression::do_get_tree(Translate_context*) +{ + return this->statement_->get_decl(); +} + +// Make a reference to a temporary variable. + +Expression* +Expression::make_temporary_reference(Temporary_statement* statement, + source_location location) +{ + return new Temporary_reference_expression(statement, location); +} + +// A sink expression--a use of the blank identifier _. + +class Sink_expression : public Expression +{ + public: + Sink_expression(source_location location) + : Expression(EXPRESSION_SINK, location), + type_(NULL), var_(NULL_TREE) + { } + + protected: + void + do_discarding_value() + { } + + Type* + do_type(); + + void + do_determine_type(const Type_context*); + + Expression* + do_copy() + { return new Sink_expression(this->location()); } + + tree + do_get_tree(Translate_context*); + + private: + // The type of this sink variable. + Type* type_; + // The temporary variable we generate. + tree var_; +}; + +// Return the type of a sink expression. + +Type* +Sink_expression::do_type() +{ + if (this->type_ == NULL) + return Type::make_sink_type(); + return this->type_; +} + +// Determine the type of a sink expression. + +void +Sink_expression::do_determine_type(const Type_context* context) +{ + if (context->type != NULL) + this->type_ = context->type; +} + +// Return a temporary variable for a sink expression. This will +// presumably be a write-only variable which the middle-end will drop. + +tree +Sink_expression::do_get_tree(Translate_context* context) +{ + if (this->var_ == NULL_TREE) + { + gcc_assert(this->type_ != NULL && !this->type_->is_sink_type()); + this->var_ = create_tmp_var(this->type_->get_tree(context->gogo()), + "blank"); + } + return this->var_; +} + +// Make a sink expression. + +Expression* +Expression::make_sink(source_location location) +{ + return new Sink_expression(location); +} + +// Class Func_expression. + +// FIXME: Can a function expression appear in a constant expression? +// The value is unchanging. Initializing a constant to the address of +// a function seems like it could work, though there might be little +// point to it. + +// Return the name of the function. + +const std::string& +Func_expression::name() const +{ + return this->function_->name(); +} + +// Traversal. + +int +Func_expression::do_traverse(Traverse* traverse) +{ + return (this->closure_ == NULL + ? TRAVERSE_CONTINUE + : Expression::traverse(&this->closure_, traverse)); +} + +// Return the type of a function expression. + +Type* +Func_expression::do_type() +{ + if (this->function_->is_function()) + return this->function_->func_value()->type(); + else if (this->function_->is_function_declaration()) + return this->function_->func_declaration_value()->type(); + else + gcc_unreachable(); +} + +// Get the tree for a function expression without evaluating the +// closure. + +tree +Func_expression::get_tree_without_closure(Gogo* gogo) +{ + Function_type* fntype; + if (this->function_->is_function()) + fntype = this->function_->func_value()->type(); + else if (this->function_->is_function_declaration()) + fntype = this->function_->func_declaration_value()->type(); + else + gcc_unreachable(); + + // Builtin functions are handled specially by Call_expression. We + // can't take their address. + if (fntype->is_builtin()) + { + error_at(this->location(), "invalid use of special builtin function %qs", + this->function_->name().c_str()); + return error_mark_node; + } + + Named_object* no = this->function_; + tree id = this->function_->get_id(gogo); + tree fndecl; + if (no->is_function()) + fndecl = no->func_value()->get_or_make_decl(gogo, no, id); + else if (no->is_function_declaration()) + fndecl = no->func_declaration_value()->get_or_make_decl(gogo, no, id); + else + gcc_unreachable(); + + return build_fold_addr_expr_loc(this->location(), fndecl); +} + +// Get the tree for a function expression. This is used when we take +// the address of a function rather than simply calling it. If the +// function has a closure, we must use a trampoline. + +tree +Func_expression::do_get_tree(Translate_context* context) +{ + Gogo* gogo = context->gogo(); + + tree fnaddr = this->get_tree_without_closure(gogo); + if (fnaddr == error_mark_node) + return error_mark_node; + + gcc_assert(TREE_CODE(fnaddr) == ADDR_EXPR + && TREE_CODE(TREE_OPERAND(fnaddr, 0)) == FUNCTION_DECL); + TREE_ADDRESSABLE(TREE_OPERAND(fnaddr, 0)) = 1; + + // For a normal non-nested function call, that is all we have to do. + if (!this->function_->is_function() + || this->function_->func_value()->enclosing() == NULL) + { + gcc_assert(this->closure_ == NULL); + return fnaddr; + } + + // For a nested function call, we have to always allocate a + // trampoline. If we don't always allocate, then closures will not + // be reliably distinct. + Expression* closure = this->closure_; + tree closure_tree; + if (closure == NULL) + closure_tree = null_pointer_node; + else + { + // Get the value of the closure. This will be a pointer to + // space allocated on the heap. + closure_tree = closure->get_tree(context); + if (closure_tree == error_mark_node) + return error_mark_node; + gcc_assert(POINTER_TYPE_P(TREE_TYPE(closure_tree))); + } + + // Now we need to build some code on the heap. This code will load + // the static chain pointer with the closure and then jump to the + // body of the function. The normal gcc approach is to build the + // code on the stack. Unfortunately we can not do that, as Go + // permits us to return the function pointer. + + return gogo->make_trampoline(fnaddr, closure_tree, this->location()); +} + +// Make a reference to a function in an expression. + +Expression* +Expression::make_func_reference(Named_object* function, Expression* closure, + source_location location) +{ + return new Func_expression(function, closure, location); +} + +// Class Unknown_expression. + +// Return the name of an unknown expression. + +const std::string& +Unknown_expression::name() const +{ + return this->named_object_->name(); +} + +// Lower a reference to an unknown name. + +Expression* +Unknown_expression::do_lower(Gogo*, Named_object*, int) +{ + source_location location = this->location(); + Named_object* no = this->named_object_; + Named_object* real = no->unknown_value()->real_named_object(); + if (real == NULL) + { + if (this->is_composite_literal_key_) + return this; + error_at(location, "reference to undefined name %qs", + this->named_object_->message_name().c_str()); + return Expression::make_error(location); + } + switch (real->classification()) + { + case Named_object::NAMED_OBJECT_CONST: + return Expression::make_const_reference(real, location); + case Named_object::NAMED_OBJECT_TYPE: + return Expression::make_type(real->type_value(), location); + case Named_object::NAMED_OBJECT_TYPE_DECLARATION: + if (this->is_composite_literal_key_) + return this; + error_at(location, "reference to undefined type %qs", + real->message_name().c_str()); + return Expression::make_error(location); + case Named_object::NAMED_OBJECT_VAR: + return Expression::make_var_reference(real, location); + case Named_object::NAMED_OBJECT_FUNC: + case Named_object::NAMED_OBJECT_FUNC_DECLARATION: + return Expression::make_func_reference(real, NULL, location); + case Named_object::NAMED_OBJECT_PACKAGE: + if (this->is_composite_literal_key_) + return this; + error_at(location, "unexpected reference to package"); + return Expression::make_error(location); + default: + gcc_unreachable(); + } +} + +// Make a reference to an unknown name. + +Expression* +Expression::make_unknown_reference(Named_object* no, source_location location) +{ + gcc_assert(no->resolve()->is_unknown()); + return new Unknown_expression(no, location); +} + +// A boolean expression. + +class Boolean_expression : public Expression +{ + public: + Boolean_expression(bool val, source_location location) + : Expression(EXPRESSION_BOOLEAN, location), + val_(val), type_(NULL) + { } + + static Expression* + do_import(Import*); + + protected: + bool + do_is_constant() const + { return true; } + + Type* + do_type(); + + void + do_determine_type(const Type_context*); + + Expression* + do_copy() + { return this; } + + tree + do_get_tree(Translate_context*) + { return this->val_ ? boolean_true_node : boolean_false_node; } + + void + do_export(Export* exp) const + { exp->write_c_string(this->val_ ? "true" : "false"); } + + private: + // The constant. + bool val_; + // The type as determined by context. + Type* type_; +}; + +// Get the type. + +Type* +Boolean_expression::do_type() +{ + if (this->type_ == NULL) + this->type_ = Type::make_boolean_type(); + return this->type_; +} + +// Set the type from the context. + +void +Boolean_expression::do_determine_type(const Type_context* context) +{ + if (this->type_ != NULL && !this->type_->is_abstract()) + ; + else if (context->type != NULL && context->type->is_boolean_type()) + this->type_ = context->type; + else if (!context->may_be_abstract) + this->type_ = Type::lookup_bool_type(); +} + +// Import a boolean constant. + +Expression* +Boolean_expression::do_import(Import* imp) +{ + if (imp->peek_char() == 't') + { + imp->require_c_string("true"); + return Expression::make_boolean(true, imp->location()); + } + else + { + imp->require_c_string("false"); + return Expression::make_boolean(false, imp->location()); + } +} + +// Make a boolean expression. + +Expression* +Expression::make_boolean(bool val, source_location location) +{ + return new Boolean_expression(val, location); +} + +// Class String_expression. + +// Get the type. + +Type* +String_expression::do_type() +{ + if (this->type_ == NULL) + this->type_ = Type::make_string_type(); + return this->type_; +} + +// Set the type from the context. + +void +String_expression::do_determine_type(const Type_context* context) +{ + if (this->type_ != NULL && !this->type_->is_abstract()) + ; + else if (context->type != NULL && context->type->is_string_type()) + this->type_ = context->type; + else if (!context->may_be_abstract) + this->type_ = Type::lookup_string_type(); +} + +// Build a string constant. + +tree +String_expression::do_get_tree(Translate_context* context) +{ + return context->gogo()->go_string_constant_tree(this->val_); +} + +// Export a string expression. + +void +String_expression::do_export(Export* exp) const +{ + std::string s; + s.reserve(this->val_.length() * 4 + 2); + s += '"'; + for (std::string::const_iterator p = this->val_.begin(); + p != this->val_.end(); + ++p) + { + if (*p == '\\' || *p == '"') + { + s += '\\'; + s += *p; + } + else if (*p >= 0x20 && *p < 0x7f) + s += *p; + else if (*p == '\n') + s += "\\n"; + else if (*p == '\t') + s += "\\t"; + else + { + s += "\\x"; + unsigned char c = *p; + unsigned int dig = c >> 4; + s += dig < 10 ? '0' + dig : 'A' + dig - 10; + dig = c & 0xf; + s += dig < 10 ? '0' + dig : 'A' + dig - 10; + } + } + s += '"'; + exp->write_string(s); +} + +// Import a string expression. + +Expression* +String_expression::do_import(Import* imp) +{ + imp->require_c_string("\""); + std::string val; + while (true) + { + int c = imp->get_char(); + if (c == '"' || c == -1) + break; + if (c != '\\') + val += static_cast<char>(c); + else + { + c = imp->get_char(); + if (c == '\\' || c == '"') + val += static_cast<char>(c); + else if (c == 'n') + val += '\n'; + else if (c == 't') + val += '\t'; + else if (c == 'x') + { + c = imp->get_char(); + unsigned int vh = c >= '0' && c <= '9' ? c - '0' : c - 'A' + 10; + c = imp->get_char(); + unsigned int vl = c >= '0' && c <= '9' ? c - '0' : c - 'A' + 10; + char v = (vh << 4) | vl; + val += v; + } + else + { + error_at(imp->location(), "bad string constant"); + return Expression::make_error(imp->location()); + } + } + } + return Expression::make_string(val, imp->location()); +} + +// Make a string expression. + +Expression* +Expression::make_string(const std::string& val, source_location location) +{ + return new String_expression(val, location); +} + +// Make an integer expression. + +class Integer_expression : public Expression +{ + public: + Integer_expression(const mpz_t* val, Type* type, source_location location) + : Expression(EXPRESSION_INTEGER, location), + type_(type) + { mpz_init_set(this->val_, *val); } + + static Expression* + do_import(Import*); + + // Return whether VAL fits in the type. + static bool + check_constant(mpz_t val, Type*, source_location); + + // Write VAL to export data. + static void + export_integer(Export* exp, const mpz_t val); + + protected: + bool + do_is_constant() const + { return true; } + + bool + do_integer_constant_value(bool, mpz_t val, Type** ptype) const; + + Type* + do_type(); + + void + do_determine_type(const Type_context* context); + + void + do_check_types(Gogo*); + + tree + do_get_tree(Translate_context*); + + Expression* + do_copy() + { return Expression::make_integer(&this->val_, this->type_, + this->location()); } + + void + do_export(Export*) const; + + private: + // The integer value. + mpz_t val_; + // The type so far. + Type* type_; +}; + +// Return an integer constant value. + +bool +Integer_expression::do_integer_constant_value(bool, mpz_t val, + Type** ptype) const +{ + if (this->type_ != NULL) + *ptype = this->type_; + mpz_set(val, this->val_); + return true; +} + +// Return the current type. If we haven't set the type yet, we return +// an abstract integer type. + +Type* +Integer_expression::do_type() +{ + if (this->type_ == NULL) + this->type_ = Type::make_abstract_integer_type(); + return this->type_; +} + +// Set the type of the integer value. Here we may switch from an +// abstract type to a real type. + +void +Integer_expression::do_determine_type(const Type_context* context) +{ + if (this->type_ != NULL && !this->type_->is_abstract()) + ; + else if (context->type != NULL + && (context->type->integer_type() != NULL + || context->type->float_type() != NULL + || context->type->complex_type() != NULL)) + this->type_ = context->type; + else if (!context->may_be_abstract) + this->type_ = Type::lookup_integer_type("int"); +} + +// Return true if the integer VAL fits in the range of the type TYPE. +// Otherwise give an error and return false. TYPE may be NULL. + +bool +Integer_expression::check_constant(mpz_t val, Type* type, + source_location location) +{ + if (type == NULL) + return true; + Integer_type* itype = type->integer_type(); + if (itype == NULL || itype->is_abstract()) + return true; + + int bits = mpz_sizeinbase(val, 2); + + if (itype->is_unsigned()) + { + // For an unsigned type we can only accept a nonnegative number, + // and we must be able to represent at least BITS. + if (mpz_sgn(val) >= 0 + && bits <= itype->bits()) + return true; + } + else + { + // For a signed type we need an extra bit to indicate the sign. + // We have to handle the most negative integer specially. + if (bits + 1 <= itype->bits() + || (bits <= itype->bits() + && mpz_sgn(val) < 0 + && (mpz_scan1(val, 0) + == static_cast<unsigned long>(itype->bits() - 1)) + && mpz_scan0(val, itype->bits()) == ULONG_MAX)) + return true; + } + + error_at(location, "integer constant overflow"); + return false; +} + +// Check the type of an integer constant. + +void +Integer_expression::do_check_types(Gogo*) +{ + if (this->type_ == NULL) + return; + if (!Integer_expression::check_constant(this->val_, this->type_, + this->location())) + this->set_is_error(); +} + +// Get a tree for an integer constant. + +tree +Integer_expression::do_get_tree(Translate_context* context) +{ + Gogo* gogo = context->gogo(); + tree type; + if (this->type_ != NULL && !this->type_->is_abstract()) + type = this->type_->get_tree(gogo); + else if (this->type_ != NULL && this->type_->float_type() != NULL) + { + // We are converting to an abstract floating point type. + type = Type::lookup_float_type("float64")->get_tree(gogo); + } + else if (this->type_ != NULL && this->type_->complex_type() != NULL) + { + // We are converting to an abstract complex type. + type = Type::lookup_complex_type("complex128")->get_tree(gogo); + } + else + { + // If we still have an abstract type here, then this is being + // used in a constant expression which didn't get reduced for + // some reason. Use a type which will fit the value. We use <, + // not <=, because we need an extra bit for the sign bit. + int bits = mpz_sizeinbase(this->val_, 2); + if (bits < INT_TYPE_SIZE) + type = Type::lookup_integer_type("int")->get_tree(gogo); + else if (bits < 64) + type = Type::lookup_integer_type("int64")->get_tree(gogo); + else + type = long_long_integer_type_node; + } + return Expression::integer_constant_tree(this->val_, type); +} + +// Write VAL to export data. + +void +Integer_expression::export_integer(Export* exp, const mpz_t val) +{ + char* s = mpz_get_str(NULL, 10, val); + exp->write_c_string(s); + free(s); +} + +// Export an integer in a constant expression. + +void +Integer_expression::do_export(Export* exp) const +{ + Integer_expression::export_integer(exp, this->val_); + // A trailing space lets us reliably identify the end of the number. + exp->write_c_string(" "); +} + +// Import an integer, floating point, or complex value. This handles +// all these types because they all start with digits. + +Expression* +Integer_expression::do_import(Import* imp) +{ + std::string num = imp->read_identifier(); + imp->require_c_string(" "); + if (!num.empty() && num[num.length() - 1] == 'i') + { + mpfr_t real; + size_t plus_pos = num.find('+', 1); + size_t minus_pos = num.find('-', 1); + size_t pos; + if (plus_pos == std::string::npos) + pos = minus_pos; + else if (minus_pos == std::string::npos) + pos = plus_pos; + else + { + error_at(imp->location(), "bad number in import data: %qs", + num.c_str()); + return Expression::make_error(imp->location()); + } + if (pos == std::string::npos) + mpfr_set_ui(real, 0, GMP_RNDN); + else + { + std::string real_str = num.substr(0, pos); + if (mpfr_init_set_str(real, real_str.c_str(), 10, GMP_RNDN) != 0) + { + error_at(imp->location(), "bad number in import data: %qs", + real_str.c_str()); + return Expression::make_error(imp->location()); + } + } + + std::string imag_str; + if (pos == std::string::npos) + imag_str = num; + else + imag_str = num.substr(pos); + imag_str = imag_str.substr(0, imag_str.size() - 1); + mpfr_t imag; + if (mpfr_init_set_str(imag, imag_str.c_str(), 10, GMP_RNDN) != 0) + { + error_at(imp->location(), "bad number in import data: %qs", + imag_str.c_str()); + return Expression::make_error(imp->location()); + } + Expression* ret = Expression::make_complex(&real, &imag, NULL, + imp->location()); + mpfr_clear(real); + mpfr_clear(imag); + return ret; + } + else if (num.find('.') == std::string::npos + && num.find('E') == std::string::npos) + { + mpz_t val; + if (mpz_init_set_str(val, num.c_str(), 10) != 0) + { + error_at(imp->location(), "bad number in import data: %qs", + num.c_str()); + return Expression::make_error(imp->location()); + } + Expression* ret = Expression::make_integer(&val, NULL, imp->location()); + mpz_clear(val); + return ret; + } + else + { + mpfr_t val; + if (mpfr_init_set_str(val, num.c_str(), 10, GMP_RNDN) != 0) + { + error_at(imp->location(), "bad number in import data: %qs", + num.c_str()); + return Expression::make_error(imp->location()); + } + Expression* ret = Expression::make_float(&val, NULL, imp->location()); + mpfr_clear(val); + return ret; + } +} + +// Build a new integer value. + +Expression* +Expression::make_integer(const mpz_t* val, Type* type, + source_location location) +{ + return new Integer_expression(val, type, location); +} + +// Floats. + +class Float_expression : public Expression +{ + public: + Float_expression(const mpfr_t* val, Type* type, source_location location) + : Expression(EXPRESSION_FLOAT, location), + type_(type) + { + mpfr_init_set(this->val_, *val, GMP_RNDN); + } + + // Constrain VAL to fit into TYPE. + static void + constrain_float(mpfr_t val, Type* type); + + // Return whether VAL fits in the type. + static bool + check_constant(mpfr_t val, Type*, source_location); + + // Write VAL to export data. + static void + export_float(Export* exp, const mpfr_t val); + + protected: + bool + do_is_constant() const + { return true; } + + bool + do_float_constant_value(mpfr_t val, Type**) const; + + Type* + do_type(); + + void + do_determine_type(const Type_context*); + + void + do_check_types(Gogo*); + + Expression* + do_copy() + { return Expression::make_float(&this->val_, this->type_, + this->location()); } + + tree + do_get_tree(Translate_context*); + + void + do_export(Export*) const; + + private: + // The floating point value. + mpfr_t val_; + // The type so far. + Type* type_; +}; + +// Constrain VAL to fit into TYPE. + +void +Float_expression::constrain_float(mpfr_t val, Type* type) +{ + Float_type* ftype = type->float_type(); + if (ftype != NULL && !ftype->is_abstract()) + { + tree type_tree = ftype->type_tree(); + REAL_VALUE_TYPE rvt; + real_from_mpfr(&rvt, val, type_tree, GMP_RNDN); + real_convert(&rvt, TYPE_MODE(type_tree), &rvt); + mpfr_from_real(val, &rvt, GMP_RNDN); + } +} + +// Return a floating point constant value. + +bool +Float_expression::do_float_constant_value(mpfr_t val, Type** ptype) const +{ + if (this->type_ != NULL) + *ptype = this->type_; + mpfr_set(val, this->val_, GMP_RNDN); + return true; +} + +// Return the current type. If we haven't set the type yet, we return +// an abstract float type. + +Type* +Float_expression::do_type() +{ + if (this->type_ == NULL) + this->type_ = Type::make_abstract_float_type(); + return this->type_; +} + +// Set the type of the float value. Here we may switch from an +// abstract type to a real type. + +void +Float_expression::do_determine_type(const Type_context* context) +{ + if (this->type_ != NULL && !this->type_->is_abstract()) + ; + else if (context->type != NULL + && (context->type->integer_type() != NULL + || context->type->float_type() != NULL + || context->type->complex_type() != NULL)) + this->type_ = context->type; + else if (!context->may_be_abstract) + this->type_ = Type::lookup_float_type("float"); +} + +// Return true if the floating point value VAL fits in the range of +// the type TYPE. Otherwise give an error and return false. TYPE may +// be NULL. + +bool +Float_expression::check_constant(mpfr_t val, Type* type, + source_location location) +{ + if (type == NULL) + return true; + Float_type* ftype = type->float_type(); + if (ftype == NULL || ftype->is_abstract()) + return true; + + // A NaN or Infinity always fits in the range of the type. + if (mpfr_nan_p(val) || mpfr_inf_p(val) || mpfr_zero_p(val)) + return true; + + mp_exp_t exp = mpfr_get_exp(val); + mp_exp_t max_exp; + switch (ftype->bits()) + { + case 32: + max_exp = 128; + break; + case 64: + max_exp = 1024; + break; + default: + gcc_unreachable(); + } + if (exp > max_exp) + { + error_at(location, "floating point constant overflow"); + return false; + } + return true; +} + +// Check the type of a float value. + +void +Float_expression::do_check_types(Gogo*) +{ + if (this->type_ == NULL) + return; + + if (!Float_expression::check_constant(this->val_, this->type_, + this->location())) + this->set_is_error(); + + Integer_type* integer_type = this->type_->integer_type(); + if (integer_type != NULL) + { + if (!mpfr_integer_p(this->val_)) + this->report_error(_("floating point constant truncated to integer")); + else + { + gcc_assert(!integer_type->is_abstract()); + mpz_t ival; + mpz_init(ival); + mpfr_get_z(ival, this->val_, GMP_RNDN); + Integer_expression::check_constant(ival, integer_type, + this->location()); + mpz_clear(ival); + } + } +} + +// Get a tree for a float constant. + +tree +Float_expression::do_get_tree(Translate_context* context) +{ + Gogo* gogo = context->gogo(); + tree type; + if (this->type_ != NULL && !this->type_->is_abstract()) + type = this->type_->get_tree(gogo); + else if (this->type_ != NULL && this->type_->integer_type() != NULL) + { + // We have an abstract integer type. We just hope for the best. + type = Type::lookup_integer_type("int")->get_tree(gogo); + } + else + { + // If we still have an abstract type here, then this is being + // used in a constant expression which didn't get reduced. We + // just use float64 and hope for the best. + type = Type::lookup_float_type("float64")->get_tree(gogo); + } + return Expression::float_constant_tree(this->val_, type); +} + +// Write a floating point number to export data. + +void +Float_expression::export_float(Export *exp, const mpfr_t val) +{ + mp_exp_t exponent; + char* s = mpfr_get_str(NULL, &exponent, 10, 0, val, GMP_RNDN); + if (*s == '-') + exp->write_c_string("-"); + exp->write_c_string("0."); + exp->write_c_string(*s == '-' ? s + 1 : s); + mpfr_free_str(s); + char buf[30]; + snprintf(buf, sizeof buf, "E%ld", exponent); + exp->write_c_string(buf); +} + +// Export a floating point number in a constant expression. + +void +Float_expression::do_export(Export* exp) const +{ + Float_expression::export_float(exp, this->val_); + // A trailing space lets us reliably identify the end of the number. + exp->write_c_string(" "); +} + +// Make a float expression. + +Expression* +Expression::make_float(const mpfr_t* val, Type* type, source_location location) +{ + return new Float_expression(val, type, location); +} + +// Complex numbers. + +class Complex_expression : public Expression +{ + public: + Complex_expression(const mpfr_t* real, const mpfr_t* imag, Type* type, + source_location location) + : Expression(EXPRESSION_COMPLEX, location), + type_(type) + { + mpfr_init_set(this->real_, *real, GMP_RNDN); + mpfr_init_set(this->imag_, *imag, GMP_RNDN); + } + + // Constrain REAL/IMAG to fit into TYPE. + static void + constrain_complex(mpfr_t real, mpfr_t imag, Type* type); + + // Return whether REAL/IMAG fits in the type. + static bool + check_constant(mpfr_t real, mpfr_t imag, Type*, source_location); + + // Write REAL/IMAG to export data. + static void + export_complex(Export* exp, const mpfr_t real, const mpfr_t val); + + protected: + bool + do_is_constant() const + { return true; } + + bool + do_complex_constant_value(mpfr_t real, mpfr_t imag, Type**) const; + + Type* + do_type(); + + void + do_determine_type(const Type_context*); + + void + do_check_types(Gogo*); + + Expression* + do_copy() + { + return Expression::make_complex(&this->real_, &this->imag_, this->type_, + this->location()); + } + + tree + do_get_tree(Translate_context*); + + void + do_export(Export*) const; + + private: + // The real part. + mpfr_t real_; + // The imaginary part; + mpfr_t imag_; + // The type if known. + Type* type_; +}; + +// Constrain REAL/IMAG to fit into TYPE. + +void +Complex_expression::constrain_complex(mpfr_t real, mpfr_t imag, Type* type) +{ + Complex_type* ctype = type->complex_type(); + if (ctype != NULL && !ctype->is_abstract()) + { + tree type_tree = ctype->type_tree(); + + REAL_VALUE_TYPE rvt; + real_from_mpfr(&rvt, real, TREE_TYPE(type_tree), GMP_RNDN); + real_convert(&rvt, TYPE_MODE(TREE_TYPE(type_tree)), &rvt); + mpfr_from_real(real, &rvt, GMP_RNDN); + + real_from_mpfr(&rvt, imag, TREE_TYPE(type_tree), GMP_RNDN); + real_convert(&rvt, TYPE_MODE(TREE_TYPE(type_tree)), &rvt); + mpfr_from_real(imag, &rvt, GMP_RNDN); + } +} + +// Return a complex constant value. + +bool +Complex_expression::do_complex_constant_value(mpfr_t real, mpfr_t imag, + Type** ptype) const +{ + if (this->type_ != NULL) + *ptype = this->type_; + mpfr_set(real, this->real_, GMP_RNDN); + mpfr_set(imag, this->imag_, GMP_RNDN); + return true; +} + +// Return the current type. If we haven't set the type yet, we return +// an abstract complex type. + +Type* +Complex_expression::do_type() +{ + if (this->type_ == NULL) + this->type_ = Type::make_abstract_complex_type(); + return this->type_; +} + +// Set the type of the complex value. Here we may switch from an +// abstract type to a real type. + +void +Complex_expression::do_determine_type(const Type_context* context) +{ + if (this->type_ != NULL && !this->type_->is_abstract()) + ; + else if (context->type != NULL + && context->type->complex_type() != NULL) + this->type_ = context->type; + else if (!context->may_be_abstract) + this->type_ = Type::lookup_complex_type("complex"); +} + +// Return true if the complex value REAL/IMAG fits in the range of the +// type TYPE. Otherwise give an error and return false. TYPE may be +// NULL. + +bool +Complex_expression::check_constant(mpfr_t real, mpfr_t imag, Type* type, + source_location location) +{ + if (type == NULL) + return true; + Complex_type* ctype = type->complex_type(); + if (ctype == NULL || ctype->is_abstract()) + return true; + + mp_exp_t max_exp; + switch (ctype->bits()) + { + case 64: + max_exp = 128; + break; + case 128: + max_exp = 1024; + break; + default: + gcc_unreachable(); + } + + // A NaN or Infinity always fits in the range of the type. + if (!mpfr_nan_p(real) && !mpfr_inf_p(real) && !mpfr_zero_p(real)) + { + if (mpfr_get_exp(real) > max_exp) + { + error_at(location, "complex real part constant overflow"); + return false; + } + } + + if (!mpfr_nan_p(imag) && !mpfr_inf_p(imag) && !mpfr_zero_p(imag)) + { + if (mpfr_get_exp(imag) > max_exp) + { + error_at(location, "complex imaginary part constant overflow"); + return false; + } + } + + return true; +} + +// Check the type of a complex value. + +void +Complex_expression::do_check_types(Gogo*) +{ + if (this->type_ == NULL) + return; + + if (!Complex_expression::check_constant(this->real_, this->imag_, + this->type_, this->location())) + this->set_is_error(); +} + +// Get a tree for a complex constant. + +tree +Complex_expression::do_get_tree(Translate_context* context) +{ + Gogo* gogo = context->gogo(); + tree type; + if (this->type_ != NULL && !this->type_->is_abstract()) + type = this->type_->get_tree(gogo); + else + { + // If we still have an abstract type here, this this is being + // used in a constant expression which didn't get reduced. We + // just use complex128 and hope for the best. + type = Type::lookup_complex_type("complex128")->get_tree(gogo); + } + return Expression::complex_constant_tree(this->real_, this->imag_, type); +} + +// Write REAL/IMAG to export data. + +void +Complex_expression::export_complex(Export* exp, const mpfr_t real, + const mpfr_t imag) +{ + if (!mpfr_zero_p(real)) + { + Float_expression::export_float(exp, real); + if (mpfr_sgn(imag) > 0) + exp->write_c_string("+"); + } + Float_expression::export_float(exp, imag); + exp->write_c_string("i"); +} + +// Export a complex number in a constant expression. + +void +Complex_expression::do_export(Export* exp) const +{ + Complex_expression::export_complex(exp, this->real_, this->imag_); + // A trailing space lets us reliably identify the end of the number. + exp->write_c_string(" "); +} + +// Make a complex expression. + +Expression* +Expression::make_complex(const mpfr_t* real, const mpfr_t* imag, Type* type, + source_location location) +{ + return new Complex_expression(real, imag, type, location); +} + +// A reference to a const in an expression. + +class Const_expression : public Expression +{ + public: + Const_expression(Named_object* constant, source_location location) + : Expression(EXPRESSION_CONST_REFERENCE, location), + constant_(constant), type_(NULL) + { } + + const std::string& + name() const + { return this->constant_->name(); } + + protected: + Expression* + do_lower(Gogo*, Named_object*, int); + + bool + do_is_constant() const + { return true; } + + bool + do_integer_constant_value(bool, mpz_t val, Type**) const; + + bool + do_float_constant_value(mpfr_t val, Type**) const; + + bool + do_complex_constant_value(mpfr_t real, mpfr_t imag, Type**) const; + + bool + do_string_constant_value(std::string* val) const + { return this->constant_->const_value()->expr()->string_constant_value(val); } + + Type* + do_type(); + + // The type of a const is set by the declaration, not the use. + void + do_determine_type(const Type_context*); + + void + do_check_types(Gogo*); + + Expression* + do_copy() + { return this; } + + tree + do_get_tree(Translate_context* context); + + // When exporting a reference to a const as part of a const + // expression, we export the value. We ignore the fact that it has + // a name. + void + do_export(Export* exp) const + { this->constant_->const_value()->expr()->export_expression(exp); } + + private: + // The constant. + Named_object* constant_; + // The type of this reference. This is used if the constant has an + // abstract type. + Type* type_; +}; + +// Lower a constant expression. This is where we convert the +// predeclared constant iota into an integer value. + +Expression* +Const_expression::do_lower(Gogo* gogo, Named_object*, int iota_value) +{ + if (this->constant_->const_value()->expr()->classification() + == EXPRESSION_IOTA) + { + if (iota_value == -1) + { + error_at(this->location(), + "iota is only defined in const declarations"); + iota_value = 0; + } + mpz_t val; + mpz_init_set_ui(val, static_cast<unsigned long>(iota_value)); + Expression* ret = Expression::make_integer(&val, NULL, + this->location()); + mpz_clear(val); + return ret; + } + + // Make sure that the constant itself has been lowered. + gogo->lower_constant(this->constant_); + + return this; +} + +// Return an integer constant value. + +bool +Const_expression::do_integer_constant_value(bool iota_is_constant, mpz_t val, + Type** ptype) const +{ + Type* ctype; + if (this->type_ != NULL) + ctype = this->type_; + else + ctype = this->constant_->const_value()->type(); + if (ctype != NULL && ctype->integer_type() == NULL) + return false; + + Expression* e = this->constant_->const_value()->expr(); + Type* t; + bool r = e->integer_constant_value(iota_is_constant, val, &t); + + if (r + && ctype != NULL + && !Integer_expression::check_constant(val, ctype, this->location())) + return false; + + *ptype = ctype != NULL ? ctype : t; + return r; +} + +// Return a floating point constant value. + +bool +Const_expression::do_float_constant_value(mpfr_t val, Type** ptype) const +{ + Type* ctype; + if (this->type_ != NULL) + ctype = this->type_; + else + ctype = this->constant_->const_value()->type(); + if (ctype != NULL && ctype->float_type() == NULL) + return false; + + Type* t; + bool r = this->constant_->const_value()->expr()->float_constant_value(val, + &t); + if (r && ctype != NULL) + { + if (!Float_expression::check_constant(val, ctype, this->location())) + return false; + Float_expression::constrain_float(val, ctype); + } + *ptype = ctype != NULL ? ctype : t; + return r; +} + +// Return a complex constant value. + +bool +Const_expression::do_complex_constant_value(mpfr_t real, mpfr_t imag, + Type **ptype) const +{ + Type* ctype; + if (this->type_ != NULL) + ctype = this->type_; + else + ctype = this->constant_->const_value()->type(); + if (ctype != NULL && ctype->complex_type() == NULL) + return false; + + Type *t; + bool r = this->constant_->const_value()->expr()->complex_constant_value(real, + imag, + &t); + if (r && ctype != NULL) + { + if (!Complex_expression::check_constant(real, imag, ctype, + this->location())) + return false; + Complex_expression::constrain_complex(real, imag, ctype); + } + *ptype = ctype != NULL ? ctype : t; + return r; +} + +// Return the type of the const reference. + +Type* +Const_expression::do_type() +{ + if (this->type_ != NULL) + return this->type_; + Named_constant* nc = this->constant_->const_value(); + Type* ret = nc->type(); + if (ret != NULL) + return ret; + // During parsing, a named constant may have a NULL type, but we + // must not return a NULL type here. + return nc->expr()->type(); +} + +// Set the type of the const reference. + +void +Const_expression::do_determine_type(const Type_context* context) +{ + Type* ctype = this->constant_->const_value()->type(); + Type* cetype = (ctype != NULL + ? ctype + : this->constant_->const_value()->expr()->type()); + if (ctype != NULL && !ctype->is_abstract()) + ; + else if (context->type != NULL + && (context->type->integer_type() != NULL + || context->type->float_type() != NULL + || context->type->complex_type() != NULL) + && (cetype->integer_type() != NULL + || cetype->float_type() != NULL + || cetype->complex_type() != NULL)) + this->type_ = context->type; + else if (context->type != NULL + && context->type->is_string_type() + && cetype->is_string_type()) + this->type_ = context->type; + else if (context->type != NULL + && context->type->is_boolean_type() + && cetype->is_boolean_type()) + this->type_ = context->type; + else if (!context->may_be_abstract) + { + if (cetype->is_abstract()) + cetype = cetype->make_non_abstract_type(); + this->type_ = cetype; + } +} + +// Check types of a const reference. + +void +Const_expression::do_check_types(Gogo*) +{ + if (this->type_ == NULL || this->type_->is_abstract()) + return; + + // Check for integer overflow. + if (this->type_->integer_type() != NULL) + { + mpz_t ival; + mpz_init(ival); + Type* dummy; + if (!this->integer_constant_value(true, ival, &dummy)) + { + mpfr_t fval; + mpfr_init(fval); + Expression* cexpr = this->constant_->const_value()->expr(); + if (cexpr->float_constant_value(fval, &dummy)) + { + if (!mpfr_integer_p(fval)) + this->report_error(_("floating point constant " + "truncated to integer")); + else + { + mpfr_get_z(ival, fval, GMP_RNDN); + Integer_expression::check_constant(ival, this->type_, + this->location()); + } + } + mpfr_clear(fval); + } + mpz_clear(ival); + } +} + +// Return a tree for the const reference. + +tree +Const_expression::do_get_tree(Translate_context* context) +{ + Gogo* gogo = context->gogo(); + tree type_tree; + if (this->type_ == NULL) + type_tree = NULL_TREE; + else + { + type_tree = this->type_->get_tree(gogo); + if (type_tree == error_mark_node) + return error_mark_node; + } + + // If the type has been set for this expression, but the underlying + // object is an abstract int or float, we try to get the abstract + // value. Otherwise we may lose something in the conversion. + if (this->type_ != NULL + && this->constant_->const_value()->type()->is_abstract()) + { + Expression* expr = this->constant_->const_value()->expr(); + mpz_t ival; + mpz_init(ival); + Type* t; + if (expr->integer_constant_value(true, ival, &t)) + { + tree ret = Expression::integer_constant_tree(ival, type_tree); + mpz_clear(ival); + return ret; + } + mpz_clear(ival); + + mpfr_t fval; + mpfr_init(fval); + if (expr->float_constant_value(fval, &t)) + { + tree ret = Expression::float_constant_tree(fval, type_tree); + mpfr_clear(fval); + return ret; + } + + mpfr_t imag; + mpfr_init(imag); + if (expr->complex_constant_value(fval, imag, &t)) + { + tree ret = Expression::complex_constant_tree(fval, imag, type_tree); + mpfr_clear(fval); + mpfr_clear(imag); + return ret; + } + mpfr_clear(imag); + mpfr_clear(fval); + } + + tree const_tree = this->constant_->get_tree(gogo, context->function()); + if (this->type_ == NULL + || const_tree == error_mark_node + || TREE_TYPE(const_tree) == error_mark_node) + return const_tree; + + tree ret; + if (TYPE_MAIN_VARIANT(type_tree) == TYPE_MAIN_VARIANT(TREE_TYPE(const_tree))) + ret = fold_convert(type_tree, const_tree); + else if (TREE_CODE(type_tree) == INTEGER_TYPE) + ret = fold(convert_to_integer(type_tree, const_tree)); + else if (TREE_CODE(type_tree) == REAL_TYPE) + ret = fold(convert_to_real(type_tree, const_tree)); + else if (TREE_CODE(type_tree) == COMPLEX_TYPE) + ret = fold(convert_to_complex(type_tree, const_tree)); + else + gcc_unreachable(); + return ret; +} + +// Make a reference to a constant in an expression. + +Expression* +Expression::make_const_reference(Named_object* constant, + source_location location) +{ + return new Const_expression(constant, location); +} + +// The nil value. + +class Nil_expression : public Expression +{ + public: + Nil_expression(source_location location) + : Expression(EXPRESSION_NIL, location) + { } + + static Expression* + do_import(Import*); + + protected: + bool + do_is_constant() const + { return true; } + + Type* + do_type() + { return Type::make_nil_type(); } + + void + do_determine_type(const Type_context*) + { } + + Expression* + do_copy() + { return this; } + + tree + do_get_tree(Translate_context*) + { return null_pointer_node; } + + void + do_export(Export* exp) const + { exp->write_c_string("nil"); } +}; + +// Import a nil expression. + +Expression* +Nil_expression::do_import(Import* imp) +{ + imp->require_c_string("nil"); + return Expression::make_nil(imp->location()); +} + +// Make a nil expression. + +Expression* +Expression::make_nil(source_location location) +{ + return new Nil_expression(location); +} + +// The value of the predeclared constant iota. This is little more +// than a marker. This will be lowered to an integer in +// Const_expression::do_lower, which is where we know the value that +// it should have. + +class Iota_expression : public Parser_expression +{ + public: + Iota_expression(source_location location) + : Parser_expression(EXPRESSION_IOTA, location) + { } + + protected: + Expression* + do_lower(Gogo*, Named_object*, int) + { gcc_unreachable(); } + + // There should only ever be one of these. + Expression* + do_copy() + { gcc_unreachable(); } +}; + +// Make an iota expression. This is only called for one case: the +// value of the predeclared constant iota. + +Expression* +Expression::make_iota() +{ + static Iota_expression iota_expression(UNKNOWN_LOCATION); + return &iota_expression; +} + +// A type conversion expression. + +class Type_conversion_expression : public Expression +{ + public: + Type_conversion_expression(Type* type, Expression* expr, + source_location location) + : Expression(EXPRESSION_CONVERSION, location), + type_(type), expr_(expr), may_convert_function_types_(false) + { } + + // Return the type to which we are converting. + Type* + type() const + { return this->type_; } + + // Return the expression which we are converting. + Expression* + expr() const + { return this->expr_; } + + // Permit converting from one function type to another. This is + // used internally for method expressions. + void + set_may_convert_function_types() + { + this->may_convert_function_types_ = true; + } + + // Import a type conversion expression. + static Expression* + do_import(Import*); + + protected: + int + do_traverse(Traverse* traverse); + + Expression* + do_lower(Gogo*, Named_object*, int); + + bool + do_is_constant() const + { return this->expr_->is_constant(); } + + bool + do_integer_constant_value(bool, mpz_t, Type**) const; + + bool + do_float_constant_value(mpfr_t, Type**) const; + + bool + do_complex_constant_value(mpfr_t, mpfr_t, Type**) const; + + bool + do_string_constant_value(std::string*) const; + + Type* + do_type() + { return this->type_; } + + void + do_determine_type(const Type_context*) + { + Type_context subcontext(this->type_, false); + this->expr_->determine_type(&subcontext); + } + + void + do_check_types(Gogo*); + + Expression* + do_copy() + { + return new Type_conversion_expression(this->type_, this->expr_->copy(), + this->location()); + } + + tree + do_get_tree(Translate_context* context); + + void + do_export(Export*) const; + + private: + // The type to convert to. + Type* type_; + // The expression to convert. + Expression* expr_; + // True if this is permitted to convert function types. This is + // used internally for method expressions. + bool may_convert_function_types_; +}; + +// Traversal. + +int +Type_conversion_expression::do_traverse(Traverse* traverse) +{ + if (Expression::traverse(&this->expr_, traverse) == TRAVERSE_EXIT + || Type::traverse(this->type_, traverse) == TRAVERSE_EXIT) + return TRAVERSE_EXIT; + return TRAVERSE_CONTINUE; +} + +// Convert to a constant at lowering time. + +Expression* +Type_conversion_expression::do_lower(Gogo*, Named_object*, int) +{ + Type* type = this->type_; + Expression* val = this->expr_; + source_location location = this->location(); + + if (type->integer_type() != NULL) + { + mpz_t ival; + mpz_init(ival); + Type* dummy; + if (val->integer_constant_value(false, ival, &dummy)) + { + if (!Integer_expression::check_constant(ival, type, location)) + mpz_set_ui(ival, 0); + Expression* ret = Expression::make_integer(&ival, type, location); + mpz_clear(ival); + return ret; + } + + mpfr_t fval; + mpfr_init(fval); + if (val->float_constant_value(fval, &dummy)) + { + if (!mpfr_integer_p(fval)) + { + error_at(location, + "floating point constant truncated to integer"); + return Expression::make_error(location); + } + mpfr_get_z(ival, fval, GMP_RNDN); + if (!Integer_expression::check_constant(ival, type, location)) + mpz_set_ui(ival, 0); + Expression* ret = Expression::make_integer(&ival, type, location); + mpfr_clear(fval); + mpz_clear(ival); + return ret; + } + mpfr_clear(fval); + mpz_clear(ival); + } + + if (type->float_type() != NULL) + { + mpfr_t fval; + mpfr_init(fval); + Type* dummy; + if (val->float_constant_value(fval, &dummy)) + { + if (!Float_expression::check_constant(fval, type, location)) + mpfr_set_ui(fval, 0, GMP_RNDN); + Float_expression::constrain_float(fval, type); + Expression *ret = Expression::make_float(&fval, type, location); + mpfr_clear(fval); + return ret; + } + mpfr_clear(fval); + } + + if (type->complex_type() != NULL) + { + mpfr_t real; + mpfr_t imag; + mpfr_init(real); + mpfr_init(imag); + Type* dummy; + if (val->complex_constant_value(real, imag, &dummy)) + { + if (!Complex_expression::check_constant(real, imag, type, location)) + { + mpfr_set_ui(real, 0, GMP_RNDN); + mpfr_set_ui(imag, 0, GMP_RNDN); + } + Complex_expression::constrain_complex(real, imag, type); + Expression* ret = Expression::make_complex(&real, &imag, type, + location); + mpfr_clear(real); + mpfr_clear(imag); + return ret; + } + mpfr_clear(real); + mpfr_clear(imag); + } + + if (type->is_open_array_type() && type->named_type() == NULL) + { + Type* element_type = type->array_type()->element_type()->forwarded(); + bool is_byte = element_type == Type::lookup_integer_type("uint8"); + bool is_int = element_type == Type::lookup_integer_type("int"); + if (is_byte || is_int) + { + std::string s; + if (val->string_constant_value(&s)) + { + Expression_list* vals = new Expression_list(); + if (is_byte) + { + for (std::string::const_iterator p = s.begin(); + p != s.end(); + p++) + { + mpz_t val; + mpz_init_set_ui(val, static_cast<unsigned char>(*p)); + Expression* v = Expression::make_integer(&val, + element_type, + location); + vals->push_back(v); + mpz_clear(val); + } + } + else + { + const char *p = s.data(); + const char *pend = s.data() + s.length(); + while (p < pend) + { + unsigned int c; + int adv = Lex::fetch_char(p, &c); + if (adv == 0) + { + warning_at(this->location(), 0, + "invalid UTF-8 encoding"); + adv = 1; + } + p += adv; + mpz_t val; + mpz_init_set_ui(val, c); + Expression* v = Expression::make_integer(&val, + element_type, + location); + vals->push_back(v); + mpz_clear(val); + } + } + + return Expression::make_slice_composite_literal(type, vals, + location); + } + } + } + + return this; +} + +// Return the constant integer value if there is one. + +bool +Type_conversion_expression::do_integer_constant_value(bool iota_is_constant, + mpz_t val, + Type** ptype) const +{ + if (this->type_->integer_type() == NULL) + return false; + + mpz_t ival; + mpz_init(ival); + Type* dummy; + if (this->expr_->integer_constant_value(iota_is_constant, ival, &dummy)) + { + if (!Integer_expression::check_constant(ival, this->type_, + this->location())) + { + mpz_clear(ival); + return false; + } + mpz_set(val, ival); + mpz_clear(ival); + *ptype = this->type_; + return true; + } + mpz_clear(ival); + + mpfr_t fval; + mpfr_init(fval); + if (this->expr_->float_constant_value(fval, &dummy)) + { + mpfr_get_z(val, fval, GMP_RNDN); + mpfr_clear(fval); + if (!Integer_expression::check_constant(val, this->type_, + this->location())) + return false; + *ptype = this->type_; + return true; + } + mpfr_clear(fval); + + return false; +} + +// Return the constant floating point value if there is one. + +bool +Type_conversion_expression::do_float_constant_value(mpfr_t val, + Type** ptype) const +{ + if (this->type_->float_type() == NULL) + return false; + + mpfr_t fval; + mpfr_init(fval); + Type* dummy; + if (this->expr_->float_constant_value(fval, &dummy)) + { + if (!Float_expression::check_constant(fval, this->type_, + this->location())) + { + mpfr_clear(fval); + return false; + } + mpfr_set(val, fval, GMP_RNDN); + mpfr_clear(fval); + Float_expression::constrain_float(val, this->type_); + *ptype = this->type_; + return true; + } + mpfr_clear(fval); + + return false; +} + +// Return the constant complex value if there is one. + +bool +Type_conversion_expression::do_complex_constant_value(mpfr_t real, + mpfr_t imag, + Type **ptype) const +{ + if (this->type_->complex_type() == NULL) + return false; + + mpfr_t rval; + mpfr_t ival; + mpfr_init(rval); + mpfr_init(ival); + Type* dummy; + if (this->expr_->complex_constant_value(rval, ival, &dummy)) + { + if (!Complex_expression::check_constant(rval, ival, this->type_, + this->location())) + { + mpfr_clear(rval); + mpfr_clear(ival); + return false; + } + mpfr_set(real, rval, GMP_RNDN); + mpfr_set(imag, ival, GMP_RNDN); + mpfr_clear(rval); + mpfr_clear(ival); + Complex_expression::constrain_complex(real, imag, this->type_); + *ptype = this->type_; + return true; + } + mpfr_clear(rval); + mpfr_clear(ival); + + return false; +} + +// Return the constant string value if there is one. + +bool +Type_conversion_expression::do_string_constant_value(std::string* val) const +{ + if (this->type_->is_string_type() + && this->expr_->type()->integer_type() != NULL) + { + mpz_t ival; + mpz_init(ival); + Type* dummy; + if (this->expr_->integer_constant_value(false, ival, &dummy)) + { + unsigned long ulval = mpz_get_ui(ival); + if (mpz_cmp_ui(ival, ulval) == 0) + { + Lex::append_char(ulval, true, val, this->location()); + mpz_clear(ival); + return true; + } + } + mpz_clear(ival); + } + + // FIXME: Could handle conversion from const []int here. + + return false; +} + +// Check that types are convertible. + +void +Type_conversion_expression::do_check_types(Gogo*) +{ + Type* type = this->type_; + Type* expr_type = this->expr_->type(); + std::string reason; + + if (this->may_convert_function_types_ + && type->function_type() != NULL + && expr_type->function_type() != NULL) + return; + + if (Type::are_convertible(type, expr_type, &reason)) + return; + + error_at(this->location(), "%s", reason.c_str()); + this->set_is_error(); +} + +// Get a tree for a type conversion. + +tree +Type_conversion_expression::do_get_tree(Translate_context* context) +{ + Gogo* gogo = context->gogo(); + tree type_tree = this->type_->get_tree(gogo); + tree expr_tree = this->expr_->get_tree(context); + + if (type_tree == error_mark_node + || expr_tree == error_mark_node + || TREE_TYPE(expr_tree) == error_mark_node) + return error_mark_node; + + if (TYPE_MAIN_VARIANT(type_tree) == TYPE_MAIN_VARIANT(TREE_TYPE(expr_tree))) + return fold_convert(type_tree, expr_tree); + + Type* type = this->type_; + Type* expr_type = this->expr_->type(); + tree ret; + if (type->interface_type() != NULL || expr_type->interface_type() != NULL) + ret = Expression::convert_for_assignment(context, type, expr_type, + expr_tree, this->location()); + else if (type->integer_type() != NULL) + { + if (expr_type->integer_type() != NULL + || expr_type->float_type() != NULL + || expr_type->is_unsafe_pointer_type()) + ret = fold(convert_to_integer(type_tree, expr_tree)); + else + gcc_unreachable(); + } + else if (type->float_type() != NULL) + { + if (expr_type->integer_type() != NULL + || expr_type->float_type() != NULL) + ret = fold(convert_to_real(type_tree, expr_tree)); + else + gcc_unreachable(); + } + else if (type->complex_type() != NULL) + { + if (expr_type->complex_type() != NULL) + ret = fold(convert_to_complex(type_tree, expr_tree)); + else + gcc_unreachable(); + } + else if (type->is_string_type() + && expr_type->integer_type() != NULL) + { + expr_tree = fold_convert(integer_type_node, expr_tree); + if (host_integerp(expr_tree, 0)) + { + HOST_WIDE_INT intval = tree_low_cst(expr_tree, 0); + std::string s; + Lex::append_char(intval, true, &s, this->location()); + Expression* se = Expression::make_string(s, this->location()); + return se->get_tree(context); + } + + static tree int_to_string_fndecl; + ret = Gogo::call_builtin(&int_to_string_fndecl, + this->location(), + "__go_int_to_string", + 1, + type_tree, + integer_type_node, + fold_convert(integer_type_node, expr_tree)); + } + else if (type->is_string_type() + && (expr_type->array_type() != NULL + || (expr_type->points_to() != NULL + && expr_type->points_to()->array_type() != NULL))) + { + Type* t = expr_type; + if (t->points_to() != NULL) + { + t = t->points_to(); + expr_tree = build_fold_indirect_ref(expr_tree); + } + if (!DECL_P(expr_tree)) + expr_tree = save_expr(expr_tree); + Array_type* a = t->array_type(); + Type* e = a->element_type()->forwarded(); + gcc_assert(e->integer_type() != NULL); + tree valptr = fold_convert(const_ptr_type_node, + a->value_pointer_tree(gogo, expr_tree)); + tree len = a->length_tree(gogo, expr_tree); + len = fold_convert_loc(this->location(), size_type_node, len); + if (e->integer_type()->is_unsigned() + && e->integer_type()->bits() == 8) + { + static tree byte_array_to_string_fndecl; + ret = Gogo::call_builtin(&byte_array_to_string_fndecl, + this->location(), + "__go_byte_array_to_string", + 2, + type_tree, + const_ptr_type_node, + valptr, + size_type_node, + len); + } + else + { + gcc_assert(e == Type::lookup_integer_type("int")); + static tree int_array_to_string_fndecl; + ret = Gogo::call_builtin(&int_array_to_string_fndecl, + this->location(), + "__go_int_array_to_string", + 2, + type_tree, + const_ptr_type_node, + valptr, + size_type_node, + len); + } + } + else if (type->is_open_array_type() && expr_type->is_string_type()) + { + Type* e = type->array_type()->element_type()->forwarded(); + gcc_assert(e->integer_type() != NULL); + if (e->integer_type()->is_unsigned() + && e->integer_type()->bits() == 8) + { + static tree string_to_byte_array_fndecl; + ret = Gogo::call_builtin(&string_to_byte_array_fndecl, + this->location(), + "__go_string_to_byte_array", + 1, + type_tree, + TREE_TYPE(expr_tree), + expr_tree); + } + else + { + gcc_assert(e == Type::lookup_integer_type("int")); + static tree string_to_int_array_fndecl; + ret = Gogo::call_builtin(&string_to_int_array_fndecl, + this->location(), + "__go_string_to_int_array", + 1, + type_tree, + TREE_TYPE(expr_tree), + expr_tree); + } + } + else if ((type->is_unsafe_pointer_type() + && expr_type->points_to() != NULL) + || (expr_type->is_unsafe_pointer_type() + && type->points_to() != NULL)) + ret = fold_convert(type_tree, expr_tree); + else if (type->is_unsafe_pointer_type() + && expr_type->integer_type() != NULL) + ret = convert_to_pointer(type_tree, expr_tree); + else if (this->may_convert_function_types_ + && type->function_type() != NULL + && expr_type->function_type() != NULL) + ret = fold_convert_loc(this->location(), type_tree, expr_tree); + else + ret = Expression::convert_for_assignment(context, type, expr_type, + expr_tree, this->location()); + + return ret; +} + +// Output a type conversion in a constant expression. + +void +Type_conversion_expression::do_export(Export* exp) const +{ + exp->write_c_string("convert("); + exp->write_type(this->type_); + exp->write_c_string(", "); + this->expr_->export_expression(exp); + exp->write_c_string(")"); +} + +// Import a type conversion or a struct construction. + +Expression* +Type_conversion_expression::do_import(Import* imp) +{ + imp->require_c_string("convert("); + Type* type = imp->read_type(); + imp->require_c_string(", "); + Expression* val = Expression::import_expression(imp); + imp->require_c_string(")"); + return Expression::make_cast(type, val, imp->location()); +} + +// Make a type cast expression. + +Expression* +Expression::make_cast(Type* type, Expression* val, source_location location) +{ + if (type->is_error_type() || val->is_error_expression()) + return Expression::make_error(location); + return new Type_conversion_expression(type, val, location); +} + +// Unary expressions. + +class Unary_expression : public Expression +{ + public: + Unary_expression(Operator op, Expression* expr, source_location location) + : Expression(EXPRESSION_UNARY, location), + op_(op), escapes_(true), expr_(expr) + { } + + // Return the operator. + Operator + op() const + { return this->op_; } + + // Return the operand. + Expression* + operand() const + { return this->expr_; } + + // Record that an address expression does not escape. + void + set_does_not_escape() + { + gcc_assert(this->op_ == OPERATOR_AND); + this->escapes_ = false; + } + + // Apply unary opcode OP to UVAL, setting VAL. Return true if this + // could be done, false if not. + static bool + eval_integer(Operator op, Type* utype, mpz_t uval, mpz_t val, + source_location); + + // Apply unary opcode OP to UVAL, setting VAL. Return true if this + // could be done, false if not. + static bool + eval_float(Operator op, mpfr_t uval, mpfr_t val); + + // Apply unary opcode OP to UREAL/UIMAG, setting REAL/IMAG. Return + // true if this could be done, false if not. + static bool + eval_complex(Operator op, mpfr_t ureal, mpfr_t uimag, mpfr_t real, + mpfr_t imag); + + static Expression* + do_import(Import*); + + protected: + int + do_traverse(Traverse* traverse) + { return Expression::traverse(&this->expr_, traverse); } + + Expression* + do_lower(Gogo*, Named_object*, int); + + bool + do_is_constant() const; + + bool + do_integer_constant_value(bool, mpz_t, Type**) const; + + bool + do_float_constant_value(mpfr_t, Type**) const; + + bool + do_complex_constant_value(mpfr_t, mpfr_t, Type**) const; + + Type* + do_type(); + + void + do_determine_type(const Type_context*); + + void + do_check_types(Gogo*); + + Expression* + do_copy() + { + return Expression::make_unary(this->op_, this->expr_->copy(), + this->location()); + } + + bool + do_is_addressable() const + { return this->op_ == OPERATOR_MULT; } + + tree + do_get_tree(Translate_context*); + + void + do_export(Export*) const; + + private: + // The unary operator to apply. + Operator op_; + // Normally true. False if this is an address expression which does + // not escape the current function. + bool escapes_; + // The operand. + Expression* expr_; +}; + +// If we are taking the address of a composite literal, and the +// contents are not constant, then we want to make a heap composite +// instead. + +Expression* +Unary_expression::do_lower(Gogo*, Named_object*, int) +{ + source_location loc = this->location(); + Operator op = this->op_; + Expression* expr = this->expr_; + + if (op == OPERATOR_MULT && expr->is_type_expression()) + return Expression::make_type(Type::make_pointer_type(expr->type()), loc); + + // *&x simplifies to x. *(*T)(unsafe.Pointer)(&x) does not require + // moving x to the heap. FIXME: Is it worth doing a real escape + // analysis here? This case is found in math/unsafe.go and is + // therefore worth special casing. + if (op == OPERATOR_MULT) + { + Expression* e = expr; + while (e->classification() == EXPRESSION_CONVERSION) + { + Type_conversion_expression* te + = static_cast<Type_conversion_expression*>(e); + e = te->expr(); + } + + if (e->classification() == EXPRESSION_UNARY) + { + Unary_expression* ue = static_cast<Unary_expression*>(e); + if (ue->op_ == OPERATOR_AND) + { + if (e == expr) + { + // *&x == x. + return ue->expr_; + } + ue->set_does_not_escape(); + } + } + } + + if (op == OPERATOR_PLUS || op == OPERATOR_MINUS + || op == OPERATOR_NOT || op == OPERATOR_XOR) + { + Expression* ret = NULL; + + mpz_t eval; + mpz_init(eval); + Type* etype; + if (expr->integer_constant_value(false, eval, &etype)) + { + mpz_t val; + mpz_init(val); + if (Unary_expression::eval_integer(op, etype, eval, val, loc)) + ret = Expression::make_integer(&val, etype, loc); + mpz_clear(val); + } + mpz_clear(eval); + if (ret != NULL) + return ret; + + if (op == OPERATOR_PLUS || op == OPERATOR_MINUS) + { + mpfr_t fval; + mpfr_init(fval); + Type* ftype; + if (expr->float_constant_value(fval, &ftype)) + { + mpfr_t val; + mpfr_init(val); + if (Unary_expression::eval_float(op, fval, val)) + ret = Expression::make_float(&val, ftype, loc); + mpfr_clear(val); + } + if (ret != NULL) + { + mpfr_clear(fval); + return ret; + } + + mpfr_t ival; + mpfr_init(ival); + if (expr->complex_constant_value(fval, ival, &ftype)) + { + mpfr_t real; + mpfr_t imag; + mpfr_init(real); + mpfr_init(imag); + if (Unary_expression::eval_complex(op, fval, ival, real, imag)) + ret = Expression::make_complex(&real, &imag, ftype, loc); + mpfr_clear(real); + mpfr_clear(imag); + } + mpfr_clear(ival); + mpfr_clear(fval); + if (ret != NULL) + return ret; + } + } + + return this; +} + +// Return whether a unary expression is a constant. + +bool +Unary_expression::do_is_constant() const +{ + if (this->op_ == OPERATOR_MULT) + { + // Indirecting through a pointer is only constant if the object + // to which the expression points is constant, but we currently + // have no way to determine that. + return false; + } + else if (this->op_ == OPERATOR_AND) + { + // Taking the address of a variable is constant if it is a + // global variable, not constant otherwise. In other cases + // taking the address is probably not a constant. + Var_expression* ve = this->expr_->var_expression(); + if (ve != NULL) + { + Named_object* no = ve->named_object(); + return no->is_variable() && no->var_value()->is_global(); + } + return false; + } + else + return this->expr_->is_constant(); +} + +// Apply unary opcode OP to UVAL, setting VAL. UTYPE is the type of +// UVAL, if known; it may be NULL. Return true if this could be done, +// false if not. + +bool +Unary_expression::eval_integer(Operator op, Type* utype, mpz_t uval, mpz_t val, + source_location location) +{ + switch (op) + { + case OPERATOR_PLUS: + mpz_set(val, uval); + return true; + case OPERATOR_MINUS: + mpz_neg(val, uval); + return Integer_expression::check_constant(val, utype, location); + case OPERATOR_NOT: + mpz_set_ui(val, mpz_cmp_si(uval, 0) == 0 ? 1 : 0); + return true; + case OPERATOR_XOR: + if (utype == NULL + || utype->integer_type() == NULL + || utype->integer_type()->is_abstract()) + mpz_com(val, uval); + else + { + // The number of HOST_WIDE_INTs that it takes to represent + // UVAL. + size_t count = ((mpz_sizeinbase(uval, 2) + + HOST_BITS_PER_WIDE_INT + - 1) + / HOST_BITS_PER_WIDE_INT); + + unsigned HOST_WIDE_INT* phwi = new unsigned HOST_WIDE_INT[count]; + memset(phwi, 0, count * sizeof(HOST_WIDE_INT)); + + size_t ecount; + mpz_export(phwi, &ecount, -1, sizeof(HOST_WIDE_INT), 0, 0, uval); + gcc_assert(ecount <= count); + + // Trim down to the number of words required by the type. + size_t obits = utype->integer_type()->bits(); + if (!utype->integer_type()->is_unsigned()) + ++obits; + size_t ocount = ((obits + HOST_BITS_PER_WIDE_INT - 1) + / HOST_BITS_PER_WIDE_INT); + gcc_assert(ocount <= ocount); + + for (size_t i = 0; i < ocount; ++i) + phwi[i] = ~phwi[i]; + + size_t clearbits = ocount * HOST_BITS_PER_WIDE_INT - obits; + if (clearbits != 0) + phwi[ocount - 1] &= (((unsigned HOST_WIDE_INT) (HOST_WIDE_INT) -1) + >> clearbits); + + mpz_import(val, ocount, -1, sizeof(HOST_WIDE_INT), 0, 0, phwi); + + delete[] phwi; + } + return Integer_expression::check_constant(val, utype, location); + case OPERATOR_AND: + case OPERATOR_MULT: + return false; + default: + gcc_unreachable(); + } +} + +// Apply unary opcode OP to UVAL, setting VAL. Return true if this +// could be done, false if not. + +bool +Unary_expression::eval_float(Operator op, mpfr_t uval, mpfr_t val) +{ + switch (op) + { + case OPERATOR_PLUS: + mpfr_set(val, uval, GMP_RNDN); + return true; + case OPERATOR_MINUS: + mpfr_neg(val, uval, GMP_RNDN); + return true; + case OPERATOR_NOT: + case OPERATOR_XOR: + case OPERATOR_AND: + case OPERATOR_MULT: + return false; + default: + gcc_unreachable(); + } +} + +// Apply unary opcode OP to RVAL/IVAL, setting REAL/IMAG. Return true +// if this could be done, false if not. + +bool +Unary_expression::eval_complex(Operator op, mpfr_t rval, mpfr_t ival, + mpfr_t real, mpfr_t imag) +{ + switch (op) + { + case OPERATOR_PLUS: + mpfr_set(real, rval, GMP_RNDN); + mpfr_set(imag, ival, GMP_RNDN); + return true; + case OPERATOR_MINUS: + mpfr_neg(real, rval, GMP_RNDN); + mpfr_neg(imag, ival, GMP_RNDN); + return true; + case OPERATOR_NOT: + case OPERATOR_XOR: + case OPERATOR_AND: + case OPERATOR_MULT: + return false; + default: + gcc_unreachable(); + } +} + +// Return the integral constant value of a unary expression, if it has one. + +bool +Unary_expression::do_integer_constant_value(bool iota_is_constant, mpz_t val, + Type** ptype) const +{ + mpz_t uval; + mpz_init(uval); + bool ret; + if (!this->expr_->integer_constant_value(iota_is_constant, uval, ptype)) + ret = false; + else + ret = Unary_expression::eval_integer(this->op_, *ptype, uval, val, + this->location()); + mpz_clear(uval); + return ret; +} + +// Return the floating point constant value of a unary expression, if +// it has one. + +bool +Unary_expression::do_float_constant_value(mpfr_t val, Type** ptype) const +{ + mpfr_t uval; + mpfr_init(uval); + bool ret; + if (!this->expr_->float_constant_value(uval, ptype)) + ret = false; + else + ret = Unary_expression::eval_float(this->op_, uval, val); + mpfr_clear(uval); + return ret; +} + +// Return the complex constant value of a unary expression, if it has +// one. + +bool +Unary_expression::do_complex_constant_value(mpfr_t real, mpfr_t imag, + Type** ptype) const +{ + mpfr_t rval; + mpfr_t ival; + mpfr_init(rval); + mpfr_init(ival); + bool ret; + if (!this->expr_->complex_constant_value(rval, ival, ptype)) + ret = false; + else + ret = Unary_expression::eval_complex(this->op_, rval, ival, real, imag); + mpfr_clear(rval); + mpfr_clear(ival); + return ret; +} + +// Return the type of a unary expression. + +Type* +Unary_expression::do_type() +{ + switch (this->op_) + { + case OPERATOR_PLUS: + case OPERATOR_MINUS: + case OPERATOR_NOT: + case OPERATOR_XOR: + return this->expr_->type(); + + case OPERATOR_AND: + return Type::make_pointer_type(this->expr_->type()); + + case OPERATOR_MULT: + { + Type* subtype = this->expr_->type(); + Type* points_to = subtype->points_to(); + if (points_to == NULL) + return Type::make_error_type(); + return points_to; + } + + default: + gcc_unreachable(); + } +} + +// Determine abstract types for a unary expression. + +void +Unary_expression::do_determine_type(const Type_context* context) +{ + switch (this->op_) + { + case OPERATOR_PLUS: + case OPERATOR_MINUS: + case OPERATOR_NOT: + case OPERATOR_XOR: + this->expr_->determine_type(context); + break; + + case OPERATOR_AND: + // Taking the address of something. + { + Type* subtype = (context->type == NULL + ? NULL + : context->type->points_to()); + Type_context subcontext(subtype, false); + this->expr_->determine_type(&subcontext); + } + break; + + case OPERATOR_MULT: + // Indirecting through a pointer. + { + Type* subtype = (context->type == NULL + ? NULL + : Type::make_pointer_type(context->type)); + Type_context subcontext(subtype, false); + this->expr_->determine_type(&subcontext); + } + break; + + default: + gcc_unreachable(); + } +} + +// Check types for a unary expression. + +void +Unary_expression::do_check_types(Gogo*) +{ + switch (this->op_) + { + case OPERATOR_PLUS: + case OPERATOR_MINUS: + { + Type* type = this->expr_->type(); + if (type->integer_type() == NULL + && type->float_type() == NULL + && type->complex_type() == NULL + && !type->is_error_type()) + this->report_error(_("expected numeric type")); + } + break; + + case OPERATOR_NOT: + case OPERATOR_XOR: + { + Type* type = this->expr_->type(); + if (type->integer_type() == NULL + && !type->is_boolean_type() + && !type->is_error_type()) + this->report_error(_("expected integer or boolean type")); + } + break; + + case OPERATOR_AND: + if (!this->expr_->is_addressable()) + this->report_error(_("invalid operand for unary %<&%>")); + else + this->expr_->address_taken(this->escapes_); + break; + + case OPERATOR_MULT: + // Indirecting through a pointer. + { + Type* type = this->expr_->type(); + if (type->points_to() == NULL + && !type->is_error_type()) + this->report_error(_("expected pointer")); + } + break; + + default: + gcc_unreachable(); + } +} + +// Get a tree for a unary expression. + +tree +Unary_expression::do_get_tree(Translate_context* context) +{ + tree expr = this->expr_->get_tree(context); + if (expr == error_mark_node) + return error_mark_node; + + source_location loc = this->location(); + switch (this->op_) + { + case OPERATOR_PLUS: + return expr; + + case OPERATOR_MINUS: + { + tree type = TREE_TYPE(expr); + tree compute_type = excess_precision_type(type); + if (compute_type != NULL_TREE) + expr = ::convert(compute_type, expr); + tree ret = fold_build1_loc(loc, NEGATE_EXPR, + (compute_type != NULL_TREE + ? compute_type + : type), + expr); + if (compute_type != NULL_TREE) + ret = ::convert(type, ret); + return ret; + } + + case OPERATOR_NOT: + if (TREE_CODE(TREE_TYPE(expr)) == BOOLEAN_TYPE) + return fold_build1_loc(loc, TRUTH_NOT_EXPR, TREE_TYPE(expr), expr); + else + return fold_build2_loc(loc, NE_EXPR, boolean_type_node, expr, + build_int_cst(TREE_TYPE(expr), 0)); + + case OPERATOR_XOR: + return fold_build1_loc(loc, BIT_NOT_EXPR, TREE_TYPE(expr), expr); + + case OPERATOR_AND: + // We should not see a non-constant constructor here; cases + // where we would see one should have been moved onto the heap + // at parse time. Taking the address of a nonconstant + // constructor will not do what the programmer expects. + gcc_assert(TREE_CODE(expr) != CONSTRUCTOR || TREE_CONSTANT(expr)); + gcc_assert(TREE_CODE(expr) != ADDR_EXPR); + + // Build a decl for a constant constructor. + if (TREE_CODE(expr) == CONSTRUCTOR && TREE_CONSTANT(expr)) + { + tree decl = build_decl(this->location(), VAR_DECL, + create_tmp_var_name("C"), TREE_TYPE(expr)); + DECL_EXTERNAL(decl) = 0; + TREE_PUBLIC(decl) = 0; + TREE_READONLY(decl) = 1; + TREE_CONSTANT(decl) = 1; + TREE_STATIC(decl) = 1; + TREE_ADDRESSABLE(decl) = 1; + DECL_ARTIFICIAL(decl) = 1; + DECL_INITIAL(decl) = expr; + rest_of_decl_compilation(decl, 1, 0); + expr = decl; + } + + return build_fold_addr_expr_loc(loc, expr); + + case OPERATOR_MULT: + { + gcc_assert(POINTER_TYPE_P(TREE_TYPE(expr))); + + // If we are dereferencing the pointer to a large struct, we + // need to check for nil. We don't bother to check for small + // structs because we expect the system to crash on a nil + // pointer dereference. + HOST_WIDE_INT s = int_size_in_bytes(TREE_TYPE(TREE_TYPE(expr))); + if (s == -1 || s >= 4096) + { + if (!DECL_P(expr)) + expr = save_expr(expr); + tree compare = fold_build2_loc(loc, EQ_EXPR, boolean_type_node, + expr, + fold_convert(TREE_TYPE(expr), + null_pointer_node)); + tree crash = Gogo::runtime_error(RUNTIME_ERROR_NIL_DEREFERENCE, + loc); + expr = fold_build2_loc(loc, COMPOUND_EXPR, TREE_TYPE(expr), + build3(COND_EXPR, void_type_node, + compare, crash, NULL_TREE), + expr); + } + + // If the type of EXPR is a recursive pointer type, then we + // need to insert a cast before indirecting. + if (TREE_TYPE(TREE_TYPE(expr)) == ptr_type_node) + { + Type* pt = this->expr_->type()->points_to(); + tree ind = pt->get_tree(context->gogo()); + expr = fold_convert_loc(loc, build_pointer_type(ind), expr); + } + + return build_fold_indirect_ref_loc(loc, expr); + } + + default: + gcc_unreachable(); + } +} + +// Export a unary expression. + +void +Unary_expression::do_export(Export* exp) const +{ + switch (this->op_) + { + case OPERATOR_PLUS: + exp->write_c_string("+ "); + break; + case OPERATOR_MINUS: + exp->write_c_string("- "); + break; + case OPERATOR_NOT: + exp->write_c_string("! "); + break; + case OPERATOR_XOR: + exp->write_c_string("^ "); + break; + case OPERATOR_AND: + case OPERATOR_MULT: + default: + gcc_unreachable(); + } + this->expr_->export_expression(exp); +} + +// Import a unary expression. + +Expression* +Unary_expression::do_import(Import* imp) +{ + Operator op; + switch (imp->get_char()) + { + case '+': + op = OPERATOR_PLUS; + break; + case '-': + op = OPERATOR_MINUS; + break; + case '!': + op = OPERATOR_NOT; + break; + case '^': + op = OPERATOR_XOR; + break; + default: + gcc_unreachable(); + } + imp->require_c_string(" "); + Expression* expr = Expression::import_expression(imp); + return Expression::make_unary(op, expr, imp->location()); +} + +// Make a unary expression. + +Expression* +Expression::make_unary(Operator op, Expression* expr, source_location location) +{ + return new Unary_expression(op, expr, location); +} + +// If this is an indirection through a pointer, return the expression +// being pointed through. Otherwise return this. + +Expression* +Expression::deref() +{ + if (this->classification_ == EXPRESSION_UNARY) + { + Unary_expression* ue = static_cast<Unary_expression*>(this); + if (ue->op() == OPERATOR_MULT) + return ue->operand(); + } + return this; +} + +// Class Binary_expression. + +// Traversal. + +int +Binary_expression::do_traverse(Traverse* traverse) +{ + int t = Expression::traverse(&this->left_, traverse); + if (t == TRAVERSE_EXIT) + return TRAVERSE_EXIT; + return Expression::traverse(&this->right_, traverse); +} + +// Compare integer constants according to OP. + +bool +Binary_expression::compare_integer(Operator op, mpz_t left_val, + mpz_t right_val) +{ + int i = mpz_cmp(left_val, right_val); + switch (op) + { + case OPERATOR_EQEQ: + return i == 0; + case OPERATOR_NOTEQ: + return i != 0; + case OPERATOR_LT: + return i < 0; + case OPERATOR_LE: + return i <= 0; + case OPERATOR_GT: + return i > 0; + case OPERATOR_GE: + return i >= 0; + default: + gcc_unreachable(); + } +} + +// Compare floating point constants according to OP. + +bool +Binary_expression::compare_float(Operator op, Type* type, mpfr_t left_val, + mpfr_t right_val) +{ + int i; + if (type == NULL) + i = mpfr_cmp(left_val, right_val); + else + { + mpfr_t lv; + mpfr_init_set(lv, left_val, GMP_RNDN); + mpfr_t rv; + mpfr_init_set(rv, right_val, GMP_RNDN); + Float_expression::constrain_float(lv, type); + Float_expression::constrain_float(rv, type); + i = mpfr_cmp(lv, rv); + mpfr_clear(lv); + mpfr_clear(rv); + } + switch (op) + { + case OPERATOR_EQEQ: + return i == 0; + case OPERATOR_NOTEQ: + return i != 0; + case OPERATOR_LT: + return i < 0; + case OPERATOR_LE: + return i <= 0; + case OPERATOR_GT: + return i > 0; + case OPERATOR_GE: + return i >= 0; + default: + gcc_unreachable(); + } +} + +// Compare complex constants according to OP. Complex numbers may +// only be compared for equality. + +bool +Binary_expression::compare_complex(Operator op, Type* type, + mpfr_t left_real, mpfr_t left_imag, + mpfr_t right_real, mpfr_t right_imag) +{ + bool is_equal; + if (type == NULL) + is_equal = (mpfr_cmp(left_real, right_real) == 0 + && mpfr_cmp(left_imag, right_imag) == 0); + else + { + mpfr_t lr; + mpfr_t li; + mpfr_init_set(lr, left_real, GMP_RNDN); + mpfr_init_set(li, left_imag, GMP_RNDN); + mpfr_t rr; + mpfr_t ri; + mpfr_init_set(rr, right_real, GMP_RNDN); + mpfr_init_set(ri, right_imag, GMP_RNDN); + Complex_expression::constrain_complex(lr, li, type); + Complex_expression::constrain_complex(rr, ri, type); + is_equal = mpfr_cmp(lr, rr) == 0 && mpfr_cmp(li, ri) == 0; + mpfr_clear(lr); + mpfr_clear(li); + mpfr_clear(rr); + mpfr_clear(ri); + } + switch (op) + { + case OPERATOR_EQEQ: + return is_equal; + case OPERATOR_NOTEQ: + return !is_equal; + default: + gcc_unreachable(); + } +} + +// Apply binary opcode OP to LEFT_VAL and RIGHT_VAL, setting VAL. +// LEFT_TYPE is the type of LEFT_VAL, RIGHT_TYPE is the type of +// RIGHT_VAL; LEFT_TYPE and/or RIGHT_TYPE may be NULL. Return true if +// this could be done, false if not. + +bool +Binary_expression::eval_integer(Operator op, Type* left_type, mpz_t left_val, + Type* right_type, mpz_t right_val, + source_location location, mpz_t val) +{ + bool is_shift_op = false; + switch (op) + { + case OPERATOR_OROR: + case OPERATOR_ANDAND: + case OPERATOR_EQEQ: + case OPERATOR_NOTEQ: + case OPERATOR_LT: + case OPERATOR_LE: + case OPERATOR_GT: + case OPERATOR_GE: + // These return boolean values. We should probably handle them + // anyhow in case a type conversion is used on the result. + return false; + case OPERATOR_PLUS: + mpz_add(val, left_val, right_val); + break; + case OPERATOR_MINUS: + mpz_sub(val, left_val, right_val); + break; + case OPERATOR_OR: + mpz_ior(val, left_val, right_val); + break; + case OPERATOR_XOR: + mpz_xor(val, left_val, right_val); + break; + case OPERATOR_MULT: + mpz_mul(val, left_val, right_val); + break; + case OPERATOR_DIV: + if (mpz_sgn(right_val) != 0) + mpz_tdiv_q(val, left_val, right_val); + else + { + error_at(location, "division by zero"); + mpz_set_ui(val, 0); + return true; + } + break; + case OPERATOR_MOD: + if (mpz_sgn(right_val) != 0) + mpz_tdiv_r(val, left_val, right_val); + else + { + error_at(location, "division by zero"); + mpz_set_ui(val, 0); + return true; + } + break; + case OPERATOR_LSHIFT: + { + unsigned long shift = mpz_get_ui(right_val); + if (mpz_cmp_ui(right_val, shift) != 0) + { + error_at(location, "shift count overflow"); + mpz_set_ui(val, 0); + return true; + } + mpz_mul_2exp(val, left_val, shift); + is_shift_op = true; + break; + } + break; + case OPERATOR_RSHIFT: + { + unsigned long shift = mpz_get_ui(right_val); + if (mpz_cmp_ui(right_val, shift) != 0) + { + error_at(location, "shift count overflow"); + mpz_set_ui(val, 0); + return true; + } + if (mpz_cmp_ui(left_val, 0) >= 0) + mpz_tdiv_q_2exp(val, left_val, shift); + else + mpz_fdiv_q_2exp(val, left_val, shift); + is_shift_op = true; + break; + } + break; + case OPERATOR_AND: + mpz_and(val, left_val, right_val); + break; + case OPERATOR_BITCLEAR: + { + mpz_t tval; + mpz_init(tval); + mpz_com(tval, right_val); + mpz_and(val, left_val, tval); + mpz_clear(tval); + } + break; + default: + gcc_unreachable(); + } + + Type* type = left_type; + if (!is_shift_op) + { + if (type == NULL) + type = right_type; + else if (type != right_type && right_type != NULL) + { + if (type->is_abstract()) + type = right_type; + else if (!right_type->is_abstract()) + { + // This look like a type error which should be diagnosed + // elsewhere. Don't do anything here, to avoid an + // unhelpful chain of error messages. + return true; + } + } + } + + if (type != NULL && !type->is_abstract()) + { + // We have to check the operands too, as we have implicitly + // coerced them to TYPE. + if ((type != left_type + && !Integer_expression::check_constant(left_val, type, location)) + || (!is_shift_op + && type != right_type + && !Integer_expression::check_constant(right_val, type, + location)) + || !Integer_expression::check_constant(val, type, location)) + mpz_set_ui(val, 0); + } + + return true; +} + +// Apply binary opcode OP to LEFT_VAL and RIGHT_VAL, setting VAL. +// Return true if this could be done, false if not. + +bool +Binary_expression::eval_float(Operator op, Type* left_type, mpfr_t left_val, + Type* right_type, mpfr_t right_val, + mpfr_t val, source_location location) +{ + switch (op) + { + case OPERATOR_OROR: + case OPERATOR_ANDAND: + case OPERATOR_EQEQ: + case OPERATOR_NOTEQ: + case OPERATOR_LT: + case OPERATOR_LE: + case OPERATOR_GT: + case OPERATOR_GE: + // These return boolean values. We should probably handle them + // anyhow in case a type conversion is used on the result. + return false; + case OPERATOR_PLUS: + mpfr_add(val, left_val, right_val, GMP_RNDN); + break; + case OPERATOR_MINUS: + mpfr_sub(val, left_val, right_val, GMP_RNDN); + break; + case OPERATOR_OR: + case OPERATOR_XOR: + case OPERATOR_AND: + case OPERATOR_BITCLEAR: + return false; + case OPERATOR_MULT: + mpfr_mul(val, left_val, right_val, GMP_RNDN); + break; + case OPERATOR_DIV: + if (mpfr_zero_p(right_val)) + error_at(location, "division by zero"); + mpfr_div(val, left_val, right_val, GMP_RNDN); + break; + case OPERATOR_MOD: + return false; + case OPERATOR_LSHIFT: + case OPERATOR_RSHIFT: + return false; + default: + gcc_unreachable(); + } + + Type* type = left_type; + if (type == NULL) + type = right_type; + else if (type != right_type && right_type != NULL) + { + if (type->is_abstract()) + type = right_type; + else if (!right_type->is_abstract()) + { + // This looks like a type error which should be diagnosed + // elsewhere. Don't do anything here, to avoid an unhelpful + // chain of error messages. + return true; + } + } + + if (type != NULL && !type->is_abstract()) + { + if ((type != left_type + && !Float_expression::check_constant(left_val, type, location)) + || (type != right_type + && !Float_expression::check_constant(right_val, type, + location)) + || !Float_expression::check_constant(val, type, location)) + mpfr_set_ui(val, 0, GMP_RNDN); + } + + return true; +} + +// Apply binary opcode OP to LEFT_REAL/LEFT_IMAG and +// RIGHT_REAL/RIGHT_IMAG, setting REAL/IMAG. Return true if this +// could be done, false if not. + +bool +Binary_expression::eval_complex(Operator op, Type* left_type, + mpfr_t left_real, mpfr_t left_imag, + Type *right_type, + mpfr_t right_real, mpfr_t right_imag, + mpfr_t real, mpfr_t imag, + source_location location) +{ + switch (op) + { + case OPERATOR_OROR: + case OPERATOR_ANDAND: + case OPERATOR_EQEQ: + case OPERATOR_NOTEQ: + case OPERATOR_LT: + case OPERATOR_LE: + case OPERATOR_GT: + case OPERATOR_GE: + // These return boolean values and must be handled differently. + return false; + case OPERATOR_PLUS: + mpfr_add(real, left_real, right_real, GMP_RNDN); + mpfr_add(imag, left_imag, right_imag, GMP_RNDN); + break; + case OPERATOR_MINUS: + mpfr_sub(real, left_real, right_real, GMP_RNDN); + mpfr_sub(imag, left_imag, right_imag, GMP_RNDN); + break; + case OPERATOR_OR: + case OPERATOR_XOR: + case OPERATOR_AND: + case OPERATOR_BITCLEAR: + return false; + case OPERATOR_MULT: + { + // You might think that multiplying two complex numbers would + // be simple, and you would be right, until you start to think + // about getting the right answer for infinity. If one + // operand here is infinity and the other is anything other + // than zero or NaN, then we are going to wind up subtracting + // two infinity values. That will give us a NaN, but the + // correct answer is infinity. + + mpfr_t lrrr; + mpfr_init(lrrr); + mpfr_mul(lrrr, left_real, right_real, GMP_RNDN); + + mpfr_t lrri; + mpfr_init(lrri); + mpfr_mul(lrri, left_real, right_imag, GMP_RNDN); + + mpfr_t lirr; + mpfr_init(lirr); + mpfr_mul(lirr, left_imag, right_real, GMP_RNDN); + + mpfr_t liri; + mpfr_init(liri); + mpfr_mul(liri, left_imag, right_imag, GMP_RNDN); + + mpfr_sub(real, lrrr, liri, GMP_RNDN); + mpfr_add(imag, lrri, lirr, GMP_RNDN); + + // If we get NaN on both sides, check whether it should really + // be infinity. The rule is that if either side of the + // complex number is infinity, then the whole value is + // infinity, even if the other side is NaN. So the only case + // we have to fix is the one in which both sides are NaN. + if (mpfr_nan_p(real) && mpfr_nan_p(imag) + && (!mpfr_nan_p(left_real) || !mpfr_nan_p(left_imag)) + && (!mpfr_nan_p(right_real) || !mpfr_nan_p(right_imag))) + { + bool is_infinity = false; + + mpfr_t lr; + mpfr_t li; + mpfr_init_set(lr, left_real, GMP_RNDN); + mpfr_init_set(li, left_imag, GMP_RNDN); + + mpfr_t rr; + mpfr_t ri; + mpfr_init_set(rr, right_real, GMP_RNDN); + mpfr_init_set(ri, right_imag, GMP_RNDN); + + // If the left side is infinity, then the result is + // infinity. + if (mpfr_inf_p(lr) || mpfr_inf_p(li)) + { + mpfr_set_ui(lr, mpfr_inf_p(lr) ? 1 : 0, GMP_RNDN); + mpfr_copysign(lr, lr, left_real, GMP_RNDN); + mpfr_set_ui(li, mpfr_inf_p(li) ? 1 : 0, GMP_RNDN); + mpfr_copysign(li, li, left_imag, GMP_RNDN); + if (mpfr_nan_p(rr)) + { + mpfr_set_ui(rr, 0, GMP_RNDN); + mpfr_copysign(rr, rr, right_real, GMP_RNDN); + } + if (mpfr_nan_p(ri)) + { + mpfr_set_ui(ri, 0, GMP_RNDN); + mpfr_copysign(ri, ri, right_imag, GMP_RNDN); + } + is_infinity = true; + } + + // If the right side is infinity, then the result is + // infinity. + if (mpfr_inf_p(rr) || mpfr_inf_p(ri)) + { + mpfr_set_ui(rr, mpfr_inf_p(rr) ? 1 : 0, GMP_RNDN); + mpfr_copysign(rr, rr, right_real, GMP_RNDN); + mpfr_set_ui(ri, mpfr_inf_p(ri) ? 1 : 0, GMP_RNDN); + mpfr_copysign(ri, ri, right_imag, GMP_RNDN); + if (mpfr_nan_p(lr)) + { + mpfr_set_ui(lr, 0, GMP_RNDN); + mpfr_copysign(lr, lr, left_real, GMP_RNDN); + } + if (mpfr_nan_p(li)) + { + mpfr_set_ui(li, 0, GMP_RNDN); + mpfr_copysign(li, li, left_imag, GMP_RNDN); + } + is_infinity = true; + } + + // If we got an overflow in the intermediate computations, + // then the result is infinity. + if (!is_infinity + && (mpfr_inf_p(lrrr) || mpfr_inf_p(lrri) + || mpfr_inf_p(lirr) || mpfr_inf_p(liri))) + { + if (mpfr_nan_p(lr)) + { + mpfr_set_ui(lr, 0, GMP_RNDN); + mpfr_copysign(lr, lr, left_real, GMP_RNDN); + } + if (mpfr_nan_p(li)) + { + mpfr_set_ui(li, 0, GMP_RNDN); + mpfr_copysign(li, li, left_imag, GMP_RNDN); + } + if (mpfr_nan_p(rr)) + { + mpfr_set_ui(rr, 0, GMP_RNDN); + mpfr_copysign(rr, rr, right_real, GMP_RNDN); + } + if (mpfr_nan_p(ri)) + { + mpfr_set_ui(ri, 0, GMP_RNDN); + mpfr_copysign(ri, ri, right_imag, GMP_RNDN); + } + is_infinity = true; + } + + if (is_infinity) + { + mpfr_mul(lrrr, lr, rr, GMP_RNDN); + mpfr_mul(lrri, lr, ri, GMP_RNDN); + mpfr_mul(lirr, li, rr, GMP_RNDN); + mpfr_mul(liri, li, ri, GMP_RNDN); + mpfr_sub(real, lrrr, liri, GMP_RNDN); + mpfr_add(imag, lrri, lirr, GMP_RNDN); + mpfr_set_inf(real, mpfr_sgn(real)); + mpfr_set_inf(imag, mpfr_sgn(imag)); + } + + mpfr_clear(lr); + mpfr_clear(li); + mpfr_clear(rr); + mpfr_clear(ri); + } + + mpfr_clear(lrrr); + mpfr_clear(lrri); + mpfr_clear(lirr); + mpfr_clear(liri); + } + break; + case OPERATOR_DIV: + { + // For complex division we want to avoid having an + // intermediate overflow turn the whole result in a NaN. We + // scale the values to try to avoid this. + + if (mpfr_zero_p(right_real) && mpfr_zero_p(right_imag)) + error_at(location, "division by zero"); + + mpfr_t rra; + mpfr_t ria; + mpfr_init(rra); + mpfr_init(ria); + mpfr_abs(rra, right_real, GMP_RNDN); + mpfr_abs(ria, right_imag, GMP_RNDN); + mpfr_t t; + mpfr_init(t); + mpfr_max(t, rra, ria, GMP_RNDN); + + mpfr_t rr; + mpfr_t ri; + mpfr_init_set(rr, right_real, GMP_RNDN); + mpfr_init_set(ri, right_imag, GMP_RNDN); + long ilogbw = 0; + if (!mpfr_inf_p(t) && !mpfr_nan_p(t) && !mpfr_zero_p(t)) + { + ilogbw = mpfr_get_exp(t); + mpfr_mul_2si(rr, rr, - ilogbw, GMP_RNDN); + mpfr_mul_2si(ri, ri, - ilogbw, GMP_RNDN); + } + + mpfr_t denom; + mpfr_init(denom); + mpfr_mul(denom, rr, rr, GMP_RNDN); + mpfr_mul(t, ri, ri, GMP_RNDN); + mpfr_add(denom, denom, t, GMP_RNDN); + + mpfr_mul(real, left_real, rr, GMP_RNDN); + mpfr_mul(t, left_imag, ri, GMP_RNDN); + mpfr_add(real, real, t, GMP_RNDN); + mpfr_div(real, real, denom, GMP_RNDN); + mpfr_mul_2si(real, real, - ilogbw, GMP_RNDN); + + mpfr_mul(imag, left_imag, rr, GMP_RNDN); + mpfr_mul(t, left_real, ri, GMP_RNDN); + mpfr_sub(imag, imag, t, GMP_RNDN); + mpfr_div(imag, imag, denom, GMP_RNDN); + mpfr_mul_2si(imag, imag, - ilogbw, GMP_RNDN); + + // If we wind up with NaN on both sides, check whether we + // should really have infinity. The rule is that if either + // side of the complex number is infinity, then the whole + // value is infinity, even if the other side is NaN. So the + // only case we have to fix is the one in which both sides are + // NaN. + if (mpfr_nan_p(real) && mpfr_nan_p(imag) + && (!mpfr_nan_p(left_real) || !mpfr_nan_p(left_imag)) + && (!mpfr_nan_p(right_real) || !mpfr_nan_p(right_imag))) + { + if (mpfr_zero_p(denom)) + { + mpfr_set_inf(real, mpfr_sgn(rr)); + mpfr_mul(real, real, left_real, GMP_RNDN); + mpfr_set_inf(imag, mpfr_sgn(rr)); + mpfr_mul(imag, imag, left_imag, GMP_RNDN); + } + else if ((mpfr_inf_p(left_real) || mpfr_inf_p(left_imag)) + && mpfr_number_p(rr) && mpfr_number_p(ri)) + { + mpfr_set_ui(t, mpfr_inf_p(left_real) ? 1 : 0, GMP_RNDN); + mpfr_copysign(t, t, left_real, GMP_RNDN); + + mpfr_t t2; + mpfr_init_set_ui(t2, mpfr_inf_p(left_imag) ? 1 : 0, GMP_RNDN); + mpfr_copysign(t2, t2, left_imag, GMP_RNDN); + + mpfr_t t3; + mpfr_init(t3); + mpfr_mul(t3, t, rr, GMP_RNDN); + + mpfr_t t4; + mpfr_init(t4); + mpfr_mul(t4, t2, ri, GMP_RNDN); + + mpfr_add(t3, t3, t4, GMP_RNDN); + mpfr_set_inf(real, mpfr_sgn(t3)); + + mpfr_mul(t3, t2, rr, GMP_RNDN); + mpfr_mul(t4, t, ri, GMP_RNDN); + mpfr_sub(t3, t3, t4, GMP_RNDN); + mpfr_set_inf(imag, mpfr_sgn(t3)); + + mpfr_clear(t2); + mpfr_clear(t3); + mpfr_clear(t4); + } + else if ((mpfr_inf_p(right_real) || mpfr_inf_p(right_imag)) + && mpfr_number_p(left_real) && mpfr_number_p(left_imag)) + { + mpfr_set_ui(t, mpfr_inf_p(rr) ? 1 : 0, GMP_RNDN); + mpfr_copysign(t, t, rr, GMP_RNDN); + + mpfr_t t2; + mpfr_init_set_ui(t2, mpfr_inf_p(ri) ? 1 : 0, GMP_RNDN); + mpfr_copysign(t2, t2, ri, GMP_RNDN); + + mpfr_t t3; + mpfr_init(t3); + mpfr_mul(t3, left_real, t, GMP_RNDN); + + mpfr_t t4; + mpfr_init(t4); + mpfr_mul(t4, left_imag, t2, GMP_RNDN); + + mpfr_add(t3, t3, t4, GMP_RNDN); + mpfr_set_ui(real, 0, GMP_RNDN); + mpfr_mul(real, real, t3, GMP_RNDN); + + mpfr_mul(t3, left_imag, t, GMP_RNDN); + mpfr_mul(t4, left_real, t2, GMP_RNDN); + mpfr_sub(t3, t3, t4, GMP_RNDN); + mpfr_set_ui(imag, 0, GMP_RNDN); + mpfr_mul(imag, imag, t3, GMP_RNDN); + + mpfr_clear(t2); + mpfr_clear(t3); + mpfr_clear(t4); + } + } + + mpfr_clear(denom); + mpfr_clear(rr); + mpfr_clear(ri); + mpfr_clear(t); + mpfr_clear(rra); + mpfr_clear(ria); + } + break; + case OPERATOR_MOD: + return false; + case OPERATOR_LSHIFT: + case OPERATOR_RSHIFT: + return false; + default: + gcc_unreachable(); + } + + Type* type = left_type; + if (type == NULL) + type = right_type; + else if (type != right_type && right_type != NULL) + { + if (type->is_abstract()) + type = right_type; + else if (!right_type->is_abstract()) + { + // This looks like a type error which should be diagnosed + // elsewhere. Don't do anything here, to avoid an unhelpful + // chain of error messages. + return true; + } + } + + if (type != NULL && !type->is_abstract()) + { + if ((type != left_type + && !Complex_expression::check_constant(left_real, left_imag, + type, location)) + || (type != right_type + && !Complex_expression::check_constant(right_real, right_imag, + type, location)) + || !Complex_expression::check_constant(real, imag, type, + location)) + { + mpfr_set_ui(real, 0, GMP_RNDN); + mpfr_set_ui(imag, 0, GMP_RNDN); + } + } + + return true; +} + +// Lower a binary expression. We have to evaluate constant +// expressions now, in order to implement Go's unlimited precision +// constants. + +Expression* +Binary_expression::do_lower(Gogo*, Named_object*, int) +{ + source_location location = this->location(); + Operator op = this->op_; + Expression* left = this->left_; + Expression* right = this->right_; + + const bool is_comparison = (op == OPERATOR_EQEQ + || op == OPERATOR_NOTEQ + || op == OPERATOR_LT + || op == OPERATOR_LE + || op == OPERATOR_GT + || op == OPERATOR_GE); + + // Integer constant expressions. + { + mpz_t left_val; + mpz_init(left_val); + Type* left_type; + mpz_t right_val; + mpz_init(right_val); + Type* right_type; + if (left->integer_constant_value(false, left_val, &left_type) + && right->integer_constant_value(false, right_val, &right_type)) + { + Expression* ret = NULL; + if (left_type != right_type + && left_type != NULL + && right_type != NULL + && left_type->base() != right_type->base() + && op != OPERATOR_LSHIFT + && op != OPERATOR_RSHIFT) + { + // May be a type error--let it be diagnosed later. + } + else if (is_comparison) + { + bool b = Binary_expression::compare_integer(op, left_val, + right_val); + ret = Expression::make_cast(Type::lookup_bool_type(), + Expression::make_boolean(b, location), + location); + } + else + { + mpz_t val; + mpz_init(val); + + if (Binary_expression::eval_integer(op, left_type, left_val, + right_type, right_val, + location, val)) + { + gcc_assert(op != OPERATOR_OROR && op != OPERATOR_ANDAND); + Type* type; + if (op == OPERATOR_LSHIFT || op == OPERATOR_RSHIFT) + type = left_type; + else if (left_type == NULL) + type = right_type; + else if (right_type == NULL) + type = left_type; + else if (!left_type->is_abstract() + && left_type->named_type() != NULL) + type = left_type; + else if (!right_type->is_abstract() + && right_type->named_type() != NULL) + type = right_type; + else if (!left_type->is_abstract()) + type = left_type; + else if (!right_type->is_abstract()) + type = right_type; + else if (left_type->float_type() != NULL) + type = left_type; + else if (right_type->float_type() != NULL) + type = right_type; + else if (left_type->complex_type() != NULL) + type = left_type; + else if (right_type->complex_type() != NULL) + type = right_type; + else + type = left_type; + ret = Expression::make_integer(&val, type, location); + } + + mpz_clear(val); + } + + if (ret != NULL) + { + mpz_clear(right_val); + mpz_clear(left_val); + return ret; + } + } + mpz_clear(right_val); + mpz_clear(left_val); + } + + // Floating point constant expressions. + { + mpfr_t left_val; + mpfr_init(left_val); + Type* left_type; + mpfr_t right_val; + mpfr_init(right_val); + Type* right_type; + if (left->float_constant_value(left_val, &left_type) + && right->float_constant_value(right_val, &right_type)) + { + Expression* ret = NULL; + if (left_type != right_type + && left_type != NULL + && right_type != NULL + && left_type->base() != right_type->base() + && op != OPERATOR_LSHIFT + && op != OPERATOR_RSHIFT) + { + // May be a type error--let it be diagnosed later. + } + else if (is_comparison) + { + bool b = Binary_expression::compare_float(op, + (left_type != NULL + ? left_type + : right_type), + left_val, right_val); + ret = Expression::make_boolean(b, location); + } + else + { + mpfr_t val; + mpfr_init(val); + + if (Binary_expression::eval_float(op, left_type, left_val, + right_type, right_val, val, + location)) + { + gcc_assert(op != OPERATOR_OROR && op != OPERATOR_ANDAND + && op != OPERATOR_LSHIFT && op != OPERATOR_RSHIFT); + Type* type; + if (left_type == NULL) + type = right_type; + else if (right_type == NULL) + type = left_type; + else if (!left_type->is_abstract() + && left_type->named_type() != NULL) + type = left_type; + else if (!right_type->is_abstract() + && right_type->named_type() != NULL) + type = right_type; + else if (!left_type->is_abstract()) + type = left_type; + else if (!right_type->is_abstract()) + type = right_type; + else if (left_type->float_type() != NULL) + type = left_type; + else if (right_type->float_type() != NULL) + type = right_type; + else + type = left_type; + ret = Expression::make_float(&val, type, location); + } + + mpfr_clear(val); + } + + if (ret != NULL) + { + mpfr_clear(right_val); + mpfr_clear(left_val); + return ret; + } + } + mpfr_clear(right_val); + mpfr_clear(left_val); + } + + // Complex constant expressions. + { + mpfr_t left_real; + mpfr_t left_imag; + mpfr_init(left_real); + mpfr_init(left_imag); + Type* left_type; + + mpfr_t right_real; + mpfr_t right_imag; + mpfr_init(right_real); + mpfr_init(right_imag); + Type* right_type; + + if (left->complex_constant_value(left_real, left_imag, &left_type) + && right->complex_constant_value(right_real, right_imag, &right_type)) + { + Expression* ret = NULL; + if (left_type != right_type + && left_type != NULL + && right_type != NULL + && left_type->base() != right_type->base()) + { + // May be a type error--let it be diagnosed later. + } + else if (is_comparison) + { + bool b = Binary_expression::compare_complex(op, + (left_type != NULL + ? left_type + : right_type), + left_real, + left_imag, + right_real, + right_imag); + ret = Expression::make_boolean(b, location); + } + else + { + mpfr_t real; + mpfr_t imag; + mpfr_init(real); + mpfr_init(imag); + + if (Binary_expression::eval_complex(op, left_type, + left_real, left_imag, + right_type, + right_real, right_imag, + real, imag, + location)) + { + gcc_assert(op != OPERATOR_OROR && op != OPERATOR_ANDAND + && op != OPERATOR_LSHIFT && op != OPERATOR_RSHIFT); + Type* type; + if (left_type == NULL) + type = right_type; + else if (right_type == NULL) + type = left_type; + else if (!left_type->is_abstract() + && left_type->named_type() != NULL) + type = left_type; + else if (!right_type->is_abstract() + && right_type->named_type() != NULL) + type = right_type; + else if (!left_type->is_abstract()) + type = left_type; + else if (!right_type->is_abstract()) + type = right_type; + else if (left_type->complex_type() != NULL) + type = left_type; + else if (right_type->complex_type() != NULL) + type = right_type; + else + type = left_type; + ret = Expression::make_complex(&real, &imag, type, + location); + } + mpfr_clear(real); + mpfr_clear(imag); + } + + if (ret != NULL) + { + mpfr_clear(left_real); + mpfr_clear(left_imag); + mpfr_clear(right_real); + mpfr_clear(right_imag); + return ret; + } + } + + mpfr_clear(left_real); + mpfr_clear(left_imag); + mpfr_clear(right_real); + mpfr_clear(right_imag); + } + + // String constant expressions. + if (op == OPERATOR_PLUS + && left->type()->is_string_type() + && right->type()->is_string_type()) + { + std::string left_string; + std::string right_string; + if (left->string_constant_value(&left_string) + && right->string_constant_value(&right_string)) + return Expression::make_string(left_string + right_string, location); + } + + return this; +} + +// Return the integer constant value, if it has one. + +bool +Binary_expression::do_integer_constant_value(bool iota_is_constant, mpz_t val, + Type** ptype) const +{ + mpz_t left_val; + mpz_init(left_val); + Type* left_type; + if (!this->left_->integer_constant_value(iota_is_constant, left_val, + &left_type)) + { + mpz_clear(left_val); + return false; + } + + mpz_t right_val; + mpz_init(right_val); + Type* right_type; + if (!this->right_->integer_constant_value(iota_is_constant, right_val, + &right_type)) + { + mpz_clear(right_val); + mpz_clear(left_val); + return false; + } + + bool ret; + if (left_type != right_type + && left_type != NULL + && right_type != NULL + && left_type->base() != right_type->base() + && this->op_ != OPERATOR_RSHIFT + && this->op_ != OPERATOR_LSHIFT) + ret = false; + else + ret = Binary_expression::eval_integer(this->op_, left_type, left_val, + right_type, right_val, + this->location(), val); + + mpz_clear(right_val); + mpz_clear(left_val); + + if (ret) + *ptype = left_type; + + return ret; +} + +// Return the floating point constant value, if it has one. + +bool +Binary_expression::do_float_constant_value(mpfr_t val, Type** ptype) const +{ + mpfr_t left_val; + mpfr_init(left_val); + Type* left_type; + if (!this->left_->float_constant_value(left_val, &left_type)) + { + mpfr_clear(left_val); + return false; + } + + mpfr_t right_val; + mpfr_init(right_val); + Type* right_type; + if (!this->right_->float_constant_value(right_val, &right_type)) + { + mpfr_clear(right_val); + mpfr_clear(left_val); + return false; + } + + bool ret; + if (left_type != right_type + && left_type != NULL + && right_type != NULL + && left_type->base() != right_type->base()) + ret = false; + else + ret = Binary_expression::eval_float(this->op_, left_type, left_val, + right_type, right_val, + val, this->location()); + + mpfr_clear(left_val); + mpfr_clear(right_val); + + if (ret) + *ptype = left_type; + + return ret; +} + +// Return the complex constant value, if it has one. + +bool +Binary_expression::do_complex_constant_value(mpfr_t real, mpfr_t imag, + Type** ptype) const +{ + mpfr_t left_real; + mpfr_t left_imag; + mpfr_init(left_real); + mpfr_init(left_imag); + Type* left_type; + if (!this->left_->complex_constant_value(left_real, left_imag, &left_type)) + { + mpfr_clear(left_real); + mpfr_clear(left_imag); + return false; + } + + mpfr_t right_real; + mpfr_t right_imag; + mpfr_init(right_real); + mpfr_init(right_imag); + Type* right_type; + if (!this->right_->complex_constant_value(right_real, right_imag, + &right_type)) + { + mpfr_clear(left_real); + mpfr_clear(left_imag); + mpfr_clear(right_real); + mpfr_clear(right_imag); + return false; + } + + bool ret; + if (left_type != right_type + && left_type != NULL + && right_type != NULL + && left_type->base() != right_type->base()) + ret = false; + else + ret = Binary_expression::eval_complex(this->op_, left_type, + left_real, left_imag, + right_type, + right_real, right_imag, + real, imag, + this->location()); + mpfr_clear(left_real); + mpfr_clear(left_imag); + mpfr_clear(right_real); + mpfr_clear(right_imag); + + if (ret) + *ptype = left_type; + + return ret; +} + +// Note that the value is being discarded. + +void +Binary_expression::do_discarding_value() +{ + if (this->op_ == OPERATOR_OROR || this->op_ == OPERATOR_ANDAND) + this->right_->discarding_value(); + else + this->warn_about_unused_value(); +} + +// Get type. + +Type* +Binary_expression::do_type() +{ + switch (this->op_) + { + case OPERATOR_OROR: + case OPERATOR_ANDAND: + case OPERATOR_EQEQ: + case OPERATOR_NOTEQ: + case OPERATOR_LT: + case OPERATOR_LE: + case OPERATOR_GT: + case OPERATOR_GE: + return Type::lookup_bool_type(); + + case OPERATOR_PLUS: + case OPERATOR_MINUS: + case OPERATOR_OR: + case OPERATOR_XOR: + case OPERATOR_MULT: + case OPERATOR_DIV: + case OPERATOR_MOD: + case OPERATOR_AND: + case OPERATOR_BITCLEAR: + { + Type* left_type = this->left_->type(); + Type* right_type = this->right_->type(); + if (!left_type->is_abstract() && left_type->named_type() != NULL) + return left_type; + else if (!right_type->is_abstract() && right_type->named_type() != NULL) + return right_type; + else if (!left_type->is_abstract()) + return left_type; + else if (!right_type->is_abstract()) + return right_type; + else if (left_type->complex_type() != NULL) + return left_type; + else if (right_type->complex_type() != NULL) + return right_type; + else if (left_type->float_type() != NULL) + return left_type; + else if (right_type->float_type() != NULL) + return right_type; + else + return left_type; + } + + case OPERATOR_LSHIFT: + case OPERATOR_RSHIFT: + return this->left_->type(); + + default: + gcc_unreachable(); + } +} + +// Set type for a binary expression. + +void +Binary_expression::do_determine_type(const Type_context* context) +{ + Type* tleft = this->left_->type(); + Type* tright = this->right_->type(); + + // Both sides should have the same type, except for the shift + // operations. For a comparison, we should ignore the incoming + // type. + + bool is_shift_op = (this->op_ == OPERATOR_LSHIFT + || this->op_ == OPERATOR_RSHIFT); + + bool is_comparison = (this->op_ == OPERATOR_EQEQ + || this->op_ == OPERATOR_NOTEQ + || this->op_ == OPERATOR_LT + || this->op_ == OPERATOR_LE + || this->op_ == OPERATOR_GT + || this->op_ == OPERATOR_GE); + + Type_context subcontext(*context); + + if (is_comparison) + { + // In a comparison, the context does not determine the types of + // the operands. + subcontext.type = NULL; + } + + // Set the context for the left hand operand. + if (is_shift_op) + { + // The right hand operand plays no role in determining the type + // of the left hand operand. A shift of an abstract integer in + // a string context gets special treatment, which may be a + // language bug. + if (subcontext.type != NULL + && subcontext.type->is_string_type() + && tleft->is_abstract()) + error_at(this->location(), "shift of non-integer operand"); + } + else if (!tleft->is_abstract()) + subcontext.type = tleft; + else if (!tright->is_abstract()) + subcontext.type = tright; + else if (subcontext.type == NULL) + { + if ((tleft->integer_type() != NULL && tright->integer_type() != NULL) + || (tleft->float_type() != NULL && tright->float_type() != NULL) + || (tleft->complex_type() != NULL && tright->complex_type() != NULL)) + { + // Both sides have an abstract integer, abstract float, or + // abstract complex type. Just let CONTEXT determine + // whether they may remain abstract or not. + } + else if (tleft->complex_type() != NULL) + subcontext.type = tleft; + else if (tright->complex_type() != NULL) + subcontext.type = tright; + else if (tleft->float_type() != NULL) + subcontext.type = tleft; + else if (tright->float_type() != NULL) + subcontext.type = tright; + else + subcontext.type = tleft; + } + + this->left_->determine_type(&subcontext); + + // The context for the right hand operand is the same as for the + // left hand operand, except for a shift operator. + if (is_shift_op) + { + subcontext.type = Type::lookup_integer_type("uint"); + subcontext.may_be_abstract = false; + } + + this->right_->determine_type(&subcontext); +} + +// Report an error if the binary operator OP does not support TYPE. +// Return whether the operation is OK. This should not be used for +// shift. + +bool +Binary_expression::check_operator_type(Operator op, Type* type, + source_location location) +{ + switch (op) + { + case OPERATOR_OROR: + case OPERATOR_ANDAND: + if (!type->is_boolean_type()) + { + error_at(location, "expected boolean type"); + return false; + } + break; + + case OPERATOR_EQEQ: + case OPERATOR_NOTEQ: + if (type->integer_type() == NULL + && type->float_type() == NULL + && type->complex_type() == NULL + && !type->is_string_type() + && type->points_to() == NULL + && !type->is_nil_type() + && !type->is_boolean_type() + && type->interface_type() == NULL + && (type->array_type() == NULL + || type->array_type()->length() != NULL) + && type->map_type() == NULL + && type->channel_type() == NULL + && type->function_type() == NULL) + { + error_at(location, + ("expected integer, floating, complex, string, pointer, " + "boolean, interface, slice, map, channel, " + "or function type")); + return false; + } + break; + + case OPERATOR_LT: + case OPERATOR_LE: + case OPERATOR_GT: + case OPERATOR_GE: + if (type->integer_type() == NULL + && type->float_type() == NULL + && !type->is_string_type()) + { + error_at(location, "expected integer, floating, or string type"); + return false; + } + break; + + case OPERATOR_PLUS: + case OPERATOR_PLUSEQ: + if (type->integer_type() == NULL + && type->float_type() == NULL + && type->complex_type() == NULL + && !type->is_string_type()) + { + error_at(location, + "expected integer, floating, complex, or string type"); + return false; + } + break; + + case OPERATOR_MINUS: + case OPERATOR_MINUSEQ: + case OPERATOR_MULT: + case OPERATOR_MULTEQ: + case OPERATOR_DIV: + case OPERATOR_DIVEQ: + if (type->integer_type() == NULL + && type->float_type() == NULL + && type->complex_type() == NULL) + { + error_at(location, "expected integer, floating, or complex type"); + return false; + } + break; + + case OPERATOR_MOD: + case OPERATOR_MODEQ: + case OPERATOR_OR: + case OPERATOR_OREQ: + case OPERATOR_AND: + case OPERATOR_ANDEQ: + case OPERATOR_XOR: + case OPERATOR_XOREQ: + case OPERATOR_BITCLEAR: + case OPERATOR_BITCLEAREQ: + if (type->integer_type() == NULL) + { + error_at(location, "expected integer type"); + return false; + } + break; + + default: + gcc_unreachable(); + } + + return true; +} + +// Check types. + +void +Binary_expression::do_check_types(Gogo*) +{ + Type* left_type = this->left_->type(); + Type* right_type = this->right_->type(); + if (left_type->is_error_type() || right_type->is_error_type()) + return; + + if (this->op_ == OPERATOR_EQEQ + || this->op_ == OPERATOR_NOTEQ + || this->op_ == OPERATOR_LT + || this->op_ == OPERATOR_LE + || this->op_ == OPERATOR_GT + || this->op_ == OPERATOR_GE) + { + if (!Type::are_assignable(left_type, right_type, NULL) + && !Type::are_assignable(right_type, left_type, NULL)) + { + this->report_error(_("incompatible types in binary expression")); + return; + } + if (!Binary_expression::check_operator_type(this->op_, left_type, + this->location()) + || !Binary_expression::check_operator_type(this->op_, right_type, + this->location())) + { + this->set_is_error(); + return; + } + } + else if (this->op_ != OPERATOR_LSHIFT && this->op_ != OPERATOR_RSHIFT) + { + if (!Type::are_compatible_for_binop(left_type, right_type)) + { + this->report_error(_("incompatible types in binary expression")); + return; + } + if (!Binary_expression::check_operator_type(this->op_, left_type, + this->location())) + { + this->set_is_error(); + return; + } + } + else + { + if (left_type->integer_type() == NULL) + this->report_error(_("shift of non-integer operand")); + + if (!right_type->is_abstract() + && (right_type->integer_type() == NULL + || !right_type->integer_type()->is_unsigned())) + this->report_error(_("shift count not unsigned integer")); + else + { + mpz_t val; + mpz_init(val); + Type* type; + if (this->right_->integer_constant_value(true, val, &type)) + { + if (mpz_sgn(val) < 0) + this->report_error(_("negative shift count")); + } + mpz_clear(val); + } + } +} + +// Get a tree for a binary expression. + +tree +Binary_expression::do_get_tree(Translate_context* context) +{ + tree left = this->left_->get_tree(context); + tree right = this->right_->get_tree(context); + + if (left == error_mark_node || right == error_mark_node) + return error_mark_node; + + enum tree_code code; + bool use_left_type = true; + bool is_shift_op = false; + switch (this->op_) + { + case OPERATOR_EQEQ: + case OPERATOR_NOTEQ: + case OPERATOR_LT: + case OPERATOR_LE: + case OPERATOR_GT: + case OPERATOR_GE: + return Expression::comparison_tree(context, this->op_, + this->left_->type(), left, + this->right_->type(), right, + this->location()); + + case OPERATOR_OROR: + code = TRUTH_ORIF_EXPR; + use_left_type = false; + break; + case OPERATOR_ANDAND: + code = TRUTH_ANDIF_EXPR; + use_left_type = false; + break; + case OPERATOR_PLUS: + code = PLUS_EXPR; + break; + case OPERATOR_MINUS: + code = MINUS_EXPR; + break; + case OPERATOR_OR: + code = BIT_IOR_EXPR; + break; + case OPERATOR_XOR: + code = BIT_XOR_EXPR; + break; + case OPERATOR_MULT: + code = MULT_EXPR; + break; + case OPERATOR_DIV: + { + Type *t = this->left_->type(); + if (t->float_type() != NULL || t->complex_type() != NULL) + code = RDIV_EXPR; + else + code = TRUNC_DIV_EXPR; + } + break; + case OPERATOR_MOD: + code = TRUNC_MOD_EXPR; + break; + case OPERATOR_LSHIFT: + code = LSHIFT_EXPR; + is_shift_op = true; + break; + case OPERATOR_RSHIFT: + code = RSHIFT_EXPR; + is_shift_op = true; + break; + case OPERATOR_AND: + code = BIT_AND_EXPR; + break; + case OPERATOR_BITCLEAR: + right = fold_build1(BIT_NOT_EXPR, TREE_TYPE(right), right); + code = BIT_AND_EXPR; + break; + default: + gcc_unreachable(); + } + + tree type = use_left_type ? TREE_TYPE(left) : TREE_TYPE(right); + + if (this->left_->type()->is_string_type()) + { + gcc_assert(this->op_ == OPERATOR_PLUS); + tree string_type = Type::make_string_type()->get_tree(context->gogo()); + static tree string_plus_decl; + return Gogo::call_builtin(&string_plus_decl, + this->location(), + "__go_string_plus", + 2, + string_type, + string_type, + left, + string_type, + right); + } + + tree compute_type = excess_precision_type(type); + if (compute_type != NULL_TREE) + { + left = ::convert(compute_type, left); + right = ::convert(compute_type, right); + } + + tree eval_saved = NULL_TREE; + if (is_shift_op) + { + if (!DECL_P(left)) + left = save_expr(left); + if (!DECL_P(right)) + right = save_expr(right); + // Make sure the values are evaluated. + eval_saved = fold_build2_loc(this->location(), COMPOUND_EXPR, + void_type_node, left, right); + } + + tree ret = fold_build2_loc(this->location(), + code, + compute_type != NULL_TREE ? compute_type : type, + left, right); + + if (compute_type != NULL_TREE) + ret = ::convert(type, ret); + + // In Go, a shift larger than the size of the type is well-defined. + // This is not true in GENERIC, so we need to insert a conditional. + if (is_shift_op) + { + gcc_assert(INTEGRAL_TYPE_P(TREE_TYPE(left))); + gcc_assert(this->left_->type()->integer_type() != NULL); + int bits = TYPE_PRECISION(TREE_TYPE(left)); + + tree compare = fold_build2(LT_EXPR, boolean_type_node, right, + build_int_cst_type(TREE_TYPE(right), bits)); + + tree overflow_result = fold_convert_loc(this->location(), + TREE_TYPE(left), + integer_zero_node); + if (this->op_ == OPERATOR_RSHIFT + && !this->left_->type()->integer_type()->is_unsigned()) + { + tree neg = fold_build2_loc(this->location(), LT_EXPR, + boolean_type_node, left, + fold_convert_loc(this->location(), + TREE_TYPE(left), + integer_zero_node)); + tree neg_one = fold_build2_loc(this->location(), + MINUS_EXPR, TREE_TYPE(left), + fold_convert_loc(this->location(), + TREE_TYPE(left), + integer_zero_node), + fold_convert_loc(this->location(), + TREE_TYPE(left), + integer_one_node)); + overflow_result = fold_build3_loc(this->location(), COND_EXPR, + TREE_TYPE(left), neg, neg_one, + overflow_result); + } + + ret = fold_build3_loc(this->location(), COND_EXPR, TREE_TYPE(left), + compare, ret, overflow_result); + + ret = fold_build2_loc(this->location(), COMPOUND_EXPR, + TREE_TYPE(ret), eval_saved, ret); + } + + return ret; +} + +// Export a binary expression. + +void +Binary_expression::do_export(Export* exp) const +{ + exp->write_c_string("("); + this->left_->export_expression(exp); + switch (this->op_) + { + case OPERATOR_OROR: + exp->write_c_string(" || "); + break; + case OPERATOR_ANDAND: + exp->write_c_string(" && "); + break; + case OPERATOR_EQEQ: + exp->write_c_string(" == "); + break; + case OPERATOR_NOTEQ: + exp->write_c_string(" != "); + break; + case OPERATOR_LT: + exp->write_c_string(" < "); + break; + case OPERATOR_LE: + exp->write_c_string(" <= "); + break; + case OPERATOR_GT: + exp->write_c_string(" > "); + break; + case OPERATOR_GE: + exp->write_c_string(" >= "); + break; + case OPERATOR_PLUS: + exp->write_c_string(" + "); + break; + case OPERATOR_MINUS: + exp->write_c_string(" - "); + break; + case OPERATOR_OR: + exp->write_c_string(" | "); + break; + case OPERATOR_XOR: + exp->write_c_string(" ^ "); + break; + case OPERATOR_MULT: + exp->write_c_string(" * "); + break; + case OPERATOR_DIV: + exp->write_c_string(" / "); + break; + case OPERATOR_MOD: + exp->write_c_string(" % "); + break; + case OPERATOR_LSHIFT: + exp->write_c_string(" << "); + break; + case OPERATOR_RSHIFT: + exp->write_c_string(" >> "); + break; + case OPERATOR_AND: + exp->write_c_string(" & "); + break; + case OPERATOR_BITCLEAR: + exp->write_c_string(" &^ "); + break; + default: + gcc_unreachable(); + } + this->right_->export_expression(exp); + exp->write_c_string(")"); +} + +// Import a binary expression. + +Expression* +Binary_expression::do_import(Import* imp) +{ + imp->require_c_string("("); + + Expression* left = Expression::import_expression(imp); + + Operator op; + if (imp->match_c_string(" || ")) + { + op = OPERATOR_OROR; + imp->advance(4); + } + else if (imp->match_c_string(" && ")) + { + op = OPERATOR_ANDAND; + imp->advance(4); + } + else if (imp->match_c_string(" == ")) + { + op = OPERATOR_EQEQ; + imp->advance(4); + } + else if (imp->match_c_string(" != ")) + { + op = OPERATOR_NOTEQ; + imp->advance(4); + } + else if (imp->match_c_string(" < ")) + { + op = OPERATOR_LT; + imp->advance(3); + } + else if (imp->match_c_string(" <= ")) + { + op = OPERATOR_LE; + imp->advance(4); + } + else if (imp->match_c_string(" > ")) + { + op = OPERATOR_GT; + imp->advance(3); + } + else if (imp->match_c_string(" >= ")) + { + op = OPERATOR_GE; + imp->advance(4); + } + else if (imp->match_c_string(" + ")) + { + op = OPERATOR_PLUS; + imp->advance(3); + } + else if (imp->match_c_string(" - ")) + { + op = OPERATOR_MINUS; + imp->advance(3); + } + else if (imp->match_c_string(" | ")) + { + op = OPERATOR_OR; + imp->advance(3); + } + else if (imp->match_c_string(" ^ ")) + { + op = OPERATOR_XOR; + imp->advance(3); + } + else if (imp->match_c_string(" * ")) + { + op = OPERATOR_MULT; + imp->advance(3); + } + else if (imp->match_c_string(" / ")) + { + op = OPERATOR_DIV; + imp->advance(3); + } + else if (imp->match_c_string(" % ")) + { + op = OPERATOR_MOD; + imp->advance(3); + } + else if (imp->match_c_string(" << ")) + { + op = OPERATOR_LSHIFT; + imp->advance(4); + } + else if (imp->match_c_string(" >> ")) + { + op = OPERATOR_RSHIFT; + imp->advance(4); + } + else if (imp->match_c_string(" & ")) + { + op = OPERATOR_AND; + imp->advance(3); + } + else if (imp->match_c_string(" &^ ")) + { + op = OPERATOR_BITCLEAR; + imp->advance(4); + } + else + { + error_at(imp->location(), "unrecognized binary operator"); + return Expression::make_error(imp->location()); + } + + Expression* right = Expression::import_expression(imp); + + imp->require_c_string(")"); + + return Expression::make_binary(op, left, right, imp->location()); +} + +// Make a binary expression. + +Expression* +Expression::make_binary(Operator op, Expression* left, Expression* right, + source_location location) +{ + return new Binary_expression(op, left, right, location); +} + +// Implement a comparison. + +tree +Expression::comparison_tree(Translate_context* context, Operator op, + Type* left_type, tree left_tree, + Type* right_type, tree right_tree, + source_location location) +{ + enum tree_code code; + switch (op) + { + case OPERATOR_EQEQ: + code = EQ_EXPR; + break; + case OPERATOR_NOTEQ: + code = NE_EXPR; + break; + case OPERATOR_LT: + code = LT_EXPR; + break; + case OPERATOR_LE: + code = LE_EXPR; + break; + case OPERATOR_GT: + code = GT_EXPR; + break; + case OPERATOR_GE: + code = GE_EXPR; + break; + default: + gcc_unreachable(); + } + + if (left_type->is_string_type()) + { + gcc_assert(right_type->is_string_type()); + tree string_type = Type::make_string_type()->get_tree(context->gogo()); + static tree string_compare_decl; + left_tree = Gogo::call_builtin(&string_compare_decl, + location, + "__go_strcmp", + 2, + integer_type_node, + string_type, + left_tree, + string_type, + right_tree); + right_tree = build_int_cst_type(integer_type_node, 0); + } + + if ((left_type->interface_type() != NULL + && right_type->interface_type() == NULL + && !right_type->is_nil_type()) + || (left_type->interface_type() == NULL + && !left_type->is_nil_type() + && right_type->interface_type() != NULL)) + { + // Comparing an interface value to a non-interface value. + if (left_type->interface_type() == NULL) + { + std::swap(left_type, right_type); + std::swap(left_tree, right_tree); + } + + // The right operand is not an interface. We need to take its + // address if it is not a pointer. + tree make_tmp; + tree arg; + if (right_type->points_to() != NULL) + { + make_tmp = NULL_TREE; + arg = right_tree; + } + else if (TREE_ADDRESSABLE(TREE_TYPE(right_tree)) || DECL_P(right_tree)) + { + make_tmp = NULL_TREE; + arg = build_fold_addr_expr_loc(location, right_tree); + if (DECL_P(right_tree)) + TREE_ADDRESSABLE(right_tree) = 1; + } + else + { + tree tmp = create_tmp_var(TREE_TYPE(right_tree), + get_name(right_tree)); + DECL_IGNORED_P(tmp) = 0; + DECL_INITIAL(tmp) = right_tree; + TREE_ADDRESSABLE(tmp) = 1; + make_tmp = build1(DECL_EXPR, void_type_node, tmp); + SET_EXPR_LOCATION(make_tmp, location); + arg = build_fold_addr_expr_loc(location, tmp); + } + arg = fold_convert_loc(location, ptr_type_node, arg); + + tree descriptor = right_type->type_descriptor_pointer(context->gogo()); + + if (left_type->interface_type()->is_empty()) + { + static tree empty_interface_value_compare_decl; + left_tree = Gogo::call_builtin(&empty_interface_value_compare_decl, + location, + "__go_empty_interface_value_compare", + 3, + integer_type_node, + TREE_TYPE(left_tree), + left_tree, + TREE_TYPE(descriptor), + descriptor, + ptr_type_node, + arg); + // This can panic if the type is not comparable. + TREE_NOTHROW(empty_interface_value_compare_decl) = 0; + } + else + { + static tree interface_value_compare_decl; + left_tree = Gogo::call_builtin(&interface_value_compare_decl, + location, + "__go_interface_value_compare", + 3, + integer_type_node, + TREE_TYPE(left_tree), + left_tree, + TREE_TYPE(descriptor), + descriptor, + ptr_type_node, + arg); + // This can panic if the type is not comparable. + TREE_NOTHROW(interface_value_compare_decl) = 0; + } + right_tree = build_int_cst_type(integer_type_node, 0); + + if (make_tmp != NULL_TREE) + left_tree = build2(COMPOUND_EXPR, TREE_TYPE(left_tree), make_tmp, + left_tree); + } + else if (left_type->interface_type() != NULL + && right_type->interface_type() != NULL) + { + if (left_type->interface_type()->is_empty()) + { + gcc_assert(right_type->interface_type()->is_empty()); + static tree empty_interface_compare_decl; + left_tree = Gogo::call_builtin(&empty_interface_compare_decl, + location, + "__go_empty_interface_compare", + 2, + integer_type_node, + TREE_TYPE(left_tree), + left_tree, + TREE_TYPE(right_tree), + right_tree); + // This can panic if the type is uncomparable. + TREE_NOTHROW(empty_interface_compare_decl) = 0; + } + else + { + gcc_assert(!right_type->interface_type()->is_empty()); + static tree interface_compare_decl; + left_tree = Gogo::call_builtin(&interface_compare_decl, + location, + "__go_interface_compare", + 2, + integer_type_node, + TREE_TYPE(left_tree), + left_tree, + TREE_TYPE(right_tree), + right_tree); + // This can panic if the type is uncomparable. + TREE_NOTHROW(interface_compare_decl) = 0; + } + right_tree = build_int_cst_type(integer_type_node, 0); + } + + if (left_type->is_nil_type() + && (op == OPERATOR_EQEQ || op == OPERATOR_NOTEQ)) + { + std::swap(left_type, right_type); + std::swap(left_tree, right_tree); + } + + if (right_type->is_nil_type()) + { + if (left_type->array_type() != NULL + && left_type->array_type()->length() == NULL) + { + Array_type* at = left_type->array_type(); + left_tree = at->value_pointer_tree(context->gogo(), left_tree); + right_tree = fold_convert(TREE_TYPE(left_tree), null_pointer_node); + } + else if (left_type->interface_type() != NULL) + { + // An interface is nil if the first field is nil. + tree left_type_tree = TREE_TYPE(left_tree); + gcc_assert(TREE_CODE(left_type_tree) == RECORD_TYPE); + tree field = TYPE_FIELDS(left_type_tree); + left_tree = build3(COMPONENT_REF, TREE_TYPE(field), left_tree, + field, NULL_TREE); + right_tree = fold_convert(TREE_TYPE(left_tree), null_pointer_node); + } + else + { + gcc_assert(POINTER_TYPE_P(TREE_TYPE(left_tree))); + right_tree = fold_convert(TREE_TYPE(left_tree), null_pointer_node); + } + } + + tree ret = fold_build2(code, boolean_type_node, left_tree, right_tree); + if (CAN_HAVE_LOCATION_P(ret)) + SET_EXPR_LOCATION(ret, location); + return ret; +} + +// Class Bound_method_expression. + +// Traversal. + +int +Bound_method_expression::do_traverse(Traverse* traverse) +{ + if (Expression::traverse(&this->expr_, traverse) == TRAVERSE_EXIT) + return TRAVERSE_EXIT; + return Expression::traverse(&this->method_, traverse); +} + +// Return the type of a bound method expression. The type of this +// object is really the type of the method with no receiver. We +// should be able to get away with just returning the type of the +// method. + +Type* +Bound_method_expression::do_type() +{ + return this->method_->type(); +} + +// Determine the types of a method expression. + +void +Bound_method_expression::do_determine_type(const Type_context*) +{ + this->method_->determine_type_no_context(); + Type* mtype = this->method_->type(); + Function_type* fntype = mtype == NULL ? NULL : mtype->function_type(); + if (fntype == NULL || !fntype->is_method()) + this->expr_->determine_type_no_context(); + else + { + Type_context subcontext(fntype->receiver()->type(), false); + this->expr_->determine_type(&subcontext); + } +} + +// Check the types of a method expression. + +void +Bound_method_expression::do_check_types(Gogo*) +{ + Type* type = this->method_->type()->deref(); + if (type == NULL + || type->function_type() == NULL + || !type->function_type()->is_method()) + this->report_error(_("object is not a method")); + else + { + Type* rtype = type->function_type()->receiver()->type()->deref(); + Type* etype = (this->expr_type_ != NULL + ? this->expr_type_ + : this->expr_->type()); + etype = etype->deref(); + if (!Type::are_identical(rtype, etype, NULL)) + this->report_error(_("method type does not match object type")); + } +} + +// Get the tree for a method expression. There is no standard tree +// representation for this. The only places it may currently be used +// are in a Call_expression or a Go_statement, which will take it +// apart directly. So this has nothing to do at present. + +tree +Bound_method_expression::do_get_tree(Translate_context*) +{ + gcc_unreachable(); +} + +// Make a method expression. + +Bound_method_expression* +Expression::make_bound_method(Expression* expr, Expression* method, + source_location location) +{ + return new Bound_method_expression(expr, method, location); +} + +// Class Builtin_call_expression. This is used for a call to a +// builtin function. + +class Builtin_call_expression : public Call_expression +{ + public: + Builtin_call_expression(Gogo* gogo, Expression* fn, Expression_list* args, + bool is_varargs, source_location location); + + protected: + // This overrides Call_expression::do_lower. + Expression* + do_lower(Gogo*, Named_object*, int); + + bool + do_is_constant() const; + + bool + do_integer_constant_value(bool, mpz_t, Type**) const; + + bool + do_float_constant_value(mpfr_t, Type**) const; + + bool + do_complex_constant_value(mpfr_t, mpfr_t, Type**) const; + + Type* + do_type(); + + void + do_determine_type(const Type_context*); + + void + do_check_types(Gogo*); + + Expression* + do_copy() + { + return new Builtin_call_expression(this->gogo_, this->fn()->copy(), + this->args()->copy(), + this->is_varargs(), + this->location()); + } + + tree + do_get_tree(Translate_context*); + + void + do_export(Export*) const; + + virtual bool + do_is_recover_call() const; + + virtual void + do_set_recover_arg(Expression*); + + private: + // The builtin functions. + enum Builtin_function_code + { + BUILTIN_INVALID, + + // Predeclared builtin functions. + BUILTIN_APPEND, + BUILTIN_CAP, + BUILTIN_CLOSE, + BUILTIN_CLOSED, + BUILTIN_CMPLX, + BUILTIN_COPY, + BUILTIN_IMAG, + BUILTIN_LEN, + BUILTIN_MAKE, + BUILTIN_NEW, + BUILTIN_PANIC, + BUILTIN_PRINT, + BUILTIN_PRINTLN, + BUILTIN_REAL, + BUILTIN_RECOVER, + + // Builtin functions from the unsafe package. + BUILTIN_ALIGNOF, + BUILTIN_OFFSETOF, + BUILTIN_SIZEOF + }; + + Expression* + one_arg() const; + + bool + check_one_arg(); + + static Type* + real_imag_type(Type*); + + static Type* + cmplx_type(Type*); + + // A pointer back to the general IR structure. This avoids a global + // variable, or passing it around everywhere. + Gogo* gogo_; + // The builtin function being called. + Builtin_function_code code_; +}; + +Builtin_call_expression::Builtin_call_expression(Gogo* gogo, + Expression* fn, + Expression_list* args, + bool is_varargs, + source_location location) + : Call_expression(fn, args, is_varargs, location), + gogo_(gogo), code_(BUILTIN_INVALID) +{ + Func_expression* fnexp = this->fn()->func_expression(); + gcc_assert(fnexp != NULL); + const std::string& name(fnexp->named_object()->name()); + if (name == "append") + this->code_ = BUILTIN_APPEND; + else if (name == "cap") + this->code_ = BUILTIN_CAP; + else if (name == "close") + this->code_ = BUILTIN_CLOSE; + else if (name == "closed") + this->code_ = BUILTIN_CLOSED; + else if (name == "cmplx") + this->code_ = BUILTIN_CMPLX; + else if (name == "copy") + this->code_ = BUILTIN_COPY; + else if (name == "imag") + this->code_ = BUILTIN_IMAG; + else if (name == "len") + this->code_ = BUILTIN_LEN; + else if (name == "make") + this->code_ = BUILTIN_MAKE; + else if (name == "new") + this->code_ = BUILTIN_NEW; + else if (name == "panic") + this->code_ = BUILTIN_PANIC; + else if (name == "print") + this->code_ = BUILTIN_PRINT; + else if (name == "println") + this->code_ = BUILTIN_PRINTLN; + else if (name == "real") + this->code_ = BUILTIN_REAL; + else if (name == "recover") + this->code_ = BUILTIN_RECOVER; + else if (name == "Alignof") + this->code_ = BUILTIN_ALIGNOF; + else if (name == "Offsetof") + this->code_ = BUILTIN_OFFSETOF; + else if (name == "Sizeof") + this->code_ = BUILTIN_SIZEOF; + else + gcc_unreachable(); +} + +// Return whether this is a call to recover. This is a virtual +// function called from the parent class. + +bool +Builtin_call_expression::do_is_recover_call() const +{ + if (this->classification() == EXPRESSION_ERROR) + return false; + return this->code_ == BUILTIN_RECOVER; +} + +// Set the argument for a call to recover. + +void +Builtin_call_expression::do_set_recover_arg(Expression* arg) +{ + const Expression_list* args = this->args(); + gcc_assert(args == NULL || args->empty()); + Expression_list* new_args = new Expression_list(); + new_args->push_back(arg); + this->set_args(new_args); +} + +// A traversal class which looks for a call expression. + +class Find_call_expression : public Traverse +{ + public: + Find_call_expression() + : Traverse(traverse_expressions), + found_(false) + { } + + int + expression(Expression**); + + bool + found() + { return this->found_; } + + private: + bool found_; +}; + +int +Find_call_expression::expression(Expression** pexpr) +{ + if ((*pexpr)->call_expression() != NULL) + { + this->found_ = true; + return TRAVERSE_EXIT; + } + return TRAVERSE_CONTINUE; +} + +// Lower a builtin call expression. This turns new and make into +// specific expressions. We also convert to a constant if we can. + +Expression* +Builtin_call_expression::do_lower(Gogo* gogo, Named_object* function, int) +{ + if (this->code_ == BUILTIN_NEW) + { + const Expression_list* args = this->args(); + if (args == NULL || args->size() < 1) + this->report_error(_("not enough arguments")); + else if (args->size() > 1) + this->report_error(_("too many arguments")); + else + { + Expression* arg = args->front(); + if (!arg->is_type_expression()) + { + error_at(arg->location(), "expected type"); + this->set_is_error(); + } + else + return Expression::make_allocation(arg->type(), this->location()); + } + } + else if (this->code_ == BUILTIN_MAKE) + { + const Expression_list* args = this->args(); + if (args == NULL || args->size() < 1) + this->report_error(_("not enough arguments")); + else + { + Expression* arg = args->front(); + if (!arg->is_type_expression()) + { + error_at(arg->location(), "expected type"); + this->set_is_error(); + } + else + { + Expression_list* newargs; + if (args->size() == 1) + newargs = NULL; + else + { + newargs = new Expression_list(); + Expression_list::const_iterator p = args->begin(); + ++p; + for (; p != args->end(); ++p) + newargs->push_back(*p); + } + return Expression::make_make(arg->type(), newargs, + this->location()); + } + } + } + else if (this->is_constant()) + { + // We can only lower len and cap if there are no function calls + // in the arguments. Otherwise we have to make the call. + if (this->code_ == BUILTIN_LEN || this->code_ == BUILTIN_CAP) + { + Expression* arg = this->one_arg(); + if (!arg->is_constant()) + { + Find_call_expression find_call; + Expression::traverse(&arg, &find_call); + if (find_call.found()) + return this; + } + } + + mpz_t ival; + mpz_init(ival); + Type* type; + if (this->integer_constant_value(true, ival, &type)) + { + Expression* ret = Expression::make_integer(&ival, type, + this->location()); + mpz_clear(ival); + return ret; + } + mpz_clear(ival); + + mpfr_t rval; + mpfr_init(rval); + if (this->float_constant_value(rval, &type)) + { + Expression* ret = Expression::make_float(&rval, type, + this->location()); + mpfr_clear(rval); + return ret; + } + + mpfr_t imag; + mpfr_init(imag); + if (this->complex_constant_value(rval, imag, &type)) + { + Expression* ret = Expression::make_complex(&rval, &imag, type, + this->location()); + mpfr_clear(rval); + mpfr_clear(imag); + return ret; + } + mpfr_clear(rval); + mpfr_clear(imag); + } + else if (this->code_ == BUILTIN_RECOVER) + { + if (function != NULL) + function->func_value()->set_calls_recover(); + else + { + // Calling recover outside of a function always returns the + // nil empty interface. + Type* eface = Type::make_interface_type(NULL, this->location()); + return Expression::make_cast(eface, + Expression::make_nil(this->location()), + this->location()); + } + } + else if (this->code_ == BUILTIN_APPEND) + { + // Lower the varargs. + const Expression_list* args = this->args(); + if (args == NULL || args->empty()) + return this; + Type* slice_type = args->front()->type(); + if (!slice_type->is_open_array_type()) + { + error_at(args->front()->location(), "argument 1 must be a slice"); + this->set_is_error(); + return this; + } + return this->lower_varargs(gogo, function, slice_type, 2); + } + + return this; +} + +// Return the type of the real or imag functions, given the type of +// the argument. We need to map complex to float, complex64 to +// float32, and complex128 to float64, so it has to be done by name. +// This returns NULL if it can't figure out the type. + +Type* +Builtin_call_expression::real_imag_type(Type* arg_type) +{ + if (arg_type == NULL || arg_type->is_abstract()) + return NULL; + Named_type* nt = arg_type->named_type(); + if (nt == NULL) + return NULL; + while (nt->real_type()->named_type() != NULL) + nt = nt->real_type()->named_type(); + if (nt->name() == "complex") + return Type::lookup_float_type("float"); + else if (nt->name() == "complex64") + return Type::lookup_float_type("float32"); + else if (nt->name() == "complex128") + return Type::lookup_float_type("float64"); + else + return NULL; +} + +// Return the type of the cmplx function, given the type of one of the +// argments. Like real_imag_type, we have to map by name. + +Type* +Builtin_call_expression::cmplx_type(Type* arg_type) +{ + if (arg_type == NULL || arg_type->is_abstract()) + return NULL; + Named_type* nt = arg_type->named_type(); + if (nt == NULL) + return NULL; + while (nt->real_type()->named_type() != NULL) + nt = nt->real_type()->named_type(); + if (nt->name() == "float") + return Type::lookup_complex_type("complex"); + else if (nt->name() == "float32") + return Type::lookup_complex_type("complex64"); + else if (nt->name() == "float64") + return Type::lookup_complex_type("complex128"); + else + return NULL; +} + +// Return a single argument, or NULL if there isn't one. + +Expression* +Builtin_call_expression::one_arg() const +{ + const Expression_list* args = this->args(); + if (args->size() != 1) + return NULL; + return args->front(); +} + +// Return whether this is constant: len of a string, or len or cap of +// a fixed array, or unsafe.Sizeof, unsafe.Offsetof, unsafe.Alignof. + +bool +Builtin_call_expression::do_is_constant() const +{ + switch (this->code_) + { + case BUILTIN_LEN: + case BUILTIN_CAP: + { + Expression* arg = this->one_arg(); + if (arg == NULL) + return false; + Type* arg_type = arg->type(); + + if (arg_type->points_to() != NULL + && arg_type->points_to()->array_type() != NULL + && !arg_type->points_to()->is_open_array_type()) + arg_type = arg_type->points_to(); + + if (arg_type->array_type() != NULL + && arg_type->array_type()->length() != NULL) + return arg_type->array_type()->length()->is_constant(); + + if (this->code_ == BUILTIN_LEN && arg_type->is_string_type()) + return arg->is_constant(); + } + break; + + case BUILTIN_SIZEOF: + case BUILTIN_ALIGNOF: + return this->one_arg() != NULL; + + case BUILTIN_OFFSETOF: + { + Expression* arg = this->one_arg(); + if (arg == NULL) + return false; + return arg->field_reference_expression() != NULL; + } + + case BUILTIN_CMPLX: + { + const Expression_list* args = this->args(); + if (args != NULL && args->size() == 2) + return args->front()->is_constant() && args->back()->is_constant(); + } + break; + + case BUILTIN_REAL: + case BUILTIN_IMAG: + { + Expression* arg = this->one_arg(); + return arg != NULL && arg->is_constant(); + } + + default: + break; + } + + return false; +} + +// Return an integer constant value if possible. + +bool +Builtin_call_expression::do_integer_constant_value(bool iota_is_constant, + mpz_t val, + Type** ptype) const +{ + if (this->code_ == BUILTIN_LEN + || this->code_ == BUILTIN_CAP) + { + Expression* arg = this->one_arg(); + if (arg == NULL) + return false; + Type* arg_type = arg->type(); + + if (this->code_ == BUILTIN_LEN && arg_type->is_string_type()) + { + std::string sval; + if (arg->string_constant_value(&sval)) + { + mpz_set_ui(val, sval.length()); + *ptype = Type::lookup_integer_type("int"); + return true; + } + } + + if (arg_type->points_to() != NULL + && arg_type->points_to()->array_type() != NULL + && !arg_type->points_to()->is_open_array_type()) + arg_type = arg_type->points_to(); + + if (arg_type->array_type() != NULL + && arg_type->array_type()->length() != NULL) + { + Expression* e = arg_type->array_type()->length(); + if (e->integer_constant_value(iota_is_constant, val, ptype)) + { + *ptype = Type::lookup_integer_type("int"); + return true; + } + } + } + else if (this->code_ == BUILTIN_SIZEOF + || this->code_ == BUILTIN_ALIGNOF) + { + Expression* arg = this->one_arg(); + if (arg == NULL) + return false; + Type* arg_type = arg->type(); + if (arg_type->is_error_type()) + return false; + if (arg_type->is_abstract()) + return false; + tree arg_type_tree = arg_type->get_tree(this->gogo_); + unsigned long val_long; + if (this->code_ == BUILTIN_SIZEOF) + { + tree type_size = TYPE_SIZE_UNIT(arg_type_tree); + gcc_assert(TREE_CODE(type_size) == INTEGER_CST); + if (TREE_INT_CST_HIGH(type_size) != 0) + return false; + unsigned HOST_WIDE_INT val_wide = TREE_INT_CST_LOW(type_size); + val_long = static_cast<unsigned long>(val_wide); + if (val_long != val_wide) + return false; + } + else if (this->code_ == BUILTIN_ALIGNOF) + { + val_long = TYPE_ALIGN(arg_type_tree); + if (arg->field_reference_expression() != NULL) + { + // Calling unsafe.Alignof(s.f) returns the alignment of + // the type of f when it is used as a field in a struct. +#ifdef BIGGEST_FIELD_ALIGNMENT + if (val_long > BIGGEST_FIELD_ALIGNMENT) + val_long = BIGGEST_FIELD_ALIGNMENT; +#endif +#ifdef ADJUST_FIELD_ALIGN + // A separate declaration avoids a warning promoted to + // an error if ADJUST_FIELD_ALIGN ignores FIELD. + tree field; + field = build_decl(UNKNOWN_LOCATION, FIELD_DECL, NULL, + arg_type_tree); + val_long = ADJUST_FIELD_ALIGN(field, val_long); +#endif + } + val_long /= BITS_PER_UNIT; + } + else + gcc_unreachable(); + mpz_set_ui(val, val_long); + *ptype = NULL; + return true; + } + else if (this->code_ == BUILTIN_OFFSETOF) + { + Expression* arg = this->one_arg(); + if (arg == NULL) + return false; + Field_reference_expression* farg = arg->field_reference_expression(); + if (farg == NULL) + return false; + Expression* struct_expr = farg->expr(); + Type* st = struct_expr->type(); + if (st->struct_type() == NULL) + return false; + tree struct_tree = st->get_tree(this->gogo_); + gcc_assert(TREE_CODE(struct_tree) == RECORD_TYPE); + tree field = TYPE_FIELDS(struct_tree); + for (unsigned int index = farg->field_index(); index > 0; --index) + { + field = DECL_CHAIN(field); + gcc_assert(field != NULL_TREE); + } + HOST_WIDE_INT offset_wide = int_byte_position (field); + if (offset_wide < 0) + return false; + unsigned long offset_long = static_cast<unsigned long>(offset_wide); + if (offset_long != static_cast<unsigned HOST_WIDE_INT>(offset_wide)) + return false; + mpz_set_ui(val, offset_long); + return true; + } + return false; +} + +// Return a floating point constant value if possible. + +bool +Builtin_call_expression::do_float_constant_value(mpfr_t val, + Type** ptype) const +{ + if (this->code_ == BUILTIN_REAL || this->code_ == BUILTIN_IMAG) + { + Expression* arg = this->one_arg(); + if (arg == NULL) + return false; + + mpfr_t real; + mpfr_t imag; + mpfr_init(real); + mpfr_init(imag); + + bool ret = false; + Type* type; + if (arg->complex_constant_value(real, imag, &type)) + { + if (this->code_ == BUILTIN_REAL) + mpfr_set(val, real, GMP_RNDN); + else + mpfr_set(val, imag, GMP_RNDN); + *ptype = Builtin_call_expression::real_imag_type(type); + ret = true; + } + + mpfr_clear(real); + mpfr_clear(imag); + return ret; + } + + return false; +} + +// Return a complex constant value if possible. + +bool +Builtin_call_expression::do_complex_constant_value(mpfr_t real, mpfr_t imag, + Type** ptype) const +{ + if (this->code_ == BUILTIN_CMPLX) + { + const Expression_list* args = this->args(); + if (args == NULL || args->size() != 2) + return false; + + mpfr_t r; + mpfr_init(r); + Type* rtype; + if (!args->front()->float_constant_value(r, &rtype)) + { + mpfr_clear(r); + return false; + } + + mpfr_t i; + mpfr_init(i); + + bool ret = false; + Type* itype; + if (args->back()->float_constant_value(i, &itype) + && Type::are_identical(rtype, itype, NULL)) + { + mpfr_set(real, r, GMP_RNDN); + mpfr_set(imag, i, GMP_RNDN); + *ptype = Builtin_call_expression::cmplx_type(rtype); + ret = true; + } + + mpfr_clear(r); + mpfr_clear(i); + + return ret; + } + + return false; +} + +// Return the type. + +Type* +Builtin_call_expression::do_type() +{ + switch (this->code_) + { + case BUILTIN_INVALID: + default: + gcc_unreachable(); + + case BUILTIN_NEW: + case BUILTIN_MAKE: + { + const Expression_list* args = this->args(); + if (args == NULL || args->empty()) + return Type::make_error_type(); + return Type::make_pointer_type(args->front()->type()); + } + + case BUILTIN_CAP: + case BUILTIN_COPY: + case BUILTIN_LEN: + case BUILTIN_ALIGNOF: + case BUILTIN_OFFSETOF: + case BUILTIN_SIZEOF: + return Type::lookup_integer_type("int"); + + case BUILTIN_CLOSE: + case BUILTIN_PANIC: + case BUILTIN_PRINT: + case BUILTIN_PRINTLN: + return Type::make_void_type(); + + case BUILTIN_CLOSED: + return Type::lookup_bool_type(); + + case BUILTIN_RECOVER: + return Type::make_interface_type(NULL, BUILTINS_LOCATION); + + case BUILTIN_APPEND: + { + const Expression_list* args = this->args(); + if (args == NULL || args->empty()) + return Type::make_error_type(); + return args->front()->type(); + } + + case BUILTIN_REAL: + case BUILTIN_IMAG: + { + Expression* arg = this->one_arg(); + if (arg == NULL) + return Type::make_error_type(); + Type* t = arg->type(); + if (t->is_abstract()) + t = t->make_non_abstract_type(); + t = Builtin_call_expression::real_imag_type(t); + if (t == NULL) + t = Type::make_error_type(); + return t; + } + + case BUILTIN_CMPLX: + { + const Expression_list* args = this->args(); + if (args == NULL || args->size() != 2) + return Type::make_error_type(); + Type* t = args->front()->type(); + if (t->is_abstract()) + { + t = args->back()->type(); + if (t->is_abstract()) + t = t->make_non_abstract_type(); + } + t = Builtin_call_expression::cmplx_type(t); + if (t == NULL) + t = Type::make_error_type(); + return t; + } + } +} + +// Determine the type. + +void +Builtin_call_expression::do_determine_type(const Type_context* context) +{ + this->fn()->determine_type_no_context(); + + const Expression_list* args = this->args(); + + bool is_print; + Type* arg_type = NULL; + switch (this->code_) + { + case BUILTIN_PRINT: + case BUILTIN_PRINTLN: + // Do not force a large integer constant to "int". + is_print = true; + break; + + case BUILTIN_REAL: + case BUILTIN_IMAG: + arg_type = Builtin_call_expression::cmplx_type(context->type); + is_print = false; + break; + + case BUILTIN_CMPLX: + { + // For the cmplx function the type of one operand can + // determine the type of the other, as in a binary expression. + arg_type = Builtin_call_expression::real_imag_type(context->type); + if (args != NULL && args->size() == 2) + { + Type* t1 = args->front()->type(); + Type* t2 = args->front()->type(); + if (!t1->is_abstract()) + arg_type = t1; + else if (!t2->is_abstract()) + arg_type = t2; + } + is_print = false; + } + break; + + default: + is_print = false; + break; + } + + if (args != NULL) + { + for (Expression_list::const_iterator pa = args->begin(); + pa != args->end(); + ++pa) + { + Type_context subcontext; + subcontext.type = arg_type; + + if (is_print) + { + // We want to print large constants, we so can't just + // use the appropriate nonabstract type. Use uint64 for + // an integer if we know it is nonnegative, otherwise + // use int64 for a integer, otherwise use float64 for a + // float or complex128 for a complex. + Type* want_type = NULL; + Type* atype = (*pa)->type(); + if (atype->is_abstract()) + { + if (atype->integer_type() != NULL) + { + mpz_t val; + mpz_init(val); + Type* dummy; + if (this->integer_constant_value(true, val, &dummy) + && mpz_sgn(val) >= 0) + want_type = Type::lookup_integer_type("uint64"); + else + want_type = Type::lookup_integer_type("int64"); + mpz_clear(val); + } + else if (atype->float_type() != NULL) + want_type = Type::lookup_float_type("float64"); + else if (atype->complex_type() != NULL) + want_type = Type::lookup_complex_type("complex128"); + else if (atype->is_abstract_string_type()) + want_type = Type::lookup_string_type(); + else if (atype->is_abstract_boolean_type()) + want_type = Type::lookup_bool_type(); + else + gcc_unreachable(); + subcontext.type = want_type; + } + } + + (*pa)->determine_type(&subcontext); + } + } +} + +// If there is exactly one argument, return true. Otherwise give an +// error message and return false. + +bool +Builtin_call_expression::check_one_arg() +{ + const Expression_list* args = this->args(); + if (args == NULL || args->size() < 1) + { + this->report_error(_("not enough arguments")); + return false; + } + else if (args->size() > 1) + { + this->report_error(_("too many arguments")); + return false; + } + if (args->front()->is_error_expression() + || args->front()->type()->is_error_type()) + { + this->set_is_error(); + return false; + } + return true; +} + +// Check argument types for a builtin function. + +void +Builtin_call_expression::do_check_types(Gogo*) +{ + switch (this->code_) + { + case BUILTIN_INVALID: + case BUILTIN_NEW: + case BUILTIN_MAKE: + return; + + case BUILTIN_LEN: + case BUILTIN_CAP: + { + // The single argument may be either a string or an array or a + // map or a channel, or a pointer to a closed array. + if (this->check_one_arg()) + { + Type* arg_type = this->one_arg()->type(); + if (arg_type->points_to() != NULL + && arg_type->points_to()->array_type() != NULL + && !arg_type->points_to()->is_open_array_type()) + arg_type = arg_type->points_to(); + if (this->code_ == BUILTIN_CAP) + { + if (!arg_type->is_error_type() + && arg_type->array_type() == NULL + && arg_type->channel_type() == NULL) + this->report_error(_("argument must be array or slice " + "or channel")); + } + else + { + if (!arg_type->is_error_type() + && !arg_type->is_string_type() + && arg_type->array_type() == NULL + && arg_type->map_type() == NULL + && arg_type->channel_type() == NULL) + this->report_error(_("argument must be string or " + "array or slice or map or channel")); + } + } + } + break; + + case BUILTIN_PRINT: + case BUILTIN_PRINTLN: + { + const Expression_list* args = this->args(); + if (args == NULL) + { + if (this->code_ == BUILTIN_PRINT) + warning_at(this->location(), 0, + "no arguments for builtin function %<%s%>", + (this->code_ == BUILTIN_PRINT + ? "print" + : "println")); + } + else + { + for (Expression_list::const_iterator p = args->begin(); + p != args->end(); + ++p) + { + Type* type = (*p)->type(); + if (type->is_error_type() + || type->is_string_type() + || type->integer_type() != NULL + || type->float_type() != NULL + || type->complex_type() != NULL + || type->is_boolean_type() + || type->points_to() != NULL + || type->interface_type() != NULL + || type->channel_type() != NULL + || type->map_type() != NULL + || type->function_type() != NULL + || type->is_open_array_type()) + ; + else + this->report_error(_("unsupported argument type to " + "builtin function")); + } + } + } + break; + + case BUILTIN_CLOSE: + case BUILTIN_CLOSED: + if (this->check_one_arg()) + { + if (this->one_arg()->type()->channel_type() == NULL) + this->report_error(_("argument must be channel")); + } + break; + + case BUILTIN_PANIC: + case BUILTIN_SIZEOF: + case BUILTIN_ALIGNOF: + this->check_one_arg(); + break; + + case BUILTIN_RECOVER: + if (this->args() != NULL && !this->args()->empty()) + this->report_error(_("too many arguments")); + break; + + case BUILTIN_OFFSETOF: + if (this->check_one_arg()) + { + Expression* arg = this->one_arg(); + if (arg->field_reference_expression() == NULL) + this->report_error(_("argument must be a field reference")); + } + break; + + case BUILTIN_COPY: + { + const Expression_list* args = this->args(); + if (args == NULL || args->size() < 2) + { + this->report_error(_("not enough arguments")); + break; + } + else if (args->size() > 2) + { + this->report_error(_("too many arguments")); + break; + } + Type* arg1_type = args->front()->type(); + Type* arg2_type = args->back()->type(); + if (arg1_type->is_error_type() || arg2_type->is_error_type()) + break; + + Type* e1; + if (arg1_type->is_open_array_type()) + e1 = arg1_type->array_type()->element_type(); + else + { + this->report_error(_("left argument must be a slice")); + break; + } + + Type* e2; + if (arg2_type->is_open_array_type()) + e2 = arg2_type->array_type()->element_type(); + else if (arg2_type->is_string_type()) + e2 = Type::lookup_integer_type("uint8"); + else + { + this->report_error(_("right argument must be a slice or a string")); + break; + } + + if (!Type::are_identical(e1, e2, NULL)) + this->report_error(_("element types must be the same")); + } + break; + + case BUILTIN_APPEND: + { + const Expression_list* args = this->args(); + if (args == NULL || args->empty()) + { + this->report_error(_("not enough arguments")); + break; + } + /* Lowering varargs should have left us with 2 arguments. */ + gcc_assert(args->size() == 2); + std::string reason; + if (!Type::are_assignable(args->front()->type(), args->back()->type(), + &reason)) + { + if (reason.empty()) + this->report_error(_("arguments 1 and 2 have different types")); + else + { + error_at(this->location(), + "arguments 1 and 2 have different types (%s)", + reason.c_str()); + this->set_is_error(); + } + } + break; + } + + case BUILTIN_REAL: + case BUILTIN_IMAG: + if (this->check_one_arg()) + { + if (this->one_arg()->type()->complex_type() == NULL) + this->report_error(_("argument must have complex type")); + } + break; + + case BUILTIN_CMPLX: + { + const Expression_list* args = this->args(); + if (args == NULL || args->size() < 2) + this->report_error(_("not enough arguments")); + else if (args->size() > 2) + this->report_error(_("too many arguments")); + else if (args->front()->is_error_expression() + || args->front()->type()->is_error_type() + || args->back()->is_error_expression() + || args->back()->type()->is_error_type()) + this->set_is_error(); + else if (!Type::are_identical(args->front()->type(), + args->back()->type(), NULL)) + this->report_error(_("cmplx arguments must have identical types")); + else if (args->front()->type()->float_type() == NULL) + this->report_error(_("cmplx arguments must have " + "floating-point type")); + } + break; + + default: + gcc_unreachable(); + } +} + +// Return the tree for a builtin function. + +tree +Builtin_call_expression::do_get_tree(Translate_context* context) +{ + Gogo* gogo = context->gogo(); + source_location location = this->location(); + switch (this->code_) + { + case BUILTIN_INVALID: + case BUILTIN_NEW: + case BUILTIN_MAKE: + gcc_unreachable(); + + case BUILTIN_LEN: + case BUILTIN_CAP: + { + const Expression_list* args = this->args(); + gcc_assert(args != NULL && args->size() == 1); + Expression* arg = *args->begin(); + Type* arg_type = arg->type(); + tree arg_tree = arg->get_tree(context); + if (arg_tree == error_mark_node) + return error_mark_node; + + if (arg_type->points_to() != NULL) + { + arg_type = arg_type->points_to(); + gcc_assert(arg_type->array_type() != NULL + && !arg_type->is_open_array_type()); + gcc_assert(POINTER_TYPE_P(TREE_TYPE(arg_tree))); + arg_tree = build_fold_indirect_ref(arg_tree); + } + + tree val_tree; + if (this->code_ == BUILTIN_LEN) + { + if (arg_type->is_string_type()) + val_tree = String_type::length_tree(gogo, arg_tree); + else if (arg_type->array_type() != NULL) + val_tree = arg_type->array_type()->length_tree(gogo, arg_tree); + else if (arg_type->map_type() != NULL) + { + static tree map_len_fndecl; + val_tree = Gogo::call_builtin(&map_len_fndecl, + location, + "__go_map_len", + 1, + sizetype, + arg_type->get_tree(gogo), + arg_tree); + } + else if (arg_type->channel_type() != NULL) + { + static tree chan_len_fndecl; + val_tree = Gogo::call_builtin(&chan_len_fndecl, + location, + "__go_chan_len", + 1, + sizetype, + arg_type->get_tree(gogo), + arg_tree); + } + else + gcc_unreachable(); + } + else + { + if (arg_type->array_type() != NULL) + val_tree = arg_type->array_type()->capacity_tree(gogo, arg_tree); + else if (arg_type->channel_type() != NULL) + { + static tree chan_cap_fndecl; + val_tree = Gogo::call_builtin(&chan_cap_fndecl, + location, + "__go_chan_cap", + 1, + sizetype, + arg_type->get_tree(gogo), + arg_tree); + } + else + gcc_unreachable(); + } + + tree type_tree = Type::lookup_integer_type("int")->get_tree(gogo); + if (type_tree == TREE_TYPE(val_tree)) + return val_tree; + else + return fold(convert_to_integer(type_tree, val_tree)); + } + + case BUILTIN_PRINT: + case BUILTIN_PRINTLN: + { + const bool is_ln = this->code_ == BUILTIN_PRINTLN; + tree stmt_list = NULL_TREE; + + const Expression_list* call_args = this->args(); + if (call_args != NULL) + { + for (Expression_list::const_iterator p = call_args->begin(); + p != call_args->end(); + ++p) + { + if (is_ln && p != call_args->begin()) + { + static tree print_space_fndecl; + tree call = Gogo::call_builtin(&print_space_fndecl, + location, + "__go_print_space", + 0, + void_type_node); + append_to_statement_list(call, &stmt_list); + } + + Type* type = (*p)->type(); + + tree arg = (*p)->get_tree(context); + if (arg == error_mark_node) + return error_mark_node; + + tree* pfndecl; + const char* fnname; + if (type->is_string_type()) + { + static tree print_string_fndecl; + pfndecl = &print_string_fndecl; + fnname = "__go_print_string"; + } + else if (type->integer_type() != NULL + && type->integer_type()->is_unsigned()) + { + static tree print_uint64_fndecl; + pfndecl = &print_uint64_fndecl; + fnname = "__go_print_uint64"; + Type* itype = Type::lookup_integer_type("uint64"); + arg = fold_convert_loc(location, itype->get_tree(gogo), + arg); + } + else if (type->integer_type() != NULL) + { + static tree print_int64_fndecl; + pfndecl = &print_int64_fndecl; + fnname = "__go_print_int64"; + Type* itype = Type::lookup_integer_type("int64"); + arg = fold_convert_loc(location, itype->get_tree(gogo), + arg); + } + else if (type->float_type() != NULL) + { + static tree print_double_fndecl; + pfndecl = &print_double_fndecl; + fnname = "__go_print_double"; + arg = fold_convert_loc(location, double_type_node, arg); + } + else if (type->complex_type() != NULL) + { + static tree print_complex_fndecl; + pfndecl = &print_complex_fndecl; + fnname = "__go_print_complex"; + arg = fold_convert_loc(location, complex_double_type_node, + arg); + } + else if (type->is_boolean_type()) + { + static tree print_bool_fndecl; + pfndecl = &print_bool_fndecl; + fnname = "__go_print_bool"; + } + else if (type->points_to() != NULL + || type->channel_type() != NULL + || type->map_type() != NULL + || type->function_type() != NULL) + { + static tree print_pointer_fndecl; + pfndecl = &print_pointer_fndecl; + fnname = "__go_print_pointer"; + arg = fold_convert_loc(location, ptr_type_node, arg); + } + else if (type->interface_type() != NULL) + { + if (type->interface_type()->is_empty()) + { + static tree print_empty_interface_fndecl; + pfndecl = &print_empty_interface_fndecl; + fnname = "__go_print_empty_interface"; + } + else + { + static tree print_interface_fndecl; + pfndecl = &print_interface_fndecl; + fnname = "__go_print_interface"; + } + } + else if (type->is_open_array_type()) + { + static tree print_slice_fndecl; + pfndecl = &print_slice_fndecl; + fnname = "__go_print_slice"; + } + else + gcc_unreachable(); + + tree call = Gogo::call_builtin(pfndecl, + location, + fnname, + 1, + void_type_node, + TREE_TYPE(arg), + arg); + append_to_statement_list(call, &stmt_list); + } + } + + if (is_ln) + { + static tree print_nl_fndecl; + tree call = Gogo::call_builtin(&print_nl_fndecl, + location, + "__go_print_nl", + 0, + void_type_node); + append_to_statement_list(call, &stmt_list); + } + + return stmt_list; + } + + case BUILTIN_PANIC: + { + const Expression_list* args = this->args(); + gcc_assert(args != NULL && args->size() == 1); + Expression* arg = args->front(); + tree arg_tree = arg->get_tree(context); + if (arg_tree == error_mark_node) + return error_mark_node; + Type *empty = Type::make_interface_type(NULL, BUILTINS_LOCATION); + arg_tree = Expression::convert_for_assignment(context, empty, + arg->type(), + arg_tree, location); + static tree panic_fndecl; + tree call = Gogo::call_builtin(&panic_fndecl, + location, + "__go_panic", + 1, + void_type_node, + TREE_TYPE(arg_tree), + arg_tree); + // This function will throw an exception. + TREE_NOTHROW(panic_fndecl) = 0; + // This function will not return. + TREE_THIS_VOLATILE(panic_fndecl) = 1; + return call; + } + + case BUILTIN_RECOVER: + { + // The argument is set when building recover thunks. It's a + // boolean value which is true if we can recover a value now. + const Expression_list* args = this->args(); + gcc_assert(args != NULL && args->size() == 1); + Expression* arg = args->front(); + tree arg_tree = arg->get_tree(context); + if (arg_tree == error_mark_node) + return error_mark_node; + + Type *empty = Type::make_interface_type(NULL, BUILTINS_LOCATION); + tree empty_tree = empty->get_tree(context->gogo()); + + Type* nil_type = Type::make_nil_type(); + Expression* nil = Expression::make_nil(location); + tree nil_tree = nil->get_tree(context); + tree empty_nil_tree = Expression::convert_for_assignment(context, + empty, + nil_type, + nil_tree, + location); + + // We need to handle a deferred call to recover specially, + // because it changes whether it can recover a panic or not. + // See test7 in test/recover1.go. + tree call; + if (this->is_deferred()) + { + static tree deferred_recover_fndecl; + call = Gogo::call_builtin(&deferred_recover_fndecl, + location, + "__go_deferred_recover", + 0, + empty_tree); + } + else + { + static tree recover_fndecl; + call = Gogo::call_builtin(&recover_fndecl, + location, + "__go_recover", + 0, + empty_tree); + } + return fold_build3_loc(location, COND_EXPR, empty_tree, arg_tree, + call, empty_nil_tree); + } + + case BUILTIN_CLOSE: + case BUILTIN_CLOSED: + { + const Expression_list* args = this->args(); + gcc_assert(args != NULL && args->size() == 1); + Expression* arg = args->front(); + tree arg_tree = arg->get_tree(context); + if (arg_tree == error_mark_node) + return error_mark_node; + if (this->code_ == BUILTIN_CLOSE) + { + static tree close_fndecl; + return Gogo::call_builtin(&close_fndecl, + location, + "__go_builtin_close", + 1, + void_type_node, + TREE_TYPE(arg_tree), + arg_tree); + } + else + { + static tree closed_fndecl; + return Gogo::call_builtin(&closed_fndecl, + location, + "__go_builtin_closed", + 1, + boolean_type_node, + TREE_TYPE(arg_tree), + arg_tree); + } + } + + case BUILTIN_SIZEOF: + case BUILTIN_OFFSETOF: + case BUILTIN_ALIGNOF: + { + mpz_t val; + mpz_init(val); + Type* dummy; + bool b = this->integer_constant_value(true, val, &dummy); + gcc_assert(b); + tree type = Type::lookup_integer_type("int")->get_tree(gogo); + tree ret = Expression::integer_constant_tree(val, type); + mpz_clear(val); + return ret; + } + + case BUILTIN_COPY: + { + const Expression_list* args = this->args(); + gcc_assert(args != NULL && args->size() == 2); + Expression* arg1 = args->front(); + Expression* arg2 = args->back(); + + tree arg1_tree = arg1->get_tree(context); + tree arg2_tree = arg2->get_tree(context); + if (arg1_tree == error_mark_node || arg2_tree == error_mark_node) + return error_mark_node; + + Type* arg1_type = arg1->type(); + Array_type* at = arg1_type->array_type(); + arg1_tree = save_expr(arg1_tree); + tree arg1_val = at->value_pointer_tree(gogo, arg1_tree); + tree arg1_len = at->length_tree(gogo, arg1_tree); + + Type* arg2_type = arg2->type(); + tree arg2_val; + tree arg2_len; + if (arg2_type->is_open_array_type()) + { + at = arg2_type->array_type(); + arg2_tree = save_expr(arg2_tree); + arg2_val = at->value_pointer_tree(gogo, arg2_tree); + arg2_len = at->length_tree(gogo, arg2_tree); + } + else + { + arg2_tree = save_expr(arg2_tree); + arg2_val = String_type::bytes_tree(gogo, arg2_tree); + arg2_len = String_type::length_tree(gogo, arg2_tree); + } + + arg1_len = save_expr(arg1_len); + arg2_len = save_expr(arg2_len); + tree len = fold_build3_loc(location, COND_EXPR, TREE_TYPE(arg1_len), + fold_build2_loc(location, LT_EXPR, + boolean_type_node, + arg1_len, arg2_len), + arg1_len, arg2_len); + len = save_expr(len); + + Type* element_type = at->element_type(); + tree element_type_tree = element_type->get_tree(gogo); + tree element_size = TYPE_SIZE_UNIT(element_type_tree); + tree bytecount = fold_convert_loc(location, TREE_TYPE(element_size), + len); + bytecount = fold_build2_loc(location, MULT_EXPR, + TREE_TYPE(element_size), + bytecount, element_size); + bytecount = fold_convert_loc(location, size_type_node, bytecount); + + tree call = build_call_expr_loc(location, + built_in_decls[BUILT_IN_MEMMOVE], + 3, arg1_val, arg2_val, bytecount); + + return fold_build2_loc(location, COMPOUND_EXPR, TREE_TYPE(len), + call, len); + } + + case BUILTIN_APPEND: + { + const Expression_list* args = this->args(); + gcc_assert(args != NULL && args->size() == 2); + Expression* arg1 = args->front(); + Expression* arg2 = args->back(); + + tree arg1_tree = arg1->get_tree(context); + tree arg2_tree = arg2->get_tree(context); + if (arg1_tree == error_mark_node || arg2_tree == error_mark_node) + return error_mark_node; + + tree descriptor_tree = arg1->type()->type_descriptor_pointer(gogo); + + // We rebuild the decl each time since the slice types may + // change. + tree append_fndecl = NULL_TREE; + return Gogo::call_builtin(&append_fndecl, + location, + "__go_append", + 3, + TREE_TYPE(arg1_tree), + TREE_TYPE(descriptor_tree), + descriptor_tree, + TREE_TYPE(arg1_tree), + arg1_tree, + TREE_TYPE(arg2_tree), + arg2_tree); + } + + case BUILTIN_REAL: + case BUILTIN_IMAG: + { + const Expression_list* args = this->args(); + gcc_assert(args != NULL && args->size() == 1); + Expression* arg = args->front(); + tree arg_tree = arg->get_tree(context); + if (arg_tree == error_mark_node) + return error_mark_node; + gcc_assert(COMPLEX_FLOAT_TYPE_P(TREE_TYPE(arg_tree))); + if (this->code_ == BUILTIN_REAL) + return fold_build1_loc(location, REALPART_EXPR, + TREE_TYPE(TREE_TYPE(arg_tree)), + arg_tree); + else + return fold_build1_loc(location, IMAGPART_EXPR, + TREE_TYPE(TREE_TYPE(arg_tree)), + arg_tree); + } + + case BUILTIN_CMPLX: + { + const Expression_list* args = this->args(); + gcc_assert(args != NULL && args->size() == 2); + tree r = args->front()->get_tree(context); + tree i = args->back()->get_tree(context); + if (r == error_mark_node || i == error_mark_node) + return error_mark_node; + gcc_assert(TYPE_MAIN_VARIANT(TREE_TYPE(r)) + == TYPE_MAIN_VARIANT(TREE_TYPE(i))); + gcc_assert(SCALAR_FLOAT_TYPE_P(TREE_TYPE(r))); + return fold_build2_loc(location, COMPLEX_EXPR, + build_complex_type(TREE_TYPE(r)), + r, i); + } + + default: + gcc_unreachable(); + } +} + +// We have to support exporting a builtin call expression, because +// code can set a constant to the result of a builtin expression. + +void +Builtin_call_expression::do_export(Export* exp) const +{ + bool ok = false; + + mpz_t val; + mpz_init(val); + Type* dummy; + if (this->integer_constant_value(true, val, &dummy)) + { + Integer_expression::export_integer(exp, val); + ok = true; + } + mpz_clear(val); + + if (!ok) + { + mpfr_t fval; + mpfr_init(fval); + if (this->float_constant_value(fval, &dummy)) + { + Float_expression::export_float(exp, fval); + ok = true; + } + mpfr_clear(fval); + } + + if (!ok) + { + mpfr_t real; + mpfr_t imag; + mpfr_init(real); + mpfr_init(imag); + if (this->complex_constant_value(real, imag, &dummy)) + { + Complex_expression::export_complex(exp, real, imag); + ok = true; + } + mpfr_clear(real); + mpfr_clear(imag); + } + + if (!ok) + { + error_at(this->location(), "value is not constant"); + return; + } + + // A trailing space lets us reliably identify the end of the number. + exp->write_c_string(" "); +} + +// Class Call_expression. + +// Traversal. + +int +Call_expression::do_traverse(Traverse* traverse) +{ + if (Expression::traverse(&this->fn_, traverse) == TRAVERSE_EXIT) + return TRAVERSE_EXIT; + if (this->args_ != NULL) + { + if (this->args_->traverse(traverse) == TRAVERSE_EXIT) + return TRAVERSE_EXIT; + } + return TRAVERSE_CONTINUE; +} + +// Lower a call statement. + +Expression* +Call_expression::do_lower(Gogo* gogo, Named_object* function, int) +{ + // A type case can look like a function call. + if (this->fn_->is_type_expression() + && this->args_ != NULL + && this->args_->size() == 1) + return Expression::make_cast(this->fn_->type(), this->args_->front(), + this->location()); + + // Recognize a call to a builtin function. + Func_expression* fne = this->fn_->func_expression(); + if (fne != NULL + && fne->named_object()->is_function_declaration() + && fne->named_object()->func_declaration_value()->type()->is_builtin()) + return new Builtin_call_expression(gogo, this->fn_, this->args_, + this->is_varargs_, this->location()); + + // Handle an argument which is a call to a function which returns + // multiple results. + if (this->args_ != NULL + && this->args_->size() == 1 + && this->args_->front()->call_expression() != NULL + && this->fn_->type()->function_type() != NULL) + { + Function_type* fntype = this->fn_->type()->function_type(); + size_t rc = this->args_->front()->call_expression()->result_count(); + if (rc > 1 + && fntype->parameters() != NULL + && (fntype->parameters()->size() == rc + || (fntype->is_varargs() + && fntype->parameters()->size() - 1 <= rc))) + { + Call_expression* call = this->args_->front()->call_expression(); + Expression_list* args = new Expression_list; + for (size_t i = 0; i < rc; ++i) + args->push_back(Expression::make_call_result(call, i)); + // We can't return a new call expression here, because this + // one may be referenced by Call_result expressions. FIXME. + delete this->args_; + this->args_ = args; + } + } + + // Handle a call to a varargs function by packaging up the extra + // parameters. + if (this->fn_->type()->function_type() != NULL + && this->fn_->type()->function_type()->is_varargs()) + { + Function_type* fntype = this->fn_->type()->function_type(); + const Typed_identifier_list* parameters = fntype->parameters(); + gcc_assert(parameters != NULL && !parameters->empty()); + Type* varargs_type = parameters->back().type(); + return this->lower_varargs(gogo, function, varargs_type, + parameters->size()); + } + + return this; +} + +// Lower a call to a varargs function. FUNCTION is the function in +// which the call occurs--it's not the function we are calling. +// VARARGS_TYPE is the type of the varargs parameter, a slice type. +// PARAM_COUNT is the number of parameters of the function we are +// calling; the last of these parameters will be the varargs +// parameter. + +Expression* +Call_expression::lower_varargs(Gogo* gogo, Named_object* function, + Type* varargs_type, size_t param_count) +{ + if (this->varargs_are_lowered_) + return this; + + source_location loc = this->location(); + + gcc_assert(param_count > 0); + gcc_assert(varargs_type->is_open_array_type()); + + size_t arg_count = this->args_ == NULL ? 0 : this->args_->size(); + if (arg_count < param_count - 1) + { + // Not enough arguments; will be caught in check_types. + return this; + } + + Expression_list* old_args = this->args_; + Expression_list* new_args = new Expression_list(); + bool push_empty_arg = false; + if (old_args == NULL || old_args->empty()) + { + gcc_assert(param_count == 1); + push_empty_arg = true; + } + else + { + Expression_list::const_iterator pa; + int i = 1; + for (pa = old_args->begin(); pa != old_args->end(); ++pa, ++i) + { + if (static_cast<size_t>(i) == param_count) + break; + new_args->push_back(*pa); + } + + // We have reached the varargs parameter. + + bool issued_error = false; + if (pa == old_args->end()) + push_empty_arg = true; + else if (pa + 1 == old_args->end() && this->is_varargs_) + new_args->push_back(*pa); + else if (this->is_varargs_) + { + this->report_error(_("too many arguments")); + return this; + } + else if (pa + 1 == old_args->end() + && this->is_compatible_varargs_argument(function, *pa, + varargs_type, + &issued_error)) + new_args->push_back(*pa); + else + { + Type* element_type = varargs_type->array_type()->element_type(); + Expression_list* vals = new Expression_list; + for (; pa != old_args->end(); ++pa, ++i) + { + // Check types here so that we get a better message. + Type* patype = (*pa)->type(); + source_location paloc = (*pa)->location(); + if (!this->check_argument_type(i, element_type, patype, + paloc, issued_error)) + continue; + vals->push_back(*pa); + } + Expression* val = + Expression::make_slice_composite_literal(varargs_type, vals, loc); + new_args->push_back(val); + } + } + + if (push_empty_arg) + new_args->push_back(Expression::make_nil(loc)); + + // We can't return a new call expression here, because this one may + // be referenced by Call_result expressions. FIXME. + if (old_args != NULL) + delete old_args; + this->args_ = new_args; + this->varargs_are_lowered_ = true; + + // Lower all the new subexpressions. + Expression* ret = this; + gogo->lower_expression(function, &ret); + gcc_assert(ret == this); + return ret; +} + +// Return true if ARG is a varargs argment which should be passed to +// the varargs parameter of type PARAM_TYPE without wrapping. ARG +// will be the last argument passed in the call, and PARAM_TYPE will +// be the type of the last parameter of the varargs function being +// called. + +bool +Call_expression::is_compatible_varargs_argument(Named_object* function, + Expression* arg, + Type* param_type, + bool* issued_error) +{ + *issued_error = false; + + Type* var_type = NULL; + + // The simple case is passing the varargs parameter of the caller. + Var_expression* ve = arg->var_expression(); + if (ve != NULL && ve->named_object()->is_variable()) + { + Variable* var = ve->named_object()->var_value(); + if (var->is_varargs_parameter()) + var_type = var->type(); + } + + // The complex case is passing the varargs parameter of some + // enclosing function. This will look like passing down *c.f where + // c is the closure variable and f is a field in the closure. + if (function != NULL + && function->func_value()->needs_closure() + && arg->classification() == EXPRESSION_UNARY) + { + Unary_expression* ue = static_cast<Unary_expression*>(arg); + if (ue->op() == OPERATOR_MULT) + { + Field_reference_expression* fre = + ue->operand()->deref()->field_reference_expression(); + if (fre != NULL) + { + Var_expression* ve = fre->expr()->deref()->var_expression(); + if (ve != NULL) + { + Named_object* no = ve->named_object(); + Function* f = function->func_value(); + if (no == f->closure_var()) + { + // At this point we know that this indeed a + // reference to some enclosing variable. Now we + // need to figure out whether that variable is a + // varargs parameter. + Named_object* enclosing = + f->enclosing_var(fre->field_index()); + Variable* var = enclosing->var_value(); + if (var->is_varargs_parameter()) + var_type = var->type(); + } + } + } + } + } + + if (var_type == NULL) + return false; + + // We only match if the parameter is the same, with an identical + // type. + Array_type* var_at = var_type->array_type(); + gcc_assert(var_at != NULL); + Array_type* param_at = param_type->array_type(); + if (param_at != NULL + && Type::are_identical(var_at->element_type(), + param_at->element_type(), NULL)) + return true; + error_at(arg->location(), "... mismatch: passing ...T as ..."); + *issued_error = true; + return false; +} + +// Get the function type. Returns NULL if we don't know the type. If +// this returns NULL, and if_ERROR is true, issues an error. + +Function_type* +Call_expression::get_function_type() const +{ + return this->fn_->type()->function_type(); +} + +// Return the number of values which this call will return. + +size_t +Call_expression::result_count() const +{ + const Function_type* fntype = this->get_function_type(); + if (fntype == NULL) + return 0; + if (fntype->results() == NULL) + return 0; + return fntype->results()->size(); +} + +// Return whether this is a call to the predeclared function recover. + +bool +Call_expression::is_recover_call() const +{ + return this->do_is_recover_call(); +} + +// Set the argument to the recover function. + +void +Call_expression::set_recover_arg(Expression* arg) +{ + this->do_set_recover_arg(arg); +} + +// Virtual functions also implemented by Builtin_call_expression. + +bool +Call_expression::do_is_recover_call() const +{ + return false; +} + +void +Call_expression::do_set_recover_arg(Expression*) +{ + gcc_unreachable(); +} + +// Get the type. + +Type* +Call_expression::do_type() +{ + if (this->type_ != NULL) + return this->type_; + + Type* ret; + Function_type* fntype = this->get_function_type(); + if (fntype == NULL) + return Type::make_error_type(); + + const Typed_identifier_list* results = fntype->results(); + if (results == NULL) + ret = Type::make_void_type(); + else if (results->size() == 1) + ret = results->begin()->type(); + else + ret = Type::make_call_multiple_result_type(this); + + this->type_ = ret; + + return this->type_; +} + +// Determine types for a call expression. We can use the function +// parameter types to set the types of the arguments. + +void +Call_expression::do_determine_type(const Type_context*) +{ + this->fn_->determine_type_no_context(); + Function_type* fntype = this->get_function_type(); + const Typed_identifier_list* parameters = NULL; + if (fntype != NULL) + parameters = fntype->parameters(); + if (this->args_ != NULL) + { + Typed_identifier_list::const_iterator pt; + if (parameters != NULL) + pt = parameters->begin(); + for (Expression_list::const_iterator pa = this->args_->begin(); + pa != this->args_->end(); + ++pa) + { + if (parameters != NULL && pt != parameters->end()) + { + Type_context subcontext(pt->type(), false); + (*pa)->determine_type(&subcontext); + ++pt; + } + else + (*pa)->determine_type_no_context(); + } + } +} + +// Check types for parameter I. + +bool +Call_expression::check_argument_type(int i, const Type* parameter_type, + const Type* argument_type, + source_location argument_location, + bool issued_error) +{ + std::string reason; + if (!Type::are_assignable(parameter_type, argument_type, &reason)) + { + if (!issued_error) + { + if (reason.empty()) + error_at(argument_location, "argument %d has incompatible type", i); + else + error_at(argument_location, + "argument %d has incompatible type (%s)", + i, reason.c_str()); + } + this->set_is_error(); + return false; + } + return true; +} + +// Check types. + +void +Call_expression::do_check_types(Gogo*) +{ + Function_type* fntype = this->get_function_type(); + if (fntype == NULL) + { + if (!this->fn_->type()->is_error_type()) + this->report_error(_("expected function")); + return; + } + + if (fntype->is_method()) + { + // We don't support pointers to methods, so the function has to + // be a bound method expression. + Bound_method_expression* bme = this->fn_->bound_method_expression(); + if (bme == NULL) + { + this->report_error(_("method call without object")); + return; + } + Type* first_arg_type = bme->first_argument()->type(); + if (first_arg_type->points_to() == NULL) + { + // When passing a value, we need to check that we are + // permitted to copy it. + std::string reason; + if (!Type::are_assignable(fntype->receiver()->type(), + first_arg_type, &reason)) + { + if (reason.empty()) + this->report_error(_("incompatible type for receiver")); + else + { + error_at(this->location(), + "incompatible type for receiver (%s)", + reason.c_str()); + this->set_is_error(); + } + } + } + } + + // Note that varargs was handled by the lower_varargs() method, so + // we don't have to worry about it here. + + const Typed_identifier_list* parameters = fntype->parameters(); + if (this->args_ == NULL) + { + if (parameters != NULL && !parameters->empty()) + this->report_error(_("not enough arguments")); + } + else if (parameters == NULL) + this->report_error(_("too many arguments")); + else + { + int i = 0; + Typed_identifier_list::const_iterator pt = parameters->begin(); + for (Expression_list::const_iterator pa = this->args_->begin(); + pa != this->args_->end(); + ++pa, ++pt, ++i) + { + if (pt == parameters->end()) + { + this->report_error(_("too many arguments")); + return; + } + this->check_argument_type(i + 1, pt->type(), (*pa)->type(), + (*pa)->location(), false); + } + if (pt != parameters->end()) + this->report_error(_("not enough arguments")); + } +} + +// Return whether we have to use a temporary variable to ensure that +// we evaluate this call expression in order. If the call returns no +// results then it will inevitably be executed last. If the call +// returns more than one result then it will be used with Call_result +// expressions. So we only have to use a temporary variable if the +// call returns exactly one result. + +bool +Call_expression::do_must_eval_in_order() const +{ + return this->result_count() == 1; +} + +// Get the function and the first argument to use when calling a bound +// method. + +tree +Call_expression::bound_method_function(Translate_context* context, + Bound_method_expression* bound_method, + tree* first_arg_ptr) +{ + Expression* first_argument = bound_method->first_argument(); + tree first_arg = first_argument->get_tree(context); + if (first_arg == error_mark_node) + return error_mark_node; + + // We always pass a pointer to the first argument when calling a + // method. + if (first_argument->type()->points_to() == NULL) + { + tree pointer_to_arg_type = build_pointer_type(TREE_TYPE(first_arg)); + if (TREE_ADDRESSABLE(TREE_TYPE(first_arg)) + || DECL_P(first_arg) + || TREE_CODE(first_arg) == INDIRECT_REF + || TREE_CODE(first_arg) == COMPONENT_REF) + { + first_arg = build_fold_addr_expr(first_arg); + if (DECL_P(first_arg)) + TREE_ADDRESSABLE(first_arg) = 1; + } + else + { + tree tmp = create_tmp_var(TREE_TYPE(first_arg), + get_name(first_arg)); + DECL_IGNORED_P(tmp) = 0; + DECL_INITIAL(tmp) = first_arg; + first_arg = build2(COMPOUND_EXPR, pointer_to_arg_type, + build1(DECL_EXPR, void_type_node, tmp), + build_fold_addr_expr(tmp)); + TREE_ADDRESSABLE(tmp) = 1; + } + if (first_arg == error_mark_node) + return error_mark_node; + } + + Type* fatype = bound_method->first_argument_type(); + if (fatype != NULL) + { + if (fatype->points_to() == NULL) + fatype = Type::make_pointer_type(fatype); + first_arg = fold_convert(fatype->get_tree(context->gogo()), first_arg); + if (first_arg == error_mark_node + || TREE_TYPE(first_arg) == error_mark_node) + return error_mark_node; + } + + *first_arg_ptr = first_arg; + + return bound_method->method()->get_tree(context); +} + +// Get the function and the first argument to use when calling an +// interface method. + +tree +Call_expression::interface_method_function( + Translate_context* context, + Interface_field_reference_expression* interface_method, + tree* first_arg_ptr) +{ + tree expr = interface_method->expr()->get_tree(context); + if (expr == error_mark_node) + return error_mark_node; + expr = save_expr(expr); + tree first_arg = interface_method->get_underlying_object_tree(context, expr); + if (first_arg == error_mark_node) + return error_mark_node; + *first_arg_ptr = first_arg; + return interface_method->get_function_tree(context, expr); +} + +// Build the call expression. + +tree +Call_expression::do_get_tree(Translate_context* context) +{ + if (this->tree_ != NULL_TREE) + return this->tree_; + + Function_type* fntype = this->get_function_type(); + if (fntype == NULL) + return error_mark_node; + + if (this->fn_->is_error_expression()) + return error_mark_node; + + Gogo* gogo = context->gogo(); + source_location location = this->location(); + + Func_expression* func = this->fn_->func_expression(); + Bound_method_expression* bound_method = this->fn_->bound_method_expression(); + Interface_field_reference_expression* interface_method = + this->fn_->interface_field_reference_expression(); + const bool has_closure = func != NULL && func->closure() != NULL; + const bool is_method = bound_method != NULL || interface_method != NULL; + gcc_assert(!fntype->is_method() || is_method); + + int nargs; + tree* args; + if (this->args_ == NULL || this->args_->empty()) + { + nargs = is_method ? 1 : 0; + args = nargs == 0 ? NULL : new tree[nargs]; + } + else + { + const Typed_identifier_list* params = fntype->parameters(); + gcc_assert(params != NULL); + + nargs = this->args_->size(); + int i = is_method ? 1 : 0; + nargs += i; + args = new tree[nargs]; + + Typed_identifier_list::const_iterator pp = params->begin(); + Expression_list::const_iterator pe; + for (pe = this->args_->begin(); + pe != this->args_->end(); + ++pe, ++pp, ++i) + { + tree arg_val = (*pe)->get_tree(context); + args[i] = Expression::convert_for_assignment(context, + pp->type(), + (*pe)->type(), + arg_val, + location); + if (args[i] == error_mark_node) + return error_mark_node; + } + gcc_assert(pp == params->end()); + gcc_assert(i == nargs); + } + + tree rettype = TREE_TYPE(TREE_TYPE(fntype->get_tree(gogo))); + if (rettype == error_mark_node) + return error_mark_node; + + tree fn; + if (has_closure) + fn = func->get_tree_without_closure(gogo); + else if (!is_method) + fn = this->fn_->get_tree(context); + else if (bound_method != NULL) + fn = this->bound_method_function(context, bound_method, &args[0]); + else if (interface_method != NULL) + fn = this->interface_method_function(context, interface_method, &args[0]); + else + gcc_unreachable(); + + if (fn == error_mark_node || TREE_TYPE(fn) == error_mark_node) + return error_mark_node; + + // This is to support builtin math functions when using 80387 math. + tree fndecl = fn; + if (TREE_CODE(fndecl) == ADDR_EXPR) + fndecl = TREE_OPERAND(fndecl, 0); + tree excess_type = NULL_TREE; + if (DECL_P(fndecl) + && DECL_IS_BUILTIN(fndecl) + && DECL_BUILT_IN_CLASS(fndecl) == BUILT_IN_NORMAL + && nargs > 0 + && ((SCALAR_FLOAT_TYPE_P(rettype) + && SCALAR_FLOAT_TYPE_P(TREE_TYPE(args[0]))) + || (COMPLEX_FLOAT_TYPE_P(rettype) + && COMPLEX_FLOAT_TYPE_P(TREE_TYPE(args[0]))))) + { + excess_type = excess_precision_type(TREE_TYPE(args[0])); + if (excess_type != NULL_TREE) + { + tree excess_fndecl = mathfn_built_in(excess_type, + DECL_FUNCTION_CODE(fndecl)); + if (excess_fndecl == NULL_TREE) + excess_type = NULL_TREE; + else + { + fn = build_fold_addr_expr_loc(location, excess_fndecl); + for (int i = 0; i < nargs; ++i) + args[i] = ::convert(excess_type, args[i]); + } + } + } + + tree ret = build_call_array(excess_type != NULL_TREE ? excess_type : rettype, + fn, nargs, args); + delete[] args; + + SET_EXPR_LOCATION(ret, location); + + if (has_closure) + { + tree closure_tree = func->closure()->get_tree(context); + if (closure_tree != error_mark_node) + CALL_EXPR_STATIC_CHAIN(ret) = closure_tree; + } + + // If this is a recursive function type which returns itself, as in + // type F func() F + // we have used ptr_type_node for the return type. Add a cast here + // to the correct type. + if (TREE_TYPE(ret) == ptr_type_node) + { + tree t = this->type()->get_tree(gogo); + ret = fold_convert_loc(location, t, ret); + } + + if (excess_type != NULL_TREE) + { + // Calling convert here can undo our excess precision change. + // That may or may not be a bug in convert_to_real. + ret = build1(NOP_EXPR, rettype, ret); + } + + // If there is more than one result, we will refer to the call + // multiple times. + if (fntype->results() != NULL && fntype->results()->size() > 1) + ret = save_expr(ret); + + this->tree_ = ret; + + return ret; +} + +// Make a call expression. + +Call_expression* +Expression::make_call(Expression* fn, Expression_list* args, bool is_varargs, + source_location location) +{ + return new Call_expression(fn, args, is_varargs, location); +} + +// A single result from a call which returns multiple results. + +class Call_result_expression : public Expression +{ + public: + Call_result_expression(Call_expression* call, unsigned int index) + : Expression(EXPRESSION_CALL_RESULT, call->location()), + call_(call), index_(index) + { } + + protected: + int + do_traverse(Traverse*); + + Type* + do_type(); + + void + do_determine_type(const Type_context*); + + void + do_check_types(Gogo*); + + Expression* + do_copy() + { + return new Call_result_expression(this->call_->call_expression(), + this->index_); + } + + bool + do_must_eval_in_order() const + { return true; } + + tree + do_get_tree(Translate_context*); + + private: + // The underlying call expression. + Expression* call_; + // Which result we want. + unsigned int index_; +}; + +// Traverse a call result. + +int +Call_result_expression::do_traverse(Traverse* traverse) +{ + if (traverse->remember_expression(this->call_)) + { + // We have already traversed the call expression. + return TRAVERSE_CONTINUE; + } + return Expression::traverse(&this->call_, traverse); +} + +// Get the type. + +Type* +Call_result_expression::do_type() +{ + // THIS->CALL_ can be replaced with a temporary reference due to + // Call_expression::do_must_eval_in_order when there is an error. + Call_expression* ce = this->call_->call_expression(); + if (ce == NULL) + return Type::make_error_type(); + Function_type* fntype = ce->get_function_type(); + if (fntype == NULL) + return Type::make_error_type(); + const Typed_identifier_list* results = fntype->results(); + Typed_identifier_list::const_iterator pr = results->begin(); + for (unsigned int i = 0; i < this->index_; ++i) + { + if (pr == results->end()) + return Type::make_error_type(); + ++pr; + } + if (pr == results->end()) + return Type::make_error_type(); + return pr->type(); +} + +// Check the type. This is where we give an error if we're trying to +// extract too many values from a call. + +void +Call_result_expression::do_check_types(Gogo*) +{ + bool ok = true; + Call_expression* ce = this->call_->call_expression(); + if (ce != NULL) + ok = this->index_ < ce->result_count(); + else + { + // This can happen when the call returns a single value but we + // are asking for the second result. + if (this->call_->is_error_expression()) + return; + ok = false; + } + if (!ok) + error_at(this->location(), + "number of results does not match number of values"); +} + +// Determine the type. We have nothing to do here, but the 0 result +// needs to pass down to the caller. + +void +Call_result_expression::do_determine_type(const Type_context*) +{ + if (this->index_ == 0) + this->call_->determine_type_no_context(); +} + +// Return the tree. + +tree +Call_result_expression::do_get_tree(Translate_context* context) +{ + tree call_tree = this->call_->get_tree(context); + if (call_tree == error_mark_node) + return error_mark_node; + gcc_assert(TREE_CODE(TREE_TYPE(call_tree)) == RECORD_TYPE); + tree field = TYPE_FIELDS(TREE_TYPE(call_tree)); + for (unsigned int i = 0; i < this->index_; ++i) + { + gcc_assert(field != NULL_TREE); + field = DECL_CHAIN(field); + } + gcc_assert(field != NULL_TREE); + return build3(COMPONENT_REF, TREE_TYPE(field), call_tree, field, NULL_TREE); +} + +// Make a reference to a single result of a call which returns +// multiple results. + +Expression* +Expression::make_call_result(Call_expression* call, unsigned int index) +{ + return new Call_result_expression(call, index); +} + +// Class Index_expression. + +// Traversal. + +int +Index_expression::do_traverse(Traverse* traverse) +{ + if (Expression::traverse(&this->left_, traverse) == TRAVERSE_EXIT + || Expression::traverse(&this->start_, traverse) == TRAVERSE_EXIT + || (this->end_ != NULL + && Expression::traverse(&this->end_, traverse) == TRAVERSE_EXIT)) + return TRAVERSE_EXIT; + return TRAVERSE_CONTINUE; +} + +// Lower an index expression. This converts the generic index +// expression into an array index, a string index, or a map index. + +Expression* +Index_expression::do_lower(Gogo*, Named_object*, int) +{ + source_location location = this->location(); + Expression* left = this->left_; + Expression* start = this->start_; + Expression* end = this->end_; + + Type* type = left->type(); + if (type->is_error_type()) + return Expression::make_error(location); + else if (type->array_type() != NULL) + return Expression::make_array_index(left, start, end, location); + else if (type->points_to() != NULL + && type->points_to()->array_type() != NULL + && !type->points_to()->is_open_array_type()) + { + Expression* deref = Expression::make_unary(OPERATOR_MULT, left, + location); + return Expression::make_array_index(deref, start, end, location); + } + else if (type->is_string_type()) + return Expression::make_string_index(left, start, end, location); + else if (type->map_type() != NULL) + { + if (end != NULL) + { + error_at(location, "invalid slice of map"); + return Expression::make_error(location); + } + Map_index_expression* ret= Expression::make_map_index(left, start, + location); + if (this->is_lvalue_) + ret->set_is_lvalue(); + return ret; + } + else + { + error_at(location, + "attempt to index object which is not array, string, or map"); + return Expression::make_error(location); + } +} + +// Make an index expression. + +Expression* +Expression::make_index(Expression* left, Expression* start, Expression* end, + source_location location) +{ + return new Index_expression(left, start, end, location); +} + +// An array index. This is used for both indexing and slicing. + +class Array_index_expression : public Expression +{ + public: + Array_index_expression(Expression* array, Expression* start, + Expression* end, source_location location) + : Expression(EXPRESSION_ARRAY_INDEX, location), + array_(array), start_(start), end_(end), type_(NULL) + { } + + protected: + int + do_traverse(Traverse*); + + Type* + do_type(); + + void + do_determine_type(const Type_context*); + + void + do_check_types(Gogo*); + + Expression* + do_copy() + { + return Expression::make_array_index(this->array_->copy(), + this->start_->copy(), + (this->end_ == NULL + ? NULL + : this->end_->copy()), + this->location()); + } + + bool + do_is_addressable() const; + + void + do_address_taken(bool escapes) + { this->array_->address_taken(escapes); } + + tree + do_get_tree(Translate_context*); + + private: + // The array we are getting a value from. + Expression* array_; + // The start or only index. + Expression* start_; + // The end index of a slice. This may be NULL for a simple array + // index, or it may be a nil expression for the length of the array. + Expression* end_; + // The type of the expression. + Type* type_; +}; + +// Array index traversal. + +int +Array_index_expression::do_traverse(Traverse* traverse) +{ + if (Expression::traverse(&this->array_, traverse) == TRAVERSE_EXIT) + return TRAVERSE_EXIT; + if (Expression::traverse(&this->start_, traverse) == TRAVERSE_EXIT) + return TRAVERSE_EXIT; + if (this->end_ != NULL) + { + if (Expression::traverse(&this->end_, traverse) == TRAVERSE_EXIT) + return TRAVERSE_EXIT; + } + return TRAVERSE_CONTINUE; +} + +// Return the type of an array index. + +Type* +Array_index_expression::do_type() +{ + if (this->type_ == NULL) + { + Array_type* type = this->array_->type()->array_type(); + if (type == NULL) + this->type_ = Type::make_error_type(); + else if (this->end_ == NULL) + this->type_ = type->element_type(); + else if (type->is_open_array_type()) + { + // A slice of a slice has the same type as the original + // slice. + this->type_ = this->array_->type()->deref(); + } + else + { + // A slice of an array is a slice. + this->type_ = Type::make_array_type(type->element_type(), NULL); + } + } + return this->type_; +} + +// Set the type of an array index. + +void +Array_index_expression::do_determine_type(const Type_context*) +{ + this->array_->determine_type_no_context(); + Type_context subcontext(NULL, true); + this->start_->determine_type(&subcontext); + if (this->end_ != NULL) + this->end_->determine_type(&subcontext); +} + +// Check types of an array index. + +void +Array_index_expression::do_check_types(Gogo*) +{ + if (this->start_->type()->integer_type() == NULL) + this->report_error(_("index must be integer")); + if (this->end_ != NULL + && this->end_->type()->integer_type() == NULL + && !this->end_->is_nil_expression()) + this->report_error(_("slice end must be integer")); + + Array_type* array_type = this->array_->type()->array_type(); + gcc_assert(array_type != NULL); + + unsigned int int_bits = + Type::lookup_integer_type("int")->integer_type()->bits(); + + Type* dummy; + mpz_t lval; + mpz_init(lval); + bool lval_valid = (array_type->length() != NULL + && array_type->length()->integer_constant_value(true, + lval, + &dummy)); + mpz_t ival; + mpz_init(ival); + if (this->start_->integer_constant_value(true, ival, &dummy)) + { + if (mpz_sgn(ival) < 0 + || mpz_sizeinbase(ival, 2) >= int_bits + || (lval_valid + && (this->end_ == NULL + ? mpz_cmp(ival, lval) >= 0 + : mpz_cmp(ival, lval) > 0))) + { + error_at(this->start_->location(), "array index out of bounds"); + this->set_is_error(); + } + } + if (this->end_ != NULL && !this->end_->is_nil_expression()) + { + if (this->end_->integer_constant_value(true, ival, &dummy)) + { + if (mpz_sgn(ival) < 0 + || mpz_sizeinbase(ival, 2) >= int_bits + || (lval_valid && mpz_cmp(ival, lval) > 0)) + { + error_at(this->end_->location(), "array index out of bounds"); + this->set_is_error(); + } + } + } + mpz_clear(ival); + mpz_clear(lval); + + // A slice of an array requires an addressable array. A slice of a + // slice is always possible. + if (this->end_ != NULL + && !array_type->is_open_array_type() + && !this->array_->is_addressable()) + this->report_error(_("array is not addressable")); +} + +// Return whether this expression is addressable. + +bool +Array_index_expression::do_is_addressable() const +{ + // A slice expression is not addressable. + if (this->end_ != NULL) + return false; + + // An index into a slice is addressable. + if (this->array_->type()->is_open_array_type()) + return true; + + // An index into an array is addressable if the array is + // addressable. + return this->array_->is_addressable(); +} + +// Get a tree for an array index. + +tree +Array_index_expression::do_get_tree(Translate_context* context) +{ + Gogo* gogo = context->gogo(); + source_location loc = this->location(); + + Array_type* array_type = this->array_->type()->array_type(); + gcc_assert(array_type != NULL); + + tree type_tree = array_type->get_tree(gogo); + + tree array_tree = this->array_->get_tree(context); + if (array_tree == error_mark_node) + return error_mark_node; + + if (array_type->length() == NULL && !DECL_P(array_tree)) + array_tree = save_expr(array_tree); + tree length_tree = array_type->length_tree(gogo, array_tree); + length_tree = save_expr(length_tree); + tree length_type = TREE_TYPE(length_tree); + + tree bad_index = boolean_false_node; + + tree start_tree = this->start_->get_tree(context); + if (start_tree == error_mark_node) + return error_mark_node; + if (!DECL_P(start_tree)) + start_tree = save_expr(start_tree); + if (!INTEGRAL_TYPE_P(TREE_TYPE(start_tree))) + start_tree = convert_to_integer(length_type, start_tree); + + bad_index = Expression::check_bounds(start_tree, length_type, bad_index, + loc); + + start_tree = fold_convert_loc(loc, length_type, start_tree); + bad_index = fold_build2_loc(loc, TRUTH_OR_EXPR, boolean_type_node, bad_index, + fold_build2_loc(loc, + (this->end_ == NULL + ? GE_EXPR + : GT_EXPR), + boolean_type_node, start_tree, + length_tree)); + + int code = (array_type->length() != NULL + ? (this->end_ == NULL + ? RUNTIME_ERROR_ARRAY_INDEX_OUT_OF_BOUNDS + : RUNTIME_ERROR_ARRAY_SLICE_OUT_OF_BOUNDS) + : (this->end_ == NULL + ? RUNTIME_ERROR_SLICE_INDEX_OUT_OF_BOUNDS + : RUNTIME_ERROR_SLICE_SLICE_OUT_OF_BOUNDS)); + tree crash = Gogo::runtime_error(code, loc); + + if (this->end_ == NULL) + { + // Simple array indexing. This has to return an l-value, so + // wrap the index check into START_TREE. + start_tree = build2(COMPOUND_EXPR, TREE_TYPE(start_tree), + build3(COND_EXPR, void_type_node, + bad_index, crash, NULL_TREE), + start_tree); + start_tree = fold_convert_loc(loc, sizetype, start_tree); + + if (array_type->length() != NULL) + { + // Fixed array. + return build4(ARRAY_REF, TREE_TYPE(type_tree), array_tree, + start_tree, NULL_TREE, NULL_TREE); + } + else + { + // Open array. + tree values = array_type->value_pointer_tree(gogo, array_tree); + tree element_type_tree = array_type->element_type()->get_tree(gogo); + tree element_size = TYPE_SIZE_UNIT(element_type_tree); + tree offset = fold_build2_loc(loc, MULT_EXPR, sizetype, + start_tree, element_size); + tree ptr = fold_build2_loc(loc, POINTER_PLUS_EXPR, + TREE_TYPE(values), values, offset); + return build_fold_indirect_ref(ptr); + } + } + + // Array slice. + + tree capacity_tree = array_type->capacity_tree(gogo, array_tree); + capacity_tree = fold_convert_loc(loc, length_type, capacity_tree); + + tree end_tree; + if (this->end_->is_nil_expression()) + end_tree = length_tree; + else + { + end_tree = this->end_->get_tree(context); + if (end_tree == error_mark_node) + return error_mark_node; + if (!DECL_P(end_tree)) + end_tree = save_expr(end_tree); + if (!INTEGRAL_TYPE_P(TREE_TYPE(end_tree))) + end_tree = convert_to_integer(length_type, end_tree); + + bad_index = Expression::check_bounds(end_tree, length_type, bad_index, + loc); + + end_tree = fold_convert_loc(loc, length_type, end_tree); + + capacity_tree = save_expr(capacity_tree); + tree bad_end = fold_build2_loc(loc, TRUTH_OR_EXPR, boolean_type_node, + fold_build2_loc(loc, LT_EXPR, + boolean_type_node, + end_tree, start_tree), + fold_build2_loc(loc, GT_EXPR, + boolean_type_node, + end_tree, capacity_tree)); + bad_index = fold_build2_loc(loc, TRUTH_OR_EXPR, boolean_type_node, + bad_index, bad_end); + } + + tree element_type_tree = array_type->element_type()->get_tree(gogo); + tree element_size = TYPE_SIZE_UNIT(element_type_tree); + + tree offset = fold_build2_loc(loc, MULT_EXPR, sizetype, + fold_convert_loc(loc, sizetype, start_tree), + element_size); + + tree value_pointer = array_type->value_pointer_tree(gogo, array_tree); + + value_pointer = fold_build2_loc(loc, POINTER_PLUS_EXPR, + TREE_TYPE(value_pointer), + value_pointer, offset); + + tree result_length_tree = fold_build2_loc(loc, MINUS_EXPR, length_type, + end_tree, start_tree); + + tree result_capacity_tree = fold_build2_loc(loc, MINUS_EXPR, length_type, + capacity_tree, start_tree); + + tree struct_tree = this->type()->get_tree(gogo); + gcc_assert(TREE_CODE(struct_tree) == RECORD_TYPE); + + VEC(constructor_elt,gc)* init = VEC_alloc(constructor_elt, gc, 3); + + constructor_elt* elt = VEC_quick_push(constructor_elt, init, NULL); + tree field = TYPE_FIELDS(struct_tree); + gcc_assert(strcmp(IDENTIFIER_POINTER(DECL_NAME(field)), "__values") == 0); + elt->index = field; + elt->value = value_pointer; + + elt = VEC_quick_push(constructor_elt, init, NULL); + field = DECL_CHAIN(field); + gcc_assert(strcmp(IDENTIFIER_POINTER(DECL_NAME(field)), "__count") == 0); + elt->index = field; + elt->value = fold_convert_loc(loc, TREE_TYPE(field), result_length_tree); + + elt = VEC_quick_push(constructor_elt, init, NULL); + field = DECL_CHAIN(field); + gcc_assert(strcmp(IDENTIFIER_POINTER(DECL_NAME(field)), "__capacity") == 0); + elt->index = field; + elt->value = fold_convert_loc(loc, TREE_TYPE(field), result_capacity_tree); + + tree constructor = build_constructor(struct_tree, init); + + if (TREE_CONSTANT(value_pointer) + && TREE_CONSTANT(result_length_tree) + && TREE_CONSTANT(result_capacity_tree)) + TREE_CONSTANT(constructor) = 1; + + return fold_build2_loc(loc, COMPOUND_EXPR, TREE_TYPE(constructor), + build3(COND_EXPR, void_type_node, + bad_index, crash, NULL_TREE), + constructor); +} + +// Make an array index expression. END may be NULL. + +Expression* +Expression::make_array_index(Expression* array, Expression* start, + Expression* end, source_location location) +{ + // Taking a slice of a composite literal requires moving the literal + // onto the heap. + if (end != NULL && array->is_composite_literal()) + { + array = Expression::make_heap_composite(array, location); + array = Expression::make_unary(OPERATOR_MULT, array, location); + } + return new Array_index_expression(array, start, end, location); +} + +// A string index. This is used for both indexing and slicing. + +class String_index_expression : public Expression +{ + public: + String_index_expression(Expression* string, Expression* start, + Expression* end, source_location location) + : Expression(EXPRESSION_STRING_INDEX, location), + string_(string), start_(start), end_(end) + { } + + protected: + int + do_traverse(Traverse*); + + Type* + do_type(); + + void + do_determine_type(const Type_context*); + + void + do_check_types(Gogo*); + + Expression* + do_copy() + { + return Expression::make_string_index(this->string_->copy(), + this->start_->copy(), + (this->end_ == NULL + ? NULL + : this->end_->copy()), + this->location()); + } + + tree + do_get_tree(Translate_context*); + + private: + // The string we are getting a value from. + Expression* string_; + // The start or only index. + Expression* start_; + // The end index of a slice. This may be NULL for a single index, + // or it may be a nil expression for the length of the string. + Expression* end_; +}; + +// String index traversal. + +int +String_index_expression::do_traverse(Traverse* traverse) +{ + if (Expression::traverse(&this->string_, traverse) == TRAVERSE_EXIT) + return TRAVERSE_EXIT; + if (Expression::traverse(&this->start_, traverse) == TRAVERSE_EXIT) + return TRAVERSE_EXIT; + if (this->end_ != NULL) + { + if (Expression::traverse(&this->end_, traverse) == TRAVERSE_EXIT) + return TRAVERSE_EXIT; + } + return TRAVERSE_CONTINUE; +} + +// Return the type of a string index. + +Type* +String_index_expression::do_type() +{ + if (this->end_ == NULL) + return Type::lookup_integer_type("uint8"); + else + return Type::make_string_type(); +} + +// Determine the type of a string index. + +void +String_index_expression::do_determine_type(const Type_context*) +{ + this->string_->determine_type_no_context(); + Type_context subcontext(NULL, true); + this->start_->determine_type(&subcontext); + if (this->end_ != NULL) + this->end_->determine_type(&subcontext); +} + +// Check types of a string index. + +void +String_index_expression::do_check_types(Gogo*) +{ + if (this->start_->type()->integer_type() == NULL) + this->report_error(_("index must be integer")); + if (this->end_ != NULL + && this->end_->type()->integer_type() == NULL + && !this->end_->is_nil_expression()) + this->report_error(_("slice end must be integer")); + + std::string sval; + bool sval_valid = this->string_->string_constant_value(&sval); + + mpz_t ival; + mpz_init(ival); + Type* dummy; + if (this->start_->integer_constant_value(true, ival, &dummy)) + { + if (mpz_sgn(ival) < 0 + || (sval_valid && mpz_cmp_ui(ival, sval.length()) >= 0)) + { + error_at(this->start_->location(), "string index out of bounds"); + this->set_is_error(); + } + } + if (this->end_ != NULL && !this->end_->is_nil_expression()) + { + if (this->end_->integer_constant_value(true, ival, &dummy)) + { + if (mpz_sgn(ival) < 0 + || (sval_valid && mpz_cmp_ui(ival, sval.length()) > 0)) + { + error_at(this->end_->location(), "string index out of bounds"); + this->set_is_error(); + } + } + } + mpz_clear(ival); +} + +// Get a tree for a string index. + +tree +String_index_expression::do_get_tree(Translate_context* context) +{ + source_location loc = this->location(); + + tree string_tree = this->string_->get_tree(context); + if (string_tree == error_mark_node) + return error_mark_node; + + if (this->string_->type()->points_to() != NULL) + string_tree = build_fold_indirect_ref(string_tree); + if (!DECL_P(string_tree)) + string_tree = save_expr(string_tree); + tree string_type = TREE_TYPE(string_tree); + + tree length_tree = String_type::length_tree(context->gogo(), string_tree); + length_tree = save_expr(length_tree); + tree length_type = TREE_TYPE(length_tree); + + tree bad_index = boolean_false_node; + + tree start_tree = this->start_->get_tree(context); + if (start_tree == error_mark_node) + return error_mark_node; + if (!DECL_P(start_tree)) + start_tree = save_expr(start_tree); + if (!INTEGRAL_TYPE_P(TREE_TYPE(start_tree))) + start_tree = convert_to_integer(length_type, start_tree); + + bad_index = Expression::check_bounds(start_tree, length_type, bad_index, + loc); + + start_tree = fold_convert_loc(loc, length_type, start_tree); + + int code = (this->end_ == NULL + ? RUNTIME_ERROR_STRING_INDEX_OUT_OF_BOUNDS + : RUNTIME_ERROR_STRING_SLICE_OUT_OF_BOUNDS); + tree crash = Gogo::runtime_error(code, loc); + + if (this->end_ == NULL) + { + bad_index = fold_build2_loc(loc, TRUTH_OR_EXPR, boolean_type_node, + bad_index, + fold_build2_loc(loc, GE_EXPR, + boolean_type_node, + start_tree, length_tree)); + + tree bytes_tree = String_type::bytes_tree(context->gogo(), string_tree); + tree ptr = fold_build2_loc(loc, POINTER_PLUS_EXPR, TREE_TYPE(bytes_tree), + bytes_tree, + fold_convert_loc(loc, sizetype, start_tree)); + tree index = build_fold_indirect_ref_loc(loc, ptr); + + return build2(COMPOUND_EXPR, TREE_TYPE(index), + build3(COND_EXPR, void_type_node, + bad_index, crash, NULL_TREE), + index); + } + else + { + tree end_tree; + if (this->end_->is_nil_expression()) + end_tree = build_int_cst(length_type, -1); + else + { + end_tree = this->end_->get_tree(context); + if (end_tree == error_mark_node) + return error_mark_node; + if (!DECL_P(end_tree)) + end_tree = save_expr(end_tree); + if (!INTEGRAL_TYPE_P(TREE_TYPE(end_tree))) + end_tree = convert_to_integer(length_type, end_tree); + + bad_index = Expression::check_bounds(end_tree, length_type, + bad_index, loc); + + end_tree = fold_convert_loc(loc, length_type, end_tree); + } + + static tree strslice_fndecl; + tree ret = Gogo::call_builtin(&strslice_fndecl, + loc, + "__go_string_slice", + 3, + string_type, + string_type, + string_tree, + length_type, + start_tree, + length_type, + end_tree); + // This will panic if the bounds are out of range for the + // string. + TREE_NOTHROW(strslice_fndecl) = 0; + + if (bad_index == boolean_false_node) + return ret; + else + return build2(COMPOUND_EXPR, TREE_TYPE(ret), + build3(COND_EXPR, void_type_node, + bad_index, crash, NULL_TREE), + ret); + } +} + +// Make a string index expression. END may be NULL. + +Expression* +Expression::make_string_index(Expression* string, Expression* start, + Expression* end, source_location location) +{ + return new String_index_expression(string, start, end, location); +} + +// Class Map_index. + +// Get the type of the map. + +Map_type* +Map_index_expression::get_map_type() const +{ + Map_type* mt = this->map_->type()->deref()->map_type(); + gcc_assert(mt != NULL); + return mt; +} + +// Map index traversal. + +int +Map_index_expression::do_traverse(Traverse* traverse) +{ + if (Expression::traverse(&this->map_, traverse) == TRAVERSE_EXIT) + return TRAVERSE_EXIT; + return Expression::traverse(&this->index_, traverse); +} + +// Return the type of a map index. + +Type* +Map_index_expression::do_type() +{ + Type* type = this->get_map_type()->val_type(); + // If this map index is in a tuple assignment, we actually return a + // pointer to the value type. Tuple_map_assignment_statement is + // responsible for handling this correctly. We need to get the type + // right in case this gets assigned to a temporary variable. + if (this->is_in_tuple_assignment_) + type = Type::make_pointer_type(type); + return type; +} + +// Fix the type of a map index. + +void +Map_index_expression::do_determine_type(const Type_context*) +{ + this->map_->determine_type_no_context(); + Type_context subcontext(this->get_map_type()->key_type(), false); + this->index_->determine_type(&subcontext); +} + +// Check types of a map index. + +void +Map_index_expression::do_check_types(Gogo*) +{ + std::string reason; + if (!Type::are_assignable(this->get_map_type()->key_type(), + this->index_->type(), &reason)) + { + if (reason.empty()) + this->report_error(_("incompatible type for map index")); + else + { + error_at(this->location(), "incompatible type for map index (%s)", + reason.c_str()); + this->set_is_error(); + } + } +} + +// Get a tree for a map index. + +tree +Map_index_expression::do_get_tree(Translate_context* context) +{ + Map_type* type = this->get_map_type(); + + tree valptr = this->get_value_pointer(context, this->is_lvalue_); + if (valptr == error_mark_node) + return error_mark_node; + valptr = save_expr(valptr); + + tree val_type_tree = TREE_TYPE(TREE_TYPE(valptr)); + + if (this->is_lvalue_) + return build_fold_indirect_ref(valptr); + else if (this->is_in_tuple_assignment_) + { + // Tuple_map_assignment_statement is responsible for using this + // appropriately. + return valptr; + } + else + { + return fold_build3(COND_EXPR, val_type_tree, + fold_build2(EQ_EXPR, boolean_type_node, valptr, + fold_convert(TREE_TYPE(valptr), + null_pointer_node)), + type->val_type()->get_init_tree(context->gogo(), + false), + build_fold_indirect_ref(valptr)); + } +} + +// Get a tree for the map index. This returns a tree which evaluates +// to a pointer to a value. The pointer will be NULL if the key is +// not in the map. + +tree +Map_index_expression::get_value_pointer(Translate_context* context, + bool insert) +{ + Map_type* type = this->get_map_type(); + + tree map_tree = this->map_->get_tree(context); + tree index_tree = this->index_->get_tree(context); + index_tree = Expression::convert_for_assignment(context, type->key_type(), + this->index_->type(), + index_tree, + this->location()); + if (map_tree == error_mark_node || index_tree == error_mark_node) + return error_mark_node; + + if (this->map_->type()->points_to() != NULL) + map_tree = build_fold_indirect_ref(map_tree); + + // We need to pass in a pointer to the key, so stuff it into a + // variable. + tree tmp = create_tmp_var(TREE_TYPE(index_tree), get_name(index_tree)); + DECL_IGNORED_P(tmp) = 0; + DECL_INITIAL(tmp) = index_tree; + tree make_tmp = build1(DECL_EXPR, void_type_node, tmp); + tree tmpref = fold_convert(const_ptr_type_node, build_fold_addr_expr(tmp)); + TREE_ADDRESSABLE(tmp) = 1; + + static tree map_index_fndecl; + tree call = Gogo::call_builtin(&map_index_fndecl, + this->location(), + "__go_map_index", + 3, + const_ptr_type_node, + TREE_TYPE(map_tree), + map_tree, + const_ptr_type_node, + tmpref, + boolean_type_node, + (insert + ? boolean_true_node + : boolean_false_node)); + // This can panic on a map of interface type if the interface holds + // an uncomparable or unhashable type. + TREE_NOTHROW(map_index_fndecl) = 0; + + tree val_type_tree = type->val_type()->get_tree(context->gogo()); + if (val_type_tree == error_mark_node) + return error_mark_node; + tree ptr_val_type_tree = build_pointer_type(val_type_tree); + + return build2(COMPOUND_EXPR, ptr_val_type_tree, + make_tmp, + fold_convert(ptr_val_type_tree, call)); +} + +// Make a map index expression. + +Map_index_expression* +Expression::make_map_index(Expression* map, Expression* index, + source_location location) +{ + return new Map_index_expression(map, index, location); +} + +// Class Field_reference_expression. + +// Return the type of a field reference. + +Type* +Field_reference_expression::do_type() +{ + Struct_type* struct_type = this->expr_->type()->struct_type(); + gcc_assert(struct_type != NULL); + return struct_type->field(this->field_index_)->type(); +} + +// Check the types for a field reference. + +void +Field_reference_expression::do_check_types(Gogo*) +{ + Struct_type* struct_type = this->expr_->type()->struct_type(); + gcc_assert(struct_type != NULL); + gcc_assert(struct_type->field(this->field_index_) != NULL); +} + +// Get a tree for a field reference. + +tree +Field_reference_expression::do_get_tree(Translate_context* context) +{ + tree struct_tree = this->expr_->get_tree(context); + if (struct_tree == error_mark_node + || TREE_TYPE(struct_tree) == error_mark_node) + return error_mark_node; + gcc_assert(TREE_CODE(TREE_TYPE(struct_tree)) == RECORD_TYPE); + tree field = TYPE_FIELDS(TREE_TYPE(struct_tree)); + gcc_assert(field != NULL_TREE); + for (unsigned int i = this->field_index_; i > 0; --i) + { + field = DECL_CHAIN(field); + gcc_assert(field != NULL_TREE); + } + return build3(COMPONENT_REF, TREE_TYPE(field), struct_tree, field, + NULL_TREE); +} + +// Make a reference to a qualified identifier in an expression. + +Field_reference_expression* +Expression::make_field_reference(Expression* expr, unsigned int field_index, + source_location location) +{ + return new Field_reference_expression(expr, field_index, location); +} + +// Class Interface_field_reference_expression. + +// Return a tree for the pointer to the function to call. + +tree +Interface_field_reference_expression::get_function_tree(Translate_context*, + tree expr) +{ + if (this->expr_->type()->points_to() != NULL) + expr = build_fold_indirect_ref(expr); + + tree expr_type = TREE_TYPE(expr); + gcc_assert(TREE_CODE(expr_type) == RECORD_TYPE); + + tree field = TYPE_FIELDS(expr_type); + gcc_assert(strcmp(IDENTIFIER_POINTER(DECL_NAME(field)), "__methods") == 0); + + tree table = build3(COMPONENT_REF, TREE_TYPE(field), expr, field, NULL_TREE); + gcc_assert(POINTER_TYPE_P(TREE_TYPE(table))); + + table = build_fold_indirect_ref(table); + gcc_assert(TREE_CODE(TREE_TYPE(table)) == RECORD_TYPE); + + std::string name = Gogo::unpack_hidden_name(this->name_); + for (field = DECL_CHAIN(TYPE_FIELDS(TREE_TYPE(table))); + field != NULL_TREE; + field = DECL_CHAIN(field)) + { + if (name == IDENTIFIER_POINTER(DECL_NAME(field))) + break; + } + gcc_assert(field != NULL_TREE); + + return build3(COMPONENT_REF, TREE_TYPE(field), table, field, NULL_TREE); +} + +// Return a tree for the first argument to pass to the interface +// function. + +tree +Interface_field_reference_expression::get_underlying_object_tree( + Translate_context*, + tree expr) +{ + if (this->expr_->type()->points_to() != NULL) + expr = build_fold_indirect_ref(expr); + + tree expr_type = TREE_TYPE(expr); + gcc_assert(TREE_CODE(expr_type) == RECORD_TYPE); + + tree field = DECL_CHAIN(TYPE_FIELDS(expr_type)); + gcc_assert(strcmp(IDENTIFIER_POINTER(DECL_NAME(field)), "__object") == 0); + + return build3(COMPONENT_REF, TREE_TYPE(field), expr, field, NULL_TREE); +} + +// Traversal. + +int +Interface_field_reference_expression::do_traverse(Traverse* traverse) +{ + return Expression::traverse(&this->expr_, traverse); +} + +// Return the type of an interface field reference. + +Type* +Interface_field_reference_expression::do_type() +{ + Type* expr_type = this->expr_->type(); + + Type* points_to = expr_type->points_to(); + if (points_to != NULL) + expr_type = points_to; + + Interface_type* interface_type = expr_type->interface_type(); + if (interface_type == NULL) + return Type::make_error_type(); + + const Typed_identifier* method = interface_type->find_method(this->name_); + if (method == NULL) + return Type::make_error_type(); + + return method->type(); +} + +// Determine types. + +void +Interface_field_reference_expression::do_determine_type(const Type_context*) +{ + this->expr_->determine_type_no_context(); +} + +// Check the types for an interface field reference. + +void +Interface_field_reference_expression::do_check_types(Gogo*) +{ + Type* type = this->expr_->type(); + + Type* points_to = type->points_to(); + if (points_to != NULL) + type = points_to; + + Interface_type* interface_type = type->interface_type(); + if (interface_type == NULL) + this->report_error(_("expected interface or pointer to interface")); + else + { + const Typed_identifier* method = + interface_type->find_method(this->name_); + if (method == NULL) + { + error_at(this->location(), "method %qs not in interface", + Gogo::message_name(this->name_).c_str()); + this->set_is_error(); + } + } +} + +// Get a tree for a reference to a field in an interface. There is no +// standard tree type representation for this: it's a function +// attached to its first argument, like a Bound_method_expression. +// The only places it may currently be used are in a Call_expression +// or a Go_statement, which will take it apart directly. So this has +// nothing to do at present. + +tree +Interface_field_reference_expression::do_get_tree(Translate_context*) +{ + gcc_unreachable(); +} + +// Make a reference to a field in an interface. + +Expression* +Expression::make_interface_field_reference(Expression* expr, + const std::string& field, + source_location location) +{ + return new Interface_field_reference_expression(expr, field, location); +} + +// A general selector. This is a Parser_expression for LEFT.NAME. It +// is lowered after we know the type of the left hand side. + +class Selector_expression : public Parser_expression +{ + public: + Selector_expression(Expression* left, const std::string& name, + source_location location) + : Parser_expression(EXPRESSION_SELECTOR, location), + left_(left), name_(name) + { } + + protected: + int + do_traverse(Traverse* traverse) + { return Expression::traverse(&this->left_, traverse); } + + Expression* + do_lower(Gogo*, Named_object*, int); + + Expression* + do_copy() + { + return new Selector_expression(this->left_->copy(), this->name_, + this->location()); + } + + private: + Expression* + lower_method_expression(Gogo*); + + // The expression on the left hand side. + Expression* left_; + // The name on the right hand side. + std::string name_; +}; + +// Lower a selector expression once we know the real type of the left +// hand side. + +Expression* +Selector_expression::do_lower(Gogo* gogo, Named_object*, int) +{ + Expression* left = this->left_; + if (left->is_type_expression()) + return this->lower_method_expression(gogo); + return Type::bind_field_or_method(gogo, left->type(), left, this->name_, + this->location()); +} + +// Lower a method expression T.M or (*T).M. We turn this into a +// function literal. + +Expression* +Selector_expression::lower_method_expression(Gogo* gogo) +{ + source_location location = this->location(); + Type* type = this->left_->type(); + const std::string& name(this->name_); + + bool is_pointer; + if (type->points_to() == NULL) + is_pointer = false; + else + { + is_pointer = true; + type = type->points_to(); + } + Named_type* nt = type->named_type(); + if (nt == NULL) + { + error_at(location, + ("method expression requires named type or " + "pointer to named type")); + return Expression::make_error(location); + } + + bool is_ambiguous; + Method* method = nt->method_function(name, &is_ambiguous); + if (method == NULL) + { + if (!is_ambiguous) + error_at(location, "type %<%s%> has no method %<%s%>", + nt->message_name().c_str(), + Gogo::message_name(name).c_str()); + else + error_at(location, "method %<%s%> is ambiguous in type %<%s%>", + Gogo::message_name(name).c_str(), + nt->message_name().c_str()); + return Expression::make_error(location); + } + + if (!is_pointer && !method->is_value_method()) + { + error_at(location, "method requires pointer (use %<(*%s).%s)%>", + nt->message_name().c_str(), + Gogo::message_name(name).c_str()); + return Expression::make_error(location); + } + + // Build a new function type in which the receiver becomes the first + // argument. + Function_type* method_type = method->type(); + gcc_assert(method_type->is_method()); + + const char* const receiver_name = "$this"; + Typed_identifier_list* parameters = new Typed_identifier_list(); + parameters->push_back(Typed_identifier(receiver_name, this->left_->type(), + location)); + + const Typed_identifier_list* method_parameters = method_type->parameters(); + if (method_parameters != NULL) + { + for (Typed_identifier_list::const_iterator p = method_parameters->begin(); + p != method_parameters->end(); + ++p) + parameters->push_back(*p); + } + + const Typed_identifier_list* method_results = method_type->results(); + Typed_identifier_list* results; + if (method_results == NULL) + results = NULL; + else + { + results = new Typed_identifier_list(); + for (Typed_identifier_list::const_iterator p = method_results->begin(); + p != method_results->end(); + ++p) + results->push_back(*p); + } + + Function_type* fntype = Type::make_function_type(NULL, parameters, results, + location); + if (method_type->is_varargs()) + fntype->set_is_varargs(); + + // We generate methods which always takes a pointer to the receiver + // as their first argument. If this is for a pointer type, we can + // simply reuse the existing function. We use an internal hack to + // get the right type. + + if (is_pointer) + { + Named_object* mno = (method->needs_stub_method() + ? method->stub_object() + : method->named_object()); + Expression* f = Expression::make_func_reference(mno, NULL, location); + f = Expression::make_cast(fntype, f, location); + Type_conversion_expression* tce = + static_cast<Type_conversion_expression*>(f); + tce->set_may_convert_function_types(); + return f; + } + + Named_object* no = gogo->start_function(Gogo::thunk_name(), fntype, false, + location); + + Named_object* vno = gogo->lookup(receiver_name, NULL); + gcc_assert(vno != NULL); + Expression* ve = Expression::make_var_reference(vno, location); + Expression* bm = Type::bind_field_or_method(gogo, nt, ve, name, location); + gcc_assert(bm != NULL && !bm->is_error_expression()); + + Expression_list* args; + if (method_parameters == NULL) + args = NULL; + else + { + args = new Expression_list(); + for (Typed_identifier_list::const_iterator p = method_parameters->begin(); + p != method_parameters->end(); + ++p) + { + vno = gogo->lookup(p->name(), NULL); + gcc_assert(vno != NULL); + args->push_back(Expression::make_var_reference(vno, location)); + } + } + + Call_expression* call = Expression::make_call(bm, args, + method_type->is_varargs(), + location); + + size_t count = call->result_count(); + Statement* s; + if (count == 0) + s = Statement::make_statement(call); + else + { + Expression_list* retvals = new Expression_list(); + if (count <= 1) + retvals->push_back(call); + else + { + for (size_t i = 0; i < count; ++i) + retvals->push_back(Expression::make_call_result(call, i)); + } + s = Statement::make_return_statement(no->func_value()->type()->results(), + retvals, location); + } + gogo->add_statement(s); + + gogo->finish_function(location); + + return Expression::make_func_reference(no, NULL, location); +} + +// Make a selector expression. + +Expression* +Expression::make_selector(Expression* left, const std::string& name, + source_location location) +{ + return new Selector_expression(left, name, location); +} + +// Implement the builtin function new. + +class Allocation_expression : public Expression +{ + public: + Allocation_expression(Type* type, source_location location) + : Expression(EXPRESSION_ALLOCATION, location), + type_(type) + { } + + protected: + int + do_traverse(Traverse* traverse) + { return Type::traverse(this->type_, traverse); } + + Type* + do_type() + { return Type::make_pointer_type(this->type_); } + + void + do_determine_type(const Type_context*) + { } + + void + do_check_types(Gogo*); + + Expression* + do_copy() + { return new Allocation_expression(this->type_, this->location()); } + + tree + do_get_tree(Translate_context*); + + private: + // The type we are allocating. + Type* type_; +}; + +// Check the type of an allocation expression. + +void +Allocation_expression::do_check_types(Gogo*) +{ + if (this->type_->function_type() != NULL) + this->report_error(_("invalid new of function type")); +} + +// Return a tree for an allocation expression. + +tree +Allocation_expression::do_get_tree(Translate_context* context) +{ + tree type_tree = this->type_->get_tree(context->gogo()); + tree size_tree = TYPE_SIZE_UNIT(type_tree); + tree space = context->gogo()->allocate_memory(this->type_, size_tree, + this->location()); + return fold_convert(build_pointer_type(type_tree), space); +} + +// Make an allocation expression. + +Expression* +Expression::make_allocation(Type* type, source_location location) +{ + return new Allocation_expression(type, location); +} + +// Implement the builtin function make. + +class Make_expression : public Expression +{ + public: + Make_expression(Type* type, Expression_list* args, source_location location) + : Expression(EXPRESSION_MAKE, location), + type_(type), args_(args) + { } + + protected: + int + do_traverse(Traverse* traverse); + + Type* + do_type() + { return this->type_; } + + void + do_determine_type(const Type_context*); + + void + do_check_types(Gogo*); + + Expression* + do_copy() + { + return new Make_expression(this->type_, this->args_->copy(), + this->location()); + } + + tree + do_get_tree(Translate_context*); + + private: + // The type we are making. + Type* type_; + // The arguments to pass to the make routine. + Expression_list* args_; +}; + +// Traversal. + +int +Make_expression::do_traverse(Traverse* traverse) +{ + if (this->args_ != NULL + && this->args_->traverse(traverse) == TRAVERSE_EXIT) + return TRAVERSE_EXIT; + if (Type::traverse(this->type_, traverse) == TRAVERSE_EXIT) + return TRAVERSE_EXIT; + return TRAVERSE_CONTINUE; +} + +// Set types of arguments. + +void +Make_expression::do_determine_type(const Type_context*) +{ + if (this->args_ != NULL) + { + Type_context context(Type::lookup_integer_type("int"), false); + for (Expression_list::const_iterator pe = this->args_->begin(); + pe != this->args_->end(); + ++pe) + (*pe)->determine_type(&context); + } +} + +// Check types for a make expression. + +void +Make_expression::do_check_types(Gogo*) +{ + if (this->type_->channel_type() == NULL + && this->type_->map_type() == NULL + && (this->type_->array_type() == NULL + || this->type_->array_type()->length() != NULL)) + this->report_error(_("invalid type for make function")); + else if (!this->type_->check_make_expression(this->args_, this->location())) + this->set_is_error(); +} + +// Return a tree for a make expression. + +tree +Make_expression::do_get_tree(Translate_context* context) +{ + return this->type_->make_expression_tree(context, this->args_, + this->location()); +} + +// Make a make expression. + +Expression* +Expression::make_make(Type* type, Expression_list* args, + source_location location) +{ + return new Make_expression(type, args, location); +} + +// Construct a struct. + +class Struct_construction_expression : public Expression +{ + public: + Struct_construction_expression(Type* type, Expression_list* vals, + source_location location) + : Expression(EXPRESSION_STRUCT_CONSTRUCTION, location), + type_(type), vals_(vals) + { } + + // Return whether this is a constant initializer. + bool + is_constant_struct() const; + + protected: + int + do_traverse(Traverse* traverse); + + Type* + do_type() + { return this->type_; } + + void + do_determine_type(const Type_context*); + + void + do_check_types(Gogo*); + + Expression* + do_copy() + { + return new Struct_construction_expression(this->type_, this->vals_->copy(), + this->location()); + } + + bool + do_is_addressable() const + { return true; } + + tree + do_get_tree(Translate_context*); + + void + do_export(Export*) const; + + private: + // The type of the struct to construct. + Type* type_; + // The list of values, in order of the fields in the struct. A NULL + // entry means that the field should be zero-initialized. + Expression_list* vals_; +}; + +// Traversal. + +int +Struct_construction_expression::do_traverse(Traverse* traverse) +{ + if (this->vals_ != NULL + && this->vals_->traverse(traverse) == TRAVERSE_EXIT) + return TRAVERSE_EXIT; + if (Type::traverse(this->type_, traverse) == TRAVERSE_EXIT) + return TRAVERSE_EXIT; + return TRAVERSE_CONTINUE; +} + +// Return whether this is a constant initializer. + +bool +Struct_construction_expression::is_constant_struct() const +{ + if (this->vals_ == NULL) + return true; + for (Expression_list::const_iterator pv = this->vals_->begin(); + pv != this->vals_->end(); + ++pv) + { + if (*pv != NULL + && !(*pv)->is_constant() + && (!(*pv)->is_composite_literal() + || (*pv)->is_nonconstant_composite_literal())) + return false; + } + + const Struct_field_list* fields = this->type_->struct_type()->fields(); + for (Struct_field_list::const_iterator pf = fields->begin(); + pf != fields->end(); + ++pf) + { + // There are no constant constructors for interfaces. + if (pf->type()->interface_type() != NULL) + return false; + } + + return true; +} + +// Final type determination. + +void +Struct_construction_expression::do_determine_type(const Type_context*) +{ + if (this->vals_ == NULL) + return; + const Struct_field_list* fields = this->type_->struct_type()->fields(); + Expression_list::const_iterator pv = this->vals_->begin(); + for (Struct_field_list::const_iterator pf = fields->begin(); + pf != fields->end(); + ++pf, ++pv) + { + if (pv == this->vals_->end()) + return; + if (*pv != NULL) + { + Type_context subcontext(pf->type(), false); + (*pv)->determine_type(&subcontext); + } + } +} + +// Check types. + +void +Struct_construction_expression::do_check_types(Gogo*) +{ + if (this->vals_ == NULL) + return; + + Struct_type* st = this->type_->struct_type(); + if (this->vals_->size() > st->field_count()) + { + this->report_error(_("too many expressions for struct")); + return; + } + + const Struct_field_list* fields = st->fields(); + Expression_list::const_iterator pv = this->vals_->begin(); + int i = 0; + for (Struct_field_list::const_iterator pf = fields->begin(); + pf != fields->end(); + ++pf, ++pv, ++i) + { + if (pv == this->vals_->end()) + { + this->report_error(_("too few expressions for struct")); + break; + } + + if (*pv == NULL) + continue; + + std::string reason; + if (!Type::are_assignable(pf->type(), (*pv)->type(), &reason)) + { + if (reason.empty()) + error_at((*pv)->location(), + "incompatible type for field %d in struct construction", + i + 1); + else + error_at((*pv)->location(), + ("incompatible type for field %d in " + "struct construction (%s)"), + i + 1, reason.c_str()); + this->set_is_error(); + } + } + gcc_assert(pv == this->vals_->end()); +} + +// Return a tree for constructing a struct. + +tree +Struct_construction_expression::do_get_tree(Translate_context* context) +{ + Gogo* gogo = context->gogo(); + + if (this->vals_ == NULL) + return this->type_->get_init_tree(gogo, false); + + tree type_tree = this->type_->get_tree(gogo); + if (type_tree == error_mark_node) + return error_mark_node; + gcc_assert(TREE_CODE(type_tree) == RECORD_TYPE); + + bool is_constant = true; + const Struct_field_list* fields = this->type_->struct_type()->fields(); + VEC(constructor_elt,gc)* elts = VEC_alloc(constructor_elt, gc, + fields->size()); + Struct_field_list::const_iterator pf = fields->begin(); + Expression_list::const_iterator pv = this->vals_->begin(); + for (tree field = TYPE_FIELDS(type_tree); + field != NULL_TREE; + field = DECL_CHAIN(field), ++pf) + { + gcc_assert(pf != fields->end()); + + tree val; + if (pv == this->vals_->end()) + val = pf->type()->get_init_tree(gogo, false); + else if (*pv == NULL) + { + val = pf->type()->get_init_tree(gogo, false); + ++pv; + } + else + { + val = Expression::convert_for_assignment(context, pf->type(), + (*pv)->type(), + (*pv)->get_tree(context), + this->location()); + ++pv; + } + + if (val == error_mark_node || TREE_TYPE(val) == error_mark_node) + return error_mark_node; + + constructor_elt* elt = VEC_quick_push(constructor_elt, elts, NULL); + elt->index = field; + elt->value = val; + if (!TREE_CONSTANT(val)) + is_constant = false; + } + gcc_assert(pf == fields->end()); + + tree ret = build_constructor(type_tree, elts); + if (is_constant) + TREE_CONSTANT(ret) = 1; + return ret; +} + +// Export a struct construction. + +void +Struct_construction_expression::do_export(Export* exp) const +{ + exp->write_c_string("convert("); + exp->write_type(this->type_); + for (Expression_list::const_iterator pv = this->vals_->begin(); + pv != this->vals_->end(); + ++pv) + { + exp->write_c_string(", "); + if (*pv != NULL) + (*pv)->export_expression(exp); + } + exp->write_c_string(")"); +} + +// Make a struct composite literal. This used by the thunk code. + +Expression* +Expression::make_struct_composite_literal(Type* type, Expression_list* vals, + source_location location) +{ + gcc_assert(type->struct_type() != NULL); + return new Struct_construction_expression(type, vals, location); +} + +// Construct an array. This class is not used directly; instead we +// use the child classes, Fixed_array_construction_expression and +// Open_array_construction_expression. + +class Array_construction_expression : public Expression +{ + protected: + Array_construction_expression(Expression_classification classification, + Type* type, Expression_list* vals, + source_location location) + : Expression(classification, location), + type_(type), vals_(vals) + { } + + public: + // Return whether this is a constant initializer. + bool + is_constant_array() const; + + // Return the number of elements. + size_t + element_count() const + { return this->vals_ == NULL ? 0 : this->vals_->size(); } + +protected: + int + do_traverse(Traverse* traverse); + + Type* + do_type() + { return this->type_; } + + void + do_determine_type(const Type_context*); + + void + do_check_types(Gogo*); + + bool + do_is_addressable() const + { return true; } + + void + do_export(Export*) const; + + // The list of values. + Expression_list* + vals() + { return this->vals_; } + + // Get a constructor tree for the array values. + tree + get_constructor_tree(Translate_context* context, tree type_tree); + + private: + // The type of the array to construct. + Type* type_; + // The list of values. + Expression_list* vals_; +}; + +// Traversal. + +int +Array_construction_expression::do_traverse(Traverse* traverse) +{ + if (this->vals_ != NULL + && this->vals_->traverse(traverse) == TRAVERSE_EXIT) + return TRAVERSE_EXIT; + if (Type::traverse(this->type_, traverse) == TRAVERSE_EXIT) + return TRAVERSE_EXIT; + return TRAVERSE_CONTINUE; +} + +// Return whether this is a constant initializer. + +bool +Array_construction_expression::is_constant_array() const +{ + if (this->vals_ == NULL) + return true; + + // There are no constant constructors for interfaces. + if (this->type_->array_type()->element_type()->interface_type() != NULL) + return false; + + for (Expression_list::const_iterator pv = this->vals_->begin(); + pv != this->vals_->end(); + ++pv) + { + if (*pv != NULL + && !(*pv)->is_constant() + && (!(*pv)->is_composite_literal() + || (*pv)->is_nonconstant_composite_literal())) + return false; + } + return true; +} + +// Final type determination. + +void +Array_construction_expression::do_determine_type(const Type_context*) +{ + if (this->vals_ == NULL) + return; + Type_context subcontext(this->type_->array_type()->element_type(), false); + for (Expression_list::const_iterator pv = this->vals_->begin(); + pv != this->vals_->end(); + ++pv) + { + if (*pv != NULL) + (*pv)->determine_type(&subcontext); + } +} + +// Check types. + +void +Array_construction_expression::do_check_types(Gogo*) +{ + if (this->vals_ == NULL) + return; + + Array_type* at = this->type_->array_type(); + int i = 0; + Type* element_type = at->element_type(); + for (Expression_list::const_iterator pv = this->vals_->begin(); + pv != this->vals_->end(); + ++pv, ++i) + { + if (*pv != NULL + && !Type::are_assignable(element_type, (*pv)->type(), NULL)) + { + error_at((*pv)->location(), + "incompatible type for element %d in composite literal", + i + 1); + this->set_is_error(); + } + } + + Expression* length = at->length(); + if (length != NULL) + { + mpz_t val; + mpz_init(val); + Type* type; + if (at->length()->integer_constant_value(true, val, &type)) + { + if (this->vals_->size() > mpz_get_ui(val)) + this->report_error(_("too many elements in composite literal")); + } + mpz_clear(val); + } +} + +// Get a constructor tree for the array values. + +tree +Array_construction_expression::get_constructor_tree(Translate_context* context, + tree type_tree) +{ + VEC(constructor_elt,gc)* values = VEC_alloc(constructor_elt, gc, + (this->vals_ == NULL + ? 0 + : this->vals_->size())); + Type* element_type = this->type_->array_type()->element_type(); + bool is_constant = true; + if (this->vals_ != NULL) + { + size_t i = 0; + for (Expression_list::const_iterator pv = this->vals_->begin(); + pv != this->vals_->end(); + ++pv, ++i) + { + constructor_elt* elt = VEC_quick_push(constructor_elt, values, NULL); + elt->index = size_int(i); + if (*pv == NULL) + elt->value = element_type->get_init_tree(context->gogo(), false); + else + { + tree value_tree = (*pv)->get_tree(context); + elt->value = Expression::convert_for_assignment(context, + element_type, + (*pv)->type(), + value_tree, + this->location()); + } + if (elt->value == error_mark_node) + return error_mark_node; + if (!TREE_CONSTANT(elt->value)) + is_constant = false; + } + } + + tree ret = build_constructor(type_tree, values); + if (is_constant) + TREE_CONSTANT(ret) = 1; + return ret; +} + +// Export an array construction. + +void +Array_construction_expression::do_export(Export* exp) const +{ + exp->write_c_string("convert("); + exp->write_type(this->type_); + if (this->vals_ != NULL) + { + for (Expression_list::const_iterator pv = this->vals_->begin(); + pv != this->vals_->end(); + ++pv) + { + exp->write_c_string(", "); + if (*pv != NULL) + (*pv)->export_expression(exp); + } + } + exp->write_c_string(")"); +} + +// Construct a fixed array. + +class Fixed_array_construction_expression : + public Array_construction_expression +{ + public: + Fixed_array_construction_expression(Type* type, Expression_list* vals, + source_location location) + : Array_construction_expression(EXPRESSION_FIXED_ARRAY_CONSTRUCTION, + type, vals, location) + { + gcc_assert(type->array_type() != NULL + && type->array_type()->length() != NULL); + } + + protected: + Expression* + do_copy() + { + return new Fixed_array_construction_expression(this->type(), + (this->vals() == NULL + ? NULL + : this->vals()->copy()), + this->location()); + } + + tree + do_get_tree(Translate_context*); +}; + +// Return a tree for constructing a fixed array. + +tree +Fixed_array_construction_expression::do_get_tree(Translate_context* context) +{ + return this->get_constructor_tree(context, + this->type()->get_tree(context->gogo())); +} + +// Construct an open array. + +class Open_array_construction_expression : public Array_construction_expression +{ + public: + Open_array_construction_expression(Type* type, Expression_list* vals, + source_location location) + : Array_construction_expression(EXPRESSION_OPEN_ARRAY_CONSTRUCTION, + type, vals, location) + { + gcc_assert(type->array_type() != NULL + && type->array_type()->length() == NULL); + } + + protected: + // Note that taking the address of an open array literal is invalid. + + Expression* + do_copy() + { + return new Open_array_construction_expression(this->type(), + (this->vals() == NULL + ? NULL + : this->vals()->copy()), + this->location()); + } + + tree + do_get_tree(Translate_context*); +}; + +// Return a tree for constructing an open array. + +tree +Open_array_construction_expression::do_get_tree(Translate_context* context) +{ + Type* element_type = this->type()->array_type()->element_type(); + tree element_type_tree = element_type->get_tree(context->gogo()); + tree values; + tree length_tree; + if (this->vals() == NULL || this->vals()->empty()) + { + // We need to create a unique value. + tree max = size_int(0); + tree constructor_type = build_array_type(element_type_tree, + build_index_type(max)); + if (constructor_type == error_mark_node) + return error_mark_node; + VEC(constructor_elt,gc)* vec = VEC_alloc(constructor_elt, gc, 1); + constructor_elt* elt = VEC_quick_push(constructor_elt, vec, NULL); + elt->index = size_int(0); + elt->value = element_type->get_init_tree(context->gogo(), false); + values = build_constructor(constructor_type, vec); + if (TREE_CONSTANT(elt->value)) + TREE_CONSTANT(values) = 1; + length_tree = size_int(0); + } + else + { + tree max = size_int(this->vals()->size() - 1); + tree constructor_type = build_array_type(element_type_tree, + build_index_type(max)); + if (constructor_type == error_mark_node) + return error_mark_node; + values = this->get_constructor_tree(context, constructor_type); + length_tree = size_int(this->vals()->size()); + } + + if (values == error_mark_node) + return error_mark_node; + + bool is_constant_initializer = TREE_CONSTANT(values); + bool is_in_function = context->function() != NULL; + + if (is_constant_initializer) + { + tree tmp = build_decl(this->location(), VAR_DECL, + create_tmp_var_name("C"), TREE_TYPE(values)); + DECL_EXTERNAL(tmp) = 0; + TREE_PUBLIC(tmp) = 0; + TREE_STATIC(tmp) = 1; + DECL_ARTIFICIAL(tmp) = 1; + if (is_in_function) + { + // If this is not a function, we will only initialize the + // value once, so we can use this directly rather than + // copying it. In that case we can't make it read-only, + // because the program is permitted to change it. + TREE_READONLY(tmp) = 1; + TREE_CONSTANT(tmp) = 1; + } + DECL_INITIAL(tmp) = values; + rest_of_decl_compilation(tmp, 1, 0); + values = tmp; + } + + tree space; + tree set; + if (!is_in_function && is_constant_initializer) + { + // Outside of a function, we know the initializer will only run + // once. + space = build_fold_addr_expr(values); + set = NULL_TREE; + } + else + { + tree memsize = TYPE_SIZE_UNIT(TREE_TYPE(values)); + space = context->gogo()->allocate_memory(element_type, memsize, + this->location()); + space = save_expr(space); + + tree s = fold_convert(build_pointer_type(TREE_TYPE(values)), space); + tree ref = build_fold_indirect_ref_loc(this->location(), s); + TREE_THIS_NOTRAP(ref) = 1; + set = build2(MODIFY_EXPR, void_type_node, ref, values); + } + + // Build a constructor for the open array. + + tree type_tree = this->type()->get_tree(context->gogo()); + gcc_assert(TREE_CODE(type_tree) == RECORD_TYPE); + + VEC(constructor_elt,gc)* init = VEC_alloc(constructor_elt, gc, 3); + + constructor_elt* elt = VEC_quick_push(constructor_elt, init, NULL); + tree field = TYPE_FIELDS(type_tree); + gcc_assert(strcmp(IDENTIFIER_POINTER(DECL_NAME(field)), "__values") == 0); + elt->index = field; + elt->value = fold_convert(TREE_TYPE(field), space); + + elt = VEC_quick_push(constructor_elt, init, NULL); + field = DECL_CHAIN(field); + gcc_assert(strcmp(IDENTIFIER_POINTER(DECL_NAME(field)), "__count") == 0); + elt->index = field; + elt->value = fold_convert(TREE_TYPE(field), length_tree); + + elt = VEC_quick_push(constructor_elt, init, NULL); + field = DECL_CHAIN(field); + gcc_assert(strcmp(IDENTIFIER_POINTER(DECL_NAME(field)),"__capacity") == 0); + elt->index = field; + elt->value = fold_convert(TREE_TYPE(field), length_tree); + + tree constructor = build_constructor(type_tree, init); + if (!is_in_function && is_constant_initializer) + TREE_CONSTANT(constructor) = 1; + + if (set == NULL_TREE) + return constructor; + else + return build2(COMPOUND_EXPR, type_tree, set, constructor); +} + +// Make a slice composite literal. This is used by the type +// descriptor code. + +Expression* +Expression::make_slice_composite_literal(Type* type, Expression_list* vals, + source_location location) +{ + gcc_assert(type->is_open_array_type()); + return new Open_array_construction_expression(type, vals, location); +} + +// Construct a map. + +class Map_construction_expression : public Expression +{ + public: + Map_construction_expression(Type* type, Expression_list* vals, + source_location location) + : Expression(EXPRESSION_MAP_CONSTRUCTION, location), + type_(type), vals_(vals) + { gcc_assert(vals == NULL || vals->size() % 2 == 0); } + + protected: + int + do_traverse(Traverse* traverse); + + Type* + do_type() + { return this->type_; } + + void + do_determine_type(const Type_context*); + + void + do_check_types(Gogo*); + + Expression* + do_copy() + { + return new Map_construction_expression(this->type_, this->vals_->copy(), + this->location()); + } + + tree + do_get_tree(Translate_context*); + + void + do_export(Export*) const; + + private: + // The type of the map to construct. + Type* type_; + // The list of values. + Expression_list* vals_; +}; + +// Traversal. + +int +Map_construction_expression::do_traverse(Traverse* traverse) +{ + if (this->vals_ != NULL + && this->vals_->traverse(traverse) == TRAVERSE_EXIT) + return TRAVERSE_EXIT; + if (Type::traverse(this->type_, traverse) == TRAVERSE_EXIT) + return TRAVERSE_EXIT; + return TRAVERSE_CONTINUE; +} + +// Final type determination. + +void +Map_construction_expression::do_determine_type(const Type_context*) +{ + if (this->vals_ == NULL) + return; + + Map_type* mt = this->type_->map_type(); + Type_context key_context(mt->key_type(), false); + Type_context val_context(mt->val_type(), false); + for (Expression_list::const_iterator pv = this->vals_->begin(); + pv != this->vals_->end(); + ++pv) + { + (*pv)->determine_type(&key_context); + ++pv; + (*pv)->determine_type(&val_context); + } +} + +// Check types. + +void +Map_construction_expression::do_check_types(Gogo*) +{ + if (this->vals_ == NULL) + return; + + Map_type* mt = this->type_->map_type(); + int i = 0; + Type* key_type = mt->key_type(); + Type* val_type = mt->val_type(); + for (Expression_list::const_iterator pv = this->vals_->begin(); + pv != this->vals_->end(); + ++pv, ++i) + { + if (!Type::are_assignable(key_type, (*pv)->type(), NULL)) + { + error_at((*pv)->location(), + "incompatible type for element %d key in map construction", + i + 1); + this->set_is_error(); + } + ++pv; + if (!Type::are_assignable(val_type, (*pv)->type(), NULL)) + { + error_at((*pv)->location(), + ("incompatible type for element %d value " + "in map construction"), + i + 1); + this->set_is_error(); + } + } +} + +// Return a tree for constructing a map. + +tree +Map_construction_expression::do_get_tree(Translate_context* context) +{ + Gogo* gogo = context->gogo(); + source_location loc = this->location(); + + Map_type* mt = this->type_->map_type(); + + // Build a struct to hold the key and value. + tree struct_type = make_node(RECORD_TYPE); + + Type* key_type = mt->key_type(); + tree id = get_identifier("__key"); + tree key_field = build_decl(loc, FIELD_DECL, id, key_type->get_tree(gogo)); + DECL_CONTEXT(key_field) = struct_type; + TYPE_FIELDS(struct_type) = key_field; + + Type* val_type = mt->val_type(); + id = get_identifier("__val"); + tree val_field = build_decl(loc, FIELD_DECL, id, val_type->get_tree(gogo)); + DECL_CONTEXT(val_field) = struct_type; + DECL_CHAIN(key_field) = val_field; + + layout_type(struct_type); + + bool is_constant = true; + size_t i = 0; + tree valaddr; + tree make_tmp; + + if (this->vals_ == NULL || this->vals_->empty()) + { + valaddr = null_pointer_node; + make_tmp = NULL_TREE; + } + else + { + VEC(constructor_elt,gc)* values = VEC_alloc(constructor_elt, gc, + this->vals_->size() / 2); + + for (Expression_list::const_iterator pv = this->vals_->begin(); + pv != this->vals_->end(); + ++pv, ++i) + { + bool one_is_constant = true; + + VEC(constructor_elt,gc)* one = VEC_alloc(constructor_elt, gc, 2); + + constructor_elt* elt = VEC_quick_push(constructor_elt, one, NULL); + elt->index = key_field; + tree val_tree = (*pv)->get_tree(context); + elt->value = Expression::convert_for_assignment(context, key_type, + (*pv)->type(), + val_tree, loc); + if (elt->value == error_mark_node) + return error_mark_node; + if (!TREE_CONSTANT(elt->value)) + one_is_constant = false; + + ++pv; + + elt = VEC_quick_push(constructor_elt, one, NULL); + elt->index = val_field; + val_tree = (*pv)->get_tree(context); + elt->value = Expression::convert_for_assignment(context, val_type, + (*pv)->type(), + val_tree, loc); + if (elt->value == error_mark_node) + return error_mark_node; + if (!TREE_CONSTANT(elt->value)) + one_is_constant = false; + + elt = VEC_quick_push(constructor_elt, values, NULL); + elt->index = size_int(i); + elt->value = build_constructor(struct_type, one); + if (one_is_constant) + TREE_CONSTANT(elt->value) = 1; + else + is_constant = false; + } + + tree index_type = build_index_type(size_int(i - 1)); + tree array_type = build_array_type(struct_type, index_type); + tree init = build_constructor(array_type, values); + if (is_constant) + TREE_CONSTANT(init) = 1; + tree tmp; + if (current_function_decl != NULL) + { + tmp = create_tmp_var(array_type, get_name(array_type)); + DECL_INITIAL(tmp) = init; + make_tmp = fold_build1_loc(loc, DECL_EXPR, void_type_node, tmp); + TREE_ADDRESSABLE(tmp) = 1; + } + else + { + tmp = build_decl(loc, VAR_DECL, create_tmp_var_name("M"), array_type); + DECL_EXTERNAL(tmp) = 0; + TREE_PUBLIC(tmp) = 0; + TREE_STATIC(tmp) = 1; + DECL_ARTIFICIAL(tmp) = 1; + if (!TREE_CONSTANT(init)) + make_tmp = fold_build2_loc(loc, INIT_EXPR, void_type_node, tmp, + init); + else + { + TREE_READONLY(tmp) = 1; + TREE_CONSTANT(tmp) = 1; + DECL_INITIAL(tmp) = init; + make_tmp = NULL_TREE; + } + rest_of_decl_compilation(tmp, 1, 0); + } + + valaddr = build_fold_addr_expr(tmp); + } + + tree descriptor = gogo->map_descriptor(mt); + + tree type_tree = this->type_->get_tree(gogo); + + static tree construct_map_fndecl; + tree call = Gogo::call_builtin(&construct_map_fndecl, + loc, + "__go_construct_map", + 6, + type_tree, + TREE_TYPE(descriptor), + descriptor, + sizetype, + size_int(i), + sizetype, + TYPE_SIZE_UNIT(struct_type), + sizetype, + byte_position(val_field), + sizetype, + TYPE_SIZE_UNIT(TREE_TYPE(val_field)), + const_ptr_type_node, + fold_convert(const_ptr_type_node, valaddr)); + + tree ret; + if (make_tmp == NULL) + ret = call; + else + ret = fold_build2_loc(loc, COMPOUND_EXPR, type_tree, make_tmp, call); + return ret; +} + +// Export an array construction. + +void +Map_construction_expression::do_export(Export* exp) const +{ + exp->write_c_string("convert("); + exp->write_type(this->type_); + for (Expression_list::const_iterator pv = this->vals_->begin(); + pv != this->vals_->end(); + ++pv) + { + exp->write_c_string(", "); + (*pv)->export_expression(exp); + } + exp->write_c_string(")"); +} + +// A general composite literal. This is lowered to a type specific +// version. + +class Composite_literal_expression : public Parser_expression +{ + public: + Composite_literal_expression(Type* type, int depth, bool has_keys, + Expression_list* vals, source_location location) + : Parser_expression(EXPRESSION_COMPOSITE_LITERAL, location), + type_(type), depth_(depth), vals_(vals), has_keys_(has_keys) + { } + + protected: + int + do_traverse(Traverse* traverse); + + Expression* + do_lower(Gogo*, Named_object*, int); + + Expression* + do_copy() + { + return new Composite_literal_expression(this->type_, this->depth_, + this->has_keys_, + (this->vals_ == NULL + ? NULL + : this->vals_->copy()), + this->location()); + } + + private: + Expression* + lower_struct(Type*); + + Expression* + lower_array(Type*); + + Expression* + make_array(Type*, Expression_list*); + + Expression* + lower_map(Type*); + + // The type of the composite literal. + Type* type_; + // The depth within a list of composite literals within a composite + // literal, when the type is omitted. + int depth_; + // The values to put in the composite literal. + Expression_list* vals_; + // If this is true, then VALS_ is a list of pairs: a key and a + // value. In an array initializer, a missing key will be NULL. + bool has_keys_; +}; + +// Traversal. + +int +Composite_literal_expression::do_traverse(Traverse* traverse) +{ + if (this->vals_ != NULL + && this->vals_->traverse(traverse) == TRAVERSE_EXIT) + return TRAVERSE_EXIT; + return Type::traverse(this->type_, traverse); +} + +// Lower a generic composite literal into a specific version based on +// the type. + +Expression* +Composite_literal_expression::do_lower(Gogo*, Named_object*, int) +{ + Type* type = this->type_; + + for (int depth = this->depth_; depth > 0; --depth) + { + if (type->array_type() != NULL) + type = type->array_type()->element_type(); + else if (type->map_type() != NULL) + type = type->map_type()->val_type(); + else + { + if (!type->is_error_type()) + error_at(this->location(), + ("may only omit types within composite literals " + "of slice, array, or map type")); + return Expression::make_error(this->location()); + } + } + + if (type->is_error_type()) + return Expression::make_error(this->location()); + else if (type->struct_type() != NULL) + return this->lower_struct(type); + else if (type->array_type() != NULL) + return this->lower_array(type); + else if (type->map_type() != NULL) + return this->lower_map(type); + else + { + error_at(this->location(), + ("expected struct, slice, array, or map type " + "for composite literal")); + return Expression::make_error(this->location()); + } +} + +// Lower a struct composite literal. + +Expression* +Composite_literal_expression::lower_struct(Type* type) +{ + source_location location = this->location(); + Struct_type* st = type->struct_type(); + if (this->vals_ == NULL || !this->has_keys_) + return new Struct_construction_expression(type, this->vals_, location); + + size_t field_count = st->field_count(); + std::vector<Expression*> vals(field_count); + Expression_list::const_iterator p = this->vals_->begin(); + while (p != this->vals_->end()) + { + Expression* name_expr = *p; + + ++p; + gcc_assert(p != this->vals_->end()); + Expression* val = *p; + + ++p; + + if (name_expr == NULL) + { + error_at(val->location(), "mixture of field and value initializers"); + return Expression::make_error(location); + } + + bool bad_key = false; + std::string name; + switch (name_expr->classification()) + { + case EXPRESSION_UNKNOWN_REFERENCE: + name = name_expr->unknown_expression()->name(); + break; + + case EXPRESSION_CONST_REFERENCE: + name = static_cast<Const_expression*>(name_expr)->name(); + break; + + case EXPRESSION_TYPE: + { + Type* t = name_expr->type(); + Named_type* nt = t->named_type(); + if (nt == NULL) + bad_key = true; + else + name = nt->name(); + } + break; + + case EXPRESSION_VAR_REFERENCE: + name = name_expr->var_expression()->name(); + break; + + case EXPRESSION_FUNC_REFERENCE: + name = name_expr->func_expression()->name(); + break; + + case EXPRESSION_UNARY: + // If there is a local variable around with the same name as + // the field, and this occurs in the closure, then the + // parser may turn the field reference into an indirection + // through the closure. FIXME: This is a mess. + { + bad_key = true; + Unary_expression* ue = static_cast<Unary_expression*>(name_expr); + if (ue->op() == OPERATOR_MULT) + { + Field_reference_expression* fre = + ue->operand()->field_reference_expression(); + if (fre != NULL) + { + Struct_type* st = + fre->expr()->type()->deref()->struct_type(); + if (st != NULL) + { + const Struct_field* sf = st->field(fre->field_index()); + name = sf->field_name(); + char buf[20]; + snprintf(buf, sizeof buf, "%u", fre->field_index()); + size_t buflen = strlen(buf); + if (name.compare(name.length() - buflen, buflen, buf) + == 0) + { + name = name.substr(0, name.length() - buflen); + bad_key = false; + } + } + } + } + } + break; + + default: + bad_key = true; + break; + } + if (bad_key) + { + error_at(name_expr->location(), "expected struct field name"); + return Expression::make_error(location); + } + + unsigned int index; + const Struct_field* sf = st->find_local_field(name, &index); + if (sf == NULL) + { + error_at(name_expr->location(), "unknown field %qs in %qs", + Gogo::message_name(name).c_str(), + (type->named_type() != NULL + ? type->named_type()->message_name().c_str() + : "unnamed struct")); + return Expression::make_error(location); + } + if (vals[index] != NULL) + { + error_at(name_expr->location(), + "duplicate value for field %qs in %qs", + Gogo::message_name(name).c_str(), + (type->named_type() != NULL + ? type->named_type()->message_name().c_str() + : "unnamed struct")); + return Expression::make_error(location); + } + + vals[index] = val; + } + + Expression_list* list = new Expression_list; + list->reserve(field_count); + for (size_t i = 0; i < field_count; ++i) + list->push_back(vals[i]); + + return new Struct_construction_expression(type, list, location); +} + +// Lower an array composite literal. + +Expression* +Composite_literal_expression::lower_array(Type* type) +{ + source_location location = this->location(); + if (this->vals_ == NULL || !this->has_keys_) + return this->make_array(type, this->vals_); + + std::vector<Expression*> vals; + vals.reserve(this->vals_->size()); + unsigned long index = 0; + Expression_list::const_iterator p = this->vals_->begin(); + while (p != this->vals_->end()) + { + Expression* index_expr = *p; + + ++p; + gcc_assert(p != this->vals_->end()); + Expression* val = *p; + + ++p; + + if (index_expr != NULL) + { + mpz_t ival; + mpz_init(ival); + Type* dummy; + if (!index_expr->integer_constant_value(true, ival, &dummy)) + { + mpz_clear(ival); + error_at(index_expr->location(), + "index expression is not integer constant"); + return Expression::make_error(location); + } + if (mpz_sgn(ival) < 0) + { + mpz_clear(ival); + error_at(index_expr->location(), "index expression is negative"); + return Expression::make_error(location); + } + index = mpz_get_ui(ival); + if (mpz_cmp_ui(ival, index) != 0) + { + mpz_clear(ival); + error_at(index_expr->location(), "index value overflow"); + return Expression::make_error(location); + } + mpz_clear(ival); + } + + if (index == vals.size()) + vals.push_back(val); + else + { + if (index > vals.size()) + { + vals.reserve(index + 32); + vals.resize(index + 1, static_cast<Expression*>(NULL)); + } + if (vals[index] != NULL) + { + error_at((index_expr != NULL + ? index_expr->location() + : val->location()), + "duplicate value for index %lu", + index); + return Expression::make_error(location); + } + vals[index] = val; + } + + ++index; + } + + size_t size = vals.size(); + Expression_list* list = new Expression_list; + list->reserve(size); + for (size_t i = 0; i < size; ++i) + list->push_back(vals[i]); + + return this->make_array(type, list); +} + +// Actually build the array composite literal. This handles +// [...]{...}. + +Expression* +Composite_literal_expression::make_array(Type* type, Expression_list* vals) +{ + source_location location = this->location(); + Array_type* at = type->array_type(); + if (at->length() != NULL && at->length()->is_nil_expression()) + { + size_t size = vals == NULL ? 0 : vals->size(); + mpz_t vlen; + mpz_init_set_ui(vlen, size); + Expression* elen = Expression::make_integer(&vlen, NULL, location); + mpz_clear(vlen); + at = Type::make_array_type(at->element_type(), elen); + type = at; + } + if (at->length() != NULL) + return new Fixed_array_construction_expression(type, vals, location); + else + return new Open_array_construction_expression(type, vals, location); +} + +// Lower a map composite literal. + +Expression* +Composite_literal_expression::lower_map(Type* type) +{ + source_location location = this->location(); + if (this->vals_ != NULL) + { + if (!this->has_keys_) + { + error_at(location, "map composite literal must have keys"); + return Expression::make_error(location); + } + + for (Expression_list::const_iterator p = this->vals_->begin(); + p != this->vals_->end(); + p += 2) + { + if (*p == NULL) + { + ++p; + error_at((*p)->location(), + "map composite literal must have keys for every value"); + return Expression::make_error(location); + } + } + } + + return new Map_construction_expression(type, this->vals_, location); +} + +// Make a composite literal expression. + +Expression* +Expression::make_composite_literal(Type* type, int depth, bool has_keys, + Expression_list* vals, + source_location location) +{ + return new Composite_literal_expression(type, depth, has_keys, vals, + location); +} + +// Return whether this expression is a composite literal. + +bool +Expression::is_composite_literal() const +{ + switch (this->classification_) + { + case EXPRESSION_COMPOSITE_LITERAL: + case EXPRESSION_STRUCT_CONSTRUCTION: + case EXPRESSION_FIXED_ARRAY_CONSTRUCTION: + case EXPRESSION_OPEN_ARRAY_CONSTRUCTION: + case EXPRESSION_MAP_CONSTRUCTION: + return true; + default: + return false; + } +} + +// Return whether this expression is a composite literal which is not +// constant. + +bool +Expression::is_nonconstant_composite_literal() const +{ + switch (this->classification_) + { + case EXPRESSION_STRUCT_CONSTRUCTION: + { + const Struct_construction_expression *psce = + static_cast<const Struct_construction_expression*>(this); + return !psce->is_constant_struct(); + } + case EXPRESSION_FIXED_ARRAY_CONSTRUCTION: + { + const Fixed_array_construction_expression *pace = + static_cast<const Fixed_array_construction_expression*>(this); + return !pace->is_constant_array(); + } + case EXPRESSION_OPEN_ARRAY_CONSTRUCTION: + { + const Open_array_construction_expression *pace = + static_cast<const Open_array_construction_expression*>(this); + return !pace->is_constant_array(); + } + case EXPRESSION_MAP_CONSTRUCTION: + return true; + default: + return false; + } +} + +// Return true if this is a reference to a local variable. + +bool +Expression::is_local_variable() const +{ + const Var_expression* ve = this->var_expression(); + if (ve == NULL) + return false; + const Named_object* no = ve->named_object(); + return (no->is_result_variable() + || (no->is_variable() && !no->var_value()->is_global())); +} + +// Class Type_guard_expression. + +// Traversal. + +int +Type_guard_expression::do_traverse(Traverse* traverse) +{ + if (Expression::traverse(&this->expr_, traverse) == TRAVERSE_EXIT + || Type::traverse(this->type_, traverse) == TRAVERSE_EXIT) + return TRAVERSE_EXIT; + return TRAVERSE_CONTINUE; +} + +// Check types of a type guard expression. The expression must have +// an interface type, but the actual type conversion is checked at run +// time. + +void +Type_guard_expression::do_check_types(Gogo*) +{ + // 6g permits using a type guard with unsafe.pointer; we are + // compatible. + Type* expr_type = this->expr_->type(); + if (expr_type->is_unsafe_pointer_type()) + { + if (this->type_->points_to() == NULL + && (this->type_->integer_type() == NULL + || (this->type_->forwarded() + != Type::lookup_integer_type("uintptr")))) + this->report_error(_("invalid unsafe.Pointer conversion")); + } + else if (this->type_->is_unsafe_pointer_type()) + { + if (expr_type->points_to() == NULL + && (expr_type->integer_type() == NULL + || (expr_type->forwarded() + != Type::lookup_integer_type("uintptr")))) + this->report_error(_("invalid unsafe.Pointer conversion")); + } + else if (expr_type->interface_type() == NULL) + this->report_error(_("type assertion only valid for interface types")); + else if (this->type_->interface_type() == NULL) + { + std::string reason; + if (!expr_type->interface_type()->implements_interface(this->type_, + &reason)) + { + if (reason.empty()) + this->report_error(_("impossible type assertion: " + "type does not implement interface")); + else + { + error_at(this->location(), + ("impossible type assertion: " + "type does not implement interface (%s)"), + reason.c_str()); + this->set_is_error(); + } + } + } +} + +// Return a tree for a type guard expression. + +tree +Type_guard_expression::do_get_tree(Translate_context* context) +{ + Gogo* gogo = context->gogo(); + tree expr_tree = this->expr_->get_tree(context); + if (expr_tree == error_mark_node) + return error_mark_node; + Type* expr_type = this->expr_->type(); + if ((this->type_->is_unsafe_pointer_type() + && (expr_type->points_to() != NULL + || expr_type->integer_type() != NULL)) + || (expr_type->is_unsafe_pointer_type() + && this->type_->points_to() != NULL)) + return convert_to_pointer(this->type_->get_tree(gogo), expr_tree); + else if (expr_type->is_unsafe_pointer_type() + && this->type_->integer_type() != NULL) + return convert_to_integer(this->type_->get_tree(gogo), expr_tree); + else if (this->type_->interface_type() != NULL) + return Expression::convert_interface_to_interface(context, this->type_, + this->expr_->type(), + expr_tree, true, + this->location()); + else + return Expression::convert_for_assignment(context, this->type_, + this->expr_->type(), expr_tree, + this->location()); +} + +// Make a type guard expression. + +Expression* +Expression::make_type_guard(Expression* expr, Type* type, + source_location location) +{ + return new Type_guard_expression(expr, type, location); +} + +// Class Heap_composite_expression. + +// When you take the address of a composite literal, it is allocated +// on the heap. This class implements that. + +class Heap_composite_expression : public Expression +{ + public: + Heap_composite_expression(Expression* expr, source_location location) + : Expression(EXPRESSION_HEAP_COMPOSITE, location), + expr_(expr) + { } + + protected: + int + do_traverse(Traverse* traverse) + { return Expression::traverse(&this->expr_, traverse); } + + Type* + do_type() + { return Type::make_pointer_type(this->expr_->type()); } + + void + do_determine_type(const Type_context*) + { this->expr_->determine_type_no_context(); } + + Expression* + do_copy() + { + return Expression::make_heap_composite(this->expr_->copy(), + this->location()); + } + + tree + do_get_tree(Translate_context*); + + // We only export global objects, and the parser does not generate + // this in global scope. + void + do_export(Export*) const + { gcc_unreachable(); } + + private: + // The composite literal which is being put on the heap. + Expression* expr_; +}; + +// Return a tree which allocates a composite literal on the heap. + +tree +Heap_composite_expression::do_get_tree(Translate_context* context) +{ + tree expr_tree = this->expr_->get_tree(context); + if (expr_tree == error_mark_node) + return error_mark_node; + tree expr_size = TYPE_SIZE_UNIT(TREE_TYPE(expr_tree)); + gcc_assert(TREE_CODE(expr_size) == INTEGER_CST); + tree space = context->gogo()->allocate_memory(this->expr_->type(), + expr_size, this->location()); + space = fold_convert(build_pointer_type(TREE_TYPE(expr_tree)), space); + space = save_expr(space); + tree ref = build_fold_indirect_ref_loc(this->location(), space); + TREE_THIS_NOTRAP(ref) = 1; + tree ret = build2(COMPOUND_EXPR, TREE_TYPE(space), + build2(MODIFY_EXPR, void_type_node, ref, expr_tree), + space); + SET_EXPR_LOCATION(ret, this->location()); + return ret; +} + +// Allocate a composite literal on the heap. + +Expression* +Expression::make_heap_composite(Expression* expr, source_location location) +{ + return new Heap_composite_expression(expr, location); +} + +// Class Receive_expression. + +// Return the type of a receive expression. + +Type* +Receive_expression::do_type() +{ + Channel_type* channel_type = this->channel_->type()->channel_type(); + if (channel_type == NULL) + return Type::make_error_type(); + return channel_type->element_type(); +} + +// Check types for a receive expression. + +void +Receive_expression::do_check_types(Gogo*) +{ + Type* type = this->channel_->type(); + if (type->is_error_type()) + { + this->set_is_error(); + return; + } + if (type->channel_type() == NULL) + { + this->report_error(_("expected channel")); + return; + } + if (!type->channel_type()->may_receive()) + { + this->report_error(_("invalid receive on send-only channel")); + return; + } +} + +// Get a tree for a receive expression. + +tree +Receive_expression::do_get_tree(Translate_context* context) +{ + Channel_type* channel_type = this->channel_->type()->channel_type(); + gcc_assert(channel_type != NULL); + Type* element_type = channel_type->element_type(); + tree element_type_tree = element_type->get_tree(context->gogo()); + + tree channel = this->channel_->get_tree(context); + if (element_type_tree == error_mark_node || channel == error_mark_node) + return error_mark_node; + + return Gogo::receive_from_channel(element_type_tree, channel, + this->for_select_, this->location()); +} + +// Make a receive expression. + +Receive_expression* +Expression::make_receive(Expression* channel, source_location location) +{ + return new Receive_expression(channel, location); +} + +// Class Send_expression. + +// Traversal. + +int +Send_expression::do_traverse(Traverse* traverse) +{ + if (Expression::traverse(&this->channel_, traverse) == TRAVERSE_EXIT) + return TRAVERSE_EXIT; + return Expression::traverse(&this->val_, traverse); +} + +// Get the type. + +Type* +Send_expression::do_type() +{ + return Type::lookup_bool_type(); +} + +// Set types. + +void +Send_expression::do_determine_type(const Type_context*) +{ + this->channel_->determine_type_no_context(); + + Type* type = this->channel_->type(); + Type_context subcontext; + if (type->channel_type() != NULL) + subcontext.type = type->channel_type()->element_type(); + this->val_->determine_type(&subcontext); +} + +// Check types. + +void +Send_expression::do_check_types(Gogo*) +{ + Type* type = this->channel_->type(); + if (type->is_error_type()) + { + this->set_is_error(); + return; + } + Channel_type* channel_type = type->channel_type(); + if (channel_type == NULL) + { + error_at(this->location(), "left operand of %<<-%> must be channel"); + this->set_is_error(); + return; + } + Type* element_type = channel_type->element_type(); + if (element_type != NULL + && !Type::are_assignable(element_type, this->val_->type(), NULL)) + { + this->report_error(_("incompatible types in send")); + return; + } + if (!channel_type->may_send()) + { + this->report_error(_("invalid send on receive-only channel")); + return; + } +} + +// Get a tree for a send expression. + +tree +Send_expression::do_get_tree(Translate_context* context) +{ + tree channel = this->channel_->get_tree(context); + tree val = this->val_->get_tree(context); + if (channel == error_mark_node || val == error_mark_node) + return error_mark_node; + Channel_type* channel_type = this->channel_->type()->channel_type(); + val = Expression::convert_for_assignment(context, + channel_type->element_type(), + this->val_->type(), + val, + this->location()); + return Gogo::send_on_channel(channel, val, this->is_value_discarded_, + this->for_select_, this->location()); +} + +// Make a send expression + +Send_expression* +Expression::make_send(Expression* channel, Expression* val, + source_location location) +{ + return new Send_expression(channel, val, location); +} + +// An expression which evaluates to a pointer to the type descriptor +// of a type. + +class Type_descriptor_expression : public Expression +{ + public: + Type_descriptor_expression(Type* type, source_location location) + : Expression(EXPRESSION_TYPE_DESCRIPTOR, location), + type_(type) + { } + + protected: + Type* + do_type() + { return Type::make_type_descriptor_ptr_type(); } + + void + do_determine_type(const Type_context*) + { } + + Expression* + do_copy() + { return this; } + + tree + do_get_tree(Translate_context* context) + { return this->type_->type_descriptor_pointer(context->gogo()); } + + private: + // The type for which this is the descriptor. + Type* type_; +}; + +// Make a type descriptor expression. + +Expression* +Expression::make_type_descriptor(Type* type, source_location location) +{ + return new Type_descriptor_expression(type, location); +} + +// An expression which evaluates to some characteristic of a type. +// This is only used to initialize fields of a type descriptor. Using +// a new expression class is slightly inefficient but gives us a good +// separation between the frontend and the middle-end with regard to +// how types are laid out. + +class Type_info_expression : public Expression +{ + public: + Type_info_expression(Type* type, Type_info type_info) + : Expression(EXPRESSION_TYPE_INFO, BUILTINS_LOCATION), + type_(type), type_info_(type_info) + { } + + protected: + Type* + do_type(); + + void + do_determine_type(const Type_context*) + { } + + Expression* + do_copy() + { return this; } + + tree + do_get_tree(Translate_context* context); + + private: + // The type for which we are getting information. + Type* type_; + // What information we want. + Type_info type_info_; +}; + +// The type is chosen to match what the type descriptor struct +// expects. + +Type* +Type_info_expression::do_type() +{ + switch (this->type_info_) + { + case TYPE_INFO_SIZE: + return Type::lookup_integer_type("uintptr"); + case TYPE_INFO_ALIGNMENT: + case TYPE_INFO_FIELD_ALIGNMENT: + return Type::lookup_integer_type("uint8"); + default: + gcc_unreachable(); + } +} + +// Return type information in GENERIC. + +tree +Type_info_expression::do_get_tree(Translate_context* context) +{ + tree type_tree = this->type_->get_tree(context->gogo()); + if (type_tree == error_mark_node) + return error_mark_node; + + tree val_type_tree = this->type()->get_tree(context->gogo()); + gcc_assert(val_type_tree != error_mark_node); + + if (this->type_info_ == TYPE_INFO_SIZE) + return fold_convert_loc(BUILTINS_LOCATION, val_type_tree, + TYPE_SIZE_UNIT(type_tree)); + else + { + unsigned HOST_WIDE_INT val; + if (this->type_info_ == TYPE_INFO_ALIGNMENT) + val = TYPE_ALIGN_UNIT(type_tree); + else + { + gcc_assert(this->type_info_ == TYPE_INFO_FIELD_ALIGNMENT); + val = TYPE_ALIGN(type_tree); +#ifdef BIGGEST_FIELD_ALIGMENT + if (val > BIGGEST_FIELD_ALIGNMENT) + val = BIGGEST_FIELD_ALIGNMENT; +#endif +#ifdef ADJUST_FIELD_ALIGN + { + tree f = build_decl(UNKNOWN_LOCATION, FIELD_DECL, NULL, type_tree); + val = ADJUST_FIELD_ALIGN(f, val); + } +#endif + val /= BITS_PER_UNIT; + } + + return build_int_cstu(val_type_tree, val); + } +} + +// Make a type info expression. + +Expression* +Expression::make_type_info(Type* type, Type_info type_info) +{ + return new Type_info_expression(type, type_info); +} + +// An expression which evaluates to the offset of a field within a +// struct. This, like Type_info_expression, q.v., is only used to +// initialize fields of a type descriptor. + +class Struct_field_offset_expression : public Expression +{ + public: + Struct_field_offset_expression(Struct_type* type, const Struct_field* field) + : Expression(EXPRESSION_STRUCT_FIELD_OFFSET, BUILTINS_LOCATION), + type_(type), field_(field) + { } + + protected: + Type* + do_type() + { return Type::lookup_integer_type("uintptr"); } + + void + do_determine_type(const Type_context*) + { } + + Expression* + do_copy() + { return this; } + + tree + do_get_tree(Translate_context* context); + + private: + // The type of the struct. + Struct_type* type_; + // The field. + const Struct_field* field_; +}; + +// Return a struct field offset in GENERIC. + +tree +Struct_field_offset_expression::do_get_tree(Translate_context* context) +{ + tree type_tree = this->type_->get_tree(context->gogo()); + if (type_tree == error_mark_node) + return error_mark_node; + + tree val_type_tree = this->type()->get_tree(context->gogo()); + gcc_assert(val_type_tree != error_mark_node); + + const Struct_field_list* fields = this->type_->fields(); + tree struct_field_tree = TYPE_FIELDS(type_tree); + Struct_field_list::const_iterator p; + for (p = fields->begin(); + p != fields->end(); + ++p, struct_field_tree = DECL_CHAIN(struct_field_tree)) + { + gcc_assert(struct_field_tree != NULL_TREE); + if (&*p == this->field_) + break; + } + gcc_assert(&*p == this->field_); + + return fold_convert_loc(BUILTINS_LOCATION, val_type_tree, + byte_position(struct_field_tree)); +} + +// Make an expression for a struct field offset. + +Expression* +Expression::make_struct_field_offset(Struct_type* type, + const Struct_field* field) +{ + return new Struct_field_offset_expression(type, field); +} + +// An expression which evaluates to the address of an unnamed label. + +class Label_addr_expression : public Expression +{ + public: + Label_addr_expression(Label* label, source_location location) + : Expression(EXPRESSION_LABEL_ADDR, location), + label_(label) + { } + + protected: + Type* + do_type() + { return Type::make_pointer_type(Type::make_void_type()); } + + void + do_determine_type(const Type_context*) + { } + + Expression* + do_copy() + { return new Label_addr_expression(this->label_, this->location()); } + + tree + do_get_tree(Translate_context*) + { return this->label_->get_addr(this->location()); } + + private: + // The label whose address we are taking. + Label* label_; +}; + +// Make an expression for the address of an unnamed label. + +Expression* +Expression::make_label_addr(Label* label, source_location location) +{ + return new Label_addr_expression(label, location); +} + +// Import an expression. This comes at the end in order to see the +// various class definitions. + +Expression* +Expression::import_expression(Import* imp) +{ + int c = imp->peek_char(); + if (imp->match_c_string("- ") + || imp->match_c_string("! ") + || imp->match_c_string("^ ")) + return Unary_expression::do_import(imp); + else if (c == '(') + return Binary_expression::do_import(imp); + else if (imp->match_c_string("true") + || imp->match_c_string("false")) + return Boolean_expression::do_import(imp); + else if (c == '"') + return String_expression::do_import(imp); + else if (c == '-' || (c >= '0' && c <= '9')) + { + // This handles integers, floats and complex constants. + return Integer_expression::do_import(imp); + } + else if (imp->match_c_string("nil")) + return Nil_expression::do_import(imp); + else if (imp->match_c_string("convert")) + return Type_conversion_expression::do_import(imp); + else + { + error_at(imp->location(), "import error: expected expression"); + return Expression::make_error(imp->location()); + } +} + +// Class Expression_list. + +// Traverse the list. + +int +Expression_list::traverse(Traverse* traverse) +{ + for (Expression_list::iterator p = this->begin(); + p != this->end(); + ++p) + { + if (*p != NULL) + { + if (Expression::traverse(&*p, traverse) == TRAVERSE_EXIT) + return TRAVERSE_EXIT; + } + } + return TRAVERSE_CONTINUE; +} + +// Copy the list. + +Expression_list* +Expression_list::copy() +{ + Expression_list* ret = new Expression_list(); + for (Expression_list::iterator p = this->begin(); + p != this->end(); + ++p) + { + if (*p == NULL) + ret->push_back(NULL); + else + ret->push_back((*p)->copy()); + } + return ret; +} + +// Return whether an expression list has an error expression. + +bool +Expression_list::contains_error() const +{ + for (Expression_list::const_iterator p = this->begin(); + p != this->end(); + ++p) + if (*p != NULL && (*p)->is_error_expression()) + return true; + return false; +} diff --git a/gcc/go/gofrontend/expressions.h b/gcc/go/gofrontend/expressions.h new file mode 100644 index 0000000..4d539d4 --- /dev/null +++ b/gcc/go/gofrontend/expressions.h @@ -0,0 +1,1920 @@ +// expressions.h -- Go frontend expression handling. -*- C++ -*- + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +#ifndef GO_EXPRESSIONS_H +#define GO_EXPRESSIONS_H + +#include <gmp.h> +#include <mpfr.h> + +#include "operator.h" + +class Gogo; +class Translate_context; +class Traverse; +class Type; +struct Type_context; +class Function_type; +class Map_type; +class Struct_type; +class Struct_field; +class Expression_list; +class Var_expression; +class Temporary_reference_expression; +class String_expression; +class Binary_expression; +class Call_expression; +class Func_expression; +class Unknown_expression; +class Index_expression; +class Map_index_expression; +class Bound_method_expression; +class Field_reference_expression; +class Interface_field_reference_expression; +class Type_guard_expression; +class Receive_expression; +class Send_expression; +class Named_object; +class Export; +class Import; +class Temporary_statement; +class Label; + +// The base class for all expressions. + +class Expression +{ + public: + // The types of expressions. + enum Expression_classification + { + EXPRESSION_ERROR, + EXPRESSION_TYPE, + EXPRESSION_UNARY, + EXPRESSION_BINARY, + EXPRESSION_CONST_REFERENCE, + EXPRESSION_VAR_REFERENCE, + EXPRESSION_TEMPORARY_REFERENCE, + EXPRESSION_SINK, + EXPRESSION_FUNC_REFERENCE, + EXPRESSION_UNKNOWN_REFERENCE, + EXPRESSION_BOOLEAN, + EXPRESSION_STRING, + EXPRESSION_INTEGER, + EXPRESSION_FLOAT, + EXPRESSION_COMPLEX, + EXPRESSION_NIL, + EXPRESSION_IOTA, + EXPRESSION_CALL, + EXPRESSION_CALL_RESULT, + EXPRESSION_BOUND_METHOD, + EXPRESSION_INDEX, + EXPRESSION_ARRAY_INDEX, + EXPRESSION_STRING_INDEX, + EXPRESSION_MAP_INDEX, + EXPRESSION_SELECTOR, + EXPRESSION_FIELD_REFERENCE, + EXPRESSION_INTERFACE_FIELD_REFERENCE, + EXPRESSION_ALLOCATION, + EXPRESSION_MAKE, + EXPRESSION_TYPE_GUARD, + EXPRESSION_CONVERSION, + EXPRESSION_STRUCT_CONSTRUCTION, + EXPRESSION_FIXED_ARRAY_CONSTRUCTION, + EXPRESSION_OPEN_ARRAY_CONSTRUCTION, + EXPRESSION_MAP_CONSTRUCTION, + EXPRESSION_COMPOSITE_LITERAL, + EXPRESSION_HEAP_COMPOSITE, + EXPRESSION_RECEIVE, + EXPRESSION_SEND, + EXPRESSION_TYPE_DESCRIPTOR, + EXPRESSION_TYPE_INFO, + EXPRESSION_STRUCT_FIELD_OFFSET, + EXPRESSION_LABEL_ADDR + }; + + Expression(Expression_classification, source_location); + + virtual ~Expression(); + + // Make an error expression. This is used when a parse error occurs + // to prevent cascading errors. + static Expression* + make_error(source_location); + + // Make an expression which is really a type. This is used during + // parsing. + static Expression* + make_type(Type*, source_location); + + // Make a unary expression. + static Expression* + make_unary(Operator, Expression*, source_location); + + // Make a binary expression. + static Expression* + make_binary(Operator, Expression*, Expression*, source_location); + + // Make a reference to a constant in an expression. + static Expression* + make_const_reference(Named_object*, source_location); + + // Make a reference to a variable in an expression. + static Expression* + make_var_reference(Named_object*, source_location); + + // Make a reference to a temporary variable. Temporary variables + // are always created by a single statement, which is what we use to + // refer to them. + static Expression* + make_temporary_reference(Temporary_statement*, source_location); + + // Make a sink expression--a reference to the blank identifier _. + static Expression* + make_sink(source_location); + + // Make a reference to a function in an expression. + static Expression* + make_func_reference(Named_object*, Expression* closure, source_location); + + // Make a reference to an unknown name. In a correct program this + // will always be lowered to a real const/var/func reference. + static Expression* + make_unknown_reference(Named_object*, source_location); + + // Make a constant bool expression. + static Expression* + make_boolean(bool val, source_location); + + // Make a constant string expression. + static Expression* + make_string(const std::string&, source_location); + + // Make a constant integer expression. TYPE should be NULL for an + // abstract type. + static Expression* + make_integer(const mpz_t*, Type*, source_location); + + // Make a constant float expression. TYPE should be NULL for an + // abstract type. + static Expression* + make_float(const mpfr_t*, Type*, source_location); + + // Make a constant complex expression. TYPE should be NULL for an + // abstract type. + static Expression* + make_complex(const mpfr_t* real, const mpfr_t* imag, Type*, source_location); + + // Make a nil expression. + static Expression* + make_nil(source_location); + + // Make an iota expression. This is used for the predeclared + // constant iota. + static Expression* + make_iota(); + + // Make a call expression. + static Call_expression* + make_call(Expression* func, Expression_list* args, bool is_varargs, + source_location); + + // Make a reference to a specific result of a call expression which + // returns a tuple. + static Expression* + make_call_result(Call_expression*, unsigned int index); + + // Make an expression which is a method bound to its first + // parameter. + static Bound_method_expression* + make_bound_method(Expression* object, Expression* method, source_location); + + // Make an index or slice expression. This is a parser expression + // which represents LEFT[START:END]. END may be NULL, meaning an + // index rather than a slice. At parse time we may not know the + // type of LEFT. After parsing this is lowered to an array index, a + // string index, or a map index. + static Expression* + make_index(Expression* left, Expression* start, Expression* end, + source_location); + + // Make an array index expression. END may be NULL, in which case + // this is an lvalue. + static Expression* + make_array_index(Expression* array, Expression* start, Expression* end, + source_location); + + // Make a string index expression. END may be NULL. This is never + // an lvalue. + static Expression* + make_string_index(Expression* string, Expression* start, Expression* end, + source_location); + + // Make a map index expression. This is an lvalue. + static Map_index_expression* + make_map_index(Expression* map, Expression* val, source_location); + + // Make a selector. This is a parser expression which represents + // LEFT.NAME. At parse time we may not know the type of the left + // hand side. + static Expression* + make_selector(Expression* left, const std::string& name, source_location); + + // Make a reference to a field in a struct. + static Field_reference_expression* + make_field_reference(Expression*, unsigned int field_index, source_location); + + // Make a reference to a field of an interface, with an associated + // object. + static Expression* + make_interface_field_reference(Expression*, const std::string&, + source_location); + + // Make an allocation expression. + static Expression* + make_allocation(Type*, source_location); + + // Make a call to the builtin function make. + static Expression* + make_make(Type*, Expression_list*, source_location); + + // Make a type guard expression. + static Expression* + make_type_guard(Expression*, Type*, source_location); + + // Make a type cast expression. + static Expression* + make_cast(Type*, Expression*, source_location); + + // Make a composite literal. The DEPTH parameter is how far down we + // are in a list of composite literals with omitted types. + static Expression* + make_composite_literal(Type*, int depth, bool has_keys, Expression_list*, + source_location); + + // Make a struct composite literal. + static Expression* + make_struct_composite_literal(Type*, Expression_list*, source_location); + + // Make a slice composite literal. + static Expression* + make_slice_composite_literal(Type*, Expression_list*, source_location); + + // Take a composite literal and allocate it on the heap. + static Expression* + make_heap_composite(Expression*, source_location); + + // Make a receive expression. VAL is NULL for a unary receive. + static Receive_expression* + make_receive(Expression* channel, source_location); + + // Make a send expression. + static Send_expression* + make_send(Expression* channel, Expression* val, source_location); + + // Make an expression which evaluates to the type descriptor of a + // type. + static Expression* + make_type_descriptor(Type* type, source_location); + + // Make an expression which evaluates to some characteristic of a + // type. These are only used for type descriptors, so there is no + // location parameter. + enum Type_info + { + // The size of a value of the type. + TYPE_INFO_SIZE, + // The required alignment of a value of the type. + TYPE_INFO_ALIGNMENT, + // The required alignment of a value of the type when used as a + // field in a struct. + TYPE_INFO_FIELD_ALIGNMENT + }; + + static Expression* + make_type_info(Type* type, Type_info); + + // Make an expression which evaluates to the offset of a field in a + // struct. This is only used for type descriptors, so there is no + // location parameter. + static Expression* + make_struct_field_offset(Struct_type*, const Struct_field*); + + // Make an expression which evaluates to the address of an unnamed + // label. + static Expression* + make_label_addr(Label*, source_location); + + // Return the expression classification. + Expression_classification + classification() const + { return this->classification_; } + + // Return the location of the expression. + source_location + location() const + { return this->location_; } + + // Return whether this is a constant expression. + bool + is_constant() const + { return this->do_is_constant(); } + + // If this is not a constant expression with integral type, return + // false. If it is one, return true, and set VAL to the value. VAL + // should already be initialized. If this returns true, it sets + // *PTYPE to the type of the value, or NULL for an abstract type. + // If IOTA_IS_CONSTANT is true, then an iota expression is assumed + // to have its final value. + bool + integer_constant_value(bool iota_is_constant, mpz_t val, Type** ptype) const; + + // If this is not a constant expression with floating point type, + // return false. If it is one, return true, and set VAL to the + // value. VAL should already be initialized. If this returns true, + // it sets *PTYPE to the type of the value, or NULL for an abstract + // type. + bool + float_constant_value(mpfr_t val, Type** ptype) const; + + // If this is not a constant expression with complex type, return + // false. If it is one, return true, and set REAL and IMAG to the + // value. REAL and IMAG should already be initialized. If this + // return strue, it sets *PTYPE to the type of the value, or NULL + // for an abstract type. + bool + complex_constant_value(mpfr_t real, mpfr_t imag, Type** ptype) const; + + // If this is not a constant expression with string type, return + // false. If it is one, return true, and set VAL to the value. + bool + string_constant_value(std::string* val) const + { return this->do_string_constant_value(val); } + + // This is called by the parser if the value of this expression is + // being discarded. This issues warnings about computed values + // being unused, and handles send expressions which act differently + // depending upon whether the value is used. + void + discarding_value() + { this->do_discarding_value(); } + + // Return whether this is an error expression. + bool + is_error_expression() const + { return this->classification_ == EXPRESSION_ERROR; } + + // Return whether this expression really represents a type. + bool + is_type_expression() const + { return this->classification_ == EXPRESSION_TYPE; } + + // If this is a variable reference, return the Var_expression + // structure. Otherwise, return NULL. This is a controlled dynamic + // cast. + Var_expression* + var_expression() + { return this->convert<Var_expression, EXPRESSION_VAR_REFERENCE>(); } + + const Var_expression* + var_expression() const + { return this->convert<const Var_expression, EXPRESSION_VAR_REFERENCE>(); } + + // If this is a reference to a temporary variable, return the + // Temporary_reference_expression. Otherwise, return NULL. + Temporary_reference_expression* + temporary_reference_expression() + { + return this->convert<Temporary_reference_expression, + EXPRESSION_TEMPORARY_REFERENCE>(); + } + + // Return whether this is a sink expression. + bool + is_sink_expression() const + { return this->classification_ == EXPRESSION_SINK; } + + // If this is a string expression, return the String_expression + // structure. Otherwise, return NULL. + String_expression* + string_expression() + { return this->convert<String_expression, EXPRESSION_STRING>(); } + + // Return whether this is the expression nil. + bool + is_nil_expression() const + { return this->classification_ == EXPRESSION_NIL; } + + // If this is an indirection through a pointer, return the + // expression being pointed through. Otherwise return this. + Expression* + deref(); + + // If this is a binary expression, return the Binary_expression + // structure. Otherwise return NULL. + Binary_expression* + binary_expression() + { return this->convert<Binary_expression, EXPRESSION_BINARY>(); } + + // If this is a call expression, return the Call_expression + // structure. Otherwise, return NULL. This is a controlled dynamic + // cast. + Call_expression* + call_expression() + { return this->convert<Call_expression, EXPRESSION_CALL>(); } + + // If this is an expression which refers to a function, return the + // Func_expression structure. Otherwise, return NULL. + Func_expression* + func_expression() + { return this->convert<Func_expression, EXPRESSION_FUNC_REFERENCE>(); } + + const Func_expression* + func_expression() const + { return this->convert<const Func_expression, EXPRESSION_FUNC_REFERENCE>(); } + + // If this is an expression which refers to an unknown name, return + // the Unknown_expression structure. Otherwise, return NULL. + Unknown_expression* + unknown_expression() + { return this->convert<Unknown_expression, EXPRESSION_UNKNOWN_REFERENCE>(); } + + const Unknown_expression* + unknown_expression() const + { + return this->convert<const Unknown_expression, + EXPRESSION_UNKNOWN_REFERENCE>(); + } + + // If this is an index expression, return the Index_expression + // structure. Otherwise, return NULL. + Index_expression* + index_expression() + { return this->convert<Index_expression, EXPRESSION_INDEX>(); } + + // If this is an expression which refers to indexing in a map, + // return the Map_index_expression structure. Otherwise, return + // NULL. + Map_index_expression* + map_index_expression() + { return this->convert<Map_index_expression, EXPRESSION_MAP_INDEX>(); } + + // If this is a bound method expression, return the + // Bound_method_expression structure. Otherwise, return NULL. + Bound_method_expression* + bound_method_expression() + { return this->convert<Bound_method_expression, EXPRESSION_BOUND_METHOD>(); } + + // If this is a reference to a field in a struct, return the + // Field_reference_expression structure. Otherwise, return NULL. + Field_reference_expression* + field_reference_expression() + { + return this->convert<Field_reference_expression, + EXPRESSION_FIELD_REFERENCE>(); + } + + // If this is a reference to a field in an interface, return the + // Interface_field_reference_expression structure. Otherwise, + // return NULL. + Interface_field_reference_expression* + interface_field_reference_expression() + { + return this->convert<Interface_field_reference_expression, + EXPRESSION_INTERFACE_FIELD_REFERENCE>(); + } + + // If this is a type guard expression, return the + // Type_guard_expression structure. Otherwise, return NULL. + Type_guard_expression* + type_guard_expression() + { return this->convert<Type_guard_expression, EXPRESSION_TYPE_GUARD>(); } + + // If this is a receive expression, return the Receive_expression + // structure. Otherwise, return NULL. + Receive_expression* + receive_expression() + { return this->convert<Receive_expression, EXPRESSION_RECEIVE>(); } + + // Return true if this is a composite literal. + bool + is_composite_literal() const; + + // Return true if this is a composite literal which is not constant. + bool + is_nonconstant_composite_literal() const; + + // Return true if this is a reference to a local variable. + bool + is_local_variable() const; + + // Traverse an expression. + static int + traverse(Expression**, Traverse*); + + // Traverse subexpressions of this expression. + int + traverse_subexpressions(Traverse*); + + // Lower an expression. This is called immediately after parsing. + // IOTA_VALUE is the value that we should give to any iota + // expressions. This function must resolve expressions which could + // not be fully parsed into their final form. It returns the same + // Expression or a new one. + Expression* + lower(Gogo* gogo, Named_object* function, int iota_value) + { return this->do_lower(gogo, function, iota_value); } + + // Determine the real type of an expression with abstract integer, + // floating point, or complex type. TYPE_CONTEXT describes the + // expected type. + void + determine_type(const Type_context*); + + // Check types in an expression. + void + check_types(Gogo* gogo) + { this->do_check_types(gogo); } + + // Determine the type when there is no context. + void + determine_type_no_context(); + + // Return the current type of the expression. This may be changed + // by determine_type. + Type* + type() + { return this->do_type(); } + + // Return a copy of an expression. + Expression* + copy() + { return this->do_copy(); } + + // Return whether the expression is addressable--something which may + // be used as the operand of the unary & operator. + bool + is_addressable() const + { return this->do_is_addressable(); } + + // Note that we are taking the address of this expression. ESCAPES + // is true if this address escapes the current function. + void + address_taken(bool escapes) + { this->do_address_taken(escapes); } + + // Return whether this expression must be evaluated in order + // according to the order of evaluation rules. This is basically + // true of all expressions with side-effects. + bool + must_eval_in_order() const + { return this->do_must_eval_in_order(); } + + // Return the tree for this expression. + tree + get_tree(Translate_context*); + + // Return a tree handling any conversions which must be done during + // assignment. + static tree + convert_for_assignment(Translate_context*, Type* lhs_type, Type* rhs_type, + tree rhs_tree, source_location location); + + // Return a tree converting a value of one interface type to another + // interface type. If FOR_TYPE_GUARD is true this is for a type + // assertion. + static tree + convert_interface_to_interface(Translate_context*, Type* lhs_type, + Type* rhs_type, tree rhs_tree, + bool for_type_guard, source_location); + + // Return a tree implementing the comparison LHS_TREE OP RHS_TREE. + // TYPE is the type of both sides. + static tree + comparison_tree(Translate_context*, Operator op, Type* left_type, + tree left_tree, Type* right_type, tree right_tree, + source_location); + + // Return a tree for the multi-precision integer VAL in TYPE. + static tree + integer_constant_tree(mpz_t val, tree type); + + // Return a tree for the floating point value VAL in TYPE. + static tree + float_constant_tree(mpfr_t val, tree type); + + // Return a tree for the complex value REAL/IMAG in TYPE. + static tree + complex_constant_tree(mpfr_t real, mpfr_t imag, tree type); + + // Export the expression. This is only used for constants. It will + // be used for things like values of named constants and sizes of + // arrays. + void + export_expression(Export* exp) const + { this->do_export(exp); } + + // Import an expression. + static Expression* + import_expression(Import*); + + // Return a tree which checks that VAL, of arbitrary integer type, + // is non-negative and is not more than the maximum value of + // BOUND_TYPE. If SOFAR is not NULL, it is or'red into the result. + // The return value may be NULL if SOFAR is NULL. + static tree + check_bounds(tree val, tree bound_type, tree sofar, source_location); + + protected: + // May be implemented by child class: traverse the expressions. + virtual int + do_traverse(Traverse*); + + // Return a lowered expression. + virtual Expression* + do_lower(Gogo*, Named_object*, int) + { return this; } + + // Return whether this is a constant expression. + virtual bool + do_is_constant() const + { return false; } + + // Return whether this is a constant expression of integral type, + // and set VAL to the value. + virtual bool + do_integer_constant_value(bool, mpz_t, Type**) const + { return false; } + + // Return whether this is a constant expression of floating point + // type, and set VAL to the value. + virtual bool + do_float_constant_value(mpfr_t, Type**) const + { return false; } + + // Return whether this is a constant expression of complex type, and + // set REAL and IMAGE to the value. + virtual bool + do_complex_constant_value(mpfr_t, mpfr_t, Type**) const + { return false; } + + // Return whether this is a constant expression of string type, and + // set VAL to the value. + virtual bool + do_string_constant_value(std::string*) const + { return false; } + + // Called by the parser if the value is being discarded. + virtual void + do_discarding_value(); + + // Child class holds type. + virtual Type* + do_type() = 0; + + // Child class implements determining type information. + virtual void + do_determine_type(const Type_context*) = 0; + + // Child class implements type checking if needed. + virtual void + do_check_types(Gogo*) + { } + + // Child class implements copying. + virtual Expression* + do_copy() = 0; + + // Child class implements whether the expression is addressable. + virtual bool + do_is_addressable() const + { return false; } + + // Child class implements taking the address of an expression. + virtual void + do_address_taken(bool) + { } + + // Child class implements whether this expression must be evaluated + // in order. + virtual bool + do_must_eval_in_order() const + { return false; } + + // Child class implements conversion to tree. + virtual tree + do_get_tree(Translate_context*) = 0; + + // Child class implements export. + virtual void + do_export(Export*) const; + + // For children to call to warn about an unused value. + void + warn_about_unused_value(); + + // For children to call when they detect that they are in error. + void + set_is_error(); + + // For children to call to report an error conveniently. + void + report_error(const char*); + + private: + // Convert to the desired statement classification, or return NULL. + // This is a controlled dynamic cast. + template<typename Expression_class, + Expression_classification expr_classification> + Expression_class* + convert() + { + return (this->classification_ == expr_classification + ? static_cast<Expression_class*>(this) + : NULL); + } + + template<typename Expression_class, + Expression_classification expr_classification> + const Expression_class* + convert() const + { + return (this->classification_ == expr_classification + ? static_cast<const Expression_class*>(this) + : NULL); + } + + static tree + convert_type_to_interface(Translate_context*, Type*, Type*, tree, + source_location); + + static tree + get_interface_type_descriptor(Translate_context*, Type*, tree, + source_location); + + static tree + convert_interface_to_type(Translate_context*, Type*, Type*, tree, + source_location); + + // The expression classification. + Expression_classification classification_; + // The location in the input file. + source_location location_; +}; + +// A list of Expressions. + +class Expression_list +{ + public: + Expression_list() + : entries_() + { } + + // Return whether the list is empty. + bool + empty() const + { return this->entries_.empty(); } + + // Return the number of entries in the list. + size_t + size() const + { return this->entries_.size(); } + + // Add an entry to the end of the list. + void + push_back(Expression* expr) + { this->entries_.push_back(expr); } + + void + append(Expression_list* add) + { this->entries_.insert(this->entries_.end(), add->begin(), add->end()); } + + // Reserve space in the list. + void + reserve(size_t size) + { this->entries_.reserve(size); } + + // Traverse the expressions in the list. + int + traverse(Traverse*); + + // Copy the list. + Expression_list* + copy(); + + // Return true if the list contains an error expression. + bool + contains_error() const; + + // Return the first and last elements. + Expression*& + front() + { return this->entries_.front(); } + + Expression* + front() const + { return this->entries_.front(); } + + Expression*& + back() + { return this->entries_.back(); } + + Expression* + back() const + { return this->entries_.back(); } + + // Iterators. + + typedef std::vector<Expression*>::iterator iterator; + typedef std::vector<Expression*>::const_iterator const_iterator; + + iterator + begin() + { return this->entries_.begin(); } + + const_iterator + begin() const + { return this->entries_.begin(); } + + iterator + end() + { return this->entries_.end(); } + + const_iterator + end() const + { return this->entries_.end(); } + + // Erase an entry. + void + erase(iterator p) + { this->entries_.erase(p); } + + private: + std::vector<Expression*> entries_; +}; + +// An abstract base class for an expression which is only used by the +// parser, and is lowered in the lowering pass. + +class Parser_expression : public Expression +{ + public: + Parser_expression(Expression_classification classification, + source_location location) + : Expression(classification, location) + { } + + protected: + virtual Expression* + do_lower(Gogo*, Named_object*, int) = 0; + + Type* + do_type() + { gcc_unreachable(); } + + void + do_determine_type(const Type_context*) + { gcc_unreachable(); } + + void + do_check_types(Gogo*) + { gcc_unreachable(); } + + tree + do_get_tree(Translate_context*) + { gcc_unreachable(); } +}; + +// An expression which is simply a variable. + +class Var_expression : public Expression +{ + public: + Var_expression(Named_object* variable, source_location location) + : Expression(EXPRESSION_VAR_REFERENCE, location), + variable_(variable) + { } + + // Return the variable. + Named_object* + named_object() const + { return this->variable_; } + + // Return the name of the variable. + const std::string& + name() const; + + protected: + Expression* + do_lower(Gogo*, Named_object*, int); + + Type* + do_type(); + + void + do_determine_type(const Type_context*) + { } + + Expression* + do_copy() + { return this; } + + bool + do_is_addressable() const + { return true; } + + void + do_address_taken(bool); + + tree + do_get_tree(Translate_context*); + + private: + // The variable we are referencing. + Named_object* variable_; +}; + +// A reference to a temporary variable. + +class Temporary_reference_expression : public Expression +{ + public: + Temporary_reference_expression(Temporary_statement* statement, + source_location location) + : Expression(EXPRESSION_TEMPORARY_REFERENCE, location), + statement_(statement) + { } + + protected: + Type* + do_type(); + + void + do_determine_type(const Type_context*) + { } + + Expression* + do_copy() + { return make_temporary_reference(this->statement_, this->location()); } + + bool + do_is_addressable() const + { return true; } + + void + do_address_taken(bool); + + tree + do_get_tree(Translate_context*); + + private: + // The statement where the temporary variable is defined. + Temporary_statement* statement_; +}; + +// A string expression. + +class String_expression : public Expression +{ + public: + String_expression(const std::string& val, source_location location) + : Expression(EXPRESSION_STRING, location), + val_(val), type_(NULL) + { } + + const std::string& + val() const + { return this->val_; } + + static Expression* + do_import(Import*); + + protected: + bool + do_is_constant() const + { return true; } + + bool + do_string_constant_value(std::string* val) const + { + *val = this->val_; + return true; + } + + Type* + do_type(); + + void + do_determine_type(const Type_context*); + + Expression* + do_copy() + { return this; } + + tree + do_get_tree(Translate_context*); + + void + do_export(Export*) const; + + private: + // The string value. This is immutable. + const std::string val_; + // The type as determined by context. + Type* type_; +}; + +// A binary expression. + +class Binary_expression : public Expression +{ + public: + Binary_expression(Operator op, Expression* left, Expression* right, + source_location location) + : Expression(EXPRESSION_BINARY, location), + op_(op), left_(left), right_(right) + { } + + // Return the operator. + Operator + op() + { return this->op_; } + + // Return the left hand expression. + Expression* + left() + { return this->left_; } + + // Return the right hand expression. + Expression* + right() + { return this->right_; } + + // Apply binary opcode OP to LEFT_VAL and RIGHT_VAL, setting VAL. + // LEFT_TYPE is the type of LEFT_VAL, RIGHT_TYPE is the type of + // RIGHT_VAL; LEFT_TYPE and/or RIGHT_TYPE may be NULL. Return true + // if this could be done, false if not. + static bool + eval_integer(Operator op, Type* left_type, mpz_t left_val, + Type* right_type, mpz_t right_val, source_location, + mpz_t val); + + // Apply binary opcode OP to LEFT_VAL and RIGHT_VAL, setting VAL. + // Return true if this could be done, false if not. + static bool + eval_float(Operator op, Type* left_type, mpfr_t left_val, + Type* right_type, mpfr_t right_val, mpfr_t val, + source_location); + + // Apply binary opcode OP to LEFT_REAL/LEFT_IMAG and + // RIGHT_REAL/RIGHT_IMAG, setting REAL/IMAG. Return true if this + // could be done, false if not. + static bool + eval_complex(Operator op, Type* left_type, mpfr_t left_real, + mpfr_t left_imag, Type* right_type, mpfr_t right_real, + mpfr_t right_imag, mpfr_t real, mpfr_t imag, source_location); + + // Compare integer constants according to OP. + static bool + compare_integer(Operator op, mpz_t left_val, mpz_t right_val); + + // Compare floating point constants according to OP. + static bool + compare_float(Operator op, Type* type, mpfr_t left_val, mpfr_t right_val); + + // Compare complex constants according to OP. + static bool + compare_complex(Operator op, Type* type, mpfr_t left_real, mpfr_t left_imag, + mpfr_t right_val, mpfr_t right_imag); + + static Expression* + do_import(Import*); + + // Report an error if OP can not be applied to TYPE. Return whether + // it can. + static bool + check_operator_type(Operator op, Type* type, source_location); + + protected: + int + do_traverse(Traverse* traverse); + + Expression* + do_lower(Gogo*, Named_object*, int); + + bool + do_is_constant() const + { return this->left_->is_constant() && this->right_->is_constant(); } + + bool + do_integer_constant_value(bool, mpz_t val, Type**) const; + + bool + do_float_constant_value(mpfr_t val, Type**) const; + + bool + do_complex_constant_value(mpfr_t real, mpfr_t imag, Type**) const; + + void + do_discarding_value(); + + Type* + do_type(); + + void + do_determine_type(const Type_context*); + + void + do_check_types(Gogo*); + + Expression* + do_copy() + { + return Expression::make_binary(this->op_, this->left_->copy(), + this->right_->copy(), this->location()); + } + + tree + do_get_tree(Translate_context*); + + void + do_export(Export*) const; + + private: + // The binary operator to apply. + Operator op_; + // The left hand side operand. + Expression* left_; + // The right hand side operand. + Expression* right_; +}; + +// A call expression. The go statement needs to dig inside this. + +class Call_expression : public Expression +{ + public: + Call_expression(Expression* fn, Expression_list* args, bool is_varargs, + source_location location) + : Expression(EXPRESSION_CALL, location), + fn_(fn), args_(args), type_(NULL), tree_(NULL), is_varargs_(is_varargs), + is_value_discarded_(false), varargs_are_lowered_(false), + is_deferred_(false) + { } + + // The function to call. + Expression* + fn() const + { return this->fn_; } + + // The arguments. + Expression_list* + args() + { return this->args_; } + + const Expression_list* + args() const + { return this->args_; } + + // Get the function type. + Function_type* + get_function_type() const; + + // Return the number of values this call will return. + size_t + result_count() const; + + // Return whether this is a call to the predeclared function + // recover. + bool + is_recover_call() const; + + // Set the argument for a call to recover. + void + set_recover_arg(Expression*); + + // Whether the last argument is a varargs argument (f(a...)). + bool + is_varargs() const + { return this->is_varargs_; } + + // Whether this call is being deferred. + bool + is_deferred() const + { return this->is_deferred_; } + + // Note that the call is being deferred. + void + set_is_deferred() + { this->is_deferred_ = true; } + + protected: + int + do_traverse(Traverse*); + + virtual Expression* + do_lower(Gogo*, Named_object*, int); + + void + do_discarding_value() + { this->is_value_discarded_ = true; } + + virtual Type* + do_type(); + + virtual void + do_determine_type(const Type_context*); + + virtual void + do_check_types(Gogo*); + + Expression* + do_copy() + { + return Expression::make_call(this->fn_->copy(), this->args_->copy(), + this->is_varargs_, this->location()); + } + + bool + do_must_eval_in_order() const; + + virtual tree + do_get_tree(Translate_context*); + + virtual bool + do_is_recover_call() const; + + virtual void + do_set_recover_arg(Expression*); + + // Let a builtin expression change the argument list. + void + set_args(Expression_list* args) + { this->args_ = args; } + + // Let a builtin expression lower varargs. + Expression* + lower_varargs(Gogo*, Named_object* function, Type* varargs_type, + size_t param_count); + + private: + bool + is_compatible_varargs_argument(Named_object*, Expression*, Type*, bool*); + + bool + check_argument_type(int, const Type*, const Type*, source_location, bool); + + tree + bound_method_function(Translate_context*, Bound_method_expression*, tree*); + + tree + interface_method_function(Translate_context*, + Interface_field_reference_expression*, + tree*); + + // The function to call. + Expression* fn_; + // The arguments to pass. This may be NULL if there are no + // arguments. + Expression_list* args_; + // The type of the expression, to avoid recomputing it. + Type* type_; + // The tree for the call, used for a call which returns a tuple. + tree tree_; + // True if the last argument is a varargs argument (f(a...)). + bool is_varargs_; + // True if the value is being discarded. + bool is_value_discarded_; + // True if varargs have already been lowered. + bool varargs_are_lowered_; + // True if the call is an argument to a defer statement. + bool is_deferred_; +}; + +// An expression which represents a pointer to a function. + +class Func_expression : public Expression +{ + public: + Func_expression(Named_object* function, Expression* closure, + source_location location) + : Expression(EXPRESSION_FUNC_REFERENCE, location), + function_(function), closure_(closure) + { } + + // Return the object associated with the function. + const Named_object* + named_object() const + { return this->function_; } + + // Return the name of the function. + const std::string& + name() const; + + // Return the closure for this function. This will return NULL if + // the function has no closure, which is the normal case. + Expression* + closure() + { return this->closure_; } + + // Return a tree for this function without evaluating the closure. + tree + get_tree_without_closure(Gogo*); + + protected: + int + do_traverse(Traverse*); + + Type* + do_type(); + + void + do_determine_type(const Type_context*) + { + if (this->closure_ != NULL) + this->closure_->determine_type_no_context(); + } + + Expression* + do_copy() + { + return Expression::make_func_reference(this->function_, + this->closure_->copy(), + this->location()); + } + + tree + do_get_tree(Translate_context*); + + private: + // The function itself. + Named_object* function_; + // A closure. This is normally NULL. For a nested function, it may + // be a heap-allocated struct holding pointers to all the variables + // referenced by this function and defined in enclosing functions. + Expression* closure_; +}; + +// A reference to an unknown name. + +class Unknown_expression : public Parser_expression +{ + public: + Unknown_expression(Named_object* named_object, source_location location) + : Parser_expression(EXPRESSION_UNKNOWN_REFERENCE, location), + named_object_(named_object), is_composite_literal_key_(false) + { } + + // The associated named object. + Named_object* + named_object() const + { return this->named_object_; } + + // The name of the identifier which was unknown. + const std::string& + name() const; + + // Note that this expression is being used as the key in a composite + // literal, so it may be OK if it is not resolved. + void + set_is_composite_literal_key() + { this->is_composite_literal_key_ = true; } + + protected: + Expression* + do_lower(Gogo*, Named_object*, int); + + Expression* + do_copy() + { return new Unknown_expression(this->named_object_, this->location()); } + + private: + // The unknown name. + Named_object* named_object_; + // True if this is the key in a composite literal. + bool is_composite_literal_key_; +}; + +// An index expression. This is lowered to an array index, a string +// index, or a map index. + +class Index_expression : public Parser_expression +{ + public: + Index_expression(Expression* left, Expression* start, Expression* end, + source_location location) + : Parser_expression(EXPRESSION_INDEX, location), + left_(left), start_(start), end_(end), is_lvalue_(false) + { } + + // Record that this expression is an lvalue. + void + set_is_lvalue() + { this->is_lvalue_ = true; } + + protected: + int + do_traverse(Traverse*); + + Expression* + do_lower(Gogo*, Named_object*, int); + + Expression* + do_copy() + { + return new Index_expression(this->left_->copy(), this->start_->copy(), + (this->end_ == NULL + ? NULL + : this->end_->copy()), + this->location()); + } + + private: + // The expression being indexed. + Expression* left_; + // The first index. + Expression* start_; + // The second index. This is NULL for an index, non-NULL for a + // slice. + Expression* end_; + // Whether this is being used as an l-value. We set this during the + // parse because map index expressions need to know. + bool is_lvalue_; +}; + +// An index into a map. + +class Map_index_expression : public Expression +{ + public: + Map_index_expression(Expression* map, Expression* index, + source_location location) + : Expression(EXPRESSION_MAP_INDEX, location), + map_(map), index_(index), is_lvalue_(false), + is_in_tuple_assignment_(false) + { } + + // Return the map. + Expression* + map() + { return this->map_; } + + const Expression* + map() const + { return this->map_; } + + // Return the index. + Expression* + index() + { return this->index_; } + + const Expression* + index() const + { return this->index_; } + + // Get the type of the map being indexed. + Map_type* + get_map_type() const; + + // Record that this map expression is an lvalue. The difference is + // that an lvalue always inserts the key. + void + set_is_lvalue() + { this->is_lvalue_ = true; } + + // Return whether this map expression occurs in an assignment to a + // pair of values. + bool + is_in_tuple_assignment() const + { return this->is_in_tuple_assignment_; } + + // Record that this map expression occurs in an assignment to a pair + // of values. + void + set_is_in_tuple_assignment() + { this->is_in_tuple_assignment_ = true; } + + // Return a tree for the map index. This returns a tree which + // evaluates to a pointer to a value in the map. If INSERT is true, + // the key will be inserted if not present, and the value pointer + // will be zero initialized. If INSERT is false, and the key is not + // present in the map, the pointer will be NULL. + tree + get_value_pointer(Translate_context*, bool insert); + + protected: + int + do_traverse(Traverse*); + + Type* + do_type(); + + void + do_determine_type(const Type_context*); + + void + do_check_types(Gogo*); + + Expression* + do_copy() + { + return Expression::make_map_index(this->map_->copy(), + this->index_->copy(), + this->location()); + } + + // A map index expression is an lvalue but it is not addressable. + + tree + do_get_tree(Translate_context*); + + private: + // The map we are looking into. + Expression* map_; + // The index. + Expression* index_; + // Whether this is an lvalue. + bool is_lvalue_; + // Whether this is in a tuple assignment to a pair of values. + bool is_in_tuple_assignment_; +}; + +// An expression which represents a method bound to its first +// argument. + +class Bound_method_expression : public Expression +{ + public: + Bound_method_expression(Expression* expr, Expression* method, + source_location location) + : Expression(EXPRESSION_BOUND_METHOD, location), + expr_(expr), expr_type_(NULL), method_(method) + { } + + // Return the object which is the first argument. + Expression* + first_argument() + { return this->expr_; } + + // Return the implicit type of the first argument. This will be + // non-NULL when using a method from an anonymous field without + // using an explicit stub. + Type* + first_argument_type() const + { return this->expr_type_; } + + // Return the reference to the method function. + Expression* + method() + { return this->method_; } + + // Set the implicit type of the expression. + void + set_first_argument_type(Type* type) + { this->expr_type_ = type; } + + protected: + int + do_traverse(Traverse*); + + Type* + do_type(); + + void + do_determine_type(const Type_context*); + + void + do_check_types(Gogo*); + + Expression* + do_copy() + { + return new Bound_method_expression(this->expr_->copy(), + this->method_->copy(), + this->location()); + } + + tree + do_get_tree(Translate_context*); + + private: + // The object used to find the method. This is passed to the method + // as the first argument. + Expression* expr_; + // The implicit type of the object to pass to the method. This is + // NULL in the normal case, non-NULL when using a method from an + // anonymous field which does not require a stub. + Type* expr_type_; + // The method itself. This is a Func_expression. + Expression* method_; +}; + +// A reference to a field in a struct. + +class Field_reference_expression : public Expression +{ + public: + Field_reference_expression(Expression* expr, unsigned int field_index, + source_location location) + : Expression(EXPRESSION_FIELD_REFERENCE, location), + expr_(expr), field_index_(field_index) + { } + + // Return the struct expression. + Expression* + expr() const + { return this->expr_; } + + // Return the field index. + unsigned int + field_index() const + { return this->field_index_; } + + // Set the struct expression. This is used when parsing. + void + set_struct_expression(Expression* expr) + { + gcc_assert(this->expr_ == NULL); + this->expr_ = expr; + } + + protected: + int + do_traverse(Traverse* traverse) + { return Expression::traverse(&this->expr_, traverse); } + + Type* + do_type(); + + void + do_determine_type(const Type_context*) + { this->expr_->determine_type_no_context(); } + + void + do_check_types(Gogo*); + + Expression* + do_copy() + { + return Expression::make_field_reference(this->expr_->copy(), + this->field_index_, + this->location()); + } + + bool + do_is_addressable() const + { return this->expr_->is_addressable(); } + + tree + do_get_tree(Translate_context*); + + private: + // The expression we are looking into. This should have a type of + // struct. + Expression* expr_; + // The zero-based index of the field we are retrieving. + unsigned int field_index_; +}; + +// A reference to a field of an interface. + +class Interface_field_reference_expression : public Expression +{ + public: + Interface_field_reference_expression(Expression* expr, + const std::string& name, + source_location location) + : Expression(EXPRESSION_INTERFACE_FIELD_REFERENCE, location), + expr_(expr), name_(name) + { } + + // Return the expression for the interface object. + Expression* + expr() + { return this->expr_; } + + // Return the name of the method to call. + const std::string& + name() const + { return this->name_; } + + // Return a tree for the pointer to the function to call, given a + // tree for the expression. + tree + get_function_tree(Translate_context*, tree); + + // Return a tree for the first argument to pass to the interface + // function, given a tree for the expression. This is the real + // object associated with the interface object. + tree + get_underlying_object_tree(Translate_context*, tree); + + protected: + int + do_traverse(Traverse* traverse); + + Type* + do_type(); + + void + do_determine_type(const Type_context*); + + void + do_check_types(Gogo*); + + Expression* + do_copy() + { + return Expression::make_interface_field_reference(this->expr_->copy(), + this->name_, + this->location()); + } + + tree + do_get_tree(Translate_context*); + + private: + // The expression for the interface object. This should have a type + // of interface or pointer to interface. + Expression* expr_; + // The field we are retrieving--the name of the method. + std::string name_; +}; + +// A type guard expression. + +class Type_guard_expression : public Expression +{ + public: + Type_guard_expression(Expression* expr, Type* type, source_location location) + : Expression(EXPRESSION_TYPE_GUARD, location), + expr_(expr), type_(type) + { } + + // Return the expression to convert. + Expression* + expr() + { return this->expr_; } + + // Return the type to which to convert. + Type* + type() + { return this->type_; } + + protected: + int + do_traverse(Traverse* traverse); + + Type* + do_type() + { return this->type_; } + + void + do_determine_type(const Type_context*) + { this->expr_->determine_type_no_context(); } + + void + do_check_types(Gogo*); + + Expression* + do_copy() + { + return new Type_guard_expression(this->expr_->copy(), this->type_, + this->location()); + } + + tree + do_get_tree(Translate_context*); + + private: + // The expression to convert. + Expression* expr_; + // The type to which to convert. + Type* type_; +}; + +// A receive expression. + +class Receive_expression : public Expression +{ + public: + Receive_expression(Expression* channel, source_location location) + : Expression(EXPRESSION_RECEIVE, location), + channel_(channel), is_value_discarded_(false), for_select_(false) + { } + + // Return the channel. + Expression* + channel() + { return this->channel_; } + + // Note that this is for a select statement. + void + set_for_select() + { this->for_select_ = true; } + + protected: + int + do_traverse(Traverse* traverse) + { return Expression::traverse(&this->channel_, traverse); } + + void + do_discarding_value() + { this->is_value_discarded_ = true; } + + Type* + do_type(); + + void + do_determine_type(const Type_context*) + { this->channel_->determine_type_no_context(); } + + void + do_check_types(Gogo*); + + Expression* + do_copy() + { + return Expression::make_receive(this->channel_->copy(), this->location()); + } + + bool + do_must_eval_in_order() const + { return true; } + + tree + do_get_tree(Translate_context*); + + private: + // The channel from which we are receiving. + Expression* channel_; + // Whether the value is being discarded. + bool is_value_discarded_; + // Whether this is for a select statement. + bool for_select_; +}; + +// A send expression. + +class Send_expression : public Expression +{ + public: + Send_expression(Expression* channel, Expression* val, + source_location location) + : Expression(EXPRESSION_SEND, location), + channel_(channel), val_(val), is_value_discarded_(false), + for_select_(false) + { } + + // Note that this is for a select statement. + void + set_for_select() + { this->for_select_ = true; } + + protected: + int + do_traverse(Traverse* traverse); + + void + do_discarding_value() + { this->is_value_discarded_ = true; } + + Type* + do_type(); + + void + do_determine_type(const Type_context*); + + void + do_check_types(Gogo*); + + Expression* + do_copy() + { + return Expression::make_send(this->channel_->copy(), this->val_->copy(), + this->location()); + } + + bool + do_must_eval_in_order() const + { return true; } + + tree + do_get_tree(Translate_context*); + + private: + // The channel on which to send the value. + Expression* channel_; + // The value to send. + Expression* val_; + // Whether the value is being discarded. + bool is_value_discarded_; + // Whether this is for a select statement. + bool for_select_; +}; + +#endif // !defined(GO_EXPRESSIONS_H) diff --git a/gcc/go/gofrontend/go-dump.cc b/gcc/go/gofrontend/go-dump.cc new file mode 100644 index 0000000..dd5a4c3 --- /dev/null +++ b/gcc/go/gofrontend/go-dump.cc @@ -0,0 +1,53 @@ +// go-dump.cc -- Go frontend debug dumps. + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +#include "go-system.h" + +#include "go-c.h" +#include "go-dump.h" + +namespace { + +// The list of dumps. + +Go_dump* dumps; + +} // End empty namespace. + +// Create a new dump. + +Go_dump::Go_dump(const char* name) + : next_(dumps), name_(name), is_enabled_(false) +{ + dumps = this; +} + +// Enable a dump by name. + +bool +Go_dump::enable_by_name(const char* name) +{ + bool is_all = strcmp(name, "all") == 0; + bool found = false; + for (Go_dump* p = dumps; p != NULL; p = p->next_) + { + if (is_all || strcmp(name, p->name_) == 0) + { + p->is_enabled_ = true; + found = true; + } + } + return found; +} + +// Enable a dump. Return 1 if this is a real name, 0 if not. + +GO_EXTERN_C +int +go_enable_dump(const char* name) +{ + return Go_dump::enable_by_name(name) ? 1 : 0; +} diff --git a/gcc/go/gofrontend/go-dump.h b/gcc/go/gofrontend/go-dump.h new file mode 100644 index 0000000..13639bc --- /dev/null +++ b/gcc/go/gofrontend/go-dump.h @@ -0,0 +1,38 @@ +// go-dump.h -- Go frontend debug dumps. -*- C++ -*- + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +#ifndef GO_DUMP_H +#define GO_DUMP_H + +// This class manages different arguments to -fgo-dump-XXX. If you +// want to create a new dump, create a variable of this type with the +// name to use for XXX. You can then use is_enabled to see whether +// the -fgo-dump-XXX option was used on the command line. + +class Go_dump +{ + public: + Go_dump(const char* name); + + // Whether this dump was enabled. + bool + is_enabled() const + { return this->is_enabled_; } + + // Enable a dump by name. Return true if the dump was found. + static bool + enable_by_name(const char*); + + private: + // The next dump. These are not in any order. + Go_dump* next_; + // The name of this dump. + const char* name_; + // Whether this dump was enabled. + bool is_enabled_; +}; + +#endif // !defined(GO_DUMP_H) diff --git a/gcc/go/gofrontend/go.cc b/gcc/go/gofrontend/go.cc new file mode 100644 index 0000000..c756084 --- /dev/null +++ b/gcc/go/gofrontend/go.cc @@ -0,0 +1,153 @@ +// go.cc -- Go frontend main file for gcc. + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +#include "go-system.h" + +#include "go-c.h" + +#include "lex.h" +#include "parse.h" +#include "gogo.h" + +// The unique prefix to use for exported symbols. This is set during +// option processing. + +static std::string unique_prefix; + +// The data structures we build to represent the file. +static Gogo* gogo; + +// Create the main IR data structure. + +GO_EXTERN_C +void +go_create_gogo(int int_type_size, int float_type_size, int pointer_size) +{ + gcc_assert(::gogo == NULL); + ::gogo = new Gogo(int_type_size, float_type_size, pointer_size); + if (!unique_prefix.empty()) + ::gogo->set_unique_prefix(unique_prefix); +} + +// Set the unique prefix we use for exported symbols. + +GO_EXTERN_C +void +go_set_prefix(const char* arg) +{ + unique_prefix = arg; + for (size_t i = 0; i < unique_prefix.length(); ++i) + { + char c = unique_prefix[i]; + if ((c >= 'a' && c <= 'z') + || (c >= 'A' && c <= 'Z') + || (c >= '0' && c <= '9') + || c == '_') + ; + else + unique_prefix[i] = '_'; + } +} + +// Parse the input files. + +GO_EXTERN_C +void +go_parse_input_files(const char** filenames, unsigned int filename_count, + bool only_check_syntax, bool require_return_statement) +{ + gcc_assert(filename_count > 0); + for (unsigned int i = 0; i < filename_count; ++i) + { + if (i > 0) + ::gogo->clear_file_scope(); + + const char* filename = filenames[i]; + FILE* file; + if (strcmp(filename, "-") == 0) + file = stdin; + else + { + file = fopen(filename, "r"); + if (file == NULL) + fatal_error("cannot open %s: %m", filename); + } + + Lex lexer(filename, file); + + Parse parse(&lexer, ::gogo); + parse.program(); + + if (strcmp(filename, "-") != 0) + fclose(file); + } + + ::gogo->clear_file_scope(); + + // If the global predeclared names are referenced but not defined, + // define them now. + ::gogo->define_global_names(); + + // Finalize method lists and build stub methods for named types. + ::gogo->finalize_methods(); + + // Now that we have seen all the names, lower the parse tree into a + // form which is easier to use. + ::gogo->lower_parse_tree(); + + // Now that we have seen all the names, verify that types are + // correct. + ::gogo->verify_types(); + + // Work out types of unspecified constants and variables. + ::gogo->determine_types(); + + // Check types and issue errors as appropriate. + ::gogo->check_types(); + + if (only_check_syntax) + return; + + // Check that functions have return statements. + if (require_return_statement) + ::gogo->check_return_statements(); + + // Export global identifiers as appropriate. + ::gogo->do_exports(); + + // Build required interface method tables. + ::gogo->build_interface_method_tables(); + + // Turn short-cut operators (&&, ||) into explicit if statements. + ::gogo->remove_shortcuts(); + + // Use temporary variables to force order of evaluation. + ::gogo->order_evaluations(); + + // Build thunks for functions which call recover. + ::gogo->build_recover_thunks(); + + // Convert complicated go and defer statements into simpler ones. + ::gogo->simplify_thunk_statements(); +} + +// Write out globals. + +GO_EXTERN_C +void +go_write_globals() +{ + return ::gogo->write_globals(); +} + +// Return the global IR structure. This is used by some of the +// langhooks to pass to other code. + +Gogo* +go_get_gogo() +{ + return ::gogo; +} diff --git a/gcc/go/gofrontend/gogo-tree.cc b/gcc/go/gofrontend/gogo-tree.cc new file mode 100644 index 0000000..755a0e9 --- /dev/null +++ b/gcc/go/gofrontend/gogo-tree.cc @@ -0,0 +1,3105 @@ +// gogo-tree.cc -- convert Go frontend Gogo IR to gcc trees. + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +#include "go-system.h" + +#include <gmp.h> + +#ifndef ENABLE_BUILD_WITH_CXX +extern "C" +{ +#endif + +#include "tm.h" +#include "toplev.h" +#include "tree.h" +#include "gimple.h" +#include "tree-iterator.h" +#include "cgraph.h" +#include "langhooks.h" +#include "convert.h" +#include "output.h" +#include "diagnostic.h" +#include "rtl.h" + +#ifndef ENABLE_BUILD_WITH_CXX +} +#endif + +#include "go-c.h" +#include "types.h" +#include "expressions.h" +#include "statements.h" +#include "gogo.h" + +// Whether we have seen any errors. + +bool +saw_errors() +{ + return errorcount != 0 || sorrycount != 0; +} + +// A helper function. + +static inline tree +get_identifier_from_string(const std::string& str) +{ + return get_identifier_with_length(str.data(), str.length()); +} + +// Builtin functions. + +static std::map<std::string, tree> builtin_functions; + +// Define a builtin function. BCODE is the builtin function code +// defined by builtins.def. NAME is the name of the builtin function. +// LIBNAME is the name of the corresponding library function, and is +// NULL if there isn't one. FNTYPE is the type of the function. +// CONST_P is true if the function has the const attribute. + +static void +define_builtin(built_in_function bcode, const char* name, const char* libname, + tree fntype, bool const_p) +{ + tree decl = add_builtin_function(name, fntype, bcode, BUILT_IN_NORMAL, + libname, NULL_TREE); + if (const_p) + TREE_READONLY(decl) = 1; + built_in_decls[bcode] = decl; + implicit_built_in_decls[bcode] = decl; + builtin_functions[name] = decl; + if (libname != NULL) + { + decl = add_builtin_function(libname, fntype, bcode, BUILT_IN_NORMAL, + NULL, NULL_TREE); + if (const_p) + TREE_READONLY(decl) = 1; + builtin_functions[libname] = decl; + } +} + +// Create trees for implicit builtin functions. + +void +Gogo::define_builtin_function_trees() +{ + /* We need to define the fetch_and_add functions, since we use them + for ++ and --. */ + tree t = go_type_for_size(BITS_PER_UNIT, 1); + tree p = build_pointer_type(build_qualified_type(t, TYPE_QUAL_VOLATILE)); + define_builtin(BUILT_IN_ADD_AND_FETCH_1, "__sync_fetch_and_add_1", NULL, + build_function_type_list(t, p, t, NULL_TREE), false); + + t = go_type_for_size(BITS_PER_UNIT * 2, 1); + p = build_pointer_type(build_qualified_type(t, TYPE_QUAL_VOLATILE)); + define_builtin (BUILT_IN_ADD_AND_FETCH_2, "__sync_fetch_and_add_2", NULL, + build_function_type_list(t, p, t, NULL_TREE), false); + + t = go_type_for_size(BITS_PER_UNIT * 4, 1); + p = build_pointer_type(build_qualified_type(t, TYPE_QUAL_VOLATILE)); + define_builtin(BUILT_IN_ADD_AND_FETCH_4, "__sync_fetch_and_add_4", NULL, + build_function_type_list(t, p, t, NULL_TREE), false); + + t = go_type_for_size(BITS_PER_UNIT * 8, 1); + p = build_pointer_type(build_qualified_type(t, TYPE_QUAL_VOLATILE)); + define_builtin(BUILT_IN_ADD_AND_FETCH_8, "__sync_fetch_and_add_8", NULL, + build_function_type_list(t, p, t, NULL_TREE), false); + + // We use __builtin_expect for magic import functions. + define_builtin(BUILT_IN_EXPECT, "__builtin_expect", NULL, + build_function_type_list(long_integer_type_node, + long_integer_type_node, + long_integer_type_node, + NULL_TREE), + true); + + // We use __builtin_memmove for the predeclared copy function. + define_builtin(BUILT_IN_MEMMOVE, "__builtin_memmove", "memmove", + build_function_type_list(ptr_type_node, + ptr_type_node, + const_ptr_type_node, + size_type_node, + NULL_TREE), + false); + + // We provide sqrt for the math library. + define_builtin(BUILT_IN_SQRT, "__builtin_sqrt", "sqrt", + build_function_type_list(double_type_node, + double_type_node, + NULL_TREE), + true); + define_builtin(BUILT_IN_SQRTL, "__builtin_sqrtl", "sqrtl", + build_function_type_list(long_double_type_node, + long_double_type_node, + NULL_TREE), + true); + + // We use __builtin_return_address in the thunk we build for + // functions which call recover. + define_builtin(BUILT_IN_RETURN_ADDRESS, "__builtin_return_address", NULL, + build_function_type_list(ptr_type_node, + unsigned_type_node, + NULL_TREE), + false); + + // The compiler uses __builtin_trap for some exception handling + // cases. + define_builtin(BUILT_IN_TRAP, "__builtin_trap", NULL, + build_function_type(void_type_node, void_list_node), + false); +} + +// Get the name to use for the import control function. If there is a +// global function or variable, then we know that that name must be +// unique in the link, and we use it as the basis for our name. + +const std::string& +Gogo::get_init_fn_name() +{ + if (this->init_fn_name_.empty()) + { + gcc_assert(this->package_ != NULL); + if (this->package_name() == "main") + { + // Use a name which the runtime knows. + this->init_fn_name_ = "__go_init_main"; + } + else + { + std::string s = this->unique_prefix(); + s.append(1, '.'); + s.append(this->package_name()); + s.append("..import"); + this->init_fn_name_ = s; + } + } + + return this->init_fn_name_; +} + +// Add statements to INIT_STMT_LIST which run the initialization +// functions for imported packages. This is only used for the "main" +// package. + +void +Gogo::init_imports(tree* init_stmt_list) +{ + gcc_assert(this->package_name() == "main"); + + if (this->imported_init_fns_.empty()) + return; + + tree fntype = build_function_type(void_type_node, void_list_node); + + // We must call them in increasing priority order. + std::vector<Import_init> v; + for (std::set<Import_init>::const_iterator p = + this->imported_init_fns_.begin(); + p != this->imported_init_fns_.end(); + ++p) + v.push_back(*p); + std::sort(v.begin(), v.end()); + + for (std::vector<Import_init>::const_iterator p = v.begin(); + p != v.end(); + ++p) + { + std::string user_name = p->package_name() + ".init"; + tree decl = build_decl(UNKNOWN_LOCATION, FUNCTION_DECL, + get_identifier_from_string(user_name), + fntype); + const std::string& init_name(p->init_name()); + SET_DECL_ASSEMBLER_NAME(decl, get_identifier_from_string(init_name)); + TREE_PUBLIC(decl) = 1; + DECL_EXTERNAL(decl) = 1; + append_to_statement_list(build_call_expr(decl, 0), init_stmt_list); + } +} + +// Register global variables with the garbage collector. We need to +// register all variables which can hold a pointer value. They become +// roots during the mark phase. We build a struct that is easy to +// hook into a list of roots. + +// struct __go_gc_root_list +// { +// struct __go_gc_root_list* __next; +// struct __go_gc_root +// { +// void* __decl; +// size_t __size; +// } __roots[]; +// }; + +// The last entry in the roots array has a NULL decl field. + +void +Gogo::register_gc_vars(const std::vector<Named_object*>& var_gc, + tree* init_stmt_list) +{ + if (var_gc.empty()) + return; + + size_t count = var_gc.size(); + + tree root_type = Gogo::builtin_struct(NULL, "__go_gc_root", NULL_TREE, 2, + "__next", + ptr_type_node, + "__size", + sizetype); + + tree index_type = build_index_type(size_int(count)); + tree array_type = build_array_type(root_type, index_type); + + tree root_list_type = make_node(RECORD_TYPE); + root_list_type = Gogo::builtin_struct(NULL, "__go_gc_root_list", + root_list_type, 2, + "__next", + build_pointer_type(root_list_type), + "__roots", + array_type); + + // Build an initialier for the __roots array. + + VEC(constructor_elt,gc)* roots_init = VEC_alloc(constructor_elt, gc, + count + 1); + + size_t i = 0; + for (std::vector<Named_object*>::const_iterator p = var_gc.begin(); + p != var_gc.end(); + ++p, ++i) + { + VEC(constructor_elt,gc)* init = VEC_alloc(constructor_elt, gc, 2); + + constructor_elt* elt = VEC_quick_push(constructor_elt, init, NULL); + tree field = TYPE_FIELDS(root_type); + elt->index = field; + tree decl = (*p)->get_tree(this, NULL); + gcc_assert(TREE_CODE(decl) == VAR_DECL); + elt->value = build_fold_addr_expr(decl); + + elt = VEC_quick_push(constructor_elt, init, NULL); + field = DECL_CHAIN(field); + elt->index = field; + elt->value = DECL_SIZE_UNIT(decl); + + elt = VEC_quick_push(constructor_elt, roots_init, NULL); + elt->index = size_int(i); + elt->value = build_constructor(root_type, init); + } + + // The list ends with a NULL entry. + + VEC(constructor_elt,gc)* init = VEC_alloc(constructor_elt, gc, 2); + + constructor_elt* elt = VEC_quick_push(constructor_elt, init, NULL); + tree field = TYPE_FIELDS(root_type); + elt->index = field; + elt->value = fold_convert(TREE_TYPE(field), null_pointer_node); + + elt = VEC_quick_push(constructor_elt, init, NULL); + field = DECL_CHAIN(field); + elt->index = field; + elt->value = size_zero_node; + + elt = VEC_quick_push(constructor_elt, roots_init, NULL); + elt->index = size_int(i); + elt->value = build_constructor(root_type, init); + + // Build a constructor for the struct. + + VEC(constructor_elt,gc*) root_list_init = VEC_alloc(constructor_elt, gc, 2); + + elt = VEC_quick_push(constructor_elt, root_list_init, NULL); + field = TYPE_FIELDS(root_list_type); + elt->index = field; + elt->value = fold_convert(TREE_TYPE(field), null_pointer_node); + + elt = VEC_quick_push(constructor_elt, root_list_init, NULL); + field = DECL_CHAIN(field); + elt->index = field; + elt->value = build_constructor(array_type, roots_init); + + // Build a decl to register. + + tree decl = build_decl(BUILTINS_LOCATION, VAR_DECL, + create_tmp_var_name("gc"), root_list_type); + DECL_EXTERNAL(decl) = 0; + TREE_PUBLIC(decl) = 0; + TREE_STATIC(decl) = 1; + DECL_ARTIFICIAL(decl) = 1; + DECL_INITIAL(decl) = build_constructor(root_list_type, root_list_init); + rest_of_decl_compilation(decl, 1, 0); + + static tree register_gc_fndecl; + tree call = Gogo::call_builtin(®ister_gc_fndecl, BUILTINS_LOCATION, + "__go_register_gc_roots", + 1, + void_type_node, + build_pointer_type(root_list_type), + build_fold_addr_expr(decl)); + append_to_statement_list(call, init_stmt_list); +} + +// Build the decl for the initialization function. + +tree +Gogo::initialization_function_decl() +{ + // The tedious details of building your own function. There doesn't + // seem to be a helper function for this. + std::string name = this->package_name() + ".init"; + tree fndecl = build_decl(BUILTINS_LOCATION, FUNCTION_DECL, + get_identifier_from_string(name), + build_function_type(void_type_node, + void_list_node)); + const std::string& asm_name(this->get_init_fn_name()); + SET_DECL_ASSEMBLER_NAME(fndecl, get_identifier_from_string(asm_name)); + + tree resdecl = build_decl(BUILTINS_LOCATION, RESULT_DECL, NULL_TREE, + void_type_node); + DECL_ARTIFICIAL(resdecl) = 1; + DECL_CONTEXT(resdecl) = fndecl; + DECL_RESULT(fndecl) = resdecl; + + TREE_STATIC(fndecl) = 1; + TREE_USED(fndecl) = 1; + DECL_ARTIFICIAL(fndecl) = 1; + TREE_PUBLIC(fndecl) = 1; + + DECL_INITIAL(fndecl) = make_node(BLOCK); + TREE_USED(DECL_INITIAL(fndecl)) = 1; + + return fndecl; +} + +// Create the magic initialization function. INIT_STMT_LIST is the +// code that it needs to run. + +void +Gogo::write_initialization_function(tree fndecl, tree init_stmt_list) +{ + // Make sure that we thought we needed an initialization function, + // as otherwise we will not have reported it in the export data. + gcc_assert(this->package_name() == "main" || this->need_init_fn_); + + if (fndecl == NULL_TREE) + fndecl = this->initialization_function_decl(); + + DECL_SAVED_TREE(fndecl) = init_stmt_list; + + current_function_decl = fndecl; + if (DECL_STRUCT_FUNCTION(fndecl) == NULL) + push_struct_function(fndecl); + else + push_cfun(DECL_STRUCT_FUNCTION(fndecl)); + cfun->function_end_locus = BUILTINS_LOCATION; + + gimplify_function_tree(fndecl); + + cgraph_add_new_function(fndecl, false); + cgraph_mark_needed_node(cgraph_node(fndecl)); + + current_function_decl = NULL_TREE; + pop_cfun(); +} + +// Search for references to VAR in any statements or called functions. + +class Find_var : public Traverse +{ + public: + // A hash table we use to avoid looping. The index is the name of a + // named object. We only look through objects defined in this + // package. + typedef Unordered_set(std::string) Seen_objects; + + Find_var(Named_object* var, Seen_objects* seen_objects) + : Traverse(traverse_expressions), + var_(var), seen_objects_(seen_objects), found_(false) + { } + + // Whether the variable was found. + bool + found() const + { return this->found_; } + + int + expression(Expression**); + + private: + // The variable we are looking for. + Named_object* var_; + // Names of objects we have already seen. + Seen_objects* seen_objects_; + // True if the variable was found. + bool found_; +}; + +// See if EXPR refers to VAR, looking through function calls and +// variable initializations. + +int +Find_var::expression(Expression** pexpr) +{ + Expression* e = *pexpr; + + Var_expression* ve = e->var_expression(); + if (ve != NULL) + { + Named_object* v = ve->named_object(); + if (v == this->var_) + { + this->found_ = true; + return TRAVERSE_EXIT; + } + + if (v->is_variable() && v->package() == NULL) + { + Expression* init = v->var_value()->init(); + if (init != NULL) + { + std::pair<Seen_objects::iterator, bool> ins = + this->seen_objects_->insert(v->name()); + if (ins.second) + { + // This is the first time we have seen this name. + if (Expression::traverse(&init, this) == TRAVERSE_EXIT) + return TRAVERSE_EXIT; + } + } + } + } + + // We traverse the code of any function we see. Note that this + // means that we will traverse the code of a function whose address + // is taken even if it is not called. + Func_expression* fe = e->func_expression(); + if (fe != NULL) + { + const Named_object* f = fe->named_object(); + if (f->is_function() && f->package() == NULL) + { + std::pair<Seen_objects::iterator, bool> ins = + this->seen_objects_->insert(f->name()); + if (ins.second) + { + // This is the first time we have seen this name. + if (f->func_value()->block()->traverse(this) == TRAVERSE_EXIT) + return TRAVERSE_EXIT; + } + } + } + + return TRAVERSE_CONTINUE; +} + +// Return true if EXPR refers to VAR. + +static bool +expression_requires(Expression* expr, Block* preinit, Named_object* var) +{ + Find_var::Seen_objects seen_objects; + Find_var find_var(var, &seen_objects); + if (expr != NULL) + Expression::traverse(&expr, &find_var); + if (preinit != NULL) + preinit->traverse(&find_var); + + return find_var.found(); +} + +// Sort variable initializations. If the initialization expression +// for variable A refers directly or indirectly to the initialization +// expression for variable B, then we must initialize B before A. + +class Var_init +{ + public: + Var_init() + : var_(NULL), init_(NULL_TREE), waiting_(0) + { } + + Var_init(Named_object* var, tree init) + : var_(var), init_(init), waiting_(0) + { } + + // Return the variable. + Named_object* + var() const + { return this->var_; } + + // Return the initialization expression. + tree + init() const + { return this->init_; } + + // Return the number of variables waiting for this one to be + // initialized. + size_t + waiting() const + { return this->waiting_; } + + // Increment the number waiting. + void + increment_waiting() + { ++this->waiting_; } + + private: + // The variable being initialized. + Named_object* var_; + // The initialization expression to run. + tree init_; + // The number of variables which are waiting for this one. + size_t waiting_; +}; + +typedef std::list<Var_init> Var_inits; + +// Sort the variable initializations. The rule we follow is that we +// emit them in the order they appear in the array, except that if the +// initialization expression for a variable V1 depends upon another +// variable V2 then we initialize V1 after V2. + +static void +sort_var_inits(Var_inits* var_inits) +{ + Var_inits ready; + while (!var_inits->empty()) + { + Var_inits::iterator p1 = var_inits->begin(); + Named_object* var = p1->var(); + Expression* init = var->var_value()->init(); + Block* preinit = var->var_value()->preinit(); + + // Start walking through the list to see which variables VAR + // needs to wait for. We can skip P1->WAITING variables--that + // is the number we've already checked. + Var_inits::iterator p2 = p1; + ++p2; + for (size_t i = p1->waiting(); i > 0; --i) + ++p2; + + for (; p2 != var_inits->end(); ++p2) + { + if (expression_requires(init, preinit, p2->var())) + { + // Check for cycles. + if (expression_requires(p2->var()->var_value()->init(), + p2->var()->var_value()->preinit(), + var)) + { + error_at(var->location(), + ("initialization expressions for %qs and " + "%qs depend upon each other"), + var->message_name().c_str(), + p2->var()->message_name().c_str()); + inform(p2->var()->location(), "%qs defined here", + p2->var()->message_name().c_str()); + p2 = var_inits->end(); + } + else + { + // We can't emit P1 until P2 is emitted. Move P1. + // Note that the WAITING loop always executes at + // least once, which is what we want. + p2->increment_waiting(); + Var_inits::iterator p3 = p2; + for (size_t i = p2->waiting(); i > 0; --i) + ++p3; + var_inits->splice(p3, *var_inits, p1); + } + break; + } + } + + if (p2 == var_inits->end()) + { + // VAR does not depends upon any other initialization expressions. + + // Check for a loop of VAR on itself. We only do this if + // INIT is not NULL; when INIT is NULL, it means that + // PREINIT sets VAR, which we will interpret as a loop. + if (init != NULL && expression_requires(init, preinit, var)) + error_at(var->location(), + "initialization expression for %qs depends upon itself", + var->message_name().c_str()); + ready.splice(ready.end(), *var_inits, p1); + } + } + + // Now READY is the list in the desired initialization order. + var_inits->swap(ready); +} + +// Write out the global definitions. + +void +Gogo::write_globals() +{ + Bindings* bindings = this->current_bindings(); + size_t count = bindings->size_definitions(); + + tree* vec = new tree[count]; + + tree init_fndecl = NULL_TREE; + tree init_stmt_list = NULL_TREE; + + if (this->package_name() == "main") + this->init_imports(&init_stmt_list); + + // A list of variable initializations. + Var_inits var_inits; + + // A list of variables which need to be registered with the garbage + // collector. + std::vector<Named_object*> var_gc; + var_gc.reserve(count); + + tree var_init_stmt_list = NULL_TREE; + size_t i = 0; + for (Bindings::const_definitions_iterator p = bindings->begin_definitions(); + p != bindings->end_definitions(); + ++p, ++i) + { + Named_object* no = *p; + + gcc_assert(!no->is_type_declaration() && !no->is_function_declaration()); + // There is nothing to do for a package. + if (no->is_package()) + { + --i; + --count; + continue; + } + + // There is nothing to do for an object which was imported from + // a different package into the global scope. + if (no->package() != NULL) + { + --i; + --count; + continue; + } + + // There is nothing useful we can output for constants which + // have ideal or non-integeral type. + if (no->is_const()) + { + Type* type = no->const_value()->type(); + if (type == NULL) + type = no->const_value()->expr()->type(); + if (type->is_abstract() || type->integer_type() == NULL) + { + --i; + --count; + continue; + } + } + + vec[i] = no->get_tree(this, NULL); + + if (vec[i] == error_mark_node) + { + gcc_assert(saw_errors()); + --i; + --count; + continue; + } + + // If a variable is initialized to a non-constant value, do the + // initialization in an initialization function. + if (TREE_CODE(vec[i]) == VAR_DECL) + { + gcc_assert(no->is_variable()); + + // Check for a sink variable, which may be used to run + // an initializer purely for its side effects. + bool is_sink = no->name()[0] == '_' && no->name()[1] == '.'; + + tree var_init_tree = NULL_TREE; + if (!no->var_value()->has_pre_init()) + { + tree init = no->var_value()->get_init_tree(this, NULL); + if (init == error_mark_node) + gcc_assert(saw_errors()); + else if (init == NULL_TREE) + ; + else if (TREE_CONSTANT(init)) + DECL_INITIAL(vec[i]) = init; + else if (is_sink) + var_init_tree = init; + else + var_init_tree = fold_build2_loc(no->location(), MODIFY_EXPR, + void_type_node, vec[i], init); + } + else + { + // We are going to create temporary variables which + // means that we need an fndecl. + if (init_fndecl == NULL_TREE) + init_fndecl = this->initialization_function_decl(); + current_function_decl = init_fndecl; + if (DECL_STRUCT_FUNCTION(init_fndecl) == NULL) + push_struct_function(init_fndecl); + else + push_cfun(DECL_STRUCT_FUNCTION(init_fndecl)); + + tree var_decl = is_sink ? NULL_TREE : vec[i]; + var_init_tree = no->var_value()->get_init_block(this, NULL, + var_decl); + + current_function_decl = NULL_TREE; + pop_cfun(); + } + + if (var_init_tree != NULL_TREE) + { + if (no->var_value()->init() == NULL + && !no->var_value()->has_pre_init()) + append_to_statement_list(var_init_tree, &var_init_stmt_list); + else + var_inits.push_back(Var_init(no, var_init_tree)); + } + + if (!is_sink && no->var_value()->type()->has_pointer()) + var_gc.push_back(no); + } + } + + // Register global variables with the garbage collector. + this->register_gc_vars(var_gc, &init_stmt_list); + + // Simple variable initializations, after all variables are + // registered. + append_to_statement_list(var_init_stmt_list, &init_stmt_list); + + // Complex variable initializations, first sorting them into a + // workable order. + if (!var_inits.empty()) + { + sort_var_inits(&var_inits); + for (Var_inits::const_iterator p = var_inits.begin(); + p != var_inits.end(); + ++p) + append_to_statement_list(p->init(), &init_stmt_list); + } + + // After all the variables are initialized, call the "init" + // functions if there are any. + for (std::vector<Named_object*>::const_iterator p = + this->init_functions_.begin(); + p != this->init_functions_.end(); + ++p) + { + tree decl = (*p)->get_tree(this, NULL); + tree call = build_call_expr(decl, 0); + append_to_statement_list(call, &init_stmt_list); + } + + // Set up a magic function to do all the initialization actions. + // This will be called if this package is imported. + if (init_stmt_list != NULL_TREE + || this->need_init_fn_ + || this->package_name() == "main") + this->write_initialization_function(init_fndecl, init_stmt_list); + + // Pass everything back to the middle-end. + + if (this->imported_unsafe_) + { + // Importing the "unsafe" package automatically disables TBAA. + flag_strict_aliasing = false; + + // This is a real hack. init_varasm_once has already grabbed an + // alias set, which we don't want when we aren't going strict + // aliasing. We reinitialize to make it do it again. FIXME. + init_varasm_once(); + } + + wrapup_global_declarations(vec, count); + + cgraph_finalize_compilation_unit(); + + check_global_declarations(vec, count); + emit_debug_global_declarations(vec, count); + + delete[] vec; +} + +// Get a tree for the identifier for a named object. + +tree +Named_object::get_id(Gogo* gogo) +{ + std::string decl_name; + if (this->is_function_declaration() + && !this->func_declaration_value()->asm_name().empty()) + decl_name = this->func_declaration_value()->asm_name(); + else if ((this->is_variable() && !this->var_value()->is_global()) + || (this->is_type() + && this->type_value()->location() == BUILTINS_LOCATION)) + { + // We don't need the package name for local variables or builtin + // types. + decl_name = Gogo::unpack_hidden_name(this->name_); + } + else if (this->is_function() + && !this->func_value()->is_method() + && this->package_ == NULL + && Gogo::unpack_hidden_name(this->name_) == "init") + { + // A single package can have multiple "init" functions, which + // means that we need to give them different names. + static int init_index; + char buf[20]; + snprintf(buf, sizeof buf, "%d", init_index); + ++init_index; + decl_name = gogo->package_name() + ".init." + buf; + } + else + { + std::string package_name; + if (this->package_ == NULL) + package_name = gogo->package_name(); + else + package_name = this->package_->name(); + + decl_name = package_name + '.' + Gogo::unpack_hidden_name(this->name_); + + Function_type* fntype; + if (this->is_function()) + fntype = this->func_value()->type(); + else if (this->is_function_declaration()) + fntype = this->func_declaration_value()->type(); + else + fntype = NULL; + if (fntype != NULL && fntype->is_method()) + { + decl_name.push_back('.'); + decl_name.append(fntype->receiver()->type()->mangled_name(gogo)); + } + } + if (this->is_type()) + { + const Named_object* in_function = this->type_value()->in_function(); + if (in_function != NULL) + decl_name += '$' + in_function->name(); + } + return get_identifier_from_string(decl_name); +} + +// Get a tree for a named object. + +tree +Named_object::get_tree(Gogo* gogo, Named_object* function) +{ + if (this->tree_ != NULL_TREE) + { + // If this is a variable whose address is taken, we must rebuild + // the INDIRECT_REF each time to avoid invalid sharing. + tree ret = this->tree_; + if (((this->classification_ == NAMED_OBJECT_VAR + && this->var_value()->is_in_heap()) + || (this->classification_ == NAMED_OBJECT_RESULT_VAR + && this->result_var_value()->is_in_heap())) + && ret != error_mark_node) + { + gcc_assert(TREE_CODE(ret) == INDIRECT_REF); + ret = build_fold_indirect_ref(TREE_OPERAND(ret, 0)); + TREE_THIS_NOTRAP(ret) = 1; + } + return ret; + } + + tree name; + if (this->classification_ == NAMED_OBJECT_TYPE) + name = NULL_TREE; + else + name = this->get_id(gogo); + tree decl; + switch (this->classification_) + { + case NAMED_OBJECT_CONST: + { + Named_constant* named_constant = this->u_.const_value; + Translate_context subcontext(gogo, function, NULL, NULL_TREE); + tree expr_tree = named_constant->expr()->get_tree(&subcontext); + if (expr_tree == error_mark_node) + decl = error_mark_node; + else + { + Type* type = named_constant->type(); + if (type != NULL && !type->is_abstract()) + expr_tree = fold_convert(type->get_tree(gogo), expr_tree); + if (expr_tree == error_mark_node) + decl = error_mark_node; + else if (INTEGRAL_TYPE_P(TREE_TYPE(expr_tree))) + { + decl = build_decl(named_constant->location(), CONST_DECL, + name, TREE_TYPE(expr_tree)); + DECL_INITIAL(decl) = expr_tree; + TREE_CONSTANT(decl) = 1; + TREE_READONLY(decl) = 1; + } + else + { + // A CONST_DECL is only for an enum constant, so we + // shouldn't use for non-integral types. Instead we + // just return the constant itself, rather than a + // decl. + decl = expr_tree; + } + } + } + break; + + case NAMED_OBJECT_TYPE: + { + Named_type* named_type = this->u_.type_value; + tree type_tree = named_type->get_tree(gogo); + if (type_tree == error_mark_node) + decl = error_mark_node; + else + { + decl = TYPE_NAME(type_tree); + gcc_assert(decl != NULL_TREE); + + // We need to produce a type descriptor for every named + // type, and for a pointer to every named type, since + // other files or packages might refer to them. We need + // to do this even for hidden types, because they might + // still be returned by some function. Simply calling the + // type_descriptor method is enough to create the type + // descriptor, even though we don't do anything with it. + if (this->package_ == NULL) + { + named_type->type_descriptor_pointer(gogo); + Type* pn = Type::make_pointer_type(named_type); + pn->type_descriptor_pointer(gogo); + } + } + } + break; + + case NAMED_OBJECT_TYPE_DECLARATION: + error("reference to undefined type %qs", + this->message_name().c_str()); + return error_mark_node; + + case NAMED_OBJECT_VAR: + { + Variable* var = this->u_.var_value; + Type* type = var->type(); + if (type->is_error_type() + || (type->is_undefined() + && (!var->is_global() || this->package() == NULL))) + { + // Force the error for an undefined type, just in case. + type->base(); + decl = error_mark_node; + } + else + { + tree var_type = type->get_tree(gogo); + bool is_parameter = var->is_parameter(); + if (var->is_receiver() && type->points_to() == NULL) + is_parameter = false; + if (var->is_in_heap()) + { + is_parameter = false; + var_type = build_pointer_type(var_type); + } + decl = build_decl(var->location(), + is_parameter ? PARM_DECL : VAR_DECL, + name, var_type); + if (!var->is_global()) + { + tree fnid = function->get_id(gogo); + tree fndecl = function->func_value()->get_or_make_decl(gogo, + function, + fnid); + DECL_CONTEXT(decl) = fndecl; + } + if (is_parameter) + DECL_ARG_TYPE(decl) = TREE_TYPE(decl); + + if (var->is_global()) + { + const Package* package = this->package(); + if (package == NULL) + TREE_STATIC(decl) = 1; + else + DECL_EXTERNAL(decl) = 1; + if (!Gogo::is_hidden_name(this->name_)) + { + TREE_PUBLIC(decl) = 1; + std::string asm_name = (package == NULL + ? gogo->unique_prefix() + : package->unique_prefix()); + asm_name.append(1, '.'); + asm_name.append(IDENTIFIER_POINTER(name), + IDENTIFIER_LENGTH(name)); + tree asm_id = get_identifier_from_string(asm_name); + SET_DECL_ASSEMBLER_NAME(decl, asm_id); + } + } + + // FIXME: We should only set this for variables which are + // actually used somewhere. + TREE_USED(decl) = 1; + } + } + break; + + case NAMED_OBJECT_RESULT_VAR: + { + Result_variable* result = this->u_.result_var_value; + Type* type = result->type(); + if (type->is_error_type() || type->is_undefined()) + { + // Force the error. + type->base(); + decl = error_mark_node; + } + else + { + gcc_assert(result->function() == function->func_value()); + source_location loc = function->location(); + tree result_type = type->get_tree(gogo); + tree init; + if (!result->is_in_heap()) + init = type->get_init_tree(gogo, false); + else + { + tree space = gogo->allocate_memory(type, + TYPE_SIZE_UNIT(result_type), + loc); + result_type = build_pointer_type(result_type); + tree subinit = type->get_init_tree(gogo, true); + if (subinit == NULL_TREE) + init = fold_convert_loc(loc, result_type, space); + else + { + space = save_expr(space); + space = fold_convert_loc(loc, result_type, space); + tree spaceref = build_fold_indirect_ref_loc(loc, space); + TREE_THIS_NOTRAP(spaceref) = 1; + tree set = fold_build2_loc(loc, MODIFY_EXPR, void_type_node, + spaceref, subinit); + init = fold_build2_loc(loc, COMPOUND_EXPR, TREE_TYPE(space), + set, space); + } + } + decl = build_decl(loc, VAR_DECL, name, result_type); + tree fnid = function->get_id(gogo); + tree fndecl = function->func_value()->get_or_make_decl(gogo, + function, + fnid); + DECL_CONTEXT(decl) = fndecl; + DECL_INITIAL(decl) = init; + TREE_USED(decl) = 1; + } + } + break; + + case NAMED_OBJECT_SINK: + gcc_unreachable(); + + case NAMED_OBJECT_FUNC: + { + Function* func = this->u_.func_value; + decl = func->get_or_make_decl(gogo, this, name); + if (decl != error_mark_node) + { + if (func->block() != NULL) + { + if (DECL_STRUCT_FUNCTION(decl) == NULL) + push_struct_function(decl); + else + push_cfun(DECL_STRUCT_FUNCTION(decl)); + + cfun->function_end_locus = func->block()->end_location(); + + current_function_decl = decl; + + func->build_tree(gogo, this); + + gimplify_function_tree(decl); + + cgraph_finalize_function(decl, true); + + current_function_decl = NULL_TREE; + pop_cfun(); + } + } + } + break; + + default: + gcc_unreachable(); + } + + if (TREE_TYPE(decl) == error_mark_node) + decl = error_mark_node; + + tree ret = decl; + + // If this is a local variable whose address is taken, then we + // actually store it in the heap. For uses of the variable we need + // to return a reference to that heap location. + if (((this->classification_ == NAMED_OBJECT_VAR + && this->var_value()->is_in_heap()) + || (this->classification_ == NAMED_OBJECT_RESULT_VAR + && this->result_var_value()->is_in_heap())) + && ret != error_mark_node) + { + gcc_assert(POINTER_TYPE_P(TREE_TYPE(ret))); + ret = build_fold_indirect_ref(ret); + TREE_THIS_NOTRAP(ret) = 1; + } + + this->tree_ = ret; + + if (ret != error_mark_node) + go_preserve_from_gc(ret); + + return ret; +} + +// Get the initial value of a variable as a tree. This does not +// consider whether the variable is in the heap--it returns the +// initial value as though it were always stored in the stack. + +tree +Variable::get_init_tree(Gogo* gogo, Named_object* function) +{ + gcc_assert(this->preinit_ == NULL); + if (this->init_ == NULL) + { + gcc_assert(!this->is_parameter_); + return this->type_->get_init_tree(gogo, this->is_global_); + } + else + { + Translate_context context(gogo, function, NULL, NULL_TREE); + tree rhs_tree = this->init_->get_tree(&context); + return Expression::convert_for_assignment(&context, this->type(), + this->init_->type(), + rhs_tree, this->location()); + } +} + +// Get the initial value of a variable when a block is required. +// VAR_DECL is the decl to set; it may be NULL for a sink variable. + +tree +Variable::get_init_block(Gogo* gogo, Named_object* function, tree var_decl) +{ + gcc_assert(this->preinit_ != NULL); + + // We want to add the variable assignment to the end of the preinit + // block. The preinit block may have a TRY_FINALLY_EXPR and a + // TRY_CATCH_EXPR; if it does, we want to add to the end of the + // regular statements. + + Translate_context context(gogo, function, NULL, NULL_TREE); + tree block_tree = this->preinit_->get_tree(&context); + gcc_assert(TREE_CODE(block_tree) == BIND_EXPR); + tree statements = BIND_EXPR_BODY(block_tree); + while (TREE_CODE(statements) == TRY_FINALLY_EXPR + || TREE_CODE(statements) == TRY_CATCH_EXPR) + statements = TREE_OPERAND(statements, 0); + + // It's possible to have pre-init statements without an initializer + // if the pre-init statements set the variable. + if (this->init_ != NULL) + { + tree rhs_tree = this->init_->get_tree(&context); + if (var_decl == NULL_TREE) + append_to_statement_list(rhs_tree, &statements); + else + { + tree val = Expression::convert_for_assignment(&context, this->type(), + this->init_->type(), + rhs_tree, + this->location()); + tree set = fold_build2_loc(this->location(), MODIFY_EXPR, + void_type_node, var_decl, val); + append_to_statement_list(set, &statements); + } + } + + return block_tree; +} + +// Get a tree for a function decl. + +tree +Function::get_or_make_decl(Gogo* gogo, Named_object* no, tree id) +{ + if (this->fndecl_ == NULL_TREE) + { + tree functype = this->type_->get_tree(gogo); + if (functype == error_mark_node) + this->fndecl_ = error_mark_node; + else + { + // The type of a function comes back as a pointer, but we + // want the real function type for a function declaration. + gcc_assert(POINTER_TYPE_P(functype)); + functype = TREE_TYPE(functype); + tree decl = build_decl(this->location(), FUNCTION_DECL, id, functype); + + this->fndecl_ = decl; + + gcc_assert(no->package() == NULL); + if (this->enclosing_ != NULL || Gogo::is_thunk(no)) + ; + else if (Gogo::unpack_hidden_name(no->name()) == "init" + && !this->type_->is_method()) + ; + else if (Gogo::unpack_hidden_name(no->name()) == "main" + && gogo->package_name() == "main") + TREE_PUBLIC(decl) = 1; + // Methods have to be public even if they are hidden because + // they can be pulled into type descriptors when using + // anonymous fields. + else if (!Gogo::is_hidden_name(no->name()) + || this->type_->is_method()) + { + TREE_PUBLIC(decl) = 1; + std::string asm_name = gogo->unique_prefix(); + asm_name.append(1, '.'); + asm_name.append(IDENTIFIER_POINTER(id), IDENTIFIER_LENGTH(id)); + SET_DECL_ASSEMBLER_NAME(decl, + get_identifier_from_string(asm_name)); + } + + // Why do we have to do this in the frontend? + tree restype = TREE_TYPE(functype); + tree resdecl = build_decl(this->location(), RESULT_DECL, NULL_TREE, + restype); + DECL_ARTIFICIAL(resdecl) = 1; + DECL_IGNORED_P(resdecl) = 1; + DECL_CONTEXT(resdecl) = decl; + DECL_RESULT(decl) = resdecl; + + if (this->enclosing_ != NULL) + DECL_STATIC_CHAIN(decl) = 1; + + // If a function calls the predeclared recover function, we + // can't inline it, because recover behaves differently in a + // function passed directly to defer. + if (this->calls_recover_ && !this->is_recover_thunk_) + DECL_UNINLINABLE(decl) = 1; + + // If this is a thunk created to call a function which calls + // the predeclared recover function, we need to disable + // stack splitting for the thunk. + if (this->is_recover_thunk_) + { + tree attr = get_identifier("__no_split_stack__"); + DECL_ATTRIBUTES(decl) = tree_cons(attr, NULL_TREE, NULL_TREE); + } + + go_preserve_from_gc(decl); + + if (this->closure_var_ != NULL) + { + push_struct_function(decl); + + tree closure_decl = this->closure_var_->get_tree(gogo, no); + + DECL_ARTIFICIAL(closure_decl) = 1; + DECL_IGNORED_P(closure_decl) = 1; + TREE_USED(closure_decl) = 1; + DECL_ARG_TYPE(closure_decl) = TREE_TYPE(closure_decl); + TREE_READONLY(closure_decl) = 1; + + DECL_STRUCT_FUNCTION(decl)->static_chain_decl = closure_decl; + pop_cfun(); + } + } + } + return this->fndecl_; +} + +// Get a tree for a function declaration. + +tree +Function_declaration::get_or_make_decl(Gogo* gogo, Named_object* no, tree id) +{ + if (this->fndecl_ == NULL_TREE) + { + // Let Go code use an asm declaration to pick up a builtin + // function. + if (!this->asm_name_.empty()) + { + std::map<std::string, tree>::const_iterator p = + builtin_functions.find(this->asm_name_); + if (p != builtin_functions.end()) + { + this->fndecl_ = p->second; + return this->fndecl_; + } + } + + tree functype = this->fntype_->get_tree(gogo); + tree decl; + if (functype == error_mark_node) + decl = error_mark_node; + else + { + // The type of a function comes back as a pointer, but we + // want the real function type for a function declaration. + gcc_assert(POINTER_TYPE_P(functype)); + functype = TREE_TYPE(functype); + decl = build_decl(this->location(), FUNCTION_DECL, id, functype); + TREE_PUBLIC(decl) = 1; + DECL_EXTERNAL(decl) = 1; + + if (this->asm_name_.empty()) + { + std::string asm_name = (no->package() == NULL + ? gogo->unique_prefix() + : no->package()->unique_prefix()); + asm_name.append(1, '.'); + asm_name.append(IDENTIFIER_POINTER(id), IDENTIFIER_LENGTH(id)); + SET_DECL_ASSEMBLER_NAME(decl, + get_identifier_from_string(asm_name)); + } + } + this->fndecl_ = decl; + go_preserve_from_gc(decl); + } + return this->fndecl_; +} + +// We always pass the receiver to a method as a pointer. If the +// receiver is actually declared as a non-pointer type, then we copy +// the value into a local variable, so that it has the right type. In +// this function we create the real PARM_DECL to use, and set +// DEC_INITIAL of the var_decl to be the value passed in. + +tree +Function::make_receiver_parm_decl(Gogo* gogo, Named_object* no, tree var_decl) +{ + // If the function takes the address of a receiver which is passed + // by value, then we will have an INDIRECT_REF here. We need to get + // the real variable. + bool is_in_heap = no->var_value()->is_in_heap(); + tree val_type; + if (TREE_CODE(var_decl) != INDIRECT_REF) + { + gcc_assert(!is_in_heap); + val_type = TREE_TYPE(var_decl); + } + else + { + gcc_assert(is_in_heap); + var_decl = TREE_OPERAND(var_decl, 0); + gcc_assert(POINTER_TYPE_P(TREE_TYPE(var_decl))); + val_type = TREE_TYPE(TREE_TYPE(var_decl)); + } + gcc_assert(TREE_CODE(var_decl) == VAR_DECL); + source_location loc = DECL_SOURCE_LOCATION(var_decl); + std::string name = IDENTIFIER_POINTER(DECL_NAME(var_decl)); + name += ".pointer"; + tree id = get_identifier_from_string(name); + tree parm_decl = build_decl(loc, PARM_DECL, id, build_pointer_type(val_type)); + DECL_CONTEXT(parm_decl) = current_function_decl; + DECL_ARG_TYPE(parm_decl) = TREE_TYPE(parm_decl); + + gcc_assert(DECL_INITIAL(var_decl) == NULL_TREE); + // The receiver might be passed as a null pointer. + tree check = fold_build2_loc(loc, NE_EXPR, boolean_type_node, parm_decl, + fold_convert_loc(loc, TREE_TYPE(parm_decl), + null_pointer_node)); + tree ind = build_fold_indirect_ref_loc(loc, parm_decl); + TREE_THIS_NOTRAP(ind) = 1; + tree zero_init = no->var_value()->type()->get_init_tree(gogo, false); + tree init = fold_build3_loc(loc, COND_EXPR, TREE_TYPE(ind), + check, ind, zero_init); + + if (is_in_heap) + { + tree size = TYPE_SIZE_UNIT(val_type); + tree space = gogo->allocate_memory(no->var_value()->type(), size, + no->location()); + space = save_expr(space); + space = fold_convert(build_pointer_type(val_type), space); + tree spaceref = build_fold_indirect_ref_loc(no->location(), space); + TREE_THIS_NOTRAP(spaceref) = 1; + tree check = fold_build2_loc(loc, NE_EXPR, boolean_type_node, + parm_decl, + fold_convert_loc(loc, TREE_TYPE(parm_decl), + null_pointer_node)); + tree parmref = build_fold_indirect_ref_loc(no->location(), parm_decl); + TREE_THIS_NOTRAP(parmref) = 1; + tree set = fold_build2_loc(loc, MODIFY_EXPR, void_type_node, + spaceref, parmref); + init = fold_build2_loc(loc, COMPOUND_EXPR, TREE_TYPE(space), + build3(COND_EXPR, void_type_node, + check, set, NULL_TREE), + space); + } + + DECL_INITIAL(var_decl) = init; + + return parm_decl; +} + +// If we take the address of a parameter, then we need to copy it into +// the heap. We will access it as a local variable via an +// indirection. + +tree +Function::copy_parm_to_heap(Gogo* gogo, Named_object* no, tree ref) +{ + gcc_assert(TREE_CODE(ref) == INDIRECT_REF); + + tree var_decl = TREE_OPERAND(ref, 0); + gcc_assert(TREE_CODE(var_decl) == VAR_DECL); + source_location loc = DECL_SOURCE_LOCATION(var_decl); + + std::string name = IDENTIFIER_POINTER(DECL_NAME(var_decl)); + name += ".param"; + tree id = get_identifier_from_string(name); + + tree type = TREE_TYPE(var_decl); + gcc_assert(POINTER_TYPE_P(type)); + type = TREE_TYPE(type); + + tree parm_decl = build_decl(loc, PARM_DECL, id, type); + DECL_CONTEXT(parm_decl) = current_function_decl; + DECL_ARG_TYPE(parm_decl) = type; + + tree size = TYPE_SIZE_UNIT(type); + tree space = gogo->allocate_memory(no->var_value()->type(), size, loc); + space = save_expr(space); + space = fold_convert(TREE_TYPE(var_decl), space); + tree spaceref = build_fold_indirect_ref_loc(loc, space); + TREE_THIS_NOTRAP(spaceref) = 1; + tree init = build2(COMPOUND_EXPR, TREE_TYPE(space), + build2(MODIFY_EXPR, void_type_node, spaceref, parm_decl), + space); + DECL_INITIAL(var_decl) = init; + + return parm_decl; +} + +// Get a tree for function code. + +void +Function::build_tree(Gogo* gogo, Named_object* named_function) +{ + tree fndecl = this->fndecl_; + gcc_assert(fndecl != NULL_TREE); + + tree params = NULL_TREE; + tree* pp = ¶ms; + + tree declare_vars = NULL_TREE; + for (Bindings::const_definitions_iterator p = + this->block_->bindings()->begin_definitions(); + p != this->block_->bindings()->end_definitions(); + ++p) + { + if ((*p)->is_variable() && (*p)->var_value()->is_parameter()) + { + *pp = (*p)->get_tree(gogo, named_function); + + // We always pass the receiver to a method as a pointer. If + // the receiver is declared as a non-pointer type, then we + // copy the value into a local variable. + if ((*p)->var_value()->is_receiver() + && (*p)->var_value()->type()->points_to() == NULL) + { + tree parm_decl = this->make_receiver_parm_decl(gogo, *p, *pp); + tree var = *pp; + if (TREE_CODE(var) == INDIRECT_REF) + var = TREE_OPERAND(var, 0); + gcc_assert(TREE_CODE(var) == VAR_DECL); + DECL_CHAIN(var) = declare_vars; + declare_vars = var; + *pp = parm_decl; + } + else if ((*p)->var_value()->is_in_heap()) + { + // If we take the address of a parameter, then we need + // to copy it into the heap. + tree parm_decl = this->copy_parm_to_heap(gogo, *p, *pp); + gcc_assert(TREE_CODE(*pp) == INDIRECT_REF); + tree var_decl = TREE_OPERAND(*pp, 0); + gcc_assert(TREE_CODE(var_decl) == VAR_DECL); + DECL_CHAIN(var_decl) = declare_vars; + declare_vars = var_decl; + *pp = parm_decl; + } + + if (*pp != error_mark_node) + { + gcc_assert(TREE_CODE(*pp) == PARM_DECL); + pp = &DECL_CHAIN(*pp); + } + } + else if ((*p)->is_result_variable()) + { + tree var_decl = (*p)->get_tree(gogo, named_function); + if ((*p)->result_var_value()->is_in_heap()) + { + gcc_assert(TREE_CODE(var_decl) == INDIRECT_REF); + var_decl = TREE_OPERAND(var_decl, 0); + } + gcc_assert(TREE_CODE(var_decl) == VAR_DECL); + DECL_CHAIN(var_decl) = declare_vars; + declare_vars = var_decl; + } + } + *pp = NULL_TREE; + + DECL_ARGUMENTS(fndecl) = params; + + if (this->block_ != NULL) + { + gcc_assert(DECL_INITIAL(fndecl) == NULL_TREE); + + // Declare variables if necessary. + tree bind = NULL_TREE; + if (declare_vars != NULL_TREE) + { + tree block = make_node(BLOCK); + BLOCK_SUPERCONTEXT(block) = fndecl; + DECL_INITIAL(fndecl) = block; + BLOCK_VARS(block) = declare_vars; + TREE_USED(block) = 1; + bind = build3(BIND_EXPR, void_type_node, BLOCK_VARS(block), + NULL_TREE, block); + TREE_SIDE_EFFECTS(bind) = 1; + } + + // Build the trees for all the statements in the function. + Translate_context context(gogo, named_function, NULL, NULL_TREE); + tree code = this->block_->get_tree(&context); + + tree init = NULL_TREE; + tree except = NULL_TREE; + tree fini = NULL_TREE; + + // Initialize variables if necessary. + for (tree v = declare_vars; v != NULL_TREE; v = DECL_CHAIN(v)) + { + tree dv = build1(DECL_EXPR, void_type_node, v); + SET_EXPR_LOCATION(dv, DECL_SOURCE_LOCATION(v)); + append_to_statement_list(dv, &init); + } + + // If we have a defer stack, initialize it at the start of a + // function. + if (this->defer_stack_ != NULL_TREE) + { + tree defer_init = build1(DECL_EXPR, void_type_node, + this->defer_stack_); + SET_EXPR_LOCATION(defer_init, this->block_->start_location()); + append_to_statement_list(defer_init, &init); + + // Clean up the defer stack when we leave the function. + this->build_defer_wrapper(gogo, named_function, &except, &fini); + } + + if (code != NULL_TREE && code != error_mark_node) + { + if (init != NULL_TREE) + code = build2(COMPOUND_EXPR, void_type_node, init, code); + if (except != NULL_TREE) + code = build2(TRY_CATCH_EXPR, void_type_node, code, + build2(CATCH_EXPR, void_type_node, NULL, except)); + if (fini != NULL_TREE) + code = build2(TRY_FINALLY_EXPR, void_type_node, code, fini); + } + + // Stick the code into the block we built for the receiver, if + // we built on. + if (bind != NULL_TREE && code != NULL_TREE && code != error_mark_node) + { + BIND_EXPR_BODY(bind) = code; + code = bind; + } + + DECL_SAVED_TREE(fndecl) = code; + } +} + +// Build the wrappers around function code needed if the function has +// any defer statements. This sets *EXCEPT to an exception handler +// and *FINI to a finally handler. + +void +Function::build_defer_wrapper(Gogo* gogo, Named_object* named_function, + tree *except, tree *fini) +{ + source_location end_loc = this->block_->end_location(); + + // Add an exception handler. This is used if a panic occurs. Its + // purpose is to stop the stack unwinding if a deferred function + // calls recover. There are more details in + // libgo/runtime/go-unwind.c. + tree stmt_list = NULL_TREE; + static tree check_fndecl; + tree call = Gogo::call_builtin(&check_fndecl, + end_loc, + "__go_check_defer", + 1, + void_type_node, + ptr_type_node, + this->defer_stack(end_loc)); + append_to_statement_list(call, &stmt_list); + + tree retval = this->return_value(gogo, named_function, end_loc, &stmt_list); + tree set; + if (retval == NULL_TREE) + set = NULL_TREE; + else + set = fold_build2_loc(end_loc, MODIFY_EXPR, void_type_node, + DECL_RESULT(this->fndecl_), retval); + tree ret_stmt = fold_build1_loc(end_loc, RETURN_EXPR, void_type_node, set); + append_to_statement_list(ret_stmt, &stmt_list); + + gcc_assert(*except == NULL_TREE); + *except = stmt_list; + + // Add some finally code to run the defer functions. This is used + // both in the normal case, when no panic occurs, and also if a + // panic occurs to run any further defer functions. Of course, it + // is possible for a defer function to call panic which should be + // caught by another defer function. To handle that we use a loop. + // finish: + // try { __go_undefer(); } catch { __go_check_defer(); goto finish; } + // if (return values are named) return named_vals; + + stmt_list = NULL; + + tree label = create_artificial_label(end_loc); + tree define_label = fold_build1_loc(end_loc, LABEL_EXPR, void_type_node, + label); + append_to_statement_list(define_label, &stmt_list); + + static tree undefer_fndecl; + tree undefer = Gogo::call_builtin(&undefer_fndecl, + end_loc, + "__go_undefer", + 1, + void_type_node, + ptr_type_node, + this->defer_stack(end_loc)); + TREE_NOTHROW(undefer_fndecl) = 0; + + tree defer = Gogo::call_builtin(&check_fndecl, + end_loc, + "__go_check_defer", + 1, + void_type_node, + ptr_type_node, + this->defer_stack(end_loc)); + tree jump = fold_build1_loc(end_loc, GOTO_EXPR, void_type_node, label); + tree catch_body = build2(COMPOUND_EXPR, void_type_node, defer, jump); + catch_body = build2(CATCH_EXPR, void_type_node, NULL, catch_body); + tree try_catch = build2(TRY_CATCH_EXPR, void_type_node, undefer, catch_body); + + append_to_statement_list(try_catch, &stmt_list); + + if (this->type_->results() != NULL + && !this->type_->results()->empty() + && !this->type_->results()->front().name().empty()) + { + // If the result variables are named, we need to return them + // again, because they might have been changed by a defer + // function. + retval = this->return_value(gogo, named_function, end_loc, + &stmt_list); + set = fold_build2_loc(end_loc, MODIFY_EXPR, void_type_node, + DECL_RESULT(this->fndecl_), retval); + ret_stmt = fold_build1_loc(end_loc, RETURN_EXPR, void_type_node, set); + append_to_statement_list(ret_stmt, &stmt_list); + } + + gcc_assert(*fini == NULL_TREE); + *fini = stmt_list; +} + +// Return the value to assign to DECL_RESULT(this->fndecl_). This may +// also add statements to STMT_LIST, which need to be executed before +// the assignment. This is used for a return statement with no +// explicit values. + +tree +Function::return_value(Gogo* gogo, Named_object* named_function, + source_location location, tree* stmt_list) const +{ + const Typed_identifier_list* results = this->type_->results(); + if (results == NULL || results->empty()) + return NULL_TREE; + + // In the case of an exception handler created for functions with + // defer statements, the result variables may be unnamed. + bool is_named = !results->front().name().empty(); + if (is_named) + gcc_assert(this->named_results_ != NULL + && this->named_results_->size() == results->size()); + + tree retval; + if (results->size() == 1) + { + if (is_named) + return this->named_results_->front()->get_tree(gogo, named_function); + else + return results->front().type()->get_init_tree(gogo, false); + } + else + { + tree rettype = TREE_TYPE(DECL_RESULT(this->fndecl_)); + retval = create_tmp_var(rettype, "RESULT"); + tree field = TYPE_FIELDS(rettype); + int index = 0; + for (Typed_identifier_list::const_iterator pr = results->begin(); + pr != results->end(); + ++pr, ++index, field = DECL_CHAIN(field)) + { + gcc_assert(field != NULL); + tree val; + if (is_named) + val = (*this->named_results_)[index]->get_tree(gogo, + named_function); + else + val = pr->type()->get_init_tree(gogo, false); + tree set = fold_build2_loc(location, MODIFY_EXPR, void_type_node, + build3(COMPONENT_REF, TREE_TYPE(field), + retval, field, NULL_TREE), + val); + append_to_statement_list(set, stmt_list); + } + return retval; + } +} + +// Get the tree for the variable holding the defer stack for this +// function. At least at present, the value of this variable is not +// used. However, a pointer to this variable is used as a marker for +// the functions on the defer stack associated with this function. +// Doing things this way permits inlining a function which uses defer. + +tree +Function::defer_stack(source_location location) +{ + if (this->defer_stack_ == NULL_TREE) + { + tree var = create_tmp_var(ptr_type_node, "DEFER"); + DECL_INITIAL(var) = null_pointer_node; + DECL_SOURCE_LOCATION(var) = location; + TREE_ADDRESSABLE(var) = 1; + this->defer_stack_ = var; + } + return fold_convert_loc(location, ptr_type_node, + build_fold_addr_expr_loc(location, + this->defer_stack_)); +} + +// Get a tree for the statements in a block. + +tree +Block::get_tree(Translate_context* context) +{ + Gogo* gogo = context->gogo(); + + tree block = make_node(BLOCK); + + // Put the new block into the block tree. + + if (context->block() == NULL) + { + tree fndecl; + if (context->function() != NULL) + fndecl = context->function()->func_value()->get_decl(); + else + fndecl = current_function_decl; + gcc_assert(fndecl != NULL_TREE); + + // We may have already created a block for the receiver. + if (DECL_INITIAL(fndecl) == NULL_TREE) + { + BLOCK_SUPERCONTEXT(block) = fndecl; + DECL_INITIAL(fndecl) = block; + } + else + { + tree superblock_tree = DECL_INITIAL(fndecl); + BLOCK_SUPERCONTEXT(block) = superblock_tree; + gcc_assert(BLOCK_CHAIN(block) == NULL_TREE); + BLOCK_CHAIN(block) = block; + } + } + else + { + tree superblock_tree = context->block_tree(); + BLOCK_SUPERCONTEXT(block) = superblock_tree; + tree* pp; + for (pp = &BLOCK_SUBBLOCKS(superblock_tree); + *pp != NULL_TREE; + pp = &BLOCK_CHAIN(*pp)) + ; + *pp = block; + } + + // Expand local variables in the block. + + tree* pp = &BLOCK_VARS(block); + for (Bindings::const_definitions_iterator pv = + this->bindings_->begin_definitions(); + pv != this->bindings_->end_definitions(); + ++pv) + { + if ((!(*pv)->is_variable() || !(*pv)->var_value()->is_parameter()) + && !(*pv)->is_result_variable() + && !(*pv)->is_const()) + { + tree var = (*pv)->get_tree(gogo, context->function()); + if (var != error_mark_node && TREE_TYPE(var) != error_mark_node) + { + if ((*pv)->is_variable() && (*pv)->var_value()->is_in_heap()) + { + gcc_assert(TREE_CODE(var) == INDIRECT_REF); + var = TREE_OPERAND(var, 0); + gcc_assert(TREE_CODE(var) == VAR_DECL); + } + *pp = var; + pp = &DECL_CHAIN(*pp); + } + } + } + *pp = NULL_TREE; + + Translate_context subcontext(context->gogo(), context->function(), + this, block); + + tree statements = NULL_TREE; + + // Expand the statements. + + for (std::vector<Statement*>::const_iterator p = this->statements_.begin(); + p != this->statements_.end(); + ++p) + { + tree statement = (*p)->get_tree(&subcontext); + if (statement != error_mark_node) + append_to_statement_list(statement, &statements); + } + + TREE_USED(block) = 1; + + tree bind = build3(BIND_EXPR, void_type_node, BLOCK_VARS(block), statements, + block); + TREE_SIDE_EFFECTS(bind) = 1; + + return bind; +} + +// Get the LABEL_DECL for a label. + +tree +Label::get_decl() +{ + if (this->decl_ == NULL) + { + tree id = get_identifier_from_string(this->name_); + this->decl_ = build_decl(this->location_, LABEL_DECL, id, void_type_node); + DECL_CONTEXT(this->decl_) = current_function_decl; + } + return this->decl_; +} + +// Return an expression for the address of this label. + +tree +Label::get_addr(source_location location) +{ + tree decl = this->get_decl(); + TREE_USED(decl) = 1; + TREE_ADDRESSABLE(decl) = 1; + return fold_convert_loc(location, ptr_type_node, + build_fold_addr_expr_loc(location, decl)); +} + +// Get the LABEL_DECL for an unnamed label. + +tree +Unnamed_label::get_decl() +{ + if (this->decl_ == NULL) + this->decl_ = create_artificial_label(this->location_); + return this->decl_; +} + +// Get the LABEL_EXPR for an unnamed label. + +tree +Unnamed_label::get_definition() +{ + tree t = build1(LABEL_EXPR, void_type_node, this->get_decl()); + SET_EXPR_LOCATION(t, this->location_); + return t; +} + +// Return a goto to this label. + +tree +Unnamed_label::get_goto(source_location location) +{ + tree t = build1(GOTO_EXPR, void_type_node, this->get_decl()); + SET_EXPR_LOCATION(t, location); + return t; +} + +// Return the integer type to use for a size. + +GO_EXTERN_C +tree +go_type_for_size(unsigned int bits, int unsignedp) +{ + const char* name; + switch (bits) + { + case 8: + name = unsignedp ? "uint8" : "int8"; + break; + case 16: + name = unsignedp ? "uint16" : "int16"; + break; + case 32: + name = unsignedp ? "uint32" : "int32"; + break; + case 64: + name = unsignedp ? "uint64" : "int64"; + break; + default: + if (bits == POINTER_SIZE && unsignedp) + name = "uintptr"; + else + return NULL_TREE; + } + Type* type = Type::lookup_integer_type(name); + return type->get_tree(go_get_gogo()); +} + +// Return the type to use for a mode. + +GO_EXTERN_C +tree +go_type_for_mode(enum machine_mode mode, int unsignedp) +{ + // FIXME: This static_cast should be in machmode.h. + enum mode_class mc = static_cast<enum mode_class>(GET_MODE_CLASS(mode)); + if (mc == MODE_INT) + return go_type_for_size(GET_MODE_BITSIZE(mode), unsignedp); + else if (mc == MODE_FLOAT) + { + Type* type; + switch (GET_MODE_BITSIZE (mode)) + { + case 32: + type = Type::lookup_float_type("float32"); + break; + case 64: + type = Type::lookup_float_type("float64"); + break; + default: + // We have to check for long double in order to support + // i386 excess precision. + if (mode == TYPE_MODE(long_double_type_node)) + return long_double_type_node; + return NULL_TREE; + } + return type->float_type()->type_tree(); + } + else if (mc == MODE_COMPLEX_FLOAT) + { + Type *type; + switch (GET_MODE_BITSIZE (mode)) + { + case 64: + type = Type::lookup_complex_type("complex64"); + break; + case 128: + type = Type::lookup_complex_type("complex128"); + break; + default: + // We have to check for long double in order to support + // i386 excess precision. + if (mode == TYPE_MODE(complex_long_double_type_node)) + return complex_long_double_type_node; + return NULL_TREE; + } + return type->complex_type()->type_tree(); + } + else + return NULL_TREE; +} + +// Return a tree which allocates SIZE bytes which will holds value of +// type TYPE. + +tree +Gogo::allocate_memory(Type* type, tree size, source_location location) +{ + // If the package imports unsafe, then it may play games with + // pointers that look like integers. + if (this->imported_unsafe_ || type->has_pointer()) + { + static tree new_fndecl; + return Gogo::call_builtin(&new_fndecl, + location, + "__go_new", + 1, + ptr_type_node, + sizetype, + size); + } + else + { + static tree new_nopointers_fndecl; + return Gogo::call_builtin(&new_nopointers_fndecl, + location, + "__go_new_nopointers", + 1, + ptr_type_node, + sizetype, + size); + } +} + +// Build a builtin struct with a list of fields. The name is +// STRUCT_NAME. STRUCT_TYPE is NULL_TREE or an empty RECORD_TYPE +// node; this exists so that the struct can have fields which point to +// itself. If PTYPE is not NULL, store the result in *PTYPE. There +// are NFIELDS fields. Each field is a name (a const char*) followed +// by a type (a tree). + +tree +Gogo::builtin_struct(tree* ptype, const char* struct_name, tree struct_type, + int nfields, ...) +{ + if (ptype != NULL && *ptype != NULL_TREE) + return *ptype; + + va_list ap; + va_start(ap, nfields); + + tree fields = NULL_TREE; + for (int i = 0; i < nfields; ++i) + { + const char* field_name = va_arg(ap, const char*); + tree type = va_arg(ap, tree); + if (type == error_mark_node) + { + if (ptype != NULL) + *ptype = error_mark_node; + return error_mark_node; + } + tree field = build_decl(BUILTINS_LOCATION, FIELD_DECL, + get_identifier(field_name), type); + DECL_CHAIN(field) = fields; + fields = field; + } + + va_end(ap); + + if (struct_type == NULL_TREE) + struct_type = make_node(RECORD_TYPE); + finish_builtin_struct(struct_type, struct_name, fields, NULL_TREE); + + if (ptype != NULL) + { + go_preserve_from_gc(struct_type); + *ptype = struct_type; + } + + return struct_type; +} + +// Return a type to use for pointer to const char for a string. + +tree +Gogo::const_char_pointer_type_tree() +{ + static tree type; + if (type == NULL_TREE) + { + tree const_char_type = build_qualified_type(unsigned_char_type_node, + TYPE_QUAL_CONST); + type = build_pointer_type(const_char_type); + go_preserve_from_gc(type); + } + return type; +} + +// Return a tree for a string constant. + +tree +Gogo::string_constant_tree(const std::string& val) +{ + tree index_type = build_index_type(size_int(val.length())); + tree const_char_type = build_qualified_type(unsigned_char_type_node, + TYPE_QUAL_CONST); + tree string_type = build_array_type(const_char_type, index_type); + string_type = build_variant_type_copy(string_type); + TYPE_STRING_FLAG(string_type) = 1; + tree string_val = build_string(val.length(), val.data()); + TREE_TYPE(string_val) = string_type; + return string_val; +} + +// Return a tree for a Go string constant. + +tree +Gogo::go_string_constant_tree(const std::string& val) +{ + tree string_type = Type::make_string_type()->get_tree(this); + + VEC(constructor_elt, gc)* init = VEC_alloc(constructor_elt, gc, 2); + + constructor_elt* elt = VEC_quick_push(constructor_elt, init, NULL); + tree field = TYPE_FIELDS(string_type); + gcc_assert(strcmp(IDENTIFIER_POINTER(DECL_NAME(field)), "__data") == 0); + elt->index = field; + tree str = Gogo::string_constant_tree(val); + elt->value = fold_convert(TREE_TYPE(field), + build_fold_addr_expr(str)); + + elt = VEC_quick_push(constructor_elt, init, NULL); + field = DECL_CHAIN(field); + gcc_assert(strcmp(IDENTIFIER_POINTER(DECL_NAME(field)), "__length") == 0); + elt->index = field; + elt->value = build_int_cst_type(TREE_TYPE(field), val.length()); + + tree constructor = build_constructor(string_type, init); + TREE_READONLY(constructor) = 1; + TREE_CONSTANT(constructor) = 1; + + return constructor; +} + +// Return a tree for a pointer to a Go string constant. This is only +// used for type descriptors, so we return a pointer to a constant +// decl. + +tree +Gogo::ptr_go_string_constant_tree(const std::string& val) +{ + tree pval = this->go_string_constant_tree(val); + + tree decl = build_decl(UNKNOWN_LOCATION, VAR_DECL, + create_tmp_var_name("SP"), TREE_TYPE(pval)); + DECL_EXTERNAL(decl) = 0; + TREE_PUBLIC(decl) = 0; + TREE_USED(decl) = 1; + TREE_READONLY(decl) = 1; + TREE_CONSTANT(decl) = 1; + TREE_STATIC(decl) = 1; + DECL_ARTIFICIAL(decl) = 1; + DECL_INITIAL(decl) = pval; + rest_of_decl_compilation(decl, 1, 0); + + return build_fold_addr_expr(decl); +} + +// Build the type of the struct that holds a slice for the given +// element type. + +tree +Gogo::slice_type_tree(tree element_type_tree) +{ + // We use int for the count and capacity fields in a slice header. + // This matches 6g. The language definition guarantees that we + // can't allocate space of a size which does not fit in int + // anyhow. FIXME: integer_type_node is the the C type "int" but is + // not necessarily the Go type "int". They will differ when the C + // type "int" has fewer than 32 bits. + return Gogo::builtin_struct(NULL, "__go_slice", NULL_TREE, 3, + "__values", + build_pointer_type(element_type_tree), + "__count", + integer_type_node, + "__capacity", + integer_type_node); +} + +// Given the tree for a slice type, return the tree for the type of +// the elements of the slice. + +tree +Gogo::slice_element_type_tree(tree slice_type_tree) +{ + gcc_assert(TREE_CODE(slice_type_tree) == RECORD_TYPE + && POINTER_TYPE_P(TREE_TYPE(TYPE_FIELDS(slice_type_tree)))); + return TREE_TYPE(TREE_TYPE(TYPE_FIELDS(slice_type_tree))); +} + +// Build a constructor for a slice. SLICE_TYPE_TREE is the type of +// the slice. VALUES is the value pointer and COUNT is the number of +// entries. If CAPACITY is not NULL, it is the capacity; otherwise +// the capacity and the count are the same. + +tree +Gogo::slice_constructor(tree slice_type_tree, tree values, tree count, + tree capacity) +{ + gcc_assert(TREE_CODE(slice_type_tree) == RECORD_TYPE); + + VEC(constructor_elt,gc)* init = VEC_alloc(constructor_elt, gc, 3); + + tree field = TYPE_FIELDS(slice_type_tree); + gcc_assert(strcmp(IDENTIFIER_POINTER(DECL_NAME(field)), "__values") == 0); + constructor_elt* elt = VEC_quick_push(constructor_elt, init, NULL); + elt->index = field; + gcc_assert(TYPE_MAIN_VARIANT(TREE_TYPE(field)) + == TYPE_MAIN_VARIANT(TREE_TYPE(values))); + elt->value = values; + + count = fold_convert(sizetype, count); + if (capacity == NULL_TREE) + { + count = save_expr(count); + capacity = count; + } + + field = DECL_CHAIN(field); + gcc_assert(strcmp(IDENTIFIER_POINTER(DECL_NAME(field)), "__count") == 0); + elt = VEC_quick_push(constructor_elt, init, NULL); + elt->index = field; + elt->value = fold_convert(TREE_TYPE(field), count); + + field = DECL_CHAIN(field); + gcc_assert(strcmp(IDENTIFIER_POINTER(DECL_NAME(field)), "__capacity") == 0); + elt = VEC_quick_push(constructor_elt, init, NULL); + elt->index = field; + elt->value = fold_convert(TREE_TYPE(field), capacity); + + return build_constructor(slice_type_tree, init); +} + +// Build a constructor for an empty slice. + +tree +Gogo::empty_slice_constructor(tree slice_type_tree) +{ + tree element_field = TYPE_FIELDS(slice_type_tree); + tree ret = Gogo::slice_constructor(slice_type_tree, + fold_convert(TREE_TYPE(element_field), + null_pointer_node), + size_zero_node, + size_zero_node); + TREE_CONSTANT(ret) = 1; + return ret; +} + +// Build a map descriptor for a map of type MAPTYPE. + +tree +Gogo::map_descriptor(Map_type* maptype) +{ + if (this->map_descriptors_ == NULL) + this->map_descriptors_ = new Map_descriptors(10); + + std::pair<const Map_type*, tree> val(maptype, NULL); + std::pair<Map_descriptors::iterator, bool> ins = + this->map_descriptors_->insert(val); + Map_descriptors::iterator p = ins.first; + if (!ins.second) + { + gcc_assert(p->second != NULL_TREE && DECL_P(p->second)); + return build_fold_addr_expr(p->second); + } + + Type* keytype = maptype->key_type(); + Type* valtype = maptype->val_type(); + + std::string mangled_name = ("__go_map_" + maptype->mangled_name(this)); + + tree id = get_identifier_from_string(mangled_name); + + // Get the type of the map descriptor. This is __go_map_descriptor + // in libgo/map.h. + + tree struct_type = this->map_descriptor_type(); + + // The map entry type is a struct with three fields. This struct is + // specific to MAPTYPE. Build it. + + tree map_entry_type = make_node(RECORD_TYPE); + + map_entry_type = Gogo::builtin_struct(NULL, "__map", map_entry_type, 3, + "__next", + build_pointer_type(map_entry_type), + "__key", + keytype->get_tree(this), + "__val", + valtype->get_tree(this)); + if (map_entry_type == error_mark_node) + return error_mark_node; + + tree map_entry_key_field = DECL_CHAIN(TYPE_FIELDS(map_entry_type)); + gcc_assert(strcmp(IDENTIFIER_POINTER(DECL_NAME(map_entry_key_field)), + "__key") == 0); + + tree map_entry_val_field = DECL_CHAIN(map_entry_key_field); + gcc_assert(strcmp(IDENTIFIER_POINTER(DECL_NAME(map_entry_val_field)), + "__val") == 0); + + // Initialize the entries. + + tree map_descriptor_field = TYPE_FIELDS(struct_type); + gcc_assert(strcmp(IDENTIFIER_POINTER(DECL_NAME(map_descriptor_field)), + "__map_descriptor") == 0); + tree entry_size_field = DECL_CHAIN(map_descriptor_field); + gcc_assert(strcmp(IDENTIFIER_POINTER(DECL_NAME(entry_size_field)), + "__entry_size") == 0); + tree key_offset_field = DECL_CHAIN(entry_size_field); + gcc_assert(strcmp(IDENTIFIER_POINTER(DECL_NAME(key_offset_field)), + "__key_offset") == 0); + tree val_offset_field = DECL_CHAIN(key_offset_field); + gcc_assert(strcmp(IDENTIFIER_POINTER(DECL_NAME(val_offset_field)), + "__val_offset") == 0); + + VEC(constructor_elt, gc)* descriptor = VEC_alloc(constructor_elt, gc, 6); + + constructor_elt* elt = VEC_quick_push(constructor_elt, descriptor, NULL); + elt->index = map_descriptor_field; + elt->value = maptype->type_descriptor_pointer(this); + + elt = VEC_quick_push(constructor_elt, descriptor, NULL); + elt->index = entry_size_field; + elt->value = TYPE_SIZE_UNIT(map_entry_type); + + elt = VEC_quick_push(constructor_elt, descriptor, NULL); + elt->index = key_offset_field; + elt->value = byte_position(map_entry_key_field); + + elt = VEC_quick_push(constructor_elt, descriptor, NULL); + elt->index = val_offset_field; + elt->value = byte_position(map_entry_val_field); + + tree constructor = build_constructor(struct_type, descriptor); + + tree decl = build_decl(BUILTINS_LOCATION, VAR_DECL, id, struct_type); + TREE_STATIC(decl) = 1; + TREE_USED(decl) = 1; + TREE_READONLY(decl) = 1; + TREE_CONSTANT(decl) = 1; + DECL_INITIAL(decl) = constructor; + make_decl_one_only(decl, DECL_ASSEMBLER_NAME(decl)); + resolve_unique_section(decl, 1, 0); + + rest_of_decl_compilation(decl, 1, 0); + + go_preserve_from_gc(decl); + p->second = decl; + + return build_fold_addr_expr(decl); +} + +// Return a tree for the type of a map descriptor. This is struct +// __go_map_descriptor in libgo/runtime/map.h. This is the same for +// all map types. + +tree +Gogo::map_descriptor_type() +{ + static tree struct_type; + tree dtype = Type::make_type_descriptor_type()->get_tree(this); + dtype = build_qualified_type(dtype, TYPE_QUAL_CONST); + return Gogo::builtin_struct(&struct_type, "__go_map_descriptor", NULL_TREE, + 4, + "__map_descriptor", + build_pointer_type(dtype), + "__entry_size", + sizetype, + "__key_offset", + sizetype, + "__val_offset", + sizetype); +} + +// Return the name to use for a type descriptor decl for TYPE. This +// is used when TYPE does not have a name. + +std::string +Gogo::unnamed_type_descriptor_decl_name(const Type* type) +{ + return "__go_td_" + type->mangled_name(this); +} + +// Return the name to use for a type descriptor decl for a type named +// NAME, defined in the function IN_FUNCTION. IN_FUNCTION will +// normally be NULL. + +std::string +Gogo::type_descriptor_decl_name(const Named_object* no, + const Named_object* in_function) +{ + std::string ret = "__go_tdn_"; + if (no->type_value()->is_builtin()) + gcc_assert(in_function == NULL); + else + { + const std::string& unique_prefix(no->package() == NULL + ? this->unique_prefix() + : no->package()->unique_prefix()); + const std::string& package_name(no->package() == NULL + ? this->package_name() + : no->package()->name()); + ret.append(unique_prefix); + ret.append(1, '.'); + ret.append(package_name); + ret.append(1, '.'); + if (in_function != NULL) + { + ret.append(Gogo::unpack_hidden_name(in_function->name())); + ret.append(1, '.'); + } + } + ret.append(no->name()); + return ret; +} + +// Where a type descriptor decl should be defined. + +Gogo::Type_descriptor_location +Gogo::type_descriptor_location(const Type* type) +{ + const Named_type* name = type->named_type(); + if (name != NULL) + { + if (name->named_object()->package() != NULL) + { + // This is a named type defined in a different package. The + // descriptor should be defined in that package. + return TYPE_DESCRIPTOR_UNDEFINED; + } + else if (name->is_builtin()) + { + // We create the descriptor for a builtin type whenever we + // need it. + return TYPE_DESCRIPTOR_COMMON; + } + else + { + // This is a named type defined in this package. The + // descriptor should be defined here. + return TYPE_DESCRIPTOR_DEFINED; + } + } + else + { + if (type->points_to() != NULL + && type->points_to()->named_type() != NULL + && type->points_to()->named_type()->named_object()->package() != NULL) + { + // This is an unnamed pointer to a named type defined in a + // different package. The descriptor should be defined in + // that package. + return TYPE_DESCRIPTOR_UNDEFINED; + } + else + { + // This is an unnamed type. The descriptor could be defined + // in any package where it is needed, and the linker will + // pick one descriptor to keep. + return TYPE_DESCRIPTOR_COMMON; + } + } +} + +// Build a type descriptor decl for TYPE. INITIALIZER is a struct +// composite literal which initializers the type descriptor. + +void +Gogo::build_type_descriptor_decl(const Type* type, Expression* initializer, + tree* pdecl) +{ + const Named_type* name = type->named_type(); + + // We can have multiple instances of unnamed types, but we only want + // to emit the type descriptor once. We use a hash table to handle + // this. This is not necessary for named types, as they are unique, + // and we store the type descriptor decl in the type itself. + tree* phash = NULL; + if (name == NULL) + { + if (this->type_descriptor_decls_ == NULL) + this->type_descriptor_decls_ = new Type_descriptor_decls(10); + + std::pair<Type_descriptor_decls::iterator, bool> ins = + this->type_descriptor_decls_->insert(std::make_pair(type, NULL_TREE)); + if (!ins.second) + { + // We've already built a type descriptor for this type. + *pdecl = ins.first->second; + return; + } + phash = &ins.first->second; + } + + std::string decl_name; + if (name == NULL) + decl_name = this->unnamed_type_descriptor_decl_name(type); + else + decl_name = this->type_descriptor_decl_name(name->named_object(), + name->in_function()); + tree id = get_identifier_from_string(decl_name); + tree descriptor_type_tree = initializer->type()->get_tree(this); + if (descriptor_type_tree == error_mark_node) + { + *pdecl = error_mark_node; + return; + } + tree decl = build_decl(name == NULL ? BUILTINS_LOCATION : name->location(), + VAR_DECL, id, + build_qualified_type(descriptor_type_tree, + TYPE_QUAL_CONST)); + TREE_READONLY(decl) = 1; + TREE_CONSTANT(decl) = 1; + DECL_ARTIFICIAL(decl) = 1; + + go_preserve_from_gc(decl); + if (phash != NULL) + *phash = decl; + + // We store the new DECL now because we may need to refer to it when + // expanding INITIALIZER. + *pdecl = decl; + + // If appropriate, just refer to the exported type identifier. + Gogo::Type_descriptor_location type_descriptor_location = + this->type_descriptor_location(type); + if (type_descriptor_location == TYPE_DESCRIPTOR_UNDEFINED) + { + TREE_PUBLIC(decl) = 1; + DECL_EXTERNAL(decl) = 1; + return; + } + + TREE_STATIC(decl) = 1; + TREE_USED(decl) = 1; + + Translate_context context(this, NULL, NULL, NULL); + context.set_is_const(); + tree constructor = initializer->get_tree(&context); + + if (constructor == error_mark_node) + gcc_assert(saw_errors()); + + DECL_INITIAL(decl) = constructor; + + if (type_descriptor_location == TYPE_DESCRIPTOR_COMMON) + { + make_decl_one_only(decl, DECL_ASSEMBLER_NAME(decl)); + resolve_unique_section(decl, 1, 0); + } + else + { +#ifdef OBJECT_FORMAT_ELF + // Give the decl protected visibility. This avoids out-of-range + // references with shared libraries with the x86_64 small model + // when the type descriptor gets a COPY reloc into the main + // executable. There is no need to have unique pointers to type + // descriptors, as the runtime code compares reflection strings + // if necessary. + DECL_VISIBILITY(decl) = VISIBILITY_PROTECTED; + DECL_VISIBILITY_SPECIFIED(decl) = 1; +#endif + + TREE_PUBLIC(decl) = 1; + } + + rest_of_decl_compilation(decl, 1, 0); +} + +// Build an interface method table for a type: a list of function +// pointers, one for each interface method. This is used for +// interfaces. + +tree +Gogo::interface_method_table_for_type(const Interface_type* interface, + Named_type* type, + bool is_pointer) +{ + const Typed_identifier_list* interface_methods = interface->methods(); + gcc_assert(!interface_methods->empty()); + + std::string mangled_name = ((is_pointer ? "__go_pimt__" : "__go_imt_") + + interface->mangled_name(this) + + "__" + + type->mangled_name(this)); + + tree id = get_identifier_from_string(mangled_name); + + // See whether this interface has any hidden methods. + bool has_hidden_methods = false; + for (Typed_identifier_list::const_iterator p = interface_methods->begin(); + p != interface_methods->end(); + ++p) + { + if (Gogo::is_hidden_name(p->name())) + { + has_hidden_methods = true; + break; + } + } + + // We already know that the named type is convertible to the + // interface. If the interface has hidden methods, and the named + // type is defined in a different package, then the interface + // conversion table will be defined by that other package. + if (has_hidden_methods && type->named_object()->package() != NULL) + { + tree array_type = build_array_type(const_ptr_type_node, NULL); + tree decl = build_decl(BUILTINS_LOCATION, VAR_DECL, id, array_type); + TREE_READONLY(decl) = 1; + TREE_CONSTANT(decl) = 1; + TREE_PUBLIC(decl) = 1; + DECL_EXTERNAL(decl) = 1; + go_preserve_from_gc(decl); + return decl; + } + + size_t count = interface_methods->size(); + VEC(constructor_elt, gc)* pointers = VEC_alloc(constructor_elt, gc, + count + 1); + + // The first element is the type descriptor. + constructor_elt* elt = VEC_quick_push(constructor_elt, pointers, NULL); + elt->index = size_zero_node; + Type* td_type; + if (!is_pointer) + td_type = type; + else + td_type = Type::make_pointer_type(type); + elt->value = fold_convert(const_ptr_type_node, + td_type->type_descriptor_pointer(this)); + + size_t i = 1; + for (Typed_identifier_list::const_iterator p = interface_methods->begin(); + p != interface_methods->end(); + ++p, ++i) + { + bool is_ambiguous; + Method* m = type->method_function(p->name(), &is_ambiguous); + gcc_assert(m != NULL); + + Named_object* no = m->named_object(); + + tree fnid = no->get_id(this); + + tree fndecl; + if (no->is_function()) + fndecl = no->func_value()->get_or_make_decl(this, no, fnid); + else if (no->is_function_declaration()) + fndecl = no->func_declaration_value()->get_or_make_decl(this, no, + fnid); + else + gcc_unreachable(); + fndecl = build_fold_addr_expr(fndecl); + + elt = VEC_quick_push(constructor_elt, pointers, NULL); + elt->index = size_int(i); + elt->value = fold_convert(const_ptr_type_node, fndecl); + } + gcc_assert(i == count + 1); + + tree array_type = build_array_type(const_ptr_type_node, + build_index_type(size_int(count))); + tree constructor = build_constructor(array_type, pointers); + + tree decl = build_decl(BUILTINS_LOCATION, VAR_DECL, id, array_type); + TREE_STATIC(decl) = 1; + TREE_USED(decl) = 1; + TREE_READONLY(decl) = 1; + TREE_CONSTANT(decl) = 1; + DECL_INITIAL(decl) = constructor; + + // If the interface type has hidden methods, then this is the only + // definition of the table. Otherwise it is a comdat table which + // may be defined in multiple packages. + if (has_hidden_methods) + { +#ifdef OBJECT_FORMAT_ELF + // Give the decl protected visibility. This avoids out-of-range + // references with shared libraries with the x86_64 small model + // when the table gets a COPY reloc into the main executable. + DECL_VISIBILITY(decl) = VISIBILITY_PROTECTED; + DECL_VISIBILITY_SPECIFIED(decl) = 1; +#endif + + TREE_PUBLIC(decl) = 1; + } + else + { + make_decl_one_only(decl, DECL_ASSEMBLER_NAME(decl)); + resolve_unique_section(decl, 1, 0); + } + + rest_of_decl_compilation(decl, 1, 0); + + go_preserve_from_gc(decl); + + return decl; +} + +// Mark a function as a builtin library function. + +void +Gogo::mark_fndecl_as_builtin_library(tree fndecl) +{ + DECL_EXTERNAL(fndecl) = 1; + TREE_PUBLIC(fndecl) = 1; + DECL_ARTIFICIAL(fndecl) = 1; + TREE_NOTHROW(fndecl) = 1; + DECL_VISIBILITY(fndecl) = VISIBILITY_DEFAULT; + DECL_VISIBILITY_SPECIFIED(fndecl) = 1; +} + +// Build a call to a builtin function. + +tree +Gogo::call_builtin(tree* pdecl, source_location location, const char* name, + int nargs, tree rettype, ...) +{ + if (rettype == error_mark_node) + return error_mark_node; + + tree* types = new tree[nargs]; + tree* args = new tree[nargs]; + + va_list ap; + va_start(ap, rettype); + for (int i = 0; i < nargs; ++i) + { + types[i] = va_arg(ap, tree); + args[i] = va_arg(ap, tree); + if (types[i] == error_mark_node || args[i] == error_mark_node) + return error_mark_node; + } + va_end(ap); + + if (*pdecl == NULL_TREE) + { + tree fnid = get_identifier(name); + + tree argtypes = NULL_TREE; + tree* pp = &argtypes; + for (int i = 0; i < nargs; ++i) + { + *pp = tree_cons(NULL_TREE, types[i], NULL_TREE); + pp = &TREE_CHAIN(*pp); + } + *pp = void_list_node; + + tree fntype = build_function_type(rettype, argtypes); + + *pdecl = build_decl(BUILTINS_LOCATION, FUNCTION_DECL, fnid, fntype); + Gogo::mark_fndecl_as_builtin_library(*pdecl); + go_preserve_from_gc(*pdecl); + } + + tree fnptr = build_fold_addr_expr(*pdecl); + if (CAN_HAVE_LOCATION_P(fnptr)) + SET_EXPR_LOCATION(fnptr, location); + + tree ret = build_call_array(rettype, fnptr, nargs, args); + SET_EXPR_LOCATION(ret, location); + + delete[] types; + delete[] args; + + return ret; +} + +// Build a call to the runtime error function. + +tree +Gogo::runtime_error(int code, source_location location) +{ + static tree runtime_error_fndecl; + tree ret = Gogo::call_builtin(&runtime_error_fndecl, + location, + "__go_runtime_error", + 1, + void_type_node, + integer_type_node, + build_int_cst(integer_type_node, code)); + // The runtime error function panics and does not return. + TREE_NOTHROW(runtime_error_fndecl) = 0; + TREE_THIS_VOLATILE(runtime_error_fndecl) = 1; + return ret; +} + +// Send VAL on CHANNEL. If BLOCKING is true, the resulting tree has a +// void type. If BLOCKING is false, the resulting tree has a boolean +// type, and it will evaluate as true if the value was sent. If +// FOR_SELECT is true, this is being done because it was chosen in a +// select statement. + +tree +Gogo::send_on_channel(tree channel, tree val, bool blocking, bool for_select, + source_location location) +{ + if (int_size_in_bytes(TREE_TYPE(val)) <= 8 + && !AGGREGATE_TYPE_P(TREE_TYPE(val)) + && !FLOAT_TYPE_P(TREE_TYPE(val))) + { + val = convert_to_integer(uint64_type_node, val); + if (blocking) + { + static tree send_small_fndecl; + tree ret = Gogo::call_builtin(&send_small_fndecl, + location, + "__go_send_small", + 3, + void_type_node, + ptr_type_node, + channel, + uint64_type_node, + val, + boolean_type_node, + (for_select + ? boolean_true_node + : boolean_false_node)); + // This can panic if there are too many operations on a + // closed channel. + TREE_NOTHROW(send_small_fndecl) = 0; + return ret; + } + else + { + gcc_assert(!for_select); + static tree send_nonblocking_small_fndecl; + tree ret = Gogo::call_builtin(&send_nonblocking_small_fndecl, + location, + "__go_send_nonblocking_small", + 2, + boolean_type_node, + ptr_type_node, + channel, + uint64_type_node, + val); + // This can panic if there are too many operations on a + // closed channel. + TREE_NOTHROW(send_nonblocking_small_fndecl) = 0; + return ret; + } + } + else + { + tree make_tmp; + if (TREE_ADDRESSABLE(TREE_TYPE(val)) || TREE_CODE(val) == VAR_DECL) + { + make_tmp = NULL_TREE; + val = build_fold_addr_expr(val); + if (DECL_P(val)) + TREE_ADDRESSABLE(val) = 1; + } + else + { + tree tmp = create_tmp_var(TREE_TYPE(val), get_name(val)); + DECL_IGNORED_P(tmp) = 0; + DECL_INITIAL(tmp) = val; + TREE_ADDRESSABLE(tmp) = 1; + make_tmp = build1(DECL_EXPR, void_type_node, tmp); + SET_EXPR_LOCATION(make_tmp, location); + val = build_fold_addr_expr(tmp); + } + val = fold_convert(ptr_type_node, val); + + tree call; + if (blocking) + { + static tree send_big_fndecl; + call = Gogo::call_builtin(&send_big_fndecl, + location, + "__go_send_big", + 3, + void_type_node, + ptr_type_node, + channel, + ptr_type_node, + val, + boolean_type_node, + (for_select + ? boolean_true_node + : boolean_false_node)); + // This can panic if there are too many operations on a + // closed channel. + TREE_NOTHROW(send_big_fndecl) = 0; + } + else + { + gcc_assert(!for_select); + static tree send_nonblocking_big_fndecl; + call = Gogo::call_builtin(&send_nonblocking_big_fndecl, + location, + "__go_send_nonblocking_big", + 2, + boolean_type_node, + ptr_type_node, + channel, + ptr_type_node, + val); + // This can panic if there are too many operations on a + // closed channel. + TREE_NOTHROW(send_nonblocking_big_fndecl) = 0; + } + + if (make_tmp == NULL_TREE) + return call; + else + { + tree ret = build2(COMPOUND_EXPR, TREE_TYPE(call), make_tmp, call); + SET_EXPR_LOCATION(ret, location); + return ret; + } + } +} + +// Return a tree for receiving a value of type TYPE_TREE on CHANNEL. +// This does a blocking receive and returns the value read from the +// channel. If FOR_SELECT is true, this is being done because it was +// chosen in a select statement. + +tree +Gogo::receive_from_channel(tree type_tree, tree channel, bool for_select, + source_location location) +{ + if (int_size_in_bytes(type_tree) <= 8 + && !AGGREGATE_TYPE_P(type_tree) + && !FLOAT_TYPE_P(type_tree)) + { + static tree receive_small_fndecl; + tree call = Gogo::call_builtin(&receive_small_fndecl, + location, + "__go_receive_small", + 2, + uint64_type_node, + ptr_type_node, + channel, + boolean_type_node, + (for_select + ? boolean_true_node + : boolean_false_node)); + // This can panic if there are too many operations on a closed + // channel. + TREE_NOTHROW(receive_small_fndecl) = 0; + int bitsize = GET_MODE_BITSIZE(TYPE_MODE(type_tree)); + tree int_type_tree = go_type_for_size(bitsize, 1); + return fold_convert_loc(location, type_tree, + fold_convert_loc(location, int_type_tree, + call)); + } + else + { + tree tmp = create_tmp_var(type_tree, get_name(type_tree)); + DECL_IGNORED_P(tmp) = 0; + TREE_ADDRESSABLE(tmp) = 1; + tree make_tmp = build1(DECL_EXPR, void_type_node, tmp); + SET_EXPR_LOCATION(make_tmp, location); + tree tmpaddr = build_fold_addr_expr(tmp); + tmpaddr = fold_convert(ptr_type_node, tmpaddr); + static tree receive_big_fndecl; + tree call = Gogo::call_builtin(&receive_big_fndecl, + location, + "__go_receive_big", + 3, + void_type_node, + ptr_type_node, + channel, + ptr_type_node, + tmpaddr, + boolean_type_node, + (for_select + ? boolean_true_node + : boolean_false_node)); + // This can panic if there are too many operations on a closed + // channel. + TREE_NOTHROW(receive_big_fndecl) = 0; + return build2(COMPOUND_EXPR, type_tree, make_tmp, + build2(COMPOUND_EXPR, type_tree, call, tmp)); + } +} + +// Return the type of a function trampoline. This is like +// get_trampoline_type in tree-nested.c. + +tree +Gogo::trampoline_type_tree() +{ + static tree type_tree; + if (type_tree == NULL_TREE) + { + unsigned int align = TRAMPOLINE_ALIGNMENT; + unsigned int size = TRAMPOLINE_SIZE; + tree t = build_index_type(build_int_cst(integer_type_node, size - 1)); + t = build_array_type(char_type_node, t); + + type_tree = Gogo::builtin_struct(NULL, "__go_trampoline", NULL_TREE, 1, + "__data", t); + t = TYPE_FIELDS(type_tree); + DECL_ALIGN(t) = align; + DECL_USER_ALIGN(t) = 1; + + go_preserve_from_gc(type_tree); + } + return type_tree; +} + +// Make a trampoline which calls FNADDR passing CLOSURE. + +tree +Gogo::make_trampoline(tree fnaddr, tree closure, source_location location) +{ + tree trampoline_type = Gogo::trampoline_type_tree(); + tree trampoline_size = TYPE_SIZE_UNIT(trampoline_type); + + closure = save_expr(closure); + + // We allocate the trampoline using a special function which will + // mark it as executable. + static tree trampoline_fndecl; + tree x = Gogo::call_builtin(&trampoline_fndecl, + location, + "__go_allocate_trampoline", + 2, + ptr_type_node, + size_type_node, + trampoline_size, + ptr_type_node, + fold_convert_loc(location, ptr_type_node, + closure)); + + x = save_expr(x); + + // Initialize the trampoline. + tree ini = build_call_expr(implicit_built_in_decls[BUILT_IN_INIT_TRAMPOLINE], + 3, x, fnaddr, closure); + + // On some targets the trampoline address needs to be adjusted. For + // example, when compiling in Thumb mode on the ARM, the address + // needs to have the low bit set. + x = build_call_expr(implicit_built_in_decls[BUILT_IN_ADJUST_TRAMPOLINE], + 1, x); + x = fold_convert(TREE_TYPE(fnaddr), x); + + return build2(COMPOUND_EXPR, TREE_TYPE(x), ini, x); +} diff --git a/gcc/go/gofrontend/gogo.cc b/gcc/go/gofrontend/gogo.cc new file mode 100644 index 0000000..0216d6c --- /dev/null +++ b/gcc/go/gofrontend/gogo.cc @@ -0,0 +1,4274 @@ +// gogo.cc -- Go frontend parsed representation. + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +#include "go-system.h" + +#include "go-c.h" +#include "go-dump.h" +#include "lex.h" +#include "types.h" +#include "statements.h" +#include "expressions.h" +#include "dataflow.h" +#include "import.h" +#include "export.h" +#include "gogo.h" + +// Class Gogo. + +Gogo::Gogo(int int_type_size, int float_type_size, int pointer_size) + : package_(NULL), + functions_(), + globals_(new Bindings(NULL)), + imports_(), + imported_unsafe_(false), + packages_(), + map_descriptors_(NULL), + type_descriptor_decls_(NULL), + init_functions_(), + need_init_fn_(false), + init_fn_name_(), + imported_init_fns_(), + unique_prefix_(), + interface_types_() +{ + const source_location loc = BUILTINS_LOCATION; + + Named_type* uint8_type = Type::make_integer_type("uint8", true, 8, + RUNTIME_TYPE_KIND_UINT8); + this->add_named_type(uint8_type); + this->add_named_type(Type::make_integer_type("uint16", true, 16, + RUNTIME_TYPE_KIND_UINT16)); + this->add_named_type(Type::make_integer_type("uint32", true, 32, + RUNTIME_TYPE_KIND_UINT32)); + this->add_named_type(Type::make_integer_type("uint64", true, 64, + RUNTIME_TYPE_KIND_UINT64)); + + this->add_named_type(Type::make_integer_type("int8", false, 8, + RUNTIME_TYPE_KIND_INT8)); + this->add_named_type(Type::make_integer_type("int16", false, 16, + RUNTIME_TYPE_KIND_INT16)); + this->add_named_type(Type::make_integer_type("int32", false, 32, + RUNTIME_TYPE_KIND_INT32)); + this->add_named_type(Type::make_integer_type("int64", false, 64, + RUNTIME_TYPE_KIND_INT64)); + + this->add_named_type(Type::make_float_type("float32", 32, + RUNTIME_TYPE_KIND_FLOAT32)); + this->add_named_type(Type::make_float_type("float64", 64, + RUNTIME_TYPE_KIND_FLOAT64)); + + this->add_named_type(Type::make_complex_type("complex64", 64, + RUNTIME_TYPE_KIND_COMPLEX64)); + this->add_named_type(Type::make_complex_type("complex128", 128, + RUNTIME_TYPE_KIND_COMPLEX128)); + + if (int_type_size < 32) + int_type_size = 32; + this->add_named_type(Type::make_integer_type("uint", true, + int_type_size, + RUNTIME_TYPE_KIND_UINT)); + Named_type* int_type = Type::make_integer_type("int", false, int_type_size, + RUNTIME_TYPE_KIND_INT); + this->add_named_type(int_type); + + // "byte" is an alias for "uint8". Construct a Named_object which + // points to UINT8_TYPE. Note that this breaks the normal pairing + // in which a Named_object points to a Named_type which points back + // to the same Named_object. + Named_object* byte_type = this->declare_type("byte", loc); + byte_type->set_type_value(uint8_type); + + this->add_named_type(Type::make_integer_type("uintptr", true, + pointer_size, + RUNTIME_TYPE_KIND_UINTPTR)); + + this->add_named_type(Type::make_float_type("float", float_type_size, + RUNTIME_TYPE_KIND_FLOAT)); + + this->add_named_type(Type::make_complex_type("complex", float_type_size * 2, + RUNTIME_TYPE_KIND_COMPLEX)); + + this->add_named_type(Type::make_named_bool_type()); + + this->add_named_type(Type::make_named_string_type()); + + this->globals_->add_constant(Typed_identifier("true", + Type::make_boolean_type(), + loc), + NULL, + Expression::make_boolean(true, loc), + 0); + this->globals_->add_constant(Typed_identifier("false", + Type::make_boolean_type(), + loc), + NULL, + Expression::make_boolean(false, loc), + 0); + + this->globals_->add_constant(Typed_identifier("nil", Type::make_nil_type(), + loc), + NULL, + Expression::make_nil(loc), + 0); + + Type* abstract_int_type = Type::make_abstract_integer_type(); + this->globals_->add_constant(Typed_identifier("iota", abstract_int_type, + loc), + NULL, + Expression::make_iota(), + 0); + + Function_type* new_type = Type::make_function_type(NULL, NULL, NULL, loc); + new_type->set_is_varargs(); + new_type->set_is_builtin(); + this->globals_->add_function_declaration("new", NULL, new_type, loc); + + Function_type* make_type = Type::make_function_type(NULL, NULL, NULL, loc); + make_type->set_is_varargs(); + make_type->set_is_builtin(); + this->globals_->add_function_declaration("make", NULL, make_type, loc); + + Typed_identifier_list* len_result = new Typed_identifier_list(); + len_result->push_back(Typed_identifier("", int_type, loc)); + Function_type* len_type = Type::make_function_type(NULL, NULL, len_result, + loc); + len_type->set_is_builtin(); + this->globals_->add_function_declaration("len", NULL, len_type, loc); + + Typed_identifier_list* cap_result = new Typed_identifier_list(); + cap_result->push_back(Typed_identifier("", int_type, loc)); + Function_type* cap_type = Type::make_function_type(NULL, NULL, len_result, + loc); + cap_type->set_is_builtin(); + this->globals_->add_function_declaration("cap", NULL, cap_type, loc); + + Function_type* print_type = Type::make_function_type(NULL, NULL, NULL, loc); + print_type->set_is_varargs(); + print_type->set_is_builtin(); + this->globals_->add_function_declaration("print", NULL, print_type, loc); + + print_type = Type::make_function_type(NULL, NULL, NULL, loc); + print_type->set_is_varargs(); + print_type->set_is_builtin(); + this->globals_->add_function_declaration("println", NULL, print_type, loc); + + Type *empty = Type::make_interface_type(NULL, loc); + Typed_identifier_list* panic_parms = new Typed_identifier_list(); + panic_parms->push_back(Typed_identifier("e", empty, loc)); + Function_type *panic_type = Type::make_function_type(NULL, panic_parms, + NULL, loc); + panic_type->set_is_builtin(); + this->globals_->add_function_declaration("panic", NULL, panic_type, loc); + + Typed_identifier_list* recover_result = new Typed_identifier_list(); + recover_result->push_back(Typed_identifier("", empty, loc)); + Function_type* recover_type = Type::make_function_type(NULL, NULL, + recover_result, + loc); + recover_type->set_is_builtin(); + this->globals_->add_function_declaration("recover", NULL, recover_type, loc); + + Function_type* close_type = Type::make_function_type(NULL, NULL, NULL, loc); + close_type->set_is_varargs(); + close_type->set_is_builtin(); + this->globals_->add_function_declaration("close", NULL, close_type, loc); + + Typed_identifier_list* closed_result = new Typed_identifier_list(); + closed_result->push_back(Typed_identifier("", Type::lookup_bool_type(), + loc)); + Function_type* closed_type = Type::make_function_type(NULL, NULL, + closed_result, loc); + closed_type->set_is_varargs(); + closed_type->set_is_builtin(); + this->globals_->add_function_declaration("closed", NULL, closed_type, loc); + + Typed_identifier_list* copy_result = new Typed_identifier_list(); + copy_result->push_back(Typed_identifier("", int_type, loc)); + Function_type* copy_type = Type::make_function_type(NULL, NULL, + copy_result, loc); + copy_type->set_is_varargs(); + copy_type->set_is_builtin(); + this->globals_->add_function_declaration("copy", NULL, copy_type, loc); + + Function_type* append_type = Type::make_function_type(NULL, NULL, NULL, loc); + append_type->set_is_varargs(); + append_type->set_is_builtin(); + this->globals_->add_function_declaration("append", NULL, append_type, loc); + + Function_type* cmplx_type = Type::make_function_type(NULL, NULL, NULL, loc); + cmplx_type->set_is_varargs(); + cmplx_type->set_is_builtin(); + this->globals_->add_function_declaration("cmplx", NULL, cmplx_type, loc); + + Function_type* real_type = Type::make_function_type(NULL, NULL, NULL, loc); + real_type->set_is_varargs(); + real_type->set_is_builtin(); + this->globals_->add_function_declaration("real", NULL, real_type, loc); + + Function_type* imag_type = Type::make_function_type(NULL, NULL, NULL, loc); + imag_type->set_is_varargs(); + imag_type->set_is_builtin(); + this->globals_->add_function_declaration("imag", NULL, cmplx_type, loc); + + this->define_builtin_function_trees(); + + // Declare "init", to ensure that it is not defined with parameters + // or return values. + this->declare_function("init", + Type::make_function_type(NULL, NULL, NULL, loc), + loc); +} + +// Munge name for use in an error message. + +std::string +Gogo::message_name(const std::string& name) +{ + return go_localize_identifier(Gogo::unpack_hidden_name(name).c_str()); +} + +// Get the package name. + +const std::string& +Gogo::package_name() const +{ + gcc_assert(this->package_ != NULL); + return this->package_->name(); +} + +// Set the package name. + +void +Gogo::set_package_name(const std::string& package_name, + source_location location) +{ + if (this->package_ != NULL && this->package_->name() != package_name) + { + error_at(location, "expected package %<%s%>", + Gogo::message_name(this->package_->name()).c_str()); + return; + } + + // If the user did not specify a unique prefix, we always use "go". + // This in effect requires that the package name be unique. + if (this->unique_prefix_.empty()) + this->unique_prefix_ = "go"; + + this->package_ = this->register_package(package_name, this->unique_prefix_, + location); + + // We used to permit people to qualify symbols with the current + // package name (e.g., P.x), but we no longer do. + // this->globals_->add_package(package_name, this->package_); + + if (package_name == "main") + { + // Declare "main" as a function which takes no parameters and + // returns no value. + this->declare_function("main", + Type::make_function_type(NULL, NULL, NULL, + BUILTINS_LOCATION), + BUILTINS_LOCATION); + } +} + +// Import a package. + +void +Gogo::import_package(const std::string& filename, + const std::string& local_name, + bool is_local_name_exported, + source_location location) +{ + if (filename == "unsafe") + { + this->import_unsafe(local_name, is_local_name_exported, location); + return; + } + + Imports::const_iterator p = this->imports_.find(filename); + if (p != this->imports_.end()) + { + Package* package = p->second; + package->set_location(location); + package->set_is_imported(); + std::string ln = local_name; + bool is_ln_exported = is_local_name_exported; + if (ln.empty()) + { + ln = package->name(); + is_ln_exported = Lex::is_exported_name(ln); + } + if (ln != ".") + { + ln = this->pack_hidden_name(ln, is_ln_exported); + this->package_->bindings()->add_package(ln, package); + } + else + { + Bindings* bindings = package->bindings(); + for (Bindings::const_declarations_iterator p = + bindings->begin_declarations(); + p != bindings->end_declarations(); + ++p) + this->add_named_object(p->second); + } + return; + } + + Import::Stream* stream = Import::open_package(filename, location); + if (stream == NULL) + { + error_at(location, "import file %qs not found", filename.c_str()); + return; + } + + Import imp(stream, location); + imp.register_builtin_types(this); + Package* package = imp.import(this, local_name, is_local_name_exported); + this->imports_.insert(std::make_pair(filename, package)); + package->set_is_imported(); + + delete stream; +} + +// Add an import control function for an imported package to the list. + +void +Gogo::add_import_init_fn(const std::string& package_name, + const std::string& init_name, int prio) +{ + for (std::set<Import_init>::const_iterator p = + this->imported_init_fns_.begin(); + p != this->imported_init_fns_.end(); + ++p) + { + if (p->init_name() == init_name + && (p->package_name() != package_name || p->priority() != prio)) + { + error("duplicate package initialization name %qs", + Gogo::message_name(init_name).c_str()); + inform(UNKNOWN_LOCATION, "used by package %qs at priority %d", + Gogo::message_name(p->package_name()).c_str(), + p->priority()); + inform(UNKNOWN_LOCATION, " and by package %qs at priority %d", + Gogo::message_name(package_name).c_str(), prio); + return; + } + } + + this->imported_init_fns_.insert(Import_init(package_name, init_name, + prio)); +} + +// Return whether we are at the global binding level. + +bool +Gogo::in_global_scope() const +{ + return this->functions_.empty(); +} + +// Return the current binding contour. + +Bindings* +Gogo::current_bindings() +{ + if (!this->functions_.empty()) + return this->functions_.back().blocks.back()->bindings(); + else if (this->package_ != NULL) + return this->package_->bindings(); + else + return this->globals_; +} + +const Bindings* +Gogo::current_bindings() const +{ + if (!this->functions_.empty()) + return this->functions_.back().blocks.back()->bindings(); + else if (this->package_ != NULL) + return this->package_->bindings(); + else + return this->globals_; +} + +// Return the current block. + +Block* +Gogo::current_block() +{ + if (this->functions_.empty()) + return NULL; + else + return this->functions_.back().blocks.back(); +} + +// Look up a name in the current binding contour. If PFUNCTION is not +// NULL, set it to the function in which the name is defined, or NULL +// if the name is defined in global scope. + +Named_object* +Gogo::lookup(const std::string& name, Named_object** pfunction) const +{ + if (Gogo::is_sink_name(name)) + return Named_object::make_sink(); + + for (Open_functions::const_reverse_iterator p = this->functions_.rbegin(); + p != this->functions_.rend(); + ++p) + { + Named_object* ret = p->blocks.back()->bindings()->lookup(name); + if (ret != NULL) + { + if (pfunction != NULL) + *pfunction = p->function; + return ret; + } + } + + if (pfunction != NULL) + *pfunction = NULL; + + if (this->package_ != NULL) + { + Named_object* ret = this->package_->bindings()->lookup(name); + if (ret != NULL) + { + if (ret->package() != NULL) + ret->package()->set_used(); + return ret; + } + } + + // We do not look in the global namespace. If we did, the global + // namespace would effectively hide names which were defined in + // package scope which we have not yet seen. Instead, + // define_global_names is called after parsing is over to connect + // undefined names at package scope with names defined at global + // scope. + + return NULL; +} + +// Look up a name in the current block, without searching enclosing +// blocks. + +Named_object* +Gogo::lookup_in_block(const std::string& name) const +{ + gcc_assert(!this->functions_.empty()); + gcc_assert(!this->functions_.back().blocks.empty()); + return this->functions_.back().blocks.back()->bindings()->lookup_local(name); +} + +// Look up a name in the global namespace. + +Named_object* +Gogo::lookup_global(const char* name) const +{ + return this->globals_->lookup(name); +} + +// Add an imported package. + +Package* +Gogo::add_imported_package(const std::string& real_name, + const std::string& alias_arg, + bool is_alias_exported, + const std::string& unique_prefix, + source_location location, + bool* padd_to_globals) +{ + // FIXME: Now that we compile packages as a whole, should we permit + // importing the current package? + if (this->package_name() == real_name + && this->unique_prefix() == unique_prefix) + { + *padd_to_globals = false; + if (!alias_arg.empty() && alias_arg != ".") + { + std::string alias = this->pack_hidden_name(alias_arg, + is_alias_exported); + this->package_->bindings()->add_package(alias, this->package_); + } + return this->package_; + } + else if (alias_arg == ".") + { + *padd_to_globals = true; + return this->register_package(real_name, unique_prefix, location); + } + else if (alias_arg == "_") + { + Package* ret = this->register_package(real_name, unique_prefix, location); + ret->set_uses_sink_alias(); + return ret; + } + else + { + *padd_to_globals = false; + std::string alias = alias_arg; + if (alias.empty()) + { + alias = real_name; + is_alias_exported = Lex::is_exported_name(alias); + } + alias = this->pack_hidden_name(alias, is_alias_exported); + Named_object* no = this->add_package(real_name, alias, unique_prefix, + location); + if (!no->is_package()) + return NULL; + return no->package_value(); + } +} + +// Add a package. + +Named_object* +Gogo::add_package(const std::string& real_name, const std::string& alias, + const std::string& unique_prefix, source_location location) +{ + gcc_assert(this->in_global_scope()); + + // Register the package. Note that we might have already seen it in + // an earlier import. + Package* package = this->register_package(real_name, unique_prefix, location); + + return this->package_->bindings()->add_package(alias, package); +} + +// Register a package. This package may or may not be imported. This +// returns the Package structure for the package, creating if it +// necessary. + +Package* +Gogo::register_package(const std::string& package_name, + const std::string& unique_prefix, + source_location location) +{ + gcc_assert(!unique_prefix.empty() && !package_name.empty()); + std::string name = unique_prefix + '.' + package_name; + Package* package = NULL; + std::pair<Packages::iterator, bool> ins = + this->packages_.insert(std::make_pair(name, package)); + if (!ins.second) + { + // We have seen this package name before. + package = ins.first->second; + gcc_assert(package != NULL); + gcc_assert(package->name() == package_name + && package->unique_prefix() == unique_prefix); + if (package->location() == UNKNOWN_LOCATION) + package->set_location(location); + } + else + { + // First time we have seen this package name. + package = new Package(package_name, unique_prefix, location); + gcc_assert(ins.first->second == NULL); + ins.first->second = package; + } + + return package; +} + +// Start compiling a function. + +Named_object* +Gogo::start_function(const std::string& name, Function_type* type, + bool add_method_to_type, source_location location) +{ + bool at_top_level = this->functions_.empty(); + + Block* block = new Block(NULL, location); + + Function* enclosing = (at_top_level + ? NULL + : this->functions_.back().function->func_value()); + + Function* function = new Function(type, enclosing, block, location); + + if (type->is_method()) + { + const Typed_identifier* receiver = type->receiver(); + Variable* this_param = new Variable(receiver->type(), NULL, false, + true, true, location); + std::string name = receiver->name(); + if (name.empty()) + { + // We need to give receivers a name since they wind up in + // DECL_ARGUMENTS. FIXME. + static unsigned int count; + char buf[50]; + snprintf(buf, sizeof buf, "r.%u", count); + ++count; + name = buf; + } + block->bindings()->add_variable(name, NULL, this_param); + } + + const Typed_identifier_list* parameters = type->parameters(); + bool is_varargs = type->is_varargs(); + if (parameters != NULL) + { + for (Typed_identifier_list::const_iterator p = parameters->begin(); + p != parameters->end(); + ++p) + { + Variable* param = new Variable(p->type(), NULL, false, true, false, + location); + if (is_varargs && p + 1 == parameters->end()) + param->set_is_varargs_parameter(); + + std::string name = p->name(); + if (name.empty() || Gogo::is_sink_name(name)) + { + // We need to give parameters a name since they wind up + // in DECL_ARGUMENTS. FIXME. + static unsigned int count; + char buf[50]; + snprintf(buf, sizeof buf, "p.%u", count); + ++count; + name = buf; + } + block->bindings()->add_variable(name, NULL, param); + } + } + + function->create_named_result_variables(); + + const std::string* pname; + std::string nested_name; + if (!name.empty()) + pname = &name; + else + { + // Invent a name for a nested function. + static int nested_count; + char buf[30]; + snprintf(buf, sizeof buf, ".$nested%d", nested_count); + ++nested_count; + nested_name = buf; + pname = &nested_name; + } + + Named_object* ret; + if (Gogo::is_sink_name(*pname)) + ret = Named_object::make_sink(); + else if (!type->is_method()) + { + ret = this->package_->bindings()->add_function(*pname, NULL, function); + if (!ret->is_function()) + { + // Redefinition error. + ret = Named_object::make_function(name, NULL, function); + } + } + else + { + if (!add_method_to_type) + ret = Named_object::make_function(name, NULL, function); + else + { + gcc_assert(at_top_level); + Type* rtype = type->receiver()->type(); + + // We want to look through the pointer created by the + // parser, without getting an error if the type is not yet + // defined. + if (rtype->classification() == Type::TYPE_POINTER) + rtype = rtype->points_to(); + + if (rtype->is_error_type()) + ret = Named_object::make_function(name, NULL, function); + else if (rtype->named_type() != NULL) + { + ret = rtype->named_type()->add_method(name, function); + if (!ret->is_function()) + { + // Redefinition error. + ret = Named_object::make_function(name, NULL, function); + } + } + else if (rtype->forward_declaration_type() != NULL) + { + Named_object* type_no = + rtype->forward_declaration_type()->named_object(); + if (type_no->is_unknown()) + { + // If we are seeing methods it really must be a + // type. Declare it as such. An alternative would + // be to support lists of methods for unknown + // expressions. Either way the error messages if + // this is not a type are going to get confusing. + Named_object* declared = + this->declare_package_type(type_no->name(), + type_no->location()); + gcc_assert(declared + == type_no->unknown_value()->real_named_object()); + } + ret = rtype->forward_declaration_type()->add_method(name, + function); + } + else + gcc_unreachable(); + } + this->package_->bindings()->add_method(ret); + } + + this->functions_.resize(this->functions_.size() + 1); + Open_function& of(this->functions_.back()); + of.function = ret; + of.blocks.push_back(block); + + if (!type->is_method() && Gogo::unpack_hidden_name(name) == "init") + { + this->init_functions_.push_back(ret); + this->need_init_fn_ = true; + } + + return ret; +} + +// Finish compiling a function. + +void +Gogo::finish_function(source_location location) +{ + this->finish_block(location); + gcc_assert(this->functions_.back().blocks.empty()); + this->functions_.pop_back(); +} + +// Return the current function. + +Named_object* +Gogo::current_function() const +{ + gcc_assert(!this->functions_.empty()); + return this->functions_.back().function; +} + +// Start a new block. + +void +Gogo::start_block(source_location location) +{ + gcc_assert(!this->functions_.empty()); + Block* block = new Block(this->current_block(), location); + this->functions_.back().blocks.push_back(block); +} + +// Finish a block. + +Block* +Gogo::finish_block(source_location location) +{ + gcc_assert(!this->functions_.empty()); + gcc_assert(!this->functions_.back().blocks.empty()); + Block* block = this->functions_.back().blocks.back(); + this->functions_.back().blocks.pop_back(); + block->set_end_location(location); + return block; +} + +// Add an unknown name. + +Named_object* +Gogo::add_unknown_name(const std::string& name, source_location location) +{ + return this->package_->bindings()->add_unknown_name(name, location); +} + +// Declare a function. + +Named_object* +Gogo::declare_function(const std::string& name, Function_type* type, + source_location location) +{ + if (!type->is_method()) + return this->current_bindings()->add_function_declaration(name, NULL, type, + location); + else + { + // We don't bother to add this to the list of global + // declarations. + Type* rtype = type->receiver()->type(); + + // We want to look through the pointer created by the + // parser, without getting an error if the type is not yet + // defined. + if (rtype->classification() == Type::TYPE_POINTER) + rtype = rtype->points_to(); + + if (rtype->is_error_type()) + return NULL; + else if (rtype->named_type() != NULL) + return rtype->named_type()->add_method_declaration(name, NULL, type, + location); + else if (rtype->forward_declaration_type() != NULL) + { + Forward_declaration_type* ftype = rtype->forward_declaration_type(); + return ftype->add_method_declaration(name, type, location); + } + else + gcc_unreachable(); + } +} + +// Add a label definition. + +Label* +Gogo::add_label_definition(const std::string& label_name, + source_location location) +{ + gcc_assert(!this->functions_.empty()); + Function* func = this->functions_.back().function->func_value(); + Label* label = func->add_label_definition(label_name, location); + this->add_statement(Statement::make_label_statement(label, location)); + return label; +} + +// Add a label reference. + +Label* +Gogo::add_label_reference(const std::string& label_name) +{ + gcc_assert(!this->functions_.empty()); + Function* func = this->functions_.back().function->func_value(); + return func->add_label_reference(label_name); +} + +// Add a statement. + +void +Gogo::add_statement(Statement* statement) +{ + gcc_assert(!this->functions_.empty() + && !this->functions_.back().blocks.empty()); + this->functions_.back().blocks.back()->add_statement(statement); +} + +// Add a block. + +void +Gogo::add_block(Block* block, source_location location) +{ + gcc_assert(!this->functions_.empty() + && !this->functions_.back().blocks.empty()); + Statement* statement = Statement::make_block_statement(block, location); + this->functions_.back().blocks.back()->add_statement(statement); +} + +// Add a constant. + +Named_object* +Gogo::add_constant(const Typed_identifier& tid, Expression* expr, + int iota_value) +{ + return this->current_bindings()->add_constant(tid, NULL, expr, iota_value); +} + +// Add a type. + +void +Gogo::add_type(const std::string& name, Type* type, source_location location) +{ + Named_object* no = this->current_bindings()->add_type(name, NULL, type, + location); + if (!this->in_global_scope()) + no->type_value()->set_in_function(this->functions_.back().function); +} + +// Add a named type. + +void +Gogo::add_named_type(Named_type* type) +{ + gcc_assert(this->in_global_scope()); + this->current_bindings()->add_named_type(type); +} + +// Declare a type. + +Named_object* +Gogo::declare_type(const std::string& name, source_location location) +{ + Bindings* bindings = this->current_bindings(); + Named_object* no = bindings->add_type_declaration(name, NULL, location); + if (!this->in_global_scope()) + { + Named_object* f = this->functions_.back().function; + no->type_declaration_value()->set_in_function(f); + } + return no; +} + +// Declare a type at the package level. + +Named_object* +Gogo::declare_package_type(const std::string& name, source_location location) +{ + return this->package_->bindings()->add_type_declaration(name, NULL, location); +} + +// Define a type which was already declared. + +void +Gogo::define_type(Named_object* no, Named_type* type) +{ + this->current_bindings()->define_type(no, type); +} + +// Add a variable. + +Named_object* +Gogo::add_variable(const std::string& name, Variable* variable) +{ + Named_object* no = this->current_bindings()->add_variable(name, NULL, + variable); + + // In a function the middle-end wants to see a DECL_EXPR node. + if (no != NULL + && no->is_variable() + && !no->var_value()->is_parameter() + && !this->functions_.empty()) + this->add_statement(Statement::make_variable_declaration(no)); + + return no; +} + +// Add a sink--a reference to the blank identifier _. + +Named_object* +Gogo::add_sink() +{ + return Named_object::make_sink(); +} + +// Add a named object. + +void +Gogo::add_named_object(Named_object* no) +{ + this->current_bindings()->add_named_object(no); +} + +// Record that we've seen an interface type. + +void +Gogo::record_interface_type(Interface_type* itype) +{ + this->interface_types_.push_back(itype); +} + +// Return a name for a thunk object. + +std::string +Gogo::thunk_name() +{ + static int thunk_count; + char thunk_name[50]; + snprintf(thunk_name, sizeof thunk_name, "$thunk%d", thunk_count); + ++thunk_count; + return thunk_name; +} + +// Return whether a function is a thunk. + +bool +Gogo::is_thunk(const Named_object* no) +{ + return no->name().compare(0, 6, "$thunk") == 0; +} + +// Define the global names. We do this only after parsing all the +// input files, because the program might define the global names +// itself. + +void +Gogo::define_global_names() +{ + for (Bindings::const_declarations_iterator p = + this->globals_->begin_declarations(); + p != this->globals_->end_declarations(); + ++p) + { + Named_object* global_no = p->second; + std::string name(Gogo::pack_hidden_name(global_no->name(), false)); + Named_object* no = this->package_->bindings()->lookup(name); + if (no == NULL) + continue; + no = no->resolve(); + if (no->is_type_declaration()) + { + if (global_no->is_type()) + { + if (no->type_declaration_value()->has_methods()) + error_at(no->location(), + "may not define methods for global type"); + no->set_type_value(global_no->type_value()); + } + else + { + error_at(no->location(), "expected type"); + Type* errtype = Type::make_error_type(); + Named_object* err = Named_object::make_type("error", NULL, + errtype, + BUILTINS_LOCATION); + no->set_type_value(err->type_value()); + } + } + else if (no->is_unknown()) + no->unknown_value()->set_real_named_object(global_no); + } +} + +// Clear out names in file scope. + +void +Gogo::clear_file_scope() +{ + this->package_->bindings()->clear_file_scope(); + + // Warn about packages which were imported but not used. + for (Packages::iterator p = this->packages_.begin(); + p != this->packages_.end(); + ++p) + { + Package* package = p->second; + if (package != this->package_ + && package->is_imported() + && !package->used() + && !package->uses_sink_alias() + && !saw_errors()) + error_at(package->location(), "imported and not used: %s", + Gogo::message_name(package->name()).c_str()); + package->clear_is_imported(); + package->clear_uses_sink_alias(); + package->clear_used(); + } +} + +// Traverse the tree. + +void +Gogo::traverse(Traverse* traverse) +{ + // Traverse the current package first for consistency. The other + // packages will only contain imported types, constants, and + // declarations. + if (this->package_->bindings()->traverse(traverse, true) == TRAVERSE_EXIT) + return; + for (Packages::const_iterator p = this->packages_.begin(); + p != this->packages_.end(); + ++p) + { + if (p->second != this->package_) + { + if (p->second->bindings()->traverse(traverse, true) == TRAVERSE_EXIT) + break; + } + } +} + +// Traversal class used to verify types. + +class Verify_types : public Traverse +{ + public: + Verify_types() + : Traverse(traverse_types) + { } + + int + type(Type*); +}; + +// Verify that a type is correct. + +int +Verify_types::type(Type* t) +{ + // Don't verify types defined in other packages. + Named_type* nt = t->named_type(); + if (nt != NULL && nt->named_object()->package() != NULL) + return TRAVERSE_SKIP_COMPONENTS; + + if (!t->verify()) + return TRAVERSE_SKIP_COMPONENTS; + return TRAVERSE_CONTINUE; +} + +// Verify that all types are correct. + +void +Gogo::verify_types() +{ + Verify_types traverse; + this->traverse(&traverse); +} + +// Traversal class used to lower parse tree. + +class Lower_parse_tree : public Traverse +{ + public: + Lower_parse_tree(Gogo* gogo, Named_object* function) + : Traverse(traverse_constants + | traverse_functions + | traverse_statements + | traverse_expressions), + gogo_(gogo), function_(function), iota_value_(-1) + { } + + int + constant(Named_object*, bool); + + int + function(Named_object*); + + int + statement(Block*, size_t* pindex, Statement*); + + int + expression(Expression**); + + private: + // General IR. + Gogo* gogo_; + // The function we are traversing. + Named_object* function_; + // Value to use for the predeclared constant iota. + int iota_value_; +}; + +// Lower constants. We handle constants specially so that we can set +// the right value for the predeclared constant iota. This works in +// conjunction with the way we lower Const_expression objects. + +int +Lower_parse_tree::constant(Named_object* no, bool) +{ + Named_constant* nc = no->const_value(); + + // We can recursively a constant if the initializer expression + // manages to refer to itself. + if (nc->lowering()) + return TRAVERSE_CONTINUE; + nc->set_lowering(); + + gcc_assert(this->iota_value_ == -1); + this->iota_value_ = nc->iota_value(); + nc->traverse_expression(this); + this->iota_value_ = -1; + + nc->clear_lowering(); + + // We will traverse the expression a second time, but that will be + // fast. + + return TRAVERSE_CONTINUE; +} + +// Lower function closure types. Record the function while lowering +// it, so that we can pass it down when lowering an expression. + +int +Lower_parse_tree::function(Named_object* no) +{ + no->func_value()->set_closure_type(); + + gcc_assert(this->function_ == NULL); + this->function_ = no; + int t = no->func_value()->traverse(this); + this->function_ = NULL; + + if (t == TRAVERSE_EXIT) + return t; + return TRAVERSE_SKIP_COMPONENTS; +} + +// Lower statement parse trees. + +int +Lower_parse_tree::statement(Block* block, size_t* pindex, Statement* sorig) +{ + // Lower the expressions first. + int t = sorig->traverse_contents(this); + if (t == TRAVERSE_EXIT) + return t; + + // Keep lowering until nothing changes. + Statement* s = sorig; + while (true) + { + Statement* snew = s->lower(this->gogo_, block); + if (snew == s) + break; + s = snew; + t = s->traverse_contents(this); + if (t == TRAVERSE_EXIT) + return t; + } + + if (s != sorig) + block->replace_statement(*pindex, s); + + return TRAVERSE_SKIP_COMPONENTS; +} + +// Lower expression parse trees. + +int +Lower_parse_tree::expression(Expression** pexpr) +{ + // We have to lower all subexpressions first, so that we can get + // their type if necessary. This is awkward, because we don't have + // a postorder traversal pass. + if ((*pexpr)->traverse_subexpressions(this) == TRAVERSE_EXIT) + return TRAVERSE_EXIT; + // Keep lowering until nothing changes. + while (true) + { + Expression* e = *pexpr; + Expression* enew = e->lower(this->gogo_, this->function_, + this->iota_value_); + if (enew == e) + break; + *pexpr = enew; + } + return TRAVERSE_SKIP_COMPONENTS; +} + +// Lower the parse tree. This is called after the parse is complete, +// when all names should be resolved. + +void +Gogo::lower_parse_tree() +{ + Lower_parse_tree lower_parse_tree(this, NULL); + this->traverse(&lower_parse_tree); +} + +// Lower an expression. + +void +Gogo::lower_expression(Named_object* function, Expression** pexpr) +{ + Lower_parse_tree lower_parse_tree(this, function); + lower_parse_tree.expression(pexpr); +} + +// Lower a constant. This is called when lowering a reference to a +// constant. We have to make sure that the constant has already been +// lowered. + +void +Gogo::lower_constant(Named_object* no) +{ + gcc_assert(no->is_const()); + Lower_parse_tree lower(this, NULL); + lower.constant(no, false); +} + +// Look for interface types to finalize methods of inherited +// interfaces. + +class Finalize_methods : public Traverse +{ + public: + Finalize_methods(Gogo* gogo) + : Traverse(traverse_types), + gogo_(gogo) + { } + + int + type(Type*); + + private: + Gogo* gogo_; +}; + +// Finalize the methods of an interface type. + +int +Finalize_methods::type(Type* t) +{ + // Check the classification so that we don't finalize the methods + // twice for a named interface type. + switch (t->classification()) + { + case Type::TYPE_INTERFACE: + t->interface_type()->finalize_methods(); + break; + + case Type::TYPE_NAMED: + { + // We have to finalize the methods of the real type first. + // But if the real type is a struct type, then we only want to + // finalize the methods of the field types, not of the struct + // type itself. We don't want to add methods to the struct, + // since it has a name. + Type* rt = t->named_type()->real_type(); + if (rt->classification() != Type::TYPE_STRUCT) + { + if (Type::traverse(rt, this) == TRAVERSE_EXIT) + return TRAVERSE_EXIT; + } + else + { + if (rt->struct_type()->traverse_field_types(this) == TRAVERSE_EXIT) + return TRAVERSE_EXIT; + } + + t->named_type()->finalize_methods(this->gogo_); + + return TRAVERSE_SKIP_COMPONENTS; + } + + case Type::TYPE_STRUCT: + t->struct_type()->finalize_methods(this->gogo_); + break; + + default: + break; + } + + return TRAVERSE_CONTINUE; +} + +// Finalize method lists and build stub methods for types. + +void +Gogo::finalize_methods() +{ + Finalize_methods finalize(this); + this->traverse(&finalize); +} + +// Set types for unspecified variables and constants. + +void +Gogo::determine_types() +{ + Bindings* bindings = this->current_bindings(); + for (Bindings::const_definitions_iterator p = bindings->begin_definitions(); + p != bindings->end_definitions(); + ++p) + { + if ((*p)->is_function()) + (*p)->func_value()->determine_types(); + else if ((*p)->is_variable()) + (*p)->var_value()->determine_type(); + else if ((*p)->is_const()) + (*p)->const_value()->determine_type(); + + // See if a variable requires us to build an initialization + // function. We know that we will see all global variables + // here. + if (!this->need_init_fn_ && (*p)->is_variable()) + { + Variable* variable = (*p)->var_value(); + + // If this is a global variable which requires runtime + // initialization, we need an initialization function. + if (!variable->is_global() || variable->init() == NULL) + ; + else if (variable->type()->interface_type() != NULL) + this->need_init_fn_ = true; + else if (variable->init()->is_constant()) + ; + else if (!variable->init()->is_composite_literal()) + this->need_init_fn_ = true; + else if (variable->init()->is_nonconstant_composite_literal()) + this->need_init_fn_ = true; + + // If this is a global variable which holds a pointer value, + // then we need an initialization function to register it as a + // GC root. + if (variable->is_global() && variable->type()->has_pointer()) + this->need_init_fn_ = true; + } + } + + // Determine the types of constants in packages. + for (Packages::const_iterator p = this->packages_.begin(); + p != this->packages_.end(); + ++p) + p->second->determine_types(); +} + +// Traversal class used for type checking. + +class Check_types_traverse : public Traverse +{ + public: + Check_types_traverse(Gogo* gogo) + : Traverse(traverse_variables + | traverse_constants + | traverse_statements + | traverse_expressions), + gogo_(gogo) + { } + + int + variable(Named_object*); + + int + constant(Named_object*, bool); + + int + statement(Block*, size_t* pindex, Statement*); + + int + expression(Expression**); + + private: + // General IR. + Gogo* gogo_; +}; + +// Check that a variable initializer has the right type. + +int +Check_types_traverse::variable(Named_object* named_object) +{ + if (named_object->is_variable()) + { + Variable* var = named_object->var_value(); + Expression* init = var->init(); + std::string reason; + if (init != NULL + && !Type::are_assignable(var->type(), init->type(), &reason)) + { + if (reason.empty()) + error_at(var->location(), "incompatible type in initialization"); + else + error_at(var->location(), + "incompatible type in initialization (%s)", + reason.c_str()); + var->clear_init(); + } + } + return TRAVERSE_CONTINUE; +} + +// Check that a constant initializer has the right type. + +int +Check_types_traverse::constant(Named_object* named_object, bool) +{ + Named_constant* constant = named_object->const_value(); + Type* ctype = constant->type(); + if (ctype->integer_type() == NULL + && ctype->float_type() == NULL + && ctype->complex_type() == NULL + && !ctype->is_boolean_type() + && !ctype->is_string_type()) + { + error_at(constant->location(), "invalid constant type"); + constant->set_error(); + } + else if (!constant->expr()->is_constant()) + { + error_at(constant->expr()->location(), "expression is not constant"); + constant->set_error(); + } + else if (!Type::are_assignable(constant->type(), constant->expr()->type(), + NULL)) + { + error_at(constant->location(), + "initialization expression has wrong type"); + constant->set_error(); + } + return TRAVERSE_CONTINUE; +} + +// Check that types are valid in a statement. + +int +Check_types_traverse::statement(Block*, size_t*, Statement* s) +{ + s->check_types(this->gogo_); + return TRAVERSE_CONTINUE; +} + +// Check that types are valid in an expression. + +int +Check_types_traverse::expression(Expression** expr) +{ + (*expr)->check_types(this->gogo_); + return TRAVERSE_CONTINUE; +} + +// Check that types are valid. + +void +Gogo::check_types() +{ + Check_types_traverse traverse(this); + this->traverse(&traverse); +} + +// Check the types in a single block. + +void +Gogo::check_types_in_block(Block* block) +{ + Check_types_traverse traverse(this); + block->traverse(&traverse); +} + +// A traversal class used to find a single shortcut operator within an +// expression. + +class Find_shortcut : public Traverse +{ + public: + Find_shortcut() + : Traverse(traverse_blocks + | traverse_statements + | traverse_expressions), + found_(NULL) + { } + + // A pointer to the expression which was found, or NULL if none was + // found. + Expression** + found() const + { return this->found_; } + + protected: + int + block(Block*) + { return TRAVERSE_SKIP_COMPONENTS; } + + int + statement(Block*, size_t*, Statement*) + { return TRAVERSE_SKIP_COMPONENTS; } + + int + expression(Expression**); + + private: + Expression** found_; +}; + +// Find a shortcut expression. + +int +Find_shortcut::expression(Expression** pexpr) +{ + Expression* expr = *pexpr; + Binary_expression* be = expr->binary_expression(); + if (be == NULL) + return TRAVERSE_CONTINUE; + Operator op = be->op(); + if (op != OPERATOR_OROR && op != OPERATOR_ANDAND) + return TRAVERSE_CONTINUE; + gcc_assert(this->found_ == NULL); + this->found_ = pexpr; + return TRAVERSE_EXIT; +} + +// A traversal class used to turn shortcut operators into explicit if +// statements. + +class Shortcuts : public Traverse +{ + public: + Shortcuts() + : Traverse(traverse_variables + | traverse_statements) + { } + + protected: + int + variable(Named_object*); + + int + statement(Block*, size_t*, Statement*); + + private: + // Convert a shortcut operator. + Statement* + convert_shortcut(Block* enclosing, Expression** pshortcut); +}; + +// Remove shortcut operators in a single statement. + +int +Shortcuts::statement(Block* block, size_t* pindex, Statement* s) +{ + // FIXME: This approach doesn't work for switch statements, because + // we add the new statements before the whole switch when we need to + // instead add them just before the switch expression. The right + // fix is probably to lower switch statements with nonconstant cases + // to a series of conditionals. + if (s->switch_statement() != NULL) + return TRAVERSE_CONTINUE; + + while (true) + { + Find_shortcut find_shortcut; + + // If S is a variable declaration, then ordinary traversal won't + // do anything. We want to explicitly traverse the + // initialization expression if there is one. + Variable_declaration_statement* vds = s->variable_declaration_statement(); + Expression* init = NULL; + if (vds == NULL) + s->traverse_contents(&find_shortcut); + else + { + init = vds->var()->var_value()->init(); + if (init == NULL) + return TRAVERSE_CONTINUE; + init->traverse(&init, &find_shortcut); + } + Expression** pshortcut = find_shortcut.found(); + if (pshortcut == NULL) + return TRAVERSE_CONTINUE; + + Statement* snew = this->convert_shortcut(block, pshortcut); + block->insert_statement_before(*pindex, snew); + ++*pindex; + + if (pshortcut == &init) + vds->var()->var_value()->set_init(init); + } +} + +// Remove shortcut operators in the initializer of a global variable. + +int +Shortcuts::variable(Named_object* no) +{ + if (no->is_result_variable()) + return TRAVERSE_CONTINUE; + Variable* var = no->var_value(); + Expression* init = var->init(); + if (!var->is_global() || init == NULL) + return TRAVERSE_CONTINUE; + + while (true) + { + Find_shortcut find_shortcut; + init->traverse(&init, &find_shortcut); + Expression** pshortcut = find_shortcut.found(); + if (pshortcut == NULL) + return TRAVERSE_CONTINUE; + + Statement* snew = this->convert_shortcut(NULL, pshortcut); + var->add_preinit_statement(snew); + if (pshortcut == &init) + var->set_init(init); + } +} + +// Given an expression which uses a shortcut operator, return a +// statement which implements it, and update *PSHORTCUT accordingly. + +Statement* +Shortcuts::convert_shortcut(Block* enclosing, Expression** pshortcut) +{ + Binary_expression* shortcut = (*pshortcut)->binary_expression(); + Expression* left = shortcut->left(); + Expression* right = shortcut->right(); + source_location loc = shortcut->location(); + + Block* retblock = new Block(enclosing, loc); + retblock->set_end_location(loc); + + Temporary_statement* ts = Statement::make_temporary(Type::make_boolean_type(), + left, loc); + retblock->add_statement(ts); + + Block* block = new Block(retblock, loc); + block->set_end_location(loc); + Expression* tmpref = Expression::make_temporary_reference(ts, loc); + Statement* assign = Statement::make_assignment(tmpref, right, loc); + block->add_statement(assign); + + Expression* cond = Expression::make_temporary_reference(ts, loc); + if (shortcut->binary_expression()->op() == OPERATOR_OROR) + cond = Expression::make_unary(OPERATOR_NOT, cond, loc); + + Statement* if_statement = Statement::make_if_statement(cond, block, NULL, + loc); + retblock->add_statement(if_statement); + + *pshortcut = Expression::make_temporary_reference(ts, loc); + + delete shortcut; + + // Now convert any shortcut operators in LEFT and RIGHT. + Shortcuts shortcuts; + retblock->traverse(&shortcuts); + + return Statement::make_block_statement(retblock, loc); +} + +// Turn shortcut operators into explicit if statements. Doing this +// considerably simplifies the order of evaluation rules. + +void +Gogo::remove_shortcuts() +{ + Shortcuts shortcuts; + this->traverse(&shortcuts); +} + +// A traversal class which finds all the expressions which must be +// evaluated in order within a statement or larger expression. This +// is used to implement the rules about order of evaluation. + +class Find_eval_ordering : public Traverse +{ + private: + typedef std::vector<Expression**> Expression_pointers; + + public: + Find_eval_ordering() + : Traverse(traverse_blocks + | traverse_statements + | traverse_expressions), + exprs_() + { } + + size_t + size() const + { return this->exprs_.size(); } + + typedef Expression_pointers::const_iterator const_iterator; + + const_iterator + begin() const + { return this->exprs_.begin(); } + + const_iterator + end() const + { return this->exprs_.end(); } + + protected: + int + block(Block*) + { return TRAVERSE_SKIP_COMPONENTS; } + + int + statement(Block*, size_t*, Statement*) + { return TRAVERSE_SKIP_COMPONENTS; } + + int + expression(Expression**); + + private: + // A list of pointers to expressions with side-effects. + Expression_pointers exprs_; +}; + +// If an expression must be evaluated in order, put it on the list. + +int +Find_eval_ordering::expression(Expression** expression_pointer) +{ + // We have to look at subexpressions before this one. + if ((*expression_pointer)->traverse_subexpressions(this) == TRAVERSE_EXIT) + return TRAVERSE_EXIT; + if ((*expression_pointer)->must_eval_in_order()) + this->exprs_.push_back(expression_pointer); + return TRAVERSE_SKIP_COMPONENTS; +} + +// A traversal class for ordering evaluations. + +class Order_eval : public Traverse +{ + public: + Order_eval() + : Traverse(traverse_variables + | traverse_statements) + { } + + int + variable(Named_object*); + + int + statement(Block*, size_t*, Statement*); +}; + +// Implement the order of evaluation rules for a statement. + +int +Order_eval::statement(Block* block, size_t* pindex, Statement* s) +{ + // FIXME: This approach doesn't work for switch statements, because + // we add the new statements before the whole switch when we need to + // instead add them just before the switch expression. The right + // fix is probably to lower switch statements with nonconstant cases + // to a series of conditionals. + if (s->switch_statement() != NULL) + return TRAVERSE_CONTINUE; + + Find_eval_ordering find_eval_ordering; + + // If S is a variable declaration, then ordinary traversal won't do + // anything. We want to explicitly traverse the initialization + // expression if there is one. + Variable_declaration_statement* vds = s->variable_declaration_statement(); + Expression* init = NULL; + Expression* orig_init = NULL; + if (vds == NULL) + s->traverse_contents(&find_eval_ordering); + else + { + init = vds->var()->var_value()->init(); + if (init == NULL) + return TRAVERSE_CONTINUE; + orig_init = init; + + // It might seem that this could be + // init->traverse_subexpressions. Unfortunately that can fail + // in a case like + // var err os.Error + // newvar, err := call(arg()) + // Here newvar will have an init of call result 0 of + // call(arg()). If we only traverse subexpressions, we will + // only find arg(), and we won't bother to move anything out. + // Then we get to the assignment to err, we will traverse the + // whole statement, and this time we will find both call() and + // arg(), and so we will move them out. This will cause them to + // be put into temporary variables before the assignment to err + // but after the declaration of newvar. To avoid that problem, + // we traverse the entire expression here. + Expression::traverse(&init, &find_eval_ordering); + } + + if (find_eval_ordering.size() <= 1) + { + // If there is only one expression with a side-effect, we can + // leave it in place. + return TRAVERSE_CONTINUE; + } + + bool is_thunk = s->thunk_statement() != NULL; + for (Find_eval_ordering::const_iterator p = find_eval_ordering.begin(); + p != find_eval_ordering.end(); + ++p) + { + Expression** pexpr = *p; + + // If the last expression is a send or receive expression, we + // may be ignoring the value; we don't want to evaluate it + // early. + if (p + 1 == find_eval_ordering.end() + && ((*pexpr)->classification() == Expression::EXPRESSION_SEND + || (*pexpr)->classification() == Expression::EXPRESSION_RECEIVE)) + break; + + // The last expression in a thunk will be the call passed to go + // or defer, which we must not evaluate early. + if (is_thunk && p + 1 == find_eval_ordering.end()) + break; + + source_location loc = (*pexpr)->location(); + Temporary_statement* ts = Statement::make_temporary(NULL, *pexpr, loc); + block->insert_statement_before(*pindex, ts); + ++*pindex; + + *pexpr = Expression::make_temporary_reference(ts, loc); + } + + if (init != orig_init) + vds->var()->var_value()->set_init(init); + + return TRAVERSE_CONTINUE; +} + +// Implement the order of evaluation rules for the initializer of a +// global variable. + +int +Order_eval::variable(Named_object* no) +{ + if (no->is_result_variable()) + return TRAVERSE_CONTINUE; + Variable* var = no->var_value(); + Expression* init = var->init(); + if (!var->is_global() || init == NULL) + return TRAVERSE_CONTINUE; + + Find_eval_ordering find_eval_ordering; + init->traverse_subexpressions(&find_eval_ordering); + + if (find_eval_ordering.size() <= 1) + { + // If there is only one expression with a side-effect, we can + // leave it in place. + return TRAVERSE_SKIP_COMPONENTS; + } + + for (Find_eval_ordering::const_iterator p = find_eval_ordering.begin(); + p != find_eval_ordering.end(); + ++p) + { + Expression** pexpr = *p; + source_location loc = (*pexpr)->location(); + Temporary_statement* ts = Statement::make_temporary(NULL, *pexpr, loc); + var->add_preinit_statement(ts); + *pexpr = Expression::make_temporary_reference(ts, loc); + } + + return TRAVERSE_SKIP_COMPONENTS; +} + +// Use temporary variables to implement the order of evaluation rules. + +void +Gogo::order_evaluations() +{ + Order_eval order_eval; + this->traverse(&order_eval); +} + +// Traversal to convert calls to the predeclared recover function to +// pass in an argument indicating whether it can recover from a panic +// or not. + +class Convert_recover : public Traverse +{ + public: + Convert_recover(Named_object* arg) + : Traverse(traverse_expressions), + arg_(arg) + { } + + protected: + int + expression(Expression**); + + private: + // The argument to pass to the function. + Named_object* arg_; +}; + +// Convert calls to recover. + +int +Convert_recover::expression(Expression** pp) +{ + Call_expression* ce = (*pp)->call_expression(); + if (ce != NULL && ce->is_recover_call()) + ce->set_recover_arg(Expression::make_var_reference(this->arg_, + ce->location())); + return TRAVERSE_CONTINUE; +} + +// Traversal for build_recover_thunks. + +class Build_recover_thunks : public Traverse +{ + public: + Build_recover_thunks(Gogo* gogo) + : Traverse(traverse_functions), + gogo_(gogo) + { } + + int + function(Named_object*); + + private: + Expression* + can_recover_arg(source_location); + + // General IR. + Gogo* gogo_; +}; + +// If this function calls recover, turn it into a thunk. + +int +Build_recover_thunks::function(Named_object* orig_no) +{ + Function* orig_func = orig_no->func_value(); + if (!orig_func->calls_recover() + || orig_func->is_recover_thunk() + || orig_func->has_recover_thunk()) + return TRAVERSE_CONTINUE; + + Gogo* gogo = this->gogo_; + source_location location = orig_func->location(); + + static int count; + char buf[50]; + + Function_type* orig_fntype = orig_func->type(); + Typed_identifier_list* new_params = new Typed_identifier_list(); + std::string receiver_name; + if (orig_fntype->is_method()) + { + const Typed_identifier* receiver = orig_fntype->receiver(); + snprintf(buf, sizeof buf, "rt.%u", count); + ++count; + receiver_name = buf; + new_params->push_back(Typed_identifier(receiver_name, receiver->type(), + receiver->location())); + } + const Typed_identifier_list* orig_params = orig_fntype->parameters(); + if (orig_params != NULL && !orig_params->empty()) + { + for (Typed_identifier_list::const_iterator p = orig_params->begin(); + p != orig_params->end(); + ++p) + { + snprintf(buf, sizeof buf, "pt.%u", count); + ++count; + new_params->push_back(Typed_identifier(buf, p->type(), + p->location())); + } + } + snprintf(buf, sizeof buf, "pr.%u", count); + ++count; + std::string can_recover_name = buf; + new_params->push_back(Typed_identifier(can_recover_name, + Type::make_boolean_type(), + orig_fntype->location())); + + const Typed_identifier_list* orig_results = orig_fntype->results(); + Typed_identifier_list* new_results; + if (orig_results == NULL || orig_results->empty()) + new_results = NULL; + else + { + new_results = new Typed_identifier_list(); + for (Typed_identifier_list::const_iterator p = orig_results->begin(); + p != orig_results->end(); + ++p) + new_results->push_back(*p); + } + + Function_type *new_fntype = Type::make_function_type(NULL, new_params, + new_results, + orig_fntype->location()); + if (orig_fntype->is_varargs()) + new_fntype->set_is_varargs(); + + std::string name = orig_no->name() + "$recover"; + Named_object *new_no = gogo->start_function(name, new_fntype, false, + location); + Function *new_func = new_no->func_value(); + if (orig_func->enclosing() != NULL) + new_func->set_enclosing(orig_func->enclosing()); + + // We build the code for the original function attached to the new + // function, and then swap the original and new function bodies. + // This means that existing references to the original function will + // then refer to the new function. That makes this code a little + // confusing, in that the reference to NEW_NO really refers to the + // other function, not the one we are building. + + Expression* closure = NULL; + if (orig_func->needs_closure()) + { + Named_object* orig_closure_no = orig_func->closure_var(); + Variable* orig_closure_var = orig_closure_no->var_value(); + Variable* new_var = new Variable(orig_closure_var->type(), NULL, false, + true, false, location); + snprintf(buf, sizeof buf, "closure.%u", count); + ++count; + Named_object* new_closure_no = Named_object::make_variable(buf, NULL, + new_var); + new_func->set_closure_var(new_closure_no); + closure = Expression::make_var_reference(new_closure_no, location); + } + + Expression* fn = Expression::make_func_reference(new_no, closure, location); + + Expression_list* args = new Expression_list(); + if (orig_fntype->is_method()) + { + Named_object* rec_no = gogo->lookup(receiver_name, NULL); + gcc_assert(rec_no != NULL + && rec_no->is_variable() + && rec_no->var_value()->is_parameter()); + args->push_back(Expression::make_var_reference(rec_no, location)); + } + if (new_params != NULL) + { + // Note that we skip the last parameter, which is the boolean + // indicating whether recover can succed. + for (Typed_identifier_list::const_iterator p = new_params->begin(); + p + 1 != new_params->end(); + ++p) + { + Named_object* p_no = gogo->lookup(p->name(), NULL); + gcc_assert(p_no != NULL + && p_no->is_variable() + && p_no->var_value()->is_parameter()); + args->push_back(Expression::make_var_reference(p_no, location)); + } + } + args->push_back(this->can_recover_arg(location)); + + Expression* call = Expression::make_call(fn, args, false, location); + + Statement* s; + if (orig_fntype->results() == NULL || orig_fntype->results()->empty()) + s = Statement::make_statement(call); + else + { + Expression_list* vals = new Expression_list(); + vals->push_back(call); + s = Statement::make_return_statement(new_func->type()->results(), + vals, location); + } + s->determine_types(); + gogo->add_statement(s); + + gogo->finish_function(location); + + // Swap the function bodies and types. + new_func->swap_for_recover(orig_func); + orig_func->set_is_recover_thunk(); + new_func->set_calls_recover(); + new_func->set_has_recover_thunk(); + + Bindings* orig_bindings = orig_func->block()->bindings(); + Bindings* new_bindings = new_func->block()->bindings(); + if (orig_fntype->is_method()) + { + // We changed the receiver to be a regular parameter. We have + // to update the binding accordingly in both functions. + Named_object* orig_rec_no = orig_bindings->lookup_local(receiver_name); + gcc_assert(orig_rec_no != NULL + && orig_rec_no->is_variable() + && !orig_rec_no->var_value()->is_receiver()); + orig_rec_no->var_value()->set_is_receiver(); + + Named_object* new_rec_no = new_bindings->lookup_local(receiver_name); + gcc_assert(new_rec_no != NULL + && new_rec_no->is_variable() + && !new_rec_no->var_value()->is_receiver()); + new_rec_no->var_value()->set_is_not_receiver(); + } + + // Because we flipped blocks but not types, the can_recover + // parameter appears in the (now) old bindings as a parameter. + // Change it to a local variable, whereupon it will be discarded. + Named_object* can_recover_no = orig_bindings->lookup_local(can_recover_name); + gcc_assert(can_recover_no != NULL + && can_recover_no->is_variable() + && can_recover_no->var_value()->is_parameter()); + orig_bindings->remove_binding(can_recover_no); + + // Add the can_recover argument to the (now) new bindings, and + // attach it to any recover statements. + Variable* can_recover_var = new Variable(Type::make_boolean_type(), NULL, + false, true, false, location); + can_recover_no = new_bindings->add_variable(can_recover_name, NULL, + can_recover_var); + Convert_recover convert_recover(can_recover_no); + new_func->traverse(&convert_recover); + + return TRAVERSE_CONTINUE; +} + +// Return the expression to pass for the .can_recover parameter to the +// new function. This indicates whether a call to recover may return +// non-nil. The expression is +// __go_can_recover(__builtin_return_address()). + +Expression* +Build_recover_thunks::can_recover_arg(source_location location) +{ + static Named_object* builtin_return_address; + if (builtin_return_address == NULL) + { + const source_location bloc = BUILTINS_LOCATION; + + Typed_identifier_list* param_types = new Typed_identifier_list(); + Type* uint_type = Type::lookup_integer_type("uint"); + param_types->push_back(Typed_identifier("l", uint_type, bloc)); + + Typed_identifier_list* return_types = new Typed_identifier_list(); + Type* voidptr_type = Type::make_pointer_type(Type::make_void_type()); + return_types->push_back(Typed_identifier("", voidptr_type, bloc)); + + Function_type* fntype = Type::make_function_type(NULL, param_types, + return_types, bloc); + builtin_return_address = + Named_object::make_function_declaration("__builtin_return_address", + NULL, fntype, bloc); + const char* n = "__builtin_return_address"; + builtin_return_address->func_declaration_value()->set_asm_name(n); + } + + static Named_object* can_recover; + if (can_recover == NULL) + { + const source_location bloc = BUILTINS_LOCATION; + Typed_identifier_list* param_types = new Typed_identifier_list(); + Type* voidptr_type = Type::make_pointer_type(Type::make_void_type()); + param_types->push_back(Typed_identifier("a", voidptr_type, bloc)); + Type* boolean_type = Type::make_boolean_type(); + Typed_identifier_list* results = new Typed_identifier_list(); + results->push_back(Typed_identifier("", boolean_type, bloc)); + Function_type* fntype = Type::make_function_type(NULL, param_types, + results, bloc); + can_recover = Named_object::make_function_declaration("__go_can_recover", + NULL, fntype, + bloc); + can_recover->func_declaration_value()->set_asm_name("__go_can_recover"); + } + + Expression* fn = Expression::make_func_reference(builtin_return_address, + NULL, location); + + mpz_t zval; + mpz_init_set_ui(zval, 0UL); + Expression* zexpr = Expression::make_integer(&zval, NULL, location); + mpz_clear(zval); + Expression_list *args = new Expression_list(); + args->push_back(zexpr); + + Expression* call = Expression::make_call(fn, args, false, location); + + args = new Expression_list(); + args->push_back(call); + + fn = Expression::make_func_reference(can_recover, NULL, location); + return Expression::make_call(fn, args, false, location); +} + +// Build thunks for functions which call recover. We build a new +// function with an extra parameter, which is whether a call to +// recover can succeed. We then move the body of this function to +// that one. We then turn this function into a thunk which calls the +// new one, passing the value of +// __go_can_recover(__builtin_return_address()). The function will be +// marked as not splitting the stack. This will cooperate with the +// implementation of defer to make recover do the right thing. + +void +Gogo::build_recover_thunks() +{ + Build_recover_thunks build_recover_thunks(this); + this->traverse(&build_recover_thunks); +} + +// Look for named types to see whether we need to create an interface +// method table. + +class Build_method_tables : public Traverse +{ + public: + Build_method_tables(Gogo* gogo, + const std::vector<Interface_type*>& interfaces) + : Traverse(traverse_types), + gogo_(gogo), interfaces_(interfaces) + { } + + int + type(Type*); + + private: + // The IR. + Gogo* gogo_; + // A list of locally defined interfaces which have hidden methods. + const std::vector<Interface_type*>& interfaces_; +}; + +// Build all required interface method tables for types. We need to +// ensure that we have an interface method table for every interface +// which has a hidden method, for every named type which implements +// that interface. Normally we can just build interface method tables +// as we need them. However, in some cases we can require an +// interface method table for an interface defined in a different +// package for a type defined in that package. If that interface and +// type both use a hidden method, that is OK. However, we will not be +// able to build that interface method table when we need it, because +// the type's hidden method will be static. So we have to build it +// here, and just refer it from other packages as needed. + +void +Gogo::build_interface_method_tables() +{ + std::vector<Interface_type*> hidden_interfaces; + hidden_interfaces.reserve(this->interface_types_.size()); + for (std::vector<Interface_type*>::const_iterator pi = + this->interface_types_.begin(); + pi != this->interface_types_.end(); + ++pi) + { + const Typed_identifier_list* methods = (*pi)->methods(); + if (methods == NULL) + continue; + for (Typed_identifier_list::const_iterator pm = methods->begin(); + pm != methods->end(); + ++pm) + { + if (Gogo::is_hidden_name(pm->name())) + { + hidden_interfaces.push_back(*pi); + break; + } + } + } + + if (!hidden_interfaces.empty()) + { + // Now traverse the tree looking for all named types. + Build_method_tables bmt(this, hidden_interfaces); + this->traverse(&bmt); + } + + // We no longer need the list of interfaces. + + this->interface_types_.clear(); +} + +// This is called for each type. For a named type, for each of the +// interfaces with hidden methods that it implements, create the +// method table. + +int +Build_method_tables::type(Type* type) +{ + Named_type* nt = type->named_type(); + if (nt != NULL) + { + for (std::vector<Interface_type*>::const_iterator p = + this->interfaces_.begin(); + p != this->interfaces_.end(); + ++p) + { + // We ask whether a pointer to the named type implements the + // interface, because a pointer can implement more methods + // than a value. + if ((*p)->implements_interface(Type::make_pointer_type(nt), NULL)) + { + nt->interface_method_table(this->gogo_, *p, false); + nt->interface_method_table(this->gogo_, *p, true); + } + } + } + return TRAVERSE_CONTINUE; +} + +// Traversal class used to check for return statements. + +class Check_return_statements_traverse : public Traverse +{ + public: + Check_return_statements_traverse() + : Traverse(traverse_functions) + { } + + int + function(Named_object*); +}; + +// Check that a function has a return statement if it needs one. + +int +Check_return_statements_traverse::function(Named_object* no) +{ + Function* func = no->func_value(); + const Function_type* fntype = func->type(); + const Typed_identifier_list* results = fntype->results(); + + // We only need a return statement if there is a return value. + if (results == NULL || results->empty()) + return TRAVERSE_CONTINUE; + + if (func->block()->may_fall_through()) + error_at(func->location(), "control reaches end of non-void function"); + + return TRAVERSE_CONTINUE; +} + +// Check return statements. + +void +Gogo::check_return_statements() +{ + Check_return_statements_traverse traverse; + this->traverse(&traverse); +} + +// Get the unique prefix to use before all exported symbols. This +// must be unique across the entire link. + +const std::string& +Gogo::unique_prefix() const +{ + gcc_assert(!this->unique_prefix_.empty()); + return this->unique_prefix_; +} + +// Set the unique prefix to use before all exported symbols. This +// comes from the command line option -fgo-prefix=XXX. + +void +Gogo::set_unique_prefix(const std::string& arg) +{ + gcc_assert(this->unique_prefix_.empty()); + this->unique_prefix_ = arg; +} + +// Work out the package priority. It is one more than the maximum +// priority of an imported package. + +int +Gogo::package_priority() const +{ + int priority = 0; + for (Packages::const_iterator p = this->packages_.begin(); + p != this->packages_.end(); + ++p) + if (p->second->priority() > priority) + priority = p->second->priority(); + return priority + 1; +} + +// Export identifiers as requested. + +void +Gogo::do_exports() +{ + // For now we always stream to a section. Later we may want to + // support streaming to a separate file. + Stream_to_section stream; + + Export exp(&stream); + exp.register_builtin_types(this); + exp.export_globals(this->package_name(), + this->unique_prefix(), + this->package_priority(), + (this->need_init_fn_ && this->package_name() != "main" + ? this->get_init_fn_name() + : ""), + this->imported_init_fns_, + this->package_->bindings()); +} + +// Class Function. + +Function::Function(Function_type* type, Function* enclosing, Block* block, + source_location location) + : type_(type), enclosing_(enclosing), named_results_(NULL), + closure_var_(NULL), block_(block), location_(location), fndecl_(NULL), + defer_stack_(NULL), calls_recover_(false), is_recover_thunk_(false), + has_recover_thunk_(false) +{ +} + +// Create the named result variables. + +void +Function::create_named_result_variables() +{ + const Typed_identifier_list* results = this->type_->results(); + if (results == NULL + || results->empty() + || results->front().name().empty()) + return; + + this->named_results_ = new Named_results(); + this->named_results_->reserve(results->size()); + + Block* block = this->block_; + int index = 0; + for (Typed_identifier_list::const_iterator p = results->begin(); + p != results->end(); + ++p, ++index) + { + Result_variable* result = new Result_variable(p->type(), this, + index); + Named_object* no = block->bindings()->add_result_variable(p->name(), + result); + this->named_results_->push_back(no); + } +} + +// Return the closure variable, creating it if necessary. + +Named_object* +Function::closure_var() +{ + if (this->closure_var_ == NULL) + { + // We don't know the type of the variable yet. We add fields as + // we find them. + source_location loc = this->type_->location(); + Struct_field_list* sfl = new Struct_field_list; + Type* struct_type = Type::make_struct_type(sfl, loc); + Variable* var = new Variable(Type::make_pointer_type(struct_type), + NULL, false, true, false, loc); + this->closure_var_ = Named_object::make_variable("closure", NULL, var); + // Note that the new variable is not in any binding contour. + } + return this->closure_var_; +} + +// Set the type of the closure variable. + +void +Function::set_closure_type() +{ + if (this->closure_var_ == NULL) + return; + Named_object* closure = this->closure_var_; + Struct_type* st = closure->var_value()->type()->deref()->struct_type(); + unsigned int index = 0; + for (Closure_fields::const_iterator p = this->closure_fields_.begin(); + p != this->closure_fields_.end(); + ++p, ++index) + { + Named_object* no = p->first; + char buf[20]; + snprintf(buf, sizeof buf, "%u", index); + std::string n = no->name() + buf; + Type* var_type; + if (no->is_variable()) + var_type = no->var_value()->type(); + else + var_type = no->result_var_value()->type(); + Type* field_type = Type::make_pointer_type(var_type); + st->push_field(Struct_field(Typed_identifier(n, field_type, p->second))); + } +} + +// Return whether this function is a method. + +bool +Function::is_method() const +{ + return this->type_->is_method(); +} + +// Add a label definition. + +Label* +Function::add_label_definition(const std::string& label_name, + source_location location) +{ + Label* lnull = NULL; + std::pair<Labels::iterator, bool> ins = + this->labels_.insert(std::make_pair(label_name, lnull)); + if (ins.second) + { + // This is a new label. + Label* label = new Label(label_name); + label->define(location); + ins.first->second = label; + return label; + } + else + { + // The label was already in the hash table. + Label* label = ins.first->second; + if (!label->is_defined()) + { + label->define(location); + return label; + } + else + { + error_at(location, "redefinition of label %qs", + Gogo::message_name(label_name).c_str()); + inform(label->location(), "previous definition of %qs was here", + Gogo::message_name(label_name).c_str()); + return new Label(label_name); + } + } +} + +// Add a reference to a label. + +Label* +Function::add_label_reference(const std::string& label_name) +{ + Label* lnull = NULL; + std::pair<Labels::iterator, bool> ins = + this->labels_.insert(std::make_pair(label_name, lnull)); + if (!ins.second) + { + // The label was already in the hash table. + return ins.first->second; + } + else + { + gcc_assert(ins.first->second == NULL); + Label* label = new Label(label_name); + ins.first->second = label; + return label; + } +} + +// Swap one function with another. This is used when building the +// thunk we use to call a function which calls recover. It may not +// work for any other case. + +void +Function::swap_for_recover(Function *x) +{ + gcc_assert(this->enclosing_ == x->enclosing_); + gcc_assert(this->named_results_ == x->named_results_); + std::swap(this->closure_var_, x->closure_var_); + std::swap(this->block_, x->block_); + gcc_assert(this->location_ == x->location_); + gcc_assert(this->fndecl_ == NULL && x->fndecl_ == NULL); + gcc_assert(this->defer_stack_ == NULL && x->defer_stack_ == NULL); +} + +// Traverse the tree. + +int +Function::traverse(Traverse* traverse) +{ + unsigned int traverse_mask = traverse->traverse_mask(); + + // FIXME: We should check traverse_functions here if nested + // functions are stored in block bindings. + if (this->block_ != NULL + && (traverse_mask + & (Traverse::traverse_variables + | Traverse::traverse_constants + | Traverse::traverse_blocks + | Traverse::traverse_statements + | Traverse::traverse_expressions + | Traverse::traverse_types)) != 0) + { + if (this->block_->traverse(traverse) == TRAVERSE_EXIT) + return TRAVERSE_EXIT; + } + + return TRAVERSE_CONTINUE; +} + +// Work out types for unspecified variables and constants. + +void +Function::determine_types() +{ + if (this->block_ != NULL) + this->block_->determine_types(); +} + +// Export the function. + +void +Function::export_func(Export* exp, const std::string& name) const +{ + Function::export_func_with_type(exp, name, this->type_); +} + +// Export a function with a type. + +void +Function::export_func_with_type(Export* exp, const std::string& name, + const Function_type* fntype) +{ + exp->write_c_string("func "); + + if (fntype->is_method()) + { + exp->write_c_string("("); + exp->write_type(fntype->receiver()->type()); + exp->write_c_string(") "); + } + + exp->write_string(name); + + exp->write_c_string(" ("); + const Typed_identifier_list* parameters = fntype->parameters(); + if (parameters != NULL) + { + bool is_varargs = fntype->is_varargs(); + bool first = true; + for (Typed_identifier_list::const_iterator p = parameters->begin(); + p != parameters->end(); + ++p) + { + if (first) + first = false; + else + exp->write_c_string(", "); + if (!is_varargs || p + 1 != parameters->end()) + exp->write_type(p->type()); + else + { + exp->write_c_string("..."); + exp->write_type(p->type()->array_type()->element_type()); + } + } + } + exp->write_c_string(")"); + + const Typed_identifier_list* results = fntype->results(); + if (results != NULL) + { + if (results->size() == 1) + { + exp->write_c_string(" "); + exp->write_type(results->begin()->type()); + } + else + { + exp->write_c_string(" ("); + bool first = true; + for (Typed_identifier_list::const_iterator p = results->begin(); + p != results->end(); + ++p) + { + if (first) + first = false; + else + exp->write_c_string(", "); + exp->write_type(p->type()); + } + exp->write_c_string(")"); + } + } + exp->write_c_string(";\n"); +} + +// Import a function. + +void +Function::import_func(Import* imp, std::string* pname, + Typed_identifier** preceiver, + Typed_identifier_list** pparameters, + Typed_identifier_list** presults, + bool* is_varargs) +{ + imp->require_c_string("func "); + + *preceiver = NULL; + if (imp->peek_char() == '(') + { + imp->require_c_string("("); + Type* rtype = imp->read_type(); + *preceiver = new Typed_identifier(Import::import_marker, rtype, + imp->location()); + imp->require_c_string(") "); + } + + *pname = imp->read_identifier(); + + Typed_identifier_list* parameters; + *is_varargs = false; + imp->require_c_string(" ("); + if (imp->peek_char() == ')') + parameters = NULL; + else + { + parameters = new Typed_identifier_list(); + while (true) + { + if (imp->match_c_string("...")) + { + imp->advance(3); + *is_varargs = true; + } + + Type* ptype = imp->read_type(); + if (*is_varargs) + ptype = Type::make_array_type(ptype, NULL); + parameters->push_back(Typed_identifier(Import::import_marker, + ptype, imp->location())); + if (imp->peek_char() != ',') + break; + gcc_assert(!*is_varargs); + imp->require_c_string(", "); + } + } + imp->require_c_string(")"); + *pparameters = parameters; + + Typed_identifier_list* results; + if (imp->peek_char() != ' ') + results = NULL; + else + { + results = new Typed_identifier_list(); + imp->require_c_string(" "); + if (imp->peek_char() != '(') + { + Type* rtype = imp->read_type(); + results->push_back(Typed_identifier(Import::import_marker, rtype, + imp->location())); + } + else + { + imp->require_c_string("("); + while (true) + { + Type* rtype = imp->read_type(); + results->push_back(Typed_identifier(Import::import_marker, + rtype, imp->location())); + if (imp->peek_char() != ',') + break; + imp->require_c_string(", "); + } + imp->require_c_string(")"); + } + } + imp->require_c_string(";\n"); + *presults = results; +} + +// Class Block. + +Block::Block(Block* enclosing, source_location location) + : enclosing_(enclosing), statements_(), + bindings_(new Bindings(enclosing == NULL + ? NULL + : enclosing->bindings())), + start_location_(location), + end_location_(UNKNOWN_LOCATION) +{ +} + +// Add a statement to a block. + +void +Block::add_statement(Statement* statement) +{ + this->statements_.push_back(statement); +} + +// Add a statement to the front of a block. This is slow but is only +// used for reference counts of parameters. + +void +Block::add_statement_at_front(Statement* statement) +{ + this->statements_.insert(this->statements_.begin(), statement); +} + +// Replace a statement in a block. + +void +Block::replace_statement(size_t index, Statement* s) +{ + gcc_assert(index < this->statements_.size()); + this->statements_[index] = s; +} + +// Add a statement before another statement. + +void +Block::insert_statement_before(size_t index, Statement* s) +{ + gcc_assert(index < this->statements_.size()); + this->statements_.insert(this->statements_.begin() + index, s); +} + +// Add a statement after another statement. + +void +Block::insert_statement_after(size_t index, Statement* s) +{ + gcc_assert(index < this->statements_.size()); + this->statements_.insert(this->statements_.begin() + index + 1, s); +} + +// Traverse the tree. + +int +Block::traverse(Traverse* traverse) +{ + unsigned int traverse_mask = traverse->traverse_mask(); + + if ((traverse_mask & Traverse::traverse_blocks) != 0) + { + int t = traverse->block(this); + if (t == TRAVERSE_EXIT) + return TRAVERSE_EXIT; + else if (t == TRAVERSE_SKIP_COMPONENTS) + return TRAVERSE_CONTINUE; + } + + if ((traverse_mask + & (Traverse::traverse_variables + | Traverse::traverse_constants + | Traverse::traverse_expressions + | Traverse::traverse_types)) != 0) + { + for (Bindings::const_definitions_iterator pb = + this->bindings_->begin_definitions(); + pb != this->bindings_->end_definitions(); + ++pb) + { + switch ((*pb)->classification()) + { + case Named_object::NAMED_OBJECT_CONST: + if ((traverse_mask & Traverse::traverse_constants) != 0) + { + if (traverse->constant(*pb, false) == TRAVERSE_EXIT) + return TRAVERSE_EXIT; + } + if ((traverse_mask & Traverse::traverse_types) != 0 + || (traverse_mask & Traverse::traverse_expressions) != 0) + { + Type* t = (*pb)->const_value()->type(); + if (t != NULL + && Type::traverse(t, traverse) == TRAVERSE_EXIT) + return TRAVERSE_EXIT; + } + if ((traverse_mask & Traverse::traverse_expressions) != 0 + || (traverse_mask & Traverse::traverse_types) != 0) + { + if ((*pb)->const_value()->traverse_expression(traverse) + == TRAVERSE_EXIT) + return TRAVERSE_EXIT; + } + break; + + case Named_object::NAMED_OBJECT_VAR: + case Named_object::NAMED_OBJECT_RESULT_VAR: + if ((traverse_mask & Traverse::traverse_variables) != 0) + { + if (traverse->variable(*pb) == TRAVERSE_EXIT) + return TRAVERSE_EXIT; + } + if (((traverse_mask & Traverse::traverse_types) != 0 + || (traverse_mask & Traverse::traverse_expressions) != 0) + && ((*pb)->is_result_variable() + || (*pb)->var_value()->has_type())) + { + Type* t = ((*pb)->is_variable() + ? (*pb)->var_value()->type() + : (*pb)->result_var_value()->type()); + if (t != NULL + && Type::traverse(t, traverse) == TRAVERSE_EXIT) + return TRAVERSE_EXIT; + } + if ((*pb)->is_variable() + && ((traverse_mask & Traverse::traverse_expressions) != 0 + || (traverse_mask & Traverse::traverse_types) != 0)) + { + if ((*pb)->var_value()->traverse_expression(traverse) + == TRAVERSE_EXIT) + return TRAVERSE_EXIT; + } + break; + + case Named_object::NAMED_OBJECT_FUNC: + case Named_object::NAMED_OBJECT_FUNC_DECLARATION: + // FIXME: Where will nested functions be found? + gcc_unreachable(); + + case Named_object::NAMED_OBJECT_TYPE: + if ((traverse_mask & Traverse::traverse_types) != 0 + || (traverse_mask & Traverse::traverse_expressions) != 0) + { + if (Type::traverse((*pb)->type_value(), traverse) + == TRAVERSE_EXIT) + return TRAVERSE_EXIT; + } + break; + + case Named_object::NAMED_OBJECT_TYPE_DECLARATION: + case Named_object::NAMED_OBJECT_UNKNOWN: + break; + + case Named_object::NAMED_OBJECT_PACKAGE: + case Named_object::NAMED_OBJECT_SINK: + gcc_unreachable(); + + default: + gcc_unreachable(); + } + } + } + + // No point in checking traverse_mask here--if we got here we always + // want to walk the statements. The traversal can insert new + // statements before or after the current statement. Inserting + // statements before the current statement requires updating I via + // the pointer; those statements will not be traversed. Any new + // statements inserted after the current statement will be traversed + // in their turn. + for (size_t i = 0; i < this->statements_.size(); ++i) + { + if (this->statements_[i]->traverse(this, &i, traverse) == TRAVERSE_EXIT) + return TRAVERSE_EXIT; + } + + return TRAVERSE_CONTINUE; +} + +// Work out types for unspecified variables and constants. + +void +Block::determine_types() +{ + for (Bindings::const_definitions_iterator pb = + this->bindings_->begin_definitions(); + pb != this->bindings_->end_definitions(); + ++pb) + { + if ((*pb)->is_variable()) + (*pb)->var_value()->determine_type(); + else if ((*pb)->is_const()) + (*pb)->const_value()->determine_type(); + } + + for (std::vector<Statement*>::const_iterator ps = this->statements_.begin(); + ps != this->statements_.end(); + ++ps) + (*ps)->determine_types(); +} + +// Return true if the statements in this block may fall through. + +bool +Block::may_fall_through() const +{ + if (this->statements_.empty()) + return true; + return this->statements_.back()->may_fall_through(); +} + +// Class Variable. + +Variable::Variable(Type* type, Expression* init, bool is_global, + bool is_parameter, bool is_receiver, + source_location location) + : type_(type), init_(init), preinit_(NULL), location_(location), + is_global_(is_global), is_parameter_(is_parameter), + is_receiver_(is_receiver), is_varargs_parameter_(false), + is_address_taken_(false), init_is_lowered_(false), + type_from_init_tuple_(false), type_from_range_index_(false), + type_from_range_value_(false), type_from_chan_element_(false), + is_type_switch_var_(false) +{ + gcc_assert(type != NULL || init != NULL); + gcc_assert(!is_parameter || init == NULL); +} + +// Traverse the initializer expression. + +int +Variable::traverse_expression(Traverse* traverse) +{ + if (this->preinit_ != NULL) + { + if (this->preinit_->traverse(traverse) == TRAVERSE_EXIT) + return TRAVERSE_EXIT; + } + if (this->init_ != NULL) + { + if (Expression::traverse(&this->init_, traverse) == TRAVERSE_EXIT) + return TRAVERSE_EXIT; + } + return TRAVERSE_CONTINUE; +} + +// Lower the initialization expression after parsing is complete. + +void +Variable::lower_init_expression(Gogo* gogo, Named_object* function) +{ + if (this->init_ != NULL && !this->init_is_lowered_) + { + gogo->lower_expression(function, &this->init_); + this->init_is_lowered_ = true; + } +} + +// Get the preinit block. + +Block* +Variable::preinit_block() +{ + gcc_assert(this->is_global_); + if (this->preinit_ == NULL) + this->preinit_ = new Block(NULL, this->location()); + return this->preinit_; +} + +// Add a statement to be run before the initialization expression. + +void +Variable::add_preinit_statement(Statement* s) +{ + Block* b = this->preinit_block(); + b->add_statement(s); + b->set_end_location(s->location()); +} + +// In an assignment which sets a variable to a tuple of EXPR, return +// the type of the first element of the tuple. + +Type* +Variable::type_from_tuple(Expression* expr, bool report_error) const +{ + if (expr->map_index_expression() != NULL) + return expr->map_index_expression()->get_map_type()->val_type(); + else if (expr->receive_expression() != NULL) + { + Expression* channel = expr->receive_expression()->channel(); + return channel->type()->channel_type()->element_type(); + } + else + { + if (report_error) + error_at(this->location(), "invalid tuple definition"); + return Type::make_error_type(); + } +} + +// Given EXPR used in a range clause, return either the index type or +// the value type of the range, depending upon GET_INDEX_TYPE. + +Type* +Variable::type_from_range(Expression* expr, bool get_index_type, + bool report_error) const +{ + Type* t = expr->type(); + if (t->array_type() != NULL + || (t->points_to() != NULL + && t->points_to()->array_type() != NULL + && !t->points_to()->is_open_array_type())) + { + if (get_index_type) + return Type::lookup_integer_type("int"); + else + return t->deref()->array_type()->element_type(); + } + else if (t->is_string_type()) + return Type::lookup_integer_type("int"); + else if (t->map_type() != NULL) + { + if (get_index_type) + return t->map_type()->key_type(); + else + return t->map_type()->val_type(); + } + else if (t->channel_type() != NULL) + { + if (get_index_type) + return t->channel_type()->element_type(); + else + { + if (report_error) + error_at(this->location(), + "invalid definition of value variable for channel range"); + return Type::make_error_type(); + } + } + else + { + if (report_error) + error_at(this->location(), "invalid type for range clause"); + return Type::make_error_type(); + } +} + +// EXPR should be a channel. Return the channel's element type. + +Type* +Variable::type_from_chan_element(Expression* expr, bool report_error) const +{ + Type* t = expr->type(); + if (t->channel_type() != NULL) + return t->channel_type()->element_type(); + else + { + if (report_error) + error_at(this->location(), "expected channel"); + return Type::make_error_type(); + } +} + +// Return the type of the Variable. This may be called before +// Variable::determine_type is called, which means that we may need to +// get the type from the initializer. FIXME: If we combine lowering +// with type determination, then this should be unnecessary. + +Type* +Variable::type() const +{ + // A variable in a type switch with a nil case will have the wrong + // type here. This gets fixed up in determine_type, below. + Type* type = this->type_; + Expression* init = this->init_; + if (this->is_type_switch_var_ + && this->type_->is_nil_constant_as_type()) + { + Type_guard_expression* tge = this->init_->type_guard_expression(); + gcc_assert(tge != NULL); + init = tge->expr(); + type = NULL; + } + + if (type != NULL) + return type; + else if (this->type_from_init_tuple_) + return this->type_from_tuple(init, false); + else if (this->type_from_range_index_ || this->type_from_range_value_) + return this->type_from_range(init, this->type_from_range_index_, false); + else if (this->type_from_chan_element_) + return this->type_from_chan_element(init, false); + else + { + gcc_assert(init != NULL); + type = init->type(); + gcc_assert(type != NULL); + + // Variables should not have abstract types. + if (type->is_abstract()) + type = type->make_non_abstract_type(); + + if (type->is_void_type()) + type = Type::make_error_type(); + + return type; + } +} + +// Set the type if necessary. + +void +Variable::determine_type() +{ + // A variable in a type switch with a nil case will have the wrong + // type here. It will have an initializer which is a type guard. + // We want to initialize it to the value without the type guard, and + // use the type of that value as well. + if (this->is_type_switch_var_ && this->type_->is_nil_constant_as_type()) + { + Type_guard_expression* tge = this->init_->type_guard_expression(); + gcc_assert(tge != NULL); + this->type_ = NULL; + this->init_ = tge->expr(); + } + + if (this->init_ == NULL) + gcc_assert(this->type_ != NULL && !this->type_->is_abstract()); + else if (this->type_from_init_tuple_) + { + Expression *init = this->init_; + init->determine_type_no_context(); + this->type_ = this->type_from_tuple(init, true); + this->init_ = NULL; + } + else if (this->type_from_range_index_ || this->type_from_range_value_) + { + Expression* init = this->init_; + init->determine_type_no_context(); + this->type_ = this->type_from_range(init, this->type_from_range_index_, + true); + this->init_ = NULL; + } + else + { + // type_from_chan_element_ should have been cleared during + // lowering. + gcc_assert(!this->type_from_chan_element_); + + Type_context context(this->type_, false); + this->init_->determine_type(&context); + if (this->type_ == NULL) + { + Type* type = this->init_->type(); + gcc_assert(type != NULL); + if (type->is_abstract()) + type = type->make_non_abstract_type(); + + if (type->is_void_type()) + { + error_at(this->location_, "variable has no type"); + type = Type::make_error_type(); + } + else if (type->is_nil_type()) + { + error_at(this->location_, "variable defined to nil type"); + type = Type::make_error_type(); + } + else if (type->is_call_multiple_result_type()) + { + error_at(this->location_, + "single variable set to multiple value function call"); + type = Type::make_error_type(); + } + + this->type_ = type; + } + } +} + +// Export the variable + +void +Variable::export_var(Export* exp, const std::string& name) const +{ + gcc_assert(this->is_global_); + exp->write_c_string("var "); + exp->write_string(name); + exp->write_c_string(" "); + exp->write_type(this->type()); + exp->write_c_string(";\n"); +} + +// Import a variable. + +void +Variable::import_var(Import* imp, std::string* pname, Type** ptype) +{ + imp->require_c_string("var "); + *pname = imp->read_identifier(); + imp->require_c_string(" "); + *ptype = imp->read_type(); + imp->require_c_string(";\n"); +} + +// Class Named_constant. + +// Traverse the initializer expression. + +int +Named_constant::traverse_expression(Traverse* traverse) +{ + return Expression::traverse(&this->expr_, traverse); +} + +// Determine the type of the constant. + +void +Named_constant::determine_type() +{ + if (this->type_ != NULL) + { + Type_context context(this->type_, false); + this->expr_->determine_type(&context); + } + else + { + // A constant may have an abstract type. + Type_context context(NULL, true); + this->expr_->determine_type(&context); + this->type_ = this->expr_->type(); + gcc_assert(this->type_ != NULL); + } +} + +// Indicate that we found and reported an error for this constant. + +void +Named_constant::set_error() +{ + this->type_ = Type::make_error_type(); + this->expr_ = Expression::make_error(this->location_); +} + +// Export a constant. + +void +Named_constant::export_const(Export* exp, const std::string& name) const +{ + exp->write_c_string("const "); + exp->write_string(name); + exp->write_c_string(" "); + if (!this->type_->is_abstract()) + { + exp->write_type(this->type_); + exp->write_c_string(" "); + } + exp->write_c_string("= "); + this->expr()->export_expression(exp); + exp->write_c_string(";\n"); +} + +// Import a constant. + +void +Named_constant::import_const(Import* imp, std::string* pname, Type** ptype, + Expression** pexpr) +{ + imp->require_c_string("const "); + *pname = imp->read_identifier(); + imp->require_c_string(" "); + if (imp->peek_char() == '=') + *ptype = NULL; + else + { + *ptype = imp->read_type(); + imp->require_c_string(" "); + } + imp->require_c_string("= "); + *pexpr = Expression::import_expression(imp); + imp->require_c_string(";\n"); +} + +// Add a method. + +Named_object* +Type_declaration::add_method(const std::string& name, Function* function) +{ + Named_object* ret = Named_object::make_function(name, NULL, function); + this->methods_.push_back(ret); + return ret; +} + +// Add a method declaration. + +Named_object* +Type_declaration::add_method_declaration(const std::string& name, + Function_type* type, + source_location location) +{ + Named_object* ret = Named_object::make_function_declaration(name, NULL, type, + location); + this->methods_.push_back(ret); + return ret; +} + +// Return whether any methods ere defined. + +bool +Type_declaration::has_methods() const +{ + return !this->methods_.empty(); +} + +// Define methods for the real type. + +void +Type_declaration::define_methods(Named_type* nt) +{ + for (Methods::const_iterator p = this->methods_.begin(); + p != this->methods_.end(); + ++p) + nt->add_existing_method(*p); +} + +// We are using the type. Return true if we should issue a warning. + +bool +Type_declaration::using_type() +{ + bool ret = !this->issued_warning_; + this->issued_warning_ = true; + return ret; +} + +// Class Unknown_name. + +// Set the real named object. + +void +Unknown_name::set_real_named_object(Named_object* no) +{ + gcc_assert(this->real_named_object_ == NULL); + gcc_assert(!no->is_unknown()); + this->real_named_object_ = no; +} + +// Class Named_object. + +Named_object::Named_object(const std::string& name, + const Package* package, + Classification classification) + : name_(name), package_(package), classification_(classification), + tree_(NULL) +{ + if (Gogo::is_sink_name(name)) + gcc_assert(classification == NAMED_OBJECT_SINK); +} + +// Make an unknown name. This is used by the parser. The name must +// be resolved later. Unknown names are only added in the current +// package. + +Named_object* +Named_object::make_unknown_name(const std::string& name, + source_location location) +{ + Named_object* named_object = new Named_object(name, NULL, + NAMED_OBJECT_UNKNOWN); + Unknown_name* value = new Unknown_name(location); + named_object->u_.unknown_value = value; + return named_object; +} + +// Make a constant. + +Named_object* +Named_object::make_constant(const Typed_identifier& tid, + const Package* package, Expression* expr, + int iota_value) +{ + Named_object* named_object = new Named_object(tid.name(), package, + NAMED_OBJECT_CONST); + Named_constant* named_constant = new Named_constant(tid.type(), expr, + iota_value, + tid.location()); + named_object->u_.const_value = named_constant; + return named_object; +} + +// Make a named type. + +Named_object* +Named_object::make_type(const std::string& name, const Package* package, + Type* type, source_location location) +{ + Named_object* named_object = new Named_object(name, package, + NAMED_OBJECT_TYPE); + Named_type* named_type = Type::make_named_type(named_object, type, location); + named_object->u_.type_value = named_type; + return named_object; +} + +// Make a type declaration. + +Named_object* +Named_object::make_type_declaration(const std::string& name, + const Package* package, + source_location location) +{ + Named_object* named_object = new Named_object(name, package, + NAMED_OBJECT_TYPE_DECLARATION); + Type_declaration* type_declaration = new Type_declaration(location); + named_object->u_.type_declaration = type_declaration; + return named_object; +} + +// Make a variable. + +Named_object* +Named_object::make_variable(const std::string& name, const Package* package, + Variable* variable) +{ + Named_object* named_object = new Named_object(name, package, + NAMED_OBJECT_VAR); + named_object->u_.var_value = variable; + return named_object; +} + +// Make a result variable. + +Named_object* +Named_object::make_result_variable(const std::string& name, + Result_variable* result) +{ + Named_object* named_object = new Named_object(name, NULL, + NAMED_OBJECT_RESULT_VAR); + named_object->u_.result_var_value = result; + return named_object; +} + +// Make a sink. This is used for the special blank identifier _. + +Named_object* +Named_object::make_sink() +{ + return new Named_object("_", NULL, NAMED_OBJECT_SINK); +} + +// Make a named function. + +Named_object* +Named_object::make_function(const std::string& name, const Package* package, + Function* function) +{ + Named_object* named_object = new Named_object(name, package, + NAMED_OBJECT_FUNC); + named_object->u_.func_value = function; + return named_object; +} + +// Make a function declaration. + +Named_object* +Named_object::make_function_declaration(const std::string& name, + const Package* package, + Function_type* fntype, + source_location location) +{ + Named_object* named_object = new Named_object(name, package, + NAMED_OBJECT_FUNC_DECLARATION); + Function_declaration *func_decl = new Function_declaration(fntype, location); + named_object->u_.func_declaration_value = func_decl; + return named_object; +} + +// Make a package. + +Named_object* +Named_object::make_package(const std::string& alias, Package* package) +{ + Named_object* named_object = new Named_object(alias, NULL, + NAMED_OBJECT_PACKAGE); + named_object->u_.package_value = package; + return named_object; +} + +// Return the name to use in an error message. + +std::string +Named_object::message_name() const +{ + if (this->package_ == NULL) + return Gogo::message_name(this->name_); + std::string ret = Gogo::message_name(this->package_->name()); + ret += '.'; + ret += Gogo::message_name(this->name_); + return ret; +} + +// Set the type when a declaration is defined. + +void +Named_object::set_type_value(Named_type* named_type) +{ + gcc_assert(this->classification_ == NAMED_OBJECT_TYPE_DECLARATION); + Type_declaration* td = this->u_.type_declaration; + td->define_methods(named_type); + Named_object* in_function = td->in_function(); + if (in_function != NULL) + named_type->set_in_function(in_function); + delete td; + this->classification_ = NAMED_OBJECT_TYPE; + this->u_.type_value = named_type; +} + +// Define a function which was previously declared. + +void +Named_object::set_function_value(Function* function) +{ + gcc_assert(this->classification_ == NAMED_OBJECT_FUNC_DECLARATION); + this->classification_ = NAMED_OBJECT_FUNC; + // FIXME: We should free the old value. + this->u_.func_value = function; +} + +// Return the location of a named object. + +source_location +Named_object::location() const +{ + switch (this->classification_) + { + default: + case NAMED_OBJECT_UNINITIALIZED: + gcc_unreachable(); + + case NAMED_OBJECT_UNKNOWN: + return this->unknown_value()->location(); + + case NAMED_OBJECT_CONST: + return this->const_value()->location(); + + case NAMED_OBJECT_TYPE: + return this->type_value()->location(); + + case NAMED_OBJECT_TYPE_DECLARATION: + return this->type_declaration_value()->location(); + + case NAMED_OBJECT_VAR: + return this->var_value()->location(); + + case NAMED_OBJECT_RESULT_VAR: + return this->result_var_value()->function()->location(); + + case NAMED_OBJECT_SINK: + gcc_unreachable(); + + case NAMED_OBJECT_FUNC: + return this->func_value()->location(); + + case NAMED_OBJECT_FUNC_DECLARATION: + return this->func_declaration_value()->location(); + + case NAMED_OBJECT_PACKAGE: + return this->package_value()->location(); + } +} + +// Export a named object. + +void +Named_object::export_named_object(Export* exp) const +{ + switch (this->classification_) + { + default: + case NAMED_OBJECT_UNINITIALIZED: + case NAMED_OBJECT_UNKNOWN: + gcc_unreachable(); + + case NAMED_OBJECT_CONST: + this->const_value()->export_const(exp, this->name_); + break; + + case NAMED_OBJECT_TYPE: + this->type_value()->export_named_type(exp, this->name_); + break; + + case NAMED_OBJECT_TYPE_DECLARATION: + error_at(this->type_declaration_value()->location(), + "attempt to export %<%s%> which was declared but not defined", + this->message_name().c_str()); + break; + + case NAMED_OBJECT_FUNC_DECLARATION: + this->func_declaration_value()->export_func(exp, this->name_); + break; + + case NAMED_OBJECT_VAR: + this->var_value()->export_var(exp, this->name_); + break; + + case NAMED_OBJECT_RESULT_VAR: + case NAMED_OBJECT_SINK: + gcc_unreachable(); + + case NAMED_OBJECT_FUNC: + this->func_value()->export_func(exp, this->name_); + break; + } +} + +// Class Bindings. + +Bindings::Bindings(Bindings* enclosing) + : enclosing_(enclosing), named_objects_(), bindings_() +{ +} + +// Clear imports. + +void +Bindings::clear_file_scope() +{ + Contour::iterator p = this->bindings_.begin(); + while (p != this->bindings_.end()) + { + bool keep; + if (p->second->package() != NULL) + keep = false; + else if (p->second->is_package()) + keep = false; + else if (p->second->is_function() + && !p->second->func_value()->type()->is_method() + && Gogo::unpack_hidden_name(p->second->name()) == "init") + keep = false; + else + keep = true; + + if (keep) + ++p; + else + p = this->bindings_.erase(p); + } +} + +// Look up a symbol. + +Named_object* +Bindings::lookup(const std::string& name) const +{ + Contour::const_iterator p = this->bindings_.find(name); + if (p != this->bindings_.end()) + return p->second->resolve(); + else if (this->enclosing_ != NULL) + return this->enclosing_->lookup(name); + else + return NULL; +} + +// Look up a symbol locally. + +Named_object* +Bindings::lookup_local(const std::string& name) const +{ + Contour::const_iterator p = this->bindings_.find(name); + if (p == this->bindings_.end()) + return NULL; + return p->second; +} + +// Remove an object from a set of bindings. This is used for a +// special case in thunks for functions which call recover. + +void +Bindings::remove_binding(Named_object* no) +{ + Contour::iterator pb = this->bindings_.find(no->name()); + gcc_assert(pb != this->bindings_.end()); + this->bindings_.erase(pb); + for (std::vector<Named_object*>::iterator pn = this->named_objects_.begin(); + pn != this->named_objects_.end(); + ++pn) + { + if (*pn == no) + { + this->named_objects_.erase(pn); + return; + } + } + gcc_unreachable(); +} + +// Add a method to the list of objects. This is not added to the +// lookup table. This is so that we have a single list of objects +// declared at the top level, which we walk through when it's time to +// convert to trees. + +void +Bindings::add_method(Named_object* method) +{ + this->named_objects_.push_back(method); +} + +// Add a generic Named_object to a Contour. + +Named_object* +Bindings::add_named_object_to_contour(Contour* contour, + Named_object* named_object) +{ + gcc_assert(named_object == named_object->resolve()); + const std::string& name(named_object->name()); + gcc_assert(!Gogo::is_sink_name(name)); + + std::pair<Contour::iterator, bool> ins = + contour->insert(std::make_pair(name, named_object)); + if (!ins.second) + { + // The name was already there. + if (named_object->package() != NULL + && ins.first->second->package() == named_object->package() + && (ins.first->second->classification() + == named_object->classification())) + { + // This is a second import of the same object. + return ins.first->second; + } + ins.first->second = this->new_definition(ins.first->second, + named_object); + return ins.first->second; + } + else + { + // Don't push declarations on the list. We push them on when + // and if we find the definitions. That way we genericize the + // functions in order. + if (!named_object->is_type_declaration() + && !named_object->is_function_declaration() + && !named_object->is_unknown()) + this->named_objects_.push_back(named_object); + return named_object; + } +} + +// We had an existing named object OLD_OBJECT, and we've seen a new +// one NEW_OBJECT with the same name. FIXME: This does not free the +// new object when we don't need it. + +Named_object* +Bindings::new_definition(Named_object* old_object, Named_object* new_object) +{ + std::string reason; + switch (old_object->classification()) + { + default: + case Named_object::NAMED_OBJECT_UNINITIALIZED: + gcc_unreachable(); + + case Named_object::NAMED_OBJECT_UNKNOWN: + { + Named_object* real = old_object->unknown_value()->real_named_object(); + if (real != NULL) + return this->new_definition(real, new_object); + gcc_assert(!new_object->is_unknown()); + old_object->unknown_value()->set_real_named_object(new_object); + if (!new_object->is_type_declaration() + && !new_object->is_function_declaration()) + this->named_objects_.push_back(new_object); + return new_object; + } + + case Named_object::NAMED_OBJECT_CONST: + break; + + case Named_object::NAMED_OBJECT_TYPE: + if (new_object->is_type_declaration()) + return old_object; + break; + + case Named_object::NAMED_OBJECT_TYPE_DECLARATION: + if (new_object->is_type_declaration()) + return old_object; + if (new_object->is_type()) + { + old_object->set_type_value(new_object->type_value()); + new_object->type_value()->set_named_object(old_object); + this->named_objects_.push_back(old_object); + return old_object; + } + break; + + case Named_object::NAMED_OBJECT_VAR: + case Named_object::NAMED_OBJECT_RESULT_VAR: + break; + + case Named_object::NAMED_OBJECT_SINK: + gcc_unreachable(); + + case Named_object::NAMED_OBJECT_FUNC: + if (new_object->is_function_declaration()) + { + if (!new_object->func_declaration_value()->asm_name().empty()) + sorry("__asm__ for function definitions"); + Function_type* old_type = old_object->func_value()->type(); + Function_type* new_type = + new_object->func_declaration_value()->type(); + if (old_type->is_valid_redeclaration(new_type, &reason)) + return old_object; + } + break; + + case Named_object::NAMED_OBJECT_FUNC_DECLARATION: + { + Function_type* old_type = old_object->func_declaration_value()->type(); + if (new_object->is_function_declaration()) + { + Function_type* new_type = + new_object->func_declaration_value()->type(); + if (old_type->is_valid_redeclaration(new_type, &reason)) + return old_object; + } + if (new_object->is_function()) + { + Function_type* new_type = new_object->func_value()->type(); + if (old_type->is_valid_redeclaration(new_type, &reason)) + { + if (!old_object->func_declaration_value()->asm_name().empty()) + sorry("__asm__ for function definitions"); + old_object->set_function_value(new_object->func_value()); + this->named_objects_.push_back(old_object); + return old_object; + } + } + } + break; + + case Named_object::NAMED_OBJECT_PACKAGE: + if (new_object->is_package() + && (old_object->package_value()->name() + == new_object->package_value()->name())) + return old_object; + + break; + } + + std::string n = old_object->message_name(); + if (reason.empty()) + error_at(new_object->location(), "redefinition of %qs", n.c_str()); + else + error_at(new_object->location(), "redefinition of %qs: %s", n.c_str(), + reason.c_str()); + + inform(old_object->location(), "previous definition of %qs was here", + n.c_str()); + + return old_object; +} + +// Add a named type. + +Named_object* +Bindings::add_named_type(Named_type* named_type) +{ + return this->add_named_object(named_type->named_object()); +} + +// Add a function. + +Named_object* +Bindings::add_function(const std::string& name, const Package* package, + Function* function) +{ + return this->add_named_object(Named_object::make_function(name, package, + function)); +} + +// Add a function declaration. + +Named_object* +Bindings::add_function_declaration(const std::string& name, + const Package* package, + Function_type* type, + source_location location) +{ + Named_object* no = Named_object::make_function_declaration(name, package, + type, location); + return this->add_named_object(no); +} + +// Define a type which was previously declared. + +void +Bindings::define_type(Named_object* no, Named_type* type) +{ + no->set_type_value(type); + this->named_objects_.push_back(no); +} + +// Traverse bindings. + +int +Bindings::traverse(Traverse* traverse, bool is_global) +{ + unsigned int traverse_mask = traverse->traverse_mask(); + + // We don't use an iterator because we permit the traversal to add + // new global objects. + for (size_t i = 0; i < this->named_objects_.size(); ++i) + { + Named_object* p = this->named_objects_[i]; + switch (p->classification()) + { + case Named_object::NAMED_OBJECT_CONST: + if ((traverse_mask & Traverse::traverse_constants) != 0) + { + if (traverse->constant(p, is_global) == TRAVERSE_EXIT) + return TRAVERSE_EXIT; + } + if ((traverse_mask & Traverse::traverse_types) != 0 + || (traverse_mask & Traverse::traverse_expressions) != 0) + { + Type* t = p->const_value()->type(); + if (t != NULL + && Type::traverse(t, traverse) == TRAVERSE_EXIT) + return TRAVERSE_EXIT; + } + if ((traverse_mask & Traverse::traverse_expressions) != 0) + { + if (p->const_value()->traverse_expression(traverse) + == TRAVERSE_EXIT) + return TRAVERSE_EXIT; + } + break; + + case Named_object::NAMED_OBJECT_VAR: + case Named_object::NAMED_OBJECT_RESULT_VAR: + if ((traverse_mask & Traverse::traverse_variables) != 0) + { + if (traverse->variable(p) == TRAVERSE_EXIT) + return TRAVERSE_EXIT; + } + if (((traverse_mask & Traverse::traverse_types) != 0 + || (traverse_mask & Traverse::traverse_expressions) != 0) + && (p->is_result_variable() + || p->var_value()->has_type())) + { + Type* t = (p->is_variable() + ? p->var_value()->type() + : p->result_var_value()->type()); + if (t != NULL + && Type::traverse(t, traverse) == TRAVERSE_EXIT) + return TRAVERSE_EXIT; + } + if (p->is_variable() + && (traverse_mask & Traverse::traverse_expressions) != 0) + { + if (p->var_value()->traverse_expression(traverse) + == TRAVERSE_EXIT) + return TRAVERSE_EXIT; + } + break; + + case Named_object::NAMED_OBJECT_FUNC: + if ((traverse_mask & Traverse::traverse_functions) != 0) + { + int t = traverse->function(p); + if (t == TRAVERSE_EXIT) + return TRAVERSE_EXIT; + else if (t == TRAVERSE_SKIP_COMPONENTS) + break; + } + + if ((traverse_mask + & (Traverse::traverse_variables + | Traverse::traverse_constants + | Traverse::traverse_functions + | Traverse::traverse_blocks + | Traverse::traverse_statements + | Traverse::traverse_expressions + | Traverse::traverse_types)) != 0) + { + if (p->func_value()->traverse(traverse) == TRAVERSE_EXIT) + return TRAVERSE_EXIT; + } + break; + + case Named_object::NAMED_OBJECT_PACKAGE: + // These are traversed in Gogo::traverse. + gcc_assert(is_global); + break; + + case Named_object::NAMED_OBJECT_TYPE: + if ((traverse_mask & Traverse::traverse_types) != 0 + || (traverse_mask & Traverse::traverse_expressions) != 0) + { + if (Type::traverse(p->type_value(), traverse) == TRAVERSE_EXIT) + return TRAVERSE_EXIT; + } + break; + + case Named_object::NAMED_OBJECT_TYPE_DECLARATION: + case Named_object::NAMED_OBJECT_FUNC_DECLARATION: + case Named_object::NAMED_OBJECT_UNKNOWN: + break; + + case Named_object::NAMED_OBJECT_SINK: + default: + gcc_unreachable(); + } + } + + return TRAVERSE_CONTINUE; +} + +// Class Package. + +Package::Package(const std::string& name, const std::string& unique_prefix, + source_location location) + : name_(name), unique_prefix_(unique_prefix), bindings_(new Bindings(NULL)), + priority_(0), location_(location), used_(false), is_imported_(false), + uses_sink_alias_(false) +{ + gcc_assert(!name.empty() && !unique_prefix.empty()); +} + +// Set the priority. We may see multiple priorities for an imported +// package; we want to use the largest one. + +void +Package::set_priority(int priority) +{ + if (priority > this->priority_) + this->priority_ = priority; +} + +// Determine types of constants. Everything else in a package +// (variables, function declarations) should already have a fixed +// type. Constants may have abstract types. + +void +Package::determine_types() +{ + Bindings* bindings = this->bindings_; + for (Bindings::const_definitions_iterator p = bindings->begin_definitions(); + p != bindings->end_definitions(); + ++p) + { + if ((*p)->is_const()) + (*p)->const_value()->determine_type(); + } +} + +// Class Traverse. + +// Destructor. + +Traverse::~Traverse() +{ + if (this->types_seen_ != NULL) + delete this->types_seen_; + if (this->expressions_seen_ != NULL) + delete this->expressions_seen_; +} + +// Record that we are looking at a type, and return true if we have +// already seen it. + +bool +Traverse::remember_type(const Type* type) +{ + gcc_assert((this->traverse_mask() & traverse_types) != 0 + || (this->traverse_mask() & traverse_expressions) != 0); + // We only have to remember named types, as they are the only ones + // we can see multiple times in a traversal. + if (type->classification() != Type::TYPE_NAMED) + return false; + if (this->types_seen_ == NULL) + this->types_seen_ = new Types_seen(); + std::pair<Types_seen::iterator, bool> ins = this->types_seen_->insert(type); + return !ins.second; +} + +// Record that we are looking at an expression, and return true if we +// have already seen it. + +bool +Traverse::remember_expression(const Expression* expression) +{ + gcc_assert((this->traverse_mask() & traverse_types) != 0 + || (this->traverse_mask() & traverse_expressions) != 0); + if (this->expressions_seen_ == NULL) + this->expressions_seen_ = new Expressions_seen(); + std::pair<Expressions_seen::iterator, bool> ins = + this->expressions_seen_->insert(expression); + return !ins.second; +} + +// The default versions of these functions should never be called: the +// traversal mask indicates which functions may be called. + +int +Traverse::variable(Named_object*) +{ + gcc_unreachable(); +} + +int +Traverse::constant(Named_object*, bool) +{ + gcc_unreachable(); +} + +int +Traverse::function(Named_object*) +{ + gcc_unreachable(); +} + +int +Traverse::block(Block*) +{ + gcc_unreachable(); +} + +int +Traverse::statement(Block*, size_t*, Statement*) +{ + gcc_unreachable(); +} + +int +Traverse::expression(Expression**) +{ + gcc_unreachable(); +} + +int +Traverse::type(Type*) +{ + gcc_unreachable(); +} diff --git a/gcc/go/gofrontend/gogo.h b/gcc/go/gofrontend/gogo.h new file mode 100644 index 0000000..d0cfa1e --- /dev/null +++ b/gcc/go/gofrontend/gogo.h @@ -0,0 +1,2484 @@ +// gogo.h -- Go frontend parsed representation. -*- C++ -*- + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +#ifndef GO_GOGO_H +#define GO_GOGO_H + +class Traverse; +class Type; +class Type_hash_identical; +class Type_equal; +class Type_identical; +class Typed_identifier; +class Typed_identifier_list; +class Function_type; +class Expression; +class Statement; +class Block; +class Function; +class Bindings; +class Package; +class Variable; +class Pointer_type; +class Struct_type; +class Struct_field; +class Struct_field_list; +class Array_type; +class Map_type; +class Channel_type; +class Interface_type; +class Named_type; +class Forward_declaration_type; +class Method; +class Methods; +class Named_object; +class Label; +class Translate_context; +class Export; +class Import; + +// This file declares the basic classes used to hold the internal +// representation of Go which is built by the parser. + +// An initialization function for an imported package. This is a +// magic function which initializes variables and runs the "init" +// function. + +class Import_init +{ + public: + Import_init(const std::string& package_name, const std::string& init_name, + int priority) + : package_name_(package_name), init_name_(init_name), priority_(priority) + { } + + // The name of the package being imported. + const std::string& + package_name() const + { return this->package_name_; } + + // The name of the package's init function. + const std::string& + init_name() const + { return this->init_name_; } + + // The priority of the initialization function. Functions with a + // lower priority number must be run first. + int + priority() const + { return this->priority_; } + + private: + // The name of the package being imported. + std::string package_name_; + // The name of the package's init function. + std::string init_name_; + // The priority. + int priority_; +}; + +// For sorting purposes. + +inline bool +operator<(const Import_init& i1, const Import_init& i2) +{ + if (i1.priority() < i2.priority()) + return true; + if (i1.priority() > i2.priority()) + return false; + if (i1.package_name() != i2.package_name()) + return i1.package_name() < i2.package_name(); + return i1.init_name() < i2.init_name(); +} + +// The holder for the internal representation of the entire +// compilation unit. + +class Gogo +{ + public: + // Create the IR, passing in the sizes of the types "int", "float", + // and "uintptr" in bits. + Gogo(int int_type_size, int float_type_size, int pointer_size); + + // Get the package name. + const std::string& + package_name() const; + + // Set the package name. + void + set_package_name(const std::string&, source_location); + + // If necessary, adjust the name to use for a hidden symbol. We add + // a prefix of the package name, so that hidden symbols in different + // packages do not collide. + std::string + pack_hidden_name(const std::string& name, bool is_exported) const + { + return (is_exported + ? name + : ('.' + this->unique_prefix() + + '.' + this->package_name() + + '.' + name)); + } + + // Unpack a name which may have been hidden. Returns the + // user-visible name of the object. + static std::string + unpack_hidden_name(const std::string& name) + { return name[0] != '.' ? name : name.substr(name.rfind('.') + 1); } + + // Return whether a possibly packed name is hidden. + static bool + is_hidden_name(const std::string& name) + { return name[0] == '.'; } + + // Return the package prefix of a hidden name. + static std::string + hidden_name_prefix(const std::string& name) + { + gcc_assert(Gogo::is_hidden_name(name)); + return name.substr(1, name.rfind('.') - 1); + } + + // Given a name which may or may not have been hidden, return the + // name to use in an error message. + static std::string + message_name(const std::string& name); + + // Return whether a name is the blank identifier _. + static bool + is_sink_name(const std::string& name) + { + return (name[0] == '.' + && name[name.length() - 1] == '_' + && name[name.length() - 2] == '.'); + } + + // Return the unique prefix to use for all exported symbols. + const std::string& + unique_prefix() const; + + // Set the unique prefix. + void + set_unique_prefix(const std::string&); + + // Return the priority to use for the package we are compiling. + // This is two more than the largest priority of any package we + // import. + int + package_priority() const; + + // Import a package. FILENAME is the file name argument, LOCAL_NAME + // is the local name to give to the package. If LOCAL_NAME is empty + // the declarations are added to the global scope. + void + import_package(const std::string& filename, const std::string& local_name, + bool is_local_name_exported, source_location); + + // Whether we are the global binding level. + bool + in_global_scope() const; + + // Look up a name in the current binding contours. + Named_object* + lookup(const std::string&, Named_object** pfunction) const; + + // Look up a name in the current block. + Named_object* + lookup_in_block(const std::string&) const; + + // Look up a name in the global namespace--the universal scope. + Named_object* + lookup_global(const char*) const; + + // Add a new imported package. REAL_NAME is the real name of the + // package. ALIAS is the alias of the package; this may be the same + // as REAL_NAME. This sets *PADD_TO_GLOBALS if symbols added to + // this package should be added to the global namespace; this is + // true if the alias is ".". LOCATION is the location of the import + // statement. This returns the new package, or NULL on error. + Package* + add_imported_package(const std::string& real_name, const std::string& alias, + bool is_alias_exported, + const std::string& unique_prefix, + source_location location, + bool* padd_to_globals); + + // Register a package. This package may or may not be imported. + // This returns the Package structure for the package, creating if + // it necessary. + Package* + register_package(const std::string& name, const std::string& unique_prefix, + source_location); + + // Start compiling a function. ADD_METHOD_TO_TYPE is true if a + // method function should be added to the type of its receiver. + Named_object* + start_function(const std::string& name, Function_type* type, + bool add_method_to_type, source_location); + + // Finish compiling a function. + void + finish_function(source_location); + + // Return the current function. + Named_object* + current_function() const; + + // Start a new block. This is not initially associated with a + // function. + void + start_block(source_location); + + // Finish the current block and return it. + Block* + finish_block(source_location); + + // Declare an unknown name. This is used while parsing. The name + // must be resolved by the end of the parse. Unknown names are + // always added at the package level. + Named_object* + add_unknown_name(const std::string& name, source_location); + + // Declare a function. + Named_object* + declare_function(const std::string&, Function_type*, source_location); + + // Add a label. + Label* + add_label_definition(const std::string&, source_location); + + // Add a label reference. + Label* + add_label_reference(const std::string&); + + // Add a statement to the current block. + void + add_statement(Statement*); + + // Add a block to the current block. + void + add_block(Block*, source_location); + + // Add a constant. + Named_object* + add_constant(const Typed_identifier&, Expression*, int iota_value); + + // Add a type. + void + add_type(const std::string&, Type*, source_location); + + // Add a named type. This is used for builtin types, and to add an + // imported type to the global scope. + void + add_named_type(Named_type*); + + // Declare a type. + Named_object* + declare_type(const std::string&, source_location); + + // Declare a type at the package level. This is used when the + // parser sees an unknown name where a type name is required. + Named_object* + declare_package_type(const std::string&, source_location); + + // Define a type which was already declared. + void + define_type(Named_object*, Named_type*); + + // Add a variable. + Named_object* + add_variable(const std::string&, Variable*); + + // Add a sink--a reference to the blank identifier _. + Named_object* + add_sink(); + + // Add a named object to the current namespace. This is used for + // import . "package". + void + add_named_object(Named_object*); + + // Return a name to use for a thunk function. A thunk function is + // one we create during the compilation, for a go statement or a + // defer statement or a method expression. + static std::string + thunk_name(); + + // Return whether an object is a thunk. + static bool + is_thunk(const Named_object*); + + // Note that we've seen an interface type. This is used to build + // all required interface method tables. + void + record_interface_type(Interface_type*); + + // Clear out all names in file scope. This is called when we start + // parsing a new file. + void + clear_file_scope(); + + // Traverse the tree. See the Traverse class. + void + traverse(Traverse*); + + // Define the predeclared global names. + void + define_global_names(); + + // Verify and complete all types. + void + verify_types(); + + // Lower the parse tree. + void + lower_parse_tree(); + + // Lower an expression. + void + lower_expression(Named_object* function, Expression**); + + // Lower a constant. + void + lower_constant(Named_object*); + + // Finalize the method lists and build stub methods for named types. + void + finalize_methods(); + + // Work out the types to use for unspecified variables and + // constants. + void + determine_types(); + + // Type check the program. + void + check_types(); + + // Check the types in a single block. This is used for complicated + // go statements. + void + check_types_in_block(Block*); + + // Check for return statements. + void + check_return_statements(); + + // Do all exports. + void + do_exports(); + + // Add an import control function for an imported package to the + // list. + void + add_import_init_fn(const std::string& package_name, + const std::string& init_name, int prio); + + // Turn short-cut operators (&&, ||) into explicit if statements. + void + remove_shortcuts(); + + // Use temporary variables to force order of evaluation. + void + order_evaluations(); + + // Build thunks for functions which call recover. + void + build_recover_thunks(); + + // Simplify statements which might use thunks: go and defer + // statements. + void + simplify_thunk_statements(); + + // Write out the global values. + void + write_globals(); + + // Build a call to a builtin function. PDECL should point to a NULL + // initialized static pointer which will hold the fndecl. NAME is + // the name of the function. NARGS is the number of arguments. + // RETTYPE is the return type. It is followed by NARGS pairs of + // type and argument (both trees). + static tree + call_builtin(tree* pdecl, source_location, const char* name, int nargs, + tree rettype, ...); + + // Build a call to the runtime error function. + static tree + runtime_error(int code, source_location); + + // Build a builtin struct with a list of fields. + static tree + builtin_struct(tree* ptype, const char* struct_name, tree struct_type, + int nfields, ...); + + // Mark a function declaration as a builtin library function. + static void + mark_fndecl_as_builtin_library(tree fndecl); + + // Build the type of the struct that holds a slice for the given + // element type. + tree + slice_type_tree(tree element_type_tree); + + // Given a tree for a slice type, return the tree for the element + // type. + static tree + slice_element_type_tree(tree slice_type_tree); + + // Build a constructor for a slice. SLICE_TYPE_TREE is the type of + // the slice. VALUES points to the values. COUNT is the size, + // CAPACITY is the capacity. If CAPACITY is NULL, it is set to + // COUNT. + static tree + slice_constructor(tree slice_type_tree, tree values, tree count, + tree capacity); + + // Build a constructor for an empty slice. SLICE_TYPE_TREE is the + // type of the slice. + static tree + empty_slice_constructor(tree slice_type_tree); + + // Build a map descriptor. + tree + map_descriptor(Map_type*); + + // Return a tree for the type of a map descriptor. This is struct + // __go_map_descriptor in libgo/runtime/map.h. This is the same for + // all map types. + tree + map_descriptor_type(); + + // Build a type descriptor for TYPE using INITIALIZER as the type + // descriptor. This builds a new decl stored in *PDECL. + void + build_type_descriptor_decl(const Type*, Expression* initializer, + tree* pdecl); + + // Build required interface method tables. + void + build_interface_method_tables(); + + // Build an interface method table for a type: a list of function + // pointers, one for each interface method. This returns a decl. + tree + interface_method_table_for_type(const Interface_type*, Named_type*, + bool is_pointer); + + // Return a tree which allocate SIZE bytes to hold values of type + // TYPE. + tree + allocate_memory(Type *type, tree size, source_location); + + // Return a type to use for pointer to const char. + static tree + const_char_pointer_type_tree(); + + // Build a string constant with the right type. + static tree + string_constant_tree(const std::string&); + + // Build a Go string constant. This returns a pointer to the + // constant. + tree + go_string_constant_tree(const std::string&); + + // Send a value on a channel. + static tree + send_on_channel(tree channel, tree val, bool blocking, bool for_select, + source_location); + + // Receive a value from a channel. + static tree + receive_from_channel(tree type_tree, tree channel, bool for_select, + source_location); + + // Return a tree for receiving an integer on a channel. + static tree + receive_as_64bit_integer(tree type, tree channel, bool blocking, + bool for_select); + + + // Make a trampoline which calls FNADDR passing CLOSURE. + tree + make_trampoline(tree fnaddr, tree closure, source_location); + + private: + // During parsing, we keep a stack of functions. Each function on + // the stack is one that we are currently parsing. For each + // function, we keep track of the current stack of blocks. + struct Open_function + { + // The function. + Named_object* function; + // The stack of active blocks in the function. + std::vector<Block*> blocks; + }; + + // The stack of functions. + typedef std::vector<Open_function> Open_functions; + + // Create trees for implicit builtin functions. + void + define_builtin_function_trees(); + + // Set up the built-in unsafe package. + void + import_unsafe(const std::string&, bool is_exported, source_location); + + // Add a new imported package. + Named_object* + add_package(const std::string& real_name, const std::string& alias, + const std::string& unique_prefix, source_location location); + + // Return the current binding contour. + Bindings* + current_bindings(); + + const Bindings* + current_bindings() const; + + // Return the current block. + Block* + current_block(); + + // Get the name of the magic initialization function. + const std::string& + get_init_fn_name(); + + // Get the decl for the magic initialization function. + tree + initialization_function_decl(); + + // Write the magic initialization function. + void + write_initialization_function(tree fndecl, tree init_stmt_list); + + // Initialize imported packages. + void + init_imports(tree*); + + // Register variables with the garbage collector. + void + register_gc_vars(const std::vector<Named_object*>&, tree*); + + // Build a pointer to a Go string constant. This returns a pointer + // to the pointer. + tree + ptr_go_string_constant_tree(const std::string&); + + // Return the name to use for a type descriptor decl for an unnamed + // type. + std::string + unnamed_type_descriptor_decl_name(const Type* type); + + // Return the name to use for a type descriptor decl for a type + // named NO, defined in IN_FUNCTION. + std::string + type_descriptor_decl_name(const Named_object* no, + const Named_object* in_function); + + // Where a type descriptor should be defined. + enum Type_descriptor_location + { + // Defined in this file. + TYPE_DESCRIPTOR_DEFINED, + // Defined in some other file. + TYPE_DESCRIPTOR_UNDEFINED, + // Common definition which may occur in multiple files. + TYPE_DESCRIPTOR_COMMON + }; + + // Return where the decl for TYPE should be defined. + Type_descriptor_location + type_descriptor_location(const Type* type); + + // Return the type of a trampoline. + static tree + trampoline_type_tree(); + + // Type used to map import names to packages. + typedef std::map<std::string, Package*> Imports; + + // Type used to map package names to packages. + typedef std::map<std::string, Package*> Packages; + + // Type used to map special names in the sys package. + typedef std::map<std::string, std::string> Sys_names; + + // Hash table mapping map types to map descriptor decls. + typedef Unordered_map_hash(const Map_type*, tree, Type_hash_identical, + Type_identical) Map_descriptors; + + // Map unnamed types to type descriptor decls. + typedef Unordered_map_hash(const Type*, tree, Type_hash_identical, + Type_identical) Type_descriptor_decls; + + // The package we are compiling. + Package* package_; + // The list of currently open functions during parsing. + Open_functions functions_; + // The global binding contour. This includes the builtin functions + // and the package we are compiling. + Bindings* globals_; + // Mapping from import file names to packages. + Imports imports_; + // Whether the magic unsafe package was imported. + bool imported_unsafe_; + // Mapping from package names we have seen to packages. This does + // not include the package we are compiling. + Packages packages_; + // Mapping from map types to map descriptors. + Map_descriptors* map_descriptors_; + // Mapping from unnamed types to type descriptor decls. + Type_descriptor_decls* type_descriptor_decls_; + // The functions named "init", if there are any. + std::vector<Named_object*> init_functions_; + // Whether we need a magic initialization function. + bool need_init_fn_; + // The name of the magic initialization function. + std::string init_fn_name_; + // A list of import control variables for packages that we import. + std::set<Import_init> imported_init_fns_; + // The unique prefix used for all global symbols. + std::string unique_prefix_; + // A list of interface types defined while parsing. + std::vector<Interface_type*> interface_types_; +}; + +// A block of statements. + +class Block +{ + public: + Block(Block* enclosing, source_location); + + // Return the enclosing block. + const Block* + enclosing() const + { return this->enclosing_; } + + // Return the bindings of the block. + Bindings* + bindings() + { return this->bindings_; } + + const Bindings* + bindings() const + { return this->bindings_; } + + // Look at the block's statements. + const std::vector<Statement*>* + statements() const + { return &this->statements_; } + + // Return the start location. This is normally the location of the + // left curly brace which starts the block. + source_location + start_location() const + { return this->start_location_; } + + // Return the end location. This is normally the location of the + // right curly brace which ends the block. + source_location + end_location() const + { return this->end_location_; } + + // Add a statement to the block. + void + add_statement(Statement*); + + // Add a statement to the front of the block. + void + add_statement_at_front(Statement*); + + // Replace a statement in a block. + void + replace_statement(size_t index, Statement*); + + // Add a Statement before statement number INDEX. + void + insert_statement_before(size_t index, Statement*); + + // Add a Statement after statement number INDEX. + void + insert_statement_after(size_t index, Statement*); + + // Set the end location of the block. + void + set_end_location(source_location location) + { this->end_location_ = location; } + + // Traverse the tree. + int + traverse(Traverse*); + + // Set final types for unspecified variables and constants. + void + determine_types(); + + // Return true if execution of this block may fall through to the + // next block. + bool + may_fall_through() const; + + // Return a tree of the code in this block. + tree + get_tree(Translate_context*); + + // Iterate over statements. + + typedef std::vector<Statement*>::iterator iterator; + + iterator + begin() + { return this->statements_.begin(); } + + iterator + end() + { return this->statements_.end(); } + + private: + // Enclosing block. + Block* enclosing_; + // Statements in the block. + std::vector<Statement*> statements_; + // Binding contour. + Bindings* bindings_; + // Location of start of block. + source_location start_location_; + // Location of end of block. + source_location end_location_; +}; + +// A function. + +class Function +{ + public: + Function(Function_type* type, Function*, Block*, source_location); + + // Return the function's type. + Function_type* + type() const + { return this->type_; } + + // Return the enclosing function if there is one. + Function* + enclosing() + { return this->enclosing_; } + + // Set the enclosing function. This is used when building thunks + // for functions which call recover. + void + set_enclosing(Function* enclosing) + { + gcc_assert(this->enclosing_ == NULL); + this->enclosing_ = enclosing; + } + + // Create the named result variables in the outer block. + void + create_named_result_variables(); + + // Add a new field to the closure variable. + void + add_closure_field(Named_object* var, source_location loc) + { this->closure_fields_.push_back(std::make_pair(var, loc)); } + + // Whether this function needs a closure. + bool + needs_closure() const + { return !this->closure_fields_.empty(); } + + // Return the closure variable, creating it if necessary. This is + // passed to the function as a static chain parameter. + Named_object* + closure_var(); + + // Set the closure variable. This is used when building thunks for + // functions which call recover. + void + set_closure_var(Named_object* v) + { + gcc_assert(this->closure_var_ == NULL); + this->closure_var_ = v; + } + + // Return the variable for a reference to field INDEX in the closure + // variable. + Named_object* + enclosing_var(unsigned int index) + { + gcc_assert(index < this->closure_fields_.size()); + return closure_fields_[index].first; + } + + // Set the type of the closure variable if there is one. + void + set_closure_type(); + + // Get the block of statements associated with the function. + Block* + block() const + { return this->block_; } + + // Get the location of the start of the function. + source_location + location() const + { return this->location_; } + + // Return whether this function is actually a method. + bool + is_method() const; + + // Add a label definition to the function. + Label* + add_label_definition(const std::string& label_name, source_location); + + // Add a label reference to a function. + Label* + add_label_reference(const std::string& label_name); + + // Whether this function calls the predeclared recover function. + bool + calls_recover() const + { return this->calls_recover_; } + + // Record that this function calls the predeclared recover function. + // This is set during the lowering pass. + void + set_calls_recover() + { this->calls_recover_ = true; } + + // Whether this is a recover thunk function. + bool + is_recover_thunk() const + { return this->is_recover_thunk_; } + + // Record that this is a thunk built for a function which calls + // recover. + void + set_is_recover_thunk() + { this->is_recover_thunk_ = true; } + + // Whether this function already has a recover thunk. + bool + has_recover_thunk() const + { return this->has_recover_thunk_; } + + // Record that this function already has a recover thunk. + void + set_has_recover_thunk() + { this->has_recover_thunk_ = true; } + + // Swap with another function. Used only for the thunk which calls + // recover. + void + swap_for_recover(Function *); + + // Traverse the tree. + int + traverse(Traverse*); + + // Determine types in the function. + void + determine_types(); + + // Return the function's decl given an identifier. + tree + get_or_make_decl(Gogo*, Named_object*, tree id); + + // Return the function's decl after it has been built. + tree + get_decl() const + { + gcc_assert(this->fndecl_ != NULL); + return this->fndecl_; + } + + // Set the function decl to hold a tree of the function code. + void + build_tree(Gogo*, Named_object*); + + // Get the value to return when not explicitly specified. May also + // add statements to execute first to STMT_LIST. + tree + return_value(Gogo*, Named_object*, source_location, tree* stmt_list) const; + + // Get a tree for the variable holding the defer stack. + tree + defer_stack(source_location); + + // Export the function. + void + export_func(Export*, const std::string& name) const; + + // Export a function with a type. + static void + export_func_with_type(Export*, const std::string& name, + const Function_type*); + + // Import a function. + static void + import_func(Import*, std::string* pname, Typed_identifier** receiver, + Typed_identifier_list** pparameters, + Typed_identifier_list** presults, bool* is_varargs); + + private: + // Type for mapping from label names to Label objects. + typedef Unordered_map(std::string, Label*) Labels; + + tree + make_receiver_parm_decl(Gogo*, Named_object*, tree); + + tree + copy_parm_to_heap(Gogo*, Named_object*, tree); + + void + build_defer_wrapper(Gogo*, Named_object*, tree*, tree*); + + typedef std::vector<Named_object*> Named_results; + + typedef std::vector<std::pair<Named_object*, + source_location> > Closure_fields; + + // The function's type. + Function_type* type_; + // The enclosing function. This is NULL when there isn't one, which + // is the normal case. + Function* enclosing_; + // The named result variables, if any. + Named_results* named_results_; + // If there is a closure, this is the list of variables which appear + // in the closure. This is created by the parser, and then resolved + // to a real type when we lower parse trees. + Closure_fields closure_fields_; + // The closure variable, passed as a parameter using the static + // chain parameter. Normally NULL. + Named_object* closure_var_; + // The outer block of statements in the function. + Block* block_; + // The source location of the start of the function. + source_location location_; + // Labels defined or referenced in the function. + Labels labels_; + // The function decl. + tree fndecl_; + // A variable holding the defer stack variable. This is NULL unless + // we actually need a defer stack. + tree defer_stack_; + // True if this function calls the predeclared recover function. + bool calls_recover_; + // True if this a thunk built for a function which calls recover. + bool is_recover_thunk_; + // True if this function already has a recover thunk. + bool has_recover_thunk_; +}; + +// A function declaration. + +class Function_declaration +{ + public: + Function_declaration(Function_type* fntype, source_location location) + : fntype_(fntype), location_(location), asm_name_(), fndecl_(NULL) + { } + + Function_type* + type() const + { return this->fntype_; } + + source_location + location() const + { return this->location_; } + + const std::string& + asm_name() const + { return this->asm_name_; } + + // Set the assembler name. + void + set_asm_name(const std::string& asm_name) + { this->asm_name_ = asm_name; } + + // Return a decl for the function given an identifier. + tree + get_or_make_decl(Gogo*, Named_object*, tree id); + + // Export a function declaration. + void + export_func(Export* exp, const std::string& name) const + { Function::export_func_with_type(exp, name, this->fntype_); } + + private: + // The type of the function. + Function_type* fntype_; + // The location of the declaration. + source_location location_; + // The assembler name: this is the name to use in references to the + // function. This is normally empty. + std::string asm_name_; + // The function decl if needed. + tree fndecl_; +}; + +// A variable. + +class Variable +{ + public: + Variable(Type*, Expression*, bool is_global, bool is_parameter, + bool is_receiver, source_location); + + // Get the type of the variable. + Type* + type() const; + + // Return whether the type is defined yet. + bool + has_type() const + { return this->type_ != NULL; } + + // Get the initial value. + Expression* + init() const + { return this->init_; } + + // Return whether there are any preinit statements. + bool + has_pre_init() const + { return this->preinit_ != NULL; } + + // Return the preinit statements if any. + Block* + preinit() const + { return this->preinit_; } + + // Return whether this is a global variable. + bool + is_global() const + { return this->is_global_; } + + // Return whether this is a function parameter. + bool + is_parameter() const + { return this->is_parameter_; } + + // Return whether this is the receiver parameter of a method. + bool + is_receiver() const + { return this->is_receiver_; } + + // Change this parameter to be a receiver. This is used when + // creating the thunks created for functions which call recover. + void + set_is_receiver() + { + gcc_assert(this->is_parameter_); + this->is_receiver_ = true; + } + + // Change this parameter to not be a receiver. This is used when + // creating the thunks created for functions which call recover. + void + set_is_not_receiver() + { + gcc_assert(this->is_parameter_); + this->is_receiver_ = false; + } + + // Return whether this is the varargs parameter of a function. + bool + is_varargs_parameter() const + { return this->is_varargs_parameter_; } + + // Whether this variable's address is taken. + bool + is_address_taken() const + { return this->is_address_taken_; } + + // Whether this variable should live in the heap. + bool + is_in_heap() const + { return this->is_address_taken_ && !this->is_global_; } + + // Get the source location of the variable's declaration. + source_location + location() const + { return this->location_; } + + // Record that this is the varargs parameter of a function. + void + set_is_varargs_parameter() + { + gcc_assert(this->is_parameter_); + this->is_varargs_parameter_ = true; + } + + // Clear the initial value; used for error handling. + void + clear_init() + { this->init_ = NULL; } + + // Set the initial value; used for converting shortcuts. + void + set_init(Expression* init) + { this->init_ = init; } + + // Get the preinit block, a block of statements to be run before the + // initialization expression. + Block* + preinit_block(); + + // Add a statement to be run before the initialization expression. + // This is only used for global variables. + void + add_preinit_statement(Statement*); + + // Lower the initialization expression after parsing is complete. + void + lower_init_expression(Gogo*, Named_object*); + + // A special case: the init value is used only to determine the + // type. This is used if the variable is defined using := with the + // comma-ok form of a map index or a receive expression. The init + // value is actually the map index expression or receive expression. + // We use this because we may not know the right type at parse time. + void + set_type_from_init_tuple() + { this->type_from_init_tuple_ = true; } + + // Another special case: the init value is used only to determine + // the type. This is used if the variable is defined using := with + // a range clause. The init value is the range expression. The + // type of the variable is the index type of the range expression + // (i.e., the first value returned by a range). + void + set_type_from_range_index() + { this->type_from_range_index_ = true; } + + // Another special case: like set_type_from_range_index, but the + // type is the value type of the range expression (i.e., the second + // value returned by a range). + void + set_type_from_range_value() + { this->type_from_range_value_ = true; } + + // Another special case: the init value is used only to determine + // the type. This is used if the variable is defined using := with + // a case in a select statement. The init value is the channel. + // The type of the variable is the channel's element type. + void + set_type_from_chan_element() + { this->type_from_chan_element_ = true; } + + // After we lower the select statement, we once again set the type + // from the initialization expression. + void + clear_type_from_chan_element() + { + gcc_assert(this->type_from_chan_element_); + this->type_from_chan_element_ = false; + } + + // Note that this variable was created for a type switch clause. + void + set_is_type_switch_var() + { this->is_type_switch_var_ = true; } + + // Traverse the initializer expression. + int + traverse_expression(Traverse*); + + // Determine the type of the variable if necessary. + void + determine_type(); + + // Note that something takes the address of this variable. + void + set_address_taken() + { this->is_address_taken_ = true; } + + // Get the initial value of the variable as a tree. This may only + // be called if has_pre_init() returns false. + tree + get_init_tree(Gogo*, Named_object* function); + + // Return a series of statements which sets the value of the + // variable in DECL. This should only be called is has_pre_init() + // returns true. DECL may be NULL for a sink variable. + tree + get_init_block(Gogo*, Named_object* function, tree decl); + + // Export the variable. + void + export_var(Export*, const std::string& name) const; + + // Import a variable. + static void + import_var(Import*, std::string* pname, Type** ptype); + + private: + // The type of a tuple. + Type* + type_from_tuple(Expression*, bool) const; + + // The type of a range. + Type* + type_from_range(Expression*, bool, bool) const; + + // The element type of a channel. + Type* + type_from_chan_element(Expression*, bool) const; + + // The variable's type. This may be NULL if the type is set from + // the expression. + Type* type_; + // The initial value. This may be NULL if the variable should be + // initialized to the default value for the type. + Expression* init_; + // Statements to run before the init statement. + Block* preinit_; + // Location of variable definition. + source_location location_; + // Whether this is a global variable. + bool is_global_ : 1; + // Whether this is a function parameter. + bool is_parameter_ : 1; + // Whether this is the receiver parameter of a method. + bool is_receiver_ : 1; + // Whether this is the varargs parameter of a function. + bool is_varargs_parameter_ : 1; + // Whether something takes the address of this variable. + bool is_address_taken_ : 1; + // True if we have lowered the initialization expression. + bool init_is_lowered_ : 1; + // True if init is a tuple used to set the type. + bool type_from_init_tuple_ : 1; + // True if init is a range clause and the type is the index type. + bool type_from_range_index_ : 1; + // True if init is a range clause and the type is the value type. + bool type_from_range_value_ : 1; + // True if init is a channel and the type is the channel's element type. + bool type_from_chan_element_ : 1; + // True if this is a variable created for a type switch case. + bool is_type_switch_var_ : 1; +}; + +// A variable which is really the name for a function return value, or +// part of one. + +class Result_variable +{ + public: + Result_variable(Type* type, Function* function, int index) + : type_(type), function_(function), index_(index), + is_address_taken_(false) + { } + + // Get the type of the result variable. + Type* + type() const + { return this->type_; } + + // Get the function that this is associated with. + Function* + function() const + { return this->function_; } + + // Index in the list of function results. + int + index() const + { return this->index_; } + + // Whether this variable's address is taken. + bool + is_address_taken() const + { return this->is_address_taken_; } + + // Note that something takes the address of this variable. + void + set_address_taken() + { this->is_address_taken_ = true; } + + // Whether this variable should live in the heap. + bool + is_in_heap() const + { return this->is_address_taken_; } + + private: + // Type of result variable. + Type* type_; + // Function with which this is associated. + Function* function_; + // Index in list of results. + int index_; + // Whether something takes the address of this variable. + bool is_address_taken_; +}; + +// The value we keep for a named constant. This lets us hold a type +// and an expression. + +class Named_constant +{ + public: + Named_constant(Type* type, Expression* expr, int iota_value, + source_location location) + : type_(type), expr_(expr), iota_value_(iota_value), location_(location), + lowering_(false) + { } + + Type* + type() const + { return this->type_; } + + Expression* + expr() const + { return this->expr_; } + + int + iota_value() const + { return this->iota_value_; } + + source_location + location() const + { return this->location_; } + + // Whether we are lowering. + bool + lowering() const + { return this->lowering_; } + + // Set that we are lowering. + void + set_lowering() + { this->lowering_ = true; } + + // We are no longer lowering. + void + clear_lowering() + { this->lowering_ = false; } + + // Traverse the expression. + int + traverse_expression(Traverse*); + + // Determine the type of the constant if necessary. + void + determine_type(); + + // Indicate that we found and reported an error for this constant. + void + set_error(); + + // Export the constant. + void + export_const(Export*, const std::string& name) const; + + // Import a constant. + static void + import_const(Import*, std::string*, Type**, Expression**); + + private: + // The type of the constant. + Type* type_; + // The expression for the constant. + Expression* expr_; + // If the predeclared constant iota is used in EXPR_, this is the + // value it will have. We do this because at parse time we don't + // know whether the name "iota" will refer to the predeclared + // constant or to something else. We put in the right value in when + // we lower. + int iota_value_; + // The location of the definition. + source_location location_; + // Whether we are currently lowering this constant. + bool lowering_; +}; + +// A type declaration. + +class Type_declaration +{ + public: + Type_declaration(source_location location) + : location_(location), in_function_(NULL), methods_(), + issued_warning_(false) + { } + + // Return the location. + source_location + location() const + { return this->location_; } + + // Return the function in which this type is declared. This will + // return NULL for a type declared in global scope. + Named_object* + in_function() + { return this->in_function_; } + + // Set the function in which this type is declared. + void + set_in_function(Named_object* f) + { this->in_function_ = f; } + + // Add a method to this type. This is used when methods are defined + // before the type. + Named_object* + add_method(const std::string& name, Function* function); + + // Add a method declaration to this type. + Named_object* + add_method_declaration(const std::string& name, Function_type* type, + source_location location); + + // Return whether any methods were defined. + bool + has_methods() const; + + // Define methods when the real type is known. + void + define_methods(Named_type*); + + // This is called if we are trying to use this type. It returns + // true if we should issue a warning. + bool + using_type(); + + private: + typedef std::vector<Named_object*> Methods; + + // The location of the type declaration. + source_location location_; + // If this type is declared in a function, a pointer back to the + // function in which it is defined. + Named_object* in_function_; + // Methods defined before the type is defined. + Methods methods_; + // True if we have issued a warning about a use of this type + // declaration when it is undefined. + bool issued_warning_; +}; + +// An unknown object. These are created by the parser for forward +// references to names which have not been seen before. In a correct +// program, these will always point to a real definition by the end of +// the parse. Because they point to another Named_object, these may +// only be referenced by Unknown_expression objects. + +class Unknown_name +{ + public: + Unknown_name(source_location location) + : location_(location), real_named_object_(NULL) + { } + + // Return the location where this name was first seen. + source_location + location() const + { return this->location_; } + + // Return the real named object that this points to, or NULL if it + // was never resolved. + Named_object* + real_named_object() const + { return this->real_named_object_; } + + // Set the real named object that this points to. + void + set_real_named_object(Named_object* no); + + private: + // The location where this name was first seen. + source_location location_; + // The real named object when it is known. + Named_object* + real_named_object_; +}; + +// A named object named. This is the result of a declaration. We +// don't use a superclass because they all have to be handled +// differently. + +class Named_object +{ + public: + enum Classification + { + // An uninitialized Named_object. We should never see this. + NAMED_OBJECT_UNINITIALIZED, + // An unknown name. This is used for forward references. In a + // correct program, these will all be resolved by the end of the + // parse. + NAMED_OBJECT_UNKNOWN, + // A const. + NAMED_OBJECT_CONST, + // A type. + NAMED_OBJECT_TYPE, + // A forward type declaration. + NAMED_OBJECT_TYPE_DECLARATION, + // A var. + NAMED_OBJECT_VAR, + // A result variable in a function. + NAMED_OBJECT_RESULT_VAR, + // The blank identifier--the special variable named _. + NAMED_OBJECT_SINK, + // A func. + NAMED_OBJECT_FUNC, + // A forward func declaration. + NAMED_OBJECT_FUNC_DECLARATION, + // A package. + NAMED_OBJECT_PACKAGE + }; + + // Return the classification. + Classification + classification() const + { return this->classification_; } + + // Classifiers. + + bool + is_unknown() const + { return this->classification_ == NAMED_OBJECT_UNKNOWN; } + + bool + is_const() const + { return this->classification_ == NAMED_OBJECT_CONST; } + + bool + is_type() const + { return this->classification_ == NAMED_OBJECT_TYPE; } + + bool + is_type_declaration() const + { return this->classification_ == NAMED_OBJECT_TYPE_DECLARATION; } + + bool + is_variable() const + { return this->classification_ == NAMED_OBJECT_VAR; } + + bool + is_result_variable() const + { return this->classification_ == NAMED_OBJECT_RESULT_VAR; } + + bool + is_sink() const + { return this->classification_ == NAMED_OBJECT_SINK; } + + bool + is_function() const + { return this->classification_ == NAMED_OBJECT_FUNC; } + + bool + is_function_declaration() const + { return this->classification_ == NAMED_OBJECT_FUNC_DECLARATION; } + + bool + is_package() const + { return this->classification_ == NAMED_OBJECT_PACKAGE; } + + // Creators. + + static Named_object* + make_unknown_name(const std::string& name, source_location); + + static Named_object* + make_constant(const Typed_identifier&, const Package*, Expression*, + int iota_value); + + static Named_object* + make_type(const std::string&, const Package*, Type*, source_location); + + static Named_object* + make_type_declaration(const std::string&, const Package*, source_location); + + static Named_object* + make_variable(const std::string&, const Package*, Variable*); + + static Named_object* + make_result_variable(const std::string&, Result_variable*); + + static Named_object* + make_sink(); + + static Named_object* + make_function(const std::string&, const Package*, Function*); + + static Named_object* + make_function_declaration(const std::string&, const Package*, Function_type*, + source_location); + + static Named_object* + make_package(const std::string& alias, Package* package); + + // Getters. + + Unknown_name* + unknown_value() + { + gcc_assert(this->classification_ == NAMED_OBJECT_UNKNOWN); + return this->u_.unknown_value; + } + + const Unknown_name* + unknown_value() const + { + gcc_assert(this->classification_ == NAMED_OBJECT_UNKNOWN); + return this->u_.unknown_value; + } + + Named_constant* + const_value() + { + gcc_assert(this->classification_ == NAMED_OBJECT_CONST); + return this->u_.const_value; + } + + const Named_constant* + const_value() const + { + gcc_assert(this->classification_ == NAMED_OBJECT_CONST); + return this->u_.const_value; + } + + Named_type* + type_value() + { + gcc_assert(this->classification_ == NAMED_OBJECT_TYPE); + return this->u_.type_value; + } + + const Named_type* + type_value() const + { + gcc_assert(this->classification_ == NAMED_OBJECT_TYPE); + return this->u_.type_value; + } + + Type_declaration* + type_declaration_value() + { + gcc_assert(this->classification_ == NAMED_OBJECT_TYPE_DECLARATION); + return this->u_.type_declaration; + } + + const Type_declaration* + type_declaration_value() const + { + gcc_assert(this->classification_ == NAMED_OBJECT_TYPE_DECLARATION); + return this->u_.type_declaration; + } + + Variable* + var_value() + { + gcc_assert(this->classification_ == NAMED_OBJECT_VAR); + return this->u_.var_value; + } + + const Variable* + var_value() const + { + gcc_assert(this->classification_ == NAMED_OBJECT_VAR); + return this->u_.var_value; + } + + Result_variable* + result_var_value() + { + gcc_assert(this->classification_ == NAMED_OBJECT_RESULT_VAR); + return this->u_.result_var_value; + } + + const Result_variable* + result_var_value() const + { + gcc_assert(this->classification_ == NAMED_OBJECT_RESULT_VAR); + return this->u_.result_var_value; + } + + Function* + func_value() + { + gcc_assert(this->classification_ == NAMED_OBJECT_FUNC); + return this->u_.func_value; + } + + const Function* + func_value() const + { + gcc_assert(this->classification_ == NAMED_OBJECT_FUNC); + return this->u_.func_value; + } + + Function_declaration* + func_declaration_value() + { + gcc_assert(this->classification_ == NAMED_OBJECT_FUNC_DECLARATION); + return this->u_.func_declaration_value; + } + + const Function_declaration* + func_declaration_value() const + { + gcc_assert(this->classification_ == NAMED_OBJECT_FUNC_DECLARATION); + return this->u_.func_declaration_value; + } + + Package* + package_value() + { + gcc_assert(this->classification_ == NAMED_OBJECT_PACKAGE); + return this->u_.package_value; + } + + const Package* + package_value() const + { + gcc_assert(this->classification_ == NAMED_OBJECT_PACKAGE); + return this->u_.package_value; + } + + const std::string& + name() const + { return this->name_; } + + // Return the name to use in an error message. The difference is + // that if this Named_object is defined in a different package, this + // will return PACKAGE.NAME. + std::string + message_name() const; + + const Package* + package() const + { return this->package_; } + + // Resolve an unknown value if possible. This returns the same + // Named_object or a new one. + Named_object* + resolve() + { + Named_object* ret = this; + if (this->is_unknown()) + { + Named_object* r = this->unknown_value()->real_named_object(); + if (r != NULL) + ret = r; + } + return ret; + } + + const Named_object* + resolve() const + { + const Named_object* ret = this; + if (this->is_unknown()) + { + const Named_object* r = this->unknown_value()->real_named_object(); + if (r != NULL) + ret = r; + } + return ret; + } + + // The location where this object was defined or referenced. + source_location + location() const; + + // Return a tree for the external identifier for this object. + tree + get_id(Gogo*); + + // Return a tree representing this object. + tree + get_tree(Gogo*, Named_object* function); + + // Define a type declaration. + void + set_type_value(Named_type*); + + // Define a function declaration. + void + set_function_value(Function*); + + // Export this object. + void + export_named_object(Export*) const; + + private: + Named_object(const std::string&, const Package*, Classification); + + // The name of the object. + std::string name_; + // The package that this object is in. This is NULL if it is in the + // file we are compiling. + const Package* package_; + // The type of object this is. + Classification classification_; + // The real data. + union + { + Unknown_name* unknown_value; + Named_constant* const_value; + Named_type* type_value; + Type_declaration* type_declaration; + Variable* var_value; + Result_variable* result_var_value; + Function* func_value; + Function_declaration* func_declaration_value; + Package* package_value; + } u_; + // The DECL tree for this object if we have already converted it. + tree tree_; +}; + +// A binding contour. This binds names to objects. + +class Bindings +{ + public: + // Type for mapping from names to objects. + typedef Unordered_map(std::string, Named_object*) Contour; + + Bindings(Bindings* enclosing); + + // Add an unknown name. + Named_object* + add_unknown_name(const std::string& name, source_location location) + { + return this->add_named_object(Named_object::make_unknown_name(name, + location)); + } + + // Add a constant. + Named_object* + add_constant(const Typed_identifier& tid, const Package* package, + Expression* expr, int iota_value) + { + return this->add_named_object(Named_object::make_constant(tid, package, + expr, + iota_value)); + } + + // Add a type. + Named_object* + add_type(const std::string& name, const Package* package, Type* type, + source_location location) + { + return this->add_named_object(Named_object::make_type(name, package, type, + location)); + } + + // Add a named type. This is used for builtin types, and to add an + // imported type to the global scope. + Named_object* + add_named_type(Named_type* named_type); + + // Add a type declaration. + Named_object* + add_type_declaration(const std::string& name, const Package* package, + source_location location) + { + Named_object* no = Named_object::make_type_declaration(name, package, + location); + return this->add_named_object(no); + } + + // Add a variable. + Named_object* + add_variable(const std::string& name, const Package* package, + Variable* variable) + { + return this->add_named_object(Named_object::make_variable(name, package, + variable)); + } + + // Add a result variable. + Named_object* + add_result_variable(const std::string& name, Result_variable* result) + { + return this->add_named_object(Named_object::make_result_variable(name, + result)); + } + + // Add a function. + Named_object* + add_function(const std::string& name, const Package*, Function* function); + + // Add a function declaration. + Named_object* + add_function_declaration(const std::string& name, const Package* package, + Function_type* type, source_location location); + + // Add a package. The location is the location of the import + // statement. + Named_object* + add_package(const std::string& alias, Package* package) + { + Named_object* no = Named_object::make_package(alias, package); + return this->add_named_object(no); + } + + // Define a type which was already declared. + void + define_type(Named_object*, Named_type*); + + // Add a method to the list of objects. This is not added to the + // lookup table. + void + add_method(Named_object*); + + // Add a named object to this binding. + Named_object* + add_named_object(Named_object* no) + { return this->add_named_object_to_contour(&this->bindings_, no); } + + // Clear all names in file scope from the bindings. + void + clear_file_scope(); + + // Look up a name in this binding contour and in any enclosing + // binding contours. This returns NULL if the name is not found. + Named_object* + lookup(const std::string&) const; + + // Look up a name in this binding contour without looking in any + // enclosing binding contours. Returns NULL if the name is not found. + Named_object* + lookup_local(const std::string&) const; + + // Remove a name. + void + remove_binding(Named_object*); + + // Traverse the tree. See the Traverse class. + int + traverse(Traverse*, bool is_global); + + // Iterate over definitions. This does not include things which + // were only declared. + + typedef std::vector<Named_object*>::const_iterator + const_definitions_iterator; + + const_definitions_iterator + begin_definitions() const + { return this->named_objects_.begin(); } + + const_definitions_iterator + end_definitions() const + { return this->named_objects_.end(); } + + // Return the number of definitions. + size_t + size_definitions() const + { return this->named_objects_.size(); } + + // Return whether there are no definitions. + bool + empty_definitions() const + { return this->named_objects_.empty(); } + + // Iterate over declarations. This is everything that has been + // declared, which includes everything which has been defined. + + typedef Contour::const_iterator const_declarations_iterator; + + const_declarations_iterator + begin_declarations() const + { return this->bindings_.begin(); } + + const_declarations_iterator + end_declarations() const + { return this->bindings_.end(); } + + // Return the number of declarations. + size_t + size_declarations() const + { return this->bindings_.size(); } + + // Return whether there are no declarations. + bool + empty_declarations() const + { return this->bindings_.empty(); } + + // Return the first declaration. + Named_object* + first_declaration() + { return this->bindings_.empty() ? NULL : this->bindings_.begin()->second; } + + private: + Named_object* + add_named_object_to_contour(Contour*, Named_object*); + + Named_object* + new_definition(Named_object*, Named_object*); + + // Enclosing bindings. + Bindings* enclosing_; + // The list of objects. + std::vector<Named_object*> named_objects_; + // The mapping from names to objects. + Contour bindings_; +}; + +// A label. + +class Label +{ + public: + Label(const std::string& name) + : name_(name), location_(0), decl_(NULL) + { } + + // Return the label's name. + const std::string& + name() const + { return this->name_; } + + // Return whether the label has been defined. + bool + is_defined() const + { return this->location_ != 0; } + + // Return the location of the definition. + source_location + location() const + { return this->location_; } + + // Define the label at LOCATION. + void + define(source_location location) + { + gcc_assert(this->location_ == 0); + this->location_ = location; + } + + // Return the LABEL_DECL for this decl. + tree + get_decl(); + + // Return an expression for the address of this label. + tree + get_addr(source_location location); + + private: + // The name of the label. + std::string name_; + // The location of the definition. This is 0 if the label has not + // yet been defined. + source_location location_; + // The LABEL_DECL. + tree decl_; +}; + +// An unnamed label. These are used when lowering loops. + +class Unnamed_label +{ + public: + Unnamed_label(source_location location) + : location_(location), decl_(NULL) + { } + + // Get the location where the label is defined. + source_location + location() const + { return this->location_; } + + // Set the location where the label is defined. + void + set_location(source_location location) + { this->location_ = location; } + + // Return a statement which defines this label. + tree + get_definition(); + + // Return a goto to this label from LOCATION. + tree + get_goto(source_location location); + + private: + // Return the LABEL_DECL to use with GOTO_EXPR. + tree + get_decl(); + + // The location where the label is defined. + source_location location_; + // The LABEL_DECL. + tree decl_; +}; + +// An imported package. + +class Package +{ + public: + Package(const std::string& name, const std::string& unique_prefix, + source_location location); + + // The real name of this package. This may be different from the + // name in the associated Named_object if the import statement used + // an alias. + const std::string& + name() const + { return this->name_; } + + // Return the location of the import statement. + source_location + location() const + { return this->location_; } + + // Get the unique prefix used for all symbols exported from this + // package. + const std::string& + unique_prefix() const + { + gcc_assert(!this->unique_prefix_.empty()); + return this->unique_prefix_; + } + + // The priority of this package. The init function of packages with + // lower priority must be run before the init function of packages + // with higher priority. + int + priority() const + { return this->priority_; } + + // Set the priority. + void + set_priority(int priority); + + // Return the bindings. + Bindings* + bindings() + { return this->bindings_; } + + // Whether some symbol from the package was used. + bool + used() const + { return this->used_; } + + // Note that some symbol from this package was used. + void + set_used() const + { this->used_ = true; } + + // Clear the used field for the next file. + void + clear_used() + { this->used_ = false; } + + // Whether this package was imported in the current file. + bool + is_imported() const + { return this->is_imported_; } + + // Note that this package was imported in the current file. + void + set_is_imported() + { this->is_imported_ = true; } + + // Clear the imported field for the next file. + void + clear_is_imported() + { this->is_imported_ = false; } + + // Whether this package was imported with a name of "_". + bool + uses_sink_alias() const + { return this->uses_sink_alias_; } + + // Note that this package was imported with a name of "_". + void + set_uses_sink_alias() + { this->uses_sink_alias_ = true; } + + // Clear the sink alias field for the next file. + void + clear_uses_sink_alias() + { this->uses_sink_alias_ = false; } + + // Look up a name in the package. Returns NULL if the name is not + // found. + Named_object* + lookup(const std::string& name) const + { return this->bindings_->lookup(name); } + + // Set the location of the package. This is used if it is seen in a + // different import before it is really imported. + void + set_location(source_location location) + { this->location_ = location; } + + // Add a constant to the package. + Named_object* + add_constant(const Typed_identifier& tid, Expression* expr) + { return this->bindings_->add_constant(tid, this, expr, 0); } + + // Add a type to the package. + Named_object* + add_type(const std::string& name, Type* type, source_location location) + { return this->bindings_->add_type(name, this, type, location); } + + // Add a type declaration to the package. + Named_object* + add_type_declaration(const std::string& name, source_location location) + { return this->bindings_->add_type_declaration(name, this, location); } + + // Add a variable to the package. + Named_object* + add_variable(const std::string& name, Variable* variable) + { return this->bindings_->add_variable(name, this, variable); } + + // Add a function declaration to the package. + Named_object* + add_function_declaration(const std::string& name, Function_type* type, + source_location loc) + { return this->bindings_->add_function_declaration(name, this, type, loc); } + + // Determine types of constants. + void + determine_types(); + + private: + // The real name of this package. + std::string name_; + // The unique prefix for all exported global symbols. + std::string unique_prefix_; + // The names in this package. + Bindings* bindings_; + // The priority of this package. A package has a priority higher + // than the priority of all of the packages that it imports. This + // is used to run init functions in the right order. + int priority_; + // The location of the import statement. + source_location location_; + // True if some name from this package was used. This is mutable + // because we can use a package even if we have a const pointer to + // it. + mutable bool used_; + // True if this package was imported in the current file. + bool is_imported_; + // True if this package was imported with a name of "_". + bool uses_sink_alias_; +}; + +// Return codes for the traversal functions. This is not an enum +// because we want to be able to declare traversal functions in other +// header files without including this one. + +// Continue traversal as usual. +const int TRAVERSE_CONTINUE = -1; + +// Exit traversal. +const int TRAVERSE_EXIT = 0; + +// Continue traversal, but skip components of the current object. +// E.g., if this is returned by Traverse::statement, we do not +// traverse the expressions in the statement even if +// traverse_expressions is set in the traverse_mask. +const int TRAVERSE_SKIP_COMPONENTS = 1; + +// This class is used when traversing the parse tree. The caller uses +// a subclass which overrides functions as desired. + +class Traverse +{ + public: + // These bitmasks say what to traverse. + static const unsigned int traverse_variables = 0x1; + static const unsigned int traverse_constants = 0x2; + static const unsigned int traverse_functions = 0x4; + static const unsigned int traverse_blocks = 0x8; + static const unsigned int traverse_statements = 0x10; + static const unsigned int traverse_expressions = 0x20; + static const unsigned int traverse_types = 0x40; + + Traverse(unsigned int traverse_mask) + : traverse_mask_(traverse_mask), types_seen_(NULL), expressions_seen_(NULL) + { } + + virtual ~Traverse(); + + // The bitmask of what to traverse. + unsigned int + traverse_mask() const + { return this->traverse_mask_; } + + // Record that we are going to traverse a type. This returns true + // if the type has already been seen in this traversal. This is + // required because types, unlike expressions, can form a circular + // graph. + bool + remember_type(const Type*); + + // Record that we are going to see an expression. This returns true + // if the expression has already been seen in this traversal. This + // is only needed for cases where multiple expressions can point to + // a single one. + bool + remember_expression(const Expression*); + + // These functions return one of the TRAVERSE codes defined above. + + // If traverse_variables is set in the mask, this is called for + // every variable in the tree. + virtual int + variable(Named_object*); + + // If traverse_constants is set in the mask, this is called for + // every named constant in the tree. The bool parameter is true for + // a global constant. + virtual int + constant(Named_object*, bool); + + // If traverse_functions is set in the mask, this is called for + // every function in the tree. + virtual int + function(Named_object*); + + // If traverse_blocks is set in the mask, this is called for every + // block in the tree. + virtual int + block(Block*); + + // If traverse_statements is set in the mask, this is called for + // every statement in the tree. + virtual int + statement(Block*, size_t* index, Statement*); + + // If traverse_expressions is set in the mask, this is called for + // every expression in the tree. + virtual int + expression(Expression**); + + // If traverse_types is set in the mask, this is called for every + // type in the tree. + virtual int + type(Type*); + + private: + typedef Unordered_set_hash(const Type*, Type_hash_identical, + Type_identical) Types_seen; + + typedef Unordered_set(const Expression*) Expressions_seen; + + // Bitmask of what sort of objects to traverse. + unsigned int traverse_mask_; + // Types which have been seen in this traversal. + Types_seen* types_seen_; + // Expressions which have been seen in this traversal. + Expressions_seen* expressions_seen_; +}; + +// When translating the gogo IR into trees, this is the context we +// pass down the blocks and statements. + +class Translate_context +{ + public: + Translate_context(Gogo* gogo, Named_object* function, Block* block, + tree block_tree) + : gogo_(gogo), function_(function), block_(block), block_tree_(block_tree), + is_const_(false) + { } + + // Accessors. + + Gogo* + gogo() + { return this->gogo_; } + + Named_object* + function() + { return this->function_; } + + Block* + block() + { return this->block_; } + + tree + block_tree() + { return this->block_tree_; } + + bool + is_const() + { return this->is_const_; } + + // Make a constant context. + void + set_is_const() + { this->is_const_ = true; } + + private: + // The IR for the entire compilation unit. + Gogo* gogo_; + // The function we are currently translating. + Named_object* function_; + // The block we are currently translating. + Block *block_; + // The BLOCK node for the current block. + tree block_tree_; + // Whether this is being evaluated in a constant context. This is + // used for type descriptor initializers. + bool is_const_; +}; + +// Runtime error codes. These must match the values in +// libgo/runtime/go-runtime-error.c. + +// Slice index out of bounds: negative or larger than the length of +// the slice. +static const int RUNTIME_ERROR_SLICE_INDEX_OUT_OF_BOUNDS = 0; + +// Array index out of bounds. +static const int RUNTIME_ERROR_ARRAY_INDEX_OUT_OF_BOUNDS = 1; + +// String index out of bounds. +static const int RUNTIME_ERROR_STRING_INDEX_OUT_OF_BOUNDS = 2; + +// Slice slice out of bounds: negative or larger than the length of +// the slice or high bound less than low bound. +static const int RUNTIME_ERROR_SLICE_SLICE_OUT_OF_BOUNDS = 3; + +// Array slice out of bounds. +static const int RUNTIME_ERROR_ARRAY_SLICE_OUT_OF_BOUNDS = 4; + +// String slice out of bounds. +static const int RUNTIME_ERROR_STRING_SLICE_OUT_OF_BOUNDS = 5; + +// Dereference of nil pointer. This is used when there is a +// dereference of a pointer to a very large struct or array, to ensure +// that a gigantic array is not used a proxy to access random memory +// locations. +static const int RUNTIME_ERROR_NIL_DEREFERENCE = 6; + +// Slice length or capacity out of bounds in make: negative or +// overflow or length greater than capacity. +static const int RUNTIME_ERROR_MAKE_SLICE_OUT_OF_BOUNDS = 7; + +// Map capacity out of bounds in make: negative or overflow. +static const int RUNTIME_ERROR_MAKE_MAP_OUT_OF_BOUNDS = 8; + +// Channel capacity out of bounds in make: negative or overflow. +static const int RUNTIME_ERROR_MAKE_CHAN_OUT_OF_BOUNDS = 9; + +// This is used by some of the langhooks. +extern Gogo* go_get_gogo(); + +// Whether we have seen any errors. FIXME: Replace with a backend +// interface. +extern bool saw_errors(); + +#endif // !defined(GO_GOGO_H) diff --git a/gcc/go/gofrontend/import-archive.cc b/gcc/go/gofrontend/import-archive.cc new file mode 100644 index 0000000..4356d82 --- /dev/null +++ b/gcc/go/gofrontend/import-archive.cc @@ -0,0 +1,661 @@ +// import-archive.cc -- Go frontend read import data from an archive file. + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +#include "go-system.h" + +#include "import.h" + +#ifndef O_BINARY +#define O_BINARY 0 +#endif + +// Archive magic numbers. + +static const char armag[] = +{ + '!', '<', 'a', 'r', 'c', 'h', '>', '\n' +}; + +static const char armagt[] = +{ + '!', '<', 't', 'h', 'i', 'n', '>', '\n' +}; + +static const char arfmag[2] = { '`', '\n' }; + +// The header of an entry in an archive. This is all readable text, +// padded with spaces where necesary. + +struct Archive_header +{ + // The entry name. + char ar_name[16]; + // The file modification time. + char ar_date[12]; + // The user's UID in decimal. + char ar_uid[6]; + // The user's GID in decimal. + char ar_gid[6]; + // The file mode in octal. + char ar_mode[8]; + // The file size in decimal. + char ar_size[10]; + // The final magic code. + char ar_fmag[2]; +}; + +// The functions in this file extract Go export data from an archive. + +const int Import::archive_magic_len; + +// Return true if BYTES, which are from the start of the file, are an +// archive magic number. + +bool +Import::is_archive_magic(const char* bytes) +{ + return (memcmp(bytes, armag, Import::archive_magic_len) == 0 + || memcmp(bytes, armagt, Import::archive_magic_len) == 0); +} + +// An object used to read an archive file. + +class Archive_file +{ + public: + Archive_file(const std::string& filename, int fd, source_location location) + : filename_(filename), fd_(fd), filesize_(-1), extended_names_(), + is_thin_archive_(false), location_(location), nested_archives_() + { } + + // Initialize. + bool + initialize(); + + // Return the file name. + const std::string& + filename() const + { return this->filename_; } + + // Get the file size. + off_t + filesize() const + { return this->filesize_; } + + // Return whether this is a thin archive. + bool + is_thin_archive() const + { return this->is_thin_archive_; } + + // Return the location of the import statement. + source_location + location() const + { return this->location_; } + + // Read bytes. + bool + read(off_t offset, off_t size, char*); + + // Read the archive header at OFF, setting *PNAME, *SIZE, and + // *NESTED_OFF. + bool + read_header(off_t off, std::string* pname, off_t* size, off_t* nested_off); + + // Interpret the header of HDR, the header of the archive member at + // file offset OFF. Return whether it succeeded. Set *SIZE to the + // size of the member. Set *PNAME to the name of the member. Set + // *NESTED_OFF to the offset in a nested archive. + bool + interpret_header(const Archive_header* hdr, off_t off, + std::string* pname, off_t* size, off_t* nested_off) const; + + // Get the file and offset for an archive member. + bool + get_file_and_offset(off_t off, const std::string& hdrname, + off_t nested_off, int* memfd, off_t* memoff, + std::string* memname); + + private: + // For keeping track of open nested archives in a thin archive file. + typedef std::map<std::string, Archive_file*> Nested_archive_table; + + // The name of the file. + std::string filename_; + // The file descriptor. + int fd_; + // The file size; + off_t filesize_; + // The extended name table. + std::string extended_names_; + // Whether this is a thin archive. + bool is_thin_archive_; + // The location of the import statements. + source_location location_; + // Table of nested archives. + Nested_archive_table nested_archives_; +}; + +bool +Archive_file::initialize() +{ + struct stat st; + if (fstat(this->fd_, &st) < 0) + { + error_at(this->location_, "%s: %m", this->filename_.c_str()); + return false; + } + this->filesize_ = st.st_size; + + char buf[sizeof(armagt)]; + if (::lseek(this->fd_, 0, SEEK_SET) < 0 + || ::read(this->fd_, buf, sizeof(armagt)) != sizeof(armagt)) + { + error_at(this->location_, "%s: %m", this->filename_.c_str()); + return false; + } + this->is_thin_archive_ = memcmp(buf, armagt, sizeof(armagt)) == 0; + + if (this->filesize_ == sizeof(armag)) + { + // Empty archive. + return true; + } + + // Look for the extended name table. + std::string filename; + off_t size; + if (!this->read_header(sizeof(armagt), &filename, &size, NULL)) + return false; + if (filename.empty()) + { + // We found the symbol table. + off_t off = sizeof(armagt) + sizeof(Archive_header) + size; + if ((off & 1) != 0) + ++off; + if (!this->read_header(off, &filename, &size, NULL)) + filename.clear(); + } + if (filename == "/") + { + char* buf = new char[size]; + if (::read(this->fd_, buf, size) != size) + { + error_at(this->location_, "%s: could not read extended names", + filename.c_str()); + delete buf; + return false; + } + this->extended_names_.assign(buf, size); + delete buf; + } + + return true; +} + +// Read bytes from the file. + +bool +Archive_file::read(off_t offset, off_t size, char* buf) +{ + if (::lseek(this->fd_, offset, SEEK_SET) < 0 + || ::read(this->fd_, buf, size) != size) + { + error_at(this->location_, "%s: %m", this->filename_.c_str()); + return false; + } + return true; +} + +// Read the header at OFF. Set *PNAME to the name, *SIZE to the size, +// and *NESTED_OFF to the nested offset. + +bool +Archive_file::read_header(off_t off, std::string* pname, off_t* size, + off_t* nested_off) +{ + Archive_header hdr; + if (::lseek(this->fd_, off, SEEK_SET) < 0) + { + error_at(this->location_, "%s: %m", this->filename_.c_str()); + return false; + } + ssize_t got = ::read(this->fd_, &hdr, sizeof hdr); + if (got != sizeof hdr) + { + if (got < 0) + error_at(this->location_, "%s: %m", this->filename_.c_str()); + else if (got > 0) + error_at(this->location_, "%s: short archive header at %ld", + this->filename_.c_str(), static_cast<long>(off)); + else + error_at(this->location_, "%s: unexpected EOF at %ld", + this->filename_.c_str(), static_cast<long>(off)); + } + off_t local_nested_off; + if (!this->interpret_header(&hdr, off, pname, size, &local_nested_off)) + return false; + if (nested_off != NULL) + *nested_off = local_nested_off; + return true; +} + +// Interpret the header of HDR, the header of the archive member at +// file offset OFF. + +bool +Archive_file::interpret_header(const Archive_header* hdr, off_t off, + std::string* pname, off_t* size, + off_t* nested_off) const +{ + if (memcmp(hdr->ar_fmag, arfmag, sizeof arfmag) != 0) + { + error_at(this->location_, "%s: malformed archive header at %lu", + this->filename_.c_str(), static_cast<unsigned long>(off)); + return false; + } + + const int size_string_size = sizeof hdr->ar_size; + char size_string[size_string_size + 1]; + memcpy(size_string, hdr->ar_size, size_string_size); + char* ps = size_string + size_string_size; + while (ps[-1] == ' ') + --ps; + *ps = '\0'; + + errno = 0; + char* end; + *size = strtol(size_string, &end, 10); + if (*end != '\0' + || *size < 0 + || (*size == LONG_MAX && errno == ERANGE)) + { + error_at(this->location_, "%s: malformed archive header size at %lu", + this->filename_.c_str(), static_cast<unsigned long>(off)); + return false; + } + + if (hdr->ar_name[0] != '/') + { + const char* name_end = strchr(hdr->ar_name, '/'); + if (name_end == NULL + || name_end - hdr->ar_name >= static_cast<int>(sizeof hdr->ar_name)) + { + error_at(this->location_, "%s: malformed archive header name at %lu", + this->filename_.c_str(), static_cast<unsigned long>(off)); + return false; + } + pname->assign(hdr->ar_name, name_end - hdr->ar_name); + *nested_off = 0; + } + else if (hdr->ar_name[1] == ' ') + { + // This is the symbol table. + pname->clear(); + } + else if (hdr->ar_name[1] == '/') + { + // This is the extended name table. + pname->assign(1, '/'); + } + else + { + errno = 0; + long x = strtol(hdr->ar_name + 1, &end, 10); + long y = 0; + if (*end == ':') + y = strtol(end + 1, &end, 10); + if (*end != ' ' + || x < 0 + || (x == LONG_MAX && errno == ERANGE) + || static_cast<size_t>(x) >= this->extended_names_.size()) + { + error_at(this->location_, "%s: bad extended name index at %lu", + this->filename_.c_str(), static_cast<unsigned long>(off)); + return false; + } + + const char* name = this->extended_names_.data() + x; + const char* name_end = strchr(name, '\n'); + if (static_cast<size_t>(name_end - name) > this->extended_names_.size() + || name_end[-1] != '/') + { + error_at(this->location_, "%s: bad extended name entry at header %lu", + this->filename_.c_str(), static_cast<unsigned long>(off)); + return false; + } + pname->assign(name, name_end - 1 - name); + if (nested_off != NULL) + *nested_off = y; + } + + return true; +} + +// Get the file and offset for an archive member. + +bool +Archive_file::get_file_and_offset(off_t off, const std::string& hdrname, + off_t nested_off, int* memfd, off_t* memoff, + std::string* memname) +{ + if (!this->is_thin_archive_) + { + *memfd = this->fd_; + *memoff = off + sizeof(Archive_header); + *memname = this->filename_ + '(' + hdrname + ')'; + return true; + } + + std::string filename = hdrname; + if (!IS_ABSOLUTE_PATH(filename.c_str())) + { + const char* archive_path = this->filename_.c_str(); + const char* basename = lbasename(archive_path); + if (basename > archive_path) + filename.replace(0, 0, + this->filename_.substr(0, basename - archive_path)); + } + + if (nested_off > 0) + { + // This is a member of a nested archive. + Archive_file* nfile; + Nested_archive_table::const_iterator p = + this->nested_archives_.find(filename); + if (p != this->nested_archives_.end()) + nfile = p->second; + else + { + int nfd = open(filename.c_str(), O_RDONLY | O_BINARY); + if (nfd < 0) + { + error_at(this->location_, "%s: can't open nested archive %s", + this->filename_.c_str(), filename.c_str()); + return false; + } + nfile = new Archive_file(filename, nfd, this->location_); + if (!nfile->initialize()) + { + delete nfile; + return false; + } + this->nested_archives_[filename] = nfile; + } + + std::string nname; + off_t nsize; + off_t nnested_off; + if (!nfile->read_header(nested_off, &nname, &nsize, &nnested_off)) + return false; + return nfile->get_file_and_offset(nested_off, nname, nnested_off, + memfd, memoff, memname); + } + + // An external member of a thin archive. + *memfd = open(filename.c_str(), O_RDONLY | O_BINARY); + if (*memfd < 0) + { + error_at(this->location_, "%s: %m", filename.c_str()); + return false; + } + *memoff = 0; + *memname = filename; + return true; +} + +// An archive member iterator. This is more-or-less copied from gold. + +class Archive_iterator +{ + public: + // The header of an archive member. This is what this iterator + // points to. + struct Header + { + // The name of the member. + std::string name; + // The file offset of the member. + off_t off; + // The file offset of a nested archive member. + off_t nested_off; + // The size of the member. + off_t size; + }; + + Archive_iterator(Archive_file* afile, off_t off) + : afile_(afile), off_(off) + { this->read_next_header(); } + + const Header& + operator*() const + { return this->header_; } + + const Header* + operator->() const + { return &this->header_; } + + Archive_iterator& + operator++() + { + if (this->off_ == this->afile_->filesize()) + return *this; + this->off_ += sizeof(Archive_header); + if (!this->afile_->is_thin_archive()) + this->off_ += this->header_.size; + if ((this->off_ & 1) != 0) + ++this->off_; + this->read_next_header(); + return *this; + } + + Archive_iterator + operator++(int) + { + Archive_iterator ret = *this; + ++*this; + return ret; + } + + bool + operator==(const Archive_iterator p) const + { return this->off_ == p->off; } + + bool + operator!=(const Archive_iterator p) const + { return this->off_ != p->off; } + + private: + void + read_next_header(); + + // The underlying archive file. + Archive_file* afile_; + // The current offset in the file. + off_t off_; + // The current archive header. + Header header_; +}; + +// Read the next archive header. + +void +Archive_iterator::read_next_header() +{ + off_t filesize = this->afile_->filesize(); + while (true) + { + if (filesize - this->off_ < static_cast<off_t>(sizeof(Archive_header))) + { + if (filesize != this->off_) + { + error_at(this->afile_->location(), + "%s: short archive header at %lu", + this->afile_->filename().c_str(), + static_cast<unsigned long>(this->off_)); + this->off_ = filesize; + } + this->header_.off = filesize; + return; + } + + char buf[sizeof(Archive_header)]; + if (!this->afile_->read(this->off_, sizeof(Archive_header), buf)) + { + this->header_.off = filesize; + return; + } + + const Archive_header* hdr = reinterpret_cast<const Archive_header*>(buf); + if (!this->afile_->interpret_header(hdr, this->off_, &this->header_.name, + &this->header_.size, + &this->header_.nested_off)) + { + this->header_.off = filesize; + return; + } + this->header_.off = this->off_; + + // Skip special members. + if (!this->header_.name.empty() && this->header_.name != "/") + return; + + this->off_ += sizeof(Archive_header) + this->header_.size; + if ((this->off_ & 1) != 0) + ++this->off_; + } +} + +// Initial iterator. + +Archive_iterator +archive_begin(Archive_file* afile) +{ + return Archive_iterator(afile, sizeof(armag)); +} + +// Final iterator. + +Archive_iterator +archive_end(Archive_file* afile) +{ + return Archive_iterator(afile, afile->filesize()); +} + +// A type of Import_stream which concatenates other Import_streams +// together. + +class Stream_concatenate : public Import::Stream +{ + public: + Stream_concatenate() + : inputs_() + { } + + // Add a new stream. + void + add(Import::Stream* is) + { this->inputs_.push_back(is); } + + protected: + bool + do_peek(size_t, const char**); + + void + do_advance(size_t); + + private: + std::list<Import::Stream*> inputs_; +}; + +// Peek ahead. + +bool +Stream_concatenate::do_peek(size_t length, const char** bytes) +{ + while (true) + { + if (this->inputs_.empty()) + return false; + if (this->inputs_.front()->peek(length, bytes)) + return true; + delete this->inputs_.front(); + this->inputs_.pop_front(); + } +} + +// Advance. + +void +Stream_concatenate::do_advance(size_t skip) +{ + while (true) + { + if (this->inputs_.empty()) + return; + if (!this->inputs_.front()->at_eof()) + { + // We just assume that this will do the right thing. It + // should be OK since we should never want to skip past + // multiple streams. + this->inputs_.front()->advance(skip); + return; + } + delete this->inputs_.front(); + this->inputs_.pop_front(); + } +} + +// Import data from an archive. We walk through the archive and +// import data from each member. + +Import::Stream* +Import::find_archive_export_data(const std::string& filename, int fd, + source_location location) +{ + Archive_file afile(filename, fd, location); + if (!afile.initialize()) + return NULL; + + Stream_concatenate* ret = new Stream_concatenate; + + bool any_data = false; + bool any_members = false; + Archive_iterator pend = archive_end(&afile); + for (Archive_iterator p = archive_begin(&afile); p != pend; p++) + { + any_members = true; + int member_fd; + off_t member_off; + std::string member_name; + if (!afile.get_file_and_offset(p->off, p->name, p->nested_off, + &member_fd, &member_off, &member_name)) + return NULL; + + Import::Stream* is = Import::find_object_export_data(member_name, + member_fd, + member_off, + location); + if (is != NULL) + { + ret->add(is); + any_data = true; + } + } + + if (!any_members) + { + // It's normal to have an empty archive file when using gobuild. + return new Stream_from_string(""); + } + + if (!any_data) + { + delete ret; + return NULL; + } + + return ret; +} diff --git a/gcc/go/gofrontend/import.cc b/gcc/go/gofrontend/import.cc new file mode 100644 index 0000000..0f0da89 --- /dev/null +++ b/gcc/go/gofrontend/import.cc @@ -0,0 +1,892 @@ +// import.cc -- Go frontend import declarations. + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +#include "go-system.h" + +#include "filenames.h" +#include "simple-object.h" + +#include "go-c.h" +#include "gogo.h" +#include "types.h" +#include "export.h" +#include "import.h" + +#ifndef O_BINARY +#define O_BINARY 0 +#endif + +// The list of paths we search for import files. + +static std::vector<std::string> search_path; + +// Add a directory to the search path. This is called from the option +// handling language hook. + +GO_EXTERN_C +void +go_add_search_path(const char* path) +{ + search_path.push_back(std::string(path)); +} + +// The name used for parameters, receivers, and results in imported +// function types. + +const char* const Import::import_marker = "*imported*"; + +// Find import data. This searches the file system for FILENAME and +// returns a pointer to a Stream object to read the data that it +// exports. If the file is not found, it returns NULL. + +// When FILENAME is not an absolute path, we use the search path +// provided by -I and -L options. + +// When FILENAME does not exist, we try modifying FILENAME to find the +// file. We use the first of these which exists: +// * We append ".gox". +// * We turn the base of FILENAME into libFILENAME.so. +// * We turn the base of FILENAME into libFILENAME.a. +// * We append ".o". + +// When using a search path, we apply each of these transformations at +// each entry on the search path before moving on to the next entry. +// If the file exists, but does not contain any Go export data, we +// stop; we do not keep looking for another file with the same name +// later in the search path. + +Import::Stream* +Import::open_package(const std::string& filename, source_location location) +{ + if (!IS_ABSOLUTE_PATH(filename)) + { + for (std::vector<std::string>::const_iterator p = search_path.begin(); + p != search_path.end(); + ++p) + { + std::string indir = *p; + if (!indir.empty() && indir[indir.size() - 1] != '/') + indir += '/'; + indir += filename; + Stream* s = Import::try_package_in_directory(indir, location); + if (s != NULL) + return s; + } + } + + Stream* s = Import::try_package_in_directory(filename, location); + if (s != NULL) + return s; + + return NULL; +} + +// Try to find the export data for FILENAME. + +Import::Stream* +Import::try_package_in_directory(const std::string& filename, + source_location location) +{ + std::string found_filename = filename; + int fd = open(found_filename.c_str(), O_RDONLY | O_BINARY); + + if (fd >= 0) + { + struct stat s; + if (fstat(fd, &s) >= 0 && S_ISDIR(s.st_mode)) + { + close(fd); + fd = -1; + errno = EISDIR; + } + } + + if (fd < 0) + { + if (errno != ENOENT && errno != EISDIR) + warning_at(location, 0, "%s: %m", filename.c_str()); + + fd = Import::try_suffixes(&found_filename); + if (fd < 0) + return NULL; + } + + // The export data may not be in this file. + Stream* s = Import::find_export_data(found_filename, fd, location); + if (s != NULL) + return s; + + close(fd); + + error_at(location, "%s exists but does not contain any Go export data", + found_filename.c_str()); + + return NULL; +} + +// Given import "*PFILENAME", where *PFILENAME does not exist, try +// various suffixes. If we find one, set *PFILENAME to the one we +// found. Return the open file descriptor. + +int +Import::try_suffixes(std::string* pfilename) +{ + std::string filename = *pfilename + ".gox"; + int fd = open(filename.c_str(), O_RDONLY | O_BINARY); + if (fd >= 0) + { + *pfilename = filename; + return fd; + } + + const char* basename = lbasename(pfilename->c_str()); + size_t basename_pos = basename - pfilename->c_str(); + filename = pfilename->substr(0, basename_pos) + "lib" + basename + ".so"; + fd = open(filename.c_str(), O_RDONLY | O_BINARY); + if (fd >= 0) + { + *pfilename = filename; + return fd; + } + + filename = pfilename->substr(0, basename_pos) + "lib" + basename + ".a"; + fd = open(filename.c_str(), O_RDONLY | O_BINARY); + if (fd >= 0) + { + *pfilename = filename; + return fd; + } + + filename = *pfilename + ".o"; + fd = open(filename.c_str(), O_RDONLY | O_BINARY); + if (fd >= 0) + { + *pfilename = filename; + return fd; + } + + return -1; +} + +// Look for export data in the file descriptor FD. + +Import::Stream* +Import::find_export_data(const std::string& filename, int fd, + source_location location) +{ + // See if we can read this as an object file. + Import::Stream* stream = Import::find_object_export_data(filename, fd, 0, + location); + if (stream != NULL) + return stream; + + const int len = MAX(Export::v1_magic_len, Import::archive_magic_len); + + if (lseek(fd, 0, SEEK_SET) < 0) + { + error_at(location, "lseek %s failed: %m", filename.c_str()); + return NULL; + } + + char buf[len]; + ssize_t c = read(fd, buf, len); + if (c < len) + return NULL; + + // Check for a file containing nothing but Go export data. + if (memcmp(buf, Export::v1_magic, Export::v1_magic_len) == 0) + return new Stream_from_file(fd); + + // See if we can read this as an archive. + if (Import::is_archive_magic(buf)) + return Import::find_archive_export_data(filename, fd, location); + + return NULL; +} + +// Look for export data in a simple_object. + +Import::Stream* +Import::find_object_export_data(const std::string& filename, + int fd, + off_t offset, + source_location location) +{ + const char* errmsg; + int err; + simple_object_read* sobj = simple_object_start_read(fd, offset, + "__GNU_GO", + &errmsg, &err); + if (sobj == NULL) + return NULL; + + off_t sec_offset; + off_t sec_length; + int found = simple_object_find_section(sobj, ".go_export", &sec_offset, + &sec_length, &errmsg, &err); + + simple_object_release_read(sobj); + + if (!found) + return NULL; + + if (lseek(fd, offset + sec_offset, SEEK_SET) < 0) + { + error_at(location, "lseek %s failed: %m", filename.c_str()); + return NULL; + } + + char* buf = new char[sec_length]; + ssize_t c = read(fd, buf, sec_length); + if (c < 0) + { + error_at(location, "read %s failed: %m", filename.c_str()); + return NULL; + } + if (c < sec_length) + { + error_at(location, "%s: short read", filename.c_str()); + return NULL; + } + + return new Stream_from_buffer(buf, sec_length); +} + +// Class Import. + +// Construct an Import object. We make the builtin_types_ vector +// large enough to hold all the builtin types. + +Import::Import(Stream* stream, source_location location) + : gogo_(NULL), stream_(stream), location_(location), package_(NULL), + add_to_globals_(false), + builtin_types_((- SMALLEST_BUILTIN_CODE) + 1), + types_() +{ +} + +// Import the data in the associated stream. + +Package* +Import::import(Gogo* gogo, const std::string& local_name, + bool is_local_name_exported) +{ + // Hold on to the Gogo structure. Otherwise we need to pass it + // through all the import functions, because we need it when reading + // a type. + this->gogo_ = gogo; + + // A stream of export data can include data from more than one input + // file. Here we loop over each input file. + Stream* stream = this->stream_; + while (!stream->at_eof() && !stream->saw_error()) + { + // The vector of types is package specific. + this->types_.clear(); + + stream->require_bytes(this->location_, Export::v1_magic, + Export::v1_magic_len); + + this->require_c_string("package "); + std::string package_name = this->read_identifier(); + this->require_c_string(";\n"); + + this->require_c_string("prefix "); + std::string unique_prefix = this->read_identifier(); + this->require_c_string(";\n"); + + this->package_ = gogo->add_imported_package(package_name, local_name, + is_local_name_exported, + unique_prefix, + this->location_, + &this->add_to_globals_); + if (this->package_ == NULL) + { + stream->set_saw_error(); + return NULL; + } + + this->require_c_string("priority "); + std::string priority_string = this->read_identifier(); + int prio; + if (!this->string_to_int(priority_string, false, &prio)) + return NULL; + this->package_->set_priority(prio); + this->require_c_string(";\n"); + + if (stream->match_c_string("import ")) + this->read_import_init_fns(gogo); + + // Loop over all the input data for this package. + while (!stream->saw_error()) + { + if (stream->match_c_string("const ")) + this->import_const(); + else if (stream->match_c_string("type ")) + this->import_type(); + else if (stream->match_c_string("var ")) + this->import_var(); + else if (stream->match_c_string("func ")) + this->import_func(this->package_); + else if (stream->match_c_string("checksum ")) + break; + else + { + error_at(this->location_, + ("error in import data at %d: " + "expected %<const%>, %<type%>, %<var%>, " + "%<func%>, or %<checksum%>"), + stream->pos()); + stream->set_saw_error(); + return NULL; + } + } + + // We currently ignore the checksum. In the future we could + // store the checksum somewhere in the generated object and then + // verify that the checksum matches at link time or at dynamic + // load time. + this->require_c_string("checksum "); + stream->advance(Export::v1_checksum_len * 2); + this->require_c_string(";\n"); + } + + return this->package_; +} + +// Read the list of import control functions. + +void +Import::read_import_init_fns(Gogo* gogo) +{ + this->require_c_string("import"); + while (!this->match_c_string(";")) + { + this->require_c_string(" "); + std::string package_name = this->read_identifier(); + this->require_c_string(" "); + std::string init_name = this->read_identifier(); + this->require_c_string(" "); + std::string prio_string = this->read_identifier(); + int prio; + if (!this->string_to_int(prio_string, false, &prio)) + return; + gogo->add_import_init_fn(package_name, init_name, prio); + } + this->require_c_string(";\n"); +} + +// Import a constant. + +void +Import::import_const() +{ + std::string name; + Type* type; + Expression* expr; + Named_constant::import_const(this, &name, &type, &expr); + Typed_identifier tid(name, type, this->location_); + Named_object* no = this->package_->add_constant(tid, expr); + if (this->add_to_globals_) + this->gogo_->add_named_object(no); +} + +// Import a type. + +void +Import::import_type() +{ + Named_type* type; + Named_type::import_named_type(this, &type); + + // The named type has been added to the package by the type import + // process. Here we need to make it visible to the parser, and it + // to the global bindings if necessary. + type->set_is_visible(); + + if (this->add_to_globals_) + this->gogo_->add_named_type(type); +} + +// Import a variable. + +void +Import::import_var() +{ + std::string name; + Type* type; + Variable::import_var(this, &name, &type); + Variable* var = new Variable(type, NULL, true, false, false, + this->location_); + Named_object* no; + no = this->package_->add_variable(name, var); + if (this->add_to_globals_) + this->gogo_->add_named_object(no); +} + +// Import a function into PACKAGE. PACKAGE is normally +// THIS->PACKAGE_, but it will be different for a method associated +// with a type defined in a different package. + +Named_object* +Import::import_func(Package* package) +{ + std::string name; + Typed_identifier* receiver; + Typed_identifier_list* parameters; + Typed_identifier_list* results; + bool is_varargs; + Function::import_func(this, &name, &receiver, ¶meters, &results, + &is_varargs); + Function_type *fntype = Type::make_function_type(receiver, parameters, + results, this->location_); + if (is_varargs) + fntype->set_is_varargs(); + + source_location loc = this->location_; + Named_object* no; + if (fntype->is_method()) + { + Type* rtype = receiver->type()->deref(); + if (rtype->is_error_type()) + return NULL; + Named_type* named_rtype = rtype->named_type(); + gcc_assert(named_rtype != NULL); + no = named_rtype->add_method_declaration(name, package, fntype, loc); + } + else + { + no = package->add_function_declaration(name, fntype, loc); + if (this->add_to_globals_) + this->gogo_->add_named_object(no); + } + return no; +} + +// Read a type in the import stream. This records the type by the +// type index. If the type is named, it registers the name, but marks +// it as invisible. + +Type* +Import::read_type() +{ + Stream* stream = this->stream_; + this->require_c_string("<type "); + + std::string number; + int c; + while (true) + { + c = stream->get_char(); + if (c != '-' && (c < '0' || c > '9')) + break; + number += c; + } + + int index; + if (!this->string_to_int(number, true, &index)) + return Type::make_error_type(); + + if (c == '>') + { + // This type was already defined. + if (index < 0 + ? (static_cast<size_t>(- index) >= this->builtin_types_.size() + || this->builtin_types_[- index] == NULL) + : (static_cast<size_t>(index) >= this->types_.size() + || this->types_[index] == NULL)) + { + error_at(this->location_, + "error in import data at %d: bad type index %d", + stream->pos(), index); + stream->set_saw_error(); + return Type::make_error_type(); + } + + return index < 0 ? this->builtin_types_[- index] : this->types_[index]; + } + + if (c != ' ') + { + if (!stream->saw_error()) + error_at(this->location_, + "error in import data at %d: expect %< %> or %<>%>'", + stream->pos()); + stream->set_saw_error(); + stream->advance(1); + return Type::make_error_type(); + } + + if (index <= 0 + || (static_cast<size_t>(index) < this->types_.size() + && this->types_[index] != NULL)) + { + error_at(this->location_, + "error in import data at %d: type index already defined", + stream->pos()); + stream->set_saw_error(); + return Type::make_error_type(); + } + + if (static_cast<size_t>(index) >= this->types_.size()) + { + int newsize = std::max(static_cast<size_t>(index) + 1, + this->types_.size() * 2); + this->types_.resize(newsize, NULL); + } + + if (stream->peek_char() != '"') + { + Type* type = Type::import_type(this); + this->require_c_string(">"); + this->types_[index] = type; + return type; + } + + // This type has a name. + + stream->advance(1); + std::string type_name; + while ((c = stream->get_char()) != '"') + type_name += c; + + // If this type is in the current package, the name will be + // .PREFIX.PACKAGE.NAME or simply NAME with no dots. Otherwise, a + // non-hidden symbol will be PREFIX.PACKAGE.NAME and a hidden symbol + // will be .PREFIX.PACKAGE.NAME. + std::string package_name; + std::string unique_prefix; + if (type_name.find('.') != std::string::npos) + { + bool is_hidden = false; + size_t start = 0; + if (type_name[0] == '.') + { + ++start; + is_hidden = true; + } + size_t dot1 = type_name.find('.', start); + size_t dot2; + if (dot1 == std::string::npos) + dot2 = std::string::npos; + else + dot2 = type_name.find('.', dot1 + 1); + if (dot1 == std::string::npos || dot2 == std::string::npos) + { + error_at(this->location_, + ("error at import data at %d: missing dot in type name"), + stream->pos()); + stream->set_saw_error(); + } + else + { + unique_prefix = type_name.substr(start, dot1 - start); + package_name = type_name.substr(dot1 + 1, dot2 - (dot1 + 1)); + } + if (!is_hidden) + type_name.erase(0, dot2 + 1); + } + + this->require_c_string(" "); + + // Declare the type in the appropriate package. If we haven't seen + // it before, mark it as invisible. We declare it before we read + // the actual definition of the type, since the definition may refer + // to the type itself. + Package* package; + if (package_name.empty()) + package = this->package_; + else + package = this->gogo_->register_package(package_name, unique_prefix, + UNKNOWN_LOCATION); + + Named_object* no = package->bindings()->lookup(type_name); + if (no == NULL) + no = package->add_type_declaration(type_name, this->location_); + else if (!no->is_type_declaration() && !no->is_type()) + { + error_at(this->location_, "imported %<%s.%s%> both type and non-type", + Gogo::message_name(package->name()).c_str(), + Gogo::message_name(type_name).c_str()); + stream->set_saw_error(); + return Type::make_error_type(); + } + else + gcc_assert(no->package() == package); + + if (this->types_[index] == NULL) + { + if (no->is_type_declaration()) + { + // FIXME: It's silly to make a forward declaration every time. + this->types_[index] = Type::make_forward_declaration(no); + } + else + { + gcc_assert(no->is_type()); + this->types_[index] = no->type_value(); + } + } + + // If there is no type definition, then this is just a forward + // declaration of a type defined in some other file. + Type* type; + if (this->match_c_string(">")) + type = this->types_[index]; + else + { + type = this->read_type(); + + if (no->is_type_declaration()) + { + // We can define the type now. + + no = package->add_type(type_name, type, this->location_); + Named_type* ntype = no->type_value(); + + // This type has not yet been imported. + ntype->clear_is_visible(); + + type = ntype; + } + else if (no->is_type()) + { + // We have seen this type before. FIXME: it would be a good + // idea to check that the two imported types are identical, + // but we have not finalized the methds yet, which means + // that we can nt reliably compare interface types. + type = no->type_value(); + + // Don't change the visibility of the existing type. + } + + this->types_[index] = type; + + // Read the type methods. + if (this->match_c_string("\n")) + { + this->advance(1); + while (this->match_c_string(" func")) + { + this->advance(1); + this->import_func(package); + } + } + } + + this->require_c_string(">"); + + return type; +} + +// Register the builtin types. + +void +Import::register_builtin_types(Gogo* gogo) +{ + this->register_builtin_type(gogo, "int8", BUILTIN_INT8); + this->register_builtin_type(gogo, "int16", BUILTIN_INT16); + this->register_builtin_type(gogo, "int32", BUILTIN_INT32); + this->register_builtin_type(gogo, "int64", BUILTIN_INT64); + this->register_builtin_type(gogo, "uint8", BUILTIN_UINT8); + this->register_builtin_type(gogo, "uint16", BUILTIN_UINT16); + this->register_builtin_type(gogo, "uint32", BUILTIN_UINT32); + this->register_builtin_type(gogo, "uint64", BUILTIN_UINT64); + this->register_builtin_type(gogo, "float32", BUILTIN_FLOAT32); + this->register_builtin_type(gogo, "float64", BUILTIN_FLOAT64); + this->register_builtin_type(gogo, "complex64", BUILTIN_COMPLEX64); + this->register_builtin_type(gogo, "complex128", BUILTIN_COMPLEX128); + this->register_builtin_type(gogo, "int", BUILTIN_INT); + this->register_builtin_type(gogo, "uint", BUILTIN_UINT); + this->register_builtin_type(gogo, "uintptr", BUILTIN_UINTPTR); + this->register_builtin_type(gogo, "float", BUILTIN_FLOAT); + this->register_builtin_type(gogo, "complex", BUILTIN_COMPLEX); + this->register_builtin_type(gogo, "bool", BUILTIN_BOOL); + this->register_builtin_type(gogo, "string", BUILTIN_STRING); +} + +// Register a single builtin type. + +void +Import::register_builtin_type(Gogo* gogo, const char* name, Builtin_code code) +{ + Named_object* named_object = gogo->lookup_global(name); + gcc_assert(named_object != NULL && named_object->is_type()); + int index = - static_cast<int>(code); + gcc_assert(index > 0 + && static_cast<size_t>(index) < this->builtin_types_.size()); + this->builtin_types_[index] = named_object->type_value(); +} + +// Read an identifier from the stream. + +std::string +Import::read_identifier() +{ + std::string ret; + Stream* stream = this->stream_; + int c; + while (true) + { + c = stream->peek_char(); + if (c == -1 || c == ' ' || c == ';') + break; + ret += c; + stream->advance(1); + } + return ret; +} + +// Turn a string into a integer with appropriate error handling. + +bool +Import::string_to_int(const std::string &s, bool is_neg_ok, int* ret) +{ + char* end; + long prio = strtol(s.c_str(), &end, 10); + if (*end != '\0' || prio > 0x7fffffff || (prio < 0 && !is_neg_ok)) + { + error_at(this->location_, "invalid integer in import data at %d", + this->stream_->pos()); + this->stream_->set_saw_error(); + return false; + } + *ret = prio; + return true; +} + +// Class Import::Stream. + +Import::Stream::Stream() + : pos_(0), saw_error_(false) +{ +} + +Import::Stream::~Stream() +{ +} + +// Return the next character to come from the stream. + +int +Import::Stream::peek_char() +{ + const char* read; + if (!this->do_peek(1, &read)) + return -1; + // Make sure we return an unsigned char, so that we don't get + // confused by \xff. + unsigned char ret = *read; + return ret; +} + +// Return true if the next LENGTH characters from the stream match +// BYTES + +bool +Import::Stream::match_bytes(const char* bytes, size_t length) +{ + const char* read; + if (!this->do_peek(length, &read)) + return false; + return memcmp(bytes, read, length) == 0; +} + +// Require that the next LENGTH bytes from the stream match BYTES. + +void +Import::Stream::require_bytes(source_location location, const char* bytes, + size_t length) +{ + const char* read; + if (!this->do_peek(length, &read) + || memcmp(bytes, read, length) != 0) + { + if (!this->saw_error_) + error_at(location, "import error at %d: expected %<%.*s%>", + this->pos(), static_cast<int>(length), bytes); + this->saw_error_ = true; + return; + } + this->advance(length); +} + +// Class Stream_from_file. + +Stream_from_file::Stream_from_file(int fd) + : fd_(fd), data_() +{ + if (lseek(fd, 0, SEEK_SET) != 0) + { + error("lseek failed: %m"); + this->set_saw_error(); + } +} + +Stream_from_file::~Stream_from_file() +{ + close(this->fd_); +} + +// Read next bytes. + +bool +Stream_from_file::do_peek(size_t length, const char** bytes) +{ + if (this->data_.length() <= length) + { + *bytes = this->data_.data(); + return true; + } + // Don't bother to handle the general case, since we don't need it. + gcc_assert(length < 64); + char buf[64]; + ssize_t got = read(this->fd_, buf, length); + + if (got < 0) + { + if (!this->saw_error()) + error("read failed: %m"); + this->set_saw_error(); + return false; + } + + if (lseek(this->fd_, - got, SEEK_CUR) != 0) + { + if (!this->saw_error()) + error("lseek failed: %m"); + this->set_saw_error(); + return false; + } + + if (static_cast<size_t>(got) < length) + return false; + + this->data_.assign(buf, got); + + *bytes = this->data_.data(); + return true; +} + +// Advance. + +void +Stream_from_file::do_advance(size_t skip) +{ + if (lseek(this->fd_, skip, SEEK_CUR) != 0) + { + if (!this->saw_error()) + error("lseek failed: %m"); + this->set_saw_error(); + } + if (!this->data_.empty()) + { + if (this->data_.length() < skip) + this->data_.erase(0, skip); + else + this->data_.clear(); + } +} diff --git a/gcc/go/gofrontend/import.h b/gcc/go/gofrontend/import.h new file mode 100644 index 0000000..0101a40 --- /dev/null +++ b/gcc/go/gofrontend/import.h @@ -0,0 +1,351 @@ +// import.h -- Go frontend import declarations. -*- C++ -*- + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +#ifndef GO_IMPORT_H +#define GO_IMPORT_H + +#include "export.h" + +class Gogo; +class Package; +class Type; +class Named_object; +class Named_type; +class Expression; + +// This class manages importing Go declarations. + +class Import +{ + public: + // The Stream class is an interface used to read the data. The + // caller should instantiate a child of this class. + class Stream + { + public: + Stream(); + virtual ~Stream(); + + // Return whether we have seen an error. + bool + saw_error() const + { return this->saw_error_; } + + // Record that we've seen an error. + void + set_saw_error() + { this->saw_error_ = true; } + + // Return the next character (a value from 0 to 0xff) without + // advancing. Returns -1 at end of stream. + int + peek_char(); + + // Look for LENGTH characters, setting *BYTES to point to them. + // Returns false if the bytes are not available. Does not + // advance. + bool + peek(size_t length, const char** bytes) + { return this->do_peek(length, bytes); } + + // Return the next character (a value from 0 to 0xff) and advance + // the read position by 1. Returns -1 at end of stream. + int + get_char() + { + int c = this->peek_char(); + this->advance(1); + return c; + } + + // Return true if at the end of the stream. + bool + at_eof() + { return this->peek_char() == -1; } + + // Return true if the next bytes match STR. + bool + match_c_string(const char* str) + { return this->match_bytes(str, strlen(str)); } + + // Return true if the next LENGTH bytes match BYTES. + bool + match_bytes(const char* bytes, size_t length); + + // Give an error if the next bytes do not match STR. Advance the + // read position by the length of STR. + void + require_c_string(source_location location, const char* str) + { this->require_bytes(location, str, strlen(str)); } + + // Given an error if the next LENGTH bytes do not match BYTES. + // Advance the read position by LENGTH. + void + require_bytes(source_location, const char* bytes, size_t length); + + // Advance the read position by SKIP bytes. + void + advance(size_t skip) + { + this->do_advance(skip); + this->pos_ += skip; + } + + // Return the current read position. This returns int because it + // is more convenient in error reporting. FIXME. + int + pos() + { return static_cast<int>(this->pos_); } + + protected: + // This function should set *BYTES to point to a buffer holding + // the LENGTH bytes at the current read position. It should + // return false if the bytes are not available. This should not + // change the current read position. + virtual bool + do_peek(size_t length, const char** bytes) = 0; + + // This function should advance the current read position LENGTH + // bytes. + virtual void + do_advance(size_t skip) = 0; + + private: + // The current read position. + size_t pos_; + // True if we've seen an error reading from this stream. + bool saw_error_; + }; + + // Find import data. This searches the file system for FILENAME and + // returns a pointer to a Stream object to read the data that it + // exports. LOCATION is the location of the import statement. + static Stream* + open_package(const std::string& filename, source_location location); + + // Constructor. + Import(Stream*, source_location); + + // Register the builtin types. + void + register_builtin_types(Gogo*); + + // Import everything defined in the stream. LOCAL_NAME is the local + // name to be used for bindings; if it is the string "." then + // bindings should be inserted in the global scope. If LOCAL_NAME + // is the empty string then the name of the package itself is the + // local name. This returns the imported package, or NULL on error. + Package* + import(Gogo*, const std::string& local_name, bool is_local_name_exported); + + // The location of the import statement. + source_location + location() const + { return this->location_; } + + // Return the next character. + int + peek_char() + { return this->stream_->peek_char(); } + + // Return the next character and advance. + int + get_char() + { return this->stream_->get_char(); } + + // Return true at the end of the stream. + bool + at_eof() + { return this->stream_->at_eof(); } + + // Return whether the next bytes match STR. + bool + match_c_string(const char* str) + { return this->stream_->match_c_string(str); } + + // Require that the next bytes match STR. + void + require_c_string(const char* str) + { this->stream_->require_c_string(this->location_, str); } + + // Advance the stream SKIP bytes. + void + advance(size_t skip) + { this->stream_->advance(skip); } + + // Read an identifier. + std::string + read_identifier(); + + // Read a type. + Type* + read_type(); + + // The name used for parameters, receivers, and results in imported + // function types. + static const char* const import_marker; + + private: + static Stream* + try_package_in_directory(const std::string&, source_location); + + static int + try_suffixes(std::string*); + + static Stream* + find_export_data(const std::string& filename, int fd, source_location); + + static Stream* + find_object_export_data(const std::string& filename, int fd, + off_t offset, source_location); + + static const int archive_magic_len = 8; + + static bool + is_archive_magic(const char*); + + static Stream* + find_archive_export_data(const std::string& filename, int fd, + source_location); + + // Read the import control functions. + void + read_import_init_fns(Gogo*); + + // Import a constant. + void + import_const(); + + // Import a type. + void + import_type(); + + // Import a variable. + void + import_var(); + + // Import a function. + Named_object* + import_func(Package*); + + // Register a single builtin type. + void + register_builtin_type(Gogo*, const char* name, Builtin_code); + + // Get an integer from a string. + bool + string_to_int(const std::string&, bool is_neg_ok, int* ret); + + // The general IR. + Gogo* gogo_; + // The stream from which to read import data. + Stream* stream_; + // The location of the import statement we are processing. + source_location location_; + // The package we are importing. + Package* package_; + // Whether to add new objects to the global scope, rather than to a + // package scope. + bool add_to_globals_; + // Mapping from negated builtin type codes to Type structures. + std::vector<Named_type*> builtin_types_; + // Mapping from exported type codes to Type structures. + std::vector<Type*> types_; +}; + +// Read import data from a string. + +class Stream_from_string : public Import::Stream +{ + public: + Stream_from_string(const std::string& str) + : str_(str), pos_(0) + { } + + protected: + bool + do_peek(size_t length, const char** bytes) + { + if (this->pos_ + length > this->str_.length()) + return false; + *bytes = this->str_.data() + this->pos_; + return true; + } + + void + do_advance(size_t len) + { this->pos_ += len; } + + private: + // The string of data we are reading. + std::string str_; + // The current position within the string. + size_t pos_; +}; + +// Read import data from an allocated buffer. + +class Stream_from_buffer : public Import::Stream +{ + public: + Stream_from_buffer(char* buf, size_t length) + : buf_(buf), length_(length), pos_(0) + { } + + ~Stream_from_buffer() + { delete[] this->buf_; } + + protected: + bool + do_peek(size_t length, const char** bytes) + { + if (this->pos_ + length > this->length_) + return false; + *bytes = this->buf_ + this->pos_; + return true; + } + + void + do_advance(size_t len) + { this->pos_ += len; } + + private: + // The data we are reading. + char* buf_; + // The length of the buffer. + size_t length_; + // The current position within the buffer. + size_t pos_; +}; + +// Read import data from an open file descriptor. + +class Stream_from_file : public Import::Stream +{ + public: + Stream_from_file(int fd); + + ~Stream_from_file(); + + protected: + bool + do_peek(size_t, const char**); + + void + do_advance(size_t); + + private: + // No copying. + Stream_from_file(const Stream_from_file&); + Stream_from_file& operator=(const Stream_from_file&); + + // The file descriptor. + int fd_; + // Data read from the file. + std::string data_; +}; + +#endif // !defined(GO_IMPORT_H) diff --git a/gcc/go/gofrontend/lex.cc b/gcc/go/gofrontend/lex.cc new file mode 100644 index 0000000..bc2531e --- /dev/null +++ b/gcc/go/gofrontend/lex.cc @@ -0,0 +1,2287 @@ +// lex.cc -- Go frontend lexer. + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +#include "go-system.h" + +#include "lex.h" + +// Manage mapping from keywords to the Keyword codes. + +class Keywords +{ + public: + // The structure which maps keywords to codes. + struct Mapping + { + // Keyword string. + const char* keystring; + // Keyword code. + Keyword keycode; + }; + + // Return the parsecode corresponding to KEYSTRING, or + // KEYWORD_INVALID if it is not a keyword. + Keyword + keyword_to_code(const char* keyword, size_t len) const; + + // Return the string for a keyword. + const char* + keyword_to_string(Keyword) const; + + private: + static const Mapping mapping_[]; + static const int count_; +}; + +// Mapping from keyword string to keyword code. This array must be +// kept in sorted order, and the order must match the Keyword enum. +// Strings are looked up using bsearch. + +const Keywords::Mapping +Keywords::mapping_[] = +{ + { NULL, KEYWORD_INVALID }, + { "__asm__", KEYWORD_ASM }, + { "break", KEYWORD_BREAK }, + { "case", KEYWORD_CASE }, + { "chan", KEYWORD_CHAN }, + { "const", KEYWORD_CONST }, + { "continue", KEYWORD_CONTINUE }, + { "default", KEYWORD_DEFAULT }, + { "defer", KEYWORD_DEFER }, + { "else", KEYWORD_ELSE }, + { "fallthrough", KEYWORD_FALLTHROUGH }, + { "for", KEYWORD_FOR }, + { "func", KEYWORD_FUNC }, + { "go", KEYWORD_GO }, + { "goto", KEYWORD_GOTO }, + { "if", KEYWORD_IF }, + { "import", KEYWORD_IMPORT }, + { "interface", KEYWORD_INTERFACE }, + { "map", KEYWORD_MAP }, + { "package", KEYWORD_PACKAGE }, + { "range", KEYWORD_RANGE }, + { "return", KEYWORD_RETURN }, + { "select", KEYWORD_SELECT }, + { "struct", KEYWORD_STRUCT }, + { "switch", KEYWORD_SWITCH }, + { "type", KEYWORD_TYPE }, + { "var", KEYWORD_VAR } +}; + +// Number of entries in the map. + +const int Keywords::count_ = + sizeof(Keywords::mapping_) / sizeof(Keywords::mapping_[0]); + +// Comparison function passed to bsearch. + +extern "C" +{ + +struct Keywords_search_key +{ + const char* str; + size_t len; +}; + +static int +keyword_compare(const void* keyv, const void* mapv) +{ + const Keywords_search_key* key = + static_cast<const Keywords_search_key*>(keyv); + const Keywords::Mapping* map = + static_cast<const Keywords::Mapping*>(mapv); + if (map->keystring == NULL) + return 1; + int i = strncmp(key->str, map->keystring, key->len); + if (i != 0) + return i; + if (map->keystring[key->len] != '\0') + return -1; + return 0; +} + +} // End extern "C". + +// Convert a string to a keyword code. Return KEYWORD_INVALID if the +// string is not a keyword. + +Keyword +Keywords::keyword_to_code(const char* keyword, size_t len) const +{ + Keywords_search_key key; + key.str = keyword; + key.len = len; + void* mapv = bsearch(&key, + this->mapping_, + this->count_, + sizeof(this->mapping_[0]), + keyword_compare); + if (mapv == NULL) + return KEYWORD_INVALID; + Mapping* map = static_cast<Mapping*>(mapv); + return map->keycode; +} + +// Convert a keyword code to a string. + +const char* +Keywords::keyword_to_string(Keyword code) const +{ + gcc_assert(code > KEYWORD_INVALID && code < this->count_); + const Mapping* map = &this->mapping_[code]; + gcc_assert(map->keycode == code); + return map->keystring; +} + +// There is one instance of the Keywords class. + +static Keywords keywords; + +// Class Token. + +// Make a general token. + +Token::Token(Classification classification, source_location location) + : classification_(classification), location_(location) +{ +} + +// Destroy a token. + +Token::~Token() +{ + this->clear(); +} + +// Clear a token--release memory. + +void +Token::clear() +{ + if (this->classification_ == TOKEN_INTEGER) + mpz_clear(this->u_.integer_value); + else if (this->classification_ == TOKEN_FLOAT + || this->classification_ == TOKEN_IMAGINARY) + mpfr_clear(this->u_.float_value); +} + +// Construct a token. + +Token::Token(const Token& tok) + : classification_(tok.classification_), location_(tok.location_) +{ + switch (this->classification_) + { + case TOKEN_INVALID: + case TOKEN_EOF: + break; + case TOKEN_KEYWORD: + this->u_.keyword = tok.u_.keyword; + break; + case TOKEN_IDENTIFIER: + case TOKEN_STRING: + this->u_.string_value = tok.u_.string_value; + break; + case TOKEN_OPERATOR: + this->u_.op = tok.u_.op; + break; + case TOKEN_INTEGER: + mpz_init_set(this->u_.integer_value, tok.u_.integer_value); + break; + case TOKEN_FLOAT: + case TOKEN_IMAGINARY: + mpfr_init_set(this->u_.float_value, tok.u_.float_value, GMP_RNDN); + break; + default: + gcc_unreachable(); + } +} + +// Assign to a token. + +Token& +Token::operator=(const Token& tok) +{ + this->clear(); + this->classification_ = tok.classification_; + this->location_ = tok.location_; + switch (tok.classification_) + { + case TOKEN_INVALID: + case TOKEN_EOF: + break; + case TOKEN_KEYWORD: + this->u_.keyword = tok.u_.keyword; + break; + case TOKEN_IDENTIFIER: + this->u_.identifier_value.name = tok.u_.identifier_value.name; + this->u_.identifier_value.is_exported = + tok.u_.identifier_value.is_exported; + break; + case TOKEN_STRING: + this->u_.string_value = tok.u_.string_value; + break; + case TOKEN_OPERATOR: + this->u_.op = tok.u_.op; + break; + case TOKEN_INTEGER: + mpz_init_set(this->u_.integer_value, tok.u_.integer_value); + break; + case TOKEN_FLOAT: + case TOKEN_IMAGINARY: + mpfr_init_set(this->u_.float_value, tok.u_.float_value, GMP_RNDN); + break; + default: + gcc_unreachable(); + } + return *this; +} + +// Print the token for debugging. + +void +Token::print(FILE* file) const +{ + switch (this->classification_) + { + case TOKEN_INVALID: + fprintf(file, "invalid"); + break; + case TOKEN_EOF: + fprintf(file, "EOF"); + break; + case TOKEN_KEYWORD: + fprintf(file, "keyword %s", keywords.keyword_to_string(this->u_.keyword)); + break; + case TOKEN_IDENTIFIER: + fprintf(file, "identifier \"%s\"", this->u_.string_value->c_str()); + break; + case TOKEN_STRING: + fprintf(file, "quoted string \"%s\"", this->u_.string_value->c_str()); + break; + case TOKEN_INTEGER: + fprintf(file, "integer "); + mpz_out_str(file, 10, this->u_.integer_value); + break; + case TOKEN_FLOAT: + fprintf(file, "float "); + mpfr_out_str(file, 10, 0, this->u_.float_value, GMP_RNDN); + break; + case TOKEN_IMAGINARY: + fprintf(file, "imaginary "); + mpfr_out_str(file, 10, 0, this->u_.float_value, GMP_RNDN); + break; + case TOKEN_OPERATOR: + fprintf(file, "operator "); + switch (this->u_.op) + { + case OPERATOR_INVALID: + fprintf(file, "invalid"); + break; + case OPERATOR_OROR: + fprintf(file, "||"); + break; + case OPERATOR_ANDAND: + fprintf(file, "&&"); + break; + case OPERATOR_EQEQ: + fprintf(file, "=="); + break; + case OPERATOR_NOTEQ: + fprintf(file, "!="); + break; + case OPERATOR_LT: + fprintf(file, "<"); + break; + case OPERATOR_LE: + fprintf(file, "<="); + break; + case OPERATOR_GT: + fprintf(file, ">"); + break; + case OPERATOR_GE: + fprintf(file, ">="); + break; + case OPERATOR_PLUS: + fprintf(file, "+"); + break; + case OPERATOR_MINUS: + fprintf(file, "-"); + break; + case OPERATOR_OR: + fprintf(file, "|"); + break; + case OPERATOR_XOR: + fprintf(file, "^"); + break; + case OPERATOR_MULT: + fprintf(file, "*"); + break; + case OPERATOR_DIV: + fprintf(file, "/"); + break; + case OPERATOR_MOD: + fprintf(file, "%%"); + break; + case OPERATOR_LSHIFT: + fprintf(file, "<<"); + break; + case OPERATOR_RSHIFT: + fprintf(file, ">>"); + break; + case OPERATOR_AND: + fprintf(file, "&"); + break; + case OPERATOR_BITCLEAR: + fprintf(file, "&^"); + break; + case OPERATOR_NOT: + fprintf(file, "!"); + break; + case OPERATOR_CHANOP: + fprintf(file, "<-"); + break; + case OPERATOR_EQ: + fprintf(file, "="); + break; + case OPERATOR_PLUSEQ: + fprintf(file, "+="); + break; + case OPERATOR_MINUSEQ: + fprintf(file, "-="); + break; + case OPERATOR_OREQ: + fprintf(file, "|="); + break; + case OPERATOR_XOREQ: + fprintf(file, "^="); + break; + case OPERATOR_MULTEQ: + fprintf(file, "*="); + break; + case OPERATOR_DIVEQ: + fprintf(file, "/="); + break; + case OPERATOR_MODEQ: + fprintf(file, "%%="); + break; + case OPERATOR_LSHIFTEQ: + fprintf(file, "<<="); + break; + case OPERATOR_RSHIFTEQ: + fprintf(file, ">>="); + break; + case OPERATOR_ANDEQ: + fprintf(file, "&="); + break; + case OPERATOR_BITCLEAREQ: + fprintf(file, "&^="); + break; + case OPERATOR_PLUSPLUS: + fprintf(file, "++"); + break; + case OPERATOR_MINUSMINUS: + fprintf(file, "--"); + break; + case OPERATOR_COLON: + fprintf(file, ":"); + break; + case OPERATOR_COLONEQ: + fprintf(file, ":="); + break; + case OPERATOR_SEMICOLON: + fprintf(file, ";"); + break; + case OPERATOR_DOT: + fprintf(file, "."); + break; + case OPERATOR_COMMA: + fprintf(file, ","); + break; + case OPERATOR_LPAREN: + fprintf(file, "("); + break; + case OPERATOR_RPAREN: + fprintf(file, ")"); + break; + case OPERATOR_LCURLY: + fprintf(file, "{"); + break; + case OPERATOR_RCURLY: + fprintf(file, "}"); + break; + case OPERATOR_LSQUARE: + fprintf(file, "["); + break; + case OPERATOR_RSQUARE: + fprintf(file, "]"); + break; + default: + gcc_unreachable(); + } + break; + default: + gcc_unreachable(); + } +} + +// Class Lex. + +Lex::Lex(const char* input_file_name, FILE* input_file) + : input_file_name_(input_file_name), input_file_(input_file), + linebuf_(NULL), linebufsize_(120), linesize_(0), lineno_(0), + add_semi_at_eol_(false) +{ + this->linebuf_ = new char[this->linebufsize_]; + linemap_add(line_table, LC_ENTER, 0, input_file_name, 1); +} + +Lex::~Lex() +{ + delete[] this->linebuf_; + linemap_add(line_table, LC_LEAVE, 0, NULL, 0); +} + +// Read a new line from the file. + +ssize_t +Lex::get_line() +{ + char* buf = this->linebuf_; + size_t size = this->linebufsize_; + + FILE* file = this->input_file_; + size_t cur = 0; + while (true) + { + int c = getc(file); + if (c == EOF) + { + if (cur == 0) + return -1; + break; + } + if (cur + 1 >= size) + { + size_t ns = 2 * size + 1; + if (ns < size || static_cast<ssize_t>(ns) < 0) + error_at(this->location(), "out of memory"); + char* nb = new char[ns]; + memcpy(nb, buf, cur); + delete[] buf; + buf = nb; + size = ns; + } + buf[cur] = c; + ++cur; + + if (c == '\n') + break; + } + + buf[cur] = '\0'; + + this->linebuf_ = buf; + this->linebufsize_ = size; + + return cur; +} + +// See if we need to read a new line. Return true if there is a new +// line, false if we are at EOF. + +bool +Lex::require_line() +{ + if (this->lineoff_ < this->linesize_) + return true; + + ssize_t got = this->get_line(); + if (got < 0) + return false; + ++this->lineno_; + this->linesize_= got; + this->lineoff_ = 0; + + linemap_line_start(line_table, this->lineno_, this->linesize_); + + return true; +} + +// Get the current location. + +source_location +Lex::location() const +{ + source_location location; + LINEMAP_POSITION_FOR_COLUMN(location, line_table, this->lineoff_ + 1); + return location; +} + +// Get a location slightly before the current one. This is used for +// slightly more efficient handling of operator tokens. + +source_location +Lex::earlier_location(int chars) const +{ + source_location location; + LINEMAP_POSITION_FOR_COLUMN(location, line_table, this->lineoff_ + 1 - chars); + return location; +} + +// Get the next token. + +Token +Lex::next_token() +{ + while (true) + { + if (!this->require_line()) + return this->make_eof_token(); + + const char* p = this->linebuf_ + this->lineoff_; + const char* pend = this->linebuf_ + this->linesize_; + + while (p < pend) + { + unsigned char cc = *p; + switch (cc) + { + case ' ': case '\t': case '\r': + ++p; + // Skip whitespace quickly. + while (*p == ' ' || *p == '\t' || *p == '\r') + ++p; + break; + + case '\n': + { + ++p; + bool add_semi_at_eol = this->add_semi_at_eol_; + this->add_semi_at_eol_ = false; + if (add_semi_at_eol) + { + this->lineoff_ = p - this->linebuf_; + return this->make_operator(OPERATOR_SEMICOLON, 1); + } + } + break; + + case '/': + if (p[1] == '/') + { + this->lineoff_ = p + 2 - this->linebuf_; + this->skip_cpp_comment(); + p = pend; + if (p[-1] == '\n' && this->add_semi_at_eol_) + --p; + } + else if (p[1] == '*') + { + this->lineoff_ = p - this->linebuf_; + source_location location = this->location(); + if (!this->skip_c_comment()) + return Token::make_invalid_token(location); + p = this->linebuf_ + this->lineoff_; + pend = this->linebuf_ + this->linesize_; + } + else if (p[1] == '=') + { + this->add_semi_at_eol_ = false; + this->lineoff_ = p + 2 - this->linebuf_; + return this->make_operator(OPERATOR_DIVEQ, 2); + } + else + { + this->add_semi_at_eol_ = false; + this->lineoff_ = p + 1 - this->linebuf_; + return this->make_operator(OPERATOR_DIV, 1); + } + break; + + case 'A': case 'B': case 'C': case 'D': case 'E': case 'F': + case 'G': case 'H': case 'I': case 'J': case 'K': case 'L': + case 'M': case 'N': case 'O': case 'P': case 'Q': case 'R': + case 'S': case 'T': case 'U': case 'V': case 'W': case 'X': + case 'Y': case 'Z': + case 'a': case 'b': case 'c': case 'd': case 'e': case 'f': + case 'g': case 'h': case 'i': case 'j': case 'k': case 'l': + case 'm': case 'n': case 'o': case 'p': case 'q': case 'r': + case 's': case 't': case 'u': case 'v': case 'w': case 'x': + case 'y': case 'z': + case '_': + this->lineoff_ = p - this->linebuf_; + return this->gather_identifier(); + + case '0': case '1': case '2': case '3': case '4': + case '5': case '6': case '7': case '8': case '9': + this->add_semi_at_eol_ = true; + this->lineoff_ = p - this->linebuf_; + return this->gather_number(); + + case '\'': + this->add_semi_at_eol_ = true; + this->lineoff_ = p - this->linebuf_; + return this->gather_character(); + + case '"': + this->add_semi_at_eol_ = true; + this->lineoff_ = p - this->linebuf_; + return this->gather_string(); + + case '`': + this->add_semi_at_eol_ = true; + this->lineoff_ = p - this->linebuf_; + return this->gather_raw_string(); + + case '<': + case '>': + case '&': + if (p + 2 < pend) + { + this->add_semi_at_eol_ = false; + Operator op = this->three_character_operator(cc, p[1], p[2]); + if (op != OPERATOR_INVALID) + { + this->lineoff_ = p + 3 - this->linebuf_; + return this->make_operator(op, 3); + } + } + // Fall through. + case '|': + case '=': + case '!': + case '+': + case '-': + case '^': + case '*': + // '/' handled above. + case '%': + case ':': + case ';': + case ',': + case '(': case ')': + case '{': case '}': + case '[': case ']': + { + this->add_semi_at_eol_ = false; + Operator op = this->two_character_operator(cc, p[1]); + int chars; + if (op != OPERATOR_INVALID) + { + ++p; + chars = 2; + } + else + { + op = this->one_character_operator(cc); + chars = 1; + } + this->lineoff_ = p + 1 - this->linebuf_; + return this->make_operator(op, chars); + } + + case '.': + if (p[1] >= '0' && p[1] <= '9') + { + this->add_semi_at_eol_ = true; + this->lineoff_ = p - this->linebuf_; + return this->gather_number(); + } + if (p[1] == '.' && p[2] == '.') + { + this->add_semi_at_eol_ = false; + this->lineoff_ = p + 3 - this->linebuf_; + return this->make_operator(OPERATOR_ELLIPSIS, 3); + } + this->add_semi_at_eol_ = false; + this->lineoff_ = p + 1 - this->linebuf_; + return this->make_operator(OPERATOR_DOT, 1); + + default: + { + unsigned int ci; + bool issued_error; + this->lineoff_ = p - this->linebuf_; + this->advance_one_utf8_char(p, &ci, &issued_error); + if (Lex::is_unicode_letter(ci)) + return this->gather_identifier(); + + if (!issued_error) + error_at(this->location(), + "invalid character 0x%x in input file", + ci); + + p = pend; + + break; + } + } + } + + this->lineoff_ = p - this->linebuf_; + } +} + +// Fetch one UTF-8 character from a string. Set *VALUE to the value. +// Return the number of bytes read from the string. Returns 0 if the +// string does not point to a valid UTF-8 character. + +int +Lex::fetch_char(const char* p, unsigned int* value) +{ + unsigned char c = *p; + if (c == 0) + { + *value = 0xfffd; + return 0; + } + else if (c <= 0x7f) + { + *value = c; + return 1; + } + else if ((c & 0xe0) == 0xc0 + && (p[1] & 0xc0) == 0x80) + { + *value = (((c & 0x1f) << 6) + + (p[1] & 0x3f)); + if (*value <= 0x7f) + { + *value = 0xfffd; + return 0; + } + return 2; + } + else if ((c & 0xf0) == 0xe0 + && (p[1] & 0xc0) == 0x80 + && (p[2] & 0xc0) == 0x80) + { + *value = (((c & 0xf) << 12) + + ((p[1] & 0x3f) << 6) + + (p[2] & 0x3f)); + if (*value <= 0x7ff) + { + *value = 0xfffd; + return 0; + } + return 3; + } + else if ((c & 0xf8) == 0xf0 + && (p[1] & 0xc0) == 0x80 + && (p[2] & 0xc0) == 0x80 + && (p[3] & 0xc0) == 0x80) + { + *value = (((c & 0x7) << 18) + + ((p[1] & 0x3f) << 12) + + ((p[2] & 0x3f) << 6) + + (p[3] & 0x3f)); + if (*value <= 0xffff) + { + *value = 0xfffd; + return 0; + } + return 4; + } + else + { + /* Invalid encoding. Return the Unicode replacement + character. */ + *value = 0xfffd; + return 0; + } +} + +// Advance one UTF-8 character. Return the pointer beyond the +// character. Set *VALUE to the value. Set *ISSUED_ERROR if an error +// was issued. + +const char* +Lex::advance_one_utf8_char(const char* p, unsigned int* value, + bool* issued_error) +{ + *issued_error = false; + int adv = Lex::fetch_char(p, value); + if (adv == 0) + { + if (*p == '\0') + error_at(this->location(), "invalid NUL byte"); + else + error_at(this->location(), "invalid UTF-8 encoding"); + *issued_error = true; + return p + 1; + } + return p + adv; +} + +// Pick up an identifier. + +Token +Lex::gather_identifier() +{ + const char* pstart = this->linebuf_ + this->lineoff_; + const char* p = pstart; + const char* pend = this->linebuf_ + this->linesize_; + bool is_first = true; + bool is_exported = false; + bool has_non_ascii_char = false; + std::string buf; + while (p < pend) + { + unsigned char cc = *p; + if (cc <= 0x7f) + { + if ((cc < 'A' || cc > 'Z') + && (cc < 'a' || cc > 'z') + && cc != '_' + && (cc < '0' || cc > '9')) + break; + ++p; + if (is_first) + { + is_exported = cc >= 'A' && cc <= 'Z'; + is_first = false; + } + if (has_non_ascii_char) + buf.push_back(cc); + } + else + { + unsigned int ci; + bool issued_error; + this->lineoff_ = p - this->linebuf_; + const char* pnext = this->advance_one_utf8_char(p, &ci, + &issued_error); + if (!Lex::is_unicode_letter(ci) && !Lex::is_unicode_digit(ci)) + { + // There is no valid place for a non-ASCII character + // other than an identifier, so we get better error + // handling behaviour if we swallow this character after + // giving an error. + if (!issued_error) + error_at(this->location(), + "invalid character 0x%x in identifier", + ci); + } + if (is_first) + { + is_exported = Lex::is_unicode_uppercase(ci); + is_first = false; + } + if (!has_non_ascii_char) + { + buf.assign(pstart, p - pstart); + has_non_ascii_char = true; + } + p = pnext; + char ubuf[50]; + // This assumes that all assemblers can handle an identifier + // with a '$' character. + snprintf(ubuf, sizeof ubuf, "$U%x$", ci); + buf.append(ubuf); + } + } + source_location location = this->location(); + this->add_semi_at_eol_ = true; + this->lineoff_ = p - this->linebuf_; + if (has_non_ascii_char) + return Token::make_identifier_token(buf, is_exported, location); + else + { + Keyword code = keywords.keyword_to_code(pstart, p - pstart); + if (code == KEYWORD_INVALID) + return Token::make_identifier_token(std::string(pstart, p - pstart), + is_exported, location); + else + { + switch (code) + { + case KEYWORD_BREAK: + case KEYWORD_CONTINUE: + case KEYWORD_FALLTHROUGH: + case KEYWORD_RETURN: + break; + default: + this->add_semi_at_eol_ = false; + break; + } + return Token::make_keyword_token(code, location); + } + } +} + +// Return whether C is a hex digit. + +bool +Lex::is_hex_digit(char c) +{ + return ((c >= '0' && c <= '9') + || (c >= 'A' && c <= 'F') + || (c >= 'a' && c <= 'f')); +} + +// Pick up a number. + +Token +Lex::gather_number() +{ + const char* pstart = this->linebuf_ + this->lineoff_; + const char* p = pstart; + const char* pend = this->linebuf_ + this->linesize_; + + source_location location = this->location(); + + bool neg = false; + if (*p == '+') + ++p; + else if (*p == '-') + { + ++p; + neg = true; + } + + const char* pnum = p; + if (*p == '0') + { + int base; + if ((p[1] == 'x' || p[1] == 'X') + && Lex::is_hex_digit(p[2])) + { + base = 16; + p += 2; + pnum = p; + while (p < pend) + { + if (!Lex::is_hex_digit(*p)) + break; + ++p; + } + } + else + { + base = 8; + pnum = p; + while (p < pend) + { + if (*p < '0' || *p > '7') + break; + ++p; + } + } + + if (*p != '.' && *p != 'e' && *p != 'E' && *p != 'i') + { + std::string s(pnum, p - pnum); + mpz_t val; + int r = mpz_init_set_str(val, s.c_str(), base); + gcc_assert(r == 0); + + if (neg) + mpz_neg(val, val); + + this->lineoff_ = p - this->linebuf_; + Token ret = Token::make_integer_token(val, location); + mpz_clear(val); + return ret; + } + } + + while (p < pend) + { + if (*p < '0' || *p > '9') + break; + ++p; + } + + if (*p != '.' && *p != 'E' && *p != 'e' && *p != 'i') + { + std::string s(pnum, p - pnum); + mpz_t val; + int r = mpz_init_set_str(val, s.c_str(), 10); + gcc_assert(r == 0); + + if (neg) + mpz_neg(val, val); + + this->lineoff_ = p - this->linebuf_; + Token ret = Token::make_integer_token(val, location); + mpz_clear(val); + return ret; + } + + if (*p != 'i') + { + bool dot = *p == '.'; + + ++p; + + if (!dot) + { + if (*p == '+' || *p == '-') + ++p; + } + + while (p < pend) + { + if (*p < '0' || *p > '9') + break; + ++p; + } + + if (dot && (*p == 'E' || *p == 'e')) + { + ++p; + if (*p == '+' || *p == '-') + ++p; + while (p < pend) + { + if (*p < '0' || *p > '9') + break; + ++p; + } + } + } + + std::string s(pnum, p - pnum); + mpfr_t val; + int r = mpfr_init_set_str(val, s.c_str(), 10, GMP_RNDN); + gcc_assert(r == 0); + + if (neg) + mpfr_neg(val, val, GMP_RNDN); + + bool is_imaginary = *p == 'i'; + if (is_imaginary) + ++p; + + this->lineoff_ = p - this->linebuf_; + if (is_imaginary) + { + Token ret = Token::make_imaginary_token(val, location); + mpfr_clear(val); + return ret; + } + else + { + Token ret = Token::make_float_token(val, location); + mpfr_clear(val); + return ret; + } +} + +// Advance one character, possibly escaped. Return the pointer beyond +// the character. Set *VALUE to the character. Set *IS_CHARACTER if +// this is a character (e.g., 'a' or '\u1234') rather than a byte +// value (e.g., '\001'). + +const char* +Lex::advance_one_char(const char* p, bool is_single_quote, unsigned int* value, + bool* is_character) +{ + *value = 0; + *is_character = true; + if (*p != '\\') + { + bool issued_error; + const char* ret = this->advance_one_utf8_char(p, value, &issued_error); + if (is_single_quote + && (*value == '\'' || *value == '\n') + && !issued_error) + error_at(this->location(), "invalid character literal"); + return ret; + } + else + { + ++p; + switch (*p) + { + case '0': case '1': case '2': case '3': + case '4': case '5': case '6': case '7': + *is_character = false; + if (p[1] >= '0' && p[1] <= '7' + && p[2] >= '0' && p[2] <= '7') + { + *value = ((Lex::octal_value(p[0]) << 6) + + (Lex::octal_value(p[1]) << 3) + + Lex::octal_value(p[2])); + if (*value > 255) + { + error_at(this->location(), "invalid octal constant"); + *value = 255; + } + return p + 3; + } + error_at(this->location(), "invalid octal character"); + return (p[1] >= '0' && p[1] <= '7' + ? p + 2 + : p + 1); + + case 'x': + case 'X': + *is_character = false; + if (Lex::is_hex_digit(p[1]) && Lex::is_hex_digit(p[2])) + { + *value = (hex_value(p[1]) << 4) + hex_value(p[2]); + return p + 3; + } + error_at(this->location(), "invalid hex character"); + return (Lex::is_hex_digit(p[1]) + ? p + 2 + : p + 1); + + case 'a': + *value = '\a'; + return p + 1; + case 'b': + *value = '\b'; + return p + 1; + case 'f': + *value = '\f'; + return p + 1; + case 'n': + *value = '\n'; + return p + 1; + case 'r': + *value = '\r'; + return p + 1; + case 't': + *value = '\t'; + return p + 1; + case 'v': + *value = '\v'; + return p + 1; + case '\\': + *value = '\\'; + return p + 1; + case '\'': + if (!is_single_quote) + error_at(this->location(), "invalid quoted character"); + *value = '\''; + return p + 1; + case '"': + if (is_single_quote) + error_at(this->location(), "invalid quoted character"); + *value = '"'; + return p + 1; + + case 'u': + if (Lex::is_hex_digit(p[1]) && Lex::is_hex_digit(p[2]) + && Lex::is_hex_digit(p[3]) && Lex::is_hex_digit(p[4])) + { + *value = ((hex_value(p[1]) << 12) + + (hex_value(p[2]) << 8) + + (hex_value(p[3]) << 4) + + hex_value(p[4])); + if (*value >= 0xd800 && *value < 0xe000) + { + error_at(this->location(), + "invalid unicode code point 0x%x", + *value); + // Use the replacement character. + *value = 0xfffd; + } + return p + 5; + } + error_at(this->location(), "invalid little unicode code point"); + return p + 1; + + case 'U': + if (Lex::is_hex_digit(p[1]) && Lex::is_hex_digit(p[2]) + && Lex::is_hex_digit(p[3]) && Lex::is_hex_digit(p[4]) + && Lex::is_hex_digit(p[5]) && Lex::is_hex_digit(p[6]) + && Lex::is_hex_digit(p[7]) && Lex::is_hex_digit(p[8])) + { + *value = ((hex_value(p[1]) << 28) + + (hex_value(p[2]) << 24) + + (hex_value(p[3]) << 20) + + (hex_value(p[4]) << 16) + + (hex_value(p[5]) << 12) + + (hex_value(p[6]) << 8) + + (hex_value(p[7]) << 4) + + hex_value(p[8])); + if (*value > 0x10ffff + || (*value >= 0xd800 && *value < 0xe000)) + { + error_at(this->location(), "invalid unicode code point 0x%x", + *value); + // Use the replacement character. + *value = 0xfffd; + } + return p + 9; + } + error_at(this->location(), "invalid big unicode code point"); + return p + 1; + + default: + error_at(this->location(), "invalid character after %<\\%>"); + *value = *p; + return p + 1; + } + } +} + +// Append V to STR. IS_CHARACTER is true for a character which should +// be stored in UTF-8, false for a general byte value which should be +// stored directly. + +void +Lex::append_char(unsigned int v, bool is_character, std::string* str, + source_location location) +{ + char buf[4]; + size_t len; + if (v <= 0x7f || !is_character) + { + buf[0] = v; + len = 1; + } + else if (v <= 0x7ff) + { + buf[0] = 0xc0 + (v >> 6); + buf[1] = 0x80 + (v & 0x3f); + len = 2; + } + else + { + if (v > 0x10ffff) + { + warning_at(location, 0, + "unicode code point 0x%x out of range in string", v); + // Turn it into the "replacement character". + v = 0xfffd; + } + if (v <= 0xffff) + { + buf[0] = 0xe0 + (v >> 12); + buf[1] = 0x80 + ((v >> 6) & 0x3f); + buf[2] = 0x80 + (v & 0x3f); + len = 3; + } + else + { + buf[0] = 0xf0 + (v >> 18); + buf[1] = 0x80 + ((v >> 12) & 0x3f); + buf[2] = 0x80 + ((v >> 6) & 0x3f); + buf[3] = 0x80 + (v & 0x3f); + len = 4; + } + } + str->append(buf, len); +} + +// Pick up a character literal. + +Token +Lex::gather_character() +{ + ++this->lineoff_; + const char* pstart = this->linebuf_ + this->lineoff_; + const char* p = pstart; + + unsigned int value; + bool is_character; + p = this->advance_one_char(p, true, &value, &is_character); + + if (*p != '\'') + { + error_at(this->location(), "unterminated character constant"); + this->lineoff_ = p - this->linebuf_; + return this->make_invalid_token(); + } + + mpz_t val; + mpz_init_set_ui(val, value); + + source_location location = this->location(); + this->lineoff_ = p + 1 - this->linebuf_; + Token ret = Token::make_integer_token(val, location); + mpz_clear(val); + return ret; +} + +// Pick up a quoted string. + +Token +Lex::gather_string() +{ + const char* pstart = this->linebuf_ + this->lineoff_ + 1; + const char* p = pstart; + const char* pend = this->linebuf_ + this->linesize_; + + std::string value; + while (*p != '"') + { + source_location loc = this->location(); + unsigned int c; + bool is_character; + this->lineoff_ = p - this->linebuf_; + p = this->advance_one_char(p, false, &c, &is_character); + if (p >= pend) + { + error_at(this->location(), "unterminated string"); + --p; + break; + } + Lex::append_char(c, is_character, &value, loc); + } + + source_location location = this->location(); + this->lineoff_ = p + 1 - this->linebuf_; + return Token::make_string_token(value, location); +} + +// Pick up a raw string. + +Token +Lex::gather_raw_string() +{ + const char* p = this->linebuf_ + this->lineoff_ + 1; + const char* pend = this->linebuf_ + this->linesize_; + source_location location = this->location(); + + std::string value; + while (true) + { + while (p < pend) + { + if (*p == '`') + { + this->lineoff_ = p + 1 - this->linebuf_; + return Token::make_string_token(value, location); + } + source_location loc = this->location(); + unsigned int c; + bool issued_error; + this->lineoff_ = p - this->linebuf_; + p = this->advance_one_utf8_char(p, &c, &issued_error); + Lex::append_char(c, true, &value, loc); + } + this->lineoff_ = p - this->linebuf_; + if (!this->require_line()) + { + error_at(location, "unterminated raw string"); + return Token::make_string_token(value, location); + } + p = this->linebuf_ + this->lineoff_; + pend = this->linebuf_ + this->linesize_; + } +} + +// If C1 C2 C3 are a three character operator, return the code. + +Operator +Lex::three_character_operator(char c1, char c2, char c3) +{ + if (c3 == '=') + { + if (c1 == '<' && c2 == '<') + return OPERATOR_LSHIFTEQ; + else if (c1 == '>' && c2 == '>') + return OPERATOR_RSHIFTEQ; + else if (c1 == '&' && c2 == '^') + return OPERATOR_BITCLEAREQ; + } + return OPERATOR_INVALID; +} + +// If C1 C2 are a two character operator, return the code. + +Operator +Lex::two_character_operator(char c1, char c2) +{ + switch (c1) + { + case '|': + if (c2 == '|') + return OPERATOR_OROR; + else if (c2 == '=') + return OPERATOR_OREQ; + break; + case '&': + if (c2 == '&') + return OPERATOR_ANDAND; + else if (c2 == '^') + return OPERATOR_BITCLEAR; + else if (c2 == '=') + return OPERATOR_ANDEQ; + break; + case '^': + if (c2 == '=') + return OPERATOR_XOREQ; + break; + case '=': + if (c2 == '=') + return OPERATOR_EQEQ; + break; + case '!': + if (c2 == '=') + return OPERATOR_NOTEQ; + break; + case '<': + if (c2 == '=') + return OPERATOR_LE; + else if (c2 == '<') + return OPERATOR_LSHIFT; + else if (c2 == '-') + return OPERATOR_CHANOP; + break; + case '>': + if (c2 == '=') + return OPERATOR_GE; + else if (c2 == '>') + return OPERATOR_RSHIFT; + break; + case '*': + if (c2 == '=') + return OPERATOR_MULTEQ; + break; + case '/': + if (c2 == '=') + return OPERATOR_DIVEQ; + break; + case '%': + if (c2 == '=') + return OPERATOR_MODEQ; + break; + case '+': + if (c2 == '+') + { + this->add_semi_at_eol_ = true; + return OPERATOR_PLUSPLUS; + } + else if (c2 == '=') + return OPERATOR_PLUSEQ; + break; + case '-': + if (c2 == '-') + { + this->add_semi_at_eol_ = true; + return OPERATOR_MINUSMINUS; + } + else if (c2 == '=') + return OPERATOR_MINUSEQ; + break; + case ':': + if (c2 == '=') + return OPERATOR_COLONEQ; + break; + default: + break; + } + return OPERATOR_INVALID; +} + +// If character C is an operator, return the code. + +Operator +Lex::one_character_operator(char c) +{ + switch (c) + { + case '<': + return OPERATOR_LT; + case '>': + return OPERATOR_GT; + case '+': + return OPERATOR_PLUS; + case '-': + return OPERATOR_MINUS; + case '|': + return OPERATOR_OR; + case '^': + return OPERATOR_XOR; + case '*': + return OPERATOR_MULT; + case '/': + return OPERATOR_DIV; + case '%': + return OPERATOR_MOD; + case '&': + return OPERATOR_AND; + case '!': + return OPERATOR_NOT; + case '=': + return OPERATOR_EQ; + case ':': + return OPERATOR_COLON; + case ';': + return OPERATOR_SEMICOLON; + case '.': + return OPERATOR_DOT; + case ',': + return OPERATOR_COMMA; + case '(': + return OPERATOR_LPAREN; + case ')': + this->add_semi_at_eol_ = true; + return OPERATOR_RPAREN; + case '{': + return OPERATOR_LCURLY; + case '}': + this->add_semi_at_eol_ = true; + return OPERATOR_RCURLY; + case '[': + return OPERATOR_LSQUARE; + case ']': + this->add_semi_at_eol_ = true; + return OPERATOR_RSQUARE; + default: + return OPERATOR_INVALID; + } +} + +// Skip a C-style comment. + +bool +Lex::skip_c_comment() +{ + while (true) + { + if (!this->require_line()) + { + error_at(this->location(), "unterminated comment"); + return false; + } + + const char* p = this->linebuf_ + this->lineoff_; + const char* pend = this->linebuf_ + this->linesize_; + + while (p < pend) + { + if (p[0] == '*' && p + 1 < pend && p[1] == '/') + { + this->lineoff_ = p + 2 - this->linebuf_; + return true; + } + + this->lineoff_ = p - this->linebuf_; + unsigned int c; + bool issued_error; + p = this->advance_one_utf8_char(p, &c, &issued_error); + } + + this->lineoff_ = p - this->linebuf_; + } +} + +// Skip a C++-style comment. + +void +Lex::skip_cpp_comment() +{ + const char* p = this->linebuf_ + this->lineoff_; + const char* pend = this->linebuf_ + this->linesize_; + + // By convention, a C++ comment at the start of the line of the form + // //line FILE:LINENO + // is interpreted as setting the file name and line number of the + // next source line. + + if (this->lineoff_ == 2 + && pend - p > 5 + && memcmp(p, "line ", 5) == 0) + { + p += 5; + while (p < pend && *p == ' ') + ++p; + const char* pcolon = static_cast<const char*>(memchr(p, ':', pend - p)); + if (pcolon != NULL + && pcolon[1] >= '0' + && pcolon[1] <= '9') + { + char* plend; + long lineno = strtol(pcolon + 1, &plend, 10); + if (plend > pcolon + 1 + && (plend == pend + || *plend < '0' + || *plend > '9') + && lineno > 0 + && lineno < 0x7fffffff) + { + unsigned int filelen = pcolon - p; + char* file = new char[filelen + 1]; + memcpy(file, p, filelen); + file[filelen] = '\0'; + + linemap_add(line_table, LC_LEAVE, 0, NULL, 0); + linemap_add(line_table, LC_ENTER, 0, file, lineno); + this->lineno_ = lineno - 1; + + p = plend; + } + } + } + + while (p < pend) + { + this->lineoff_ = p - this->linebuf_; + unsigned int c; + bool issued_error; + p = this->advance_one_utf8_char(p, &c, &issued_error); + } +} + +// The Unicode tables use this struct. + +struct Unicode_range +{ + // The low end of the range. + unsigned int low; + // The high end of the range. + unsigned int high; + // The stride. This entries represents low, low + stride, low + 2 * + // stride, etc., up to high. + unsigned int stride; +}; + +// A table of Unicode digits--Unicode code points classified as +// "Digit". + +static const Unicode_range unicode_digits[] = +{ + { 0x0030, 0x0039, 1}, + { 0x0660, 0x0669, 1}, + { 0x06f0, 0x06f9, 1}, + { 0x07c0, 0x07c9, 1}, + { 0x0966, 0x096f, 1}, + { 0x09e6, 0x09ef, 1}, + { 0x0a66, 0x0a6f, 1}, + { 0x0ae6, 0x0aef, 1}, + { 0x0b66, 0x0b6f, 1}, + { 0x0be6, 0x0bef, 1}, + { 0x0c66, 0x0c6f, 1}, + { 0x0ce6, 0x0cef, 1}, + { 0x0d66, 0x0d6f, 1}, + { 0x0e50, 0x0e59, 1}, + { 0x0ed0, 0x0ed9, 1}, + { 0x0f20, 0x0f29, 1}, + { 0x1040, 0x1049, 1}, + { 0x17e0, 0x17e9, 1}, + { 0x1810, 0x1819, 1}, + { 0x1946, 0x194f, 1}, + { 0x19d0, 0x19d9, 1}, + { 0x1b50, 0x1b59, 1}, + { 0xff10, 0xff19, 1}, + { 0x104a0, 0x104a9, 1}, + { 0x1d7ce, 0x1d7ff, 1}, +}; + +// A table of Unicode letters--Unicode code points classified as +// "Letter". + +static const Unicode_range unicode_letters[] = +{ + { 0x0041, 0x005a, 1}, + { 0x0061, 0x007a, 1}, + { 0x00aa, 0x00b5, 11}, + { 0x00ba, 0x00ba, 1}, + { 0x00c0, 0x00d6, 1}, + { 0x00d8, 0x00f6, 1}, + { 0x00f8, 0x02c1, 1}, + { 0x02c6, 0x02d1, 1}, + { 0x02e0, 0x02e4, 1}, + { 0x02ec, 0x02ee, 2}, + { 0x0370, 0x0374, 1}, + { 0x0376, 0x0377, 1}, + { 0x037a, 0x037d, 1}, + { 0x0386, 0x0386, 1}, + { 0x0388, 0x038a, 1}, + { 0x038c, 0x038c, 1}, + { 0x038e, 0x03a1, 1}, + { 0x03a3, 0x03f5, 1}, + { 0x03f7, 0x0481, 1}, + { 0x048a, 0x0523, 1}, + { 0x0531, 0x0556, 1}, + { 0x0559, 0x0559, 1}, + { 0x0561, 0x0587, 1}, + { 0x05d0, 0x05ea, 1}, + { 0x05f0, 0x05f2, 1}, + { 0x0621, 0x064a, 1}, + { 0x066e, 0x066f, 1}, + { 0x0671, 0x06d3, 1}, + { 0x06d5, 0x06d5, 1}, + { 0x06e5, 0x06e6, 1}, + { 0x06ee, 0x06ef, 1}, + { 0x06fa, 0x06fc, 1}, + { 0x06ff, 0x0710, 17}, + { 0x0712, 0x072f, 1}, + { 0x074d, 0x07a5, 1}, + { 0x07b1, 0x07b1, 1}, + { 0x07ca, 0x07ea, 1}, + { 0x07f4, 0x07f5, 1}, + { 0x07fa, 0x07fa, 1}, + { 0x0904, 0x0939, 1}, + { 0x093d, 0x0950, 19}, + { 0x0958, 0x0961, 1}, + { 0x0971, 0x0972, 1}, + { 0x097b, 0x097f, 1}, + { 0x0985, 0x098c, 1}, + { 0x098f, 0x0990, 1}, + { 0x0993, 0x09a8, 1}, + { 0x09aa, 0x09b0, 1}, + { 0x09b2, 0x09b2, 1}, + { 0x09b6, 0x09b9, 1}, + { 0x09bd, 0x09ce, 17}, + { 0x09dc, 0x09dd, 1}, + { 0x09df, 0x09e1, 1}, + { 0x09f0, 0x09f1, 1}, + { 0x0a05, 0x0a0a, 1}, + { 0x0a0f, 0x0a10, 1}, + { 0x0a13, 0x0a28, 1}, + { 0x0a2a, 0x0a30, 1}, + { 0x0a32, 0x0a33, 1}, + { 0x0a35, 0x0a36, 1}, + { 0x0a38, 0x0a39, 1}, + { 0x0a59, 0x0a5c, 1}, + { 0x0a5e, 0x0a5e, 1}, + { 0x0a72, 0x0a74, 1}, + { 0x0a85, 0x0a8d, 1}, + { 0x0a8f, 0x0a91, 1}, + { 0x0a93, 0x0aa8, 1}, + { 0x0aaa, 0x0ab0, 1}, + { 0x0ab2, 0x0ab3, 1}, + { 0x0ab5, 0x0ab9, 1}, + { 0x0abd, 0x0ad0, 19}, + { 0x0ae0, 0x0ae1, 1}, + { 0x0b05, 0x0b0c, 1}, + { 0x0b0f, 0x0b10, 1}, + { 0x0b13, 0x0b28, 1}, + { 0x0b2a, 0x0b30, 1}, + { 0x0b32, 0x0b33, 1}, + { 0x0b35, 0x0b39, 1}, + { 0x0b3d, 0x0b3d, 1}, + { 0x0b5c, 0x0b5d, 1}, + { 0x0b5f, 0x0b61, 1}, + { 0x0b71, 0x0b83, 18}, + { 0x0b85, 0x0b8a, 1}, + { 0x0b8e, 0x0b90, 1}, + { 0x0b92, 0x0b95, 1}, + { 0x0b99, 0x0b9a, 1}, + { 0x0b9c, 0x0b9c, 1}, + { 0x0b9e, 0x0b9f, 1}, + { 0x0ba3, 0x0ba4, 1}, + { 0x0ba8, 0x0baa, 1}, + { 0x0bae, 0x0bb9, 1}, + { 0x0bd0, 0x0bd0, 1}, + { 0x0c05, 0x0c0c, 1}, + { 0x0c0e, 0x0c10, 1}, + { 0x0c12, 0x0c28, 1}, + { 0x0c2a, 0x0c33, 1}, + { 0x0c35, 0x0c39, 1}, + { 0x0c3d, 0x0c3d, 1}, + { 0x0c58, 0x0c59, 1}, + { 0x0c60, 0x0c61, 1}, + { 0x0c85, 0x0c8c, 1}, + { 0x0c8e, 0x0c90, 1}, + { 0x0c92, 0x0ca8, 1}, + { 0x0caa, 0x0cb3, 1}, + { 0x0cb5, 0x0cb9, 1}, + { 0x0cbd, 0x0cde, 33}, + { 0x0ce0, 0x0ce1, 1}, + { 0x0d05, 0x0d0c, 1}, + { 0x0d0e, 0x0d10, 1}, + { 0x0d12, 0x0d28, 1}, + { 0x0d2a, 0x0d39, 1}, + { 0x0d3d, 0x0d3d, 1}, + { 0x0d60, 0x0d61, 1}, + { 0x0d7a, 0x0d7f, 1}, + { 0x0d85, 0x0d96, 1}, + { 0x0d9a, 0x0db1, 1}, + { 0x0db3, 0x0dbb, 1}, + { 0x0dbd, 0x0dbd, 1}, + { 0x0dc0, 0x0dc6, 1}, + { 0x0e01, 0x0e30, 1}, + { 0x0e32, 0x0e33, 1}, + { 0x0e40, 0x0e46, 1}, + { 0x0e81, 0x0e82, 1}, + { 0x0e84, 0x0e84, 1}, + { 0x0e87, 0x0e88, 1}, + { 0x0e8a, 0x0e8d, 3}, + { 0x0e94, 0x0e97, 1}, + { 0x0e99, 0x0e9f, 1}, + { 0x0ea1, 0x0ea3, 1}, + { 0x0ea5, 0x0ea7, 2}, + { 0x0eaa, 0x0eab, 1}, + { 0x0ead, 0x0eb0, 1}, + { 0x0eb2, 0x0eb3, 1}, + { 0x0ebd, 0x0ebd, 1}, + { 0x0ec0, 0x0ec4, 1}, + { 0x0ec6, 0x0ec6, 1}, + { 0x0edc, 0x0edd, 1}, + { 0x0f00, 0x0f00, 1}, + { 0x0f40, 0x0f47, 1}, + { 0x0f49, 0x0f6c, 1}, + { 0x0f88, 0x0f8b, 1}, + { 0x1000, 0x102a, 1}, + { 0x103f, 0x103f, 1}, + { 0x1050, 0x1055, 1}, + { 0x105a, 0x105d, 1}, + { 0x1061, 0x1061, 1}, + { 0x1065, 0x1066, 1}, + { 0x106e, 0x1070, 1}, + { 0x1075, 0x1081, 1}, + { 0x108e, 0x108e, 1}, + { 0x10a0, 0x10c5, 1}, + { 0x10d0, 0x10fa, 1}, + { 0x10fc, 0x10fc, 1}, + { 0x1100, 0x1159, 1}, + { 0x115f, 0x11a2, 1}, + { 0x11a8, 0x11f9, 1}, + { 0x1200, 0x1248, 1}, + { 0x124a, 0x124d, 1}, + { 0x1250, 0x1256, 1}, + { 0x1258, 0x1258, 1}, + { 0x125a, 0x125d, 1}, + { 0x1260, 0x1288, 1}, + { 0x128a, 0x128d, 1}, + { 0x1290, 0x12b0, 1}, + { 0x12b2, 0x12b5, 1}, + { 0x12b8, 0x12be, 1}, + { 0x12c0, 0x12c0, 1}, + { 0x12c2, 0x12c5, 1}, + { 0x12c8, 0x12d6, 1}, + { 0x12d8, 0x1310, 1}, + { 0x1312, 0x1315, 1}, + { 0x1318, 0x135a, 1}, + { 0x1380, 0x138f, 1}, + { 0x13a0, 0x13f4, 1}, + { 0x1401, 0x166c, 1}, + { 0x166f, 0x1676, 1}, + { 0x1681, 0x169a, 1}, + { 0x16a0, 0x16ea, 1}, + { 0x1700, 0x170c, 1}, + { 0x170e, 0x1711, 1}, + { 0x1720, 0x1731, 1}, + { 0x1740, 0x1751, 1}, + { 0x1760, 0x176c, 1}, + { 0x176e, 0x1770, 1}, + { 0x1780, 0x17b3, 1}, + { 0x17d7, 0x17dc, 5}, + { 0x1820, 0x1877, 1}, + { 0x1880, 0x18a8, 1}, + { 0x18aa, 0x18aa, 1}, + { 0x1900, 0x191c, 1}, + { 0x1950, 0x196d, 1}, + { 0x1970, 0x1974, 1}, + { 0x1980, 0x19a9, 1}, + { 0x19c1, 0x19c7, 1}, + { 0x1a00, 0x1a16, 1}, + { 0x1b05, 0x1b33, 1}, + { 0x1b45, 0x1b4b, 1}, + { 0x1b83, 0x1ba0, 1}, + { 0x1bae, 0x1baf, 1}, + { 0x1c00, 0x1c23, 1}, + { 0x1c4d, 0x1c4f, 1}, + { 0x1c5a, 0x1c7d, 1}, + { 0x1d00, 0x1dbf, 1}, + { 0x1e00, 0x1f15, 1}, + { 0x1f18, 0x1f1d, 1}, + { 0x1f20, 0x1f45, 1}, + { 0x1f48, 0x1f4d, 1}, + { 0x1f50, 0x1f57, 1}, + { 0x1f59, 0x1f5d, 2}, + { 0x1f5f, 0x1f7d, 1}, + { 0x1f80, 0x1fb4, 1}, + { 0x1fb6, 0x1fbc, 1}, + { 0x1fbe, 0x1fbe, 1}, + { 0x1fc2, 0x1fc4, 1}, + { 0x1fc6, 0x1fcc, 1}, + { 0x1fd0, 0x1fd3, 1}, + { 0x1fd6, 0x1fdb, 1}, + { 0x1fe0, 0x1fec, 1}, + { 0x1ff2, 0x1ff4, 1}, + { 0x1ff6, 0x1ffc, 1}, + { 0x2071, 0x207f, 14}, + { 0x2090, 0x2094, 1}, + { 0x2102, 0x2107, 5}, + { 0x210a, 0x2113, 1}, + { 0x2115, 0x2115, 1}, + { 0x2119, 0x211d, 1}, + { 0x2124, 0x2128, 2}, + { 0x212a, 0x212d, 1}, + { 0x212f, 0x2139, 1}, + { 0x213c, 0x213f, 1}, + { 0x2145, 0x2149, 1}, + { 0x214e, 0x214e, 1}, + { 0x2183, 0x2184, 1}, + { 0x2c00, 0x2c2e, 1}, + { 0x2c30, 0x2c5e, 1}, + { 0x2c60, 0x2c6f, 1}, + { 0x2c71, 0x2c7d, 1}, + { 0x2c80, 0x2ce4, 1}, + { 0x2d00, 0x2d25, 1}, + { 0x2d30, 0x2d65, 1}, + { 0x2d6f, 0x2d6f, 1}, + { 0x2d80, 0x2d96, 1}, + { 0x2da0, 0x2da6, 1}, + { 0x2da8, 0x2dae, 1}, + { 0x2db0, 0x2db6, 1}, + { 0x2db8, 0x2dbe, 1}, + { 0x2dc0, 0x2dc6, 1}, + { 0x2dc8, 0x2dce, 1}, + { 0x2dd0, 0x2dd6, 1}, + { 0x2dd8, 0x2dde, 1}, + { 0x2e2f, 0x2e2f, 1}, + { 0x3005, 0x3006, 1}, + { 0x3031, 0x3035, 1}, + { 0x303b, 0x303c, 1}, + { 0x3041, 0x3096, 1}, + { 0x309d, 0x309f, 1}, + { 0x30a1, 0x30fa, 1}, + { 0x30fc, 0x30ff, 1}, + { 0x3105, 0x312d, 1}, + { 0x3131, 0x318e, 1}, + { 0x31a0, 0x31b7, 1}, + { 0x31f0, 0x31ff, 1}, + { 0x3400, 0x4db5, 1}, + { 0x4e00, 0x9fc3, 1}, + { 0xa000, 0xa48c, 1}, + { 0xa500, 0xa60c, 1}, + { 0xa610, 0xa61f, 1}, + { 0xa62a, 0xa62b, 1}, + { 0xa640, 0xa65f, 1}, + { 0xa662, 0xa66e, 1}, + { 0xa67f, 0xa697, 1}, + { 0xa717, 0xa71f, 1}, + { 0xa722, 0xa788, 1}, + { 0xa78b, 0xa78c, 1}, + { 0xa7fb, 0xa801, 1}, + { 0xa803, 0xa805, 1}, + { 0xa807, 0xa80a, 1}, + { 0xa80c, 0xa822, 1}, + { 0xa840, 0xa873, 1}, + { 0xa882, 0xa8b3, 1}, + { 0xa90a, 0xa925, 1}, + { 0xa930, 0xa946, 1}, + { 0xaa00, 0xaa28, 1}, + { 0xaa40, 0xaa42, 1}, + { 0xaa44, 0xaa4b, 1}, + { 0xac00, 0xd7a3, 1}, + { 0xf900, 0xfa2d, 1}, + { 0xfa30, 0xfa6a, 1}, + { 0xfa70, 0xfad9, 1}, + { 0xfb00, 0xfb06, 1}, + { 0xfb13, 0xfb17, 1}, + { 0xfb1d, 0xfb1d, 1}, + { 0xfb1f, 0xfb28, 1}, + { 0xfb2a, 0xfb36, 1}, + { 0xfb38, 0xfb3c, 1}, + { 0xfb3e, 0xfb3e, 1}, + { 0xfb40, 0xfb41, 1}, + { 0xfb43, 0xfb44, 1}, + { 0xfb46, 0xfbb1, 1}, + { 0xfbd3, 0xfd3d, 1}, + { 0xfd50, 0xfd8f, 1}, + { 0xfd92, 0xfdc7, 1}, + { 0xfdf0, 0xfdfb, 1}, + { 0xfe70, 0xfe74, 1}, + { 0xfe76, 0xfefc, 1}, + { 0xff21, 0xff3a, 1}, + { 0xff41, 0xff5a, 1}, + { 0xff66, 0xffbe, 1}, + { 0xffc2, 0xffc7, 1}, + { 0xffca, 0xffcf, 1}, + { 0xffd2, 0xffd7, 1}, + { 0xffda, 0xffdc, 1}, + { 0x10000, 0x1000b, 1}, + { 0x1000d, 0x10026, 1}, + { 0x10028, 0x1003a, 1}, + { 0x1003c, 0x1003d, 1}, + { 0x1003f, 0x1004d, 1}, + { 0x10050, 0x1005d, 1}, + { 0x10080, 0x100fa, 1}, + { 0x10280, 0x1029c, 1}, + { 0x102a0, 0x102d0, 1}, + { 0x10300, 0x1031e, 1}, + { 0x10330, 0x10340, 1}, + { 0x10342, 0x10349, 1}, + { 0x10380, 0x1039d, 1}, + { 0x103a0, 0x103c3, 1}, + { 0x103c8, 0x103cf, 1}, + { 0x10400, 0x1049d, 1}, + { 0x10800, 0x10805, 1}, + { 0x10808, 0x10808, 1}, + { 0x1080a, 0x10835, 1}, + { 0x10837, 0x10838, 1}, + { 0x1083c, 0x1083f, 3}, + { 0x10900, 0x10915, 1}, + { 0x10920, 0x10939, 1}, + { 0x10a00, 0x10a00, 1}, + { 0x10a10, 0x10a13, 1}, + { 0x10a15, 0x10a17, 1}, + { 0x10a19, 0x10a33, 1}, + { 0x12000, 0x1236e, 1}, + { 0x1d400, 0x1d454, 1}, + { 0x1d456, 0x1d49c, 1}, + { 0x1d49e, 0x1d49f, 1}, + { 0x1d4a2, 0x1d4a2, 1}, + { 0x1d4a5, 0x1d4a6, 1}, + { 0x1d4a9, 0x1d4ac, 1}, + { 0x1d4ae, 0x1d4b9, 1}, + { 0x1d4bb, 0x1d4bb, 1}, + { 0x1d4bd, 0x1d4c3, 1}, + { 0x1d4c5, 0x1d505, 1}, + { 0x1d507, 0x1d50a, 1}, + { 0x1d50d, 0x1d514, 1}, + { 0x1d516, 0x1d51c, 1}, + { 0x1d51e, 0x1d539, 1}, + { 0x1d53b, 0x1d53e, 1}, + { 0x1d540, 0x1d544, 1}, + { 0x1d546, 0x1d546, 1}, + { 0x1d54a, 0x1d550, 1}, + { 0x1d552, 0x1d6a5, 1}, + { 0x1d6a8, 0x1d6c0, 1}, + { 0x1d6c2, 0x1d6da, 1}, + { 0x1d6dc, 0x1d6fa, 1}, + { 0x1d6fc, 0x1d714, 1}, + { 0x1d716, 0x1d734, 1}, + { 0x1d736, 0x1d74e, 1}, + { 0x1d750, 0x1d76e, 1}, + { 0x1d770, 0x1d788, 1}, + { 0x1d78a, 0x1d7a8, 1}, + { 0x1d7aa, 0x1d7c2, 1}, + { 0x1d7c4, 0x1d7cb, 1}, + { 0x20000, 0x2a6d6, 1}, + { 0x2f800, 0x2fa1d, 1}, +}; + +// A table of Unicode uppercase letters--Unicode code points +// classified as "Letter, uppercase". + +static const Unicode_range unicode_uppercase_letters[] = +{ + { 0x0041, 0x005a, 1}, + { 0x00c0, 0x00d6, 1}, + { 0x00d8, 0x00de, 1}, + { 0x0100, 0x0136, 2}, + { 0x0139, 0x0147, 2}, + { 0x014a, 0x0176, 2}, + { 0x0178, 0x0179, 1}, + { 0x017b, 0x017d, 2}, + { 0x0181, 0x0182, 1}, + { 0x0184, 0x0184, 1}, + { 0x0186, 0x0187, 1}, + { 0x0189, 0x018b, 1}, + { 0x018e, 0x0191, 1}, + { 0x0193, 0x0194, 1}, + { 0x0196, 0x0198, 1}, + { 0x019c, 0x019d, 1}, + { 0x019f, 0x01a0, 1}, + { 0x01a2, 0x01a4, 2}, + { 0x01a6, 0x01a7, 1}, + { 0x01a9, 0x01ac, 3}, + { 0x01ae, 0x01af, 1}, + { 0x01b1, 0x01b3, 1}, + { 0x01b5, 0x01b5, 1}, + { 0x01b7, 0x01b8, 1}, + { 0x01bc, 0x01c4, 8}, + { 0x01c7, 0x01cd, 3}, + { 0x01cf, 0x01db, 2}, + { 0x01de, 0x01ee, 2}, + { 0x01f1, 0x01f4, 3}, + { 0x01f6, 0x01f8, 1}, + { 0x01fa, 0x0232, 2}, + { 0x023a, 0x023b, 1}, + { 0x023d, 0x023e, 1}, + { 0x0241, 0x0241, 1}, + { 0x0243, 0x0246, 1}, + { 0x0248, 0x024e, 2}, + { 0x0370, 0x0372, 2}, + { 0x0376, 0x0386, 16}, + { 0x0388, 0x038a, 1}, + { 0x038c, 0x038c, 1}, + { 0x038e, 0x038f, 1}, + { 0x0391, 0x03a1, 1}, + { 0x03a3, 0x03ab, 1}, + { 0x03cf, 0x03cf, 1}, + { 0x03d2, 0x03d4, 1}, + { 0x03d8, 0x03ee, 2}, + { 0x03f4, 0x03f7, 3}, + { 0x03f9, 0x03fa, 1}, + { 0x03fd, 0x042f, 1}, + { 0x0460, 0x0480, 2}, + { 0x048a, 0x04be, 2}, + { 0x04c0, 0x04c1, 1}, + { 0x04c3, 0x04cd, 2}, + { 0x04d0, 0x0522, 2}, + { 0x0531, 0x0556, 1}, + { 0x10a0, 0x10c5, 1}, + { 0x1e00, 0x1e94, 2}, + { 0x1e9e, 0x1efe, 2}, + { 0x1f08, 0x1f0f, 1}, + { 0x1f18, 0x1f1d, 1}, + { 0x1f28, 0x1f2f, 1}, + { 0x1f38, 0x1f3f, 1}, + { 0x1f48, 0x1f4d, 1}, + { 0x1f59, 0x1f5f, 2}, + { 0x1f68, 0x1f6f, 1}, + { 0x1fb8, 0x1fbb, 1}, + { 0x1fc8, 0x1fcb, 1}, + { 0x1fd8, 0x1fdb, 1}, + { 0x1fe8, 0x1fec, 1}, + { 0x1ff8, 0x1ffb, 1}, + { 0x2102, 0x2107, 5}, + { 0x210b, 0x210d, 1}, + { 0x2110, 0x2112, 1}, + { 0x2115, 0x2115, 1}, + { 0x2119, 0x211d, 1}, + { 0x2124, 0x2128, 2}, + { 0x212a, 0x212d, 1}, + { 0x2130, 0x2133, 1}, + { 0x213e, 0x213f, 1}, + { 0x2145, 0x2183, 62}, + { 0x2c00, 0x2c2e, 1}, + { 0x2c60, 0x2c60, 1}, + { 0x2c62, 0x2c64, 1}, + { 0x2c67, 0x2c6b, 2}, + { 0x2c6d, 0x2c6f, 1}, + { 0x2c72, 0x2c75, 3}, + { 0x2c80, 0x2ce2, 2}, + { 0xa640, 0xa65e, 2}, + { 0xa662, 0xa66c, 2}, + { 0xa680, 0xa696, 2}, + { 0xa722, 0xa72e, 2}, + { 0xa732, 0xa76e, 2}, + { 0xa779, 0xa77b, 2}, + { 0xa77d, 0xa77e, 1}, + { 0xa780, 0xa786, 2}, + { 0xa78b, 0xa78b, 1}, + { 0xff21, 0xff3a, 1}, + { 0x10400, 0x10427, 1}, + { 0x1d400, 0x1d419, 1}, + { 0x1d434, 0x1d44d, 1}, + { 0x1d468, 0x1d481, 1}, + { 0x1d49c, 0x1d49c, 1}, + { 0x1d49e, 0x1d49f, 1}, + { 0x1d4a2, 0x1d4a2, 1}, + { 0x1d4a5, 0x1d4a6, 1}, + { 0x1d4a9, 0x1d4ac, 1}, + { 0x1d4ae, 0x1d4b5, 1}, + { 0x1d4d0, 0x1d4e9, 1}, + { 0x1d504, 0x1d505, 1}, + { 0x1d507, 0x1d50a, 1}, + { 0x1d50d, 0x1d514, 1}, + { 0x1d516, 0x1d51c, 1}, + { 0x1d538, 0x1d539, 1}, + { 0x1d53b, 0x1d53e, 1}, + { 0x1d540, 0x1d544, 1}, + { 0x1d546, 0x1d546, 1}, + { 0x1d54a, 0x1d550, 1}, + { 0x1d56c, 0x1d585, 1}, + { 0x1d5a0, 0x1d5b9, 1}, + { 0x1d5d4, 0x1d5ed, 1}, + { 0x1d608, 0x1d621, 1}, + { 0x1d63c, 0x1d655, 1}, + { 0x1d670, 0x1d689, 1}, + { 0x1d6a8, 0x1d6c0, 1}, + { 0x1d6e2, 0x1d6fa, 1}, + { 0x1d71c, 0x1d734, 1}, + { 0x1d756, 0x1d76e, 1}, + { 0x1d790, 0x1d7a8, 1}, + { 0x1d7ca, 0x1d7ca, 1}, +}; + +// Return true if C is in RANGES. + +bool +Lex::is_in_unicode_range(unsigned int c, const Unicode_range* ranges, + size_t range_size) +{ + if (c < 0x100) + { + // The common case is a small value, and we know that it will be + // in the first few entries of the table. Do a linear scan + // rather than a binary search. + for (size_t i = 0; i < range_size; ++i) + { + const Unicode_range* p = &ranges[i]; + if (c <= p->high) + { + if (c < p->low) + return false; + return (c - p->low) % p->stride == 0; + } + } + return false; + } + else + { + size_t lo = 0; + size_t hi = range_size; + while (lo < hi) + { + size_t mid = lo + (hi - lo) / 2; + const Unicode_range* p = &ranges[mid]; + if (c < p->low) + hi = mid; + else if (c > p->high) + lo = mid + 1; + else + return (c - p->low) % p->stride == 0; + } + return false; + } +} + +// Return whether C is a Unicode digit--a Unicode code point +// classified as "Digit". + +bool +Lex::is_unicode_digit(unsigned int c) +{ + return Lex::is_in_unicode_range(c, unicode_digits, + ARRAY_SIZE(unicode_digits)); +} + +// Return whether C is a Unicode letter--a Unicode code point +// classified as "Letter". + +bool +Lex::is_unicode_letter(unsigned int c) +{ + return Lex::is_in_unicode_range(c, unicode_letters, + ARRAY_SIZE(unicode_letters)); +} + +// Return whether C is a Unicode uppercase letter. a Unicode code +// point classified as "Letter, uppercase". + +bool +Lex::is_unicode_uppercase(unsigned int c) +{ + return Lex::is_in_unicode_range(c, unicode_uppercase_letters, + ARRAY_SIZE(unicode_uppercase_letters)); +} + +// Return whether the identifier NAME should be exported. NAME is a +// mangled name which includes only ASCII characters. + +bool +Lex::is_exported_name(const std::string& name) +{ + unsigned char c = name[0]; + if (c != '$') + return c >= 'A' && c <= 'Z'; + else + { + const char* p = name.data(); + size_t len = name.length(); + if (len < 2 || p[1] != 'U') + return false; + unsigned int ci = 0; + for (size_t i = 2; i < len && p[i] != '$'; ++i) + { + c = p[i]; + if (!hex_p(c)) + return false; + ci <<= 4; + ci |= hex_value(c); + } + return Lex::is_unicode_uppercase(ci); + } +} diff --git a/gcc/go/gofrontend/lex.h b/gcc/go/gofrontend/lex.h new file mode 100644 index 0000000..c8def2b --- /dev/null +++ b/gcc/go/gofrontend/lex.h @@ -0,0 +1,446 @@ +// lex.h -- Go frontend lexer. -*- C++ -*- + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +#ifndef GO_LEX_H +#define GO_LEX_H + +#include <gmp.h> +#include <mpfr.h> + +#include "operator.h" + +struct Unicode_range; + +// The keywords. These must be in sorted order, other than +// KEYWORD_INVALID. They must match the Keywords::mapping_ array in +// lex.cc. + +enum Keyword +{ + KEYWORD_INVALID, // Not a keyword. + KEYWORD_ASM, + KEYWORD_BREAK, + KEYWORD_CASE, + KEYWORD_CHAN, + KEYWORD_CONST, + KEYWORD_CONTINUE, + KEYWORD_DEFAULT, + KEYWORD_DEFER, + KEYWORD_ELSE, + KEYWORD_FALLTHROUGH, + KEYWORD_FOR, + KEYWORD_FUNC, + KEYWORD_GO, + KEYWORD_GOTO, + KEYWORD_IF, + KEYWORD_IMPORT, + KEYWORD_INTERFACE, + KEYWORD_MAP, + KEYWORD_PACKAGE, + KEYWORD_RANGE, + KEYWORD_RETURN, + KEYWORD_SELECT, + KEYWORD_STRUCT, + KEYWORD_SWITCH, + KEYWORD_TYPE, + KEYWORD_VAR +}; + +// A token returned from the lexer. + +class Token +{ + public: + // Token classification. + enum Classification + { + // Token is invalid. + TOKEN_INVALID, + // Token indicates end of input. + TOKEN_EOF, + // Token is a keyword. + TOKEN_KEYWORD, + // Token is an identifier. + TOKEN_IDENTIFIER, + // Token is a string of characters. + TOKEN_STRING, + // Token is an operator. + TOKEN_OPERATOR, + // Token is an integer. + TOKEN_INTEGER, + // Token is a floating point number. + TOKEN_FLOAT, + // Token is an imaginary number. + TOKEN_IMAGINARY + }; + + ~Token(); + Token(const Token&); + Token& operator=(const Token&); + + // Get token classification. + Classification + classification() const + { return this->classification_; } + + // Make a token for an invalid value. + static Token + make_invalid_token(source_location location) + { return Token(TOKEN_INVALID, location); } + + // Make a token representing end of file. + static Token + make_eof_token(source_location location) + { return Token(TOKEN_EOF, location); } + + // Make a keyword token. + static Token + make_keyword_token(Keyword keyword, source_location location) + { + Token tok(TOKEN_KEYWORD, location); + tok.u_.keyword = keyword; + return tok; + } + + // Make an identifier token. + static Token + make_identifier_token(const std::string& value, bool is_exported, + source_location location) + { + Token tok(TOKEN_IDENTIFIER, location); + tok.u_.identifier_value.name = new std::string(value); + tok.u_.identifier_value.is_exported = is_exported; + return tok; + } + + // Make a quoted string token. + static Token + make_string_token(const std::string& value, source_location location) + { + Token tok(TOKEN_STRING, location); + tok.u_.string_value = new std::string(value); + return tok; + } + + // Make an operator token. + static Token + make_operator_token(Operator op, source_location location) + { + Token tok(TOKEN_OPERATOR, location); + tok.u_.op = op; + return tok; + } + + // Make an integer token. + static Token + make_integer_token(mpz_t val, source_location location) + { + Token tok(TOKEN_INTEGER, location); + mpz_init(tok.u_.integer_value); + mpz_swap(tok.u_.integer_value, val); + return tok; + } + + // Make a float token. + static Token + make_float_token(mpfr_t val, source_location location) + { + Token tok(TOKEN_FLOAT, location); + mpfr_init(tok.u_.float_value); + mpfr_swap(tok.u_.float_value, val); + return tok; + } + + // Make a token for an imaginary number. + static Token + make_imaginary_token(mpfr_t val, source_location location) + { + Token tok(TOKEN_IMAGINARY, location); + mpfr_init(tok.u_.float_value); + mpfr_swap(tok.u_.float_value, val); + return tok; + } + + // Get the location of the token. + source_location + location() const + { return this->location_; } + + // Return whether this is an invalid token. + bool + is_invalid() const + { return this->classification_ == TOKEN_INVALID; } + + // Return whether this is the EOF token. + bool + is_eof() const + { return this->classification_ == TOKEN_EOF; } + + // Return the keyword value for a keyword token. + Keyword + keyword() const + { + gcc_assert(this->classification_ == TOKEN_KEYWORD); + return this->u_.keyword; + } + + // Return whether this is an identifier. + bool + is_identifier() const + { return this->classification_ == TOKEN_IDENTIFIER; } + + // Return the identifier. + const std::string& + identifier() const + { + gcc_assert(this->classification_ == TOKEN_IDENTIFIER); + return *this->u_.identifier_value.name; + } + + // Return whether the identifier is exported. + bool + is_identifier_exported() const + { + gcc_assert(this->classification_ == TOKEN_IDENTIFIER); + return this->u_.identifier_value.is_exported; + } + + // Return whether this is a string. + bool + is_string() const + { + return this->classification_ == TOKEN_STRING; + } + + // Return the value of a string. The returned value is a string of + // UTF-8 characters. + std::string + string_value() const + { + gcc_assert(this->classification_ == TOKEN_STRING); + return *this->u_.string_value; + } + + // Return the value of an integer. + const mpz_t* + integer_value() const + { + gcc_assert(this->classification_ == TOKEN_INTEGER); + return &this->u_.integer_value; + } + + // Return the value of a float. + const mpfr_t* + float_value() const + { + gcc_assert(this->classification_ == TOKEN_FLOAT); + return &this->u_.float_value; + } + + // Return the value of an imaginary number. + const mpfr_t* + imaginary_value() const + { + gcc_assert(this->classification_ == TOKEN_IMAGINARY); + return &this->u_.float_value; + } + + // Return the operator value for an operator token. + Operator + op() const + { + gcc_assert(this->classification_ == TOKEN_OPERATOR); + return this->u_.op; + } + + // Return whether this token is KEYWORD. + bool + is_keyword(Keyword keyword) const + { + return (this->classification_ == TOKEN_KEYWORD + && this->u_.keyword == keyword); + } + + // Return whether this token is OP. + bool + is_op(Operator op) const + { return this->classification_ == TOKEN_OPERATOR && this->u_.op == op; } + + // Print the token for debugging. + void + print(FILE*) const; + + private: + // Private constructor used by make_..._token functions above. + Token(Classification, source_location); + + // Clear the token. + void + clear(); + + // The token classification. + Classification classification_; + union + { + // The keyword value for TOKEN_KEYWORD. + Keyword keyword; + // The token value for TOKEN_IDENTIFIER. + struct + { + // The name of the identifier. This has been mangled to only + // include ASCII characters. + std::string* name; + // Whether this name should be exported. This is true if the + // first letter in the name is upper case. + bool is_exported; + } identifier_value; + // The string value for TOKEN_STRING. + std::string* string_value; + // The token value for TOKEN_INTEGER. + mpz_t integer_value; + // The token value for TOKEN_FLOAT or TOKEN_IMAGINARY. + mpfr_t float_value; + // The token value for TOKEN_OPERATOR or the keyword value + Operator op; + } u_; + // The source location. + source_location location_; +}; + +// The lexer itself. + +class Lex +{ + public: + Lex(const char* input_file_name, FILE* input_file); + + ~Lex(); + + // Return the next token. + Token + next_token(); + + // Return whether the identifier NAME should be exported. NAME is a + // mangled name which includes only ASCII characters. + static bool + is_exported_name(const std::string& name); + + // A helper function. Append V to STR. IS_CHARACTER is true if V + // is a Unicode character which should be converted into UTF-8, + // false if it is a byte value to be appended directly. The + // location is used to warn about an out of range character. + static void + append_char(unsigned int v, bool is_charater, std::string* str, + source_location); + + // A helper function. Fetch a UTF-8 character from STR and store it + // in *VALUE. Return the number of bytes read from STR. Return 0 + // if STR does not point to a valid UTF-8 character. + static int + fetch_char(const char* str, unsigned int *value); + + private: + ssize_t + get_line(); + + bool + require_line(); + + // The current location. + source_location + location() const; + + // A position CHARS column positions before the current location. + source_location + earlier_location(int chars) const; + + static bool + is_hex_digit(char); + + static unsigned char + octal_value(char c) + { return c - '0'; } + + Token + make_invalid_token() + { return Token::make_invalid_token(this->location()); } + + Token + make_eof_token() + { return Token::make_eof_token(this->location()); } + + Token + make_operator(Operator op, int chars) + { return Token::make_operator_token(op, this->earlier_location(chars)); } + + Token + gather_identifier(); + + Token + gather_number(); + + Token + gather_character(); + + Token + gather_string(); + + Token + gather_raw_string(); + + const char* + advance_one_utf8_char(const char*, unsigned int*, bool*); + + const char* + advance_one_char(const char*, bool, unsigned int*, bool*); + + static bool + is_unicode_digit(unsigned int c); + + static bool + is_unicode_letter(unsigned int c); + + static bool + is_unicode_uppercase(unsigned int c); + + static bool + is_in_unicode_range(unsigned int C, const Unicode_range* ranges, + size_t range_size); + + Operator + three_character_operator(char, char, char); + + Operator + two_character_operator(char, char); + + Operator + one_character_operator(char); + + bool + skip_c_comment(); + + void + skip_cpp_comment(); + + // The input file name. + const char* input_file_name_; + // The input file. + FILE* input_file_; + // The line buffer. This holds the current line. + char* linebuf_; + // The size of the line buffer. + size_t linebufsize_; + // The nmber of characters in the current line. + size_t linesize_; + // The current offset in linebuf_. + size_t lineoff_; + // The current line number. + size_t lineno_; + // Whether to add a semicolon if we see a newline now. + bool add_semi_at_eol_; +}; + +#endif // !defined(GO_LEX_H) diff --git a/gcc/go/gofrontend/operator.h b/gcc/go/gofrontend/operator.h new file mode 100644 index 0000000..f3e0fd0 --- /dev/null +++ b/gcc/go/gofrontend/operator.h @@ -0,0 +1,66 @@ +// operator.h -- Go frontend operators. -*- C++ -*- + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +#ifndef GO_OPERATOR_H +#define GO_OPERATOR_H + +// The operators. + +enum Operator +{ + OPERATOR_INVALID, + OPERATOR_OROR, // || + OPERATOR_ANDAND, // && + OPERATOR_EQEQ, // == + OPERATOR_NOTEQ, // != + OPERATOR_LT, // < + OPERATOR_LE, // <= + OPERATOR_GT, // > + OPERATOR_GE, // >= + OPERATOR_PLUS, // + + OPERATOR_MINUS, // - + OPERATOR_OR, // | + OPERATOR_XOR, // ^ + OPERATOR_MULT, // * + OPERATOR_DIV, // / + OPERATOR_MOD, // % + OPERATOR_LSHIFT, // << + OPERATOR_RSHIFT, // >> + OPERATOR_AND, // & + OPERATOR_NOT, // ! + OPERATOR_BITCLEAR, // &^ + OPERATOR_CHANOP, // <- + + OPERATOR_EQ, // = + OPERATOR_PLUSEQ, // += + OPERATOR_MINUSEQ, // -= + OPERATOR_OREQ, // |= + OPERATOR_XOREQ, // ^= + OPERATOR_MULTEQ, // *= + OPERATOR_DIVEQ, // /= + OPERATOR_MODEQ, // %= + OPERATOR_LSHIFTEQ, // <<= + OPERATOR_RSHIFTEQ, // >>= + OPERATOR_ANDEQ, // &= + OPERATOR_BITCLEAREQ, // &^= + OPERATOR_PLUSPLUS, // ++ + OPERATOR_MINUSMINUS, // -- + + OPERATOR_COLON, // : + OPERATOR_COLONEQ, // := + OPERATOR_SEMICOLON, // ; + OPERATOR_DOT, // . + OPERATOR_ELLIPSIS, // ... + OPERATOR_COMMA, // , + OPERATOR_LPAREN, // ( + OPERATOR_RPAREN, // ) + OPERATOR_LCURLY, // { + OPERATOR_RCURLY, // } + OPERATOR_LSQUARE, // [ + OPERATOR_RSQUARE // ] +}; + +#endif // !defined(GO_OPERATOR_H) diff --git a/gcc/go/gofrontend/parse.cc b/gcc/go/gofrontend/parse.cc new file mode 100644 index 0000000..c8b55c5 --- /dev/null +++ b/gcc/go/gofrontend/parse.cc @@ -0,0 +1,4730 @@ +// parse.cc -- Go frontend parser. + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +#include "go-system.h" + +#include "lex.h" +#include "gogo.h" +#include "types.h" +#include "statements.h" +#include "expressions.h" +#include "parse.h" + +// Struct Parse::Enclosing_var_comparison. + +// Return true if v1 should be considered to be less than v2. + +bool +Parse::Enclosing_var_comparison::operator()(const Enclosing_var& v1, + const Enclosing_var& v2) +{ + if (v1.var() == v2.var()) + return false; + + const std::string& n1(v1.var()->name()); + const std::string& n2(v2.var()->name()); + int i = n1.compare(n2); + if (i < 0) + return true; + else if (i > 0) + return false; + + // If we get here it means that a single nested function refers to + // two different variables defined in enclosing functions, and both + // variables have the same name. I think this is impossible. + gcc_unreachable(); +} + +// Class Parse. + +Parse::Parse(Lex* lex, Gogo* gogo) + : lex_(lex), + token_(Token::make_invalid_token(0)), + unget_token_(Token::make_invalid_token(0)), + unget_token_valid_(false), + gogo_(gogo), + break_stack_(), + continue_stack_(), + iota_(0), + enclosing_vars_() +{ +} + +// Return the current token. + +const Token* +Parse::peek_token() +{ + if (this->unget_token_valid_) + return &this->unget_token_; + if (this->token_.is_invalid()) + this->token_ = this->lex_->next_token(); + return &this->token_; +} + +// Advance to the next token and return it. + +const Token* +Parse::advance_token() +{ + if (this->unget_token_valid_) + { + this->unget_token_valid_ = false; + if (!this->token_.is_invalid()) + return &this->token_; + } + this->token_ = this->lex_->next_token(); + return &this->token_; +} + +// Push a token back on the input stream. + +void +Parse::unget_token(const Token& token) +{ + gcc_assert(!this->unget_token_valid_); + this->unget_token_ = token; + this->unget_token_valid_ = true; +} + +// The location of the current token. + +source_location +Parse::location() +{ + return this->peek_token()->location(); +} + +// IdentifierList = identifier { "," identifier } . + +void +Parse::identifier_list(Typed_identifier_list* til) +{ + const Token* token = this->peek_token(); + while (true) + { + if (!token->is_identifier()) + { + error_at(this->location(), "expected identifier"); + return; + } + std::string name = + this->gogo_->pack_hidden_name(token->identifier(), + token->is_identifier_exported()); + til->push_back(Typed_identifier(name, NULL, token->location())); + token = this->advance_token(); + if (!token->is_op(OPERATOR_COMMA)) + return; + token = this->advance_token(); + } +} + +// ExpressionList = Expression { "," Expression } . + +// If MAY_BE_SINK is true, the expressions in the list may be "_". + +Expression_list* +Parse::expression_list(Expression* first, bool may_be_sink) +{ + Expression_list* ret = new Expression_list(); + if (first != NULL) + ret->push_back(first); + while (true) + { + ret->push_back(this->expression(PRECEDENCE_NORMAL, may_be_sink, true, + NULL)); + + const Token* token = this->peek_token(); + if (!token->is_op(OPERATOR_COMMA)) + return ret; + + // Most expression lists permit a trailing comma. + source_location location = token->location(); + this->advance_token(); + if (!this->expression_may_start_here()) + { + this->unget_token(Token::make_operator_token(OPERATOR_COMMA, + location)); + return ret; + } + } +} + +// QualifiedIdent = [ PackageName "." ] identifier . +// PackageName = identifier . + +// This sets *PNAME to the identifier and sets *PPACKAGE to the +// package or NULL if there isn't one. This returns true on success, +// false on failure in which case it will have emitted an error +// message. + +bool +Parse::qualified_ident(std::string* pname, Named_object** ppackage) +{ + const Token* token = this->peek_token(); + if (!token->is_identifier()) + { + error_at(this->location(), "expected identifier"); + return false; + } + + std::string name = token->identifier(); + bool is_exported = token->is_identifier_exported(); + name = this->gogo_->pack_hidden_name(name, is_exported); + + token = this->advance_token(); + if (!token->is_op(OPERATOR_DOT)) + { + *pname = name; + *ppackage = NULL; + return true; + } + + Named_object* package = this->gogo_->lookup(name, NULL); + if (package == NULL || !package->is_package()) + { + error_at(this->location(), "expected package"); + // We expect . IDENTIFIER; skip both. + if (this->advance_token()->is_identifier()) + this->advance_token(); + return false; + } + + package->package_value()->set_used(); + + token = this->advance_token(); + if (!token->is_identifier()) + { + error_at(this->location(), "expected identifier"); + return false; + } + + name = token->identifier(); + + if (name == "_") + { + error_at(this->location(), "invalid use of %<_%>"); + name = "blank"; + } + + if (package->name() == this->gogo_->package_name()) + name = this->gogo_->pack_hidden_name(name, + token->is_identifier_exported()); + + *pname = name; + *ppackage = package; + + this->advance_token(); + + return true; +} + +// Type = TypeName | TypeLit | "(" Type ")" . +// TypeLit = +// ArrayType | StructType | PointerType | FunctionType | InterfaceType | +// SliceType | MapType | ChannelType . + +Type* +Parse::type() +{ + const Token* token = this->peek_token(); + if (token->is_identifier()) + return this->type_name(true); + else if (token->is_op(OPERATOR_LSQUARE)) + return this->array_type(false); + else if (token->is_keyword(KEYWORD_CHAN) + || token->is_op(OPERATOR_CHANOP)) + return this->channel_type(); + else if (token->is_keyword(KEYWORD_INTERFACE)) + return this->interface_type(); + else if (token->is_keyword(KEYWORD_FUNC)) + { + source_location location = token->location(); + this->advance_token(); + return this->signature(NULL, location); + } + else if (token->is_keyword(KEYWORD_MAP)) + return this->map_type(); + else if (token->is_keyword(KEYWORD_STRUCT)) + return this->struct_type(); + else if (token->is_op(OPERATOR_MULT)) + return this->pointer_type(); + else if (token->is_op(OPERATOR_LPAREN)) + { + this->advance_token(); + Type* ret = this->type(); + if (this->peek_token()->is_op(OPERATOR_RPAREN)) + this->advance_token(); + else + { + if (!ret->is_error_type()) + error_at(this->location(), "expected %<)%>"); + } + return ret; + } + else + { + error_at(token->location(), "expected type"); + return Type::make_error_type(); + } +} + +bool +Parse::type_may_start_here() +{ + const Token* token = this->peek_token(); + return (token->is_identifier() + || token->is_op(OPERATOR_LSQUARE) + || token->is_op(OPERATOR_CHANOP) + || token->is_keyword(KEYWORD_CHAN) + || token->is_keyword(KEYWORD_INTERFACE) + || token->is_keyword(KEYWORD_FUNC) + || token->is_keyword(KEYWORD_MAP) + || token->is_keyword(KEYWORD_STRUCT) + || token->is_op(OPERATOR_MULT) + || token->is_op(OPERATOR_LPAREN)); +} + +// TypeName = QualifiedIdent . + +// If MAY_BE_NIL is true, then an identifier with the value of the +// predefined constant nil is accepted, returning the nil type. + +Type* +Parse::type_name(bool issue_error) +{ + source_location location = this->location(); + + std::string name; + Named_object* package; + if (!this->qualified_ident(&name, &package)) + return Type::make_error_type(); + + Named_object* named_object; + if (package == NULL) + named_object = this->gogo_->lookup(name, NULL); + else + { + named_object = package->package_value()->lookup(name); + if (named_object == NULL + && issue_error + && package->name() != this->gogo_->package_name()) + { + // Check whether the name is there but hidden. + std::string s = ('.' + package->package_value()->unique_prefix() + + '.' + package->package_value()->name() + + '.' + name); + named_object = package->package_value()->lookup(s); + if (named_object != NULL) + { + const std::string& packname(package->package_value()->name()); + error_at(location, "invalid reference to hidden type %<%s.%s%>", + Gogo::message_name(packname).c_str(), + Gogo::message_name(name).c_str()); + issue_error = false; + } + } + } + + bool ok = true; + if (named_object == NULL) + { + if (package != NULL) + ok = false; + else + named_object = this->gogo_->add_unknown_name(name, location); + } + else if (named_object->is_type()) + { + if (!named_object->type_value()->is_visible()) + ok = false; + } + else if (named_object->is_unknown() || named_object->is_type_declaration()) + ; + else + ok = false; + + if (!ok) + { + if (issue_error) + error_at(location, "expected type"); + return Type::make_error_type(); + } + + if (named_object->is_type()) + return named_object->type_value(); + else if (named_object->is_unknown() || named_object->is_type_declaration()) + return Type::make_forward_declaration(named_object); + else + gcc_unreachable(); +} + +// ArrayType = "[" [ ArrayLength ] "]" ElementType . +// ArrayLength = Expression . +// ElementType = CompleteType . + +Type* +Parse::array_type(bool may_use_ellipsis) +{ + gcc_assert(this->peek_token()->is_op(OPERATOR_LSQUARE)); + const Token* token = this->advance_token(); + + Expression* length = NULL; + if (token->is_op(OPERATOR_RSQUARE)) + this->advance_token(); + else + { + if (!token->is_op(OPERATOR_ELLIPSIS)) + length = this->expression(PRECEDENCE_NORMAL, false, true, NULL); + else if (may_use_ellipsis) + { + // An ellipsis is used in composite literals to represent a + // fixed array of the size of the number of elements. We + // use a length of nil to represent this, and change the + // length when parsing the composite literal. + length = Expression::make_nil(this->location()); + this->advance_token(); + } + else + { + error_at(this->location(), + "use of %<[...]%> outside of array literal"); + length = Expression::make_error(this->location()); + this->advance_token(); + } + if (!this->peek_token()->is_op(OPERATOR_RSQUARE)) + { + error_at(this->location(), "expected %<]%>"); + return Type::make_error_type(); + } + this->advance_token(); + } + + Type* element_type = this->type(); + + return Type::make_array_type(element_type, length); +} + +// MapType = "map" "[" KeyType "]" ValueType . +// KeyType = CompleteType . +// ValueType = CompleteType . + +Type* +Parse::map_type() +{ + source_location location = this->location(); + gcc_assert(this->peek_token()->is_keyword(KEYWORD_MAP)); + if (!this->advance_token()->is_op(OPERATOR_LSQUARE)) + { + error_at(this->location(), "expected %<[%>"); + return Type::make_error_type(); + } + this->advance_token(); + + Type* key_type = this->type(); + + if (!this->peek_token()->is_op(OPERATOR_RSQUARE)) + { + error_at(this->location(), "expected %<]%>"); + return Type::make_error_type(); + } + this->advance_token(); + + Type* value_type = this->type(); + + if (key_type->is_error_type() || value_type->is_error_type()) + return Type::make_error_type(); + + return Type::make_map_type(key_type, value_type, location); +} + +// StructType = "struct" "{" { FieldDecl ";" } "}" . + +Type* +Parse::struct_type() +{ + gcc_assert(this->peek_token()->is_keyword(KEYWORD_STRUCT)); + source_location location = this->location(); + if (!this->advance_token()->is_op(OPERATOR_LCURLY)) + { + source_location token_loc = this->location(); + if (this->peek_token()->is_op(OPERATOR_SEMICOLON) + && this->advance_token()->is_op(OPERATOR_LCURLY)) + error_at(token_loc, "unexpected semicolon or newline before %<{%>"); + else + { + error_at(this->location(), "expected %<{%>"); + return Type::make_error_type(); + } + } + this->advance_token(); + + Struct_field_list* sfl = new Struct_field_list; + while (!this->peek_token()->is_op(OPERATOR_RCURLY)) + { + this->field_decl(sfl); + if (this->peek_token()->is_op(OPERATOR_SEMICOLON)) + this->advance_token(); + else if (!this->peek_token()->is_op(OPERATOR_RCURLY)) + { + error_at(this->location(), "expected %<;%> or %<}%> or newline"); + if (!this->skip_past_error(OPERATOR_RCURLY)) + return Type::make_error_type(); + } + } + this->advance_token(); + + for (Struct_field_list::const_iterator pi = sfl->begin(); + pi != sfl->end(); + ++pi) + { + if (pi->type()->is_error_type()) + return pi->type(); + for (Struct_field_list::const_iterator pj = pi + 1; + pj != sfl->end(); + ++pj) + { + if (pi->field_name() == pj->field_name() + && !Gogo::is_sink_name(pi->field_name())) + error_at(pi->location(), "duplicate field name %<%s%>", + Gogo::message_name(pi->field_name()).c_str()); + } + } + + return Type::make_struct_type(sfl, location); +} + +// FieldDecl = (IdentifierList CompleteType | TypeName) [ Tag ] . +// Tag = string_lit . + +void +Parse::field_decl(Struct_field_list* sfl) +{ + const Token* token = this->peek_token(); + source_location location = token->location(); + bool is_anonymous; + bool is_anonymous_pointer; + if (token->is_op(OPERATOR_MULT)) + { + is_anonymous = true; + is_anonymous_pointer = true; + } + else if (token->is_identifier()) + { + std::string id = token->identifier(); + bool is_id_exported = token->is_identifier_exported(); + source_location id_location = token->location(); + token = this->advance_token(); + is_anonymous = (token->is_op(OPERATOR_SEMICOLON) + || token->is_op(OPERATOR_RCURLY) + || token->is_op(OPERATOR_DOT) + || token->is_string()); + is_anonymous_pointer = false; + this->unget_token(Token::make_identifier_token(id, is_id_exported, + id_location)); + } + else + { + error_at(this->location(), "expected field name"); + while (!token->is_op(OPERATOR_SEMICOLON) + && !token->is_op(OPERATOR_RCURLY) + && !token->is_eof()) + token = this->advance_token(); + return; + } + + if (is_anonymous) + { + if (is_anonymous_pointer) + { + this->advance_token(); + if (!this->peek_token()->is_identifier()) + { + error_at(this->location(), "expected field name"); + while (!token->is_op(OPERATOR_SEMICOLON) + && !token->is_op(OPERATOR_RCURLY) + && !token->is_eof()) + token = this->advance_token(); + return; + } + } + Type* type = this->type_name(true); + + std::string tag; + if (this->peek_token()->is_string()) + { + tag = this->peek_token()->string_value(); + this->advance_token(); + } + + if (!type->is_error_type()) + { + if (is_anonymous_pointer) + type = Type::make_pointer_type(type); + sfl->push_back(Struct_field(Typed_identifier("", type, location))); + if (!tag.empty()) + sfl->back().set_tag(tag); + } + } + else + { + Typed_identifier_list til; + while (true) + { + token = this->peek_token(); + if (!token->is_identifier()) + { + error_at(this->location(), "expected identifier"); + return; + } + std::string name = + this->gogo_->pack_hidden_name(token->identifier(), + token->is_identifier_exported()); + til.push_back(Typed_identifier(name, NULL, token->location())); + if (!this->advance_token()->is_op(OPERATOR_COMMA)) + break; + this->advance_token(); + } + + Type* type = this->type(); + + std::string tag; + if (this->peek_token()->is_string()) + { + tag = this->peek_token()->string_value(); + this->advance_token(); + } + + for (Typed_identifier_list::iterator p = til.begin(); + p != til.end(); + ++p) + { + p->set_type(type); + sfl->push_back(Struct_field(*p)); + if (!tag.empty()) + sfl->back().set_tag(tag); + } + } +} + +// PointerType = "*" Type . + +Type* +Parse::pointer_type() +{ + gcc_assert(this->peek_token()->is_op(OPERATOR_MULT)); + this->advance_token(); + Type* type = this->type(); + if (type->is_error_type()) + return type; + return Type::make_pointer_type(type); +} + +// ChannelType = Channel | SendChannel | RecvChannel . +// Channel = "chan" ElementType . +// SendChannel = "chan" "<-" ElementType . +// RecvChannel = "<-" "chan" ElementType . + +Type* +Parse::channel_type() +{ + const Token* token = this->peek_token(); + bool send = true; + bool receive = true; + if (token->is_op(OPERATOR_CHANOP)) + { + if (!this->advance_token()->is_keyword(KEYWORD_CHAN)) + { + error_at(this->location(), "expected %<chan%>"); + return Type::make_error_type(); + } + send = false; + this->advance_token(); + } + else + { + gcc_assert(token->is_keyword(KEYWORD_CHAN)); + if (this->advance_token()->is_op(OPERATOR_CHANOP)) + { + receive = false; + this->advance_token(); + } + } + Type* element_type = this->type(); + return Type::make_channel_type(send, receive, element_type); +} + +// Signature = Parameters [ Result ] . + +// RECEIVER is the receiver if there is one, or NULL. LOCATION is the +// location of the start of the type. + +Function_type* +Parse::signature(Typed_identifier* receiver, source_location location) +{ + bool is_varargs = false; + Typed_identifier_list* params = this->parameters(&is_varargs); + + Typed_identifier_list* result = NULL; + if (this->peek_token()->is_op(OPERATOR_LPAREN) + || this->type_may_start_here()) + result = this->result(); + + Function_type* ret = Type::make_function_type(receiver, params, result, + location); + if (is_varargs) + ret->set_is_varargs(); + return ret; +} + +// Parameters = "(" [ ParameterList [ "," ] ] ")" . + +Typed_identifier_list* +Parse::parameters(bool* is_varargs) +{ + if (!this->peek_token()->is_op(OPERATOR_LPAREN)) + { + error_at(this->location(), "expected %<(%>"); + return NULL; + } + + Typed_identifier_list* params = NULL; + + const Token* token = this->advance_token(); + if (!token->is_op(OPERATOR_RPAREN)) + { + params = this->parameter_list(is_varargs); + token = this->peek_token(); + } + + // The optional trailing comma is picked up in parameter_list. + + if (!token->is_op(OPERATOR_RPAREN)) + error_at(this->location(), "expected %<)%>"); + else + this->advance_token(); + + return params; +} + +// ParameterList = ParameterDecl { "," ParameterDecl } . + +// This sets *IS_VARARGS if the list ends with an ellipsis. +// IS_VARARGS will be NULL if varargs are not permitted. + +// We pick up an optional trailing comma. + +Typed_identifier_list* +Parse::parameter_list(bool* is_varargs) +{ + source_location location = this->location(); + Typed_identifier_list* ret = new Typed_identifier_list(); + + // If we see an identifier and then a comma, then we don't know + // whether we are looking at a list of identifiers followed by a + // type, or a list of types given by name. We have to do an + // arbitrary lookahead to figure it out. + + bool parameters_have_names; + const Token* token = this->peek_token(); + if (!token->is_identifier()) + { + // This must be a type which starts with something like '*'. + parameters_have_names = false; + } + else + { + std::string name = token->identifier(); + bool is_exported = token->is_identifier_exported(); + source_location location = token->location(); + token = this->advance_token(); + if (!token->is_op(OPERATOR_COMMA)) + { + if (token->is_op(OPERATOR_DOT)) + { + // This is a qualified identifier, which must turn out + // to be a type. + parameters_have_names = false; + } + else if (token->is_op(OPERATOR_RPAREN)) + { + // A single identifier followed by a parenthesis must be + // a type name. + parameters_have_names = false; + } + else + { + // An identifier followed by something other than a + // comma or a dot or a right parenthesis must be a + // parameter name followed by a type. + parameters_have_names = true; + } + + this->unget_token(Token::make_identifier_token(name, is_exported, + location)); + } + else + { + // An identifier followed by a comma may be the first in a + // list of parameter names followed by a type, or it may be + // the first in a list of types without parameter names. To + // find out we gather as many identifiers separated by + // commas as we can. + std::string id_name = this->gogo_->pack_hidden_name(name, + is_exported); + ret->push_back(Typed_identifier(id_name, NULL, location)); + bool just_saw_comma = true; + while (this->advance_token()->is_identifier()) + { + name = this->peek_token()->identifier(); + is_exported = this->peek_token()->is_identifier_exported(); + location = this->peek_token()->location(); + id_name = this->gogo_->pack_hidden_name(name, is_exported); + ret->push_back(Typed_identifier(id_name, NULL, location)); + if (!this->advance_token()->is_op(OPERATOR_COMMA)) + { + just_saw_comma = false; + break; + } + } + + if (just_saw_comma) + { + // We saw ID1 "," ID2 "," followed by something which + // was not an identifier. We must be seeing the start + // of a type, and ID1 and ID2 must be types, and the + // parameters don't have names. + parameters_have_names = false; + } + else if (this->peek_token()->is_op(OPERATOR_RPAREN)) + { + // We saw ID1 "," ID2 ")". ID1 and ID2 must be types, + // and the parameters don't have names. + parameters_have_names = false; + } + else if (this->peek_token()->is_op(OPERATOR_DOT)) + { + // We saw ID1 "," ID2 ".". ID2 must be a package name, + // ID1 must be a type, and the parameters don't have + // names. + parameters_have_names = false; + this->unget_token(Token::make_identifier_token(name, is_exported, + location)); + ret->pop_back(); + just_saw_comma = true; + } + else + { + // We saw ID1 "," ID2 followed by something other than + // ",", ".", or ")". We must be looking at the start of + // a type, and ID1 and ID2 must be parameter names. + parameters_have_names = true; + } + + if (parameters_have_names) + { + gcc_assert(!just_saw_comma); + // We have just seen ID1, ID2 xxx. + Type* type; + if (!this->peek_token()->is_op(OPERATOR_ELLIPSIS)) + type = this->type(); + else + { + error_at(this->location(), "%<...%> only permits one name"); + this->advance_token(); + type = this->type(); + } + for (size_t i = 0; i < ret->size(); ++i) + ret->set_type(i, type); + if (!this->peek_token()->is_op(OPERATOR_COMMA)) + return ret; + if (this->advance_token()->is_op(OPERATOR_RPAREN)) + return ret; + } + else + { + Typed_identifier_list* tret = new Typed_identifier_list(); + for (Typed_identifier_list::const_iterator p = ret->begin(); + p != ret->end(); + ++p) + { + Named_object* no = this->gogo_->lookup(p->name(), NULL); + Type* type; + if (no == NULL) + no = this->gogo_->add_unknown_name(p->name(), + p->location()); + + if (no->is_type()) + type = no->type_value(); + else if (no->is_unknown() || no->is_type_declaration()) + type = Type::make_forward_declaration(no); + else + { + error_at(p->location(), "expected %<%s%> to be a type", + Gogo::message_name(p->name()).c_str()); + type = Type::make_error_type(); + } + tret->push_back(Typed_identifier("", type, p->location())); + } + delete ret; + ret = tret; + if (!just_saw_comma + || this->peek_token()->is_op(OPERATOR_RPAREN)) + return ret; + } + } + } + + bool mix_error = false; + this->parameter_decl(parameters_have_names, ret, is_varargs, &mix_error); + while (this->peek_token()->is_op(OPERATOR_COMMA)) + { + if (is_varargs != NULL && *is_varargs) + error_at(this->location(), "%<...%> must be last parameter"); + if (this->advance_token()->is_op(OPERATOR_RPAREN)) + break; + this->parameter_decl(parameters_have_names, ret, is_varargs, &mix_error); + } + if (mix_error) + error_at(location, "invalid named/anonymous mix"); + return ret; +} + +// ParameterDecl = [ IdentifierList ] [ "..." ] Type . + +void +Parse::parameter_decl(bool parameters_have_names, + Typed_identifier_list* til, + bool* is_varargs, + bool* mix_error) +{ + if (!parameters_have_names) + { + Type* type; + source_location location = this->location(); + if (!this->peek_token()->is_identifier()) + { + if (!this->peek_token()->is_op(OPERATOR_ELLIPSIS)) + type = this->type(); + else + { + if (is_varargs == NULL) + error_at(this->location(), "invalid use of %<...%>"); + else + *is_varargs = true; + this->advance_token(); + if (is_varargs == NULL + && this->peek_token()->is_op(OPERATOR_RPAREN)) + type = Type::make_error_type(); + else + { + Type* element_type = this->type(); + type = Type::make_array_type(element_type, NULL); + } + } + } + else + { + type = this->type_name(false); + if (type->is_error_type() + || (!this->peek_token()->is_op(OPERATOR_COMMA) + && !this->peek_token()->is_op(OPERATOR_RPAREN))) + { + *mix_error = true; + while (!this->peek_token()->is_op(OPERATOR_COMMA) + && !this->peek_token()->is_op(OPERATOR_RPAREN)) + this->advance_token(); + } + } + if (!type->is_error_type()) + til->push_back(Typed_identifier("", type, location)); + } + else + { + size_t orig_count = til->size(); + if (this->peek_token()->is_identifier()) + this->identifier_list(til); + else + *mix_error = true; + size_t new_count = til->size(); + + Type* type; + if (!this->peek_token()->is_op(OPERATOR_ELLIPSIS)) + type = this->type(); + else + { + if (is_varargs == NULL) + error_at(this->location(), "invalid use of %<...%>"); + else if (new_count > orig_count + 1) + error_at(this->location(), "%<...%> only permits one name"); + else + *is_varargs = true; + this->advance_token(); + Type* element_type = this->type(); + type = Type::make_array_type(element_type, NULL); + } + for (size_t i = orig_count; i < new_count; ++i) + til->set_type(i, type); + } +} + +// Result = Parameters | Type . + +Typed_identifier_list* +Parse::result() +{ + if (this->peek_token()->is_op(OPERATOR_LPAREN)) + return this->parameters(NULL); + else + { + source_location location = this->location(); + Typed_identifier_list* til = new Typed_identifier_list(); + Type* type = this->type(); + til->push_back(Typed_identifier("", type, location)); + return til; + } +} + +// Block = "{" [ StatementList ] "}" . + +// Returns the location of the closing brace. + +source_location +Parse::block() +{ + if (!this->peek_token()->is_op(OPERATOR_LCURLY)) + { + source_location loc = this->location(); + if (this->peek_token()->is_op(OPERATOR_SEMICOLON) + && this->advance_token()->is_op(OPERATOR_LCURLY)) + error_at(loc, "unexpected semicolon or newline before %<{%>"); + else + { + error_at(this->location(), "expected %<{%>"); + return UNKNOWN_LOCATION; + } + } + + const Token* token = this->advance_token(); + + if (!token->is_op(OPERATOR_RCURLY)) + { + this->statement_list(); + token = this->peek_token(); + if (!token->is_op(OPERATOR_RCURLY)) + { + if (!token->is_eof() || !saw_errors()) + error_at(this->location(), "expected %<}%>"); + + // Skip ahead to the end of the block, in hopes of avoiding + // lots of meaningless errors. + source_location ret = token->location(); + int nest = 0; + while (!token->is_eof()) + { + if (token->is_op(OPERATOR_LCURLY)) + ++nest; + else if (token->is_op(OPERATOR_RCURLY)) + { + --nest; + if (nest < 0) + { + this->advance_token(); + break; + } + } + token = this->advance_token(); + ret = token->location(); + } + return ret; + } + } + + source_location ret = token->location(); + this->advance_token(); + return ret; +} + +// InterfaceType = "interface" "{" [ MethodSpecList ] "}" . +// MethodSpecList = MethodSpec { ";" MethodSpec } [ ";" ] . + +Type* +Parse::interface_type() +{ + gcc_assert(this->peek_token()->is_keyword(KEYWORD_INTERFACE)); + source_location location = this->location(); + + if (!this->advance_token()->is_op(OPERATOR_LCURLY)) + { + source_location token_loc = this->location(); + if (this->peek_token()->is_op(OPERATOR_SEMICOLON) + && this->advance_token()->is_op(OPERATOR_LCURLY)) + error_at(token_loc, "unexpected semicolon or newline before %<{%>"); + else + { + error_at(this->location(), "expected %<{%>"); + return Type::make_error_type(); + } + } + this->advance_token(); + + Typed_identifier_list* methods = new Typed_identifier_list(); + if (!this->peek_token()->is_op(OPERATOR_RCURLY)) + { + this->method_spec(methods); + while (this->peek_token()->is_op(OPERATOR_SEMICOLON)) + { + if (this->advance_token()->is_op(OPERATOR_RCURLY)) + break; + this->method_spec(methods); + } + if (!this->peek_token()->is_op(OPERATOR_RCURLY)) + { + error_at(this->location(), "expected %<}%>"); + while (!this->advance_token()->is_op(OPERATOR_RCURLY)) + { + if (this->peek_token()->is_eof()) + return Type::make_error_type(); + } + } + } + this->advance_token(); + + if (methods->empty()) + { + delete methods; + methods = NULL; + } + + Interface_type* ret = Type::make_interface_type(methods, location); + this->gogo_->record_interface_type(ret); + return ret; +} + +// MethodSpec = MethodName Signature | InterfaceTypeName . +// MethodName = identifier . +// InterfaceTypeName = TypeName . + +bool +Parse::method_spec(Typed_identifier_list* methods) +{ + const Token* token = this->peek_token(); + if (!token->is_identifier()) + { + error_at(this->location(), "expected identifier"); + return false; + } + + std::string name = token->identifier(); + bool is_exported = token->is_identifier_exported(); + source_location location = token->location(); + + if (this->advance_token()->is_op(OPERATOR_LPAREN)) + { + // This is a MethodName. + name = this->gogo_->pack_hidden_name(name, is_exported); + Function_type* type = this->signature(NULL, location); + methods->push_back(Typed_identifier(name, type, location)); + } + else + { + this->unget_token(Token::make_identifier_token(name, is_exported, + location)); + Type* type = this->type_name(false); + if (type->is_error_type() + || (!this->peek_token()->is_op(OPERATOR_SEMICOLON) + && !this->peek_token()->is_op(OPERATOR_RCURLY))) + { + if (this->peek_token()->is_op(OPERATOR_COMMA)) + error_at(this->location(), + "name list not allowed in interface type"); + else + error_at(location, "expected signature or type name"); + token = this->peek_token(); + while (!token->is_eof() + && !token->is_op(OPERATOR_SEMICOLON) + && !token->is_op(OPERATOR_RCURLY)) + token = this->advance_token(); + return false; + } + // This must be an interface type, but we can't check that now. + // We check it and pull out the methods in + // Interface_type::do_verify. + methods->push_back(Typed_identifier("", type, location)); + } + + return false; +} + +// Declaration = ConstDecl | TypeDecl | VarDecl | FunctionDecl | MethodDecl . + +void +Parse::declaration() +{ + const Token* token = this->peek_token(); + if (token->is_keyword(KEYWORD_CONST)) + this->const_decl(); + else if (token->is_keyword(KEYWORD_TYPE)) + this->type_decl(); + else if (token->is_keyword(KEYWORD_VAR)) + this->var_decl(); + else if (token->is_keyword(KEYWORD_FUNC)) + this->function_decl(); + else + { + error_at(this->location(), "expected declaration"); + this->advance_token(); + } +} + +bool +Parse::declaration_may_start_here() +{ + const Token* token = this->peek_token(); + return (token->is_keyword(KEYWORD_CONST) + || token->is_keyword(KEYWORD_TYPE) + || token->is_keyword(KEYWORD_VAR) + || token->is_keyword(KEYWORD_FUNC)); +} + +// Decl<P> = P | "(" [ List<P> ] ")" . + +void +Parse::decl(void (Parse::*pfn)(void*), void* varg) +{ + if (!this->peek_token()->is_op(OPERATOR_LPAREN)) + (this->*pfn)(varg); + else + { + if (!this->advance_token()->is_op(OPERATOR_RPAREN)) + { + this->list(pfn, varg, true); + if (!this->peek_token()->is_op(OPERATOR_RPAREN)) + { + error_at(this->location(), "missing %<)%>"); + while (!this->advance_token()->is_op(OPERATOR_RPAREN)) + { + if (this->peek_token()->is_eof()) + return; + } + } + } + this->advance_token(); + } +} + +// List<P> = P { ";" P } [ ";" ] . + +// In order to pick up the trailing semicolon we need to know what +// might follow. This is either a '}' or a ')'. + +void +Parse::list(void (Parse::*pfn)(void*), void* varg, bool follow_is_paren) +{ + (this->*pfn)(varg); + Operator follow = follow_is_paren ? OPERATOR_RPAREN : OPERATOR_RCURLY; + while (this->peek_token()->is_op(OPERATOR_SEMICOLON) + || this->peek_token()->is_op(OPERATOR_COMMA)) + { + if (this->peek_token()->is_op(OPERATOR_COMMA)) + error_at(this->location(), "unexpected comma"); + if (this->advance_token()->is_op(follow)) + break; + (this->*pfn)(varg); + } +} + +// ConstDecl = "const" ( ConstSpec | "(" { ConstSpec ";" } ")" ) . + +void +Parse::const_decl() +{ + gcc_assert(this->peek_token()->is_keyword(KEYWORD_CONST)); + this->advance_token(); + this->reset_iota(); + + Type* last_type = NULL; + Expression_list* last_expr_list = NULL; + + if (!this->peek_token()->is_op(OPERATOR_LPAREN)) + this->const_spec(&last_type, &last_expr_list); + else + { + this->advance_token(); + while (!this->peek_token()->is_op(OPERATOR_RPAREN)) + { + this->const_spec(&last_type, &last_expr_list); + if (this->peek_token()->is_op(OPERATOR_SEMICOLON)) + this->advance_token(); + else if (!this->peek_token()->is_op(OPERATOR_RPAREN)) + { + error_at(this->location(), "expected %<;%> or %<)%> or newline"); + if (!this->skip_past_error(OPERATOR_RPAREN)) + return; + } + } + this->advance_token(); + } + + if (last_expr_list != NULL) + delete last_expr_list; +} + +// ConstSpec = IdentifierList [ [ CompleteType ] "=" ExpressionList ] . + +void +Parse::const_spec(Type** last_type, Expression_list** last_expr_list) +{ + Typed_identifier_list til; + this->identifier_list(&til); + + Type* type = NULL; + if (this->type_may_start_here()) + { + type = this->type(); + *last_type = NULL; + *last_expr_list = NULL; + } + + Expression_list *expr_list; + if (!this->peek_token()->is_op(OPERATOR_EQ)) + { + if (*last_expr_list == NULL) + { + error_at(this->location(), "expected %<=%>"); + return; + } + type = *last_type; + expr_list = new Expression_list; + for (Expression_list::const_iterator p = (*last_expr_list)->begin(); + p != (*last_expr_list)->end(); + ++p) + expr_list->push_back((*p)->copy()); + } + else + { + this->advance_token(); + expr_list = this->expression_list(NULL, false); + *last_type = type; + if (*last_expr_list != NULL) + delete *last_expr_list; + *last_expr_list = expr_list; + } + + Expression_list::const_iterator pe = expr_list->begin(); + for (Typed_identifier_list::iterator pi = til.begin(); + pi != til.end(); + ++pi, ++pe) + { + if (pe == expr_list->end()) + { + error_at(this->location(), "not enough initializers"); + return; + } + if (type != NULL) + pi->set_type(type); + + if (!Gogo::is_sink_name(pi->name())) + this->gogo_->add_constant(*pi, *pe, this->iota_value()); + } + if (pe != expr_list->end()) + error_at(this->location(), "too many initializers"); + + this->increment_iota(); + + return; +} + +// TypeDecl = "type" Decl<TypeSpec> . + +void +Parse::type_decl() +{ + gcc_assert(this->peek_token()->is_keyword(KEYWORD_TYPE)); + this->advance_token(); + this->decl(&Parse::type_spec, NULL); +} + +// TypeSpec = identifier Type . + +void +Parse::type_spec(void*) +{ + const Token* token = this->peek_token(); + if (!token->is_identifier()) + { + error_at(this->location(), "expected identifier"); + return; + } + std::string name = token->identifier(); + bool is_exported = token->is_identifier_exported(); + source_location location = token->location(); + token = this->advance_token(); + + // The scope of the type name starts at the point where the + // identifier appears in the source code. We implement this by + // declaring the type before we read the type definition. + Named_object* named_type = NULL; + if (name != "_") + { + name = this->gogo_->pack_hidden_name(name, is_exported); + named_type = this->gogo_->declare_type(name, location); + } + + Type* type; + if (!this->peek_token()->is_op(OPERATOR_SEMICOLON)) + type = this->type(); + else + { + error_at(this->location(), + "unexpected semicolon or newline in type declaration"); + type = Type::make_error_type(); + this->advance_token(); + } + + if (type->is_error_type()) + { + while (!this->peek_token()->is_op(OPERATOR_SEMICOLON) + && !this->peek_token()->is_eof()) + this->advance_token(); + } + + if (name != "_") + { + if (named_type->is_type_declaration()) + { + Type* ftype = type->forwarded(); + if (ftype->forward_declaration_type() != NULL + && (ftype->forward_declaration_type()->named_object() + == named_type)) + { + error_at(location, "invalid recursive type"); + type = Type::make_error_type(); + } + + this->gogo_->define_type(named_type, + Type::make_named_type(named_type, type, + location)); + gcc_assert(named_type->package() == NULL); + } + else + { + // This will probably give a redefinition error. + this->gogo_->add_type(name, type, location); + } + } +} + +// VarDecl = "var" Decl<VarSpec> . + +void +Parse::var_decl() +{ + gcc_assert(this->peek_token()->is_keyword(KEYWORD_VAR)); + this->advance_token(); + this->decl(&Parse::var_spec, NULL); +} + +// VarSpec = IdentifierList +// ( CompleteType [ "=" ExpressionList ] | "=" ExpressionList ) . + +void +Parse::var_spec(void*) +{ + // Get the variable names. + Typed_identifier_list til; + this->identifier_list(&til); + + source_location location = this->location(); + + Type* type = NULL; + Expression_list* init = NULL; + if (!this->peek_token()->is_op(OPERATOR_EQ)) + { + type = this->type(); + if (type->is_error_type()) + { + while (!this->peek_token()->is_op(OPERATOR_EQ) + && !this->peek_token()->is_op(OPERATOR_SEMICOLON) + && !this->peek_token()->is_eof()) + this->advance_token(); + } + if (this->peek_token()->is_op(OPERATOR_EQ)) + { + this->advance_token(); + init = this->expression_list(NULL, false); + } + } + else + { + this->advance_token(); + init = this->expression_list(NULL, false); + } + + this->init_vars(&til, type, init, false, location); + + if (init != NULL) + delete init; +} + +// Create variables. TIL is a list of variable names. If TYPE is not +// NULL, it is the type of all the variables. If INIT is not NULL, it +// is an initializer list for the variables. + +void +Parse::init_vars(const Typed_identifier_list* til, Type* type, + Expression_list* init, bool is_coloneq, + source_location location) +{ + // Check for an initialization which can yield multiple values. + if (init != NULL && init->size() == 1 && til->size() > 1) + { + if (this->init_vars_from_call(til, type, *init->begin(), is_coloneq, + location)) + return; + if (this->init_vars_from_map(til, type, *init->begin(), is_coloneq, + location)) + return; + if (this->init_vars_from_receive(til, type, *init->begin(), is_coloneq, + location)) + return; + if (this->init_vars_from_type_guard(til, type, *init->begin(), + is_coloneq, location)) + return; + } + + if (init != NULL && init->size() != til->size()) + { + if (init->empty() || !init->front()->is_error_expression()) + error_at(location, "wrong number of initializations"); + init = NULL; + if (type == NULL) + type = Type::make_error_type(); + } + + // Note that INIT was already parsed with the old name bindings, so + // we don't have to worry that it will accidentally refer to the + // newly declared variables. + + Expression_list::const_iterator pexpr; + if (init != NULL) + pexpr = init->begin(); + bool any_new = false; + for (Typed_identifier_list::const_iterator p = til->begin(); + p != til->end(); + ++p) + { + if (init != NULL) + gcc_assert(pexpr != init->end()); + this->init_var(*p, type, init == NULL ? NULL : *pexpr, is_coloneq, + false, &any_new); + if (init != NULL) + ++pexpr; + } + if (init != NULL) + gcc_assert(pexpr == init->end()); + if (is_coloneq && !any_new) + error_at(location, "variables redeclared but no variable is new"); +} + +// See if we need to initialize a list of variables from a function +// call. This returns true if we have set up the variables and the +// initialization. + +bool +Parse::init_vars_from_call(const Typed_identifier_list* vars, Type* type, + Expression* expr, bool is_coloneq, + source_location location) +{ + Call_expression* call = expr->call_expression(); + if (call == NULL) + return false; + + // This is a function call. We can't check here whether it returns + // the right number of values, but it might. Declare the variables, + // and then assign the results of the call to them. + + unsigned int index = 0; + bool any_new = false; + for (Typed_identifier_list::const_iterator pv = vars->begin(); + pv != vars->end(); + ++pv, ++index) + { + Expression* init = Expression::make_call_result(call, index); + this->init_var(*pv, type, init, is_coloneq, false, &any_new); + } + + if (is_coloneq && !any_new) + error_at(location, "variables redeclared but no variable is new"); + + return true; +} + +// See if we need to initialize a pair of values from a map index +// expression. This returns true if we have set up the variables and +// the initialization. + +bool +Parse::init_vars_from_map(const Typed_identifier_list* vars, Type* type, + Expression* expr, bool is_coloneq, + source_location location) +{ + Index_expression* index = expr->index_expression(); + if (index == NULL) + return false; + if (vars->size() != 2) + return false; + + // This is an index which is being assigned to two variables. It + // must be a map index. Declare the variables, and then assign the + // results of the map index. + bool any_new = false; + Typed_identifier_list::const_iterator p = vars->begin(); + Expression* init = type == NULL ? index : NULL; + Named_object* val_no = this->init_var(*p, type, init, is_coloneq, + type == NULL, &any_new); + if (type == NULL && any_new && val_no->is_variable()) + val_no->var_value()->set_type_from_init_tuple(); + Expression* val_var = Expression::make_var_reference(val_no, location); + + ++p; + Type* var_type = type; + if (var_type == NULL) + var_type = Type::lookup_bool_type(); + Named_object* no = this->init_var(*p, var_type, NULL, is_coloneq, false, + &any_new); + Expression* present_var = Expression::make_var_reference(no, location); + + if (is_coloneq && !any_new) + error_at(location, "variables redeclared but no variable is new"); + + Statement* s = Statement::make_tuple_map_assignment(val_var, present_var, + index, location); + + if (!this->gogo_->in_global_scope()) + this->gogo_->add_statement(s); + else + val_no->var_value()->add_preinit_statement(s); + + return true; +} + +// See if we need to initialize a pair of values from a receive +// expression. This returns true if we have set up the variables and +// the initialization. + +bool +Parse::init_vars_from_receive(const Typed_identifier_list* vars, Type* type, + Expression* expr, bool is_coloneq, + source_location location) +{ + Receive_expression* receive = expr->receive_expression(); + if (receive == NULL) + return false; + if (vars->size() != 2) + return false; + + // This is a receive expression which is being assigned to two + // variables. Declare the variables, and then assign the results of + // the receive. + bool any_new = false; + Typed_identifier_list::const_iterator p = vars->begin(); + Expression* init = type == NULL ? receive : NULL; + Named_object* val_no = this->init_var(*p, type, init, is_coloneq, + type == NULL, &any_new); + if (type == NULL && any_new && val_no->is_variable()) + val_no->var_value()->set_type_from_init_tuple(); + Expression* val_var = Expression::make_var_reference(val_no, location); + + ++p; + Type* var_type = type; + if (var_type == NULL) + var_type = Type::lookup_bool_type(); + Named_object* no = this->init_var(*p, var_type, NULL, is_coloneq, false, + &any_new); + Expression* received_var = Expression::make_var_reference(no, location); + + if (is_coloneq && !any_new) + error_at(location, "variables redeclared but no variable is new"); + + Statement* s = Statement::make_tuple_receive_assignment(val_var, + received_var, + receive->channel(), + location); + + if (!this->gogo_->in_global_scope()) + this->gogo_->add_statement(s); + else + val_no->var_value()->add_preinit_statement(s); + + return true; +} + +// See if we need to initialize a pair of values from a type guard +// expression. This returns true if we have set up the variables and +// the initialization. + +bool +Parse::init_vars_from_type_guard(const Typed_identifier_list* vars, + Type* type, Expression* expr, + bool is_coloneq, source_location location) +{ + Type_guard_expression* type_guard = expr->type_guard_expression(); + if (type_guard == NULL) + return false; + if (vars->size() != 2) + return false; + + // This is a type guard expression which is being assigned to two + // variables. Declare the variables, and then assign the results of + // the type guard. + bool any_new = false; + Typed_identifier_list::const_iterator p = vars->begin(); + Type* var_type = type; + if (var_type == NULL) + var_type = type_guard->type(); + Named_object* val_no = this->init_var(*p, var_type, NULL, is_coloneq, false, + &any_new); + Expression* val_var = Expression::make_var_reference(val_no, location); + + ++p; + var_type = type; + if (var_type == NULL) + var_type = Type::lookup_bool_type(); + Named_object* no = this->init_var(*p, var_type, NULL, is_coloneq, false, + &any_new); + Expression* ok_var = Expression::make_var_reference(no, location); + + Expression* texpr = type_guard->expr(); + Type* t = type_guard->type(); + Statement* s = Statement::make_tuple_type_guard_assignment(val_var, ok_var, + texpr, t, + location); + + if (is_coloneq && !any_new) + error_at(location, "variables redeclared but no variable is new"); + + if (!this->gogo_->in_global_scope()) + this->gogo_->add_statement(s); + else + val_no->var_value()->add_preinit_statement(s); + + return true; +} + +// Create a single variable. If IS_COLONEQ is true, we permit +// redeclarations in the same block, and we set *IS_NEW when we find a +// new variable which is not a redeclaration. + +Named_object* +Parse::init_var(const Typed_identifier& tid, Type* type, Expression* init, + bool is_coloneq, bool type_from_init, bool* is_new) +{ + source_location location = tid.location(); + + if (Gogo::is_sink_name(tid.name())) + { + if (!type_from_init && init != NULL) + { + if (!this->gogo_->in_global_scope()) + this->gogo_->add_statement(Statement::make_statement(init)); + else + { + // Create a dummy global variable to force the + // initializer to be run in the right place. + Variable* var = new Variable(type, init, true, false, false, + location); + static int count; + char buf[30]; + snprintf(buf, sizeof buf, "_.%d", count); + ++count; + return this->gogo_->add_variable(buf, var); + } + } + return this->gogo_->add_sink(); + } + + if (is_coloneq) + { + Named_object* no = this->gogo_->lookup_in_block(tid.name()); + if (no != NULL + && (no->is_variable() || no->is_result_variable())) + { + // INIT may be NULL even when IS_COLONEQ is true for cases + // like v, ok := x.(int). + if (!type_from_init && init != NULL) + { + Expression *v = Expression::make_var_reference(no, location); + Statement *s = Statement::make_assignment(v, init, location); + this->gogo_->add_statement(s); + } + return no; + } + } + *is_new = true; + Variable* var = new Variable(type, init, this->gogo_->in_global_scope(), + false, false, location); + return this->gogo_->add_variable(tid.name(), var); +} + +// SimpleVarDecl = identifier ":=" Expression . + +// We've already seen the identifier. + +// FIXME: We also have to implement +// IdentifierList ":=" ExpressionList +// In order to support both "a, b := 1, 0" and "a, b = 1, 0" we accept +// tuple assignments here as well. + +// If P_RANGE_CLAUSE is not NULL, then this will recognize a +// RangeClause. + +// If P_TYPE_SWITCH is not NULL, this will recognize a type switch +// guard (var := expr.("type") using the literal keyword "type"). + +void +Parse::simple_var_decl_or_assignment(const std::string& name, + source_location location, + Range_clause* p_range_clause, + Type_switch* p_type_switch) +{ + Typed_identifier_list til; + til.push_back(Typed_identifier(name, NULL, location)); + + // We've seen one identifier. If we see a comma now, this could be + // "a, *p = 1, 2". + if (this->peek_token()->is_op(OPERATOR_COMMA)) + { + gcc_assert(p_type_switch == NULL); + while (true) + { + const Token* token = this->advance_token(); + if (!token->is_identifier()) + break; + + std::string id = token->identifier(); + bool is_id_exported = token->is_identifier_exported(); + source_location id_location = token->location(); + + token = this->advance_token(); + if (!token->is_op(OPERATOR_COMMA)) + { + if (token->is_op(OPERATOR_COLONEQ)) + { + id = this->gogo_->pack_hidden_name(id, is_id_exported); + til.push_back(Typed_identifier(id, NULL, location)); + } + else + this->unget_token(Token::make_identifier_token(id, + is_id_exported, + id_location)); + break; + } + + id = this->gogo_->pack_hidden_name(id, is_id_exported); + til.push_back(Typed_identifier(id, NULL, location)); + } + + // We have a comma separated list of identifiers in TIL. If the + // next token is COLONEQ, then this is a simple var decl, and we + // have the complete list of identifiers. If the next token is + // not COLONEQ, then the only valid parse is a tuple assignment. + // The list of identifiers we have so far is really a list of + // expressions. There are more expressions following. + + if (!this->peek_token()->is_op(OPERATOR_COLONEQ)) + { + Expression_list* exprs = new Expression_list; + for (Typed_identifier_list::const_iterator p = til.begin(); + p != til.end(); + ++p) + exprs->push_back(this->id_to_expression(p->name(), + p->location())); + + Expression_list* more_exprs = this->expression_list(NULL, true); + for (Expression_list::const_iterator p = more_exprs->begin(); + p != more_exprs->end(); + ++p) + exprs->push_back(*p); + delete more_exprs; + + this->tuple_assignment(exprs, p_range_clause); + return; + } + } + + gcc_assert(this->peek_token()->is_op(OPERATOR_COLONEQ)); + const Token* token = this->advance_token(); + + if (p_range_clause != NULL && token->is_keyword(KEYWORD_RANGE)) + { + this->range_clause_decl(&til, p_range_clause); + return; + } + + Expression_list* init; + if (p_type_switch == NULL) + init = this->expression_list(NULL, false); + else + { + bool is_type_switch = false; + Expression* expr = this->expression(PRECEDENCE_NORMAL, false, true, + &is_type_switch); + if (is_type_switch) + { + p_type_switch->found = true; + p_type_switch->name = name; + p_type_switch->location = location; + p_type_switch->expr = expr; + return; + } + + if (!this->peek_token()->is_op(OPERATOR_COMMA)) + { + init = new Expression_list(); + init->push_back(expr); + } + else + { + this->advance_token(); + init = this->expression_list(expr, false); + } + } + + this->init_vars(&til, NULL, init, true, location); +} + +// FunctionDecl = "func" identifier Signature [ Block ] . +// MethodDecl = "func" Receiver identifier Signature [ Block ] . + +// gcc extension: +// FunctionDecl = "func" identifier Signature +// __asm__ "(" string_lit ")" . +// This extension means a function whose real name is the identifier +// inside the asm. + +void +Parse::function_decl() +{ + gcc_assert(this->peek_token()->is_keyword(KEYWORD_FUNC)); + source_location location = this->location(); + const Token* token = this->advance_token(); + + Typed_identifier* rec = NULL; + if (token->is_op(OPERATOR_LPAREN)) + { + rec = this->receiver(); + token = this->peek_token(); + } + + if (!token->is_identifier()) + { + error_at(this->location(), "expected function name"); + return; + } + + std::string name = + this->gogo_->pack_hidden_name(token->identifier(), + token->is_identifier_exported()); + + this->advance_token(); + + Function_type* fntype = this->signature(rec, this->location()); + + Named_object* named_object = NULL; + + if (this->peek_token()->is_keyword(KEYWORD_ASM)) + { + if (!this->advance_token()->is_op(OPERATOR_LPAREN)) + { + error_at(this->location(), "expected %<(%>"); + return; + } + token = this->advance_token(); + if (!token->is_string()) + { + error_at(this->location(), "expected string"); + return; + } + std::string asm_name = token->string_value(); + if (!this->advance_token()->is_op(OPERATOR_RPAREN)) + { + error_at(this->location(), "expected %<)%>"); + return; + } + this->advance_token(); + named_object = this->gogo_->declare_function(name, fntype, location); + if (named_object->is_function_declaration()) + named_object->func_declaration_value()->set_asm_name(asm_name); + } + + // Check for the easy error of a newline before the opening brace. + if (this->peek_token()->is_op(OPERATOR_SEMICOLON)) + { + source_location semi_loc = this->location(); + if (this->advance_token()->is_op(OPERATOR_LCURLY)) + error_at(this->location(), + "unexpected semicolon or newline before %<{%>"); + else + this->unget_token(Token::make_operator_token(OPERATOR_SEMICOLON, + semi_loc)); + } + + if (!this->peek_token()->is_op(OPERATOR_LCURLY)) + { + if (named_object == NULL) + named_object = this->gogo_->declare_function(name, fntype, location); + } + else + { + this->gogo_->start_function(name, fntype, true, location); + source_location end_loc = this->block(); + this->gogo_->finish_function(end_loc); + } +} + +// Receiver = "(" [ identifier ] [ "*" ] BaseTypeName ")" . +// BaseTypeName = identifier . + +Typed_identifier* +Parse::receiver() +{ + gcc_assert(this->peek_token()->is_op(OPERATOR_LPAREN)); + + std::string name; + const Token* token = this->advance_token(); + source_location location = token->location(); + if (!token->is_op(OPERATOR_MULT)) + { + if (!token->is_identifier()) + { + error_at(this->location(), "method has no receiver"); + while (!token->is_eof() && !token->is_op(OPERATOR_RPAREN)) + token = this->advance_token(); + if (!token->is_eof()) + this->advance_token(); + return NULL; + } + name = token->identifier(); + bool is_exported = token->is_identifier_exported(); + token = this->advance_token(); + if (!token->is_op(OPERATOR_DOT) && !token->is_op(OPERATOR_RPAREN)) + { + // An identifier followed by something other than a dot or a + // right parenthesis must be a receiver name followed by a + // type. + name = this->gogo_->pack_hidden_name(name, is_exported); + } + else + { + // This must be a type name. + this->unget_token(Token::make_identifier_token(name, is_exported, + location)); + token = this->peek_token(); + name.clear(); + } + } + + // Here the receiver name is in NAME (it is empty if the receiver is + // unnamed) and TOKEN is the first token in the type. + + bool is_pointer = false; + if (token->is_op(OPERATOR_MULT)) + { + is_pointer = true; + token = this->advance_token(); + } + + if (!token->is_identifier()) + { + error_at(this->location(), "expected receiver name or type"); + int c = token->is_op(OPERATOR_LPAREN) ? 1 : 0; + while (!token->is_eof()) + { + token = this->advance_token(); + if (token->is_op(OPERATOR_LPAREN)) + ++c; + else if (token->is_op(OPERATOR_RPAREN)) + { + if (c == 0) + break; + --c; + } + } + if (!token->is_eof()) + this->advance_token(); + return NULL; + } + + Type* type = this->type_name(true); + + if (is_pointer && !type->is_error_type()) + type = Type::make_pointer_type(type); + + if (this->peek_token()->is_op(OPERATOR_RPAREN)) + this->advance_token(); + else + { + if (this->peek_token()->is_op(OPERATOR_COMMA)) + error_at(this->location(), "method has multiple receivers"); + else + error_at(this->location(), "expected %<)%>"); + while (!token->is_eof() && !token->is_op(OPERATOR_RPAREN)) + token = this->advance_token(); + if (!token->is_eof()) + this->advance_token(); + return NULL; + } + + return new Typed_identifier(name, type, location); +} + +// Operand = Literal | QualifiedIdent | MethodExpr | "(" Expression ")" . +// Literal = BasicLit | CompositeLit | FunctionLit . +// BasicLit = int_lit | float_lit | imaginary_lit | char_lit | string_lit . + +// If MAY_BE_SINK is true, this operand may be "_". + +Expression* +Parse::operand(bool may_be_sink) +{ + const Token* token = this->peek_token(); + Expression* ret; + switch (token->classification()) + { + case Token::TOKEN_IDENTIFIER: + { + source_location location = token->location(); + std::string id = token->identifier(); + bool is_exported = token->is_identifier_exported(); + std::string packed = this->gogo_->pack_hidden_name(id, is_exported); + + Named_object* in_function; + Named_object* named_object = this->gogo_->lookup(packed, &in_function); + + Package* package = NULL; + if (named_object != NULL && named_object->is_package()) + { + if (!this->advance_token()->is_op(OPERATOR_DOT) + || !this->advance_token()->is_identifier()) + { + error_at(location, "unexpected reference to package"); + return Expression::make_error(location); + } + package = named_object->package_value(); + package->set_used(); + id = this->peek_token()->identifier(); + is_exported = this->peek_token()->is_identifier_exported(); + packed = this->gogo_->pack_hidden_name(id, is_exported); + named_object = package->lookup(packed); + location = this->location(); + gcc_assert(in_function == NULL); + } + + this->advance_token(); + + if (named_object != NULL + && named_object->is_type() + && !named_object->type_value()->is_visible()) + { + gcc_assert(package != NULL); + error_at(location, "invalid reference to hidden type %<%s.%s%>", + Gogo::message_name(package->name()).c_str(), + Gogo::message_name(id).c_str()); + return Expression::make_error(location); + } + + + if (named_object == NULL) + { + if (package != NULL) + { + std::string n1 = Gogo::message_name(package->name()); + std::string n2 = Gogo::message_name(id); + if (!is_exported) + error_at(location, + ("invalid reference to unexported identifier " + "%<%s.%s%>"), + n1.c_str(), n2.c_str()); + else + error_at(location, + "reference to undefined identifier %<%s.%s%>", + n1.c_str(), n2.c_str()); + return Expression::make_error(location); + } + + named_object = this->gogo_->add_unknown_name(packed, location); + } + + if (in_function != NULL + && in_function != this->gogo_->current_function() + && (named_object->is_variable() + || named_object->is_result_variable())) + return this->enclosing_var_reference(in_function, named_object, + location); + + switch (named_object->classification()) + { + case Named_object::NAMED_OBJECT_CONST: + return Expression::make_const_reference(named_object, location); + case Named_object::NAMED_OBJECT_TYPE: + return Expression::make_type(named_object->type_value(), location); + case Named_object::NAMED_OBJECT_TYPE_DECLARATION: + { + Type* t = Type::make_forward_declaration(named_object); + return Expression::make_type(t, location); + } + case Named_object::NAMED_OBJECT_VAR: + case Named_object::NAMED_OBJECT_RESULT_VAR: + return Expression::make_var_reference(named_object, location); + case Named_object::NAMED_OBJECT_SINK: + if (may_be_sink) + return Expression::make_sink(location); + else + { + error_at(location, "cannot use _ as value"); + return Expression::make_error(location); + } + case Named_object::NAMED_OBJECT_FUNC: + case Named_object::NAMED_OBJECT_FUNC_DECLARATION: + return Expression::make_func_reference(named_object, NULL, + location); + case Named_object::NAMED_OBJECT_UNKNOWN: + return Expression::make_unknown_reference(named_object, location); + default: + gcc_unreachable(); + } + } + gcc_unreachable(); + + case Token::TOKEN_STRING: + ret = Expression::make_string(token->string_value(), token->location()); + this->advance_token(); + return ret; + + case Token::TOKEN_INTEGER: + ret = Expression::make_integer(token->integer_value(), NULL, + token->location()); + this->advance_token(); + return ret; + + case Token::TOKEN_FLOAT: + ret = Expression::make_float(token->float_value(), NULL, + token->location()); + this->advance_token(); + return ret; + + case Token::TOKEN_IMAGINARY: + { + mpfr_t zero; + mpfr_init_set_ui(zero, 0, GMP_RNDN); + ret = Expression::make_complex(&zero, token->imaginary_value(), + NULL, token->location()); + mpfr_clear(zero); + this->advance_token(); + return ret; + } + + case Token::TOKEN_KEYWORD: + switch (token->keyword()) + { + case KEYWORD_FUNC: + return this->function_lit(); + case KEYWORD_CHAN: + case KEYWORD_INTERFACE: + case KEYWORD_MAP: + case KEYWORD_STRUCT: + { + source_location location = token->location(); + return Expression::make_type(this->type(), location); + } + default: + break; + } + break; + + case Token::TOKEN_OPERATOR: + if (token->is_op(OPERATOR_LPAREN)) + { + this->advance_token(); + ret = this->expression(PRECEDENCE_NORMAL, false, true, NULL); + if (!this->peek_token()->is_op(OPERATOR_RPAREN)) + error_at(this->location(), "missing %<)%>"); + else + this->advance_token(); + return ret; + } + else if (token->is_op(OPERATOR_LSQUARE)) + { + // Here we call array_type directly, as this is the only + // case where an ellipsis is permitted for an array type. + source_location location = token->location(); + return Expression::make_type(this->array_type(true), location); + } + break; + + default: + break; + } + + error_at(this->location(), "expected operand"); + return Expression::make_error(this->location()); +} + +// Handle a reference to a variable in an enclosing function. We add +// it to a list of such variables. We return a reference to a field +// in a struct which will be passed on the static chain when calling +// the current function. + +Expression* +Parse::enclosing_var_reference(Named_object* in_function, Named_object* var, + source_location location) +{ + gcc_assert(var->is_variable() || var->is_result_variable()); + + Named_object* this_function = this->gogo_->current_function(); + Named_object* closure = this_function->func_value()->closure_var(); + + Enclosing_var ev(var, in_function, this->enclosing_vars_.size()); + std::pair<Enclosing_vars::iterator, bool> ins = + this->enclosing_vars_.insert(ev); + if (ins.second) + { + // This is a variable we have not seen before. Add a new field + // to the closure type. + this_function->func_value()->add_closure_field(var, location); + } + + Expression* closure_ref = Expression::make_var_reference(closure, + location); + closure_ref = Expression::make_unary(OPERATOR_MULT, closure_ref, location); + + // The closure structure holds pointers to the variables, so we need + // to introduce an indirection. + Expression* e = Expression::make_field_reference(closure_ref, + ins.first->index(), + location); + e = Expression::make_unary(OPERATOR_MULT, e, location); + return e; +} + +// CompositeLit = LiteralType LiteralValue . +// LiteralType = StructType | ArrayType | "[" "..." "]" ElementType | +// SliceType | MapType | TypeName . +// LiteralValue = "{" [ ElementList [ "," ] ] "}" . +// ElementList = Element { "," Element } . +// Element = [ Key ":" ] Value . +// Key = Expression . +// Value = Expression | LiteralValue . + +// We have already seen the type if there is one, and we are now +// looking at the LiteralValue. The case "[" "..." "]" ElementType +// will be seen here as an array type whose length is "nil". The +// DEPTH parameter is non-zero if this is an embedded composite +// literal and the type was omitted. It gives the number of steps up +// to the type which was provided. E.g., in [][]int{{1}} it will be +// 1. In [][][]int{{{1}}} it will be 2. + +Expression* +Parse::composite_lit(Type* type, int depth, source_location location) +{ + gcc_assert(this->peek_token()->is_op(OPERATOR_LCURLY)); + this->advance_token(); + + if (this->peek_token()->is_op(OPERATOR_RCURLY)) + { + this->advance_token(); + return Expression::make_composite_literal(type, depth, false, NULL, + location); + } + + bool has_keys = false; + Expression_list* vals = new Expression_list; + while (true) + { + Expression* val; + bool is_type_omitted = false; + + const Token* token = this->peek_token(); + + if (!token->is_op(OPERATOR_LCURLY)) + val = this->expression(PRECEDENCE_NORMAL, false, true, NULL); + else + { + // This must be a composite literal inside another composite + // literal, with the type omitted for the inner one. + val = this->composite_lit(type, depth + 1, token->location()); + is_type_omitted = true; + } + + token = this->peek_token(); + if (!token->is_op(OPERATOR_COLON)) + { + if (has_keys) + vals->push_back(NULL); + } + else + { + if (is_type_omitted && !val->is_error_expression()) + { + error_at(this->location(), "unexpected %<:%>"); + val = Expression::make_error(this->location()); + } + + this->advance_token(); + + if (!has_keys && !vals->empty()) + { + Expression_list* newvals = new Expression_list; + for (Expression_list::const_iterator p = vals->begin(); + p != vals->end(); + ++p) + { + newvals->push_back(NULL); + newvals->push_back(*p); + } + delete vals; + vals = newvals; + } + has_keys = true; + + if (val->unknown_expression() != NULL) + val->unknown_expression()->set_is_composite_literal_key(); + + vals->push_back(val); + + if (!token->is_op(OPERATOR_LCURLY)) + val = this->expression(PRECEDENCE_NORMAL, false, true, NULL); + else + { + // This must be a composite literal inside another + // composite literal, with the type omitted for the + // inner one. + val = this->composite_lit(type, depth + 1, token->location()); + } + + token = this->peek_token(); + } + + vals->push_back(val); + + if (token->is_op(OPERATOR_COMMA)) + { + if (this->advance_token()->is_op(OPERATOR_RCURLY)) + { + this->advance_token(); + break; + } + } + else if (token->is_op(OPERATOR_RCURLY)) + { + this->advance_token(); + break; + } + else + { + error_at(this->location(), "expected %<,%> or %<}%>"); + + int depth = 0; + while (!token->is_eof() + && (depth > 0 || !token->is_op(OPERATOR_RCURLY))) + { + if (token->is_op(OPERATOR_LCURLY)) + ++depth; + else if (token->is_op(OPERATOR_RCURLY)) + --depth; + token = this->advance_token(); + } + if (token->is_op(OPERATOR_RCURLY)) + this->advance_token(); + + return Expression::make_error(location); + } + } + + return Expression::make_composite_literal(type, depth, has_keys, vals, + location); +} + +// FunctionLit = "func" Signature Block . + +Expression* +Parse::function_lit() +{ + source_location location = this->location(); + gcc_assert(this->peek_token()->is_keyword(KEYWORD_FUNC)); + this->advance_token(); + + Enclosing_vars hold_enclosing_vars; + hold_enclosing_vars.swap(this->enclosing_vars_); + + Function_type* type = this->signature(NULL, location); + + // For a function literal, the next token must be a '{'. If we + // don't see that, then we may have a type expression. + if (!this->peek_token()->is_op(OPERATOR_LCURLY)) + return Expression::make_type(type, location); + + Named_object* no = this->gogo_->start_function("", type, true, location); + + source_location end_loc = this->block(); + + this->gogo_->finish_function(end_loc); + + hold_enclosing_vars.swap(this->enclosing_vars_); + + Expression* closure = this->create_closure(no, &hold_enclosing_vars, + location); + + return Expression::make_func_reference(no, closure, location); +} + +// Create a closure for the nested function FUNCTION. This is based +// on ENCLOSING_VARS, which is a list of all variables defined in +// enclosing functions and referenced from FUNCTION. A closure is the +// address of a struct which contains the addresses of all the +// referenced variables. This returns NULL if no closure is required. + +Expression* +Parse::create_closure(Named_object* function, Enclosing_vars* enclosing_vars, + source_location location) +{ + if (enclosing_vars->empty()) + return NULL; + + // Get the variables in order by their field index. + + size_t enclosing_var_count = enclosing_vars->size(); + std::vector<Enclosing_var> ev(enclosing_var_count); + for (Enclosing_vars::const_iterator p = enclosing_vars->begin(); + p != enclosing_vars->end(); + ++p) + ev[p->index()] = *p; + + // Build an initializer for a composite literal of the closure's + // type. + + Named_object* enclosing_function = this->gogo_->current_function(); + Expression_list* initializer = new Expression_list; + for (size_t i = 0; i < enclosing_var_count; ++i) + { + gcc_assert(ev[i].index() == i); + Named_object* var = ev[i].var(); + Expression* ref; + if (ev[i].in_function() == enclosing_function) + ref = Expression::make_var_reference(var, location); + else + ref = this->enclosing_var_reference(ev[i].in_function(), var, + location); + Expression* refaddr = Expression::make_unary(OPERATOR_AND, ref, + location); + initializer->push_back(refaddr); + } + + Named_object* closure_var = function->func_value()->closure_var(); + Struct_type* st = closure_var->var_value()->type()->deref()->struct_type(); + Expression* cv = Expression::make_struct_composite_literal(st, initializer, + location); + return Expression::make_heap_composite(cv, location); +} + +// PrimaryExpr = Operand { Selector | Index | Slice | TypeGuard | Call } . + +// If MAY_BE_SINK is true, this expression may be "_". + +// If MAY_BE_COMPOSITE_LIT is true, this expression may be a composite +// literal. + +// If IS_TYPE_SWITCH is not NULL, this will recognize a type switch +// guard (var := expr.("type") using the literal keyword "type"). + +Expression* +Parse::primary_expr(bool may_be_sink, bool may_be_composite_lit, + bool* is_type_switch) +{ + source_location start_loc = this->location(); + bool is_parenthesized = this->peek_token()->is_op(OPERATOR_LPAREN); + + Expression* ret = this->operand(may_be_sink); + + // An unknown name followed by a curly brace must be a composite + // literal, and the unknown name must be a type. + if (may_be_composite_lit + && !is_parenthesized + && ret->unknown_expression() != NULL + && this->peek_token()->is_op(OPERATOR_LCURLY)) + { + Named_object* no = ret->unknown_expression()->named_object(); + Type* type = Type::make_forward_declaration(no); + ret = Expression::make_type(type, ret->location()); + } + + // We handle composite literals and type casts here, as it is the + // easiest way to handle types which are in parentheses, as in + // "((uint))(1)". + if (ret->is_type_expression()) + { + if (this->peek_token()->is_op(OPERATOR_LCURLY)) + { + if (is_parenthesized) + error_at(start_loc, + "cannot parenthesize type in composite literal"); + ret = this->composite_lit(ret->type(), 0, ret->location()); + } + else if (this->peek_token()->is_op(OPERATOR_LPAREN)) + { + source_location loc = this->location(); + this->advance_token(); + Expression* expr = this->expression(PRECEDENCE_NORMAL, false, true, + NULL); + if (!this->peek_token()->is_op(OPERATOR_RPAREN)) + error_at(this->location(), "expected %<)%>"); + else + this->advance_token(); + if (expr->is_error_expression()) + return expr; + ret = Expression::make_cast(ret->type(), expr, loc); + } + } + + while (true) + { + const Token* token = this->peek_token(); + if (token->is_op(OPERATOR_LPAREN)) + ret = this->call(this->verify_not_sink(ret)); + else if (token->is_op(OPERATOR_DOT)) + { + ret = this->selector(this->verify_not_sink(ret), is_type_switch); + if (is_type_switch != NULL && *is_type_switch) + break; + } + else if (token->is_op(OPERATOR_LSQUARE)) + ret = this->index(this->verify_not_sink(ret)); + else + break; + } + + return ret; +} + +// Selector = "." identifier . +// TypeGuard = "." "(" QualifiedIdent ")" . + +// Note that Operand can expand to QualifiedIdent, which contains a +// ".". That is handled directly in operand when it sees a package +// name. + +// If IS_TYPE_SWITCH is not NULL, this will recognize a type switch +// guard (var := expr.("type") using the literal keyword "type"). + +Expression* +Parse::selector(Expression* left, bool* is_type_switch) +{ + gcc_assert(this->peek_token()->is_op(OPERATOR_DOT)); + source_location location = this->location(); + + const Token* token = this->advance_token(); + if (token->is_identifier()) + { + // This could be a field in a struct, or a method in an + // interface, or a method associated with a type. We can't know + // which until we have seen all the types. + std::string name = + this->gogo_->pack_hidden_name(token->identifier(), + token->is_identifier_exported()); + if (token->identifier() == "_") + { + error_at(this->location(), "invalid use of %<_%>"); + name = this->gogo_->pack_hidden_name("blank", false); + } + this->advance_token(); + return Expression::make_selector(left, name, location); + } + else if (token->is_op(OPERATOR_LPAREN)) + { + this->advance_token(); + Type* type = NULL; + if (is_type_switch == NULL + || !this->peek_token()->is_keyword(KEYWORD_TYPE)) + type = this->type(); + else + { + *is_type_switch = true; + this->advance_token(); + } + if (!this->peek_token()->is_op(OPERATOR_RPAREN)) + error_at(this->location(), "missing %<)%>"); + else + this->advance_token(); + if (is_type_switch != NULL && *is_type_switch) + return left; + return Expression::make_type_guard(left, type, location); + } + else + { + error_at(this->location(), "expected identifier or %<(%>"); + return left; + } +} + +// Index = "[" Expression "]" . +// Slice = "[" Expression ":" [ Expression ] "]" . + +Expression* +Parse::index(Expression* expr) +{ + source_location location = this->location(); + gcc_assert(this->peek_token()->is_op(OPERATOR_LSQUARE)); + this->advance_token(); + + Expression* start; + if (!this->peek_token()->is_op(OPERATOR_COLON)) + start = this->expression(PRECEDENCE_NORMAL, false, true, NULL); + else + { + mpz_t zero; + mpz_init_set_ui(zero, 0); + start = Expression::make_integer(&zero, NULL, location); + mpz_clear(zero); + } + + Expression* end = NULL; + if (this->peek_token()->is_op(OPERATOR_COLON)) + { + // We use nil to indicate a missing high expression. + if (this->advance_token()->is_op(OPERATOR_RSQUARE)) + end = Expression::make_nil(this->location()); + else + end = this->expression(PRECEDENCE_NORMAL, false, true, NULL); + } + if (!this->peek_token()->is_op(OPERATOR_RSQUARE)) + error_at(this->location(), "missing %<]%>"); + else + this->advance_token(); + return Expression::make_index(expr, start, end, location); +} + +// Call = "(" [ ArgumentList [ "," ] ] ")" . +// ArgumentList = ExpressionList [ "..." ] . + +Expression* +Parse::call(Expression* func) +{ + gcc_assert(this->peek_token()->is_op(OPERATOR_LPAREN)); + Expression_list* args = NULL; + bool is_varargs = false; + const Token* token = this->advance_token(); + if (!token->is_op(OPERATOR_RPAREN)) + { + args = this->expression_list(NULL, false); + token = this->peek_token(); + if (token->is_op(OPERATOR_ELLIPSIS)) + { + is_varargs = true; + token = this->advance_token(); + } + } + if (token->is_op(OPERATOR_COMMA)) + token = this->advance_token(); + if (!token->is_op(OPERATOR_RPAREN)) + error_at(this->location(), "missing %<)%>"); + else + this->advance_token(); + if (func->is_error_expression()) + return func; + return Expression::make_call(func, args, is_varargs, func->location()); +} + +// Return an expression for a single unqualified identifier. + +Expression* +Parse::id_to_expression(const std::string& name, source_location location) +{ + Named_object* in_function; + Named_object* named_object = this->gogo_->lookup(name, &in_function); + if (named_object == NULL) + named_object = this->gogo_->add_unknown_name(name, location); + + if (in_function != NULL + && in_function != this->gogo_->current_function() + && (named_object->is_variable() || named_object->is_result_variable())) + return this->enclosing_var_reference(in_function, named_object, + location); + + switch (named_object->classification()) + { + case Named_object::NAMED_OBJECT_CONST: + return Expression::make_const_reference(named_object, location); + case Named_object::NAMED_OBJECT_VAR: + case Named_object::NAMED_OBJECT_RESULT_VAR: + return Expression::make_var_reference(named_object, location); + case Named_object::NAMED_OBJECT_SINK: + return Expression::make_sink(location); + case Named_object::NAMED_OBJECT_FUNC: + case Named_object::NAMED_OBJECT_FUNC_DECLARATION: + return Expression::make_func_reference(named_object, NULL, location); + case Named_object::NAMED_OBJECT_UNKNOWN: + return Expression::make_unknown_reference(named_object, location); + default: + error_at(this->location(), "unexpected type of identifier"); + return Expression::make_error(location); + } +} + +// Expression = UnaryExpr { binary_op Expression } . + +// PRECEDENCE is the precedence of the current operator. + +// If MAY_BE_SINK is true, this expression may be "_". + +// If MAY_BE_COMPOSITE_LIT is true, this expression may be a composite +// literal. + +// If IS_TYPE_SWITCH is not NULL, this will recognize a type switch +// guard (var := expr.("type") using the literal keyword "type"). + +Expression* +Parse::expression(Precedence precedence, bool may_be_sink, + bool may_be_composite_lit, bool* is_type_switch) +{ + Expression* left = this->unary_expr(may_be_sink, may_be_composite_lit, + is_type_switch); + + while (true) + { + if (is_type_switch != NULL && *is_type_switch) + return left; + + const Token* token = this->peek_token(); + if (token->classification() != Token::TOKEN_OPERATOR) + { + // Not a binary_op. + return left; + } + + Precedence right_precedence; + switch (token->op()) + { + case OPERATOR_OROR: + right_precedence = PRECEDENCE_OROR; + break; + case OPERATOR_ANDAND: + right_precedence = PRECEDENCE_ANDAND; + break; + case OPERATOR_CHANOP: + right_precedence = PRECEDENCE_CHANOP; + break; + case OPERATOR_EQEQ: + case OPERATOR_NOTEQ: + case OPERATOR_LT: + case OPERATOR_LE: + case OPERATOR_GT: + case OPERATOR_GE: + right_precedence = PRECEDENCE_RELOP; + break; + case OPERATOR_PLUS: + case OPERATOR_MINUS: + case OPERATOR_OR: + case OPERATOR_XOR: + right_precedence = PRECEDENCE_ADDOP; + break; + case OPERATOR_MULT: + case OPERATOR_DIV: + case OPERATOR_MOD: + case OPERATOR_LSHIFT: + case OPERATOR_RSHIFT: + case OPERATOR_AND: + case OPERATOR_BITCLEAR: + right_precedence = PRECEDENCE_MULOP; + break; + default: + right_precedence = PRECEDENCE_INVALID; + break; + } + + if (right_precedence == PRECEDENCE_INVALID) + { + // Not a binary_op. + return left; + } + + Operator op = token->op(); + source_location binop_location = token->location(); + + if (precedence >= right_precedence) + { + // We've already seen A * B, and we see + C. We want to + // return so that A * B becomes a group. + return left; + } + + this->advance_token(); + + left = this->verify_not_sink(left); + Expression* right = this->expression(right_precedence, false, + may_be_composite_lit, + is_type_switch); + if (op == OPERATOR_CHANOP) + left = Expression::make_send(left, right, binop_location); + else + left = Expression::make_binary(op, left, right, binop_location); + } +} + +bool +Parse::expression_may_start_here() +{ + const Token* token = this->peek_token(); + switch (token->classification()) + { + case Token::TOKEN_INVALID: + case Token::TOKEN_EOF: + return false; + case Token::TOKEN_KEYWORD: + switch (token->keyword()) + { + case KEYWORD_CHAN: + case KEYWORD_FUNC: + case KEYWORD_MAP: + case KEYWORD_STRUCT: + case KEYWORD_INTERFACE: + return true; + default: + return false; + } + case Token::TOKEN_IDENTIFIER: + return true; + case Token::TOKEN_STRING: + return true; + case Token::TOKEN_OPERATOR: + switch (token->op()) + { + case OPERATOR_PLUS: + case OPERATOR_MINUS: + case OPERATOR_NOT: + case OPERATOR_XOR: + case OPERATOR_MULT: + case OPERATOR_CHANOP: + case OPERATOR_AND: + case OPERATOR_LPAREN: + case OPERATOR_LSQUARE: + return true; + default: + return false; + } + case Token::TOKEN_INTEGER: + case Token::TOKEN_FLOAT: + case Token::TOKEN_IMAGINARY: + return true; + default: + gcc_unreachable(); + } +} + +// UnaryExpr = unary_op UnaryExpr | PrimaryExpr . + +// If MAY_BE_SINK is true, this expression may be "_". + +// If MAY_BE_COMPOSITE_LIT is true, this expression may be a composite +// literal. + +// If IS_TYPE_SWITCH is not NULL, this will recognize a type switch +// guard (var := expr.("type") using the literal keyword "type"). + +Expression* +Parse::unary_expr(bool may_be_sink, bool may_be_composite_lit, + bool* is_type_switch) +{ + const Token* token = this->peek_token(); + if (token->is_op(OPERATOR_PLUS) + || token->is_op(OPERATOR_MINUS) + || token->is_op(OPERATOR_NOT) + || token->is_op(OPERATOR_XOR) + || token->is_op(OPERATOR_CHANOP) + || token->is_op(OPERATOR_MULT) + || token->is_op(OPERATOR_AND)) + { + source_location location = token->location(); + Operator op = token->op(); + this->advance_token(); + + if (op == OPERATOR_CHANOP + && this->peek_token()->is_keyword(KEYWORD_CHAN)) + { + // This is "<- chan" which must be the start of a type. + this->unget_token(Token::make_operator_token(op, location)); + return Expression::make_type(this->type(), location); + } + + Expression* expr = this->unary_expr(false, may_be_composite_lit, + is_type_switch); + if (expr->is_error_expression()) + ; + else if (op == OPERATOR_MULT && expr->is_type_expression()) + expr = Expression::make_type(Type::make_pointer_type(expr->type()), + location); + else if (op == OPERATOR_AND && expr->is_composite_literal()) + expr = Expression::make_heap_composite(expr, location); + else if (op != OPERATOR_CHANOP) + expr = Expression::make_unary(op, expr, location); + else + expr = Expression::make_receive(expr, location); + return expr; + } + else + return this->primary_expr(may_be_sink, may_be_composite_lit, + is_type_switch); +} + +// Statement = +// Declaration | LabeledStmt | SimpleStmt | +// GoStmt | ReturnStmt | BreakStmt | ContinueStmt | GotoStmt | +// FallthroughStmt | Block | IfStmt | SwitchStmt | SelectStmt | ForStmt | +// DeferStmt . + +// LABEL is the label of this statement if it has one. + +void +Parse::statement(const Label* label) +{ + const Token* token = this->peek_token(); + switch (token->classification()) + { + case Token::TOKEN_KEYWORD: + { + switch (token->keyword()) + { + case KEYWORD_CONST: + case KEYWORD_TYPE: + case KEYWORD_VAR: + this->declaration(); + break; + case KEYWORD_FUNC: + case KEYWORD_MAP: + case KEYWORD_STRUCT: + case KEYWORD_INTERFACE: + this->simple_stat(true, false, NULL, NULL); + break; + case KEYWORD_GO: + case KEYWORD_DEFER: + this->go_or_defer_stat(); + break; + case KEYWORD_RETURN: + this->return_stat(); + break; + case KEYWORD_BREAK: + this->break_stat(); + break; + case KEYWORD_CONTINUE: + this->continue_stat(); + break; + case KEYWORD_GOTO: + this->goto_stat(); + break; + case KEYWORD_IF: + this->if_stat(); + break; + case KEYWORD_SWITCH: + this->switch_stat(label); + break; + case KEYWORD_SELECT: + this->select_stat(label); + break; + case KEYWORD_FOR: + this->for_stat(label); + break; + default: + error_at(this->location(), "expected statement"); + this->advance_token(); + break; + } + } + break; + + case Token::TOKEN_IDENTIFIER: + { + std::string identifier = token->identifier(); + bool is_exported = token->is_identifier_exported(); + source_location location = token->location(); + if (this->advance_token()->is_op(OPERATOR_COLON)) + { + this->advance_token(); + this->labeled_stmt(identifier, location); + } + else + { + this->unget_token(Token::make_identifier_token(identifier, + is_exported, + location)); + this->simple_stat(true, false, NULL, NULL); + } + } + break; + + case Token::TOKEN_OPERATOR: + if (token->is_op(OPERATOR_LCURLY)) + { + source_location location = token->location(); + this->gogo_->start_block(location); + source_location end_loc = this->block(); + this->gogo_->add_block(this->gogo_->finish_block(end_loc), + location); + } + else if (!token->is_op(OPERATOR_SEMICOLON)) + this->simple_stat(true, false, NULL, NULL); + break; + + case Token::TOKEN_STRING: + case Token::TOKEN_INTEGER: + case Token::TOKEN_FLOAT: + case Token::TOKEN_IMAGINARY: + this->simple_stat(true, false, NULL, NULL); + break; + + default: + error_at(this->location(), "expected statement"); + this->advance_token(); + break; + } +} + +bool +Parse::statement_may_start_here() +{ + const Token* token = this->peek_token(); + switch (token->classification()) + { + case Token::TOKEN_KEYWORD: + { + switch (token->keyword()) + { + case KEYWORD_CONST: + case KEYWORD_TYPE: + case KEYWORD_VAR: + case KEYWORD_FUNC: + case KEYWORD_MAP: + case KEYWORD_STRUCT: + case KEYWORD_INTERFACE: + case KEYWORD_GO: + case KEYWORD_DEFER: + case KEYWORD_RETURN: + case KEYWORD_BREAK: + case KEYWORD_CONTINUE: + case KEYWORD_GOTO: + case KEYWORD_IF: + case KEYWORD_SWITCH: + case KEYWORD_SELECT: + case KEYWORD_FOR: + return true; + + default: + return false; + } + } + break; + + case Token::TOKEN_IDENTIFIER: + return true; + + case Token::TOKEN_OPERATOR: + if (token->is_op(OPERATOR_LCURLY) + || token->is_op(OPERATOR_SEMICOLON)) + return true; + else + return this->expression_may_start_here(); + + case Token::TOKEN_STRING: + case Token::TOKEN_INTEGER: + case Token::TOKEN_FLOAT: + case Token::TOKEN_IMAGINARY: + return true; + + default: + return false; + } +} + +// LabeledStmt = Label ":" Statement . +// Label = identifier . + +void +Parse::labeled_stmt(const std::string& label_name, source_location location) +{ + Label* label = this->gogo_->add_label_definition(label_name, location); + + if (this->peek_token()->is_op(OPERATOR_RCURLY)) + { + // This is a label at the end of a block. A program is + // permitted to omit a semicolon here. + return; + } + + if (!this->statement_may_start_here()) + { + error_at(location, "missing statement after label"); + this->unget_token(Token::make_operator_token(OPERATOR_SEMICOLON, + location)); + return; + } + + this->statement(label); +} + +// SimpleStat = +// ExpressionStat | IncDecStat | Assignment | SimpleVarDecl . + +// In order to make this work for if and switch statements, if +// RETURN_EXP is true, and we see an ExpressionStat, we return the +// expression rather than adding an expression statement to the +// current block. If we see something other than an ExpressionStat, +// we add the statement and return NULL. + +// If P_RANGE_CLAUSE is not NULL, then this will recognize a +// RangeClause. + +// If P_TYPE_SWITCH is not NULL, this will recognize a type switch +// guard (var := expr.("type") using the literal keyword "type"). + +Expression* +Parse::simple_stat(bool may_be_composite_lit, bool return_exp, + Range_clause* p_range_clause, Type_switch* p_type_switch) +{ + const Token* token = this->peek_token(); + + // An identifier follow by := is a SimpleVarDecl. + if (token->is_identifier()) + { + std::string identifier = token->identifier(); + bool is_exported = token->is_identifier_exported(); + source_location location = token->location(); + + token = this->advance_token(); + if (token->is_op(OPERATOR_COLONEQ) + || token->is_op(OPERATOR_COMMA)) + { + identifier = this->gogo_->pack_hidden_name(identifier, is_exported); + this->simple_var_decl_or_assignment(identifier, location, + p_range_clause, + (token->is_op(OPERATOR_COLONEQ) + ? p_type_switch + : NULL)); + return NULL; + } + + this->unget_token(Token::make_identifier_token(identifier, is_exported, + location)); + } + + Expression* exp = this->expression(PRECEDENCE_NORMAL, true, + may_be_composite_lit, + (p_type_switch == NULL + ? NULL + : &p_type_switch->found)); + if (p_type_switch != NULL && p_type_switch->found) + { + p_type_switch->name.clear(); + p_type_switch->location = exp->location(); + p_type_switch->expr = this->verify_not_sink(exp); + return NULL; + } + token = this->peek_token(); + if (token->is_op(OPERATOR_PLUSPLUS) || token->is_op(OPERATOR_MINUSMINUS)) + this->inc_dec_stat(this->verify_not_sink(exp)); + else if (token->is_op(OPERATOR_COMMA) + || token->is_op(OPERATOR_EQ)) + this->assignment(exp, p_range_clause); + else if (token->is_op(OPERATOR_PLUSEQ) + || token->is_op(OPERATOR_MINUSEQ) + || token->is_op(OPERATOR_OREQ) + || token->is_op(OPERATOR_XOREQ) + || token->is_op(OPERATOR_MULTEQ) + || token->is_op(OPERATOR_DIVEQ) + || token->is_op(OPERATOR_MODEQ) + || token->is_op(OPERATOR_LSHIFTEQ) + || token->is_op(OPERATOR_RSHIFTEQ) + || token->is_op(OPERATOR_ANDEQ) + || token->is_op(OPERATOR_BITCLEAREQ)) + this->assignment(this->verify_not_sink(exp), p_range_clause); + else if (return_exp) + return this->verify_not_sink(exp); + else + this->expression_stat(this->verify_not_sink(exp)); + + return NULL; +} + +bool +Parse::simple_stat_may_start_here() +{ + return this->expression_may_start_here(); +} + +// Parse { Statement ";" } which is used in a few places. The list of +// statements may end with a right curly brace, in which case the +// semicolon may be omitted. + +void +Parse::statement_list() +{ + while (this->statement_may_start_here()) + { + this->statement(NULL); + if (this->peek_token()->is_op(OPERATOR_SEMICOLON)) + this->advance_token(); + else if (this->peek_token()->is_op(OPERATOR_RCURLY)) + break; + else + { + if (!this->peek_token()->is_eof() || !saw_errors()) + error_at(this->location(), "expected %<;%> or %<}%> or newline"); + if (!this->skip_past_error(OPERATOR_RCURLY)) + return; + } + } +} + +bool +Parse::statement_list_may_start_here() +{ + return this->statement_may_start_here(); +} + +// ExpressionStat = Expression . + +void +Parse::expression_stat(Expression* exp) +{ + exp->discarding_value(); + this->gogo_->add_statement(Statement::make_statement(exp)); +} + +// IncDecStat = Expression ( "++" | "--" ) . + +void +Parse::inc_dec_stat(Expression* exp) +{ + const Token* token = this->peek_token(); + + // Lvalue maps require special handling. + if (exp->index_expression() != NULL) + exp->index_expression()->set_is_lvalue(); + + if (token->is_op(OPERATOR_PLUSPLUS)) + this->gogo_->add_statement(Statement::make_inc_statement(exp)); + else if (token->is_op(OPERATOR_MINUSMINUS)) + this->gogo_->add_statement(Statement::make_dec_statement(exp)); + else + gcc_unreachable(); + this->advance_token(); +} + +// Assignment = ExpressionList assign_op ExpressionList . + +// EXP is an expression that we have already parsed. + +// If RANGE_CLAUSE is not NULL, then this will recognize a +// RangeClause. + +void +Parse::assignment(Expression* expr, Range_clause* p_range_clause) +{ + Expression_list* vars; + if (!this->peek_token()->is_op(OPERATOR_COMMA)) + { + vars = new Expression_list(); + vars->push_back(expr); + } + else + { + this->advance_token(); + vars = this->expression_list(expr, true); + } + + this->tuple_assignment(vars, p_range_clause); +} + +// An assignment statement. LHS is the list of expressions which +// appear on the left hand side. + +// If RANGE_CLAUSE is not NULL, then this will recognize a +// RangeClause. + +void +Parse::tuple_assignment(Expression_list* lhs, Range_clause* p_range_clause) +{ + const Token* token = this->peek_token(); + if (!token->is_op(OPERATOR_EQ) + && !token->is_op(OPERATOR_PLUSEQ) + && !token->is_op(OPERATOR_MINUSEQ) + && !token->is_op(OPERATOR_OREQ) + && !token->is_op(OPERATOR_XOREQ) + && !token->is_op(OPERATOR_MULTEQ) + && !token->is_op(OPERATOR_DIVEQ) + && !token->is_op(OPERATOR_MODEQ) + && !token->is_op(OPERATOR_LSHIFTEQ) + && !token->is_op(OPERATOR_RSHIFTEQ) + && !token->is_op(OPERATOR_ANDEQ) + && !token->is_op(OPERATOR_BITCLEAREQ)) + { + error_at(this->location(), "expected assignment operator"); + return; + } + Operator op = token->op(); + source_location location = token->location(); + + token = this->advance_token(); + + if (p_range_clause != NULL && token->is_keyword(KEYWORD_RANGE)) + { + if (op != OPERATOR_EQ) + error_at(this->location(), "range clause requires %<=%>"); + this->range_clause_expr(lhs, p_range_clause); + return; + } + + Expression_list* vals = this->expression_list(NULL, false); + + // We've parsed everything; check for errors. + if (lhs == NULL || vals == NULL) + return; + for (Expression_list::const_iterator pe = lhs->begin(); + pe != lhs->end(); + ++pe) + { + if ((*pe)->is_error_expression()) + return; + if (op != OPERATOR_EQ && (*pe)->is_sink_expression()) + error_at((*pe)->location(), "cannot use _ as value"); + } + for (Expression_list::const_iterator pe = vals->begin(); + pe != vals->end(); + ++pe) + { + if ((*pe)->is_error_expression()) + return; + } + + // Map expressions act differently when they are lvalues. + for (Expression_list::iterator plv = lhs->begin(); + plv != lhs->end(); + ++plv) + if ((*plv)->index_expression() != NULL) + (*plv)->index_expression()->set_is_lvalue(); + + Call_expression* call; + Index_expression* map_index; + Receive_expression* receive; + Type_guard_expression* type_guard; + if (lhs->size() == vals->size()) + { + Statement* s; + if (lhs->size() > 1) + { + if (op != OPERATOR_EQ) + error_at(location, "multiple values only permitted with %<=%>"); + s = Statement::make_tuple_assignment(lhs, vals, location); + } + else + { + if (op == OPERATOR_EQ) + s = Statement::make_assignment(lhs->front(), vals->front(), + location); + else + s = Statement::make_assignment_operation(op, lhs->front(), + vals->front(), location); + delete lhs; + delete vals; + } + this->gogo_->add_statement(s); + } + else if (vals->size() == 1 + && (call = (*vals->begin())->call_expression()) != NULL) + { + if (op != OPERATOR_EQ) + error_at(location, "multiple results only permitted with %<=%>"); + delete vals; + vals = new Expression_list; + for (unsigned int i = 0; i < lhs->size(); ++i) + vals->push_back(Expression::make_call_result(call, i)); + Statement* s = Statement::make_tuple_assignment(lhs, vals, location); + this->gogo_->add_statement(s); + } + else if (lhs->size() == 2 + && vals->size() == 1 + && (map_index = (*vals->begin())->index_expression()) != NULL) + { + if (op != OPERATOR_EQ) + error_at(location, "two values from map requires %<=%>"); + Expression* val = lhs->front(); + Expression* present = lhs->back(); + Statement* s = Statement::make_tuple_map_assignment(val, present, + map_index, location); + this->gogo_->add_statement(s); + } + else if (lhs->size() == 1 + && vals->size() == 2 + && (map_index = lhs->front()->index_expression()) != NULL) + { + if (op != OPERATOR_EQ) + error_at(location, "assigning tuple to map index requires %<=%>"); + Expression* val = vals->front(); + Expression* should_set = vals->back(); + Statement* s = Statement::make_map_assignment(map_index, val, should_set, + location); + this->gogo_->add_statement(s); + } + else if (lhs->size() == 2 + && vals->size() == 1 + && (receive = (*vals->begin())->receive_expression()) != NULL) + { + if (op != OPERATOR_EQ) + error_at(location, "two values from receive requires %<=%>"); + Expression* val = lhs->front(); + Expression* success = lhs->back(); + Expression* channel = receive->channel(); + Statement* s = Statement::make_tuple_receive_assignment(val, success, + channel, + location); + this->gogo_->add_statement(s); + } + else if (lhs->size() == 2 + && vals->size() == 1 + && (type_guard = (*vals->begin())->type_guard_expression()) != NULL) + { + if (op != OPERATOR_EQ) + error_at(location, "two values from type guard requires %<=%>"); + Expression* val = lhs->front(); + Expression* ok = lhs->back(); + Expression* expr = type_guard->expr(); + Type* type = type_guard->type(); + Statement* s = Statement::make_tuple_type_guard_assignment(val, ok, + expr, type, + location); + this->gogo_->add_statement(s); + } + else + { + error_at(location, "number of variables does not match number of values"); + } +} + +// GoStat = "go" Expression . +// DeferStat = "defer" Expression . + +void +Parse::go_or_defer_stat() +{ + gcc_assert(this->peek_token()->is_keyword(KEYWORD_GO) + || this->peek_token()->is_keyword(KEYWORD_DEFER)); + bool is_go = this->peek_token()->is_keyword(KEYWORD_GO); + source_location stat_location = this->location(); + this->advance_token(); + source_location expr_location = this->location(); + Expression* expr = this->expression(PRECEDENCE_NORMAL, false, true, NULL); + Call_expression* call_expr = expr->call_expression(); + if (call_expr == NULL) + { + error_at(expr_location, "expected call expression"); + return; + } + + // Make it easier to simplify go/defer statements by putting every + // statement in its own block. + this->gogo_->start_block(stat_location); + Statement* stat; + if (is_go) + stat = Statement::make_go_statement(call_expr, stat_location); + else + stat = Statement::make_defer_statement(call_expr, stat_location); + this->gogo_->add_statement(stat); + this->gogo_->add_block(this->gogo_->finish_block(stat_location), + stat_location); +} + +// ReturnStat = "return" [ ExpressionList ] . + +void +Parse::return_stat() +{ + gcc_assert(this->peek_token()->is_keyword(KEYWORD_RETURN)); + source_location location = this->location(); + this->advance_token(); + Expression_list* vals = NULL; + if (this->expression_may_start_here()) + vals = this->expression_list(NULL, false); + const Function* function = this->gogo_->current_function()->func_value(); + const Typed_identifier_list* results = function->type()->results(); + this->gogo_->add_statement(Statement::make_return_statement(results, vals, + location)); +} + +// IfStat = "if" [ [ SimpleStat ] ";" ] [ Condition ] +// Block [ "else" Statement ] . + +void +Parse::if_stat() +{ + gcc_assert(this->peek_token()->is_keyword(KEYWORD_IF)); + source_location location = this->location(); + this->advance_token(); + + this->gogo_->start_block(location); + + Expression* cond = NULL; + if (this->simple_stat_may_start_here()) + cond = this->simple_stat(false, true, NULL, NULL); + if (cond != NULL && this->peek_token()->is_op(OPERATOR_SEMICOLON)) + { + // The SimpleStat is an expression statement. + this->expression_stat(cond); + cond = NULL; + } + if (cond == NULL) + { + if (this->peek_token()->is_op(OPERATOR_SEMICOLON)) + this->advance_token(); + if (!this->peek_token()->is_op(OPERATOR_LCURLY)) + cond = this->expression(PRECEDENCE_NORMAL, false, false, NULL); + } + + this->gogo_->start_block(this->location()); + source_location end_loc = this->block(); + Block* then_block = this->gogo_->finish_block(end_loc); + + // Check for the easy error of a newline before "else". + if (this->peek_token()->is_op(OPERATOR_SEMICOLON)) + { + source_location semi_loc = this->location(); + if (this->advance_token()->is_keyword(KEYWORD_ELSE)) + error_at(this->location(), + "unexpected semicolon or newline before %<else%>"); + else + this->unget_token(Token::make_operator_token(OPERATOR_SEMICOLON, + semi_loc)); + } + + Block* else_block = NULL; + if (this->peek_token()->is_keyword(KEYWORD_ELSE)) + { + this->advance_token(); + // We create a block to gather the statement. + this->gogo_->start_block(this->location()); + this->statement(NULL); + else_block = this->gogo_->finish_block(this->location()); + } + + this->gogo_->add_statement(Statement::make_if_statement(cond, then_block, + else_block, + location)); + + this->gogo_->add_block(this->gogo_->finish_block(this->location()), + location); +} + +// SwitchStmt = ExprSwitchStmt | TypeSwitchStmt . +// ExprSwitchStmt = "switch" [ [ SimpleStat ] ";" ] [ Expression ] +// "{" { ExprCaseClause } "}" . +// TypeSwitchStmt = "switch" [ [ SimpleStat ] ";" ] TypeSwitchGuard +// "{" { TypeCaseClause } "}" . +// TypeSwitchGuard = [ identifier ":=" ] Expression "." "(" "type" ")" . + +void +Parse::switch_stat(const Label* label) +{ + gcc_assert(this->peek_token()->is_keyword(KEYWORD_SWITCH)); + source_location location = this->location(); + this->advance_token(); + + this->gogo_->start_block(location); + + Expression* switch_val = NULL; + Type_switch type_switch; + if (this->simple_stat_may_start_here()) + switch_val = this->simple_stat(false, true, NULL, &type_switch); + if (switch_val != NULL && this->peek_token()->is_op(OPERATOR_SEMICOLON)) + { + // The SimpleStat is an expression statement. + this->expression_stat(switch_val); + switch_val = NULL; + } + if (switch_val == NULL && !type_switch.found) + { + if (this->peek_token()->is_op(OPERATOR_SEMICOLON)) + this->advance_token(); + if (!this->peek_token()->is_op(OPERATOR_LCURLY)) + { + if (this->peek_token()->is_identifier()) + { + const Token* token = this->peek_token(); + std::string identifier = token->identifier(); + bool is_exported = token->is_identifier_exported(); + source_location id_loc = token->location(); + + token = this->advance_token(); + bool is_coloneq = token->is_op(OPERATOR_COLONEQ); + this->unget_token(Token::make_identifier_token(identifier, + is_exported, + id_loc)); + if (is_coloneq) + { + // This must be a TypeSwitchGuard. + switch_val = this->simple_stat(false, true, NULL, + &type_switch); + if (!type_switch.found + && !switch_val->is_error_expression()) + { + error_at(id_loc, "expected type switch assignment"); + switch_val = Expression::make_error(id_loc); + } + } + } + if (switch_val == NULL && !type_switch.found) + { + switch_val = this->expression(PRECEDENCE_NORMAL, false, false, + &type_switch.found); + if (type_switch.found) + { + type_switch.name.clear(); + type_switch.expr = switch_val; + type_switch.location = switch_val->location(); + } + } + } + } + + if (!this->peek_token()->is_op(OPERATOR_LCURLY)) + { + source_location token_loc = this->location(); + if (this->peek_token()->is_op(OPERATOR_SEMICOLON) + && this->advance_token()->is_op(OPERATOR_LCURLY)) + error_at(token_loc, "unexpected semicolon or newline before %<{%>"); + else + { + error_at(this->location(), "expected %<{%>"); + this->gogo_->add_block(this->gogo_->finish_block(this->location()), + location); + return; + } + } + this->advance_token(); + + Statement* statement; + if (type_switch.found) + statement = this->type_switch_body(label, type_switch, location); + else + statement = this->expr_switch_body(label, switch_val, location); + + if (statement != NULL) + this->gogo_->add_statement(statement); + + this->gogo_->add_block(this->gogo_->finish_block(this->location()), + location); +} + +// The body of an expression switch. +// "{" { ExprCaseClause } "}" + +Statement* +Parse::expr_switch_body(const Label* label, Expression* switch_val, + source_location location) +{ + Switch_statement* statement = Statement::make_switch_statement(switch_val, + location); + + this->push_break_statement(statement, label); + + Case_clauses* case_clauses = new Case_clauses(); + while (!this->peek_token()->is_op(OPERATOR_RCURLY)) + { + if (this->peek_token()->is_eof()) + { + if (!saw_errors()) + error_at(this->location(), "missing %<}%>"); + return NULL; + } + this->expr_case_clause(case_clauses); + } + this->advance_token(); + + statement->add_clauses(case_clauses); + + this->pop_break_statement(); + + return statement; +} + +// ExprCaseClause = ExprSwitchCase ":" [ StatementList ] . +// FallthroughStat = "fallthrough" . + +void +Parse::expr_case_clause(Case_clauses* clauses) +{ + source_location location = this->location(); + + bool is_default = false; + Expression_list* vals = this->expr_switch_case(&is_default); + + if (!this->peek_token()->is_op(OPERATOR_COLON)) + { + if (!saw_errors()) + error_at(this->location(), "expected %<:%>"); + return; + } + else + this->advance_token(); + + Block* statements = NULL; + if (this->statement_list_may_start_here()) + { + this->gogo_->start_block(this->location()); + this->statement_list(); + statements = this->gogo_->finish_block(this->location()); + } + + bool is_fallthrough = false; + if (this->peek_token()->is_keyword(KEYWORD_FALLTHROUGH)) + { + is_fallthrough = true; + if (this->advance_token()->is_op(OPERATOR_SEMICOLON)) + this->advance_token(); + } + + if (is_default || vals != NULL) + clauses->add(vals, is_default, statements, is_fallthrough, location); +} + +// ExprSwitchCase = "case" ExpressionList | "default" . + +Expression_list* +Parse::expr_switch_case(bool* is_default) +{ + const Token* token = this->peek_token(); + if (token->is_keyword(KEYWORD_CASE)) + { + this->advance_token(); + return this->expression_list(NULL, false); + } + else if (token->is_keyword(KEYWORD_DEFAULT)) + { + this->advance_token(); + *is_default = true; + return NULL; + } + else + { + if (!saw_errors()) + error_at(this->location(), "expected %<case%> or %<default%>"); + if (!token->is_op(OPERATOR_RCURLY)) + this->advance_token(); + return NULL; + } +} + +// The body of a type switch. +// "{" { TypeCaseClause } "}" . + +Statement* +Parse::type_switch_body(const Label* label, const Type_switch& type_switch, + source_location location) +{ + Named_object* switch_no = NULL; + if (!type_switch.name.empty()) + { + Variable* switch_var = new Variable(NULL, type_switch.expr, false, false, + false, type_switch.location); + switch_no = this->gogo_->add_variable(type_switch.name, switch_var); + } + + Type_switch_statement* statement = + Statement::make_type_switch_statement(switch_no, + (switch_no == NULL + ? type_switch.expr + : NULL), + location); + + this->push_break_statement(statement, label); + + Type_case_clauses* case_clauses = new Type_case_clauses(); + while (!this->peek_token()->is_op(OPERATOR_RCURLY)) + { + if (this->peek_token()->is_eof()) + { + error_at(this->location(), "missing %<}%>"); + return NULL; + } + this->type_case_clause(switch_no, case_clauses); + } + this->advance_token(); + + statement->add_clauses(case_clauses); + + this->pop_break_statement(); + + return statement; +} + +// TypeCaseClause = TypeSwitchCase ":" [ StatementList ] . + +void +Parse::type_case_clause(Named_object* switch_no, Type_case_clauses* clauses) +{ + source_location location = this->location(); + + std::vector<Type*> types; + bool is_default = false; + this->type_switch_case(&types, &is_default); + + if (!this->peek_token()->is_op(OPERATOR_COLON)) + error_at(this->location(), "expected %<:%>"); + else + this->advance_token(); + + Block* statements = NULL; + if (this->statement_list_may_start_here()) + { + this->gogo_->start_block(this->location()); + if (switch_no != NULL && types.size() == 1) + { + Type* type = types.front(); + Expression* init = Expression::make_var_reference(switch_no, + location); + init = Expression::make_type_guard(init, type, location); + Variable* v = new Variable(type, init, false, false, false, + location); + v->set_is_type_switch_var(); + this->gogo_->add_variable(switch_no->name(), v); + } + this->statement_list(); + statements = this->gogo_->finish_block(this->location()); + } + + if (this->peek_token()->is_keyword(KEYWORD_FALLTHROUGH)) + { + error_at(this->location(), + "fallthrough is not permitted in a type switch"); + if (this->advance_token()->is_op(OPERATOR_SEMICOLON)) + this->advance_token(); + } + + if (is_default) + { + gcc_assert(types.empty()); + clauses->add(NULL, false, true, statements, location); + } + else if (!types.empty()) + { + for (std::vector<Type*>::const_iterator p = types.begin(); + p + 1 != types.end(); + ++p) + clauses->add(*p, true, false, NULL, location); + clauses->add(types.back(), false, false, statements, location); + } +} + +// TypeSwitchCase = "case" type | "default" + +// We accept a comma separated list of types. + +void +Parse::type_switch_case(std::vector<Type*>* types, bool* is_default) +{ + const Token* token = this->peek_token(); + if (token->is_keyword(KEYWORD_CASE)) + { + this->advance_token(); + while (true) + { + Type* t = this->type(); + if (!t->is_error_type()) + types->push_back(t); + if (!this->peek_token()->is_op(OPERATOR_COMMA)) + break; + this->advance_token(); + } + } + else if (token->is_keyword(KEYWORD_DEFAULT)) + { + this->advance_token(); + *is_default = true; + } + else + { + error_at(this->location(), "expected %<case%> or %<default%>"); + if (!token->is_op(OPERATOR_RCURLY)) + this->advance_token(); + } +} + +// SelectStat = "select" "{" { CommClause } "}" . + +void +Parse::select_stat(const Label* label) +{ + gcc_assert(this->peek_token()->is_keyword(KEYWORD_SELECT)); + source_location location = this->location(); + const Token* token = this->advance_token(); + + if (!token->is_op(OPERATOR_LCURLY)) + { + source_location token_loc = token->location(); + if (token->is_op(OPERATOR_SEMICOLON) + && this->advance_token()->is_op(OPERATOR_LCURLY)) + error_at(token_loc, "unexpected semicolon or newline before %<{%>"); + else + { + error_at(this->location(), "expected %<{%>"); + return; + } + } + this->advance_token(); + + Select_statement* statement = Statement::make_select_statement(location); + + this->push_break_statement(statement, label); + + Select_clauses* select_clauses = new Select_clauses(); + while (!this->peek_token()->is_op(OPERATOR_RCURLY)) + { + if (this->peek_token()->is_eof()) + { + error_at(this->location(), "expected %<}%>"); + return; + } + this->comm_clause(select_clauses); + } + + this->advance_token(); + + statement->add_clauses(select_clauses); + + this->pop_break_statement(); + + this->gogo_->add_statement(statement); +} + +// CommClause = CommCase [ StatementList ] . + +void +Parse::comm_clause(Select_clauses* clauses) +{ + source_location location = this->location(); + bool is_send = false; + Expression* channel = NULL; + Expression* val = NULL; + std::string varname; + bool is_default = false; + bool got_case = this->comm_case(&is_send, &channel, &val, &varname, + &is_default); + + Block* statements = NULL; + Named_object* var = NULL; + if (this->peek_token()->is_op(OPERATOR_SEMICOLON)) + this->advance_token(); + else if (this->statement_list_may_start_here()) + { + this->gogo_->start_block(this->location()); + + if (!varname.empty()) + { + // FIXME: LOCATION is slightly wrong here. + Variable* v = new Variable(NULL, channel, false, false, false, + location); + v->set_type_from_chan_element(); + var = this->gogo_->add_variable(varname, v); + } + + this->statement_list(); + statements = this->gogo_->finish_block(this->location()); + } + + if (got_case) + clauses->add(is_send, channel, val, var, is_default, statements, location); +} + +// CommCase = ( "default" | ( "case" ( SendExpr | RecvExpr) ) ) ":" . + +bool +Parse::comm_case(bool* is_send, Expression** channel, Expression** val, + std::string* varname, bool* is_default) +{ + const Token* token = this->peek_token(); + if (token->is_keyword(KEYWORD_DEFAULT)) + { + this->advance_token(); + *is_default = true; + } + else if (token->is_keyword(KEYWORD_CASE)) + { + this->advance_token(); + if (!this->send_or_recv_expr(is_send, channel, val, varname)) + return false; + } + else + { + error_at(this->location(), "expected %<case%> or %<default%>"); + if (!token->is_op(OPERATOR_RCURLY)) + this->advance_token(); + return false; + } + + if (!this->peek_token()->is_op(OPERATOR_COLON)) + { + error_at(this->location(), "expected colon"); + return false; + } + + this->advance_token(); + + return true; +} + +// SendExpr = Expression "<-" Expression . +// RecvExpr = [ Expression ( "=" | ":=" ) ] "<-" Expression . + +bool +Parse::send_or_recv_expr(bool* is_send, Expression** channel, Expression** val, + std::string* varname) +{ + const Token* token = this->peek_token(); + source_location location = token->location(); + if (token->is_identifier()) + { + std::string recv_var = token->identifier(); + bool is_var_exported = token->is_identifier_exported(); + if (!this->advance_token()->is_op(OPERATOR_COLONEQ)) + this->unget_token(Token::make_identifier_token(recv_var, + is_var_exported, + location)); + else + { + if (!this->advance_token()->is_op(OPERATOR_CHANOP)) + { + error_at(this->location(), "expected %<<-%>"); + return false; + } + *is_send = false; + *varname = this->gogo_->pack_hidden_name(recv_var, is_var_exported); + this->advance_token(); + *channel = this->expression(PRECEDENCE_NORMAL, false, true, NULL); + return true; + } + } + + if (this->peek_token()->is_op(OPERATOR_CHANOP)) + { + *is_send = false; + this->advance_token(); + *channel = this->expression(PRECEDENCE_NORMAL, false, true, NULL); + } + else + { + Expression* left = this->expression(PRECEDENCE_CHANOP, true, true, NULL); + + if (this->peek_token()->is_op(OPERATOR_EQ)) + { + if (!this->advance_token()->is_op(OPERATOR_CHANOP)) + { + error_at(this->location(), "missing %<<-%>"); + return false; + } + *is_send = false; + *val = left; + this->advance_token(); + *channel = this->expression(PRECEDENCE_NORMAL, false, true, NULL); + } + else if (this->peek_token()->is_op(OPERATOR_CHANOP)) + { + *is_send = true; + *channel = this->verify_not_sink(left); + this->advance_token(); + *val = this->expression(PRECEDENCE_NORMAL, false, true, NULL); + } + else + { + error_at(this->location(), "expected %<<-%> or %<=%>"); + return false; + } + } + + return true; +} + +// ForStat = "for" [ Condition | ForClause | RangeClause ] Block . +// Condition = Expression . + +void +Parse::for_stat(const Label* label) +{ + gcc_assert(this->peek_token()->is_keyword(KEYWORD_FOR)); + source_location location = this->location(); + const Token* token = this->advance_token(); + + // Open a block to hold any variables defined in the init statement + // of the for statement. + this->gogo_->start_block(location); + + Block* init = NULL; + Expression* cond = NULL; + Block* post = NULL; + Range_clause range_clause; + + if (!token->is_op(OPERATOR_LCURLY)) + { + if (token->is_keyword(KEYWORD_VAR)) + { + error_at(this->location(), + "var declaration not allowed in for initializer"); + this->var_decl(); + } + + if (token->is_op(OPERATOR_SEMICOLON)) + this->for_clause(&cond, &post); + else + { + // We might be looking at a Condition, an InitStat, or a + // RangeClause. + cond = this->simple_stat(false, true, &range_clause, NULL); + if (!this->peek_token()->is_op(OPERATOR_SEMICOLON)) + { + if (cond == NULL && !range_clause.found) + error_at(this->location(), "parse error in for statement"); + } + else + { + if (range_clause.found) + error_at(this->location(), "parse error after range clause"); + + if (cond != NULL) + { + // COND is actually an expression statement for + // InitStat at the start of a ForClause. + this->expression_stat(cond); + cond = NULL; + } + + this->for_clause(&cond, &post); + } + } + } + + // Build the For_statement and note that it is the current target + // for break and continue statements. + + For_statement* sfor; + For_range_statement* srange; + Statement* s; + if (!range_clause.found) + { + sfor = Statement::make_for_statement(init, cond, post, location); + s = sfor; + srange = NULL; + } + else + { + srange = Statement::make_for_range_statement(range_clause.index, + range_clause.value, + range_clause.range, + location); + s = srange; + sfor = NULL; + } + + this->push_break_statement(s, label); + this->push_continue_statement(s, label); + + // Gather the block of statements in the loop and add them to the + // For_statement. + + this->gogo_->start_block(this->location()); + source_location end_loc = this->block(); + Block* statements = this->gogo_->finish_block(end_loc); + + if (sfor != NULL) + sfor->add_statements(statements); + else + srange->add_statements(statements); + + // This is no longer the break/continue target. + this->pop_break_statement(); + this->pop_continue_statement(); + + // Add the For_statement to the list of statements, and close out + // the block we started to hold any variables defined in the for + // statement. + + this->gogo_->add_statement(s); + + this->gogo_->add_block(this->gogo_->finish_block(this->location()), + location); +} + +// ForClause = [ InitStat ] ";" [ Condition ] ";" [ PostStat ] . +// InitStat = SimpleStat . +// PostStat = SimpleStat . + +// We have already read InitStat at this point. + +void +Parse::for_clause(Expression** cond, Block** post) +{ + gcc_assert(this->peek_token()->is_op(OPERATOR_SEMICOLON)); + this->advance_token(); + if (this->peek_token()->is_op(OPERATOR_SEMICOLON)) + *cond = NULL; + else if (this->peek_token()->is_op(OPERATOR_LCURLY)) + { + error_at(this->location(), + "unexpected semicolon or newline before %<{%>"); + *cond = NULL; + *post = NULL; + return; + } + else + *cond = this->expression(PRECEDENCE_NORMAL, false, true, NULL); + if (!this->peek_token()->is_op(OPERATOR_SEMICOLON)) + error_at(this->location(), "expected semicolon"); + else + this->advance_token(); + + if (this->peek_token()->is_op(OPERATOR_LCURLY)) + *post = NULL; + else + { + this->gogo_->start_block(this->location()); + this->simple_stat(false, false, NULL, NULL); + *post = this->gogo_->finish_block(this->location()); + } +} + +// RangeClause = IdentifierList ( "=" | ":=" ) "range" Expression . + +// This is the := version. It is called with a list of identifiers. + +void +Parse::range_clause_decl(const Typed_identifier_list* til, + Range_clause* p_range_clause) +{ + gcc_assert(this->peek_token()->is_keyword(KEYWORD_RANGE)); + source_location location = this->location(); + + p_range_clause->found = true; + + gcc_assert(til->size() >= 1); + if (til->size() > 2) + error_at(this->location(), "too many variables for range clause"); + + this->advance_token(); + Expression* expr = this->expression(PRECEDENCE_NORMAL, false, false, NULL); + p_range_clause->range = expr; + + bool any_new = false; + + const Typed_identifier* pti = &til->front(); + Named_object* no = this->init_var(*pti, NULL, expr, true, true, &any_new); + if (any_new && no->is_variable()) + no->var_value()->set_type_from_range_index(); + p_range_clause->index = Expression::make_var_reference(no, location); + + if (til->size() == 1) + p_range_clause->value = NULL; + else + { + pti = &til->back(); + bool is_new = false; + no = this->init_var(*pti, NULL, expr, true, true, &is_new); + if (is_new && no->is_variable()) + no->var_value()->set_type_from_range_value(); + if (is_new) + any_new = true; + p_range_clause->value = Expression::make_var_reference(no, location); + } + + if (!any_new) + error_at(location, "variables redeclared but no variable is new"); +} + +// The = version of RangeClause. This is called with a list of +// expressions. + +void +Parse::range_clause_expr(const Expression_list* vals, + Range_clause* p_range_clause) +{ + gcc_assert(this->peek_token()->is_keyword(KEYWORD_RANGE)); + + p_range_clause->found = true; + + gcc_assert(vals->size() >= 1); + if (vals->size() > 2) + error_at(this->location(), "too many variables for range clause"); + + this->advance_token(); + p_range_clause->range = this->expression(PRECEDENCE_NORMAL, false, false, + NULL); + + p_range_clause->index = vals->front(); + if (vals->size() == 1) + p_range_clause->value = NULL; + else + p_range_clause->value = vals->back(); +} + +// Push a statement on the break stack. + +void +Parse::push_break_statement(Statement* enclosing, const Label* label) +{ + this->break_stack_.push_back(std::make_pair(enclosing, label)); +} + +// Push a statement on the continue stack. + +void +Parse::push_continue_statement(Statement* enclosing, const Label* label) +{ + this->continue_stack_.push_back(std::make_pair(enclosing, label)); +} + +// Pop the break stack. + +void +Parse::pop_break_statement() +{ + this->break_stack_.pop_back(); +} + +// Pop the continue stack. + +void +Parse::pop_continue_statement() +{ + this->continue_stack_.pop_back(); +} + +// Find a break or continue statement given a label name. + +Statement* +Parse::find_bc_statement(const Bc_stack* bc_stack, const std::string& label) +{ + for (Bc_stack::const_reverse_iterator p = bc_stack->rbegin(); + p != bc_stack->rend(); + ++p) + if (p->second != NULL && p->second->name() == label) + return p->first; + return NULL; +} + +// BreakStat = "break" [ identifier ] . + +void +Parse::break_stat() +{ + gcc_assert(this->peek_token()->is_keyword(KEYWORD_BREAK)); + source_location location = this->location(); + + const Token* token = this->advance_token(); + Statement* enclosing; + if (!token->is_identifier()) + { + if (this->break_stack_.empty()) + { + error_at(this->location(), + "break statement not within for or switch or select"); + return; + } + enclosing = this->break_stack_.back().first; + } + else + { + enclosing = this->find_bc_statement(&this->break_stack_, + token->identifier()); + if (enclosing == NULL) + { + error_at(token->location(), + ("break label %qs not associated with " + "for or switch or select"), + Gogo::message_name(token->identifier()).c_str()); + this->advance_token(); + return; + } + this->advance_token(); + } + + Unnamed_label* label; + if (enclosing->classification() == Statement::STATEMENT_FOR) + label = enclosing->for_statement()->break_label(); + else if (enclosing->classification() == Statement::STATEMENT_FOR_RANGE) + label = enclosing->for_range_statement()->break_label(); + else if (enclosing->classification() == Statement::STATEMENT_SWITCH) + label = enclosing->switch_statement()->break_label(); + else if (enclosing->classification() == Statement::STATEMENT_TYPE_SWITCH) + label = enclosing->type_switch_statement()->break_label(); + else if (enclosing->classification() == Statement::STATEMENT_SELECT) + label = enclosing->select_statement()->break_label(); + else + gcc_unreachable(); + + this->gogo_->add_statement(Statement::make_break_statement(label, + location)); +} + +// ContinueStat = "continue" [ identifier ] . + +void +Parse::continue_stat() +{ + gcc_assert(this->peek_token()->is_keyword(KEYWORD_CONTINUE)); + source_location location = this->location(); + + const Token* token = this->advance_token(); + Statement* enclosing; + if (!token->is_identifier()) + { + if (this->continue_stack_.empty()) + { + error_at(this->location(), "continue statement not within for"); + return; + } + enclosing = this->continue_stack_.back().first; + } + else + { + enclosing = this->find_bc_statement(&this->continue_stack_, + token->identifier()); + if (enclosing == NULL) + { + error_at(token->location(), + "continue label %qs not associated with for", + Gogo::message_name(token->identifier()).c_str()); + this->advance_token(); + return; + } + this->advance_token(); + } + + Unnamed_label* label; + if (enclosing->classification() == Statement::STATEMENT_FOR) + label = enclosing->for_statement()->continue_label(); + else if (enclosing->classification() == Statement::STATEMENT_FOR_RANGE) + label = enclosing->for_range_statement()->continue_label(); + else + gcc_unreachable(); + + this->gogo_->add_statement(Statement::make_continue_statement(label, + location)); +} + +// GotoStat = "goto" identifier . + +void +Parse::goto_stat() +{ + gcc_assert(this->peek_token()->is_keyword(KEYWORD_GOTO)); + source_location location = this->location(); + const Token* token = this->advance_token(); + if (!token->is_identifier()) + error_at(this->location(), "expected label for goto"); + else + { + Label* label = this->gogo_->add_label_reference(token->identifier()); + Statement* s = Statement::make_goto_statement(label, location); + this->gogo_->add_statement(s); + this->advance_token(); + } +} + +// PackageClause = "package" PackageName . + +void +Parse::package_clause() +{ + const Token* token = this->peek_token(); + source_location location = token->location(); + std::string name; + if (!token->is_keyword(KEYWORD_PACKAGE)) + { + error_at(this->location(), "program must start with package clause"); + name = "ERROR"; + } + else + { + token = this->advance_token(); + if (token->is_identifier()) + { + name = token->identifier(); + if (name == "_") + { + error_at(this->location(), "invalid package name _"); + name = "blank"; + } + this->advance_token(); + } + else + { + error_at(this->location(), "package name must be an identifier"); + name = "ERROR"; + } + } + this->gogo_->set_package_name(name, location); +} + +// ImportDecl = "import" Decl<ImportSpec> . + +void +Parse::import_decl() +{ + gcc_assert(this->peek_token()->is_keyword(KEYWORD_IMPORT)); + this->advance_token(); + this->decl(&Parse::import_spec, NULL); +} + +// ImportSpec = [ "." | PackageName ] PackageFileName . + +void +Parse::import_spec(void*) +{ + const Token* token = this->peek_token(); + source_location location = token->location(); + + std::string local_name; + bool is_local_name_exported = false; + if (token->is_op(OPERATOR_DOT)) + { + local_name = "."; + token = this->advance_token(); + } + else if (token->is_identifier()) + { + local_name = token->identifier(); + is_local_name_exported = token->is_identifier_exported(); + token = this->advance_token(); + } + + if (!token->is_string()) + { + error_at(this->location(), "missing import package name"); + return; + } + + this->gogo_->import_package(token->string_value(), local_name, + is_local_name_exported, location); + + this->advance_token(); +} + +// SourceFile = PackageClause ";" { ImportDecl ";" } +// { TopLevelDecl ";" } . + +void +Parse::program() +{ + this->package_clause(); + + const Token* token = this->peek_token(); + if (token->is_op(OPERATOR_SEMICOLON)) + token = this->advance_token(); + else + error_at(this->location(), + "expected %<;%> or newline after package clause"); + + while (token->is_keyword(KEYWORD_IMPORT)) + { + this->import_decl(); + token = this->peek_token(); + if (token->is_op(OPERATOR_SEMICOLON)) + token = this->advance_token(); + else + error_at(this->location(), + "expected %<;%> or newline after import declaration"); + } + + while (!token->is_eof()) + { + if (this->declaration_may_start_here()) + this->declaration(); + else + { + error_at(this->location(), "expected declaration"); + do + this->advance_token(); + while (!this->peek_token()->is_eof() + && !this->peek_token()->is_op(OPERATOR_SEMICOLON) + && !this->peek_token()->is_op(OPERATOR_RCURLY)); + if (!this->peek_token()->is_eof() + && !this->peek_token()->is_op(OPERATOR_SEMICOLON)) + this->advance_token(); + } + token = this->peek_token(); + if (token->is_op(OPERATOR_SEMICOLON)) + token = this->advance_token(); + else if (!token->is_eof() || !saw_errors()) + { + error_at(this->location(), + "expected %<;%> or newline after top level declaration"); + this->skip_past_error(OPERATOR_INVALID); + } + } +} + +// Reset the current iota value. + +void +Parse::reset_iota() +{ + this->iota_ = 0; +} + +// Return the current iota value. + +int +Parse::iota_value() +{ + return this->iota_; +} + +// Increment the current iota value. + +void +Parse::increment_iota() +{ + ++this->iota_; +} + +// Skip forward to a semicolon or OP. OP will normally be +// OPERATOR_RPAREN or OPERATOR_RCURLY. If we find a semicolon, move +// past it and return. If we find OP, it will be the next token to +// read. Return true if we are OK, false if we found EOF. + +bool +Parse::skip_past_error(Operator op) +{ + const Token* token = this->peek_token(); + while (!token->is_op(op)) + { + if (token->is_eof()) + return false; + if (token->is_op(OPERATOR_SEMICOLON)) + { + this->advance_token(); + return true; + } + token = this->advance_token(); + } + return true; +} + +// Check that an expression is not a sink. + +Expression* +Parse::verify_not_sink(Expression* expr) +{ + if (expr->is_sink_expression()) + { + error_at(expr->location(), "cannot use _ as value"); + expr = Expression::make_error(expr->location()); + } + return expr; +} diff --git a/gcc/go/gofrontend/parse.h b/gcc/go/gofrontend/parse.h new file mode 100644 index 0000000..fc2eb12 --- /dev/null +++ b/gcc/go/gofrontend/parse.h @@ -0,0 +1,307 @@ +// parse.h -- Go frontend parser. -*- C++ -*- + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +#ifndef GO_PARSE_H +#define GO_PARSE_H + +class Set_iota_traverse; +class Lex; +class Gogo; +class Named_object; +class Type; +class Typed_identifier; +class Typed_identifier_list; +class Function_type; +class Block; +class Expression; +class Expression_list; +class Struct_field_list; +class Case_clauses; +class Type_case_clauses; +class Select_clauses; +class Statement; +class Label; + +// Parse the program. + +class Parse +{ + public: + Parse(Lex*, Gogo*); + + // Parse a program. + void + program(); + + private: + // Precedence values. + enum Precedence + { + PRECEDENCE_INVALID = -1, + PRECEDENCE_NORMAL = 0, + PRECEDENCE_OROR, + PRECEDENCE_ANDAND, + PRECEDENCE_CHANOP, + PRECEDENCE_RELOP, + PRECEDENCE_ADDOP, + PRECEDENCE_MULOP + }; + + // We use this when parsing the range clause of a for statement. + struct Range_clause + { + // Set to true if we found a range clause. + bool found; + // The index expression. + Expression* index; + // The value expression. + Expression* value; + // The range expression. + Expression* range; + + Range_clause() + : found(false), index(NULL), value(NULL), range(NULL) + { } + }; + + // We use this when parsing the statement at the start of a switch, + // in order to recognize type switches. + struct Type_switch + { + // Set to true if we find a type switch. + bool found; + // The variable name. + std::string name; + // The location of the variable. + source_location location; + // The expression. + Expression* expr; + + Type_switch() + : found(false), name(), location(UNKNOWN_LOCATION), expr(NULL) + { } + }; + + // A variable defined in an enclosing function referenced by the + // current function. + class Enclosing_var + { + public: + Enclosing_var(Named_object* var, Named_object* in_function, + unsigned int index) + : var_(var), in_function_(in_function), index_(index) + { } + + // We put these in a vector, so we need a default constructor. + Enclosing_var() + : var_(NULL), in_function_(NULL), index_(-1U) + { } + + Named_object* + var() const + { return this->var_; } + + Named_object* + in_function() const + { return this->in_function_; } + + unsigned int + index() const + { return this->index_; } + + private: + // The variable which is being referred to. + Named_object* var_; + // The function where the variable is defined. + Named_object* in_function_; + // The index of the field in this function's closure struct for + // this variable. + unsigned int index_; + }; + + // We store Enclosing_var entries in a set, so we need a comparator. + struct Enclosing_var_comparison + { + bool + operator()(const Enclosing_var&, const Enclosing_var&); + }; + + // A set of Enclosing_var entries. + typedef std::set<Enclosing_var, Enclosing_var_comparison> Enclosing_vars; + + // Peek at the current token from the lexer. + const Token* + peek_token(); + + // Consume the current token, return the next one. + const Token* + advance_token(); + + // Push a token back on the input stream. + void + unget_token(const Token&); + + // The location of the current token. + source_location + location(); + + // For break and continue we keep a stack of statements with + // associated labels (if any). The top of the stack is used for a + // break or continue statement with no label. + typedef std::vector<std::pair<Statement*, const Label*> > Bc_stack; + + // Parser nonterminals. + void identifier_list(Typed_identifier_list*); + Expression_list* expression_list(Expression*, bool may_be_sink); + bool qualified_ident(std::string*, Named_object**); + Type* type(); + bool type_may_start_here(); + Type* type_name(bool issue_error); + Type* array_type(bool may_use_ellipsis); + Type* map_type(); + Type* struct_type(); + void field_decl(Struct_field_list*); + Type* pointer_type(); + Type* channel_type(); + Function_type* signature(Typed_identifier*, source_location); + Typed_identifier_list* parameters(bool* is_varargs); + Typed_identifier_list* parameter_list(bool* is_varargs); + void parameter_decl(bool, Typed_identifier_list*, bool*, bool*); + Typed_identifier_list* result(); + source_location block(); + Type* interface_type(); + bool method_spec(Typed_identifier_list*); + void declaration(); + bool declaration_may_start_here(); + void decl(void (Parse::*)(void*), void*); + void list(void (Parse::*)(void*), void*, bool); + void const_decl(); + void const_spec(Type**, Expression_list**); + void type_decl(); + void type_spec(void*); + void var_decl(); + void var_spec(void*); + void init_vars(const Typed_identifier_list*, Type*, Expression_list*, + bool is_coloneq, source_location); + bool init_vars_from_call(const Typed_identifier_list*, Type*, Expression*, + bool is_coloneq, source_location); + bool init_vars_from_map(const Typed_identifier_list*, Type*, Expression*, + bool is_coloneq, source_location); + bool init_vars_from_receive(const Typed_identifier_list*, Type*, + Expression*, bool is_coloneq, source_location); + bool init_vars_from_type_guard(const Typed_identifier_list*, Type*, + Expression*, bool is_coloneq, + source_location); + Named_object* init_var(const Typed_identifier&, Type*, Expression*, + bool is_coloneq, bool type_from_init, bool* is_new); + void simple_var_decl_or_assignment(const std::string&, source_location, + Range_clause*, Type_switch*); + void function_decl(); + Typed_identifier* receiver(); + Expression* operand(bool may_be_sink); + Expression* enclosing_var_reference(Named_object*, Named_object*, + source_location); + Expression* composite_lit(Type*, int depth, source_location); + Expression* function_lit(); + Expression* create_closure(Named_object* function, Enclosing_vars*, + source_location); + Expression* primary_expr(bool may_be_sink, bool may_be_composite_lit, + bool* is_type_switch); + Expression* selector(Expression*, bool* is_type_switch); + Expression* index(Expression*); + Expression* call(Expression*); + Expression* expression(Precedence, bool may_be_sink, + bool may_be_composite_lit, bool* is_type_switch); + bool expression_may_start_here(); + Expression* unary_expr(bool may_be_sink, bool may_be_composite_lit, + bool* is_type_switch); + Expression* qualified_expr(Expression*, source_location); + Expression* id_to_expression(const std::string&, source_location); + void statement(const Label*); + bool statement_may_start_here(); + void labeled_stmt(const std::string&, source_location); + Expression* simple_stat(bool, bool, Range_clause*, Type_switch*); + bool simple_stat_may_start_here(); + void statement_list(); + bool statement_list_may_start_here(); + void expression_stat(Expression*); + void inc_dec_stat(Expression*); + void assignment(Expression*, Range_clause*); + void tuple_assignment(Expression_list*, Range_clause*); + void send(); + void go_or_defer_stat(); + void return_stat(); + void if_stat(); + void switch_stat(const Label*); + Statement* expr_switch_body(const Label*, Expression*, source_location); + void expr_case_clause(Case_clauses*); + Expression_list* expr_switch_case(bool*); + Statement* type_switch_body(const Label*, const Type_switch&, + source_location); + void type_case_clause(Named_object*, Type_case_clauses*); + void type_switch_case(std::vector<Type*>*, bool*); + void select_stat(const Label*); + void comm_clause(Select_clauses*); + bool comm_case(bool*, Expression**, Expression**, std::string*, bool*); + bool send_or_recv_expr(bool*, Expression**, Expression**, std::string*); + void for_stat(const Label*); + void for_clause(Expression**, Block**); + void range_clause_decl(const Typed_identifier_list*, Range_clause*); + void range_clause_expr(const Expression_list*, Range_clause*); + void push_break_statement(Statement*, const Label*); + void push_continue_statement(Statement*, const Label*); + void pop_break_statement(); + void pop_continue_statement(); + Statement* find_bc_statement(const Bc_stack*, const std::string&); + void break_stat(); + void continue_stat(); + void goto_stat(); + void package_clause(); + void import_decl(); + void import_spec(void*); + + void reset_iota(); + int iota_value(); + void increment_iota(); + + // Skip past an error looking for a semicolon or OP. Return true if + // all is well, false if we found EOF. + bool + skip_past_error(Operator op); + + // Verify that an expression is not a sink, and return either the + // expression or an error. + Expression* + verify_not_sink(Expression*); + + // Return the statement associated with a label in a Bc_stack, or + // NULL. + Statement* + find_bc_statement(const Bc_stack*, const std::string&) const; + + // The lexer output we are parsing. + Lex* lex_; + // The current token. + Token token_; + // A token pushed back on the input stream. + Token unget_token_; + // Whether unget_token_ is valid. + bool unget_token_valid_; + // The code we are generating. + Gogo* gogo_; + // A stack of statements for which break may be used. + Bc_stack break_stack_; + // A stack of statements for which continue may be used. + Bc_stack continue_stack_; + // The current iota value. + int iota_; + // References from the local function to variables defined in + // enclosing functions. + Enclosing_vars enclosing_vars_; +}; + + +#endif // !defined(GO_PARSE_H) diff --git a/gcc/go/gofrontend/statements.cc b/gcc/go/gofrontend/statements.cc new file mode 100644 index 0000000..10fe7e4 --- /dev/null +++ b/gcc/go/gofrontend/statements.cc @@ -0,0 +1,5146 @@ +// statements.cc -- Go frontend statements. + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +#include "go-system.h" + +#include <gmp.h> + +#ifndef ENABLE_BUILD_WITH_CXX +extern "C" +{ +#endif + +#include "intl.h" +#include "tree.h" +#include "gimple.h" +#include "convert.h" +#include "tree-iterator.h" +#include "tree-flow.h" +#include "real.h" + +#ifndef ENABLE_BUILD_WITH_CXX +} +#endif + +#include "go-c.h" +#include "types.h" +#include "expressions.h" +#include "gogo.h" +#include "statements.h" + +// Class Statement. + +Statement::Statement(Statement_classification classification, + source_location location) + : classification_(classification), location_(location) +{ +} + +Statement::~Statement() +{ +} + +// Traverse the tree. The work of walking the components is handled +// by the subclasses. + +int +Statement::traverse(Block* block, size_t* pindex, Traverse* traverse) +{ + if (this->classification_ == STATEMENT_ERROR) + return TRAVERSE_CONTINUE; + + unsigned int traverse_mask = traverse->traverse_mask(); + + if ((traverse_mask & Traverse::traverse_statements) != 0) + { + int t = traverse->statement(block, pindex, this); + if (t == TRAVERSE_EXIT) + return TRAVERSE_EXIT; + else if (t == TRAVERSE_SKIP_COMPONENTS) + return TRAVERSE_CONTINUE; + } + + // No point in checking traverse_mask here--a statement may contain + // other blocks or statements, and if we got here we always want to + // walk them. + return this->do_traverse(traverse); +} + +// Traverse the contents of a statement. + +int +Statement::traverse_contents(Traverse* traverse) +{ + return this->do_traverse(traverse); +} + +// Traverse assignments. + +bool +Statement::traverse_assignments(Traverse_assignments* tassign) +{ + if (this->classification_ == STATEMENT_ERROR) + return false; + return this->do_traverse_assignments(tassign); +} + +// Traverse an expression in a statement. This is a helper function +// for child classes. + +int +Statement::traverse_expression(Traverse* traverse, Expression** expr) +{ + if ((traverse->traverse_mask() + & (Traverse::traverse_types | Traverse::traverse_expressions)) == 0) + return TRAVERSE_CONTINUE; + return Expression::traverse(expr, traverse); +} + +// Traverse an expression list in a statement. This is a helper +// function for child classes. + +int +Statement::traverse_expression_list(Traverse* traverse, + Expression_list* expr_list) +{ + if (expr_list == NULL) + return TRAVERSE_CONTINUE; + if ((traverse->traverse_mask() & Traverse::traverse_expressions) == 0) + return TRAVERSE_CONTINUE; + return expr_list->traverse(traverse); +} + +// Traverse a type in a statement. This is a helper function for +// child classes. + +int +Statement::traverse_type(Traverse* traverse, Type* type) +{ + if ((traverse->traverse_mask() + & (Traverse::traverse_types | Traverse::traverse_expressions)) == 0) + return TRAVERSE_CONTINUE; + return Type::traverse(type, traverse); +} + +// Set type information for unnamed constants. This is really done by +// the child class. + +void +Statement::determine_types() +{ + this->do_determine_types(); +} + +// If this is a thunk statement, return it. + +Thunk_statement* +Statement::thunk_statement() +{ + Thunk_statement* ret = this->convert<Thunk_statement, STATEMENT_GO>(); + if (ret == NULL) + ret = this->convert<Thunk_statement, STATEMENT_DEFER>(); + return ret; +} + +// Get a tree for a Statement. This is really done by the child +// class. + +tree +Statement::get_tree(Translate_context* context) +{ + if (this->classification_ == STATEMENT_ERROR) + return error_mark_node; + + return this->do_get_tree(context); +} + +// Build tree nodes and set locations. + +tree +Statement::build_stmt_1(int tree_code_value, tree node) +{ + tree ret = build1(static_cast<tree_code>(tree_code_value), + void_type_node, node); + SET_EXPR_LOCATION(ret, this->location_); + return ret; +} + +// Note that this statement is erroneous. This is called by children +// when they discover an error. + +void +Statement::set_is_error() +{ + this->classification_ = STATEMENT_ERROR; +} + +// For children to call to report an error conveniently. + +void +Statement::report_error(const char* msg) +{ + error_at(this->location_, "%s", msg); + this->set_is_error(); +} + +// An error statement, used to avoid crashing after we report an +// error. + +class Error_statement : public Statement +{ + public: + Error_statement(source_location location) + : Statement(STATEMENT_ERROR, location) + { } + + protected: + int + do_traverse(Traverse*) + { return TRAVERSE_CONTINUE; } + + tree + do_get_tree(Translate_context*) + { gcc_unreachable(); } +}; + +// Make an error statement. + +Statement* +Statement::make_error_statement(source_location location) +{ + return new Error_statement(location); +} + +// Class Variable_declaration_statement. + +Variable_declaration_statement::Variable_declaration_statement( + Named_object* var) + : Statement(STATEMENT_VARIABLE_DECLARATION, var->var_value()->location()), + var_(var) +{ +} + +// We don't actually traverse the variable here; it was traversed +// while traversing the Block. + +int +Variable_declaration_statement::do_traverse(Traverse*) +{ + return TRAVERSE_CONTINUE; +} + +// Traverse the assignments in a variable declaration. Note that this +// traversal is different from the usual traversal. + +bool +Variable_declaration_statement::do_traverse_assignments( + Traverse_assignments* tassign) +{ + tassign->initialize_variable(this->var_); + return true; +} + +// Return the tree for a variable declaration. + +tree +Variable_declaration_statement::do_get_tree(Translate_context* context) +{ + tree val = this->var_->get_tree(context->gogo(), context->function()); + if (val == error_mark_node || TREE_TYPE(val) == error_mark_node) + return error_mark_node; + Variable* variable = this->var_->var_value(); + + tree init = variable->get_init_tree(context->gogo(), context->function()); + if (init == error_mark_node) + return error_mark_node; + + // If this variable lives on the heap, we need to allocate it now. + if (!variable->is_in_heap()) + { + DECL_INITIAL(val) = init; + return this->build_stmt_1(DECL_EXPR, val); + } + else + { + gcc_assert(TREE_CODE(val) == INDIRECT_REF); + tree decl = TREE_OPERAND(val, 0); + gcc_assert(TREE_CODE(decl) == VAR_DECL); + tree type = TREE_TYPE(decl); + gcc_assert(POINTER_TYPE_P(type)); + tree size = TYPE_SIZE_UNIT(TREE_TYPE(type)); + tree space = context->gogo()->allocate_memory(variable->type(), size, + this->location()); + space = fold_convert(TREE_TYPE(decl), space); + DECL_INITIAL(decl) = space; + return build2(COMPOUND_EXPR, void_type_node, + this->build_stmt_1(DECL_EXPR, decl), + build2(MODIFY_EXPR, void_type_node, val, init)); + } +} + +// Make a variable declaration. + +Statement* +Statement::make_variable_declaration(Named_object* var) +{ + return new Variable_declaration_statement(var); +} + +// Class Temporary_statement. + +// Return the type of the temporary variable. + +Type* +Temporary_statement::type() const +{ + return this->type_ != NULL ? this->type_ : this->init_->type(); +} + +// Traversal. + +int +Temporary_statement::do_traverse(Traverse* traverse) +{ + if (this->init_ == NULL) + return TRAVERSE_CONTINUE; + else + return this->traverse_expression(traverse, &this->init_); +} + +// Traverse assignments. + +bool +Temporary_statement::do_traverse_assignments(Traverse_assignments* tassign) +{ + if (this->init_ == NULL) + return false; + tassign->value(&this->init_, true, true); + return true; +} + +// Determine types. + +void +Temporary_statement::do_determine_types() +{ + if (this->init_ != NULL) + { + if (this->type_ == NULL) + this->init_->determine_type_no_context(); + else + { + Type_context context(this->type_, false); + this->init_->determine_type(&context); + } + } + + if (this->type_ == NULL) + this->type_ = this->init_->type(); + + if (this->type_->is_abstract()) + this->type_ = this->type_->make_non_abstract_type(); +} + +// Check types. + +void +Temporary_statement::do_check_types(Gogo*) +{ + if (this->type_ != NULL && this->init_ != NULL) + gcc_assert(Type::are_assignable(this->type_, this->init_->type(), NULL)); +} + +// Return a tree. + +tree +Temporary_statement::do_get_tree(Translate_context* context) +{ + gcc_assert(this->decl_ == NULL_TREE); + tree type_tree = this->type()->get_tree(context->gogo()); + if (type_tree == error_mark_node) + { + this->decl_ = error_mark_node; + return error_mark_node; + } + // We can only use create_tmp_var if the type is not addressable. + if (!TREE_ADDRESSABLE(type_tree)) + { + this->decl_ = create_tmp_var(type_tree, "GOTMP"); + DECL_SOURCE_LOCATION(this->decl_) = this->location(); + } + else + { + gcc_assert(context->function() != NULL && context->block() != NULL); + tree decl = build_decl(this->location(), VAR_DECL, + create_tmp_var_name("GOTMP"), + type_tree); + DECL_ARTIFICIAL(decl) = 1; + DECL_IGNORED_P(decl) = 1; + TREE_USED(decl) = 1; + gcc_assert(current_function_decl != NULL_TREE); + DECL_CONTEXT(decl) = current_function_decl; + + // We have to add this variable to the block so that it winds up + // in a BIND_EXPR. + tree block_tree = context->block_tree(); + gcc_assert(block_tree != NULL_TREE); + DECL_CHAIN(decl) = BLOCK_VARS(block_tree); + BLOCK_VARS(block_tree) = decl; + + this->decl_ = decl; + } + if (this->init_ != NULL) + DECL_INITIAL(this->decl_) = + Expression::convert_for_assignment(context, this->type(), + this->init_->type(), + this->init_->get_tree(context), + this->location()); + if (this->is_address_taken_) + TREE_ADDRESSABLE(this->decl_) = 1; + return this->build_stmt_1(DECL_EXPR, this->decl_); +} + +// Make and initialize a temporary variable in BLOCK. + +Temporary_statement* +Statement::make_temporary(Type* type, Expression* init, + source_location location) +{ + return new Temporary_statement(type, init, location); +} + +// An assignment statement. + +class Assignment_statement : public Statement +{ + public: + Assignment_statement(Expression* lhs, Expression* rhs, + source_location location) + : Statement(STATEMENT_ASSIGNMENT, location), + lhs_(lhs), rhs_(rhs) + { } + + protected: + int + do_traverse(Traverse* traverse); + + bool + do_traverse_assignments(Traverse_assignments*); + + void + do_determine_types(); + + void + do_check_types(Gogo*); + + tree + do_get_tree(Translate_context*); + + private: + // Left hand side--the lvalue. + Expression* lhs_; + // Right hand side--the rvalue. + Expression* rhs_; +}; + +// Traversal. + +int +Assignment_statement::do_traverse(Traverse* traverse) +{ + if (this->traverse_expression(traverse, &this->lhs_) == TRAVERSE_EXIT) + return TRAVERSE_EXIT; + return this->traverse_expression(traverse, &this->rhs_); +} + +bool +Assignment_statement::do_traverse_assignments(Traverse_assignments* tassign) +{ + tassign->assignment(&this->lhs_, &this->rhs_); + return true; +} + +// Set types for the assignment. + +void +Assignment_statement::do_determine_types() +{ + this->lhs_->determine_type_no_context(); + Type_context context(this->lhs_->type(), false); + this->rhs_->determine_type(&context); +} + +// Check types for an assignment. + +void +Assignment_statement::do_check_types(Gogo*) +{ + // The left hand side must be either addressable, a map index + // expression, or the blank identifier. + if (!this->lhs_->is_addressable() + && this->lhs_->map_index_expression() == NULL + && !this->lhs_->is_sink_expression()) + { + if (!this->lhs_->type()->is_error_type()) + this->report_error(_("invalid left hand side of assignment")); + return; + } + + Type* lhs_type = this->lhs_->type(); + Type* rhs_type = this->rhs_->type(); + std::string reason; + if (!Type::are_assignable(lhs_type, rhs_type, &reason)) + { + if (reason.empty()) + error_at(this->location(), "incompatible types in assignment"); + else + error_at(this->location(), "incompatible types in assignment (%s)", + reason.c_str()); + this->set_is_error(); + } + + if (lhs_type->is_error_type() + || rhs_type->is_error_type() + || lhs_type->is_undefined() + || rhs_type->is_undefined()) + { + // Make sure we get the error for an undefined type. + lhs_type->base(); + rhs_type->base(); + this->set_is_error(); + } +} + +// Build a tree for an assignment statement. + +tree +Assignment_statement::do_get_tree(Translate_context* context) +{ + tree rhs_tree = this->rhs_->get_tree(context); + + if (this->lhs_->is_sink_expression()) + return rhs_tree; + + tree lhs_tree = this->lhs_->get_tree(context); + + if (lhs_tree == error_mark_node || rhs_tree == error_mark_node) + return error_mark_node; + + rhs_tree = Expression::convert_for_assignment(context, this->lhs_->type(), + this->rhs_->type(), rhs_tree, + this->location()); + if (rhs_tree == error_mark_node) + return error_mark_node; + + return fold_build2_loc(this->location(), MODIFY_EXPR, void_type_node, + lhs_tree, rhs_tree); +} + +// Make an assignment statement. + +Statement* +Statement::make_assignment(Expression* lhs, Expression* rhs, + source_location location) +{ + return new Assignment_statement(lhs, rhs, location); +} + +// The Move_ordered_evals class is used to find any subexpressions of +// an expression that have an evaluation order dependency. It creates +// temporary variables to hold them. + +class Move_ordered_evals : public Traverse +{ + public: + Move_ordered_evals(Block* block) + : Traverse(traverse_expressions), + block_(block) + { } + + protected: + int + expression(Expression**); + + private: + // The block where new temporary variables should be added. + Block* block_; +}; + +int +Move_ordered_evals::expression(Expression** pexpr) +{ + // We have to look at subexpressions first. + if ((*pexpr)->traverse_subexpressions(this) == TRAVERSE_EXIT) + return TRAVERSE_EXIT; + if ((*pexpr)->must_eval_in_order()) + { + source_location loc = (*pexpr)->location(); + Temporary_statement* temp = Statement::make_temporary(NULL, *pexpr, loc); + this->block_->add_statement(temp); + *pexpr = Expression::make_temporary_reference(temp, loc); + } + return TRAVERSE_SKIP_COMPONENTS; +} + +// An assignment operation statement. + +class Assignment_operation_statement : public Statement +{ + public: + Assignment_operation_statement(Operator op, Expression* lhs, Expression* rhs, + source_location location) + : Statement(STATEMENT_ASSIGNMENT_OPERATION, location), + op_(op), lhs_(lhs), rhs_(rhs) + { } + + protected: + int + do_traverse(Traverse*); + + bool + do_traverse_assignments(Traverse_assignments*) + { gcc_unreachable(); } + + Statement* + do_lower(Gogo*, Block*); + + tree + do_get_tree(Translate_context*) + { gcc_unreachable(); } + + private: + // The operator (OPERATOR_PLUSEQ, etc.). + Operator op_; + // Left hand side. + Expression* lhs_; + // Right hand side. + Expression* rhs_; +}; + +// Traversal. + +int +Assignment_operation_statement::do_traverse(Traverse* traverse) +{ + if (this->traverse_expression(traverse, &this->lhs_) == TRAVERSE_EXIT) + return TRAVERSE_EXIT; + return this->traverse_expression(traverse, &this->rhs_); +} + +// Lower an assignment operation statement to a regular assignment +// statement. + +Statement* +Assignment_operation_statement::do_lower(Gogo*, Block* enclosing) +{ + source_location loc = this->location(); + + // We have to evaluate the left hand side expression only once. We + // do this by moving out any expression with side effects. + Block* b = new Block(enclosing, loc); + Move_ordered_evals moe(b); + this->lhs_->traverse_subexpressions(&moe); + + Expression* lval = this->lhs_->copy(); + + Operator op; + switch (this->op_) + { + case OPERATOR_PLUSEQ: + op = OPERATOR_PLUS; + break; + case OPERATOR_MINUSEQ: + op = OPERATOR_MINUS; + break; + case OPERATOR_OREQ: + op = OPERATOR_OR; + break; + case OPERATOR_XOREQ: + op = OPERATOR_XOR; + break; + case OPERATOR_MULTEQ: + op = OPERATOR_MULT; + break; + case OPERATOR_DIVEQ: + op = OPERATOR_DIV; + break; + case OPERATOR_MODEQ: + op = OPERATOR_MOD; + break; + case OPERATOR_LSHIFTEQ: + op = OPERATOR_LSHIFT; + break; + case OPERATOR_RSHIFTEQ: + op = OPERATOR_RSHIFT; + break; + case OPERATOR_ANDEQ: + op = OPERATOR_AND; + break; + case OPERATOR_BITCLEAREQ: + op = OPERATOR_BITCLEAR; + break; + default: + gcc_unreachable(); + } + + Expression* binop = Expression::make_binary(op, lval, this->rhs_, loc); + Statement* s = Statement::make_assignment(this->lhs_, binop, loc); + if (b->statements()->empty()) + { + delete b; + return s; + } + else + { + b->add_statement(s); + return Statement::make_block_statement(b, loc); + } +} + +// Make an assignment operation statement. + +Statement* +Statement::make_assignment_operation(Operator op, Expression* lhs, + Expression* rhs, source_location location) +{ + return new Assignment_operation_statement(op, lhs, rhs, location); +} + +// A tuple assignment statement. This differs from an assignment +// statement in that the right-hand-side expressions are evaluated in +// parallel. + +class Tuple_assignment_statement : public Statement +{ + public: + Tuple_assignment_statement(Expression_list* lhs, Expression_list* rhs, + source_location location) + : Statement(STATEMENT_TUPLE_ASSIGNMENT, location), + lhs_(lhs), rhs_(rhs) + { } + + protected: + int + do_traverse(Traverse* traverse); + + bool + do_traverse_assignments(Traverse_assignments*) + { gcc_unreachable(); } + + Statement* + do_lower(Gogo*, Block*); + + tree + do_get_tree(Translate_context*) + { gcc_unreachable(); } + + private: + // Left hand side--a list of lvalues. + Expression_list* lhs_; + // Right hand side--a list of rvalues. + Expression_list* rhs_; +}; + +// Traversal. + +int +Tuple_assignment_statement::do_traverse(Traverse* traverse) +{ + if (this->traverse_expression_list(traverse, this->lhs_) == TRAVERSE_EXIT) + return TRAVERSE_EXIT; + return this->traverse_expression_list(traverse, this->rhs_); +} + +// Lower a tuple assignment. We use temporary variables to split it +// up into a set of single assignments. + +Statement* +Tuple_assignment_statement::do_lower(Gogo*, Block* enclosing) +{ + source_location loc = this->location(); + + Block* b = new Block(enclosing, loc); + + // First move out any subexpressions on the left hand side. The + // right hand side will be evaluated in the required order anyhow. + Move_ordered_evals moe(b); + for (Expression_list::const_iterator plhs = this->lhs_->begin(); + plhs != this->lhs_->end(); + ++plhs) + (*plhs)->traverse_subexpressions(&moe); + + std::vector<Temporary_statement*> temps; + temps.reserve(this->lhs_->size()); + + Expression_list::const_iterator prhs = this->rhs_->begin(); + for (Expression_list::const_iterator plhs = this->lhs_->begin(); + plhs != this->lhs_->end(); + ++plhs, ++prhs) + { + gcc_assert(prhs != this->rhs_->end()); + + if ((*plhs)->is_sink_expression()) + { + b->add_statement(Statement::make_statement(*prhs)); + continue; + } + + Temporary_statement* temp = Statement::make_temporary((*plhs)->type(), + *prhs, loc); + b->add_statement(temp); + temps.push_back(temp); + + } + gcc_assert(prhs == this->rhs_->end()); + + prhs = this->rhs_->begin(); + std::vector<Temporary_statement*>::const_iterator ptemp = temps.begin(); + for (Expression_list::const_iterator plhs = this->lhs_->begin(); + plhs != this->lhs_->end(); + ++plhs, ++prhs) + { + if ((*plhs)->is_sink_expression()) + continue; + + Expression* ref = Expression::make_temporary_reference(*ptemp, loc); + Statement* s = Statement::make_assignment(*plhs, ref, loc); + b->add_statement(s); + ++ptemp; + } + gcc_assert(ptemp == temps.end()); + + return Statement::make_block_statement(b, loc); +} + +// Make a tuple assignment statement. + +Statement* +Statement::make_tuple_assignment(Expression_list* lhs, Expression_list* rhs, + source_location location) +{ + return new Tuple_assignment_statement(lhs, rhs, location); +} + +// A tuple assignment from a map index expression. +// v, ok = m[k] + +class Tuple_map_assignment_statement : public Statement +{ +public: + Tuple_map_assignment_statement(Expression* val, Expression* present, + Expression* map_index, + source_location location) + : Statement(STATEMENT_TUPLE_MAP_ASSIGNMENT, location), + val_(val), present_(present), map_index_(map_index) + { } + + protected: + int + do_traverse(Traverse* traverse); + + bool + do_traverse_assignments(Traverse_assignments*) + { gcc_unreachable(); } + + Statement* + do_lower(Gogo*, Block*); + + tree + do_get_tree(Translate_context*) + { gcc_unreachable(); } + + private: + // Lvalue which receives the value from the map. + Expression* val_; + // Lvalue which receives whether the key value was present. + Expression* present_; + // The map index expression. + Expression* map_index_; +}; + +// Traversal. + +int +Tuple_map_assignment_statement::do_traverse(Traverse* traverse) +{ + if (this->traverse_expression(traverse, &this->val_) == TRAVERSE_EXIT + || this->traverse_expression(traverse, &this->present_) == TRAVERSE_EXIT) + return TRAVERSE_EXIT; + return this->traverse_expression(traverse, &this->map_index_); +} + +// Lower a tuple map assignment. + +Statement* +Tuple_map_assignment_statement::do_lower(Gogo*, Block* enclosing) +{ + source_location loc = this->location(); + + Map_index_expression* map_index = this->map_index_->map_index_expression(); + if (map_index == NULL) + { + this->report_error(_("expected map index on right hand side")); + return Statement::make_error_statement(loc); + } + Map_type* map_type = map_index->get_map_type(); + + Block* b = new Block(enclosing, loc); + + // Move out any subexpressions to make sure that functions are + // called in the required order. + Move_ordered_evals moe(b); + this->val_->traverse_subexpressions(&moe); + this->present_->traverse_subexpressions(&moe); + + // Copy the key value into a temporary so that we can take its + // address without pushing the value onto the heap. + + // var key_temp KEY_TYPE = MAP_INDEX + Temporary_statement* key_temp = + Statement::make_temporary(map_type->key_type(), map_index->index(), loc); + b->add_statement(key_temp); + + // var val_temp VAL_TYPE + Temporary_statement* val_temp = + Statement::make_temporary(map_type->val_type(), NULL, loc); + b->add_statement(val_temp); + + // var present_temp bool + Temporary_statement* present_temp = + Statement::make_temporary(Type::lookup_bool_type(), NULL, loc); + b->add_statement(present_temp); + + // func mapaccess2(hmap map[k]v, key *k, val *v) bool + source_location bloc = BUILTINS_LOCATION; + Typed_identifier_list* param_types = new Typed_identifier_list(); + param_types->push_back(Typed_identifier("hmap", map_type, bloc)); + Type* pkey_type = Type::make_pointer_type(map_type->key_type()); + param_types->push_back(Typed_identifier("key", pkey_type, bloc)); + Type* pval_type = Type::make_pointer_type(map_type->val_type()); + param_types->push_back(Typed_identifier("val", pval_type, bloc)); + + Typed_identifier_list* ret_types = new Typed_identifier_list(); + ret_types->push_back(Typed_identifier("", Type::make_boolean_type(), bloc)); + + Function_type* fntype = Type::make_function_type(NULL, param_types, + ret_types, bloc); + Named_object* mapaccess2 = + Named_object::make_function_declaration("mapaccess2", NULL, fntype, bloc); + mapaccess2->func_declaration_value()->set_asm_name("runtime.mapaccess2"); + + // present_temp = mapaccess2(MAP, &key_temp, &val_temp) + Expression* func = Expression::make_func_reference(mapaccess2, NULL, loc); + Expression_list* params = new Expression_list(); + params->push_back(map_index->map()); + Expression* ref = Expression::make_temporary_reference(key_temp, loc); + params->push_back(Expression::make_unary(OPERATOR_AND, ref, loc)); + ref = Expression::make_temporary_reference(val_temp, loc); + params->push_back(Expression::make_unary(OPERATOR_AND, ref, loc)); + Expression* call = Expression::make_call(func, params, false, loc); + + ref = Expression::make_temporary_reference(present_temp, loc); + Statement* s = Statement::make_assignment(ref, call, loc); + b->add_statement(s); + + // val = val_temp + ref = Expression::make_temporary_reference(val_temp, loc); + s = Statement::make_assignment(this->val_, ref, loc); + b->add_statement(s); + + // present = present_temp + ref = Expression::make_temporary_reference(present_temp, loc); + s = Statement::make_assignment(this->present_, ref, loc); + b->add_statement(s); + + return Statement::make_block_statement(b, loc); +} + +// Make a map assignment statement which returns a pair of values. + +Statement* +Statement::make_tuple_map_assignment(Expression* val, Expression* present, + Expression* map_index, + source_location location) +{ + return new Tuple_map_assignment_statement(val, present, map_index, location); +} + +// Assign a pair of entries to a map. +// m[k] = v, p + +class Map_assignment_statement : public Statement +{ + public: + Map_assignment_statement(Expression* map_index, + Expression* val, Expression* should_set, + source_location location) + : Statement(STATEMENT_MAP_ASSIGNMENT, location), + map_index_(map_index), val_(val), should_set_(should_set) + { } + + protected: + int + do_traverse(Traverse* traverse); + + bool + do_traverse_assignments(Traverse_assignments*) + { gcc_unreachable(); } + + Statement* + do_lower(Gogo*, Block*); + + tree + do_get_tree(Translate_context*) + { gcc_unreachable(); } + + private: + // A reference to the map index which should be set or deleted. + Expression* map_index_; + // The value to add to the map. + Expression* val_; + // Whether or not to add the value. + Expression* should_set_; +}; + +// Traverse a map assignment. + +int +Map_assignment_statement::do_traverse(Traverse* traverse) +{ + if (this->traverse_expression(traverse, &this->map_index_) == TRAVERSE_EXIT + || this->traverse_expression(traverse, &this->val_) == TRAVERSE_EXIT) + return TRAVERSE_EXIT; + return this->traverse_expression(traverse, &this->should_set_); +} + +// Lower a map assignment to a function call. + +Statement* +Map_assignment_statement::do_lower(Gogo*, Block* enclosing) +{ + source_location loc = this->location(); + + Map_index_expression* map_index = this->map_index_->map_index_expression(); + if (map_index == NULL) + { + this->report_error(_("expected map index on left hand side")); + return Statement::make_error_statement(loc); + } + Map_type* map_type = map_index->get_map_type(); + + Block* b = new Block(enclosing, loc); + + // Evaluate the map first to get order of evaluation right. + // map_temp := m // we are evaluating m[k] = v, p + Temporary_statement* map_temp = Statement::make_temporary(map_type, + map_index->map(), + loc); + b->add_statement(map_temp); + + // var key_temp MAP_KEY_TYPE = k + Temporary_statement* key_temp = + Statement::make_temporary(map_type->key_type(), map_index->index(), loc); + b->add_statement(key_temp); + + // var val_temp MAP_VAL_TYPE = v + Temporary_statement* val_temp = + Statement::make_temporary(map_type->val_type(), this->val_, loc); + b->add_statement(val_temp); + + // func mapassign2(hmap map[k]v, key *k, val *v, p) + source_location bloc = BUILTINS_LOCATION; + Typed_identifier_list* param_types = new Typed_identifier_list(); + param_types->push_back(Typed_identifier("hmap", map_type, bloc)); + Type* pkey_type = Type::make_pointer_type(map_type->key_type()); + param_types->push_back(Typed_identifier("key", pkey_type, bloc)); + Type* pval_type = Type::make_pointer_type(map_type->val_type()); + param_types->push_back(Typed_identifier("val", pval_type, bloc)); + param_types->push_back(Typed_identifier("p", Type::lookup_bool_type(), bloc)); + Function_type* fntype = Type::make_function_type(NULL, param_types, + NULL, bloc); + Named_object* mapassign2 = + Named_object::make_function_declaration("mapassign2", NULL, fntype, bloc); + mapassign2->func_declaration_value()->set_asm_name("runtime.mapassign2"); + + // mapassign2(map_temp, &key_temp, &val_temp, p) + Expression* func = Expression::make_func_reference(mapassign2, NULL, loc); + Expression_list* params = new Expression_list(); + params->push_back(Expression::make_temporary_reference(map_temp, loc)); + Expression* ref = Expression::make_temporary_reference(key_temp, loc); + params->push_back(Expression::make_unary(OPERATOR_AND, ref, loc)); + ref = Expression::make_temporary_reference(val_temp, loc); + params->push_back(Expression::make_unary(OPERATOR_AND, ref, loc)); + params->push_back(this->should_set_); + Expression* call = Expression::make_call(func, params, false, loc); + Statement* s = Statement::make_statement(call); + b->add_statement(s); + + return Statement::make_block_statement(b, loc); +} + +// Make a statement which assigns a pair of entries to a map. + +Statement* +Statement::make_map_assignment(Expression* map_index, + Expression* val, Expression* should_set, + source_location location) +{ + return new Map_assignment_statement(map_index, val, should_set, location); +} + +// A tuple assignment from a receive statement. + +class Tuple_receive_assignment_statement : public Statement +{ + public: + Tuple_receive_assignment_statement(Expression* val, Expression* success, + Expression* channel, + source_location location) + : Statement(STATEMENT_TUPLE_RECEIVE_ASSIGNMENT, location), + val_(val), success_(success), channel_(channel) + { } + + protected: + int + do_traverse(Traverse* traverse); + + bool + do_traverse_assignments(Traverse_assignments*) + { gcc_unreachable(); } + + Statement* + do_lower(Gogo*, Block*); + + tree + do_get_tree(Translate_context*) + { gcc_unreachable(); } + + private: + // Lvalue which receives the value from the channel. + Expression* val_; + // Lvalue which receives whether the read succeeded or failed. + Expression* success_; + // The channel on which we receive the value. + Expression* channel_; +}; + +// Traversal. + +int +Tuple_receive_assignment_statement::do_traverse(Traverse* traverse) +{ + if (this->traverse_expression(traverse, &this->val_) == TRAVERSE_EXIT + || this->traverse_expression(traverse, &this->success_) == TRAVERSE_EXIT) + return TRAVERSE_EXIT; + return this->traverse_expression(traverse, &this->channel_); +} + +// Lower to a function call. + +Statement* +Tuple_receive_assignment_statement::do_lower(Gogo*, Block* enclosing) +{ + source_location loc = this->location(); + + Channel_type* channel_type = this->channel_->type()->channel_type(); + if (channel_type == NULL) + { + this->report_error(_("expected channel")); + return Statement::make_error_statement(loc); + } + if (!channel_type->may_receive()) + { + this->report_error(_("invalid receive on send-only channel")); + return Statement::make_error_statement(loc); + } + + Block* b = new Block(enclosing, loc); + + // Make sure that any subexpressions on the left hand side are + // evaluated in the right order. + Move_ordered_evals moe(b); + this->val_->traverse_subexpressions(&moe); + this->success_->traverse_subexpressions(&moe); + + // var val_temp ELEMENT_TYPE + Temporary_statement* val_temp = + Statement::make_temporary(channel_type->element_type(), NULL, loc); + b->add_statement(val_temp); + + // var success_temp bool + Temporary_statement* success_temp = + Statement::make_temporary(Type::lookup_bool_type(), NULL, loc); + b->add_statement(success_temp); + + // func chanrecv2(c chan T, val *T) bool + source_location bloc = BUILTINS_LOCATION; + Typed_identifier_list* param_types = new Typed_identifier_list(); + param_types->push_back(Typed_identifier("c", channel_type, bloc)); + Type* pelement_type = Type::make_pointer_type(channel_type->element_type()); + param_types->push_back(Typed_identifier("val", pelement_type, bloc)); + + Typed_identifier_list* ret_types = new Typed_identifier_list(); + ret_types->push_back(Typed_identifier("", Type::lookup_bool_type(), bloc)); + + Function_type* fntype = Type::make_function_type(NULL, param_types, + ret_types, bloc); + Named_object* chanrecv2 = + Named_object::make_function_declaration("chanrecv2", NULL, fntype, bloc); + chanrecv2->func_declaration_value()->set_asm_name("runtime.chanrecv2"); + + // success_temp = chanrecv2(channel, &val_temp) + Expression* func = Expression::make_func_reference(chanrecv2, NULL, loc); + Expression_list* params = new Expression_list(); + params->push_back(this->channel_); + Expression* ref = Expression::make_temporary_reference(val_temp, loc); + params->push_back(Expression::make_unary(OPERATOR_AND, ref, loc)); + Expression* call = Expression::make_call(func, params, false, loc); + ref = Expression::make_temporary_reference(success_temp, loc); + Statement* s = Statement::make_assignment(ref, call, loc); + b->add_statement(s); + + // val = val_temp + ref = Expression::make_temporary_reference(val_temp, loc); + s = Statement::make_assignment(this->val_, ref, loc); + b->add_statement(s); + + // success = success_temp + ref = Expression::make_temporary_reference(success_temp, loc); + s = Statement::make_assignment(this->success_, ref, loc); + b->add_statement(s); + + return Statement::make_block_statement(b, loc); +} + +// Make a nonblocking receive statement. + +Statement* +Statement::make_tuple_receive_assignment(Expression* val, Expression* success, + Expression* channel, + source_location location) +{ + return new Tuple_receive_assignment_statement(val, success, channel, + location); +} + +// An assignment to a pair of values from a type guard. This is a +// conditional type guard. v, ok = i.(type). + +class Tuple_type_guard_assignment_statement : public Statement +{ + public: + Tuple_type_guard_assignment_statement(Expression* val, Expression* ok, + Expression* expr, Type* type, + source_location location) + : Statement(STATEMENT_TUPLE_TYPE_GUARD_ASSIGNMENT, location), + val_(val), ok_(ok), expr_(expr), type_(type) + { } + + protected: + int + do_traverse(Traverse*); + + bool + do_traverse_assignments(Traverse_assignments*) + { gcc_unreachable(); } + + Statement* + do_lower(Gogo*, Block*); + + tree + do_get_tree(Translate_context*) + { gcc_unreachable(); } + + private: + Call_expression* + lower_to_empty_interface(const char*); + + Call_expression* + lower_to_type(const char*); + + void + lower_to_object_type(Block*, const char*); + + // The variable which recieves the converted value. + Expression* val_; + // The variable which receives the indication of success. + Expression* ok_; + // The expression being converted. + Expression* expr_; + // The type to which the expression is being converted. + Type* type_; +}; + +// Traverse a type guard tuple assignment. + +int +Tuple_type_guard_assignment_statement::do_traverse(Traverse* traverse) +{ + if (this->traverse_expression(traverse, &this->val_) == TRAVERSE_EXIT + || this->traverse_expression(traverse, &this->ok_) == TRAVERSE_EXIT + || this->traverse_type(traverse, this->type_) == TRAVERSE_EXIT) + return TRAVERSE_EXIT; + return this->traverse_expression(traverse, &this->expr_); +} + +// Lower to a function call. + +Statement* +Tuple_type_guard_assignment_statement::do_lower(Gogo*, Block* enclosing) +{ + source_location loc = this->location(); + + Type* expr_type = this->expr_->type(); + if (expr_type->interface_type() == NULL) + { + this->report_error(_("type assertion only valid for interface types")); + return Statement::make_error_statement(loc); + } + + Block* b = new Block(enclosing, loc); + + // Make sure that any subexpressions on the left hand side are + // evaluated in the right order. + Move_ordered_evals moe(b); + this->val_->traverse_subexpressions(&moe); + this->ok_->traverse_subexpressions(&moe); + + bool expr_is_empty = expr_type->interface_type()->is_empty(); + Call_expression* call; + if (this->type_->interface_type() != NULL) + { + if (this->type_->interface_type()->is_empty()) + call = this->lower_to_empty_interface(expr_is_empty + ? "ifaceE2E2" + : "ifaceI2E2"); + else + call = this->lower_to_type(expr_is_empty ? "ifaceE2I2" : "ifaceI2I2"); + } + else if (this->type_->points_to() != NULL) + call = this->lower_to_type(expr_is_empty ? "ifaceE2T2P" : "ifaceI2T2P"); + else + { + this->lower_to_object_type(b, expr_is_empty ? "ifaceE2T2" : "ifaceI2T2"); + call = NULL; + } + + if (call != NULL) + { + Expression* res = Expression::make_call_result(call, 0); + Statement* s = Statement::make_assignment(this->val_, res, loc); + b->add_statement(s); + + res = Expression::make_call_result(call, 1); + s = Statement::make_assignment(this->ok_, res, loc); + b->add_statement(s); + } + + return Statement::make_block_statement(b, loc); +} + +// Lower a conversion to an empty interface type. + +Call_expression* +Tuple_type_guard_assignment_statement::lower_to_empty_interface( + const char *fnname) +{ + source_location loc = this->location(); + + // func FNNAME(interface) (empty, bool) + source_location bloc = BUILTINS_LOCATION; + Typed_identifier_list* param_types = new Typed_identifier_list(); + param_types->push_back(Typed_identifier("i", this->expr_->type(), bloc)); + Typed_identifier_list* ret_types = new Typed_identifier_list(); + ret_types->push_back(Typed_identifier("ret", this->type_, bloc)); + ret_types->push_back(Typed_identifier("ok", Type::lookup_bool_type(), bloc)); + Function_type* fntype = Type::make_function_type(NULL, param_types, + ret_types, bloc); + Named_object* fn = + Named_object::make_function_declaration(fnname, NULL, fntype, bloc); + std::string asm_name = "runtime."; + asm_name += fnname; + fn->func_declaration_value()->set_asm_name(asm_name); + + // val, ok = FNNAME(expr) + Expression* func = Expression::make_func_reference(fn, NULL, loc); + Expression_list* params = new Expression_list(); + params->push_back(this->expr_); + return Expression::make_call(func, params, false, loc); +} + +// Lower a conversion to a non-empty interface type or a pointer type. + +Call_expression* +Tuple_type_guard_assignment_statement::lower_to_type(const char* fnname) +{ + source_location loc = this->location(); + + // func FNNAME(*descriptor, interface) (interface, bool) + source_location bloc = BUILTINS_LOCATION; + Typed_identifier_list* param_types = new Typed_identifier_list(); + param_types->push_back(Typed_identifier("inter", + Type::make_type_descriptor_ptr_type(), + bloc)); + param_types->push_back(Typed_identifier("i", this->expr_->type(), bloc)); + Typed_identifier_list* ret_types = new Typed_identifier_list(); + ret_types->push_back(Typed_identifier("ret", this->type_, bloc)); + ret_types->push_back(Typed_identifier("ok", Type::lookup_bool_type(), bloc)); + Function_type* fntype = Type::make_function_type(NULL, param_types, + ret_types, bloc); + Named_object* fn = + Named_object::make_function_declaration(fnname, NULL, fntype, bloc); + std::string asm_name = "runtime."; + asm_name += fnname; + fn->func_declaration_value()->set_asm_name(asm_name); + + // val, ok = FNNAME(type_descriptor, expr) + Expression* func = Expression::make_func_reference(fn, NULL, loc); + Expression_list* params = new Expression_list(); + params->push_back(Expression::make_type_descriptor(this->type_, loc)); + params->push_back(this->expr_); + return Expression::make_call(func, params, false, loc); +} + +// Lower a conversion to a non-interface non-pointer type. + +void +Tuple_type_guard_assignment_statement::lower_to_object_type(Block* b, + const char *fnname) +{ + source_location loc = this->location(); + + // var val_temp TYPE + Temporary_statement* val_temp = Statement::make_temporary(this->type_, + NULL, loc); + b->add_statement(val_temp); + + // func FNNAME(*descriptor, interface, *T) bool + source_location bloc = BUILTINS_LOCATION; + Typed_identifier_list* param_types = new Typed_identifier_list(); + param_types->push_back(Typed_identifier("inter", + Type::make_type_descriptor_ptr_type(), + bloc)); + param_types->push_back(Typed_identifier("i", this->expr_->type(), bloc)); + Type* ptype = Type::make_pointer_type(this->type_); + param_types->push_back(Typed_identifier("v", ptype, bloc)); + Typed_identifier_list* ret_types = new Typed_identifier_list(); + ret_types->push_back(Typed_identifier("ok", Type::lookup_bool_type(), bloc)); + Function_type* fntype = Type::make_function_type(NULL, param_types, + ret_types, bloc); + Named_object* fn = + Named_object::make_function_declaration(fnname, NULL, fntype, bloc); + std::string asm_name = "runtime."; + asm_name += fnname; + fn->func_declaration_value()->set_asm_name(asm_name); + + // ok = FNNAME(type_descriptor, expr, &val_temp) + Expression* func = Expression::make_func_reference(fn, NULL, loc); + Expression_list* params = new Expression_list(); + params->push_back(Expression::make_type_descriptor(this->type_, loc)); + params->push_back(this->expr_); + Expression* ref = Expression::make_temporary_reference(val_temp, loc); + params->push_back(Expression::make_unary(OPERATOR_AND, ref, loc)); + Expression* call = Expression::make_call(func, params, false, loc); + Statement* s = Statement::make_assignment(this->ok_, call, loc); + b->add_statement(s); + + // val = val_temp + ref = Expression::make_temporary_reference(val_temp, loc); + s = Statement::make_assignment(this->val_, ref, loc); + b->add_statement(s); +} + +// Make an assignment from a type guard to a pair of variables. + +Statement* +Statement::make_tuple_type_guard_assignment(Expression* val, Expression* ok, + Expression* expr, Type* type, + source_location location) +{ + return new Tuple_type_guard_assignment_statement(val, ok, expr, type, + location); +} + +// An expression statement. + +class Expression_statement : public Statement +{ + public: + Expression_statement(Expression* expr) + : Statement(STATEMENT_EXPRESSION, expr->location()), + expr_(expr) + { } + + protected: + int + do_traverse(Traverse* traverse) + { return this->traverse_expression(traverse, &this->expr_); } + + void + do_determine_types() + { this->expr_->determine_type_no_context(); } + + bool + do_may_fall_through() const; + + tree + do_get_tree(Translate_context* context) + { return this->expr_->get_tree(context); } + + private: + Expression* expr_; +}; + +// An expression statement may fall through unless it is a call to a +// function which does not return. + +bool +Expression_statement::do_may_fall_through() const +{ + const Call_expression* call = this->expr_->call_expression(); + if (call != NULL) + { + const Expression* fn = call->fn(); + const Func_expression* fe = fn->func_expression(); + if (fe != NULL) + { + const Named_object* no = fe->named_object(); + + Function_type* fntype; + if (no->is_function()) + fntype = no->func_value()->type(); + else if (no->is_function_declaration()) + fntype = no->func_declaration_value()->type(); + else + fntype = NULL; + + // The builtin function panic does not return. + if (fntype != NULL && fntype->is_builtin() && no->name() == "panic") + return false; + } + } + return true; +} + +// Make an expression statement from an Expression. + +Statement* +Statement::make_statement(Expression* expr) +{ + return new Expression_statement(expr); +} + +// A block statement--a list of statements which may include variable +// definitions. + +class Block_statement : public Statement +{ + public: + Block_statement(Block* block, source_location location) + : Statement(STATEMENT_BLOCK, location), + block_(block) + { } + + protected: + int + do_traverse(Traverse* traverse) + { return this->block_->traverse(traverse); } + + void + do_determine_types() + { this->block_->determine_types(); } + + bool + do_may_fall_through() const + { return this->block_->may_fall_through(); } + + tree + do_get_tree(Translate_context* context) + { return this->block_->get_tree(context); } + + private: + Block* block_; +}; + +// Make a block statement. + +Statement* +Statement::make_block_statement(Block* block, source_location location) +{ + return new Block_statement(block, location); +} + +// An increment or decrement statement. + +class Inc_dec_statement : public Statement +{ + public: + Inc_dec_statement(bool is_inc, Expression* expr) + : Statement(STATEMENT_INCDEC, expr->location()), + expr_(expr), is_inc_(is_inc) + { } + + protected: + int + do_traverse(Traverse* traverse) + { return this->traverse_expression(traverse, &this->expr_); } + + bool + do_traverse_assignments(Traverse_assignments*) + { gcc_unreachable(); } + + Statement* + do_lower(Gogo*, Block*); + + tree + do_get_tree(Translate_context*) + { gcc_unreachable(); } + + private: + // The l-value to increment or decrement. + Expression* expr_; + // Whether to increment or decrement. + bool is_inc_; +}; + +// Lower to += or -=. + +Statement* +Inc_dec_statement::do_lower(Gogo*, Block*) +{ + source_location loc = this->location(); + + mpz_t oval; + mpz_init_set_ui(oval, 1UL); + Expression* oexpr = Expression::make_integer(&oval, NULL, loc); + mpz_clear(oval); + + Operator op = this->is_inc_ ? OPERATOR_PLUSEQ : OPERATOR_MINUSEQ; + return Statement::make_assignment_operation(op, this->expr_, oexpr, loc); +} + +// Make an increment statement. + +Statement* +Statement::make_inc_statement(Expression* expr) +{ + return new Inc_dec_statement(true, expr); +} + +// Make a decrement statement. + +Statement* +Statement::make_dec_statement(Expression* expr) +{ + return new Inc_dec_statement(false, expr); +} + +// Class Thunk_statement. This is the base class for go and defer +// statements. + +const char* const Thunk_statement::thunk_field_fn = "fn"; + +const char* const Thunk_statement::thunk_field_receiver = "receiver"; + +// Constructor. + +Thunk_statement::Thunk_statement(Statement_classification classification, + Call_expression* call, + source_location location) + : Statement(classification, location), + call_(call), struct_type_(NULL) +{ +} + +// Return whether this is a simple statement which does not require a +// thunk. + +bool +Thunk_statement::is_simple(Function_type* fntype) const +{ + // We need a thunk to call a method, or to pass a variable number of + // arguments. + if (fntype->is_method() || fntype->is_varargs()) + return false; + + // A defer statement requires a thunk to set up for whether the + // function can call recover. + if (this->classification() == STATEMENT_DEFER) + return false; + + // We can only permit a single parameter of pointer type. + const Typed_identifier_list* parameters = fntype->parameters(); + if (parameters != NULL + && (parameters->size() > 1 + || (parameters->size() == 1 + && parameters->begin()->type()->points_to() == NULL))) + return false; + + // If the function returns multiple values, or returns a type other + // than integer, floating point, or pointer, then it may get a + // hidden first parameter, in which case we need the more + // complicated approach. This is true even though we are going to + // ignore the return value. + const Typed_identifier_list* results = fntype->results(); + if (results != NULL + && (results->size() > 1 + || (results->size() == 1 + && !results->begin()->type()->is_basic_type() + && results->begin()->type()->points_to() == NULL))) + return false; + + // If this calls something which is not a simple function, then we + // need a thunk. + Expression* fn = this->call_->call_expression()->fn(); + if (fn->bound_method_expression() != NULL + || fn->interface_field_reference_expression() != NULL) + return false; + + return true; +} + +// Traverse a thunk statement. + +int +Thunk_statement::do_traverse(Traverse* traverse) +{ + return this->traverse_expression(traverse, &this->call_); +} + +// We implement traverse_assignment for a thunk statement because it +// effectively copies the function call. + +bool +Thunk_statement::do_traverse_assignments(Traverse_assignments* tassign) +{ + Expression* fn = this->call_->call_expression()->fn(); + Expression* fn2 = fn; + tassign->value(&fn2, true, false); + return true; +} + +// Determine types in a thunk statement. + +void +Thunk_statement::do_determine_types() +{ + this->call_->determine_type_no_context(); + + // Now that we know the types of the call, build the struct used to + // pass parameters. + Function_type* fntype = + this->call_->call_expression()->get_function_type(); + if (fntype != NULL && !this->is_simple(fntype)) + this->struct_type_ = this->build_struct(fntype); +} + +// Check types in a thunk statement. + +void +Thunk_statement::do_check_types(Gogo*) +{ + Call_expression* ce = this->call_->call_expression(); + Function_type* fntype = ce->get_function_type(); + if (fntype != NULL && fntype->is_method()) + { + Expression* fn = ce->fn(); + if (fn->bound_method_expression() == NULL + && fn->interface_field_reference_expression() == NULL) + this->report_error(_("no object for method call")); + } +} + +// The Traverse class used to find and simplify thunk statements. + +class Simplify_thunk_traverse : public Traverse +{ + public: + Simplify_thunk_traverse(Gogo* gogo) + : Traverse(traverse_blocks), + gogo_(gogo) + { } + + int + block(Block*); + + private: + Gogo* gogo_; +}; + +int +Simplify_thunk_traverse::block(Block* b) +{ + // The parser ensures that thunk statements always appear at the end + // of a block. + if (b->statements()->size() < 1) + return TRAVERSE_CONTINUE; + Thunk_statement* stat = b->statements()->back()->thunk_statement(); + if (stat == NULL) + return TRAVERSE_CONTINUE; + if (stat->simplify_statement(this->gogo_, b)) + return TRAVERSE_SKIP_COMPONENTS; + return TRAVERSE_CONTINUE; +} + +// Simplify all thunk statements. + +void +Gogo::simplify_thunk_statements() +{ + Simplify_thunk_traverse thunk_traverse(this); + this->traverse(&thunk_traverse); +} + +// Simplify complex thunk statements into simple ones. A complicated +// thunk statement is one which takes anything other than zero +// parameters or a single pointer parameter. We rewrite it into code +// which allocates a struct, stores the parameter values into the +// struct, and does a simple go or defer statement which passes the +// struct to a thunk. The thunk does the real call. + +bool +Thunk_statement::simplify_statement(Gogo* gogo, Block* block) +{ + if (this->classification() == STATEMENT_ERROR) + return false; + if (this->call_->is_error_expression()) + return false; + + Call_expression* ce = this->call_->call_expression(); + Function_type* fntype = ce->get_function_type(); + if (fntype == NULL || this->is_simple(fntype)) + return false; + + Expression* fn = ce->fn(); + Bound_method_expression* bound_method = fn->bound_method_expression(); + Interface_field_reference_expression* interface_method = + fn->interface_field_reference_expression(); + const bool is_method = bound_method != NULL || interface_method != NULL; + + source_location location = this->location(); + + std::string thunk_name = Gogo::thunk_name(); + + // Build the thunk. + this->build_thunk(gogo, thunk_name, fntype); + + // Generate code to call the thunk. + + // Get the values to store into the struct which is the single + // argument to the thunk. + + Expression_list* vals = new Expression_list(); + if (fntype->is_builtin()) + ; + else if (!is_method) + vals->push_back(fn); + else if (interface_method != NULL) + vals->push_back(interface_method->expr()); + else if (bound_method != NULL) + { + vals->push_back(bound_method->method()); + Expression* first_arg = bound_method->first_argument(); + + // We always pass a pointer when calling a method. + if (first_arg->type()->points_to() == NULL) + first_arg = Expression::make_unary(OPERATOR_AND, first_arg, location); + + // If we are calling a method which was inherited from an + // embedded struct, and the method did not get a stub, then the + // first type may be wrong. + Type* fatype = bound_method->first_argument_type(); + if (fatype != NULL) + { + if (fatype->points_to() == NULL) + fatype = Type::make_pointer_type(fatype); + Type* unsafe = Type::make_pointer_type(Type::make_void_type()); + first_arg = Expression::make_cast(unsafe, first_arg, location); + first_arg = Expression::make_cast(fatype, first_arg, location); + } + + vals->push_back(first_arg); + } + else + gcc_unreachable(); + + if (ce->args() != NULL) + { + for (Expression_list::const_iterator p = ce->args()->begin(); + p != ce->args()->end(); + ++p) + vals->push_back(*p); + } + + // Build the struct. + Expression* constructor = + Expression::make_struct_composite_literal(this->struct_type_, vals, + location); + + // Allocate the initialized struct on the heap. + constructor = Expression::make_heap_composite(constructor, location); + + // Look up the thunk. + Named_object* named_thunk = gogo->lookup(thunk_name, NULL); + gcc_assert(named_thunk != NULL && named_thunk->is_function()); + + // Build the call. + Expression* func = Expression::make_func_reference(named_thunk, NULL, + location); + Expression_list* params = new Expression_list(); + params->push_back(constructor); + Call_expression* call = Expression::make_call(func, params, false, location); + + // Build the simple go or defer statement. + Statement* s; + if (this->classification() == STATEMENT_GO) + s = Statement::make_go_statement(call, location); + else if (this->classification() == STATEMENT_DEFER) + s = Statement::make_defer_statement(call, location); + else + gcc_unreachable(); + + // The current block should end with the go statement. + gcc_assert(block->statements()->size() >= 1); + gcc_assert(block->statements()->back() == this); + block->replace_statement(block->statements()->size() - 1, s); + + // We already ran the determine_types pass, so we need to run it now + // for the new statement. + s->determine_types(); + + // Sanity check. + gogo->check_types_in_block(block); + + // Return true to tell the block not to keep looking at statements. + return true; +} + +// Set the name to use for thunk parameter N. + +void +Thunk_statement::thunk_field_param(int n, char* buf, size_t buflen) +{ + snprintf(buf, buflen, "a%d", n); +} + +// Build a new struct type to hold the parameters for a complicated +// thunk statement. FNTYPE is the type of the function call. + +Struct_type* +Thunk_statement::build_struct(Function_type* fntype) +{ + source_location location = this->location(); + + Struct_field_list* fields = new Struct_field_list(); + + Call_expression* ce = this->call_->call_expression(); + Expression* fn = ce->fn(); + + Interface_field_reference_expression* interface_method = + fn->interface_field_reference_expression(); + if (interface_method != NULL) + { + // If this thunk statement calls a method on an interface, we + // pass the interface object to the thunk. + Typed_identifier tid(Thunk_statement::thunk_field_fn, + interface_method->expr()->type(), + location); + fields->push_back(Struct_field(tid)); + } + else if (!fntype->is_builtin()) + { + // The function to call. + Typed_identifier tid(Go_statement::thunk_field_fn, fntype, location); + fields->push_back(Struct_field(tid)); + } + else if (ce->is_recover_call()) + { + // The predeclared recover function has no argument. However, + // we add an argument when building recover thunks. Handle that + // here. + fields->push_back(Struct_field(Typed_identifier("can_recover", + Type::make_boolean_type(), + location))); + } + + if (fn->bound_method_expression() != NULL) + { + gcc_assert(fntype->is_method()); + Type* rtype = fntype->receiver()->type(); + // We always pass the receiver as a pointer. + if (rtype->points_to() == NULL) + rtype = Type::make_pointer_type(rtype); + Typed_identifier tid(Thunk_statement::thunk_field_receiver, rtype, + location); + fields->push_back(Struct_field(tid)); + } + + const Expression_list* args = ce->args(); + if (args != NULL) + { + int i = 0; + for (Expression_list::const_iterator p = args->begin(); + p != args->end(); + ++p, ++i) + { + char buf[50]; + this->thunk_field_param(i, buf, sizeof buf); + fields->push_back(Struct_field(Typed_identifier(buf, (*p)->type(), + location))); + } + } + + return Type::make_struct_type(fields, location); +} + +// Build the thunk we are going to call. This is a brand new, albeit +// artificial, function. + +void +Thunk_statement::build_thunk(Gogo* gogo, const std::string& thunk_name, + Function_type* fntype) +{ + source_location location = this->location(); + + Call_expression* ce = this->call_->call_expression(); + + bool may_call_recover = false; + if (this->classification() == STATEMENT_DEFER) + { + Func_expression* fn = ce->fn()->func_expression(); + if (fn == NULL) + may_call_recover = true; + else + { + const Named_object* no = fn->named_object(); + if (!no->is_function()) + may_call_recover = true; + else + may_call_recover = no->func_value()->calls_recover(); + } + } + + // Build the type of the thunk. The thunk takes a single parameter, + // which is a pointer to the special structure we build. + const char* const parameter_name = "__go_thunk_parameter"; + Typed_identifier_list* thunk_parameters = new Typed_identifier_list(); + Type* pointer_to_struct_type = Type::make_pointer_type(this->struct_type_); + thunk_parameters->push_back(Typed_identifier(parameter_name, + pointer_to_struct_type, + location)); + + Typed_identifier_list* thunk_results = NULL; + if (may_call_recover) + { + // When deferring a function which may call recover, add a + // return value, to disable tail call optimizations which will + // break the way we check whether recover is permitted. + thunk_results = new Typed_identifier_list(); + thunk_results->push_back(Typed_identifier("", Type::make_boolean_type(), + location)); + } + + Function_type* thunk_type = Type::make_function_type(NULL, thunk_parameters, + thunk_results, + location); + + // Start building the thunk. + Named_object* function = gogo->start_function(thunk_name, thunk_type, true, + location); + + // For a defer statement, start with a call to + // __go_set_defer_retaddr. */ + Label* retaddr_label = NULL; + if (may_call_recover) + { + retaddr_label = gogo->add_label_reference("retaddr"); + Expression* arg = Expression::make_label_addr(retaddr_label, location); + Expression_list* args = new Expression_list(); + args->push_back(arg); + + static Named_object* set_defer_retaddr; + if (set_defer_retaddr == NULL) + { + const source_location bloc = BUILTINS_LOCATION; + Typed_identifier_list* param_types = new Typed_identifier_list(); + Type *voidptr_type = Type::make_pointer_type(Type::make_void_type()); + param_types->push_back(Typed_identifier("r", voidptr_type, bloc)); + + Typed_identifier_list* result_types = new Typed_identifier_list(); + result_types->push_back(Typed_identifier("", + Type::make_boolean_type(), + bloc)); + + Function_type* t = Type::make_function_type(NULL, param_types, + result_types, bloc); + set_defer_retaddr = + Named_object::make_function_declaration("__go_set_defer_retaddr", + NULL, t, bloc); + const char* n = "__go_set_defer_retaddr"; + set_defer_retaddr->func_declaration_value()->set_asm_name(n); + } + + Expression* fn = Expression::make_func_reference(set_defer_retaddr, + NULL, location); + Expression* call = Expression::make_call(fn, args, false, location); + + // This is a hack to prevent the middle-end from deleting the + // label. + gogo->start_block(location); + gogo->add_statement(Statement::make_goto_statement(retaddr_label, + location)); + Block* then_block = gogo->finish_block(location); + then_block->determine_types(); + + Statement* s = Statement::make_if_statement(call, then_block, NULL, + location); + s->determine_types(); + gogo->add_statement(s); + } + + // Get a reference to the parameter. + Named_object* named_parameter = gogo->lookup(parameter_name, NULL); + gcc_assert(named_parameter != NULL && named_parameter->is_variable()); + + // Build the call. Note that the field names are the same as the + // ones used in build_struct. + Expression* thunk_parameter = Expression::make_var_reference(named_parameter, + location); + thunk_parameter = Expression::make_unary(OPERATOR_MULT, thunk_parameter, + location); + + Bound_method_expression* bound_method = ce->fn()->bound_method_expression(); + Interface_field_reference_expression* interface_method = + ce->fn()->interface_field_reference_expression(); + + Expression* func_to_call; + unsigned int next_index; + if (!fntype->is_builtin()) + { + func_to_call = Expression::make_field_reference(thunk_parameter, + 0, location); + next_index = 1; + } + else + { + gcc_assert(bound_method == NULL && interface_method == NULL); + func_to_call = ce->fn(); + next_index = 0; + } + + if (bound_method != NULL) + { + Expression* r = Expression::make_field_reference(thunk_parameter, 1, + location); + // The main program passes in a function pointer from the + // interface expression, so here we can make a bound method in + // all cases. + func_to_call = Expression::make_bound_method(r, func_to_call, + location); + next_index = 2; + } + else if (interface_method != NULL) + { + // The main program passes the interface object. + const std::string& name(interface_method->name()); + func_to_call = Expression::make_interface_field_reference(func_to_call, + name, + location); + } + + Expression_list* call_params = new Expression_list(); + const Struct_field_list* fields = this->struct_type_->fields(); + Struct_field_list::const_iterator p = fields->begin(); + for (unsigned int i = 0; i < next_index; ++i) + ++p; + for (; p != fields->end(); ++p, ++next_index) + { + Expression* thunk_param = Expression::make_var_reference(named_parameter, + location); + thunk_param = Expression::make_unary(OPERATOR_MULT, thunk_param, + location); + Expression* param = Expression::make_field_reference(thunk_param, + next_index, + location); + call_params->push_back(param); + } + + Expression* call = Expression::make_call(func_to_call, call_params, false, + location); + // We need to lower in case this is a builtin function. + call = call->lower(gogo, function, -1); + if (may_call_recover) + { + Call_expression* ce = call->call_expression(); + if (ce != NULL) + ce->set_is_deferred(); + } + + Statement* call_statement = Statement::make_statement(call); + + // We already ran the determine_types pass, so we need to run it + // just for this statement now. + call_statement->determine_types(); + + gogo->add_statement(call_statement); + + // If this is a defer statement, the label comes immediately after + // the call. + if (may_call_recover) + { + gogo->add_label_definition("retaddr", location); + + Expression_list* vals = new Expression_list(); + vals->push_back(Expression::make_boolean(false, location)); + const Typed_identifier_list* results = + function->func_value()->type()->results(); + gogo->add_statement(Statement::make_return_statement(results, vals, + location)); + } + + // That is all the thunk has to do. + gogo->finish_function(location); +} + +// Get the function and argument trees. + +void +Thunk_statement::get_fn_and_arg(Translate_context* context, tree* pfn, + tree* parg) +{ + if (this->call_->is_error_expression()) + { + *pfn = error_mark_node; + *parg = error_mark_node; + return; + } + + Call_expression* ce = this->call_->call_expression(); + + Expression* fn = ce->fn(); + *pfn = fn->get_tree(context); + + const Expression_list* args = ce->args(); + if (args == NULL || args->empty()) + *parg = null_pointer_node; + else + { + gcc_assert(args->size() == 1); + *parg = args->front()->get_tree(context); + } +} + +// Class Go_statement. + +tree +Go_statement::do_get_tree(Translate_context* context) +{ + tree fn_tree; + tree arg_tree; + this->get_fn_and_arg(context, &fn_tree, &arg_tree); + + static tree go_fndecl; + + tree fn_arg_type = NULL_TREE; + if (go_fndecl == NULL_TREE) + { + // Only build FN_ARG_TYPE if we need it. + tree subargtypes = tree_cons(NULL_TREE, ptr_type_node, void_list_node); + tree subfntype = build_function_type(ptr_type_node, subargtypes); + fn_arg_type = build_pointer_type(subfntype); + } + + return Gogo::call_builtin(&go_fndecl, + this->location(), + "__go_go", + 2, + void_type_node, + fn_arg_type, + fn_tree, + ptr_type_node, + arg_tree); +} + +// Make a go statement. + +Statement* +Statement::make_go_statement(Call_expression* call, source_location location) +{ + return new Go_statement(call, location); +} + +// Class Defer_statement. + +tree +Defer_statement::do_get_tree(Translate_context* context) +{ + source_location loc = this->location(); + + tree fn_tree; + tree arg_tree; + this->get_fn_and_arg(context, &fn_tree, &arg_tree); + if (fn_tree == error_mark_node || arg_tree == error_mark_node) + return error_mark_node; + + static tree defer_fndecl; + + tree fn_arg_type = NULL_TREE; + if (defer_fndecl == NULL_TREE) + { + // Only build FN_ARG_TYPE if we need it. + tree subargtypes = tree_cons(NULL_TREE, ptr_type_node, void_list_node); + tree subfntype = build_function_type(ptr_type_node, subargtypes); + fn_arg_type = build_pointer_type(subfntype); + } + + tree defer_stack = context->function()->func_value()->defer_stack(loc); + + return Gogo::call_builtin(&defer_fndecl, + loc, + "__go_defer", + 3, + void_type_node, + ptr_type_node, + defer_stack, + fn_arg_type, + fn_tree, + ptr_type_node, + arg_tree); +} + +// Make a defer statement. + +Statement* +Statement::make_defer_statement(Call_expression* call, + source_location location) +{ + return new Defer_statement(call, location); +} + +// Class Return_statement. + +// Traverse assignments. We treat each return value as a top level +// RHS in an expression. + +bool +Return_statement::do_traverse_assignments(Traverse_assignments* tassign) +{ + Expression_list* vals = this->vals_; + if (vals != NULL) + { + for (Expression_list::iterator p = vals->begin(); + p != vals->end(); + ++p) + tassign->value(&*p, true, true); + } + return true; +} + +// Lower a return statement. If we are returning a function call +// which returns multiple values which match the current function, +// split up the call's results. If the function has named result +// variables, and the return statement lists explicit values, then +// implement it by assigning the values to the result variables and +// changing the statement to not list any values. This lets +// panic/recover work correctly. + +Statement* +Return_statement::do_lower(Gogo*, Block* enclosing) +{ + if (this->vals_ == NULL) + return this; + + const Typed_identifier_list* results = this->results_; + if (results == NULL || results->empty()) + return this; + + // If the current function has multiple return values, and we are + // returning a single call expression, split up the call expression. + size_t results_count = results->size(); + if (results_count > 1 + && this->vals_->size() == 1 + && this->vals_->front()->call_expression() != NULL) + { + Call_expression* call = this->vals_->front()->call_expression(); + size_t count = results->size(); + Expression_list* vals = new Expression_list; + for (size_t i = 0; i < count; ++i) + vals->push_back(Expression::make_call_result(call, i)); + delete this->vals_; + this->vals_ = vals; + } + + if (results->front().name().empty()) + return this; + + if (results_count != this->vals_->size()) + { + // Presumably an error which will be reported in check_types. + return this; + } + + // Assign to named return values and then return them. + + source_location loc = this->location(); + const Block* top = enclosing; + while (top->enclosing() != NULL) + top = top->enclosing(); + + const Bindings *bindings = top->bindings(); + Block* b = new Block(enclosing, loc); + + Expression_list* lhs = new Expression_list(); + Expression_list* rhs = new Expression_list(); + + Expression_list::const_iterator pe = this->vals_->begin(); + int i = 1; + for (Typed_identifier_list::const_iterator pr = results->begin(); + pr != results->end(); + ++pr, ++pe, ++i) + { + Named_object* rv = bindings->lookup_local(pr->name()); + if (rv == NULL || !rv->is_result_variable()) + { + // Presumably an error. + delete b; + delete lhs; + delete rhs; + return this; + } + + Expression* e = *pe; + + // Check types now so that we give a good error message. The + // result type is known. We determine the expression type + // early. + + Type *rvtype = rv->result_var_value()->type(); + Type_context type_context(rvtype, false); + e->determine_type(&type_context); + + std::string reason; + if (Type::are_assignable(rvtype, e->type(), &reason)) + { + Expression* ve = Expression::make_var_reference(rv, e->location()); + lhs->push_back(ve); + rhs->push_back(e); + } + else + { + if (reason.empty()) + error_at(e->location(), "incompatible type for return value %d", i); + else + error_at(e->location(), + "incompatible type for return value %d (%s)", + i, reason.c_str()); + } + } + gcc_assert(lhs->size() == rhs->size()); + + if (lhs->empty()) + ; + else if (lhs->size() == 1) + { + b->add_statement(Statement::make_assignment(lhs->front(), rhs->front(), + loc)); + delete lhs; + delete rhs; + } + else + b->add_statement(Statement::make_tuple_assignment(lhs, rhs, loc)); + + b->add_statement(Statement::make_return_statement(this->results_, NULL, + loc)); + + return Statement::make_block_statement(b, loc); +} + +// Determine types. + +void +Return_statement::do_determine_types() +{ + if (this->vals_ == NULL) + return; + const Typed_identifier_list* results = this->results_; + + Typed_identifier_list::const_iterator pt; + if (results != NULL) + pt = results->begin(); + for (Expression_list::iterator pe = this->vals_->begin(); + pe != this->vals_->end(); + ++pe) + { + if (results == NULL || pt == results->end()) + (*pe)->determine_type_no_context(); + else + { + Type_context context(pt->type(), false); + (*pe)->determine_type(&context); + ++pt; + } + } +} + +// Check types. + +void +Return_statement::do_check_types(Gogo*) +{ + if (this->vals_ == NULL) + return; + + const Typed_identifier_list* results = this->results_; + if (results == NULL) + { + this->report_error(_("return with value in function " + "with no return type")); + return; + } + + int i = 1; + Typed_identifier_list::const_iterator pt = results->begin(); + for (Expression_list::const_iterator pe = this->vals_->begin(); + pe != this->vals_->end(); + ++pe, ++pt, ++i) + { + if (pt == results->end()) + { + this->report_error(_("too many values in return statement")); + return; + } + std::string reason; + if (!Type::are_assignable(pt->type(), (*pe)->type(), &reason)) + { + if (reason.empty()) + error_at(this->location(), + "incompatible type for return value %d", + i); + else + error_at(this->location(), + "incompatible type for return value %d (%s)", + i, reason.c_str()); + this->set_is_error(); + } + else if (pt->type()->is_error_type() + || (*pe)->type()->is_error_type() + || pt->type()->is_undefined() + || (*pe)->type()->is_undefined()) + { + // Make sure we get the error for an undefined type. + pt->type()->base(); + (*pe)->type()->base(); + this->set_is_error(); + } + } + + if (pt != results->end()) + this->report_error(_("not enough values in return statement")); +} + +// Build a RETURN_EXPR tree. + +tree +Return_statement::do_get_tree(Translate_context* context) +{ + Function* function = context->function()->func_value(); + tree fndecl = function->get_decl(); + + const Typed_identifier_list* results = this->results_; + + if (this->vals_ == NULL) + { + tree stmt_list = NULL_TREE; + tree retval = function->return_value(context->gogo(), + context->function(), + this->location(), + &stmt_list); + tree set; + if (retval == NULL_TREE) + set = NULL_TREE; + else + set = fold_build2_loc(this->location(), MODIFY_EXPR, void_type_node, + DECL_RESULT(fndecl), retval); + append_to_statement_list(this->build_stmt_1(RETURN_EXPR, set), + &stmt_list); + return stmt_list; + } + else if (this->vals_->size() == 1) + { + gcc_assert(!VOID_TYPE_P(TREE_TYPE(TREE_TYPE(fndecl)))); + tree val = (*this->vals_->begin())->get_tree(context); + if (val == error_mark_node) + return error_mark_node; + gcc_assert(results != NULL && results->size() == 1); + val = Expression::convert_for_assignment(context, + results->begin()->type(), + (*this->vals_->begin())->type(), + val, this->location()); + tree set = build2(MODIFY_EXPR, void_type_node, + DECL_RESULT(fndecl), val); + SET_EXPR_LOCATION(set, this->location()); + return this->build_stmt_1(RETURN_EXPR, set); + } + else + { + gcc_assert(!VOID_TYPE_P(TREE_TYPE(TREE_TYPE(fndecl)))); + tree stmt_list = NULL_TREE; + tree rettype = TREE_TYPE(DECL_RESULT(fndecl)); + tree retvar = create_tmp_var(rettype, "RESULT"); + gcc_assert(results != NULL && results->size() == this->vals_->size()); + Expression_list::const_iterator pv = this->vals_->begin(); + Typed_identifier_list::const_iterator pr = results->begin(); + for (tree field = TYPE_FIELDS(rettype); + field != NULL_TREE; + ++pv, ++pr, field = DECL_CHAIN(field)) + { + gcc_assert(pv != this->vals_->end()); + tree val = (*pv)->get_tree(context); + if (val == error_mark_node) + return error_mark_node; + val = Expression::convert_for_assignment(context, pr->type(), + (*pv)->type(), val, + this->location()); + tree set = build2(MODIFY_EXPR, void_type_node, + build3(COMPONENT_REF, TREE_TYPE(field), + retvar, field, NULL_TREE), + val); + SET_EXPR_LOCATION(set, this->location()); + append_to_statement_list(set, &stmt_list); + } + tree set = build2(MODIFY_EXPR, void_type_node, DECL_RESULT(fndecl), + retvar); + append_to_statement_list(this->build_stmt_1(RETURN_EXPR, set), + &stmt_list); + return stmt_list; + } +} + +// Make a return statement. + +Statement* +Statement::make_return_statement(const Typed_identifier_list* results, + Expression_list* vals, + source_location location) +{ + return new Return_statement(results, vals, location); +} + +// A break or continue statement. + +class Bc_statement : public Statement +{ + public: + Bc_statement(bool is_break, Unnamed_label* label, source_location location) + : Statement(STATEMENT_BREAK_OR_CONTINUE, location), + label_(label), is_break_(is_break) + { } + + bool + is_break() const + { return this->is_break_; } + + protected: + int + do_traverse(Traverse*) + { return TRAVERSE_CONTINUE; } + + bool + do_may_fall_through() const + { return false; } + + tree + do_get_tree(Translate_context*) + { return this->label_->get_goto(this->location()); } + + private: + // The label that this branches to. + Unnamed_label* label_; + // True if this is "break", false if it is "continue". + bool is_break_; +}; + +// Make a break statement. + +Statement* +Statement::make_break_statement(Unnamed_label* label, source_location location) +{ + return new Bc_statement(true, label, location); +} + +// Make a continue statement. + +Statement* +Statement::make_continue_statement(Unnamed_label* label, + source_location location) +{ + return new Bc_statement(false, label, location); +} + +// A goto statement. + +class Goto_statement : public Statement +{ + public: + Goto_statement(Label* label, source_location location) + : Statement(STATEMENT_GOTO, location), + label_(label) + { } + + protected: + int + do_traverse(Traverse*) + { return TRAVERSE_CONTINUE; } + + void + do_check_types(Gogo*); + + bool + do_may_fall_through() const + { return false; } + + tree + do_get_tree(Translate_context*); + + private: + Label* label_; +}; + +// Check types for a label. There aren't any types per se, but we use +// this to give an error if the label was never defined. + +void +Goto_statement::do_check_types(Gogo*) +{ + if (!this->label_->is_defined()) + { + error_at(this->location(), "reference to undefined label %qs", + Gogo::message_name(this->label_->name()).c_str()); + this->set_is_error(); + } +} + +// Return the tree for the goto statement. + +tree +Goto_statement::do_get_tree(Translate_context*) +{ + return this->build_stmt_1(GOTO_EXPR, this->label_->get_decl()); +} + +// Make a goto statement. + +Statement* +Statement::make_goto_statement(Label* label, source_location location) +{ + return new Goto_statement(label, location); +} + +// A goto statement to an unnamed label. + +class Goto_unnamed_statement : public Statement +{ + public: + Goto_unnamed_statement(Unnamed_label* label, source_location location) + : Statement(STATEMENT_GOTO_UNNAMED, location), + label_(label) + { } + + protected: + int + do_traverse(Traverse*) + { return TRAVERSE_CONTINUE; } + + bool + do_may_fall_through() const + { return false; } + + tree + do_get_tree(Translate_context*) + { return this->label_->get_goto(this->location()); } + + private: + Unnamed_label* label_; +}; + +// Make a goto statement to an unnamed label. + +Statement* +Statement::make_goto_unnamed_statement(Unnamed_label* label, + source_location location) +{ + return new Goto_unnamed_statement(label, location); +} + +// Class Label_statement. + +// Traversal. + +int +Label_statement::do_traverse(Traverse*) +{ + return TRAVERSE_CONTINUE; +} + +// Return a tree defining this label. + +tree +Label_statement::do_get_tree(Translate_context*) +{ + return this->build_stmt_1(LABEL_EXPR, this->label_->get_decl()); +} + +// Make a label statement. + +Statement* +Statement::make_label_statement(Label* label, source_location location) +{ + return new Label_statement(label, location); +} + +// An unnamed label statement. + +class Unnamed_label_statement : public Statement +{ + public: + Unnamed_label_statement(Unnamed_label* label) + : Statement(STATEMENT_UNNAMED_LABEL, label->location()), + label_(label) + { } + + protected: + int + do_traverse(Traverse*) + { return TRAVERSE_CONTINUE; } + + tree + do_get_tree(Translate_context*) + { return this->label_->get_definition(); } + + private: + // The label. + Unnamed_label* label_; +}; + +// Make an unnamed label statement. + +Statement* +Statement::make_unnamed_label_statement(Unnamed_label* label) +{ + return new Unnamed_label_statement(label); +} + +// An if statement. + +class If_statement : public Statement +{ + public: + If_statement(Expression* cond, Block* then_block, Block* else_block, + source_location location) + : Statement(STATEMENT_IF, location), + cond_(cond), then_block_(then_block), else_block_(else_block) + { } + + protected: + int + do_traverse(Traverse*); + + void + do_determine_types(); + + void + do_check_types(Gogo*); + + bool + do_may_fall_through() const; + + tree + do_get_tree(Translate_context*); + + private: + Expression* cond_; + Block* then_block_; + Block* else_block_; +}; + +// Traversal. + +int +If_statement::do_traverse(Traverse* traverse) +{ + if (this->cond_ != NULL) + { + if (this->traverse_expression(traverse, &this->cond_) == TRAVERSE_EXIT) + return TRAVERSE_EXIT; + } + if (this->then_block_->traverse(traverse) == TRAVERSE_EXIT) + return TRAVERSE_EXIT; + if (this->else_block_ != NULL) + { + if (this->else_block_->traverse(traverse) == TRAVERSE_EXIT) + return TRAVERSE_EXIT; + } + return TRAVERSE_CONTINUE; +} + +void +If_statement::do_determine_types() +{ + if (this->cond_ != NULL) + { + Type_context context(Type::lookup_bool_type(), false); + this->cond_->determine_type(&context); + } + this->then_block_->determine_types(); + if (this->else_block_ != NULL) + this->else_block_->determine_types(); +} + +// Check types. + +void +If_statement::do_check_types(Gogo*) +{ + if (this->cond_ != NULL) + { + Type* type = this->cond_->type(); + if (type->is_error_type()) + this->set_is_error(); + else if (!type->is_boolean_type()) + this->report_error(_("expected boolean expression")); + } +} + +// Whether the overall statement may fall through. + +bool +If_statement::do_may_fall_through() const +{ + return (this->else_block_ == NULL + || this->then_block_->may_fall_through() + || this->else_block_->may_fall_through()); +} + +// Get tree. + +tree +If_statement::do_get_tree(Translate_context* context) +{ + gcc_assert(this->cond_ == NULL || this->cond_->type()->is_boolean_type()); + tree ret = build3(COND_EXPR, void_type_node, + (this->cond_ == NULL + ? boolean_true_node + : this->cond_->get_tree(context)), + this->then_block_->get_tree(context), + (this->else_block_ == NULL + ? NULL_TREE + : this->else_block_->get_tree(context))); + SET_EXPR_LOCATION(ret, this->location()); + return ret; +} + +// Make an if statement. + +Statement* +Statement::make_if_statement(Expression* cond, Block* then_block, + Block* else_block, source_location location) +{ + return new If_statement(cond, then_block, else_block, location); +} + +// Class Case_clauses::Case_clause. + +// Traversal. + +int +Case_clauses::Case_clause::traverse(Traverse* traverse) +{ + if (this->cases_ != NULL + && (traverse->traverse_mask() & Traverse::traverse_expressions) != 0) + { + if (this->cases_->traverse(traverse) == TRAVERSE_EXIT) + return TRAVERSE_EXIT; + } + if (this->statements_ != NULL) + { + if (this->statements_->traverse(traverse) == TRAVERSE_EXIT) + return TRAVERSE_EXIT; + } + return TRAVERSE_CONTINUE; +} + +// Check whether all the case expressions are integer constants. + +bool +Case_clauses::Case_clause::is_constant() const +{ + if (this->cases_ != NULL) + { + for (Expression_list::const_iterator p = this->cases_->begin(); + p != this->cases_->end(); + ++p) + if (!(*p)->is_constant() || (*p)->type()->integer_type() == NULL) + return false; + } + return true; +} + +// Lower a case clause for a nonconstant switch. VAL_TEMP is the +// value we are switching on; it may be NULL. If START_LABEL is not +// NULL, it goes at the start of the statements, after the condition +// test. We branch to FINISH_LABEL at the end of the statements. + +void +Case_clauses::Case_clause::lower(Block* b, Temporary_statement* val_temp, + Unnamed_label* start_label, + Unnamed_label* finish_label) const +{ + source_location loc = this->location_; + Unnamed_label* next_case_label; + if (this->cases_ == NULL || this->cases_->empty()) + { + gcc_assert(this->is_default_); + next_case_label = NULL; + } + else + { + Expression* cond = NULL; + + for (Expression_list::const_iterator p = this->cases_->begin(); + p != this->cases_->end(); + ++p) + { + Expression* this_cond; + if (val_temp == NULL) + this_cond = *p; + else + { + Expression* ref = Expression::make_temporary_reference(val_temp, + loc); + this_cond = Expression::make_binary(OPERATOR_EQEQ, ref, *p, loc); + } + + if (cond == NULL) + cond = this_cond; + else + cond = Expression::make_binary(OPERATOR_OROR, cond, this_cond, loc); + } + + Block* then_block = new Block(b, loc); + next_case_label = new Unnamed_label(UNKNOWN_LOCATION); + Statement* s = Statement::make_goto_unnamed_statement(next_case_label, + loc); + then_block->add_statement(s); + + // if !COND { goto NEXT_CASE_LABEL } + cond = Expression::make_unary(OPERATOR_NOT, cond, loc); + s = Statement::make_if_statement(cond, then_block, NULL, loc); + b->add_statement(s); + } + + if (start_label != NULL) + b->add_statement(Statement::make_unnamed_label_statement(start_label)); + + if (this->statements_ != NULL) + b->add_statement(Statement::make_block_statement(this->statements_, loc)); + + Statement* s = Statement::make_goto_unnamed_statement(finish_label, loc); + b->add_statement(s); + + if (next_case_label != NULL) + b->add_statement(Statement::make_unnamed_label_statement(next_case_label)); +} + +// Determine types. + +void +Case_clauses::Case_clause::determine_types(Type* type) +{ + if (this->cases_ != NULL) + { + Type_context case_context(type, false); + for (Expression_list::iterator p = this->cases_->begin(); + p != this->cases_->end(); + ++p) + (*p)->determine_type(&case_context); + } + if (this->statements_ != NULL) + this->statements_->determine_types(); +} + +// Check types. Returns false if there was an error. + +bool +Case_clauses::Case_clause::check_types(Type* type) +{ + if (this->cases_ != NULL) + { + for (Expression_list::iterator p = this->cases_->begin(); + p != this->cases_->end(); + ++p) + { + if (!Type::are_assignable(type, (*p)->type(), NULL) + && !Type::are_assignable((*p)->type(), type, NULL)) + { + error_at((*p)->location(), + "type mismatch between switch value and case clause"); + return false; + } + } + } + return true; +} + +// Return true if this clause may fall through to the following +// statements. Note that this is not the same as whether the case +// uses the "fallthrough" keyword. + +bool +Case_clauses::Case_clause::may_fall_through() const +{ + if (this->statements_ == NULL) + return true; + return this->statements_->may_fall_through(); +} + +// Build up the body of a SWITCH_EXPR. + +void +Case_clauses::Case_clause::get_constant_tree(Translate_context* context, + Unnamed_label* break_label, + Case_constants* case_constants, + tree* stmt_list) const +{ + if (this->cases_ != NULL) + { + for (Expression_list::const_iterator p = this->cases_->begin(); + p != this->cases_->end(); + ++p) + { + Type* itype; + mpz_t ival; + mpz_init(ival); + if (!(*p)->integer_constant_value(true, ival, &itype)) + gcc_unreachable(); + gcc_assert(itype != NULL); + tree type_tree = itype->get_tree(context->gogo()); + tree val = Expression::integer_constant_tree(ival, type_tree); + mpz_clear(ival); + + if (val != error_mark_node) + { + gcc_assert(TREE_CODE(val) == INTEGER_CST); + + std::pair<Case_constants::iterator, bool> ins = + case_constants->insert(val); + if (!ins.second) + { + // Value was already present. + warning_at(this->location_, 0, + "duplicate case value will never match"); + continue; + } + + tree label = create_artificial_label(this->location_); + append_to_statement_list(build3(CASE_LABEL_EXPR, void_type_node, + val, NULL_TREE, label), + stmt_list); + } + } + } + + if (this->is_default_) + { + tree label = create_artificial_label(this->location_); + append_to_statement_list(build3(CASE_LABEL_EXPR, void_type_node, + NULL_TREE, NULL_TREE, label), + stmt_list); + } + + if (this->statements_ != NULL) + { + tree block_tree = this->statements_->get_tree(context); + if (block_tree != error_mark_node) + append_to_statement_list(block_tree, stmt_list); + } + + if (!this->is_fallthrough_) + append_to_statement_list(break_label->get_goto(this->location_), stmt_list); +} + +// Class Case_clauses. + +// Traversal. + +int +Case_clauses::traverse(Traverse* traverse) +{ + for (Clauses::iterator p = this->clauses_.begin(); + p != this->clauses_.end(); + ++p) + { + if (p->traverse(traverse) == TRAVERSE_EXIT) + return TRAVERSE_EXIT; + } + return TRAVERSE_CONTINUE; +} + +// Check whether all the case expressions are constant. + +bool +Case_clauses::is_constant() const +{ + for (Clauses::const_iterator p = this->clauses_.begin(); + p != this->clauses_.end(); + ++p) + if (!p->is_constant()) + return false; + return true; +} + +// Lower case clauses for a nonconstant switch. + +void +Case_clauses::lower(Block* b, Temporary_statement* val_temp, + Unnamed_label* break_label) const +{ + // The default case. + const Case_clause* default_case = NULL; + + // The label for the fallthrough of the previous case. + Unnamed_label* last_fallthrough_label = NULL; + + // The label for the start of the default case. This is used if the + // case before the default case falls through. + Unnamed_label* default_start_label = NULL; + + // The label for the end of the default case. This normally winds + // up as BREAK_LABEL, but it will be different if the default case + // falls through. + Unnamed_label* default_finish_label = NULL; + + for (Clauses::const_iterator p = this->clauses_.begin(); + p != this->clauses_.end(); + ++p) + { + // The label to use for the start of the statements for this + // case. This is NULL unless the previous case falls through. + Unnamed_label* start_label = last_fallthrough_label; + + // The label to jump to after the end of the statements for this + // case. + Unnamed_label* finish_label = break_label; + + last_fallthrough_label = NULL; + if (p->is_fallthrough() && p + 1 != this->clauses_.end()) + { + finish_label = new Unnamed_label(p->location()); + last_fallthrough_label = finish_label; + } + + if (!p->is_default()) + p->lower(b, val_temp, start_label, finish_label); + else + { + // We have to move the default case to the end, so that we + // only use it if all the other tests fail. + default_case = &*p; + default_start_label = start_label; + default_finish_label = finish_label; + } + } + + if (default_case != NULL) + default_case->lower(b, val_temp, default_start_label, + default_finish_label); + +} + +// Determine types. + +void +Case_clauses::determine_types(Type* type) +{ + for (Clauses::iterator p = this->clauses_.begin(); + p != this->clauses_.end(); + ++p) + p->determine_types(type); +} + +// Check types. Returns false if there was an error. + +bool +Case_clauses::check_types(Type* type) +{ + bool ret = true; + for (Clauses::iterator p = this->clauses_.begin(); + p != this->clauses_.end(); + ++p) + { + if (!p->check_types(type)) + ret = false; + } + return ret; +} + +// Return true if these clauses may fall through to the statements +// following the switch statement. + +bool +Case_clauses::may_fall_through() const +{ + bool found_default = false; + for (Clauses::const_iterator p = this->clauses_.begin(); + p != this->clauses_.end(); + ++p) + { + if (p->may_fall_through() && !p->is_fallthrough()) + return true; + if (p->is_default()) + found_default = true; + } + return !found_default; +} + +// Return a tree when all case expressions are constants. + +tree +Case_clauses::get_constant_tree(Translate_context* context, + Unnamed_label* break_label) const +{ + Case_constants case_constants; + tree stmt_list = NULL_TREE; + for (Clauses::const_iterator p = this->clauses_.begin(); + p != this->clauses_.end(); + ++p) + p->get_constant_tree(context, break_label, &case_constants, + &stmt_list); + return stmt_list; +} + +// A constant switch statement. A Switch_statement is lowered to this +// when all the cases are constants. + +class Constant_switch_statement : public Statement +{ + public: + Constant_switch_statement(Expression* val, Case_clauses* clauses, + Unnamed_label* break_label, + source_location location) + : Statement(STATEMENT_CONSTANT_SWITCH, location), + val_(val), clauses_(clauses), break_label_(break_label) + { } + + protected: + int + do_traverse(Traverse*); + + void + do_determine_types(); + + void + do_check_types(Gogo*); + + bool + do_may_fall_through() const; + + tree + do_get_tree(Translate_context*); + + private: + // The value to switch on. + Expression* val_; + // The case clauses. + Case_clauses* clauses_; + // The break label, if needed. + Unnamed_label* break_label_; +}; + +// Traversal. + +int +Constant_switch_statement::do_traverse(Traverse* traverse) +{ + if (this->traverse_expression(traverse, &this->val_) == TRAVERSE_EXIT) + return TRAVERSE_EXIT; + return this->clauses_->traverse(traverse); +} + +// Determine types. + +void +Constant_switch_statement::do_determine_types() +{ + this->val_->determine_type_no_context(); + this->clauses_->determine_types(this->val_->type()); +} + +// Check types. + +void +Constant_switch_statement::do_check_types(Gogo*) +{ + if (!this->clauses_->check_types(this->val_->type())) + this->set_is_error(); +} + +// Return whether this switch may fall through. + +bool +Constant_switch_statement::do_may_fall_through() const +{ + if (this->clauses_ == NULL) + return true; + + // If we have a break label, then some case needed it. That implies + // that the switch statement as a whole can fall through. + if (this->break_label_ != NULL) + return true; + + return this->clauses_->may_fall_through(); +} + +// Convert to GENERIC. + +tree +Constant_switch_statement::do_get_tree(Translate_context* context) +{ + tree switch_val_tree = this->val_->get_tree(context); + + Unnamed_label* break_label = this->break_label_; + if (break_label == NULL) + break_label = new Unnamed_label(this->location()); + + tree stmt_list = NULL_TREE; + tree s = build3(SWITCH_EXPR, void_type_node, switch_val_tree, + this->clauses_->get_constant_tree(context, break_label), + NULL_TREE); + SET_EXPR_LOCATION(s, this->location()); + append_to_statement_list(s, &stmt_list); + + append_to_statement_list(break_label->get_definition(), &stmt_list); + + return stmt_list; +} + +// Class Switch_statement. + +// Traversal. + +int +Switch_statement::do_traverse(Traverse* traverse) +{ + if (this->val_ != NULL) + { + if (this->traverse_expression(traverse, &this->val_) == TRAVERSE_EXIT) + return TRAVERSE_EXIT; + } + return this->clauses_->traverse(traverse); +} + +// Lower a Switch_statement to a Constant_switch_statement or a series +// of if statements. + +Statement* +Switch_statement::do_lower(Gogo*, Block* enclosing) +{ + source_location loc = this->location(); + + if (this->val_ != NULL + && (this->val_->is_error_expression() + || this->val_->type()->is_error_type())) + return Statement::make_error_statement(loc); + + if (this->val_ != NULL + && this->val_->type()->integer_type() != NULL + && !this->clauses_->empty() + && this->clauses_->is_constant()) + return new Constant_switch_statement(this->val_, this->clauses_, + this->break_label_, loc); + + Block* b = new Block(enclosing, loc); + + if (this->clauses_->empty()) + { + Expression* val = this->val_; + if (val == NULL) + val = Expression::make_boolean(true, loc); + return Statement::make_statement(val); + } + + Temporary_statement* val_temp; + if (this->val_ == NULL) + val_temp = NULL; + else + { + // var val_temp VAL_TYPE = VAL + val_temp = Statement::make_temporary(NULL, this->val_, loc); + b->add_statement(val_temp); + } + + this->clauses_->lower(b, val_temp, this->break_label()); + + Statement* s = Statement::make_unnamed_label_statement(this->break_label_); + b->add_statement(s); + + return Statement::make_block_statement(b, loc); +} + +// Return the break label for this switch statement, creating it if +// necessary. + +Unnamed_label* +Switch_statement::break_label() +{ + if (this->break_label_ == NULL) + this->break_label_ = new Unnamed_label(this->location()); + return this->break_label_; +} + +// Make a switch statement. + +Switch_statement* +Statement::make_switch_statement(Expression* val, source_location location) +{ + return new Switch_statement(val, location); +} + +// Class Type_case_clauses::Type_case_clause. + +// Traversal. + +int +Type_case_clauses::Type_case_clause::traverse(Traverse* traverse) +{ + if (!this->is_default_ + && ((traverse->traverse_mask() + & (Traverse::traverse_types | Traverse::traverse_expressions)) != 0) + && Type::traverse(this->type_, traverse) == TRAVERSE_EXIT) + return TRAVERSE_EXIT; + if (this->statements_ != NULL) + return this->statements_->traverse(traverse); + return TRAVERSE_CONTINUE; +} + +// Lower one clause in a type switch. Add statements to the block B. +// The type descriptor we are switching on is in DESCRIPTOR_TEMP. +// BREAK_LABEL is the label at the end of the type switch. +// *STMTS_LABEL, if not NULL, is a label to put at the start of the +// statements. + +void +Type_case_clauses::Type_case_clause::lower(Block* b, + Temporary_statement* descriptor_temp, + Unnamed_label* break_label, + Unnamed_label** stmts_label) const +{ + source_location loc = this->location_; + + Unnamed_label* next_case_label = NULL; + if (!this->is_default_) + { + Type* type = this->type_; + + Expression* cond; + // The language permits case nil, which is of course a constant + // rather than a type. It will appear here as an invalid + // forwarding type. + if (type->is_nil_constant_as_type()) + { + Expression* ref = + Expression::make_temporary_reference(descriptor_temp, loc); + cond = Expression::make_binary(OPERATOR_EQEQ, ref, + Expression::make_nil(loc), + loc); + } + else + { + Expression* func; + if (type->interface_type() == NULL) + { + // func ifacetypeeq(*descriptor, *descriptor) bool + static Named_object* ifacetypeeq; + if (ifacetypeeq == NULL) + { + const source_location bloc = BUILTINS_LOCATION; + Typed_identifier_list* param_types = + new Typed_identifier_list(); + Type* descriptor_type = Type::make_type_descriptor_ptr_type(); + param_types->push_back(Typed_identifier("a", descriptor_type, + bloc)); + param_types->push_back(Typed_identifier("b", descriptor_type, + bloc)); + Typed_identifier_list* ret_types = + new Typed_identifier_list(); + Type* bool_type = Type::lookup_bool_type(); + ret_types->push_back(Typed_identifier("", bool_type, bloc)); + Function_type* fntype = Type::make_function_type(NULL, + param_types, + ret_types, + bloc); + ifacetypeeq = + Named_object::make_function_declaration("ifacetypeeq", NULL, + fntype, bloc); + const char* n = "runtime.ifacetypeeq"; + ifacetypeeq->func_declaration_value()->set_asm_name(n); + } + + // ifacetypeeq(descriptor_temp, DESCRIPTOR) + func = Expression::make_func_reference(ifacetypeeq, NULL, loc); + } + else + { + // func ifaceI2Tp(*descriptor, *descriptor) bool + static Named_object* ifaceI2Tp; + if (ifaceI2Tp == NULL) + { + const source_location bloc = BUILTINS_LOCATION; + Typed_identifier_list* param_types = + new Typed_identifier_list(); + Type* descriptor_type = Type::make_type_descriptor_ptr_type(); + param_types->push_back(Typed_identifier("a", descriptor_type, + bloc)); + param_types->push_back(Typed_identifier("b", descriptor_type, + bloc)); + Typed_identifier_list* ret_types = + new Typed_identifier_list(); + Type* bool_type = Type::lookup_bool_type(); + ret_types->push_back(Typed_identifier("", bool_type, bloc)); + Function_type* fntype = Type::make_function_type(NULL, + param_types, + ret_types, + bloc); + ifaceI2Tp = + Named_object::make_function_declaration("ifaceI2Tp", NULL, + fntype, bloc); + const char* n = "runtime.ifaceI2Tp"; + ifaceI2Tp->func_declaration_value()->set_asm_name(n); + } + + // ifaceI2Tp(descriptor_temp, DESCRIPTOR) + func = Expression::make_func_reference(ifaceI2Tp, NULL, loc); + } + Expression_list* params = new Expression_list(); + params->push_back(Expression::make_type_descriptor(type, loc)); + Expression* ref = + Expression::make_temporary_reference(descriptor_temp, loc); + params->push_back(ref); + cond = Expression::make_call(func, params, false, loc); + } + + Unnamed_label* dest; + if (!this->is_fallthrough_) + { + // if !COND { goto NEXT_CASE_LABEL } + next_case_label = new Unnamed_label(UNKNOWN_LOCATION); + dest = next_case_label; + cond = Expression::make_unary(OPERATOR_NOT, cond, loc); + } + else + { + // if COND { goto STMTS_LABEL } + gcc_assert(stmts_label != NULL); + if (*stmts_label == NULL) + *stmts_label = new Unnamed_label(UNKNOWN_LOCATION); + dest = *stmts_label; + } + Block* then_block = new Block(b, loc); + Statement* s = Statement::make_goto_unnamed_statement(dest, loc); + then_block->add_statement(s); + s = Statement::make_if_statement(cond, then_block, NULL, loc); + b->add_statement(s); + } + + if (this->statements_ != NULL + || (!this->is_fallthrough_ + && stmts_label != NULL + && *stmts_label != NULL)) + { + gcc_assert(!this->is_fallthrough_); + if (stmts_label != NULL && *stmts_label != NULL) + { + gcc_assert(!this->is_default_); + if (this->statements_ != NULL) + (*stmts_label)->set_location(this->statements_->start_location()); + Statement* s = Statement::make_unnamed_label_statement(*stmts_label); + b->add_statement(s); + *stmts_label = NULL; + } + if (this->statements_ != NULL) + b->add_statement(Statement::make_block_statement(this->statements_, + loc)); + } + + if (this->is_fallthrough_) + gcc_assert(next_case_label == NULL); + else + { + source_location gloc = (this->statements_ == NULL + ? loc + : this->statements_->end_location()); + b->add_statement(Statement::make_goto_unnamed_statement(break_label, + gloc)); + if (next_case_label != NULL) + { + Statement* s = + Statement::make_unnamed_label_statement(next_case_label); + b->add_statement(s); + } + } +} + +// Class Type_case_clauses. + +// Traversal. + +int +Type_case_clauses::traverse(Traverse* traverse) +{ + for (Type_clauses::iterator p = this->clauses_.begin(); + p != this->clauses_.end(); + ++p) + { + if (p->traverse(traverse) == TRAVERSE_EXIT) + return TRAVERSE_EXIT; + } + return TRAVERSE_CONTINUE; +} + +// Check for duplicate types. + +void +Type_case_clauses::check_duplicates() const +{ + typedef Unordered_set_hash(const Type*, Type_hash_identical, + Type_identical) Types_seen; + Types_seen types_seen; + for (Type_clauses::const_iterator p = this->clauses_.begin(); + p != this->clauses_.end(); + ++p) + { + Type* t = p->type(); + if (t == NULL) + continue; + if (t->is_nil_constant_as_type()) + t = Type::make_nil_type(); + std::pair<Types_seen::iterator, bool> ins = types_seen.insert(t); + if (!ins.second) + error_at(p->location(), "duplicate type in switch"); + } +} + +// Lower the clauses in a type switch. Add statements to the block B. +// The type descriptor we are switching on is in DESCRIPTOR_TEMP. +// BREAK_LABEL is the label at the end of the type switch. + +void +Type_case_clauses::lower(Block* b, Temporary_statement* descriptor_temp, + Unnamed_label* break_label) const +{ + const Type_case_clause* default_case = NULL; + + Unnamed_label* stmts_label = NULL; + for (Type_clauses::const_iterator p = this->clauses_.begin(); + p != this->clauses_.end(); + ++p) + { + if (!p->is_default()) + p->lower(b, descriptor_temp, break_label, &stmts_label); + else + { + // We are generating a series of tests, which means that we + // need to move the default case to the end. + default_case = &*p; + } + } + gcc_assert(stmts_label == NULL); + + if (default_case != NULL) + default_case->lower(b, descriptor_temp, break_label, NULL); +} + +// Class Type_switch_statement. + +// Traversal. + +int +Type_switch_statement::do_traverse(Traverse* traverse) +{ + if (this->var_ == NULL) + { + if (this->traverse_expression(traverse, &this->expr_) == TRAVERSE_EXIT) + return TRAVERSE_EXIT; + } + if (this->clauses_ != NULL) + return this->clauses_->traverse(traverse); + return TRAVERSE_CONTINUE; +} + +// Lower a type switch statement to a series of if statements. The gc +// compiler is able to generate a table in some cases. However, that +// does not work for us because we may have type descriptors in +// different shared libraries, so we can't compare them with simple +// equality testing. + +Statement* +Type_switch_statement::do_lower(Gogo*, Block* enclosing) +{ + const source_location loc = this->location(); + + if (this->clauses_ != NULL) + this->clauses_->check_duplicates(); + + Block* b = new Block(enclosing, loc); + + Type* val_type = (this->var_ != NULL + ? this->var_->var_value()->type() + : this->expr_->type()); + + // var descriptor_temp DESCRIPTOR_TYPE + Type* descriptor_type = Type::make_type_descriptor_ptr_type(); + Temporary_statement* descriptor_temp = + Statement::make_temporary(descriptor_type, NULL, loc); + b->add_statement(descriptor_temp); + + if (val_type->interface_type() == NULL) + { + // Doing a type switch on a non-interface type. Should we issue + // a warning for this case? + // descriptor_temp = DESCRIPTOR + Expression* lhs = Expression::make_temporary_reference(descriptor_temp, + loc); + Expression* rhs = Expression::make_type_descriptor(val_type, loc); + Statement* s = Statement::make_assignment(lhs, rhs, loc); + b->add_statement(s); + } + else + { + const source_location bloc = BUILTINS_LOCATION; + + // func {efacetype,ifacetype}(*interface) *descriptor + // FIXME: This should be inlined. + Typed_identifier_list* param_types = new Typed_identifier_list(); + param_types->push_back(Typed_identifier("i", val_type, bloc)); + Typed_identifier_list* ret_types = new Typed_identifier_list(); + ret_types->push_back(Typed_identifier("", descriptor_type, bloc)); + Function_type* fntype = Type::make_function_type(NULL, param_types, + ret_types, bloc); + bool is_empty = val_type->interface_type()->is_empty(); + const char* fnname = is_empty ? "efacetype" : "ifacetype"; + Named_object* fn = + Named_object::make_function_declaration(fnname, NULL, fntype, bloc); + const char* asm_name = (is_empty + ? "runtime.efacetype" + : "runtime.ifacetype"); + fn->func_declaration_value()->set_asm_name(asm_name); + + // descriptor_temp = ifacetype(val_temp) + Expression* func = Expression::make_func_reference(fn, NULL, loc); + Expression_list* params = new Expression_list(); + Expression* ref; + if (this->var_ == NULL) + ref = this->expr_; + else + ref = Expression::make_var_reference(this->var_, loc); + params->push_back(ref); + Expression* call = Expression::make_call(func, params, false, loc); + Expression* lhs = Expression::make_temporary_reference(descriptor_temp, + loc); + Statement* s = Statement::make_assignment(lhs, call, loc); + b->add_statement(s); + } + + if (this->clauses_ != NULL) + this->clauses_->lower(b, descriptor_temp, this->break_label()); + + Statement* s = Statement::make_unnamed_label_statement(this->break_label_); + b->add_statement(s); + + return Statement::make_block_statement(b, loc); +} + +// Return the break label for this type switch statement, creating it +// if necessary. + +Unnamed_label* +Type_switch_statement::break_label() +{ + if (this->break_label_ == NULL) + this->break_label_ = new Unnamed_label(this->location()); + return this->break_label_; +} + +// Make a type switch statement. + +Type_switch_statement* +Statement::make_type_switch_statement(Named_object* var, Expression* expr, + source_location location) +{ + return new Type_switch_statement(var, expr, location); +} + +// Class Select_clauses::Select_clause. + +// Traversal. + +int +Select_clauses::Select_clause::traverse(Traverse* traverse) +{ + if (!this->is_lowered_ + && (traverse->traverse_mask() & Traverse::traverse_expressions) != 0) + { + if (this->channel_ != NULL) + { + if (Expression::traverse(&this->channel_, traverse) == TRAVERSE_EXIT) + return TRAVERSE_EXIT; + } + if (this->val_ != NULL) + { + if (Expression::traverse(&this->val_, traverse) == TRAVERSE_EXIT) + return TRAVERSE_EXIT; + } + } + if (this->statements_ != NULL) + { + if (this->statements_->traverse(traverse) == TRAVERSE_EXIT) + return TRAVERSE_EXIT; + } + return TRAVERSE_CONTINUE; +} + +// Lowering. Here we pull out the channel and the send values, to +// enforce the order of evaluation. We also add explicit send and +// receive statements to the clauses. + +void +Select_clauses::Select_clause::lower(Block* b) +{ + if (this->is_default_) + { + gcc_assert(this->channel_ == NULL && this->val_ == NULL); + this->is_lowered_ = true; + return; + } + + source_location loc = this->location_; + + // Evaluate the channel before the select statement. + Temporary_statement* channel_temp = Statement::make_temporary(NULL, + this->channel_, + loc); + b->add_statement(channel_temp); + this->channel_ = Expression::make_temporary_reference(channel_temp, loc); + + // If this is a send clause, evaluate the value to send before the + // select statement. + Temporary_statement* val_temp = NULL; + if (this->is_send_) + { + val_temp = Statement::make_temporary(NULL, this->val_, loc); + b->add_statement(val_temp); + } + + // Add the send or receive before the rest of the statements if any. + Block *init = new Block(b, loc); + Expression* ref = Expression::make_temporary_reference(channel_temp, loc); + if (this->is_send_) + { + Expression* ref2 = Expression::make_temporary_reference(val_temp, loc); + Send_expression* send = Expression::make_send(ref, ref2, loc); + send->discarding_value(); + send->set_for_select(); + init->add_statement(Statement::make_statement(send)); + } + else + { + Receive_expression* recv = Expression::make_receive(ref, loc); + recv->set_for_select(); + if (this->val_ != NULL) + { + gcc_assert(this->var_ == NULL); + init->add_statement(Statement::make_assignment(this->val_, recv, + loc)); + } + else if (this->var_ != NULL) + { + this->var_->var_value()->set_init(recv); + this->var_->var_value()->clear_type_from_chan_element(); + } + else + { + recv->discarding_value(); + init->add_statement(Statement::make_statement(recv)); + } + } + + if (this->statements_ != NULL) + init->add_statement(Statement::make_block_statement(this->statements_, + loc)); + + this->statements_ = init; + + // Now all references should be handled through the statements, not + // through here. + this->is_lowered_ = true; + this->val_ = NULL; + this->var_ = NULL; +} + +// Determine types. + +void +Select_clauses::Select_clause::determine_types() +{ + gcc_assert(this->is_lowered_); + if (this->statements_ != NULL) + this->statements_->determine_types(); +} + +// Whether this clause may fall through to the statement which follows +// the overall select statement. + +bool +Select_clauses::Select_clause::may_fall_through() const +{ + if (this->statements_ == NULL) + return true; + return this->statements_->may_fall_through(); +} + +// Return a tree for the statements to execute. + +tree +Select_clauses::Select_clause::get_statements_tree(Translate_context* context) +{ + if (this->statements_ == NULL) + return NULL_TREE; + return this->statements_->get_tree(context); +} + +// Class Select_clauses. + +// Traversal. + +int +Select_clauses::traverse(Traverse* traverse) +{ + for (Clauses::iterator p = this->clauses_.begin(); + p != this->clauses_.end(); + ++p) + { + if (p->traverse(traverse) == TRAVERSE_EXIT) + return TRAVERSE_EXIT; + } + return TRAVERSE_CONTINUE; +} + +// Lowering. Here we pull out the channel and the send values, to +// enforce the order of evaluation. We also add explicit send and +// receive statements to the clauses. + +void +Select_clauses::lower(Block* b) +{ + for (Clauses::iterator p = this->clauses_.begin(); + p != this->clauses_.end(); + ++p) + p->lower(b); +} + +// Determine types. + +void +Select_clauses::determine_types() +{ + for (Clauses::iterator p = this->clauses_.begin(); + p != this->clauses_.end(); + ++p) + p->determine_types(); +} + +// Return whether these select clauses fall through to the statement +// following the overall select statement. + +bool +Select_clauses::may_fall_through() const +{ + for (Clauses::const_iterator p = this->clauses_.begin(); + p != this->clauses_.end(); + ++p) + if (p->may_fall_through()) + return true; + return false; +} + +// Return a tree. We build a call to +// size_t __go_select(size_t count, _Bool has_default, +// channel* channels, _Bool* is_send) +// +// There are COUNT entries in the CHANNELS and IS_SEND arrays. The +// value in the IS_SEND array is true for send, false for receive. +// __go_select returns an integer from 0 to COUNT, inclusive. A +// return of 0 means that the default case should be run; this only +// happens if HAS_DEFAULT is non-zero. Otherwise the number indicates +// the case to run. + +// FIXME: This doesn't handle channels which send interface types +// where the receiver has a static type which matches that interface. + +tree +Select_clauses::get_tree(Translate_context* context, + Unnamed_label *break_label, + source_location location) +{ + size_t count = this->clauses_.size(); + VEC(constructor_elt, gc)* chan_init = VEC_alloc(constructor_elt, gc, count); + VEC(constructor_elt, gc)* is_send_init = VEC_alloc(constructor_elt, gc, + count); + Select_clause* default_clause = NULL; + tree final_stmt_list = NULL_TREE; + tree channel_type_tree = NULL_TREE; + + size_t i = 0; + for (Clauses::iterator p = this->clauses_.begin(); + p != this->clauses_.end(); + ++p) + { + if (p->is_default()) + { + default_clause = &*p; + --count; + continue; + } + + tree channel_tree = p->channel()->get_tree(context); + if (channel_tree == error_mark_node) + return error_mark_node; + channel_type_tree = TREE_TYPE(channel_tree); + + constructor_elt* elt = VEC_quick_push(constructor_elt, chan_init, NULL); + elt->index = build_int_cstu(sizetype, i); + elt->value = channel_tree; + + elt = VEC_quick_push(constructor_elt, is_send_init, NULL); + elt->index = build_int_cstu(sizetype, i); + elt->value = p->is_send() ? boolean_true_node : boolean_false_node; + + ++i; + } + gcc_assert(i == count); + + if (i == 0 && default_clause != NULL) + { + // There is only a default clause. + gcc_assert(final_stmt_list == NULL_TREE); + tree stmt_list = NULL_TREE; + append_to_statement_list(default_clause->get_statements_tree(context), + &stmt_list); + append_to_statement_list(break_label->get_definition(), &stmt_list); + return stmt_list; + } + + tree pointer_chan_type_tree = (channel_type_tree == NULL_TREE + ? ptr_type_node + : build_pointer_type(channel_type_tree)); + tree chans_arg; + tree pointer_boolean_type_tree = build_pointer_type(boolean_type_node); + tree is_sends_arg; + + if (i == 0) + { + chans_arg = fold_convert_loc(location, pointer_chan_type_tree, + null_pointer_node); + is_sends_arg = fold_convert_loc(location, pointer_boolean_type_tree, + null_pointer_node); + } + else + { + tree index_type_tree = build_index_type(size_int(count - 1)); + tree chan_array_type_tree = build_array_type(channel_type_tree, + index_type_tree); + tree chan_constructor = build_constructor(chan_array_type_tree, + chan_init); + tree chan_var = create_tmp_var(chan_array_type_tree, "CHAN"); + DECL_IGNORED_P(chan_var) = 0; + DECL_INITIAL(chan_var) = chan_constructor; + DECL_SOURCE_LOCATION(chan_var) = location; + TREE_ADDRESSABLE(chan_var) = 1; + tree decl_expr = build1(DECL_EXPR, void_type_node, chan_var); + SET_EXPR_LOCATION(decl_expr, location); + append_to_statement_list(decl_expr, &final_stmt_list); + + tree is_send_array_type_tree = build_array_type(boolean_type_node, + index_type_tree); + tree is_send_constructor = build_constructor(is_send_array_type_tree, + is_send_init); + tree is_send_var = create_tmp_var(is_send_array_type_tree, "ISSEND"); + DECL_IGNORED_P(is_send_var) = 0; + DECL_INITIAL(is_send_var) = is_send_constructor; + DECL_SOURCE_LOCATION(is_send_var) = location; + TREE_ADDRESSABLE(is_send_var) = 1; + decl_expr = build1(DECL_EXPR, void_type_node, is_send_var); + SET_EXPR_LOCATION(decl_expr, location); + append_to_statement_list(decl_expr, &final_stmt_list); + + chans_arg = fold_convert_loc(location, pointer_chan_type_tree, + build_fold_addr_expr_loc(location, + chan_var)); + is_sends_arg = fold_convert_loc(location, pointer_boolean_type_tree, + build_fold_addr_expr_loc(location, + is_send_var)); + } + + static tree select_fndecl; + tree call = Gogo::call_builtin(&select_fndecl, + location, + "__go_select", + 4, + sizetype, + sizetype, + size_int(count), + boolean_type_node, + (default_clause == NULL + ? boolean_false_node + : boolean_true_node), + pointer_chan_type_tree, + chans_arg, + pointer_boolean_type_tree, + is_sends_arg); + + tree stmt_list = NULL_TREE; + + if (default_clause != NULL) + this->add_clause_tree(context, 0, default_clause, break_label, &stmt_list); + + i = 1; + for (Clauses::iterator p = this->clauses_.begin(); + p != this->clauses_.end(); + ++p) + { + if (!p->is_default()) + { + this->add_clause_tree(context, i, &*p, break_label, &stmt_list); + ++i; + } + } + + append_to_statement_list(break_label->get_definition(), &stmt_list); + + tree switch_stmt = build3(SWITCH_EXPR, sizetype, call, stmt_list, NULL_TREE); + SET_EXPR_LOCATION(switch_stmt, location); + append_to_statement_list(switch_stmt, &final_stmt_list); + + return final_stmt_list; +} + +// Add the tree for CLAUSE to STMT_LIST. + +void +Select_clauses::add_clause_tree(Translate_context* context, int case_index, + Select_clause* clause, + Unnamed_label* bottom_label, tree* stmt_list) +{ + tree label = create_artificial_label(clause->location()); + append_to_statement_list(build3(CASE_LABEL_EXPR, void_type_node, + build_int_cst(sizetype, case_index), + NULL_TREE, label), + stmt_list); + append_to_statement_list(clause->get_statements_tree(context), stmt_list); + tree g = bottom_label->get_goto(clause->statements() == NULL + ? clause->location() + : clause->statements()->end_location()); + append_to_statement_list(g, stmt_list); +} + +// Class Select_statement. + +// Return the break label for this switch statement, creating it if +// necessary. + +Unnamed_label* +Select_statement::break_label() +{ + if (this->break_label_ == NULL) + this->break_label_ = new Unnamed_label(this->location()); + return this->break_label_; +} + +// Lower a select statement. This will still return a select +// statement, but it will be modified to implement the order of +// evaluation rules, and to include the send and receive statements as +// explicit statements in the clauses. + +Statement* +Select_statement::do_lower(Gogo*, Block* enclosing) +{ + if (this->is_lowered_) + return this; + Block* b = new Block(enclosing, this->location()); + this->clauses_->lower(b); + this->is_lowered_ = true; + b->add_statement(this); + return Statement::make_block_statement(b, this->location()); +} + +// Return the tree for a select statement. + +tree +Select_statement::do_get_tree(Translate_context* context) +{ + return this->clauses_->get_tree(context, this->break_label(), + this->location()); +} + +// Make a select statement. + +Select_statement* +Statement::make_select_statement(source_location location) +{ + return new Select_statement(location); +} + +// Class For_statement. + +// Traversal. + +int +For_statement::do_traverse(Traverse* traverse) +{ + if (this->init_ != NULL) + { + if (this->init_->traverse(traverse) == TRAVERSE_EXIT) + return TRAVERSE_EXIT; + } + if (this->cond_ != NULL) + { + if (this->traverse_expression(traverse, &this->cond_) == TRAVERSE_EXIT) + return TRAVERSE_EXIT; + } + if (this->post_ != NULL) + { + if (this->post_->traverse(traverse) == TRAVERSE_EXIT) + return TRAVERSE_EXIT; + } + return this->statements_->traverse(traverse); +} + +// Lower a For_statement into if statements and gotos. Getting rid of +// complex statements make it easier to handle garbage collection. + +Statement* +For_statement::do_lower(Gogo*, Block* enclosing) +{ + Statement* s; + source_location loc = this->location(); + + Block* b = new Block(enclosing, this->location()); + if (this->init_ != NULL) + { + s = Statement::make_block_statement(this->init_, + this->init_->start_location()); + b->add_statement(s); + } + + Unnamed_label* entry = NULL; + if (this->cond_ != NULL) + { + entry = new Unnamed_label(this->location()); + b->add_statement(Statement::make_goto_unnamed_statement(entry, loc)); + } + + Unnamed_label* top = new Unnamed_label(this->location()); + b->add_statement(Statement::make_unnamed_label_statement(top)); + + s = Statement::make_block_statement(this->statements_, + this->statements_->start_location()); + b->add_statement(s); + + source_location end_loc = this->statements_->end_location(); + + Unnamed_label* cont = this->continue_label_; + if (cont != NULL) + b->add_statement(Statement::make_unnamed_label_statement(cont)); + + if (this->post_ != NULL) + { + s = Statement::make_block_statement(this->post_, + this->post_->start_location()); + b->add_statement(s); + end_loc = this->post_->end_location(); + } + + if (this->cond_ == NULL) + b->add_statement(Statement::make_goto_unnamed_statement(top, end_loc)); + else + { + b->add_statement(Statement::make_unnamed_label_statement(entry)); + + source_location cond_loc = this->cond_->location(); + Block* then_block = new Block(b, cond_loc); + s = Statement::make_goto_unnamed_statement(top, cond_loc); + then_block->add_statement(s); + + s = Statement::make_if_statement(this->cond_, then_block, NULL, cond_loc); + b->add_statement(s); + } + + Unnamed_label* brk = this->break_label_; + if (brk != NULL) + b->add_statement(Statement::make_unnamed_label_statement(brk)); + + b->set_end_location(end_loc); + + return Statement::make_block_statement(b, loc); +} + +// Return the break label, creating it if necessary. + +Unnamed_label* +For_statement::break_label() +{ + if (this->break_label_ == NULL) + this->break_label_ = new Unnamed_label(this->location()); + return this->break_label_; +} + +// Return the continue LABEL_EXPR. + +Unnamed_label* +For_statement::continue_label() +{ + if (this->continue_label_ == NULL) + this->continue_label_ = new Unnamed_label(this->location()); + return this->continue_label_; +} + +// Set the break and continue labels a for statement. This is used +// when lowering a for range statement. + +void +For_statement::set_break_continue_labels(Unnamed_label* break_label, + Unnamed_label* continue_label) +{ + gcc_assert(this->break_label_ == NULL && this->continue_label_ == NULL); + this->break_label_ = break_label; + this->continue_label_ = continue_label; +} + +// Make a for statement. + +For_statement* +Statement::make_for_statement(Block* init, Expression* cond, Block* post, + source_location location) +{ + return new For_statement(init, cond, post, location); +} + +// Class For_range_statement. + +// Traversal. + +int +For_range_statement::do_traverse(Traverse* traverse) +{ + if (this->traverse_expression(traverse, &this->index_var_) == TRAVERSE_EXIT) + return TRAVERSE_EXIT; + if (this->value_var_ != NULL) + { + if (this->traverse_expression(traverse, &this->value_var_) + == TRAVERSE_EXIT) + return TRAVERSE_EXIT; + } + if (this->traverse_expression(traverse, &this->range_) == TRAVERSE_EXIT) + return TRAVERSE_EXIT; + return this->statements_->traverse(traverse); +} + +// Lower a for range statement. For simplicity we lower this into a +// for statement, which will then be lowered in turn to goto +// statements. + +Statement* +For_range_statement::do_lower(Gogo* gogo, Block* enclosing) +{ + Type* range_type = this->range_->type(); + if (range_type->points_to() != NULL + && range_type->points_to()->array_type() != NULL + && !range_type->points_to()->is_open_array_type()) + range_type = range_type->points_to(); + + Type* index_type; + Type* value_type = NULL; + if (range_type->array_type() != NULL) + { + index_type = Type::lookup_integer_type("int"); + value_type = range_type->array_type()->element_type(); + } + else if (range_type->is_string_type()) + { + index_type = Type::lookup_integer_type("int"); + value_type = index_type; + } + else if (range_type->map_type() != NULL) + { + index_type = range_type->map_type()->key_type(); + value_type = range_type->map_type()->val_type(); + } + else if (range_type->channel_type() != NULL) + { + index_type = range_type->channel_type()->element_type(); + if (this->value_var_ != NULL) + { + if (!this->value_var_->type()->is_error_type()) + this->report_error(_("too many variables for range clause " + "with channel")); + return Statement::make_error_statement(this->location()); + } + } + else + { + this->report_error(_("range clause must have " + "array, slice, setring, map, or channel type")); + return Statement::make_error_statement(this->location()); + } + + source_location loc = this->location(); + Block* temp_block = new Block(enclosing, loc); + + Named_object* range_object = NULL; + Temporary_statement* range_temp = NULL; + Var_expression* ve = this->range_->var_expression(); + if (ve != NULL) + range_object = ve->named_object(); + else + { + range_temp = Statement::make_temporary(NULL, this->range_, loc); + temp_block->add_statement(range_temp); + } + + Temporary_statement* index_temp = Statement::make_temporary(index_type, + NULL, loc); + temp_block->add_statement(index_temp); + + Temporary_statement* value_temp = NULL; + if (this->value_var_ != NULL) + { + value_temp = Statement::make_temporary(value_type, NULL, loc); + temp_block->add_statement(value_temp); + } + + Block* body = new Block(temp_block, loc); + + Block* init; + Expression* cond; + Block* iter_init; + Block* post; + + // Arrange to do a loop appropriate for the type. We will produce + // for INIT ; COND ; POST { + // ITER_INIT + // INDEX = INDEX_TEMP + // VALUE = VALUE_TEMP // If there is a value + // original statements + // } + + if (range_type->array_type() != NULL) + this->lower_range_array(gogo, temp_block, body, range_object, range_temp, + index_temp, value_temp, &init, &cond, &iter_init, + &post); + else if (range_type->is_string_type()) + this->lower_range_string(gogo, temp_block, body, range_object, range_temp, + index_temp, value_temp, &init, &cond, &iter_init, + &post); + else if (range_type->map_type() != NULL) + this->lower_range_map(gogo, temp_block, body, range_object, range_temp, + index_temp, value_temp, &init, &cond, &iter_init, + &post); + else if (range_type->channel_type() != NULL) + this->lower_range_channel(gogo, temp_block, body, range_object, range_temp, + index_temp, value_temp, &init, &cond, &iter_init, + &post); + else + gcc_unreachable(); + + if (iter_init != NULL) + body->add_statement(Statement::make_block_statement(iter_init, loc)); + + Statement* assign; + Expression* index_ref = Expression::make_temporary_reference(index_temp, loc); + if (this->value_var_ == NULL) + { + assign = Statement::make_assignment(this->index_var_, index_ref, loc); + } + else + { + Expression_list* lhs = new Expression_list(); + lhs->push_back(this->index_var_); + lhs->push_back(this->value_var_); + + Expression_list* rhs = new Expression_list(); + rhs->push_back(index_ref); + rhs->push_back(Expression::make_temporary_reference(value_temp, loc)); + + assign = Statement::make_tuple_assignment(lhs, rhs, loc); + } + body->add_statement(assign); + + body->add_statement(Statement::make_block_statement(this->statements_, loc)); + + body->set_end_location(this->statements_->end_location()); + + For_statement* loop = Statement::make_for_statement(init, cond, post, + this->location()); + loop->add_statements(body); + loop->set_break_continue_labels(this->break_label_, this->continue_label_); + + temp_block->add_statement(loop); + + return Statement::make_block_statement(temp_block, loc); +} + +// Return a reference to the range, which may be in RANGE_OBJECT or in +// RANGE_TEMP. + +Expression* +For_range_statement::make_range_ref(Named_object* range_object, + Temporary_statement* range_temp, + source_location loc) +{ + if (range_object != NULL) + return Expression::make_var_reference(range_object, loc); + else + return Expression::make_temporary_reference(range_temp, loc); +} + +// Return a call to the predeclared function FUNCNAME passing a +// reference to the temporary variable ARG. + +Expression* +For_range_statement::call_builtin(Gogo* gogo, const char* funcname, + Expression* arg, + source_location loc) +{ + Named_object* no = gogo->lookup_global(funcname); + gcc_assert(no != NULL && no->is_function_declaration()); + Expression* func = Expression::make_func_reference(no, NULL, loc); + Expression_list* params = new Expression_list(); + params->push_back(arg); + return Expression::make_call(func, params, false, loc); +} + +// Lower a for range over an array or slice. + +void +For_range_statement::lower_range_array(Gogo* gogo, + Block* enclosing, + Block* body_block, + Named_object* range_object, + Temporary_statement* range_temp, + Temporary_statement* index_temp, + Temporary_statement* value_temp, + Block** pinit, + Expression** pcond, + Block** piter_init, + Block** ppost) +{ + source_location loc = this->location(); + + // The loop we generate: + // len_temp := len(range) + // for index_temp = 0; index_temp < len_temp; index_temp++ { + // value_temp = range[index_temp] + // index = index_temp + // value = value_temp + // original body + // } + + // Set *PINIT to + // var len_temp int + // len_temp = len(range) + // index_temp = 0 + + Block* init = new Block(enclosing, loc); + + Expression* ref = this->make_range_ref(range_object, range_temp, loc); + Expression* len_call = this->call_builtin(gogo, "len", ref, loc); + Temporary_statement* len_temp = Statement::make_temporary(index_temp->type(), + len_call, loc); + init->add_statement(len_temp); + + mpz_t zval; + mpz_init_set_ui(zval, 0UL); + Expression* zexpr = Expression::make_integer(&zval, NULL, loc); + mpz_clear(zval); + + ref = Expression::make_temporary_reference(index_temp, loc); + Statement* s = Statement::make_assignment(ref, zexpr, loc); + init->add_statement(s); + + *pinit = init; + + // Set *PCOND to + // index_temp < len_temp + + ref = Expression::make_temporary_reference(index_temp, loc); + Expression* ref2 = Expression::make_temporary_reference(len_temp, loc); + Expression* lt = Expression::make_binary(OPERATOR_LT, ref, ref2, loc); + + *pcond = lt; + + // Set *PITER_INIT to + // value_temp = range[index_temp] + + Block* iter_init = NULL; + if (value_temp != NULL) + { + iter_init = new Block(body_block, loc); + + ref = this->make_range_ref(range_object, range_temp, loc); + Expression* ref2 = Expression::make_temporary_reference(index_temp, loc); + Expression* index = Expression::make_index(ref, ref2, NULL, loc); + + ref = Expression::make_temporary_reference(value_temp, loc); + s = Statement::make_assignment(ref, index, loc); + + iter_init->add_statement(s); + } + *piter_init = iter_init; + + // Set *PPOST to + // index_temp++ + + Block* post = new Block(enclosing, loc); + ref = Expression::make_temporary_reference(index_temp, loc); + s = Statement::make_inc_statement(ref); + post->add_statement(s); + *ppost = post; +} + +// Lower a for range over a string. + +void +For_range_statement::lower_range_string(Gogo* gogo, + Block* enclosing, + Block* body_block, + Named_object* range_object, + Temporary_statement* range_temp, + Temporary_statement* index_temp, + Temporary_statement* value_temp, + Block** pinit, + Expression** pcond, + Block** piter_init, + Block** ppost) +{ + source_location loc = this->location(); + + // The loop we generate: + // var next_index_temp int + // for index_temp = 0; ; index_temp = next_index_temp { + // next_index_temp, value_temp = stringiter2(range, index_temp) + // if next_index_temp == 0 { + // break + // } + // index = index_temp + // value = value_temp + // original body + // } + + // Set *PINIT to + // var next_index_temp int + // index_temp = 0 + + Block* init = new Block(enclosing, loc); + + Temporary_statement* next_index_temp = + Statement::make_temporary(index_temp->type(), NULL, loc); + init->add_statement(next_index_temp); + + mpz_t zval; + mpz_init_set_ui(zval, 0UL); + Expression* zexpr = Expression::make_integer(&zval, NULL, loc); + + Expression* ref = Expression::make_temporary_reference(index_temp, loc); + Statement* s = Statement::make_assignment(ref, zexpr, loc); + + init->add_statement(s); + *pinit = init; + + // The loop has no condition. + + *pcond = NULL; + + // Set *PITER_INIT to + // next_index_temp = runtime.stringiter(range, index_temp) + // or + // next_index_temp, value_temp = runtime.stringiter2(range, index_temp) + // followed by + // if next_index_temp == 0 { + // break + // } + + Block* iter_init = new Block(body_block, loc); + + Named_object* no; + if (value_temp == NULL) + { + static Named_object* stringiter; + if (stringiter == NULL) + { + source_location bloc = BUILTINS_LOCATION; + Type* int_type = gogo->lookup_global("int")->type_value(); + + Typed_identifier_list* params = new Typed_identifier_list(); + params->push_back(Typed_identifier("s", Type::make_string_type(), + bloc)); + params->push_back(Typed_identifier("k", int_type, bloc)); + + Typed_identifier_list* results = new Typed_identifier_list(); + results->push_back(Typed_identifier("", int_type, bloc)); + + Function_type* fntype = Type::make_function_type(NULL, params, + results, bloc); + stringiter = Named_object::make_function_declaration("stringiter", + NULL, fntype, + bloc); + const char* n = "runtime.stringiter"; + stringiter->func_declaration_value()->set_asm_name(n); + } + no = stringiter; + } + else + { + static Named_object* stringiter2; + if (stringiter2 == NULL) + { + source_location bloc = BUILTINS_LOCATION; + Type* int_type = gogo->lookup_global("int")->type_value(); + + Typed_identifier_list* params = new Typed_identifier_list(); + params->push_back(Typed_identifier("s", Type::make_string_type(), + bloc)); + params->push_back(Typed_identifier("k", int_type, bloc)); + + Typed_identifier_list* results = new Typed_identifier_list(); + results->push_back(Typed_identifier("", int_type, bloc)); + results->push_back(Typed_identifier("", int_type, bloc)); + + Function_type* fntype = Type::make_function_type(NULL, params, + results, bloc); + stringiter2 = Named_object::make_function_declaration("stringiter", + NULL, fntype, + bloc); + const char* n = "runtime.stringiter2"; + stringiter2->func_declaration_value()->set_asm_name(n); + } + no = stringiter2; + } + + Expression* func = Expression::make_func_reference(no, NULL, loc); + Expression_list* params = new Expression_list(); + params->push_back(this->make_range_ref(range_object, range_temp, loc)); + params->push_back(Expression::make_temporary_reference(index_temp, loc)); + Call_expression* call = Expression::make_call(func, params, false, loc); + + if (value_temp == NULL) + { + ref = Expression::make_temporary_reference(next_index_temp, loc); + s = Statement::make_assignment(ref, call, loc); + } + else + { + Expression_list* lhs = new Expression_list(); + lhs->push_back(Expression::make_temporary_reference(next_index_temp, + loc)); + lhs->push_back(Expression::make_temporary_reference(value_temp, loc)); + + Expression_list* rhs = new Expression_list(); + rhs->push_back(Expression::make_call_result(call, 0)); + rhs->push_back(Expression::make_call_result(call, 1)); + + s = Statement::make_tuple_assignment(lhs, rhs, loc); + } + iter_init->add_statement(s); + + ref = Expression::make_temporary_reference(next_index_temp, loc); + zexpr = Expression::make_integer(&zval, NULL, loc); + mpz_clear(zval); + Expression* equals = Expression::make_binary(OPERATOR_EQEQ, ref, zexpr, loc); + + Block* then_block = new Block(iter_init, loc); + s = Statement::make_break_statement(this->break_label(), loc); + then_block->add_statement(s); + + s = Statement::make_if_statement(equals, then_block, NULL, loc); + iter_init->add_statement(s); + + *piter_init = iter_init; + + // Set *PPOST to + // index_temp = next_index_temp + + Block* post = new Block(enclosing, loc); + + Expression* lhs = Expression::make_temporary_reference(index_temp, loc); + Expression* rhs = Expression::make_temporary_reference(next_index_temp, loc); + s = Statement::make_assignment(lhs, rhs, loc); + + post->add_statement(s); + *ppost = post; +} + +// Lower a for range over a map. + +void +For_range_statement::lower_range_map(Gogo* gogo, + Block* enclosing, + Block* body_block, + Named_object* range_object, + Temporary_statement* range_temp, + Temporary_statement* index_temp, + Temporary_statement* value_temp, + Block** pinit, + Expression** pcond, + Block** piter_init, + Block** ppost) +{ + source_location loc = this->location(); + + // The runtime uses a struct to handle ranges over a map. The + // struct is four pointers long. The first pointer is NULL when we + // have completed the iteration. + + // The loop we generate: + // var hiter map_iteration_struct + // for mapiterinit(range, &hiter); hiter[0] != nil; mapiternext(&hiter) { + // mapiter2(hiter, &index_temp, &value_temp) + // index = index_temp + // value = value_temp + // original body + // } + + // Set *PINIT to + // var hiter map_iteration_struct + // runtime.mapiterinit(range, &hiter) + + Block* init = new Block(enclosing, loc); + + const unsigned long map_iteration_size = 4; + + mpz_t ival; + mpz_init_set_ui(ival, map_iteration_size); + Expression* iexpr = Expression::make_integer(&ival, NULL, loc); + mpz_clear(ival); + + Type* byte_type = gogo->lookup_global("byte")->type_value(); + Type* ptr_type = Type::make_pointer_type(byte_type); + + Type* map_iteration_type = Type::make_array_type(ptr_type, iexpr); + Type* map_iteration_ptr = Type::make_pointer_type(map_iteration_type); + + Temporary_statement* hiter = Statement::make_temporary(map_iteration_type, + NULL, loc); + init->add_statement(hiter); + + source_location bloc = BUILTINS_LOCATION; + Typed_identifier_list* param_types = new Typed_identifier_list(); + param_types->push_back(Typed_identifier("map", this->range_->type(), bloc)); + param_types->push_back(Typed_identifier("it", map_iteration_ptr, bloc)); + Function_type* fntype = Type::make_function_type(NULL, param_types, NULL, + bloc); + + Named_object* mapiterinit = + Named_object::make_function_declaration("mapiterinit", NULL, fntype, bloc); + const char* n = "runtime.mapiterinit"; + mapiterinit->func_declaration_value()->set_asm_name(n); + + Expression* func = Expression::make_func_reference(mapiterinit, NULL, loc); + Expression_list* params = new Expression_list(); + params->push_back(this->make_range_ref(range_object, range_temp, loc)); + Expression* ref = Expression::make_temporary_reference(hiter, loc); + params->push_back(Expression::make_unary(OPERATOR_AND, ref, loc)); + Expression* call = Expression::make_call(func, params, false, loc); + init->add_statement(Statement::make_statement(call)); + + *pinit = init; + + // Set *PCOND to + // hiter[0] != nil + + ref = Expression::make_temporary_reference(hiter, loc); + + mpz_t zval; + mpz_init_set_ui(zval, 0UL); + Expression* zexpr = Expression::make_integer(&zval, NULL, loc); + mpz_clear(zval); + + Expression* index = Expression::make_index(ref, zexpr, NULL, loc); + + Expression* ne = Expression::make_binary(OPERATOR_NOTEQ, index, + Expression::make_nil(loc), + loc); + + *pcond = ne; + + // Set *PITER_INIT to + // mapiter1(hiter, &index_temp) + // or + // mapiter2(hiter, &index_temp, &value_temp) + + Block* iter_init = new Block(body_block, loc); + + param_types = new Typed_identifier_list(); + param_types->push_back(Typed_identifier("hiter", map_iteration_ptr, bloc)); + Type* pkey_type = Type::make_pointer_type(index_temp->type()); + param_types->push_back(Typed_identifier("key", pkey_type, bloc)); + if (value_temp != NULL) + { + Type* pval_type = Type::make_pointer_type(value_temp->type()); + param_types->push_back(Typed_identifier("val", pval_type, bloc)); + } + fntype = Type::make_function_type(NULL, param_types, NULL, bloc); + n = value_temp == NULL ? "mapiter1" : "mapiter2"; + Named_object* mapiter = Named_object::make_function_declaration(n, NULL, + fntype, bloc); + n = value_temp == NULL ? "runtime.mapiter1" : "runtime.mapiter2"; + mapiter->func_declaration_value()->set_asm_name(n); + + func = Expression::make_func_reference(mapiter, NULL, loc); + params = new Expression_list(); + ref = Expression::make_temporary_reference(hiter, loc); + params->push_back(Expression::make_unary(OPERATOR_AND, ref, loc)); + ref = Expression::make_temporary_reference(index_temp, loc); + params->push_back(Expression::make_unary(OPERATOR_AND, ref, loc)); + if (value_temp != NULL) + { + ref = Expression::make_temporary_reference(value_temp, loc); + params->push_back(Expression::make_unary(OPERATOR_AND, ref, loc)); + } + call = Expression::make_call(func, params, false, loc); + iter_init->add_statement(Statement::make_statement(call)); + + *piter_init = iter_init; + + // Set *PPOST to + // mapiternext(&hiter) + + Block* post = new Block(enclosing, loc); + + static Named_object* mapiternext; + if (mapiternext == NULL) + { + param_types = new Typed_identifier_list(); + param_types->push_back(Typed_identifier("it", map_iteration_ptr, bloc)); + fntype = Type::make_function_type(NULL, param_types, NULL, bloc); + mapiternext = Named_object::make_function_declaration("mapiternext", + NULL, fntype, + bloc); + const char* n = "runtime.mapiternext"; + mapiternext->func_declaration_value()->set_asm_name(n); + } + + func = Expression::make_func_reference(mapiternext, NULL, loc); + params = new Expression_list(); + ref = Expression::make_temporary_reference(hiter, loc); + params->push_back(Expression::make_unary(OPERATOR_AND, ref, loc)); + call = Expression::make_call(func, params, false, loc); + post->add_statement(Statement::make_statement(call)); + + *ppost = post; +} + +// Lower a for range over a channel. + +void +For_range_statement::lower_range_channel(Gogo* gogo, + Block*, + Block* body_block, + Named_object* range_object, + Temporary_statement* range_temp, + Temporary_statement* index_temp, + Temporary_statement* value_temp, + Block** pinit, + Expression** pcond, + Block** piter_init, + Block** ppost) +{ + gcc_assert(value_temp == NULL); + + source_location loc = this->location(); + + // The loop we generate: + // for { + // index_temp = <-range + // if closed(range) { + // break + // } + // index = index_temp + // value = value_temp + // original body + // } + + // We have no initialization code, no condition, and no post code. + + *pinit = NULL; + *pcond = NULL; + *ppost = NULL; + + // Set *PITER_INIT to + // index_temp = <-range + // if closed(range) { + // break + // } + + Block* iter_init = new Block(body_block, loc); + + Expression* ref = this->make_range_ref(range_object, range_temp, loc); + Expression* cond = this->call_builtin(gogo, "closed", ref, loc); + + ref = this->make_range_ref(range_object, range_temp, loc); + Expression* recv = Expression::make_receive(ref, loc); + ref = Expression::make_temporary_reference(index_temp, loc); + Statement* s = Statement::make_assignment(ref, recv, loc); + iter_init->add_statement(s); + + Block* then_block = new Block(iter_init, loc); + s = Statement::make_break_statement(this->break_label(), loc); + then_block->add_statement(s); + + s = Statement::make_if_statement(cond, then_block, NULL, loc); + iter_init->add_statement(s); + + *piter_init = iter_init; +} + +// Return the break LABEL_EXPR. + +Unnamed_label* +For_range_statement::break_label() +{ + if (this->break_label_ == NULL) + this->break_label_ = new Unnamed_label(this->location()); + return this->break_label_; +} + +// Return the continue LABEL_EXPR. + +Unnamed_label* +For_range_statement::continue_label() +{ + if (this->continue_label_ == NULL) + this->continue_label_ = new Unnamed_label(this->location()); + return this->continue_label_; +} + +// Make a for statement with a range clause. + +For_range_statement* +Statement::make_for_range_statement(Expression* index_var, + Expression* value_var, + Expression* range, + source_location location) +{ + return new For_range_statement(index_var, value_var, range, location); +} diff --git a/gcc/go/gofrontend/statements.h b/gcc/go/gofrontend/statements.h new file mode 100644 index 0000000..6ca586f --- /dev/null +++ b/gcc/go/gofrontend/statements.h @@ -0,0 +1,1420 @@ +// statements.h -- Go frontend statements. -*- C++ -*- + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +#ifndef GO_STATEMENTS_H +#define GO_STATEMENTS_H + +#include "operator.h" + +class Gogo; +class Traverse; +class Block; +class Function; +class Unnamed_label; +class Temporary_statement; +class Variable_declaration_statement; +class Return_statement; +class Thunk_statement; +class Label_statement; +class For_statement; +class For_range_statement; +class Switch_statement; +class Type_switch_statement; +class Select_statement; +class Variable; +class Named_object; +class Label; +class Translate_context; +class Expression; +class Expression_list; +class Struct_type; +class Call_expression; +class Map_index_expression; +class Receive_expression; +class Case_clauses; +class Type_case_clauses; +class Select_clauses; +class Typed_identifier_list; + +// This class is used to traverse assignments made by a statement +// which makes assignments. + +class Traverse_assignments +{ + public: + Traverse_assignments() + { } + + virtual ~Traverse_assignments() + { } + + // This is called for a variable initialization. + virtual void + initialize_variable(Named_object*) = 0; + + // This is called for each assignment made by the statement. PLHS + // points to the left hand side, and PRHS points to the right hand + // side. PRHS may be NULL if there is no associated expression, as + // in the bool set by a non-blocking receive. + virtual void + assignment(Expression** plhs, Expression** prhs) = 0; + + // This is called for each expression which is not passed to the + // assignment function. This is used for some of the statements + // which assign two values, for which there is no expression which + // describes the value. For ++ and -- the value is passed to both + // the assignment method and the rhs method. IS_STORED is true if + // this value is being stored directly. It is false if the value is + // computed but not stored. IS_LOCAL is true if the value is being + // stored in a local variable or this is being called by a return + // statement. + virtual void + value(Expression**, bool is_stored, bool is_local) = 0; +}; + +// A single statement. + +class Statement +{ + public: + // The types of statements. + enum Statement_classification + { + STATEMENT_ERROR, + STATEMENT_VARIABLE_DECLARATION, + STATEMENT_TEMPORARY, + STATEMENT_ASSIGNMENT, + STATEMENT_EXPRESSION, + STATEMENT_BLOCK, + STATEMENT_GO, + STATEMENT_DEFER, + STATEMENT_RETURN, + STATEMENT_BREAK_OR_CONTINUE, + STATEMENT_GOTO, + STATEMENT_GOTO_UNNAMED, + STATEMENT_LABEL, + STATEMENT_UNNAMED_LABEL, + STATEMENT_IF, + STATEMENT_CONSTANT_SWITCH, + STATEMENT_SELECT, + + // These statements types are created by the parser, but they + // disappear during the lowering pass. + STATEMENT_ASSIGNMENT_OPERATION, + STATEMENT_TUPLE_ASSIGNMENT, + STATEMENT_TUPLE_MAP_ASSIGNMENT, + STATEMENT_MAP_ASSIGNMENT, + STATEMENT_TUPLE_RECEIVE_ASSIGNMENT, + STATEMENT_TUPLE_TYPE_GUARD_ASSIGNMENT, + STATEMENT_INCDEC, + STATEMENT_FOR, + STATEMENT_FOR_RANGE, + STATEMENT_SWITCH, + STATEMENT_TYPE_SWITCH + }; + + Statement(Statement_classification, source_location); + + virtual ~Statement(); + + // Make a variable declaration. + static Statement* + make_variable_declaration(Named_object*); + + // Make a statement which creates a temporary variable and + // initializes it to an expression. The block is used if the + // temporary variable has to be explicitly destroyed; the variable + // must still be added to the block. References to the temporary + // variable may be constructed using make_temporary_reference. + // Either the type or the initialization expression may be NULL, but + // not both. + static Temporary_statement* + make_temporary(Type*, Expression*, source_location); + + // Make an assignment statement. + static Statement* + make_assignment(Expression*, Expression*, source_location); + + // Make an assignment operation (+=, etc.). + static Statement* + make_assignment_operation(Operator, Expression*, Expression*, + source_location); + + // Make a tuple assignment statement. + static Statement* + make_tuple_assignment(Expression_list*, Expression_list*, source_location); + + // Make an assignment from a map index to a pair of variables. + static Statement* + make_tuple_map_assignment(Expression* val, Expression* present, + Expression*, source_location); + + // Make a statement which assigns a pair of values to a map. + static Statement* + make_map_assignment(Expression*, Expression* val, + Expression* should_set, source_location); + + // Make an assignment from a nonblocking receive to a pair of + // variables. + static Statement* + make_tuple_receive_assignment(Expression* val, Expression* success, + Expression* channel, source_location); + + // Make an assignment from a type guard to a pair of variables. + static Statement* + make_tuple_type_guard_assignment(Expression* val, Expression* ok, + Expression* expr, Type* type, + source_location); + + // Make an expression statement from an Expression. + static Statement* + make_statement(Expression*); + + // Make a block statement from a Block. This is an embedded list of + // statements which may also include variable definitions. + static Statement* + make_block_statement(Block*, source_location); + + // Make an increment statement. + static Statement* + make_inc_statement(Expression*); + + // Make a decrement statement. + static Statement* + make_dec_statement(Expression*); + + // Make a go statement. + static Statement* + make_go_statement(Call_expression* call, source_location); + + // Make a defer statement. + static Statement* + make_defer_statement(Call_expression* call, source_location); + + // Make a return statement. + static Statement* + make_return_statement(const Typed_identifier_list*, Expression_list*, + source_location); + + // Make a break statement. + static Statement* + make_break_statement(Unnamed_label* label, source_location); + + // Make a continue statement. + static Statement* + make_continue_statement(Unnamed_label* label, source_location); + + // Make a goto statement. + static Statement* + make_goto_statement(Label* label, source_location); + + // Make a goto statement to an unnamed label. + static Statement* + make_goto_unnamed_statement(Unnamed_label* label, source_location); + + // Make a label statement--where the label is defined. + static Statement* + make_label_statement(Label* label, source_location); + + // Make an unnamed label statement--where the label is defined. + static Statement* + make_unnamed_label_statement(Unnamed_label* label); + + // Make an if statement. + static Statement* + make_if_statement(Expression* cond, Block* then_block, Block* else_block, + source_location); + + // Make a switch statement. + static Switch_statement* + make_switch_statement(Expression* switch_val, source_location); + + // Make a type switch statement. + static Type_switch_statement* + make_type_switch_statement(Named_object* var, Expression*, source_location); + + // Make a select statement. + static Select_statement* + make_select_statement(source_location); + + // Make a for statement. + static For_statement* + make_for_statement(Block* init, Expression* cond, Block* post, + source_location location); + + // Make a for statement with a range clause. + static For_range_statement* + make_for_range_statement(Expression* index_var, Expression* value_var, + Expression* range, source_location); + + // Return the statement classification. + Statement_classification + classification() const + { return this->classification_; } + + // Get the statement location. + source_location + location() const + { return this->location_; } + + // Traverse the tree. + int + traverse(Block*, size_t* index, Traverse*); + + // Traverse the contents of this statement--the expressions and + // statements which it contains. + int + traverse_contents(Traverse*); + + // If this statement assigns some values, it calls a function for + // each value to which this statement assigns a value, and returns + // true. If this statement does not assign any values, it returns + // false. + bool + traverse_assignments(Traverse_assignments* tassign); + + // Lower a statement. This is called immediately after parsing to + // simplify statements for further processing. It returns the same + // Statement or a new one. BLOCK is the block containing this + // statement. + Statement* + lower(Gogo* gogo, Block* block) + { return this->do_lower(gogo, block); } + + // Set type information for unnamed constants. + void + determine_types(); + + // Check types in a statement. This simply checks that any + // expressions used by the statement have the right type. + void + check_types(Gogo* gogo) + { this->do_check_types(gogo); } + + // Return whether this is a block statement. + bool + is_block_statement() const + { return this->classification_ == STATEMENT_BLOCK; } + + // If this is a variable declaration statement, return it. + // Otherwise return NULL. + Variable_declaration_statement* + variable_declaration_statement() + { + return this->convert<Variable_declaration_statement, + STATEMENT_VARIABLE_DECLARATION>(); + } + + // If this is a return statement, return it. Otherwise return NULL. + Return_statement* + return_statement() + { return this->convert<Return_statement, STATEMENT_RETURN>(); } + + // If this is a thunk statement (a go or defer statement), return + // it. Otherwise return NULL. + Thunk_statement* + thunk_statement(); + + // If this is a label statement, return it. Otherwise return NULL. + Label_statement* + label_statement() + { return this->convert<Label_statement, STATEMENT_LABEL>(); } + + // If this is a for statement, return it. Otherwise return NULL. + For_statement* + for_statement() + { return this->convert<For_statement, STATEMENT_FOR>(); } + + // If this is a for statement over a range clause, return it. + // Otherwise return NULL. + For_range_statement* + for_range_statement() + { return this->convert<For_range_statement, STATEMENT_FOR_RANGE>(); } + + // If this is a switch statement, return it. Otherwise return NULL. + Switch_statement* + switch_statement() + { return this->convert<Switch_statement, STATEMENT_SWITCH>(); } + + // If this is a type switch statement, return it. Otherwise return + // NULL. + Type_switch_statement* + type_switch_statement() + { return this->convert<Type_switch_statement, STATEMENT_TYPE_SWITCH>(); } + + // If this is a select statement, return it. Otherwise return NULL. + Select_statement* + select_statement() + { return this->convert<Select_statement, STATEMENT_SELECT>(); } + + // Return true if this statement may fall through--if after + // executing this statement we may go on to execute the following + // statement, if any. + bool + may_fall_through() const + { return this->do_may_fall_through(); } + + // Return the tree for a statement. BLOCK is the enclosing block. + tree + get_tree(Translate_context*); + + protected: + // Implemented by child class: traverse the tree. + virtual int + do_traverse(Traverse*) = 0; + + // Implemented by child class: traverse assignments. Any statement + // which includes an assignment should implement this. + virtual bool + do_traverse_assignments(Traverse_assignments*) + { return false; } + + // Implemented by the child class: lower this statement to a simpler + // one. + virtual Statement* + do_lower(Gogo*, Block*) + { return this; } + + // Implemented by child class: set type information for unnamed + // constants. Any statement which includes an expression needs to + // implement this. + virtual void + do_determine_types() + { } + + // Implemented by child class: check types of expressions used in a + // statement. + virtual void + do_check_types(Gogo*) + { } + + // Implemented by child class: return true if this statement may + // fall through. + virtual bool + do_may_fall_through() const + { return true; } + + // Implemented by child class: return a tree. + virtual tree + do_get_tree(Translate_context*) = 0; + + // Traverse an expression in a statement. + int + traverse_expression(Traverse*, Expression**); + + // Traverse an expression list in a statement. The Expression_list + // may be NULL. + int + traverse_expression_list(Traverse*, Expression_list*); + + // Traverse a type in a statement. + int + traverse_type(Traverse*, Type*); + + // Build a tree node with one operand, setting the location. The + // first operand really has type "enum tree_code", but that enum is + // not defined here. + tree + build_stmt_1(int tree_code_value, tree); + + // For children to call when they detect that they are in error. + void + set_is_error(); + + // For children to call to report an error conveniently. + void + report_error(const char*); + + // For children to return an error statement from lower(). + static Statement* + make_error_statement(source_location); + + private: + // Convert to the desired statement classification, or return NULL. + // This is a controlled dynamic cast. + template<typename Statement_class, Statement_classification sc> + Statement_class* + convert() + { + return (this->classification_ == sc + ? static_cast<Statement_class*>(this) + : NULL); + } + + template<typename Statement_class, Statement_classification sc> + const Statement_class* + convert() const + { + return (this->classification_ == sc + ? static_cast<const Statement_class*>(this) + : NULL); + } + + // The statement classification. + Statement_classification classification_; + // The location in the input file of the start of this statement. + source_location location_; +}; + +// A statement which creates and initializes a temporary variable. + +class Temporary_statement : public Statement +{ + public: + Temporary_statement(Type* type, Expression* init, source_location location) + : Statement(STATEMENT_TEMPORARY, location), + type_(type), init_(init), decl_(NULL), is_address_taken_(false) + { } + + // Return the type of the temporary variable. + Type* + type() const; + + // Return the initialization expression. + Expression* + init() const + { return this->init_; } + + // Record that something takes the address of this temporary + // variable. + void + set_is_address_taken() + { this->is_address_taken_ = true; } + + // Return the tree for the temporary variable itself. This should + // not be called until after the statement itself has been expanded. + tree + get_decl() const + { + gcc_assert(this->decl_ != NULL); + return this->decl_; + } + + protected: + int + do_traverse(Traverse*); + + bool + do_traverse_assignments(Traverse_assignments*); + + void + do_determine_types(); + + void + do_check_types(Gogo*); + + tree + do_get_tree(Translate_context*); + + private: + // The type of the temporary variable. + Type* type_; + // The initial value of the temporary variable. This may be NULL. + Expression* init_; + // The DECL for the temporary variable. + tree decl_; + // True if something takes the address of this temporary variable. + bool is_address_taken_; +}; + +// A variable declaration. This marks the point in the code where a +// variable is declared. The Variable is also attached to a Block. + +class Variable_declaration_statement : public Statement +{ + public: + Variable_declaration_statement(Named_object* var); + + // The variable being declared. + Named_object* + var() + { return this->var_; } + + protected: + int + do_traverse(Traverse*); + + bool + do_traverse_assignments(Traverse_assignments*); + + tree + do_get_tree(Translate_context*); + + private: + Named_object* var_; +}; + +// A return statement. + +class Return_statement : public Statement +{ + public: + Return_statement(const Typed_identifier_list* results, Expression_list* vals, + source_location location) + : Statement(STATEMENT_RETURN, location), + results_(results), vals_(vals) + { } + + // The list of values being returned. This may be NULL. + const Expression_list* + vals() const + { return this->vals_; } + + protected: + int + do_traverse(Traverse* traverse) + { return this->traverse_expression_list(traverse, this->vals_); } + + bool + do_traverse_assignments(Traverse_assignments*); + + Statement* + do_lower(Gogo*, Block*); + + void + do_determine_types(); + + void + do_check_types(Gogo*); + + bool + do_may_fall_through() const + { return false; } + + tree + do_get_tree(Translate_context*); + + private: + // The result types of the function we are returning from. This is + // here because in some of the traversals it is inconvenient to get + // it. + const Typed_identifier_list* results_; + // Return values. This may be NULL. + Expression_list* vals_; +}; + +// Select_clauses holds the clauses of a select statement. This is +// built by the parser. + +class Select_clauses +{ + public: + Select_clauses() + : clauses_() + { } + + // Add a new clause. IS_SEND is true if this is a send clause, + // false for a receive clause. For a send clause CHANNEL is the + // channel and VAL is the value to send. For a receive clause + // CHANNEL is the channel and VAL is either NULL or a Var_expression + // for the variable to set; if VAL is NULL, VAR may be a variable + // which is initialized with the received value. IS_DEFAULT is true + // if this is the default clause. STATEMENTS is the list of + // statements to execute. + void + add(bool is_send, Expression* channel, Expression* val, Named_object* var, + bool is_default, Block* statements, source_location location) + { + this->clauses_.push_back(Select_clause(is_send, channel, val, var, + is_default, statements, location)); + } + + // Traverse the select clauses. + int + traverse(Traverse*); + + // Lower statements. + void + lower(Block*); + + // Determine types. + void + determine_types(); + + // Whether the select clauses may fall through to the statement + // which follows the overall select statement. + bool + may_fall_through() const; + + // Return a tree implementing the select statement. + tree + get_tree(Translate_context*, Unnamed_label* break_label, source_location); + + private: + // A single clause. + class Select_clause + { + public: + Select_clause() + : channel_(NULL), val_(NULL), var_(NULL), statements_(NULL), + is_send_(false), is_default_(false) + { } + + Select_clause(bool is_send, Expression* channel, Expression* val, + Named_object* var, bool is_default, Block* statements, + source_location location) + : channel_(channel), val_(val), var_(var), statements_(statements), + location_(location), is_send_(is_send), is_default_(is_default), + is_lowered_(false) + { gcc_assert(is_default ? channel == NULL : channel != NULL); } + + // Traverse the select clause. + int + traverse(Traverse*); + + // Lower statements. + void + lower(Block*); + + // Determine types. + void + determine_types(); + + // Return true if this is the default clause. + bool + is_default() const + { return this->is_default_; } + + // Return the channel. This will return NULL for the default + // clause. + Expression* + channel() const + { return this->channel_; } + + // Return the value. This will return NULL for the default + // clause, or for a receive clause for which no value was given. + Expression* + val() const + { return this->val_; } + + // Return the variable to set when a receive clause is also a + // variable definition (v := <- ch). This will return NULL for + // the default case, or for a send clause, or for a receive clause + // which does not define a variable. + Named_object* + var() const + { return this->var_; } + + // Return true for a send, false for a receive. + bool + is_send() const + { + gcc_assert(!this->is_default_); + return this->is_send_; + } + + // Return the statements. + const Block* + statements() const + { return this->statements_; } + + // Return the location. + source_location + location() const + { return this->location_; } + + // Whether this clause may fall through to the statement which + // follows the overall select statement. + bool + may_fall_through() const; + + // Return a tree for the statements to execute. + tree + get_statements_tree(Translate_context*); + + private: + // The channel. + Expression* channel_; + // The value to send or the variable to set. + Expression* val_; + // The variable to initialize, for "case a := <- ch". + Named_object* var_; + // The statements to execute. + Block* statements_; + // The location of this clause. + source_location location_; + // Whether this is a send or a receive. + bool is_send_; + // Whether this is the default. + bool is_default_; + // Whether this has been lowered. + bool is_lowered_; + }; + + void + add_clause_tree(Translate_context*, int, Select_clause*, Unnamed_label*, + tree*); + + typedef std::vector<Select_clause> Clauses; + + Clauses clauses_; +}; + +// A select statement. + +class Select_statement : public Statement +{ + public: + Select_statement(source_location location) + : Statement(STATEMENT_SELECT, location), + clauses_(NULL), break_label_(NULL), is_lowered_(false) + { } + + // Add the clauses. + void + add_clauses(Select_clauses* clauses) + { + gcc_assert(this->clauses_ == NULL); + this->clauses_ = clauses; + } + + // Return the break label for this select statement. + Unnamed_label* + break_label(); + + protected: + int + do_traverse(Traverse* traverse) + { return this->clauses_->traverse(traverse); } + + Statement* + do_lower(Gogo*, Block*); + + void + do_determine_types() + { this->clauses_->determine_types(); } + + bool + do_may_fall_through() const + { return this->clauses_->may_fall_through(); } + + tree + do_get_tree(Translate_context*); + + private: + // The select clauses. + Select_clauses* clauses_; + // The break label. + Unnamed_label* break_label_; + // Whether this statement has been lowered. + bool is_lowered_; +}; + +// A statement which requires a thunk: go or defer. + +class Thunk_statement : public Statement +{ + public: + Thunk_statement(Statement_classification, Call_expression*, + source_location); + + // Return the call expression. + Expression* + call() + { return this->call_; } + + // Simplify a go or defer statement so that it only uses a single + // parameter. + bool + simplify_statement(Gogo*, Block*); + + protected: + int + do_traverse(Traverse* traverse); + + bool + do_traverse_assignments(Traverse_assignments*); + + void + do_determine_types(); + + void + do_check_types(Gogo*); + + // Return the function and argument trees for the call. + void + get_fn_and_arg(Translate_context*, tree* pfn, tree* parg); + + private: + // Return whether this is a simple go statement. + bool + is_simple(Function_type*) const; + + // Build the struct to use for a complex case. + Struct_type* + build_struct(Function_type* fntype); + + // Build the thunk. + void + build_thunk(Gogo*, const std::string&, Function_type* fntype); + + // The field name used in the thunk structure for the function + // pointer. + static const char* const thunk_field_fn; + + // The field name used in the thunk structure for the receiver, if + // there is one. + static const char* const thunk_field_receiver; + + // Set the name to use for thunk field N. + void + thunk_field_param(int n, char* buf, size_t buflen); + + // The function call to be executed in a separate thread (go) or + // later (defer). + Expression* call_; + // The type used for a struct to pass to a thunk, if this is not a + // simple call. + Struct_type* struct_type_; +}; + +// A go statement. + +class Go_statement : public Thunk_statement +{ + public: + Go_statement(Call_expression* call, source_location location) + : Thunk_statement(STATEMENT_GO, call, location) + { } + + protected: + tree + do_get_tree(Translate_context*); +}; + +// A defer statement. + +class Defer_statement : public Thunk_statement +{ + public: + Defer_statement(Call_expression* call, source_location location) + : Thunk_statement(STATEMENT_DEFER, call, location) + { } + + protected: + tree + do_get_tree(Translate_context*); +}; + +// A label statement. + +class Label_statement : public Statement +{ + public: + Label_statement(Label* label, source_location location) + : Statement(STATEMENT_LABEL, location), + label_(label) + { } + + // Return the label itself. + const Label* + label() const + { return this->label_; } + + protected: + int + do_traverse(Traverse*); + + tree + do_get_tree(Translate_context*); + + private: + // The label. + Label* label_; +}; + +// A for statement. + +class For_statement : public Statement +{ + public: + For_statement(Block* init, Expression* cond, Block* post, + source_location location) + : Statement(STATEMENT_FOR, location), + init_(init), cond_(cond), post_(post), statements_(NULL), + break_label_(NULL), continue_label_(NULL) + { } + + // Add the statements. + void + add_statements(Block* statements) + { + gcc_assert(this->statements_ == NULL); + this->statements_ = statements; + } + + // Return the break label for this for statement. + Unnamed_label* + break_label(); + + // Return the continue label for this for statement. + Unnamed_label* + continue_label(); + + // Set the break and continue labels for this statement. + void + set_break_continue_labels(Unnamed_label* break_label, + Unnamed_label* continue_label); + + protected: + int + do_traverse(Traverse*); + + bool + do_traverse_assignments(Traverse_assignments*) + { gcc_unreachable(); } + + Statement* + do_lower(Gogo*, Block*); + + tree + do_get_tree(Translate_context*) + { gcc_unreachable(); } + + private: + // The initialization statements. This may be NULL. + Block* init_; + // The condition. This may be NULL. + Expression* cond_; + // The statements to run after each iteration. This may be NULL. + Block* post_; + // The statements in the loop itself. + Block* statements_; + // The break label, if needed. + Unnamed_label* break_label_; + // The continue label, if needed. + Unnamed_label* continue_label_; +}; + +// A for statement over a range clause. + +class For_range_statement : public Statement +{ + public: + For_range_statement(Expression* index_var, Expression* value_var, + Expression* range, source_location location) + : Statement(STATEMENT_FOR_RANGE, location), + index_var_(index_var), value_var_(value_var), range_(range), + statements_(NULL), break_label_(NULL), continue_label_(NULL) + { } + + // Add the statements. + void + add_statements(Block* statements) + { + gcc_assert(this->statements_ == NULL); + this->statements_ = statements; + } + + // Return the break label for this for statement. + Unnamed_label* + break_label(); + + // Return the continue label for this for statement. + Unnamed_label* + continue_label(); + + protected: + int + do_traverse(Traverse*); + + bool + do_traverse_assignments(Traverse_assignments*) + { gcc_unreachable(); } + + Statement* + do_lower(Gogo*, Block*); + + tree + do_get_tree(Translate_context*) + { gcc_unreachable(); } + + private: + Expression* + make_range_ref(Named_object*, Temporary_statement*, source_location); + + Expression* + call_builtin(Gogo*, const char* funcname, Expression* arg, source_location); + + void + lower_range_array(Gogo*, Block*, Block*, Named_object*, Temporary_statement*, + Temporary_statement*, Temporary_statement*, + Block**, Expression**, Block**, Block**); + + void + lower_range_string(Gogo*, Block*, Block*, Named_object*, Temporary_statement*, + Temporary_statement*, Temporary_statement*, + Block**, Expression**, Block**, Block**); + + void + lower_range_map(Gogo*, Block*, Block*, Named_object*, Temporary_statement*, + Temporary_statement*, Temporary_statement*, + Block**, Expression**, Block**, Block**); + + void + lower_range_channel(Gogo*, Block*, Block*, Named_object*, + Temporary_statement*, Temporary_statement*, + Temporary_statement*, Block**, Expression**, Block**, + Block**); + + // The variable which is set to the index value. + Expression* index_var_; + // The variable which is set to the element value. This may be + // NULL. + Expression* value_var_; + // The expression we are ranging over. + Expression* range_; + // The statements in the block. + Block* statements_; + // The break label, if needed. + Unnamed_label* break_label_; + // The continue label, if needed. + Unnamed_label* continue_label_; +}; + +// Class Case_clauses holds the clauses of a switch statement. This +// is built by the parser. + +class Case_clauses +{ + public: + Case_clauses() + : clauses_() + { } + + // Add a new clause. CASES is a list of case expressions; it may be + // NULL. IS_DEFAULT is true if this is the default case. + // STATEMENTS is a block of statements. IS_FALLTHROUGH is true if + // after the statements the case clause should fall through to the + // next clause. + void + add(Expression_list* cases, bool is_default, Block* statements, + bool is_fallthrough, source_location location) + { + this->clauses_.push_back(Case_clause(cases, is_default, statements, + is_fallthrough, location)); + } + + // Return whether there are no clauses. + bool + empty() const + { return this->clauses_.empty(); } + + // Traverse the case clauses. + int + traverse(Traverse*); + + // Lower for a nonconstant switch. + void + lower(Block*, Temporary_statement*, Unnamed_label*) const; + + // Determine types of expressions. The Type parameter is the type + // of the switch value. + void + determine_types(Type*); + + // Check types. The Type parameter is the type of the switch value. + bool + check_types(Type*); + + // Return true if all the clauses are constant values. + bool + is_constant() const; + + // Return true if these clauses may fall through to the statements + // following the switch statement. + bool + may_fall_through() const; + + // Return the body of a SWITCH_EXPR when all the clauses are + // constants. + tree + get_constant_tree(Translate_context*, Unnamed_label* break_label) const; + + private: + // For a constant tree we need to keep a record of constants we have + // already seen. Note that INTEGER_CST trees are interned. + typedef Unordered_set(tree) Case_constants; + + // One case clause. + class Case_clause + { + public: + Case_clause() + : cases_(NULL), statements_(NULL), is_default_(false), + is_fallthrough_(false), location_(UNKNOWN_LOCATION) + { } + + Case_clause(Expression_list* cases, bool is_default, Block* statements, + bool is_fallthrough, source_location location) + : cases_(cases), statements_(statements), is_default_(is_default), + is_fallthrough_(is_fallthrough), location_(location) + { } + + // Whether this clause falls through to the next clause. + bool + is_fallthrough() const + { return this->is_fallthrough_; } + + // Whether this is the default. + bool + is_default() const + { return this->is_default_; } + + // The location of this clause. + source_location + location() const + { return this->location_; } + + // Traversal. + int + traverse(Traverse*); + + // Lower for a nonconstant switch. + void + lower(Block*, Temporary_statement*, Unnamed_label*, Unnamed_label*) const; + + // Determine types. + void + determine_types(Type*); + + // Check types. + bool + check_types(Type*); + + // Return true if all the case expressions are constant. + bool + is_constant() const; + + // Return true if this clause may fall through to execute the + // statements following the switch statement. This is not the + // same as whether this clause falls through to the next clause. + bool + may_fall_through() const; + + // Build up the body of a SWITCH_EXPR when the case expressions + // are constant. + void + get_constant_tree(Translate_context*, Unnamed_label* break_label, + Case_constants* case_constants, tree* stmt_list) const; + + private: + // The list of case expressions. + Expression_list* cases_; + // The statements to execute. + Block* statements_; + // Whether this is the default case. + bool is_default_; + // Whether this falls through after the statements. + bool is_fallthrough_; + // The location of this case clause. + source_location location_; + }; + + friend class Case_clause; + + // The type of the list of clauses. + typedef std::vector<Case_clause> Clauses; + + // All the case clauses. + Clauses clauses_; +}; + +// A switch statement. + +class Switch_statement : public Statement +{ + public: + Switch_statement(Expression* val, source_location location) + : Statement(STATEMENT_SWITCH, location), + val_(val), clauses_(NULL), break_label_(NULL) + { } + + // Add the clauses. + void + add_clauses(Case_clauses* clauses) + { + gcc_assert(this->clauses_ == NULL); + this->clauses_ = clauses; + } + + // Return the break label for this switch statement. + Unnamed_label* + break_label(); + + protected: + int + do_traverse(Traverse*); + + Statement* + do_lower(Gogo*, Block*); + + tree + do_get_tree(Translate_context*) + { gcc_unreachable(); } + + private: + // The value to switch on. This may be NULL. + Expression* val_; + // The case clauses. + Case_clauses* clauses_; + // The break label, if needed. + Unnamed_label* break_label_; +}; + +// Class Type_case_clauses holds the clauses of a type switch +// statement. This is built by the parser. + +class Type_case_clauses +{ + public: + Type_case_clauses() + : clauses_() + { } + + // Add a new clause. TYPE is the type for this clause; it may be + // NULL. IS_FALLTHROUGH is true if this falls through to the next + // clause; in this case STATEMENTS will be NULL. IS_DEFAULT is true + // if this is the default case. STATEMENTS is a block of + // statements; it may be NULL. + void + add(Type* type, bool is_fallthrough, bool is_default, Block* statements, + source_location location) + { + this->clauses_.push_back(Type_case_clause(type, is_fallthrough, is_default, + statements, location)); + } + + // Return whether there are no clauses. + bool + empty() const + { return this->clauses_.empty(); } + + // Traverse the type case clauses. + int + traverse(Traverse*); + + // Check for duplicates. + void + check_duplicates() const; + + // Lower to if and goto statements. + void + lower(Block*, Temporary_statement* descriptor_temp, + Unnamed_label* break_label) const; + + private: + // One type case clause. + class Type_case_clause + { + public: + Type_case_clause() + : type_(NULL), statements_(NULL), is_default_(false), + location_(UNKNOWN_LOCATION) + { } + + Type_case_clause(Type* type, bool is_fallthrough, bool is_default, + Block* statements, source_location location) + : type_(type), statements_(statements), is_fallthrough_(is_fallthrough), + is_default_(is_default), location_(location) + { } + + // The type. + Type* + type() const + { return this->type_; } + + // Whether this is the default. + bool + is_default() const + { return this->is_default_; } + + // The location of this type clause. + source_location + location() const + { return this->location_; } + + // Traversal. + int + traverse(Traverse*); + + // Lower to if and goto statements. + void + lower(Block*, Temporary_statement* descriptor_temp, + Unnamed_label* break_label, Unnamed_label** stmts_label) const; + + private: + // The type for this type clause. + Type* type_; + // The statements to execute. + Block* statements_; + // Whether this falls through--this is true for "case T1, T2". + bool is_fallthrough_; + // Whether this is the default case. + bool is_default_; + // The location of this type case clause. + source_location location_; + }; + + friend class Type_case_clause; + + // The type of the list of type clauses. + typedef std::vector<Type_case_clause> Type_clauses; + + // All the type case clauses. + Type_clauses clauses_; +}; + +// A type switch statement. + +class Type_switch_statement : public Statement +{ + public: + Type_switch_statement(Named_object* var, Expression* expr, + source_location location) + : Statement(STATEMENT_TYPE_SWITCH, location), + var_(var), expr_(expr), clauses_(NULL), break_label_(NULL) + { gcc_assert(var == NULL || expr == NULL); } + + // Add the clauses. + void + add_clauses(Type_case_clauses* clauses) + { + gcc_assert(this->clauses_ == NULL); + this->clauses_ = clauses; + } + + // Return the break label for this type switch statement. + Unnamed_label* + break_label(); + + protected: + int + do_traverse(Traverse*); + + Statement* + do_lower(Gogo*, Block*); + + tree + do_get_tree(Translate_context*) + { gcc_unreachable(); } + + private: + // Get the type descriptor. + tree + get_type_descriptor(Translate_context*, Type*, tree); + + // The variable holding the value we are switching on. + Named_object* var_; + // The expression we are switching on if there is no variable. + Expression* expr_; + // The type case clauses. + Type_case_clauses* clauses_; + // The break label, if needed. + Unnamed_label* break_label_; +}; + +#endif // !defined(GO_STATEMENTS_H) diff --git a/gcc/go/gofrontend/types.cc b/gcc/go/gofrontend/types.cc new file mode 100644 index 0000000..b030a42 --- /dev/null +++ b/gcc/go/gofrontend/types.cc @@ -0,0 +1,8078 @@ +// types.cc -- Go frontend types. + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +#include "go-system.h" + +#include <gmp.h> + +#ifndef ENABLE_BUILD_WITH_CXX +extern "C" +{ +#endif + +#include "toplev.h" +#include "intl.h" +#include "tree.h" +#include "gimple.h" +#include "real.h" +#include "convert.h" + +#ifndef ENABLE_BUILD_WITH_CXX +} +#endif + +#include "go-c.h" +#include "gogo.h" +#include "operator.h" +#include "expressions.h" +#include "statements.h" +#include "export.h" +#include "import.h" +#include "types.h" + +// Class Type. + +Type::Type(Type_classification classification) + : classification_(classification), tree_(NULL_TREE), + type_descriptor_decl_(NULL_TREE) +{ +} + +Type::~Type() +{ +} + +// Get the base type for a type--skip names and forward declarations. + +Type* +Type::base() +{ + switch (this->classification_) + { + case TYPE_NAMED: + return static_cast<Named_type*>(this)->real_type()->base(); + case TYPE_FORWARD: + return static_cast<Forward_declaration_type*>(this)->real_type()->base(); + default: + return this; + } +} + +const Type* +Type::base() const +{ + switch (this->classification_) + { + case TYPE_NAMED: + return static_cast<const Named_type*>(this)->real_type()->base(); + case TYPE_FORWARD: + { + const Forward_declaration_type* ftype = + static_cast<const Forward_declaration_type*>(this); + return ftype->real_type()->base(); + } + default: + return this; + } +} + +// Skip defined forward declarations. + +Type* +Type::forwarded() +{ + Type* t = this; + Forward_declaration_type* ftype = t->forward_declaration_type(); + while (ftype != NULL && ftype->is_defined()) + { + t = ftype->real_type(); + ftype = t->forward_declaration_type(); + } + return t; +} + +const Type* +Type::forwarded() const +{ + const Type* t = this; + const Forward_declaration_type* ftype = t->forward_declaration_type(); + while (ftype != NULL && ftype->is_defined()) + { + t = ftype->real_type(); + ftype = t->forward_declaration_type(); + } + return t; +} + +// If this is a named type, return it. Otherwise, return NULL. + +Named_type* +Type::named_type() +{ + return this->forwarded()->convert_no_base<Named_type, TYPE_NAMED>(); +} + +const Named_type* +Type::named_type() const +{ + return this->forwarded()->convert_no_base<const Named_type, TYPE_NAMED>(); +} + +// Return true if this type is not defined. + +bool +Type::is_undefined() const +{ + return this->forwarded()->forward_declaration_type() != NULL; +} + +// Return true if this is a basic type: a type which is not composed +// of other types, and is not void. + +bool +Type::is_basic_type() const +{ + switch (this->classification_) + { + case TYPE_INTEGER: + case TYPE_FLOAT: + case TYPE_COMPLEX: + case TYPE_BOOLEAN: + case TYPE_STRING: + case TYPE_NIL: + return true; + + case TYPE_ERROR: + case TYPE_VOID: + case TYPE_FUNCTION: + case TYPE_POINTER: + case TYPE_STRUCT: + case TYPE_ARRAY: + case TYPE_MAP: + case TYPE_CHANNEL: + case TYPE_INTERFACE: + return false; + + case TYPE_NAMED: + case TYPE_FORWARD: + return this->base()->is_basic_type(); + + default: + gcc_unreachable(); + } +} + +// Return true if this is an abstract type. + +bool +Type::is_abstract() const +{ + switch (this->classification()) + { + case TYPE_INTEGER: + return this->integer_type()->is_abstract(); + case TYPE_FLOAT: + return this->float_type()->is_abstract(); + case TYPE_COMPLEX: + return this->complex_type()->is_abstract(); + case TYPE_STRING: + return this->is_abstract_string_type(); + case TYPE_BOOLEAN: + return this->is_abstract_boolean_type(); + default: + return false; + } +} + +// Return a non-abstract version of an abstract type. + +Type* +Type::make_non_abstract_type() +{ + gcc_assert(this->is_abstract()); + switch (this->classification()) + { + case TYPE_INTEGER: + return Type::lookup_integer_type("int"); + case TYPE_FLOAT: + return Type::lookup_float_type("float"); + case TYPE_COMPLEX: + return Type::lookup_complex_type("complex"); + case TYPE_STRING: + return Type::lookup_string_type(); + case TYPE_BOOLEAN: + return Type::lookup_bool_type(); + default: + gcc_unreachable(); + } +} + +// Return true if this is an error type. Don't give an error if we +// try to dereference an undefined forwarding type, as this is called +// in the parser when the type may legitimately be undefined. + +bool +Type::is_error_type() const +{ + const Type* t = this->forwarded(); + // Note that we return false for an undefined forward type. + switch (t->classification_) + { + case TYPE_ERROR: + return true; + case TYPE_NAMED: + return t->named_type()->real_type()->is_error_type(); + default: + return false; + } +} + +// If this is a pointer type, return the type to which it points. +// Otherwise, return NULL. + +Type* +Type::points_to() const +{ + const Pointer_type* ptype = this->convert<const Pointer_type, + TYPE_POINTER>(); + return ptype == NULL ? NULL : ptype->points_to(); +} + +// Return whether this is an open array type. + +bool +Type::is_open_array_type() const +{ + return this->array_type() != NULL && this->array_type()->length() == NULL; +} + +// Return whether this is the predeclared constant nil being used as a +// type. + +bool +Type::is_nil_constant_as_type() const +{ + const Type* t = this->forwarded(); + if (t->forward_declaration_type() != NULL) + { + const Named_object* no = t->forward_declaration_type()->named_object(); + if (no->is_unknown()) + no = no->unknown_value()->real_named_object(); + if (no != NULL + && no->is_const() + && no->const_value()->expr()->is_nil_expression()) + return true; + } + return false; +} + +// Traverse a type. + +int +Type::traverse(Type* type, Traverse* traverse) +{ + gcc_assert((traverse->traverse_mask() & Traverse::traverse_types) != 0 + || (traverse->traverse_mask() + & Traverse::traverse_expressions) != 0); + if (traverse->remember_type(type)) + { + // We have already traversed this type. + return TRAVERSE_CONTINUE; + } + if ((traverse->traverse_mask() & Traverse::traverse_types) != 0) + { + int t = traverse->type(type); + if (t == TRAVERSE_EXIT) + return TRAVERSE_EXIT; + else if (t == TRAVERSE_SKIP_COMPONENTS) + return TRAVERSE_CONTINUE; + } + // An array type has an expression which we need to traverse if + // traverse_expressions is set. + if (type->do_traverse(traverse) == TRAVERSE_EXIT) + return TRAVERSE_EXIT; + return TRAVERSE_CONTINUE; +} + +// Default implementation for do_traverse for child class. + +int +Type::do_traverse(Traverse*) +{ + return TRAVERSE_CONTINUE; +} + +// Return whether two types are identical. If REASON is not NULL, +// optionally set *REASON to the reason the types are not identical. + +bool +Type::are_identical(const Type* t1, const Type* t2, std::string* reason) +{ + if (t1 == NULL || t2 == NULL) + { + // Something is wrong. Return true to avoid cascading errors. + return true; + } + + // Skip defined forward declarations. + t1 = t1->forwarded(); + t2 = t2->forwarded(); + + if (t1 == t2) + return true; + + // An undefined forward declaration is an error, so we return true + // to avoid cascading errors. + if (t1->forward_declaration_type() != NULL + || t2->forward_declaration_type() != NULL) + return true; + + // Avoid cascading errors with error types. + if (t1->is_error_type() || t2->is_error_type()) + return true; + + // Get a good reason for the sink type. Note that the sink type on + // the left hand side of an assignment is handled in are_assignable. + if (t1->is_sink_type() || t2->is_sink_type()) + { + if (reason != NULL) + *reason = "invalid use of _"; + return false; + } + + // A named type is only identical to itself. + if (t1->named_type() != NULL || t2->named_type() != NULL) + return false; + + // Check type shapes. + if (t1->classification() != t2->classification()) + return false; + + switch (t1->classification()) + { + case TYPE_VOID: + case TYPE_BOOLEAN: + case TYPE_STRING: + case TYPE_NIL: + // These types are always identical. + return true; + + case TYPE_INTEGER: + return t1->integer_type()->is_identical(t2->integer_type()); + + case TYPE_FLOAT: + return t1->float_type()->is_identical(t2->float_type()); + + case TYPE_COMPLEX: + return t1->complex_type()->is_identical(t2->complex_type()); + + case TYPE_FUNCTION: + return t1->function_type()->is_identical(t2->function_type(), + false, + reason); + + case TYPE_POINTER: + return Type::are_identical(t1->points_to(), t2->points_to(), reason); + + case TYPE_STRUCT: + return t1->struct_type()->is_identical(t2->struct_type()); + + case TYPE_ARRAY: + return t1->array_type()->is_identical(t2->array_type()); + + case TYPE_MAP: + return t1->map_type()->is_identical(t2->map_type()); + + case TYPE_CHANNEL: + return t1->channel_type()->is_identical(t2->channel_type()); + + case TYPE_INTERFACE: + return t1->interface_type()->is_identical(t2->interface_type()); + + default: + gcc_unreachable(); + } +} + +// Return true if it's OK to have a binary operation with types LHS +// and RHS. This is not used for shifts or comparisons. + +bool +Type::are_compatible_for_binop(const Type* lhs, const Type* rhs) +{ + if (Type::are_identical(lhs, rhs, NULL)) + return true; + + // A constant of abstract bool type may be mixed with any bool type. + if ((rhs->is_abstract_boolean_type() && lhs->is_boolean_type()) + || (lhs->is_abstract_boolean_type() && rhs->is_boolean_type())) + return true; + + // A constant of abstract string type may be mixed with any string + // type. + if ((rhs->is_abstract_string_type() && lhs->is_string_type()) + || (lhs->is_abstract_string_type() && rhs->is_string_type())) + return true; + + lhs = lhs->base(); + rhs = rhs->base(); + + // A constant of abstract integer, float, or complex type may be + // mixed with an integer, float, or complex type. + if ((rhs->is_abstract() + && (rhs->integer_type() != NULL + || rhs->float_type() != NULL + || rhs->complex_type() != NULL) + && (lhs->integer_type() != NULL + || lhs->float_type() != NULL + || lhs->complex_type() != NULL)) + || (lhs->is_abstract() + && (lhs->integer_type() != NULL + || lhs->float_type() != NULL + || lhs->complex_type() != NULL) + && (rhs->integer_type() != NULL + || rhs->float_type() != NULL + || rhs->complex_type() != NULL))) + return true; + + // The nil type may be compared to a pointer, an interface type, a + // slice type, a channel type, a map type, or a function type. + if (lhs->is_nil_type() + && (rhs->points_to() != NULL + || rhs->interface_type() != NULL + || rhs->is_open_array_type() + || rhs->map_type() != NULL + || rhs->channel_type() != NULL + || rhs->function_type() != NULL)) + return true; + if (rhs->is_nil_type() + && (lhs->points_to() != NULL + || lhs->interface_type() != NULL + || lhs->is_open_array_type() + || lhs->map_type() != NULL + || lhs->channel_type() != NULL + || lhs->function_type() != NULL)) + return true; + + return false; +} + +// Return true if a value with type RHS may be assigned to a variable +// with type LHS. If REASON is not NULL, set *REASON to the reason +// the types are not assignable. + +bool +Type::are_assignable(const Type* lhs, const Type* rhs, std::string* reason) +{ + // Do some checks first. Make sure the types are defined. + if (lhs != NULL && lhs->forwarded()->forward_declaration_type() == NULL) + { + // Any value may be assigned to the blank identifier. + if (lhs->is_sink_type()) + return true; + + // All fields of a struct must be exported, or the assignment + // must be in the same package. + if (rhs != NULL && rhs->forwarded()->forward_declaration_type() == NULL) + { + if (lhs->has_hidden_fields(NULL, reason) + || rhs->has_hidden_fields(NULL, reason)) + return false; + } + } + + // Identical types are assignable. + if (Type::are_identical(lhs, rhs, reason)) + return true; + + // The types are assignable if they have identical underlying types + // and either LHS or RHS is not a named type. + if (((lhs->named_type() != NULL && rhs->named_type() == NULL) + || (rhs->named_type() != NULL && lhs->named_type() == NULL)) + && Type::are_identical(lhs->base(), rhs->base(), reason)) + return true; + + // The types are assignable if LHS is an interface type and RHS + // implements the required methods. + const Interface_type* lhs_interface_type = lhs->interface_type(); + if (lhs_interface_type != NULL) + { + if (lhs_interface_type->implements_interface(rhs, reason)) + return true; + const Interface_type* rhs_interface_type = rhs->interface_type(); + if (rhs_interface_type != NULL + && lhs_interface_type->is_compatible_for_assign(rhs_interface_type, + reason)) + return true; + } + + // The type are assignable if RHS is a bidirectional channel type, + // LHS is a channel type, they have identical element types, and + // either LHS or RHS is not a named type. + if (lhs->channel_type() != NULL + && rhs->channel_type() != NULL + && rhs->channel_type()->may_send() + && rhs->channel_type()->may_receive() + && (lhs->named_type() == NULL || rhs->named_type() == NULL) + && Type::are_identical(lhs->channel_type()->element_type(), + rhs->channel_type()->element_type(), + reason)) + return true; + + // The nil type may be assigned to a pointer, function, slice, map, + // channel, or interface type. + if (rhs->is_nil_type() + && (lhs->points_to() != NULL + || lhs->function_type() != NULL + || lhs->is_open_array_type() + || lhs->map_type() != NULL + || lhs->channel_type() != NULL + || lhs->interface_type() != NULL)) + return true; + + // An untyped constant may be assigned to a numeric type if it is + // representable in that type. + if (rhs->is_abstract() + && (lhs->integer_type() != NULL + || lhs->float_type() != NULL + || lhs->complex_type() != NULL)) + return true; + + + // Give some better error messages. + if (reason != NULL && reason->empty()) + { + if (rhs->interface_type() != NULL) + reason->assign(_("need explicit conversion")); + else if (rhs->is_call_multiple_result_type()) + reason->assign(_("multiple value function call in " + "single value context")); + else if (lhs->named_type() != NULL && rhs->named_type() != NULL) + { + size_t len = (lhs->named_type()->name().length() + + rhs->named_type()->name().length() + + 100); + char* buf = new char[len]; + snprintf(buf, len, _("cannot use type %s as type %s"), + rhs->named_type()->message_name().c_str(), + lhs->named_type()->message_name().c_str()); + reason->assign(buf); + delete[] buf; + } + } + + return false; +} + +// Return true if a value with type RHS may be converted to type LHS. +// If REASON is not NULL, set *REASON to the reason the types are not +// convertible. + +bool +Type::are_convertible(const Type* lhs, const Type* rhs, std::string* reason) +{ + // The types are convertible if they are assignable. + if (Type::are_assignable(lhs, rhs, reason)) + return true; + + // The types are convertible if they have identical underlying + // types. + if ((lhs->named_type() != NULL || rhs->named_type() != NULL) + && Type::are_identical(lhs->base(), rhs->base(), reason)) + return true; + + // The types are convertible if they are both unnamed pointer types + // and their pointer base types have identical underlying types. + if (lhs->named_type() == NULL + && rhs->named_type() == NULL + && lhs->points_to() != NULL + && rhs->points_to() != NULL + && (lhs->points_to()->named_type() != NULL + || rhs->points_to()->named_type() != NULL) + && Type::are_identical(lhs->points_to()->base(), + rhs->points_to()->base(), + reason)) + return true; + + // Integer and floating point types are convertible to each other. + if ((lhs->integer_type() != NULL || lhs->float_type() != NULL) + && (rhs->integer_type() != NULL || rhs->float_type() != NULL)) + return true; + + // Complex types are convertible to each other. + if (lhs->complex_type() != NULL && rhs->complex_type() != NULL) + return true; + + // An integer, or []byte, or []int, may be converted to a string. + if (lhs->is_string_type()) + { + if (rhs->integer_type() != NULL) + return true; + if (rhs->is_open_array_type() && rhs->named_type() == NULL) + { + const Type* e = rhs->array_type()->element_type()->forwarded(); + if (e->integer_type() != NULL + && (e == Type::lookup_integer_type("uint8") + || e == Type::lookup_integer_type("int"))) + return true; + } + } + + // A string may be converted to []byte or []int. + if (rhs->is_string_type() + && lhs->is_open_array_type() + && lhs->named_type() == NULL) + { + const Type* e = lhs->array_type()->element_type()->forwarded(); + if (e->integer_type() != NULL + && (e == Type::lookup_integer_type("uint8") + || e == Type::lookup_integer_type("int"))) + return true; + } + + // An unsafe.Pointer type may be converted to any pointer type or to + // uintptr, and vice-versa. + if (lhs->is_unsafe_pointer_type() + && (rhs->points_to() != NULL + || (rhs->integer_type() != NULL + && rhs->forwarded() == Type::lookup_integer_type("uintptr")))) + return true; + if (rhs->is_unsafe_pointer_type() + && (lhs->points_to() != NULL + || (lhs->integer_type() != NULL + && lhs->forwarded() == Type::lookup_integer_type("uintptr")))) + return true; + + // Give a better error message. + if (reason != NULL) + { + if (reason->empty()) + *reason = "invalid type conversion"; + else + { + std::string s = "invalid type conversion ("; + s += *reason; + s += ')'; + *reason = s; + } + } + + return false; +} + +// Return whether this type has any hidden fields. This is only a +// possibility for a few types. + +bool +Type::has_hidden_fields(const Named_type* within, std::string* reason) const +{ + switch (this->forwarded()->classification_) + { + case TYPE_NAMED: + return this->named_type()->named_type_has_hidden_fields(reason); + case TYPE_STRUCT: + return this->struct_type()->struct_has_hidden_fields(within, reason); + case TYPE_ARRAY: + return this->array_type()->array_has_hidden_fields(within, reason); + default: + return false; + } +} + +// Return a hash code for the type to be used for method lookup. + +unsigned int +Type::hash_for_method(Gogo* gogo) const +{ + unsigned int ret = 0; + if (this->classification_ != TYPE_FORWARD) + ret += this->classification_; + return ret + this->do_hash_for_method(gogo); +} + +// Default implementation of do_hash_for_method. This is appropriate +// for types with no subfields. + +unsigned int +Type::do_hash_for_method(Gogo*) const +{ + return 0; +} + +// Return a hash code for a string, given a starting hash. + +unsigned int +Type::hash_string(const std::string& s, unsigned int h) +{ + const char* p = s.data(); + size_t len = s.length(); + for (; len > 0; --len) + { + h ^= *p++; + h*= 16777619; + } + return h; +} + +// Default check for the expression passed to make. Any type which +// may be used with make implements its own version of this. + +bool +Type::do_check_make_expression(Expression_list*, source_location) +{ + gcc_unreachable(); +} + +// Return whether an expression has an integer value. Report an error +// if not. This is used when handling calls to the predeclared make +// function. + +bool +Type::check_int_value(Expression* e, const char* errmsg, + source_location location) +{ + if (e->type()->integer_type() != NULL) + return true; + + // Check for a floating point constant with integer value. + mpfr_t fval; + mpfr_init(fval); + + Type* dummy; + if (e->float_constant_value(fval, &dummy)) + { + mpz_t ival; + mpz_init(ival); + + bool ok = false; + + mpfr_clear_overflow(); + mpfr_clear_erangeflag(); + mpfr_get_z(ival, fval, GMP_RNDN); + if (!mpfr_overflow_p() + && !mpfr_erangeflag_p() + && mpz_sgn(ival) >= 0) + { + Named_type* ntype = Type::lookup_integer_type("int"); + Integer_type* inttype = ntype->integer_type(); + mpz_t max; + mpz_init_set_ui(max, 1); + mpz_mul_2exp(max, max, inttype->bits() - 1); + ok = mpz_cmp(ival, max) < 0; + mpz_clear(max); + } + mpz_clear(ival); + + if (ok) + { + mpfr_clear(fval); + return true; + } + } + + mpfr_clear(fval); + + error_at(location, "%s", errmsg); + return false; +} + +// A hash table mapping unnamed types to trees. + +Type::Type_trees Type::type_trees; + +// Return a tree representing this type. + +tree +Type::get_tree(Gogo* gogo) +{ + if (this->tree_ != NULL) + return this->tree_; + + if (this->forward_declaration_type() != NULL + || this->named_type() != NULL) + return this->get_tree_without_hash(gogo); + + // To avoid confusing GIMPLE, we need to translate all identical Go + // types to the same GIMPLE type. We use a hash table to do that. + // There is no need to use the hash table for named types, as named + // types are only identical to themselves. + + std::pair<Type*, tree> val(this, NULL); + std::pair<Type_trees::iterator, bool> ins = + Type::type_trees.insert(val); + if (!ins.second && ins.first->second != NULL_TREE) + { + this->tree_ = ins.first->second; + return this->tree_; + } + + tree t = this->get_tree_without_hash(gogo); + + if (ins.first->second == NULL_TREE) + ins.first->second = t; + else + { + // We have already created a tree for this type. This can + // happen when an unnamed type is defined using a named type + // which in turns uses an identical unnamed type. Use the tree + // we created earlier and ignore the one we just built. + t = ins.first->second; + this->tree_ = t; + } + + return t; +} + +// Return a tree for a type without looking in the hash table for +// identical types. This is used for named types, since there is no +// point to looking in the hash table for them. + +tree +Type::get_tree_without_hash(Gogo* gogo) +{ + if (this->tree_ == NULL_TREE) + { + tree t = this->do_get_tree(gogo); + + // For a recursive function or pointer type, we will temporarily + // return ptr_type_node during the recursion. We don't want to + // record that for a forwarding type, as it may confuse us + // later. + if (t == ptr_type_node && this->forward_declaration_type() != NULL) + return t; + + this->tree_ = t; + go_preserve_from_gc(t); + } + + return this->tree_; +} + +// Return a tree representing a zero initialization for this type. + +tree +Type::get_init_tree(Gogo* gogo, bool is_clear) +{ + tree type_tree = this->get_tree(gogo); + if (type_tree == error_mark_node) + return error_mark_node; + return this->do_get_init_tree(gogo, type_tree, is_clear); +} + +// Any type which supports the builtin make function must implement +// this. + +tree +Type::do_make_expression_tree(Translate_context*, Expression_list*, + source_location) +{ + gcc_unreachable(); +} + +// Return a pointer to the type descriptor for this type. + +tree +Type::type_descriptor_pointer(Gogo* gogo) +{ + Type* t = this->forwarded(); + if (t->type_descriptor_decl_ == NULL_TREE) + { + Expression* e = t->do_type_descriptor(gogo, NULL); + gogo->build_type_descriptor_decl(t, e, &t->type_descriptor_decl_); + gcc_assert(t->type_descriptor_decl_ != NULL_TREE + && (t->type_descriptor_decl_ == error_mark_node + || DECL_P(t->type_descriptor_decl_))); + } + if (t->type_descriptor_decl_ == error_mark_node) + return error_mark_node; + return build_fold_addr_expr(t->type_descriptor_decl_); +} + +// Return a composite literal for a type descriptor. + +Expression* +Type::type_descriptor(Gogo* gogo, Type* type) +{ + return type->do_type_descriptor(gogo, NULL); +} + +// Return a composite literal for a type descriptor with a name. + +Expression* +Type::named_type_descriptor(Gogo* gogo, Type* type, Named_type* name) +{ + gcc_assert(name != NULL && type->named_type() != name); + return type->do_type_descriptor(gogo, name); +} + +// Make a builtin struct type from a list of fields. The fields are +// pairs of a name and a type. + +Struct_type* +Type::make_builtin_struct_type(int nfields, ...) +{ + va_list ap; + va_start(ap, nfields); + + source_location bloc = BUILTINS_LOCATION; + Struct_field_list* sfl = new Struct_field_list(); + for (int i = 0; i < nfields; i++) + { + const char* field_name = va_arg(ap, const char *); + Type* type = va_arg(ap, Type*); + sfl->push_back(Struct_field(Typed_identifier(field_name, type, bloc))); + } + + va_end(ap); + + return Type::make_struct_type(sfl, bloc); +} + +// Make a builtin named type. + +Named_type* +Type::make_builtin_named_type(const char* name, Type* type) +{ + source_location bloc = BUILTINS_LOCATION; + Named_object* no = Named_object::make_type(name, NULL, type, bloc); + return no->type_value(); +} + +// Return the type of a type descriptor. We should really tie this to +// runtime.Type rather than copying it. This must match commonType in +// libgo/go/runtime/type.go. + +Type* +Type::make_type_descriptor_type() +{ + static Type* ret; + if (ret == NULL) + { + source_location bloc = BUILTINS_LOCATION; + + Type* uint8_type = Type::lookup_integer_type("uint8"); + Type* uint32_type = Type::lookup_integer_type("uint32"); + Type* uintptr_type = Type::lookup_integer_type("uintptr"); + Type* string_type = Type::lookup_string_type(); + Type* pointer_string_type = Type::make_pointer_type(string_type); + + // This is an unnamed version of unsafe.Pointer. Perhaps we + // should use the named version instead, although that would + // require us to create the unsafe package if it has not been + // imported. It probably doesn't matter. + Type* void_type = Type::make_void_type(); + Type* unsafe_pointer_type = Type::make_pointer_type(void_type); + + // Forward declaration for the type descriptor type. + Named_object* named_type_descriptor_type = + Named_object::make_type_declaration("commonType", NULL, bloc); + Type* ft = Type::make_forward_declaration(named_type_descriptor_type); + Type* pointer_type_descriptor_type = Type::make_pointer_type(ft); + + // The type of a method on a concrete type. + Struct_type* method_type = + Type::make_builtin_struct_type(5, + "name", pointer_string_type, + "pkgPath", pointer_string_type, + "mtyp", pointer_type_descriptor_type, + "typ", pointer_type_descriptor_type, + "tfn", unsafe_pointer_type); + Named_type* named_method_type = + Type::make_builtin_named_type("method", method_type); + + // Information for types with a name or methods. + Type* slice_named_method_type = + Type::make_array_type(named_method_type, NULL); + Struct_type* uncommon_type = + Type::make_builtin_struct_type(3, + "name", pointer_string_type, + "pkgPath", pointer_string_type, + "methods", slice_named_method_type); + Named_type* named_uncommon_type = + Type::make_builtin_named_type("uncommonType", uncommon_type); + + Type* pointer_uncommon_type = + Type::make_pointer_type(named_uncommon_type); + + // The type descriptor type. + + Typed_identifier_list* params = new Typed_identifier_list(); + params->push_back(Typed_identifier("", unsafe_pointer_type, bloc)); + params->push_back(Typed_identifier("", uintptr_type, bloc)); + + Typed_identifier_list* results = new Typed_identifier_list(); + results->push_back(Typed_identifier("", uintptr_type, bloc)); + + Type* hashfn_type = Type::make_function_type(NULL, params, results, bloc); + + params = new Typed_identifier_list(); + params->push_back(Typed_identifier("", unsafe_pointer_type, bloc)); + params->push_back(Typed_identifier("", unsafe_pointer_type, bloc)); + params->push_back(Typed_identifier("", uintptr_type, bloc)); + + results = new Typed_identifier_list(); + results->push_back(Typed_identifier("", Type::lookup_bool_type(), bloc)); + + Type* equalfn_type = Type::make_function_type(NULL, params, results, + bloc); + + Struct_type* type_descriptor_type = + Type::make_builtin_struct_type(9, + "Kind", uint8_type, + "align", uint8_type, + "fieldAlign", uint8_type, + "size", uintptr_type, + "hash", uint32_type, + "hashfn", hashfn_type, + "equalfn", equalfn_type, + "string", pointer_string_type, + "", pointer_uncommon_type); + + Named_type* named = Type::make_builtin_named_type("commonType", + type_descriptor_type); + + named_type_descriptor_type->set_type_value(named); + + ret = named; + } + + return ret; +} + +// Make the type of a pointer to a type descriptor as represented in +// Go. + +Type* +Type::make_type_descriptor_ptr_type() +{ + static Type* ret; + if (ret == NULL) + ret = Type::make_pointer_type(Type::make_type_descriptor_type()); + return ret; +} + +// Return the names of runtime functions which compute a hash code for +// this type and which compare whether two values of this type are +// equal. + +void +Type::type_functions(const char** hash_fn, const char** equal_fn) const +{ + switch (this->base()->classification()) + { + case Type::TYPE_ERROR: + case Type::TYPE_VOID: + case Type::TYPE_NIL: + // These types can not be hashed or compared. + *hash_fn = "__go_type_hash_error"; + *equal_fn = "__go_type_equal_error"; + break; + + case Type::TYPE_BOOLEAN: + case Type::TYPE_INTEGER: + case Type::TYPE_FLOAT: + case Type::TYPE_COMPLEX: + case Type::TYPE_POINTER: + case Type::TYPE_FUNCTION: + case Type::TYPE_MAP: + case Type::TYPE_CHANNEL: + *hash_fn = "__go_type_hash_identity"; + *equal_fn = "__go_type_equal_identity"; + break; + + case Type::TYPE_STRING: + *hash_fn = "__go_type_hash_string"; + *equal_fn = "__go_type_equal_string"; + break; + + case Type::TYPE_STRUCT: + case Type::TYPE_ARRAY: + // These types can not be hashed or compared. + *hash_fn = "__go_type_hash_error"; + *equal_fn = "__go_type_equal_error"; + break; + + case Type::TYPE_INTERFACE: + if (this->interface_type()->is_empty()) + { + *hash_fn = "__go_type_hash_empty_interface"; + *equal_fn = "__go_type_equal_empty_interface"; + } + else + { + *hash_fn = "__go_type_hash_interface"; + *equal_fn = "__go_type_equal_interface"; + } + break; + + case Type::TYPE_NAMED: + case Type::TYPE_FORWARD: + gcc_unreachable(); + + default: + gcc_unreachable(); + } +} + +// Return a composite literal for the type descriptor for a plain type +// of kind RUNTIME_TYPE_KIND named NAME. + +Expression* +Type::type_descriptor_constructor(Gogo* gogo, int runtime_type_kind, + Named_type* name, const Methods* methods, + bool only_value_methods) +{ + source_location bloc = BUILTINS_LOCATION; + + Type* td_type = Type::make_type_descriptor_type(); + const Struct_field_list* fields = td_type->struct_type()->fields(); + + Expression_list* vals = new Expression_list(); + vals->reserve(9); + + Struct_field_list::const_iterator p = fields->begin(); + gcc_assert(p->field_name() == "Kind"); + mpz_t iv; + mpz_init_set_ui(iv, runtime_type_kind); + vals->push_back(Expression::make_integer(&iv, p->type(), bloc)); + + ++p; + gcc_assert(p->field_name() == "align"); + Expression::Type_info type_info = Expression::TYPE_INFO_ALIGNMENT; + vals->push_back(Expression::make_type_info(this, type_info)); + + ++p; + gcc_assert(p->field_name() == "fieldAlign"); + type_info = Expression::TYPE_INFO_FIELD_ALIGNMENT; + vals->push_back(Expression::make_type_info(this, type_info)); + + ++p; + gcc_assert(p->field_name() == "size"); + type_info = Expression::TYPE_INFO_SIZE; + vals->push_back(Expression::make_type_info(this, type_info)); + + ++p; + gcc_assert(p->field_name() == "hash"); + mpz_set_ui(iv, this->hash_for_method(gogo)); + vals->push_back(Expression::make_integer(&iv, p->type(), bloc)); + + const char* hash_fn; + const char* equal_fn; + this->type_functions(&hash_fn, &equal_fn); + + ++p; + gcc_assert(p->field_name() == "hashfn"); + Function_type* fntype = p->type()->function_type(); + Named_object* no = Named_object::make_function_declaration(hash_fn, NULL, + fntype, + bloc); + no->func_declaration_value()->set_asm_name(hash_fn); + vals->push_back(Expression::make_func_reference(no, NULL, bloc)); + + ++p; + gcc_assert(p->field_name() == "equalfn"); + fntype = p->type()->function_type(); + no = Named_object::make_function_declaration(equal_fn, NULL, fntype, bloc); + no->func_declaration_value()->set_asm_name(equal_fn); + vals->push_back(Expression::make_func_reference(no, NULL, bloc)); + + ++p; + gcc_assert(p->field_name() == "string"); + Expression* s = Expression::make_string((name != NULL + ? name->reflection(gogo) + : this->reflection(gogo)), + bloc); + vals->push_back(Expression::make_unary(OPERATOR_AND, s, bloc)); + + ++p; + gcc_assert(p->field_name() == "uncommonType"); + if (name == NULL && methods == NULL) + vals->push_back(Expression::make_nil(bloc)); + else + { + if (methods == NULL) + methods = name->methods(); + vals->push_back(this->uncommon_type_constructor(gogo, + p->type()->deref(), + name, methods, + only_value_methods)); + } + + ++p; + gcc_assert(p == fields->end()); + + mpz_clear(iv); + + return Expression::make_struct_composite_literal(td_type, vals, bloc); +} + +// Return a composite literal for the uncommon type information for +// this type. UNCOMMON_STRUCT_TYPE is the type of the uncommon type +// struct. If name is not NULL, it is the name of the type. If +// METHODS is not NULL, it is the list of methods. ONLY_VALUE_METHODS +// is true if only value methods should be included. At least one of +// NAME and METHODS must not be NULL. + +Expression* +Type::uncommon_type_constructor(Gogo* gogo, Type* uncommon_type, + Named_type* name, const Methods* methods, + bool only_value_methods) const +{ + source_location bloc = BUILTINS_LOCATION; + + const Struct_field_list* fields = uncommon_type->struct_type()->fields(); + + Expression_list* vals = new Expression_list(); + vals->reserve(3); + + Struct_field_list::const_iterator p = fields->begin(); + gcc_assert(p->field_name() == "name"); + + ++p; + gcc_assert(p->field_name() == "pkgPath"); + + if (name == NULL) + { + vals->push_back(Expression::make_nil(bloc)); + vals->push_back(Expression::make_nil(bloc)); + } + else + { + Named_object* no = name->named_object(); + std::string n = Gogo::unpack_hidden_name(no->name()); + Expression* s = Expression::make_string(n, bloc); + vals->push_back(Expression::make_unary(OPERATOR_AND, s, bloc)); + + if (name->is_builtin()) + vals->push_back(Expression::make_nil(bloc)); + else + { + const Package* package = no->package(); + const std::string& unique_prefix(package == NULL + ? gogo->unique_prefix() + : package->unique_prefix()); + const std::string& package_name(package == NULL + ? gogo->package_name() + : package->name()); + n.assign(unique_prefix); + n.append(1, '.'); + n.append(package_name); + if (name->in_function() != NULL) + { + n.append(1, '.'); + n.append(Gogo::unpack_hidden_name(name->in_function()->name())); + } + s = Expression::make_string(n, bloc); + vals->push_back(Expression::make_unary(OPERATOR_AND, s, bloc)); + } + } + + ++p; + gcc_assert(p->field_name() == "methods"); + vals->push_back(this->methods_constructor(gogo, p->type(), methods, + only_value_methods)); + + ++p; + gcc_assert(p == fields->end()); + + Expression* r = Expression::make_struct_composite_literal(uncommon_type, + vals, bloc); + return Expression::make_unary(OPERATOR_AND, r, bloc); +} + +// Sort methods by name. + +class Sort_methods +{ + public: + bool + operator()(const std::pair<std::string, const Method*>& m1, + const std::pair<std::string, const Method*>& m2) const + { return m1.first < m2.first; } +}; + +// Return a composite literal for the type method table for this type. +// METHODS_TYPE is the type of the table, and is a slice type. +// METHODS is the list of methods. If ONLY_VALUE_METHODS is true, +// then only value methods are used. + +Expression* +Type::methods_constructor(Gogo* gogo, Type* methods_type, + const Methods* methods, + bool only_value_methods) const +{ + source_location bloc = BUILTINS_LOCATION; + + std::vector<std::pair<std::string, const Method*> > smethods; + if (methods != NULL) + { + smethods.reserve(methods->count()); + for (Methods::const_iterator p = methods->begin(); + p != methods->end(); + ++p) + { + if (p->second->is_ambiguous()) + continue; + if (only_value_methods && !p->second->is_value_method()) + continue; + smethods.push_back(std::make_pair(p->first, p->second)); + } + } + + if (smethods.empty()) + return Expression::make_slice_composite_literal(methods_type, NULL, bloc); + + std::sort(smethods.begin(), smethods.end(), Sort_methods()); + + Type* method_type = methods_type->array_type()->element_type(); + + Expression_list* vals = new Expression_list(); + vals->reserve(smethods.size()); + for (std::vector<std::pair<std::string, const Method*> >::const_iterator p + = smethods.begin(); + p != smethods.end(); + ++p) + vals->push_back(this->method_constructor(gogo, method_type, p->first, + p->second)); + + return Expression::make_slice_composite_literal(methods_type, vals, bloc); +} + +// Return a composite literal for a single method. METHOD_TYPE is the +// type of the entry. METHOD_NAME is the name of the method and M is +// the method information. + +Expression* +Type::method_constructor(Gogo*, Type* method_type, + const std::string& method_name, + const Method* m) const +{ + source_location bloc = BUILTINS_LOCATION; + + const Struct_field_list* fields = method_type->struct_type()->fields(); + + Expression_list* vals = new Expression_list(); + vals->reserve(5); + + Struct_field_list::const_iterator p = fields->begin(); + gcc_assert(p->field_name() == "name"); + const std::string n = Gogo::unpack_hidden_name(method_name); + Expression* s = Expression::make_string(n, bloc); + vals->push_back(Expression::make_unary(OPERATOR_AND, s, bloc)); + + ++p; + gcc_assert(p->field_name() == "pkgPath"); + if (!Gogo::is_hidden_name(method_name)) + vals->push_back(Expression::make_nil(bloc)); + else + { + s = Expression::make_string(Gogo::hidden_name_prefix(method_name), bloc); + vals->push_back(Expression::make_unary(OPERATOR_AND, s, bloc)); + } + + Named_object* no = (m->needs_stub_method() + ? m->stub_object() + : m->named_object()); + + Function_type* mtype; + if (no->is_function()) + mtype = no->func_value()->type(); + else + mtype = no->func_declaration_value()->type(); + gcc_assert(mtype->is_method()); + Type* nonmethod_type = mtype->copy_without_receiver(); + + ++p; + gcc_assert(p->field_name() == "mtyp"); + vals->push_back(Expression::make_type_descriptor(nonmethod_type, bloc)); + + ++p; + gcc_assert(p->field_name() == "typ"); + vals->push_back(Expression::make_type_descriptor(mtype, bloc)); + + ++p; + gcc_assert(p->field_name() == "tfn"); + vals->push_back(Expression::make_func_reference(no, NULL, bloc)); + + ++p; + gcc_assert(p == fields->end()); + + return Expression::make_struct_composite_literal(method_type, vals, bloc); +} + +// Return a composite literal for the type descriptor of a plain type. +// RUNTIME_TYPE_KIND is the value of the kind field. If NAME is not +// NULL, it is the name to use as well as the list of methods. + +Expression* +Type::plain_type_descriptor(Gogo* gogo, int runtime_type_kind, + Named_type* name) +{ + return this->type_descriptor_constructor(gogo, runtime_type_kind, + name, NULL, true); +} + +// Return the type reflection string for this type. + +std::string +Type::reflection(Gogo* gogo) const +{ + std::string ret; + + // The do_reflection virtual function should set RET to the + // reflection string. + this->do_reflection(gogo, &ret); + + return ret; +} + +// Return a mangled name for the type. + +std::string +Type::mangled_name(Gogo* gogo) const +{ + std::string ret; + + // The do_mangled_name virtual function should set RET to the + // mangled name. For a composite type it should append a code for + // the composition and then call do_mangled_name on the components. + this->do_mangled_name(gogo, &ret); + + return ret; +} + +// Default function to export a type. + +void +Type::do_export(Export*) const +{ + gcc_unreachable(); +} + +// Import a type. + +Type* +Type::import_type(Import* imp) +{ + if (imp->match_c_string("(")) + return Function_type::do_import(imp); + else if (imp->match_c_string("*")) + return Pointer_type::do_import(imp); + else if (imp->match_c_string("struct ")) + return Struct_type::do_import(imp); + else if (imp->match_c_string("[")) + return Array_type::do_import(imp); + else if (imp->match_c_string("map ")) + return Map_type::do_import(imp); + else if (imp->match_c_string("chan ")) + return Channel_type::do_import(imp); + else if (imp->match_c_string("interface")) + return Interface_type::do_import(imp); + else + { + error_at(imp->location(), "import error: expected type"); + return Type::make_error_type(); + } +} + +// A type used to indicate a parsing error. This exists to simplify +// later error detection. + +class Error_type : public Type +{ + public: + Error_type() + : Type(TYPE_ERROR) + { } + + protected: + tree + do_get_tree(Gogo*) + { return error_mark_node; } + + tree + do_get_init_tree(Gogo*, tree, bool) + { return error_mark_node; } + + Expression* + do_type_descriptor(Gogo*, Named_type*) + { return Expression::make_error(BUILTINS_LOCATION); } + + void + do_reflection(Gogo*, std::string*) const + { gcc_assert(saw_errors()); } + + void + do_mangled_name(Gogo*, std::string* ret) const + { ret->push_back('E'); } +}; + +Type* +Type::make_error_type() +{ + static Error_type singleton_error_type; + return &singleton_error_type; +} + +// The void type. + +class Void_type : public Type +{ + public: + Void_type() + : Type(TYPE_VOID) + { } + + protected: + tree + do_get_tree(Gogo*) + { return void_type_node; } + + tree + do_get_init_tree(Gogo*, tree, bool) + { gcc_unreachable(); } + + Expression* + do_type_descriptor(Gogo*, Named_type*) + { gcc_unreachable(); } + + void + do_reflection(Gogo*, std::string*) const + { } + + void + do_mangled_name(Gogo*, std::string* ret) const + { ret->push_back('v'); } +}; + +Type* +Type::make_void_type() +{ + static Void_type singleton_void_type; + return &singleton_void_type; +} + +// The boolean type. + +class Boolean_type : public Type +{ + public: + Boolean_type() + : Type(TYPE_BOOLEAN) + { } + + protected: + tree + do_get_tree(Gogo*) + { return boolean_type_node; } + + tree + do_get_init_tree(Gogo*, tree type_tree, bool is_clear) + { return is_clear ? NULL : fold_convert(type_tree, boolean_false_node); } + + Expression* + do_type_descriptor(Gogo*, Named_type* name); + + // We should not be asked for the reflection string of a basic type. + void + do_reflection(Gogo*, std::string* ret) const + { ret->append("bool"); } + + void + do_mangled_name(Gogo*, std::string* ret) const + { ret->push_back('b'); } +}; + +// Make the type descriptor. + +Expression* +Boolean_type::do_type_descriptor(Gogo* gogo, Named_type* name) +{ + if (name != NULL) + return this->plain_type_descriptor(gogo, RUNTIME_TYPE_KIND_BOOL, name); + else + { + Named_object* no = gogo->lookup_global("bool"); + gcc_assert(no != NULL); + return Type::type_descriptor(gogo, no->type_value()); + } +} + +Type* +Type::make_boolean_type() +{ + static Boolean_type boolean_type; + return &boolean_type; +} + +// The named type "bool". + +static Named_type* named_bool_type; + +// Get the named type "bool". + +Named_type* +Type::lookup_bool_type() +{ + return named_bool_type; +} + +// Make the named type "bool". + +Named_type* +Type::make_named_bool_type() +{ + Type* bool_type = Type::make_boolean_type(); + Named_object* named_object = Named_object::make_type("bool", NULL, + bool_type, + BUILTINS_LOCATION); + Named_type* named_type = named_object->type_value(); + named_bool_type = named_type; + return named_type; +} + +// Class Integer_type. + +Integer_type::Named_integer_types Integer_type::named_integer_types; + +// Create a new integer type. Non-abstract integer types always have +// names. + +Named_type* +Integer_type::create_integer_type(const char* name, bool is_unsigned, + int bits, int runtime_type_kind) +{ + Integer_type* integer_type = new Integer_type(false, is_unsigned, bits, + runtime_type_kind); + std::string sname(name); + Named_object* named_object = Named_object::make_type(sname, NULL, + integer_type, + BUILTINS_LOCATION); + Named_type* named_type = named_object->type_value(); + std::pair<Named_integer_types::iterator, bool> ins = + Integer_type::named_integer_types.insert(std::make_pair(sname, named_type)); + gcc_assert(ins.second); + return named_type; +} + +// Look up an existing integer type. + +Named_type* +Integer_type::lookup_integer_type(const char* name) +{ + Named_integer_types::const_iterator p = + Integer_type::named_integer_types.find(name); + gcc_assert(p != Integer_type::named_integer_types.end()); + return p->second; +} + +// Create a new abstract integer type. + +Integer_type* +Integer_type::create_abstract_integer_type() +{ + static Integer_type* abstract_type; + if (abstract_type == NULL) + abstract_type = new Integer_type(true, false, INT_TYPE_SIZE, + RUNTIME_TYPE_KIND_INT); + return abstract_type; +} + +// Integer type compatibility. + +bool +Integer_type::is_identical(const Integer_type* t) const +{ + if (this->is_unsigned_ != t->is_unsigned_ || this->bits_ != t->bits_) + return false; + return this->is_abstract_ == t->is_abstract_; +} + +// Hash code. + +unsigned int +Integer_type::do_hash_for_method(Gogo*) const +{ + return ((this->bits_ << 4) + + ((this->is_unsigned_ ? 1 : 0) << 8) + + ((this->is_abstract_ ? 1 : 0) << 9)); +} + +// Get the tree for an Integer_type. + +tree +Integer_type::do_get_tree(Gogo*) +{ + gcc_assert(!this->is_abstract_); + if (this->is_unsigned_) + { + if (this->bits_ == INT_TYPE_SIZE) + return unsigned_type_node; + else if (this->bits_ == CHAR_TYPE_SIZE) + return unsigned_char_type_node; + else if (this->bits_ == SHORT_TYPE_SIZE) + return short_unsigned_type_node; + else if (this->bits_ == LONG_TYPE_SIZE) + return long_unsigned_type_node; + else if (this->bits_ == LONG_LONG_TYPE_SIZE) + return long_long_unsigned_type_node; + else + return make_unsigned_type(this->bits_); + } + else + { + if (this->bits_ == INT_TYPE_SIZE) + return integer_type_node; + else if (this->bits_ == CHAR_TYPE_SIZE) + return signed_char_type_node; + else if (this->bits_ == SHORT_TYPE_SIZE) + return short_integer_type_node; + else if (this->bits_ == LONG_TYPE_SIZE) + return long_integer_type_node; + else if (this->bits_ == LONG_LONG_TYPE_SIZE) + return long_long_integer_type_node; + else + return make_signed_type(this->bits_); + } +} + +tree +Integer_type::do_get_init_tree(Gogo*, tree type_tree, bool is_clear) +{ + return is_clear ? NULL : build_int_cst(type_tree, 0); +} + +// The type descriptor for an integer type. Integer types are always +// named. + +Expression* +Integer_type::do_type_descriptor(Gogo* gogo, Named_type* name) +{ + gcc_assert(name != NULL); + return this->plain_type_descriptor(gogo, this->runtime_type_kind_, name); +} + +// We should not be asked for the reflection string of a basic type. + +void +Integer_type::do_reflection(Gogo*, std::string*) const +{ + gcc_unreachable(); +} + +// Mangled name. + +void +Integer_type::do_mangled_name(Gogo*, std::string* ret) const +{ + char buf[100]; + snprintf(buf, sizeof buf, "i%s%s%de", + this->is_abstract_ ? "a" : "", + this->is_unsigned_ ? "u" : "", + this->bits_); + ret->append(buf); +} + +// Make an integer type. + +Named_type* +Type::make_integer_type(const char* name, bool is_unsigned, int bits, + int runtime_type_kind) +{ + return Integer_type::create_integer_type(name, is_unsigned, bits, + runtime_type_kind); +} + +// Make an abstract integer type. + +Integer_type* +Type::make_abstract_integer_type() +{ + return Integer_type::create_abstract_integer_type(); +} + +// Look up an integer type. + +Named_type* +Type::lookup_integer_type(const char* name) +{ + return Integer_type::lookup_integer_type(name); +} + +// Class Float_type. + +Float_type::Named_float_types Float_type::named_float_types; + +// Create a new float type. Non-abstract float types always have +// names. + +Named_type* +Float_type::create_float_type(const char* name, int bits, + int runtime_type_kind) +{ + Float_type* float_type = new Float_type(false, bits, runtime_type_kind); + std::string sname(name); + Named_object* named_object = Named_object::make_type(sname, NULL, float_type, + BUILTINS_LOCATION); + Named_type* named_type = named_object->type_value(); + std::pair<Named_float_types::iterator, bool> ins = + Float_type::named_float_types.insert(std::make_pair(sname, named_type)); + gcc_assert(ins.second); + return named_type; +} + +// Look up an existing float type. + +Named_type* +Float_type::lookup_float_type(const char* name) +{ + Named_float_types::const_iterator p = + Float_type::named_float_types.find(name); + gcc_assert(p != Float_type::named_float_types.end()); + return p->second; +} + +// Create a new abstract float type. + +Float_type* +Float_type::create_abstract_float_type() +{ + static Float_type* abstract_type; + if (abstract_type == NULL) + abstract_type = new Float_type(true, FLOAT_TYPE_SIZE, + RUNTIME_TYPE_KIND_FLOAT); + return abstract_type; +} + +// Whether this type is identical with T. + +bool +Float_type::is_identical(const Float_type* t) const +{ + if (this->bits_ != t->bits_) + return false; + return this->is_abstract_ == t->is_abstract_; +} + +// Hash code. + +unsigned int +Float_type::do_hash_for_method(Gogo*) const +{ + return (this->bits_ << 4) + ((this->is_abstract_ ? 1 : 0) << 8); +} + +// Get a tree without using a Gogo*. + +tree +Float_type::type_tree() const +{ + if (this->bits_ == FLOAT_TYPE_SIZE) + return float_type_node; + else if (this->bits_ == DOUBLE_TYPE_SIZE) + return double_type_node; + else if (this->bits_ == LONG_DOUBLE_TYPE_SIZE) + return long_double_type_node; + else + { + tree ret = make_node(REAL_TYPE); + TYPE_PRECISION(ret) = this->bits_; + layout_type(ret); + return ret; + } +} + +// Get a tree. + +tree +Float_type::do_get_tree(Gogo*) +{ + return this->type_tree(); +} + +tree +Float_type::do_get_init_tree(Gogo*, tree type_tree, bool is_clear) +{ + if (is_clear) + return NULL; + REAL_VALUE_TYPE r; + real_from_integer(&r, TYPE_MODE(type_tree), 0, 0, 0); + return build_real(type_tree, r); +} + +// The type descriptor for a float type. Float types are always named. + +Expression* +Float_type::do_type_descriptor(Gogo* gogo, Named_type* name) +{ + gcc_assert(name != NULL); + return this->plain_type_descriptor(gogo, this->runtime_type_kind_, name); +} + +// We should not be asked for the reflection string of a basic type. + +void +Float_type::do_reflection(Gogo*, std::string*) const +{ + gcc_unreachable(); +} + +// Mangled name. + +void +Float_type::do_mangled_name(Gogo*, std::string* ret) const +{ + char buf[100]; + snprintf(buf, sizeof buf, "f%s%de", + this->is_abstract_ ? "a" : "", + this->bits_); + ret->append(buf); +} + +// Make a floating point type. + +Named_type* +Type::make_float_type(const char* name, int bits, int runtime_type_kind) +{ + return Float_type::create_float_type(name, bits, runtime_type_kind); +} + +// Make an abstract float type. + +Float_type* +Type::make_abstract_float_type() +{ + return Float_type::create_abstract_float_type(); +} + +// Look up a float type. + +Named_type* +Type::lookup_float_type(const char* name) +{ + return Float_type::lookup_float_type(name); +} + +// Class Complex_type. + +Complex_type::Named_complex_types Complex_type::named_complex_types; + +// Create a new complex type. Non-abstract complex types always have +// names. + +Named_type* +Complex_type::create_complex_type(const char* name, int bits, + int runtime_type_kind) +{ + Complex_type* complex_type = new Complex_type(false, bits, + runtime_type_kind); + std::string sname(name); + Named_object* named_object = Named_object::make_type(sname, NULL, + complex_type, + BUILTINS_LOCATION); + Named_type* named_type = named_object->type_value(); + std::pair<Named_complex_types::iterator, bool> ins = + Complex_type::named_complex_types.insert(std::make_pair(sname, + named_type)); + gcc_assert(ins.second); + return named_type; +} + +// Look up an existing complex type. + +Named_type* +Complex_type::lookup_complex_type(const char* name) +{ + Named_complex_types::const_iterator p = + Complex_type::named_complex_types.find(name); + gcc_assert(p != Complex_type::named_complex_types.end()); + return p->second; +} + +// Create a new abstract complex type. + +Complex_type* +Complex_type::create_abstract_complex_type() +{ + static Complex_type* abstract_type; + if (abstract_type == NULL) + abstract_type = new Complex_type(true, FLOAT_TYPE_SIZE * 2, + RUNTIME_TYPE_KIND_FLOAT); + return abstract_type; +} + +// Whether this type is identical with T. + +bool +Complex_type::is_identical(const Complex_type *t) const +{ + if (this->bits_ != t->bits_) + return false; + return this->is_abstract_ == t->is_abstract_; +} + +// Hash code. + +unsigned int +Complex_type::do_hash_for_method(Gogo*) const +{ + return (this->bits_ << 4) + ((this->is_abstract_ ? 1 : 0) << 8); +} + +// Get a tree without using a Gogo*. + +tree +Complex_type::type_tree() const +{ + if (this->bits_ == FLOAT_TYPE_SIZE * 2) + return complex_float_type_node; + else if (this->bits_ == DOUBLE_TYPE_SIZE * 2) + return complex_double_type_node; + else if (this->bits_ == LONG_DOUBLE_TYPE_SIZE * 2) + return complex_long_double_type_node; + else + { + tree ret = make_node(REAL_TYPE); + TYPE_PRECISION(ret) = this->bits_ / 2; + layout_type(ret); + return build_complex_type(ret); + } +} + +// Get a tree. + +tree +Complex_type::do_get_tree(Gogo*) +{ + return this->type_tree(); +} + +// Zero initializer. + +tree +Complex_type::do_get_init_tree(Gogo*, tree type_tree, bool is_clear) +{ + if (is_clear) + return NULL; + REAL_VALUE_TYPE r; + real_from_integer(&r, TYPE_MODE(TREE_TYPE(type_tree)), 0, 0, 0); + return build_complex(type_tree, build_real(TREE_TYPE(type_tree), r), + build_real(TREE_TYPE(type_tree), r)); +} + +// The type descriptor for a complex type. Complex types are always +// named. + +Expression* +Complex_type::do_type_descriptor(Gogo* gogo, Named_type* name) +{ + gcc_assert(name != NULL); + return this->plain_type_descriptor(gogo, this->runtime_type_kind_, name); +} + +// We should not be asked for the reflection string of a basic type. + +void +Complex_type::do_reflection(Gogo*, std::string*) const +{ + gcc_unreachable(); +} + +// Mangled name. + +void +Complex_type::do_mangled_name(Gogo*, std::string* ret) const +{ + char buf[100]; + snprintf(buf, sizeof buf, "c%s%de", + this->is_abstract_ ? "a" : "", + this->bits_); + ret->append(buf); +} + +// Make a complex type. + +Named_type* +Type::make_complex_type(const char* name, int bits, int runtime_type_kind) +{ + return Complex_type::create_complex_type(name, bits, runtime_type_kind); +} + +// Make an abstract complex type. + +Complex_type* +Type::make_abstract_complex_type() +{ + return Complex_type::create_abstract_complex_type(); +} + +// Look up a complex type. + +Named_type* +Type::lookup_complex_type(const char* name) +{ + return Complex_type::lookup_complex_type(name); +} + +// Class String_type. + +// Return the tree for String_type. A string is a struct with two +// fields: a pointer to the characters and a length. + +tree +String_type::do_get_tree(Gogo*) +{ + static tree struct_type; + return Gogo::builtin_struct(&struct_type, "__go_string", NULL_TREE, 2, + "__data", + build_pointer_type(unsigned_char_type_node), + "__length", + integer_type_node); +} + +// Return a tree for the length of STRING. + +tree +String_type::length_tree(Gogo*, tree string) +{ + tree string_type = TREE_TYPE(string); + gcc_assert(TREE_CODE(string_type) == RECORD_TYPE); + tree length_field = DECL_CHAIN(TYPE_FIELDS(string_type)); + gcc_assert(strcmp(IDENTIFIER_POINTER(DECL_NAME(length_field)), + "__length") == 0); + return fold_build3(COMPONENT_REF, integer_type_node, string, + length_field, NULL_TREE); +} + +// Return a tree for a pointer to the bytes of STRING. + +tree +String_type::bytes_tree(Gogo*, tree string) +{ + tree string_type = TREE_TYPE(string); + gcc_assert(TREE_CODE(string_type) == RECORD_TYPE); + tree bytes_field = TYPE_FIELDS(string_type); + gcc_assert(strcmp(IDENTIFIER_POINTER(DECL_NAME(bytes_field)), + "__data") == 0); + return fold_build3(COMPONENT_REF, TREE_TYPE(bytes_field), string, + bytes_field, NULL_TREE); +} + +// We initialize a string to { NULL, 0 }. + +tree +String_type::do_get_init_tree(Gogo*, tree type_tree, bool is_clear) +{ + if (is_clear) + return NULL_TREE; + + gcc_assert(TREE_CODE(type_tree) == RECORD_TYPE); + + VEC(constructor_elt, gc)* init = VEC_alloc(constructor_elt, gc, 2); + + for (tree field = TYPE_FIELDS(type_tree); + field != NULL_TREE; + field = DECL_CHAIN(field)) + { + constructor_elt* elt = VEC_quick_push(constructor_elt, init, NULL); + elt->index = field; + elt->value = fold_convert(TREE_TYPE(field), size_zero_node); + } + + tree ret = build_constructor(type_tree, init); + TREE_CONSTANT(ret) = 1; + return ret; +} + +// The type descriptor for the string type. + +Expression* +String_type::do_type_descriptor(Gogo* gogo, Named_type* name) +{ + if (name != NULL) + return this->plain_type_descriptor(gogo, RUNTIME_TYPE_KIND_STRING, name); + else + { + Named_object* no = gogo->lookup_global("string"); + gcc_assert(no != NULL); + return Type::type_descriptor(gogo, no->type_value()); + } +} + +// We should not be asked for the reflection string of a basic type. + +void +String_type::do_reflection(Gogo*, std::string* ret) const +{ + ret->append("string"); +} + +// Mangled name of a string type. + +void +String_type::do_mangled_name(Gogo*, std::string* ret) const +{ + ret->push_back('z'); +} + +// Make a string type. + +Type* +Type::make_string_type() +{ + static String_type string_type; + return &string_type; +} + +// The named type "string". + +static Named_type* named_string_type; + +// Get the named type "string". + +Named_type* +Type::lookup_string_type() +{ + return named_string_type; +} + +// Make the named type string. + +Named_type* +Type::make_named_string_type() +{ + Type* string_type = Type::make_string_type(); + Named_object* named_object = Named_object::make_type("string", NULL, + string_type, + BUILTINS_LOCATION); + Named_type* named_type = named_object->type_value(); + named_string_type = named_type; + return named_type; +} + +// The sink type. This is the type of the blank identifier _. Any +// type may be assigned to it. + +class Sink_type : public Type +{ + public: + Sink_type() + : Type(TYPE_SINK) + { } + + protected: + tree + do_get_tree(Gogo*) + { gcc_unreachable(); } + + tree + do_get_init_tree(Gogo*, tree, bool) + { gcc_unreachable(); } + + Expression* + do_type_descriptor(Gogo*, Named_type*) + { gcc_unreachable(); } + + void + do_reflection(Gogo*, std::string*) const + { gcc_unreachable(); } + + void + do_mangled_name(Gogo*, std::string*) const + { gcc_unreachable(); } +}; + +// Make the sink type. + +Type* +Type::make_sink_type() +{ + static Sink_type sink_type; + return &sink_type; +} + +// Class Function_type. + +// Traversal. + +int +Function_type::do_traverse(Traverse* traverse) +{ + if (this->receiver_ != NULL + && Type::traverse(this->receiver_->type(), traverse) == TRAVERSE_EXIT) + return TRAVERSE_EXIT; + if (this->parameters_ != NULL + && this->parameters_->traverse(traverse) == TRAVERSE_EXIT) + return TRAVERSE_EXIT; + if (this->results_ != NULL + && this->results_->traverse(traverse) == TRAVERSE_EXIT) + return TRAVERSE_EXIT; + return TRAVERSE_CONTINUE; +} + +// Returns whether T is a valid redeclaration of this type. If this +// returns false, and REASON is not NULL, *REASON may be set to a +// brief explanation of why it returned false. + +bool +Function_type::is_valid_redeclaration(const Function_type* t, + std::string* reason) const +{ + if (!this->is_identical(t, false, reason)) + return false; + + // A redeclaration of a function is required to use the same names + // for the receiver and parameters. + if (this->receiver() != NULL + && this->receiver()->name() != t->receiver()->name() + && this->receiver()->name() != Import::import_marker + && t->receiver()->name() != Import::import_marker) + { + if (reason != NULL) + *reason = "receiver name changed"; + return false; + } + + const Typed_identifier_list* parms1 = this->parameters(); + const Typed_identifier_list* parms2 = t->parameters(); + if (parms1 != NULL) + { + Typed_identifier_list::const_iterator p1 = parms1->begin(); + for (Typed_identifier_list::const_iterator p2 = parms2->begin(); + p2 != parms2->end(); + ++p2, ++p1) + { + if (p1->name() != p2->name() + && p1->name() != Import::import_marker + && p2->name() != Import::import_marker) + { + if (reason != NULL) + *reason = "parameter name changed"; + return false; + } + + // This is called at parse time, so we may have unknown + // types. + Type* t1 = p1->type()->forwarded(); + Type* t2 = p2->type()->forwarded(); + if (t1 != t2 + && t1->forward_declaration_type() != NULL + && (t2->forward_declaration_type() == NULL + || (t1->forward_declaration_type()->named_object() + != t2->forward_declaration_type()->named_object()))) + return false; + } + } + + const Typed_identifier_list* results1 = this->results(); + const Typed_identifier_list* results2 = t->results(); + if (results1 != NULL) + { + Typed_identifier_list::const_iterator res1 = results1->begin(); + for (Typed_identifier_list::const_iterator res2 = results2->begin(); + res2 != results2->end(); + ++res2, ++res1) + { + if (res1->name() != res2->name() + && res1->name() != Import::import_marker + && res2->name() != Import::import_marker) + { + if (reason != NULL) + *reason = "result name changed"; + return false; + } + + // This is called at parse time, so we may have unknown + // types. + Type* t1 = res1->type()->forwarded(); + Type* t2 = res2->type()->forwarded(); + if (t1 != t2 + && t1->forward_declaration_type() != NULL + && (t2->forward_declaration_type() == NULL + || (t1->forward_declaration_type()->named_object() + != t2->forward_declaration_type()->named_object()))) + return false; + } + } + + return true; +} + +// Check whether T is the same as this type. + +bool +Function_type::is_identical(const Function_type* t, bool ignore_receiver, + std::string* reason) const +{ + if (!ignore_receiver) + { + const Typed_identifier* r1 = this->receiver(); + const Typed_identifier* r2 = t->receiver(); + if ((r1 != NULL) != (r2 != NULL)) + { + if (reason != NULL) + *reason = _("different receiver types"); + return false; + } + if (r1 != NULL) + { + if (!Type::are_identical(r1->type(), r2->type(), reason)) + { + if (reason != NULL && !reason->empty()) + *reason = "receiver: " + *reason; + return false; + } + } + } + + const Typed_identifier_list* parms1 = this->parameters(); + const Typed_identifier_list* parms2 = t->parameters(); + if ((parms1 != NULL) != (parms2 != NULL)) + { + if (reason != NULL) + *reason = _("different number of parameters"); + return false; + } + if (parms1 != NULL) + { + Typed_identifier_list::const_iterator p1 = parms1->begin(); + for (Typed_identifier_list::const_iterator p2 = parms2->begin(); + p2 != parms2->end(); + ++p2, ++p1) + { + if (p1 == parms1->end()) + { + if (reason != NULL) + *reason = _("different number of parameters"); + return false; + } + + if (!Type::are_identical(p1->type(), p2->type(), NULL)) + { + if (reason != NULL) + *reason = _("different parameter types"); + return false; + } + } + if (p1 != parms1->end()) + { + if (reason != NULL) + *reason = _("different number of parameters"); + return false; + } + } + + if (this->is_varargs() != t->is_varargs()) + { + if (reason != NULL) + *reason = _("different varargs"); + return false; + } + + const Typed_identifier_list* results1 = this->results(); + const Typed_identifier_list* results2 = t->results(); + if ((results1 != NULL) != (results2 != NULL)) + { + if (reason != NULL) + *reason = _("different number of results"); + return false; + } + if (results1 != NULL) + { + Typed_identifier_list::const_iterator res1 = results1->begin(); + for (Typed_identifier_list::const_iterator res2 = results2->begin(); + res2 != results2->end(); + ++res2, ++res1) + { + if (res1 == results1->end()) + { + if (reason != NULL) + *reason = _("different number of results"); + return false; + } + + if (!Type::are_identical(res1->type(), res2->type(), NULL)) + { + if (reason != NULL) + *reason = _("different result types"); + return false; + } + } + if (res1 != results1->end()) + { + if (reason != NULL) + *reason = _("different number of results"); + return false; + } + } + + return true; +} + +// Hash code. + +unsigned int +Function_type::do_hash_for_method(Gogo* gogo) const +{ + unsigned int ret = 0; + // We ignore the receiver type for hash codes, because we need to + // get the same hash code for a method in an interface and a method + // declared for a type. The former will not have a receiver. + if (this->parameters_ != NULL) + { + int shift = 1; + for (Typed_identifier_list::const_iterator p = this->parameters_->begin(); + p != this->parameters_->end(); + ++p, ++shift) + ret += p->type()->hash_for_method(gogo) << shift; + } + if (this->results_ != NULL) + { + int shift = 2; + for (Typed_identifier_list::const_iterator p = this->results_->begin(); + p != this->results_->end(); + ++p, ++shift) + ret += p->type()->hash_for_method(gogo) << shift; + } + if (this->is_varargs_) + ret += 1; + ret <<= 4; + return ret; +} + +// Get the tree for a function type. + +tree +Function_type::do_get_tree(Gogo* gogo) +{ + tree args = NULL_TREE; + tree* pp = &args; + + if (this->receiver_ != NULL) + { + Type* rtype = this->receiver_->type(); + tree ptype = rtype->get_tree(gogo); + if (ptype == error_mark_node) + return error_mark_node; + + // We always pass the address of the receiver parameter, in + // order to make interface calls work with unknown types. + if (rtype->points_to() == NULL) + ptype = build_pointer_type(ptype); + + *pp = tree_cons (NULL_TREE, ptype, NULL_TREE); + pp = &TREE_CHAIN (*pp); + } + + if (this->parameters_ != NULL) + { + for (Typed_identifier_list::const_iterator p = this->parameters_->begin(); + p != this->parameters_->end(); + ++p) + { + tree ptype = p->type()->get_tree(gogo); + if (ptype == error_mark_node) + return error_mark_node; + *pp = tree_cons (NULL_TREE, ptype, NULL_TREE); + pp = &TREE_CHAIN (*pp); + } + } + + // Varargs is handled entirely at the Go level. At the tree level, + // functions are not varargs. + *pp = void_list_node; + + tree result; + if (this->results_ == NULL) + result = void_type_node; + else if (this->results_->size() == 1) + result = this->results_->begin()->type()->get_tree(gogo); + else + { + result = make_node(RECORD_TYPE); + tree field_trees = NULL_TREE; + tree* pp = &field_trees; + for (Typed_identifier_list::const_iterator p = this->results_->begin(); + p != this->results_->end(); + ++p) + { + const std::string name = (p->name().empty() + ? "UNNAMED" + : Gogo::unpack_hidden_name(p->name())); + tree name_tree = get_identifier_with_length(name.data(), + name.length()); + tree field_type_tree = p->type()->get_tree(gogo); + if (field_type_tree == error_mark_node) + return error_mark_node; + tree field = build_decl(this->location_, FIELD_DECL, name_tree, + field_type_tree); + DECL_CONTEXT(field) = result; + *pp = field; + pp = &DECL_CHAIN(field); + } + TYPE_FIELDS(result) = field_trees; + layout_type(result); + } + + if (result == error_mark_node) + return error_mark_node; + + tree fntype = build_function_type(result, args); + if (fntype == error_mark_node) + return fntype; + + return build_pointer_type(fntype); +} + +// Functions are initialized to NULL. + +tree +Function_type::do_get_init_tree(Gogo*, tree type_tree, bool is_clear) +{ + if (is_clear) + return NULL; + return fold_convert(type_tree, null_pointer_node); +} + +// The type of a function type descriptor. + +Type* +Function_type::make_function_type_descriptor_type() +{ + static Type* ret; + if (ret == NULL) + { + Type* tdt = Type::make_type_descriptor_type(); + Type* ptdt = Type::make_type_descriptor_ptr_type(); + + Type* bool_type = Type::lookup_bool_type(); + + Type* slice_type = Type::make_array_type(ptdt, NULL); + + Struct_type* s = Type::make_builtin_struct_type(4, + "", tdt, + "dotdotdot", bool_type, + "in", slice_type, + "out", slice_type); + + ret = Type::make_builtin_named_type("FuncType", s); + } + + return ret; +} + +// The type descriptor for a function type. + +Expression* +Function_type::do_type_descriptor(Gogo* gogo, Named_type* name) +{ + source_location bloc = BUILTINS_LOCATION; + + Type* ftdt = Function_type::make_function_type_descriptor_type(); + + const Struct_field_list* fields = ftdt->struct_type()->fields(); + + Expression_list* vals = new Expression_list(); + vals->reserve(4); + + Struct_field_list::const_iterator p = fields->begin(); + gcc_assert(p->field_name() == "commonType"); + vals->push_back(this->type_descriptor_constructor(gogo, + RUNTIME_TYPE_KIND_FUNC, + name, NULL, true)); + + ++p; + gcc_assert(p->field_name() == "dotdotdot"); + vals->push_back(Expression::make_boolean(this->is_varargs(), bloc)); + + ++p; + gcc_assert(p->field_name() == "in"); + vals->push_back(this->type_descriptor_params(p->type(), this->receiver(), + this->parameters())); + + ++p; + gcc_assert(p->field_name() == "out"); + vals->push_back(this->type_descriptor_params(p->type(), NULL, + this->results())); + + ++p; + gcc_assert(p == fields->end()); + + return Expression::make_struct_composite_literal(ftdt, vals, bloc); +} + +// Return a composite literal for the parameters or results of a type +// descriptor. + +Expression* +Function_type::type_descriptor_params(Type* params_type, + const Typed_identifier* receiver, + const Typed_identifier_list* params) +{ + source_location bloc = BUILTINS_LOCATION; + + if (receiver == NULL && params == NULL) + return Expression::make_slice_composite_literal(params_type, NULL, bloc); + + Expression_list* vals = new Expression_list(); + vals->reserve((params == NULL ? 0 : params->size()) + + (receiver != NULL ? 1 : 0)); + + if (receiver != NULL) + { + Type* rtype = receiver->type(); + // The receiver is always passed as a pointer. FIXME: Is this + // right? Should that fact affect the type descriptor? + if (rtype->points_to() == NULL) + rtype = Type::make_pointer_type(rtype); + vals->push_back(Expression::make_type_descriptor(rtype, bloc)); + } + + if (params != NULL) + { + for (Typed_identifier_list::const_iterator p = params->begin(); + p != params->end(); + ++p) + vals->push_back(Expression::make_type_descriptor(p->type(), bloc)); + } + + return Expression::make_slice_composite_literal(params_type, vals, bloc); +} + +// The reflection string. + +void +Function_type::do_reflection(Gogo* gogo, std::string* ret) const +{ + // FIXME: Turn this off until we straighten out the type of the + // struct field used in a go statement which calls a method. + // gcc_assert(this->receiver_ == NULL); + + ret->append("func"); + + if (this->receiver_ != NULL) + { + ret->push_back('('); + this->append_reflection(this->receiver_->type(), gogo, ret); + ret->push_back(')'); + } + + ret->push_back('('); + const Typed_identifier_list* params = this->parameters(); + if (params != NULL) + { + bool is_varargs = this->is_varargs_; + for (Typed_identifier_list::const_iterator p = params->begin(); + p != params->end(); + ++p) + { + if (p != params->begin()) + ret->append(", "); + if (!is_varargs || p + 1 != params->end()) + this->append_reflection(p->type(), gogo, ret); + else + { + ret->append("..."); + this->append_reflection(p->type()->array_type()->element_type(), + gogo, ret); + } + } + } + ret->push_back(')'); + + const Typed_identifier_list* results = this->results(); + if (results != NULL && !results->empty()) + { + if (results->size() == 1) + ret->push_back(' '); + else + ret->append(" ("); + for (Typed_identifier_list::const_iterator p = results->begin(); + p != results->end(); + ++p) + { + if (p != results->begin()) + ret->append(", "); + this->append_reflection(p->type(), gogo, ret); + } + if (results->size() > 1) + ret->push_back(')'); + } +} + +// Mangled name. + +void +Function_type::do_mangled_name(Gogo* gogo, std::string* ret) const +{ + ret->push_back('F'); + + if (this->receiver_ != NULL) + { + ret->push_back('m'); + this->append_mangled_name(this->receiver_->type(), gogo, ret); + } + + const Typed_identifier_list* params = this->parameters(); + if (params != NULL) + { + ret->push_back('p'); + for (Typed_identifier_list::const_iterator p = params->begin(); + p != params->end(); + ++p) + this->append_mangled_name(p->type(), gogo, ret); + if (this->is_varargs_) + ret->push_back('V'); + ret->push_back('e'); + } + + const Typed_identifier_list* results = this->results(); + if (results != NULL) + { + ret->push_back('r'); + for (Typed_identifier_list::const_iterator p = results->begin(); + p != results->end(); + ++p) + this->append_mangled_name(p->type(), gogo, ret); + ret->push_back('e'); + } + + ret->push_back('e'); +} + +// Export a function type. + +void +Function_type::do_export(Export* exp) const +{ + // We don't write out the receiver. The only function types which + // should have a receiver are the ones associated with explicitly + // defined methods. For those the receiver type is written out by + // Function::export_func. + + exp->write_c_string("("); + bool first = true; + if (this->parameters_ != NULL) + { + bool is_varargs = this->is_varargs_; + for (Typed_identifier_list::const_iterator p = + this->parameters_->begin(); + p != this->parameters_->end(); + ++p) + { + if (first) + first = false; + else + exp->write_c_string(", "); + if (!is_varargs || p + 1 != this->parameters_->end()) + exp->write_type(p->type()); + else + { + exp->write_c_string("..."); + exp->write_type(p->type()->array_type()->element_type()); + } + } + } + exp->write_c_string(")"); + + const Typed_identifier_list* results = this->results_; + if (results != NULL) + { + exp->write_c_string(" "); + if (results->size() == 1) + exp->write_type(results->begin()->type()); + else + { + first = true; + exp->write_c_string("("); + for (Typed_identifier_list::const_iterator p = results->begin(); + p != results->end(); + ++p) + { + if (first) + first = false; + else + exp->write_c_string(", "); + exp->write_type(p->type()); + } + exp->write_c_string(")"); + } + } +} + +// Import a function type. + +Function_type* +Function_type::do_import(Import* imp) +{ + imp->require_c_string("("); + Typed_identifier_list* parameters; + bool is_varargs = false; + if (imp->peek_char() == ')') + parameters = NULL; + else + { + parameters = new Typed_identifier_list(); + while (true) + { + if (imp->match_c_string("...")) + { + imp->advance(3); + is_varargs = true; + } + + Type* ptype = imp->read_type(); + if (is_varargs) + ptype = Type::make_array_type(ptype, NULL); + parameters->push_back(Typed_identifier(Import::import_marker, + ptype, imp->location())); + if (imp->peek_char() != ',') + break; + gcc_assert(!is_varargs); + imp->require_c_string(", "); + } + } + imp->require_c_string(")"); + + Typed_identifier_list* results; + if (imp->peek_char() != ' ') + results = NULL; + else + { + imp->advance(1); + results = new Typed_identifier_list; + if (imp->peek_char() != '(') + { + Type* rtype = imp->read_type(); + results->push_back(Typed_identifier(Import::import_marker, rtype, + imp->location())); + } + else + { + imp->advance(1); + while (true) + { + Type* rtype = imp->read_type(); + results->push_back(Typed_identifier(Import::import_marker, + rtype, imp->location())); + if (imp->peek_char() != ',') + break; + imp->require_c_string(", "); + } + imp->require_c_string(")"); + } + } + + Function_type* ret = Type::make_function_type(NULL, parameters, results, + imp->location()); + if (is_varargs) + ret->set_is_varargs(); + return ret; +} + +// Make a copy of a function type without a receiver. + +Function_type* +Function_type::copy_without_receiver() const +{ + gcc_assert(this->is_method()); + Function_type *ret = Type::make_function_type(NULL, this->parameters_, + this->results_, + this->location_); + if (this->is_varargs()) + ret->set_is_varargs(); + if (this->is_builtin()) + ret->set_is_builtin(); + return ret; +} + +// Make a copy of a function type with a receiver. + +Function_type* +Function_type::copy_with_receiver(Type* receiver_type) const +{ + gcc_assert(!this->is_method()); + Typed_identifier* receiver = new Typed_identifier("", receiver_type, + this->location_); + return Type::make_function_type(receiver, this->parameters_, + this->results_, this->location_); +} + +// Make a function type. + +Function_type* +Type::make_function_type(Typed_identifier* receiver, + Typed_identifier_list* parameters, + Typed_identifier_list* results, + source_location location) +{ + return new Function_type(receiver, parameters, results, location); +} + +// Class Pointer_type. + +// Traversal. + +int +Pointer_type::do_traverse(Traverse* traverse) +{ + return Type::traverse(this->to_type_, traverse); +} + +// Hash code. + +unsigned int +Pointer_type::do_hash_for_method(Gogo* gogo) const +{ + return this->to_type_->hash_for_method(gogo) << 4; +} + +// The tree for a pointer type. + +tree +Pointer_type::do_get_tree(Gogo* gogo) +{ + return build_pointer_type(this->to_type_->get_tree(gogo)); +} + +// Initialize a pointer type. + +tree +Pointer_type::do_get_init_tree(Gogo*, tree type_tree, bool is_clear) +{ + if (is_clear) + return NULL; + return fold_convert(type_tree, null_pointer_node); +} + +// The type of a pointer type descriptor. + +Type* +Pointer_type::make_pointer_type_descriptor_type() +{ + static Type* ret; + if (ret == NULL) + { + Type* tdt = Type::make_type_descriptor_type(); + Type* ptdt = Type::make_type_descriptor_ptr_type(); + + Struct_type* s = Type::make_builtin_struct_type(2, + "", tdt, + "elem", ptdt); + + ret = Type::make_builtin_named_type("PtrType", s); + } + + return ret; +} + +// The type descriptor for a pointer type. + +Expression* +Pointer_type::do_type_descriptor(Gogo* gogo, Named_type* name) +{ + if (this->is_unsafe_pointer_type()) + { + gcc_assert(name != NULL); + return this->plain_type_descriptor(gogo, + RUNTIME_TYPE_KIND_UNSAFE_POINTER, + name); + } + else + { + source_location bloc = BUILTINS_LOCATION; + + const Methods* methods; + Type* deref = this->points_to(); + if (deref->named_type() != NULL) + methods = deref->named_type()->methods(); + else if (deref->struct_type() != NULL) + methods = deref->struct_type()->methods(); + else + methods = NULL; + + Type* ptr_tdt = Pointer_type::make_pointer_type_descriptor_type(); + + const Struct_field_list* fields = ptr_tdt->struct_type()->fields(); + + Expression_list* vals = new Expression_list(); + vals->reserve(2); + + Struct_field_list::const_iterator p = fields->begin(); + gcc_assert(p->field_name() == "commonType"); + vals->push_back(this->type_descriptor_constructor(gogo, + RUNTIME_TYPE_KIND_PTR, + name, methods, false)); + + ++p; + gcc_assert(p->field_name() == "elem"); + vals->push_back(Expression::make_type_descriptor(deref, bloc)); + + return Expression::make_struct_composite_literal(ptr_tdt, vals, bloc); + } +} + +// Reflection string. + +void +Pointer_type::do_reflection(Gogo* gogo, std::string* ret) const +{ + ret->push_back('*'); + this->append_reflection(this->to_type_, gogo, ret); +} + +// Mangled name. + +void +Pointer_type::do_mangled_name(Gogo* gogo, std::string* ret) const +{ + ret->push_back('p'); + this->append_mangled_name(this->to_type_, gogo, ret); +} + +// Export. + +void +Pointer_type::do_export(Export* exp) const +{ + exp->write_c_string("*"); + if (this->is_unsafe_pointer_type()) + exp->write_c_string("any"); + else + exp->write_type(this->to_type_); +} + +// Import. + +Pointer_type* +Pointer_type::do_import(Import* imp) +{ + imp->require_c_string("*"); + if (imp->match_c_string("any")) + { + imp->advance(3); + return Type::make_pointer_type(Type::make_void_type()); + } + Type* to = imp->read_type(); + return Type::make_pointer_type(to); +} + +// Make a pointer type. + +Pointer_type* +Type::make_pointer_type(Type* to_type) +{ + typedef Unordered_map(Type*, Pointer_type*) Hashtable; + static Hashtable pointer_types; + Hashtable::const_iterator p = pointer_types.find(to_type); + if (p != pointer_types.end()) + return p->second; + Pointer_type* ret = new Pointer_type(to_type); + pointer_types[to_type] = ret; + return ret; +} + +// The nil type. We use a special type for nil because it is not the +// same as any other type. In C term nil has type void*, but there is +// no such type in Go. + +class Nil_type : public Type +{ + public: + Nil_type() + : Type(TYPE_NIL) + { } + + protected: + tree + do_get_tree(Gogo*) + { return ptr_type_node; } + + tree + do_get_init_tree(Gogo*, tree type_tree, bool is_clear) + { return is_clear ? NULL : fold_convert(type_tree, null_pointer_node); } + + Expression* + do_type_descriptor(Gogo*, Named_type*) + { gcc_unreachable(); } + + void + do_reflection(Gogo*, std::string*) const + { gcc_unreachable(); } + + void + do_mangled_name(Gogo*, std::string* ret) const + { ret->push_back('n'); } +}; + +// Make the nil type. + +Type* +Type::make_nil_type() +{ + static Nil_type singleton_nil_type; + return &singleton_nil_type; +} + +// The type of a function call which returns multiple values. This is +// really a struct, but we don't want to confuse a function call which +// returns a struct with a function call which returns multiple +// values. + +class Call_multiple_result_type : public Type +{ + public: + Call_multiple_result_type(Call_expression* call) + : Type(TYPE_CALL_MULTIPLE_RESULT), + call_(call) + { } + + protected: + bool + do_has_pointer() const + { gcc_unreachable(); } + + tree + do_get_tree(Gogo*); + + tree + do_get_init_tree(Gogo*, tree, bool) + { gcc_unreachable(); } + + Expression* + do_type_descriptor(Gogo*, Named_type*) + { gcc_unreachable(); } + + void + do_reflection(Gogo*, std::string*) const + { gcc_unreachable(); } + + void + do_mangled_name(Gogo*, std::string*) const + { gcc_unreachable(); } + + private: + // The expression being called. + Call_expression* call_; +}; + +// Return the tree for a call result. + +tree +Call_multiple_result_type::do_get_tree(Gogo* gogo) +{ + Function_type* fntype = this->call_->get_function_type(); + gcc_assert(fntype != NULL); + const Typed_identifier_list* results = fntype->results(); + gcc_assert(results != NULL && results->size() > 1); + + Struct_field_list* sfl = new Struct_field_list; + for (Typed_identifier_list::const_iterator p = results->begin(); + p != results->end(); + ++p) + { + const std::string name = ((p->name().empty() + || p->name() == Import::import_marker) + ? "UNNAMED" + : p->name()); + sfl->push_back(Struct_field(Typed_identifier(name, p->type(), + this->call_->location()))); + } + return Type::make_struct_type(sfl, this->call_->location())->get_tree(gogo); +} + +// Make a call result type. + +Type* +Type::make_call_multiple_result_type(Call_expression* call) +{ + return new Call_multiple_result_type(call); +} + +// Class Struct_field. + +// Get the name of a field. + +const std::string& +Struct_field::field_name() const +{ + const std::string& name(this->typed_identifier_.name()); + if (!name.empty()) + return name; + else + { + // This is called during parsing, before anything is lowered, so + // we have to be pretty careful to avoid dereferencing an + // unknown type name. + Type* t = this->typed_identifier_.type(); + Type* dt = t; + if (t->classification() == Type::TYPE_POINTER) + { + // Very ugly. + Pointer_type* ptype = static_cast<Pointer_type*>(t); + dt = ptype->points_to(); + } + if (dt->forward_declaration_type() != NULL) + return dt->forward_declaration_type()->name(); + else if (dt->named_type() != NULL) + return dt->named_type()->name(); + else if (t->is_error_type() || dt->is_error_type()) + { + static const std::string error_string = "*error*"; + return error_string; + } + else + { + // Avoid crashing in the erroneous case where T is named but + // DT is not. + gcc_assert(t != dt); + if (t->forward_declaration_type() != NULL) + return t->forward_declaration_type()->name(); + else if (t->named_type() != NULL) + return t->named_type()->name(); + else + gcc_unreachable(); + } + } +} + +// Class Struct_type. + +// Traversal. + +int +Struct_type::do_traverse(Traverse* traverse) +{ + Struct_field_list* fields = this->fields_; + if (fields != NULL) + { + for (Struct_field_list::iterator p = fields->begin(); + p != fields->end(); + ++p) + { + if (Type::traverse(p->type(), traverse) == TRAVERSE_EXIT) + return TRAVERSE_EXIT; + } + } + return TRAVERSE_CONTINUE; +} + +// Verify that the struct type is complete and valid. + +bool +Struct_type::do_verify() +{ + Struct_field_list* fields = this->fields_; + if (fields == NULL) + return true; + for (Struct_field_list::iterator p = fields->begin(); + p != fields->end(); + ++p) + { + Type* t = p->type(); + if (t->is_undefined()) + { + error_at(p->location(), "struct field type is incomplete"); + p->set_type(Type::make_error_type()); + return false; + } + else if (p->is_anonymous()) + { + if (t->named_type() != NULL && t->points_to() != NULL) + { + error_at(p->location(), "embedded type may not be a pointer"); + p->set_type(Type::make_error_type()); + return false; + } + } + } + return true; +} + +// Whether this contains a pointer. + +bool +Struct_type::do_has_pointer() const +{ + const Struct_field_list* fields = this->fields(); + if (fields == NULL) + return false; + for (Struct_field_list::const_iterator p = fields->begin(); + p != fields->end(); + ++p) + { + if (p->type()->has_pointer()) + return true; + } + return false; +} + +// Whether this type is identical to T. + +bool +Struct_type::is_identical(const Struct_type* t) const +{ + const Struct_field_list* fields1 = this->fields(); + const Struct_field_list* fields2 = t->fields(); + if (fields1 == NULL || fields2 == NULL) + return fields1 == fields2; + Struct_field_list::const_iterator pf2 = fields2->begin(); + for (Struct_field_list::const_iterator pf1 = fields1->begin(); + pf1 != fields1->end(); + ++pf1, ++pf2) + { + if (pf2 == fields2->end()) + return false; + if (pf1->field_name() != pf2->field_name()) + return false; + if (pf1->is_anonymous() != pf2->is_anonymous() + || !Type::are_identical(pf1->type(), pf2->type(), NULL)) + return false; + if (!pf1->has_tag()) + { + if (pf2->has_tag()) + return false; + } + else + { + if (!pf2->has_tag()) + return false; + if (pf1->tag() != pf2->tag()) + return false; + } + } + if (pf2 != fields2->end()) + return false; + return true; +} + +// Whether this struct type has any hidden fields. + +bool +Struct_type::struct_has_hidden_fields(const Named_type* within, + std::string* reason) const +{ + const Struct_field_list* fields = this->fields(); + if (fields == NULL) + return false; + const Package* within_package = (within == NULL + ? NULL + : within->named_object()->package()); + for (Struct_field_list::const_iterator pf = fields->begin(); + pf != fields->end(); + ++pf) + { + if (within_package != NULL + && !pf->is_anonymous() + && Gogo::is_hidden_name(pf->field_name())) + { + if (reason != NULL) + { + std::string within_name = within->named_object()->message_name(); + std::string name = Gogo::message_name(pf->field_name()); + size_t bufsize = 200 + within_name.length() + name.length(); + char* buf = new char[bufsize]; + snprintf(buf, bufsize, + _("implicit assignment of %s%s%s hidden field %s%s%s"), + open_quote, within_name.c_str(), close_quote, + open_quote, name.c_str(), close_quote); + reason->assign(buf); + delete[] buf; + } + return true; + } + + if (pf->type()->has_hidden_fields(within, reason)) + return true; + } + + return false; +} + +// Hash code. + +unsigned int +Struct_type::do_hash_for_method(Gogo* gogo) const +{ + unsigned int ret = 0; + if (this->fields() != NULL) + { + for (Struct_field_list::const_iterator pf = this->fields()->begin(); + pf != this->fields()->end(); + ++pf) + ret = (ret << 1) + pf->type()->hash_for_method(gogo); + } + return ret <<= 2; +} + +// Find the local field NAME. + +const Struct_field* +Struct_type::find_local_field(const std::string& name, + unsigned int *pindex) const +{ + const Struct_field_list* fields = this->fields_; + if (fields == NULL) + return NULL; + unsigned int i = 0; + for (Struct_field_list::const_iterator pf = fields->begin(); + pf != fields->end(); + ++pf, ++i) + { + if (pf->field_name() == name) + { + if (pindex != NULL) + *pindex = i; + return &*pf; + } + } + return NULL; +} + +// Return an expression for field NAME in STRUCT_EXPR, or NULL. + +Field_reference_expression* +Struct_type::field_reference(Expression* struct_expr, const std::string& name, + source_location location) const +{ + unsigned int depth; + return this->field_reference_depth(struct_expr, name, location, &depth); +} + +// Return an expression for a field, along with the depth at which it +// was found. + +Field_reference_expression* +Struct_type::field_reference_depth(Expression* struct_expr, + const std::string& name, + source_location location, + unsigned int* depth) const +{ + const Struct_field_list* fields = this->fields_; + if (fields == NULL) + return NULL; + + // Look for a field with this name. + unsigned int i = 0; + for (Struct_field_list::const_iterator pf = fields->begin(); + pf != fields->end(); + ++pf, ++i) + { + if (pf->field_name() == name) + { + *depth = 0; + return Expression::make_field_reference(struct_expr, i, location); + } + } + + // Look for an anonymous field which contains a field with this + // name. + unsigned int found_depth = 0; + Field_reference_expression* ret = NULL; + i = 0; + for (Struct_field_list::const_iterator pf = fields->begin(); + pf != fields->end(); + ++pf, ++i) + { + if (!pf->is_anonymous()) + continue; + + Struct_type* st = pf->type()->deref()->struct_type(); + if (st == NULL) + continue; + + // Look for a reference using a NULL struct expression. If we + // find one, fill in the struct expression with a reference to + // this field. + unsigned int subdepth; + Field_reference_expression* sub = st->field_reference_depth(NULL, name, + location, + &subdepth); + if (sub == NULL) + continue; + + if (ret == NULL || subdepth < found_depth) + { + if (ret != NULL) + delete ret; + ret = sub; + found_depth = subdepth; + Expression* here = Expression::make_field_reference(struct_expr, i, + location); + if (pf->type()->points_to() != NULL) + here = Expression::make_unary(OPERATOR_MULT, here, location); + while (sub->expr() != NULL) + { + sub = sub->expr()->deref()->field_reference_expression(); + gcc_assert(sub != NULL); + } + sub->set_struct_expression(here); + } + else if (subdepth > found_depth) + delete sub; + else + { + // We do not handle ambiguity here--it should be handled by + // Type::bind_field_or_method. + delete sub; + found_depth = 0; + ret = NULL; + } + } + + if (ret != NULL) + *depth = found_depth + 1; + + return ret; +} + +// Return the total number of fields, including embedded fields. + +unsigned int +Struct_type::total_field_count() const +{ + if (this->fields_ == NULL) + return 0; + unsigned int ret = 0; + for (Struct_field_list::const_iterator pf = this->fields_->begin(); + pf != this->fields_->end(); + ++pf) + { + if (!pf->is_anonymous() || pf->type()->deref()->struct_type() == NULL) + ++ret; + else + ret += pf->type()->struct_type()->total_field_count(); + } + return ret; +} + +// Return whether NAME is an unexported field, for better error reporting. + +bool +Struct_type::is_unexported_local_field(Gogo* gogo, + const std::string& name) const +{ + const Struct_field_list* fields = this->fields_; + if (fields != NULL) + { + for (Struct_field_list::const_iterator pf = fields->begin(); + pf != fields->end(); + ++pf) + { + const std::string& field_name(pf->field_name()); + if (Gogo::is_hidden_name(field_name) + && name == Gogo::unpack_hidden_name(field_name) + && gogo->pack_hidden_name(name, false) != field_name) + return true; + } + } + return false; +} + +// Finalize the methods of an unnamed struct. + +void +Struct_type::finalize_methods(Gogo* gogo) +{ + Type::finalize_methods(gogo, this, this->location_, &this->all_methods_); +} + +// Return the method NAME, or NULL if there isn't one or if it is +// ambiguous. Set *IS_AMBIGUOUS if the method exists but is +// ambiguous. + +Method* +Struct_type::method_function(const std::string& name, bool* is_ambiguous) const +{ + return Type::method_function(this->all_methods_, name, is_ambiguous); +} + +// Get the tree for a struct type. + +tree +Struct_type::do_get_tree(Gogo* gogo) +{ + tree type = make_node(RECORD_TYPE); + return this->fill_in_tree(gogo, type); +} + +// Fill in the fields for a struct type. + +tree +Struct_type::fill_in_tree(Gogo* gogo, tree type) +{ + tree field_trees = NULL_TREE; + tree* pp = &field_trees; + for (Struct_field_list::const_iterator p = this->fields_->begin(); + p != this->fields_->end(); + ++p) + { + std::string name = Gogo::unpack_hidden_name(p->field_name()); + tree name_tree = get_identifier_with_length(name.data(), name.length()); + tree field_type_tree = p->type()->get_tree(gogo); + if (field_type_tree == error_mark_node) + return error_mark_node; + tree field = build_decl(p->location(), FIELD_DECL, name_tree, + field_type_tree); + DECL_CONTEXT(field) = type; + *pp = field; + pp = &DECL_CHAIN(field); + } + + TYPE_FIELDS(type) = field_trees; + + layout_type(type); + + return type; +} + +// Initialize struct fields. + +tree +Struct_type::do_get_init_tree(Gogo* gogo, tree type_tree, bool is_clear) +{ + if (this->fields_ == NULL || this->fields_->empty()) + { + if (is_clear) + return NULL; + else + { + tree ret = build_constructor(type_tree, + VEC_alloc(constructor_elt, gc, 0)); + TREE_CONSTANT(ret) = 1; + return ret; + } + } + + bool is_constant = true; + bool any_fields_set = false; + VEC(constructor_elt,gc)* init = VEC_alloc(constructor_elt, gc, + this->fields_->size()); + Struct_field_list::const_iterator p = this->fields_->begin(); + for (tree field = TYPE_FIELDS(type_tree); + field != NULL_TREE; + field = DECL_CHAIN(field), ++p) + { + gcc_assert(p != this->fields_->end()); + tree value = p->type()->get_init_tree(gogo, is_clear); + if (value != NULL) + { + constructor_elt* elt = VEC_quick_push(constructor_elt, init, NULL); + elt->index = field; + elt->value = value; + any_fields_set = true; + if (!TREE_CONSTANT(value)) + is_constant = false; + } + } + gcc_assert(p == this->fields_->end()); + + if (!any_fields_set) + { + gcc_assert(is_clear); + VEC_free(constructor_elt, gc, init); + return NULL; + } + + tree ret = build_constructor(type_tree, init); + if (is_constant) + TREE_CONSTANT(ret) = 1; + return ret; +} + +// The type of a struct type descriptor. + +Type* +Struct_type::make_struct_type_descriptor_type() +{ + static Type* ret; + if (ret == NULL) + { + Type* tdt = Type::make_type_descriptor_type(); + Type* ptdt = Type::make_type_descriptor_ptr_type(); + + Type* uintptr_type = Type::lookup_integer_type("uintptr"); + Type* string_type = Type::lookup_string_type(); + Type* pointer_string_type = Type::make_pointer_type(string_type); + + Struct_type* sf = + Type::make_builtin_struct_type(5, + "name", pointer_string_type, + "pkgPath", pointer_string_type, + "typ", ptdt, + "tag", pointer_string_type, + "offset", uintptr_type); + Type* nsf = Type::make_builtin_named_type("structField", sf); + + Type* slice_type = Type::make_array_type(nsf, NULL); + + Struct_type* s = Type::make_builtin_struct_type(2, + "", tdt, + "fields", slice_type); + + ret = Type::make_builtin_named_type("StructType", s); + } + + return ret; +} + +// Build a type descriptor for a struct type. + +Expression* +Struct_type::do_type_descriptor(Gogo* gogo, Named_type* name) +{ + source_location bloc = BUILTINS_LOCATION; + + Type* stdt = Struct_type::make_struct_type_descriptor_type(); + + const Struct_field_list* fields = stdt->struct_type()->fields(); + + Expression_list* vals = new Expression_list(); + vals->reserve(2); + + const Methods* methods = this->methods(); + // A named struct should not have methods--the methods should attach + // to the named type. + gcc_assert(methods == NULL || name == NULL); + + Struct_field_list::const_iterator ps = fields->begin(); + gcc_assert(ps->field_name() == "commonType"); + vals->push_back(this->type_descriptor_constructor(gogo, + RUNTIME_TYPE_KIND_STRUCT, + name, methods, true)); + + ++ps; + gcc_assert(ps->field_name() == "fields"); + + Expression_list* elements = new Expression_list(); + elements->reserve(this->fields_->size()); + Type* element_type = ps->type()->array_type()->element_type(); + for (Struct_field_list::const_iterator pf = this->fields_->begin(); + pf != this->fields_->end(); + ++pf) + { + const Struct_field_list* f = element_type->struct_type()->fields(); + + Expression_list* fvals = new Expression_list(); + fvals->reserve(5); + + Struct_field_list::const_iterator q = f->begin(); + gcc_assert(q->field_name() == "name"); + if (pf->is_anonymous()) + fvals->push_back(Expression::make_nil(bloc)); + else + { + std::string n = Gogo::unpack_hidden_name(pf->field_name()); + Expression* s = Expression::make_string(n, bloc); + fvals->push_back(Expression::make_unary(OPERATOR_AND, s, bloc)); + } + + ++q; + gcc_assert(q->field_name() == "pkgPath"); + if (!Gogo::is_hidden_name(pf->field_name())) + fvals->push_back(Expression::make_nil(bloc)); + else + { + std::string n = Gogo::hidden_name_prefix(pf->field_name()); + Expression* s = Expression::make_string(n, bloc); + fvals->push_back(Expression::make_unary(OPERATOR_AND, s, bloc)); + } + + ++q; + gcc_assert(q->field_name() == "typ"); + fvals->push_back(Expression::make_type_descriptor(pf->type(), bloc)); + + ++q; + gcc_assert(q->field_name() == "tag"); + if (!pf->has_tag()) + fvals->push_back(Expression::make_nil(bloc)); + else + { + Expression* s = Expression::make_string(pf->tag(), bloc); + fvals->push_back(Expression::make_unary(OPERATOR_AND, s, bloc)); + } + + ++q; + gcc_assert(q->field_name() == "offset"); + fvals->push_back(Expression::make_struct_field_offset(this, &*pf)); + + Expression* v = Expression::make_struct_composite_literal(element_type, + fvals, bloc); + elements->push_back(v); + } + + vals->push_back(Expression::make_slice_composite_literal(ps->type(), + elements, bloc)); + + return Expression::make_struct_composite_literal(stdt, vals, bloc); +} + +// Reflection string. + +void +Struct_type::do_reflection(Gogo* gogo, std::string* ret) const +{ + ret->append("struct { "); + + for (Struct_field_list::const_iterator p = this->fields_->begin(); + p != this->fields_->end(); + ++p) + { + if (p != this->fields_->begin()) + ret->append("; "); + if (p->is_anonymous()) + ret->push_back('?'); + else + ret->append(Gogo::unpack_hidden_name(p->field_name())); + ret->push_back(' '); + this->append_reflection(p->type(), gogo, ret); + + if (p->has_tag()) + { + const std::string& tag(p->tag()); + ret->append(" \""); + for (std::string::const_iterator p = tag.begin(); + p != tag.end(); + ++p) + { + if (*p == '\0') + ret->append("\\x00"); + else if (*p == '\n') + ret->append("\\n"); + else if (*p == '\t') + ret->append("\\t"); + else if (*p == '"') + ret->append("\\\""); + else if (*p == '\\') + ret->append("\\\\"); + else + ret->push_back(*p); + } + ret->push_back('"'); + } + } + + ret->append(" }"); +} + +// Mangled name. + +void +Struct_type::do_mangled_name(Gogo* gogo, std::string* ret) const +{ + ret->push_back('S'); + + const Struct_field_list* fields = this->fields_; + if (fields != NULL) + { + for (Struct_field_list::const_iterator p = fields->begin(); + p != fields->end(); + ++p) + { + if (p->is_anonymous()) + ret->append("0_"); + else + { + std::string n = Gogo::unpack_hidden_name(p->field_name()); + char buf[20]; + snprintf(buf, sizeof buf, "%u_", + static_cast<unsigned int>(n.length())); + ret->append(buf); + ret->append(n); + } + this->append_mangled_name(p->type(), gogo, ret); + if (p->has_tag()) + { + const std::string& tag(p->tag()); + std::string out; + for (std::string::const_iterator p = tag.begin(); + p != tag.end(); + ++p) + { + if (ISALNUM(*p) || *p == '_') + out.push_back(*p); + else + { + char buf[20]; + snprintf(buf, sizeof buf, ".%x.", + static_cast<unsigned int>(*p)); + out.append(buf); + } + } + char buf[20]; + snprintf(buf, sizeof buf, "T%u_", + static_cast<unsigned int>(out.length())); + ret->append(buf); + ret->append(out); + } + } + } + + ret->push_back('e'); +} + +// Export. + +void +Struct_type::do_export(Export* exp) const +{ + exp->write_c_string("struct { "); + const Struct_field_list* fields = this->fields_; + gcc_assert(fields != NULL); + for (Struct_field_list::const_iterator p = fields->begin(); + p != fields->end(); + ++p) + { + if (p->is_anonymous()) + exp->write_string("? "); + else + { + exp->write_string(p->field_name()); + exp->write_c_string(" "); + } + exp->write_type(p->type()); + + if (p->has_tag()) + { + exp->write_c_string(" "); + Expression* expr = Expression::make_string(p->tag(), + BUILTINS_LOCATION); + expr->export_expression(exp); + delete expr; + } + + exp->write_c_string("; "); + } + exp->write_c_string("}"); +} + +// Import. + +Struct_type* +Struct_type::do_import(Import* imp) +{ + imp->require_c_string("struct { "); + Struct_field_list* fields = new Struct_field_list; + if (imp->peek_char() != '}') + { + while (true) + { + std::string name; + if (imp->match_c_string("? ")) + imp->advance(2); + else + { + name = imp->read_identifier(); + imp->require_c_string(" "); + } + Type* ftype = imp->read_type(); + + Struct_field sf(Typed_identifier(name, ftype, imp->location())); + + if (imp->peek_char() == ' ') + { + imp->advance(1); + Expression* expr = Expression::import_expression(imp); + String_expression* sexpr = expr->string_expression(); + gcc_assert(sexpr != NULL); + sf.set_tag(sexpr->val()); + delete sexpr; + } + + imp->require_c_string("; "); + fields->push_back(sf); + if (imp->peek_char() == '}') + break; + } + } + imp->require_c_string("}"); + + return Type::make_struct_type(fields, imp->location()); +} + +// Make a struct type. + +Struct_type* +Type::make_struct_type(Struct_field_list* fields, + source_location location) +{ + return new Struct_type(fields, location); +} + +// Class Array_type. + +// Whether two array types are identical. + +bool +Array_type::is_identical(const Array_type* t) const +{ + if (!Type::are_identical(this->element_type(), t->element_type(), NULL)) + return false; + + Expression* l1 = this->length(); + Expression* l2 = t->length(); + + // Slices of the same element type are identical. + if (l1 == NULL && l2 == NULL) + return true; + + // Arrays of the same element type are identical if they have the + // same length. + if (l1 != NULL && l2 != NULL) + { + if (l1 == l2) + return true; + + // Try to determine the lengths. If we can't, assume the arrays + // are not identical. + bool ret = false; + mpz_t v1; + mpz_init(v1); + Type* type1; + mpz_t v2; + mpz_init(v2); + Type* type2; + if (l1->integer_constant_value(true, v1, &type1) + && l2->integer_constant_value(true, v2, &type2)) + ret = mpz_cmp(v1, v2) == 0; + mpz_clear(v1); + mpz_clear(v2); + return ret; + } + + // Otherwise the arrays are not identical. + return false; +} + +// Traversal. + +int +Array_type::do_traverse(Traverse* traverse) +{ + if (Type::traverse(this->element_type_, traverse) == TRAVERSE_EXIT) + return TRAVERSE_EXIT; + if (this->length_ != NULL + && Expression::traverse(&this->length_, traverse) == TRAVERSE_EXIT) + return TRAVERSE_EXIT; + return TRAVERSE_CONTINUE; +} + +// Check that the length is valid. + +bool +Array_type::verify_length() +{ + if (this->length_ == NULL) + return true; + if (!this->length_->is_constant()) + { + error_at(this->length_->location(), "array bound is not constant"); + return false; + } + + mpz_t val; + + Type* t = this->length_->type(); + if (t->integer_type() != NULL) + { + Type* vt; + mpz_init(val); + if (!this->length_->integer_constant_value(true, val, &vt)) + { + error_at(this->length_->location(), + "array bound is not constant"); + mpz_clear(val); + return false; + } + } + else if (t->float_type() != NULL) + { + Type* vt; + mpfr_t fval; + mpfr_init(fval); + if (!this->length_->float_constant_value(fval, &vt)) + { + error_at(this->length_->location(), + "array bound is not constant"); + mpfr_clear(fval); + return false; + } + if (!mpfr_integer_p(fval)) + { + error_at(this->length_->location(), + "array bound truncated to integer"); + mpfr_clear(fval); + return false; + } + mpz_init(val); + mpfr_get_z(val, fval, GMP_RNDN); + mpfr_clear(fval); + } + else + { + if (!t->is_error_type()) + error_at(this->length_->location(), "array bound is not numeric"); + return false; + } + + if (mpz_sgn(val) < 0) + { + error_at(this->length_->location(), "negative array bound"); + mpz_clear(val); + return false; + } + + Type* int_type = Type::lookup_integer_type("int"); + int tbits = int_type->integer_type()->bits(); + int vbits = mpz_sizeinbase(val, 2); + if (vbits + 1 > tbits) + { + error_at(this->length_->location(), "array bound overflows"); + mpz_clear(val); + return false; + } + + mpz_clear(val); + + return true; +} + +// Verify the type. + +bool +Array_type::do_verify() +{ + if (!this->verify_length()) + { + this->length_ = Expression::make_error(this->length_->location()); + return false; + } + return true; +} + +// Array type hash code. + +unsigned int +Array_type::do_hash_for_method(Gogo* gogo) const +{ + // There is no very convenient way to get a hash code for the + // length. + return this->element_type_->hash_for_method(gogo) + 1; +} + +// See if the expression passed to make is suitable. The first +// argument is required, and gives the length. An optional second +// argument is permitted for the capacity. + +bool +Array_type::do_check_make_expression(Expression_list* args, + source_location location) +{ + gcc_assert(this->length_ == NULL); + if (args == NULL || args->empty()) + { + error_at(location, "length required when allocating a slice"); + return false; + } + else if (args->size() > 2) + { + error_at(location, "too many expressions passed to make"); + return false; + } + else + { + if (!Type::check_int_value(args->front(), + _("bad length when making slice"), location)) + return false; + + if (args->size() > 1) + { + if (!Type::check_int_value(args->back(), + _("bad capacity when making slice"), + location)) + return false; + } + + return true; + } +} + +// Get a tree for the length of a fixed array. The length may be +// computed using a function call, so we must only evaluate it once. + +tree +Array_type::get_length_tree(Gogo* gogo) +{ + gcc_assert(this->length_ != NULL); + if (this->length_tree_ == NULL_TREE) + { + mpz_t val; + mpz_init(val); + Type* t; + if (this->length_->integer_constant_value(true, val, &t)) + { + if (t == NULL) + t = Type::lookup_integer_type("int"); + else if (t->is_abstract()) + t = t->make_non_abstract_type(); + tree tt = t->get_tree(gogo); + this->length_tree_ = Expression::integer_constant_tree(val, tt); + mpz_clear(val); + } + else + { + mpz_clear(val); + + // Make up a translation context for the array length + // expression. FIXME: This won't work in general. + Translate_context context(gogo, NULL, NULL, NULL_TREE); + tree len = this->length_->get_tree(&context); + len = convert_to_integer(integer_type_node, len); + this->length_tree_ = save_expr(len); + } + } + return this->length_tree_; +} + +// Get a tree for the type of this array. A fixed array is simply +// represented as ARRAY_TYPE with the appropriate index--i.e., it is +// just like an array in C. An open array is a struct with three +// fields: a data pointer, the length, and the capacity. + +tree +Array_type::do_get_tree(Gogo* gogo) +{ + if (this->length_ == NULL) + { + tree struct_type = gogo->slice_type_tree(void_type_node); + return this->fill_in_tree(gogo, struct_type); + } + else + { + tree element_type_tree = this->element_type_->get_tree(gogo); + tree length_tree = this->get_length_tree(gogo); + if (element_type_tree == error_mark_node + || length_tree == error_mark_node) + return error_mark_node; + + length_tree = fold_convert(sizetype, length_tree); + + // build_index_type takes the maximum index, which is one less + // than the length. + tree index_type = build_index_type(fold_build2(MINUS_EXPR, sizetype, + length_tree, + size_one_node)); + + return build_array_type(element_type_tree, index_type); + } +} + +// Fill in the fields for a slice type. This is used for named slice +// types. + +tree +Array_type::fill_in_tree(Gogo* gogo, tree struct_type) +{ + gcc_assert(this->length_ == NULL); + + tree element_type_tree = this->element_type_->get_tree(gogo); + tree field = TYPE_FIELDS(struct_type); + gcc_assert(strcmp(IDENTIFIER_POINTER(DECL_NAME(field)), "__values") == 0); + gcc_assert(POINTER_TYPE_P(TREE_TYPE(field)) + && TREE_TYPE(TREE_TYPE(field)) == void_type_node); + TREE_TYPE(field) = build_pointer_type(element_type_tree); + + return struct_type; +} + +// Return an initializer for an array type. + +tree +Array_type::do_get_init_tree(Gogo* gogo, tree type_tree, bool is_clear) +{ + if (this->length_ == NULL) + { + // Open array. + + if (is_clear) + return NULL; + + gcc_assert(TREE_CODE(type_tree) == RECORD_TYPE); + + VEC(constructor_elt,gc)* init = VEC_alloc(constructor_elt, gc, 3); + + for (tree field = TYPE_FIELDS(type_tree); + field != NULL_TREE; + field = DECL_CHAIN(field)) + { + constructor_elt* elt = VEC_quick_push(constructor_elt, init, + NULL); + elt->index = field; + elt->value = fold_convert(TREE_TYPE(field), size_zero_node); + } + + tree ret = build_constructor(type_tree, init); + TREE_CONSTANT(ret) = 1; + return ret; + } + else + { + // Fixed array. + + tree value = this->element_type_->get_init_tree(gogo, is_clear); + if (value == NULL) + return NULL; + + tree length_tree = this->get_length_tree(gogo); + length_tree = fold_convert(sizetype, length_tree); + tree range = build2(RANGE_EXPR, sizetype, size_zero_node, + fold_build2(MINUS_EXPR, sizetype, + length_tree, size_one_node)); + tree ret = build_constructor_single(type_tree, range, value); + if (TREE_CONSTANT(value)) + TREE_CONSTANT(ret) = 1; + return ret; + } +} + +// Handle the builtin make function for a slice. + +tree +Array_type::do_make_expression_tree(Translate_context* context, + Expression_list* args, + source_location location) +{ + gcc_assert(this->length_ == NULL); + + Gogo* gogo = context->gogo(); + tree type_tree = this->get_tree(gogo); + if (type_tree == error_mark_node) + return error_mark_node; + + tree values_field = TYPE_FIELDS(type_tree); + gcc_assert(strcmp(IDENTIFIER_POINTER(DECL_NAME(values_field)), + "__values") == 0); + + tree count_field = DECL_CHAIN(values_field); + gcc_assert(strcmp(IDENTIFIER_POINTER(DECL_NAME(count_field)), + "__count") == 0); + + tree element_type_tree = this->element_type_->get_tree(gogo); + if (element_type_tree == error_mark_node) + return error_mark_node; + tree element_size_tree = TYPE_SIZE_UNIT(element_type_tree); + + tree value = this->element_type_->get_init_tree(gogo, true); + + // The first argument is the number of elements, the optional second + // argument is the capacity. + gcc_assert(args != NULL && args->size() >= 1 && args->size() <= 2); + + tree length_tree = args->front()->get_tree(context); + if (length_tree == error_mark_node) + return error_mark_node; + if (!DECL_P(length_tree)) + length_tree = save_expr(length_tree); + if (!INTEGRAL_TYPE_P(TREE_TYPE(length_tree))) + length_tree = convert_to_integer(TREE_TYPE(count_field), length_tree); + + tree bad_index = Expression::check_bounds(length_tree, + TREE_TYPE(count_field), + NULL_TREE, location); + + length_tree = fold_convert_loc(location, TREE_TYPE(count_field), length_tree); + tree capacity_tree; + if (args->size() == 1) + capacity_tree = length_tree; + else + { + capacity_tree = args->back()->get_tree(context); + if (capacity_tree == error_mark_node) + return error_mark_node; + if (!DECL_P(capacity_tree)) + capacity_tree = save_expr(capacity_tree); + if (!INTEGRAL_TYPE_P(TREE_TYPE(capacity_tree))) + capacity_tree = convert_to_integer(TREE_TYPE(count_field), + capacity_tree); + + bad_index = Expression::check_bounds(capacity_tree, + TREE_TYPE(count_field), + bad_index, location); + + tree chktype = (((TYPE_SIZE(TREE_TYPE(capacity_tree)) + > TYPE_SIZE(TREE_TYPE(length_tree))) + || ((TYPE_SIZE(TREE_TYPE(capacity_tree)) + == TYPE_SIZE(TREE_TYPE(length_tree))) + && TYPE_UNSIGNED(TREE_TYPE(capacity_tree)))) + ? TREE_TYPE(capacity_tree) + : TREE_TYPE(length_tree)); + tree chk = fold_build2_loc(location, LT_EXPR, boolean_type_node, + fold_convert_loc(location, chktype, + capacity_tree), + fold_convert_loc(location, chktype, + length_tree)); + if (bad_index == NULL_TREE) + bad_index = chk; + else + bad_index = fold_build2_loc(location, TRUTH_OR_EXPR, boolean_type_node, + bad_index, chk); + + capacity_tree = fold_convert_loc(location, TREE_TYPE(count_field), + capacity_tree); + } + + tree size_tree = fold_build2_loc(location, MULT_EXPR, sizetype, + element_size_tree, + fold_convert_loc(location, sizetype, + capacity_tree)); + + tree chk = fold_build2_loc(location, TRUTH_AND_EXPR, boolean_type_node, + fold_build2_loc(location, GT_EXPR, + boolean_type_node, + fold_convert_loc(location, + sizetype, + capacity_tree), + size_zero_node), + fold_build2_loc(location, LT_EXPR, + boolean_type_node, + size_tree, element_size_tree)); + if (bad_index == NULL_TREE) + bad_index = chk; + else + bad_index = fold_build2_loc(location, TRUTH_OR_EXPR, boolean_type_node, + bad_index, chk); + + tree space = context->gogo()->allocate_memory(this->element_type_, + size_tree, location); + + if (value != NULL_TREE) + space = save_expr(space); + + space = fold_convert(TREE_TYPE(values_field), space); + + if (bad_index != NULL_TREE && bad_index != boolean_false_node) + { + tree crash = Gogo::runtime_error(RUNTIME_ERROR_MAKE_SLICE_OUT_OF_BOUNDS, + location); + space = build2(COMPOUND_EXPR, TREE_TYPE(space), + build3(COND_EXPR, void_type_node, + bad_index, crash, NULL_TREE), + space); + } + + tree constructor = gogo->slice_constructor(type_tree, space, length_tree, + capacity_tree); + + if (value == NULL_TREE) + { + // The array contents are zero initialized. + return constructor; + } + + // The elements must be initialized. + + tree max = fold_build2_loc(location, MINUS_EXPR, TREE_TYPE(count_field), + capacity_tree, + fold_convert_loc(location, TREE_TYPE(count_field), + integer_one_node)); + + tree array_type = build_array_type(element_type_tree, + build_index_type(max)); + + tree value_pointer = fold_convert_loc(location, + build_pointer_type(array_type), + space); + + tree range = build2(RANGE_EXPR, sizetype, size_zero_node, max); + tree space_init = build_constructor_single(array_type, range, value); + + return build2(COMPOUND_EXPR, TREE_TYPE(space), + build2(MODIFY_EXPR, void_type_node, + build_fold_indirect_ref(value_pointer), + space_init), + constructor); +} + +// Return a tree for a pointer to the values in ARRAY. + +tree +Array_type::value_pointer_tree(Gogo*, tree array) const +{ + tree ret; + if (this->length() != NULL) + { + // Fixed array. + ret = fold_convert(build_pointer_type(TREE_TYPE(TREE_TYPE(array))), + build_fold_addr_expr(array)); + } + else + { + // Open array. + tree field = TYPE_FIELDS(TREE_TYPE(array)); + gcc_assert(strcmp(IDENTIFIER_POINTER(DECL_NAME(field)), + "__values") == 0); + ret = fold_build3(COMPONENT_REF, TREE_TYPE(field), array, field, + NULL_TREE); + } + if (TREE_CONSTANT(array)) + TREE_CONSTANT(ret) = 1; + return ret; +} + +// Return a tree for the length of the array ARRAY which has this +// type. + +tree +Array_type::length_tree(Gogo* gogo, tree array) +{ + if (this->length_ != NULL) + { + if (TREE_CODE(array) == SAVE_EXPR) + return fold_convert(integer_type_node, this->get_length_tree(gogo)); + else + return omit_one_operand(integer_type_node, + this->get_length_tree(gogo), array); + } + + // This is an open array. We need to read the length field. + + tree type = TREE_TYPE(array); + gcc_assert(TREE_CODE(type) == RECORD_TYPE); + + tree field = DECL_CHAIN(TYPE_FIELDS(type)); + gcc_assert(strcmp(IDENTIFIER_POINTER(DECL_NAME(field)), "__count") == 0); + + tree ret = build3(COMPONENT_REF, TREE_TYPE(field), array, field, NULL_TREE); + if (TREE_CONSTANT(array)) + TREE_CONSTANT(ret) = 1; + return ret; +} + +// Return a tree for the capacity of the array ARRAY which has this +// type. + +tree +Array_type::capacity_tree(Gogo* gogo, tree array) +{ + if (this->length_ != NULL) + return omit_one_operand(sizetype, this->get_length_tree(gogo), array); + + // This is an open array. We need to read the capacity field. + + tree type = TREE_TYPE(array); + gcc_assert(TREE_CODE(type) == RECORD_TYPE); + + tree field = DECL_CHAIN(DECL_CHAIN(TYPE_FIELDS(type))); + gcc_assert(strcmp(IDENTIFIER_POINTER(DECL_NAME(field)), "__capacity") == 0); + + return build3(COMPONENT_REF, TREE_TYPE(field), array, field, NULL_TREE); +} + +// Export. + +void +Array_type::do_export(Export* exp) const +{ + exp->write_c_string("["); + if (this->length_ != NULL) + this->length_->export_expression(exp); + exp->write_c_string("] "); + exp->write_type(this->element_type_); +} + +// Import. + +Array_type* +Array_type::do_import(Import* imp) +{ + imp->require_c_string("["); + Expression* length; + if (imp->peek_char() == ']') + length = NULL; + else + length = Expression::import_expression(imp); + imp->require_c_string("] "); + Type* element_type = imp->read_type(); + return Type::make_array_type(element_type, length); +} + +// The type of an array type descriptor. + +Type* +Array_type::make_array_type_descriptor_type() +{ + static Type* ret; + if (ret == NULL) + { + Type* tdt = Type::make_type_descriptor_type(); + Type* ptdt = Type::make_type_descriptor_ptr_type(); + + Type* uintptr_type = Type::lookup_integer_type("uintptr"); + + Struct_type* sf = + Type::make_builtin_struct_type(3, + "", tdt, + "elem", ptdt, + "len", uintptr_type); + + ret = Type::make_builtin_named_type("ArrayType", sf); + } + + return ret; +} + +// The type of an slice type descriptor. + +Type* +Array_type::make_slice_type_descriptor_type() +{ + static Type* ret; + if (ret == NULL) + { + Type* tdt = Type::make_type_descriptor_type(); + Type* ptdt = Type::make_type_descriptor_ptr_type(); + + Struct_type* sf = + Type::make_builtin_struct_type(2, + "", tdt, + "elem", ptdt); + + ret = Type::make_builtin_named_type("SliceType", sf); + } + + return ret; +} + +// Build a type descriptor for an array/slice type. + +Expression* +Array_type::do_type_descriptor(Gogo* gogo, Named_type* name) +{ + if (this->length_ != NULL) + return this->array_type_descriptor(gogo, name); + else + return this->slice_type_descriptor(gogo, name); +} + +// Build a type descriptor for an array type. + +Expression* +Array_type::array_type_descriptor(Gogo* gogo, Named_type* name) +{ + source_location bloc = BUILTINS_LOCATION; + + Type* atdt = Array_type::make_array_type_descriptor_type(); + + const Struct_field_list* fields = atdt->struct_type()->fields(); + + Expression_list* vals = new Expression_list(); + vals->reserve(3); + + Struct_field_list::const_iterator p = fields->begin(); + gcc_assert(p->field_name() == "commonType"); + vals->push_back(this->type_descriptor_constructor(gogo, + RUNTIME_TYPE_KIND_ARRAY, + name, NULL, true)); + + ++p; + gcc_assert(p->field_name() == "elem"); + vals->push_back(Expression::make_type_descriptor(this->element_type_, bloc)); + + ++p; + gcc_assert(p->field_name() == "len"); + vals->push_back(this->length_); + + ++p; + gcc_assert(p == fields->end()); + + return Expression::make_struct_composite_literal(atdt, vals, bloc); +} + +// Build a type descriptor for a slice type. + +Expression* +Array_type::slice_type_descriptor(Gogo* gogo, Named_type* name) +{ + source_location bloc = BUILTINS_LOCATION; + + Type* stdt = Array_type::make_slice_type_descriptor_type(); + + const Struct_field_list* fields = stdt->struct_type()->fields(); + + Expression_list* vals = new Expression_list(); + vals->reserve(2); + + Struct_field_list::const_iterator p = fields->begin(); + gcc_assert(p->field_name() == "commonType"); + vals->push_back(this->type_descriptor_constructor(gogo, + RUNTIME_TYPE_KIND_SLICE, + name, NULL, true)); + + ++p; + gcc_assert(p->field_name() == "elem"); + vals->push_back(Expression::make_type_descriptor(this->element_type_, bloc)); + + ++p; + gcc_assert(p == fields->end()); + + return Expression::make_struct_composite_literal(stdt, vals, bloc); +} + +// Reflection string. + +void +Array_type::do_reflection(Gogo* gogo, std::string* ret) const +{ + ret->push_back('['); + if (this->length_ != NULL) + { + mpz_t val; + mpz_init(val); + Type* type; + if (!this->length_->integer_constant_value(true, val, &type)) + error_at(this->length_->location(), + "array length must be integer constant expression"); + else if (mpz_cmp_si(val, 0) < 0) + error_at(this->length_->location(), "array length is negative"); + else if (mpz_cmp_ui(val, mpz_get_ui(val)) != 0) + error_at(this->length_->location(), "array length is too large"); + else + { + char buf[50]; + snprintf(buf, sizeof buf, "%lu", mpz_get_ui(val)); + ret->append(buf); + } + mpz_clear(val); + } + ret->push_back(']'); + + this->append_reflection(this->element_type_, gogo, ret); +} + +// Mangled name. + +void +Array_type::do_mangled_name(Gogo* gogo, std::string* ret) const +{ + ret->push_back('A'); + this->append_mangled_name(this->element_type_, gogo, ret); + if (this->length_ != NULL) + { + mpz_t val; + mpz_init(val); + Type* type; + if (!this->length_->integer_constant_value(true, val, &type)) + error_at(this->length_->location(), + "array length must be integer constant expression"); + else if (mpz_cmp_si(val, 0) < 0) + error_at(this->length_->location(), "array length is negative"); + else if (mpz_cmp_ui(val, mpz_get_ui(val)) != 0) + error_at(this->length_->location(), "array size is too large"); + else + { + char buf[50]; + snprintf(buf, sizeof buf, "%lu", mpz_get_ui(val)); + ret->append(buf); + } + mpz_clear(val); + } + ret->push_back('e'); +} + +// Make an array type. + +Array_type* +Type::make_array_type(Type* element_type, Expression* length) +{ + return new Array_type(element_type, length); +} + +// Class Map_type. + +// Traversal. + +int +Map_type::do_traverse(Traverse* traverse) +{ + if (Type::traverse(this->key_type_, traverse) == TRAVERSE_EXIT + || Type::traverse(this->val_type_, traverse) == TRAVERSE_EXIT) + return TRAVERSE_EXIT; + return TRAVERSE_CONTINUE; +} + +// Check that the map type is OK. + +bool +Map_type::do_verify() +{ + if (this->key_type_->struct_type() != NULL + || this->key_type_->array_type() != NULL) + { + error_at(this->location_, "invalid map key type"); + return false; + } + return true; +} + +// Whether two map types are identical. + +bool +Map_type::is_identical(const Map_type* t) const +{ + return (Type::are_identical(this->key_type(), t->key_type(), NULL) + && Type::are_identical(this->val_type(), t->val_type(), NULL)); +} + +// Hash code. + +unsigned int +Map_type::do_hash_for_method(Gogo* gogo) const +{ + return (this->key_type_->hash_for_method(gogo) + + this->val_type_->hash_for_method(gogo) + + 2); +} + +// Check that a call to the builtin make function is valid. For a map +// the optional argument is the number of spaces to preallocate for +// values. + +bool +Map_type::do_check_make_expression(Expression_list* args, + source_location location) +{ + if (args != NULL && !args->empty()) + { + if (!Type::check_int_value(args->front(), _("bad size when making map"), + location)) + return false; + else if (args->size() > 1) + { + error_at(location, "too many arguments when making map"); + return false; + } + } + return true; +} + +// Get a tree for a map type. A map type is represented as a pointer +// to a struct. The struct is __go_map in libgo/map.h. + +tree +Map_type::do_get_tree(Gogo* gogo) +{ + static tree type_tree; + if (type_tree == NULL_TREE) + { + tree struct_type = make_node(RECORD_TYPE); + + tree map_descriptor_type = gogo->map_descriptor_type(); + tree const_map_descriptor_type = + build_qualified_type(map_descriptor_type, TYPE_QUAL_CONST); + tree name = get_identifier("__descriptor"); + tree field = build_decl(BUILTINS_LOCATION, FIELD_DECL, name, + build_pointer_type(const_map_descriptor_type)); + DECL_CONTEXT(field) = struct_type; + TYPE_FIELDS(struct_type) = field; + tree last_field = field; + + name = get_identifier("__element_count"); + field = build_decl(BUILTINS_LOCATION, FIELD_DECL, name, sizetype); + DECL_CONTEXT(field) = struct_type; + DECL_CHAIN(last_field) = field; + last_field = field; + + name = get_identifier("__bucket_count"); + field = build_decl(BUILTINS_LOCATION, FIELD_DECL, name, sizetype); + DECL_CONTEXT(field) = struct_type; + DECL_CHAIN(last_field) = field; + last_field = field; + + name = get_identifier("__buckets"); + field = build_decl(BUILTINS_LOCATION, FIELD_DECL, name, + build_pointer_type(ptr_type_node)); + DECL_CONTEXT(field) = struct_type; + DECL_CHAIN(last_field) = field; + + layout_type(struct_type); + + // Give the struct a name for better debugging info. + name = get_identifier("__go_map"); + tree type_decl = build_decl(BUILTINS_LOCATION, TYPE_DECL, name, + struct_type); + DECL_ARTIFICIAL(type_decl) = 1; + TYPE_NAME(struct_type) = type_decl; + go_preserve_from_gc(type_decl); + rest_of_decl_compilation(type_decl, 1, 0); + + type_tree = build_pointer_type(struct_type); + go_preserve_from_gc(type_tree); + } + + return type_tree; +} + +// Initialize a map. + +tree +Map_type::do_get_init_tree(Gogo*, tree type_tree, bool is_clear) +{ + if (is_clear) + return NULL; + return fold_convert(type_tree, null_pointer_node); +} + +// Return an expression for a newly allocated map. + +tree +Map_type::do_make_expression_tree(Translate_context* context, + Expression_list* args, + source_location location) +{ + tree bad_index = NULL_TREE; + + tree expr_tree; + if (args == NULL || args->empty()) + expr_tree = size_zero_node; + else + { + expr_tree = args->front()->get_tree(context); + if (expr_tree == error_mark_node) + return error_mark_node; + if (!DECL_P(expr_tree)) + expr_tree = save_expr(expr_tree); + if (!INTEGRAL_TYPE_P(TREE_TYPE(expr_tree))) + expr_tree = convert_to_integer(sizetype, expr_tree); + bad_index = Expression::check_bounds(expr_tree, sizetype, bad_index, + location); + } + + tree map_type = this->get_tree(context->gogo()); + + static tree new_map_fndecl; + tree ret = Gogo::call_builtin(&new_map_fndecl, + location, + "__go_new_map", + 2, + map_type, + TREE_TYPE(TYPE_FIELDS(TREE_TYPE(map_type))), + context->gogo()->map_descriptor(this), + sizetype, + expr_tree); + // This can panic if the capacity is out of range. + TREE_NOTHROW(new_map_fndecl) = 0; + + if (bad_index == NULL_TREE) + return ret; + else + { + tree crash = Gogo::runtime_error(RUNTIME_ERROR_MAKE_MAP_OUT_OF_BOUNDS, + location); + return build2(COMPOUND_EXPR, TREE_TYPE(ret), + build3(COND_EXPR, void_type_node, + bad_index, crash, NULL_TREE), + ret); + } +} + +// The type of a map type descriptor. + +Type* +Map_type::make_map_type_descriptor_type() +{ + static Type* ret; + if (ret == NULL) + { + Type* tdt = Type::make_type_descriptor_type(); + Type* ptdt = Type::make_type_descriptor_ptr_type(); + + Struct_type* sf = + Type::make_builtin_struct_type(3, + "", tdt, + "key", ptdt, + "elem", ptdt); + + ret = Type::make_builtin_named_type("MapType", sf); + } + + return ret; +} + +// Build a type descriptor for a map type. + +Expression* +Map_type::do_type_descriptor(Gogo* gogo, Named_type* name) +{ + source_location bloc = BUILTINS_LOCATION; + + Type* mtdt = Map_type::make_map_type_descriptor_type(); + + const Struct_field_list* fields = mtdt->struct_type()->fields(); + + Expression_list* vals = new Expression_list(); + vals->reserve(3); + + Struct_field_list::const_iterator p = fields->begin(); + gcc_assert(p->field_name() == "commonType"); + vals->push_back(this->type_descriptor_constructor(gogo, + RUNTIME_TYPE_KIND_MAP, + name, NULL, true)); + + ++p; + gcc_assert(p->field_name() == "key"); + vals->push_back(Expression::make_type_descriptor(this->key_type_, bloc)); + + ++p; + gcc_assert(p->field_name() == "elem"); + vals->push_back(Expression::make_type_descriptor(this->val_type_, bloc)); + + ++p; + gcc_assert(p == fields->end()); + + return Expression::make_struct_composite_literal(mtdt, vals, bloc); +} + +// Reflection string for a map. + +void +Map_type::do_reflection(Gogo* gogo, std::string* ret) const +{ + ret->append("map["); + this->append_reflection(this->key_type_, gogo, ret); + ret->append("] "); + this->append_reflection(this->val_type_, gogo, ret); +} + +// Mangled name for a map. + +void +Map_type::do_mangled_name(Gogo* gogo, std::string* ret) const +{ + ret->push_back('M'); + this->append_mangled_name(this->key_type_, gogo, ret); + ret->append("__"); + this->append_mangled_name(this->val_type_, gogo, ret); +} + +// Export a map type. + +void +Map_type::do_export(Export* exp) const +{ + exp->write_c_string("map ["); + exp->write_type(this->key_type_); + exp->write_c_string("] "); + exp->write_type(this->val_type_); +} + +// Import a map type. + +Map_type* +Map_type::do_import(Import* imp) +{ + imp->require_c_string("map ["); + Type* key_type = imp->read_type(); + imp->require_c_string("] "); + Type* val_type = imp->read_type(); + return Type::make_map_type(key_type, val_type, imp->location()); +} + +// Make a map type. + +Map_type* +Type::make_map_type(Type* key_type, Type* val_type, source_location location) +{ + return new Map_type(key_type, val_type, location); +} + +// Class Channel_type. + +// Hash code. + +unsigned int +Channel_type::do_hash_for_method(Gogo* gogo) const +{ + unsigned int ret = 0; + if (this->may_send_) + ret += 1; + if (this->may_receive_) + ret += 2; + if (this->element_type_ != NULL) + ret += this->element_type_->hash_for_method(gogo) << 2; + return ret << 3; +} + +// Whether this type is the same as T. + +bool +Channel_type::is_identical(const Channel_type* t) const +{ + if (!Type::are_identical(this->element_type(), t->element_type(), NULL)) + return false; + return (this->may_send_ == t->may_send_ + && this->may_receive_ == t->may_receive_); +} + +// Check whether the parameters for a call to the builtin function +// make are OK for a channel. A channel can take an optional single +// parameter which is the buffer size. + +bool +Channel_type::do_check_make_expression(Expression_list* args, + source_location location) +{ + if (args != NULL && !args->empty()) + { + if (!Type::check_int_value(args->front(), + _("bad buffer size when making channel"), + location)) + return false; + else if (args->size() > 1) + { + error_at(location, "too many arguments when making channel"); + return false; + } + } + return true; +} + +// Return the tree for a channel type. A channel is a pointer to a +// __go_channel struct. The __go_channel struct is defined in +// libgo/runtime/channel.h. + +tree +Channel_type::do_get_tree(Gogo*) +{ + static tree type_tree; + if (type_tree == NULL_TREE) + { + tree ret = make_node(RECORD_TYPE); + TYPE_NAME(ret) = get_identifier("__go_channel"); + TYPE_STUB_DECL(ret) = build_decl(BUILTINS_LOCATION, TYPE_DECL, NULL_TREE, + ret); + type_tree = build_pointer_type(ret); + go_preserve_from_gc(type_tree); + } + return type_tree; +} + +// Initialize a channel variable. + +tree +Channel_type::do_get_init_tree(Gogo*, tree type_tree, bool is_clear) +{ + if (is_clear) + return NULL; + return fold_convert(type_tree, null_pointer_node); +} + +// Handle the builtin function make for a channel. + +tree +Channel_type::do_make_expression_tree(Translate_context* context, + Expression_list* args, + source_location location) +{ + Gogo* gogo = context->gogo(); + tree channel_type = this->get_tree(gogo); + + tree element_tree = this->element_type_->get_tree(gogo); + tree element_size_tree = size_in_bytes(element_tree); + + tree bad_index = NULL_TREE; + + tree expr_tree; + if (args == NULL || args->empty()) + expr_tree = size_zero_node; + else + { + expr_tree = args->front()->get_tree(context); + if (expr_tree == error_mark_node) + return error_mark_node; + if (!DECL_P(expr_tree)) + expr_tree = save_expr(expr_tree); + if (!INTEGRAL_TYPE_P(TREE_TYPE(expr_tree))) + expr_tree = convert_to_integer(sizetype, expr_tree); + bad_index = Expression::check_bounds(expr_tree, sizetype, bad_index, + location); + } + + static tree new_channel_fndecl; + tree ret = Gogo::call_builtin(&new_channel_fndecl, + location, + "__go_new_channel", + 2, + channel_type, + sizetype, + element_size_tree, + sizetype, + expr_tree); + // This can panic if the capacity is out of range. + TREE_NOTHROW(new_channel_fndecl) = 0; + + if (bad_index == NULL_TREE) + return ret; + else + { + tree crash = Gogo::runtime_error(RUNTIME_ERROR_MAKE_CHAN_OUT_OF_BOUNDS, + location); + return build2(COMPOUND_EXPR, TREE_TYPE(ret), + build3(COND_EXPR, void_type_node, + bad_index, crash, NULL_TREE), + ret); + } +} + +// Build a type descriptor for a channel type. + +Type* +Channel_type::make_chan_type_descriptor_type() +{ + static Type* ret; + if (ret == NULL) + { + Type* tdt = Type::make_type_descriptor_type(); + Type* ptdt = Type::make_type_descriptor_ptr_type(); + + Type* uintptr_type = Type::lookup_integer_type("uintptr"); + + Struct_type* sf = + Type::make_builtin_struct_type(3, + "", tdt, + "elem", ptdt, + "dir", uintptr_type); + + ret = Type::make_builtin_named_type("ChanType", sf); + } + + return ret; +} + +// Build a type descriptor for a map type. + +Expression* +Channel_type::do_type_descriptor(Gogo* gogo, Named_type* name) +{ + source_location bloc = BUILTINS_LOCATION; + + Type* ctdt = Channel_type::make_chan_type_descriptor_type(); + + const Struct_field_list* fields = ctdt->struct_type()->fields(); + + Expression_list* vals = new Expression_list(); + vals->reserve(3); + + Struct_field_list::const_iterator p = fields->begin(); + gcc_assert(p->field_name() == "commonType"); + vals->push_back(this->type_descriptor_constructor(gogo, + RUNTIME_TYPE_KIND_CHAN, + name, NULL, true)); + + ++p; + gcc_assert(p->field_name() == "elem"); + vals->push_back(Expression::make_type_descriptor(this->element_type_, bloc)); + + ++p; + gcc_assert(p->field_name() == "dir"); + // These bits must match the ones in libgo/runtime/go-type.h. + int val = 0; + if (this->may_receive_) + val |= 1; + if (this->may_send_) + val |= 2; + mpz_t iv; + mpz_init_set_ui(iv, val); + vals->push_back(Expression::make_integer(&iv, p->type(), bloc)); + mpz_clear(iv); + + ++p; + gcc_assert(p == fields->end()); + + return Expression::make_struct_composite_literal(ctdt, vals, bloc); +} + +// Reflection string. + +void +Channel_type::do_reflection(Gogo* gogo, std::string* ret) const +{ + if (!this->may_send_) + ret->append("<-"); + ret->append("chan"); + if (!this->may_receive_) + ret->append("<-"); + ret->push_back(' '); + this->append_reflection(this->element_type_, gogo, ret); +} + +// Mangled name. + +void +Channel_type::do_mangled_name(Gogo* gogo, std::string* ret) const +{ + ret->push_back('C'); + this->append_mangled_name(this->element_type_, gogo, ret); + if (this->may_send_) + ret->push_back('s'); + if (this->may_receive_) + ret->push_back('r'); + ret->push_back('e'); +} + +// Export. + +void +Channel_type::do_export(Export* exp) const +{ + exp->write_c_string("chan "); + if (this->may_send_ && !this->may_receive_) + exp->write_c_string("-< "); + else if (this->may_receive_ && !this->may_send_) + exp->write_c_string("<- "); + exp->write_type(this->element_type_); +} + +// Import. + +Channel_type* +Channel_type::do_import(Import* imp) +{ + imp->require_c_string("chan "); + + bool may_send; + bool may_receive; + if (imp->match_c_string("-< ")) + { + imp->advance(3); + may_send = true; + may_receive = false; + } + else if (imp->match_c_string("<- ")) + { + imp->advance(3); + may_receive = true; + may_send = false; + } + else + { + may_send = true; + may_receive = true; + } + + Type* element_type = imp->read_type(); + + return Type::make_channel_type(may_send, may_receive, element_type); +} + +// Make a new channel type. + +Channel_type* +Type::make_channel_type(bool send, bool receive, Type* element_type) +{ + return new Channel_type(send, receive, element_type); +} + +// Class Interface_type. + +// Traversal. + +int +Interface_type::do_traverse(Traverse* traverse) +{ + if (this->methods_ == NULL) + return TRAVERSE_CONTINUE; + return this->methods_->traverse(traverse); +} + +// Finalize the methods. This handles interface inheritance. + +void +Interface_type::finalize_methods() +{ + if (this->methods_ == NULL) + return; + bool is_recursive = false; + size_t from = 0; + size_t to = 0; + while (from < this->methods_->size()) + { + const Typed_identifier* p = &this->methods_->at(from); + if (!p->name().empty()) + { + if (from != to) + this->methods_->set(to, *p); + ++from; + ++to; + continue; + } + Interface_type* it = p->type()->interface_type(); + if (it == NULL) + { + error_at(p->location(), "interface contains embedded non-interface"); + ++from; + continue; + } + if (it == this) + { + if (!is_recursive) + { + error_at(p->location(), "invalid recursive interface"); + is_recursive = true; + } + ++from; + continue; + } + const Typed_identifier_list* methods = it->methods(); + if (methods == NULL) + { + ++from; + continue; + } + for (Typed_identifier_list::const_iterator q = methods->begin(); + q != methods->end(); + ++q) + { + if (q->name().empty() || this->find_method(q->name()) == NULL) + this->methods_->push_back(Typed_identifier(q->name(), q->type(), + p->location())); + else + { + if (!is_recursive) + error_at(p->location(), "inherited method %qs is ambiguous", + Gogo::message_name(q->name()).c_str()); + } + } + ++from; + } + if (to == 0) + { + delete this->methods_; + this->methods_ = NULL; + } + else + { + this->methods_->resize(to); + this->methods_->sort_by_name(); + } +} + +// Return the method NAME, or NULL. + +const Typed_identifier* +Interface_type::find_method(const std::string& name) const +{ + if (this->methods_ == NULL) + return NULL; + for (Typed_identifier_list::const_iterator p = this->methods_->begin(); + p != this->methods_->end(); + ++p) + if (p->name() == name) + return &*p; + return NULL; +} + +// Return the method index. + +size_t +Interface_type::method_index(const std::string& name) const +{ + gcc_assert(this->methods_ != NULL); + size_t ret = 0; + for (Typed_identifier_list::const_iterator p = this->methods_->begin(); + p != this->methods_->end(); + ++p, ++ret) + if (p->name() == name) + return ret; + gcc_unreachable(); +} + +// Return whether NAME is an unexported method, for better error +// reporting. + +bool +Interface_type::is_unexported_method(Gogo* gogo, const std::string& name) const +{ + if (this->methods_ == NULL) + return false; + for (Typed_identifier_list::const_iterator p = this->methods_->begin(); + p != this->methods_->end(); + ++p) + { + const std::string& method_name(p->name()); + if (Gogo::is_hidden_name(method_name) + && name == Gogo::unpack_hidden_name(method_name) + && gogo->pack_hidden_name(name, false) != method_name) + return true; + } + return false; +} + +// Whether this type is identical with T. + +bool +Interface_type::is_identical(const Interface_type* t) const +{ + // We require the same methods with the same types. The methods + // have already been sorted. + if (this->methods() == NULL || t->methods() == NULL) + return this->methods() == t->methods(); + + Typed_identifier_list::const_iterator p1 = this->methods()->begin(); + for (Typed_identifier_list::const_iterator p2 = t->methods()->begin(); + p2 != t->methods()->end(); + ++p1, ++p2) + { + if (p1 == this->methods()->end()) + return false; + if (p1->name() != p2->name() + || !Type::are_identical(p1->type(), p2->type(), NULL)) + return false; + } + if (p1 != this->methods()->end()) + return false; + return true; +} + +// Whether we can assign the interface type T to this type. The types +// are known to not be identical. An interface assignment is only +// permitted if T is known to implement all methods in THIS. +// Otherwise a type guard is required. + +bool +Interface_type::is_compatible_for_assign(const Interface_type* t, + std::string* reason) const +{ + if (this->methods() == NULL) + return true; + for (Typed_identifier_list::const_iterator p = this->methods()->begin(); + p != this->methods()->end(); + ++p) + { + const Typed_identifier* m = t->find_method(p->name()); + if (m == NULL) + { + if (reason != NULL) + { + char buf[200]; + snprintf(buf, sizeof buf, + _("need explicit conversion; missing method %s%s%s"), + open_quote, Gogo::message_name(p->name()).c_str(), + close_quote); + reason->assign(buf); + } + return false; + } + + std::string subreason; + if (!Type::are_identical(p->type(), m->type(), &subreason)) + { + if (reason != NULL) + { + std::string n = Gogo::message_name(p->name()); + size_t len = 100 + n.length() + subreason.length(); + char* buf = new char[len]; + if (subreason.empty()) + snprintf(buf, len, _("incompatible type for method %s%s%s"), + open_quote, n.c_str(), close_quote); + else + snprintf(buf, len, + _("incompatible type for method %s%s%s (%s)"), + open_quote, n.c_str(), close_quote, + subreason.c_str()); + reason->assign(buf); + delete[] buf; + } + return false; + } + } + + return true; +} + +// Hash code. + +unsigned int +Interface_type::do_hash_for_method(Gogo* gogo) const +{ + unsigned int ret = 0; + if (this->methods_ != NULL) + { + for (Typed_identifier_list::const_iterator p = this->methods_->begin(); + p != this->methods_->end(); + ++p) + { + ret = Type::hash_string(p->name(), ret); + ret += p->type()->hash_for_method(gogo); + ret <<= 1; + } + } + return ret; +} + +// Return true if T implements the interface. If it does not, and +// REASON is not NULL, set *REASON to a useful error message. + +bool +Interface_type::implements_interface(const Type* t, std::string* reason) const +{ + if (this->methods_ == NULL) + return true; + + bool is_pointer = false; + const Named_type* nt = t->named_type(); + const Struct_type* st = t->struct_type(); + // If we start with a named type, we don't dereference it to find + // methods. + if (nt == NULL) + { + const Type* pt = t->points_to(); + if (pt != NULL) + { + // If T is a pointer to a named type, then we need to look at + // the type to which it points. + is_pointer = true; + nt = pt->named_type(); + st = pt->struct_type(); + } + } + + // If we have a named type, get the methods from it rather than from + // any struct type. + if (nt != NULL) + st = NULL; + + // Only named and struct types have methods. + if (nt == NULL && st == NULL) + { + if (reason != NULL) + { + if (t->points_to() != NULL + && t->points_to()->interface_type() != NULL) + reason->assign(_("pointer to interface type has no methods")); + else + reason->assign(_("type has no methods")); + } + return false; + } + + if (nt != NULL ? !nt->has_any_methods() : !st->has_any_methods()) + { + if (reason != NULL) + { + if (t->points_to() != NULL + && t->points_to()->interface_type() != NULL) + reason->assign(_("pointer to interface type has no methods")); + else + reason->assign(_("type has no methods")); + } + return false; + } + + for (Typed_identifier_list::const_iterator p = this->methods_->begin(); + p != this->methods_->end(); + ++p) + { + bool is_ambiguous = false; + Method* m = (nt != NULL + ? nt->method_function(p->name(), &is_ambiguous) + : st->method_function(p->name(), &is_ambiguous)); + if (m == NULL) + { + if (reason != NULL) + { + std::string n = Gogo::message_name(p->name()); + size_t len = n.length() + 100; + char* buf = new char[len]; + if (is_ambiguous) + snprintf(buf, len, _("ambiguous method %s%s%s"), + open_quote, n.c_str(), close_quote); + else + snprintf(buf, len, _("missing method %s%s%s"), + open_quote, n.c_str(), close_quote); + reason->assign(buf); + delete[] buf; + } + return false; + } + + Function_type *p_fn_type = p->type()->function_type(); + Function_type* m_fn_type = m->type()->function_type(); + gcc_assert(p_fn_type != NULL && m_fn_type != NULL); + std::string subreason; + if (!p_fn_type->is_identical(m_fn_type, true, &subreason)) + { + if (reason != NULL) + { + std::string n = Gogo::message_name(p->name()); + size_t len = 100 + n.length() + subreason.length(); + char* buf = new char[len]; + if (subreason.empty()) + snprintf(buf, len, _("incompatible type for method %s%s%s"), + open_quote, n.c_str(), close_quote); + else + snprintf(buf, len, + _("incompatible type for method %s%s%s (%s)"), + open_quote, n.c_str(), close_quote, + subreason.c_str()); + reason->assign(buf); + delete[] buf; + } + return false; + } + + if (!is_pointer && !m->is_value_method()) + { + if (reason != NULL) + { + std::string n = Gogo::message_name(p->name()); + size_t len = 100 + n.length(); + char* buf = new char[len]; + snprintf(buf, len, _("method %s%s%s requires a pointer"), + open_quote, n.c_str(), close_quote); + reason->assign(buf); + delete[] buf; + } + return false; + } + } + + return true; +} + +// Return a tree for an interface type. An interface is a pointer to +// a struct. The struct has three fields. The first field is a +// pointer to the type descriptor for the dynamic type of the object. +// The second field is a pointer to a table of methods for the +// interface to be used with the object. The third field is the value +// of the object itself. + +tree +Interface_type::do_get_tree(Gogo* gogo) +{ + if (this->methods_ == NULL) + { + // At the tree level, use the same type for all empty + // interfaces. This lets us assign them to each other directly + // without triggering GIMPLE type errors. + tree dtype = Type::make_type_descriptor_type()->get_tree(gogo); + dtype = build_pointer_type(build_qualified_type(dtype, TYPE_QUAL_CONST)); + static tree empty_interface; + return Gogo::builtin_struct(&empty_interface, "__go_empty_interface", + NULL_TREE, 2, + "__type_descriptor", + dtype, + "__object", + ptr_type_node); + } + + return this->fill_in_tree(gogo, make_node(RECORD_TYPE)); +} + +// Fill in the tree for an interface type. This is used for named +// interface types. + +tree +Interface_type::fill_in_tree(Gogo* gogo, tree type) +{ + gcc_assert(this->methods_ != NULL); + + // Build the type of the table of methods. + + tree method_table = make_node(RECORD_TYPE); + + // The first field is a pointer to the type descriptor. + tree name_tree = get_identifier("__type_descriptor"); + tree dtype = Type::make_type_descriptor_type()->get_tree(gogo); + dtype = build_pointer_type(build_qualified_type(dtype, TYPE_QUAL_CONST)); + tree field = build_decl(this->location_, FIELD_DECL, name_tree, dtype); + DECL_CONTEXT(field) = method_table; + TYPE_FIELDS(method_table) = field; + + std::string last_name = ""; + tree* pp = &DECL_CHAIN(field); + for (Typed_identifier_list::const_iterator p = this->methods_->begin(); + p != this->methods_->end(); + ++p) + { + std::string name = Gogo::unpack_hidden_name(p->name()); + name_tree = get_identifier_with_length(name.data(), name.length()); + tree field_type = p->type()->get_tree(gogo); + if (field_type == error_mark_node) + return error_mark_node; + field = build_decl(this->location_, FIELD_DECL, name_tree, field_type); + DECL_CONTEXT(field) = method_table; + *pp = field; + pp = &DECL_CHAIN(field); + // Sanity check: the names should be sorted. + gcc_assert(p->name() > last_name); + last_name = p->name(); + } + layout_type(method_table); + + tree mtype = build_pointer_type(method_table); + + tree field_trees = NULL_TREE; + pp = &field_trees; + + name_tree = get_identifier("__methods"); + field = build_decl(this->location_, FIELD_DECL, name_tree, mtype); + DECL_CONTEXT(field) = type; + *pp = field; + pp = &DECL_CHAIN(field); + + name_tree = get_identifier("__object"); + field = build_decl(this->location_, FIELD_DECL, name_tree, ptr_type_node); + DECL_CONTEXT(field) = type; + *pp = field; + + TYPE_FIELDS(type) = field_trees; + + layout_type(type); + + return type; +} + +// Initialization value. + +tree +Interface_type::do_get_init_tree(Gogo*, tree type_tree, bool is_clear) +{ + if (is_clear) + return NULL; + + VEC(constructor_elt,gc)* init = VEC_alloc(constructor_elt, gc, 2); + for (tree field = TYPE_FIELDS(type_tree); + field != NULL_TREE; + field = DECL_CHAIN(field)) + { + constructor_elt* elt = VEC_quick_push(constructor_elt, init, NULL); + elt->index = field; + elt->value = fold_convert(TREE_TYPE(field), null_pointer_node); + } + + tree ret = build_constructor(type_tree, init); + TREE_CONSTANT(ret) = 1; + return ret; +} + +// The type of an interface type descriptor. + +Type* +Interface_type::make_interface_type_descriptor_type() +{ + static Type* ret; + if (ret == NULL) + { + Type* tdt = Type::make_type_descriptor_type(); + Type* ptdt = Type::make_type_descriptor_ptr_type(); + + Type* string_type = Type::lookup_string_type(); + Type* pointer_string_type = Type::make_pointer_type(string_type); + + Struct_type* sm = + Type::make_builtin_struct_type(3, + "name", pointer_string_type, + "pkgPath", pointer_string_type, + "typ", ptdt); + + Type* nsm = Type::make_builtin_named_type("imethod", sm); + + Type* slice_nsm = Type::make_array_type(nsm, NULL); + + Struct_type* s = Type::make_builtin_struct_type(2, + "", tdt, + "methods", slice_nsm); + + ret = Type::make_builtin_named_type("InterfaceType", s); + } + + return ret; +} + +// Build a type descriptor for an interface type. + +Expression* +Interface_type::do_type_descriptor(Gogo* gogo, Named_type* name) +{ + source_location bloc = BUILTINS_LOCATION; + + Type* itdt = Interface_type::make_interface_type_descriptor_type(); + + const Struct_field_list* ifields = itdt->struct_type()->fields(); + + Expression_list* ivals = new Expression_list(); + ivals->reserve(2); + + Struct_field_list::const_iterator pif = ifields->begin(); + gcc_assert(pif->field_name() == "commonType"); + ivals->push_back(this->type_descriptor_constructor(gogo, + RUNTIME_TYPE_KIND_INTERFACE, + name, NULL, true)); + + ++pif; + gcc_assert(pif->field_name() == "methods"); + + Expression_list* methods = new Expression_list(); + if (this->methods_ != NULL && !this->methods_->empty()) + { + Type* elemtype = pif->type()->array_type()->element_type(); + + methods->reserve(this->methods_->size()); + for (Typed_identifier_list::const_iterator pm = this->methods_->begin(); + pm != this->methods_->end(); + ++pm) + { + const Struct_field_list* mfields = elemtype->struct_type()->fields(); + + Expression_list* mvals = new Expression_list(); + mvals->reserve(3); + + Struct_field_list::const_iterator pmf = mfields->begin(); + gcc_assert(pmf->field_name() == "name"); + std::string s = Gogo::unpack_hidden_name(pm->name()); + Expression* e = Expression::make_string(s, bloc); + mvals->push_back(Expression::make_unary(OPERATOR_AND, e, bloc)); + + ++pmf; + gcc_assert(pmf->field_name() == "pkgPath"); + if (!Gogo::is_hidden_name(pm->name())) + mvals->push_back(Expression::make_nil(bloc)); + else + { + s = Gogo::hidden_name_prefix(pm->name()); + e = Expression::make_string(s, bloc); + mvals->push_back(Expression::make_unary(OPERATOR_AND, e, bloc)); + } + + ++pmf; + gcc_assert(pmf->field_name() == "typ"); + mvals->push_back(Expression::make_type_descriptor(pm->type(), bloc)); + + ++pmf; + gcc_assert(pmf == mfields->end()); + + e = Expression::make_struct_composite_literal(elemtype, mvals, + bloc); + methods->push_back(e); + } + } + + ivals->push_back(Expression::make_slice_composite_literal(pif->type(), + methods, bloc)); + + ++pif; + gcc_assert(pif == ifields->end()); + + return Expression::make_struct_composite_literal(itdt, ivals, bloc); +} + +// Reflection string. + +void +Interface_type::do_reflection(Gogo* gogo, std::string* ret) const +{ + ret->append("interface {"); + if (this->methods_ != NULL) + { + for (Typed_identifier_list::const_iterator p = this->methods_->begin(); + p != this->methods_->end(); + ++p) + { + if (p != this->methods_->begin()) + ret->append(";"); + ret->push_back(' '); + ret->append(Gogo::unpack_hidden_name(p->name())); + std::string sub = p->type()->reflection(gogo); + gcc_assert(sub.compare(0, 4, "func") == 0); + sub = sub.substr(4); + ret->append(sub); + } + } + ret->append(" }"); +} + +// Mangled name. + +void +Interface_type::do_mangled_name(Gogo* gogo, std::string* ret) const +{ + ret->push_back('I'); + + const Typed_identifier_list* methods = this->methods_; + if (methods != NULL) + { + for (Typed_identifier_list::const_iterator p = methods->begin(); + p != methods->end(); + ++p) + { + std::string n = Gogo::unpack_hidden_name(p->name()); + char buf[20]; + snprintf(buf, sizeof buf, "%u_", + static_cast<unsigned int>(n.length())); + ret->append(buf); + ret->append(n); + this->append_mangled_name(p->type(), gogo, ret); + } + } + + ret->push_back('e'); +} + +// Export. + +void +Interface_type::do_export(Export* exp) const +{ + exp->write_c_string("interface { "); + + const Typed_identifier_list* methods = this->methods_; + if (methods != NULL) + { + for (Typed_identifier_list::const_iterator pm = methods->begin(); + pm != methods->end(); + ++pm) + { + exp->write_string(pm->name()); + exp->write_c_string(" ("); + + const Function_type* fntype = pm->type()->function_type(); + + bool first = true; + const Typed_identifier_list* parameters = fntype->parameters(); + if (parameters != NULL) + { + bool is_varargs = fntype->is_varargs(); + for (Typed_identifier_list::const_iterator pp = + parameters->begin(); + pp != parameters->end(); + ++pp) + { + if (first) + first = false; + else + exp->write_c_string(", "); + if (!is_varargs || pp + 1 != parameters->end()) + exp->write_type(pp->type()); + else + { + exp->write_c_string("..."); + Type *pptype = pp->type(); + exp->write_type(pptype->array_type()->element_type()); + } + } + } + + exp->write_c_string(")"); + + const Typed_identifier_list* results = fntype->results(); + if (results != NULL) + { + exp->write_c_string(" "); + if (results->size() == 1) + exp->write_type(results->begin()->type()); + else + { + first = true; + exp->write_c_string("("); + for (Typed_identifier_list::const_iterator p = + results->begin(); + p != results->end(); + ++p) + { + if (first) + first = false; + else + exp->write_c_string(", "); + exp->write_type(p->type()); + } + exp->write_c_string(")"); + } + } + + exp->write_c_string("; "); + } + } + + exp->write_c_string("}"); +} + +// Import an interface type. + +Interface_type* +Interface_type::do_import(Import* imp) +{ + imp->require_c_string("interface { "); + + Typed_identifier_list* methods = new Typed_identifier_list; + while (imp->peek_char() != '}') + { + std::string name = imp->read_identifier(); + imp->require_c_string(" ("); + + Typed_identifier_list* parameters; + bool is_varargs = false; + if (imp->peek_char() == ')') + parameters = NULL; + else + { + parameters = new Typed_identifier_list; + while (true) + { + if (imp->match_c_string("...")) + { + imp->advance(3); + is_varargs = true; + } + + Type* ptype = imp->read_type(); + if (is_varargs) + ptype = Type::make_array_type(ptype, NULL); + parameters->push_back(Typed_identifier(Import::import_marker, + ptype, imp->location())); + if (imp->peek_char() != ',') + break; + gcc_assert(!is_varargs); + imp->require_c_string(", "); + } + } + imp->require_c_string(")"); + + Typed_identifier_list* results; + if (imp->peek_char() != ' ') + results = NULL; + else + { + results = new Typed_identifier_list; + imp->advance(1); + if (imp->peek_char() != '(') + { + Type* rtype = imp->read_type(); + results->push_back(Typed_identifier(Import::import_marker, + rtype, imp->location())); + } + else + { + imp->advance(1); + while (true) + { + Type* rtype = imp->read_type(); + results->push_back(Typed_identifier(Import::import_marker, + rtype, imp->location())); + if (imp->peek_char() != ',') + break; + imp->require_c_string(", "); + } + imp->require_c_string(")"); + } + } + + Function_type* fntype = Type::make_function_type(NULL, parameters, + results, + imp->location()); + if (is_varargs) + fntype->set_is_varargs(); + methods->push_back(Typed_identifier(name, fntype, imp->location())); + + imp->require_c_string("; "); + } + + imp->require_c_string("}"); + + if (methods->empty()) + { + delete methods; + methods = NULL; + } + + return Type::make_interface_type(methods, imp->location()); +} + +// Make an interface type. + +Interface_type* +Type::make_interface_type(Typed_identifier_list* methods, + source_location location) +{ + return new Interface_type(methods, location); +} + +// Class Method. + +// Bind a method to an object. + +Expression* +Method::bind_method(Expression* expr, source_location location) const +{ + if (this->stub_ == NULL) + { + // When there is no stub object, the binding is determined by + // the child class. + return this->do_bind_method(expr, location); + } + + Expression* func = Expression::make_func_reference(this->stub_, NULL, + location); + return Expression::make_bound_method(expr, func, location); +} + +// Return the named object associated with a method. This may only be +// called after methods are finalized. + +Named_object* +Method::named_object() const +{ + if (this->stub_ != NULL) + return this->stub_; + return this->do_named_object(); +} + +// Class Named_method. + +// The type of the method. + +Function_type* +Named_method::do_type() const +{ + if (this->named_object_->is_function()) + return this->named_object_->func_value()->type(); + else if (this->named_object_->is_function_declaration()) + return this->named_object_->func_declaration_value()->type(); + else + gcc_unreachable(); +} + +// Return the location of the method receiver. + +source_location +Named_method::do_receiver_location() const +{ + return this->do_type()->receiver()->location(); +} + +// Bind a method to an object. + +Expression* +Named_method::do_bind_method(Expression* expr, source_location location) const +{ + Expression* func = Expression::make_func_reference(this->named_object_, NULL, + location); + Bound_method_expression* bme = Expression::make_bound_method(expr, func, + location); + // If this is not a local method, and it does not use a stub, then + // the real method expects a different type. We need to cast the + // first argument. + if (this->depth() > 0 && !this->needs_stub_method()) + { + Function_type* ftype = this->do_type(); + gcc_assert(ftype->is_method()); + Type* frtype = ftype->receiver()->type(); + bme->set_first_argument_type(frtype); + } + return bme; +} + +// Class Interface_method. + +// Bind a method to an object. + +Expression* +Interface_method::do_bind_method(Expression* expr, + source_location location) const +{ + return Expression::make_interface_field_reference(expr, this->name_, + location); +} + +// Class Methods. + +// Insert a new method. Return true if it was inserted, false +// otherwise. + +bool +Methods::insert(const std::string& name, Method* m) +{ + std::pair<Method_map::iterator, bool> ins = + this->methods_.insert(std::make_pair(name, m)); + if (ins.second) + return true; + else + { + Method* old_method = ins.first->second; + if (m->depth() < old_method->depth()) + { + delete old_method; + ins.first->second = m; + return true; + } + else + { + if (m->depth() == old_method->depth()) + old_method->set_is_ambiguous(); + return false; + } + } +} + +// Return the number of unambiguous methods. + +size_t +Methods::count() const +{ + size_t ret = 0; + for (Method_map::const_iterator p = this->methods_.begin(); + p != this->methods_.end(); + ++p) + if (!p->second->is_ambiguous()) + ++ret; + return ret; +} + +// Class Named_type. + +// Return the name of the type. + +const std::string& +Named_type::name() const +{ + return this->named_object_->name(); +} + +// Return the name of the type to use in an error message. + +std::string +Named_type::message_name() const +{ + return this->named_object_->message_name(); +} + +// Add a method to this type. + +Named_object* +Named_type::add_method(const std::string& name, Function* function) +{ + if (this->local_methods_ == NULL) + this->local_methods_ = new Bindings(NULL); + return this->local_methods_->add_function(name, NULL, function); +} + +// Add a method declaration to this type. + +Named_object* +Named_type::add_method_declaration(const std::string& name, Package* package, + Function_type* type, + source_location location) +{ + if (this->local_methods_ == NULL) + this->local_methods_ = new Bindings(NULL); + return this->local_methods_->add_function_declaration(name, package, type, + location); +} + +// Add an existing method to this type. + +void +Named_type::add_existing_method(Named_object* no) +{ + if (this->local_methods_ == NULL) + this->local_methods_ = new Bindings(NULL); + this->local_methods_->add_named_object(no); +} + +// Look for a local method NAME, and returns its named object, or NULL +// if not there. + +Named_object* +Named_type::find_local_method(const std::string& name) const +{ + if (this->local_methods_ == NULL) + return NULL; + return this->local_methods_->lookup(name); +} + +// Return whether NAME is an unexported field or method, for better +// error reporting. + +bool +Named_type::is_unexported_local_method(Gogo* gogo, + const std::string& name) const +{ + Bindings* methods = this->local_methods_; + if (methods != NULL) + { + for (Bindings::const_declarations_iterator p = + methods->begin_declarations(); + p != methods->end_declarations(); + ++p) + { + if (Gogo::is_hidden_name(p->first) + && name == Gogo::unpack_hidden_name(p->first) + && gogo->pack_hidden_name(name, false) != p->first) + return true; + } + } + return false; +} + +// Build the complete list of methods for this type, which means +// recursively including all methods for anonymous fields. Create all +// stub methods. + +void +Named_type::finalize_methods(Gogo* gogo) +{ + if (this->local_methods_ != NULL + && (this->points_to() != NULL || this->interface_type() != NULL)) + { + const Bindings* lm = this->local_methods_; + for (Bindings::const_declarations_iterator p = lm->begin_declarations(); + p != lm->end_declarations(); + ++p) + error_at(p->second->location(), + "invalid pointer or interface receiver type"); + delete this->local_methods_; + this->local_methods_ = NULL; + return; + } + + Type::finalize_methods(gogo, this, this->location_, &this->all_methods_); +} + +// Return the method NAME, or NULL if there isn't one or if it is +// ambiguous. Set *IS_AMBIGUOUS if the method exists but is +// ambiguous. + +Method* +Named_type::method_function(const std::string& name, bool* is_ambiguous) const +{ + return Type::method_function(this->all_methods_, name, is_ambiguous); +} + +// Return a pointer to the interface method table for this type for +// the interface INTERFACE. IS_POINTER is true if this is for a +// pointer to THIS. + +tree +Named_type::interface_method_table(Gogo* gogo, const Interface_type* interface, + bool is_pointer) +{ + gcc_assert(!interface->is_empty()); + + Interface_method_tables** pimt = (is_pointer + ? &this->interface_method_tables_ + : &this->pointer_interface_method_tables_); + + if (*pimt == NULL) + *pimt = new Interface_method_tables(5); + + std::pair<const Interface_type*, tree> val(interface, NULL_TREE); + std::pair<Interface_method_tables::iterator, bool> ins = (*pimt)->insert(val); + + if (ins.second) + { + // This is a new entry in the hash table. + gcc_assert(ins.first->second == NULL_TREE); + ins.first->second = gogo->interface_method_table_for_type(interface, + this, + is_pointer); + } + + tree decl = ins.first->second; + if (decl == error_mark_node) + return error_mark_node; + gcc_assert(decl != NULL_TREE && TREE_CODE(decl) == VAR_DECL); + return build_fold_addr_expr(decl); +} + +// Return whether a named type has any hidden fields. + +bool +Named_type::named_type_has_hidden_fields(std::string* reason) const +{ + if (this->seen_) + return false; + this->seen_ = true; + bool ret = this->type_->has_hidden_fields(this, reason); + this->seen_ = false; + return ret; +} + +// Look for a use of a complete type within another type. This is +// used to check that we don't try to use a type within itself. + +class Find_type_use : public Traverse +{ + public: + Find_type_use(Type* find_type) + : Traverse(traverse_types), + find_type_(find_type), found_(false) + { } + + // Whether we found the type. + bool + found() const + { return this->found_; } + + protected: + int + type(Type*); + + private: + // The type we are looking for. + Type* find_type_; + // Whether we found the type. + bool found_; +}; + +// Check for FIND_TYPE in TYPE. + +int +Find_type_use::type(Type* type) +{ + if (this->find_type_ == type) + { + this->found_ = true; + return TRAVERSE_EXIT; + } + // It's OK if we see a reference to the type in any type which is + // essentially a pointer: a pointer, a slice, a function, a map, or + // a channel. + if (type->points_to() != NULL + || type->is_open_array_type() + || type->function_type() != NULL + || type->map_type() != NULL + || type->channel_type() != NULL) + return TRAVERSE_SKIP_COMPONENTS; + + // For an interface, a reference to the type in a method type should + // be ignored, but we have to consider direct inheritance. When + // this is called, there may be cases of direct inheritance + // represented as a method with no name. + if (type->interface_type() != NULL) + { + const Typed_identifier_list* methods = type->interface_type()->methods(); + if (methods != NULL) + { + for (Typed_identifier_list::const_iterator p = methods->begin(); + p != methods->end(); + ++p) + { + if (p->name().empty()) + { + if (Type::traverse(p->type(), this) == TRAVERSE_EXIT) + return TRAVERSE_EXIT; + } + } + } + return TRAVERSE_SKIP_COMPONENTS; + } + + return TRAVERSE_CONTINUE; +} + +// Verify that a named type does not refer to itself. + +bool +Named_type::do_verify() +{ + Find_type_use find(this); + Type::traverse(this->type_, &find); + if (find.found()) + { + error_at(this->location_, "invalid recursive type %qs", + this->message_name().c_str()); + this->is_error_ = true; + return false; + } + + // Check whether any of the local methods overloads an existing + // struct field or interface method. We don't need to check the + // list of methods against itself: that is handled by the Bindings + // code. + if (this->local_methods_ != NULL) + { + Struct_type* st = this->type_->struct_type(); + Interface_type* it = this->type_->interface_type(); + bool found_dup = false; + if (st != NULL || it != NULL) + { + for (Bindings::const_declarations_iterator p = + this->local_methods_->begin_declarations(); + p != this->local_methods_->end_declarations(); + ++p) + { + const std::string& name(p->first); + if (st != NULL && st->find_local_field(name, NULL) != NULL) + { + error_at(p->second->location(), + "method %qs redeclares struct field name", + Gogo::message_name(name).c_str()); + found_dup = true; + } + if (it != NULL && it->find_method(name) != NULL) + { + error_at(p->second->location(), + "method %qs redeclares interface method name", + Gogo::message_name(name).c_str()); + found_dup = true; + } + } + } + if (found_dup) + return false; + } + + return true; +} + +// Return a hash code. This is used for method lookup. We simply +// hash on the name itself. + +unsigned int +Named_type::do_hash_for_method(Gogo* gogo) const +{ + const std::string& name(this->named_object()->name()); + unsigned int ret = Type::hash_string(name, 0); + + // GOGO will be NULL here when called from Type_hash_identical. + // That is OK because that is only used for internal hash tables + // where we are going to be comparing named types for equality. In + // other cases, which are cases where the runtime is going to + // compare hash codes to see if the types are the same, we need to + // include the package prefix and name in the hash. + if (gogo != NULL && !Gogo::is_hidden_name(name) && !this->is_builtin()) + { + const Package* package = this->named_object()->package(); + if (package == NULL) + { + ret = Type::hash_string(gogo->unique_prefix(), ret); + ret = Type::hash_string(gogo->package_name(), ret); + } + else + { + ret = Type::hash_string(package->unique_prefix(), ret); + ret = Type::hash_string(package->name(), ret); + } + } + + return ret; +} + +// Get a tree for a named type. + +tree +Named_type::do_get_tree(Gogo* gogo) +{ + if (this->is_error_) + return error_mark_node; + + // Go permits types to refer to themselves in various ways. Break + // the recursion here. + tree t; + switch (this->type_->forwarded()->classification()) + { + case TYPE_ERROR: + return error_mark_node; + + case TYPE_VOID: + case TYPE_BOOLEAN: + case TYPE_INTEGER: + case TYPE_FLOAT: + case TYPE_COMPLEX: + case TYPE_STRING: + case TYPE_NIL: + // These types can not refer to themselves. + case TYPE_MAP: + case TYPE_CHANNEL: + // All maps and channels have the same type in GENERIC. + t = Type::get_named_type_tree(gogo, this->type_); + if (t == error_mark_node) + return error_mark_node; + // Build a copy to set TYPE_NAME. + t = build_variant_type_copy(t); + break; + + case TYPE_FUNCTION: + // GENERIC can't handle a pointer to a function type whose + // return type is a pointer to the function type itself. It + // does into infinite loops when walking the types. + if (this->seen_ + && this->function_type()->results() != NULL + && this->function_type()->results()->size() == 1 + && (this->function_type()->results()->front().type()->forwarded() + == this)) + return ptr_type_node; + this->seen_ = true; + t = Type::get_named_type_tree(gogo, this->type_); + this->seen_ = false; + if (t == error_mark_node) + return error_mark_node; + t = build_variant_type_copy(t); + break; + + case TYPE_POINTER: + // GENERIC can't handle a pointer type which points to itself. + // It goes into infinite loops when walking the types. + if (this->seen_ && this->points_to()->forwarded() == this) + return ptr_type_node; + this->seen_ = true; + t = Type::get_named_type_tree(gogo, this->type_); + this->seen_ = false; + if (t == error_mark_node) + return error_mark_node; + t = build_variant_type_copy(t); + break; + + case TYPE_STRUCT: + if (this->named_tree_ != NULL_TREE) + return this->named_tree_; + t = make_node(RECORD_TYPE); + this->named_tree_ = t; + this->type_->struct_type()->fill_in_tree(gogo, t); + break; + + case TYPE_ARRAY: + if (!this->is_open_array_type()) + t = Type::get_named_type_tree(gogo, this->type_); + else + { + if (this->named_tree_ != NULL_TREE) + return this->named_tree_; + t = gogo->slice_type_tree(void_type_node); + this->named_tree_ = t; + t = this->type_->array_type()->fill_in_tree(gogo, t); + } + if (t == error_mark_node) + return error_mark_node; + t = build_variant_type_copy(t); + break; + + case TYPE_INTERFACE: + if (this->type_->interface_type()->is_empty()) + { + t = Type::get_named_type_tree(gogo, this->type_); + if (t == error_mark_node) + return error_mark_node; + t = build_variant_type_copy(t); + } + else + { + if (this->named_tree_ != NULL_TREE) + return this->named_tree_; + t = make_node(RECORD_TYPE); + this->named_tree_ = t; + t = this->type_->interface_type()->fill_in_tree(gogo, t); + } + break; + + case TYPE_NAMED: + { + // When a named type T1 is defined as another named type T2, + // the definition must simply be "type T1 T2". If the + // definition of T2 may refer to T1, then we must simply + // return the type for T2 here. It's not precisely correct, + // but it's as close as we can get with GENERIC. + bool was_seen = this->seen_; + this->seen_ = true; + t = Type::get_named_type_tree(gogo, this->type_); + this->seen_ = was_seen; + if (was_seen) + return t; + if (t == error_mark_node) + return error_mark_node; + t = build_variant_type_copy(t); + } + break; + + case TYPE_FORWARD: + // An undefined forwarding type. Make sure the error is + // emitted. + this->type_->forward_declaration_type()->real_type(); + return error_mark_node; + + default: + case TYPE_SINK: + case TYPE_CALL_MULTIPLE_RESULT: + gcc_unreachable(); + } + + tree id = this->named_object_->get_id(gogo); + tree decl = build_decl(this->location_, TYPE_DECL, id, t); + TYPE_NAME(t) = decl; + + return t; +} + +// Build a type descriptor for a named type. + +Expression* +Named_type::do_type_descriptor(Gogo* gogo, Named_type* name) +{ + // If NAME is not NULL, then we don't really want the type + // descriptor for this type; we want the descriptor for the + // underlying type, giving it the name NAME. + return this->named_type_descriptor(gogo, this->type_, + name == NULL ? this : name); +} + +// Add to the reflection string. This is used mostly for the name of +// the type used in a type descriptor, not for actual reflection +// strings. + +void +Named_type::do_reflection(Gogo* gogo, std::string* ret) const +{ + if (this->location() != BUILTINS_LOCATION) + { + const Package* package = this->named_object_->package(); + if (package != NULL) + ret->append(package->name()); + else + ret->append(gogo->package_name()); + ret->push_back('.'); + } + if (this->in_function_ != NULL) + { + ret->append(Gogo::unpack_hidden_name(this->in_function_->name())); + ret->push_back('$'); + } + ret->append(Gogo::unpack_hidden_name(this->named_object_->name())); +} + +// Get the mangled name. + +void +Named_type::do_mangled_name(Gogo* gogo, std::string* ret) const +{ + Named_object* no = this->named_object_; + std::string name; + if (this->location() == BUILTINS_LOCATION) + gcc_assert(this->in_function_ == NULL); + else + { + const std::string& unique_prefix(no->package() == NULL + ? gogo->unique_prefix() + : no->package()->unique_prefix()); + const std::string& package_name(no->package() == NULL + ? gogo->package_name() + : no->package()->name()); + name = unique_prefix; + name.append(1, '.'); + name.append(package_name); + name.append(1, '.'); + if (this->in_function_ != NULL) + { + name.append(Gogo::unpack_hidden_name(this->in_function_->name())); + name.append(1, '$'); + } + } + name.append(Gogo::unpack_hidden_name(no->name())); + char buf[20]; + snprintf(buf, sizeof buf, "N%u_", static_cast<unsigned int>(name.length())); + ret->append(buf); + ret->append(name); +} + +// Export the type. This is called to export a global type. + +void +Named_type::export_named_type(Export* exp, const std::string&) const +{ + // We don't need to write the name of the type here, because it will + // be written by Export::write_type anyhow. + exp->write_c_string("type "); + exp->write_type(this); + exp->write_c_string(";\n"); +} + +// Import a named type. + +void +Named_type::import_named_type(Import* imp, Named_type** ptype) +{ + imp->require_c_string("type "); + Type *type = imp->read_type(); + *ptype = type->named_type(); + gcc_assert(*ptype != NULL); + imp->require_c_string(";\n"); +} + +// Export the type when it is referenced by another type. In this +// case Export::export_type will already have issued the name. + +void +Named_type::do_export(Export* exp) const +{ + exp->write_type(this->type_); + + // To save space, we only export the methods directly attached to + // this type. + Bindings* methods = this->local_methods_; + if (methods == NULL) + return; + + exp->write_c_string("\n"); + for (Bindings::const_definitions_iterator p = methods->begin_definitions(); + p != methods->end_definitions(); + ++p) + { + exp->write_c_string(" "); + (*p)->export_named_object(exp); + } + + for (Bindings::const_declarations_iterator p = methods->begin_declarations(); + p != methods->end_declarations(); + ++p) + { + if (p->second->is_function_declaration()) + { + exp->write_c_string(" "); + p->second->export_named_object(exp); + } + } +} + +// Make a named type. + +Named_type* +Type::make_named_type(Named_object* named_object, Type* type, + source_location location) +{ + return new Named_type(named_object, type, location); +} + +// Finalize the methods for TYPE. It will be a named type or a struct +// type. This sets *ALL_METHODS to the list of methods, and builds +// all required stubs. + +void +Type::finalize_methods(Gogo* gogo, const Type* type, source_location location, + Methods** all_methods) +{ + *all_methods = NULL; + Types_seen types_seen; + Type::add_methods_for_type(type, NULL, 0, false, false, &types_seen, + all_methods); + Type::build_stub_methods(gogo, type, *all_methods, location); +} + +// Add the methods for TYPE to *METHODS. FIELD_INDEXES is used to +// build up the struct field indexes as we go. DEPTH is the depth of +// the field within TYPE. IS_EMBEDDED_POINTER is true if we are +// adding these methods for an anonymous field with pointer type. +// NEEDS_STUB_METHOD is true if we need to use a stub method which +// calls the real method. TYPES_SEEN is used to avoid infinite +// recursion. + +void +Type::add_methods_for_type(const Type* type, + const Method::Field_indexes* field_indexes, + unsigned int depth, + bool is_embedded_pointer, + bool needs_stub_method, + Types_seen* types_seen, + Methods** methods) +{ + // Pointer types may not have methods. + if (type->points_to() != NULL) + return; + + const Named_type* nt = type->named_type(); + if (nt != NULL) + { + std::pair<Types_seen::iterator, bool> ins = types_seen->insert(nt); + if (!ins.second) + return; + } + + if (nt != NULL) + Type::add_local_methods_for_type(nt, field_indexes, depth, + is_embedded_pointer, needs_stub_method, + methods); + + Type::add_embedded_methods_for_type(type, field_indexes, depth, + is_embedded_pointer, needs_stub_method, + types_seen, methods); + + // If we are called with depth > 0, then we are looking at an + // anonymous field of a struct. If such a field has interface type, + // then we need to add the interface methods. We don't want to add + // them when depth == 0, because we will already handle them + // following the usual rules for an interface type. + if (depth > 0) + Type::add_interface_methods_for_type(type, field_indexes, depth, methods); +} + +// Add the local methods for the named type NT to *METHODS. The +// parameters are as for add_methods_to_type. + +void +Type::add_local_methods_for_type(const Named_type* nt, + const Method::Field_indexes* field_indexes, + unsigned int depth, + bool is_embedded_pointer, + bool needs_stub_method, + Methods** methods) +{ + const Bindings* local_methods = nt->local_methods(); + if (local_methods == NULL) + return; + + if (*methods == NULL) + *methods = new Methods(); + + for (Bindings::const_declarations_iterator p = + local_methods->begin_declarations(); + p != local_methods->end_declarations(); + ++p) + { + Named_object* no = p->second; + bool is_value_method = (is_embedded_pointer + || !Type::method_expects_pointer(no)); + Method* m = new Named_method(no, field_indexes, depth, is_value_method, + (needs_stub_method + || (depth > 0 && is_value_method))); + if (!(*methods)->insert(no->name(), m)) + delete m; + } +} + +// Add the embedded methods for TYPE to *METHODS. These are the +// methods attached to anonymous fields. The parameters are as for +// add_methods_to_type. + +void +Type::add_embedded_methods_for_type(const Type* type, + const Method::Field_indexes* field_indexes, + unsigned int depth, + bool is_embedded_pointer, + bool needs_stub_method, + Types_seen* types_seen, + Methods** methods) +{ + // Look for anonymous fields in TYPE. TYPE has fields if it is a + // struct. + const Struct_type* st = type->struct_type(); + if (st == NULL) + return; + + const Struct_field_list* fields = st->fields(); + if (fields == NULL) + return; + + unsigned int i = 0; + for (Struct_field_list::const_iterator pf = fields->begin(); + pf != fields->end(); + ++pf, ++i) + { + if (!pf->is_anonymous()) + continue; + + Type* ftype = pf->type(); + bool is_pointer = false; + if (ftype->points_to() != NULL) + { + ftype = ftype->points_to(); + is_pointer = true; + } + Named_type* fnt = ftype->named_type(); + if (fnt == NULL) + { + // This is an error, but it will be diagnosed elsewhere. + continue; + } + + Method::Field_indexes* sub_field_indexes = new Method::Field_indexes(); + sub_field_indexes->next = field_indexes; + sub_field_indexes->field_index = i; + + Type::add_methods_for_type(fnt, sub_field_indexes, depth + 1, + (is_embedded_pointer || is_pointer), + (needs_stub_method + || is_pointer + || i > 0), + types_seen, + methods); + } +} + +// If TYPE is an interface type, then add its method to *METHODS. +// This is for interface methods attached to an anonymous field. The +// parameters are as for add_methods_for_type. + +void +Type::add_interface_methods_for_type(const Type* type, + const Method::Field_indexes* field_indexes, + unsigned int depth, + Methods** methods) +{ + const Interface_type* it = type->interface_type(); + if (it == NULL) + return; + + const Typed_identifier_list* imethods = it->methods(); + if (imethods == NULL) + return; + + if (*methods == NULL) + *methods = new Methods(); + + for (Typed_identifier_list::const_iterator pm = imethods->begin(); + pm != imethods->end(); + ++pm) + { + Function_type* fntype = pm->type()->function_type(); + gcc_assert(fntype != NULL && !fntype->is_method()); + fntype = fntype->copy_with_receiver(const_cast<Type*>(type)); + Method* m = new Interface_method(pm->name(), pm->location(), fntype, + field_indexes, depth); + if (!(*methods)->insert(pm->name(), m)) + delete m; + } +} + +// Build stub methods for TYPE as needed. METHODS is the set of +// methods for the type. A stub method may be needed when a type +// inherits a method from an anonymous field. When we need the +// address of the method, as in a type descriptor, we need to build a +// little stub which does the required field dereferences and jumps to +// the real method. LOCATION is the location of the type definition. + +void +Type::build_stub_methods(Gogo* gogo, const Type* type, const Methods* methods, + source_location location) +{ + if (methods == NULL) + return; + for (Methods::const_iterator p = methods->begin(); + p != methods->end(); + ++p) + { + Method* m = p->second; + if (m->is_ambiguous() || !m->needs_stub_method()) + continue; + + const std::string& name(p->first); + + // Build a stub method. + + const Function_type* fntype = m->type(); + + static unsigned int counter; + char buf[100]; + snprintf(buf, sizeof buf, "$this%u", counter); + ++counter; + + Type* receiver_type = const_cast<Type*>(type); + if (!m->is_value_method()) + receiver_type = Type::make_pointer_type(receiver_type); + source_location receiver_location = m->receiver_location(); + Typed_identifier* receiver = new Typed_identifier(buf, receiver_type, + receiver_location); + + const Typed_identifier_list* fnparams = fntype->parameters(); + Typed_identifier_list* stub_params; + if (fnparams == NULL || fnparams->empty()) + stub_params = NULL; + else + { + // We give each stub parameter a unique name. + stub_params = new Typed_identifier_list(); + for (Typed_identifier_list::const_iterator pp = fnparams->begin(); + pp != fnparams->end(); + ++pp) + { + char pbuf[100]; + snprintf(pbuf, sizeof pbuf, "$p%u", counter); + stub_params->push_back(Typed_identifier(pbuf, pp->type(), + pp->location())); + ++counter; + } + } + + const Typed_identifier_list* fnresults = fntype->results(); + Typed_identifier_list* stub_results; + if (fnresults == NULL || fnresults->empty()) + stub_results = NULL; + else + { + // We create the result parameters without any names, since + // we won't refer to them. + stub_results = new Typed_identifier_list(); + for (Typed_identifier_list::const_iterator pr = fnresults->begin(); + pr != fnresults->end(); + ++pr) + stub_results->push_back(Typed_identifier("", pr->type(), + pr->location())); + } + + Function_type* stub_type = Type::make_function_type(receiver, + stub_params, + stub_results, + fntype->location()); + if (fntype->is_varargs()) + stub_type->set_is_varargs(); + + // We only create the function in the package which creates the + // type. + const Package* package; + if (type->named_type() == NULL) + package = NULL; + else + package = type->named_type()->named_object()->package(); + Named_object* stub; + if (package != NULL) + stub = Named_object::make_function_declaration(name, package, + stub_type, location); + else + { + stub = gogo->start_function(name, stub_type, false, + fntype->location()); + Type::build_one_stub_method(gogo, m, buf, stub_params, + fntype->is_varargs(), location); + gogo->finish_function(fntype->location()); + } + + m->set_stub_object(stub); + } +} + +// Build a stub method which adjusts the receiver as required to call +// METHOD. RECEIVER_NAME is the name we used for the receiver. +// PARAMS is the list of function parameters. + +void +Type::build_one_stub_method(Gogo* gogo, Method* method, + const char* receiver_name, + const Typed_identifier_list* params, + bool is_varargs, + source_location location) +{ + Named_object* receiver_object = gogo->lookup(receiver_name, NULL); + gcc_assert(receiver_object != NULL); + + Expression* expr = Expression::make_var_reference(receiver_object, location); + expr = Type::apply_field_indexes(expr, method->field_indexes(), location); + if (expr->type()->points_to() == NULL) + expr = Expression::make_unary(OPERATOR_AND, expr, location); + + Expression_list* arguments; + if (params == NULL || params->empty()) + arguments = NULL; + else + { + arguments = new Expression_list(); + for (Typed_identifier_list::const_iterator p = params->begin(); + p != params->end(); + ++p) + { + Named_object* param = gogo->lookup(p->name(), NULL); + gcc_assert(param != NULL); + Expression* param_ref = Expression::make_var_reference(param, + location); + arguments->push_back(param_ref); + } + } + + Expression* func = method->bind_method(expr, location); + gcc_assert(func != NULL); + Call_expression* call = Expression::make_call(func, arguments, is_varargs, + location); + size_t count = call->result_count(); + if (count == 0) + gogo->add_statement(Statement::make_statement(call)); + else + { + Expression_list* retvals = new Expression_list(); + if (count <= 1) + retvals->push_back(call); + else + { + for (size_t i = 0; i < count; ++i) + retvals->push_back(Expression::make_call_result(call, i)); + } + const Function* function = gogo->current_function()->func_value(); + const Typed_identifier_list* results = function->type()->results(); + Statement* retstat = Statement::make_return_statement(results, retvals, + location); + gogo->add_statement(retstat); + } +} + +// Apply FIELD_INDEXES to EXPR. The field indexes have to be applied +// in reverse order. + +Expression* +Type::apply_field_indexes(Expression* expr, + const Method::Field_indexes* field_indexes, + source_location location) +{ + if (field_indexes == NULL) + return expr; + expr = Type::apply_field_indexes(expr, field_indexes->next, location); + Struct_type* stype = expr->type()->deref()->struct_type(); + gcc_assert(stype != NULL + && field_indexes->field_index < stype->field_count()); + if (expr->type()->struct_type() == NULL) + { + gcc_assert(expr->type()->points_to() != NULL); + expr = Expression::make_unary(OPERATOR_MULT, expr, location); + gcc_assert(expr->type()->struct_type() == stype); + } + return Expression::make_field_reference(expr, field_indexes->field_index, + location); +} + +// Return whether NO is a method for which the receiver is a pointer. + +bool +Type::method_expects_pointer(const Named_object* no) +{ + const Function_type *fntype; + if (no->is_function()) + fntype = no->func_value()->type(); + else if (no->is_function_declaration()) + fntype = no->func_declaration_value()->type(); + else + gcc_unreachable(); + return fntype->receiver()->type()->points_to() != NULL; +} + +// Given a set of methods for a type, METHODS, return the method NAME, +// or NULL if there isn't one or if it is ambiguous. If IS_AMBIGUOUS +// is not NULL, then set *IS_AMBIGUOUS to true if the method exists +// but is ambiguous (and return NULL). + +Method* +Type::method_function(const Methods* methods, const std::string& name, + bool* is_ambiguous) +{ + if (is_ambiguous != NULL) + *is_ambiguous = false; + if (methods == NULL) + return NULL; + Methods::const_iterator p = methods->find(name); + if (p == methods->end()) + return NULL; + Method* m = p->second; + if (m->is_ambiguous()) + { + if (is_ambiguous != NULL) + *is_ambiguous = true; + return NULL; + } + return m; +} + +// Look for field or method NAME for TYPE. Return an Expression for +// the field or method bound to EXPR. If there is no such field or +// method, give an appropriate error and return an error expression. + +Expression* +Type::bind_field_or_method(Gogo* gogo, const Type* type, Expression* expr, + const std::string& name, + source_location location) +{ + if (type->is_error_type()) + return Expression::make_error(location); + + const Named_type* nt = type->named_type(); + if (nt == NULL) + nt = type->deref()->named_type(); + const Struct_type* st = type->deref()->struct_type(); + const Interface_type* it = type->deref()->interface_type(); + + // If this is a pointer to a pointer, then it is possible that the + // pointed-to type has methods. + if (nt == NULL + && st == NULL + && it == NULL + && type->points_to() != NULL + && type->points_to()->points_to() != NULL) + { + expr = Expression::make_unary(OPERATOR_MULT, expr, location); + type = type->points_to(); + nt = type->points_to()->named_type(); + st = type->points_to()->struct_type(); + it = type->points_to()->interface_type(); + } + + bool receiver_can_be_pointer = (expr->type()->points_to() != NULL + || expr->is_addressable()); + bool is_method = false; + bool found_pointer_method = false; + std::string ambig1; + std::string ambig2; + if (Type::find_field_or_method(type, name, receiver_can_be_pointer, NULL, + &is_method, &found_pointer_method, + &ambig1, &ambig2)) + { + Expression* ret; + if (!is_method) + { + gcc_assert(st != NULL); + if (type->struct_type() == NULL) + { + gcc_assert(type->points_to() != NULL); + expr = Expression::make_unary(OPERATOR_MULT, expr, + location); + gcc_assert(expr->type()->struct_type() == st); + } + ret = st->field_reference(expr, name, location); + } + else if (it != NULL && it->find_method(name) != NULL) + ret = Expression::make_interface_field_reference(expr, name, + location); + else + { + Method* m; + if (nt != NULL) + m = nt->method_function(name, NULL); + else if (st != NULL) + m = st->method_function(name, NULL); + else + gcc_unreachable(); + gcc_assert(m != NULL); + if (!m->is_value_method() && expr->type()->points_to() == NULL) + expr = Expression::make_unary(OPERATOR_AND, expr, location); + ret = m->bind_method(expr, location); + } + gcc_assert(ret != NULL); + return ret; + } + else + { + if (!ambig1.empty()) + error_at(location, "%qs is ambiguous via %qs and %qs", + Gogo::message_name(name).c_str(), + Gogo::message_name(ambig1).c_str(), + Gogo::message_name(ambig2).c_str()); + else if (found_pointer_method) + error_at(location, "method requires a pointer"); + else if (nt == NULL && st == NULL && it == NULL) + error_at(location, + ("reference to field %qs in object which " + "has no fields or methods"), + Gogo::message_name(name).c_str()); + else + { + bool is_unexported; + if (!Gogo::is_hidden_name(name)) + is_unexported = false; + else + { + std::string unpacked = Gogo::unpack_hidden_name(name); + is_unexported = Type::is_unexported_field_or_method(gogo, type, + unpacked); + } + if (is_unexported) + error_at(location, "reference to unexported field or method %qs", + Gogo::message_name(name).c_str()); + else + error_at(location, "reference to undefined field or method %qs", + Gogo::message_name(name).c_str()); + } + return Expression::make_error(location); + } +} + +// Look in TYPE for a field or method named NAME, return true if one +// is found. This looks through embedded anonymous fields and handles +// ambiguity. If a method is found, sets *IS_METHOD to true; +// otherwise, if a field is found, set it to false. If +// RECEIVER_CAN_BE_POINTER is false, then the receiver is a value +// whose address can not be taken. When returning false, this sets +// *FOUND_POINTER_METHOD if we found a method we couldn't use because +// it requires a pointer. LEVEL is used for recursive calls, and can +// be NULL for a non-recursive call. When this function returns false +// because it finds that the name is ambiguous, it will store a path +// to the ambiguous names in *AMBIG1 and *AMBIG2. If the name is not +// found at all, *AMBIG1 and *AMBIG2 will be unchanged. + +// This function just returns whether or not there is a field or +// method, and whether it is a field or method. It doesn't build an +// expression to refer to it. If it is a method, we then look in the +// list of all methods for the type. If it is a field, the search has +// to be done again, looking only for fields, and building up the +// expression as we go. + +bool +Type::find_field_or_method(const Type* type, + const std::string& name, + bool receiver_can_be_pointer, + int* level, + bool* is_method, + bool* found_pointer_method, + std::string* ambig1, + std::string* ambig2) +{ + // Named types can have locally defined methods. + const Named_type* nt = type->named_type(); + if (nt == NULL && type->points_to() != NULL) + nt = type->points_to()->named_type(); + if (nt != NULL) + { + Named_object* no = nt->find_local_method(name); + if (no != NULL) + { + if (receiver_can_be_pointer || !Type::method_expects_pointer(no)) + { + *is_method = true; + return true; + } + + // Record that we have found a pointer method in order to + // give a better error message if we don't find anything + // else. + *found_pointer_method = true; + } + } + + // Interface types can have methods. + const Interface_type* it = type->deref()->interface_type(); + if (it != NULL && it->find_method(name) != NULL) + { + *is_method = true; + return true; + } + + // Struct types can have fields. They can also inherit fields and + // methods from anonymous fields. + const Struct_type* st = type->deref()->struct_type(); + if (st == NULL) + return false; + const Struct_field_list* fields = st->fields(); + if (fields == NULL) + return false; + + int found_level = 0; + bool found_is_method = false; + std::string found_ambig1; + std::string found_ambig2; + const Struct_field* found_parent = NULL; + for (Struct_field_list::const_iterator pf = fields->begin(); + pf != fields->end(); + ++pf) + { + if (pf->field_name() == name) + { + *is_method = false; + return true; + } + + if (!pf->is_anonymous()) + continue; + + Named_type* fnt = pf->type()->deref()->named_type(); + gcc_assert(fnt != NULL); + + int sublevel = level == NULL ? 1 : *level + 1; + bool sub_is_method; + std::string subambig1; + std::string subambig2; + bool subfound = Type::find_field_or_method(fnt, + name, + receiver_can_be_pointer, + &sublevel, + &sub_is_method, + found_pointer_method, + &subambig1, + &subambig2); + if (!subfound) + { + if (!subambig1.empty()) + { + // The name was found via this field, but is ambiguous. + // if the ambiguity is lower or at the same level as + // anything else we have already found, then we want to + // pass the ambiguity back to the caller. + if (found_level == 0 || sublevel <= found_level) + { + found_ambig1 = pf->field_name() + '.' + subambig1; + found_ambig2 = pf->field_name() + '.' + subambig2; + found_level = sublevel; + } + } + } + else + { + // The name was found via this field. Use the level to see + // if we want to use this one, or whether it introduces an + // ambiguity. + if (found_level == 0 || sublevel < found_level) + { + found_level = sublevel; + found_is_method = sub_is_method; + found_ambig1.clear(); + found_ambig2.clear(); + found_parent = &*pf; + } + else if (sublevel > found_level) + ; + else if (found_ambig1.empty()) + { + // We found an ambiguity. + gcc_assert(found_parent != NULL); + found_ambig1 = found_parent->field_name(); + found_ambig2 = pf->field_name(); + } + else + { + // We found an ambiguity, but we already know of one. + // Just report the earlier one. + } + } + } + + // Here if we didn't find anything FOUND_LEVEL is 0. If we found + // something ambiguous, FOUND_LEVEL is not 0 and FOUND_AMBIG1 and + // FOUND_AMBIG2 are not empty. If we found the field, FOUND_LEVEL + // is not 0 and FOUND_AMBIG1 and FOUND_AMBIG2 are empty. + + if (found_level == 0) + return false; + else if (!found_ambig1.empty()) + { + gcc_assert(!found_ambig1.empty()); + ambig1->assign(found_ambig1); + ambig2->assign(found_ambig2); + if (level != NULL) + *level = found_level; + return false; + } + else + { + if (level != NULL) + *level = found_level; + *is_method = found_is_method; + return true; + } +} + +// Return whether NAME is an unexported field or method for TYPE. + +bool +Type::is_unexported_field_or_method(Gogo* gogo, const Type* type, + const std::string& name) +{ + type = type->deref(); + + const Named_type* nt = type->named_type(); + if (nt != NULL && nt->is_unexported_local_method(gogo, name)) + return true; + + const Interface_type* it = type->interface_type(); + if (it != NULL && it->is_unexported_method(gogo, name)) + return true; + + const Struct_type* st = type->struct_type(); + if (st != NULL && st->is_unexported_local_field(gogo, name)) + return true; + + if (st == NULL) + return false; + + const Struct_field_list* fields = st->fields(); + if (fields == NULL) + return false; + + for (Struct_field_list::const_iterator pf = fields->begin(); + pf != fields->end(); + ++pf) + { + if (pf->is_anonymous()) + { + Named_type* subtype = pf->type()->deref()->named_type(); + gcc_assert(subtype != NULL); + if (Type::is_unexported_field_or_method(gogo, subtype, name)) + return true; + } + } + + return false; +} + +// Class Forward_declaration. + +Forward_declaration_type::Forward_declaration_type(Named_object* named_object) + : Type(TYPE_FORWARD), + named_object_(named_object->resolve()), warned_(false) +{ + gcc_assert(this->named_object_->is_unknown() + || this->named_object_->is_type_declaration()); +} + +// Return the named object. + +Named_object* +Forward_declaration_type::named_object() +{ + return this->named_object_->resolve(); +} + +const Named_object* +Forward_declaration_type::named_object() const +{ + return this->named_object_->resolve(); +} + +// Return the name of the forward declared type. + +const std::string& +Forward_declaration_type::name() const +{ + return this->named_object()->name(); +} + +// Warn about a use of a type which has been declared but not defined. + +void +Forward_declaration_type::warn() const +{ + Named_object* no = this->named_object_->resolve(); + if (no->is_unknown()) + { + // The name was not defined anywhere. + if (!this->warned_) + { + error_at(this->named_object_->location(), + "use of undefined type %qs", + no->message_name().c_str()); + this->warned_ = true; + } + } + else if (no->is_type_declaration()) + { + // The name was seen as a type, but the type was never defined. + if (no->type_declaration_value()->using_type()) + { + error_at(this->named_object_->location(), + "use of undefined type %qs", + no->message_name().c_str()); + this->warned_ = true; + } + } + else + { + // The name was defined, but not as a type. + if (!this->warned_) + { + error_at(this->named_object_->location(), "expected type"); + this->warned_ = true; + } + } +} + +// Get the base type of a declaration. This gives an error if the +// type has not yet been defined. + +Type* +Forward_declaration_type::real_type() +{ + if (this->is_defined()) + return this->named_object()->type_value(); + else + { + this->warn(); + return Type::make_error_type(); + } +} + +const Type* +Forward_declaration_type::real_type() const +{ + if (this->is_defined()) + return this->named_object()->type_value(); + else + { + this->warn(); + return Type::make_error_type(); + } +} + +// Return whether the base type is defined. + +bool +Forward_declaration_type::is_defined() const +{ + return this->named_object()->is_type(); +} + +// Add a method. This is used when methods are defined before the +// type. + +Named_object* +Forward_declaration_type::add_method(const std::string& name, + Function* function) +{ + Named_object* no = this->named_object(); + gcc_assert(no->is_type_declaration()); + return no->type_declaration_value()->add_method(name, function); +} + +// Add a method declaration. This is used when methods are declared +// before the type. + +Named_object* +Forward_declaration_type::add_method_declaration(const std::string& name, + Function_type* type, + source_location location) +{ + Named_object* no = this->named_object(); + gcc_assert(no->is_type_declaration()); + Type_declaration* td = no->type_declaration_value(); + return td->add_method_declaration(name, type, location); +} + +// Traversal. + +int +Forward_declaration_type::do_traverse(Traverse* traverse) +{ + if (this->is_defined() + && Type::traverse(this->real_type(), traverse) == TRAVERSE_EXIT) + return TRAVERSE_EXIT; + return TRAVERSE_CONTINUE; +} + +// Get a tree for the type. + +tree +Forward_declaration_type::do_get_tree(Gogo* gogo) +{ + if (this->is_defined()) + return Type::get_named_type_tree(gogo, this->real_type()); + + if (this->warned_) + return error_mark_node; + + // We represent an undefined type as a struct with no fields. That + // should work fine for the middle-end, since the same case can + // arise in C. + Named_object* no = this->named_object(); + tree type_tree = make_node(RECORD_TYPE); + tree id = no->get_id(gogo); + tree decl = build_decl(no->location(), TYPE_DECL, id, type_tree); + TYPE_NAME(type_tree) = decl; + return type_tree; +} + +// Build a type descriptor for a forwarded type. + +Expression* +Forward_declaration_type::do_type_descriptor(Gogo* gogo, Named_type* name) +{ + if (!this->is_defined()) + return Expression::make_nil(BUILTINS_LOCATION); + else + { + Type* t = this->real_type(); + if (name != NULL) + return this->named_type_descriptor(gogo, t, name); + else + return Expression::make_type_descriptor(t, BUILTINS_LOCATION); + } +} + +// The reflection string. + +void +Forward_declaration_type::do_reflection(Gogo* gogo, std::string* ret) const +{ + this->append_reflection(this->real_type(), gogo, ret); +} + +// The mangled name. + +void +Forward_declaration_type::do_mangled_name(Gogo* gogo, std::string* ret) const +{ + if (this->is_defined()) + this->append_mangled_name(this->real_type(), gogo, ret); + else + { + const Named_object* no = this->named_object(); + std::string name; + if (no->package() == NULL) + name = gogo->package_name(); + else + name = no->package()->name(); + name += '.'; + name += Gogo::unpack_hidden_name(no->name()); + char buf[20]; + snprintf(buf, sizeof buf, "N%u_", + static_cast<unsigned int>(name.length())); + ret->append(buf); + ret->append(name); + } +} + +// Export a forward declaration. This can happen when a defined type +// refers to a type which is only declared (and is presumably defined +// in some other file in the same package). + +void +Forward_declaration_type::do_export(Export*) const +{ + // If there is a base type, that should be exported instead of this. + gcc_assert(!this->is_defined()); + + // We don't output anything. +} + +// Make a forward declaration. + +Type* +Type::make_forward_declaration(Named_object* named_object) +{ + return new Forward_declaration_type(named_object); +} + +// Class Typed_identifier_list. + +// Sort the entries by name. + +struct Typed_identifier_list_sort +{ + public: + bool + operator()(const Typed_identifier& t1, const Typed_identifier& t2) const + { return t1.name() < t2.name(); } +}; + +void +Typed_identifier_list::sort_by_name() +{ + std::sort(this->entries_.begin(), this->entries_.end(), + Typed_identifier_list_sort()); +} + +// Traverse types. + +int +Typed_identifier_list::traverse(Traverse* traverse) +{ + for (Typed_identifier_list::const_iterator p = this->begin(); + p != this->end(); + ++p) + { + if (Type::traverse(p->type(), traverse) == TRAVERSE_EXIT) + return TRAVERSE_EXIT; + } + return TRAVERSE_CONTINUE; +} + +// Copy the list. + +Typed_identifier_list* +Typed_identifier_list::copy() const +{ + Typed_identifier_list* ret = new Typed_identifier_list(); + for (Typed_identifier_list::const_iterator p = this->begin(); + p != this->end(); + ++p) + ret->push_back(Typed_identifier(p->name(), p->type(), p->location())); + return ret; +} diff --git a/gcc/go/gofrontend/types.h b/gcc/go/gofrontend/types.h new file mode 100644 index 0000000..025f85f --- /dev/null +++ b/gcc/go/gofrontend/types.h @@ -0,0 +1,2730 @@ +// types.h -- Go frontend types. -*- C++ -*- + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +#ifndef GO_TYPES_H +#define GO_TYPES_H + +class Gogo; +class Package; +class Traverse; +class Typed_identifier; +class Typed_identifier_list; +class Integer_type; +class Float_type; +class Complex_type; +class String_type; +class Function_type; +class Struct_field; +class Struct_field_list; +class Struct_type; +class Pointer_type; +class Array_type; +class Map_type; +class Channel_type; +class Interface_type; +class Named_type; +class Forward_declaration_type; +class Method; +class Methods; +class Type_hash_identical; +class Type_identical; +class Expression; +class Expression_list; +class Call_expression; +class Field_reference_expression; +class Bound_method_expression; +class Bindings; +class Named_object; +class Function; +class Translate_context; +class Export; +class Import; + +// Type codes used in type descriptors. These must match the values +// in libgo/runtime/go-type.h. They also match the values in the gc +// compiler in src/cmd/gc/reflect.c and src/pkg/runtime/type.go, +// although this is not required. + +static const int RUNTIME_TYPE_KIND_BOOL = 1; +static const int RUNTIME_TYPE_KIND_INT = 2; +static const int RUNTIME_TYPE_KIND_INT8 = 3; +static const int RUNTIME_TYPE_KIND_INT16 = 4; +static const int RUNTIME_TYPE_KIND_INT32 = 5; +static const int RUNTIME_TYPE_KIND_INT64 = 6; +static const int RUNTIME_TYPE_KIND_UINT = 7; +static const int RUNTIME_TYPE_KIND_UINT8 = 8; +static const int RUNTIME_TYPE_KIND_UINT16 = 9; +static const int RUNTIME_TYPE_KIND_UINT32 = 10; +static const int RUNTIME_TYPE_KIND_UINT64 = 11; +static const int RUNTIME_TYPE_KIND_UINTPTR = 12; +static const int RUNTIME_TYPE_KIND_FLOAT = 13; +static const int RUNTIME_TYPE_KIND_FLOAT32 = 14; +static const int RUNTIME_TYPE_KIND_FLOAT64 = 15; +static const int RUNTIME_TYPE_KIND_COMPLEX = 16; +static const int RUNTIME_TYPE_KIND_COMPLEX64 = 17; +static const int RUNTIME_TYPE_KIND_COMPLEX128 = 18; +static const int RUNTIME_TYPE_KIND_ARRAY = 19; +static const int RUNTIME_TYPE_KIND_CHAN = 20; +static const int RUNTIME_TYPE_KIND_FUNC = 21; +static const int RUNTIME_TYPE_KIND_INTERFACE = 22; +static const int RUNTIME_TYPE_KIND_MAP = 23; +static const int RUNTIME_TYPE_KIND_PTR = 24; +static const int RUNTIME_TYPE_KIND_SLICE = 25; +static const int RUNTIME_TYPE_KIND_STRING = 26; +static const int RUNTIME_TYPE_KIND_STRUCT = 27; +static const int RUNTIME_TYPE_KIND_UNSAFE_POINTER = 28; + +// To build the complete list of methods for a named type we need to +// gather all methods from anonymous fields. Those methods may +// require an arbitrary set of indirections and field offsets. There +// is also the possibility of ambiguous methods, which we could ignore +// except that we want to give a better error message for that case. +// This is a base class. There are two types of methods: named +// methods, and methods which are inherited from an anonymous field of +// interface type. + +class Method +{ + public: + // For methods in anonymous types we need to know the sequence of + // field references used to extract the pointer to pass to the + // method. Since each method for a particular anonymous field will + // have the sequence of field indexes, and since the indexes can be + // shared going down the chain, we use a manually managed linked + // list. The first entry in the list is the field index for the + // last field, the one passed to the method. + + struct Field_indexes + { + const Field_indexes* next; + unsigned int field_index; + }; + + virtual ~Method() + { } + + // Get the list of field indexes. + const Field_indexes* + field_indexes() const + { return this->field_indexes_; } + + // Get the depth. + unsigned int + depth() const + { return this->depth_; } + + // Return whether this is a value method--a method which does not + // require a pointer expression. + bool + is_value_method() const + { return this->is_value_method_; } + + // Return whether we need a stub method--this is true if we can't + // just pass the main object to the method. + bool + needs_stub_method() const + { return this->needs_stub_method_; } + + // Return whether this is an ambiguous method name. + bool + is_ambiguous() const + { return this->is_ambiguous_; } + + // Note that this method is ambiguous. + void + set_is_ambiguous() + { this->is_ambiguous_ = true; } + + // Return the type of the method. + Function_type* + type() const + { return this->do_type(); } + + // Return the location of the method receiver. + source_location + receiver_location() const + { return this->do_receiver_location(); } + + // Return an expression which binds this method to EXPR. This is + // something which can be used with a function call. + Expression* + bind_method(Expression* expr, source_location location) const; + + // Return the named object for this method. This may only be called + // after methods are finalized. + Named_object* + named_object() const; + + // Get the stub object. + Named_object* + stub_object() const + { + gcc_assert(this->stub_ != NULL); + return this->stub_; + } + + // Set the stub object. + void + set_stub_object(Named_object* no) + { + gcc_assert(this->stub_ == NULL); + this->stub_ = no; + } + + protected: + // These objects are only built by the child classes. + Method(const Field_indexes* field_indexes, unsigned int depth, + bool is_value_method, bool needs_stub_method) + : field_indexes_(field_indexes), depth_(depth), stub_(NULL), + is_value_method_(is_value_method), needs_stub_method_(needs_stub_method), + is_ambiguous_(false) + { } + + // The named object for this method. + virtual Named_object* + do_named_object() const = 0; + + // The type of the method. + virtual Function_type* + do_type() const = 0; + + // Return the location of the method receiver. + virtual source_location + do_receiver_location() const = 0; + + // Bind a method to an object. + virtual Expression* + do_bind_method(Expression* expr, source_location location) const = 0; + + private: + // The sequence of field indexes used for this method. If this is + // NULL, then the method is defined for the current type. + const Field_indexes* field_indexes_; + // The depth at which this method was found. + unsigned int depth_; + // If a stub method is required, this is its object. This is only + // set after stub methods are built in finalize_methods. + Named_object* stub_; + // Whether this is a value method--a method that does not require a + // pointer. + bool is_value_method_; + // Whether a stub method is required. + bool needs_stub_method_; + // Whether this method is ambiguous. + bool is_ambiguous_; +}; + +// A named method. This is what you get with a method declaration, +// either directly on the type, or inherited from some anonymous +// embedded field. + +class Named_method : public Method +{ + public: + Named_method(Named_object* named_object, const Field_indexes* field_indexes, + unsigned int depth, bool is_value_method, + bool needs_stub_method) + : Method(field_indexes, depth, is_value_method, needs_stub_method), + named_object_(named_object) + { } + + protected: + // Get the Named_object for the method. + Named_object* + do_named_object() const + { return this->named_object_; } + + // The type of the method. + Function_type* + do_type() const; + + // Return the location of the method receiver. + source_location + do_receiver_location() const; + + // Bind a method to an object. + Expression* + do_bind_method(Expression* expr, source_location location) const; + + private: + // The method itself. For a method which needs a stub, this starts + // out as the underlying method, and is later replaced with the stub + // method. + Named_object* named_object_; +}; + +// An interface method. This is used when an interface appears as an +// anonymous field in a named struct. + +class Interface_method : public Method +{ + public: + Interface_method(const std::string& name, source_location location, + Function_type* fntype, const Field_indexes* field_indexes, + unsigned int depth) + : Method(field_indexes, depth, true, true), + name_(name), location_(location), fntype_(fntype) + { } + + protected: + // Get the Named_object for the method. This should never be + // called, as we always create a stub. + Named_object* + do_named_object() const + { gcc_unreachable(); } + + // The type of the method. + Function_type* + do_type() const + { return this->fntype_; } + + // Return the location of the method receiver. + source_location + do_receiver_location() const + { return this->location_; } + + // Bind a method to an object. + Expression* + do_bind_method(Expression* expr, source_location location) const; + + private: + // The name of the interface method to call. + std::string name_; + // The location of the definition of the interface method. + source_location location_; + // The type of the interface method. + Function_type* fntype_; +}; + +// A mapping from method name to Method. This is a wrapper around a +// hash table. + +class Methods +{ + private: + typedef Unordered_map(std::string, Method*) Method_map; + + public: + typedef Method_map::const_iterator const_iterator; + + Methods() + : methods_() + { } + + // Insert a new method. Returns true if it was inserted, false if + // it was overidden or ambiguous. + bool + insert(const std::string& name, Method* m); + + // The number of (unambiguous) methods. + size_t + count() const; + + // Iterate. + const_iterator + begin() const + { return this->methods_.begin(); } + + const_iterator + end() const + { return this->methods_.end(); } + + // Lookup. + const_iterator + find(const std::string& name) const + { return this->methods_.find(name); } + + private: + Method_map methods_; +}; + +// The base class for all types. + +class Type +{ + public: + // The types of types. + enum Type_classification + { + TYPE_ERROR, + TYPE_VOID, + TYPE_BOOLEAN, + TYPE_INTEGER, + TYPE_FLOAT, + TYPE_COMPLEX, + TYPE_STRING, + TYPE_SINK, + TYPE_FUNCTION, + TYPE_POINTER, + TYPE_NIL, + TYPE_CALL_MULTIPLE_RESULT, + TYPE_STRUCT, + TYPE_ARRAY, + TYPE_MAP, + TYPE_CHANNEL, + TYPE_INTERFACE, + TYPE_NAMED, + TYPE_FORWARD + }; + + virtual ~Type(); + + // Creators. + + static Type* + make_error_type(); + + static Type* + make_void_type(); + + // Get the unnamed bool type. + static Type* + make_boolean_type(); + + // Get the named type "bool". + static Named_type* + lookup_bool_type(); + + // Make the named type "bool". + static Named_type* + make_named_bool_type(); + + // Make an abstract integer type. + static Integer_type* + make_abstract_integer_type(); + + // Make a named integer type with a specified size. + // RUNTIME_TYPE_KIND is the code to use in reflection information, + // to distinguish int and int32. + static Named_type* + make_integer_type(const char* name, bool is_unsigned, int bits, + int runtime_type_kind); + + // Look up a named integer type. + static Named_type* + lookup_integer_type(const char* name); + + // Make an abstract floating point type. + static Float_type* + make_abstract_float_type(); + + // Make a named floating point type with a specific size. + // RUNTIME_TYPE_KIND is the code to use in reflection information, + // to distinguish float and float32. + static Named_type* + make_float_type(const char* name, int bits, int runtime_type_kind); + + // Look up a named float type. + static Named_type* + lookup_float_type(const char* name); + + // Make an abstract complex type. + static Complex_type* + make_abstract_complex_type(); + + // Make a named complex type with a specific size. + // RUNTIME_TYPE_KIND is the code to use in reflection information, + // to distinguish complex and complex64. + static Named_type* + make_complex_type(const char* name, int bits, int runtime_type_kind); + + // Look up a named complex type. + static Named_type* + lookup_complex_type(const char* name); + + // Get the unnamed string type. + static Type* + make_string_type(); + + // Get the named type "string". + static Named_type* + lookup_string_type(); + + // Make the named type "string". + static Named_type* + make_named_string_type(); + + static Type* + make_sink_type(); + + static Function_type* + make_function_type(Typed_identifier* receiver, + Typed_identifier_list* parameters, + Typed_identifier_list* results, + source_location); + + static Pointer_type* + make_pointer_type(Type*); + + static Type* + make_nil_type(); + + static Type* + make_call_multiple_result_type(Call_expression*); + + static Struct_type* + make_struct_type(Struct_field_list* fields, source_location); + + static Array_type* + make_array_type(Type* element_type, Expression* length); + + static Map_type* + make_map_type(Type* key_type, Type* value_type, source_location); + + static Channel_type* + make_channel_type(bool send, bool receive, Type*); + + static Interface_type* + make_interface_type(Typed_identifier_list* methods, source_location); + + static Type* + make_type_descriptor_type(); + + static Type* + make_type_descriptor_ptr_type(); + + static Named_type* + make_named_type(Named_object*, Type*, source_location); + + static Type* + make_forward_declaration(Named_object*); + + // Traverse a type. + static int + traverse(Type*, Traverse*); + + // Verify the type. This is called after parsing, and verifies that + // types are complete and meet the language requirements. This + // returns false if the type is invalid. + bool + verify() + { return this->do_verify(); } + + // Return true if two types are identical. If this returns false, + // and REASON is not NULL, it may set *REASON. + static bool + are_identical(const Type* lhs, const Type* rhs, std::string* reason); + + // Return true if two types are compatible for use in a binary + // operation, other than a shift, comparison, or channel send. This + // is an equivalence relation. + static bool + are_compatible_for_binop(const Type* t1, const Type* t2); + + // Return true if a value with type RHS is assignable to a variable + // with type LHS. This is not an equivalence relation. If this + // returns false, and REASON is not NULL, it sets *REASON. + static bool + are_assignable(const Type* lhs, const Type* rhs, std::string* reason); + + // Return true if a value with type RHS may be converted to type + // LHS. If this returns false, and REASON is not NULL, it sets + // *REASON. + static bool + are_convertible(const Type* lhs, const Type* rhs, std::string* reason); + + // Whether this type has any hidden fields which are not visible in + // the current compilation, such as a field whose name begins with a + // lower case letter in a struct imported from a different package. + // WITHIN is not NULL if we are looking at fields in a named type. + bool + has_hidden_fields(const Named_type* within, std::string* reason) const; + + // Return a hash code for this type for the method hash table. + // Types which are equivalent according to are_identical will have + // the same hash code. + unsigned int + hash_for_method(Gogo*) const; + + // Return the type classification. + Type_classification + classification() const + { return this->classification_; } + + // Return the base type for this type. This looks through forward + // declarations and names. Using this with a forward declaration + // which has not been defined will return an error type. + Type* + base(); + + const Type* + base() const; + + // Return the type skipping defined forward declarations. If this + // type is a forward declaration which has not been defined, it will + // return the Forward_declaration_type. This differs from base() in + // that it will return a Named_type, and for a + // Forward_declaration_type which is not defined it will return that + // type rather than an error type. + Type* + forwarded(); + + const Type* + forwarded() const; + + // Return true if this is a basic type: a type which is not composed + // of other types, and is not void. + bool + is_basic_type() const; + + // Return true if this is an abstract type--an integer, floating + // point, or complex type whose size has not been determined. + bool + is_abstract() const; + + // Return a non-abstract version of an abstract type. + Type* + make_non_abstract_type(); + + // Return true if this type is or contains a pointer. This + // determines whether the garbage collector needs to look at a value + // of this type. + bool + has_pointer() const + { return this->do_has_pointer(); } + + // Return true if this is an error type. An error type indicates a + // parsing error. + bool + is_error_type() const; + + // Return true if this is a void type. + bool + is_void_type() const + { return this->classification_ == TYPE_VOID; } + + // If this is an integer type, return the Integer_type. Otherwise, + // return NULL. This is a controlled dynamic_cast. + Integer_type* + integer_type() + { return this->convert<Integer_type, TYPE_INTEGER>(); } + + const Integer_type* + integer_type() const + { return this->convert<const Integer_type, TYPE_INTEGER>(); } + + // If this is a floating point type, return the Float_type. + // Otherwise, return NULL. This is a controlled dynamic_cast. + Float_type* + float_type() + { return this->convert<Float_type, TYPE_FLOAT>(); } + + const Float_type* + float_type() const + { return this->convert<const Float_type, TYPE_FLOAT>(); } + + // If this is a complex type, return the Complex_type. Otherwise, + // return NULL. + Complex_type* + complex_type() + { return this->convert<Complex_type, TYPE_COMPLEX>(); } + + const Complex_type* + complex_type() const + { return this->convert<const Complex_type, TYPE_COMPLEX>(); } + + // Return true if this is a boolean type. + bool + is_boolean_type() const + { return this->base()->classification_ == TYPE_BOOLEAN; } + + // Return true if this is an abstract boolean type. + bool + is_abstract_boolean_type() const + { return this->classification_ == TYPE_BOOLEAN; } + + // Return true if this is a string type. + bool + is_string_type() const + { return this->base()->classification_ == TYPE_STRING; } + + // Return true if this is an abstract string type. + bool + is_abstract_string_type() const + { return this->classification_ == TYPE_STRING; } + + // Return true if this is the sink type. This is the type of the + // blank identifier _. + bool + is_sink_type() const + { return this->base()->classification_ == TYPE_SINK; } + + // If this is a function type, return it. Otherwise, return NULL. + Function_type* + function_type() + { return this->convert<Function_type, TYPE_FUNCTION>(); } + + const Function_type* + function_type() const + { return this->convert<const Function_type, TYPE_FUNCTION>(); } + + // If this is a pointer type, return the type to which it points. + // Otherwise, return NULL. + Type* + points_to() const; + + // If this is a pointer type, return the type to which it points. + // Otherwise, return the type itself. + Type* + deref() + { + Type* pt = this->points_to(); + return pt != NULL ? pt : this; + } + + const Type* + deref() const + { + const Type* pt = this->points_to(); + return pt != NULL ? pt : this; + } + + // Return true if this is the nil type. We don't use base() here, + // because this can be called during parse, and there is no way to + // name the nil type anyhow. + bool + is_nil_type() const + { return this->classification_ == TYPE_NIL; } + + // Return true if this is the predeclared constant nil being used as + // a type. This is what the parser produces for type switches which + // use "case nil". + bool + is_nil_constant_as_type() const; + + // Return true if this is the return type of a function which + // returns multiple values. + bool + is_call_multiple_result_type() const + { return this->base()->classification_ == TYPE_CALL_MULTIPLE_RESULT; } + + // If this is a struct type, return it. Otherwise, return NULL. + Struct_type* + struct_type() + { return this->convert<Struct_type, TYPE_STRUCT>(); } + + const Struct_type* + struct_type() const + { return this->convert<const Struct_type, TYPE_STRUCT>(); } + + // If this is an array type, return it. Otherwise, return NULL. + Array_type* + array_type() + { return this->convert<Array_type, TYPE_ARRAY>(); } + + const Array_type* + array_type() const + { return this->convert<const Array_type, TYPE_ARRAY>(); } + + // Return whether if this is an open array type. + bool + is_open_array_type() const; + + // If this is a map type, return it. Otherwise, return NULL. + Map_type* + map_type() + { return this->convert<Map_type, TYPE_MAP>(); } + + const Map_type* + map_type() const + { return this->convert<const Map_type, TYPE_MAP>(); } + + // If this is a channel type, return it. Otherwise, return NULL. + Channel_type* + channel_type() + { return this->convert<Channel_type, TYPE_CHANNEL>(); } + + const Channel_type* + channel_type() const + { return this->convert<const Channel_type, TYPE_CHANNEL>(); } + + // If this is an interface type, return it. Otherwise, return NULL. + Interface_type* + interface_type() + { return this->convert<Interface_type, TYPE_INTERFACE>(); } + + const Interface_type* + interface_type() const + { return this->convert<const Interface_type, TYPE_INTERFACE>(); } + + // If this is a named type, return it. Otherwise, return NULL. + Named_type* + named_type(); + + const Named_type* + named_type() const; + + // If this is a forward declaration, return it. Otherwise, return + // NULL. + Forward_declaration_type* + forward_declaration_type() + { return this->convert_no_base<Forward_declaration_type, TYPE_FORWARD>(); } + + const Forward_declaration_type* + forward_declaration_type() const + { + return this->convert_no_base<const Forward_declaration_type, + TYPE_FORWARD>(); + } + + // Return true if this type is not yet defined. + bool + is_undefined() const; + + // Return true if this is the unsafe.pointer type. We currently + // represent that as pointer-to-void. + bool + is_unsafe_pointer_type() const + { return this->points_to() != NULL && this->points_to()->is_void_type(); } + + // Look for field or method NAME for TYPE. Return an expression for + // it, bound to EXPR. + static Expression* + bind_field_or_method(Gogo*, const Type* type, Expression* expr, + const std::string& name, source_location); + + // Return true if NAME is an unexported field or method of TYPE. + static bool + is_unexported_field_or_method(Gogo*, const Type*, const std::string&); + + // This type was passed to the builtin function make. ARGS are the + // arguments passed to make after the type; this may be NULL if + // there were none. Issue any required errors. + bool + check_make_expression(Expression_list* args, source_location location) + { return this->do_check_make_expression(args, location); } + + // Return a tree representing this type. + tree + get_tree(Gogo*); + + // Return a tree representing a zero initialization for this type. + // This will be something like an INTEGER_CST or a CONSTRUCTOR. If + // IS_CLEAR is true, then the memory is known to be zeroed; in that + // case, this will return NULL if there is nothing to be done. + tree + get_init_tree(Gogo*, bool is_clear); + + // Like get_init_tree, but passing in the type to use for the + // initializer. + tree + get_typed_init_tree(Gogo* gogo, tree type_tree, bool is_clear) + { return this->do_get_init_tree(gogo, type_tree, is_clear); } + + // Return a tree for a make expression applied to this type. + tree + make_expression_tree(Translate_context* context, Expression_list* args, + source_location location) + { return this->do_make_expression_tree(context, args, location); } + + // Build a type descriptor entry for this type. Return a pointer to + // it. + tree + type_descriptor_pointer(Gogo* gogo); + + // Return the type reflection string for this type. + std::string + reflection(Gogo*) const; + + // Return a mangled name for the type. This is a name which can be + // used in assembler code. Identical types should have the same + // manged name. + std::string + mangled_name(Gogo*) const; + + // Export the type. + void + export_type(Export* exp) const + { this->do_export(exp); } + + // Import a type. + static Type* + import_type(Import*); + + protected: + Type(Type_classification); + + // Functions implemented by the child class. + + // Traverse the subtypes. + virtual int + do_traverse(Traverse*); + + // Verify the type. + virtual bool + do_verify() + { return true; } + + virtual bool + do_has_pointer() const + { return false; } + + virtual unsigned int + do_hash_for_method(Gogo*) const; + + virtual bool + do_check_make_expression(Expression_list* args, source_location); + + + virtual tree + do_get_tree(Gogo*) = 0; + + virtual tree + do_get_init_tree(Gogo*, tree, bool) = 0; + + virtual tree + do_make_expression_tree(Translate_context*, Expression_list*, + source_location); + + virtual Expression* + do_type_descriptor(Gogo*, Named_type* name) = 0; + + virtual void + do_reflection(Gogo*, std::string*) const = 0; + + + virtual void + do_mangled_name(Gogo*, std::string*) const = 0; + + virtual void + do_export(Export*) const; + + // Return whether an expression is an integer. + static bool + check_int_value(Expression*, const char*, source_location); + + // Return whether a method expects a pointer as the receiver. + static bool + method_expects_pointer(const Named_object*); + + // Finalize the methods for a type. + static void + finalize_methods(Gogo*, const Type*, source_location, Methods**); + + // Return a method from a set of methods. + static Method* + method_function(const Methods*, const std::string& name, + bool* is_ambiguous); + + // Return a composite literal for the type descriptor entry for a + // type. + static Expression* + type_descriptor(Gogo*, Type*); + + // Return a composite literal for the type descriptor entry for + // TYPE, using NAME as the name of the type. + static Expression* + named_type_descriptor(Gogo*, Type* type, Named_type* name); + + // Return a composite literal for a plain type descriptor for this + // type with the given kind and name. + Expression* + plain_type_descriptor(Gogo*, int runtime_type_kind, Named_type* name); + + // Build a composite literal for the basic type descriptor. + Expression* + type_descriptor_constructor(Gogo*, int runtime_type_kind, Named_type*, + const Methods*, bool only_value_methods); + + // Make a builtin struct type from a list of fields. + static Struct_type* + make_builtin_struct_type(int nfields, ...); + + // Make a builtin named type. + static Named_type* + make_builtin_named_type(const char* name, Type* type); + + // For the benefit of child class reflection string generation. + void + append_reflection(const Type* type, Gogo* gogo, std::string* ret) const + { type->do_reflection(gogo, ret); } + + // For the benefit of child class mangling. + void + append_mangled_name(const Type* type, Gogo* gogo, std::string* ret) const + { type->do_mangled_name(gogo, ret); } + + // Incorporate a string into a hash code. + static unsigned int + hash_string(const std::string&, unsigned int); + + // Return a tree for the underlying type of a named type. + static tree + get_named_type_tree(Gogo* gogo, Type* base_type) + { return base_type->get_tree_without_hash(gogo); } + + private: + // Convert to the desired type classification, or return NULL. This + // is a controlled dynamic_cast. + template<typename Type_class, Type_classification type_classification> + Type_class* + convert() + { + Type* base = this->base(); + return (base->classification_ == type_classification + ? static_cast<Type_class*>(base) + : NULL); + } + + template<typename Type_class, Type_classification type_classification> + const Type_class* + convert() const + { + const Type* base = this->base(); + return (base->classification_ == type_classification + ? static_cast<Type_class*>(base) + : NULL); + } + + template<typename Type_class, Type_classification type_classification> + Type_class* + convert_no_base() + { + return (this->classification_ == type_classification + ? static_cast<Type_class*>(this) + : NULL); + } + + template<typename Type_class, Type_classification type_classification> + const Type_class* + convert_no_base() const + { + return (this->classification_ == type_classification + ? static_cast<Type_class*>(this) + : NULL); + } + + // Get the hash and equality functions for a type. + void + type_functions(const char** hash_fn, const char** equal_fn) const; + + // Build a composite literal for the uncommon type information. + Expression* + uncommon_type_constructor(Gogo*, Type* uncommon_type, + Named_type*, const Methods*, + bool only_value_methods) const; + + // Build a composite literal for the methods. + Expression* + methods_constructor(Gogo*, Type* methods_type, const Methods*, + bool only_value_methods) const; + + // Build a composite literal for one method. + Expression* + method_constructor(Gogo*, Type* method_type, const std::string& name, + const Method*) const; + + static tree + build_receive_return_type(tree type); + + // A hash table we use to avoid infinite recursion. + typedef Unordered_set_hash(const Named_type*, Type_hash_identical, + Type_identical) Types_seen; + + // Add all methods for TYPE to the list of methods for THIS. + static void + add_methods_for_type(const Type* type, const Method::Field_indexes*, + unsigned int depth, bool, bool, Types_seen*, + Methods**); + + static void + add_local_methods_for_type(const Named_type* type, + const Method::Field_indexes*, + unsigned int depth, bool, bool, Methods**); + + static void + add_embedded_methods_for_type(const Type* type, + const Method::Field_indexes*, + unsigned int depth, bool, bool, Types_seen*, + Methods**); + + static void + add_interface_methods_for_type(const Type* type, + const Method::Field_indexes*, + unsigned int depth, Methods**); + + // Build stub methods for a type. + static void + build_stub_methods(Gogo*, const Type* type, const Methods* methods, + source_location); + + static void + build_one_stub_method(Gogo*, Method*, const char* receiver_name, + const Typed_identifier_list*, bool is_varargs, + source_location); + + static Expression* + apply_field_indexes(Expression*, const Method::Field_indexes*, + source_location); + + // Look for a field or method named NAME in TYPE. + static bool + find_field_or_method(const Type* type, const std::string& name, + bool receiver_can_be_pointer, + int* level, bool* is_method, + bool* found_pointer_method, + std::string* ambig1, std::string* ambig2); + + // Get a tree for a type without looking in the hash table for + // identical types. + tree + get_tree_without_hash(Gogo*); + + // A mapping from Type to tree, used to ensure that the GIMPLE + // representation of identical types is identical. + typedef Unordered_map_hash(const Type*, tree, Type_hash_identical, + Type_identical) Type_trees; + + static Type_trees type_trees; + + // The type classification. + Type_classification classification_; + // The tree representation of the type, once it has been determined. + tree tree_; + // The decl for the type descriptor for this type. This starts out + // as NULL and is filled in as needed. + tree type_descriptor_decl_; +}; + +// Type hash table operations. + +class Type_hash_identical +{ + public: + unsigned int + operator()(const Type* type) const + { return type->hash_for_method(NULL); } +}; + +class Type_identical +{ + public: + bool + operator()(const Type* t1, const Type* t2) const + { return Type::are_identical(t1, t2, NULL); } +}; + +// An identifier with a type. + +class Typed_identifier +{ + public: + Typed_identifier(const std::string& name, Type* type, + source_location location) + : name_(name), type_(type), location_(location) + { } + + // Get the name. + const std::string& + name() const + { return this->name_; } + + // Get the type. + Type* + type() const + { return this->type_; } + + // Return the location where the name was seen. This is not always + // meaningful. + source_location + location() const + { return this->location_; } + + // Set the type--sometimes we see the identifier before the type. + void + set_type(Type* type) + { + gcc_assert(this->type_ == NULL || type->is_error_type()); + this->type_ = type; + } + + private: + // Identifier name. + std::string name_; + // Type. + Type* type_; + // The location where the name was seen. + source_location location_; +}; + +// A list of Typed_identifiers. + +class Typed_identifier_list +{ + public: + Typed_identifier_list() + : entries_() + { } + + // Whether the list is empty. + bool + empty() const + { return this->entries_.empty(); } + + // Return the number of entries in the list. + size_t + size() const + { return this->entries_.size(); } + + // Add an entry to the end of the list. + void + push_back(const Typed_identifier& td) + { this->entries_.push_back(td); } + + // Remove an entry from the end of the list. + void + pop_back() + { this->entries_.pop_back(); } + + // Set the type of entry I to TYPE. + void + set_type(size_t i, Type* type) + { + gcc_assert(i < this->entries_.size()); + this->entries_[i].set_type(type); + } + + // Sort the entries by name. + void + sort_by_name(); + + // Traverse types. + int + traverse(Traverse*); + + // Return the first and last elements. + Typed_identifier& + front() + { return this->entries_.front(); } + + const Typed_identifier& + front() const + { return this->entries_.front(); } + + Typed_identifier& + back() + { return this->entries_.back(); } + + const Typed_identifier& + back() const + { return this->entries_.back(); } + + const Typed_identifier& + at(size_t i) const + { return this->entries_.at(i); } + + void + set(size_t i, const Typed_identifier& t) + { this->entries_.at(i) = t; } + + void + resize(size_t c) + { + gcc_assert(c <= this->entries_.size()); + this->entries_.resize(c, Typed_identifier("", NULL, UNKNOWN_LOCATION)); + } + + // Iterators. + + typedef std::vector<Typed_identifier>::iterator iterator; + typedef std::vector<Typed_identifier>::const_iterator const_iterator; + + iterator + begin() + { return this->entries_.begin(); } + + const_iterator + begin() const + { return this->entries_.begin(); } + + iterator + end() + { return this->entries_.end(); } + + const_iterator + end() const + { return this->entries_.end(); } + + // Return a copy of this list. This returns an independent copy of + // the vector, but does not copy the types. + Typed_identifier_list* + copy() const; + + private: + std::vector<Typed_identifier> entries_; +}; + +// The type of an integer. + +class Integer_type : public Type +{ + public: + // Create a new integer type. + static Named_type* + create_integer_type(const char* name, bool is_unsigned, int bits, + int runtime_type_kind); + + // Look up an existing integer type. + static Named_type* + lookup_integer_type(const char* name); + + // Create an abstract integer type. + static Integer_type* + create_abstract_integer_type(); + + // Whether this is an abstract integer type. + bool + is_abstract() const + { return this->is_abstract_; } + + // Whether this is an unsigned type. + bool + is_unsigned() const + { return this->is_unsigned_; } + + // The number of bits. + int + bits() const + { return this->bits_; } + + // Whether this type is the same as T. + bool + is_identical(const Integer_type* t) const; + + protected: + unsigned int + do_hash_for_method(Gogo*) const; + + tree + do_get_tree(Gogo*); + + tree + do_get_init_tree(Gogo*, tree, bool); + + Expression* + do_type_descriptor(Gogo*, Named_type*); + + void + do_reflection(Gogo*, std::string*) const; + + void + do_mangled_name(Gogo*, std::string*) const; + + private: + Integer_type(bool is_abstract, bool is_unsigned, int bits, + int runtime_type_kind) + : Type(TYPE_INTEGER), + is_abstract_(is_abstract), is_unsigned_(is_unsigned), bits_(bits), + runtime_type_kind_(runtime_type_kind) + { } + + // Map names of integer types to the types themselves. + typedef std::map<std::string, Named_type*> Named_integer_types; + static Named_integer_types named_integer_types; + + // True if this is an abstract type. + bool is_abstract_; + // True if this is an unsigned type. + bool is_unsigned_; + // The number of bits. + int bits_; + // The runtime type code used in the type descriptor for this type. + int runtime_type_kind_; +}; + +// The type of a floating point number. + +class Float_type : public Type +{ + public: + // Create a new float type. + static Named_type* + create_float_type(const char* name, int bits, int runtime_type_kind); + + // Look up an existing float type. + static Named_type* + lookup_float_type(const char* name); + + // Create an abstract float type. + static Float_type* + create_abstract_float_type(); + + // Whether this is an abstract float type. + bool + is_abstract() const + { return this->is_abstract_; } + + // The number of bits. + int + bits() const + { return this->bits_; } + + // Whether this type is the same as T. + bool + is_identical(const Float_type* t) const; + + // Return a tree for this type without using a Gogo*. + tree + type_tree() const; + + protected: + unsigned int + do_hash_for_method(Gogo*) const; + + tree + do_get_tree(Gogo*); + + tree + do_get_init_tree(Gogo*, tree, bool); + + Expression* + do_type_descriptor(Gogo*, Named_type*); + + void + do_reflection(Gogo*, std::string*) const; + + void + do_mangled_name(Gogo*, std::string*) const; + + private: + Float_type(bool is_abstract, int bits, int runtime_type_kind) + : Type(TYPE_FLOAT), + is_abstract_(is_abstract), bits_(bits), + runtime_type_kind_(runtime_type_kind) + { } + + // Map names of float types to the types themselves. + typedef std::map<std::string, Named_type*> Named_float_types; + static Named_float_types named_float_types; + + // True if this is an abstract type. + bool is_abstract_; + // The number of bits in the floating point value. + int bits_; + // The runtime type code used in the type descriptor for this type. + int runtime_type_kind_; +}; + +// The type of a complex number. + +class Complex_type : public Type +{ + public: + // Create a new complex type. + static Named_type* + create_complex_type(const char* name, int bits, int runtime_type_kind); + + // Look up an existing complex type. + static Named_type* + lookup_complex_type(const char* name); + + // Create an abstract complex type. + static Complex_type* + create_abstract_complex_type(); + + // Whether this is an abstract complex type. + bool + is_abstract() const + { return this->is_abstract_; } + + // The number of bits: 64 or 128. + int bits() const + { return this->bits_; } + + // Whether this type is the same as T. + bool + is_identical(const Complex_type* t) const; + + // Return a tree for this type without using a Gogo*. + tree + type_tree() const; + + protected: + unsigned int + do_hash_for_method(Gogo*) const; + + tree + do_get_tree(Gogo*); + + tree + do_get_init_tree(Gogo*, tree, bool); + + Expression* + do_type_descriptor(Gogo*, Named_type*); + + void + do_reflection(Gogo*, std::string*) const; + + void + do_mangled_name(Gogo*, std::string*) const; + + private: + Complex_type(bool is_abstract, int bits, int runtime_type_kind) + : Type(TYPE_COMPLEX), + is_abstract_(is_abstract), bits_(bits), + runtime_type_kind_(runtime_type_kind) + { } + + // Map names of complex types to the types themselves. + typedef std::map<std::string, Named_type*> Named_complex_types; + static Named_complex_types named_complex_types; + + // True if this is an abstract type. + bool is_abstract_; + // The number of bits in the complex value--64 or 128. + int bits_; + // The runtime type code used in the type descriptor for this type. + int runtime_type_kind_; +}; + +// The type of a string. + +class String_type : public Type +{ + public: + String_type() + : Type(TYPE_STRING) + { } + + // Return a tree for the length of STRING. + static tree + length_tree(Gogo*, tree string); + + // Return a tree which points to the bytes of STRING. + static tree + bytes_tree(Gogo*, tree string); + + protected: + bool + do_has_pointer() const + { return true; } + + tree + do_get_tree(Gogo*); + + tree + do_get_init_tree(Gogo* gogo, tree, bool); + + Expression* + do_type_descriptor(Gogo*, Named_type*); + + void + do_reflection(Gogo*, std::string*) const; + + void + do_mangled_name(Gogo*, std::string* ret) const; + + private: + // The named string type. + static Named_type* string_type_; +}; + +// The type of a function. + +class Function_type : public Type +{ + public: + Function_type(Typed_identifier* receiver, Typed_identifier_list* parameters, + Typed_identifier_list* results, source_location location) + : Type(TYPE_FUNCTION), + receiver_(receiver), parameters_(parameters), results_(results), + location_(location), is_varargs_(false), is_builtin_(false) + { } + + // Get the receiver. + const Typed_identifier* + receiver() const + { return this->receiver_; } + + // Get the return names and types. + const Typed_identifier_list* + results() const + { return this->results_; } + + // Get the parameter names and types. + const Typed_identifier_list* + parameters() const + { return this->parameters_; } + + // Whether this is a varargs function. + bool + is_varargs() const + { return this->is_varargs_; } + + // Whether this is a builtin function. + bool + is_builtin() const + { return this->is_builtin_; } + + // The location where this type was defined. + source_location + location() const + { return this->location_; } + + // Return whether this is a method type. + bool + is_method() const + { return this->receiver_ != NULL; } + + // Whether T is a valid redeclaration of this type. This is called + // when a function is declared more than once. + bool + is_valid_redeclaration(const Function_type* t, std::string*) const; + + // Whether this type is the same as T. + bool + is_identical(const Function_type* t, bool ignore_receiver, + std::string*) const; + + // Record that this is a varargs function. + void + set_is_varargs() + { this->is_varargs_ = true; } + + // Record that this is a builtin function. + void + set_is_builtin() + { this->is_builtin_ = true; } + + // Import a function type. + static Function_type* + do_import(Import*); + + // Return a copy of this type without a receiver. This is only + // valid for a method type. + Function_type* + copy_without_receiver() const; + + // Return a copy of this type with a receiver. This is used when an + // interface method is attached to a named or struct type. + Function_type* + copy_with_receiver(Type*) const; + + protected: + int + do_traverse(Traverse*); + + // A trampoline function has a pointer which matters for GC. + bool + do_has_pointer() const + { return true; } + + unsigned int + do_hash_for_method(Gogo*) const; + + tree + do_get_tree(Gogo*); + + tree + do_get_init_tree(Gogo*, tree, bool); + + Expression* + do_type_descriptor(Gogo*, Named_type*); + + void + do_reflection(Gogo*, std::string*) const; + + void + do_mangled_name(Gogo*, std::string*) const; + + void + do_export(Export*) const; + + private: + static Type* + make_function_type_descriptor_type(); + + Expression* + type_descriptor_params(Type*, const Typed_identifier*, + const Typed_identifier_list*); + + // The receiver name and type. This will be NULL for a normal + // function, non-NULL for a method. + Typed_identifier* receiver_; + // The parameter names and types. + Typed_identifier_list* parameters_; + // The result names and types. This will be NULL if no result was + // specified. + Typed_identifier_list* results_; + // The location where this type was defined. This exists solely to + // give a location for the fields of the struct if this function + // returns multiple values. + source_location location_; + // Whether this function takes a variable number of arguments. + bool is_varargs_; + // Whether this is a special builtin function which can not simply + // be called. This is used for len, cap, etc. + bool is_builtin_; +}; + +// The type of a pointer. + +class Pointer_type : public Type +{ + public: + Pointer_type(Type* to_type) + : Type(TYPE_POINTER), + to_type_(to_type) + {} + + Type* + points_to() const + { return this->to_type_; } + + // Import a pointer type. + static Pointer_type* + do_import(Import*); + + protected: + int + do_traverse(Traverse*); + + bool + do_has_pointer() const + { return true; } + + unsigned int + do_hash_for_method(Gogo*) const; + + tree + do_get_tree(Gogo*); + + tree + do_get_init_tree(Gogo*, tree, bool); + + Expression* + do_type_descriptor(Gogo*, Named_type*); + + void + do_reflection(Gogo*, std::string*) const; + + void + do_mangled_name(Gogo*, std::string*) const; + + void + do_export(Export*) const; + + private: + static Type* + make_pointer_type_descriptor_type(); + + // The type to which this type points. + Type* to_type_; +}; + +// The type of a field in a struct. + +class Struct_field +{ + public: + explicit Struct_field(const Typed_identifier& typed_identifier) + : typed_identifier_(typed_identifier), tag_(NULL) + { } + + // The field name. + const std::string& + field_name() const; + + // The field type. + Type* + type() const + { return this->typed_identifier_.type(); } + + // The field location. + source_location + location() const + { return this->typed_identifier_.location(); } + + // Whether the field has a tag. + bool + has_tag() const + { return this->tag_ != NULL; } + + // The tag. + const std::string& + tag() const + { + gcc_assert(this->tag_ != NULL); + return *this->tag_; + } + + // Whether this is an anonymous field. + bool + is_anonymous() const + { return this->typed_identifier_.name().empty(); } + + // Set the tag. FIXME: This is never freed. + void + set_tag(const std::string& tag) + { this->tag_ = new std::string(tag); } + + // Set the type. This is only used in error cases. + void + set_type(Type* type) + { this->typed_identifier_.set_type(type); } + + private: + // The field name, type, and location. + Typed_identifier typed_identifier_; + // The field tag. This is NULL if the field has no tag. + std::string* tag_; +}; + +// A list of struct fields. + +class Struct_field_list +{ + public: + Struct_field_list() + : entries_() + { } + + // Whether the list is empty. + bool + empty() const + { return this->entries_.empty(); } + + // Return the number of entries. + size_t + size() const + { return this->entries_.size(); } + + // Add an entry to the end of the list. + void + push_back(const Struct_field& sf) + { this->entries_.push_back(sf); } + + // Index into the list. + const Struct_field& + at(size_t i) const + { return this->entries_.at(i); } + + // Last entry in list. + Struct_field& + back() + { return this->entries_.back(); } + + // Iterators. + + typedef std::vector<Struct_field>::iterator iterator; + typedef std::vector<Struct_field>::const_iterator const_iterator; + + iterator + begin() + { return this->entries_.begin(); } + + const_iterator + begin() const + { return this->entries_.begin(); } + + iterator + end() + { return this->entries_.end(); } + + const_iterator + end() const + { return this->entries_.end(); } + + private: + std::vector<Struct_field> entries_; +}; + +// The type of a struct. + +class Struct_type : public Type +{ + public: + Struct_type(Struct_field_list* fields, source_location location) + : Type(TYPE_STRUCT), + fields_(fields), location_(location), all_methods_(NULL) + { } + + // Return the field NAME. This only looks at local fields, not at + // embedded types. If the field is found, and PINDEX is not NULL, + // this sets *PINDEX to the field index. If the field is not found, + // this returns NULL. + const Struct_field* + find_local_field(const std::string& name, unsigned int *pindex) const; + + // Return the field number INDEX. + const Struct_field* + field(unsigned int index) const + { return &this->fields_->at(index); } + + // Get the struct fields. + const Struct_field_list* + fields() const + { return this->fields_; } + + // Return the number of fields. + size_t + field_count() const + { return this->fields_->size(); } + + // Push a new field onto the end of the struct. This is used when + // building a closure variable. + void + push_field(const Struct_field& sf) + { this->fields_->push_back(sf); } + + // Return an expression referring to field NAME in STRUCT_EXPR, or + // NULL if there is no field with that name. + Field_reference_expression* + field_reference(Expression* struct_expr, const std::string& name, + source_location) const; + + // Return the total number of fields, including embedded fields. + // This is the number of values which can appear in a conversion to + // this type. + unsigned int + total_field_count() const; + + // Whether this type is identical with T. + bool + is_identical(const Struct_type* t) const; + + // Whether this struct type has any hidden fields. This returns + // true if any fields have hidden names, or if any non-pointer + // anonymous fields have types with hidden fields. + bool + struct_has_hidden_fields(const Named_type* within, std::string*) const; + + // Return whether NAME is a local field which is not exported. This + // is only used for better error reporting. + bool + is_unexported_local_field(Gogo*, const std::string& name) const; + + // If this is an unnamed struct, build the complete list of methods, + // including those from anonymous fields, and build methods stubs if + // needed. + void + finalize_methods(Gogo*); + + // Return whether this type has any methods. This should only be + // called after the finalize_methods pass. + bool + has_any_methods() const + { return this->all_methods_ != NULL; } + + // Return the methods for tihs type. This should only be called + // after the finalize_methods pass. + const Methods* + methods() const + { return this->all_methods_; } + + // Return the method to use for NAME. This returns NULL if there is + // no such method or if the method is ambiguous. When it returns + // NULL, this sets *IS_AMBIGUOUS if the method name is ambiguous. + Method* + method_function(const std::string& name, bool* is_ambiguous) const; + + // Traverse just the field types of a struct type. + int + traverse_field_types(Traverse* traverse) + { return this->do_traverse(traverse); } + + // Import a struct type. + static Struct_type* + do_import(Import*); + + // Fill in the fields for a named struct type. + tree + fill_in_tree(Gogo*, tree); + + protected: + int + do_traverse(Traverse*); + + bool + do_verify(); + + bool + do_has_pointer() const; + + unsigned int + do_hash_for_method(Gogo*) const; + + tree + do_get_tree(Gogo*); + + tree + do_get_init_tree(Gogo*, tree, bool); + + Expression* + do_type_descriptor(Gogo*, Named_type*); + + void + do_reflection(Gogo*, std::string*) const; + + void + do_mangled_name(Gogo*, std::string*) const; + + void + do_export(Export*) const; + + private: + Field_reference_expression* + field_reference_depth(Expression* struct_expr, const std::string& name, + source_location, unsigned int* depth) const; + + static Type* + make_struct_type_descriptor_type(); + + // The fields of the struct. + Struct_field_list* fields_; + // The place where the struct was declared. + source_location location_; + // If this struct is unnamed, a list of methods. + Methods* all_methods_; +}; + +// The type of an array. + +class Array_type : public Type +{ + public: + Array_type(Type* element_type, Expression* length) + : Type(TYPE_ARRAY), + element_type_(element_type), length_(length), length_tree_(NULL) + { } + + // Return the element type. + Type* + element_type() const + { return this->element_type_; } + + // Return the length. This will return NULL for an open array. + Expression* + length() const + { return this->length_; } + + // Whether this type is identical with T. + bool + is_identical(const Array_type* t) const; + + // Whether this type has any hidden fields. + bool + array_has_hidden_fields(const Named_type* within, std::string* reason) const + { return this->element_type_->has_hidden_fields(within, reason); } + + // Return a tree for the pointer to the values in an array. + tree + value_pointer_tree(Gogo*, tree array) const; + + // Return a tree for the length of an array with this type. + tree + length_tree(Gogo*, tree array); + + // Return a tree for the capacity of an array with this type. + tree + capacity_tree(Gogo*, tree array); + + // Import an array type. + static Array_type* + do_import(Import*); + + // Fill in the fields for a named slice type. + tree + fill_in_tree(Gogo*, tree); + + protected: + int + do_traverse(Traverse* traverse); + + bool + do_verify(); + + bool + do_has_pointer() const + { + return this->length_ == NULL || this->element_type_->has_pointer(); + } + + unsigned int + do_hash_for_method(Gogo*) const; + + bool + do_check_make_expression(Expression_list*, source_location); + + tree + do_get_tree(Gogo*); + + tree + do_get_init_tree(Gogo*, tree, bool); + + tree + do_make_expression_tree(Translate_context*, Expression_list*, + source_location); + + Expression* + do_type_descriptor(Gogo*, Named_type*); + + void + do_reflection(Gogo*, std::string*) const; + + void + do_mangled_name(Gogo*, std::string*) const; + + void + do_export(Export*) const; + + private: + bool + verify_length(); + + tree + get_length_tree(Gogo*); + + Type* + make_array_type_descriptor_type(); + + Type* + make_slice_type_descriptor_type(); + + Expression* + array_type_descriptor(Gogo*, Named_type*); + + Expression* + slice_type_descriptor(Gogo*, Named_type*); + + // The type of elements of the array. + Type* element_type_; + // The number of elements. This may be NULL. + Expression* length_; + // The length as a tree. We only want to compute this once. + tree length_tree_; +}; + +// The type of a map. + +class Map_type : public Type +{ + public: + Map_type(Type* key_type, Type* val_type, source_location location) + : Type(TYPE_MAP), + key_type_(key_type), val_type_(val_type), location_(location) + { } + + // Return the key type. + Type* + key_type() const + { return this->key_type_; } + + // Return the value type. + Type* + val_type() const + { return this->val_type_; } + + // Whether this type is identical with T. + bool + is_identical(const Map_type* t) const; + + // Import a map type. + static Map_type* + do_import(Import*); + + protected: + int + do_traverse(Traverse*); + + bool + do_verify(); + + bool + do_has_pointer() const + { return true; } + + unsigned int + do_hash_for_method(Gogo*) const; + + bool + do_check_make_expression(Expression_list*, source_location); + + tree + do_get_tree(Gogo*); + + tree + do_get_init_tree(Gogo*, tree, bool); + + tree + do_make_expression_tree(Translate_context*, Expression_list*, + source_location); + + Expression* + do_type_descriptor(Gogo*, Named_type*); + + void + do_reflection(Gogo*, std::string*) const; + + void + do_mangled_name(Gogo*, std::string*) const; + + void + do_export(Export*) const; + + private: + static Type* + make_map_type_descriptor_type(); + + // The key type. + Type* key_type_; + // The value type. + Type* val_type_; + // Where the type was defined. + source_location location_; +}; + +// The type of a channel. + +class Channel_type : public Type +{ + public: + Channel_type(bool may_send, bool may_receive, Type* element_type) + : Type(TYPE_CHANNEL), + may_send_(may_send), may_receive_(may_receive), + element_type_(element_type) + { gcc_assert(may_send || may_receive); } + + // Whether this channel can send data. + bool + may_send() const + { return this->may_send_; } + + // Whether this channel can receive data. + bool + may_receive() const + { return this->may_receive_; } + + // The type of the values that may be sent on this channel. This is + // NULL if any type may be sent. + Type* + element_type() const + { return this->element_type_; } + + // Whether this type is identical with T. + bool + is_identical(const Channel_type* t) const; + + // Import a channel type. + static Channel_type* + do_import(Import*); + + protected: + int + do_traverse(Traverse* traverse) + { return Type::traverse(this->element_type_, traverse); } + + bool + do_has_pointer() const + { return true; } + + unsigned int + do_hash_for_method(Gogo*) const; + + bool + do_check_make_expression(Expression_list*, source_location); + + tree + do_get_tree(Gogo*); + + tree + do_get_init_tree(Gogo*, tree, bool); + + tree + do_make_expression_tree(Translate_context*, Expression_list*, + source_location); + + Expression* + do_type_descriptor(Gogo*, Named_type*); + + void + do_reflection(Gogo*, std::string*) const; + + void + do_mangled_name(Gogo*, std::string*) const; + + void + do_export(Export*) const; + + private: + static Type* + make_chan_type_descriptor_type(); + + // Whether this channel can send data. + bool may_send_; + // Whether this channel can receive data. + bool may_receive_; + // The types of elements which may be sent on this channel. If this + // is NULL, it means that any type may be sent. + Type* element_type_; +}; + +// An interface type. + +class Interface_type : public Type +{ + public: + Interface_type(Typed_identifier_list* methods, source_location location) + : Type(TYPE_INTERFACE), + methods_(methods), location_(location) + { gcc_assert(methods == NULL || !methods->empty()); } + + // Return whether this is an empty interface. + bool + is_empty() const + { return this->methods_ == NULL; } + + // Return the list of methods. This will return NULL for an empty + // interface. + const Typed_identifier_list* + methods() const + { return this->methods_; } + + // Return the number of methods. + size_t + method_count() const + { return this->methods_ == NULL ? 0 : this->methods_->size(); } + + // Return the method NAME, or NULL. + const Typed_identifier* + find_method(const std::string& name) const; + + // Return the zero-based index of method NAME. + size_t + method_index(const std::string& name) const; + + // Finalize the methods. This handles interface inheritance. + void + finalize_methods(); + + // Return true if T implements this interface. If this returns + // false, and REASON is not NULL, it sets *REASON to the reason that + // it fails. + bool + implements_interface(const Type* t, std::string* reason) const; + + // Whether this type is identical with T. REASON is as in + // implements_interface. + bool + is_identical(const Interface_type* t) const; + + // Whether we can assign T to this type. is_identical is known to + // be false. + bool + is_compatible_for_assign(const Interface_type*, std::string* reason) const; + + // Return whether NAME is a method which is not exported. This is + // only used for better error reporting. + bool + is_unexported_method(Gogo*, const std::string& name) const; + + // Import an interface type. + static Interface_type* + do_import(Import*); + + // Fill in the fields for a named interface type. + tree + fill_in_tree(Gogo*, tree); + + protected: + int + do_traverse(Traverse*); + + bool + do_has_pointer() const + { return true; } + + unsigned int + do_hash_for_method(Gogo*) const; + + tree + do_get_tree(Gogo*); + + tree + do_get_init_tree(Gogo* gogo, tree, bool); + + Expression* + do_type_descriptor(Gogo*, Named_type*); + + void + do_reflection(Gogo*, std::string*) const; + + void + do_mangled_name(Gogo*, std::string*) const; + + void + do_export(Export*) const; + + private: + static Type* + make_interface_type_descriptor_type(); + + // The list of methods associated with the interface. This will be + // NULL for the empty interface. + Typed_identifier_list* methods_; + // The location where the interface was defined. + source_location location_; +}; + +// The value we keep for a named type. This lets us get the right +// name when we convert to trees. Note that we don't actually keep +// the name here; the name is in the Named_object which points to +// this. This object exists to hold a unique tree which represents +// the type. + +class Named_type : public Type +{ + public: + Named_type(Named_object* named_object, Type* type, source_location location) + : Type(TYPE_NAMED), + named_object_(named_object), in_function_(NULL), type_(type), + local_methods_(NULL), all_methods_(NULL), + interface_method_tables_(NULL), pointer_interface_method_tables_(NULL), + location_(location), named_tree_(NULL), is_visible_(true), + is_error_(false), seen_(false) + { } + + // Return the associated Named_object. This holds the actual name. + Named_object* + named_object() + { return this->named_object_; } + + const Named_object* + named_object() const + { return this->named_object_; } + + // Set the Named_object. This is used when we see a type + // declaration followed by a type. + void + set_named_object(Named_object* no) + { this->named_object_ = no; } + + // Return the function in which this type is defined. This will + // return NULL for a type defined in global scope. + const Named_object* + in_function() const + { return this->in_function_; } + + // Set the function in which this type is defined. + void + set_in_function(Named_object* f) + { this->in_function_ = f; } + + // Return the name of the type. + const std::string& + name() const; + + // Return the name of the type for an error message. The difference + // is that if the type is defined in a different package, this will + // return PACKAGE.NAME. + std::string + message_name() const; + + // Return the underlying type. + Type* + real_type() + { return this->type_; } + + const Type* + real_type() const + { return this->type_; } + + // Return the location. + source_location + location() const + { return this->location_; } + + // Whether this type is visible. This only matters when parsing. + bool + is_visible() const + { return this->is_visible_; } + + // Mark this type as visible. + void + set_is_visible() + { this->is_visible_ = true; } + + // Mark this type as invisible. + void + clear_is_visible() + { this->is_visible_ = false; } + + // Whether this is a builtin type. + bool + is_builtin() const + { return this->location_ == BUILTINS_LOCATION; } + + // Add a method to this type. + Named_object* + add_method(const std::string& name, Function*); + + // Add a method declaration to this type. + Named_object* + add_method_declaration(const std::string& name, Package* package, + Function_type* type, source_location location); + + // Add an existing method--one defined before the type itself was + // defined--to a type. + void + add_existing_method(Named_object*); + + // Look up a local method. + Named_object* + find_local_method(const std::string& name) const; + + // Return the list of local methods. + const Bindings* + local_methods() const + { return this->local_methods_; } + + // Build the complete list of methods, including those from + // anonymous fields, and build method stubs if needed. + void + finalize_methods(Gogo*); + + // Return whether this type has any methods. This should only be + // called after the finalize_methods pass. + bool + has_any_methods() const + { return this->all_methods_ != NULL; } + + // Return the methods for this type. This should only be called + // after the finalized_methods pass. + const Methods* + methods() const + { return this->all_methods_; } + + // Return the method to use for NAME. This returns NULL if there is + // no such method or if the method is ambiguous. When it returns + // NULL, this sets *IS_AMBIGUOUS if the method name is ambiguous. + Method* + method_function(const std::string& name, bool *is_ambiguous) const; + + // Return whether NAME is a known field or method which is not + // exported. This is only used for better error reporting. + bool + is_unexported_local_method(Gogo*, const std::string& name) const; + + // Return a pointer to the interface method table for this type for + // the interface INTERFACE. If IS_POINTER is true, set the type + // descriptor to a pointer to this type, otherwise set it to this + // type. + tree + interface_method_table(Gogo*, const Interface_type* interface, + bool is_pointer); + + // Whether this type has any hidden fields. + bool + named_type_has_hidden_fields(std::string* reason) const; + + // Export the type. + void + export_named_type(Export*, const std::string& name) const; + + // Import a named type. + static void + import_named_type(Import*, Named_type**); + + protected: + int + do_traverse(Traverse* traverse) + { return Type::traverse(this->type_, traverse); } + + bool + do_verify(); + + bool + do_has_pointer() const + { return this->type_->has_pointer(); } + + unsigned int + do_hash_for_method(Gogo*) const; + + bool + do_check_make_expression(Expression_list* args, source_location location) + { return this->type_->check_make_expression(args, location); } + + tree + do_get_tree(Gogo*); + + tree + do_get_init_tree(Gogo* gogo, tree type_tree, bool is_clear) + { return this->type_->get_typed_init_tree(gogo, type_tree, is_clear); } + + tree + do_make_expression_tree(Translate_context* context, Expression_list* args, + source_location location) + { return this->type_->make_expression_tree(context, args, location); } + + Expression* + do_type_descriptor(Gogo*, Named_type*); + + void + do_reflection(Gogo*, std::string*) const; + + void + do_mangled_name(Gogo*, std::string* ret) const; + + void + do_export(Export*) const; + + private: + // A mapping from interfaces to the associated interface method + // tables for this type. This maps to a decl. + typedef Unordered_map_hash(const Interface_type*, tree, Type_hash_identical, + Type_identical) Interface_method_tables; + + // A pointer back to the Named_object for this type. + Named_object* named_object_; + // If this type is defined in a function, a pointer back to the + // function in which it is defined. + Named_object* in_function_; + // The actual type. + Type* type_; + // The list of methods defined for this type. Any named type can + // have methods. + Bindings* local_methods_; + // The full list of methods for this type, including methods + // declared for anonymous fields. + Methods* all_methods_; + // A mapping from interfaces to the associated interface method + // tables for this type. + Interface_method_tables* interface_method_tables_; + // A mapping from interfaces to the associated interface method + // tables for pointers to this type. + Interface_method_tables* pointer_interface_method_tables_; + // The location where this type was defined. + source_location location_; + // The tree for this type while converting to GENERIC. This is used + // to avoid endless recursion when a named type refers to itself. + tree named_tree_; + // Whether this type is visible. This is false if this type was + // created because it was referenced by an imported object, but the + // type itself was not exported. This will always be true for types + // created in the current package. + bool is_visible_; + // Whether this type is erroneous. + bool is_error_; + // In a recursive operation such as has_hidden_fields, this flag is + // used to prevent infinite recursion when a type refers to itself. + // This is mutable because it is always reset to false when the + // function exits. + mutable bool seen_; +}; + +// A forward declaration. This handles a type which has been declared +// but not defined. + +class Forward_declaration_type : public Type +{ + public: + Forward_declaration_type(Named_object* named_object); + + // The named object associated with this type declaration. This + // will be resolved. + Named_object* + named_object(); + + const Named_object* + named_object() const; + + // Return the name of the type. + const std::string& + name() const; + + // Return the type to which this points. Give an error if the type + // has not yet been defined. + Type* + real_type(); + + const Type* + real_type() const; + + // Whether the base type has been defined. + bool + is_defined() const; + + // Add a method to this type. + Named_object* + add_method(const std::string& name, Function*); + + // Add a method declaration to this type. + Named_object* + add_method_declaration(const std::string& name, Function_type*, + source_location); + + protected: + int + do_traverse(Traverse* traverse); + + bool + do_has_pointer() const + { return this->base()->has_pointer(); } + + unsigned int + do_hash_for_method(Gogo* gogo) const + { return this->real_type()->hash_for_method(gogo); } + + bool + do_check_make_expression(Expression_list* args, source_location location) + { return this->base()->check_make_expression(args, location); } + + tree + do_get_tree(Gogo* gogo); + + tree + do_get_init_tree(Gogo* gogo, tree type_tree, bool is_clear) + { return this->base()->get_typed_init_tree(gogo, type_tree, is_clear); } + + tree + do_make_expression_tree(Translate_context* context, Expression_list* args, + source_location location) + { return this->base()->make_expression_tree(context, args, location); } + + Expression* + do_type_descriptor(Gogo*, Named_type*); + + void + do_reflection(Gogo*, std::string*) const; + + void + do_mangled_name(Gogo*, std::string* ret) const; + + void + do_export(Export*) const; + + private: + // Issue a warning about a use of an undefined type. + void + warn() const; + + // The type declaration. + Named_object* named_object_; + // Whether we have issued a warning about this type. + mutable bool warned_; +}; + +// The Type_context struct describes what we expect for the type of an +// expression. + +struct Type_context +{ + // The exact type we expect, if known. This may be NULL. + Type* type; + // Whether an abstract type is permitted. + bool may_be_abstract; + + // Constructors. + Type_context() + : type(NULL), may_be_abstract(false) + { } + + Type_context(Type* a_type, bool a_may_be_abstract) + : type(a_type), may_be_abstract(a_may_be_abstract) + { } +}; + +#endif // !defined(GO_TYPES_H) diff --git a/gcc/go/gofrontend/unsafe.cc b/gcc/go/gofrontend/unsafe.cc new file mode 100644 index 0000000..51d812b --- /dev/null +++ b/gcc/go/gofrontend/unsafe.cc @@ -0,0 +1,134 @@ +// unsafe.cc -- Go frontend builtin unsafe package. + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +#include "go-system.h" + +#include "types.h" +#include "gogo.h" + +// Set up the builtin unsafe package. This should probably be driven +// by a table. + +void +Gogo::import_unsafe(const std::string& local_name, bool is_local_name_exported, + source_location location) +{ + location_t bloc = BUILTINS_LOCATION; + + bool add_to_globals; + Package* package = this->add_imported_package("unsafe", local_name, + is_local_name_exported, + "libgo_unsafe", + location, &add_to_globals); + package->set_is_imported(); + + Bindings* bindings = package->bindings(); + + // The type may have already been created by an import. + Named_object* no = package->bindings()->lookup("Pointer"); + if (no == NULL) + { + Type* type = Type::make_pointer_type(Type::make_void_type()); + no = bindings->add_type("Pointer", package, type, UNKNOWN_LOCATION); + } + else + { + gcc_assert(no->package() == package); + gcc_assert(no->is_type()); + gcc_assert(no->type_value()->is_unsafe_pointer_type()); + no->type_value()->set_is_visible(); + } + Named_type* pointer_type = no->type_value(); + if (add_to_globals) + this->add_named_type(pointer_type); + + Type* int_type = this->lookup_global("int")->type_value(); + + // Sizeof. + Typed_identifier_list* results = new Typed_identifier_list; + results->push_back(Typed_identifier("", int_type, bloc)); + Function_type* fntype = Type::make_function_type(NULL, NULL, results, bloc); + fntype->set_is_builtin(); + no = bindings->add_function_declaration("Sizeof", package, fntype, bloc); + if (add_to_globals) + this->add_named_object(no); + + // Offsetof. + results = new Typed_identifier_list; + results->push_back(Typed_identifier("", int_type, bloc)); + fntype = Type::make_function_type(NULL, NULL, results, bloc); + fntype->set_is_varargs(); + fntype->set_is_builtin(); + no = bindings->add_function_declaration("Offsetof", package, fntype, bloc); + if (add_to_globals) + this->add_named_object(no); + + // Alignof. + results = new Typed_identifier_list; + results->push_back(Typed_identifier("", int_type, bloc)); + fntype = Type::make_function_type(NULL, NULL, results, bloc); + fntype->set_is_varargs(); + fntype->set_is_builtin(); + no = bindings->add_function_declaration("Alignof", package, fntype, bloc); + if (add_to_globals) + this->add_named_object(no); + + // Typeof. + Type* empty_interface = Type::make_interface_type(NULL, bloc); + Typed_identifier_list* parameters = new Typed_identifier_list; + parameters->push_back(Typed_identifier("i", empty_interface, bloc)); + results = new Typed_identifier_list; + results->push_back(Typed_identifier("", empty_interface, bloc)); + fntype = Type::make_function_type(NULL, parameters, results, bloc); + no = bindings->add_function_declaration("Typeof", package, fntype, bloc); + if (add_to_globals) + this->add_named_object(no); + + // Reflect. + parameters = new Typed_identifier_list; + parameters->push_back(Typed_identifier("it", empty_interface, bloc)); + results = new Typed_identifier_list; + results->push_back(Typed_identifier("", empty_interface, bloc)); + results->push_back(Typed_identifier("", pointer_type, bloc)); + fntype = Type::make_function_type(NULL, parameters, results, bloc); + no = bindings->add_function_declaration("Reflect", package, fntype, bloc); + if (add_to_globals) + this->add_named_object(no); + + // Unreflect. + parameters = new Typed_identifier_list; + parameters->push_back(Typed_identifier("typ", empty_interface, bloc)); + parameters->push_back(Typed_identifier("addr", pointer_type, bloc)); + results = new Typed_identifier_list; + results->push_back(Typed_identifier("", empty_interface, bloc)); + fntype = Type::make_function_type(NULL, parameters, results, bloc); + no = bindings->add_function_declaration("Unreflect", package, fntype, bloc); + if (add_to_globals) + this->add_named_object(no); + + // New. + parameters = new Typed_identifier_list; + parameters->push_back(Typed_identifier("typ", empty_interface, bloc)); + results = new Typed_identifier_list; + results->push_back(Typed_identifier("", pointer_type, bloc)); + fntype = Type::make_function_type(NULL, parameters, results, bloc); + no = bindings->add_function_declaration("New", package, fntype, bloc); + if (add_to_globals) + this->add_named_object(no); + + // NewArray. + parameters = new Typed_identifier_list; + parameters->push_back(Typed_identifier("typ", empty_interface, bloc)); + parameters->push_back(Typed_identifier("n", int_type, bloc)); + results = new Typed_identifier_list; + results->push_back(Typed_identifier("", pointer_type, bloc)); + fntype = Type::make_function_type(NULL, parameters, results, bloc); + no = bindings->add_function_declaration("NewArray", package, fntype, bloc); + if (add_to_globals) + this->add_named_object(no); + + this->imported_unsafe_ = true; +} diff --git a/gcc/go/gospec.c b/gcc/go/gospec.c new file mode 100644 index 0000000..c8f2bad --- /dev/null +++ b/gcc/go/gospec.c @@ -0,0 +1,327 @@ +/* gospec.c -- Specific flags and argument handling of the gcc Go front end. + Copyright (C) 2009, 2010 Free Software Foundation, Inc. + +This file is part of GCC. + +GCC is free software; you can redistribute it and/or modify it under +the terms of the GNU General Public License as published by the Free +Software Foundation; either version 3, or (at your option) any later +version. + +GCC is distributed in the hope that it will be useful, but WITHOUT ANY +WARRANTY; without even the implied warranty of MERCHANTABILITY or +FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License +for more details. + +You should have received a copy of the GNU General Public License +along with GCC; see the file COPYING3. If not see +<http://www.gnu.org/licenses/>. */ + +#include "config.h" +#include "system.h" +#include "coretypes.h" +#include "tm.h" +#include "gcc.h" +#include "opts.h" + +/* This bit is set if we saw a `-xfoo' language specification. */ +#define LANGSPEC (1<<1) +/* This bit is set if they did `-lm' or `-lmath'. */ +#define MATHLIB (1<<2) +/* This bit is set if they did `-lpthread'. */ +#define THREADLIB (1<<3) +/* This bit is set if they did `-lc'. */ +#define WITHLIBC (1<<4) +/* Skip this option. */ +#define SKIPOPT (1<<5) + +#ifndef MATH_LIBRARY +#define MATH_LIBRARY "m" +#endif +#ifndef MATH_LIBRARY_PROFILE +#define MATH_LIBRARY_PROFILE MATH_LIBRARY +#endif + +#define THREAD_LIBRARY "pthread" +#define THREAD_LIBRARY_PROFILE THREAD_LIBRARY + +#define LIBGO "go" +#define LIBGO_PROFILE LIBGO +#define LIBGOBEGIN "gobegin" + +void +lang_specific_driver (struct cl_decoded_option **in_decoded_options, + unsigned int *in_decoded_options_count, + int *in_added_libraries) +{ + unsigned int i, j; + + /* If true, the user gave us the `-p' or `-pg' flag. */ + bool saw_profile_flag = false; + + /* This is a tristate: + -1 means we should not link in libgo + 0 means we should link in libgo if it is needed + 1 means libgo is needed and should be linked in. + 2 means libgo is needed and should be linked statically. */ + int library = 0; + + /* The new argument list will be contained in this. */ + struct cl_decoded_option *new_decoded_options; + + /* "-lm" or "-lmath" if it appears on the command line. */ + const struct cl_decoded_option *saw_math = 0; + + /* "-lpthread" if it appears on the command line. */ + const struct cl_decoded_option *saw_thread = 0; + + /* "-lc" if it appears on the command line. */ + const struct cl_decoded_option *saw_libc = 0; + + /* An array used to flag each argument that needs a bit set for + LANGSPEC, MATHLIB, or WITHLIBC. */ + int *args; + + /* Whether we need the thread library. */ + int need_thread = 0; + + /* By default, we throw on the math library if we have one. */ + int need_math = (MATH_LIBRARY[0] != '\0'); + + /* True if we saw -static. */ + int static_link = 0; + + /* True if we should add -shared-libgcc to the command-line. */ + int shared_libgcc = 1; + + /* The total number of arguments with the new stuff. */ + unsigned int argc; + + /* The argument list. */ + struct cl_decoded_option *decoded_options; + + /* The number of libraries added in. */ + int added_libraries; + + /* The total number of arguments with the new stuff. */ + int num_args = 1; + + argc = *in_decoded_options_count; + decoded_options = *in_decoded_options; + added_libraries = *in_added_libraries; + + args = XCNEWVEC (int, argc); + + for (i = 1; i < argc; i++) + { + const char *arg = decoded_options[i].arg; + + switch (decoded_options[i].opt_index) + { + case OPT_nostdlib: + case OPT_nodefaultlibs: + library = -1; + break; + + case OPT_l: + if (strcmp (arg, MATH_LIBRARY) == 0) + { + args[i] |= MATHLIB; + need_math = 0; + } + else if (strcmp (arg, THREAD_LIBRARY) == 0) + args[i] |= THREADLIB; + else if (strcmp (arg, "c") == 0) + args[i] |= WITHLIBC; + else + /* Unrecognized libraries (e.g. -lfoo) may require libgo. */ + library = (library == 0) ? 1 : library; + break; + + case OPT_pg: + case OPT_p: + saw_profile_flag = true; + break; + + case OPT_x: + if (library == 0 && strcmp (arg, "go") == 0) + library = 1; + break; + + case OPT_Xlinker: + case OPT_Wl_: + /* Arguments that go directly to the linker might be .o files, + or something, and so might cause libgo to be needed. */ + if (library == 0) + library = 1; + break; + + case OPT_c: + case OPT_S: + case OPT_E: + case OPT_M: + case OPT_MM: + case OPT_fsyntax_only: + /* Don't specify libraries if we won't link, since that would + cause a warning. */ + library = -1; + break; + + case OPT_static: + static_link = 1; + break; + + case OPT_static_libgcc: + shared_libgcc = 0; + break; + + case OPT_static_libgo: + library = library >= 0 ? 2 : library; + args[i] |= SKIPOPT; + break; + + case OPT_SPECIAL_input_file: + if (library == 0) + library = 1; + break; + } + } + + /* There's no point adding -shared-libgcc if we don't have a shared + libgcc. */ +#ifndef ENABLE_SHARED_LIBGCC + shared_libgcc = 0; +#endif + + /* Make sure to have room for the trailing NULL argument. */ + num_args = argc + need_math + shared_libgcc + (library > 0) * 5 + 5; + new_decoded_options = XNEWVEC (struct cl_decoded_option, num_args); + + i = 0; + j = 0; + + /* Copy the 0th argument, i.e., the name of the program itself. */ + new_decoded_options[j++] = decoded_options[i++]; + + /* If we are linking, pass -fsplit-stack if it is supported. */ +#ifdef TARGET_CAN_SPLIT_STACK + if (library >= 0) + { + generate_option (OPT_fsplit_stack, NULL, 1, CL_DRIVER, + &new_decoded_options[j]); + j++; + } +#endif + + /* NOTE: We start at 1 now, not 0. */ + while (i < argc) + { + new_decoded_options[j] = decoded_options[i]; + + /* Make sure -lgo is before the math library, since libgo itself + uses those math routines. */ + if (!saw_math && (args[i] & MATHLIB) && library > 0) + { + --j; + saw_math = &decoded_options[i]; + } + + if (!saw_thread && (args[i] & THREADLIB) && library > 0) + { + --j; + saw_thread = &decoded_options[i]; + } + + if (!saw_libc && (args[i] & WITHLIBC) && library > 0) + { + --j; + saw_libc = &decoded_options[i]; + } + + if ((args[i] & SKIPOPT) != 0) + --j; + + i++; + j++; + } + + /* Add `-lgo' if we haven't already done so. */ + if (library > 0) + { + generate_option (OPT_l, LIBGOBEGIN, 1, CL_DRIVER, + &new_decoded_options[j]); + added_libraries++; + j++; + +#ifdef HAVE_LD_STATIC_DYNAMIC + if (library > 1 && !static_link) + { + generate_option (OPT_Wl_, "-Bstatic", 1, CL_DRIVER, + &new_decoded_options[j]); + j++; + } +#endif + + generate_option (OPT_l, saw_profile_flag ? LIBGO_PROFILE : LIBGO, 1, + CL_DRIVER, &new_decoded_options[j]); + added_libraries++; + j++; + +#ifdef HAVE_LD_STATIC_DYNAMIC + if (library > 1 && !static_link) + { + generate_option (OPT_Wl_, "-Bdynamic", 1, CL_DRIVER, + &new_decoded_options[j]); + j++; + } +#endif + + /* When linking libgo statically we also need to link with the + pthread library. */ + if (library > 1 || static_link) + need_thread = 1; + } + + if (saw_thread) + new_decoded_options[j++] = *saw_thread; + else if (library > 0 && need_thread) + { + generate_option (OPT_l, + (saw_profile_flag + ? THREAD_LIBRARY_PROFILE + : THREAD_LIBRARY), + 1, CL_DRIVER, &new_decoded_options[j]); + added_libraries++; + j++; + } + + if (saw_math) + new_decoded_options[j++] = *saw_math; + else if (library > 0 && need_math) + { + generate_option (OPT_l, + saw_profile_flag ? MATH_LIBRARY_PROFILE : MATH_LIBRARY, + 1, CL_DRIVER, &new_decoded_options[j]); + added_libraries++; + j++; + } + + if (saw_libc) + new_decoded_options[j++] = *saw_libc; + if (shared_libgcc && !static_link) + generate_option (OPT_shared_libgcc, NULL, 1, CL_DRIVER, + &new_decoded_options[j++]); + + *in_decoded_options_count = j; + *in_decoded_options = new_decoded_options; + *in_added_libraries = added_libraries; +} + +/* Called before linking. Returns 0 on success and -1 on failure. */ +int lang_specific_pre_link (void) /* Not used for Go. */ +{ + return 0; +} + +/* Number of extra output files that lang_specific_pre_link may generate. */ +int lang_specific_extra_outfiles = 0; /* Not used for Go. */ diff --git a/gcc/go/lang-specs.h b/gcc/go/lang-specs.h new file mode 100644 index 0000000..a47379d --- /dev/null +++ b/gcc/go/lang-specs.h @@ -0,0 +1,25 @@ +/* lang-specs.h -- gcc driver specs for Go frontend. + Copyright (C) 2009, 2010 Free Software Foundation, Inc. + +This file is part of GCC. + +GCC is free software; you can redistribute it and/or modify it under +the terms of the GNU General Public License as published by the Free +Software Foundation; either version 3, or (at your option) any later +version. + +GCC is distributed in the hope that it will be useful, but WITHOUT ANY +WARRANTY; without even the implied warranty of MERCHANTABILITY or +FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License +for more details. + +You should have received a copy of the GNU General Public License +along with GCC; see the file COPYING3. If not see +<http://www.gnu.org/licenses/>. */ + +/* This is the contribution to the `default_compilers' array in gcc.c + for the Go language. */ + +{".go", "@go", 0, 1, 0}, +{"@go", "go1 %i %(cc1_options) %{I*} %{L*} %D %{!fsyntax-only:%(invoke_as)}", + 0, 1, 0}, diff --git a/gcc/go/lang.opt b/gcc/go/lang.opt new file mode 100644 index 0000000..9d9b1ff --- /dev/null +++ b/gcc/go/lang.opt @@ -0,0 +1,56 @@ +; lang.opt -- Options for the gcc Go front end. + +; Copyright (C) 2009, 2010 Free Software Foundation, Inc. +; +; This file is part of GCC. +; +; GCC is free software; you can redistribute it and/or modify it under +; the terms of the GNU General Public License as published by the Free +; Software Foundation; either version 3, or (at your option) any later +; version. +; +; GCC is distributed in the hope that it will be useful, but WITHOUT ANY +; WARRANTY; without even the implied warranty of MERCHANTABILITY or +; FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License +; for more details. +; +; You should have received a copy of the GNU General Public License +; along with GCC; see the file COPYING3. If not see +; <http://www.gnu.org/licenses/>. + +; See the GCC internals manual for a description of this file's format. + +; Please try to keep this file in ASCII collating order. + +Language +Go + +I +Go Joined Separate +; Documented in c.opt + +L +Go Joined Separate +; Not documented + +Wall +Go +; Documented in c.opt + +fgo-dump- +Go Joined RejectNegative +-fgo-dump-<type> Dump Go frontend internal information + +fgo-prefix= +Go Joined RejectNegative +-fgo-prefix=<string> Set package-specific prefix for exported Go names + +frequire-return-statement +Go Var(go_require_return_statement) Init(1) Warning +Functions which return values must end with return statements + +o +Go Joined Separate +; Documented in common.opt + +; This comment is to ensure we retain the blank line above. diff --git a/gcc/testsuite/ChangeLog b/gcc/testsuite/ChangeLog index 71faa57..e0769f5 100644 --- a/gcc/testsuite/ChangeLog +++ b/gcc/testsuite/ChangeLog @@ -1,4 +1,11 @@ -2010-11-02 Eric Botcazou <ebotcazou@adacore.com> +2010-12-02 Ian Lance Taylor <iant@google.com> + + * lib/go.exp: New file. + * lib/go-dg.exp: New file. + * lib/go-torture.exp: New file. + * lib/target-supports.exp (check_compile): Match // Go. + +2010-12-02 Eric Botcazou <ebotcazou@adacore.com> * gcc.dg/pr46685.c: New test. diff --git a/gcc/testsuite/go.dg/dg.exp b/gcc/testsuite/go.dg/dg.exp new file mode 100644 index 0000000..62c8c06 --- /dev/null +++ b/gcc/testsuite/go.dg/dg.exp @@ -0,0 +1,36 @@ +# Copyright (C) 2009 Free Software Foundation, Inc. + +# This program is free software; you can redistribute it and/or modify +# it under the terms of the GNU General Public License as published by +# the Free Software Foundation; either version 3 of the License, or +# (at your option) any later version. +# +# This program is distributed in the hope that it will be useful, +# but WITHOUT ANY WARRANTY; without even the implied warranty of +# MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the +# GNU General Public License for more details. +# +# You should have received a copy of the GNU General Public License +# along with GCC; see the file COPYING3. If not see +# <http://www.gnu.org/licenses/>. + +# GCC testsuite that uses the `dg.exp' driver. + +# Load support procs. +load_lib go-dg.exp + +# If a testcase doesn't have special options, use these. +global DEFAULT_GOCFLAGS +if ![info exists DEFAULT_GOCFLAGS] then { + set DEFAULT_GOCFLAGS " -pedantic-errors" +} + +# Initialize `dg'. +dg-init + +# Main loop. +go-dg-runtest [lsort \ + [glob -nocomplain $srcdir/$subdir/*.go ] ] $DEFAULT_GOCFLAGS + +# All done. +dg-finish diff --git a/gcc/testsuite/go.dg/err-1.go b/gcc/testsuite/go.dg/err-1.go new file mode 100644 index 0000000..0536d76 --- /dev/null +++ b/gcc/testsuite/go.dg/err-1.go @@ -0,0 +1,7 @@ +// { dg-do compile } + +package main + +func main() { + var ret; // { dg-error "expected type" } +} diff --git a/gcc/testsuite/go.dg/goto-1.go b/gcc/testsuite/go.dg/goto-1.go new file mode 100644 index 0000000..e20fe4d --- /dev/null +++ b/gcc/testsuite/go.dg/goto-1.go @@ -0,0 +1,7 @@ +// { dg-do compile } + +package main + +func main() { + goto lab; // { dg-error "undefined label" } +} diff --git a/gcc/testsuite/go.dg/undef-1.go b/gcc/testsuite/go.dg/undef-1.go new file mode 100644 index 0000000..e3ea918 --- /dev/null +++ b/gcc/testsuite/go.dg/undef-1.go @@ -0,0 +1,7 @@ +// { dg-do compile } + +package main + +func main() { + sys.Exit(i) // { dg-error "undefined" } +} diff --git a/gcc/testsuite/go.go-torture/execute/array-1.go b/gcc/testsuite/go.go-torture/execute/array-1.go new file mode 100644 index 0000000..7b34eca --- /dev/null +++ b/gcc/testsuite/go.go-torture/execute/array-1.go @@ -0,0 +1,10 @@ +package main +var a [2]int; +func fn() { + a[0] = 1; + a[1] = 1; +} +func main() { + fn(); + if a[0] != a[1] { panic(0) } +} diff --git a/gcc/testsuite/go.go-torture/execute/array-2.go b/gcc/testsuite/go.go-torture/execute/array-2.go new file mode 100644 index 0000000..516a131 --- /dev/null +++ b/gcc/testsuite/go.go-torture/execute/array-2.go @@ -0,0 +1,19 @@ +package main + +func fn(a []int) int { + alen := len(a); + for i := 0; i < alen; i++ { + a[i] = i + } + return alen; +} + +func main() { + var a [2]int; + if fn(a[0:]) != 2 { + panic(0); + } + if a[0] != 0 || a[1] != 1 { + panic(1); + } +} diff --git a/gcc/testsuite/go.go-torture/execute/chan-1.go b/gcc/testsuite/go.go-torture/execute/chan-1.go new file mode 100644 index 0000000..c3d4ddb --- /dev/null +++ b/gcc/testsuite/go.go-torture/execute/chan-1.go @@ -0,0 +1,7 @@ +package main + +func main() { + c := make(chan int, 1); + c <- 0; + if <-c != 0 { panic(0) } +} diff --git a/gcc/testsuite/go.go-torture/execute/const-1.go b/gcc/testsuite/go.go-torture/execute/const-1.go new file mode 100644 index 0000000..2292692 --- /dev/null +++ b/gcc/testsuite/go.go-torture/execute/const-1.go @@ -0,0 +1,6 @@ +package main + +func main() { + const c = 2; + if c != 2 { panic(0) } +} diff --git a/gcc/testsuite/go.go-torture/execute/const-2.go b/gcc/testsuite/go.go-torture/execute/const-2.go new file mode 100644 index 0000000..a7301a5 --- /dev/null +++ b/gcc/testsuite/go.go-torture/execute/const-2.go @@ -0,0 +1,7 @@ +package main + +const c = 3; + +func main() { + if c != 3 { panic(0) } +} diff --git a/gcc/testsuite/go.go-torture/execute/execute.exp b/gcc/testsuite/go.go-torture/execute/execute.exp new file mode 100644 index 0000000..350d751 --- /dev/null +++ b/gcc/testsuite/go.go-torture/execute/execute.exp @@ -0,0 +1,33 @@ +# Copyright (C) 2009 Free Software Foundation, Inc. + +# This program is free software; you can redistribute it and/or modify +# it under the terms of the GNU General Public License as published by +# the Free Software Foundation; either version 3 of the License, or +# (at your option) any later version. +# +# This program is distributed in the hope that it will be useful, +# but WITHOUT ANY WARRANTY; without even the implied warranty of +# MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the +# GNU General Public License for more details. +# +# You should have received a copy of the GNU General Public License +# along with GCC; see the file COPYING3. If not see +# <http://www.gnu.org/licenses/>. + +# This is based on a file written by Rob Savoye (rob@cygnus.com) and +# Jeffrey Wheat (cassidy@cygnus.com). + +if $tracelevel then { + strace $tracelevel +} + +# load support procs +load_lib go-torture.exp + +foreach testcase [lsort [glob -nocomplain $srcdir/$subdir/*.go]] { + # If we're only testing specific files and this isn't one of them, skip it. + if ![runtest_file_p $runtests $testcase] then { + continue + } + go-torture-execute $testcase +} diff --git a/gcc/testsuite/go.go-torture/execute/expr-1.go b/gcc/testsuite/go.go-torture/execute/expr-1.go new file mode 100644 index 0000000..076388a --- /dev/null +++ b/gcc/testsuite/go.go-torture/execute/expr-1.go @@ -0,0 +1,11 @@ +package main + +func main() { + var v1 = 1; + var v2 = 1; + var v3 = (v1 + v2) / (v1 + v2); + var v4 = (v3 * v3) % (v3 * v3); + if v4 != 0 { + panic(0) + } +} diff --git a/gcc/testsuite/go.go-torture/execute/for-1.go b/gcc/testsuite/go.go-torture/execute/for-1.go new file mode 100644 index 0000000..7aa91f0 --- /dev/null +++ b/gcc/testsuite/go.go-torture/execute/for-1.go @@ -0,0 +1,9 @@ +package main + +func main() { + sum := 0; + for i := 0; i < 10; i++ { + sum += i; + } + if sum != 45 { panic(0) } +} diff --git a/gcc/testsuite/go.go-torture/execute/for-2.go b/gcc/testsuite/go.go-torture/execute/for-2.go new file mode 100644 index 0000000..af790ed --- /dev/null +++ b/gcc/testsuite/go.go-torture/execute/for-2.go @@ -0,0 +1,52 @@ +package main + +func f1() { + j := 0; + for i := 0; i < 10; i++ { + if i > 2 { + break; + } + j = i; + } + if (j != 2) { + panic(0); + } +} + +func f2() { + for i := 0; i < 10; i++ { + if i >= 0 { + continue; + } + panic(1); + } +} + +func f3() { + lab1: + for i := 0; i < 10; i++ { + for j := 0; j < 10; j++ { + if j > 2 { + break lab1; + } + } + panic(2); + } +} + +func f4() { + lab1: + for i := 0; i < 10; i++ { + for j := 0; j < 10; j++ { + continue lab1; + } + panic(3); + } +} + +func main() { + f1(); + f2(); + f3(); + f4() +} diff --git a/gcc/testsuite/go.go-torture/execute/function-1.go b/gcc/testsuite/go.go-torture/execute/function-1.go new file mode 100644 index 0000000..06244ac --- /dev/null +++ b/gcc/testsuite/go.go-torture/execute/function-1.go @@ -0,0 +1,9 @@ +package main + +func subr() int { + return 0 +} + +func main() { + if subr() != 0 { panic(0) } +} diff --git a/gcc/testsuite/go.go-torture/execute/function-2.go b/gcc/testsuite/go.go-torture/execute/function-2.go new file mode 100644 index 0000000..8b9aa87 --- /dev/null +++ b/gcc/testsuite/go.go-torture/execute/function-2.go @@ -0,0 +1,9 @@ +package main + +func subr(p int) int { + return p +} + +func main() { + if subr(0) != 0 { panic(0) } +} diff --git a/gcc/testsuite/go.go-torture/execute/go-1.go b/gcc/testsuite/go.go-torture/execute/go-1.go new file mode 100644 index 0000000..7d9dbd4 --- /dev/null +++ b/gcc/testsuite/go.go-torture/execute/go-1.go @@ -0,0 +1,11 @@ +package main + +func send_one(c chan <- int) { + c <- 0; +} + +func main() { + c := make(chan int); + go send_one(c); + if <-c != 0 { panic(0) } +} diff --git a/gcc/testsuite/go.go-torture/execute/go-2.go b/gcc/testsuite/go.go-torture/execute/go-2.go new file mode 100644 index 0000000..8ce5fc8 --- /dev/null +++ b/gcc/testsuite/go.go-torture/execute/go-2.go @@ -0,0 +1,11 @@ +package main + +func send_one(c chan <- int, val int) { + c <- val; +} + +func main() { + c := make(chan int); + go send_one(c, 0); + if <-c != 0 { panic(0) } +} diff --git a/gcc/testsuite/go.go-torture/execute/go-3.go b/gcc/testsuite/go.go-torture/execute/go-3.go new file mode 100644 index 0000000..af8fa38 --- /dev/null +++ b/gcc/testsuite/go.go-torture/execute/go-3.go @@ -0,0 +1,14 @@ +package main + +type I interface { send(chan <- int) } + +type S struct { v int } +func (p *S) send(c chan <- int) { c <- p.v } + +func main() { + s := S{0}; + var i I = &s; + c := make(chan int); + go i.send(c); + if <- c != 0 { panic(0) } +} diff --git a/gcc/testsuite/go.go-torture/execute/goto-1.go b/gcc/testsuite/go.go-torture/execute/goto-1.go new file mode 100644 index 0000000..0a10c2e --- /dev/null +++ b/gcc/testsuite/go.go-torture/execute/goto-1.go @@ -0,0 +1,7 @@ +package main + +func main() { + goto lab; + panic(0); + lab: +} diff --git a/gcc/testsuite/go.go-torture/execute/map-1.go b/gcc/testsuite/go.go-torture/execute/map-1.go new file mode 100644 index 0000000..8307c6c --- /dev/null +++ b/gcc/testsuite/go.go-torture/execute/map-1.go @@ -0,0 +1,46 @@ +package main + +func main() { + v := make(map[int] int); + v[0] = 0; + v[1000000] = 1; + if v[0] != 0 { + panic(1) + } + val, present := v[0]; + if !present || val != 0 { + panic(2) + } + val = 5; + val, present = v[1]; + if present || val != 0 { + panic(3); + } + if v[2] != 0 { + panic(4) + } + val, present = v[2]; + if present { + panic(5) + } + if len(v) != 2 { + panic(6) + } + v[0] = 0, false; + if len(v) != 1 { + panic(7) + } + + w := make(map[string] string); + if len(w) != 0 { + panic(8) + } + w["Hello"] = "world"; + w["Goodbye"] = "sweet prince"; + if w["Hello"] != "world" { + panic(9) + } + if w["Hej"] != "" { + panic(10) + } +} diff --git a/gcc/testsuite/go.go-torture/execute/method-1.go b/gcc/testsuite/go.go-torture/execute/method-1.go new file mode 100644 index 0000000..e4c17c1 --- /dev/null +++ b/gcc/testsuite/go.go-torture/execute/method-1.go @@ -0,0 +1,7 @@ +package main +type s struct { i int }; +func (v *s) val() int { return v.i } +func main() { + p := new(s); + if p.val() != 0 { panic(0) } +} diff --git a/gcc/testsuite/go.go-torture/execute/nested-1.go b/gcc/testsuite/go.go-torture/execute/nested-1.go new file mode 100644 index 0000000..cbd96f2 --- /dev/null +++ b/gcc/testsuite/go.go-torture/execute/nested-1.go @@ -0,0 +1,4 @@ +package main +func main() { + if func (i int) int { return i} (0) != 0 { panic(0) } +} diff --git a/gcc/testsuite/go.go-torture/execute/pointer-1.go b/gcc/testsuite/go.go-torture/execute/pointer-1.go new file mode 100644 index 0000000..f6b30a1 --- /dev/null +++ b/gcc/testsuite/go.go-torture/execute/pointer-1.go @@ -0,0 +1,7 @@ +package main + +func main() { + p := new(int); + *p = 0; + if *p != 0 { panic(0) } +} diff --git a/gcc/testsuite/go.go-torture/execute/return-1.go b/gcc/testsuite/go.go-torture/execute/return-1.go new file mode 100644 index 0000000..da29a2c --- /dev/null +++ b/gcc/testsuite/go.go-torture/execute/return-1.go @@ -0,0 +1,4 @@ +package main + +func main() { +} diff --git a/gcc/testsuite/go.go-torture/execute/return-2.go b/gcc/testsuite/go.go-torture/execute/return-2.go new file mode 100644 index 0000000..08b2e61 --- /dev/null +++ b/gcc/testsuite/go.go-torture/execute/return-2.go @@ -0,0 +1,18 @@ +package main + +func fn() (i, j int) { + i = 1; + j = 2; + return; +} + +func main() { + var i, j = fn(); + var ret int; + if i == 1 && j == 2 { + ret = 0; + } else { + ret = 1; + } + if ret != 0 { panic(0) } +} diff --git a/gcc/testsuite/go.go-torture/execute/return-3.go b/gcc/testsuite/go.go-torture/execute/return-3.go new file mode 100644 index 0000000..f7fe09c --- /dev/null +++ b/gcc/testsuite/go.go-torture/execute/return-3.go @@ -0,0 +1,16 @@ +package main + +func fn() (i, j int) { + return 1, 2 +} + +func main() { + var i, j = fn(); + var ret int; + if i == 1 && j == 2 { + ret = 0; + } else { + ret = 1; + } + if ret != 0 { panic(0) } +} diff --git a/gcc/testsuite/go.go-torture/execute/select-1.go b/gcc/testsuite/go.go-torture/execute/select-1.go new file mode 100644 index 0000000..8fc6963 --- /dev/null +++ b/gcc/testsuite/go.go-torture/execute/select-1.go @@ -0,0 +1,28 @@ +package main + +func main() { + ch1 := make(chan int); + ch2 := make(chan int); + go func (ch1, ch2 chan int) { ch1 <- 1; ch2 <- 2; } (ch1, ch2); + count := 0; + var v int; + for count != 2 { + select + { + case v := <- ch1: + if v != 1 { + panic(0) + } + count++ + + case v = <- ch2: + if v != 2 { + panic(1) + } + count++ + } + } + if v != 2 { + panic(2) + } +} diff --git a/gcc/testsuite/go.go-torture/execute/string-1.go b/gcc/testsuite/go.go-torture/execute/string-1.go new file mode 100644 index 0000000..f999d87 --- /dev/null +++ b/gcc/testsuite/go.go-torture/execute/string-1.go @@ -0,0 +1,15 @@ +package main + +func fn(s string) int { + if s[0] != 'a' || s[1] != 'b' || s[2] != 'c' { + panic(0); + } + return len(s); +} + +func main() { + s := "abc"; + if fn(s) != 3 { + panic(1); + } +} diff --git a/gcc/testsuite/go.go-torture/execute/string-2.go b/gcc/testsuite/go.go-torture/execute/string-2.go new file mode 100644 index 0000000..72b0f233 --- /dev/null +++ b/gcc/testsuite/go.go-torture/execute/string-2.go @@ -0,0 +1,16 @@ +package main + +func fn(s string) string { + if len(s) != 3 { + panic(0) + } + i := len(s) - 1; + return s + s[0 : i]; +} + +func main() { + s := fn("abc"); + if s != "abcab" { + panic(1) + } +} diff --git a/gcc/testsuite/go.go-torture/execute/struct-1.go b/gcc/testsuite/go.go-torture/execute/struct-1.go new file mode 100644 index 0000000..edf38b2 --- /dev/null +++ b/gcc/testsuite/go.go-torture/execute/struct-1.go @@ -0,0 +1,8 @@ +package main + +func main() { + type s struct { x int; }; + var ret s; + ret.x = 1; + if ret.x != 1 { panic(0) } +} diff --git a/gcc/testsuite/go.go-torture/execute/struct-2.go b/gcc/testsuite/go.go-torture/execute/struct-2.go new file mode 100644 index 0000000..cc01f6b --- /dev/null +++ b/gcc/testsuite/go.go-torture/execute/struct-2.go @@ -0,0 +1,7 @@ +package main + +func main() { + type s struct { x int; y int; }; + var ret s = s{1, 2}; + if ret.y - (ret.x + ret.x) != 0 { panic(0) } +} diff --git a/gcc/testsuite/go.go-torture/execute/switch-1.go b/gcc/testsuite/go.go-torture/execute/switch-1.go new file mode 100644 index 0000000..fdc93ce --- /dev/null +++ b/gcc/testsuite/go.go-torture/execute/switch-1.go @@ -0,0 +1,68 @@ +package main + +func f1(i int) bool { + switch j := i; j { + case 3: fallthrough + case 1: return true + case 2: return false + default: return false + case 4: return true + } +} + +func f2(i int) int { + switch { + case i < 0: return -1 + case i > 0: return 1 + default: return 0 + case i != 0: return 1000 + } + panic(0) +} + +func f3(i int) int { + lab: + switch i { + case 1: break + case 2: return 2 + case 3, 4: + switch i { + case 3: break lab + case 4: break + } + return 4 + } + return 1 +} + +func main() { + if !f1(1) { + panic(1); + } + if f1(2) { + panic(2); + } + if !f1(3) { + panic(3); + } + if !f1(4) { + panic(4); + } + if f1(5) { + panic(5); + } + + if f2(-100) != -1 { + panic(6); + } + if f2(1000) != 1 { + panic(7); + } + if f2(0) != 0 { + panic(8); + } + + if f3(1) != 1 || f3(2) != 2 || f3(3) != 1 || f3(4) != 4 { + panic(9); + } +} diff --git a/gcc/testsuite/go.go-torture/execute/var-1.go b/gcc/testsuite/go.go-torture/execute/var-1.go new file mode 100644 index 0000000..d4b20b6 --- /dev/null +++ b/gcc/testsuite/go.go-torture/execute/var-1.go @@ -0,0 +1,6 @@ +package main + +func main() { + var ret = 0; + if ret != 0 { panic(0) } +} diff --git a/gcc/testsuite/go.go-torture/execute/var-2.go b/gcc/testsuite/go.go-torture/execute/var-2.go new file mode 100644 index 0000000..dd0ec4e --- /dev/null +++ b/gcc/testsuite/go.go-torture/execute/var-2.go @@ -0,0 +1,6 @@ +package main + +func main() { + var ret int; + if ret != 0 { panic(0) } +} diff --git a/gcc/testsuite/go.go-torture/execute/var-3.go b/gcc/testsuite/go.go-torture/execute/var-3.go new file mode 100644 index 0000000..80b1004 --- /dev/null +++ b/gcc/testsuite/go.go-torture/execute/var-3.go @@ -0,0 +1,6 @@ +package main + +func main() { + ret := 0; + if ret != 0 { panic(0) } +} diff --git a/gcc/testsuite/go.test/go-test.exp b/gcc/testsuite/go.test/go-test.exp new file mode 100644 index 0000000..6226dd1 --- /dev/null +++ b/gcc/testsuite/go.test/go-test.exp @@ -0,0 +1,666 @@ +# Copyright (C) 2009, 2010 Free Software Foundation, Inc. +# Written by Ian Lance Taylor <iant@google.com>. + +# This program is free software; you can redistribute it and/or modify +# it under the terms of the GNU General Public License as published by +# the Free Software Foundation; either version 3 of the License, or +# (at your option) any later version. +# +# This program is distributed in the hope that it will be useful, +# but WITHOUT ANY WARRANTY; without even the implied warranty of +# MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the +# GNU General Public License for more details. +# +# You should have received a copy of the GNU General Public License +# along with GCC; see the file COPYING3. If not see +# <http://www.gnu.org/licenses/>. + + +# Test using the testsuite for the gc Go compiler. In these tests the +# first line is a shell script to run. That line expects the +# following environment variables to be set: +# A The file extension of the object file and the name of the executable +# G The name of the compiler +# L The name of the linker +# F The basename of the test +# D The directory of the test. +# +# Typical command lines: +# // $G $D/$F.go && $L $F.$A && ./$A.out +# // $G $D/$F.go && $L $F.$A || echo BUG: known to fail incorrectly +# // $G $D/$F.go && echo BUG: compilation succeeds incorrectly +# // $G $D/$F.go || echo BUG: compilation should succeed + +load_lib go-dg.exp +load_lib go-torture.exp + +# Implement errchk +proc errchk { test } { + global dg-do-what-default + global DEFAULT_GOCFLAGS + + set saved-dg-do-what-default ${dg-do-what-default} + set dg-do-what-default compile + set filename [file tail $test] + if { "$filename" == "$test" } { + set filename "errchk-$filename" + } + set fdin [open $test r] + fconfigure $fdin -encoding binary + set fdout [open $filename w] + fconfigure $fdout -encoding binary + while { [gets $fdin copy_line] >= 0 } { + regsub "// \(GCCGO_\)?ERROR \"\(\[^\"\]*\)\".*$" $copy_line "// \{ dg-error \"\\2\" \}" out_line + if [string match "*dg-error*.\**" $out_line] { + # I worked out the right number of backslashes by + # experimentation, not analysis. + regsub -all "\\.\\*" $out_line "\\\\\[ -~\\\\\]*" out_line + } + if [string match "*dg-error*\{*" $out_line] { + set index [string first "dg-error" $out_line] + regsub -start $index -all "\{" $out_line "\\\\\[\\\{\\\\\]" out_line + } + if [string match "*dg-error*\}*\}" $out_line] { + set index [string first "dg-error" $out_line] + regsub -start $index -all "\}\(.\)" $out_line "\\\\\[\\\}\\\\\]\\1" out_line + } + if [string match "*dg-error*\[.\]*" $out_line] { + set index [string first "dg-error" $out_line] + regsub -all "\\\[\\.\\\]" $out_line "\\\\\[.\\\\\]" out_line + } + puts $fdout $out_line + } + close $fdin + close $fdout + go-dg-runtest $filename "-fno-show-column $DEFAULT_GOCFLAGS" + file delete $filename + set dg-do-what-default ${saved-dg-do-what-default} +} + +# This is an execution test which should fail. +proc go-execute-xfail { test } { + global DEFAULT_GOCFLAGS + + set filename [file tail $test] + set fdin [open $test r] + set fdout [open $filename w] + puts $fdout "// { dg-do run { xfail *-*-* } }" + while { [gets $fdin copy_line] >= 0 } { + puts $fdout $copy_line + } + close $fdin + close $fdout + go-dg-runtest $filename "-w $DEFAULT_GOCFLAGS" + file delete $filename +} + +proc go-gc-tests { } { + global srcdir subdir + global runtests + global GCC_UNDER_TEST + global TOOL_OPTIONS + global TORTURE_OPTIONS + global dg-do-what-default + global go_execute_args + global target_triplet + + # If a testcase doesn't have special options, use these. + global DEFAULT_GOCFLAGS + if ![info exists DEFAULT_GOCFLAGS] { + set DEFAULT_GOCFLAGS " -pedantic-errors" + } + + # Running all the torture options takes too long and, since the + # frontend ignores the standard options, it doesn't significantly + # improve testing. + set saved_torture_options $TORTURE_OPTIONS + set TORTURE_OPTIONS [ list { -O2 -g }] + + set saved-dg-do-what-default ${dg-do-what-default} + + set testdir [pwd] + + set tests [lsort [find $srcdir/$subdir *.go]] + foreach test $tests { + if ![runtest_file_p $runtests $test] { + continue + } + + # Skip the files in bench and garbage; they are not tests. + if [string match "*go.test/test/bench/*" $test] { + continue + } + if [string match "*go.test/test/garbage/*" $test] { + continue + } + + # Skip files in sub-subdirectories: they are components of + # other tests. + if [string match "*go.test/test/*/*/*" $test] { + continue + } + + set name [dg-trim-dirname $srcdir $test] + + # Skip certain tests if target is RTEMS OS. + if [istarget "*-*-rtems*"] { + if { [string match "*go.test/test/args.go" \ + $test] \ + || [string match "*go.test/test/env.go" \ + $test] } { + untested "$name: uses the command-line or environment variables" + continue + } + + if { [string match "*go.test/test/stack.go" \ + $test] \ + || [string match "*go.test/test/peano.go" \ + $test] \ + || [string match "*go.test/test/chan/goroutines.go" \ + $test] } { + untested "$name: has very high memory requirement" + continue + } + } + + set fd [open $test r] + + set lines_ok 1 + + while 1 { + if { [gets $fd test_line] < 0 } { + close $fd + clone_output "$test: could not read first line" + unresolved $name + set lines_ok 0 + break + } + + if { [ string match "*nacl*exit 0*" $test_line ] \ + || [ string match "*exit 0*nacl*" $test_line ] \ + || [ string match "*Android*exit 0*" $test_line ] \ + || [ string match "*exit 0*Android*" $test_line ] } { + continue + } + + break + } + + if { $lines_ok == 0 } { + continue + } + + set lineno 1 + set test_line1 $test_line + + while { [eval "string match \"//*&&\" \${test_line$lineno}"] } { + set lineno [expr $lineno + 1] + if { [eval "gets \$fd test_line$lineno"] < 0 } { + close $fd + clone_output "$test: could not read line $lineno" + unresolved $name + set lines_ok 0 + break + } + } + if { $lines_ok == 0 } { + continue + } + + close $fd + + set go_execute_args "" + if { [regexp ".*\\\$A.out (\[^|&>\].*)\$" $test_line match progargs] } { + set go_execute_args $progargs + verbose -log "$test: go_execute_args is $go_execute_args" + set index [string last " $progargs" $test_line] + set test_line [string replace $test_line $index end] + } + + if { $test_line == "// \$G \$D/\$F\.go && \$L \$F\.\$A && \./\$A\.out >tmp.go &&" \ + && $test_line2 == "// \$G tmp\.go && \$L tmp\.\$A && \./\$A\.out || echo BUG: 64bit" } { + # 64bit.go is a special case. + set go_execute_args "" + set hold_runtests $runtests + set runtests "go-test.exp" + set dg-do-what-default "link" + dg-test -keep-output $test "-O" "-w $DEFAULT_GOCFLAGS" + set output_file "./[file rootname [file tail $test]].exe" + set base "[file rootname [file tail $test]]" + if [isnative] { + if { [catch "exec $output_file >$base-out.go"] != 0 } { + fail "$name execution" + } else { + pass "$name execution" + file delete $base-out.x + go-torture-execute "./$base-out.go" + } + file delete $base-out.go + } + file delete $output_file + set runtests $hold_runtests + } elseif { $test_line == "// \$G \$D/\$F.go && \$L \$F.\$A && ./\$A.out" \ + || $test_line == "// \$G \$F.go && \$L \$F.\$A && ./\$A.out" \ + || $test_line == "// \$G \$F.go && \$L \$F.\$A &&./\$A.out" \ + || $test_line == "// \$G \$D/\$F.go && \$L \$F.\$A && \$A.out" \ + || [string match \ + "// \$G \$D/\$F.go && \$L \$F.\$A && ./\$A.out || echo BUG*" \ + $test_line] + || [string match \ + "// \$G \$F.go && \$L \$F.\$A && (./\$A.out || echo BUG*" \ + $test_line] + || [string match \ + "// \$G \$D/\$F.go && \$L \$F.\$A && (./\$A.out || echo BUG*" \ + $test_line] + || [string match \ + "// \$G \$F.go && \$L \$F.\$A && GOMAXPROCS=* ./\$A.out" \ + $test_line] + || [string match \ + "// \$G \$D/\$F.go && \$L \$F.\$A && ./\$A.out >* || echo BUG*" \ + $test_line] } { + # This is a vanilla execution test. + go-torture-execute $test + file delete core [glob -nocomplain core.*] + } elseif { [string match \ + "// \$G \$D/\$F.go && \$L \$F.\$A || echo BUG*" \ + $test_line] \ + || [string match "// \$G \$F.go && \$L \$F.\$A #*" \ + $test_line] } { + # This is a vanilla compile and link test. + set dg-do-what-default "link" + go-dg-runtest $test "-w $DEFAULT_GOCFLAGS" + } elseif { [string match "// \$G \$D/\$F.go" $test_line] \ + || [string match "// \$G \$D/\$F.go || echo BUG*" \ + $test_line] \ + || [string match "// \$G \$F.go || echo BUG*" \ + $test_line] \ + || [string match "// ! \$G \$D/\$F.go && echo BUG*" \ + $test_line] } { + # This is a vanilla compile test. + set dg-do-what-default "assemble" + go-dg-runtest $test "-w $DEFAULT_GOCFLAGS" + } elseif { [string match "// \$G \$D/\$F.go && echo BUG*" \ + $test_line] \ + || $test_line == "// ! \$G \$D/\$F.go >/dev/null" \ + || $test_line == "// ! \$G \$D/\$F.go" \ + || $test_line == "// ! \$G \$F.go" \ + || [string match "// ! \$G \$D/\$F.go || echo BUG*" \ + $test_line] } { + # This is a compile test which should fail. + set dg-do-what-default "assemble" + setup_xfail "*-*-*" + go-dg-runtest $test "-w $DEFAULT_GOCFLAGS" + } elseif { [string match "// \$G \$D/\$F.go && \$L \$F.\$A && ! ./\$A.out" \ + $test_line] \ + || [string match "// \$G \$D/\$F.go && \$L \$F.\$A && ! ./\$A.out || echo BUG: *" \ + $test_line] \ + || [string match "// \$G \$D/\$F.go && \$L \$F.\$A && (! ./\$A.out || echo BUG: *" \ + $test_line] \ + || ($test_line == "// \$G \$D/\$F.go && \$L \$F.\$A &&" + && $test_line2 == "// ((! sh -c ./\$A.out) >/dev/null 2>&1 || echo BUG: should fail)") } { + go-execute-xfail $test + } elseif { [string match "// errchk \$G \$F.go" $test_line] \ + || [string match "// errchk \$G -e \$F.go" $test_line] \ + || [string match "// errchk \$G \$D/\$F.go" $test_line] \ + || [string match "//errchk \$G \$D/\$F.go" $test_line] \ + || [string match "// errchk \$G -e \$D/\$F.go" \ + $test_line] \ + || [string match "// ! errchk \$G \$D/\$F.go" $test_line] \ + || [string match "// ! errchk \$G -e \$D/\$F.go" \ + $test_line] \ + || [string match "// errchk \$G \$F.go || true" \ + $test_line] \ + || [string match "// errchk \$G \$D/\$F.go || true" \ + $test_line] \ + || [string match "// errchk \$G -e \$D/\$F.go || true" \ + $test_line] \ + || [string match "// errchk \$G \$D/\$F.go || echo BUG*" \ + $test_line] } { + errchk $test + } elseif { [string match \ + "// \$G \$D/\$F.dir/bug0.go && \$G \$D/\$F.dir/bug1.go || echo BUG*" \ + $test_line] } { + set hold_runtests $runtests + set runtests "go-test.exp" + set dg-do-what-default "assemble" + regsub "\\.go$" $test ".dir/bug0.go" file1 + dg-test -keep-output $file1 "-O" "-w $DEFAULT_GOCFLAGS" + regsub "\\.go$" $test ".dir/bug1.go" file2 + dg-test $file2 "-O" "-w $DEFAULT_GOCFLAGS" + file delete "[file rootname [file tail $file1]].o" + set runtests $hold_runtests + } elseif { [string match \ + "// \$G \$D/\$F.dir/bug0.go && errchk \$G \$D/\$F.dir/bug1.go" \ + $test_line] \ + || [string match \ + "// \$G \$D/\$F.dir/p1.go && \$G \$D/\$F.dir/p2.go" \ + $test_line] } { + if { [string match \ + "// \$G \$D/\$F.dir/p1.go && \$G \$D/\$F.dir/p2.go" \ + $test_line] } { + set name1 "p1.go" + set name2 "p2.go" + } else { + set name1 "bug0.go" + set name2 "bug1.go" + } + set hold_runtests $runtests + set runtests "go-test.exp" + set dg-do-what-default "assemble" + regsub "\\.go$" $test ".dir/$name1" file1 + dg-test -keep-output $file1 "-O" "-w $DEFAULT_GOCFLAGS" + regsub "\\.go$" $test ".dir/$name2" file2 + errchk $file2 + file delete "[file rootname [file tail $file1]].o" + set runtests $hold_runtests + } elseif { [string match \ + "// \$G \$D/\$F.dir/bug0.go && (! \$G \$D/\$F.dir/bug1.go || echo BUG*" \ + $test_line] } { + set hold_runtests $runtests + set runtests "go-test.exp" + set dg-do-what-default "assemble" + regsub "\\.go$" $test ".dir/bug0.go" file1 + dg-test -keep-output $file1 "-O" "-w $DEFAULT_GOCFLAGS" + regsub "\\.go$" $test ".dir/bug1.go" file2 + setup_xfail "*-*-*" + dg-test $file2 "-O" "-w $DEFAULT_GOCFLAGS" + file delete "[file rootname [file tail $file1]].o" + set runtests $hold_runtests + } elseif { [string match \ + "// \$G \$D/\$F.dir/bug0.go && \$G \$D/\$F.dir/bug1.go && (! \$G \$D/\$F.dir/bug2.go || echo BUG*" \ + $test_line] } { + set hold_runtests $runtests + set runtests "go-test.exp" + set dg-do-what-default "assemble" + regsub "\\.go$" $test ".dir/bug0.go" file1 + dg-test -keep-output $file1 "-O" "-w $DEFAULT_GOCFLAGS" + regsub "\\.go$" $test ".dir/bug1.go" file2 + dg-test -keep-output $file2 "-O" "-w $DEFAULT_GOCFLAGS" + regsub "\\.go$" $test ".dir/bug2.go" file3 + setup_xfail "*-*-*" + dg-test $file3 "-O" "-w $DEFAULT_GOCFLAGS" + file delete "[file rootname [file tail $file1]].o" + file delete "[file rootname [file tail $file2]].o" + set runtests $hold_runtests + } elseif { [string match \ + "// \$G \$D/\$F.dir/bug0.go && \$G \$D/\$F.dir/bug1.go && errchk \$G \$D/\$F.dir/bug2.go" \ + $test_line] } { + set hold_runtests $runtests + set runtests "go-test.exp" + set dg-do-what-default "assemble" + regsub "\\.go$" $test ".dir/bug0.go" file1 + dg-test -keep-output $file1 "-O" "-w $DEFAULT_GOCFLAGS" + regsub "\\.go$" $test ".dir/bug1.go" file2 + dg-test -keep-output $file2 "-O" "-w $DEFAULT_GOCFLAGS" + regsub "\\.go$" $test ".dir/bug2.go" file3 + errchk $file3 + file delete "[file rootname [file tail $file1]].o" + file delete "[file rootname [file tail $file2]].o" + set runtests $hold_runtests + } elseif { [string match \ + "// \$G \$D/bug160.dir/x.go && \$G \$D/bug160.dir/y.go && \$L y.\$A && ./\$A.out" \ + $test_line] } { + set hold_runtests $runtests + set runtests "go-test.exp" + set dg-do-what-default "assemble" + regsub "\\.go$" $test ".dir/x.go" file1 + dg-test -keep-output $file1 "-O" "-w $DEFAULT_GOCFLAGS" + set ofile1 "[file rootname [file tail $file1]].o" + regsub "\\.go$" $test ".dir/y.go" file2 + dg-test -keep-output $file2 "-O" "-w $DEFAULT_GOCFLAGS" + set ofile2 "[file rootname [file tail $file2]].o" + set dg-do-what-default "link" + set output_file "./[file rootname [file tail $test]].exe" + set comp_output [go_target_compile "$ofile1 $ofile2" \ + $output_file "executable" "$DEFAULT_GOCFLAGS"] + set comp_output [go-dg-prune $target_triplet $comp_output] + verbose -log $comp_output + set result [go_load "$output_file" "" ""] + set status [lindex $result 0] + $status $name + file delete $ofile1 $ofile2 $output_file + set runtests $hold_runtests + } elseif { [string match \ + "// \$G \$D/bug191.dir/a.go && \$G \$D/bug191.dir/b.go && \$G \$D/\$F.go && \$L \$F.\$A" \ + $test_line] } { + set hold_runtests $runtests + set runtests "go-test.exp" + set dg-do-what-default "assemble" + regsub "\\.go$" $test ".dir/a.go" file1 + dg-test -keep-output $file1 "-O" "-w $DEFAULT_GOCFLAGS" + set ofile1 "[file rootname [file tail $file1]].o" + regsub "\\.go$" $test ".dir/b.go" file2 + dg-test -keep-output $file2 "-O" "-w $DEFAULT_GOCFLAGS" + set ofile2 "[file rootname [file tail $file2]].o" + dg-test -keep-output "$test" "-O" "-w $DEFAULT_GOCFLAGS" + set ofile3 "[file rootname [file tail $test]].o" + set dg-do-what-default "link" + set output_file "./[file rootname [file tail $test]].exe" + set comp_output [go_target_compile "$ofile1 $ofile2 $ofile3" \ + $output_file "executable" "$DEFAULT_GOCFLAGS"] + set comp_output [go-dg-prune $target_triplet $comp_output] + if [string match "" $comp_output] { + pass $name + } else { + verbose -log $comp_output + fail $name + } + file delete $ofile1 $ofile2 $ofile3 $output_file + set runtests $hold_runtests + } elseif { [string match \ + "// \$G \$D/embed0.go && \$G \$D/\$F.go && \$L \$F.\$A && ./\$A.out" \ + $test_line ] } { + set hold_runtests $runtests + set runtests "go-test.exp" + set dg-do-what-default "assemble" + regsub "/\[^/\]*$" $test "/embed0.go" file1 + dg-test -keep-output $file1 "-O" "-w $DEFAULT_GOCFLAGS" + set ofile1 "[file rootname [file tail $file1]].o" + dg-test -keep-output $test "-O" "-w $DEFAULT_GOCFLAGS" + set ofile2 "[file rootname [file tail $test]].o" + set output_file "./[file rootname [file tail $test]].exe" + set comp_output [go_target_compile "$ofile1 $ofile2" \ + $output_file "executable" "$DEFAULT_GOCFLAGS"] + set comp_output [go-dg-prune $target_triplet $comp_output] + if [string match "" $comp_output] { + set result [go_load "$output_file" "" ""] + set status [lindex $result 0] + $status $name + } else { + verbose -log $comp_output + fail $name + } + file delete $ofile1 $ofile2 $output_file + set runtests $hold_runtests + } elseif { [string match \ + "// \$G \$D/\$F.dir/chanbug.go && \$G -I. \$D/\$F.dir/chanbug2.go" \ + $test_line] } { + set hold_runtests $runtests + set runtests "go-test.exp" + set dg-do-what-default "assemble" + regsub "\\.go$" $test ".dir/chanbug.go" file1 + dg-test -keep-output $file1 "-O" "-w $DEFAULT_GOCFLAGS" + regsub "\\.go$" $test ".dir/chanbug2.go" file2 + dg-test $file2 "-O" "-w $DEFAULT_GOCFLAGS" + file delete "[file rootname [file tail $file1]].o" + set runtests $hold_runtests + } elseif { [string match \ + "// (! \$G \$D/\$F.go) | grep 'initialization loop' *" \ + $test_line] } { + set dg-do-what-default "assemble" + setup_xfail "*-*-*" + go-dg-runtest $test "-w $DEFAULT_GOCFLAGS" + } elseif { [string match \ + "// \$G \$D/\$F.dir/x.go && errchk \$G \$D/\$F.dir/y.go" \ + $test_line] } { + set hold_runtests $runtests + set runtests "go-test.exp" + set dg-do-what-default "assemble" + regsub "\\.go$" $test ".dir/x.go" file1 + dg-test -keep-output $file1 "-O" "-w $DEFAULT_GOCFLAGS" + regsub "\\.go$" $test ".dir/y.go" file2 + errchk $file2 + file delete "[file rootname [file tail $file1]].o" + set runtests $hold_runtests + } elseif { [string match "// true*" $test_line] } { + # Not a real test, just ignore. + } elseif { $test_line == "// \$G \$D/\$F.dir/bug0.go &&" \ + && $test_line2 == "// \$G \$D/\$F.dir/bug1.go &&" \ + && $test_line3 == "// \$G \$D/\$F.dir/bug2.go &&" \ + && $test_line4 == "// errchk \$G -e \$D/\$F.dir/bug3.go &&" \ + && $test_line5 == "// \$L bug2.\$A &&" \ + && [string match "// ./\$A.out || echo BUG*" $test_line6] } { + set hold_runtests $runtests + set runtests "go-test.exp" + set dg-do-what-default "assemble" + regsub "\\.go$" $test ".dir/bug0.go" file0 + dg-test -keep-output $file0 "-O -fgo-prefix=bug0" "-w $DEFAULT_GOCFLAGS" + set ofile0 "[file rootname [file tail $file0]].o" + regsub "\\.go$" $test ".dir/bug1.go" file1 + dg-test -keep-output $file1 "-O -fgo-prefix=bug1" "-w $DEFAULT_GOCFLAGS" + set ofile1 "[file rootname [file tail $file1]].o" + regsub "\\.go$" $test ".dir/bug2.go" file2 + dg-test -keep-output $file2 "-O" "-w $DEFAULT_GOCFLAGS" + set ofile2 "[file rootname [file tail $file2]].o" + regsub "\\.go$" $test ".dir/bug3.go" file3 + errchk $file3 + set output_file "./[file rootname [file tail $test]].exe" + set comp_output [go_target_compile "$ofile0 $ofile1 $ofile2" \ + $output_file "executable" "$DEFAULT_GOCFLAGS"] + set comp-output [go-dg-prune $target_triplet $comp_output] + if [string match "" $comp_output] { + set result [go_load "$output_file" "" ""] + set status [lindex $result 0] + $status $name + } else { + verbose -log $comp_output + fail $name + } + file delete $ofile0 $ofile1 $ofile2 $output_file + set runtests $hold_runtests + } elseif { $test_line == "// \$G \$D/import2.go && \$G \$D/\$F\.go" } { + set hold_runtests $runtests + set runtests "go-test.exp" + set dg-do-what-default "assemble" + regsub "/\[^/\]*$" $test "/import2.go" file1 + dg-test -keep-output $file1 "-O" "-w $DEFAULT_GOCFLAGS" + set ofile1 "[file rootname [file tail $file1]].o" + dg-test $test "-O" "-w $DEFAULT_GOCFLAGS" + file delete $ofile1 + set runtests $hold_runtests + } elseif { $test_line == "// \$G \$D/ddd2.go && \$G \$D/\$F.go && \$L \$F.\$A && ./\$A.out" } { + set hold_runtests $runtests + set runtests "go-test.exp" + set dg-do-what-default "assemble" + regsub "/\[^/\]*$" $test "/ddd2.go" file1 + dg-test -keep-output $file1 "-O" "-w $DEFAULT_GOCFLAGS" + set ofile1 "[file rootname [file tail $file1]].o" + dg-test -keep-output $test "-O" "-w $DEFAULT_GOCFLAGS" + set ofile2 "[file rootname [file tail $test]].o" + set output_file "./[file rootname [file tail $test]].exe" + set comp_output [go_target_compile "$ofile1 $ofile2" \ + $output_file "executable" "$DEFAULT_GOCFLAGS"] + set comp_output [go-dg-prune $target_triplet $comp_output] + if [string match "" $comp_output] { + set result [go_load "$output_file" "" ""] + set status [lindex $result 0] + $status $name + } else { + verbose -log $comp_output + fail $name + } + file delete $ofile1 $ofile2 $output_file + set runtests $hold_runtests + } elseif { $test_line == "// \$G \$D/\$F.go \$D/cmplxdivide1.go && \$L \$D/\$F.\$A && ./\$A.out" } { + regsub "/\[^/\]*$" $test "/cmplxdivide1.go" test2 + set output_file "./[file rootname [file tail $test]].o" + set comp_output [go_target_compile "$test $test2" \ + $output_file "executable" "$DEFAULT_GOCFLAGS"] + set comp_output [go-dg-prune $target_triplet $comp_output] + if [string match "" $comp_output] { + set result [go_load "$output_file" "" ""] + set status [lindex $result 0] + $status $name + } else { + verbose -log $comp_output + fail $name + } + file delete $output_file + } elseif { $test_line == "// \$G \$D/\$F.go && \$L \$F.\$A &&" \ + && $test_line2 == "// ./\$A.out -pass 0 >tmp.go && \$G tmp.go && \$L -o tmp1.\$A tmp.\$A && ./tmp1.\$A &&" \ + && $test_line3 == "// ./\$A.out -pass 1 >tmp.go && errchk \$G -e tmp.go &&" \ + && $test_line4 == "// ./\$A.out -pass 2 >tmp.go && errchk \$G -e tmp.go" } { + set go_execute_args "" + set hold_runtests $runtests + set runtests "go-test.exp" + set dg-do-what-default "link" + dg-test -keep-output $test "-O" "-w $DEFAULT_GOCFLAGS" + set output_file "./[file rootname [file tail $test]].exe" + if [isnative] { + if { [catch "exec $output_file -pass 0 >tmp.go"] != 0 } { + fail "$name execution 0" + } else { + pass "$name execution 0" + file delete tmp.x + go-torture-execute "./tmp.go" + } + if { [catch "exec $output_file -pass 1 >tmp.go"] != 0 } { + fail "$name execution 1" + } else { + pass "$name execution 1" + errchk tmp.go + } + if { [catch "exec $output_file -pass 2 >tmp.go"] != 0 } { + fail "$name execution 2" + } else { + pass "$name execution 2" + errchk tmp.go + } + file delete tmp.go + } + file delete $output_file + set runtests $hold_runtests + } elseif { $test_line == "// \$G \$D/\$F.go && \$L \$F.\$A && ./\$A.out >tmp.go &&" \ + && $test_line2 == "// errchk \$G -e tmp.go" } { + set go_execute_args "" + set hold_runtests $runtests + set runtests "go-test.exp" + set dg-do-what-default "link" + dg-test -keep-output $test "-O" "-w $DEFAULT_GOCFLAGS" + set output_file "./[file rootname [file tail $test]].exe" + if [isnative] { + if { [catch "exec $output_file >tmp.go"] != 0 } { + fail "$name execution" + } else { + pass "$name execution" + file delete tmp.x + errchk tmp.go + } + } + file delete $output_file + set runtests $hold_runtests + } elseif { $test_line == "// # generated by cmplxdivide.c" } { + # Ignore. + } elseif { $test_line == "// \$G \$D/bug302.dir/p.go && gopack grc pp.a p.\$A && \$G \$D/bug302.dir/main.go" \ + || $test_line == "// \$G \$D/empty.go && errchk \$G \$D/\$F.go" } { + # These tests import the same package under two different + # names, which gccgo does not support. + } elseif { $test_line == "// \$G -S \$D/\$F.go | egrep initdone >/dev/null && echo FAIL || true" } { + # This tests whether initializers are written out + # statically. gccgo does not provide a way to test that, + # as an initializer will be generated for any code which + # has global variables which need to be registered as GC + # roots. + } else { + clone_output "$name: unrecognized test line: $test_line" + unsupported $name + } + + set go_execute_args "" + } + + set dg-do-what-default ${saved-dg-do-what-default} + set TORTURE_OPTIONS $saved_torture_options +} + +go-gc-tests diff --git a/gcc/testsuite/go.test/test/235.go b/gcc/testsuite/go.test/test/235.go new file mode 100644 index 0000000..03143a6 --- /dev/null +++ b/gcc/testsuite/go.test/test/235.go @@ -0,0 +1,72 @@ +// $G $F.go && $L $F.$A && ./$A.out + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package main + +type T chan uint64 + +func M(f uint64) (in, out T) { + in = make(T, 100) + out = make(T, 100) + go func(in, out T, f uint64) { + for { + out <- f*<-in + } + }(in, out, f) + return in, out +} + + +func min(xs []uint64) uint64 { + m := xs[0] + for i := 1; i < len(xs); i++ { + if xs[i] < m { + m = xs[i] + } + } + return m +} + + +func main() { + F := []uint64{2, 3, 5} + var n = len(F) + OUT := []uint64{ + 2, 3, 4, 5, 6, 8, 9, 10, 12, 15, 16, 18, 20, 24, 25, 27, 30, 32, 36, + 40, 45, 48, 50, 54, 60, 64, 72, 75, 80, 81, 90, 96, 100, 108, 120, 125, + 128, 135, 144, 150, 160, 162, 180, 192, 200, 216, 225, 240, 243, 250, + 256, 270, 288, 300, 320, 324, 360, 375, 384, 400, 405, 432, 450, 480, + 486, 500, 512, 540, 576, 600, 625, 640, 648, 675, 720, 729, 750, 768, + 800, 810, 864, 900, 960, 972, 1000, 1024, 1080, 1125, 1152, 1200, 1215, + 1250, 1280, 1296, 1350, 1440, 1458, 1500, 1536, 1600} + + x := uint64(1) + ins := make([]T, n) + outs := make([]T, n) + xs := make([]uint64, n) + for i := 0; i < n; i++ { + ins[i], outs[i] = M(F[i]) + xs[i] = x + } + + for i := 0; i < len(OUT); i++ { + for i := 0; i < n; i++ { + ins[i] <- x + } + + for i := 0; i < n; i++ { + if xs[i] == x { + xs[i] = <-outs[i] + } + } + + x = min(xs) + if x != OUT[i] { + println("bad: ", x, " should be ", OUT[i]) + panic("235") + } + } +} diff --git a/gcc/testsuite/go.test/test/64bit.go b/gcc/testsuite/go.test/test/64bit.go new file mode 100644 index 0000000..9e91a97 --- /dev/null +++ b/gcc/testsuite/go.test/test/64bit.go @@ -0,0 +1,709 @@ +// $G $D/$F.go && $L $F.$A && ./$A.out >tmp.go && +// $G tmp.go && $L tmp.$A && ./$A.out || echo BUG: 64bit +// rm -f tmp.go + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +// Generate test of 64-bit arithmetic. +// Most synthesized routines have different cases for +// constants vs variables and even the generated code has +// different cases for large and small constants, +// so try a good range of inputs. + +package main + +import ( + "bufio" + "fmt" + "os" +) + +var bout *bufio.Writer + +// 64-bit math without using 64-bit numbers, +// so that we can generate the test program even +// if the compiler has buggy or missing 64-bit support. + +type Uint64 struct { + hi uint32 + lo uint32 +} + +type Int64 struct { + hi int32 + lo uint32 +} + +func (a Uint64) Int64() (c Int64) { + c.hi = int32(a.hi) + c.lo = a.lo + return +} + +func (a Uint64) Cmp(b Uint64) int { + switch { + case a.hi < b.hi: + return -1 + case a.hi > b.hi: + return 1 + case a.lo < b.lo: + return -1 + case a.lo > b.lo: + return 1 + } + return 0 +} + +func (a Uint64) LeftShift(b uint) (c Uint64) { + switch { + case b >= 64: + c.hi = 0 + c.lo = 0 + case b >= 32: + c.hi = a.lo << (b - 32) + c.lo = 0 + default: + c.hi = a.hi<<b | a.lo>>(32-b) + c.lo = a.lo << b + } + return +} + +func (a Uint64) RightShift(b uint) (c Uint64) { + switch { + case b >= 64: + c.hi = 0 + c.lo = a.hi + case b >= 32: + c.hi = 0 + c.lo = a.hi >> (b - 32) + default: + c.hi = a.hi >> b + c.lo = a.hi<<(32-b) | a.lo>>b + } + return +} + +func (a Uint64) LeftShift64(b Uint64) (c Uint64) { + if b.hi != 0 || b.lo >= 64 { + return + } + return a.LeftShift(uint(b.lo)) +} + +func (a Uint64) RightShift64(b Uint64) (c Uint64) { + if b.hi != 0 || b.lo >= 64 { + return + } + return a.RightShift(uint(b.lo)) +} + +func (a Uint64) Plus(b Uint64) (c Uint64) { + var carry uint32 + if c.lo = a.lo + b.lo; c.lo < a.lo { + carry = 1 + } + c.hi = a.hi + b.hi + carry + return +} + +func (a Uint64) Minus(b Uint64) (c Uint64) { + var borrow uint32 + if c.lo = a.lo - b.lo; c.lo > a.lo { + borrow = 1 + } + c.hi = a.hi - b.hi - borrow + return +} + +func (a Uint64) Neg() (c Uint64) { + var zero Uint64 + return zero.Minus(a) +} + +func (a Uint64) Com() (c Uint64) { + c.hi = ^a.hi + c.lo = ^a.lo + return +} + +func (a Uint64) Len() int { + switch { + case a.hi != 0: + for i := 31; i >= 0; i-- { + if a.hi&(1<<uint(i)) != 0 { + return i + 1 + 32 + } + } + case a.lo != 0: + for i := 31; i >= 0; i-- { + if a.lo&(1<<uint(i)) != 0 { + return i + 1 + } + } + } + return 0 +} + +func (a Uint64) HasBit(b uint) bool { + switch { + case b >= 64: + return false + case b >= 32: + return a.hi&(1<<(b-32)) != 0 + } + return a.lo&(1<<b) != 0 +} + +func (a Uint64) Times(b Uint64) (c Uint64) { + for i := uint(0); i < 64; i++ { + if b.HasBit(i) { + c = c.Plus(a.LeftShift(i)) + } + } + return +} + +func (a Uint64) DivMod(b Uint64) (quo, rem Uint64) { + n := a.Len() - b.Len() + if n >= 0 { + b = b.LeftShift(uint(n)) + for i := 0; i <= n; i++ { + quo = quo.LeftShift(1) + if b.Cmp(a) <= 0 { // b <= a + quo.lo |= 1 + a = a.Minus(b) + } + b = b.RightShift(1) + } + } + rem = a + return +} + +func (a Uint64) And(b Uint64) (c Uint64) { + c.hi = a.hi & b.hi + c.lo = a.lo & b.lo + return +} + +func (a Uint64) AndNot(b Uint64) (c Uint64) { + c.hi = a.hi &^ b.hi + c.lo = a.lo &^ b.lo + return +} + +func (a Uint64) Or(b Uint64) (c Uint64) { + c.hi = a.hi | b.hi + c.lo = a.lo | b.lo + return +} + +func (a Uint64) Xor(b Uint64) (c Uint64) { + c.hi = a.hi ^ b.hi + c.lo = a.lo ^ b.lo + return +} + +func (a Uint64) String() string { return fmt.Sprintf("%#x%08x", a.hi, a.lo) } + +func (a Int64) Uint64() (c Uint64) { + c.hi = uint32(a.hi) + c.lo = a.lo + return +} + +func (a Int64) Cmp(b Int64) int { + // Same body as Uint64.Cmp, + // but behaves differently + // because hi is uint32 not int32. + switch { + case a.hi < b.hi: + return -1 + case a.hi > b.hi: + return 1 + case a.lo < b.lo: + return -1 + case a.lo > b.lo: + return 1 + } + return 0 +} + +func (a Int64) LeftShift(b uint) (c Int64) { return a.Uint64().LeftShift(b).Int64() } + +func (a Int64) RightShift(b uint) (c Int64) { + switch { + case b >= 64: + c.hi = a.hi >> 31 // sign extend + c.lo = uint32(c.hi) + case b >= 32: + c.hi = a.hi >> 31 // sign extend + c.lo = uint32(a.hi >> (b - 32)) + default: + c.hi = a.hi >> b + c.lo = uint32(a.hi<<(32-b)) | a.lo>>b + } + return +} + +func (a Int64) LeftShift64(b Uint64) (c Int64) { + if b.hi != 0 || b.lo >= 64 { + return + } + return a.LeftShift(uint(b.lo)) +} + +func (a Int64) RightShift64(b Uint64) (c Int64) { + if b.hi != 0 || b.lo >= 64 { + return a.RightShift(64) + } + return a.RightShift(uint(b.lo)) +} + +func (a Int64) Plus(b Int64) (c Int64) { return a.Uint64().Plus(b.Uint64()).Int64() } + +func (a Int64) Minus(b Int64) (c Int64) { return a.Uint64().Minus(b.Uint64()).Int64() } + +func (a Int64) Neg() (c Int64) { return a.Uint64().Neg().Int64() } + +func (a Int64) Com() (c Int64) { return a.Uint64().Com().Int64() } + +func (a Int64) Times(b Int64) (c Int64) { return a.Uint64().Times(b.Uint64()).Int64() } + +func (a Int64) DivMod(b Int64) (quo Int64, rem Int64) { + var zero Int64 + + quoSign := +1 + remSign := +1 + if a.Cmp(zero) < 0 { + quoSign = -1 + remSign = -1 + a = a.Neg() + } + if b.Cmp(zero) < 0 { + quoSign = -quoSign + b = b.Neg() + } + + q, r := a.Uint64().DivMod(b.Uint64()) + quo = q.Int64() + rem = r.Int64() + + if quoSign < 0 { + quo = quo.Neg() + } + if remSign < 0 { + rem = rem.Neg() + } + return +} + +func (a Int64) And(b Int64) (c Int64) { return a.Uint64().And(b.Uint64()).Int64() } + +func (a Int64) AndNot(b Int64) (c Int64) { return a.Uint64().AndNot(b.Uint64()).Int64() } + +func (a Int64) Or(b Int64) (c Int64) { return a.Uint64().Or(b.Uint64()).Int64() } + +func (a Int64) Xor(b Int64) (c Int64) { return a.Uint64().Xor(b.Uint64()).Int64() } + +func (a Int64) String() string { + if a.hi < 0 { + return fmt.Sprintf("-%s", a.Neg().Uint64()) + } + return a.Uint64().String() +} + +var int64Values = []Int64{ + Int64{0, 0}, + Int64{0, 1}, + Int64{0, 2}, + Int64{0, 3}, + Int64{0, 100}, + Int64{0, 10001}, + Int64{0, 1<<31 - 1}, + Int64{0, 1 << 31}, + Int64{0, 1<<31 + 1}, + Int64{0, 1<<32 - 1<<30}, + Int64{0, 1<<32 - 1}, + Int64{1, 0}, + Int64{1, 1}, + Int64{2, 0}, + Int64{1<<31 - 1, 1<<32 - 10000}, + Int64{1<<31 - 1, 1<<32 - 1}, + Int64{0x789abcde, 0xf0123456}, + + Int64{-1, 1<<32 - 1}, + Int64{-1, 1<<32 - 2}, + Int64{-1, 1<<32 - 3}, + Int64{-1, 1<<32 - 100}, + Int64{-1, 1<<32 - 10001}, + Int64{-1, 1<<32 - (1<<31 - 1)}, + Int64{-1, 1<<32 - 1<<31}, + Int64{-1, 1<<32 - (1<<31 + 1)}, + Int64{-1, 1<<32 - (1<<32 - 1<<30)}, + Int64{-1, 0}, + Int64{-1, 1}, + Int64{-2, 0}, + Int64{-(1 << 31), 10000}, + Int64{-(1 << 31), 1}, + Int64{-(1 << 31), 0}, + Int64{-0x789abcde, 0xf0123456}, +} + +var uint64Values = []Uint64{ + Uint64{0, 0}, + Uint64{0, 1}, + Uint64{0, 2}, + Uint64{0, 3}, + Uint64{0, 100}, + Uint64{0, 10001}, + Uint64{0, 1<<31 - 1}, + Uint64{0, 1 << 31}, + Uint64{0, 1<<31 + 1}, + Uint64{0, 1<<32 - 1<<30}, + Uint64{0, 1<<32 - 1}, + Uint64{1, 0}, + Uint64{1, 1}, + Uint64{2, 0}, + Uint64{1<<31 - 1, 1<<32 - 10000}, + Uint64{1<<31 - 1, 1<<32 - 1}, + Uint64{1<<32 - 1<<30, 0}, + Uint64{1<<32 - 1, 0}, + Uint64{1<<32 - 1, 1<<32 - 100}, + Uint64{1<<32 - 1, 1<<32 - 1}, + Uint64{0x789abcde, 0xf0123456}, + Uint64{0xfedcba98, 0x76543210}, +} + +var shiftValues = []Uint64{ + Uint64{0, 0}, + Uint64{0, 1}, + Uint64{0, 2}, + Uint64{0, 3}, + Uint64{0, 15}, + Uint64{0, 16}, + Uint64{0, 17}, + Uint64{0, 31}, + Uint64{0, 32}, + Uint64{0, 33}, + Uint64{0, 61}, + Uint64{0, 62}, + Uint64{0, 63}, + Uint64{0, 64}, + Uint64{0, 65}, + Uint64{0, 1<<32 - 1}, + Uint64{1, 0}, + Uint64{1, 1}, + Uint64{1 << 28, 0}, + Uint64{1 << 31, 0}, + Uint64{1<<32 - 1, 0}, + Uint64{1<<32 - 1, 1<<32 - 1}, +} + +var ntest = 0 + +// Part 1 is tests of variable operations; generic functions +// called by repetitive code. Could make a table but not worth it. + +const prolog = "\n" + + "package main\n" + + "\n" + + "import \"os\"\n" + + "\n" + + "var ok = true\n" + + "\n" + + "func testInt64Unary(a, plus, xor, minus int64) {\n" + + " if n, op, want := +a, `+`, plus; n != want { ok=false; println(`int64`, op, a, `=`, n, `should be`, want); }\n" + + " if n, op, want := ^a, `^`, xor; n != want { ok=false; println(`int64`, op, a, `=`, n, `should be`, want); }\n" + + " if n, op, want := -a, `-`, minus; n != want { ok=false; println(`int64`, op, a, `=`, n, `should be`, want); }\n" + + "}\n" + + "\n" + + "func testInt64Binary(a, b, add, sub, mul, div, mod, and, or, xor, andnot int64, dodiv bool) {\n" + + " if n, op, want := a + b, `+`, add; n != want { ok=false; println(`int64`, a, op, b, `=`, n, `should be`, want); }\n" + + " if n, op, want := a - b, `-`, sub; n != want { ok=false; println(`int64`, a, op, b, `=`, n, `should be`, want); }\n" + + " if n, op, want := a * b, `*`, mul; n != want { ok=false; println(`int64`, a, op, b, `=`, n, `should be`, want); }\n" + + " if dodiv {\n" + + " if n, op, want := a / b, `/`, div; n != want { ok=false; println(`int64`, a, op, b, `=`, n, `should be`, want); }\n" + + " if n, op, want := a % b, `%`, mod; n != want { ok=false; println(`int64`, a, op, b, `=`, n, `should be`, want); }\n" + + " }\n" + + " if n, op, want := a & b, `&`, and; n != want { ok=false; println(`int64`, a, op, b, `=`, n, `should be`, want); }\n" + + " if n, op, want := a | b, `|`, or; n != want { ok=false; println(`int64`, a, op, b, `=`, n, `should be`, want); }\n" + + " if n, op, want := a ^ b, `^`, xor; n != want { ok=false; println(`int64`, a, op, b, `=`, n, `should be`, want); }\n" + + " if n, op, want := a &^ b, `&^`, andnot; n != want { ok=false; println(`int64`, a, op, b, `=`, n, `should be`, want); }\n" + + "}\n" + + "\n" + + "func testInt64Shift(a int64, b uint64, left, right int64) {\n" + + " if n, op, s, want := a << b, `<<`, b, left; n != want { ok=false; println(`int64`, a, op, `uint64`, s, `=`, n, `should be`, want); }\n" + + " if n, op, s, want := a >> b, `>>`, b, right; n != want { ok=false; println(`int64`, a, op, `uint64`, s, `=`, n, `should be`, want); }\n" + + " if uint64(uint(b)) == b {\n" + + " b := uint(b);\n" + + " if n, op, s, want := a << b, `<<`, b, left; n != want { ok=false; println(`int64`, a, op, `uint`, s, `=`, n, `should be`, want); }\n" + + " if n, op, s, want := a >> b, `>>`, b, right; n != want { ok=false; println(`int64`, a, op, `uint`, s, `=`, n, `should be`, want); }\n" + + " }\n" + + " if uint64(uint32(b)) == b {\n" + + " b := uint32(b);\n" + + " if n, op, s, want := a << b, `<<`, b, left; n != want { ok=false; println(`int64`, a, op, `uint32`, s, `=`, n, `should be`, want); }\n" + + " if n, op, s, want := a >> b, `>>`, b, right; n != want { ok=false; println(`int64`, a, op, `uint32`, s, `=`, n, `should be`, want); }\n" + + " }\n" + + " if uint64(uint16(b)) == b {\n" + + " b := uint16(b);\n" + + " if n, op, s, want := a << b, `<<`, b, left; n != want { ok=false; println(`int64`, a, op, `uint16`, s, `=`, n, `should be`, want); }\n" + + " if n, op, s, want := a >> b, `>>`, b, right; n != want { ok=false; println(`int64`, a, op, `uint16`, s, `=`, n, `should be`, want); }\n" + + " }\n" + + " if uint64(uint8(b)) == b {\n" + + " b := uint8(b);\n" + + " if n, op, s, want := a << b, `<<`, b, left; n != want { ok=false; println(`int64`, a, op, `uint8`, s, `=`, n, `should be`, want); }\n" + + " if n, op, s, want := a >> b, `>>`, b, right; n != want { ok=false; println(`int64`, a, op, `uint8`, s, `=`, n, `should be`, want); }\n" + + " }\n" + + "}\n" + + "\n" + + "func testUint64Unary(a, plus, xor, minus uint64) {\n" + + " if n, op, want := +a, `+`, plus; n != want { ok=false; println(`uint64`, op, a, `=`, n, `should be`, want); }\n" + + " if n, op, want := ^a, `^`, xor; n != want { ok=false; println(`uint64`, op, a, `=`, n, `should be`, want); }\n" + + " if n, op, want := -a, `-`, minus; n != want { ok=false; println(`uint64`, op, a, `=`, n, `should be`, want); }\n" + + "}\n" + + "\n" + + "func testUint64Binary(a, b, add, sub, mul, div, mod, and, or, xor, andnot uint64, dodiv bool) {\n" + + " if n, op, want := a + b, `+`, add; n != want { ok=false; println(`uint64`, a, op, b, `=`, n, `should be`, want); }\n" + + " if n, op, want := a - b, `-`, sub; n != want { ok=false; println(`uint64`, a, op, b, `=`, n, `should be`, want); }\n" + + " if n, op, want := a * b, `*`, mul; n != want { ok=false; println(`uint64`, a, op, b, `=`, n, `should be`, want); }\n" + + " if dodiv {\n" + + " if n, op, want := a / b, `/`, div; n != want { ok=false; println(`uint64`, a, op, b, `=`, n, `should be`, want); }\n" + + " if n, op, want := a % b, `%`, mod; n != want { ok=false; println(`uint64`, a, op, b, `=`, n, `should be`, want); }\n" + + " }\n" + + " if n, op, want := a & b, `&`, and; n != want { ok=false; println(`uint64`, a, op, b, `=`, n, `should be`, want); }\n" + + " if n, op, want := a | b, `|`, or; n != want { ok=false; println(`uint64`, a, op, b, `=`, n, `should be`, want); }\n" + + " if n, op, want := a ^ b, `^`, xor; n != want { ok=false; println(`uint64`, a, op, b, `=`, n, `should be`, want); }\n" + + " if n, op, want := a &^ b, `&^`, andnot; n != want { ok=false; println(`uint64`, a, op, b, `=`, n, `should be`, want); }\n" + + "}\n" + + "\n" + + "func testUint64Shift(a, b, left, right uint64) {\n" + + " if n, op, s, want := a << b, `<<`, b, left; n != want { ok=false; println(`uint64`, a, op, `uint64`, s, `=`, n, `should be`, want); }\n" + + " if n, op, s, want := a >> b, `>>`, b, right; n != want { ok=false; println(`uint64`, a, op, `uint64`, s, `=`, n, `should be`, want); }\n" + + " if uint64(uint(b)) == b {\n" + + " b := uint(b);\n" + + " if n, op, s, want := a << b, `<<`, b, left; n != want { ok=false; println(`uint64`, a, op, `uint`, s, `=`, n, `should be`, want); }\n" + + " if n, op, s, want := a >> b, `>>`, b, right; n != want { ok=false; println(`uint64`, a, op, `uint`, s, `=`, n, `should be`, want); }\n" + + " }\n" + + " if uint64(uint32(b)) == b {\n" + + " b := uint32(b);\n" + + " if n, op, s, want := a << b, `<<`, b, left; n != want { ok=false; println(`uint64`, a, op, `uint32`, s, `=`, n, `should be`, want); }\n" + + " if n, op, s, want := a >> b, `>>`, b, right; n != want { ok=false; println(`uint64`, a, op, `uint32`, s, `=`, n, `should be`, want); }\n" + + " }\n" + + " if uint64(uint16(b)) == b {\n" + + " b := uint16(b);\n" + + " if n, op, s, want := a << b, `<<`, b, left; n != want { ok=false; println(`uint64`, a, op, `uint16`, s, `=`, n, `should be`, want); }\n" + + " if n, op, s, want := a >> b, `>>`, b, right; n != want { ok=false; println(`uint64`, a, op, `uint16`, s, `=`, n, `should be`, want); }\n" + + " }\n" + + " if uint64(uint8(b)) == b {\n" + + " b := uint8(b);\n" + + " if n, op, s, want := a << b, `<<`, b, left; n != want { ok=false; println(`uint64`, a, op, `uint8`, s, `=`, n, `should be`, want); }\n" + + " if n, op, s, want := a >> b, `>>`, b, right; n != want { ok=false; println(`uint64`, a, op, `uint8`, s, `=`, n, `should be`, want); }\n" + + " }\n" + + "}\n" + + "\n" + +func varTests() { + fmt.Fprint(bout, prolog) + for _, a := range int64Values { + fmt.Fprintf(bout, "func test%v() {\n", ntest) + ntest++ + fmt.Fprintf(bout, "\ttestInt64Unary(%v, %v, %v, %v);\n", a, a, a.Com(), a.Neg()) + for _, b := range int64Values { + var div, mod Int64 + dodiv := false + var zero Int64 + if b.Cmp(zero) != 0 { // b != 0 + // Can't divide by zero but also can't divide -0x8000...000 by -1. + var bigneg = Int64{-0x80000000, 0} + var minus1 = Int64{-1, ^uint32(0)} + if a.Cmp(bigneg) != 0 || b.Cmp(minus1) != 0 { // a != -1<<63 || b != -1 + div, mod = a.DivMod(b) + dodiv = true + } + } + fmt.Fprintf(bout, "\ttestInt64Binary(%v, %v, %v, %v, %v, %v, %v, %v, %v, %v, %v, %v);\n", + a, b, a.Plus(b), a.Minus(b), a.Times(b), div, mod, + a.And(b), a.Or(b), a.Xor(b), a.AndNot(b), dodiv) + } + for _, b := range shiftValues { + fmt.Fprintf(bout, "\ttestInt64Shift(%v, %v, %v, %v);\n", + a, b, a.LeftShift64(b), a.RightShift64(b)) + } + fmt.Fprintf(bout, "}\n") + } + + for _, a := range uint64Values { + fmt.Fprintf(bout, "func test%v() {\n", ntest) + ntest++ + fmt.Fprintf(bout, "\ttestUint64Unary(%v, %v, %v, %v);\n", a, a, a.Com(), a.Neg()) + for _, b := range uint64Values { + var div, mod Uint64 + dodiv := false + var zero Uint64 + if b.Cmp(zero) != 0 { // b != 0 + div, mod = a.DivMod(b) + dodiv = true + } + fmt.Fprintf(bout, "\ttestUint64Binary(%v, %v, %v, %v, %v, %v, %v, %v, %v, %v, %v, %v);\n", + a, b, a.Plus(b), a.Minus(b), a.Times(b), div, mod, + a.And(b), a.Or(b), a.Xor(b), a.AndNot(b), dodiv) + } + for _, b := range shiftValues { + fmt.Fprintf(bout, "\ttestUint64Shift(%v, %v, %v, %v);\n", + a, b, a.LeftShift64(b), a.RightShift64(b)) + } + fmt.Fprintf(bout, "}\n") + } +} + +// Part 2 is tests of operations involving one variable and one constant. + +const binaryConstL = "func test%vBinaryL%v(b, add, sub, mul, div, mod, and, or, xor, andnot %v, dodiv bool) {\n" + + " const a %v = %v;\n" + + " const typ = `%s`;\n" + + " if n, op, want := a + b, `+`, add; n != want { ok=false; println(typ, `const`, a, op, `var`, b, `=`, n, `should be`, want); }\n" + + " if n, op, want := a - b, `-`, sub; n != want { ok=false; println(typ, `const`, a, op, `var`, b, `=`, n, `should be`, want); }\n" + + " if n, op, want := a * b, `*`, mul; n != want { ok=false; println(typ, `const`, a, op, `var`, b, `=`, n, `should be`, want); }\n" + + " if dodiv {\n" + + " if n, op, want := a / b, `/`, div; n != want { ok=false; println(typ, `const`, a, op, `var`, b, `=`, n, `should be`, want); }\n" + + " if n, op, want := a %% b, `%%`, mod; n != want { ok=false; println(typ, `const`, a, op, `var`, b, `=`, n, `should be`, want); }\n" + + " }\n" + + " if n, op, want := a & b, `&`, and; n != want { ok=false; println(typ, `const`, a, op, `var`, b, `=`, n, `should be`, want); }\n" + + " if n, op, want := a | b, `|`, or; n != want { ok=false; println(typ, `const`, a, op, `var`, b, `=`, n, `should be`, want); }\n" + + " if n, op, want := a ^ b, `^`, xor; n != want { ok=false; println(typ, `const`, a, op, `var`, b, `=`, n, `should be`, want); }\n" + + " if n, op, want := a &^ b, `&^`, andnot; n != want { ok=false; println(typ, `const`, a, op, `var`, b, `=`, n, `should be`, want); }\n" + + "}\n" + + "\n" + +const binaryConstR = "func test%vBinaryR%v(a, add, sub, mul, div, mod, and, or, xor, andnot %v, dodiv bool) {\n" + + " const b %v = %v;\n" + + " const typ = `%s`;\n" + + " if n, op, want := a + b, `+`, add; n != want { ok=false; println(typ, `var`, a, op, `const`, b, `=`, n, `should be`, want); }\n" + + " if n, op, want := a - b, `-`, sub; n != want { ok=false; println(typ, `var`, a, op, `const`, b, `=`, n, `should be`, want); }\n" + + " if n, op, want := a * b, `*`, mul; n != want { ok=false; println(typ, `var`, a, op, `const`, b, `=`, n, `should be`, want); }\n" + + " if dodiv {\n" + + " if n, op, want := a / b, `/`, div; n != want { ok=false; println(typ, `var`, a, op, `const`, b, `=`, n, `should be`, want); }\n" + + " if n, op, want := a %% b, `%%`, mod; n != want { ok=false; println(typ, `var`, a, op, `const`, b, `=`, n, `should be`, want); }\n" + + " }\n" + + " if n, op, want := a & b, `&`, and; n != want { ok=false; println(typ, `var`, a, op, `const`, b, `=`, n, `should be`, want); }\n" + + " if n, op, want := a | b, `|`, or; n != want { ok=false; println(typ, `var`, a, op, `const`, b, `=`, n, `should be`, want); }\n" + + " if n, op, want := a ^ b, `^`, xor; n != want { ok=false; println(typ, `var`, a, op, `const`, b, `=`, n, `should be`, want); }\n" + + " if n, op, want := a &^ b, `&^`, andnot; n != want { ok=false; println(typ, `var`, a, op, `const`, b, `=`, n, `should be`, want); }\n" + + "}\n" + + "\n" + +const shiftConstL = "func test%vShiftL%v(b uint64, left, right %v) {\n" + + " const a %v = %v;\n" + + " const typ = `%s`;\n" + + " if n, op, s, want := a << b, `<<`, b, left; n != want { ok=false; println(typ, `const`, a, op, `var`, s, `=`, n, `should be`, want); }\n" + + " if n, op, s, want := a >> b, `>>`, b, right; n != want { ok=false; println(typ, `const`, a, op, `var`, s, `=`, n, `should be`, want); }\n" + + " if uint64(uint32(b)) == b {\n" + + " b := uint32(b);\n" + + " if n, op, s, want := a << b, `<<`, b, left; n != want { ok=false; println(typ, `const`, a, op, `var`, s, `=`, n, `should be`, want); }\n" + + " if n, op, s, want := a >> b, `>>`, b, right; n != want { ok=false; println(typ, `const`, a, op, `var`, s, `=`, n, `should be`, want); }\n" + + " }\n" + + "}\n" + +const shiftConstR = "func test%vShiftR%v(a, left, right %v) {\n" + + " const b uint64 = %v;\n" + + " const typ = `%s`;\n" + + " if n, op, s, want := a << b, `<<`, b, left; n != want { ok=false; println(typ, `var`, a, op, `const`, s, `=`, n, `should be`, want); }\n" + + " if n, op, s, want := a >> b, `>>`, b, right; n != want { ok=false; println(typ, `var`, a, op, `const`, s, `=`, n, `should be`, want); }\n" + + " if b & 0xffffffff == b {\n" + + " const b = uint32(b & 0xffffffff);\n" + + " if n, op, s, want := a << b, `<<`, b, left; n != want { ok=false; println(typ, `var`, a, op, `const`, s, `=`, n, `should be`, want); }\n" + + " if n, op, s, want := a >> b, `>>`, b, right; n != want { ok=false; println(typ, `var`, a, op, `const`, s, `=`, n, `should be`, want); }\n" + + " }\n" + + "}\n" + +func constTests() { + for i, a := range int64Values { + fmt.Fprintf(bout, binaryConstL, "Int64", i, "int64", "int64", a, "int64") + fmt.Fprintf(bout, binaryConstR, "Int64", i, "int64", "int64", a, "int64") + fmt.Fprintf(bout, shiftConstL, "Int64", i, "int64", "int64", a, "int64") + } + for i, a := range uint64Values { + fmt.Fprintf(bout, binaryConstL, "Uint64", i, "uint64", "uint64", a, "uint64") + fmt.Fprintf(bout, binaryConstR, "Uint64", i, "uint64", "uint64", a, "uint64") + fmt.Fprintf(bout, shiftConstL, "Uint64", i, "uint64", "uint64", a, "uint64") + } + for i, a := range shiftValues { + fmt.Fprintf(bout, shiftConstR, "Int64", i, "int64", a, "int64") + fmt.Fprintf(bout, shiftConstR, "Uint64", i, "uint64", a, "uint64") + } + for i, a := range int64Values { + fmt.Fprintf(bout, "func test%v() {\n", ntest) + ntest++ + for j, b := range int64Values { + var div, mod Int64 + dodiv := false + var zero Int64 + if b.Cmp(zero) != 0 { // b != 0 + // Can't divide by zero but also can't divide -0x8000...000 by -1. + var bigneg = Int64{-0x80000000, 0} + var minus1 = Int64{-1, ^uint32(0)} + if a.Cmp(bigneg) != 0 || b.Cmp(minus1) != 0 { // a != -1<<63 || b != -1 + div, mod = a.DivMod(b) + dodiv = true + } + } + fmt.Fprintf(bout, "\ttestInt64BinaryL%v(%v, %v, %v, %v, %v, %v, %v, %v, %v, %v, %v);\n", + i, b, a.Plus(b), a.Minus(b), a.Times(b), div, mod, + a.And(b), a.Or(b), a.Xor(b), a.AndNot(b), dodiv) + fmt.Fprintf(bout, "\ttestInt64BinaryR%v(%v, %v, %v, %v, %v, %v, %v, %v, %v, %v, %v);\n", + j, a, a.Plus(b), a.Minus(b), a.Times(b), div, mod, + a.And(b), a.Or(b), a.Xor(b), a.AndNot(b), dodiv) + } + for j, b := range shiftValues { + fmt.Fprintf(bout, "\ttestInt64ShiftL%v(%v, %v, %v);\n", + i, b, a.LeftShift64(b), a.RightShift64(b)) + fmt.Fprintf(bout, "\ttestInt64ShiftR%v(%v, %v, %v);\n", + j, a, a.LeftShift64(b), a.RightShift64(b)) + } + fmt.Fprintf(bout, "}\n") + } + for i, a := range uint64Values { + fmt.Fprintf(bout, "func test%v() {\n", ntest) + ntest++ + for j, b := range uint64Values { + var div, mod Uint64 + dodiv := false + var zero Uint64 + if b.Cmp(zero) != 0 { // b != 0 + div, mod = a.DivMod(b) + dodiv = true + } + fmt.Fprintf(bout, "\ttestUint64BinaryL%v(%v, %v, %v, %v, %v, %v, %v, %v, %v, %v, %v);\n", + i, b, a.Plus(b), a.Minus(b), a.Times(b), div, mod, + a.And(b), a.Or(b), a.Xor(b), a.AndNot(b), dodiv) + fmt.Fprintf(bout, "\ttestUint64BinaryR%v(%v, %v, %v, %v, %v, %v, %v, %v, %v, %v, %v);\n", + j, a, a.Plus(b), a.Minus(b), a.Times(b), div, mod, + a.And(b), a.Or(b), a.Xor(b), a.AndNot(b), dodiv) + } + for j, b := range shiftValues { + fmt.Fprintf(bout, "\ttestUint64ShiftL%v(%v, %v, %v);\n", + i, b, a.LeftShift64(b), a.RightShift64(b)) + fmt.Fprintf(bout, "\ttestUint64ShiftR%v(%v, %v, %v);\n", + j, a, a.LeftShift64(b), a.RightShift64(b)) + } + fmt.Fprintf(bout, "}\n") + } +} + +func main() { + bout = bufio.NewWriter(os.Stdout) + varTests() + constTests() + + fmt.Fprintf(bout, "func main() {\n") + for i := 0; i < ntest; i++ { + fmt.Fprintf(bout, "\ttest%v();\n", i) + } + fmt.Fprintf(bout, "\tif !ok { os.Exit(1) }\n") + fmt.Fprintf(bout, "}\n") + bout.Flush() +} diff --git a/gcc/testsuite/go.test/test/README.gcc b/gcc/testsuite/go.test/test/README.gcc new file mode 100644 index 0000000..446110f --- /dev/null +++ b/gcc/testsuite/go.test/test/README.gcc @@ -0,0 +1,7 @@ +This directory is an exact copy (except for this file) of the Go +testsuite from the test subdirectory of http://code.google.com/p/go. +This is here so that we run the same tests as the gc Go compiler. We +do not, however, run the tests in the same way. The gc compiler uses +the run shell script in this directory. For gccgo, we use the file +go-test.exp in the parent directory to run the tests in gcc's usual +DejaGNU test harness. diff --git a/gcc/testsuite/go.test/test/args.go b/gcc/testsuite/go.test/test/args.go new file mode 100644 index 0000000..ba9a377 --- /dev/null +++ b/gcc/testsuite/go.test/test/args.go @@ -0,0 +1,21 @@ +// $G $F.go && $L $F.$A && ./$A.out arg1 arg2 + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package main + +import "os" + +func main() { + if len(os.Args) != 3 { + panic("argc") + } + if os.Args[1] != "arg1" { + panic("arg1") + } + if os.Args[2] != "arg2" { + panic("arg2") + } +} diff --git a/gcc/testsuite/go.test/test/arm-pass.txt b/gcc/testsuite/go.test/test/arm-pass.txt new file mode 100644 index 0000000..2c7230f --- /dev/null +++ b/gcc/testsuite/go.test/test/arm-pass.txt @@ -0,0 +1,488 @@ +./235.go +# ./64bit.go # fail, flaky on android build +./args.go +./assign.go +./assign1.go +./bigalg.go +./bigmap.go +./blank.go +./blank1.go +./chancap.go +./char_lit.go +./char_lit1.go +./closedchan.go +./closure.go +./cmp1.go +./cmp2.go +./cmp3.go +./cmp4.go +./cmp5.go +./cmplx.go +# ./cmplxdivide.go # fail, BUG +./cmplxdivide1.go +./complit.go +./compos.go +./const.go +./const1.go +./const2.go +./const3.go +./convert.go +./convert3.go +./convlit.go +./convlit1.go +./copy.go +./ddd.go +./ddd1.go +./ddd2.go +./ddd3.go +./decl.go +./declbad.go +./defer.go +./deferprint.go +./empty.go +./env.go +./escape.go +./float_lit.go +./floatcmp.go +./for.go +./func.go +./func1.go +./func2.go +./func3.go +./func4.go +./func5.go +./gc.go +./gc1.go +./hashmap.go +./helloworld.go +./if.go +./if1.go +./import.go +./import1.go +./import2.go +./import3.go +./import4.go +./indirect.go +./indirect1.go +./initcomma.go +./initialize.go +./initializerr.go +./initsyscall.go +./int_lit.go +./intcvt.go +./iota.go +./literal.go +./malloc1.go +# ./mallocfin.go # fail +./mallocrand.go +./mallocrep.go +./mallocrep1.go +# ./map.go # fail +./method.go +./method1.go +./method2.go +./method3.go +./named.go +./named1.go +./nil.go +./nul1.go +./parentype.go +./peano.go +./printbig.go +./range.go +./recover.go +./recover1.go +./recover2.go +# ./recover3.go # fail +./rename.go +./rename1.go +./runtime.go +./sieve.go +./sigchld.go +./simassign.go +./sinit.go +./stack.go +./string_lit.go +./stringrange.go +./switch.go +./switch1.go +./test0.go +./turing.go +./typeswitch.go +./typeswitch1.go +./typeswitch2.go +./undef.go +./utf.go +./varerr.go +./varinit.go +./vectors.go +./zerodivide.go +ken/array.go +ken/chan.go +ken/chan1.go +ken/complit.go +# ken/cplx0.go # output fail +# ken/cplx1.go # fail +# ken/cplx2.go # fail +# ken/cplx3.go # output fail +# ken/cplx4.go # fail, BUG +# ken/cplx5.go # output fail +ken/divconst.go +ken/divmod.go +ken/embed.go +ken/for.go +ken/interbasic.go +ken/interfun.go +ken/intervar.go +ken/label.go +ken/litfun.go +ken/mfunc.go +ken/modconst.go +ken/ptrfun.go +ken/ptrvar.go +ken/range.go +ken/rob1.go +ken/rob2.go +ken/robfor.go +ken/robfunc.go +ken/robif.go +ken/shift.go +ken/simparray.go +ken/simpbool.go +ken/simpconv.go +ken/simpfun.go +ken/simpprint.go +ken/simpswitch.go +ken/simpvar.go +ken/slicearray.go +ken/sliceslice.go +ken/string.go +ken/strvar.go +chan/doubleselect.go +chan/fifo.go +chan/goroutines.go +chan/nonblock.go +chan/perm.go +chan/powser1.go +chan/powser2.go +chan/select.go +chan/select2.go +# chan/select3.go # fail +chan/sieve1.go +chan/sieve2.go +interface/bigdata.go +interface/convert.go +interface/convert1.go +interface/convert2.go +interface/embed.go +interface/embed0.go +interface/embed1.go +interface/explicit.go +interface/fail.go +interface/fake.go +interface/pointer.go +interface/receiver.go +interface/receiver1.go +interface/recursive.go +interface/returntype.go +interface/struct.go +nilptr/arrayindex.go +nilptr/arrayindex1.go +nilptr/arraytoslice.go +nilptr/arraytoslice1.go +nilptr/arraytoslice2.go +nilptr/slicearray.go +nilptr/structfield.go +nilptr/structfield1.go +nilptr/structfield2.go +nilptr/structfieldaddr.go +syntax/forvar.go +syntax/import.go +syntax/interface.go +syntax/semi1.go +syntax/semi2.go +syntax/semi3.go +syntax/semi4.go +syntax/semi5.go +syntax/semi6.go +syntax/semi7.go +syntax/slice.go +syntax/topexpr.go +syntax/vareq.go +syntax/vareq1.go +fixedbugs/bug000.go +fixedbugs/bug001.go +fixedbugs/bug002.go +fixedbugs/bug003.go +fixedbugs/bug004.go +fixedbugs/bug005.go +fixedbugs/bug006.go +fixedbugs/bug007.go +fixedbugs/bug008.go +fixedbugs/bug009.go +fixedbugs/bug010.go +fixedbugs/bug011.go +fixedbugs/bug012.go +fixedbugs/bug013.go +fixedbugs/bug014.go +fixedbugs/bug015.go +fixedbugs/bug016.go +fixedbugs/bug017.go +fixedbugs/bug020.go +fixedbugs/bug021.go +fixedbugs/bug022.go +fixedbugs/bug023.go +fixedbugs/bug024.go +fixedbugs/bug026.go +fixedbugs/bug027.go +fixedbugs/bug028.go +fixedbugs/bug030.go +fixedbugs/bug031.go +fixedbugs/bug035.go +fixedbugs/bug036.go +fixedbugs/bug037.go +fixedbugs/bug038.go +fixedbugs/bug039.go +fixedbugs/bug040.go +fixedbugs/bug045.go +fixedbugs/bug046.go +fixedbugs/bug047.go +fixedbugs/bug048.go +fixedbugs/bug049.go +fixedbugs/bug050.go +fixedbugs/bug051.go +fixedbugs/bug052.go +fixedbugs/bug053.go +fixedbugs/bug054.go +fixedbugs/bug055.go +fixedbugs/bug056.go +fixedbugs/bug057.go +fixedbugs/bug058.go +fixedbugs/bug059.go +fixedbugs/bug060.go +fixedbugs/bug061.go +fixedbugs/bug062.go +fixedbugs/bug063.go +fixedbugs/bug064.go +fixedbugs/bug065.go +fixedbugs/bug066.go +fixedbugs/bug067.go +fixedbugs/bug068.go +fixedbugs/bug069.go +fixedbugs/bug070.go +fixedbugs/bug071.go +fixedbugs/bug072.go +fixedbugs/bug073.go +fixedbugs/bug074.go +fixedbugs/bug075.go +fixedbugs/bug076.go +fixedbugs/bug077.go +fixedbugs/bug078.go +fixedbugs/bug080.go +fixedbugs/bug081.go +fixedbugs/bug082.go +fixedbugs/bug083.go +fixedbugs/bug084.go +fixedbugs/bug085.go +fixedbugs/bug086.go +fixedbugs/bug087.go +fixedbugs/bug088.go +fixedbugs/bug089.go +fixedbugs/bug090.go +fixedbugs/bug091.go +fixedbugs/bug092.go +fixedbugs/bug093.go +fixedbugs/bug094.go +fixedbugs/bug096.go +fixedbugs/bug097.go +fixedbugs/bug098.go +fixedbugs/bug099.go +fixedbugs/bug101.go +fixedbugs/bug102.go +fixedbugs/bug103.go +fixedbugs/bug104.go +fixedbugs/bug106.go +fixedbugs/bug107.go +fixedbugs/bug108.go +fixedbugs/bug109.go +fixedbugs/bug110.go +fixedbugs/bug111.go +fixedbugs/bug112.go +fixedbugs/bug113.go +fixedbugs/bug114.go +fixedbugs/bug115.go +fixedbugs/bug116.go +fixedbugs/bug117.go +fixedbugs/bug118.go +fixedbugs/bug119.go +fixedbugs/bug120.go +fixedbugs/bug121.go +fixedbugs/bug122.go +fixedbugs/bug123.go +fixedbugs/bug126.go +fixedbugs/bug127.go +fixedbugs/bug128.go +fixedbugs/bug129.go +fixedbugs/bug130.go +fixedbugs/bug131.go +fixedbugs/bug132.go +fixedbugs/bug133.go +fixedbugs/bug135.go +fixedbugs/bug136.go +fixedbugs/bug137.go +fixedbugs/bug139.go +fixedbugs/bug140.go +fixedbugs/bug141.go +fixedbugs/bug142.go +fixedbugs/bug143.go +fixedbugs/bug144.go +fixedbugs/bug145.go +fixedbugs/bug146.go +fixedbugs/bug147.go +fixedbugs/bug148.go +fixedbugs/bug149.go +fixedbugs/bug150.go +fixedbugs/bug151.go +fixedbugs/bug152.go +fixedbugs/bug154.go +fixedbugs/bug155.go +fixedbugs/bug156.go +fixedbugs/bug157.go +fixedbugs/bug158.go +fixedbugs/bug159.go +fixedbugs/bug160.go +fixedbugs/bug161.go +fixedbugs/bug163.go +fixedbugs/bug164.go +fixedbugs/bug165.go +fixedbugs/bug167.go +fixedbugs/bug168.go +fixedbugs/bug169.go +fixedbugs/bug170.go +fixedbugs/bug171.go +fixedbugs/bug172.go +fixedbugs/bug173.go +fixedbugs/bug174.go +fixedbugs/bug175.go +fixedbugs/bug176.go +fixedbugs/bug177.go +fixedbugs/bug178.go +fixedbugs/bug179.go +fixedbugs/bug180.go +fixedbugs/bug181.go +fixedbugs/bug182.go +fixedbugs/bug183.go +fixedbugs/bug184.go +fixedbugs/bug185.go +fixedbugs/bug186.go +fixedbugs/bug187.go +fixedbugs/bug188.go +fixedbugs/bug189.go +fixedbugs/bug190.go +fixedbugs/bug191.go +fixedbugs/bug192.go +fixedbugs/bug193.go +fixedbugs/bug194.go +fixedbugs/bug195.go +fixedbugs/bug196.go +fixedbugs/bug197.go +fixedbugs/bug198.go +fixedbugs/bug199.go +fixedbugs/bug200.go +fixedbugs/bug201.go +fixedbugs/bug202.go +fixedbugs/bug203.go +fixedbugs/bug204.go +fixedbugs/bug205.go +fixedbugs/bug206.go +fixedbugs/bug207.go +fixedbugs/bug208.go +fixedbugs/bug209.go +fixedbugs/bug211.go +fixedbugs/bug212.go +fixedbugs/bug213.go +fixedbugs/bug214.go +fixedbugs/bug215.go +fixedbugs/bug216.go +fixedbugs/bug217.go +fixedbugs/bug218.go +fixedbugs/bug219.go +fixedbugs/bug220.go +fixedbugs/bug221.go +fixedbugs/bug222.go +fixedbugs/bug223.go +fixedbugs/bug224.go +fixedbugs/bug225.go +fixedbugs/bug226.go +fixedbugs/bug227.go +fixedbugs/bug228.go +fixedbugs/bug229.go +fixedbugs/bug230.go +fixedbugs/bug231.go +fixedbugs/bug232.go +fixedbugs/bug233.go +fixedbugs/bug234.go +fixedbugs/bug235.go +fixedbugs/bug236.go +fixedbugs/bug237.go +fixedbugs/bug238.go +fixedbugs/bug239.go +fixedbugs/bug240.go +fixedbugs/bug241.go +fixedbugs/bug242.go +# fixedbugs/bug243.go # fail, flaky on android build +fixedbugs/bug244.go +fixedbugs/bug245.go +fixedbugs/bug246.go +fixedbugs/bug247.go +fixedbugs/bug248.go +fixedbugs/bug249.go +fixedbugs/bug250.go +fixedbugs/bug251.go +fixedbugs/bug252.go +fixedbugs/bug253.go +fixedbugs/bug254.go +fixedbugs/bug255.go +fixedbugs/bug256.go +fixedbugs/bug257.go +fixedbugs/bug258.go +fixedbugs/bug259.go +fixedbugs/bug261.go +fixedbugs/bug262.go +fixedbugs/bug263.go +fixedbugs/bug264.go +fixedbugs/bug265.go +fixedbugs/bug266.go +fixedbugs/bug267.go +fixedbugs/bug268.go +fixedbugs/bug269.go +fixedbugs/bug270.go +fixedbugs/bug271.go +fixedbugs/bug272.go +fixedbugs/bug273.go +fixedbugs/bug274.go +fixedbugs/bug275.go +fixedbugs/bug276.go +fixedbugs/bug277.go +fixedbugs/bug278.go +fixedbugs/bug279.go +fixedbugs/bug280.go +fixedbugs/bug281.go +fixedbugs/bug282.go +fixedbugs/bug283.go +fixedbugs/bug284.go +fixedbugs/bug285.go +fixedbugs/bug286.go +fixedbugs/bug287.go +fixedbugs/bug288.go +fixedbugs/bug289.go +fixedbugs/bug290.go +fixedbugs/bug291.go +fixedbugs/bug292.go +fixedbugs/bug293.go +fixedbugs/bug294.go +fixedbugs/bug295.go +fixedbugs/bug296.go +fixedbugs/bug297.go +fixedbugs/bug298.go +# bugs/bug260.go # fail, BUG diff --git a/gcc/testsuite/go.test/test/assign.go b/gcc/testsuite/go.test/test/assign.go new file mode 100644 index 0000000..5947138 --- /dev/null +++ b/gcc/testsuite/go.test/test/assign.go @@ -0,0 +1,53 @@ +// errchk $G -e $D/$F.go + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package main + +import "sync" + +type T struct { + int + sync.Mutex +} + +func main() { + { + var x, y sync.Mutex + x = y // ERROR "assignment.*Mutex" + _ = x + } + { + var x, y T + x = y // ERROR "assignment.*Mutex" + _ = x + } + { + var x, y [2]sync.Mutex + x = y // ERROR "assignment.*Mutex" + _ = x + } + { + var x, y [2]T + x = y // ERROR "assignment.*Mutex" + _ = x + } + { + x := sync.Mutex{0, 0} // ERROR "assignment.*Mutex" + _ = x + } + { + x := sync.Mutex{key: 0} // ERROR "(unknown|assignment).*Mutex" + _ = x + } + { + x := &sync.Mutex{} // ok + var y sync.Mutex // ok + y = *x // ERROR "assignment.*Mutex" + *x = y // ERROR "assignment.*Mutex" + _ = x + _ = y + } +} diff --git a/gcc/testsuite/go.test/test/assign1.go b/gcc/testsuite/go.test/test/assign1.go new file mode 100644 index 0000000..71e5b40 --- /dev/null +++ b/gcc/testsuite/go.test/test/assign1.go @@ -0,0 +1,343 @@ +// errchk $G -e $D/$F.go + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package main + +type ( + A [10]int + B []int + C chan int + F func() int + I interface { + m() int + } + M map[int]int + P *int + S struct { + X int + } + + A1 [10]int + B1 []int + C1 chan int + F1 func() int + I1 interface { + m() int + } + M1 map[int]int + P1 *int + S1 struct { + X int + } +) + +var ( + a0 [10]int + b0 []int + c0 chan int + f0 func() int + i0 interface { + m() int + } + m0 map[int]int + p0 *int + s0 struct { + X int + } + + a A + b B + c C + f F + i I + m M + p P + s S + + a1 A1 + b1 B1 + c1 C1 + f1 F1 + i1 I1 + m1 M1 + p1 P1 + s1 S1 + + pa0 *[10]int + pb0 *[]int + pc0 *chan int + pf0 *func() int + pi0 *interface { + m() int + } + pm0 *map[int]int + pp0 **int + ps0 *struct { + X int + } + + pa *A + pb *B + pc *C + pf *F + pi *I + pm *M + pp *P + ps *S + + pa1 *A1 + pb1 *B1 + pc1 *C1 + pf1 *F1 + pi1 *I1 + pm1 *M1 + pp1 *P1 + ps1 *S1 +) + +func main() { + a0 = a + a0 = a1 + a = a0 + a = a1 // ERROR "cannot use" + a1 = a0 + a1 = a // ERROR "cannot use" + + b0 = b + b0 = b1 + b = b0 + b = b1 // ERROR "cannot use" + b1 = b0 + b1 = b // ERROR "cannot use" + + c0 = c + c0 = c1 + c = c0 + c = c1 // ERROR "cannot use" + c1 = c0 + c1 = c // ERROR "cannot use" + + f0 = f + f0 = f1 + f = f0 + f = f1 // ERROR "cannot use" + f1 = f0 + f1 = f // ERROR "cannot use" + + i0 = i + i0 = i1 + i = i0 + i = i1 + i1 = i0 + i1 = i + + m0 = m + m0 = m1 + m = m0 + m = m1 // ERROR "cannot use" + m1 = m0 + m1 = m // ERROR "cannot use" + + p0 = p + p0 = p1 + p = p0 + p = p1 // ERROR "cannot use" + p1 = p0 + p1 = p // ERROR "cannot use" + + s0 = s + s0 = s1 + s = s0 + s = s1 // ERROR "cannot use" + s1 = s0 + s1 = s // ERROR "cannot use" + + pa0 = pa // ERROR "cannot use|incompatible" + pa0 = pa1 // ERROR "cannot use|incompatible" + pa = pa0 // ERROR "cannot use|incompatible" + pa = pa1 // ERROR "cannot use|incompatible" + pa1 = pa0 // ERROR "cannot use|incompatible" + pa1 = pa // ERROR "cannot use|incompatible" + + pb0 = pb // ERROR "cannot use|incompatible" + pb0 = pb1 // ERROR "cannot use|incompatible" + pb = pb0 // ERROR "cannot use|incompatible" + pb = pb1 // ERROR "cannot use|incompatible" + pb1 = pb0 // ERROR "cannot use|incompatible" + pb1 = pb // ERROR "cannot use|incompatible" + + pc0 = pc // ERROR "cannot use|incompatible" + pc0 = pc1 // ERROR "cannot use|incompatible" + pc = pc0 // ERROR "cannot use|incompatible" + pc = pc1 // ERROR "cannot use|incompatible" + pc1 = pc0 // ERROR "cannot use|incompatible" + pc1 = pc // ERROR "cannot use|incompatible" + + pf0 = pf // ERROR "cannot use|incompatible" + pf0 = pf1 // ERROR "cannot use|incompatible" + pf = pf0 // ERROR "cannot use|incompatible" + pf = pf1 // ERROR "cannot use|incompatible" + pf1 = pf0 // ERROR "cannot use|incompatible" + pf1 = pf // ERROR "cannot use|incompatible" + + pi0 = pi // ERROR "cannot use|incompatible" + pi0 = pi1 // ERROR "cannot use|incompatible" + pi = pi0 // ERROR "cannot use|incompatible" + pi = pi1 // ERROR "cannot use|incompatible" + pi1 = pi0 // ERROR "cannot use|incompatible" + pi1 = pi // ERROR "cannot use|incompatible" + + pm0 = pm // ERROR "cannot use|incompatible" + pm0 = pm1 // ERROR "cannot use|incompatible" + pm = pm0 // ERROR "cannot use|incompatible" + pm = pm1 // ERROR "cannot use|incompatible" + pm1 = pm0 // ERROR "cannot use|incompatible" + pm1 = pm // ERROR "cannot use|incompatible" + + pp0 = pp // ERROR "cannot use|incompatible" + pp0 = pp1 // ERROR "cannot use|incompatible" + pp = pp0 // ERROR "cannot use|incompatible" + pp = pp1 // ERROR "cannot use|incompatible" + pp1 = pp0 // ERROR "cannot use|incompatible" + pp1 = pp // ERROR "cannot use|incompatible" + + ps0 = ps // ERROR "cannot use|incompatible" + ps0 = ps1 // ERROR "cannot use|incompatible" + ps = ps0 // ERROR "cannot use|incompatible" + ps = ps1 // ERROR "cannot use|incompatible" + ps1 = ps0 // ERROR "cannot use|incompatible" + ps1 = ps // ERROR "cannot use|incompatible" + + + a0 = [10]int(a) + a0 = [10]int(a1) + a = A(a0) + a = A(a1) + a1 = A1(a0) + a1 = A1(a) + + b0 = []int(b) + b0 = []int(b1) + b = B(b0) + b = B(b1) + b1 = B1(b0) + b1 = B1(b) + + c0 = chan int(c) + c0 = chan int(c1) + c = C(c0) + c = C(c1) + c1 = C1(c0) + c1 = C1(c) + + f0 = func() int(f) + f0 = func() int(f1) + f = F(f0) + f = F(f1) + f1 = F1(f0) + f1 = F1(f) + + i0 = interface { + m() int + }(i) + i0 = interface { + m() int + }(i1) + i = I(i0) + i = I(i1) + i1 = I1(i0) + i1 = I1(i) + + m0 = map[int]int(m) + m0 = map[int]int(m1) + m = M(m0) + m = M(m1) + m1 = M1(m0) + m1 = M1(m) + + p0 = (*int)(p) + p0 = (*int)(p1) + p = P(p0) + p = P(p1) + p1 = P1(p0) + p1 = P1(p) + + s0 = struct { + X int + }(s) + s0 = struct { + X int + }(s1) + s = S(s0) + s = S(s1) + s1 = S1(s0) + s1 = S1(s) + + pa0 = (*[10]int)(pa) + pa0 = (*[10]int)(pa1) + pa = (*A)(pa0) + pa = (*A)(pa1) + pa1 = (*A1)(pa0) + pa1 = (*A1)(pa) + + pb0 = (*[]int)(pb) + pb0 = (*[]int)(pb1) + pb = (*B)(pb0) + pb = (*B)(pb1) + pb1 = (*B1)(pb0) + pb1 = (*B1)(pb) + + pc0 = (*chan int)(pc) + pc0 = (*chan int)(pc1) + pc = (*C)(pc0) + pc = (*C)(pc1) + pc1 = (*C1)(pc0) + pc1 = (*C1)(pc) + + pf0 = (*func() int)(pf) + pf0 = (*func() int)(pf1) + pf = (*F)(pf0) + pf = (*F)(pf1) + pf1 = (*F1)(pf0) + pf1 = (*F1)(pf) + + pi0 = (*interface { + m() int + })(pi) + pi0 = (*interface { + m() int + })(pi1) + pi = (*I)(pi0) + pi = (*I)(pi1) + pi1 = (*I1)(pi0) + pi1 = (*I1)(pi) + + pm0 = (*map[int]int)(pm) + pm0 = (*map[int]int)(pm1) + pm = (*M)(pm0) + pm = (*M)(pm1) + pm1 = (*M1)(pm0) + pm1 = (*M1)(pm) + + pp0 = (**int)(pp) + pp0 = (**int)(pp1) + pp = (*P)(pp0) + pp = (*P)(pp1) + pp1 = (*P1)(pp0) + pp1 = (*P1)(pp) + + ps0 = (*struct { + X int + })(ps) + ps0 = (*struct { + X int + })(ps1) + ps = (*S)(ps0) + ps = (*S)(ps1) + ps1 = (*S1)(ps0) + ps1 = (*S1)(ps) + +} diff --git a/gcc/testsuite/go.test/test/bench/binary-tree-freelist.go b/gcc/testsuite/go.test/test/bench/binary-tree-freelist.go new file mode 100644 index 0000000..071a4e06 --- /dev/null +++ b/gcc/testsuite/go.test/test/bench/binary-tree-freelist.go @@ -0,0 +1,129 @@ +/* +Redistribution and use in source and binary forms, with or without +modification, are permitted provided that the following conditions are met: + + * Redistributions of source code must retain the above copyright + notice, this list of conditions and the following disclaimer. + + * Redistributions in binary form must reproduce the above copyright + notice, this list of conditions and the following disclaimer in the + documentation and/or other materials provided with the distribution. + + * Neither the name of "The Computer Language Benchmarks Game" nor the + name of "The Computer Language Shootout Benchmarks" nor the names of + its contributors may be used to endorse or promote products derived + from this software without specific prior written permission. + +THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" +AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE +IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE +ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT OWNER OR CONTRIBUTORS BE +LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR +CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF +SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS +INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN +CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) +ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE +POSSIBILITY OF SUCH DAMAGE. +*/ + +/* The Computer Language Benchmarks Game + * http://shootout.alioth.debian.org/ + * + * contributed by The Go Authors. + * based on C program by Kevin Carson + */ + +package main + +import ( + "flag" + "fmt" +) + +var n = flag.Int("n", 15, "depth") + +type Node struct { + item int + left, right *Node +} + +type Arena struct { + head *Node +} + +var arena Arena + +func (n *Node) free() { + if n.left != nil { + n.left.free() + } + if n.right != nil { + n.right.free() + } + n.left = arena.head + arena.head = n +} + +func (a *Arena) New(item int, left, right *Node) *Node { + if a.head == nil { + nodes := make([]Node, 3<<uint(*n)) + for i := 0; i < len(nodes)-1; i++ { + nodes[i].left = &nodes[i+1] + } + a.head = &nodes[0] + } + n := a.head + a.head = a.head.left + n.item = item + n.left = left + n.right = right + return n +} + +func bottomUpTree(item, depth int) *Node { + if depth <= 0 { + return arena.New(item, nil, nil) + } + return arena.New(item, bottomUpTree(2*item-1, depth-1), bottomUpTree(2*item, depth-1)) +} + +func (n *Node) itemCheck() int { + if n.left == nil { + return n.item + } + return n.item + n.left.itemCheck() - n.right.itemCheck() +} + +const minDepth = 4 + +func main() { + flag.Parse() + + maxDepth := *n + if minDepth+2 > *n { + maxDepth = minDepth + 2 + } + stretchDepth := maxDepth + 1 + + check := bottomUpTree(0, stretchDepth).itemCheck() + fmt.Printf("stretch tree of depth %d\t check: %d\n", stretchDepth, check) + + longLivedTree := bottomUpTree(0, maxDepth) + + for depth := minDepth; depth <= maxDepth; depth += 2 { + iterations := 1 << uint(maxDepth-depth+minDepth) + check = 0 + + for i := 1; i <= iterations; i++ { + t := bottomUpTree(i, depth) + check += t.itemCheck() + t.free() + t = bottomUpTree(-i, depth) + check += t.itemCheck() + t.free() + } + fmt.Printf("%d\t trees of depth %d\t check: %d\n", iterations*2, depth, check) + } + fmt.Printf("long lived tree of depth %d\t check: %d\n", maxDepth, longLivedTree.itemCheck()) +} diff --git a/gcc/testsuite/go.test/test/bench/binary-tree-freelist.txt b/gcc/testsuite/go.test/test/bench/binary-tree-freelist.txt new file mode 100644 index 0000000..f8286dd --- /dev/null +++ b/gcc/testsuite/go.test/test/bench/binary-tree-freelist.txt @@ -0,0 +1,8 @@ +stretch tree of depth 16 check: -1 +65536 trees of depth 4 check: -65536 +16384 trees of depth 6 check: -16384 +4096 trees of depth 8 check: -4096 +1024 trees of depth 10 check: -1024 +256 trees of depth 12 check: -256 +64 trees of depth 14 check: -64 +long lived tree of depth 15 check: -1 diff --git a/gcc/testsuite/go.test/test/bench/binary-tree.c b/gcc/testsuite/go.test/test/bench/binary-tree.c new file mode 100644 index 0000000..1b40704 --- /dev/null +++ b/gcc/testsuite/go.test/test/bench/binary-tree.c @@ -0,0 +1,165 @@ +/* +Redistribution and use in source and binary forms, with or without +modification, are permitted provided that the following conditions are met: + + * Redistributions of source code must retain the above copyright + notice, this list of conditions and the following disclaimer. + + * Redistributions in binary form must reproduce the above copyright + notice, this list of conditions and the following disclaimer in the + documentation and/or other materials provided with the distribution. + + * Neither the name of "The Computer Language Benchmarks Game" nor the + name of "The Computer Language Shootout Benchmarks" nor the names of + its contributors may be used to endorse or promote products derived + from this software without specific prior written permission. + +THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" +AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE +IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE +ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT OWNER OR CONTRIBUTORS BE +LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR +CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF +SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS +INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN +CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) +ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE +POSSIBILITY OF SUCH DAMAGE. +*/ + +/* The Computer Language Shootout Benchmarks + http://shootout.alioth.debian.org/ + + contributed by Kevin Carson + compilation: + gcc -O3 -fomit-frame-pointer -funroll-loops -static binary-trees.c -lm + icc -O3 -ip -unroll -static binary-trees.c -lm +*/ + +#include <malloc.h> +#include <math.h> +#include <stdio.h> +#include <stdlib.h> + + +typedef struct tn { + struct tn* left; + struct tn* right; + long item; +} treeNode; + + +treeNode* NewTreeNode(treeNode* left, treeNode* right, long item) +{ + treeNode* new; + + new = (treeNode*)malloc(sizeof(treeNode)); + + new->left = left; + new->right = right; + new->item = item; + + return new; +} /* NewTreeNode() */ + + +long ItemCheck(treeNode* tree) +{ + if (tree->left == NULL) + return tree->item; + else + return tree->item + ItemCheck(tree->left) - ItemCheck(tree->right); +} /* ItemCheck() */ + + +treeNode* BottomUpTree(long item, unsigned depth) +{ + if (depth > 0) + return NewTreeNode + ( + BottomUpTree(2 * item - 1, depth - 1), + BottomUpTree(2 * item, depth - 1), + item + ); + else + return NewTreeNode(NULL, NULL, item); +} /* BottomUpTree() */ + + +void DeleteTree(treeNode* tree) +{ + if (tree->left != NULL) + { + DeleteTree(tree->left); + DeleteTree(tree->right); + } + + free(tree); +} /* DeleteTree() */ + + +int main(int argc, char* argv[]) +{ + unsigned N, depth, minDepth, maxDepth, stretchDepth; + treeNode *stretchTree, *longLivedTree, *tempTree; + + N = atol(argv[1]); + + minDepth = 4; + + if ((minDepth + 2) > N) + maxDepth = minDepth + 2; + else + maxDepth = N; + + stretchDepth = maxDepth + 1; + + stretchTree = BottomUpTree(0, stretchDepth); + printf + ( + "stretch tree of depth %u\t check: %li\n", + stretchDepth, + ItemCheck(stretchTree) + ); + + DeleteTree(stretchTree); + + longLivedTree = BottomUpTree(0, maxDepth); + + for (depth = minDepth; depth <= maxDepth; depth += 2) + { + long i, iterations, check; + + iterations = pow(2, maxDepth - depth + minDepth); + + check = 0; + + for (i = 1; i <= iterations; i++) + { + tempTree = BottomUpTree(i, depth); + check += ItemCheck(tempTree); + DeleteTree(tempTree); + + tempTree = BottomUpTree(-i, depth); + check += ItemCheck(tempTree); + DeleteTree(tempTree); + } /* for(i = 1...) */ + + printf + ( + "%li\t trees of depth %u\t check: %li\n", + iterations * 2, + depth, + check + ); + } /* for(depth = minDepth...) */ + + printf + ( + "long lived tree of depth %u\t check: %li\n", + maxDepth, + ItemCheck(longLivedTree) + ); + + return 0; +} /* main() */ diff --git a/gcc/testsuite/go.test/test/bench/binary-tree.go b/gcc/testsuite/go.test/test/bench/binary-tree.go new file mode 100644 index 0000000..9f867d1 --- /dev/null +++ b/gcc/testsuite/go.test/test/bench/binary-tree.go @@ -0,0 +1,92 @@ +/* +Redistribution and use in source and binary forms, with or without +modification, are permitted provided that the following conditions are met: + + * Redistributions of source code must retain the above copyright + notice, this list of conditions and the following disclaimer. + + * Redistributions in binary form must reproduce the above copyright + notice, this list of conditions and the following disclaimer in the + documentation and/or other materials provided with the distribution. + + * Neither the name of "The Computer Language Benchmarks Game" nor the + name of "The Computer Language Shootout Benchmarks" nor the names of + its contributors may be used to endorse or promote products derived + from this software without specific prior written permission. + +THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" +AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE +IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE +ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT OWNER OR CONTRIBUTORS BE +LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR +CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF +SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS +INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN +CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) +ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE +POSSIBILITY OF SUCH DAMAGE. +*/ + +/* The Computer Language Benchmarks Game + * http://shootout.alioth.debian.org/ + * + * contributed by The Go Authors. + * based on C program by Kevin Carson + */ + +package main + +import ( + "flag" + "fmt" +) + +var n = flag.Int("n", 15, "depth") + +type Node struct { + item int + left, right *Node +} + +func bottomUpTree(item, depth int) *Node { + if depth <= 0 { + return &Node{item: item} + } + return &Node{item, bottomUpTree(2*item-1, depth-1), bottomUpTree(2*item, depth-1)} +} + +func (n *Node) itemCheck() int { + if n.left == nil { + return n.item + } + return n.item + n.left.itemCheck() - n.right.itemCheck() +} + +const minDepth = 4 + +func main() { + flag.Parse() + + maxDepth := *n + if minDepth+2 > *n { + maxDepth = minDepth + 2 + } + stretchDepth := maxDepth + 1 + + check := bottomUpTree(0, stretchDepth).itemCheck() + fmt.Printf("stretch tree of depth %d\t check: %d\n", stretchDepth, check) + + longLivedTree := bottomUpTree(0, maxDepth) + + for depth := minDepth; depth <= maxDepth; depth += 2 { + iterations := 1 << uint(maxDepth-depth+minDepth) + check = 0 + + for i := 1; i <= iterations; i++ { + check += bottomUpTree(i, depth).itemCheck() + check += bottomUpTree(-i, depth).itemCheck() + } + fmt.Printf("%d\t trees of depth %d\t check: %d\n", iterations*2, depth, check) + } + fmt.Printf("long lived tree of depth %d\t check: %d\n", maxDepth, longLivedTree.itemCheck()) +} diff --git a/gcc/testsuite/go.test/test/bench/binary-tree.txt b/gcc/testsuite/go.test/test/bench/binary-tree.txt new file mode 100644 index 0000000..f8286dd --- /dev/null +++ b/gcc/testsuite/go.test/test/bench/binary-tree.txt @@ -0,0 +1,8 @@ +stretch tree of depth 16 check: -1 +65536 trees of depth 4 check: -65536 +16384 trees of depth 6 check: -16384 +4096 trees of depth 8 check: -4096 +1024 trees of depth 10 check: -1024 +256 trees of depth 12 check: -256 +64 trees of depth 14 check: -64 +long lived tree of depth 15 check: -1 diff --git a/gcc/testsuite/go.test/test/bench/chameneosredux.c b/gcc/testsuite/go.test/test/bench/chameneosredux.c new file mode 100644 index 0000000..ed78c31 --- /dev/null +++ b/gcc/testsuite/go.test/test/bench/chameneosredux.c @@ -0,0 +1,330 @@ +/* +Redistribution and use in source and binary forms, with or without +modification, are permitted provided that the following conditions are met: + + * Redistributions of source code must retain the above copyright + notice, this list of conditions and the following disclaimer. + + * Redistributions in binary form must reproduce the above copyright + notice, this list of conditions and the following disclaimer in the + documentation and/or other materials provided with the distribution. + + * Neither the name of "The Computer Language Benchmarks Game" nor the + name of "The Computer Language Shootout Benchmarks" nor the names of + its contributors may be used to endorse or promote products derived + from this software without specific prior written permission. + +THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" +AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE +IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE +ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT OWNER OR CONTRIBUTORS BE +LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR +CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF +SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS +INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN +CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) +ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE +POSSIBILITY OF SUCH DAMAGE. +*/ + +/* The Computer Language Benchmarks Game + http://shootout.alioth.debian.org/ + + contributed by Michael Barker + based on a Java contribution by Luzius Meisser + + convert to C by dualamd +*/ + +#include <stdlib.h> +#include <stdio.h> +#include <pthread.h> + + +enum Colour +{ + blue = 0, + red = 1, + yellow = 2, + Invalid = 3 +}; + +const char* ColourName[] = {"blue", "red", "yellow"}; +const int STACK_SIZE = 32*1024; + +typedef unsigned int BOOL; +const BOOL TRUE = 1; +const BOOL FALSE = 0; + +int CreatureID = 0; + + +enum Colour doCompliment(enum Colour c1, enum Colour c2) +{ + switch (c1) + { + case blue: + switch (c2) + { + case blue: + return blue; + case red: + return yellow; + case yellow: + return red; + default: + goto errlb; + } + case red: + switch (c2) + { + case blue: + return yellow; + case red: + return red; + case yellow: + return blue; + default: + goto errlb; + } + case yellow: + switch (c2) + { + case blue: + return red; + case red: + return blue; + case yellow: + return yellow; + default: + goto errlb; + } + default: + break; + } + +errlb: + printf("Invalid colour\n"); + exit( 1 ); +} + +/* convert integer to number string: 1234 -> "one two three four" */ +char* formatNumber(int n, char* outbuf) +{ + int ochar = 0, ichar = 0; + int i; + char tmp[64]; + + const char* NUMBERS[] = + { + "zero", "one", "two", "three", "four", "five", + "six", "seven", "eight", "nine" + }; + + ichar = sprintf(tmp, "%d", n); + + for (i = 0; i < ichar; i++) + ochar += sprintf( outbuf + ochar, " %s", NUMBERS[ tmp[i] - '0' ] ); + + return outbuf; +} + + +struct MeetingPlace +{ + pthread_mutex_t mutex; + int meetingsLeft; + struct Creature* firstCreature; +}; + +struct Creature +{ + pthread_t ht; + pthread_attr_t stack_att; + + struct MeetingPlace* place; + int count; + int sameCount; + + enum Colour colour; + int id; + + BOOL two_met; + BOOL sameid; +}; + + +void MeetingPlace_Init(struct MeetingPlace* m, int meetings ) +{ + pthread_mutex_init( &m->mutex, 0 ); + m->meetingsLeft = meetings; + m->firstCreature = 0; +} + + +BOOL Meet( struct Creature* cr) +{ + BOOL retval = TRUE; + + struct MeetingPlace* mp = cr->place; + pthread_mutex_lock( &(mp->mutex) ); + + if ( mp->meetingsLeft > 0 ) + { + if ( mp->firstCreature == 0 ) + { + cr->two_met = FALSE; + mp->firstCreature = cr; + } + else + { + struct Creature* first; + enum Colour newColour; + + first = mp->firstCreature; + newColour = doCompliment( cr->colour, first->colour ); + + cr->sameid = cr->id == first->id; + cr->colour = newColour; + cr->two_met = TRUE; + + first->sameid = cr->sameid; + first->colour = newColour; + first->two_met = TRUE; + + mp->firstCreature = 0; + mp->meetingsLeft--; + } + } + else + retval = FALSE; + + pthread_mutex_unlock( &(mp->mutex) ); + return retval; +} + + +void* CreatureThreadRun(void* param) +{ + struct Creature* cr = (struct Creature*)param; + + while (TRUE) + { + if ( Meet(cr) ) + { + while (cr->two_met == FALSE) + sched_yield(); + + if (cr->sameid) + cr->sameCount++; + cr->count++; + } + else + break; + } + + return 0; +} + +void Creature_Init( struct Creature *cr, struct MeetingPlace* place, enum Colour colour ) +{ + cr->place = place; + cr->count = cr->sameCount = 0; + + cr->id = ++CreatureID; + cr->colour = colour; + cr->two_met = FALSE; + + pthread_attr_init( &cr->stack_att ); + pthread_attr_setstacksize( &cr->stack_att, STACK_SIZE ); + pthread_create( &cr->ht, &cr->stack_att, &CreatureThreadRun, (void*)(cr) ); +} + +/* format meeting times of each creature to string */ +char* Creature_getResult(struct Creature* cr, char* str) +{ + char numstr[256]; + formatNumber(cr->sameCount, numstr); + + sprintf( str, "%u%s", cr->count, numstr ); + return str; +} + + +void runGame( int n_meeting, int ncolor, const enum Colour* colours ) +{ + int i; + int total = 0; + char str[256]; + + struct MeetingPlace place; + struct Creature *creatures = (struct Creature*) calloc( ncolor, sizeof(struct Creature) ); + + MeetingPlace_Init( &place, n_meeting ); + + /* print initial color of each creature */ + for (i = 0; i < ncolor; i++) + { + printf( "%s ", ColourName[ colours[i] ] ); + Creature_Init( &(creatures[i]), &place, colours[i] ); + } + printf("\n"); + + /* wait for them to meet */ + for (i = 0; i < ncolor; i++) + pthread_join( creatures[i].ht, 0 ); + + /* print meeting times of each creature */ + for (i = 0; i < ncolor; i++) + { + printf( "%s\n", Creature_getResult(&(creatures[i]), str) ); + total += creatures[i].count; + } + + /* print total meeting times, should equal n_meeting */ + printf( "%s\n\n", formatNumber(total, str) ); + + /* cleaup & quit */ + pthread_mutex_destroy( &place.mutex ); + free( creatures ); +} + + +void printColours( enum Colour c1, enum Colour c2 ) +{ + printf( "%s + %s -> %s\n", + ColourName[c1], + ColourName[c2], + ColourName[doCompliment(c1, c2)] ); +} + +void printColoursTable(void) +{ + printColours(blue, blue); + printColours(blue, red); + printColours(blue, yellow); + printColours(red, blue); + printColours(red, red); + printColours(red, yellow); + printColours(yellow, blue); + printColours(yellow, red); + printColours(yellow, yellow); +} + +int main(int argc, char** argv) +{ + int n = (argc == 2) ? atoi(argv[1]) : 600; + + printColoursTable(); + printf("\n"); + + const enum Colour r1[] = { blue, red, yellow }; + const enum Colour r2[] = { blue, red, yellow, + red, yellow, blue, + red, yellow, red, blue }; + + runGame( n, sizeof(r1) / sizeof(r1[0]), r1 ); + runGame( n, sizeof(r2) / sizeof(r2[0]), r2 ); + + return 0; +} diff --git a/gcc/testsuite/go.test/test/bench/chameneosredux.go b/gcc/testsuite/go.test/test/bench/chameneosredux.go new file mode 100644 index 0000000..2cb1440 --- /dev/null +++ b/gcc/testsuite/go.test/test/bench/chameneosredux.go @@ -0,0 +1,180 @@ +/* +Redistribution and use in source and binary forms, with or without +modification, are permitted provided that the following conditions are met: + + * Redistributions of source code must retain the above copyright + notice, this list of conditions and the following disclaimer. + + * Redistributions in binary form must reproduce the above copyright + notice, this list of conditions and the following disclaimer in the + documentation and/or other materials provided with the distribution. + + * Neither the name of "The Computer Language Benchmarks Game" nor the + name of "The Computer Language Shootout Benchmarks" nor the names of + its contributors may be used to endorse or promote products derived + from this software without specific prior written permission. + +THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" +AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE +IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE +ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT OWNER OR CONTRIBUTORS BE +LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR +CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF +SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS +INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN +CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) +ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE +POSSIBILITY OF SUCH DAMAGE. +*/ + +/* The Computer Language Benchmarks Game + * http://shootout.alioth.debian.org/ + * + * contributed by The Go Authors. + */ + +package main + +import ( + "flag" + "fmt" + "strconv" +) + +const ( + blue = iota + red + yellow + ncol +) + +var complement = [...]int{ + red | red<<2: red, + red | yellow<<2: blue, + red | blue<<2: yellow, + yellow | red<<2: blue, + yellow | yellow<<2: yellow, + yellow | blue<<2: red, + blue | red<<2: yellow, + blue | yellow<<2: red, + blue | blue<<2: blue, +} + +var colname = [...]string{ + blue: "blue", + red: "red", + yellow: "yellow", +} + +// information about the current state of a creature. +type info struct { + colour int // creature's current colour. + name int // creature's name. +} + +// exclusive access data-structure kept inside meetingplace. +// if mate is nil, it indicates there's no creature currently waiting; +// otherwise the creature's info is stored in info, and +// it is waiting to receive its mate's information on the mate channel. +type rendez struct { + n int // current number of encounters. + mate chan<- info // creature waiting when non-nil. + info info // info about creature waiting. +} + +// result sent by each creature at the end of processing. +type result struct { + met int + same int +} + +var n = 600 + +func main() { + flag.Parse() + if flag.NArg() > 0 { + n, _ = strconv.Atoi(flag.Arg(0)) + } + + for c0 := 0; c0 < ncol; c0++ { + for c1 := 0; c1 < ncol; c1++ { + fmt.Printf("%s + %s -> %s\n", colname[c0], colname[c1], colname[complement[c0|c1<<2]]) + } + } + fmt.Print("\n") + + pallmall([]int{blue, red, yellow}) + pallmall([]int{blue, red, yellow, red, yellow, blue, red, yellow, red, blue}) +} + +func pallmall(cols []int) { + + // invariant: meetingplace always contains a value unless a creature + // is currently dealing with it (whereupon it must put it back). + meetingplace := make(chan rendez, 1) + meetingplace <- rendez{n: 0} + + ended := make(chan result) + msg := "" + for i, col := range cols { + go creature(info{col, i}, meetingplace, ended) + msg += " " + colname[col] + } + fmt.Println(msg) + tot := 0 + // wait for all results + for _ = range cols { + result := <-ended + tot += result.met + fmt.Printf("%v%v\n", result.met, spell(result.same, true)) + } + fmt.Printf("%v\n\n", spell(tot, true)) +} + +// in this function, variables ending in 0 refer to the local creature, +// variables ending in 1 to the creature we've met. +func creature(info0 info, meetingplace chan rendez, ended chan result) { + c0 := make(chan info) + met := 0 + same := 0 + for { + var othername int + // get access to rendez data and decide what to do. + switch r := <-meetingplace; { + case r.n >= n: + // if no more meetings left, then send our result data and exit. + meetingplace <- rendez{n: r.n} + ended <- result{met, same} + return + case r.mate == nil: + // no creature waiting; wait for someone to meet us, + // get their info and send our info in reply. + meetingplace <- rendez{n: r.n, info: info0, mate: c0} + info1 := <-c0 + othername = info1.name + info0.colour = complement[info0.colour|info1.colour<<2] + default: + // another creature is waiting for us with its info; + // increment meeting count, + // send them our info in reply. + r.n++ + meetingplace <- rendez{n: r.n, mate: nil} + r.mate <- info0 + othername = r.info.name + info0.colour = complement[info0.colour|r.info.colour<<2] + } + if othername == info0.name { + same++ + } + met++ + } +} + +var digits = [...]string{"zero", "one", "two", "three", "four", "five", "six", "seven", "eight", "nine"} + +func spell(n int, required bool) string { + if n == 0 && !required { + return "" + } + return spell(n/10, false) + " " + digits[n%10] +} diff --git a/gcc/testsuite/go.test/test/bench/chameneosredux.txt b/gcc/testsuite/go.test/test/bench/chameneosredux.txt new file mode 100644 index 0000000..6016d59 --- /dev/null +++ b/gcc/testsuite/go.test/test/bench/chameneosredux.txt @@ -0,0 +1,29 @@ +blue + blue -> blue +blue + red -> yellow +blue + yellow -> red +red + blue -> yellow +red + red -> red +red + yellow -> blue +yellow + blue -> red +yellow + red -> blue +yellow + yellow -> yellow + + blue red yellow +400 zero +400 zero +400 zero + one two zero zero + + blue red yellow red yellow blue red yellow red blue +120 zero +120 zero +120 zero +120 zero +120 zero +120 zero +120 zero +120 zero +120 zero +120 zero + one two zero zero + diff --git a/gcc/testsuite/go.test/test/bench/clean.bash b/gcc/testsuite/go.test/test/bench/clean.bash new file mode 100755 index 0000000..d56c0e3 --- /dev/null +++ b/gcc/testsuite/go.test/test/bench/clean.bash @@ -0,0 +1,4 @@ +#!/bin/sh + +OS=568 +rm -f [$OS].out *.[$OS] diff --git a/gcc/testsuite/go.test/test/bench/fannkuch-parallel.go b/gcc/testsuite/go.test/test/bench/fannkuch-parallel.go new file mode 100644 index 0000000..7897eac --- /dev/null +++ b/gcc/testsuite/go.test/test/bench/fannkuch-parallel.go @@ -0,0 +1,224 @@ +/* +Redistribution and use in source and binary forms, with or without +modification, are permitted provided that the following conditions are met: + + * Redistributions of source code must retain the above copyright + notice, this list of conditions and the following disclaimer. + + * Redistributions in binary form must reproduce the above copyright + notice, this list of conditions and the following disclaimer in the + documentation and/or other materials provided with the distribution. + + * Neither the name of "The Computer Language Benchmarks Game" nor the + name of "The Computer Language Shootout Benchmarks" nor the names of + its contributors may be used to endorse or promote products derived + from this software without specific prior written permission. + +THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" +AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE +IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE +ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT OWNER OR CONTRIBUTORS BE +LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR +CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF +SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS +INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN +CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) +ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE +POSSIBILITY OF SUCH DAMAGE. +*/ + +/* + * The Computer Language Benchmarks Game + * http://shootout.alioth.debian.org/ + * + * contributed by The Go Authors. + * Based on fannkuch.scala by Rex Kerr + */ + +package main + +import ( + "flag" + "fmt" + "runtime" +) + +var n = flag.Int("n", 7, "count") +var nCPU = flag.Int("ncpu", 2, "number of cpus") + +type Job struct { + start []int + n int +} + +type Found struct { + who *Kucher + k int +} + +type Kucher struct { + perm []int + temp []int + flip []int + in chan Job +} + +func NewKucher(length int) *Kucher { + return &Kucher{ + perm: make([]int, length), + temp: make([]int, length), + flip: make([]int, length), + in: make(chan Job), + } +} + +func (k *Kucher) permute(n int) bool { + i := 0 + for ; i < n-1 && k.flip[i] == 0; i++ { + t := k.perm[0] + j := 0 + for ; j <= i; j++ { + k.perm[j] = k.perm[j+1] + } + k.perm[j] = t + } + k.flip[i]-- + for i > 0 { + i-- + k.flip[i] = i + } + return k.flip[n-1] >= 0 +} + +func (k *Kucher) count() int { + K := 0 + copy(k.temp, k.perm) + for k.temp[0] != 0 { + m := k.temp[0] + for i := 0; i < m; i++ { + k.temp[i], k.temp[m] = k.temp[m], k.temp[i] + m-- + } + K++ + } + return K +} + +func (k *Kucher) Run(foreman chan<- Found) { + for job := range k.in { + verbose := 30 + copy(k.perm, job.start) + for i, v := range k.perm { + if v != i { + verbose = 0 + } + k.flip[i] = i + } + K := 0 + for { + if verbose > 0 { + for _, p := range k.perm { + fmt.Print(p + 1) + } + fmt.Println() + verbose-- + } + count := k.count() + if count > K { + K = count + } + if !k.permute(job.n) { + break + } + } + foreman <- Found{k, K} + } +} + +type Fanner struct { + jobind int + jobsdone int + k int + jobs []Job + workers []*Kucher + in chan Found + result chan int +} + +func NewFanner(jobs []Job, workers []*Kucher) *Fanner { + return &Fanner{ + jobs: jobs, workers: workers, + in: make(chan Found), + result: make(chan int), + } +} + +func (f *Fanner) Run(N int) { + for msg := range f.in { + if msg.k > f.k { + f.k = msg.k + } + if msg.k >= 0 { + f.jobsdone++ + } + if f.jobind < len(f.jobs) { + msg.who.in <- f.jobs[f.jobind] + f.jobind++ + } else if f.jobsdone == len(f.jobs) { + f.result <- f.k + return + } + } +} + +func swapped(a []int, i, j int) []int { + b := make([]int, len(a)) + copy(b, a) + b[i], b[j] = a[j], a[i] + return b +} + +func main() { + flag.Parse() + runtime.GOMAXPROCS(*nCPU) + N := *n + base := make([]int, N) + for i := range base { + base[i] = i + } + + njobs := 1 + if N > 8 { + njobs += (N*(N-1))/2 - 28 // njobs = 1 + sum(8..N-1) = 1 + sum(1..N-1) - sum(1..7) + } + jobs := make([]Job, njobs) + jobsind := 0 + + firstN := N + if firstN > 8 { + firstN = 8 + } + jobs[jobsind] = Job{base, firstN} + jobsind++ + for i := N - 1; i >= 8; i-- { + for j := 0; j < i; j++ { + jobs[jobsind] = Job{swapped(base, i, j), i} + jobsind++ + } + } + + nworkers := *nCPU + if njobs < nworkers { + nworkers = njobs + } + workers := make([]*Kucher, nworkers) + foreman := NewFanner(jobs, workers) + go foreman.Run(N) + for i := range workers { + k := NewKucher(N) + workers[i] = k + go k.Run(foreman.in) + foreman.in <- Found{k, -1} + } + fmt.Printf("Pfannkuchen(%d) = %d\n", N, <-foreman.result) +} diff --git a/gcc/testsuite/go.test/test/bench/fannkuch-parallel.txt b/gcc/testsuite/go.test/test/bench/fannkuch-parallel.txt new file mode 100644 index 0000000..e66f779 --- /dev/null +++ b/gcc/testsuite/go.test/test/bench/fannkuch-parallel.txt @@ -0,0 +1,31 @@ +1234567 +2134567 +2314567 +3214567 +3124567 +1324567 +2341567 +3241567 +3421567 +4321567 +4231567 +2431567 +3412567 +4312567 +4132567 +1432567 +1342567 +3142567 +4123567 +1423567 +1243567 +2143567 +2413567 +4213567 +2345167 +3245167 +3425167 +4325167 +4235167 +2435167 +Pfannkuchen(7) = 16 diff --git a/gcc/testsuite/go.test/test/bench/fannkuch.c b/gcc/testsuite/go.test/test/bench/fannkuch.c new file mode 100644 index 0000000..e576b54 --- /dev/null +++ b/gcc/testsuite/go.test/test/bench/fannkuch.c @@ -0,0 +1,134 @@ +/* +Redistribution and use in source and binary forms, with or without +modification, are permitted provided that the following conditions are met: + + * Redistributions of source code must retain the above copyright + notice, this list of conditions and the following disclaimer. + + * Redistributions in binary form must reproduce the above copyright + notice, this list of conditions and the following disclaimer in the + documentation and/or other materials provided with the distribution. + + * Neither the name of "The Computer Language Benchmarks Game" nor the + name of "The Computer Language Shootout Benchmarks" nor the names of + its contributors may be used to endorse or promote products derived + from this software without specific prior written permission. + +THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" +AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE +IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE +ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT OWNER OR CONTRIBUTORS BE +LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR +CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF +SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS +INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN +CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) +ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE +POSSIBILITY OF SUCH DAMAGE. +*/ + +/* + * The Computer Language Shootout + * http://shootout.alioth.debian.org/ + * Contributed by Heiner Marxen + * + * "fannkuch" for C gcc + * + * $Id: fannkuch.1.gcc.code,v 1.15 2009-04-28 15:39:31 igouy-guest Exp $ + */ + +#include <stdio.h> +#include <stdlib.h> + +#define Int int +#define Aint int + + static long +fannkuch( int n ) +{ + Aint* perm; + Aint* perm1; + Aint* count; + long flips; + long flipsMax; + Int r; + Int i; + Int k; + Int didpr; + const Int n1 = n - 1; + + if( n < 1 ) return 0; + + perm = calloc(n, sizeof(*perm )); + perm1 = calloc(n, sizeof(*perm1)); + count = calloc(n, sizeof(*count)); + + for( i=0 ; i<n ; ++i ) perm1[i] = i; /* initial (trivial) permu */ + + r = n; didpr = 0; flipsMax = 0; + for(;;) { + if( didpr < 30 ) { + for( i=0 ; i<n ; ++i ) printf("%d", (int)(1+perm1[i])); + printf("\n"); + ++didpr; + } + for( ; r!=1 ; --r ) { + count[r-1] = r; + } + +#define XCH(x,y) { Aint t_mp; t_mp=(x); (x)=(y); (y)=t_mp; } + + if( ! (perm1[0]==0 || perm1[n1]==n1) ) { + flips = 0; + for( i=1 ; i<n ; ++i ) { /* perm = perm1 */ + perm[i] = perm1[i]; + } + k = perm1[0]; /* cache perm[0] in k */ + do { /* k!=0 ==> k>0 */ + Int j; + for( i=1, j=k-1 ; i<j ; ++i, --j ) { + XCH(perm[i], perm[j]) + } + ++flips; + /* + * Now exchange k (caching perm[0]) and perm[k]... with care! + * XCH(k, perm[k]) does NOT work! + */ + j=perm[k]; perm[k]=k ; k=j; + }while( k ); + if( flipsMax < flips ) { + flipsMax = flips; + } + } + + for(;;) { + if( r == n ) { + return flipsMax; + } + /* rotate down perm[0..r] by one */ + { + Int perm0 = perm1[0]; + i = 0; + while( i < r ) { + k = i+1; + perm1[i] = perm1[k]; + i = k; + } + perm1[r] = perm0; + } + if( (count[r] -= 1) > 0 ) { + break; + } + ++r; + } + } +} + + int +main( int argc, char* argv[] ) +{ + int n = (argc>1) ? atoi(argv[1]) : 0; + + printf("Pfannkuchen(%d) = %ld\n", n, fannkuch(n)); + return 0; +} diff --git a/gcc/testsuite/go.test/test/bench/fannkuch.go b/gcc/testsuite/go.test/test/bench/fannkuch.go new file mode 100644 index 0000000..b554c77 --- /dev/null +++ b/gcc/testsuite/go.test/test/bench/fannkuch.go @@ -0,0 +1,122 @@ +/* +Redistribution and use in source and binary forms, with or without +modification, are permitted provided that the following conditions are met: + + * Redistributions of source code must retain the above copyright + notice, this list of conditions and the following disclaimer. + + * Redistributions in binary form must reproduce the above copyright + notice, this list of conditions and the following disclaimer in the + documentation and/or other materials provided with the distribution. + + * Neither the name of "The Computer Language Benchmarks Game" nor the + name of "The Computer Language Shootout Benchmarks" nor the names of + its contributors may be used to endorse or promote products derived + from this software without specific prior written permission. + +THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" +AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE +IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE +ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT OWNER OR CONTRIBUTORS BE +LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR +CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF +SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS +INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN +CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) +ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE +POSSIBILITY OF SUCH DAMAGE. +*/ + +/* + * The Computer Language Benchmarks Game + * http://shootout.alioth.debian.org/ + * + * contributed by The Go Authors. + * Based on fannkuch.c by Heiner Marxen + */ + +package main + +import ( + "flag" + "fmt" +) + +var n = flag.Int("n", 7, "count") + +func fannkuch(n int) int { + if n < 1 { + return 0 + } + + n1 := n - 1 + perm := make([]int, n) + perm1 := make([]int, n) + count := make([]int, n) + + for i := 0; i < n; i++ { + perm1[i] = i // initial (trivial) permutation + } + + r := n + didpr := 0 + flipsMax := 0 + for { + if didpr < 30 { + for i := 0; i < n; i++ { + fmt.Printf("%d", 1+perm1[i]) + } + fmt.Printf("\n") + didpr++ + } + for ; r != 1; r-- { + count[r-1] = r + } + + if perm1[0] != 0 && perm1[n1] != n1 { + flips := 0 + for i := 1; i < n; i++ { // perm = perm1 + perm[i] = perm1[i] + } + k := perm1[0] // cache perm[0] in k + for { // k!=0 ==> k>0 + for i, j := 1, k-1; i < j; i, j = i+1, j-1 { + perm[i], perm[j] = perm[j], perm[i] + } + flips++ + // Now exchange k (caching perm[0]) and perm[k]... with care! + j := perm[k] + perm[k] = k + k = j + if k == 0 { + break + } + } + if flipsMax < flips { + flipsMax = flips + } + } + + for ; r < n; r++ { + // rotate down perm[0..r] by one + perm0 := perm1[0] + for i := 0; i < r; i++ { + perm1[i] = perm1[i+1] + } + perm1[r] = perm0 + count[r]-- + if count[r] > 0 { + break + } + } + if r == n { + return flipsMax + } + } + return 0 +} + +func main() { + flag.Parse() + fmt.Printf("Pfannkuchen(%d) = %d\n", *n, fannkuch(*n)) +} diff --git a/gcc/testsuite/go.test/test/bench/fannkuch.txt b/gcc/testsuite/go.test/test/bench/fannkuch.txt new file mode 100644 index 0000000..e66f779 --- /dev/null +++ b/gcc/testsuite/go.test/test/bench/fannkuch.txt @@ -0,0 +1,31 @@ +1234567 +2134567 +2314567 +3214567 +3124567 +1324567 +2341567 +3241567 +3421567 +4321567 +4231567 +2431567 +3412567 +4312567 +4132567 +1432567 +1342567 +3142567 +4123567 +1423567 +1243567 +2143567 +2413567 +4213567 +2345167 +3245167 +3425167 +4325167 +4235167 +2435167 +Pfannkuchen(7) = 16 diff --git a/gcc/testsuite/go.test/test/bench/fasta-1000.out b/gcc/testsuite/go.test/test/bench/fasta-1000.out new file mode 100644 index 0000000..f1caba0 --- /dev/null +++ b/gcc/testsuite/go.test/test/bench/fasta-1000.out @@ -0,0 +1,171 @@ +>ONE Homo sapiens alu +GGCCGGGCGCGGTGGCTCACGCCTGTAATCCCAGCACTTTGGGAGGCCGAGGCGGGCGGA +TCACCTGAGGTCAGGAGTTCGAGACCAGCCTGGCCAACATGGTGAAACCCCGTCTCTACT +AAAAATACAAAAATTAGCCGGGCGTGGTGGCGCGCGCCTGTAATCCCAGCTACTCGGGAG +GCTGAGGCAGGAGAATCGCTTGAACCCGGGAGGCGGAGGTTGCAGTGAGCCGAGATCGCG +CCACTGCACTCCAGCCTGGGCGACAGAGCGAGACTCCGTCTCAAAAAGGCCGGGCGCGGT +GGCTCACGCCTGTAATCCCAGCACTTTGGGAGGCCGAGGCGGGCGGATCACCTGAGGTCA +GGAGTTCGAGACCAGCCTGGCCAACATGGTGAAACCCCGTCTCTACTAAAAATACAAAAA +TTAGCCGGGCGTGGTGGCGCGCGCCTGTAATCCCAGCTACTCGGGAGGCTGAGGCAGGAG +AATCGCTTGAACCCGGGAGGCGGAGGTTGCAGTGAGCCGAGATCGCGCCACTGCACTCCA +GCCTGGGCGACAGAGCGAGACTCCGTCTCAAAAAGGCCGGGCGCGGTGGCTCACGCCTGT +AATCCCAGCACTTTGGGAGGCCGAGGCGGGCGGATCACCTGAGGTCAGGAGTTCGAGACC +AGCCTGGCCAACATGGTGAAACCCCGTCTCTACTAAAAATACAAAAATTAGCCGGGCGTG +GTGGCGCGCGCCTGTAATCCCAGCTACTCGGGAGGCTGAGGCAGGAGAATCGCTTGAACC +CGGGAGGCGGAGGTTGCAGTGAGCCGAGATCGCGCCACTGCACTCCAGCCTGGGCGACAG +AGCGAGACTCCGTCTCAAAAAGGCCGGGCGCGGTGGCTCACGCCTGTAATCCCAGCACTT +TGGGAGGCCGAGGCGGGCGGATCACCTGAGGTCAGGAGTTCGAGACCAGCCTGGCCAACA +TGGTGAAACCCCGTCTCTACTAAAAATACAAAAATTAGCCGGGCGTGGTGGCGCGCGCCT +GTAATCCCAGCTACTCGGGAGGCTGAGGCAGGAGAATCGCTTGAACCCGGGAGGCGGAGG +TTGCAGTGAGCCGAGATCGCGCCACTGCACTCCAGCCTGGGCGACAGAGCGAGACTCCGT +CTCAAAAAGGCCGGGCGCGGTGGCTCACGCCTGTAATCCCAGCACTTTGGGAGGCCGAGG +CGGGCGGATCACCTGAGGTCAGGAGTTCGAGACCAGCCTGGCCAACATGGTGAAACCCCG +TCTCTACTAAAAATACAAAAATTAGCCGGGCGTGGTGGCGCGCGCCTGTAATCCCAGCTA +CTCGGGAGGCTGAGGCAGGAGAATCGCTTGAACCCGGGAGGCGGAGGTTGCAGTGAGCCG +AGATCGCGCCACTGCACTCCAGCCTGGGCGACAGAGCGAGACTCCGTCTCAAAAAGGCCG +GGCGCGGTGGCTCACGCCTGTAATCCCAGCACTTTGGGAGGCCGAGGCGGGCGGATCACC +TGAGGTCAGGAGTTCGAGACCAGCCTGGCCAACATGGTGAAACCCCGTCTCTACTAAAAA +TACAAAAATTAGCCGGGCGTGGTGGCGCGCGCCTGTAATCCCAGCTACTCGGGAGGCTGA +GGCAGGAGAATCGCTTGAACCCGGGAGGCGGAGGTTGCAGTGAGCCGAGATCGCGCCACT +GCACTCCAGCCTGGGCGACAGAGCGAGACTCCGTCTCAAAAAGGCCGGGCGCGGTGGCTC +ACGCCTGTAATCCCAGCACTTTGGGAGGCCGAGGCGGGCGGATCACCTGAGGTCAGGAGT +TCGAGACCAGCCTGGCCAACATGGTGAAACCCCGTCTCTACTAAAAATACAAAAATTAGC +CGGGCGTGGTGGCGCGCGCCTGTAATCCCAGCTACTCGGGAGGCTGAGGCAGGAGAATCG +CTTGAACCCGGGAGGCGGAGGTTGCAGTGAGCCGAGATCGCGCCACTGCACTCCAGCCTG +GGCGACAGAGCGAGACTCCG +>TWO IUB ambiguity codes +cttBtatcatatgctaKggNcataaaSatgtaaaDcDRtBggDtctttataattcBgtcg +tactDtDagcctatttSVHtHttKtgtHMaSattgWaHKHttttagacatWatgtRgaaa +NtactMcSMtYtcMgRtacttctWBacgaaatatagScDtttgaagacacatagtVgYgt +cattHWtMMWcStgttaggKtSgaYaaccWStcgBttgcgaMttBYatcWtgacaYcaga +gtaBDtRacttttcWatMttDBcatWtatcttactaBgaYtcttgttttttttYaaScYa +HgtgttNtSatcMtcVaaaStccRcctDaataataStcYtRDSaMtDttgttSagtRRca +tttHatSttMtWgtcgtatSSagactYaaattcaMtWatttaSgYttaRgKaRtccactt +tattRggaMcDaWaWagttttgacatgttctacaaaRaatataataaMttcgDacgaSSt +acaStYRctVaNMtMgtaggcKatcttttattaaaaagVWaHKYagtttttatttaacct +tacgtVtcVaattVMBcttaMtttaStgacttagattWWacVtgWYagWVRctDattBYt +gtttaagaagattattgacVatMaacattVctgtBSgaVtgWWggaKHaatKWcBScSWa +accRVacacaaactaccScattRatatKVtactatatttHttaagtttSKtRtacaaagt +RDttcaaaaWgcacatWaDgtDKacgaacaattacaRNWaatHtttStgttattaaMtgt +tgDcgtMgcatBtgcttcgcgaDWgagctgcgaggggVtaaScNatttacttaatgacag +cccccacatYScaMgtaggtYaNgttctgaMaacNaMRaacaaacaKctacatagYWctg +ttWaaataaaataRattagHacacaagcgKatacBttRttaagtatttccgatctHSaat +actcNttMaagtattMtgRtgaMgcataatHcMtaBSaRattagttgatHtMttaaKagg +YtaaBataSaVatactWtataVWgKgttaaaacagtgcgRatatacatVtHRtVYataSa +KtWaStVcNKHKttactatccctcatgWHatWaRcttactaggatctataDtDHBttata +aaaHgtacVtagaYttYaKcctattcttcttaataNDaaggaaaDYgcggctaaWSctBa +aNtgctggMBaKctaMVKagBaactaWaDaMaccYVtNtaHtVWtKgRtcaaNtYaNacg +gtttNattgVtttctgtBaWgtaattcaagtcaVWtactNggattctttaYtaaagccgc +tcttagHVggaYtgtNcDaVagctctctKgacgtatagYcctRYHDtgBattDaaDgccK +tcHaaStttMcctagtattgcRgWBaVatHaaaataYtgtttagMDMRtaataaggatMt +ttctWgtNtgtgaaaaMaatatRtttMtDgHHtgtcattttcWattRSHcVagaagtacg +ggtaKVattKYagactNaatgtttgKMMgYNtcccgSKttctaStatatNVataYHgtNa +BKRgNacaactgatttcctttaNcgatttctctataScaHtataRagtcRVttacDSDtt +aRtSatacHgtSKacYagttMHtWataggatgactNtatSaNctataVtttRNKtgRacc +tttYtatgttactttttcctttaaacatacaHactMacacggtWataMtBVacRaSaatc +cgtaBVttccagccBcttaRKtgtgcctttttRtgtcagcRttKtaaacKtaaatctcac +aattgcaNtSBaaccgggttattaaBcKatDagttactcttcattVtttHaaggctKKga +tacatcBggScagtVcacattttgaHaDSgHatRMaHWggtatatRgccDttcgtatcga +aacaHtaagttaRatgaVacttagattVKtaaYttaaatcaNatccRttRRaMScNaaaD +gttVHWgtcHaaHgacVaWtgttScactaagSgttatcttagggDtaccagWattWtRtg +ttHWHacgattBtgVcaYatcggttgagKcWtKKcaVtgaYgWctgYggVctgtHgaNcV +taBtWaaYatcDRaaRtSctgaHaYRttagatMatgcatttNattaDttaattgttctaa +ccctcccctagaWBtttHtBccttagaVaatMcBHagaVcWcagBVttcBtaYMccagat +gaaaaHctctaacgttagNWRtcggattNatcRaNHttcagtKttttgWatWttcSaNgg +gaWtactKKMaacatKatacNattgctWtatctaVgagctatgtRaHtYcWcttagccaa +tYttWttaWSSttaHcaaaaagVacVgtaVaRMgattaVcDactttcHHggHRtgNcctt +tYatcatKgctcctctatVcaaaaKaaaagtatatctgMtWtaaaacaStttMtcgactt +taSatcgDataaactaaacaagtaaVctaggaSccaatMVtaaSKNVattttgHccatca +cBVctgcaVatVttRtactgtVcaattHgtaaattaaattttYtatattaaRSgYtgBag +aHSBDgtagcacRHtYcBgtcacttacactaYcgctWtattgSHtSatcataaatataHt +cgtYaaMNgBaatttaRgaMaatatttBtttaaaHHKaatctgatWatYaacttMctctt +ttVctagctDaaagtaVaKaKRtaacBgtatccaaccactHHaagaagaaggaNaaatBW +attccgStaMSaMatBttgcatgRSacgttVVtaaDMtcSgVatWcaSatcttttVatag +ttactttacgatcaccNtaDVgSRcgVcgtgaacgaNtaNatatagtHtMgtHcMtagaa +attBgtataRaaaacaYKgtRccYtatgaagtaataKgtaaMttgaaRVatgcagaKStc +tHNaaatctBBtcttaYaBWHgtVtgacagcaRcataWctcaBcYacYgatDgtDHccta +>THREE Homo sapiens frequency +aacacttcaccaggtatcgtgaaggctcaagattacccagagaacctttgcaatataaga +atatgtatgcagcattaccctaagtaattatattctttttctgactcaaagtgacaagcc +ctagtgtatattaaatcggtatatttgggaaattcctcaaactatcctaatcaggtagcc +atgaaagtgatcaaaaaagttcgtacttataccatacatgaattctggccaagtaaaaaa +tagattgcgcaaaattcgtaccttaagtctctcgccaagatattaggatcctattactca +tatcgtgtttttctttattgccgccatccccggagtatctcacccatccttctcttaaag +gcctaatattacctatgcaaataaacatatattgttgaaaattgagaacctgatcgtgat +tcttatgtgtaccatatgtatagtaatcacgcgactatatagtgctttagtatcgcccgt +gggtgagtgaatattctgggctagcgtgagatagtttcttgtcctaatatttttcagatc +gaatagcttctatttttgtgtttattgacatatgtcgaaactccttactcagtgaaagtc +atgaccagatccacgaacaatcttcggaatcagtctcgttttacggcggaatcttgagtc +taacttatatcccgtcgcttactttctaacaccccttatgtatttttaaaattacgttta +ttcgaacgtacttggcggaagcgttattttttgaagtaagttacattgggcagactcttg +acattttcgatacgactttctttcatccatcacaggactcgttcgtattgatatcagaag +ctcgtgatgattagttgtcttctttaccaatactttgaggcctattctgcgaaatttttg +ttgccctgcgaacttcacataccaaggaacacctcgcaacatgccttcatatccatcgtt +cattgtaattcttacacaatgaatcctaagtaattacatccctgcgtaaaagatggtagg +ggcactgaggatatattaccaagcatttagttatgagtaatcagcaatgtttcttgtatt +aagttctctaaaatagttacatcgtaatgttatctcgggttccgcgaataaacgagatag +attcattatatatggccctaagcaaaaacctcctcgtattctgttggtaattagaatcac +acaatacgggttgagatattaattatttgtagtacgaagagatataaaaagatgaacaat +tactcaagtcaagatgtatacgggatttataataaaaatcgggtagagatctgctttgca +attcagacgtgccactaaatcgtaatatgtcgcgttacatcagaaagggtaactattatt +aattaataaagggcttaatcactacatattagatcttatccgatagtcttatctattcgt +tgtatttttaagcggttctaattcagtcattatatcagtgctccgagttctttattattg +ttttaaggatgacaaaatgcctcttgttataacgctgggagaagcagactaagagtcgga +gcagttggtagaatgaggctgcaaaagacggtctcgacgaatggacagactttactaaac +caatgaaagacagaagtagagcaaagtctgaagtggtatcagcttaattatgacaaccct +taatacttccctttcgccgaatactggcgtggaaaggttttaaaagtcgaagtagttaga +ggcatctctcgctcataaataggtagactactcgcaatccaatgtgactatgtaatactg +ggaacatcagtccgcgatgcagcgtgtttatcaaccgtccccactcgcctggggagacat +gagaccacccccgtggggattattagtccgcagtaatcgactcttgacaatccttttcga +ttatgtcatagcaatttacgacagttcagcgaagtgactactcggcgaaatggtattact +aaagcattcgaacccacatgaatgtgattcttggcaatttctaatccactaaagcttttc +cgttgaatctggttgtagatatttatataagttcactaattaagatcacggtagtatatt +gatagtgatgtctttgcaagaggttggccgaggaatttacggattctctattgatacaat +ttgtctggcttataactcttaaggctgaaccaggcgtttttagacgacttgatcagctgt +tagaatggtttggactccctctttcatgtcagtaacatttcagccgttattgttacgata +tgcttgaacaatattgatctaccacacacccatagtatattttataggtcatgctgttac +ctacgagcatggtattccacttcccattcaatgagtattcaacatcactagcctcagaga +tgatgacccacctctaataacgtcacgttgcggccatgtgaaacctgaacttgagtagac +gatatcaagcgctttaaattgcatataacatttgagggtaaagctaagcggatgctttat +ataatcaatactcaataataagatttgattgcattttagagttatgacacgacatagttc +actaacgagttactattcccagatctagactgaagtactgatcgagacgatccttacgtc +gatgatcgttagttatcgacttaggtcgggtctctagcggtattggtacttaaccggaca +ctatactaataacccatgatcaaagcataacagaatacagacgataatttcgccaacata +tatgtacagaccccaagcatgagaagctcattgaaagctatcattgaagtcccgctcaca +atgtgtcttttccagacggtttaactggttcccgggagtcctggagtttcgacttacata +aatggaaacaatgtattttgctaatttatctatagcgtcatttggaccaatacagaatat +tatgttgcctagtaatccactataacccgcaagtgctgatagaaaatttttagacgattt +ataaatgccccaagtatccctcccgtgaatcctccgttatactaattagtattcgttcat +acgtataccgcgcatatatgaacatttggcgataaggcgcgtgaattgttacgtgacaga +gatagcagtttcttgtgatatggttaacagacgtacatgaagggaaactttatatctata +gtgatgcttccgtagaaataccgccactggtctgccaatgatgaagtatgtagctttagg +tttgtactatgaggctttcgtttgtttgcagagtataacagttgcgagtgaaaaaccgac +gaatttatactaatacgctttcactattggctacaaaatagggaagagtttcaatcatga +gagggagtatatggatgctttgtagctaaaggtagaacgtatgtatatgctgccgttcat +tcttgaaagatacataagcgataagttacgacaattataagcaacatccctaccttcgta +acgatttcactgttactgcgcttgaaatacactatggggctattggcggagagaagcaga +tcgcgccgagcatatacgagacctataatgttgatgatagagaaggcgtctgaattgata +catcgaagtacactttctttcgtagtatctctcgtcctctttctatctccggacacaaga +attaagttatatatatagagtcttaccaatcatgttgaatcctgattctcagagttcttt +ggcgggccttgtgatgactgagaaacaatgcaatattgctccaaatttcctaagcaaatt +ctcggttatgttatgttatcagcaaagcgttacgttatgttatttaaatctggaatgacg +gagcgaagttcttatgtcggtgtgggaataattcttttgaagacagcactccttaaataa +tatcgctccgtgtttgtatttatcgaatgggtctgtaaccttgcacaagcaaatcggtgg +tgtatatatcggataacaattaatacgatgttcatagtgacagtatactgatcgagtcct +ctaaagtcaattacctcacttaacaatctcattgatgttgtgtcattcccggtatcgccc +gtagtatgtgctctgattgaccgagtgtgaaccaaggaacatctactaatgcctttgtta +ggtaagatctctctgaattccttcgtgccaacttaaaacattatcaaaatttcttctact +tggattaactacttttacgagcatggcaaattcccctgtggaagacggttcattattatc +ggaaaccttatagaaattgcgtgttgactgaaattagatttttattgtaagagttgcatc +tttgcgattcctctggtctagcttccaatgaacagtcctcccttctattcgacatcgggt +ccttcgtacatgtctttgcgatgtaataattaggttcggagtgtggccttaatgggtgca +actaggaatacaacgcaaatttgctgacatgatagcaaatcggtatgccggcaccaaaac +gtgctccttgcttagcttgtgaatgagactcagtagttaaataaatccatatctgcaatc +gattccacaggtattgtccactatctttgaactactctaagagatacaagcttagctgag +accgaggtgtatatgactacgctgatatctgtaaggtaccaatgcaggcaaagtatgcga +gaagctaataccggctgtttccagctttataagattaaaatttggctgtcctggcggcct +cagaattgttctatcgtaatcagttggttcattaattagctaagtacgaggtacaactta +tctgtcccagaacagctccacaagtttttttacagccgaaacccctgtgtgaatcttaat +atccaagcgcgttatctgattagagtttacaactcagtattttatcagtacgttttgttt +ccaacattacccggtatgacaaaatgacgccacgtgtcgaataatggtctgaccaatgta +ggaagtgaaaagataaatat diff --git a/gcc/testsuite/go.test/test/bench/fasta.c b/gcc/testsuite/go.test/test/bench/fasta.c new file mode 100644 index 0000000..78a8490 --- /dev/null +++ b/gcc/testsuite/go.test/test/bench/fasta.c @@ -0,0 +1,217 @@ +/* +Redistribution and use in source and binary forms, with or without +modification, are permitted provided that the following conditions are met: + + * Redistributions of source code must retain the above copyright + notice, this list of conditions and the following disclaimer. + + * Redistributions in binary form must reproduce the above copyright + notice, this list of conditions and the following disclaimer in the + documentation and/or other materials provided with the distribution. + + * Neither the name of "The Computer Language Benchmarks Game" nor the + name of "The Computer Language Shootout Benchmarks" nor the names of + its contributors may be used to endorse or promote products derived + from this software without specific prior written permission. + +THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" +AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE +IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE +ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT OWNER OR CONTRIBUTORS BE +LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR +CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF +SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS +INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN +CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) +ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE +POSSIBILITY OF SUCH DAMAGE. +*/ + +/* + * http://shootout.alioth.debian.org/u32/program.php?test=fasta&lang=gcc&id=3 + */ + +/* The Computer Language Benchmarks Game + * http://shootout.alioth.debian.org/ + * + * contributed by Petr Prokhorenkov + */ + +#include <stdio.h> +#include <stdlib.h> +#include <string.h> + +// not available on OS X +#define fwrite_unlocked fwrite +#define fputc_unlocked fputc +#define fputs_unlocked fputs + +#define ARRAY_SIZE(a) (sizeof(a)/sizeof(a[0])) +#define unlikely(x) __builtin_expect((x), 0) + +#define IM 139968 +#define IA 3877 +#define IC 29573 + +#define LINE_LEN 60 +#define LOOKUP_SIZE 4096 +#define LOOKUP_SCALE ((float)(LOOKUP_SIZE - 1)) + +typedef unsigned random_t; + +void +random_init(random_t *random) { + *random = 42; +} + +// Special version with result rescaled to LOOKUP_SCALE. +static inline +float +random_next_lookup(random_t *random) { + *random = (*random*IA + IC)%IM; + + return (*random)*(LOOKUP_SCALE/IM); +} + +struct amino_acid { + char sym; + float prob; + float cprob_lookup; +}; + +void +repeat(const char *alu, const char *title, int n) { + int len = strlen(alu); + char buffer[len + LINE_LEN]; + int pos = 0; + + memcpy(buffer, alu, len); + memcpy(buffer + len, alu, LINE_LEN); + + fputs_unlocked(title, stdout); + while (n > 0) { + int bytes = n > LINE_LEN ? LINE_LEN : n; + + fwrite_unlocked(buffer + pos, bytes, 1, stdout); + pos += bytes; + if (pos > len) { + pos -= len; + } + fputc_unlocked('\n', stdout); + n -= bytes; + } +} + +/* + * Lookup table contains mapping from real values to cumulative + * probabilities. Careful selection of table size allows lookup + * virtually in constant time. + * + * All cumulative probabilities are rescaled to LOOKUP_SCALE, + * this allows to save one multiplication operation on each iteration + * in randomize(). + */ + +void * +fill_lookup(struct amino_acid **lookup, struct amino_acid *amino_acid, int amino_acid_size) { + float p = 0; + int i, j; + + for (i = 0; i < amino_acid_size; i++) { + p += amino_acid[i].prob; + amino_acid[i].cprob_lookup = p*LOOKUP_SCALE; + } + + // Prevent rounding error. + amino_acid[amino_acid_size - 1].cprob_lookup = LOOKUP_SIZE - 1; + + for (i = 0, j = 0; i < LOOKUP_SIZE; i++) { + while (amino_acid[j].cprob_lookup < i) { + j++; + } + lookup[i] = &amino_acid[j]; + } + + return 0; +} + +void +randomize(struct amino_acid *amino_acid, int amino_acid_size, + const char *title, int n, random_t *rand) { + struct amino_acid *lookup[LOOKUP_SIZE]; + char line_buffer[LINE_LEN + 1]; + int i, j; + + line_buffer[LINE_LEN] = '\n'; + + fill_lookup(lookup, amino_acid, amino_acid_size); + + fputs_unlocked(title, stdout); + + for (i = 0, j = 0; i < n; i++, j++) { + if (j == LINE_LEN) { + fwrite_unlocked(line_buffer, LINE_LEN + 1, 1, stdout); + j = 0; + } + + float r = random_next_lookup(rand); + struct amino_acid *u = lookup[(short)r]; + while (unlikely(u->cprob_lookup < r)) { + ++u; + } + line_buffer[j] = u->sym; + } + line_buffer[j] = '\n'; + fwrite_unlocked(line_buffer, j + 1, 1, stdout); +} + +struct amino_acid amino_acid[] = { + { 'a', 0.27 }, + { 'c', 0.12 }, + { 'g', 0.12 }, + { 't', 0.27 }, + + { 'B', 0.02 }, + { 'D', 0.02 }, + { 'H', 0.02 }, + { 'K', 0.02 }, + { 'M', 0.02 }, + { 'N', 0.02 }, + { 'R', 0.02 }, + { 'S', 0.02 }, + { 'V', 0.02 }, + { 'W', 0.02 }, + { 'Y', 0.02 }, +}; + +struct amino_acid homo_sapiens[] = { + { 'a', 0.3029549426680 }, + { 'c', 0.1979883004921 }, + { 'g', 0.1975473066391 }, + { 't', 0.3015094502008 }, +}; + +static const char alu[] = + "GGCCGGGCGCGGTGGCTCACGCCTGTAATCCCAGCACTTTG" + "GGAGGCCGAGGCGGGCGGATCACCTGAGGTCAGGAGTTCGA" + "GACCAGCCTGGCCAACATGGTGAAACCCCGTCTCTACTAAA" + "AATACAAAAATTAGCCGGGCGTGGTGGCGCGCGCCTGTAAT" + "CCCAGCTACTCGGGAGGCTGAGGCAGGAGAATCGCTTGAAC" + "CCGGGAGGCGGAGGTTGCAGTGAGCCGAGATCGCGCCACTG" + "CACTCCAGCCTGGGCGACAGAGCGAGACTCCGTCTCAAAAA"; + +int +main(int argc, const char **argv) { + int n = argc > 1 ? atoi( argv[1] ) : 512; + random_t rand; + + random_init(&rand); + + repeat(alu, ">ONE Homo sapiens alu\n", n*2); + randomize(amino_acid, ARRAY_SIZE(amino_acid), + ">TWO IUB ambiguity codes\n", n*3, &rand); + randomize(homo_sapiens, ARRAY_SIZE(homo_sapiens), + ">THREE Homo sapiens frequency\n", n*5, &rand); + + return 0; +}
\ No newline at end of file diff --git a/gcc/testsuite/go.test/test/bench/fasta.go b/gcc/testsuite/go.test/test/bench/fasta.go new file mode 100644 index 0000000..470bdb3 --- /dev/null +++ b/gcc/testsuite/go.test/test/bench/fasta.go @@ -0,0 +1,209 @@ +/* +Redistribution and use in source and binary forms, with or without +modification, are permitted provided that the following conditions are met: + + * Redistributions of source code must retain the above copyright + notice, this list of conditions and the following disclaimer. + + * Redistributions in binary form must reproduce the above copyright + notice, this list of conditions and the following disclaimer in the + documentation and/or other materials provided with the distribution. + + * Neither the name of "The Computer Language Benchmarks Game" nor the + name of "The Computer Language Shootout Benchmarks" nor the names of + its contributors may be used to endorse or promote products derived + from this software without specific prior written permission. + +THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" +AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE +IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE +ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT OWNER OR CONTRIBUTORS BE +LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR +CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF +SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS +INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN +CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) +ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE +POSSIBILITY OF SUCH DAMAGE. +*/ + +/* The Computer Language Benchmarks Game + * http://shootout.alioth.debian.org/ + * + * contributed by The Go Authors. + * Based on C program by by Petr Prokhorenkov. + */ + +package main + +import ( + "bytes" + "flag" + "os" +) + +var out = make(buffer, 0, 32768) + +var n = flag.Int("n", 1000, "length of result") + +const Line = 60 + +func Repeat(alu []byte, n int) { + buf := bytes.Add(alu, alu) + off := 0 + for n > 0 { + m := n + if m > Line { + m = Line + } + buf1 := out.NextWrite(m + 1) + copy(buf1, buf[off:]) + buf1[m] = '\n' + if off += m; off >= len(alu) { + off -= len(alu) + } + n -= m + } +} + +const ( + IM = 139968 + IA = 3877 + IC = 29573 + + LookupSize = 4096 + LookupScale float64 = LookupSize - 1 +) + +var rand uint32 = 42 + +type Acid struct { + sym byte + prob float64 + cprob float64 + next *Acid +} + +func computeLookup(acid []Acid) *[LookupSize]*Acid { + var lookup [LookupSize]*Acid + var p float64 + for i := range acid { + p += acid[i].prob + acid[i].cprob = p * LookupScale + if i > 0 { + acid[i-1].next = &acid[i] + } + } + acid[len(acid)-1].cprob = 1.0 * LookupScale + + j := 0 + for i := range lookup { + for acid[j].cprob < float64(i) { + j++ + } + lookup[i] = &acid[j] + } + + return &lookup +} + +func Random(acid []Acid, n int) { + lookup := computeLookup(acid) + for n > 0 { + m := n + if m > Line { + m = Line + } + buf := out.NextWrite(m + 1) + f := LookupScale / IM + myrand := rand + for i := 0; i < m; i++ { + myrand = (myrand*IA + IC) % IM + r := float64(int(myrand)) * f + a := lookup[int(r)] + for a.cprob < r { + a = a.next + } + buf[i] = a.sym + } + rand = myrand + buf[m] = '\n' + n -= m + } +} + +func main() { + defer out.Flush() + + flag.Parse() + + iub := []Acid{ + Acid{prob: 0.27, sym: 'a'}, + Acid{prob: 0.12, sym: 'c'}, + Acid{prob: 0.12, sym: 'g'}, + Acid{prob: 0.27, sym: 't'}, + Acid{prob: 0.02, sym: 'B'}, + Acid{prob: 0.02, sym: 'D'}, + Acid{prob: 0.02, sym: 'H'}, + Acid{prob: 0.02, sym: 'K'}, + Acid{prob: 0.02, sym: 'M'}, + Acid{prob: 0.02, sym: 'N'}, + Acid{prob: 0.02, sym: 'R'}, + Acid{prob: 0.02, sym: 'S'}, + Acid{prob: 0.02, sym: 'V'}, + Acid{prob: 0.02, sym: 'W'}, + Acid{prob: 0.02, sym: 'Y'}, + } + + homosapiens := []Acid{ + Acid{prob: 0.3029549426680, sym: 'a'}, + Acid{prob: 0.1979883004921, sym: 'c'}, + Acid{prob: 0.1975473066391, sym: 'g'}, + Acid{prob: 0.3015094502008, sym: 't'}, + } + + alu := []byte( + "GGCCGGGCGCGGTGGCTCACGCCTGTAATCCCAGCACTTTGG" + + "GAGGCCGAGGCGGGCGGATCACCTGAGGTCAGGAGTTCGAGA" + + "CCAGCCTGGCCAACATGGTGAAACCCCGTCTCTACTAAAAAT" + + "ACAAAAATTAGCCGGGCGTGGTGGCGCGCGCCTGTAATCCCA" + + "GCTACTCGGGAGGCTGAGGCAGGAGAATCGCTTGAACCCGGG" + + "AGGCGGAGGTTGCAGTGAGCCGAGATCGCGCCACTGCACTCC" + + "AGCCTGGGCGACAGAGCGAGACTCCGTCTCAAAAA") + + out.WriteString(">ONE Homo sapiens alu\n") + Repeat(alu, 2**n) + out.WriteString(">TWO IUB ambiguity codes\n") + Random(iub, 3**n) + out.WriteString(">THREE Homo sapiens frequency\n") + Random(homosapiens, 5**n) +} + + +type buffer []byte + +func (b *buffer) Flush() { + p := *b + if len(p) > 0 { + os.Stdout.Write(p) + } + *b = p[0:0] +} + +func (b *buffer) WriteString(s string) { + p := b.NextWrite(len(s)) + for i := 0; i < len(s); i++ { + p[i] = s[i] + } +} + +func (b *buffer) NextWrite(n int) []byte { + p := *b + if len(p)+n > cap(p) { + b.Flush() + p = *b + } + out := p[len(p) : len(p)+n] + *b = p[0 : len(p)+n] + return out +} diff --git a/gcc/testsuite/go.test/test/bench/fasta.txt b/gcc/testsuite/go.test/test/bench/fasta.txt new file mode 100644 index 0000000..f1caba0 --- /dev/null +++ b/gcc/testsuite/go.test/test/bench/fasta.txt @@ -0,0 +1,171 @@ +>ONE Homo sapiens alu +GGCCGGGCGCGGTGGCTCACGCCTGTAATCCCAGCACTTTGGGAGGCCGAGGCGGGCGGA +TCACCTGAGGTCAGGAGTTCGAGACCAGCCTGGCCAACATGGTGAAACCCCGTCTCTACT +AAAAATACAAAAATTAGCCGGGCGTGGTGGCGCGCGCCTGTAATCCCAGCTACTCGGGAG +GCTGAGGCAGGAGAATCGCTTGAACCCGGGAGGCGGAGGTTGCAGTGAGCCGAGATCGCG +CCACTGCACTCCAGCCTGGGCGACAGAGCGAGACTCCGTCTCAAAAAGGCCGGGCGCGGT +GGCTCACGCCTGTAATCCCAGCACTTTGGGAGGCCGAGGCGGGCGGATCACCTGAGGTCA +GGAGTTCGAGACCAGCCTGGCCAACATGGTGAAACCCCGTCTCTACTAAAAATACAAAAA +TTAGCCGGGCGTGGTGGCGCGCGCCTGTAATCCCAGCTACTCGGGAGGCTGAGGCAGGAG +AATCGCTTGAACCCGGGAGGCGGAGGTTGCAGTGAGCCGAGATCGCGCCACTGCACTCCA +GCCTGGGCGACAGAGCGAGACTCCGTCTCAAAAAGGCCGGGCGCGGTGGCTCACGCCTGT +AATCCCAGCACTTTGGGAGGCCGAGGCGGGCGGATCACCTGAGGTCAGGAGTTCGAGACC +AGCCTGGCCAACATGGTGAAACCCCGTCTCTACTAAAAATACAAAAATTAGCCGGGCGTG +GTGGCGCGCGCCTGTAATCCCAGCTACTCGGGAGGCTGAGGCAGGAGAATCGCTTGAACC +CGGGAGGCGGAGGTTGCAGTGAGCCGAGATCGCGCCACTGCACTCCAGCCTGGGCGACAG +AGCGAGACTCCGTCTCAAAAAGGCCGGGCGCGGTGGCTCACGCCTGTAATCCCAGCACTT +TGGGAGGCCGAGGCGGGCGGATCACCTGAGGTCAGGAGTTCGAGACCAGCCTGGCCAACA +TGGTGAAACCCCGTCTCTACTAAAAATACAAAAATTAGCCGGGCGTGGTGGCGCGCGCCT +GTAATCCCAGCTACTCGGGAGGCTGAGGCAGGAGAATCGCTTGAACCCGGGAGGCGGAGG +TTGCAGTGAGCCGAGATCGCGCCACTGCACTCCAGCCTGGGCGACAGAGCGAGACTCCGT +CTCAAAAAGGCCGGGCGCGGTGGCTCACGCCTGTAATCCCAGCACTTTGGGAGGCCGAGG +CGGGCGGATCACCTGAGGTCAGGAGTTCGAGACCAGCCTGGCCAACATGGTGAAACCCCG +TCTCTACTAAAAATACAAAAATTAGCCGGGCGTGGTGGCGCGCGCCTGTAATCCCAGCTA +CTCGGGAGGCTGAGGCAGGAGAATCGCTTGAACCCGGGAGGCGGAGGTTGCAGTGAGCCG +AGATCGCGCCACTGCACTCCAGCCTGGGCGACAGAGCGAGACTCCGTCTCAAAAAGGCCG +GGCGCGGTGGCTCACGCCTGTAATCCCAGCACTTTGGGAGGCCGAGGCGGGCGGATCACC +TGAGGTCAGGAGTTCGAGACCAGCCTGGCCAACATGGTGAAACCCCGTCTCTACTAAAAA +TACAAAAATTAGCCGGGCGTGGTGGCGCGCGCCTGTAATCCCAGCTACTCGGGAGGCTGA +GGCAGGAGAATCGCTTGAACCCGGGAGGCGGAGGTTGCAGTGAGCCGAGATCGCGCCACT +GCACTCCAGCCTGGGCGACAGAGCGAGACTCCGTCTCAAAAAGGCCGGGCGCGGTGGCTC +ACGCCTGTAATCCCAGCACTTTGGGAGGCCGAGGCGGGCGGATCACCTGAGGTCAGGAGT +TCGAGACCAGCCTGGCCAACATGGTGAAACCCCGTCTCTACTAAAAATACAAAAATTAGC +CGGGCGTGGTGGCGCGCGCCTGTAATCCCAGCTACTCGGGAGGCTGAGGCAGGAGAATCG +CTTGAACCCGGGAGGCGGAGGTTGCAGTGAGCCGAGATCGCGCCACTGCACTCCAGCCTG +GGCGACAGAGCGAGACTCCG +>TWO IUB ambiguity codes +cttBtatcatatgctaKggNcataaaSatgtaaaDcDRtBggDtctttataattcBgtcg +tactDtDagcctatttSVHtHttKtgtHMaSattgWaHKHttttagacatWatgtRgaaa +NtactMcSMtYtcMgRtacttctWBacgaaatatagScDtttgaagacacatagtVgYgt +cattHWtMMWcStgttaggKtSgaYaaccWStcgBttgcgaMttBYatcWtgacaYcaga +gtaBDtRacttttcWatMttDBcatWtatcttactaBgaYtcttgttttttttYaaScYa +HgtgttNtSatcMtcVaaaStccRcctDaataataStcYtRDSaMtDttgttSagtRRca +tttHatSttMtWgtcgtatSSagactYaaattcaMtWatttaSgYttaRgKaRtccactt +tattRggaMcDaWaWagttttgacatgttctacaaaRaatataataaMttcgDacgaSSt +acaStYRctVaNMtMgtaggcKatcttttattaaaaagVWaHKYagtttttatttaacct +tacgtVtcVaattVMBcttaMtttaStgacttagattWWacVtgWYagWVRctDattBYt +gtttaagaagattattgacVatMaacattVctgtBSgaVtgWWggaKHaatKWcBScSWa +accRVacacaaactaccScattRatatKVtactatatttHttaagtttSKtRtacaaagt +RDttcaaaaWgcacatWaDgtDKacgaacaattacaRNWaatHtttStgttattaaMtgt +tgDcgtMgcatBtgcttcgcgaDWgagctgcgaggggVtaaScNatttacttaatgacag +cccccacatYScaMgtaggtYaNgttctgaMaacNaMRaacaaacaKctacatagYWctg +ttWaaataaaataRattagHacacaagcgKatacBttRttaagtatttccgatctHSaat +actcNttMaagtattMtgRtgaMgcataatHcMtaBSaRattagttgatHtMttaaKagg +YtaaBataSaVatactWtataVWgKgttaaaacagtgcgRatatacatVtHRtVYataSa +KtWaStVcNKHKttactatccctcatgWHatWaRcttactaggatctataDtDHBttata +aaaHgtacVtagaYttYaKcctattcttcttaataNDaaggaaaDYgcggctaaWSctBa +aNtgctggMBaKctaMVKagBaactaWaDaMaccYVtNtaHtVWtKgRtcaaNtYaNacg +gtttNattgVtttctgtBaWgtaattcaagtcaVWtactNggattctttaYtaaagccgc +tcttagHVggaYtgtNcDaVagctctctKgacgtatagYcctRYHDtgBattDaaDgccK +tcHaaStttMcctagtattgcRgWBaVatHaaaataYtgtttagMDMRtaataaggatMt +ttctWgtNtgtgaaaaMaatatRtttMtDgHHtgtcattttcWattRSHcVagaagtacg +ggtaKVattKYagactNaatgtttgKMMgYNtcccgSKttctaStatatNVataYHgtNa +BKRgNacaactgatttcctttaNcgatttctctataScaHtataRagtcRVttacDSDtt +aRtSatacHgtSKacYagttMHtWataggatgactNtatSaNctataVtttRNKtgRacc +tttYtatgttactttttcctttaaacatacaHactMacacggtWataMtBVacRaSaatc +cgtaBVttccagccBcttaRKtgtgcctttttRtgtcagcRttKtaaacKtaaatctcac +aattgcaNtSBaaccgggttattaaBcKatDagttactcttcattVtttHaaggctKKga +tacatcBggScagtVcacattttgaHaDSgHatRMaHWggtatatRgccDttcgtatcga +aacaHtaagttaRatgaVacttagattVKtaaYttaaatcaNatccRttRRaMScNaaaD +gttVHWgtcHaaHgacVaWtgttScactaagSgttatcttagggDtaccagWattWtRtg +ttHWHacgattBtgVcaYatcggttgagKcWtKKcaVtgaYgWctgYggVctgtHgaNcV +taBtWaaYatcDRaaRtSctgaHaYRttagatMatgcatttNattaDttaattgttctaa +ccctcccctagaWBtttHtBccttagaVaatMcBHagaVcWcagBVttcBtaYMccagat +gaaaaHctctaacgttagNWRtcggattNatcRaNHttcagtKttttgWatWttcSaNgg +gaWtactKKMaacatKatacNattgctWtatctaVgagctatgtRaHtYcWcttagccaa +tYttWttaWSSttaHcaaaaagVacVgtaVaRMgattaVcDactttcHHggHRtgNcctt +tYatcatKgctcctctatVcaaaaKaaaagtatatctgMtWtaaaacaStttMtcgactt +taSatcgDataaactaaacaagtaaVctaggaSccaatMVtaaSKNVattttgHccatca +cBVctgcaVatVttRtactgtVcaattHgtaaattaaattttYtatattaaRSgYtgBag +aHSBDgtagcacRHtYcBgtcacttacactaYcgctWtattgSHtSatcataaatataHt +cgtYaaMNgBaatttaRgaMaatatttBtttaaaHHKaatctgatWatYaacttMctctt +ttVctagctDaaagtaVaKaKRtaacBgtatccaaccactHHaagaagaaggaNaaatBW +attccgStaMSaMatBttgcatgRSacgttVVtaaDMtcSgVatWcaSatcttttVatag +ttactttacgatcaccNtaDVgSRcgVcgtgaacgaNtaNatatagtHtMgtHcMtagaa +attBgtataRaaaacaYKgtRccYtatgaagtaataKgtaaMttgaaRVatgcagaKStc +tHNaaatctBBtcttaYaBWHgtVtgacagcaRcataWctcaBcYacYgatDgtDHccta +>THREE Homo sapiens frequency +aacacttcaccaggtatcgtgaaggctcaagattacccagagaacctttgcaatataaga +atatgtatgcagcattaccctaagtaattatattctttttctgactcaaagtgacaagcc +ctagtgtatattaaatcggtatatttgggaaattcctcaaactatcctaatcaggtagcc +atgaaagtgatcaaaaaagttcgtacttataccatacatgaattctggccaagtaaaaaa +tagattgcgcaaaattcgtaccttaagtctctcgccaagatattaggatcctattactca +tatcgtgtttttctttattgccgccatccccggagtatctcacccatccttctcttaaag +gcctaatattacctatgcaaataaacatatattgttgaaaattgagaacctgatcgtgat +tcttatgtgtaccatatgtatagtaatcacgcgactatatagtgctttagtatcgcccgt +gggtgagtgaatattctgggctagcgtgagatagtttcttgtcctaatatttttcagatc +gaatagcttctatttttgtgtttattgacatatgtcgaaactccttactcagtgaaagtc +atgaccagatccacgaacaatcttcggaatcagtctcgttttacggcggaatcttgagtc +taacttatatcccgtcgcttactttctaacaccccttatgtatttttaaaattacgttta +ttcgaacgtacttggcggaagcgttattttttgaagtaagttacattgggcagactcttg +acattttcgatacgactttctttcatccatcacaggactcgttcgtattgatatcagaag +ctcgtgatgattagttgtcttctttaccaatactttgaggcctattctgcgaaatttttg +ttgccctgcgaacttcacataccaaggaacacctcgcaacatgccttcatatccatcgtt +cattgtaattcttacacaatgaatcctaagtaattacatccctgcgtaaaagatggtagg +ggcactgaggatatattaccaagcatttagttatgagtaatcagcaatgtttcttgtatt +aagttctctaaaatagttacatcgtaatgttatctcgggttccgcgaataaacgagatag +attcattatatatggccctaagcaaaaacctcctcgtattctgttggtaattagaatcac +acaatacgggttgagatattaattatttgtagtacgaagagatataaaaagatgaacaat +tactcaagtcaagatgtatacgggatttataataaaaatcgggtagagatctgctttgca +attcagacgtgccactaaatcgtaatatgtcgcgttacatcagaaagggtaactattatt +aattaataaagggcttaatcactacatattagatcttatccgatagtcttatctattcgt +tgtatttttaagcggttctaattcagtcattatatcagtgctccgagttctttattattg +ttttaaggatgacaaaatgcctcttgttataacgctgggagaagcagactaagagtcgga +gcagttggtagaatgaggctgcaaaagacggtctcgacgaatggacagactttactaaac +caatgaaagacagaagtagagcaaagtctgaagtggtatcagcttaattatgacaaccct +taatacttccctttcgccgaatactggcgtggaaaggttttaaaagtcgaagtagttaga +ggcatctctcgctcataaataggtagactactcgcaatccaatgtgactatgtaatactg +ggaacatcagtccgcgatgcagcgtgtttatcaaccgtccccactcgcctggggagacat +gagaccacccccgtggggattattagtccgcagtaatcgactcttgacaatccttttcga +ttatgtcatagcaatttacgacagttcagcgaagtgactactcggcgaaatggtattact +aaagcattcgaacccacatgaatgtgattcttggcaatttctaatccactaaagcttttc +cgttgaatctggttgtagatatttatataagttcactaattaagatcacggtagtatatt +gatagtgatgtctttgcaagaggttggccgaggaatttacggattctctattgatacaat +ttgtctggcttataactcttaaggctgaaccaggcgtttttagacgacttgatcagctgt +tagaatggtttggactccctctttcatgtcagtaacatttcagccgttattgttacgata +tgcttgaacaatattgatctaccacacacccatagtatattttataggtcatgctgttac +ctacgagcatggtattccacttcccattcaatgagtattcaacatcactagcctcagaga +tgatgacccacctctaataacgtcacgttgcggccatgtgaaacctgaacttgagtagac +gatatcaagcgctttaaattgcatataacatttgagggtaaagctaagcggatgctttat +ataatcaatactcaataataagatttgattgcattttagagttatgacacgacatagttc +actaacgagttactattcccagatctagactgaagtactgatcgagacgatccttacgtc +gatgatcgttagttatcgacttaggtcgggtctctagcggtattggtacttaaccggaca +ctatactaataacccatgatcaaagcataacagaatacagacgataatttcgccaacata +tatgtacagaccccaagcatgagaagctcattgaaagctatcattgaagtcccgctcaca +atgtgtcttttccagacggtttaactggttcccgggagtcctggagtttcgacttacata +aatggaaacaatgtattttgctaatttatctatagcgtcatttggaccaatacagaatat +tatgttgcctagtaatccactataacccgcaagtgctgatagaaaatttttagacgattt +ataaatgccccaagtatccctcccgtgaatcctccgttatactaattagtattcgttcat +acgtataccgcgcatatatgaacatttggcgataaggcgcgtgaattgttacgtgacaga +gatagcagtttcttgtgatatggttaacagacgtacatgaagggaaactttatatctata +gtgatgcttccgtagaaataccgccactggtctgccaatgatgaagtatgtagctttagg +tttgtactatgaggctttcgtttgtttgcagagtataacagttgcgagtgaaaaaccgac +gaatttatactaatacgctttcactattggctacaaaatagggaagagtttcaatcatga +gagggagtatatggatgctttgtagctaaaggtagaacgtatgtatatgctgccgttcat +tcttgaaagatacataagcgataagttacgacaattataagcaacatccctaccttcgta +acgatttcactgttactgcgcttgaaatacactatggggctattggcggagagaagcaga +tcgcgccgagcatatacgagacctataatgttgatgatagagaaggcgtctgaattgata +catcgaagtacactttctttcgtagtatctctcgtcctctttctatctccggacacaaga +attaagttatatatatagagtcttaccaatcatgttgaatcctgattctcagagttcttt +ggcgggccttgtgatgactgagaaacaatgcaatattgctccaaatttcctaagcaaatt +ctcggttatgttatgttatcagcaaagcgttacgttatgttatttaaatctggaatgacg +gagcgaagttcttatgtcggtgtgggaataattcttttgaagacagcactccttaaataa +tatcgctccgtgtttgtatttatcgaatgggtctgtaaccttgcacaagcaaatcggtgg +tgtatatatcggataacaattaatacgatgttcatagtgacagtatactgatcgagtcct +ctaaagtcaattacctcacttaacaatctcattgatgttgtgtcattcccggtatcgccc +gtagtatgtgctctgattgaccgagtgtgaaccaaggaacatctactaatgcctttgtta +ggtaagatctctctgaattccttcgtgccaacttaaaacattatcaaaatttcttctact +tggattaactacttttacgagcatggcaaattcccctgtggaagacggttcattattatc +ggaaaccttatagaaattgcgtgttgactgaaattagatttttattgtaagagttgcatc +tttgcgattcctctggtctagcttccaatgaacagtcctcccttctattcgacatcgggt +ccttcgtacatgtctttgcgatgtaataattaggttcggagtgtggccttaatgggtgca +actaggaatacaacgcaaatttgctgacatgatagcaaatcggtatgccggcaccaaaac +gtgctccttgcttagcttgtgaatgagactcagtagttaaataaatccatatctgcaatc +gattccacaggtattgtccactatctttgaactactctaagagatacaagcttagctgag +accgaggtgtatatgactacgctgatatctgtaaggtaccaatgcaggcaaagtatgcga +gaagctaataccggctgtttccagctttataagattaaaatttggctgtcctggcggcct +cagaattgttctatcgtaatcagttggttcattaattagctaagtacgaggtacaactta +tctgtcccagaacagctccacaagtttttttacagccgaaacccctgtgtgaatcttaat +atccaagcgcgttatctgattagagtttacaactcagtattttatcagtacgttttgttt +ccaacattacccggtatgacaaaatgacgccacgtgtcgaataatggtctgaccaatgta +ggaagtgaaaagataaatat diff --git a/gcc/testsuite/go.test/test/bench/k-nucleotide-parallel.go b/gcc/testsuite/go.test/test/bench/k-nucleotide-parallel.go new file mode 100644 index 0000000..0234f33 --- /dev/null +++ b/gcc/testsuite/go.test/test/bench/k-nucleotide-parallel.go @@ -0,0 +1,155 @@ +/* +Redistribution and use in source and binary forms, with or without +modification, are permitted provided that the following conditions are met: + + * Redistributions of source code must retain the above copyright + notice, this list of conditions and the following disclaimer. + + * Redistributions in binary form must reproduce the above copyright + notice, this list of conditions and the following disclaimer in the + documentation and/or other materials provided with the distribution. + + * Neither the name of "The Computer Language Benchmarks Game" nor the + name of "The Computer Language Shootout Benchmarks" nor the names of + its contributors may be used to endorse or promote products derived + from this software without specific prior written permission. + +THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" +AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE +IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE +ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT OWNER OR CONTRIBUTORS BE +LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR +CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF +SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS +INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN +CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) +ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE +POSSIBILITY OF SUCH DAMAGE. +*/ + +/* The Computer Language Benchmarks Game + * http://shootout.alioth.debian.org/ + * + * contributed by The Go Authors. + */ + +package main + +import ( + "bufio" + "bytes" + "fmt" + "io/ioutil" + "os" + "sort" +) + +func count(data string, n int) map[string]int { + counts := make(map[string]int) + top := len(data) - n + for i := 0; i <= top; i++ { + s := data[i : i+n] + counts[s]++ + } + return counts +} + +func countOne(data string, s string) int { + return count(data, len(s))[s] +} + +type kNuc struct { + name string + count int +} + +type kNucArray []kNuc + +func (kn kNucArray) Len() int { return len(kn) } +func (kn kNucArray) Swap(i, j int) { kn[i], kn[j] = kn[j], kn[i] } +func (kn kNucArray) Less(i, j int) bool { + if kn[i].count == kn[j].count { + return kn[i].name > kn[j].name // sort down + } + return kn[i].count > kn[j].count +} + +func sortedArray(m map[string]int) kNucArray { + kn := make(kNucArray, len(m)) + i := 0 + for k, v := range m { + kn[i] = kNuc{k, v} + i++ + } + sort.Sort(kn) + return kn +} + +func printKnucs(a kNucArray) { + sum := 0 + for _, kn := range a { + sum += kn.count + } + for _, kn := range a { + fmt.Printf("%s %.3f\n", kn.name, 100*float64(kn.count)/float64(sum)) + } + fmt.Print("\n") +} + +func main() { + in := bufio.NewReader(os.Stdin) + three := []byte(">THREE ") + for { + line, err := in.ReadSlice('\n') + if err != nil { + fmt.Fprintln(os.Stderr, "ReadLine err:", err) + os.Exit(2) + } + if line[0] == '>' && bytes.Equal(line[0:len(three)], three) { + break + } + } + data, err := ioutil.ReadAll(in) + if err != nil { + fmt.Fprintln(os.Stderr, "ReadAll err:", err) + os.Exit(2) + } + // delete the newlines and convert to upper case + j := 0 + for i := 0; i < len(data); i++ { + if data[i] != '\n' { + data[j] = data[i] &^ ' ' // upper case + j++ + } + } + str := string(data[0:j]) + + var arr1, arr2 kNucArray + countsdone := make(chan bool) + go func() { + arr1 = sortedArray(count(str, 1)) + countsdone <- true + }() + go func() { + arr2 = sortedArray(count(str, 2)) + countsdone <- true + }() + + interests := []string{"GGT", "GGTA", "GGTATT", "GGTATTTTAATT", "GGTATTTTAATTTATAGT"} + results := make([]chan string, len(interests)) + for i, s := range interests { + ch := make(chan string) + results[i] = ch + go func(result chan string, ss string) { + result <- fmt.Sprintf("%d %s\n", countOne(str, ss), ss) + }(ch, s) + } + <-countsdone + <-countsdone + printKnucs(arr1) + printKnucs(arr2) + for _, rc := range results { + fmt.Print(<-rc) + } + +} diff --git a/gcc/testsuite/go.test/test/bench/k-nucleotide-parallel.txt b/gcc/testsuite/go.test/test/bench/k-nucleotide-parallel.txt new file mode 100644 index 0000000..84169b8 --- /dev/null +++ b/gcc/testsuite/go.test/test/bench/k-nucleotide-parallel.txt @@ -0,0 +1,27 @@ +T 31.520 +A 29.600 +C 19.480 +G 19.400 + +AT 9.922 +TT 9.602 +TA 9.402 +AA 8.402 +GA 6.321 +TC 6.301 +TG 6.201 +GT 6.041 +CT 5.961 +AG 5.841 +CA 5.461 +AC 5.441 +CC 4.041 +CG 4.021 +GC 3.701 +GG 3.341 + +54 GGT +24 GGTA +4 GGTATT +0 GGTATTTTAATT +0 GGTATTTTAATTTATAGT diff --git a/gcc/testsuite/go.test/test/bench/k-nucleotide.c b/gcc/testsuite/go.test/test/bench/k-nucleotide.c new file mode 100644 index 0000000..3bace39 --- /dev/null +++ b/gcc/testsuite/go.test/test/bench/k-nucleotide.c @@ -0,0 +1,228 @@ +/* +Redistribution and use in source and binary forms, with or without +modification, are permitted provided that the following conditions are met: + + * Redistributions of source code must retain the above copyright + notice, this list of conditions and the following disclaimer. + + * Redistributions in binary form must reproduce the above copyright + notice, this list of conditions and the following disclaimer in the + documentation and/or other materials provided with the distribution. + + * Neither the name of "The Computer Language Benchmarks Game" nor the + name of "The Computer Language Shootout Benchmarks" nor the names of + its contributors may be used to endorse or promote products derived + from this software without specific prior written permission. + +THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" +AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE +IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE +ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT OWNER OR CONTRIBUTORS BE +LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR +CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF +SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS +INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN +CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) +ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE +POSSIBILITY OF SUCH DAMAGE. +*/ + +#include <stdio.h> +#include <string.h> +#include <ctype.h> +#include <stdlib.h> +#include <glib.h> + +typedef struct stat_s stat_t; +struct stat_s +{ + const gchar *key; + long stat; +}; + +#define MAX_ELM (8192 / sizeof (stat_t)) + +static int +generate_frequencies (int fl, char *buffer, long buflen, + GHashTable *ht, GTrashStack **ts, GPtrArray *roots, GStringChunk *sc) +{ + gchar *key; + long i; + + if (fl > buflen) return 0; + if (fl == 0) return 0; + + for (i = 0; i < buflen - fl + 1; ++i) + { + char nulled; + stat_t *stat; + + nulled = buffer[i + fl]; + buffer[i + fl] = '\0'; + + key = g_string_chunk_insert_const(sc, buffer + i); + + stat = g_hash_table_lookup(ht, key); + if (!stat) + { + stat = g_trash_stack_pop(ts); + if (!stat) + { + int j; + + stat = malloc(sizeof (stat_t) * MAX_ELM); + g_ptr_array_add(roots, stat); + + for (j = 1; j < MAX_ELM; ++j) + g_trash_stack_push(ts, stat + j); + } + stat->stat = 1; + stat->key = key; + + g_hash_table_insert(ht, key, stat); + } + else + stat->stat++; + + buffer[i + fl] = nulled; + } + + return buflen - fl + 1; +} + +static int +cmp_func(gconstpointer a, gconstpointer b) +{ + const stat_t *left = a; + const stat_t *right = b; + + return right->stat - left->stat; +} + +static void +sorted_list(gpointer key, gpointer value, gpointer user_data) +{ + stat_t *data = value; + GList **lst = user_data; + + *lst = g_list_insert_sorted(*lst, data, cmp_func); +} + +static void +display_stat(gpointer data, gpointer user_data) +{ + long *total = user_data; + stat_t *st = data; + + printf("%s %.3f\n", st->key, 100 * (float) st->stat / *total); +} + +void +write_frequencies (int fl, char *buffer, long buflen, GTrashStack **ts, GPtrArray *roots) +{ + GStringChunk *sc; + GHashTable *ht; + GList *lst; + long total; + + ht = g_hash_table_new_full(g_str_hash, g_str_equal, NULL /* free key */, NULL /* free value */); + sc = g_string_chunk_new(buflen); + lst = NULL; + + total = generate_frequencies (fl, buffer, buflen, ht, ts, roots, sc); + + if (!total) goto on_error; + + g_hash_table_foreach(ht, sorted_list, &lst); + g_list_foreach(lst, display_stat, &total); + g_list_free(lst); + + on_error: + g_hash_table_destroy(ht); + g_string_chunk_free(sc); +} + +void +write_count (char *searchFor, char *buffer, long buflen, GTrashStack **ts, GPtrArray *roots) +{ + GStringChunk *sc; + GHashTable *ht; + stat_t *result; + GList *lst; + long total; + long fl; + + fl = strlen(searchFor); + + ht = g_hash_table_new_full(g_str_hash, g_str_equal, NULL /* free key */, NULL /* free value */); + sc = g_string_chunk_new(buflen); + lst = NULL; + result = NULL; + + total = generate_frequencies (fl, buffer, buflen, ht, ts, roots, sc); + + if (!total) goto on_error; + + result = g_hash_table_lookup(ht, searchFor); + + on_error: + printf("%ld\t%s\n", result ? result->stat : 0, searchFor); + + g_hash_table_destroy(ht); + g_string_chunk_free(sc); +} + +int +main () +{ + char buffer[4096]; + GTrashStack *ts; + GPtrArray *roots; + GString *stuff; + gchar *s; + int len; + + roots = g_ptr_array_new(); + ts = NULL; + + while (fgets(buffer, sizeof (buffer), stdin)) + if (strncmp(buffer, ">THREE", 6) == 0) + break; + + stuff = g_string_new(NULL); + + while (fgets(buffer, sizeof (buffer), stdin)) + { + size_t sz; + + if (buffer[0] == '>') + break; + + sz = strlen(buffer); + if (buffer[sz - 1] == '\n') + --sz; + + stuff = g_string_append_len(stuff, buffer, sz); + } + + stuff = g_string_ascii_up(stuff); + len = stuff->len; + s = g_string_free(stuff, FALSE); + + write_frequencies(1, s, len, &ts, roots); + printf("\n"); + write_frequencies(2, s, len, &ts, roots); + printf("\n"); + write_count("GGT", s, len, &ts, roots); + write_count("GGTA", s, len, &ts, roots); + write_count("GGTATT", s, len, &ts, roots); + write_count("GGTATTTTAATT", s, len, &ts, roots); + write_count("GGTATTTTAATTTATAGT", s, len, &ts, roots); + + free(s); + + g_ptr_array_foreach(roots, free, NULL); + g_ptr_array_free(roots, TRUE); + + return 0; +} diff --git a/gcc/testsuite/go.test/test/bench/k-nucleotide.go b/gcc/testsuite/go.test/test/bench/k-nucleotide.go new file mode 100644 index 0000000..fdc98ed --- /dev/null +++ b/gcc/testsuite/go.test/test/bench/k-nucleotide.go @@ -0,0 +1,140 @@ +/* +Redistribution and use in source and binary forms, with or without +modification, are permitted provided that the following conditions are met: + + * Redistributions of source code must retain the above copyright + notice, this list of conditions and the following disclaimer. + + * Redistributions in binary form must reproduce the above copyright + notice, this list of conditions and the following disclaimer in the + documentation and/or other materials provided with the distribution. + + * Neither the name of "The Computer Language Benchmarks Game" nor the + name of "The Computer Language Shootout Benchmarks" nor the names of + its contributors may be used to endorse or promote products derived + from this software without specific prior written permission. + +THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" +AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE +IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE +ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT OWNER OR CONTRIBUTORS BE +LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR +CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF +SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS +INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN +CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) +ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE +POSSIBILITY OF SUCH DAMAGE. +*/ + +/* The Computer Language Benchmarks Game + * http://shootout.alioth.debian.org/ + * + * contributed by The Go Authors. + */ + +package main + +import ( + "bufio" + "bytes" + "fmt" + "io/ioutil" + "os" + "sort" +) + +var in *bufio.Reader + +func count(data string, n int) map[string]int { + counts := make(map[string]int) + top := len(data) - n + for i := 0; i <= top; i++ { + s := data[i : i+n] + counts[s]++ + } + return counts +} + +func countOne(data string, s string) int { + return count(data, len(s))[s] +} + +type kNuc struct { + name string + count int +} + +type kNucArray []kNuc + +func (kn kNucArray) Len() int { return len(kn) } +func (kn kNucArray) Swap(i, j int) { kn[i], kn[j] = kn[j], kn[i] } +func (kn kNucArray) Less(i, j int) bool { + if kn[i].count == kn[j].count { + return kn[i].name > kn[j].name // sort down + } + return kn[i].count > kn[j].count +} + +func sortedArray(m map[string]int) kNucArray { + kn := make(kNucArray, len(m)) + i := 0 + for k, v := range m { + kn[i].name = k + kn[i].count = v + i++ + } + sort.Sort(kn) + return kn +} + +func print(m map[string]int) { + a := sortedArray(m) + sum := 0 + for _, kn := range a { + sum += kn.count + } + for _, kn := range a { + fmt.Printf("%s %.3f\n", kn.name, 100*float64(kn.count)/float64(sum)) + } +} + +func main() { + in = bufio.NewReader(os.Stdin) + three := []byte(">THREE ") + for { + line, err := in.ReadSlice('\n') + if err != nil { + fmt.Fprintln(os.Stderr, "ReadLine err:", err) + os.Exit(2) + } + if line[0] == '>' && bytes.Equal(line[0:len(three)], three) { + break + } + } + data, err := ioutil.ReadAll(in) + if err != nil { + fmt.Fprintln(os.Stderr, "ReadAll err:", err) + os.Exit(2) + } + // delete the newlines and convert to upper case + j := 0 + for i := 0; i < len(data); i++ { + if data[i] != '\n' { + data[j] = data[i] &^ ' ' // upper case + j++ + } + } + str := string(data[0:j]) + + print(count(str, 1)) + fmt.Print("\n") + + print(count(str, 2)) + fmt.Print("\n") + + interests := []string{"GGT", "GGTA", "GGTATT", "GGTATTTTAATT", "GGTATTTTAATTTATAGT"} + for _, s := range interests { + fmt.Printf("%d %s\n", countOne(str, s), s) + } +} diff --git a/gcc/testsuite/go.test/test/bench/k-nucleotide.txt b/gcc/testsuite/go.test/test/bench/k-nucleotide.txt new file mode 100644 index 0000000..84169b8 --- /dev/null +++ b/gcc/testsuite/go.test/test/bench/k-nucleotide.txt @@ -0,0 +1,27 @@ +T 31.520 +A 29.600 +C 19.480 +G 19.400 + +AT 9.922 +TT 9.602 +TA 9.402 +AA 8.402 +GA 6.321 +TC 6.301 +TG 6.201 +GT 6.041 +CT 5.961 +AG 5.841 +CA 5.461 +AC 5.441 +CC 4.041 +CG 4.021 +GC 3.701 +GG 3.341 + +54 GGT +24 GGTA +4 GGTATT +0 GGTATTTTAATT +0 GGTATTTTAATTTATAGT diff --git a/gcc/testsuite/go.test/test/bench/mandelbrot.c b/gcc/testsuite/go.test/test/bench/mandelbrot.c new file mode 100644 index 0000000..c177c08 --- /dev/null +++ b/gcc/testsuite/go.test/test/bench/mandelbrot.c @@ -0,0 +1,91 @@ +/* +Redistribution and use in source and binary forms, with or without +modification, are permitted provided that the following conditions are met: + + * Redistributions of source code must retain the above copyright + notice, this list of conditions and the following disclaimer. + + * Redistributions in binary form must reproduce the above copyright + notice, this list of conditions and the following disclaimer in the + documentation and/or other materials provided with the distribution. + + * Neither the name of "The Computer Language Benchmarks Game" nor the + name of "The Computer Language Shootout Benchmarks" nor the names of + its contributors may be used to endorse or promote products derived + from this software without specific prior written permission. + +THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" +AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE +IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE +ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT OWNER OR CONTRIBUTORS BE +LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR +CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF +SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS +INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN +CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) +ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE +POSSIBILITY OF SUCH DAMAGE. +*/ + +/* The Computer Language Shootout + http://shootout.alioth.debian.org/ + + contributed by Greg Buchholz + + for the debian (AMD) machine... + compile flags: -O3 -ffast-math -march=athlon-xp -funroll-loops + + for the gp4 (Intel) machine... + compile flags: -O3 -ffast-math -march=pentium4 -funroll-loops +*/ + +#include<stdio.h> + +int main (int argc, char **argv) +{ + int w, h, bit_num = 0; + char byte_acc = 0; + int i, iter = 50; + double x, y, limit = 2.0; + double Zr, Zi, Cr, Ci, Tr, Ti; + + w = h = atoi(argv[1]); + + printf("P4\n%d %d\n",w,h); + + for(y=0;y<h;++y) + { + for(x=0;x<w;++x) + { + Zr = Zi = Tr = Ti = 0.0; + Cr = (2.0*x/w - 1.5); Ci=(2.0*y/h - 1.0); + + for (i=0;i<iter && (Tr+Ti <= limit*limit);++i) + { + Zi = 2.0*Zr*Zi + Ci; + Zr = Tr - Ti + Cr; + Tr = Zr * Zr; + Ti = Zi * Zi; + } + + byte_acc <<= 1; + if(Tr+Ti <= limit*limit) byte_acc |= 0x01; + + ++bit_num; + + if(bit_num == 8) + { + putc(byte_acc,stdout); + byte_acc = 0; + bit_num = 0; + } + else if(x == w-1) + { + byte_acc <<= (8-w%8); + putc(byte_acc,stdout); + byte_acc = 0; + bit_num = 0; + } + } + } +} diff --git a/gcc/testsuite/go.test/test/bench/mandelbrot.go b/gcc/testsuite/go.test/test/bench/mandelbrot.go new file mode 100644 index 0000000..1f9fbfd --- /dev/null +++ b/gcc/testsuite/go.test/test/bench/mandelbrot.go @@ -0,0 +1,95 @@ +/* +Redistribution and use in source and binary forms, with or without +modification, are permitted provided that the following conditions are met: + + * Redistributions of source code must retain the above copyright + notice, this list of conditions and the following disclaimer. + + * Redistributions in binary form must reproduce the above copyright + notice, this list of conditions and the following disclaimer in the + documentation and/or other materials provided with the distribution. + + * Neither the name of "The Computer Language Benchmarks Game" nor the + name of "The Computer Language Shootout Benchmarks" nor the names of + its contributors may be used to endorse or promote products derived + from this software without specific prior written permission. + +THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" +AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE +IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE +ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT OWNER OR CONTRIBUTORS BE +LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR +CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF +SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS +INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN +CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) +ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE +POSSIBILITY OF SUCH DAMAGE. +*/ + +/* The Computer Language Benchmarks Game + * http://shootout.alioth.debian.org/ + * + * contributed by The Go Authors. + * Based on mandelbrot.c contributed by Greg Buchholz + */ + +package main + +import ( + "bufio" + "flag" + "fmt" + "os" +) + +var n = flag.Int("n", 200, "size") + +func main() { + flag.Parse() + out := bufio.NewWriter(os.Stdout) + defer out.Flush() + + w := *n + h := *n + bit_num := 0 + byte_acc := byte(0) + const Iter = 50 + const Zero float64 = 0 + const Limit = 2.0 + + fmt.Fprintf(out, "P4\n%d %d\n", w, h) + + for y := 0; y < h; y++ { + for x := 0; x < w; x++ { + Zr, Zi, Tr, Ti := Zero, Zero, Zero, Zero + Cr := (2*float64(x)/float64(w) - 1.5) + Ci := (2*float64(y)/float64(h) - 1.0) + + for i := 0; i < Iter && (Tr+Ti <= Limit*Limit); i++ { + Zi = 2*Zr*Zi + Ci + Zr = Tr - Ti + Cr + Tr = Zr * Zr + Ti = Zi * Zi + } + + byte_acc <<= 1 + if Tr+Ti <= Limit*Limit { + byte_acc |= 0x01 + } + + bit_num++ + + if bit_num == 8 { + out.WriteByte(byte_acc) + byte_acc = 0 + bit_num = 0 + } else if x == w-1 { + byte_acc <<= uint(8 - w%8) + out.WriteByte(byte_acc) + byte_acc = 0 + bit_num = 0 + } + } + } +} diff --git a/gcc/testsuite/go.test/test/bench/mandelbrot.txt b/gcc/testsuite/go.test/test/bench/mandelbrot.txt Binary files differnew file mode 100644 index 0000000..2f7bbbc --- /dev/null +++ b/gcc/testsuite/go.test/test/bench/mandelbrot.txt diff --git a/gcc/testsuite/go.test/test/bench/meteor-contest.c b/gcc/testsuite/go.test/test/bench/meteor-contest.c new file mode 100644 index 0000000..19c4340 --- /dev/null +++ b/gcc/testsuite/go.test/test/bench/meteor-contest.c @@ -0,0 +1,626 @@ +/* +Redistribution and use in source and binary forms, with or without +modification, are permitted provided that the following conditions are met: + + * Redistributions of source code must retain the above copyright + notice, this list of conditions and the following disclaimer. + + * Redistributions in binary form must reproduce the above copyright + notice, this list of conditions and the following disclaimer in the + documentation and/or other materials provided with the distribution. + + * Neither the name of "The Computer Language Benchmarks Game" nor the + name of "The Computer Language Shootout Benchmarks" nor the names of + its contributors may be used to endorse or promote products derived + from this software without specific prior written permission. + +THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" +AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE +IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE +ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT OWNER OR CONTRIBUTORS BE +LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR +CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF +SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS +INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN +CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) +ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE +POSSIBILITY OF SUCH DAMAGE. +*/ + +/* The Computer Language Benchmarks Game + * http://shootout.alioth.debian.org/ + * + * contributed by Christian Vosteen + */ + +#include <stdlib.h> +#include <stdio.h> +#define TRUE 1 +#define FALSE 0 + +/* The board is a 50 cell hexagonal pattern. For . . . . . + * maximum speed the board will be implemented as . . . . . + * 50 bits, which will fit into a 64 bit long long . . . . . + * int. . . . . . + * . . . . . + * I will represent 0's as empty cells and 1's . . . . . + * as full cells. . . . . . + * . . . . . + * . . . . . + * . . . . . + */ + +unsigned long long board = 0xFFFC000000000000ULL; + +/* The puzzle pieces must be specified by the path followed + * from one end to the other along 12 hexagonal directions. + * + * Piece 0 Piece 1 Piece 2 Piece 3 Piece 4 + * + * O O O O O O O O O O O O O O O + * O O O O O O O + * O O O + * + * Piece 5 Piece 6 Piece 7 Piece 8 Piece 9 + * + * O O O O O O O O O O O O O + * O O O O O O O O O + * O O O + * + * I had to make it 12 directions because I wanted all of the + * piece definitions to fit into the same size arrays. It is + * not possible to define piece 4 in terms of the 6 cardinal + * directions in 4 moves. + */ + +#define E 0 +#define ESE 1 +#define SE 2 +#define S 3 +#define SW 4 +#define WSW 5 +#define W 6 +#define WNW 7 +#define NW 8 +#define N 9 +#define NE 10 +#define ENE 11 +#define PIVOT 12 + +char piece_def[10][4] = { + { E, E, E, SE}, + { SE, E, NE, E}, + { E, E, SE, SW}, + { E, E, SW, SE}, + { SE, E, NE, S}, + { E, E, SW, E}, + { E, SE, SE, NE}, + { E, SE, SE, W}, + { E, SE, E, E}, + { E, E, E, SW} +}; + + +/* To minimize the amount of work done in the recursive solve function below, + * I'm going to allocate enough space for all legal rotations of each piece + * at each position on the board. That's 10 pieces x 50 board positions x + * 12 rotations. However, not all 12 rotations will fit on every cell, so + * I'll have to keep count of the actual number that do. + * The pieces are going to be unsigned long long ints just like the board so + * they can be bitwise-anded with the board to determine if they fit. + * I'm also going to record the next possible open cell for each piece and + * location to reduce the burden on the solve function. + */ +unsigned long long pieces[10][50][12]; +int piece_counts[10][50]; +char next_cell[10][50][12]; + +/* Returns the direction rotated 60 degrees clockwise */ +char rotate(char dir) { + return (dir + 2) % PIVOT; +} + +/* Returns the direction flipped on the horizontal axis */ +char flip(char dir) { + return (PIVOT - dir) % PIVOT; +} + + +/* Returns the new cell index from the specified cell in the + * specified direction. The index is only valid if the + * starting cell and direction have been checked by the + * out_of_bounds function first. + */ +char shift(char cell, char dir) { + switch(dir) { + case E: + return cell + 1; + case ESE: + if((cell / 5) % 2) + return cell + 7; + else + return cell + 6; + case SE: + if((cell / 5) % 2) + return cell + 6; + else + return cell + 5; + case S: + return cell + 10; + case SW: + if((cell / 5) % 2) + return cell + 5; + else + return cell + 4; + case WSW: + if((cell / 5) % 2) + return cell + 4; + else + return cell + 3; + case W: + return cell - 1; + case WNW: + if((cell / 5) % 2) + return cell - 6; + else + return cell - 7; + case NW: + if((cell / 5) % 2) + return cell - 5; + else + return cell - 6; + case N: + return cell - 10; + case NE: + if((cell / 5) % 2) + return cell - 4; + else + return cell - 5; + case ENE: + if((cell / 5) % 2) + return cell - 3; + else + return cell - 4; + default: + return cell; + } +} + +/* Returns wether the specified cell and direction will land outside + * of the board. Used to determine if a piece is at a legal board + * location or not. + */ +char out_of_bounds(char cell, char dir) { + char i; + switch(dir) { + case E: + return cell % 5 == 4; + case ESE: + i = cell % 10; + return i == 4 || i == 8 || i == 9 || cell >= 45; + case SE: + return cell % 10 == 9 || cell >= 45; + case S: + return cell >= 40; + case SW: + return cell % 10 == 0 || cell >= 45; + case WSW: + i = cell % 10; + return i == 0 || i == 1 || i == 5 || cell >= 45; + case W: + return cell % 5 == 0; + case WNW: + i = cell % 10; + return i == 0 || i == 1 || i == 5 || cell < 5; + case NW: + return cell % 10 == 0 || cell < 5; + case N: + return cell < 10; + case NE: + return cell % 10 == 9 || cell < 5; + case ENE: + i = cell % 10; + return i == 4 || i == 8 || i == 9 || cell < 5; + default: + return FALSE; + } +} + +/* Rotate a piece 60 degrees clockwise */ +void rotate_piece(int piece) { + int i; + for(i = 0; i < 4; i++) + piece_def[piece][i] = rotate(piece_def[piece][i]); +} + +/* Flip a piece along the horizontal axis */ +void flip_piece(int piece) { + int i; + for(i = 0; i < 4; i++) + piece_def[piece][i] = flip(piece_def[piece][i]); +} + +/* Convenience function to quickly calculate all of the indices for a piece */ +void calc_cell_indices(char *cell, int piece, char index) { + cell[0] = index; + cell[1] = shift(cell[0], piece_def[piece][0]); + cell[2] = shift(cell[1], piece_def[piece][1]); + cell[3] = shift(cell[2], piece_def[piece][2]); + cell[4] = shift(cell[3], piece_def[piece][3]); +} + +/* Convenience function to quickly calculate if a piece fits on the board */ +int cells_fit_on_board(char *cell, int piece) { + return (!out_of_bounds(cell[0], piece_def[piece][0]) && + !out_of_bounds(cell[1], piece_def[piece][1]) && + !out_of_bounds(cell[2], piece_def[piece][2]) && + !out_of_bounds(cell[3], piece_def[piece][3])); +} + +/* Returns the lowest index of the cells of a piece. + * I use the lowest index that a piece occupies as the index for looking up + * the piece in the solve function. + */ +char minimum_of_cells(char *cell) { + char minimum = cell[0]; + minimum = cell[1] < minimum ? cell[1] : minimum; + minimum = cell[2] < minimum ? cell[2] : minimum; + minimum = cell[3] < minimum ? cell[3] : minimum; + minimum = cell[4] < minimum ? cell[4] : minimum; + return minimum; +} + +/* Calculate the lowest possible open cell if the piece is placed on the board. + * Used to later reduce the amount of time searching for open cells in the + * solve function. + */ +char first_empty_cell(char *cell, char minimum) { + char first_empty = minimum; + while(first_empty == cell[0] || first_empty == cell[1] || + first_empty == cell[2] || first_empty == cell[3] || + first_empty == cell[4]) + first_empty++; + return first_empty; +} + +/* Generate the unsigned long long int that will later be anded with the + * board to determine if it fits. + */ +unsigned long long bitmask_from_cells(char *cell) { + unsigned long long piece_mask = 0ULL; + int i; + for(i = 0; i < 5; i++) + piece_mask |= 1ULL << cell[i]; + return piece_mask; +} + +/* Record the piece and other important information in arrays that will + * later be used by the solve function. + */ +void record_piece(int piece, int minimum, char first_empty, + unsigned long long piece_mask) { + pieces[piece][minimum][piece_counts[piece][minimum]] = piece_mask; + next_cell[piece][minimum][piece_counts[piece][minimum]] = first_empty; + piece_counts[piece][minimum]++; +} + + +/* Fill the entire board going cell by cell. If any cells are "trapped" + * they will be left alone. + */ +void fill_contiguous_space(char *board, int index) { + if(board[index] == 1) + return; + board[index] = 1; + if(!out_of_bounds(index, E)) + fill_contiguous_space(board, shift(index, E)); + if(!out_of_bounds(index, SE)) + fill_contiguous_space(board, shift(index, SE)); + if(!out_of_bounds(index, SW)) + fill_contiguous_space(board, shift(index, SW)); + if(!out_of_bounds(index, W)) + fill_contiguous_space(board, shift(index, W)); + if(!out_of_bounds(index, NW)) + fill_contiguous_space(board, shift(index, NW)); + if(!out_of_bounds(index, NE)) + fill_contiguous_space(board, shift(index, NE)); +} + + +/* To thin the number of pieces, I calculate if any of them trap any empty + * cells at the edges. There are only a handful of exceptions where the + * the board can be solved with the trapped cells. For example: piece 8 can + * trap 5 cells in the corner, but piece 3 can fit in those cells, or piece 0 + * can split the board in half where both halves are viable. + */ +int has_island(char *cell, int piece) { + char temp_board[50]; + char c; + int i; + for(i = 0; i < 50; i++) + temp_board[i] = 0; + for(i = 0; i < 5; i++) + temp_board[((int)cell[i])] = 1; + i = 49; + while(temp_board[i] == 1) + i--; + fill_contiguous_space(temp_board, i); + c = 0; + for(i = 0; i < 50; i++) + if(temp_board[i] == 0) + c++; + if(c == 0 || (c == 5 && piece == 8) || (c == 40 && piece == 8) || + (c % 5 == 0 && piece == 0)) + return FALSE; + else + return TRUE; +} + + +/* Calculate all six rotations of the specified piece at the specified index. + * We calculate only half of piece 3's rotations. This is because any solution + * found has an identical solution rotated 180 degrees. Thus we can reduce the + * number of attempted pieces in the solve algorithm by not including the 180- + * degree-rotated pieces of ONE of the pieces. I chose piece 3 because it gave + * me the best time ;) + */ + void calc_six_rotations(char piece, char index) { + char rotation, cell[5]; + char minimum, first_empty; + unsigned long long piece_mask; + + for(rotation = 0; rotation < 6; rotation++) { + if(piece != 3 || rotation < 3) { + calc_cell_indices(cell, piece, index); + if(cells_fit_on_board(cell, piece) && !has_island(cell, piece)) { + minimum = minimum_of_cells(cell); + first_empty = first_empty_cell(cell, minimum); + piece_mask = bitmask_from_cells(cell); + record_piece(piece, minimum, first_empty, piece_mask); + } + } + rotate_piece(piece); + } +} + +/* Calculate every legal rotation for each piece at each board location. */ +void calc_pieces(void) { + char piece, index; + + for(piece = 0; piece < 10; piece++) { + for(index = 0; index < 50; index++) { + calc_six_rotations(piece, index); + flip_piece(piece); + calc_six_rotations(piece, index); + } + } +} + + + +/* Calculate all 32 possible states for a 5-bit row and all rows that will + * create islands that follow any of the 32 possible rows. These pre- + * calculated 5-bit rows will be used to find islands in a partially solved + * board in the solve function. + */ +#define ROW_MASK 0x1F +#define TRIPLE_MASK 0x7FFF +char all_rows[32] = {0, 1, 2, 3, 4, 5, 6, 7, 8, 9, 10, 11, 12, 13, 14, 15, 16, + 17, 18, 19, 20, 21, 22, 23, 24, 25, 26, 27, 28, 29, 30, 31}; +int bad_even_rows[32][32]; +int bad_odd_rows[32][32]; +int bad_even_triple[32768]; +int bad_odd_triple[32768]; + +int rows_bad(char row1, char row2, int even) { + /* even is referring to row1 */ + int i, in_zeroes, group_okay; + char block, row2_shift; + /* Test for blockages at same index and shifted index */ + if(even) + row2_shift = ((row2 << 1) & ROW_MASK) | 0x01; + else + row2_shift = (row2 >> 1) | 0x10; + block = ((row1 ^ row2) & row2) & ((row1 ^ row2_shift) & row2_shift); + /* Test for groups of 0's */ + in_zeroes = FALSE; + group_okay = FALSE; + for(i = 0; i < 5; i++) { + if(row1 & (1 << i)) { + if(in_zeroes) { + if(!group_okay) + return TRUE; + in_zeroes = FALSE; + group_okay = FALSE; + } + } else { + if(!in_zeroes) + in_zeroes = TRUE; + if(!(block & (1 << i))) + group_okay = TRUE; + } + } + if(in_zeroes) + return !group_okay; + else + return FALSE; +} + +/* Check for cases where three rows checked sequentially cause a false + * positive. One scenario is when 5 cells may be surrounded where piece 5 + * or 7 can fit. The other scenario is when piece 2 creates a hook shape. + */ +int triple_is_okay(char row1, char row2, char row3, int even) { + if(even) { + /* There are four cases: + * row1: 00011 00001 11001 10101 + * row2: 01011 00101 10001 10001 + * row3: 011?? 00110 ????? ????? + */ + return ((row1 == 0x03) && (row2 == 0x0B) && ((row3 & 0x1C) == 0x0C)) || + ((row1 == 0x01) && (row2 == 0x05) && (row3 == 0x06)) || + ((row1 == 0x19) && (row2 == 0x11)) || + ((row1 == 0x15) && (row2 == 0x11)); + } else { + /* There are two cases: + * row1: 10011 10101 + * row2: 10001 10001 + * row3: ????? ????? + */ + return ((row1 == 0x13) && (row2 == 0x11)) || + ((row1 == 0x15) && (row2 == 0x11)); + } +} + + +void calc_rows(void) { + int row1, row2, row3; + int result1, result2; + for(row1 = 0; row1 < 32; row1++) { + for(row2 = 0; row2 < 32; row2++) { + bad_even_rows[row1][row2] = rows_bad(row1, row2, TRUE); + bad_odd_rows[row1][row2] = rows_bad(row1, row2, FALSE); + } + } + for(row1 = 0; row1 < 32; row1++) { + for(row2 = 0; row2 < 32; row2++) { + for(row3 = 0; row3 < 32; row3++) { + result1 = bad_even_rows[row1][row2]; + result2 = bad_odd_rows[row2][row3]; + if(result1 == FALSE && result2 == TRUE + && triple_is_okay(row1, row2, row3, TRUE)) + bad_even_triple[row1+(row2*32)+(row3*1024)] = FALSE; + else + bad_even_triple[row1+(row2*32)+(row3*1024)] = result1 || result2; + + result1 = bad_odd_rows[row1][row2]; + result2 = bad_even_rows[row2][row3]; + if(result1 == FALSE && result2 == TRUE + && triple_is_okay(row1, row2, row3, FALSE)) + bad_odd_triple[row1+(row2*32)+(row3*1024)] = FALSE; + else + bad_odd_triple[row1+(row2*32)+(row3*1024)] = result1 || result2; + } + } + } +} + + + +/* Calculate islands while solving the board. + */ +int boardHasIslands(char cell) { + /* Too low on board, don't bother checking */ + if(cell >= 40) + return FALSE; + int current_triple = (board >> ((cell / 5) * 5)) & TRIPLE_MASK; + if((cell / 5) % 2) + return bad_odd_triple[current_triple]; + else + return bad_even_triple[current_triple]; +} + + +/* The recursive solve algorithm. Try to place each permutation in the upper- + * leftmost empty cell. Mark off available pieces as it goes along. + * Because the board is a bit mask, the piece number and bit mask must be saved + * at each successful piece placement. This data is used to create a 50 char + * array if a solution is found. + */ +short avail = 0x03FF; +char sol_nums[10]; +unsigned long long sol_masks[10]; +signed char solutions[2100][50]; +int solution_count = 0; +int max_solutions = 2100; + +void record_solution(void) { + int sol_no, index; + unsigned long long sol_mask; + for(sol_no = 0; sol_no < 10; sol_no++) { + sol_mask = sol_masks[sol_no]; + for(index = 0; index < 50; index++) { + if(sol_mask & 1ULL) { + solutions[solution_count][index] = sol_nums[sol_no]; + /* Board rotated 180 degrees is a solution too! */ + solutions[solution_count+1][49-index] = sol_nums[sol_no]; + } + sol_mask = sol_mask >> 1; + } + } + solution_count += 2; +} + +void solve(int depth, int cell) { + int piece, rotation, max_rots; + unsigned long long *piece_mask; + short piece_no_mask; + + if(solution_count >= max_solutions) + return; + + while(board & (1ULL << cell)) + cell++; + + for(piece = 0; piece < 10; piece++) { + piece_no_mask = 1 << piece; + if(!(avail & piece_no_mask)) + continue; + avail ^= piece_no_mask; + max_rots = piece_counts[piece][cell]; + piece_mask = pieces[piece][cell]; + for(rotation = 0; rotation < max_rots; rotation++) { + if(!(board & *(piece_mask + rotation))) { + sol_nums[depth] = piece; + sol_masks[depth] = *(piece_mask + rotation); + if(depth == 9) { + /* Solution found!!!!!11!!ONE! */ + record_solution(); + avail ^= piece_no_mask; + return; + } + board |= *(piece_mask + rotation); + if(!boardHasIslands(next_cell[piece][cell][rotation])) + solve(depth + 1, next_cell[piece][cell][rotation]); + board ^= *(piece_mask + rotation); + } + } + avail ^= piece_no_mask; + } +} + + +/* qsort comparator - used to find first and last solutions */ +int solution_sort(const void *elem1, const void *elem2) { + signed char *char1 = (signed char *) elem1; + signed char *char2 = (signed char *) elem2; + int i = 0; + while(i < 50 && char1[i] == char2[i]) + i++; + return char1[i] - char2[i]; +} + + +/* pretty print a board in the specified hexagonal format */ +void pretty(signed char *b) { + int i; + for(i = 0; i < 50; i += 10) { + printf("%c %c %c %c %c \n %c %c %c %c %c \n", b[i]+'0', b[i+1]+'0', + b[i+2]+'0', b[i+3]+'0', b[i+4]+'0', b[i+5]+'0', b[i+6]+'0', + b[i+7]+'0', b[i+8]+'0', b[i+9]+'0'); + } + printf("\n"); +} + +int main(int argc, char **argv) { + if(argc > 1) + max_solutions = atoi(argv[1]); + calc_pieces(); + calc_rows(); + solve(0, 0); + printf("%d solutions found\n\n", solution_count); + qsort(solutions, solution_count, 50 * sizeof(signed char), solution_sort); + pretty(solutions[0]); + pretty(solutions[solution_count-1]); + return 0; +} diff --git a/gcc/testsuite/go.test/test/bench/meteor-contest.go b/gcc/testsuite/go.test/test/bench/meteor-contest.go new file mode 100644 index 0000000..6660810 --- /dev/null +++ b/gcc/testsuite/go.test/test/bench/meteor-contest.go @@ -0,0 +1,665 @@ +/* +Redistribution and use in source and binary forms, with or without +modification, are permitted provided that the following conditions are met: + + * Redistributions of source code must retain the above copyright + notice, this list of conditions and the following disclaimer. + + * Redistributions in binary form must reproduce the above copyright + notice, this list of conditions and the following disclaimer in the + documentation and/or other materials provided with the distribution. + + * Neither the name of "The Computer Language Benchmarks Game" nor the + name of "The Computer Language Shootout Benchmarks" nor the names of + its contributors may be used to endorse or promote products derived + from this software without specific prior written permission. + +THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" +AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE +IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE +ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT OWNER OR CONTRIBUTORS BE +LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR +CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF +SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS +INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN +CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) +ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE +POSSIBILITY OF SUCH DAMAGE. +*/ + +/* The Computer Language Benchmarks Game + * http://shootout.alioth.debian.org/ + * + * contributed by The Go Authors. + * based on meteor-contest.c by Christian Vosteen + */ + +package main + +import ( + "flag" + "fmt" +) + +var max_solutions = flag.Int("n", 2100, "maximum number of solutions") + + +func boolInt(b bool) int8 { + if b { + return 1 + } + return 0 +} + +/* The board is a 50 cell hexagonal pattern. For . . . . . + * maximum speed the board will be implemented as . . . . . + * 50 bits, which will fit into a 64 bit long long . . . . . + * int. . . . . . + * . . . . . + * I will represent 0's as empty cells and 1's . . . . . + * as full cells. . . . . . + * . . . . . + * . . . . . + * . . . . . + */ + +var board uint64 = 0xFFFC000000000000 + +/* The puzzle pieces must be specified by the path followed + * from one end to the other along 12 hexagonal directions. + * + * Piece 0 Piece 1 Piece 2 Piece 3 Piece 4 + * + * O O O O O O O O O O O O O O O + * O O O O O O O + * O O O + * + * Piece 5 Piece 6 Piece 7 Piece 8 Piece 9 + * + * O O O O O O O O O O O O O + * O O O O O O O O O + * O O O + * + * I had to make it 12 directions because I wanted all of the + * piece definitions to fit into the same size arrays. It is + * not possible to define piece 4 in terms of the 6 cardinal + * directions in 4 moves. + */ + +const ( + E = iota + ESE + SE + S + SW + WSW + W + WNW + NW + N + NE + ENE + PIVOT +) + +var piece_def = [10][4]int8{ + [4]int8{E, E, E, SE}, + [4]int8{SE, E, NE, E}, + [4]int8{E, E, SE, SW}, + [4]int8{E, E, SW, SE}, + [4]int8{SE, E, NE, S}, + [4]int8{E, E, SW, E}, + [4]int8{E, SE, SE, NE}, + [4]int8{E, SE, SE, W}, + [4]int8{E, SE, E, E}, + [4]int8{E, E, E, SW}, +} + + +/* To minimize the amount of work done in the recursive solve function below, + * I'm going to allocate enough space for all legal rotations of each piece + * at each position on the board. That's 10 pieces x 50 board positions x + * 12 rotations. However, not all 12 rotations will fit on every cell, so + * I'll have to keep count of the actual number that do. + * The pieces are going to be unsigned long long ints just like the board so + * they can be bitwise-anded with the board to determine if they fit. + * I'm also going to record the next possible open cell for each piece and + * location to reduce the burden on the solve function. + */ +var ( + pieces [10][50][12]uint64 + piece_counts [10][50]int + next_cell [10][50][12]int8 +) + +/* Returns the direction rotated 60 degrees clockwise */ +func rotate(dir int8) int8 { return (dir + 2) % PIVOT } + +/* Returns the direction flipped on the horizontal axis */ +func flip(dir int8) int8 { return (PIVOT - dir) % PIVOT } + + +/* Returns the new cell index from the specified cell in the + * specified direction. The index is only valid if the + * starting cell and direction have been checked by the + * out_of_bounds function first. + */ +func shift(cell, dir int8) int8 { + switch dir { + case E: + return cell + 1 + case ESE: + if ((cell / 5) % 2) != 0 { + return cell + 7 + } else { + return cell + 6 + } + case SE: + if ((cell / 5) % 2) != 0 { + return cell + 6 + } else { + return cell + 5 + } + case S: + return cell + 10 + case SW: + if ((cell / 5) % 2) != 0 { + return cell + 5 + } else { + return cell + 4 + } + case WSW: + if ((cell / 5) % 2) != 0 { + return cell + 4 + } else { + return cell + 3 + } + case W: + return cell - 1 + case WNW: + if ((cell / 5) % 2) != 0 { + return cell - 6 + } else { + return cell - 7 + } + case NW: + if ((cell / 5) % 2) != 0 { + return cell - 5 + } else { + return cell - 6 + } + case N: + return cell - 10 + case NE: + if ((cell / 5) % 2) != 0 { + return cell - 4 + } else { + return cell - 5 + } + case ENE: + if ((cell / 5) % 2) != 0 { + return cell - 3 + } else { + return cell - 4 + } + } + return cell +} + +/* Returns wether the specified cell and direction will land outside + * of the board. Used to determine if a piece is at a legal board + * location or not. + */ +func out_of_bounds(cell, dir int8) bool { + switch dir { + case E: + return cell%5 == 4 + case ESE: + i := cell % 10 + return i == 4 || i == 8 || i == 9 || cell >= 45 + case SE: + return cell%10 == 9 || cell >= 45 + case S: + return cell >= 40 + case SW: + return cell%10 == 0 || cell >= 45 + case WSW: + i := cell % 10 + return i == 0 || i == 1 || i == 5 || cell >= 45 + case W: + return cell%5 == 0 + case WNW: + i := cell % 10 + return i == 0 || i == 1 || i == 5 || cell < 5 + case NW: + return cell%10 == 0 || cell < 5 + case N: + return cell < 10 + case NE: + return cell%10 == 9 || cell < 5 + case ENE: + i := cell % 10 + return i == 4 || i == 8 || i == 9 || cell < 5 + } + return false +} + +/* Rotate a piece 60 degrees clockwise */ +func rotate_piece(piece int) { + for i := 0; i < 4; i++ { + piece_def[piece][i] = rotate(piece_def[piece][i]) + } +} + +/* Flip a piece along the horizontal axis */ +func flip_piece(piece int) { + for i := 0; i < 4; i++ { + piece_def[piece][i] = flip(piece_def[piece][i]) + } +} + +/* Convenience function to quickly calculate all of the indices for a piece */ +func calc_cell_indices(cell []int8, piece int, index int8) { + cell[0] = index + for i := 1; i < 5; i++ { + cell[i] = shift(cell[i-1], piece_def[piece][i-1]) + } +} + +/* Convenience function to quickly calculate if a piece fits on the board */ +func cells_fit_on_board(cell []int8, piece int) bool { + return !out_of_bounds(cell[0], piece_def[piece][0]) && + !out_of_bounds(cell[1], piece_def[piece][1]) && + !out_of_bounds(cell[2], piece_def[piece][2]) && + !out_of_bounds(cell[3], piece_def[piece][3]) +} + +/* Returns the lowest index of the cells of a piece. + * I use the lowest index that a piece occupies as the index for looking up + * the piece in the solve function. + */ +func minimum_of_cells(cell []int8) int8 { + minimum := cell[0] + for i := 1; i < 5; i++ { + if cell[i] < minimum { + minimum = cell[i] + } + } + return minimum +} + +/* Calculate the lowest possible open cell if the piece is placed on the board. + * Used to later reduce the amount of time searching for open cells in the + * solve function. + */ +func first_empty_cell(cell []int8, minimum int8) int8 { + first_empty := minimum + for first_empty == cell[0] || first_empty == cell[1] || + first_empty == cell[2] || first_empty == cell[3] || + first_empty == cell[4] { + first_empty++ + } + return first_empty +} + +/* Generate the unsigned long long int that will later be anded with the + * board to determine if it fits. + */ +func bitmask_from_cells(cell []int8) uint64 { + var piece_mask uint64 + for i := 0; i < 5; i++ { + piece_mask |= 1 << uint(cell[i]) + } + return piece_mask +} + +/* Record the piece and other important information in arrays that will + * later be used by the solve function. + */ +func record_piece(piece int, minimum int8, first_empty int8, piece_mask uint64) { + pieces[piece][minimum][piece_counts[piece][minimum]] = piece_mask + next_cell[piece][minimum][piece_counts[piece][minimum]] = first_empty + piece_counts[piece][minimum]++ +} + + +/* Fill the entire board going cell by cell. If any cells are "trapped" + * they will be left alone. + */ +func fill_contiguous_space(board []int8, index int8) { + if board[index] == 1 { + return + } + board[index] = 1 + if !out_of_bounds(index, E) { + fill_contiguous_space(board, shift(index, E)) + } + if !out_of_bounds(index, SE) { + fill_contiguous_space(board, shift(index, SE)) + } + if !out_of_bounds(index, SW) { + fill_contiguous_space(board, shift(index, SW)) + } + if !out_of_bounds(index, W) { + fill_contiguous_space(board, shift(index, W)) + } + if !out_of_bounds(index, NW) { + fill_contiguous_space(board, shift(index, NW)) + } + if !out_of_bounds(index, NE) { + fill_contiguous_space(board, shift(index, NE)) + } +} + + +/* To thin the number of pieces, I calculate if any of them trap any empty + * cells at the edges. There are only a handful of exceptions where the + * the board can be solved with the trapped cells. For example: piece 8 can + * trap 5 cells in the corner, but piece 3 can fit in those cells, or piece 0 + * can split the board in half where both halves are viable. + */ +func has_island(cell []int8, piece int) bool { + temp_board := make([]int8, 50) + var i int + for i = 0; i < 5; i++ { + temp_board[cell[i]] = 1 + } + i = 49 + for temp_board[i] == 1 { + i-- + } + fill_contiguous_space(temp_board, int8(i)) + c := 0 + for i = 0; i < 50; i++ { + if temp_board[i] == 0 { + c++ + } + } + if c == 0 || (c == 5 && piece == 8) || (c == 40 && piece == 8) || + (c%5 == 0 && piece == 0) { + return false + } + return true +} + + +/* Calculate all six rotations of the specified piece at the specified index. + * We calculate only half of piece 3's rotations. This is because any solution + * found has an identical solution rotated 180 degrees. Thus we can reduce the + * number of attempted pieces in the solve algorithm by not including the 180- + * degree-rotated pieces of ONE of the pieces. I chose piece 3 because it gave + * me the best time ;) + */ +func calc_six_rotations(piece, index int) { + cell := make([]int8, 5) + for rotation := 0; rotation < 6; rotation++ { + if piece != 3 || rotation < 3 { + calc_cell_indices(cell, piece, int8(index)) + if cells_fit_on_board(cell, piece) && !has_island(cell, piece) { + minimum := minimum_of_cells(cell) + first_empty := first_empty_cell(cell, minimum) + piece_mask := bitmask_from_cells(cell) + record_piece(piece, minimum, first_empty, piece_mask) + } + } + rotate_piece(piece) + } +} + +/* Calculate every legal rotation for each piece at each board location. */ +func calc_pieces() { + for piece := 0; piece < 10; piece++ { + for index := 0; index < 50; index++ { + calc_six_rotations(piece, index) + flip_piece(piece) + calc_six_rotations(piece, index) + } + } +} + + +/* Calculate all 32 possible states for a 5-bit row and all rows that will + * create islands that follow any of the 32 possible rows. These pre- + * calculated 5-bit rows will be used to find islands in a partially solved + * board in the solve function. + */ +const ( + ROW_MASK = 0x1F + TRIPLE_MASK = 0x7FFF +) + +var ( + all_rows = [32]int8{0, 1, 2, 3, 4, 5, 6, 7, 8, 9, 10, 11, 12, 13, 14, 15, 16, + 17, 18, 19, 20, 21, 22, 23, 24, 25, 26, 27, 28, 29, 30, 31, + } + bad_even_rows [32][32]int8 + bad_odd_rows [32][32]int8 + bad_even_triple [32768]int8 + bad_odd_triple [32768]int8 +) + +func rows_bad(row1, row2 int8, even bool) int8 { + /* even is referring to row1 */ + var row2_shift int8 + /* Test for blockages at same index and shifted index */ + if even { + row2_shift = ((row2 << 1) & ROW_MASK) | 0x01 + } else { + row2_shift = (row2 >> 1) | 0x10 + } + block := ((row1 ^ row2) & row2) & ((row1 ^ row2_shift) & row2_shift) + /* Test for groups of 0's */ + in_zeroes := false + group_okay := false + for i := uint8(0); i < 5; i++ { + if row1&(1<<i) != 0 { + if in_zeroes { + if !group_okay { + return 1 + } + in_zeroes = false + group_okay = false + } + } else { + if !in_zeroes { + in_zeroes = true + } + if (block & (1 << i)) == 0 { + group_okay = true + } + } + } + if in_zeroes { + return boolInt(!group_okay) + } + return 0 +} + +/* Check for cases where three rows checked sequentially cause a false + * positive. One scenario is when 5 cells may be surrounded where piece 5 + * or 7 can fit. The other scenario is when piece 2 creates a hook shape. + */ +func triple_is_okay(row1, row2, row3 int, even bool) bool { + if even { + /* There are four cases: + * row1: 00011 00001 11001 10101 + * row2: 01011 00101 10001 10001 + * row3: 011?? 00110 ????? ????? + */ + return ((row1 == 0x03) && (row2 == 0x0B) && ((row3 & 0x1C) == 0x0C)) || + ((row1 == 0x01) && (row2 == 0x05) && (row3 == 0x06)) || + ((row1 == 0x19) && (row2 == 0x11)) || + ((row1 == 0x15) && (row2 == 0x11)) + } + /* There are two cases: + * row1: 10011 10101 + * row2: 10001 10001 + * row3: ????? ????? + */ + return ((row1 == 0x13) && (row2 == 0x11)) || + ((row1 == 0x15) && (row2 == 0x11)) +} + +func calc_rows() { + for row1 := int8(0); row1 < 32; row1++ { + for row2 := int8(0); row2 < 32; row2++ { + bad_even_rows[row1][row2] = rows_bad(row1, row2, true) + bad_odd_rows[row1][row2] = rows_bad(row1, row2, false) + } + } + for row1 := 0; row1 < 32; row1++ { + for row2 := 0; row2 < 32; row2++ { + for row3 := 0; row3 < 32; row3++ { + result1 := bad_even_rows[row1][row2] + result2 := bad_odd_rows[row2][row3] + if result1 == 0 && result2 != 0 && triple_is_okay(row1, row2, row3, true) { + bad_even_triple[row1+(row2*32)+(row3*1024)] = 0 + } else { + bad_even_triple[row1+(row2*32)+(row3*1024)] = boolInt(result1 != 0 || result2 != 0) + } + + result1 = bad_odd_rows[row1][row2] + result2 = bad_even_rows[row2][row3] + if result1 == 0 && result2 != 0 && triple_is_okay(row1, row2, row3, false) { + bad_odd_triple[row1+(row2*32)+(row3*1024)] = 0 + } else { + bad_odd_triple[row1+(row2*32)+(row3*1024)] = boolInt(result1 != 0 || result2 != 0) + } + } + } + } +} + + +/* Calculate islands while solving the board. + */ +func boardHasIslands(cell int8) int8 { + /* Too low on board, don't bother checking */ + if cell >= 40 { + return 0 + } + current_triple := (board >> uint((cell/5)*5)) & TRIPLE_MASK + if (cell/5)%2 != 0 { + return bad_odd_triple[current_triple] + } + return bad_even_triple[current_triple] +} + + +/* The recursive solve algorithm. Try to place each permutation in the upper- + * leftmost empty cell. Mark off available pieces as it goes along. + * Because the board is a bit mask, the piece number and bit mask must be saved + * at each successful piece placement. This data is used to create a 50 char + * array if a solution is found. + */ +var ( + avail uint16 = 0x03FF + sol_nums [10]int8 + sol_masks [10]uint64 + solutions [2100][50]int8 + solution_count = 0 +) + +func record_solution() { + for sol_no := 0; sol_no < 10; sol_no++ { + sol_mask := sol_masks[sol_no] + for index := 0; index < 50; index++ { + if sol_mask&1 == 1 { + solutions[solution_count][index] = sol_nums[sol_no] + /* Board rotated 180 degrees is a solution too! */ + solutions[solution_count+1][49-index] = sol_nums[sol_no] + } + sol_mask = sol_mask >> 1 + } + } + solution_count += 2 +} + +func solve(depth, cell int8) { + if solution_count >= *max_solutions { + return + } + + for board&(1<<uint(cell)) != 0 { + cell++ + } + + for piece := int8(0); piece < 10; piece++ { + var piece_no_mask uint16 = 1 << uint(piece) + if avail&piece_no_mask == 0 { + continue + } + avail ^= piece_no_mask + max_rots := piece_counts[piece][cell] + piece_mask := pieces[piece][cell] + for rotation := 0; rotation < max_rots; rotation++ { + if board&piece_mask[rotation] == 0 { + sol_nums[depth] = piece + sol_masks[depth] = piece_mask[rotation] + if depth == 9 { + /* Solution found!!!!!11!!ONE! */ + record_solution() + avail ^= piece_no_mask + return + } + board |= piece_mask[rotation] + if boardHasIslands(next_cell[piece][cell][rotation]) == 0 { + solve(depth+1, next_cell[piece][cell][rotation]) + } + board ^= piece_mask[rotation] + } + } + avail ^= piece_no_mask + } +} + +/* pretty print a board in the specified hexagonal format */ +func pretty(b *[50]int8) { + for i := 0; i < 50; i += 10 { + fmt.Printf("%c %c %c %c %c \n %c %c %c %c %c \n", b[i]+'0', b[i+1]+'0', + b[i+2]+'0', b[i+3]+'0', b[i+4]+'0', b[i+5]+'0', b[i+6]+'0', + b[i+7]+'0', b[i+8]+'0', b[i+9]+'0') + } + fmt.Printf("\n") +} + +/* Find smallest and largest solutions */ +func smallest_largest() (smallest, largest *[50]int8) { + smallest = &solutions[0] + largest = &solutions[0] + for i := 1; i < solution_count; i++ { + candidate := &solutions[i] + for j, s := range *smallest { + c := candidate[j] + if c == s { + continue + } + if c < s { + smallest = candidate + } + break + } + for j, s := range *largest { + c := candidate[j] + if c == s { + continue + } + if c > s { + largest = candidate + } + break + } + } + return +} + +func main() { + flag.Parse() + calc_pieces() + calc_rows() + solve(0, 0) + fmt.Printf("%d solutions found\n\n", solution_count) + smallest, largest := smallest_largest() + pretty(smallest) + pretty(largest) +} diff --git a/gcc/testsuite/go.test/test/bench/meteor-contest.txt b/gcc/testsuite/go.test/test/bench/meteor-contest.txt new file mode 100644 index 0000000..38d9783 --- /dev/null +++ b/gcc/testsuite/go.test/test/bench/meteor-contest.txt @@ -0,0 +1,24 @@ +2098 solutions found + +0 0 0 0 1 + 2 2 2 0 1 +2 6 6 1 1 + 2 6 1 5 5 +8 6 5 5 5 + 8 6 3 3 3 +4 8 8 9 3 + 4 4 8 9 3 +4 7 4 7 9 + 7 7 7 9 9 + +9 9 9 9 8 + 9 6 6 8 5 +6 6 8 8 5 + 6 8 2 5 5 +7 7 7 2 5 + 7 4 7 2 0 +1 4 2 2 0 + 1 4 4 0 3 +1 4 0 0 3 + 1 1 3 3 3 + diff --git a/gcc/testsuite/go.test/test/bench/nbody.c b/gcc/testsuite/go.test/test/bench/nbody.c new file mode 100644 index 0000000..3b95b05 --- /dev/null +++ b/gcc/testsuite/go.test/test/bench/nbody.c @@ -0,0 +1,170 @@ +/* +Redistribution and use in source and binary forms, with or without +modification, are permitted provided that the following conditions are met: + + * Redistributions of source code must retain the above copyright + notice, this list of conditions and the following disclaimer. + + * Redistributions in binary form must reproduce the above copyright + notice, this list of conditions and the following disclaimer in the + documentation and/or other materials provided with the distribution. + + * Neither the name of "The Computer Language Benchmarks Game" nor the + name of "The Computer Language Shootout Benchmarks" nor the names of + its contributors may be used to endorse or promote products derived + from this software without specific prior written permission. + +THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" +AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE +IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE +ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT OWNER OR CONTRIBUTORS BE +LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR +CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF +SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS +INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN +CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) +ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE +POSSIBILITY OF SUCH DAMAGE. +*/ + +/* + * The Great Computer Language Shootout + * http://shootout.alioth.debian.org/ + * + * contributed by Christoph Bauer + * + */ + +#include <math.h> +#include <stdio.h> +#include <stdlib.h> + +#define pi 3.141592653589793 +#define solar_mass (4 * pi * pi) +#define days_per_year 365.24 + +struct planet { + double x, y, z; + double vx, vy, vz; + double mass; +}; + +void advance(int nbodies, struct planet * bodies, double dt) +{ + int i, j; + + for (i = 0; i < nbodies; i++) { + struct planet * b = &(bodies[i]); + for (j = i + 1; j < nbodies; j++) { + struct planet * b2 = &(bodies[j]); + double dx = b->x - b2->x; + double dy = b->y - b2->y; + double dz = b->z - b2->z; + double distance = sqrt(dx * dx + dy * dy + dz * dz); + double mag = dt / (distance * distance * distance); + b->vx -= dx * b2->mass * mag; + b->vy -= dy * b2->mass * mag; + b->vz -= dz * b2->mass * mag; + b2->vx += dx * b->mass * mag; + b2->vy += dy * b->mass * mag; + b2->vz += dz * b->mass * mag; + } + } + for (i = 0; i < nbodies; i++) { + struct planet * b = &(bodies[i]); + b->x += dt * b->vx; + b->y += dt * b->vy; + b->z += dt * b->vz; + } +} + +double energy(int nbodies, struct planet * bodies) +{ + double e; + int i, j; + + e = 0.0; + for (i = 0; i < nbodies; i++) { + struct planet * b = &(bodies[i]); + e += 0.5 * b->mass * (b->vx * b->vx + b->vy * b->vy + b->vz * b->vz); + for (j = i + 1; j < nbodies; j++) { + struct planet * b2 = &(bodies[j]); + double dx = b->x - b2->x; + double dy = b->y - b2->y; + double dz = b->z - b2->z; + double distance = sqrt(dx * dx + dy * dy + dz * dz); + e -= (b->mass * b2->mass) / distance; + } + } + return e; +} + +void offset_momentum(int nbodies, struct planet * bodies) +{ + double px = 0.0, py = 0.0, pz = 0.0; + int i; + for (i = 0; i < nbodies; i++) { + px += bodies[i].vx * bodies[i].mass; + py += bodies[i].vy * bodies[i].mass; + pz += bodies[i].vz * bodies[i].mass; + } + bodies[0].vx = - px / solar_mass; + bodies[0].vy = - py / solar_mass; + bodies[0].vz = - pz / solar_mass; +} + +#define NBODIES 5 +struct planet bodies[NBODIES] = { + { /* sun */ + 0, 0, 0, 0, 0, 0, solar_mass + }, + { /* jupiter */ + 4.84143144246472090e+00, + -1.16032004402742839e+00, + -1.03622044471123109e-01, + 1.66007664274403694e-03 * days_per_year, + 7.69901118419740425e-03 * days_per_year, + -6.90460016972063023e-05 * days_per_year, + 9.54791938424326609e-04 * solar_mass + }, + { /* saturn */ + 8.34336671824457987e+00, + 4.12479856412430479e+00, + -4.03523417114321381e-01, + -2.76742510726862411e-03 * days_per_year, + 4.99852801234917238e-03 * days_per_year, + 2.30417297573763929e-05 * days_per_year, + 2.85885980666130812e-04 * solar_mass + }, + { /* uranus */ + 1.28943695621391310e+01, + -1.51111514016986312e+01, + -2.23307578892655734e-01, + 2.96460137564761618e-03 * days_per_year, + 2.37847173959480950e-03 * days_per_year, + -2.96589568540237556e-05 * days_per_year, + 4.36624404335156298e-05 * solar_mass + }, + { /* neptune */ + 1.53796971148509165e+01, + -2.59193146099879641e+01, + 1.79258772950371181e-01, + 2.68067772490389322e-03 * days_per_year, + 1.62824170038242295e-03 * days_per_year, + -9.51592254519715870e-05 * days_per_year, + 5.15138902046611451e-05 * solar_mass + } +}; + +int main(int argc, char ** argv) +{ + int n = atoi(argv[1]); + int i; + + offset_momentum(NBODIES, bodies); + printf ("%.9f\n", energy(NBODIES, bodies)); + for (i = 1; i <= n; i++) + advance(NBODIES, bodies, 0.01); + printf ("%.9f\n", energy(NBODIES, bodies)); + return 0; +} diff --git a/gcc/testsuite/go.test/test/bench/nbody.go b/gcc/testsuite/go.test/test/bench/nbody.go new file mode 100644 index 0000000..e9f4517 --- /dev/null +++ b/gcc/testsuite/go.test/test/bench/nbody.go @@ -0,0 +1,177 @@ +/* +Redistribution and use in source and binary forms, with or without +modification, are permitted provided that the following conditions are met: + + * Redistributions of source code must retain the above copyright + notice, this list of conditions and the following disclaimer. + + * Redistributions in binary form must reproduce the above copyright + notice, this list of conditions and the following disclaimer in the + documentation and/or other materials provided with the distribution. + + * Neither the name of "The Computer Language Benchmarks Game" nor the + name of "The Computer Language Shootout Benchmarks" nor the names of + its contributors may be used to endorse or promote products derived + from this software without specific prior written permission. + +THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" +AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE +IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE +ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT OWNER OR CONTRIBUTORS BE +LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR +CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF +SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS +INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN +CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) +ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE +POSSIBILITY OF SUCH DAMAGE. +*/ + +/* The Computer Language Benchmarks Game + * http://shootout.alioth.debian.org/ + * + * contributed by The Go Authors. + * based on C program by Christoph Bauer + */ + +package main + +import ( + "flag" + "fmt" + "math" +) + +var n = flag.Int("n", 1000, "number of iterations") + +type Body struct { + x, y, z, vx, vy, vz, mass float64 +} + +const ( + solarMass = 4 * math.Pi * math.Pi + daysPerYear = 365.24 +) + +func (b *Body) offsetMomentum(px, py, pz float64) { + b.vx = -px / solarMass + b.vy = -py / solarMass + b.vz = -pz / solarMass +} + +type System []*Body + +func NewSystem(body []Body) System { + n := make(System, len(body)) + for i := 0; i < len(body); i++ { + n[i] = new(Body) // copy to avoid overwriting the inputs + *n[i] = body[i] + } + var px, py, pz float64 + for _, body := range n { + px += body.vx * body.mass + py += body.vy * body.mass + pz += body.vz * body.mass + } + n[0].offsetMomentum(px, py, pz) + return n +} + +func (sys System) energy() float64 { + var e float64 + for i, body := range sys { + e += 0.5 * body.mass * + (body.vx*body.vx + body.vy*body.vy + body.vz*body.vz) + for j := i + 1; j < len(sys); j++ { + body2 := sys[j] + dx := body.x - body2.x + dy := body.y - body2.y + dz := body.z - body2.z + distance := math.Sqrt(dx*dx + dy*dy + dz*dz) + e -= (body.mass * body2.mass) / distance + } + } + return e +} + +func (sys System) advance(dt float64) { + for i, body := range sys { + for j := i + 1; j < len(sys); j++ { + body2 := sys[j] + dx := body.x - body2.x + dy := body.y - body2.y + dz := body.z - body2.z + + dSquared := dx*dx + dy*dy + dz*dz + distance := math.Sqrt(dSquared) + mag := dt / (dSquared * distance) + + body.vx -= dx * body2.mass * mag + body.vy -= dy * body2.mass * mag + body.vz -= dz * body2.mass * mag + + body2.vx += dx * body.mass * mag + body2.vy += dy * body.mass * mag + body2.vz += dz * body.mass * mag + } + } + + for _, body := range sys { + body.x += dt * body.vx + body.y += dt * body.vy + body.z += dt * body.vz + } +} + +var ( + jupiter = Body{ + x: 4.84143144246472090e+00, + y: -1.16032004402742839e+00, + z: -1.03622044471123109e-01, + vx: 1.66007664274403694e-03 * daysPerYear, + vy: 7.69901118419740425e-03 * daysPerYear, + vz: -6.90460016972063023e-05 * daysPerYear, + mass: 9.54791938424326609e-04 * solarMass, + } + saturn = Body{ + x: 8.34336671824457987e+00, + y: 4.12479856412430479e+00, + z: -4.03523417114321381e-01, + vx: -2.76742510726862411e-03 * daysPerYear, + vy: 4.99852801234917238e-03 * daysPerYear, + vz: 2.30417297573763929e-05 * daysPerYear, + mass: 2.85885980666130812e-04 * solarMass, + } + uranus = Body{ + x: 1.28943695621391310e+01, + y: -1.51111514016986312e+01, + z: -2.23307578892655734e-01, + vx: 2.96460137564761618e-03 * daysPerYear, + vy: 2.37847173959480950e-03 * daysPerYear, + vz: -2.96589568540237556e-05 * daysPerYear, + mass: 4.36624404335156298e-05 * solarMass, + } + neptune = Body{ + x: 1.53796971148509165e+01, + y: -2.59193146099879641e+01, + z: 1.79258772950371181e-01, + vx: 2.68067772490389322e-03 * daysPerYear, + vy: 1.62824170038242295e-03 * daysPerYear, + vz: -9.51592254519715870e-05 * daysPerYear, + mass: 5.15138902046611451e-05 * solarMass, + } + sun = Body{ + mass: solarMass, + } +) + +func main() { + flag.Parse() + + system := NewSystem([]Body{sun, jupiter, saturn, uranus, neptune}) + fmt.Printf("%.9f\n", system.energy()) + for i := 0; i < *n; i++ { + system.advance(0.01) + } + fmt.Printf("%.9f\n", system.energy()) +} diff --git a/gcc/testsuite/go.test/test/bench/nbody.txt b/gcc/testsuite/go.test/test/bench/nbody.txt new file mode 100644 index 0000000..1731557 --- /dev/null +++ b/gcc/testsuite/go.test/test/bench/nbody.txt @@ -0,0 +1,2 @@ +-0.169075164 +-0.169087605 diff --git a/gcc/testsuite/go.test/test/bench/pidigits.c b/gcc/testsuite/go.test/test/bench/pidigits.c new file mode 100644 index 0000000..c064da0 --- /dev/null +++ b/gcc/testsuite/go.test/test/bench/pidigits.c @@ -0,0 +1,123 @@ +/* +Redistribution and use in source and binary forms, with or without +modification, are permitted provided that the following conditions are met: + + * Redistributions of source code must retain the above copyright + notice, this list of conditions and the following disclaimer. + + * Redistributions in binary form must reproduce the above copyright + notice, this list of conditions and the following disclaimer in the + documentation and/or other materials provided with the distribution. + + * Neither the name of "The Computer Language Benchmarks Game" nor the + name of "The Computer Language Shootout Benchmarks" nor the names of + its contributors may be used to endorse or promote products derived + from this software without specific prior written permission. + +THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" +AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE +IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE +ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT OWNER OR CONTRIBUTORS BE +LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR +CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF +SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS +INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN +CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) +ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE +POSSIBILITY OF SUCH DAMAGE. +*/ + +/* The Computer Language Benchmarks Game + http://shootout.alioth.debian.org/ + + contributed by Paolo Bonzini & Sean Bartlett + modified by Michael Mellor +*/ + +#include <stdio.h> +#include <stdlib.h> +#include <gmp.h> + +static mpz_t numer, accum, denom, tmp1, tmp2; + +static int extract_digit() +{ + if (mpz_cmp(numer, accum) > 0) + return -1; + + /* Compute (numer * 3 + accum) / denom */ + mpz_mul_2exp(tmp1, numer, 1); + mpz_add(tmp1, tmp1, numer); + mpz_add(tmp1, tmp1, accum); + mpz_fdiv_qr(tmp1, tmp2, tmp1, denom); + + /* Now, if (numer * 4 + accum) % denom... */ + mpz_add(tmp2, tmp2, numer); + + /* ... is normalized, then the two divisions have the same result. */ + if (mpz_cmp(tmp2, denom) >= 0) + return -1; + + return mpz_get_ui(tmp1); +} + +static void next_term(unsigned int k) +{ + unsigned int y2 = k*2 + 1; + + mpz_mul_2exp(tmp1, numer, 1); + mpz_add(accum, accum, tmp1); + mpz_mul_ui(accum, accum, y2); + mpz_mul_ui(numer, numer, k); + mpz_mul_ui(denom, denom, y2); +} + +static void eliminate_digit(unsigned int d) +{ + mpz_submul_ui(accum, denom, d); + mpz_mul_ui(accum, accum, 10); + mpz_mul_ui(numer, numer, 10); +} + +static void pidigits(unsigned int n) +{ + int d; + unsigned int i = 0, k = 0, m; + mpz_init(tmp1); + mpz_init(tmp2); + mpz_init_set_ui(numer, 1); + mpz_init_set_ui(accum, 0); + mpz_init_set_ui(denom, 1); + + for(;;) + { + do { + k++; + next_term(k); + d = extract_digit(); + } while(d == -1); + + putchar(d + '0'); + + i++; + m = i%10; + if(m == 0) + printf("\t:%d\n", i); + if(i >= n) + break; + eliminate_digit(d); + } + + if(m) { + m = 10 - m; + while(m--) + putchar(' '); + printf("\t:%d\n", n); + } +} + +int main(int argc, char **argv) +{ + pidigits(argc > 1 ? atoi(argv[1]) : 27); + return 0; +} diff --git a/gcc/testsuite/go.test/test/bench/pidigits.go b/gcc/testsuite/go.test/test/bench/pidigits.go new file mode 100644 index 0000000..dcfb502 --- /dev/null +++ b/gcc/testsuite/go.test/test/bench/pidigits.go @@ -0,0 +1,135 @@ +/* +Redistribution and use in source and binary forms, with or without +modification, are permitted provided that the following conditions are met: + + * Redistributions of source code must retain the above copyright + notice, this list of conditions and the following disclaimer. + + * Redistributions in binary form must reproduce the above copyright + notice, this list of conditions and the following disclaimer in the + documentation and/or other materials provided with the distribution. + + * Neither the name of "The Computer Language Benchmarks Game" nor the + name of "The Computer Language Shootout Benchmarks" nor the names of + its contributors may be used to endorse or promote products derived + from this software without specific prior written permission. + +THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" +AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE +IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE +ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT OWNER OR CONTRIBUTORS BE +LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR +CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF +SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS +INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN +CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) +ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE +POSSIBILITY OF SUCH DAMAGE. +*/ + +/* The Computer Language Benchmarks Game + * http://shootout.alioth.debian.org/ + * + * contributed by The Go Authors. + * based on pidigits.c (by Paolo Bonzini & Sean Bartlett, + * modified by Michael Mellor) + */ + +package main + +import ( + "big" + "flag" + "fmt" +) + +var n = flag.Int("n", 27, "number of digits") +var silent = flag.Bool("s", false, "don't print result") + +var ( + tmp1 = big.NewInt(0) + tmp2 = big.NewInt(0) + y2 = big.NewInt(0) + bigk = big.NewInt(0) + numer = big.NewInt(1) + accum = big.NewInt(0) + denom = big.NewInt(1) + ten = big.NewInt(10) +) + +func extract_digit() int64 { + if numer.Cmp(accum) > 0 { + return -1 + } + + // Compute (numer * 3 + accum) / denom + tmp1.Lsh(numer, 1) + tmp1.Add(tmp1, numer) + tmp1.Add(tmp1, accum) + tmp1.DivMod(tmp1, denom, tmp2) + + // Now, if (numer * 4 + accum) % denom... + tmp2.Add(tmp2, numer) + + // ... is normalized, then the two divisions have the same result. + if tmp2.Cmp(denom) >= 0 { + return -1 + } + + return tmp1.Int64() +} + +func next_term(k int64) { + // TODO(eds) If big.Int ever gets a Scale method, y2 and bigk could be int64 + y2.SetInt64(k*2 + 1) + bigk.SetInt64(k) + + tmp1.Lsh(numer, 1) + accum.Add(accum, tmp1) + accum.Mul(accum, y2) + numer.Mul(numer, bigk) + denom.Mul(denom, y2) +} + +func eliminate_digit(d int64) { + tmp := big.NewInt(0).Set(denom) + accum.Sub(accum, tmp.Mul(tmp, big.NewInt(d))) + accum.Mul(accum, ten) + numer.Mul(numer, ten) +} + +func printf(s string, arg ...interface{}) { + if !*silent { + fmt.Printf(s, arg) + } +} + +func main() { + flag.Parse() + + var m int // 0 <= m < 10 + for i, k := 0, int64(0); ; { + d := int64(-1) + for d < 0 { + k++ + next_term(k) + d = extract_digit() + } + + printf("%c", d+'0') + + i++ + m = i % 10 + if m == 0 { + printf("\t:%d\n", i) + } + if i >= *n { + break + } + eliminate_digit(d) + } + + if m > 0 { + printf("%s\t:%d\n", " "[m:10], *n) + } +} diff --git a/gcc/testsuite/go.test/test/bench/pidigits.txt b/gcc/testsuite/go.test/test/bench/pidigits.txt new file mode 100644 index 0000000..ad946a9 --- /dev/null +++ b/gcc/testsuite/go.test/test/bench/pidigits.txt @@ -0,0 +1,3 @@ +3141592653 :10 +5897932384 :20 +6264338 :27 diff --git a/gcc/testsuite/go.test/test/bench/regex-dna-parallel.go b/gcc/testsuite/go.test/test/bench/regex-dna-parallel.go new file mode 100644 index 0000000..e8e62b8 --- /dev/null +++ b/gcc/testsuite/go.test/test/bench/regex-dna-parallel.go @@ -0,0 +1,124 @@ +/* +Redistribution and use in source and binary forms, with or without +modification, are permitted provided that the following conditions are met: + + * Redistributions of source code must retain the above copyright + notice, this list of conditions and the following disclaimer. + + * Redistributions in binary form must reproduce the above copyright + notice, this list of conditions and the following disclaimer in the + documentation and/or other materials provided with the distribution. + + * Neither the name of "The Computer Language Benchmarks Game" nor the + name of "The Computer Language Shootout Benchmarks" nor the names of + its contributors may be used to endorse or promote products derived + from this software without specific prior written permission. + +THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" +AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE +IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE +ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT OWNER OR CONTRIBUTORS BE +LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR +CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF +SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS +INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN +CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) +ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE +POSSIBILITY OF SUCH DAMAGE. +*/ + +/* The Computer Language Benchmarks Game + * http://shootout.alioth.debian.org/ + * + * contributed by The Go Authors. + */ + +package main + +import ( + "fmt" + "io/ioutil" + "os" + "runtime" + "regexp" +) + +var variants = []string{ + "agggtaaa|tttaccct", + "[cgt]gggtaaa|tttaccc[acg]", + "a[act]ggtaaa|tttacc[agt]t", + "ag[act]gtaaa|tttac[agt]ct", + "agg[act]taaa|ttta[agt]cct", + "aggg[acg]aaa|ttt[cgt]ccct", + "agggt[cgt]aa|tt[acg]accct", + "agggta[cgt]a|t[acg]taccct", + "agggtaa[cgt]|[acg]ttaccct", +} + +type Subst struct { + pat, repl string +} + +var substs = []Subst{ + Subst{"B", "(c|g|t)"}, + Subst{"D", "(a|g|t)"}, + Subst{"H", "(a|c|t)"}, + Subst{"K", "(g|t)"}, + Subst{"M", "(a|c)"}, + Subst{"N", "(a|c|g|t)"}, + Subst{"R", "(a|g)"}, + Subst{"S", "(c|g)"}, + Subst{"V", "(a|c|g)"}, + Subst{"W", "(a|t)"}, + Subst{"Y", "(c|t)"}, +} + +func countMatches(pat string, bytes []byte) int { + re := regexp.MustCompile(pat) + n := 0 + for { + e := re.FindIndex(bytes) + if e == nil { + break + } + n++ + bytes = bytes[e[1]:] + } + return n +} + +func main() { + runtime.GOMAXPROCS(4) + bytes, err := ioutil.ReadFile("/dev/stdin") + if err != nil { + fmt.Fprintf(os.Stderr, "can't read input: %s\n", err) + os.Exit(2) + } + ilen := len(bytes) + // Delete the comment lines and newlines + bytes = regexp.MustCompile("(>[^\n]+)?\n").ReplaceAll(bytes, []byte{}) + clen := len(bytes) + + mresults := make([]chan int, len(variants)) + for i, s := range variants { + ch := make(chan int) + mresults[i] = ch + go func(ss string) { + ch <- countMatches(ss, bytes) + }(s) + } + + lenresult := make(chan int) + bb := bytes + go func() { + for _, sub := range substs { + bb = regexp.MustCompile(sub.pat).ReplaceAll(bb, []byte(sub.repl)) + } + lenresult <- len(bb) + }() + + for i, s := range variants { + fmt.Printf("%s %d\n", s, <-mresults[i]) + } + fmt.Printf("\n%d\n%d\n%d\n", ilen, clen, <-lenresult) +} diff --git a/gcc/testsuite/go.test/test/bench/regex-dna-parallel.txt b/gcc/testsuite/go.test/test/bench/regex-dna-parallel.txt new file mode 100644 index 0000000..e23e71f --- /dev/null +++ b/gcc/testsuite/go.test/test/bench/regex-dna-parallel.txt @@ -0,0 +1,13 @@ +agggtaaa|tttaccct 1 +[cgt]gggtaaa|tttaccc[acg] 0 +a[act]ggtaaa|tttacc[agt]t 0 +ag[act]gtaaa|tttac[agt]ct 0 +agg[act]taaa|ttta[agt]cct 1 +aggg[acg]aaa|ttt[cgt]ccct 0 +agggt[cgt]aa|tt[acg]accct 0 +agggta[cgt]a|t[acg]taccct 0 +agggtaa[cgt]|[acg]ttaccct 2 + +10245 +10000 +13348 diff --git a/gcc/testsuite/go.test/test/bench/regex-dna.c b/gcc/testsuite/go.test/test/bench/regex-dna.c new file mode 100644 index 0000000..134f821 --- /dev/null +++ b/gcc/testsuite/go.test/test/bench/regex-dna.c @@ -0,0 +1,154 @@ +/* +Redistribution and use in source and binary forms, with or without +modification, are permitted provided that the following conditions are met: + + * Redistributions of source code must retain the above copyright + notice, this list of conditions and the following disclaimer. + + * Redistributions in binary form must reproduce the above copyright + notice, this list of conditions and the following disclaimer in the + documentation and/or other materials provided with the distribution. + + * Neither the name of "The Computer Language Benchmarks Game" nor the + name of "The Computer Language Shootout Benchmarks" nor the names of + its contributors may be used to endorse or promote products derived + from this software without specific prior written permission. + +THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" +AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE +IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE +ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT OWNER OR CONTRIBUTORS BE +LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR +CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF +SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS +INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN +CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) +ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE +POSSIBILITY OF SUCH DAMAGE. +*/ + +/* +** The Computer Language Shootout +** http://shootout.alioth.debian.org/ +** contributed by Mike Pall +** +** regex-dna benchmark using PCRE +** +** compile with: +** gcc -O3 -fomit-frame-pointer -o regexdna regexdna.c -lpcre +*/ + +#define __USE_STRING_INLINES +#include <stdio.h> +#include <string.h> +#include <stdlib.h> +#include <pcre.h> + +typedef struct fbuf { + char *buf; + size_t size, len; +} fbuf_t; + +static void fb_init(fbuf_t *b) +{ + b->buf = NULL; + b->len = b->size = 0; +} + +static char *fb_need(fbuf_t *b, size_t need) +{ + need += b->len; + if (need > b->size) { + if (b->size == 0) b->size = need; + else while (need > b->size) b->size += b->size; + if (!(b->buf = realloc(b->buf, b->size))) exit(1); + } + return b->buf+b->len; +} + +#define FB_MINREAD (3<<16) + +/* Read all of a stdio stream into dst buffer. */ +static size_t fb_readall(fbuf_t *dst, FILE *fp) +{ + char *dp; + int n; + for (dp = fb_need(dst, FB_MINREAD); + (n = fread(dp, 1, dst->size-dst->len, fp)) > 0; + dp = fb_need(dst, FB_MINREAD)) dst->len += n; + if (ferror(fp)) exit(1); + return dst->len; +} + +/* Substitute pattern p with replacement r, copying from src to dst buffer. */ +static size_t fb_subst(fbuf_t *dst, fbuf_t *src, const char *p, const char *r) +{ + pcre *re; + pcre_extra *re_ex; + const char *re_e; + char *dp; + int re_eo, m[3], pos, rlen, clen; + if (!(re = pcre_compile(p, PCRE_CASELESS, &re_e, &re_eo, NULL))) exit(1); + re_ex = pcre_study(re, 0, &re_e); + for (dst->len = 0, rlen = strlen(r), pos = 0; + pcre_exec(re, re_ex, src->buf, src->len, pos, 0, m, 3) >= 0; + pos = m[1]) { + clen = m[0]-pos; + dp = fb_need(dst, clen+rlen); + dst->len += clen+rlen; + memcpy(dp, src->buf+pos, clen); + memcpy(dp+clen, r, rlen); + } + clen = src->len-pos; + dp = fb_need(dst, clen); + dst->len += clen; + memcpy(dp, src->buf+pos, clen); + return dst->len; +} + +/* Count all matches with pattern p in src buffer. */ +static int fb_countmatches(fbuf_t *src, const char *p) +{ + pcre *re; + pcre_extra *re_ex; + const char *re_e; + int re_eo, m[3], pos, count; + if (!(re = pcre_compile(p, PCRE_CASELESS, &re_e, &re_eo, NULL))) exit(1); + re_ex = pcre_study(re, 0, &re_e); + for (count = 0, pos = 0; + pcre_exec(re, re_ex, src->buf, src->len, pos, 0, m, 3) >= 0; + pos = m[1]) count++; + return count; +} + +static const char *variants[] = { + "agggtaaa|tttaccct", "[cgt]gggtaaa|tttaccc[acg]", + "a[act]ggtaaa|tttacc[agt]t", "ag[act]gtaaa|tttac[agt]ct", + "agg[act]taaa|ttta[agt]cct", "aggg[acg]aaa|ttt[cgt]ccct", + "agggt[cgt]aa|tt[acg]accct", "agggta[cgt]a|t[acg]taccct", + "agggtaa[cgt]|[acg]ttaccct", NULL +}; + +static const char *subst[] = { + "B", "(c|g|t)", "D", "(a|g|t)", "H", "(a|c|t)", "K", "(g|t)", + "M", "(a|c)", "N", "(a|c|g|t)", "R", "(a|g)", "S", "(c|g)", + "V", "(a|c|g)", "W", "(a|t)", "Y", "(c|t)", NULL +}; + +int main(int argc, char **argv) +{ + fbuf_t seq[2]; + const char **pp; + size_t ilen, clen, slen; + int flip; + fb_init(&seq[0]); + fb_init(&seq[1]); + ilen = fb_readall(&seq[0], stdin); + clen = fb_subst(&seq[1], &seq[0], ">.*|\n", ""); + for (pp = variants; *pp; pp++) + printf("%s %d\n", *pp, fb_countmatches(&seq[1], *pp)); + for (slen = 0, flip = 1, pp = subst; *pp; pp += 2, flip = 1-flip) + slen = fb_subst(&seq[1-flip], &seq[flip], *pp, pp[1]); + printf("\n%zu\n%zu\n%zu\n", ilen, clen, slen); + return 0; +} diff --git a/gcc/testsuite/go.test/test/bench/regex-dna.go b/gcc/testsuite/go.test/test/bench/regex-dna.go new file mode 100644 index 0000000..dc31db7 --- /dev/null +++ b/gcc/testsuite/go.test/test/bench/regex-dna.go @@ -0,0 +1,106 @@ +/* +Redistribution and use in source and binary forms, with or without +modification, are permitted provided that the following conditions are met: + + * Redistributions of source code must retain the above copyright + notice, this list of conditions and the following disclaimer. + + * Redistributions in binary form must reproduce the above copyright + notice, this list of conditions and the following disclaimer in the + documentation and/or other materials provided with the distribution. + + * Neither the name of "The Computer Language Benchmarks Game" nor the + name of "The Computer Language Shootout Benchmarks" nor the names of + its contributors may be used to endorse or promote products derived + from this software without specific prior written permission. + +THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" +AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE +IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE +ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT OWNER OR CONTRIBUTORS BE +LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR +CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF +SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS +INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN +CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) +ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE +POSSIBILITY OF SUCH DAMAGE. +*/ + +/* The Computer Language Benchmarks Game + * http://shootout.alioth.debian.org/ + * + * contributed by The Go Authors. + */ + +package main + +import ( + "fmt" + "io/ioutil" + "os" + "regexp" +) + +var variants = []string{ + "agggtaaa|tttaccct", + "[cgt]gggtaaa|tttaccc[acg]", + "a[act]ggtaaa|tttacc[agt]t", + "ag[act]gtaaa|tttac[agt]ct", + "agg[act]taaa|ttta[agt]cct", + "aggg[acg]aaa|ttt[cgt]ccct", + "agggt[cgt]aa|tt[acg]accct", + "agggta[cgt]a|t[acg]taccct", + "agggtaa[cgt]|[acg]ttaccct", +} + +type Subst struct { + pat, repl string +} + +var substs = []Subst{ + Subst{"B", "(c|g|t)"}, + Subst{"D", "(a|g|t)"}, + Subst{"H", "(a|c|t)"}, + Subst{"K", "(g|t)"}, + Subst{"M", "(a|c)"}, + Subst{"N", "(a|c|g|t)"}, + Subst{"R", "(a|g)"}, + Subst{"S", "(c|g)"}, + Subst{"V", "(a|c|g)"}, + Subst{"W", "(a|t)"}, + Subst{"Y", "(c|t)"}, +} + +func countMatches(pat string, bytes []byte) int { + re := regexp.MustCompile(pat) + n := 0 + for { + e := re.FindIndex(bytes) + if len(e) == 0 { + break + } + n++ + bytes = bytes[e[1]:] + } + return n +} + +func main() { + bytes, err := ioutil.ReadFile("/dev/stdin") + if err != nil { + fmt.Fprintf(os.Stderr, "can't read input: %s\n", err) + os.Exit(2) + } + ilen := len(bytes) + // Delete the comment lines and newlines + bytes = regexp.MustCompile("(>[^\n]+)?\n").ReplaceAll(bytes, []byte{}) + clen := len(bytes) + for _, s := range variants { + fmt.Printf("%s %d\n", s, countMatches(s, bytes)) + } + for _, sub := range substs { + bytes = regexp.MustCompile(sub.pat).ReplaceAll(bytes, []byte(sub.repl)) + } + fmt.Printf("\n%d\n%d\n%d\n", ilen, clen, len(bytes)) +} diff --git a/gcc/testsuite/go.test/test/bench/regex-dna.txt b/gcc/testsuite/go.test/test/bench/regex-dna.txt new file mode 100644 index 0000000..e23e71f --- /dev/null +++ b/gcc/testsuite/go.test/test/bench/regex-dna.txt @@ -0,0 +1,13 @@ +agggtaaa|tttaccct 1 +[cgt]gggtaaa|tttaccc[acg] 0 +a[act]ggtaaa|tttacc[agt]t 0 +ag[act]gtaaa|tttac[agt]ct 0 +agg[act]taaa|ttta[agt]cct 1 +aggg[acg]aaa|ttt[cgt]ccct 0 +agggt[cgt]aa|tt[acg]accct 0 +agggta[cgt]a|t[acg]taccct 0 +agggtaa[cgt]|[acg]ttaccct 2 + +10245 +10000 +13348 diff --git a/gcc/testsuite/go.test/test/bench/reverse-complement.c b/gcc/testsuite/go.test/test/bench/reverse-complement.c new file mode 100644 index 0000000..b34c846 --- /dev/null +++ b/gcc/testsuite/go.test/test/bench/reverse-complement.c @@ -0,0 +1,100 @@ +/* +Redistribution and use in source and binary forms, with or without +modification, are permitted provided that the following conditions are met: + + * Redistributions of source code must retain the above copyright + notice, this list of conditions and the following disclaimer. + + * Redistributions in binary form must reproduce the above copyright + notice, this list of conditions and the following disclaimer in the + documentation and/or other materials provided with the distribution. + + * Neither the name of "The Computer Language Benchmarks Game" nor the + name of "The Computer Language Shootout Benchmarks" nor the names of + its contributors may be used to endorse or promote products derived + from this software without specific prior written permission. + +THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" +AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE +IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE +ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT OWNER OR CONTRIBUTORS BE +LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR +CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF +SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS +INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN +CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) +ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE +POSSIBILITY OF SUCH DAMAGE. +*/ + +/* + * The Computer Language Benchmarks Game + * http://shootout.alioth.debian.org + * + * contributed by Bob W + */ + +#include <stdio.h> +#include <stdlib.h> + +#define JBFSIZE 82 // line input buffer size +#define QBFSIZE 5200 // output buffer initial size +#define Z16 "\0\0\0\0\0\0\0\0\0\0\0\0\0\0\0\0" +#define V32 "\0TVGH\0\0CD\0\0M\0KN\0\0\0YSA\0BW\0R\0\0\0\0\0\0" +#define VALL Z16 Z16 Z16 Z16 V32 V32 Z16 Z16 Z16 Z16 Z16 Z16 Z16 Z16 + +int errex(char *s, int n) { // error message+value, return 1 + fprintf(stderr,"\n*** Error: %s [%d]!\n", s, n); + return 1; +} + +int main () { // ***** main ***** + char *pj, *pq, *pr; // buffer pointers: inp,out,/out + char *jjj = malloc(JBFSIZE); // allocate input line buffer + char *qqq = malloc(QBFSIZE); // output buffer (dyn. size) + char *pqstop = qqq+QBFSIZE; // end-of-buffer pointer + char xtab[256] = VALL; // char conversion table + + if (!jjj || !qqq) + return errex("Buffer allocation", !jjj + !qqq); + pj = fgets(jjj,JBFSIZE,stdin); // fetch 1st line + if (!pj) + return errex("No input data",0); + if (*jjj != '>') + return errex("1st char not '>'", 0); + + while (pj) { // MAIN LOOP: process data + fputs(jjj, stdout); // output ID line + + for (pq=qqq+1, pr=pqstop; ; pq++) { // LOOP: fill output buffer + pj = fgets(jjj, JBFSIZE, stdin); // get line from stdin + if (!pj || (*jjj=='>')) break; // EOF or new ID line + if (pr <= (pq+61)) { // need to resize buffer + char *newstop = pqstop + 12777888; + char *newptr = realloc(qqq, newstop-qqq); + if (!newptr) + return errex("Out of memory", 0); + if (newptr != qqq) { // new base: adj. pointers + size_t x = newptr-qqq; // offset for pointer update + pq+=x; pr+=x; qqq+=x; + newstop+=x; pqstop+=x; + } + pr = __builtin_memmove(newstop-(pqstop-pr), pr, pqstop-pr); + pqstop = newstop; // buffer resize complete + } + while (*pj) { // LOOP: conv. & revert line + char c = xtab[(unsigned char)(*pj++)]; + if (c) // conversion valid + *(--pr) = c; + } + } + + for (pq = qqq; pr<pqstop; ) { // LOOP: format output + size_t x = (pqstop-pr)<60 ? pqstop-pr : 60; + __builtin_memmove(pq,pr,x); // move line to free space + pr+=x; pq+=x; *(pq++) = 0xA; // adjust pointers, add LF + } + fwrite(qqq, 1, pq-qqq, stdout); // output converted data + } + return 0; +} diff --git a/gcc/testsuite/go.test/test/bench/reverse-complement.go b/gcc/testsuite/go.test/test/bench/reverse-complement.go new file mode 100644 index 0000000..baa30ff --- /dev/null +++ b/gcc/testsuite/go.test/test/bench/reverse-complement.go @@ -0,0 +1,105 @@ +/* +Redistribution and use in source and binary forms, with or without +modification, are permitted provided that the following conditions are met: + + * Redistributions of source code must retain the above copyright + notice, this list of conditions and the following disclaimer. + + * Redistributions in binary form must reproduce the above copyright + notice, this list of conditions and the following disclaimer in the + documentation and/or other materials provided with the distribution. + + * Neither the name of "The Computer Language Benchmarks Game" nor the + name of "The Computer Language Shootout Benchmarks" nor the names of + its contributors may be used to endorse or promote products derived + from this software without specific prior written permission. + +THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" +AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE +IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE +ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT OWNER OR CONTRIBUTORS BE +LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR +CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF +SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS +INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN +CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) +ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE +POSSIBILITY OF SUCH DAMAGE. +*/ + +/* The Computer Language Benchmarks Game + * http://shootout.alioth.debian.org/ + * + * contributed by The Go Authors. + */ + +package main + +import ( + "bufio" + "os" +) + +const lineSize = 60 + +var complement = [256]uint8{ + 'A': 'T', 'a': 'T', + 'C': 'G', 'c': 'G', + 'G': 'C', 'g': 'C', + 'T': 'A', 't': 'A', + 'U': 'A', 'u': 'A', + 'M': 'K', 'm': 'K', + 'R': 'Y', 'r': 'Y', + 'W': 'W', 'w': 'W', + 'S': 'S', 's': 'S', + 'Y': 'R', 'y': 'R', + 'K': 'M', 'k': 'M', + 'V': 'B', 'v': 'B', + 'H': 'D', 'h': 'D', + 'D': 'H', 'd': 'H', + 'B': 'V', 'b': 'V', + 'N': 'N', 'n': 'N', +} + +func main() { + in := bufio.NewReader(os.Stdin) + buf := make([]byte, 1024*1024) + line, err := in.ReadSlice('\n') + for err == nil { + os.Stdout.Write(line) + + // Accumulate reversed complement in buf[w:] + nchar := 0 + w := len(buf) + for { + line, err = in.ReadSlice('\n') + if err != nil || line[0] == '>' { + break + } + line = line[0 : len(line)-1] + nchar += len(line) + if len(line)+nchar/60+128 >= w { + nbuf := make([]byte, len(buf)*5) + copy(nbuf[len(nbuf)-len(buf):], buf) + w += len(nbuf) - len(buf) + buf = nbuf + } + + // This loop is the bottleneck. + for _, c := range line { + w-- + buf[w] = complement[c] + } + } + + // Copy down to beginning of buffer, inserting newlines. + // The loop left room for the newlines and 128 bytes of padding. + i := 0 + for j := w; j < len(buf); j += 60 { + n := copy(buf[i:i+60], buf[j:]) + buf[i+n] = '\n' + i += n + 1 + } + os.Stdout.Write(buf[0:i]) + } +} diff --git a/gcc/testsuite/go.test/test/bench/reverse-complement.txt b/gcc/testsuite/go.test/test/bench/reverse-complement.txt new file mode 100644 index 0000000..14d792a --- /dev/null +++ b/gcc/testsuite/go.test/test/bench/reverse-complement.txt @@ -0,0 +1,171 @@ +>ONE Homo sapiens alu +CGGAGTCTCGCTCTGTCGCCCAGGCTGGAGTGCAGTGGCGCGATCTCGGCTCACTGCAAC +CTCCGCCTCCCGGGTTCAAGCGATTCTCCTGCCTCAGCCTCCCGAGTAGCTGGGATTACA +GGCGCGCGCCACCACGCCCGGCTAATTTTTGTATTTTTAGTAGAGACGGGGTTTCACCAT +GTTGGCCAGGCTGGTCTCGAACTCCTGACCTCAGGTGATCCGCCCGCCTCGGCCTCCCAA +AGTGCTGGGATTACAGGCGTGAGCCACCGCGCCCGGCCTTTTTGAGACGGAGTCTCGCTC +TGTCGCCCAGGCTGGAGTGCAGTGGCGCGATCTCGGCTCACTGCAACCTCCGCCTCCCGG +GTTCAAGCGATTCTCCTGCCTCAGCCTCCCGAGTAGCTGGGATTACAGGCGCGCGCCACC +ACGCCCGGCTAATTTTTGTATTTTTAGTAGAGACGGGGTTTCACCATGTTGGCCAGGCTG +GTCTCGAACTCCTGACCTCAGGTGATCCGCCCGCCTCGGCCTCCCAAAGTGCTGGGATTA +CAGGCGTGAGCCACCGCGCCCGGCCTTTTTGAGACGGAGTCTCGCTCTGTCGCCCAGGCT +GGAGTGCAGTGGCGCGATCTCGGCTCACTGCAACCTCCGCCTCCCGGGTTCAAGCGATTC +TCCTGCCTCAGCCTCCCGAGTAGCTGGGATTACAGGCGCGCGCCACCACGCCCGGCTAAT +TTTTGTATTTTTAGTAGAGACGGGGTTTCACCATGTTGGCCAGGCTGGTCTCGAACTCCT +GACCTCAGGTGATCCGCCCGCCTCGGCCTCCCAAAGTGCTGGGATTACAGGCGTGAGCCA +CCGCGCCCGGCCTTTTTGAGACGGAGTCTCGCTCTGTCGCCCAGGCTGGAGTGCAGTGGC +GCGATCTCGGCTCACTGCAACCTCCGCCTCCCGGGTTCAAGCGATTCTCCTGCCTCAGCC +TCCCGAGTAGCTGGGATTACAGGCGCGCGCCACCACGCCCGGCTAATTTTTGTATTTTTA +GTAGAGACGGGGTTTCACCATGTTGGCCAGGCTGGTCTCGAACTCCTGACCTCAGGTGAT +CCGCCCGCCTCGGCCTCCCAAAGTGCTGGGATTACAGGCGTGAGCCACCGCGCCCGGCCT +TTTTGAGACGGAGTCTCGCTCTGTCGCCCAGGCTGGAGTGCAGTGGCGCGATCTCGGCTC +ACTGCAACCTCCGCCTCCCGGGTTCAAGCGATTCTCCTGCCTCAGCCTCCCGAGTAGCTG +GGATTACAGGCGCGCGCCACCACGCCCGGCTAATTTTTGTATTTTTAGTAGAGACGGGGT +TTCACCATGTTGGCCAGGCTGGTCTCGAACTCCTGACCTCAGGTGATCCGCCCGCCTCGG +CCTCCCAAAGTGCTGGGATTACAGGCGTGAGCCACCGCGCCCGGCCTTTTTGAGACGGAG +TCTCGCTCTGTCGCCCAGGCTGGAGTGCAGTGGCGCGATCTCGGCTCACTGCAACCTCCG +CCTCCCGGGTTCAAGCGATTCTCCTGCCTCAGCCTCCCGAGTAGCTGGGATTACAGGCGC +GCGCCACCACGCCCGGCTAATTTTTGTATTTTTAGTAGAGACGGGGTTTCACCATGTTGG +CCAGGCTGGTCTCGAACTCCTGACCTCAGGTGATCCGCCCGCCTCGGCCTCCCAAAGTGC +TGGGATTACAGGCGTGAGCCACCGCGCCCGGCCTTTTTGAGACGGAGTCTCGCTCTGTCG +CCCAGGCTGGAGTGCAGTGGCGCGATCTCGGCTCACTGCAACCTCCGCCTCCCGGGTTCA +AGCGATTCTCCTGCCTCAGCCTCCCGAGTAGCTGGGATTACAGGCGCGCGCCACCACGCC +CGGCTAATTTTTGTATTTTTAGTAGAGACGGGGTTTCACCATGTTGGCCAGGCTGGTCTC +GAACTCCTGACCTCAGGTGATCCGCCCGCCTCGGCCTCCCAAAGTGCTGGGATTACAGGC +GTGAGCCACCGCGCCCGGCC +>TWO IUB ambiguity codes +TAGGDHACHATCRGTRGVTGAGWTATGYTGCTGTCABACDWVTRTAAGAVVAGATTTNDA +GASMTCTGCATBYTTCAAKTTACMTATTACTTCATARGGYACMRTGTTTTYTATACVAAT +TTCTAKGDACKADACTATATNTANTCGTTCACGBCGYSCBHTANGGTGATCGTAAAGTAA +CTATBAAAAGATSTGWATBCSGAKHTTABBAACGTSYCATGCAAVATKTSKTASCGGAAT +WVATTTNTCCTTCTTCTTDDAGTGGTTGGATACVGTTAYMTMTBTACTTTHAGCTAGBAA +AAGAGKAAGTTRATWATCAGATTMDDTTTAAAVAAATATTKTCYTAAATTVCNKTTRACG +ADTATATTTATGATSADSCAATAWAGCGRTAGTGTAAGTGACVGRADYGTGCTACHVSDT +CTVCARCSYTTAATATARAAAATTTAATTTACDAATTGBACAGTAYAABATBTGCAGBVG +TGATGGDCAAAATBNMSTTABKATTGGSTCCTAGBTTACTTGTTTAGTTTATHCGATSTA +AAGTCGAKAAASTGTTTTAWAKCAGATATACTTTTMTTTTGBATAGAGGAGCMATGATRA +AAGGNCAYDCCDDGAAAGTHGBTAATCKYTBTACBGTBCTTTTTGDTAASSWTAAWAARA +TTGGCTAAGWGRADTYACATAGCTCBTAGATAWAGCAATNGTATMATGTTKMMAGTAWTC +CCNTSGAAWATWCAAAAMACTGAADNTYGATNAATCCGAYWNCTAACGTTAGAGDTTTTC +ATCTGGKRTAVGAABVCTGWGBTCTDVGKATTBTCTAAGGVADAAAVWTCTAGGGGAGGG +TTAGAACAATTAAHTAATNAAATGCATKATCTAAYRTDTCAGSAYTTYHGATRTTWAVTA +BGNTCDACAGBCCRCAGWCRTCABTGMMAWGMCTCAACCGATRTGBCAVAATCGTDWDAA +CAYAWAATWCTGGTAHCCCTAAGATAACSCTTAGTGSAACAWTBGTCDTTDGACWDBAAC +HTTTNGSKTYYAAYGGATNTGATTTAARTTAMBAATCTAAGTBTCATYTAACTTADTGTT +TCGATACGAAHGGCYATATACCWDTKYATDCSHTDTCAAAATGTGBACTGSCCVGATGTA +TCMMAGCCTTDAAABAATGAAGAGTAACTHATMGVTTAATAACCCGGTTVSANTGCAATT +GTGAGATTTAMGTTTAMAAYGCTGACAYAAAAAGGCACAMYTAAGVGGCTGGAABVTACG +GATTSTYGTBVAKTATWACCGTGTKAGTDTGTATGTTTAAAGGAAAAAGTAACATARAAA +GGTYCAMNYAAABTATAGNTSATANAGTCATCCTATWADKAACTRGTMSACDGTATSAYT +AAHSHGTAABYGACTYTATADTGSTATAGAGAAATCGNTAAAGGAAATCAGTTGTNCYMV +TNACDRTATBNATATASTAGAAMSCGGGANRCKKMCAAACATTNAGTCTRMAATBMTACC +CGTACTTCTBGDSYAATWGAAAATGACADDCHAKAAAYATATTKTTTTCACANACWAGAA +AKATCCTTATTAYKHKCTAAACARTATTTTDATBTVWCYGCAATACTAGGKAAASTTDGA +MGGCHTTHAATVCAHDRYAGGRCTATACGTCMAGAGAGCTBTHGNACARTCCBDCTAAGA +GCGGCTTTARTAAAGAATCCNAGTAWBTGACTTGAATTACWTVACAGAAABCAATNAAAC +CGTNTRANTTGAYCMAWBADTANABRGGTKTHTWTAGTTVCTMBKTAGMTVKCCAGCANT +TVAGSWTTAGCCGCRHTTTCCTTHNTATTAAGAAGAATAGGMTRAARTCTABGTACDTTT +TATAAVDHAHTATAGATCCTAGTAAGYTWATDWCATGAGGGATAGTAAMDMNGBASTWAM +TSTATRBAYDABATGTATATYCGCACTGTTTTAACMCWBTATAWAGTATBTSTATVTTAR +CCTMTTAAKADATCAACTAATYTSVTAKGDATTATGCKTCAYCAKAATACTTKAANGAGT +ATTSDAGATCGGAAATACTTAAYAAVGTATMCGCTTGTGTDCTAATYTATTTTATTTWAA +CAGWRCTATGTAGMTGTTTGTTYKTNGTTKTCAGAACNTRACCTACKTGSRATGTGGGGG +CTGTCATTAAGTAAATNGSTTABCCCCTCGCAGCTCWHTCGCGAAGCAVATGCKACGHCA +ACAKTTAATAACASAAADATTWNYTGTAATTGTTCGTMHACHTWATGTGCWTTTTGAAHY +ACTTTGTAYAMSAAACTTAADAAATATAGTABMATATYAATGSGGTAGTTTGTGTBYGGT +TWSGSVGWMATTDMTCCWWCABTCSVACAGBAATGTTKATBGTCAATAATCTTCTTAAAC +ARVAATHAGYBWCTRWCABGTWWAATCTAAGTCASTAAAKTAAGVKBAATTBGABACGTA +AGGTTAAATAAAAACTRMDTWBCTTTTTAATAAAAGATMGCCTACKAKNTBAGYRASTGT +ASSTCGTHCGAAKTTATTATATTYTTTGTAGAACATGTCAAAACTWTWTHGKTCCYAATA +AAGTGGAYTMCYTAARCSTAAATWAKTGAATTTRAGTCTSSATACGACWAKAASATDAAA +TGYYACTSAACAAHAKTSHYARGASTATTATTHAGGYGGASTTTBGAKGATSANAACACD +TRGSTTRAAAAAAAACAAGARTCVTAGTAAGATAWATGVHAAKATWGAAAAGTYAHVTAC +TCTGRTGTCAWGATRVAAKTCGCAAVCGASWGGTTRTCSAMCCTAACASGWKKAWDAATG +ACRCBACTATGTGTCTTCAAAHGSCTATATTTCGTVWAGAAGTAYCKGARAKSGKAGTAN +TTTCYACATWATGTCTAAAADMDTWCAATSTKDACAMAADADBSAAATAGGCTHAHAGTA +CGACVGAATTATAAAGAHCCVAYHGHTTTACATSTTTATGNCCMTAGCATATGATAVAAG +>THREE Homo sapiens frequency +ATATTTATCTTTTCACTTCCTACATTGGTCAGACCATTATTCGACACGTGGCGTCATTTT +GTCATACCGGGTAATGTTGGAAACAAAACGTACTGATAAAATACTGAGTTGTAAACTCTA +ATCAGATAACGCGCTTGGATATTAAGATTCACACAGGGGTTTCGGCTGTAAAAAAACTTG +TGGAGCTGTTCTGGGACAGATAAGTTGTACCTCGTACTTAGCTAATTAATGAACCAACTG +ATTACGATAGAACAATTCTGAGGCCGCCAGGACAGCCAAATTTTAATCTTATAAAGCTGG +AAACAGCCGGTATTAGCTTCTCGCATACTTTGCCTGCATTGGTACCTTACAGATATCAGC +GTAGTCATATACACCTCGGTCTCAGCTAAGCTTGTATCTCTTAGAGTAGTTCAAAGATAG +TGGACAATACCTGTGGAATCGATTGCAGATATGGATTTATTTAACTACTGAGTCTCATTC +ACAAGCTAAGCAAGGAGCACGTTTTGGTGCCGGCATACCGATTTGCTATCATGTCAGCAA +ATTTGCGTTGTATTCCTAGTTGCACCCATTAAGGCCACACTCCGAACCTAATTATTACAT +CGCAAAGACATGTACGAAGGACCCGATGTCGAATAGAAGGGAGGACTGTTCATTGGAAGC +TAGACCAGAGGAATCGCAAAGATGCAACTCTTACAATAAAAATCTAATTTCAGTCAACAC +GCAATTTCTATAAGGTTTCCGATAATAATGAACCGTCTTCCACAGGGGAATTTGCCATGC +TCGTAAAAGTAGTTAATCCAAGTAGAAGAAATTTTGATAATGTTTTAAGTTGGCACGAAG +GAATTCAGAGAGATCTTACCTAACAAAGGCATTAGTAGATGTTCCTTGGTTCACACTCGG +TCAATCAGAGCACATACTACGGGCGATACCGGGAATGACACAACATCAATGAGATTGTTA +AGTGAGGTAATTGACTTTAGAGGACTCGATCAGTATACTGTCACTATGAACATCGTATTA +ATTGTTATCCGATATATACACCACCGATTTGCTTGTGCAAGGTTACAGACCCATTCGATA +AATACAAACACGGAGCGATATTATTTAAGGAGTGCTGTCTTCAAAAGAATTATTCCCACA +CCGACATAAGAACTTCGCTCCGTCATTCCAGATTTAAATAACATAACGTAACGCTTTGCT +GATAACATAACATAACCGAGAATTTGCTTAGGAAATTTGGAGCAATATTGCATTGTTTCT +CAGTCATCACAAGGCCCGCCAAAGAACTCTGAGAATCAGGATTCAACATGATTGGTAAGA +CTCTATATATATAACTTAATTCTTGTGTCCGGAGATAGAAAGAGGACGAGAGATACTACG +AAAGAAAGTGTACTTCGATGTATCAATTCAGACGCCTTCTCTATCATCAACATTATAGGT +CTCGTATATGCTCGGCGCGATCTGCTTCTCTCCGCCAATAGCCCCATAGTGTATTTCAAG +CGCAGTAACAGTGAAATCGTTACGAAGGTAGGGATGTTGCTTATAATTGTCGTAACTTAT +CGCTTATGTATCTTTCAAGAATGAACGGCAGCATATACATACGTTCTACCTTTAGCTACA +AAGCATCCATATACTCCCTCTCATGATTGAAACTCTTCCCTATTTTGTAGCCAATAGTGA +AAGCGTATTAGTATAAATTCGTCGGTTTTTCACTCGCAACTGTTATACTCTGCAAACAAA +CGAAAGCCTCATAGTACAAACCTAAAGCTACATACTTCATCATTGGCAGACCAGTGGCGG +TATTTCTACGGAAGCATCACTATAGATATAAAGTTTCCCTTCATGTACGTCTGTTAACCA +TATCACAAGAAACTGCTATCTCTGTCACGTAACAATTCACGCGCCTTATCGCCAAATGTT +CATATATGCGCGGTATACGTATGAACGAATACTAATTAGTATAACGGAGGATTCACGGGA +GGGATACTTGGGGCATTTATAAATCGTCTAAAAATTTTCTATCAGCACTTGCGGGTTATA +GTGGATTACTAGGCAACATAATATTCTGTATTGGTCCAAATGACGCTATAGATAAATTAG +CAAAATACATTGTTTCCATTTATGTAAGTCGAAACTCCAGGACTCCCGGGAACCAGTTAA +ACCGTCTGGAAAAGACACATTGTGAGCGGGACTTCAATGATAGCTTTCAATGAGCTTCTC +ATGCTTGGGGTCTGTACATATATGTTGGCGAAATTATCGTCTGTATTCTGTTATGCTTTG +ATCATGGGTTATTAGTATAGTGTCCGGTTAAGTACCAATACCGCTAGAGACCCGACCTAA +GTCGATAACTAACGATCATCGACGTAAGGATCGTCTCGATCAGTACTTCAGTCTAGATCT +GGGAATAGTAACTCGTTAGTGAACTATGTCGTGTCATAACTCTAAAATGCAATCAAATCT +TATTATTGAGTATTGATTATATAAAGCATCCGCTTAGCTTTACCCTCAAATGTTATATGC +AATTTAAAGCGCTTGATATCGTCTACTCAAGTTCAGGTTTCACATGGCCGCAACGTGACG +TTATTAGAGGTGGGTCATCATCTCTGAGGCTAGTGATGTTGAATACTCATTGAATGGGAA +GTGGAATACCATGCTCGTAGGTAACAGCATGACCTATAAAATATACTATGGGTGTGTGGT +AGATCAATATTGTTCAAGCATATCGTAACAATAACGGCTGAAATGTTACTGACATGAAAG +AGGGAGTCCAAACCATTCTAACAGCTGATCAAGTCGTCTAAAAACGCCTGGTTCAGCCTT +AAGAGTTATAAGCCAGACAAATTGTATCAATAGAGAATCCGTAAATTCCTCGGCCAACCT +CTTGCAAAGACATCACTATCAATATACTACCGTGATCTTAATTAGTGAACTTATATAAAT +ATCTACAACCAGATTCAACGGAAAAGCTTTAGTGGATTAGAAATTGCCAAGAATCACATT +CATGTGGGTTCGAATGCTTTAGTAATACCATTTCGCCGAGTAGTCACTTCGCTGAACTGT +CGTAAATTGCTATGACATAATCGAAAAGGATTGTCAAGAGTCGATTACTGCGGACTAATA +ATCCCCACGGGGGTGGTCTCATGTCTCCCCAGGCGAGTGGGGACGGTTGATAAACACGCT +GCATCGCGGACTGATGTTCCCAGTATTACATAGTCACATTGGATTGCGAGTAGTCTACCT +ATTTATGAGCGAGAGATGCCTCTAACTACTTCGACTTTTAAAACCTTTCCACGCCAGTAT +TCGGCGAAAGGGAAGTATTAAGGGTTGTCATAATTAAGCTGATACCACTTCAGACTTTGC +TCTACTTCTGTCTTTCATTGGTTTAGTAAAGTCTGTCCATTCGTCGAGACCGTCTTTTGC +AGCCTCATTCTACCAACTGCTCCGACTCTTAGTCTGCTTCTCCCAGCGTTATAACAAGAG +GCATTTTGTCATCCTTAAAACAATAATAAAGAACTCGGAGCACTGATATAATGACTGAAT +TAGAACCGCTTAAAAATACAACGAATAGATAAGACTATCGGATAAGATCTAATATGTAGT +GATTAAGCCCTTTATTAATTAATAATAGTTACCCTTTCTGATGTAACGCGACATATTACG +ATTTAGTGGCACGTCTGAATTGCAAAGCAGATCTCTACCCGATTTTTATTATAAATCCCG +TATACATCTTGACTTGAGTAATTGTTCATCTTTTTATATCTCTTCGTACTACAAATAATT +AATATCTCAACCCGTATTGTGTGATTCTAATTACCAACAGAATACGAGGAGGTTTTTGCT +TAGGGCCATATATAATGAATCTATCTCGTTTATTCGCGGAACCCGAGATAACATTACGAT +GTAACTATTTTAGAGAACTTAATACAAGAAACATTGCTGATTACTCATAACTAAATGCTT +GGTAATATATCCTCAGTGCCCCTACCATCTTTTACGCAGGGATGTAATTACTTAGGATTC +ATTGTGTAAGAATTACAATGAACGATGGATATGAAGGCATGTTGCGAGGTGTTCCTTGGT +ATGTGAAGTTCGCAGGGCAACAAAAATTTCGCAGAATAGGCCTCAAAGTATTGGTAAAGA +AGACAACTAATCATCACGAGCTTCTGATATCAATACGAACGAGTCCTGTGATGGATGAAA +GAAAGTCGTATCGAAAATGTCAAGAGTCTGCCCAATGTAACTTACTTCAAAAAATAACGC +TTCCGCCAAGTACGTTCGAATAAACGTAATTTTAAAAATACATAAGGGGTGTTAGAAAGT +AAGCGACGGGATATAAGTTAGACTCAAGATTCCGCCGTAAAACGAGACTGATTCCGAAGA +TTGTTCGTGGATCTGGTCATGACTTTCACTGAGTAAGGAGTTTCGACATATGTCAATAAA +CACAAAAATAGAAGCTATTCGATCTGAAAAATATTAGGACAAGAAACTATCTCACGCTAG +CCCAGAATATTCACTCACCCACGGGCGATACTAAAGCACTATATAGTCGCGTGATTACTA +TACATATGGTACACATAAGAATCACGATCAGGTTCTCAATTTTCAACAATATATGTTTAT +TTGCATAGGTAATATTAGGCCTTTAAGAGAAGGATGGGTGAGATACTCCGGGGATGGCGG +CAATAAAGAAAAACACGATATGAGTAATAGGATCCTAATATCTTGGCGAGAGACTTAAGG +TACGAATTTTGCGCAATCTATTTTTTACTTGGCCAGAATTCATGTATGGTATAAGTACGA +ACTTTTTTGATCACTTTCATGGCTACCTGATTAGGATAGTTTGAGGAATTTCCCAAATAT +ACCGATTTAATATACACTAGGGCTTGTCACTTTGAGTCAGAAAAAGAATATAATTACTTA +GGGTAATGCTGCATACATATTCTTATATTGCAAAGGTTCTCTGGGTAATCTTGAGCCTTC +ACGATACCTGGTGAAGTGTT diff --git a/gcc/testsuite/go.test/test/bench/spectral-norm-parallel.go b/gcc/testsuite/go.test/test/bench/spectral-norm-parallel.go new file mode 100644 index 0000000..2706f39 --- /dev/null +++ b/gcc/testsuite/go.test/test/bench/spectral-norm-parallel.go @@ -0,0 +1,111 @@ +/* +Redistribution and use in source and binary forms, with or without +modification, are permitted provided that the following conditions are met: + + * Redistributions of source code must retain the above copyright + notice, this list of conditions and the following disclaimer. + + * Redistributions in binary form must reproduce the above copyright + notice, this list of conditions and the following disclaimer in the + documentation and/or other materials provided with the distribution. + + * Neither the name of "The Computer Language Benchmarks Game" nor the + name of "The Computer Language Shootout Benchmarks" nor the names of + its contributors may be used to endorse or promote products derived + from this software without specific prior written permission. + +THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" +AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE +IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE +ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT OWNER OR CONTRIBUTORS BE +LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR +CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF +SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS +INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN +CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) +ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE +POSSIBILITY OF SUCH DAMAGE. +*/ + +/* The Computer Language Benchmarks Game + * http://shootout.alioth.debian.org/ + * + * contributed by The Go Authors. + * Based on spectral-norm.c by Sebastien Loisel + */ + +package main + +import ( + "flag" + "fmt" + "math" + "runtime" +) + +var n = flag.Int("n", 2000, "count") +var nCPU = flag.Int("ncpu", 4, "number of cpus") + +func evalA(i, j int) float64 { return 1 / float64(((i+j)*(i+j+1)/2 + i + 1)) } + +type Vec []float64 + +func (v Vec) Times(i, n int, u Vec, c chan int) { + for ; i < n; i++ { + v[i] = 0 + for j := 0; j < len(u); j++ { + v[i] += evalA(i, j) * u[j] + } + } + c <- 1 +} + +func (v Vec) TimesTransp(i, n int, u Vec, c chan int) { + for ; i < n; i++ { + v[i] = 0 + for j := 0; j < len(u); j++ { + v[i] += evalA(j, i) * u[j] + } + } + c <- 1 +} + +func wait(c chan int) { + for i := 0; i < *nCPU; i++ { + <-c + } +} + +func (v Vec) ATimesTransp(u Vec) { + x := make(Vec, len(u)) + c := make(chan int, *nCPU) + for i := 0; i < *nCPU; i++ { + go x.Times(i*len(v) / *nCPU, (i+1)*len(v) / *nCPU, u, c) + } + wait(c) + for i := 0; i < *nCPU; i++ { + go v.TimesTransp(i*len(v) / *nCPU, (i+1)*len(v) / *nCPU, x, c) + } + wait(c) +} + +func main() { + flag.Parse() + runtime.GOMAXPROCS(*nCPU) + N := *n + u := make(Vec, N) + for i := 0; i < N; i++ { + u[i] = 1 + } + v := make(Vec, N) + for i := 0; i < 10; i++ { + v.ATimesTransp(u) + u.ATimesTransp(v) + } + var vBv, vv float64 + for i := 0; i < N; i++ { + vBv += u[i] * v[i] + vv += v[i] * v[i] + } + fmt.Printf("%0.9f\n", math.Sqrt(vBv/vv)) +} diff --git a/gcc/testsuite/go.test/test/bench/spectral-norm.c b/gcc/testsuite/go.test/test/bench/spectral-norm.c new file mode 100644 index 0000000..832eb3d --- /dev/null +++ b/gcc/testsuite/go.test/test/bench/spectral-norm.c @@ -0,0 +1,82 @@ +/* +Redistribution and use in source and binary forms, with or without +modification, are permitted provided that the following conditions are met: + + * Redistributions of source code must retain the above copyright + notice, this list of conditions and the following disclaimer. + + * Redistributions in binary form must reproduce the above copyright + notice, this list of conditions and the following disclaimer in the + documentation and/or other materials provided with the distribution. + + * Neither the name of "The Computer Language Benchmarks Game" nor the + name of "The Computer Language Shootout Benchmarks" nor the names of + its contributors may be used to endorse or promote products derived + from this software without specific prior written permission. + +THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" +AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE +IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE +ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT OWNER OR CONTRIBUTORS BE +LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR +CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF +SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS +INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN +CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) +ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE +POSSIBILITY OF SUCH DAMAGE. +*/ + +/* -*- mode: c -*- + * + * The Great Computer Language Shootout + * http://shootout.alioth.debian.org/ + * + * Contributed by Sebastien Loisel + */ + +#include <stdio.h> +#include <stdlib.h> +#include <math.h> + +double eval_A(int i, int j) { return 1.0/((i+j)*(i+j+1)/2+i+1); } + +void eval_A_times_u(int N, const double u[], double Au[]) +{ + int i,j; + for(i=0;i<N;i++) + { + Au[i]=0; + for(j=0;j<N;j++) Au[i]+=eval_A(i,j)*u[j]; + } +} + +void eval_At_times_u(int N, const double u[], double Au[]) +{ + int i,j; + for(i=0;i<N;i++) + { + Au[i]=0; + for(j=0;j<N;j++) Au[i]+=eval_A(j,i)*u[j]; + } +} + +void eval_AtA_times_u(int N, const double u[], double AtAu[]) +{ double v[N]; eval_A_times_u(N,u,v); eval_At_times_u(N,v,AtAu); } + +int main(int argc, char *argv[]) +{ + int i; + int N = ((argc == 2) ? atoi(argv[1]) : 2000); + double u[N],v[N],vBv,vv; + for(i=0;i<N;i++) u[i]=1; + for(i=0;i<10;i++) + { + eval_AtA_times_u(N,u,v); + eval_AtA_times_u(N,v,u); + } + vBv=vv=0; + for(i=0;i<N;i++) { vBv+=u[i]*v[i]; vv+=v[i]*v[i]; } + printf("%0.9f\n",sqrt(vBv/vv)); + return 0; +} diff --git a/gcc/testsuite/go.test/test/bench/spectral-norm.go b/gcc/testsuite/go.test/test/bench/spectral-norm.go new file mode 100644 index 0000000..6667f3e --- /dev/null +++ b/gcc/testsuite/go.test/test/bench/spectral-norm.go @@ -0,0 +1,93 @@ +/* +Redistribution and use in source and binary forms, with or without +modification, are permitted provided that the following conditions are met: + + * Redistributions of source code must retain the above copyright + notice, this list of conditions and the following disclaimer. + + * Redistributions in binary form must reproduce the above copyright + notice, this list of conditions and the following disclaimer in the + documentation and/or other materials provided with the distribution. + + * Neither the name of "The Computer Language Benchmarks Game" nor the + name of "The Computer Language Shootout Benchmarks" nor the names of + its contributors may be used to endorse or promote products derived + from this software without specific prior written permission. + +THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" +AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE +IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE +ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT OWNER OR CONTRIBUTORS BE +LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR +CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF +SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS +INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN +CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) +ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE +POSSIBILITY OF SUCH DAMAGE. +*/ + +/* The Computer Language Benchmarks Game + * http://shootout.alioth.debian.org/ + * + * contributed by The Go Authors. + * Based on spectral-norm.c by Sebastien Loisel + */ + +package main + +import ( + "flag" + "fmt" + "math" +) + +var n = flag.Int("n", 2000, "count") + +func evalA(i, j int) float64 { return 1 / float64(((i+j)*(i+j+1)/2 + i + 1)) } + +type Vec []float64 + +func (v Vec) Times(u Vec) { + for i := 0; i < len(v); i++ { + v[i] = 0 + for j := 0; j < len(u); j++ { + v[i] += evalA(i, j) * u[j] + } + } +} + +func (v Vec) TimesTransp(u Vec) { + for i := 0; i < len(v); i++ { + v[i] = 0 + for j := 0; j < len(u); j++ { + v[i] += evalA(j, i) * u[j] + } + } +} + +func (v Vec) ATimesTransp(u Vec) { + x := make(Vec, len(u)) + x.Times(u) + v.TimesTransp(x) +} + +func main() { + flag.Parse() + N := *n + u := make(Vec, N) + for i := 0; i < N; i++ { + u[i] = 1 + } + v := make(Vec, N) + for i := 0; i < 10; i++ { + v.ATimesTransp(u) + u.ATimesTransp(v) + } + var vBv, vv float64 + for i := 0; i < N; i++ { + vBv += u[i] * v[i] + vv += v[i] * v[i] + } + fmt.Printf("%0.9f\n", math.Sqrt(vBv/vv)) +} diff --git a/gcc/testsuite/go.test/test/bench/spectral-norm.txt b/gcc/testsuite/go.test/test/bench/spectral-norm.txt new file mode 100644 index 0000000..b988598 --- /dev/null +++ b/gcc/testsuite/go.test/test/bench/spectral-norm.txt @@ -0,0 +1 @@ +1.274224152 diff --git a/gcc/testsuite/go.test/test/bench/threadring.c b/gcc/testsuite/go.test/test/bench/threadring.c new file mode 100644 index 0000000..2c4fb77 --- /dev/null +++ b/gcc/testsuite/go.test/test/bench/threadring.c @@ -0,0 +1,102 @@ +/* +Redistribution and use in source and binary forms, with or without +modification, are permitted provided that the following conditions are met: + + * Redistributions of source code must retain the above copyright + notice, this list of conditions and the following disclaimer. + + * Redistributions in binary form must reproduce the above copyright + notice, this list of conditions and the following disclaimer in the + documentation and/or other materials provided with the distribution. + + * Neither the name of "The Computer Language Benchmarks Game" nor the + name of "The Computer Language Shootout Benchmarks" nor the names of + its contributors may be used to endorse or promote products derived + from this software without specific prior written permission. + +THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" +AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE +IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE +ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT OWNER OR CONTRIBUTORS BE +LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR +CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF +SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS +INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN +CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) +ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE +POSSIBILITY OF SUCH DAMAGE. +*/ + +/* +* The Computer Language Benchmarks Game +* http://shootout.alioth.debian.org/ + +* contributed by Premysl Hruby +*/ + +#include <stdio.h> +#include <stdlib.h> +#include <pthread.h> +#include <string.h> +#include <limits.h> + +#define THREADS (503) + + +struct stack { + char x[PTHREAD_STACK_MIN]; +}; + + +/* staticaly initialize mutex[0] mutex */ +static pthread_mutex_t mutex[THREADS]; +static int data[THREADS]; +static struct stack stacks[THREADS]; +/* stacks must be defined staticaly, or my i386 box run of virtual memory for this + * process while creating thread +- #400 */ + +static void* thread(void *num) +{ + int l = (int)num; + int r = (l+1) % THREADS; + int token; + + while(1) { + pthread_mutex_lock(mutex + l); + token = data[l]; + if (token) { + data[r] = token - 1; + pthread_mutex_unlock(mutex + r); + } + else { + printf("%i\n", l+1); + exit(0); + } + } +} + + + +int main(int argc, char **argv) +{ + int i; + pthread_t cthread; + pthread_attr_t stack_attr; + + if (argc != 2) + exit(255); + data[0] = atoi(argv[1]); + + pthread_attr_init(&stack_attr); + + for (i = 0; i < THREADS; i++) { + pthread_mutex_init(mutex + i, NULL); + pthread_mutex_lock(mutex + i); + + pthread_attr_setstack(&stack_attr, &stacks[i], sizeof(struct stack)); + pthread_create(&cthread, &stack_attr, thread, (void*)i); + } + + pthread_mutex_unlock(mutex + 0); + pthread_join(cthread, NULL); +} diff --git a/gcc/testsuite/go.test/test/bench/threadring.go b/gcc/testsuite/go.test/test/bench/threadring.go new file mode 100644 index 0000000..031908a --- /dev/null +++ b/gcc/testsuite/go.test/test/bench/threadring.go @@ -0,0 +1,71 @@ +/* +Redistribution and use in source and binary forms, with or without +modification, are permitted provided that the following conditions are met: + + * Redistributions of source code must retain the above copyright + notice, this list of conditions and the following disclaimer. + + * Redistributions in binary form must reproduce the above copyright + notice, this list of conditions and the following disclaimer in the + documentation and/or other materials provided with the distribution. + + * Neither the name of "The Computer Language Benchmarks Game" nor the + name of "The Computer Language Shootout Benchmarks" nor the names of + its contributors may be used to endorse or promote products derived + from this software without specific prior written permission. + +THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" +AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE +IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE +ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT OWNER OR CONTRIBUTORS BE +LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR +CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF +SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS +INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN +CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) +ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE +POSSIBILITY OF SUCH DAMAGE. +*/ + +/* The Computer Language Benchmarks Game + * http://shootout.alioth.debian.org/ + * + * contributed by The Go Authors. + */ + +package main + +import ( + "flag" + "fmt" + "os" +) + +var n = flag.Int("n", 1000, "how many passes") + +const Nthread = 503 + +func f(i int, in <-chan int, out chan<- int) { + for { + n := <-in + if n == 0 { + fmt.Printf("%d\n", i) + os.Exit(0) + } + out <- n-1 + } +} + +func main() { + flag.Parse() + + one := make(chan int) // will be input to thread 1 + var in, out chan int = nil, one + for i := 1; i <= Nthread-1; i++ { + in, out = out, make(chan int) + go f(i, in, out) + } + go f(Nthread, out, one) + one <- *n + <-make(chan int) // hang until ring completes +} diff --git a/gcc/testsuite/go.test/test/bench/threadring.txt b/gcc/testsuite/go.test/test/bench/threadring.txt new file mode 100644 index 0000000..f9aaa4d --- /dev/null +++ b/gcc/testsuite/go.test/test/bench/threadring.txt @@ -0,0 +1 @@ +498 diff --git a/gcc/testsuite/go.test/test/bench/timing.log b/gcc/testsuite/go.test/test/bench/timing.log new file mode 100644 index 0000000..e7b0b48 --- /dev/null +++ b/gcc/testsuite/go.test/test/bench/timing.log @@ -0,0 +1,500 @@ +All tests on r45 or r70 + +Aug 3 2009 + +First version of fasta. Translation of fasta.c, fetched from + http://shootout.alioth.debian.org/u32q/benchmark.php?test=fasta&lang=gpp&id=4 + +fasta -n 25000000 + gcc -O2 fasta.c 5.98u 0.00s 6.01r + gccgo -O2 fasta.go 8.82u 0.02s 8.85r + 6g fasta.go 13.50u 0.02s 13.53r + 6g -B fata.go 12.99u 0.02s 13.02r + +Aug 4 2009 +[added timing.sh] + +# myrandom: +# hand-written optimization of integer division +# use int32->float conversion +fasta -n 25000000 + # probably I/O library inefficiencies + gcc -O2 fasta.c 5.99u 0.00s 6.00r + gccgo -O2 fasta.go 8.82u 0.02s 8.85r + gc fasta 10.70u 0.00s 10.77r + gc_B fasta 10.09u 0.03s 10.12r + +reverse-complement < output-of-fasta-25000000 + # we don't know - memory cache behavior? + gcc -O2 reverse-complement.c 2.04u 0.94s 10.54r + gccgo -O2 reverse-complement.go 6.54u 0.63s 7.17r + gc reverse-complement 6.55u 0.70s 7.26r + gc_B reverse-complement 6.32u 0.70s 7.10r + +nbody 50000000 + # math.Sqrt needs to be in assembly; inlining is probably the other 50% + gcc -O2 nbody.c 21.61u 0.01s 24.80r + gccgo -O2 nbody.go 118.55u 0.02s 120.32r + gc nbody 100.84u 0.00s 100.85r + gc_B nbody 103.33u 0.00s 103.39r +[ +hacked Sqrt in assembler + gc nbody 31.97u 0.00s 32.01r +] + +binary-tree 15 # too slow to use 20 + # memory allocation and garbage collection + gcc -O2 binary-tree.c -lm 0.86u 0.00s 0.87r + gccgo -O2 binary-tree.go 1.69u 0.46s 2.15r + gccgo -O2 binary-tree-freelist.go 8.48u 0.00s 8.48r + gc binary-tree 9.60u 0.01s 9.62r + gc binary-tree-freelist 0.48u 0.01s 0.50r + +August 5, 2009 + +fannkuch 12 + # bounds checking is half the difference + # rest might be registerization + gcc -O2 fannkuch.c 60.09u 0.01s 60.32r + gccgo -O2 fannkuch.go 64.89u 0.00s 64.92r + gc fannkuch 124.59u 0.00s 124.67r + gc_B fannkuch 91.14u 0.00s 91.16r + +regex-dna 100000 + # regexp code is slow on trivial regexp + gcc -O2 regex-dna.c -lpcre 0.92u 0.00s 0.99r + gc regexp-dna 26.94u 0.18s 28.75r + gc_B regexp-dna 26.51u 0.09s 26.75r + +spectral-norm 5500 + gcc -O2 spectral-norm.c -lm 11.54u 0.00s 11.55r + gccgo -O2 spectral-norm.go 12.20u 0.00s 12.23r + gc spectral-norm 50.23u 0.00s 50.36r + gc_B spectral-norm 49.69u 0.01s 49.83r + gc spectral-norm-parallel 24.47u 0.03s 11.05r # has shift >>1 not div /2 + [using >>1 instead of /2 : gc gives 24.33u 0.00s 24.33r] + +August 6, 2009 + +k-nucleotide 5000000 + # string maps are slower than glib string maps + gcc -O2 -I/usr/include/glib-2.0 -I/usr/lib/glib-2.0/include k-nucleotide.c -lglib-2.0 k-nucleotide.c: 10.72u 0.01s 10.74r + gccgo -O2 k-nucleotide.go 21.64u 0.83s 22.78r + gc k-nucleotide 16.08u 0.06s 16.50r + gc_B k-nucleotide 17.32u 0.02s 17.37r + +mandelbrot 5500 + # floating point code generator should use more registers + gcc -O2 mandelbrot.c 56.13u 0.02s 56.17r + gccgo -O2 mandelbrot.go 57.49u 0.01s 57.51r + gc mandelbrot 74.32u 0.00s 74.35r + gc_B mandelbrot 74.28u 0.01s 74.31r + +meteor 16000 + # we don't know + gcc -O2 meteor-contest.c 0.10u 0.00s 0.10r + gccgo -O2 meteor-contest.go 0.12u 0.00s 0.14r + gc meteor-contest 0.24u 0.00s 0.26r + gc_B meteor-contest 0.23u 0.00s 0.24r + +pidigits 10000 + # bignum is slower than gmp + gcc -O2 pidigits.c -lgmp 2.60u 0.00s 2.62r + gc pidigits 77.69u 0.14s 78.18r + gc_B pidigits 74.26u 0.18s 75.41r + gc_B pidigits 68.48u 0.20s 69.31r # special case: no bounds checking in bignum + +August 7 2009 + +# New gc does better division by powers of 2. Significant improvements: + +spectral-norm 5500 + # floating point code generator should use more registers; possibly inline evalA + gcc -O2 spectral-norm.c -lm 11.50u 0.00s 11.50r + gccgo -O2 spectral-norm.go 12.02u 0.00s 12.02r + gc spectral-norm 23.98u 0.00s 24.00r # new time is 0.48 times old time, 52% faster + gc_B spectral-norm 23.71u 0.01s 23.72r # ditto + gc spectral-norm-parallel 24.04u 0.00s 6.26r # /2 put back. note: 4x faster (on r70, idle) + +k-nucleotide 1000000 + # string maps are slower than glib string maps + gcc -O2 -I/usr/include/glib-2.0 -I/usr/lib/glib-2.0/include k-nucleotide.c -lglib-2.0 10.82u 0.04s 10.87r + gccgo -O2 k-nucleotide.go 22.73u 0.89s 23.63r + gc k-nucleotide 15.97u 0.03s 16.04r + gc_B k-nucleotide 15.86u 0.06s 15.93r # 8.5% faster, but probably due to weird cache effeccts in previous version + +pidigits 10000 + # bignum is slower than gmp + gcc -O2 pidigits.c -lgmp 2.58u 0.00s 2.58r + gc pidigits 71.24u 0.04s 71.28r # 8.5% faster + gc_B pidigits 71.25u 0.03s 71.29r # 4% faster + +threadring 50000000 + gcc -O2 threadring.c -lpthread 35.51u 160.21s 199.50r + gccgo -O2 threadring.go 90.33u 459.95s 448.03r + gc threadring 33.11u 0.00s 33.14r + GOMAXPROCS=4 gc threadring 114.48u 226.65s 371.59r + # change wait code to do <-make(chan int) instead of time.Sleep + gc threadring 28.41u 0.01s 29.35r + GOMAXPROCS=4 gc threadring 112.59u 232.83s 384.72r + +chameneos 6000000 + gcc -O2 chameneosredux.c -lpthread 18.14u 276.52s 76.93r + gc chameneosredux 20.19u 0.01s 20.23r + +Aug 10 2009 + +# new 6g with better fp registers, fast div and mod of integers +# complete set of timings listed. significant changes marked *** + +fasta -n 25000000 + # probably I/O library inefficiencies + gcc -O2 fasta.c 5.96u 0.00s 5.97r + gc fasta 10.59u 0.01s 10.61r + gc_B fasta 9.92u 0.02s 9.95r + +reverse-complement < output-of-fasta-25000000 + # we don't know - memory cache behavior? + gcc -O2 reverse-complement.c 1.96u 1.56s 16.23r + gccgo -O2 reverse-complement.go 6.41u 0.62s 7.05r + gc reverse-complement 6.46u 0.70s 7.17r + gc_B reverse-complement 6.22u 0.72s 6.95r + +nbody 50000000 + # math.Sqrt needs to be in assembly; inlining is probably the other 50% + gcc -O2 nbody.c 21.26u 0.01s 21.28r + gccgo -O2 nbody.go 116.68u 0.07s 116.80r + gc nbody 86.64u 0.01s 86.68r # -14% + gc_B nbody 85.72u 0.02s 85.77r # *** -17% + +binary-tree 15 # too slow to use 20 + # memory allocation and garbage collection + gcc -O2 binary-tree.c -lm 0.87u 0.00s 0.87r + gccgo -O2 binary-tree.go 1.61u 0.47s 2.09r + gccgo -O2 binary-tree-freelist.go 0.00u 0.00s 0.01r + gc binary-tree 9.11u 0.01s 9.13r # *** -5% + gc binary-tree-freelist 0.47u 0.01s 0.48r + +fannkuch 12 + # bounds checking is half the difference + # rest might be registerization + gcc -O2 fannkuch.c 59.92u 0.00s 59.94r + gccgo -O2 fannkuch.go 65.54u 0.00s 65.58r + gc fannkuch 123.98u 0.01s 124.04r + gc_B fannkuch 90.75u 0.00s 90.78r + +regex-dna 100000 + # regexp code is slow on trivial regexp + gcc -O2 regex-dna.c -lpcre 0.91u 0.00s 0.92r + gc regex-dna 27.25u 0.02s 27.28r + gc_B regex-dna 29.51u 0.03s 29.55r + +spectral-norm 5500 + # possibly inline evalA + gcc -O2 spectral-norm.c -lm 11.57u 0.00s 11.57r + gccgo -O2 spectral-norm.go 12.07u 0.01s 12.08r + gc spectral-norm 23.99u 0.00s 24.00r + gc_B spectral-norm 23.73u 0.00s 23.75r + +k-nucleotide 1000000 + # string maps are slower than glib string maps + gcc -O2 -I/usr/include/glib-2.0 -I/usr/lib/glib-2.0/include k-nucleotide.c -lglib-2.0 10.63u 0.02s 10.69r + gccgo -O2 k-nucleotide.go 23.19u 0.91s 24.12r + gc k-nucleotide 16.73u 0.04s 16.78r # *** +5% (but this one seems to vary by more than that) + gc_B k-nucleotide 16.46u 0.04s 16.51r # *** +5% + +mandelbrot 16000 + gcc -O2 mandelbrot.c 56.16u 0.00s 56.16r + gccgo -O2 mandelbrot.go 57.41u 0.01s 57.42r + gc mandelbrot 64.05u 0.02s 64.08r # *** -14% + gc_B mandelbrot 64.10u 0.02s 64.14r # *** -14% + +meteor 16000 + # we don't know + gcc -O2 meteor-contest.c 0.10u 0.00s 0.10r + gccgo -O2 meteor-contest.go 0.12u 0.00s 0.12r + gc meteor-contest 0.18u 0.00s 0.20r # *** -25% + gc_B meteor-contest 0.17u 0.00s 0.18r # *** -24% + +pidigits 10000 + # bignum is slower than gmp + gcc -O2 pidigits.c -lgmp 2.57u 0.00s 2.57r + gc pidigits 71.82u 0.04s 71.89r + gc_B pidigits 71.84u 0.08s 71.98r + +threadring 50000000 + gcc -O2 threadring.c -lpthread 30.91u 164.33s 204.57r + gccgo -O2 threadring.go 87.12u 460.04s 447.61r + gc threadring 38.55u 0.00s 38.56r # *** +16% + +chameneos 6000000 + gcc -O2 chameneosredux.c -lpthread 17.93u 323.65s 88.47r + gc chameneosredux 21.72u 0.00s 21.73r + +August 10 2009 + +# In-place versions for some bignum operations. +pidigits 10000 + gcc -O2 pidigits.c -lgmp 2.56u 0.00s 2.57r + gc pidigits 55.22u 0.04s 55.29r # *** -23% + gc_B pidigits 55.49u 0.02s 55.60r # *** -23% + +September 3 2009 + +# New 6g inlines slices, has a few other tweaks. +# Complete rerun. Significant changes marked. + +fasta -n 25000000 + # probably I/O library inefficiencies + gcc -O2 fasta.c 5.96u 0.00s 5.96r + gc fasta 10.63u 0.02s 10.66r + gc_B fasta 9.92u 0.01s 9.94r + +reverse-complement < output-of-fasta-25000000 + # we don't know - memory cache behavior? + gcc -O2 reverse-complement.c 1.92u 0.33s 2.93r + gccgo -O2 reverse-complement.go 6.76u 0.72s 7.58r # +5% + gc reverse-complement 6.59u 0.70s 7.29r # +2% + gc_B reverse-complement 5.57u 0.80s 6.37r # -10% + +nbody 50000000 + # math.Sqrt needs to be in assembly; inlining is probably the other 50% + # also loop alignment appears to be critical + gcc -O2 nbody.c 21.28u 0.00s 21.28r + gccgo -O2 nbody.go 119.21u 0.00s 119.22r # +2% + gc nbody 109.72u 0.00s 109.78r # + 28% ***** + gc_B nbody 85.90u 0.00s 85.91r + +binary-tree 15 # too slow to use 20 + # memory allocation and garbage collection + gcc -O2 binary-tree.c -lm 0.86u 0.00s 0.87r + gccgo -O2 binary-tree.go 1.88u 0.54s 2.42r # +17% + gccgo -O2 binary-tree-freelist.go 0.01u 0.01s 0.02r + gc binary-tree 8.94u 0.01s 8.96r # -2% + gc binary-tree-freelist 0.47u 0.01s 0.48r + +fannkuch 12 + # bounds checking is half the difference + # rest might be registerization + gcc -O2 fannkuch.c 60.12u 0.00s 60.12r + gccgo -O2 fannkuch.go 92.62u 0.00s 92.66r # +41% *** + gc fannkuch 123.90u 0.00s 123.92r + gc_B fannkuch 89.71u 0.00s 89.74r # -1% + +regex-dna 100000 + # regexp code is slow on trivial regexp + gcc -O2 regex-dna.c -lpcre 0.88u 0.00s 0.88r + gc regex-dna 25.77u 0.01s 25.79r # -5% + gc_B regex-dna 26.05u 0.02s 26.09r # -12% *** + +spectral-norm 5500 + # possibly inline evalA + gcc -O2 spectral-norm.c -lm 11.51u 0.00s 11.51r + gccgo -O2 spectral-norm.go 11.95u 0.00s 11.96r + gc spectral-norm 24.23u 0.00s 24.23r + gc_B spectral-norm 23.83u 0.00s 23.84r + +k-nucleotide 1000000 + # string maps are slower than glib string maps + gcc -O2 -I/usr/include/glib-2.0 -I/usr/lib/glib-2.0/include k-nucleotide.c -lglib-2.0 10.68u 0.04s 10.72r + gccgo -O2 k-nucleotide.go 23.03u 0.88s 23.92r + gc k-nucleotide 15.79u 0.05s 15.85r # -5% (but this one seems to vary by more than that) + gc_B k-nucleotide 17.88u 0.05s 17.95r # +8% (ditto) + +mandelbrot 16000 + gcc -O2 mandelbrot.c 56.17u 0.02s 56.20r + gccgo -O2 mandelbrot.go 56.74u 0.02s 56.79r # -1% + gc mandelbrot 63.31u 0.01s 63.35r # -1% + gc_B mandelbrot 63.29u 0.00s 63.31r # -1% + +meteor 16000 + # we don't know + gcc -O2 meteor-contest.c 0.10u 0.00s 0.10r + gccgo -O2 meteor-contest.go 0.11u 0.00s 0.12r + gc meteor-contest 0.18u 0.00s 0.19r + gc_B meteor-contest 0.17u 0.00s 0.18r + +pidigits 10000 + # bignum is slower than gmp + gcc -O2 pidigits.c -lgmp 2.56u 0.00s 2.57r + gc pidigits 55.87u 0.03s 55.91r + gc_B pidigits 55.93u 0.03s 55.99r + +# these tests are compared using real time, since they run multiple processors +# accuracy probably low +threadring 50000000 + gcc -O2 threadring.c -lpthread 26.31u 164.69s 199.92r # -2% + gccgo -O2 threadring.go 87.90u 487.26s 472.81r # +6% + gc threadring 28.89u 0.00s 28.90r # -25% *** + +chameneos 6000000 + gcc -O2 chameneosredux.c -lpthread 16.41u 296.91s 81.17r # -8% + gc chameneosredux 19.97u 0.00s 19.97r # -8% + +Sep 22, 2009 + +# 6g inlines sliceslice in most cases. + +fasta -n 25000000 + # probably I/O library inefficiencies + gc fasta 10.24u 0.00s 10.25r # -4% + gc_B fasta 9.68u 0.01s 9.69r # -3% + +reverse-complement < output-of-fasta-25000000 + # we don't know - memory cache behavior? + gc reverse-complement 6.67u 0.69s 7.37r # +1% + gc_B reverse-complement 6.00u 0.64s 6.65r # +7% + +nbody -n 50000000 + # math.Sqrt needs to be in assembly; inlining is probably the other 50% + # also loop alignment appears to be critical + gc nbody 86.27u 0.00s 86.29r # -21% + gc_B nbody 104.52u 0.00s 104.54r # +22% + +fannkuch 12 + # bounds checking is half the difference + # rest might be registerization + gc fannkuch 128.36u 0.00s 128.37r # +4% + gc_B fannkuch 89.32u 0.00s 89.34r + +regex-dna 100000 + # regexp code is slow on trivial regexp + gc regex-dna 24.82u 0.01s 24.86r # -4% + gc_B regex-dna 24.55u 0.01s 24.57r # -6% + +spectral-norm 5500 + # possibly inline evalA + gc spectral-norm 24.05u 0.00s 24.07r # -1% + gc_B spectral-norm 23.60u 0.00s 23.65r # -1% + +k-nucleotide 1000000 + # string maps are slower than glib string maps + gc k-nucleotide 17.84u 0.04s 17.89r # +13% but mysterious variation continues + gc_B k-nucleotide 15.56u 0.08s 15.65r # -13% (ditto) + +mandelbrot 16000 + gc mandelbrot 64.08u 0.01s 64.11r # +1% + gc_B mandelbrot 64.04u 0.00s 64.05r # +1% + +pidigits 10000 + # bignum is slower than gmp + gc pidigits 58.68u 0.02s 58.72r # +5% + gc_B pidigits 58.86u 0.05s 58.99r # +5% + +# these tests are compared using real time, since they run multiple processors +# accuracy probably low +threadring 50000000 + gc threadring 32.70u 0.02s 32.77r # +13% + +chameneos 6000000 + gc chameneosredux 26.62u 0.00s 26.63r # +13% + +Sep 24, 2009 + +# Sqrt now in assembler for 6g. +nbody -n 50000000 + # remember, at least for 6g, alignment of loops may be important + gcc -O2 nbody.c 21.24u 0.00s 21.25r + gccgo -O2 nbody.go 121.03u 0.00s 121.04r + gc nbody 30.26u 0.00s 30.27r # -65% *** + gc_B nbody 30.20u 0.02s 30.22r # -72% *** + +Nov 13 2009 + +# fix bug in regexp; take performance hit. good regexps will come in time. +regex-dna 100000 + gcc -O2 regex-dna.c -lpcre 0.92u 0.00s 0.94r + gc regex-dna 29.78u 0.03s 29.83r + gc_B regex-dna 32.63u 0.03s 32.74r + +Nov 24 2009 + +# Roger Peppe's rewrite of the benchmark +chameneos 6000000 + gcc -O2 chameneosredux.c -lpthread 18.00u 303.29s 83.64r + gc chameneosredux 12.10u 0.00s 12.10r # 2.22X faster + +Jan 6, 2009 + +# Long-overdue update. All numbers included in this complete run. +# Some programs (e.g. reverse-complement) rewritten for speed. +# Regular expressions much faster in common cases (although still far behind PCRE) +# Bignum stuff improved +# Better (but sometimes slower) locking in channels. + +fasta -n 25000000 + gcc -O2 fasta.c 5.99u 0.01s 6.00r + gc fasta 9.11u 0.00s 9.12r # -11% + gc_B fasta 8.60u 0.00s 8.62r # +12% ?? + +reverse-complement < output-of-fasta-25000000 + gcc -O2 reverse-complement.c 2.00u 0.80s 9.54r + gccgo -O2 reverse-complement.go 4.57u 0.35s 4.94r # 33% faster + gc reverse-complement 2.01u 0.38s 2.40r # 3.3X faster + gc_B reverse-complement 1.88u 0.36s 2.24r # 3.2X faster +GOGC=off + gc reverse-complement 2.01u 0.35s 2.37r + gc_B reverse-complement 1.86u 0.32s 2.19r + +nbody -n 50000000 + gcc -O2 nbody.c 21.28u 0.00s 21.31r + gccgo -O2 nbody.go 80.02u 0.00s 80.05r # 33% faster + gc nbody 30.13u 0.00s 30.13r + gc_B nbody 29.89u 0.01s 29.91r + +binary-tree 15 # too slow to use 20 + gcc -O2 binary-tree.c -lm 0.86u 0.00s 0.87r + gccgo -O2 binary-tree.go 4.82u 0.41s 5.24r # 2.5X slower + gccgo -O2 binary-tree-freelist.go 0.00u 0.00s 0.00r + gc binary-tree 7.23u 0.01s 7.25r # # -19% + gc binary-tree-freelist 0.43u 0.00s 0.44r # -9% + +fannkuch 12 + gcc -O2 fannkuch.c 60.17u 0.00s 60.17r + gccgo -O2 fannkuch.go 78.47u 0.01s 78.49r + gc fannkuch 128.86u 0.00s 128.96r + gc_B fannkuch 90.17u 0.00s 90.21r + +regex-dna 100000 + gcc -O2 regex-dna.c -lpcre 0.90u 0.00s 0.92r + gc regex-dna 9.48u 0.01s 9.50r # 3.1X faster + gc_B regex-dna 9.08u 0.00s 9.10r # 3.6X faster + +spectral-norm 5500 + gcc -O2 spectral-norm.c -lm 11.48u 0.00s 11.48r + gccgo -O2 spectral-norm.go 11.68u 0.00s 11.70r + gc spectral-norm 23.98u 0.00s 23.99r + gc_B spectral-norm 23.68u 0.00s 23.69r + +k-nucleotide 1000000 + gcc -O2 k-nucleotide.c 10.85u 0.04s 10.90r + gccgo -O2 k-nucleotide.go 25.26u 0.87s 26.14r + gc k-nucleotide 15.28u 0.06s 15.37r # restored; mysterious variation continues + gc_B k-nucleotide 15.97u 0.03s 16.00r + +mandelbrot 16000 + gcc -O2 mandelbrot.c 56.12u 0.01s 56.15r + gccgo -O2 mandelbrot.go 56.86u 0.01s 56.89r + gc mandelbrot 66.05u 0.00s 66.07r # -3% + gc_B mandelbrot 66.06u 0.00s 66.07r # -3% + +meteor 16000 + gcc -O2 meteor-contest.c 0.10u 0.00s 0.10r + gccgo -O2 meteor-contest.go 0.12u 0.00s 0.12r + gc meteor-contest 0.17u 0.00s 0.17r + gc_B meteor-contest 0.15u 0.00s 0.16r + +pidigits 10000 + gcc -O2 pidigits.c -lgmp 2.57u 0.00s 2.59r + gc pidigits 38.27u 0.02s 38.30r # 1.5X faster + gc_B pidigits 38.27u 0.02s 38.31r # 1.5X faster + +threadring 50000000 + gcc -O2 threadring.c 37.11u 170.59s 212.75r + gccgo -O2 threadring.go 89.67u 447.56s 442.55r # -6.5% + gc threadring 36.08u 0.04s 36.15r # +10% + +chameneos 6000000 + gcc -O2 chameneosredux.c -lpthread 19.02u 331.08s 90.79r + gc chameneosredux 12.54u 0.00s 12.55r + diff --git a/gcc/testsuite/go.test/test/bench/timing.sh b/gcc/testsuite/go.test/test/bench/timing.sh new file mode 100755 index 0000000..c52c0af --- /dev/null +++ b/gcc/testsuite/go.test/test/bench/timing.sh @@ -0,0 +1,196 @@ +#!/usr/bin/env bash +# Copyright 2009 The Go Authors. All rights reserved. +# Use of this source code is governed by a BSD-style +# license that can be found in the LICENSE file. + +set -e + +eval $(gomake --no-print-directory -f ../../src/Make.inc go-env) +PATH=.:$PATH + +mode=run +case X"$1" in +X-test) + mode=test + shift +esac + +gc() { + $GC $1.go; $LD $1.$O +} + +gc_B() { + $GC -B $1.go; $LD $1.$O +} + +runonly() { + if [ $mode = run ] + then + "$@" + fi +} + + + +run() { + if [ $mode = test ] + then + if echo $1 | grep -q '^gc ' + then + $1 # compile the program + program=$(echo $1 | sed 's/gc //') + shift + echo $program + $1 <fasta-1000.out > /tmp/$$ + case $program in + chameneosredux) + # exact numbers may vary but non-numbers should match + grep -v '[0-9]' /tmp/$$ > /tmp/$$x + grep -v '[0-9]' chameneosredux.txt > /tmp/$$y + cmp /tmp/$$x /tmp/$$y + rm -f /tmp/$$ /tmp/$$x /tmp/$$y + ;; + *) + cmp /tmp/$$ $program.txt + rm -f /tmp/$$ + esac + fi + return + fi + echo -n ' '$1' ' + $1 + shift + + echo $((time -p $* >/dev/null) 2>&1) | awk '{print $4 "u " $6 "s " $2 "r"}' +} + +fasta() { + runonly echo 'fasta -n 25000000' + run 'gcc -O2 fasta.c' a.out 25000000 + #run 'gccgo -O2 fasta.go' a.out -n 25000000 #commented out until WriteString is in bufio + run 'gc fasta' $O.out -n 25000000 + run 'gc_B fasta' $O.out -n 25000000 +} + +revcomp() { + runonly gcc -O2 fasta.c + runonly a.out 25000000 > x + runonly echo 'reverse-complement < output-of-fasta-25000000' + run 'gcc -O2 reverse-complement.c' a.out < x + run 'gccgo -O2 reverse-complement.go' a.out < x + run 'gc reverse-complement' $O.out < x + run 'gc_B reverse-complement' $O.out < x + rm x +} + +nbody() { + runonly echo 'nbody -n 50000000' + run 'gcc -O2 nbody.c' a.out 50000000 + run 'gccgo -O2 nbody.go' a.out -n 50000000 + run 'gc nbody' $O.out -n 50000000 + run 'gc_B nbody' $O.out -n 50000000 +} + +binarytree() { + runonly echo 'binary-tree 15 # too slow to use 20' + run 'gcc -O2 binary-tree.c -lm' a.out 15 + run 'gccgo -O2 binary-tree.go' a.out -n 15 + run 'gccgo -O2 binary-tree-freelist.go' $O.out -n 15 + run 'gc binary-tree' $O.out -n 15 + run 'gc binary-tree-freelist' $O.out -n 15 +} + +fannkuch() { + runonly echo 'fannkuch 12' + run 'gcc -O2 fannkuch.c' a.out 12 + run 'gccgo -O2 fannkuch.go' a.out -n 12 + run 'gccgo -O2 fannkuch-parallel.go' a.out -n 12 + run 'gc fannkuch' $O.out -n 12 + run 'gc fannkuch-parallel' $O.out -n 12 + run 'gc_B fannkuch' $O.out -n 12 +} + +regexdna() { + runonly gcc -O2 fasta.c + runonly a.out 100000 > x + runonly echo 'regex-dna 100000' + run 'gcc -O2 regex-dna.c -lpcre' a.out <x +# run 'gccgo -O2 regex-dna.go' a.out <x # pages badly; don't run + run 'gc regex-dna' $O.out <x + run 'gc regex-dna-parallel' $O.out <x + run 'gc_B regex-dna' $O.out <x + rm x +} + +spectralnorm() { + runonly echo 'spectral-norm 5500' + run 'gcc -O2 spectral-norm.c -lm' a.out 5500 + run 'gccgo -O2 spectral-norm.go' a.out -n 5500 + run 'gc spectral-norm' $O.out -n 5500 + run 'gc_B spectral-norm' $O.out -n 5500 +} + +knucleotide() { + runonly gcc -O2 fasta.c + runonly a.out 1000000 > x # should be using 25000000 + runonly echo 'k-nucleotide 1000000' + run 'gcc -O2 -I/usr/include/glib-2.0 -I/usr/lib/glib-2.0/include k-nucleotide.c -lglib-2.0' a.out <x + run 'gccgo -O2 k-nucleotide.go' a.out <x # warning: pages badly! + run 'gccgo -O2 k-nucleotide-parallel.go' a.out <x # warning: pages badly! + run 'gc k-nucleotide' $O.out <x + run 'gc k-nucleotide-parallel' $O.out <x + run 'gc_B k-nucleotide' $O.out <x + rm x +} + +mandelbrot() { + runonly echo 'mandelbrot 16000' + run 'gcc -O2 mandelbrot.c' a.out 16000 + run 'gccgo -O2 mandelbrot.go' a.out -n 16000 + run 'gc mandelbrot' $O.out -n 16000 + run 'gc_B mandelbrot' $O.out -n 16000 +} + +meteor() { + runonly echo 'meteor 16000' + run 'gcc -O2 meteor-contest.c' a.out + run 'gccgo -O2 meteor-contest.go' a.out + run 'gc meteor-contest' $O.out + run 'gc_B meteor-contest' $O.out +} + +pidigits() { + runonly echo 'pidigits 10000' + run 'gcc -O2 pidigits.c -lgmp' a.out 10000 +# run 'gccgo -O2 pidigits.go' a.out -n 10000 # uncomment when gccgo library updated + run 'gc pidigits' $O.out -n 10000 + run 'gc_B pidigits' $O.out -n 10000 +} + +threadring() { + runonly echo 'threadring 50000000' + run 'gcc -O2 threadring.c -lpthread' a.out 50000000 + run 'gccgo -O2 threadring.go' a.out -n 50000000 + run 'gc threadring' $O.out -n 50000000 +} + +chameneos() { + runonly echo 'chameneos 6000000' + run 'gcc -O2 chameneosredux.c -lpthread' a.out 6000000 + run 'gccgo -O2 chameneosredux.go' a.out 6000000 + run 'gc chameneosredux' $O.out 6000000 +} + +case $# in +0) + run="fasta revcomp nbody binarytree fannkuch regexdna spectralnorm knucleotide mandelbrot meteor pidigits threadring chameneos" + ;; +*) + run=$* +esac + +for i in $run +do + $i + runonly echo +done diff --git a/gcc/testsuite/go.test/test/bigalg.go b/gcc/testsuite/go.test/test/bigalg.go new file mode 100644 index 0000000..902ba84 --- /dev/null +++ b/gcc/testsuite/go.test/test/bigalg.go @@ -0,0 +1,117 @@ +// $G $D/$F.go && $L $F.$A && ./$A.out + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package main + +type T struct { + a float64 + b int64 + c string + d byte +} + +var a = []int{ 1, 2, 3 } +var NIL []int + +func arraycmptest() { + if NIL != nil { + println("fail1:", NIL, "!= nil") + } + if nil != NIL { + println("fail2: nil !=", NIL) + } + if a == nil || nil == a { + println("fail3:", a, "== nil") + } +} + +func SameArray(a, b []int) bool { + if len(a) != len(b) || cap(a) != cap(b) { + return false + } + if len(a) > 0 && &a[0] != &b[0] { + return false + } + return true +} + +var t = T{1.5, 123, "hello", 255} +var mt = make(map[int]T) +var ma = make(map[int][]int) + +func maptest() { + mt[0] = t + t1 := mt[0] + if t1.a != t.a || t1.b != t.b || t1.c != t.c || t1.d != t.d { + println("fail: map val struct", t1.a, t1.b, t1.c, t1.d) + } + + ma[1] = a + a1 := ma[1] + if !SameArray(a, a1) { + println("fail: map val array", a, a1) + } +} + +var ct = make(chan T) +var ca = make(chan []int) + +func send() { + ct <- t + ca <- a +} + +func chantest() { + go send() + + t1 := <-ct + if t1.a != t.a || t1.b != t.b || t1.c != t.c || t1.d != t.d { + println("fail: map val struct", t1.a, t1.b, t1.c, t1.d) + } + + a1 := <-ca + if !SameArray(a, a1) { + println("fail: map val array", a, a1) + } +} + +type E struct { } +var e E + +func interfacetest() { + var i interface{} + + i = a + a1 := i.([]int) + if !SameArray(a, a1) { + println("interface <-> []int", a, a1) + } + pa := new([]int) + *pa = a + i = pa + a1 = *i.(*[]int) + if !SameArray(a, a1) { + println("interface <-> *[]int", a, a1) + } + + i = t + t1 := i.(T) + if t1.a != t.a || t1.b != t.b || t1.c != t.c || t1.d != t.d { + println("interface <-> struct", t1.a, t1.b, t1.c, t1.d) + } + + i = e + e1 := i.(E) + // nothing to check; just verify it doesn't crash + _ = e1 +} + +func main() { + arraycmptest() + maptest() + chantest() + interfacetest() +} diff --git a/gcc/testsuite/go.test/test/bigmap.go b/gcc/testsuite/go.test/test/bigmap.go new file mode 100644 index 0000000..843a151 --- /dev/null +++ b/gcc/testsuite/go.test/test/bigmap.go @@ -0,0 +1,34 @@ +// $G $F.go && $L $F.$A && ./$A.out + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package main + +func seq(x, y int) [1000]byte { + var r [1000]byte + for i := 0; i < len(r); i++ { + r[i] = byte(x + i*y) + } + return r +} + +func cmp(x, y [1000]byte) { + for i := 0; i < len(x); i++ { + if x[i] != y[i] { + panic("BUG mismatch") + } + } +} + +func main() { + m := make(map[int][1000]byte) + m[1] = seq(11, 13) + m[2] = seq(2, 9) + m[3] = seq(3, 17) + + cmp(m[1], seq(11, 13)) + cmp(m[2], seq(2, 9)) + cmp(m[3], seq(3, 17)) +} diff --git a/gcc/testsuite/go.test/test/blank.go b/gcc/testsuite/go.test/test/blank.go new file mode 100644 index 0000000..b9d3a32 --- /dev/null +++ b/gcc/testsuite/go.test/test/blank.go @@ -0,0 +1,101 @@ +// $G $D/$F.go && $L $F.$A && ./$A.out + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package main + +import _ "fmt" + +var call string + +type T struct { + _, _, _ int +} + +func (T) _() { +} + +func (T) _() { +} + +const ( + c0 = iota + _ + _ + _ + c4 +) + +var ints = []string { + "1", + "2", + "3", +} + +func f() (int, int) { + call += "f" + return 1,2 +} + +func g() (float, float) { + call += "g" + return 3,4 +} + +func h(_ int, _ float) { +} + +func i() int { + call += "i" + return 23 +} + +var _ = i() + +func main() { + if call != "i" {panic("init did not run")} + call = "" + _, _ = f() + a, _ := f() + if a != 1 {panic(a)} + b, _ := g() + if b != 3 {panic(b)} + _, a = f() + if a != 2 {panic(a)} + _, b = g() + if b != 4 {panic(b)} + _ = i() + if call != "ffgfgi" {panic(call)} + if c4 != 4 {panic(c4)} + + out := "" + for _, s := range ints { + out += s + } + if out != "123" {panic(out)} + + sum := 0 + for s, _ := range ints { + sum += s + } + if sum != 3 {panic(sum)} + + h(a,b) +} + +// useless but legal +var _ int = 1 +var _ = 2 +var _, _ = 3, 4 +const _ = 3 +const _, _ = 4, 5 +type _ int +func _() { + panic("oops") +} + +func ff() { + var _ int = 1 +} diff --git a/gcc/testsuite/go.test/test/blank1.go b/gcc/testsuite/go.test/test/blank1.go new file mode 100644 index 0000000..5bc1efc --- /dev/null +++ b/gcc/testsuite/go.test/test/blank1.go @@ -0,0 +1,12 @@ +// errchk $G -e $D/$F.go + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package _ // ERROR "invalid package name _" + +func main() { + _() // ERROR "cannot use _ as value" + x := _+1 // ERROR "cannot use _ as value" +} diff --git a/gcc/testsuite/go.test/test/bugs/bug260.go b/gcc/testsuite/go.test/test/bugs/bug260.go new file mode 100644 index 0000000..6a6331e --- /dev/null +++ b/gcc/testsuite/go.test/test/bugs/bug260.go @@ -0,0 +1,55 @@ +// $G $D/$F.go && $L $F.$A && ./$A.out || echo BUG: bug260 failed + +// Test that structures pack densely, according to the alignment of the largest field. + +package main + +import ( + "fmt" + "os" + "strconv" +) + +type T1 struct { x uint8 } +type T2 struct { x uint16 } +type T4 struct { x uint32 } + +func main() { + report := len(os.Args) > 1 + status := 0 + var b1 [10]T1 + a0, _ := strconv.Btoui64(fmt.Sprintf("%p", &b1[0])[2:], 16) + a1, _ := strconv.Btoui64(fmt.Sprintf("%p", &b1[1])[2:], 16) + if a1 != a0 + 1 { + fmt.Println("FAIL") + if report { + fmt.Println("alignment should be 1, is", a1-a0) + } + status = 1 + } + var b2 [10]T2 + a0, _ = strconv.Btoui64(fmt.Sprintf("%p", &b2[0])[2:], 16) + a1, _ = strconv.Btoui64(fmt.Sprintf("%p", &b2[1])[2:], 16) + if a1 != a0 + 2 { + if status == 0 { + fmt.Println("FAIL") + status = 1 + } + if report { + fmt.Println("alignment should be 2, is", a1-a0) + } + } + var b4 [10]T4 + a0, _ = strconv.Btoui64(fmt.Sprintf("%p", &b4[0])[2:], 16) + a1, _ = strconv.Btoui64(fmt.Sprintf("%p", &b4[1])[2:], 16) + if a1 != a0 + 4 { + if status == 0 { + fmt.Println("FAIL") + status = 1 + } + if report { + fmt.Println("alignment should be 4, is", a1-a0) + } + } + os.Exit(status) +} diff --git a/gcc/testsuite/go.test/test/bugs/placeholder b/gcc/testsuite/go.test/test/bugs/placeholder new file mode 100644 index 0000000..b816d34 --- /dev/null +++ b/gcc/testsuite/go.test/test/bugs/placeholder @@ -0,0 +1,2 @@ +This file keeps Mercurial from deleting the directory +when there are no known bugs. diff --git a/gcc/testsuite/go.test/test/chan/doubleselect.go b/gcc/testsuite/go.test/test/chan/doubleselect.go new file mode 100644 index 0000000..592d2f5 --- /dev/null +++ b/gcc/testsuite/go.test/test/chan/doubleselect.go @@ -0,0 +1,84 @@ +// $G $D/$F.go && $L $F.$A && ./$A.out + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +// This test is designed to flush out the case where two cases of a select can +// both end up running. See http://codereview.appspot.com/180068. +package main + +import ( + "flag" + "runtime" +) + +var iterations *int = flag.Int("n", 100000, "number of iterations") + +// sender sends a counter to one of four different channels. If two +// cases both end up running in the same iteration, the same value will be sent +// to two different channels. +func sender(n int, c1, c2, c3, c4 chan<- int) { + defer close(c1) + defer close(c2) + + for i := 0; i < n; i++ { + select { + case c1 <- i: + case c2 <- i: + case c3 <- i: + case c4 <- i: + } + } +} + +// mux receives the values from sender and forwards them onto another channel. +// It would be simplier to just have sender's four cases all be the same +// channel, but this doesn't actually trigger the bug. +func mux(out chan<- int, in <-chan int) { + for { + v := <-in + if closed(in) { + close(out) + break + } + out <- v + } +} + +// recver gets a steam of values from the four mux's and checks for duplicates. +func recver(in <-chan int) { + seen := make(map[int]bool) + + for { + v := <-in + if closed(in) { + break + } + if _, ok := seen[v]; ok { + println("got duplicate value: ", v) + panic("fail") + } + seen[v] = true + } +} + +func main() { + runtime.GOMAXPROCS(2) + + c1 := make(chan int) + c2 := make(chan int) + c3 := make(chan int) + c4 := make(chan int) + cmux := make(chan int) + go sender(*iterations, c1, c2, c3, c4) + go mux(cmux, c1) + go mux(cmux, c2) + go mux(cmux, c3) + go mux(cmux, c4) + // We keep the recver because it might catch more bugs in the future. + // However, the result of the bug linked to at the top is that we'll + // end up panicing with: "throw: bad g->status in ready". + recver(cmux) + print("PASS\n") +} diff --git a/gcc/testsuite/go.test/test/chan/fifo.go b/gcc/testsuite/go.test/test/chan/fifo.go new file mode 100644 index 0000000..0dddfca --- /dev/null +++ b/gcc/testsuite/go.test/test/chan/fifo.go @@ -0,0 +1,57 @@ +// $G $D/$F.go && $L $F.$A && ./$A.out + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +// Verify that unbuffered channels act as pure fifos. + +package main + +import "os" + +const N = 10 + +func AsynchFifo() { + ch := make(chan int, N) + for i := 0; i < N; i++ { + ch <- i + } + for i := 0; i < N; i++ { + if <-ch != i { + print("bad receive\n") + os.Exit(1) + } + } +} + +func Chain(ch <-chan int, val int, in <-chan int, out chan<- int) { + <-in + if <-ch != val { + panic(val) + } + out <- 1 +} + +// thread together a daisy chain to read the elements in sequence +func SynchFifo() { + ch := make(chan int) + in := make(chan int) + start := in + for i := 0; i < N; i++ { + out := make(chan int) + go Chain(ch, i, in, out) + in = out + } + start <- 0 + for i := 0; i < N; i++ { + ch <- i + } + <-in +} + +func main() { + AsynchFifo() + SynchFifo() +} + diff --git a/gcc/testsuite/go.test/test/chan/goroutines.go b/gcc/testsuite/go.test/test/chan/goroutines.go new file mode 100644 index 0000000..d8f8803 --- /dev/null +++ b/gcc/testsuite/go.test/test/chan/goroutines.go @@ -0,0 +1,41 @@ +// $G $D/$F.go && $L $F.$A && ./$A.out + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +// make a lot of goroutines, threaded together. +// tear them down cleanly. + +package main + +import ( + "os" + "strconv" +) + +func f(left, right chan int) { + left <- <-right +} + +func main() { + var n = 10000 + if len(os.Args) > 1 { + var err os.Error + n, err = strconv.Atoi(os.Args[1]) + if err != nil { + print("bad arg\n") + os.Exit(1) + } + } + leftmost := make(chan int) + right := leftmost + left := leftmost + for i := 0; i < n; i++ { + right = make(chan int) + go f(left, right) + left = right + } + go func(c chan int) { c <- 1 }(right) + <-leftmost +} diff --git a/gcc/testsuite/go.test/test/chan/nonblock.go b/gcc/testsuite/go.test/test/chan/nonblock.go new file mode 100644 index 0000000..52f04bf --- /dev/null +++ b/gcc/testsuite/go.test/test/chan/nonblock.go @@ -0,0 +1,232 @@ +// $G $D/$F.go && $L $F.$A && ./$A.out + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +// Verify channel operations that test for blocking +// Use several sizes and types of operands + +package main + +import "runtime" +import "time" + +func i32receiver(c chan int32, strobe chan bool) { + if <-c != 123 { + panic("i32 value") + } + strobe <- true +} + +func i32sender(c chan int32, strobe chan bool) { + c <- 234 + strobe <- true +} + +func i64receiver(c chan int64, strobe chan bool) { + if <-c != 123456 { + panic("i64 value") + } + strobe <- true +} + +func i64sender(c chan int64, strobe chan bool) { + c <- 234567 + strobe <- true +} + +func breceiver(c chan bool, strobe chan bool) { + if !<-c { + panic("b value") + } + strobe <- true +} + +func bsender(c chan bool, strobe chan bool) { + c <- true + strobe <- true +} + +func sreceiver(c chan string, strobe chan bool) { + if <-c != "hello" { + panic("s value") + } + strobe <- true +} + +func ssender(c chan string, strobe chan bool) { + c <- "hello again" + strobe <- true +} + +var ticker = time.Tick(10 * 1000) // 10 us +func sleep() { + <-ticker + <-ticker + runtime.Gosched() + runtime.Gosched() + runtime.Gosched() +} + +const maxTries = 10000 // Up to 100ms per test. + +func main() { + var i32 int32 + var i64 int64 + var b bool + var s string + var ok bool + + var sync = make(chan bool) + + for buffer := 0; buffer < 2; buffer++ { + c32 := make(chan int32, buffer) + c64 := make(chan int64, buffer) + cb := make(chan bool, buffer) + cs := make(chan string, buffer) + + i32, ok = <-c32 + if ok { + panic("blocked i32sender") + } + + i64, ok = <-c64 + if ok { + panic("blocked i64sender") + } + + b, ok = <-cb + if ok { + panic("blocked bsender") + } + + s, ok = <-cs + if ok { + panic("blocked ssender") + } + + go i32receiver(c32, sync) + try := 0 + for !(c32 <- 123) { + try++ + if try > maxTries { + println("i32receiver buffer=", buffer) + panic("fail") + } + sleep() + } + <-sync + + go i32sender(c32, sync) + if buffer > 0 { + <-sync + } + try = 0 + for i32, ok = <-c32; !ok; i32, ok = <-c32 { + try++ + if try > maxTries { + println("i32sender buffer=", buffer) + panic("fail") + } + sleep() + } + if i32 != 234 { + panic("i32sender value") + } + if buffer == 0 { + <-sync + } + + go i64receiver(c64, sync) + try = 0 + for !(c64 <- 123456) { + try++ + if try > maxTries { + panic("i64receiver") + } + sleep() + } + <-sync + + go i64sender(c64, sync) + if buffer > 0 { + <-sync + } + try = 0 + for i64, ok = <-c64; !ok; i64, ok = <-c64 { + try++ + if try > maxTries { + panic("i64sender") + } + sleep() + } + if i64 != 234567 { + panic("i64sender value") + } + if buffer == 0 { + <-sync + } + + go breceiver(cb, sync) + try = 0 + for !(cb <- true) { + try++ + if try > maxTries { + panic("breceiver") + } + sleep() + } + <-sync + + go bsender(cb, sync) + if buffer > 0 { + <-sync + } + try = 0 + for b, ok = <-cb; !ok; b, ok = <-cb { + try++ + if try > maxTries { + panic("bsender") + } + sleep() + } + if !b { + panic("bsender value") + } + if buffer == 0 { + <-sync + } + + go sreceiver(cs, sync) + try = 0 + for !(cs <- "hello") { + try++ + if try > maxTries { + panic("sreceiver") + } + sleep() + } + <-sync + + go ssender(cs, sync) + if buffer > 0 { + <-sync + } + try = 0 + for s, ok = <-cs; !ok; s, ok = <-cs { + try++ + if try > maxTries { + panic("ssender") + } + sleep() + } + if s != "hello again" { + panic("ssender value") + } + if buffer == 0 { + <-sync + } + } + print("PASS\n") +} diff --git a/gcc/testsuite/go.test/test/chan/perm.go b/gcc/testsuite/go.test/test/chan/perm.go new file mode 100644 index 0000000..d08c035 --- /dev/null +++ b/gcc/testsuite/go.test/test/chan/perm.go @@ -0,0 +1,57 @@ +// errchk $G -e $D/$F.go + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package main + +var ( + cr <-chan int + cs chan<- int + c chan int +) + +func main() { + cr = c // ok + cs = c // ok + c = cr // ERROR "illegal types|incompatible|cannot" + c = cs // ERROR "illegal types|incompatible|cannot" + cr = cs // ERROR "illegal types|incompatible|cannot" + cs = cr // ERROR "illegal types|incompatible|cannot" + + c <- 0 // ok + ok := c <- 0 // ok + _ = ok + <-c // ok + x, ok := <-c // ok + _, _ = x, ok + + cr <- 0 // ERROR "send" + ok = cr <- 0 // ERROR "send" + _ = ok + <-cr // ok + x, ok = <-cr // ok + _, _ = x, ok + + cs <- 0 // ok + ok = cs <- 0 // ok + _ = ok + <-cs // ERROR "receive" + x, ok = <-cs // ERROR "receive" + _, _ = x, ok + + select { + case c <- 0: // ok + case x := <-c: // ok + _ = x + + case cr <- 0: // ERROR "send" + case x := <-cr: // ok + _ = x + + case cs <- 0: // ok + case x := <-cs: // ERROR "receive" + _ = x + } +} diff --git a/gcc/testsuite/go.test/test/chan/powser1.go b/gcc/testsuite/go.test/test/chan/powser1.go new file mode 100644 index 0000000..dc4ff53 --- /dev/null +++ b/gcc/testsuite/go.test/test/chan/powser1.go @@ -0,0 +1,709 @@ +// $G $D/$F.go && $L $F.$A && ./$A.out + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +// Power series package +// A power series is a channel, along which flow rational +// coefficients. A denominator of zero signifies the end. +// Original code in Newsqueak by Doug McIlroy. +// See Squinting at Power Series by Doug McIlroy, +// http://www.cs.bell-labs.com/who/rsc/thread/squint.pdf + +package main + +import "os" + +type rat struct { + num, den int64 // numerator, denominator +} + +func (u rat) pr() { + if u.den==1 { + print(u.num) + } else { + print(u.num, "/", u.den) + } + print(" ") +} + +func (u rat) eq(c rat) bool { + return u.num == c.num && u.den == c.den +} + +type dch struct { + req chan int + dat chan rat + nam int +} + +type dch2 [2] *dch + +var chnames string +var chnameserial int +var seqno int + +func mkdch() *dch { + c := chnameserial % len(chnames) + chnameserial++ + d := new(dch) + d.req = make(chan int) + d.dat = make(chan rat) + d.nam = c + return d +} + +func mkdch2() *dch2 { + d2 := new(dch2) + d2[0] = mkdch() + d2[1] = mkdch() + return d2 +} + +// split reads a single demand channel and replicates its +// output onto two, which may be read at different rates. +// A process is created at first demand for a rat and dies +// after the rat has been sent to both outputs. + +// When multiple generations of split exist, the newest +// will service requests on one channel, which is +// always renamed to be out[0]; the oldest will service +// requests on the other channel, out[1]. All generations but the +// newest hold queued data that has already been sent to +// out[0]. When data has finally been sent to out[1], +// a signal on the release-wait channel tells the next newer +// generation to begin servicing out[1]. + +func dosplit(in *dch, out *dch2, wait chan int ) { + both := false // do not service both channels + + select { + case <-out[0].req: + + case <-wait: + both = true + select { + case <-out[0].req: + + case <-out[1].req: + out[0], out[1] = out[1], out[0] + } + } + + seqno++ + in.req <- seqno + release := make(chan int) + go dosplit(in, out, release) + dat := <-in.dat + out[0].dat <- dat + if !both { + <-wait + } + <-out[1].req + out[1].dat <- dat + release <- 0 +} + +func split(in *dch, out *dch2) { + release := make(chan int) + go dosplit(in, out, release) + release <- 0 +} + +func put(dat rat, out *dch) { + <-out.req + out.dat <- dat +} + +func get(in *dch) rat { + seqno++ + in.req <- seqno + return <-in.dat +} + +// Get one rat from each of n demand channels + +func getn(in []*dch) []rat { + n := len(in) + if n != 2 { panic("bad n in getn") } + req := new([2] chan int) + dat := new([2] chan rat) + out := make([]rat, 2) + var i int + var it rat + for i=0; i<n; i++ { + req[i] = in[i].req + dat[i] = nil + } + for n=2*n; n>0; n-- { + seqno++ + + select { + case req[0] <- seqno: + dat[0] = in[0].dat + req[0] = nil + case req[1] <- seqno: + dat[1] = in[1].dat + req[1] = nil + case it = <-dat[0]: + out[0] = it + dat[0] = nil + case it = <-dat[1]: + out[1] = it + dat[1] = nil + } + } + return out +} + +// Get one rat from each of 2 demand channels + +func get2(in0 *dch, in1 *dch) []rat { + return getn([]*dch{in0, in1}) +} + +func copy(in *dch, out *dch) { + for { + <-out.req + out.dat <- get(in) + } +} + +func repeat(dat rat, out *dch) { + for { + put(dat, out) + } +} + +type PS *dch // power series +type PS2 *[2] PS // pair of power series + +var Ones PS +var Twos PS + +func mkPS() *dch { + return mkdch() +} + +func mkPS2() *dch2 { + return mkdch2() +} + +// Conventions +// Upper-case for power series. +// Lower-case for rationals. +// Input variables: U,V,... +// Output variables: ...,Y,Z + +// Integer gcd; needed for rational arithmetic + +func gcd (u, v int64) int64 { + if u < 0 { return gcd(-u, v) } + if u == 0 { return v } + return gcd(v%u, u) +} + +// Make a rational from two ints and from one int + +func i2tor(u, v int64) rat { + g := gcd(u,v) + var r rat + if v > 0 { + r.num = u/g + r.den = v/g + } else { + r.num = -u/g + r.den = -v/g + } + return r +} + +func itor(u int64) rat { + return i2tor(u, 1) +} + +var zero rat +var one rat + + +// End mark and end test + +var finis rat + +func end(u rat) int64 { + if u.den==0 { return 1 } + return 0 +} + +// Operations on rationals + +func add(u, v rat) rat { + g := gcd(u.den,v.den) + return i2tor(u.num*(v.den/g)+v.num*(u.den/g),u.den*(v.den/g)) +} + +func mul(u, v rat) rat { + g1 := gcd(u.num,v.den) + g2 := gcd(u.den,v.num) + var r rat + r.num = (u.num/g1)*(v.num/g2) + r.den = (u.den/g2)*(v.den/g1) + return r +} + +func neg(u rat) rat { + return i2tor(-u.num, u.den) +} + +func sub(u, v rat) rat { + return add(u, neg(v)) +} + +func inv(u rat) rat { // invert a rat + if u.num == 0 { panic("zero divide in inv") } + return i2tor(u.den, u.num) +} + +// print eval in floating point of PS at x=c to n terms +func evaln(c rat, U PS, n int) { + xn := float64(1) + x := float64(c.num)/float64(c.den) + val := float64(0) + for i:=0; i<n; i++ { + u := get(U) + if end(u) != 0 { + break + } + val = val + x * float64(u.num)/float64(u.den) + xn = xn*x + } + print(val, "\n") +} + +// Print n terms of a power series +func printn(U PS, n int) { + done := false + for ; !done && n>0; n-- { + u := get(U) + if end(u) != 0 { + done = true + } else { + u.pr() + } + } + print(("\n")) +} + +// Evaluate n terms of power series U at x=c +func eval(c rat, U PS, n int) rat { + if n==0 { return zero } + y := get(U) + if end(y) != 0 { return zero } + return add(y,mul(c,eval(c,U,n-1))) +} + +// Power-series constructors return channels on which power +// series flow. They start an encapsulated generator that +// puts the terms of the series on the channel. + +// Make a pair of power series identical to a given power series + +func Split(U PS) *dch2 { + UU := mkdch2() + go split(U,UU) + return UU +} + +// Add two power series +func Add(U, V PS) PS { + Z := mkPS() + go func() { + var uv []rat + for { + <-Z.req + uv = get2(U,V) + switch end(uv[0])+2*end(uv[1]) { + case 0: + Z.dat <- add(uv[0], uv[1]) + case 1: + Z.dat <- uv[1] + copy(V,Z) + case 2: + Z.dat <- uv[0] + copy(U,Z) + case 3: + Z.dat <- finis + } + } + }() + return Z +} + +// Multiply a power series by a constant +func Cmul(c rat,U PS) PS { + Z := mkPS() + go func() { + done := false + for !done { + <-Z.req + u := get(U) + if end(u) != 0 { + done = true + } else { + Z.dat <- mul(c,u) + } + } + Z.dat <- finis + }() + return Z +} + +// Subtract + +func Sub(U, V PS) PS { + return Add(U, Cmul(neg(one), V)) +} + +// Multiply a power series by the monomial x^n + +func Monmul(U PS, n int) PS { + Z := mkPS() + go func() { + for ; n>0; n-- { put(zero,Z) } + copy(U,Z) + }() + return Z +} + +// Multiply by x + +func Xmul(U PS) PS { + return Monmul(U,1) +} + +func Rep(c rat) PS { + Z := mkPS() + go repeat(c,Z) + return Z +} + +// Monomial c*x^n + +func Mon(c rat, n int) PS { + Z:=mkPS() + go func() { + if(c.num!=0) { + for ; n>0; n=n-1 { put(zero,Z) } + put(c,Z) + } + put(finis,Z) + }() + return Z +} + +func Shift(c rat, U PS) PS { + Z := mkPS() + go func() { + put(c,Z) + copy(U,Z) + }() + return Z +} + +// simple pole at 1: 1/(1-x) = 1 1 1 1 1 ... + +// Convert array of coefficients, constant term first +// to a (finite) power series + +/* +func Poly(a []rat) PS { + Z:=mkPS() + begin func(a []rat, Z PS) { + j:=0 + done:=0 + for j=len(a); !done&&j>0; j=j-1) + if(a[j-1].num!=0) done=1 + i:=0 + for(; i<j; i=i+1) put(a[i],Z) + put(finis,Z) + }() + return Z +} +*/ + +// Multiply. The algorithm is +// let U = u + x*UU +// let V = v + x*VV +// then UV = u*v + x*(u*VV+v*UU) + x*x*UU*VV + +func Mul(U, V PS) PS { + Z:=mkPS() + go func() { + <-Z.req + uv := get2(U,V) + if end(uv[0])!=0 || end(uv[1]) != 0 { + Z.dat <- finis + } else { + Z.dat <- mul(uv[0],uv[1]) + UU := Split(U) + VV := Split(V) + W := Add(Cmul(uv[0],VV[0]),Cmul(uv[1],UU[0])) + <-Z.req + Z.dat <- get(W) + copy(Add(W,Mul(UU[1],VV[1])),Z) + } + }() + return Z +} + +// Differentiate + +func Diff(U PS) PS { + Z:=mkPS() + go func() { + <-Z.req + u := get(U) + if end(u) == 0 { + done:=false + for i:=1; !done; i++ { + u = get(U) + if end(u) != 0 { + done = true + } else { + Z.dat <- mul(itor(int64(i)),u) + <-Z.req + } + } + } + Z.dat <- finis + }() + return Z +} + +// Integrate, with const of integration +func Integ(c rat,U PS) PS { + Z:=mkPS() + go func() { + put(c,Z) + done:=false + for i:=1; !done; i++ { + <-Z.req + u := get(U) + if end(u) != 0 { done= true } + Z.dat <- mul(i2tor(1,int64(i)),u) + } + Z.dat <- finis + }() + return Z +} + +// Binomial theorem (1+x)^c + +func Binom(c rat) PS { + Z:=mkPS() + go func() { + n := 1 + t := itor(1) + for c.num!=0 { + put(t,Z) + t = mul(mul(t,c),i2tor(1,int64(n))) + c = sub(c,one) + n++ + } + put(finis,Z) + }() + return Z +} + +// Reciprocal of a power series +// let U = u + x*UU +// let Z = z + x*ZZ +// (u+x*UU)*(z+x*ZZ) = 1 +// z = 1/u +// u*ZZ + z*UU +x*UU*ZZ = 0 +// ZZ = -UU*(z+x*ZZ)/u + +func Recip(U PS) PS { + Z:=mkPS() + go func() { + ZZ:=mkPS2() + <-Z.req + z := inv(get(U)) + Z.dat <- z + split(Mul(Cmul(neg(z),U),Shift(z,ZZ[0])),ZZ) + copy(ZZ[1],Z) + }() + return Z +} + +// Exponential of a power series with constant term 0 +// (nonzero constant term would make nonrational coefficients) +// bug: the constant term is simply ignored +// Z = exp(U) +// DZ = Z*DU +// integrate to get Z + +func Exp(U PS) PS { + ZZ := mkPS2() + split(Integ(one,Mul(ZZ[0],Diff(U))),ZZ) + return ZZ[1] +} + +// Substitute V for x in U, where the leading term of V is zero +// let U = u + x*UU +// let V = v + x*VV +// then S(U,V) = u + VV*S(V,UU) +// bug: a nonzero constant term is ignored + +func Subst(U, V PS) PS { + Z:= mkPS() + go func() { + VV := Split(V) + <-Z.req + u := get(U) + Z.dat <- u + if end(u) == 0 { + if end(get(VV[0])) != 0 { + put(finis,Z) + } else { + copy(Mul(VV[0],Subst(U,VV[1])),Z) + } + } + }() + return Z +} + +// Monomial Substition: U(c x^n) +// Each Ui is multiplied by c^i and followed by n-1 zeros + +func MonSubst(U PS, c0 rat, n int) PS { + Z:= mkPS() + go func() { + c := one + for { + <-Z.req + u := get(U) + Z.dat <- mul(u, c) + c = mul(c, c0) + if end(u) != 0 { + Z.dat <- finis + break + } + for i := 1; i < n; i++ { + <-Z.req + Z.dat <- zero + } + } + }() + return Z +} + + +func Init() { + chnameserial = -1 + seqno = 0 + chnames = "ABCDEFGHIJKLMNOPQRSTUVWXYZabcdefghijklmnopqrstuvwxyz" + zero = itor(0) + one = itor(1) + finis = i2tor(1,0) + Ones = Rep(one) + Twos = Rep(itor(2)) +} + +func check(U PS, c rat, count int, str string) { + for i := 0; i < count; i++ { + r := get(U) + if !r.eq(c) { + print("got: ") + r.pr() + print("should get ") + c.pr() + print("\n") + panic(str) + } + } +} + +const N=10 +func checka(U PS, a []rat, str string) { + for i := 0; i < N; i++ { + check(U, a[i], 1, str) + } +} + +func main() { + Init() + if len(os.Args) > 1 { // print + print("Ones: "); printn(Ones, 10) + print("Twos: "); printn(Twos, 10) + print("Add: "); printn(Add(Ones, Twos), 10) + print("Diff: "); printn(Diff(Ones), 10) + print("Integ: "); printn(Integ(zero, Ones), 10) + print("CMul: "); printn(Cmul(neg(one), Ones), 10) + print("Sub: "); printn(Sub(Ones, Twos), 10) + print("Mul: "); printn(Mul(Ones, Ones), 10) + print("Exp: "); printn(Exp(Ones), 15) + print("MonSubst: "); printn(MonSubst(Ones, neg(one), 2), 10) + print("ATan: "); printn(Integ(zero, MonSubst(Ones, neg(one), 2)), 10) + } else { // test + check(Ones, one, 5, "Ones") + check(Add(Ones, Ones), itor(2), 0, "Add Ones Ones") // 1 1 1 1 1 + check(Add(Ones, Twos), itor(3), 0, "Add Ones Twos") // 3 3 3 3 3 + a := make([]rat, N) + d := Diff(Ones) + for i:=0; i < N; i++ { + a[i] = itor(int64(i+1)) + } + checka(d, a, "Diff") // 1 2 3 4 5 + in := Integ(zero, Ones) + a[0] = zero // integration constant + for i:=1; i < N; i++ { + a[i] = i2tor(1, int64(i)) + } + checka(in, a, "Integ") // 0 1 1/2 1/3 1/4 1/5 + check(Cmul(neg(one), Twos), itor(-2), 10, "CMul") // -1 -1 -1 -1 -1 + check(Sub(Ones, Twos), itor(-1), 0, "Sub Ones Twos") // -1 -1 -1 -1 -1 + m := Mul(Ones, Ones) + for i:=0; i < N; i++ { + a[i] = itor(int64(i+1)) + } + checka(m, a, "Mul") // 1 2 3 4 5 + e := Exp(Ones) + a[0] = itor(1) + a[1] = itor(1) + a[2] = i2tor(3,2) + a[3] = i2tor(13,6) + a[4] = i2tor(73,24) + a[5] = i2tor(167,40) + a[6] = i2tor(4051,720) + a[7] = i2tor(37633,5040) + a[8] = i2tor(43817,4480) + a[9] = i2tor(4596553,362880) + checka(e, a, "Exp") // 1 1 3/2 13/6 73/24 + at := Integ(zero, MonSubst(Ones, neg(one), 2)) + for c, i := 1, 0; i < N; i++ { + if i%2 == 0 { + a[i] = zero + } else { + a[i] = i2tor(int64(c), int64(i)) + c *= -1 + } + } + checka(at, a, "ATan") // 0 -1 0 -1/3 0 -1/5 +/* + t := Revert(Integ(zero, MonSubst(Ones, neg(one), 2))) + a[0] = zero + a[1] = itor(1) + a[2] = zero + a[3] = i2tor(1,3) + a[4] = zero + a[5] = i2tor(2,15) + a[6] = zero + a[7] = i2tor(17,315) + a[8] = zero + a[9] = i2tor(62,2835) + checka(t, a, "Tan") // 0 1 0 1/3 0 2/15 +*/ + } +} diff --git a/gcc/testsuite/go.test/test/chan/powser2.go b/gcc/testsuite/go.test/test/chan/powser2.go new file mode 100644 index 0000000..bc32927 --- /dev/null +++ b/gcc/testsuite/go.test/test/chan/powser2.go @@ -0,0 +1,722 @@ +// $G $D/$F.go && $L $F.$A && ./$A.out + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +// Power series package +// A power series is a channel, along which flow rational +// coefficients. A denominator of zero signifies the end. +// Original code in Newsqueak by Doug McIlroy. +// See Squinting at Power Series by Doug McIlroy, +// http://www.cs.bell-labs.com/who/rsc/thread/squint.pdf +// Like powser1.go but uses channels of interfaces. +// Has not been cleaned up as much as powser1.go, to keep +// it distinct and therefore a different test. + +package main + +import "os" + +type rat struct { + num, den int64 // numerator, denominator +} + +type item interface { + pr() + eq(c item) bool +} + +func (u *rat) pr(){ + if u.den==1 { + print(u.num) + } else { + print(u.num, "/", u.den) + } + print(" ") +} + +func (u *rat) eq(c item) bool { + c1 := c.(*rat) + return u.num == c1.num && u.den == c1.den +} + +type dch struct { + req chan int + dat chan item + nam int +} + +type dch2 [2] *dch + +var chnames string +var chnameserial int +var seqno int + +func mkdch() *dch { + c := chnameserial % len(chnames) + chnameserial++ + d := new(dch) + d.req = make(chan int) + d.dat = make(chan item) + d.nam = c + return d +} + +func mkdch2() *dch2 { + d2 := new(dch2) + d2[0] = mkdch() + d2[1] = mkdch() + return d2 +} + +// split reads a single demand channel and replicates its +// output onto two, which may be read at different rates. +// A process is created at first demand for an item and dies +// after the item has been sent to both outputs. + +// When multiple generations of split exist, the newest +// will service requests on one channel, which is +// always renamed to be out[0]; the oldest will service +// requests on the other channel, out[1]. All generations but the +// newest hold queued data that has already been sent to +// out[0]. When data has finally been sent to out[1], +// a signal on the release-wait channel tells the next newer +// generation to begin servicing out[1]. + +func dosplit(in *dch, out *dch2, wait chan int ){ + both := false // do not service both channels + + select { + case <-out[0].req: + + case <-wait: + both = true + select { + case <-out[0].req: + + case <-out[1].req: + out[0],out[1] = out[1], out[0] + } + } + + seqno++ + in.req <- seqno + release := make(chan int) + go dosplit(in, out, release) + dat := <-in.dat + out[0].dat <- dat + if !both { + <-wait + } + <-out[1].req + out[1].dat <- dat + release <- 0 +} + +func split(in *dch, out *dch2){ + release := make(chan int) + go dosplit(in, out, release) + release <- 0 +} + +func put(dat item, out *dch){ + <-out.req + out.dat <- dat +} + +func get(in *dch) *rat { + seqno++ + in.req <- seqno + return (<-in.dat).(*rat) +} + +// Get one item from each of n demand channels + +func getn(in []*dch) []item { + n:=len(in) + if n != 2 { panic("bad n in getn") } + req := make([] chan int, 2) + dat := make([] chan item, 2) + out := make([]item, 2) + var i int + var it item + for i=0; i<n; i++ { + req[i] = in[i].req + dat[i] = nil + } + for n=2*n; n>0; n-- { + seqno++ + + select{ + case req[0] <- seqno: + dat[0] = in[0].dat + req[0] = nil + case req[1] <- seqno: + dat[1] = in[1].dat + req[1] = nil + case it = <-dat[0]: + out[0] = it + dat[0] = nil + case it = <-dat[1]: + out[1] = it + dat[1] = nil + } + } + return out +} + +// Get one item from each of 2 demand channels + +func get2(in0 *dch, in1 *dch) []item { + return getn([]*dch{in0, in1}) +} + +func copy(in *dch, out *dch){ + for { + <-out.req + out.dat <- get(in) + } +} + +func repeat(dat item, out *dch){ + for { + put(dat, out) + } +} + +type PS *dch // power series +type PS2 *[2] PS // pair of power series + +var Ones PS +var Twos PS + +func mkPS() *dch { + return mkdch() +} + +func mkPS2() *dch2 { + return mkdch2() +} + +// Conventions +// Upper-case for power series. +// Lower-case for rationals. +// Input variables: U,V,... +// Output variables: ...,Y,Z + +// Integer gcd; needed for rational arithmetic + +func gcd (u, v int64) int64{ + if u < 0 { return gcd(-u, v) } + if u == 0 { return v } + return gcd(v%u, u) +} + +// Make a rational from two ints and from one int + +func i2tor(u, v int64) *rat{ + g := gcd(u,v) + r := new(rat) + if v > 0 { + r.num = u/g + r.den = v/g + } else { + r.num = -u/g + r.den = -v/g + } + return r +} + +func itor(u int64) *rat{ + return i2tor(u, 1) +} + +var zero *rat +var one *rat + + +// End mark and end test + +var finis *rat + +func end(u *rat) int64 { + if u.den==0 { return 1 } + return 0 +} + +// Operations on rationals + +func add(u, v *rat) *rat { + g := gcd(u.den,v.den) + return i2tor(u.num*(v.den/g)+v.num*(u.den/g),u.den*(v.den/g)) +} + +func mul(u, v *rat) *rat{ + g1 := gcd(u.num,v.den) + g2 := gcd(u.den,v.num) + r := new(rat) + r.num =(u.num/g1)*(v.num/g2) + r.den = (u.den/g2)*(v.den/g1) + return r +} + +func neg(u *rat) *rat{ + return i2tor(-u.num, u.den) +} + +func sub(u, v *rat) *rat{ + return add(u, neg(v)) +} + +func inv(u *rat) *rat{ // invert a rat + if u.num == 0 { panic("zero divide in inv") } + return i2tor(u.den, u.num) +} + +// print eval in floating point of PS at x=c to n terms +func Evaln(c *rat, U PS, n int) { + xn := float64(1) + x := float64(c.num)/float64(c.den) + val := float64(0) + for i:=0; i<n; i++ { + u := get(U) + if end(u) != 0 { + break + } + val = val + x * float64(u.num)/float64(u.den) + xn = xn*x + } + print(val, "\n") +} + +// Print n terms of a power series +func Printn(U PS, n int){ + done := false + for ; !done && n>0; n-- { + u := get(U) + if end(u) != 0 { + done = true + } else { + u.pr() + } + } + print(("\n")) +} + +func Print(U PS){ + Printn(U,1000000000) +} + +// Evaluate n terms of power series U at x=c +func eval(c *rat, U PS, n int) *rat{ + if n==0 { return zero } + y := get(U) + if end(y) != 0 { return zero } + return add(y,mul(c,eval(c,U,n-1))) +} + +// Power-series constructors return channels on which power +// series flow. They start an encapsulated generator that +// puts the terms of the series on the channel. + +// Make a pair of power series identical to a given power series + +func Split(U PS) *dch2{ + UU := mkdch2() + go split(U,UU) + return UU +} + +// Add two power series +func Add(U, V PS) PS{ + Z := mkPS() + go func(U, V, Z PS){ + var uv [] item + for { + <-Z.req + uv = get2(U,V) + switch end(uv[0].(*rat))+2*end(uv[1].(*rat)) { + case 0: + Z.dat <- add(uv[0].(*rat), uv[1].(*rat)) + case 1: + Z.dat <- uv[1] + copy(V,Z) + case 2: + Z.dat <- uv[0] + copy(U,Z) + case 3: + Z.dat <- finis + } + } + }(U, V, Z) + return Z +} + +// Multiply a power series by a constant +func Cmul(c *rat,U PS) PS{ + Z := mkPS() + go func(c *rat, U, Z PS){ + done := false + for !done { + <-Z.req + u := get(U) + if end(u) != 0 { + done = true + } else { + Z.dat <- mul(c,u) + } + } + Z.dat <- finis + }(c, U, Z) + return Z +} + +// Subtract + +func Sub(U, V PS) PS{ + return Add(U, Cmul(neg(one), V)) +} + +// Multiply a power series by the monomial x^n + +func Monmul(U PS, n int) PS{ + Z := mkPS() + go func(n int, U PS, Z PS){ + for ; n>0; n-- { put(zero,Z) } + copy(U,Z) + }(n, U, Z) + return Z +} + +// Multiply by x + +func Xmul(U PS) PS{ + return Monmul(U,1) +} + +func Rep(c *rat) PS{ + Z := mkPS() + go repeat(c,Z) + return Z +} + +// Monomial c*x^n + +func Mon(c *rat, n int) PS{ + Z:=mkPS() + go func(c *rat, n int, Z PS){ + if(c.num!=0) { + for ; n>0; n=n-1 { put(zero,Z) } + put(c,Z) + } + put(finis,Z) + }(c, n, Z) + return Z +} + +func Shift(c *rat, U PS) PS{ + Z := mkPS() + go func(c *rat, U, Z PS){ + put(c,Z) + copy(U,Z) + }(c, U, Z) + return Z +} + +// simple pole at 1: 1/(1-x) = 1 1 1 1 1 ... + +// Convert array of coefficients, constant term first +// to a (finite) power series + +/* +func Poly(a [] *rat) PS{ + Z:=mkPS() + begin func(a [] *rat, Z PS){ + j:=0 + done:=0 + for j=len(a); !done&&j>0; j=j-1) + if(a[j-1].num!=0) done=1 + i:=0 + for(; i<j; i=i+1) put(a[i],Z) + put(finis,Z) + }() + return Z +} +*/ + +// Multiply. The algorithm is +// let U = u + x*UU +// let V = v + x*VV +// then UV = u*v + x*(u*VV+v*UU) + x*x*UU*VV + +func Mul(U, V PS) PS{ + Z:=mkPS() + go func(U, V, Z PS){ + <-Z.req + uv := get2(U,V) + if end(uv[0].(*rat))!=0 || end(uv[1].(*rat)) != 0 { + Z.dat <- finis + } else { + Z.dat <- mul(uv[0].(*rat),uv[1].(*rat)) + UU := Split(U) + VV := Split(V) + W := Add(Cmul(uv[0].(*rat),VV[0]),Cmul(uv[1].(*rat),UU[0])) + <-Z.req + Z.dat <- get(W) + copy(Add(W,Mul(UU[1],VV[1])),Z) + } + }(U, V, Z) + return Z +} + +// Differentiate + +func Diff(U PS) PS{ + Z:=mkPS() + go func(U, Z PS){ + <-Z.req + u := get(U) + if end(u) == 0 { + done:=false + for i:=1; !done; i++ { + u = get(U) + if end(u) != 0 { + done=true + } else { + Z.dat <- mul(itor(int64(i)),u) + <-Z.req + } + } + } + Z.dat <- finis + }(U, Z) + return Z +} + +// Integrate, with const of integration +func Integ(c *rat,U PS) PS{ + Z:=mkPS() + go func(c *rat, U, Z PS){ + put(c,Z) + done:=false + for i:=1; !done; i++ { + <-Z.req + u := get(U) + if end(u) != 0 { done= true } + Z.dat <- mul(i2tor(1,int64(i)),u) + } + Z.dat <- finis + }(c, U, Z) + return Z +} + +// Binomial theorem (1+x)^c + +func Binom(c *rat) PS{ + Z:=mkPS() + go func(c *rat, Z PS){ + n := 1 + t := itor(1) + for c.num!=0 { + put(t,Z) + t = mul(mul(t,c),i2tor(1,int64(n))) + c = sub(c,one) + n++ + } + put(finis,Z) + }(c, Z) + return Z +} + +// Reciprocal of a power series +// let U = u + x*UU +// let Z = z + x*ZZ +// (u+x*UU)*(z+x*ZZ) = 1 +// z = 1/u +// u*ZZ + z*UU +x*UU*ZZ = 0 +// ZZ = -UU*(z+x*ZZ)/u + +func Recip(U PS) PS{ + Z:=mkPS() + go func(U, Z PS){ + ZZ:=mkPS2() + <-Z.req + z := inv(get(U)) + Z.dat <- z + split(Mul(Cmul(neg(z),U),Shift(z,ZZ[0])),ZZ) + copy(ZZ[1],Z) + }(U, Z) + return Z +} + +// Exponential of a power series with constant term 0 +// (nonzero constant term would make nonrational coefficients) +// bug: the constant term is simply ignored +// Z = exp(U) +// DZ = Z*DU +// integrate to get Z + +func Exp(U PS) PS{ + ZZ := mkPS2() + split(Integ(one,Mul(ZZ[0],Diff(U))),ZZ) + return ZZ[1] +} + +// Substitute V for x in U, where the leading term of V is zero +// let U = u + x*UU +// let V = v + x*VV +// then S(U,V) = u + VV*S(V,UU) +// bug: a nonzero constant term is ignored + +func Subst(U, V PS) PS { + Z:= mkPS() + go func(U, V, Z PS) { + VV := Split(V) + <-Z.req + u := get(U) + Z.dat <- u + if end(u) == 0 { + if end(get(VV[0])) != 0 { + put(finis,Z) + } else { + copy(Mul(VV[0],Subst(U,VV[1])),Z) + } + } + }(U, V, Z) + return Z +} + +// Monomial Substition: U(c x^n) +// Each Ui is multiplied by c^i and followed by n-1 zeros + +func MonSubst(U PS, c0 *rat, n int) PS { + Z:= mkPS() + go func(U, Z PS, c0 *rat, n int) { + c := one + for { + <-Z.req + u := get(U) + Z.dat <- mul(u, c) + c = mul(c, c0) + if end(u) != 0 { + Z.dat <- finis + break + } + for i := 1; i < n; i++ { + <-Z.req + Z.dat <- zero + } + } + }(U, Z, c0, n) + return Z +} + + +func Init() { + chnameserial = -1 + seqno = 0 + chnames = "ABCDEFGHIJKLMNOPQRSTUVWXYZabcdefghijklmnopqrstuvwxyz" + zero = itor(0) + one = itor(1) + finis = i2tor(1,0) + Ones = Rep(one) + Twos = Rep(itor(2)) +} + +func check(U PS, c *rat, count int, str string) { + for i := 0; i < count; i++ { + r := get(U) + if !r.eq(c) { + print("got: ") + r.pr() + print("should get ") + c.pr() + print("\n") + panic(str) + } + } +} + +const N=10 +func checka(U PS, a []*rat, str string) { + for i := 0; i < N; i++ { + check(U, a[i], 1, str) + } +} + +func main() { + Init() + if len(os.Args) > 1 { // print + print("Ones: "); Printn(Ones, 10) + print("Twos: "); Printn(Twos, 10) + print("Add: "); Printn(Add(Ones, Twos), 10) + print("Diff: "); Printn(Diff(Ones), 10) + print("Integ: "); Printn(Integ(zero, Ones), 10) + print("CMul: "); Printn(Cmul(neg(one), Ones), 10) + print("Sub: "); Printn(Sub(Ones, Twos), 10) + print("Mul: "); Printn(Mul(Ones, Ones), 10) + print("Exp: "); Printn(Exp(Ones), 15) + print("MonSubst: "); Printn(MonSubst(Ones, neg(one), 2), 10) + print("ATan: "); Printn(Integ(zero, MonSubst(Ones, neg(one), 2)), 10) + } else { // test + check(Ones, one, 5, "Ones") + check(Add(Ones, Ones), itor(2), 0, "Add Ones Ones") // 1 1 1 1 1 + check(Add(Ones, Twos), itor(3), 0, "Add Ones Twos") // 3 3 3 3 3 + a := make([]*rat, N) + d := Diff(Ones) + for i:=0; i < N; i++ { + a[i] = itor(int64(i+1)) + } + checka(d, a, "Diff") // 1 2 3 4 5 + in := Integ(zero, Ones) + a[0] = zero // integration constant + for i:=1; i < N; i++ { + a[i] = i2tor(1, int64(i)) + } + checka(in, a, "Integ") // 0 1 1/2 1/3 1/4 1/5 + check(Cmul(neg(one), Twos), itor(-2), 10, "CMul") // -1 -1 -1 -1 -1 + check(Sub(Ones, Twos), itor(-1), 0, "Sub Ones Twos") // -1 -1 -1 -1 -1 + m := Mul(Ones, Ones) + for i:=0; i < N; i++ { + a[i] = itor(int64(i+1)) + } + checka(m, a, "Mul") // 1 2 3 4 5 + e := Exp(Ones) + a[0] = itor(1) + a[1] = itor(1) + a[2] = i2tor(3,2) + a[3] = i2tor(13,6) + a[4] = i2tor(73,24) + a[5] = i2tor(167,40) + a[6] = i2tor(4051,720) + a[7] = i2tor(37633,5040) + a[8] = i2tor(43817,4480) + a[9] = i2tor(4596553,362880) + checka(e, a, "Exp") // 1 1 3/2 13/6 73/24 + at := Integ(zero, MonSubst(Ones, neg(one), 2)) + for c, i := 1, 0; i < N; i++ { + if i%2 == 0 { + a[i] = zero + } else { + a[i] = i2tor(int64(c), int64(i)) + c *= -1 + } + } + checka(at, a, "ATan"); // 0 -1 0 -1/3 0 -1/5 +/* + t := Revert(Integ(zero, MonSubst(Ones, neg(one), 2))) + a[0] = zero + a[1] = itor(1) + a[2] = zero + a[3] = i2tor(1,3) + a[4] = zero + a[5] = i2tor(2,15) + a[6] = zero + a[7] = i2tor(17,315) + a[8] = zero + a[9] = i2tor(62,2835) + checka(t, a, "Tan") // 0 1 0 1/3 0 2/15 +*/ + } +} diff --git a/gcc/testsuite/go.test/test/chan/select.go b/gcc/testsuite/go.test/test/chan/select.go new file mode 100644 index 0000000..be4eb3f --- /dev/null +++ b/gcc/testsuite/go.test/test/chan/select.go @@ -0,0 +1,56 @@ +// $G $D/$F.go && $L $F.$A && ./$A.out + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package main + +var counter uint +var shift uint + +func GetValue() uint { + counter++ + return 1 << shift +} + +func Send(a, b chan uint) int { + var i int + +LOOP: + for { + select { + case a <- GetValue(): + i++ + a = nil + case b <- GetValue(): + i++ + b = nil + default: + break LOOP + } + shift++ + } + return i +} + +func main() { + a := make(chan uint, 1) + b := make(chan uint, 1) + if v := Send(a, b); v != 2 { + println("Send returned", v, "!= 2") + panic("fail") + } + if av, bv := <-a, <-b; av|bv != 3 { + println("bad values", av, bv) + panic("fail") + } + if v := Send(a, nil); v != 1 { + println("Send returned", v, "!= 1") + panic("fail") + } + if counter != 10 { + println("counter is", counter, "!= 10") + panic("fail") + } +} diff --git a/gcc/testsuite/go.test/test/chan/select2.go b/gcc/testsuite/go.test/test/chan/select2.go new file mode 100644 index 0000000..e24c51e --- /dev/null +++ b/gcc/testsuite/go.test/test/chan/select2.go @@ -0,0 +1,48 @@ +// $G $D/$F.go && $L $F.$A && ./$A.out + +// Copyright 2010 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package main + +import "runtime" + +func sender(c chan int, n int) { + for i := 0; i < n; i++ { + c <- 1 + } +} + +func receiver(c, dummy chan int, n int) { + for i := 0; i < n; i++ { + select { + case <-c: + // nothing + case <-dummy: + panic("dummy") + } + } +} + +func main() { + runtime.MemProfileRate = 0 + + c := make(chan int) + dummy := make(chan int) + + // warm up + go sender(c, 100000) + receiver(c, dummy, 100000) + runtime.GC() + runtime.MemStats.Alloc = 0 + + // second time shouldn't increase footprint by much + go sender(c, 100000) + receiver(c, dummy, 100000) + runtime.GC() + + if runtime.MemStats.Alloc > 1e5 { + println("BUG: too much memory for 100,000 selects:", runtime.MemStats.Alloc) + } +} diff --git a/gcc/testsuite/go.test/test/chan/select3.go b/gcc/testsuite/go.test/test/chan/select3.go new file mode 100644 index 0000000..a1a2ef5 --- /dev/null +++ b/gcc/testsuite/go.test/test/chan/select3.go @@ -0,0 +1,203 @@ +// $G $D/$F.go && $L $F.$A && ./$A.out + +// Copyright 2010 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +// Tests verifying the semantics of the select statement +// for basic empty/non-empty cases. + +package main + +import "time" + +const always = "function did not" +const never = "function did" + + +func unreachable() { + panic("control flow shouldn't reach here") +} + + +// Calls f and verifies that f always/never panics depending on signal. +func testPanic(signal string, f func()) { + defer func() { + s := never + if recover() != nil { + s = always // f panicked + } + if s != signal { + panic(signal + " panic") + } + }() + f() +} + + +// Calls f and empirically verifies that f always/never blocks depending on signal. +func testBlock(signal string, f func()) { + c := make(chan string) + go func() { + f() + c <- never // f didn't block + }() + go func() { + time.Sleep(1e8) // 0.1s seems plenty long + c <- always // f blocked always + }() + if <-c != signal { + panic(signal + " block") + } +} + + +func main() { + const async = 1 // asynchronous channels + var nilch chan int + closedch := make(chan int) + close(closedch) + + // sending/receiving from a nil channel outside a select panics + testPanic(always, func() { + nilch <- 7 + }) + testPanic(always, func() { + <-nilch + }) + + // sending/receiving from a nil channel inside a select never panics + testPanic(never, func() { + select { + case nilch <- 7: + unreachable() + default: + } + }) + testPanic(never, func() { + select { + case <-nilch: + unreachable() + default: + } + }) + + // sending to an async channel with free buffer space never blocks + testBlock(never, func() { + ch := make(chan int, async) + ch <- 7 + }) + + // receiving (a small number of times) from a closed channel never blocks + testBlock(never, func() { + for i := 0; i < 10; i++ { + if <-closedch != 0 { + panic("expected zero value when reading from closed channel") + } + } + }) + + // sending (a small number of times) to a closed channel is not specified + // but the current implementation doesn't block: test that different + // implementations behave the same + testBlock(never, func() { + for i := 0; i < 10; i++ { + closedch <- 7 + } + }) + + // receiving from a non-ready channel always blocks + testBlock(always, func() { + ch := make(chan int) + <-ch + }) + + // empty selects always block + testBlock(always, func() { + select { + } + }) + + // selects with only nil channels always block + testBlock(always, func() { + select { + case <-nilch: + unreachable() + } + }) + testBlock(always, func() { + select { + case nilch <- 7: + unreachable() + } + }) + testBlock(always, func() { + select { + case <-nilch: + unreachable() + case nilch <- 7: + unreachable() + } + }) + + // selects with non-ready non-nil channels always block + testBlock(always, func() { + ch := make(chan int) + select { + case <-ch: + unreachable() + } + }) + + // selects with default cases don't block + testBlock(never, func() { + select { + default: + } + }) + testBlock(never, func() { + select { + case <-nilch: + unreachable() + default: + } + }) + testBlock(never, func() { + select { + case nilch <- 7: + unreachable() + default: + } + }) + + // selects with ready channels don't block + testBlock(never, func() { + ch := make(chan int, async) + select { + case ch <- 7: + default: + unreachable() + } + }) + testBlock(never, func() { + ch := make(chan int, async) + ch <- 7 + select { + case <-ch: + default: + unreachable() + } + }) + + // selects with closed channels don't block + testBlock(never, func() { + select { + case <-closedch: + } + }) + testBlock(never, func() { + select { + case closedch <- 7: + } + }) +} diff --git a/gcc/testsuite/go.test/test/chan/sieve1.go b/gcc/testsuite/go.test/test/chan/sieve1.go new file mode 100644 index 0000000..55076c9 --- /dev/null +++ b/gcc/testsuite/go.test/test/chan/sieve1.go @@ -0,0 +1,54 @@ +// $G $D/$F.go && $L $F.$A && ./$A.out + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +// Generate primes up to 100 using channels, checking the results. +// This sieve consists of a linear chain of divisibility filters, +// equivalent to trial-dividing each n by all primes p ≤ n. + +package main + +// Send the sequence 2, 3, 4, ... to channel 'ch'. +func Generate(ch chan<- int) { + for i := 2; ; i++ { + ch <- i // Send 'i' to channel 'ch'. + } +} + +// Copy the values from channel 'in' to channel 'out', +// removing those divisible by 'prime'. +func Filter(in <-chan int, out chan<- int, prime int) { + for i := range in { // Loop over values received from 'in'. + if i%prime != 0 { + out <- i // Send 'i' to channel 'out'. + } + } +} + +// The prime sieve: Daisy-chain Filter processes together. +func Sieve(primes chan<- int) { + ch := make(chan int) // Create a new channel. + go Generate(ch) // Start Generate() as a subprocess. + for { + // Note that ch is different on each iteration. + prime := <-ch + primes <- prime + ch1 := make(chan int) + go Filter(ch, ch1, prime) + ch = ch1 + } +} + +func main() { + primes := make(chan int) + go Sieve(primes) + a := []int{2, 3, 5, 7, 11, 13, 17, 19, 23, 29, 31, 37, 41, 43, 47, 53, 59, 61, 67, 71, 73, 79, 83, 89, 97} + for i := 0; i < len(a); i++ { + if x := <-primes; x != a[i] { + println(x, " != ", a[i]) + panic("fail") + } + } +} diff --git a/gcc/testsuite/go.test/test/chan/sieve2.go b/gcc/testsuite/go.test/test/chan/sieve2.go new file mode 100644 index 0000000..7f2ed91 --- /dev/null +++ b/gcc/testsuite/go.test/test/chan/sieve2.go @@ -0,0 +1,172 @@ +// $G $D/$F.go && $L $F.$A && ./$A.out + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +// Generate primes up to 100 using channels, checking the results. +// This sieve is Eratosthenesque and only considers odd candidates. +// See discussion at <http://blog.onideas.ws/eratosthenes.go>. + +package main + +import ( + "container/heap" + "container/ring" + "container/vector" +) + +// Return a chan of odd numbers, starting from 5. +func odds() chan int { + out := make(chan int, 50) + go func() { + n := 5 + for { + out <- n + n += 2 + } + }() + return out +} + +// Return a chan of odd multiples of the prime number p, starting from p*p. +func multiples(p int) chan int { + out := make(chan int, 10) + go func() { + n := p * p + for { + out <- n + n += 2 * p + } + }() + return out +} + +type PeekCh struct { + head int + ch chan int +} + +// Heap of PeekCh, sorting by head values. +type PeekChHeap struct { + *vector.Vector +} + +func (h *PeekChHeap) Less(i, j int) bool { + return h.At(i).(*PeekCh).head < h.At(j).(*PeekCh).head +} + +// Return a channel to serve as a sending proxy to 'out'. +// Use a goroutine to receive values from 'out' and store them +// in an expanding buffer, so that sending to 'out' never blocks. +func sendproxy(out chan<- int) chan<- int { + proxy := make(chan int, 10) + go func() { + n := 16 // the allocated size of the circular queue + first := ring.New(n) + last := first + var c chan<- int + var e int + for { + c = out + if first == last { + // buffer empty: disable output + c = nil + } else { + e = first.Value.(int) + } + select { + case e = <-proxy: + last.Value = e + if last.Next() == first { + // buffer full: expand it + last.Link(ring.New(n)) + n *= 2 + } + last = last.Next() + case c <- e: + first = first.Next() + } + } + }() + return proxy +} + +// Return a chan int of primes. +func Sieve() chan int { + // The output values. + out := make(chan int, 10) + out <- 2 + out <- 3 + + // The channel of all composites to be eliminated in increasing order. + composites := make(chan int, 50) + + // The feedback loop. + primes := make(chan int, 10) + primes <- 3 + + // Merge channels of multiples of 'primes' into 'composites'. + go func() { + h := &PeekChHeap{new(vector.Vector)} + min := 15 + for { + m := multiples(<-primes) + head := <-m + for min < head { + composites <- min + minchan := heap.Pop(h).(*PeekCh) + min = minchan.head + minchan.head = <-minchan.ch + heap.Push(h, minchan) + } + for min == head { + minchan := heap.Pop(h).(*PeekCh) + min = minchan.head + minchan.head = <-minchan.ch + heap.Push(h, minchan) + } + composites <- head + heap.Push(h, &PeekCh{<-m, m}) + } + }() + + // Sieve out 'composites' from 'candidates'. + go func() { + // In order to generate the nth prime we only need multiples of + // primes ≤ sqrt(nth prime). Thus, the merging goroutine will + // receive from 'primes' much slower than this goroutine + // will send to it, making the buffer accumulate and block this + // goroutine from sending, causing a deadlock. The solution is to + // use a proxy goroutine to do automatic buffering. + primes := sendproxy(primes) + + candidates := odds() + p := <-candidates + + for { + c := <-composites + for p < c { + primes <- p + out <- p + p = <-candidates + } + if p == c { + p = <-candidates + } + } + }() + + return out +} + +func main() { + primes := Sieve() + a := []int{2, 3, 5, 7, 11, 13, 17, 19, 23, 29, 31, 37, 41, 43, 47, 53, 59, 61, 67, 71, 73, 79, 83, 89, 97} + for i := 0; i < len(a); i++ { + if x := <-primes; x != a[i] { + println(x, " != ", a[i]) + panic("fail") + } + } +} diff --git a/gcc/testsuite/go.test/test/chancap.go b/gcc/testsuite/go.test/test/chancap.go new file mode 100644 index 0000000..3f3789f --- /dev/null +++ b/gcc/testsuite/go.test/test/chancap.go @@ -0,0 +1,29 @@ +// $G $D/$F.go && $L $F.$A && ./$A.out + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package main + +func main() { + c := make(chan int, 10) + if len(c) != 0 || cap(c) != 10 { + println("chan len/cap ", len(c), cap(c), " want 0 10") + panic("fail") + } + + for i := 0; i < 3; i++ { + c <- i + } + if len(c) != 3 || cap(c) != 10 { + println("chan len/cap ", len(c), cap(c), " want 3 10") + panic("fail") + } + + c = make(chan int) + if len(c) != 0 || cap(c) != 0 { + println("chan len/cap ", len(c), cap(c), " want 0 0") + panic("fail") + } +} diff --git a/gcc/testsuite/go.test/test/char_lit.go b/gcc/testsuite/go.test/test/char_lit.go new file mode 100644 index 0000000..99be77a --- /dev/null +++ b/gcc/testsuite/go.test/test/char_lit.go @@ -0,0 +1,43 @@ +// $G $F.go && $L $F.$A &&./$A.out + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package main + +import "os" + +func main() { + var i uint64 = + ' ' + + 'a' + + 'ä' + + '本' + + '\a' + + '\b' + + '\f' + + '\n' + + '\r' + + '\t' + + '\v' + + '\\' + + '\'' + + '\000' + + '\123' + + '\x00' + + '\xca' + + '\xFE' + + '\u0123' + + '\ubabe' + + '\U0010FFFF' + + '\U000ebabe' + if '\U000ebabe' != 0x000ebabe { + print("ebabe wrong\n") + os.Exit(1) + } + if i != 0x20e213 { + print("number is ", i, " should be ", 0x20e213, "\n") + os.Exit(1) + } +} diff --git a/gcc/testsuite/go.test/test/char_lit1.go b/gcc/testsuite/go.test/test/char_lit1.go new file mode 100644 index 0000000..dc53852 --- /dev/null +++ b/gcc/testsuite/go.test/test/char_lit1.go @@ -0,0 +1,25 @@ +// errchk $G -e $F.go + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package main + +const ( + // check that surrogate pair elements are invalid + // (d800-dbff, dc00-dfff). + _ = '\ud7ff' // ok + _ = '\ud800' // ERROR "Unicode|unicode" + _ = "\U0000D999" // ERROR "Unicode|unicode" + _ = '\udc01' // ERROR "Unicode|unicode" + _ = '\U0000dddd' // ERROR "Unicode|unicode" + _ = '\udfff' // ERROR "Unicode|unicode" + _ = '\ue000' // ok + _ = '\U0010ffff' // ok + _ = '\U00110000' // ERROR "Unicode|unicode" + _ = "abc\U0010ffffdef" // ok + _ = "abc\U00110000def" // ERROR "Unicode|unicode" + _ = '\Uffffffff' // ERROR "Unicode|unicode" +) + diff --git a/gcc/testsuite/go.test/test/closedchan.go b/gcc/testsuite/go.test/test/closedchan.go new file mode 100644 index 0000000..c7c759b --- /dev/null +++ b/gcc/testsuite/go.test/test/closedchan.go @@ -0,0 +1,197 @@ +// $G $D/$F.go && $L $F.$A && ./$A.out + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +// Test close(c), closed(c). +// +// TODO(rsc): Doesn't check behavior of close(c) when there +// are blocked senders/receivers. + +package main + +type Chan interface { + Send(int) + Nbsend(int) bool + Recv() int + Nbrecv() (int, bool) + Close() + Closed() bool + Impl() string +} + +// direct channel operations +type XChan chan int +func (c XChan) Send(x int) { + c <- x +} + +func (c XChan) Nbsend(x int) bool { + return c <- x +} + +func (c XChan) Recv() int { + return <-c +} + +func (c XChan) Nbrecv() (int, bool) { + x, ok := <-c + return x, ok +} + +func (c XChan) Close() { + close(c) +} + +func (c XChan) Closed() bool { + return closed(c) +} + +func (c XChan) Impl() string { + return "(<- operator)" +} + +// indirect operations via select +type SChan chan int +func (c SChan) Send(x int) { + select { + case c <- x: + } +} + +func (c SChan) Nbsend(x int) bool { + select { + case c <- x: + return true + default: + return false + } + panic("nbsend") +} + +func (c SChan) Recv() int { + select { + case x := <-c: + return x + } + panic("recv") +} + +func (c SChan) Nbrecv() (int, bool) { + select { + case x := <-c: + return x, true + default: + return 0, false + } + panic("nbrecv") +} + +func (c SChan) Close() { + close(c) +} + +func (c SChan) Closed() bool { + return closed(c) +} + +func (c SChan) Impl() string { + return "(select)" +} + +func test1(c Chan) { + // not closed until the close signal (a zero value) has been received. + if c.Closed() { + println("test1: Closed before Recv zero:", c.Impl()) + } + + for i := 0; i < 3; i++ { + // recv a close signal (a zero value) + if x := c.Recv(); x != 0 { + println("test1: recv on closed got non-zero:", x, c.Impl()) + } + + // should now be closed. + if !c.Closed() { + println("test1: not closed after recv zero", c.Impl()) + } + + // should work with ,ok: received a value without blocking, so ok == true. + x, ok := c.Nbrecv() + if !ok { + println("test1: recv on closed got not ok", c.Impl()) + } + if x != 0 { + println("test1: recv ,ok on closed got non-zero:", x, c.Impl()) + } + } + + // send should work with ,ok too: sent a value without blocking, so ok == true. + ok := c.Nbsend(1) + if !ok { + println("test1: send on closed got not ok", c.Impl()) + } + + // but the value should have been discarded. + if x := c.Recv(); x != 0 { + println("test1: recv on closed got non-zero after send on closed:", x, c.Impl()) + } + + // similarly Send. + c.Send(2) + if x := c.Recv(); x != 0 { + println("test1: recv on closed got non-zero after send on closed:", x, c.Impl()) + } +} + +func testasync1(c Chan) { + // not closed until the close signal (a zero value) has been received. + if c.Closed() { + println("testasync1: Closed before Recv zero:", c.Impl()) + } + + // should be able to get the last value via Recv + if x := c.Recv(); x != 1 { + println("testasync1: Recv did not get 1:", x, c.Impl()) + } + + test1(c) +} + +func testasync2(c Chan) { + // not closed until the close signal (a zero value) has been received. + if c.Closed() { + println("testasync2: Closed before Recv zero:", c.Impl()) + } + + // should be able to get the last value via Nbrecv + if x, ok := c.Nbrecv(); !ok || x != 1 { + println("testasync2: Nbrecv did not get 1, true:", x, ok, c.Impl()) + } + + test1(c) +} + +func closedsync() chan int { + c := make(chan int) + close(c) + return c +} + +func closedasync() chan int { + c := make(chan int, 2) + c <- 1 + close(c) + return c +} + +func main() { + test1(XChan(closedsync())) + test1(SChan(closedsync())) + + testasync1(XChan(closedasync())) + testasync1(SChan(closedasync())) + testasync2(XChan(closedasync())) + testasync2(SChan(closedasync())) +} diff --git a/gcc/testsuite/go.test/test/closure.go b/gcc/testsuite/go.test/test/closure.go new file mode 100644 index 0000000..54e4cf8 --- /dev/null +++ b/gcc/testsuite/go.test/test/closure.go @@ -0,0 +1,101 @@ +// $G $D/$F.go && $L $F.$A && ./$A.out + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package main + +var c = make(chan int) + +func check(a []int) { + for i := 0; i < len(a); i++ { + n := <-c + if n != a[i] { + println("want", a[i], "got", n, "at", i) + panic("fail") + } + } +} + +func f() { + var i, j int + + i = 1 + j = 2 + f := func() { + c <- i + i = 4 + g := func() { + c <- i + c <- j + } + g() + c <- i + } + j = 5 + f() +} + +// Accumulator generator +func accum(n int) func(int) int { + return func(i int) int { + n += i + return n + } +} + +func g(a, b func(int) int) { + c <- a(2) + c <- b(3) + c <- a(4) + c <- b(5) +} + +func h() { + var x8 byte = 100 + var x64 int64 = 200 + + c <- int(x8) + c <- int(x64) + f := func(z int) { + g := func() { + c <- int(x8) + c <- int(x64) + c <- z + } + g() + c <- int(x8) + c <- int(x64) + c <- int(z) + } + x8 = 101 + x64 = 201 + f(500) +} + +func newfunc() func(int) int { return func(x int) int { return x } } + + +func main() { + go f() + check([]int{1, 4, 5, 4}) + + a := accum(0) + b := accum(1) + go g(a, b) + check([]int{2, 4, 6, 9}) + + go h() + check([]int{100, 200, 101, 201, 500, 101, 201, 500}) + + x, y := newfunc(), newfunc() + if x == y { + println("newfunc returned same func") + panic("fail") + } + if x(1) != 1 || y(2) != 2 { + println("newfunc returned broken funcs") + panic("fail") + } +} diff --git a/gcc/testsuite/go.test/test/cmp1.go b/gcc/testsuite/go.test/test/cmp1.go new file mode 100644 index 0000000..db0a486 --- /dev/null +++ b/gcc/testsuite/go.test/test/cmp1.go @@ -0,0 +1,76 @@ +// $G $D/$F.go && $L $F.$A && ./$A.out + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package main + +import "unsafe" + +func use(bool) {} + +func stringptr(s string) uintptr { return *(*uintptr)(unsafe.Pointer(&s)) } + +func isfalse(b bool) { + if b { + // stack will explain where + panic("wanted false, got true") + } +} + +func istrue(b bool) { + if !b { + // stack will explain where + panic("wanted true, got false") + } +} + +func main() { + var a []int + var b map[string]int + + var c string = "hello" + var d string = "hel" // try to get different pointer + d = d + "lo" + if stringptr(c) == stringptr(d) { + panic("compiler too smart -- got same string") + } + + var e = make(chan int) + + var ia interface{} = a + var ib interface{} = b + var ic interface{} = c + var id interface{} = d + var ie interface{} = e + + // these comparisons are okay because + // string compare is okay and the others + // are comparisons where the types differ. + isfalse(ia == ib) + isfalse(ia == ic) + isfalse(ia == id) + isfalse(ib == ic) + isfalse(ib == id) + istrue(ic == id) + istrue(ie == ie) + + // 6g used to let this go through as true. + var g uint64 = 123 + var h int64 = 123 + var ig interface{} = g + var ih interface{} = h + isfalse(ig == ih) + + // map of interface should use == on interface values, + // not memory. + // TODO: should m[c], m[d] be valid here? + var m = make(map[interface{}]int) + m[ic] = 1 + m[id] = 2 + if m[ic] != 2 { + println("m[ic] = ", m[ic]) + panic("bad m[ic]") + } +} diff --git a/gcc/testsuite/go.test/test/cmp2.go b/gcc/testsuite/go.test/test/cmp2.go new file mode 100644 index 0000000..f6f124f --- /dev/null +++ b/gcc/testsuite/go.test/test/cmp2.go @@ -0,0 +1,15 @@ +// $G $D/$F.go && $L $F.$A && ! ./$A.out + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package main + +func use(bool) { } + +func main() { + var a []int + var ia interface{} = a + use(ia == ia) +} diff --git a/gcc/testsuite/go.test/test/cmp3.go b/gcc/testsuite/go.test/test/cmp3.go new file mode 100644 index 0000000..dd90bfb --- /dev/null +++ b/gcc/testsuite/go.test/test/cmp3.go @@ -0,0 +1,15 @@ +// $G $D/$F.go && $L $F.$A && ! ./$A.out + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package main + +func use(bool) { } + +func main() { + var b []int + var ib interface{} = b + use(ib == ib) +} diff --git a/gcc/testsuite/go.test/test/cmp4.go b/gcc/testsuite/go.test/test/cmp4.go new file mode 100644 index 0000000..3f9b2c0 --- /dev/null +++ b/gcc/testsuite/go.test/test/cmp4.go @@ -0,0 +1,14 @@ +// $G $D/$F.go && $L $F.$A && ! ./$A.out + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package main + +func main() { + var a []int + var ia interface{} = a + var m = make(map[interface{}] int) + m[ia] = 1 +} diff --git a/gcc/testsuite/go.test/test/cmp5.go b/gcc/testsuite/go.test/test/cmp5.go new file mode 100644 index 0000000..3a7d733 --- /dev/null +++ b/gcc/testsuite/go.test/test/cmp5.go @@ -0,0 +1,14 @@ +// $G $D/$F.go && $L $F.$A && ! ./$A.out + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package main + +func main() { + var b []int + var ib interface{} = b + var m = make(map[interface{}] int) + m[ib] = 1 +} diff --git a/gcc/testsuite/go.test/test/cmplx.go b/gcc/testsuite/go.test/test/cmplx.go new file mode 100644 index 0000000..6262c68 --- /dev/null +++ b/gcc/testsuite/go.test/test/cmplx.go @@ -0,0 +1,31 @@ +// errchk $G -e $D/$F.go + +// Copyright 2010 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package main + +var ( + f float + f32 float32 + f64 float64 + + c complex + c64 complex64 + c128 complex128 +) + +func main() { + // ok + c = cmplx(f, f) + c64 = cmplx(f32, f32) + c128 = cmplx(f64, f64) + + _ = cmplx(f, f32) // ERROR "cmplx" + _ = cmplx(f, f64) // ERROR "cmplx" + _ = cmplx(f32, f) // ERROR "cmplx" + _ = cmplx(f32, f64) // ERROR "cmplx" + _ = cmplx(f64, f) // ERROR "cmplx" + _ = cmplx(f64, f32) // ERROR "cmplx" +} diff --git a/gcc/testsuite/go.test/test/cmplxdivide.c b/gcc/testsuite/go.test/test/cmplxdivide.c new file mode 100644 index 0000000..b3c6055 --- /dev/null +++ b/gcc/testsuite/go.test/test/cmplxdivide.c @@ -0,0 +1,82 @@ +// Copyright 2010 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +// gcc '-std=c99' cmplxdivide.c && a.out >cmplxdivide1.go + +#include <complex.h> +#include <math.h> +#include <stdio.h> +#include <string.h> + +#define nelem(x) (sizeof(x)/sizeof((x)[0])) + +double f[] = { + 0, + 1, + -1, + 2, + NAN, + INFINITY, + -INFINITY, +}; + +char* +fmt(double g) +{ + static char buf[10][30]; + static int n; + char *p; + + p = buf[n++]; + if(n == 10) + n = 0; + sprintf(p, "%g", g); + if(strcmp(p, "-0") == 0) + strcpy(p, "negzero"); + return p; +} + +int +iscnan(double complex d) +{ + return !isinf(creal(d)) && !isinf(cimag(d)) && (isnan(creal(d)) || isnan(cimag(d))); +} + +double complex zero; // attempt to hide zero division from gcc + +int +main(void) +{ + int i, j, k, l; + double complex n, d, q; + + printf("// # generated by cmplxdivide.c\n"); + printf("\n"); + printf("package main\n"); + printf("var tests = []Test{\n"); + for(i=0; i<nelem(f); i++) + for(j=0; j<nelem(f); j++) + for(k=0; k<nelem(f); k++) + for(l=0; l<nelem(f); l++) { + n = f[i] + f[j]*I; + d = f[k] + f[l]*I; + q = n/d; + + // BUG FIX. + // Gcc gets the wrong answer for NaN/0 unless both sides are NaN. + // That is, it treats (NaN+NaN*I)/0 = NaN+NaN*I (a complex NaN) + // but it then computes (1+NaN*I)/0 = Inf+NaN*I (a complex infinity). + // Since both numerators are complex NaNs, it seems that the + // results should agree in kind. Override the gcc computation in this case. + if(iscnan(n) && d == 0) + q = (NAN+NAN*I) / zero; + + printf("\tTest{cmplx(%s, %s), cmplx(%s, %s), cmplx(%s, %s)},\n", + fmt(creal(n)), fmt(cimag(n)), + fmt(creal(d)), fmt(cimag(d)), + fmt(creal(q)), fmt(cimag(q))); + } + printf("}\n"); + return 0; +} diff --git a/gcc/testsuite/go.test/test/cmplxdivide.go b/gcc/testsuite/go.test/test/cmplxdivide.go new file mode 100644 index 0000000..6a67b17 --- /dev/null +++ b/gcc/testsuite/go.test/test/cmplxdivide.go @@ -0,0 +1,48 @@ +// $G $D/$F.go $D/cmplxdivide1.go && $L $D/$F.$A && ./$A.out + +// Copyright 2010 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +// Driver for complex division table defined in cmplxdivide1.go + +package main + +import ( + "cmath" + "fmt" + "math" +) + +type Test struct{ + f, g complex128 + out complex128 +} + +var nan = math.NaN() +var inf = math.Inf(1) +var negzero = math.Copysign(0, -1) + +func calike(a, b complex128) bool { + switch { + case cmath.IsInf(a) && cmath.IsInf(b): + return true + case cmath.IsNaN(a) && cmath.IsNaN(b): + return true + } + return a == b +} + +func main() { + bad := false + for _, t := range tests { + x := t.f/t.g + if !calike(x, t.out) { + if !bad { + fmt.Printf("BUG\n") + bad = true + } + fmt.Printf("%v/%v: expected %v error; got %v\n", t.f, t.g, t.out, x) + } + } +} diff --git a/gcc/testsuite/go.test/test/cmplxdivide1.go b/gcc/testsuite/go.test/test/cmplxdivide1.go new file mode 100644 index 0000000..96ea704 --- /dev/null +++ b/gcc/testsuite/go.test/test/cmplxdivide1.go @@ -0,0 +1,2407 @@ +// # generated by cmplxdivide.c + +package main + +var tests = []Test{ + Test{cmplx(0, 0), cmplx(0, 0), cmplx(nan, nan)}, + Test{cmplx(0, 0), cmplx(0, 1), cmplx(0, 0)}, + Test{cmplx(0, 0), cmplx(0, -1), cmplx(negzero, 0)}, + Test{cmplx(0, 0), cmplx(0, 2), cmplx(0, 0)}, + Test{cmplx(0, 0), cmplx(0, nan), cmplx(nan, nan)}, + Test{cmplx(0, 0), cmplx(0, inf), cmplx(0, 0)}, + Test{cmplx(0, 0), cmplx(0, -inf), cmplx(negzero, 0)}, + Test{cmplx(0, 0), cmplx(1, 0), cmplx(0, 0)}, + Test{cmplx(0, 0), cmplx(1, 1), cmplx(0, 0)}, + Test{cmplx(0, 0), cmplx(1, -1), cmplx(0, 0)}, + Test{cmplx(0, 0), cmplx(1, 2), cmplx(0, 0)}, + Test{cmplx(0, 0), cmplx(1, nan), cmplx(nan, nan)}, + Test{cmplx(0, 0), cmplx(1, inf), cmplx(0, 0)}, + Test{cmplx(0, 0), cmplx(1, -inf), cmplx(negzero, 0)}, + Test{cmplx(0, 0), cmplx(-1, 0), cmplx(negzero, negzero)}, + Test{cmplx(0, 0), cmplx(-1, 1), cmplx(negzero, negzero)}, + Test{cmplx(0, 0), cmplx(-1, -1), cmplx(negzero, negzero)}, + Test{cmplx(0, 0), cmplx(-1, 2), cmplx(0, negzero)}, + Test{cmplx(0, 0), cmplx(-1, nan), cmplx(nan, nan)}, + Test{cmplx(0, 0), cmplx(-1, inf), cmplx(0, negzero)}, + Test{cmplx(0, 0), cmplx(-1, -inf), cmplx(negzero, negzero)}, + Test{cmplx(0, 0), cmplx(2, 0), cmplx(0, 0)}, + Test{cmplx(0, 0), cmplx(2, 1), cmplx(0, 0)}, + Test{cmplx(0, 0), cmplx(2, -1), cmplx(0, 0)}, + Test{cmplx(0, 0), cmplx(2, 2), cmplx(0, 0)}, + Test{cmplx(0, 0), cmplx(2, nan), cmplx(nan, nan)}, + Test{cmplx(0, 0), cmplx(2, inf), cmplx(0, 0)}, + Test{cmplx(0, 0), cmplx(2, -inf), cmplx(negzero, 0)}, + Test{cmplx(0, 0), cmplx(nan, 0), cmplx(nan, nan)}, + Test{cmplx(0, 0), cmplx(nan, 1), cmplx(nan, nan)}, + Test{cmplx(0, 0), cmplx(nan, -1), cmplx(nan, nan)}, + Test{cmplx(0, 0), cmplx(nan, 2), cmplx(nan, nan)}, + Test{cmplx(0, 0), cmplx(nan, nan), cmplx(nan, nan)}, + Test{cmplx(0, 0), cmplx(nan, inf), cmplx(0, 0)}, + Test{cmplx(0, 0), cmplx(nan, -inf), cmplx(0, 0)}, + Test{cmplx(0, 0), cmplx(inf, 0), cmplx(0, 0)}, + Test{cmplx(0, 0), cmplx(inf, 1), cmplx(0, 0)}, + Test{cmplx(0, 0), cmplx(inf, -1), cmplx(0, 0)}, + Test{cmplx(0, 0), cmplx(inf, 2), cmplx(0, 0)}, + Test{cmplx(0, 0), cmplx(inf, nan), cmplx(0, 0)}, + Test{cmplx(0, 0), cmplx(inf, inf), cmplx(0, 0)}, + Test{cmplx(0, 0), cmplx(inf, -inf), cmplx(0, 0)}, + Test{cmplx(0, 0), cmplx(-inf, 0), cmplx(negzero, negzero)}, + Test{cmplx(0, 0), cmplx(-inf, 1), cmplx(negzero, negzero)}, + Test{cmplx(0, 0), cmplx(-inf, -1), cmplx(negzero, negzero)}, + Test{cmplx(0, 0), cmplx(-inf, 2), cmplx(negzero, negzero)}, + Test{cmplx(0, 0), cmplx(-inf, nan), cmplx(0, negzero)}, + Test{cmplx(0, 0), cmplx(-inf, inf), cmplx(0, negzero)}, + Test{cmplx(0, 0), cmplx(-inf, -inf), cmplx(negzero, 0)}, + Test{cmplx(0, 1), cmplx(0, 0), cmplx(nan, inf)}, + Test{cmplx(0, 1), cmplx(0, 1), cmplx(1, 0)}, + Test{cmplx(0, 1), cmplx(0, -1), cmplx(-1, 0)}, + Test{cmplx(0, 1), cmplx(0, 2), cmplx(0.5, 0)}, + Test{cmplx(0, 1), cmplx(0, nan), cmplx(nan, nan)}, + Test{cmplx(0, 1), cmplx(0, inf), cmplx(0, 0)}, + Test{cmplx(0, 1), cmplx(0, -inf), cmplx(negzero, 0)}, + Test{cmplx(0, 1), cmplx(1, 0), cmplx(0, 1)}, + Test{cmplx(0, 1), cmplx(1, 1), cmplx(0.5, 0.5)}, + Test{cmplx(0, 1), cmplx(1, -1), cmplx(-0.5, 0.5)}, + Test{cmplx(0, 1), cmplx(1, 2), cmplx(0.4, 0.2)}, + Test{cmplx(0, 1), cmplx(1, nan), cmplx(nan, nan)}, + Test{cmplx(0, 1), cmplx(1, inf), cmplx(0, 0)}, + Test{cmplx(0, 1), cmplx(1, -inf), cmplx(negzero, 0)}, + Test{cmplx(0, 1), cmplx(-1, 0), cmplx(negzero, -1)}, + Test{cmplx(0, 1), cmplx(-1, 1), cmplx(0.5, -0.5)}, + Test{cmplx(0, 1), cmplx(-1, -1), cmplx(-0.5, -0.5)}, + Test{cmplx(0, 1), cmplx(-1, 2), cmplx(0.4, -0.2)}, + Test{cmplx(0, 1), cmplx(-1, nan), cmplx(nan, nan)}, + Test{cmplx(0, 1), cmplx(-1, inf), cmplx(0, negzero)}, + Test{cmplx(0, 1), cmplx(-1, -inf), cmplx(negzero, negzero)}, + Test{cmplx(0, 1), cmplx(2, 0), cmplx(0, 0.5)}, + Test{cmplx(0, 1), cmplx(2, 1), cmplx(0.2, 0.4)}, + Test{cmplx(0, 1), cmplx(2, -1), cmplx(-0.2, 0.4)}, + Test{cmplx(0, 1), cmplx(2, 2), cmplx(0.25, 0.25)}, + Test{cmplx(0, 1), cmplx(2, nan), cmplx(nan, nan)}, + Test{cmplx(0, 1), cmplx(2, inf), cmplx(0, 0)}, + Test{cmplx(0, 1), cmplx(2, -inf), cmplx(negzero, 0)}, + Test{cmplx(0, 1), cmplx(nan, 0), cmplx(nan, nan)}, + Test{cmplx(0, 1), cmplx(nan, 1), cmplx(nan, nan)}, + Test{cmplx(0, 1), cmplx(nan, -1), cmplx(nan, nan)}, + Test{cmplx(0, 1), cmplx(nan, 2), cmplx(nan, nan)}, + Test{cmplx(0, 1), cmplx(nan, nan), cmplx(nan, nan)}, + Test{cmplx(0, 1), cmplx(nan, inf), cmplx(0, 0)}, + Test{cmplx(0, 1), cmplx(nan, -inf), cmplx(negzero, 0)}, + Test{cmplx(0, 1), cmplx(inf, 0), cmplx(0, 0)}, + Test{cmplx(0, 1), cmplx(inf, 1), cmplx(0, 0)}, + Test{cmplx(0, 1), cmplx(inf, -1), cmplx(0, 0)}, + Test{cmplx(0, 1), cmplx(inf, 2), cmplx(0, 0)}, + Test{cmplx(0, 1), cmplx(inf, nan), cmplx(0, 0)}, + Test{cmplx(0, 1), cmplx(inf, inf), cmplx(0, 0)}, + Test{cmplx(0, 1), cmplx(inf, -inf), cmplx(negzero, 0)}, + Test{cmplx(0, 1), cmplx(-inf, 0), cmplx(negzero, negzero)}, + Test{cmplx(0, 1), cmplx(-inf, 1), cmplx(negzero, negzero)}, + Test{cmplx(0, 1), cmplx(-inf, -1), cmplx(negzero, negzero)}, + Test{cmplx(0, 1), cmplx(-inf, 2), cmplx(negzero, negzero)}, + Test{cmplx(0, 1), cmplx(-inf, nan), cmplx(0, negzero)}, + Test{cmplx(0, 1), cmplx(-inf, inf), cmplx(0, negzero)}, + Test{cmplx(0, 1), cmplx(-inf, -inf), cmplx(negzero, negzero)}, + Test{cmplx(0, -1), cmplx(0, 0), cmplx(nan, -inf)}, + Test{cmplx(0, -1), cmplx(0, 1), cmplx(-1, negzero)}, + Test{cmplx(0, -1), cmplx(0, -1), cmplx(1, negzero)}, + Test{cmplx(0, -1), cmplx(0, 2), cmplx(-0.5, negzero)}, + Test{cmplx(0, -1), cmplx(0, nan), cmplx(nan, nan)}, + Test{cmplx(0, -1), cmplx(0, inf), cmplx(negzero, negzero)}, + Test{cmplx(0, -1), cmplx(0, -inf), cmplx(0, negzero)}, + Test{cmplx(0, -1), cmplx(1, 0), cmplx(0, -1)}, + Test{cmplx(0, -1), cmplx(1, 1), cmplx(-0.5, -0.5)}, + Test{cmplx(0, -1), cmplx(1, -1), cmplx(0.5, -0.5)}, + Test{cmplx(0, -1), cmplx(1, 2), cmplx(-0.4, -0.2)}, + Test{cmplx(0, -1), cmplx(1, nan), cmplx(nan, nan)}, + Test{cmplx(0, -1), cmplx(1, inf), cmplx(negzero, negzero)}, + Test{cmplx(0, -1), cmplx(1, -inf), cmplx(0, negzero)}, + Test{cmplx(0, -1), cmplx(-1, 0), cmplx(negzero, 1)}, + Test{cmplx(0, -1), cmplx(-1, 1), cmplx(-0.5, 0.5)}, + Test{cmplx(0, -1), cmplx(-1, -1), cmplx(0.5, 0.5)}, + Test{cmplx(0, -1), cmplx(-1, 2), cmplx(-0.4, 0.2)}, + Test{cmplx(0, -1), cmplx(-1, nan), cmplx(nan, nan)}, + Test{cmplx(0, -1), cmplx(-1, inf), cmplx(negzero, 0)}, + Test{cmplx(0, -1), cmplx(-1, -inf), cmplx(0, 0)}, + Test{cmplx(0, -1), cmplx(2, 0), cmplx(0, -0.5)}, + Test{cmplx(0, -1), cmplx(2, 1), cmplx(-0.2, -0.4)}, + Test{cmplx(0, -1), cmplx(2, -1), cmplx(0.2, -0.4)}, + Test{cmplx(0, -1), cmplx(2, 2), cmplx(-0.25, -0.25)}, + Test{cmplx(0, -1), cmplx(2, nan), cmplx(nan, nan)}, + Test{cmplx(0, -1), cmplx(2, inf), cmplx(negzero, negzero)}, + Test{cmplx(0, -1), cmplx(2, -inf), cmplx(0, negzero)}, + Test{cmplx(0, -1), cmplx(nan, 0), cmplx(nan, nan)}, + Test{cmplx(0, -1), cmplx(nan, 1), cmplx(nan, nan)}, + Test{cmplx(0, -1), cmplx(nan, -1), cmplx(nan, nan)}, + Test{cmplx(0, -1), cmplx(nan, 2), cmplx(nan, nan)}, + Test{cmplx(0, -1), cmplx(nan, nan), cmplx(nan, nan)}, + Test{cmplx(0, -1), cmplx(nan, inf), cmplx(negzero, negzero)}, + Test{cmplx(0, -1), cmplx(nan, -inf), cmplx(0, 0)}, + Test{cmplx(0, -1), cmplx(inf, 0), cmplx(0, negzero)}, + Test{cmplx(0, -1), cmplx(inf, 1), cmplx(0, negzero)}, + Test{cmplx(0, -1), cmplx(inf, -1), cmplx(0, negzero)}, + Test{cmplx(0, -1), cmplx(inf, 2), cmplx(0, negzero)}, + Test{cmplx(0, -1), cmplx(inf, nan), cmplx(0, negzero)}, + Test{cmplx(0, -1), cmplx(inf, inf), cmplx(negzero, negzero)}, + Test{cmplx(0, -1), cmplx(inf, -inf), cmplx(0, negzero)}, + Test{cmplx(0, -1), cmplx(-inf, 0), cmplx(negzero, 0)}, + Test{cmplx(0, -1), cmplx(-inf, 1), cmplx(negzero, 0)}, + Test{cmplx(0, -1), cmplx(-inf, -1), cmplx(negzero, 0)}, + Test{cmplx(0, -1), cmplx(-inf, 2), cmplx(negzero, 0)}, + Test{cmplx(0, -1), cmplx(-inf, nan), cmplx(negzero, 0)}, + Test{cmplx(0, -1), cmplx(-inf, inf), cmplx(negzero, 0)}, + Test{cmplx(0, -1), cmplx(-inf, -inf), cmplx(0, 0)}, + Test{cmplx(0, 2), cmplx(0, 0), cmplx(nan, inf)}, + Test{cmplx(0, 2), cmplx(0, 1), cmplx(2, 0)}, + Test{cmplx(0, 2), cmplx(0, -1), cmplx(-2, 0)}, + Test{cmplx(0, 2), cmplx(0, 2), cmplx(1, 0)}, + Test{cmplx(0, 2), cmplx(0, nan), cmplx(nan, nan)}, + Test{cmplx(0, 2), cmplx(0, inf), cmplx(0, 0)}, + Test{cmplx(0, 2), cmplx(0, -inf), cmplx(negzero, 0)}, + Test{cmplx(0, 2), cmplx(1, 0), cmplx(0, 2)}, + Test{cmplx(0, 2), cmplx(1, 1), cmplx(1, 1)}, + Test{cmplx(0, 2), cmplx(1, -1), cmplx(-1, 1)}, + Test{cmplx(0, 2), cmplx(1, 2), cmplx(0.8, 0.4)}, + Test{cmplx(0, 2), cmplx(1, nan), cmplx(nan, nan)}, + Test{cmplx(0, 2), cmplx(1, inf), cmplx(0, 0)}, + Test{cmplx(0, 2), cmplx(1, -inf), cmplx(negzero, 0)}, + Test{cmplx(0, 2), cmplx(-1, 0), cmplx(negzero, -2)}, + Test{cmplx(0, 2), cmplx(-1, 1), cmplx(1, -1)}, + Test{cmplx(0, 2), cmplx(-1, -1), cmplx(-1, -1)}, + Test{cmplx(0, 2), cmplx(-1, 2), cmplx(0.8, -0.4)}, + Test{cmplx(0, 2), cmplx(-1, nan), cmplx(nan, nan)}, + Test{cmplx(0, 2), cmplx(-1, inf), cmplx(0, negzero)}, + Test{cmplx(0, 2), cmplx(-1, -inf), cmplx(negzero, negzero)}, + Test{cmplx(0, 2), cmplx(2, 0), cmplx(0, 1)}, + Test{cmplx(0, 2), cmplx(2, 1), cmplx(0.4, 0.8)}, + Test{cmplx(0, 2), cmplx(2, -1), cmplx(-0.4, 0.8)}, + Test{cmplx(0, 2), cmplx(2, 2), cmplx(0.5, 0.5)}, + Test{cmplx(0, 2), cmplx(2, nan), cmplx(nan, nan)}, + Test{cmplx(0, 2), cmplx(2, inf), cmplx(0, 0)}, + Test{cmplx(0, 2), cmplx(2, -inf), cmplx(negzero, 0)}, + Test{cmplx(0, 2), cmplx(nan, 0), cmplx(nan, nan)}, + Test{cmplx(0, 2), cmplx(nan, 1), cmplx(nan, nan)}, + Test{cmplx(0, 2), cmplx(nan, -1), cmplx(nan, nan)}, + Test{cmplx(0, 2), cmplx(nan, 2), cmplx(nan, nan)}, + Test{cmplx(0, 2), cmplx(nan, nan), cmplx(nan, nan)}, + Test{cmplx(0, 2), cmplx(nan, inf), cmplx(0, 0)}, + Test{cmplx(0, 2), cmplx(nan, -inf), cmplx(negzero, 0)}, + Test{cmplx(0, 2), cmplx(inf, 0), cmplx(0, 0)}, + Test{cmplx(0, 2), cmplx(inf, 1), cmplx(0, 0)}, + Test{cmplx(0, 2), cmplx(inf, -1), cmplx(0, 0)}, + Test{cmplx(0, 2), cmplx(inf, 2), cmplx(0, 0)}, + Test{cmplx(0, 2), cmplx(inf, nan), cmplx(0, 0)}, + Test{cmplx(0, 2), cmplx(inf, inf), cmplx(0, 0)}, + Test{cmplx(0, 2), cmplx(inf, -inf), cmplx(negzero, 0)}, + Test{cmplx(0, 2), cmplx(-inf, 0), cmplx(negzero, negzero)}, + Test{cmplx(0, 2), cmplx(-inf, 1), cmplx(negzero, negzero)}, + Test{cmplx(0, 2), cmplx(-inf, -1), cmplx(negzero, negzero)}, + Test{cmplx(0, 2), cmplx(-inf, 2), cmplx(negzero, negzero)}, + Test{cmplx(0, 2), cmplx(-inf, nan), cmplx(0, negzero)}, + Test{cmplx(0, 2), cmplx(-inf, inf), cmplx(0, negzero)}, + Test{cmplx(0, 2), cmplx(-inf, -inf), cmplx(negzero, negzero)}, + Test{cmplx(0, nan), cmplx(0, 0), cmplx(nan, nan)}, + Test{cmplx(0, nan), cmplx(0, 1), cmplx(nan, nan)}, + Test{cmplx(0, nan), cmplx(0, -1), cmplx(nan, nan)}, + Test{cmplx(0, nan), cmplx(0, 2), cmplx(nan, nan)}, + Test{cmplx(0, nan), cmplx(0, nan), cmplx(nan, nan)}, + Test{cmplx(0, nan), cmplx(0, inf), cmplx(nan, nan)}, + Test{cmplx(0, nan), cmplx(0, -inf), cmplx(nan, nan)}, + Test{cmplx(0, nan), cmplx(1, 0), cmplx(nan, nan)}, + Test{cmplx(0, nan), cmplx(1, 1), cmplx(nan, nan)}, + Test{cmplx(0, nan), cmplx(1, -1), cmplx(nan, nan)}, + Test{cmplx(0, nan), cmplx(1, 2), cmplx(nan, nan)}, + Test{cmplx(0, nan), cmplx(1, nan), cmplx(nan, nan)}, + Test{cmplx(0, nan), cmplx(1, inf), cmplx(nan, nan)}, + Test{cmplx(0, nan), cmplx(1, -inf), cmplx(nan, nan)}, + Test{cmplx(0, nan), cmplx(-1, 0), cmplx(nan, nan)}, + Test{cmplx(0, nan), cmplx(-1, 1), cmplx(nan, nan)}, + Test{cmplx(0, nan), cmplx(-1, -1), cmplx(nan, nan)}, + Test{cmplx(0, nan), cmplx(-1, 2), cmplx(nan, nan)}, + Test{cmplx(0, nan), cmplx(-1, nan), cmplx(nan, nan)}, + Test{cmplx(0, nan), cmplx(-1, inf), cmplx(nan, nan)}, + Test{cmplx(0, nan), cmplx(-1, -inf), cmplx(nan, nan)}, + Test{cmplx(0, nan), cmplx(2, 0), cmplx(nan, nan)}, + Test{cmplx(0, nan), cmplx(2, 1), cmplx(nan, nan)}, + Test{cmplx(0, nan), cmplx(2, -1), cmplx(nan, nan)}, + Test{cmplx(0, nan), cmplx(2, 2), cmplx(nan, nan)}, + Test{cmplx(0, nan), cmplx(2, nan), cmplx(nan, nan)}, + Test{cmplx(0, nan), cmplx(2, inf), cmplx(nan, nan)}, + Test{cmplx(0, nan), cmplx(2, -inf), cmplx(nan, nan)}, + Test{cmplx(0, nan), cmplx(nan, 0), cmplx(nan, nan)}, + Test{cmplx(0, nan), cmplx(nan, 1), cmplx(nan, nan)}, + Test{cmplx(0, nan), cmplx(nan, -1), cmplx(nan, nan)}, + Test{cmplx(0, nan), cmplx(nan, 2), cmplx(nan, nan)}, + Test{cmplx(0, nan), cmplx(nan, nan), cmplx(nan, nan)}, + Test{cmplx(0, nan), cmplx(nan, inf), cmplx(nan, nan)}, + Test{cmplx(0, nan), cmplx(nan, -inf), cmplx(nan, nan)}, + Test{cmplx(0, nan), cmplx(inf, 0), cmplx(nan, nan)}, + Test{cmplx(0, nan), cmplx(inf, 1), cmplx(nan, nan)}, + Test{cmplx(0, nan), cmplx(inf, -1), cmplx(nan, nan)}, + Test{cmplx(0, nan), cmplx(inf, 2), cmplx(nan, nan)}, + Test{cmplx(0, nan), cmplx(inf, nan), cmplx(nan, nan)}, + Test{cmplx(0, nan), cmplx(inf, inf), cmplx(nan, nan)}, + Test{cmplx(0, nan), cmplx(inf, -inf), cmplx(nan, nan)}, + Test{cmplx(0, nan), cmplx(-inf, 0), cmplx(nan, nan)}, + Test{cmplx(0, nan), cmplx(-inf, 1), cmplx(nan, nan)}, + Test{cmplx(0, nan), cmplx(-inf, -1), cmplx(nan, nan)}, + Test{cmplx(0, nan), cmplx(-inf, 2), cmplx(nan, nan)}, + Test{cmplx(0, nan), cmplx(-inf, nan), cmplx(nan, nan)}, + Test{cmplx(0, nan), cmplx(-inf, inf), cmplx(nan, nan)}, + Test{cmplx(0, nan), cmplx(-inf, -inf), cmplx(nan, nan)}, + Test{cmplx(0, inf), cmplx(0, 0), cmplx(nan, inf)}, + Test{cmplx(0, inf), cmplx(0, 1), cmplx(inf, nan)}, + Test{cmplx(0, inf), cmplx(0, -1), cmplx(-inf, nan)}, + Test{cmplx(0, inf), cmplx(0, 2), cmplx(inf, nan)}, + Test{cmplx(0, inf), cmplx(0, nan), cmplx(nan, nan)}, + Test{cmplx(0, inf), cmplx(0, inf), cmplx(nan, nan)}, + Test{cmplx(0, inf), cmplx(0, -inf), cmplx(nan, nan)}, + Test{cmplx(0, inf), cmplx(1, 0), cmplx(nan, inf)}, + Test{cmplx(0, inf), cmplx(1, 1), cmplx(inf, inf)}, + Test{cmplx(0, inf), cmplx(1, -1), cmplx(-inf, inf)}, + Test{cmplx(0, inf), cmplx(1, 2), cmplx(inf, inf)}, + Test{cmplx(0, inf), cmplx(1, nan), cmplx(nan, nan)}, + Test{cmplx(0, inf), cmplx(1, inf), cmplx(nan, nan)}, + Test{cmplx(0, inf), cmplx(1, -inf), cmplx(nan, nan)}, + Test{cmplx(0, inf), cmplx(-1, 0), cmplx(nan, -inf)}, + Test{cmplx(0, inf), cmplx(-1, 1), cmplx(inf, -inf)}, + Test{cmplx(0, inf), cmplx(-1, -1), cmplx(-inf, -inf)}, + Test{cmplx(0, inf), cmplx(-1, 2), cmplx(inf, -inf)}, + Test{cmplx(0, inf), cmplx(-1, nan), cmplx(nan, nan)}, + Test{cmplx(0, inf), cmplx(-1, inf), cmplx(nan, nan)}, + Test{cmplx(0, inf), cmplx(-1, -inf), cmplx(nan, nan)}, + Test{cmplx(0, inf), cmplx(2, 0), cmplx(nan, inf)}, + Test{cmplx(0, inf), cmplx(2, 1), cmplx(inf, inf)}, + Test{cmplx(0, inf), cmplx(2, -1), cmplx(-inf, inf)}, + Test{cmplx(0, inf), cmplx(2, 2), cmplx(inf, inf)}, + Test{cmplx(0, inf), cmplx(2, nan), cmplx(nan, nan)}, + Test{cmplx(0, inf), cmplx(2, inf), cmplx(nan, nan)}, + Test{cmplx(0, inf), cmplx(2, -inf), cmplx(nan, nan)}, + Test{cmplx(0, inf), cmplx(nan, 0), cmplx(nan, nan)}, + Test{cmplx(0, inf), cmplx(nan, 1), cmplx(nan, nan)}, + Test{cmplx(0, inf), cmplx(nan, -1), cmplx(nan, nan)}, + Test{cmplx(0, inf), cmplx(nan, 2), cmplx(nan, nan)}, + Test{cmplx(0, inf), cmplx(nan, nan), cmplx(nan, nan)}, + Test{cmplx(0, inf), cmplx(nan, inf), cmplx(nan, nan)}, + Test{cmplx(0, inf), cmplx(nan, -inf), cmplx(nan, nan)}, + Test{cmplx(0, inf), cmplx(inf, 0), cmplx(nan, nan)}, + Test{cmplx(0, inf), cmplx(inf, 1), cmplx(nan, nan)}, + Test{cmplx(0, inf), cmplx(inf, -1), cmplx(nan, nan)}, + Test{cmplx(0, inf), cmplx(inf, 2), cmplx(nan, nan)}, + Test{cmplx(0, inf), cmplx(inf, nan), cmplx(nan, nan)}, + Test{cmplx(0, inf), cmplx(inf, inf), cmplx(nan, nan)}, + Test{cmplx(0, inf), cmplx(inf, -inf), cmplx(nan, nan)}, + Test{cmplx(0, inf), cmplx(-inf, 0), cmplx(nan, nan)}, + Test{cmplx(0, inf), cmplx(-inf, 1), cmplx(nan, nan)}, + Test{cmplx(0, inf), cmplx(-inf, -1), cmplx(nan, nan)}, + Test{cmplx(0, inf), cmplx(-inf, 2), cmplx(nan, nan)}, + Test{cmplx(0, inf), cmplx(-inf, nan), cmplx(nan, nan)}, + Test{cmplx(0, inf), cmplx(-inf, inf), cmplx(nan, nan)}, + Test{cmplx(0, inf), cmplx(-inf, -inf), cmplx(nan, nan)}, + Test{cmplx(0, -inf), cmplx(0, 0), cmplx(nan, -inf)}, + Test{cmplx(0, -inf), cmplx(0, 1), cmplx(-inf, nan)}, + Test{cmplx(0, -inf), cmplx(0, -1), cmplx(inf, nan)}, + Test{cmplx(0, -inf), cmplx(0, 2), cmplx(-inf, nan)}, + Test{cmplx(0, -inf), cmplx(0, nan), cmplx(nan, nan)}, + Test{cmplx(0, -inf), cmplx(0, inf), cmplx(nan, nan)}, + Test{cmplx(0, -inf), cmplx(0, -inf), cmplx(nan, nan)}, + Test{cmplx(0, -inf), cmplx(1, 0), cmplx(nan, -inf)}, + Test{cmplx(0, -inf), cmplx(1, 1), cmplx(-inf, -inf)}, + Test{cmplx(0, -inf), cmplx(1, -1), cmplx(inf, -inf)}, + Test{cmplx(0, -inf), cmplx(1, 2), cmplx(-inf, -inf)}, + Test{cmplx(0, -inf), cmplx(1, nan), cmplx(nan, nan)}, + Test{cmplx(0, -inf), cmplx(1, inf), cmplx(nan, nan)}, + Test{cmplx(0, -inf), cmplx(1, -inf), cmplx(nan, nan)}, + Test{cmplx(0, -inf), cmplx(-1, 0), cmplx(nan, inf)}, + Test{cmplx(0, -inf), cmplx(-1, 1), cmplx(-inf, inf)}, + Test{cmplx(0, -inf), cmplx(-1, -1), cmplx(inf, inf)}, + Test{cmplx(0, -inf), cmplx(-1, 2), cmplx(-inf, inf)}, + Test{cmplx(0, -inf), cmplx(-1, nan), cmplx(nan, nan)}, + Test{cmplx(0, -inf), cmplx(-1, inf), cmplx(nan, nan)}, + Test{cmplx(0, -inf), cmplx(-1, -inf), cmplx(nan, nan)}, + Test{cmplx(0, -inf), cmplx(2, 0), cmplx(nan, -inf)}, + Test{cmplx(0, -inf), cmplx(2, 1), cmplx(-inf, -inf)}, + Test{cmplx(0, -inf), cmplx(2, -1), cmplx(inf, -inf)}, + Test{cmplx(0, -inf), cmplx(2, 2), cmplx(-inf, -inf)}, + Test{cmplx(0, -inf), cmplx(2, nan), cmplx(nan, nan)}, + Test{cmplx(0, -inf), cmplx(2, inf), cmplx(nan, nan)}, + Test{cmplx(0, -inf), cmplx(2, -inf), cmplx(nan, nan)}, + Test{cmplx(0, -inf), cmplx(nan, 0), cmplx(nan, nan)}, + Test{cmplx(0, -inf), cmplx(nan, 1), cmplx(nan, nan)}, + Test{cmplx(0, -inf), cmplx(nan, -1), cmplx(nan, nan)}, + Test{cmplx(0, -inf), cmplx(nan, 2), cmplx(nan, nan)}, + Test{cmplx(0, -inf), cmplx(nan, nan), cmplx(nan, nan)}, + Test{cmplx(0, -inf), cmplx(nan, inf), cmplx(nan, nan)}, + Test{cmplx(0, -inf), cmplx(nan, -inf), cmplx(nan, nan)}, + Test{cmplx(0, -inf), cmplx(inf, 0), cmplx(nan, nan)}, + Test{cmplx(0, -inf), cmplx(inf, 1), cmplx(nan, nan)}, + Test{cmplx(0, -inf), cmplx(inf, -1), cmplx(nan, nan)}, + Test{cmplx(0, -inf), cmplx(inf, 2), cmplx(nan, nan)}, + Test{cmplx(0, -inf), cmplx(inf, nan), cmplx(nan, nan)}, + Test{cmplx(0, -inf), cmplx(inf, inf), cmplx(nan, nan)}, + Test{cmplx(0, -inf), cmplx(inf, -inf), cmplx(nan, nan)}, + Test{cmplx(0, -inf), cmplx(-inf, 0), cmplx(nan, nan)}, + Test{cmplx(0, -inf), cmplx(-inf, 1), cmplx(nan, nan)}, + Test{cmplx(0, -inf), cmplx(-inf, -1), cmplx(nan, nan)}, + Test{cmplx(0, -inf), cmplx(-inf, 2), cmplx(nan, nan)}, + Test{cmplx(0, -inf), cmplx(-inf, nan), cmplx(nan, nan)}, + Test{cmplx(0, -inf), cmplx(-inf, inf), cmplx(nan, nan)}, + Test{cmplx(0, -inf), cmplx(-inf, -inf), cmplx(nan, nan)}, + Test{cmplx(1, 0), cmplx(0, 0), cmplx(inf, nan)}, + Test{cmplx(1, 0), cmplx(0, 1), cmplx(0, -1)}, + Test{cmplx(1, 0), cmplx(0, -1), cmplx(negzero, 1)}, + Test{cmplx(1, 0), cmplx(0, 2), cmplx(0, -0.5)}, + Test{cmplx(1, 0), cmplx(0, nan), cmplx(nan, nan)}, + Test{cmplx(1, 0), cmplx(0, inf), cmplx(0, negzero)}, + Test{cmplx(1, 0), cmplx(0, -inf), cmplx(negzero, 0)}, + Test{cmplx(1, 0), cmplx(1, 0), cmplx(1, 0)}, + Test{cmplx(1, 0), cmplx(1, 1), cmplx(0.5, -0.5)}, + Test{cmplx(1, 0), cmplx(1, -1), cmplx(0.5, 0.5)}, + Test{cmplx(1, 0), cmplx(1, 2), cmplx(0.2, -0.4)}, + Test{cmplx(1, 0), cmplx(1, nan), cmplx(nan, nan)}, + Test{cmplx(1, 0), cmplx(1, inf), cmplx(0, negzero)}, + Test{cmplx(1, 0), cmplx(1, -inf), cmplx(negzero, 0)}, + Test{cmplx(1, 0), cmplx(-1, 0), cmplx(-1, negzero)}, + Test{cmplx(1, 0), cmplx(-1, 1), cmplx(-0.5, -0.5)}, + Test{cmplx(1, 0), cmplx(-1, -1), cmplx(-0.5, 0.5)}, + Test{cmplx(1, 0), cmplx(-1, 2), cmplx(-0.2, -0.4)}, + Test{cmplx(1, 0), cmplx(-1, nan), cmplx(nan, nan)}, + Test{cmplx(1, 0), cmplx(-1, inf), cmplx(0, negzero)}, + Test{cmplx(1, 0), cmplx(-1, -inf), cmplx(negzero, 0)}, + Test{cmplx(1, 0), cmplx(2, 0), cmplx(0.5, 0)}, + Test{cmplx(1, 0), cmplx(2, 1), cmplx(0.4, -0.2)}, + Test{cmplx(1, 0), cmplx(2, -1), cmplx(0.4, 0.2)}, + Test{cmplx(1, 0), cmplx(2, 2), cmplx(0.25, -0.25)}, + Test{cmplx(1, 0), cmplx(2, nan), cmplx(nan, nan)}, + Test{cmplx(1, 0), cmplx(2, inf), cmplx(0, negzero)}, + Test{cmplx(1, 0), cmplx(2, -inf), cmplx(negzero, 0)}, + Test{cmplx(1, 0), cmplx(nan, 0), cmplx(nan, nan)}, + Test{cmplx(1, 0), cmplx(nan, 1), cmplx(nan, nan)}, + Test{cmplx(1, 0), cmplx(nan, -1), cmplx(nan, nan)}, + Test{cmplx(1, 0), cmplx(nan, 2), cmplx(nan, nan)}, + Test{cmplx(1, 0), cmplx(nan, nan), cmplx(nan, nan)}, + Test{cmplx(1, 0), cmplx(nan, inf), cmplx(0, negzero)}, + Test{cmplx(1, 0), cmplx(nan, -inf), cmplx(0, 0)}, + Test{cmplx(1, 0), cmplx(inf, 0), cmplx(0, 0)}, + Test{cmplx(1, 0), cmplx(inf, 1), cmplx(0, 0)}, + Test{cmplx(1, 0), cmplx(inf, -1), cmplx(0, 0)}, + Test{cmplx(1, 0), cmplx(inf, 2), cmplx(0, 0)}, + Test{cmplx(1, 0), cmplx(inf, nan), cmplx(0, 0)}, + Test{cmplx(1, 0), cmplx(inf, inf), cmplx(0, negzero)}, + Test{cmplx(1, 0), cmplx(inf, -inf), cmplx(0, 0)}, + Test{cmplx(1, 0), cmplx(-inf, 0), cmplx(negzero, negzero)}, + Test{cmplx(1, 0), cmplx(-inf, 1), cmplx(negzero, negzero)}, + Test{cmplx(1, 0), cmplx(-inf, -1), cmplx(negzero, negzero)}, + Test{cmplx(1, 0), cmplx(-inf, 2), cmplx(negzero, negzero)}, + Test{cmplx(1, 0), cmplx(-inf, nan), cmplx(negzero, negzero)}, + Test{cmplx(1, 0), cmplx(-inf, inf), cmplx(negzero, negzero)}, + Test{cmplx(1, 0), cmplx(-inf, -inf), cmplx(negzero, 0)}, + Test{cmplx(1, 1), cmplx(0, 0), cmplx(inf, inf)}, + Test{cmplx(1, 1), cmplx(0, 1), cmplx(1, -1)}, + Test{cmplx(1, 1), cmplx(0, -1), cmplx(-1, 1)}, + Test{cmplx(1, 1), cmplx(0, 2), cmplx(0.5, -0.5)}, + Test{cmplx(1, 1), cmplx(0, nan), cmplx(nan, nan)}, + Test{cmplx(1, 1), cmplx(0, inf), cmplx(0, negzero)}, + Test{cmplx(1, 1), cmplx(0, -inf), cmplx(negzero, 0)}, + Test{cmplx(1, 1), cmplx(1, 0), cmplx(1, 1)}, + Test{cmplx(1, 1), cmplx(1, 1), cmplx(1, 0)}, + Test{cmplx(1, 1), cmplx(1, -1), cmplx(0, 1)}, + Test{cmplx(1, 1), cmplx(1, 2), cmplx(0.6, -0.2)}, + Test{cmplx(1, 1), cmplx(1, nan), cmplx(nan, nan)}, + Test{cmplx(1, 1), cmplx(1, inf), cmplx(0, negzero)}, + Test{cmplx(1, 1), cmplx(1, -inf), cmplx(negzero, 0)}, + Test{cmplx(1, 1), cmplx(-1, 0), cmplx(-1, -1)}, + Test{cmplx(1, 1), cmplx(-1, 1), cmplx(negzero, -1)}, + Test{cmplx(1, 1), cmplx(-1, -1), cmplx(-1, negzero)}, + Test{cmplx(1, 1), cmplx(-1, 2), cmplx(0.2, -0.6)}, + Test{cmplx(1, 1), cmplx(-1, nan), cmplx(nan, nan)}, + Test{cmplx(1, 1), cmplx(-1, inf), cmplx(0, negzero)}, + Test{cmplx(1, 1), cmplx(-1, -inf), cmplx(negzero, 0)}, + Test{cmplx(1, 1), cmplx(2, 0), cmplx(0.5, 0.5)}, + Test{cmplx(1, 1), cmplx(2, 1), cmplx(0.6, 0.2)}, + Test{cmplx(1, 1), cmplx(2, -1), cmplx(0.2, 0.6)}, + Test{cmplx(1, 1), cmplx(2, 2), cmplx(0.5, 0)}, + Test{cmplx(1, 1), cmplx(2, nan), cmplx(nan, nan)}, + Test{cmplx(1, 1), cmplx(2, inf), cmplx(0, negzero)}, + Test{cmplx(1, 1), cmplx(2, -inf), cmplx(negzero, 0)}, + Test{cmplx(1, 1), cmplx(nan, 0), cmplx(nan, nan)}, + Test{cmplx(1, 1), cmplx(nan, 1), cmplx(nan, nan)}, + Test{cmplx(1, 1), cmplx(nan, -1), cmplx(nan, nan)}, + Test{cmplx(1, 1), cmplx(nan, 2), cmplx(nan, nan)}, + Test{cmplx(1, 1), cmplx(nan, nan), cmplx(nan, nan)}, + Test{cmplx(1, 1), cmplx(nan, inf), cmplx(0, negzero)}, + Test{cmplx(1, 1), cmplx(nan, -inf), cmplx(negzero, 0)}, + Test{cmplx(1, 1), cmplx(inf, 0), cmplx(0, 0)}, + Test{cmplx(1, 1), cmplx(inf, 1), cmplx(0, 0)}, + Test{cmplx(1, 1), cmplx(inf, -1), cmplx(0, 0)}, + Test{cmplx(1, 1), cmplx(inf, 2), cmplx(0, 0)}, + Test{cmplx(1, 1), cmplx(inf, nan), cmplx(0, 0)}, + Test{cmplx(1, 1), cmplx(inf, inf), cmplx(0, 0)}, + Test{cmplx(1, 1), cmplx(inf, -inf), cmplx(0, 0)}, + Test{cmplx(1, 1), cmplx(-inf, 0), cmplx(negzero, negzero)}, + Test{cmplx(1, 1), cmplx(-inf, 1), cmplx(negzero, negzero)}, + Test{cmplx(1, 1), cmplx(-inf, -1), cmplx(negzero, negzero)}, + Test{cmplx(1, 1), cmplx(-inf, 2), cmplx(negzero, negzero)}, + Test{cmplx(1, 1), cmplx(-inf, nan), cmplx(negzero, negzero)}, + Test{cmplx(1, 1), cmplx(-inf, inf), cmplx(0, negzero)}, + Test{cmplx(1, 1), cmplx(-inf, -inf), cmplx(negzero, 0)}, + Test{cmplx(1, -1), cmplx(0, 0), cmplx(inf, -inf)}, + Test{cmplx(1, -1), cmplx(0, 1), cmplx(-1, -1)}, + Test{cmplx(1, -1), cmplx(0, -1), cmplx(1, 1)}, + Test{cmplx(1, -1), cmplx(0, 2), cmplx(-0.5, -0.5)}, + Test{cmplx(1, -1), cmplx(0, nan), cmplx(nan, nan)}, + Test{cmplx(1, -1), cmplx(0, inf), cmplx(negzero, negzero)}, + Test{cmplx(1, -1), cmplx(0, -inf), cmplx(0, 0)}, + Test{cmplx(1, -1), cmplx(1, 0), cmplx(1, -1)}, + Test{cmplx(1, -1), cmplx(1, 1), cmplx(0, -1)}, + Test{cmplx(1, -1), cmplx(1, -1), cmplx(1, 0)}, + Test{cmplx(1, -1), cmplx(1, 2), cmplx(-0.2, -0.6)}, + Test{cmplx(1, -1), cmplx(1, nan), cmplx(nan, nan)}, + Test{cmplx(1, -1), cmplx(1, inf), cmplx(negzero, negzero)}, + Test{cmplx(1, -1), cmplx(1, -inf), cmplx(0, 0)}, + Test{cmplx(1, -1), cmplx(-1, 0), cmplx(-1, 1)}, + Test{cmplx(1, -1), cmplx(-1, 1), cmplx(-1, negzero)}, + Test{cmplx(1, -1), cmplx(-1, -1), cmplx(negzero, 1)}, + Test{cmplx(1, -1), cmplx(-1, 2), cmplx(-0.6, -0.2)}, + Test{cmplx(1, -1), cmplx(-1, nan), cmplx(nan, nan)}, + Test{cmplx(1, -1), cmplx(-1, inf), cmplx(negzero, negzero)}, + Test{cmplx(1, -1), cmplx(-1, -inf), cmplx(0, 0)}, + Test{cmplx(1, -1), cmplx(2, 0), cmplx(0.5, -0.5)}, + Test{cmplx(1, -1), cmplx(2, 1), cmplx(0.2, -0.6)}, + Test{cmplx(1, -1), cmplx(2, -1), cmplx(0.6, -0.2)}, + Test{cmplx(1, -1), cmplx(2, 2), cmplx(0, -0.5)}, + Test{cmplx(1, -1), cmplx(2, nan), cmplx(nan, nan)}, + Test{cmplx(1, -1), cmplx(2, inf), cmplx(negzero, negzero)}, + Test{cmplx(1, -1), cmplx(2, -inf), cmplx(0, 0)}, + Test{cmplx(1, -1), cmplx(nan, 0), cmplx(nan, nan)}, + Test{cmplx(1, -1), cmplx(nan, 1), cmplx(nan, nan)}, + Test{cmplx(1, -1), cmplx(nan, -1), cmplx(nan, nan)}, + Test{cmplx(1, -1), cmplx(nan, 2), cmplx(nan, nan)}, + Test{cmplx(1, -1), cmplx(nan, nan), cmplx(nan, nan)}, + Test{cmplx(1, -1), cmplx(nan, inf), cmplx(negzero, negzero)}, + Test{cmplx(1, -1), cmplx(nan, -inf), cmplx(0, 0)}, + Test{cmplx(1, -1), cmplx(inf, 0), cmplx(0, negzero)}, + Test{cmplx(1, -1), cmplx(inf, 1), cmplx(0, negzero)}, + Test{cmplx(1, -1), cmplx(inf, -1), cmplx(0, negzero)}, + Test{cmplx(1, -1), cmplx(inf, 2), cmplx(0, negzero)}, + Test{cmplx(1, -1), cmplx(inf, nan), cmplx(0, negzero)}, + Test{cmplx(1, -1), cmplx(inf, inf), cmplx(0, negzero)}, + Test{cmplx(1, -1), cmplx(inf, -inf), cmplx(0, 0)}, + Test{cmplx(1, -1), cmplx(-inf, 0), cmplx(negzero, 0)}, + Test{cmplx(1, -1), cmplx(-inf, 1), cmplx(negzero, 0)}, + Test{cmplx(1, -1), cmplx(-inf, -1), cmplx(negzero, 0)}, + Test{cmplx(1, -1), cmplx(-inf, 2), cmplx(negzero, 0)}, + Test{cmplx(1, -1), cmplx(-inf, nan), cmplx(negzero, 0)}, + Test{cmplx(1, -1), cmplx(-inf, inf), cmplx(negzero, 0)}, + Test{cmplx(1, -1), cmplx(-inf, -inf), cmplx(0, 0)}, + Test{cmplx(1, 2), cmplx(0, 0), cmplx(inf, inf)}, + Test{cmplx(1, 2), cmplx(0, 1), cmplx(2, -1)}, + Test{cmplx(1, 2), cmplx(0, -1), cmplx(-2, 1)}, + Test{cmplx(1, 2), cmplx(0, 2), cmplx(1, -0.5)}, + Test{cmplx(1, 2), cmplx(0, nan), cmplx(nan, nan)}, + Test{cmplx(1, 2), cmplx(0, inf), cmplx(0, negzero)}, + Test{cmplx(1, 2), cmplx(0, -inf), cmplx(negzero, 0)}, + Test{cmplx(1, 2), cmplx(1, 0), cmplx(1, 2)}, + Test{cmplx(1, 2), cmplx(1, 1), cmplx(1.5, 0.5)}, + Test{cmplx(1, 2), cmplx(1, -1), cmplx(-0.5, 1.5)}, + Test{cmplx(1, 2), cmplx(1, 2), cmplx(1, 0)}, + Test{cmplx(1, 2), cmplx(1, nan), cmplx(nan, nan)}, + Test{cmplx(1, 2), cmplx(1, inf), cmplx(0, negzero)}, + Test{cmplx(1, 2), cmplx(1, -inf), cmplx(negzero, 0)}, + Test{cmplx(1, 2), cmplx(-1, 0), cmplx(-1, -2)}, + Test{cmplx(1, 2), cmplx(-1, 1), cmplx(0.5, -1.5)}, + Test{cmplx(1, 2), cmplx(-1, -1), cmplx(-1.5, -0.5)}, + Test{cmplx(1, 2), cmplx(-1, 2), cmplx(0.6, -0.8)}, + Test{cmplx(1, 2), cmplx(-1, nan), cmplx(nan, nan)}, + Test{cmplx(1, 2), cmplx(-1, inf), cmplx(0, negzero)}, + Test{cmplx(1, 2), cmplx(-1, -inf), cmplx(negzero, 0)}, + Test{cmplx(1, 2), cmplx(2, 0), cmplx(0.5, 1)}, + Test{cmplx(1, 2), cmplx(2, 1), cmplx(0.8, 0.6)}, + Test{cmplx(1, 2), cmplx(2, -1), cmplx(0, 1)}, + Test{cmplx(1, 2), cmplx(2, 2), cmplx(0.75, 0.25)}, + Test{cmplx(1, 2), cmplx(2, nan), cmplx(nan, nan)}, + Test{cmplx(1, 2), cmplx(2, inf), cmplx(0, negzero)}, + Test{cmplx(1, 2), cmplx(2, -inf), cmplx(negzero, 0)}, + Test{cmplx(1, 2), cmplx(nan, 0), cmplx(nan, nan)}, + Test{cmplx(1, 2), cmplx(nan, 1), cmplx(nan, nan)}, + Test{cmplx(1, 2), cmplx(nan, -1), cmplx(nan, nan)}, + Test{cmplx(1, 2), cmplx(nan, 2), cmplx(nan, nan)}, + Test{cmplx(1, 2), cmplx(nan, nan), cmplx(nan, nan)}, + Test{cmplx(1, 2), cmplx(nan, inf), cmplx(0, negzero)}, + Test{cmplx(1, 2), cmplx(nan, -inf), cmplx(negzero, 0)}, + Test{cmplx(1, 2), cmplx(inf, 0), cmplx(0, 0)}, + Test{cmplx(1, 2), cmplx(inf, 1), cmplx(0, 0)}, + Test{cmplx(1, 2), cmplx(inf, -1), cmplx(0, 0)}, + Test{cmplx(1, 2), cmplx(inf, 2), cmplx(0, 0)}, + Test{cmplx(1, 2), cmplx(inf, nan), cmplx(0, 0)}, + Test{cmplx(1, 2), cmplx(inf, inf), cmplx(0, 0)}, + Test{cmplx(1, 2), cmplx(inf, -inf), cmplx(negzero, 0)}, + Test{cmplx(1, 2), cmplx(-inf, 0), cmplx(negzero, negzero)}, + Test{cmplx(1, 2), cmplx(-inf, 1), cmplx(negzero, negzero)}, + Test{cmplx(1, 2), cmplx(-inf, -1), cmplx(negzero, negzero)}, + Test{cmplx(1, 2), cmplx(-inf, 2), cmplx(negzero, negzero)}, + Test{cmplx(1, 2), cmplx(-inf, nan), cmplx(negzero, negzero)}, + Test{cmplx(1, 2), cmplx(-inf, inf), cmplx(0, negzero)}, + Test{cmplx(1, 2), cmplx(-inf, -inf), cmplx(negzero, negzero)}, + Test{cmplx(1, nan), cmplx(0, 0), cmplx(nan, nan)}, + Test{cmplx(1, nan), cmplx(0, 1), cmplx(nan, nan)}, + Test{cmplx(1, nan), cmplx(0, -1), cmplx(nan, nan)}, + Test{cmplx(1, nan), cmplx(0, 2), cmplx(nan, nan)}, + Test{cmplx(1, nan), cmplx(0, nan), cmplx(nan, nan)}, + Test{cmplx(1, nan), cmplx(0, inf), cmplx(nan, nan)}, + Test{cmplx(1, nan), cmplx(0, -inf), cmplx(nan, nan)}, + Test{cmplx(1, nan), cmplx(1, 0), cmplx(nan, nan)}, + Test{cmplx(1, nan), cmplx(1, 1), cmplx(nan, nan)}, + Test{cmplx(1, nan), cmplx(1, -1), cmplx(nan, nan)}, + Test{cmplx(1, nan), cmplx(1, 2), cmplx(nan, nan)}, + Test{cmplx(1, nan), cmplx(1, nan), cmplx(nan, nan)}, + Test{cmplx(1, nan), cmplx(1, inf), cmplx(nan, nan)}, + Test{cmplx(1, nan), cmplx(1, -inf), cmplx(nan, nan)}, + Test{cmplx(1, nan), cmplx(-1, 0), cmplx(nan, nan)}, + Test{cmplx(1, nan), cmplx(-1, 1), cmplx(nan, nan)}, + Test{cmplx(1, nan), cmplx(-1, -1), cmplx(nan, nan)}, + Test{cmplx(1, nan), cmplx(-1, 2), cmplx(nan, nan)}, + Test{cmplx(1, nan), cmplx(-1, nan), cmplx(nan, nan)}, + Test{cmplx(1, nan), cmplx(-1, inf), cmplx(nan, nan)}, + Test{cmplx(1, nan), cmplx(-1, -inf), cmplx(nan, nan)}, + Test{cmplx(1, nan), cmplx(2, 0), cmplx(nan, nan)}, + Test{cmplx(1, nan), cmplx(2, 1), cmplx(nan, nan)}, + Test{cmplx(1, nan), cmplx(2, -1), cmplx(nan, nan)}, + Test{cmplx(1, nan), cmplx(2, 2), cmplx(nan, nan)}, + Test{cmplx(1, nan), cmplx(2, nan), cmplx(nan, nan)}, + Test{cmplx(1, nan), cmplx(2, inf), cmplx(nan, nan)}, + Test{cmplx(1, nan), cmplx(2, -inf), cmplx(nan, nan)}, + Test{cmplx(1, nan), cmplx(nan, 0), cmplx(nan, nan)}, + Test{cmplx(1, nan), cmplx(nan, 1), cmplx(nan, nan)}, + Test{cmplx(1, nan), cmplx(nan, -1), cmplx(nan, nan)}, + Test{cmplx(1, nan), cmplx(nan, 2), cmplx(nan, nan)}, + Test{cmplx(1, nan), cmplx(nan, nan), cmplx(nan, nan)}, + Test{cmplx(1, nan), cmplx(nan, inf), cmplx(nan, nan)}, + Test{cmplx(1, nan), cmplx(nan, -inf), cmplx(nan, nan)}, + Test{cmplx(1, nan), cmplx(inf, 0), cmplx(nan, nan)}, + Test{cmplx(1, nan), cmplx(inf, 1), cmplx(nan, nan)}, + Test{cmplx(1, nan), cmplx(inf, -1), cmplx(nan, nan)}, + Test{cmplx(1, nan), cmplx(inf, 2), cmplx(nan, nan)}, + Test{cmplx(1, nan), cmplx(inf, nan), cmplx(nan, nan)}, + Test{cmplx(1, nan), cmplx(inf, inf), cmplx(nan, nan)}, + Test{cmplx(1, nan), cmplx(inf, -inf), cmplx(nan, nan)}, + Test{cmplx(1, nan), cmplx(-inf, 0), cmplx(nan, nan)}, + Test{cmplx(1, nan), cmplx(-inf, 1), cmplx(nan, nan)}, + Test{cmplx(1, nan), cmplx(-inf, -1), cmplx(nan, nan)}, + Test{cmplx(1, nan), cmplx(-inf, 2), cmplx(nan, nan)}, + Test{cmplx(1, nan), cmplx(-inf, nan), cmplx(nan, nan)}, + Test{cmplx(1, nan), cmplx(-inf, inf), cmplx(nan, nan)}, + Test{cmplx(1, nan), cmplx(-inf, -inf), cmplx(nan, nan)}, + Test{cmplx(1, inf), cmplx(0, 0), cmplx(inf, inf)}, + Test{cmplx(1, inf), cmplx(0, 1), cmplx(inf, nan)}, + Test{cmplx(1, inf), cmplx(0, -1), cmplx(-inf, nan)}, + Test{cmplx(1, inf), cmplx(0, 2), cmplx(inf, nan)}, + Test{cmplx(1, inf), cmplx(0, nan), cmplx(nan, nan)}, + Test{cmplx(1, inf), cmplx(0, inf), cmplx(nan, nan)}, + Test{cmplx(1, inf), cmplx(0, -inf), cmplx(nan, nan)}, + Test{cmplx(1, inf), cmplx(1, 0), cmplx(nan, inf)}, + Test{cmplx(1, inf), cmplx(1, 1), cmplx(inf, inf)}, + Test{cmplx(1, inf), cmplx(1, -1), cmplx(-inf, inf)}, + Test{cmplx(1, inf), cmplx(1, 2), cmplx(inf, inf)}, + Test{cmplx(1, inf), cmplx(1, nan), cmplx(nan, nan)}, + Test{cmplx(1, inf), cmplx(1, inf), cmplx(nan, nan)}, + Test{cmplx(1, inf), cmplx(1, -inf), cmplx(nan, nan)}, + Test{cmplx(1, inf), cmplx(-1, 0), cmplx(nan, -inf)}, + Test{cmplx(1, inf), cmplx(-1, 1), cmplx(inf, -inf)}, + Test{cmplx(1, inf), cmplx(-1, -1), cmplx(-inf, -inf)}, + Test{cmplx(1, inf), cmplx(-1, 2), cmplx(inf, -inf)}, + Test{cmplx(1, inf), cmplx(-1, nan), cmplx(nan, nan)}, + Test{cmplx(1, inf), cmplx(-1, inf), cmplx(nan, nan)}, + Test{cmplx(1, inf), cmplx(-1, -inf), cmplx(nan, nan)}, + Test{cmplx(1, inf), cmplx(2, 0), cmplx(nan, inf)}, + Test{cmplx(1, inf), cmplx(2, 1), cmplx(inf, inf)}, + Test{cmplx(1, inf), cmplx(2, -1), cmplx(-inf, inf)}, + Test{cmplx(1, inf), cmplx(2, 2), cmplx(inf, inf)}, + Test{cmplx(1, inf), cmplx(2, nan), cmplx(nan, nan)}, + Test{cmplx(1, inf), cmplx(2, inf), cmplx(nan, nan)}, + Test{cmplx(1, inf), cmplx(2, -inf), cmplx(nan, nan)}, + Test{cmplx(1, inf), cmplx(nan, 0), cmplx(nan, nan)}, + Test{cmplx(1, inf), cmplx(nan, 1), cmplx(nan, nan)}, + Test{cmplx(1, inf), cmplx(nan, -1), cmplx(nan, nan)}, + Test{cmplx(1, inf), cmplx(nan, 2), cmplx(nan, nan)}, + Test{cmplx(1, inf), cmplx(nan, nan), cmplx(nan, nan)}, + Test{cmplx(1, inf), cmplx(nan, inf), cmplx(nan, nan)}, + Test{cmplx(1, inf), cmplx(nan, -inf), cmplx(nan, nan)}, + Test{cmplx(1, inf), cmplx(inf, 0), cmplx(nan, nan)}, + Test{cmplx(1, inf), cmplx(inf, 1), cmplx(nan, nan)}, + Test{cmplx(1, inf), cmplx(inf, -1), cmplx(nan, nan)}, + Test{cmplx(1, inf), cmplx(inf, 2), cmplx(nan, nan)}, + Test{cmplx(1, inf), cmplx(inf, nan), cmplx(nan, nan)}, + Test{cmplx(1, inf), cmplx(inf, inf), cmplx(nan, nan)}, + Test{cmplx(1, inf), cmplx(inf, -inf), cmplx(nan, nan)}, + Test{cmplx(1, inf), cmplx(-inf, 0), cmplx(nan, nan)}, + Test{cmplx(1, inf), cmplx(-inf, 1), cmplx(nan, nan)}, + Test{cmplx(1, inf), cmplx(-inf, -1), cmplx(nan, nan)}, + Test{cmplx(1, inf), cmplx(-inf, 2), cmplx(nan, nan)}, + Test{cmplx(1, inf), cmplx(-inf, nan), cmplx(nan, nan)}, + Test{cmplx(1, inf), cmplx(-inf, inf), cmplx(nan, nan)}, + Test{cmplx(1, inf), cmplx(-inf, -inf), cmplx(nan, nan)}, + Test{cmplx(1, -inf), cmplx(0, 0), cmplx(inf, -inf)}, + Test{cmplx(1, -inf), cmplx(0, 1), cmplx(-inf, nan)}, + Test{cmplx(1, -inf), cmplx(0, -1), cmplx(inf, nan)}, + Test{cmplx(1, -inf), cmplx(0, 2), cmplx(-inf, nan)}, + Test{cmplx(1, -inf), cmplx(0, nan), cmplx(nan, nan)}, + Test{cmplx(1, -inf), cmplx(0, inf), cmplx(nan, nan)}, + Test{cmplx(1, -inf), cmplx(0, -inf), cmplx(nan, nan)}, + Test{cmplx(1, -inf), cmplx(1, 0), cmplx(nan, -inf)}, + Test{cmplx(1, -inf), cmplx(1, 1), cmplx(-inf, -inf)}, + Test{cmplx(1, -inf), cmplx(1, -1), cmplx(inf, -inf)}, + Test{cmplx(1, -inf), cmplx(1, 2), cmplx(-inf, -inf)}, + Test{cmplx(1, -inf), cmplx(1, nan), cmplx(nan, nan)}, + Test{cmplx(1, -inf), cmplx(1, inf), cmplx(nan, nan)}, + Test{cmplx(1, -inf), cmplx(1, -inf), cmplx(nan, nan)}, + Test{cmplx(1, -inf), cmplx(-1, 0), cmplx(nan, inf)}, + Test{cmplx(1, -inf), cmplx(-1, 1), cmplx(-inf, inf)}, + Test{cmplx(1, -inf), cmplx(-1, -1), cmplx(inf, inf)}, + Test{cmplx(1, -inf), cmplx(-1, 2), cmplx(-inf, inf)}, + Test{cmplx(1, -inf), cmplx(-1, nan), cmplx(nan, nan)}, + Test{cmplx(1, -inf), cmplx(-1, inf), cmplx(nan, nan)}, + Test{cmplx(1, -inf), cmplx(-1, -inf), cmplx(nan, nan)}, + Test{cmplx(1, -inf), cmplx(2, 0), cmplx(nan, -inf)}, + Test{cmplx(1, -inf), cmplx(2, 1), cmplx(-inf, -inf)}, + Test{cmplx(1, -inf), cmplx(2, -1), cmplx(inf, -inf)}, + Test{cmplx(1, -inf), cmplx(2, 2), cmplx(-inf, -inf)}, + Test{cmplx(1, -inf), cmplx(2, nan), cmplx(nan, nan)}, + Test{cmplx(1, -inf), cmplx(2, inf), cmplx(nan, nan)}, + Test{cmplx(1, -inf), cmplx(2, -inf), cmplx(nan, nan)}, + Test{cmplx(1, -inf), cmplx(nan, 0), cmplx(nan, nan)}, + Test{cmplx(1, -inf), cmplx(nan, 1), cmplx(nan, nan)}, + Test{cmplx(1, -inf), cmplx(nan, -1), cmplx(nan, nan)}, + Test{cmplx(1, -inf), cmplx(nan, 2), cmplx(nan, nan)}, + Test{cmplx(1, -inf), cmplx(nan, nan), cmplx(nan, nan)}, + Test{cmplx(1, -inf), cmplx(nan, inf), cmplx(nan, nan)}, + Test{cmplx(1, -inf), cmplx(nan, -inf), cmplx(nan, nan)}, + Test{cmplx(1, -inf), cmplx(inf, 0), cmplx(nan, nan)}, + Test{cmplx(1, -inf), cmplx(inf, 1), cmplx(nan, nan)}, + Test{cmplx(1, -inf), cmplx(inf, -1), cmplx(nan, nan)}, + Test{cmplx(1, -inf), cmplx(inf, 2), cmplx(nan, nan)}, + Test{cmplx(1, -inf), cmplx(inf, nan), cmplx(nan, nan)}, + Test{cmplx(1, -inf), cmplx(inf, inf), cmplx(nan, nan)}, + Test{cmplx(1, -inf), cmplx(inf, -inf), cmplx(nan, nan)}, + Test{cmplx(1, -inf), cmplx(-inf, 0), cmplx(nan, nan)}, + Test{cmplx(1, -inf), cmplx(-inf, 1), cmplx(nan, nan)}, + Test{cmplx(1, -inf), cmplx(-inf, -1), cmplx(nan, nan)}, + Test{cmplx(1, -inf), cmplx(-inf, 2), cmplx(nan, nan)}, + Test{cmplx(1, -inf), cmplx(-inf, nan), cmplx(nan, nan)}, + Test{cmplx(1, -inf), cmplx(-inf, inf), cmplx(nan, nan)}, + Test{cmplx(1, -inf), cmplx(-inf, -inf), cmplx(nan, nan)}, + Test{cmplx(-1, 0), cmplx(0, 0), cmplx(-inf, nan)}, + Test{cmplx(-1, 0), cmplx(0, 1), cmplx(0, 1)}, + Test{cmplx(-1, 0), cmplx(0, -1), cmplx(negzero, -1)}, + Test{cmplx(-1, 0), cmplx(0, 2), cmplx(0, 0.5)}, + Test{cmplx(-1, 0), cmplx(0, nan), cmplx(nan, nan)}, + Test{cmplx(-1, 0), cmplx(0, inf), cmplx(0, 0)}, + Test{cmplx(-1, 0), cmplx(0, -inf), cmplx(negzero, negzero)}, + Test{cmplx(-1, 0), cmplx(1, 0), cmplx(-1, 0)}, + Test{cmplx(-1, 0), cmplx(1, 1), cmplx(-0.5, 0.5)}, + Test{cmplx(-1, 0), cmplx(1, -1), cmplx(-0.5, -0.5)}, + Test{cmplx(-1, 0), cmplx(1, 2), cmplx(-0.2, 0.4)}, + Test{cmplx(-1, 0), cmplx(1, nan), cmplx(nan, nan)}, + Test{cmplx(-1, 0), cmplx(1, inf), cmplx(0, 0)}, + Test{cmplx(-1, 0), cmplx(1, -inf), cmplx(negzero, negzero)}, + Test{cmplx(-1, 0), cmplx(-1, 0), cmplx(1, negzero)}, + Test{cmplx(-1, 0), cmplx(-1, 1), cmplx(0.5, 0.5)}, + Test{cmplx(-1, 0), cmplx(-1, -1), cmplx(0.5, -0.5)}, + Test{cmplx(-1, 0), cmplx(-1, 2), cmplx(0.2, 0.4)}, + Test{cmplx(-1, 0), cmplx(-1, nan), cmplx(nan, nan)}, + Test{cmplx(-1, 0), cmplx(-1, inf), cmplx(0, 0)}, + Test{cmplx(-1, 0), cmplx(-1, -inf), cmplx(negzero, negzero)}, + Test{cmplx(-1, 0), cmplx(2, 0), cmplx(-0.5, 0)}, + Test{cmplx(-1, 0), cmplx(2, 1), cmplx(-0.4, 0.2)}, + Test{cmplx(-1, 0), cmplx(2, -1), cmplx(-0.4, -0.2)}, + Test{cmplx(-1, 0), cmplx(2, 2), cmplx(-0.25, 0.25)}, + Test{cmplx(-1, 0), cmplx(2, nan), cmplx(nan, nan)}, + Test{cmplx(-1, 0), cmplx(2, inf), cmplx(0, 0)}, + Test{cmplx(-1, 0), cmplx(2, -inf), cmplx(negzero, negzero)}, + Test{cmplx(-1, 0), cmplx(nan, 0), cmplx(nan, nan)}, + Test{cmplx(-1, 0), cmplx(nan, 1), cmplx(nan, nan)}, + Test{cmplx(-1, 0), cmplx(nan, -1), cmplx(nan, nan)}, + Test{cmplx(-1, 0), cmplx(nan, 2), cmplx(nan, nan)}, + Test{cmplx(-1, 0), cmplx(nan, nan), cmplx(nan, nan)}, + Test{cmplx(-1, 0), cmplx(nan, inf), cmplx(0, 0)}, + Test{cmplx(-1, 0), cmplx(nan, -inf), cmplx(negzero, negzero)}, + Test{cmplx(-1, 0), cmplx(inf, 0), cmplx(negzero, 0)}, + Test{cmplx(-1, 0), cmplx(inf, 1), cmplx(negzero, 0)}, + Test{cmplx(-1, 0), cmplx(inf, -1), cmplx(negzero, 0)}, + Test{cmplx(-1, 0), cmplx(inf, 2), cmplx(negzero, 0)}, + Test{cmplx(-1, 0), cmplx(inf, nan), cmplx(negzero, 0)}, + Test{cmplx(-1, 0), cmplx(inf, inf), cmplx(negzero, 0)}, + Test{cmplx(-1, 0), cmplx(inf, -inf), cmplx(negzero, negzero)}, + Test{cmplx(-1, 0), cmplx(-inf, 0), cmplx(0, negzero)}, + Test{cmplx(-1, 0), cmplx(-inf, 1), cmplx(0, negzero)}, + Test{cmplx(-1, 0), cmplx(-inf, -1), cmplx(0, negzero)}, + Test{cmplx(-1, 0), cmplx(-inf, 2), cmplx(0, negzero)}, + Test{cmplx(-1, 0), cmplx(-inf, nan), cmplx(0, 0)}, + Test{cmplx(-1, 0), cmplx(-inf, inf), cmplx(0, 0)}, + Test{cmplx(-1, 0), cmplx(-inf, -inf), cmplx(0, negzero)}, + Test{cmplx(-1, 1), cmplx(0, 0), cmplx(-inf, inf)}, + Test{cmplx(-1, 1), cmplx(0, 1), cmplx(1, 1)}, + Test{cmplx(-1, 1), cmplx(0, -1), cmplx(-1, -1)}, + Test{cmplx(-1, 1), cmplx(0, 2), cmplx(0.5, 0.5)}, + Test{cmplx(-1, 1), cmplx(0, nan), cmplx(nan, nan)}, + Test{cmplx(-1, 1), cmplx(0, inf), cmplx(0, 0)}, + Test{cmplx(-1, 1), cmplx(0, -inf), cmplx(negzero, negzero)}, + Test{cmplx(-1, 1), cmplx(1, 0), cmplx(-1, 1)}, + Test{cmplx(-1, 1), cmplx(1, 1), cmplx(0, 1)}, + Test{cmplx(-1, 1), cmplx(1, -1), cmplx(-1, 0)}, + Test{cmplx(-1, 1), cmplx(1, 2), cmplx(0.2, 0.6)}, + Test{cmplx(-1, 1), cmplx(1, nan), cmplx(nan, nan)}, + Test{cmplx(-1, 1), cmplx(1, inf), cmplx(0, 0)}, + Test{cmplx(-1, 1), cmplx(1, -inf), cmplx(negzero, negzero)}, + Test{cmplx(-1, 1), cmplx(-1, 0), cmplx(1, -1)}, + Test{cmplx(-1, 1), cmplx(-1, 1), cmplx(1, negzero)}, + Test{cmplx(-1, 1), cmplx(-1, -1), cmplx(negzero, -1)}, + Test{cmplx(-1, 1), cmplx(-1, 2), cmplx(0.6, 0.2)}, + Test{cmplx(-1, 1), cmplx(-1, nan), cmplx(nan, nan)}, + Test{cmplx(-1, 1), cmplx(-1, inf), cmplx(0, 0)}, + Test{cmplx(-1, 1), cmplx(-1, -inf), cmplx(negzero, negzero)}, + Test{cmplx(-1, 1), cmplx(2, 0), cmplx(-0.5, 0.5)}, + Test{cmplx(-1, 1), cmplx(2, 1), cmplx(-0.2, 0.6)}, + Test{cmplx(-1, 1), cmplx(2, -1), cmplx(-0.6, 0.2)}, + Test{cmplx(-1, 1), cmplx(2, 2), cmplx(0, 0.5)}, + Test{cmplx(-1, 1), cmplx(2, nan), cmplx(nan, nan)}, + Test{cmplx(-1, 1), cmplx(2, inf), cmplx(0, 0)}, + Test{cmplx(-1, 1), cmplx(2, -inf), cmplx(negzero, negzero)}, + Test{cmplx(-1, 1), cmplx(nan, 0), cmplx(nan, nan)}, + Test{cmplx(-1, 1), cmplx(nan, 1), cmplx(nan, nan)}, + Test{cmplx(-1, 1), cmplx(nan, -1), cmplx(nan, nan)}, + Test{cmplx(-1, 1), cmplx(nan, 2), cmplx(nan, nan)}, + Test{cmplx(-1, 1), cmplx(nan, nan), cmplx(nan, nan)}, + Test{cmplx(-1, 1), cmplx(nan, inf), cmplx(0, 0)}, + Test{cmplx(-1, 1), cmplx(nan, -inf), cmplx(negzero, negzero)}, + Test{cmplx(-1, 1), cmplx(inf, 0), cmplx(negzero, 0)}, + Test{cmplx(-1, 1), cmplx(inf, 1), cmplx(negzero, 0)}, + Test{cmplx(-1, 1), cmplx(inf, -1), cmplx(negzero, 0)}, + Test{cmplx(-1, 1), cmplx(inf, 2), cmplx(negzero, 0)}, + Test{cmplx(-1, 1), cmplx(inf, nan), cmplx(negzero, 0)}, + Test{cmplx(-1, 1), cmplx(inf, inf), cmplx(0, 0)}, + Test{cmplx(-1, 1), cmplx(inf, -inf), cmplx(negzero, 0)}, + Test{cmplx(-1, 1), cmplx(-inf, 0), cmplx(0, negzero)}, + Test{cmplx(-1, 1), cmplx(-inf, 1), cmplx(0, negzero)}, + Test{cmplx(-1, 1), cmplx(-inf, -1), cmplx(0, negzero)}, + Test{cmplx(-1, 1), cmplx(-inf, 2), cmplx(0, negzero)}, + Test{cmplx(-1, 1), cmplx(-inf, nan), cmplx(0, negzero)}, + Test{cmplx(-1, 1), cmplx(-inf, inf), cmplx(0, 0)}, + Test{cmplx(-1, 1), cmplx(-inf, -inf), cmplx(0, negzero)}, + Test{cmplx(-1, -1), cmplx(0, 0), cmplx(-inf, -inf)}, + Test{cmplx(-1, -1), cmplx(0, 1), cmplx(-1, 1)}, + Test{cmplx(-1, -1), cmplx(0, -1), cmplx(1, -1)}, + Test{cmplx(-1, -1), cmplx(0, 2), cmplx(-0.5, 0.5)}, + Test{cmplx(-1, -1), cmplx(0, nan), cmplx(nan, nan)}, + Test{cmplx(-1, -1), cmplx(0, inf), cmplx(negzero, 0)}, + Test{cmplx(-1, -1), cmplx(0, -inf), cmplx(0, negzero)}, + Test{cmplx(-1, -1), cmplx(1, 0), cmplx(-1, -1)}, + Test{cmplx(-1, -1), cmplx(1, 1), cmplx(-1, 0)}, + Test{cmplx(-1, -1), cmplx(1, -1), cmplx(0, -1)}, + Test{cmplx(-1, -1), cmplx(1, 2), cmplx(-0.6, 0.2)}, + Test{cmplx(-1, -1), cmplx(1, nan), cmplx(nan, nan)}, + Test{cmplx(-1, -1), cmplx(1, inf), cmplx(negzero, 0)}, + Test{cmplx(-1, -1), cmplx(1, -inf), cmplx(0, negzero)}, + Test{cmplx(-1, -1), cmplx(-1, 0), cmplx(1, 1)}, + Test{cmplx(-1, -1), cmplx(-1, 1), cmplx(negzero, 1)}, + Test{cmplx(-1, -1), cmplx(-1, -1), cmplx(1, negzero)}, + Test{cmplx(-1, -1), cmplx(-1, 2), cmplx(-0.2, 0.6)}, + Test{cmplx(-1, -1), cmplx(-1, nan), cmplx(nan, nan)}, + Test{cmplx(-1, -1), cmplx(-1, inf), cmplx(negzero, 0)}, + Test{cmplx(-1, -1), cmplx(-1, -inf), cmplx(0, negzero)}, + Test{cmplx(-1, -1), cmplx(2, 0), cmplx(-0.5, -0.5)}, + Test{cmplx(-1, -1), cmplx(2, 1), cmplx(-0.6, -0.2)}, + Test{cmplx(-1, -1), cmplx(2, -1), cmplx(-0.2, -0.6)}, + Test{cmplx(-1, -1), cmplx(2, 2), cmplx(-0.5, 0)}, + Test{cmplx(-1, -1), cmplx(2, nan), cmplx(nan, nan)}, + Test{cmplx(-1, -1), cmplx(2, inf), cmplx(negzero, 0)}, + Test{cmplx(-1, -1), cmplx(2, -inf), cmplx(0, negzero)}, + Test{cmplx(-1, -1), cmplx(nan, 0), cmplx(nan, nan)}, + Test{cmplx(-1, -1), cmplx(nan, 1), cmplx(nan, nan)}, + Test{cmplx(-1, -1), cmplx(nan, -1), cmplx(nan, nan)}, + Test{cmplx(-1, -1), cmplx(nan, 2), cmplx(nan, nan)}, + Test{cmplx(-1, -1), cmplx(nan, nan), cmplx(nan, nan)}, + Test{cmplx(-1, -1), cmplx(nan, inf), cmplx(negzero, 0)}, + Test{cmplx(-1, -1), cmplx(nan, -inf), cmplx(0, negzero)}, + Test{cmplx(-1, -1), cmplx(inf, 0), cmplx(negzero, negzero)}, + Test{cmplx(-1, -1), cmplx(inf, 1), cmplx(negzero, negzero)}, + Test{cmplx(-1, -1), cmplx(inf, -1), cmplx(negzero, negzero)}, + Test{cmplx(-1, -1), cmplx(inf, 2), cmplx(negzero, negzero)}, + Test{cmplx(-1, -1), cmplx(inf, nan), cmplx(negzero, negzero)}, + Test{cmplx(-1, -1), cmplx(inf, inf), cmplx(negzero, 0)}, + Test{cmplx(-1, -1), cmplx(inf, -inf), cmplx(0, negzero)}, + Test{cmplx(-1, -1), cmplx(-inf, 0), cmplx(0, 0)}, + Test{cmplx(-1, -1), cmplx(-inf, 1), cmplx(0, 0)}, + Test{cmplx(-1, -1), cmplx(-inf, -1), cmplx(0, 0)}, + Test{cmplx(-1, -1), cmplx(-inf, 2), cmplx(0, 0)}, + Test{cmplx(-1, -1), cmplx(-inf, nan), cmplx(0, 0)}, + Test{cmplx(-1, -1), cmplx(-inf, inf), cmplx(0, 0)}, + Test{cmplx(-1, -1), cmplx(-inf, -inf), cmplx(0, 0)}, + Test{cmplx(-1, 2), cmplx(0, 0), cmplx(-inf, inf)}, + Test{cmplx(-1, 2), cmplx(0, 1), cmplx(2, 1)}, + Test{cmplx(-1, 2), cmplx(0, -1), cmplx(-2, -1)}, + Test{cmplx(-1, 2), cmplx(0, 2), cmplx(1, 0.5)}, + Test{cmplx(-1, 2), cmplx(0, nan), cmplx(nan, nan)}, + Test{cmplx(-1, 2), cmplx(0, inf), cmplx(0, 0)}, + Test{cmplx(-1, 2), cmplx(0, -inf), cmplx(negzero, negzero)}, + Test{cmplx(-1, 2), cmplx(1, 0), cmplx(-1, 2)}, + Test{cmplx(-1, 2), cmplx(1, 1), cmplx(0.5, 1.5)}, + Test{cmplx(-1, 2), cmplx(1, -1), cmplx(-1.5, 0.5)}, + Test{cmplx(-1, 2), cmplx(1, 2), cmplx(0.6, 0.8)}, + Test{cmplx(-1, 2), cmplx(1, nan), cmplx(nan, nan)}, + Test{cmplx(-1, 2), cmplx(1, inf), cmplx(0, 0)}, + Test{cmplx(-1, 2), cmplx(1, -inf), cmplx(negzero, negzero)}, + Test{cmplx(-1, 2), cmplx(-1, 0), cmplx(1, -2)}, + Test{cmplx(-1, 2), cmplx(-1, 1), cmplx(1.5, -0.5)}, + Test{cmplx(-1, 2), cmplx(-1, -1), cmplx(-0.5, -1.5)}, + Test{cmplx(-1, 2), cmplx(-1, 2), cmplx(1, 0)}, + Test{cmplx(-1, 2), cmplx(-1, nan), cmplx(nan, nan)}, + Test{cmplx(-1, 2), cmplx(-1, inf), cmplx(0, 0)}, + Test{cmplx(-1, 2), cmplx(-1, -inf), cmplx(negzero, negzero)}, + Test{cmplx(-1, 2), cmplx(2, 0), cmplx(-0.5, 1)}, + Test{cmplx(-1, 2), cmplx(2, 1), cmplx(0, 1)}, + Test{cmplx(-1, 2), cmplx(2, -1), cmplx(-0.8, 0.6)}, + Test{cmplx(-1, 2), cmplx(2, 2), cmplx(0.25, 0.75)}, + Test{cmplx(-1, 2), cmplx(2, nan), cmplx(nan, nan)}, + Test{cmplx(-1, 2), cmplx(2, inf), cmplx(0, 0)}, + Test{cmplx(-1, 2), cmplx(2, -inf), cmplx(negzero, negzero)}, + Test{cmplx(-1, 2), cmplx(nan, 0), cmplx(nan, nan)}, + Test{cmplx(-1, 2), cmplx(nan, 1), cmplx(nan, nan)}, + Test{cmplx(-1, 2), cmplx(nan, -1), cmplx(nan, nan)}, + Test{cmplx(-1, 2), cmplx(nan, 2), cmplx(nan, nan)}, + Test{cmplx(-1, 2), cmplx(nan, nan), cmplx(nan, nan)}, + Test{cmplx(-1, 2), cmplx(nan, inf), cmplx(0, 0)}, + Test{cmplx(-1, 2), cmplx(nan, -inf), cmplx(negzero, negzero)}, + Test{cmplx(-1, 2), cmplx(inf, 0), cmplx(negzero, 0)}, + Test{cmplx(-1, 2), cmplx(inf, 1), cmplx(negzero, 0)}, + Test{cmplx(-1, 2), cmplx(inf, -1), cmplx(negzero, 0)}, + Test{cmplx(-1, 2), cmplx(inf, 2), cmplx(negzero, 0)}, + Test{cmplx(-1, 2), cmplx(inf, nan), cmplx(negzero, 0)}, + Test{cmplx(-1, 2), cmplx(inf, inf), cmplx(0, 0)}, + Test{cmplx(-1, 2), cmplx(inf, -inf), cmplx(negzero, 0)}, + Test{cmplx(-1, 2), cmplx(-inf, 0), cmplx(0, negzero)}, + Test{cmplx(-1, 2), cmplx(-inf, 1), cmplx(0, negzero)}, + Test{cmplx(-1, 2), cmplx(-inf, -1), cmplx(0, negzero)}, + Test{cmplx(-1, 2), cmplx(-inf, 2), cmplx(0, negzero)}, + Test{cmplx(-1, 2), cmplx(-inf, nan), cmplx(0, negzero)}, + Test{cmplx(-1, 2), cmplx(-inf, inf), cmplx(0, negzero)}, + Test{cmplx(-1, 2), cmplx(-inf, -inf), cmplx(negzero, negzero)}, + Test{cmplx(-1, nan), cmplx(0, 0), cmplx(nan, nan)}, + Test{cmplx(-1, nan), cmplx(0, 1), cmplx(nan, nan)}, + Test{cmplx(-1, nan), cmplx(0, -1), cmplx(nan, nan)}, + Test{cmplx(-1, nan), cmplx(0, 2), cmplx(nan, nan)}, + Test{cmplx(-1, nan), cmplx(0, nan), cmplx(nan, nan)}, + Test{cmplx(-1, nan), cmplx(0, inf), cmplx(nan, nan)}, + Test{cmplx(-1, nan), cmplx(0, -inf), cmplx(nan, nan)}, + Test{cmplx(-1, nan), cmplx(1, 0), cmplx(nan, nan)}, + Test{cmplx(-1, nan), cmplx(1, 1), cmplx(nan, nan)}, + Test{cmplx(-1, nan), cmplx(1, -1), cmplx(nan, nan)}, + Test{cmplx(-1, nan), cmplx(1, 2), cmplx(nan, nan)}, + Test{cmplx(-1, nan), cmplx(1, nan), cmplx(nan, nan)}, + Test{cmplx(-1, nan), cmplx(1, inf), cmplx(nan, nan)}, + Test{cmplx(-1, nan), cmplx(1, -inf), cmplx(nan, nan)}, + Test{cmplx(-1, nan), cmplx(-1, 0), cmplx(nan, nan)}, + Test{cmplx(-1, nan), cmplx(-1, 1), cmplx(nan, nan)}, + Test{cmplx(-1, nan), cmplx(-1, -1), cmplx(nan, nan)}, + Test{cmplx(-1, nan), cmplx(-1, 2), cmplx(nan, nan)}, + Test{cmplx(-1, nan), cmplx(-1, nan), cmplx(nan, nan)}, + Test{cmplx(-1, nan), cmplx(-1, inf), cmplx(nan, nan)}, + Test{cmplx(-1, nan), cmplx(-1, -inf), cmplx(nan, nan)}, + Test{cmplx(-1, nan), cmplx(2, 0), cmplx(nan, nan)}, + Test{cmplx(-1, nan), cmplx(2, 1), cmplx(nan, nan)}, + Test{cmplx(-1, nan), cmplx(2, -1), cmplx(nan, nan)}, + Test{cmplx(-1, nan), cmplx(2, 2), cmplx(nan, nan)}, + Test{cmplx(-1, nan), cmplx(2, nan), cmplx(nan, nan)}, + Test{cmplx(-1, nan), cmplx(2, inf), cmplx(nan, nan)}, + Test{cmplx(-1, nan), cmplx(2, -inf), cmplx(nan, nan)}, + Test{cmplx(-1, nan), cmplx(nan, 0), cmplx(nan, nan)}, + Test{cmplx(-1, nan), cmplx(nan, 1), cmplx(nan, nan)}, + Test{cmplx(-1, nan), cmplx(nan, -1), cmplx(nan, nan)}, + Test{cmplx(-1, nan), cmplx(nan, 2), cmplx(nan, nan)}, + Test{cmplx(-1, nan), cmplx(nan, nan), cmplx(nan, nan)}, + Test{cmplx(-1, nan), cmplx(nan, inf), cmplx(nan, nan)}, + Test{cmplx(-1, nan), cmplx(nan, -inf), cmplx(nan, nan)}, + Test{cmplx(-1, nan), cmplx(inf, 0), cmplx(nan, nan)}, + Test{cmplx(-1, nan), cmplx(inf, 1), cmplx(nan, nan)}, + Test{cmplx(-1, nan), cmplx(inf, -1), cmplx(nan, nan)}, + Test{cmplx(-1, nan), cmplx(inf, 2), cmplx(nan, nan)}, + Test{cmplx(-1, nan), cmplx(inf, nan), cmplx(nan, nan)}, + Test{cmplx(-1, nan), cmplx(inf, inf), cmplx(nan, nan)}, + Test{cmplx(-1, nan), cmplx(inf, -inf), cmplx(nan, nan)}, + Test{cmplx(-1, nan), cmplx(-inf, 0), cmplx(nan, nan)}, + Test{cmplx(-1, nan), cmplx(-inf, 1), cmplx(nan, nan)}, + Test{cmplx(-1, nan), cmplx(-inf, -1), cmplx(nan, nan)}, + Test{cmplx(-1, nan), cmplx(-inf, 2), cmplx(nan, nan)}, + Test{cmplx(-1, nan), cmplx(-inf, nan), cmplx(nan, nan)}, + Test{cmplx(-1, nan), cmplx(-inf, inf), cmplx(nan, nan)}, + Test{cmplx(-1, nan), cmplx(-inf, -inf), cmplx(nan, nan)}, + Test{cmplx(-1, inf), cmplx(0, 0), cmplx(-inf, inf)}, + Test{cmplx(-1, inf), cmplx(0, 1), cmplx(inf, nan)}, + Test{cmplx(-1, inf), cmplx(0, -1), cmplx(-inf, nan)}, + Test{cmplx(-1, inf), cmplx(0, 2), cmplx(inf, nan)}, + Test{cmplx(-1, inf), cmplx(0, nan), cmplx(nan, nan)}, + Test{cmplx(-1, inf), cmplx(0, inf), cmplx(nan, nan)}, + Test{cmplx(-1, inf), cmplx(0, -inf), cmplx(nan, nan)}, + Test{cmplx(-1, inf), cmplx(1, 0), cmplx(nan, inf)}, + Test{cmplx(-1, inf), cmplx(1, 1), cmplx(inf, inf)}, + Test{cmplx(-1, inf), cmplx(1, -1), cmplx(-inf, inf)}, + Test{cmplx(-1, inf), cmplx(1, 2), cmplx(inf, inf)}, + Test{cmplx(-1, inf), cmplx(1, nan), cmplx(nan, nan)}, + Test{cmplx(-1, inf), cmplx(1, inf), cmplx(nan, nan)}, + Test{cmplx(-1, inf), cmplx(1, -inf), cmplx(nan, nan)}, + Test{cmplx(-1, inf), cmplx(-1, 0), cmplx(nan, -inf)}, + Test{cmplx(-1, inf), cmplx(-1, 1), cmplx(inf, -inf)}, + Test{cmplx(-1, inf), cmplx(-1, -1), cmplx(-inf, -inf)}, + Test{cmplx(-1, inf), cmplx(-1, 2), cmplx(inf, -inf)}, + Test{cmplx(-1, inf), cmplx(-1, nan), cmplx(nan, nan)}, + Test{cmplx(-1, inf), cmplx(-1, inf), cmplx(nan, nan)}, + Test{cmplx(-1, inf), cmplx(-1, -inf), cmplx(nan, nan)}, + Test{cmplx(-1, inf), cmplx(2, 0), cmplx(nan, inf)}, + Test{cmplx(-1, inf), cmplx(2, 1), cmplx(inf, inf)}, + Test{cmplx(-1, inf), cmplx(2, -1), cmplx(-inf, inf)}, + Test{cmplx(-1, inf), cmplx(2, 2), cmplx(inf, inf)}, + Test{cmplx(-1, inf), cmplx(2, nan), cmplx(nan, nan)}, + Test{cmplx(-1, inf), cmplx(2, inf), cmplx(nan, nan)}, + Test{cmplx(-1, inf), cmplx(2, -inf), cmplx(nan, nan)}, + Test{cmplx(-1, inf), cmplx(nan, 0), cmplx(nan, nan)}, + Test{cmplx(-1, inf), cmplx(nan, 1), cmplx(nan, nan)}, + Test{cmplx(-1, inf), cmplx(nan, -1), cmplx(nan, nan)}, + Test{cmplx(-1, inf), cmplx(nan, 2), cmplx(nan, nan)}, + Test{cmplx(-1, inf), cmplx(nan, nan), cmplx(nan, nan)}, + Test{cmplx(-1, inf), cmplx(nan, inf), cmplx(nan, nan)}, + Test{cmplx(-1, inf), cmplx(nan, -inf), cmplx(nan, nan)}, + Test{cmplx(-1, inf), cmplx(inf, 0), cmplx(nan, nan)}, + Test{cmplx(-1, inf), cmplx(inf, 1), cmplx(nan, nan)}, + Test{cmplx(-1, inf), cmplx(inf, -1), cmplx(nan, nan)}, + Test{cmplx(-1, inf), cmplx(inf, 2), cmplx(nan, nan)}, + Test{cmplx(-1, inf), cmplx(inf, nan), cmplx(nan, nan)}, + Test{cmplx(-1, inf), cmplx(inf, inf), cmplx(nan, nan)}, + Test{cmplx(-1, inf), cmplx(inf, -inf), cmplx(nan, nan)}, + Test{cmplx(-1, inf), cmplx(-inf, 0), cmplx(nan, nan)}, + Test{cmplx(-1, inf), cmplx(-inf, 1), cmplx(nan, nan)}, + Test{cmplx(-1, inf), cmplx(-inf, -1), cmplx(nan, nan)}, + Test{cmplx(-1, inf), cmplx(-inf, 2), cmplx(nan, nan)}, + Test{cmplx(-1, inf), cmplx(-inf, nan), cmplx(nan, nan)}, + Test{cmplx(-1, inf), cmplx(-inf, inf), cmplx(nan, nan)}, + Test{cmplx(-1, inf), cmplx(-inf, -inf), cmplx(nan, nan)}, + Test{cmplx(-1, -inf), cmplx(0, 0), cmplx(-inf, -inf)}, + Test{cmplx(-1, -inf), cmplx(0, 1), cmplx(-inf, nan)}, + Test{cmplx(-1, -inf), cmplx(0, -1), cmplx(inf, nan)}, + Test{cmplx(-1, -inf), cmplx(0, 2), cmplx(-inf, nan)}, + Test{cmplx(-1, -inf), cmplx(0, nan), cmplx(nan, nan)}, + Test{cmplx(-1, -inf), cmplx(0, inf), cmplx(nan, nan)}, + Test{cmplx(-1, -inf), cmplx(0, -inf), cmplx(nan, nan)}, + Test{cmplx(-1, -inf), cmplx(1, 0), cmplx(nan, -inf)}, + Test{cmplx(-1, -inf), cmplx(1, 1), cmplx(-inf, -inf)}, + Test{cmplx(-1, -inf), cmplx(1, -1), cmplx(inf, -inf)}, + Test{cmplx(-1, -inf), cmplx(1, 2), cmplx(-inf, -inf)}, + Test{cmplx(-1, -inf), cmplx(1, nan), cmplx(nan, nan)}, + Test{cmplx(-1, -inf), cmplx(1, inf), cmplx(nan, nan)}, + Test{cmplx(-1, -inf), cmplx(1, -inf), cmplx(nan, nan)}, + Test{cmplx(-1, -inf), cmplx(-1, 0), cmplx(nan, inf)}, + Test{cmplx(-1, -inf), cmplx(-1, 1), cmplx(-inf, inf)}, + Test{cmplx(-1, -inf), cmplx(-1, -1), cmplx(inf, inf)}, + Test{cmplx(-1, -inf), cmplx(-1, 2), cmplx(-inf, inf)}, + Test{cmplx(-1, -inf), cmplx(-1, nan), cmplx(nan, nan)}, + Test{cmplx(-1, -inf), cmplx(-1, inf), cmplx(nan, nan)}, + Test{cmplx(-1, -inf), cmplx(-1, -inf), cmplx(nan, nan)}, + Test{cmplx(-1, -inf), cmplx(2, 0), cmplx(nan, -inf)}, + Test{cmplx(-1, -inf), cmplx(2, 1), cmplx(-inf, -inf)}, + Test{cmplx(-1, -inf), cmplx(2, -1), cmplx(inf, -inf)}, + Test{cmplx(-1, -inf), cmplx(2, 2), cmplx(-inf, -inf)}, + Test{cmplx(-1, -inf), cmplx(2, nan), cmplx(nan, nan)}, + Test{cmplx(-1, -inf), cmplx(2, inf), cmplx(nan, nan)}, + Test{cmplx(-1, -inf), cmplx(2, -inf), cmplx(nan, nan)}, + Test{cmplx(-1, -inf), cmplx(nan, 0), cmplx(nan, nan)}, + Test{cmplx(-1, -inf), cmplx(nan, 1), cmplx(nan, nan)}, + Test{cmplx(-1, -inf), cmplx(nan, -1), cmplx(nan, nan)}, + Test{cmplx(-1, -inf), cmplx(nan, 2), cmplx(nan, nan)}, + Test{cmplx(-1, -inf), cmplx(nan, nan), cmplx(nan, nan)}, + Test{cmplx(-1, -inf), cmplx(nan, inf), cmplx(nan, nan)}, + Test{cmplx(-1, -inf), cmplx(nan, -inf), cmplx(nan, nan)}, + Test{cmplx(-1, -inf), cmplx(inf, 0), cmplx(nan, nan)}, + Test{cmplx(-1, -inf), cmplx(inf, 1), cmplx(nan, nan)}, + Test{cmplx(-1, -inf), cmplx(inf, -1), cmplx(nan, nan)}, + Test{cmplx(-1, -inf), cmplx(inf, 2), cmplx(nan, nan)}, + Test{cmplx(-1, -inf), cmplx(inf, nan), cmplx(nan, nan)}, + Test{cmplx(-1, -inf), cmplx(inf, inf), cmplx(nan, nan)}, + Test{cmplx(-1, -inf), cmplx(inf, -inf), cmplx(nan, nan)}, + Test{cmplx(-1, -inf), cmplx(-inf, 0), cmplx(nan, nan)}, + Test{cmplx(-1, -inf), cmplx(-inf, 1), cmplx(nan, nan)}, + Test{cmplx(-1, -inf), cmplx(-inf, -1), cmplx(nan, nan)}, + Test{cmplx(-1, -inf), cmplx(-inf, 2), cmplx(nan, nan)}, + Test{cmplx(-1, -inf), cmplx(-inf, nan), cmplx(nan, nan)}, + Test{cmplx(-1, -inf), cmplx(-inf, inf), cmplx(nan, nan)}, + Test{cmplx(-1, -inf), cmplx(-inf, -inf), cmplx(nan, nan)}, + Test{cmplx(2, 0), cmplx(0, 0), cmplx(inf, nan)}, + Test{cmplx(2, 0), cmplx(0, 1), cmplx(0, -2)}, + Test{cmplx(2, 0), cmplx(0, -1), cmplx(negzero, 2)}, + Test{cmplx(2, 0), cmplx(0, 2), cmplx(0, -1)}, + Test{cmplx(2, 0), cmplx(0, nan), cmplx(nan, nan)}, + Test{cmplx(2, 0), cmplx(0, inf), cmplx(0, negzero)}, + Test{cmplx(2, 0), cmplx(0, -inf), cmplx(negzero, 0)}, + Test{cmplx(2, 0), cmplx(1, 0), cmplx(2, 0)}, + Test{cmplx(2, 0), cmplx(1, 1), cmplx(1, -1)}, + Test{cmplx(2, 0), cmplx(1, -1), cmplx(1, 1)}, + Test{cmplx(2, 0), cmplx(1, 2), cmplx(0.4, -0.8)}, + Test{cmplx(2, 0), cmplx(1, nan), cmplx(nan, nan)}, + Test{cmplx(2, 0), cmplx(1, inf), cmplx(0, negzero)}, + Test{cmplx(2, 0), cmplx(1, -inf), cmplx(negzero, 0)}, + Test{cmplx(2, 0), cmplx(-1, 0), cmplx(-2, negzero)}, + Test{cmplx(2, 0), cmplx(-1, 1), cmplx(-1, -1)}, + Test{cmplx(2, 0), cmplx(-1, -1), cmplx(-1, 1)}, + Test{cmplx(2, 0), cmplx(-1, 2), cmplx(-0.4, -0.8)}, + Test{cmplx(2, 0), cmplx(-1, nan), cmplx(nan, nan)}, + Test{cmplx(2, 0), cmplx(-1, inf), cmplx(0, negzero)}, + Test{cmplx(2, 0), cmplx(-1, -inf), cmplx(negzero, 0)}, + Test{cmplx(2, 0), cmplx(2, 0), cmplx(1, 0)}, + Test{cmplx(2, 0), cmplx(2, 1), cmplx(0.8, -0.4)}, + Test{cmplx(2, 0), cmplx(2, -1), cmplx(0.8, 0.4)}, + Test{cmplx(2, 0), cmplx(2, 2), cmplx(0.5, -0.5)}, + Test{cmplx(2, 0), cmplx(2, nan), cmplx(nan, nan)}, + Test{cmplx(2, 0), cmplx(2, inf), cmplx(0, negzero)}, + Test{cmplx(2, 0), cmplx(2, -inf), cmplx(negzero, 0)}, + Test{cmplx(2, 0), cmplx(nan, 0), cmplx(nan, nan)}, + Test{cmplx(2, 0), cmplx(nan, 1), cmplx(nan, nan)}, + Test{cmplx(2, 0), cmplx(nan, -1), cmplx(nan, nan)}, + Test{cmplx(2, 0), cmplx(nan, 2), cmplx(nan, nan)}, + Test{cmplx(2, 0), cmplx(nan, nan), cmplx(nan, nan)}, + Test{cmplx(2, 0), cmplx(nan, inf), cmplx(0, negzero)}, + Test{cmplx(2, 0), cmplx(nan, -inf), cmplx(0, 0)}, + Test{cmplx(2, 0), cmplx(inf, 0), cmplx(0, 0)}, + Test{cmplx(2, 0), cmplx(inf, 1), cmplx(0, 0)}, + Test{cmplx(2, 0), cmplx(inf, -1), cmplx(0, 0)}, + Test{cmplx(2, 0), cmplx(inf, 2), cmplx(0, 0)}, + Test{cmplx(2, 0), cmplx(inf, nan), cmplx(0, 0)}, + Test{cmplx(2, 0), cmplx(inf, inf), cmplx(0, negzero)}, + Test{cmplx(2, 0), cmplx(inf, -inf), cmplx(0, 0)}, + Test{cmplx(2, 0), cmplx(-inf, 0), cmplx(negzero, negzero)}, + Test{cmplx(2, 0), cmplx(-inf, 1), cmplx(negzero, negzero)}, + Test{cmplx(2, 0), cmplx(-inf, -1), cmplx(negzero, negzero)}, + Test{cmplx(2, 0), cmplx(-inf, 2), cmplx(negzero, negzero)}, + Test{cmplx(2, 0), cmplx(-inf, nan), cmplx(negzero, negzero)}, + Test{cmplx(2, 0), cmplx(-inf, inf), cmplx(negzero, negzero)}, + Test{cmplx(2, 0), cmplx(-inf, -inf), cmplx(negzero, 0)}, + Test{cmplx(2, 1), cmplx(0, 0), cmplx(inf, inf)}, + Test{cmplx(2, 1), cmplx(0, 1), cmplx(1, -2)}, + Test{cmplx(2, 1), cmplx(0, -1), cmplx(-1, 2)}, + Test{cmplx(2, 1), cmplx(0, 2), cmplx(0.5, -1)}, + Test{cmplx(2, 1), cmplx(0, nan), cmplx(nan, nan)}, + Test{cmplx(2, 1), cmplx(0, inf), cmplx(0, negzero)}, + Test{cmplx(2, 1), cmplx(0, -inf), cmplx(negzero, 0)}, + Test{cmplx(2, 1), cmplx(1, 0), cmplx(2, 1)}, + Test{cmplx(2, 1), cmplx(1, 1), cmplx(1.5, -0.5)}, + Test{cmplx(2, 1), cmplx(1, -1), cmplx(0.5, 1.5)}, + Test{cmplx(2, 1), cmplx(1, 2), cmplx(0.8, -0.6)}, + Test{cmplx(2, 1), cmplx(1, nan), cmplx(nan, nan)}, + Test{cmplx(2, 1), cmplx(1, inf), cmplx(0, negzero)}, + Test{cmplx(2, 1), cmplx(1, -inf), cmplx(negzero, 0)}, + Test{cmplx(2, 1), cmplx(-1, 0), cmplx(-2, -1)}, + Test{cmplx(2, 1), cmplx(-1, 1), cmplx(-0.5, -1.5)}, + Test{cmplx(2, 1), cmplx(-1, -1), cmplx(-1.5, 0.5)}, + Test{cmplx(2, 1), cmplx(-1, 2), cmplx(0, -1)}, + Test{cmplx(2, 1), cmplx(-1, nan), cmplx(nan, nan)}, + Test{cmplx(2, 1), cmplx(-1, inf), cmplx(0, negzero)}, + Test{cmplx(2, 1), cmplx(-1, -inf), cmplx(negzero, 0)}, + Test{cmplx(2, 1), cmplx(2, 0), cmplx(1, 0.5)}, + Test{cmplx(2, 1), cmplx(2, 1), cmplx(1, 0)}, + Test{cmplx(2, 1), cmplx(2, -1), cmplx(0.6, 0.8)}, + Test{cmplx(2, 1), cmplx(2, 2), cmplx(0.75, -0.25)}, + Test{cmplx(2, 1), cmplx(2, nan), cmplx(nan, nan)}, + Test{cmplx(2, 1), cmplx(2, inf), cmplx(0, negzero)}, + Test{cmplx(2, 1), cmplx(2, -inf), cmplx(negzero, 0)}, + Test{cmplx(2, 1), cmplx(nan, 0), cmplx(nan, nan)}, + Test{cmplx(2, 1), cmplx(nan, 1), cmplx(nan, nan)}, + Test{cmplx(2, 1), cmplx(nan, -1), cmplx(nan, nan)}, + Test{cmplx(2, 1), cmplx(nan, 2), cmplx(nan, nan)}, + Test{cmplx(2, 1), cmplx(nan, nan), cmplx(nan, nan)}, + Test{cmplx(2, 1), cmplx(nan, inf), cmplx(0, negzero)}, + Test{cmplx(2, 1), cmplx(nan, -inf), cmplx(negzero, 0)}, + Test{cmplx(2, 1), cmplx(inf, 0), cmplx(0, 0)}, + Test{cmplx(2, 1), cmplx(inf, 1), cmplx(0, 0)}, + Test{cmplx(2, 1), cmplx(inf, -1), cmplx(0, 0)}, + Test{cmplx(2, 1), cmplx(inf, 2), cmplx(0, 0)}, + Test{cmplx(2, 1), cmplx(inf, nan), cmplx(0, 0)}, + Test{cmplx(2, 1), cmplx(inf, inf), cmplx(0, negzero)}, + Test{cmplx(2, 1), cmplx(inf, -inf), cmplx(0, 0)}, + Test{cmplx(2, 1), cmplx(-inf, 0), cmplx(negzero, negzero)}, + Test{cmplx(2, 1), cmplx(-inf, 1), cmplx(negzero, negzero)}, + Test{cmplx(2, 1), cmplx(-inf, -1), cmplx(negzero, negzero)}, + Test{cmplx(2, 1), cmplx(-inf, 2), cmplx(negzero, negzero)}, + Test{cmplx(2, 1), cmplx(-inf, nan), cmplx(negzero, negzero)}, + Test{cmplx(2, 1), cmplx(-inf, inf), cmplx(negzero, negzero)}, + Test{cmplx(2, 1), cmplx(-inf, -inf), cmplx(negzero, 0)}, + Test{cmplx(2, -1), cmplx(0, 0), cmplx(inf, -inf)}, + Test{cmplx(2, -1), cmplx(0, 1), cmplx(-1, -2)}, + Test{cmplx(2, -1), cmplx(0, -1), cmplx(1, 2)}, + Test{cmplx(2, -1), cmplx(0, 2), cmplx(-0.5, -1)}, + Test{cmplx(2, -1), cmplx(0, nan), cmplx(nan, nan)}, + Test{cmplx(2, -1), cmplx(0, inf), cmplx(negzero, negzero)}, + Test{cmplx(2, -1), cmplx(0, -inf), cmplx(0, 0)}, + Test{cmplx(2, -1), cmplx(1, 0), cmplx(2, -1)}, + Test{cmplx(2, -1), cmplx(1, 1), cmplx(0.5, -1.5)}, + Test{cmplx(2, -1), cmplx(1, -1), cmplx(1.5, 0.5)}, + Test{cmplx(2, -1), cmplx(1, 2), cmplx(0, -1)}, + Test{cmplx(2, -1), cmplx(1, nan), cmplx(nan, nan)}, + Test{cmplx(2, -1), cmplx(1, inf), cmplx(negzero, negzero)}, + Test{cmplx(2, -1), cmplx(1, -inf), cmplx(0, 0)}, + Test{cmplx(2, -1), cmplx(-1, 0), cmplx(-2, 1)}, + Test{cmplx(2, -1), cmplx(-1, 1), cmplx(-1.5, -0.5)}, + Test{cmplx(2, -1), cmplx(-1, -1), cmplx(-0.5, 1.5)}, + Test{cmplx(2, -1), cmplx(-1, 2), cmplx(-0.8, -0.6)}, + Test{cmplx(2, -1), cmplx(-1, nan), cmplx(nan, nan)}, + Test{cmplx(2, -1), cmplx(-1, inf), cmplx(negzero, negzero)}, + Test{cmplx(2, -1), cmplx(-1, -inf), cmplx(0, 0)}, + Test{cmplx(2, -1), cmplx(2, 0), cmplx(1, -0.5)}, + Test{cmplx(2, -1), cmplx(2, 1), cmplx(0.6, -0.8)}, + Test{cmplx(2, -1), cmplx(2, -1), cmplx(1, 0)}, + Test{cmplx(2, -1), cmplx(2, 2), cmplx(0.25, -0.75)}, + Test{cmplx(2, -1), cmplx(2, nan), cmplx(nan, nan)}, + Test{cmplx(2, -1), cmplx(2, inf), cmplx(negzero, negzero)}, + Test{cmplx(2, -1), cmplx(2, -inf), cmplx(0, 0)}, + Test{cmplx(2, -1), cmplx(nan, 0), cmplx(nan, nan)}, + Test{cmplx(2, -1), cmplx(nan, 1), cmplx(nan, nan)}, + Test{cmplx(2, -1), cmplx(nan, -1), cmplx(nan, nan)}, + Test{cmplx(2, -1), cmplx(nan, 2), cmplx(nan, nan)}, + Test{cmplx(2, -1), cmplx(nan, nan), cmplx(nan, nan)}, + Test{cmplx(2, -1), cmplx(nan, inf), cmplx(negzero, negzero)}, + Test{cmplx(2, -1), cmplx(nan, -inf), cmplx(0, 0)}, + Test{cmplx(2, -1), cmplx(inf, 0), cmplx(0, negzero)}, + Test{cmplx(2, -1), cmplx(inf, 1), cmplx(0, negzero)}, + Test{cmplx(2, -1), cmplx(inf, -1), cmplx(0, negzero)}, + Test{cmplx(2, -1), cmplx(inf, 2), cmplx(0, negzero)}, + Test{cmplx(2, -1), cmplx(inf, nan), cmplx(0, negzero)}, + Test{cmplx(2, -1), cmplx(inf, inf), cmplx(0, negzero)}, + Test{cmplx(2, -1), cmplx(inf, -inf), cmplx(0, 0)}, + Test{cmplx(2, -1), cmplx(-inf, 0), cmplx(negzero, 0)}, + Test{cmplx(2, -1), cmplx(-inf, 1), cmplx(negzero, 0)}, + Test{cmplx(2, -1), cmplx(-inf, -1), cmplx(negzero, 0)}, + Test{cmplx(2, -1), cmplx(-inf, 2), cmplx(negzero, 0)}, + Test{cmplx(2, -1), cmplx(-inf, nan), cmplx(negzero, 0)}, + Test{cmplx(2, -1), cmplx(-inf, inf), cmplx(negzero, negzero)}, + Test{cmplx(2, -1), cmplx(-inf, -inf), cmplx(negzero, 0)}, + Test{cmplx(2, 2), cmplx(0, 0), cmplx(inf, inf)}, + Test{cmplx(2, 2), cmplx(0, 1), cmplx(2, -2)}, + Test{cmplx(2, 2), cmplx(0, -1), cmplx(-2, 2)}, + Test{cmplx(2, 2), cmplx(0, 2), cmplx(1, -1)}, + Test{cmplx(2, 2), cmplx(0, nan), cmplx(nan, nan)}, + Test{cmplx(2, 2), cmplx(0, inf), cmplx(0, negzero)}, + Test{cmplx(2, 2), cmplx(0, -inf), cmplx(negzero, 0)}, + Test{cmplx(2, 2), cmplx(1, 0), cmplx(2, 2)}, + Test{cmplx(2, 2), cmplx(1, 1), cmplx(2, 0)}, + Test{cmplx(2, 2), cmplx(1, -1), cmplx(0, 2)}, + Test{cmplx(2, 2), cmplx(1, 2), cmplx(1.2, -0.4)}, + Test{cmplx(2, 2), cmplx(1, nan), cmplx(nan, nan)}, + Test{cmplx(2, 2), cmplx(1, inf), cmplx(0, negzero)}, + Test{cmplx(2, 2), cmplx(1, -inf), cmplx(negzero, 0)}, + Test{cmplx(2, 2), cmplx(-1, 0), cmplx(-2, -2)}, + Test{cmplx(2, 2), cmplx(-1, 1), cmplx(negzero, -2)}, + Test{cmplx(2, 2), cmplx(-1, -1), cmplx(-2, negzero)}, + Test{cmplx(2, 2), cmplx(-1, 2), cmplx(0.4, -1.2)}, + Test{cmplx(2, 2), cmplx(-1, nan), cmplx(nan, nan)}, + Test{cmplx(2, 2), cmplx(-1, inf), cmplx(0, negzero)}, + Test{cmplx(2, 2), cmplx(-1, -inf), cmplx(negzero, 0)}, + Test{cmplx(2, 2), cmplx(2, 0), cmplx(1, 1)}, + Test{cmplx(2, 2), cmplx(2, 1), cmplx(1.2, 0.4)}, + Test{cmplx(2, 2), cmplx(2, -1), cmplx(0.4, 1.2)}, + Test{cmplx(2, 2), cmplx(2, 2), cmplx(1, 0)}, + Test{cmplx(2, 2), cmplx(2, nan), cmplx(nan, nan)}, + Test{cmplx(2, 2), cmplx(2, inf), cmplx(0, negzero)}, + Test{cmplx(2, 2), cmplx(2, -inf), cmplx(negzero, 0)}, + Test{cmplx(2, 2), cmplx(nan, 0), cmplx(nan, nan)}, + Test{cmplx(2, 2), cmplx(nan, 1), cmplx(nan, nan)}, + Test{cmplx(2, 2), cmplx(nan, -1), cmplx(nan, nan)}, + Test{cmplx(2, 2), cmplx(nan, 2), cmplx(nan, nan)}, + Test{cmplx(2, 2), cmplx(nan, nan), cmplx(nan, nan)}, + Test{cmplx(2, 2), cmplx(nan, inf), cmplx(0, negzero)}, + Test{cmplx(2, 2), cmplx(nan, -inf), cmplx(negzero, 0)}, + Test{cmplx(2, 2), cmplx(inf, 0), cmplx(0, 0)}, + Test{cmplx(2, 2), cmplx(inf, 1), cmplx(0, 0)}, + Test{cmplx(2, 2), cmplx(inf, -1), cmplx(0, 0)}, + Test{cmplx(2, 2), cmplx(inf, 2), cmplx(0, 0)}, + Test{cmplx(2, 2), cmplx(inf, nan), cmplx(0, 0)}, + Test{cmplx(2, 2), cmplx(inf, inf), cmplx(0, 0)}, + Test{cmplx(2, 2), cmplx(inf, -inf), cmplx(0, 0)}, + Test{cmplx(2, 2), cmplx(-inf, 0), cmplx(negzero, negzero)}, + Test{cmplx(2, 2), cmplx(-inf, 1), cmplx(negzero, negzero)}, + Test{cmplx(2, 2), cmplx(-inf, -1), cmplx(negzero, negzero)}, + Test{cmplx(2, 2), cmplx(-inf, 2), cmplx(negzero, negzero)}, + Test{cmplx(2, 2), cmplx(-inf, nan), cmplx(negzero, negzero)}, + Test{cmplx(2, 2), cmplx(-inf, inf), cmplx(0, negzero)}, + Test{cmplx(2, 2), cmplx(-inf, -inf), cmplx(negzero, 0)}, + Test{cmplx(2, nan), cmplx(0, 0), cmplx(nan, nan)}, + Test{cmplx(2, nan), cmplx(0, 1), cmplx(nan, nan)}, + Test{cmplx(2, nan), cmplx(0, -1), cmplx(nan, nan)}, + Test{cmplx(2, nan), cmplx(0, 2), cmplx(nan, nan)}, + Test{cmplx(2, nan), cmplx(0, nan), cmplx(nan, nan)}, + Test{cmplx(2, nan), cmplx(0, inf), cmplx(nan, nan)}, + Test{cmplx(2, nan), cmplx(0, -inf), cmplx(nan, nan)}, + Test{cmplx(2, nan), cmplx(1, 0), cmplx(nan, nan)}, + Test{cmplx(2, nan), cmplx(1, 1), cmplx(nan, nan)}, + Test{cmplx(2, nan), cmplx(1, -1), cmplx(nan, nan)}, + Test{cmplx(2, nan), cmplx(1, 2), cmplx(nan, nan)}, + Test{cmplx(2, nan), cmplx(1, nan), cmplx(nan, nan)}, + Test{cmplx(2, nan), cmplx(1, inf), cmplx(nan, nan)}, + Test{cmplx(2, nan), cmplx(1, -inf), cmplx(nan, nan)}, + Test{cmplx(2, nan), cmplx(-1, 0), cmplx(nan, nan)}, + Test{cmplx(2, nan), cmplx(-1, 1), cmplx(nan, nan)}, + Test{cmplx(2, nan), cmplx(-1, -1), cmplx(nan, nan)}, + Test{cmplx(2, nan), cmplx(-1, 2), cmplx(nan, nan)}, + Test{cmplx(2, nan), cmplx(-1, nan), cmplx(nan, nan)}, + Test{cmplx(2, nan), cmplx(-1, inf), cmplx(nan, nan)}, + Test{cmplx(2, nan), cmplx(-1, -inf), cmplx(nan, nan)}, + Test{cmplx(2, nan), cmplx(2, 0), cmplx(nan, nan)}, + Test{cmplx(2, nan), cmplx(2, 1), cmplx(nan, nan)}, + Test{cmplx(2, nan), cmplx(2, -1), cmplx(nan, nan)}, + Test{cmplx(2, nan), cmplx(2, 2), cmplx(nan, nan)}, + Test{cmplx(2, nan), cmplx(2, nan), cmplx(nan, nan)}, + Test{cmplx(2, nan), cmplx(2, inf), cmplx(nan, nan)}, + Test{cmplx(2, nan), cmplx(2, -inf), cmplx(nan, nan)}, + Test{cmplx(2, nan), cmplx(nan, 0), cmplx(nan, nan)}, + Test{cmplx(2, nan), cmplx(nan, 1), cmplx(nan, nan)}, + Test{cmplx(2, nan), cmplx(nan, -1), cmplx(nan, nan)}, + Test{cmplx(2, nan), cmplx(nan, 2), cmplx(nan, nan)}, + Test{cmplx(2, nan), cmplx(nan, nan), cmplx(nan, nan)}, + Test{cmplx(2, nan), cmplx(nan, inf), cmplx(nan, nan)}, + Test{cmplx(2, nan), cmplx(nan, -inf), cmplx(nan, nan)}, + Test{cmplx(2, nan), cmplx(inf, 0), cmplx(nan, nan)}, + Test{cmplx(2, nan), cmplx(inf, 1), cmplx(nan, nan)}, + Test{cmplx(2, nan), cmplx(inf, -1), cmplx(nan, nan)}, + Test{cmplx(2, nan), cmplx(inf, 2), cmplx(nan, nan)}, + Test{cmplx(2, nan), cmplx(inf, nan), cmplx(nan, nan)}, + Test{cmplx(2, nan), cmplx(inf, inf), cmplx(nan, nan)}, + Test{cmplx(2, nan), cmplx(inf, -inf), cmplx(nan, nan)}, + Test{cmplx(2, nan), cmplx(-inf, 0), cmplx(nan, nan)}, + Test{cmplx(2, nan), cmplx(-inf, 1), cmplx(nan, nan)}, + Test{cmplx(2, nan), cmplx(-inf, -1), cmplx(nan, nan)}, + Test{cmplx(2, nan), cmplx(-inf, 2), cmplx(nan, nan)}, + Test{cmplx(2, nan), cmplx(-inf, nan), cmplx(nan, nan)}, + Test{cmplx(2, nan), cmplx(-inf, inf), cmplx(nan, nan)}, + Test{cmplx(2, nan), cmplx(-inf, -inf), cmplx(nan, nan)}, + Test{cmplx(2, inf), cmplx(0, 0), cmplx(inf, inf)}, + Test{cmplx(2, inf), cmplx(0, 1), cmplx(inf, nan)}, + Test{cmplx(2, inf), cmplx(0, -1), cmplx(-inf, nan)}, + Test{cmplx(2, inf), cmplx(0, 2), cmplx(inf, nan)}, + Test{cmplx(2, inf), cmplx(0, nan), cmplx(nan, nan)}, + Test{cmplx(2, inf), cmplx(0, inf), cmplx(nan, nan)}, + Test{cmplx(2, inf), cmplx(0, -inf), cmplx(nan, nan)}, + Test{cmplx(2, inf), cmplx(1, 0), cmplx(nan, inf)}, + Test{cmplx(2, inf), cmplx(1, 1), cmplx(inf, inf)}, + Test{cmplx(2, inf), cmplx(1, -1), cmplx(-inf, inf)}, + Test{cmplx(2, inf), cmplx(1, 2), cmplx(inf, inf)}, + Test{cmplx(2, inf), cmplx(1, nan), cmplx(nan, nan)}, + Test{cmplx(2, inf), cmplx(1, inf), cmplx(nan, nan)}, + Test{cmplx(2, inf), cmplx(1, -inf), cmplx(nan, nan)}, + Test{cmplx(2, inf), cmplx(-1, 0), cmplx(nan, -inf)}, + Test{cmplx(2, inf), cmplx(-1, 1), cmplx(inf, -inf)}, + Test{cmplx(2, inf), cmplx(-1, -1), cmplx(-inf, -inf)}, + Test{cmplx(2, inf), cmplx(-1, 2), cmplx(inf, -inf)}, + Test{cmplx(2, inf), cmplx(-1, nan), cmplx(nan, nan)}, + Test{cmplx(2, inf), cmplx(-1, inf), cmplx(nan, nan)}, + Test{cmplx(2, inf), cmplx(-1, -inf), cmplx(nan, nan)}, + Test{cmplx(2, inf), cmplx(2, 0), cmplx(nan, inf)}, + Test{cmplx(2, inf), cmplx(2, 1), cmplx(inf, inf)}, + Test{cmplx(2, inf), cmplx(2, -1), cmplx(-inf, inf)}, + Test{cmplx(2, inf), cmplx(2, 2), cmplx(inf, inf)}, + Test{cmplx(2, inf), cmplx(2, nan), cmplx(nan, nan)}, + Test{cmplx(2, inf), cmplx(2, inf), cmplx(nan, nan)}, + Test{cmplx(2, inf), cmplx(2, -inf), cmplx(nan, nan)}, + Test{cmplx(2, inf), cmplx(nan, 0), cmplx(nan, nan)}, + Test{cmplx(2, inf), cmplx(nan, 1), cmplx(nan, nan)}, + Test{cmplx(2, inf), cmplx(nan, -1), cmplx(nan, nan)}, + Test{cmplx(2, inf), cmplx(nan, 2), cmplx(nan, nan)}, + Test{cmplx(2, inf), cmplx(nan, nan), cmplx(nan, nan)}, + Test{cmplx(2, inf), cmplx(nan, inf), cmplx(nan, nan)}, + Test{cmplx(2, inf), cmplx(nan, -inf), cmplx(nan, nan)}, + Test{cmplx(2, inf), cmplx(inf, 0), cmplx(nan, nan)}, + Test{cmplx(2, inf), cmplx(inf, 1), cmplx(nan, nan)}, + Test{cmplx(2, inf), cmplx(inf, -1), cmplx(nan, nan)}, + Test{cmplx(2, inf), cmplx(inf, 2), cmplx(nan, nan)}, + Test{cmplx(2, inf), cmplx(inf, nan), cmplx(nan, nan)}, + Test{cmplx(2, inf), cmplx(inf, inf), cmplx(nan, nan)}, + Test{cmplx(2, inf), cmplx(inf, -inf), cmplx(nan, nan)}, + Test{cmplx(2, inf), cmplx(-inf, 0), cmplx(nan, nan)}, + Test{cmplx(2, inf), cmplx(-inf, 1), cmplx(nan, nan)}, + Test{cmplx(2, inf), cmplx(-inf, -1), cmplx(nan, nan)}, + Test{cmplx(2, inf), cmplx(-inf, 2), cmplx(nan, nan)}, + Test{cmplx(2, inf), cmplx(-inf, nan), cmplx(nan, nan)}, + Test{cmplx(2, inf), cmplx(-inf, inf), cmplx(nan, nan)}, + Test{cmplx(2, inf), cmplx(-inf, -inf), cmplx(nan, nan)}, + Test{cmplx(2, -inf), cmplx(0, 0), cmplx(inf, -inf)}, + Test{cmplx(2, -inf), cmplx(0, 1), cmplx(-inf, nan)}, + Test{cmplx(2, -inf), cmplx(0, -1), cmplx(inf, nan)}, + Test{cmplx(2, -inf), cmplx(0, 2), cmplx(-inf, nan)}, + Test{cmplx(2, -inf), cmplx(0, nan), cmplx(nan, nan)}, + Test{cmplx(2, -inf), cmplx(0, inf), cmplx(nan, nan)}, + Test{cmplx(2, -inf), cmplx(0, -inf), cmplx(nan, nan)}, + Test{cmplx(2, -inf), cmplx(1, 0), cmplx(nan, -inf)}, + Test{cmplx(2, -inf), cmplx(1, 1), cmplx(-inf, -inf)}, + Test{cmplx(2, -inf), cmplx(1, -1), cmplx(inf, -inf)}, + Test{cmplx(2, -inf), cmplx(1, 2), cmplx(-inf, -inf)}, + Test{cmplx(2, -inf), cmplx(1, nan), cmplx(nan, nan)}, + Test{cmplx(2, -inf), cmplx(1, inf), cmplx(nan, nan)}, + Test{cmplx(2, -inf), cmplx(1, -inf), cmplx(nan, nan)}, + Test{cmplx(2, -inf), cmplx(-1, 0), cmplx(nan, inf)}, + Test{cmplx(2, -inf), cmplx(-1, 1), cmplx(-inf, inf)}, + Test{cmplx(2, -inf), cmplx(-1, -1), cmplx(inf, inf)}, + Test{cmplx(2, -inf), cmplx(-1, 2), cmplx(-inf, inf)}, + Test{cmplx(2, -inf), cmplx(-1, nan), cmplx(nan, nan)}, + Test{cmplx(2, -inf), cmplx(-1, inf), cmplx(nan, nan)}, + Test{cmplx(2, -inf), cmplx(-1, -inf), cmplx(nan, nan)}, + Test{cmplx(2, -inf), cmplx(2, 0), cmplx(nan, -inf)}, + Test{cmplx(2, -inf), cmplx(2, 1), cmplx(-inf, -inf)}, + Test{cmplx(2, -inf), cmplx(2, -1), cmplx(inf, -inf)}, + Test{cmplx(2, -inf), cmplx(2, 2), cmplx(-inf, -inf)}, + Test{cmplx(2, -inf), cmplx(2, nan), cmplx(nan, nan)}, + Test{cmplx(2, -inf), cmplx(2, inf), cmplx(nan, nan)}, + Test{cmplx(2, -inf), cmplx(2, -inf), cmplx(nan, nan)}, + Test{cmplx(2, -inf), cmplx(nan, 0), cmplx(nan, nan)}, + Test{cmplx(2, -inf), cmplx(nan, 1), cmplx(nan, nan)}, + Test{cmplx(2, -inf), cmplx(nan, -1), cmplx(nan, nan)}, + Test{cmplx(2, -inf), cmplx(nan, 2), cmplx(nan, nan)}, + Test{cmplx(2, -inf), cmplx(nan, nan), cmplx(nan, nan)}, + Test{cmplx(2, -inf), cmplx(nan, inf), cmplx(nan, nan)}, + Test{cmplx(2, -inf), cmplx(nan, -inf), cmplx(nan, nan)}, + Test{cmplx(2, -inf), cmplx(inf, 0), cmplx(nan, nan)}, + Test{cmplx(2, -inf), cmplx(inf, 1), cmplx(nan, nan)}, + Test{cmplx(2, -inf), cmplx(inf, -1), cmplx(nan, nan)}, + Test{cmplx(2, -inf), cmplx(inf, 2), cmplx(nan, nan)}, + Test{cmplx(2, -inf), cmplx(inf, nan), cmplx(nan, nan)}, + Test{cmplx(2, -inf), cmplx(inf, inf), cmplx(nan, nan)}, + Test{cmplx(2, -inf), cmplx(inf, -inf), cmplx(nan, nan)}, + Test{cmplx(2, -inf), cmplx(-inf, 0), cmplx(nan, nan)}, + Test{cmplx(2, -inf), cmplx(-inf, 1), cmplx(nan, nan)}, + Test{cmplx(2, -inf), cmplx(-inf, -1), cmplx(nan, nan)}, + Test{cmplx(2, -inf), cmplx(-inf, 2), cmplx(nan, nan)}, + Test{cmplx(2, -inf), cmplx(-inf, nan), cmplx(nan, nan)}, + Test{cmplx(2, -inf), cmplx(-inf, inf), cmplx(nan, nan)}, + Test{cmplx(2, -inf), cmplx(-inf, -inf), cmplx(nan, nan)}, + Test{cmplx(nan, 0), cmplx(0, 0), cmplx(nan, nan)}, + Test{cmplx(nan, 0), cmplx(0, 1), cmplx(nan, nan)}, + Test{cmplx(nan, 0), cmplx(0, -1), cmplx(nan, nan)}, + Test{cmplx(nan, 0), cmplx(0, 2), cmplx(nan, nan)}, + Test{cmplx(nan, 0), cmplx(0, nan), cmplx(nan, nan)}, + Test{cmplx(nan, 0), cmplx(0, inf), cmplx(nan, nan)}, + Test{cmplx(nan, 0), cmplx(0, -inf), cmplx(nan, nan)}, + Test{cmplx(nan, 0), cmplx(1, 0), cmplx(nan, nan)}, + Test{cmplx(nan, 0), cmplx(1, 1), cmplx(nan, nan)}, + Test{cmplx(nan, 0), cmplx(1, -1), cmplx(nan, nan)}, + Test{cmplx(nan, 0), cmplx(1, 2), cmplx(nan, nan)}, + Test{cmplx(nan, 0), cmplx(1, nan), cmplx(nan, nan)}, + Test{cmplx(nan, 0), cmplx(1, inf), cmplx(nan, nan)}, + Test{cmplx(nan, 0), cmplx(1, -inf), cmplx(nan, nan)}, + Test{cmplx(nan, 0), cmplx(-1, 0), cmplx(nan, nan)}, + Test{cmplx(nan, 0), cmplx(-1, 1), cmplx(nan, nan)}, + Test{cmplx(nan, 0), cmplx(-1, -1), cmplx(nan, nan)}, + Test{cmplx(nan, 0), cmplx(-1, 2), cmplx(nan, nan)}, + Test{cmplx(nan, 0), cmplx(-1, nan), cmplx(nan, nan)}, + Test{cmplx(nan, 0), cmplx(-1, inf), cmplx(nan, nan)}, + Test{cmplx(nan, 0), cmplx(-1, -inf), cmplx(nan, nan)}, + Test{cmplx(nan, 0), cmplx(2, 0), cmplx(nan, nan)}, + Test{cmplx(nan, 0), cmplx(2, 1), cmplx(nan, nan)}, + Test{cmplx(nan, 0), cmplx(2, -1), cmplx(nan, nan)}, + Test{cmplx(nan, 0), cmplx(2, 2), cmplx(nan, nan)}, + Test{cmplx(nan, 0), cmplx(2, nan), cmplx(nan, nan)}, + Test{cmplx(nan, 0), cmplx(2, inf), cmplx(nan, nan)}, + Test{cmplx(nan, 0), cmplx(2, -inf), cmplx(nan, nan)}, + Test{cmplx(nan, 0), cmplx(nan, 0), cmplx(nan, nan)}, + Test{cmplx(nan, 0), cmplx(nan, 1), cmplx(nan, nan)}, + Test{cmplx(nan, 0), cmplx(nan, -1), cmplx(nan, nan)}, + Test{cmplx(nan, 0), cmplx(nan, 2), cmplx(nan, nan)}, + Test{cmplx(nan, 0), cmplx(nan, nan), cmplx(nan, nan)}, + Test{cmplx(nan, 0), cmplx(nan, inf), cmplx(nan, nan)}, + Test{cmplx(nan, 0), cmplx(nan, -inf), cmplx(nan, nan)}, + Test{cmplx(nan, 0), cmplx(inf, 0), cmplx(nan, nan)}, + Test{cmplx(nan, 0), cmplx(inf, 1), cmplx(nan, nan)}, + Test{cmplx(nan, 0), cmplx(inf, -1), cmplx(nan, nan)}, + Test{cmplx(nan, 0), cmplx(inf, 2), cmplx(nan, nan)}, + Test{cmplx(nan, 0), cmplx(inf, nan), cmplx(nan, nan)}, + Test{cmplx(nan, 0), cmplx(inf, inf), cmplx(nan, nan)}, + Test{cmplx(nan, 0), cmplx(inf, -inf), cmplx(nan, nan)}, + Test{cmplx(nan, 0), cmplx(-inf, 0), cmplx(nan, nan)}, + Test{cmplx(nan, 0), cmplx(-inf, 1), cmplx(nan, nan)}, + Test{cmplx(nan, 0), cmplx(-inf, -1), cmplx(nan, nan)}, + Test{cmplx(nan, 0), cmplx(-inf, 2), cmplx(nan, nan)}, + Test{cmplx(nan, 0), cmplx(-inf, nan), cmplx(nan, nan)}, + Test{cmplx(nan, 0), cmplx(-inf, inf), cmplx(nan, nan)}, + Test{cmplx(nan, 0), cmplx(-inf, -inf), cmplx(nan, nan)}, + Test{cmplx(nan, 1), cmplx(0, 0), cmplx(nan, nan)}, + Test{cmplx(nan, 1), cmplx(0, 1), cmplx(nan, nan)}, + Test{cmplx(nan, 1), cmplx(0, -1), cmplx(nan, nan)}, + Test{cmplx(nan, 1), cmplx(0, 2), cmplx(nan, nan)}, + Test{cmplx(nan, 1), cmplx(0, nan), cmplx(nan, nan)}, + Test{cmplx(nan, 1), cmplx(0, inf), cmplx(nan, nan)}, + Test{cmplx(nan, 1), cmplx(0, -inf), cmplx(nan, nan)}, + Test{cmplx(nan, 1), cmplx(1, 0), cmplx(nan, nan)}, + Test{cmplx(nan, 1), cmplx(1, 1), cmplx(nan, nan)}, + Test{cmplx(nan, 1), cmplx(1, -1), cmplx(nan, nan)}, + Test{cmplx(nan, 1), cmplx(1, 2), cmplx(nan, nan)}, + Test{cmplx(nan, 1), cmplx(1, nan), cmplx(nan, nan)}, + Test{cmplx(nan, 1), cmplx(1, inf), cmplx(nan, nan)}, + Test{cmplx(nan, 1), cmplx(1, -inf), cmplx(nan, nan)}, + Test{cmplx(nan, 1), cmplx(-1, 0), cmplx(nan, nan)}, + Test{cmplx(nan, 1), cmplx(-1, 1), cmplx(nan, nan)}, + Test{cmplx(nan, 1), cmplx(-1, -1), cmplx(nan, nan)}, + Test{cmplx(nan, 1), cmplx(-1, 2), cmplx(nan, nan)}, + Test{cmplx(nan, 1), cmplx(-1, nan), cmplx(nan, nan)}, + Test{cmplx(nan, 1), cmplx(-1, inf), cmplx(nan, nan)}, + Test{cmplx(nan, 1), cmplx(-1, -inf), cmplx(nan, nan)}, + Test{cmplx(nan, 1), cmplx(2, 0), cmplx(nan, nan)}, + Test{cmplx(nan, 1), cmplx(2, 1), cmplx(nan, nan)}, + Test{cmplx(nan, 1), cmplx(2, -1), cmplx(nan, nan)}, + Test{cmplx(nan, 1), cmplx(2, 2), cmplx(nan, nan)}, + Test{cmplx(nan, 1), cmplx(2, nan), cmplx(nan, nan)}, + Test{cmplx(nan, 1), cmplx(2, inf), cmplx(nan, nan)}, + Test{cmplx(nan, 1), cmplx(2, -inf), cmplx(nan, nan)}, + Test{cmplx(nan, 1), cmplx(nan, 0), cmplx(nan, nan)}, + Test{cmplx(nan, 1), cmplx(nan, 1), cmplx(nan, nan)}, + Test{cmplx(nan, 1), cmplx(nan, -1), cmplx(nan, nan)}, + Test{cmplx(nan, 1), cmplx(nan, 2), cmplx(nan, nan)}, + Test{cmplx(nan, 1), cmplx(nan, nan), cmplx(nan, nan)}, + Test{cmplx(nan, 1), cmplx(nan, inf), cmplx(nan, nan)}, + Test{cmplx(nan, 1), cmplx(nan, -inf), cmplx(nan, nan)}, + Test{cmplx(nan, 1), cmplx(inf, 0), cmplx(nan, nan)}, + Test{cmplx(nan, 1), cmplx(inf, 1), cmplx(nan, nan)}, + Test{cmplx(nan, 1), cmplx(inf, -1), cmplx(nan, nan)}, + Test{cmplx(nan, 1), cmplx(inf, 2), cmplx(nan, nan)}, + Test{cmplx(nan, 1), cmplx(inf, nan), cmplx(nan, nan)}, + Test{cmplx(nan, 1), cmplx(inf, inf), cmplx(nan, nan)}, + Test{cmplx(nan, 1), cmplx(inf, -inf), cmplx(nan, nan)}, + Test{cmplx(nan, 1), cmplx(-inf, 0), cmplx(nan, nan)}, + Test{cmplx(nan, 1), cmplx(-inf, 1), cmplx(nan, nan)}, + Test{cmplx(nan, 1), cmplx(-inf, -1), cmplx(nan, nan)}, + Test{cmplx(nan, 1), cmplx(-inf, 2), cmplx(nan, nan)}, + Test{cmplx(nan, 1), cmplx(-inf, nan), cmplx(nan, nan)}, + Test{cmplx(nan, 1), cmplx(-inf, inf), cmplx(nan, nan)}, + Test{cmplx(nan, 1), cmplx(-inf, -inf), cmplx(nan, nan)}, + Test{cmplx(nan, -1), cmplx(0, 0), cmplx(nan, nan)}, + Test{cmplx(nan, -1), cmplx(0, 1), cmplx(nan, nan)}, + Test{cmplx(nan, -1), cmplx(0, -1), cmplx(nan, nan)}, + Test{cmplx(nan, -1), cmplx(0, 2), cmplx(nan, nan)}, + Test{cmplx(nan, -1), cmplx(0, nan), cmplx(nan, nan)}, + Test{cmplx(nan, -1), cmplx(0, inf), cmplx(nan, nan)}, + Test{cmplx(nan, -1), cmplx(0, -inf), cmplx(nan, nan)}, + Test{cmplx(nan, -1), cmplx(1, 0), cmplx(nan, nan)}, + Test{cmplx(nan, -1), cmplx(1, 1), cmplx(nan, nan)}, + Test{cmplx(nan, -1), cmplx(1, -1), cmplx(nan, nan)}, + Test{cmplx(nan, -1), cmplx(1, 2), cmplx(nan, nan)}, + Test{cmplx(nan, -1), cmplx(1, nan), cmplx(nan, nan)}, + Test{cmplx(nan, -1), cmplx(1, inf), cmplx(nan, nan)}, + Test{cmplx(nan, -1), cmplx(1, -inf), cmplx(nan, nan)}, + Test{cmplx(nan, -1), cmplx(-1, 0), cmplx(nan, nan)}, + Test{cmplx(nan, -1), cmplx(-1, 1), cmplx(nan, nan)}, + Test{cmplx(nan, -1), cmplx(-1, -1), cmplx(nan, nan)}, + Test{cmplx(nan, -1), cmplx(-1, 2), cmplx(nan, nan)}, + Test{cmplx(nan, -1), cmplx(-1, nan), cmplx(nan, nan)}, + Test{cmplx(nan, -1), cmplx(-1, inf), cmplx(nan, nan)}, + Test{cmplx(nan, -1), cmplx(-1, -inf), cmplx(nan, nan)}, + Test{cmplx(nan, -1), cmplx(2, 0), cmplx(nan, nan)}, + Test{cmplx(nan, -1), cmplx(2, 1), cmplx(nan, nan)}, + Test{cmplx(nan, -1), cmplx(2, -1), cmplx(nan, nan)}, + Test{cmplx(nan, -1), cmplx(2, 2), cmplx(nan, nan)}, + Test{cmplx(nan, -1), cmplx(2, nan), cmplx(nan, nan)}, + Test{cmplx(nan, -1), cmplx(2, inf), cmplx(nan, nan)}, + Test{cmplx(nan, -1), cmplx(2, -inf), cmplx(nan, nan)}, + Test{cmplx(nan, -1), cmplx(nan, 0), cmplx(nan, nan)}, + Test{cmplx(nan, -1), cmplx(nan, 1), cmplx(nan, nan)}, + Test{cmplx(nan, -1), cmplx(nan, -1), cmplx(nan, nan)}, + Test{cmplx(nan, -1), cmplx(nan, 2), cmplx(nan, nan)}, + Test{cmplx(nan, -1), cmplx(nan, nan), cmplx(nan, nan)}, + Test{cmplx(nan, -1), cmplx(nan, inf), cmplx(nan, nan)}, + Test{cmplx(nan, -1), cmplx(nan, -inf), cmplx(nan, nan)}, + Test{cmplx(nan, -1), cmplx(inf, 0), cmplx(nan, nan)}, + Test{cmplx(nan, -1), cmplx(inf, 1), cmplx(nan, nan)}, + Test{cmplx(nan, -1), cmplx(inf, -1), cmplx(nan, nan)}, + Test{cmplx(nan, -1), cmplx(inf, 2), cmplx(nan, nan)}, + Test{cmplx(nan, -1), cmplx(inf, nan), cmplx(nan, nan)}, + Test{cmplx(nan, -1), cmplx(inf, inf), cmplx(nan, nan)}, + Test{cmplx(nan, -1), cmplx(inf, -inf), cmplx(nan, nan)}, + Test{cmplx(nan, -1), cmplx(-inf, 0), cmplx(nan, nan)}, + Test{cmplx(nan, -1), cmplx(-inf, 1), cmplx(nan, nan)}, + Test{cmplx(nan, -1), cmplx(-inf, -1), cmplx(nan, nan)}, + Test{cmplx(nan, -1), cmplx(-inf, 2), cmplx(nan, nan)}, + Test{cmplx(nan, -1), cmplx(-inf, nan), cmplx(nan, nan)}, + Test{cmplx(nan, -1), cmplx(-inf, inf), cmplx(nan, nan)}, + Test{cmplx(nan, -1), cmplx(-inf, -inf), cmplx(nan, nan)}, + Test{cmplx(nan, 2), cmplx(0, 0), cmplx(nan, nan)}, + Test{cmplx(nan, 2), cmplx(0, 1), cmplx(nan, nan)}, + Test{cmplx(nan, 2), cmplx(0, -1), cmplx(nan, nan)}, + Test{cmplx(nan, 2), cmplx(0, 2), cmplx(nan, nan)}, + Test{cmplx(nan, 2), cmplx(0, nan), cmplx(nan, nan)}, + Test{cmplx(nan, 2), cmplx(0, inf), cmplx(nan, nan)}, + Test{cmplx(nan, 2), cmplx(0, -inf), cmplx(nan, nan)}, + Test{cmplx(nan, 2), cmplx(1, 0), cmplx(nan, nan)}, + Test{cmplx(nan, 2), cmplx(1, 1), cmplx(nan, nan)}, + Test{cmplx(nan, 2), cmplx(1, -1), cmplx(nan, nan)}, + Test{cmplx(nan, 2), cmplx(1, 2), cmplx(nan, nan)}, + Test{cmplx(nan, 2), cmplx(1, nan), cmplx(nan, nan)}, + Test{cmplx(nan, 2), cmplx(1, inf), cmplx(nan, nan)}, + Test{cmplx(nan, 2), cmplx(1, -inf), cmplx(nan, nan)}, + Test{cmplx(nan, 2), cmplx(-1, 0), cmplx(nan, nan)}, + Test{cmplx(nan, 2), cmplx(-1, 1), cmplx(nan, nan)}, + Test{cmplx(nan, 2), cmplx(-1, -1), cmplx(nan, nan)}, + Test{cmplx(nan, 2), cmplx(-1, 2), cmplx(nan, nan)}, + Test{cmplx(nan, 2), cmplx(-1, nan), cmplx(nan, nan)}, + Test{cmplx(nan, 2), cmplx(-1, inf), cmplx(nan, nan)}, + Test{cmplx(nan, 2), cmplx(-1, -inf), cmplx(nan, nan)}, + Test{cmplx(nan, 2), cmplx(2, 0), cmplx(nan, nan)}, + Test{cmplx(nan, 2), cmplx(2, 1), cmplx(nan, nan)}, + Test{cmplx(nan, 2), cmplx(2, -1), cmplx(nan, nan)}, + Test{cmplx(nan, 2), cmplx(2, 2), cmplx(nan, nan)}, + Test{cmplx(nan, 2), cmplx(2, nan), cmplx(nan, nan)}, + Test{cmplx(nan, 2), cmplx(2, inf), cmplx(nan, nan)}, + Test{cmplx(nan, 2), cmplx(2, -inf), cmplx(nan, nan)}, + Test{cmplx(nan, 2), cmplx(nan, 0), cmplx(nan, nan)}, + Test{cmplx(nan, 2), cmplx(nan, 1), cmplx(nan, nan)}, + Test{cmplx(nan, 2), cmplx(nan, -1), cmplx(nan, nan)}, + Test{cmplx(nan, 2), cmplx(nan, 2), cmplx(nan, nan)}, + Test{cmplx(nan, 2), cmplx(nan, nan), cmplx(nan, nan)}, + Test{cmplx(nan, 2), cmplx(nan, inf), cmplx(nan, nan)}, + Test{cmplx(nan, 2), cmplx(nan, -inf), cmplx(nan, nan)}, + Test{cmplx(nan, 2), cmplx(inf, 0), cmplx(nan, nan)}, + Test{cmplx(nan, 2), cmplx(inf, 1), cmplx(nan, nan)}, + Test{cmplx(nan, 2), cmplx(inf, -1), cmplx(nan, nan)}, + Test{cmplx(nan, 2), cmplx(inf, 2), cmplx(nan, nan)}, + Test{cmplx(nan, 2), cmplx(inf, nan), cmplx(nan, nan)}, + Test{cmplx(nan, 2), cmplx(inf, inf), cmplx(nan, nan)}, + Test{cmplx(nan, 2), cmplx(inf, -inf), cmplx(nan, nan)}, + Test{cmplx(nan, 2), cmplx(-inf, 0), cmplx(nan, nan)}, + Test{cmplx(nan, 2), cmplx(-inf, 1), cmplx(nan, nan)}, + Test{cmplx(nan, 2), cmplx(-inf, -1), cmplx(nan, nan)}, + Test{cmplx(nan, 2), cmplx(-inf, 2), cmplx(nan, nan)}, + Test{cmplx(nan, 2), cmplx(-inf, nan), cmplx(nan, nan)}, + Test{cmplx(nan, 2), cmplx(-inf, inf), cmplx(nan, nan)}, + Test{cmplx(nan, 2), cmplx(-inf, -inf), cmplx(nan, nan)}, + Test{cmplx(nan, nan), cmplx(0, 0), cmplx(nan, nan)}, + Test{cmplx(nan, nan), cmplx(0, 1), cmplx(nan, nan)}, + Test{cmplx(nan, nan), cmplx(0, -1), cmplx(nan, nan)}, + Test{cmplx(nan, nan), cmplx(0, 2), cmplx(nan, nan)}, + Test{cmplx(nan, nan), cmplx(0, nan), cmplx(nan, nan)}, + Test{cmplx(nan, nan), cmplx(0, inf), cmplx(nan, nan)}, + Test{cmplx(nan, nan), cmplx(0, -inf), cmplx(nan, nan)}, + Test{cmplx(nan, nan), cmplx(1, 0), cmplx(nan, nan)}, + Test{cmplx(nan, nan), cmplx(1, 1), cmplx(nan, nan)}, + Test{cmplx(nan, nan), cmplx(1, -1), cmplx(nan, nan)}, + Test{cmplx(nan, nan), cmplx(1, 2), cmplx(nan, nan)}, + Test{cmplx(nan, nan), cmplx(1, nan), cmplx(nan, nan)}, + Test{cmplx(nan, nan), cmplx(1, inf), cmplx(nan, nan)}, + Test{cmplx(nan, nan), cmplx(1, -inf), cmplx(nan, nan)}, + Test{cmplx(nan, nan), cmplx(-1, 0), cmplx(nan, nan)}, + Test{cmplx(nan, nan), cmplx(-1, 1), cmplx(nan, nan)}, + Test{cmplx(nan, nan), cmplx(-1, -1), cmplx(nan, nan)}, + Test{cmplx(nan, nan), cmplx(-1, 2), cmplx(nan, nan)}, + Test{cmplx(nan, nan), cmplx(-1, nan), cmplx(nan, nan)}, + Test{cmplx(nan, nan), cmplx(-1, inf), cmplx(nan, nan)}, + Test{cmplx(nan, nan), cmplx(-1, -inf), cmplx(nan, nan)}, + Test{cmplx(nan, nan), cmplx(2, 0), cmplx(nan, nan)}, + Test{cmplx(nan, nan), cmplx(2, 1), cmplx(nan, nan)}, + Test{cmplx(nan, nan), cmplx(2, -1), cmplx(nan, nan)}, + Test{cmplx(nan, nan), cmplx(2, 2), cmplx(nan, nan)}, + Test{cmplx(nan, nan), cmplx(2, nan), cmplx(nan, nan)}, + Test{cmplx(nan, nan), cmplx(2, inf), cmplx(nan, nan)}, + Test{cmplx(nan, nan), cmplx(2, -inf), cmplx(nan, nan)}, + Test{cmplx(nan, nan), cmplx(nan, 0), cmplx(nan, nan)}, + Test{cmplx(nan, nan), cmplx(nan, 1), cmplx(nan, nan)}, + Test{cmplx(nan, nan), cmplx(nan, -1), cmplx(nan, nan)}, + Test{cmplx(nan, nan), cmplx(nan, 2), cmplx(nan, nan)}, + Test{cmplx(nan, nan), cmplx(nan, nan), cmplx(nan, nan)}, + Test{cmplx(nan, nan), cmplx(nan, inf), cmplx(nan, nan)}, + Test{cmplx(nan, nan), cmplx(nan, -inf), cmplx(nan, nan)}, + Test{cmplx(nan, nan), cmplx(inf, 0), cmplx(nan, nan)}, + Test{cmplx(nan, nan), cmplx(inf, 1), cmplx(nan, nan)}, + Test{cmplx(nan, nan), cmplx(inf, -1), cmplx(nan, nan)}, + Test{cmplx(nan, nan), cmplx(inf, 2), cmplx(nan, nan)}, + Test{cmplx(nan, nan), cmplx(inf, nan), cmplx(nan, nan)}, + Test{cmplx(nan, nan), cmplx(inf, inf), cmplx(nan, nan)}, + Test{cmplx(nan, nan), cmplx(inf, -inf), cmplx(nan, nan)}, + Test{cmplx(nan, nan), cmplx(-inf, 0), cmplx(nan, nan)}, + Test{cmplx(nan, nan), cmplx(-inf, 1), cmplx(nan, nan)}, + Test{cmplx(nan, nan), cmplx(-inf, -1), cmplx(nan, nan)}, + Test{cmplx(nan, nan), cmplx(-inf, 2), cmplx(nan, nan)}, + Test{cmplx(nan, nan), cmplx(-inf, nan), cmplx(nan, nan)}, + Test{cmplx(nan, nan), cmplx(-inf, inf), cmplx(nan, nan)}, + Test{cmplx(nan, nan), cmplx(-inf, -inf), cmplx(nan, nan)}, + Test{cmplx(nan, inf), cmplx(0, 0), cmplx(nan, inf)}, + Test{cmplx(nan, inf), cmplx(0, 1), cmplx(inf, nan)}, + Test{cmplx(nan, inf), cmplx(0, -1), cmplx(-inf, nan)}, + Test{cmplx(nan, inf), cmplx(0, 2), cmplx(inf, nan)}, + Test{cmplx(nan, inf), cmplx(0, nan), cmplx(nan, nan)}, + Test{cmplx(nan, inf), cmplx(0, inf), cmplx(nan, nan)}, + Test{cmplx(nan, inf), cmplx(0, -inf), cmplx(nan, nan)}, + Test{cmplx(nan, inf), cmplx(1, 0), cmplx(nan, inf)}, + Test{cmplx(nan, inf), cmplx(1, 1), cmplx(inf, inf)}, + Test{cmplx(nan, inf), cmplx(1, -1), cmplx(-inf, inf)}, + Test{cmplx(nan, inf), cmplx(1, 2), cmplx(inf, inf)}, + Test{cmplx(nan, inf), cmplx(1, nan), cmplx(nan, nan)}, + Test{cmplx(nan, inf), cmplx(1, inf), cmplx(nan, nan)}, + Test{cmplx(nan, inf), cmplx(1, -inf), cmplx(nan, nan)}, + Test{cmplx(nan, inf), cmplx(-1, 0), cmplx(nan, -inf)}, + Test{cmplx(nan, inf), cmplx(-1, 1), cmplx(inf, -inf)}, + Test{cmplx(nan, inf), cmplx(-1, -1), cmplx(-inf, -inf)}, + Test{cmplx(nan, inf), cmplx(-1, 2), cmplx(inf, -inf)}, + Test{cmplx(nan, inf), cmplx(-1, nan), cmplx(nan, nan)}, + Test{cmplx(nan, inf), cmplx(-1, inf), cmplx(nan, nan)}, + Test{cmplx(nan, inf), cmplx(-1, -inf), cmplx(nan, nan)}, + Test{cmplx(nan, inf), cmplx(2, 0), cmplx(nan, inf)}, + Test{cmplx(nan, inf), cmplx(2, 1), cmplx(inf, inf)}, + Test{cmplx(nan, inf), cmplx(2, -1), cmplx(-inf, inf)}, + Test{cmplx(nan, inf), cmplx(2, 2), cmplx(inf, inf)}, + Test{cmplx(nan, inf), cmplx(2, nan), cmplx(nan, nan)}, + Test{cmplx(nan, inf), cmplx(2, inf), cmplx(nan, nan)}, + Test{cmplx(nan, inf), cmplx(2, -inf), cmplx(nan, nan)}, + Test{cmplx(nan, inf), cmplx(nan, 0), cmplx(nan, nan)}, + Test{cmplx(nan, inf), cmplx(nan, 1), cmplx(nan, nan)}, + Test{cmplx(nan, inf), cmplx(nan, -1), cmplx(nan, nan)}, + Test{cmplx(nan, inf), cmplx(nan, 2), cmplx(nan, nan)}, + Test{cmplx(nan, inf), cmplx(nan, nan), cmplx(nan, nan)}, + Test{cmplx(nan, inf), cmplx(nan, inf), cmplx(nan, nan)}, + Test{cmplx(nan, inf), cmplx(nan, -inf), cmplx(nan, nan)}, + Test{cmplx(nan, inf), cmplx(inf, 0), cmplx(nan, nan)}, + Test{cmplx(nan, inf), cmplx(inf, 1), cmplx(nan, nan)}, + Test{cmplx(nan, inf), cmplx(inf, -1), cmplx(nan, nan)}, + Test{cmplx(nan, inf), cmplx(inf, 2), cmplx(nan, nan)}, + Test{cmplx(nan, inf), cmplx(inf, nan), cmplx(nan, nan)}, + Test{cmplx(nan, inf), cmplx(inf, inf), cmplx(nan, nan)}, + Test{cmplx(nan, inf), cmplx(inf, -inf), cmplx(nan, nan)}, + Test{cmplx(nan, inf), cmplx(-inf, 0), cmplx(nan, nan)}, + Test{cmplx(nan, inf), cmplx(-inf, 1), cmplx(nan, nan)}, + Test{cmplx(nan, inf), cmplx(-inf, -1), cmplx(nan, nan)}, + Test{cmplx(nan, inf), cmplx(-inf, 2), cmplx(nan, nan)}, + Test{cmplx(nan, inf), cmplx(-inf, nan), cmplx(nan, nan)}, + Test{cmplx(nan, inf), cmplx(-inf, inf), cmplx(nan, nan)}, + Test{cmplx(nan, inf), cmplx(-inf, -inf), cmplx(nan, nan)}, + Test{cmplx(nan, -inf), cmplx(0, 0), cmplx(nan, -inf)}, + Test{cmplx(nan, -inf), cmplx(0, 1), cmplx(-inf, nan)}, + Test{cmplx(nan, -inf), cmplx(0, -1), cmplx(inf, nan)}, + Test{cmplx(nan, -inf), cmplx(0, 2), cmplx(-inf, nan)}, + Test{cmplx(nan, -inf), cmplx(0, nan), cmplx(nan, nan)}, + Test{cmplx(nan, -inf), cmplx(0, inf), cmplx(nan, nan)}, + Test{cmplx(nan, -inf), cmplx(0, -inf), cmplx(nan, nan)}, + Test{cmplx(nan, -inf), cmplx(1, 0), cmplx(nan, -inf)}, + Test{cmplx(nan, -inf), cmplx(1, 1), cmplx(-inf, -inf)}, + Test{cmplx(nan, -inf), cmplx(1, -1), cmplx(inf, -inf)}, + Test{cmplx(nan, -inf), cmplx(1, 2), cmplx(-inf, -inf)}, + Test{cmplx(nan, -inf), cmplx(1, nan), cmplx(nan, nan)}, + Test{cmplx(nan, -inf), cmplx(1, inf), cmplx(nan, nan)}, + Test{cmplx(nan, -inf), cmplx(1, -inf), cmplx(nan, nan)}, + Test{cmplx(nan, -inf), cmplx(-1, 0), cmplx(nan, inf)}, + Test{cmplx(nan, -inf), cmplx(-1, 1), cmplx(-inf, inf)}, + Test{cmplx(nan, -inf), cmplx(-1, -1), cmplx(inf, inf)}, + Test{cmplx(nan, -inf), cmplx(-1, 2), cmplx(-inf, inf)}, + Test{cmplx(nan, -inf), cmplx(-1, nan), cmplx(nan, nan)}, + Test{cmplx(nan, -inf), cmplx(-1, inf), cmplx(nan, nan)}, + Test{cmplx(nan, -inf), cmplx(-1, -inf), cmplx(nan, nan)}, + Test{cmplx(nan, -inf), cmplx(2, 0), cmplx(nan, -inf)}, + Test{cmplx(nan, -inf), cmplx(2, 1), cmplx(-inf, -inf)}, + Test{cmplx(nan, -inf), cmplx(2, -1), cmplx(inf, -inf)}, + Test{cmplx(nan, -inf), cmplx(2, 2), cmplx(-inf, -inf)}, + Test{cmplx(nan, -inf), cmplx(2, nan), cmplx(nan, nan)}, + Test{cmplx(nan, -inf), cmplx(2, inf), cmplx(nan, nan)}, + Test{cmplx(nan, -inf), cmplx(2, -inf), cmplx(nan, nan)}, + Test{cmplx(nan, -inf), cmplx(nan, 0), cmplx(nan, nan)}, + Test{cmplx(nan, -inf), cmplx(nan, 1), cmplx(nan, nan)}, + Test{cmplx(nan, -inf), cmplx(nan, -1), cmplx(nan, nan)}, + Test{cmplx(nan, -inf), cmplx(nan, 2), cmplx(nan, nan)}, + Test{cmplx(nan, -inf), cmplx(nan, nan), cmplx(nan, nan)}, + Test{cmplx(nan, -inf), cmplx(nan, inf), cmplx(nan, nan)}, + Test{cmplx(nan, -inf), cmplx(nan, -inf), cmplx(nan, nan)}, + Test{cmplx(nan, -inf), cmplx(inf, 0), cmplx(nan, nan)}, + Test{cmplx(nan, -inf), cmplx(inf, 1), cmplx(nan, nan)}, + Test{cmplx(nan, -inf), cmplx(inf, -1), cmplx(nan, nan)}, + Test{cmplx(nan, -inf), cmplx(inf, 2), cmplx(nan, nan)}, + Test{cmplx(nan, -inf), cmplx(inf, nan), cmplx(nan, nan)}, + Test{cmplx(nan, -inf), cmplx(inf, inf), cmplx(nan, nan)}, + Test{cmplx(nan, -inf), cmplx(inf, -inf), cmplx(nan, nan)}, + Test{cmplx(nan, -inf), cmplx(-inf, 0), cmplx(nan, nan)}, + Test{cmplx(nan, -inf), cmplx(-inf, 1), cmplx(nan, nan)}, + Test{cmplx(nan, -inf), cmplx(-inf, -1), cmplx(nan, nan)}, + Test{cmplx(nan, -inf), cmplx(-inf, 2), cmplx(nan, nan)}, + Test{cmplx(nan, -inf), cmplx(-inf, nan), cmplx(nan, nan)}, + Test{cmplx(nan, -inf), cmplx(-inf, inf), cmplx(nan, nan)}, + Test{cmplx(nan, -inf), cmplx(-inf, -inf), cmplx(nan, nan)}, + Test{cmplx(inf, 0), cmplx(0, 0), cmplx(inf, nan)}, + Test{cmplx(inf, 0), cmplx(0, 1), cmplx(nan, -inf)}, + Test{cmplx(inf, 0), cmplx(0, -1), cmplx(nan, inf)}, + Test{cmplx(inf, 0), cmplx(0, 2), cmplx(nan, -inf)}, + Test{cmplx(inf, 0), cmplx(0, nan), cmplx(nan, nan)}, + Test{cmplx(inf, 0), cmplx(0, inf), cmplx(nan, nan)}, + Test{cmplx(inf, 0), cmplx(0, -inf), cmplx(nan, nan)}, + Test{cmplx(inf, 0), cmplx(1, 0), cmplx(inf, nan)}, + Test{cmplx(inf, 0), cmplx(1, 1), cmplx(inf, -inf)}, + Test{cmplx(inf, 0), cmplx(1, -1), cmplx(inf, inf)}, + Test{cmplx(inf, 0), cmplx(1, 2), cmplx(inf, -inf)}, + Test{cmplx(inf, 0), cmplx(1, nan), cmplx(nan, nan)}, + Test{cmplx(inf, 0), cmplx(1, inf), cmplx(nan, nan)}, + Test{cmplx(inf, 0), cmplx(1, -inf), cmplx(nan, nan)}, + Test{cmplx(inf, 0), cmplx(-1, 0), cmplx(-inf, nan)}, + Test{cmplx(inf, 0), cmplx(-1, 1), cmplx(-inf, -inf)}, + Test{cmplx(inf, 0), cmplx(-1, -1), cmplx(-inf, inf)}, + Test{cmplx(inf, 0), cmplx(-1, 2), cmplx(-inf, -inf)}, + Test{cmplx(inf, 0), cmplx(-1, nan), cmplx(nan, nan)}, + Test{cmplx(inf, 0), cmplx(-1, inf), cmplx(nan, nan)}, + Test{cmplx(inf, 0), cmplx(-1, -inf), cmplx(nan, nan)}, + Test{cmplx(inf, 0), cmplx(2, 0), cmplx(inf, nan)}, + Test{cmplx(inf, 0), cmplx(2, 1), cmplx(inf, -inf)}, + Test{cmplx(inf, 0), cmplx(2, -1), cmplx(inf, inf)}, + Test{cmplx(inf, 0), cmplx(2, 2), cmplx(inf, -inf)}, + Test{cmplx(inf, 0), cmplx(2, nan), cmplx(nan, nan)}, + Test{cmplx(inf, 0), cmplx(2, inf), cmplx(nan, nan)}, + Test{cmplx(inf, 0), cmplx(2, -inf), cmplx(nan, nan)}, + Test{cmplx(inf, 0), cmplx(nan, 0), cmplx(nan, nan)}, + Test{cmplx(inf, 0), cmplx(nan, 1), cmplx(nan, nan)}, + Test{cmplx(inf, 0), cmplx(nan, -1), cmplx(nan, nan)}, + Test{cmplx(inf, 0), cmplx(nan, 2), cmplx(nan, nan)}, + Test{cmplx(inf, 0), cmplx(nan, nan), cmplx(nan, nan)}, + Test{cmplx(inf, 0), cmplx(nan, inf), cmplx(nan, nan)}, + Test{cmplx(inf, 0), cmplx(nan, -inf), cmplx(nan, nan)}, + Test{cmplx(inf, 0), cmplx(inf, 0), cmplx(nan, nan)}, + Test{cmplx(inf, 0), cmplx(inf, 1), cmplx(nan, nan)}, + Test{cmplx(inf, 0), cmplx(inf, -1), cmplx(nan, nan)}, + Test{cmplx(inf, 0), cmplx(inf, 2), cmplx(nan, nan)}, + Test{cmplx(inf, 0), cmplx(inf, nan), cmplx(nan, nan)}, + Test{cmplx(inf, 0), cmplx(inf, inf), cmplx(nan, nan)}, + Test{cmplx(inf, 0), cmplx(inf, -inf), cmplx(nan, nan)}, + Test{cmplx(inf, 0), cmplx(-inf, 0), cmplx(nan, nan)}, + Test{cmplx(inf, 0), cmplx(-inf, 1), cmplx(nan, nan)}, + Test{cmplx(inf, 0), cmplx(-inf, -1), cmplx(nan, nan)}, + Test{cmplx(inf, 0), cmplx(-inf, 2), cmplx(nan, nan)}, + Test{cmplx(inf, 0), cmplx(-inf, nan), cmplx(nan, nan)}, + Test{cmplx(inf, 0), cmplx(-inf, inf), cmplx(nan, nan)}, + Test{cmplx(inf, 0), cmplx(-inf, -inf), cmplx(nan, nan)}, + Test{cmplx(inf, 1), cmplx(0, 0), cmplx(inf, inf)}, + Test{cmplx(inf, 1), cmplx(0, 1), cmplx(nan, -inf)}, + Test{cmplx(inf, 1), cmplx(0, -1), cmplx(nan, inf)}, + Test{cmplx(inf, 1), cmplx(0, 2), cmplx(nan, -inf)}, + Test{cmplx(inf, 1), cmplx(0, nan), cmplx(nan, nan)}, + Test{cmplx(inf, 1), cmplx(0, inf), cmplx(nan, nan)}, + Test{cmplx(inf, 1), cmplx(0, -inf), cmplx(nan, nan)}, + Test{cmplx(inf, 1), cmplx(1, 0), cmplx(inf, nan)}, + Test{cmplx(inf, 1), cmplx(1, 1), cmplx(inf, -inf)}, + Test{cmplx(inf, 1), cmplx(1, -1), cmplx(inf, inf)}, + Test{cmplx(inf, 1), cmplx(1, 2), cmplx(inf, -inf)}, + Test{cmplx(inf, 1), cmplx(1, nan), cmplx(nan, nan)}, + Test{cmplx(inf, 1), cmplx(1, inf), cmplx(nan, nan)}, + Test{cmplx(inf, 1), cmplx(1, -inf), cmplx(nan, nan)}, + Test{cmplx(inf, 1), cmplx(-1, 0), cmplx(-inf, nan)}, + Test{cmplx(inf, 1), cmplx(-1, 1), cmplx(-inf, -inf)}, + Test{cmplx(inf, 1), cmplx(-1, -1), cmplx(-inf, inf)}, + Test{cmplx(inf, 1), cmplx(-1, 2), cmplx(-inf, -inf)}, + Test{cmplx(inf, 1), cmplx(-1, nan), cmplx(nan, nan)}, + Test{cmplx(inf, 1), cmplx(-1, inf), cmplx(nan, nan)}, + Test{cmplx(inf, 1), cmplx(-1, -inf), cmplx(nan, nan)}, + Test{cmplx(inf, 1), cmplx(2, 0), cmplx(inf, nan)}, + Test{cmplx(inf, 1), cmplx(2, 1), cmplx(inf, -inf)}, + Test{cmplx(inf, 1), cmplx(2, -1), cmplx(inf, inf)}, + Test{cmplx(inf, 1), cmplx(2, 2), cmplx(inf, -inf)}, + Test{cmplx(inf, 1), cmplx(2, nan), cmplx(nan, nan)}, + Test{cmplx(inf, 1), cmplx(2, inf), cmplx(nan, nan)}, + Test{cmplx(inf, 1), cmplx(2, -inf), cmplx(nan, nan)}, + Test{cmplx(inf, 1), cmplx(nan, 0), cmplx(nan, nan)}, + Test{cmplx(inf, 1), cmplx(nan, 1), cmplx(nan, nan)}, + Test{cmplx(inf, 1), cmplx(nan, -1), cmplx(nan, nan)}, + Test{cmplx(inf, 1), cmplx(nan, 2), cmplx(nan, nan)}, + Test{cmplx(inf, 1), cmplx(nan, nan), cmplx(nan, nan)}, + Test{cmplx(inf, 1), cmplx(nan, inf), cmplx(nan, nan)}, + Test{cmplx(inf, 1), cmplx(nan, -inf), cmplx(nan, nan)}, + Test{cmplx(inf, 1), cmplx(inf, 0), cmplx(nan, nan)}, + Test{cmplx(inf, 1), cmplx(inf, 1), cmplx(nan, nan)}, + Test{cmplx(inf, 1), cmplx(inf, -1), cmplx(nan, nan)}, + Test{cmplx(inf, 1), cmplx(inf, 2), cmplx(nan, nan)}, + Test{cmplx(inf, 1), cmplx(inf, nan), cmplx(nan, nan)}, + Test{cmplx(inf, 1), cmplx(inf, inf), cmplx(nan, nan)}, + Test{cmplx(inf, 1), cmplx(inf, -inf), cmplx(nan, nan)}, + Test{cmplx(inf, 1), cmplx(-inf, 0), cmplx(nan, nan)}, + Test{cmplx(inf, 1), cmplx(-inf, 1), cmplx(nan, nan)}, + Test{cmplx(inf, 1), cmplx(-inf, -1), cmplx(nan, nan)}, + Test{cmplx(inf, 1), cmplx(-inf, 2), cmplx(nan, nan)}, + Test{cmplx(inf, 1), cmplx(-inf, nan), cmplx(nan, nan)}, + Test{cmplx(inf, 1), cmplx(-inf, inf), cmplx(nan, nan)}, + Test{cmplx(inf, 1), cmplx(-inf, -inf), cmplx(nan, nan)}, + Test{cmplx(inf, -1), cmplx(0, 0), cmplx(inf, -inf)}, + Test{cmplx(inf, -1), cmplx(0, 1), cmplx(nan, -inf)}, + Test{cmplx(inf, -1), cmplx(0, -1), cmplx(nan, inf)}, + Test{cmplx(inf, -1), cmplx(0, 2), cmplx(nan, -inf)}, + Test{cmplx(inf, -1), cmplx(0, nan), cmplx(nan, nan)}, + Test{cmplx(inf, -1), cmplx(0, inf), cmplx(nan, nan)}, + Test{cmplx(inf, -1), cmplx(0, -inf), cmplx(nan, nan)}, + Test{cmplx(inf, -1), cmplx(1, 0), cmplx(inf, nan)}, + Test{cmplx(inf, -1), cmplx(1, 1), cmplx(inf, -inf)}, + Test{cmplx(inf, -1), cmplx(1, -1), cmplx(inf, inf)}, + Test{cmplx(inf, -1), cmplx(1, 2), cmplx(inf, -inf)}, + Test{cmplx(inf, -1), cmplx(1, nan), cmplx(nan, nan)}, + Test{cmplx(inf, -1), cmplx(1, inf), cmplx(nan, nan)}, + Test{cmplx(inf, -1), cmplx(1, -inf), cmplx(nan, nan)}, + Test{cmplx(inf, -1), cmplx(-1, 0), cmplx(-inf, nan)}, + Test{cmplx(inf, -1), cmplx(-1, 1), cmplx(-inf, -inf)}, + Test{cmplx(inf, -1), cmplx(-1, -1), cmplx(-inf, inf)}, + Test{cmplx(inf, -1), cmplx(-1, 2), cmplx(-inf, -inf)}, + Test{cmplx(inf, -1), cmplx(-1, nan), cmplx(nan, nan)}, + Test{cmplx(inf, -1), cmplx(-1, inf), cmplx(nan, nan)}, + Test{cmplx(inf, -1), cmplx(-1, -inf), cmplx(nan, nan)}, + Test{cmplx(inf, -1), cmplx(2, 0), cmplx(inf, nan)}, + Test{cmplx(inf, -1), cmplx(2, 1), cmplx(inf, -inf)}, + Test{cmplx(inf, -1), cmplx(2, -1), cmplx(inf, inf)}, + Test{cmplx(inf, -1), cmplx(2, 2), cmplx(inf, -inf)}, + Test{cmplx(inf, -1), cmplx(2, nan), cmplx(nan, nan)}, + Test{cmplx(inf, -1), cmplx(2, inf), cmplx(nan, nan)}, + Test{cmplx(inf, -1), cmplx(2, -inf), cmplx(nan, nan)}, + Test{cmplx(inf, -1), cmplx(nan, 0), cmplx(nan, nan)}, + Test{cmplx(inf, -1), cmplx(nan, 1), cmplx(nan, nan)}, + Test{cmplx(inf, -1), cmplx(nan, -1), cmplx(nan, nan)}, + Test{cmplx(inf, -1), cmplx(nan, 2), cmplx(nan, nan)}, + Test{cmplx(inf, -1), cmplx(nan, nan), cmplx(nan, nan)}, + Test{cmplx(inf, -1), cmplx(nan, inf), cmplx(nan, nan)}, + Test{cmplx(inf, -1), cmplx(nan, -inf), cmplx(nan, nan)}, + Test{cmplx(inf, -1), cmplx(inf, 0), cmplx(nan, nan)}, + Test{cmplx(inf, -1), cmplx(inf, 1), cmplx(nan, nan)}, + Test{cmplx(inf, -1), cmplx(inf, -1), cmplx(nan, nan)}, + Test{cmplx(inf, -1), cmplx(inf, 2), cmplx(nan, nan)}, + Test{cmplx(inf, -1), cmplx(inf, nan), cmplx(nan, nan)}, + Test{cmplx(inf, -1), cmplx(inf, inf), cmplx(nan, nan)}, + Test{cmplx(inf, -1), cmplx(inf, -inf), cmplx(nan, nan)}, + Test{cmplx(inf, -1), cmplx(-inf, 0), cmplx(nan, nan)}, + Test{cmplx(inf, -1), cmplx(-inf, 1), cmplx(nan, nan)}, + Test{cmplx(inf, -1), cmplx(-inf, -1), cmplx(nan, nan)}, + Test{cmplx(inf, -1), cmplx(-inf, 2), cmplx(nan, nan)}, + Test{cmplx(inf, -1), cmplx(-inf, nan), cmplx(nan, nan)}, + Test{cmplx(inf, -1), cmplx(-inf, inf), cmplx(nan, nan)}, + Test{cmplx(inf, -1), cmplx(-inf, -inf), cmplx(nan, nan)}, + Test{cmplx(inf, 2), cmplx(0, 0), cmplx(inf, inf)}, + Test{cmplx(inf, 2), cmplx(0, 1), cmplx(nan, -inf)}, + Test{cmplx(inf, 2), cmplx(0, -1), cmplx(nan, inf)}, + Test{cmplx(inf, 2), cmplx(0, 2), cmplx(nan, -inf)}, + Test{cmplx(inf, 2), cmplx(0, nan), cmplx(nan, nan)}, + Test{cmplx(inf, 2), cmplx(0, inf), cmplx(nan, nan)}, + Test{cmplx(inf, 2), cmplx(0, -inf), cmplx(nan, nan)}, + Test{cmplx(inf, 2), cmplx(1, 0), cmplx(inf, nan)}, + Test{cmplx(inf, 2), cmplx(1, 1), cmplx(inf, -inf)}, + Test{cmplx(inf, 2), cmplx(1, -1), cmplx(inf, inf)}, + Test{cmplx(inf, 2), cmplx(1, 2), cmplx(inf, -inf)}, + Test{cmplx(inf, 2), cmplx(1, nan), cmplx(nan, nan)}, + Test{cmplx(inf, 2), cmplx(1, inf), cmplx(nan, nan)}, + Test{cmplx(inf, 2), cmplx(1, -inf), cmplx(nan, nan)}, + Test{cmplx(inf, 2), cmplx(-1, 0), cmplx(-inf, nan)}, + Test{cmplx(inf, 2), cmplx(-1, 1), cmplx(-inf, -inf)}, + Test{cmplx(inf, 2), cmplx(-1, -1), cmplx(-inf, inf)}, + Test{cmplx(inf, 2), cmplx(-1, 2), cmplx(-inf, -inf)}, + Test{cmplx(inf, 2), cmplx(-1, nan), cmplx(nan, nan)}, + Test{cmplx(inf, 2), cmplx(-1, inf), cmplx(nan, nan)}, + Test{cmplx(inf, 2), cmplx(-1, -inf), cmplx(nan, nan)}, + Test{cmplx(inf, 2), cmplx(2, 0), cmplx(inf, nan)}, + Test{cmplx(inf, 2), cmplx(2, 1), cmplx(inf, -inf)}, + Test{cmplx(inf, 2), cmplx(2, -1), cmplx(inf, inf)}, + Test{cmplx(inf, 2), cmplx(2, 2), cmplx(inf, -inf)}, + Test{cmplx(inf, 2), cmplx(2, nan), cmplx(nan, nan)}, + Test{cmplx(inf, 2), cmplx(2, inf), cmplx(nan, nan)}, + Test{cmplx(inf, 2), cmplx(2, -inf), cmplx(nan, nan)}, + Test{cmplx(inf, 2), cmplx(nan, 0), cmplx(nan, nan)}, + Test{cmplx(inf, 2), cmplx(nan, 1), cmplx(nan, nan)}, + Test{cmplx(inf, 2), cmplx(nan, -1), cmplx(nan, nan)}, + Test{cmplx(inf, 2), cmplx(nan, 2), cmplx(nan, nan)}, + Test{cmplx(inf, 2), cmplx(nan, nan), cmplx(nan, nan)}, + Test{cmplx(inf, 2), cmplx(nan, inf), cmplx(nan, nan)}, + Test{cmplx(inf, 2), cmplx(nan, -inf), cmplx(nan, nan)}, + Test{cmplx(inf, 2), cmplx(inf, 0), cmplx(nan, nan)}, + Test{cmplx(inf, 2), cmplx(inf, 1), cmplx(nan, nan)}, + Test{cmplx(inf, 2), cmplx(inf, -1), cmplx(nan, nan)}, + Test{cmplx(inf, 2), cmplx(inf, 2), cmplx(nan, nan)}, + Test{cmplx(inf, 2), cmplx(inf, nan), cmplx(nan, nan)}, + Test{cmplx(inf, 2), cmplx(inf, inf), cmplx(nan, nan)}, + Test{cmplx(inf, 2), cmplx(inf, -inf), cmplx(nan, nan)}, + Test{cmplx(inf, 2), cmplx(-inf, 0), cmplx(nan, nan)}, + Test{cmplx(inf, 2), cmplx(-inf, 1), cmplx(nan, nan)}, + Test{cmplx(inf, 2), cmplx(-inf, -1), cmplx(nan, nan)}, + Test{cmplx(inf, 2), cmplx(-inf, 2), cmplx(nan, nan)}, + Test{cmplx(inf, 2), cmplx(-inf, nan), cmplx(nan, nan)}, + Test{cmplx(inf, 2), cmplx(-inf, inf), cmplx(nan, nan)}, + Test{cmplx(inf, 2), cmplx(-inf, -inf), cmplx(nan, nan)}, + Test{cmplx(inf, nan), cmplx(0, 0), cmplx(inf, nan)}, + Test{cmplx(inf, nan), cmplx(0, 1), cmplx(nan, -inf)}, + Test{cmplx(inf, nan), cmplx(0, -1), cmplx(nan, inf)}, + Test{cmplx(inf, nan), cmplx(0, 2), cmplx(nan, -inf)}, + Test{cmplx(inf, nan), cmplx(0, nan), cmplx(nan, nan)}, + Test{cmplx(inf, nan), cmplx(0, inf), cmplx(nan, nan)}, + Test{cmplx(inf, nan), cmplx(0, -inf), cmplx(nan, nan)}, + Test{cmplx(inf, nan), cmplx(1, 0), cmplx(inf, nan)}, + Test{cmplx(inf, nan), cmplx(1, 1), cmplx(inf, -inf)}, + Test{cmplx(inf, nan), cmplx(1, -1), cmplx(inf, inf)}, + Test{cmplx(inf, nan), cmplx(1, 2), cmplx(inf, -inf)}, + Test{cmplx(inf, nan), cmplx(1, nan), cmplx(nan, nan)}, + Test{cmplx(inf, nan), cmplx(1, inf), cmplx(nan, nan)}, + Test{cmplx(inf, nan), cmplx(1, -inf), cmplx(nan, nan)}, + Test{cmplx(inf, nan), cmplx(-1, 0), cmplx(-inf, nan)}, + Test{cmplx(inf, nan), cmplx(-1, 1), cmplx(-inf, -inf)}, + Test{cmplx(inf, nan), cmplx(-1, -1), cmplx(-inf, inf)}, + Test{cmplx(inf, nan), cmplx(-1, 2), cmplx(-inf, -inf)}, + Test{cmplx(inf, nan), cmplx(-1, nan), cmplx(nan, nan)}, + Test{cmplx(inf, nan), cmplx(-1, inf), cmplx(nan, nan)}, + Test{cmplx(inf, nan), cmplx(-1, -inf), cmplx(nan, nan)}, + Test{cmplx(inf, nan), cmplx(2, 0), cmplx(inf, nan)}, + Test{cmplx(inf, nan), cmplx(2, 1), cmplx(inf, -inf)}, + Test{cmplx(inf, nan), cmplx(2, -1), cmplx(inf, inf)}, + Test{cmplx(inf, nan), cmplx(2, 2), cmplx(inf, -inf)}, + Test{cmplx(inf, nan), cmplx(2, nan), cmplx(nan, nan)}, + Test{cmplx(inf, nan), cmplx(2, inf), cmplx(nan, nan)}, + Test{cmplx(inf, nan), cmplx(2, -inf), cmplx(nan, nan)}, + Test{cmplx(inf, nan), cmplx(nan, 0), cmplx(nan, nan)}, + Test{cmplx(inf, nan), cmplx(nan, 1), cmplx(nan, nan)}, + Test{cmplx(inf, nan), cmplx(nan, -1), cmplx(nan, nan)}, + Test{cmplx(inf, nan), cmplx(nan, 2), cmplx(nan, nan)}, + Test{cmplx(inf, nan), cmplx(nan, nan), cmplx(nan, nan)}, + Test{cmplx(inf, nan), cmplx(nan, inf), cmplx(nan, nan)}, + Test{cmplx(inf, nan), cmplx(nan, -inf), cmplx(nan, nan)}, + Test{cmplx(inf, nan), cmplx(inf, 0), cmplx(nan, nan)}, + Test{cmplx(inf, nan), cmplx(inf, 1), cmplx(nan, nan)}, + Test{cmplx(inf, nan), cmplx(inf, -1), cmplx(nan, nan)}, + Test{cmplx(inf, nan), cmplx(inf, 2), cmplx(nan, nan)}, + Test{cmplx(inf, nan), cmplx(inf, nan), cmplx(nan, nan)}, + Test{cmplx(inf, nan), cmplx(inf, inf), cmplx(nan, nan)}, + Test{cmplx(inf, nan), cmplx(inf, -inf), cmplx(nan, nan)}, + Test{cmplx(inf, nan), cmplx(-inf, 0), cmplx(nan, nan)}, + Test{cmplx(inf, nan), cmplx(-inf, 1), cmplx(nan, nan)}, + Test{cmplx(inf, nan), cmplx(-inf, -1), cmplx(nan, nan)}, + Test{cmplx(inf, nan), cmplx(-inf, 2), cmplx(nan, nan)}, + Test{cmplx(inf, nan), cmplx(-inf, nan), cmplx(nan, nan)}, + Test{cmplx(inf, nan), cmplx(-inf, inf), cmplx(nan, nan)}, + Test{cmplx(inf, nan), cmplx(-inf, -inf), cmplx(nan, nan)}, + Test{cmplx(inf, inf), cmplx(0, 0), cmplx(inf, inf)}, + Test{cmplx(inf, inf), cmplx(0, 1), cmplx(inf, -inf)}, + Test{cmplx(inf, inf), cmplx(0, -1), cmplx(-inf, inf)}, + Test{cmplx(inf, inf), cmplx(0, 2), cmplx(inf, -inf)}, + Test{cmplx(inf, inf), cmplx(0, nan), cmplx(nan, nan)}, + Test{cmplx(inf, inf), cmplx(0, inf), cmplx(nan, nan)}, + Test{cmplx(inf, inf), cmplx(0, -inf), cmplx(nan, nan)}, + Test{cmplx(inf, inf), cmplx(1, 0), cmplx(inf, inf)}, + Test{cmplx(inf, inf), cmplx(1, 1), cmplx(inf, nan)}, + Test{cmplx(inf, inf), cmplx(1, -1), cmplx(nan, inf)}, + Test{cmplx(inf, inf), cmplx(1, 2), cmplx(inf, nan)}, + Test{cmplx(inf, inf), cmplx(1, nan), cmplx(nan, nan)}, + Test{cmplx(inf, inf), cmplx(1, inf), cmplx(nan, nan)}, + Test{cmplx(inf, inf), cmplx(1, -inf), cmplx(nan, nan)}, + Test{cmplx(inf, inf), cmplx(-1, 0), cmplx(-inf, -inf)}, + Test{cmplx(inf, inf), cmplx(-1, 1), cmplx(nan, -inf)}, + Test{cmplx(inf, inf), cmplx(-1, -1), cmplx(-inf, nan)}, + Test{cmplx(inf, inf), cmplx(-1, 2), cmplx(nan, -inf)}, + Test{cmplx(inf, inf), cmplx(-1, nan), cmplx(nan, nan)}, + Test{cmplx(inf, inf), cmplx(-1, inf), cmplx(nan, nan)}, + Test{cmplx(inf, inf), cmplx(-1, -inf), cmplx(nan, nan)}, + Test{cmplx(inf, inf), cmplx(2, 0), cmplx(inf, inf)}, + Test{cmplx(inf, inf), cmplx(2, 1), cmplx(inf, nan)}, + Test{cmplx(inf, inf), cmplx(2, -1), cmplx(nan, inf)}, + Test{cmplx(inf, inf), cmplx(2, 2), cmplx(inf, nan)}, + Test{cmplx(inf, inf), cmplx(2, nan), cmplx(nan, nan)}, + Test{cmplx(inf, inf), cmplx(2, inf), cmplx(nan, nan)}, + Test{cmplx(inf, inf), cmplx(2, -inf), cmplx(nan, nan)}, + Test{cmplx(inf, inf), cmplx(nan, 0), cmplx(nan, nan)}, + Test{cmplx(inf, inf), cmplx(nan, 1), cmplx(nan, nan)}, + Test{cmplx(inf, inf), cmplx(nan, -1), cmplx(nan, nan)}, + Test{cmplx(inf, inf), cmplx(nan, 2), cmplx(nan, nan)}, + Test{cmplx(inf, inf), cmplx(nan, nan), cmplx(nan, nan)}, + Test{cmplx(inf, inf), cmplx(nan, inf), cmplx(nan, nan)}, + Test{cmplx(inf, inf), cmplx(nan, -inf), cmplx(nan, nan)}, + Test{cmplx(inf, inf), cmplx(inf, 0), cmplx(nan, nan)}, + Test{cmplx(inf, inf), cmplx(inf, 1), cmplx(nan, nan)}, + Test{cmplx(inf, inf), cmplx(inf, -1), cmplx(nan, nan)}, + Test{cmplx(inf, inf), cmplx(inf, 2), cmplx(nan, nan)}, + Test{cmplx(inf, inf), cmplx(inf, nan), cmplx(nan, nan)}, + Test{cmplx(inf, inf), cmplx(inf, inf), cmplx(nan, nan)}, + Test{cmplx(inf, inf), cmplx(inf, -inf), cmplx(nan, nan)}, + Test{cmplx(inf, inf), cmplx(-inf, 0), cmplx(nan, nan)}, + Test{cmplx(inf, inf), cmplx(-inf, 1), cmplx(nan, nan)}, + Test{cmplx(inf, inf), cmplx(-inf, -1), cmplx(nan, nan)}, + Test{cmplx(inf, inf), cmplx(-inf, 2), cmplx(nan, nan)}, + Test{cmplx(inf, inf), cmplx(-inf, nan), cmplx(nan, nan)}, + Test{cmplx(inf, inf), cmplx(-inf, inf), cmplx(nan, nan)}, + Test{cmplx(inf, inf), cmplx(-inf, -inf), cmplx(nan, nan)}, + Test{cmplx(inf, -inf), cmplx(0, 0), cmplx(inf, -inf)}, + Test{cmplx(inf, -inf), cmplx(0, 1), cmplx(-inf, -inf)}, + Test{cmplx(inf, -inf), cmplx(0, -1), cmplx(inf, inf)}, + Test{cmplx(inf, -inf), cmplx(0, 2), cmplx(-inf, -inf)}, + Test{cmplx(inf, -inf), cmplx(0, nan), cmplx(nan, nan)}, + Test{cmplx(inf, -inf), cmplx(0, inf), cmplx(nan, nan)}, + Test{cmplx(inf, -inf), cmplx(0, -inf), cmplx(nan, nan)}, + Test{cmplx(inf, -inf), cmplx(1, 0), cmplx(inf, -inf)}, + Test{cmplx(inf, -inf), cmplx(1, 1), cmplx(nan, -inf)}, + Test{cmplx(inf, -inf), cmplx(1, -1), cmplx(inf, nan)}, + Test{cmplx(inf, -inf), cmplx(1, 2), cmplx(nan, -inf)}, + Test{cmplx(inf, -inf), cmplx(1, nan), cmplx(nan, nan)}, + Test{cmplx(inf, -inf), cmplx(1, inf), cmplx(nan, nan)}, + Test{cmplx(inf, -inf), cmplx(1, -inf), cmplx(nan, nan)}, + Test{cmplx(inf, -inf), cmplx(-1, 0), cmplx(-inf, inf)}, + Test{cmplx(inf, -inf), cmplx(-1, 1), cmplx(-inf, nan)}, + Test{cmplx(inf, -inf), cmplx(-1, -1), cmplx(nan, inf)}, + Test{cmplx(inf, -inf), cmplx(-1, 2), cmplx(-inf, nan)}, + Test{cmplx(inf, -inf), cmplx(-1, nan), cmplx(nan, nan)}, + Test{cmplx(inf, -inf), cmplx(-1, inf), cmplx(nan, nan)}, + Test{cmplx(inf, -inf), cmplx(-1, -inf), cmplx(nan, nan)}, + Test{cmplx(inf, -inf), cmplx(2, 0), cmplx(inf, -inf)}, + Test{cmplx(inf, -inf), cmplx(2, 1), cmplx(nan, -inf)}, + Test{cmplx(inf, -inf), cmplx(2, -1), cmplx(inf, nan)}, + Test{cmplx(inf, -inf), cmplx(2, 2), cmplx(nan, -inf)}, + Test{cmplx(inf, -inf), cmplx(2, nan), cmplx(nan, nan)}, + Test{cmplx(inf, -inf), cmplx(2, inf), cmplx(nan, nan)}, + Test{cmplx(inf, -inf), cmplx(2, -inf), cmplx(nan, nan)}, + Test{cmplx(inf, -inf), cmplx(nan, 0), cmplx(nan, nan)}, + Test{cmplx(inf, -inf), cmplx(nan, 1), cmplx(nan, nan)}, + Test{cmplx(inf, -inf), cmplx(nan, -1), cmplx(nan, nan)}, + Test{cmplx(inf, -inf), cmplx(nan, 2), cmplx(nan, nan)}, + Test{cmplx(inf, -inf), cmplx(nan, nan), cmplx(nan, nan)}, + Test{cmplx(inf, -inf), cmplx(nan, inf), cmplx(nan, nan)}, + Test{cmplx(inf, -inf), cmplx(nan, -inf), cmplx(nan, nan)}, + Test{cmplx(inf, -inf), cmplx(inf, 0), cmplx(nan, nan)}, + Test{cmplx(inf, -inf), cmplx(inf, 1), cmplx(nan, nan)}, + Test{cmplx(inf, -inf), cmplx(inf, -1), cmplx(nan, nan)}, + Test{cmplx(inf, -inf), cmplx(inf, 2), cmplx(nan, nan)}, + Test{cmplx(inf, -inf), cmplx(inf, nan), cmplx(nan, nan)}, + Test{cmplx(inf, -inf), cmplx(inf, inf), cmplx(nan, nan)}, + Test{cmplx(inf, -inf), cmplx(inf, -inf), cmplx(nan, nan)}, + Test{cmplx(inf, -inf), cmplx(-inf, 0), cmplx(nan, nan)}, + Test{cmplx(inf, -inf), cmplx(-inf, 1), cmplx(nan, nan)}, + Test{cmplx(inf, -inf), cmplx(-inf, -1), cmplx(nan, nan)}, + Test{cmplx(inf, -inf), cmplx(-inf, 2), cmplx(nan, nan)}, + Test{cmplx(inf, -inf), cmplx(-inf, nan), cmplx(nan, nan)}, + Test{cmplx(inf, -inf), cmplx(-inf, inf), cmplx(nan, nan)}, + Test{cmplx(inf, -inf), cmplx(-inf, -inf), cmplx(nan, nan)}, + Test{cmplx(-inf, 0), cmplx(0, 0), cmplx(-inf, nan)}, + Test{cmplx(-inf, 0), cmplx(0, 1), cmplx(nan, inf)}, + Test{cmplx(-inf, 0), cmplx(0, -1), cmplx(nan, -inf)}, + Test{cmplx(-inf, 0), cmplx(0, 2), cmplx(nan, inf)}, + Test{cmplx(-inf, 0), cmplx(0, nan), cmplx(nan, nan)}, + Test{cmplx(-inf, 0), cmplx(0, inf), cmplx(nan, nan)}, + Test{cmplx(-inf, 0), cmplx(0, -inf), cmplx(nan, nan)}, + Test{cmplx(-inf, 0), cmplx(1, 0), cmplx(-inf, nan)}, + Test{cmplx(-inf, 0), cmplx(1, 1), cmplx(-inf, inf)}, + Test{cmplx(-inf, 0), cmplx(1, -1), cmplx(-inf, -inf)}, + Test{cmplx(-inf, 0), cmplx(1, 2), cmplx(-inf, inf)}, + Test{cmplx(-inf, 0), cmplx(1, nan), cmplx(nan, nan)}, + Test{cmplx(-inf, 0), cmplx(1, inf), cmplx(nan, nan)}, + Test{cmplx(-inf, 0), cmplx(1, -inf), cmplx(nan, nan)}, + Test{cmplx(-inf, 0), cmplx(-1, 0), cmplx(inf, nan)}, + Test{cmplx(-inf, 0), cmplx(-1, 1), cmplx(inf, inf)}, + Test{cmplx(-inf, 0), cmplx(-1, -1), cmplx(inf, -inf)}, + Test{cmplx(-inf, 0), cmplx(-1, 2), cmplx(inf, inf)}, + Test{cmplx(-inf, 0), cmplx(-1, nan), cmplx(nan, nan)}, + Test{cmplx(-inf, 0), cmplx(-1, inf), cmplx(nan, nan)}, + Test{cmplx(-inf, 0), cmplx(-1, -inf), cmplx(nan, nan)}, + Test{cmplx(-inf, 0), cmplx(2, 0), cmplx(-inf, nan)}, + Test{cmplx(-inf, 0), cmplx(2, 1), cmplx(-inf, inf)}, + Test{cmplx(-inf, 0), cmplx(2, -1), cmplx(-inf, -inf)}, + Test{cmplx(-inf, 0), cmplx(2, 2), cmplx(-inf, inf)}, + Test{cmplx(-inf, 0), cmplx(2, nan), cmplx(nan, nan)}, + Test{cmplx(-inf, 0), cmplx(2, inf), cmplx(nan, nan)}, + Test{cmplx(-inf, 0), cmplx(2, -inf), cmplx(nan, nan)}, + Test{cmplx(-inf, 0), cmplx(nan, 0), cmplx(nan, nan)}, + Test{cmplx(-inf, 0), cmplx(nan, 1), cmplx(nan, nan)}, + Test{cmplx(-inf, 0), cmplx(nan, -1), cmplx(nan, nan)}, + Test{cmplx(-inf, 0), cmplx(nan, 2), cmplx(nan, nan)}, + Test{cmplx(-inf, 0), cmplx(nan, nan), cmplx(nan, nan)}, + Test{cmplx(-inf, 0), cmplx(nan, inf), cmplx(nan, nan)}, + Test{cmplx(-inf, 0), cmplx(nan, -inf), cmplx(nan, nan)}, + Test{cmplx(-inf, 0), cmplx(inf, 0), cmplx(nan, nan)}, + Test{cmplx(-inf, 0), cmplx(inf, 1), cmplx(nan, nan)}, + Test{cmplx(-inf, 0), cmplx(inf, -1), cmplx(nan, nan)}, + Test{cmplx(-inf, 0), cmplx(inf, 2), cmplx(nan, nan)}, + Test{cmplx(-inf, 0), cmplx(inf, nan), cmplx(nan, nan)}, + Test{cmplx(-inf, 0), cmplx(inf, inf), cmplx(nan, nan)}, + Test{cmplx(-inf, 0), cmplx(inf, -inf), cmplx(nan, nan)}, + Test{cmplx(-inf, 0), cmplx(-inf, 0), cmplx(nan, nan)}, + Test{cmplx(-inf, 0), cmplx(-inf, 1), cmplx(nan, nan)}, + Test{cmplx(-inf, 0), cmplx(-inf, -1), cmplx(nan, nan)}, + Test{cmplx(-inf, 0), cmplx(-inf, 2), cmplx(nan, nan)}, + Test{cmplx(-inf, 0), cmplx(-inf, nan), cmplx(nan, nan)}, + Test{cmplx(-inf, 0), cmplx(-inf, inf), cmplx(nan, nan)}, + Test{cmplx(-inf, 0), cmplx(-inf, -inf), cmplx(nan, nan)}, + Test{cmplx(-inf, 1), cmplx(0, 0), cmplx(-inf, inf)}, + Test{cmplx(-inf, 1), cmplx(0, 1), cmplx(nan, inf)}, + Test{cmplx(-inf, 1), cmplx(0, -1), cmplx(nan, -inf)}, + Test{cmplx(-inf, 1), cmplx(0, 2), cmplx(nan, inf)}, + Test{cmplx(-inf, 1), cmplx(0, nan), cmplx(nan, nan)}, + Test{cmplx(-inf, 1), cmplx(0, inf), cmplx(nan, nan)}, + Test{cmplx(-inf, 1), cmplx(0, -inf), cmplx(nan, nan)}, + Test{cmplx(-inf, 1), cmplx(1, 0), cmplx(-inf, nan)}, + Test{cmplx(-inf, 1), cmplx(1, 1), cmplx(-inf, inf)}, + Test{cmplx(-inf, 1), cmplx(1, -1), cmplx(-inf, -inf)}, + Test{cmplx(-inf, 1), cmplx(1, 2), cmplx(-inf, inf)}, + Test{cmplx(-inf, 1), cmplx(1, nan), cmplx(nan, nan)}, + Test{cmplx(-inf, 1), cmplx(1, inf), cmplx(nan, nan)}, + Test{cmplx(-inf, 1), cmplx(1, -inf), cmplx(nan, nan)}, + Test{cmplx(-inf, 1), cmplx(-1, 0), cmplx(inf, nan)}, + Test{cmplx(-inf, 1), cmplx(-1, 1), cmplx(inf, inf)}, + Test{cmplx(-inf, 1), cmplx(-1, -1), cmplx(inf, -inf)}, + Test{cmplx(-inf, 1), cmplx(-1, 2), cmplx(inf, inf)}, + Test{cmplx(-inf, 1), cmplx(-1, nan), cmplx(nan, nan)}, + Test{cmplx(-inf, 1), cmplx(-1, inf), cmplx(nan, nan)}, + Test{cmplx(-inf, 1), cmplx(-1, -inf), cmplx(nan, nan)}, + Test{cmplx(-inf, 1), cmplx(2, 0), cmplx(-inf, nan)}, + Test{cmplx(-inf, 1), cmplx(2, 1), cmplx(-inf, inf)}, + Test{cmplx(-inf, 1), cmplx(2, -1), cmplx(-inf, -inf)}, + Test{cmplx(-inf, 1), cmplx(2, 2), cmplx(-inf, inf)}, + Test{cmplx(-inf, 1), cmplx(2, nan), cmplx(nan, nan)}, + Test{cmplx(-inf, 1), cmplx(2, inf), cmplx(nan, nan)}, + Test{cmplx(-inf, 1), cmplx(2, -inf), cmplx(nan, nan)}, + Test{cmplx(-inf, 1), cmplx(nan, 0), cmplx(nan, nan)}, + Test{cmplx(-inf, 1), cmplx(nan, 1), cmplx(nan, nan)}, + Test{cmplx(-inf, 1), cmplx(nan, -1), cmplx(nan, nan)}, + Test{cmplx(-inf, 1), cmplx(nan, 2), cmplx(nan, nan)}, + Test{cmplx(-inf, 1), cmplx(nan, nan), cmplx(nan, nan)}, + Test{cmplx(-inf, 1), cmplx(nan, inf), cmplx(nan, nan)}, + Test{cmplx(-inf, 1), cmplx(nan, -inf), cmplx(nan, nan)}, + Test{cmplx(-inf, 1), cmplx(inf, 0), cmplx(nan, nan)}, + Test{cmplx(-inf, 1), cmplx(inf, 1), cmplx(nan, nan)}, + Test{cmplx(-inf, 1), cmplx(inf, -1), cmplx(nan, nan)}, + Test{cmplx(-inf, 1), cmplx(inf, 2), cmplx(nan, nan)}, + Test{cmplx(-inf, 1), cmplx(inf, nan), cmplx(nan, nan)}, + Test{cmplx(-inf, 1), cmplx(inf, inf), cmplx(nan, nan)}, + Test{cmplx(-inf, 1), cmplx(inf, -inf), cmplx(nan, nan)}, + Test{cmplx(-inf, 1), cmplx(-inf, 0), cmplx(nan, nan)}, + Test{cmplx(-inf, 1), cmplx(-inf, 1), cmplx(nan, nan)}, + Test{cmplx(-inf, 1), cmplx(-inf, -1), cmplx(nan, nan)}, + Test{cmplx(-inf, 1), cmplx(-inf, 2), cmplx(nan, nan)}, + Test{cmplx(-inf, 1), cmplx(-inf, nan), cmplx(nan, nan)}, + Test{cmplx(-inf, 1), cmplx(-inf, inf), cmplx(nan, nan)}, + Test{cmplx(-inf, 1), cmplx(-inf, -inf), cmplx(nan, nan)}, + Test{cmplx(-inf, -1), cmplx(0, 0), cmplx(-inf, -inf)}, + Test{cmplx(-inf, -1), cmplx(0, 1), cmplx(nan, inf)}, + Test{cmplx(-inf, -1), cmplx(0, -1), cmplx(nan, -inf)}, + Test{cmplx(-inf, -1), cmplx(0, 2), cmplx(nan, inf)}, + Test{cmplx(-inf, -1), cmplx(0, nan), cmplx(nan, nan)}, + Test{cmplx(-inf, -1), cmplx(0, inf), cmplx(nan, nan)}, + Test{cmplx(-inf, -1), cmplx(0, -inf), cmplx(nan, nan)}, + Test{cmplx(-inf, -1), cmplx(1, 0), cmplx(-inf, nan)}, + Test{cmplx(-inf, -1), cmplx(1, 1), cmplx(-inf, inf)}, + Test{cmplx(-inf, -1), cmplx(1, -1), cmplx(-inf, -inf)}, + Test{cmplx(-inf, -1), cmplx(1, 2), cmplx(-inf, inf)}, + Test{cmplx(-inf, -1), cmplx(1, nan), cmplx(nan, nan)}, + Test{cmplx(-inf, -1), cmplx(1, inf), cmplx(nan, nan)}, + Test{cmplx(-inf, -1), cmplx(1, -inf), cmplx(nan, nan)}, + Test{cmplx(-inf, -1), cmplx(-1, 0), cmplx(inf, nan)}, + Test{cmplx(-inf, -1), cmplx(-1, 1), cmplx(inf, inf)}, + Test{cmplx(-inf, -1), cmplx(-1, -1), cmplx(inf, -inf)}, + Test{cmplx(-inf, -1), cmplx(-1, 2), cmplx(inf, inf)}, + Test{cmplx(-inf, -1), cmplx(-1, nan), cmplx(nan, nan)}, + Test{cmplx(-inf, -1), cmplx(-1, inf), cmplx(nan, nan)}, + Test{cmplx(-inf, -1), cmplx(-1, -inf), cmplx(nan, nan)}, + Test{cmplx(-inf, -1), cmplx(2, 0), cmplx(-inf, nan)}, + Test{cmplx(-inf, -1), cmplx(2, 1), cmplx(-inf, inf)}, + Test{cmplx(-inf, -1), cmplx(2, -1), cmplx(-inf, -inf)}, + Test{cmplx(-inf, -1), cmplx(2, 2), cmplx(-inf, inf)}, + Test{cmplx(-inf, -1), cmplx(2, nan), cmplx(nan, nan)}, + Test{cmplx(-inf, -1), cmplx(2, inf), cmplx(nan, nan)}, + Test{cmplx(-inf, -1), cmplx(2, -inf), cmplx(nan, nan)}, + Test{cmplx(-inf, -1), cmplx(nan, 0), cmplx(nan, nan)}, + Test{cmplx(-inf, -1), cmplx(nan, 1), cmplx(nan, nan)}, + Test{cmplx(-inf, -1), cmplx(nan, -1), cmplx(nan, nan)}, + Test{cmplx(-inf, -1), cmplx(nan, 2), cmplx(nan, nan)}, + Test{cmplx(-inf, -1), cmplx(nan, nan), cmplx(nan, nan)}, + Test{cmplx(-inf, -1), cmplx(nan, inf), cmplx(nan, nan)}, + Test{cmplx(-inf, -1), cmplx(nan, -inf), cmplx(nan, nan)}, + Test{cmplx(-inf, -1), cmplx(inf, 0), cmplx(nan, nan)}, + Test{cmplx(-inf, -1), cmplx(inf, 1), cmplx(nan, nan)}, + Test{cmplx(-inf, -1), cmplx(inf, -1), cmplx(nan, nan)}, + Test{cmplx(-inf, -1), cmplx(inf, 2), cmplx(nan, nan)}, + Test{cmplx(-inf, -1), cmplx(inf, nan), cmplx(nan, nan)}, + Test{cmplx(-inf, -1), cmplx(inf, inf), cmplx(nan, nan)}, + Test{cmplx(-inf, -1), cmplx(inf, -inf), cmplx(nan, nan)}, + Test{cmplx(-inf, -1), cmplx(-inf, 0), cmplx(nan, nan)}, + Test{cmplx(-inf, -1), cmplx(-inf, 1), cmplx(nan, nan)}, + Test{cmplx(-inf, -1), cmplx(-inf, -1), cmplx(nan, nan)}, + Test{cmplx(-inf, -1), cmplx(-inf, 2), cmplx(nan, nan)}, + Test{cmplx(-inf, -1), cmplx(-inf, nan), cmplx(nan, nan)}, + Test{cmplx(-inf, -1), cmplx(-inf, inf), cmplx(nan, nan)}, + Test{cmplx(-inf, -1), cmplx(-inf, -inf), cmplx(nan, nan)}, + Test{cmplx(-inf, 2), cmplx(0, 0), cmplx(-inf, inf)}, + Test{cmplx(-inf, 2), cmplx(0, 1), cmplx(nan, inf)}, + Test{cmplx(-inf, 2), cmplx(0, -1), cmplx(nan, -inf)}, + Test{cmplx(-inf, 2), cmplx(0, 2), cmplx(nan, inf)}, + Test{cmplx(-inf, 2), cmplx(0, nan), cmplx(nan, nan)}, + Test{cmplx(-inf, 2), cmplx(0, inf), cmplx(nan, nan)}, + Test{cmplx(-inf, 2), cmplx(0, -inf), cmplx(nan, nan)}, + Test{cmplx(-inf, 2), cmplx(1, 0), cmplx(-inf, nan)}, + Test{cmplx(-inf, 2), cmplx(1, 1), cmplx(-inf, inf)}, + Test{cmplx(-inf, 2), cmplx(1, -1), cmplx(-inf, -inf)}, + Test{cmplx(-inf, 2), cmplx(1, 2), cmplx(-inf, inf)}, + Test{cmplx(-inf, 2), cmplx(1, nan), cmplx(nan, nan)}, + Test{cmplx(-inf, 2), cmplx(1, inf), cmplx(nan, nan)}, + Test{cmplx(-inf, 2), cmplx(1, -inf), cmplx(nan, nan)}, + Test{cmplx(-inf, 2), cmplx(-1, 0), cmplx(inf, nan)}, + Test{cmplx(-inf, 2), cmplx(-1, 1), cmplx(inf, inf)}, + Test{cmplx(-inf, 2), cmplx(-1, -1), cmplx(inf, -inf)}, + Test{cmplx(-inf, 2), cmplx(-1, 2), cmplx(inf, inf)}, + Test{cmplx(-inf, 2), cmplx(-1, nan), cmplx(nan, nan)}, + Test{cmplx(-inf, 2), cmplx(-1, inf), cmplx(nan, nan)}, + Test{cmplx(-inf, 2), cmplx(-1, -inf), cmplx(nan, nan)}, + Test{cmplx(-inf, 2), cmplx(2, 0), cmplx(-inf, nan)}, + Test{cmplx(-inf, 2), cmplx(2, 1), cmplx(-inf, inf)}, + Test{cmplx(-inf, 2), cmplx(2, -1), cmplx(-inf, -inf)}, + Test{cmplx(-inf, 2), cmplx(2, 2), cmplx(-inf, inf)}, + Test{cmplx(-inf, 2), cmplx(2, nan), cmplx(nan, nan)}, + Test{cmplx(-inf, 2), cmplx(2, inf), cmplx(nan, nan)}, + Test{cmplx(-inf, 2), cmplx(2, -inf), cmplx(nan, nan)}, + Test{cmplx(-inf, 2), cmplx(nan, 0), cmplx(nan, nan)}, + Test{cmplx(-inf, 2), cmplx(nan, 1), cmplx(nan, nan)}, + Test{cmplx(-inf, 2), cmplx(nan, -1), cmplx(nan, nan)}, + Test{cmplx(-inf, 2), cmplx(nan, 2), cmplx(nan, nan)}, + Test{cmplx(-inf, 2), cmplx(nan, nan), cmplx(nan, nan)}, + Test{cmplx(-inf, 2), cmplx(nan, inf), cmplx(nan, nan)}, + Test{cmplx(-inf, 2), cmplx(nan, -inf), cmplx(nan, nan)}, + Test{cmplx(-inf, 2), cmplx(inf, 0), cmplx(nan, nan)}, + Test{cmplx(-inf, 2), cmplx(inf, 1), cmplx(nan, nan)}, + Test{cmplx(-inf, 2), cmplx(inf, -1), cmplx(nan, nan)}, + Test{cmplx(-inf, 2), cmplx(inf, 2), cmplx(nan, nan)}, + Test{cmplx(-inf, 2), cmplx(inf, nan), cmplx(nan, nan)}, + Test{cmplx(-inf, 2), cmplx(inf, inf), cmplx(nan, nan)}, + Test{cmplx(-inf, 2), cmplx(inf, -inf), cmplx(nan, nan)}, + Test{cmplx(-inf, 2), cmplx(-inf, 0), cmplx(nan, nan)}, + Test{cmplx(-inf, 2), cmplx(-inf, 1), cmplx(nan, nan)}, + Test{cmplx(-inf, 2), cmplx(-inf, -1), cmplx(nan, nan)}, + Test{cmplx(-inf, 2), cmplx(-inf, 2), cmplx(nan, nan)}, + Test{cmplx(-inf, 2), cmplx(-inf, nan), cmplx(nan, nan)}, + Test{cmplx(-inf, 2), cmplx(-inf, inf), cmplx(nan, nan)}, + Test{cmplx(-inf, 2), cmplx(-inf, -inf), cmplx(nan, nan)}, + Test{cmplx(-inf, nan), cmplx(0, 0), cmplx(-inf, nan)}, + Test{cmplx(-inf, nan), cmplx(0, 1), cmplx(nan, inf)}, + Test{cmplx(-inf, nan), cmplx(0, -1), cmplx(nan, -inf)}, + Test{cmplx(-inf, nan), cmplx(0, 2), cmplx(nan, inf)}, + Test{cmplx(-inf, nan), cmplx(0, nan), cmplx(nan, nan)}, + Test{cmplx(-inf, nan), cmplx(0, inf), cmplx(nan, nan)}, + Test{cmplx(-inf, nan), cmplx(0, -inf), cmplx(nan, nan)}, + Test{cmplx(-inf, nan), cmplx(1, 0), cmplx(-inf, nan)}, + Test{cmplx(-inf, nan), cmplx(1, 1), cmplx(-inf, inf)}, + Test{cmplx(-inf, nan), cmplx(1, -1), cmplx(-inf, -inf)}, + Test{cmplx(-inf, nan), cmplx(1, 2), cmplx(-inf, inf)}, + Test{cmplx(-inf, nan), cmplx(1, nan), cmplx(nan, nan)}, + Test{cmplx(-inf, nan), cmplx(1, inf), cmplx(nan, nan)}, + Test{cmplx(-inf, nan), cmplx(1, -inf), cmplx(nan, nan)}, + Test{cmplx(-inf, nan), cmplx(-1, 0), cmplx(inf, nan)}, + Test{cmplx(-inf, nan), cmplx(-1, 1), cmplx(inf, inf)}, + Test{cmplx(-inf, nan), cmplx(-1, -1), cmplx(inf, -inf)}, + Test{cmplx(-inf, nan), cmplx(-1, 2), cmplx(inf, inf)}, + Test{cmplx(-inf, nan), cmplx(-1, nan), cmplx(nan, nan)}, + Test{cmplx(-inf, nan), cmplx(-1, inf), cmplx(nan, nan)}, + Test{cmplx(-inf, nan), cmplx(-1, -inf), cmplx(nan, nan)}, + Test{cmplx(-inf, nan), cmplx(2, 0), cmplx(-inf, nan)}, + Test{cmplx(-inf, nan), cmplx(2, 1), cmplx(-inf, inf)}, + Test{cmplx(-inf, nan), cmplx(2, -1), cmplx(-inf, -inf)}, + Test{cmplx(-inf, nan), cmplx(2, 2), cmplx(-inf, inf)}, + Test{cmplx(-inf, nan), cmplx(2, nan), cmplx(nan, nan)}, + Test{cmplx(-inf, nan), cmplx(2, inf), cmplx(nan, nan)}, + Test{cmplx(-inf, nan), cmplx(2, -inf), cmplx(nan, nan)}, + Test{cmplx(-inf, nan), cmplx(nan, 0), cmplx(nan, nan)}, + Test{cmplx(-inf, nan), cmplx(nan, 1), cmplx(nan, nan)}, + Test{cmplx(-inf, nan), cmplx(nan, -1), cmplx(nan, nan)}, + Test{cmplx(-inf, nan), cmplx(nan, 2), cmplx(nan, nan)}, + Test{cmplx(-inf, nan), cmplx(nan, nan), cmplx(nan, nan)}, + Test{cmplx(-inf, nan), cmplx(nan, inf), cmplx(nan, nan)}, + Test{cmplx(-inf, nan), cmplx(nan, -inf), cmplx(nan, nan)}, + Test{cmplx(-inf, nan), cmplx(inf, 0), cmplx(nan, nan)}, + Test{cmplx(-inf, nan), cmplx(inf, 1), cmplx(nan, nan)}, + Test{cmplx(-inf, nan), cmplx(inf, -1), cmplx(nan, nan)}, + Test{cmplx(-inf, nan), cmplx(inf, 2), cmplx(nan, nan)}, + Test{cmplx(-inf, nan), cmplx(inf, nan), cmplx(nan, nan)}, + Test{cmplx(-inf, nan), cmplx(inf, inf), cmplx(nan, nan)}, + Test{cmplx(-inf, nan), cmplx(inf, -inf), cmplx(nan, nan)}, + Test{cmplx(-inf, nan), cmplx(-inf, 0), cmplx(nan, nan)}, + Test{cmplx(-inf, nan), cmplx(-inf, 1), cmplx(nan, nan)}, + Test{cmplx(-inf, nan), cmplx(-inf, -1), cmplx(nan, nan)}, + Test{cmplx(-inf, nan), cmplx(-inf, 2), cmplx(nan, nan)}, + Test{cmplx(-inf, nan), cmplx(-inf, nan), cmplx(nan, nan)}, + Test{cmplx(-inf, nan), cmplx(-inf, inf), cmplx(nan, nan)}, + Test{cmplx(-inf, nan), cmplx(-inf, -inf), cmplx(nan, nan)}, + Test{cmplx(-inf, inf), cmplx(0, 0), cmplx(-inf, inf)}, + Test{cmplx(-inf, inf), cmplx(0, 1), cmplx(inf, inf)}, + Test{cmplx(-inf, inf), cmplx(0, -1), cmplx(-inf, -inf)}, + Test{cmplx(-inf, inf), cmplx(0, 2), cmplx(inf, inf)}, + Test{cmplx(-inf, inf), cmplx(0, nan), cmplx(nan, nan)}, + Test{cmplx(-inf, inf), cmplx(0, inf), cmplx(nan, nan)}, + Test{cmplx(-inf, inf), cmplx(0, -inf), cmplx(nan, nan)}, + Test{cmplx(-inf, inf), cmplx(1, 0), cmplx(-inf, inf)}, + Test{cmplx(-inf, inf), cmplx(1, 1), cmplx(nan, inf)}, + Test{cmplx(-inf, inf), cmplx(1, -1), cmplx(-inf, nan)}, + Test{cmplx(-inf, inf), cmplx(1, 2), cmplx(nan, inf)}, + Test{cmplx(-inf, inf), cmplx(1, nan), cmplx(nan, nan)}, + Test{cmplx(-inf, inf), cmplx(1, inf), cmplx(nan, nan)}, + Test{cmplx(-inf, inf), cmplx(1, -inf), cmplx(nan, nan)}, + Test{cmplx(-inf, inf), cmplx(-1, 0), cmplx(inf, -inf)}, + Test{cmplx(-inf, inf), cmplx(-1, 1), cmplx(inf, nan)}, + Test{cmplx(-inf, inf), cmplx(-1, -1), cmplx(nan, -inf)}, + Test{cmplx(-inf, inf), cmplx(-1, 2), cmplx(inf, nan)}, + Test{cmplx(-inf, inf), cmplx(-1, nan), cmplx(nan, nan)}, + Test{cmplx(-inf, inf), cmplx(-1, inf), cmplx(nan, nan)}, + Test{cmplx(-inf, inf), cmplx(-1, -inf), cmplx(nan, nan)}, + Test{cmplx(-inf, inf), cmplx(2, 0), cmplx(-inf, inf)}, + Test{cmplx(-inf, inf), cmplx(2, 1), cmplx(nan, inf)}, + Test{cmplx(-inf, inf), cmplx(2, -1), cmplx(-inf, nan)}, + Test{cmplx(-inf, inf), cmplx(2, 2), cmplx(nan, inf)}, + Test{cmplx(-inf, inf), cmplx(2, nan), cmplx(nan, nan)}, + Test{cmplx(-inf, inf), cmplx(2, inf), cmplx(nan, nan)}, + Test{cmplx(-inf, inf), cmplx(2, -inf), cmplx(nan, nan)}, + Test{cmplx(-inf, inf), cmplx(nan, 0), cmplx(nan, nan)}, + Test{cmplx(-inf, inf), cmplx(nan, 1), cmplx(nan, nan)}, + Test{cmplx(-inf, inf), cmplx(nan, -1), cmplx(nan, nan)}, + Test{cmplx(-inf, inf), cmplx(nan, 2), cmplx(nan, nan)}, + Test{cmplx(-inf, inf), cmplx(nan, nan), cmplx(nan, nan)}, + Test{cmplx(-inf, inf), cmplx(nan, inf), cmplx(nan, nan)}, + Test{cmplx(-inf, inf), cmplx(nan, -inf), cmplx(nan, nan)}, + Test{cmplx(-inf, inf), cmplx(inf, 0), cmplx(nan, nan)}, + Test{cmplx(-inf, inf), cmplx(inf, 1), cmplx(nan, nan)}, + Test{cmplx(-inf, inf), cmplx(inf, -1), cmplx(nan, nan)}, + Test{cmplx(-inf, inf), cmplx(inf, 2), cmplx(nan, nan)}, + Test{cmplx(-inf, inf), cmplx(inf, nan), cmplx(nan, nan)}, + Test{cmplx(-inf, inf), cmplx(inf, inf), cmplx(nan, nan)}, + Test{cmplx(-inf, inf), cmplx(inf, -inf), cmplx(nan, nan)}, + Test{cmplx(-inf, inf), cmplx(-inf, 0), cmplx(nan, nan)}, + Test{cmplx(-inf, inf), cmplx(-inf, 1), cmplx(nan, nan)}, + Test{cmplx(-inf, inf), cmplx(-inf, -1), cmplx(nan, nan)}, + Test{cmplx(-inf, inf), cmplx(-inf, 2), cmplx(nan, nan)}, + Test{cmplx(-inf, inf), cmplx(-inf, nan), cmplx(nan, nan)}, + Test{cmplx(-inf, inf), cmplx(-inf, inf), cmplx(nan, nan)}, + Test{cmplx(-inf, inf), cmplx(-inf, -inf), cmplx(nan, nan)}, + Test{cmplx(-inf, -inf), cmplx(0, 0), cmplx(-inf, -inf)}, + Test{cmplx(-inf, -inf), cmplx(0, 1), cmplx(-inf, inf)}, + Test{cmplx(-inf, -inf), cmplx(0, -1), cmplx(inf, -inf)}, + Test{cmplx(-inf, -inf), cmplx(0, 2), cmplx(-inf, inf)}, + Test{cmplx(-inf, -inf), cmplx(0, nan), cmplx(nan, nan)}, + Test{cmplx(-inf, -inf), cmplx(0, inf), cmplx(nan, nan)}, + Test{cmplx(-inf, -inf), cmplx(0, -inf), cmplx(nan, nan)}, + Test{cmplx(-inf, -inf), cmplx(1, 0), cmplx(-inf, -inf)}, + Test{cmplx(-inf, -inf), cmplx(1, 1), cmplx(-inf, nan)}, + Test{cmplx(-inf, -inf), cmplx(1, -1), cmplx(nan, -inf)}, + Test{cmplx(-inf, -inf), cmplx(1, 2), cmplx(-inf, nan)}, + Test{cmplx(-inf, -inf), cmplx(1, nan), cmplx(nan, nan)}, + Test{cmplx(-inf, -inf), cmplx(1, inf), cmplx(nan, nan)}, + Test{cmplx(-inf, -inf), cmplx(1, -inf), cmplx(nan, nan)}, + Test{cmplx(-inf, -inf), cmplx(-1, 0), cmplx(inf, inf)}, + Test{cmplx(-inf, -inf), cmplx(-1, 1), cmplx(nan, inf)}, + Test{cmplx(-inf, -inf), cmplx(-1, -1), cmplx(inf, nan)}, + Test{cmplx(-inf, -inf), cmplx(-1, 2), cmplx(nan, inf)}, + Test{cmplx(-inf, -inf), cmplx(-1, nan), cmplx(nan, nan)}, + Test{cmplx(-inf, -inf), cmplx(-1, inf), cmplx(nan, nan)}, + Test{cmplx(-inf, -inf), cmplx(-1, -inf), cmplx(nan, nan)}, + Test{cmplx(-inf, -inf), cmplx(2, 0), cmplx(-inf, -inf)}, + Test{cmplx(-inf, -inf), cmplx(2, 1), cmplx(-inf, nan)}, + Test{cmplx(-inf, -inf), cmplx(2, -1), cmplx(nan, -inf)}, + Test{cmplx(-inf, -inf), cmplx(2, 2), cmplx(-inf, nan)}, + Test{cmplx(-inf, -inf), cmplx(2, nan), cmplx(nan, nan)}, + Test{cmplx(-inf, -inf), cmplx(2, inf), cmplx(nan, nan)}, + Test{cmplx(-inf, -inf), cmplx(2, -inf), cmplx(nan, nan)}, + Test{cmplx(-inf, -inf), cmplx(nan, 0), cmplx(nan, nan)}, + Test{cmplx(-inf, -inf), cmplx(nan, 1), cmplx(nan, nan)}, + Test{cmplx(-inf, -inf), cmplx(nan, -1), cmplx(nan, nan)}, + Test{cmplx(-inf, -inf), cmplx(nan, 2), cmplx(nan, nan)}, + Test{cmplx(-inf, -inf), cmplx(nan, nan), cmplx(nan, nan)}, + Test{cmplx(-inf, -inf), cmplx(nan, inf), cmplx(nan, nan)}, + Test{cmplx(-inf, -inf), cmplx(nan, -inf), cmplx(nan, nan)}, + Test{cmplx(-inf, -inf), cmplx(inf, 0), cmplx(nan, nan)}, + Test{cmplx(-inf, -inf), cmplx(inf, 1), cmplx(nan, nan)}, + Test{cmplx(-inf, -inf), cmplx(inf, -1), cmplx(nan, nan)}, + Test{cmplx(-inf, -inf), cmplx(inf, 2), cmplx(nan, nan)}, + Test{cmplx(-inf, -inf), cmplx(inf, nan), cmplx(nan, nan)}, + Test{cmplx(-inf, -inf), cmplx(inf, inf), cmplx(nan, nan)}, + Test{cmplx(-inf, -inf), cmplx(inf, -inf), cmplx(nan, nan)}, + Test{cmplx(-inf, -inf), cmplx(-inf, 0), cmplx(nan, nan)}, + Test{cmplx(-inf, -inf), cmplx(-inf, 1), cmplx(nan, nan)}, + Test{cmplx(-inf, -inf), cmplx(-inf, -1), cmplx(nan, nan)}, + Test{cmplx(-inf, -inf), cmplx(-inf, 2), cmplx(nan, nan)}, + Test{cmplx(-inf, -inf), cmplx(-inf, nan), cmplx(nan, nan)}, + Test{cmplx(-inf, -inf), cmplx(-inf, inf), cmplx(nan, nan)}, + Test{cmplx(-inf, -inf), cmplx(-inf, -inf), cmplx(nan, nan)}, +} diff --git a/gcc/testsuite/go.test/test/complit.go b/gcc/testsuite/go.test/test/complit.go new file mode 100644 index 0000000..f3b7c9a --- /dev/null +++ b/gcc/testsuite/go.test/test/complit.go @@ -0,0 +1,70 @@ +// $G $F.go && $L $F.$A && ./$A.out + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package main + +type T struct { i int; f float; s string; next *T } + +type R struct { num int } + +func itor(a int) *R { + r := new(R) + r.num = a + return r +} + +func eq(a []*R) { + for i := 0; i < len(a); i++ { + if a[i].num != i { panic("bad") } + } +} + +type P struct { a, b int } +func NewP(a, b int) *P { + return &P{a, b} +} + +func main() { + var t T + t = T{0, 7.2, "hi", &t} + + var tp *T + tp = &T{0, 7.2, "hi", &t} + + a1 := []int{1,2,3} + if len(a1) != 3 { panic("a1") } + a2 := [10]int{1,2,3} + if len(a2) != 10 || cap(a2) != 10 { panic("a2") } + + a3 := [10]int{1,2,3,} + if len(a3) != 10 || a2[3] != 0 { panic("a3") } + + var oai []int + oai = []int{1,2,3} + if len(oai) != 3 { panic("oai") } + + at := [...]*T{&t, tp, &t} + if len(at) != 3 { panic("at") } + + c := make(chan int) + ac := []chan int{c, c, c} + if len(ac) != 3 { panic("ac") } + + aat := [][len(at)]*T{at, at} + if len(aat) != 2 || len(aat[1]) != 3 { panic("aat") } + + s := string([]byte{'h', 'e', 'l', 'l', 'o'}) + if s != "hello" { panic("s") } + + m := map[string]float{"one":1.0, "two":2.0, "pi":22./7.} + if len(m) != 3 { panic("m") } + + eq([]*R{itor(0), itor(1), itor(2), itor(3), itor(4), itor(5)}) + + p1 := NewP(1, 2) + p2 := NewP(1, 2) + if p1 == p2 { panic("NewP") } +} diff --git a/gcc/testsuite/go.test/test/compos.go b/gcc/testsuite/go.test/test/compos.go new file mode 100644 index 0000000..70f90f3 --- /dev/null +++ b/gcc/testsuite/go.test/test/compos.go @@ -0,0 +1,23 @@ +// $G $D/$F.go && $L $F.$A && ./$A.out || echo BUG: compos + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package main + +type T struct { + int +} + +func f() *T { + return &T{1} +} + +func main() { + x := f() + y := f() + if x == y { + panic("not allocating & composite literals") + } +} diff --git a/gcc/testsuite/go.test/test/const.go b/gcc/testsuite/go.test/test/const.go new file mode 100644 index 0000000..a55e13a --- /dev/null +++ b/gcc/testsuite/go.test/test/const.go @@ -0,0 +1,120 @@ +// $G $F.go && $L $F.$A && ./$A.out + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package main + +const ( + c0 = 0 + cm1 = -1 + chuge = 1 << 100 + chuge_1 = chuge - 1 + c1 = chuge >> 100 + c3div2 = 3/2 + c1e3 = 1e3 + + ctrue = true + cfalse = !ctrue +) + +const ( + f0 = 0.0 + fm1 = -1. + fhuge float64 = 1 << 100 + fhuge_1 float64 = chuge - 1 + f1 float64 = chuge >> 100 + f3div2 = 3./2. + f1e3 float64 = 1e3 +) + +func assert(t bool, s string) { + if !t { + panic(s) + } +} + +func ints() { + assert(c0 == 0, "c0") + assert(c1 == 1, "c1") + assert(chuge > chuge_1, "chuge") + assert(chuge_1 + 1 == chuge, "chuge 1") + assert(chuge + cm1 +1 == chuge, "cm1") + assert(c3div2 == 1, "3/2") + assert(c1e3 == 1000, "c1e3 int") + assert(c1e3 == 1e3, "c1e3 float") + + // verify that all (in range) are assignable as ints + var i int + i = c0 + assert(i == c0, "i == c0") + i = cm1 + assert(i == cm1, "i == cm1") + i = c1 + assert(i == c1, "i == c1") + i = c3div2 + assert(i == c3div2, "i == c3div2") + i = c1e3 + assert(i == c1e3, "i == c1e3") + + // verify that all are assignable as floats + var f float64 + f = c0 + assert(f == c0, "f == c0") + f = cm1 + assert(f == cm1, "f == cm1") + f = chuge + assert(f == chuge, "f == chuge") + f = chuge_1 + assert(f == chuge_1, "f == chuge_1") + f = c1 + assert(f == c1, "f == c1") + f = c3div2 + assert(f == c3div2, "f == c3div2") + f = c1e3 + assert(f == c1e3, "f == c1e3") +} + +func floats() { + assert(f0 == c0, "f0") + assert(f1 == c1, "f1") + assert(fhuge == fhuge_1, "fhuge") // float64 can't distinguish fhuge, fhuge_1. + assert(fhuge_1 + 1 == fhuge, "fhuge 1") + assert(fhuge + fm1 +1 == fhuge, "fm1") + assert(f3div2 == 1.5, "3./2.") + assert(f1e3 == 1000, "f1e3 int") + assert(f1e3 == 1.e3, "f1e3 float") + + // verify that all (in range) are assignable as ints + var i int + i = f0 + assert(i == f0, "i == f0") + i = fm1 + assert(i == fm1, "i == fm1") + + // verify that all are assignable as floats + var f float64 + f = f0 + assert(f == f0, "f == f0") + f = fm1 + assert(f == fm1, "f == fm1") + f = fhuge + assert(f == fhuge, "f == fhuge") + f = fhuge_1 + assert(f == fhuge_1, "f == fhuge_1") + f = f1 + assert(f == f1, "f == f1") + f = f3div2 + assert(f == f3div2, "f == f3div2") + f = f1e3 + assert(f == f1e3, "f == f1e3") +} + +func main() { + ints() + floats() + + assert(ctrue == true, "ctrue == true") + assert(cfalse == false, "cfalse == false") +} diff --git a/gcc/testsuite/go.test/test/const1.go b/gcc/testsuite/go.test/test/const1.go new file mode 100644 index 0000000..427d61e --- /dev/null +++ b/gcc/testsuite/go.test/test/const1.go @@ -0,0 +1,79 @@ +// errchk $G -e $F.go + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package main + +type I interface {} +const ( + // assume all types behave similarly to int8/uint8 + Int8 int8 = 101 + Minus1 int8 = -1 + Uint8 uint8 = 102 + Const = 103 + + Float32 float32 = 104.5 + Float float = 105.5 + ConstFloat = 106.5 + Big float64 = 1e300 + + String = "abc" + Bool = true +) + +var ( + a1 = Int8 * 100 // ERROR "overflow" + a2 = Int8 * -1 // OK + a3 = Int8 * 1000 // ERROR "overflow" + a4 = Int8 * int8(1000) // ERROR "overflow" + a5 = int8(Int8 * 1000) // ERROR "overflow" + a6 = int8(Int8 * int8(1000)) // ERROR "overflow" + a7 = Int8 - 2*Int8 - 2*Int8 // ERROR "overflow" + a8 = Int8 * Const / 100 // ERROR "overflow" + a9 = Int8 * (Const / 100) // OK + + b1 = Uint8 * Uint8 // ERROR "overflow" + b2 = Uint8 * -1 // ERROR "overflow" + b3 = Uint8 - Uint8 // OK + b4 = Uint8 - Uint8 - Uint8 // ERROR "overflow" + b5 = uint8(^0) // ERROR "overflow" + b6 = ^uint8(0) // OK + b7 = uint8(Minus1) // ERROR "overflow" + b8 = uint8(int8(-1)) // ERROR "overflow" + b8a = uint8(-1) // ERROR "overflow" + b9 byte = (1<<10) >> 8 // OK + b10 byte = (1<<10) // ERROR "overflow" + b11 byte = (byte(1)<<10) >> 8 // ERROR "overflow" + b12 byte = 1000 // ERROR "overflow" + b13 byte = byte(1000) // ERROR "overflow" + b14 byte = byte(100) * byte(100) // ERROR "overflow" + b15 byte = byte(100) * 100 // ERROR "overflow" + b16 byte = byte(0) * 1000 // ERROR "overflow" + b16a byte = 0 * 1000 // OK + b17 byte = byte(0) * byte(1000) // ERROR "overflow" + b18 byte = Uint8/0 // ERROR "division by zero" + + c1 float64 = Big + c2 float64 = Big*Big // ERROR "overflow" + c3 float64 = float64(Big)*Big // ERROR "overflow" + c4 = Big*Big // ERROR "overflow" + c5 = Big/0 // ERROR "division by zero" +) + +func f(int) + +func main() { + f(Int8) // ERROR "convert|wrong type|cannot" + f(Minus1) // ERROR "convert|wrong type|cannot" + f(Uint8) // ERROR "convert|wrong type|cannot" + f(Const) // OK + f(Float32) // ERROR "convert|wrong type|cannot" + f(Float) // ERROR "convert|wrong type|cannot" + f(ConstFloat) // ERROR "truncate" + f(ConstFloat - 0.5) // OK + f(Big) // ERROR "convert|wrong type|cannot" + f(String) // ERROR "convert|wrong type|cannot|incompatible" + f(Bool) // ERROR "convert|wrong type|cannot|incompatible" +} diff --git a/gcc/testsuite/go.test/test/const2.go b/gcc/testsuite/go.test/test/const2.go new file mode 100644 index 0000000..bea1b99 --- /dev/null +++ b/gcc/testsuite/go.test/test/const2.go @@ -0,0 +1,12 @@ +// errchk $G $D/$F.go + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package main + +const ( + A int = 1 + B byte; // ERROR "type without expr|expected .=." +) diff --git a/gcc/testsuite/go.test/test/const3.go b/gcc/testsuite/go.test/test/const3.go new file mode 100644 index 0000000..dd5c889 --- /dev/null +++ b/gcc/testsuite/go.test/test/const3.go @@ -0,0 +1,29 @@ +// $G $D/$F.go && $L $F.$A && ./$A.out + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package main + +import "fmt" + +type T int + +func (t T) String() string { return fmt.Sprintf("T%d", int(t)) } + +const ( + A T = 1 << (1 << iota) + B + C + D + E +) + +func main() { + s := fmt.Sprintf("%v %v %v %v %v", A, B, C, D, E) + if s != "T2 T4 T16 T256 T65536" { + println("type info didn't propagate in const: got", s) + panic("fail") + } +} diff --git a/gcc/testsuite/go.test/test/convert.go b/gcc/testsuite/go.test/test/convert.go new file mode 100644 index 0000000..e7361aa --- /dev/null +++ b/gcc/testsuite/go.test/test/convert.go @@ -0,0 +1,44 @@ +// $G $D/$F.go && $L $F.$A && ./$A.out + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package main + +import "reflect" + +func typeof(x interface{}) string { return reflect.Typeof(x).String() } + +func f() int { return 0 } + +func g() int { return 0 } + +type T func() int + +var m = map[string]T{"f": f} + +type A int +type B int + +var a A = 1 +var b B = 2 +var x int + +func main() { + want := typeof(g) + if t := typeof(f); t != want { + println("type of f is", t, "want", want) + panic("fail") + } + + want = typeof(a) + if t := typeof(+a); t != want { + println("type of +a is", t, "want", want) + panic("fail") + } + if t := typeof(a + 0); t != want { + println("type of a+0 is", t, "want", want) + panic("fail") + } +} diff --git a/gcc/testsuite/go.test/test/convert3.go b/gcc/testsuite/go.test/test/convert3.go new file mode 100644 index 0000000..be68c95 --- /dev/null +++ b/gcc/testsuite/go.test/test/convert3.go @@ -0,0 +1,26 @@ +// errchk $G $D/$F.go + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package main + +// everything here is legal except the ERROR line + +var c chan int +var d1 chan<- int = c +var d2 = (chan<- int)(c) + +var e *[4]int +var f1 []int = e[0:] +var f2 = []int(e[0:]) + +var g = []int(nil) + +type H []int +type J []int + +var h H +var j1 J = h // ERROR "compat|illegal|cannot" +var j2 = J(h) diff --git a/gcc/testsuite/go.test/test/convlit.go b/gcc/testsuite/go.test/test/convlit.go new file mode 100644 index 0000000..94889d4 --- /dev/null +++ b/gcc/testsuite/go.test/test/convlit.go @@ -0,0 +1,64 @@ +// errchk $G -e $D/$F.go + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package main + +// explicit conversion of constants is work in progress. +// the ERRORs in this block are debatable, but they're what +// the language spec says for now. +var x1 = string(1) +var x2 string = string(1) +var x3 = int(1.5) // ERROR "convert|truncate" +var x4 int = int(1.5) // ERROR "convert|truncate" +var x5 = "a" + string(1) +var x6 = int(1e100) // ERROR "overflow" +var x7 = float(1e1000) // ERROR "overflow" + +// implicit conversions merit scrutiny +var s string +var bad1 string = 1 // ERROR "conver|incompatible|invalid|cannot" +var bad2 = s + 1 // ERROR "conver|incompatible|invalid" +var bad3 = s + 'a' // ERROR "conver|incompatible|invalid" +var bad4 = "a" + 1 // ERROR "literals|incompatible|convert|invalid" +var bad5 = "a" + 'a' // ERROR "literals|incompatible|convert|invalid" + +var bad6 int = 1.5 // ERROR "convert|truncate" +var bad7 int = 1e100 // ERROR "overflow" +var bad8 float32 = 1e200 // ERROR "overflow" + +// but these implicit conversions are okay +var good1 string = "a" +var good2 int = 1.0 +var good3 int = 1e9 +var good4 float = 1e20 + +// explicit conversion of string is okay +var _ = []int("abc") +var _ = []byte("abc") + +// implicit is not +var _ []int = "abc" // ERROR "cannot use|incompatible|invalid" +var _ []byte = "abc" // ERROR "cannot use|incompatible|invalid" + +// named string is okay +type Tstring string +var ss Tstring = "abc" +var _ = []int(ss) +var _ = []byte(ss) + +// implicit is still not +var _ []int = ss // ERROR "cannot use|incompatible|invalid" +var _ []byte = ss // ERROR "cannot use|incompatible|invalid" + +// named slice is not +type Tint []int +type Tbyte []byte +var _ = Tint("abc") // ERROR "convert|incompatible|invalid" +var _ = Tbyte("abc") // ERROR "convert|incompatible|invalid" + +// implicit is still not +var _ Tint = "abc" // ERROR "cannot use|incompatible|invalid" +var _ Tbyte = "abc" // ERROR "cannot use|incompatible|invalid" diff --git a/gcc/testsuite/go.test/test/convlit1.go b/gcc/testsuite/go.test/test/convlit1.go new file mode 100644 index 0000000..1e6673c --- /dev/null +++ b/gcc/testsuite/go.test/test/convlit1.go @@ -0,0 +1,17 @@ +// errchk $G $D/$F.go + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package main + +var a = []int { "a" }; // ERROR "conver|incompatible|cannot" +var b = int { 1 }; // ERROR "compos" + + +func f() int + +func main() { + if f < 1 { } // ERROR "conver|incompatible|invalid" +} diff --git a/gcc/testsuite/go.test/test/copy.go b/gcc/testsuite/go.test/test/copy.go new file mode 100644 index 0000000..037d3f4 --- /dev/null +++ b/gcc/testsuite/go.test/test/copy.go @@ -0,0 +1,293 @@ +// $G $F.go && $L $F.$A && ./$A.out + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +// Semi-exhaustive test for copy() + +package main + +import ( + "fmt" + "os" +) + +const N = 40 + +var input8 = make([]uint8, N) +var output8 = make([]uint8, N) +var input16 = make([]uint16, N) +var output16 = make([]uint16, N) +var input32 = make([]uint32, N) +var output32 = make([]uint32, N) +var input64 = make([]uint64, N) +var output64 = make([]uint64, N) + +func u8(i int) uint8 { + i = 'a' + i%26 + return uint8(i) +} + +func u16(ii int) uint16 { + var i = uint16(ii) + i = 'a' + i%26 + i |= i << 8 + return i +} + +func u32(ii int) uint32 { + var i = uint32(ii) + i = 'a' + i%26 + i |= i << 8 + i |= i << 16 + return i +} + +func u64(ii int) uint64 { + var i = uint64(ii) + i = 'a' + i%26 + i |= i << 8 + i |= i << 16 + i |= i << 32 + return i +} + +func reset() { + // swap in and out to exercise copy-up and copy-down + input8, output8 = output8, input8 + input16, output16 = output16, input16 + input32, output32 = output32, input32 + input64, output64 = output64, input64 + in := 0 + out := 13 + for i := range input8 { + input8[i] = u8(in) + output8[i] = u8(out) + input16[i] = u16(in) + output16[i] = u16(out) + input32[i] = u32(in) + output32[i] = u32(out) + input64[i] = u64(in) + output64[i] = u64(out) + in++ + out++ + } +} + +func clamp(n int) int { + if n > N { + return N + } + return n +} + +func ncopied(length, in, out int) int { + n := length + if in+n > N { + n = N - in + } + if out+n > N { + n = N - out + } + return n +} + +func doAllSlices(length, in, out int) { + reset() + n := copy(output8[out:clamp(out+length)], input8[in:clamp(in+length)]) + verify8(length, in, out, n) + n = copy(output16[out:clamp(out+length)], input16[in:clamp(in+length)]) + verify16(length, in, out, n) + n = copy(output32[out:clamp(out+length)], input32[in:clamp(in+length)]) + verify32(length, in, out, n) + n = copy(output64[out:clamp(out+length)], input64[in:clamp(in+length)]) + verify64(length, in, out, n) +} + +func bad8(state string, i, length, in, out int) { + fmt.Printf("%s bad(%d %d %d): %c not %c:\n\t%s\n\t%s\n", + state, + length, in, out, + output8[i], + uint8(i+13), + input8, output8) + os.Exit(1) +} + +func verify8(length, in, out, m int) { + n := ncopied(length, in, out) + if m != n { + fmt.Printf("count bad(%d %d %d): %d not %d\n", length, in, out, m, n) + return + } + // before + var i int + for i = 0; i < out; i++ { + if output8[i] != u8(i+13) { + bad8("before8", i, length, in, out) + return + } + } + // copied part + for ; i < out+n; i++ { + if output8[i] != u8(i+in-out) { + bad8("copied8", i, length, in, out) + return + } + } + // after + for ; i < len(output8); i++ { + if output8[i] != u8(i+13) { + bad8("after8", i, length, in, out) + return + } + } +} + +func bad16(state string, i, length, in, out int) { + fmt.Printf("%s bad(%d %d %d): %x not %x:\n\t%v\n\t%v\n", + state, + length, in, out, + output16[i], + uint16(i+13), + input16, output16) + os.Exit(1) +} + +func verify16(length, in, out, m int) { + n := ncopied(length, in, out) + if m != n { + fmt.Printf("count bad(%d %d %d): %d not %d\n", length, in, out, m, n) + return + } + // before + var i int + for i = 0; i < out; i++ { + if output16[i] != u16(i+13) { + bad16("before16", i, length, in, out) + return + } + } + // copied part + for ; i < out+n; i++ { + if output16[i] != u16(i+in-out) { + bad16("copied16", i, length, in, out) + return + } + } + // after + for ; i < len(output16); i++ { + if output16[i] != u16(i+13) { + bad16("after16", i, length, in, out) + return + } + } +} + +func bad32(state string, i, length, in, out int) { + fmt.Printf("%s bad(%d %d %d): %x not %x:\n\t%v\n\t%v\n", + state, + length, in, out, + output32[i], + uint32(i+13), + input32, output32) + os.Exit(1) +} + +func verify32(length, in, out, m int) { + n := ncopied(length, in, out) + if m != n { + fmt.Printf("count bad(%d %d %d): %d not %d\n", length, in, out, m, n) + return + } + // before + var i int + for i = 0; i < out; i++ { + if output32[i] != u32(i+13) { + bad32("before32", i, length, in, out) + return + } + } + // copied part + for ; i < out+n; i++ { + if output32[i] != u32(i+in-out) { + bad32("copied32", i, length, in, out) + return + } + } + // after + for ; i < len(output32); i++ { + if output32[i] != u32(i+13) { + bad32("after32", i, length, in, out) + return + } + } +} + +func bad64(state string, i, length, in, out int) { + fmt.Printf("%s bad(%d %d %d): %x not %x:\n\t%v\n\t%v\n", + state, + length, in, out, + output64[i], + uint64(i+13), + input64, output64) + os.Exit(1) +} + +func verify64(length, in, out, m int) { + n := ncopied(length, in, out) + if m != n { + fmt.Printf("count bad(%d %d %d): %d not %d\n", length, in, out, m, n) + return + } + // before + var i int + for i = 0; i < out; i++ { + if output64[i] != u64(i+13) { + bad64("before64", i, length, in, out) + return + } + } + // copied part + for ; i < out+n; i++ { + if output64[i] != u64(i+in-out) { + bad64("copied64", i, length, in, out) + return + } + } + // after + for ; i < len(output64); i++ { + if output64[i] != u64(i+13) { + bad64("after64", i, length, in, out) + return + } + } +} + +func slice() { + for length := 0; length < N; length++ { + for in := 0; in <= 32; in++ { + for out := 0; out <= 32; out++ { + doAllSlices(length, in, out) + } + } + } +} + +// Array test. Can be much simpler. It's only checking for correct handling of [0:]. +func array() { + var array [N]uint8 + reset() + copy(array[0:], input8) + for i := 0; i < N; i++ { + output8[i] = 0 + } + copy(output8, array[0:]) + verify8(N, 0, 0, N) +} + +func main() { + slice() + array() +} diff --git a/gcc/testsuite/go.test/test/ddd.go b/gcc/testsuite/go.test/test/ddd.go new file mode 100644 index 0000000..c9949c3 --- /dev/null +++ b/gcc/testsuite/go.test/test/ddd.go @@ -0,0 +1,198 @@ +// $G $D/$F.go && $L $F.$A && ./$A.out + +// Copyright 2010 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package main + +func sum(args ...int) int { + s := 0 + for _, v := range args { + s += v + } + return s +} + +func sumC(args ...int) int { return func() int { return sum(args) }() } + +var sumD = func(args ...int) int { return sum(args) } + +var sumE = func() func(...int) int { return func(args ...int) int { return sum(args) } }() + +var sumF = func(args ...int) func() int { return func() int { return sum(args) } } + +func sumA(args []int) int { + s := 0 + for _, v := range args { + s += v + } + return s +} + +func sum2(args ...int) int { return 2 * sum(args) } + +func sum3(args ...int) int { return 3 * sumA(args) } + +func intersum(args ...interface{}) int { + s := 0 + for _, v := range args { + s += v.(int) + } + return s +} + +type T []T + +func ln(args ...T) int { return len(args) } + +func ln2(args ...T) int { return 2 * ln(args) } + +func (*T) Sum(args ...int) int { return sum(args) } + +type U struct { + *T +} + +func main() { + if x := sum(1, 2, 3); x != 6 { + println("sum 6", x) + panic("fail") + } + if x := sum(); x != 0 { + println("sum 0", x) + panic("fail") + } + if x := sum(10); x != 10 { + println("sum 10", x) + panic("fail") + } + if x := sum(1, 8); x != 9 { + println("sum 9", x) + panic("fail") + } + if x := sumC(4, 5, 6); x != 15 { + println("sumC 15", x) + panic("fail") + } + if x := sumD(4, 5, 7); x != 16 { + println("sumD 16", x) + panic("fail") + } + if x := sumE(4, 5, 8); x != 17 { + println("sumE 17", x) + panic("fail") + } + if x := sumF(4, 5, 9)(); x != 18 { + println("sumF 18", x) + panic("fail") + } + if x := sum2(1, 2, 3); x != 2*6 { + println("sum 6", x) + panic("fail") + } + if x := sum2(); x != 2*0 { + println("sum 0", x) + panic("fail") + } + if x := sum2(10); x != 2*10 { + println("sum 10", x) + panic("fail") + } + if x := sum2(1, 8); x != 2*9 { + println("sum 9", x) + panic("fail") + } + if x := sum3(1, 2, 3); x != 3*6 { + println("sum 6", x) + panic("fail") + } + if x := sum3(); x != 3*0 { + println("sum 0", x) + panic("fail") + } + if x := sum3(10); x != 3*10 { + println("sum 10", x) + panic("fail") + } + if x := sum3(1, 8); x != 3*9 { + println("sum 9", x) + panic("fail") + } + if x := intersum(1, 2, 3); x != 6 { + println("intersum 6", x) + panic("fail") + } + if x := intersum(); x != 0 { + println("intersum 0", x) + panic("fail") + } + if x := intersum(10); x != 10 { + println("intersum 10", x) + panic("fail") + } + if x := intersum(1, 8); x != 9 { + println("intersum 9", x) + panic("fail") + } + + if x := ln(nil, nil, nil); x != 3 { + println("ln 3", x) + panic("fail") + } + if x := ln([]T{}); x != 1 { + println("ln 1", x) + panic("fail") + } + if x := ln2(nil, nil, nil); x != 2*3 { + println("ln2 3", x) + panic("fail") + } + if x := ln2([]T{}); x != 2*1 { + println("ln2 1", x) + panic("fail") + } + if x := ((*T)(nil)).Sum(1, 3, 5, 7); x != 16 { + println("(*T)(nil).Sum", x) + panic("fail") + } + if x := (*T).Sum(nil, 1, 3, 5, 6); x != 15 { + println("(*T).Sum", x) + panic("fail") + } + if x := (&U{}).Sum(1, 3, 5, 5); x != 14 { + println("(&U{}).Sum", x) + panic("fail") + } + var u U + if x := u.Sum(1, 3, 5, 4); x != 13 { + println("u.Sum", x) + panic("fail") + } + if x := (&u).Sum(1, 3, 5, 3); x != 12 { + println("(&u).Sum", x) + panic("fail") + } + var i interface { + Sum(...int) int + } = &u + if x := i.Sum(2, 3, 5, 7); x != 17 { + println("i(=&u).Sum", x) + panic("fail") + } + i = u + if x := i.Sum(2, 3, 5, 6); x != 16 { + println("i(=u).Sum", x) + panic("fail") + } + /* TODO(rsc): Enable once nested method expressions work. + if x := (*U).Sum(&U{}, 1, 3, 5, 2); x != 11 { + println("(*U).Sum", x) + panic("fail") + } + if x := U.Sum(U{}, 1, 3, 5, 1); x != 10 { + println("U.Sum", x) + panic("fail") + } + */ +} diff --git a/gcc/testsuite/go.test/test/ddd1.go b/gcc/testsuite/go.test/test/ddd1.go new file mode 100644 index 0000000..6f714c0 --- /dev/null +++ b/gcc/testsuite/go.test/test/ddd1.go @@ -0,0 +1,28 @@ +// errchk $G -e $D/$F.go + +// Copyright 2010 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package main + +func sum(args ...int) int { return 0 } + +var ( + _ = sum(1, 2, 3) + _ = sum() + _ = sum(1.0, 2.0) + _ = sum(1.5) // ERROR "integer" + _ = sum("hello") // ERROR "convert|incompatible" + _ = sum([]int{1}) // ERROR "slice literal.*as type int|incompatible" +) + +type T []T + +func funny(args ...T) int { return 0 } + +var ( + _ = funny(nil) + _ = funny(nil, nil) + _ = funny([]T{}) // ok because []T{} is a T; passes []T{[]T{}} +) diff --git a/gcc/testsuite/go.test/test/ddd2.go b/gcc/testsuite/go.test/test/ddd2.go new file mode 100644 index 0000000..a06af0c --- /dev/null +++ b/gcc/testsuite/go.test/test/ddd2.go @@ -0,0 +1,16 @@ +// true + +// Copyright 2010 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package ddd + +func Sum(args ...int) int { + s := 0 + for _, v := range args { + s += v + } + return s +} + diff --git a/gcc/testsuite/go.test/test/ddd3.go b/gcc/testsuite/go.test/test/ddd3.go new file mode 100644 index 0000000..5d5ebdf --- /dev/null +++ b/gcc/testsuite/go.test/test/ddd3.go @@ -0,0 +1,28 @@ +// $G $D/ddd2.go && $G $D/$F.go && $L $F.$A && ./$A.out + +// Copyright 2010 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package main + +import "./ddd2" + +func main() { + if x := ddd.Sum(1, 2, 3); x != 6 { + println("ddd.Sum 6", x) + panic("fail") + } + if x := ddd.Sum(); x != 0 { + println("ddd.Sum 0", x) + panic("fail") + } + if x := ddd.Sum(10); x != 10 { + println("ddd.Sum 10", x) + panic("fail") + } + if x := ddd.Sum(1, 8); x != 9 { + println("ddd.Sum 9", x) + panic("fail") + } +} diff --git a/gcc/testsuite/go.test/test/decl.go b/gcc/testsuite/go.test/test/decl.go new file mode 100644 index 0000000..c31082b --- /dev/null +++ b/gcc/testsuite/go.test/test/decl.go @@ -0,0 +1,40 @@ +// $G $F.go && $L $F.$A && ./$A.out + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +// Correct short declarations and redeclarations. + +package main + +func f1() int { return 1 } +func f2() (float, int) { return 1, 2 } +func f3() (float, int, string) { return 1, 2, "3" } + +func x() (s string) { + a, b, s := f3() + _, _ = a, b + return // tests that result var is in scope for redeclaration +} + +func main() { + i, f, s := f3() + j, f := f2() // redeclare f + k := f1() + m, g, s := f3() + m, h, s := f3() + { + // new block should be ok. + i, f, s := f3() + j, f := f2() // redeclare f + k := f1() + m, g, s := f3() + m, h, s := f3() + _, _, _, _, _, _, _, _, _ = i, f, s, j, k, m, g, s, h + } + if x() != "3" { + println("x() failed") + } + _, _, _, _, _, _, _, _, _ = i, f, s, j, k, m, g, s, h +} diff --git a/gcc/testsuite/go.test/test/declbad.go b/gcc/testsuite/go.test/test/declbad.go new file mode 100644 index 0000000..269ebde --- /dev/null +++ b/gcc/testsuite/go.test/test/declbad.go @@ -0,0 +1,58 @@ +// errchk $G -e $F.go + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +// Incorrect short declarations and redeclarations. + +package main + +func f1() int { return 1 } +func f2() (float, int) { return 1, 2 } +func f3() (float, int, string) { return 1, 2, "3" } + +func main() { + { + // simple redeclaration + i := f1() + i := f1() // ERROR "redeclared|no new" + _ = i + } + { + // change of type for f + i, f, s := f3() + f, g, t := f3() // ERROR "redeclared|cannot assign|incompatible" + _, _, _, _, _ = i, f, s, g, t + } + { + // change of type for i + i, f, s := f3() + j, i, t := f3() // ERROR "redeclared|cannot assign|incompatible" + _, _, _, _, _ = i, f, s, j, t + } + { + // no new variables + i, f, s := f3() + i, f := f2() // ERROR "redeclared|no new" + _, _, _ = i, f, s + } + { + // single redeclaration + i, f, s := f3() + i := f1() // ERROR "redeclared|no new|incompatible" + _, _, _ = i, f, s + } + // double redeclaration + { + i, f, s := f3() + i, f := f2() // ERROR "redeclared|no new" + _, _, _ = i, f, s + } + { + // triple redeclaration + i, f, s := f3() + i, f, s := f3() // ERROR "redeclared|no new" + _, _, _ = i, f, s + } +} diff --git a/gcc/testsuite/go.test/test/defer.go b/gcc/testsuite/go.test/test/defer.go new file mode 100644 index 0000000..8b83122 --- /dev/null +++ b/gcc/testsuite/go.test/test/defer.go @@ -0,0 +1,48 @@ +// $G $F.go && $L $F.$A && ./$A.out + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package main + +import "fmt" + +var result string + +func addInt(i int) { result += fmt.Sprint(i) } + +func test1helper() { + for i := 0; i < 10; i++ { + defer addInt(i) + } +} + +func test1() { + result = "" + test1helper() + if result != "9876543210" { + fmt.Printf("test1: bad defer result (should be 9876543210): %q\n", result) + } +} + +func addDotDotDot(v ...interface{}) { result += fmt.Sprint(v) } + +func test2helper() { + for i := 0; i < 10; i++ { + defer addDotDotDot(i) + } +} + +func test2() { + result = "" + test2helper() + if result != "9876543210" { + fmt.Printf("test2: bad defer result (should be 9876543210): %q\n", result) + } +} + +func main() { + test1() + test2() +} diff --git a/gcc/testsuite/go.test/test/deferprint.go b/gcc/testsuite/go.test/test/deferprint.go new file mode 100644 index 0000000..f1e7526 --- /dev/null +++ b/gcc/testsuite/go.test/test/deferprint.go @@ -0,0 +1,14 @@ +// $G $D/$F.go && $L $F.$A && ./$A.out + +// Copyright 2010 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package main + +func main() { + defer println(42, true, false, true, 1.5, "world", (chan int)(nil), []int(nil), (map[string]int)(nil), (func())(nil), byte(255)) + defer println(1,2,3,4,5,6,7,8,9,10,11,12,13,14,15,16,17,18,19,20) +// defer panic("dead") + defer print("printing: ") +} diff --git a/gcc/testsuite/go.test/test/empty.go b/gcc/testsuite/go.test/test/empty.go new file mode 100644 index 0000000..fa10d69 --- /dev/null +++ b/gcc/testsuite/go.test/test/empty.go @@ -0,0 +1,12 @@ +// $G $D/$F.go + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package P + +import ( ) +const ( ) +var ( ) +type ( ) diff --git a/gcc/testsuite/go.test/test/env.go b/gcc/testsuite/go.test/test/env.go new file mode 100644 index 0000000..7646e07 --- /dev/null +++ b/gcc/testsuite/go.test/test/env.go @@ -0,0 +1,27 @@ +// [ $GOOS != nacl ] || exit 0 # NaCl runner does not expose environment +// $G $F.go && $L $F.$A && ./$A.out + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package main + +import os "os" + +func main() { + ga, e0 := os.Getenverror("GOARCH") + if e0 != nil { + print("$GOARCH: ", e0.String(), "\n") + os.Exit(1) + } + if ga != "amd64" && ga != "386" && ga != "arm" { + print("$GOARCH=", ga, "\n") + os.Exit(1) + } + xxx, e1 := os.Getenverror("DOES_NOT_EXIST") + if e1 != os.ENOENV { + print("$DOES_NOT_EXIST=", xxx, "; err = ", e1.String(), "\n") + os.Exit(1) + } +} diff --git a/gcc/testsuite/go.test/test/errchk b/gcc/testsuite/go.test/test/errchk new file mode 100755 index 0000000..ab7192d --- /dev/null +++ b/gcc/testsuite/go.test/test/errchk @@ -0,0 +1,94 @@ +#!/usr/bin/perl +# Copyright 2009 The Go Authors. All rights reserved. +# Use of this source code is governed by a BSD-style +# license that can be found in the LICENSE file. + +# This script checks that the compilers emits the errors which we +# expect. Usage: errchk COMPILER [OPTS] SOURCEFILE. This will run +# the command COMPILER [OPTS] SOURCEFILE. The compilation is expected +# to fail; if it succeeds, this script will report an error. The +# stderr output of the compiler will be matched against comments in +# SOURCEFILE. For each line of the source file which should generate +# an error, there should be a comment of the form // ERROR "regexp". +# If the compiler generates an error for a line which has no such +# commnt, this script will report an error. Likewise if the compiler +# does not generate an error for a line which has a comment, or if the +# error message does not match the <regexp>. The <regexp> syntax +# is Perl but its best to stick to egrep. + +use POSIX; + +if(@ARGV < 1) { + print STDERR "Usage: errchk COMPILER [OPTS] SOURCEFILE\n"; + exit 1; +} + +$file = $ARGV[@ARGV-1]; +open(SRC, $file) || die "BUG: errchk: open $file: $!"; +@src = <SRC>; +close(SRC); + +# Run command +$cmd = join(' ', @ARGV); +open(CMD, "exec $cmd </dev/null 2>&1 |") || die "BUG: errchk: run $cmd: $!"; + +# 6g error messages continue onto additional lines with leading tabs. +# Split the output at the beginning of each line that doesn't begin with a tab. +$out = join('', <CMD>); +@out = split(/^(?!\t)/m, $out); + +close CMD; + +if($? == 0) { + print STDERR "BUG: errchk: command succeeded unexpectedly\n"; + print STDERR @out; + exit 0; +} + +if(!WIFEXITED($?)) { + print STDERR "BUG: errchk: compiler crashed\n"; + print STDERR @out, "\n"; + exit 0; +} + +sub bug() { + if(!$bug++) { + print STDERR "BUG: "; + } +} + +$line = 0; +foreach $src (@src) { + $line++; + next unless $src =~ m|// (GC_)?ERROR (.*)|; + $regexp = $2; + if($regexp !~ /^"([^"]*)"/) { + print STDERR "$file:$line: malformed regexp\n"; + next; + } + $regexp = $1; + + @errmsg = grep { /$file:$line:/ } @out; + @out = grep { !/$file:$line:/ } @out; + if(@errmsg == 0) { + bug(); + print STDERR "errchk: $file:$line: missing expected error: '$regexp'\n"; + next; + } + @match = grep { /$regexp/ } @errmsg; + if(@match == 0) { + bug(); + print STDERR "errchk: $file:$line: error message does not match '$regexp'\n"; + next; + } +} + +if(@out != 0) { + bug(); + print STDERR "errchk: $file: unmatched error messages:\n"; + print STDERR "==================================================\n"; + print STDERR @out; + print STDERR "==================================================\n"; +} + +exit 0; diff --git a/gcc/testsuite/go.test/test/escape.go b/gcc/testsuite/go.test/test/escape.go new file mode 100644 index 0000000..d4d8447 --- /dev/null +++ b/gcc/testsuite/go.test/test/escape.go @@ -0,0 +1,207 @@ +// $G $D/$F.go && $L $F.$A && ./$A.out + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package main + +// check for correct heap-moving of escaped variables. +// it is hard to check for the allocations, but it is easy +// to check that if you call the function twice at the +// same stack level, the pointers returned should be +// different. + +var bad = false + +var allptr = make([]*int, 0, 100) + +func noalias(p, q *int, s string) { + n := len(allptr) + *p = -(n+1) + *q = -(n+2) + allptr = allptr[0:n+2] + allptr[n] = p + allptr[n+1] = q + n += 2 + for i := 0; i < n; i++ { + if allptr[i] != nil && *allptr[i] != -(i+1) { + println("aliased pointers", -(i+1), *allptr[i], "after", s) + allptr[i] = nil + bad = true + } + } +} + +func val(p, q *int, v int, s string) { + if *p != v { + println("wrong value want", v, "got", *p, "after", s) + bad = true + } + if *q != v+1 { + println("wrong value want", v+1, "got", *q, "after", s) + bad = true + } +} + +func chk(p, q *int, v int, s string) { + val(p, q, v, s) + noalias(p, q, s) +} + +func chkalias(p, q *int, v int, s string) { + if p != q { + println("want aliased pointers but got different after", s) + } + if *q != v+1 { + println("wrong value want", v+1, "got", *q, "after", s) + } +} + +func i_escapes(x int) *int { + var i int + i = x + return &i +} + +func j_escapes(x int) *int { + var j int = x + j = x + return &j +} + +func k_escapes(x int) *int { + k := x + return &k +} + +func in_escapes(x int) *int { + return &x +} + +func send(c chan int, x int) { + c <- x +} + +func select_escapes(x int) *int { + c := make(chan int) + go send(c, x) + select { + case req := <-c: + return &req + } + return nil +} + +func select_escapes1(x int, y int) (*int, *int) { + c := make(chan int) + var a [2]int + var p [2]*int + a[0] = x + a[1] = y + for i := 0; i < 2; i++ { + go send(c, a[i]) + select { + case req := <-c: + p[i] = &req + } + } + return p[0], p[1] +} + +func range_escapes(x int) *int { + var a [1]int + a[0] = x + for _, v := range a { + return &v + } + return nil +} + +// *is* aliased +func range_escapes2(x, y int) (*int, *int) { + var a [2]int + var p [2]*int + a[0] = x + a[1] = y + for k, v := range a { + p[k] = &v + } + return p[0], p[1] +} + +// *is* aliased +func for_escapes2(x int, y int) (*int, *int) { + var p [2]*int + n := 0 + for i := x; n < 2; i = y { + p[n] = &i + n++ + } + return p[0], p[1] +} + +func out_escapes(i int) (x int, p *int) { + x = i + p = &x // ERROR "address of out parameter" + return +} + +func out_escapes_2(i int) (x int, p *int) { + x = i + return x, &x // ERROR "address of out parameter" +} + +func defer1(i int) (x int) { + c := make(chan int) + go func() { x = i; c <- 1 }() + <-c + return +} + +func main() { + p, q := i_escapes(1), i_escapes(2) + chk(p, q, 1, "i_escapes") + + p, q = j_escapes(3), j_escapes(4) + chk(p, q, 3, "j_escapes") + + p, q = k_escapes(5), k_escapes(6) + chk(p, q, 5, "k_escapes") + + p, q = in_escapes(7), in_escapes(8) + chk(p, q, 7, "in_escapes") + + p, q = select_escapes(9), select_escapes(10) + chk(p, q, 9, "select_escapes") + + p, q = select_escapes1(11, 12) + chk(p, q, 11, "select_escapes1") + + p, q = range_escapes(13), range_escapes(14) + chk(p, q, 13, "range_escapes") + + p, q = range_escapes2(101, 102) + chkalias(p, q, 101, "range_escapes2") + + p, q = for_escapes2(103, 104) + chkalias(p, q, 103, "for_escapes2") + + _, p = out_escapes(15) + _, q = out_escapes(16) + chk(p, q, 15, "out_escapes") + + _, p = out_escapes_2(17) + _, q = out_escapes_2(18) + chk(p, q, 17, "out_escapes_2") + + x := defer1(20) + if x != 20 { + println("defer failed", x) + bad = true + } + + if bad { + panic("BUG: no escape") + } +} diff --git a/gcc/testsuite/go.test/test/fixedbugs/bug000.go b/gcc/testsuite/go.test/test/fixedbugs/bug000.go new file mode 100644 index 0000000..ccb24e8 --- /dev/null +++ b/gcc/testsuite/go.test/test/fixedbugs/bug000.go @@ -0,0 +1,20 @@ +// $G $D/$F.go && $L $F.$A && ./$A.out + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package main + +func main() { + var x int; + switch x { + case 0: + {} + case 1: + x = 0; + } +} +/* +bug0.go:8: case statement out of place +*/ diff --git a/gcc/testsuite/go.test/test/fixedbugs/bug001.go b/gcc/testsuite/go.test/test/fixedbugs/bug001.go new file mode 100644 index 0000000..2df8791 --- /dev/null +++ b/gcc/testsuite/go.test/test/fixedbugs/bug001.go @@ -0,0 +1,11 @@ +// $G $D/$F.go && $L $F.$A && ./$A.out + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package main + +func main() { + if {} // compiles; should be an error (must be an expression) +} diff --git a/gcc/testsuite/go.test/test/fixedbugs/bug002.go b/gcc/testsuite/go.test/test/fixedbugs/bug002.go new file mode 100644 index 0000000..2308419 --- /dev/null +++ b/gcc/testsuite/go.test/test/fixedbugs/bug002.go @@ -0,0 +1,11 @@ +// $G $D/$F.go && $L $F.$A && ./$A.out + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package main + +func main() { + if ; false {} // compiles; should be an error (should be simplevardecl before ;) +} diff --git a/gcc/testsuite/go.test/test/fixedbugs/bug003.go b/gcc/testsuite/go.test/test/fixedbugs/bug003.go new file mode 100644 index 0000000..e45975b --- /dev/null +++ b/gcc/testsuite/go.test/test/fixedbugs/bug003.go @@ -0,0 +1,14 @@ +// $G $D/$F.go && $L $F.$A && ./$A.out + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package main + +func main() { + switch ; { case true: return; default: return } +} +/* +bug003.go:6: fatal error: walkswitch: not case EMPTY +*/ diff --git a/gcc/testsuite/go.test/test/fixedbugs/bug004.go b/gcc/testsuite/go.test/test/fixedbugs/bug004.go new file mode 100644 index 0000000..20f467a --- /dev/null +++ b/gcc/testsuite/go.test/test/fixedbugs/bug004.go @@ -0,0 +1,11 @@ +// $G $D/$F.go && $L $F.$A && ./$A.out + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package main + +func main() { + switch ; { case false: return; } // compiles; should be an error (should be simplevardecl before ;) +} diff --git a/gcc/testsuite/go.test/test/fixedbugs/bug005.go b/gcc/testsuite/go.test/test/fixedbugs/bug005.go new file mode 100644 index 0000000..3bd2fe8 --- /dev/null +++ b/gcc/testsuite/go.test/test/fixedbugs/bug005.go @@ -0,0 +1,18 @@ +// $G $D/$F.go && $L $F.$A && ./$A.out + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package main + +func main() { + Foo: { + return; + } + goto Foo; +} +/* +bug5.go:4: Foo undefined +bug5.go:4: fatal error: walktype: switch 1 unknown op GOTO l(4) +*/ diff --git a/gcc/testsuite/go.test/test/fixedbugs/bug006.go b/gcc/testsuite/go.test/test/fixedbugs/bug006.go new file mode 100644 index 0000000..e7694f9 --- /dev/null +++ b/gcc/testsuite/go.test/test/fixedbugs/bug006.go @@ -0,0 +1,19 @@ +// $G $D/$F.go && $L $F.$A && ./$A.out + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package main + +import "os" + +const ( + x float = iota; + g float = 4.5 * iota; +); + +func main() { + if g == 0.0 { print("zero\n");} + if g != 4.5 { print(" fail\n"); os.Exit(1); } +} diff --git a/gcc/testsuite/go.test/test/fixedbugs/bug007.go b/gcc/testsuite/go.test/test/fixedbugs/bug007.go new file mode 100644 index 0000000..bd970de --- /dev/null +++ b/gcc/testsuite/go.test/test/fixedbugs/bug007.go @@ -0,0 +1,22 @@ +// $G $D/$F.go && $L $F.$A && ./$A.out + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package main + +type ( + Point struct { x, y float }; + Polar Point +) + +func main() { +} + +/* +bug7.go:5: addtyp: renaming Point to Polar +main.go.c:14: error: redefinition of typedef ‘_T_2’ +main.go.c:13: error: previous declaration of ‘_T_2’ was here +main.go.c:16: error: redefinition of ‘struct _T_2’ +*/ diff --git a/gcc/testsuite/go.test/test/fixedbugs/bug008.go b/gcc/testsuite/go.test/test/fixedbugs/bug008.go new file mode 100644 index 0000000..2baead1 --- /dev/null +++ b/gcc/testsuite/go.test/test/fixedbugs/bug008.go @@ -0,0 +1,20 @@ +// $G $D/$F.go && $L $F.$A && ./$A.out + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package main + +func main() { + i5 := 5; + + switch { // compiler crash fixable with 'switch true' + case i5 < 5: dummy := 0; _ = dummy; + case i5 == 5: dummy := 0; _ = dummy; + case i5 > 5: dummy := 0; _ = dummy; + } +} +/* +Segmentation fault +*/ diff --git a/gcc/testsuite/go.test/test/fixedbugs/bug009.go b/gcc/testsuite/go.test/test/fixedbugs/bug009.go new file mode 100644 index 0000000..ef8263b --- /dev/null +++ b/gcc/testsuite/go.test/test/fixedbugs/bug009.go @@ -0,0 +1,16 @@ +// $G $D/$F.go && $L $F.$A && ./$A.out + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package main + + +func main() { + fired := false; _ = fired; +} +/* +bug9.go:5: defaultlit: unknown literal: LITERAL-B0 a(1) +bug9.go:5: fatal error: addvar: n=NAME-fired G0 a(1) l(5) t=<N> nil +*/ diff --git a/gcc/testsuite/go.test/test/fixedbugs/bug010.go b/gcc/testsuite/go.test/test/fixedbugs/bug010.go new file mode 100644 index 0000000..e71c4d7 --- /dev/null +++ b/gcc/testsuite/go.test/test/fixedbugs/bug010.go @@ -0,0 +1,24 @@ +// $G $D/$F.go && $L $F.$A && ./$A.out + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package main + + +func f(i int, f float) { + i = 8; + f = 8.0; + return; +} + +func main() { + f(3, float(5)) +} + +/* +bug10.go:5: i undefined +bug10.go:6: illegal conversion of constant to 020({},<_o001>{<i><int32>INT32;<f><float32>FLOAT32;},{}) +bug10.go:7: error in shape across assignment +*/ diff --git a/gcc/testsuite/go.test/test/fixedbugs/bug011.go b/gcc/testsuite/go.test/test/fixedbugs/bug011.go new file mode 100644 index 0000000..551adb7 --- /dev/null +++ b/gcc/testsuite/go.test/test/fixedbugs/bug011.go @@ -0,0 +1,27 @@ +// $G $D/$F.go && $L $F.$A && ./$A.out + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package main + + +type T struct { + x, y int; +} + +func (t *T) m(a int, b float) int { + return (t.x+a) * (t.y+int(b)); +} + +func main() { + var t *T = new(T); + t.x = 1; + t.y = 2; + r10 := t.m(1, 3.0); + _ = r10; +} +/* +bug11.go:16: fatal error: walktype: switch 1 unknown op CALLMETH l(16) <int32>INT32 +*/ diff --git a/gcc/testsuite/go.test/test/fixedbugs/bug012.go b/gcc/testsuite/go.test/test/fixedbugs/bug012.go new file mode 100644 index 0000000..ffd5b55 --- /dev/null +++ b/gcc/testsuite/go.test/test/fixedbugs/bug012.go @@ -0,0 +1,26 @@ +// $G $D/$F.go && $L $F.$A && ./$A.out + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package main + + +func main() { + var u30 uint64 = 0; + var u31 uint64 = 1; + _, _ = u30, u31; + var u32 uint64 = 18446744073709551615; + var u33 uint64 = +18446744073709551615; + if u32 != (1<<64)-1 { panic("u32\n"); } + if u33 != (1<<64)-1 { panic("u33\n"); } + var i34 int64 = ^0; // note: 2's complement means ^0 == -1 + if i34 != -1 { panic("i34") } +} +/* +bug12.go:5: overflow converting constant to <uint64>UINT64 +bug12.go:6: overflow converting constant to <uint64>UINT64 +bug12.go:7: overflow converting constant to <uint64>UINT64 +bug12.go:8: overflow converting constant to <uint64>UINT64 +*/ diff --git a/gcc/testsuite/go.test/test/fixedbugs/bug013.go b/gcc/testsuite/go.test/test/fixedbugs/bug013.go new file mode 100644 index 0000000..4b10677 --- /dev/null +++ b/gcc/testsuite/go.test/test/fixedbugs/bug013.go @@ -0,0 +1,20 @@ +// $G $D/$F.go && $L $F.$A && ./$A.out + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package main + +func main() { + var cu0 uint16 = '\u1234'; + var cU1 uint32 = '\U00101234'; + _, _ = cu0, cU1; +} +/* +bug13.go:4: missing ' +bug13.go:4: syntax error +bug13.go:5: newline in string +bug13.go:5: missing ' +bug13.go:6: newline in string +*/ diff --git a/gcc/testsuite/go.test/test/fixedbugs/bug014.go b/gcc/testsuite/go.test/test/fixedbugs/bug014.go new file mode 100644 index 0000000..dac2ce5 --- /dev/null +++ b/gcc/testsuite/go.test/test/fixedbugs/bug014.go @@ -0,0 +1,14 @@ +// errchk $G $D/$F.go + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package main + +func main() { + var c00 uint8 = '\0'; // ERROR "oct|char" + var c01 uint8 = '\07'; // ERROR "oct|char" + var cx0 uint8 = '\x0'; // ERROR "hex|char" + var cx1 uint8 = '\x'; // ERROR "hex|char" +} diff --git a/gcc/testsuite/go.test/test/fixedbugs/bug015.go b/gcc/testsuite/go.test/test/fixedbugs/bug015.go new file mode 100644 index 0000000..9178f62 --- /dev/null +++ b/gcc/testsuite/go.test/test/fixedbugs/bug015.go @@ -0,0 +1,13 @@ +// errchk $G $D/$F.go + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package main + +func main() { + var i33 int64; + if i33 == (1<<64) -1 { // ERROR "overflow" + } +} diff --git a/gcc/testsuite/go.test/test/fixedbugs/bug016.go b/gcc/testsuite/go.test/test/fixedbugs/bug016.go new file mode 100644 index 0000000..461bcf8 --- /dev/null +++ b/gcc/testsuite/go.test/test/fixedbugs/bug016.go @@ -0,0 +1,18 @@ +// ! $G $D/$F.go + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package main + +func main() { + var i int = 100; + i = i << -3; // BUG: should not compile (negative shift) +} + +/* +ixedbugs/bug016.go:7: overflow converting constant to <uint32>UINT32 +fixedbugs/bug016.go:7: illegal types for operand: AS + (<int32>INT32) +*/ diff --git a/gcc/testsuite/go.test/test/fixedbugs/bug017.go b/gcc/testsuite/go.test/test/fixedbugs/bug017.go new file mode 100644 index 0000000..fdc986d --- /dev/null +++ b/gcc/testsuite/go.test/test/fixedbugs/bug017.go @@ -0,0 +1,25 @@ +// $G $D/$F.go && $L $F.$A && ./$A.out + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package main + +func main() { + var s2 string = "\a\b\f\n\r\t\v"; // \r is miscompiled + _ = s2; +} +/* +main.go.c: In function ‘main_main’: +main.go.c:20: error: missing terminating " character +main.go.c:21: error: missing terminating " character +main.go.c:24: error: ‘def’ undeclared (first use in this function) +main.go.c:24: error: (Each undeclared identifier is reported only once +main.go.c:24: error: for each function it appears in.) +main.go.c:24: error: syntax error before ‘def’ +main.go.c:24: error: missing terminating " character +main.go.c:25: warning: excess elements in struct initializer +main.go.c:25: warning: (near initialization for ‘slit’) +main.go.c:36: error: syntax error at end of input +*/ diff --git a/gcc/testsuite/go.test/test/fixedbugs/bug020.go b/gcc/testsuite/go.test/test/fixedbugs/bug020.go new file mode 100644 index 0000000..896bf57 --- /dev/null +++ b/gcc/testsuite/go.test/test/fixedbugs/bug020.go @@ -0,0 +1,22 @@ +// $G $D/$F.go || echo BUG should compile + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package main + +var digits string; + +func putint(buf []byte, i, base, val int, digits string) { + buf[i] = digits[val]; +} + +func main() { +} + +/* +uetli:~/Source/go1/test gri$ 6g bugs/bug020.go +bugs/bug020.go:7: type of a structure field cannot be an open array +bugs/bug020.go:7: fatal error: width of a dynamic array +*/ diff --git a/gcc/testsuite/go.test/test/fixedbugs/bug021.go b/gcc/testsuite/go.test/test/fixedbugs/bug021.go new file mode 100644 index 0000000..201fa5f --- /dev/null +++ b/gcc/testsuite/go.test/test/fixedbugs/bug021.go @@ -0,0 +1,13 @@ +// $G $D/$F.go && $L $F.$A && ./$A.out + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package main + +func main() { + s1 := "hi"; + s2 := "ho"; + s1 += s2; +} diff --git a/gcc/testsuite/go.test/test/fixedbugs/bug022.go b/gcc/testsuite/go.test/test/fixedbugs/bug022.go new file mode 100644 index 0000000..f94a585 --- /dev/null +++ b/gcc/testsuite/go.test/test/fixedbugs/bug022.go @@ -0,0 +1,26 @@ +// errchk $G $D/$F.go + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package main + +func putint(digits *string) { + var i byte; + i = (*digits)[7]; // compiles + i = digits[7]; // ERROR "illegal|is not|invalid" + _ = i; +} + +func main() { + s := "asdfasdfasdfasdf"; + putint(&s); +} + +/* +bug022.go:8: illegal types for operand + (*<string>*STRING) INDEXPTR (<int32>INT32) +bug022.go:8: illegal types for operand + (<uint8>UINT8) AS +*/ diff --git a/gcc/testsuite/go.test/test/fixedbugs/bug023.go b/gcc/testsuite/go.test/test/fixedbugs/bug023.go new file mode 100644 index 0000000..b3d3d4a --- /dev/null +++ b/gcc/testsuite/go.test/test/fixedbugs/bug023.go @@ -0,0 +1,30 @@ +// $G $D/$F.go && $L $F.$A && ./$A.out + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package main + +type Type interface { + TypeName() string; +} + +type TInt struct { +} + +// TInt +func (i *TInt) TypeName() string { + return "int"; +} + + +func main() { + var t Type; + t = nil; + _ = t; +} + +/* +bug023.go:20: fatal error: naddr: const <Type>I{<TypeName>110(<_t117>{},<_o119>{},{});} +*/ diff --git a/gcc/testsuite/go.test/test/fixedbugs/bug024.go b/gcc/testsuite/go.test/test/fixedbugs/bug024.go new file mode 100644 index 0000000..c7b17b7 --- /dev/null +++ b/gcc/testsuite/go.test/test/fixedbugs/bug024.go @@ -0,0 +1,21 @@ +// $G $D/$F.go && $L $F.$A && ./$A.out + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package main + +func main() { + var i int; + i = '\''; + i = '\\'; + var s string; + s = "\""; + _, _ = i, s; +} +/* +bug.go:5: unknown escape sequence: ' +bug.go:6: unknown escape sequence: \ +bug.go:8: unknown escape sequence: " +*/ diff --git a/gcc/testsuite/go.test/test/fixedbugs/bug026.go b/gcc/testsuite/go.test/test/fixedbugs/bug026.go new file mode 100644 index 0000000..eacea37 --- /dev/null +++ b/gcc/testsuite/go.test/test/fixedbugs/bug026.go @@ -0,0 +1,26 @@ +// $G $D/$F.go && $L $F.$A && ./$A.out + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package main + +type Element interface { +} + +type Vector struct { +} + +func (v *Vector) Insert(i int, e Element) { +} + + +func main() { + type I struct { val int; }; // BUG: can't be local; works if global + v := new(Vector); + v.Insert(0, new(I)); +} +/* +check: main_sigs_I: not defined +*/ diff --git a/gcc/testsuite/go.test/test/fixedbugs/bug027.go b/gcc/testsuite/go.test/test/fixedbugs/bug027.go new file mode 100644 index 0000000..acc295d --- /dev/null +++ b/gcc/testsuite/go.test/test/fixedbugs/bug027.go @@ -0,0 +1,61 @@ +// $G $D/$F.go && $L $F.$A && ./$A.out + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package main + +type Element interface { +} + +type Vector struct { + nelem int; + elem []Element; +} + +func New() *Vector { + v := new(Vector); + v.nelem = 0; + v.elem = make([]Element, 10); + return v; +} + +func (v *Vector) At(i int) Element { + return v.elem[i]; +} + +func (v *Vector) Insert(e Element) { + v.elem[v.nelem] = e; + v.nelem++; +} + +func main() { + type I struct { val int; }; + i0 := new(I); i0.val = 0; + i1 := new(I); i1.val = 11; + i2 := new(I); i2.val = 222; + i3 := new(I); i3.val = 3333; + i4 := new(I); i4.val = 44444; + v := New(); + print("hi\n"); + v.Insert(i4); + v.Insert(i3); + v.Insert(i2); + v.Insert(i1); + v.Insert(i0); + for i := 0; i < v.nelem; i++ { + var x *I; + x = v.At(i).(*I); + print(i, " ", x.val, "\n"); // prints correct list + } + for i := 0; i < v.nelem; i++ { + print(i, " ", v.At(i).(*I).val, "\n"); + } +} +/* +bug027.go:50: illegal types for operand + (<Element>I{}) CONV (<I>{}) +bug027.go:50: illegal types for operand + (<Element>I{}) CONV (<I>{}) +*/ diff --git a/gcc/testsuite/go.test/test/fixedbugs/bug028.go b/gcc/testsuite/go.test/test/fixedbugs/bug028.go new file mode 100644 index 0000000..0488ad2 --- /dev/null +++ b/gcc/testsuite/go.test/test/fixedbugs/bug028.go @@ -0,0 +1,29 @@ +// $G $D/$F.go && $L $F.$A && ./$A.out + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package main + + +func Alloc(i int) int { + switch i { + default: + return 5; + case 1: + return 1; + case 10: + return 10; + } + return 0 +} + +func main() { + s := Alloc(7); + if s != 5 { panic("bad") } +} + +/* +bug028.go:7: unreachable statements in a switch +*/ diff --git a/gcc/testsuite/go.test/test/fixedbugs/bug030.go b/gcc/testsuite/go.test/test/fixedbugs/bug030.go new file mode 100644 index 0000000..7efde9b --- /dev/null +++ b/gcc/testsuite/go.test/test/fixedbugs/bug030.go @@ -0,0 +1,13 @@ +// errchk $G $D/$F.go + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package main + +func main() { + var x int; + x := 0; // ERROR "declar|:=" + _ = x; +} diff --git a/gcc/testsuite/go.test/test/fixedbugs/bug031.go b/gcc/testsuite/go.test/test/fixedbugs/bug031.go new file mode 100644 index 0000000..acb4741 --- /dev/null +++ b/gcc/testsuite/go.test/test/fixedbugs/bug031.go @@ -0,0 +1,29 @@ +// $G $D/$F.go && $L $F.$A && ./$A.out + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package main + +func main() { +prog := "xxxxxxxxxxxxxxxxxxxxxxxxxxxxxxx"+ +"xxxxxxxxxx"+ +"xxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxx"+ +"xxxxxxxxxxxxxxxxxxxxxx"+ +"xxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxx"+ +"xxxxxxxxxxxxxxxxxxxxxxxxxxxxxxx"+ +"xxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxx"+ +"xxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxx"+ +"xxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxx"+ +"xxxxxxxxxxxxxxxxxxxxxxxxxxxxxx"+ +"xxxxxxxxxxxxxxxxxxx"+ +"xxxxxx"+ +"xxxxxxxxxxxxxxxxxxxx"+ +"xxxxxxxx"+ +"xxxxxxxxxxxxxxxxxxxxxxxxxxxxx" +; +_ = prog; +} + +/* Segmentation fault */ diff --git a/gcc/testsuite/go.test/test/fixedbugs/bug035.go b/gcc/testsuite/go.test/test/fixedbugs/bug035.go new file mode 100644 index 0000000..461c060 --- /dev/null +++ b/gcc/testsuite/go.test/test/fixedbugs/bug035.go @@ -0,0 +1,13 @@ +// errchk $G $D/$F.go + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package main + +func f9(a int) (i int, f float) { + i := 9; // ERROR "redecl|no new" + f := float(9); // ERROR "redecl|no new" + return i, f; +} diff --git a/gcc/testsuite/go.test/test/fixedbugs/bug036.go b/gcc/testsuite/go.test/test/fixedbugs/bug036.go new file mode 100644 index 0000000..cc20516 --- /dev/null +++ b/gcc/testsuite/go.test/test/fixedbugs/bug036.go @@ -0,0 +1,13 @@ +// ! $G $D/$F.go >/dev/null +// # ignoring error messages... + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package main + +func main() { + s := float(0); + s := float(0); // BUG redeclaration +} diff --git a/gcc/testsuite/go.test/test/fixedbugs/bug037.go b/gcc/testsuite/go.test/test/fixedbugs/bug037.go new file mode 100644 index 0000000..ff7d287 --- /dev/null +++ b/gcc/testsuite/go.test/test/fixedbugs/bug037.go @@ -0,0 +1,11 @@ +// errchk $G $D/$F.go + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package main + +func main() { + s := vlong(0); // ERROR "undef" +} diff --git a/gcc/testsuite/go.test/test/fixedbugs/bug038.go b/gcc/testsuite/go.test/test/fixedbugs/bug038.go new file mode 100644 index 0000000..7585376 --- /dev/null +++ b/gcc/testsuite/go.test/test/fixedbugs/bug038.go @@ -0,0 +1,13 @@ +// ! $G $D/$F.go >/dev/null +// # ignoring error messages... + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package main + +func main() { + var z [3]byte; + z := new([3]byte); // BUG redeclaration +} diff --git a/gcc/testsuite/go.test/test/fixedbugs/bug039.go b/gcc/testsuite/go.test/test/fixedbugs/bug039.go new file mode 100644 index 0000000..7ac02ce --- /dev/null +++ b/gcc/testsuite/go.test/test/fixedbugs/bug039.go @@ -0,0 +1,11 @@ +// errchk $G $D/$F.go + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package main + +func f (x int) { // GCCGO_ERROR "previous" + var x int; // ERROR "redecl|redefinition" +} diff --git a/gcc/testsuite/go.test/test/fixedbugs/bug040.go b/gcc/testsuite/go.test/test/fixedbugs/bug040.go new file mode 100644 index 0000000..912316c --- /dev/null +++ b/gcc/testsuite/go.test/test/fixedbugs/bug040.go @@ -0,0 +1,11 @@ +// ! $G $D/$F.go >/dev/null +// # ignoring error messages... + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package main + +func main (x, x int) { // BUG redeclaration error +} diff --git a/gcc/testsuite/go.test/test/fixedbugs/bug045.go b/gcc/testsuite/go.test/test/fixedbugs/bug045.go new file mode 100644 index 0000000..94888c4 --- /dev/null +++ b/gcc/testsuite/go.test/test/fixedbugs/bug045.go @@ -0,0 +1,21 @@ +// $G $D/$F.go && $L $F.$A && ./$A.out + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package main + +type T struct { + i int +} + +func main() { + var ta []*T; + + ta = new([1]*T)[0:]; + ta[0] = nil; +} +/* +bug045.go:13: fatal error: goc: exit 1 +*/ diff --git a/gcc/testsuite/go.test/test/fixedbugs/bug046.go b/gcc/testsuite/go.test/test/fixedbugs/bug046.go new file mode 100644 index 0000000..8a9b797 --- /dev/null +++ b/gcc/testsuite/go.test/test/fixedbugs/bug046.go @@ -0,0 +1,15 @@ +// errchk $G $D/$F.go + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package main + +type T *struct {} + +func (x T) M () {} // ERROR "pointer|receiver" + +/* +bug046.go:7: illegal <this> pointer +*/ diff --git a/gcc/testsuite/go.test/test/fixedbugs/bug047.go b/gcc/testsuite/go.test/test/fixedbugs/bug047.go new file mode 100644 index 0000000..f3749e7 --- /dev/null +++ b/gcc/testsuite/go.test/test/fixedbugs/bug047.go @@ -0,0 +1,23 @@ +// $G $D/$F.go && $L $F.$A && ./$A.out + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package main + +func main() { + + type T struct { + s string; + f float; + }; + var s string = "hello"; + var f float = 0.2; + t := T{s, f}; + + type M map[int] int; + m0 := M{7:8}; + + _, _ = t, m0; +} diff --git a/gcc/testsuite/go.test/test/fixedbugs/bug048.go b/gcc/testsuite/go.test/test/fixedbugs/bug048.go new file mode 100644 index 0000000..b9fee78 --- /dev/null +++ b/gcc/testsuite/go.test/test/fixedbugs/bug048.go @@ -0,0 +1,13 @@ +// $G $D/$F.go && $L $F.$A && ./$A.out + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package main + +func main() { + type M map[int] int; + m1 := M{7 : 8}; + _ = m1; +} diff --git a/gcc/testsuite/go.test/test/fixedbugs/bug049.go b/gcc/testsuite/go.test/test/fixedbugs/bug049.go new file mode 100644 index 0000000..8fd67cc --- /dev/null +++ b/gcc/testsuite/go.test/test/fixedbugs/bug049.go @@ -0,0 +1,19 @@ +// errchk $G $D/$F.go + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package main + +func atom(s string) { + if s == nil { // ERROR "nil|incompatible" + return; + } +} + +func main() {} + +/* +bug047.go:4: fatal error: stringpool: not string +*/ diff --git a/gcc/testsuite/go.test/test/fixedbugs/bug050.go b/gcc/testsuite/go.test/test/fixedbugs/bug050.go new file mode 100644 index 0000000..585c446 --- /dev/null +++ b/gcc/testsuite/go.test/test/fixedbugs/bug050.go @@ -0,0 +1,8 @@ +// errchk $G $D/$F.go + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +func main() { // ERROR "package" +} diff --git a/gcc/testsuite/go.test/test/fixedbugs/bug051.go b/gcc/testsuite/go.test/test/fixedbugs/bug051.go new file mode 100644 index 0000000..dd16623 --- /dev/null +++ b/gcc/testsuite/go.test/test/fixedbugs/bug051.go @@ -0,0 +1,15 @@ +// errchk $G $D/$F.go + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package main + +func f() int { + return 0; +} + +func main() { + const n = f(); // ERROR "const" +} diff --git a/gcc/testsuite/go.test/test/fixedbugs/bug052.go b/gcc/testsuite/go.test/test/fixedbugs/bug052.go new file mode 100644 index 0000000..d2c1b50 --- /dev/null +++ b/gcc/testsuite/go.test/test/fixedbugs/bug052.go @@ -0,0 +1,20 @@ +// $G $D/$F.go && $L $F.$A && ./$A.out + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package main + +func main() { + c := 10; + d := 7; + var x [10]int; + i := 0; + /* this works: + q := c/d; + x[i] = q; + */ + // this doesn't: + x[i] = c/d; // BUG segmentation fault +} diff --git a/gcc/testsuite/go.test/test/fixedbugs/bug053.go b/gcc/testsuite/go.test/test/fixedbugs/bug053.go new file mode 100644 index 0000000..c981403 --- /dev/null +++ b/gcc/testsuite/go.test/test/fixedbugs/bug053.go @@ -0,0 +1,12 @@ +// $G $D/$F.go && $L $F.$A && ./$A.out + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package main + +func main() { + var len int; // len should not be a keyword - this doesn't compile + _ = len; +} diff --git a/gcc/testsuite/go.test/test/fixedbugs/bug054.go b/gcc/testsuite/go.test/test/fixedbugs/bug054.go new file mode 100644 index 0000000..c8a2272 --- /dev/null +++ b/gcc/testsuite/go.test/test/fixedbugs/bug054.go @@ -0,0 +1,41 @@ +// $G $D/$F.go && $L $F.$A && ./$A.out + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package main + +type Element interface { +} + +type Vector struct { + elem []Element; +} + +func (v *Vector) At(i int) Element { + return v.elem[i]; +} + +type TStruct struct { + name string; + fields *Vector; +} + +func (s *TStruct) field(i int) *TStruct { + return s.fields.At(i).(*TStruct); +} + +func main() { + v := new(Vector); + v.elem = make([]Element, 10); + t := new(TStruct); + t.name = "hi"; + v.elem[0] = t; + s := new(TStruct); + s.name = "foo"; + s.fields = v; + if s.field(0).name != "hi" { + panic("bad name") + } +} diff --git a/gcc/testsuite/go.test/test/fixedbugs/bug055.go b/gcc/testsuite/go.test/test/fixedbugs/bug055.go new file mode 100644 index 0000000..0326d82 --- /dev/null +++ b/gcc/testsuite/go.test/test/fixedbugs/bug055.go @@ -0,0 +1,22 @@ +// $G $D/$F.go && $L $F.$A && ./$A.out + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package main + +func main() { + var i int; + var j int; + if true {} + { return } + i = 0; + if true {} else i++; + type s struct {}; + i = 0; + type s2 int; + var k = func (a int) int { return a+1 }(3); + _, _ = j, k; +ro: ; +} diff --git a/gcc/testsuite/go.test/test/fixedbugs/bug056.go b/gcc/testsuite/go.test/test/fixedbugs/bug056.go new file mode 100644 index 0000000..050a4a5 --- /dev/null +++ b/gcc/testsuite/go.test/test/fixedbugs/bug056.go @@ -0,0 +1,22 @@ +// $G $D/$F.go && $L $F.$A && ./$A.out + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package main + +func frexp() (a int, b float64) { + return 1, 2.0 +} + +func main() { + a, b := frexp(); + _, _ = a, b; +} + +/* +bug056.go:8: illegal types for operand: AS + (<int32>INT32) + (<int32>INT32) +*/ diff --git a/gcc/testsuite/go.test/test/fixedbugs/bug057.go b/gcc/testsuite/go.test/test/fixedbugs/bug057.go new file mode 100644 index 0000000..d5d0f1d --- /dev/null +++ b/gcc/testsuite/go.test/test/fixedbugs/bug057.go @@ -0,0 +1,25 @@ +// $G $D/$F.go + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package main + +type T struct { + s string; +} + + +func main() { + s := ""; + l1 := len(s); + var t T; + l2 := len(t.s); // BUG: cannot take len() of a string field + _, _ = l1, l2; +} + +/* +uetli:/home/gri/go/test/bugs gri$ 6g bug057.go +bug057.go:14: syntax error +*/ diff --git a/gcc/testsuite/go.test/test/fixedbugs/bug058.go b/gcc/testsuite/go.test/test/fixedbugs/bug058.go new file mode 100644 index 0000000..e2b4a24 --- /dev/null +++ b/gcc/testsuite/go.test/test/fixedbugs/bug058.go @@ -0,0 +1,23 @@ +// $G $D/$F.go && $L $F.$A && ./$A.out + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package main + +type Box struct {}; +var m map[string] *Box; + +func main() { + m := make(map[string] *Box); + s := "foo"; + var x *Box = nil; + m[s] = x; +} + +/* +bug058.go:9: illegal types for operand: INDEX + (MAP[<string>*STRING]*<Box>{}) + (<string>*STRING) +*/ diff --git a/gcc/testsuite/go.test/test/fixedbugs/bug059.go b/gcc/testsuite/go.test/test/fixedbugs/bug059.go new file mode 100644 index 0000000..6a77367 --- /dev/null +++ b/gcc/testsuite/go.test/test/fixedbugs/bug059.go @@ -0,0 +1,36 @@ +// $G $D/$F.go && $L $F.$A && ./$A.out + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package main + +import "os" + +func P(a []string) string { + s := "{"; + for i := 0; i < 2; i++ { + if i > 0 { + s += "," + } + s += `"` + a[i] + `"`; + } + s +="}"; + return s; +} + +func main() { + m := make(map[string] []string); + as := new([2]string); + as[0] = "0"; + as[1] = "1"; + m["0"] = as[0:]; + + a := m["0"]; + a[0] = "x"; + m["0"][0] = "deleted"; + if m["0"][0] != "deleted" { + os.Exit(1); + } +} diff --git a/gcc/testsuite/go.test/test/fixedbugs/bug060.go b/gcc/testsuite/go.test/test/fixedbugs/bug060.go new file mode 100644 index 0000000..82778b8 --- /dev/null +++ b/gcc/testsuite/go.test/test/fixedbugs/bug060.go @@ -0,0 +1,19 @@ +// $G $D/$F.go && $L $F.$A && ./$A.out + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package main + +import "os" + +func main() { + m := make(map[int]int); + m[0] = 0; + m[0]++; + if m[0] != 1 { + print("map does not increment\n"); + os.Exit(1) + } +} diff --git a/gcc/testsuite/go.test/test/fixedbugs/bug061.go b/gcc/testsuite/go.test/test/fixedbugs/bug061.go new file mode 100644 index 0000000..aedcf70 --- /dev/null +++ b/gcc/testsuite/go.test/test/fixedbugs/bug061.go @@ -0,0 +1,18 @@ +// $G $D/$F.go && $L $F.$A && ./$A.out + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package main + +func main() { + var s string; + s = "0000000000000000000000000000000000000000000000000000000000"[0:7]; + _ = s; +} + +/* +uetli:~/Source/go1/test/bugs gri$ 6g bug061.go +Bus error +*/ diff --git a/gcc/testsuite/go.test/test/fixedbugs/bug062.go b/gcc/testsuite/go.test/test/fixedbugs/bug062.go new file mode 100644 index 0000000..8ee5c84 --- /dev/null +++ b/gcc/testsuite/go.test/test/fixedbugs/bug062.go @@ -0,0 +1,11 @@ +// errchk $G $D/$F.go + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package main + +func main() { + var s string = nil; // ERROR "illegal|invalid|incompatible|cannot" +} diff --git a/gcc/testsuite/go.test/test/fixedbugs/bug063.go b/gcc/testsuite/go.test/test/fixedbugs/bug063.go new file mode 100644 index 0000000..543e0b7 --- /dev/null +++ b/gcc/testsuite/go.test/test/fixedbugs/bug063.go @@ -0,0 +1,8 @@ +// $G $D/$F.go + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package main +const c = 0 ^ 0 diff --git a/gcc/testsuite/go.test/test/fixedbugs/bug064.go b/gcc/testsuite/go.test/test/fixedbugs/bug064.go new file mode 100644 index 0000000..92d2154 --- /dev/null +++ b/gcc/testsuite/go.test/test/fixedbugs/bug064.go @@ -0,0 +1,22 @@ +// $G $D/$F.go || echo BUG: compilation should succeed + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package main + +func +swap(x, y int) (u, v int) { + return y, x +} + +func +main() { + a := 1; + b := 2; + a, b = swap(swap(a, b)); + if a != 2 || b != 1 { + panic("bad swap"); + } +} diff --git a/gcc/testsuite/go.test/test/fixedbugs/bug065.go b/gcc/testsuite/go.test/test/fixedbugs/bug065.go new file mode 100644 index 0000000..a5d1bed --- /dev/null +++ b/gcc/testsuite/go.test/test/fixedbugs/bug065.go @@ -0,0 +1,12 @@ +// $G $D/$F.go && $L $F.$A && ./$A.out + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package main + +func main() { + k, l, m := 0,0,0; + _, _, _ = k, l, m; +} diff --git a/gcc/testsuite/go.test/test/fixedbugs/bug066.go b/gcc/testsuite/go.test/test/fixedbugs/bug066.go new file mode 100644 index 0000000..2fa5048 --- /dev/null +++ b/gcc/testsuite/go.test/test/fixedbugs/bug066.go @@ -0,0 +1,26 @@ +// $G $D/$F.go + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package main + +type Scope struct { + entries map[string] *Object; +} + + +type Type struct { + scope *Scope; +} + + +type Object struct { + typ *Type; +} + + +func Lookup(scope *Scope) *Object { + return scope.entries["foo"]; +} diff --git a/gcc/testsuite/go.test/test/fixedbugs/bug067.go b/gcc/testsuite/go.test/test/fixedbugs/bug067.go new file mode 100644 index 0000000..b812f01 --- /dev/null +++ b/gcc/testsuite/go.test/test/fixedbugs/bug067.go @@ -0,0 +1,15 @@ +// $G $D/$F.go && $L $F.$A && ./$A.out + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package main + +var c chan int + +func main() { + c = make(chan int); + go func() { print("ok\n"); c <- 0 } (); + <-c +} diff --git a/gcc/testsuite/go.test/test/fixedbugs/bug068.go b/gcc/testsuite/go.test/test/fixedbugs/bug068.go new file mode 100644 index 0000000..a7cf423 --- /dev/null +++ b/gcc/testsuite/go.test/test/fixedbugs/bug068.go @@ -0,0 +1,19 @@ +// errchk $G $D/$F.go + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +// RESOLUTION: This program is illegal. We should reject all unnecessary backslashes. + +package main + +const c = '\''; // this works +const s = "\'"; // ERROR "invalid|escape" + +/* +There is no reason why the escapes need to be different inside strings and chars. + +uetli:~/go/test/bugs gri$ 6g bug068.go +bug068.go:6: unknown escape sequence: ' +*/ diff --git a/gcc/testsuite/go.test/test/fixedbugs/bug069.go b/gcc/testsuite/go.test/test/fixedbugs/bug069.go new file mode 100644 index 0000000..d6796cd --- /dev/null +++ b/gcc/testsuite/go.test/test/fixedbugs/bug069.go @@ -0,0 +1,20 @@ +// $G $D/$F.go + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package main + +func main(){ + c := make(chan int); + ok := false; + var i int; + + i, ok = <-c; // works + _, _ = i, ok; + + ca := new([2]chan int); + i, ok = <-(ca[0]); // fails: c.go:11: bad shape across assignment - cr=1 cl=2 + _, _ = i, ok; +} diff --git a/gcc/testsuite/go.test/test/fixedbugs/bug070.go b/gcc/testsuite/go.test/test/fixedbugs/bug070.go new file mode 100644 index 0000000..6afdd46 --- /dev/null +++ b/gcc/testsuite/go.test/test/fixedbugs/bug070.go @@ -0,0 +1,25 @@ +// $G $D/$F.go && $L $F.$A && ./$A.out + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package main + +func main() { + var i, k int; + outer: + for k=0; k<2; k++ { + print("outer loop top k ", k, "\n"); + if k != 0 { panic("k not zero") } // inner loop breaks this one every time + for i=0; i<2; i++ { + if i != 0 { panic("i not zero") } // loop breaks every time + print("inner loop top i ", i, "\n"); + if true { + print("do break\n"); + break outer; + } + } + } + print("broke\n"); +} diff --git a/gcc/testsuite/go.test/test/fixedbugs/bug071.go b/gcc/testsuite/go.test/test/fixedbugs/bug071.go new file mode 100644 index 0000000..a5003ff --- /dev/null +++ b/gcc/testsuite/go.test/test/fixedbugs/bug071.go @@ -0,0 +1,23 @@ +// $G $D/$F.go || echo BUG: compiler crashes + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package main + +type rat struct { + den int; +} + +func (u *rat) pr() { +} + +type dch struct { + dat chan *rat; +} + +func dosplit(in *dch){ + dat := <-in.dat; + _ = dat; +} diff --git a/gcc/testsuite/go.test/test/fixedbugs/bug072.go b/gcc/testsuite/go.test/test/fixedbugs/bug072.go new file mode 100644 index 0000000..efe5626 --- /dev/null +++ b/gcc/testsuite/go.test/test/fixedbugs/bug072.go @@ -0,0 +1,11 @@ +// errchk $G $D/$F.go + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package main + +func main() { + s := string(bug); // ERROR "undef" +} diff --git a/gcc/testsuite/go.test/test/fixedbugs/bug073.go b/gcc/testsuite/go.test/test/fixedbugs/bug073.go new file mode 100644 index 0000000..99e7cd1 --- /dev/null +++ b/gcc/testsuite/go.test/test/fixedbugs/bug073.go @@ -0,0 +1,14 @@ +// errchk $G $D/$F.go + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package main + +func main() { + var s int = 0; + var x int = 0; + x = x << s; // ERROR "illegal|inval|shift" + x = x >> s; // ERROR "illegal|inval|shift" +} diff --git a/gcc/testsuite/go.test/test/fixedbugs/bug074.go b/gcc/testsuite/go.test/test/fixedbugs/bug074.go new file mode 100644 index 0000000..7b6d14e --- /dev/null +++ b/gcc/testsuite/go.test/test/fixedbugs/bug074.go @@ -0,0 +1,12 @@ +// errchk $G $D/$F.go + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package main + +func main() { + x := string{'a', 'b', '\n'}; // ERROR "composite" + print(x); +} diff --git a/gcc/testsuite/go.test/test/fixedbugs/bug075.go b/gcc/testsuite/go.test/test/fixedbugs/bug075.go new file mode 100644 index 0000000..7aed130 --- /dev/null +++ b/gcc/testsuite/go.test/test/fixedbugs/bug075.go @@ -0,0 +1,17 @@ +// $G $D/$F.go && $L $F.$A && ./$A.out + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package main + +type T struct { m map[int]int } +func main() { + t := new(T); + t.m = make(map[int]int); + var x int; + var ok bool; + x, ok = t.m[0]; //bug075.go:11: bad shape across assignment - cr=1 cl=2 + _, _ = x, ok; +} diff --git a/gcc/testsuite/go.test/test/fixedbugs/bug076.go b/gcc/testsuite/go.test/test/fixedbugs/bug076.go new file mode 100644 index 0000000..065cecc --- /dev/null +++ b/gcc/testsuite/go.test/test/fixedbugs/bug076.go @@ -0,0 +1,21 @@ +// $G $D/$F.go && $L $F.$A && ./$A.out + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package main + +func f() { +exit: ; +} + + +func main() { +exit: ; // this should be legal (labels not properly scoped?) +} + +/* +uetli:~/Source/go/test/bugs gri$ 6g bug076.go +bug076.go:11: label redeclared: exit +*/ diff --git a/gcc/testsuite/go.test/test/fixedbugs/bug077.go b/gcc/testsuite/go.test/test/fixedbugs/bug077.go new file mode 100644 index 0000000..08028ab --- /dev/null +++ b/gcc/testsuite/go.test/test/fixedbugs/bug077.go @@ -0,0 +1,13 @@ +// $G $D/$F.go || echo BUG: should compile + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package main + +func main() { + var exit int; +exit: + _ = exit; +} diff --git a/gcc/testsuite/go.test/test/fixedbugs/bug078.go b/gcc/testsuite/go.test/test/fixedbugs/bug078.go new file mode 100644 index 0000000..ddd3fae --- /dev/null +++ b/gcc/testsuite/go.test/test/fixedbugs/bug078.go @@ -0,0 +1,16 @@ +// $G $D/$F.go && $L $F.$A && ./$A.out + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package main + +func dosplit(wait chan int ){ + select { + case <-wait: + } +} + +func main() { +} diff --git a/gcc/testsuite/go.test/test/fixedbugs/bug080.go b/gcc/testsuite/go.test/test/fixedbugs/bug080.go new file mode 100644 index 0000000..a5003d2 --- /dev/null +++ b/gcc/testsuite/go.test/test/fixedbugs/bug080.go @@ -0,0 +1,25 @@ +// $G $D/$F.go || echo BUG: fails incorrectly + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package main + +func f1() (x int, y float) { + return; +} + +func f2 (x int, y float) { + return; +} + +func main() { + f2(f1()); // this should be a legal call +} + +/* +bug080.go:12: illegal types for operand: CALL + (<int32>INT32) + ({<x><int32>INT32;<y><float32>FLOAT32;}) +*/ diff --git a/gcc/testsuite/go.test/test/fixedbugs/bug081.go b/gcc/testsuite/go.test/test/fixedbugs/bug081.go new file mode 100644 index 0000000..ccb3699 --- /dev/null +++ b/gcc/testsuite/go.test/test/fixedbugs/bug081.go @@ -0,0 +1,14 @@ +// ! $G $D/$F.go + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package main + +const x x = 2; + +/* +bug081.go:3: first constant must evaluate an expression +Bus error +*/ diff --git a/gcc/testsuite/go.test/test/fixedbugs/bug082.go b/gcc/testsuite/go.test/test/fixedbugs/bug082.go new file mode 100644 index 0000000..8353ec2 --- /dev/null +++ b/gcc/testsuite/go.test/test/fixedbugs/bug082.go @@ -0,0 +1,21 @@ +// $G $D/$F.go && $L $F.$A && ./$A.out + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package main + +func main() { + x := 0 + x = ^x // unary ^ not yet implemented + if x != ^0 { + println(x, " ", ^0) + panic("fail") + } +} + +/* +uetli:~/Source/go/test/bugs gri$ 6g bug082.go +bug082.go:7: fatal error: optoas: no entry COM-<int32>INT32 +*/ diff --git a/gcc/testsuite/go.test/test/fixedbugs/bug083.dir/bug0.go b/gcc/testsuite/go.test/test/fixedbugs/bug083.dir/bug0.go new file mode 100644 index 0000000..e312256 --- /dev/null +++ b/gcc/testsuite/go.test/test/fixedbugs/bug083.dir/bug0.go @@ -0,0 +1,10 @@ +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package bug0 + +type t0 struct { +} + +var V0 t0 diff --git a/gcc/testsuite/go.test/test/fixedbugs/bug083.dir/bug1.go b/gcc/testsuite/go.test/test/fixedbugs/bug083.dir/bug1.go new file mode 100644 index 0000000..486fe76 --- /dev/null +++ b/gcc/testsuite/go.test/test/fixedbugs/bug083.dir/bug1.go @@ -0,0 +1,14 @@ +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package bug1 + +import "./bug0" + +// This is expected to fail--t0 is in package bug0 and should not be +// visible here in package bug1. The test for failure is in +// ../bug083.go. + +var v1 bug0.t0; // ERROR "bug0" + diff --git a/gcc/testsuite/go.test/test/fixedbugs/bug083.go b/gcc/testsuite/go.test/test/fixedbugs/bug083.go new file mode 100644 index 0000000..984969d --- /dev/null +++ b/gcc/testsuite/go.test/test/fixedbugs/bug083.go @@ -0,0 +1,7 @@ +// $G $D/$F.dir/bug0.go && errchk $G $D/$F.dir/bug1.go + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +ignored diff --git a/gcc/testsuite/go.test/test/fixedbugs/bug084.go b/gcc/testsuite/go.test/test/fixedbugs/bug084.go new file mode 100644 index 0000000..c1054e5 --- /dev/null +++ b/gcc/testsuite/go.test/test/fixedbugs/bug084.go @@ -0,0 +1,27 @@ +// $G $D/$F.go && $L $F.$A && ./$A.out + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package main + +type Service struct { + rpc [2]int +} + +func (s *Service) Serve(a int64) { + if a != 1234 { + print(a, " not 1234\n") + panic("fail") + } +} + +var arith Service + +func main() { + c := make(chan string) + a := new(Service) + go a.Serve(1234) + _ = c +} diff --git a/gcc/testsuite/go.test/test/fixedbugs/bug085.go b/gcc/testsuite/go.test/test/fixedbugs/bug085.go new file mode 100644 index 0000000..02be717 --- /dev/null +++ b/gcc/testsuite/go.test/test/fixedbugs/bug085.go @@ -0,0 +1,27 @@ +// errchk $G $D/$F.go + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package P + +var x int + +func foo() { + print(P.x); // ERROR "undefined" +} + +/* +uetli:~/Source/go1/test/bugs gri$ 6g bug085.go +bug085.go:6: P: undefined +Bus error +*/ + +/* expected scope hierarchy (outermost to innermost) + +universe scope (contains predeclared identifiers int, float, int32, len, etc.) +"solar" scope (just holds the package name P so it can be found but doesn't conflict) +global scope (the package global scope) +local scopes (function scopes) +*/ diff --git a/gcc/testsuite/go.test/test/fixedbugs/bug086.go b/gcc/testsuite/go.test/test/fixedbugs/bug086.go new file mode 100644 index 0000000..f96472f --- /dev/null +++ b/gcc/testsuite/go.test/test/fixedbugs/bug086.go @@ -0,0 +1,23 @@ +// errchk $G $D/$F.go + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package main + +func f() int { // ERROR "return|control" + if false { + return 0; + } + // we should not be able to return successfully w/o a return statement +} + +func main() { + print(f(), "\n"); +} + +/* +uetli:~/Source/go1/usr/gri/gosrc gri$ 6g bug.go && 6l bug.6 && 6.out +4882 +*/ diff --git a/gcc/testsuite/go.test/test/fixedbugs/bug087.go b/gcc/testsuite/go.test/test/fixedbugs/bug087.go new file mode 100644 index 0000000..4af8d97 --- /dev/null +++ b/gcc/testsuite/go.test/test/fixedbugs/bug087.go @@ -0,0 +1,20 @@ +// $G $D/$F.go || echo BUG: fails incorrectly + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package main + +const s string = "foo"; + +func main() { + i := len(s); // should be legal to take len() of a constant + _ = i; +} + +/* +uetli:~/Source/go1/test/bugs gri$ 6g bug087.go +bug087.go:6: illegal combination of literals LEN 9 +bug087.go:6: illegal combination of literals LEN 9 +*/ diff --git a/gcc/testsuite/go.test/test/fixedbugs/bug088.dir/bug0.go b/gcc/testsuite/go.test/test/fixedbugs/bug088.dir/bug0.go new file mode 100644 index 0000000..af9d991 --- /dev/null +++ b/gcc/testsuite/go.test/test/fixedbugs/bug088.dir/bug0.go @@ -0,0 +1,9 @@ +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package bug0 + +var V0 func() int; +var V1 func() (a int); +var V2 func() (a, b int); diff --git a/gcc/testsuite/go.test/test/fixedbugs/bug088.dir/bug1.go b/gcc/testsuite/go.test/test/fixedbugs/bug088.dir/bug1.go new file mode 100644 index 0000000..cadf0e6 --- /dev/null +++ b/gcc/testsuite/go.test/test/fixedbugs/bug088.dir/bug1.go @@ -0,0 +1,23 @@ +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package main + +import P "./bug0" + +func main() { + a0 := P.V0(); // works + a1 := P.V1(); // works + a2, b2 := P.V2(); // doesn't work + _, _, _, _ = a0, a1, a2, b2; +} + +/* +uetli:~/Source/go1/test/bugs/bug088.dir gri$ 6g bug0.go && 6g bug1.go +bug1.go:8: shape error across := +bug1.go:8: a2: undefined +bug1.go:8: b2: undefined +bug1.go:8: illegal types for operand: AS + (<(bug0)P.int32>INT32) +*/ diff --git a/gcc/testsuite/go.test/test/fixedbugs/bug088.go b/gcc/testsuite/go.test/test/fixedbugs/bug088.go new file mode 100644 index 0000000..9715a70 --- /dev/null +++ b/gcc/testsuite/go.test/test/fixedbugs/bug088.go @@ -0,0 +1,7 @@ +// $G $D/$F.dir/bug0.go && $G $D/$F.dir/bug1.go || echo BUG: fails incorrectly + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +ignored diff --git a/gcc/testsuite/go.test/test/fixedbugs/bug089.go b/gcc/testsuite/go.test/test/fixedbugs/bug089.go new file mode 100644 index 0000000..fd3dff3 --- /dev/null +++ b/gcc/testsuite/go.test/test/fixedbugs/bug089.go @@ -0,0 +1,21 @@ +// $G $D/$F.go + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package main + +type I1 interface {} +type I2 interface { pr() } + +func e() I1; + +var i1 I1; +var i2 I2; + +func +main() { + + i2 = e().(I2); // bug089.go:16: fatal error: agen_inter i2i +} diff --git a/gcc/testsuite/go.test/test/fixedbugs/bug090.go b/gcc/testsuite/go.test/test/fixedbugs/bug090.go new file mode 100644 index 0000000..8318ab9 --- /dev/null +++ b/gcc/testsuite/go.test/test/fixedbugs/bug090.go @@ -0,0 +1,46 @@ +// errchk $G $D/$F.go + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package main + +const ( + c3div2 = 3/2; + f3div2 = 3./2.; +) + +func assert(t bool, s string) { + if !t { + panic(s) + } +} + +func main() { + var i int; + var f float64; + + assert(c3div2 == 1, "3/2"); + assert(f3div2 == 1.5, "3/2"); + + i = c3div2; + assert(i == c3div2, "i == c3div2"); + + f = c3div2; + assert(f == c3div2, "f == c3div2"); + + f = f3div2; + assert(f == f3div2, "f == f3div2"); + + i = f3div2; // ERROR "truncate" + assert(i == c3div2, "i == c3div2 from f3div2"); + assert(i != f3div2, "i != f3div2"); // ERROR "truncate" + + const g float64 = 1.0; + i = g; // ERROR "convert|incompatible|cannot" + + const h float64 = 3.14; + i = h; // ERROR "convert|incompatible|cannot" + i = int(h); // ERROR "truncate" +} diff --git a/gcc/testsuite/go.test/test/fixedbugs/bug091.go b/gcc/testsuite/go.test/test/fixedbugs/bug091.go new file mode 100644 index 0000000..cfbb09c --- /dev/null +++ b/gcc/testsuite/go.test/test/fixedbugs/bug091.go @@ -0,0 +1,24 @@ +// errchk $G $D/$F.go + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package main + +func f1() { + exit: + print("hi\n"); +} + +func f2() { + const c = 1234; +} + +func f3() { + i := c; // ERROR "undef" +} + +func main() { + f3(); +} diff --git a/gcc/testsuite/go.test/test/fixedbugs/bug092.go b/gcc/testsuite/go.test/test/fixedbugs/bug092.go new file mode 100644 index 0000000..8f05c47 --- /dev/null +++ b/gcc/testsuite/go.test/test/fixedbugs/bug092.go @@ -0,0 +1,20 @@ +// $G $D/$F.go && $L $F.$A && ./$A.out + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package main + +func main() { + var a [1000] int64; // this alone works + var b [10000] int64; // this causes a runtime crash + _, _ = a, b; +} + +/* +uetli:~/Source/go1/test/bugs gri$ 6g bug092.go && 6l bug092.6 && 6.out +Illegal instruction + +gri: array size matters, possibly related to stack overflow check? +*/ diff --git a/gcc/testsuite/go.test/test/fixedbugs/bug093.go b/gcc/testsuite/go.test/test/fixedbugs/bug093.go new file mode 100644 index 0000000..f80eee0 --- /dev/null +++ b/gcc/testsuite/go.test/test/fixedbugs/bug093.go @@ -0,0 +1,64 @@ +// $G $D/$F.go && $L $F.$A && ./$A.out || echo BUG: fails incorrectly + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package main + +type S struct { +} + +func (p *S) M() { + print("M\n"); +} + +type I interface { + M(); +} + +func main() { + var p *S = nil; + var i I = p; // this should be possible even though p is nil: we still know the type + i.M(); // should be possible since we know the type, and don't ever use the receiver +} + + +/* +throw: ifaces2i: nil pointer +SIGSEGV: segmentation violation +Faulting address: 0x0 +pc: 0x1b7d + +0x1b7d?zi + throw(30409, 0, 0, ...) + throw(0x76c9, 0x0, 0x0, ...) +0x207f?zi + sys·ifaces2i(31440, 0, 31480, ...) + sys·ifaces2i(0x7ad0, 0x7af8, 0x0, ...) +0x136f?zi + main·main(1, 0, 1606416424, ...) + main·main(0x1, 0x7fff5fbff828, 0x0, ...) + +rax 0x1 +rbx 0x1 +rcx 0x33b5 +rdx 0x0 +rdi 0x1 +rsi 0x7684 +rbp 0x7684 +rsp 0xafb8 +r8 0x0 +r9 0x0 +r10 0x1002 +r11 0x206 +r12 0x0 +r13 0x0 +r14 0x7c48 +r15 0xa000 +rip 0x1b7d +rflags 0x10202 +cs 0x27 +fs 0x10 +gs 0x48 +*/ diff --git a/gcc/testsuite/go.test/test/fixedbugs/bug094.go b/gcc/testsuite/go.test/test/fixedbugs/bug094.go new file mode 100644 index 0000000..2953eb2 --- /dev/null +++ b/gcc/testsuite/go.test/test/fixedbugs/bug094.go @@ -0,0 +1,32 @@ +// $G $D/$F.go || echo BUG: fails incorrectly + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package main + +func f0() { + const x = 0; +} + + +func f1() { + x := 0; + _ = x; +} + + +func main() { + f0(); + f1(); +} + +/* +uetli:~/Source/go1/test/bugs gri$ 6g bug094.go && 6l bug094.6 && 6.out +bug094.go:11: left side of := must be a name +bad top +. LITERAL-I0 l(343) +bug094.go:11: fatal error: walktype: top=3 LITERAL +uetli:~/Source/go1/test/bugs gri$ +*/ diff --git a/gcc/testsuite/go.test/test/fixedbugs/bug096.go b/gcc/testsuite/go.test/test/fixedbugs/bug096.go new file mode 100644 index 0000000..9be687a --- /dev/null +++ b/gcc/testsuite/go.test/test/fixedbugs/bug096.go @@ -0,0 +1,26 @@ +// $G $D/$F.go || echo BUG should compile + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package main + +type A []int; + +func main() { + a := &A{0}; + b := &A{0, 1}; + _, _ = a, b; +} + +/* +uetli:~/Source/go1/test/bugs gri$ 6g bug096.go && 6l bug096.6 && 6.out +Trace/BPT trap +uetli:~/Source/go1/test/bugs gri$ +*/ + +/* +It appears that the first assignment changes the size of A from open +into a fixed array. +*/ diff --git a/gcc/testsuite/go.test/test/fixedbugs/bug097.go b/gcc/testsuite/go.test/test/fixedbugs/bug097.go new file mode 100644 index 0000000..ec3c215 --- /dev/null +++ b/gcc/testsuite/go.test/test/fixedbugs/bug097.go @@ -0,0 +1,53 @@ +// $G $D/$F.go && $L $F.$A && ./$A.out || echo BUG wrong result + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package main + +type A []int + +func main() { + var a [3]A + for i := 0; i < 3; i++ { + a[i] = A{i} + } + if a[0][0] != 0 { + panic("fail a[0][0]") + } + if a[1][0] != 1 { + panic("fail a[1][0]") + } + if a[2][0] != 2 { + panic("fail a[2][0]") + } +} + +/* +uetli:~/Source/go1/test/bugs gri$ 6g bug097.go && 6l bug097.6 && 6.out + +panic on line 342 PC=0x13c2 +0x13c2?zi + main·main(1, 0, 1606416416, ...) + main·main(0x1, 0x7fff5fbff820, 0x0, ...) +SIGTRAP: trace trap +Faulting address: 0x4558 +pc: 0x4558 + +0x4558?zi + sys·Breakpoint(40960, 0, 45128, ...) + sys·Breakpoint(0xa000, 0xb048, 0xa000, ...) +0x156a?zi + sys·panicl(342, 0, 0, ...) + sys·panicl(0x156, 0x300000000, 0xb024, ...) +0x13c2?zi + main·main(1, 0, 1606416416, ...) + main·main(0x1, 0x7fff5fbff820, 0x0, ...) +*/ + +/* An array composite literal needs to be created freshly every time. +It is a "construction" of an array after all. If I pass the address +of the array to some function, it may store it globally. Same applies +to struct literals. +*/ diff --git a/gcc/testsuite/go.test/test/fixedbugs/bug098.go b/gcc/testsuite/go.test/test/fixedbugs/bug098.go new file mode 100644 index 0000000..1dad4d5 --- /dev/null +++ b/gcc/testsuite/go.test/test/fixedbugs/bug098.go @@ -0,0 +1,23 @@ +// $G $D/$F.go || echo BUG should compile + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package main + +type A []int; +type M map[int] int; + +func main() { + var a *A = &A{0}; + var m *M = &M{0 : 0}; // should be legal to use & here for consistency with other composite constructors (prev. line) + _, _ = a, m; +} + +/* +uetli:~/Source/go1/test/bugs gri$ 6g bug098.go && 6l bug098.6 && 6.out +bug098.go:10: illegal types for operand: AS + (*MAP[<int32>INT32]<int32>INT32) + (**MAP[<int32>INT32]<int32>INT32) +*/ diff --git a/gcc/testsuite/go.test/test/fixedbugs/bug099.go b/gcc/testsuite/go.test/test/fixedbugs/bug099.go new file mode 100644 index 0000000..f76f0e8 --- /dev/null +++ b/gcc/testsuite/go.test/test/fixedbugs/bug099.go @@ -0,0 +1,37 @@ +// $G $D/$F.go && $L $F.$A && ./$A.out || echo BUG should not crash + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package main + +// Interface +type I interface { F() int } + +// Implements interface +type S struct { } +func (s *S) F() int { return 1 } + +// Allocates S but returns I +// Arg is unused but important: +// if you take it out (and the 0s below) +// then the bug goes away. +func NewI(i int) I { + return new(S) +} + +// Uses interface method. +func Use(x I) { + x.F() +} + +func main() { + i := NewI(0); + Use(i); + + // Again, without temporary + // Crashes because x.F is 0. + Use(NewI(0)); +} + diff --git a/gcc/testsuite/go.test/test/fixedbugs/bug101.go b/gcc/testsuite/go.test/test/fixedbugs/bug101.go new file mode 100644 index 0000000..92487de --- /dev/null +++ b/gcc/testsuite/go.test/test/fixedbugs/bug101.go @@ -0,0 +1,15 @@ +// $G $D/$F.go && $L $F.$A && ./$A.out + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package main + +var a = []int { 1, 2, 3 } + +func main() { + if len(a) != 3 { panic("array len") } + // print(a[0], " ", a[1], " ", a[2], "\n") + if a[0] != 1 || a[1] != 2 || a[2] != 3 { panic("array contents") } +} diff --git a/gcc/testsuite/go.test/test/fixedbugs/bug102.go b/gcc/testsuite/go.test/test/fixedbugs/bug102.go new file mode 100644 index 0000000..1d97eb4 --- /dev/null +++ b/gcc/testsuite/go.test/test/fixedbugs/bug102.go @@ -0,0 +1,26 @@ +// $G $D/$F.go && $L $F.$A && ./$A.out || echo BUG: should not crash + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package main + +func main() { + var b [0]byte + s := string(b[0:]) // out of bounds trap + if s != "" { + panic("bad convert") + } + var b1 = [5]byte{'h', 'e', 'l', 'l', 'o'} + if string(b1[0:]) != "hello" { + panic("bad convert 1") + } + var b2 = make([]byte, 5) + for i := 0; i < 5; i++ { + b2[i] = b1[i] + } + if string(b2) != "hello" { + panic("bad convert 2") + } +} diff --git a/gcc/testsuite/go.test/test/fixedbugs/bug103.go b/gcc/testsuite/go.test/test/fixedbugs/bug103.go new file mode 100644 index 0000000..b789be1 --- /dev/null +++ b/gcc/testsuite/go.test/test/fixedbugs/bug103.go @@ -0,0 +1,14 @@ +// errchk $G $D/$F.go + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package main + +func f() /* no return type */ {} + +func main() { + x := f(); // ERROR "mismatch|as value|no type" +} + diff --git a/gcc/testsuite/go.test/test/fixedbugs/bug104.go b/gcc/testsuite/go.test/test/fixedbugs/bug104.go new file mode 100644 index 0000000..dd4bb58 --- /dev/null +++ b/gcc/testsuite/go.test/test/fixedbugs/bug104.go @@ -0,0 +1,10 @@ +// errchk $G $D/$F.go + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package main +func f() string { + return 0 // ERROR "conversion|type" +} diff --git a/gcc/testsuite/go.test/test/fixedbugs/bug106.dir/bug0.go b/gcc/testsuite/go.test/test/fixedbugs/bug106.dir/bug0.go new file mode 100644 index 0000000..d9c26a0 --- /dev/null +++ b/gcc/testsuite/go.test/test/fixedbugs/bug106.dir/bug0.go @@ -0,0 +1,7 @@ +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package bug0 + +const A = -1 diff --git a/gcc/testsuite/go.test/test/fixedbugs/bug106.dir/bug1.go b/gcc/testsuite/go.test/test/fixedbugs/bug106.dir/bug1.go new file mode 100644 index 0000000..0f1d20e --- /dev/null +++ b/gcc/testsuite/go.test/test/fixedbugs/bug106.dir/bug1.go @@ -0,0 +1,8 @@ +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package bug1 + +import _ "./bug0" + diff --git a/gcc/testsuite/go.test/test/fixedbugs/bug106.go b/gcc/testsuite/go.test/test/fixedbugs/bug106.go new file mode 100644 index 0000000..1874b20 --- /dev/null +++ b/gcc/testsuite/go.test/test/fixedbugs/bug106.go @@ -0,0 +1,7 @@ +// $G $D/$F.dir/bug0.go && $G $D/$F.dir/bug1.go || echo BUG: failed to compile + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +ignored diff --git a/gcc/testsuite/go.test/test/fixedbugs/bug107.go b/gcc/testsuite/go.test/test/fixedbugs/bug107.go new file mode 100644 index 0000000..d0b062a --- /dev/null +++ b/gcc/testsuite/go.test/test/fixedbugs/bug107.go @@ -0,0 +1,15 @@ +// errchk $G $D/$F.go + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package main +import os "os" +type _ os.Error +func f() (os int) { + // In the next line "os" should refer to the result variable, not + // to the package. + v := os.Open("", 0, 0); // ERROR "undefined" + return 0 +} diff --git a/gcc/testsuite/go.test/test/fixedbugs/bug108.go b/gcc/testsuite/go.test/test/fixedbugs/bug108.go new file mode 100644 index 0000000..5c7649f --- /dev/null +++ b/gcc/testsuite/go.test/test/fixedbugs/bug108.go @@ -0,0 +1,10 @@ +// errchk $G $D/$F.go + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package main +func f() { + v := 1 << 1025; // ERROR "overflow|stupid shift" +} diff --git a/gcc/testsuite/go.test/test/fixedbugs/bug109.go b/gcc/testsuite/go.test/test/fixedbugs/bug109.go new file mode 100644 index 0000000..c679771 --- /dev/null +++ b/gcc/testsuite/go.test/test/fixedbugs/bug109.go @@ -0,0 +1,24 @@ +// $G $D/$F.go || echo BUG: should compile + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package main +func f(a float) float { + e := 1.0; + e = e * a; + return e; +} + +/* +6g bugs/bug109.go +bugs/bug109.go:5: illegal types for operand: MUL + (<float64>FLOAT64) + (<float32>FLOAT32) +bugs/bug109.go:5: illegal types for operand: AS + (<float64>FLOAT64) +bugs/bug109.go:6: illegal types for operand: RETURN + (<float32>FLOAT32) + (<float64>FLOAT64) +*/ diff --git a/gcc/testsuite/go.test/test/fixedbugs/bug110.go b/gcc/testsuite/go.test/test/fixedbugs/bug110.go new file mode 100644 index 0000000..4e43d1c --- /dev/null +++ b/gcc/testsuite/go.test/test/fixedbugs/bug110.go @@ -0,0 +1,20 @@ +// $G $D/$F.go && $L $F.$A || echo BUG: const bug + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package main + +const a = 0 + +func f() { + const a = 5 +} + +func main() { + if a != 0 { + println("a=", a) + panic("fail") + } +} diff --git a/gcc/testsuite/go.test/test/fixedbugs/bug111.go b/gcc/testsuite/go.test/test/fixedbugs/bug111.go new file mode 100644 index 0000000..e72b343 --- /dev/null +++ b/gcc/testsuite/go.test/test/fixedbugs/bug111.go @@ -0,0 +1,32 @@ +// $G $D/$F.go && $L $F.$A && ./$A.out || echo BUG should compile and run + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package main + +var ncall int; + +type Iffy interface { + Me() Iffy +} + +type Stucky struct { + n int +} + +func (s *Stucky) Me() Iffy { + ncall++; + return s +} + +func main() { + s := new(Stucky); + i := s.Me(); + j := i.Me(); + j.Me(); + if ncall != 3 { + panic("bug111") + } +} diff --git a/gcc/testsuite/go.test/test/fixedbugs/bug112.go b/gcc/testsuite/go.test/test/fixedbugs/bug112.go new file mode 100644 index 0000000..3c93284 --- /dev/null +++ b/gcc/testsuite/go.test/test/fixedbugs/bug112.go @@ -0,0 +1,16 @@ +// $G $D/$F.go || echo BUG should compile + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package main + +type T struct { s string } +var t = T{"hi"} + +func main() {} + +/* +bug112.go:6: illegal conversion of constant to T +*/ diff --git a/gcc/testsuite/go.test/test/fixedbugs/bug113.go b/gcc/testsuite/go.test/test/fixedbugs/bug113.go new file mode 100644 index 0000000..4fd322d --- /dev/null +++ b/gcc/testsuite/go.test/test/fixedbugs/bug113.go @@ -0,0 +1,28 @@ +// $G $D/$F.go && $L $F.$A && (! ./$A.out || echo BUG: should not succeed) + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package main + +type I interface{} + +func foo1(i int) int { return i } +func foo2(i int32) int32 { return i } +func main() { + var i I + i = 1 + var v1 = i.(int) + if foo1(v1) != 1 { + panic(1) + } + var v2 = int32(i.(int)) + if foo2(v2) != 1 { + panic(2) + } + var v3 = i.(int32) // This type conversion should fail at runtime. + if foo2(v3) != 1 { + panic(3) + } +} diff --git a/gcc/testsuite/go.test/test/fixedbugs/bug114.go b/gcc/testsuite/go.test/test/fixedbugs/bug114.go new file mode 100644 index 0000000..974b7cf --- /dev/null +++ b/gcc/testsuite/go.test/test/fixedbugs/bug114.go @@ -0,0 +1,26 @@ +// $G $D/$F.go && $L $F.$A && (./$A.out || echo BUG: bug114 failed) + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package main + +const B32 = 1<<32 - 1 +const C32 = (-1) & ((1 << 32) - 1) +const D32 = ^0 + +func main() { + if B32 != 0xFFFFFFFF { + println("1<<32 - 1 is", B32, "should be", 0xFFFFFFFF) + panic("fail") + } + if C32 != 0xFFFFFFFF { + println("(-1) & ((1<<32) - 1) is", C32, "should be", 0xFFFFFFFF) + panic("fail") + } + if D32 != -1 { + println("^0 is", D32, "should be", -1) + panic("fail") + } +} diff --git a/gcc/testsuite/go.test/test/fixedbugs/bug115.go b/gcc/testsuite/go.test/test/fixedbugs/bug115.go new file mode 100644 index 0000000..16b22d7 --- /dev/null +++ b/gcc/testsuite/go.test/test/fixedbugs/bug115.go @@ -0,0 +1,14 @@ +// $G $D/$F.go || echo BUG: bug115 should compile + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package main + +func isuint(i uint) { } + +func main() { + i := ^uint(0); + isuint(i); +} diff --git a/gcc/testsuite/go.test/test/fixedbugs/bug116.go b/gcc/testsuite/go.test/test/fixedbugs/bug116.go new file mode 100644 index 0000000..42ca803 --- /dev/null +++ b/gcc/testsuite/go.test/test/fixedbugs/bug116.go @@ -0,0 +1,35 @@ +// $G $D/$F.go && $L $F.$A && ./$A.out || echo BUG: bug116 + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package main + +func main() { + bad := false + if (-5 >> 1) != -3 { + println("-5>>1 =", -5>>1, "want -3") + bad = true + } + if (-4 >> 1) != -2 { + println("-4>>1 =", -4>>1, "want -2") + bad = true + } + if (-3 >> 1) != -2 { + println("-3>>1 =", -3>>1, "want -2") + bad = true + } + if (-2 >> 1) != -1 { + println("-2>>1 =", -2>>1, "want -1") + bad = true + } + if (-1 >> 1) != -1 { + println("-1>>1 =", -1>>1, "want -1") + bad = true + } + if bad { + println("errors") + panic("fail") + } +} diff --git a/gcc/testsuite/go.test/test/fixedbugs/bug117.go b/gcc/testsuite/go.test/test/fixedbugs/bug117.go new file mode 100644 index 0000000..ad89ebf --- /dev/null +++ b/gcc/testsuite/go.test/test/fixedbugs/bug117.go @@ -0,0 +1,29 @@ +// errchk $G $D/$F.go + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package main + +type S struct { + a int +} +type PS *S + +func (p *S) get() int { + return p.a +} + +func fn(p PS) int { + // p has type PS, and PS has no methods. + // (a compiler might see that p is a pointer + // and go looking in S without noticing PS.) + return p.get() // ERROR "undefined" +} +func main() { + s := S{1} + if s.get() != 1 { + panic("fail") + } +} diff --git a/gcc/testsuite/go.test/test/fixedbugs/bug118.go b/gcc/testsuite/go.test/test/fixedbugs/bug118.go new file mode 100644 index 0000000..1271f5b --- /dev/null +++ b/gcc/testsuite/go.test/test/fixedbugs/bug118.go @@ -0,0 +1,15 @@ +// $G $D/$F.go || echo BUG should compile + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package main + +func Send(c chan int) int { + select { + default: + return 1; + } + return 2; +} diff --git a/gcc/testsuite/go.test/test/fixedbugs/bug119.go b/gcc/testsuite/go.test/test/fixedbugs/bug119.go new file mode 100644 index 0000000..7505078 --- /dev/null +++ b/gcc/testsuite/go.test/test/fixedbugs/bug119.go @@ -0,0 +1,36 @@ +// $G $D/$F.go && $L $F.$A && ./$A.out || echo BUG: should not fail + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package main + +func foo(a []int) int { + return a[0] // this seems to do the wrong thing +} + +func main() { + a := &[]int{12} + if x := (*a)[0]; x != 12 { + panic(2) + } + if x := foo(*a); x != 12 { + // fails (x is incorrect) + panic(3) + } +} + +/* +uetli:~/Source/go1/test/bugs gri$ 6go bug119 +3 70160 + +panic on line 83 PC=0x14d6 +0x14d6?zi + main·main(23659, 0, 1, ...) + main·main(0x5c6b, 0x1, 0x7fff5fbff830, ...) +0x52bb?zi + mainstart(1, 0, 1606416432, ...) + mainstart(0x1, 0x7fff5fbff830, 0x0, ...) +uetli:~/Source/go1/test/bugs gri$ +*/ diff --git a/gcc/testsuite/go.test/test/fixedbugs/bug120.go b/gcc/testsuite/go.test/test/fixedbugs/bug120.go new file mode 100644 index 0000000..2a71957 --- /dev/null +++ b/gcc/testsuite/go.test/test/fixedbugs/bug120.go @@ -0,0 +1,60 @@ +// $G $D/$F.go && $L $F.$A && ./$A.out || echo BUG: bug120 + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package main + +import "os" +import "strconv" + +type Test struct { + f float64 + in string + out string +} + +var tests = []Test{ + Test{123.5, "123.5", "123.5"}, + Test{456.7, "456.7", "456.7"}, + Test{1e23 + 8.5e6, "1e23+8.5e6", "1.0000000000000001e+23"}, + Test{100000000000000008388608, "100000000000000008388608", "1.0000000000000001e+23"}, + Test{1e23 + 8388609, "1e23+8388609", "1.0000000000000001e+23"}, + + // "x" = the floating point value from converting the string x. + // These are exactly representable in 64-bit floating point: + // 1e23-8388608 + // 1e23+8388608 + // The former has an even mantissa, so "1e23" rounds to 1e23-8388608. + // If "1e23+8388608" is implemented as "1e23" + "8388608", + // that ends up computing 1e23-8388608 + 8388608 = 1e23, + // which rounds back to 1e23-8388608. + // The correct answer, of course, would be "1e23+8388608" = 1e23+8388608. + // This is not going to be correct until 6g has multiprecision floating point. + // A simpler case is "1e23+1", which should also round to 1e23+8388608. + Test{1e23 + 8.388608e6, "1e23+8.388608e6", "1.0000000000000001e+23"}, + Test{1e23 + 1, "1e23+1", "1.0000000000000001e+23"}, +} + +func main() { + ok := true + for i := 0; i < len(tests); i++ { + t := tests[i] + v := strconv.Ftoa64(t.f, 'g', -1) + if v != t.out { + println("Bad float64 const:", t.in, "want", t.out, "got", v) + x, err := strconv.Atof64(t.out) + if err != nil { + println("bug120: strconv.Atof64", t.out) + panic("fail") + } + println("\twant exact:", strconv.Ftoa64(x, 'g', 1000)) + println("\tgot exact: ", strconv.Ftoa64(t.f, 'g', 1000)) + ok = false + } + } + if !ok { + os.Exit(1) + } +} diff --git a/gcc/testsuite/go.test/test/fixedbugs/bug121.go b/gcc/testsuite/go.test/test/fixedbugs/bug121.go new file mode 100644 index 0000000..15c8451 --- /dev/null +++ b/gcc/testsuite/go.test/test/fixedbugs/bug121.go @@ -0,0 +1,18 @@ +// errchk $G $D/$F.go + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package main + +type T func() + +type I interface { + f, g (); // ERROR "name list not allowed" +} + +type J interface { + h T; // ERROR "syntax|signature" +} + diff --git a/gcc/testsuite/go.test/test/fixedbugs/bug122.go b/gcc/testsuite/go.test/test/fixedbugs/bug122.go new file mode 100644 index 0000000..72bf38a --- /dev/null +++ b/gcc/testsuite/go.test/test/fixedbugs/bug122.go @@ -0,0 +1,12 @@ +// errchk $G $D/$F.go + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package main + +func main() { + // should allow at most 2 sizes + a := make([]int, 10, 20, 30, 40); // ERROR "too many" +} diff --git a/gcc/testsuite/go.test/test/fixedbugs/bug123.go b/gcc/testsuite/go.test/test/fixedbugs/bug123.go new file mode 100644 index 0000000..bdac674 --- /dev/null +++ b/gcc/testsuite/go.test/test/fixedbugs/bug123.go @@ -0,0 +1,14 @@ +// errchk $G $D/$F.go + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package main +const ( F = 1 ) +func fn(i int) int { + if i == F() { // ERROR "func" + return 0 + } + return 1 +} diff --git a/gcc/testsuite/go.test/test/fixedbugs/bug126.go b/gcc/testsuite/go.test/test/fixedbugs/bug126.go new file mode 100644 index 0000000..a8d56e1 --- /dev/null +++ b/gcc/testsuite/go.test/test/fixedbugs/bug126.go @@ -0,0 +1,11 @@ +// errchk $G $D/$F.go + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package main + +// same const identifier declared twice should not be accepted +const none = 0 // GCCGO_ERROR "previous" +const none = 1; // ERROR "redeclared|redef" diff --git a/gcc/testsuite/go.test/test/fixedbugs/bug127.go b/gcc/testsuite/go.test/test/fixedbugs/bug127.go new file mode 100644 index 0000000..25b4811 --- /dev/null +++ b/gcc/testsuite/go.test/test/fixedbugs/bug127.go @@ -0,0 +1,12 @@ +// errchk $G $D/$F.go + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package main +func main() { + var x int64 = 0; + println(x != nil); // ERROR "illegal|incompatible|nil" + println(0 != nil); // ERROR "illegal|incompatible|nil" +} diff --git a/gcc/testsuite/go.test/test/fixedbugs/bug128.go b/gcc/testsuite/go.test/test/fixedbugs/bug128.go new file mode 100644 index 0000000..3fd647c --- /dev/null +++ b/gcc/testsuite/go.test/test/fixedbugs/bug128.go @@ -0,0 +1,23 @@ +// $G $D/$F.go && $L $F.$A && ./$A.out || echo BUG: should compile + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package main +func main() { + switch { + // empty switch is allowed according to syntax + // unclear why it shouldn't be allowed + } + switch tag := 0; tag { + // empty switch is allowed according to syntax + // unclear why it shouldn't be allowed + } +} + +/* +uetli:~/Source/go1/test/bugs gri$ 6g bug127.go +bug127.go:5: switch statement must have case labels +bug127.go:9: switch statement must have case labels +*/ diff --git a/gcc/testsuite/go.test/test/fixedbugs/bug129.go b/gcc/testsuite/go.test/test/fixedbugs/bug129.go new file mode 100644 index 0000000..d1e2d8b --- /dev/null +++ b/gcc/testsuite/go.test/test/fixedbugs/bug129.go @@ -0,0 +1,14 @@ +// $G $D/$F.go || echo BUG129 + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package foo +import "fmt" + +func f() { + fmt.Println(); + fmt := 1; + _ = fmt; +} diff --git a/gcc/testsuite/go.test/test/fixedbugs/bug130.go b/gcc/testsuite/go.test/test/fixedbugs/bug130.go new file mode 100644 index 0000000..855c707 --- /dev/null +++ b/gcc/testsuite/go.test/test/fixedbugs/bug130.go @@ -0,0 +1,22 @@ +// $G $D/$F.go && $L $F.$A && ./$A.out || echo BUG: should run + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package main + +import "os" + +type I interface { send(chan <- int) } + +type S struct { v int } +func (p *S) send(c chan <- int) { c <- p.v } + +func main() { + s := S{0}; + var i I = &s; + c := make(chan int); + go i.send(c); + os.Exit(<-c); +} diff --git a/gcc/testsuite/go.test/test/fixedbugs/bug131.go b/gcc/testsuite/go.test/test/fixedbugs/bug131.go new file mode 100644 index 0000000..e5d4ca0 --- /dev/null +++ b/gcc/testsuite/go.test/test/fixedbugs/bug131.go @@ -0,0 +1,12 @@ +// errchk $G $D/$F.go + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package main + +func main() { + const a uint64 = 10; + var b int64 = a; // ERROR "convert|cannot|incompatible" +} diff --git a/gcc/testsuite/go.test/test/fixedbugs/bug132.go b/gcc/testsuite/go.test/test/fixedbugs/bug132.go new file mode 100644 index 0000000..bab8996 --- /dev/null +++ b/gcc/testsuite/go.test/test/fixedbugs/bug132.go @@ -0,0 +1,11 @@ +// errchk $G $D/$F.go + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package main + +type T struct { + x, x int // ERROR "duplicate" +} diff --git a/gcc/testsuite/go.test/test/fixedbugs/bug133.dir/bug0.go b/gcc/testsuite/go.test/test/fixedbugs/bug133.dir/bug0.go new file mode 100644 index 0000000..48cd104 --- /dev/null +++ b/gcc/testsuite/go.test/test/fixedbugs/bug133.dir/bug0.go @@ -0,0 +1,7 @@ +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package bug0 + +type T struct { i int } diff --git a/gcc/testsuite/go.test/test/fixedbugs/bug133.dir/bug1.go b/gcc/testsuite/go.test/test/fixedbugs/bug133.dir/bug1.go new file mode 100644 index 0000000..7562147 --- /dev/null +++ b/gcc/testsuite/go.test/test/fixedbugs/bug133.dir/bug1.go @@ -0,0 +1,9 @@ +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package bug1 + +import "./bug0" + +type T struct { t bug0.T } diff --git a/gcc/testsuite/go.test/test/fixedbugs/bug133.dir/bug2.go b/gcc/testsuite/go.test/test/fixedbugs/bug133.dir/bug2.go new file mode 100644 index 0000000..e531001 --- /dev/null +++ b/gcc/testsuite/go.test/test/fixedbugs/bug133.dir/bug2.go @@ -0,0 +1,16 @@ +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package bug2 + +import _ "./bug1" +import "./bug0" + +type T2 struct { t bug0.T } + +func fn(p *T2) int { + // This reference should be invalid, because bug0.T.i is local + // to package bug0 and should not be visible in package bug1. + return p.t.i; // ERROR "field|undef" +} diff --git a/gcc/testsuite/go.test/test/fixedbugs/bug133.go b/gcc/testsuite/go.test/test/fixedbugs/bug133.go new file mode 100644 index 0000000..2beeb07 --- /dev/null +++ b/gcc/testsuite/go.test/test/fixedbugs/bug133.go @@ -0,0 +1,7 @@ +// $G $D/$F.dir/bug0.go && $G $D/$F.dir/bug1.go && errchk $G $D/$F.dir/bug2.go + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +ignored diff --git a/gcc/testsuite/go.test/test/fixedbugs/bug135.go b/gcc/testsuite/go.test/test/fixedbugs/bug135.go new file mode 100644 index 0000000..470135e --- /dev/null +++ b/gcc/testsuite/go.test/test/fixedbugs/bug135.go @@ -0,0 +1,19 @@ +// $G $D/$F.go || echo BUG: should compile + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package main + +type Foo interface { } + +type T struct {} +func (t *T) foo() {} + +func main() { + t := new(T); + var i interface {}; + f, ok := i.(Foo); + _, _, _ = t, f, ok; +} diff --git a/gcc/testsuite/go.test/test/fixedbugs/bug136.go b/gcc/testsuite/go.test/test/fixedbugs/bug136.go new file mode 100644 index 0000000..7491b65 --- /dev/null +++ b/gcc/testsuite/go.test/test/fixedbugs/bug136.go @@ -0,0 +1,22 @@ +// errchk $G $D/$F.go + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package main + +func main() { + L: ; // ';' terminates empty statement => L does not apply to for loop + for i := 0; i < 10; i++ { + println(i); + break L; // ERROR "L" + } + + L1: { // L1 labels block => L1 does not apply to for loop + for i := 0; i < 10; i++ { + println(i); + break L1; // ERROR "L1" + } + } +} diff --git a/gcc/testsuite/go.test/test/fixedbugs/bug137.go b/gcc/testsuite/go.test/test/fixedbugs/bug137.go new file mode 100644 index 0000000..1527924 --- /dev/null +++ b/gcc/testsuite/go.test/test/fixedbugs/bug137.go @@ -0,0 +1,26 @@ +// $G $D/$F.go || echo BUG should compile + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package main + +func main() { +L1: +L2: for i := 0; i < 10; i++ { + print(i); + break L2; + } + +L3: ; +L4: for i := 0; i < 10; i++ { + print(i); + break L4; + } +} + +/* +bug137.go:9: break label is not defined: L2 +bug137.go:15: break label is not defined: L4 +*/ diff --git a/gcc/testsuite/go.test/test/fixedbugs/bug139.go b/gcc/testsuite/go.test/test/fixedbugs/bug139.go new file mode 100644 index 0000000..2bdbef1 --- /dev/null +++ b/gcc/testsuite/go.test/test/fixedbugs/bug139.go @@ -0,0 +1,17 @@ +// $G $D/$F.go || echo BUG should compile + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package main + +func main() { + x := false; + func () { if x { println(1); } }(); // this does not compile + func () { if x == false { println(2); } }(); // this works as expected +} + +/* +bug139.go:7: fatal error: naddr: ONAME class x 5 +*/ diff --git a/gcc/testsuite/go.test/test/fixedbugs/bug140.go b/gcc/testsuite/go.test/test/fixedbugs/bug140.go new file mode 100644 index 0000000..33d1deb --- /dev/null +++ b/gcc/testsuite/go.test/test/fixedbugs/bug140.go @@ -0,0 +1,18 @@ +// $G $D/$F.go || echo BUG should compile + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package main + +func main() { + if {} else L1: ; + if {} else L2: main() ; +} + +/* +These should be legal according to the spec. +bug140.go:6: syntax error near L1 +bug140.go:7: syntax error near L2 +*/ diff --git a/gcc/testsuite/go.test/test/fixedbugs/bug141.go b/gcc/testsuite/go.test/test/fixedbugs/bug141.go new file mode 100644 index 0000000..756ba30 --- /dev/null +++ b/gcc/testsuite/go.test/test/fixedbugs/bug141.go @@ -0,0 +1,32 @@ +// $G $D/$F.go && $L $F.$A && ./$A.out || echo BUG: should run + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package main + +import "os" + +type S struct { i int } +func (p *S) Get() int { return p.i } + +type Empty interface { +} + +type Getter interface { + Get() int; +} + +func f1(p Empty) { + switch x := p.(type) { + default: println("failed to match interface"); os.Exit(1); + case Getter: break; + } + +} + +func main() { + var s S; + f1(&s); +} diff --git a/gcc/testsuite/go.test/test/fixedbugs/bug142.go b/gcc/testsuite/go.test/test/fixedbugs/bug142.go new file mode 100644 index 0000000..e54458b --- /dev/null +++ b/gcc/testsuite/go.test/test/fixedbugs/bug142.go @@ -0,0 +1,31 @@ +// $G $D/$F.go && $L $F.$A && ./$A.out || echo BUG: bug142 + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package main + +func panic1(s string) bool { + panic(s); +} + +func main() { + x := false && panic1("first") && panic1("second"); + x = x == true && panic1("first") && panic1("second"); +} + +/* +; 6.out +second +panic PC=0x250f98 +main·panic1+0x36 /Users/rsc/goX/test/bugs/bug142.go:6 + main·panic1(0xae30, 0x0) +main·main+0x23 /Users/rsc/goX/test/bugs/bug142.go:10 + main·main() +mainstart+0xf /Users/rsc/goX/src/runtime/amd64/asm.s:53 + mainstart() +sys·Goexit /Users/rsc/goX/src/runtime/proc.c:124 + sys·Goexit() +; +*/ diff --git a/gcc/testsuite/go.test/test/fixedbugs/bug143.go b/gcc/testsuite/go.test/test/fixedbugs/bug143.go new file mode 100644 index 0000000..2f575fc --- /dev/null +++ b/gcc/testsuite/go.test/test/fixedbugs/bug143.go @@ -0,0 +1,44 @@ +// $G $D/$F.go || echo BUG should compile + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package main + +type myMap map[string] int; + +func f() myMap { + m := make(map[string] int); + return m +} + +func main() { + m := make(myMap); + mp := &m; + + { + x, ok := m["key"]; + _, _ = x, ok; + } + { + x, ok := (*mp)["key"]; + _, _ = x, ok; + } + { + x, ok := f()["key"]; + _, _ = x, ok; + } + { + var x int; + var ok bool; + x, ok = f()["key"]; + _, _ = x, ok; + } +} + +/* + * bug143.go:19: assignment count mismatch: 2 = 1 + * bug143.go:18: x: undefined + * bug143.go:18: ok: undefined + */ diff --git a/gcc/testsuite/go.test/test/fixedbugs/bug144.go b/gcc/testsuite/go.test/test/fixedbugs/bug144.go new file mode 100644 index 0000000..bab9a44 --- /dev/null +++ b/gcc/testsuite/go.test/test/fixedbugs/bug144.go @@ -0,0 +1,22 @@ +// $G $D/$F.go || echo BUG should compile + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package main + +const c = 1; + +func main() { + c := 0; + _ = c; +} + +/* +bug144.go:8: left side of := must be a name +bug144.go:8: operation LITERAL not allowed in assignment context +bug144.go:8: illegal types for operand: AS + ideal + int +*/ diff --git a/gcc/testsuite/go.test/test/fixedbugs/bug145.go b/gcc/testsuite/go.test/test/fixedbugs/bug145.go new file mode 100644 index 0000000..c59bceb --- /dev/null +++ b/gcc/testsuite/go.test/test/fixedbugs/bug145.go @@ -0,0 +1,18 @@ +// $G $D/$F.go || echo BUG should compile + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package main + +type t int + +func main() { + t := 0; + _ = t; +} + +/* +bug145.go:8: t is type, not var +*/ diff --git a/gcc/testsuite/go.test/test/fixedbugs/bug146.go b/gcc/testsuite/go.test/test/fixedbugs/bug146.go new file mode 100644 index 0000000..16324c7 --- /dev/null +++ b/gcc/testsuite/go.test/test/fixedbugs/bug146.go @@ -0,0 +1,15 @@ +// errchk $G $D/$F.go + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package main + +func main() { + type Slice []byte; + a := [...]byte{ 0 }; + b := Slice(a[0:]); // This should be OK. + c := Slice(a); // ERROR "invalid|illegal|cannot" + _, _ = b, c; +} diff --git a/gcc/testsuite/go.test/test/fixedbugs/bug147.go b/gcc/testsuite/go.test/test/fixedbugs/bug147.go new file mode 100644 index 0000000..a16630b --- /dev/null +++ b/gcc/testsuite/go.test/test/fixedbugs/bug147.go @@ -0,0 +1,26 @@ +// $G $D/$F.go && $L $F.$A && ./$A.out || echo BUG: bug147 + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package main + +import "time" + +func main() { + var count int + c := make(chan byte) + go func(c chan byte) { + <-c + count++ + time.Sleep(1000000) + count++ + <-c + }(c) + c <- 1 + c <- 2 + if count != 2 { + panic("synchronous send did not wait") + } +} diff --git a/gcc/testsuite/go.test/test/fixedbugs/bug148.go b/gcc/testsuite/go.test/test/fixedbugs/bug148.go new file mode 100644 index 0000000..daedff1 --- /dev/null +++ b/gcc/testsuite/go.test/test/fixedbugs/bug148.go @@ -0,0 +1,39 @@ +// $G $D/$F.go && $L $F.$A && ! ./$A.out || echo BUG: should crash + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package main + +type T struct {a, b int}; + +func f(x interface{}) interface{} { + type T struct {a, b int}; + + if x == nil { + return T{2, 3}; + } + + t := x.(T); + println(t.a, t.b); + return x; +} + +func main() { + inner_T := f(nil); + f(inner_T); + + outer_T := T{5, 7}; + f(outer_T); +} + +/* +This prints: + +2 3 +5 7 + +but it should crash: The type assertion on line 14 should fail +for the 2nd call to f with outer_T. +*/ diff --git a/gcc/testsuite/go.test/test/fixedbugs/bug149.go b/gcc/testsuite/go.test/test/fixedbugs/bug149.go new file mode 100644 index 0000000..a40403b --- /dev/null +++ b/gcc/testsuite/go.test/test/fixedbugs/bug149.go @@ -0,0 +1,24 @@ +// $G $D/$F.go || echo BUG: should compile + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package main + +func main() { + var b1 []byte; + s1 := string(b1); + println(len(s1)); // prints 0 + + b2 := ([]byte)(nil); + s2 := string(b2); + println(len(s2)); // prints 0 + + s3 := string(([]byte)(nil)); // does not compile (literal substitution of b2) + println(len(s3)); +} + +/* +bug149.go:14: cannot convert []uint8 constant to string +*/ diff --git a/gcc/testsuite/go.test/test/fixedbugs/bug150.go b/gcc/testsuite/go.test/test/fixedbugs/bug150.go new file mode 100644 index 0000000..fc25444 --- /dev/null +++ b/gcc/testsuite/go.test/test/fixedbugs/bug150.go @@ -0,0 +1,23 @@ +// $G $D/$F.go || echo BUG: bug150 + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package main + +type T int +func (t T) M() + +type M interface { M() } + +func g() (T, T) + +func f() (a, b M) { + a, b = g(); + return; +} + +/* +bugs/bug150.go:13: reorder2: too many funcation calls evaluating parameters +*/ diff --git a/gcc/testsuite/go.test/test/fixedbugs/bug151.go b/gcc/testsuite/go.test/test/fixedbugs/bug151.go new file mode 100644 index 0000000..46546df --- /dev/null +++ b/gcc/testsuite/go.test/test/fixedbugs/bug151.go @@ -0,0 +1,21 @@ +// $G $D/$F.go || echo BUG: bug151 + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package main + +type S string + +type Empty interface {} + +func (v S) Less(e Empty) bool { + return v < e.(S); +} + +/* +bugs/bug151.go:10: illegal types for operand: CALL + string + S +*/ diff --git a/gcc/testsuite/go.test/test/fixedbugs/bug152.go b/gcc/testsuite/go.test/test/fixedbugs/bug152.go new file mode 100644 index 0000000..30c3cac --- /dev/null +++ b/gcc/testsuite/go.test/test/fixedbugs/bug152.go @@ -0,0 +1,17 @@ +// $G $D/$F.go && $L $F.$A && ./$A.out + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package main + +func main() { + s := 0; + for _, v := range []int{1} { + s += v; + } + if s != 1 { + println("BUG: s =", s); + } +} diff --git a/gcc/testsuite/go.test/test/fixedbugs/bug154.go b/gcc/testsuite/go.test/test/fixedbugs/bug154.go new file mode 100644 index 0000000..4371cc5 --- /dev/null +++ b/gcc/testsuite/go.test/test/fixedbugs/bug154.go @@ -0,0 +1,33 @@ +// $G $D/$F.go && $L $F.$A && ./$A.out || echo BUG: should not panic + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package main + +import "fmt" + +func f0() string { + const f = 3.141592; + return fmt.Sprintf("%v", float64(f)); +} + + +func f1() string { + const f = 3.141592; + x := float64(float32(f)); // appears to change the precision of f + _ = x; + return fmt.Sprintf("%v", float64(f)); +} + + +func main() { + r0 := f0(); + r1 := f1(); + if r0 != r1 { + println("r0 =", r0); + println("r1 =", r1); + panic("r0 and r1 should be the same"); + } +} diff --git a/gcc/testsuite/go.test/test/fixedbugs/bug155.go b/gcc/testsuite/go.test/test/fixedbugs/bug155.go new file mode 100644 index 0000000..312c8e6 --- /dev/null +++ b/gcc/testsuite/go.test/test/fixedbugs/bug155.go @@ -0,0 +1,23 @@ +// $G $D/$F.go && $L $F.$A || echo BUG: bug155 + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package main + +const big uint64 = 1<<63 + +func f(a uint64) uint64 { + return a << big +} + +func main() { + f(1) +} + +/* +main·f: doasm: notfound from=75 to=13 (82) SHLQ $-9223372036854775808,BX +main·f: doasm: notfound from=75 to=13 (82) SHLQ $-9223372036854775808,BX +main·f: doasm: notfound from=75 to=13 (82) SHLQ $-9223372036854775808,BX +*/ diff --git a/gcc/testsuite/go.test/test/fixedbugs/bug156.go b/gcc/testsuite/go.test/test/fixedbugs/bug156.go new file mode 100644 index 0000000..0b77a72 --- /dev/null +++ b/gcc/testsuite/go.test/test/fixedbugs/bug156.go @@ -0,0 +1,21 @@ +// $G $D/$F.go || echo BUG: bug156 + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package main + +func f(a int64) int64 { + const b int64 = 0; + n := a &^ b; + return n; +} + +func main() { + f(1) +} + +/* +bug156.go:7: constant 18446744073709551615 overflows int64 +*/ diff --git a/gcc/testsuite/go.test/test/fixedbugs/bug157.go b/gcc/testsuite/go.test/test/fixedbugs/bug157.go new file mode 100644 index 0000000..9bf68f7 --- /dev/null +++ b/gcc/testsuite/go.test/test/fixedbugs/bug157.go @@ -0,0 +1,32 @@ +// $G $D/$F.go || echo BUG: should compile + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package main + +func f() {} + +func main() { + x := 0; + + // this compiles + switch x { + case 0: f(); + default: f(); + } + + // this doesn't but it should + // (semicolons are not needed at the end of a statement list) + switch x { + case 0: f() + default: f() + } +} + + +/* +bug157.go:20: syntax error near default +bug157.go:20: first switch statement must be a case +*/ diff --git a/gcc/testsuite/go.test/test/fixedbugs/bug158.go b/gcc/testsuite/go.test/test/fixedbugs/bug158.go new file mode 100644 index 0000000..cdf3195 --- /dev/null +++ b/gcc/testsuite/go.test/test/fixedbugs/bug158.go @@ -0,0 +1,26 @@ +// $G $D/$F.go || echo BUG: should compile + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package main + +func main() { + x := 0; + + // this compiles + switch x { + case 0: + } + + // this doesn't but should + switch 0 { + case 0: + } +} + + +/* +bug158.go:14: fatal error: dowidth: unknown type: E-33 +*/ diff --git a/gcc/testsuite/go.test/test/fixedbugs/bug159.go b/gcc/testsuite/go.test/test/fixedbugs/bug159.go new file mode 100644 index 0000000..1aa6443 --- /dev/null +++ b/gcc/testsuite/go.test/test/fixedbugs/bug159.go @@ -0,0 +1,39 @@ +// $G $D/$F.go && $L $F.$A && ./$A.out || echo BUG: bug159 + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package main + +import "os" + +func main() { + ok := true; + var a, b, c, x, y, z int; + f := func() int { b--; return -b }; + + // this fails on 6g: apparently it rewrites + // the list into + // z = f(); + // y = f(); + // x = f(); + // so that the values come out backward. + x, y, z = f(), f(), f(); + if x != 1 || y != 2 || z != 3 { + println("xyz: expected 1 2 3 got", x, y, z); + ok = false; + } + + // this fails on 6g too. one of the function calls + // happens after assigning to b. + a, b, c = f(), f(), f(); + if a != 4 || b != 5 || c != 6 { + println("abc: expected 4 5 6 got", a, b, c); + ok = false; + } + + if !ok { + os.Exit(1); + } +} diff --git a/gcc/testsuite/go.test/test/fixedbugs/bug160.dir/x.go b/gcc/testsuite/go.test/test/fixedbugs/bug160.dir/x.go new file mode 100644 index 0000000..bd52c6c --- /dev/null +++ b/gcc/testsuite/go.test/test/fixedbugs/bug160.dir/x.go @@ -0,0 +1,8 @@ +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package x + +const Zero = 0.0 +const Ten = 10.0 diff --git a/gcc/testsuite/go.test/test/fixedbugs/bug160.dir/y.go b/gcc/testsuite/go.test/test/fixedbugs/bug160.dir/y.go new file mode 100644 index 0000000..27e2f35 --- /dev/null +++ b/gcc/testsuite/go.test/test/fixedbugs/bug160.dir/y.go @@ -0,0 +1,19 @@ +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package main + +import "os" +import "./x" + +func main() { + if x.Zero != 0 { + println("x.Zero = ", x.Zero); + os.Exit(1); + } + if x.Ten != 10 { + println("x.Ten = ", x.Ten); + os.Exit(1); + } +} diff --git a/gcc/testsuite/go.test/test/fixedbugs/bug160.go b/gcc/testsuite/go.test/test/fixedbugs/bug160.go new file mode 100644 index 0000000..8fd53ea --- /dev/null +++ b/gcc/testsuite/go.test/test/fixedbugs/bug160.go @@ -0,0 +1,7 @@ +// $G $D/bug160.dir/x.go && $G $D/bug160.dir/y.go && $L y.$A && ./$A.out + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +nothing to see here diff --git a/gcc/testsuite/go.test/test/fixedbugs/bug161.go b/gcc/testsuite/go.test/test/fixedbugs/bug161.go new file mode 100644 index 0000000..e5f25f7 --- /dev/null +++ b/gcc/testsuite/go.test/test/fixedbugs/bug161.go @@ -0,0 +1,17 @@ +// $G $D/$F.go || echo BUG: should compile + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package P + +const a = 0; + +func f(a int) { + a = 0; +} + +/* +bug161.go:8: operation LITERAL not allowed in assignment context +*/ diff --git a/gcc/testsuite/go.test/test/fixedbugs/bug163.go b/gcc/testsuite/go.test/test/fixedbugs/bug163.go new file mode 100644 index 0000000..919298e --- /dev/null +++ b/gcc/testsuite/go.test/test/fixedbugs/bug163.go @@ -0,0 +1,11 @@ +// errchk $G $D/$F.go + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package main + +func main() { + x⊛y := 1; // ERROR "identifier" +} diff --git a/gcc/testsuite/go.test/test/fixedbugs/bug164.go b/gcc/testsuite/go.test/test/fixedbugs/bug164.go new file mode 100644 index 0000000..746f631 --- /dev/null +++ b/gcc/testsuite/go.test/test/fixedbugs/bug164.go @@ -0,0 +1,17 @@ +// $G $D/$F.go + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package main + +// Multi-line string literal now allowed. + +const s = ` +Hello, World! +` + +func main() { + print(s) +} diff --git a/gcc/testsuite/go.test/test/fixedbugs/bug165.go b/gcc/testsuite/go.test/test/fixedbugs/bug165.go new file mode 100644 index 0000000..8ce67a4 --- /dev/null +++ b/gcc/testsuite/go.test/test/fixedbugs/bug165.go @@ -0,0 +1,15 @@ +// errchk $G $D/$F.go + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package main + +type I interface { + m(map[I] bool); // ok +} + +type S struct { + m map[S] bool; // ERROR "map key type" +} diff --git a/gcc/testsuite/go.test/test/fixedbugs/bug167.go b/gcc/testsuite/go.test/test/fixedbugs/bug167.go new file mode 100644 index 0000000..729299b --- /dev/null +++ b/gcc/testsuite/go.test/test/fixedbugs/bug167.go @@ -0,0 +1,26 @@ +// $G $D/$F.go && $L $F.$A || echo BUG: bug167 + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package main + +func f1() { + type T struct { x int } +} + +func f2() { + type T struct { x float } +} + +func main() { + f1(); + f2(); +} + +/* +1606416576: conflicting definitions for main.T·bug167 +bug167.6: type main.T·bug167 struct { x int } +bug167.6: type main.T·bug167 struct { x float } +*/ diff --git a/gcc/testsuite/go.test/test/fixedbugs/bug168.go b/gcc/testsuite/go.test/test/fixedbugs/bug168.go new file mode 100644 index 0000000..e25eb56b --- /dev/null +++ b/gcc/testsuite/go.test/test/fixedbugs/bug168.go @@ -0,0 +1,19 @@ +// $G $D/$F.go && $L $F.$A && ./$A.out || echo BUG: bug168 + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package main + +var g byte = 123 +var f *byte = &g +var b = make([]byte, 5) + +func main() { + b[0:1][0] = *f + if b[0] != 123 { + println("want 123 got", b[0]) + panic("fail") + } +} diff --git a/gcc/testsuite/go.test/test/fixedbugs/bug169.go b/gcc/testsuite/go.test/test/fixedbugs/bug169.go new file mode 100644 index 0000000..c42727f --- /dev/null +++ b/gcc/testsuite/go.test/test/fixedbugs/bug169.go @@ -0,0 +1,10 @@ +// errchk $G $D/$F.go + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package main +var x = '''; // ERROR "char" + + diff --git a/gcc/testsuite/go.test/test/fixedbugs/bug170.go b/gcc/testsuite/go.test/test/fixedbugs/bug170.go new file mode 100644 index 0000000..e7f1c51 --- /dev/null +++ b/gcc/testsuite/go.test/test/fixedbugs/bug170.go @@ -0,0 +1,14 @@ +// errchk $G $D/$F.go + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package main +var v1 = ([10]int)(nil); // ERROR "illegal|nil|invalid" +var v2 [10]int = nil; // ERROR "illegal|nil|incompatible" +var v3 [10]int; +var v4 = nil; // ERROR "nil" +func main() { + v3 = nil; // ERROR "illegal|nil|incompatible" +} diff --git a/gcc/testsuite/go.test/test/fixedbugs/bug171.go b/gcc/testsuite/go.test/test/fixedbugs/bug171.go new file mode 100644 index 0000000..5357b2a --- /dev/null +++ b/gcc/testsuite/go.test/test/fixedbugs/bug171.go @@ -0,0 +1,10 @@ +// errchk $G $D/$F.go + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package main + +func f() int { } // ERROR "return|control" +func g() (foo int) { } // ERROR "return|control" diff --git a/gcc/testsuite/go.test/test/fixedbugs/bug172.go b/gcc/testsuite/go.test/test/fixedbugs/bug172.go new file mode 100644 index 0000000..1837a11 --- /dev/null +++ b/gcc/testsuite/go.test/test/fixedbugs/bug172.go @@ -0,0 +1,12 @@ +// errchk $G $D/$F.go + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package main + +func f() { + a := true; + a |= a; // ERROR "illegal.*OR|bool|expected" +} diff --git a/gcc/testsuite/go.test/test/fixedbugs/bug173.go b/gcc/testsuite/go.test/test/fixedbugs/bug173.go new file mode 100644 index 0000000..898b840 --- /dev/null +++ b/gcc/testsuite/go.test/test/fixedbugs/bug173.go @@ -0,0 +1,21 @@ +// $G $D/$F.go || echo BUG: bug173 + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +// these used to fail because the runtime +// functions that get called to implement them +// expected string, not T. + +package main + +type T string +func main() { + var t T = "hello"; + println(t[0:4], t[4]); + for _, _ = range t { + } + for _ = range t { + } +} diff --git a/gcc/testsuite/go.test/test/fixedbugs/bug174.go b/gcc/testsuite/go.test/test/fixedbugs/bug174.go new file mode 100644 index 0000000..7ff8655 --- /dev/null +++ b/gcc/testsuite/go.test/test/fixedbugs/bug174.go @@ -0,0 +1,12 @@ +// $G $D/$F.go || echo BUG: bug174 + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package main + +func main() { + var x uint; + println(1<<x); +} diff --git a/gcc/testsuite/go.test/test/fixedbugs/bug175.go b/gcc/testsuite/go.test/test/fixedbugs/bug175.go new file mode 100644 index 0000000..a8f6e3c --- /dev/null +++ b/gcc/testsuite/go.test/test/fixedbugs/bug175.go @@ -0,0 +1,14 @@ +// errchk $G $D/$F.go + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package main + +func f() (int, bool) { return 0, true } + +func main() { + x, y := f(), 2; // ERROR "multi" +} + diff --git a/gcc/testsuite/go.test/test/fixedbugs/bug176.go b/gcc/testsuite/go.test/test/fixedbugs/bug176.go new file mode 100644 index 0000000..5820df3 --- /dev/null +++ b/gcc/testsuite/go.test/test/fixedbugs/bug176.go @@ -0,0 +1,14 @@ +// errchk $G $D/$F.go + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package main + +var x int + +var a = []int{ x: 1} // ERROR "constant" +var b = [...]int{ x : 1} // ERROR "constant" +var c = map[int]int{ x: 1} + diff --git a/gcc/testsuite/go.test/test/fixedbugs/bug177.go b/gcc/testsuite/go.test/test/fixedbugs/bug177.go new file mode 100644 index 0000000..84ff59d --- /dev/null +++ b/gcc/testsuite/go.test/test/fixedbugs/bug177.go @@ -0,0 +1,27 @@ +// $G $D/$F.go && $L $F.$A && ./$A.out + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package main +import "reflect" +type S1 struct { i int } +type S2 struct { S1 } +func main() { + typ := reflect.Typeof(S2{}).(*reflect.StructType); + f := typ.Field(0); + if f.Name != "S1" || f.Anonymous != true { + println("BUG: ", f.Name, f.Anonymous); + return; + } + f, ok := typ.FieldByName("S1"); + if !ok { + println("BUG: missing S1"); + return; + } + if !f.Anonymous { + println("BUG: S1 is not anonymous"); + return; + } +} diff --git a/gcc/testsuite/go.test/test/fixedbugs/bug178.go b/gcc/testsuite/go.test/test/fixedbugs/bug178.go new file mode 100644 index 0000000..4f58634 --- /dev/null +++ b/gcc/testsuite/go.test/test/fixedbugs/bug178.go @@ -0,0 +1,27 @@ +// $G $D/$F.go && $L $F.$A && ./$A.out + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package main + +func main() { +L: + for i := 0; i < 1; i++ { +L1: + for { + break L; + } + panic("BUG: not reached - break"); + } + +L2: + for i := 0; i < 1; i++ { +L3: + for { + continue L2; + } + panic("BUG: not reached - continue"); + } +} diff --git a/gcc/testsuite/go.test/test/fixedbugs/bug179.go b/gcc/testsuite/go.test/test/fixedbugs/bug179.go new file mode 100644 index 0000000..6754873 --- /dev/null +++ b/gcc/testsuite/go.test/test/fixedbugs/bug179.go @@ -0,0 +1,25 @@ +// errchk $G -e $D/$F.go + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package main + +func main() { +L: + for { + for { + break L2; // ERROR "L2" + continue L2; // ERROR "L2" + } + } + +L1: + x := 1; + _ = x; + for { + break L1; // ERROR "L1" + continue L1; // ERROR "L1" + } +} diff --git a/gcc/testsuite/go.test/test/fixedbugs/bug180.go b/gcc/testsuite/go.test/test/fixedbugs/bug180.go new file mode 100644 index 0000000..96823fb --- /dev/null +++ b/gcc/testsuite/go.test/test/fixedbugs/bug180.go @@ -0,0 +1,16 @@ +// $G $D/$F.go && $L $F.$A && ./$A.out + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package main + +func shift(x int) int { return 1 << (1 << (1 << (uint(x)))) } + +func main() { + if n := shift(2); n != 1<<(1<<(1<<2)) { + println("bad shift", n) + panic("fail") + } +} diff --git a/gcc/testsuite/go.test/test/fixedbugs/bug181.go b/gcc/testsuite/go.test/test/fixedbugs/bug181.go new file mode 100644 index 0000000..f87bc9d --- /dev/null +++ b/gcc/testsuite/go.test/test/fixedbugs/bug181.go @@ -0,0 +1,11 @@ +// errchk $G $D/$F.go + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package main + +type T *struct { + T; // ERROR "embed.*pointer" +} diff --git a/gcc/testsuite/go.test/test/fixedbugs/bug182.go b/gcc/testsuite/go.test/test/fixedbugs/bug182.go new file mode 100644 index 0000000..81df2ca --- /dev/null +++ b/gcc/testsuite/go.test/test/fixedbugs/bug182.go @@ -0,0 +1,13 @@ +// errchk $G $D/$F.go + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package main + +func main() { + x := 0; + if x { // ERROR "x.*int|bool" + } +} diff --git a/gcc/testsuite/go.test/test/fixedbugs/bug183.go b/gcc/testsuite/go.test/test/fixedbugs/bug183.go new file mode 100644 index 0000000..7fd6e49 --- /dev/null +++ b/gcc/testsuite/go.test/test/fixedbugs/bug183.go @@ -0,0 +1,27 @@ +//errchk $G $D/$F.go + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package main + +type T int + +func f() { + var x struct { T }; + var y struct { T T }; + x = y; // ERROR "cannot|incompatible" + _ = x; +} + +type T1 struct { T } +type T2 struct { T T } + +func g() { + var x T1; + var y T2; + x = y; // ERROR "cannot|incompatible" + _ = x; +} + diff --git a/gcc/testsuite/go.test/test/fixedbugs/bug184.go b/gcc/testsuite/go.test/test/fixedbugs/bug184.go new file mode 100644 index 0000000..3cc9845 --- /dev/null +++ b/gcc/testsuite/go.test/test/fixedbugs/bug184.go @@ -0,0 +1,49 @@ +// $G $D/$F.go && $L $F.$A && ./$A.out + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package main + +import "fmt" + +type Buffer int + +func (*Buffer) Read() {} + +type Reader interface { + Read() +} + +func f() *Buffer { return nil } + +func g() Reader { + // implicit interface conversion in assignment during return + return f() +} + +func h() (b *Buffer, ok bool) { return } + +func i() (r Reader, ok bool) { + // implicit interface conversion in multi-assignment during return + return h() +} + +func fmter() (s string, i int, t string) { return "%#x %q", 100, "hello" } + +func main() { + b := g() + bb, ok := b.(*Buffer) + _, _, _ = b, bb, ok + + b, ok = i() + bb, ok = b.(*Buffer) + _, _, _ = b, bb, ok + + s := fmt.Sprintf(fmter()) + if s != "0x64 \"hello\"" { + println(s) + panic("fail") + } +} diff --git a/gcc/testsuite/go.test/test/fixedbugs/bug185.go b/gcc/testsuite/go.test/test/fixedbugs/bug185.go new file mode 100644 index 0000000..acae174 --- /dev/null +++ b/gcc/testsuite/go.test/test/fixedbugs/bug185.go @@ -0,0 +1,35 @@ +// $G $D/$F.go && $L $F.$A && ./$A.out + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package main + +func g() {} + +func f1() (a, b int) { + a, b = 2, 1 + g() // defeat optimizer + return a, b +} + +func f2() (a, b int) { + a, b = 1, 2 + g() // defeat optimizer + return b, a +} + +func main() { + x, y := f1() + if x != 2 || y != 1 { + println("f1", x, y) + panic("fail") + } + + x, y = f2() + if x != 2 || y != 1 { + println("f2", x, y) + panic("fail") + } +} diff --git a/gcc/testsuite/go.test/test/fixedbugs/bug186.go b/gcc/testsuite/go.test/test/fixedbugs/bug186.go new file mode 100644 index 0000000..dde794a --- /dev/null +++ b/gcc/testsuite/go.test/test/fixedbugs/bug186.go @@ -0,0 +1,17 @@ +// errchk $G $D/$F.go + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package main + +const X = iota + +func f(x int) { } + +func main() { + f(X); + f(iota); // ERROR "iota" + f(X); +} diff --git a/gcc/testsuite/go.test/test/fixedbugs/bug187.go b/gcc/testsuite/go.test/test/fixedbugs/bug187.go new file mode 100644 index 0000000..66aa5f0 --- /dev/null +++ b/gcc/testsuite/go.test/test/fixedbugs/bug187.go @@ -0,0 +1,22 @@ +// $G $D/$F.go && $L $F.$A && ./$A.out + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package main + +import "os" + +func main() { + // This bug doesn't arise with [...]int, or []interface{} or [3]interface{}. + a := [...]interface{} { 1, 2, 3 }; + n := 1; + for _, v := range a { + if v.(int) != n { + println("BUG:", n, v.(int)); + os.Exit(0); + } + n++; + } +} diff --git a/gcc/testsuite/go.test/test/fixedbugs/bug188.go b/gcc/testsuite/go.test/test/fixedbugs/bug188.go new file mode 100644 index 0000000..e1cbce0 --- /dev/null +++ b/gcc/testsuite/go.test/test/fixedbugs/bug188.go @@ -0,0 +1,15 @@ +// errchk $G $D/$F.go + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package main + +import "sort" + +func main() { + sort.Sort(nil); + var x int; + sort(x); // ERROR "package" +} diff --git a/gcc/testsuite/go.test/test/fixedbugs/bug189.go b/gcc/testsuite/go.test/test/fixedbugs/bug189.go new file mode 100644 index 0000000..ce33830 --- /dev/null +++ b/gcc/testsuite/go.test/test/fixedbugs/bug189.go @@ -0,0 +1,18 @@ +// errchk $G $D/$F.go + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package main + +type S struct { + a, b int +} + +func main() { + s1 := S{a: 7}; // ok - field is named + s3 := S{7, 11}; // ok - all fields have values + s2 := S{7}; // ERROR "too few" + _, _, _ = s1, s3, s2; +} diff --git a/gcc/testsuite/go.test/test/fixedbugs/bug190.go b/gcc/testsuite/go.test/test/fixedbugs/bug190.go new file mode 100644 index 0000000..da0bfde --- /dev/null +++ b/gcc/testsuite/go.test/test/fixedbugs/bug190.go @@ -0,0 +1,26 @@ +// $G $D/$F.go || echo BUG: should compile + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package main + +type S struct { + p *S; + s []S; + m map[int] S; + c chan S; + i interface { f(S); }; + f func(S) S; +} + +func main() { + var s S; + s.p = &s; + s.s = make([]S, 1); + s.s[0] = s; + s.m[0] = s; + s.c <- s; + s.i.f(s); +} diff --git a/gcc/testsuite/go.test/test/fixedbugs/bug191.dir/a.go b/gcc/testsuite/go.test/test/fixedbugs/bug191.dir/a.go new file mode 100644 index 0000000..b87ad6f --- /dev/null +++ b/gcc/testsuite/go.test/test/fixedbugs/bug191.dir/a.go @@ -0,0 +1,12 @@ +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package a + +func init() { + println("a"); +} + +type T int; + diff --git a/gcc/testsuite/go.test/test/fixedbugs/bug191.dir/b.go b/gcc/testsuite/go.test/test/fixedbugs/bug191.dir/b.go new file mode 100644 index 0000000..3e780ac --- /dev/null +++ b/gcc/testsuite/go.test/test/fixedbugs/bug191.dir/b.go @@ -0,0 +1,11 @@ +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package b + +func init() { + println("b"); +} + +type V int; diff --git a/gcc/testsuite/go.test/test/fixedbugs/bug191.go b/gcc/testsuite/go.test/test/fixedbugs/bug191.go new file mode 100644 index 0000000..44fcccf --- /dev/null +++ b/gcc/testsuite/go.test/test/fixedbugs/bug191.go @@ -0,0 +1,16 @@ +// $G $D/bug191.dir/a.go && $G $D/bug191.dir/b.go && $G $D/$F.go && $L $F.$A + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package main + +import . "./a" +import . "./b" + +var _ T +var _ V + +func main() { +} diff --git a/gcc/testsuite/go.test/test/fixedbugs/bug192.go b/gcc/testsuite/go.test/test/fixedbugs/bug192.go new file mode 100644 index 0000000..282ed30 --- /dev/null +++ b/gcc/testsuite/go.test/test/fixedbugs/bug192.go @@ -0,0 +1,11 @@ +// errchk $G $D/$F.go + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package main + +import "fmt" // GCCGO_ERROR "previous" + +var fmt int // ERROR "redecl|redefinition" diff --git a/gcc/testsuite/go.test/test/fixedbugs/bug193.go b/gcc/testsuite/go.test/test/fixedbugs/bug193.go new file mode 100644 index 0000000..f6b03e1 --- /dev/null +++ b/gcc/testsuite/go.test/test/fixedbugs/bug193.go @@ -0,0 +1,16 @@ +// errchk $G $D/$F.go + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package main + +func main() { + s := uint(10); + ss := 1<<s; + y1 := float(ss); + y2 := float(1<<s); // ERROR "shift" + y3 := string(1<<s); // ERROR "shift" + _, _, _, _, _ = s, ss, y1, y2, y3; +} diff --git a/gcc/testsuite/go.test/test/fixedbugs/bug194.go b/gcc/testsuite/go.test/test/fixedbugs/bug194.go new file mode 100644 index 0000000..dcd633d --- /dev/null +++ b/gcc/testsuite/go.test/test/fixedbugs/bug194.go @@ -0,0 +1,35 @@ +// $G $D/$F.go && $L $F.$A && ./$A.out || echo BUG should compile and run + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package main + +var v1 = T1(1) +var v2 = T2{2} +var v3 = T3{0: 3, 1: 4} +var v4 = T4{0: 5, 1: 6} +var v5 = T5{0: 7, 1: 8} +var v6 = T2{f: 9} +var v7 = T4{f: 10} +var v8 = T5{f: 11} +var pf func(T1) + +func main() { + if v1 != 1 || v2.f != 2 || v3[0] != 3 || v3[1] != 4 || + v4[0] != 5 || v4[1] != 6 || v5[0] != 7 || v5[1] != 8 || + v6.f != 9 || v7[0] != 10 || v8[0] != 11 { + panic("fail") + } +} + +type T1 int +type T2 struct { + f int +} +type T3 []int +type T4 [2]int +type T5 map[int]int + +const f = 0 diff --git a/gcc/testsuite/go.test/test/fixedbugs/bug195.go b/gcc/testsuite/go.test/test/fixedbugs/bug195.go new file mode 100644 index 0000000..65ab02a --- /dev/null +++ b/gcc/testsuite/go.test/test/fixedbugs/bug195.go @@ -0,0 +1,27 @@ +// errchk $G $D/$F.go + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package main + +type I1 interface { I2 } // ERROR "interface" +type I2 int + +type I3 interface { int } // ERROR "interface" + +type S struct { + x interface{ S } // ERROR "interface" +} +type I4 interface { + I4 // ERROR "interface" +} + +type I5 interface { + I6 // GCCGO_ERROR "interface" +} + +type I6 interface { + I5 // GC_ERROR "interface" +} diff --git a/gcc/testsuite/go.test/test/fixedbugs/bug196.go b/gcc/testsuite/go.test/test/fixedbugs/bug196.go new file mode 100644 index 0000000..ea8ab0d --- /dev/null +++ b/gcc/testsuite/go.test/test/fixedbugs/bug196.go @@ -0,0 +1,50 @@ +// $G $D/$F.go && $L $F.$A && ./$A.out || echo BUG: bug196 + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package main + +var m = map[int]int{0: 0, 1: 0} +var nf = 0 +var i int + +func multi() (int, int) { return 1, 2 } + +func xxx() { + var c chan int + x, ok := <-c + + var m map[int]int + x, ok = m[1] + + var i interface{} + var xx int + xx, ok = i.(int) + + a, b := multi() + + _, _, _, _, _ = x, ok, xx, a, b +} + +func f() map[int]int { + nf++ + return m +} + +func g() *int { + nf++ + return &i +} + +func main() { + f()[0]++ + f()[1] += 2 + *g() %= 2 + if nf != 3 { + println("too many calls:", nf) + panic("fail") + } + +} diff --git a/gcc/testsuite/go.test/test/fixedbugs/bug197.go b/gcc/testsuite/go.test/test/fixedbugs/bug197.go new file mode 100644 index 0000000..c205c5b --- /dev/null +++ b/gcc/testsuite/go.test/test/fixedbugs/bug197.go @@ -0,0 +1,33 @@ +// errchk $G $D/$F.go + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package main + +type T int +type U int + +var x int + +var t T = int(0) // ERROR "cannot use|incompatible" +var t1 T = int(x) // ERROR "cannot use|incompatible" +var u U = int(0) // ERROR "cannot use|incompatible" +var u1 U = int(x) // ERROR "cannot use|incompatible" + +type S string +var s S + +var s1 = s + "hello" +var s2 = "hello" + s +var s3 = s + string("hello") // ERROR "invalid operation|incompatible" +var s4 = string("hello") + s // ERROR "invalid operation|incompatible" + +var r string + +var r1 = r + "hello" +var r2 = "hello" + r +var r3 = r + string("hello") +var r4 = string("hello") + r + diff --git a/gcc/testsuite/go.test/test/fixedbugs/bug198.go b/gcc/testsuite/go.test/test/fixedbugs/bug198.go new file mode 100644 index 0000000..ea71fad --- /dev/null +++ b/gcc/testsuite/go.test/test/fixedbugs/bug198.go @@ -0,0 +1,12 @@ +// errchk $G $D/$F.go + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package main +func f(a T) T { return a } // ERROR "undefined" +func main() { + x := f(0); + _ = x; +} diff --git a/gcc/testsuite/go.test/test/fixedbugs/bug199.go b/gcc/testsuite/go.test/test/fixedbugs/bug199.go new file mode 100644 index 0000000..7122629 --- /dev/null +++ b/gcc/testsuite/go.test/test/fixedbugs/bug199.go @@ -0,0 +1,27 @@ +// $G $D/$F.go && $L $F.$A && ./$A.out + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package main + +type S struct { + a []int +} + +var s = &S{make([]int, 10)} + +func main() { + s.a[f()] = 1 // 6g used to call f twice here +} + +var n int + +func f() int { + if n++; n > 1 { + println("f twice") + panic("fail") + } + return 0 +} diff --git a/gcc/testsuite/go.test/test/fixedbugs/bug200.go b/gcc/testsuite/go.test/test/fixedbugs/bug200.go new file mode 100644 index 0000000..123f687 --- /dev/null +++ b/gcc/testsuite/go.test/test/fixedbugs/bug200.go @@ -0,0 +1,19 @@ +// errchk $G $D/$F.go + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package main + +func main() { + // 6g used to compile these as two different + // hash codes so it missed the duplication + // and worse, compiled the wrong code + // for one of them. + var x interface{}; + switch v := x.(type) { + case func(int): + case func(f int): // ERROR "duplicate" + } +} diff --git a/gcc/testsuite/go.test/test/fixedbugs/bug201.go b/gcc/testsuite/go.test/test/fixedbugs/bug201.go new file mode 100644 index 0000000..f7db62fc --- /dev/null +++ b/gcc/testsuite/go.test/test/fixedbugs/bug201.go @@ -0,0 +1,48 @@ +// $G $D/$F.go && $L $F.$A && ./$A.out + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package main + +type T1 struct { + x, y int +} +type T2 struct { + z, w byte +} +type T3 T1 + +type MyInt int + +func (MyInt) m(*T1) {} + +func main() { + { + var i interface{} = new(T1) + _, ok1 := i.(*T1) + _, ok2 := i.(*T2) + _, ok3 := i.(*T3) + if !ok1 || ok2 || ok3 { + println("*T1", ok1, ok2, ok3) + panic("fail") + } + } + { + var i interface{} = MyInt(0) + _, ok1 := i.(interface { + m(*T1) + }) + _, ok2 := i.(interface { + m(*T2) + }) + _, ok3 := i.(interface { + m(*T3) + }) + if !ok1 || ok2 || ok3 { + println("T", ok1, ok2, ok3) + panic("fail") + } + } +} diff --git a/gcc/testsuite/go.test/test/fixedbugs/bug202.go b/gcc/testsuite/go.test/test/fixedbugs/bug202.go new file mode 100644 index 0000000..2fc91b5 --- /dev/null +++ b/gcc/testsuite/go.test/test/fixedbugs/bug202.go @@ -0,0 +1,16 @@ +// $G $D/$F.go && $L $F.$A && ./$A.out || echo BUG should run + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package main +func f() { + v := [...]string{"a", "b"}; + _ = v; +} +func main() { + f(); +} + + diff --git a/gcc/testsuite/go.test/test/fixedbugs/bug203.go b/gcc/testsuite/go.test/test/fixedbugs/bug203.go new file mode 100644 index 0000000..bf86ee9 --- /dev/null +++ b/gcc/testsuite/go.test/test/fixedbugs/bug203.go @@ -0,0 +1,18 @@ +// $G $D/$F.go && $L $F.$A && ./$A.out + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package main + +var s [8]string + +func +init() { + s = [...]string{ "now", "is", "the", "time", "to", "fix", "this", "bug"} +} + +func +main() { +} diff --git a/gcc/testsuite/go.test/test/fixedbugs/bug204.go b/gcc/testsuite/go.test/test/fixedbugs/bug204.go new file mode 100644 index 0000000..d4534c2 --- /dev/null +++ b/gcc/testsuite/go.test/test/fixedbugs/bug204.go @@ -0,0 +1,24 @@ +// $G $D/$F.go && $L $F.$A && ./$A.out + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package main + +func main() { + nchar := 0; + a := []int { '日', '本', '語', 0xFFFD }; + for _, char := range "日本語\xc0" { + if nchar >= len(a) { + println("BUG"); + break; + } + if char != a[nchar] { + println("expected", a[nchar], "got", char); + println("BUG"); + break; + } + nchar++; + } +} diff --git a/gcc/testsuite/go.test/test/fixedbugs/bug205.go b/gcc/testsuite/go.test/test/fixedbugs/bug205.go new file mode 100644 index 0000000..4262ec1 --- /dev/null +++ b/gcc/testsuite/go.test/test/fixedbugs/bug205.go @@ -0,0 +1,18 @@ +// errchk $G $D/$F.go + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package main + +var t []int +var s string; +var m map[string]int; + +func main() { + println(t["hi"]); // ERROR "integer" + println(s["hi"]); // ERROR "integer" + println(m[0]); // ERROR "map index" +} + diff --git a/gcc/testsuite/go.test/test/fixedbugs/bug206.go b/gcc/testsuite/go.test/test/fixedbugs/bug206.go new file mode 100644 index 0000000..3879e8c --- /dev/null +++ b/gcc/testsuite/go.test/test/fixedbugs/bug206.go @@ -0,0 +1,48 @@ +// $G $D/$F.go && $L $F.$A && ./$A.out >/dev/null 2>&1 || echo BUG: bug206 + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package main + +import "go/ast"; + +func g(list []ast.Expr) { + n := len(list)-1; + println(list[n].Pos().Line); +} + + +// f is the same as g except that the expression assigned to n is inlined. +func f(list []ast.Expr) { + // n := len(list)-1; + println(list[len(list)-1 /* n */].Pos().Line); +} + + +func main() { + list := []ast.Expr{&ast.Ident{}}; + g(list); // this works + f(list); // this doesn't +} + + +/* +0 +throw: index out of range + +panic PC=0x2bcf10 +throw+0x33 /home/gri/go/src/pkg/runtime/runtime.c:71 + throw(0x470f8, 0x0) +sys·throwindex+0x1c /home/gri/go/src/pkg/runtime/runtime.c:45 + sys·throwindex() +main·f+0x26 /home/gri/go/test/bugs/bug206.go:16 + main·f(0x2b9560, 0x0) +main·main+0xc3 /home/gri/go/test/bugs/bug206.go:23 + main·main() +mainstart+0xf /home/gri/go/src/pkg/runtime/amd64/asm.s:55 + mainstart() +goexit /home/gri/go/src/pkg/runtime/proc.c:133 + goexit() +*/ diff --git a/gcc/testsuite/go.test/test/fixedbugs/bug207.go b/gcc/testsuite/go.test/test/fixedbugs/bug207.go new file mode 100644 index 0000000..5810d66 --- /dev/null +++ b/gcc/testsuite/go.test/test/fixedbugs/bug207.go @@ -0,0 +1,23 @@ +// $G $D/$F.go && $L $F.$A && ./$A.out + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +// used to panic because 6g didn't generate +// the code to fill in the ... argument to fmt.Sprint. + +package main + +import "fmt" + +type T struct { + a, b, c, d, e []int; +} + +var t T + +func main() { + if fmt.Sprint("xxx", t) != "yyy" { + } +} diff --git a/gcc/testsuite/go.test/test/fixedbugs/bug208.go b/gcc/testsuite/go.test/test/fixedbugs/bug208.go new file mode 100644 index 0000000..13b0400 --- /dev/null +++ b/gcc/testsuite/go.test/test/fixedbugs/bug208.go @@ -0,0 +1,20 @@ +// errchk $G $D/$F.go + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package main + +type T struct +{ + f int; +} + +// 6g used to get confused by the f:1 above +// and allow uses of f that would be silently +// dropped during the compilation. +var _ = f; // ERROR "undefined" + +var _ = T{f: 1} + diff --git a/gcc/testsuite/go.test/test/fixedbugs/bug209.go b/gcc/testsuite/go.test/test/fixedbugs/bug209.go new file mode 100644 index 0000000..ae6f10f --- /dev/null +++ b/gcc/testsuite/go.test/test/fixedbugs/bug209.go @@ -0,0 +1,18 @@ +// errchk $G $D/$F.go + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package main + +func main() { + var buf [10]int; + for ; len(buf); { // ERROR "bool" + } +} + +/* +uetli:/home/gri/go/test/bugs gri$ 6g bug209.go +bug209.go:5: Bus error +*/ diff --git a/gcc/testsuite/go.test/test/fixedbugs/bug211.go b/gcc/testsuite/go.test/test/fixedbugs/bug211.go new file mode 100644 index 0000000..69aeeee --- /dev/null +++ b/gcc/testsuite/go.test/test/fixedbugs/bug211.go @@ -0,0 +1,14 @@ +// errchk $G $D/$F.go + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package main + +type R interface { duplicate() } +type S interface { duplicate() } +type T interface { R; S } // ERROR "duplicate" + +func main() { +} diff --git a/gcc/testsuite/go.test/test/fixedbugs/bug212.go b/gcc/testsuite/go.test/test/fixedbugs/bug212.go new file mode 100644 index 0000000..51df9b8 --- /dev/null +++ b/gcc/testsuite/go.test/test/fixedbugs/bug212.go @@ -0,0 +1,12 @@ +// errchk $G $D/$F.go + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package main +type I int +type S struct { f map[I]int } +var v1 = S{ make(map[int]int) } // ERROR "cannot|illegal|incompatible|wrong" +var v2 map[I]int = map[int]int{} // ERROR "cannot|illegal|incompatible|wrong" +var v3 = S{ make(map[uint]int) } // ERROR "cannot|illegal|incompatible|wrong" diff --git a/gcc/testsuite/go.test/test/fixedbugs/bug213.go b/gcc/testsuite/go.test/test/fixedbugs/bug213.go new file mode 100644 index 0000000..07d9f90 --- /dev/null +++ b/gcc/testsuite/go.test/test/fixedbugs/bug213.go @@ -0,0 +1,16 @@ +// errchk $G $D/$F.go + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package main +func main() { + var v interface{} = 0; + switch x := v.(type) { + case int: + fallthrough; // ERROR "fallthrough" + default: + panic("fell through"); + } +} diff --git a/gcc/testsuite/go.test/test/fixedbugs/bug214.go b/gcc/testsuite/go.test/test/fixedbugs/bug214.go new file mode 100644 index 0000000..502e698 --- /dev/null +++ b/gcc/testsuite/go.test/test/fixedbugs/bug214.go @@ -0,0 +1,15 @@ +// $G $D/$F.go || echo BUG: bug214 + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +// Used to crash the compiler. +// http://code.google.com/p/go/issues/detail?id=88 + +package main + +func main() { + x := make(map[int]int, 10); + x[0], x[1] = 2, 6; +} diff --git a/gcc/testsuite/go.test/test/fixedbugs/bug215.go b/gcc/testsuite/go.test/test/fixedbugs/bug215.go new file mode 100644 index 0000000..8f7fb2d --- /dev/null +++ b/gcc/testsuite/go.test/test/fixedbugs/bug215.go @@ -0,0 +1,14 @@ +// errchk $G $D/$F.go + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +// Used to crash the compiler. +// http://code.google.com/p/go/issues/detail?id=158 + +package main + +type A struct { a A } // ERROR "recursive" +func foo() { new(A).bar() } +func (a A) bar() {} diff --git a/gcc/testsuite/go.test/test/fixedbugs/bug216.go b/gcc/testsuite/go.test/test/fixedbugs/bug216.go new file mode 100644 index 0000000..76f8546 --- /dev/null +++ b/gcc/testsuite/go.test/test/fixedbugs/bug216.go @@ -0,0 +1,20 @@ +// $G $D/$F.go || echo BUG: bug216 + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +// Used to be rejected +// http://code.google.com/p/go/issues/detail?id=188 + +package main + +func complexSqrt(i int) (int, int) { return 0, 1 } + +var re, im = complexSqrt(-1) + +func main() { + if re != 0 || im != 1 { + println("BUG: bug216: want 0,-1 have ", re, im) + } +} diff --git a/gcc/testsuite/go.test/test/fixedbugs/bug217.go b/gcc/testsuite/go.test/test/fixedbugs/bug217.go new file mode 100644 index 0000000..98334c4 --- /dev/null +++ b/gcc/testsuite/go.test/test/fixedbugs/bug217.go @@ -0,0 +1,15 @@ +// errchk $G $D/$F.go + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +// Used to crash +// http://code.google.com/p/go/issues/detail?id=204 + +package main + +func () x() // ERROR "no receiver" + +func (a b, c d) x() // ERROR "multiple receiver" + diff --git a/gcc/testsuite/go.test/test/fixedbugs/bug218.go b/gcc/testsuite/go.test/test/fixedbugs/bug218.go new file mode 100644 index 0000000..b2c9ede --- /dev/null +++ b/gcc/testsuite/go.test/test/fixedbugs/bug218.go @@ -0,0 +1,23 @@ +// $G $D/$F.go || echo BUG: bug218 + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +// Crashes 6g, 8g +// http://code.google.com/p/go/issues/detail?id=238 + +package main + +func main() { + bar := make(chan bool); + select { + case _ = <-bar: + return + } +} + +/* +6g bug218.go +<epoch>: fatal error: dowidth: unknown type: blank +*/ diff --git a/gcc/testsuite/go.test/test/fixedbugs/bug219.go b/gcc/testsuite/go.test/test/fixedbugs/bug219.go new file mode 100644 index 0000000..21361a2 --- /dev/null +++ b/gcc/testsuite/go.test/test/fixedbugs/bug219.go @@ -0,0 +1,38 @@ +// $G $D/$F.go || echo BUG: bug219 + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package main + +func f(func()) int { return 0 } + +// this doesn't work: +// bug219.go:16: syntax error near if +func g1() { + if x := f(func() { + if {} + }); { + _ = x; + } +} + +// this works +func g2() { + if x := f(func() { + //if {} + }); { + _ = x; + } +} + +// this works +func g3() { + x := f(func() { + if {} + }); + if { + _ = x; + } +} diff --git a/gcc/testsuite/go.test/test/fixedbugs/bug220.go b/gcc/testsuite/go.test/test/fixedbugs/bug220.go new file mode 100644 index 0000000..3f8aaa4 --- /dev/null +++ b/gcc/testsuite/go.test/test/fixedbugs/bug220.go @@ -0,0 +1,14 @@ +// $G $D/$F.go || echo BUG: bug220 + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package main + +func main() { + m := make(map[int]map[uint]float); + + m[0] = make(map[uint]float), false; // 6g used to reject this + m[1] = nil; +} diff --git a/gcc/testsuite/go.test/test/fixedbugs/bug221.go b/gcc/testsuite/go.test/test/fixedbugs/bug221.go new file mode 100644 index 0000000..b645831 --- /dev/null +++ b/gcc/testsuite/go.test/test/fixedbugs/bug221.go @@ -0,0 +1,42 @@ +// $G $D/$F.go && $L $F.$A && ./$A.out + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +// function call arg reordering was picking out 1 call that +// didn't need to be in a temporary, but it was picking +// out the first call instead of the last call. +// http://code.google.com/p/go/issues/detail?id=370 + +package main + +var gen = 'a' + +func f(n int) string { + s := string(gen) + string(n+'A'-1) + gen++ + return s +} + +func g(x, y string) string { + return x + y +} + +func main() { + s := f(1) + f(2) + if s != "aAbB" { + println("BUG: bug221a: ", s) + panic("fail") + } + s = g(f(3), f(4)) + if s != "cCdD" { + println("BUG: bug221b: ", s) + panic("fail") + } + s = f(5) + f(6) + f(7) + f(8) + f(9) + if s != "eEfFgGhHiI" { + println("BUG: bug221c: ", s) + panic("fail") + } +} diff --git a/gcc/testsuite/go.test/test/fixedbugs/bug222.dir/chanbug.go b/gcc/testsuite/go.test/test/fixedbugs/bug222.dir/chanbug.go new file mode 100644 index 0000000..9194927 --- /dev/null +++ b/gcc/testsuite/go.test/test/fixedbugs/bug222.dir/chanbug.go @@ -0,0 +1,5 @@ +package chanbug +var C chan<- (chan int) +var D chan<- func() +var E func() chan int +var F func() (func()) diff --git a/gcc/testsuite/go.test/test/fixedbugs/bug222.dir/chanbug2.go b/gcc/testsuite/go.test/test/fixedbugs/bug222.dir/chanbug2.go new file mode 100644 index 0000000..73e1667 --- /dev/null +++ b/gcc/testsuite/go.test/test/fixedbugs/bug222.dir/chanbug2.go @@ -0,0 +1,2 @@ +package Bar +import _ "chanbug" diff --git a/gcc/testsuite/go.test/test/fixedbugs/bug222.go b/gcc/testsuite/go.test/test/fixedbugs/bug222.go new file mode 100644 index 0000000..5c23a53 --- /dev/null +++ b/gcc/testsuite/go.test/test/fixedbugs/bug222.go @@ -0,0 +1,7 @@ +// $G $D/$F.dir/chanbug.go && $G -I. $D/$F.dir/chanbug2.go + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +ignored diff --git a/gcc/testsuite/go.test/test/fixedbugs/bug223.go b/gcc/testsuite/go.test/test/fixedbugs/bug223.go new file mode 100644 index 0000000..80f9cae --- /dev/null +++ b/gcc/testsuite/go.test/test/fixedbugs/bug223.go @@ -0,0 +1,21 @@ +// (! $G $D/$F.go) | grep 'initialization loop' >/dev/null || echo BUG: bug223 + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +// check that initialization loop is diagnosed +// and that closure cannot be used to hide it. +// error message is not standard format, so no errchk above. + +package main + +type F func() + +func f() { + if true { + _ = func() { _ = m } + } +} + +var m = map[string]F{"f": f} diff --git a/gcc/testsuite/go.test/test/fixedbugs/bug224.go b/gcc/testsuite/go.test/test/fixedbugs/bug224.go new file mode 100644 index 0000000..11ee57e --- /dev/null +++ b/gcc/testsuite/go.test/test/fixedbugs/bug224.go @@ -0,0 +1,10 @@ +// errchk $G $D/$F.go + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package main + +type T T // ERROR "recursive" + diff --git a/gcc/testsuite/go.test/test/fixedbugs/bug225.go b/gcc/testsuite/go.test/test/fixedbugs/bug225.go new file mode 100644 index 0000000..8acf66c --- /dev/null +++ b/gcc/testsuite/go.test/test/fixedbugs/bug225.go @@ -0,0 +1,22 @@ +// $G $D/$F.go && $L $F.$A && ./$A.out + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package main + +func main() { + c := make(chan bool, 1); + select { + case _ = <-c: + panic("BUG: recv should not"); + default: + } + c <- true; + select { + case _ = <-c: + default: + panic("BUG: recv should"); + } +} diff --git a/gcc/testsuite/go.test/test/fixedbugs/bug226.dir/x.go b/gcc/testsuite/go.test/test/fixedbugs/bug226.dir/x.go new file mode 100644 index 0000000..64d7a29 --- /dev/null +++ b/gcc/testsuite/go.test/test/fixedbugs/bug226.dir/x.go @@ -0,0 +1,9 @@ +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package x + +type T struct { x, Y int } + +func (t T) M() diff --git a/gcc/testsuite/go.test/test/fixedbugs/bug226.dir/y.go b/gcc/testsuite/go.test/test/fixedbugs/bug226.dir/y.go new file mode 100644 index 0000000..01e8b7b --- /dev/null +++ b/gcc/testsuite/go.test/test/fixedbugs/bug226.dir/y.go @@ -0,0 +1,31 @@ +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package y + +import "./x" + +func f() { + ok := new(x.T); + var ok1 x.T; + ok2 := &ok1; + ok3 := &x.T{}; + ok4 := &x.T{Y:2}; + _ = x.T{}; + _ = x.T{Y:2}; + + ok1.M(); // ERROR "assignment.*T" + bad1 := *ok; // ERROR "assignment.*T" + bad2 := ok1; // ERROR "assignment.*T" + *ok4 = ok1; // ERROR "assignment.*T" + *ok4 = *ok2; // ERROR "assignment.*T" + ok1 = *ok4; // ERROR "assignment.*T" + _ = bad1; + _ = bad2; + _ = ok4; + _ = ok3; + _ = ok2; + _ = ok1; + _ = ok; +} diff --git a/gcc/testsuite/go.test/test/fixedbugs/bug226.go b/gcc/testsuite/go.test/test/fixedbugs/bug226.go new file mode 100644 index 0000000..5457a64 --- /dev/null +++ b/gcc/testsuite/go.test/test/fixedbugs/bug226.go @@ -0,0 +1,7 @@ +// $G $D/$F.dir/x.go && errchk $G $D/$F.dir/y.go + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +ignored diff --git a/gcc/testsuite/go.test/test/fixedbugs/bug227.go b/gcc/testsuite/go.test/test/fixedbugs/bug227.go new file mode 100644 index 0000000..a608660 --- /dev/null +++ b/gcc/testsuite/go.test/test/fixedbugs/bug227.go @@ -0,0 +1,36 @@ +// $G $D/$F.go && $L $F.$A && ./$A.out + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package main + +var ( + nf int + x, y, z = f(), f(), f() + m = map[string]string{"a": "A"} + a, aok = m["a"] + b, bok = m["b"] +) + +func look(s string) (string, bool) { + x, ok := m[s] + return x, ok +} + +func f() int { + nf++ + return nf +} + +func main() { + if nf != 3 || x != 1 || y != 2 || z != 3 { + println("nf=", nf, " x=", x, " y=", y) + panic("fail") + } + if a != "A" || aok != true || b != "" || bok != false { + println("a=", a, " aok=", aok, " b=", b, " bok=", bok) + panic("fail") + } +} diff --git a/gcc/testsuite/go.test/test/fixedbugs/bug228.go b/gcc/testsuite/go.test/test/fixedbugs/bug228.go new file mode 100644 index 0000000..81bc908 --- /dev/null +++ b/gcc/testsuite/go.test/test/fixedbugs/bug228.go @@ -0,0 +1,19 @@ +// errchk $G -e $D/$F.go + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package main + +func f(x int, y ...int) // ok + +func g(x int, y float) (...) // ERROR "[.][.][.]" + +func h(x, y ...int) // ERROR "[.][.][.]" + +func i(x int, y ...int, z float) // ERROR "[.][.][.]" + +var x ...int; // ERROR "[.][.][.]|syntax|type" + +type T ...int; // ERROR "[.][.][.]|syntax|type" diff --git a/gcc/testsuite/go.test/test/fixedbugs/bug229.go b/gcc/testsuite/go.test/test/fixedbugs/bug229.go new file mode 100644 index 0000000..fe0f0d8 --- /dev/null +++ b/gcc/testsuite/go.test/test/fixedbugs/bug229.go @@ -0,0 +1,20 @@ +// errchk $G -e $D/$F.go + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package main + +import "testing" + +func main() { + var t testing.T + + // make sure error mentions that + // ch is unexported, not just "ch not found". + + t.ch = nil // ERROR "unexported" + + println(testing.anyLowercaseName("asdf")) // ERROR "unexported" +} diff --git a/gcc/testsuite/go.test/test/fixedbugs/bug230.go b/gcc/testsuite/go.test/test/fixedbugs/bug230.go new file mode 100644 index 0000000..81b256e --- /dev/null +++ b/gcc/testsuite/go.test/test/fixedbugs/bug230.go @@ -0,0 +1,25 @@ +// $G $D/$F.go && $L $F.$A && ./$A.out + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package main + +type S string +type I int +type F float + +func (S) m() {} +func (I) m() {} +func (F) m() {} + +func main() { + c := make(chan interface { m() }, 10) + c <- I(0) + c <- F(1) + c <- S("hi") + <-c + <-c + <-c +} diff --git a/gcc/testsuite/go.test/test/fixedbugs/bug231.go b/gcc/testsuite/go.test/test/fixedbugs/bug231.go new file mode 100644 index 0000000..91996d3 --- /dev/null +++ b/gcc/testsuite/go.test/test/fixedbugs/bug231.go @@ -0,0 +1,22 @@ +// errchk $G -e $D/$F.go + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package main + +type I interface { m() } +type T struct { m func() } +type M struct {} +func (M) m() {} + +func main() { + var t T + var m M + var i I + + i = m + i = t // ERROR "not a method|has no methods" + _ = i +} diff --git a/gcc/testsuite/go.test/test/fixedbugs/bug232.go b/gcc/testsuite/go.test/test/fixedbugs/bug232.go new file mode 100644 index 0000000..99bd02f --- /dev/null +++ b/gcc/testsuite/go.test/test/fixedbugs/bug232.go @@ -0,0 +1,8 @@ +// $G $D/$F.go + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package main +type I interface { X(...int) } diff --git a/gcc/testsuite/go.test/test/fixedbugs/bug233.go b/gcc/testsuite/go.test/test/fixedbugs/bug233.go new file mode 100644 index 0000000..31bb673 --- /dev/null +++ b/gcc/testsuite/go.test/test/fixedbugs/bug233.go @@ -0,0 +1,10 @@ +// $G $D/$F.go + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package main +import p "fmt" +var _ = p.Print +var fmt = 10 diff --git a/gcc/testsuite/go.test/test/fixedbugs/bug234.go b/gcc/testsuite/go.test/test/fixedbugs/bug234.go new file mode 100644 index 0000000..b806ca6 --- /dev/null +++ b/gcc/testsuite/go.test/test/fixedbugs/bug234.go @@ -0,0 +1,22 @@ +// $G $D/$F.go && $L $F.$A && ./$A.out + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package main + +func main() { + c := make(chan int, 1) + c <- 100 + x, ok := <-c + if x != 100 || !ok { + println("x=", x, " ok=", ok, " want 100, true") + panic("fail") + } + x, ok = <-c + if x != 0 || ok { + println("x=", x, " ok=", ok, " want 0, false") + panic("fail") + } +} diff --git a/gcc/testsuite/go.test/test/fixedbugs/bug235.go b/gcc/testsuite/go.test/test/fixedbugs/bug235.go new file mode 100644 index 0000000..8cecd9d --- /dev/null +++ b/gcc/testsuite/go.test/test/fixedbugs/bug235.go @@ -0,0 +1,17 @@ +// $G $D/$F.go + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +// used to crash the compiler + +package main + +type T struct { + x [4]byte +} + +var p *T +var v = *p + diff --git a/gcc/testsuite/go.test/test/fixedbugs/bug236.go b/gcc/testsuite/go.test/test/fixedbugs/bug236.go new file mode 100644 index 0000000..895f82a --- /dev/null +++ b/gcc/testsuite/go.test/test/fixedbugs/bug236.go @@ -0,0 +1,53 @@ +// $G $D/$F.go && $L $F.$A && ./$A.out + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package main + +var gen = 'a' + +func f(n int) string { + s := string(gen) + string(n+'A'-1) + gen++ + return s +} + +func g(x, y string) string { return x + y } + +var v1 = f(1) + f(2) +var v2 = g(f(3), f(4)) +var v3 = f(5) + f(6) + f(7) + f(8) + f(9) + +func main() { + gen = 'a' + + if v1 != "aAbB" { + panic("BUG: bug236a") + } + if v2 != "cCdD" { + panic("BUG: bug236b") + } + if v3 != "eEfFgGhHiI" { + panic("BUG: bug236c") + } + + switch "aAbB" { + case f(1) + f(2): + default: + panic("BUG: bug236d") + } + + switch "cCdD" { + case g(f(3), f(4)): + default: + panic("BUG: bug236e") + } + + switch "eEfFgGhHiI" { + case f(5) + f(6) + f(7) + f(8) + f(9): + default: + panic("BUG: bug236f") + } +} diff --git a/gcc/testsuite/go.test/test/fixedbugs/bug237.go b/gcc/testsuite/go.test/test/fixedbugs/bug237.go new file mode 100644 index 0000000..55cc86a --- /dev/null +++ b/gcc/testsuite/go.test/test/fixedbugs/bug237.go @@ -0,0 +1,25 @@ +// $G $D/$F.go && $L $F.$A && ./$A.out + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package main + +import "fmt" + +var indent uint = 10 +func main() { + const dots = ". . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . " + + ". . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . " + const n = uint(len(dots)) + i := 2 * indent + var s string + for ; i > n; i -= n { + s += fmt.Sprint(dots) + } + s += dots[0:i] + if s != ". . . . . . . . . . " { + panic(s) + } +} diff --git a/gcc/testsuite/go.test/test/fixedbugs/bug238.go b/gcc/testsuite/go.test/test/fixedbugs/bug238.go new file mode 100644 index 0000000..8b7c7ac --- /dev/null +++ b/gcc/testsuite/go.test/test/fixedbugs/bug238.go @@ -0,0 +1,22 @@ +// errchk $G -e $D/$F.go + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +// Test case for issue 471. This file shouldn't compile. + +package main + +const a *int = 1 // ERROR "convert|wrong|invalid" +const b [2]int = 2 // ERROR "convert|wrong|invalid" +const c map[int]int = 3 // ERROR "convert|wrong|invalid" +const d chan int = 4 // ERROR "convert|wrong|invalid" +const e func() = 5 // ERROR "convert|wrong|invalid" +const f struct{} = 6 // ERROR "convert|wrong|invalid" +const g interface{} = 7 // ERROR "constant|wrong|invalid" +const h bool = false +const i int = 2 +const j float = 5 + +func main() { println(a, b, c, d, e, f, g) } diff --git a/gcc/testsuite/go.test/test/fixedbugs/bug239.go b/gcc/testsuite/go.test/test/fixedbugs/bug239.go new file mode 100644 index 0000000..32c3d7e --- /dev/null +++ b/gcc/testsuite/go.test/test/fixedbugs/bug239.go @@ -0,0 +1,21 @@ +// $G $D/$F.go || echo BUG: bug239 + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +// Test case for issue 475. This file should compile. + +package main + +import . "unsafe" + +func main() { + var x int + println(Sizeof(x)) +} + +/* +bug239.go:11: imported and not used: unsafe +bug239.go:15: undefined: Sizeof +*/ diff --git a/gcc/testsuite/go.test/test/fixedbugs/bug240.go b/gcc/testsuite/go.test/test/fixedbugs/bug240.go new file mode 100644 index 0000000..6cba9c8 --- /dev/null +++ b/gcc/testsuite/go.test/test/fixedbugs/bug240.go @@ -0,0 +1,20 @@ +// errchk $G -e $D/$F.go + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package main + +import . "unsafe" // ERROR "not used" + +func main() { + var x int + println(unsafe.Sizeof(x)) // ERROR "undefined" +} + +/* +After a '.' import, "unsafe" shouldn't be defined as +an identifier. 6g complains correctly for imports other +than "unsafe". +*/ diff --git a/gcc/testsuite/go.test/test/fixedbugs/bug241.go b/gcc/testsuite/go.test/test/fixedbugs/bug241.go new file mode 100644 index 0000000..172b374 --- /dev/null +++ b/gcc/testsuite/go.test/test/fixedbugs/bug241.go @@ -0,0 +1,11 @@ +// errchk $G $D/$F.go + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package main + +const c = 3 +var x = c.String() // ERROR "String" + diff --git a/gcc/testsuite/go.test/test/fixedbugs/bug242.go b/gcc/testsuite/go.test/test/fixedbugs/bug242.go new file mode 100644 index 0000000..5c21eaa --- /dev/null +++ b/gcc/testsuite/go.test/test/fixedbugs/bug242.go @@ -0,0 +1,131 @@ +// $G $D/$F.go && $L $F.$A && ./$A.out || echo BUG: tuple evaluation order + +// Copyright 2010 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +// Test order of evaluation in tuple assignments. + +package main + +var i byte = 0 +var a [30]byte + +func f() *byte { + i++ + return &a[i-1] +} +func gbyte() byte { + i++ + return 'a' + i - 1 +} +func gint() byte { + i++ + return i - 1 +} +func x() (byte, byte) { + i++ + return 'a' + i - 1, 'a' + i - 1 +} +func e1(c chan byte, expected byte) chan byte { + if i != expected { + println("e1: got", i, "expected", expected) + panic("fail") + } + i++ + return c +} + +type Empty interface{} +type I interface { + Get() byte +} +type S1 struct { + i byte +} + +func (p S1) Get() byte { return p.i } + +type S2 struct { + i byte +} + +func e2(p Empty, expected byte) Empty { + if i != expected { + println("e2: got", i, "expected", expected) + panic("fail") + } + i++ + return p +} +func e3(p *I, expected byte) *I { + if i != expected { + println("e3: got", i, "expected", expected) + panic("fail") + } + i++ + return p +} + +func main() { + for i := range a { + a[i] = ' ' + } + + // 0 1 2 3 4 5 + *f(), *f(), *f() = gbyte(), gbyte(), gbyte() + + // 6 7 8 + *f(), *f() = x() + + m := make(map[byte]byte) + m[10] = 'A' + var p1, p2 bool + // 9 10 + *f(), p1 = m[gint()] + // 11 12 + *f(), p2 = m[gint()] + a[11] += '0' + if !p1 || p2 { + println("bad map check", i, p1, p2) + panic("fail") + } + + m[13] = 'B' + // 13 14 + m[gint()] = gbyte(), false + if _, present := m[13]; present { + println("bad map removal") + panic("fail") + } + + c := make(chan byte, 1) + c <- 'C' + // 15 16 + *f(), p1 = <-e1(c, 16) + // 17 18 + *f(), p2 = <-e1(c, 18) + a[17] += '0' + if !p1 || p2 { + println("bad chan check", i, p1, p2) + panic("fail") + } + + s1 := S1{'D'} + s2 := S2{'E'} + var iv I + // 19 20 + *e3(&iv, 19), p1 = e2(s1, 20).(I) + // 21 22 + *e3(&iv, 21), p2 = e2(s2, 22).(I) + if !p1 || p2 { + println("bad interface check", i, p1, p2) + panic("fail") + } + + s := string(a[0:i]) + if s != "def ii A 0 C 0 " { + println("bad array results:", s) + panic("fail") + } +} diff --git a/gcc/testsuite/go.test/test/fixedbugs/bug243.go b/gcc/testsuite/go.test/test/fixedbugs/bug243.go new file mode 100644 index 0000000..357f22e --- /dev/null +++ b/gcc/testsuite/go.test/test/fixedbugs/bug243.go @@ -0,0 +1,26 @@ +// [ $GOOS != nacl ] || exit 0 # no network +// $G $D/$F.go && $L $F.$A && ./$A.out + +// Copyright 2010 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package main + +import ( + "net" +) + +func main() { + var listen, _ = net.Listen("tcp", "127.0.0.1:0") + + go func() { + for { + var conn, _ = listen.Accept() + _ = conn + } + }() + + var conn, _ = net.Dial("tcp", "", listen.Addr().String()) + _ = conn +} diff --git a/gcc/testsuite/go.test/test/fixedbugs/bug244.go b/gcc/testsuite/go.test/test/fixedbugs/bug244.go new file mode 100644 index 0000000..915c3fc --- /dev/null +++ b/gcc/testsuite/go.test/test/fixedbugs/bug244.go @@ -0,0 +1,31 @@ +// $G $D/$F.go && $L $F.$A && ./$A.out + +// Copyright 2010 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package main + +var nf int +var ng int + +func f() (int, int, int) { + nf++ + return 1, 2, 3 +} + +func g() int { + ng++ + return 4 +} + +var x, y, z = f() +var m = make(map[int]int) +var v, ok = m[g()] + +func main() { + if x != 1 || y != 2 || z != 3 || nf != 1 || v != 0 || ok != false || ng != 1 { + println("x=", x, " y=", y, " z=", z, " nf=", nf, " v=", v, " ok=", ok, " ng=", ng) + panic("fail") + } +} diff --git a/gcc/testsuite/go.test/test/fixedbugs/bug245.go b/gcc/testsuite/go.test/test/fixedbugs/bug245.go new file mode 100644 index 0000000..6e5a8b3 --- /dev/null +++ b/gcc/testsuite/go.test/test/fixedbugs/bug245.go @@ -0,0 +1,16 @@ +// $G $D/$F.go || echo BUG: bug245 + +// Copyright 2010 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package main + +type T []int +func (t T) m() + +func main() { + _ = T{} +} + +// bug245.go:14: fatal error: method mismatch: T for T diff --git a/gcc/testsuite/go.test/test/fixedbugs/bug246.go b/gcc/testsuite/go.test/test/fixedbugs/bug246.go new file mode 100644 index 0000000..12041eb --- /dev/null +++ b/gcc/testsuite/go.test/test/fixedbugs/bug246.go @@ -0,0 +1,23 @@ +// $G $D/$F.go && $L $F.$A && ./$A.out || echo BUG: bug246 + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package main + +import "unsafe" + +func main() { + // works + addr := uintptr(0x234) + x1 := (*int)(unsafe.Pointer(addr)) + + // fails + x2 := (*int)(unsafe.Pointer(uintptr(0x234))) + + if x1 != x2 { + println("mismatch", x1, x2) + panic("fail") + } +} diff --git a/gcc/testsuite/go.test/test/fixedbugs/bug247.go b/gcc/testsuite/go.test/test/fixedbugs/bug247.go new file mode 100644 index 0000000..2f56b88 --- /dev/null +++ b/gcc/testsuite/go.test/test/fixedbugs/bug247.go @@ -0,0 +1,21 @@ +// $G $D/$F.go && $L $F.$A && ./$A.out || echo BUG: bug247 + +// Copyright 2010 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package main + +func main() { + const ( + Delta = 100 * 1e6 + Count = 10 + ) + _ = int64(Delta * Count) + var i interface{} = Count + j := i.(int) + if j != Count { + println("j=", j) + panic("fail") + } +} diff --git a/gcc/testsuite/go.test/test/fixedbugs/bug248.dir/bug0.go b/gcc/testsuite/go.test/test/fixedbugs/bug248.dir/bug0.go new file mode 100644 index 0000000..7fc7401 --- /dev/null +++ b/gcc/testsuite/go.test/test/fixedbugs/bug248.dir/bug0.go @@ -0,0 +1,9 @@ +package p + +type T struct { + X, Y int +} + +type I interface { + M(T) +} diff --git a/gcc/testsuite/go.test/test/fixedbugs/bug248.dir/bug1.go b/gcc/testsuite/go.test/test/fixedbugs/bug248.dir/bug1.go new file mode 100644 index 0000000..7fc7401 --- /dev/null +++ b/gcc/testsuite/go.test/test/fixedbugs/bug248.dir/bug1.go @@ -0,0 +1,9 @@ +package p + +type T struct { + X, Y int +} + +type I interface { + M(T) +} diff --git a/gcc/testsuite/go.test/test/fixedbugs/bug248.dir/bug2.go b/gcc/testsuite/go.test/test/fixedbugs/bug248.dir/bug2.go new file mode 100644 index 0000000..68c0ce0 --- /dev/null +++ b/gcc/testsuite/go.test/test/fixedbugs/bug248.dir/bug2.go @@ -0,0 +1,101 @@ +package main + +import ( + p0 "./bug0" + p1 "./bug1" + + "reflect" + "strings" +) + +var v0 p0.T +var v1 p1.T + +type I0 interface { + M(p0.T) +} + +type I1 interface { + M(p1.T) +} + +type t0 int + +func (t0) M(p0.T) {} + +type t1 float + +func (t1) M(p1.T) {} + +var i0 I0 = t0(0) // ok +var i1 I1 = t1(0) // ok + +var p0i p0.I = t0(0) // ok +var p1i p1.I = t1(0) // ok + +func main() { + // check that reflect paths are correct, + // meaning that reflect data for v0, v1 didn't get confused. + + // path is full (rooted) path name. check suffix for gc, prefix for gccgo + if s := reflect.Typeof(v0).PkgPath(); !strings.HasSuffix(s, "/bug0") && !strings.HasPrefix(s, "bug0") { + println("bad v0 path", len(s), s) + panic("fail") + } + if s := reflect.Typeof(v1).PkgPath(); !strings.HasSuffix(s, "/bug1") && !strings.HasPrefix(s, "bug1") { + println("bad v1 path", s) + panic("fail") + } + + // check that dynamic interface check doesn't get confused + var i interface{} = t0(0) + if _, ok := i.(I1); ok { + println("used t0 as i1") + panic("fail") + } + if _, ok := i.(p1.I); ok { + println("used t0 as p1.I") + panic("fail") + } + + i = t1(1) + if _, ok := i.(I0); ok { + println("used t1 as i0") + panic("fail") + } + if _, ok := i.(p0.I); ok { + println("used t1 as p0.I") + panic("fail") + } + + // check that type switch works. + // the worry is that if p0.T and p1.T have the same hash, + // the binary search will handle one of them incorrectly. + for j := 0; j < 3; j++ { + switch j { + case 0: + i = p0.T{} + case 1: + i = p1.T{} + case 2: + i = 3.14 + } + switch k := i.(type) { + case p0.T: + if j != 0 { + println("type switch p0.T") + panic("fail") + } + case p1.T: + if j != 1 { + println("type switch p1.T") + panic("fail") + } + default: + if j != 2 { + println("type switch default", j) + panic("fail") + } + } + } +} diff --git a/gcc/testsuite/go.test/test/fixedbugs/bug248.dir/bug3.go b/gcc/testsuite/go.test/test/fixedbugs/bug248.dir/bug3.go new file mode 100644 index 0000000..c96bf16 --- /dev/null +++ b/gcc/testsuite/go.test/test/fixedbugs/bug248.dir/bug3.go @@ -0,0 +1,69 @@ +package main + +import ( + p0 "./bug0" + p1 "./bug1" +) + +// both p0.T and p1.T are struct { X, Y int }. + +var v0 p0.T +var v1 p1.T + +// interfaces involving the two + +type I0 interface { + M(p0.T) +} + +type I1 interface { + M(p1.T) +} + +// t0 satisfies I0 and p0.I +type t0 int + +func (t0) M(p0.T) {} + +// t1 satisfies I1 and p1.I +type t1 float + +func (t1) M(p1.T) {} + +// check static interface assignments +var i0 I0 = t0(0) // ok +var i1 I1 = t1(0) // ok + +var i2 I0 = t1(0) // ERROR "does not implement|incompatible" +var i3 I1 = t0(0) // ERROR "does not implement|incompatible" + +var p0i p0.I = t0(0) // ok +var p1i p1.I = t1(0) // ok + +var p0i1 p0.I = t1(0) // ERROR "does not implement|incompatible" +var p0i2 p1.I = t0(0) // ERROR "does not implement|incompatible" + +func main() { + // check that cannot assign one to the other, + // but can convert. + v0 = v1 // ERROR "assign" + v1 = v0 // ERROR "assign" + + v0 = p0.T(v1) + v1 = p1.T(v0) + + i0 = i1 // ERROR "cannot use|incompatible" + i1 = i0 // ERROR "cannot use|incompatible" + p0i = i1 // ERROR "cannot use|incompatible" + p1i = i0 // ERROR "cannot use|incompatible" + i0 = p1i // ERROR "cannot use|incompatible" + i1 = p0i // ERROR "cannot use|incompatible" + p0i = p1i // ERROR "cannot use|incompatible" + p1i = p0i // ERROR "cannot use|incompatible" + + i0 = p0i + p0i = i0 + + i1 = p1i + p1i = i1 +} diff --git a/gcc/testsuite/go.test/test/fixedbugs/bug248.go b/gcc/testsuite/go.test/test/fixedbugs/bug248.go new file mode 100644 index 0000000..055bf1f --- /dev/null +++ b/gcc/testsuite/go.test/test/fixedbugs/bug248.go @@ -0,0 +1,12 @@ +// $G $D/$F.dir/bug0.go && +// $G $D/$F.dir/bug1.go && +// $G $D/$F.dir/bug2.go && +// errchk $G -e $D/$F.dir/bug3.go && +// $L bug2.$A && +// ./$A.out || echo BUG: failed to compile + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +ignored diff --git a/gcc/testsuite/go.test/test/fixedbugs/bug249.go b/gcc/testsuite/go.test/test/fixedbugs/bug249.go new file mode 100644 index 0000000..c85708f --- /dev/null +++ b/gcc/testsuite/go.test/test/fixedbugs/bug249.go @@ -0,0 +1,39 @@ +// errchk $G $D/$F.go + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package main + +var c1 chan <- chan int = (chan<- (chan int))(nil) +var c2 chan <- chan int = (chan (<-chan int))(nil) // ERROR "chan|incompatible" +var c3 <- chan chan int = (<-chan (chan int))(nil) +var c4 chan chan <- int = (chan (chan<- int))(nil) + +var c5 <- chan <- chan int = (<-chan (<-chan int))(nil) +var c6 chan <- <- chan int = (chan<- (<-chan int))(nil) +var c7 chan <- chan <- int = (chan<- (chan<- int))(nil) + +var c8 <- chan <- chan chan int = (<-chan (<-chan (chan int)))(nil) +var c9 <- chan chan <- chan int = (<-chan (chan<- (chan int)))(nil) +var c10 chan <- <- chan chan int = (chan<- (<-chan (chan int)))(nil) +var c11 chan <- chan <- chan int = (chan<- (chan<- (chan int)))(nil) +var c12 chan chan <- <- chan int = (chan (chan<- (<-chan int)))(nil) +var c13 chan chan <- chan <- int = (chan (chan<- (chan<- int)))(nil) + +var r1 chan<- (chan int) = (chan <- chan int)(nil) +var r2 chan (<-chan int) = (chan <- chan int)(nil) // ERROR "chan|incompatible" +var r3 <-chan (chan int) = (<- chan chan int)(nil) +var r4 chan (chan<- int) = (chan chan <- int)(nil) + +var r5 <-chan (<-chan int) = (<- chan <- chan int)(nil) +var r6 chan<- (<-chan int) = (chan <- <- chan int)(nil) +var r7 chan<- (chan<- int) = (chan <- chan <- int)(nil) + +var r8 <-chan (<-chan (chan int)) = (<- chan <- chan chan int)(nil) +var r9 <-chan (chan<- (chan int)) = (<- chan chan <- chan int)(nil) +var r10 chan<- (<-chan (chan int)) = (chan <- <- chan chan int)(nil) +var r11 chan<- (chan<- (chan int)) = (chan <- chan <- chan int)(nil) +var r12 chan (chan<- (<-chan int)) = (chan chan <- <- chan int)(nil) +var r13 chan (chan<- (chan<- int)) = (chan chan <- chan <- int)(nil) diff --git a/gcc/testsuite/go.test/test/fixedbugs/bug250.go b/gcc/testsuite/go.test/test/fixedbugs/bug250.go new file mode 100644 index 0000000..cd28642 --- /dev/null +++ b/gcc/testsuite/go.test/test/fixedbugs/bug250.go @@ -0,0 +1,19 @@ +// $G $D/$F.go || echo BUG: bug250 + +// Copyright 2010 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package main + +type I1 interface { + m() I2 +} + +type I2 interface { + I1 +} + +var i1 I1 = i2 +var i2 I2 +var i2a I2 = i1 diff --git a/gcc/testsuite/go.test/test/fixedbugs/bug251.go b/gcc/testsuite/go.test/test/fixedbugs/bug251.go new file mode 100644 index 0000000..c94ad2a --- /dev/null +++ b/gcc/testsuite/go.test/test/fixedbugs/bug251.go @@ -0,0 +1,21 @@ +// errchk $G $D/$F.go + +// Copyright 2010 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package main + +type I1 interface { + m() I2 + I2 // GCCGO_ERROR "loop|interface" +} + +type I2 interface { + I1 // GC_ERROR "loop|interface" +} + + +var i1 I1 = i2 // GC_ERROR "missing m method|need type assertion" +var i2 I2 +var i2a I2 = i1 diff --git a/gcc/testsuite/go.test/test/fixedbugs/bug252.go b/gcc/testsuite/go.test/test/fixedbugs/bug252.go new file mode 100644 index 0000000..bd11b86 --- /dev/null +++ b/gcc/testsuite/go.test/test/fixedbugs/bug252.go @@ -0,0 +1,15 @@ +// errchk $G $D/$F.go + +// Copyright 2010 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package main + +func f(args ...int) { + g(args) // ERROR "[.][.][.] mismatch" +} + +func g(args ...interface{}) { + f(args) // ERROR "[.][.][.] mismatch" +} diff --git a/gcc/testsuite/go.test/test/fixedbugs/bug253.go b/gcc/testsuite/go.test/test/fixedbugs/bug253.go new file mode 100644 index 0000000..bb5b770 --- /dev/null +++ b/gcc/testsuite/go.test/test/fixedbugs/bug253.go @@ -0,0 +1,29 @@ +// $G $D/$F.go && $L $F.$A && ./$A.out || echo BUG: bug253 + +// Copyright 2010 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package main + +type S1 struct { + i int +} +type S2 struct { + i int +} +type S3 struct { + S1 + S2 +} +type S4 struct { + S3 + S1 +} + +func main() { + var s4 S4 + if s4.i != 0 { // .i refers to s4.S1.i, unambiguously + panic("fail") + } +} diff --git a/gcc/testsuite/go.test/test/fixedbugs/bug254.go b/gcc/testsuite/go.test/test/fixedbugs/bug254.go new file mode 100644 index 0000000..c0c7f24 --- /dev/null +++ b/gcc/testsuite/go.test/test/fixedbugs/bug254.go @@ -0,0 +1,17 @@ +// $G $D/$F.go && $L $F.$A && ./$A.out || echo BUG: bug254 + +// Copyright 2010 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package main + +var a [10]int +var b [1e1]int + +func main() { + if len(a) != 10 || len(b) != 10 { + println("len", len(a), len(b)) + panic("fail") + } +} diff --git a/gcc/testsuite/go.test/test/fixedbugs/bug255.go b/gcc/testsuite/go.test/test/fixedbugs/bug255.go new file mode 100644 index 0000000..44427cf --- /dev/null +++ b/gcc/testsuite/go.test/test/fixedbugs/bug255.go @@ -0,0 +1,15 @@ +// errchk $G -e $D/$F.go + +// Copyright 2010 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package main + +var a [10]int // ok +var b [1e1]int // ok +var c [1.5]int // ERROR "truncated" +var d ["abc"]int // ERROR "invalid array bound|not numeric" +var e [nil]int // ERROR "invalid array bound|not numeric" +var f [e]int // ERROR "invalid array bound|not constant" +var g [1<<65]int // ERROR "overflows" diff --git a/gcc/testsuite/go.test/test/fixedbugs/bug256.go b/gcc/testsuite/go.test/test/fixedbugs/bug256.go new file mode 100644 index 0000000..37fa5f5 --- /dev/null +++ b/gcc/testsuite/go.test/test/fixedbugs/bug256.go @@ -0,0 +1,16 @@ +// errchk $G -e $D/$F.go + +// Copyright 2010 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package main + +type T U // bogus "invalid recursive type T" from 6g +type U int + +const x T = 123 + +type V V // ERROR "invalid recursive type" + + diff --git a/gcc/testsuite/go.test/test/fixedbugs/bug257.go b/gcc/testsuite/go.test/test/fixedbugs/bug257.go new file mode 100644 index 0000000..713c424 --- /dev/null +++ b/gcc/testsuite/go.test/test/fixedbugs/bug257.go @@ -0,0 +1,20070 @@ +// $G $D/$F.go && $L $F.$A && ./$A.out || echo BUG: bugxxx + +// Copyright 2010 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +// very long strings, string concatenation + +package main + +import ( + "crypto/md5" + "fmt" + "io" +) + +const data = ` +☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺ +☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺ +☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺ +☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺ +☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺ +☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺ +☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺ +☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺ +☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺ +☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺ +☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺ +☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺ +☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺ +☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺ +☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺ +☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺ +☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺ +☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺ +☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺ +☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺ +☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺ +☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺ +☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺ +☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺ +☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺ +☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺ +☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺ +☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺ +☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺ +☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺ +☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺ +☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺ +☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺ +☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺ +☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺ +☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺ +☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺ +☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺ +☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺ +☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺ +☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺ +☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺ +☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺ +☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺ +☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺ +☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺ +☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺ +☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺ +☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺ +☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺ +☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺ +☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺ +☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺ +☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺ +☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺ +☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺ +☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺ +☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺ +☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺ +☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺ +☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺ +☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺ +☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺ +☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺ +☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺ +☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺ +☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺ +☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺ +☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺ +☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺ +☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺ 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+☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺ +☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺ +☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺ +☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺ +☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺ +☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺ +☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺ +☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺ +☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺ +☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺ +☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺ +☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺ +☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺ +☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺ +☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺ +☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺ +☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺ +☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺ +☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺ +☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺ +☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺ +☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺ +☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺ +☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺ +☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺ +☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺ +☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺ +☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺ +☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺ +☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺ +☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺ +☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺ +☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺ +☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺ +☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺ +☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺ +☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺ +☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺ +☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺ +☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺ +☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺ +☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺ +☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺ +☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺ +☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺ +☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺ +☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺ +☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺ +☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺ +☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺ +☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺ +☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺ +☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺ +☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺ +☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺☺ +` + +var gettysburg = " Four score and seven years ago our fathers brought forth on\n" + + "this continent, a new nation, conceived in Liberty, and dedicated\n" + + "to the proposition that all men are created equal.\n" + + " Now we are engaged in a great Civil War, testing whether that\n" + + "nation, or any nation so conceived and so dedicated, can long\n" + + "endure.\n" + + " We are met on a great battle-field of that war.\n" + + " We have come to dedicate a portion of that field, as a final\n" + + "resting place for those who here gave their lives that that\n" + + "nation might live. It is altogether fitting and proper that\n" + + "we should do this.\n" + + " But, in a larger sense, we can not dedicate — we can not\n" + + "consecrate — we can not hallow — this ground.\n" + + " The brave men, living and dead, who struggled here, have\n" + + "consecrated it, far above our poor power to add or detract.\n" + + "The world will little note, nor long remember what we say here,\n" + + "but it can never forget what they did here.\n" + + " It is for us the living, rather, to be dedicated here to the\n" + + "unfinished work which they who fought here have thus far so\n" + + "nobly advanced. It is rather for us to be here dedicated to\n" + + "the great task remaining before us — that from these honored\n" + + "dead we take increased devotion to that cause for which they\n" + + "gave the last full measure of devotion —\n" + + " that we here highly resolve that these dead shall not have\n" + + "died in vain — that this nation, under God, shall have a new\n" + + "birth of freedom — and that government of the people, by the\n" + + "people, for the people, shall not perish from this earth.\n" + + "\n" + + "Abraham Lincoln, November 19, 1863, Gettysburg, Pennsylvania\n" + + +func main() { + m := md5.New() + io.WriteString(m, data) + hash := fmt.Sprintf("%x", m.Sum()) + if hash != "525f06bc62a65017cd2217d7584e5920" { + println("BUG a", hash) + return + } + + m = md5.New() + io.WriteString(m, gettysburg) + hash = fmt.Sprintf("%x", m.Sum()) + if hash != "d7ec5d9d47a4d166091e8d9ebd7ea0aa" { + println("BUG gettysburg", hash) + println(len(gettysburg)) + fmt.Println(gettysburg) + return + } + +} diff --git a/gcc/testsuite/go.test/test/fixedbugs/bug258.go b/gcc/testsuite/go.test/test/fixedbugs/bug258.go new file mode 100644 index 0000000..8984df5 --- /dev/null +++ b/gcc/testsuite/go.test/test/fixedbugs/bug258.go @@ -0,0 +1,33 @@ +// $G $D/$F.go && $L $F.$A && ./$A.out + +// Copyright 2010 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package main + +import "math" + +func f() float64 { + math.Pow(2, 2) + return 1 +} + +func main() { + for i := 0; i < 10; i++ { + // 386 float register bug used to load constant before call + if -5 < f() { + } else { + println("BUG 1") + return + } + if f() > -7 { + } else { + println("BUG 2") + } + + if math.Pow(2, 3) != 8 { + println("BUG 3") + } + } +} diff --git a/gcc/testsuite/go.test/test/fixedbugs/bug259.go b/gcc/testsuite/go.test/test/fixedbugs/bug259.go new file mode 100644 index 0000000..d148fb3 --- /dev/null +++ b/gcc/testsuite/go.test/test/fixedbugs/bug259.go @@ -0,0 +1,16 @@ +// $G $D/$F.go && $L $F.$A && ./$A.out + +// Copyright 2010 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package main + +import "fmt" + +var x = uint32(0x01020304) +var y = [...]uint32{1,2,3,4,5} + +func main() { + fmt.Sprint(y[byte(x)]) +} diff --git a/gcc/testsuite/go.test/test/fixedbugs/bug261.go b/gcc/testsuite/go.test/test/fixedbugs/bug261.go new file mode 100644 index 0000000..8c3fda1 --- /dev/null +++ b/gcc/testsuite/go.test/test/fixedbugs/bug261.go @@ -0,0 +1,23 @@ +// $G $D/$F.go && $L $F.$A && ./$A.out + +// Copyright 2010 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package main + +var n int + +func f() int { + n++ + return n +} + +func main() { + x := []int{0,1,2,3,4,5,6,7,8,9,10} + n = 5 + y := x[f():f()] + if len(y) != 1 || y[0] != 6 { + println("BUG bug261", len(y), y[0]) + } +} diff --git a/gcc/testsuite/go.test/test/fixedbugs/bug262.go b/gcc/testsuite/go.test/test/fixedbugs/bug262.go new file mode 100644 index 0000000..66f580b --- /dev/null +++ b/gcc/testsuite/go.test/test/fixedbugs/bug262.go @@ -0,0 +1,54 @@ +// $G $D/$F.go && $L $F.$A && ./$A.out + +// Copyright 2010 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package main + +import ( + "os" + "strconv" +) + +var trace string + +func f() string { + trace += "f" + return "abc" +} + +func g() *os.Error { + trace += "g" + var x os.Error + return &x +} + +func h() string { + trace += "h" + return "123" +} + +func i() *int { + trace += "i" + var i int + return &i +} + + +func main() { + m := make(map[string]int) + m[f()], *g() = strconv.Atoi(h()) + if m["abc"] != 123 || trace != "fgh" { + println("BUG", m["abc"], trace) + panic("fail") + } + mm := make(map[string]os.Error) + trace = "" + mm["abc"] = os.EINVAL + *i(), mm[f()] = strconv.Atoi(h()) + if mm["abc"] != nil || trace != "ifh" { + println("BUG1", mm["abc"], trace) + panic("fail") + } +} diff --git a/gcc/testsuite/go.test/test/fixedbugs/bug263.go b/gcc/testsuite/go.test/test/fixedbugs/bug263.go new file mode 100644 index 0000000..cab986a --- /dev/null +++ b/gcc/testsuite/go.test/test/fixedbugs/bug263.go @@ -0,0 +1,16 @@ +// $G $D/$F.go && $L $F.$A && ./$A.out + +// Copyright 2010 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package main + +func main() { + data := make(map[int]string, 1) + data[0] = "hello, " + data[0] += "world!" + if data[0] != "hello, world!" { + panic("BUG: " + data[0]) + } +} diff --git a/gcc/testsuite/go.test/test/fixedbugs/bug264.go b/gcc/testsuite/go.test/test/fixedbugs/bug264.go new file mode 100644 index 0000000..6d86c6f --- /dev/null +++ b/gcc/testsuite/go.test/test/fixedbugs/bug264.go @@ -0,0 +1,44 @@ +// $G $D/$F.go && $L $F.$A && ./$A.out || echo BUG + +// Copyright 2010 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +// Test case for http://code.google.com/p/go/issues/detail?id=692 + +package main + +var fooCount = 0 +var barCount = 0 +var balCount = 0 + +func foo() (int, int) { + fooCount++ + return 0, 0 +} + +func bar() (int, int) { + barCount++ + return 0, 0 +} + +func bal() (int, int) { + balCount++ + return 0, 0 +} + +var a, b = foo() // foo is called once +var c, _ = bar() // bar is called twice +var _, _ = bal() // bal is called twice + +func main() { + if fooCount != 1 { + panic("fooCount != 1") + } + if barCount != 1 { + panic("barCount != 1") + } + if balCount != 1 { + panic("balCount != 1") + } +} diff --git a/gcc/testsuite/go.test/test/fixedbugs/bug265.go b/gcc/testsuite/go.test/test/fixedbugs/bug265.go new file mode 100644 index 0000000..55f32ec --- /dev/null +++ b/gcc/testsuite/go.test/test/fixedbugs/bug265.go @@ -0,0 +1,22 @@ +// $G $D/$F.go && $L $F.$A && ./$A.out || echo BUG + +// Copyright 2010 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +// Test case for http://code.google.com/p/go/issues/detail?id=700 + +package main + +import "os" + +func f() (e int) { + _ = &e + return 999 +} + +func main() { + if f() != 999 { + os.Exit(1) + } +} diff --git a/gcc/testsuite/go.test/test/fixedbugs/bug266.go b/gcc/testsuite/go.test/test/fixedbugs/bug266.go new file mode 100644 index 0000000..25c246f --- /dev/null +++ b/gcc/testsuite/go.test/test/fixedbugs/bug266.go @@ -0,0 +1,26 @@ +// $G $D/$F.go && $L $F.$A && ./$A.out || echo BUG: bug266 + +// Copyright 2010 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package main + +func f() int { + defer func() { + recover() + }() + panic("oops") +} + +func g() int { + return 12345 +} + +func main() { + g() // leave 12345 on stack + x := f() + if x != 0 { + panic(x) + } +} diff --git a/gcc/testsuite/go.test/test/fixedbugs/bug267.go b/gcc/testsuite/go.test/test/fixedbugs/bug267.go new file mode 100644 index 0000000..9646142 --- /dev/null +++ b/gcc/testsuite/go.test/test/fixedbugs/bug267.go @@ -0,0 +1,22 @@ +// $G $D/$F.go || echo BUG + +// Copyright 2010 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package main + +type T []int + +var a []bool + +func _() { + if a[T{42}[0]] { + } + // if (a[T{42}[0]]) {} // this compiles +} + +/* +6g bugs/bug267.go +bugs/bug267.go:14: syntax error: unexpected {, expecting : +*/ diff --git a/gcc/testsuite/go.test/test/fixedbugs/bug268.go b/gcc/testsuite/go.test/test/fixedbugs/bug268.go new file mode 100644 index 0000000..a38d054 --- /dev/null +++ b/gcc/testsuite/go.test/test/fixedbugs/bug268.go @@ -0,0 +1,53 @@ +// $G $D/$F.go && $L $F.$A && ./$A.out + +// Copyright 2010 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +// http://code.google.com/p/go/issues/detail?id=745 + +package main + +type T1 struct { + T2 *T2 +} + +type T2 struct { + T3 *T3 +} + +type T3 struct { + T4 []*T4 +} + +type T4 struct { + X int +} + +func f() *T1 { + x := &T1{ + &T2{ + &T3{ + [1]*T4{ + &T4{5}, + }[0:], + }, + }, + } + return x +} + +func g(x int) { + if x == 0 { + return + } + g(x-1) +} + +func main() { + x := f() + g(100) // smash temporaries left over on stack + if x.T2.T3.T4[0].X != 5 { + println("BUG", x.T2.T3.T4[0].X) + } +} diff --git a/gcc/testsuite/go.test/test/fixedbugs/bug269.go b/gcc/testsuite/go.test/test/fixedbugs/bug269.go new file mode 100644 index 0000000..4cc0408 --- /dev/null +++ b/gcc/testsuite/go.test/test/fixedbugs/bug269.go @@ -0,0 +1,18 @@ +// $G $D/$F.go && $L $F.$A && ./$A.out + +// Copyright 2010 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +// http://code.google.com/p/go/issues/detail?id=749 + +package main + +func f() (ok bool) { return false } + +func main() { + var i interface{} + i = f + _ = i.(func()bool) + _ = i.(func()(bool)) +} diff --git a/gcc/testsuite/go.test/test/fixedbugs/bug270.go b/gcc/testsuite/go.test/test/fixedbugs/bug270.go new file mode 100644 index 0000000..a9cda7b --- /dev/null +++ b/gcc/testsuite/go.test/test/fixedbugs/bug270.go @@ -0,0 +1,21 @@ +// $G $D/$F.go + +// Copyright 2010 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +// http://code.google.com/p/go/issues/detail?id=746 + +package main + +type I interface { F() } + +type T struct{} + +func (T) F() {} + +func main() { + switch I(T{}).(type) { + case interface{}: + } +} diff --git a/gcc/testsuite/go.test/test/fixedbugs/bug271.go b/gcc/testsuite/go.test/test/fixedbugs/bug271.go new file mode 100644 index 0000000..ba93d93 --- /dev/null +++ b/gcc/testsuite/go.test/test/fixedbugs/bug271.go @@ -0,0 +1,20 @@ +// $G $D/$F.go && $L $F.$A && ./$A.out + +// Copyright 2010 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +// http://code.google.com/p/go/issues/detail?id=662 + +package main + +import "fmt" + +func f() (int, int) { return 1, 2 } + +func main() { + s := fmt.Sprint(f()) + if s != "1 2" { // with bug, was "{1 2}" + println("BUG") + } +} diff --git a/gcc/testsuite/go.test/test/fixedbugs/bug272.go b/gcc/testsuite/go.test/test/fixedbugs/bug272.go new file mode 100644 index 0000000..3b7c466 --- /dev/null +++ b/gcc/testsuite/go.test/test/fixedbugs/bug272.go @@ -0,0 +1,25 @@ +// $G $D/$F.go && $L $F.$A && ./$A.out + +// Copyright 2010 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +// http://code.google.com/p/go/issues/detail?id=589 + +package main + +func main() { + n := int64(100) + x := make([]int, n) + x[99] = 234; + z := x[n-1] + if z != 234 { + println("BUG") + } + n |= 1<<32 + defer func() { + recover() + }() + z = x[n-1] + println("BUG2") +} diff --git a/gcc/testsuite/go.test/test/fixedbugs/bug273.go b/gcc/testsuite/go.test/test/fixedbugs/bug273.go new file mode 100644 index 0000000..816f69e --- /dev/null +++ b/gcc/testsuite/go.test/test/fixedbugs/bug273.go @@ -0,0 +1,101 @@ +// $G $D/$F.go && $L $F.$A && ./$A.out + +// Copyright 2010 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +// http://code.google.com/p/go/issues/detail?id=589 + +package main + +import "unsafe" + +var bug = false + +var minus1 = -1 +var big int64 = 10 | 1<<32 + +var g1 []int + +func shouldfail(f func(), desc string) { + defer func() { recover() }() + f() + if !bug { + println("BUG") + bug = true + } + println("didn't crash: ", desc) +} + +func badlen() { + g1 = make([]int, minus1) +} + +func biglen() { + g1 = make([]int, big) +} + +func badcap() { + g1 = make([]int, 10, minus1) +} + +func badcap1() { + g1 = make([]int, 10, 5) +} + +func bigcap() { + g1 = make([]int, 10, big) +} + +const ( + addrBits = 8*uint(unsafe.Sizeof((*byte)(nil))) + sh = addrBits/2 - 2 +) +var g2 [][1<<sh][1<<sh]byte +func overflow() { + g2 = make([][1<<sh][1<<sh]byte, 64) +} + +var g3 map[int]int +func badmapcap() { + g3 = make(map[int]int, minus1) +} + +func bigmapcap() { + g3 = make(map[int]int, big) +} + +var g4 chan int +func badchancap() { + g4 = make(chan int, minus1) +} + +func bigchancap() { + g4 = make(chan int, big) +} + +var g5 chan [1<<15]byte +func overflowchan() { + if addrBits == 32 { + g5 = make(chan [1<<15]byte, 1<<20) + } else { + // cannot overflow on 64-bit, because + // int is 32 bits and max chan value size + // in the implementation is 64 kB. + panic(1) + } +} + +func main() { + shouldfail(badlen, "badlen") + shouldfail(biglen, "biglen") + shouldfail(badcap, "badcap") + shouldfail(badcap1, "badcap1") + shouldfail(bigcap, "bigcap") + shouldfail(overflow, "overflow") + shouldfail(badmapcap, "badmapcap") + shouldfail(bigmapcap, "bigmapcap") + shouldfail(badchancap, "badchancap") + shouldfail(bigchancap, "bigchancap") + shouldfail(overflowchan, "overflowchan") +} diff --git a/gcc/testsuite/go.test/test/fixedbugs/bug274.go b/gcc/testsuite/go.test/test/fixedbugs/bug274.go new file mode 100644 index 0000000..621f31e --- /dev/null +++ b/gcc/testsuite/go.test/test/fixedbugs/bug274.go @@ -0,0 +1,29 @@ +// errchk $G $D/$F.go + +// Copyright 2010 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +// 6g accepts the program below even though it is syntactically incorrect: +// Each statement in the list of statements for each case clause must be +// terminated with a semicolon. No semicolon is present for the labeled +// statements and because the last token is a colon ":", no semicolon is +// inserted automatically. +// +// Both gccgo and gofmt correctly refuse this program as is and accept it +// when the semicolons are present. + +// This is a test case for issue 777 ( http://code.google.com/p/go/issues/detail?id=777 ). + +package main + +func main() { + switch 0 { + case 0: + L0: // ERROR "statement" + case 1: + L1: // ERROR "statement" + default: + L2: // correct since no semicolon is required before a '}' + } +} diff --git a/gcc/testsuite/go.test/test/fixedbugs/bug275.go b/gcc/testsuite/go.test/test/fixedbugs/bug275.go new file mode 100644 index 0000000..2bbc807 --- /dev/null +++ b/gcc/testsuite/go.test/test/fixedbugs/bug275.go @@ -0,0 +1,20 @@ +// $G $D/$F.go || echo BUG should compile + +// Copyright 2010 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +// This is a test case for issue 788. + +package main + +func main() { + var a [1]complex64 + + t := a[0] + _ = real(t) // this works + + _ = real(a[0]) // this doesn't +} + +// bug275.go:17: internal compiler error: subnode not addable diff --git a/gcc/testsuite/go.test/test/fixedbugs/bug276.go b/gcc/testsuite/go.test/test/fixedbugs/bug276.go new file mode 100644 index 0000000..844a6b2 --- /dev/null +++ b/gcc/testsuite/go.test/test/fixedbugs/bug276.go @@ -0,0 +1,23 @@ +// $G $D/$F.go && $L $F.$A && ./$A.out || echo BUG code should run + +// Copyright 2010 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +// Test case for issue 789. The bug only appeared for GOARCH=386. + +package main + +func main() { + i := 0 + x := 0 + + a := (x & 1) << uint(1-i) + + s := uint(1-i) + b := (x & 1) << s + + if a != b { + panic(0) + } +} diff --git a/gcc/testsuite/go.test/test/fixedbugs/bug277.go b/gcc/testsuite/go.test/test/fixedbugs/bug277.go new file mode 100644 index 0000000..22b2908 --- /dev/null +++ b/gcc/testsuite/go.test/test/fixedbugs/bug277.go @@ -0,0 +1,72 @@ +// $G $D/$F.go || echo BUG should compile + +// Copyright 2010 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +// Test cases for conversion syntax. + +package main + +type ( + A [3]int + S struct { + x int + } + P *S + F func(x int) int + I interface { + m(x int) int + } + L []int + M map[string]int + C chan int +) + +func (s S) m(x int) int { return x } + +var ( + a A = [...]int{1, 2, 3} + s S = struct{ x int }{0} + p P = &s + f F = func(x int) int { return x } + i I = s + l L = []int{} + m M = map[string]int{"foo": 0} + c C = make(chan int) +) + +func main() { + a = A(a) + a = [3]int(a) + s = struct { + x int + }(s) + p = (*S)(p) + f = func(x int) int(f) + i = (interface { + m(x int) int + })(s) // this is accepted by 6g + i = interface { + m(x int) int + }(s) // this is not accepted by 6g (but should be) + l = []int(l) + m = map[string]int(m) + c = chan int(c) + _ = chan<- int(c) + _ = <-(chan int)(c) + _ = <-(<-chan int)(c) +} + +/* +6g bug277.go +bug277.go:46: syntax error: unexpected (, expecting { +bug277.go:50: syntax error: unexpected interface +bug277.go:53: non-declaration statement outside function body +bug277.go:54: non-declaration statement outside function body +bug277.go:55: syntax error: unexpected LCHAN +bug277.go:56: syntax error: unexpected LCHAN +bug277.go:57: non-declaration statement outside function body +bug277.go:58: non-declaration statement outside function body +bug277.go:59: syntax error: unexpected } +*/ diff --git a/gcc/testsuite/go.test/test/fixedbugs/bug278.go b/gcc/testsuite/go.test/test/fixedbugs/bug278.go new file mode 100644 index 0000000..3699b9a --- /dev/null +++ b/gcc/testsuite/go.test/test/fixedbugs/bug278.go @@ -0,0 +1,23 @@ +// errchk $G $D/$F.go + +// Copyright 2010 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +// This is a test case for issue 804. + +package main + +func f() [10]int { + return [10]int{} +} + +var m map[int][10]int + +func main() { + f()[1] = 2 // ERROR "cannot|invalid" + f()[2:3][0] = 4 // ERROR "cannot|addressable" + var x = "abc" + x[2] = 3 // ERROR "cannot|invalid" + m[0][5] = 6 // ERROR "cannot|invalid" +} diff --git a/gcc/testsuite/go.test/test/fixedbugs/bug279.go b/gcc/testsuite/go.test/test/fixedbugs/bug279.go new file mode 100644 index 0000000..af8e056 --- /dev/null +++ b/gcc/testsuite/go.test/test/fixedbugs/bug279.go @@ -0,0 +1,36 @@ +// $G $D/$F.go && $L $F.$A && ./$A.out + +// Copyright 2010 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +// http://code.google.com/p/go/issues/detail?id=799 + +package main + +import "unsafe" + +func main() { + n := unsafe.Sizeof(0) + if n != 4 && n != 8 { + println("BUG sizeof 0", n) + return + } + n = unsafe.Alignof(0) + if n != 4 && n != 8 { + println("BUG alignof 0", n) + return + } + + n = unsafe.Sizeof("") + if n != 8 && n != 16 { + println("BUG sizeof \"\"", n) + return + } + n = unsafe.Alignof("") + if n != 4 && n != 8 { + println("BUG alignof \"\"", n) + return + } +} + diff --git a/gcc/testsuite/go.test/test/fixedbugs/bug280.go b/gcc/testsuite/go.test/test/fixedbugs/bug280.go new file mode 100644 index 0000000..869d446 --- /dev/null +++ b/gcc/testsuite/go.test/test/fixedbugs/bug280.go @@ -0,0 +1,13 @@ +// errchk $G $D/$F.go + +// Copyright 2010 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +// http://code.google.com/p/go/issues/detail?id=808 + +package main + +type A [...]int // ERROR "outside of array literal" + + diff --git a/gcc/testsuite/go.test/test/fixedbugs/bug281.go b/gcc/testsuite/go.test/test/fixedbugs/bug281.go new file mode 100644 index 0000000..821b028 --- /dev/null +++ b/gcc/testsuite/go.test/test/fixedbugs/bug281.go @@ -0,0 +1,55 @@ +// $G $D/$F.go && $L $F.$A && ./$A.out + +// Copyright 2010 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +// http://code.google.com/p/go/issues/detail?id=807 + +package main + +type Point struct { + X, Y int64 +} + +type Rect struct { + Min, Max Point +} + +func (p Point) Sub(q Point) Point { + return Point{p.X-q.X, p.Y-q.Y} +} + +type Obj struct { + bbox Rect +} + +func (o *Obj) Bbox() Rect { + return o.bbox +} + +func (o *Obj) Points() [2]Point{ + return [2]Point{o.bbox.Min, o.bbox.Max} +} + +var x = 0 + +func main() { + o := &Obj{Rect{Point{800, 0}, Point{}}} + p := Point{800, 300} + q := p.Sub(o.Bbox().Min) + if q.X != 0 || q.Y != 300 { + println("BUG dot: ", q.X, q.Y) + return + } + + q = p.Sub(o.Points()[0]) + if q.X != 0 || q.Y != 300 { + println("BUG index const: ", q.X, q.Y) + } + + q = p.Sub(o.Points()[x]) + if q.X != 0 || q.Y != 300 { + println("BUG index var: ", q.X, q.Y) + } +} diff --git a/gcc/testsuite/go.test/test/fixedbugs/bug282.dir/p1.go b/gcc/testsuite/go.test/test/fixedbugs/bug282.dir/p1.go new file mode 100644 index 0000000..b562755 --- /dev/null +++ b/gcc/testsuite/go.test/test/fixedbugs/bug282.dir/p1.go @@ -0,0 +1,10 @@ +// Copyright 2010 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package p1 + +type T struct { + f func() "x" +} + diff --git a/gcc/testsuite/go.test/test/fixedbugs/bug282.dir/p2.go b/gcc/testsuite/go.test/test/fixedbugs/bug282.dir/p2.go new file mode 100644 index 0000000..3f8bd9d --- /dev/null +++ b/gcc/testsuite/go.test/test/fixedbugs/bug282.dir/p2.go @@ -0,0 +1,8 @@ +// Copyright 2010 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package p2 + +import _ "./p1" + diff --git a/gcc/testsuite/go.test/test/fixedbugs/bug282.go b/gcc/testsuite/go.test/test/fixedbugs/bug282.go new file mode 100644 index 0000000..463f21e --- /dev/null +++ b/gcc/testsuite/go.test/test/fixedbugs/bug282.go @@ -0,0 +1,7 @@ +// $G $D/$F.dir/p1.go && $G $D/$F.dir/p2.go + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +ignored diff --git a/gcc/testsuite/go.test/test/fixedbugs/bug283.go b/gcc/testsuite/go.test/test/fixedbugs/bug283.go new file mode 100644 index 0000000..45ee908 --- /dev/null +++ b/gcc/testsuite/go.test/test/fixedbugs/bug283.go @@ -0,0 +1,19 @@ +// $G $D/$F.go || echo BUG: should compile + +// Copyright 2010 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +// http://code.google.com/p/go/issues/detail?id=806 +// triggered out of registers on 8g + +package main + +type Point struct { + x int + y int +} + +func dist(p0, p1 Point) float64 { + return float64((p0.x-p1.x)*(p0.x-p1.x) + (p0.y-p1.y)*(p0.y-p1.y)) +} diff --git a/gcc/testsuite/go.test/test/fixedbugs/bug284.go b/gcc/testsuite/go.test/test/fixedbugs/bug284.go new file mode 100644 index 0000000..bcf161e --- /dev/null +++ b/gcc/testsuite/go.test/test/fixedbugs/bug284.go @@ -0,0 +1,191 @@ +// errchk $G -e $D/$F.go + +// Copyright 2010 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +// Test cases for revised conversion rules. + +package main + +func main() { + type NewInt int + i0 := 0 + var i1 int = 1 + var i2 NewInt = 1 + i0 = i0 + i0 = i1 + i0 = int(i2) + i1 = i0 + i1 = i1 + i1 = int(i2) + i2 = NewInt(i0) + i2 = NewInt(i1) + i2 = i2 + + type A1 [3]int + type A2 [3]NewInt + var a0 [3]int + var a1 A1 + var a2 A2 + a0 = a0 + a0 = a1 + a0 = [3]int(a2) // ERROR "cannot|invalid" + a1 = a0 + a1 = a1 + a1 = A1(a2) // ERROR "cannot|invalid" + a2 = A2(a0) // ERROR "cannot|invalid" + a2 = A2(a1) // ERROR "cannot|invalid" + a2 = a2 + + type S1 struct { + x int + } + type S2 struct { + x NewInt + } + var s0 struct { + x int + } + var s1 S1 + var s2 S2 + s0 = s0 + s0 = s1 + s0 = struct { + x int + }(s2) // ERROR "cannot|invalid" + s1 = s0 + s1 = s1 + s1 = S1(s2) // ERROR "cannot|invalid" + s2 = S2(s0) // ERROR "cannot|invalid" + s2 = S2(s1) // ERROR "cannot|invalid" + s2 = s2 + + type P1 *int + type P2 *NewInt + var p0 *int + var p1 P1 + var p2 P2 + p0 = p0 + p0 = p1 + p0 = (*int)(p2) // ERROR "cannot|invalid" + p1 = p0 + p1 = p1 + p1 = P1(p2) // ERROR "cannot|invalid" + p2 = P2(p0) // ERROR "cannot|invalid" + p2 = P2(p1) // ERROR "cannot|invalid" + p2 = p2 + + type Q1 *struct { + x int + } + type Q2 *S1 + var q0 *struct { + x int + } + var q1 Q1 + var q2 Q2 + var ps1 *S1 + q0 = q0 + q0 = q1 + q0 = (*struct { + x int + })(ps1) // legal because of special conversion exception for pointers + q0 = (*struct { + x int + })(q2) // ERROR "cannot|invalid" + q1 = q0 + q1 = q1 + q1 = Q1(q2) // ERROR "cannot|invalid" + q2 = (*S1)(q0) // legal because of special conversion exception for pointers + q2 = Q2(q1) // ERROR "cannot|invalid" + q2 = q2 + + type F1 func(x NewInt) int + type F2 func(x int) NewInt + var f0 func(x NewInt) int + var f1 F1 + var f2 F2 + f0 = f0 + f0 = f1 + f0 = func(x NewInt) int(f2) // ERROR "cannot|invalid" + f1 = f0 + f1 = f1 + f1 = F1(f2) // ERROR "cannot|invalid" + f2 = F2(f0) // ERROR "cannot|invalid" + f2 = F2(f1) // ERROR "cannot|invalid" + f2 = f2 + + type X1 interface { + f() int + } + type X2 interface { + f() NewInt + } + var x0 interface { + f() int + } + var x1 X1 + var x2 X2 + x0 = x0 + x0 = x1 + x0 = interface { + f() int + }(x2) // ERROR "cannot|need type assertion|incompatible" + x1 = x0 + x1 = x1 + x1 = X1(x2) // ERROR "cannot|need type assertion|incompatible" + x2 = X2(x0) // ERROR "cannot|need type assertion|incompatible" + x2 = X2(x1) // ERROR "cannot|need type assertion|incompatible" + x2 = x2 + + type L1 []int + type L2 []NewInt + var l0 []int + var l1 L1 + var l2 L2 + l0 = l0 + l0 = l1 + l0 = []int(l2) // ERROR "cannot|invalid" + l1 = l0 + l1 = l1 + l1 = L1(l2) // ERROR "cannot|invalid" + l2 = L2(l0) // ERROR "cannot|invalid" + l2 = L2(l1) // ERROR "cannot|invalid" + l2 = l2 + + type M1 map[string]int + type M2 map[string]NewInt + var m0 []int + var m1 L1 + var m2 L2 + m0 = m0 + m0 = m1 + m0 = []int(m2) // ERROR "cannot|invalid" + m1 = m0 + m1 = m1 + m1 = L1(m2) // ERROR "cannot|invalid" + m2 = L2(m0) // ERROR "cannot|invalid" + m2 = L2(m1) // ERROR "cannot|invalid" + m2 = m2 + + type C1 chan int + type C2 chan NewInt + var c0 chan int + var c1 C1 + var c2 C2 + c0 = c0 + c0 = c1 + c0 = chan int(c2) // ERROR "cannot|invalid" + c1 = c0 + c1 = c1 + c1 = C1(c2) // ERROR "cannot|invalid" + c2 = C2(c0) // ERROR "cannot|invalid" + c2 = C2(c1) // ERROR "cannot|invalid" + c2 = c2 + + // internal compiler error (6g and gccgo) + type T interface{} + var _ T = 17 // assignment compatible + _ = T(17) // internal compiler error even though assignment compatible +} diff --git a/gcc/testsuite/go.test/test/fixedbugs/bug285.go b/gcc/testsuite/go.test/test/fixedbugs/bug285.go new file mode 100644 index 0000000..544d348 --- /dev/null +++ b/gcc/testsuite/go.test/test/fixedbugs/bug285.go @@ -0,0 +1,116 @@ +// $G $D/$F.go && $L $F.$A && ./$A.out || echo BUG: bug285 + +// Copyright 2010 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +// Test for issue 778: Map key values that are assignment +// compatible with the map key type must be accepted according +// to the spec: http://golang.org/doc/go_spec.html#Indexes . + +package main + +type T2 struct { + x int +} + +func (t *T2) f() int { return t.x } + +func main() { + type B bool + b := B(false) + mb := make(map[B]int) + mb[false] = 42 // this should work: false is assignment compatible with B + mb[b] = 42 + + type Z int + z := Z(0) + mz := make(map[Z]int) + mz[0] = 42 + mz[z] = 42 + + type S string + s := S("foo") + ms := make(map[S]int) + ms["foo"] = 42 + ms[s] = 42 + + type T struct { + x int + } + type P *T + p := P(nil) + mp := make(map[P]int) + mp[nil] = 42 + mp[p] = 42 + mp[&T{7}] = 42 + + type F func(x int) + f := func(x int) {} + mf := make(map[F]int) + mf[nil] = 42 + mf[f] = 42 + mf[func(x int) {}] = 42 + + type M map[int]int + m := make(M) + mm := make(map[M]int) + mm[nil] = 42 + mm[m] = 42 + mm[make(M)] = 42 + + type C chan int + c := make(C) + mc := make(map[C]int) + mc[nil] = 42 + mc[c] = 42 + mc[make(C)] = 42 + + type I1 interface{} + type I2 interface { + f() int + } + var i0 interface{} = z + var i1 I1 = p + m0 := make(map[interface{}]int) + m1 := make(map[I1]int) + m2 := make(map[I2]int) + m0[i0] = 42 + m0[i1] = 42 + m0[z] = 42 // this should work: z is assignment-compatible with interface{} + m0[new(struct { + x int + })] = 42 // this should work: *struct{x int} is assignment-compatible with interface{} + m0[p] = 42 // this should work: p is assignment-compatible with interface{} + m0[false] = 42 // this should work: false is assignment-compatible with interface{} + m0[17] = 42 // this should work: 17 is assignment-compatible with interface{} + m0["foo"] = 42 // this should work: "foo" is assignment-compatible with interface{} + + m1[i0] = 42 + m1[i1] = 42 + m1[new(struct { + x int + })] = 42 // this should work: *struct{x int} is assignment-compatible with I1 + m1[false] = 42 // this should work: false is assignment-compatible with I1 + m1[17] = 42 // this should work: 17 is assignment-compatible with I1 + m1["foo"] = 42 // this should work: "foo" is assignment-compatible with I1 + + m2[new(T2)] = 42 // this should work: *T2 is assignment-compatible with I2 +} + +/* +6g -e bug286.go +bug286.go:23: invalid map index false - need type B +bug286.go:80: invalid map index z - need type interface { } +bug286.go:83: invalid map index new(struct { x int }) - need type interface { } +bug286.go:84: invalid map index p - need type interface { } +bug286.go:85: invalid map index false - need type interface { } +bug286.go:86: invalid map index 17 - need type interface { } +bug286.go:87: invalid map index "foo" - need type interface { } +bug286.go:93: invalid map index new(struct { x int }) - need type I1 +bug286.go:94: invalid map index false - need type I1 +bug286.go:95: invalid map index 17 - need type I1 +bug286.go:96: invalid map index "foo" - need type I1 +bug286.go:99: invalid map index new(T2) - need type I2 +bug286.go:100: invalid map index t2 - need type I2 +*/ diff --git a/gcc/testsuite/go.test/test/fixedbugs/bug286.go b/gcc/testsuite/go.test/test/fixedbugs/bug286.go new file mode 100644 index 0000000..94423be --- /dev/null +++ b/gcc/testsuite/go.test/test/fixedbugs/bug286.go @@ -0,0 +1,94 @@ +// $G $D/$F.go && $L $F.$A && ./$A.out || echo BUG: bug286 failed + +// Copyright 2010 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +// Test case for issue 849. + +package main + +type I interface { + f() +} + + +var callee string +var error bool + +type T int + +func (t *T) f() { callee = "f" } +func (i *T) g() { callee = "g" } + + +// test1 and test2 are the same except that in the interface J +// the entries are swapped. test2 and test3 are the same except +// that in test3 the interface J is declared outside the function. +// +// Error: test2 calls g instead of f + +func test1(x I) { + type J interface { + I + g() + } + x.(J).f() + if callee != "f" { + println("test1 called", callee) + error = true + } +} + + +func test2(x I) { + type J interface { + g() + I + } + x.(J).f() + if callee != "f" { + println("test2 called", callee) + error = true + } +} + + +type J interface { + g() + I +} + +func test3(x I) { + x.(J).f() + if callee != "f" { + println("test3 called", callee) + error = true + } +} + +func main() { + x := new(T) + test1(x) + test2(x) + test3(x) + if error { + panic("wrong method called") + } +} + +/* +6g bug286.go && 6l bug286.6 && 6.out +test2 called g +panic: wrong method called + +panic PC=0x24e040 +runtime.panic+0x7c /home/gri/go1/src/pkg/runtime/proc.c:1012 + runtime.panic(0x0, 0x24e0a0) +main.main+0xef /home/gri/go1/test/bugs/bug286.go:76 + main.main() +mainstart+0xf /home/gri/go1/src/pkg/runtime/amd64/asm.s:60 + mainstart() +goexit /home/gri/go1/src/pkg/runtime/proc.c:145 + goexit() +*/ diff --git a/gcc/testsuite/go.test/test/fixedbugs/bug287.go b/gcc/testsuite/go.test/test/fixedbugs/bug287.go new file mode 100644 index 0000000..a4a08ee --- /dev/null +++ b/gcc/testsuite/go.test/test/fixedbugs/bug287.go @@ -0,0 +1,11 @@ +// errchk $G $D/$F.go + +// Copyright 2010 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +// Used to die dividing by zero; issue 879. + +package main + +var mult [3][...]byte = [3][5]byte{} // ERROR "\.\.\." diff --git a/gcc/testsuite/go.test/test/fixedbugs/bug288.go b/gcc/testsuite/go.test/test/fixedbugs/bug288.go new file mode 100644 index 0000000..0105159 --- /dev/null +++ b/gcc/testsuite/go.test/test/fixedbugs/bug288.go @@ -0,0 +1,18 @@ +// $G $D/$F.go + +// Copyright 2010 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +// Used to run out of registers on 8g. Issue 868. + +package main + +func main() { + var r uint32 + var buf [4]byte + a := buf[0:4] + r = (((((uint32(a[3]) << 8) | uint32(a[2])) << 8) | + uint32(a[1])) << 8) | uint32(a[0]) + _ = r +} diff --git a/gcc/testsuite/go.test/test/fixedbugs/bug289.go b/gcc/testsuite/go.test/test/fixedbugs/bug289.go new file mode 100644 index 0000000..f7180ff --- /dev/null +++ b/gcc/testsuite/go.test/test/fixedbugs/bug289.go @@ -0,0 +1,26 @@ +// errchk $G $D/$F.go + +// Copyright 2010 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +// https://code.google.com/p/gofrontend/issues/detail?id=1 + +package main + +func f1() { + a, b := f() // ERROR "mismatch|does not match" + _ = a + _ = b +} + +func f2() { + var a, b int + a, b = f() // ERROR "mismatch|does not match" + _ = a + _ = b +} + +func f() int { + return 1; +} diff --git a/gcc/testsuite/go.test/test/fixedbugs/bug290.go b/gcc/testsuite/go.test/test/fixedbugs/bug290.go new file mode 100644 index 0000000..80437c7 --- /dev/null +++ b/gcc/testsuite/go.test/test/fixedbugs/bug290.go @@ -0,0 +1,15 @@ +// $G $D/$F.go && $L $F.$A && ./$A.out + +// Copyright 2010 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +// http://code.google.com/p/go/issues/detail?id=920 + +package main + +type X struct { x []X } + +func main() { + type Y struct { x []Y } // used to get invalid recursive type +} diff --git a/gcc/testsuite/go.test/test/fixedbugs/bug291.go b/gcc/testsuite/go.test/test/fixedbugs/bug291.go new file mode 100644 index 0000000..09334c9 --- /dev/null +++ b/gcc/testsuite/go.test/test/fixedbugs/bug291.go @@ -0,0 +1,23 @@ +// $G $D/$F.go && $L $F.$A && ./$A.out + +// Copyright 2010 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +// http://code.google.com/p/go/issues/detail?id=915 + +package main + +type T struct { + x int +} + +var t = &T{42} +var i interface{} = t +var tt, ok = i.(*T) + +func main() { + if tt == nil || tt.x != 42 { + println("BUG") + } +} diff --git a/gcc/testsuite/go.test/test/fixedbugs/bug292.go b/gcc/testsuite/go.test/test/fixedbugs/bug292.go new file mode 100644 index 0000000..05852cd --- /dev/null +++ b/gcc/testsuite/go.test/test/fixedbugs/bug292.go @@ -0,0 +1,22 @@ +// $G $D/$F.go && $L $F.$A && ./$A.out + +// Copyright 2010 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +// http://code.google.com/p/go/issues/detail?id=843 + +package main + +import "unsafe" + +type T struct { + X, Y uint8 +} + +func main() { + var t T + if unsafe.Offsetof(t.X) != 0 || unsafe.Offsetof(t.Y) != 1 { + println("BUG", unsafe.Offsetof(t.X), unsafe.Offsetof(t.Y)) + } +} diff --git a/gcc/testsuite/go.test/test/fixedbugs/bug293.go b/gcc/testsuite/go.test/test/fixedbugs/bug293.go new file mode 100644 index 0000000..ca9b71a --- /dev/null +++ b/gcc/testsuite/go.test/test/fixedbugs/bug293.go @@ -0,0 +1,37 @@ +// $G $D/$F.go && $L $F.$A && ./$A.out + +// Copyright 2010 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +// http://code.google.com/p/go/issues/detail?id=846 + +package main + +func x() (a int, b bool) { + defer func(){ + a++ + }() + a, b = y() + return +} + +func x2() (a int, b bool) { + defer func(){ + a++ + }() + return y() +} + +func y() (int, bool) { + return 4, false +} + +func main() { + if a, _ := x(); a != 5 { + println("BUG", a) + } + if a, _ := x2(); a != 5 { + println("BUG", a) + } +} diff --git a/gcc/testsuite/go.test/test/fixedbugs/bug294.go b/gcc/testsuite/go.test/test/fixedbugs/bug294.go new file mode 100644 index 0000000..18f4593 --- /dev/null +++ b/gcc/testsuite/go.test/test/fixedbugs/bug294.go @@ -0,0 +1,79 @@ +// $G $D/$F.go && $L $F.$A && ./$A.out + +// Copyright 2010 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +// http://code.google.com/p/go/issues/detail?id=800 + +package main + +var log string + +type T int + +func (t T) a(s string) T { + log += "a(" + s + ")" + return t +} + +func (T) b(s string) string { + log += "b" + return s +} + +type F func(s string) F + +func a(s string) F { + log += "a(" + s + ")" + return F(a) +} + +func b(s string) string { + log += "b" + return s +} + +type I interface { + a(s string) I + b(s string) string +} + +type T1 int + +func (t T1) a(s string) I { + log += "a(" + s + ")" + return t +} + +func (T1) b(s string) string { + log += "b" + return s +} + +var ok = true + +func bad() { + if !ok { + println("BUG") + ok = false + } + println(log) +} + +func main() { + var t T + if t.a("1").a(t.b("2")); log != "a(1)ba(2)" { + bad() + } + log = "" + if a("3")(b("4"))(b("5")); log != "a(3)ba(4)ba(5)" { + bad() + } + log = "" + var i I = T1(0) + if i.a("6").a(i.b("7")).a(i.b("8")).a(i.b("9")); log != "a(6)ba(7)ba(8)ba(9)" { + bad() + } +} + diff --git a/gcc/testsuite/go.test/test/fixedbugs/bug295.go b/gcc/testsuite/go.test/test/fixedbugs/bug295.go new file mode 100644 index 0000000..fec2351 --- /dev/null +++ b/gcc/testsuite/go.test/test/fixedbugs/bug295.go @@ -0,0 +1,17 @@ +// $G $D/$F.go && $L $F.$A && ./$A.out + +// Copyright 2010 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package main + +import . "testing" // defines top-level T + +type S struct { + T int +} + +func main() { + _ = &S{T: 1} // should work +} diff --git a/gcc/testsuite/go.test/test/fixedbugs/bug296.go b/gcc/testsuite/go.test/test/fixedbugs/bug296.go new file mode 100644 index 0000000..46d8dbc --- /dev/null +++ b/gcc/testsuite/go.test/test/fixedbugs/bug296.go @@ -0,0 +1,88 @@ +// $G $D/$F.go && $L $F.$A && ./$A.out + +// Copyright 2010 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package main + +type I interface { + m(a, b, c, d, e, f, g, h byte) +} + +type Int8 int8 + +func (x Int8) m(a, b, c, d, e, f, g, h byte) { + check("Int8", int64(x), 0x01, a, b, c, d, e, f, g, h) +} + +type Uint8 uint8 + +func (x Uint8) m(a, b, c, d, e, f, g, h byte) { + check("Uint8", int64(x), 0x01, a, b, c, d, e, f, g, h) +} + +type Int16 int16 + +func (x Int16) m(a, b, c, d, e, f, g, h byte) { + check("Int16", int64(x), 0x0102, a, b, c, d, e, f, g, h) +} + +type Uint16 uint16 + +func (x Uint16) m(a, b, c, d, e, f, g, h byte) { + check("Uint16", int64(x), 0x0102, a, b, c, d, e, f, g, h) +} + +type Int32 int32 + +func (x Int32) m(a, b, c, d, e, f, g, h byte) { + check("Int32", int64(x), 0x01020304, a, b, c, d, e, f, g, h) +} + +type Uint32 uint32 + +func (x Uint32) m(a, b, c, d, e, f, g, h byte) { + check("Uint32", int64(x), 0x01020304, a, b, c, d, e, f, g, h) +} + +type Int64 int64 + +func (x Int64) m(a, b, c, d, e, f, g, h byte) { + check("Int64", int64(x), 0x0102030405060708, a, b, c, d, e, f, g, h) +} + +type Uint64 uint64 + +func (x Uint64) m(a, b, c, d, e, f, g, h byte) { + check("Uint64", int64(x), 0x0102030405060708, a, b, c, d, e, f, g, h) +} + +var test = []I{ + Int8(0x01), + Uint8(0x01), + Int16(0x0102), + Uint16(0x0102), + Int32(0x01020304), + Uint32(0x01020304), + Int64(0x0102030405060708), + Uint64(0x0102030405060708), +} + +func main() { + for _, t := range test { + t.m(0x10, 0x11, 0x12, 0x13, 0x14, 0x15, 0x16, 0x17) + } +} + +var bug = false + +func check(desc string, have, want int64, a, b, c, d, e, f, g, h byte) { + if have != want || a != 0x10 || b != 0x11 || c != 0x12 || d != 0x13 || e != 0x14 || f != 0x15 || g != 0x16 || h != 0x17 { + if !bug { + bug = true + println("BUG") + } + println(desc, "check", have, want, a, b, c, d, e, f, g, h) + } +} diff --git a/gcc/testsuite/go.test/test/fixedbugs/bug297.go b/gcc/testsuite/go.test/test/fixedbugs/bug297.go new file mode 100644 index 0000000..ba02942 --- /dev/null +++ b/gcc/testsuite/go.test/test/fixedbugs/bug297.go @@ -0,0 +1,15 @@ +// errchk $G $D/$F.go + +// Copyright 2010 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +// Used to crash; issue 961. + +package main + +type ByteSize float64 +const ( + _ = iota; // ignore first value by assigning to blank identifier + KB ByteSize = 1<<(10*X) // ERROR "undefined" +) diff --git a/gcc/testsuite/go.test/test/fixedbugs/bug298.go b/gcc/testsuite/go.test/test/fixedbugs/bug298.go new file mode 100644 index 0000000..fe4a99a --- /dev/null +++ b/gcc/testsuite/go.test/test/fixedbugs/bug298.go @@ -0,0 +1,11 @@ +// errchk $G $D/$F.go + +// Copyright 2010 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package ddd + +func Sum() int + for i := range []int{} { return i } // ERROR "return outside function|expected" + diff --git a/gcc/testsuite/go.test/test/fixedbugs/bug299.go b/gcc/testsuite/go.test/test/fixedbugs/bug299.go new file mode 100644 index 0000000..4d73144 --- /dev/null +++ b/gcc/testsuite/go.test/test/fixedbugs/bug299.go @@ -0,0 +1,27 @@ +// errchk $G $D/$F.go + +// Copyright 2010 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package main + +type T struct { + // legal according to spec + x int + y (int) + int + *float + // not legal according to spec + (complex) // ERROR "non-declaration|expected|parenthesize" + (*string) // ERROR "non-declaration|expected|parenthesize" + *(bool) // ERROR "non-declaration|expected|parenthesize" +} + +// legal according to spec +func (p T) m() {} + +// not legal according to spec +func (p (T)) f() {} // ERROR "parenthesize|expected" +func (p *(T)) g() {} // ERROR "parenthesize|expected" +func (p (*T)) h() {} // ERROR "parenthesize|expected" diff --git a/gcc/testsuite/go.test/test/fixedbugs/bug300.go b/gcc/testsuite/go.test/test/fixedbugs/bug300.go new file mode 100644 index 0000000..09ee3ab --- /dev/null +++ b/gcc/testsuite/go.test/test/fixedbugs/bug300.go @@ -0,0 +1,29 @@ +// errchk $G $D/$F.go + +// Copyright 2010 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package main + +type T struct { + x, y *T +} + +func main() { + // legal composite literals + _ = struct{}{} + _ = [42]int{} + _ = [...]int{} + _ = []int{} + _ = map[int]int{} + _ = T{} + + // illegal composite literals: parentheses not allowed around literal type + _ = (struct{}){} // ERROR "parenthesize" + _ = ([42]int){} // ERROR "parenthesize" + _ = ([...]int){} // ERROR "parenthesize" + _ = ([]int){} // ERROR "parenthesize" + _ = (map[int]int){} // ERROR "parenthesize" + _ = (T){} // ERROR "parenthesize" +} diff --git a/gcc/testsuite/go.test/test/fixedbugs/bug301.go b/gcc/testsuite/go.test/test/fixedbugs/bug301.go new file mode 100644 index 0000000..a58f4e1 --- /dev/null +++ b/gcc/testsuite/go.test/test/fixedbugs/bug301.go @@ -0,0 +1,18 @@ +// $G $D/$F.go || echo BUG: bug301.go + +// Copyright 2010 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +// http://code.google.com/p/go/issues/detail?id=990 + +package main + +func main() { + defer func() { + if recover() != nil { + panic("non-nil recover") + } + }() + panic(nil) +} diff --git a/gcc/testsuite/go.test/test/fixedbugs/bug302.dir/main.go b/gcc/testsuite/go.test/test/fixedbugs/bug302.dir/main.go new file mode 100644 index 0000000..9f874d0 --- /dev/null +++ b/gcc/testsuite/go.test/test/fixedbugs/bug302.dir/main.go @@ -0,0 +1,12 @@ +// Copyright 2010 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package main + +// Check that the export information is correct in p.6. +import _ "./p" + +// Check that it's still correct in pp.a (which contains p.6). +import _ "./pp" + diff --git a/gcc/testsuite/go.test/test/fixedbugs/bug302.dir/p.go b/gcc/testsuite/go.test/test/fixedbugs/bug302.dir/p.go new file mode 100644 index 0000000..7c54b90 --- /dev/null +++ b/gcc/testsuite/go.test/test/fixedbugs/bug302.dir/p.go @@ -0,0 +1,1011 @@ +// Copyright 2010 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package p + +type T struct { + x1 int + x2 int + x3 int + x4 int + x5 int + x6 int + x7 int + x8 int + x9 int + x10 int + x11 int + x12 int + x13 int + x14 int + x15 int + x16 int + x17 int + x18 int + x19 int + x20 int + x21 int + x22 int + x23 int + x24 int + x25 int + x26 int + x27 int + x28 int + x29 int + x30 int + x31 int + x32 int + x33 int + x34 int + x35 int + x36 int + x37 int + x38 int + x39 int + x40 int + x41 int + x42 int + x43 int + x44 int + x45 int + x46 int + x47 int + x48 int + x49 int + x50 int + x51 int + x52 int + x53 int + x54 int + x55 int + x56 int + x57 int + x58 int + x59 int + x60 int + x61 int + x62 int + x63 int + x64 int + x65 int + x66 int + x67 int + x68 int + x69 int + x70 int + x71 int + x72 int + x73 int + x74 int + x75 int + x76 int + x77 int + x78 int + x79 int + x80 int + x81 int + x82 int + x83 int + x84 int + x85 int + x86 int + x87 int + x88 int + x89 int + x90 int + x91 int + x92 int + x93 int + x94 int + x95 int + x96 int + x97 int + x98 int + x99 int + x100 int + x101 int + x102 int + x103 int + x104 int + x105 int + x106 int + x107 int + x108 int + x109 int + x110 int + x111 int + x112 int + x113 int + x114 int + x115 int + x116 int + x117 int + x118 int + x119 int + x120 int + x121 int + x122 int + x123 int + x124 int + x125 int + x126 int + x127 int + x128 int + x129 int + x130 int + x131 int + x132 int + x133 int + x134 int + x135 int + x136 int + x137 int + x138 int + x139 int + x140 int + x141 int + x142 int + x143 int + x144 int + x145 int + x146 int + x147 int + x148 int + x149 int + x150 int + x151 int + x152 int + x153 int + x154 int + x155 int + x156 int + x157 int + x158 int + x159 int + x160 int + x161 int + x162 int + x163 int + x164 int + x165 int + x166 int + x167 int + x168 int + x169 int + x170 int + x171 int + x172 int + x173 int + x174 int + x175 int + x176 int + x177 int + x178 int + x179 int + x180 int + x181 int + x182 int + x183 int + x184 int + x185 int + x186 int + x187 int + x188 int + x189 int + x190 int + x191 int + x192 int + x193 int + x194 int + x195 int + x196 int + x197 int + x198 int + x199 int + x200 int + x201 int + x202 int + x203 int + x204 int + x205 int + x206 int + x207 int + x208 int + x209 int + x210 int + x211 int + x212 int + x213 int + x214 int + x215 int + x216 int + x217 int + x218 int + x219 int + x220 int + x221 int + x222 int + x223 int + x224 int + x225 int + x226 int + x227 int + x228 int + x229 int + x230 int + x231 int + x232 int + x233 int + x234 int + x235 int + x236 int + x237 int + x238 int + x239 int + x240 int + x241 int + x242 int + x243 int + x244 int + x245 int + x246 int + x247 int + x248 int + x249 int + x250 int + x251 int + x252 int + x253 int + x254 int + x255 int + x256 int + x257 int + x258 int + x259 int + x260 int + x261 int + x262 int + x263 int + x264 int + x265 int + x266 int + x267 int + x268 int + x269 int + x270 int + x271 int + x272 int + x273 int + x274 int + x275 int + x276 int + x277 int + x278 int + x279 int + x280 int + x281 int + x282 int + x283 int + x284 int + x285 int + x286 int + x287 int + x288 int + x289 int + x290 int + x291 int + x292 int + x293 int + x294 int + x295 int + x296 int + x297 int + x298 int + x299 int + x300 int + x301 int + x302 int + x303 int + x304 int + x305 int + x306 int + x307 int + x308 int + x309 int + x310 int + x311 int + x312 int + x313 int + x314 int + x315 int + x316 int + x317 int + x318 int + x319 int + x320 int + x321 int + x322 int + x323 int + x324 int + x325 int + x326 int + x327 int + x328 int + x329 int + x330 int + x331 int + x332 int + x333 int + x334 int + x335 int + x336 int + x337 int + x338 int + x339 int + x340 int + x341 int + x342 int + x343 int + x344 int + x345 int + x346 int + x347 int + x348 int + x349 int + x350 int + x351 int + x352 int + x353 int + x354 int + x355 int + x356 int + x357 int + x358 int + x359 int + x360 int + x361 int + x362 int + x363 int + x364 int + x365 int + x366 int + x367 int + x368 int + x369 int + x370 int + x371 int + x372 int + x373 int + x374 int + x375 int + x376 int + x377 int + x378 int + x379 int + x380 int + x381 int + x382 int + x383 int + x384 int + x385 int + x386 int + x387 int + x388 int + x389 int + x390 int + x391 int + x392 int + x393 int + x394 int + x395 int + x396 int + x397 int + x398 int + x399 int + x400 int + x401 int + x402 int + x403 int + x404 int + x405 int + x406 int + x407 int + x408 int + x409 int + x410 int + x411 int + x412 int + x413 int + x414 int + x415 int + x416 int + x417 int + x418 int + x419 int + x420 int + x421 int + x422 int + x423 int + x424 int + x425 int + x426 int + x427 int + x428 int + x429 int + x430 int + x431 int + x432 int + x433 int + x434 int + x435 int + x436 int + x437 int + x438 int + x439 int + x440 int + x441 int + x442 int + x443 int + x444 int + x445 int + x446 int + x447 int + x448 int + x449 int + x450 int + x451 int + x452 int + x453 int + x454 int + x455 int + x456 int + x457 int + x458 int + x459 int + x460 int + x461 int + x462 int + x463 int + x464 int + x465 int + x466 int + x467 int + x468 int + x469 int + x470 int + x471 int + x472 int + x473 int + x474 int + x475 int + x476 int + x477 int + x478 int + x479 int + x480 int + x481 int + x482 int + x483 int + x484 int + x485 int + x486 int + x487 int + x488 int + x489 int + x490 int + x491 int + x492 int + x493 int + x494 int + x495 int + x496 int + x497 int + x498 int + x499 int + x500 int + x501 int + x502 int + x503 int + x504 int + x505 int + x506 int + x507 int + x508 int + x509 int + x510 int + x511 int + x512 int + x513 int + x514 int + x515 int + x516 int + x517 int + x518 int + x519 int + x520 int + x521 int + x522 int + x523 int + x524 int + x525 int + x526 int + x527 int + x528 int + x529 int + x530 int + x531 int + x532 int + x533 int + x534 int + x535 int + x536 int + x537 int + x538 int + x539 int + x540 int + x541 int + x542 int + x543 int + x544 int + x545 int + x546 int + x547 int + x548 int + x549 int + x550 int + x551 int + x552 int + x553 int + x554 int + x555 int + x556 int + x557 int + x558 int + x559 int + x560 int + x561 int + x562 int + x563 int + x564 int + x565 int + x566 int + x567 int + x568 int + x569 int + x570 int + x571 int + x572 int + x573 int + x574 int + x575 int + x576 int + x577 int + x578 int + x579 int + x580 int + x581 int + x582 int + x583 int + x584 int + x585 int + x586 int + x587 int + x588 int + x589 int + x590 int + x591 int + x592 int + x593 int + x594 int + x595 int + x596 int + x597 int + x598 int + x599 int + x600 int + x601 int + x602 int + x603 int + x604 int + x605 int + x606 int + x607 int + x608 int + x609 int + x610 int + x611 int + x612 int + x613 int + x614 int + x615 int + x616 int + x617 int + x618 int + x619 int + x620 int + x621 int + x622 int + x623 int + x624 int + x625 int + x626 int + x627 int + x628 int + x629 int + x630 int + x631 int + x632 int + x633 int + x634 int + x635 int + x636 int + x637 int + x638 int + x639 int + x640 int + x641 int + x642 int + x643 int + x644 int + x645 int + x646 int + x647 int + x648 int + x649 int + x650 int + x651 int + x652 int + x653 int + x654 int + x655 int + x656 int + x657 int + x658 int + x659 int + x660 int + x661 int + x662 int + x663 int + x664 int + x665 int + x666 int + x667 int + x668 int + x669 int + x670 int + x671 int + x672 int + x673 int + x674 int + x675 int + x676 int + x677 int + x678 int + x679 int + x680 int + x681 int + x682 int + x683 int + x684 int + x685 int + x686 int + x687 int + x688 int + x689 int + x690 int + x691 int + x692 int + x693 int + x694 int + x695 int + x696 int + x697 int + x698 int + x699 int + x700 int + x701 int + x702 int + x703 int + x704 int + x705 int + x706 int + x707 int + x708 int + x709 int + x710 int + x711 int + x712 int + x713 int + x714 int + x715 int + x716 int + x717 int + x718 int + x719 int + x720 int + x721 int + x722 int + x723 int + x724 int + x725 int + x726 int + x727 int + x728 int + x729 int + x730 int + x731 int + x732 int + x733 int + x734 int + x735 int + x736 int + x737 int + x738 int + x739 int + x740 int + x741 int + x742 int + x743 int + x744 int + x745 int + x746 int + x747 int + x748 int + x749 int + x750 int + x751 int + x752 int + x753 int + x754 int + x755 int + x756 int + x757 int + x758 int + x759 int + x760 int + x761 int + x762 int + x763 int + x764 int + x765 int + x766 int + x767 int + x768 int + x769 int + x770 int + x771 int + x772 int + x773 int + x774 int + x775 int + x776 int + x777 int + x778 int + x779 int + x780 int + x781 int + x782 int + x783 int + x784 int + x785 int + x786 int + x787 int + x788 int + x789 int + x790 int + x791 int + x792 int + x793 int + x794 int + x795 int + x796 int + x797 int + x798 int + x799 int + x800 int + x801 int + x802 int + x803 int + x804 int + x805 int + x806 int + x807 int + x808 int + x809 int + x810 int + x811 int + x812 int + x813 int + x814 int + x815 int + x816 int + x817 int + x818 int + x819 int + x820 int + x821 int + x822 int + x823 int + x824 int + x825 int + x826 int + x827 int + x828 int + x829 int + x830 int + x831 int + x832 int + x833 int + x834 int + x835 int + x836 int + x837 int + x838 int + x839 int + x840 int + x841 int + x842 int + x843 int + x844 int + x845 int + x846 int + x847 int + x848 int + x849 int + x850 int + x851 int + x852 int + x853 int + x854 int + x855 int + x856 int + x857 int + x858 int + x859 int + x860 int + x861 int + x862 int + x863 int + x864 int + x865 int + x866 int + x867 int + x868 int + x869 int + x870 int + x871 int + x872 int + x873 int + x874 int + x875 int + x876 int + x877 int + x878 int + x879 int + x880 int + x881 int + x882 int + x883 int + x884 int + x885 int + x886 int + x887 int + x888 int + x889 int + x890 int + x891 int + x892 int + x893 int + x894 int + x895 int + x896 int + x897 int + x898 int + x899 int + x900 int + x901 int + x902 int + x903 int + x904 int + x905 int + x906 int + x907 int + x908 int + x909 int + x910 int + x911 int + x912 int + x913 int + x914 int + x915 int + x916 int + x917 int + x918 int + x919 int + x920 int + x921 int + x922 int + x923 int + x924 int + x925 int + x926 int + x927 int + x928 int + x929 int + x930 int + x931 int + x932 int + x933 int + x934 int + x935 int + x936 int + x937 int + x938 int + x939 int + x940 int + x941 int + x942 int + x943 int + x944 int + x945 int + x946 int + x947 int + x948 int + x949 int + x950 int + x951 int + x952 int + x953 int + x954 int + x955 int + x956 int + x957 int + x958 int + x959 int + x960 int + x961 int + x962 int + x963 int + x964 int + x965 int + x966 int + x967 int + x968 int + x969 int + x970 int + x971 int + x972 int + x973 int + x974 int + x975 int + x976 int + x977 int + x978 int + x979 int + x980 int + x981 int + x982 int + x983 int + x984 int + x985 int + x986 int + x987 int + x988 int + x989 int + x990 int + x991 int + x992 int + x993 int + x994 int + x995 int + x996 int + x997 int + x998 int + x999 int + x1000 int +} + +func (t *T) M() { +} diff --git a/gcc/testsuite/go.test/test/fixedbugs/bug302.go b/gcc/testsuite/go.test/test/fixedbugs/bug302.go new file mode 100644 index 0000000..e9edb94 --- /dev/null +++ b/gcc/testsuite/go.test/test/fixedbugs/bug302.go @@ -0,0 +1,6 @@ +// $G $D/bug302.dir/p.go && gopack grc pp.a p.$A && $G $D/bug302.dir/main.go + +// Copyright 2010 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + diff --git a/gcc/testsuite/go.test/test/fixedbugs/bug303.go b/gcc/testsuite/go.test/test/fixedbugs/bug303.go new file mode 100644 index 0000000..3bd790f --- /dev/null +++ b/gcc/testsuite/go.test/test/fixedbugs/bug303.go @@ -0,0 +1,37 @@ +// $G $D/$F.go && $L $F.$A && ./$A.out + +// Copyright 2010 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +// Issue 1011. Removing either #1 or #3 avoided the crash at #2. + +package main + +import ( + "io" + "strings" +) + +func readU16BE(b []byte) uint16 { + b[0] = 0 + b[1] = 1 + return uint16(b[0])<<8 + uint16(b[1]) // #1 + n := uint16(b[0])<<8 + uint16(b[1]) + return n +} + +func readStr(r io.Reader, b []byte) string { + n := readU16BE(b) + if int(n) > len(b) { + return "err: n>b" + } + io.ReadFull(r, b[0:n]) // #2 + return string(b[0:n]) // #3 + return "ok" +} + +func main() { + br := strings.NewReader("abcd") + readStr(br, make([]byte, 256)) +} diff --git a/gcc/testsuite/go.test/test/fixedbugs/bug304.go b/gcc/testsuite/go.test/test/fixedbugs/bug304.go new file mode 100644 index 0000000..adcf08a --- /dev/null +++ b/gcc/testsuite/go.test/test/fixedbugs/bug304.go @@ -0,0 +1,18 @@ +// $G $D/$F.go + +// Copyright 2010 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +// Caused a gccgo crash on compilation. +// bug304.go: In function ‘p.f’: +// bug304.go:15:2: internal compiler error: in copy_tree_r, at tree-inline.c:4114 + +package p +type S struct { + v interface{} +} +func g(e interface{}) { } +func f(s S) { + g(s.v.(*int)) +} diff --git a/gcc/testsuite/go.test/test/float_lit.go b/gcc/testsuite/go.test/test/float_lit.go new file mode 100644 index 0000000..3ffc5c1 --- /dev/null +++ b/gcc/testsuite/go.test/test/float_lit.go @@ -0,0 +1,118 @@ +// $G $F.go && $L $F.$A && ./$A.out + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package main + +import "os" + +var deLim float64 +var bad bool + +func +init() { + if os.Getenv("GOARCH") == "arm" { + deLim = 1.0e-8 + } else { + deLim = 10.e-14 + } +} + +func +pow10(pow int) float64 { + if pow < 0 { return 1/pow10(-pow); } + if pow > 0 { return pow10(pow-1)*10; } + return 1 +} + +func +close(da float64, ia, ib int64, pow int) bool { + db := float64(ia) / float64(ib) + db *= pow10(pow) + + if da == 0 || db == 0 { + if da == 0 && db == 0 { + return true + } + return false + } + + de := (da-db) /da + if de < 0 { + de = -de + } + + if de < deLim { + return true + } + if !bad { + println("BUG") + bad = true + } + return false +} + +func +main() { + if !close(0., 0, 1, 0) { print("0. is ", 0., "\n"); } + if !close(+10., 10, 1, 0) { print("+10. is ", +10., "\n"); } + if !close(-210., -210, 1, 0) { print("-210. is ", -210., "\n"); } + + if !close(.0, 0, 1, 0) { print(".0 is ", .0, "\n"); } + if !close(+.01, 1, 100, 0) { print("+.01 is ", +.01, "\n"); } + if !close(-.012, -12, 1000, 0) { print("-.012 is ", -.012, "\n"); } + + if !close(0.0, 0, 1, 0) { print("0.0 is ", 0.0, "\n"); } + if !close(+10.01, 1001, 100, 0) { print("+10.01 is ", +10.01, "\n"); } + if !close(-210.012, -210012, 1000, 0) { print("-210.012 is ", -210.012, "\n"); } + + if !close(0E+1, 0, 1, 0) { print("0E+1 is ", 0E+1, "\n"); } + if !close(+10e2, 10, 1, 2) { print("+10e2 is ", +10e2, "\n"); } + if !close(-210e3, -210, 1, 3) { print("-210e3 is ", -210e3, "\n"); } + + if !close(0E-1, 0, 1, 0) { print("0E-1 is ", 0E-1, "\n"); } + if !close(+0e23, 0, 1, 1) { print("+0e23 is ", +0e23, "\n"); } + if !close(-0e345, 0, 1, 1) { print("-0e345 is ", -0e345, "\n"); } + + if !close(0E1, 0, 1, 1) { print("0E1 is ", 0E1, "\n"); } + if !close(+10e23, 10, 1, 23) { print("+10e23 is ", +10e23, "\n"); } + if !close(-210e34, -210, 1, 34) { print("-210e34 is ", -210e34, "\n"); } + + if !close(0.E1, 0, 1, 1) { print("0.E1 is ", 0.E1, "\n"); } + if !close(+10.e+2, 10, 1, 2) { print("+10.e+2 is ", +10.e+2, "\n"); } + if !close(-210.e-3, -210, 1, -3) { print("-210.e-3 is ", -210.e-3, "\n"); } + + if !close(.0E1, 0, 1, 1) { print(".0E1 is ", .0E1, "\n"); } + if !close(+.01e2, 1, 100, 2) { print("+.01e2 is ", +.01e2, "\n"); } + if !close(-.012e3, -12, 1000, 3) { print("-.012e3 is ", -.012e3, "\n"); } + + if !close(0.0E1, 0, 1, 0) { print("0.0E1 is ", 0.0E1, "\n"); } + if !close(+10.01e2, 1001, 100, 2) { print("+10.01e2 is ", +10.01e2, "\n"); } + if !close(-210.012e3, -210012, 1000, 3) { print("-210.012e3 is ", -210.012e3, "\n"); } + + if !close(0.E+12, 0, 1, 0) { print("0.E+12 is ", 0.E+12, "\n"); } + if !close(+10.e23, 10, 1, 23) { print("+10.e23 is ", +10.e23, "\n"); } + if !close(-210.e33, -210, 1, 33) { print("-210.e33 is ", -210.e33, "\n"); } + + if !close(.0E-12, 0, 1, 0) { print(".0E-12 is ", .0E-12, "\n"); } + if !close(+.01e23, 1, 100, 23) { print("+.01e23 is ", +.01e23, "\n"); } + if !close(-.012e34, -12, 1000, 34) { print("-.012e34 is ", -.012e34, "\n"); } + + if !close(0.0E12, 0, 1, 12) { print("0.0E12 is ", 0.0E12, "\n"); } + if !close(+10.01e23, 1001, 100, 23) { print("+10.01e23 is ", +10.01e23, "\n"); } + if !close(-210.012e33, -210012, 1000, 33) { print("-210.012e33 is ", -210.012e33, "\n"); } + + if !close(0.E123, 0, 1, 123) { print("0.E123 is ", 0.E123, "\n"); } + if !close(+10.e+23, 10, 1, 23) { print("+10.e+234 is ", +10.e+234, "\n"); } + if !close(-210.e-35, -210, 1, -35) { print("-210.e-35 is ", -210.e-35, "\n"); } + + if !close(.0E123, 0, 1, 123) { print(".0E123 is ", .0E123, "\n"); } + if !close(+.01e29, 1, 100, 29) { print("+.01e29 is ", +.01e29, "\n"); } + if !close(-.012e29, -12, 1000, 29) { print("-.012e29 is ", -.012e29, "\n"); } + + if !close(0.0E123, 0, 1, 123) { print("0.0E123 is ", 0.0E123, "\n"); } + if !close(+10.01e31, 1001, 100, 31) { print("+10.01e31 is ", +10.01e31, "\n"); } + if !close(-210.012e19, -210012, 1000, 19) { print("-210.012e19 is ", -210.012e19, "\n"); } +} diff --git a/gcc/testsuite/go.test/test/floatcmp.go b/gcc/testsuite/go.test/test/floatcmp.go new file mode 100644 index 0000000..f51cbc2 --- /dev/null +++ b/gcc/testsuite/go.test/test/floatcmp.go @@ -0,0 +1,88 @@ +// $G $F.go && $L $F.$A && ./$A.out + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package main + +import "math" + +type floatTest struct { + name string + expr bool + want bool +} + +var nan float64 = math.NaN() +var f float64 = 1 + +var tests = []floatTest{ + floatTest{"nan == nan", nan == nan, false}, + floatTest{"nan != nan", nan != nan, true}, + floatTest{"nan < nan", nan < nan, false}, + floatTest{"nan > nan", nan > nan, false}, + floatTest{"nan <= nan", nan <= nan, false}, + floatTest{"nan >= nan", nan >= nan, false}, + floatTest{"f == nan", f == nan, false}, + floatTest{"f != nan", f != nan, true}, + floatTest{"f < nan", f < nan, false}, + floatTest{"f > nan", f > nan, false}, + floatTest{"f <= nan", f <= nan, false}, + floatTest{"f >= nan", f >= nan, false}, + floatTest{"nan == f", nan == f, false}, + floatTest{"nan != f", nan != f, true}, + floatTest{"nan < f", nan < f, false}, + floatTest{"nan > f", nan > f, false}, + floatTest{"nan <= f", nan <= f, false}, + floatTest{"nan >= f", nan >= f, false}, + floatTest{"!(nan == nan)", !(nan == nan), true}, + floatTest{"!(nan != nan)", !(nan != nan), false}, + floatTest{"!(nan < nan)", !(nan < nan), true}, + floatTest{"!(nan > nan)", !(nan > nan), true}, + floatTest{"!(nan <= nan)", !(nan <= nan), true}, + floatTest{"!(nan >= nan)", !(nan >= nan), true}, + floatTest{"!(f == nan)", !(f == nan), true}, + floatTest{"!(f != nan)", !(f != nan), false}, + floatTest{"!(f < nan)", !(f < nan), true}, + floatTest{"!(f > nan)", !(f > nan), true}, + floatTest{"!(f <= nan)", !(f <= nan), true}, + floatTest{"!(f >= nan)", !(f >= nan), true}, + floatTest{"!(nan == f)", !(nan == f), true}, + floatTest{"!(nan != f)", !(nan != f), false}, + floatTest{"!(nan < f)", !(nan < f), true}, + floatTest{"!(nan > f)", !(nan > f), true}, + floatTest{"!(nan <= f)", !(nan <= f), true}, + floatTest{"!(nan >= f)", !(nan >= f), true}, + floatTest{"!!(nan == nan)", !!(nan == nan), false}, + floatTest{"!!(nan != nan)", !!(nan != nan), true}, + floatTest{"!!(nan < nan)", !!(nan < nan), false}, + floatTest{"!!(nan > nan)", !!(nan > nan), false}, + floatTest{"!!(nan <= nan)", !!(nan <= nan), false}, + floatTest{"!!(nan >= nan)", !!(nan >= nan), false}, + floatTest{"!!(f == nan)", !!(f == nan), false}, + floatTest{"!!(f != nan)", !!(f != nan), true}, + floatTest{"!!(f < nan)", !!(f < nan), false}, + floatTest{"!!(f > nan)", !!(f > nan), false}, + floatTest{"!!(f <= nan)", !!(f <= nan), false}, + floatTest{"!!(f >= nan)", !!(f >= nan), false}, + floatTest{"!!(nan == f)", !!(nan == f), false}, + floatTest{"!!(nan != f)", !!(nan != f), true}, + floatTest{"!!(nan < f)", !!(nan < f), false}, + floatTest{"!!(nan > f)", !!(nan > f), false}, + floatTest{"!!(nan <= f)", !!(nan <= f), false}, + floatTest{"!!(nan >= f)", !!(nan >= f), false}, +} + +func main() { + bad := false + for _, t := range tests { + if t.expr != t.want { + if !bad { + bad = true + println("BUG: floatcmp") + } + println(t.name, "=", t.expr, "want", t.want) + } + } +} diff --git a/gcc/testsuite/go.test/test/for.go b/gcc/testsuite/go.test/test/for.go new file mode 100644 index 0000000..36ad157 --- /dev/null +++ b/gcc/testsuite/go.test/test/for.go @@ -0,0 +1,56 @@ +// $G $F.go && $L $F.$A && ./$A.out + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package main + +func assertequal(is, shouldbe int, msg string) { + if is != shouldbe { + print("assertion fail", msg, "\n") + panic(1) + } +} + +func main() { + var i, sum int + + i = 0 + for { + i = i + 1 + if i > 5 { + break + } + } + assertequal(i, 6, "break") + + sum = 0 + for i := 0; i <= 10; i++ { + sum = sum + i + } + assertequal(sum, 55, "all three") + + sum = 0 + for i := 0; i <= 10; { + sum = sum + i + i++ + } + assertequal(sum, 55, "only two") + + sum = 0 + for sum < 100 { + sum = sum + 9 + } + assertequal(sum, 99 + 9, "only one") + + sum = 0 + for i := 0; i <= 10; i++ { + if i % 2 == 0 { + continue + } + sum = sum + i + } + assertequal(sum, 1+3+5+7+9, "continue") + +} diff --git a/gcc/testsuite/go.test/test/func.go b/gcc/testsuite/go.test/test/func.go new file mode 100644 index 0000000..0c1a079 --- /dev/null +++ b/gcc/testsuite/go.test/test/func.go @@ -0,0 +1,89 @@ +// $G $F.go && $L $F.$A && ./$A.out + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + + +package main + +func assertequal(is, shouldbe int, msg string) { + if is != shouldbe { + print("assertion fail", msg, "\n") + panic(1) + } +} + +func f1() { +} + +func f2(a int) { +} + +func f3(a, b int) int { + return a+b +} + +func f4(a, b int, c float) int { + return (a+b)/2 + int(c) +} + +func f5(a int) int { + return 5 +} + +func f6(a int) (r int) { + return 6 +} + +func f7(a int) (x int, y float) { + return 7, 7.0 +} + + +func f8(a int) (x int, y float) { + return 8, 8.0 +} + +type T struct { + x, y int +} + +func (t *T) m10(a int, b float) int { + return (t.x+a) * (t.y+int(b)) +} + + +func f9(a int) (i int, f float) { + i = 9 + f = 9.0 + return +} + + +func main() { + f1() + f2(1) + r3 := f3(1, 2) + assertequal(r3, 3, "3") + r4 := f4(0, 2, 3.0) + assertequal(r4, 4, "4") + r5 := f5(1) + assertequal(r5, 5, "5") + r6 := f6(1) + assertequal(r6, 6, "6") + r7, s7 := f7(1) + assertequal(r7, 7, "r7") + assertequal(int(s7), 7, "s7") + r8, s8 := f8(1) + assertequal(r8, 8, "r8") + assertequal(int(s8), 8, "s8") + r9, s9 := f9(1) + assertequal(r9, 9, "r9") + assertequal(int(s9), 9, "s9") + var t *T = new(T) + t.x = 1 + t.y = 2 + r10 := t.m10(1, 3.0) + assertequal(r10, 10, "10") +} diff --git a/gcc/testsuite/go.test/test/func1.go b/gcc/testsuite/go.test/test/func1.go new file mode 100644 index 0000000..56f4dfc --- /dev/null +++ b/gcc/testsuite/go.test/test/func1.go @@ -0,0 +1,18 @@ +// errchk $G $F.go + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +// does not compile and should not compile + +package main + +func f1(a int) (int, float) { // BUG (not caught by compiler): multiple return values must have names + return 7, 7.0 +} + + +func f2(a int) (a int, b float) { // ERROR "redeclared|definition" + return 8, 8.0 +} diff --git a/gcc/testsuite/go.test/test/func2.go b/gcc/testsuite/go.test/test/func2.go new file mode 100644 index 0000000..5a6d7d0 --- /dev/null +++ b/gcc/testsuite/go.test/test/func2.go @@ -0,0 +1,31 @@ +// $G $F.go || echo BUG: should compile + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package main +import os "os" + +type t1 int +type t2 int +type t3 int + +func f1(t1, t2, t3) +func f2(t1, t2, t3 bool) +func f3(t1, t2, x t3) +func f4(t1, *t3) +func (x *t1) f5(y []t2) (t1, *t3) +func f6() (int, *string) +func f7(*t2, t3) +func f8(os int) int + +func f9(os int) int { + return os +} +func f10(err os.Error) os.Error { + return err +} +func f11(t1 string) string { + return t1 +} diff --git a/gcc/testsuite/go.test/test/func3.go b/gcc/testsuite/go.test/test/func3.go new file mode 100644 index 0000000..110b0ef --- /dev/null +++ b/gcc/testsuite/go.test/test/func3.go @@ -0,0 +1,17 @@ +// errchk $G $F.go + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package main + +type t1 int +type t2 int +type t3 int + +func f1(*t2, x t3) // ERROR "named" +func f2(t1, *t2, x t3) // ERROR "named" +func f3() (x int, *string) // ERROR "named" + +func f4() (t1 t1) // legal - scope of parameter named t1 starts in body of f4. diff --git a/gcc/testsuite/go.test/test/func4.go b/gcc/testsuite/go.test/test/func4.go new file mode 100644 index 0000000..69ce56a --- /dev/null +++ b/gcc/testsuite/go.test/test/func4.go @@ -0,0 +1,14 @@ +// errchk $G $D/$F.go + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package main + +var notmain func() + +func main() { + var x = &main // ERROR "address of|invalid" + main = notmain // ERROR "assign to|invalid" +} diff --git a/gcc/testsuite/go.test/test/func5.go b/gcc/testsuite/go.test/test/func5.go new file mode 100644 index 0000000..e27825c --- /dev/null +++ b/gcc/testsuite/go.test/test/func5.go @@ -0,0 +1,89 @@ +// $G $D/$F.go && $L $F.$A && ./$A.out + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package main + +func caller(f func(int, int) int, a, b int, c chan int) { + c <- f(a, b) +} + +func gocall(f func(int, int) int, a, b int) int { + c := make(chan int) + go caller(f, a, b, c) + return <-c +} + +func call(f func(int, int) int, a, b int) int { + return f(a, b) +} + +func call1(f func(int, int) int, a, b int) int { + return call(f, a, b) +} + +var f func(int, int) int + +func add(x, y int) int { + return x + y +} + +func fn() func(int, int) int { + return f +} + +var fc func(int, int, chan int) + +func addc(x, y int, c chan int) { + c <- x+y +} + +func fnc() func(int, int, chan int) { + return fc +} + +func three(x int) { + if x != 3 { + println("wrong val", x) + panic("fail") + } +} + +var notmain func() + +func emptyresults() {} +func noresults() {} + +var nothing func() + +func main() { + three(call(add, 1, 2)) + three(call1(add, 1, 2)) + f = add + three(call(f, 1, 2)) + three(call1(f, 1, 2)) + three(call(fn(), 1, 2)) + three(call1(fn(), 1, 2)) + three(call(func(a, b int) int { return a + b }, 1, 2)) + three(call1(func(a, b int) int { return a + b }, 1, 2)) + + fc = addc + c := make(chan int) + go addc(1, 2, c) + three(<-c) + go fc(1, 2, c) + three(<-c) + go fnc()(1, 2, c) + three(<-c) + go func(a, b int, c chan int) { c <- a+b }(1, 2, c) + three(<-c) + + emptyresults() + noresults() + nothing = emptyresults + nothing() + nothing = noresults + nothing() +} diff --git a/gcc/testsuite/go.test/test/garbage/Makefile b/gcc/testsuite/go.test/test/garbage/Makefile new file mode 100644 index 0000000..ab29e09 --- /dev/null +++ b/gcc/testsuite/go.test/test/garbage/Makefile @@ -0,0 +1,27 @@ +# Copyright 2010 The Go Authors. All rights reserved. +# Use of this source code is governed by a BSD-style +# license that can be found in the LICENSE file. + +include ../../src/Make.inc + +ALL=\ + parser\ + peano\ + tree\ + +all: $(addsuffix .out, $(ALL)) + +%.$O: %.go + $(GC) $*.go + +%.out: %.$O + $(LD) -o $@ $*.$O + +%.bench: %.out + ./$*.out + +bench: $(addsuffix .bench, $(ALL)) + +clean: + rm -f *.[$(OS)] $(addsuffix .out, $(ALL)) + diff --git a/gcc/testsuite/go.test/test/garbage/parser.go b/gcc/testsuite/go.test/test/garbage/parser.go new file mode 100644 index 0000000..cf68737 --- /dev/null +++ b/gcc/testsuite/go.test/test/garbage/parser.go @@ -0,0 +1,215 @@ +// Copyright 2010 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +// Garbage collection benchmark: parse Go packages repeatedly. + +package main + +import ( + "flag" + "fmt" + "go/ast" + "go/parser" + "os" + "path" + "runtime" + "strings" + "time" +) + +func isGoFile(dir *os.FileInfo) bool { + return dir.IsRegular() && + !strings.HasPrefix(dir.Name, ".") && // ignore .files + path.Ext(dir.Name) == ".go" +} + +func isPkgFile(dir *os.FileInfo) bool { + return isGoFile(dir) && + !strings.HasSuffix(dir.Name, "_test.go") // ignore test files +} + +func pkgName(filename string) string { + file, err := parser.ParseFile(filename, nil, parser.PackageClauseOnly) + if err != nil || file == nil { + return "" + } + return file.Name.Name +} + +func parseDir(dirpath string) map[string]*ast.Package { + // the package name is the directory name within its parent + // (use dirname instead of path because dirname is clean; i.e. has no trailing '/') + _, pkgname := path.Split(dirpath) + + // filter function to select the desired .go files + filter := func(d *os.FileInfo) bool { + if isPkgFile(d) { + // Some directories contain main packages: Only accept + // files that belong to the expected package so that + // parser.ParsePackage doesn't return "multiple packages + // found" errors. + // Additionally, accept the special package name + // fakePkgName if we are looking at cmd documentation. + name := pkgName(dirpath + "/" + d.Name) + return name == pkgname + } + return false + } + + // get package AST + pkgs, err := parser.ParseDir(dirpath, filter, parser.ParseComments) + if err != nil { + println("parse", dirpath, err.String()) + panic("fail") + } + return pkgs +} + +func main() { + st := &runtime.MemStats + n := flag.Int("n", 4, "iterations") + p := flag.Int("p", len(packages), "# of packages to keep in memory") + flag.BoolVar(&st.DebugGC, "d", st.DebugGC, "print GC debugging info (pause times)") + flag.Parse() + + var t0 int64 + pkgroot := runtime.GOROOT() + "/src/pkg/" + for pass := 0; pass < 2; pass++ { + // Once the heap is grown to full size, reset counters. + // This hides the start-up pauses, which are much smaller + // than the normal pauses and would otherwise make + // the average look much better than it actually is. + st.NumGC = 0 + st.PauseNs = 0 + t0 = time.Nanoseconds() + + for i := 0; i < *n; i++ { + parsed := make([]map[string]*ast.Package, *p) + for j := range parsed { + parsed[j] = parseDir(pkgroot + packages[j%len(packages)]) + } + } + runtime.GC() + } + t1 := time.Nanoseconds() + + fmt.Printf("Alloc=%d/%d Heap=%d Mallocs=%d PauseTime=%.3f/%d = %.3f\n", + st.Alloc, st.TotalAlloc, + st.Sys, + st.Mallocs, float64(st.PauseNs)/1e9, + st.NumGC, float64(st.PauseNs)/1e9/float64(st.NumGC)) + + fmt.Printf("%10s %10s %10s\n", "size", "#alloc", "#free") + for _, s := range st.BySize { + fmt.Printf("%10d %10d %10d\n", s.Size, s.Mallocs, s.Frees) + } + + // Standard gotest benchmark output, collected by build dashboard. + fmt.Printf("garbage.BenchmarkParser %d %d ns/op\n", *n, (t1-t0)/int64(*n)) + fmt.Printf("garbage.BenchmarkParserPause %d %d ns/op\n", st.NumGC, int64(st.PauseNs)/int64(st.NumGC)) +} + + +var packages = []string{ + "archive/tar", + "asn1", + "big", + "bufio", + "bytes", + "cmath", + "compress/flate", + "compress/gzip", + "compress/zlib", + "container/heap", + "container/list", + "container/ring", + "container/vector", + "crypto/aes", + "crypto/block", + "crypto/blowfish", + "crypto/hmac", + "crypto/md4", + "crypto/md5", + "crypto/rand", + "crypto/rc4", + "crypto/rsa", + "crypto/sha1", + "crypto/sha256", + "crypto/sha512", + "crypto/subtle", + "crypto/tls", + "crypto/x509", + "crypto/xtea", + "debug/dwarf", + "debug/macho", + "debug/elf", + "debug/gosym", + "debug/proc", + "ebnf", + "encoding/ascii85", + "encoding/base64", + "encoding/binary", + "encoding/git85", + "encoding/hex", + "encoding/pem", + "exec", + "exp/datafmt", + "exp/draw", + "exp/eval", + "exp/iterable", + "expvar", + "flag", + "fmt", + "go/ast", + "go/doc", + "go/parser", + "go/printer", + "go/scanner", + "go/token", + "gob", + "hash", + "hash/adler32", + "hash/crc32", + "hash/crc64", + "http", + "image", + "image/jpeg", + "image/png", + "io", + "io/ioutil", + "json", + "log", + "math", + "mime", + "net", + "nntp", + "os", + "os/signal", + "patch", + "path", + "rand", + "reflect", + "regexp", + "rpc", + "runtime", + "scanner", + "sort", + "strconv", + "strings", + "sync", + "syscall", + "syslog", + "tabwriter", + "template", + "testing", + "testing/iotest", + "testing/quick", + "testing/script", + "time", + "unicode", + "utf8", + "utf16", + "websocket", + "xml", +} diff --git a/gcc/testsuite/go.test/test/garbage/peano.go b/gcc/testsuite/go.test/test/garbage/peano.go new file mode 100644 index 0000000..b026354 --- /dev/null +++ b/gcc/testsuite/go.test/test/garbage/peano.go @@ -0,0 +1,137 @@ +// $G $F.go && $L $F.$A && ./$A.out + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package main + +import ( + "fmt" + "runtime" + "time" +) + + +type Number struct { + next *Number +} + + +// ------------------------------------- +// Peano primitives + +func zero() *Number { return nil } + + +func is_zero(x *Number) bool { return x == nil } + + +func add1(x *Number) *Number { + e := new(Number) + e.next = x + return e +} + + +func sub1(x *Number) *Number { return x.next } + + +func add(x, y *Number) *Number { + if is_zero(y) { + return x + } + + return add(add1(x), sub1(y)) +} + + +func mul(x, y *Number) *Number { + if is_zero(x) || is_zero(y) { + return zero() + } + + return add(mul(x, sub1(y)), x) +} + + +func fact(n *Number) *Number { + if is_zero(n) { + return add1(zero()) + } + + return mul(fact(sub1(n)), n) +} + + +// ------------------------------------- +// Helpers to generate/count Peano integers + +func gen(n int) *Number { + if n > 0 { + return add1(gen(n - 1)) + } + + return zero() +} + + +func count(x *Number) int { + if is_zero(x) { + return 0 + } + + return count(sub1(x)) + 1 +} + + +func check(x *Number, expected int) { + var c = count(x) + if c != expected { + panic(fmt.Sprintf("error: found %d; expected %d", c, expected)) + } +} + + +// ------------------------------------- +// Test basic functionality + +func verify() { + check(zero(), 0) + check(add1(zero()), 1) + check(gen(10), 10) + + check(add(gen(3), zero()), 3) + check(add(zero(), gen(4)), 4) + check(add(gen(3), gen(4)), 7) + + check(mul(zero(), zero()), 0) + check(mul(gen(3), zero()), 0) + check(mul(zero(), gen(4)), 0) + check(mul(gen(3), add1(zero())), 3) + check(mul(add1(zero()), gen(4)), 4) + check(mul(gen(3), gen(4)), 12) + + check(fact(zero()), 1) + check(fact(add1(zero())), 1) + check(fact(gen(5)), 120) +} + + +// ------------------------------------- +// Factorial + + +func main() { + st := &runtime.MemStats + t0 := time.Nanoseconds() + verify() + for i := 0; i <= 9; i++ { + print(i, "! = ", count(fact(gen(i))), "\n") + } + runtime.GC() + t1 := time.Nanoseconds() + + fmt.Printf("garbage.BenchmarkPeano 1 %d ns/op\n", t1-t0) + fmt.Printf("garbage.BenchmarkPeanoPause %d %d ns/op\n", st.NumGC, int64(st.PauseNs)/int64(st.NumGC)) +} diff --git a/gcc/testsuite/go.test/test/garbage/tree.go b/gcc/testsuite/go.test/test/garbage/tree.go new file mode 100644 index 0000000..816693f --- /dev/null +++ b/gcc/testsuite/go.test/test/garbage/tree.go @@ -0,0 +1,104 @@ +/* +Redistribution and use in source and binary forms, with or without +modification, are permitted provided that the following conditions are met: + + * Redistributions of source code must retain the above copyright + notice, this list of conditions and the following disclaimer. + + * Redistributions in binary form must reproduce the above copyright + notice, this list of conditions and the following disclaimer in the + documentation and/or other materials provided with the distribution. + + * Neither the name of "The Computer Language Benchmarks Game" nor the + name of "The Computer Language Shootout Benchmarks" nor the names of + its contributors may be used to endorse or promote products derived + from this software without specific prior written permission. + +THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" +AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE +IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE +ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT OWNER OR CONTRIBUTORS BE +LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR +CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF +SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS +INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN +CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) +ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE +POSSIBILITY OF SUCH DAMAGE. +*/ + +/* The Computer Language Benchmarks Game + * http://shootout.alioth.debian.org/ + * + * contributed by The Go Authors. + * based on C program by Kevin Carson + */ + +package main + +import ( + "flag" + "fmt" + "runtime" + "time" +) + +var n = flag.Int("n", 16, "depth") + +type Node struct { + item int + left, right *Node +} + +func bottomUpTree(item, depth int) *Node { + if depth <= 0 { + return &Node{item: item} + } + return &Node{item, bottomUpTree(2*item-1, depth-1), bottomUpTree(2*item, depth-1)} +} + +func (n *Node) itemCheck() int { + if n.left == nil { + return n.item + } + return n.item + n.left.itemCheck() - n.right.itemCheck() +} + +const minDepth = 4 + +func main() { + flag.Parse() + + t0 := time.Nanoseconds() + + maxDepth := *n + if minDepth+2 > *n { + maxDepth = minDepth + 2 + } + stretchDepth := maxDepth + 1 + + check := bottomUpTree(0, stretchDepth).itemCheck() + fmt.Printf("stretch tree of depth %d\t check: %d\n", stretchDepth, check) + + longLivedTree := bottomUpTree(0, maxDepth) + + for depth := minDepth; depth <= maxDepth; depth += 2 { + iterations := 1 << uint(maxDepth-depth+minDepth) + check = 0 + + for i := 1; i <= iterations; i++ { + check += bottomUpTree(i, depth).itemCheck() + check += bottomUpTree(-i, depth).itemCheck() + } + fmt.Printf("%d\t trees of depth %d\t check: %d\n", iterations*2, depth, check) + } + fmt.Printf("long lived tree of depth %d\t check: %d\n", maxDepth, longLivedTree.itemCheck()) + + t1 := time.Nanoseconds() + st := &runtime.MemStats + + // Standard gotest benchmark output, collected by build dashboard. + fmt.Printf("garbage.BenchmarkTree %d %d ns/op\n", *n, (t1-t0)/int64(*n)) + fmt.Printf("garbage.BenchmarkTreePause %d %d ns/op\n", st.NumGC, int64(st.PauseNs)/int64(st.NumGC)) + +} diff --git a/gcc/testsuite/go.test/test/gc.go b/gcc/testsuite/go.test/test/gc.go new file mode 100644 index 0000000..3aab8fa --- /dev/null +++ b/gcc/testsuite/go.test/test/gc.go @@ -0,0 +1,24 @@ +// $G $F.go && $L $F.$A && ./$A.out + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package main + +import "runtime" + +func mk2() { + b := new([10000]byte) + _ = b + // println(b, "stored at", &b) +} + +func mk1() { mk2() } + +func main() { + for i := 0; i < 10; i++ { + mk1() + runtime.GC() + } +} diff --git a/gcc/testsuite/go.test/test/gc1.go b/gcc/testsuite/go.test/test/gc1.go new file mode 100644 index 0000000..84034e7 --- /dev/null +++ b/gcc/testsuite/go.test/test/gc1.go @@ -0,0 +1,14 @@ +// $G $F.go && $L $F.$A && ./$A.out + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package main + +func main() { + for i := 0; i < 1e5; i++ { + x := new([100]byte) + _ = x + } +} diff --git a/gcc/testsuite/go.test/test/golden-arm.out b/gcc/testsuite/go.test/test/golden-arm.out new file mode 100644 index 0000000..41829fb --- /dev/null +++ b/gcc/testsuite/go.test/test/golden-arm.out @@ -0,0 +1,131 @@ + +=========== ./cmp2.go +panic: runtime error: comparing uncomparable type []int + +panic PC=xxx + +=========== ./cmp3.go +panic: runtime error: comparing uncomparable type []int + +panic PC=xxx + +=========== ./cmp4.go +panic: runtime error: hash of unhashable type []int + +panic PC=xxx + +=========== ./cmp5.go +panic: runtime error: hash of unhashable type []int + +panic PC=xxx + +=========== ./deferprint.go +printing: 1 2 3 4 5 6 7 8 9 10 11 12 13 14 15 16 17 18 19 20 +42 true false true +1.500000e+000 world 0x0 [0/0]0x0 0x0 0x0 255 + +=========== ./helloworld.go +hello, world + +=========== ./peano.go +0! = 1 +1! = 1 +2! = 2 +3! = 6 +4! = 24 +5! = 120 +6! = 720 +7! = 5040 +8! = 40320 +9! = 362880 + +=========== ./printbig.go +-9223372036854775808 +9223372036854775807 + +=========== ./sigchld.go +survived SIGCHLD + +=========== ./sinit.go +FAIL + +=========== ./turing.go +Hello World! + +=========== ken/intervar.go + print 1 bio 2 file 3 -- abc + +=========== ken/label.go +100 + +=========== ken/rob1.go +9876543210 + +=========== ken/rob2.go +(defn foo (add 12 34)) + +=========== ken/simpprint.go +hello world + +=========== ken/simpswitch.go +0out01out12out2aout34out4fiveout56out6aout78out89out9 + +=========== ken/string.go +abcxyz-abcxyz-abcxyz-abcxyz-abcxyz-abcxyz-abcxyz + +=========== chan/doubleselect.go +PASS + +=========== chan/nonblock.go +PASS + +=========== interface/fail.go +panic: interface conversion: *main.S is not main.I: missing method Foo + +panic PC=xxx + +=========== interface/returntype.go +panic: interface conversion: *main.S is not main.I2: missing method Name + +panic PC=xxx + +=========== fixedbugs/bug016.go +fixedbugs/bug016.go:11: constant -3 overflows uint + +=========== fixedbugs/bug027.go +hi +0 44444 +1 3333 +2 222 +3 11 +4 0 +0 44444 +1 3333 +2 222 +3 11 +4 0 + +=========== fixedbugs/bug067.go +ok + +=========== fixedbugs/bug070.go +outer loop top k 0 +inner loop top i 0 +do break +broke + +=========== fixedbugs/bug081.go +fixedbugs/bug081.go:9: typechecking loop + +=========== fixedbugs/bug093.go +M + +=========== fixedbugs/bug113.go +panic: interface conversion: interface is int, not int32 + +panic PC=xxx + +=========== fixedbugs/bug148.go +2 3 +panic: interface conversion: interface is main.T, not main.T + +panic PC=xxx diff --git a/gcc/testsuite/go.test/test/golden.out b/gcc/testsuite/go.test/test/golden.out new file mode 100644 index 0000000..49bca4b --- /dev/null +++ b/gcc/testsuite/go.test/test/golden.out @@ -0,0 +1,179 @@ + +== ./ + +=========== ./cmp2.go +panic: runtime error: comparing uncomparable type []int + +panic PC=xxx + +=========== ./cmp3.go +panic: runtime error: comparing uncomparable type []int + +panic PC=xxx + +=========== ./cmp4.go +panic: runtime error: hash of unhashable type []int + +panic PC=xxx + +=========== ./cmp5.go +panic: runtime error: hash of unhashable type []int + +panic PC=xxx + +=========== ./deferprint.go +printing: 1 2 3 4 5 6 7 8 9 10 11 12 13 14 15 16 17 18 19 20 +42 true false true +1.500000e+000 world 0x0 [0/0]0x0 0x0 0x0 255 + +=========== ./helloworld.go +hello, world + +=========== ./peano.go +0! = 1 +1! = 1 +2! = 2 +3! = 6 +4! = 24 +5! = 120 +6! = 720 +7! = 5040 +8! = 40320 +9! = 362880 + +=========== ./printbig.go +-9223372036854775808 +9223372036854775807 + +=========== ./sigchld.go +survived SIGCHLD + +=========== ./sinit.go +FAIL + +=========== ./turing.go +Hello World! + +== ken/ + +=========== ken/cplx0.go +(+5.000000e+000+6.000000e+000i) +(+5.000000e+000+6.000000e+000i) +(+5.000000e+000+6.000000e+000i) +(+5.000000e+000+6.000000e+000i) + +=========== ken/cplx3.go +(+1.292308e+000-1.384615e-001i) +(+1.292308e+000-1.384615e-001i) +64 + +=========== ken/cplx4.go +c = (-5.000000-6.000000i) +c = (5.000000+6.000000i) +c = (5.000000+6.000000i) +c = (5.000000+6.000000i) +c = (5+6i) +c = (13+7i) + +=========== ken/cplx5.go +(+5.000000e+000-5.000000e+000i) +(+5.000000e+000-5.000000e+000i) +(+5.000000e+000-5.000000e+000i) +(+5.000000e+000-5.000000e+000i) +(+5.000000e+000-5.000000e+000i) +(+5.000000e+000-5.000000e+000i) +(+5.000000e+000-5.000000e+000i) + +=========== ken/intervar.go + print 1 bio 2 file 3 -- abc + +=========== ken/label.go +100 + +=========== ken/rob1.go +9876543210 + +=========== ken/rob2.go +(defn foo (add 12 34)) + +=========== ken/simpprint.go +hello world + +=========== ken/simpswitch.go +0out01out12out2aout34out4fiveout56out6aout78out89out9 + +=========== ken/string.go +abcxyz-abcxyz-abcxyz-abcxyz-abcxyz-abcxyz-abcxyz + +== chan/ + +=========== chan/doubleselect.go +PASS + +=========== chan/nonblock.go +PASS + +== interface/ + +=========== interface/fail.go +panic: interface conversion: *main.S is not main.I: missing method Foo + +panic PC=xxx + +=========== interface/returntype.go +panic: interface conversion: *main.S is not main.I2: missing method Name + +panic PC=xxx + +== nilptr/ + +== syntax/ + +== fixedbugs/ + +=========== fixedbugs/bug016.go +fixedbugs/bug016.go:11: constant -3 overflows uint + +=========== fixedbugs/bug027.go +hi +0 44444 +1 3333 +2 222 +3 11 +4 0 +0 44444 +1 3333 +2 222 +3 11 +4 0 + +=========== fixedbugs/bug067.go +ok + +=========== fixedbugs/bug070.go +outer loop top k 0 +inner loop top i 0 +do break +broke + +=========== fixedbugs/bug081.go +fixedbugs/bug081.go:9: typechecking loop + +=========== fixedbugs/bug093.go +M + +=========== fixedbugs/bug113.go +panic: interface conversion: interface is int, not int32 + +panic PC=xxx + +=========== fixedbugs/bug148.go +2 3 +panic: interface conversion: interface is main.T, not main.T + +panic PC=xxx + +== bugs/ + +=========== bugs/bug260.go +FAIL +BUG: bug260 failed diff --git a/gcc/testsuite/go.test/test/hashmap.go b/gcc/testsuite/go.test/test/hashmap.go new file mode 100755 index 0000000..096ece0 --- /dev/null +++ b/gcc/testsuite/go.test/test/hashmap.go @@ -0,0 +1,181 @@ +// $G $F.go && $L $F.$A && ./$A.out + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package main + +// ---------------------------------------------------------------------------- +// Helper functions + +func ASSERT(p bool) { + if !p { + // panic 0 + } +} + + +// ---------------------------------------------------------------------------- +// Implementation of the HashMap + +type KeyType interface { + Hash() uint32 + Match(other *KeyType) bool +} + + +type ValueType interface { + // empty interface +} + + +type Entry struct { + key *KeyType + value *ValueType +} + + +type Array [1024]Entry + +type HashMap struct { + map_ *Array + log2_capacity_ uint32 + occupancy_ uint32 +} + + +func (m *HashMap) capacity() uint32 { + return 1 << m.log2_capacity_ +} + + +func (m *HashMap) Clear() { + // Mark all entries as empty. + var i uint32 = m.capacity() - 1 + for i > 0 { + m.map_[i].key = nil + i = i - 1 + } + m.occupancy_ = 0 +} + + +func (m *HashMap) Initialize (initial_log2_capacity uint32) { + m.log2_capacity_ = initial_log2_capacity + m.map_ = new(Array) + m.Clear() +} + + +func (m *HashMap) Probe (key *KeyType) *Entry { + ASSERT(key != nil) + + var i uint32 = key.Hash() % m.capacity() + ASSERT(0 <= i && i < m.capacity()) + + ASSERT(m.occupancy_ < m.capacity()) // guarantees loop termination + for m.map_[i].key != nil && !m.map_[i].key.Match(key) { + i++ + if i >= m.capacity() { + i = 0 + } + } + + return &m.map_[i] +} + + +func (m *HashMap) Lookup (key *KeyType, insert bool) *Entry { + // Find a matching entry. + var p *Entry = m.Probe(key) + if p.key != nil { + return p + } + + // No entry found; insert one if necessary. + if insert { + p.key = key + p.value = nil + m.occupancy_++ + + // Grow the map if we reached >= 80% occupancy. + if m.occupancy_ + m.occupancy_/4 >= m.capacity() { + m.Resize() + p = m.Probe(key) + } + + return p + } + + // No entry found and none inserted. + return nil +} + + +func (m *HashMap) Resize() { + var hmap *Array = m.map_ + var n uint32 = m.occupancy_ + + // Allocate a new map of twice the current size. + m.Initialize(m.log2_capacity_ << 1) + + // Rehash all current entries. + var i uint32 = 0 + for n > 0 { + if hmap[i].key != nil { + m.Lookup(hmap[i].key, true).value = hmap[i].value + n = n - 1 + } + i++ + } +} + + +// ---------------------------------------------------------------------------- +// Test code + +type Number struct { + x uint32 +} + + +func (n *Number) Hash() uint32 { + return n.x * 23 +} + + +func (n *Number) Match(other *KeyType) bool { + // var y *Number = other + // return n.x == y.x + return false +} + + +func MakeNumber (x uint32) *Number { + var n *Number = new(Number) + n.x = x + return n +} + + +func main() { + // func (n int) int { return n + 1; }(1) + + //print "HashMap - gri 2/8/2008\n" + + var hmap *HashMap = new(HashMap) + hmap.Initialize(0) + + var x1 *Number = MakeNumber(1001) + var x2 *Number = MakeNumber(2002) + var x3 *Number = MakeNumber(3003) + _, _, _ = x1, x2, x3 + + // this doesn't work I think... + //hmap.Lookup(x1, true) + //hmap.Lookup(x2, true) + //hmap.Lookup(x3, true) + + //print "done\n" +} diff --git a/gcc/testsuite/go.test/test/helloworld.go b/gcc/testsuite/go.test/test/helloworld.go new file mode 100644 index 0000000..e55a74b --- /dev/null +++ b/gcc/testsuite/go.test/test/helloworld.go @@ -0,0 +1,11 @@ +// $G $F.go && $L $F.$A && ./$A.out + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package main + +func main() { + print("hello, world\n") +} diff --git a/gcc/testsuite/go.test/test/if.go b/gcc/testsuite/go.test/test/if.go new file mode 100644 index 0000000..db1fe8b --- /dev/null +++ b/gcc/testsuite/go.test/test/if.go @@ -0,0 +1,99 @@ +// $G $F.go && $L $F.$A && ./$A.out + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package main + +func assertequal(is, shouldbe int, msg string) { + if is != shouldbe { + print("assertion fail", msg, "\n") + panic(1) + } +} + +func main() { + i5 := 5 + i7 := 7 + + var count int + + count = 0 + if true { + count = count + 1 + } + assertequal(count, 1, "if true") + + count = 0 + if false { + count = count + 1 + } + assertequal(count, 0, "if false") + + count = 0 + if one := 1; true { + count = count + one + } + assertequal(count, 1, "if true one") + + count = 0 + if one := 1; false { + count = count + 1 + _ = one + } + assertequal(count, 0, "if false one") + + count = 0 + if { + count = count + 1 + } + assertequal(count, 1, "if empty") + + count = 0 + if one := 1; true { + count = count + one + } + assertequal(count, 1, "if empty one") + + count = 0 + if i5 < i7 { + count = count + 1 + } + assertequal(count, 1, "if cond") + + count = 0 + if true { + count = count + 1 + } else + count = count - 1 + assertequal(count, 1, "if else true") + + count = 0 + if false { + count = count + 1 + } else + count = count - 1 + assertequal(count, -1, "if else false") + + count = 0 + if t:=1; false { + count = count + 1 + _ = t + t := 7 + _ = t + } else + count = count - t + assertequal(count, -1, "if else false var") + + count = 0 + t := 1 + if false { + count = count + 1 + t := 7 + _ = t + } else + count = count - t + _ = t + assertequal(count, -1, "if else false var outside") +} diff --git a/gcc/testsuite/go.test/test/if1.go b/gcc/testsuite/go.test/test/if1.go new file mode 100644 index 0000000..061c364 --- /dev/null +++ b/gcc/testsuite/go.test/test/if1.go @@ -0,0 +1,20 @@ +// $G $F.go && $L $F.$A && ./$A.out + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package main + +import "os" + +func main() { + count := 7 + if one := 1; { + count = count + one + } + if count != 8 { + print(count, " should be 8\n") + os.Exit(1) + } +} diff --git a/gcc/testsuite/go.test/test/import.go b/gcc/testsuite/go.test/test/import.go new file mode 100644 index 0000000..9633034 --- /dev/null +++ b/gcc/testsuite/go.test/test/import.go @@ -0,0 +1,25 @@ +// $G $D/$F.go + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +// check that when import gives multiple names +// to a type, they're still all the same type + +package main + +import _os_ "os" +import "os" +import . "os" + +func f(e os.Error) + +func main() { + var _e_ _os_.Error + var dot Error + + f(_e_) + f(dot) +} + diff --git a/gcc/testsuite/go.test/test/import1.go b/gcc/testsuite/go.test/test/import1.go new file mode 100644 index 0000000..8bb2a94 --- /dev/null +++ b/gcc/testsuite/go.test/test/import1.go @@ -0,0 +1,17 @@ +// errchk $G -e $D/$F.go + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +// check for import conflicts + +package main + +import "bufio" // GCCGO_ERROR "previous|not used" +import bufio "os" // ERROR "redeclared|redefinition|incompatible" + +import ( + "fmt" // GCCGO_ERROR "previous|not used" + fmt "math" // ERROR "redeclared|redefinition|incompatible" +) diff --git a/gcc/testsuite/go.test/test/import2.go b/gcc/testsuite/go.test/test/import2.go new file mode 100644 index 0000000..0efc285 --- /dev/null +++ b/gcc/testsuite/go.test/test/import2.go @@ -0,0 +1,42 @@ +// true # used by import3 + +// Copyright 2010 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package p + +var C1 chan <- chan int = (chan<- (chan int))(nil) +var C2 chan (<- chan int) = (chan (<-chan int))(nil) +var C3 <- chan chan int = (<-chan (chan int))(nil) +var C4 chan chan <- int = (chan (chan<- int))(nil) + +var C5 <- chan <- chan int = (<-chan (<-chan int))(nil) +var C6 chan <- <- chan int = (chan<- (<-chan int))(nil) +var C7 chan <- chan <- int = (chan<- (chan<- int))(nil) + +var C8 <- chan <- chan chan int = (<-chan (<-chan (chan int)))(nil) +var C9 <- chan chan <- chan int = (<-chan (chan<- (chan int)))(nil) +var C10 chan <- <- chan chan int = (chan<- (<-chan (chan int)))(nil) +var C11 chan <- chan <- chan int = (chan<- (chan<- (chan int)))(nil) +var C12 chan chan <- <- chan int = (chan (chan<- (<-chan int)))(nil) +var C13 chan chan <- chan <- int = (chan (chan<- (chan<- int)))(nil) + +var R1 chan<- (chan int) = (chan <- chan int)(nil) +var R3 <-chan (chan int) = (<- chan chan int)(nil) +var R4 chan (chan<- int) = (chan chan <- int)(nil) + +var R5 <-chan (<-chan int) = (<- chan <- chan int)(nil) +var R6 chan<- (<-chan int) = (chan <- <- chan int)(nil) +var R7 chan<- (chan<- int) = (chan <- chan <- int)(nil) + +var R8 <-chan (<-chan (chan int)) = (<- chan <- chan chan int)(nil) +var R9 <-chan (chan<- (chan int)) = (<- chan chan <- chan int)(nil) +var R10 chan<- (<-chan (chan int)) = (chan <- <- chan chan int)(nil) +var R11 chan<- (chan<- (chan int)) = (chan <- chan <- chan int)(nil) +var R12 chan (chan<- (<-chan int)) = (chan chan <- <- chan int)(nil) +var R13 chan (chan<- (chan<- int)) = (chan chan <- chan <- int)(nil) + +var F1 func() func() int +func F2() func() func() int +func F3(func() func() int) diff --git a/gcc/testsuite/go.test/test/import3.go b/gcc/testsuite/go.test/test/import3.go new file mode 100644 index 0000000..e4900b9 --- /dev/null +++ b/gcc/testsuite/go.test/test/import3.go @@ -0,0 +1,54 @@ +// $G $D/import2.go && $G $D/$F.go + +// Copyright 2010 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +// Check that all the types from import2.go made it +// intact and with the same meaning, by assigning to or using them. + +package main + +import "./import2" + +func f3(func() func() int) + +func main() { + p.F3(p.F1) + p.F3(p.F2()) + f3(p.F1) + f3(p.F2()) + + p.C1 = (chan<- (chan int))(nil) + p.C2 = (chan (<-chan int))(nil) + p.C3 = (<-chan (chan int))(nil) + p.C4 = (chan (chan<- int))(nil) + + p.C5 = (<-chan (<-chan int))(nil) + p.C6 = (chan<- (<-chan int))(nil) + p.C7 = (chan<- (chan<- int))(nil) + + p.C8 = (<-chan (<-chan (chan int)))(nil) + p.C9 = (<-chan (chan<- (chan int)))(nil) + p.C10 = (chan<- (<-chan (chan int)))(nil) + p.C11 = (chan<- (chan<- (chan int)))(nil) + p.C12 = (chan (chan<- (<-chan int)))(nil) + p.C13 = (chan (chan<- (chan<- int)))(nil) + + p.R1 = (chan <- chan int)(nil) + p.R3 = (<- chan chan int)(nil) + p.R4 = (chan chan <- int)(nil) + + p.R5 = (<- chan <- chan int)(nil) + p.R6 = (chan <- <- chan int)(nil) + p.R7 = (chan <- chan <- int)(nil) + + p.R8 = (<- chan <- chan chan int)(nil) + p.R9 = (<- chan chan <- chan int)(nil) + p.R10 = (chan <- <- chan chan int)(nil) + p.R11 = (chan <- chan <- chan int)(nil) + p.R12 = (chan chan <- <- chan int)(nil) + p.R13 = (chan chan <- chan <- int)(nil) + +} + diff --git a/gcc/testsuite/go.test/test/import4.go b/gcc/testsuite/go.test/test/import4.go new file mode 100644 index 0000000..1ae1d0e --- /dev/null +++ b/gcc/testsuite/go.test/test/import4.go @@ -0,0 +1,24 @@ +// $G $D/empty.go && errchk $G $D/$F.go + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package main + +// various kinds of imported and not used + +// standard +import "fmt" // ERROR "imported and not used.*fmt" + +// renamed +import X "math" // ERROR "imported and not used.*math" + +// import dot +import . "bufio" // ERROR "imported and not used.*bufio" + +// again, package without anything in it +import "./empty" // ERROR "imported and not used.*empty" +import Z "./empty" // ERROR "imported and not used.*empty" +import . "./empty" // ERROR "imported and not used.*empty" + diff --git a/gcc/testsuite/go.test/test/index.go b/gcc/testsuite/go.test/test/index.go new file mode 100644 index 0000000..a91294c --- /dev/null +++ b/gcc/testsuite/go.test/test/index.go @@ -0,0 +1,224 @@ +// $G $D/$F.go && $L $F.$A && +// ./$A.out -pass 0 >tmp.go && $G tmp.go && $L -o tmp1.$A tmp.$A && ./tmp1.$A && +// ./$A.out -pass 1 >tmp.go && errchk $G -e tmp.go && +// ./$A.out -pass 2 >tmp.go && errchk $G -e tmp.go +// rm -f tmp.go + +// Copyright 2010 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +// Generate test of index and slice bounds checks. + +package main + +import ( + "bufio" + "flag" + "fmt" + "os" +) + +const prolog = ` + +package main + +import ( + "runtime" +) + +type quad struct { x, y, z, w int } + +const ( + cj = 11 + ci int = 12 + ci32 int32 = 13 + ci64 int64 = 14 + ci64big int64 = 1<<31 + ci64bigger int64 = 1<<32 + chuge = 1<<100 + + cnj = -2 + cni int = -3 + cni32 int32 = -4 + cni64 int64 = -5 + cni64big int64 = -1<<31 + cni64bigger int64 = -1<<32 + cnhuge = -1<<100 +) + +var j int = 20 +var i int = 21 +var i32 int32 = 22 +var i64 int64 = 23 +var i64big int64 = 1<<31 +var i64bigger int64 = 1<<32 +var huge uint64 = 1<<64 - 1 + +var nj int = -10 +var ni int = -11 +var ni32 int32 = -12 +var ni64 int64 = -13 +var ni64big int64 = -1<<31 +var ni64bigger int64 = -1<<32 +var nhuge int64 = -1<<63 + +var si []int = make([]int, 10) +var ai [10]int +var pai *[10]int = &ai + +var sq []quad = make([]quad, 10) +var aq [10]quad +var paq *[10]quad = &aq + +type T struct { + si []int + ai [10]int + pai *[10]int + sq []quad + aq [10]quad + paq *[10]quad +} + +var t = T{si, ai, pai, sq, aq, paq} + +var pt = &T{si, ai, pai, sq, aq, paq} + +// test that f panics +func test(f func(), s string) { + defer func() { + if err := recover(); err == nil { + _, file, line, _ := runtime.Caller(2) + bug() + print(file, ":", line, ": ", s, " did not panic\n") + } + }() + f() +} + +var X interface{} +func use(y interface{}) { + X = y +} + +var didBug = false + +func bug() { + if !didBug { + didBug = true + println("BUG") + } +} + +func main() { +` + +// Passes: +// 0 - dynamic checks +// 1 - static checks of invalid constants (cannot assign to types) +// 2 - static checks of array bounds +var pass = flag.Int("pass", 0, "which test (0,1,2)") + +func testExpr(b *bufio.Writer, expr string) { + if *pass == 0 { + fmt.Fprintf(b, "\ttest(func(){use(%s)}, %q)\n", expr, expr) + } else { + fmt.Fprintf(b, "\tuse(%s) // ERROR \"index|overflow\"\n", expr) + } +} + +func main() { + b := bufio.NewWriter(os.Stdout) + + flag.Parse() + + if *pass == 0 { + fmt.Fprint(b, "// $G $D/$F.go && $L $F.$A && ./$A.out\n\n") + } else { + fmt.Fprint(b, "// errchk $G -e $D/$F.go\n\n") + } + fmt.Fprint(b, prolog) + + var choices = [][]string{ + // Direct value, fetch from struct, fetch from struct pointer. + // The last two cases get us to oindex_const_sudo in gsubr.c. + []string{"", "t.", "pt."}, + + // Array, pointer to array, slice. + []string{"a", "pa", "s"}, + + // Element is int, element is quad (struct). + // This controls whether we end up in gsubr.c (i) or cgen.c (q). + []string{"i", "q"}, + + // Variable or constant. + []string{"", "c"}, + + // Positive or negative. + []string{"", "n"}, + + // Size of index. + []string{"j", "i", "i32", "i64", "i64big", "i64bigger", "huge"}, + } + + forall(choices, func(x []string) { + p, a, e, c, n, i := x[0], x[1], x[2], x[3], x[4], x[5] + + // Pass: dynamic=0, static=1, 2. + // Which cases should be caught statically? + // Only constants, obviously. + // Beyond that, must be one of these: + // indexing into array or pointer to array + // negative constant + // large constant + thisPass := 0 + if c == "c" && (a == "a" || a == "pa" || n == "n" || i == "i64big" || i == "i64bigger" || i == "huge") { + if i == "huge" { + // Due to a detail of 6g's internals, + // the huge constant errors happen in an + // earlier pass than the others and inhibits + // the next pass from running. + // So run it as a separate check. + thisPass = 1 + } else { + thisPass = 2 + } + } + + // Only print the test case if it is appropriate for this pass. + if thisPass == *pass { + pae := p+a+e + cni := c+n+i + + // Index operation + testExpr(b, pae + "[" + cni + "]") + + // Slice operation. + // Low index 0 is a special case in ggen.c + // so test both 0 and 1. + testExpr(b, pae + "[0:" + cni + "]") + testExpr(b, pae + "[1:" + cni + "]") + testExpr(b, pae + "[" + cni + ":]") + testExpr(b, pae + "[" + cni + ":" + cni + "]") + } + }) + + fmt.Fprintln(b, "}") + b.Flush() +} + +func forall(choices [][]string, f func([]string)) { + x := make([]string, len(choices)) + + var recurse func(d int) + recurse = func(d int) { + if d >= len(choices) { + f(x) + return + } + for _, x[d] = range choices[d] { + recurse(d+1) + } + } + recurse(0) +} diff --git a/gcc/testsuite/go.test/test/indirect.go b/gcc/testsuite/go.test/test/indirect.go new file mode 100644 index 0000000..cfddde9 --- /dev/null +++ b/gcc/testsuite/go.test/test/indirect.go @@ -0,0 +1,85 @@ +// $G $D/$F.go && $L $F.$A && ./$A.out || echo BUG indirect + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package main + +var m0 map[string]int +var m1 *map[string]int +var m2 *map[string]int = &m0 +var m3 map[string]int = map[string]int{"a": 1} +var m4 *map[string]int = &m3 + +var s0 string +var s1 *string +var s2 *string = &s0 +var s3 string = "a" +var s4 *string = &s3 + +var a0 [10]int +var a1 *[10]int +var a2 *[10]int = &a0 + +var b0 []int +var b1 *[]int +var b2 *[]int = &b0 +var b3 []int = []int{1, 2, 3} +var b4 *[]int = &b3 + +func crash() { + // these uses of nil pointers + // would crash but should type check + println("crash", + len(a1)+cap(a1)) +} + +func nocrash() { + // this is spaced funny so that + // the compiler will print a different + // line number for each len call if + // it decides there are type errors. + // it might also help in the traceback. + x := + len(m0) + + len(m3) + if x != 1 { + println("wrong maplen") + panic("fail") + } + + x = + len(s0) + + len(s3) + if x != 1 { + println("wrong stringlen") + panic("fail") + } + + x = + len(a0) + + len(a2) + if x != 20 { + println("wrong arraylen") + panic("fail") + } + + x = + len(b0) + + len(b3) + if x != 3 { + println("wrong slicelen") + panic("fail") + } + + x = + cap(b0) + + cap(b3) + if x != 3 { + println("wrong slicecap") + panic("fail") + } +} + +func main() { nocrash() } diff --git a/gcc/testsuite/go.test/test/indirect1.go b/gcc/testsuite/go.test/test/indirect1.go new file mode 100644 index 0000000..0fd5c19 --- /dev/null +++ b/gcc/testsuite/go.test/test/indirect1.go @@ -0,0 +1,68 @@ +// errchk $G -e $D/$F.go + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package main + +var m0 map[string]int +var m1 *map[string]int +var m2 *map[string]int = &m0 +var m3 map[string]int = map[string]int{"a": 1} +var m4 *map[string]int = &m3 + +var s0 string +var s1 *string +var s2 *string = &s0 +var s3 string = "a" +var s4 *string = &s3 + +var a0 [10]int +var a1 *[10]int +var a2 *[10]int = &a0 + +var b0 []int +var b1 *[]int +var b2 *[]int = &b0 +var b3 []int = []int{1, 2, 3} +var b4 *[]int = &b3 + +func f() { + // this is spaced funny so that + // the compiler will print a different + // line number for each len call when + // it decides there are type errors. + x := + len(m0)+ + len(m1)+ // ERROR "illegal|invalid|must be" + len(m2)+ // ERROR "illegal|invalid|must be" + len(m3)+ + len(m4)+ // ERROR "illegal|invalid|must be" + + len(s0)+ + len(s1)+ // ERROR "illegal|invalid|must be" + len(s2)+ // ERROR "illegal|invalid|must be" + len(s3)+ + len(s4)+ // ERROR "illegal|invalid|must be" + + len(a0)+ + len(a1)+ + len(a2)+ + + cap(a0)+ + cap(a1)+ + cap(a2)+ + + len(b0)+ + len(b1)+ // ERROR "illegal|invalid|must be" + len(b2)+ // ERROR "illegal|invalid|must be" + len(b3)+ + len(b4)+ // ERROR "illegal|invalid|must be" + + cap(b0)+ + cap(b1)+ // ERROR "illegal|invalid|must be" + cap(b2)+ // ERROR "illegal|invalid|must be" + cap(b3)+ + cap(b4) // ERROR "illegal|invalid|must be" +} diff --git a/gcc/testsuite/go.test/test/initcomma.go b/gcc/testsuite/go.test/test/initcomma.go new file mode 100644 index 0000000..195d457 --- /dev/null +++ b/gcc/testsuite/go.test/test/initcomma.go @@ -0,0 +1,79 @@ +// $G $F.go && $L $F.$A && ./$A.out + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package main + +var a = []int{1, 2} +var b = [5]int{1, 2, 3} +var c = []int{1} +var d = [...]int{1, 2, 3} + +func main() { + if len(a) != 2 { + println("len a", len(a)) + panic("fail") + } + if len(b) != 5 { + println("len b", len(b)) + panic("fail") + } + if len(c) != 1 { + println("len d", len(c)) + panic("fail") + } + if len(d) != 3 { + println("len c", len(d)) + panic("fail") + } + + if a[0] != 1 { + println("a[0]", a[0]) + panic("fail") + } + if a[1] != 2 { + println("a[1]", a[1]) + panic("fail") + } + + if b[0] != 1 { + println("b[0]", b[0]) + panic("fail") + } + if b[1] != 2 { + println("b[1]", b[1]) + panic("fail") + } + if b[2] != 3 { + println("b[2]", b[2]) + panic("fail") + } + if b[3] != 0 { + println("b[3]", b[3]) + panic("fail") + } + if b[4] != 0 { + println("b[4]", b[4]) + panic("fail") + } + + if c[0] != 1 { + println("c[0]", c[0]) + panic("fail") + } + + if d[0] != 1 { + println("d[0]", d[0]) + panic("fail") + } + if d[1] != 2 { + println("d[1]", d[1]) + panic("fail") + } + if d[2] != 3 { + println("d[2]", d[2]) + panic("fail") + } +} diff --git a/gcc/testsuite/go.test/test/initialize.go b/gcc/testsuite/go.test/test/initialize.go new file mode 100644 index 0000000..6dd7d67 --- /dev/null +++ b/gcc/testsuite/go.test/test/initialize.go @@ -0,0 +1,62 @@ +// $G $D/$F.go && $L $F.$A && ./$A.out + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package main + +import "fmt" +import "reflect" + +type S struct { + A, B, C, X, Y, Z int +} + +type T struct { + S +} + +var a1 = S { 0, 0, 0, 1, 2, 3 } +var b1 = S { X: 1, Z: 3, Y: 2 } + +var a2 = S { 0, 0, 0, 0, 0, 0, } +var b2 = S { } + +var a3 = T { S { 1, 2, 3, 0, 0, 0, } } +var b3 = T { S: S{ A: 1, B: 2, C: 3 } } + +var a4 = &[16]byte { 0, 0, 0, 0, 1, 1, 1, 1, 0, 0, 0, 0, 1, 1, 0, 0, } +var b4 = &[16]byte { 4: 1, 1, 1, 1, 12: 1, 1, } + +var a5 = &[16]byte { 1, 0, 0, 0, 1, 1, 1, 1, 0, 0, 0, 0, 1, 1, 0, 0, } +var b5 = &[16]byte { 1, 4: 1, 1, 1, 1, 12: 1, 1, } + +var a6 = &[16]byte { 1, 0, 0, 0, 1, 1, 1, 1, 0, 0, 0, 0, 1, 1, 0, 0, } +var b6 = &[...]byte { 1, 4: 1, 1, 1, 1, 12: 1, 1, 0, 0,} + +type Same struct { + a, b interface{} +} + +var same = []Same { + Same{ a1, b1 }, + Same{ a2, b2 }, + Same{ a3, b3 }, + Same{ a4, b4 }, + Same{ a5, b5 }, + Same{ a6, b6 }, +} + +func main() { + ok := true + for _, s := range same { + if !reflect.DeepEqual(s.a, s.b) { + ok = false + fmt.Printf("not same: %v and %v\n", s.a, s.b) + } + } + if !ok { + fmt.Println("BUG: test/initialize") + } +} diff --git a/gcc/testsuite/go.test/test/initializerr.go b/gcc/testsuite/go.test/test/initializerr.go new file mode 100644 index 0000000..37f8a60 --- /dev/null +++ b/gcc/testsuite/go.test/test/initializerr.go @@ -0,0 +1,25 @@ +// errchk $G -e $D/$F.go + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package main + +type S struct { + A, B, C, X, Y, Z int +} + +type T struct { + S +} + +var x = 1 +var a1 = S { 0, X: 1 } // ERROR "mixture|undefined" +var a2 = S { Y: 3, Z: 2, Y: 3 } // ERROR "duplicate" +var a3 = T { 1, 2, 3, 4, 5, 6 } // ERROR "convert|too many" +var a4 = [5]byte{ 1, 2, 3, 4, 5, 6, 7, 8, 9, 10 } // ERROR "index|too many" +var a5 = []byte { x: 2 } // ERROR "index" + +var ok1 = S { } // should be ok +var ok2 = T { S: ok1 } // should be ok diff --git a/gcc/testsuite/go.test/test/initsyscall.go b/gcc/testsuite/go.test/test/initsyscall.go new file mode 100644 index 0000000..b5e5812 --- /dev/null +++ b/gcc/testsuite/go.test/test/initsyscall.go @@ -0,0 +1,27 @@ +// $G $D/$F.go && $L $F.$A && ./$A.out + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +// This used to crash because the scheduler +// tried to kick off a new scheduling thread for f +// when time.Nanoseconds went into the system call. +// It's not okay to schedule new goroutines +// until main has started. + +package main + +import "time" + +func f() { +} + +func init() { + go f() + time.Nanoseconds() +} + +func main() { +} + diff --git a/gcc/testsuite/go.test/test/int_lit.go b/gcc/testsuite/go.test/test/int_lit.go new file mode 100644 index 0000000..2644e17 --- /dev/null +++ b/gcc/testsuite/go.test/test/int_lit.go @@ -0,0 +1,24 @@ +// $G $F.go && $L $F.$A && ./$A.out + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package main + +import "os" + +func main() { + s := 0 + + 123 + + 0123 + + 0000 + + 0x0 + + 0x123 + + 0X0 + + 0X123 + if s != 788 { + print("s is ", s, "; should be 788\n") + os.Exit(1) + } +} diff --git a/gcc/testsuite/go.test/test/intcvt.go b/gcc/testsuite/go.test/test/intcvt.go new file mode 100644 index 0000000..407bcfd --- /dev/null +++ b/gcc/testsuite/go.test/test/intcvt.go @@ -0,0 +1,179 @@ +// $G $D/$F.go && $L $F.$A && ./$A.out + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package main + +const ( + ci8 = -1 << 7 + ci16 = -1<<15 + 100 + ci32 = -1<<31 + 100000 + ci64 = -1<<63 + 10000000001 + + cu8 = 1<<8 - 1 + cu16 = 1<<16 - 1234 + cu32 = 1<<32 - 1234567 + cu64 = 1<<64 - 1234567890123 + + cf32 = 1e8 + 0.5 + cf64 = -1e8 + 0.5 +) + +var ( + i8 int8 = ci8 + i16 int16 = ci16 + i32 int32 = ci32 + i64 int64 = ci64 + + u8 uint8 = cu8 + u16 uint16 = cu16 + u32 uint32 = cu32 + u64 uint64 = cu64 + + // f32 float32 = 1e8 + 0.5 + // f64 float64 = -1e8 + 0.5 +) + +func chki8(i, v int8) { + if i != v { + println(i, "!=", v) + panic("fail") + } +} +func chki16(i, v int16) { + if i != v { + println(i, "!=", v) + panic("fail") + } +} +func chki32(i, v int32) { + if i != v { + println(i, "!=", v) + panic("fail") + } +} +func chki64(i, v int64) { + if i != v { + println(i, "!=", v) + panic("fail") + } +} +func chku8(i, v uint8) { + if i != v { + println(i, "!=", v) + panic("fail") + } +} +func chku16(i, v uint16) { + if i != v { + println(i, "!=", v) + panic("fail") + } +} +func chku32(i, v uint32) { + if i != v { + println(i, "!=", v) + panic("fail") + } +} +func chku64(i, v uint64) { + if i != v { + println(i, "!=", v) + panic("fail") + } +} +//func chkf32(f, v float32) { if f != v { println(f, "!=", v); panic("fail") } } +//func chkf64(f, v float64) { if f != v { println(f, "!=", v); panic("fail") } } + +func main() { + chki8(int8(i8), ci8&0xff-1<<8) + chki8(int8(i16), ci16&0xff) + chki8(int8(i32), ci32&0xff-1<<8) + chki8(int8(i64), ci64&0xff) + chki8(int8(u8), cu8&0xff-1<<8) + chki8(int8(u16), cu16&0xff) + chki8(int8(u32), cu32&0xff) + chki8(int8(u64), cu64&0xff) + // chki8(int8(f32), 0) + // chki8(int8(f64), 0) + + chki16(int16(i8), ci8&0xffff-1<<16) + chki16(int16(i16), ci16&0xffff-1<<16) + chki16(int16(i32), ci32&0xffff-1<<16) + chki16(int16(i64), ci64&0xffff-1<<16) + chki16(int16(u8), cu8&0xffff) + chki16(int16(u16), cu16&0xffff-1<<16) + chki16(int16(u32), cu32&0xffff) + chki16(int16(u64), cu64&0xffff-1<<16) + // chki16(int16(f32), 0) + // chki16(int16(f64), 0) + + chki32(int32(i8), ci8&0xffffffff-1<<32) + chki32(int32(i16), ci16&0xffffffff-1<<32) + chki32(int32(i32), ci32&0xffffffff-1<<32) + chki32(int32(i64), ci64&0xffffffff) + chki32(int32(u8), cu8&0xffffffff) + chki32(int32(u16), cu16&0xffffffff) + chki32(int32(u32), cu32&0xffffffff-1<<32) + chki32(int32(u64), cu64&0xffffffff-1<<32) + // chki32(int32(f32), 0) + // chki32(int32(f64), 0) + + chki64(int64(i8), ci8&0xffffffffffffffff-1<<64) + chki64(int64(i16), ci16&0xffffffffffffffff-1<<64) + chki64(int64(i32), ci32&0xffffffffffffffff-1<<64) + chki64(int64(i64), ci64&0xffffffffffffffff-1<<64) + chki64(int64(u8), cu8&0xffffffffffffffff) + chki64(int64(u16), cu16&0xffffffffffffffff) + chki64(int64(u32), cu32&0xffffffffffffffff) + chki64(int64(u64), cu64&0xffffffffffffffff-1<<64) + // chki64(int64(f32), 0) + // chki64(int64(f64), 0) + + + chku8(uint8(i8), ci8&0xff) + chku8(uint8(i16), ci16&0xff) + chku8(uint8(i32), ci32&0xff) + chku8(uint8(i64), ci64&0xff) + chku8(uint8(u8), cu8&0xff) + chku8(uint8(u16), cu16&0xff) + chku8(uint8(u32), cu32&0xff) + chku8(uint8(u64), cu64&0xff) + // chku8(uint8(f32), 0) + // chku8(uint8(f64), 0) + + chku16(uint16(i8), ci8&0xffff) + chku16(uint16(i16), ci16&0xffff) + chku16(uint16(i32), ci32&0xffff) + chku16(uint16(i64), ci64&0xffff) + chku16(uint16(u8), cu8&0xffff) + chku16(uint16(u16), cu16&0xffff) + chku16(uint16(u32), cu32&0xffff) + chku16(uint16(u64), cu64&0xffff) + // chku16(uint16(f32), 0) + // chku16(uint16(f64), 0) + + chku32(uint32(i8), ci8&0xffffffff) + chku32(uint32(i16), ci16&0xffffffff) + chku32(uint32(i32), ci32&0xffffffff) + chku32(uint32(i64), ci64&0xffffffff) + chku32(uint32(u8), cu8&0xffffffff) + chku32(uint32(u16), cu16&0xffffffff) + chku32(uint32(u32), cu32&0xffffffff) + chku32(uint32(u64), cu64&0xffffffff) + // chku32(uint32(f32), 0) + // chku32(uint32(f64), 0) + + chku64(uint64(i8), ci8&0xffffffffffffffff) + chku64(uint64(i16), ci16&0xffffffffffffffff) + chku64(uint64(i32), ci32&0xffffffffffffffff) + chku64(uint64(i64), ci64&0xffffffffffffffff) + chku64(uint64(u8), cu8&0xffffffffffffffff) + chku64(uint64(u16), cu16&0xffffffffffffffff) + chku64(uint64(u32), cu32&0xffffffffffffffff) + chku64(uint64(u64), cu64&0xffffffffffffffff) + // chku64(uint64(f32), 0) + // chku64(uint64(f64), 0) +} diff --git a/gcc/testsuite/go.test/test/interface/bigdata.go b/gcc/testsuite/go.test/test/interface/bigdata.go new file mode 100644 index 0000000..44f6ab1 --- /dev/null +++ b/gcc/testsuite/go.test/test/interface/bigdata.go @@ -0,0 +1,75 @@ +// $G $D/$F.go && $L $F.$A && ./$A.out + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +// check that big vs small, pointer vs not +// interface methods work. + +package main + +type I interface { M() int64 } + +type BigPtr struct { a, b, c, d int64 } +func (z *BigPtr) M() int64 { return z.a+z.b+z.c+z.d } + +type SmallPtr struct { a int32 } +func (z *SmallPtr) M() int64 { return int64(z.a) } + +type IntPtr int32 +func (z *IntPtr) M() int64 { return int64(*z) } + +var bad bool + +func test(name string, i I) { + m := i.M() + if m != 12345 { + println(name, m) + bad = true + } +} + +func ptrs() { + var bigptr BigPtr = BigPtr{ 10000, 2000, 300, 45 } + var smallptr SmallPtr = SmallPtr{ 12345 } + var intptr IntPtr = 12345 + +// test("bigptr", bigptr) + test("&bigptr", &bigptr) +// test("smallptr", smallptr) + test("&smallptr", &smallptr) +// test("intptr", intptr) + test("&intptr", &intptr) +} + +type Big struct { a, b, c, d int64 } +func (z Big) M() int64 { return z.a+z.b+z.c+z.d } + +type Small struct { a int32 } +func (z Small) M() int64 { return int64(z.a) } + +type Int int32 +func (z Int) M() int64 { return int64(z) } + +func nonptrs() { + var big Big = Big{ 10000, 2000, 300, 45 } + var small Small = Small{ 12345 } + var int Int = 12345 + + test("big", big) + test("&big", &big) + test("small", small) + test("&small", &small) + test("int", int) + test("&int", &int) +} + +func main() { + ptrs() + nonptrs() + + if bad { + println("BUG: interface4") + } +} diff --git a/gcc/testsuite/go.test/test/interface/convert.go b/gcc/testsuite/go.test/test/interface/convert.go new file mode 100644 index 0000000..7f429f7 --- /dev/null +++ b/gcc/testsuite/go.test/test/interface/convert.go @@ -0,0 +1,147 @@ +// $G $D/$F.go && $L $F.$A && ./$A.out + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +// Check uses of all the different interface +// conversion runtime functions. + +package main + +type Stringer interface { + String() string +} +type StringLengther interface { + String() string + Length() int +} +type Empty interface{} + +type T string + +func (t T) String() string { + return string(t) +} +func (t T) Length() int { + return len(t) +} + +type U string + +func (u U) String() string { + return string(u) +} + +var t = T("hello") +var u = U("goodbye") +var e Empty +var s Stringer = t +var sl StringLengther = t +var i int +var ok bool + +func hello(s string) { + if s != "hello" { + println("not hello: ", s) + panic("fail") + } +} + +func five(i int) { + if i != 5 { + println("not 5: ", i) + panic("fail") + } +} + +func true(ok bool) { + if !ok { + panic("not true") + } +} + +func false(ok bool) { + if ok { + panic("not false") + } +} + +func main() { + // T2I + s = t + hello(s.String()) + + // I2T + t = s.(T) + hello(t.String()) + + // T2E + e = t + + // E2T + t = e.(T) + hello(t.String()) + + // T2I again + sl = t + hello(sl.String()) + five(sl.Length()) + + // I2I static + s = sl + hello(s.String()) + + // I2I dynamic + sl = s.(StringLengther) + hello(sl.String()) + five(sl.Length()) + + // I2E (and E2T) + e = s + hello(e.(T).String()) + + // E2I + s = e.(Stringer) + hello(s.String()) + + // I2T2 true + t, ok = s.(T) + true(ok) + hello(t.String()) + + // I2T2 false + _, ok = s.(U) + false(ok) + + // I2I2 true + sl, ok = s.(StringLengther) + true(ok) + hello(sl.String()) + five(sl.Length()) + + // I2I2 false (and T2I) + s = u + sl, ok = s.(StringLengther) + false(ok) + + // E2T2 true + t, ok = e.(T) + true(ok) + hello(t.String()) + + // E2T2 false + i, ok = e.(int) + false(ok) + + // E2I2 true + sl, ok = e.(StringLengther) + true(ok) + hello(sl.String()) + five(sl.Length()) + + // E2I2 false (and T2E) + e = u + sl, ok = e.(StringLengther) + false(ok) +} diff --git a/gcc/testsuite/go.test/test/interface/convert1.go b/gcc/testsuite/go.test/test/interface/convert1.go new file mode 100644 index 0000000..658b1a9 --- /dev/null +++ b/gcc/testsuite/go.test/test/interface/convert1.go @@ -0,0 +1,25 @@ +// $G $D/$F.go && $L $F.$A && ./$A.out + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +// Check that static interface conversion of +// interface value nil succeeds. + +package main + +type R interface { R() } +type RW interface { R(); W() } + +var e interface {} +var r R +var rw RW + +func main() { + r = r + r = rw + e = r + e = rw + rw = rw +} diff --git a/gcc/testsuite/go.test/test/interface/convert2.go b/gcc/testsuite/go.test/test/interface/convert2.go new file mode 100644 index 0000000..658b1a9 --- /dev/null +++ b/gcc/testsuite/go.test/test/interface/convert2.go @@ -0,0 +1,25 @@ +// $G $D/$F.go && $L $F.$A && ./$A.out + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +// Check that static interface conversion of +// interface value nil succeeds. + +package main + +type R interface { R() } +type RW interface { R(); W() } + +var e interface {} +var r R +var rw RW + +func main() { + r = r + r = rw + e = r + e = rw + rw = rw +} diff --git a/gcc/testsuite/go.test/test/interface/embed.go b/gcc/testsuite/go.test/test/interface/embed.go new file mode 100644 index 0000000..4a70239 --- /dev/null +++ b/gcc/testsuite/go.test/test/interface/embed.go @@ -0,0 +1,82 @@ +// $G $D/$F.go && $L $F.$A && ./$A.out + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +// Check methods derived from embedded interface and *interface values. + +package main + +import "os" + +const Value = 1e12 + +type Inter interface { M() int64 } + +type T int64 +func (t T) M() int64 { return int64(t) } +var t = T(Value) +var pt = &t +var ti Inter = t +var pti = &ti + +type S struct { Inter } +var s = S{ ti } +var ps = &s + +type SP struct { *Inter } +var sp = SP{ &ti } +var psp = &sp + +var i Inter +var pi = &i + +var ok = true + +func check(s string, v int64) { + if v != Value { + println(s, v) + ok = false + } +} + +func main() { + check("t.M()", t.M()) + check("pt.M()", pt.M()) + check("ti.M()", ti.M()) + check("pti.M()", pti.M()) + check("s.M()", s.M()) + check("ps.M()", ps.M()) + check("sp.M()", sp.M()) + check("psp.M()", psp.M()) + + i = t + check("i = t; i.M()", i.M()) + check("i = t; pi.M()", pi.M()) + + i = pt + check("i = pt; i.M()", i.M()) + check("i = pt; pi.M()", pi.M()) + + i = s + check("i = s; i.M()", i.M()) + check("i = s; pi.M()", pi.M()) + + i = ps + check("i = ps; i.M()", i.M()) + check("i = ps; pi.M()", pi.M()) + + i = sp + check("i = sp; i.M()", i.M()) + check("i = sp; pi.M()", pi.M()) + + i = psp + check("i = psp; i.M()", i.M()) + check("i = psp; pi.M()", pi.M()) + + if !ok { + println("BUG: interface10") + os.Exit(1) + } +} diff --git a/gcc/testsuite/go.test/test/interface/embed0.go b/gcc/testsuite/go.test/test/interface/embed0.go new file mode 100644 index 0000000..bbd81e7 --- /dev/null +++ b/gcc/testsuite/go.test/test/interface/embed0.go @@ -0,0 +1,29 @@ +// true # used by embed1.go + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +// Check that embedded interface types can have local methods. + +package p + +type T int +func (t T) m() {} + +type I interface { m() } +type J interface { I } + +func main() { + var i I + var j J + var t T + i = t + j = t + _ = i + _ = j + i = j + _ = i + j = i + _ = j +} diff --git a/gcc/testsuite/go.test/test/interface/embed1.go b/gcc/testsuite/go.test/test/interface/embed1.go new file mode 100644 index 0000000..24e5047 --- /dev/null +++ b/gcc/testsuite/go.test/test/interface/embed1.go @@ -0,0 +1,45 @@ +// $G $D/embed0.go && $G $D/$F.go && $L $F.$A && ./$A.out + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +// Check that embedded interface types can have local methods. + +package main + +import "./embed0" + +type T int +func (t T) m() {} + +type I interface { m() } +type J interface { I } + +type PI interface { p.I } +type PJ interface { p.J } + +func main() { + var i I + var j J + var t T + i = t + j = t + _ = i + _ = j + i = j + _ = i + j = i + _ = j + var pi PI + var pj PJ + var pt p.T + pi = pt + pj = pt + _ = pi + _ = pj + pi = pj + _ = pi + pj = pi + _ = pj +} diff --git a/gcc/testsuite/go.test/test/interface/explicit.go b/gcc/testsuite/go.test/test/interface/explicit.go new file mode 100644 index 0000000..b952f8f --- /dev/null +++ b/gcc/testsuite/go.test/test/interface/explicit.go @@ -0,0 +1,71 @@ +// errchk $G -e $D/$F.go + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +// Static error messages about interface conversions. + +package main + +type T struct { + a int +} + +var t *T + +type I interface { + M() +} + +var i I + +type I2 interface { + M() + N() +} + +var i2 I2 + +type E interface{} + +var e E + +func main() { + e = t // ok + t = e // ERROR "need explicit|need type assertion" + + // neither of these can work, + // because i has an extra method + // that t does not, so i cannot contain a t. + i = t // ERROR "incompatible|missing M method" + t = i // ERROR "incompatible|need type assertion" + + i = i2 // ok + i2 = i // ERROR "incompatible|missing N method" + + i = I(i2) // ok + i2 = I2(i) // ERROR "invalid|missing N method" + + e = E(t) // ok + t = T(e) // ERROR "need explicit|need type assertion|incompatible" +} + +type M interface { M() } +var m M + +var _ = m.(int) // ERROR "impossible type assertion" + +type Int int +func (Int) M(float) {} + +var _ = m.(Int) // ERROR "impossible type assertion" + +var ii int +var jj Int + +var m1 M = ii // ERROR "incompatible|missing" +var m2 M = jj // ERROR "incompatible|wrong type for M method" + +var m3 = M(ii) // ERROR "invalid|missing" +var m4 = M(jj) // ERROR "invalid|wrong type for M method" diff --git a/gcc/testsuite/go.test/test/interface/fail.go b/gcc/testsuite/go.test/test/interface/fail.go new file mode 100644 index 0000000..3e741d3 --- /dev/null +++ b/gcc/testsuite/go.test/test/interface/fail.go @@ -0,0 +1,26 @@ +// $G $D/$F.go && $L $F.$A && ! ./$A.out + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +// Check that interface conversion fails when method is missing. + +package main + +type I interface { + Foo() +} + +func main() { + var s *S + var i I + var e interface {} + e = s + i = e.(I) + _ = i +} + +// hide S down here to avoid static warning +type S struct { +} diff --git a/gcc/testsuite/go.test/test/interface/fake.go b/gcc/testsuite/go.test/test/interface/fake.go new file mode 100644 index 0000000..5cf3be0 --- /dev/null +++ b/gcc/testsuite/go.test/test/interface/fake.go @@ -0,0 +1,97 @@ +// $G $D/$F.go && $L $F.$A && ./$A.out + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +// Interface comparisons using types hidden +// inside reflected-on structs. + +package main + +import "reflect" + +type T struct { + f float32 + g float32 + + s string + t string + + u uint32 + v uint32 + + w uint32 + x uint32 + + y uint32 + z uint32 +} + +func add(s, t string) string { + return s + t +} + +func assert(b bool) { + if !b { + panic("assert") + } +} + +func main() { + var x T + x.f = 1.0 + x.g = x.f + x.s = add("abc", "def") + x.t = add("abc", "def") + x.u = 1 + x.v = 2 + x.w = 1<<28 + x.x = 2<<28 + x.y = 0x12345678 + x.z = x.y + + // check mem and string + v := reflect.NewValue(x) + i := v.(*reflect.StructValue).Field(0) + j := v.(*reflect.StructValue).Field(1) + assert(i.Interface() == j.Interface()) + + s := v.(*reflect.StructValue).Field(2) + t := v.(*reflect.StructValue).Field(3) + assert(s.Interface() == t.Interface()) + + // make sure different values are different. + // make sure whole word is being compared, + // not just a single byte. + i = v.(*reflect.StructValue).Field(4) + j = v.(*reflect.StructValue).Field(5) + assert(i.Interface() != j.Interface()) + + i = v.(*reflect.StructValue).Field(6) + j = v.(*reflect.StructValue).Field(7) + assert(i.Interface() != j.Interface()) + + i = v.(*reflect.StructValue).Field(8) + j = v.(*reflect.StructValue).Field(9) + assert(i.Interface() == j.Interface()) +} + +/* +comparing uncomparable type float32 +throw: interface compare + +panic PC=0x28ceb8 [1] +throw+0x41 /Users/rsc/goX/src/runtime/runtime.c:54 + throw(0x3014a, 0x0) +ifaceeq+0x15c /Users/rsc/goX/src/runtime/iface.c:501 + ifaceeq(0x2aa7c0, 0x0, 0x0, 0x0, 0x2aa7c0, ...) +sys·ifaceeq+0x48 /Users/rsc/goX/src/runtime/iface.c:527 + sys·ifaceeq(0x2aa7c0, 0x0, 0x0, 0x0, 0x2aa7c0, ...) +main·main+0x190 /Users/rsc/goX/src/cmd/gc/x.go:10 + main·main() +mainstart+0xf /Users/rsc/goX/src/runtime/amd64/asm.s:53 + mainstart() +sys·Goexit /Users/rsc/goX/src/runtime/proc.c:124 + sys·Goexit() +*/ diff --git a/gcc/testsuite/go.test/test/interface/pointer.go b/gcc/testsuite/go.test/test/interface/pointer.go new file mode 100644 index 0000000..e628b55 --- /dev/null +++ b/gcc/testsuite/go.test/test/interface/pointer.go @@ -0,0 +1,36 @@ +// errchk $G $D/$F.go + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +// Check that interface{M()} = *interface{M()} produces a compiler error. + +package main + +type Inst interface { + Next() *Inst +} + +type Regexp struct { + code []Inst + start Inst +} + +type Start struct { + foo *Inst +} + +func (start *Start) Next() *Inst { return nil } + + +func AddInst(Inst) *Inst { + print("ok in addinst\n") + return nil +} + +func main() { + print("call addinst\n") + var x Inst = AddInst(new(Start)) // ERROR "pointer to interface" + print("return from addinst\n") +} diff --git a/gcc/testsuite/go.test/test/interface/receiver.go b/gcc/testsuite/go.test/test/interface/receiver.go new file mode 100644 index 0000000..f53daf8 --- /dev/null +++ b/gcc/testsuite/go.test/test/interface/receiver.go @@ -0,0 +1,121 @@ +// $G $D/$F.go && $L $F.$A && ./$A.out + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +// Implicit methods for embedded types. +// Mixed pointer and non-pointer receivers. + +package main + +type T int + +var nv, np int + +func (t T) V() { + if t != 42 { + panic(t) + } + nv++ +} + +func (t *T) P() { + if *t != 42 { + println(t, *t) + panic("fail") + } + np++ +} + +type V interface { + V() +} +type P interface { + P() + V() +} + +type S struct { + T +} + +type SP struct { + *T +} + +func main() { + var t T + var v V + var p P + + t = 42 + + t.P() + t.V() + + v = t + v.V() + + p = &t + p.P() + p.V() + + v = &t + v.V() + + // p = t // ERROR + var i interface{} = t + if _, ok := i.(P); ok { + println("dynamic i.(P) succeeded incorrectly") + panic("fail") + } + + // println("--struct--"); + var s S + s.T = 42 + s.P() + s.V() + + v = s + s.V() + + p = &s + p.P() + p.V() + + v = &s + v.V() + + // p = s // ERROR + var j interface{} = s + if _, ok := j.(P); ok { + println("dynamic j.(P) succeeded incorrectly") + panic("fail") + } + + // println("--struct pointer--"); + var sp SP + sp.T = &t + sp.P() + sp.V() + + v = sp + sp.V() + + p = &sp + p.P() + p.V() + + v = &sp + v.V() + + p = sp // not error + p.P() + p.V() + + if nv != 13 || np != 7 { + println("bad count", nv, np) + panic("fail") + } +} diff --git a/gcc/testsuite/go.test/test/interface/receiver1.go b/gcc/testsuite/go.test/test/interface/receiver1.go new file mode 100644 index 0000000..51312d0 --- /dev/null +++ b/gcc/testsuite/go.test/test/interface/receiver1.go @@ -0,0 +1,58 @@ +// errchk $G $D/$F.go + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +// Error messages about missing implicit methods. + +package main + +type T int + +func (t T) V() +func (t *T) P() + +type V interface { + V() +} +type P interface { + P() + V() +} + +type S struct { + T +} +type SP struct { + *T +} + +func main() { + var t T + var v V + var p P + var s S + var sp SP + + v = t + p = t // ERROR "does not implement|requires a pointer" + _, _ = v, p + v = &t + p = &t + _, _ = v, p + + v = s + p = s // ERROR "does not implement|requires a pointer" + _, _ = v, p + v = &s + p = &s + _, _ = v, p + + v = sp + p = sp // no error! + _, _ = v, p + v = &sp + p = &sp + _, _ = v, p +} diff --git a/gcc/testsuite/go.test/test/interface/recursive.go b/gcc/testsuite/go.test/test/interface/recursive.go new file mode 100644 index 0000000..1eb56e9 --- /dev/null +++ b/gcc/testsuite/go.test/test/interface/recursive.go @@ -0,0 +1,21 @@ +// $G $D/$F.go || echo BUG: should compile + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +// Check mutually recursive interfaces + +package main + +type I1 interface { + foo() I2 +} + +type I2 interface { + bar() I1 +} + +type T int +func (t T) foo() I2 { return t } +func (t T) bar() I1 { return t } diff --git a/gcc/testsuite/go.test/test/interface/returntype.go b/gcc/testsuite/go.test/test/interface/returntype.go new file mode 100644 index 0000000..c526b3b --- /dev/null +++ b/gcc/testsuite/go.test/test/interface/returntype.go @@ -0,0 +1,25 @@ +// $G $D/$F.go && $L $F.$A && (! ./$A.out || echo BUG: should not succeed) + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +// Check methods with different return types. + +package main + +type S struct { a int } +type T struct { b string } + +func (s *S) Name() int8 { return 1 } +func (t *T) Name() int64 { return 64 } + +type I1 interface { Name() int8 } +type I2 interface { Name() int64 } + +func main() { + var i1 I1 + var s *S + i1 = s + print(i1.(I2).Name()) +} diff --git a/gcc/testsuite/go.test/test/interface/struct.go b/gcc/testsuite/go.test/test/interface/struct.go new file mode 100644 index 0000000..40b7f4f --- /dev/null +++ b/gcc/testsuite/go.test/test/interface/struct.go @@ -0,0 +1,156 @@ +// $G $D/$F.go && $L $F.$A && ./$A.out || echo BUG interface6 + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +// Interface values containing structures. + +package main + +import "os" + +var fail int + +func check(b bool, msg string) { + if (!b) { + println("failure in", msg) + fail++ + } +} + +type I1 interface { Get() int; Put(int) } + +type S1 struct { i int } +func (p S1) Get() int { return p.i } +func (p S1) Put(i int) { p.i = i } + +func f1() { + s := S1{1} + var i I1 = s + i.Put(2) + check(i.Get() == 1, "f1 i") + check(s.i == 1, "f1 s") +} + +func f2() { + s := S1{1} + var i I1 = &s + i.Put(2) + check(i.Get() == 1, "f2 i") + check(s.i == 1, "f2 s") +} + +func f3() { + s := &S1{1} + var i I1 = s + i.Put(2) + check(i.Get() == 1, "f3 i") + check(s.i == 1, "f3 s") +} + +type S2 struct { i int } +func (p *S2) Get() int { return p.i } +func (p *S2) Put(i int) { p.i = i } + +// Disallowed by restriction of values going to pointer receivers +// func f4() { +// s := S2{1} +// var i I1 = s +// i.Put(2) +// check(i.Get() == 2, "f4 i") +// check(s.i == 1, "f4 s") +// } + +func f5() { + s := S2{1} + var i I1 = &s + i.Put(2) + check(i.Get() == 2, "f5 i") + check(s.i == 2, "f5 s") +} + +func f6() { + s := &S2{1} + var i I1 = s + i.Put(2) + check(i.Get() == 2, "f6 i") + check(s.i == 2, "f6 s") +} + +type I2 interface { Get() int64; Put(int64) } + +type S3 struct { i, j, k, l int64 } +func (p S3) Get() int64 { return p.l } +func (p S3) Put(i int64) { p.l = i } + +func f7() { + s := S3{1, 2, 3, 4} + var i I2 = s + i.Put(5) + check(i.Get() == 4, "f7 i") + check(s.l == 4, "f7 s") +} + +func f8() { + s := S3{1, 2, 3, 4} + var i I2 = &s + i.Put(5) + check(i.Get() == 4, "f8 i") + check(s.l == 4, "f8 s") +} + +func f9() { + s := &S3{1, 2, 3, 4} + var i I2 = s + i.Put(5) + check(i.Get() == 4, "f9 i") + check(s.l == 4, "f9 s") +} + +type S4 struct { i, j, k, l int64 } +func (p *S4) Get() int64 { return p.l } +func (p *S4) Put(i int64) { p.l = i } + +// Disallowed by restriction of values going to pointer receivers +// func f10() { +// s := S4{1, 2, 3, 4} +// var i I2 = s +// i.Put(5) +// check(i.Get() == 5, "f10 i") +// check(s.l == 4, "f10 s") +// } + +func f11() { + s := S4{1, 2, 3, 4} + var i I2 = &s + i.Put(5) + check(i.Get() == 5, "f11 i") + check(s.l == 5, "f11 s") +} + +func f12() { + s := &S4{1, 2, 3, 4} + var i I2 = s + i.Put(5) + check(i.Get() == 5, "f12 i") + check(s.l == 5, "f12 s") +} + +func main() { + f1() + f2() + f3() +// f4() + f5() + f6() + f7() + f8() + f9() +// f10() + f11() + f12() + if fail > 0 { + os.Exit(1) + } +} diff --git a/gcc/testsuite/go.test/test/iota.go b/gcc/testsuite/go.test/test/iota.go new file mode 100644 index 0000000..20b77c6 --- /dev/null +++ b/gcc/testsuite/go.test/test/iota.go @@ -0,0 +1,120 @@ +// $G $F.go && $L $F.$A && ./$A.out + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package main + +func assert(cond bool, msg string) { + if !cond { + print("assertion fail: ", msg, "\n") + panic(1) + } +} + +const ( + x int = iota + y = iota + z = 1 << iota + f float = 2 * iota + g float = 4.5 * float(iota) +) + +const ( + X = 0 + Y + Z +) + +const ( + A = 1 << iota + B + C + D + E = iota * iota + F + G +) + +const ( + a = 1 + b = iota << a + c = iota << b + d +) + +const ( + i = (a << iota) + (b * iota) + j + k + l +) + +const ( + m = iota == 0 + n +) + +const ( + p = float(iota) + q + r +) + +const ( + s = string(iota + 'a') + t +) + +const ( + abit, amask = 1 << iota, 1 << iota - 1 + bbit, bmask = 1 << iota, 1 << iota - 1 + cbit, cmask = 1 << iota, 1 << iota - 1 +) + +func main() { + assert(x == 0, "x") + assert(y == 1, "y") + assert(z == 4, "z") + assert(f == 6.0, "f") + assert(g == 18.0, "g") + + assert(X == 0, "X") + assert(Y == 0, "Y") + assert(Z == 0, "Z") + + assert(A == 1, "A") + assert(B == 2, "B") + assert(C == 4, "C") + assert(D == 8, "D") + assert(E == 16, "E") + assert(F == 25, "F") + + assert(a == 1, "a") + assert(b == 2, "b") + assert(c == 8, "c") + assert(d == 12, "d") + + assert(i == 1, "i") + assert(j == 4, "j") + assert(k == 8, "k") + assert(l == 14, "l") + + assert(m, "m") + assert(!n, "n") + + assert(p == 0.0, "p") + assert(q == 1.0, "q") + assert(r == 2.0, "r") + + assert(s == "a", "s") + assert(t == "b", "t") + + assert(abit == 1, "abit") + assert(amask == 0, "amask") + assert(bbit == 2, "bbit") + assert(bmask == 1, "bmask") + assert(cbit == 4, "cbit") + assert(cmask == 3, "cmask") +} diff --git a/gcc/testsuite/go.test/test/ken/array.go b/gcc/testsuite/go.test/test/ken/array.go new file mode 100644 index 0000000..40209f5 --- /dev/null +++ b/gcc/testsuite/go.test/test/ken/array.go @@ -0,0 +1,133 @@ +// $G $D/$F.go && $L $F.$A && ./$A.out + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package main + +func setpd(a []int) { + // print("setpd a=", a, " len=", len(a), " cap=", cap(a), "\n"); + for i := 0; i < len(a); i++ { + a[i] = i + } +} + +func sumpd(a []int) int { + // print("sumpd a=", a, " len=", len(a), " cap=", cap(a), "\n"); + t := 0 + for i := 0; i < len(a); i++ { + t += a[i] + } + // print("sumpd t=", t, "\n"); + return t +} + +func setpf(a *[20]int) { + // print("setpf a=", a, " len=", len(a), " cap=", cap(a), "\n"); + for i := 0; i < len(a); i++ { + a[i] = i + } +} + +func sumpf(a *[20]int) int { + // print("sumpf a=", a, " len=", len(a), " cap=", cap(a), "\n"); + t := 0 + for i := 0; i < len(a); i++ { + t += a[i] + } + // print("sumpf t=", t, "\n"); + return t +} + +func res(t int, lb, hb int) { + sb := (hb - lb) * (hb + lb - 1) / 2 + if t != sb { + print("lb=", lb, + "; hb=", hb, + "; t=", t, + "; sb=", sb, + "\n") + panic("res") + } +} + +// call ptr dynamic with ptr dynamic +func testpdpd() { + a := make([]int, 10, 100) + if len(a) != 10 && cap(a) != 100 { + print("len and cap from new: ", len(a), " ", cap(a), "\n") + panic("fail") + } + + a = a[0:100] + setpd(a) + + a = a[0:10] + res(sumpd(a), 0, 10) + + a = a[5:25] + res(sumpd(a), 5, 25) +} + +// call ptr fixed with ptr fixed +func testpfpf() { + var a [20]int + + setpf(&a) + res(sumpf(&a), 0, 20) +} + +// call ptr dynamic with ptr fixed from new +func testpdpf1() { + a := new([40]int) + setpd(a[0:]) + res(sumpd(a[0:]), 0, 40) + + b := (*a)[5:30] + res(sumpd(b), 5, 30) +} + +// call ptr dynamic with ptr fixed from var +func testpdpf2() { + var a [80]int + + setpd(a[0:]) + res(sumpd(a[0:]), 0, 80) +} + +// generate bounds error with ptr dynamic +func testpdfault() { + a := make([]int, 100) + + print("good\n") + for i := 0; i < 100; i++ { + a[i] = 0 + } + print("should fault\n") + a[100] = 0 + print("bad\n") +} + +// generate bounds error with ptr fixed +func testfdfault() { + var a [80]int + + print("good\n") + for i := 0; i < 80; i++ { + a[i] = 0 + } + print("should fault\n") + x := 80 + a[x] = 0 + print("bad\n") +} + +func main() { + testpdpd() + testpfpf() + testpdpf1() + testpdpf2() + // print("testpdfault\n"); testpdfault(); + // print("testfdfault\n"); testfdfault(); +} diff --git a/gcc/testsuite/go.test/test/ken/chan.go b/gcc/testsuite/go.test/test/ken/chan.go new file mode 100644 index 0000000..ef75b04 --- /dev/null +++ b/gcc/testsuite/go.test/test/ken/chan.go @@ -0,0 +1,329 @@ +// $G $D/$F.go && $L $F.$A && ./$A.out + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package main + +import "os" +import "runtime" +import "sync" + +var randx int + +func nrand(n int) int { + randx += 10007 + if randx >= 1000000 { + randx -= 1000000 + } + return randx % n +} + +type Chan struct { + sc, rc chan int // send and recv chan + sv, rv int // send and recv seq +} + +var ( + nproc int + nprocLock sync.Mutex + cval int + end int = 10000 + totr, tots int + totLock sync.Mutex + nc *Chan +) + +func init() { + nc = new(Chan) +} + +func changeNproc(adjust int) int { + nprocLock.Lock() + nproc += adjust + ret := nproc + nprocLock.Unlock() + return ret +} + +func mkchan(c, n int) []*Chan { + ca := make([]*Chan, n) + for i := 0; i < n; i++ { + cval = cval + 100 + ch := new(Chan) + ch.sc = make(chan int, c) + ch.rc = ch.sc + ch.sv = cval + ch.rv = cval + ca[i] = ch + } + return ca +} + +func expect(v, v0 int) (newv int) { + if v == v0 { + if v%100 == 75 { + return end + } + return v + 1 + } + print("got ", v, " expected ", v0+1, "\n") + panic("fail") +} + +func (c *Chan) send() bool { + // print("send ", c.sv, "\n"); + totLock.Lock() + tots++ + totLock.Unlock() + c.sv = expect(c.sv, c.sv) + if c.sv == end { + c.sc = nil + return true + } + return false +} + +func send(c *Chan) { + for { + for r := nrand(10); r >= 0; r-- { + runtime.Gosched() + } + c.sc <- c.sv + if c.send() { + break + } + } + changeNproc(-1) +} + +func (c *Chan) recv(v int) bool { + // print("recv ", v, "\n"); + totLock.Lock() + totr++ + totLock.Unlock() + c.rv = expect(c.rv, v) + if c.rv == end { + c.rc = nil + return true + } + return false +} + +func recv(c *Chan) { + var v int + + for { + for r := nrand(10); r >= 0; r-- { + runtime.Gosched() + } + v = <-c.rc + if c.recv(v) { + break + } + } + changeNproc(-1) +} + +func sel(r0, r1, r2, r3, s0, s1, s2, s3 *Chan) { + var v int + + a := 0 // local chans running + + if r0.rc != nil { + a++ + } + if r1.rc != nil { + a++ + } + if r2.rc != nil { + a++ + } + if r3.rc != nil { + a++ + } + if s0.sc != nil { + a++ + } + if s1.sc != nil { + a++ + } + if s2.sc != nil { + a++ + } + if s3.sc != nil { + a++ + } + + for { + for r := nrand(5); r >= 0; r-- { + runtime.Gosched() + } + + select { + case v = <-r0.rc: + if r0.recv(v) { + a-- + } + case v = <-r1.rc: + if r1.recv(v) { + a-- + } + case v = <-r2.rc: + if r2.recv(v) { + a-- + } + case v = <-r3.rc: + if r3.recv(v) { + a-- + } + case s0.sc <- s0.sv: + if s0.send() { + a-- + } + case s1.sc <- s1.sv: + if s1.send() { + a-- + } + case s2.sc <- s2.sv: + if s2.send() { + a-- + } + case s3.sc <- s3.sv: + if s3.send() { + a-- + } + } + if a == 0 { + break + } + } + changeNproc(-1) +} + +// direct send to direct recv +func test1(c *Chan) { + changeNproc(2) + go send(c) + go recv(c) +} + +// direct send to select recv +func test2(c int) { + ca := mkchan(c, 4) + + changeNproc(4) + go send(ca[0]) + go send(ca[1]) + go send(ca[2]) + go send(ca[3]) + + changeNproc(1) + go sel(ca[0], ca[1], ca[2], ca[3], nc, nc, nc, nc) +} + +// select send to direct recv +func test3(c int) { + ca := mkchan(c, 4) + + changeNproc(4) + go recv(ca[0]) + go recv(ca[1]) + go recv(ca[2]) + go recv(ca[3]) + + changeNproc(1) + go sel(nc, nc, nc, nc, ca[0], ca[1], ca[2], ca[3]) +} + +// select send to select recv +func test4(c int) { + ca := mkchan(c, 4) + + changeNproc(2) + go sel(nc, nc, nc, nc, ca[0], ca[1], ca[2], ca[3]) + go sel(ca[0], ca[1], ca[2], ca[3], nc, nc, nc, nc) +} + +func test5(c int) { + ca := mkchan(c, 8) + + changeNproc(2) + go sel(ca[4], ca[5], ca[6], ca[7], ca[0], ca[1], ca[2], ca[3]) + go sel(ca[0], ca[1], ca[2], ca[3], ca[4], ca[5], ca[6], ca[7]) +} + +func test6(c int) { + ca := mkchan(c, 12) + + changeNproc(4) + go send(ca[4]) + go send(ca[5]) + go send(ca[6]) + go send(ca[7]) + + changeNproc(4) + go recv(ca[8]) + go recv(ca[9]) + go recv(ca[10]) + go recv(ca[11]) + + changeNproc(2) + go sel(ca[4], ca[5], ca[6], ca[7], ca[0], ca[1], ca[2], ca[3]) + go sel(ca[0], ca[1], ca[2], ca[3], ca[8], ca[9], ca[10], ca[11]) +} + +// wait for outstanding tests to finish +func wait() { + runtime.Gosched() + for changeNproc(0) != 0 { + runtime.Gosched() + } +} + +// run all tests with specified buffer size +func tests(c int) { + ca := mkchan(c, 4) + test1(ca[0]) + test1(ca[1]) + test1(ca[2]) + test1(ca[3]) + wait() + + test2(c) + wait() + + test3(c) + wait() + + test4(c) + wait() + + test5(c) + wait() + + test6(c) + wait() +} + +// run all test with 4 buffser sizes +func main() { + + tests(0) + tests(1) + tests(10) + tests(100) + + t := 4 * // buffer sizes + (4*4 + // tests 1,2,3,4 channels + 8 + // test 5 channels + 12) * // test 6 channels + 76 // sends/recvs on a channel + + if tots != t || totr != t { + print("tots=", tots, " totr=", totr, " sb=", t, "\n") + os.Exit(1) + } + os.Exit(0) +} diff --git a/gcc/testsuite/go.test/test/ken/chan1.go b/gcc/testsuite/go.test/test/ken/chan1.go new file mode 100644 index 0000000..e5fc033 --- /dev/null +++ b/gcc/testsuite/go.test/test/ken/chan1.go @@ -0,0 +1,53 @@ +// $G $D/$F.go && $L $F.$A && ./$A.out + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package main + +import "runtime" + +const N = 1000 // sent messages +const M = 10 // receiving goroutines +const W = 2 // channel buffering +var h [N]int // marking of send/recv + +func r(c chan int, m int) { + for { + select { + case r := <-c: + if h[r] != 1 { + println("r", + "m=", m, + "r=", r, + "h=", h[r]) + panic("fail") + } + h[r] = 2 + } + } +} + +func s(c chan int) { + for n := 0; n < N; n++ { + r := n + if h[r] != 0 { + println("s") + panic("fail") + } + h[r] = 1 + c <- r + } +} + +func main() { + c := make(chan int, W) + for m := 0; m < M; m++ { + go r(c, m) + runtime.Gosched() + } + runtime.Gosched() + runtime.Gosched() + s(c) +} diff --git a/gcc/testsuite/go.test/test/ken/complit.go b/gcc/testsuite/go.test/test/ken/complit.go new file mode 100644 index 0000000..da0a84a --- /dev/null +++ b/gcc/testsuite/go.test/test/ken/complit.go @@ -0,0 +1,170 @@ +// $G $D/$F.go && $L $F.$A && ./$A.out + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package main + +type M map[int]int +type S struct{ a,b,c int }; +type SS struct{ aa,bb,cc S }; +type SA struct{ a,b,c [3]int }; +type SC struct{ a,b,c []int }; +type SM struct{ a,b,c M }; + +func +main() { + test("s.a", s.a); + test("s.b", s.b); + test("s.c", s.c); + + test("ss.aa.a", ss.aa.a); + test("ss.aa.b", ss.aa.b); + test("ss.aa.c", ss.aa.c); + + test("ss.bb.a", ss.bb.a); + test("ss.bb.b", ss.bb.b); + test("ss.bb.c", ss.bb.c); + + test("ss.cc.a", ss.cc.a); + test("ss.cc.b", ss.cc.b); + test("ss.cc.c", ss.cc.c); + + for i:=0; i<3; i++ { + test("a[i]", a[i]); + test("c[i]", c[i]); + test("m[i]", m[i]); + + test("as[i].a", as[i].a); + test("as[i].b", as[i].b); + test("as[i].c", as[i].c); + + test("cs[i].a", cs[i].a); + test("cs[i].b", cs[i].b); + test("cs[i].c", cs[i].c); + + test("ms[i].a", ms[i].a); + test("ms[i].b", ms[i].b); + test("ms[i].c", ms[i].c); + + test("sa.a[i]", sa.a[i]); + test("sa.b[i]", sa.b[i]); + test("sa.c[i]", sa.c[i]); + + test("sc.a[i]", sc.a[i]); + test("sc.b[i]", sc.b[i]); + test("sc.c[i]", sc.c[i]); + + test("sm.a[i]", sm.a[i]); + test("sm.b[i]", sm.b[i]); + test("sm.c[i]", sm.c[i]); + + for j:=0; j<3; j++ { + test("aa[i][j]", aa[i][j]); + test("ac[i][j]", ac[i][j]); + test("am[i][j]", am[i][j]); + test("ca[i][j]", ca[i][j]); + test("cc[i][j]", cc[i][j]); + test("cm[i][j]", cm[i][j]); + test("ma[i][j]", ma[i][j]); + test("mc[i][j]", mc[i][j]); + test("mm[i][j]", mm[i][j]); + } + } + +} + +var ref = 0; + +func +test(xs string, x int) { + + if ref >= len(answers) { + println(xs, x); + return; + } + + if x != answers[ref] { + println(xs, "is", x, "should be", answers[ref]) + } + ref++; +} + + +var a = [3]int{1001, 1002, 1003} +var s = S{1101, 1102, 1103} +var c = []int{1201, 1202, 1203} +var m = M{0:1301, 1:1302, 2:1303} + +var aa = [3][3]int{[3]int{2001,2002,2003}, [3]int{2004,2005,2006}, [3]int{2007,2008,2009}} +var as = [3]S{S{2101,2102,2103},S{2104,2105,2106},S{2107,2108,2109}} +var ac = [3][]int{[]int{2201,2202,2203}, []int{2204,2205,2206}, []int{2207,2208,2209}} +var am = [3]M{M{0:2301,1:2302,2:2303}, M{0:2304,1:2305,2:2306}, M{0:2307,1:2308,2:2309}} + +var sa = SA{[3]int{3001,3002,3003},[3]int{3004,3005,3006},[3]int{3007,3008,3009}} +var ss = SS{S{3101,3102,3103},S{3104,3105,3106},S{3107,3108,3109}} +var sc = SC{[]int{3201,3202,3203},[]int{3204,3205,3206},[]int{3207,3208,3209}} +var sm = SM{M{0:3301,1:3302,2:3303}, M{0:3304,1:3305,2:3306}, M{0:3307,1:3308,2:3309}} + +var ca = [][3]int{[3]int{4001,4002,4003}, [3]int{4004,4005,4006}, [3]int{4007,4008,4009}} +var cs = []S{S{4101,4102,4103},S{4104,4105,4106},S{4107,4108,4109}} +var cc = [][]int{[]int{4201,4202,4203}, []int{4204,4205,4206}, []int{4207,4208,4209}} +var cm = []M{M{0:4301,1:4302,2:4303}, M{0:4304,1:4305,2:4306}, M{0:4307,1:4308,2:4309}} + +var ma = map[int][3]int{0:[3]int{5001,5002,5003}, 1:[3]int{5004,5005,5006}, 2:[3]int{5007,5008,5009}} +var ms = map[int]S{0:S{5101,5102,5103},1:S{5104,5105,5106},2:S{5107,5108,5109}} +var mc = map[int][]int{0:[]int{5201,5202,5203}, 1:[]int{5204,5205,5206}, 2:[]int{5207,5208,5209}} +var mm = map[int]M{0:M{0:5301,1:5302,2:5303}, 1:M{0:5304,1:5305,2:5306}, 2:M{0:5307,1:5308,2:5309}} + +var answers = [...]int { + // s + 1101, 1102, 1103, + + // ss + 3101, 3102, 3103, + 3104, 3105, 3106, + 3107, 3108, 3109, + + // [0] + 1001, 1201, 1301, + 2101, 2102, 2103, + 4101, 4102, 4103, + 5101, 5102, 5103, + 3001, 3004, 3007, + 3201, 3204, 3207, + 3301, 3304, 3307, + + // [0][j] + 2001, 2201, 2301, 4001, 4201, 4301, 5001, 5201, 5301, + 2002, 2202, 2302, 4002, 4202, 4302, 5002, 5202, 5302, + 2003, 2203, 2303, 4003, 4203, 4303, 5003, 5203, 5303, + + // [1] + 1002, 1202, 1302, + 2104, 2105, 2106, + 4104, 4105, 4106, + 5104, 5105, 5106, + 3002, 3005, 3008, + 3202, 3205, 3208, + 3302, 3305, 3308, + + // [1][j] + 2004, 2204, 2304, 4004, 4204, 4304, 5004, 5204, 5304, + 2005, 2205, 2305, 4005, 4205, 4305, 5005, 5205, 5305, + 2006, 2206, 2306, 4006, 4206, 4306, 5006, 5206, 5306, + + // [2] + 1003, 1203, 1303, + 2107, 2108, 2109, + 4107, 4108, 4109, + 5107, 5108, 5109, + 3003, 3006, 3009, + 3203, 3206, 3209, + 3303, 3306, 3309, + + // [2][j] + 2007, 2207, 2307, 4007, 4207, 4307, 5007, 5207, 5307, + 2008, 2208, 2308, 4008, 4208, 4308, 5008, 5208, 5308, + 2009, 2209, 2309, 4009, 4209, 4309, 5009, 5209, 5309, +} diff --git a/gcc/testsuite/go.test/test/ken/cplx0.go b/gcc/testsuite/go.test/test/ken/cplx0.go new file mode 100644 index 0000000..6e9bfd0 --- /dev/null +++ b/gcc/testsuite/go.test/test/ken/cplx0.go @@ -0,0 +1,28 @@ +// $G $D/$F.go && $L $F.$A && ./$A.out + +// Copyright 2010 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package main + +const ( + R = 5 + I = 6i + + C1 = R + I // ADD(5,6) +) + +func doprint(c complex) { println(c) } + +func main() { + + // constants + println(C1) + doprint(C1) + + // variables + c1 := C1 + println(c1) + doprint(c1) +} diff --git a/gcc/testsuite/go.test/test/ken/cplx1.go b/gcc/testsuite/go.test/test/ken/cplx1.go new file mode 100644 index 0000000..26b1139 --- /dev/null +++ b/gcc/testsuite/go.test/test/ken/cplx1.go @@ -0,0 +1,97 @@ +// $G $D/$F.go && $L $F.$A && ./$A.out + +// Copyright 2010 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package main + +const ( + R = 5 + I = 6i + + C1 = R + I // ADD(5,6) +) + +func main() { + var b bool + + // constants + b = (5 + 6i) == C1 + if !b { + println("const bool 1", b) + panic("fail") + } + + b = (5 + 6i) != C1 + if b { + println("const bool 2", b) + panic("fail") + } + + b = C1 == (5 + 6i) + if !b { + println("const bool 3", b) + panic("fail") + } + + b = C1 != (5 + 6i) + if b { + println("const bool 4", b) + panic("fail") + } + + // vars passed through parameters + booltest(5+6i, true) + booltest(5+7i, false) + booltest(6+6i, false) + booltest(6+9i, false) +} + +func booltest(a complex, r bool) { + var b bool + + b = a == C1 + if b != r { + println("param bool 1", a, b, r) + panic("fail") + } + + b = a != C1 + if b == r { + println("param bool 2", a, b, r) + panic("fail") + } + + b = C1 == a + if b != r { + println("param bool 3", a, b, r) + panic("fail") + } + + b = C1 != a + if b == r { + println("param bool 4", a, b, r) + panic("fail") + } + + if r { + if a != C1 { + println("param bool 5", a, b, r) + panic("fail") + } + if C1 != a { + println("param bool 6", a, b, r) + panic("fail") + } + } else { + if a == C1 { + println("param bool 6", a, b, r) + panic("fail") + } + if C1 == a { + println("param bool 7", a, b, r) + panic("fail") + } + } +} diff --git a/gcc/testsuite/go.test/test/ken/cplx2.go b/gcc/testsuite/go.test/test/ken/cplx2.go new file mode 100644 index 0000000..5a66dc9 --- /dev/null +++ b/gcc/testsuite/go.test/test/ken/cplx2.go @@ -0,0 +1,108 @@ +// $G $D/$F.go && $L $F.$A && ./$A.out + +// Copyright 2010 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package main + +const ( + R = 5 + I = 6i + + C1 = R + I // ADD(5,6) + C2 = R - I // SUB(5,-6) + C3 = -(R + I) // ADD(5,6) NEG(-5,-6) + C4 = -(R - I) // SUB(5,-6) NEG(-5,6) + + C5 = C1 + R // ADD(10,6) + C6 = C1 + I // ADD(5,12) + + Ca = C5 + C6 // ADD(15,18) + Cb = C5 - C6 // SUB(5,-6) + + Cc = C5 * C6 // MUL(-22,-150) + Cd = C5 / C6 // DIV(0.721893,-0.532544) + Ce = Cd * C6 // MUL(10,6) sb C5 +) + +func main() { + + r := 5 + 0i + if r != R { + println("opcode 1", r, R) + panic("fail") + } + + i := 6i + if i != I { + println("opcode 2", i, I) + panic("fail") + } + + c1 := r + i + if c1 != C1 { + println("opcode x", c1, C1) + panic("fail") + } + + c2 := r - i + if c2 != C2 { + println("opcode x", c2, C2) + panic("fail") + } + + c3 := -(r + i) + if c3 != C3 { + println("opcode x", c3, C3) + panic("fail") + } + + c4 := -(r - i) + if c4 != C4 { + println("opcode x", c4, C4) + panic("fail") + } + + c5 := c1 + r + if c5 != C5 { + println("opcode x", c5, C5) + panic("fail") + } + + c6 := c1 + i + if c6 != C6 { + println("opcode x", c6, C6) + panic("fail") + } + + ca := c5 + c6 + if ca != Ca { + println("opcode x", ca, Ca) + panic("fail") + } + + cb := c5 - c6 + if cb != Cb { + println("opcode x", cb, Cb) + panic("fail") + } + + cc := c5 * c6 + if cc != Cc { + println("opcode x", cc, Cc) + panic("fail") + } + + cd := c5 / c6 + if cd != Cd { + println("opcode x", cd, Cd) + panic("fail") + } + + ce := cd * c6 + if ce != Ce { + println("opcode x", ce, Ce) + panic("fail") + } +} diff --git a/gcc/testsuite/go.test/test/ken/cplx3.go b/gcc/testsuite/go.test/test/ken/cplx3.go new file mode 100644 index 0000000..997894b --- /dev/null +++ b/gcc/testsuite/go.test/test/ken/cplx3.go @@ -0,0 +1,39 @@ +// $G $D/$F.go && $L $F.$A && ./$A.out + +// Copyright 2010 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package main + +import "unsafe" +import "reflect" + +const ( + R = 5 + I = 6i + + C1 = R + I // ADD(5,6) +) + +var complexBits = reflect.Typeof(complex(0i)).Size() * 8 + +func main() { + c0 := C1 + c0 = (c0 + c0 + c0) / (c0 + c0 + 3i) + println(c0) + + c := *(*complex)(unsafe.Pointer(&c0)) + println(c) + + println(complexBits) + + var a interface{} + switch c := reflect.NewValue(a).(type) { + case *reflect.ComplexValue: + if complexBits == 64 { + v := c.Get() + _, _ = complex64(v), true + } + } +} diff --git a/gcc/testsuite/go.test/test/ken/cplx4.go b/gcc/testsuite/go.test/test/ken/cplx4.go new file mode 100644 index 0000000..3c6f1f6 --- /dev/null +++ b/gcc/testsuite/go.test/test/ken/cplx4.go @@ -0,0 +1,44 @@ +// $G $D/$F.go && $L $F.$A && ./$A.out + +// Copyright 2010 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package main + +import "fmt" + +const ( + R = 5 + I = 6i + + C1 = R + I // ADD(5,6) +) + +func doprint(c complex) { fmt.Printf("c = %f\n", c) } + +func main() { + + // constants + fmt.Printf("c = %f\n", -C1) + doprint(C1) + + // variables + c1 := C1 + fmt.Printf("c = %f\n", c1) + doprint(c1) + + // 128 + c2 := complex128(C1) + fmt.Printf("c = %G\n", c2) + + // real, imag, cmplx + c3 := cmplx(real(c2)+3, imag(c2)-5) + c2 + fmt.Printf("c = %G\n", c3) + + // compiler used to crash on nested divide + c4 := cmplx(real(c3/2), imag(c3/2)) + if c4 != c3/2 { + fmt.Printf("BUG: c3 = %G != c4 = %G\n", c3, c4) + } +} diff --git a/gcc/testsuite/go.test/test/ken/cplx5.go b/gcc/testsuite/go.test/test/ken/cplx5.go new file mode 100644 index 0000000..af2a1c5 --- /dev/null +++ b/gcc/testsuite/go.test/test/ken/cplx5.go @@ -0,0 +1,54 @@ +// $G $D/$F.go && $L $F.$A && ./$A.out + +// Copyright 2010 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package main + +var a [12]complex +var s []complex +var c chan complex +var f struct { + c complex +} +var m map[complex]complex + +func main() { + // array of complex + for i := 0; i < len(a); i++ { + a[i] = cmplx(float(i), float(-i)) + } + println(a[5]) + + // slice of complex + s = make([]complex, len(a)) + for i := 0; i < len(s); i++ { + s[i] = a[i] + } + println(s[5]) + + // chan + c = make(chan complex) + go chantest(c) + println(<-c) + + // pointer of complex + v := a[5] + pv := &v + println(*pv) + + // field of complex + f.c = a[5] + println(f.c) + + // map of complex + m = make(map[complex]complex) + for i := 0; i < len(s); i++ { + m[-a[i]] = a[i] + } + println(m[5i-5]) + println(m[cmplx(-5, 5)]) +} + +func chantest(c chan complex) { c <- a[5] } diff --git a/gcc/testsuite/go.test/test/ken/divconst.go b/gcc/testsuite/go.test/test/ken/divconst.go new file mode 100644 index 0000000..c3b9092 --- /dev/null +++ b/gcc/testsuite/go.test/test/ken/divconst.go @@ -0,0 +1,632 @@ +// $G $D/$F.go && $L $F.$A && ./$A.out + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package main + +import "rand" + +const Count = 1e5 + +func i64rand() int64 { + for { + a := int64(rand.Uint32()) + a = (a << 32) | int64(rand.Uint32()) + a >>= uint(rand.Intn(64)) + if -a != a { + return a + } + } + return 0 // impossible +} + +func i64test(a, b, c int64) { + d := a / c + if d != b { + println("i64", a, b, c, d) + panic("fail") + } +} + +func i64run() { + var a, b int64 + + for i := 0; i < Count; i++ { + a = i64rand() + + b = a / 1 + i64test(a, b, 1) + b = a / 2 + i64test(a, b, 2) + b = a / 3 + i64test(a, b, 3) + b = a / 4 + i64test(a, b, 4) + b = a / 5 + i64test(a, b, 5) + b = a / 6 + i64test(a, b, 6) + b = a / 7 + i64test(a, b, 7) + b = a / 8 + i64test(a, b, 8) + b = a / 10 + i64test(a, b, 10) + b = a / 16 + i64test(a, b, 16) + b = a / 20 + i64test(a, b, 20) + b = a / 32 + i64test(a, b, 32) + b = a / 60 + i64test(a, b, 60) + b = a / 64 + i64test(a, b, 64) + b = a / 128 + i64test(a, b, 128) + b = a / 256 + i64test(a, b, 256) + b = a / 16384 + i64test(a, b, 16384) + + b = a / -1 + i64test(a, b, -1) + b = a / -2 + i64test(a, b, -2) + b = a / -3 + i64test(a, b, -3) + b = a / -4 + i64test(a, b, -4) + b = a / -5 + i64test(a, b, -5) + b = a / -6 + i64test(a, b, -6) + b = a / -7 + i64test(a, b, -7) + b = a / -8 + i64test(a, b, -8) + b = a / -10 + i64test(a, b, -10) + b = a / -16 + i64test(a, b, -16) + b = a / -20 + i64test(a, b, -20) + b = a / -32 + i64test(a, b, -32) + b = a / -60 + i64test(a, b, -60) + b = a / -64 + i64test(a, b, -64) + b = a / -128 + i64test(a, b, -128) + b = a / -256 + i64test(a, b, -256) + b = a / -16384 + i64test(a, b, -16384) + } +} + +func u64rand() uint64 { + a := uint64(rand.Uint32()) + a = (a << 32) | uint64(rand.Uint32()) + a >>= uint(rand.Intn(64)) + return a +} + +func u64test(a, b, c uint64) { + d := a / c + if d != b { + println("u64", a, b, c, d) + panic("fail") + } +} + +func u64run() { + var a, b uint64 + + for i := 0; i < Count; i++ { + a = u64rand() + + b = a / 1 + u64test(a, b, 1) + b = a / 2 + u64test(a, b, 2) + b = a / 3 + u64test(a, b, 3) + b = a / 4 + u64test(a, b, 4) + b = a / 5 + u64test(a, b, 5) + b = a / 6 + u64test(a, b, 6) + b = a / 7 + u64test(a, b, 7) + b = a / 8 + u64test(a, b, 8) + b = a / 10 + u64test(a, b, 10) + b = a / 16 + u64test(a, b, 16) + b = a / 20 + u64test(a, b, 20) + b = a / 32 + u64test(a, b, 32) + b = a / 60 + u64test(a, b, 60) + b = a / 64 + u64test(a, b, 64) + b = a / 128 + u64test(a, b, 128) + b = a / 256 + u64test(a, b, 256) + b = a / 16384 + u64test(a, b, 16384) + } +} + +func i32rand() int32 { + for { + a := int32(rand.Uint32()) + a >>= uint(rand.Intn(32)) + if -a != a { + return a + } + } + return 0 // impossible +} + +func i32test(a, b, c int32) { + d := a / c + if d != b { + println("i32", a, b, c, d) + panic("fail") + } +} + +func i32run() { + var a, b int32 + + for i := 0; i < Count; i++ { + a = i32rand() + + b = a / 1 + i32test(a, b, 1) + b = a / 2 + i32test(a, b, 2) + b = a / 3 + i32test(a, b, 3) + b = a / 4 + i32test(a, b, 4) + b = a / 5 + i32test(a, b, 5) + b = a / 6 + i32test(a, b, 6) + b = a / 7 + i32test(a, b, 7) + b = a / 8 + i32test(a, b, 8) + b = a / 10 + i32test(a, b, 10) + b = a / 16 + i32test(a, b, 16) + b = a / 20 + i32test(a, b, 20) + b = a / 32 + i32test(a, b, 32) + b = a / 60 + i32test(a, b, 60) + b = a / 64 + i32test(a, b, 64) + b = a / 128 + i32test(a, b, 128) + b = a / 256 + i32test(a, b, 256) + b = a / 16384 + i32test(a, b, 16384) + + b = a / -1 + i32test(a, b, -1) + b = a / -2 + i32test(a, b, -2) + b = a / -3 + i32test(a, b, -3) + b = a / -4 + i32test(a, b, -4) + b = a / -5 + i32test(a, b, -5) + b = a / -6 + i32test(a, b, -6) + b = a / -7 + i32test(a, b, -7) + b = a / -8 + i32test(a, b, -8) + b = a / -10 + i32test(a, b, -10) + b = a / -16 + i32test(a, b, -16) + b = a / -20 + i32test(a, b, -20) + b = a / -32 + i32test(a, b, -32) + b = a / -60 + i32test(a, b, -60) + b = a / -64 + i32test(a, b, -64) + b = a / -128 + i32test(a, b, -128) + b = a / -256 + i32test(a, b, -256) + } +} + +func u32rand() uint32 { + a := uint32(rand.Uint32()) + a >>= uint(rand.Intn(32)) + return a +} + +func u32test(a, b, c uint32) { + d := a / c + if d != b { + println("u32", a, b, c, d) + panic("fail") + } +} + +func u32run() { + var a, b uint32 + + for i := 0; i < Count; i++ { + a = u32rand() + + b = a / 1 + u32test(a, b, 1) + b = a / 2 + u32test(a, b, 2) + b = a / 3 + u32test(a, b, 3) + b = a / 4 + u32test(a, b, 4) + b = a / 5 + u32test(a, b, 5) + b = a / 6 + u32test(a, b, 6) + b = a / 7 + u32test(a, b, 7) + b = a / 8 + u32test(a, b, 8) + b = a / 10 + u32test(a, b, 10) + b = a / 16 + u32test(a, b, 16) + b = a / 20 + u32test(a, b, 20) + b = a / 32 + u32test(a, b, 32) + b = a / 60 + u32test(a, b, 60) + b = a / 64 + u32test(a, b, 64) + b = a / 128 + u32test(a, b, 128) + b = a / 256 + u32test(a, b, 256) + b = a / 16384 + u32test(a, b, 16384) + } +} + +func i16rand() int16 { + for { + a := int16(rand.Uint32()) + a >>= uint(rand.Intn(16)) + if -a != a { + return a + } + } + return 0 // impossible +} + +func i16test(a, b, c int16) { + d := a / c + if d != b { + println("i16", a, b, c, d) + panic("fail") + } +} + +func i16run() { + var a, b int16 + + for i := 0; i < Count; i++ { + a = i16rand() + + b = a / 1 + i16test(a, b, 1) + b = a / 2 + i16test(a, b, 2) + b = a / 3 + i16test(a, b, 3) + b = a / 4 + i16test(a, b, 4) + b = a / 5 + i16test(a, b, 5) + b = a / 6 + i16test(a, b, 6) + b = a / 7 + i16test(a, b, 7) + b = a / 8 + i16test(a, b, 8) + b = a / 10 + i16test(a, b, 10) + b = a / 16 + i16test(a, b, 16) + b = a / 20 + i16test(a, b, 20) + b = a / 32 + i16test(a, b, 32) + b = a / 60 + i16test(a, b, 60) + b = a / 64 + i16test(a, b, 64) + b = a / 128 + i16test(a, b, 128) + b = a / 256 + i16test(a, b, 256) + b = a / 16384 + i16test(a, b, 16384) + + b = a / -1 + i16test(a, b, -1) + b = a / -2 + i16test(a, b, -2) + b = a / -3 + i16test(a, b, -3) + b = a / -4 + i16test(a, b, -4) + b = a / -5 + i16test(a, b, -5) + b = a / -6 + i16test(a, b, -6) + b = a / -7 + i16test(a, b, -7) + b = a / -8 + i16test(a, b, -8) + b = a / -10 + i16test(a, b, -10) + b = a / -16 + i16test(a, b, -16) + b = a / -20 + i16test(a, b, -20) + b = a / -32 + i16test(a, b, -32) + b = a / -60 + i16test(a, b, -60) + b = a / -64 + i16test(a, b, -64) + b = a / -128 + i16test(a, b, -128) + b = a / -256 + i16test(a, b, -256) + b = a / -16384 + i16test(a, b, -16384) + } +} + +func u16rand() uint16 { + a := uint16(rand.Uint32()) + a >>= uint(rand.Intn(16)) + return a +} + +func u16test(a, b, c uint16) { + d := a / c + if d != b { + println("u16", a, b, c, d) + panic("fail") + } +} + +func u16run() { + var a, b uint16 + + for i := 0; i < Count; i++ { + a = u16rand() + + b = a / 1 + u16test(a, b, 1) + b = a / 2 + u16test(a, b, 2) + b = a / 3 + u16test(a, b, 3) + b = a / 4 + u16test(a, b, 4) + b = a / 5 + u16test(a, b, 5) + b = a / 6 + u16test(a, b, 6) + b = a / 7 + u16test(a, b, 7) + b = a / 8 + u16test(a, b, 8) + b = a / 10 + u16test(a, b, 10) + b = a / 16 + u16test(a, b, 16) + b = a / 20 + u16test(a, b, 20) + b = a / 32 + u16test(a, b, 32) + b = a / 60 + u16test(a, b, 60) + b = a / 64 + u16test(a, b, 64) + b = a / 128 + u16test(a, b, 128) + b = a / 256 + u16test(a, b, 256) + b = a / 16384 + u16test(a, b, 16384) + } +} + +func i8rand() int8 { + for { + a := int8(rand.Uint32()) + a >>= uint(rand.Intn(8)) + if -a != a { + return a + } + } + return 0 // impossible +} + +func i8test(a, b, c int8) { + d := a / c + if d != b { + println("i8", a, b, c, d) + panic("fail") + } +} + +func i8run() { + var a, b int8 + + for i := 0; i < Count; i++ { + a = i8rand() + + b = a / 1 + i8test(a, b, 1) + b = a / 2 + i8test(a, b, 2) + b = a / 3 + i8test(a, b, 3) + b = a / 4 + i8test(a, b, 4) + b = a / 5 + i8test(a, b, 5) + b = a / 6 + i8test(a, b, 6) + b = a / 7 + i8test(a, b, 7) + b = a / 8 + i8test(a, b, 8) + b = a / 10 + i8test(a, b, 10) + b = a / 8 + i8test(a, b, 8) + b = a / 20 + i8test(a, b, 20) + b = a / 32 + i8test(a, b, 32) + b = a / 60 + i8test(a, b, 60) + b = a / 64 + i8test(a, b, 64) + b = a / 127 + i8test(a, b, 127) + + b = a / -1 + i8test(a, b, -1) + b = a / -2 + i8test(a, b, -2) + b = a / -3 + i8test(a, b, -3) + b = a / -4 + i8test(a, b, -4) + b = a / -5 + i8test(a, b, -5) + b = a / -6 + i8test(a, b, -6) + b = a / -7 + i8test(a, b, -7) + b = a / -8 + i8test(a, b, -8) + b = a / -10 + i8test(a, b, -10) + b = a / -8 + i8test(a, b, -8) + b = a / -20 + i8test(a, b, -20) + b = a / -32 + i8test(a, b, -32) + b = a / -60 + i8test(a, b, -60) + b = a / -64 + i8test(a, b, -64) + b = a / -128 + i8test(a, b, -128) + } +} + +func u8rand() uint8 { + a := uint8(rand.Uint32()) + a >>= uint(rand.Intn(8)) + return a +} + +func u8test(a, b, c uint8) { + d := a / c + if d != b { + println("u8", a, b, c, d) + panic("fail") + } +} + +func u8run() { + var a, b uint8 + + for i := 0; i < Count; i++ { + a = u8rand() + + b = a / 1 + u8test(a, b, 1) + b = a / 2 + u8test(a, b, 2) + b = a / 3 + u8test(a, b, 3) + b = a / 4 + u8test(a, b, 4) + b = a / 5 + u8test(a, b, 5) + b = a / 6 + u8test(a, b, 6) + b = a / 7 + u8test(a, b, 7) + b = a / 8 + u8test(a, b, 8) + b = a / 10 + u8test(a, b, 10) + b = a / 8 + u8test(a, b, 8) + b = a / 20 + u8test(a, b, 20) + b = a / 32 + u8test(a, b, 32) + b = a / 60 + u8test(a, b, 60) + b = a / 64 + u8test(a, b, 64) + b = a / 128 + u8test(a, b, 128) + b = a / 184 + u8test(a, b, 184) + } +} + +func main() { + xtest() + i64run() + u64run() + i32run() + u32run() + i16run() + u16run() + i8run() + u8run() +} + +func xtest() { +} diff --git a/gcc/testsuite/go.test/test/ken/divmod.go b/gcc/testsuite/go.test/test/ken/divmod.go new file mode 100644 index 0000000..dc44ea2 --- /dev/null +++ b/gcc/testsuite/go.test/test/ken/divmod.go @@ -0,0 +1,247 @@ +// $G $D/$F.go && $L $F.$A && ./$A.out + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package main + +const ( + // example from the spec + n1 = +5 + n2 = -5 + d1 = +3 + d2 = -3 + + q1 = +1 + q2 = -1 + q3 = -1 + q4 = +1 + + r1 = +2 + r2 = -2 + r3 = +2 + r4 = -2 +) + +func main() { + /* ideals */ + if n1/d1 != q1 || n1%d1 != r1 { + println("ideal-1", n1, d1, n1/d1, n1%d1) + panic("fail") + } + if n2/d1 != q2 || n2%d1 != r2 { + println("ideal-2", n2, d1, n2/d1, n2%d1) + panic("fail") + } + if n1/d2 != q3 || n1%d2 != r3 { + println("ideal-3", n1, d2, n1/d2, n1%d2) + panic("fail") + } + if n2/d2 != q4 || n2%d2 != r4 { + println("ideal-4", n2, d2, n2/d2, n2%d2) + panic("fail") + } + + /* int */ + var in1 int = +5 + var in2 int = -5 + var id1 int = +3 + var id2 int = -3 + + if in1/id1 != q1 || in1%id1 != r1 { + println("int-1", in1, id1, in1/id1, in1%id1) + panic("fail") + } + if in2/id1 != q2 || in2%id1 != r2 { + println("int-2", in2, id1, in2/id1, in2%id1) + panic("fail") + } + if in1/id2 != q3 || in1%id2 != r3 { + println("int-3", in1, id2, in1/id2, in1%id2) + panic("fail") + } + if in2/id2 != q4 || in2%id2 != r4 { + println("int-4", in2, id2, in2/id2, in2%id2) + panic("fail") + } + + /* int8 */ + var bn1 int8 = +5 + var bn2 int8 = -5 + var bd1 int8 = +3 + var bd2 int8 = -3 + + if bn1/bd1 != q1 || bn1%bd1 != r1 { + println("int8-1", bn1, bd1, bn1/bd1, bn1%bd1) + panic("fail") + } + if bn2/bd1 != q2 || bn2%bd1 != r2 { + println("int8-2", bn2, bd1, bn2/bd1, bn2%bd1) + panic("fail") + } + if bn1/bd2 != q3 || bn1%bd2 != r3 { + println("int8-3", bn1, bd2, bn1/bd2, bn1%bd2) + panic("fail") + } + if bn2/bd2 != q4 || bn2%bd2 != r4 { + println("int8-4", bn2, bd2, bn2/bd2, bn2%bd2) + panic("fail") + } + + /* int16 */ + var sn1 int16 = +5 + var sn2 int16 = -5 + var sd1 int16 = +3 + var sd2 int16 = -3 + + if sn1/sd1 != q1 || sn1%sd1 != r1 { + println("int16-1", sn1, sd1, sn1/sd1, sn1%sd1) + panic("fail") + } + if sn2/sd1 != q2 || sn2%sd1 != r2 { + println("int16-2", sn2, sd1, sn2/sd1, sn2%sd1) + panic("fail") + } + if sn1/sd2 != q3 || sn1%sd2 != r3 { + println("int16-3", sn1, sd2, sn1/sd2, sn1%sd2) + panic("fail") + } + if sn2/sd2 != q4 || sn2%sd2 != r4 { + println("int16-4", sn2, sd2, sn2/sd2, sn2%sd2) + panic("fail") + } + + /* int32 */ + var ln1 int32 = +5 + var ln2 int32 = -5 + var ld1 int32 = +3 + var ld2 int32 = -3 + + if ln1/ld1 != q1 || ln1%ld1 != r1 { + println("int32-1", ln1, ld1, ln1/ld1, ln1%ld1) + panic("fail") + } + if ln2/ld1 != q2 || ln2%ld1 != r2 { + println("int32-2", ln2, ld1, ln2/ld1, ln2%ld1) + panic("fail") + } + if ln1/ld2 != q3 || ln1%ld2 != r3 { + println("int32-3", ln1, ld2, ln1/ld2, ln1%ld2) + panic("fail") + } + if ln2/ld2 != q4 || ln2%ld2 != r4 { + println("int32-4", ln2, ld2, ln2/ld2, ln2%ld2) + panic("fail") + } + + /* int64 */ + var qn1 int64 = +5 + var qn2 int64 = -5 + var qd1 int64 = +3 + var qd2 int64 = -3 + + if qn1/qd1 != q1 || qn1%qd1 != r1 { + println("int64-1", qn1, qd1, qn1/qd1, qn1%qd1) + panic("fail") + } + if qn2/qd1 != q2 || qn2%qd1 != r2 { + println("int64-2", qn2, qd1, qn2/qd1, qn2%qd1) + panic("fail") + } + if qn1/qd2 != q3 || qn1%qd2 != r3 { + println("int64-3", qn1, qd2, qn1/qd2, qn1%qd2) + panic("fail") + } + if qn2/qd2 != q4 || qn2%qd2 != r4 { + println("int64-4", qn2, qd2, qn2/qd2, qn2%qd2) + panic("fail") + } + + if n1/qd1 != q1 || n1%qd1 != r1 { + println("mixed int64-1", n1, qd1, n1/qd1, n1%qd1) + panic("fail") + } + if n2/qd1 != q2 || n2%qd1 != r2 { + println("mixed int64-2", n2, qd1, n2/qd1, n2%qd1) + panic("fail") + } + if n1/qd2 != q3 || n1%qd2 != r3 { + println("mixed int64-3", n1, qd2, n1/qd2, n1%qd2) + panic("fail") + } + if n2/qd2 != q4 || n2%qd2 != r4 { + println("mixed int64-4", n2, qd2, n2/qd2, n2%qd2) + panic("fail") + } + + if qn1/d1 != q1 || qn1%d1 != r1 { + println("mixed int64-5", qn1, d1, qn1/d1, qn1%d1) + panic("fail") + } + if qn2/d1 != q2 || qn2%d1 != r2 { + println("mixed int64-6", qn2, d1, qn2/d1, qn2%d1) + panic("fail") + } + if qn1/d2 != q3 || qn1%d2 != r3 { + println("mixed int64-7", qn1, d2, qn1/d2, qn1%d2) + panic("fail") + } + if qn2/d2 != q4 || qn2%d2 != r4 { + println("mixed int64-8", qn2, d2, qn2/d2, qn2%d2) + panic("fail") + } + + /* uint */ + var uin1 uint = +5 + var uid1 uint = +3 + + if uin1/uid1 != q1 || uin1%uid1 != r1 { + println("uint", uin1, uid1, uin1/uid1, uin1%uid1) + panic("fail") + } + + /* uint8 */ + var ubn1 uint8 = +5 + var ubd1 uint8 = +3 + + if ubn1/ubd1 != q1 || ubn1%ubd1 != r1 { + println("uint8", ubn1, ubd1, ubn1/ubd1, ubn1%ubd1) + panic("fail") + } + + /* uint16 */ + var usn1 uint16 = +5 + var usd1 uint16 = +3 + + if usn1/usd1 != q1 || usn1%usd1 != r1 { + println("uint16", usn1, usd1, usn1/usd1, usn1%usd1) + panic("fail") + } + + /* uint32 */ + var uln1 uint32 = +5 + var uld1 uint32 = +3 + + if uln1/uld1 != q1 || uln1%uld1 != r1 { + println("uint32", uln1, uld1, uln1/uld1, uln1%uld1) + panic("fail") + } + + /* uint64 */ + var uqn1 uint64 = +5 + var uqd1 uint64 = +3 + + if uqn1/uqd1 != q1 || uqn1%uqd1 != r1 { + println("uint64", uqn1, uqd1, uqn1/uqd1, uqn1%uqd1) + panic("fail") + } + if n1/uqd1 != q1 || n1%uqd1 != r1 { + println("mixed uint64-1", n1, uqd1, n1/uqd1, n1%uqd1) + panic("fail") + } + if uqn1/d1 != q1 || uqn1%d1 != r1 { + println("mixed uint64-2", uqn1, d1, uqn1/d1, uqn1%d1) + panic("fail") + } +} diff --git a/gcc/testsuite/go.test/test/ken/embed.go b/gcc/testsuite/go.test/test/ken/embed.go new file mode 100644 index 0000000..9805e47 --- /dev/null +++ b/gcc/testsuite/go.test/test/ken/embed.go @@ -0,0 +1,317 @@ +// $G $D/$F.go && $L $F.$A && ./$A.out + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package main + + +type I interface { + test1() int + test2() int + test3() int + test4() int + test5() int + test6() int + test7() int +} + +/****** + ****** + ******/ + +type SubpSubp struct { + a7 int + a int +} + +func (p *SubpSubp) test7() int { + if p.a != p.a7 { + println("SubpSubp", p, p.a7) + panic("fail") + } + return p.a +} +func (p *SubpSubp) testx() { println("SubpSubp", p, p.a7) } + +/****** + ****** + ******/ + +type SubpSub struct { + a6 int + SubpSubp + a int +} + +func (p *SubpSub) test6() int { + if p.a != p.a6 { + println("SubpSub", p, p.a6) + panic("fail") + } + return p.a +} +func (p *SubpSub) testx() { println("SubpSub", p, p.a6) } + +/****** + ****** + ******/ + +type SubSubp struct { + a5 int + a int +} + +func (p *SubSubp) test5() int { + if p.a != p.a5 { + println("SubpSub", p, p.a5) + panic("fail") + } + return p.a +} + +/****** + ****** + ******/ + +type SubSub struct { + a4 int + a int +} + +func (p *SubSub) test4() int { + if p.a != p.a4 { + println("SubpSub", p, p.a4) + panic("fail") + } + return p.a +} + +/****** + ****** + ******/ + +type Subp struct { + a3 int + *SubpSubp + SubpSub + a int +} + +func (p *Subp) test3() int { + if p.a != p.a3 { + println("SubpSub", p, p.a3) + panic("fail") + } + return p.a +} + +/****** + ****** + ******/ + +type Sub struct { + a2 int + *SubSubp + SubSub + a int +} + +func (p *Sub) test2() int { + if p.a != p.a2 { + println("SubpSub", p, p.a2) + panic("fail") + } + return p.a +} + +/****** + ****** + ******/ + +type S struct { + a1 int + Sub + *Subp + a int +} + +func (p *S) test1() int { + if p.a != p.a1 { + println("SubpSub", p, p.a1) + panic("fail") + } + return p.a +} + +/****** + ****** + ******/ + +func main() { + var i I + var s *S + + // allocate + s = new(S) + s.Subp = new(Subp) + s.Sub.SubSubp = new(SubSubp) + s.Subp.SubpSubp = new(SubpSubp) + + // explicit assignment + s.a = 1 + s.Sub.a = 2 + s.Subp.a = 3 + s.Sub.SubSub.a = 4 + s.Sub.SubSubp.a = 5 + s.Subp.SubpSub.a = 6 + s.Subp.SubpSubp.a = 7 + + // embedded (unique) assignment + s.a1 = 1 + s.a2 = 2 + s.a3 = 3 + s.a4 = 4 + s.a5 = 5 + s.a6 = 6 + s.a7 = 7 + + // unique calls with explicit & + if s.test1() != 1 { + println("t1", 1) + panic("fail") + } + if (&s.Sub).test2() != 2 { + println("t1", 2) + panic("fail") + } + if s.Subp.test3() != 3 { + println("t1", 3) + panic("fail") + } + if (&s.Sub.SubSub).test4() != 4 { + println("t1", 4) + panic("fail") + } + if s.Sub.SubSubp.test5() != 5 { + println("t1", 5) + panic("fail") + } + if (&s.Subp.SubpSub).test6() != 6 { + println("t1", 6) + panic("fail") + } + if s.Subp.SubpSubp.test7() != 7 { + println("t1", 7) + panic("fail") + } + + // automatic & + if s.Sub.test2() != 2 { + println("t2", 2) + panic("fail") + } + if s.Sub.SubSub.test4() != 4 { + println("t2", 4) + panic("fail") + } + if s.Subp.SubpSub.test6() != 6 { + println("t2", 6) + panic("fail") + } + + // embedded calls + if s.test1() != s.a1 { + println("t3", 1) + panic("fail") + } + if s.test2() != s.a2 { + println("t3", 2) + panic("fail") + } + if s.test3() != s.a3 { + println("t3", 3) + panic("fail") + } + if s.test4() != s.a4 { + println("t3", 4) + panic("fail") + } + if s.test5() != s.a5 { + println("t3", 5) + panic("fail") + } + if s.test6() != s.a6 { + println("t3", 6) + panic("fail") + } + if s.test7() != s.a7 { + println("t3", 7) + panic("fail") + } + + // run it thru an interface + i = s + s = i.(*S) + + // same as t3 + if s.test1() != s.a1 { + println("t4", 1) + panic("fail") + } + if s.test2() != s.a2 { + println("t4", 2) + panic("fail") + } + if s.test3() != s.a3 { + println("t4", 3) + panic("fail") + } + if s.test4() != s.a4 { + println("t4", 4) + panic("fail") + } + if s.test5() != s.a5 { + println("t4", 5) + panic("fail") + } + if s.test6() != s.a6 { + println("t4", 6) + panic("fail") + } + if s.test7() != s.a7 { + println("t4", 7) + panic("fail") + } + + // call interface + if i.test1() != s.test1() { + println("t5", 1) + panic("fail") + } + if i.test2() != s.test2() { + println("t5", 2) + panic("fail") + } + if i.test3() != s.test3() { + println("t5", 3) + panic("fail") + } + if i.test4() != s.test4() { + println("t5", 4) + panic("fail") + } + if i.test5() != s.test5() { + println("t5", 5) + panic("fail") + } + if i.test6() != s.test6() { + println("t5", 6) + panic("fail") + } + if i.test7() != s.test7() { + println("t5", 7) + panic("fail") + } +} diff --git a/gcc/testsuite/go.test/test/ken/for.go b/gcc/testsuite/go.test/test/ken/for.go new file mode 100644 index 0000000..176ecd7 --- /dev/null +++ b/gcc/testsuite/go.test/test/ken/for.go @@ -0,0 +1,18 @@ +// $G $D/$F.go && $L $F.$A && ./$A.out + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + + +package main + +func +main() { + var t,i int; + + for i=0; i<100; i=i+1 { + t = t+i; + } + if t != 50*99 { panic(t); } +} diff --git a/gcc/testsuite/go.test/test/ken/interbasic.go b/gcc/testsuite/go.test/test/ken/interbasic.go new file mode 100644 index 0000000..9bb5088 --- /dev/null +++ b/gcc/testsuite/go.test/test/ken/interbasic.go @@ -0,0 +1,182 @@ +// $G $D/$F.go && $L $F.$A && ./$A.out + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package main + +type myint int +type mystring string +type I0 interface{} + +func f() { + var ia, ib I0 + var i myint + var s mystring + + if ia != ib { + panic("1") + } + + i = 1 + ia = i + ib = i + if ia != ib { + panic("2") + } + if ia == nil { + panic("3") + } + + i = 2 + ia = i + if ia == ib { + panic("4") + } + + ia = nil + if ia == ib { + panic("5") + } + + ib = nil + if ia != ib { + panic("6") + } + + if ia != nil { + panic("7") + } + + s = "abc" + ia = s + ib = nil + if ia == ib { + panic("8") + } + + s = "def" + ib = s + if ia == ib { + panic("9") + } + + s = "abc" + ib = s + if ia != ib { + panic("a") + } +} + +func main() { + var ia [20]I0 + var b bool + var s string + var i8 int8 + var i16 int16 + var i32 int32 + var i64 int64 + var u8 uint8 + var u16 uint16 + var u32 uint32 + var u64 uint64 + + f() + + ia[0] = "xxx" + ia[1] = 12345 + ia[2] = true + + s = "now is" + ia[3] = s + b = false + ia[4] = b + + i8 = 29 + ia[5] = i8 + i16 = 994 + ia[6] = i16 + i32 = 3434 + ia[7] = i32 + i64 = 1234567 + ia[8] = i64 + + u8 = 12 + ia[9] = u8 + u16 = 799 + ia[10] = u16 + u32 = 4455 + ia[11] = u32 + u64 = 765432 + ia[12] = u64 + + s = ia[0].(string) + if s != "xxx" { + println(0, s) + panic("fail") + } + i32 = int32(ia[1].(int)) + if i32 != 12345 { + println(1, i32) + panic("fail") + } + b = ia[2].(bool) + if b != true { + println(2, b) + panic("fail") + } + + s = ia[3].(string) + if s != "now is" { + println(3, s) + panic("fail") + } + b = ia[4].(bool) + if b != false { + println(4, b) + panic("fail") + } + + i8 = ia[5].(int8) + if i8 != 29 { + println(5, i8) + panic("fail") + } + i16 = ia[6].(int16) + if i16 != 994 { + println(6, i16) + panic("fail") + } + i32 = ia[7].(int32) + if i32 != 3434 { + println(7, i32) + panic("fail") + } + i64 = ia[8].(int64) + if i64 != 1234567 { + println(8, i64) + panic("fail") + } + + u8 = ia[9].(uint8) + if u8 != 12 { + println(5, u8) + panic("fail") + } + u16 = ia[10].(uint16) + if u16 != 799 { + println(6, u16) + panic("fail") + } + u32 = ia[11].(uint32) + if u32 != 4455 { + println(7, u32) + panic("fail") + } + u64 = ia[12].(uint64) + if u64 != 765432 { + println(8, u64) + panic("fail") + } +} diff --git a/gcc/testsuite/go.test/test/ken/interfun.go b/gcc/testsuite/go.test/test/ken/interfun.go new file mode 100644 index 0000000..94bc7ea --- /dev/null +++ b/gcc/testsuite/go.test/test/ken/interfun.go @@ -0,0 +1,57 @@ +// $G $D/$F.go && $L $F.$A && ./$A.out + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package main + +type S struct { + a,b int; +} + +type I1 interface { + f ()int; +} + +type I2 interface { + g() int; + f() int; +} + +func (this *S) f()int { + return this.a; +} + +func (this *S) g()int { + return this.b; +} + +func +main() { + var i1 I1; + var i2 I2; + var g *S; + + s := new(S); + s.a = 5; + s.b = 6; + + // call structure + if s.f() != 5 { panic(11); } + if s.g() != 6 { panic(12); } + + i1 = s; // convert S to I1 + i2 = i1.(I2); // convert I1 to I2 + + // call interface + if i1.f() != 5 { panic(21); } + if i2.f() != 5 { panic(22); } + if i2.g() != 6 { panic(23); } + + g = i1.(*S); // convert I1 to S + if g != s { panic(31); } + + g = i2.(*S); // convert I2 to S + if g != s { panic(32); } +} diff --git a/gcc/testsuite/go.test/test/ken/intervar.go b/gcc/testsuite/go.test/test/ken/intervar.go new file mode 100644 index 0000000..c2aaaa8 --- /dev/null +++ b/gcc/testsuite/go.test/test/ken/intervar.go @@ -0,0 +1,64 @@ +// $G $D/$F.go && $L $F.$A && ./$A.out + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package main + +type Iputs interface { + puts (s string); +} + +// --------- + +type Print struct { + whoami int; + put Iputs; +} + +func (p *Print) dop() { + print(" print ", p.whoami); + p.put.puts("abc"); +} + +// --------- + +type Bio struct { + whoami int; + put Iputs; +} + +func (b *Bio) puts(s string) { + print(" bio ", b.whoami); + b.put.puts(s); +} + +// --------- + +type File struct { + whoami int; + put Iputs; +} + +func (f *File) puts(s string) { + print(" file ", f.whoami, " -- ", s); +} + +func +main() { + p := new(Print); + b := new(Bio); + f := new(File); + + p.whoami = 1; + p.put = b; + + b.whoami = 2; + b.put = f; + + f.whoami = 3; + + p.dop(); + print("\n"); +} diff --git a/gcc/testsuite/go.test/test/ken/label.go b/gcc/testsuite/go.test/test/ken/label.go new file mode 100644 index 0000000..770f33e --- /dev/null +++ b/gcc/testsuite/go.test/test/ken/label.go @@ -0,0 +1,36 @@ +// $G $D/$F.go && $L $F.$A && ./$A.out + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + + +package main + +func +main() { + i := 0; + if false { + goto gogoloop; + } + if false { + goto gogoloop; + } + if false { + goto gogoloop; + } + goto gogoloop; + +// backward declared +loop: + i = i+1; + if i < 100 { + goto loop; + } + print(i); + print("\n"); + return; + +gogoloop: + goto loop; +} diff --git a/gcc/testsuite/go.test/test/ken/litfun.go b/gcc/testsuite/go.test/test/ken/litfun.go new file mode 100644 index 0000000..bac2bc1 --- /dev/null +++ b/gcc/testsuite/go.test/test/ken/litfun.go @@ -0,0 +1,22 @@ +// $G $D/$F.go && $L $F.$A && ./$A.out + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + + +package main + +func +main() { + x := func(a int)int { + x := func(a int)int { + x := func(a int)int { + return a+5; + }; + return x(a)+7; + }; + return x(a)+11; + }; + if x(3) != 3+5+7+11 { panic(x(3)); } +} diff --git a/gcc/testsuite/go.test/test/ken/mfunc.go b/gcc/testsuite/go.test/test/ken/mfunc.go new file mode 100644 index 0000000..ae0bc0c --- /dev/null +++ b/gcc/testsuite/go.test/test/ken/mfunc.go @@ -0,0 +1,20 @@ +// $G $D/$F.go && $L $F.$A && ./$A.out + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package main + +func +main() { + var x,y int; + + x,y = simple(10,20,30); + if x+y != 65 { panic(x+y); } +} + +func +simple(ia,ib,ic int) (oa,ob int) { + return ia+5, ib+ic; +} diff --git a/gcc/testsuite/go.test/test/ken/modconst.go b/gcc/testsuite/go.test/test/ken/modconst.go new file mode 100644 index 0000000..acb8831 --- /dev/null +++ b/gcc/testsuite/go.test/test/ken/modconst.go @@ -0,0 +1,632 @@ +// $G $D/$F.go && $L $F.$A && ./$A.out + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package main + +import "rand" + +const Count = 1e5 + +func i64rand() int64 { + for { + a := int64(rand.Uint32()) + a = (a << 32) | int64(rand.Uint32()) + a >>= uint(rand.Intn(64)) + if -a != a { + return a + } + } + return 0 // impossible +} + +func i64test(a, b, c int64) { + d := a % c + if d != b { + println("i64", a, b, c, d) + panic("fail") + } +} + +func i64run() { + var a, b int64 + + for i := 0; i < Count; i++ { + a = i64rand() + + b = a % 1 + i64test(a, b, 1) + b = a % 2 + i64test(a, b, 2) + b = a % 3 + i64test(a, b, 3) + b = a % 4 + i64test(a, b, 4) + b = a % 5 + i64test(a, b, 5) + b = a % 6 + i64test(a, b, 6) + b = a % 7 + i64test(a, b, 7) + b = a % 8 + i64test(a, b, 8) + b = a % 10 + i64test(a, b, 10) + b = a % 16 + i64test(a, b, 16) + b = a % 20 + i64test(a, b, 20) + b = a % 32 + i64test(a, b, 32) + b = a % 60 + i64test(a, b, 60) + b = a % 64 + i64test(a, b, 64) + b = a % 128 + i64test(a, b, 128) + b = a % 256 + i64test(a, b, 256) + b = a % 16384 + i64test(a, b, 16384) + + b = a % -1 + i64test(a, b, -1) + b = a % -2 + i64test(a, b, -2) + b = a % -3 + i64test(a, b, -3) + b = a % -4 + i64test(a, b, -4) + b = a % -5 + i64test(a, b, -5) + b = a % -6 + i64test(a, b, -6) + b = a % -7 + i64test(a, b, -7) + b = a % -8 + i64test(a, b, -8) + b = a % -10 + i64test(a, b, -10) + b = a % -16 + i64test(a, b, -16) + b = a % -20 + i64test(a, b, -20) + b = a % -32 + i64test(a, b, -32) + b = a % -60 + i64test(a, b, -60) + b = a % -64 + i64test(a, b, -64) + b = a % -128 + i64test(a, b, -128) + b = a % -256 + i64test(a, b, -256) + b = a % -16384 + i64test(a, b, -16384) + } +} + +func u64rand() uint64 { + a := uint64(rand.Uint32()) + a = (a << 32) | uint64(rand.Uint32()) + a >>= uint(rand.Intn(64)) + return a +} + +func u64test(a, b, c uint64) { + d := a % c + if d != b { + println("u64", a, b, c, d) + panic("fail") + } +} + +func u64run() { + var a, b uint64 + + for i := 0; i < Count; i++ { + a = u64rand() + + b = a % 1 + u64test(a, b, 1) + b = a % 2 + u64test(a, b, 2) + b = a % 3 + u64test(a, b, 3) + b = a % 4 + u64test(a, b, 4) + b = a % 5 + u64test(a, b, 5) + b = a % 6 + u64test(a, b, 6) + b = a % 7 + u64test(a, b, 7) + b = a % 8 + u64test(a, b, 8) + b = a % 10 + u64test(a, b, 10) + b = a % 16 + u64test(a, b, 16) + b = a % 20 + u64test(a, b, 20) + b = a % 32 + u64test(a, b, 32) + b = a % 60 + u64test(a, b, 60) + b = a % 64 + u64test(a, b, 64) + b = a % 128 + u64test(a, b, 128) + b = a % 256 + u64test(a, b, 256) + b = a % 16384 + u64test(a, b, 16384) + } +} + +func i32rand() int32 { + for { + a := int32(rand.Uint32()) + a >>= uint(rand.Intn(32)) + if -a != a { + return a + } + } + return 0 // impossible +} + +func i32test(a, b, c int32) { + d := a % c + if d != b { + println("i32", a, b, c, d) + panic("fail") + } +} + +func i32run() { + var a, b int32 + + for i := 0; i < Count; i++ { + a = i32rand() + + b = a % 1 + i32test(a, b, 1) + b = a % 2 + i32test(a, b, 2) + b = a % 3 + i32test(a, b, 3) + b = a % 4 + i32test(a, b, 4) + b = a % 5 + i32test(a, b, 5) + b = a % 6 + i32test(a, b, 6) + b = a % 7 + i32test(a, b, 7) + b = a % 8 + i32test(a, b, 8) + b = a % 10 + i32test(a, b, 10) + b = a % 16 + i32test(a, b, 16) + b = a % 20 + i32test(a, b, 20) + b = a % 32 + i32test(a, b, 32) + b = a % 60 + i32test(a, b, 60) + b = a % 64 + i32test(a, b, 64) + b = a % 128 + i32test(a, b, 128) + b = a % 256 + i32test(a, b, 256) + b = a % 16384 + i32test(a, b, 16384) + + b = a % -1 + i32test(a, b, -1) + b = a % -2 + i32test(a, b, -2) + b = a % -3 + i32test(a, b, -3) + b = a % -4 + i32test(a, b, -4) + b = a % -5 + i32test(a, b, -5) + b = a % -6 + i32test(a, b, -6) + b = a % -7 + i32test(a, b, -7) + b = a % -8 + i32test(a, b, -8) + b = a % -10 + i32test(a, b, -10) + b = a % -16 + i32test(a, b, -16) + b = a % -20 + i32test(a, b, -20) + b = a % -32 + i32test(a, b, -32) + b = a % -60 + i32test(a, b, -60) + b = a % -64 + i32test(a, b, -64) + b = a % -128 + i32test(a, b, -128) + b = a % -256 + i32test(a, b, -256) + } +} + +func u32rand() uint32 { + a := uint32(rand.Uint32()) + a >>= uint(rand.Intn(32)) + return a +} + +func u32test(a, b, c uint32) { + d := a % c + if d != b { + println("u32", a, b, c, d) + panic("fail") + } +} + +func u32run() { + var a, b uint32 + + for i := 0; i < Count; i++ { + a = u32rand() + + b = a % 1 + u32test(a, b, 1) + b = a % 2 + u32test(a, b, 2) + b = a % 3 + u32test(a, b, 3) + b = a % 4 + u32test(a, b, 4) + b = a % 5 + u32test(a, b, 5) + b = a % 6 + u32test(a, b, 6) + b = a % 7 + u32test(a, b, 7) + b = a % 8 + u32test(a, b, 8) + b = a % 10 + u32test(a, b, 10) + b = a % 16 + u32test(a, b, 16) + b = a % 20 + u32test(a, b, 20) + b = a % 32 + u32test(a, b, 32) + b = a % 60 + u32test(a, b, 60) + b = a % 64 + u32test(a, b, 64) + b = a % 128 + u32test(a, b, 128) + b = a % 256 + u32test(a, b, 256) + b = a % 16384 + u32test(a, b, 16384) + } +} + +func i16rand() int16 { + for { + a := int16(rand.Uint32()) + a >>= uint(rand.Intn(16)) + if -a != a { + return a + } + } + return 0 // impossible +} + +func i16test(a, b, c int16) { + d := a % c + if d != b { + println("i16", a, b, c, d) + panic("fail") + } +} + +func i16run() { + var a, b int16 + + for i := 0; i < Count; i++ { + a = i16rand() + + b = a % 1 + i16test(a, b, 1) + b = a % 2 + i16test(a, b, 2) + b = a % 3 + i16test(a, b, 3) + b = a % 4 + i16test(a, b, 4) + b = a % 5 + i16test(a, b, 5) + b = a % 6 + i16test(a, b, 6) + b = a % 7 + i16test(a, b, 7) + b = a % 8 + i16test(a, b, 8) + b = a % 10 + i16test(a, b, 10) + b = a % 16 + i16test(a, b, 16) + b = a % 20 + i16test(a, b, 20) + b = a % 32 + i16test(a, b, 32) + b = a % 60 + i16test(a, b, 60) + b = a % 64 + i16test(a, b, 64) + b = a % 128 + i16test(a, b, 128) + b = a % 256 + i16test(a, b, 256) + b = a % 16384 + i16test(a, b, 16384) + + b = a % -1 + i16test(a, b, -1) + b = a % -2 + i16test(a, b, -2) + b = a % -3 + i16test(a, b, -3) + b = a % -4 + i16test(a, b, -4) + b = a % -5 + i16test(a, b, -5) + b = a % -6 + i16test(a, b, -6) + b = a % -7 + i16test(a, b, -7) + b = a % -8 + i16test(a, b, -8) + b = a % -10 + i16test(a, b, -10) + b = a % -16 + i16test(a, b, -16) + b = a % -20 + i16test(a, b, -20) + b = a % -32 + i16test(a, b, -32) + b = a % -60 + i16test(a, b, -60) + b = a % -64 + i16test(a, b, -64) + b = a % -128 + i16test(a, b, -128) + b = a % -256 + i16test(a, b, -256) + b = a % -16384 + i16test(a, b, -16384) + } +} + +func u16rand() uint16 { + a := uint16(rand.Uint32()) + a >>= uint(rand.Intn(16)) + return a +} + +func u16test(a, b, c uint16) { + d := a % c + if d != b { + println("u16", a, b, c, d) + panic("fail") + } +} + +func u16run() { + var a, b uint16 + + for i := 0; i < Count; i++ { + a = u16rand() + + b = a % 1 + u16test(a, b, 1) + b = a % 2 + u16test(a, b, 2) + b = a % 3 + u16test(a, b, 3) + b = a % 4 + u16test(a, b, 4) + b = a % 5 + u16test(a, b, 5) + b = a % 6 + u16test(a, b, 6) + b = a % 7 + u16test(a, b, 7) + b = a % 8 + u16test(a, b, 8) + b = a % 10 + u16test(a, b, 10) + b = a % 16 + u16test(a, b, 16) + b = a % 20 + u16test(a, b, 20) + b = a % 32 + u16test(a, b, 32) + b = a % 60 + u16test(a, b, 60) + b = a % 64 + u16test(a, b, 64) + b = a % 128 + u16test(a, b, 128) + b = a % 256 + u16test(a, b, 256) + b = a % 16384 + u16test(a, b, 16384) + } +} + +func i8rand() int8 { + for { + a := int8(rand.Uint32()) + a >>= uint(rand.Intn(8)) + if -a != a { + return a + } + } + return 0 // impossible +} + +func i8test(a, b, c int8) { + d := a % c + if d != b { + println("i8", a, b, c, d) + panic("fail") + } +} + +func i8run() { + var a, b int8 + + for i := 0; i < Count; i++ { + a = i8rand() + + b = a % 1 + i8test(a, b, 1) + b = a % 2 + i8test(a, b, 2) + b = a % 3 + i8test(a, b, 3) + b = a % 4 + i8test(a, b, 4) + b = a % 5 + i8test(a, b, 5) + b = a % 6 + i8test(a, b, 6) + b = a % 7 + i8test(a, b, 7) + b = a % 8 + i8test(a, b, 8) + b = a % 10 + i8test(a, b, 10) + b = a % 8 + i8test(a, b, 8) + b = a % 20 + i8test(a, b, 20) + b = a % 32 + i8test(a, b, 32) + b = a % 60 + i8test(a, b, 60) + b = a % 64 + i8test(a, b, 64) + b = a % 127 + i8test(a, b, 127) + + b = a % -1 + i8test(a, b, -1) + b = a % -2 + i8test(a, b, -2) + b = a % -3 + i8test(a, b, -3) + b = a % -4 + i8test(a, b, -4) + b = a % -5 + i8test(a, b, -5) + b = a % -6 + i8test(a, b, -6) + b = a % -7 + i8test(a, b, -7) + b = a % -8 + i8test(a, b, -8) + b = a % -10 + i8test(a, b, -10) + b = a % -8 + i8test(a, b, -8) + b = a % -20 + i8test(a, b, -20) + b = a % -32 + i8test(a, b, -32) + b = a % -60 + i8test(a, b, -60) + b = a % -64 + i8test(a, b, -64) + b = a % -128 + i8test(a, b, -128) + b = a % -101 + i8test(a, b, -101) + } +} + +func u8rand() uint8 { + a := uint8(rand.Uint32()) + a >>= uint(rand.Intn(8)) + return a +} + +func u8test(a, b, c uint8) { + d := a % c + if d != b { + println("u8", a, b, c, d) + panic("fail") + } +} + +func u8run() { + var a, b uint8 + + for i := 0; i < Count; i++ { + a = u8rand() + + b = a % 1 + u8test(a, b, 1) + b = a % 2 + u8test(a, b, 2) + b = a % 3 + u8test(a, b, 3) + b = a % 4 + u8test(a, b, 4) + b = a % 5 + u8test(a, b, 5) + b = a % 6 + u8test(a, b, 6) + b = a % 7 + u8test(a, b, 7) + b = a % 8 + u8test(a, b, 8) + b = a % 10 + u8test(a, b, 10) + b = a % 8 + u8test(a, b, 8) + b = a % 20 + u8test(a, b, 20) + b = a % 32 + u8test(a, b, 32) + b = a % 60 + u8test(a, b, 60) + b = a % 64 + u8test(a, b, 64) + b = a % 127 + u8test(a, b, 127) + } +} + +func main() { + xtest() + i64run() + u64run() + i32run() + u32run() + i16run() + u16run() + i8run() + u8run() +} + +func xtest() { +} diff --git a/gcc/testsuite/go.test/test/ken/ptrfun.go b/gcc/testsuite/go.test/test/ken/ptrfun.go new file mode 100644 index 0000000..6739ba3 --- /dev/null +++ b/gcc/testsuite/go.test/test/ken/ptrfun.go @@ -0,0 +1,44 @@ +// $G $D/$F.go && $L $F.$A && ./$A.out + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + + +package main + +type C struct { + a int; + x func(p *C)int; +} + +func (this *C) f()int { + return this.a; +} + +func +main() { + var v int; + var c *C; + + c = new(C); + c.a = 6; + c.x = g; + + v = g(c); + if v != 6 { panic(v); } + + v = c.x(c); + if v != 6 { panic(v); } + + v = c.f(); + if v != 6 { panic(v); } +} + +func g(p *C)int { + var v int; + + v = p.a; + if v != 6 { panic(v); } + return p.a; +} diff --git a/gcc/testsuite/go.test/test/ken/ptrvar.go b/gcc/testsuite/go.test/test/ken/ptrvar.go new file mode 100644 index 0000000..e2ddde6 --- /dev/null +++ b/gcc/testsuite/go.test/test/ken/ptrvar.go @@ -0,0 +1,53 @@ +// $G $D/$F.go && $L $F.$A && ./$A.out + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + + +package main + +type x2 struct { a,b,c int; d int; }; +var g1 x2; +var g2 struct { a,b,c int; d x2; }; + +func +main() { + var x int; + var s1 *x2; + var s2 *struct { a,b,c int; d x2; }; + + s1 = &g1; + s2 = &g2; + + s1.a = 1; + s1.b = 2; + s1.c = 3; + s1.d = 5; + + s2.a = 7; + s2.b = 11; + s2.c = 13; + s2.d.a = 17; + s2.d.b = 19; + s2.d.c = 23; + s2.d.d = 20; + + if(s2.d.c != 23) { panic(1); } + if(g2.d.c != 23) { panic(2); } + + x = s1.a + + s1.b + + s1.c + + s1.d + + + s2.a + + s2.b + + s2.c + + s2.d.a + + s2.d.b + + s2.d.c + + s2.d.d; + + if(x != 121) { panic(x); } +} diff --git a/gcc/testsuite/go.test/test/ken/range.go b/gcc/testsuite/go.test/test/ken/range.go new file mode 100644 index 0000000..9535fd4 --- /dev/null +++ b/gcc/testsuite/go.test/test/ken/range.go @@ -0,0 +1,119 @@ +// $G $D/$F.go && $L $F.$A && ./$A.out + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package main + +const size = 16 + +var a [size]byte +var p []byte +var m map[int]byte + +func f(k int) byte { + return byte(k * 10007 % size) +} + +func init() { + p = make([]byte, size) + m = make(map[int]byte) + for k := 0; k < size; k++ { + v := f(k) + a[k] = v + p[k] = v + m[k] = v + } +} + +func main() { + var i int + + /* + * key only + */ + i = 0 + for k := range a { + v := a[k] + if v != f(k) { + println("key array range", k, v, a[k]) + panic("fail") + } + i++ + } + if i != size { + println("key array size", i) + panic("fail") + } + + i = 0 + for k := range p { + v := p[k] + if v != f(k) { + println("key pointer range", k, v, p[k]) + panic("fail") + } + i++ + } + if i != size { + println("key pointer size", i) + panic("fail") + } + + i = 0 + for k := range m { + v := m[k] + if v != f(k) { + println("key map range", k, v, m[k]) + panic("fail") + } + i++ + } + if i != size { + println("key map size", i) + panic("fail") + } + + /* + * key,value + */ + i = 0 + for k, v := range a { + if v != f(k) { + println("key:value array range", k, v, a[k]) + panic("fail") + } + i++ + } + if i != size { + println("key:value array size", i) + panic("fail") + } + + i = 0 + for k, v := range p { + if v != f(k) { + println("key:value pointer range", k, v, p[k]) + panic("fail") + } + i++ + } + if i != size { + println("key:value pointer size", i) + panic("fail") + } + + i = 0 + for k, v := range m { + if v != f(k) { + println("key:value map range", k, v, m[k]) + panic("fail") + } + i++ + } + if i != size { + println("key:value map size", i) + panic("fail") + } +} diff --git a/gcc/testsuite/go.test/test/ken/rob1.go b/gcc/testsuite/go.test/test/ken/rob1.go new file mode 100644 index 0000000..0335066 --- /dev/null +++ b/gcc/testsuite/go.test/test/ken/rob1.go @@ -0,0 +1,67 @@ +// $G $D/$F.go && $L $F.$A && ./$A.out + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package main + +type Item interface { + Print(); +} + +type ListItem struct { + item Item; + next *ListItem; +} + +type List struct { + head *ListItem; +} + +func (list *List) Init() { + list.head = nil; +} + +func (list *List) Insert(i Item) { + item := new(ListItem); + item.item = i; + item.next = list.head; + list.head = item; +} + +func (list *List) Print() { + i := list.head; + for i != nil { + i.item.Print(); + i = i.next; + } +} + +// Something to put in a list +type Integer struct { + val int; +} + +func (this *Integer) Init(i int) *Integer { + this.val = i; + return this; +} + +func (this *Integer) Print() { + print(this.val); +} + +func +main() { + list := new(List); + list.Init(); + for i := 0; i < 10; i = i + 1 { + integer := new(Integer); + integer.Init(i); + list.Insert(integer); + } + + list.Print(); + print("\n"); +} diff --git a/gcc/testsuite/go.test/test/ken/rob2.go b/gcc/testsuite/go.test/test/ken/rob2.go new file mode 100644 index 0000000..af63e4d --- /dev/null +++ b/gcc/testsuite/go.test/test/ken/rob2.go @@ -0,0 +1,272 @@ +// $G $D/$F.go && $L $F.$A && ./$A.out + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + + +package main + +const nilchar = 0; + +type Atom struct { + str string; + integer int; + next *Slist; /* in hash bucket */ +} + +type List struct { + car *Slist; + cdr*Slist; +} + +type Slist struct { + isatom bool; + isstring bool; + //union { + atom Atom; + list List; + //} u; + +} + +func (this *Slist) Car() *Slist { + return this.list.car; +} + +func (this *Slist) Cdr() *Slist { + return this.list.cdr; +} + +func (this *Slist) String() string { + return this.atom.str; +} + +func (this *Slist) Integer() int { + return this.atom.integer; +} + +func (slist *Slist) Free() { + if slist == nil { + return; + } + if slist.isatom { +// free(slist.String()); + } else { + slist.Car().Free(); + slist.Cdr().Free(); + } +// free(slist); +} + +//Slist* atom(byte *s, int i); + +var token int; +var peekc int = -1; +var lineno int32 = 1; + +var input string; +var inputindex int = 0; +var tokenbuf [100]byte; +var tokenlen int = 0; + +const EOF int = -1; + +func main() { + var list *Slist; + + OpenFile(); + for ;; { + list = Parse(); + if list == nil { + break; + } + list.Print(); + list.Free(); + break; + } +} + +func (slist *Slist) PrintOne(doparen bool) { + if slist == nil { + return; + } + if slist.isatom { + if slist.isstring { + print(slist.String()); + } else { + print(slist.Integer()); + } + } else { + if doparen { + print("(" ); + } + slist.Car().PrintOne(true); + if slist.Cdr() != nil { + print(" "); + slist.Cdr().PrintOne(false); + } + if doparen { + print(")"); + } + } +} + +func (slist *Slist) Print() { + slist.PrintOne(true); + print("\n"); +} + +func Get() int { + var c int; + + if peekc >= 0 { + c = peekc; + peekc = -1; + } else { + c = int(input[inputindex]); + inputindex++; + if c == '\n' { + lineno = lineno + 1; + } + if c == nilchar { + inputindex = inputindex - 1; + c = EOF; + } + } + return c; +} + +func WhiteSpace(c int) bool { + return c == ' ' || c == '\t' || c == '\r' || c == '\n'; +} + +func NextToken() { + var i, c int; + + tokenbuf[0] = nilchar; // clear previous token + c = Get(); + for WhiteSpace(c) { + c = Get(); + } + switch c { + case EOF: + token = EOF; + case '(', ')': + token = c; + break; + default: + for i = 0; i < 100 - 1; { // sizeof tokenbuf - 1 + tokenbuf[i] = byte(c); + i = i + 1; + c = Get(); + if c == EOF { + break; + } + if WhiteSpace(c) || c == ')' { + peekc = c; + break; + } + } + if i >= 100 - 1 { // sizeof tokenbuf - 1 + panic("atom too long\n"); + } + tokenlen = i; + tokenbuf[i] = nilchar; + if '0' <= tokenbuf[0] && tokenbuf[0] <= '9' { + token = '0'; + } else { + token = 'A'; + } + } +} + +func Expect(c int) { + if token != c { + print("parse error: expected ", c, "\n"); + panic("parse"); + } + NextToken(); +} + +// Parse a non-parenthesized list up to a closing paren or EOF +func ParseList() *Slist { + var slist, retval *Slist; + + slist = new(Slist); + slist.list.car = nil; + slist.list.cdr = nil; + slist.isatom = false; + slist.isstring = false; + + retval = slist; + for ;; { + slist.list.car = Parse(); + if token == ')' || token == EOF { // empty cdr + break; + } + slist.list.cdr = new(Slist); + slist = slist.list.cdr; + } + return retval; +} + +func atom(i int) *Slist { // BUG: uses tokenbuf; should take argument) + var slist *Slist; + + slist = new(Slist); + if token == '0' { + slist.atom.integer = i; + slist.isstring = false; + } else { + slist.atom.str = string(tokenbuf[0:tokenlen]); + slist.isstring = true; + } + slist.isatom = true; + return slist; +} + +func atoi() int { // BUG: uses tokenbuf; should take argument) + var v int = 0; + for i := 0; i < tokenlen && '0' <= tokenbuf[i] && tokenbuf[i] <= '9'; i = i + 1 { + v = 10 * v + int(tokenbuf[i] - '0'); + } + return v; +} + +func Parse() *Slist { + var slist *Slist; + + if token == EOF || token == ')' { + return nil; + } + if token == '(' { + NextToken(); + slist = ParseList(); + Expect(')'); + return slist; + } else { + // Atom + switch token { + case EOF: + return nil; + case '0': + slist = atom(atoi()); + case '"', 'A': + slist = atom(0); + default: + slist = nil; + print("unknown token: ", token, "\n"); + } + NextToken(); + return slist; + } + return nil; +} + +func OpenFile() { + input = "(defn foo (add 12 34))\n\x00"; + inputindex = 0; + peekc = -1; // BUG + NextToken(); +} diff --git a/gcc/testsuite/go.test/test/ken/robfor.go b/gcc/testsuite/go.test/test/ken/robfor.go new file mode 100644 index 0000000..05188a4 --- /dev/null +++ b/gcc/testsuite/go.test/test/ken/robfor.go @@ -0,0 +1,56 @@ +// $G $D/$F.go && $L $F.$A && ./$A.out + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package main + +func assertequal(is, shouldbe int, msg string) { + if is != shouldbe { + print("assertion fail" + msg + "\n"); + panic(1); + } +} + +func main() { + var i, sum int; + + i = 0; + for { + i = i + 1; + if i > 5 { + break; + } + } + assertequal(i, 6, "break"); + + sum = 0; + for i := 0; i <= 10; i++ { + sum = sum + i; + } + assertequal(sum, 55, "all three"); + + sum = 0; + for i := 0; i <= 10; { + sum = sum + i; + i++; + } + assertequal(sum, 55, "only two"); + + sum = 0; + for sum < 100 { + sum = sum + 9; + } + assertequal(sum, 99 + 9, "only one"); + + sum = 0; + for i := 0; i <= 10; i++ { + if i % 2 == 0 { + continue; + } + sum = sum + i; + } + assertequal(sum, 1+3+5+7+9, "continue"); + +} diff --git a/gcc/testsuite/go.test/test/ken/robfunc.go b/gcc/testsuite/go.test/test/ken/robfunc.go new file mode 100644 index 0000000..12b4b6d --- /dev/null +++ b/gcc/testsuite/go.test/test/ken/robfunc.go @@ -0,0 +1,94 @@ +// $G $D/$F.go && $L $F.$A && ./$A.out + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package main + +func assertequal(is, shouldbe int, msg string) { + if is != shouldbe { + print("assertion fail" + msg + "\n"); + panic(1); + } +} + +func f1() { +} + +func f2(a int) { +} + +func f3(a, b int) int { + return a+b; +} + +func f4(a, b int, c float) int { + return (a+b)/2 + int(c); +} + +func f5(a int) int { + return 5; +} + +func f6(a int) (r int) { + return 6; +} + +func f7(a int) (x int, y float) { + return 7, 7.0; +} + + +func f8(a int) (x int, y float) { + return 8, 8.0; +} + +type T struct { + x, y int; +} + +func (t *T) m10(a int, b float) int { + return (t.x+a) * (t.y+int(b)); +} + + +func f9(a int) (in int, fl float) { + i := 9; + f := float(9); + return i, f; +} + + +func main() { + f1(); + f2(1); + r3 := f3(1, 2); + assertequal(r3, 3, "3"); + r4 := f4(0, 2, 3.0); + assertequal(r4, 4, "4"); + r5 := f5(1); + assertequal(r5, 5, "5"); + r6 := f6(1); + assertequal(r6, 6, "6"); + var r7 int; + var s7 float; + r7, s7 = f7(1); + assertequal(r7, 7, "r7"); + assertequal(int(s7), 7, "s7"); + var r8 int; + var s8 float; + r8, s8 = f8(1); + assertequal(r8, 8, "r8"); + assertequal(int(s8), 8, "s8"); + var r9 int; + var s9 float; + r9, s9 = f9(1); + assertequal(r9, 9, "r9"); + assertequal(int(s9), 9, "s9"); + var t *T = new(T); + t.x = 1; + t.y = 2; + r10 := t.m10(1, 3.0); + assertequal(r10, 10, "10"); +} diff --git a/gcc/testsuite/go.test/test/ken/robif.go b/gcc/testsuite/go.test/test/ken/robif.go new file mode 100644 index 0000000..b6fe4e4 --- /dev/null +++ b/gcc/testsuite/go.test/test/ken/robif.go @@ -0,0 +1,97 @@ +// $G $D/$F.go && $L $F.$A && ./$A.out + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package main + +func assertequal(is, shouldbe int, msg string) { + if is != shouldbe { + print("assertion fail" + msg + "\n"); + panic(1); + } +} + +func main() { + i5 := 5; + i7 := 7; + + var count int; + + count = 0; + if true { + count = count + 1; + } + assertequal(count, 1, "if true"); + + count = 0; + if false { + count = count + 1; + } + assertequal(count, 0, "if false"); + + count = 0; + if one := 1; true { + count = count + one; + } + assertequal(count, 1, "if true one"); + + count = 0; + if one := 1; false { + _ = one; + count = count + 1; + } + assertequal(count, 0, "if false one"); + + count = 0; + if { + count = count + 1; + } + assertequal(count, 1, "if empty"); + + count = 0; + if one := 1; { + count = count + one; + } + assertequal(count, 1, "if empty one"); + + count = 0; + if i5 < i7 { + count = count + 1; + } + assertequal(count, 1, "if cond"); + + count = 0; + if true { + count = count + 1; + } else + count = count - 1; + assertequal(count, 1, "if else true"); + + count = 0; + if false { + count = count + 1; + } else + count = count - 1; + assertequal(count, -1, "if else false"); + + count = 0; + if t:=1; false { + count = count + 1; + t := 7; + _ = t; + } else + count = count - t; + assertequal(count, -1, "if else false var"); + + count = 0; + t := 1; + if false { + count = count + 1; + t := 7; + _ = t; + } else + count = count - t; + assertequal(count, -1, "if else false var outside"); +} diff --git a/gcc/testsuite/go.test/test/ken/shift.go b/gcc/testsuite/go.test/test/ken/shift.go new file mode 100644 index 0000000..157a07a --- /dev/null +++ b/gcc/testsuite/go.test/test/ken/shift.go @@ -0,0 +1,119 @@ +// $G $D/$F.go && $L $F.$A && ./$A.out + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package main + +var ians [18]int; +var uans [18]uint; +var pass string; + +func +testi(i int, t1,t2,t3 int) { + n := ((t1*3) + t2)*2 + t3; + if i != ians[n] { + print("itest ", t1,t2,t3,pass, + " is ", i, " sb ", ians[n], "\n"); + } +} + +func +index(t1,t2,t3 int) int { + return ((t1*3) + t2)*2 + t3; +} + +func +testu(u uint, t1,t2,t3 int) { + n := index(t1,t2,t3); + if u != uans[n] { + print("utest ", t1,t2,t3,pass, + " is ", u, " sb ", uans[n], "\n"); + } +} + +func +main() { + var i int; + var u,c uint; + + /* + * test constant evaluations + */ + pass = "con"; // constant part + + testi( int(1234) << 0, 0,0,0); + testi( int(1234) >> 0, 0,0,1); + testi( int(1234) << 5, 0,1,0); + testi( int(1234) >> 5, 0,1,1); + + testi(int(-1234) << 0, 1,0,0); + testi(int(-1234) >> 0, 1,0,1); + testi(int(-1234) << 5, 1,1,0); + testi(int(-1234) >> 5, 1,1,1); + + testu(uint(5678) << 0, 2,0,0); + testu(uint(5678) >> 0, 2,0,1); + testu(uint(5678) << 5, 2,1,0); + testu(uint(5678) >> 5, 2,1,1); + + /* + * test variable evaluations + */ + pass = "var"; // variable part + + for t1:=0; t1<3; t1++ { // +int, -int, uint + for t2:=0; t2<3; t2++ { // 0, +small, +large + for t3:=0; t3<2; t3++ { // <<, >> + switch t1 { + case 0: i = 1234; + case 1: i = -1234; + case 2: u = 5678; + } + switch t2 { + case 0: c = 0; + case 1: c = 5; + case 2: c = 1025; + } + switch t3 { + case 0: i <<= c; u <<= c; + case 1: i >>= c; u >>= c; + } + switch t1 { + case 0: testi(i,t1,t2,t3); + case 1: testi(i,t1,t2,t3); + case 2: testu(u,t1,t2,t3); + } + } + } + } +} + +func +init() { + /* + * set the 'correct' answer + */ + + ians[index(0,0,0)] = 1234; + ians[index(0,0,1)] = 1234; + ians[index(0,1,0)] = 39488; + ians[index(0,1,1)] = 38; + ians[index(0,2,0)] = 0; + ians[index(0,2,1)] = 0; + + ians[index(1,0,0)] = -1234; + ians[index(1,0,1)] = -1234; + ians[index(1,1,0)] = -39488; + ians[index(1,1,1)] = -39; + ians[index(1,2,0)] = 0; + ians[index(1,2,1)] = -1; + + uans[index(2,0,0)] = 5678; + uans[index(2,0,1)] = 5678; + uans[index(2,1,0)] = 181696; + uans[index(2,1,1)] = 177; + uans[index(2,2,0)] = 0; + uans[index(2,2,1)] = 0; +} diff --git a/gcc/testsuite/go.test/test/ken/simparray.go b/gcc/testsuite/go.test/test/ken/simparray.go new file mode 100644 index 0000000..1b6f245 --- /dev/null +++ b/gcc/testsuite/go.test/test/ken/simparray.go @@ -0,0 +1,48 @@ +// $G $D/$F.go && $L $F.$A && ./$A.out + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package main + +var b[10] float32; + +func +main() { + var a[10] float32; + + for i:=int16(5); i<10; i=i+1 { + a[i] = float32(i); + } + + s1 := float32(0); + for i:=5; i<10; i=i+1 { + s1 = s1 + a[i]; + } + + if s1 != 35 { panic(s1); } + + for i:=int16(5); i<10; i=i+1 { + b[i] = float32(i); + } + + s2 := float32(0); + for i:=5; i<10; i=i+1 { + s2 = s2 + b[i]; + } + + if s2 != 35 { panic(s2); } + + b := new([100]int); + for i:=0; i<100; i=i+1 { + b[i] = i; + } + + s3 := 0; + for i:=0; i<100; i=i+1 { + s3 = s3+b[i]; + } + + if s3 != 4950 { panic(s3); } +} diff --git a/gcc/testsuite/go.test/test/ken/simpbool.go b/gcc/testsuite/go.test/test/ken/simpbool.go new file mode 100644 index 0000000..dbd9c8d --- /dev/null +++ b/gcc/testsuite/go.test/test/ken/simpbool.go @@ -0,0 +1,105 @@ +// $G $D/$F.go && $L $F.$A && ./$A.out + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package main + +type s struct { + a bool; + b bool; +} + +func +main() { + var a,b bool; + + a = true; + b = false; + + if !a { panic(1); } + if b { panic(2); } + if !!!a { panic(3); } + if !!b { panic(4); } + + a = !b; + if !a { panic(5); } + if !!!a { panic(6); } + + var x *s; + x = new(s); + x.a = true; + x.b = false; + + if !x.a { panic(7); } + if x.b { panic(8); } + if !!!x.a { panic(9); } + if !!x.b { panic(10); } + + x.a = !x.b; + if !x.a { panic(11); } + if !!!x.a { panic(12); } + + /* + * test && + */ + a = true; + b = true; + if !(a && b) { panic(21); } + if a && !b { panic(22); } + if !a && b { panic(23); } + if !a && !b { panic(24); } + + a = false; + b = true; + if !(!a && b) { panic(31); } + if !a && !b { panic(32); } + if a && b { panic(33); } + if a && !b { panic(34); } + + a = true; + b = false; + if !(a && !b) { panic(41); } + if a && b { panic(41); } + if !a && !b { panic(41); } + if !a && b { panic(44); } + + a = false; + b = false; + if !(!a && !b) { panic(51); } + if !a && b { panic(52); } + if a && !b { panic(53); } + if a && b { panic(54); } + + /* + * test || + */ + a = true; + b = true; + if !(a || b) { panic(61); } + if !(a || !b) { panic(62); } + if !(!a || b) { panic(63); } + if !a || !b { panic(64); } + + a = false; + b = true; + if !(!a || b) { panic(71); } + if !(!a || !b) { panic(72); } + if !(a || b) { panic(73); } + if a || !b { panic(74); } + + a = true; + b = false; + if !(a || !b) { panic(81); } + if !(a || b) { panic(82); } + if !(!a || !b) { panic(83); } + if !a || b { panic(84); } + + a = false; + b = false; + if !(!a || !b) { panic(91); } + if !(!a || b) { panic(92); } + if !(a || !b) { panic(93); } + if a || b { panic(94); } +} diff --git a/gcc/testsuite/go.test/test/ken/simpconv.go b/gcc/testsuite/go.test/test/ken/simpconv.go new file mode 100644 index 0000000..cb443e3 --- /dev/null +++ b/gcc/testsuite/go.test/test/ken/simpconv.go @@ -0,0 +1,25 @@ +// $G $D/$F.go && $L $F.$A && ./$A.out + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package main + +type vlong int64; +type short int16; + +func +main() { + s1 := vlong(0); + for i:=short(0); i<10; i=i+1 { + s1 = s1 + vlong(i); + } + if s1 != 45 { panic(s1); } + + s2 := float(0); + for i:=0; i<10; i=i+1 { + s2 = s2 + float(i); + } + if s2 != 45 { panic(s2); } +} diff --git a/gcc/testsuite/go.test/test/ken/simpfun.go b/gcc/testsuite/go.test/test/ken/simpfun.go new file mode 100644 index 0000000..ba9ce6f --- /dev/null +++ b/gcc/testsuite/go.test/test/ken/simpfun.go @@ -0,0 +1,25 @@ +// $G $D/$F.go && $L $F.$A && ./$A.out + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + + +package main + +func +main() { + var x int; + + x = fun(10,20,30); + if x != 60 { panic(x); } +} + +func +fun(ia,ib,ic int)int { + var o int; + + o = ia+ib+ic; + if o != 60 { panic(o); } + return o; +} diff --git a/gcc/testsuite/go.test/test/ken/simpprint.go b/gcc/testsuite/go.test/test/ken/simpprint.go new file mode 100644 index 0000000..6077f7e --- /dev/null +++ b/gcc/testsuite/go.test/test/ken/simpprint.go @@ -0,0 +1,13 @@ +// $G $D/$F.go && $L $F.$A && ./$A.out + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + + +package main + +func +main() { + print("hello world\n"); +} diff --git a/gcc/testsuite/go.test/test/ken/simpswitch.go b/gcc/testsuite/go.test/test/ken/simpswitch.go new file mode 100644 index 0000000..ab5dd35 --- /dev/null +++ b/gcc/testsuite/go.test/test/ken/simpswitch.go @@ -0,0 +1,24 @@ +// $G $D/$F.go && $L $F.$A && ./$A.out + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package main + +func +main() { + a := 3; + for i:=0; i<10; i=i+1 { + switch(i) { + case 5: + print("five"); + case a,7: + print("a"); + default: + print(i); + } + print("out", i); + } + print("\n"); +} diff --git a/gcc/testsuite/go.test/test/ken/simpvar.go b/gcc/testsuite/go.test/test/ken/simpvar.go new file mode 100644 index 0000000..fd060b0 --- /dev/null +++ b/gcc/testsuite/go.test/test/ken/simpvar.go @@ -0,0 +1,25 @@ +// $G $D/$F.go && $L $F.$A && ./$A.out + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + + +package main + +var x,y int; + +func +main() { + + x = 15; + y = 20; + { + var x int; + x = 25; + y = 25; + _ = x; + } + x = x+y; + if(x != 40) { panic(x); } +} diff --git a/gcc/testsuite/go.test/test/ken/slicearray.go b/gcc/testsuite/go.test/test/ken/slicearray.go new file mode 100644 index 0000000..6e7088e --- /dev/null +++ b/gcc/testsuite/go.test/test/ken/slicearray.go @@ -0,0 +1,210 @@ +// $G $D/$F.go && $L $F.$A && ./$A.out + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package main + +var bx [10]byte +var by []byte +var fx [10]float +var fy []float +var lb, hb int +var t int + +func main() { + lb = 0 + hb = 10 + by = bx[0:] + tstb() + + lb = 0 + hb = 10 + fy = fx[0:] + tstf() + + // width 1 (byte) + lb = 0 + hb = 10 + by = bx[lb:hb] + tstb() + by = bx[lb:10] + tstb() + by = bx[lb:] + tstb() + by = bx[:hb] + tstb() + by = bx[0:hb] + tstb() + by = bx[0:10] + tstb() + by = bx[0:] + tstb() + by = bx[:10] + tstb() + by = bx[:] + tstb() + + lb = 2 + hb = 10 + by = bx[lb:hb] + tstb() + by = bx[lb:10] + tstb() + by = bx[lb:] + tstb() + by = bx[2:hb] + tstb() + by = bx[2:10] + tstb() + by = bx[2:] + tstb() + + lb = 0 + hb = 8 + by = bx[lb:hb] + tstb() + by = bx[lb:8] + tstb() + by = bx[0:hb] + tstb() + by = bx[0:8] + tstb() + by = bx[:8] + tstb() + by = bx[:hb] + tstb() + + lb = 2 + hb = 8 + by = bx[lb:hb] + tstb() + by = bx[lb:8] + tstb() + by = bx[2:hb] + tstb() + by = bx[2:8] + tstb() + + // width 4 (float) + lb = 0 + hb = 10 + fy = fx[lb:hb] + tstf() + fy = fx[lb:10] + tstf() + fy = fx[lb:] + tstf() + fy = fx[:hb] + tstf() + fy = fx[0:hb] + tstf() + fy = fx[0:10] + tstf() + fy = fx[0:] + tstf() + fy = fx[:10] + tstf() + fy = fx[:] + tstf() + + lb = 2 + hb = 10 + fy = fx[lb:hb] + tstf() + fy = fx[lb:10] + tstf() + fy = fx[lb:] + tstf() + fy = fx[2:hb] + tstf() + fy = fx[2:10] + tstf() + fy = fx[2:] + tstf() + + lb = 0 + hb = 8 + fy = fx[lb:hb] + tstf() + fy = fx[lb:8] + tstf() + fy = fx[:hb] + tstf() + fy = fx[0:hb] + tstf() + fy = fx[0:8] + tstf() + fy = fx[:8] + tstf() + + lb = 2 + hb = 8 + fy = fx[lb:hb] + tstf() + fy = fx[lb:8] + tstf() + fy = fx[2:hb] + tstf() + fy = fx[2:8] + tstf() +} + +func tstb() { + t++ + if len(by) != hb-lb { + println("t=", t, "lb=", lb, "hb=", hb, + "len=", len(by), "hb-lb=", hb-lb) + panic("fail") + } + if cap(by) != len(bx)-lb { + println("t=", t, "lb=", lb, "hb=", hb, + "cap=", cap(by), "len(bx)-lb=", len(bx)-lb) + panic("fail") + } + for i := lb; i < hb; i++ { + if bx[i] != by[i-lb] { + println("t=", t, "lb=", lb, "hb=", hb, + "bx[", i, "]=", bx[i], + "by[", i-lb, "]=", by[i-lb]) + panic("fail") + } + } + by = nil +} + +func tstf() { + t++ + if len(fy) != hb-lb { + println("t=", t, "lb=", lb, "hb=", hb, + "len=", len(fy), "hb-lb=", hb-lb) + panic("fail") + } + if cap(fy) != len(fx)-lb { + println("t=", t, "lb=", lb, "hb=", hb, + "cap=", cap(fy), "len(fx)-lb=", len(fx)-lb) + panic("fail") + } + for i := lb; i < hb; i++ { + if fx[i] != fy[i-lb] { + println("t=", t, "lb=", lb, "hb=", hb, + "fx[", i, "]=", fx[i], + "fy[", i-lb, "]=", fy[i-lb]) + panic("fail") + } + } + fy = nil +} + +func init() { + for i := 0; i < len(bx); i++ { + bx[i] = byte(i + 20) + } + by = nil + + for i := 0; i < len(fx); i++ { + fx[i] = float(i + 20) + } + fy = nil +} diff --git a/gcc/testsuite/go.test/test/ken/sliceslice.go b/gcc/testsuite/go.test/test/ken/sliceslice.go new file mode 100644 index 0000000..5a35aca --- /dev/null +++ b/gcc/testsuite/go.test/test/ken/sliceslice.go @@ -0,0 +1,203 @@ +// $G $D/$F.go && $L $F.$A && ./$A.out + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package main + +var bx []byte +var by []byte +var fx []float +var fy []float +var lb, hb int +var t int + +func main() { + + // width 1 (byte) + lb = 0 + hb = 10 + by = bx[lb:hb] + tstb() + by = bx[lb:10] + tstb() + by = bx[lb:] + tstb() + by = bx[:hb] + tstb() + by = bx[0:hb] + tstb() + by = bx[0:10] + tstb() + by = bx[0:] + tstb() + by = bx[:10] + tstb() + by = bx[:] + tstb() + + lb = 2 + hb = 10 + by = bx[lb:hb] + tstb() + by = bx[lb:10] + tstb() + by = bx[lb:] + tstb() + by = bx[2:hb] + tstb() + by = bx[2:10] + tstb() + by = bx[2:] + tstb() + + lb = 0 + hb = 8 + by = bx[lb:hb] + tstb() + by = bx[lb:8] + tstb() + by = bx[0:hb] + tstb() + by = bx[0:8] + tstb() + by = bx[:8] + tstb() + by = bx[:hb] + tstb() + + lb = 2 + hb = 8 + by = bx[lb:hb] + tstb() + by = bx[lb:8] + tstb() + by = bx[2:hb] + tstb() + by = bx[2:8] + tstb() + + // width 4 (float) + lb = 0 + hb = 10 + fy = fx[lb:hb] + tstf() + fy = fx[lb:10] + tstf() + fy = fx[lb:] + tstf() + fy = fx[:hb] + tstf() + fy = fx[0:hb] + tstf() + fy = fx[0:10] + tstf() + fy = fx[0:] + tstf() + fy = fx[:10] + tstf() + fy = fx[:] + tstf() + + lb = 2 + hb = 10 + fy = fx[lb:hb] + tstf() + fy = fx[lb:10] + tstf() + fy = fx[lb:] + tstf() + fy = fx[2:hb] + tstf() + fy = fx[2:10] + tstf() + fy = fx[2:] + tstf() + + lb = 0 + hb = 8 + fy = fx[lb:hb] + tstf() + fy = fx[lb:8] + tstf() + fy = fx[:hb] + tstf() + fy = fx[0:hb] + tstf() + fy = fx[0:8] + tstf() + fy = fx[:8] + tstf() + + lb = 2 + hb = 8 + fy = fx[lb:hb] + tstf() + fy = fx[lb:8] + tstf() + fy = fx[2:hb] + tstf() + fy = fx[2:8] + tstf() +} + +func tstb() { + t++ + if len(by) != hb-lb { + println("t=", t, "lb=", lb, "hb=", hb, + "len=", len(by), "hb-lb=", hb-lb) + panic("fail") + } + if cap(by) != len(bx)-lb { + println("t=", t, "lb=", lb, "hb=", hb, + "cap=", cap(by), "len(bx)-lb=", len(bx)-lb) + panic("fail") + } + for i := lb; i < hb; i++ { + if bx[i] != by[i-lb] { + println("t=", t, "lb=", lb, "hb=", hb, + "bx[", i, "]=", bx[i], + "by[", i-lb, "]=", by[i-lb]) + panic("fail") + } + } + by = nil +} + +func tstf() { + t++ + if len(fy) != hb-lb { + println("t=", t, "lb=", lb, "hb=", hb, + "len=", len(fy), "hb-lb=", hb-lb) + panic("fail") + } + if cap(fy) != len(fx)-lb { + println("t=", t, "lb=", lb, "hb=", hb, + "cap=", cap(fy), "len(fx)-lb=", len(fx)-lb) + panic("fail") + } + for i := lb; i < hb; i++ { + if fx[i] != fy[i-lb] { + println("t=", t, "lb=", lb, "hb=", hb, + "fx[", i, "]=", fx[i], + "fy[", i-lb, "]=", fy[i-lb]) + panic("fail") + } + } + fy = nil +} + +func init() { + bx = make([]byte, 10) + for i := 0; i < len(bx); i++ { + bx[i] = byte(i + 20) + } + by = nil + + fx = make([]float, 10) + for i := 0; i < len(fx); i++ { + fx[i] = float(i + 20) + } + fy = nil +} diff --git a/gcc/testsuite/go.test/test/ken/string.go b/gcc/testsuite/go.test/test/ken/string.go new file mode 100644 index 0000000..cbedad4 --- /dev/null +++ b/gcc/testsuite/go.test/test/ken/string.go @@ -0,0 +1,118 @@ +// $G $D/$F.go && $L $F.$A && ./$A.out + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + + +package main + +func main() { + var c string + + a := `abc` + b := `xyz` + + /* print a literal */ + print(`abc`) + + /* print a variable */ + print(b, "-") + + /* catenate literals */ + print(`abc`+`xyz`, "-") + + /* catenate variables */ + print(a+b, "-") + + /* compare literals */ + if `abc` == `xyz` || `abc` != "abc" || `abc` > `xyz` { + panic("compare literals") + } + + /* compare variables */ + if a == b || a != a || a > b { + panic("compare variables") + } + + /* cat */ + c = a + b + print(c, "-") + + /* catequal */ + c = a + c += b + print(c, "-") + + /* clumsy evaluation */ + c = b + c = a + c + print(c, "-") + + /* len */ + if len(c) != 6 { + print("len ", len(c)) + panic("fail") + } + + /* index strings */ + for i := 0; i < len(c); i = i + 1 { + if c[i] != (a + b)[i] { + print("index ", i, " ", c[i], " ", (a + b)[i]) + panic("fail") + } + } + + /* slice strings */ + print(c[0:3], c[3:]) + + print("\n") + + /* create string with integer constant */ + c = string('x') + if c != "x" { + print("create int ", c) + panic("fail") + } + + /* create string with integer variable */ + v := 'x' + c = string(v) + if c != "x" { + print("create int ", c) + panic("fail") + } + + /* create string with byte array */ + var z1 [3]byte + z1[0] = 'a' + z1[1] = 'b' + z1[2] = 'c' + c = string(z1[0:]) + if c != "abc" { + print("create byte array ", c) + panic("fail") + } + + /* create string with int array */ + var z2 [3]int + z2[0] = 'a' + z2[1] = '\u1234' + z2[2] = 'c' + c = string(z2[0:]) + if c != "a\u1234c" { + print("create int array ", c) + panic("fail") + } + + /* create string with byte array pointer */ + z3 := new([3]byte) + z3[0] = 'a' + z3[1] = 'b' + z3[2] = 'c' + c = string(z3[0:]) + if c != "abc" { + print("create array pointer ", c) + panic("fail") + } +} diff --git a/gcc/testsuite/go.test/test/ken/strvar.go b/gcc/testsuite/go.test/test/ken/strvar.go new file mode 100644 index 0000000..dfaaf12 --- /dev/null +++ b/gcc/testsuite/go.test/test/ken/strvar.go @@ -0,0 +1,78 @@ +// $G $D/$F.go && $L $F.$A && ./$A.out + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + + +package main + +type x2 struct { a,b,c int; d int; }; +var g1 x2; +var g2 struct { a,b,c int; d x2; }; + +func +main() { + var x int; + var s1 *x2; + var s2 *struct { a,b,c int; d x2; }; + var s3 struct { a,b,c int; d x2; }; + + s1 = &g1; + s2 = &g2; + + s1.a = 1; + s1.b = 2; + s1.c = 3; + s1.d = 5; + + if(s1.c != 3) { panic(s1.c); } + if(g1.c != 3) { panic(g1.c); } + + s2.a = 7; + s2.b = 11; + s2.c = 13; + s2.d.a = 17; + s2.d.b = 19; + s2.d.c = 23; + s2.d.d = 29; + + if(s2.d.c != 23) { panic(s2.d.c); } + if(g2.d.c != 23) { panic(g2.d.c); } + + x = s1.a + + s1.b + + s1.c + + s1.d + + + s2.a + + s2.b + + s2.c + + s2.d.a + + s2.d.b + + s2.d.c + + s2.d.d; + + if(x != 130) { panic(x); } + + // test an automatic struct + s3.a = 7; + s3.b = 11; + s3.c = 13; + s3.d.a = 17; + s3.d.b = 19; + s3.d.c = 23; + s3.d.d = 29; + + if(s3.d.c != 23) { panic(s3.d.c); } + + x = s3.a + + s3.b + + s3.c + + s3.d.a + + s3.d.b + + s3.d.c + + s3.d.d; + + if(x != 119) { panic(x); } +} diff --git a/gcc/testsuite/go.test/test/literal.go b/gcc/testsuite/go.test/test/literal.go new file mode 100644 index 0000000..10176bc --- /dev/null +++ b/gcc/testsuite/go.test/test/literal.go @@ -0,0 +1,239 @@ +// $G $F.go && $L $F.$A && ./$A.out + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package main + +import "os" + +var nbad int + +func assert(cond bool, msg string) { + if !cond { + if nbad == 0 { + print("BUG") + } + nbad++ + print(" ", msg) + } +} + +func equal(a, b float) bool { + if os.Getenv("GOARCH") != "arm" { + return a == b + } + d := a-b + if a > b { + return d < a * 1.0e-7 + } + d = -d + return d < b * 1.0e-7 +} + + +func main() { + // bool + var t bool = true + var f bool = false + assert(t == !f, "bool") + + // int8 + var i00 int8 = 0 + var i01 int8 = 1 + var i02 int8 = -1 + var i03 int8 = 127 + var i04 int8 = -127 + var i05 int8 = -128 + var i06 int8 = +127 + assert(i01 == i00 + 1, "i01") + assert(i02 == -i01, "i02") + assert(i03 == -i04, "i03") + assert(-(i05+1) == i06, "i05") + + // int16 + var i10 int16 = 0 + var i11 int16 = 1 + var i12 int16 = -1 + var i13 int16 = 32767 + var i14 int16 = -32767 + var i15 int16 = -32768 + var i16 int16 = +32767 + assert(i11 == i10 + 1, "i11") + assert(i12 == -i11, "i12") + assert(i13 == -i14, "i13") + assert(-(i15+1) == i16, "i15") + + // int32 + var i20 int32 = 0 + var i21 int32 = 1 + var i22 int32 = -1 + var i23 int32 = 2147483647 + var i24 int32 = -2147483647 + var i25 int32 = -2147483648 + var i26 int32 = +2147483647 + assert(i21 == i20 + 1, "i21") + assert(i22 == -i21, "i22") + assert(i23 == -i24, "i23") + assert(-(i25+1) == i26, "i25") + assert(i23 == (1 << 31) - 1, "i23 size") + + // int64 + var i30 int64 = 0 + var i31 int64 = 1 + var i32 int64 = -1 + var i33 int64 = 9223372036854775807 + var i34 int64 = -9223372036854775807 + var i35 int64 = -9223372036854775808 + var i36 int64 = +9223372036854775807 + assert(i31 == i30 + 1, "i31") + assert(i32 == -i31, "i32") + assert(i33 == -i34, "i33") + assert(-(i35+1) == i36, "i35") + assert(i33 == (1<<63) - 1, "i33 size") + + // uint8 + var u00 uint8 = 0 + var u01 uint8 = 1 + var u02 uint8 = 255 + var u03 uint8 = +255 + assert(u01 == u00 + 1, "u01") + assert(u02 == u03, "u02") + assert(u03 == (1<<8) - 1, "u03 size") + + // uint16 + var u10 uint16 = 0 + var u11 uint16 = 1 + var u12 uint16 = 65535 + var u13 uint16 = +65535 + assert(u11 == u10 + 1, "u11") + assert(u12 == u13, "u12") + + // uint32 + var u20 uint32 = 0 + var u21 uint32 = 1 + var u22 uint32 = 4294967295 + var u23 uint32 = +4294967295 + assert(u21 == u20 + 1, "u21") + assert(u22 == u23, "u22") + + // uint64 + var u30 uint64 = 0 + var u31 uint64 = 1 + var u32 uint64 = 18446744073709551615 + var u33 uint64 = +18446744073709551615 + _, _, _, _ = u30, u31, u32, u33 + + // float + var f00 float = 3.14159 + var f01 float = -3.14159 + var f02 float = +3.14159 + var f03 float = 0.0 + var f04 float = .0 + var f05 float = 0. + var f06 float = -0.0 + var f07 float = 1e10 + var f08 float = -1e10 + var f09 float = 1e-10 + var f10 float = 1e+10 + var f11 float = 1.e-10 + var f12 float = 1.e+10 + var f13 float = .1e-10 + var f14 float = .1e+10 + var f15 float = 1.1e-10 + var f16 float = 1.1e+10 + assert(f01 == -f00, "f01") + assert(f02 == -f01, "f02") + assert(f03 == f04, "f03") + assert(f04 == f05, "f04") + assert(f05 == f06, "f05") + assert(f07 == -f08, "f07") + assert(equal(f09, 1/f10), "f09") + assert(f11 == f09, "f11") + assert(f12 == f10, "f12") + assert(equal(f13, f09/10.0), "f13") + assert(equal(f14, f12/10.0), "f14") + assert(equal(f15, f16/1e20), "f15") + + // character + var c0 uint8 = 'a' + var c1 uint8 = 'ä' + var c2 uint8 = '\a' + var c3 uint8 = '\b' + var c4 uint8 = '\f' + var c5 uint8 = '\n' + var c6 uint8 = '\r' + var c7 uint8 = '\t' + var c8 uint8 = '\v' + // var c9 uint8 = '本' // correctly caught as error + var c9 uint16 = '本' + assert(c0 == 0x61, "c0") + assert(c1 == 0xe4, "c1") + assert(c2 == 0x07, "c2") + assert(c3 == 0x08, "c3") + assert(c4 == 0x0c, "c4") + assert(c5 == 0x0a, "c4") + assert(c6 == 0x0d, "c6") + assert(c7 == 0x09, "c7") + assert(c8 == 0x0b, "c8") + assert(c9 == 0x672c, "c9") + + + var c00 uint8 = '\000' + var c01 uint8 = '\007' + var c02 uint8 = '\177' + var c03 uint8 = '\377' + assert(c00 == 0, "c00") + assert(c01 == 7, "c01") + assert(c02 == 127, "c02") + assert(c03 == 255, "c03") + + var cx0 uint8 = '\x00' + var cx1 uint8 = '\x0f' + var cx2 uint8 = '\xff' + assert(cx0 == 0, "cx0") + assert(cx1 == 15, "cx1") + assert(cx2 == 255, "cx2") + + var cu0 uint16 = '\u1234' + var cu1 uint32 = '\U00101234' + assert(cu0 == 0x1234, "cu0") + assert(cu1 == 0x101234, "cu1") + + // string + var s0 string = "" + var s1 string = "hellô" + assert(s1[0] == 'h', "s1-0") + assert(s1[4] == 0xc3, "s1-4") + assert(s1[5] == 0xb4, "s1-5") + var s2 string = "\a\b\f\n\r\t\v" + _, _ = s0, s2 + + var s00 string = "\000" + var s01 string = "\007" + var s02 string = "\377" + assert(s00[0] == 0, "s00") + assert(s01[0] == 7, "s01") + assert(s02[0] == 255, "s02") + + var x00 string = "\x00" + var x01 string = "\x0f" + var x02 string = "\xff" + assert(x00[0] == 0, "x00") + assert(x01[0] == 15, "x01") + assert(x02[0] == 255, "x02") + + // these are all the same string + var sj0 string = "日本語" + var sj1 string = "\u65e5\u672c\u8a9e" + var sj2 string = "\U000065e5\U0000672c\U00008a9e" + var sj3 string = "\xe6\x97\xa5\xe6\x9c\xac\xe8\xaa\x9e" + assert(sj0 == sj1, "sj1") + assert(sj0 == sj2, "sj2") + assert(sj0 == sj3, "sj3") + + if nbad > 0 { + println() + } +} diff --git a/gcc/testsuite/go.test/test/malloc1.go b/gcc/testsuite/go.test/test/malloc1.go new file mode 100644 index 0000000..1469764 --- /dev/null +++ b/gcc/testsuite/go.test/test/malloc1.go @@ -0,0 +1,24 @@ +// $G $D/$F.go && $L $F.$A && ./$A.out + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +// trivial malloc test + +package main + +import ( + "flag" + "fmt" + "runtime" +) + +var chatty = flag.Bool("v", false, "chatty") + +func main() { + runtime.Free(runtime.Alloc(1)) + if *chatty { + fmt.Printf("%+v %v\n", runtime.MemStats, uint64(0)) + } +} diff --git a/gcc/testsuite/go.test/test/mallocfin.go b/gcc/testsuite/go.test/test/mallocfin.go new file mode 100644 index 0000000..dc6d74b --- /dev/null +++ b/gcc/testsuite/go.test/test/mallocfin.go @@ -0,0 +1,67 @@ +// $G $D/$F.go && $L $F.$A && ./$A.out + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +// trivial finalizer test + +package main + +import ( + "runtime" + "time" +) + +const N = 250 + +type A struct { + b *B + n int +} + +type B struct { + n int +} + +var i int +var nfinal int +var final [N]int + +// the unused return is to test finalizers with return values +func finalA(a *A) (unused [N]int) { + if final[a.n] != 0 { + println("finalA", a.n, final[a.n]) + panic("fail") + } + final[a.n] = 1 + return +} + +func finalB(b *B) { + if final[b.n] != 1 { + println("finalB", b.n, final[b.n]) + panic("fail") + } + final[b.n] = 2 + nfinal++ +} + +func main() { + runtime.GOMAXPROCS(4) + for i = 0; i < N; i++ { + b := &B{i} + a := &A{b, i} + runtime.SetFinalizer(b, finalB) + runtime.SetFinalizer(a, finalA) + } + for i := 0; i < N; i++ { + runtime.GC() + runtime.Gosched() + time.Sleep(1e6) + } + if nfinal < N*8/10 { + println("not enough finalizing:", nfinal, "/", N) + panic("fail") + } +} diff --git a/gcc/testsuite/go.test/test/mallocrand.go b/gcc/testsuite/go.test/test/mallocrand.go new file mode 100644 index 0000000..e6b422e --- /dev/null +++ b/gcc/testsuite/go.test/test/mallocrand.go @@ -0,0 +1,91 @@ +// $G $D/$F.go && $L $F.$A && ./$A.out + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +// Random malloc test. + +package main + +import ( + "flag" + "rand" + "runtime" + "unsafe" +) + +var chatty = flag.Bool("v", false, "chatty") + +var footprint uint64 +var allocated uint64 + +func bigger() { + if f := runtime.MemStats.Sys; footprint < f { + footprint = f + if *chatty { + println("Footprint", footprint, " for ", allocated) + } + if footprint > 1e9 { + println("too big") + panic("fail") + } + } +} + +// Prime the data structures by allocating one of +// each block in order. After this, there should be +// little reason to ask for more memory from the OS. +func prime() { + for i := 0; i < 16; i++ { + b := runtime.Alloc(1 << uint(i)) + runtime.Free(b) + } + for i := uintptr(0); i < 256; i++ { + b := runtime.Alloc(i << 12) + runtime.Free(b) + } +} + +func memset(b *byte, c byte, n uintptr) { + np := uintptr(n) + for i := uintptr(0); i < np; i++ { + *(*byte)(unsafe.Pointer(uintptr(unsafe.Pointer(b)) + i)) = c + } +} + +func main() { + flag.Parse() + // prime() + var blocks [1]struct { + base *byte + siz uintptr + } + for i := 0; i < 1<<10; i++ { + if i%(1<<10) == 0 && *chatty { + println(i) + } + b := rand.Int() % len(blocks) + if blocks[b].base != nil { + // println("Free", blocks[b].siz, blocks[b].base) + runtime.Free(blocks[b].base) + blocks[b].base = nil + allocated -= uint64(blocks[b].siz) + continue + } + siz := uintptr(rand.Int() >> (11 + rand.Uint32()%20)) + base := runtime.Alloc(siz) + // ptr := uintptr(syscall.BytePtr(base))+uintptr(siz/2) + // obj, size, ref, ok := allocator.find(ptr) + // if obj != base || *ref != 0 || !ok { + // println("find", siz, obj, ref, ok) + // panic("fail") + // } + blocks[b].base = base + blocks[b].siz = siz + allocated += uint64(siz) + // println("Alloc", siz, base) + memset(base, 0xbb, siz) + bigger() + } +} diff --git a/gcc/testsuite/go.test/test/mallocrep.go b/gcc/testsuite/go.test/test/mallocrep.go new file mode 100644 index 0000000..762f375 --- /dev/null +++ b/gcc/testsuite/go.test/test/mallocrep.go @@ -0,0 +1,66 @@ +// $G $D/$F.go && $L $F.$A && ./$A.out + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +// Repeated malloc test. + +package main + +import ( + "flag" + "runtime" +) + +var chatty = flag.Bool("v", false, "chatty") + +var oldsys uint64 + +func bigger() { + if st := runtime.MemStats; oldsys < st.Sys { + oldsys = st.Sys + if *chatty { + println(st.Sys, " system bytes for ", st.Alloc, " Go bytes") + } + if st.Sys > 1e9 { + println("too big") + panic("fail") + } + } +} + +func main() { + runtime.GC() // clean up garbage from init + runtime.MemProfileRate = 0 // disable profiler + runtime.MemStats.Alloc = 0 // ignore stacks + flag.Parse() + for i := 0; i < 1<<7; i++ { + for j := 1; j <= 1<<22; j <<= 1 { + if i == 0 && *chatty { + println("First alloc:", j) + } + if a := runtime.MemStats.Alloc; a != 0 { + println("no allocations but stats report", a, "bytes allocated") + panic("fail") + } + b := runtime.Alloc(uintptr(j)) + during := runtime.MemStats.Alloc + runtime.Free(b) + if a := runtime.MemStats.Alloc; a != 0 { + println("allocated ", j, ": wrong stats: during=", during, " after=", a, " (want 0)") + panic("fail") + } + bigger() + } + if i%(1<<10) == 0 && *chatty { + println(i) + } + if i == 0 { + if *chatty { + println("Primed", i) + } + // runtime.frozen = true + } + } +} diff --git a/gcc/testsuite/go.test/test/mallocrep1.go b/gcc/testsuite/go.test/test/mallocrep1.go new file mode 100644 index 0000000..eb67bed --- /dev/null +++ b/gcc/testsuite/go.test/test/mallocrep1.go @@ -0,0 +1,138 @@ +// $G $D/$F.go && $L $F.$A && ./$A.out + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +// Repeated malloc test. + +package main + +import ( + "flag" + "fmt" + "runtime" + "strconv" +) + +var chatty = flag.Bool("v", false, "chatty") +var reverse = flag.Bool("r", false, "reverse") +var longtest = flag.Bool("l", false, "long test") + +var b []*byte +var stats = &runtime.MemStats + +func OkAmount(size, n uintptr) bool { + if n < size { + return false + } + if size < 16*8 { + if n > size+16 { + return false + } + } else { + if n > size*9/8 { + return false + } + } + return true +} + +func AllocAndFree(size, count int) { + if *chatty { + fmt.Printf("size=%d count=%d ...\n", size, count) + } + n1 := stats.Alloc + for i := 0; i < count; i++ { + b[i] = runtime.Alloc(uintptr(size)) + base, n := runtime.Lookup(b[i]) + if base != b[i] || !OkAmount(uintptr(size), n) { + println("lookup failed: got", base, n, "for", b[i]) + panic("fail") + } + if runtime.MemStats.Sys > 1e9 { + println("too much memory allocated") + panic("fail") + } + } + n2 := stats.Alloc + if *chatty { + fmt.Printf("size=%d count=%d stats=%+v\n", size, count, *stats) + } + n3 := stats.Alloc + for j := 0; j < count; j++ { + i := j + if *reverse { + i = count - 1 - j + } + alloc := uintptr(stats.Alloc) + base, n := runtime.Lookup(b[i]) + if base != b[i] || !OkAmount(uintptr(size), n) { + println("lookup failed: got", base, n, "for", b[i]) + panic("fail") + } + runtime.Free(b[i]) + if stats.Alloc != uint64(alloc-n) { + println("free alloc got", stats.Alloc, "expected", alloc-n, "after free of", n) + panic("fail") + } + if runtime.MemStats.Sys > 1e9 { + println("too much memory allocated") + panic("fail") + } + } + n4 := stats.Alloc + + if *chatty { + fmt.Printf("size=%d count=%d stats=%+v\n", size, count, *stats) + } + if n2-n1 != n3-n4 { + println("wrong alloc count: ", n2-n1, n3-n4) + panic("fail") + } +} + +func atoi(s string) int { + i, _ := strconv.Atoi(s) + return i +} + +func main() { + runtime.MemProfileRate = 0 // disable profiler + flag.Parse() + b = make([]*byte, 10000) + if flag.NArg() > 0 { + AllocAndFree(atoi(flag.Arg(0)), atoi(flag.Arg(1))) + return + } + maxb := 1 << 22 + if !*longtest { + maxb = 1 << 19 + } + for j := 1; j <= maxb; j <<= 1 { + n := len(b) + max := uintptr(1 << 28) + if !*longtest { + max = uintptr(maxb) + } + if uintptr(j)*uintptr(n) > max { + n = int(max / uintptr(j)) + } + if n < 10 { + n = 10 + } + for m := 1; m <= n; { + AllocAndFree(j, m) + if m == n { + break + } + m = 5 * m / 4 + if m < 4 { + m++ + } + if m > n { + m = n + } + } + } +} diff --git a/gcc/testsuite/go.test/test/map.go b/gcc/testsuite/go.test/test/map.go new file mode 100644 index 0000000..ddff7c7 --- /dev/null +++ b/gcc/testsuite/go.test/test/map.go @@ -0,0 +1,492 @@ +// $G $F.go && $L $F.$A && ./$A.out + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package main + +import ( + "fmt" + "strconv" +) + +const count = 100 + +func P(a []string) string { + s := "{" + for i := 0; i < len(a); i++ { + if i > 0 { + s += "," + } + s += `"` + a[i] + `"` + } + s +="}" + return s +} + +func main() { + // Test a map literal. + mlit := map[string] int { "0":0, "1":1, "2":2, "3":3, "4":4 } + for i := 0; i < len(mlit); i++ { + s := string([]byte{byte(i)+'0'}) + if mlit[s] != i { + fmt.Printf("mlit[%s] = %d\n", s, mlit[s]) + } + } + + mib := make(map[int] bool) + mii := make(map[int] int) + mfi := make(map[float] int) + mif := make(map[int] float) + msi := make(map[string] int) + mis := make(map[int] string) + mss := make(map[string] string) + mspa := make(map[string] []string) + // BUG need an interface map both ways too + + type T struct { + i int64 // can't use string here; struct values are only compared at the top level + f float + } + mipT := make(map[int] *T) + mpTi := make(map[*T] int) + mit := make(map[int] T) +// mti := make(map[T] int) + + type M map[int] int + mipM := make(map[int] M) + + var apT [2*count]*T + + for i := 0; i < count; i++ { + s := strconv.Itoa(i) + s10 := strconv.Itoa(i*10) + f := float(i) + t := T{int64(i),f} + apT[i] = new(T) + apT[i].i = int64(i) + apT[i].f = f + apT[2*i] = new(T) // need twice as many entries as we use, for the nonexistence check + apT[2*i].i = int64(i) + apT[2*i].f = f + m := M{i: i+1} + mib[i] = (i != 0) + mii[i] = 10*i + mfi[float(i)] = 10*i + mif[i] = 10.0*f + mis[i] = s + msi[s] = i + mss[s] = s10 + mss[s] = s10 + as := make([]string, 2) + as[0] = s10 + as[1] = s10 + mspa[s] = as + mipT[i] = apT[i] + mpTi[apT[i]] = i + mipM[i] = m + mit[i] = t + // mti[t] = i + } + + // test len + if len(mib) != count { + fmt.Printf("len(mib) = %d\n", len(mib)) + } + if len(mii) != count { + fmt.Printf("len(mii) = %d\n", len(mii)) + } + if len(mfi) != count { + fmt.Printf("len(mfi) = %d\n", len(mfi)) + } + if len(mif) != count { + fmt.Printf("len(mif) = %d\n", len(mif)) + } + if len(msi) != count { + fmt.Printf("len(msi) = %d\n", len(msi)) + } + if len(mis) != count { + fmt.Printf("len(mis) = %d\n", len(mis)) + } + if len(mss) != count { + fmt.Printf("len(mss) = %d\n", len(mss)) + } + if len(mspa) != count { + fmt.Printf("len(mspa) = %d\n", len(mspa)) + } + if len(mipT) != count { + fmt.Printf("len(mipT) = %d\n", len(mipT)) + } + if len(mpTi) != count { + fmt.Printf("len(mpTi) = %d\n", len(mpTi)) + } +// if len(mti) != count { +// fmt.Printf("len(mti) = %d\n", len(mti)) +// } + if len(mipM) != count { + fmt.Printf("len(mipM) = %d\n", len(mipM)) + } +// if len(mti) != count { +// fmt.Printf("len(mti) = %d\n", len(mti)) +// } + if len(mit) != count { + fmt.Printf("len(mit) = %d\n", len(mit)) + } + + // test construction directly + for i := 0; i < count; i++ { + s := strconv.Itoa(i) + s10 := strconv.Itoa(i*10) + f := float(i) + // BUG m := M(i, i+1) + if mib[i] != (i != 0) { + fmt.Printf("mib[%d] = %t\n", i, mib[i]) + } + if(mii[i] != 10*i) { + fmt.Printf("mii[%d] = %d\n", i, mii[i]) + } + if(mfi[f] != 10*i) { + fmt.Printf("mfi[%d] = %d\n", i, mfi[f]) + } + if(mif[i] != 10.0*f) { + fmt.Printf("mif[%d] = %g\n", i, mif[i]) + } + if(mis[i] != s) { + fmt.Printf("mis[%d] = %s\n", i, mis[i]) + } + if(msi[s] != i) { + fmt.Printf("msi[%s] = %d\n", s, msi[s]) + } + if mss[s] != s10 { + fmt.Printf("mss[%s] = %g\n", s, mss[s]) + } + for j := 0; j < len(mspa[s]); j++ { + if mspa[s][j] != s10 { + fmt.Printf("mspa[%s][%d] = %s\n", s, j, mspa[s][j]) + } + } + if(mipT[i].i != int64(i) || mipT[i].f != f) { + fmt.Printf("mipT[%d] = %v\n", i, mipT[i]) + } + if(mpTi[apT[i]] != i) { + fmt.Printf("mpTi[apT[%d]] = %d\n", i, mpTi[apT[i]]) + } + // if(mti[t] != i) { + // fmt.Printf("mti[%s] = %s\n", s, mti[t]) + // } + if (mipM[i][i] != i + 1) { + fmt.Printf("mipM[%d][%d] = %d\n", i, i, mipM[i][i]) + } + // if(mti[t] != i) { + // fmt.Printf("mti[%v] = %d\n", t, mti[t]) + // } + if(mit[i].i != int64(i) || mit[i].f != f) { + fmt.Printf("mit[%d] = {%d %g}\n", i, mit[i].i, mit[i].f) + } + } + + // test existence with tuple check + // failed lookups yield a false value for the boolean. + for i := 0; i < count; i++ { + s := strconv.Itoa(i) + f := float(i) + { + _, b := mib[i] + if !b { + fmt.Printf("tuple existence decl: mib[%d]\n", i) + } + _, b = mib[i] + if !b { + fmt.Printf("tuple existence assign: mib[%d]\n", i) + } + } + { + _, b := mii[i] + if !b { + fmt.Printf("tuple existence decl: mii[%d]\n", i) + } + _, b = mii[i] + if !b { + fmt.Printf("tuple existence assign: mii[%d]\n", i) + } + } + { + _, b := mfi[f] + if !b { + fmt.Printf("tuple existence decl: mfi[%d]\n", i) + } + _, b = mfi[f] + if !b { + fmt.Printf("tuple existence assign: mfi[%d]\n", i) + } + } + { + _, b := mif[i] + if !b { + fmt.Printf("tuple existence decl: mif[%d]\n", i) + } + _, b = mif[i] + if !b { + fmt.Printf("tuple existence assign: mif[%d]\n", i) + } + } + { + _, b := mis[i] + if !b { + fmt.Printf("tuple existence decl: mis[%d]\n", i) + } + _, b = mis[i] + if !b { + fmt.Printf("tuple existence assign: mis[%d]\n", i) + } + } + { + _, b := msi[s] + if !b { + fmt.Printf("tuple existence decl: msi[%d]\n", i) + } + _, b = msi[s] + if !b { + fmt.Printf("tuple existence assign: msi[%d]\n", i) + } + } + { + _, b := mss[s] + if !b { + fmt.Printf("tuple existence decl: mss[%d]\n", i) + } + _, b = mss[s] + if !b { + fmt.Printf("tuple existence assign: mss[%d]\n", i) + } + } + { + _, b := mspa[s] + if !b { + fmt.Printf("tuple existence decl: mspa[%d]\n", i) + } + _, b = mspa[s] + if !b { + fmt.Printf("tuple existence assign: mspa[%d]\n", i) + } + } + { + _, b := mipT[i] + if !b { + fmt.Printf("tuple existence decl: mipT[%d]\n", i) + } + _, b = mipT[i] + if !b { + fmt.Printf("tuple existence assign: mipT[%d]\n", i) + } + } + { + _, b := mpTi[apT[i]] + if !b { + fmt.Printf("tuple existence decl: mpTi[apT[%d]]\n", i) + } + _, b = mpTi[apT[i]] + if !b { + fmt.Printf("tuple existence assign: mpTi[apT[%d]]\n", i) + } + } + { + _, b := mipM[i] + if !b { + fmt.Printf("tuple existence decl: mipM[%d]\n", i) + } + _, b = mipM[i] + if !b { + fmt.Printf("tuple existence assign: mipM[%d]\n", i) + } + } + { + _, b := mit[i] + if !b { + fmt.Printf("tuple existence decl: mit[%d]\n", i) + } + _, b = mit[i] + if !b { + fmt.Printf("tuple existence assign: mit[%d]\n", i) + } + } +// { +// _, b := mti[t] +// if !b { +// fmt.Printf("tuple existence decl: mti[%d]\n", i) +// } +// _, b = mti[t] +// if !b { +// fmt.Printf("tuple existence assign: mti[%d]\n", i) +// } +// } + } + + // test nonexistence with tuple check + // failed lookups yield a false value for the boolean. + for i := count; i < 2*count; i++ { + s := strconv.Itoa(i) + f := float(i) + { + _, b := mib[i] + if b { + fmt.Printf("tuple nonexistence decl: mib[%d]", i) + } + _, b = mib[i] + if b { + fmt.Printf("tuple nonexistence assign: mib[%d]", i) + } + } + { + _, b := mii[i] + if b { + fmt.Printf("tuple nonexistence decl: mii[%d]", i) + } + _, b = mii[i] + if b { + fmt.Printf("tuple nonexistence assign: mii[%d]", i) + } + } + { + _, b := mfi[f] + if b { + fmt.Printf("tuple nonexistence decl: mfi[%d]", i) + } + _, b = mfi[f] + if b { + fmt.Printf("tuple nonexistence assign: mfi[%d]", i) + } + } + { + _, b := mif[i] + if b { + fmt.Printf("tuple nonexistence decl: mif[%d]", i) + } + _, b = mif[i] + if b { + fmt.Printf("tuple nonexistence assign: mif[%d]", i) + } + } + { + _, b := mis[i] + if b { + fmt.Printf("tuple nonexistence decl: mis[%d]", i) + } + _, b = mis[i] + if b { + fmt.Printf("tuple nonexistence assign: mis[%d]", i) + } + } + { + _, b := msi[s] + if b { + fmt.Printf("tuple nonexistence decl: msi[%d]", i) + } + _, b = msi[s] + if b { + fmt.Printf("tuple nonexistence assign: msi[%d]", i) + } + } + { + _, b := mss[s] + if b { + fmt.Printf("tuple nonexistence decl: mss[%d]", i) + } + _, b = mss[s] + if b { + fmt.Printf("tuple nonexistence assign: mss[%d]", i) + } + } + { + _, b := mspa[s] + if b { + fmt.Printf("tuple nonexistence decl: mspa[%d]", i) + } + _, b = mspa[s] + if b { + fmt.Printf("tuple nonexistence assign: mspa[%d]", i) + } + } + { + _, b := mipT[i] + if b { + fmt.Printf("tuple nonexistence decl: mipT[%d]", i) + } + _, b = mipT[i] + if b { + fmt.Printf("tuple nonexistence assign: mipT[%d]", i) + } + } + { + _, b := mpTi[apT[i]] + if b { + fmt.Printf("tuple nonexistence decl: mpTi[apt[%d]]", i) + } + _, b = mpTi[apT[i]] + if b { + fmt.Printf("tuple nonexistence assign: mpTi[apT[%d]]", i) + } + } + { + _, b := mipM[i] + if b { + fmt.Printf("tuple nonexistence decl: mipM[%d]", i) + } + _, b = mipM[i] + if b { + fmt.Printf("tuple nonexistence assign: mipM[%d]", i) + } + } +// { +// _, b := mti[t] +// if b { +// fmt.Printf("tuple nonexistence decl: mti[%d]", i) +// } +// _, b = mti[t] +// if b { +// fmt.Printf("tuple nonexistence assign: mti[%d]", i) +// } +// } + { + _, b := mit[i] + if b { + fmt.Printf("tuple nonexistence decl: mit[%d]", i) + } + _, b = mit[i] + if b { + fmt.Printf("tuple nonexistence assign: mit[%d]", i) + } + } + } + + + // tests for structured map element updates + for i := 0; i < count; i++ { + s := strconv.Itoa(i) + mspa[s][i % 2] = "deleted" + if mspa[s][i % 2] != "deleted" { + fmt.Printf("update mspa[%s][%d] = %s\n", s, i %2, mspa[s][i % 2]) + } + + mipT[i].i += 1 + if mipT[i].i != int64(i)+1 { + fmt.Printf("update mipT[%d].i = %d\n", i, mipT[i].i) + } + mipT[i].f = float(i + 1) + if (mipT[i].f != float(i + 1)) { + fmt.Printf("update mipT[%d].f = %g\n", i, mipT[i].f) + } + + mipM[i][i]++ + if mipM[i][i] != (i + 1) + 1 { + fmt.Printf("update mipM[%d][%d] = %i\n", i, i, mipM[i][i]) + } + } + + // test range on nil map + var mnil map[string] int + for _, _ = range mnil { + panic("range mnil") + } +} diff --git a/gcc/testsuite/go.test/test/method.go b/gcc/testsuite/go.test/test/method.go new file mode 100644 index 0000000..c751c1f --- /dev/null +++ b/gcc/testsuite/go.test/test/method.go @@ -0,0 +1,111 @@ +// $G $D/$F.go && $L $F.$A && ./$A.out + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package main + +type S string +type S1 string +type I int +type I1 int +type T struct { + x int +} +type T1 T + +func (s S) val() int { return 1 } +func (s *S1) val() int { return 2 } +func (i I) val() int { return 3 } +func (i *I1) val() int { return 4 } +//func (t T) val() int { return 7 } +func (t *T1) val() int { return 8 } + +type Val interface { + val() int +} + +func val(v Val) int { return v.val() } + +func main() { + var s S + var ps *S1 + var i I + var pi *I1 + var pt *T1 + + if s.val() != 1 { + println("s.val:", s.val()) + panic("fail") + } + if S.val(s) != 1 { + println("S.val(s):", S.val(s)) + panic("fail") + } + if (*S).val(&s) != 1 { + println("(*S).val(s):", (*S).val(&s)) + panic("fail") + } + if ps.val() != 2 { + println("ps.val:", ps.val()) + panic("fail") + } + if (*S1).val(ps) != 2 { + println("(*S1).val(ps):", (*S1).val(ps)) + panic("fail") + } + if i.val() != 3 { + println("i.val:", i.val()) + panic("fail") + } + if I.val(i) != 3 { + println("I.val(i):", I.val(i)) + panic("fail") + } + if (*I).val(&i) != 3 { + println("(*I).val(&i):", (*I).val(&i)) + panic("fail") + } + if pi.val() != 4 { + println("pi.val:", pi.val()) + panic("fail") + } + if (*I1).val(pi) != 4 { + println("(*I1).val(pi):", (*I1).val(pi)) + panic("fail") + } + // if t.val() != 7 { prinln("t.val:", t.val()); panic("fail") } + if pt.val() != 8 { + println("pt.val:", pt.val()) + panic("fail") + } + if (*T1).val(pt) != 8 { + println("(*T1).val(pt):", (*T1).val(pt)) + panic("fail") + } + + if val(s) != 1 { + println("s.val:", val(s)) + panic("fail") + } + if val(ps) != 2 { + println("ps.val:", val(ps)) + panic("fail") + } + if val(i) != 3 { + println("i.val:", val(i)) + panic("fail") + } + if val(pi) != 4 { + println("pi.val:", val(pi)) + panic("fail") + } + // if val(t) != 7 { println("t.val:", val(t)); panic("fail") } + if val(pt) != 8 { + println("pt.val:", val(pt)) + panic("fail") + } + + // if Val.val(i) != 3 { println("Val.val(i):", Val.val(i)); panic("fail") } +} diff --git a/gcc/testsuite/go.test/test/method1.go b/gcc/testsuite/go.test/test/method1.go new file mode 100644 index 0000000..1a2f8ca --- /dev/null +++ b/gcc/testsuite/go.test/test/method1.go @@ -0,0 +1,17 @@ +// errchk $G $D/$F.go + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package main + +type T struct { } +func (t *T) M(int, string) // GCCGO_ERROR "previous" +func (t *T) M(int, float) { } // ERROR "redeclared|redefinition" + +func f(int, string) // GCCGO_ERROR "previous" +func f(int, float) { } // ERROR "redeclared|redefinition" + +func g(a int, b string) // GCCGO_ERROR "previous" +func g(a int, c string) // ERROR "redeclared|redefinition" diff --git a/gcc/testsuite/go.test/test/method2.go b/gcc/testsuite/go.test/test/method2.go new file mode 100644 index 0000000..3ee0ae1 --- /dev/null +++ b/gcc/testsuite/go.test/test/method2.go @@ -0,0 +1,14 @@ +// errchk $G $D/$F.go + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package main + +type T struct {a int} +type P *T +type P1 *T + +func (p P) val() int { return 1 } // ERROR "receiver" +func (p *P1) val() int { return 1 } // ERROR "receiver" diff --git a/gcc/testsuite/go.test/test/method3.go b/gcc/testsuite/go.test/test/method3.go new file mode 100644 index 0000000..7946a87 --- /dev/null +++ b/gcc/testsuite/go.test/test/method3.go @@ -0,0 +1,35 @@ +// $G $D/$F.go && $L $F.$A && ./$A.out || echo BUG method3 + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +// test that methods on slices work + +package main + +type T []int + +func (t T) Len() int { return len(t) } + +type I interface { + Len() int +} + +func main() { + var t T = T{0, 1, 2, 3, 4} + var i I + i = t + if i.Len() != 5 { + println("i.Len", i.Len()) + panic("fail") + } + if T.Len(t) != 5 { + println("T.Len", T.Len(t)) + panic("fail") + } + if (*T).Len(&t) != 5 { + println("(*T).Len", (*T).Len(&t)) + panic("fail") + } +} diff --git a/gcc/testsuite/go.test/test/named.go b/gcc/testsuite/go.test/test/named.go new file mode 100644 index 0000000..d2039ba --- /dev/null +++ b/gcc/testsuite/go.test/test/named.go @@ -0,0 +1,281 @@ +// $G $D/$F.go && $L $F.$A && ./$A.out + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +// Test that basic operations on named types are valid +// and preserve the type. + +package main + +type Array [10]byte +type Bool bool +type Chan chan int +type Float float +type Int int +type Map map[int]byte +type Slice []byte +type String string + +// Calling these functions checks at compile time that the argument +// can be converted implicitly to (used as) the given type. +func asArray(Array) {} +func asBool(Bool) {} +func asChan(Chan) {} +func asFloat(Float) {} +func asInt(Int) {} +func asMap(Map) {} +func asSlice(Slice) {} +func asString(String) {} + +func (Map) M() {} + + +// These functions check at run time that the default type +// (in the absence of any implicit conversion hints) +// is the given type. +func isArray(x interface{}) { _ = x.(Array) } +func isBool(x interface{}) { _ = x.(Bool) } +func isChan(x interface{}) { _ = x.(Chan) } +func isFloat(x interface{}) { _ = x.(Float) } +func isInt(x interface{}) { _ = x.(Int) } +func isMap(x interface{}) { _ = x.(Map) } +func isSlice(x interface{}) { _ = x.(Slice) } +func isString(x interface{}) { _ = x.(String) } + +func main() { + var ( + a Array + b Bool = true + c Chan = make(Chan) + f Float = 1 + i Int = 1 + m Map = make(Map) + slice Slice = make(Slice, 10) + str String = "hello" + ) + + asArray(a) + isArray(a) + asArray(*&a) + isArray(*&a) + asArray(Array{}) + isArray(Array{}) + + asBool(b) + isBool(b) + asBool(!b) + isBool(!b) + asBool(true) + asBool(*&b) + isBool(*&b) + asBool(Bool(true)) + isBool(Bool(true)) + + asChan(c) + isChan(c) + asChan(make(Chan)) + isChan(make(Chan)) + asChan(*&c) + isChan(*&c) + asChan(Chan(nil)) + isChan(Chan(nil)) + + asFloat(f) + isFloat(f) + asFloat(-f) + isFloat(-f) + asFloat(+f) + isFloat(+f) + asFloat(f + 1) + isFloat(f + 1) + asFloat(1 + f) + isFloat(1 + f) + asFloat(f + f) + isFloat(f + f) + f++ + f += 2 + asFloat(f - 1) + isFloat(f - 1) + asFloat(1 - f) + isFloat(1 - f) + asFloat(f - f) + isFloat(f - f) + f-- + f -= 2 + asFloat(f * 2.5) + isFloat(f * 2.5) + asFloat(2.5 * f) + isFloat(2.5 * f) + asFloat(f * f) + isFloat(f * f) + f *= 4 + asFloat(f / 2.5) + isFloat(f / 2.5) + asFloat(2.5 / f) + isFloat(2.5 / f) + asFloat(f / f) + isFloat(f / f) + f /= 4 + asFloat(f) + isFloat(f) + f = 5 + asFloat(*&f) + isFloat(*&f) + asFloat(234) + asFloat(Float(234)) + isFloat(Float(234)) + asFloat(1.2) + asFloat(Float(i)) + isFloat(Float(i)) + + asInt(i) + isInt(i) + asInt(-i) + isInt(-i) + asInt(^i) + isInt(^i) + asInt(+i) + isInt(+i) + asInt(i + 1) + isInt(i + 1) + asInt(1 + i) + isInt(1 + i) + asInt(i + i) + isInt(i + i) + i++ + i += 1 + asInt(i - 1) + isInt(i - 1) + asInt(1 - i) + isInt(1 - i) + asInt(i - i) + isInt(i - i) + i-- + i -= 1 + asInt(i * 2) + isInt(i * 2) + asInt(2 * i) + isInt(2 * i) + asInt(i * i) + isInt(i * i) + i *= 2 + asInt(i / 5) + isInt(i / 5) + asInt(5 / i) + isInt(5 / i) + asInt(i / i) + isInt(i / i) + i /= 2 + asInt(i % 5) + isInt(i % 5) + asInt(5 % i) + isInt(5 % i) + asInt(i % i) + isInt(i % i) + i %= 2 + asInt(i & 5) + isInt(i & 5) + asInt(5 & i) + isInt(5 & i) + asInt(i & i) + isInt(i & i) + i &= 2 + asInt(i &^ 5) + isInt(i &^ 5) + asInt(5 &^ i) + isInt(5 &^ i) + asInt(i &^ i) + isInt(i &^ i) + i &^= 2 + asInt(i | 5) + isInt(i | 5) + asInt(5 | i) + isInt(5 | i) + asInt(i | i) + isInt(i | i) + i |= 2 + asInt(i ^ 5) + isInt(i ^ 5) + asInt(5 ^ i) + isInt(5 ^ i) + asInt(i ^ i) + isInt(i ^ i) + i ^= 2 + asInt(i << 4) + isInt(i << 4) + i <<= 2 + asInt(i >> 4) + isInt(i >> 4) + i >>= 2 + asInt(i) + isInt(i) + asInt(0) + asInt(Int(0)) + isInt(Int(0)) + i = 10 + asInt(*&i) + isInt(*&i) + asInt(23) + asInt(Int(f)) + isInt(Int(f)) + + asMap(m) + isMap(m) + asMap(nil) + m = nil + asMap(make(Map)) + isMap(make(Map)) + asMap(*&m) + isMap(*&m) + asMap(Map(nil)) + isMap(Map(nil)) + asMap(Map{}) + isMap(Map{}) + + asSlice(slice) + isSlice(slice) + asSlice(make(Slice, 5)) + isSlice(make(Slice, 5)) + asSlice([]byte{1, 2, 3}) + asSlice([]byte{1, 2, 3}[0:2]) + asSlice(slice[0:4]) + isSlice(slice[0:4]) + asSlice(slice[3:8]) + isSlice(slice[3:8]) + asSlice(nil) + asSlice(Slice(nil)) + isSlice(Slice(nil)) + slice = nil + asSlice(Slice{1, 2, 3}) + isSlice(Slice{1, 2, 3}) + asSlice(Slice{}) + isSlice(Slice{}) + asSlice(*&slice) + isSlice(*&slice) + + asString(str) + isString(str) + asString(str + "a") + isString(str + "a") + asString("a" + str) + isString("a" + str) + asString(str + str) + isString(str + str) + str += "a" + str += str + asString(String('a')) + isString(String('a')) + asString(String([]byte(slice))) + isString(String([]byte(slice))) + asString(String([]byte(nil))) + isString(String([]byte(nil))) + asString("hello") + asString(String("hello")) + isString(String("hello")) + str = "hello" + isString(str) + asString(*&str) + isString(*&str) +} diff --git a/gcc/testsuite/go.test/test/named1.go b/gcc/testsuite/go.test/test/named1.go new file mode 100644 index 0000000..600e502 --- /dev/null +++ b/gcc/testsuite/go.test/test/named1.go @@ -0,0 +1,68 @@ +// errchk $G -e $D/$F.go + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +// Test that basic operations on named types are valid +// and preserve the type. + +package main + +type Bool bool + +type Map map[int]int + +func (Map) M() {} + +type Slice []byte + +var slice Slice + +func asBool(Bool) {} +func asString(String) {} + +type String string + +func main() { + var ( + b Bool = true + i, j int + c = make(chan int) + m = make(Map) + ) + + asBool(b) + asBool(!b) + asBool(true) + asBool(*&b) + asBool(Bool(true)) + asBool(1 != 2) // ERROR "cannot use.*type bool.*as type Bool" + asBool(i < j) // ERROR "cannot use.*type bool.*as type Bool" + + _, b = m[2] // ERROR "cannot .* bool.*type Bool" + m[2] = 1, b // ERROR "cannot use.*type Bool.*as type bool" + + b = c <- 1 // ERROR "cannot use.*type bool.*type Bool" + _ = b + asBool(c <- 1) // ERROR "cannot use.*type bool.*as type Bool" + + _, b = <-c // ERROR "cannot .* bool.*type Bool" + _ = b + + var inter interface{} + _, b = inter.(Map) // ERROR "cannot .* bool.*type Bool" + _ = b + + var minter interface { + M() + } + _, b = minter.(Map) // ERROR "cannot .* bool.*type Bool" + _ = b + + asBool(closed(c)) // ERROR "cannot use.*type bool.*as type Bool" + b = closed(c) // ERROR "cannot use.*type bool.*type Bool" + _ = b + + asString(String(slice)) // ERROR "cannot .*type Slice.*type String" +} diff --git a/gcc/testsuite/go.test/test/nil.go b/gcc/testsuite/go.test/test/nil.go new file mode 100644 index 0000000..6a72b72 --- /dev/null +++ b/gcc/testsuite/go.test/test/nil.go @@ -0,0 +1,37 @@ +// $G $F.go && $L $F.$A && ./$A.out + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package main + +type T struct { + i int +} + +type IN interface { +} + +func main() { + var i *int + var f *float + var s *string + var m map[float] *int + var c chan int + var t *T + var in IN + var ta []IN + + i = nil + f = nil + s = nil + m = nil + c = nil + t = nil + i = nil + ta = make([]IN, 1) + ta[0] = nil + + _, _, _, _, _, _, _, _ = i, f, s, m, c, t, in, ta +} diff --git a/gcc/testsuite/go.test/test/nilptr/arrayindex.go b/gcc/testsuite/go.test/test/nilptr/arrayindex.go new file mode 100644 index 0000000..c564bce --- /dev/null +++ b/gcc/testsuite/go.test/test/nilptr/arrayindex.go @@ -0,0 +1,27 @@ +// [ $GOOS != nacl ] || exit 0 # do not bother on NaCl +// $G $D/$F.go && $L $F.$A && +// ((! sh -c ./$A.out) >/dev/null 2>&1 || echo BUG: should fail) + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package main + +import "unsafe" + +var x byte + +func main() { + var p *[1<<30]byte = nil + x = 123 + + // The problem here is not the use of unsafe: + // it is that indexing into p[] with a large + // enough index jumps out of the unmapped section + // at the beginning of memory and into valid memory. + // Pointer offsets and array indices, if they are + // very large, need to dereference the base pointer + // to trigger a trap. + println(p[uintptr(unsafe.Pointer(&x))]) // should crash +} diff --git a/gcc/testsuite/go.test/test/nilptr/arrayindex1.go b/gcc/testsuite/go.test/test/nilptr/arrayindex1.go new file mode 100644 index 0000000..701630e --- /dev/null +++ b/gcc/testsuite/go.test/test/nilptr/arrayindex1.go @@ -0,0 +1,32 @@ +// [ $GOOS != nacl ] || exit 0 # do not bother on NaCl +// $G $D/$F.go && $L $F.$A && +// ((! sh -c ./$A.out) >/dev/null 2>&1 || echo BUG: should fail) + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package main + +import "unsafe" + +var dummy [512<<20]byte // give us a big address space +func main() { + // the test only tests what we intend to test + // if dummy starts in the first 256 MB of memory. + // otherwise there might not be anything mapped + // at the address that might be accidentally + // dereferenced below. + if uintptr(unsafe.Pointer(&dummy)) > 256<<20 { + panic("dummy too far out") + } + + // The problem here is that indexing into p[] with a large + // enough index jumps out of the unmapped section + // at the beginning of memory and into valid memory. + // Pointer offsets and array indices, if they are + // very large, need to dereference the base pointer + // to trigger a trap. + var p *[1<<30]byte = nil + println(p[256<<20]) // very likely to be inside dummy, but should crash +} diff --git a/gcc/testsuite/go.test/test/nilptr/arraytoslice.go b/gcc/testsuite/go.test/test/nilptr/arraytoslice.go new file mode 100644 index 0000000..38206d5 --- /dev/null +++ b/gcc/testsuite/go.test/test/nilptr/arraytoslice.go @@ -0,0 +1,37 @@ +// [ $GOOS != nacl ] || exit 0 # do not bother on NaCl +// $G $D/$F.go && $L $F.$A && +// ((! sh -c ./$A.out) >/dev/null 2>&1 || echo BUG: should fail) + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package main + +import "unsafe" + +func f([]byte) { + panic("unreachable") +} + +var dummy [512<<20]byte // give us a big address space +func main() { + // the test only tests what we intend to test + // if dummy starts in the first 256 MB of memory. + // otherwise there might not be anything mapped + // at the address that might be accidentally + // dereferenced below. + if uintptr(unsafe.Pointer(&dummy)) > 256<<20 { + panic("dummy too far out") + } + + // The problem here is that indexing into p[] with a large + // enough index can jump out of the unmapped section + // at the beginning of memory and into valid memory. + // + // To avoid needing a check on every slice beyond the + // usual len and cap, we require the *array -> slice + // conversion to do the check. + var p *[1<<30]byte = nil + f(p[0:]) // should crash +} diff --git a/gcc/testsuite/go.test/test/nilptr/arraytoslice1.go b/gcc/testsuite/go.test/test/nilptr/arraytoslice1.go new file mode 100644 index 0000000..8c9531e --- /dev/null +++ b/gcc/testsuite/go.test/test/nilptr/arraytoslice1.go @@ -0,0 +1,34 @@ +// [ $GOOS != nacl ] || exit 0 # do not bother on NaCl +// $G $D/$F.go && $L $F.$A && +// ((! sh -c ./$A.out) >/dev/null 2>&1 || echo BUG: should fail) + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package main + +import "unsafe" + +var dummy [512<<20]byte // give us a big address space +func main() { + // the test only tests what we intend to test + // if dummy starts in the first 256 MB of memory. + // otherwise there might not be anything mapped + // at the address that might be accidentally + // dereferenced below. + if uintptr(unsafe.Pointer(&dummy)) > 256<<20 { + panic("dummy too far out") + } + + // The problem here is that indexing into p[] with a large + // enough index can jump out of the unmapped section + // at the beginning of memory and into valid memory. + // + // To avoid needing a check on every slice beyond the + // usual len and cap, we require the *array -> slice + // conversion to do the check. + var p *[1<<30]byte = nil + var x []byte = p[0:] // should crash + _ = x +} diff --git a/gcc/testsuite/go.test/test/nilptr/arraytoslice2.go b/gcc/testsuite/go.test/test/nilptr/arraytoslice2.go new file mode 100644 index 0000000..1b26513 --- /dev/null +++ b/gcc/testsuite/go.test/test/nilptr/arraytoslice2.go @@ -0,0 +1,35 @@ +// [ $GOOS != nacl ] || exit 0 # do not bother on NaCl +// $G $D/$F.go && $L $F.$A && +// ((! sh -c ./$A.out) >/dev/null 2>&1 || echo BUG: should fail) + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package main + +import "unsafe" + +var dummy [512<<20]byte // give us a big address space +var q *[1<<30]byte +func main() { + // the test only tests what we intend to test + // if dummy starts in the first 256 MB of memory. + // otherwise there might not be anything mapped + // at the address that might be accidentally + // dereferenced below. + if uintptr(unsafe.Pointer(&dummy)) > 256<<20 { + panic("dummy too far out") + } + + // The problem here is that indexing into p[] with a large + // enough index can jump out of the unmapped section + // at the beginning of memory and into valid memory. + // + // To avoid needing a check on every slice beyond the + // usual len and cap, we require the *array -> slice + // conversion to do the check. + var x []byte + var y = &x + *y = q[0:] // should crash (uses arraytoslice runtime routine) +} diff --git a/gcc/testsuite/go.test/test/nilptr/slicearray.go b/gcc/testsuite/go.test/test/nilptr/slicearray.go new file mode 100644 index 0000000..544536c --- /dev/null +++ b/gcc/testsuite/go.test/test/nilptr/slicearray.go @@ -0,0 +1,33 @@ +// [ $GOOS != nacl ] || exit 0 # do not bother on NaCl +// $G $D/$F.go && $L $F.$A && +// ((! sh -c ./$A.out) >/dev/null 2>&1 || echo BUG: should fail) + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package main + +import "unsafe" + +var dummy [512<<20]byte // give us a big address space +func main() { + // the test only tests what we intend to test + // if dummy starts in the first 256 MB of memory. + // otherwise there might not be anything mapped + // at the address that might be accidentally + // dereferenced below. + if uintptr(unsafe.Pointer(&dummy)) > 256<<20 { + panic("dummy too far out") + } + + // The problem here is that indexing into p[] with a large + // enough index can jump out of the unmapped section + // at the beginning of memory and into valid memory. + // + // To avoid needing a check on every slice beyond the + // usual len and cap, we require the slice operation + // to do the check. + var p *[1<<30]byte = nil + var _ []byte = p[10:len(p)-10] // should crash +} diff --git a/gcc/testsuite/go.test/test/nilptr/structfield.go b/gcc/testsuite/go.test/test/nilptr/structfield.go new file mode 100644 index 0000000..e081f7a --- /dev/null +++ b/gcc/testsuite/go.test/test/nilptr/structfield.go @@ -0,0 +1,35 @@ +// [ $GOOS != nacl ] || exit 0 # do not bother on NaCl +// $G $D/$F.go && $L $F.$A && +// ((! sh -c ./$A.out) >/dev/null 2>&1 || echo BUG: should fail) + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package main + +import "unsafe" + +var dummy [512<<20]byte // give us a big address space +type T struct { + x [256<<20] byte + i int +} + +func main() { + // the test only tests what we intend to test + // if dummy starts in the first 256 MB of memory. + // otherwise there might not be anything mapped + // at the address that might be accidentally + // dereferenced below. + if uintptr(unsafe.Pointer(&dummy)) > 256<<20 { + panic("dummy too far out") + } + + // The problem here is that indexing into t with a large + // enough index can jump out of the unmapped section + // at the beginning of memory and into valid memory. + // We require the pointer dereference to check. + var t *T + println(t.i) // should crash +} diff --git a/gcc/testsuite/go.test/test/nilptr/structfield1.go b/gcc/testsuite/go.test/test/nilptr/structfield1.go new file mode 100644 index 0000000..02d33a4 --- /dev/null +++ b/gcc/testsuite/go.test/test/nilptr/structfield1.go @@ -0,0 +1,38 @@ +// [ $GOOS != nacl ] || exit 0 # do not bother on NaCl +// $G $D/$F.go && $L $F.$A && +// ((! sh -c ./$A.out) >/dev/null 2>&1 || echo BUG: should fail) + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package main + +import "unsafe" + +var dummy [512<<20]byte // give us a big address space +type T struct { + x [256<<20] byte + i int +} + +func f() *T { + return nil +} + +func main() { + // the test only tests what we intend to test + // if dummy starts in the first 256 MB of memory. + // otherwise there might not be anything mapped + // at the address that might be accidentally + // dereferenced below. + if uintptr(unsafe.Pointer(&dummy)) > 256<<20 { + panic("dummy too far out") + } + + // The problem here is that indexing into t with a large + // enough index can jump out of the unmapped section + // at the beginning of memory and into valid memory. + // We require the pointer dereference to check. + println(f().i) // should crash +} diff --git a/gcc/testsuite/go.test/test/nilptr/structfield2.go b/gcc/testsuite/go.test/test/nilptr/structfield2.go new file mode 100644 index 0000000..4323b42 --- /dev/null +++ b/gcc/testsuite/go.test/test/nilptr/structfield2.go @@ -0,0 +1,37 @@ +// [ $GOOS != nacl ] || exit 0 # do not bother on NaCl +// $G $D/$F.go && $L $F.$A && +// ((! sh -c ./$A.out) >/dev/null 2>&1 || echo BUG: should fail) + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package main + +import "unsafe" + +var dummy [512<<20]byte // give us a big address space +type T struct { + x [256<<20] byte + i int +} + +var y *T +var x = &y + +func main() { + // the test only tests what we intend to test + // if dummy starts in the first 256 MB of memory. + // otherwise there might not be anything mapped + // at the address that might be accidentally + // dereferenced below. + if uintptr(unsafe.Pointer(&dummy)) > 256<<20 { + panic("dummy too far out") + } + + // The problem here is that indexing into t with a large + // enough index can jump out of the unmapped section + // at the beginning of memory and into valid memory. + // We require the pointer dereference to check. + println((*x).i) // should crash +} diff --git a/gcc/testsuite/go.test/test/nilptr/structfieldaddr.go b/gcc/testsuite/go.test/test/nilptr/structfieldaddr.go new file mode 100644 index 0000000..81551aa --- /dev/null +++ b/gcc/testsuite/go.test/test/nilptr/structfieldaddr.go @@ -0,0 +1,35 @@ +// [ $GOOS != nacl ] || exit 0 # do not bother on NaCl +// $G $D/$F.go && $L $F.$A && +// ((! sh -c ./$A.out) >/dev/null 2>&1 || echo BUG: should fail) + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package main + +import "unsafe" + +var dummy [512<<20]byte // give us a big address space +type T struct { + x [256<<20] byte + i int +} + +func main() { + // the test only tests what we intend to test + // if dummy starts in the first 256 MB of memory. + // otherwise there might not be anything mapped + // at the address that might be accidentally + // dereferenced below. + if uintptr(unsafe.Pointer(&dummy)) > 256<<20 { + panic("dummy too far out") + } + + // The problem here is that indexing into t with a large + // enough index can jump out of the unmapped section + // at the beginning of memory and into valid memory. + // We require the address calculation to check. + var t *T + println(&t.i) // should crash +} diff --git a/gcc/testsuite/go.test/test/nul1.go b/gcc/testsuite/go.test/test/nul1.go new file mode 100644 index 0000000..9d6974f --- /dev/null +++ b/gcc/testsuite/go.test/test/nul1.go @@ -0,0 +1,60 @@ +// [ $GOOS != nacl ] || exit 0 # NaCl runner elides NUL in output +// [ "$GORUN" == "" ] || exit 0 # Android runner gets confused by the NUL output +// $G $D/$F.go && $L $F.$A && ./$A.out >tmp.go && +// errchk $G -e tmp.go +// rm -f tmp.go + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +// Test source files and strings containing NUL and invalid UTF-8. + +package main + +import ( + "fmt" + "os" +) + +func main() { + var s = "\xc2\xff" + var t = "\xd0\xfe" + var u = "\xab\x00\xfc" + + if len(s) != 2 || s[0] != 0xc2 || s[1] != 0xff || + len(t) != 2 || t[0] != 0xd0 || t[1] != 0xfe || + len(u) != 3 || u[0] != 0xab || u[1] != 0x00 || u[2] != 0xfc { + println("BUG: non-UTF-8 string mangled") + os.Exit(2) + } + + fmt.Print(` +package main + +var x = "in string ` + "\x00" + `" // ERROR "NUL" + +var y = ` + "`in raw string \x00 foo`" + ` // ERROR "NUL" + +// in comment ` + "\x00" + ` // ERROR "NUL" + +/* in other comment ` + "\x00" + ` */ // ERROR "NUL" + +/* in source code */ ` + "\x00" + `// ERROR "NUL" + +var xx = "in string ` + "\xc2\xff" + `" // ERROR "UTF-8" + +var yy = ` + "`in raw string \xff foo`" + ` // ERROR "UTF-8" + +// in comment ` + "\xe2\x80\x01" + ` // ERROR "UTF-8" + +/* in other comment ` + "\xe0\x00\x00" + ` */ // ERROR "UTF-8|NUL" + +/* in variable name */ +var z` + "\xc1\x81" + ` int // ERROR "UTF-8" + +/* in source code */ ` + "\xc2A" + `// ERROR "UTF-8" + +`) +} + diff --git a/gcc/testsuite/go.test/test/parentype.go b/gcc/testsuite/go.test/test/parentype.go new file mode 100644 index 0000000..1872cd0 --- /dev/null +++ b/gcc/testsuite/go.test/test/parentype.go @@ -0,0 +1,17 @@ +// $G $D/$F.go + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package main + +func f(interface{}) +func g() {} +func main() { + f(map[string]string{"a":"b","c":"d"}) + f([...]int{1,2,3}) + f(map[string]func(){"a":g,"c":g}) + f(make(chan(<-chan int))) + f(make(chan<-(chan int))) +} diff --git a/gcc/testsuite/go.test/test/peano.go b/gcc/testsuite/go.test/test/peano.go new file mode 100644 index 0000000..f4c59d1 --- /dev/null +++ b/gcc/testsuite/go.test/test/peano.go @@ -0,0 +1,126 @@ +// $G $F.go && $L $F.$A && ./$A.out + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package main + +type Number *Number + + +// ------------------------------------- +// Peano primitives + +func zero() *Number { + return nil +} + + +func is_zero(x *Number) bool { + return x == nil +} + + +func add1(x *Number) *Number { + e := new(Number) + *e = x + return e +} + + +func sub1(x *Number) *Number { + return *x +} + + +func add(x, y *Number) *Number { + if is_zero(y) { + return x + } + + return add(add1(x), sub1(y)) +} + + +func mul(x, y *Number) *Number { + if is_zero(x) || is_zero(y) { + return zero() + } + + return add(mul(x, sub1(y)), x) +} + + +func fact(n *Number) *Number { + if is_zero(n) { + return add1(zero()) + } + + return mul(fact(sub1(n)), n) +} + + +// ------------------------------------- +// Helpers to generate/count Peano integers + +func gen(n int) *Number { + if n > 0 { + return add1(gen(n - 1)) + } + + return zero() +} + + +func count(x *Number) int { + if is_zero(x) { + return 0 + } + + return count(sub1(x)) + 1 +} + + +func check(x *Number, expected int) { + var c = count(x) + if c != expected { + print("error: found ", c, "; expected ", expected, "\n") + panic("fail") + } +} + + +// ------------------------------------- +// Test basic functionality + +func init() { + check(zero(), 0) + check(add1(zero()), 1) + check(gen(10), 10) + + check(add(gen(3), zero()), 3) + check(add(zero(), gen(4)), 4) + check(add(gen(3), gen(4)), 7) + + check(mul(zero(), zero()), 0) + check(mul(gen(3), zero()), 0) + check(mul(zero(), gen(4)), 0) + check(mul(gen(3), add1(zero())), 3) + check(mul(add1(zero()), gen(4)), 4) + check(mul(gen(3), gen(4)), 12) + + check(fact(zero()), 1) + check(fact(add1(zero())), 1) + check(fact(gen(5)), 120) +} + + +// ------------------------------------- +// Factorial + +func main() { + for i := 0; i <= 9; i++ { + print(i, "! = ", count(fact(gen(i))), "\n") + } +} diff --git a/gcc/testsuite/go.test/test/printbig.go b/gcc/testsuite/go.test/test/printbig.go new file mode 100644 index 0000000..bbb7070 --- /dev/null +++ b/gcc/testsuite/go.test/test/printbig.go @@ -0,0 +1,12 @@ +// $G $F.go && $L $F.$A && ./$A.out + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package main + +func main() { + print(-(1<<63), "\n") + print((1<<63)-1, "\n") +} diff --git a/gcc/testsuite/go.test/test/range.go b/gcc/testsuite/go.test/test/range.go new file mode 100644 index 0000000..91ccd63 --- /dev/null +++ b/gcc/testsuite/go.test/test/range.go @@ -0,0 +1,297 @@ +// $G $D/$F.go && $L $F.$A && ./$A.out + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package main + +// test range over channels + +func gen(c chan int, lo, hi int) { + for i := lo; i <= hi; i++ { + c <- i + } + close(c) +} + +func seq(lo, hi int) chan int { + c := make(chan int) + go gen(c, lo, hi) + return c +} + +func testchan() { + s := "" + for i := range seq('a', 'z') { + s += string(i) + } + if s != "abcdefghijklmnopqrstuvwxyz" { + println("Wanted lowercase alphabet; got", s) + panic("fail") + } +} + +// test that range over slice only evaluates +// the expression after "range" once. + +var nmake = 0 + +func makeslice() []int { + nmake++ + return []int{1, 2, 3, 4, 5} +} + +func testslice() { + s := 0 + nmake = 0 + for _, v := range makeslice() { + s += v + } + if nmake != 1 { + println("range called makeslice", nmake, "times") + panic("fail") + } + if s != 15 { + println("wrong sum ranging over makeslice") + panic("fail") + } +} + +func testslice1() { + s := 0 + nmake = 0 + for i := range makeslice() { + s += i + } + if nmake != 1 { + println("range called makeslice", nmake, "times") + panic("fail") + } + if s != 10 { + println("wrong sum ranging over makeslice") + panic("fail") + } +} + +// test that range over array only evaluates +// the expression after "range" once. + +func makearray() [5]int { + nmake++ + return [5]int{1, 2, 3, 4, 5} +} + +func testarray() { + s := 0 + nmake = 0 + for _, v := range makearray() { + s += v + } + if nmake != 1 { + println("range called makearray", nmake, "times") + panic("fail") + } + if s != 15 { + println("wrong sum ranging over makearray") + panic("fail") + } +} + +func testarray1() { + s := 0 + nmake = 0 + for i := range makearray() { + s += i + } + if nmake != 1 { + println("range called makearray", nmake, "times") + panic("fail") + } + if s != 10 { + println("wrong sum ranging over makearray") + panic("fail") + } +} + +func makearrayptr() *[5]int { + nmake++ + return &[5]int{1, 2, 3, 4, 5} +} + +func testarrayptr() { + nmake = 0 + x := len(makearrayptr()) + if x != 5 || nmake != 1 { + println("len called makearrayptr", nmake, "times and got len", x) + panic("fail") + } + nmake = 0 + x = cap(makearrayptr()) + if x != 5 || nmake != 1 { + println("cap called makearrayptr", nmake, "times and got len", x) + panic("fail") + } + s := 0 + nmake = 0 + for _, v := range makearrayptr() { + s += v + } + if nmake != 1 { + println("range called makearrayptr", nmake, "times") + panic("fail") + } + if s != 15 { + println("wrong sum ranging over makearrayptr") + panic("fail") + } +} + +func testarrayptr1() { + s := 0 + nmake = 0 + for i := range makearrayptr() { + s += i + } + if nmake != 1 { + println("range called makearrayptr", nmake, "times") + panic("fail") + } + if s != 10 { + println("wrong sum ranging over makearrayptr") + panic("fail") + } +} + +// test that range over string only evaluates +// the expression after "range" once. + +func makestring() string { + nmake++ + return "abcd☺" +} + +func teststring() { + s := 0 + nmake = 0 + for _, v := range makestring() { + s += v + } + if nmake != 1 { + println("range called makestring", nmake, "times") + panic("fail") + } + if s != 'a'+'b'+'c'+'d'+'☺' { + println("wrong sum ranging over makestring") + panic("fail") + } +} + +func teststring1() { + s := 0 + nmake = 0 + for i := range makestring() { + s += i + } + if nmake != 1 { + println("range called makestring", nmake, "times") + panic("fail") + } + if s != 10 { + println("wrong sum ranging over makestring") + panic("fail") + } +} + +// test that range over map only evaluates +// the expression after "range" once. + +func makemap() map[int]int { + nmake++ + return map[int]int{0:'a', 1:'b', 2:'c', 3:'d', 4:'☺'} +} + +func testmap() { + s := 0 + nmake = 0 + for _, v := range makemap() { + s += v + } + if nmake != 1 { + println("range called makemap", nmake, "times") + panic("fail") + } + if s != 'a'+'b'+'c'+'d'+'☺' { + println("wrong sum ranging over makemap") + panic("fail") + } +} + +func testmap1() { + s := 0 + nmake = 0 + for i := range makemap() { + s += i + } + if nmake != 1 { + println("range called makemap", nmake, "times") + panic("fail") + } + if s != 10 { + println("wrong sum ranging over makemap") + panic("fail") + } +} + +// test that range evaluates the index and value expressions +// exactly once per iteration. + +var ncalls = 0 + +func getvar(p *int) *int { + ncalls++ + return p +} + +func testcalls() { + var i, v int + si := 0 + sv := 0 + for *getvar(&i), *getvar(&v) = range [2]int{1, 2} { + si += i + sv += v + } + if ncalls != 4 { + println("wrong number of calls:", ncalls, "!= 4") + panic("fail") + } + if si != 1 || sv != 3 { + println("wrong sum in testcalls", si, sv) + panic("fail") + } + + ncalls = 0 + for *getvar(&i), *getvar(&v) = range [0]int{} { + println("loop ran on empty array") + panic("fail") + } + if ncalls != 0 { + println("wrong number of calls:", ncalls, "!= 0") + panic("fail") + } +} + +func main() { + testchan() + testarray() + testarray1() + testarrayptr() + testarrayptr1() + testslice() + testslice1() + teststring() + teststring1() + testmap() + testmap1() + testcalls() +} diff --git a/gcc/testsuite/go.test/test/recover.go b/gcc/testsuite/go.test/test/recover.go new file mode 100644 index 0000000..ca6f072 --- /dev/null +++ b/gcc/testsuite/go.test/test/recover.go @@ -0,0 +1,246 @@ +// $G $D/$F.go && $L $F.$A && ./$A.out + +// Copyright 2010 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +// Test of basic recover functionality. + +package main + +import "runtime" + +func main() { + test1() + test1WithClosures() + test2() + test3() + test4() + test5() + test6() + test6WithClosures() + test7() +} + +func die() { + runtime.Breakpoint() // can't depend on panic +} + +func mustRecover(x interface{}) { + mustNotRecover() // because it's not a defer call + v := recover() + if v == nil { + println("missing recover") + die() // panic is useless here + } + if v != x { + println("wrong value", v, x) + die() + } + + // the value should be gone now regardless + v = recover() + if v != nil { + println("recover didn't recover") + die() + } +} + +func mustNotRecover() { + v := recover() + if v != nil { + println("spurious recover", v) + die() + } +} + +func withoutRecover() { + mustNotRecover() // because it's a sub-call +} + +func test1() { + defer mustNotRecover() // because mustRecover will squelch it + defer mustRecover(1) // because of panic below + defer withoutRecover() // should be no-op, leaving for mustRecover to find + panic(1) +} + +// Repeat test1 with closures instead of standard function. +// Interesting because recover bases its decision +// on the frame pointer of its caller, and a closure's +// frame pointer is in the middle of its actual arguments +// (after the hidden ones for the closed-over variables). +func test1WithClosures() { + defer func() { + v := recover() + if v != nil { + println("spurious recover in closure") + die() + } + }() + defer func(x interface{}) { + mustNotRecover() + v := recover() + if v == nil { + println("missing recover") + die() + } + if v != x { + println("wrong value", v, x) + die() + } + }(1) + defer func() { + mustNotRecover() + }() + panic(1) +} + +func test2() { + // Recover only sees the panic argument + // if it is called from a deferred call. + // It does not see the panic when called from a call within a deferred call (too late) + // nor does it see the panic when it *is* the deferred call (too early). + defer mustRecover(2) + defer recover() // should be no-op + panic(2) +} + +func test3() { + defer mustNotRecover() + defer func() { + recover() // should squelch + }() + panic(3) +} + +func test4() { + // Equivalent to test3 but using defer to make the call. + defer mustNotRecover() + defer func() { + defer recover() // should squelch + }() + panic(4) +} + +// Check that closures can set output arguments. +// Run g(). If it panics, return x; else return deflt. +func try(g func(), deflt interface{}) (x interface{}) { + defer func() { + if v := recover(); v != nil { + x = v + } + }() + defer g() + return deflt +} + +// Check that closures can set output arguments. +// Run g(). If it panics, return x; else return deflt. +func try1(g func(), deflt interface{}) (x interface{}) { + defer func() { + if v := recover(); v != nil { + x = v + } + }() + defer g() + x = deflt + return +} + +func test5() { + v := try(func() { panic(5) }, 55).(int) + if v != 5 { + println("wrong value", v, 5) + die() + } + + s := try(func() {}, "hi").(string) + if s != "hi" { + println("wrong value", s, "hi") + die() + } + + v = try1(func() { panic(5) }, 55).(int) + if v != 5 { + println("try1 wrong value", v, 5) + die() + } + + s = try1(func() {}, "hi").(string) + if s != "hi" { + println("try1 wrong value", s, "hi") + die() + } +} + +// When a deferred big call starts, it must first +// create yet another stack segment to hold the +// giant frame for x. Make sure that doesn't +// confuse recover. +func big(mustRecover bool) { + var x [100000]int + x[0] = 1 + x[99999] = 1 + _ = x + + v := recover() + if mustRecover { + if v == nil { + println("missing big recover") + die() + } + } else { + if v != nil { + println("spurious big recover") + die() + } + } +} + +func test6() { + defer big(false) + defer big(true) + panic(6) +} + +func test6WithClosures() { + defer func() { + var x [100000]int + x[0] = 1 + x[99999] = 1 + _ = x + if recover() != nil { + println("spurious big closure recover") + die() + } + }() + defer func() { + var x [100000]int + x[0] = 1 + x[99999] = 1 + _ = x + if recover() == nil { + println("missing big closure recover") + die() + } + }() + panic("6WithClosures") +} + +func test7() { + ok := false + func() { + // should panic, then call mustRecover 7, which stops the panic. + // then should keep processing ordinary defers earlier than that one + // before returning. + // this test checks that the defer func on the next line actually runs. + defer func() { ok = true }() + defer mustRecover(7) + panic(7) + }() + if !ok { + println("did not run ok func") + die() + } +} diff --git a/gcc/testsuite/go.test/test/recover1.go b/gcc/testsuite/go.test/test/recover1.go new file mode 100644 index 0000000..db58473 --- /dev/null +++ b/gcc/testsuite/go.test/test/recover1.go @@ -0,0 +1,141 @@ +// $G $D/$F.go && $L $F.$A && ./$A.out + +// Copyright 2010 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +// Test of recover during recursive panics. +// Here be dragons. + +package main + +import "runtime" + +func main() { + test1() + test2() + test3() + test4() + test5() + test6() + test7() +} + +func die() { + runtime.Breakpoint() // can't depend on panic +} + +func mustRecover(x interface{}) { + mustNotRecover() // because it's not a defer call + v := recover() + if v == nil { + println("missing recover") + die() // panic is useless here + } + if v != x { + println("wrong value", v, x) + die() + } + + // the value should be gone now regardless + v = recover() + if v != nil { + println("recover didn't recover") + die() + } +} + +func mustNotRecover() { + v := recover() + if v != nil { + println("spurious recover") + die() + } +} + +func withoutRecover() { + mustNotRecover() // because it's a sub-call +} + +func test1() { + // Easy nested recursive panic. + defer mustRecover(1) + defer func() { + defer mustRecover(2) + panic(2) + }() + panic(1) +} + +func test2() { + // Sequential panic. + defer mustNotRecover() + defer func() { + v := recover() + if v == nil || v.(int) != 2 { + println("wrong value", v, 2) + die() + } + defer mustRecover(3) + panic(3) + }() + panic(2) +} + +func test3() { + // Sequential panic - like test2 but less picky. + defer mustNotRecover() + defer func() { + recover() + defer mustRecover(3) + panic(3) + }() + panic(2) +} + +func test4() { + // Single panic. + defer mustNotRecover() + defer func() { + recover() + }() + panic(4) +} + +func test5() { + // Single panic but recover called via defer + defer mustNotRecover() + defer func() { + defer recover() + }() + panic(5) +} + +func test6() { + // Sequential panic. + // Like test3, but changed recover to defer (same change as test4 → test5). + defer mustNotRecover() + defer func() { + defer recover() // like a normal call from this func; runs because mustRecover stops the panic + defer mustRecover(3) + panic(3) + }() + panic(2) +} + +func test7() { + // Like test6, but swapped defer order. + // The recover in "defer recover()" is now a no-op, + // because it runs called from panic, not from the func, + // and therefore cannot see the panic of 2. + // (Alternately, it cannot see the panic of 2 because + // there is an active panic of 3. And it cannot see the + // panic of 3 because it is at the wrong level (too high on the stack).) + defer mustRecover(2) + defer func() { + defer mustRecover(3) + defer recover() // now a no-op, unlike in test6. + panic(3) + }() + panic(2) +} diff --git a/gcc/testsuite/go.test/test/recover2.go b/gcc/testsuite/go.test/test/recover2.go new file mode 100644 index 0000000..c95af8f --- /dev/null +++ b/gcc/testsuite/go.test/test/recover2.go @@ -0,0 +1,93 @@ +// $G $D/$F.go && $L $F.$A && ./$A.out + +// Copyright 2010 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +// Test of recover for run-time errors. + +// TODO(rsc): +// integer divide by zero? +// null pointer accesses + +package main + +import ( + "os" + "strings" + "syscall" +) + +var x = make([]byte, 10) + +func main() { + test1() + test2() + test3() + test4() + test5() + test6() + test7() +} + +func mustRecover(s string) { + v := recover() + if v == nil { + panic("expected panic") + } + if e := v.(os.Error).String(); strings.Index(e, s) < 0 { + panic("want: " + s + "; have: " + e) + } +} + +func test1() { + defer mustRecover("index") + println(x[123]) +} + +func test2() { + defer mustRecover("slice") + println(x[5:15]) +} + +func test3() { + defer mustRecover("slice") + var lo = 11 + var hi = 9 + println(x[lo:hi]) +} + +func test4() { + defer mustRecover("interface") + var x interface{} = 1 + println(x.(float)) +} + +type T struct { + a, b int +} + +func test5() { + defer mustRecover("uncomparable") + var x T + var z interface{} = x + println(z != z) +} + +func test6() { + defer mustRecover("unhashable") + var x T + var z interface{} = x + m := make(map[interface{}]int) + m[z] = 1 +} + +func test7() { + if syscall.ARCH == "arm" || syscall.OS == "nacl" { + // ARM doesn't have integer divide trap yet + return + } + defer mustRecover("divide by zero") + var x, y int + println(x / y) +} diff --git a/gcc/testsuite/go.test/test/recover3.go b/gcc/testsuite/go.test/test/recover3.go new file mode 100644 index 0000000..b982ec8 --- /dev/null +++ b/gcc/testsuite/go.test/test/recover3.go @@ -0,0 +1,79 @@ +// [ $GOOS != nacl ] || exit 0 # NaCl cannot recover from signals +// $G $D/$F.go && $L $F.$A && ./$A.out + +// Copyright 2010 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package main + +import ( + "runtime" + "strings" + "syscall" +) + +var didbug bool + +func bug() { + if didbug { + return + } + println("BUG") + didbug = true +} + +func check(name string, f func(), err string) { + defer func() { + v := recover() + if v == nil { + bug() + println(name, "did not panic") + return + } + runt, ok := v.(runtime.Error) + if !ok { + bug() + println(name, "panicked but not with runtime.Error") + return + } + s := runt.String() + if strings.Index(s, err) < 0 { + bug() + println(name, "panicked with", s, "not", err) + return + } + }() + + f() +} + +func main() { + var x int + var x64 int64 + var p *[10]int + var q *[10000]int + var i int + + // not catching divide by zero on the arm. is that even possible? + if syscall.ARCH != "arm" { + check("int-div-zero", func() { println(1/x) }, "integer divide by zero") + check("int64-div-zero", func() { println(1/x64) }, "integer divide by zero") + } + + check("nil-deref", func() { println(p[0]) }, "nil pointer dereference") + check("nil-deref-1", func() { println(p[1]) }, "nil pointer dereference") + check("nil-deref-big", func() { println(q[5000]) }, "nil pointer dereference") + + i = 99999 + var sl []int + check("array-bounds", func() { println(p[i]) }, "index out of range") + check("slice-bounds", func() { println(sl[i]) }, "index out of range") + + var inter interface{} + inter = 1 + check("type-concrete", func() { println(inter.(string)) }, "int, not string") + check("type-interface", func() { println(inter.(m)) }, "missing method m") +} + +type m interface{ m() } diff --git a/gcc/testsuite/go.test/test/rename.go b/gcc/testsuite/go.test/test/rename.go new file mode 100644 index 0000000..f21ef01 --- /dev/null +++ b/gcc/testsuite/go.test/test/rename.go @@ -0,0 +1,73 @@ +// $G $D/$F.go && $L $F.$A && ./$A.out + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package main + +import "fmt" + +func main() { + n := + bool + + byte + + float + + float32 + + float64 + + int + + int8 + + int16 + + int32 + + int64 + + uint + + uint8 + + uint16 + + uint32 + + uint64 + + uintptr + + true + + false + + iota + + nil + + cap + + len + + make + + new + + panic + + print + + println + if n != 27*28/2 { + fmt.Println("BUG: wrong n", n, 27*28/2) + } +} + +const ( + bool = 1 + byte = 2 + float = 3 + float32 = 4 + float64 = 5 + int = 6 + int8 = 7 + int16 = 8 + int32 = 9 + int64 = 10 + uint = 11 + uint8 = 12 + uint16 = 13 + uint32 = 14 + uint64 = 15 + uintptr = 16 + true = 17 + false = 18 + iota = 19 + nil = 20 + cap = 21 + len = 22 + make = 23 + new = 24 + panic = 25 + print = 26 + println = 27 +) diff --git a/gcc/testsuite/go.test/test/rename1.go b/gcc/testsuite/go.test/test/rename1.go new file mode 100644 index 0000000..f239999 --- /dev/null +++ b/gcc/testsuite/go.test/test/rename1.go @@ -0,0 +1,46 @@ +// errchk $G -e $D/$F.go + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package main + +func main() { + var n byte // ERROR "not a type|expected type" + var y = float(0) // ERROR "cannot call|expected function" + const ( + a = 1 + iota // ERROR "string|incompatible types" + ) + +} + +const ( + bool = 1 + byte = 2 + float = 3 + float32 = 4 + float64 = 5 + int = 6 + int8 = 7 + int16 = 8 + int32 = 9 + int64 = 10 + uint = 11 + uint8 = 12 + uint16 = 13 + uint32 = 14 + uint64 = 15 + uintptr = 16 + true = 17 + false = 18 + iota = "abc" + nil = 20 + cap = 21 + len = 22 + make = 23 + new = 24 + panic = 25 + print = 26 + println = 27 +) diff --git a/gcc/testsuite/go.test/test/run b/gcc/testsuite/go.test/test/run new file mode 100755 index 0000000..4ca7754 --- /dev/null +++ b/gcc/testsuite/go.test/test/run @@ -0,0 +1,122 @@ +#!/usr/bin/env bash +# Copyright 2009 The Go Authors. All rights reserved. +# Use of this source code is governed by a BSD-style +# license that can be found in the LICENSE file. + +eval $(gomake --no-print-directory -f ../src/Make.inc go-env) + +case X"$GOARCH" in +Xamd64) + export A=6 + ;; +X386) + export A=8 + ;; +Xarm) + export A=5 + export E=${GORUN:-qemu-arm -cpu cortex-a8} + ;; +*) + echo 1>&2 run: unsupported '$GOARCH' + exit 1 +esac + +case X"$GOOS" in +Xnacl) + export E=${GORUN:-$GOROOT/misc/nacl/naclrun} +esac + +export G=${A}g +export L=${A}l +export GOTRACEBACK=0 +export LANG=C +unset GREP_OPTIONS # in case user has a non-standard set + +failed=0 + +PATH=/bin:/usr/bin:/usr/local/bin:${GOBIN:-$GOROOT/bin}:`pwd` + +RUNFILE=/tmp/gorun-$$-$USER +TMP1FILE=/tmp/gotest1-$$-$USER +TMP2FILE=/tmp/gotest2-$$-$USER + +# don't run the machine out of memory: limit individual processes to 4GB. +# on thresher, 3GB suffices to run the tests; with 2GB, peano fails. +ulimit -v 4000000 + +# no core files please +ulimit -c 0 + +true >pass.out >times.out + +for dir in . ken chan interface nilptr syntax fixedbugs bugs +do + echo + echo '==' $dir'/' + for i in $(ls $dir/*.go 2>/dev/null) + do + export F=$(basename $i .go) + export D=$dir + sed '/^\/\//!q' $i | sed 's@//@@; $d' |sed 's|./\$A.out|$E &|' >$RUNFILE + if ! { time -p bash -c "bash $RUNFILE >$TMP1FILE 2>&1" ; } 2>$TMP2FILE + then + echo + echo "===========" $i + cat $TMP1FILE + echo >&2 fail: $i + echo "# $i # fail" >>pass.out + elif test -s $TMP1FILE + then + echo + echo "===========" $i + cat $TMP1FILE + if grep -q '^BUG' $TMP1FILE + then + if [ $dir != bugs ] + then + echo >&2 bug: $i + fi + echo "# $i # fail, BUG" >>pass.out + else + echo $i >>pass.out + fi + elif [ $dir = "bugs" ] + then + echo $i succeeded with no output. + else + echo $i >>pass.out + fi + echo $(awk 'NR==1{print $2}' $TMP2FILE) $D/$F >>times.out + done +done | # clean up some stack noise + egrep -v '^(r[0-9a-z]+|[cfg]s) +0x' | + sed '/tmp.*Bus error/s/.*Bus/Bus/; /tmp.*Trace.BPT/s/.*Trace/Trace/ + s!'$RUNFILE'!$RUNFILE!g + s/^PC=0x[0-9a-f]*/pc: xxx/ + s/^pc: 0x[0-9a-f]*/pc: xxx/ + s/PC=0x[0-9a-f]*/PC=xxx/ + /^Trace\/breakpoint trap/d + /^Trace\/BPT trap/d + /RUNFILE/ s/line 1: *[0-9]*/line 1: PID/ + /^\$RUNFILE: line 1: PID Trace\/breakpoint trap/d + /Segmentation fault/d + /^qemu: uncaught target signal 11 (Segmentation fault) - exiting/d' > run.out + +rm -f $RUNFILE $TMP1FILE $TMP2FILE *.$A *.a $A.out +diffmsg="" +if ! diff golden.out run.out +then + diffmsg="; test output differs" + failed=1 +fi + +notinbugs=$(sed '/^== bugs/q' run.out | grep -c '^BUG') +inbugs=$(sed '1,/^== bugs/d' run.out | grep -c '^BUG') + +echo 2>&1 $inbugs known bugs';' $notinbugs unexpected bugs$diffmsg + +if [ "$failed" != "0" ]; then + echo FAILED +fi + +exit $failed diff --git a/gcc/testsuite/go.test/test/run-arm b/gcc/testsuite/go.test/test/run-arm new file mode 100755 index 0000000..a62df10 --- /dev/null +++ b/gcc/testsuite/go.test/test/run-arm @@ -0,0 +1,102 @@ +#!/bin/sh +# Copyright 2009 The Go Authors. All rights reserved. +# Use of this source code is governed by a BSD-style +# license that can be found in the LICENSE file. + +export E="" +case X"$GOARCH" in +Xamd64) + export A=6 + ;; +X386) + export A=8 + ;; +Xarm) + export A=5 + export E="${GORUN:-qemu-arm -cpu cortex-a8}" + ;; +*) + echo 1>&2 run: unsupported '$GOARCH' + exit 1 +esac + +export G=${A}g +export L=${A}l +export GOTRACEBACK=0 + +PATH=/bin:/usr/bin:/usr/local/bin:${GOBIN:-$GOROOT/bin}:`pwd` + +RUNFILE=/tmp/gorun-$$-$USER +TMP1FILE=/tmp/gotest1-$$-$USER +TMP2FILE=/tmp/gotest2-$$-$USER +FAILEDFILE=/tmp/gotest3-$$-$USER + +# don't run the machine out of memory: limit individual processes to 4GB. +# on thresher, 3GB suffices to run the tests; with 2GB, peano fails. +ulimit -v 4000000 + +# no core files please +ulimit -c 0 + +true >times.out + +# TODO(kaib): figure out why the GC makes things so utterly slow. +export GOGC=off +export GOTRACEBACK=0 + +for i in $(cat arm-pass.txt | sed 's/#.*//') +do + export F=$(basename $i .go) + dir=$(dirname $i) + export D=$dir + sed '/^\/\//!q' $i | sed 's@//@@; $d' |sed 's|./\$A.out|$E &|' >$RUNFILE + if ! { time -p bash -c "bash $RUNFILE >$TMP1FILE 2>&1" ; } 2>$TMP2FILE + then + echo + echo "===========" $i + cat $TMP1FILE + echo >&2 fail: $i + touch $FAILEDFILE + elif test -s $TMP1FILE + then + echo + echo "===========" $i + cat $TMP1FILE + elif [ $dir = "bugs" ] + then + echo $i succeeded with no output. + fi + echo $(awk 'NR==1{print $2}' $TMP2FILE) $D/$F >>times.out +done | # clean up some stack noise + egrep -v '^(r[0-9a-z]+|[cfg]s) +0x' | + sed '/tmp.*Bus error/s/.*Bus/Bus/; /tmp.*Trace.BPT/s/.*Trace/Trace/ + s!'$RUNFILE'!$RUNFILE!g + s/ PC=0x[0-9a-f]*/ PC=xxx/ + s/^pc: 0x[0-9a-f]*/pc: xxx/ + /^Trace\/breakpoint trap/d + /^Trace\/BPT trap/d + s!'$GOROOT'!$GOROOT!g + /Segmentation fault/d + /RUNFILE/ s/line 1: *[0-9]*/line 1: PID/ + /^\$RUNFILE: line 1: PID Trace\/breakpoint trap/d + /^qemu: uncaught target signal 11 (Segmentation fault) - exiting/d' > run.out + +failed=0 +rm -f $RUNFILE $TMP1FILE $TMP2FILE *.$A $A.out +diffmsg="" +if ! diff -b golden-arm.out run.out +then + diffmsg="; test output differs" + failed=1 +fi + +notinbugs=$(sed '/== bugs/q' run.out | grep -c '^BUG') +inbugs=$(sed '1,/== bugs/d' run.out | grep -c '^BUG') + +echo 2>&1 $inbugs known bugs';' $notinbugs unexpected bugs$diffmsg + +if [ "$failed" != "0" ]; then + echo FAILED +fi + +exit $failed diff --git a/gcc/testsuite/go.test/test/runtime.go b/gcc/testsuite/go.test/test/runtime.go new file mode 100644 index 0000000..4be1d05 --- /dev/null +++ b/gcc/testsuite/go.test/test/runtime.go @@ -0,0 +1,20 @@ +// errchk $G $D/$F.go + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +// make sure that even if a file imports runtime, +// it cannot get at the low-level runtime definitions +// known to the compiler. for normal packages +// the compiler doesn't even record the lower case +// functions in its symbol table, but some functions +// in runtime are hard-coded into the compiler. + +package main + +import "runtime" + +func main() { + runtime.printbool(true) // ERROR "unexported" +} diff --git a/gcc/testsuite/go.test/test/sieve.go b/gcc/testsuite/go.test/test/sieve.go new file mode 100644 index 0000000..4fa1115 --- /dev/null +++ b/gcc/testsuite/go.test/test/sieve.go @@ -0,0 +1,42 @@ +// $G $F.go && $L $F.$A # don't run it - goes forever + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package main + +// Send the sequence 2, 3, 4, ... to channel 'ch'. +func Generate(ch chan<- int) { + for i := 2; ; i++ { + ch <- i // Send 'i' to channel 'ch'. + } +} + +// Copy the values from channel 'in' to channel 'out', +// removing those divisible by 'prime'. +func Filter(in <-chan int, out chan<- int, prime int) { + for { + i := <-in // Receive value of new variable 'i' from 'in'. + if i%prime != 0 { + out <- i // Send 'i' to channel 'out'. + } + } +} + +// The prime sieve: Daisy-chain Filter processes together. +func Sieve() { + ch := make(chan int) // Create a new channel. + go Generate(ch) // Start Generate() as a subprocess. + for { + prime := <-ch + print(prime, "\n") + ch1 := make(chan int) + go Filter(ch, ch1, prime) + ch = ch1 + } +} + +func main() { + Sieve() +} diff --git a/gcc/testsuite/go.test/test/sigchld.go b/gcc/testsuite/go.test/test/sigchld.go new file mode 100644 index 0000000..09188fc --- /dev/null +++ b/gcc/testsuite/go.test/test/sigchld.go @@ -0,0 +1,15 @@ +// if [ $GOOS == nacl ]; then echo survived SIGCHLD; exit 0; fi # NaCl has no signals. +// $G $D/$F.go && $L $F.$A && ./$A.out + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package main + +import "syscall" + +func main() { + syscall.Kill(syscall.Getpid(), syscall.SIGCHLD) + println("survived SIGCHLD") +} diff --git a/gcc/testsuite/go.test/test/simassign.go b/gcc/testsuite/go.test/test/simassign.go new file mode 100644 index 0000000..28408ab --- /dev/null +++ b/gcc/testsuite/go.test/test/simassign.go @@ -0,0 +1,77 @@ +// $G $F.go && $L $F.$A && ./$A.out + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package main + +var a, b, c, d, e, f, g, h, i int + +func printit() { + println(a, b, c, d, e, f, g, h, i) +} + +func testit(permuteok bool) bool { + if a+b+c+d+e+f+g+h+i != 45 { + print("sum does not add to 45\n") + printit() + return false + } + return permuteok || + a == 1 && + b == 2 && + c == 3 && + d == 4 && + e == 5 && + f == 6 && + g == 7 && + h == 8 && + i == 9 +} + +func swap(x, y int) (u, v int) { + return y, x +} + +func main() { + a = 1 + b = 2 + c = 3 + d = 4 + e = 5 + f = 6 + g = 7 + h = 8 + i = 9 + + if !testit(false) { + panic("init val\n") + } + + for z := 0; z < 100; z++ { + a, b, c, d, e, f, g, h, i = b, c, d, a, i, e, f, g, h + + if !testit(z%20 != 19) { + print("on ", z, "th iteration\n") + printit() + panic("fail") + } + } + + if !testit(false) { + print("final val\n") + printit() + panic("fail") + } + + a, b = swap(1, 2) + if a != 2 || b != 1 { + panic("bad swap") + } + + a, b = swap(swap(a, b)) + if a != 2 || b != 1 { + panic("bad swap") + } +} diff --git a/gcc/testsuite/go.test/test/sinit.go b/gcc/testsuite/go.test/test/sinit.go new file mode 100644 index 0000000..2adb931 --- /dev/null +++ b/gcc/testsuite/go.test/test/sinit.go @@ -0,0 +1,100 @@ +// $G -S $D/$F.go | egrep initdone >/dev/null && echo FAIL || true + +// Copyright 2010 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package p + +// Should be no init func in the assembly. +// All these initializations should be done at link time. + +type S struct{ a,b,c int } +type SS struct{ aa,bb,cc S } +type SA struct{ a,b,c [3]int } +type SC struct{ a,b,c []int } + +var ( + zero = 2 + one = 1 + pi = 3.14 + slice = []byte{1,2,3} + sliceInt = []int{1,2,3} + hello = "hello, world" + bytes = []byte("hello, world") + four, five = 4, 5 + x, y = 0.1, "hello" + nilslice []byte = nil + nilmap map[string]int = nil + nilfunc func() = nil + nilchan chan int = nil + nilptr *byte = nil +) + +var a = [3]int{1001, 1002, 1003} +var s = S{1101, 1102, 1103} +var c = []int{1201, 1202, 1203} + +var aa = [3][3]int{[3]int{2001,2002,2003}, [3]int{2004,2005,2006}, [3]int{2007,2008,2009}} +var as = [3]S{S{2101,2102,2103},S{2104,2105,2106},S{2107,2108,2109}} +var ac = [3][]int{[]int{2201,2202,2203}, []int{2204,2205,2206}, []int{2207,2208,2209}} + +var sa = SA{[3]int{3001,3002,3003},[3]int{3004,3005,3006},[3]int{3007,3008,3009}} +var ss = SS{S{3101,3102,3103},S{3104,3105,3106},S{3107,3108,3109}} +var sc = SC{[]int{3201,3202,3203},[]int{3204,3205,3206},[]int{3207,3208,3209}} + +var ca = [][3]int{[3]int{4001,4002,4003}, [3]int{4004,4005,4006}, [3]int{4007,4008,4009}} +var cs = []S{S{4101,4102,4103},S{4104,4105,4106},S{4107,4108,4109}} +var cc = [][]int{[]int{4201,4202,4203}, []int{4204,4205,4206}, []int{4207,4208,4209}} + +var answers = [...]int { + // s + 1101, 1102, 1103, + + // ss + 3101, 3102, 3103, + 3104, 3105, 3106, + 3107, 3108, 3109, + + // [0] + 1001, 1201, 1301, + 2101, 2102, 2103, + 4101, 4102, 4103, + 5101, 5102, 5103, + 3001, 3004, 3007, + 3201, 3204, 3207, + 3301, 3304, 3307, + + // [0][j] + 2001, 2201, 2301, 4001, 4201, 4301, 5001, 5201, 5301, + 2002, 2202, 2302, 4002, 4202, 4302, 5002, 5202, 5302, + 2003, 2203, 2303, 4003, 4203, 4303, 5003, 5203, 5303, + + // [1] + 1002, 1202, 1302, + 2104, 2105, 2106, + 4104, 4105, 4106, + 5104, 5105, 5106, + 3002, 3005, 3008, + 3202, 3205, 3208, + 3302, 3305, 3308, + + // [1][j] + 2004, 2204, 2304, 4004, 4204, 4304, 5004, 5204, 5304, + 2005, 2205, 2305, 4005, 4205, 4305, 5005, 5205, 5305, + 2006, 2206, 2306, 4006, 4206, 4306, 5006, 5206, 5306, + + // [2] + 1003, 1203, 1303, + 2107, 2108, 2109, + 4107, 4108, 4109, + 5107, 5108, 5109, + 3003, 3006, 3009, + 3203, 3206, 3209, + 3303, 3306, 3309, + + // [2][j] + 2007, 2207, 2307, 4007, 4207, 4307, 5007, 5207, 5307, + 2008, 2208, 2308, 4008, 4208, 4308, 5008, 5208, 5308, + 2009, 2209, 2309, 4009, 4209, 4309, 5009, 5209, 5309, +} diff --git a/gcc/testsuite/go.test/test/solitaire.go b/gcc/testsuite/go.test/test/solitaire.go new file mode 100644 index 0000000..c789bf2 --- /dev/null +++ b/gcc/testsuite/go.test/test/solitaire.go @@ -0,0 +1,119 @@ +// $G $F.go && $L $F.$A # don't run it - produces too much output + +// Copyright 2010 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +// This program solves the (English) peg solitaire board game. +// See also: http://en.wikipedia.org/wiki/Peg_solitaire + +package main + +const N = 11 + 1 // length of a board row (+1 for newline) + +// The board must be surrounded by 2 illegal fields in each direction +// so that move() doesn't need to check the board boundaries. Periods +// represent illegal fields, ● are pegs, and ○ are holes. +var board = []int( + `........... +........... +....●●●.... +....●●●.... +..●●●●●●●.. +..●●●○●●●.. +..●●●●●●●.. +....●●●.... +....●●●.... +........... +........... +`) + + +// center is the position of the center hole if there is a single one; +// otherwise it is -1. +var center int + +func init() { + n := 0 + for pos, field := range board { + if field == '○' { + center = pos + n++ + } + } + if n != 1 { + center = -1 // no single hole + } +} + + +var moves int // number of times move is called + +// move tests if there is a peg at position pos that can jump over another peg +// in direction dir. If the move is valid, it is executed and move returns true. +// Otherwise, move returns false. +func move(pos, dir int) bool { + moves++ + if board[pos] == '●' && board[pos+dir] == '●' && board[pos+2*dir] == '○' { + board[pos] = '○' + board[pos+dir] = '○' + board[pos+2*dir] = '●' + return true + } + return false +} + + +// unmove reverts a previously executed valid move. +func unmove(pos, dir int) { + board[pos] = '●' + board[pos+dir] = '●' + board[pos+2*dir] = '○' +} + + +// solve tries to find a sequence of moves such that there is only one peg left +// at the end; if center is >= 0, that last peg must be in the center position. +// If a solution is found, solve prints the board after each move in a backward +// fashion (i.e., the last board position is printed first, all the way back to +// the starting board position). +func solve() bool { + var last, n int + for pos, field := range board { + // try each board position + if field == '●' { + // found a peg + for _, dir := range [...]int{-1, -N, +1, +N} { + // try each direction + if move(pos, dir) { + // a valid move was found and executed, + // see if this new board has a solution + if solve() { + unmove(pos, dir) + println(string(board)) + return true + } + unmove(pos, dir) + } + } + last = pos + n++ + } + } + // tried each possible move + if n == 1 && (center < 0 || last == center) { + // there's only one peg left + println(string(board)) + return true + } + // no solution found for this board + return false +} + + +func main() { + if !solve() { + println("no solution found") + } + println(moves, "moves tried") +} diff --git a/gcc/testsuite/go.test/test/stack.go b/gcc/testsuite/go.test/test/stack.go new file mode 100644 index 0000000..816b555 --- /dev/null +++ b/gcc/testsuite/go.test/test/stack.go @@ -0,0 +1,72 @@ +// $G $D/$F.go && $L $F.$A && ./$A.out + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +// Try to tickle stack splitting bugs by doing +// go, defer, and closure calls at different stack depths. + +package main + +type T [20]int + +func g(c chan int, t T) { + s := 0 + for i := 0; i < len(t); i++ { + s += t[i] + } + c <- s +} + +func d(t T) { + s := 0 + for i := 0; i < len(t); i++ { + s += t[i] + } + if s != len(t) { + println("bad defer", s) + panic("fail") + } +} + +var c = make(chan int) +var t T +var b = []byte{1, 2, 3, 4, 5, 6, 7, 8, 9, 10} + +func recur(n int) { + ss := string(b) + if len(ss) != len(b) { + panic("bad []byte -> string") + } + go g(c, t) + s := <-c + if s != len(t) { + println("bad go", s) + panic("fail") + } + f := func(t T) int { + s := 0 + for i := 0; i < len(t); i++ { + s += t[i] + } + s += n + return s + } + s = f(t) + if s != len(t)+n { + println("bad func", s, "at level", n) + panic("fail") + } + if n > 0 { + recur(n - 1) + } + defer d(t) +} + +func main() { + for i := 0; i < len(t); i++ { + t[i] = 1 + } + recur(8000) +} diff --git a/gcc/testsuite/go.test/test/string_lit.go b/gcc/testsuite/go.test/test/string_lit.go new file mode 100644 index 0000000..4358dd8 --- /dev/null +++ b/gcc/testsuite/go.test/test/string_lit.go @@ -0,0 +1,120 @@ +// $G $F.go && $L $F.$A && ./$A.out + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package main + +import "os" + +var ecode int + +func assert(a, b, c string) { + if a != b { + ecode = 1 + print("FAIL: ", c, ": ", a, "!=", b, "\n") + var max int = len(a) + if len(b) > max { + max = len(b) + } + for i := 0; i < max; i++ { + ac := 0 + bc := 0 + if i < len(a) { + ac = int(a[i]) + } + if i < len(b) { + bc = int(b[i]) + } + if ac != bc { + print("\ta[", i, "] = ", ac, "; b[", i, "] =", bc, "\n") + } + } + } +} + +const ( + gx1 = "aä本☺" + gx2 = "aä\xFF\xFF本☺" + gx2fix = "aä\uFFFD\uFFFD本☺" +) + +var ( + gr1 = []int(gx1) + gr2 = []int(gx2) + gb1 = []byte(gx1) + gb2 = []byte(gx2) +) + +func main() { + ecode = 0 + s := + "" + + " " + + "'`" + + "a" + + "ä" + + "本" + + "\a\b\f\n\r\t\v\\\"" + + "\000\123\x00\xca\xFE\u0123\ubabe\U0000babe" + + + `` + + ` ` + + `'"` + + `a` + + `ä` + + `本` + + `\a\b\f\n\r\t\v\\\'` + + `\000\123\x00\xca\xFE\u0123\ubabe\U0000babe` + + `\x\u\U\` + + assert("", ``, "empty") + assert(" ", " ", "blank") + assert("\x61", "a", "lowercase a") + assert("\x61", `a`, "lowercase a (backquote)") + assert("\u00e4", "ä", "a umlaut") + assert("\u00e4", `ä`, "a umlaut (backquote)") + assert("\u672c", "本", "nihon") + assert("\u672c", `本`, "nihon (backquote)") + assert("\x07\x08\x0c\x0a\x0d\x09\x0b\x5c\x22", + "\a\b\f\n\r\t\v\\\"", + "backslashes") + assert("\\a\\b\\f\\n\\r\\t\\v\\\\\\\"", + `\a\b\f\n\r\t\v\\\"`, + "backslashes (backquote)") + assert("\x00\x53\000\xca\376S몾몾", + "\000\123\x00\312\xFE\u0053\ubabe\U0000babe", + "backslashes 2") + assert("\\000\\123\\x00\\312\\xFE\\u0123\\ubabe\\U0000babe", + `\000\123\x00\312\xFE\u0123\ubabe\U0000babe`, + "backslashes 2 (backquote)") + assert("\\x\\u\\U\\", `\x\u\U\`, "backslash 3 (backquote)") + + // test large runes. perhaps not the most logical place for this test. + var r int32 + r = 0x10ffff; // largest rune value + s = string(r) + assert(s, "\xf4\x8f\xbf\xbf", "largest rune") + r = 0x10ffff + 1 + s = string(r) + assert(s, "\xef\xbf\xbd", "too-large rune") + + assert(string(gr1), gx1, "global ->[]int") + assert(string(gr2), gx2fix, "global invalid ->[]int") + assert(string(gb1), gx1, "->[]byte") + assert(string(gb2), gx2, "global invalid ->[]byte") + + var ( + r1 = []int(gx1) + r2 = []int(gx2) + b1 = []byte(gx1) + b2 = []byte(gx2) + ) + assert(string(r1), gx1, "->[]int") + assert(string(r2), gx2fix, "invalid ->[]int") + assert(string(b1), gx1, "->[]byte") + assert(string(b2), gx2, "invalid ->[]byte") + + os.Exit(ecode) +} diff --git a/gcc/testsuite/go.test/test/stringrange.go b/gcc/testsuite/go.test/test/stringrange.go new file mode 100644 index 0000000..d5ada26 --- /dev/null +++ b/gcc/testsuite/go.test/test/stringrange.go @@ -0,0 +1,61 @@ +// $G $F.go && $L $F.$A && ./$A.out + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package main + +import ( + "fmt" + "os" + "utf8" +) + +func main() { + s := "\000\123\x00\xca\xFE\u0123\ubabe\U0000babe\U0010FFFFx" + expect := []int{ 0, 0123, 0, 0xFFFD, 0xFFFD, 0x123, 0xbabe, 0xbabe, 0x10FFFF, 'x' } + offset := 0 + var i, c int + ok := true + cnum := 0 + for i, c = range s { + rune, size := utf8.DecodeRuneInString(s[i:len(s)]) // check it another way + if i != offset { + fmt.Printf("unexpected offset %d not %d\n", i, offset) + ok = false + } + if rune != expect[cnum] { + fmt.Printf("unexpected rune %d from DecodeRuneInString: %x not %x\n", i, rune, expect[cnum]) + ok = false + } + if c != expect[cnum] { + fmt.Printf("unexpected rune %d from range: %x not %x\n", i, rune, expect[cnum]) + ok = false + } + offset += size + cnum++ + } + if i != len(s)-1 { + fmt.Println("after loop i is", i, "not", len(s)-1) + ok = false + } + + i = 12345 + c = 23456 + for i, c = range "" { + } + if i != 12345 { + fmt.Println("range empty string assigned to index:", i) + ok = false + } + if c != 23456 { + fmt.Println("range empty string assigned to value:", c) + ok = false + } + + if !ok { + fmt.Println("BUG: stringrange") + os.Exit(1) + } +} diff --git a/gcc/testsuite/go.test/test/switch.go b/gcc/testsuite/go.test/test/switch.go new file mode 100644 index 0000000..0c253d6 --- /dev/null +++ b/gcc/testsuite/go.test/test/switch.go @@ -0,0 +1,139 @@ +// $G $F.go && $L $F.$A && ./$A.out + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package main + +func assert(cond bool, msg string) { + if !cond { + print("assertion fail: ", msg, "\n") + panic(1) + } +} + +func main() { + i5 := 5 + i7 := 7 + hello := "hello" + + switch true { + case i5 < 5: assert(false, "<") + case i5 == 5: assert(true, "!") + case i5 > 5: assert(false, ">") + } + + switch { + case i5 < 5: assert(false, "<") + case i5 == 5: assert(true, "!") + case i5 > 5: assert(false, ">") + } + + switch x := 5; true { + case i5 < x: assert(false, "<") + case i5 == x: assert(true, "!") + case i5 > x: assert(false, ">") + } + + switch x := 5; true { + case i5 < x: assert(false, "<") + case i5 == x: assert(true, "!") + case i5 > x: assert(false, ">") + } + + switch i5 { + case 0: assert(false, "0") + case 1: assert(false, "1") + case 2: assert(false, "2") + case 3: assert(false, "3") + case 4: assert(false, "4") + case 5: assert(true, "5") + case 6: assert(false, "6") + case 7: assert(false, "7") + case 8: assert(false, "8") + case 9: assert(false, "9") + default: assert(false, "default") + } + + switch i5 { + case 0,1,2,3,4: assert(false, "4") + case 5: assert(true, "5") + case 6,7,8,9: assert(false, "9") + default: assert(false, "default") + } + + switch i5 { + case 0: + case 1: + case 2: + case 3: + case 4: assert(false, "4") + case 5: assert(true, "5") + case 6: + case 7: + case 8: + case 9: + default: assert(i5 == 5, "good") + } + + switch i5 { + case 0: dummy := 0; _ = dummy; fallthrough + case 1: dummy := 0; _ = dummy; fallthrough + case 2: dummy := 0; _ = dummy; fallthrough + case 3: dummy := 0; _ = dummy; fallthrough + case 4: dummy := 0; _ = dummy; assert(false, "4") + case 5: dummy := 0; _ = dummy; fallthrough + case 6: dummy := 0; _ = dummy; fallthrough + case 7: dummy := 0; _ = dummy; fallthrough + case 8: dummy := 0; _ = dummy; fallthrough + case 9: dummy := 0; _ = dummy; fallthrough + default: dummy := 0; _ = dummy; assert(i5 == 5, "good") + } + + fired := false + switch i5 { + case 0: dummy := 0; _ = dummy; fallthrough; // tests scoping of cases + case 1: dummy := 0; _ = dummy; fallthrough + case 2: dummy := 0; _ = dummy; fallthrough + case 3: dummy := 0; _ = dummy; fallthrough + case 4: dummy := 0; _ = dummy; assert(false, "4") + case 5: dummy := 0; _ = dummy; fallthrough + case 6: dummy := 0; _ = dummy; fallthrough + case 7: dummy := 0; _ = dummy; fallthrough + case 8: dummy := 0; _ = dummy; fallthrough + case 9: dummy := 0; _ = dummy; fallthrough + default: dummy := 0; _ = dummy; fired = !fired; assert(i5 == 5, "good") + } + assert(fired, "fired") + + count := 0 + switch i5 { + case 0: count = count + 1; fallthrough + case 1: count = count + 1; fallthrough + case 2: count = count + 1; fallthrough + case 3: count = count + 1; fallthrough + case 4: count = count + 1; assert(false, "4") + case 5: count = count + 1; fallthrough + case 6: count = count + 1; fallthrough + case 7: count = count + 1; fallthrough + case 8: count = count + 1; fallthrough + case 9: count = count + 1; fallthrough + default: assert(i5 == count, "good") + } + assert(fired, "fired") + + switch hello { + case "wowie": assert(false, "wowie") + case "hello": assert(true, "hello") + case "jumpn": assert(false, "jumpn") + default: assert(false, "default") + } + + fired = false + switch i := i5 + 2; i { + case i7: fired = true + default: assert(false, "fail") + } + assert(fired, "var") +} diff --git a/gcc/testsuite/go.test/test/switch1.go b/gcc/testsuite/go.test/test/switch1.go new file mode 100644 index 0000000..5bd9d7c --- /dev/null +++ b/gcc/testsuite/go.test/test/switch1.go @@ -0,0 +1,20 @@ +// $G $F.go && $L $F.$A && ./$A.out + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package main + +import "os" + +func main() { + i := 0 + switch x := 5; { + case i < x: + os.Exit(0) + case i == x: + case i > x: + os.Exit(1) + } +} diff --git a/gcc/testsuite/go.test/test/syntax/forvar.go b/gcc/testsuite/go.test/test/syntax/forvar.go new file mode 100644 index 0000000..f12ce55 --- /dev/null +++ b/gcc/testsuite/go.test/test/syntax/forvar.go @@ -0,0 +1,10 @@ +// errchk $G -e $D/$F.go + +// Copyright 2010 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package main + +func main() { + for var x = 0; x < 10; x++ { // ERROR "var declaration not allowed in for initializer" diff --git a/gcc/testsuite/go.test/test/syntax/import.go b/gcc/testsuite/go.test/test/syntax/import.go new file mode 100644 index 0000000..dd1f261 --- /dev/null +++ b/gcc/testsuite/go.test/test/syntax/import.go @@ -0,0 +1,14 @@ +// errchk $G -e $D/$F.go + +// Copyright 2010 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package main + +import ( + "io", // ERROR "unexpected comma" + "os" +) + + diff --git a/gcc/testsuite/go.test/test/syntax/interface.go b/gcc/testsuite/go.test/test/syntax/interface.go new file mode 100644 index 0000000..a7f4353 --- /dev/null +++ b/gcc/testsuite/go.test/test/syntax/interface.go @@ -0,0 +1,14 @@ +// errchk $G -e $D/$F.go + +// Copyright 2010 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package main + +type T interface { + f, g () // ERROR "name list not allowed in interface type" +} + + + diff --git a/gcc/testsuite/go.test/test/syntax/semi1.go b/gcc/testsuite/go.test/test/syntax/semi1.go new file mode 100644 index 0000000..547d9bf --- /dev/null +++ b/gcc/testsuite/go.test/test/syntax/semi1.go @@ -0,0 +1,14 @@ +// errchk $G -e $D/$F.go + +// Copyright 2010 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package main + +func main() { + if x; y // ERROR "unexpected semicolon or newline before .?{.?|undefined" + { + z // GCCGO_ERROR "undefined" + + diff --git a/gcc/testsuite/go.test/test/syntax/semi2.go b/gcc/testsuite/go.test/test/syntax/semi2.go new file mode 100644 index 0000000..28d1d39 --- /dev/null +++ b/gcc/testsuite/go.test/test/syntax/semi2.go @@ -0,0 +1,14 @@ +// errchk $G -e $D/$F.go + +// Copyright 2010 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package main + +func main() { + switch x; y // ERROR "unexpected semicolon or newline before .?{.?|undefined" + { + z + + diff --git a/gcc/testsuite/go.test/test/syntax/semi3.go b/gcc/testsuite/go.test/test/syntax/semi3.go new file mode 100644 index 0000000..ab5941b --- /dev/null +++ b/gcc/testsuite/go.test/test/syntax/semi3.go @@ -0,0 +1,14 @@ +// errchk $G -e $D/$F.go + +// Copyright 2010 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package main + +func main() { + for x; y; z // ERROR "unexpected semicolon or newline before .?{.?|undefined" + { + z // GCCGO_ERROR "undefined" + + diff --git a/gcc/testsuite/go.test/test/syntax/semi4.go b/gcc/testsuite/go.test/test/syntax/semi4.go new file mode 100644 index 0000000..7a9c295 --- /dev/null +++ b/gcc/testsuite/go.test/test/syntax/semi4.go @@ -0,0 +1,14 @@ +// errchk $G -e $D/$F.go + +// Copyright 2010 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package main + +func main() { + for x // GCCGO_ERROR "undefined" + { // ERROR "unexpected semicolon or newline before .?{.?" + z // GCCGO_ERROR "undefined" + + diff --git a/gcc/testsuite/go.test/test/syntax/semi5.go b/gcc/testsuite/go.test/test/syntax/semi5.go new file mode 100644 index 0000000..5f8ccc6 --- /dev/null +++ b/gcc/testsuite/go.test/test/syntax/semi5.go @@ -0,0 +1,13 @@ +// errchk $G -e $D/$F.go + +// Copyright 2010 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package main + +func main() +{ // ERROR "unexpected semicolon or newline before .?{.?" + + + diff --git a/gcc/testsuite/go.test/test/syntax/semi6.go b/gcc/testsuite/go.test/test/syntax/semi6.go new file mode 100644 index 0000000..b6279ed --- /dev/null +++ b/gcc/testsuite/go.test/test/syntax/semi6.go @@ -0,0 +1,13 @@ +// errchk $G -e $D/$F.go + +// Copyright 2010 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package main + +type T // ERROR "unexpected semicolon or newline in type declaration" +{ + + + diff --git a/gcc/testsuite/go.test/test/syntax/semi7.go b/gcc/testsuite/go.test/test/syntax/semi7.go new file mode 100644 index 0000000..5a7b3ff --- /dev/null +++ b/gcc/testsuite/go.test/test/syntax/semi7.go @@ -0,0 +1,14 @@ +// errchk $G -e $D/$F.go + +// Copyright 2010 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package main + +func main() { + if x { } // GCCGO_ERROR "undefined" + else { } // ERROR "unexpected semicolon or newline before .?else.?" +} + + diff --git a/gcc/testsuite/go.test/test/syntax/topexpr.go b/gcc/testsuite/go.test/test/syntax/topexpr.go new file mode 100644 index 0000000..93d86fb --- /dev/null +++ b/gcc/testsuite/go.test/test/syntax/topexpr.go @@ -0,0 +1,20 @@ +// errchk $G -e $D/$F.go + +// Copyright 2010 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package main + +fmt.Printf("hello") // ERROR "non-declaration statement outside function body|expected declaration" + +func main() { +} + +x++ // ERROR "non-declaration statement outside function body|expected declaration" + +func init() { +} + +x,y := 1, 2 // ERROR "non-declaration statement outside function body|expected declaration" + diff --git a/gcc/testsuite/go.test/test/syntax/vareq.go b/gcc/testsuite/go.test/test/syntax/vareq.go new file mode 100644 index 0000000..8525be8 --- /dev/null +++ b/gcc/testsuite/go.test/test/syntax/vareq.go @@ -0,0 +1,10 @@ +// errchk $G -e $D/$F.go + +// Copyright 2010 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package main + +func main() { + var x map[string]string{"a":"b"} // ERROR "unexpected { at end of statement|expected ';' or '}' or newline" diff --git a/gcc/testsuite/go.test/test/syntax/vareq1.go b/gcc/testsuite/go.test/test/syntax/vareq1.go new file mode 100644 index 0000000..9d70bea --- /dev/null +++ b/gcc/testsuite/go.test/test/syntax/vareq1.go @@ -0,0 +1,10 @@ +// errchk $G -e $D/$F.go + +// Copyright 2010 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package main + +var x map[string]string{"a":"b"} // ERROR "unexpected { at end of statement|expected ';' or newline after top level declaration" + diff --git a/gcc/testsuite/go.test/test/test0.go b/gcc/testsuite/go.test/test/test0.go new file mode 100644 index 0000000..dd2033a --- /dev/null +++ b/gcc/testsuite/go.test/test/test0.go @@ -0,0 +1,86 @@ +// $G $F.go && $L $F.$A && ./$A.out + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package main + +const + a_const = 0 + +const ( + pi = /* the usual */ 3.14159265358979323 + e = 2.718281828 + mask1 int = 1 << iota + mask2 = 1 << iota + mask3 = 1 << iota + mask4 = 1 << iota +) + +type ( + Empty interface {} + Point struct { + x, y int + } + Point2 Point +) + +func (p *Point) Initialize(x, y int) *Point { + p.x, p.y = x, y + return p +} + +func (p *Point) Distance() int { + return p.x * p.x + p.y * p.y +} + +var ( + x1 int + x2 int + u, v, w float +) + +func foo() {} + +func min(x, y int) int { + if x < y { return x; } + return y +} + +func swap(x, y int) (u, v int) { + u = y + v = x + return +} + +func control_structs() { + var p *Point = new(Point).Initialize(2, 3) + i := p.Distance() + var f float = 0.3 + _ = f + for {} + for {} + for j := 0; j < i; j++ { + if i == 0 { + } else i = 0 + var x float + _ = x + } + foo: // a label + var j int + switch y := 0; true { + case i < y: + fallthrough + case i < j: + case i == 0, i == 1, i == j: + i++; i++ + goto foo + default: + i = -+-+i + break + } +} + +func main() { +} diff --git a/gcc/testsuite/go.test/test/turing.go b/gcc/testsuite/go.test/test/turing.go new file mode 100644 index 0000000..0af39de --- /dev/null +++ b/gcc/testsuite/go.test/test/turing.go @@ -0,0 +1,52 @@ +// $G $F.go && $L $F.$A && ./$A.out + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package main + +// brainfuck + +var p, pc int +var a [30000]byte +const prog = "++++++++++[>+++++++>++++++++++>+++>+<<<<-]>++.>+.+++++++..+++.>++.<<+++++++++++++++.>.+++.------.--------.>+.>.!" + +func scan(dir int) { + for nest := dir; dir*nest > 0; pc += dir { + switch prog[pc+dir] { + case ']': + nest-- + case '[': + nest++ + } + } +} + +func main() { + for { + switch prog[pc] { + case '>': + p++ + case '<': + p-- + case '+': + a[p]++ + case '-': + a[p]-- + case '.': + print(string(a[p])) + case '[': + if a[p] == 0 { + scan(1) + } + case ']': + if a[p] != 0 { + scan(-1) + } + default: + return + } + pc++ + } +} diff --git a/gcc/testsuite/go.test/test/typeswitch.go b/gcc/testsuite/go.test/test/typeswitch.go new file mode 100644 index 0000000..9e6d10e --- /dev/null +++ b/gcc/testsuite/go.test/test/typeswitch.go @@ -0,0 +1,112 @@ +// $G $F.go && $L $F.$A && ./$A.out + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package main + +import "os" + +const ( + Bool = iota + Int + Float + String + Struct + Chan + Array + Map + Func + Last +) + +type S struct { a int } +var s S = S{1234} + +var c = make(chan int) + +var a = []int{0,1,2,3} + +var m = make(map[string]int) + +func assert(b bool, s string) { + if !b { + println(s) + os.Exit(1) + } +} + +func f(i int) interface{} { + switch i { + case Bool: + return true + case Int: + return 7 + case Float: + return 7.4 + case String: + return "hello" + case Struct: + return s + case Chan: + return c + case Array: + return a + case Map: + return m + case Func: + return f + } + panic("bad type number") +} + +func main() { + for i := Bool; i < Last; i++ { + switch x := f(i).(type) { + case bool: + assert(x == true && i == Bool, "bool") + case int: + assert(x == 7 && i == Int, "int") + case float: + assert(x == 7.4 && i == Float, "float") + case string: + assert(x == "hello"&& i == String, "string") + case S: + assert(x.a == 1234 && i == Struct, "struct") + case chan int: + assert(x == c && i == Chan, "chan") + case []int: + assert(x[3] == 3 && i == Array, "array") + case map[string]int: + assert(x == m && i == Map, "map") + case func(i int) interface{}: + assert(x == f && i == Func, "fun") + default: + assert(false, "unknown") + } + } + + // boolean switch (has had bugs in past; worth writing down) + switch { + case true: + assert(true, "switch 2 bool") + default: + assert(false, "switch 2 unknown") + } + + switch true { + case true: + assert(true, "switch 3 bool") + default: + assert(false, "switch 3 unknown") + } + + switch false { + case false: + assert(true, "switch 4 bool") + default: + assert(false, "switch 4 unknown") + } + +} diff --git a/gcc/testsuite/go.test/test/typeswitch1.go b/gcc/testsuite/go.test/test/typeswitch1.go new file mode 100644 index 0000000..9613b16 --- /dev/null +++ b/gcc/testsuite/go.test/test/typeswitch1.go @@ -0,0 +1,83 @@ +// $G $D/$F.go && $L $F.$A && ./$A.out + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package main + +import "fmt" + +const ( + a = iota + b + c + d + e +) + +var x = []int{1, 2, 3} + +func f(x int, len *byte) { + *len = byte(x) +} + +func whatis(x interface{}) string { + switch xx := x.(type) { + default: + return fmt.Sprint("default ", xx) + case int, int8, int16, int32: + return fmt.Sprint("signed ", xx) + case int64: + return fmt.Sprint("signed64 ", int64(xx)) + case uint, uint8, uint16, uint32: + return fmt.Sprint("unsigned ", xx) + case uint64: + return fmt.Sprint("unsigned64 ", uint64(xx)) + case nil: + return fmt.Sprint("nil ", xx) + } + panic("not reached") +} + +func whatis1(x interface{}) string { + xx := x + switch xx.(type) { + default: + return fmt.Sprint("default ", xx) + case int, int8, int16, int32: + return fmt.Sprint("signed ", xx) + case int64: + return fmt.Sprint("signed64 ", xx.(int64)) + case uint, uint8, uint16, uint32: + return fmt.Sprint("unsigned ", xx) + case uint64: + return fmt.Sprint("unsigned64 ", xx.(uint64)) + case nil: + return fmt.Sprint("nil ", xx) + } + panic("not reached") +} + +func check(x interface{}, s string) { + w := whatis(x) + if w != s { + fmt.Println("whatis", x, "=>", w, "!=", s) + panic("fail") + } + + w = whatis1(x) + if w != s { + fmt.Println("whatis1", x, "=>", w, "!=", s) + panic("fail") + } +} + +func main() { + check(1, "signed 1") + check(uint(1), "unsigned 1") + check(int64(1), "signed64 1") + check(uint64(1), "unsigned64 1") + check(1.5, "default 1.5") + check(nil, "nil <nil>") +} diff --git a/gcc/testsuite/go.test/test/typeswitch2.go b/gcc/testsuite/go.test/test/typeswitch2.go new file mode 100644 index 0000000..f8fe396 --- /dev/null +++ b/gcc/testsuite/go.test/test/typeswitch2.go @@ -0,0 +1,28 @@ +// errchk $G -e $D/$F.go + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package main + +import "io" + +func whatis(x interface{}) string { + switch x.(type) { + case int: + return "int" + case int: // ERROR "duplicate" + return "int8" + case io.Reader: + return "Reader1" + case io.Reader: // ERROR "duplicate" + return "Reader2" + case interface { r(); w() }: + return "rw" + case interface { w(); r() }: // ERROR "duplicate" + return "wr" + + } + return "" +} diff --git a/gcc/testsuite/go.test/test/undef.go b/gcc/testsuite/go.test/test/undef.go new file mode 100644 index 0000000..7ef0788 --- /dev/null +++ b/gcc/testsuite/go.test/test/undef.go @@ -0,0 +1,44 @@ +// errchk $G -e $D/$F.go + +// Copyright 2010 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +// Check line numbers in error messages. + +package main + +var ( + _ = x // ERROR "undefined.*x" + _ = x // ERROR "undefined.*x" + _ = x // ERROR "undefined.*x" +) + +type T struct { + y int +} + +func foo() *T { return &T{y: 99} } +func bar() int { return y } // ERROR "undefined.*y" + +type T1 struct { + y1 int +} + +func foo1() *T1 { return &T1{y1: 99} } +var y1 = 2 +func bar1() int { return y1 } + +func f1(val interface{}) { + switch v := val.(type) { + default: + println(v) + } +} + +func f2(val interface{}) { + switch val.(type) { + default: + println(v) // ERROR "undefined.*v" + } +} diff --git a/gcc/testsuite/go.test/test/utf.go b/gcc/testsuite/go.test/test/utf.go new file mode 100644 index 0000000..a93fc29 --- /dev/null +++ b/gcc/testsuite/go.test/test/utf.go @@ -0,0 +1,54 @@ +// $G $F.go && $L $F.$A && ./$A.out + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package main + +import "utf8" + +func main() { + var chars [6] int + chars[0] = 'a' + chars[1] = 'b' + chars[2] = 'c' + chars[3] = '\u65e5' + chars[4] = '\u672c' + chars[5] = '\u8a9e' + s := "" + for i := 0; i < 6; i++ { + s += string(chars[i]) + } + var l = len(s) + for w, i, j := 0,0,0; i < l; i += w { + var r int + r, w = utf8.DecodeRuneInString(s[i:len(s)]) + if w == 0 { panic("zero width in string") } + if r != chars[j] { panic("wrong value from string") } + j++ + } + // encoded as bytes: 'a' 'b' 'c' e6 97 a5 e6 9c ac e8 aa 9e + const L = 12 + if L != l { panic("wrong length constructing array") } + a := make([]byte, L) + a[0] = 'a' + a[1] = 'b' + a[2] = 'c' + a[3] = 0xe6 + a[4] = 0x97 + a[5] = 0xa5 + a[6] = 0xe6 + a[7] = 0x9c + a[8] = 0xac + a[9] = 0xe8 + a[10] = 0xaa + a[11] = 0x9e + for w, i, j := 0,0,0; i < L; i += w { + var r int + r, w = utf8.DecodeRune(a[i:L]) + if w == 0 { panic("zero width in bytes") } + if r != chars[j] { panic("wrong value from bytes") } + j++ + } +} diff --git a/gcc/testsuite/go.test/test/varerr.go b/gcc/testsuite/go.test/test/varerr.go new file mode 100644 index 0000000..ddd718f --- /dev/null +++ b/gcc/testsuite/go.test/test/varerr.go @@ -0,0 +1,14 @@ +// errchk $G $D/$F.go + +// Copyright 2010 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package main + +func main() { + _ = asdf // ERROR "undefined.*asdf" + + new = 1 // ERROR "use of builtin new not in function call|invalid left hand side" +} + diff --git a/gcc/testsuite/go.test/test/varinit.go b/gcc/testsuite/go.test/test/varinit.go new file mode 100644 index 0000000..c768777 --- /dev/null +++ b/gcc/testsuite/go.test/test/varinit.go @@ -0,0 +1,29 @@ +// $G $D/$F.go && $L $F.$A && ./$A.out || echo BUG wrong result + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package main + +func main() { + var x int = 1 + if x != 1 { + print("found ", x, ", expected 1\n") + panic("fail") + } + { + var x int = x + 1 + if x != 2 { + print("found ", x, ", expected 2\n") + panic("fail") + } + } + { + x := x + 1 + if x != 2 { + print("found ", x, ", expected 2\n") + panic("fail") + } + } +} diff --git a/gcc/testsuite/go.test/test/vectors.go b/gcc/testsuite/go.test/test/vectors.go new file mode 100644 index 0000000..ed5905d --- /dev/null +++ b/gcc/testsuite/go.test/test/vectors.go @@ -0,0 +1,64 @@ +// $G $F.go && $L $F.$A && ./$A.out + +// Copyright 2009 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package main + +import "container/vector" + + +type S struct { + val int +} + + +func (p *S) Init(val int) *S { + p.val = val + return p +} + + +func test0() { + v := new(vector.Vector) + if v.Len() != 0 { + print("len = ", v.Len(), "\n") + panic("fail") + } +} + + +func test1() { + var a [1000]*S + for i := 0; i < len(a); i++ { + a[i] = new(S).Init(i) + } + + v := new(vector.Vector) + for i := 0; i < len(a); i++ { + v.Insert(0, a[i]) + if v.Len() != i+1 { + print("len = ", v.Len(), "\n") + panic("fail") + } + } + + for i := 0; i < v.Len(); i++ { + x := v.At(i).(*S) + if x.val != v.Len()-i-1 { + print("expected ", i, ", found ", x.val, "\n") + panic("fail") + } + } + + for v.Len() > 10 { + v.Delete(10) + } +} + + +func main() { + test0() + test1() +} diff --git a/gcc/testsuite/go.test/test/zerodivide.go b/gcc/testsuite/go.test/test/zerodivide.go new file mode 100644 index 0000000..5fe1eb0 --- /dev/null +++ b/gcc/testsuite/go.test/test/zerodivide.go @@ -0,0 +1,208 @@ +// $G $F.go && $L $F.$A && ./$A.out + +// Copyright 2010 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +package main + +import ( + "fmt" + "math" + "strings" + "syscall" +) + +type Error interface { + String() string +} + +type ErrorTest struct { + name string + fn func() + err string +} + +var ( + i, j, k int = 0, 0, 1 + i8, j8, k8 int8 = 0, 0, 1 + i16, j16, k16 int16 = 0, 0, 1 + i32, j32, k32 int32 = 0, 0, 1 + i64, j64, k64 int64 = 0, 0, 1 + + u, v, w uint = 0, 0, 1 + u8, v8, w8 uint8 = 0, 0, 1 + u16, v16, w16 uint16 = 0, 0, 1 + u32, v32, w32 uint32 = 0, 0, 1 + u64, v64, w64 uint64 = 0, 0, 1 + up, vp, wp uintptr = 0, 0, 1 + + f, g, h float = 0, 0, 1 + f32, g32, h32 float32 = 0, 0, 1 + f64, g64, h64, inf, negInf, nan float64 = 0, 0, 1, math.Inf(1), math.Inf(-1), math.NaN() + + c, d, e complex = 0+0i, 0+0i, 1+1i + c64, d64, e64 complex64 = 0+0i, 0+0i, 1+1i + c128, d128, e128 complex128 = 0+0i, 0+0i, 1+1i +) + +// Fool gccgo into thinking that these variables can change. +func NotCalled() { + i++; j++; k++ + i8++; j8++; k8++ + i16++; j16++; k16++ + i32++; j32++; k32++ + i64++; j64++; k64++ + + u++; v++; w++ + u8++; v8++; w8++ + u16++; v16++; w16++ + u32++; v32++; w32++ + u64++; v64++; w64++ + up++; vp++; wp++ + + f += 1; g += 1; h += 1 + f32 += 1; g32 += 1; h32 += 1 + f64 += 1; g64 += 1; h64 += 1 + + c += 1+1i; d += 1+1i; e += 1+1i + c64 += 1+1i; d64 += 1+1i; e64 += 1+1i + c128 += 1+1i; d128 += 1+1i; e128 += 1+1i +} + +var tmp interface{} + +// We could assign to _ but the compiler optimizes it too easily. +func use(v interface{}) { + tmp = v +} + +// Verify error/no error for all types. +var errorTests = []ErrorTest{ + // All integer divide by zero should error. + ErrorTest{ "int 0/0", func() { use(i/j) }, "divide", }, + ErrorTest{ "int8 0/0", func() { use(i8/j8) }, "divide", }, + ErrorTest{ "int16 0/0", func() { use(i16/j16) }, "divide", }, + ErrorTest{ "int32 0/0", func() { use(i32/j32) }, "divide", }, + ErrorTest{ "int64 0/0", func() { use(i64/j64) }, "divide", }, + + ErrorTest{ "int 1/0", func() { use(k/j) }, "divide", }, + ErrorTest{ "int8 1/0", func() { use(k8/j8) }, "divide", }, + ErrorTest{ "int16 1/0", func() { use(k16/j16) }, "divide", }, + ErrorTest{ "int32 1/0", func() { use(k32/j32) }, "divide", }, + ErrorTest{ "int64 1/0", func() { use(k64/j64) }, "divide", }, + + ErrorTest{ "uint 0/0", func() { use(u/v) }, "divide", }, + ErrorTest{ "uint8 0/0", func() { use(u8/v8) }, "divide", }, + ErrorTest{ "uint16 0/0", func() { use(u16/v16) }, "divide", }, + ErrorTest{ "uint32 0/0", func() { use(u32/v32) }, "divide", }, + ErrorTest{ "uint64 0/0", func() { use(u64/v64) }, "divide", }, + ErrorTest{ "uintptr 0/0", func() { use(up/vp) }, "divide", }, + + ErrorTest{ "uint 1/0", func() { use(w/v) }, "divide", }, + ErrorTest{ "uint8 1/0", func() { use(w8/v8) }, "divide", }, + ErrorTest{ "uint16 1/0", func() { use(w16/v16) }, "divide", }, + ErrorTest{ "uint32 1/0", func() { use(w32/v32) }, "divide", }, + ErrorTest{ "uint64 1/0", func() { use(w64/v64) }, "divide", }, + ErrorTest{ "uintptr 1/0", func() { use(wp/vp) }, "divide", }, + + // All floating divide by zero should not error. + ErrorTest{ "float 0/0", func() { use(f/g) }, "", }, + ErrorTest{ "float32 0/0", func() { use(f32/g32) }, "", }, + ErrorTest{ "float64 0/0", func() { use(f64/g64) }, "", }, + + ErrorTest{ "float 1/0", func() { use(h/g) }, "", }, + ErrorTest{ "float32 1/0", func() { use(h32/g32) }, "", }, + ErrorTest{ "float64 1/0", func() { use(h64/g64) }, "", }, + ErrorTest{ "float64 inf/0", func() { use(inf/g64) }, "", }, + ErrorTest{ "float64 -inf/0", func() { use(negInf/g64) }, "", }, + ErrorTest{ "float64 nan/0", func() { use(nan/g64) }, "", }, + + // All complex divide by zero should not error. + ErrorTest{ "complex 0/0", func() { use(c/d) }, "", }, + ErrorTest{ "complex64 0/0", func() { use(c64/d64) }, "", }, + ErrorTest{ "complex128 0/0", func() { use(c128/d128) }, "", }, + + ErrorTest{ "complex 1/0", func() { use(e/d) }, "", }, + ErrorTest{ "complex64 1/0", func() { use(e64/d64) }, "", }, + ErrorTest{ "complex128 1/0", func() { use(e128/d128) }, "", }, +} + +func error(fn func()) (error string) { + defer func() { + if e := recover(); e != nil { + error = e.(Error).String() + } + }() + fn() + return "" +} + +type FloatTest struct{ + f, g float64 + out float64 +} + +var floatTests = []FloatTest{ + FloatTest{0, 0, nan}, + FloatTest{nan, 0, nan}, + FloatTest{inf, 0, inf}, + FloatTest{negInf, 0, negInf}, +} + +func alike(a, b float64) bool { + switch { + case math.IsNaN(a) && math.IsNaN(b): + return true + case a == b: + return math.Signbit(a) == math.Signbit(b) + } + return false +} + +func main() { + bad := false + for _, t := range errorTests { + if t.err != "" && syscall.OS == "nacl" { + continue + } + err := error(t.fn) + switch { + case t.err == "" && err == "": + // fine + case t.err != "" && err == "": + if !bad { + bad = true + fmt.Printf("BUG\n") + } + fmt.Printf("%s: expected %q; got no error\n", t.name, t.err) + case t.err == "" && err != "": + if !bad { + bad = true + fmt.Printf("BUG\n") + } + fmt.Printf("%s: expected no error; got %q\n", t.name, err) + case t.err != "" && err != "": + if strings.Index(err, t.err) < 0 { + if !bad { + bad = true + fmt.Printf("BUG\n") + } + fmt.Printf("%s: expected %q; got %q\n", t.name, t.err, err) + continue + } + } + } + + // At this point we know we don't error on the values we're testing + for _, t := range floatTests { + x := t.f/t.g + if !alike(x, t.out) { + if !bad { + bad = true + fmt.Printf("BUG\n") + } + fmt.Printf("%v/%v: expected %g error; got %g\n", t.f, t.g, t.out, x) + } + } +} diff --git a/gcc/testsuite/lib/go-dg.exp b/gcc/testsuite/lib/go-dg.exp new file mode 100644 index 0000000..16bf12d --- /dev/null +++ b/gcc/testsuite/lib/go-dg.exp @@ -0,0 +1,65 @@ +# Copyright (C) 2009 Free Software Foundation, Inc. + +# This program is free software; you can redistribute it and/or modify +# it under the terms of the GNU General Public License as published by +# the Free Software Foundation; either version 3 of the License, or +# (at your option) any later version. +# +# This program is distributed in the hope that it will be useful, +# but WITHOUT ANY WARRANTY; without even the implied warranty of +# MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the +# GNU General Public License for more details. +# +# You should have received a copy of the GNU General Public License +# along with GCC; see the file COPYING3. If not see +# <http://www.gnu.org/licenses/>. + +load_lib gcc-dg.exp + +# Define go callbacks for dg.exp. + +proc go-dg-test { prog do_what extra_tool_flags } { + set result \ + [gcc-dg-test-1 go_target_compile $prog $do_what $extra_tool_flags] + + set comp_output [lindex $result 0] + set output_file [lindex $result 1] + + return [list $comp_output $output_file] +} + +proc go-dg-prune { system text } { + return [gcc-dg-prune $system $text] +} + +# Utility routines. + +# Modified dg-runtest that can cycle through a list of optimization options +# as c-torture does. +proc go-dg-runtest { testcases default-extra-flags } { + global runtests + global TORTURE_OPTIONS + + foreach test $testcases { + # If we're only testing specific files and this isn't one of + # them, skip it. + if ![runtest_file_p $runtests $test] { + continue + } + + # look if this is dg-do-run test, in which case + # we cycle through the option list, otherwise we don't + if [expr [search_for $test "dg-do run"]] { + set option_list $TORTURE_OPTIONS + } else { + set option_list [list { -O } ] + } + + set nshort [file tail [file dirname $test]]/[file tail $test] + + foreach flags $option_list { + verbose "Testing $nshort, $flags" 1 + dg-test $test $flags ${default-extra-flags} + } + } +} diff --git a/gcc/testsuite/lib/go-torture.exp b/gcc/testsuite/lib/go-torture.exp new file mode 100644 index 0000000..8c4be20 --- /dev/null +++ b/gcc/testsuite/lib/go-torture.exp @@ -0,0 +1,369 @@ +# Copyright (C) 2009 Free Software Foundation, Inc. + +# This program is free software; you can redistribute it and/or modify +# it under the terms of the GNU General Public License as published by +# the Free Software Foundation; either version 3 of the License, or +# (at your option) any later version. +# +# This program is distributed in the hope that it will be useful, +# but WITHOUT ANY WARRANTY; without even the implied warranty of +# MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the +# GNU General Public License for more details. +# +# You should have received a copy of the GNU General Public License +# along with GCC; see the file COPYING3. If not see +# <http://www.gnu.org/licenses/>. + +# Please email any bugs, comments, and/or additions to this file to +# the author. + +# This file was written by Ian Lance Taylor <iant@google.com> based on +# fortran-torture.exp by Steven Bosscher and Rob Savoye. + +load_lib target-supports.exp + +# The default option list can be overridden by +# TORTURE_OPTIONS="{ { list1 } ... { listN } }" + +if ![info exists TORTURE_OPTIONS] { + set TORTURE_OPTIONS [list \ + { -O0 } { -O1 } { -O2 } \ + { -O2 -fomit-frame-pointer -finline-functions } \ + { -O2 -fomit-frame-pointer -finline-functions -funroll-loops } \ + { -O2 -fbounds-check } \ + { -O3 -g } \ + { -Os }] +} + + +# +# go-torture-compile -- compile a go.go-torture testcase. +# +# SRC is the full pathname of the testcase. +# OPTION is the specific compiler flag we're testing (eg: -O2). +# +proc go-torture-compile { src option } { + global output + global srcdir tmpdir + global host_triplet + + set output "$tmpdir/[file tail [file rootname $src]].o" + + regsub "(?q)$srcdir/" $src "" testcase + + # If we couldn't rip $srcdir out of `src' then just do the best we can. + # The point is to reduce the unnecessary noise in the logs. Don't strip + # out too much because different testcases with the same name can confuse + # `test-tool'. + if [string match "/*" $testcase] { + set testcase "[file tail [file dirname $src]]/[file tail $src]" + } + + verbose "Testing $testcase, $option" 1 + + # Run the compiler and get results in comp_output. + set options "" + lappend options "additional_flags=-w $option" + + set comp_output [go_target_compile "$src" "$output" object $options] + + # See if we got something bad. + set fatal_signal "*go*: Internal compiler error: program*got fatal signal" + + if [string match "$fatal_signal 6" $comp_output] then { + go_fail $testcase "Got Signal 6, $option" + catch { remote_file build delete $output } + return + } + + if [string match "$fatal_signal 11" $comp_output] then { + go_fail $testcase "Got Signal 11, $option" + catch { remote_file build delete $output } + return + } + + if [string match "*internal compiler error*" $comp_output] then { + go_fail $testcase "$option (internal compiler error)" + catch { remote_file build delete $output } + return + } + + # We shouldn't get these because of -w, but just in case. + if [string match "*go*:*warning:*" $comp_output] then { + warning "$testcase: (with warnings) $option" + send_log "$comp_output\n" + unresolved "$testcase, $option" + catch { remote_file build delete $output } + return + } + + # Prune warnings we know are unwanted. + set comp_output [prune_warnings $comp_output] + + # Report if the testcase is not supported. + set unsupported_message [go_check_unsupported_p $comp_output] + if { $unsupported_message != "" } { + unsupported "$testcase: $unsupported_message" + catch { remote_file build delete $output } + return + } + + # remove any leftover LF/CR to make sure any output is legit + regsub -all -- "\[\r\n\]*" $comp_output "" comp_output + + # If any message remains, we fail. + if ![string match "" $comp_output] then { + go_fail $testcase $option + catch { remote_file build delete $output } + return + } + + go_pass $testcase $option + catch { remote_file build delete $output } +} + + +# +# go-torture-execute -- compile and execute a testcase. +# +# SRC is the full pathname of the testcase. +# +# If the testcase has an associated .x file, we source that to run the +# test instead. We use .x so that we don't lengthen the existing filename +# to more than 14 chars. +# +proc go-torture-execute { src } { + global output + global srcdir tmpdir + global tool + global compiler_conditional_xfail_data + global TORTURE_OPTIONS + global go_execute_args + + # Check for alternate driver. + set additional_flags "" + if [file exists [file rootname $src].x] { + verbose "Using alternate driver [file rootname [file tail $src]].x" 2 + set done_p 0 + catch "set done_p \[source [file rootname $src].x\]" + if { $done_p } { + return + } + } + + # Setup the options for the testcase run. + set option_list $TORTURE_OPTIONS + set executable $tmpdir/[file tail [file rootname $src].x] + regsub "(?q)$srcdir/" $src "" testcase + + if { ! [info exists go_execute_args] } { + set go_execute_args "" + } + + # If we couldn't rip $srcdir out of `src' then just do the best we can. + # The point is to reduce the unnecessary noise in the logs. Don't strip + # out too much because different testcases with the same name can confuse + # `test-tool'. + if [string match "/*" $testcase] { + set testcase "[file tail [file dirname $src]]/[file tail $src]" + } + + # Walk the list of options and copmile and run the testcase for all + # options that are not explicitly disabled by the .x script (if present). + foreach option $option_list { + + # Torture_{compile,execute}_xfail are set by the .x script. + if [info exists torture_compile_xfail] { + setup_xfail $torture_compile_xfail + } + + # Torture_execute_before_{compile,execute} can be set by the .x script. + if [info exists torture_eval_before_compile] { + set ignore_me [eval $torture_eval_before_compile] + } + + # FIXME: We should make sure that the modules required by this testcase + # exist. If not, the testcase should XFAIL. + + # Compile the testcase. + catch { remote_file build delete $executable } + verbose "Testing $testcase, $option" 1 + + set options "" + lappend options "additional_flags=-w $option" + if { $additional_flags != "" } { + lappend options "additional_flags=$additional_flags" + } + set comp_output [go_target_compile "$src" "$executable" executable $options] + + # See if we got something bad. + set fatal_signal "*go*: Internal compiler error: program*got fatal signal" + + if [string match "$fatal_signal 6" $comp_output] then { + go_fail $testcase "Got Signal 6, $option" + catch { remote_file build delete $executable } + continue + } + + if [string match "$fatal_signal 11" $comp_output] then { + go_fail $testcase "Got Signal 11, $option" + catch { remote_file build delete $executable } + continue + } + + if [string match "*internal compiler error*" $comp_output] then { + go_fail $testcase "$option (internal compiler error)" + catch { remote_file build delete $executable } + continue + } + + # We shouldn't get these because of -w, but just in case. + if [string match "*go*:*warning:*" $comp_output] then { + warning "$testcase: (with warnings) $option" + send_log "$comp_output\n" + unresolved "$testcase, $option" + catch { remote_file build delete $executable } + continue + } + + # Prune warnings we know are unwanted. + set comp_output [prune_warnings $comp_output] + + # Report if the testcase is not supported. + set unsupported_message [go_check_unsupported_p $comp_output] + if { $unsupported_message != "" } { + unsupported "$testcase: $unsupported_message" + continue + } elseif ![file exists $executable] { + if ![is3way] { + fail "$testcase compilation, $option" + untested "$testcase execution, $option" + continue + } else { + # FIXME: since we can't test for the existence of a remote + # file without short of doing an remote file list, we assume + # that since we got no output, it must have compiled. + pass "$testcase compilation, $option" + } + } else { + pass "$testcase compilation, $option" + } + + if [info exists torture_execute_xfail] { + setup_xfail $torture_execute_xfail + } + + if [info exists torture_eval_before_execute] { + set ignore_me [eval $torture_eval_before_execute] + } + + # Run the testcase, and analyse the output. + set result [go_load "$executable" "$go_execute_args" ""] + set status [lindex $result 0] + set output [lindex $result 1] + + # In order to cooperate nicely with the master Go testsuite, + # if the output contains the string BUG, we treat the test as + # failing. + if [ string match "*BUG*" $output ] { + set status "fail" + } + + if { $status == "pass" } { + catch { remote_file build delete $executable } + } + $status "$testcase execution, $option" + } +} + + +# +# search_for_re -- looks for a string match in a file +# +proc search_for_re { file pattern } { + set fd [open $file r] + while { [gets $fd cur_line]>=0 } { + set lower [string tolower $cur_line] + if [regexp "$pattern" $lower] then { + close $fd + return 1 + } + } + close $fd + return 0 +} + + +# +# go-torture -- the go-torture testcase source file processor +# +# This runs compilation only tests (no execute tests). +# +# SRC is the full pathname of the testcase, or just a file name in which +# case we prepend $srcdir/$subdir. +# +# If the testcase has an associated .x file, we source that to run the +# test instead. We use .x so that we don't lengthen the existing filename +# to more than 14 chars. +# +proc go-torture { args } { + global srcdir subdir + global compiler_conditional_xfail_data + global TORTURE_OPTIONS + + set src [lindex $args 0] + if { [llength $args] > 1 } { + set options [lindex $args 1] + } else { + set options "" + } + + # Prepend $srdir/$subdir if missing. + if ![string match "*/*" $src] { + set src "$srcdir/$subdir/$src" + } + + # Check for alternate driver. + if [file exists [file rootname $src].x] { + verbose "Using alternate driver [file rootname [file tail $src]].x" 2 + set done_p 0 + catch "set done_p \[source [file rootname $src].x\]" + if { $done_p } { + return + } + } + + # loop through all the options + set option_list $TORTURE_OPTIONS + foreach option $option_list { + + # torture_compile_xfail is set by the .x script (if present) + if [info exists torture_compile_xfail] { + setup_xfail $torture_compile_xfail + } + + # torture_execute_before_compile is set by the .x script (if present) + if [info exists torture_eval_before_compile] { + set ignore_me [eval $torture_eval_before_compile] + } + + go-torture-compile $src "$option $options" + } +} + +# +# add-ieee-options -- add options necessary for 100% ieee conformance. +# +proc add-ieee-options { } { + # Ensure that excess precision does not cause problems. + if { [istarget "i?86-*-*"] + || [istarget "m68k-*-*"] } then { + uplevel 1 lappend additional_flags "-ffloat-store" + } + + # Enable full IEEE compliance mode. + if { [istarget "alpha*-*-*"] + || [istarget "sh*-*-*"] } then { + uplevel 1 lappend additional_flags "-mieee" + } +} diff --git a/gcc/testsuite/lib/go.exp b/gcc/testsuite/lib/go.exp new file mode 100644 index 0000000..ee5eb76 --- /dev/null +++ b/gcc/testsuite/lib/go.exp @@ -0,0 +1,216 @@ +# Copyright (C) 2009 Free Software Foundation, Inc. + +# This program is free software; you can redistribute it and/or modify +# it under the terms of the GNU General Public License as published by +# the Free Software Foundation; either version 3 of the License, or +# (at your option) any later version. +# +# This program is distributed in the hope that it will be useful, +# but WITHOUT ANY WARRANTY; without even the implied warranty of +# MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the +# GNU General Public License for more details. +# +# You should have received a copy of the GNU General Public License +# along with GCC; see the file COPYING3. If not see +# <http://www.gnu.org/licenses/>. + +# +# go support library routines +# +load_lib prune.exp +load_lib gcc-defs.exp +load_lib target-libpath.exp + +# +# GOC_UNDER_TEST is the compiler under test. +# + + +set gpp_compile_options "" + + +# +# go_version -- extract and print the version number of the compiler +# + +proc go_version { } { + global GOC_UNDER_TEST + + go_init + + # ignore any arguments after the command + set compiler [lindex $GOC_UNDER_TEST 0] + + # verify that the compiler exists + if { [is_remote host] || [which $compiler] != 0 } then { + set tmp [remote_exec host "$compiler -v"] + set status [lindex $tmp 0] + set output [lindex $tmp 1] + regexp " version \[^\n\r\]*" $output version + if { $status == 0 && [info exists version] } then { + if [is_remote host] { + clone_output "$compiler $version\n" + } else { + clone_output "[which $compiler] $version\n" + } + } else { + clone_output "Couldn't determine version of [which $compiler]\n" + } + } else { + # compiler does not exist (this should have already been detected) + warning "$compiler does not exist" + } +} + +# +# go_include_flags -- include flags for the gcc tree structure +# + +proc go_include_flags { paths } { + global srcdir + global TESTING_IN_BUILD_TREE + + set flags "" + + if { [is_remote host] || ![info exists TESTING_IN_BUILD_TREE] } { + return "${flags}" + } + + set gccpath ${paths} + + if { $gccpath != "" } { + if [file exists "${gccpath}/libgo/os.gox"] { + append flags "-I${gccpath}/libgo " + } + } +} + +# +# go_link_flags -- linker flags for the gcc tree structure +# + +proc go_link_flags { paths } { + global srcdir + global ld_library_path + global GOC_UNDER_TEST + global shlib_ext + + set gccpath ${paths} + set libio_dir "" + set flags "" + set ld_library_path "." + set shlib_ext [get_shlib_extension] + verbose "shared lib extension: $shlib_ext" + + if { $gccpath != "" } { + if [file exists "${gccpath}/libgo/libgobegin.a"] { + append flags "-L${gccpath}/libgo " + } + if { [file exists "${gccpath}/libgo/.libs/libgo.a"] \ + || [file exists "${gccpath}/libgo/.libs/libgo.${shlib_ext}"] } { + append flags "-L${gccpath}/libgo/.libs " + append ld_library_path ":${gccpath}/libgo/.libs" + } + if [file exists "${gccpath}/libiberty/libiberty.a"] { + append flags "-L${gccpath}/libiberty " + } + append ld_library_path \ + [gcc-set-multilib-library-path $GOC_UNDER_TEST] + } + + set_ld_library_path_env_vars + + return "$flags" +} + +# +# go_init -- called at the start of each subdir of tests +# + +proc go_init { args } { + global subdir + global gpp_initialized + global base_dir + global tmpdir + global libdir + global gluefile wrap_flags + global objdir srcdir + global ALWAYS_GOCFLAGS + global TOOL_EXECUTABLE TOOL_OPTIONS + global GOC_UNDER_TEST + global TESTING_IN_BUILD_TREE + + # We set LC_ALL and LANG to C so that we get the same error messages as expected. + setenv LC_ALL C + setenv LANG C + + if ![info exists GOC_UNDER_TEST] then { + if [info exists TOOL_EXECUTABLE] { + set GOC_UNDER_TEST $TOOL_EXECUTABLE + } else { + if { [is_remote host] || ! [info exists TESTING_IN_BUILD_TREE] } { + set GOC_UNDER_TEST [transform gccgo] + } else { + set GOC_UNDER_TEST [findfile $base_dir/../../gccgo "$base_dir/../../gccgo -B$base_dir/../../" [findfile $base_dir/gccgo "$base_dir/gccgo -B$base_dir/" [transform gccgo]]] + } + } + } + + if ![is_remote host] { + if { [which $GOC_UNDER_TEST] == 0 } then { + perror "GOC_UNDER_TEST ($GOC_UNDER_TEST) does not exist" + exit 1 + } + } + if ![info exists tmpdir] { + set tmpdir "/tmp" + } + + if [info exists gluefile] { + unset gluefile + } + + go_maybe_build_wrapper "${tmpdir}/go-testglue.o" + + set ALWAYS_GOCFLAGS "" + + if ![is_remote host] { + if [info exists TOOL_OPTIONS] { + lappend ALWAYS_GOCFLAGS "additional_flags=[go_include_flags [get_multilibs ${TOOL_OPTIONS}] ]" + lappend ALWAYS_GOCFLAGS "ldflags=[go_link_flags [get_multilibs ${TOOL_OPTIONS}] ]" + } else { + lappend ALWAYS_GOCFLAGS "additional_flags=[go_include_flags [get_multilibs] ]" + lappend ALWAYS_GOCFLAGS "ldflags=[go_link_flags [get_multilibs] ]" + } + } + + if [info exists TOOL_OPTIONS] { + lappend ALWAYS_GOCFLAGS "additional_flags=$TOOL_OPTIONS" + } + + verbose -log "ALWAYS_GOCFLAGS set to $ALWAYS_GOCFLAGS" + + verbose "go is initialized" 3 +} + +# +# go_target_compile -- compile a source file +# + +proc go_target_compile { source dest type options } { + global tmpdir + global gluefile wrap_flags + global ALWAYS_GOCFLAGS + global GOC_UNDER_TEST + + if { [target_info needs_status_wrapper] != "" && [info exists gluefile] } { + lappend options "libs=${gluefile}" + lappend options "ldflags=${wrap_flags}" + } + + lappend options "compiler=$GOC_UNDER_TEST" + + set options [concat "$ALWAYS_GOCFLAGS" $options] + set options [dg-additional-files-options $options $source] + return [target_compile $source $dest $type $options] +} diff --git a/gcc/testsuite/lib/target-supports.exp b/gcc/testsuite/lib/target-supports.exp index b2c3d2a..ee7a8bf 100644 --- a/gcc/testsuite/lib/target-supports.exp +++ b/gcc/testsuite/lib/target-supports.exp @@ -34,7 +34,8 @@ # "// C++" for c++, # "! Fortran" for Fortran code, # "/* ObjC", for ObjC -# and "// ObjC++" for ObjC++ +# "// ObjC++" for ObjC++ +# and "// Go" for Go # If the tool is ObjC/ObjC++ then we overide the extension to .m/.mm to # allow for ObjC/ObjC++ specific flags. proc check_compile {basename type contents args} { @@ -51,6 +52,7 @@ proc check_compile {basename type contents args} { "*// C++*" { set src ${basename}[pid].cc } "*// ObjC++*" { set src ${basename}[pid].mm } "*/* ObjC*" { set src ${basename}[pid].m } + "*// Go*" { set src ${basename}[pid].go } default { switch -- $tool { "objc" { set src ${basename}[pid].m } |