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authorUlrich Drepper <drepper@redhat.com>2004-03-08 07:58:18 +0000
committerUlrich Drepper <drepper@redhat.com>2004-03-08 07:58:18 +0000
commitb8ec72d947a1494db06552d31b3a637ccab79b31 (patch)
treee3200d6ce162a64c7f2a18b14ef05f2135d79631
parente2fd3cbe085d9867710ee7b3d487c16c150fa204 (diff)
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Update.
2004-03-07 Ulrich Drepper <drepper@redhat.com> * idn-stub.c: Include <gnu/lib-names.h>. Use LIBCIDN_SO for dlopen. * shlib-versions: New file. * toutf8.c: Include <sys/param.h>.
-rw-r--r--CANCEL-FCT-WAIVE495
-rw-r--r--CANCEL-FILE-WAIVE15
-rw-r--r--libidn/ChangeLog6
-rw-r--r--libidn/idn-stub.c28
-rw-r--r--libidn/shlib-versions1
-rw-r--r--libidn/toutf8.c1
6 files changed, 538 insertions, 8 deletions
diff --git a/CANCEL-FCT-WAIVE b/CANCEL-FCT-WAIVE
new file mode 100644
index 0000000..5d3fed1
--- /dev/null
+++ b/CANCEL-FCT-WAIVE
@@ -0,0 +1,495 @@
+_IO_default_finish
+_IO_default_pbackfail
+_IO_default_xsgetn
+_IO_fgets
+_IO_file_open
+_IO_file_read
+_IO_fprintf
+_IO_free_backup_area
+_IO_free_wbackup_area
+_IO_ftell
+_IO_getc
+_IO_getline
+_IO_getline_info
+_IO_gets
+_IO_peekc_locked
+_IO_printf
+_IO_seekoff
+_IO_seekpos
+_IO_sprintf
+_IO_sscanf
+_IO_str_pbackfail
+_IO_unsave_markers
+_IO_unsave_wmarkers
+_IO_vfprintf
+_IO_vfscanf
+_IO_vsprintf
+_IO_wdefault_finish
+_IO_wdefault_pbackfail
+_IO_wdefault_xsgetn
+_IO_wfile_seekoff
+_IO_wfile_underflow
+__asprintf
+__assert
+__assert_fail
+__assert_perror_fail
+__backtrace_symbols
+__backtrace_symbols_fd
+__close
+__connect
+__dcgettext
+__deregister_frame
+__deregister_frame_info
+__deregister_frame_info_bases
+__dgettext
+__endmntent
+__fork
+__fpurge
+__freelocale
+__getdelim
+__getmntent_r
+__gmtime_r
+__internal_endnetgrent
+__internal_getnetgrent_r
+__libc_accept
+__libc_close
+__libc_connect
+__libc_fork
+__libc_free
+__libc_freeres
+__libc_fsync
+__libc_memalign
+__libc_msgrcv
+__libc_msgsnd
+__libc_msync
+__libc_nanosleep
+__libc_open
+__libc_pause
+__libc_pread
+__libc_pwrite
+__libc_read
+__libc_readv
+__libc_realloc
+__libc_recv
+__libc_recvfrom
+__libc_recvmsg
+__libc_send
+__libc_sendmsg
+__libc_sendto
+__libc_start_main
+__libc_system
+__libc_tcdrain
+__libc_valloc
+__libc_wait
+__libc_waitpid
+__libc_write
+__libc_writev
+__mbrlen
+__mbrtowc
+__nanosleep
+__newlocale
+__nss_group_lookup
+__nss_hostname_digits_dots
+__nss_hosts_lookup
+__nss_lookup_function
+__nss_next
+__nss_passwd_lookup
+__open
+__open_catalog
+__poll
+__printf_fp
+__pselect
+__read
+__res_init
+__res_ninit
+__select
+__send
+__setmntent
+__sigsuspend
+__sigtimedwait
+__sigwait
+__sigwaitinfo
+__strcoll_l
+__strerror_r
+__strfmon_l
+__strftime_l
+__strxfrm_l
+__uflow
+__underflow
+__vfscanf
+__vsnprintf
+__vsscanf
+__wait
+__waitid
+__waitpid
+__wcscoll_l
+__wcsftime_l
+__wcsxfrm_l
+__write
+__wuflow
+__wunderflow
+_dl_close
+_dl_open
+accept
+addmntent
+addseverity
+alphasort
+argp_error
+argp_failure
+argp_state_help
+argp_usage
+argz_add
+argz_add_sep
+argz_append
+argz_create_sep
+argz_delete
+argz_insert
+argz_replace
+asctime
+asctime_r
+asprintf
+backtrace_symbols
+backtrace_symbols_fd
+btowc
+canonicalize_file_name
+catclose
+catopen
+cfree
+clearenv
+close
+closedir
+connect
+creat
+ctime
+ctime_r
+cuserid
+dcgettext
+dcngettext
+dgettext
+dngettext
+dprintf
+ecvt
+ecvt_r
+endaliasent
+endfsent
+endgrent
+endhostent
+endmntent
+endmntent
+endnetent
+endprotoent
+endpwent
+endrpcent
+endservent
+endspent
+endttyent
+endusershell
+envz_add
+envz_merge
+envz_remove
+err
+error
+error_at_line
+errx
+ether_hostton
+ether_ntoa
+ether_ntoa_r
+ether_ntohost
+exit
+fcvt
+fcvt_r
+fexecve
+fgetc
+fgetc_unlocked
+fgetgrent
+fgetgrent_r
+fgetpwent
+fgetpwent_r
+fgets
+fgets_unlocked
+fgetspent
+fgetspent_r
+fgetwc
+fgetwc_unlocked
+fgetws
+fgetws_unlocked
+fmemopen
+fmtmsg
+fopen64
+fork
+fprintf
+free
+freelocale
+freopen
+freopen64
+fscanf
+fseek
+fseeko
+fseeko64
+fstatvfs
+fstatvfs64
+fsync
+ftell
+ftello
+ftello64
+fts_children
+fts_close
+fts_open
+fts_read
+fwprintf
+fwscanf
+gcvt
+get_current_dir_name
+get_nprocs
+get_nprocs_conf
+getaliasbyname
+getaliasent
+getc
+getc_unlocked
+getchar
+getchar_unlocked
+getcwd
+getdate
+getdate_r
+getdelim
+getgrent
+getgrgid
+getgrnam
+getgrouplist
+gethostbyaddr
+gethostbyname
+gethostbyname2
+gethostent
+gethostid
+getline
+getmntent
+getmntent_r
+getnameinfo
+getnetbyaddr
+getnetbyname
+getnetent
+getopt
+getopt_long
+getopt_long_only
+getprotobyname
+getprotobynumber
+getprotoent
+getpt
+getpw
+getpwent
+getpwnam
+getpwuid
+getrpcbyname
+getrpcbynumber
+getrpcent
+gets
+getservbyname
+getservbyport
+getservent
+getspent
+getspnam
+gettext
+getttyent
+getttynam
+getwc
+getwc_unlocked
+getwchar
+getwchar_unlocked
+getwd
+glob
+globfree
+globfree64
+gmtime
+gmtime_r
+hdestroy
+hdestroy_r
+herror
+hstrerror
+iconv
+iconv_close
+iconv_open
+if_freenameindex
+if_indextoname
+if_nameindex
+if_nametoindex
+inet6_option_alloc
+inet6_option_append
+inet_ntoa
+initgroups
+lckpwdf
+localtime
+localtime_r
+lockf
+makecontext
+mblen
+mbrlen
+mbrtowc
+mbsnrtowcs
+mbsrtowcs
+mbstowcs
+mbtowc
+mcheck
+mcheck_pedantic
+memalign
+mkdtemp
+mkstemp
+mkstemp64
+mktemp
+mktime
+msgrcv
+msgsnd
+msync
+mtrace
+mtrace
+muntrace
+nanosleep
+newlocale
+ngettext
+obstack_printf
+obstack_vprintf
+open
+open_memstream
+parse_printf_format
+pause
+perror
+poll
+posix_fallocate
+posix_memalign
+posix_openpt
+posix_spawn
+posix_spawn_file_actions_addclose
+posix_spawn_file_actions_adddup2
+posix_spawn_file_actions_addopen
+posix_spawn_file_actions_destroy
+posix_spawnp
+pread
+printf
+printf_size
+pselect
+psignal
+pthread_exit
+putenv
+putgrent
+putpwent
+putspent
+pwrite
+qecvt
+qecvt_r
+qfcvt
+qfcvt_r
+qgcvt
+qsort
+re_comp
+re_compile_pattern
+read
+readv
+realloc
+recv
+recvfrom
+recvmsg
+regcomp
+regerror
+regfree
+rewind
+scandir
+scanf
+select
+send
+send
+sendmsg
+sendto
+setaliasent
+setenv
+setgrent
+sethostent
+setlocale
+setmntent
+setnetent
+setprotoent
+setpwent
+setrpcent
+setservent
+setspent
+setttyent
+sgetspent
+sigpause
+sigsuspend
+sigtimedwait
+sigwait
+sigwaitinfo
+sleep
+snprintf
+sprintf
+sprofil
+sscanf
+statvfs
+statvfs64
+strcoll
+strcoll_l
+strerror
+strerror_r
+strfmon
+strfmon_l
+strftime
+strftime_l
+strsignal
+strxfrm
+strxfrm_l
+swprintf
+swscanf
+system
+tcdrain
+tdelete
+tempnam
+textdomain
+timegm
+timelocal
+tmpfile64
+tmpnam
+tmpnam_r
+ttyslot
+ulckpwdf
+usleep
+valloc
+vasprintf
+vdprintf
+verr
+verrx
+vfprintf
+vfscanf
+vfwprintf
+vfwscanf
+vprintf
+vscanf
+vsnprintf
+vsprintf
+vsscanf
+vswprintf
+vswscanf
+vwarn
+vwarnx
+vwprintf
+vwscanf
+wait
+waitid
+waitpid
+warn
+warnx
+wcrtomb
+wcscoll
+wcscoll_l
+wcsftime
+wcsftime_l
+wcsnrtombs
+wcsrtombs
+wcstombs
+wcsxfrm
+wcsxfrm_l
+wctob
+wctomb
+wordexp
+wordfree
+wprintf
+write
+writev
+wscanf
diff --git a/CANCEL-FILE-WAIVE b/CANCEL-FILE-WAIVE
index be1f37a..1b209ec 100644
--- a/CANCEL-FILE-WAIVE
+++ b/CANCEL-FILE-WAIVE
@@ -1,6 +1,8 @@
mkdtemp.os
+mktemp.os
tmpnam.os
tmpnam_r.os
+tempnam.os
__assert.os
assert.os
assert-perr.os
@@ -31,3 +33,16 @@ fmemopen.os
closedir.os
hsearch.os
hsearch_r.os
+catgets.os
+digits_dots.os
+localealias.os
+gconv_conf.os
+mtrace.os
+tzfile.os
+tzset.os
+ruserpass.os
+mntent_r.os
+fstab.os
+getttyent.os
+nsswitch.os
+res_init.os
diff --git a/libidn/ChangeLog b/libidn/ChangeLog
index e5c0529..7321197 100644
--- a/libidn/ChangeLog
+++ b/libidn/ChangeLog
@@ -1,3 +1,9 @@
+2004-03-07 Ulrich Drepper <drepper@redhat.com>
+
+ * idn-stub.c: Include <gnu/lib-names.h>. Use LIBCIDN_SO for dlopen.
+ * shlib-versions: New file.
+ * toutf8.c: Include <sys/param.h>.
+
2004-03-07 Simon Josefsson <jas@extundo.com>
* Banner: New file.
diff --git a/libidn/idn-stub.c b/libidn/idn-stub.c
index f2a1161..1e5cc1f 100644
--- a/libidn/idn-stub.c
+++ b/libidn/idn-stub.c
@@ -23,6 +23,8 @@
#include <stdio.h>
#include <string.h>
#include <dlfcn.h>
+#include <gnu/lib-names.h>
+#include <bits/libc-lock.h>
/* Get specification for idna_to_ascii_lz. */
#include "idna.h"
@@ -53,20 +55,30 @@ __idna_to_ascii_lz (const char *input, char **output, int flags)
if (h == NULL)
{
- h = __libc_dlopen ("libcidn.so");
+ __libc_lock_define_initialized (static, lock);
+ __libc_lock_lock (lock);
+
+ /* Retest in case some other thread arrived here at the same time. */
if (h == NULL)
- h = (void *) 1l;
- else
{
- /* Get the function we are interested in. */
- to_ascii_lz = __libc_dlsym (h, "idna_to_ascii_lz");
- if (to_ascii_lz == NULL)
+ h = __libc_dlopen (LIBCIDN_SO);
+
+ if (h == NULL)
+ h = (void *) 1l;
+ else
{
- __libc_dlclose (h);
- h = (void *) 1l;
+ /* Get the function we are interested in. */
+ to_ascii_lz = __libc_dlsym (h, "idna_to_ascii_lz");
+ if (to_ascii_lz == NULL)
+ {
+ __libc_dlclose (h);
+ h = (void *) 1l;
+ }
}
}
+
+ __libc_lock_unlock (lock);
}
if (h == (void *) 1l)
diff --git a/libidn/shlib-versions b/libidn/shlib-versions
new file mode 100644
index 0000000..9b27e51
--- /dev/null
+++ b/libidn/shlib-versions
@@ -0,0 +1 @@
+.*-.*-.* libcidn=1
diff --git a/libidn/toutf8.c b/libidn/toutf8.c
index 450cb6d..d16efdb 100644
--- a/libidn/toutf8.c
+++ b/libidn/toutf8.c
@@ -27,6 +27,7 @@
#include <stdlib.h>
#include <string.h>
#include <errno.h>
+#include <sys/param.h>
#include "stringprep.h"
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/* Intel 80386/80486-specific support for 32-bit ELF
   Copyright (C) 1993-2020 Free Software Foundation, Inc.

   This file is part of BFD, the Binary File Descriptor library.

   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 this program; if not, write to the Free Software
   Foundation, Inc., 51 Franklin Street - Fifth Floor, Boston,
   MA 02110-1301, USA.  */

#include "elfxx-x86.h"
#include "elf-nacl.h"
#include "elf-vxworks.h"
#include "dwarf2.h"
#include "opcode/i386.h"

/* 386 uses REL relocations instead of RELA.  */
#define USE_REL	1

#include "elf/i386.h"

static reloc_howto_type elf_howto_table[]=
{
  HOWTO(R_386_NONE, 0, 3, 0, FALSE, 0, complain_overflow_dont,
	bfd_elf_generic_reloc, "R_386_NONE",
	TRUE, 0x00000000, 0x00000000, FALSE),
  HOWTO(R_386_32, 0, 2, 32, FALSE, 0, complain_overflow_bitfield,
	bfd_elf_generic_reloc, "R_386_32",
	TRUE, 0xffffffff, 0xffffffff, FALSE),
  HOWTO(R_386_PC32, 0, 2, 32, TRUE, 0, complain_overflow_bitfield,
	bfd_elf_generic_reloc, "R_386_PC32",
	TRUE, 0xffffffff, 0xffffffff, TRUE),
  HOWTO(R_386_GOT32, 0, 2, 32, FALSE, 0, complain_overflow_bitfield,
	bfd_elf_generic_reloc, "R_386_GOT32",
	TRUE, 0xffffffff, 0xffffffff, FALSE),
  HOWTO(R_386_PLT32, 0, 2, 32, TRUE, 0, complain_overflow_bitfield,
	bfd_elf_generic_reloc, "R_386_PLT32",
	TRUE, 0xffffffff, 0xffffffff, TRUE),
  HOWTO(R_386_COPY, 0, 2, 32, FALSE, 0, complain_overflow_bitfield,
	bfd_elf_generic_reloc, "R_386_COPY",
	TRUE, 0xffffffff, 0xffffffff, FALSE),
  HOWTO(R_386_GLOB_DAT, 0, 2, 32, FALSE, 0, complain_overflow_bitfield,
	bfd_elf_generic_reloc, "R_386_GLOB_DAT",
	TRUE, 0xffffffff, 0xffffffff, FALSE),
  HOWTO(R_386_JUMP_SLOT, 0, 2, 32, FALSE, 0, complain_overflow_bitfield,
	bfd_elf_generic_reloc, "R_386_JUMP_SLOT",
	TRUE, 0xffffffff, 0xffffffff, FALSE),
  HOWTO(R_386_RELATIVE, 0, 2, 32, FALSE, 0, complain_overflow_bitfield,
	bfd_elf_generic_reloc, "R_386_RELATIVE",
	TRUE, 0xffffffff, 0xffffffff, FALSE),
  HOWTO(R_386_GOTOFF, 0, 2, 32, FALSE, 0, complain_overflow_bitfield,
	bfd_elf_generic_reloc, "R_386_GOTOFF",
	TRUE, 0xffffffff, 0xffffffff, FALSE),
  HOWTO(R_386_GOTPC, 0, 2, 32, TRUE, 0, complain_overflow_bitfield,
	bfd_elf_generic_reloc, "R_386_GOTPC",
	TRUE, 0xffffffff, 0xffffffff, TRUE),

  /* We have a gap in the reloc numbers here.
     R_386_standard counts the number up to this point, and
     R_386_ext_offset is the value to subtract from a reloc type of
     R_386_16 thru R_386_PC8 to form an index into this table.  */
#define R_386_standard (R_386_GOTPC + 1)
#define R_386_ext_offset (R_386_TLS_TPOFF - R_386_standard)

  /* These relocs are a GNU extension.  */
  HOWTO(R_386_TLS_TPOFF, 0, 2, 32, FALSE, 0, complain_overflow_bitfield,
	bfd_elf_generic_reloc, "R_386_TLS_TPOFF",
	TRUE, 0xffffffff, 0xffffffff, FALSE),
  HOWTO(R_386_TLS_IE, 0, 2, 32, FALSE, 0, complain_overflow_bitfield,
	bfd_elf_generic_reloc, "R_386_TLS_IE",
	TRUE, 0xffffffff, 0xffffffff, FALSE),
  HOWTO(R_386_TLS_GOTIE, 0, 2, 32, FALSE, 0, complain_overflow_bitfield,
	bfd_elf_generic_reloc, "R_386_TLS_GOTIE",
	TRUE, 0xffffffff, 0xffffffff, FALSE),
  HOWTO(R_386_TLS_LE, 0, 2, 32, FALSE, 0, complain_overflow_bitfield,
	bfd_elf_generic_reloc, "R_386_TLS_LE",
	TRUE, 0xffffffff, 0xffffffff, FALSE),
  HOWTO(R_386_TLS_GD, 0, 2, 32, FALSE, 0, complain_overflow_bitfield,
	bfd_elf_generic_reloc, "R_386_TLS_GD",
	TRUE, 0xffffffff, 0xffffffff, FALSE),
  HOWTO(R_386_TLS_LDM, 0, 2, 32, FALSE, 0, complain_overflow_bitfield,
	bfd_elf_generic_reloc, "R_386_TLS_LDM",
	TRUE, 0xffffffff, 0xffffffff, FALSE),
  HOWTO(R_386_16, 0, 1, 16, FALSE, 0, complain_overflow_bitfield,
	bfd_elf_generic_reloc, "R_386_16",
	TRUE, 0xffff, 0xffff, FALSE),
  HOWTO(R_386_PC16, 0, 1, 16, TRUE, 0, complain_overflow_bitfield,
	bfd_elf_generic_reloc, "R_386_PC16",
	TRUE, 0xffff, 0xffff, TRUE),
  HOWTO(R_386_8, 0, 0, 8, FALSE, 0, complain_overflow_bitfield,
	bfd_elf_generic_reloc, "R_386_8",
	TRUE, 0xff, 0xff, FALSE),
  HOWTO(R_386_PC8, 0, 0, 8, TRUE, 0, complain_overflow_signed,
	bfd_elf_generic_reloc, "R_386_PC8",
	TRUE, 0xff, 0xff, TRUE),

#define R_386_ext (R_386_PC8 + 1 - R_386_ext_offset)
#define R_386_tls_offset (R_386_TLS_LDO_32 - R_386_ext)
  /* These are common with Solaris TLS implementation.  */
  HOWTO(R_386_TLS_LDO_32, 0, 2, 32, FALSE, 0, complain_overflow_bitfield,
	bfd_elf_generic_reloc, "R_386_TLS_LDO_32",
	TRUE, 0xffffffff, 0xffffffff, FALSE),
  HOWTO(R_386_TLS_IE_32, 0, 2, 32, FALSE, 0, complain_overflow_bitfield,
	bfd_elf_generic_reloc, "R_386_TLS_IE_32",
	TRUE, 0xffffffff, 0xffffffff, FALSE),
  HOWTO(R_386_TLS_LE_32, 0, 2, 32, FALSE, 0, complain_overflow_bitfield,
	bfd_elf_generic_reloc, "R_386_TLS_LE_32",
	TRUE, 0xffffffff, 0xffffffff, FALSE),
  HOWTO(R_386_TLS_DTPMOD32, 0, 2, 32, FALSE, 0, complain_overflow_bitfield,
	bfd_elf_generic_reloc, "R_386_TLS_DTPMOD32",
	TRUE, 0xffffffff, 0xffffffff, FALSE),
  HOWTO(R_386_TLS_DTPOFF32, 0, 2, 32, FALSE, 0, complain_overflow_bitfield,
	bfd_elf_generic_reloc, "R_386_TLS_DTPOFF32",
	TRUE, 0xffffffff, 0xffffffff, FALSE),
  HOWTO(R_386_TLS_TPOFF32, 0, 2, 32, FALSE, 0, complain_overflow_bitfield,
	bfd_elf_generic_reloc, "R_386_TLS_TPOFF32",
	TRUE, 0xffffffff, 0xffffffff, FALSE),
  HOWTO(R_386_SIZE32, 0, 2, 32, FALSE, 0, complain_overflow_unsigned,
	bfd_elf_generic_reloc, "R_386_SIZE32",
	TRUE, 0xffffffff, 0xffffffff, FALSE),
  HOWTO(R_386_TLS_GOTDESC, 0, 2, 32, FALSE, 0, complain_overflow_bitfield,
	bfd_elf_generic_reloc, "R_386_TLS_GOTDESC",
	TRUE, 0xffffffff, 0xffffffff, FALSE),
  HOWTO(R_386_TLS_DESC_CALL, 0, 0, 0, FALSE, 0, complain_overflow_dont,
	bfd_elf_generic_reloc, "R_386_TLS_DESC_CALL",
	FALSE, 0, 0, FALSE),
  HOWTO(R_386_TLS_DESC, 0, 2, 32, FALSE, 0, complain_overflow_bitfield,
	bfd_elf_generic_reloc, "R_386_TLS_DESC",
	TRUE, 0xffffffff, 0xffffffff, FALSE),
  HOWTO(R_386_IRELATIVE, 0, 2, 32, FALSE, 0, complain_overflow_bitfield,
	bfd_elf_generic_reloc, "R_386_IRELATIVE",
	TRUE, 0xffffffff, 0xffffffff, FALSE),
  HOWTO(R_386_GOT32X, 0, 2, 32, FALSE, 0, complain_overflow_bitfield,
	bfd_elf_generic_reloc, "R_386_GOT32X",
	TRUE, 0xffffffff, 0xffffffff, FALSE),

  /* Another gap.  */
#define R_386_ext2 (R_386_GOT32X + 1 - R_386_tls_offset)
#define R_386_vt_offset (R_386_GNU_VTINHERIT - R_386_ext2)

/* GNU extension to record C++ vtable hierarchy.  */
  HOWTO (R_386_GNU_VTINHERIT,	/* type */
	 0,			/* rightshift */
	 2,			/* size (0 = byte, 1 = short, 2 = long) */
	 0,			/* bitsize */
	 FALSE,			/* pc_relative */
	 0,			/* bitpos */
	 complain_overflow_dont, /* complain_on_overflow */
	 NULL,			/* special_function */
	 "R_386_GNU_VTINHERIT",	/* name */
	 FALSE,			/* partial_inplace */
	 0,			/* src_mask */
	 0,			/* dst_mask */
	 FALSE),		/* pcrel_offset */

/* GNU extension to record C++ vtable member usage.  */
  HOWTO (R_386_GNU_VTENTRY,	/* type */
	 0,			/* rightshift */
	 2,			/* size (0 = byte, 1 = short, 2 = long) */
	 0,			/* bitsize */
	 FALSE,			/* pc_relative */
	 0,			/* bitpos */
	 complain_overflow_dont, /* complain_on_overflow */
	 _bfd_elf_rel_vtable_reloc_fn, /* special_function */
	 "R_386_GNU_VTENTRY",	/* name */
	 FALSE,			/* partial_inplace */
	 0,			/* src_mask */
	 0,			/* dst_mask */
	 FALSE)			/* pcrel_offset */

#define R_386_vt (R_386_GNU_VTENTRY + 1 - R_386_vt_offset)

};

#define X86_PCREL_TYPE_P(TYPE) ((TYPE) == R_386_PC32)

#define X86_SIZE_TYPE_P(TYPE) ((TYPE) == R_386_SIZE32)

#ifdef DEBUG_GEN_RELOC
#define TRACE(str) \
  fprintf (stderr, "i386 bfd reloc lookup %d (%s)\n", code, str)
#else
#define TRACE(str)
#endif

static reloc_howto_type *
elf_i386_reloc_type_lookup (bfd *abfd,
			    bfd_reloc_code_real_type code)
{
  switch (code)
    {
    case BFD_RELOC_NONE:
      TRACE ("BFD_RELOC_NONE");
      return &elf_howto_table[R_386_NONE];

    case BFD_RELOC_32:
      TRACE ("BFD_RELOC_32");
      return &elf_howto_table[R_386_32];

    case BFD_RELOC_CTOR:
      TRACE ("BFD_RELOC_CTOR");
      return &elf_howto_table[R_386_32];

    case BFD_RELOC_32_PCREL:
      TRACE ("BFD_RELOC_PC32");
      return &elf_howto_table[R_386_PC32];

    case BFD_RELOC_386_GOT32:
      TRACE ("BFD_RELOC_386_GOT32");
      return &elf_howto_table[R_386_GOT32];

    case BFD_RELOC_386_PLT32:
      TRACE ("BFD_RELOC_386_PLT32");
      return &elf_howto_table[R_386_PLT32];

    case BFD_RELOC_386_COPY:
      TRACE ("BFD_RELOC_386_COPY");
      return &elf_howto_table[R_386_COPY];

    case BFD_RELOC_386_GLOB_DAT:
      TRACE ("BFD_RELOC_386_GLOB_DAT");
      return &elf_howto_table[R_386_GLOB_DAT];

    case BFD_RELOC_386_JUMP_SLOT:
      TRACE ("BFD_RELOC_386_JUMP_SLOT");
      return &elf_howto_table[R_386_JUMP_SLOT];

    case BFD_RELOC_386_RELATIVE:
      TRACE ("BFD_RELOC_386_RELATIVE");
      return &elf_howto_table[R_386_RELATIVE];

    case BFD_RELOC_386_GOTOFF:
      TRACE ("BFD_RELOC_386_GOTOFF");
      return &elf_howto_table[R_386_GOTOFF];

    case BFD_RELOC_386_GOTPC:
      TRACE ("BFD_RELOC_386_GOTPC");
      return &elf_howto_table[R_386_GOTPC];

      /* These relocs are a GNU extension.  */
    case BFD_RELOC_386_TLS_TPOFF:
      TRACE ("BFD_RELOC_386_TLS_TPOFF");
      return &elf_howto_table[R_386_TLS_TPOFF - R_386_ext_offset];

    case BFD_RELOC_386_TLS_IE:
      TRACE ("BFD_RELOC_386_TLS_IE");
      return &elf_howto_table[R_386_TLS_IE - R_386_ext_offset];

    case BFD_RELOC_386_TLS_GOTIE:
      TRACE ("BFD_RELOC_386_TLS_GOTIE");
      return &elf_howto_table[R_386_TLS_GOTIE - R_386_ext_offset];

    case BFD_RELOC_386_TLS_LE:
      TRACE ("BFD_RELOC_386_TLS_LE");
      return &elf_howto_table[R_386_TLS_LE - R_386_ext_offset];

    case BFD_RELOC_386_TLS_GD:
      TRACE ("BFD_RELOC_386_TLS_GD");
      return &elf_howto_table[R_386_TLS_GD - R_386_ext_offset];

    case BFD_RELOC_386_TLS_LDM:
      TRACE ("BFD_RELOC_386_TLS_LDM");
      return &elf_howto_table[R_386_TLS_LDM - R_386_ext_offset];

    case BFD_RELOC_16:
      TRACE ("BFD_RELOC_16");
      return &elf_howto_table[R_386_16 - R_386_ext_offset];

    case BFD_RELOC_16_PCREL:
      TRACE ("BFD_RELOC_16_PCREL");
      return &elf_howto_table[R_386_PC16 - R_386_ext_offset];

    case BFD_RELOC_8:
      TRACE ("BFD_RELOC_8");
      return &elf_howto_table[R_386_8 - R_386_ext_offset];

    case BFD_RELOC_8_PCREL:
      TRACE ("BFD_RELOC_8_PCREL");
      return &elf_howto_table[R_386_PC8 - R_386_ext_offset];

    /* Common with Sun TLS implementation.  */
    case BFD_RELOC_386_TLS_LDO_32:
      TRACE ("BFD_RELOC_386_TLS_LDO_32");
      return &elf_howto_table[R_386_TLS_LDO_32 - R_386_tls_offset];

    case BFD_RELOC_386_TLS_IE_32:
      TRACE ("BFD_RELOC_386_TLS_IE_32");
      return &elf_howto_table[R_386_TLS_IE_32 - R_386_tls_offset];

    case BFD_RELOC_386_TLS_LE_32:
      TRACE ("BFD_RELOC_386_TLS_LE_32");
      return &elf_howto_table[R_386_TLS_LE_32 - R_386_tls_offset];

    case BFD_RELOC_386_TLS_DTPMOD32:
      TRACE ("BFD_RELOC_386_TLS_DTPMOD32");
      return &elf_howto_table[R_386_TLS_DTPMOD32 - R_386_tls_offset];

    case BFD_RELOC_386_TLS_DTPOFF32:
      TRACE ("BFD_RELOC_386_TLS_DTPOFF32");
      return &elf_howto_table[R_386_TLS_DTPOFF32 - R_386_tls_offset];

    case BFD_RELOC_386_TLS_TPOFF32:
      TRACE ("BFD_RELOC_386_TLS_TPOFF32");
      return &elf_howto_table[R_386_TLS_TPOFF32 - R_386_tls_offset];

    case BFD_RELOC_SIZE32:
      TRACE ("BFD_RELOC_SIZE32");
      return &elf_howto_table[R_386_SIZE32 - R_386_tls_offset];

    case BFD_RELOC_386_TLS_GOTDESC:
      TRACE ("BFD_RELOC_386_TLS_GOTDESC");
      return &elf_howto_table[R_386_TLS_GOTDESC - R_386_tls_offset];

    case BFD_RELOC_386_TLS_DESC_CALL:
      TRACE ("BFD_RELOC_386_TLS_DESC_CALL");
      return &elf_howto_table[R_386_TLS_DESC_CALL - R_386_tls_offset];

    case BFD_RELOC_386_TLS_DESC:
      TRACE ("BFD_RELOC_386_TLS_DESC");
      return &elf_howto_table[R_386_TLS_DESC - R_386_tls_offset];

    case BFD_RELOC_386_IRELATIVE:
      TRACE ("BFD_RELOC_386_IRELATIVE");
      return &elf_howto_table[R_386_IRELATIVE - R_386_tls_offset];

    case BFD_RELOC_386_GOT32X:
      TRACE ("BFD_RELOC_386_GOT32X");
      return &elf_howto_table[R_386_GOT32X - R_386_tls_offset];

    case BFD_RELOC_VTABLE_INHERIT:
      TRACE ("BFD_RELOC_VTABLE_INHERIT");
      return &elf_howto_table[R_386_GNU_VTINHERIT - R_386_vt_offset];

    case BFD_RELOC_VTABLE_ENTRY:
      TRACE ("BFD_RELOC_VTABLE_ENTRY");
      return &elf_howto_table[R_386_GNU_VTENTRY - R_386_vt_offset];

    default:
      TRACE ("Unknown");
      /* xgettext:c-format */
      _bfd_error_handler (_("%pB: unsupported relocation type: %#x"),
			  abfd, (int) code);
      bfd_set_error (bfd_error_bad_value);
      return NULL;
    }
}

static reloc_howto_type *
elf_i386_reloc_name_lookup (bfd *abfd ATTRIBUTE_UNUSED,
			    const char *r_name)
{
  unsigned int i;

  for (i = 0; i < sizeof (elf_howto_table) / sizeof (elf_howto_table[0]); i++)
    if (elf_howto_table[i].name != NULL
	&& strcasecmp (elf_howto_table[i].name, r_name) == 0)
      return &elf_howto_table[i];

  return NULL;
}

static reloc_howto_type *
elf_i386_rtype_to_howto (unsigned r_type)
{
  unsigned int indx;

  if ((indx = r_type) >= R_386_standard
      && ((indx = r_type - R_386_ext_offset) - R_386_standard
	  >= R_386_ext - R_386_standard)
      && ((indx = r_type - R_386_tls_offset) - R_386_ext
	  >= R_386_ext2 - R_386_ext)
      && ((indx = r_type - R_386_vt_offset) - R_386_ext2
	  >= R_386_vt - R_386_ext2))
      return NULL;
  /* PR 17512: file: 0f67f69d.  */
  if (elf_howto_table [indx].type != r_type)
    return NULL;
  return &elf_howto_table[indx];
}

static bfd_boolean
elf_i386_info_to_howto_rel (bfd *abfd,
			    arelent *cache_ptr,
			    Elf_Internal_Rela *dst)
{
  unsigned int r_type = ELF32_R_TYPE (dst->r_info);

  if ((cache_ptr->howto = elf_i386_rtype_to_howto (r_type)) == NULL)
    {
      /* xgettext:c-format */
      _bfd_error_handler (_("%pB: unsupported relocation type %#x"),
			  abfd, r_type);
      bfd_set_error (bfd_error_bad_value);
      return FALSE;
    }

  return TRUE;
}

/* Return whether a symbol name implies a local label.  The UnixWare
   2.1 cc generates temporary symbols that start with .X, so we
   recognize them here.  FIXME: do other SVR4 compilers also use .X?.
   If so, we should move the .X recognition into
   _bfd_elf_is_local_label_name.  */

static bfd_boolean
elf_i386_is_local_label_name (bfd *abfd, const char *name)
{
  if (name[0] == '.' && name[1] == 'X')
    return TRUE;

  return _bfd_elf_is_local_label_name (abfd, name);
}

/* Support for core dump NOTE sections.  */

static bfd_boolean
elf_i386_grok_prstatus (bfd *abfd, Elf_Internal_Note *note)
{
  int offset;
  size_t size;

  if (note->namesz == 8 && strcmp (note->namedata, "FreeBSD") == 0)
    {
      int pr_version = bfd_get_32 (abfd, note->descdata);

      if (pr_version != 1)
	return FALSE;

      /* pr_cursig */
      elf_tdata (abfd)->core->signal = bfd_get_32 (abfd, note->descdata + 20);

      /* pr_pid */
      elf_tdata (abfd)->core->lwpid = bfd_get_32 (abfd, note->descdata + 24);

      /* pr_reg */
      offset = 28;
      size = bfd_get_32 (abfd, note->descdata + 8);
    }
  else
    {
      switch (note->descsz)
	{
	default:
	  return FALSE;

	case 144:		/* Linux/i386 */
	  /* pr_cursig */
	  elf_tdata (abfd)->core->signal = bfd_get_16 (abfd, note->descdata + 12);

	  /* pr_pid */
	  elf_tdata (abfd)->core->lwpid = bfd_get_32 (abfd, note->descdata + 24);

	  /* pr_reg */
	  offset = 72;
	  size = 68;

	  break;
	}
    }

  /* Make a ".reg/999" section.  */
  return _bfd_elfcore_make_pseudosection (abfd, ".reg",
					  size, note->descpos + offset);
}

static bfd_boolean
elf_i386_grok_psinfo (bfd *abfd, Elf_Internal_Note *note)
{
  if (note->namesz == 8 && strcmp (note->namedata, "FreeBSD") == 0)
    {
      int pr_version = bfd_get_32 (abfd, note->descdata);

      if (pr_version != 1)
	return FALSE;

      elf_tdata (abfd)->core->program
	= _bfd_elfcore_strndup (abfd, note->descdata + 8, 17);
      elf_tdata (abfd)->core->command
	= _bfd_elfcore_strndup (abfd, note->descdata + 25, 81);
    }
  else
    {
      switch (note->descsz)
	{
	default:
	  return FALSE;

	case 124:		/* Linux/i386 elf_prpsinfo.  */
	  elf_tdata (abfd)->core->pid
	    = bfd_get_32 (abfd, note->descdata + 12);
	  elf_tdata (abfd)->core->program
	    = _bfd_elfcore_strndup (abfd, note->descdata + 28, 16);
	  elf_tdata (abfd)->core->command
	    = _bfd_elfcore_strndup (abfd, note->descdata + 44, 80);
	}
    }

  /* Note that for some reason, a spurious space is tacked
     onto the end of the args in some (at least one anyway)
     implementations, so strip it off if it exists.  */
  {
    char *command = elf_tdata (abfd)->core->command;
    int n = strlen (command);

    if (0 < n && command[n - 1] == ' ')
      command[n - 1] = '\0';
  }

  return TRUE;
}

/* Functions for the i386 ELF linker.

   In order to gain some understanding of code in this file without
   knowing all the intricate details of the linker, note the
   following:

   Functions named elf_i386_* are called by external routines, other
   functions are only called locally.  elf_i386_* functions appear
   in this file more or less in the order in which they are called
   from external routines.  eg. elf_i386_check_relocs is called
   early in the link process, elf_i386_finish_dynamic_sections is
   one of the last functions.  */

/* The size in bytes of an entry in the lazy procedure linkage table.  */

#define LAZY_PLT_ENTRY_SIZE 16

/* The size in bytes of an entry in the non-lazy procedure linkage
   table.  */

#define NON_LAZY_PLT_ENTRY_SIZE 8

/* The first entry in an absolute lazy procedure linkage table looks
   like this.  See the SVR4 ABI i386 supplement to see how this works.
   Will be padded to LAZY_PLT_ENTRY_SIZE with lazy_plt->plt0_pad_byte.  */

static const bfd_byte elf_i386_lazy_plt0_entry[12] =
{
  0xff, 0x35,	/* pushl contents of address */
  0, 0, 0, 0,	/* replaced with address of .got + 4.  */
  0xff, 0x25,	/* jmp indirect */
  0, 0, 0, 0	/* replaced with address of .got + 8.  */
};

/* Subsequent entries in an absolute lazy procedure linkage table look
   like this.  */

static const bfd_byte elf_i386_lazy_plt_entry[LAZY_PLT_ENTRY_SIZE] =
{
  0xff, 0x25,	/* jmp indirect */
  0, 0, 0, 0,	/* replaced with address of this symbol in .got.  */
  0x68,		/* pushl immediate */
  0, 0, 0, 0,	/* replaced with offset into relocation table.  */
  0xe9,		/* jmp relative */
  0, 0, 0, 0	/* replaced with offset to start of .plt.  */
};

/* The first entry in a PIC lazy procedure linkage table look like
   this.  Will be padded to LAZY_PLT_ENTRY_SIZE with
   lazy_plt->plt0_pad_byte.  */

static const bfd_byte elf_i386_pic_lazy_plt0_entry[12] =
{
  0xff, 0xb3, 4, 0, 0, 0,	/* pushl 4(%ebx) */
  0xff, 0xa3, 8, 0, 0, 0	/* jmp *8(%ebx) */
};

/* Subsequent entries in a PIC lazy procedure linkage table look like
   this.  */

static const bfd_byte elf_i386_pic_lazy_plt_entry[LAZY_PLT_ENTRY_SIZE] =
{
  0xff, 0xa3,	/* jmp *offset(%ebx) */
  0, 0, 0, 0,	/* replaced with offset of this symbol in .got.  */
  0x68,		/* pushl immediate */
  0, 0, 0, 0,	/* replaced with offset into relocation table.  */
  0xe9,		/* jmp relative */
  0, 0, 0, 0	/* replaced with offset to start of .plt.  */
};

/* Entries in the non-lazy procedure linkage table look like this.  */

static const bfd_byte elf_i386_non_lazy_plt_entry[NON_LAZY_PLT_ENTRY_SIZE] =
{
  0xff, 0x25,	/* jmp indirect */
  0, 0, 0, 0,	/* replaced with offset of this symbol in .got.  */
  0x66, 0x90	/* xchg %ax,%ax  */
};

/* Entries in the PIC non-lazy procedure linkage table look like
   this.  */

static const bfd_byte elf_i386_pic_non_lazy_plt_entry[NON_LAZY_PLT_ENTRY_SIZE] =
{
  0xff, 0xa3,	/* jmp *offset(%ebx)  */
  0, 0, 0, 0,	/* replaced with offset of this symbol in .got.  */
  0x66, 0x90	/* xchg %ax,%ax  */
};

/* The first entry in an absolute IBT-enabled lazy procedure linkage
   table looks like this.  */

static const bfd_byte elf_i386_lazy_ibt_plt0_entry[LAZY_PLT_ENTRY_SIZE] =
{
  0xff, 0x35, 0, 0, 0, 0,	/* pushl GOT[1]	      */
  0xff, 0x25, 0, 0, 0, 0,	/* jmp *GOT[2]	      */
  0x0f, 0x1f, 0x40, 0x00	/* nopl 0(%rax)	      */
};

/* Subsequent entries for an absolute IBT-enabled lazy procedure linkage
   table look like this.  Subsequent entries for a PIC IBT-enabled lazy
   procedure linkage table are the same.  */

static const bfd_byte elf_i386_lazy_ibt_plt_entry[LAZY_PLT_ENTRY_SIZE] =
{
  0xf3, 0x0f, 0x1e, 0xfb,	/* endbr32		      */
  0x68, 0, 0, 0, 0,		/* pushl immediate	      */
  0xe9, 0, 0, 0, 0,		/* jmp relative		      */
  0x66, 0x90			/* xchg %ax,%ax		      */
};

/* The first entry in a PIC IBT-enabled lazy procedure linkage table
   look like.  */

static const bfd_byte elf_i386_pic_lazy_ibt_plt0_entry[LAZY_PLT_ENTRY_SIZE] =
{
  0xff, 0xb3, 4, 0, 0, 0,	/* pushl 4(%ebx)      */
  0xff, 0xa3, 8, 0, 0, 0,	/* jmp *8(%ebx)	      */
  0x0f, 0x1f, 0x40, 0x00	/* nopl 0(%rax)	      */
};

/* Entries for branches with IBT-enabled in the absolute non-lazey
   procedure linkage table look like this.  They have the same size
   as the lazy PLT entry.  */

static const bfd_byte elf_i386_non_lazy_ibt_plt_entry[LAZY_PLT_ENTRY_SIZE] =
{
  0xf3, 0x0f, 0x1e, 0xfb,	     /* endbr32		      */
  0xff, 0x25, 0, 0, 0, 0,	     /* jmp *name@GOT	      */
  0x66, 0x0f, 0x1f, 0x44, 0x00, 0x00 /* nopw 0x0(%rax,%rax,1) */
};

/* Entries for branches with IBT-enabled in the PIC non-lazey procedure
   linkage table look like this.  They have the same size as the lazy
   PLT entry.  */

static const bfd_byte elf_i386_pic_non_lazy_ibt_plt_entry[LAZY_PLT_ENTRY_SIZE] =
{
  0xf3, 0x0f, 0x1e, 0xfb,	     /* endbr32		      */
  0xff, 0xa3, 0, 0, 0, 0,	     /* jmp *name@GOT(%ebx)   */
  0x66, 0x0f, 0x1f, 0x44, 0x00, 0x00 /* nopw 0x0(%rax,%rax,1) */
};

/* .eh_frame covering the lazy .plt section.  */

static const bfd_byte elf_i386_eh_frame_lazy_plt[] =
{
  PLT_CIE_LENGTH, 0, 0, 0,	/* CIE length */
  0, 0, 0, 0,			/* CIE ID */
  1,				/* CIE version */
  'z', 'R', 0,			/* Augmentation string */
  1,				/* Code alignment factor */
  0x7c,				/* Data alignment factor */
  8,				/* Return address column */
  1,				/* Augmentation size */
  DW_EH_PE_pcrel | DW_EH_PE_sdata4, /* FDE encoding */
  DW_CFA_def_cfa, 4, 4,		/* DW_CFA_def_cfa: r4 (esp) ofs 4 */
  DW_CFA_offset + 8, 1,		/* DW_CFA_offset: r8 (eip) at cfa-4 */
  DW_CFA_nop, DW_CFA_nop,

  PLT_FDE_LENGTH, 0, 0, 0,	/* FDE length */
  PLT_CIE_LENGTH + 8, 0, 0, 0,	/* CIE pointer */
  0, 0, 0, 0,			/* R_386_PC32 .plt goes here */
  0, 0, 0, 0,			/* .plt size goes here */
  0,				/* Augmentation size */
  DW_CFA_def_cfa_offset, 8,	/* DW_CFA_def_cfa_offset: 8 */
  DW_CFA_advance_loc + 6,	/* DW_CFA_advance_loc: 6 to __PLT__+6 */
  DW_CFA_def_cfa_offset, 12,	/* DW_CFA_def_cfa_offset: 12 */
  DW_CFA_advance_loc + 10,	/* DW_CFA_advance_loc: 10 to __PLT__+16 */
  DW_CFA_def_cfa_expression,	/* DW_CFA_def_cfa_expression */
  11,				/* Block length */
  DW_OP_breg4, 4,		/* DW_OP_breg4 (esp): 4 */
  DW_OP_breg8, 0,		/* DW_OP_breg8 (eip): 0 */
  DW_OP_lit15, DW_OP_and, DW_OP_lit11, DW_OP_ge,
  DW_OP_lit2, DW_OP_shl, DW_OP_plus,
  DW_CFA_nop, DW_CFA_nop, DW_CFA_nop, DW_CFA_nop
};

/* .eh_frame covering the lazy .plt section with IBT-enabled.  */

static const bfd_byte elf_i386_eh_frame_lazy_ibt_plt[] =
{
  PLT_CIE_LENGTH, 0, 0, 0,	/* CIE length */
  0, 0, 0, 0,			/* CIE ID */
  1,				/* CIE version */
  'z', 'R', 0,			/* Augmentation string */
  1,				/* Code alignment factor */
  0x7c,				/* Data alignment factor */
  8,				/* Return address column */
  1,				/* Augmentation size */
  DW_EH_PE_pcrel | DW_EH_PE_sdata4, /* FDE encoding */
  DW_CFA_def_cfa, 4, 4,		/* DW_CFA_def_cfa: r4 (esp) ofs 4 */
  DW_CFA_offset + 8, 1,		/* DW_CFA_offset: r8 (eip) at cfa-4 */
  DW_CFA_nop, DW_CFA_nop,

  PLT_FDE_LENGTH, 0, 0, 0,	/* FDE length */
  PLT_CIE_LENGTH + 8, 0, 0, 0,	/* CIE pointer */
  0, 0, 0, 0,			/* R_386_PC32 .plt goes here */
  0, 0, 0, 0,			/* .plt size goes here */
  0,				/* Augmentation size */
  DW_CFA_def_cfa_offset, 8,	/* DW_CFA_def_cfa_offset: 8 */
  DW_CFA_advance_loc + 6,	/* DW_CFA_advance_loc: 6 to __PLT__+6 */
  DW_CFA_def_cfa_offset, 12,	/* DW_CFA_def_cfa_offset: 12 */
  DW_CFA_advance_loc + 10,	/* DW_CFA_advance_loc: 10 to __PLT__+16 */
  DW_CFA_def_cfa_expression,	/* DW_CFA_def_cfa_expression */
  11,				/* Block length */
  DW_OP_breg4, 4,		/* DW_OP_breg4 (esp): 4 */
  DW_OP_breg8, 0,		/* DW_OP_breg8 (eip): 0 */
  DW_OP_lit15, DW_OP_and, DW_OP_lit9, DW_OP_ge,
  DW_OP_lit2, DW_OP_shl, DW_OP_plus,
  DW_CFA_nop, DW_CFA_nop, DW_CFA_nop, DW_CFA_nop
};

/* .eh_frame covering the non-lazy .plt section.  */

static const bfd_byte elf_i386_eh_frame_non_lazy_plt[] =
{
#define PLT_GOT_FDE_LENGTH		16
  PLT_CIE_LENGTH, 0, 0, 0,	/* CIE length */
  0, 0, 0, 0,			/* CIE ID */
  1,				/* CIE version */
  'z', 'R', 0,			/* Augmentation string */
  1,				/* Code alignment factor */
  0x7c,				/* Data alignment factor */
  8,				/* Return address column */
  1,				/* Augmentation size */
  DW_EH_PE_pcrel | DW_EH_PE_sdata4, /* FDE encoding */
  DW_CFA_def_cfa, 4, 4,		/* DW_CFA_def_cfa: r4 (esp) ofs 4 */
  DW_CFA_offset + 8, 1,		/* DW_CFA_offset: r8 (eip) at cfa-4 */
  DW_CFA_nop, DW_CFA_nop,

  PLT_GOT_FDE_LENGTH, 0, 0, 0,	/* FDE length */
  PLT_CIE_LENGTH + 8, 0, 0, 0,	/* CIE pointer */
  0, 0, 0, 0,			/* the start of non-lazy .plt goes here */
  0, 0, 0, 0,			/* non-lazy .plt size goes here */
  0,				/* Augmentation size */
  DW_CFA_nop, DW_CFA_nop, DW_CFA_nop
};

/* These are the standard parameters.  */
static const struct elf_x86_lazy_plt_layout elf_i386_lazy_plt =
  {
    elf_i386_lazy_plt0_entry,		/* plt0_entry */
    sizeof (elf_i386_lazy_plt0_entry),	/* plt0_entry_size */
    elf_i386_lazy_plt_entry,		/* plt_entry */
    LAZY_PLT_ENTRY_SIZE,		/* plt_entry_size */
    NULL,				/* plt_tlsdesc_entry */
    0,					/* plt_tlsdesc_entry_size*/
    0,					/* plt_tlsdesc_got1_offset */
    0,					/* plt_tlsdesc_got2_offset */
    0,					/* plt_tlsdesc_got1_insn_end */
    0,					/* plt_tlsdesc_got2_insn_end */
    2,					/* plt0_got1_offset */
    8,					/* plt0_got2_offset */
    0,					/* plt0_got2_insn_end */
    2,					/* plt_got_offset */
    7,					/* plt_reloc_offset */
    12,					/* plt_plt_offset */
    0,					/* plt_got_insn_size */
    0,					/* plt_plt_insn_end */
    6,					/* plt_lazy_offset */
    elf_i386_pic_lazy_plt0_entry,	/* pic_plt0_entry */
    elf_i386_pic_lazy_plt_entry,	/* pic_plt_entry */
    elf_i386_eh_frame_lazy_plt,		/* eh_frame_plt */
    sizeof (elf_i386_eh_frame_lazy_plt) /* eh_frame_plt_size */
  };

static const struct elf_x86_non_lazy_plt_layout elf_i386_non_lazy_plt =
  {
    elf_i386_non_lazy_plt_entry,	/* plt_entry */
    elf_i386_pic_non_lazy_plt_entry,	/* pic_plt_entry */
    NON_LAZY_PLT_ENTRY_SIZE,		/* plt_entry_size */
    2,					/* plt_got_offset */
    0,					/* plt_got_insn_size */
    elf_i386_eh_frame_non_lazy_plt,	/* eh_frame_plt */
    sizeof (elf_i386_eh_frame_non_lazy_plt) /* eh_frame_plt_size */
  };

static const struct elf_x86_lazy_plt_layout elf_i386_lazy_ibt_plt =
  {
    elf_i386_lazy_ibt_plt0_entry,	/* plt0_entry */
    sizeof (elf_i386_lazy_ibt_plt0_entry), /* plt0_entry_size */
    elf_i386_lazy_ibt_plt_entry,	/* plt_entry */
    LAZY_PLT_ENTRY_SIZE,		/* plt_entry_size */
    NULL,				/* plt_tlsdesc_entry */
    0,					/* plt_tlsdesc_entry_size*/
    0,					/* plt_tlsdesc_got1_offset */
    0,					/* plt_tlsdesc_got2_offset */
    0,					/* plt_tlsdesc_got1_insn_end */
    0,					/* plt_tlsdesc_got2_insn_end */
    2,					/* plt0_got1_offset */
    8,					/* plt0_got2_offset */
    0,					/* plt0_got2_insn_end */
    4+2,				/* plt_got_offset */
    4+1,				/* plt_reloc_offset */
    4+6,				/* plt_plt_offset */
    0,					/* plt_got_insn_size */
    0,					/* plt_plt_insn_end */
    0,					/* plt_lazy_offset */
    elf_i386_pic_lazy_ibt_plt0_entry,	/* pic_plt0_entry */
    elf_i386_lazy_ibt_plt_entry,	/* pic_plt_entry */
    elf_i386_eh_frame_lazy_ibt_plt,	/* eh_frame_plt */
    sizeof (elf_i386_eh_frame_lazy_ibt_plt) /* eh_frame_plt_size */
  };

static const struct elf_x86_non_lazy_plt_layout elf_i386_non_lazy_ibt_plt =
  {
    elf_i386_non_lazy_ibt_plt_entry,	/* plt_entry */
    elf_i386_pic_non_lazy_ibt_plt_entry,/* pic_plt_entry */
    LAZY_PLT_ENTRY_SIZE,		/* plt_entry_size */
    4+2,				/* plt_got_offset */
    0,					/* plt_got_insn_size */
    elf_i386_eh_frame_non_lazy_plt,	/* eh_frame_plt */
    sizeof (elf_i386_eh_frame_non_lazy_plt) /* eh_frame_plt_size */
  };


/* On VxWorks, the .rel.plt.unloaded section has absolute relocations
   for the PLTResolve stub and then for each PLT entry.  */
#define PLTRESOLVE_RELOCS_SHLIB 0
#define PLTRESOLVE_RELOCS 2
#define PLT_NON_JUMP_SLOT_RELOCS 2

/* These are the standard parameters.  */
static const struct elf_x86_backend_data elf_i386_arch_bed =
  {
    is_normal				/* os */
  };

#define	elf_backend_arch_data	&elf_i386_arch_bed

/* Return TRUE if the TLS access code sequence support transition
   from R_TYPE.  */

static bfd_boolean
elf_i386_check_tls_transition (asection *sec,
			       bfd_byte *contents,
			       Elf_Internal_Shdr *symtab_hdr,
			       struct elf_link_hash_entry **sym_hashes,
			       unsigned int r_type,
			       const Elf_Internal_Rela *rel,
			       const Elf_Internal_Rela *relend)
{
  unsigned int val, type, reg;
  unsigned long r_symndx;
  struct elf_link_hash_entry *h;
  bfd_vma offset;
  bfd_byte *call;
  bfd_boolean indirect_call;

  offset = rel->r_offset;
  switch (r_type)
    {
    case R_386_TLS_GD:
    case R_386_TLS_LDM:
      if (offset < 2 || (rel + 1) >= relend)
	return FALSE;

      indirect_call = FALSE;
      call = contents + offset + 4;
      val = *(call - 5);
      type = *(call - 6);
      if (r_type == R_386_TLS_GD)
	{
	  /* Check transition from GD access model.  Only
		leal foo@tlsgd(,%ebx,1), %eax
		call ___tls_get_addr@PLT
	     or
		leal foo@tlsgd(%ebx) %eax
		call ___tls_get_addr@PLT
		nop
	     or
		leal foo@tlsgd(%reg), %eax
		call *___tls_get_addr@GOT(%reg)
		which may be converted to
		addr32 call ___tls_get_addr
	     can transit to different access model.  */
	  if ((offset + 10) > sec->size
	      || (type != 0x8d && type != 0x04))
	    return FALSE;

	  if (type == 0x04)
	    {
	      /* leal foo@tlsgd(,%ebx,1), %eax
		 call ___tls_get_addr@PLT  */
	      if (offset < 3)
		return FALSE;

	      if (*(call - 7) != 0x8d
		  || val != 0x1d
		  || call[0] != 0xe8)
		return FALSE;
	    }
	  else
	    {
	      /* This must be
			leal foo@tlsgd(%ebx), %eax
			call ___tls_get_addr@PLT
			nop
		 or
			leal foo@tlsgd(%reg), %eax
			call *___tls_get_addr@GOT(%reg)
			which may be converted to
			addr32 call ___tls_get_addr

		 %eax can't be used as the GOT base register since it
		 is used to pass parameter to ___tls_get_addr.  */
	      reg = val & 7;
	      if ((val & 0xf8) != 0x80 || reg == 4 || reg == 0)
		return FALSE;

	      indirect_call = call[0] == 0xff;
	      if (!(reg == 3 && call[0] == 0xe8 && call[5] == 0x90)
		  && !(call[0] == 0x67 && call[1] == 0xe8)
		  && !(indirect_call
		       && (call[1] & 0xf8) == 0x90
		       && (call[1] & 0x7) == reg))
		return FALSE;
	    }
	}
      else
	{
	  /* Check transition from LD access model.  Only
		leal foo@tlsldm(%ebx), %eax
		call ___tls_get_addr@PLT
	     or
		leal foo@tlsldm(%reg), %eax
		call *___tls_get_addr@GOT(%reg)
		which may be converted to
		addr32 call ___tls_get_addr
	     can transit to different access model.  */
	  if (type != 0x8d || (offset + 9) > sec->size)
	    return FALSE;

	  /* %eax can't be used as the GOT base register since it is
	     used to pass parameter to ___tls_get_addr.  */
	  reg = val & 7;
	  if ((val & 0xf8) != 0x80 || reg == 4 || reg == 0)
	    return FALSE;

	  indirect_call = call[0] == 0xff;
	  if (!(reg == 3 && call[0] == 0xe8)
	      && !(call[0] == 0x67 && call[1] == 0xe8)
	      && !(indirect_call
		   && (call[1] & 0xf8) == 0x90
		   && (call[1] & 0x7) == reg))
	    return FALSE;
	}

      r_symndx = ELF32_R_SYM (rel[1].r_info);
      if (r_symndx < symtab_hdr->sh_info)
	return FALSE;

      h = sym_hashes[r_symndx - symtab_hdr->sh_info];
      if (h == NULL
	  || !((struct elf_x86_link_hash_entry *) h)->tls_get_addr)
	return FALSE;
      else if (indirect_call)
	return (ELF32_R_TYPE (rel[1].r_info) == R_386_GOT32X);
      else
	return (ELF32_R_TYPE (rel[1].r_info) == R_386_PC32
		|| ELF32_R_TYPE (rel[1].r_info) == R_386_PLT32);

    case R_386_TLS_IE:
      /* Check transition from IE access model:
		movl foo@indntpoff(%rip), %eax
		movl foo@indntpoff(%rip), %reg
		addl foo@indntpoff(%rip), %reg
       */

      if (offset < 1 || (offset + 4) > sec->size)
	return FALSE;

      /* Check "movl foo@tpoff(%rip), %eax" first.  */
      val = bfd_get_8 (abfd, contents + offset - 1);
      if (val == 0xa1)
	return TRUE;

      if (offset < 2)
	return FALSE;

      /* Check movl|addl foo@tpoff(%rip), %reg.   */
      type = bfd_get_8 (abfd, contents + offset - 2);
      return ((type == 0x8b || type == 0x03)
	      && (val & 0xc7) == 0x05);

    case R_386_TLS_GOTIE:
    case R_386_TLS_IE_32:
      /* Check transition from {IE_32,GOTIE} access model:
		subl foo@{tpoff,gontoff}(%reg1), %reg2
		movl foo@{tpoff,gontoff}(%reg1), %reg2
		addl foo@{tpoff,gontoff}(%reg1), %reg2
       */

      if (offset < 2 || (offset + 4) > sec->size)
	return FALSE;

      val = bfd_get_8 (abfd, contents + offset - 1);
      if ((val & 0xc0) != 0x80 || (val & 7) == 4)
	return FALSE;

      type = bfd_get_8 (abfd, contents + offset - 2);
      return type == 0x8b || type == 0x2b || type == 0x03;

    case R_386_TLS_GOTDESC:
      /* Check transition from GDesc access model:
		leal x@tlsdesc(%ebx), %eax

	 Make sure it's a leal adding ebx to a 32-bit offset
	 into any register, although it's probably almost always
	 going to be eax.  */

      if (offset < 2 || (offset + 4) > sec->size)
	return FALSE;

      if (bfd_get_8 (abfd, contents + offset - 2) != 0x8d)
	return FALSE;

      val = bfd_get_8 (abfd, contents + offset - 1);
      return (val & 0xc7) == 0x83;

    case R_386_TLS_DESC_CALL:
      /* Check transition from GDesc access model:
		call *x@tlsdesc(%eax)
       */
      if (offset + 2 <= sec->size)
	{
	  /* Make sure that it's a call *x@tlsdesc(%eax).  */
	  call = contents + offset;
	  return call[0] == 0xff && call[1] == 0x10;
	}

      return FALSE;

    default:
      abort ();
    }
}

/* Return TRUE if the TLS access transition is OK or no transition
   will be performed.  Update R_TYPE if there is a transition.  */

static bfd_boolean
elf_i386_tls_transition (struct bfd_link_info *info, bfd *abfd,
			 asection *sec, bfd_byte *contents,
			 Elf_Internal_Shdr *symtab_hdr,
			 struct elf_link_hash_entry **sym_hashes,
			 unsigned int *r_type, int tls_type,
			 const Elf_Internal_Rela *rel,
			 const Elf_Internal_Rela *relend,
			 struct elf_link_hash_entry *h,
			 unsigned long r_symndx,
			 bfd_boolean from_relocate_section)
{
  unsigned int from_type = *r_type;
  unsigned int to_type = from_type;
  bfd_boolean check = TRUE;

  /* Skip TLS transition for functions.  */
  if (h != NULL
      && (h->type == STT_FUNC
	  || h->type == STT_GNU_IFUNC))
    return TRUE;

  switch (from_type)
    {
    case R_386_TLS_GD:
    case R_386_TLS_GOTDESC:
    case R_386_TLS_DESC_CALL:
    case R_386_TLS_IE_32:
    case R_386_TLS_IE:
    case R_386_TLS_GOTIE:
      if (bfd_link_executable (info))
	{
	  if (h == NULL)
	    to_type = R_386_TLS_LE_32;
	  else if (from_type != R_386_TLS_IE
		   && from_type != R_386_TLS_GOTIE)
	    to_type = R_386_TLS_IE_32;
	}

      /* When we are called from elf_i386_relocate_section, there may
	 be additional transitions based on TLS_TYPE.  */
      if (from_relocate_section)
	{
	  unsigned int new_to_type = to_type;

	  if (TLS_TRANSITION_IE_TO_LE_P (info, h, tls_type))
	    new_to_type = R_386_TLS_LE_32;

	  if (to_type == R_386_TLS_GD
	      || to_type == R_386_TLS_GOTDESC
	      || to_type == R_386_TLS_DESC_CALL)
	    {
	      if (tls_type == GOT_TLS_IE_POS)
		new_to_type = R_386_TLS_GOTIE;
	      else if (tls_type & GOT_TLS_IE)
		new_to_type = R_386_TLS_IE_32;
	    }

	  /* We checked the transition before when we were called from
	     elf_i386_check_relocs.  We only want to check the new
	     transition which hasn't been checked before.  */
	  check = new_to_type != to_type && from_type == to_type;
	  to_type = new_to_type;
	}

      break;

    case R_386_TLS_LDM:
      if (bfd_link_executable (info))
	to_type = R_386_TLS_LE_32;
      break;

    default:
      return TRUE;
    }

  /* Return TRUE if there is no transition.  */
  if (from_type == to_type)
    return TRUE;

  /* Check if the transition can be performed.  */
  if (check
      && ! elf_i386_check_tls_transition (sec, contents,
					  symtab_hdr, sym_hashes,
					  from_type, rel, relend))
    {
      reloc_howto_type *from, *to;
      const char *name;

      from = elf_i386_rtype_to_howto (from_type);
      to = elf_i386_rtype_to_howto (to_type);

      if (h)
	name = h->root.root.string;
      else
	{
	  struct elf_x86_link_hash_table *htab;

	  htab = elf_x86_hash_table (info, I386_ELF_DATA);
	  if (htab == NULL)
	    name = "*unknown*";
	  else
	    {
	      Elf_Internal_Sym *isym;

	      isym = bfd_sym_from_r_symndx (&htab->sym_cache,
					    abfd, r_symndx);
	      name = bfd_elf_sym_name (abfd, symtab_hdr, isym, NULL);
	    }
	}

      _bfd_error_handler
	/* xgettext:c-format */
	(_("%pB: TLS transition from %s to %s against `%s'"
	   " at %#" PRIx64 " in section `%pA' failed"),
	 abfd, from->name, to->name, name,
	 (uint64_t) rel->r_offset, sec);
      bfd_set_error (bfd_error_bad_value);
      return FALSE;
    }

  *r_type = to_type;
  return TRUE;
}

/* With the local symbol, foo, we convert
   mov foo@GOT[(%reg1)], %reg2
   to
   lea foo[@GOTOFF(%reg1)], %reg2
   and convert
   call/jmp *foo@GOT[(%reg)]
   to
   nop call foo/jmp foo nop
   When PIC is false, convert
   test %reg1, foo@GOT[(%reg2)]
   to
   test $foo, %reg1
   and convert
   binop foo@GOT[(%reg1)], %reg2
   to
   binop $foo, %reg2
   where binop is one of adc, add, and, cmp, or, sbb, sub, xor
   instructions.  */

static
bfd_boolean
elf_i386_convert_load_reloc (bfd *abfd, Elf_Internal_Shdr *symtab_hdr,
			     bfd_byte *contents,
			     unsigned int *r_type_p,
			     Elf_Internal_Rela *irel,
			     struct elf_link_hash_entry *h,
			     bfd_boolean *converted,
			     struct bfd_link_info *link_info)
{
  struct elf_x86_link_hash_table *htab;
  unsigned int opcode;
  unsigned int modrm;
  bfd_boolean baseless;
  Elf_Internal_Sym *isym;
  unsigned int addend;
  unsigned int nop;
  bfd_vma nop_offset;
  bfd_boolean is_pic;
  bfd_boolean to_reloc_32;
  unsigned int r_type;
  unsigned int r_symndx;
  bfd_vma roff = irel->r_offset;
  bfd_boolean local_ref;
  struct elf_x86_link_hash_entry *eh;

  if (roff < 2)
    return TRUE;

  /* Addend for R_386_GOT32X relocations must be 0.  */
  addend = bfd_get_32 (abfd, contents + roff);
  if (addend != 0)
    return TRUE;

  htab = elf_x86_hash_table (link_info, I386_ELF_DATA);
  is_pic = bfd_link_pic (link_info);

  r_type = *r_type_p;
  r_symndx = ELF32_R_SYM (irel->r_info);

  modrm = bfd_get_8 (abfd, contents + roff - 1);
  baseless = (modrm & 0xc7) == 0x5;

  if (baseless && is_pic)
    {
      /* For PIC, disallow R_386_GOT32X without a base register
	 since we don't know what the GOT base is.  */
      const char *name;

      if (h == NULL)
	{
	  isym = bfd_sym_from_r_symndx (&htab->sym_cache, abfd,
					r_symndx);
	  name = bfd_elf_sym_name (abfd, symtab_hdr, isym, NULL);
	}
      else
	name = h->root.root.string;

      _bfd_error_handler
	/* xgettext:c-format */
	(_("%pB: direct GOT relocation R_386_GOT32X against `%s' without base"
	   " register can not be used when making a shared object"),
	 abfd, name);
      return FALSE;
    }

  opcode = bfd_get_8 (abfd, contents + roff - 2);

  /* Convert to R_386_32 if PIC is false or there is no base
     register.  */
  to_reloc_32 = !is_pic || baseless;

  eh = elf_x86_hash_entry (h);

  /* Try to convert R_386_GOT32X.  Get the symbol referred to by the
     reloc.  */
  if (h == NULL)
    {
      if (opcode == 0x0ff)
	/* Convert "call/jmp *foo@GOT[(%reg)]".  */
	goto convert_branch;
      else
	/* Convert "mov foo@GOT[(%reg1)], %reg2",
	   "test %reg1, foo@GOT(%reg2)" and
	   "binop foo@GOT[(%reg1)], %reg2". */
	goto convert_load;
    }

  /* NB: Also set linker_def via SYMBOL_REFERENCES_LOCAL_P.  */
  local_ref = SYMBOL_REFERENCES_LOCAL_P (link_info, h);

  /* Undefined weak symbol is only bound locally in executable
     and its reference is resolved as 0.  */
  if (h->root.type == bfd_link_hash_undefweak
      && !eh->linker_def
      && local_ref)
    {
      if (opcode == 0xff)
	{
	  /* No direct branch to 0 for PIC.  */
	  if (is_pic)
	    return TRUE;
	  else
	    goto convert_branch;
	}
      else
	{
	  /* We can convert load of address 0 to R_386_32.  */
	  to_reloc_32 = TRUE;
	  goto convert_load;
	}
    }

  if (opcode == 0xff)
    {
      /* We have "call/jmp *foo@GOT[(%reg)]".  */
      if ((h->root.type == bfd_link_hash_defined
	   || h->root.type == bfd_link_hash_defweak)
	  && local_ref)
	{
	  /* The function is locally defined.   */
convert_branch:
	  /* Convert R_386_GOT32X to R_386_PC32.  */
	  if (modrm == 0x15 || (modrm & 0xf8) == 0x90)
	    {
	      /* Convert to "nop call foo".  ADDR_PREFIX_OPCODE
		 is a nop prefix.  */
	      modrm = 0xe8;
	      /* To support TLS optimization, always use addr32 prefix
		 for "call *___tls_get_addr@GOT(%reg)".  */
	      if (eh && eh->tls_get_addr)
		{
		  nop = 0x67;
		  nop_offset = irel->r_offset - 2;
		}
	      else
		{
		  nop = htab->params->call_nop_byte;
		  if (htab->params->call_nop_as_suffix)
		    {
		      nop_offset = roff + 3;
		      irel->r_offset -= 1;
		    }
		  else
		    nop_offset = roff - 2;
		}
	    }
	  else
	    {
	      /* Convert to "jmp foo nop".  */
	      modrm = 0xe9;
	      nop = NOP_OPCODE;
	      nop_offset = roff + 3;
	      irel->r_offset -= 1;
	    }

	  bfd_put_8 (abfd, nop, contents + nop_offset);
	  bfd_put_8 (abfd, modrm, contents + irel->r_offset - 1);
	  /* When converting to PC-relative relocation, we
	     need to adjust addend by -4.  */
	  bfd_put_32 (abfd, -4, contents + irel->r_offset);
	  irel->r_info = ELF32_R_INFO (r_symndx, R_386_PC32);
	  *r_type_p = R_386_PC32;
	  *converted = TRUE;
	}
    }
  else
    {
      /* We have "mov foo@GOT[(%re1g)], %reg2",
	 "test %reg1, foo@GOT(%reg2)" and
	 "binop foo@GOT[(%reg1)], %reg2".

	 Avoid optimizing _DYNAMIC since ld.so may use its
	 link-time address.  */
      if (h == htab->elf.hdynamic)
	return TRUE;

      /* def_regular is set by an assignment in a linker script in
	 bfd_elf_record_link_assignment.  start_stop is set on
	 __start_SECNAME/__stop_SECNAME which mark section SECNAME.  */
      if (h->start_stop
	  || eh->linker_def
	  || ((h->def_regular
	       || h->root.type == bfd_link_hash_defined
	       || h->root.type == bfd_link_hash_defweak)
	      && local_ref))
	{
convert_load:
	  if (opcode == 0x8b)
	    {
	      if (to_reloc_32)
		{
		  /* Convert "mov foo@GOT[(%reg1)], %reg2" to
		     "mov $foo, %reg2" with R_386_32.  */
		  r_type = R_386_32;
		  modrm = 0xc0 | (modrm & 0x38) >> 3;
		  bfd_put_8 (abfd, modrm, contents + roff - 1);
		  opcode = 0xc7;
		}
	      else
		{
		  /* Convert "mov foo@GOT(%reg1), %reg2" to
		     "lea foo@GOTOFF(%reg1), %reg2".  */
		  r_type = R_386_GOTOFF;
		  opcode = 0x8d;
		}
	    }
	  else
	    {
	      /* Only R_386_32 is supported.  */
	      if (!to_reloc_32)
		return TRUE;

	      if (opcode == 0x85)
		{
		  /* Convert "test %reg1, foo@GOT(%reg2)" to
		     "test $foo, %reg1".  */
		  modrm = 0xc0 | (modrm & 0x38) >> 3;
		  opcode = 0xf7;
		}
	      else
		{
		  /* Convert "binop foo@GOT(%reg1), %reg2" to
		     "binop $foo, %reg2".  */
		  modrm = (0xc0
			   | (modrm & 0x38) >> 3
			   | (opcode & 0x3c));
		  opcode = 0x81;
		}
	      bfd_put_8 (abfd, modrm, contents + roff - 1);
	      r_type = R_386_32;
	    }

	  bfd_put_8 (abfd, opcode, contents + roff - 2);
	  irel->r_info = ELF32_R_INFO (r_symndx, r_type);
	  *r_type_p = r_type;
	  *converted = TRUE;
	}
    }

  return TRUE;
}

/* Rename some of the generic section flags to better document how they
   are used here.  */
#define check_relocs_failed	sec_flg0

/* Look through the relocs for a section during the first phase, and
   calculate needed space in the global offset table, procedure linkage
   table, and dynamic reloc sections.  */

static bfd_boolean
elf_i386_check_relocs (bfd *abfd,
		       struct bfd_link_info *info,
		       asection *sec,
		       const Elf_Internal_Rela *relocs)
{
  struct elf_x86_link_hash_table *htab;
  Elf_Internal_Shdr *symtab_hdr;
  struct elf_link_hash_entry **sym_hashes;
  const Elf_Internal_Rela *rel;
  const Elf_Internal_Rela *rel_end;
  asection *sreloc;
  bfd_byte *contents;
  bfd_boolean converted;

  if (bfd_link_relocatable (info))
    return TRUE;

  /* Don't do anything special with non-loaded, non-alloced sections.
     In particular, any relocs in such sections should not affect GOT
     and PLT reference counting (ie. we don't allow them to create GOT
     or PLT entries), there's no possibility or desire to optimize TLS
     relocs, and there's not much point in propagating relocs to shared
     libs that the dynamic linker won't relocate.  */
  if ((sec->flags & SEC_ALLOC) == 0)
    return TRUE;

  htab = elf_x86_hash_table (info, I386_ELF_DATA);
  if (htab == NULL)
    {
      sec->check_relocs_failed = 1;
      return FALSE;
    }

  BFD_ASSERT (is_x86_elf (abfd, htab));

  /* Get the section contents.  */
  if (elf_section_data (sec)->this_hdr.contents != NULL)
    contents = elf_section_data (sec)->this_hdr.contents;
  else if (!bfd_malloc_and_get_section (abfd, sec, &contents))
    {
      sec->check_relocs_failed = 1;
      return FALSE;
    }

  symtab_hdr = &elf_symtab_hdr (abfd);
  sym_hashes = elf_sym_hashes (abfd);

  converted = FALSE;

  sreloc = NULL;

  rel_end = relocs + sec->reloc_count;
  for (rel = relocs; rel < rel_end; rel++)
    {
      unsigned int r_type;
      unsigned int r_symndx;
      struct elf_link_hash_entry *h;
      struct elf_x86_link_hash_entry *eh;
      Elf_Internal_Sym *isym;
      const char *name;
      bfd_boolean size_reloc;

      r_symndx = ELF32_R_SYM (rel->r_info);
      r_type = ELF32_R_TYPE (rel->r_info);

      if (r_symndx >= NUM_SHDR_ENTRIES (symtab_hdr))
	{
	  /* xgettext:c-format */
	  _bfd_error_handler (_("%pB: bad symbol index: %d"),
			      abfd, r_symndx);
	  goto error_return;
	}

      if (r_symndx < symtab_hdr->sh_info)
	{
	  /* A local symbol.  */
	  isym = bfd_sym_from_r_symndx (&htab->sym_cache,
					abfd, r_symndx);
	  if (isym == NULL)
	    goto error_return;

	  /* Check relocation against local STT_GNU_IFUNC symbol.  */
	  if (ELF32_ST_TYPE (isym->st_info) == STT_GNU_IFUNC)
	    {
	      h = _bfd_elf_x86_get_local_sym_hash (htab, abfd, rel, TRUE);
	      if (h == NULL)
		goto error_return;

	      /* Fake a STT_GNU_IFUNC symbol.  */
	      h->root.root.string = bfd_elf_sym_name (abfd, symtab_hdr,
						      isym, NULL);
	      h->type = STT_GNU_IFUNC;
	      h->def_regular = 1;
	      h->ref_regular = 1;
	      h->forced_local = 1;
	      h->root.type = bfd_link_hash_defined;
	    }
	  else
	    h = NULL;
	}
      else
	{
	  isym = NULL;
	  h = sym_hashes[r_symndx - symtab_hdr->sh_info];
	  while (h->root.type == bfd_link_hash_indirect
		 || h->root.type == bfd_link_hash_warning)
	    h = (struct elf_link_hash_entry *) h->root.u.i.link;
	}

      eh = (struct elf_x86_link_hash_entry *) h;
      if (h != NULL)
	{
	  if (r_type == R_386_GOTOFF)
	    eh->gotoff_ref = 1;

	  /* It is referenced by a non-shared object. */
	  h->ref_regular = 1;
	}

      if (r_type == R_386_GOT32X
	  && (h == NULL || h->type != STT_GNU_IFUNC))
	{
	  Elf_Internal_Rela *irel = (Elf_Internal_Rela *) rel;
	  if (!elf_i386_convert_load_reloc (abfd, symtab_hdr, contents,
					    &r_type, irel, h,
					    &converted, info))
	    goto error_return;
	}

      if (! elf_i386_tls_transition (info, abfd, sec, contents,
				     symtab_hdr, sym_hashes,
				     &r_type, GOT_UNKNOWN,
				     rel, rel_end, h, r_symndx, FALSE))
	goto error_return;

      /* Check if _GLOBAL_OFFSET_TABLE_ is referenced.  */
      if (h == htab->elf.hgot)
	htab->got_referenced = TRUE;

      switch (r_type)
	{
	case R_386_TLS_LDM:
	  htab->tls_ld_or_ldm_got.refcount = 1;
	  goto create_got;

	case R_386_PLT32:
	  /* This symbol requires a procedure linkage table entry.  We
	     actually build the entry in adjust_dynamic_symbol,
	     because this might be a case of linking PIC code which is
	     never referenced by a dynamic object, in which case we
	     don't need to generate a procedure linkage table entry
	     after all.  */

	  /* If this is a local symbol, we resolve it directly without
	     creating a procedure linkage table entry.  */
	  if (h == NULL)
	    continue;

	  eh->zero_undefweak &= 0x2;
	  h->needs_plt = 1;
	  h->plt.refcount = 1;
	  break;

	case R_386_SIZE32:
	  size_reloc = TRUE;
	  goto do_size;

	case R_386_TLS_IE_32:
	case R_386_TLS_IE:
	case R_386_TLS_GOTIE:
	  if (!bfd_link_executable (info))
	    info->flags |= DF_STATIC_TLS;
	  /* Fall through */

	case R_386_GOT32:
	case R_386_GOT32X:
	case R_386_TLS_GD:
	case R_386_TLS_GOTDESC:
	case R_386_TLS_DESC_CALL:
	  /* This symbol requires a global offset table entry.  */
	  {
	    int tls_type, old_tls_type;

	    switch (r_type)
	      {
	      default:
	      case R_386_GOT32:
	      case R_386_GOT32X:
		tls_type = GOT_NORMAL;
		break;
	      case R_386_TLS_GD: tls_type = GOT_TLS_GD; break;
	      case R_386_TLS_GOTDESC:
	      case R_386_TLS_DESC_CALL:
		tls_type = GOT_TLS_GDESC; break;
	      case R_386_TLS_IE_32:
		if (ELF32_R_TYPE (rel->r_info) == r_type)
		  tls_type = GOT_TLS_IE_NEG;
		else
		  /* If this is a GD->IE transition, we may use either of
		     R_386_TLS_TPOFF and R_386_TLS_TPOFF32.  */
		  tls_type = GOT_TLS_IE;
		break;
	      case R_386_TLS_IE:
	      case R_386_TLS_GOTIE:
		tls_type = GOT_TLS_IE_POS; break;
	      }

	    if (h != NULL)
	      {
		h->got.refcount = 1;
		old_tls_type = elf_x86_hash_entry (h)->tls_type;
	      }
	    else
	      {
		bfd_signed_vma *local_got_refcounts;

		/* This is a global offset table entry for a local symbol.  */
		local_got_refcounts = elf_local_got_refcounts (abfd);
		if (local_got_refcounts == NULL)
		  {
		    bfd_size_type size;

		    size = symtab_hdr->sh_info;
		    size *= (sizeof (bfd_signed_vma)
			     + sizeof (bfd_vma) + sizeof(char));
		    local_got_refcounts = (bfd_signed_vma *)
			bfd_zalloc (abfd, size);
		    if (local_got_refcounts == NULL)
		      goto error_return;
		    elf_local_got_refcounts (abfd) = local_got_refcounts;
		    elf_x86_local_tlsdesc_gotent (abfd)
		      = (bfd_vma *) (local_got_refcounts + symtab_hdr->sh_info);
		    elf_x86_local_got_tls_type (abfd)
		      = (char *) (local_got_refcounts + 2 * symtab_hdr->sh_info);
		  }
		local_got_refcounts[r_symndx] = 1;
		old_tls_type = elf_x86_local_got_tls_type (abfd) [r_symndx];
	      }

	    if ((old_tls_type & GOT_TLS_IE) && (tls_type & GOT_TLS_IE))
	      tls_type |= old_tls_type;
	    /* If a TLS symbol is accessed using IE at least once,
	       there is no point to use dynamic model for it.  */
	    else if (old_tls_type != tls_type && old_tls_type != GOT_UNKNOWN
		     && (! GOT_TLS_GD_ANY_P (old_tls_type)
			 || (tls_type & GOT_TLS_IE) == 0))
	      {
		if ((old_tls_type & GOT_TLS_IE) && GOT_TLS_GD_ANY_P (tls_type))
		  tls_type = old_tls_type;
		else if (GOT_TLS_GD_ANY_P (old_tls_type)
			 && GOT_TLS_GD_ANY_P (tls_type))
		  tls_type |= old_tls_type;
		else
		  {
		    if (h)
		      name = h->root.root.string;
		    else
		      name = bfd_elf_sym_name (abfd, symtab_hdr, isym,
					     NULL);
		    _bfd_error_handler
		      /* xgettext:c-format */
		      (_("%pB: `%s' accessed both as normal and "
			 "thread local symbol"),
		       abfd, name);
		    bfd_set_error (bfd_error_bad_value);
		    goto error_return;
		  }
	      }

	    if (old_tls_type != tls_type)
	      {
		if (h != NULL)
		  elf_x86_hash_entry (h)->tls_type = tls_type;
		else
		  elf_x86_local_got_tls_type (abfd) [r_symndx] = tls_type;
	      }
	  }
	  /* Fall through */

	case R_386_GOTOFF:
	case R_386_GOTPC:
create_got:
	  if (r_type != R_386_TLS_IE)
	    {
	      if (eh != NULL)
		{
		  eh->zero_undefweak &= 0x2;

		  /* Need GOT to resolve undefined weak symbol to 0.  */
		  if (r_type == R_386_GOTOFF
		      && h->root.type == bfd_link_hash_undefweak
		      && bfd_link_executable (info))
		    htab->got_referenced = TRUE;
		}
	      break;
	    }
	  /* Fall through */

	case R_386_TLS_LE_32:
	case R_386_TLS_LE:
	  if (eh != NULL)
	    eh->zero_undefweak &= 0x2;
	  if (bfd_link_executable (info))
	    break;
	  info->flags |= DF_STATIC_TLS;
	  goto do_relocation;

	case R_386_32:
	case R_386_PC32:
	  if (eh != NULL && (sec->flags & SEC_CODE) != 0)
	    eh->zero_undefweak |= 0x2;
do_relocation:
	  /* We are called after all symbols have been resolved.  Only
	     relocation against STT_GNU_IFUNC symbol must go through
	     PLT.  */
	  if (h != NULL
	      && (bfd_link_executable (info)
		  || h->type == STT_GNU_IFUNC))
	    {
	      bfd_boolean func_pointer_ref = FALSE;

	      if (r_type == R_386_PC32)
		{
		  /* Since something like ".long foo - ." may be used
		     as pointer, make sure that PLT is used if foo is
		     a function defined in a shared library.  */
		  if ((sec->flags & SEC_CODE) == 0)
		    h->pointer_equality_needed = 1;
		  else if (h->type == STT_GNU_IFUNC
			   && bfd_link_pic (info))
		    {
		      _bfd_error_handler
			/* xgettext:c-format */
			(_("%pB: unsupported non-PIC call to IFUNC `%s'"),
			 abfd, h->root.root.string);
		      bfd_set_error (bfd_error_bad_value);
		      goto error_return;
		    }
		}
	      else
		{
		  h->pointer_equality_needed = 1;
		  /* R_386_32 can be resolved at run-time.  */
		  if (r_type == R_386_32
		      && (sec->flags & SEC_READONLY) == 0)
		    func_pointer_ref = TRUE;
		}

	      if (!func_pointer_ref)
		{
		  /* If this reloc is in a read-only section, we might
		     need a copy reloc.  We can't check reliably at this
		     stage whether the section is read-only, as input
		     sections have not yet been mapped to output sections.
		     Tentatively set the flag for now, and correct in
		     adjust_dynamic_symbol.  */
		  h->non_got_ref = 1;

		  /* We may need a .plt entry if the symbol is a function
		     defined in a shared lib or is a function referenced
		     from the code or read-only section.  */
		  if (!h->def_regular
		      || (sec->flags & (SEC_CODE | SEC_READONLY)) != 0)
		    h->plt.refcount = 1;
		}
	    }

	  size_reloc = FALSE;
do_size:
	  if (NEED_DYNAMIC_RELOCATION_P (info, FALSE, h, sec, r_type,
					 R_386_32))
	    {
	      struct elf_dyn_relocs *p;
	      struct elf_dyn_relocs **head;

	      /* We must copy these reloc types into the output file.
		 Create a reloc section in dynobj and make room for
		 this reloc.  */
	      if (sreloc == NULL)
		{
		  sreloc = _bfd_elf_make_dynamic_reloc_section
		    (sec, htab->elf.dynobj, 2, abfd, /*rela?*/ FALSE);

		  if (sreloc == NULL)
		    goto error_return;
		}

	      /* If this is a global symbol, we count the number of
		 relocations we need for this symbol.  */
	      if (h != NULL)
		{
		  head = &eh->dyn_relocs;
		}
	      else
		{
		  /* Track dynamic relocs needed for local syms too.
		     We really need local syms available to do this
		     easily.  Oh well.  */
		  void **vpp;
		  asection *s;

		  isym = bfd_sym_from_r_symndx (&htab->sym_cache,
						abfd, r_symndx);
		  if (isym == NULL)
		    goto error_return;

		  s = bfd_section_from_elf_index (abfd, isym->st_shndx);
		  if (s == NULL)
		    s = sec;

		  vpp = &elf_section_data (s)->local_dynrel;
		  head = (struct elf_dyn_relocs **)vpp;
		}

	      p = *head;
	      if (p == NULL || p->sec != sec)
		{
		  size_t amt = sizeof *p;
		  p = (struct elf_dyn_relocs *) bfd_alloc (htab->elf.dynobj,
							   amt);
		  if (p == NULL)
		    goto error_return;
		  p->next = *head;
		  *head = p;
		  p->sec = sec;
		  p->count = 0;
		  p->pc_count = 0;
		}

	      p->count += 1;
	      /* Count size relocation as PC-relative relocation.  */
	      if (r_type == R_386_PC32 || size_reloc)
		p->pc_count += 1;
	    }
	  break;

	  /* This relocation describes the C++ object vtable hierarchy.
	     Reconstruct it for later use during GC.  */
	case R_386_GNU_VTINHERIT:
	  if (!bfd_elf_gc_record_vtinherit (abfd, sec, h, rel->r_offset))
	    goto error_return;
	  break;

	  /* This relocation describes which C++ vtable entries are actually
	     used.  Record for later use during GC.  */
	case R_386_GNU_VTENTRY:
	  if (!bfd_elf_gc_record_vtentry (abfd, sec, h, rel->r_offset))
	    goto error_return;
	  break;

	default:
	  break;
	}
    }

  if (elf_section_data (sec)->this_hdr.contents != contents)
    {
      if (!converted && !info->keep_memory)
	free (contents);
      else
	{
	  /* Cache the section contents for elf_link_input_bfd if any
	     load is converted or --no-keep-memory isn't used.  */
	  elf_section_data (sec)->this_hdr.contents = contents;
	}
    }

  /* Cache relocations if any load is converted.  */
  if (elf_section_data (sec)->relocs != relocs && converted)
    elf_section_data (sec)->relocs = (Elf_Internal_Rela *) relocs;

  return TRUE;

error_return:
  if (elf_section_data (sec)->this_hdr.contents != contents)
    free (contents);
  sec->check_relocs_failed = 1;
  return FALSE;
}

/* Set the correct type for an x86 ELF section.  We do this by the
   section name, which is a hack, but ought to work.  */

static bfd_boolean
elf_i386_fake_sections (bfd *abfd ATTRIBUTE_UNUSED,
			Elf_Internal_Shdr *hdr,
			asection *sec)
{
  const char *name;

  name = bfd_section_name (sec);

  /* This is an ugly, but unfortunately necessary hack that is
     needed when producing EFI binaries on x86. It tells
     elf.c:elf_fake_sections() not to consider ".reloc" as a section
     containing ELF relocation info.  We need this hack in order to
     be able to generate ELF binaries that can be translated into
     EFI applications (which are essentially COFF objects).  Those
     files contain a COFF ".reloc" section inside an ELFNN object,
     which would normally cause BFD to segfault because it would
     attempt to interpret this section as containing relocation
     entries for section "oc".  With this hack enabled, ".reloc"
     will be treated as a normal data section, which will avoid the
     segfault.  However, you won't be able to create an ELFNN binary
     with a section named "oc" that needs relocations, but that's
     the kind of ugly side-effects you get when detecting section
     types based on their names...  In practice, this limitation is
     unlikely to bite.  */
  if (strcmp (name, ".reloc") == 0)
    hdr->sh_type = SHT_PROGBITS;

  return TRUE;
}

/* Return the relocation value for @tpoff relocation
   if STT_TLS virtual address is ADDRESS.  */

static bfd_vma
elf_i386_tpoff (struct bfd_link_info *info, bfd_vma address)
{
  struct elf_link_hash_table *htab = elf_hash_table (info);
  const struct elf_backend_data *bed = get_elf_backend_data (info->output_bfd);
  bfd_vma static_tls_size;

  /* If tls_sec is NULL, we should have signalled an error already.  */
  if (htab->tls_sec == NULL)
    return 0;

  /* Consider special static TLS alignment requirements.  */
  static_tls_size = BFD_ALIGN (htab->tls_size, bed->static_tls_alignment);
  return static_tls_size + htab->tls_sec->vma - address;
}

/* Relocate an i386 ELF section.  */

static bfd_boolean
elf_i386_relocate_section (bfd *output_bfd,
			   struct bfd_link_info *info,
			   bfd *input_bfd,
			   asection *input_section,
			   bfd_byte *contents,
			   Elf_Internal_Rela *relocs,
			   Elf_Internal_Sym *local_syms,
			   asection **local_sections)
{
  struct elf_x86_link_hash_table *htab;
  Elf_Internal_Shdr *symtab_hdr;
  struct elf_link_hash_entry **sym_hashes;
  bfd_vma *local_got_offsets;
  bfd_vma *local_tlsdesc_gotents;
  Elf_Internal_Rela *rel;
  Elf_Internal_Rela *wrel;
  Elf_Internal_Rela *relend;
  bfd_boolean is_vxworks_tls;
  unsigned plt_entry_size;

  /* Skip if check_relocs failed.  */
  if (input_section->check_relocs_failed)
    return FALSE;

  htab = elf_x86_hash_table (info, I386_ELF_DATA);
  if (htab == NULL)
    return FALSE;

  if (!is_x86_elf (input_bfd, htab))
    {
      bfd_set_error (bfd_error_wrong_format);
      return FALSE;
    }

  symtab_hdr = &elf_symtab_hdr (input_bfd);
  sym_hashes = elf_sym_hashes (input_bfd);
  local_got_offsets = elf_local_got_offsets (input_bfd);
  local_tlsdesc_gotents = elf_x86_local_tlsdesc_gotent (input_bfd);
  /* We have to handle relocations in vxworks .tls_vars sections
     specially, because the dynamic loader is 'weird'.  */
  is_vxworks_tls = (htab->target_os == is_vxworks
		    && bfd_link_pic (info)
		    && !strcmp (input_section->output_section->name,
				".tls_vars"));

  _bfd_x86_elf_set_tls_module_base (info);

  plt_entry_size = htab->plt.plt_entry_size;

  rel = wrel = relocs;
  relend = relocs + input_section->reloc_count;
  for (; rel < relend; wrel++, rel++)
    {
      unsigned int r_type, r_type_tls;
      reloc_howto_type *howto;
      unsigned long r_symndx;
      struct elf_link_hash_entry *h;
      struct elf_x86_link_hash_entry *eh;
      Elf_Internal_Sym *sym;
      asection *sec;
      bfd_vma off, offplt, plt_offset;
      bfd_vma relocation;
      bfd_boolean unresolved_reloc;
      bfd_reloc_status_type r;
      unsigned int indx;
      int tls_type;
      bfd_vma st_size;
      asection *resolved_plt;
      bfd_boolean resolved_to_zero;
      bfd_boolean relative_reloc;

      r_type = ELF32_R_TYPE (rel->r_info);
      if (r_type == R_386_GNU_VTINHERIT
	  || r_type == R_386_GNU_VTENTRY)
	{
	  if (wrel != rel)
	    *wrel = *rel;
	  continue;
	}

      howto = elf_i386_rtype_to_howto (r_type);
      if (howto == NULL)
	return _bfd_unrecognized_reloc (input_bfd, input_section, r_type);

      r_symndx = ELF32_R_SYM (rel->r_info);
      h = NULL;
      sym = NULL;
      sec = NULL;
      unresolved_reloc = FALSE;
      if (r_symndx < symtab_hdr->sh_info)
	{
	  sym = local_syms + r_symndx;
	  sec = local_sections[r_symndx];
	  relocation = (sec->output_section->vma
			+ sec->output_offset
			+ sym->st_value);
	  st_size = sym->st_size;

	  if (ELF_ST_TYPE (sym->st_info) == STT_SECTION
	      && ((sec->flags & SEC_MERGE) != 0
		  || (bfd_link_relocatable (info)
		      && sec->output_offset != 0)))
	    {
	      bfd_vma addend;
	      bfd_byte *where = contents + rel->r_offset;