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path: root/gdb/gdbserver/linux-low.c
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2014-11-12GDBserver: don't resume all threads if the Hc thread disapearsPedro Alves1-28/+0
There's code in linux_wait_1 that resumes all threads if the Hc thread disappears. It's the wrong thing to do, as GDB has told GDBserver to resume only one thread, because e.g., the user has scheduler-locking enabled, or because GDB was stepping the program over a breakpoint. Resuming all threads behind GDB's back can't be good in either case. The right thing to do is to detect that that the (only) resumed thread is gone, and let GDB know about it. The Linux backend is already doing that nowadays, since: commit fa96cb382c12b099675c5cc238aaa7352a3fd3d7 Author: Pedro Alves <palves@redhat.com> AuthorDate: Thu Feb 27 14:30:08 2014 +0000 Teach GDBserver's Linux backend about no unwaited-for children (TARGET_WAITKIND_NO_RESUMED). The backend detects that all resumed threads have disappeared, and returns TARGET_WAITKIND_NO_RESUMED to the core of GDBserver, which then reports an error to GDB. There's no need to frob the passed in ptid to wait for the continue thread either -- linux_wait_for_event only returns events for resumed threads. The badness (of resuming threads) can actually be observed in the testsuite, if we force-disable vCont support in GDBserver -- before the patch, gdb.threads/no-unwaited-for-left.exp hangs if we disable vCont: (gdb) continue Continuing. FAIL: gdb.threads/no-unwaited-for-left.exp: continue to breakpoint: break-here (timeout) ... more cascading timeouts .... After the patch, gdb.threads/no-unwaited-for-left.exp behaves the same with or without vCont support: (gdb) continue Continuing. [New Thread 32226] [Switching to Thread 32226] Breakpoint 2, thread_a (arg=0x0) at /home/pedro/gdb/mygit/build/../src/gdb/testsuite/gdb.threads/no-unwaited-for-left.c:28 28 return 0; /* break-here */ (gdb) PASS: gdb.threads/no-unwaited-for-left.exp: continue to breakpoint: break-here ... continue Continuing. warning: Remote failure reply: E.No unwaited-for children left. [Thread 32222] #1 stopped. (gdb) FAIL: gdb.threads/no-unwaited-for-left.exp: continue stops when the main thread exits Overall, this is also good for getting rid of a RSP detail from the backend. gdb/gdbserver/ 2014-11-12 Pedro Alves <palves@redhat.com> * linux-low.c (linux_wait_1): Don't force a wait for the Hc thread, and don't resume all threads if the Hc thread has exited.
2014-11-12GDBserver: ctrl-c after leader has exitedPedro Alves1-10/+3
The target->request_interrupt callback implements the handling for ctrl-c. User types ctrl-c in GDB, GDB sends a \003 to the remote target, and the remote targets stops the program with a SIGINT, just like if the user typed ctrl-c in GDBserver's terminal. The trouble is that using kill_lwp(signal_pid, SIGINT) sends the SIGINT directly to the program's main thread. If that thread has exited already, then that kill won't do anything. Instead, send the SIGINT to the process group, just like GDB does (see inf-ptrace.c:inf_ptrace_stop). gdb.threads/leader-exit.exp is extended to cover the scenario. It fails against GDBserver before the patch. Tested on x86_64 Fedora 20, native and GDBserver. gdb/gdbserver/ 2014-11-12 Pedro Alves <palves@redhat.com> * linux-low.c (linux_request_interrupt): Always send a SIGINT to the process group instead of to a specific LWP. gdb/testsuite/ 2014-11-12 Pedro Alves <palves@redhat.com> * gdb.threads/leader-exit.exp: Test sending ctrl-c works after the leader has exited.
2014-09-23Honour SIGILL and SIGSEGV in cancel breakpoint and event lwp selectionYao Qi1-10/+18
I see the following fail on arm-none-linux-gnueabi testing, (gdb) continue^M Continuing.^M ^M Program received signal SIGILL, Illegal instruction.^M [Switching to Thread 1003]^M handler (signo=10) at /scratch/yqi/arm-none-linux-gnueabi/src/gdb-trunk/gdb/testsuite/gdb.threads/sigstep-threads.c:33^M 33 tgkill (getpid (), gettid (), SIGUSR1); /* step-2 */^M (gdb) FAIL: gdb.threads/sigstep-threads.exp: continue the cause is that GDBserver doesn't cancel the breakpoint if the stop signal is SIGILL. The kernel used here is a little old, 2.6.x, and doesn't translate SIGILL to SIGTRAP when program hits breakpoint instruction (which is an illegal instruction actually). GDB and GDBserver can translate SIGILL to SIGTRAP under certain circumstance, so it is not a problem here. See gdbserver/linux-low.c:linux_wait_1 /* If this event was not handled before, and is not a SIGTRAP, we report it. SIGILL and SIGSEGV are also treated as traps in case a breakpoint is inserted at the current PC. If this target does not support internal breakpoints at all, we also report the SIGTRAP without further processing; it's of no concern to us. */ maybe_internal_trap = (supports_breakpoints () && (WSTOPSIG (w) == SIGTRAP || ((WSTOPSIG (w) == SIGILL || WSTOPSIG (w) == SIGSEGV) && (*the_low_target.breakpoint_at) (event_child->stop_pc)))); However, SIGILL and SIGSEGV is not considered when cancelling breakpoint, which causes the fail above. That is, when GDB is doing software single step on address ADDR, both thread A and thread B hits the software single step breakpoint, and get SIGILL. GDB selects the event from thread A, removes the software single step breakpoint, and resume the program. The event (SIGILL) from thread B is reported to GDB, but GDB doesn't regard this SIGILL as SIGTRAP, because the breakpoint on address ADDR was removed, so GDB reports "Program received signal SIGILL". The patch is to allow calling cancel_breakpoint if the signal is SIGILL and SIGSEGV. This patch fixes the fail above. Likewise, event lwp selection should honour SIGILL and SIGSEGV too. gdb/gdbserver: 2014-09-23 Yao Qi <yao@codesourcery.com> * linux-low.c (lp_status_maybe_breakpoint): New function. (linux_low_filter_event): Call lp_status_maybe_breakpoint. (count_events_callback): Likewise. (select_event_lwp_callback): Likewise. (cancel_breakpoints_callback): Likewise.
2014-09-19Refactor ptrace extended event status.Don Breazeal1-4/+4
This commit implements functions for identifying and extracting extended ptrace event information from a Linux wait status. These are just convenience functions intended to hide the ">> 16" used to extract the event from the wait status word, replacing the hard-coded shift with a more descriptive function call. This is preparatory work for implementation of follow-fork and detach-on-fork for extended-remote linux targets. gdb/ChangeLog: * linux-nat.c (linux_handle_extended_wait): Call linux_ptrace_get_extended_event. (wait_lwp): Call linux_is_extended_waitstatus. (linux_nat_filter_event): Call linux_ptrace_get_extended_event and linux_is_extended_waitstatus. * nat/linux-ptrace.c (linux_test_for_tracefork): Call linux_ptrace_get_extended_event. (linux_ptrace_get_extended_event): New function. (linux_is_extended_waitstatus): New function. * nat/linux-ptrace.h (linux_ptrace_get_extended_event) (linux_is_extended_waitstatus): New declarations. gdb/gdbserver/ChangeLog: * linux-low.c (handle_extended_wait): Call linux_ptrace_get_extended_event. (get_stop_pc, get_detach_signal, linux_low_filter_event): Call linux_is_extended_waitstatus. ---
2014-09-16Rename current_inferior as current_thread in gdbserverGary Benson1-106/+106
GDB has a function named "current_inferior" and gdbserver has a global variable named "current_inferior", but the two are not equivalent; indeed, gdbserver does not have any real equivalent of what GDB calls an inferior. What gdbserver's "current_inferior" is actually pointing to is a structure describing the current thread. This commit renames current_inferior as current_thread in gdbserver to clarify this. It also renames the function "set_desired_inferior" to "set_desired_thread" and renames various local variables from foo_inferior to foo_thread. gdb/gdbserver/ChangeLog: * inferiors.h (current_inferior): Renamed as... (current_thread): New variable. All uses updated. * linux-low.c (get_pc): Renamed saved_inferior as saved_thread. (maybe_move_out_of_jump_pad): Likewise. (cancel_breakpoint): Likewise. (linux_low_filter_event): Likewise. (wait_for_sigstop): Likewise. (linux_resume_one_lwp): Likewise. (need_step_over_p): Likewise. (start_step_over): Likewise. (linux_stabilize_threads): Renamed save_inferior as saved_thread. * linux-x86-low.c (x86_linux_update_xmltarget): Likewise. * proc-service.c (ps_lgetregs): Renamed reg_inferior as reg_thread and save_inferior as saved_thread. * regcache.c (get_thread_regcache): Renamed saved_inferior as saved_thread. (regcache_invalidate_thread): Likewise. * remote-utils.c (prepare_resume_reply): Likewise. * thread-db.c (thread_db_get_tls_address): Likewise. (disable_thread_event_reporting): Likewise. (remove_thread_event_breakpoints): Likewise. * tracepoint.c (gdb_agent_about_to_close): Renamed save_inferior as saved_thread. * target.h (set_desired_inferior): Renamed as... (set_desired_thread): New declaration. All uses updated. * server.c (myresume): Updated comment to reference thread instead of inferior. (handle_serial_event): Likewise. (handle_target_event): Likewise.
2014-08-28Downgrade fatal to warning in linux_asyncGary Benson1-1/+12
This commit downgrades a fatal error to a warning in linux_async. linux_async is called from two different places in gdbserver: Via target_async from handle_accept_event. The argument is always zero, so the warning will never be printed here. Via start_non_stop from handle_general_set. This prints its own error message to stderr on failure, which will be preceded by the warning if it is emitted. gdb/gdbserver/ChangeLog: * linux-low.c (linux_async): Replace fatal with warning. Tidy up and return. (linux_start_non_stop): Return -1 if linux_async failed.
2014-08-28Straightforward fatal to internal_error conversionsGary Benson1-3/+10
This commit replaces most of the calls to fatal that represent internal errors with calls to internal_error, either directly or via gdb_assert and gdb_assert_not_reached. gdb/gdbserver/ChangeLog: * inferiors.c (get_thread_process): Replace check with gdb_assert. * linux-low.c (linux_wait_for_event_filtered): Replace fatal with internal_error. (linux_resume_one_lwp): Likewise. * linux-x86-low.c (x86_siginfo_fixup): Replace checks with gdb_assert. * mem-break.c (raw_bkpt_type_to_target_hw_bp_type): Replace fatal with internal_error. * regcache.c (get_thread_regcache): Replace check with gdb_assert. (init_register_cache): Replace fatal with gdb_assert_not_reached. (find_register_by_name): Replace fatal with internal_error. (find_regno): Likewise. * tdesc.c (init_target_desc): Replace check with gdb_assert. * thread-db.c (thread_db_create_event): Likewise. (thread_db_load_search): Likewise. (try_thread_db_load_1): Likewise. * tracepoint.c (get_jump_space_head): Replace fatal with internal_error. (claim_trampoline_space): Likewise. (have_fast_tracepoint_trampoline_buffer): Likewise. (cmd_qtstart): Likewise. (stop_tracing): Likewise. (fast_tracepoint_collecting): Likewise. (target_malloc): Likewise. (download_tracepoint): Likewise. (download_trace_state_variables): Replace check with gdb_assert. (upload_fast_traceframes): Replace fatal with internal_error.
2014-08-07Move errno.h to common-defs.hGary Benson1-1/+0
This commit moves the inclusion of errno.h to common-defs.h and removes all other inclusions. Note that prior to this commit server.h included errno.h protected by "#ifdef HAVE_ERRNO_H". This protection was added with the Windows CE port, which is currently broken. Since no other platform needs this, I have removed the protection and the configury to support it. gdb/ 2014-08-07 Gary Benson <gbenson@redhat.com> * common/common-defs.h: Include errno.h. * defs.h: Do not include errno.h. * ada-typeprint.c: Likewise. * c-typeprint.c: Likewise. * core-regset.c: Likewise. * corefile.c: Likewise. * corelow.c: Likewise. * event-loop.c: Likewise. * f-typeprint.c: Likewise. * gnu-nat.c: Likewise. * go32-nat.c: Likewise. * i386gnu-nat.c: Likewise. * m2-typeprint.c: Likewise. * nat/linux-btrace.c: Likewise. * p-typeprint.c: Likewise. * procfs.c: Likewise. * remote-sim.c: Likewise. * rs6000-nat.c: Likewise. * target.c: Likewise. * typeprint.c: Likewise. * ui-file.c: Likewise. * valops.c: Likewise. * valprint.c: Likewise. gdb/gdbserver/ 2014-08-07 Gary Benson <gbenson@redhat.com> * configure.ac (AC_CHECK_HEADERS): Remove errno.h. * configure: Regenerate. * config.in: Likewise. * server.h: Do not include errno.h. * event-loop.c: Likewise. * hostio-errno.c: Likewise. * linux-low.c: Likewise. * remote-utils.c: Likewise. * spu-low.c: Likewise. * utils.c: Likewise. * gdbreplay.c: Unconditionally include errno.h.
2014-08-07Include string.h in common-defs.hGary Benson1-1/+0
This commit includes string.h in common-defs.h and removes all other inclusions. gdb/ 2014-08-07 Gary Benson <gbenson@redhat.com> * common/common-defs.h: Include string.h. * aarch64-tdep.c: Do not include string.h. * ada-exp.y: Likewise. * ada-lang.c: Likewise. * ada-lex.l: Likewise. * ada-typeprint.c: Likewise. * ada-valprint.c: Likewise. * aix-thread.c: Likewise. * alpha-linux-tdep.c: Likewise. * alpha-mdebug-tdep.c: Likewise. * alpha-nat.c: Likewise. * alpha-osf1-tdep.c: Likewise. * alpha-tdep.c: Likewise. * alphanbsd-tdep.c: Likewise. * amd64-dicos-tdep.c: Likewise. * amd64-linux-tdep.c: Likewise. * amd64-nat.c: Likewise. * amd64-sol2-tdep.c: Likewise. * amd64fbsd-tdep.c: Likewise. * amd64obsd-tdep.c: Likewise. * arch-utils.c: Likewise. * arm-linux-nat.c: Likewise. * arm-linux-tdep.c: Likewise. * arm-tdep.c: Likewise. * arm-wince-tdep.c: Likewise. * armbsd-tdep.c: Likewise. * armnbsd-nat.c: Likewise. * armnbsd-tdep.c: Likewise. * armobsd-tdep.c: Likewise. * avr-tdep.c: Likewise. * ax-gdb.c: Likewise. * ax-general.c: Likewise. * bcache.c: Likewise. * bfin-tdep.c: Likewise. * breakpoint.c: Likewise. * build-id.c: Likewise. * buildsym.c: Likewise. * c-exp.y: Likewise. * c-lang.c: Likewise. * c-typeprint.c: Likewise. * c-valprint.c: Likewise. * charset.c: Likewise. * cli-out.c: Likewise. * cli/cli-cmds.c: Likewise. * cli/cli-decode.c: Likewise. * cli/cli-dump.c: Likewise. * cli/cli-interp.c: Likewise. * cli/cli-logging.c: Likewise. * cli/cli-script.c: Likewise. * cli/cli-setshow.c: Likewise. * cli/cli-utils.c: Likewise. * coffread.c: Likewise. * common/agent.c: Likewise. * common/buffer.c: Likewise. * common/buffer.h: Likewise. * common/common-utils.c: Likewise. * common/filestuff.c: Likewise. * common/filestuff.c: Likewise. * common/format.c: Likewise. * common/print-utils.c: Likewise. * common/rsp-low.c: Likewise. * common/signals.c: Likewise. * common/vec.h: Likewise. * common/xml-utils.c: Likewise. * core-regset.c: Likewise. * corefile.c: Likewise. * corelow.c: Likewise. * cp-abi.c: Likewise. * cp-name-parser.y: Likewise. * cp-support.c: Likewise. * cp-valprint.c: Likewise. * cris-tdep.c: Likewise. * d-exp.y: Likewise. * darwin-nat.c: Likewise. * dbxread.c: Likewise. * dcache.c: Likewise. * demangle.c: Likewise. * dicos-tdep.c: Likewise. * disasm.c: Likewise. * doublest.c: Likewise. * dsrec.c: Likewise. * dummy-frame.c: Likewise. * dwarf2-frame.c: Likewise. * dwarf2loc.c: Likewise. * dwarf2read.c: Likewise. * elfread.c: Likewise. * environ.c: Likewise. * eval.c: Likewise. * event-loop.c: Likewise. * exceptions.c: Likewise. * exec.c: Likewise. * expprint.c: Likewise. * f-exp.y: Likewise. * f-lang.c: Likewise. * f-typeprint.c: Likewise. * f-valprint.c: Likewise. * fbsd-nat.c: Likewise. * findcmd.c: Likewise. * findvar.c: Likewise. * fork-child.c: Likewise. * frame.c: Likewise. * frv-linux-tdep.c: Likewise. * frv-tdep.c: Likewise. * gdb.c: Likewise. * gdb_bfd.c: Likewise. * gdbarch.c: Likewise. * gdbarch.sh: Likewise. * gdbtypes.c: Likewise. * gnu-nat.c: Likewise. * gnu-v2-abi.c: Likewise. * gnu-v3-abi.c: Likewise. * go-exp.y: Likewise. * go-lang.c: Likewise. * go32-nat.c: Likewise. * guile/guile.c: Likewise. * guile/scm-auto-load.c: Likewise. * hppa-hpux-tdep.c: Likewise. * hppa-linux-nat.c: Likewise. * hppanbsd-tdep.c: Likewise. * hppaobsd-tdep.c: Likewise. * i386-cygwin-tdep.c: Likewise. * i386-dicos-tdep.c: Likewise. * i386-linux-tdep.c: Likewise. * i386-nto-tdep.c: Likewise. * i386-sol2-tdep.c: Likewise. * i386-tdep.c: Likewise. * i386bsd-tdep.c: Likewise. * i386gnu-nat.c: Likewise. * i386nbsd-tdep.c: Likewise. * i386obsd-tdep.c: Likewise. * i387-tdep.c: Likewise. * ia64-libunwind-tdep.c: Likewise. * ia64-linux-nat.c: Likewise. * inf-child.c: Likewise. * inf-ptrace.c: Likewise. * inf-ttrace.c: Likewise. * infcall.c: Likewise. * infcmd.c: Likewise. * inflow.c: Likewise. * infrun.c: Likewise. * interps.c: Likewise. * iq2000-tdep.c: Likewise. * irix5-nat.c: Likewise. * jv-exp.y: Likewise. * jv-lang.c: Likewise. * jv-typeprint.c: Likewise. * jv-valprint.c: Likewise. * language.c: Likewise. * linux-fork.c: Likewise. * linux-nat.c: Likewise. * lm32-tdep.c: Likewise. * m2-exp.y: Likewise. * m2-typeprint.c: Likewise. * m32c-tdep.c: Likewise. * m32r-linux-nat.c: Likewise. * m32r-linux-tdep.c: Likewise. * m32r-rom.c: Likewise. * m32r-tdep.c: Likewise. * m68hc11-tdep.c: Likewise. * m68k-tdep.c: Likewise. * m68kbsd-tdep.c: Likewise. * m68klinux-nat.c: Likewise. * m68klinux-tdep.c: Likewise. * m88k-tdep.c: Likewise. * machoread.c: Likewise. * macrocmd.c: Likewise. * main.c: Likewise. * mdebugread.c: Likewise. * mem-break.c: Likewise. * memattr.c: Likewise. * memory-map.c: Likewise. * mep-tdep.c: Likewise. * mi/mi-cmd-break.c: Likewise. * mi/mi-cmd-disas.c: Likewise. * mi/mi-cmd-env.c: Likewise. * mi/mi-cmd-stack.c: Likewise. * mi/mi-cmd-var.c: Likewise. * mi/mi-cmds.c: Likewise. * mi/mi-console.c: Likewise. * mi/mi-getopt.c: Likewise. * mi/mi-interp.c: Likewise. * mi/mi-main.c: Likewise. * mi/mi-parse.c: Likewise. * microblaze-rom.c: Likewise. * microblaze-tdep.c: Likewise. * mingw-hdep.c: Likewise. * minidebug.c: Likewise. * minsyms.c: Likewise. * mips-irix-tdep.c: Likewise. * mips-linux-tdep.c: Likewise. * mips-tdep.c: Likewise. * mips64obsd-tdep.c: Likewise. * mipsnbsd-tdep.c: Likewise. * mipsread.c: Likewise. * mn10300-linux-tdep.c: Likewise. * mn10300-tdep.c: Likewise. * monitor.c: Likewise. * moxie-tdep.c: Likewise. * mt-tdep.c: Likewise. * nat/linux-btrace.c: Likewise. * nat/linux-osdata.c: Likewise. * nat/linux-procfs.c: Likewise. * nat/linux-ptrace.c: Likewise. * nat/linux-waitpid.c: Likewise. * nbsd-tdep.c: Likewise. * nios2-linux-tdep.c: Likewise. * nto-procfs.c: Likewise. * nto-tdep.c: Likewise. * objc-lang.c: Likewise. * objfiles.c: Likewise. * opencl-lang.c: Likewise. * osabi.c: Likewise. * osdata.c: Likewise. * p-exp.y: Likewise. * p-lang.c: Likewise. * p-typeprint.c: Likewise. * parse.c: Likewise. * posix-hdep.c: Likewise. * ppc-linux-nat.c: Likewise. * ppc-sysv-tdep.c: Likewise. * ppcfbsd-tdep.c: Likewise. * ppcnbsd-tdep.c: Likewise. * ppcobsd-tdep.c: Likewise. * printcmd.c: Likewise. * procfs.c: Likewise. * prologue-value.c: Likewise. * python/py-auto-load.c: Likewise. * python/py-gdb-readline.c: Likewise. * ravenscar-thread.c: Likewise. * regcache.c: Likewise. * registry.c: Likewise. * remote-fileio.c: Likewise. * remote-m32r-sdi.c: Likewise. * remote-mips.c: Likewise. * remote-notif.c: Likewise. * remote-sim.c: Likewise. * remote.c: Likewise. * reverse.c: Likewise. * rs6000-aix-tdep.c: Likewise. * ser-base.c: Likewise. * ser-go32.c: Likewise. * ser-mingw.c: Likewise. * ser-pipe.c: Likewise. * ser-tcp.c: Likewise. * ser-unix.c: Likewise. * serial.c: Likewise. * sh-tdep.c: Likewise. * sh64-tdep.c: Likewise. * shnbsd-tdep.c: Likewise. * skip.c: Likewise. * sol-thread.c: Likewise. * solib-dsbt.c: Likewise. * solib-frv.c: Likewise. * solib-osf.c: Likewise. * solib-som.c: Likewise. * solib-spu.c: Likewise. * solib-target.c: Likewise. * solib.c: Likewise. * somread.c: Likewise. * source.c: Likewise. * sparc-nat.c: Likewise. * sparc-sol2-tdep.c: Likewise. * sparc-tdep.c: Likewise. * sparc64-tdep.c: Likewise. * sparc64fbsd-tdep.c: Likewise. * sparc64nbsd-tdep.c: Likewise. * sparcnbsd-tdep.c: Likewise. * spu-linux-nat.c: Likewise. * spu-multiarch.c: Likewise. * spu-tdep.c: Likewise. * stabsread.c: Likewise. * stack.c: Likewise. * std-regs.c: Likewise. * symfile.c: Likewise. * symmisc.c: Likewise. * symtab.c: Likewise. * target.c: Likewise. * thread.c: Likewise. * tilegx-linux-nat.c: Likewise. * tilegx-tdep.c: Likewise. * top.c: Likewise. * tracepoint.c: Likewise. * tui/tui-command.c: Likewise. * tui/tui-data.c: Likewise. * tui/tui-disasm.c: Likewise. * tui/tui-file.c: Likewise. * tui/tui-layout.c: Likewise. * tui/tui-out.c: Likewise. * tui/tui-regs.c: Likewise. * tui/tui-source.c: Likewise. * tui/tui-stack.c: Likewise. * tui/tui-win.c: Likewise. * tui/tui-windata.c: Likewise. * tui/tui-winsource.c: Likewise. * typeprint.c: Likewise. * ui-file.c: Likewise. * ui-out.c: Likewise. * user-regs.c: Likewise. * utils.c: Likewise. * v850-tdep.c: Likewise. * valarith.c: Likewise. * valops.c: Likewise. * valprint.c: Likewise. * value.c: Likewise. * varobj.c: Likewise. * vax-tdep.c: Likewise. * vaxnbsd-tdep.c: Likewise. * vaxobsd-tdep.c: Likewise. * windows-nat.c: Likewise. * xcoffread.c: Likewise. * xml-support.c: Likewise. * xstormy16-tdep.c: Likewise. * xtensa-linux-nat.c: Likewise. gdb/gdbserver/ 2014-08-07 Gary Benson <gbenson@redhat.com> * server.h: Do not include string.h. * event-loop.c: Likewise. * linux-low.c: Likewise. * regcache.c: Likewise. * remote-utils.c: Likewise. * spu-low.c: Likewise. * utils.c: Likewise.
2014-08-07Move stdlib.h to common-defs.hGary Benson1-1/+0
This commit moves the inclusion of stdlib.h to common-defs.h and removes all other inclusions. gdb/ 2014-08-07 Gary Benson <gbenson@redhat.com> * common/common-defs.h: Include stdlib.h. * defs.h: Do not include stdlib.h. * addrmap.c: Likewise. * bcache.c: Likewise. * common/buffer.c: Likewise. * common/common-utils.c: Likewise. * cp-name-parser.y: Likewise. * go32-nat.c: Likewise. * mn10300-linux-tdep.c: Likewise. * nat/linux-osdata.c: Likewise. * tui/tui.c: Likewise. * windows-nat.c: Likewise. gdb/gdbserver/ 2014-08-07 Gary Benson <gbenson@redhat.com> * server.h: Do not include stdlib.h. * inferiors.c: Likewise. * linux-low.c: Likewise. * regcache.c: Likewise. * spu-low.c: Likewise. * tracepoint.c: Likewise. * utils.c: Likewise.
2014-08-07Move stdio.h to common-defs.hGary Benson1-1/+0
This commit moves the inclusion of stdio.h to common-defs.h and removes all other inclusions. gdb/ 2014-08-07 Gary Benson <gbenson@redhat.com> * common/common-defs.h: Include stdio.h. * defs.h: Do not include stdio.h. * ada-lang.c: Likewise. * common/buffer.c: Likewise. * common/common-utils.c: Likewise. * cp-name-parser.y: Likewise. * gnu-nat.c: Likewise. * go32-nat.c: Likewise. * i386gnu-nat.c: Likewise. * proc-api.c: Likewise. * proc-events.c: Likewise. * proc-flags.c: Likewise. * proc-why.c: Likewise. * python/python-internal.h: Likewise. * target-memory.c: Likewise. * tui/tui-io.c: Likewise. * tui/tui.c: Likewise. gdb/gdbserver/ 2014-08-07 Gary Benson <gbenson@redhat.com> * server.h: Do not include stdio.h. * linux-low.c: Likewise. * remote-utils.c: Likewise. * spu-low.c: Likewise. * utils.c: Likewise. * wincecompat.c: Likewise.
2014-08-06Replace hardwired target-is-async checkGary Benson1-1/+1
This commit replaces a hardwired target-is-async check. gdb/gdbserver/ 2014-08-06 Gary Benson <gbenson@redhat.com> * linux-low.c (linux_supports_non_stop): Use target_is_async_p.
2014-07-16Linux: Use kill_lwp/tkill instead of kill when killing a processPedro Alves1-1/+1
Since we use tkill everywhere, using kill to try to kill each lwp individually looks suspiciously odd. We should really be using tgkill everywhere, but at least while we don't get there this makes us consistent. gdb/gdbserver/ 2014-07-16 Pedro Alves <palves@redhat.com> * linux-low.c (linux_kill_one_lwp): Use kill_lwp, not kill. gdb/ 2014-07-16 Pedro Alves <palves@redhat.com> * linux-nat.c (kill_callback): Use kill_lwp, not kill.
2014-07-15[GDBserver] Avoid stale errnoPedro Alves1-6/+14
Although most compilers follow right-to-left evaluation order, the order of evaluation of a function call's arguments is really unspecified. target_pid_to_str or ptid_of may well clobber errno when we get to evaluate the third argument to debug_printf. gdb/gdbserver/ 2014-07-15 Pedro Alves <palves@redhat.com> * linux-low.c (linux_kill_one_lwp): Save errno and work with saved copy.
2014-07-11GDBserver crashes when killing a multi-thread processPedro Alves1-26/+42
Here's an example, with the new test: gdbserver :9999 gdb.threads/kill gdb gdb.threads/kill (gdb) b 52 Breakpoint 1 at 0x4007f4: file kill.c, line 52. Continuing. Breakpoint 1, main () at kill.c:52 52 return 0; /* set break here */ (gdb) k Kill the program being debugged? (y or n) y gdbserver :9999 gdb.threads/kill Process gdb.base/watch_thread_num created; pid = 9719 Listening on port 1234 Remote debugging from host 127.0.0.1 Killing all inferiors Segmentation fault (core dumped) Backtrace: (gdb) bt #0 0x00000000004068a0 in find_inferior (list=0x66b060 <all_threads>, func=0x427637 <kill_one_lwp_callback>, arg=0x7fffffffd3fc) at src/gdb/gdbserver/inferiors.c:199 #1 0x00000000004277b6 in linux_kill (pid=15708) at src/gdb/gdbserver/linux-low.c:966 #2 0x000000000041354d in kill_inferior (pid=15708) at src/gdb/gdbserver/target.c:163 #3 0x00000000004107e9 in kill_inferior_callback (entry=0x6704f0) at src/gdb/gdbserver/server.c:2934 #4 0x0000000000406522 in for_each_inferior (list=0x66b050 <all_processes>, action=0x4107a6 <kill_inferior_callback>) at src/gdb/gdbserver/inferiors.c:57 #5 0x0000000000412377 in process_serial_event () at src/gdb/gdbserver/server.c:3767 #6 0x000000000041267c in handle_serial_event (err=0, client_data=0x0) at src/gdb/gdbserver/server.c:3880 #7 0x00000000004189ff in handle_file_event (event_file_desc=4) at src/gdb/gdbserver/event-loop.c:434 #8 0x00000000004181c6 in process_event () at src/gdb/gdbserver/event-loop.c:189 #9 0x0000000000418f45 in start_event_loop () at src/gdb/gdbserver/event-loop.c:552 #10 0x0000000000411272 in main (argc=3, argv=0x7fffffffd8d8) at src/gdb/gdbserver/server.c:3283 The problem is that linux_wait_for_event deletes lwps that have exited (even those not passed in as lwps of interest), while the lwp/thread list is being walked on with find_inferior. find_inferior can handle the current iterated inferior being deleted, but not others. When killing lwps, we don't really care about any of the pending status handling of linux_wait_for_event. We can just waitpid the lwps directly, which is also what GDB does (see linux-nat.c:kill_wait_callback). This way the lwps are not deleted while we're walking the list. They'll be deleted by linux_mourn afterwards. This crash triggers several times when running the testsuite against GDBserver with the native-gdbserver board (target remote), but as GDB can't distinguish between GDBserver crashing and "kill" being sucessful, as in both cases the connection is closed (the 'k' packet doesn't require a reply), and the inferior is gone, that results in no FAIL. The patch adds a generic test that catches the issue with extended-remote mode (and works fine with native testing too). Here's how it fails with the native-extended-gdbserver board without the fix: (gdb) info threads Id Target Id Frame 6 Thread 15367.15374 0x000000373bcbc98d in nanosleep () at ../sysdeps/unix/syscall-template.S:81 5 Thread 15367.15373 0x000000373bcbc98d in nanosleep () at ../sysdeps/unix/syscall-template.S:81 4 Thread 15367.15372 0x000000373bcbc98d in nanosleep () at ../sysdeps/unix/syscall-template.S:81 3 Thread 15367.15371 0x000000373bcbc98d in nanosleep () at ../sysdeps/unix/syscall-template.S:81 2 Thread 15367.15370 0x000000373bcbc98d in nanosleep () at ../sysdeps/unix/syscall-template.S:81 * 1 Thread 15367.15367 main () at .../gdb.threads/kill.c:52 (gdb) kill Kill the program being debugged? (y or n) y Remote connection closed ^^^^^^^^^^^^^^^^^^^^^^^^ (gdb) FAIL: gdb.threads/kill.exp: kill Extended remote should remain connected after the kill. gdb/gdbserver/ 2014-07-11 Pedro Alves <palves@redhat.com> * linux-low.c (kill_wait_lwp): New function, based on kill_one_lwp_callback, but use my_waitpid directly. (kill_one_lwp_callback, linux_kill): Use it. gdb/testsuite/ 2014-07-11 Pedro Alves <palves@redhat.com> * gdb.threads/kill.c: New file. * gdb.threads/kill.exp: New file.
2014-06-20Move shared native target specific code to gdb/natGary Benson1-4/+4
https://sourceware.org/gdb/wiki/Common describes the following directory structure: gdb/nat/ Native target backend files. Code that interfaces with the host debug API. E.g., ptrace code, Windows debug API code, procfs code should go here. gdb/target/ Host-independent, target vector specific code (target_ops). gdb/common/ All other shared code. This commit moves all native target backend files currently in gdb/common to gdb/nat. gdb/ 2014-06-20 Gary Benson <gbenson@redhat.com> * common/gdb_thread_db.h: Moved to nat. All includes updated. * common/glibc_thread_db.h: Likewise. * common/i386-cpuid.h: Likewise. * common/i386-gcc-cpuid.h: Likewise. * common/linux-btrace.h: Likewise. * common/linux-osdata.h: Likewise. * common/linux-procfs.h: Likewise. * common/linux-ptrace.h: Likewise. * common/mips-linux-watch.h: Likewise. * common/linux-btrace.c: Moved to nat. * common/linux-osdata.c: Likewise. * common/linux-procfs.c: Likewise. * common/linux-ptrace.c: Likewise. * common/mips-linux-watch.c: Likewise. * nat/gdb_thread_db.h: Moved from common. * nat/glibc_thread_db.h: Likewise. * nat/i386-cpuid.h: Likewise. * nat/i386-gcc-cpuid.h: Likewise. * nat/linux-btrace.c: Likewise. * nat/linux-btrace.h: Likewise. * nat/linux-osdata.c: Likewise. * nat/linux-osdata.h: Likewise. * nat/linux-procfs.c: Likewise. * nat/linux-procfs.h: Likewise. * nat/linux-ptrace.c: Likewise. * nat/linux-ptrace.h: Likewise. * nat/mips-linux-watch.c: Likewise. * nat/mips-linux-watch.h: Likewise. * Makefile.in (HFILES_NO_SRCDIR): Reflect new locations. (object file files): Reordered. * gdb/copyright.py (EXCLUDE_LIST): Reflect new location of glibc_thread_db.h. gdb/gdbserver/ 2014-06-20 Gary Benson <gbenson@redhat.com> * Makefile.in (SFILES): Update locations for files moved from common to nat. (object file files): Reordered. gdb/testsuite/ 2014-06-20 Gary Benson <gbenson@redhat.com> * gdb.arch/i386-avx.exp: Fix include file location. * gdb.arch/i386-sse.exp: Likewise.
2014-05-20[GDBserver] Make Zx/zx packet handling idempotent.Pedro Alves1-4/+14
This patch fixes hardware breakpoint regressions exposed by my fix for "PR breakpoints/7143 - Watchpoint does not trigger when first set", at https://sourceware.org/ml/gdb-patches/2014-03/msg00167.html The testsuite caught them on Linux/x86_64, at least. gdb.sum: gdb.sum: FAIL: gdb.base/hbreak2.exp: next over recursive call FAIL: gdb.base/hbreak2.exp: backtrace from factorial(5.1) FAIL: gdb.base/hbreak2.exp: continue until exit at recursive next test gdb.log: (gdb) next Program received signal SIGTRAP, Trace/breakpoint trap. factorial (value=4) at ../../../src/gdb/testsuite/gdb.base/break.c:113 113 if (value > 1) { /* set breakpoint 7 here */ (gdb) FAIL: gdb.base/hbreak2.exp: next over recursive call Actually, that patch just exposed a latent issue to "breakpoints always-inserted off" mode, not really caused it. After that patch, GDB no longer removes breakpoints at each internal event, thus making some scenarios behave like breakpoint always-inserted on. The bug is easy to trigger with always-inserted on. The issue is that since the target-side breakpoint conditions support, if the stub/server supports evaluating breakpoint conditions on the target side, then GDB is sending duplicate Zx packets to the target without removing them before, and GDBserver is not really expecting that for Z packets other than Z0/z0. E.g., with "set breakpoint always-inserted on" and "set debug remote 1": (gdb) b main Sending packet: $m410943,1#ff...Packet received: 48 Breakpoint 4 at 0x410943: file ../../../src/gdb/gdbserver/server.c, line 3028. Sending packet: $Z0,410943,1#48...Packet received: OK ^^^^^^^^^^^^ (gdb) b main Note: breakpoint 4 also set at pc 0x410943. Sending packet: $m410943,1#ff...Packet received: 48 Breakpoint 5 at 0x410943: file ../../../src/gdb/gdbserver/server.c, line 3028. Sending packet: $Z0,410943,1#48...Packet received: OK ^^^^^^^^^^^^ (gdb) b main Note: breakpoints 4 and 5 also set at pc 0x410943. Sending packet: $m410943,1#ff...Packet received: 48 Breakpoint 6 at 0x410943: file ../../../src/gdb/gdbserver/server.c, line 3028. Sending packet: $Z0,410943,1#48...Packet received: OK ^^^^^^^^^^^^ (gdb) del Delete all breakpoints? (y or n) y Sending packet: $Z0,410943,1#48...Packet received: OK Sending packet: $Z0,410943,1#48...Packet received: OK Sending packet: $z0,410943,1#68...Packet received: OK And for Z1, similarly: (gdb) hbreak main Sending packet: $m410943,1#ff...Packet received: 48 Hardware assisted breakpoint 4 at 0x410943: file ../../../src/gdb/gdbserver/server.c, line 3028. Sending packet: $Z1,410943,1#49...Packet received: OK ^^^^^^^^^^^^ Packet Z1 (hardware-breakpoint) is supported (gdb) hbreak main Note: breakpoint 4 also set at pc 0x410943. Sending packet: $m410943,1#ff...Packet received: 48 Hardware assisted breakpoint 5 at 0x410943: file ../../../src/gdb/gdbserver/server.c, line 3028. Sending packet: $Z1,410943,1#49...Packet received: OK ^^^^^^^^^^^^ (gdb) hbreak main Note: breakpoints 4 and 5 also set at pc 0x410943. Sending packet: $m410943,1#ff...Packet received: 48 Hardware assisted breakpoint 6 at 0x410943: file ../../../src/gdb/gdbserver/server.c, line 3028. Sending packet: $Z1,410943,1#49...Packet received: OK ^^^^^^^^^^^^ (gdb) del Delete all breakpoints? (y or n) y Sending packet: $Z1,410943,1#49...Packet received: OK ^^^^^^^^^^^^ Sending packet: $Z1,410943,1#49...Packet received: OK ^^^^^^^^^^^^ Sending packet: $z1,410943,1#69...Packet received: OK ^^^^^^^^^^^^ So GDB sent a bunch of Z1 packets, and then when finally removing the breakpoint, only one z1 packet was sent. On the GDBserver side (with monitor set debug-hw-points 1), in the Z1 case, we see: $ ./gdbserver :9999 ./gdbserver Process ./gdbserver created; pid = 8629 Listening on port 9999 Remote debugging from host 127.0.0.1 insert_watchpoint (addr=410943, len=1, type=instruction-execute): CONTROL (DR7): 00000101 STATUS (DR6): 00000000 DR0: addr=0x410943, ref.count=1 DR1: addr=0x0, ref.count=0 DR2: addr=0x0, ref.count=0 DR3: addr=0x0, ref.count=0 insert_watchpoint (addr=410943, len=1, type=instruction-execute): CONTROL (DR7): 00000101 STATUS (DR6): 00000000 DR0: addr=0x410943, ref.count=2 DR1: addr=0x0, ref.count=0 DR2: addr=0x0, ref.count=0 DR3: addr=0x0, ref.count=0 insert_watchpoint (addr=410943, len=1, type=instruction-execute): CONTROL (DR7): 00000101 STATUS (DR6): 00000000 DR0: addr=0x410943, ref.count=3 DR1: addr=0x0, ref.count=0 DR2: addr=0x0, ref.count=0 DR3: addr=0x0, ref.count=0 insert_watchpoint (addr=410943, len=1, type=instruction-execute): CONTROL (DR7): 00000101 STATUS (DR6): 00000000 DR0: addr=0x410943, ref.count=4 DR1: addr=0x0, ref.count=0 DR2: addr=0x0, ref.count=0 DR3: addr=0x0, ref.count=0 insert_watchpoint (addr=410943, len=1, type=instruction-execute): CONTROL (DR7): 00000101 STATUS (DR6): 00000000 DR0: addr=0x410943, ref.count=5 DR1: addr=0x0, ref.count=0 DR2: addr=0x0, ref.count=0 DR3: addr=0x0, ref.count=0 remove_watchpoint (addr=410943, len=1, type=instruction-execute): CONTROL (DR7): 00000101 STATUS (DR6): 00000000 DR0: addr=0x410943, ref.count=4 DR1: addr=0x0, ref.count=0 DR2: addr=0x0, ref.count=0 DR3: addr=0x0, ref.count=0 That's one insert_watchpoint call for each Z1 packet, and then one remove_watchpoint call for the z1 packet. Notice how ref.count increased for each insert_watchpoint call, and then in the end, after GDB told GDBserver to forget about the hardware breakpoint, GDBserver ends with the the first debug register still with ref.count=4! IOW, the hardware breakpoint is left armed on the target, while on the GDB end it's gone. If the program happens to execute 0x410943 afterwards, then the CPU traps, GDBserver reports the trap to GDB, and GDB not having a breakpoint set at that address anymore, reports to the user a spurious SIGTRAP. This is exactly what is happening in the hbreak2.exp test, though in that case, it's a shared library event that triggers a breakpoint_re_set, when breakpoints are still inserted (because nowadays GDB doesn't remove breakpoints while handling internal events), and that recreates breakpoint locations, which likewise forces breakpoint reinsertion and Zx packet resends... That is a lot of bogus Zx duplication that should possibly be addressed on the GDB side. GDB resends Zx packets because the way to change the target-side condition, is to resend the breakpoint to the server with the new condition. (That's an option in the packet: e.g., "Z1,410943,1;X3,220027" for "hbreak main if 0". The packets in the examples above are shorter because the breakpoints don't have conditions attached). GDB doesn't remove the breakpoint first before reinserting it because that'd be bad for non-stop, as it'd open a window where the inferior could miss the breakpoint. The conditions actually haven't changed between the resends, but GDB isn't smart enough to realize that. (TBC, if the target doesn't support target-side conditions, then GDB doesn't trigger these resends (init_bp_location calls mark_breakpoint_location_modified, and that does nothing if condition evaluation is on the host side. The resends are caused by the 'loc->condition_changed = condition_modified.' line.) But, even if GDB was made smarter, GDBserver should really still handle the resends anyway. So target-side conditions also aren't really to blame. The documentation of the Z/z packets says: "To avoid potential problems with duplicate packets, the operations should be implemented in an idempotent way." As such, we may want to fix GDB, but we should definitely fix GDBserver. The fix is a prerequisite for target-side conditions on hardware breakpoints anyway (and while at it, on watchpoints too). GDBserver indeed already treats duplicate Z0 packets in an idempotent way. mem-break.c has the concept of high-level and low-level breakpoints, somewhat similar to GDB's split of breakpoints vs breakpoint locations, and keeps track of multiple breakpoints referencing the same address/location, for the case of an internal GDBserver breakpoint or a tracepoint being set at the same address as a GDB breakpoint. But, it only allows GDB to ever contribute one reference to a software breakpoint location. IOW, if gdbserver sees a Z0 packet for the same address where it already had a GDB breakpoint set, then GDBserver won't create another high-level GDB breakpoint. However, mem-break.c only tracks GDB Z0 breakpoints. The same logic should apply to all kinds of Zx packets. Currently, gdbserver passes down each duplicate Zx (other than Z0) request directly to the target->insert_point routine. The x86 watchpoint support itself refcounts watchpoint / hw breakpoint requests, to handle overlapping watchpoints, and save debug registers. But that code doesn't (and really shouldn't) handle the duplicate requests, assuming that for each insert there will be a corresponding remove. So the fix is to generalize mem-break.c to track all kinds of Zx breakpoints, and filter out duplicates. As mentioned, this ends up adding support for target-side conditions on hardware breakpoints and watchpoints too (though GDB itself doesn't support the latter yet). Probably the least obvious change in the patch is that it kind of turns the breakpoint insert/remove APIs inside out. Before, the target methods were only called for GDB breakpoints. The internal breakpoint set/delete methods inserted memory breakpoints directly bypassing the insert/remove target methods. That's not good when the target should use a debug API to set software breakpoints, instead of relying on GDBserver patching memory with breakpoint instructions, as is the case of NTO. Now removal/insertion of all kinds of breakpoints/watchpoints, either internal, or from GDB, always go through the target methods. The insert_point/remove_point methods no longer get passed a Z packet type, but an internal/raw breakpoint type. They're also passed a pointer to the raw breakpoint itself (note that's still opaque outside mem-break.c), so that insert_memory_breakpoint / remove_memory_breakpoint have access to the breakpoint's shadow buffer. I first tried passing down a new structure based on GDB's "struct bp_target_info" (actually with that name exactly), but then decided against it as unnecessary complication. As software/memory breakpoints work by poking at memory, when setting a GDB Z0 breakpoint (but not internal breakpoints, as those can assume the conditions are already right), we need to tell the target to prepare to access memory (which on Linux means stop threads). If that operation fails, we need to return error to GDB. Seeing an error, if this is the first breakpoint of that type that GDB tries to insert, GDB would then assume the breakpoint type is supported, but it may actually not be. So we need to check whether the type is supported at all before preparing to access memory. And to solve that, the patch adds a new target->supports_z_point_type method that is called before actually trying to insert the breakpoint. Other than that, hopefully the change is more or less obvious. New test added that exercises the hbreak2.exp regression in a more direct way, without relying on a breakpoint re-set happening before main is reached. Tested by building GDBserver for: aarch64-linux-gnu arm-linux-gnueabihf i686-pc-linux-gnu i686-w64-mingw32 m68k-linux-gnu mips-linux-gnu mips-uclinux nios2-linux-gnu powerpc-linux-gnu sh-linux-gnu tilegx-unknown-linux-gnu x86_64-redhat-linux x86_64-w64-mingw32 And also regression tested on x86_64 Fedora 20. gdb/gdbserver/ 2014-05-20 Pedro Alves <palves@redhat.com> * linux-aarch64-low.c (aarch64_insert_point) (aarch64_remove_point): No longer check whether the type is supported here. Adjust to new interface. (the_low_target): Install aarch64_supports_z_point_type as supports_z_point_type method. * linux-arm-low.c (raw_bkpt_type_to_arm_hwbp_type): New function. (arm_linux_hw_point_initialize): Take an enum raw_bkpt_type instead of a Z packet char. Adjust. (arm_supports_z_point_type): New function. (arm_insert_point, arm_remove_point): Adjust to new interface. (the_low_target): Install arm_supports_z_point_type. * linux-crisv32-low.c (cris_supports_z_point_type): New function. (cris_insert_point, cris_remove_point): Adjust to new interface. Don't check whether the type is supported here. (the_low_target): Install cris_supports_z_point_type. * linux-low.c (linux_supports_z_point_type): New function. (linux_insert_point, linux_remove_point): Adjust to new interface. * linux-low.h (struct linux_target_ops) <insert_point, remove_point>: Take an enum raw_bkpt_type instead of a char. Add raw_breakpoint pointer parameter. <supports_z_point_type>: New method. * linux-mips-low.c (mips_supports_z_point_type): New function. (mips_insert_point, mips_remove_point): Adjust to new interface. Use mips_supports_z_point_type. (the_low_target): Install mips_supports_z_point_type. * linux-ppc-low.c (the_low_target): Install NULL as supports_z_point_type method. * linux-s390-low.c (the_low_target): Install NULL as supports_z_point_type method. * linux-sparc-low.c (the_low_target): Install NULL as supports_z_point_type method. * linux-x86-low.c (x86_supports_z_point_type): New function. (x86_insert_point): Adjust to new insert_point interface. Use insert_memory_breakpoint. Adjust to new i386_low_insert_watchpoint interface. (x86_remove_point): Adjust to remove_point interface. Use remove_memory_breakpoint. Adjust to new i386_low_remove_watchpoint interface. (the_low_target): Install x86_supports_z_point_type. * lynx-low.c (lynx_target_ops): Install NULL as supports_z_point_type callback. * nto-low.c (nto_supports_z_point_type): New. (nto_insert_point, nto_remove_point): Adjust to new interface. (nto_target_ops): Install nto_supports_z_point_type. * mem-break.c: Adjust intro comment. (struct raw_breakpoint) <raw_type, size>: New fields. <inserted>: Update comment. <shlib_disabled>: Delete field. (enum bkpt_type) <gdb_breakpoint>: Delete value. <gdb_breakpoint_Z0, gdb_breakpoint_Z1, gdb_breakpoint_Z2, gdb_breakpoint_Z3, gdb_breakpoint_Z4>: New values. (raw_bkpt_type_to_target_hw_bp_type): New function. (find_enabled_raw_code_breakpoint_at): New function. (find_raw_breakpoint_at): New type and size parameters. Use them. (insert_memory_breakpoint): New function, based off set_raw_breakpoint_at. (remove_memory_breakpoint): New function. (set_raw_breakpoint_at): Reimplement. (set_breakpoint): New, based on set_breakpoint_at. (set_breakpoint_at): Reimplement. (delete_raw_breakpoint): Go through the_target->remove_point instead of assuming memory breakpoints. (find_gdb_breakpoint_at): Delete. (Z_packet_to_bkpt_type, Z_packet_to_raw_bkpt_type): New functions. (find_gdb_breakpoint): New function. (set_gdb_breakpoint_at): Delete. (z_type_supported): New function. (set_gdb_breakpoint_1): New function, loosely based off set_gdb_breakpoint_at. (check_gdb_bp_preconditions, set_gdb_breakpoint): New functions. (delete_gdb_breakpoint_at): Delete. (delete_gdb_breakpoint_1): New function, loosely based off delete_gdb_breakpoint_at. (delete_gdb_breakpoint): New function. (clear_gdb_breakpoint_conditions): Rename to ... (clear_breakpoint_conditions): ... this. Don't handle a NULL breakpoint. (add_condition_to_breakpoint): Make static. (add_breakpoint_condition): Take a struct breakpoint pointer instead of an address. Adjust. (gdb_condition_true_at_breakpoint): Rename to ... (gdb_condition_true_at_breakpoint_z_type): ... this, and add z_type parameter. (gdb_condition_true_at_breakpoint): Reimplement. (add_breakpoint_commands): Take a struct breakpoint pointer instead of an address. Adjust. (gdb_no_commands_at_breakpoint): Rename to ... (gdb_no_commands_at_breakpoint_z_type): ... this. Add z_type parameter. Return true if no breakpoint was found. Change debug output. (gdb_no_commands_at_breakpoint): Reimplement. (run_breakpoint_commands): Rename to ... (run_breakpoint_commands_z_type): ... this. Add z_type parameter, and change return type to boolean. (run_breakpoint_commands): New function. (gdb_breakpoint_here): Also check for Z1 breakpoints. (uninsert_raw_breakpoint): Don't try to reinsert a disabled breakpoint. Go through the_target->remove_point instead of assuming memory breakpoint. (uninsert_breakpoints_at, uninsert_all_breakpoints): Uninsert software and hardware breakpoints. (reinsert_raw_breakpoint): Go through the_target->insert_point instead of assuming memory breakpoint. (reinsert_breakpoints_at, reinsert_all_breakpoints): Reinsert software and hardware breakpoints. (check_breakpoints, breakpoint_here, breakpoint_inserted_here): Check both software and hardware breakpoints. (validate_inserted_breakpoint): Assert the breakpoint is a software breakpoint. Set the inserted flag to -1 instead of setting shlib_disabled. (delete_disabled_breakpoints): Adjust. (validate_breakpoints): Only validate software breakpoints. Adjust to inserted flag change. (check_mem_read, check_mem_write): Skip breakpoint types other than software breakpoints. Adjust to inserted flag change. * mem-break.h (enum raw_bkpt_type): New enum. (raw_breakpoint, struct process_info): Forward declare. (Z_packet_to_target_hw_bp_type): Delete declaration. (raw_bkpt_type_to_target_hw_bp_type, Z_packet_to_raw_bkpt_type) (set_gdb_breakpoint, delete_gdb_breakpoint) (clear_breakpoint_conditions): New declarations. (set_gdb_breakpoint_at, clear_gdb_breakpoint_conditions): Delete. (breakpoint_inserted_here): Update comment. (add_breakpoint_condition, add_breakpoint_commands): Replace address parameter with a breakpoint pointer parameter. (gdb_breakpoint_here): Update comment. (delete_gdb_breakpoint_at): Delete. (insert_memory_breakpoint, remove_memory_breakpoint): Declare. * server.c (process_point_options): Take a struct breakpoint pointer instead of an address. Adjust. (process_serial_event) <Z/z packets>: Use set_gdb_breakpoint and delete_gdb_breakpoint. * spu-low.c (spu_target_ops): Install NULL as supports_z_point_type method. * target.h: Include mem-break.h. (struct target_ops) <prepare_to_access_memory>: Update comment. <supports_z_point_type>: New field. <insert_point, remove_point>: Take an enum raw_bkpt_type argument instead of a char. Also take a raw breakpoint pointer. * win32-arm-low.c (the_low_target): Install NULL as supports_z_point_type. * win32-i386-low.c (i386_supports_z_point_type): New function. (i386_insert_point, i386_remove_point): Adjust to new interface. (the_low_target): Install i386_supports_z_point_type. * win32-low.c (win32_supports_z_point_type): New function. (win32_insert_point, win32_remove_point): Adjust to new interface. (win32_target_ops): Install win32_supports_z_point_type. * win32-low.h (struct win32_target_ops): <supports_z_point_type>: New method. <insert_point, remove_point>: Take an enum raw_bkpt_type argument instead of a char. Also take a raw breakpoint pointer. gdb/testsuite/ 2014-05-20 Pedro Alves <palves@redhat.com> * gdb.base/break-idempotent.c: New file. * gdb.base/break-idempotent.exp: New file.
2014-04-25PR server/16255: gdbserver cannot attach to a second inferior that is ↵Pedro Alves1-50/+55
multi-threaded. On Linux, we need to explicitly ptrace attach to all lwps of a process. Because GDB might not be connected yet when an attach is requested, and thus it may not be possible to activate thread_db, as that requires access to symbols (IOW, gdbserver --attach), a while ago we make linux_attach loop over the lwps as listed by /proc/PID/task to find the lwps to attach to. linux_attach_lwp_1 has: ... if (initial) /* If lwp is the tgid, we handle adding existing threads later. Otherwise we just add lwp without bothering about any other threads. */ ptid = ptid_build (lwpid, lwpid, 0); else { /* Note that extracting the pid from the current inferior is safe, since we're always called in the context of the same process as this new thread. */ int pid = pid_of (current_inferior); ptid = ptid_build (pid, lwpid, 0); } That "safe" comment referred to linux_attach_lwp being called by thread-db.c. But this was clearly missed when a new call to linux_attach_lwp_1 was added to linux_attach. As a result, current_inferior will be set to some random process, and non-initial lwps of the second inferior get assigned the pid of the wrong inferior. E.g., in the case of attaching to two inferiors, for the second inferior (and so on), non-initial lwps of the second inferior get assigned the pid of the first inferior. This doesn't trigger on the first inferior, when current_inferior is NULL, add_thread switches the current inferior to the newly added thread. Rather than making linux_attach switch current_inferior temporarily (thus avoiding further reliance on global state), or making linux_attach_lwp_1 get the tgid from /proc, which add extra syscalls, and will be wrong in case of the user having originally attached directly to a non-tgid lwp, and then that lwp spawning new clones (the ptid.pid field of further new clones should be the same as the original lwp's pid, which is not the tgid), we note that callers of linux_attach_lwp/linux_attach_lwp_1 always have the right pid handy already, so they can pass it down along with the lwpid. The only other reason for the "initial" parameter is to error out instead of warn in case of attach failure, when we're first attaching to a process. There are only three callers of linux_attach_lwp/linux_attach_lwp_1, and each wants to print a different warn/error string, so we can just move the error/warn out of linux_attach_lwp_1 to the callers, thus getting rid of the "initial" parameter. There really nothing gdbserver-specific about attaching to two threaded processes, so this adds a new test under gdb.multi/. The test passes cleanly against the native GNU/Linux target, but fails/triggers the bug against GDBserver (before the patch), with the native-extended-remote board (as plain remote doesn't support multi-process). Tested on x86_64 Fedora 17, with the native-extended-gdbserver board. gdb/gdbserver/ 2014-04-25 Pedro Alves <palves@redhat.com> PR server/16255 * linux-low.c (linux_attach_fail_reason_string): New function. (linux_attach_lwp): Delete. (linux_attach_lwp_1): Rename to ... (linux_attach_lwp): ... this. Take a ptid instead of a pid as argument. Remove "initial" parameter. Return int instead of void. Don't error or warn here. (linux_attach): Adjust to call linux_attach_lwp. Call error on failure to attach to the tgid. Call warning when failing to attach to an lwp. * linux-low.h (linux_attach_lwp): Take a ptid instead of a pid as argument. Remove "initial" parameter. Return int instead of void. Don't error or warn here. (linux_attach_fail_reason_string): New declaration. * thread-db.c (attach_thread): Adjust to linux_attach_lwp's interface change. Use linux_attach_fail_reason_string. gdb/ 2014-04-25 Pedro Alves <palves@redhat.com> PR server/16255 * common/linux-ptrace.c (linux_ptrace_attach_warnings): Rename to ... (linux_ptrace_attach_fail_reason): ... this. Remove "warning: " and newline from built string. * common/linux-ptrace.h (linux_ptrace_attach_warnings): Rename to ... (linux_ptrace_attach_fail_reason): ... this. * linux-nat.c (linux_nat_attach): Adjust to use linux_ptrace_attach_fail_reason. gdb/testsuite/ 2014-04-25 Simon Marchi <simon.marchi@ericsson.com> Pedro Alves <palves@redhat.com> PR server/16255 * gdb.multi/multi-attach.c: New file. * gdb.multi/multi-attach.exp: New file.
2014-04-09[GDBserver] Fix SH/Linux build.Pedro Alves1-1/+1
sh-linux-gnu-gcc (...) src/gdb/gdbserver/linux-low.c .../src/gdb/gdbserver/linux-low.c: In function 'linux_read_loadmap': .../src/gdb/gdbserver/linux-low.c:5284:13: error: 'struct lwp_info' has no member named 'entry' make[1]: *** [linux-low.o] Error 1 gdb/gdbserver/ 2014-04-09 Pedro Alves <palves@redhat.com> * linux-low.c (linux_read_loadmap): Pass current_inferior directly to lwpid_of.
2014-02-27Teach GDBserver's Linux backend about no unwaited-for children ↵Pedro Alves1-350/+502
(TARGET_WAITKIND_NO_RESUMED). GDBserver currently hangs forever in waitpid if the leader thread exits before other threads, or if all resumed threads exit - e.g., next over a thread exit with sched-locking on. This is exposed by leader-exit.exp. leader-exit.exp is part of a series of tests for a set of related problems. See <http://www.sourceware.org/ml/gdb-patches/2011-10/msg00704.html>: " To recap, on the Linux kernel, ptrace/waitpid don't allow reaping the leader thread until all other threads in the group are reaped. When the leader exits, it goes zombie, but waitpid will not return an exit status until the other threads are gone. This is presently exercised by the gdb.threads/leader-exit.exp test. The fix for that test, in linux-nat.c:wait_lwp, handles the case where we see the leader gone when we're stopping all threads to report an event to some other thread to the core. (...) The latter bit about not blocking if there no resumed threads in the process also applies to some other thread exiting, not just the main thread. E.g., this test starts a thread, and runs to a breakpoint in that thread: ... (gdb) c Continuing. [New Thread 0x7ffff75a4700 (LWP 23397)] [Switching to Thread 0x7ffff75a4700 (LWP 23397)] Breakpoint 2, thread_a (arg=0x0) at ../../../src/gdb/testsuite/gdb.threads/no-unwaited-for-left.c:28 28 return 0; /* break-here */ (gdb) info threads * 2 Thread 0x7ffff75a4700 (LWP 23397) thread_a (arg=0x0) at ../../../src/gdb/testsuite/gdb.threads/no-unwaited-for-left.c:28 1 Thread 0x7ffff7fcb720 (LWP 23391) 0x00007ffff7bc606d in pthread_join (threadid=140737343276800, thread_return=0x0) at pthread_join.c:89 The thread will exit as soon as we resume it. But if we only resume that thread, leaving the rest of the threads stopped: (gdb) set scheduler-locking on (gdb) c Continuing. ^C^C^C^C^C^C^C^C " This patch fixes the issues by implementing TARGET_WAITKIND_NO_RESUMED on GDBserver, similarly to what the patch above did for native Linux GDB. gdb.threads/leader-exit.exp now passes. gdb.threads/no-unwaited-for-left.exp now at least errors out instead of hanging: continue Continuing. warning: Remote failure reply: E.No unwaited-for children left. [Thread 15454] #1 stopped. 0x00000034cf408e60 in pthread_join (threadid=140737353922368, thread_return=0x0) at pthread_join.c:93 93 lll_wait_tid (pd->tid); (gdb) FAIL: gdb.threads/no-unwaited-for-left.exp: continue stops when the main thread exits The gdb.threads/non-ldr-exc-*.exp tests are skipped because GDBserver unfortunately doesn't support fork/exec yet, but I'm confident this fixes the related issues. I'm leaving modeling TARGET_WAITKIND_NO_RESUMED in the RSP for a separate pass. (BTW, in case of error in response to a vCont, it would be better for GDB to query the target for the current thread, or re-select one, instead of assuming current inferior_ptid is still the selected thread.) This implementation is a little different from GDB's, because I'm avoiding bringing in more of this broken use of waitpid(PID) into GDBserver. Specifically, this avoids waitpid(PID) when stopping all threads. There's really no need for wait_for_sigstop to wait for each LWP in turn. Instead, with some refactoring, we make it reuse linux_wait_for_event. gdb/gdbserver/ 2014-02-27 Pedro Alves <palves@redhat.com> PR 12702 * inferiors.h (A_I_NEXT, ALL_INFERIORS_TYPE, ALL_PROCESSES): New macros. * linux-low.c (delete_lwp, handle_extended_wait): Add debug output. (last_thread_of_process_p): Take a PID argument instead of a thread pointer. (linux_wait_for_lwp): Delete. (num_lwps, check_zombie_leaders, not_stopped_callback): New functions. (linux_low_filter_event): New function, party factored out from linux_wait_for_event. (linux_wait_for_event): Rename to ... (linux_wait_for_event_filtered): ... this. Add new filter ptid argument. Partly rewrite. Always use waitpid(-1, WNOHANG) and sigsuspend. Check for zombie leaders. (linux_wait_for_event): Reimplement as wrapper around linux_wait_for_event_filtered. (linux_wait_1): Handle TARGET_WAITKIND_NO_RESUMED. Assume that if a normal or signal exit is seen, it's the whole process exiting. (wait_for_sigstop): No longer a for_each_inferior callback. Rewrite on top of linux_wait_for_event_filtered. (stop_all_lwps): Call wait_for_sigstop directly. * server.c (resume, handle_target_event): Handle TARGET_WAITKIND_NO_RESUMED.
2014-02-20Remove all_lwps global.Doug Evans1-232/+251
* inferiors.h (ptid_of): Move here from linux-low.h. (pid_of, lwpid_of): Ditto. * linux-aarch64-low.c (debug_reg_change_callback): Update, "entry" parameter is a struct thread_info * now. (aarch64_notify_debug_reg_change): Fetch pid from current_inferior directly. Pass &all_threads to find_inferior instead of &all_lwps. (aarch64_stopped_data_address): Fetch lwpid from current_inferior directly. (aarch64_linux_prepare_to_resume): Fetch ptid from thread. (aarch64_arch_setup): Fetch lwpid from current_inferior directly. * linux-arm-low.c (update_registers_callback): Update, "entry" parameter is a struct thread_info * now. Fetch lwpid from current_inferior directly. (arm_insert_point): Pass &all_threads to find_inferior instead of &all_lwps. (arm_remove_point): Ditto. (arm_stopped_by_watchpoint): Fetch lwp from current_inferior. (arm_prepare_to_resume): Fetch pid from thread. (arm_read_description): Fetch lwpid from current_inferior directly. * linux-low.c (all_lwps): Delete. (delete_lwp): Delete call to remove_inferior. (handle_extended_wait): Fetch lwpid from thread. (add_lwp): Don't set lwp->entry.id. Remove call to add_inferior_to_list. (linux_attach_lwp_1): Fetch pid from current_inferior directly. (linux_kill_one_lwp): Fetch ptid,lwpid from thread. (kill_one_lwp_callback): Ditto. (linux_kill): Don't dereference NULL pointer. Fetch ptid,lwpid from thread. (get_detach_signal): Fetch ptid from thread. (linux_detach_one_lwp): Fetch ptid,lwpid from thread. Simplify call to regcache_invalidate_thread. (delete_lwp_callback): Update, "entry" parameter is a struct thread_info * now. Fetch pid from thread. (linux_mourn): Pass &all_threads to find_inferior instead of &all_lwps. (status_pending_p_callback): Update, "entry" parameter is a struct thread_info * now. Fetch ptid from thread. (find_lwp_pid): Update, "entry" parameter is a struct thread_info * now. (linux_wait_for_lwp): Fetch pid from thread. (linux_fast_tracepoint_collecting): Fetch lwpid from thread. (maybe_move_out_of_jump_pad): Fetch lwpid from current_inferior. (enqueue_one_deferred_signal): Fetch lwpid from thread. (dequeue_one_deferred_signal): Ditto. (cancel_breakpoint): Fetch ptid from current_inferior. (linux_wait_for_event): Pass &all_threads to find_inferior, not &all_lwps. Fetch ptid, lwpid from thread. (count_events_callback): Update, "entry" parameter is a struct thread_info * now. (select_singlestep_lwp_callback): Ditto. (select_event_lwp_callback): Ditto. (cancel_breakpoints_callback): Ditto. (linux_cancel_breakpoints): Pass &all_threads to find_inferior, not &all_lwps. (select_event_lwp): Ditto. Fetch ptid from event_thread. (unsuspend_one_lwp): Update, "entry" parameter is a struct thread_info * now. (unsuspend_all_lwps): Pass &all_threads to find_inferior, not &all_lwps. (linux_stabilize_threads): Ditto. And for for_each_inferior. Fetch lwpid from thread, not lwp. (linux_wait_1): Fetch ptid, lwpid from current_inferior. Pass &all_threads to find_inferior, not &all_lwps. (send_sigstop): Fetch lwpid from thread, not lwp. (send_sigstop_callback): Update, "entry" parameter is a struct thread_info * now. (suspend_and_send_sigstop_callback): Ditto. (wait_for_sigstop): Ditto. Fetch ptid, lwpid from thread, lwp. (stuck_in_jump_pad_callback): Update, "entry" parameter is a struct thread_info * now. (move_out_of_jump_pad_callback): Ditto. Fetch ptid, lwpid from thread, lwp. (lwp_running): Update, "entry" parameter is a struct thread_info * now. (stop_all_lwps): Fetch ptid from thread. Pass &all_threads to find_inferior, for_each_inferior, not &all_lwps. (linux_resume_one_lwp): Fetch lwpid from thread. (linux_set_resume_request): Update, "entry" parameter is a struct thread_info * now. Fetch pid, lwpid from thread. (resume_status_pending_p): Update, "entry" parameter is a struct thread_info * now. (need_step_over_p): Ditto. Fetch lwpid from thread. (start_step_over): Fetch lwpid from thread. (linux_resume_one_thread): Update, "entry" parameter is a struct thread_info * now. Fetch lwpid from thread. (linux_resume): Pass &all_threads to find_inferior, not &all_lwps. (proceed_one_lwp): Update, "entry" parameter is a struct thread_info * now. Fetch lwpid from thread. (unsuspend_and_proceed_one_lwp): Update, "entry" parameter is a struct thread_info * now. (proceed_all_lwps): Pass &all_threads to find_inferior, not &all_lwps. (unstop_all_lwps): Ditto. Fetch lwpid from thread. (regsets_fetch_inferior_registers): Fetch lwpid from current_inferior directly. (regsets_store_inferior_registers): Ditto. (fetch_register, store_register): Ditto. (linux_read_memory, linux_write_memory): Ditto. (linux_request_interrupt): Ditto. (linux_read_auxv): Ditto. (linux_xfer_siginfo): Ditto. (linux_qxfer_spu): Ditto. (linux_qxfer_libraries_svr4): Ditto. * linux-low.h (ptid_of, pid_of, lwpid_of): Delete, moved to inferiors.h. (get_lwp): Delete. (get_thread_lwp): Update. (struct lwp_info): Delete member "entry". Simplify comment for member "thread". (all_lwps): Delete. * linux-mips-low.c (mips_read_description): Fetch lwpid from current_inferior directly. (update_watch_registers_callback): Update, "entry" parameter is a struct thread_info * now. Fetch pid from thread. (mips_linux_prepare_to_resume): Fetch ptid from thread. (mips_insert_point): Fetch lwpid from current_inferior. Pass &all_threads to find_inferior, not &all_lwps. (mips_remove_point): Pass &all_threads to find_inferior, not &all_lwps. (mips_stopped_by_watchpoint): Fetch lwpid from current_inferior directly. (mips_stopped_data_address): Ditto. * linux-s390-low.c (s390_arch_setup): Fetch pid from current_inferior directly. * linux-tile-low.c (tile_arch_setup): Ditto. * linux-x86-low.c (x86_get_thread_area): Fetch lwpid from thread. (update_debug_registers_callback): Update, "entry" parameter is a struct thread_info * now. Fetch pid from thread. (i386_dr_low_set_addr): Fetch pid from current_inferior directly. Pass &all_threads to find_inferior, not &all_lwps. (i386_dr_low_get_addr): Fetch ptid from current_inferior directly. (i386_dr_low_set_control): Fetch pid from current_inferior directly. Pass &all_threads to find_inferior, not &all_lwps. (i386_dr_low_get_control): Fetch ptid from current_inferior directly. (i386_dr_low_get_status): Ditto. (x86_linux_prepare_to_resume): Fetch ptid from thread. (x86_siginfo_fixup): Fetch lwpid from current_inferior directly. (x86_linux_read_description): Ditto. * proc-service.c (ps_getpid): Fetch pid from current_inferior directly.
2014-02-19Add backlink from lwp_info to thread_info.Doug Evans1-3/+1
* gdbthread.h (add_thread): Change result type to struct thread_info *. * inferiors.c (add_thread): Change result type to struct thread_info *. All callers updated. (add_lwp): Call add_thread here instead of in callers. All callers updated. * linux-low.h (get_lwp_thread): Rewrite. (struct lwp_info): New member "thread". This speeds up gdbserver attach in non-stop mode because now get_lwp_thread doesn't do a linear search for the corresponding thread_info object.
2014-02-19 * linux-low.c (add_lwp): Change result to struct lwp_info *.Doug Evans1-4/+4
All callers updated.
2014-02-19Replace code accessing list implementation details with API calls.Doug Evans1-1/+1
* dll.c (clear_dlls): Replace accessing list implemention details with API function. * gdbthread.h (get_first_thread): Declare. * inferiors.c (for_each_inferior_with_data): New function. (get_first_thread): New function. (find_thread_ptid): Simplify. (get_first_inferior): New function. (clear_list): Delete. (one_inferior_p): New function. (clear_inferior_list): New function. (clear_inferiors): Update. * inferiors.h (for_each_inferior_with_data): Declare. (clear_inferior_list): Declare. (one_inferior_p): Declare. (get_first_inferior): Declare. * linux-low.c (linux_wait_for_event): Replace accessing list implemention details with API function. * server.c (target_running): Ditto. (accumulate_file_name_length): New function. (emit_dll_description): New function. (handle_qxfer_libraries): Replace accessing list implemention details with API function. (handle_qxfer_threads_worker): New function. (handle_qxfer_threads_proper): Replace accessing list implemention details with API function. (handle_query): Ditto. (visit_actioned_threads_callback_ftype): New typedef. (visit_actioned_threads_data): New struct. (visit_actioned_threads): Rewrite to be find_inferior callback. (resume): Call find_inferior. (handle_status): Replace accessing list implemention details with API function. (process_serial_event): Replace accessing list implemention details with API function. * target.c (set_desired_inferior): Replace accessing list implemention details with API function. * tracepoint.c (same_process_p): New function. (gdb_agent_about_to_close): Replace accessing list implemention details with API function. * win32-low.c (child_delete_thread): Replace accessing list implemention details with API function. (match_dll_by_basename): New function. (dll_is_loaded_by_basename): New function. (win32_ensure_ntdll_loaded): Replace accessing list implemention details call to dll_is_loaded_by_basename.
2014-02-19Rename inferior_list_entry uses from "head" to "entry" for consistency.Doug Evans1-10/+10
* dll.h (struct dll_info): Add comment. * gdbthread.h (struct thread_info): Add comment. (current_ptid): Simplify. * inferiors.c (add_process): Update. (remove_process): Update. * inferiors.h (struct process_info): Rename member "head" to "entry". * linux-low.c (delete_lwp): Update. (add_lwp): Update. (last_thread_of_process_p): Update. (kill_one_lwp_callback, linux_kill): Update. (status_pending_p_callback): Update. (wait_for_sigstop): Update. Simplify read of ptid. (start_step_over): Update. * linux-low.h (ptid_of, pid_of, lwpid_of): Update. (get_lwp_thread): Update. (struct lwp_info): Rename member "head" to "entry". * regcache.h (inferior_list_entry): Delete. * server.c (kill_inferior_callback): Update. (detach_or_kill_inferior_callback): Update. (print_started_pid): Update. (print_attached_pid): Update. (process_serial_event): Simplify read of ptid. * thread-db.c (thread_db_create_event): Update. (thread_db_get_tls_address): Update. * win32-low.c (current_inferior_ptid): Simplify.
2014-02-05Keep current_inferior in sync with event_child.Doug Evans1-1/+4
* linux-low.c (linux_wait_for_event): Improve comment. (linux_wait_1): Keep current_inferior in sync with event_child.
2014-01-22 New gdbserver option --debug-format=timestamp.Doug Evans1-275/+304
* NEWS: Mention it. gdbserver/ * configure.ac (AC_CHECK_FUNCS): Add test for gettimeofday. * configure: Regenerate. * config.in: Regenerate. * Makefile.in (SFILES): Add debug.c. (OBS): Add debug.o. * debug.c: New file. * debug.h: New file. * linux-aarch64-low.c (*): Update all debugging printfs to use debug_printf instead of fprintf. * linux-arm-low.c (*): Ditto. * linux-cris-low.c (*): Ditto. * linux-crisv32-low.c (*): Ditto. * linux-m32r-low.c (*): Ditto. * linux-sparc-low.c (*): Ditto. * linux-x86.c (*): Ditto. * linux-low.c (*): Ditto. (linux_wait_1): Add calls to debug_enter, debug_exit. (linux_wait): Remove redundant debugging printf. (stop_all_lwps): Add calls to debug_enter, debug_exit. (linux_resume, unstop_all_lwps): Ditto. * mem-break.c (*): Update all debugging printfs to use debug_printf instead of fprintf. * remote-utils.c (*): Ditto. * thread-db.c (*): Ditto. * server.c #include <ctype.h>, "gdb_vecs.h". (debug_threads): Moved to debug.c. (*): Update all debugging printfs to use debug_printf instead of fprintf. (start_inferior): Replace call to fflush with call to debug_flush. (monitor_show_help): Mention set debug-format. (parse_debug_format_options): New function. (handle_monitor_command): Handle "monitor set debug-format". (gdbserver_usage): Mention --debug-format. (main): Parse --debug-format. * server.h (debug_threads): Declaration moved to debug.h. #include "debug.h". * tracepoint.c (trace_debug_1) [!IN_PROCESS_AGENT]: Add version of trace_debug_1 that uses debug_printf. (tracepoint_look_up_symbols): Update all debugging printfs to use debug_printf instead of fprintf. doc/ * gdb.texinfo (Server): Mention --debug-format=all|none|timestamp. (gdbserver man): Ditto. testsuite/ * gdb.server/server-mon.exp: Add tests for "set debug-format".
2014-01-16btrace, gdbserver: read branch trace incrementallyMarkus Metzger1-6/+30
Read branch trace data incrementally and extend the current trace rather than discarding it and reading the entire trace buffer each time. If the branch trace buffer overflowed, we can't extend the current trace so we discard it and start anew by reading the entire branch trace buffer. 2014-01-16 Markus Metzger <markus.t.metzger@intel.com> * common/linux-btrace.c (perf_event_read_bts, linux_read_btrace): Support delta reads. (linux_disable_btrace): Change return type. * common/linux-btrace.h (linux_read_btrace): Change parameters and return type to allow error reporting. Update users. (linux_disable_btrace): Change return type. Update users. * common/btrace-common.h (btrace_read_type) <BTRACE_READ_DELTA>: New. (btrace_error): New. (btrace_block) <begin>: Comment on BEGIN == 0. * btrace.c (btrace_compute_ftrace): Start from the end of the current trace. (btrace_stitch_trace, btrace_clear_history): New. (btrace_fetch): Read delta trace, return if replaying. (btrace_clear): Move clear history code to btrace_clear_history. (parse_xml_btrace): Throw an error if parsing failed. * target.h (struct target_ops) <to_read_btrace>: Change parameters and return type to allow error reporting. (target_read_btrace): Change parameters and return type to allow error reporting. * target.c (target_read_btrace): Update. * remote.c (remote_read_btrace): Support delta reads. Pass errors on. * NEWS: Announce it. gdbserver/ * target.h (target_ops) <read_btrace>: Change parameters and return type to allow error reporting. * server.c (handle_qxfer_btrace): Support delta reads. Pass trace reading errors on. * linux-low.c (linux_low_read_btrace): Pass trace reading errors on. (linux_low_disable_btrace): New.
2014-01-01Update Copyright year range in all files maintained by GDB.Joel Brobecker1-1/+1
2013-11-20 * linux-low.c (linux_set_resume_request): Fix comment.Doug Evans1-3/+5
2013-11-20 * linux-low.c (resume_status_pending_p): Tweak comment.Doug Evans1-1/+2
2013-11-18remove gdb_stat.hTom Tromey1-1/+1
This patch is purely mechanical. It removes gdb_stat.h and changes the code to use sys/stat.h. 2013-11-18 Tom Tromey <tromey@redhat.com> * common/gdb_stat.h: Remove. * ada-lang.c: Use sys/stat.h, not gdb_stat.h. * common/filestuff.c: Use sys/stat.h, not gdb_stat.h. * common/linux-osdata.c: Use sys/stat.h, not gdb_stat.h. * corefile.c: Use sys/stat.h, not gdb_stat.h. * ctf.c: Use sys/stat.h, not gdb_stat.h. * darwin-nat.c: Use sys/stat.h, not gdb_stat.h. * dbxread.c: Use sys/stat.h, not gdb_stat.h. * dwarf2read.c: Use sys/stat.h, not gdb_stat.h. * exec.c: Use sys/stat.h, not gdb_stat.h. * gdbserver/linux-low.c: Use sys/stat.h, not gdb_stat.h. * gdbserver/remote-utils.c: Use sys/stat.h, not gdb_stat.h. * inf-child.c: Use sys/stat.h, not gdb_stat.h. * jit.c: Use sys/stat.h, not gdb_stat.h. * linux-nat.c: Use sys/stat.h, not gdb_stat.h. * m68klinux-nat.c: Use sys/stat.h, not gdb_stat.h. * main.c: Use sys/stat.h, not gdb_stat.h. * mdebugread.c: Use sys/stat.h, not gdb_stat.h. * mi/mi-cmd-env.c: Use sys/stat.h, not gdb_stat.h. * nto-tdep.c: Use sys/stat.h, not gdb_stat.h. * objfiles.c: Use sys/stat.h, not gdb_stat.h. * procfs.c: Use sys/stat.h, not gdb_stat.h. * remote-fileio.c: Use sys/stat.h, not gdb_stat.h. * remote-mips.c: Use sys/stat.h, not gdb_stat.h. * remote.c: Use sys/stat.h, not gdb_stat.h. * rs6000-nat.c: Use sys/stat.h, not gdb_stat.h. * sol-thread.c: Use sys/stat.h, not gdb_stat.h. * solib-spu.c: Use sys/stat.h, not gdb_stat.h. * source.c: Use sys/stat.h, not gdb_stat.h. * symfile.c: Use sys/stat.h, not gdb_stat.h. * symmisc.c: Use sys/stat.h, not gdb_stat.h. * symtab.c: Use sys/stat.h, not gdb_stat.h. * top.c: Use sys/stat.h, not gdb_stat.h. * xcoffread.c: Use sys/stat.h, not gdb_stat.h.
2013-09-05[gdbserver] Split a new hostio.h file out of server.h.Pedro Alves1-0/+1
gdb/gdbserver/ 2013-09-05 Pedro Alves <palves@redhat.com> * server.h (handle_vFile, hostio_last_error_from_errno): Move to ... * hostio.h: ... this new file. * hostio.c, server.c, linux-low.c, nto-low.c, spu-low, win32-low.c: Include hostio.h.
2013-09-05[gdbserver] Split a new tracepoint.h file out of server.h.Pedro Alves1-0/+1
gdb/gdbserver/ 2013-09-05 Pedro Alves <palves@redhat.com> * ax.c, linux-low.c, linux-x86-low.c, server.c: Include tracepoint.h. * server.h (IPA_BUFSIZ, initialize_tracepoint, tracing) (disconnected_tracing, tracepoint_look_up_symbols, stop_tracing (handle_tracepoint_general_set, handle_tracepoint_query) (tracepoint_finished_step, tracepoint_was_hit) (release_while_stepping_state_list, current_traceframe) (in_readonly_region, traceframe_read_mem) (fetch_traceframe_registers, traceframe_read_sdata) (traceframe_read_info, struct fast_tpoint_collect_status) (fast_tracepoint_collecting, force_unlock_trace_buffer) (handle_tracepoit_bkpts, initialize_low_tracepoint) (supply_fast_tracepoint_registers) (supply_static_tracepoint_registers, set_trampoline_buffer_space) (ipa_tdesc, claim_trampoline_space) (have_fast_tracepoint_trampoline_buffer, gdb_agent_about_to_close) (agent_mem_read, agent_get_trace_state_variable_value) (agent_set_trace_state_variable_value, agent_tsv_read) (agent_mem_read_string, get_raw_reg_func_addr) (get_get_tsv_func_addr, get_set_tsv_func_addr): Move to ... * tracepoint.h: ... this new file.
2013-08-28PR server/15604Jan Kratochvil1-0/+2
gdb/gdbserver/ 2013-08-28 Jan Kratochvil <jan.kratochvil@redhat.com> PR server/15604 * linux-low.c: Include filestuff.h. (linux_create_inferior) <pid == 0>: Call close_most_fds. * lynx-low.c: Include filestuff.h. (lynx_create_inferior) <pid == 0>: Call close_most_fds. * server.c: Include filestuff.h. (main): Call notice_open_fds. * spu-low.c: Include filestuff.h. (spu_create_inferior) <pid == 0>: Call close_most_fds.
2013-08-22 Unify ptrace options discovery code and make both GDB andLuis Machado1-251/+6
gdbserver use it. gdb/ * Makefile.in (HFILES_NO_SRCDIR): Add nat/linux-nat.h and nat/linux-waitpid.h. (linux-waitpid.o): New object file rule. * common/linux-ptrace.c: Include nat/linux-waitpid.h. (current_ptrace_options): Moved from linux-nat.c. (linux_ptrace_test_ret_to_nx): Use type casts for ptrace parameters. (linux_fork_to_function): New function. (linux_grandchild_function): Likewise. (linux_child_function): Likewise. (linux_check_ptrace_features): New function, heavily based on linux-nat.c:linux_test_for_tracefork. (linux_enable_event_reporting): New function. (ptrace_supports_feature): Likewise. (linux_supports_tracefork): Likewise. (linux_supports_traceclone): Likewise. (linux_supports_tracevforkdone): Likewise. (linux_supports_tracesysgood): Likewise. * common/linux-ptrace.h (HAS_NOMMU): Moved from gdbserver/linux-low.c. (linux_enable_event_reporting): New declaration. (linux_supports_tracefork): Likewise. (linux_supports_traceclone): Likewise. (linux_supports_tracevforkdone): Likewise. (linux_supports_tracesysgood): Likewise. * config.in (PTRACE_TYPE_ARG4): Regenerate. * config/aarch64/linux.mh (NATDEPFILES): Add linux-waitpid.o. * config/alpha/alpha-linux.mh (NATDEPFILES): Likewise. * config/arm/linux.mh (NATDEPFILES): Likewise. * config/i386/linux.mh (NATDEPFILES): Likewise. * config/i386/linux64.mh (NATDEPFILES): Likewise. * config/ia64/linux.mh (NATDEPFILES): Likewise. * config/m32r/linux.mh (NATDEPFILES): Likewise. * config/m68k/linux.mh (NATDEPFILES): Likewise. * config/mips/linux.mh (NATDEPFILES): Likewise. * config/pa/linux.mh (NATDEPFILES): Likewise.. * config/powerpc/linux.mh (NATDEPFILES): Likewise.. * config/powerpc/ppc64-linux.mh (NATDEPFILES): Likewise. * config/powerpc/spu-linux.mh (NATDEPFILES): Likewise. * config/sparc/linux.mh (NATDEPFILES): Likewise. * config/sparc/linux64.mh (NATDEPFILES): Likewise. * config/tilegx/linux.mh (NATDEPFILES): Likewise. * config/xtensa/linux.mh (NATDEPFILES): Likewise. * configure.ac (AC_CACHE_CHECK): Add void * to the list of ptrace's 4th argument's types. Check the type of PTRACE_TYPE_ARG4. * configure: Regenerate. * linux-nat.c: Include nat/linux-nat.h and nat/linux-waitpid.h. (SYSCALL_SIGTRAP): Moved to nat/linux-nat.h. (linux_supports_tracefork_flag): Remove. (linux_supports_tracesysgood_flag): Likewise. (linux_supports_tracevforkdone_flag): Likewise. (current_ptrace_options): Moved to common/linux-ptrace.c. (linux_tracefork_child): Remove. (my_waitpid): Remove. (linux_test_for_tracefork): Renamed to linux_check_ptrace_features and moved to common/linux-ptrace.c. (linux_test_for_tracesysgood): Remove. (linux_supports_tracesysgood): Remove. (linux_supports_tracefork): Remove. (linux_supports_tracevforkdone): Remove. (linux_enable_tracesysgood): Remove. (linux_enable_event_reporting): Remove. (linux_init_ptrace): New function. (linux_child_post_attach): Call linux_init_ptrace. (linux_child_post_startup_inferior): Call linux_init_ptrace. (linux_child_follow_fork): Call linux_supports_tracefork and linux_supports_tracevforkdone. (linux_child_insert_fork_catchpoint): Call linux_supports_tracefork. (linux_child_insert_vfork_catchpoint): Likewise. (linux_child_set_syscall_catchpoint): Call linux_supports_tracesysgood. (lin_lwp_attach_lwp): Call linux_supports_tracefork. * nat/linux-nat.h: New file. * nat/linux-waitpid.c: New file. * nat/linux-waitpid.h: New file. gdb/gdbserver/ * Makefile.in: Explain why ../target and ../nat are not listed as include file search paths. (linux-waitpid.o): New object file rule. * configure.srv (srv_native_linux_obj): New variable. Replace all occurrences of linux native object files with $srv_native_linux_obj. * linux-low.c: Include nat/linux-nat.h and nat/linux-waitpid.h. (HAS_NOMMU): Move defining logic to common/linux-ptrace.c. (linux_enable_event_reporting): Remove declaration. (my_waitpid): Moved to common/linux-waitpid.c. (linux_wait_for_event): Pass ptid when calling linux_enable_event_reporting. (linux_supports_tracefork_flag): Remove. (linux_enable_event_reporting): Likewise. (linux_tracefork_grandchild): Remove. (STACK_SIZE): Moved to common/linux-ptrace.c. (linux_tracefork_child): Remove. (linux_test_for_tracefork): Remove. (linux_look_up_symbols): Call linux_supports_traceclone. (initialize_low): Remove call to linux_test_for_tracefork. * linux-low.h (PTRACE_TYPE_ARG3): Move to common/linux-ptrace.h. (PTRACE_TYPE_ARG4): Likewise. Include linux-ptrace.h.
2013-08-14 * linux-arm-low.c: Rename all occurrences of PTRACE_ARG3_TYPELuis Machado1-52/+52
to PTRACE_TYPE_ARG3. * linux-low.c: Rename all occurrences of PTRACE_ARG3_TYPE to PTRACE_TYPE_ARG3 and PTRACE_ARG4_TYPE to PTRACE_TYPE_ARG4. * linux-low.h (PTRACE_ARG3_TYPE): Rename to PTRACE_TYPE_ARG3. (PTRACE_ARG4_TYPE): Rename to PTRACE_TYPE_ARG4.
2013-07-01Normalize on PATH_MAX instead of MAXPATHLEN throughout.Pedro Alves1-2/+1
With the pathmax gnulib module in place, we can use PATH_MAX consistently throughout, instead of the current mixbag of PATH_MAX and MAXPATHLEN uses. It's no longer necessary to include sys/param.h (supposedly, I can't check all ports touched here) for MAXPATHLEN. Don't remove sys/param.h from GDB's configure.ac, as later tests in the file use HAVE_SYS_PARAM_H checks. Tested on x86_64 Fedora 17. Also cross-built for --host=i686-w64-mingw32, and --host=i586-pc-msdosdjgpp. gdb/ 2013-07-01 Pedro Alves <palves@redhat.com> * defs.h: Include "pathmax.h". * utils.c: Don't include sys/param.h. (gdb_realpath): Remove code that checks for MAXPATHLEN. * solib-ia64-hpux.c (ia64_hpux_handle_load_event): Use PATH_MAX instead of MAXPATHLEN. * solib-sunos.c: Don't include sys/param.h. * xcoffread.c: Don't include sys/param.h. * bsd-kvm.c: Don't include sys/param.h. * darwin-nat.c: Don't include sys/param.h. (darwin_pid_to_exec_file): Use PATH_MAX instead of MAXPATHLEN. * darwin-nat-info.c: Don't include sys/param.h. * fbsd-nat.c (fbsd_pid_to_exec_file): Use PATH_MAX instead of MAXPATHLEN. * i386obsd-nat.c: Don't include sys/param.h. * inf-child.c: Don't include sys/param.h. (inf_child_fileio_readlink): Use PATH_MAX instead of MAXPATHLEN. * linux-fork.c: Don't include sys/param.h. (fork_save_infrun_state): Use PATH_MAX instead of MAXPATHLEN. * linux-nat.c: Don't include sys/param.h. (linux_child_pid_to_exec_file, linux_proc_pending_signals) (linux_proc_pending_signals): Use PATH_MAX instead of MAXPATHLEN. * m68klinux-nat.c: Don't include sys/param.h. * nbsd-nat.c: Don't include sys/param.h. (nbsd_pid_to_exec_file): Use PATH_MAX instead of MAXPATHLEN. * ppc-linux-nat.c: Don't include sys/param.h. * rs6000-nat.c: Don't include sys/param.h. * spu-linux-nat.c. Don't include sys/param.h. * windows-nat.c: Don't include sys/param.h. * xtensa-linux-nat.c: Don't include sys/param.h. * config/i386/nm-fbsd.h: Don't include sys/param.h. gdb/gdbserver/ 2013-07-01 Pedro Alves <palves@redhat.com> * server.h: Include "pathmax.h". * linux-low.c: Don't include sys/param.h. (linux_pid_exe_is_elf_64_file): Use PATH_MAX instead of MAXPATHLEN. * win32-low.c: Don't include sys/param.h. (win32_create_inferior): Use PATH_MAX instead of MAXPATHLEN.
2013-06-11Lazily allocate 'struct regsets_info'::disabled_regsets.Pedro Alves1-13/+26
There's no need for every arch to pre-allocate disabled_regsets. Chances are the array won't be used. (I have a hunch that with some more work we could dispense with initialize_regsets_info.) Tested on x86_64 Fedora 17 w/ -lmcheck. gdb/gdbserver/ 2013-06-11 Pedro Alves <palves@redhat.com> * linux-low.c (regset_disabled, disable_regset): New functions. (regsets_fetch_inferior_registers) (regsets_store_inferior_registers): Use them. (initialize_regsets_info); Don't allocate the disabled_regsets array here. * linux-low.h (struct regsets_info) <disabled_regsets>: Extend comment.
2013-06-11Fix regression from multi-arch patch.Pedro Alves1-1/+1
This fixes the regression reported at <http://sourceware.org/ml/gdb-patches/2013-06/msg00185.html>. GDBserver was reaching: static int regsets_fetch_inferior_registers (struct regsets_info *regsets_info, struct regcache *regcache) { struct regset_info *regset; int saw_general_regs = 0; int pid; struct iovec iov; regset = regsets_info->regsets; pid = lwpid_of (get_thread_lwp (current_inferior)); while (regset->size >= 0) { void *buf, *data; int nt_type, res; if (regset->size == 0 || regsets_info->disabled_regsets[regset - regsets_info->regsets]) { >>>>>>> regset ++; <<<<<<< HERE continue; } Because info->disabled_regsets[] was not being initialized, and that causes all sorts of wrong. gdb/gdbserver/ 2013-06-11 Pedro Alves <palves@redhat.com> * linux-low.c (initialize_regsets_info): Use xcalloc instead of xmalloc.
2013-06-09gdb/gdbserver/Jan Kratochvil1-34/+43
Fix compatibility with Android Bionic. * linux-low.c (linux_qxfer_libraries_svr4): Ignore first entry even if it is not empty.
2013-06-07[GDBserver] Multi-process + multi-archPedro Alves1-90/+127
This patch makes GDBserver support multi-process + biarch. Currently, if you're debugging more than one process at once with a single gdbserver (in extended-remote mode), then all processes must have the same architecture (e.g., 64-bit vs 32-bit). Otherwise, you see this: Added inferior 2 [Switching to inferior 2 [<null>] (<noexec>)] Reading symbols from /home/pedro/gdb/tests/main32...done. Temporary breakpoint 2 at 0x4004cf: main. (2 locations) Starting program: /home/pedro/gdb/tests/main32 warning: Selected architecture i386 is not compatible with reported target architecture i386:x86-64 warning: Architecture rejected target-supplied description Remote 'g' packet reply is too long: 000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000090cfffff0000000000000000000000000000000000000000000000000000000000020000000000000000000000000000000000000000000000000000000000000000000000000000b042f7460000000000020000230000002b0000002b0000002b000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000007f03000000000000ffff0000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000801f00003b0000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000 ... etc, etc ... Even though the process was running a 32-bit program, GDBserver sent back to GDB a register set in 64-bit layout. A patch (http://sourceware.org/ml/gdb-patches/2012-11/msg00228.html) a while ago made GDB track a target_gdbarch per inferior, and as consequence, fetch a target description per-inferior. This patch is the GDBserver counterpart, that makes GDBserver keep track of each process'es XML target description and register layout. So in the example above, GDBserver will send the correct register set in 32-bit layout to GDB. A new "struct target_desc" object (tdesc for short) is added, that holds the target description and register layout information about each process. Each `struct process_info' holds a pointer to a target description. The regcache also gains a pointer to a target description, mainly for convenience, and parallel with GDB (and possible future support for programs that flip processor modes). The low target's arch_setup routines are responsible for setting the process'es correct tdesc. This isn't that much different to how things were done before, except that instead of detecting the inferior process'es architecture and calling the corresponding init_registers_FOO routine, which would change the regcache layout globals and recreate the threads' regcaches, the regcache.c globals are gone, and the init_registers_$BAR routines now each initialize a separate global struct target_desc object (one for each arch variant GDBserver supports), and so all the init_registers_$BAR routines that are built into GDBserver are called early at GDBserver startup time (similarly to how GDB handles its built-in target descriptions), and then the arch_setup routine is responsible for making process_info->tdesc point to one of these target description globals. The regcache module is all parameterized to get the regcache's layout from the tdesc object instead of the old register_bytes, etc. globals. The threads' regcaches are now created lazily. The old scheme where we created each of them when we added a new thread doesn't work anymore, because we add the main thread/lwp before we see it stop for the first time, and it is only when we see the thread stop for the first time that we have a chance of determining the inferior's architecture (through the_low_target.arch_setup). Therefore when we add the main thread we don't know which architecture/tdesc its regcache should have. This patch makes the gdb.multi/multi-arch.exp test now pass against (extended-remote) GDBserver. It currently fails, without this patch. The IPA also uses the regcache, so it gains a new global struct target_desc pointer, which points at the description of the process it is loaded in. Re. the linux-low.c & friends changes. Since the register map etc. may differ between processes (64-bit vs 32-bit) etc., the linux_target_ops num_regs, regmap and regset_bitmap data fields are no longer sufficient. A new method is added in their place that returns a pointer to a new struct that includes all info linux-low.c needs to access registers of the current inferior. The patch/discussion that originally introduced linux-low.c:disabled_regsets mentions that the disabled_regsets set may be different per mode (in a biarch setup), and indeed that is cleared whenever we start a new (first) inferior, so that global is moved as well behind the new `struct regs_info'. On the x86 side: I simply replaced the i387-fp.c:num_xmm_registers global with a check for 64-bit or 32-bit process, which is equivalent to how the global was set. This avoided coming up with some more general mechanism that would work for all targets that use this module (GNU/Linux, Windows, etc.). Tested: GNU/Linux IA64 GNU/Linux MIPS64 GNU/Linux PowerPC (Fedora 16) GNU/Linux s390x (Fedora 16) GNU/Linux sparc64 (Debian) GNU/Linux x86_64, -m64 and -m32 (Fedora 17) Cross built, and smoke tested: i686-w64-mingw32, under Wine. GNU/Linux TI C6x, by Yao Qi. Cross built but otherwise not tested: aarch64-linux-gnu arm-linux-gnu m68k-linux nios2-linux-gnu sh-linux-gnu spu tilegx-unknown-linux-gnu Completely untested: GNU/Linux Blackfin GNU/Linux CRIS GNU/Linux CRISv32 GNU/Linux TI Xtensa GNU/Linux M32R LynxOS QNX NTO gdb/gdbserver/ 2013-06-07 Pedro Alves <palves@redhat.com> * Makefile.in (OBS): Add tdesc.o. (IPA_OBJS): Add tdesc-ipa.o. (tdesc-ipa.o): New rule. * ax.c (gdb_eval_agent_expr): Adjust register_size call to new interface. * linux-low.c (new_inferior): Delete. (disabled_regsets, num_regsets): Delete. (linux_add_process): Adjust to set the new per-process new_inferior flag. (linux_detach_one_lwp): Adjust to call regcache_invalidate_thread. (linux_wait_for_lwp): Adjust. Only call arch_setup if the event was a stop. When calling arch_setup, switch the current inferior to the thread that got an event. (linux_resume_one_lwp): Adjust to call regcache_invalidate_thread. (regsets_fetch_inferior_registers) (regsets_store_inferior_registers): New regsets_info parameter. Adjust to use it. (linux_register_in_regsets): New regs_info parameter. Adjust to use it. (register_addr, fetch_register, store_register): New usrregs_info parameter. Adjust to use it. (usr_fetch_inferior_registers, usr_store_inferior_registers): New parameter regs_info. Adjust to use it. (linux_fetch_registers): Get the current inferior's regs_info, and adjust to use it. (linux_store_registers): Ditto. [HAVE_LINUX_REGSETS] (initialize_regsets_info): New. (initialize_low): Don't initialize the target_regsets here. Call initialize_low_arch. * linux-low.h (target_regsets): Delete declaration. (struct regsets_info): New. (struct usrregs_info): New. (struct regs_info): New. (struct process_info_private) <new_inferior>: New field. (struct linux_target_ops): Delete the num_regs, regmap, and regset_bitmap fields. New field regs_info. [HAVE_LINUX_REGSETS] (initialize_regsets_info): Declare. * i387-fp.c (num_xmm_registers): Delete. (i387_cache_to_fsave, i387_fsave_to_cache): Adjust find_regno calls to new interface. (i387_cache_to_fxsave, i387_cache_to_xsave, i387_fxsave_to_cache) (i387_xsave_to_cache): Adjust find_regno calls to new interface. Infer the number of xmm registers from the regcache's target description. * i387-fp.h (num_xmm_registers): Delete. * inferiors.c (add_thread): Don't install the thread's regcache here. * proc-service.c (gregset_info): Fetch the current inferior's regs_info. Adjust to use it. * regcache.c: Include tdesc.h. (register_bytes, reg_defs, num_registers) (gdbserver_expedite_regs): Delete. (get_thread_regcache): If the thread doesn't have a regcache yet, create one, instead of aborting gdbserver. (regcache_invalidate_one): Rename to ... (regcache_invalidate_thread): ... this. (regcache_invalidate_one): New. (regcache_invalidate): Only invalidate registers of the current process. (init_register_cache): Add target_desc parameter, and use it. (new_register_cache): Ditto. Assert the target description has a non zero registers_size. (regcache_cpy): Add assertions. Adjust. (realloc_register_cache, set_register_cache): Delete. (registers_to_string, registers_from_string): Adjust. (find_register_by_name, find_regno, find_register_by_number) (register_cache_size): Add target_desc parameter, and use it. (free_register_cache_thread, free_register_cache_thread_one) (regcache_release, register_cache_size): New. (register_size): Add target_desc parameter, and use it. (register_data, supply_register, supply_register_zeroed) (supply_regblock, supply_register_by_name, collect_register) (collect_register_as_string, collect_register_by_name): Adjust. * regcache.h (struct target_desc): Forward declare. (struct regcache) <tdesc>: New field. (init_register_cache, new_register_cache): Add target_desc parameter. (regcache_invalidate_thread): Declare. (regcache_invalidate_one): Delete declaration. (regcache_release): Declare. (find_register_by_number, register_cache_size, register_size) (find_regno): Add target_desc parameter. (gdbserver_expedite_regs, gdbserver_xmltarget): Delete declarations. * remote-utils.c: Include tdesc.h. (outreg, prepare_resume_reply): Adjust. * server.c: Include tdesc.h. (gdbserver_xmltarget): Delete declaration. (get_features_xml, process_serial_event): Adjust. * server.h [IN_PROCESS_AGENT] (struct target_desc): Forward declare. (struct process_info) <tdesc>: New field. (ipa_tdesc): Declare. * tdesc.c: New file. * tdesc.h: New file. * tracepoint.c: Include tdesc.h. [IN_PROCESS_AGENT] (ipa_tdesc): Define. (get_context_regcache): Adjust to pass ipa_tdesc down. (do_action_at_tracepoint): Adjust to get the register cache size from the context regcache's description. (traceframe_walk_blocks): Adjust to get the register cache size from the current trace frame's description. (traceframe_get_pc): Adjust to get current trace frame's description and pass it down. (gdb_collect): Adjust to get the register cache size from the IPA's description. * linux-amd64-ipa.c (tdesc_amd64_linux): Declare. (gdbserver_xmltarget): Delete. (initialize_low_tracepoint): Set the ipa's target description. * linux-i386-ipa.c (tdesc_i386_linux): Declare. (initialize_low_tracepoint): Set the ipa's target description. * linux-x86-low.c: Include tdesc.h. [__x86_64__] (is_64bit_tdesc): New. (ps_get_thread_area, x86_get_thread_area): Use it. (i386_cannot_store_register): Rename to ... (x86_cannot_store_register): ... this. Use is_64bit_tdesc. (i386_cannot_fetch_register): Rename to ... (x86_cannot_fetch_register): ... this. Use is_64bit_tdesc. (x86_fill_gregset, x86_store_gregset): Adjust register_size calls to new interface. (target_regsets): Rename to ... (x86_regsets): ... this. (x86_get_pc, x86_set_pc): Adjust register_size calls to new interface. (x86_siginfo_fixup): Use is_64bit_tdesc. [__x86_64__] (tdesc_amd64_linux, tdesc_amd64_avx_linux) (tdesc_x32_avx_linux, tdesc_x32_linux) (tdesc_i386_linux, tdesc_i386_mmx_linux, tdesc_i386_avx_linux): Declare. (x86_linux_update_xmltarget): Delete. (I386_LINUX_XSAVE_XCR0_OFFSET): Define. (have_ptrace_getfpxregs, have_ptrace_getregset): New. (AMD64_LINUX_USER64_CS): New. (x86_linux_read_description): New, based on x86_linux_update_xmltarget. (same_process_callback): New. (x86_arch_setup_process_callback): New. (x86_linux_update_xmltarget): New. (x86_regsets_info): New. (amd64_linux_regs_info): New. (i386_linux_usrregs_info): New. (i386_linux_regs_info): New. (x86_linux_regs_info): New. (x86_arch_setup): Reimplement. (x86_install_fast_tracepoint_jump_pad): Use is_64bit_tdesc. (x86_emit_ops): Ditto. (the_low_target): Adjust. Install x86_linux_regs_info, x86_cannot_fetch_register, and x86_cannot_store_register. (initialize_low_arch): New. * linux-ia64-low.c (tdesc_ia64): Declare. (ia64_fetch_register): Adjust. (ia64_usrregs_info, regs_info): New globals. (ia64_regs_info): New function. (the_low_target): Adjust. (initialize_low_arch): New function. * linux-sparc-low.c (tdesc_sparc64): Declare. (sparc_fill_gregset_to_stack, sparc_store_gregset_from_stack): Adjust. (sparc_arch_setup): New function. (sparc_regsets_info, sparc_usrregs_info, regs_info): New globals. (the_low_target): Adjust. (initialize_low_arch): New function. * linux-ppc-low.c (tdesc_powerpc_32l, tdesc_powerpc_altivec32l) (tdesc_powerpc_cell32l, tdesc_powerpc_vsx32l) (tdesc_powerpc_isa205_32l, tdesc_powerpc_isa205_altivec32l) (tdesc_powerpc_isa205_vsx32l, tdesc_powerpc_e500l) (tdesc_powerpc_64l, tdesc_powerpc_altivec64l) (tdesc_powerpc_cell64l, tdesc_powerpc_vsx64l) (tdesc_powerpc_isa205_64l, tdesc_powerpc_isa205_altivec64l) (tdesc_powerpc_isa205_vsx64l): Declare. (ppc_cannot_store_register, ppc_collect_ptrace_register) (ppc_supply_ptrace_register, parse_spufs_run, ppc_get_pc) (ppc_set_pc, ppc_get_hwcap): Adjust. (ppc_usrregs_info): Forward declare. (!__powerpc64__) ppc_regmap_adjusted: New global. (ppc_arch_setup): Adjust to the current process'es target description. (ppc_fill_vsxregset, ppc_store_vsxregset, ppc_fill_vrregset) (ppc_store_vrregset, ppc_fill_evrregset, ppc_store_evrregse) (ppc_store_evrregset): Adjust. (target_regsets): Rename to ... (ppc_regsets): ... this, and make static. (ppc_usrregs_info, ppc_regsets_info, regs_info): New globals. (ppc_regs_info): New function. (the_low_target): Adjust. (initialize_low_arch): New function. * linux-s390-low.c (tdesc_s390_linux32, tdesc_s390_linux32v1) (tdesc_s390_linux32v2, tdesc_s390_linux64, tdesc_s390_linux64v1) (tdesc_s390_linux64v2, tdesc_s390x_linux64, tdesc_s390x_linux64v1) (tdesc_s390x_linux64v2): Declare. (s390_collect_ptrace_register, s390_supply_ptrace_register) (s390_fill_gregset, s390_store_last_break): Adjust. (target_regsets): Rename to ... (s390_regsets): ... this, and make static. (s390_get_pc, s390_set_pc): Adjust. (s390_get_hwcap): New target_desc parameter, and use it. [__s390x__] (have_hwcap_s390_high_gprs): New global. (s390_arch_setup): Adjust to set the current process'es target description. Don't adjust the regmap. (s390_usrregs_info, s390_regsets_info, regs_info): New globals. [__s390x__] (s390_usrregs_info_3264, s390_regsets_info_3264) (regs_info_3264): New globals. (s390_regs_info): New function. (the_low_target): Adjust. (initialize_low_arch): New function. * linux-mips-low.c (tdesc_mips_linux, tdesc_mips_dsp_linux) (tdesc_mips64_linux, tdesc_mips64_dsp_linux): Declare. [__mips64] (init_registers_mips_linux) (init_registers_mips_dsp_linux): Delete defines. [__mips64] (tdesc_mips_linux, tdesc_mips_dsp_linux): New defines. (have_dsp): New global. (mips_read_description): New, based on mips_arch_setup. (mips_arch_setup): Reimplement. (get_usrregs_info): New function. (mips_cannot_fetch_register, mips_cannot_store_register) (mips_get_pc, mips_set_pc, mips_fill_gregset, mips_store_gregset) (mips_fill_fpregset, mips_store_fpregset): Adjust. (target_regsets): Rename to ... (mips_regsets): ... this, and make static. (mips_regsets_info, mips_dsp_usrregs_info, mips_usrregs_info) (dsp_regs_info, regs_info): New globals. (mips_regs_info): New function. (the_low_target): Adjust. (initialize_low_arch): New function. * linux-arm-low.c (tdesc_arm, tdesc_arm_with_iwmmxt) (tdesc_arm_with_vfpv2, tdesc_arm_with_vfpv3, tdesc_arm_with_neon): Declare. (arm_fill_vfpregset, arm_store_vfpregset): Adjust. (arm_read_description): New, with bits factored from arm_arch_setup. (arm_arch_setup): Reimplement. (target_regsets): Rename to ... (arm_regsets): ... this, and make static. (arm_regsets_info, arm_usrregs_info, regs_info): New globals. (arm_regs_info): New function. (the_low_target): Adjust. (initialize_low_arch): New function. * linux-m68k-low.c (tdesc_m68k): Declare. (target_regsets): Rename to ... (m68k_regsets): ... this, and make static. (m68k_regsets_info, m68k_usrregs_info, regs_info): New globals. (m68k_regs_info): New function. (m68k_arch_setup): New function. (the_low_target): Adjust. (initialize_low_arch): New function. * linux-sh-low.c (tdesc_sharch): Declare. (target_regsets): Rename to ... (sh_regsets): ... this, and make static. (sh_regsets_info, sh_usrregs_info, regs_info): New globals. (sh_regs_info, sh_arch_setup): New functions. (the_low_target): Adjust. (initialize_low_arch): New function. * linux-bfin-low.c (tdesc_bfin): Declare. (bfin_arch_setup): New function. (bfin_usrregs_info, regs_info): New globals. (bfin_regs_info): New function. (the_low_target): Adjust. (initialize_low_arch): New function. * linux-cris-low.c (tdesc_cris): Declare. (cris_arch_setup): New function. (cris_usrregs_info, regs_info): New globals. (cris_regs_info): New function. (the_low_target): Adjust. (initialize_low_arch): New function. * linux-cris-low.c (tdesc_crisv32): Declare. (cris_arch_setup): New function. (cris_regsets_info, cris_usrregs_info, regs_info): New globals. (cris_regs_info): New function. (the_low_target): Adjust. (initialize_low_arch): New function. * linux-m32r-low.c (tdesc_m32r): Declare. (m32r_arch_setup): New function. (m32r_usrregs_info, regs_info): New globals. (m32r_regs_info): Adjust. (initialize_low_arch): New function. * linux-tic6x-low.c (tdesc_tic6x_c64xp_linux) (tdesc_tic6x_c64x_linux, tdesc_tic6x_c62x_linux): Declare. (tic6x_usrregs_info): Forward declare. (tic6x_read_description): New function, based on ... (tic6x_arch_setup): ... this. Reimplement. (target_regsets): Rename to ... (tic6x_regsets): ... this, and make static. (tic6x_regsets_info, tic6x_usrregs_info, regs_info): New globals. (tic6x_regs_info): New function. (the_low_target): Adjust. (initialize_low_arch): New function. * linux-xtensa-low.c (tdesc_xtensa): Declare. (xtensa_fill_gregset, xtensa_store_gregset): Adjust. (target_regsets): Rename to ... (xtensa_regsets): ... this, and make static. (xtensa_regsets_info, xtensa_usrregs_info, regs_info): New globals. (xtensa_arch_setup, xtensa_regs_info): New functions. (the_low_target): Adjust. (initialize_low_arch): New function. * linux-nios2-low.c (tdesc_nios2_linux): Declare. (nios2_arch_setup): Set the current process'es tdesc. (target_regsets): Rename to ... (nios2_regsets): ... this. (nios2_regsets_info, nios2_usrregs_info, regs_info): New globals. (nios2_regs_info): New function. (the_low_target): Adjust. (initialize_low_arch): New function. * linux-aarch64-low.c (tdesc_aarch64): Declare. (aarch64_arch_setup): Set the current process'es tdesc. (target_regsets): Rename to ... (aarch64_regsets): ... this. (aarch64_regsets_info, aarch64_usrregs_info, regs_info): New globals. (aarch64_regs_info): New function. (the_low_target): Adjust. (initialize_low_arch): New function. * linux-tile-low.c (tdesc_tilegx, tdesc_tilegx32): Declare globals. (target_regsets): Rename to ... (tile_regsets): ... this. (tile_regsets_info, tile_usrregs_info, regs_info): New globals. (tile_regs_info): New function. (tile_arch_setup): Set the current process'es tdesc. (the_low_target): Adjust. (initialize_low_arch): New function. * spu-low.c (tdesc_spu): Declare. (spu_create_inferior, spu_attach): Set the new process'es tdesc. * win32-arm-low.c (tdesc_arm): Declare. (arm_arch_setup): New function. (the_low_target): Install arm_arch_setup instead of init_registers_arm. * win32-i386-low.c (tdesc_i386, tdesc_amd64): Declare. (init_windows_x86): Rename to ... (i386_arch_setup): ... this. Set `win32_tdesc'. (the_low_target): Adjust. * win32-low.c (win32_tdesc): New global. (child_add_thread): Don't create the thread cache here. (do_initial_child_stuff): Set the new process'es tdesc. * win32-low.h (struct target_desc): Forward declare. (win32_tdesc): Declare. * lynx-i386-low.c (tdesc_i386): Declare global. (lynx_i386_arch_setup): Set `lynx_tdesc'. * lynx-low.c (lynx_tdesc): New global. (lynx_add_process): Set the new process'es tdesc. * lynx-low.h (struct target_desc): Forward declare. (lynx_tdesc): Declare global. * lynx-ppc-low.c (tdesc_powerpc_32): Declare global. (lynx_ppc_arch_setup): Set `lynx_tdesc'. * nto-low.c (nto_tdesc): New global. (do_attach): Set the new process'es tdesc. * nto-low.h (struct target_desc): Forward declare. (nto_tdesc): Declare. * nto-x86-low.c (tdesc_i386): Declare. (nto_x86_arch_setup): Set `nto_tdesc'. gdb/ 2013-06-07 Pedro Alves <palves@redhat.com> * regformats/regdat.sh: Output #include tdesc.h. Make globals static. Output a global target description pointer. (init_registers_${name}): Adjust to initialize a target description structure.
2013-06-042013-06-04 Gary Benson <gbenson@redhat.com>Gary Benson1-97/+119
* server.c (handle_query): Add "augmented-libraries-svr4-read+" to qSupported response when appropriate. (handle_qxfer_libraries_svr4): Allow qXfer:libraries-svr4:read with nonzero-length annex. * linux-low.c (linux_qxfer_libraries_svr4): Parse and handle arguments supplied in annex.
2013-05-23range stepping: gdbserver (x86 GNU/Linux)Pedro Alves1-11/+52
This patch adds support for range stepping to GDBserver, teaching it about vCont;r. It'd be easy to enable this for all hardware single-step targets without needing the linux_target_ops hook, however, at least PPC needs special care, due to the fact that PPC atomic sequences can't be hardware single-stepped through, a thing which GDBserver doesn't know about. So this leaves the support limited to x86/x86_64. gdb/ 2013-05-23 Pedro Alves <palves@redhat.com> * NEWS: Mention GDBserver range stepping support. gdb/gdbserver/ 2013-05-23 Yao Qi <yao@codesourcery.com> Pedro Alves <palves@redhat.com> * linux-low.c (lwp_in_step_range): New function. (linux_wait_1): If the thread was range stepping and stopped outside the stepping range, report the stop to GDB. Otherwise, continue stepping. Add range stepping debug output. (linux_set_resume_request): Copy the step range from the resume request to the lwp. (linux_supports_range_stepping): New. (linux_target_ops) <supports_range_stepping>: Set to linux_supports_range_stepping. * linux-low.h (struct linux_target_ops) <supports_range_stepping>: New field. (struct lwp_info) <step_range_start, step_range_end>: New fields. * linux-x86-low.c (x86_supports_range_stepping): New. (the_low_target) <supports_range_stepping>: Set to x86_supports_range_stepping. * server.c (handle_v_cont): Handle 'r' action. (handle_v_requests): Append ";r" if the target supports range stepping. * target.h (struct thread_resume) <step_range_start, step_range_end>: New fields. (struct target_ops) <supports_range_stepping>: New field. (target_supports_range_stepping): New macro.
2013-05-16 * linux-low.c: Move definition checks upwards for PT_TEXT_ADDR,Luis Machado1-22/+35
PT_DATA_ADDR and PT_TEXT_END_ADDR. Update comments. (linux_read_offsets): Remove PT_TEXT_ADDR, PT_DATA_ADDR and PT_TEXT_END_ADDR guards. Update comments. (linux_target_op) <read_offsets>: Conditionally define to linux_read_offsets if the target is UCLIBC and if it defines PT_TEXT_ADDR, PT_DATA_ADDR and PT_TEXT_END_ADDR.
2013-03-22Linux: No need to set ptrace event options in fork/clone children.Pedro Alves1-2/+0
Oleg Nesterov told me that the Linux kernel copies the parent's ptrace options to fork/clone children, so there's no need for GDB to do that manually. I was actually a bit surprised, since I thought the ptracer had to always set the ptrace options itself, and GDB is indeed calling PTRACE_SETOPTIONS for each new fork child, if it'll stay attached. Looking at the history of that code, I found that is was actually I who added that set-ptrace-options-in-children bit, back in http://sourceware.org/ml/gdb-patches/2009-05/msg00656.html. But, honestly, I don't recall why I needed that. I think I may have just blindly believed it was necessary. I then looked back at the history of all the PTRACE_SETOPTIONS code we have, and found that gdb never did copy the ptrace options before my patch. But, when gdbserver learnt to use PTRACE_EVENT_CLONE, at http://sourceware.org/ml/gdb-patches/2007-10/msg00547.html, it was made to do 'ptrace (PTRACE_SETOPTIONS, new_pid, 0, PTRACE_O_TRACECLONE)' for all new clones. Hmmm. But, GDB itself never did that, so it can't really ever have been necessary, I believe, otherwise GDB should have been doing it too. (GDBserver doesn't support following forks, and so naturally doesn't do any PTRACE_SETOPTIONS on fork children.) So this patch removes the -I believe- unnecessary ptrace syscalls. Tested on x86_64 Fedora 17, native/gdbserver, and on x86_64 RHEL5 native/gdbserver (Linux 2.6.18, I think a ptrace-on-utrace kernel). No regressions. gdb/ 2013-03-22 Pedro Alves <palves@redhat.com> * linux-nat.c (linux_child_follow_fork): Don't call linux_enable_event_reporting. (linux_handle_extended_wait): Don't call linux_enable_event_reporting. gdb/gdbserver/ 2013-03-22 Pedro Alves <palves@redhat.com> * linux-low.c (handle_extended_wait): Don't call linux_enable_event_reporting.
2013-03-13Extraneous NULL in linux_target_ops when HAVE_LINUX_BTRACE not definedJoel Brobecker1-1/+0
This fixes the followin error when HAVE_LINUX_BTRACE is not defined: linux-low.c:5943: error: excess elements in struct initializer linux-low.c:5943: error: (near initialization for 'linux_target_ops') gdb/gdbserver/ChangeLog: * linux-low.c (linux_target_ops) [!HAVE_LINUX_BTRACE]: Remove extraneous NULL element.
2013-03-11Add the gdb remote target operations for branch tracing.Markus Metzger1-0/+57
We define the following packets: Qbtrace:bts enable branch tracing for the current thread returns "OK" or "Enn" Qbtrace:off disable branch tracing for the current thread returns "OK" or "Enn" qXfer:btrace:read read the full branch trace data for the current thread gdb/ * target.h (enum target_object): Add TARGET_OBJECT_BTRACE. * remote.c: Include btrace.h. (struct btrace_target_info): New struct. (remote_supports_btrace): New function. (send_Qbtrace): New function. (remote_enable_btrace): New function. (remote_disable_btrace): New function. (remote_teardown_btrace): New function. (remote_read_btrace): New function. (init_remote_ops): Add btrace ops. (enum <unnamed>): Add btrace packets. (struct protocol_feature remote_protocol_features[]): Add btrace packets. (_initialize_remote): Add packet configuration for branch tracing. gdbserver/ * target.h (struct target_ops): Add btrace ops. (target_supports_btrace): New macro. (target_enable_btrace): New macro. (target_disable_btrace): New macro. (target_read_btrace): New macro. * gdbthread.h (struct thread_info): Add btrace field. * server.c: Include btrace-common.h. (handle_btrace_general_set): New function. (handle_btrace_enable): New function. (handle_btrace_disable): New function. (handle_general_set): Call handle_btrace_general_set. (handle_qxfer_btrace): New function. (struct qxfer qxfer_packets[]): Add btrace entry. * inferiors.c (remove_thread): Disable btrace. * linux-low: Include linux-btrace.h. (linux_low_enable_btrace): New function. (linux_low_read_btrace): New function. (linux_target_ops): Add btrace ops. * configure.srv (i[34567]86-*-linux*): Add linux-btrace.o. Add srv_linux_btrace=yes. (x86_64-*-linux*): Add linux-btrace.o. Add srv_linux_btrace=yes. * configure.ac: Define HAVE_LINUX_BTRACE. * config.in: Regenerated. * configure: Regenerated.
2013-03-07PR gdb/15236: gdbserver write to linux memory with zero length corrupts stackPedro Alves1-1/+7
PROBLEM: The function linux_write_memory () in linux-low.c allocates a buffer on the stack to hold a copy of the data to be written. register PTRACE_XFER_TYPE *buffer = (PTRACE_XFER_TYPE *) alloca (count * sizeof (PTRACE_XFER_TYPE)); "count" is the number of bytes to be written, rounded up to the nearest multiple of sizeof (PTRACE_XFER_TYPE) and allowing for not being an aligned address. The function later uses buffer[0] = ptrace (PTRACE_PEEKTEXT, pid, (PTRACE_ARG3_TYPE) (uintptr_t) addr, 0); The problem is that this function can be called to write zero bytes on an aligned address, for example when receiving an X packet of length 0 (used to test if 8-bit write is supported). Under these circumstances, count can be zero. Since in this case, buffer[0] may never have been allocated, the stack is corrupted and gdbserver may crash. SOLUTION: Writing zero bytes should always succeed. The patch below returns successfully early if the length is zero, so avoiding the stack corruption. Verified on the ARC GDB 7.5.1 port. 2013-03-07 Jeremy Bennett <jeremy.bennett@embecosm.com> PR server/15236 * linux-low.c (linux_write_memory): Return early success if LEN is zero.
2013-02-04Ensure ptrace() calls cast arguments 3 and 4 appropriately.Marcus Shawcroft1-31/+52
* linux-low.c (handle_extended_wait, linux_create_inferior) (linux_attach_lwp_1, linux_kill_one_lwp, linux_attach_one_lwp) (dequeue_one_deferred_signal, linux_resume_one_thread) (fetch_register, linux_write_memory, linux_enable_event_reporting) (linux_tracefork_grandchild, linux_test_for_tracefork) (linux_read_offsets, linux_xfer_siginfo, linux_xfer_siginfo ): Add PTRACE_ARG3_TYPE and PTRACE_ARG4_TYPE cast to ptrace arguments where the argument is 0.