Commit Graph

103 Commits

Author SHA1 Message Date
Joel Brobecker 61baf725ec update copyright year range in GDB files
This applies the second part of GDB's End of Year Procedure, which
updates the copyright year range in all of GDB's files.

gdb/ChangeLog:

        Update copyright year range in all GDB files.
2017-01-01 10:52:34 +04:00
Pedro Alves 5a04c4cf5d gdbserver: Leave already-vCont-resumed threads as they were
Currently GDB never sends more than one action per vCont packet, when
connected in non-stop mode.  A follow up patch will change that, and
it exposed a gdbserver problem with the vCont handling.

For example, this in non-stop mode:

  => vCont;s:p1.1;c
  <= OK

Should be equivalent to:

  => vCont;s:p1.1
  <= OK
  => vCont;c
  <= OK

But gdbserver currently doesn't handle this.  In the latter case,
"vCont;c" makes gdbserver clobber the previous step request.  This
patch fixes that.

Note the server side must ignore resume actions for the thread that
has a pending %Stopped notification (and any other threads with events
pending), until GDB acks the notification with vStopped.  Otherwise,
e.g., the following case is mishandled:

 #1 => g  (or any other packet)
 #2 <= [registers]
 #3 <= %Stopped T05 thread:p1.2
 #4 => vCont s:p1.1;c
 #5 <= OK

Above, the server must not resume thread p1.2 when it processes the
vCont.  GDB can't know that p1.2 stopped until it acks the %Stopped
notification.  (Otherwise it wouldn't send a default "c" action.)

(The vCont documentation already specifies this.)

Finally, special care must also be given to handling fork/vfork
events.  A (v)fork event actually tells us that two processes stopped
-- the parent and the child.  Until we follow the fork, we must not
resume the child.  Therefore, if we have a pending fork follow, we
must not send a global wildcard resume action (vCont;c).  We can still
send process-wide wildcards though.

(The comments above will be added as code comments to gdb in a follow
up patch.)

gdb/gdbserver/ChangeLog:
2016-10-26  Pedro Alves  <palves@redhat.com>

	* linux-low.c (handle_extended_wait): Link parent/child fork
	threads.
	(linux_wait_1): Unlink them.
	(linux_set_resume_request): Ignore resume requests for
	already-resumed and unhandled fork child threads.
	* linux-low.h (struct lwp_info) <fork_relative>: New field.
	* server.c (in_queued_stop_replies_ptid, in_queued_stop_replies):
	New functions.
	(handle_v_requests) <vCont>: Don't call require_running.
	* server.h (in_queued_stop_replies): New declaration.
2016-10-26 16:22:27 +01:00
Yao Qi 4cc32bec04 Remove parameter sysret from linux_target_ops.get_syscall_trapinfo
When I implement linux_target_ops.get_syscall_trapinfo for aarch64 and arm,
I find the second parameter sysret isn't used at all.  In RSP, we don't
need syscall return value either, because GDB can figure out the return
value from registers content got by 'g' packet.

This patch is to remove them.

gdb/gdbserver:

2016-06-28  Yao Qi  <yao.qi@linaro.org>

	* linux-low.c (get_syscall_trapinfo): Remove parameter sysret.
	Callers updated.
	* linux-low.h (struct linux_target_ops) <get_syscall_trapinfo>:
	Remove parameter sysno.
	* linux-x86-low.c (x86_get_syscall_trapinfo): Remove parameter
	sysret.
2016-06-28 12:03:28 +01:00
Yao Qi f166f943f3 Remove need_step_over from struct lwp_info
Hi,
I happen to see that field need_step_over in struct lwp_info is only
used to print a debug info.  need_step_over is set in linux_wait_1
when breakpoint_here is true, however, we check breakpoint_here too in
need_step_over_p and do the step over.  I think we don't need field
need_step_over, and check breakpoint_here directly in need_step_over_p.

This field was added in this patch
https://sourceware.org/ml/gdb-patches/2010-03/msg00605.html and the code
wasn't changed much since then.

This patch is to remove it.

gdb/gdbserver:

2016-04-28  Yao Qi  <yao.qi@linaro.org>

	* linux-low.h (struct lwp_info) <need_step_over>: Remove.
	* linux-low.c (linux_wait_1): Update.
	(need_step_over_p): Likewise.
2016-04-28 11:52:23 +01:00
Marcin Kościelnicki ae91f62539 [PR gdb/13808] gdb.trace: Pass tdesc selected in gdbserver to IPA.
If gdbserver and IPA are using different tdesc, they will disagree
about 'R' trace packet size.  This results in mangled traces.

To make sure they pick the same tdesc, gdbserver pokes the tdesc
(specified as an index in a target-specific list) into a global
variable in IPA.  In theory, IPA could find out the tdesc on its
own, but that may be complex (in particular, I don't know how to
tell whether we have LAST_BREAK on s390 without messing with ptrace),
and we'd have to duplicate the logic.

Tested on i386 and x86_64.  On i386, it fixes two FAILs in ftrace.exp.
On x86_64, these failures have been KFAILed - one of them works now,
but the other now fails due to an unrelated reason (ugh).

gdb/gdbserver/ChangeLog:

	PR gdb/13808
	* Makefile.in: Add i386-*-linux-ipa.o and amd64-*-linux-ipa.o.
	* configure.srv: Ditto.
	* linux-aarch64-ipa.c (get_ipa_tdesc): New function.
	(initialize_low_tracepoint): Remove ipa_tdesc assignment.
	* linux-amd64-ipa.c: Add "linux-x86-tdesc.h" include.
	(init_registers_amd64_linux): Remove prototype.
	(tdesc_amd64_linux): Remove declaration.
	(get_ipa_tdesc): New function.
	(initialize_low_tracepoint): Remove ipa_tdesc assignment,
	initialize remaining tdescs.
	* linux-i386-ipa.c: Add "linux-x86-tdesc.h" include.
	(init_registers_i386_linux): Remove prototype.
	(tdesc_i386_linux): Remove declaration.
	(get_ipa_tdesc): New function.
	(initialize_low_tracepoint): Remove ipa_tdesc assignment,
	initialize remaining tdescs.
	* linux-low.c (linux_get_ipa_tdesc_idx): New function.
	(linux_target_ops): wire in linux_get_ipa_tdesc_idx.
	* linux-low.h (struct linux_target_ops): Add get_ipa_tdesc_idx.
	* linux-x86-low.c: Move tdesc declarations to linux-x86-tdesc.h.
	(x86_get_ipa_tdesc_idx): New function.
	(the_low_target): Wire in x86_get_ipa_tdesc_idx.
	* linux-x86-tdesc.h: New file.
	* target.h (struct target_ops): Add get_ipa_tdesc_idx.
	(target_get_ipa_tdesc_idx): New macro.
	* tracepoint.c (ipa_tdesc_idx): New macro.
	(struct ipa_sym_addresses): Add addr_ipa_tdesc_idx.
	(symbol_list): Add ipa_tdesc_idx.
	(cmd_qtstart): Write ipa_tdesc_idx in the target.
	(ipa_tdesc): Remove.
	(ipa_tdesc_idx): New variable.
	(get_context_regcache): Use get_ipa_tdesc.
	(gdb_collect): Ditto.
	(gdb_probe): Ditto.
	* tracepoint.h (get_ipa_tdesc): New prototype.
	(ipa_tdesc): Remove.

gdb/testsuite/ChangeLog:

	PR gdb/13808
	* gdb.trace/ftrace.exp (test_fast_tracepoints): Remove kfail.
2016-02-25 17:57:28 +01:00
Simon Marchi 8adce0342f Fix siginfo C++ build error
Change the signature of gdbserver's siginfo_fixup functions so that it's
in line with gdb's.  This gets rid of the following build error in C++:

  /home/emaisin/src/binutils-gdb/gdb/gdbserver/linux-x86-low.c: In function ‘int x86_siginfo_fixup(siginfo_t*, void*, int)’:
  /home/emaisin/src/binutils-gdb/gdb/gdbserver/linux-x86-low.c:694:21: error: invalid conversion from ‘void*’ to ‘gdb_byte* {aka unsigned char*}’ [-fpermissive]
               FIXUP_32);
                       ^
  In file included from /home/emaisin/src/binutils-gdb/gdb/gdbserver/linux-x86-low.c:31:0:
  /home/emaisin/src/binutils-gdb/gdb/gdbserver/../nat/amd64-linux-siginfo.h:52:5: error:   initializing argument 2 of ‘int amd64_linux_siginfo_fixup_common(siginfo_t*, gdb_byte*, int, amd64_siginfo_fixup_mode)’ [-fpermissive]
   int amd64_linux_siginfo_fixup_common (siginfo_t *native, gdb_byte *inf,
       ^
  /home/emaisin/src/binutils-gdb/gdb/gdbserver/linux-x86-low.c:698:20: error: invalid conversion from ‘void*’ to ‘gdb_byte* {aka unsigned char*}’ [-fpermissive]
             FIXUP_X32);
                      ^
  In file included from /home/emaisin/src/binutils-gdb/gdb/gdbserver/linux-x86-low.c:31:0:
  /home/emaisin/src/binutils-gdb/gdb/gdbserver/../nat/amd64-linux-siginfo.h:52:5: error:   initializing argument 2 of ‘int amd64_linux_siginfo_fixup_common(siginfo_t*, gdb_byte*, int, amd64_siginfo_fixup_mode)’ [-fpermissive]
   int amd64_linux_siginfo_fixup_common (siginfo_t *native, gdb_byte *inf,
       ^

gdb/gdbserver/ChangeLog:

	* linux-aarch64-low.c (aarch64_linux_siginfo_fixup): Change
	void * to gdb_byte *.
	* linux-low.c (siginfo_fixup): Likewise.
	(linux_xfer_siginfo): Likewise.
	* linux-low.h (struct linux_target_ops) <siginfo_fixup>:
	Likewise.
	* linux-x86-low.c (x86_siginfo_fixup): Likewise.
2016-02-09 11:18:15 +00:00
Yao Qi 4d18591be9 Remove argument pc in get_next_pcs
Nowadays, get_next_pcs in linux_target_ops has two parameters PC
and REGCACHE.  Parameter PC looks redundant because it can be go
from REGCACHE.  The patch is to remove PC from the arguments for
various functions.

gdb:

2016-01-26  Yao Qi  <yao.qi@linaro.org>

	* arch/arm-get-next-pcs.c (thumb_deal_with_atomic_sequence_raw):
	Remove argument pc.  Get pc by regcache_read_pc.  Callers updated.
	(arm_deal_with_atomic_sequence_raw): Likewise.
	(thumb_get_next_pcs_raw): Likewise.
	(arm_get_next_pcs_raw): Likewise.
	(arm_get_next_pcs): Remove argument pc.  Callers updated.
	* arch/arm-get-next-pcs.h (arm_get_next_pcs): Update declaration.

gdb/gdbserver:

2016-01-26  Yao Qi  <yao.qi@linaro.org>

	* linux-arm-low.c (arm_gdbserver_get_next_pcs): Remove argument pc.
	* linux-low.c (install_software_single_step_breakpoints): Don't
	call regcache_read_pc.
	* linux-low.h (struct linux_target_ops) <get_next_pcs>: Remove
	argument pc.
2016-01-26 14:08:26 +00:00
Yao Qi 6f69e52067 Replace some $ARCH_{get,set}_pc with linux_{get,set}_pc_64bit
This patch is the follow-up of
https://sourceware.org/ml/gdb-patches/2016-01/msg00164.html to provide
linux_{get,set}_pc_64bit functions.

Rebuild GDBserver with tilegx-linux-gcc.  Not tested.

I think about pc in Tile-GX a little bit.  Looks current Tile-GX
supports debugging 32-bit program (multi-arch), but PC is always
64-bit.  See this thread
https://sourceware.org/ml/gdb-patches/2013-02/msg00113.html
and GDBserver reads PC as 64-bit through ptrace.  However, if
the inferior is 32-bit, the PC in the target description and
regcache is 32-bit, so only 32-bit contents are sent back GDB.
Anyway, Tile-GX GDBserver may have some problems here, but this
patch doesn't change anything.

gdb/gdbserver:

2016-01-18  Yao Qi  <yao.qi@linaro.org>

	* linux-low.c (linux_set_pc_64bit): New function.
	(linux_get_pc_64bit): New function.
	* linux-low.h (linux_set_pc_64bit, linux_get_pc_64bit):
	Declare.
	* linux-sparc-low.c (debug_threads): Remove declaration.
	(sparc_get_pc): Remove.
	(the_low_target): Use linux_get_pc_64bit instead of
	sparc_get_pc.
	* linux-tile-low.c (tile_get_pc, tile_set_pc): Remove.
	(the_low_target): Use linux_get_pc_64bit and
	linux_set_pc_64bit.
2016-01-18 15:03:18 +00:00
Yao Qi 276d4552df Replace some $ARCH_{get,set}_pc with linux_{get,set}_pc_32bit
This patch adds a pair of new functions linux_get_pc_32bit and
linux_set_pc_32bit which get and set 32-bit register "pc" from
regcache.  This function can be used some targets and these own
$ARCH_{get,set}_pc are replaced by linux_{get,set}_pc_32bit
respectively.

This patch touches many targets, but I only have arm board to
test and no regression.  I also rebuilt nios2-linux GDBserver.
If it is right to go, I'll post the 64-bit counterpart later.

gdb/gdbserver:

2016-01-18  Yao Qi  <yao.qi@linaro.org>

	* linux-arm-low.c (debug_threads): Remove declaration.
	(arm_get_pc, arm_set_pc): Remove.
	(the_low_target): Use linux_get_pc_32bit and
	linux_set_pc_32bit.
	* linux-bfin-low.c (bfin_get_pc, bfin_set_pc): Remove.
	(the_low_target): Use linux_get_pc_32bit and
	linux_set_pc_32bit.
	* linux-cris-low.c (debug_threads): Remove declaration.
	(cris_get_pc, cris_set_pc,): Remove.
	(the_low_target): Use linux_get_pc_32bit and
	linux_set_pc_32bit.
	* linux-crisv32-low.c (debug_threads): Remove declaration.
	(cris_get_pc, cris_set_pc): Remove.
	(the_low_target): Use linux_get_pc_32bit and
	linux_set_pc_32bit.
	* linux-low.c: Include inttypes.h.
	(linux_get_pc_32bit, linux_set_pc_32bit): New functions.
	* linux-low.h (linux_get_pc_32bit, linux_set_pc_32bit): Declare.
	* linux-m32r-low.c (m32r_get_pc, m32r_set_pc): Remove.
	(the_low_target): Use linux_get_pc_32bit and
	linux_set_pc_32bit.
	* linux-m68k-low.c (m68k_get_pc, m68k_set_pc): Remove.
	(the_low_target): Use linux_get_pc_32bit and
	linux_set_pc_32bit.
	* linux-nios2-low.c (nios2_get_pc, nios2_set_pc): Remove.
	(the_low_target): Use linux_get_pc_32bit and
	linux_set_pc_32bit.
	* linux-sh-low.c (sh_get_pc, sh_set_pc): Remove.
	(the_low_target): Use linux_get_pc_32bit and
	linux_set_pc_32bit.
	* linux-xtensa-low.c (xtensa_get_pc, xtensa_set_pc): Remove.
	(the_low_target): Use linux_get_pc_32bit and
	linux_set_pc_32bit.
2016-01-18 14:59:11 +00:00
Josh Stone 82075af2c1 Implement 'catch syscall' for gdbserver
This adds a new QCatchSyscalls packet to enable 'catch syscall', and new
stop reasons "syscall_entry" and "syscall_return" for those events.  It
is currently only supported on Linux x86 and x86_64.

gdb/ChangeLog:

2016-01-12  Josh Stone  <jistone@redhat.com>
	    Philippe Waroquiers  <philippe.waroquiers@skynet.be>

	* NEWS (Changes since GDB 7.10): Mention QCatchSyscalls and the
	syscall_entry and syscall_return stop reasons.  Mention GDB
	support for remote catch syscall.
	* remote.c (PACKET_QCatchSyscalls): New enum.
	(remote_set_syscall_catchpoint): New function.
	(remote_protocol_features): New element for QCatchSyscalls.
	(remote_parse_stop_reply): Parse syscall_entry/return stops.
	(init_remote_ops): Install remote_set_syscall_catchpoint.
	(_initialize_remote): Config QCatchSyscalls.
	* linux-nat.h (struct lwp_info) <syscall_state>: Comment typo.

gdb/doc/ChangeLog:

2016-01-12  Josh Stone  <jistone@redhat.com>
	    Philippe Waroquiers  <philippe.waroquiers@skynet.be>

	* gdb.texinfo (Remote Configuration): List the QCatchSyscalls packet.
	(Stop Reply Packets): List the syscall entry and return stop reasons.
	(General Query Packets): Describe QCatchSyscalls, and add it to the
	table and the detailed list of stub features.

gdb/gdbserver/ChangeLog:

2016-01-12  Josh Stone  <jistone@redhat.com>
	    Philippe Waroquiers  <philippe.waroquiers@skynet.be>

	* inferiors.h: Include "gdb_vecs.h".
	(struct process_info): Add syscalls_to_catch.
	* inferiors.c (remove_process): Free syscalls_to_catch.
	* remote-utils.c (prepare_resume_reply): Report syscall_entry and
	syscall_return stops.
	* server.h (UNKNOWN_SYSCALL, ANY_SYSCALL): Define.
	* server.c (handle_general_set): Handle QCatchSyscalls.
	(handle_query): Report support for QCatchSyscalls.
	* target.h (struct target_ops): Add supports_catch_syscall.
	(target_supports_catch_syscall): New macro.
	* linux-low.h (struct linux_target_ops): Add get_syscall_trapinfo.
	(struct lwp_info): Add syscall_state.
	* linux-low.c (handle_extended_wait): Mark syscall_state as an entry.
	Maintain syscall_state and syscalls_to_catch across exec.
	(get_syscall_trapinfo): New function, proxy to the_low_target.
	(linux_low_ptrace_options): Enable PTRACE_O_TRACESYSGOOD.
	(linux_low_filter_event): Toggle syscall_state entry/return for
	syscall traps, and set it ignored for all others.
	(gdb_catching_syscalls_p): New function.
	(gdb_catch_this_syscall_p): New function.
	(linux_wait_1): Handle SYSCALL_SIGTRAP.
	(linux_resume_one_lwp_throw): Add PTRACE_SYSCALL possibility.
	(linux_supports_catch_syscall): New function.
	(linux_target_ops): Install it.
	* linux-x86-low.c (x86_get_syscall_trapinfo): New function.
	(the_low_target): Install it.

gdb/testsuite/ChangeLog:

2016-01-12  Josh Stone  <jistone@redhat.com>
	    Philippe Waroquiers  <philippe.waroquiers@skynet.be>

	* gdb.base/catch-syscall.c (do_execve): New variable.
	(main): Conditionally trigger an execve.
	* gdb.base/catch-syscall.exp: Enable testing for remote targets.
	(test_catch_syscall_execve): New, check entry/return across execve.
	(do_syscall_tests): Call test_catch_syscall_execve.
2016-01-12 12:27:27 -08:00
Joel Brobecker 618f726fcb GDB copyright headers update after running GDB's copyright.py script.
gdb/ChangeLog:

        Update year range in copyright notice of all files.
2016-01-01 08:43:22 +04:00
Antoine Tremblay d9311bfaf5 Support software single step on ARM in GDBServer
This patch teaches GDBServer how to software single step on ARM
linux by sharing code with GDB.

The arm_get_next_pcs function in GDB is now shared with GDBServer.  So
that GDBServer can use the function to return the possible addresses of
the next PC.

A proper shared context was also needed so that we could share the code,
this context is described in the arm_get_next_pcs structure.

Testing :

No regressions, tested on ubuntu 14.04 ARMv7 and x86.
With gdbserver-{native,extended} / { -marm -mthumb }

gdb/ChangeLog:

	* Makefile.in (ALL_TARGET_OBS): Append arm-get-next-pcs.o,
	arm-linux.o.
	(ALLDEPFILES): Append arm-get-next-pcs.c, arm-linux.c
	(arm-linux.o): New rule.
	(arm-get-next-pcs.o): New rule.
	* arch/arm-get-next-pcs.c: New file.
	* arch/arm-get-next-pcs.h: New file.
	* arch/arm-linux.h: New file.
	* arch/arm-linux.c: New file.
	* arm.c: Include common-regcache.c.
	(thumb_advance_itstate): Moved from arm-tdep.c.
	(arm_instruction_changes_pc): Likewise.
	(thumb_instruction_changes_pc): Likewise.
	(thumb2_instruction_changes_pc): Likewise.
	(shifted_reg_val): Likewise.
	* arm.h (submask): Move macro from arm-tdep.h
	(bit): Likewise.
	(bits): Likewise.
	(sbits): Likewise.
	(BranchDest): Likewise.
	(thumb_advance_itstate): Moved declaration from arm-tdep.h
	(arm_instruction_changes_pc): Likewise.
	(thumb_instruction_changes_pc): Likewise.
	(thumb2_instruction_changes_pc): Likewise.
	(shifted_reg_val): Likewise.
	* arm-linux-tdep.c: Include arch/arm.h, arch/arm-get-next-pcs.h
	arch/arm-linux.h.
	(arm_linux_get_next_pcs_ops): New struct.
	(ARM_SIGCONTEXT_R0, ARM_UCONTEXT_SIGCONTEXT,
	ARM_OLD_RT_SIGFRAME_SIGINFO, ARM_OLD_RT_SIGFRAME_UCONTEXT,
	ARM_NEW_RT_SIGFRAME_UCONTEXT, ARM_NEW_SIGFRAME_MAGIC): Move stack
	layout defines to arch/arm-linux.h.
	(arm_linux_sigreturn_next_pc_offset): Move to arch/arm-linux.c.
	(arm_linux_software_single_step): Adjust for arm_get_next_pcs
	implementation.
	* arm-tdep.c: Include arch/arm-get-next-pcs.h.
	(arm_get_next_pcs_ops): New struct.
	(submask): Move macro to arm.h.
	(bit): Likewise.
	(bits): Likewise.
	(sbits): Likewise.
	(BranchDest): Likewise.
	(thumb_instruction_changes_pc): Move to arm.c
	(thumb2_instruction_changes_pc): Likewise.
	(arm_instruction_changes_pc): Likewise.
	(shifted_reg_val): Likewise.
	(thumb_advance_itstate): Likewise.
	(thumb_get_next_pc_raw): Move to arm-get-next-pcs.c.
	(arm_get_next_pc_raw): Likewise.
	(arm_get_next_pc): Likewise.
	(thumb_deal_with_atomic_sequence_raw): Likewise.
	(arm_deal_with_atomic_sequence_raw): Likewise.
	(arm_deal_with_atomic_sequence): Likewise.
	(arm_get_next_pcs_read_memory_unsigned_integer): New function.
	(arm_get_next_pcs_addr_bits_remove): Likewise.
	(arm_get_next_pcs_syscall_next_pc): Likewise.
	(arm_get_next_pcs_is_thumb): Likewise.
	(arm_software_single_step): Adjust for arm_get_next_pcs
	implementation.
	* arm-tdep.h: (arm_get_next_pc): Remove declaration.
	(arm_get_next_pcs_read_memory_unsigned_integer):
	New declaration.
	(arm_get_next_pcs_addr_bits_remove): Likewise.
	(arm_get_next_pcs_syscall_next_pc): Likewise.
	(arm_get_next_pcs_is_thumb): Likewise.
	(arm_deal_with_atomic_sequence: Remove declaration.
	* common/gdb_vecs.h: Add CORE_ADDR vector definition.
	* configure.tgt (aarch64*-*-linux): Add arm-get-next-pcs.o,
	arm-linux.o.
	(arm*-wince-pe): Add arm-get-next-pcs.o.
	(arm*-*-linux*): Add arm-get-next-pcs.o, arm-linux.o,
	arm-get-next-pcs.o
	(arm*-*-netbsd*,arm*-*-knetbsd*-gnu): Add arm-get-next-pcs.o.
	(arm*-*-openbsd*): Likewise.
	(arm*-*-symbianelf*): Likewise.
	(arm*-*-*): Likewise.
	* symtab.h: Move CORE_ADDR vector definition to gdb_vecs.h.

gdb/gdbserver/ChangeLog:

	* Makefile.in (SFILES): Append arch/arm-linux.c,
	arch/arm-get-next-pcs.c.
	(arm-linux.o): New rule.
	(arm-get-next-pcs.o): New rule.
	* configure.srv (arm*-*-linux*): Add arm-get-next-pcs.o,
	arm-linux.o.
	* linux-aarch32-low.c (arm_abi_breakpoint): Remove macro.  Moved
	to linux-aarch32-low.c.
	(arm_eabi_breakpoint, arm_breakpoint): Likewise.
	(arm_breakpoint_len, thumb_breakpoint): Likewise.
	(thumb_breakpoint_len, thumb2_breakpoint): Likewise.
	(thumb2_breakpoint_len): Likewise.
	(arm_is_thumb_mode): Make non-static.
	* linux-aarch32-low.h (arm_abi_breakpoint): New macro.  Moved
	from linux-aarch32-low.c.
	(arm_eabi_breakpoint, arm_breakpoint): Likewise.
	(arm_breakpoint_len, thumb_breakpoint): Likewise.
	(thumb_breakpoint_len, thumb2_breakpoint): Likewise.
	(thumb2_breakpoint_len): Likewise.
	(arm_is_thumb_mode): New declaration.
	* linux-arm-low.c: Include arch/arm-linux.h
	aarch/arm-get-next-pcs.h, sys/syscall.h.
	(get_next_pcs_ops): New struct.
	(get_next_pcs_addr_bits_remove): New function.
	(get_next_pcs_is_thumb): New function.
	(get_next_pcs_read_memory_unsigned_integer): Likewise.
	(arm_sigreturn_next_pc): Likewise.
	(get_next_pcs_syscall_next_pc): Likewise.
	(arm_gdbserver_get_next_pcs): Likewise.
	(struct linux_target_ops) <arm_gdbserver_get_next_pcs>:
	Initialize.
	* linux-low.h: Move CORE_ADDR vector definition to gdb_vecs.h.
	* server.h: Include gdb_vecs.h.
2015-12-18 11:39:48 -05:00
Antoine Tremblay fa5308bdcc Replace breakpoint_reinsert_addr by get_next_pcs operation in GDBServer
This patch in preparation for software single step support on ARM. It refactors
breakpoint_reinsert_addr into get_next_pcs so that multiple location can be
returned.

When software single stepping there can be multiple possible next addresses
because we're stepping over a conditional branch instruction, for example.

The operation get_next_pcs handles that by returning a vector of all the
possible next addresses.

Software breakpoints are installed at each location returned.

No regressions, tested on ubuntu 14.04 ARMv7 and x86.
With gdbserver-{native,extended} / { -marm -mthumb }

gdb/gdbserver/ChangeLog:

	* linux-aarch64-low.c (the_low_targets): Rename
	breakpoint_reinsert_addr to get_next_pcs.
	* linux-arm-low.c (the_low_targets): Likewise.
	* linux-bfin-low.c (the_low_targets): Likewise.
	* linux-cris-low.c (the_low_targets): Likewise.
	* linux-crisv32-low.c (the_low_targets): Likewise.
	* linux-low.c (can_software_single_step): Likewise.
	(install_software_single_step_breakpoints): New function.
	(start_step_over): Use install_software_single_step_breakpoints.
	* linux-low.h: New CORE_ADDR vector.
	(struct linux_target_ops) Rename breakpoint_reinsert_addr to
	get_next_pcs.
	* linux-mips-low.c (the_low_targets): Likewise.
	* linux-nios2-low.c (the_low_targets): Likewise.
	* linux-sparc-low.c (the_low_targets): Likewise.
2015-12-18 11:33:58 -05:00
Antoine Tremblay 9b4c5f878f Remove support for thread events without PTRACE_EVENT_CLONE in GDBServer.
This patch removes support for thread events if PTRACE_EVENT_CLONE is not
supported in GDBServer.

Before, on systems that did not support PTRACE_EVENT_CLONE, both GDB and
GDBServer coordinated with libthread_db.so to insert breakpoints at magic
locations in libpthread.so, in order to break at thread creation and thread
death.

Simple software single stepping support was implemented to step over these
breakpoints in case there was no hardware single stepping support. However,
these simple software single stepping implementations were not fit for any other
use as discussed in :
https://sourceware.org/ml/gdb-patches/2015-04/msg01110.html

These too simple implementations conflict with ongoing work to make proper
implementations of software single stepping in GDBServer.

The problem is that if some implementations are correct and others are not and
only there for the thread magic breakpoint, we can't enable features based
solely software single step support since some would be broken.

To keep the incorrect implementations and allow the new proper ones at the same
time we would need to implement fallback code and it quickly becomes ugly and
confusing with multiple checks for legacy software single step or proper
software single step.

However, PTRACE_EVENT_CLONE was first introduced in Linux 2.5.46,
released in November 2002.

So I think it's reasonable to just remove support for kernels that don't support
PTRACE_EVENT_CLONE, and sidestep the libthread_db breakpoints issues entirely.

This thread on the mailling list discusses the issue :
https://sourceware.org/ml/gdb/2015-10/msg00078.html

No regressions, tested on ubuntu 14.04 ARMv7 and x86.
With gdbserver-{native,extended} / { -marm -mthumb }

gdb/gdbserver/ChangeLog:

	* linux-low.c (linux_look_up_symbols): Don't call
	linux_supports_traceclone.
	* linux-low.h (thread_db_init): Remove use_events argument.
	* thread-db.c (thread_db_use_event): Remove global variable.
	(struct thread_db) <td_thr_event_enable_p>: Remove field.
	(struct thread_db) <td_create_bp>: Remove field.
	(thread_db_create_event): Remove function.
	(thread_db_enable_reporting): Likewise.
	(find_one_thread): Don't check for thread_db_use_events.
	(attach_thread): Likewise.
	(thread_db_load_search): Remove td_thr_event_enable_p initialization.
	(try_thread_db_load_1): Don't check for thread_db_use_events.
	(thread_db_init): Remove use_events argument and thread events
	handling.
	(remove_thread_event_breakpoints): Remove function.
	(thread_db_detach): Remove call to remove_thred_event_breakpoints.
2015-11-30 15:18:57 -05:00
Antoine Tremblay 7d00775ece Refactor queries for hardware and software single stepping support in GDBServer.
Before this patch there was only one call: can_hardware_single_step. Its
implementation was a check on breakpoint_reinsert_addr if NULL it assumed
that the target could hardware single step.

This patch prepares for the case where this is not true anymore.

In order to improve software single stepping in GDBServer the
breakpoint_reinsert_addr operation of targets that had a very simple
software implementation used only for stepping over thread creation events
will be removed.

This will create a case where a target does not support hardware single
step and has the operation breakpoint_reinsert_addr set to NULL, thus
can_hardware_single_step needs to be implemented another way.

A new target operation supports_hardware_single_step is introduced and is
to return true if the target does support such a feature, support for the
feature is manually hardcoded.

Note that the hardware single step support was enabled as per the current
behavior, I did not check if tile for example really has ptrace singlestep
support but since the current implementation assumed it had, I kept it
that way.

No regressions on Ubuntu 14.04 on ARMv7 and x86.
With gdbserver-{native,extended} / { -marm -mthumb }

Compilation tested on: aarch64,arm,bfind,crisv32,m32r,ppc,s390,tic6x,tile,
xtensa.
Not tested : sh.

gdb/gdbserver/ChangeLog:

	* linux-aarch64-low.c (aarch64_supports_hardware_single_step):
	New function.
	(struct linux_target_ops) <supports_hardware_single_step>: Initialize.
	* linux-arm-low.c (arm_supports_hardware_single_step): New function.
	(struct linux_target_ops) <supports_hardware_single_step>: Initialize.
	* linux-bfin-low.c (bfin_supports_hardware_single_step): New function.
	(struct linux_target_ops) <bfin_supports_hardware_single_step>:
	Initialize.
	* linux-crisv32-low.c (cris_supports_hardware_single_step):
	New function.
	(struct linux_target_ops) <supports_hardware_single_step>: Initialize.
	* linux-low.c (can_hardware_single_step): Use
	supports_hardware_single_step.
	(can_software_single_step): New function.
	(start_step_over): Call can_software_single_step.
	(linux_supports_hardware_single_step): New function.
	(struct target_ops) <supports_software_single_step>: Initialize.
	* linux-low.h (struct linux_target_ops)
	<supports_hardware_single_step>: Initialize.
	* linux-m32r-low.c (m32r_supports_hardware_single_step): New function.
	(struct linux_target_ops) <supports_hardware_single_step>: Initialize.
	* linux-ppc-low.c (ppc_supports_hardware_single_step): New function.
	(struct linux_target_ops) <supports_hardware_single_step> Initialize.
	* linux-s390-low.c (s390_supports_hardware_single_step): New function.
	(struct linux_target_ops) <supports_hardware_single_step>: Initialize.
	* linux-sh-low.c (sh_supports_hardware_single_step): New function.
	(struct linux_target_ops) <supports_hardware_single_step>: Initialize.
	* linux-tic6x-low.c (tic6x_supports_hardware_single_step): New function.
	(struct linux_target_ops) <tic6x_supports_hardware_single_step>:
	Initialize.
	* linux-tile-low.c (tile_supports_hardware_single_step): New function.
	(struct linux_target_ops) <tile_supports_hardware_single_step>:
	Initialize.
	* linux-x86-low.c (x86_supports_hardware_single_step) New function.
	(struct linux_target_ops) <supports_hardware_single_step>: Initialize.
	* linux-xtensa-low.c (xtensa_supports_hardware_single_step):
	New function.
	(struct linux_target_ops) <supports_hardware_single_step>: Initialize.
	* target.h (struct target_ops): <supports_software_single_step>:
	New field.
	(target_supports_software_single_step): New macro.
2015-11-30 15:17:36 -05:00
Antoine Tremblay 769ef81fec Fix breakpoint size when stepping over a permanent breakpoint in GDBServer.
When manually stepping over a permanent breakpoint on ARM we need to fetch the
right breakpoint size based on the current instruction set used.

Since this is not encoded in the stop_pc, the instruction mode needs to be
fetched from the CPSR register.

This is done by introducing a new target operation called :
breakpoint_kind_from_current_state.

For other targets that do not need this, breakpoint_kind_from_pc is used.

No regressions, tested on ubuntu 14.04 ARMv7 and x86.
With gdbserver-{native,extended} / { -marm -mthumb }

gdb/gdbserver/ChangeLog:

	* linux-arm-low.c (arm_is_thumb_mode): New function.
	(arm_breakpoint_at): Use arm_is_thumb_mode.
	(arm_breakpoint_kind_from_current_state): New function.
	(struct linux_target_ops) <breakpoint_kind_from_current_state>:
	Initialize.
	* linux-low.c (linux_wait_1): Call breakpoint_kind_from_current_state.
	(linux_breakpoint_kind_from_current_state): New function.
	(struct target_ops <breakpoint_kind_from_current_state>: Initialize.
	* linux-low.h (struct linux_target_ops)
	<breakpoint_kind_from_current_state>: New field.
	* target.h (struct target_ops): Likewise.
	(target_breakpoint_kind_from_current_state): New macro.
2015-11-30 15:08:04 -05:00
Pedro Alves 06e03fff31 gdbserver: Fix qSupported:xmlRegisters=i386;UnknownFeature+ handling
The target_process_qsupported method is called for each qSupported
feature that the common code does not recognize.  The only current
implementation, for x86 Linux (x86_linux_process_qsupported), assumes
that it either is called with the "xmlRegisters=i386" feature, or that
it is isn't called at all, indicating the connected GDB predates x86
XML descriptions.

That's a bad assumption however.  If GDB sends in a new/unknown (to
core gdbserver) feature after "xmlRegisters=i386", say, something like
qSupported:xmlRegisters=i386;UnknownFeature+, then when
target_process_qsupported is called for "UnknownFeature+",
x86_linux_process_qsupported clears the 'use_xml' global and calls
x86_linux_update_xmltarget, and gdbserver ends up _not_ reporting a
XML description...

This commit changes the target_process_qsupported API to instead pass
down a vector of unprocessed qSupported features in one go.

(There's an early call to target_process_qsupported(NULL) that
indicates "starting qSupported processing".  There's no matching call
to mark the end of processing, though.  I first fixed this by passing
(char *)-1 to indicate that, and adjusted the x86 backend to only
clear 'use_xml' when qSupported processing starts, and then only call
x86_linux_update_xmltarget() when (char *)-1 was passed.  However, I
wasn't that happy with the hack and came up this alternative version.)

gdb/gdbserver/ChangeLog:
2015-11-19  Pedro Alves  <palves@redhat.com>

	* linux-low.c (linux_process_qsupported): Change prototype.
	Adjust.
	* linux-low.h (struct linux_target_ops) <process_qsupported>:
	Change prototype.
	* linux-x86-low.c (x86_linux_process_qsupported): Change prototype
	and adjust to loop over all features.
	* server.c (handle_query) <qSupported>: Adjust to call
	target_process_qsupported once, passing it a vector of unprocessed
	features.
	* target.h (struct target_ops) <process_qsupported>: Change
	prototype.
	(target_process_qsupported): Adjust.
2015-11-19 18:32:55 +00:00
Pedro Alves 50bc912a20 gdbserver/Linux: Introduce NULL_REGSET
Fixes errors like:

 src/gdb/gdbserver/linux-x86-low.c:477:1: error: invalid conversion from 'int' to 'regset_type' [-fpermissive]

gdb/gdbserver/ChangeLog:
2015-10-29  Pedro Alves  <palves@redhat.com>

	* linux-low.h (NULL_REGSET): Define.
	* linux-aarch64-low.c (aarch64_regsets): Use NULL_REGSET.
	* linux-arm-low.c (arm_regsets): Likewise.
	* linux-crisv32-low.c (cris_regsets): Likewise.
	* linux-m68k-low.c (m68k_regsets): Likewise.
	* linux-mips-low.c (mips_regsets): Likewise.
	* linux-nios2-low.c (nios2_regsets): Likewise.
	* linux-ppc-low.c (ppc_regsets): Likewise.
	* linux-s390-low.c (s390_regsets): Likewise.
	* linux-sh-low.c (sh_regsets): Likewise.
	* linux-sparc-low.c (sparc_regsets): Likewise.
	* linux-tic6x-low.c (tic6x_regsets): Likewise.
	* linux-tile-low.c (tile_regsets): Likewise.
	* linux-x86-low.c (x86_regsets): Likewise.
	* linux-xtensa-low.c (xtensa_regsets): Likewise.
2015-10-29 12:55:02 +00:00
Antoine Tremblay dd37334957 Add the target_ops needed for software breakpoints in GDBServer.
This patch is in preparation for software breakpoints on ARM linux.  It
refactors breakpoint and breakpoint_len into breakpoint_kind_from_pc and
sw_breakpoint_from kind to prepare the case where we have multiple types of
breakpoints.

Kind is the type of breakpoint (hardware or software) to be inserted, usually it
is the lenght of the software breakpoint but can be something else depending on
the target.

This patch introduces the linux_target_ops breakpoint_kind_from_pc and
sw_breakpoint_from_kind.

breakpoint_kind_from_pc returns the breakpoint kind and adjusts the PC to the
real memory location in case a flag was present in the PC. E.g the instruction
mode on ARM.

sw_breakpoint_from_kind returns the software breakpoint for this kind as a
string of bytes, the length of the breakpoint is adjusted for the breakpoint's
size in memory.

For targets that have only one kind of breakpoint, the default value 0 is
returned by linux_breakpoint_kind_from_pc so that not all targets need to
implement the breakpoint_kind_from_pc operation.

No regressions, tested on Ubuntu 14.04 on ARMv7 and x86
With gdbserver-{native,extended} / { -marm -mthumb }

Also since the target_ops have been changed compilation was tested on
affected archs namely : aarch64, arm, bfin, cris, crisv32, m32r,
m68k, mips, nios2, ppc, s390, sparc, tic6x, tile, x86, steins.

Not tested : sh

gdb/gdbserver/ChangeLog:

	* linux-aarch64-low.c (aarch64_sw_breakpoint_from_kind): New function.
	(struct linux_target_ops) <breakpoint>: Remove.
	(struct linux_target_ops) <breakpoint_len>: Remove.
	(struct linux_target_ops) <breakpoint_kind_from_pc>: Initialize field.
	(struct linux_target_ops) <sw_breakpoint_from_kind>: Initialize field.
	* linux-arm-low.c (arm_breakpoint_kind_from_pc): New function.
	(arm_sw_breakpoint_from_kind): New function.
	* linux-bfin-low.c (bfin_sw_breakpoint_from_kind): New function.
	(struct linux_target_ops) <breakpoint>: Remove.
	(struct linux_target_ops) <breakpoint_len>: Remove.
	(struct linux_target_ops) <breakpoint_kind_from_pc>: Initialize field.
	(struct linux_target_ops) <sw_breakpoint_from_kind>: Initialize field.
	* linux-cris-low.c (cris_sw_breakpoint_from_kind): New function.
	(struct linux_target_ops) <breakpoint>: Remove.
	(struct linux_target_ops) <breakpoint_len>: Remove.
	(struct linux_target_ops) <breakpoint_kind_from_pc>: Initialize field.
	(struct linux_target_ops) <sw_breakpoint_from_kind>: Initialize field.
	* linux-crisv32-low.c (cris_sw_breakpoint_from_kind): New function.
	(struct linux_target_ops) <breakpoint>: Remove.
	(struct linux_target_ops) <breakpoint_len>: Remove.
	(struct linux_target_ops) <breakpoint_kind_from_pc>: Initialize field.
	(struct linux_target_ops) <sw_breakpoint_from_kind>: Initialize field.
	* linux-low.c (linux_wait_1): Call breakpoint_kind_from_pc
	and sw_breakpoint_from_kind to increment the pc.
	(linux_breakpoint_kind_from_pc): New function.
	(linux_sw_breakpoint_from_kind): New function.
	(struct target_ops) <sw_breakpoint_from_kind>: Initialize field.
	(initialize_low): Call breakpoint_kind_from_pc and
	sw_breakpoint_from_kind to replace breakpoint_data/len.
	* linux-low.h (struct linux_target_ops) <breakpoint_kind_from_pc>:
	New field.
	(struct linux_target_ops) <sw_breakpoint_from_kind>: Likewise.
	* linux-m32r-low.c (m32r_sw_breakpoint_from_kind): New function.
	(struct linux_target_ops) <breakpoint>: Remove.
	(struct linux_target_ops) <breakpoint_len>: Remove.
	(struct linux_target_ops) <breakpoint_kind_from_pc>: Initialize field.
	(struct linux_target_ops) <sw_breakpoint_from_kind>: Initialize field.
	* linux-m68k-low.c (m68k_sw_breakpoint_from_kind): New function.
	(struct linux_target_ops) <breakpoint>: Remove.
	(struct linux_target_ops) <breakpoint_len>: Remove.
	(struct linux_target_ops) <breakpoint_kind_from_pc>: Initialize field.
	(struct linux_target_ops) <sw_breakpoint_from_kind>: Initialize field.
	* linux-mips-low.c (mips_sw_breakpoint_from_kind): New function.
	(struct linux_target_ops) <breakpoint>: Remove.
	(struct linux_target_ops) <breakpoint_len>: Remove.
	(struct linux_target_ops) <breakpoint_kind_from_pc>: Initialize field.
	(struct linux_target_ops) <sw_breakpoint_from_kind>: Initialize field.
	* linux-nios2-low.c (nios2_sw_breakpoint_from_kind): New function.
	(struct linux_target_ops) <breakpoint>: Remove.
	(struct linux_target_ops) <breakpoint_len>: Remove.
	(struct linux_target_ops) <breakpoint_kind_from_pc>: Initialize field.
	(struct linux_target_ops) <sw_breakpoint_from_kind>: Initialize field.
	* linux-ppc-low.c (ppc_sw_breakpoint_from_kind): New function.
	(struct linux_target_ops) <breakpoint>: Remove.
	(struct linux_target_ops) <breakpoint_len>: Remove.
	(struct linux_target_ops) <breakpoint_kind_from_pc>: Initialize field.
	(struct linux_target_ops) <sw_breakpoint_from_kind>: Initialize field.
	* linux-s390-low.c (s390_sw_breakpoint_from_kind): New function.
	(struct linux_target_ops) <breakpoint>: Remove.
	(struct linux_target_ops) <breakpoint_len>: Remove.
	(struct linux_target_ops) <breakpoint_kind_from_pc>: Initialize field.
	(struct linux_target_ops) <sw_breakpoint_from_kind>: Initialize field.
	* linux-sh-low.c (sh_sw_breakpoint_from_kind): New function.
	(struct linux_target_ops) <breakpoint>: Remove.
	(struct linux_target_ops) <breakpoint_len>: Remove.
	(struct linux_target_ops) <breakpoint_kind_from_pc>: Initialize field.
	(struct linux_target_ops) <sw_breakpoint_from_kind>: Initialize field.
	* linux-sparc-low.c (sparc_sw_breakpoint_from_kind): New function.
	(struct linux_target_ops) <breakpoint>: Remove.
	(struct linux_target_ops) <breakpoint_len>: Remove.
	(struct linux_target_ops) <breakpoint_kind_from_pc>: Initialize field.
	(struct linux_target_ops) <sw_breakpoint_from_kind>: Initialize field.
	* linux-tic6x-low.c (tic6x_sw_breakpoint_from_kind): New function.
	(struct linux_target_ops) <breakpoint>: Remove.
	(struct linux_target_ops) <breakpoint_len>: Remove.
	(struct linux_target_ops) <breakpoint_kind_from_pc>: Initialize field.
	(struct linux_target_ops) <sw_breakpoint_from_kind>: Initialize field.
	* linux-tile-low.c (tile_sw_breakpoint_from_kind): New function.
	* linux-x86-low.c (x86_sw_breakpoint_from_kind): New function.
	(struct linux_target_ops) <breakpoint>: Remove.
	(struct linux_target_ops) <breakpoint_len>: Remove.
	(struct linux_target_ops) <breakpoint_kind_from_pc>: Initialize field.
	(struct linux_target_ops) <sw_breakpoint_from_kind>: Initialize field.
	* linux-xtensa-low.c (xtensa_sw_breakpoint_from_kind) New function.
	(struct linux_target_ops) <breakpoint>: Remove.
	(struct linux_target_ops) <breakpoint_len>: Remove.
	(struct linux_target_ops) <breakpoint_kind_from_pc>: Initialize field.
	(struct linux_target_ops) <sw_breakpoint_from_kind>: Initialize field.
2015-10-21 11:24:55 -04:00
Pedro Alves 00db26facc Linux gdbserver confused when event randomization picks process exit event
The tail end of linux_wait_1 isn't expecting that the select_event_lwp
machinery can pick a whole-process exit event to report to GDB.  When
that happens, both gdb and gdbserver end up quite confused:

 ...
 (gdb)
 [Thread 24971.24971] #1 stopped.
 0x0000003615a011f0 in ?? ()
 c&
 Continuing.
 (gdb) [New Thread 24971.24981]
 [New Thread 24983.24983]
 [New Thread 24971.24982]

 [Thread 24983.24983] #3 stopped.
 0x0000003615ebc7cc in __libc_fork () at ../nptl/sysdeps/unix/sysv/linux/fork.c:130
 130       pid = ARCH_FORK ();
 [New Thread 24984.24984]
 Error in re-setting breakpoint -16: PC register is not available
 Error in re-setting breakpoint -17: PC register is not available
 Error in re-setting breakpoint -18: PC register is not available
 Error in re-setting breakpoint -19: PC register is not available
 Error in re-setting breakpoint -24: PC register is not available
 Error in re-setting breakpoint -25: PC register is not available
 Error in re-setting breakpoint -26: PC register is not available
 Error in re-setting breakpoint -27: PC register is not available
 Error in re-setting breakpoint -28: PC register is not available
 Error in re-setting breakpoint -29: PC register is not available
 Error in re-setting breakpoint -30: PC register is not available
 PC register is not available
 (gdb)

gdb/gdbserver/ChangeLog:
2015-08-06  Pedro Alves  <palves@redhat.com>

	* linux-low.c (add_lwp): Set waitstatus to TARGET_WAITKIND_IGNORE.
	(linux_thread_alive): Use lwp_is_marked_dead.
	(extended_event_reported): Delete.
	(linux_wait_1): Check if waitstatus is TARGET_WAITKIND_IGNORE
	instead of extended_event_reported.
	(mark_lwp_dead): Don't set the 'dead' flag.  Store the waitstatus
	as well.
	(lwp_is_marked_dead): New function.
	(lwp_running): Use lwp_is_marked_dead.
	* linux-low.h: Delete 'dead' field, and update 'waitstatus's
	comment.
2015-08-06 10:30:17 +01:00
Yao Qi ded48a5ef3 Move have_ptrace_getregset to linux-low.c
This patch moves variable have_ptrace_getregset from linux-x86-low.c
to linux-low.c, so that arm can use it too.

gdb/gdbserver:

2015-08-04  Yao Qi  <yao.qi@linaro.org>

	* linux-x86-low.c (have_ptrace_getregset): Move it to ...
	* linux-low.c: ... here.
	* linux-low.h (have_ptrace_getregset): Declare it.
2015-08-04 14:34:14 +01:00
Yao Qi 55d7b84196 Remove proc->priv->new_inferior
As the result of the previous patch, new_inferior is no longer used.
This patch is to remove it.

gdb/gdbserver:

2015-07-24  Yao Qi  <yao.qi@linaro.org>

	* linux-low.c (linux_create_inferior): Remove setting to
	proc->priv->new_inferior.
	(linux_attach): Likewise.
	(linux_low_filter_event): Likewise.
	* linux-low.h (struct process_info_private) <new_inferior>: Remove.
2015-07-24 14:40:34 +01:00
Don Breazeal 3a8a0396be Arch-specific remote follow fork
This patch implements the architecture-specific pieces of follow-fork
for remote and extended-remote Linux targets, which in the current
implementation copyies the parent's debug register state into the new
child's data structures.  This is required for x86, arm, aarch64, and
mips.

This follows the native implementation as closely as possible by
implementing a new linux_target_ops function 'new_fork', which is
analogous to 'linux_nat_new_fork' in linux-nat.c.  In gdbserver, the debug
registers are stored in the process list, instead of an
architecture-specific list, so the function arguments are process_info
pointers instead of an lwp_info and a pid as in the native implementation.

In the MIPS implementation the debug register mirror is stored differently
from x86, ARM, and aarch64, so instead of doing a simple structure assignment
I had to clone the list of watchpoint structures.

Tested using gdb.threads/watchpoint-fork.exp on x86, and ran manual tests
on a MIPS board and an ARM board.  Aarch64 hasn't been tested.

gdb/gdbserver/ChangeLog:

        * linux-aarch64-low.c (aarch64_linux_new_fork): New function.
        (the_low_target) <new_fork>: Initialize new member.
        * linux-arm-low.c (arm_new_fork): New function.
        (the_low_target) <new_fork>: Initialize new member.
        * linux-low.c (handle_extended_wait): Call new target function
        new_fork.
        * linux-low.h (struct linux_target_ops) <new_fork>: New member.
        * linux-mips-low.c (mips_add_watchpoint): New function
        extracted from mips_insert_point.
        (the_low_target) <new_fork>: Initialize new member.
        (mips_linux_new_fork): New function.
        (mips_insert_point): Call mips_add_watchpoint.
        * linux-x86-low.c (x86_linux_new_fork): New function.
        (the_low_target) <new_fork>: Initialize new member.
2015-05-12 09:52:44 -07:00
Don Breazeal de0d863ec3 Extended-remote Linux follow fork
This patch implements basic support for follow-fork and detach-on-fork on
extended-remote Linux targets.  Only 'fork' is supported in this patch;
'vfork' support is added n a subsequent patch.  This patch depends on
the previous patches in the patch series.

Sufficient extended-remote functionality has been implemented here to pass
gdb.base/multi-forks.exp, as well as gdb.base/foll-fork.exp with the
catchpoint tests commented out.  Some other fork tests fail with this
patch because it doesn't provide the architecture support needed for
watchpoint inheritance or fork catchpoints.

The implementation follows the same general structure as for the native
implementation as much as possible.

This implementation includes:
 * enabling fork events in linux-low.c in initialize_low and
   linux_enable_extended_features

 * handling fork events in gdbserver/linux-low.c:handle_extended_wait

   - when a fork event occurs in gdbserver, we must do the full creation
     of the new process, thread, lwp, and breakpoint lists.  This is
     required whether or not the new child is destined to be
     detached-on-fork, because GDB will make target calls that require all
     the structures.  In particular we need the breakpoint lists in order
     to remove the breakpoints from a detaching child.  If we are not
     detaching the child we will need all these structures anyway.

   - as part of this event handling we store the target_waitstatus in a new
     member of the parent lwp_info structure, 'waitstatus'.  This
     is used to store extended event information for reporting to GDB.

   - handle_extended_wait is given a return value, denoting whether the
     handled event should be reported to GDB.  Previously it had only
     handled clone events, which were never reported.

 * using a new predicate in gdbserver to control handling of the fork event
   (and eventually all extended events) in linux_wait_1.  The predicate,
   extended_event_reported, checks a target_waitstatus.kind for an
   extended ptrace event.

 * implementing a new RSP 'T' Stop Reply Packet stop reason: "fork", in
   gdbserver/remote-utils.c and remote.c.

 * implementing new target and RSP support for target_follow_fork with
   target extended-remote.  (The RSP components were actually defined in
   patch 1, but they see their first use here).

   - remote target routine remote_follow_fork, which just sends the 'D;pid'
     detach packet to detach the new fork child cleanly.  We can't just
     call target_detach because the data structures for the forked child
     have not been allocated on the host side.

Tested on x64 Ubuntu Lucid, native, remote, extended-remote.

gdb/gdbserver/ChangeLog:

        * linux-low.c (handle_extended_wait): Implement return value,
        rename argument 'event_child' to 'event_lwp', handle
        PTRACE_EVENT_FORK, call internal_error for unrecognized event.
        (linux_low_ptrace_options): New function.
        (linux_low_filter_event): Call linux_low_ptrace_options,
        use different argument fo linux_enable_event_reporting,
        use return value from handle_extended_wait.
        (extended_event_reported): New function.
        (linux_wait_1): Call extended_event_reported and set
        status to report fork events.
        (linux_write_memory): Add pid to debug message.
        (reset_lwp_ptrace_options_callback): New function.
        (linux_handle_new_gdb_connection): New function.
        (linux_target_ops): Initialize new structure member.
        * linux-low.h (struct lwp_info) <waitstatus>: New member.
        * lynx-low.c: Initialize new structure member.
        * remote-utils.c (prepare_resume_reply): Implement stop reason
        "fork" for "T" stop message.
        * server.c (handle_query): Call handle_new_gdb_connection.
        * server.h (report_fork_events): Declare global flag.
        * target.h (struct target_ops) <handle_new_gdb_connection>:
        New member.
        (target_handle_new_gdb_connection): New macro.
        * win32-low.c: Initialize new structure member.

gdb/ChangeLog:

        * linux-nat.c (linux_nat_ptrace_options): New function.
        (linux_init_ptrace, wait_lwp, linux_nat_filter_event):
        Call linux_nat_ptrace_options and use different argument to
        linux_enable_event_reporting.
        (_initialize_linux_nat): Delete call to
        linux_ptrace_set_additional_flags.
        * nat/linux-ptrace.c (current_ptrace_options): Rename to
        supported_ptrace_options.
        (additional_flags): Delete variable.
        (linux_check_ptrace_features): Use supported_ptrace_options.
        (linux_test_for_tracesysgood, linux_test_for_tracefork):
        Likewise, and remove additional_flags check.
        (linux_enable_event_reporting): Change 'attached' argument to
        'options'.  Use supported_ptrace_options.
        (ptrace_supports_feature): Change comment.  Use
        supported_ptrace_options.
        (linux_ptrace_set_additional_flags): Delete function.
        * nat/linux-ptrace.h (linux_ptrace_set_additional_flags):
        Delete function prototype.
        * remote.c (remote_fork_event_p): New function.
        (remote_detach_pid): New function.
        (remote_detach_1): Call remote_detach_pid, don't mourn inferior
        if doing detach-on-fork.
        (remote_follow_fork): New function.
        (remote_parse_stop_reply): Handle new "T" stop reason "fork".
        (remote_pid_to_str): Print "process" strings for pid/0/0 ptids.
        (init_extended_remote_ops): Initialize to_follow_fork.
2015-05-12 09:52:43 -07:00
Gary Benson 34c703da6c Change signature of linux_target_ops.new_thread
This commit changes the signature of linux_target_ops.new_thread in
gdbserver to match that used in GDB's equivalent.

gdb/gdbserver/ChangeLog:

	* linux-low.h (linux_target_ops) <new_thread>: Changed signature.
	* linux-arm-low.c (arm_new_thread): Likewise.
	* linux-aarch64-low.c (aarch64_linux_new_thread): Likewise.
	* linux-mips-low.c (mips_linux_new_thread): Likewise.
	* linux-x86-low.c (x86_linux_new_thread): Likewise.
	* linux-low.c (add_lwp): Update the_low_target.new_thread call.
2015-03-24 14:05:44 +00:00
Gary Benson b2f7c7e8b7 Make linux_stop_lwp be a shared function
Both GDB and gdbserver had linux_stop_lwp functions with identical
declarations.  This commit moves these to nat/linux-nat.h to allow
shared code to use the function.

gdb/ChangeLog:

	* linux-nat.h (linux_stop_lwp): Move declaration to...
	* nat/linux-nat.h (linux_stop_lwp): New declaration.

gdb/gdbserver/ChangeLog:

	* linux-low.h (linux_stop_lwp): Remove declaration.
2015-03-24 14:05:44 +00:00
Gary Benson 6d4ee8c6ad Add iterate_over_lwps to gdbserver
This commit introduces a new function, iterate_over_lwps, that
shared Linux code can use to call a function for each LWP that
matches certain criteria.  This function already existed in GDB
and was in use by GDB's various low-level Linux x86 debug register
setters.  An equivalent was written for gdbserver and gdbserver's
low-level Linux x86 debug register setters were modified to use
it.

gdb/ChangeLog:

	* linux-nat.h: Include nat/linux-nat.h.
	(iterate_over_lwps): Move declaration to nat/linux-nat.h.
	* nat/linux-nat.h (struct lwp_info): New forward declaration.
	(iterate_over_lwps_ftype): New typedef.
	(iterate_over_lwps): New declaration.
	* linux-nat.h (iterate_over_lwps): Update comment.  Use
	iterate_over_lwps_ftype.  Update callback return value check.

gdb/gdbserver/ChangeLog:

	* linux-low.h: Include nat/linux-nat.h.
	* linux-low.c (iterate_over_lwps_args): New structure.
	(iterate_over_lwps_filter): New function.
	(iterate_over_lwps): Likewise.
	* linux-x86-low.c (update_debug_registers_callback):
	Update signature to what iterate_over_lwps expects.
	Remove PID check that iterate_over_lwps now performs.
	(x86_dr_low_set_addr): Use iterate_over_lwps.
	(x86_dr_low_set_control): Likewise.
2015-03-24 14:05:43 +00:00
Pedro Alves 15c66dd626 enum lwp_stop_reason -> enum target_stop_reason
We're going to need the same enum as enum lwp_stop_reason in more
targets, so this promotes it to common code.

gdb/gdbserver/ChangeLog:
2015-03-04  Pedro Alves  <palves@redhat.com>

	enum lwp_stop_reason -> enum target_stop_reason
	* linux-low.c (check_stopped_by_breakpoint): Adjust.
	(thread_still_has_status_pending_p, check_stopped_by_watchpoint)
	(linux_wait_1, stuck_in_jump_pad_callback)
	(move_out_of_jump_pad_callback, linux_resume_one_lwp)
	(linux_stopped_by_watchpoint):
	* linux-low.h (enum lwp_stop_reason): Delete.
	(struct lwp_info) <stop_reason>: Now an enum target_stop_reason.
	* linux-x86-low.c (x86_linux_prepare_to_resume): Adjust.

gdb/ChangeLog:
2015-03-04  Pedro Alves  <palves@redhat.com>

	enum lwp_stop_reason -> enum target_stop_reason
	* linux-nat.c (linux_resume_one_lwp, check_stopped_by_watchpoint)
	(linux_nat_stopped_by_watchpoint, status_callback)
	(linux_nat_wait_1): Adjust.
	* linux-nat.h (enum lwp_stop_reason): Delete.
	(struct lwp_info) <stop_reason>: Now an enum target_stop_reason.
	* x86-linux-nat.c (x86_linux_prepare_to_resume): Adjust.
	* target/waitstatus.h (enum target_stop_reason): New.
2015-03-04 20:41:15 +00:00
Pedro Alves 582511be69 [gdbserver] linux-low.c: better starvation avoidance, handle non-stop mode too
This patch applies the same starvation avoidance improvements of the
previous patch to the Linux gdbserver side.

Without this, the test added by the following commit
(gdb.threads/non-stop-fair-events.exp) always fails with time outs.

gdb/gdbserver/
2015-01-09  Pedro Alves  <palves@redhat.com>

	* linux-low.c (step_over_bkpt): Move higher up in the file.
	(handle_extended_wait): Don't store the stop_pc here.
	(get_stop_pc): Adjust comments and rename to ...
	(check_stopped_by_breakpoint): ... this.  Record whether the LWP
	stopped for a software breakpoint or hardware breakpoint.
	(thread_still_has_status_pending_p): New function.
	(status_pending_p_callback): Use
	thread_still_has_status_pending_p.  If the event is no longer
	interesting, resume the LWP.
	(handle_tracepoints): Add assert.
	(maybe_move_out_of_jump_pad): Remove cancel_breakpoints call.
	(wstatus_maybe_breakpoint): New function.
	(cancel_breakpoint): Delete function.
	(check_stopped_by_watchpoint): New function, factored out from
	linux_low_filter_event.
	(lp_status_maybe_breakpoint): Delete function.
	(linux_low_filter_event): Remove filter_ptid argument.
	Leave thread group exits pending here.	Store the LWP's stop PC.
	Always leave events pending.
	(linux_wait_for_event_filtered): Pull all events out of the
	kernel, and leave them all pending.
	(count_events_callback, select_event_lwp_callback): Consider all
	events.
	(cancel_breakpoints_callback, linux_cancel_breakpoints): Delete.
	(select_event_lwp): Only give preference to the stepping LWP in
	all-stop mode.	Adjust comments.
	(ignore_event): New function.
	(linux_wait_1): Delete 'retry' label.  Use ignore_event.  Remove
	references to cancel_breakpoints.  Adjust to renames.  Also give
	equal priority to all LWPs that have had events in non-stop mode.
	If reporting a software breakpoint event, unadjust the LWP's PC.
	(linux_wait): If linux_wait_1 returned an ignored event, retry.
	(stuck_in_jump_pad_callback, move_out_of_jump_pad_callback):
	Adjust.
	(linux_resume_one_lwp): Store the LWP's PC.  Adjust.
	(resume_status_pending_p): Use thread_still_has_status_pending_p.
	(linux_stopped_by_watchpoint): Adjust.
	(linux_target_ops): Remove reference to linux_cancel_breakpoints.
	* linux-low.h (enum lwp_stop_reason): New.
	(struct lwp_info) <stop_pc>: Adjust comment.
	<stopped_by_watchpoint>: Delete field.
	<stop_reason>: New field.
	* linux-x86-low.c (x86_linux_prepare_to_resume): Adjust.
	* mem-break.c (software_breakpoint_inserted_here)
	(hardware_breakpoint_inserted_here): New function.
	* mem-break.h (software_breakpoint_inserted_here)
	(hardware_breakpoint_inserted_here): Declare.
	* target.h (struct target_ops) <cancel_breakpoints>: Remove field.
	(cancel_breakpoints): Delete.
	* tracepoint.c (clear_installed_tracepoints, stop_tracing)
	(upload_fast_traceframes): Remove references to
	cancel_breakpoints.
2015-01-09 14:42:32 +00:00
Pedro Alves 8784d56326 Linux: on attach, attach to lwps listed under /proc/$pid/task/
... instead of relying on libthread_db.

I wrote a test that attaches to a program that constantly spawns
short-lived threads, which exposed several issues.  This is one of
them.

On Linux, we need to attach to all threads of a process (thread group)
individually.  We currently rely on libthread_db to list the threads,
but that is problematic, because libthread_db relies on reading data
structures out of the inferior (which may well be corrupted).  If
threads are being created or exiting just while we try to attach, we
may trip on inconsistencies in the inferior's thread list.  To work
around that, when we see a seemingly corrupt list, we currently retry
a few times:

 static void
 thread_db_find_new_threads_2 (ptid_t ptid, int until_no_new)
 {
 ...
   if (until_no_new)
     {
       /* Require 4 successive iterations which do not find any new threads.
	  The 4 is a heuristic: there is an inherent race here, and I have
	  seen that 2 iterations in a row are not always sufficient to
	  "capture" all threads.  */
 ...

That heuristic may well fail, and when it does, we end up with threads
in the program that aren't under GDB's control.  That's obviously bad
and results in quite mistifying failures, like e.g., the process dying
for seeminly no reason when a thread that wasn't attached trips on a
breakpoint.

There's really no reason to rely on libthread_db for this nowadays
when we have /proc mounted.  In that case, which is the usual case, we
can list the LWPs from /proc/PID/task/.  In fact, GDBserver is already
doing this.  The patch factors out that code that knows to walk the
task/ directory out of GDBserver, and makes GDB use it too.

Like GDBserver, the patch makes GDB attach to LWPs and _not_ wait for
them to stop immediately.  Instead, we just tag the LWP as having an
expected stop.  Because we can only set the ptrace options when the
thread stops, we need a new flag in the lwp structure to keep track of
whether we've already set the ptrace options, just like in GDBserver.
Note that nothing issues any ptrace command to the threads between the
PTRACE_ATTACH and the stop, so this is safe (unlike one scenario
described in gdbserver's linux-low.c).

When we attach to a program that has threads exiting while we attach,
it's easy to race with a thread just exiting as we try to attach to
it, like:

  #1 - get current list of threads
  #2 - attach to each listed thread
  #3 - ooops, attach failed, thread is already gone

As this is pretty normal, we shouldn't be issuing a scary warning in
step #3.

When #3 happens, PTRACE_ATTACH usually fails with ESRCH, but sometimes
we'll see EPERM as well.  That happens when the kernel still has the
thread in its task list, but the thread is marked as dead.
Unfortunately, EPERM is ambiguous and we'll get it also on other
scenarios where the thread isn't dead, and in those cases, it's useful
to get a warning.  To distiguish the cases, when we get an EPERM
failure, we open /proc/PID/status, and check the thread's state -- if
the /proc file no longer exists, or the state is "Z (Zombie)" or "X
(Dead)", we ignore the EPERM error silently; otherwise, we'll warn.
Unfortunately, there seems to be a kernel race here.  Sometimes I get
EPERM, and then the /proc state still indicates "R (Running)"...  If
we wait a bit and retry, we do end up seeing X or Z state, or get an
ESRCH.  I thought of making GDB retry the attach a few times, but even
with a 500ms wait and 4 retries, I still see the warning sometimes.  I
haven't been able to identify the kernel path that causes this yet,
but in any case, it looks like a kernel bug to me.  As this just
results failure to suppress a warning that we've been printing since
about forever anyway, I'm just making the test cope with it, and issue
an XFAIL.

gdb/gdbserver/
2015-01-09  Pedro Alves  <palves@redhat.com>

	* linux-low.c (linux_attach_fail_reason_string): Move to
	nat/linux-ptrace.c, and rename.
	(linux_attach_lwp): Update comment.
	(attach_proc_task_lwp_callback): New function.
	(linux_attach): Adjust to rename and use
	linux_proc_attach_tgid_threads.
	(linux_attach_fail_reason_string): Delete declaration.

gdb/
2015-01-09  Pedro Alves  <palves@redhat.com>

	* linux-nat.c (attach_proc_task_lwp_callback): New function.
	(linux_nat_attach): Use linux_proc_attach_tgid_threads.
	(wait_lwp, linux_nat_filter_event): If not set yet, set the lwp's
	ptrace option flags.
	* linux-nat.h (struct lwp_info) <must_set_ptrace_flags>: New
	field.
	* nat/linux-procfs.c: Include <dirent.h>.
	(linux_proc_get_int): New parameter "warn".  Handle it.
	(linux_proc_get_tgid): Adjust.
	(linux_proc_get_tracerpid): Rename to ...
	(linux_proc_get_tracerpid_nowarn): ... this.
	(linux_proc_pid_get_state): New function, factored out from
	(linux_proc_pid_has_state): ... this.  Add new parameter "warn"
	and handle it.
	(linux_proc_pid_is_gone): New function.
	(linux_proc_pid_is_stopped): Adjust.
	(linux_proc_pid_is_zombie_maybe_warn)
	(linux_proc_pid_is_zombie_nowarn): New functions.
	(linux_proc_pid_is_zombie): Use
	linux_proc_pid_is_zombie_maybe_warn.
	(linux_proc_attach_tgid_threads): New function.
	* nat/linux-procfs.h (linux_proc_get_tgid): Update comment.
	(linux_proc_get_tracerpid): Rename to ...
	(linux_proc_get_tracerpid_nowarn): ... this, and update comment.
	(linux_proc_pid_is_gone): New declaration.
	(linux_proc_pid_is_zombie): Update comment.
	(linux_proc_pid_is_zombie_nowarn): New declaration.
	(linux_proc_attach_lwp_func): New typedef.
	(linux_proc_attach_tgid_threads): New declaration.
	* nat/linux-ptrace.c (linux_ptrace_attach_fail_reason): Adjust to
	use nowarn functions.
	(linux_ptrace_attach_fail_reason_string): Move here from
	gdbserver/linux-low.c and rename.
	(ptrace_supports_feature): If the current ptrace options are not
	known yet, check them now, instead of asserting.
	* nat/linux-ptrace.h (linux_ptrace_attach_fail_reason_string):
	Declare.
2015-01-09 11:39:49 +00:00
Joel Brobecker 32d0add0a6 Update year range in copyright notice of all files owned by the GDB project.
gdb/ChangeLog:

        Update year range in copyright notice of all files.
2015-01-01 13:32:14 +04:00
Gary Benson 125f8a3dde Move shared native target specific code to gdb/nat
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.
2014-06-20 14:06:48 +01:00
Pedro Alves 802e8e6d84 [GDBserver] Make Zx/zx packet handling idempotent.
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.
2014-05-20 18:42:30 +01:00
Pedro Alves 7ae1a6a6cc PR server/16255: gdbserver cannot attach to a second inferior that is 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.
2014-04-25 19:07:33 +01:00
Doug Evans d86d4aafd4 Remove all_lwps global.
* 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.
2014-02-20 12:25:18 -08:00
Doug Evans f7667f0de6 Add backlink from lwp_info to thread_info.
* 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 16:38:44 -08:00
Doug Evans 80894984a6 Rename inferior_list_entry uses from "head" to "entry" for consistency.
* 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.
2014-02-19 14:51:55 -08:00
Joel Brobecker ecd75fc8ee Update Copyright year range in all files maintained by GDB. 2014-01-01 07:54:24 +04:00
Luis Machado 96d7229d2a Unify ptrace options discovery code and make both GDB and
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.
2013-08-22 23:46:30 +00:00
Luis Machado b8e1b30ec5 * linux-arm-low.c: Rename all occurrences of PTRACE_ARG3_TYPE
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.
2013-08-14 02:22:19 +00:00
Pedro Alves 030031eed5 Lazily allocate 'struct regsets_info'::disabled_regsets.
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.
2013-06-11 18:05:57 +00:00
Pedro Alves 3aee891821 [GDBserver] Multi-process + multi-arch
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.
2013-06-07 10:46:59 +00:00
Pedro Alves c2d6af84da range stepping: gdbserver (x86 GNU/Linux)
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.
2013-05-23 17:17:50 +00:00
Pedro Alves d5c93e41a8 Only define 'struct lwp_info'::thread_known if using libthread-db.
A small cleanup.  'struct lwp_info'::thread_known is only useful for
thread-db.c.

gdbserver/
2013-04-16  Pedro Alves  <palves@redhat.com>

	* linux-low.h (struct lwp_info) <thread_known>: Move under
	the USE_THREAD_DB #ifdef.
2013-04-16 18:22:15 +00:00
Pedro Alves 04f5fe89ae Fix remaining GDBserver issues with !HAVE_THREAD_DB_H.
The previous patches are still not sufficient to build gdbserver with
our copy of thread_db.h.

../../../src/gdb/gdbserver/thread-db.c: In function ‘find_one_thread’:
../../../src/gdb/gdbserver/thread-db.c:316:6: error: ‘struct lwp_info’ has no member named ‘th’
../../../src/gdb/gdbserver/thread-db.c: In function ‘attach_thread’:
../../../src/gdb/gdbserver/thread-db.c:341:6: error: ‘struct lwp_info’ has no member named ‘th’
../../../src/gdb/gdbserver/thread-db.c: In function ‘thread_db_get_tls_address’:
../../../src/gdb/gdbserver/thread-db.c:514:47: error: ‘struct lwp_info’ has no member named ‘th’
make: *** [thread-db.o] Error 1

First, linux-low.h is including <thread_db.h> directly instead of our
gdb_thread_db.h, although thread-db.c includes the latter.  Then the
'th' field of struct lwp_info is only defined if HAVE_THREAD_DB_H is
defined, which is not true if we're using our replacement copy of
thread_db.h.  We have a USE_THREAD_DB symbol defined if we're building
thread-db.c that's ideal for this, however, it's currently only
defined when compiling linux-low.c (through a Makefile rule).  The
patch makes it defined when compiling any file.

gdb/gdbserver/
2013-04-16  Pedro Alves  <palves@redhat.com>

	* Makefile.in (INTERNAL_CFLAGS): Add @USE_THREAD_DB@.
	(linux-low.o): Delete rule.
	* linux-low.h: Always include "gdb_thread_db.h" instead of
	conditionally including thread_db.h.
	(struct lwp_info) <th>: Guard with #ifdef USE_THREAD_DB instead of
	HAVE_THREAD_DB_H.
2013-04-16 18:20:40 +00:00
Joel Brobecker 28e7fd6234 Update years in copyright notice for the GDB files.
Two modifications:
  1. The addition of 2013 to the copyright year range for every file;
  2. The use of a single year range, instead of potentially multiple
     year ranges, as approved by the FSF.
2013-01-01 06:33:28 +00:00
Yao Qi 623b6bdf12 gdb/gdbserver:
* server.h: Move some code to ...
	* gdbthread.h: ... here.  New.
	* Makefile.in (inferiors.o, regcache.o): Depends on gdbthread.h
	(remote-utils.o, server.o, target.o tracepoint.o): Likewise.
	(nto-low.o, win32-low.o): Likewise.
	* inferiors.c, linux-low.h, nto-low.c: Include gdbthread.h.
	* regcache.c, remote-utils.c, server.c: Likewise.
	* target.c, tracepoint.c, win32-low.c: Likewise.
2012-04-29 06:28:30 +00:00
Thiago Jung Bauermann f15f99484e * linux-low.h (PTRACE_ARG3_TYPE): Move macro from linux-low.c.
(PTRACE_ARG4_TYPE): Likewise.
	(PTRACE_XFER_TYPE): Likewise.
	* linux-arm-low.c (arm_prepare_to_resume): Cast third argument of
	ptrace to PTRACE_ARG3_TYPE.
	* linux-low.c (PTRACE_ARG3_TYPE): Move macro to linux-low.h.
	(PTRACE_ARG4_TYPE): Likewise.
	(PTRACE_XFER_TYPE): Likewise.
	(linux_detach_one_lwp): Cast fourth argument of
	ptrace to long then PTRACE_ARG4_TYPE.
	(regsets_fetch_inferior_registers): Cast third argument of
	ptrace to long then PTRACE_ARG3_TYPE.
	(regsets_store_inferior_registers): Likewise.
2012-04-24 15:03:43 +00:00
H.J. Lu 214d508ee1 Check if GDBserver is compatible with process
PR gdb/13969
	* linux-low.c (linux_pid_exe_is_elf_64_file): Also return the
	e_machine field.
	(linux_qxfer_libraries_svr4): Update call to elf_64_file_p.
	* linux-low.h (linux_pid_exe_is_elf_64_file): Updated.
	* linux-x86-low.c (x86_arch_setup): Check if GDBserver is
	compatible with process.
2012-04-12 15:35:32 +00:00
Pedro Alves c14dfd3206 2012-03-28 Pedro Alves <palves@redhat.com>
* linux-ia64-low.c (ia64_regmap): Map IA64_EC_REGNUM to PT_AR_EC.
	(IA64_GR0_REGNUM, IA64_FR0_REGNUM)
	(IA64_FR1_REGNUM): New defines.
	(ia64_fetch_register): New.
	(the_low_target): Install it.
	* linux-low.h (struct linux_target_ops) <fetch_register>: New
	field.
	* linux-low.c (linux_fetch_registers): Try the
	the_low_target.fetch_register hook first.

	* linux-arm-low.c (the_low_target): Adjust.
	* linux-bfin-low.c (the_low_target): Adjust.
	* linux-cris-low.c (the_low_target): Adjust.
	* linux-crisv32-low.c (the_low_target): Adjust.
	* linux-m32r-low.c (the_low_target): Adjust.
	* linux-m68k-low.c (the_low_target): Adjust.
	* linux-mips-low.c (the_low_target): Adjust.
	* linux-ppc-low.c (the_low_target): Adjust.
	* linux-s390-low.c (the_low_target): Adjust.
	* linux-sh-low.c (the_low_target): Adjust.
	* linux-sparc-low.c (the_low_target): Adjust.
	* linux-tic6x-low.c (the_low_target): Adjust.
	* linux-x86-low.c (the_low_target): Adjust.
	* linux-xtensa-low.c (the_low_target): Adjust.
2012-03-28 18:30:01 +00:00