105 commits
Author | SHA1 | Message | Date | |
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Marcin Kościelnicki
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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. |
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Josh Stone
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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. |
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Joel Brobecker
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618f726fcb |
GDB copyright headers update after running GDB's copyright.py script.
gdb/ChangeLog: Update year range in copyright notice of all files. |
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Josh Stone
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ece66d6510 |
gdbserver: set ptrace flags after creating inferiors
Rename target_ops.arch_setup to .post_create_inferior. In the Linux hook, continue calling the low arch setup, then also set ptrace flags. This corrects the possibility of running without flags, demonstrated by a new test that would fail to catch a fork before. gdb/gdbserver/ChangeLog: 2015-12-04 Josh Stone <jistone@redhat.com> * target.h (struct target_ops) <arch_setup>: Rename to ... (struct target_ops) <post_create_inferior>: ... this. (target_arch_setup): Rename to ... (target_post_create_inferior): ... this, calling post_create_inferior. * server.c (start_inferior): Update target_arch_setup calls to target_post_create_inferior. * linux-low.c (linux_low_ptrace_options): Forward declare. (linux_arch_setup): Update its comment for general use. (linux_post_create_inferior): New, run arch_setup and setup ptrace. (struct linux_target_ops): Use linux_post_create_inferior. * lynx-low.c (struct lynx_target_ops): Update arch_setup stub comment to post_create_inferior. * nto-low.c (struct nto_target_ops): Likewise. * spu-low.c (struct spu_target_ops): Likewise. * win32-low.c (struct win32_target_ops): Likewise. gdb/testsuite/ChangeLog: 2015-12-04 Josh Stone <jistone@redhat.com> * gdb.base/catch-fork-static.exp: New. |
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Antoine Tremblay
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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. |
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Antoine Tremblay
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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. |
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Pedro Alves
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a67a9faef0 |
gdbserver:prepare_access_memory: pick another thread
Say GDB wants to access the inferior process's memory. The current remote general thread is 3, but GDB's switched to thread 2. Because both threads are of the same process, GDB skips making the remote thread be thread 2 as well (sending an Hg packet) before accessing memory (remote.c:set_general_process). However, if thread 3 has exited meanwhile, thread 3 no longer exists on the server and gdbserver points current_thread to NULL. The result is the memory access fails, even through the process still exists. Fix this by making prepare_to_access memory select the thread to access memory through. gdb/gdbserver/ChangeLog: 2015-11-30 Pedro Alves <palves@redhat.com> * mem-break.c (check_gdb_bp_preconditions): Remove current_thread check. (set_gdb_breakpoint): If prepare_to_access_memory fails, set *ERR to -1. * target.c (struct thread_search): New structure. (thread_search_callback): New function. (prev_general_thread): New global. (prepare_to_access_memory, done_accessing_memory): New functions. * target.h (prepare_to_access_memory, done_accessing_memory): Replace macros with function declarations. |
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Simon Marchi
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79efa585c5 |
Display names of remote threads
This patch adds support for thread names in the remote protocol, and updates gdb/gdbserver to use it. The information is added to the XML description sent in response to the qXfer:threads:read packet. gdb/ChangeLog: * linux-nat.c (linux_nat_thread_name): Replace implementation by call to linux_proc_tid_get_name. * nat/linux-procfs.c (linux_proc_tid_get_name): New function, implementation inspired by linux_nat_thread_name. * nat/linux-procfs.h (linux_proc_tid_get_name): New declaration. * remote.c (struct private_thread_info) <name>: New field. (free_private_thread_info): Free name field. (remote_thread_name): New function. (thread_item_t) <name>: New field. (clear_threads_listing_context): Free name field. (start_thread): Get name xml attribute. (thread_attributes): Add "name" attribute. (remote_update_thread_list): Copy name field. (init_remote_ops): Assign remote_thread_name callback. * target.h (target_thread_name): Update comment. * NEWS: Mention remote thread name support. gdb/gdbserver/ChangeLog: * linux-low.c (linux_target_ops): Use linux_proc_tid_get_name. * server.c (handle_qxfer_threads_worker): Refactor to include thread name in reply. * target.h (struct target_ops) <thread_name>: New field. (target_thread_name): New macro. gdb/doc/ChangeLog: * gdb.texinfo (Thread List Format): Mention thread names. |
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Doug Evans
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37ce4055fe |
target.h: #include <sys/types.h>.
For musl. |
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Pedro Alves
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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. |
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Pedro Alves
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add67df84c |
gdbserver: btrace enums
Fixes: ../../../src/gdb/gdbserver/linux-low.c: In function ‘int linux_low_read_btrace(btrace_target_info*, buffer*, int)’: ../../../src/gdb/gdbserver/linux-low.c:6827:48: error: invalid conversion from ‘int’ to ‘btrace_read_type’ [-fpermissive] err = linux_read_btrace (&btrace, tinfo, type); ^ In file included from ../../../src/gdb/gdbserver/linux-low.c:98:0: ../../../src/gdb/gdbserver/../nat/linux-btrace.h:116:26: error: initializing argument 3 of ‘btrace_error linux_read_btrace(btrace_data*, btrace_target_info*, btrace_read_type)’ [-fpermissive] extern enum btrace_error linux_read_btrace (struct btrace_data *btrace, ^ The cyclic dependency the comment talks about is no longer relevant: https://sourceware.org/ml/gdb-patches/2015-10/msg00643.html gdb/gdbserver/ChangeLog: 2015-10-29 Pedro Alves <palves@redhat.com> * linux-low.c (linux_low_read_btrace): Change type of 'type' parameter. * server.c (handle_qxfer_btrace): Change type of 'type' local. * target.h (struct target_ops) <read_btrace>: Change type of 'type' parameter. Update comment. |
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Antoine Tremblay
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2e6ee069ae |
Refactor default_breakpoint_kind_from_pc to be used by all targets in GDBServer.
This patch moves default_breakpoint_kind_from_pc to target.c and creates a macro so that all targets can easily use it. This allows the breakpoint_kind_from_pc operation to be left unimplemented in targets that do not need it. This is preparation to fix the win32/nto/spu build that was broken by this patch: https://sourceware.org/ml/gdb-patches/2015-10/msg00369.html No regression on Ubuntu 14.04 x86-64 with gdbserver-{native-extended} gdb/gdbserver/ChangeLog: * linux-low.c (default_breakpoint_kind_from_pc): Move to target.c. * mem-break.c (set_breakpoint_at): Use target_breakpoint_kind_from_pc. * target.c (default_breakpoint_kind_from_pc): Moved from linux-low.c * target.h (target_breakpoint_kind_from_pc): New macro. |
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Antoine Tremblay
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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. |
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Yao Qi
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70b90b91bf |
[gdbserver] Rename supports_conditional_breakpoints to supports_hardware_single_step
In my patch https://sourceware.org/ml/gdb-patches/2015-04/msg01110.html a new target_ops hook supports_conditional_breakpoints was added to disable conditional breakpoints if target doesn't have hardware single step. This patch is to generalize this hook from supports_conditional_breakpoints to supports_hardware_single_step, so that the following patch can use it. gdb/gdbserver: 2015-09-15 Yao Qi <yao.qi@linaro.org> * linux-low.c (linux_supports_conditional_breakpoints): Rename it to ... (linux_supports_hardware_single_step): ... New function. (linux_target_ops): Update. * lynx-low.c (lynx_target_ops): Set field supports_hardware_single_step to target_can_do_hardware_single_step. * nto-low.c (nto_target_ops): Likewise. * spu-low.c (spu_target_ops): Likewise. * win32-low.c (win32_target_ops): Likewise. * target.c (target_can_do_hardware_single_step): New function. * target.h (struct target_ops) <supports_conditional_breakpoints>: Remove. <supports_hardware_single_step>: New field. (target_supports_conditional_breakpoints): Remove. (target_supports_hardware_single_step): New macro. (target_can_do_hardware_single_step): Declare. * server.c (handle_query): Use target_supports_hardware_single_step instead of target_supports_conditional_breakpoints. |
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Don Breazeal
|
94585166df |
Extended-remote follow-exec
This patch implements support for exec events on extended-remote Linux targets. Follow-exec-mode and rerun behave as expected. Catchpoints and test updates are implemented in subsequent patches. This patch was derived from a patch posted last October: https://sourceware.org/ml/gdb-patches/2014-10/msg00877.html. It was originally based on some work done by Luis Machado in 2013. IMPLEMENTATION ---------------- Exec events are enabled via ptrace options. When an exec event is detected by gdbserver, the existing process data, along with all its associated lwp and thread data, is deleted and replaced by data for a new single-threaded process. The new process data is initialized with the appropriate parts of the state of the execing process. This approach takes care of several potential pitfalls, including: * deleting the data for an execing non-leader thread before any wait/sigsuspend occurs * correctly initializing the architecture of the execed process We then report the exec event using a new RSP stop reason, "exec". When GDB receives an "exec" event, it saves the status in the event structure's target_waitstatus field, like what is done for remote fork events. Because the original and execed programs may have different architectures, we skip parsing the section of the stop reply packet that contains register data. The register data will be retrieved later after the inferior's architecture has been set up by infrun.c:follow_exec. At that point the exec event is handled by the existing event handling in GDB. However, a few changes were necessary so that infrun.c:follow_exec could accommodate the remote target. * Where follow-exec-mode "new" is handled, we now call add_inferior_with_spaces instead of add_inferior with separate calls to set up the program and address spaces. The motivation for this is that add_inferior_with_spaces also sets up the initial architecture for the inferior, which is needed later by target_find_description when it calls target_gdbarch. * We call a new target function, target_follow_exec. This function allows us to store the execd_pathname in the inferior, instead of using the static string remote_exec_file from remote.c. The static string didn't work for follow-exec-mode "new", since once you switched to the execed program, the original remote exec-file was lost. The execd_pathname is now stored in the inferior's program space as a REGISTRY field. All of the requisite mechanisms for this are defined in remote.c. gdb/gdbserver/ChangeLog: * linux-low.c (linux_mourn): Static declaration. (linux_arch_setup): Move in front of handle_extended_wait. (linux_arch_setup_thread): New function. (handle_extended_wait): Handle exec events. Call linux_arch_setup_thread. Make event_lwp argument a pointer-to-a-pointer. (check_zombie_leaders): Do not check stopped threads. (linux_low_ptrace_options): Add PTRACE_O_TRACEEXEC. (linux_low_filter_event): Add lwp and thread for exec'ing non-leader thread if leader thread has been deleted. Refactor code into linux_arch_setup_thread and call it. Pass child lwp pointer by reference to handle_extended_wait. (linux_wait_for_event_filtered): Update comment. (linux_wait_1): Prevent clobbering exec event status. (linux_supports_exec_events): New function. (linux_target_ops) <supports_exec_events>: Initialize new member. * lynx-low.c (lynx_target_ops) <supports_exec_events>: Initialize new member. * remote-utils.c (prepare_resume_reply): New stop reason 'exec'. * server.c (report_exec_events): New global variable. (handle_query): Handle qSupported query for exec-events feature. (captured_main): Initialize report_exec_events. * server.h (report_exec_events): Declare new global variable. * target.h (struct target_ops) <supports_exec_events>: New member. (target_supports_exec_events): New macro. * win32-low.c (win32_target_ops) <supports_exec_events>: Initialize new member. gdb/ChangeLog: * infrun.c (follow_exec): Use process-style ptid for exec message. Call add_inferior_with_spaces and target_follow_exec. * nat/linux-ptrace.c (linux_supports_traceexec): New function. * nat/linux-ptrace.h (linux_supports_traceexec): Declare. * remote.c (remote_pspace_data): New static variable. (remote_pspace_data_cleanup): New function. (get_remote_exec_file): New function. (set_remote_exec_file_1): New function. (set_remote_exec_file): New function. (show_remote_exec_file): New function. (remote_exec_file): Delete static variable. (anonymous enum) <PACKET_exec_event_feature> New enumeration constant. (remote_protocol_features): Add entry for exec-events feature. (remote_query_supported): Add client side of qSupported query for exec-events feature. (remote_follow_exec): New function. (remote_parse_stop_reply): Handle 'exec' stop reason. (extended_remote_run, extended_remote_create_inferior): Call get_remote_exec_file and set_remote_exec_file_1. (init_extended_remote_ops) <to_follow_exec>: Initialize new member. (_initialize_remote): Call register_program_space_data_with_cleanup. Call add_packet_config_cmd for remote exec-events feature. Modify call to add_setshow_string_noescape_cmd for exec-file to use new functions set_remote_exec_file and show_remote_exec_file. * target-debug.h, target-delegates.c: Regenerated. * target.c (target_follow_exec): New function. * target.h (struct target_ops) <to_follow_exec>: New member. (target_follow_exec): Declare new function. |
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Pedro Alves
|
f0db101d98 |
gdbserver: don't pick a random thread if the current thread dies
In all-stop mode, if the current thread disappears while stopping all threads, gdbserver calls set_desired_thread(0) ['0' means "I want the continue thread"] which just picks the first thread in the list. This looks like a dangerous thing to do. GDBserver continues processing whatever it was doing, but to the wrong thread. If debugging more than one process, we may even pick the wrong process. Instead, GDBserver should detect the situation and bail out of whatever is was doing. The backends used to pay attention to the set 'cont_thread' (the Hc thread, used in the old way to resume threads, before vCont), but all such 'cont_thread' checks have been eliminated meanwhile. The remaining implicit dependencies that I found on there being a selected thread in the backends are in the Ctrl-C handling, which some backends use as thread to send a signal to. Even that seems to me to be better handled by always using the first thread in the list or by using the signal_pid PID. In order to make this a systematic approach, I'm making set_desired_thread never fallback to a random thread, and instead end up with current_thread == NULL, like already done in non-stop mode. Then I updated all callers to handle the situation. I stumbled on this while fixing other bugs exposed by gdb.threads/fork-plus-threads.exp test. The problems I saw were fixed in a different way, but in any case, I think the potential for problems is more or less obvious, and the resulting code looks a bit less magical to me. Tested on x86-64 Fedora 20, w/ native-extended-gdbserver board. gdb/gdbserver/ChangeLog: 2015-08-21 Pedro Alves <palves@redhat.com> * linux-low.c (wait_for_sigstop): Always switch to no thread selected if the previously current thread dies. * lynx-low.c (lynx_request_interrupt): Use the first thread's process instead of the current thread's. * remote-utils.c (input_interrupt): Don't check if there's no current thread. * server.c (gdb_read_memory, gdb_write_memory): If setting the current thread to the general thread fails, error out. (handle_qxfer_auxv, handle_qxfer_libraries) (handle_qxfer_libraries_svr4, handle_qxfer_siginfo) (handle_qxfer_spu, handle_qxfer_statictrace, handle_qxfer_fdpic) (handle_query): Check if there's a thread selected instead of checking whether there's any thread in the thread list. (handle_qxfer_threads, handle_qxfer_btrace) (handle_qxfer_btrace_conf): Don't error out early if there's no thread in the thread list. (handle_v_cont, myresume): Don't set the current thread to the continue thread. (process_serial_event) <Hg handling>: Also set thread_id if the previous general thread is still alive. (process_serial_event) <g/G handling>: If setting the current thread to the general thread fails, error out. * spu-low.c (spu_resume, spu_request_interrupt): Use the first thread's lwp instead of the current thread's. * target.c (set_desired_thread): If the desired thread was not found, leave the current thread pointing to NULL. Return an int (boolean) indicating success. * target.h (set_desired_thread): Change return type to int. |
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Yao Qi
|
c06cbd92be |
Initialise target descrption after skipping extra traps for --wrapper
Nowadays, when --wrapper is used, GDBserver skips extra traps/stops in the wrapper program, and stops at the first instruction of the program to be debugged. However, GDBserver created target description in the first stop of inferior, and the executable of the inferior is the wrapper program rather than the program to be debugged. In this way, the target description can be wrong if the architectures of wrapper program and program to be debugged are different. This is shown by some fails in gdb.server/wrapper.exp on buildbot. We are testing i686-linux GDB (Fedora-i686) on an x86_64-linux box (fedora-x86-64-4) in buildbot, such configuration causes fails in gdb.server/wrapper.exp like this: spawn /home/gdb-buildbot-2/fedora-x86-64-4/fedora-i686/build/gdb/testsuite/../../gdb/gdbserver/gdbserver --once --wrapper env TEST=1 -- :2346 /home/gdb-buildbot-2/fedora-x86-64-4/fedora-i686/build/gdb/testsuite/outputs/gdb.server/wrapper/wrapper Process /home/gdb-buildbot-2/fedora-x86-64-4/fedora-i686/build/gdb/testsuite/outputs/gdb.server/wrapper/wrapper created; pid = 8795 Can't debug 64-bit process with 32-bit GDBserver Exiting target remote localhost:2346 localhost:2346: Connection timed out. (gdb) FAIL: gdb.server/wrapper.exp: setting breakpoint at marker See https://sourceware.org/ml/gdb-testers/2015-q3/msg01541.html In this case, program to be debugged ("wrapper") is 32-bit but wrapper program ("/usr/bin/env") is 64-bit, so GDBserver gets the 64-bit target description instead of 32-bit. The root cause of this problem is that GDBserver creates target description too early, and the rationale of fix could be creating target description once the GDBserver skips extra traps and inferior stops at the first instruction of the program we want to debug. IOW, when GDBserver skips extra traps, the inferior's tdesc is NULL, and mywait and its callees shouldn't use inferior's tdesc, so in this patch, we skip code that requires register access, see changes in linux_resume_one_lwp_throw and need_step_over_p. In linux_low_filter_event, if target description isn't initialised and GDBserver attached the process, we create target description immediately, because GDBserver don't have to skip extra traps for attach, IOW, it makes no sense to use --attach and --wrapper together. Otherwise, the process is launched by GDBserver, we keep the status pending, and return. After GDBserver skipped extra traps in start_inferior, we call a target_ops hook arch_setup to initialise target description there. gdb/gdbserver: 2015-07-24 Yao Qi <yao.qi@linaro.org> * linux-low.c (linux_arch_setup): New function. (linux_low_filter_event): If proc->tdesc is NULL and proc->attached is true, call the_low_target.arch_setup. Otherwise, keep status pending, and return. (linux_resume_one_lwp_throw): Don't call get_pc if thread->while_stepping isn't NULL. Don't call get_thread_regcache if proc->tdesc is NULL. (need_step_over_p): Return 0 if proc->tdesc is NULL. (linux_target_ops): Install arch_setup. * server.c (start_inferior): Call the_target->arch_setup. * target.h (struct target_ops) <arch_setup>: New field. (target_arch_setup): New marco. * lynx-low.c (lynx_target_ops): Update. * nto-low.c (nto_target_ops): Update. * spu-low.c (spu_target_ops): Update. * win32-low.c (win32_target_ops): Update. |
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Gary Benson
|
14d2069a32 |
Implement vFile:setfs in gdbserver
This commit implements the "vFile:setfs" packet in gdbserver. gdb/gdbserver/ChangeLog: * target.h (struct target_ops) <multifs_open>: New field. <multifs_unlink>: Likewise. <multifs_readlink>: Likewise. * linux-low.c (nat/linux-namespaces.h): New include. (linux_target_ops): Initialize the_target->multifs_open, the_target->multifs_unlink and the_target->multifs_readlink. * hostio.h (hostio_handle_new_gdb_connection): New declaration. * hostio.c (hostio_fs_pid): New static variable. (hostio_handle_new_gdb_connection): New function. (handle_setfs): Likewise. (handle_open): Use the_target->multifs_open as appropriate. (handle_unlink): Use the_target->multifs_unlink as appropriate. (handle_readlink): Use the_target->multifs_readlink as appropriate. (handle_vFile): Handle vFile:setfs packets. * server.c (handle_query): Call hostio_handle_new_gdb_connection after target_handle_new_gdb_connection. |
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Pedro Alves
|
452003ef2c |
More C++ build fixing
Fixes: In file included from ../../../binutils-gdb/gdb/gdbserver/server.h:61:0, from ../../../binutils-gdb/gdb/gdbserver/server.c:19: ../../../binutils-gdb/gdb/gdbserver/target.h:442:50: error: second operand to the conditional operator is of type 'void', but the third operand is neither a throw-expression nor of type 'void' (*the_target->handle_new_gdb_connection) () : 0) ^ Reported by Yuanhui Zhang. gdb/gdbserver/ChangeLog: 2015-05-15 Pedro Alves <palves@redhat.com> * target.h (target_handle_new_gdb_connection): Rewrite using if wrapped in do/while. |
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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. |
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Don Breazeal
|
89245bc056 |
Identify remote fork event support
This patch implements a mechanism for GDB to determine whether fork events are supported in gdbserver. This is a preparatory patch for remote fork and exec event support. Two new RSP packets are defined to represent fork and vfork event support. These packets are used just like PACKET_multiprocess_feature to denote whether the corresponding event is supported. GDB sends fork-events+ and vfork-events+ to gdbserver to inquire about fork event support. If the response enables these packets, then GDB knows that gdbserver supports the corresponding events and will enable them. Target functions used to query for support are included along with each new packet. In order for gdbserver to know whether the events are supported at the point where the qSupported packet arrives, the code in nat/linux-ptrace.c had to be reorganized. Previously it would test for fork/exec event support, then enable the events using the pid of the inferior. When the qSupported packet arrives there may not be an inferior. So the mechanism was split into two parts: a function that checks whether the events are supported, called when gdbserver starts up, and another that enables the events when the inferior stops for the first time. Another gdbserver change was to add some global variables similar to multi_process, one per new packet. These are used to control whether the corresponding fork events are enabled. If GDB does not inquire about the event support in the qSupported packet, then gdbserver will not set these "report the event" flags. If the flags are not set, the events are ignored like they were in the past. Thus, gdbserver will never send fork event notification to an older GDB that doesn't recognize fork events. Tested on Ubuntu x64, native/remote/extended-remote, and as part of subsequent patches in the series. gdb/gdbserver/ChangeLog: * linux-low.c (linux_supports_fork_events): New function. (linux_supports_vfork_events): New function. (linux_target_ops): Initialize new structure members. (initialize_low): Call linux_check_ptrace_features. * lynx-low.c (lynx_target_ops): Initialize new structure members. * server.c (report_fork_events, report_vfork_events): New global flags. (handle_query): Add new features to qSupported packet and response. (captured_main): Initialize new global variables. * target.h (struct target_ops) <supports_fork_events>: New member. <supports_vfork_events>: New member. (target_supports_fork_events): New macro. (target_supports_vfork_events): New macro. * win32-low.c (win32_target_ops): Initialize new structure members. gdb/ChangeLog: * nat/linux-ptrace.c (linux_check_ptrace_features): Change from static to extern. * nat/linux-ptrace.h (linux_check_ptrace_features): Declare. * remote.c (anonymous enum): <PACKET_fork_event_feature, * PACKET_vfork_event_feature>: New enumeration constants. (remote_protocol_features): Add table entries for new packets. (remote_query_supported): Add new feature queries to qSupported packet. (_initialize_remote): Exempt new packets from the requirement to have 'set remote' commands. |
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Yao Qi
|
45614f1534 |
[gdbserver] Disable conditional breakpoints on no-hardware-single-step targets
GDBserver steps over breakpoint if the condition is false, but if target doesn't support hardware single step, the step over is very simple, if not incorrect, in linux-arm-low.c: /* We only place breakpoints in empty marker functions, and thread locking is outside of the function. So rather than importing software single-step, we can just run until exit. */ static CORE_ADDR arm_reinsert_addr (void) { struct regcache *regcache = get_thread_regcache (current_thread, 1); unsigned long pc; collect_register_by_name (regcache, "lr", &pc); return pc; } and linux-mips-low.c does the same. GDBserver sets a breakpoint at the return address of the current function, resume and wait the program hits the breakpoint in order to achieve "breakpoint step over". What if program hits other user breakponits during this "step over"? It is worse if the arm/thumb interworking is considered. Nowadays, GDBserver arm backend unconditionally inserts arm breakpoint, /* Define an ARM-mode breakpoint; we only set breakpoints in the C library, which is most likely to be ARM. If the kernel supports clone events, we will never insert a breakpoint, so even a Thumb C library will work; so will mixing EABI/non-EABI gdbserver and application. */ (const unsigned char *) &arm_breakpoint, (const unsigned char *) &arm_eabi_breakpoint, note that the comments are no longer valid as C library can be compiled in thumb mode. When GDBserver steps over a breakpoint in arm mode function, which returns to thumb mode, GDBserver will insert arm mode breakpoint by mistake and the program will crash. GDBserver alone is unable to determine the arm/thumb mode given a PC address. See how GDB does it in arm-tdep.c:arm_pc_is_thumb. After thinking about how to teach GDBserver inserting right breakpoint (arm or thumb) for a while, I reconsider it from a different direction that it may be unreasonable to run target-side conditional breakpoint for targets without hardware single step. Pedro also pointed this out here https://sourceware.org/ml/gdb-patches/2015-04/msg00337.html This patch is to add a new target_ops hook supports_conditional_breakpoints, and only reply ";ConditionalBreakpoints+" if it is true. On linux targets, supports_conditional_breakpoints returns true if target has hardware single step, on other targets, (win32, lynx, nto, spu), set it to NULL, because conditional breakpoint is a linux-specific feature. gdb/gdbserver: 2015-05-08 Yao Qi <yao.qi@linaro.org> * linux-low.c (linux_supports_conditional_breakpoints): New function. (linux_target_ops): Install new target method. * lynx-low.c (lynx_target_ops): Install NULL hook for supports_conditional_breakpoints. * nto-low.c (nto_target_ops): Likewise. * spu-low.c (spu_target_ops): Likewise. * win32-low.c (win32_target_ops): Likewise. * server.c (handle_query): Check target_supports_conditional_breakpoints. * target.h (struct target_ops) <supports_conditional_breakpoints>: New field. (target_supports_conditional_breakpoints): New macro. |
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Gary Benson
|
e57f1de3b3 |
Implement qXfer:exec-file:read in gdbserver
This commit implements the "qXfer:exec-file:read" packet in gdbserver. gdb/gdbserver/ChangeLog: * target.h (struct target_ops) <pid_to_exec_file>: New field. * linux-low.c (linux_target_ops): Initialize pid_to_exec_file. * server.c (handle_qxfer_exec_file): New function. (qxfer_packets): Add exec-file entry. (handle_query): Report qXfer:exec-file:read as supported packet. |
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Pedro Alves
|
1ec68e26c9 |
gdbserver: Support the "swbreak"/"hwbreak" stop reasons
This patch teaches the core of gdbserver about the new "swbreak" and "hwbreak" stop reasons, and adds the necessary hooks a backend needs to implement to support the feature. gdb/gdbserver/ChangeLog: 2015-03-04 Pedro Alves <palves@redhat.com> * remote-utils.c (prepare_resume_reply): Report swbreak/hbreak. * server.c (swbreak_feature, hwbreak_feature): New globals. (handle_query) <qSupported>: Handle "swbreak+" and "hwbreak+". (captured_main): Clear swbreak_feature and hwbreak_feature. * server.h (swbreak_feature, hwbreak_feature): Declare. * target.h (struct target_ops) <stopped_by_sw_breakpoint, supports_stopped_by_sw_breakpoint, stopped_by_hw_breakpoint, supports_stopped_by_hw_breakpoint>: New fields. (target_supports_stopped_by_sw_breakpoint) (target_stopped_by_sw_breakpoint) (target_supports_stopped_by_hw_breakpoint) (target_stopped_by_hw_breakpoint): Declare. |
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Markus Metzger
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f4abbc1682 |
record btrace: add configuration struct
Add a struct to describe the branch trace configuration and use it for enabling branch tracing. The user will be able to set configuration fields for each tracing format to be used for new threads. The actual configuration that is active for a given thread will be shown in the "info record" command. At the moment, the configuration struct only contains a format field that is set to the only available format. The format is the only configuration option that can not be set via set commands. It is given as argument to the "record btrace" command when starting recording. 2015-02-09 Markus Metzger <markus.t.metzger@intel.com> * Makefile.in (XMLFILES): Add btrace-conf.dtd. * x86-linux-nat.c (x86_linux_enable_btrace): Update parameters. (x86_linux_btrace_conf): New. (x86_linux_create_target): Initialize to_btrace_conf. * nat/linux-btrace.c (linux_enable_btrace): Update parameters. Check format. Split into this and ... (linux_enable_bts): ... this. (linux_btrace_conf): New. (perf_event_skip_record): Renamed into ... (perf_event_skip_bts_record): ... this. Updated users. (linux_disable_btrace): Split into this and ... (linux_disable_bts): ... this. (linux_read_btrace): Check format. * nat/linux-btrace.h (linux_enable_btrace): Update parameters. (linux_btrace_conf): New. (btrace_target_info)<ptid>: Moved. (btrace_target_info)<conf>: New. (btrace_target_info): Split into this and ... (btrace_tinfo_bts): ... this. Updated users. * btrace.c (btrace_enable): Update parameters. (btrace_conf, parse_xml_btrace_conf_bts, parse_xml_btrace_conf) (btrace_conf_children, btrace_conf_attributes) (btrace_conf_elements): New. * btrace.h (btrace_enable): Update parameters. (btrace_conf, parse_xml_btrace_conf): New. * common/btrace-common.h (btrace_config): New. * feature/btrace-conf.dtd: New. * record-btrace.c (record_btrace_conf): New. (record_btrace_cmdlist): New. (record_btrace_enable_warn, record_btrace_open): Pass &record_btrace_conf. (record_btrace_info): Print recording format. (cmd_record_btrace_bts_start): New. (cmd_record_btrace_start): Call cmd_record_btrace_bts_start. (_initialize_record_btrace): Add "record btrace bts" subcommand. Add "record bts" alias command. * remote.c (remote_state)<btrace_config>: New. (remote_btrace_reset, PACKET_qXfer_btrace_conf): New. (remote_protocol_features): Add qXfer:btrace-conf:read. (remote_open_1): Call remote_btrace_reset. (remote_xfer_partial): Handle TARGET_OBJECT_BTRACE_CONF. (btrace_target_info)<conf>: New. (btrace_sync_conf, btrace_read_config): New. (remote_enable_btrace): Update parameters. Call btrace_sync_conf and btrace_read_conf. (remote_btrace_conf): New. (init_remote_ops): Initialize to_btrace_conf. (_initialize_remote): Add qXfer:btrace-conf packet. * target.c (target_enable_btrace): Update parameters. (target_btrace_conf): New. * target.h (target_enable_btrace): Update parameters. (target_btrace_conf): New. (target_object)<TARGET_OBJECT_BTRACE_CONF>: New. (target_ops)<to_enable_btrace>: Update parameters and comment. (target_ops)<to_btrace_conf>: New. * target-delegates: Regenerate. * target-debug.h (target_debug_print_const_struct_btrace_config_p) (target_debug_print_const_struct_btrace_target_info_p): New. NEWS: Announce new command and new packet. doc/ * gdb.texinfo (Process Record and Replay): Describe the "record btrace bts" command. (General Query Packets): Describe qXfer:btrace-conf:read packet. (Branch Trace Configuration Format): New. gdbserver/ * linux-low.c (linux_low_enable_btrace): Update parameters. (linux_low_btrace_conf): New. (linux_target_ops)<to_btrace_conf>: Initialize. * server.c (current_btrace_conf): New. (handle_btrace_enable): Rename to ... (handle_btrace_enable_bts): ... this. Pass ¤t_btrace_conf to target_enable_btrace. Update comment. Update users. (handle_qxfer_btrace_conf): New. (qxfer_packets): Add btrace-conf entry. (handle_query): Report qXfer:btrace-conf:read as supported packet. * target.h (target_ops)<enable_btrace>: Update parameters and comment. (target_ops)<read_btrace_conf>: New. (target_enable_btrace): Update parameters. (target_read_btrace_conf): New. testsuite/ * gdb.btrace/delta.exp: Update "info record" output. * gdb.btrace/enable.exp: Update "info record" output. * gdb.btrace/finish.exp: Update "info record" output. * gdb.btrace/instruction_history.exp: Update "info record" output. * gdb.btrace/next.exp: Update "info record" output. * gdb.btrace/nexti.exp: Update "info record" output. * gdb.btrace/step.exp: Update "info record" output. * gdb.btrace/stepi.exp: Update "info record" output. * gdb.btrace/nohist.exp: Update "info record" output. |
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Markus Metzger
|
043c357797 |
btrace: add format argument to supports_btrace
Add a format argument to the various supports_btrace functions to check for support of a specific btrace format. This is to prepare for a new format. Removed two redundant calls. The check will be made in the subsequent btrace_enable call. 2015-02-09 Markus Metzger <markus.t.metzger@intel.com> * btrace.c (btrace_enable): Pass BTRACE_FORMAT_BTS. * record-btrace.c (record_btrace_open): Remove call to target_supports_btrace. * remote.c (remote_supports_btrace): Update parameters. * target.c (target_supports_btrace): Update parameters. * target.h (to_supports_btrace, target_supports_btrace): Update parameters. * target-delegates.c: Regenerate. * target-debug.h (target_debug_print_enum_btrace_format): New. * nat/linux-btrace.c (kernel_supports_btrace): Rename into ... (kernel_supports_bts): ... this. Update users. Update warning text. (intel_supports_btrace): Rename into ... (intel_supports_bts): ... this. Update users. (cpu_supports_btrace): Rename into ... (cpu_supports_bts): ... this. Update users. (linux_supports_btrace): Update parameters. Split into this and ... (linux_supports_bts): ... this. * nat/linux-btrace.h (linux_supports_btrace): Update parameters. gdbserver/ * server.c (handle_btrace_general_set): Remove call to target_supports_btrace. (supported_btrace_packets): New. (handle_query): Call supported_btrace_packets. * target.h: include btrace-common.h. (btrace_target_info): Removed. (supports_btrace, target_supports_btrace): Update parameters. |
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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. |
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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. |
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Gary Benson
|
0bfdf32fa1 |
Rename current_inferior as current_thread in gdbserver
GDB has a function named "current_inferior" and gdbserver has a global variable named "current_inferior", but the two are not equivalent; indeed, gdbserver does not have any real equivalent of what GDB calls an inferior. What gdbserver's "current_inferior" is actually pointing to is a structure describing the current thread. This commit renames current_inferior as current_thread in gdbserver to clarify this. It also renames the function "set_desired_inferior" to "set_desired_thread" and renames various local variables from foo_inferior to foo_thread. gdb/gdbserver/ChangeLog: * inferiors.h (current_inferior): Renamed as... (current_thread): New variable. All uses updated. * linux-low.c (get_pc): Renamed saved_inferior as saved_thread. (maybe_move_out_of_jump_pad): Likewise. (cancel_breakpoint): Likewise. (linux_low_filter_event): Likewise. (wait_for_sigstop): Likewise. (linux_resume_one_lwp): Likewise. (need_step_over_p): Likewise. (start_step_over): Likewise. (linux_stabilize_threads): Renamed save_inferior as saved_thread. * linux-x86-low.c (x86_linux_update_xmltarget): Likewise. * proc-service.c (ps_lgetregs): Renamed reg_inferior as reg_thread and save_inferior as saved_thread. * regcache.c (get_thread_regcache): Renamed saved_inferior as saved_thread. (regcache_invalidate_thread): Likewise. * remote-utils.c (prepare_resume_reply): Likewise. * thread-db.c (thread_db_get_tls_address): Likewise. (disable_thread_event_reporting): Likewise. (remove_thread_event_breakpoints): Likewise. * tracepoint.c (gdb_agent_about_to_close): Renamed save_inferior as saved_thread. * target.h (set_desired_inferior): Renamed as... (set_desired_thread): New declaration. All uses updated. * server.c (myresume): Updated comment to reference thread instead of inferior. (handle_serial_event): Likewise. (handle_target_event): Likewise. |
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Gary Benson
|
721ec300e1 |
Introduce target/target.h
This introduces target/target.h. This file declares some functions that the shared code can use and that clients must implement. It also changes some shared code to use these functions. gdb/ChangeLog: * target/target.h: New file. * Makefile.in (HFILES_NO_SRCDIR): Add target/target.h. * target.h: Include target/target.h. (target_read_memory, target_write_memory): Don't declare. * target.c (target_read_uint32): New function. * common/agent.c: Include target/target.h. [!GDBSERVER]: Don't include target.h. (helper_thread_id): Type changed to uint32_t. (agent_get_helper_thread_id): Use target_read_uint32. (agent_run_command): Always use target_read_memory and target_write_memory. (agent_capability): Type changed to uint32_t. (agent_capability_check): Use target_read_uint32. gdb/gdbserver/ChangeLog: * target.h: Include target/target.h. * target.c (target_read_memory, target_read_uint32) (target_write_memory): New functions. |
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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. |
||
Tom Tromey
|
46917d26c8 |
convert to_supports_btrace
This adds a "self" argument to to_supports_btrace. Due to how one implementation of this method is shared with gdbserver this required a small change to gdbserver as well. 2014-02-19 Tom Tromey <tromey@redhat.com> * common/linux-btrace.c (linux_supports_btrace): Add "ops" argument. * common/linux-btrace.h (linux_supports_btrace): Update. * remote.c (remote_supports_btrace): Add "self" argument. * target-delegates.c: Rebuild. * target.c (target_supports_btrace): Remove. * target.h (struct target_ops) <to_supports_btrace>: Add target_ops argument. (target_supports_btrace): New define. 2014-02-19 Tom Tromey <tromey@redhat.com> * target.h (struct target_ops) <supports_btrace>: Add target_ops argument. (target_supports_btrace): Update. |
||
Markus Metzger
|
969c39fbcd |
btrace, gdbserver: read branch trace incrementally
Read branch trace data incrementally and extend the current trace rather than discarding it and reading the entire trace buffer each time. If the branch trace buffer overflowed, we can't extend the current trace so we discard it and start anew by reading the entire branch trace buffer. 2014-01-16 Markus Metzger <markus.t.metzger@intel.com> * common/linux-btrace.c (perf_event_read_bts, linux_read_btrace): Support delta reads. (linux_disable_btrace): Change return type. * common/linux-btrace.h (linux_read_btrace): Change parameters and return type to allow error reporting. Update users. (linux_disable_btrace): Change return type. Update users. * common/btrace-common.h (btrace_read_type) <BTRACE_READ_DELTA>: New. (btrace_error): New. (btrace_block) <begin>: Comment on BEGIN == 0. * btrace.c (btrace_compute_ftrace): Start from the end of the current trace. (btrace_stitch_trace, btrace_clear_history): New. (btrace_fetch): Read delta trace, return if replaying. (btrace_clear): Move clear history code to btrace_clear_history. (parse_xml_btrace): Throw an error if parsing failed. * target.h (struct target_ops) <to_read_btrace>: Change parameters and return type to allow error reporting. (target_read_btrace): Change parameters and return type to allow error reporting. * target.c (target_read_btrace): Update. * remote.c (remote_read_btrace): Support delta reads. Pass errors on. * NEWS: Announce it. gdbserver/ * target.h (target_ops) <read_btrace>: Change parameters and return type to allow error reporting. * server.c (handle_qxfer_btrace): Support delta reads. Pass trace reading errors on. * linux-low.c (linux_low_read_btrace): Pass trace reading errors on. (linux_low_disable_btrace): New. |
||
Joel Brobecker
|
ecd75fc8ee | Update Copyright year range in all files maintained by GDB. | ||
Pedro Alves
|
6a6bbd9d76 |
[gdbserver] Split a new inferiors.h file out of server.h.
gdb/gdbserver/ 2013-09-05 Pedro Alves <palves@redhat.com> * server.h (current_process, get_thread_process, all_processes) (add_inferior_to_list, for_each_inferior, current_inferior) (remove_inferior, add_process, remove_process, find_process_pid) (have_started_inferiors_p, have_attached_inferiors_p) (thread_id_to_gdb_id, thread_to_gdb_id, gdb_id_to_thread_id) (clear_inferiors, find_inferior, find_inferior_id) (inferior_target_data, set_inferior_target_data) (inferior_regcache_data, set_inferior_regcache_data): Move to inferiors.h, and include it. * inferiors.h: New file. |
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Luis Machado
|
33b60d5831 |
gdb/
* Makefile.in (SFILES): Remove common/target-common.c and add target/waitstatus.c. (HFILES_NO_SRCDIR): Remove common/target-common.h and add target/resume.h, target/wait.h and target/waitstatus.h. (COMMON_OBS): Remove target-common.o and add waitstatus.o. (target-common.o): Remove. (waitstatus.o): New target object file. * common/target-common.c: Move contents to target/waitstatus.c and remove. * common/target-common.h: Move contents to other files and remove. (enum resume_kind: Move to target/resume.h. (TARGET_WNOHANG): Move to target/wait.h. (enum target_waitkind): Move to target/waitstatus.h. (struct target_waitstatus): Likewise. * target.h: Do not include target-common.h and include target/resume.h, target/wait.h and target/waitstatus.h. * target/resume.h: New file. * target/wait.h: New file. * target/waitstatus.h: New file. * target/waitstatus.c: New file. gdb/gdbserver/ * Makefile.in (INCLUDE_CFLAGS): Include -I$(srcdir)/../. (SFILES): Remove $(srcdir)/common/target-common.c and add $(srcdir)/target/waitstatus.c. (OBS): Remove target-common.o and add waitstatus.o. (server_h): Remove $(srcdir)/../common/target-common.h and add $(srcdir)/../target/resume.h, $(srcdir)/../target/wait.h and $(srcdir)/../target/waitstatus.h. (target-common.o): Remove. (waitstatus.o): New target object file. * target.h: Do not include target-common.h and include target/resume.h, target/wait.h and target/waitstatus.h. |
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Luis Machado
|
3360c0bf75 |
gdb/
* Makefile.in (SFILES): Add common/target-common.c. Add common/target-common.h to headers. (COMMON_OBS): Add target-common.o. (target-common.o): New target. * linux-nat.h (resume_kind): Move to common/target-common.h. * target.c (target_waitstatus_to_string): Move to common/target-common.c. * target.h: Include target-common.h. (target_waitkind): Move to common/target-common.h. (target_waitstatus): Likewise. (TARGET_WNOHANG): Likewise. * common/target-common.c: New file. * common/target-common.h: New file. gdb/gdbserver/ * Makefile.in (SFILES): /common/target-common.c. (OBS): Add target-common.o. (server_h): Add $(srcdir)/../common/target-common.h. (target-common.o): New target. * server.c (queue_stop_reply_callback): Free status string after use. * target.c (target_waitstatus_to_string): Remove. * target.h: Include target-common.h. (resume_kind): Likewise. (target_waitkind): Likewise. (target_waitstatus): Likewise. (TARGET_WNOHANG): Likewise. |
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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. |
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Markus Metzger
|
9accd112a6 |
Add the gdb remote target operations for branch tracing.
We define the following packets: Qbtrace:bts enable branch tracing for the current thread returns "OK" or "Enn" Qbtrace:off disable branch tracing for the current thread returns "OK" or "Enn" qXfer:btrace:read read the full branch trace data for the current thread gdb/ * target.h (enum target_object): Add TARGET_OBJECT_BTRACE. * remote.c: Include btrace.h. (struct btrace_target_info): New struct. (remote_supports_btrace): New function. (send_Qbtrace): New function. (remote_enable_btrace): New function. (remote_disable_btrace): New function. (remote_teardown_btrace): New function. (remote_read_btrace): New function. (init_remote_ops): Add btrace ops. (enum <unnamed>): Add btrace packets. (struct protocol_feature remote_protocol_features[]): Add btrace packets. (_initialize_remote): Add packet configuration for branch tracing. gdbserver/ * target.h (struct target_ops): Add btrace ops. (target_supports_btrace): New macro. (target_enable_btrace): New macro. (target_disable_btrace): New macro. (target_read_btrace): New macro. * gdbthread.h (struct thread_info): Add btrace field. * server.c: Include btrace-common.h. (handle_btrace_general_set): New function. (handle_btrace_enable): New function. (handle_btrace_disable): New function. (handle_general_set): Call handle_btrace_general_set. (handle_qxfer_btrace): New function. (struct qxfer qxfer_packets[]): Add btrace entry. * inferiors.c (remove_thread): Disable btrace. * linux-low: Include linux-btrace.h. (linux_low_enable_btrace): New function. (linux_low_read_btrace): New function. (linux_target_ops): Add btrace ops. * configure.srv (i[34567]86-*-linux*): Add linux-btrace.o. Add srv_linux_btrace=yes. (x86_64-*-linux*): Add linux-btrace.o. Add srv_linux_btrace=yes. * configure.ac: Define HAVE_LINUX_BTRACE. * config.in: Regenerated. * configure: Regenerated. |
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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. |
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Yao Qi
|
7255706c3e |
gdb/gdbserver/
PR remote/14161. * server.h: Declare gdb_agent_about_to_close. * target.c (kill_inferior): Include "agent.h". New. Send command 'kill'. * target.h (kill_inferior): Removed macro. * tracepoint.c (gdb_agent_about_to_close): New. (gdb_agent_helper_thread): Handle command 'close'. Wait endlessly until the inferior stops. Install gdb_agent_remove_socket to atexit hook. (agent_socket_name): New static variable. (gdb_agent_socket_init): Replace local variable 'name' with 'agent_socket_name'. (gdb_agent_remove_socket): New. gdb/doc/ * gdb.texinfo (IPA Protocol Commands): Document new command 'close'. gdb/testsuite/ KFAIL for PR remote/14161. * gdb.trace/strace.exp (strace_remove_socket): kfail for native. Cleanup socket files. (strace_info_marker): Detach inferior. |
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Pedro Alves
|
2ea286498f |
gdb/
2012-05-24 Pedro Alves <palves@redhat.com> PR gdb/7205 Replace target_signal with gdb_signal throughout. gdb/gdbserver/ 2012-05-24 Pedro Alves <palves@redhat.com> PR gdb/7205 Replace target_signal with gdb_signal throughout. include/gdb/ 2012-05-24 Pedro Alves <palves@redhat.com> PR gdb/7205 Replace target_signal with gdb_signal throughout. sim/common/ 2012-05-24 Pedro Alves <palves@redhat.com> PR gdb/7205 Replace target_signal with gdb_signal throughout. |
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Yao Qi
|
3e10640f3c |
gdb/gdbserver/
* remote-utils.c (prepare_resume_reply): Replace with macro target_core_of_thread. * server.c (handle_qxfer_threads_proper): Likewise. * target.h (traget_core_of_thread): New macro. |
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Yao Qi
|
d1feda864e |
gdb:
* target.h (struct target_ops) <to_use_agent>: New field. (struct target_ops) <to_can_use_agent>: New field. (target_use_agent, target_can_use_agent): New macro. * target.c (update_current_target): Update. * remote.c: New enum `PACKET_QAgent'. (remote_protocol_features): Add a new element. (remote_use_agent, remote_can_use_agent): New. (init_remote_ops): Initialize field `can_use_agent' with remote_can_use_agent. Intiailize field `use_agent' with remote_use_agent. * common/agent.c (use_agent): New global. * common/agent.h: Declare it. * tracepoint.c (info_static_tracepoint_markers_command): Add comment. * Makefile.in (SFILES): Add common/agent.c and agent.c. (COMMON_OBS): Add common/agent.o and agent.o (common-agent.o): New rule. * agent.c: New. gdb/doc: * gdb.texinfo (In-Process Agent): New node. Document new commands. (General Query Packets): Add packet `QAgent'. gdb/gdbserver: * linux-low.c (linux_supports_agent): New. (linux_target_ops): Initialize field `supports_agent' with linux_supports_agent. * target.h (struct target_ops) <supports_agent>: New. (target_supports_agent): New macro. * server.c (handle_general_set): Handle packet 'QAgent'. (handle_query): Send `QAgent+'. * Makefile.in (server.o): Depends on agent.h. |
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Joel Brobecker
|
0b30217134 |
Copyright year update in most files of the GDB Project.
gdb/ChangeLog: Copyright year update in most files of the GDB Project. |
||
Jan Kratochvil
|
2268b414f4 |
gdb/
* Makefile.in (XMLFILES): Add library-list-svr4.dtd. * features/library-list-svr4.dtd: New file. * remote.c (PACKET_qXfer_libraries_svr4): New. (remote_protocol_features): new entry for PACKET_qXfer_libraries_svr4. (remote_xfer_partial): Handle TARGET_OBJECT_LIBRARIES_SVR4. * solib-svr4.c (struct svr4_library_list): New. [HAVE_LIBEXPAT]: Include xml-support.h. [HAVE_LIBEXPAT] (svr4_library_list_start_library) [HAVE_LIBEXPAT] (svr4_library_list_start_list, svr4_library_attributes) [HAVE_LIBEXPAT] (svr4_library_list_children) [HAVE_LIBEXPAT] (svr4_library_list_attributes) [HAVE_LIBEXPAT] (svr4_library_list_elements, svr4_parse_libraries) [HAVE_LIBEXPAT] (svr4_current_sos_via_xfer_libraries) [!HAVE_LIBEXPAT] (svr4_current_sos_via_xfer_libraries): New. (svr4_read_so_list): Extend the corruption message by addresses. (svr4_current_sos): New variable library_list, call svr4_current_sos_via_xfer_libraries. * target.h (enum target_object): New TARGET_OBJECT_LIBRARIES_SVR4. gdb/gdbserver/ * linux-low.c (get_phdr_phnum_from_proc_auxv, get_dynamic, get_r_debug) (read_one_ptr, struct link_map_offsets, linux_qxfer_libraries_svr4): New. (struct linux_target_ops): Install linux_qxfer_libraries_svr4. * linux-low.h (struct process_info_private): New member r_debug. * server.c (handle_qxfer_libraries): Call the_target->qxfer_libraries_svr4. (handle_qxfer_libraries_svr4): New function. (qxfer_packets): New entry "libraries-svr4". (handle_query): Check QXFER_LIBRARIES_SVR4 and report libraries-svr4. * target.h (struct target_ops): New member qxfer_libraries_svr4. * remote.c (remote_xfer_partial): Call add_packet_config_cmd for PACKET_qXfer_libraries_svr4. gdb/doc/ * gdb.texinfo (Requirements, Remote Protocol): Reference also `Library List Format for SVR4 Targets'. (General Query Packets): New item qXfer:libraries-svr4:read. (Library List Format for SVR4 Targets): New node. gdb/testsuite/ * gdb.base/solib-corrupted.exp: Suppress test on is_remote target. (corrupted list): Adjust the expectation. |
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Stan Shebs
|
405f8e9499 |
2011-11-14 Stan Shebs <stan@codesourcery.com>
Kwok Cheung Yeung <kcy@codesourcery.com> * NEWS: Document shorter fast tracepoints and qTMinFTPILen packet. * i386-tdep.c (i386_fast_tracepoint_valid_at): Query target for the minimum instruction size for fast tracepoints. * target.h (struct target_ops): Add new method to_get_min_fast_tracepoint_insn_len. (target_get_min_fast_tracepoint_insn_len): New. * target.c (update_current_target): Set up new target operation. * remote.c (remote_write_bytes_aux): Fix typo. (remote_get_min_fast_tracepoint_insn_len): New. (init_remote_ops): Initialize new field. * gdb.texinfo (Create and Delete Tracepoints): Describe what is needed to get shorter fast tracepoints. (Tracepoint Packets): Document new qTMinFTPILen packet. * linux-x86-low.c (small_jump_insn): New. (i386_install_fast_tracepoint_jump_pad): Add arguments for trampoline and error message, build a trampoline and issue a small jump instruction to it. (x86_install_fast_tracepoint_jump_pad): Add arguments for trampoline and error message. (x86_get_min_fast_tracepoint_insn_len): New. (the_low_target): Add call to x86_get_min_fast_tracepoint_insn_len. * linux-low.h (struct linux_target_ops): Add arguments to install_fast_tracepoint_jump_pad operation, add new operation. * linux-low.c (linux_install_fast_tracepoint_jump_pad): Add arguments. (linux_get_min_fast_tracepoint_insn_len): New function. (linux_target_op): Add new operation. * tracepoint.c (gdb_trampoline_buffer): New IPA variable. (gdb_trampoline_buffer_end): Ditto. (gdb_trampoline_buffer_error): Ditto. (struct ipa_sym_addresses): Add fields for new IPA variables. (symbol_list): Add entries for new IPA variables. (struct tracepoint): Add fields to hold the address range of the trampoline used by the tracepoint. (trampoline_buffer_head): New static variable. (trampoline_buffer_tail): Ditto. (claim_trampoline_space): New function. (have_fast_tracepoint_trampoline_buffer): New function. (clone_fast_tracepoint): Fill in trampoline fields of tracepoint structure. (install_fast_tracepoint): Ditto, also add error buffer argument. (cmd_qtminftpilen): New function. (handle_tracepoint_query): Add response to qTMinFTPILen packet. (fast_tracepoint_from_trampoline_address): New function. (fast_tracepoint_collecting): Handle trampoline as part of jump pad space. (set_trampoline_buffer_space): New function. (initialize_tracepoint): Initialize new IPA variables. * target.h (struct target_ops): Add arguments to install_fast_tracepoint_jump_pad operation, add new get_min_fast_tracepoint_insn_len operation. (target_get_min_fast_tracepoint_insn_len): New. (install_fast_tracepoint_jump_pad): Add arguments. * server.h (IPA_BUFSIZ): Define. * linux-i386-ipa.c: Include extra header files. (initialize_fast_tracepoint_trampoline_buffer): New function. (initialize_low_tracepoint): Call it. * server.h (set_trampoline_buffer_space): Declare. (claim_trampoline_space): Ditto. (have_fast_tracepoint_trampoline_buffer): Ditto. * gdb.trace/ftrace.c: New. * gdb.trace/ftrace.exp: New. |
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Yao Qi
|
609086b1aa |
gdb/gdbserver/
* target.h: Fix a typo in comment. |
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Ulrich Weigand
|
03583c206f |
* inferior.h (disable_randomization): Declare.
* infrun.c (disable_randomization): New global variable. (show_disable_randomization): New function. (set_disable_randomization): Likewise. (_initialize_infrun): Install set/show disable-randomization commands. * linux-nat.c (disable_randomization): Remove. (show_disable_randomization): Likewise. (set_disable_randomization): Likewise. (_initialize_linux_nat): No longer install set/show disable-randomization commands here. (linux_nat_supports_disable_randomization): New function. (linux_nat_add_target): Install it. * remote.c (PACKET_QDisableRandomization): New enum value. (remote_protocol_packets): Support QDisableRandomization. (_initialize_remote): Likewise. (remote_supports_disable_randomization): New function. (init_remote_ops): Install it. (extended_remote_supports_disable_randomization): New function. (init_extended_remote_ops): Install it. (extended_remote_disable_randomization): New function. (extended_remote_create_inferior_1): Call it. * target.h (struct target_ops): Add to_supports_disable_randomization. (target_supports_disable_randomization): Add prototype. * target.c (target_supports_disable_randomization): New function. (find_default_supports_disable_randomization): Likewise. (init_dummy_target): Install it. doc/ * gdb.texinfo (Starting your Program): "set disable-randomization" is no longer Linux-specific. (Remote Configuration): Document "set remote disable-randomization-packet". (General Query Packets): Document "QDisableRandomization" packet and add it to "qSupported" list. gdbserver/ * configure.ac: Check support for personality routine. * configure: Regenerate. * config.in: Likewise. * linux-low.c: Include <sys/personality.h>. Define ADDR_NO_RANDOMIZE if necessary. (linux_create_inferior): Disable address space randomization when forking inferior, if requested. (linux_supports_disable_randomization): New function. (linux_target_ops): Install it. * server.h (disable_randomization): Declare. * server.c (disable_randomization): New global variable. (handle_general_set): Handle QDisableRandomization. (handle_query): Likewise for qSupported. (main): Support --disable-randomization and --no-disable-randomization command line arguments. * target.h (struct target_ops): Add supports_disable_randomization. (target_supports_disable_randomization): New macro. |
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Yao Qi
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881127c98f |
gdb/gdbserver/
* target.h (struct target_ops): Fix indent. * win32-low.c (win32_target_ops): Fix comment. |