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trace-events 5.9 KB

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  1. # See docs/devel/tracing.txt for syntax documentation.
  2. #
  3. # This file is processed by the tracetool script during the build.
  4. #
  5. # To add a new trace event:
  6. #
  7. # 1. Choose a name for the trace event. Declare its arguments and format
  8. # string.
  9. #
  10. # 2. Call the trace event from code using trace_##name, e.g. multiwrite_cb() ->
  11. # trace_multiwrite_cb(). The source file must #include "trace.h".
  12. #
  13. # Format of a trace event:
  14. #
  15. # [disable] <name>(<type1> <arg1>[, <type2> <arg2>] ...) "<format-string>"
  16. #
  17. # Example: g_malloc(size_t size) "size %zu"
  18. #
  19. # The "disable" keyword will build without the trace event.
  20. #
  21. # The <name> must be a valid as a C function name.
  22. #
  23. # Types should be standard C types. Use void * for pointers because the trace
  24. # system may not have the necessary headers included.
  25. #
  26. # The <format-string> should be a sprintf()-compatible format string.
  27. # dma-helpers.c
  28. dma_blk_io(void *dbs, void *bs, int64_t offset, bool to_dev) "dbs=%p bs=%p offset=%" PRId64 " to_dev=%d"
  29. dma_aio_cancel(void *dbs) "dbs=%p"
  30. dma_complete(void *dbs, int ret, void *cb) "dbs=%p ret=%d cb=%p"
  31. dma_blk_cb(void *dbs, int ret) "dbs=%p ret=%d"
  32. dma_map_wait(void *dbs) "dbs=%p"
  33. # exec.c
  34. find_ram_offset(uint64_t size, uint64_t offset) "size: 0x%" PRIx64 " @ 0x%" PRIx64
  35. find_ram_offset_loop(uint64_t size, uint64_t candidate, uint64_t offset, uint64_t next, uint64_t mingap) "trying size: 0x%" PRIx64 " @ 0x%" PRIx64 ", offset: 0x%" PRIx64" next: 0x%" PRIx64 " mingap: 0x%" PRIx64
  36. ram_block_discard_range(const char *rbname, void *hva, size_t length, bool need_madvise, bool need_fallocate, int ret) "%s@%p + 0x%zx: madvise: %d fallocate: %d ret: %d"
  37. # accel/tcg/cputlb.c
  38. memory_notdirty_write_access(uint64_t vaddr, uint64_t ram_addr, unsigned size) "0x%" PRIx64 " ram_addr 0x%" PRIx64 " size %u"
  39. memory_notdirty_set_dirty(uint64_t vaddr) "0x%" PRIx64
  40. # gdbstub.c
  41. gdbstub_op_start(const char *device) "Starting gdbstub using device %s"
  42. gdbstub_op_exiting(uint8_t code) "notifying exit with code=0x%02x"
  43. gdbstub_op_continue(void) "Continuing all CPUs"
  44. gdbstub_op_continue_cpu(int cpu_index) "Continuing CPU %d"
  45. gdbstub_op_stepping(int cpu_index) "Stepping CPU %d"
  46. gdbstub_op_extra_info(const char *info) "Thread extra info: %s"
  47. gdbstub_hit_watchpoint(const char *type, int cpu_gdb_index, uint64_t vaddr) "Watchpoint hit, type=\"%s\" cpu=%d, vaddr=0x%" PRIx64 ""
  48. gdbstub_hit_internal_error(void) "RUN_STATE_INTERNAL_ERROR"
  49. gdbstub_hit_break(void) "RUN_STATE_DEBUG"
  50. gdbstub_hit_paused(void) "RUN_STATE_PAUSED"
  51. gdbstub_hit_shutdown(void) "RUN_STATE_SHUTDOWN"
  52. gdbstub_hit_io_error(void) "RUN_STATE_IO_ERROR"
  53. gdbstub_hit_watchdog(void) "RUN_STATE_WATCHDOG"
  54. gdbstub_hit_unknown(int state) "Unknown run state=0x%x"
  55. gdbstub_io_reply(const char *message) "Sent: %s"
  56. gdbstub_io_binaryreply(size_t ofs, const char *line) "0x%04zx: %s"
  57. gdbstub_io_command(const char *command) "Received: %s"
  58. gdbstub_io_got_ack(void) "Got ACK"
  59. gdbstub_io_got_unexpected(uint8_t ch) "Got 0x%02x when expecting ACK/NACK"
  60. gdbstub_err_got_nack(void) "Got NACK, retransmitting"
  61. gdbstub_err_garbage(uint8_t ch) "received garbage between packets: 0x%02x"
  62. gdbstub_err_overrun(void) "command buffer overrun, dropping command"
  63. gdbstub_err_invalid_repeat(uint8_t ch) "got invalid RLE count: 0x%02x"
  64. gdbstub_err_invalid_rle(void) "got invalid RLE sequence"
  65. gdbstub_err_checksum_invalid(uint8_t ch) "got invalid command checksum digit: 0x%02x"
  66. gdbstub_err_checksum_incorrect(uint8_t expected, uint8_t got) "got command packet with incorrect checksum, expected=0x%02x, received=0x%02x"
  67. # job.c
  68. job_state_transition(void *job, int ret, const char *legal, const char *s0, const char *s1) "job %p (ret: %d) attempting %s transition (%s-->%s)"
  69. job_apply_verb(void *job, const char *state, const char *verb, const char *legal) "job %p in state %s; applying verb %s (%s)"
  70. job_completed(void *job, int ret) "job %p ret %d"
  71. # job-qmp.c
  72. qmp_job_cancel(void *job) "job %p"
  73. qmp_job_pause(void *job) "job %p"
  74. qmp_job_resume(void *job) "job %p"
  75. qmp_job_complete(void *job) "job %p"
  76. qmp_job_finalize(void *job) "job %p"
  77. qmp_job_dismiss(void *job) "job %p"
  78. ### Guest events, keep at bottom
  79. ## vCPU
  80. # trace/control-target.c
  81. # Hot-plug a new virtual (guest) CPU
  82. #
  83. # Mode: user, softmmu
  84. # Targets: all
  85. vcpu guest_cpu_enter(void)
  86. # trace/control.c
  87. # Hot-unplug a virtual (guest) CPU
  88. #
  89. # Mode: user, softmmu
  90. # Targets: all
  91. vcpu guest_cpu_exit(void)
  92. # hw/core/cpu.c
  93. # Reset the state of a virtual (guest) CPU
  94. #
  95. # Mode: user, softmmu
  96. # Targets: all
  97. vcpu guest_cpu_reset(void)
  98. # tcg/tcg-op.c
  99. # @vaddr: Access' virtual address.
  100. # @info : Access' information (see below).
  101. #
  102. # Start virtual memory access (before any potential access violation).
  103. #
  104. # Does not include memory accesses performed by devices.
  105. #
  106. # Access information can be parsed as:
  107. #
  108. # struct mem_info {
  109. # uint8_t size_shift : 4; /* interpreted as "1 << size_shift" bytes */
  110. # bool sign_extend: 1; /* sign-extended */
  111. # uint8_t endianness : 1; /* 0: little, 1: big */
  112. # bool store : 1; /* whether it is a store operation */
  113. # pad : 1;
  114. # uint8_t mmuidx : 4; /* mmuidx (softmmu only) */
  115. # };
  116. #
  117. # Mode: user, softmmu
  118. # Targets: TCG(all)
  119. vcpu tcg guest_mem_before(TCGv vaddr, uint16_t info) "info=%d", "vaddr=0x%016"PRIx64" info=%d"
  120. # include/user/syscall-trace.h
  121. # @num: System call number.
  122. # @arg*: System call argument value.
  123. #
  124. # Start executing a guest system call in syscall emulation mode.
  125. #
  126. # Mode: user
  127. # Targets: TCG(all)
  128. vcpu guest_user_syscall(uint64_t num, uint64_t arg1, uint64_t arg2, uint64_t arg3, uint64_t arg4, uint64_t arg5, uint64_t arg6, uint64_t arg7, uint64_t arg8) "num=0x%016"PRIx64" arg1=0x%016"PRIx64" arg2=0x%016"PRIx64" arg3=0x%016"PRIx64" arg4=0x%016"PRIx64" arg5=0x%016"PRIx64" arg6=0x%016"PRIx64" arg7=0x%016"PRIx64" arg8=0x%016"PRIx64
  129. # @num: System call number.
  130. # @ret: System call result value.
  131. #
  132. # Finish executing a guest system call in syscall emulation mode.
  133. #
  134. # Mode: user
  135. # Targets: TCG(all)
  136. vcpu guest_user_syscall_ret(uint64_t num, uint64_t ret) "num=0x%016"PRIx64" ret=0x%016"PRIx64