+define zstack
+ set $index = $arg0
+
+ if (log_records == 0)
+ set $count = 0
+ printf "Zone logging not enabled. Add 'zlog=<zone name>' to boot-args.\n"
+ else
+ if ($argc == 2)
+ set $count = $arg1
+ else
+ set $count = 1
+ end
+ end
+
+ while ($count)
+ printf "\n--------------- "
+
+ if (zrecords[$index].z_opcode == 1)
+ printf "ALLOC "
+ else
+ printf "FREE "
+ end
+
+ printf " 0x%x : index %d : ztime %d -------------\n", zrecords[$index].z_element, $index, zrecords[$index].z_time
+
+ set $frame = 0
+
+ while ($frame < 15)
+ set $frame_pc = zrecords[$index].z_pc[$frame]
+
+ if ($frame_pc == 0)
+ loop_break
+ end
+
+ x/i $frame_pc
+ set $frame = $frame + 1
+ end
+
+ set $index = $index + 1
+ set $count = $count - 1
+ end
+end
+
+document zstack
+Syntax: (gdb) zstack <index> [<count>]
+| Zone leak debugging: print the stack trace of log element at <index>.
+| If a <count> is supplied, it prints <count> log elements starting at <index>.
+|
+| The suggested usage is to look at indexes below zcurrent and look for common stack traces.
+| The stack trace that occurs the most is probably the cause of the leak. Find the pc of the
+| function calling into zalloc and use the countpcs kgmacro to find out how often that pc occurs in the log.
+| The pc occuring in a high percentage of records is most likely the source of the leak.
+|
+| The findoldest kgmacro is also useful for leak debugging since it identifies the oldest record
+| in the log, which may indicate the leaker.
+end
+
+define findoldest
+ set $index = 0
+ set $count = log_records
+ set $cur_min = 2000000000
+ set $cur_index = 0
+
+ if (log_records == 0)
+ printf "Zone logging not enabled. Add 'zlog=<zone name>' to boot-args.\n"
+ else
+
+ while ($count)
+ if (zrecords[$index].z_element && zrecords[$index].z_time < $cur_min)
+ set $cur_index = $index
+ set $cur_min = zrecords[$index].z_time
+ end
+
+ set $count = $count - 1
+ set $index = $index + 1
+ end
+
+ printf "oldest record is at log index %d:\n", $cur_index
+ zstack $cur_index
+ end
+end
+
+document findoldest
+Syntax: (gdb) findoldest
+| Zone leak debugging: find and print the oldest record in the log. Note that this command
+| can take several minutes to run since it uses linear search.
+|
+| Once it prints a stack trace, find the pc of the caller above all the zalloc, kalloc and
+| IOKit layers. Then use the countpcs kgmacro to see how often this caller has allocated
+| memory. A caller with a high percentage of records in the log is probably the leaker.
+end
+
+define countpcs
+ set $target_pc = $arg0
+ set $index = 0
+ set $count = log_records
+ set $found = 0
+
+ if (log_records == 0)
+ printf "Zone logging not enabled. Add 'zlog=<zone name>' to boot-args.\n"
+ else
+
+ while ($count)
+ set $frame = 0
+
+ if (zrecords[$index].z_element != 0)
+ while ($frame < 15)
+ if (zrecords[$index].z_pc[$frame] == $target_pc)
+ set $found = $found + 1
+ set $frame = 15
+ end
+
+ set $frame = $frame + 1
+ end
+ end
+
+ set $index = $index + 1
+ set $count = $count - 1
+ end
+
+ printf "occurred %d times in log (%d%c of records)\n", $found, ($found * 100) / zrecorded, '%'
+ end
+end
+
+document countpcs
+Syntax: (gdb) countpcs <pc>
+| Zone leak debugging: search the log and print a count of all log entries that contain the given <pc>
+| in the stack trace. This is useful for verifying a suspected <pc> as being the source of
+| the leak. If a high percentage of the log entries contain the given <pc>, then it's most
+| likely the source of the leak. Note that this command can take several minutes to run.
+end
+
+define findelem
+ set $fe_index = zcurrent
+ set $fe_count = log_records
+ set $fe_elem = $arg0
+ set $fe_prev_op = -1
+
+ if (log_records == 0)
+ printf "Zone logging not enabled. Add 'zlog=<zone name>' to boot-args.\n"
+ end
+
+ while ($fe_count)
+ if (zrecords[$fe_index].z_element == $fe_elem)
+ zstack $fe_index
+
+ if (zrecords[$fe_index].z_opcode == $fe_prev_op)
+ printf "*************** DOUBLE OP! *********************\n
+ end
+
+ set $fe_prev_op = zrecords[$fe_index].z_opcode
+ end
+
+ set $fe_count = $fe_count - 1
+ set $fe_index = $fe_index + 1
+
+ if ($fe_index >= log_records)
+ set $fe_index = 0
+ end
+ end
+end
+
+document findelem
+Syntax: (gdb) findelem <elem addr>
+| Zone corruption debugging: search the log and print out the stack traces for all log entries that
+| refer to the given zone element. When the kernel panics due to a corrupted zone element, get the
+| element address and use this macro. This will show you the stack traces of all logged zalloc and
+| zfree operations which tells you who touched the element in the recent past. This also makes
+| double-frees readily apparent.
+end
+
+
+# This implements a shadowing scheme in kgmacros. If the
+# current user data can be accessed by simply changing kdp_pmap,
+# that is used. Otherwise, we copy data into a temporary buffer
+# in the kernel's address space and use that instead. Don't rely on
+# kdp_pmap between invocations of map/unmap. Since the shadow
+# codepath uses a manual KDP packet, request no more than 128 bytes.
+# Uses $kgm_lp64 for kernel address space size
+define _map_user_data_from_task
+ set $kgm_map_user_taskp = (task_t)$arg0
+ set $kgm_map_user_map = $kgm_map_user_taskp->map
+ set $kgm_map_user_pmap = $kgm_map_user_map->pmap
+ set $kgm_map_user_task_64 = ( $kgm_map_user_taskp->taskFeatures[0] & 0x80000000)
+ set $kgm_map_user_window = 0
+ set $kgm_map_switch_map = 0
+
+ if $kgm_lp64
+ set $kgm_map_switch_map = 1
+ else
+ if !$kgm_map_user_task_64
+ set $kgm_map_switch_map = 1
+ end
+ end
+
+ if ($kgm_map_switch_map)
+ # switch the map safely
+ set $kgm_map_user_window = $arg1
+ set kdp_pmap = $kgm_map_user_pmap
+ else
+ # requires shadowing/copying
+
+ # set up the manual KDP packet
+ set manual_pkt.input = 0
+ set manual_pkt.len = sizeof(kdp_readmem64_req_t)
+ set $kgm_pkt = (kdp_readmem64_req_t *)&manual_pkt.data
+ set $kgm_pkt->hdr.request = KDP_READMEM64
+ set $kgm_pkt->hdr.len = sizeof(kdp_readmem64_req_t)
+ set $kgm_pkt->hdr.is_reply = 0
+ set $kgm_pkt->hdr.seq = 0
+ set $kgm_pkt->hdr.key = 0
+ set $kgm_pkt->address = (uint64_t)$arg1
+ set $kgm_pkt->nbytes = (uint32_t)$arg2
+
+ set kdp_pmap = $kgm_map_user_pmap
+ set manual_pkt.input = 1
+ # dummy to make sure manual packet is executed
+ set $kgm_dummy = &_mh_execute_header
+ # Go back to kernel map so that we can access buffer directly
+ set kdp_pmap = 0
+
+ set $kgm_pkt = (kdp_readmem64_reply_t *)&manual_pkt.data
+ if ($kgm_pkt->error == 0)
+ set $kgm_map_user_window = $kgm_pkt->data
+ else
+ set $kgm_map_user_window = 0
+ end
+
+ end
+end
+
+define _unmap_user_data_from_task
+ set kdp_pmap = 0
+end
+
+# uses $kgm_taskp. Maps 32 bytes at a time and prints it
+define _print_path_for_image
+ set $kgm_print_path_address = (unsigned long long)$arg0
+ set $kgm_path_str_notdone = 1
+
+ while $kgm_path_str_notdone
+ _map_user_data_from_task $kgm_taskp $kgm_print_path_address 32
+
+ set $kgm_print_path_ptr = (char *)$kgm_map_user_window
+ set $kgm_path_i = 0
+ while ($kgm_path_i < 32 && $kgm_print_path_ptr[$kgm_path_i] != '\0')
+ set $kgm_path_i = $kgm_path_i + 1
+ end
+ printf "%.32s", $kgm_print_path_ptr
+
+ _unmap_user_data_from_task $kgm_taskp
+
+ # if we terminated on NUL, break out
+ if $kgm_path_i < 32
+ set $kgm_path_str_notdone = 0
+ else
+ set $kgm_print_path_address = $kgm_print_path_address + 32
+ end
+ end
+end
+
+# uses $kgm_taskp and $kgm_task_64
+define _print_image_info
+ set $kgm_mh_image_address = (unsigned long long)$arg0
+ set $kgm_mh_path_address = (unsigned long long)$arg1
+
+ # 32 bytes enough for mach_header/mach_header_64
+ _map_user_data_from_task $kgm_taskp $kgm_mh_image_address 32
+
+ set $kgm_mh_ptr = (unsigned int*)$kgm_map_user_window
+ set $kgm_mh_magic = $kgm_mh_ptr[0]
+ set $kgm_mh_cputype = $kgm_mh_ptr[1]
+ set $kgm_mh_cpusubtype = $kgm_mh_ptr[2]
+ set $kgm_mh_filetype = $kgm_mh_ptr[3]
+ set $kgm_mh_ncmds = $kgm_mh_ptr[4]
+ set $kgm_mh_sizeofcmds = $kgm_mh_ptr[5]
+ set $kgm_mh_flags = $kgm_mh_ptr[6]
+
+ _unmap_user_data_from_task $kgm_taskp
+
+ if $kgm_mh_magic == 0xfeedfacf
+ set $kgm_mh_64 = 1
+ set $kgm_lc_address = $kgm_mh_image_address + 32
+ else
+ set $kgm_mh_64 = 0
+ set $kgm_lc_address = $kgm_mh_image_address + 28
+ end
+
+ set $kgm_lc_idx = 0
+ set $kgm_uuid_data = 0
+ while $kgm_lc_idx < $kgm_mh_ncmds
+
+ # 24 bytes is size of uuid_command
+ _map_user_data_from_task $kgm_taskp $kgm_lc_address 24
+
+ set $kgm_lc_ptr = (unsigned int *)$kgm_map_user_window
+ set $kgm_lc_cmd = $kgm_lc_ptr[0]
+ set $kgm_lc_cmd_size = $kgm_lc_ptr[1]
+ set $kgm_lc_data = (unsigned char *)$kgm_lc_ptr + 8
+
+ if $kgm_lc_cmd == 0x1b
+ set $kgm_uuid_data = $kgm_lc_data
+ if $kgm_mh_64
+ printf "0x%016llx ", $kgm_mh_image_address
+ else
+ printf "0x%08x ", $kgm_mh_image_address
+ end
+
+ set $kgm_printed_type = 0
+ if $kgm_mh_filetype == 0x2
+ printf "MH_EXECUTE "
+ set $kgm_printed_type = 1
+ end
+ if $kgm_mh_filetype == 0x6
+ printf "MH_DYLIB "
+ set $kgm_printed_type = 1
+ end
+ if $kgm_mh_filetype == 0x7
+ printf "MH_DYLINKER "
+ set $kgm_printed_type = 1
+ end
+ if $kgm_mh_filetype == 0x8
+ printf "MH_BUNDLE "
+ set $kgm_printed_type = 1
+ end
+ if !$kgm_printed_type
+ printf "UNKNOWN "
+ end
+ printf "%02.2X%02.2X%02.2X%02.2X-", $kgm_uuid_data[0], $kgm_uuid_data[1], $kgm_uuid_data[2], $kgm_uuid_data[3]
+ printf "%02.2X%02.2X-", $kgm_uuid_data[4], $kgm_uuid_data[5]
+ printf "%02.2X%02.2X-", $kgm_uuid_data[6], $kgm_uuid_data[7]
+ printf "%02.2X%02.2X-", $kgm_uuid_data[8], $kgm_uuid_data[9]
+ printf "%02.2X%02.2X%02.2X%02.2X%02.2X%02.2X", $kgm_uuid_data[10], $kgm_uuid_data[11], $kgm_uuid_data[12], $kgm_uuid_data[13], $kgm_uuid_data[14], $kgm_uuid_data[15]
+
+ _unmap_user_data_from_task $kgm_taskp
+
+ printf " "
+ _print_path_for_image $kgm_mh_path_address
+ printf "\n"
+
+ loop_break
+ else
+ _unmap_user_data_from_task $kgm_taskp
+ end
+
+ set $kgm_lc_address = $kgm_lc_address + $kgm_lc_cmd_size
+ set $kgm_lc_idx = $kgm_lc_idx + 1
+ end
+
+ if (!$kgm_uuid_data)
+ # didn't find LC_UUID, for a dylib, just print out basic info
+ if $kgm_mh_64
+ printf "0x%016llx ", $kgm_mh_image_address
+ else
+ printf "0x%08x ", $kgm_mh_image_address
+ end
+ set $kgm_printed_type = 0
+ if $kgm_mh_filetype == 0x2
+ printf "MH_EXECUTE "
+ set $kgm_printed_type = 1
+ end
+ if $kgm_mh_filetype == 0x6
+ printf "MH_DYLIB "
+ set $kgm_printed_type = 1
+ end
+ if $kgm_mh_filetype == 0x7
+ printf "MH_DYLINKER "
+ set $kgm_printed_type = 1
+ end
+ if $kgm_mh_filetype == 0x8
+ printf "MH_BUNDLE "
+ set $kgm_printed_type = 1
+ end
+ if !$kgm_printed_type
+ printf "UNKNOWN "
+ end
+ printf " ",
+
+ printf " "
+ _print_path_for_image $kgm_mh_path_address
+ printf "\n"
+
+ end
+
+end
+
+define _print_images_for_dyld_image_info
+ set $kgm_taskp = $arg0
+ set $kgm_task_64 = $arg1
+ set $kgm_dyld_all_image_infos_address = (unsigned long long)$arg2
+
+ _map_user_data_from_task $kgm_taskp $kgm_dyld_all_image_infos_address 16
+
+ set $kgm_dyld_all_image_infos = (unsigned int *)$kgm_map_user_window
+ if ($kgm_dyld_all_image_infos[0] != 6)
+ printf "Invalid version number %d\n", $kgm_dyld_all_image_infos[0]
+ end
+ set $kgm_image_info_count = $kgm_dyld_all_image_infos[1]
+
+ if $kgm_task_64
+ set $kgm_image_info_size = 24
+ set $kgm_image_info_array_address = ((unsigned long long *)$kgm_dyld_all_image_infos)[1]
+ else
+ set $kgm_image_info_size = 12
+ set $kgm_image_info_array_address = ((unsigned int *)$kgm_dyld_all_image_infos)[2]
+ end
+
+ _unmap_user_data_from_task $kgm_taskp
+
+ set $kgm_image_info_i = 0
+ while $kgm_image_info_i < $kgm_image_info_count
+
+ set $kgm_image_info_address = $kgm_image_info_array_address + $kgm_image_info_size*$kgm_image_info_i
+
+ _map_user_data_from_task $kgm_taskp $kgm_image_info_address $kgm_image_info_size
+ if $kgm_task_64
+ set $kgm_image_info_addr = ((unsigned long long *)$kgm_map_user_window)[0]
+ set $kgm_image_info_path = ((unsigned long long *)$kgm_map_user_window)[1]
+ else
+ set $kgm_image_info_addr = ((unsigned int *)$kgm_map_user_window)[0]
+ set $kgm_image_info_path = ((unsigned int *)$kgm_map_user_window)[1]
+ end
+ _unmap_user_data_from_task $kgm_taskp
+
+ # printf "[%d] = image address %llx path address %llx\n", $kgm_image_info_i, $kgm_image_info_addr, $kgm_image_info_path
+ _print_image_info $kgm_image_info_addr $kgm_image_info_path
+
+ set $kgm_image_info_i = $kgm_image_info_i + 1
+ end
+end
+
+define showuserlibraries
+ set $kgm_taskp = (task_t)$arg0
+ set $kgm_dyld_image_info = $kgm_taskp->all_image_info_addr
+
+ set $kgm_map = $kgm_taskp->map
+ set $kgm_task_64 = ( $kgm_taskp->taskFeatures[0] & 0x80000000)
+
+ if ($kgm_dyld_image_info != 0)
+ printf "address "
+ if $kgm_task_64
+ printf " "
+ end
+ printf " type "
+ printf " uuid "
+ printf "path\n"
+
+ _print_images_for_dyld_image_info $kgm_taskp $kgm_task_64 $kgm_dyld_image_info
+ else
+ printf "No dyld shared library information available for task\n"
+ end
+end
+document showuserlibraries
+Syntax: (gdb) showuserlibraries <task_t>
+| For a given user task, inspect the dyld shared library state and print
+| information about all Mach-O images.
+end
+
+define showkerneldebugheader
+ printf "kd_buf "
+ showptrhdrpad
+ printf "CPU Thread "
+ showptrhdrpad
+ printf "Timestamp S/E Class Sub Code Code Specific Info\n"
+end
+
+define _printevflags
+ if $arg0 & 1
+ printf "EV_RE "
+ end
+ if $arg0 & 2
+ printf "EV_WR "
+ end
+ if $arg0 & 4
+ printf "EV_EX "
+ end
+ if $arg0 & 8
+ printf "EV_RM "
+ end
+
+ if $arg0 & 0x00100
+ printf "EV_RBYTES "
+ end
+ if $arg0 & 0x00200
+ printf "EV_WBYTES "
+ end
+ if $arg0 & 0x00400
+ printf "EV_RCLOSED "
+ end
+ if $arg0 & 0x00800
+ printf "EV_RCONN "
+ end
+ if $arg0 & 0x01000
+ printf "EV_WCLOSED "
+ end
+ if $arg0 & 0x02000
+ printf "EV_WCONN "
+ end
+ if $arg0 & 0x04000
+ printf "EV_OOB "
+ end
+ if $arg0 & 0x08000
+ printf "EV_FIN "
+ end
+ if $arg0 & 0x10000
+ printf "EV_RESET "
+ end
+ if $arg0 & 0x20000
+ printf "EV_TIMEOUT "
+ end
+end
+
+define showkerneldebugbufferentry
+ set $kgm_kdebug_entry = (kd_buf *) $arg0
+
+ set $kgm_debugid = $kgm_kdebug_entry->debugid
+ set $kgm_kdebug_arg1 = $kgm_kdebug_entry->arg1
+ set $kgm_kdebug_arg2 = $kgm_kdebug_entry->arg2
+ set $kgm_kdebug_arg3 = $kgm_kdebug_entry->arg3
+ set $kgm_kdebug_arg4 = $kgm_kdebug_entry->arg4
+
+ if $kgm_lp64
+ set $kgm_kdebug_cpu = $kgm_kdebug_entry->cpuid
+ set $kgm_ts_hi = ($kgm_kdebug_entry->timestamp >> 32) & 0xFFFFFFFF
+ set $kgm_ts_lo = $kgm_kdebug_entry->timestamp & 0xFFFFFFFF
+ else
+ set $kgm_kdebug_cpu = ($kgm_kdebug_entry->timestamp >> 56)
+ set $kgm_ts_hi = ($kgm_kdebug_entry->timestamp >> 32) & 0x00FFFFFF
+ set $kgm_ts_lo = $kgm_kdebug_entry->timestamp & 0xFFFFFFFF
+ end
+
+ set $kgm_kdebug_class = ($kgm_debugid >> 24) & 0x000FF
+ set $kgm_kdebug_subclass = ($kgm_debugid >> 16) & 0x000FF
+ set $kgm_kdebug_code = ($kgm_debugid >> 2) & 0x03FFF
+ set $kgm_kdebug_qual = ($kgm_debugid ) & 0x00003
+
+ if $kgm_kdebug_qual == 0
+ set $kgm_kdebug_qual = '-'
+ else
+ if $kgm_kdebug_qual == 1
+ set $kgm_kdebug_qual = 'S'
+ else
+ if $kgm_kdebug_qual == 2
+ set $kgm_kdebug_qual = 'E'
+ else
+ if $kgm_kdebug_qual == 3
+ set $kgm_kdebug_qual = '?'
+ end
+ end
+ end
+ end
+
+ # preamble and qual
+
+ showptr $kgm_kdebug_entry
+ printf " %d ", $kgm_kdebug_cpu
+ showptr $kgm_kdebug_entry->arg5
+ printf " 0x%08X%08X %c ", $kgm_ts_hi, $kgm_ts_lo, $kgm_kdebug_qual
+
+ # class
+
+ if $kgm_kdebug_class == 1
+ printf "MACH"
+ else
+ if $kgm_kdebug_class == 2
+ printf "NET "
+ else
+ if $kgm_kdebug_class == 3
+ printf "FS "
+ else
+ if $kgm_kdebug_class == 4
+ printf "BSD "
+ else
+ if $kgm_kdebug_class == 5
+ printf "IOK "
+ else
+ if $kgm_kdebug_class == 6
+ printf "DRVR"
+ else
+ if $kgm_kdebug_class == 7
+ printf "TRAC"
+ else
+ if $kgm_kdebug_class == 8
+ printf "DLIL"
+ else
+ if $kgm_kdebug_class == 8
+ printf "SEC "
+ else
+ if $kgm_kdebug_class == 20
+ printf "MISC"
+ else
+ if $kgm_kdebug_class == 31
+ printf "DYLD"
+ else
+ if $kgm_kdebug_class == 32
+ printf "QT "
+ else
+ if $kgm_kdebug_class == 33
+ printf "APPS"
+ else
+ if $kgm_kdebug_class == 255
+ printf "MIG "
+ else
+ printf "0x%02X", $kgm_kdebug_class
+ end
+ end
+ end
+ end
+ end
+ end
+ end
+ end
+ end
+ end
+ end
+ end
+ end
+ end
+
+ # subclass and code
+
+ printf " 0x%02X %5d ", $kgm_kdebug_subclass, $kgm_kdebug_code
+
+ # space for debugid-specific processing
+
+ # EVPROC from bsd/kern/sys_generic.c
+
+ # MISCDBG_CODE(DBG_EVENT,DBG_WAIT)
+ if $kgm_debugid == 0x14100048
+ printf "waitevent "
+ if $kgm_kdebug_arg1 == 1
+ printf "before sleep"
+ else
+ if $kgm_kdebug_arg1 == 2
+ printf "after sleep"
+ else
+ printf "????????????"
+ end
+ end
+ printf " chan=0x%08X ", $kgm_kdebug_arg2
+ else
+ # MISCDBG_CODE(DBG_EVENT,DBG_WAIT|DBG_FUNC_START)
+ if $kgm_debugid == 0x14100049
+ printf "waitevent "
+ else
+ # MISCDBG_CODE(DBG_EVENT,DBG_WAIT|DBG_FUNC_END)
+ if $kgm_debugid == 0x1410004a
+ printf "waitevent error=%d ", $kgm_kdebug_arg1
+ printf "eqp=0x%08X ", $kgm_kdebug_arg4
+ _printevflags $kgm_kdebug_arg3
+ printf "er_handle=%d ", $kgm_kdebug_arg2
+ else
+ # MISCDBG_CODE(DBG_EVENT,DBG_DEQUEUE|DBG_FUNC_START)
+ if $kgm_debugid == 0x14100059
+ printf "evprocdeque proc=0x%08X ", $kgm_kdebug_arg1
+ if $kgm_kdebug_arg2 == 0
+ printf "remove first "
+ else
+ printf "remove 0x%08X ", $kgm_kdebug_arg2
+ end
+ else
+ # MISCDBG_CODE(DBG_EVENT,DBG_DEQUEUE|DBG_FUNC_END)
+ if $kgm_debugid == 0x1410005a
+ printf "evprocdeque "
+ if $kgm_kdebug_arg1 == 0
+ printf "result=NULL "
+ else
+ printf "result=0x%08X ", $kgm_kdebug_arg1
+ end
+ else
+ # MISCDBG_CODE(DBG_EVENT,DBG_POST|DBG_FUNC_START)
+ if $kgm_debugid == 0x14100041
+ printf "postevent "
+ _printevflags $kgm_kdebug_arg1
+ else
+ # MISCDBG_CODE(DBG_EVENT,DBG_POST)
+ if $kgm_debugid == 0x14100040
+ printf "postevent "
+ printf "evq=0x%08X ", $kgm_kdebug_arg1
+ printf "er_eventbits="
+ _printevflags $kgm_kdebug_arg2
+ printf "mask="
+ _printevflags $kgm_kdebug_arg3
+ else
+ # MISCDBG_CODE(DBG_EVENT,DBG_POST|DBG_FUNC_END)
+ if $kgm_debugid == 0x14100042
+ printf "postevent "
+ else
+ # MISCDBG_CODE(DBG_EVENT,DBG_ENQUEUE|DBG_FUNC_START)
+ if $kgm_debugid == 0x14100055
+ printf "evprocenque eqp=0x%08d ", $kgm_kdebug_arg1
+ if $kgm_kdebug_arg2 & 1
+ printf "EV_QUEUED "
+ end
+ _printevflags $kgm_kdebug_arg3
+ else
+
+ # MISCDBG_CODE(DBG_EVENT,DBG_EWAKEUP)
+ if $kgm_debugid == 0x14100050
+ printf "evprocenque before wakeup eqp=0x%08d ", $kgm_kdebug_arg4
+ else
+ # MISCDBG_CODE(DBG_EVENT,DBG_ENQUEUE|DBG_FUNC_END)
+ if $kgm_debugid == 0x14100056
+ printf "evprocenque "
+ else
+ # MISCDBG_CODE(DBG_EVENT,DBG_MOD|DBG_FUNC_START)
+ if $kgm_debugid == 0x1410004d
+ printf "modwatch "
+ else
+ # MISCDBG_CODE(DBG_EVENT,DBG_MOD)
+ if $kgm_debugid == 0x1410004c
+ printf "modwatch er_handle=%d ", $kgm_kdebug_arg1
+ _printevflags $kgm_kdebug_arg2
+ printf "evq=0x%08X ", $kgm_kdebug_arg3
+ else
+ # MISCDBG_CODE(DBG_EVENT,DBG_MOD|DBG_FUNC_END)
+ if $kgm_debugid == 0x1410004e
+ printf "modwatch er_handle=%d ", $kgm_kdebug_arg1
+ printf "ee_eventmask="
+ _printevflags $kgm_kdebug_arg2
+ printf "sp=0x%08X ", $kgm_kdebug_arg3
+ printf "flag="
+ _printevflags $kgm_kdebug_arg4
+ else
+ printf "arg1=0x%08X ", $kgm_kdebug_arg1
+ printf "arg2=0x%08X ", $kgm_kdebug_arg2
+ printf "arg3=0x%08X ", $kgm_kdebug_arg3
+ printf "arg4=0x%08X ", $kgm_kdebug_arg4
+ end
+ end
+ end
+ end
+ end
+ end
+ end
+ end
+ end
+ end
+ end
+ end
+ end
+ end
+
+ # finish up
+
+ printf "\n"
+end
+
+define showkerneldebugbuffercpu
+ set $kgm_cpu_number = (int) $arg0
+ set $kgm_entry_count = (int) $arg1
+ set $kgm_debugentriesfound = 0
+
+ #if kdebug_flags & KDBG_BFINIT
+ if (kdebug_flags & 0x80000000)
+ showkerneldebugheader
+
+ if $kgm_entry_count == 0
+ printf "<count> is 0, dumping 50 entries\n"
+ set $kgm_entry_count = 50
+ end
+
+ if $kgm_cpu_number >= kd_cpus
+ printf "cpu number too big\n"
+ else
+ set $kgm_kdbp = &kdbip[$kgm_cpu_number]
+ set $kgm_kdsp = $kgm_kdbp->kd_list_head
+ while (($kgm_kdsp != 0) && ($kgm_entry_count > 0))
+ if $kgm_kdsp->kds_readlast != $kgm_kdsp->kds_bufptr
+ set $kgm_kds_bufptr = $kgm_kdsp->kds_bufptr
+ while (($kgm_kds_bufptr > $kgm_kdsp->kds_readlast) && ($kgm_entry_count > 0))
+ set $kgm_kds_bufptr = $kgm_kds_bufptr - 1
+ set $kgm_entry_count = $kgm_entry_count - 1
+ showkerneldebugbufferentry $kgm_kds_bufptr
+ end
+ end
+ set $kgm_kdsp = $kgm_kdsp->kds_next
+ end
+ end
+ else
+ printf "Trace buffer not enabled\n"
+ end
+end
+
+document showkerneldebugbuffercpu
+Syntax: showkerneldebugbuffercpu <cpu> <count>
+| Prints the last N entries in the kernel debug buffer for CPU x.
+end
+
+define showkerneldebugbuffer
+
+ #if kdebug_flags & KDBG_BFINIT
+ if (kdebug_flags & 0x80000000)
+
+ set $kgm_entrycount = (int) $arg0
+
+ if $kgm_entrycount == 0
+ printf "<count> is 0, dumping 50 entries per cpu\n"
+ set $kgm_entrycount = 50
+ end
+
+ set $kgm_cpu = (int) 0
+
+ while $kgm_cpu < kd_cpus
+ showkerneldebugbuffercpu $kgm_cpu $kgm_entrycount
+ set $kgm_cpu = $kgm_cpu + 1
+ end
+ else
+ printf "Trace buffer not enabled\n"
+ end
+end
+
+document showkerneldebugbuffer
+Syntax: showkerneldebugbuffer <count>
+| Prints the last N entries in the kernel debug buffer per cpu. i.e. showkerneldebugbuffer 50 will
+| display the last 50 entries in each CPU's debug buffer.
+end
+
+define showallvmstats
+ printf " pid command #ents wired vsize rsize max rsize\n"
+ printf " (pages) (pages) (pages) (pages)\n"
+ set $kgm_head_taskp = &tasks
+ set $kgm_taskp = (struct task *)($kgm_head_taskp->next)
+ while $kgm_taskp != $kgm_head_taskp
+ set $kgm_procp = (struct proc *)($kgm_taskp->bsd_info)
+ set $kgm_mapp = (struct _vm_map *)($kgm_taskp->map)
+ printf "%8d %17s %8d %15d %15d %15d %15d\n", $kgm_procp->p_pid, $kgm_procp->p_comm, $kgm_mapp->hdr.nentries, $kgm_mapp->pmap->stats.wired_count, $kgm_mapp->size >> 12, $kgm_mapp->pmap->stats.resident_count, $kgm_mapp->pmap->stats.resident_max
+ set $kgm_taskp = (struct task *)($kgm_taskp->tasks.next)
+ end
+end
+
+document showallvmstats
+Syntax: showallvmstats
+| prints a summary of vm statistics in a table format
+end
+
+define show_user_registers
+ if (($kgm_mtype & $kgm_mtype_x86_mask) == $kgm_mtype_x86_any)
+ set $kgm_thread = (thread_t)$arg0
+ if ((*(thread_t)$kgm_thread)->machine.xxx_pcb.iss.flavor == 15)
+ p/x ($kgm_thread)->machine.xxx_pcb.iss->uss.ss_64
+ else
+ p/x ($kgm_thread)->machine.xxx_pcb.iss->uss.ss_32
+ end
+ end
+ if ($kgm_mtype == $kgm_mtype_ppc)
+ set $kgm_thread = (thread_t)$arg0
+ p/x *($kgm_thread)->machine.pcb
+ end
+end
+
+document show_user_registers
+Syntax: show_user_registers <thread_address>
+| Display user registers associated with a kernel thread
+| properly displays the 32 bit or 64 bit registers for intel architecture
+end
+
+define _cmp
+ set $cmp0 = $arg0
+ set $cmp1 = $arg1
+
+ # check for end of string. cmp0 can be longer than cmp1. it
+ # can't be shorter.
+ if $cmp1 == '\0'
+ set $kgm_strcmp_result = 0
+ set $kgm_strcmp_done = 1
+ end
+
+ if !$kgm_strcmp_done && $cmp0 == '\0'
+ set $kgm_strcmp_result = -1
+ set $kgm_strcmp_done = 1
+ end
+
+ # do they match?
+ if !$kgm_strcmp_done
+ set $kgm_strcmp_result = (uint8_t) $cmp0 - (uint8_t) $cmp1
+ if $kgm_strcmp_result != 0
+ set $kgm_strcmp_done = 1
+ end
+ end
+end
+
+define _cmp_arg64
+ set $cmp = $arg1
+ set $masked = $cmp & 0xFF
+ _cmp $arg0[0] $masked
+
+ if !$kgm_strcmp_done
+ set $cmp = $cmp >> 8
+ set $masked = $cmp & 0xFF
+ _cmp $arg0[1] $masked
+ end
+ if !$kgm_strcmp_done
+ set $cmp = $cmp >> 8
+ set $masked = $cmp & 0xFF
+ _cmp $arg0[2] $masked
+ end
+ if !$kgm_strcmp_done
+ set $cmp = $cmp >> 8
+ set $masked = $cmp & 0xFF
+ _cmp $arg0[3] $masked
+ end
+ if !$kgm_strcmp_done
+ set $cmp = $cmp >> 8
+ set $masked = $cmp & 0xFF
+ _cmp $arg0[4] $masked
+ end
+ if !$kgm_strcmp_done
+ set $cmp = $cmp >> 8
+ set $masked = $cmp & 0xFF
+ _cmp $arg0[5] $masked
+ end
+ if !$kgm_strcmp_done
+ set $cmp = $cmp >> 8
+ set $masked = $cmp & 0xFF
+ _cmp $arg0[6] $masked
+ end
+ if !$kgm_strcmp_done
+ set $cmp = $cmp >> 8
+ set $masked = $cmp & 0xFF
+ _cmp $arg0[7] $masked
+ end
+end
+
+define strcmp_arg_pack64
+ set $kgm_strcmp_arg = ((((((((((((((uint64_t) $arg7 << 8) | $arg6) << 8) | $arg5) << 8) | $arg4) << 8) | $arg3) << 8) | $arg2) << 8) | $arg1) << 8) | $arg0
+end
+
+document strcmp_arg_pack64
+Syntax: strcmp_arg_pack64 <a> <b> <c> <d> <e <f> <g> <h>
+| Packs a string given as 8 character arguments into a 64-bit int stored in
+| $kgm_strcmp_arg. Use 0 or '\0' for unused arguments. The encoded string
+| is suitable for use by strcmp_nomalloc and setfindregistrystr.
+| e.g., strcmp_arg_pack64 'H' 'e' 'l' 'l' 'o' 0 0 0
+| packs "Hello" into $kgm_strcmp_arg.
+|
+end
+
+define strcmp_nomalloc
+ set $str = $arg0
+ set $count = $argc - 1
+
+ set $kgm_strcmp_result = 0
+ set $kgm_strcmp_done = 0
+
+ if $count > 0
+ _cmp_arg64 $str $arg1
+ end
+ if !$kgm_strcmp_done && $count > 1
+ set $str = $str + 8
+ _cmp_arg64 $str $arg2
+ end
+ if !$kgm_strcmp_done && $count > 2
+ set $str = $str + 8
+ _cmp_arg64 $str $arg3
+ end
+ if !$kgm_strcmp_done && $count > 3
+ set $str = $str + 8
+ _cmp_arg64 $str $arg4
+ end
+ if !$kgm_strcmp_done && $count > 4
+ set $str = $str + 8
+ _cmp_arg64 $str $arg5
+ end
+ if !$kgm_strcmp_done && $count > 5
+ set $str = $str + 8
+ _cmp_arg64 $str $arg6
+ end
+ if !$kgm_strcmp_done && $count > 6
+ set $str = $str + 8
+ _cmp_arg64 $str $arg7
+ end
+ if !$kgm_strcmp_done && $count > 7
+ set $str = $str + 8
+ _cmp_arg64 $str $arg8
+ end
+ if !$kgm_strcmp_done && $count > 8
+ set $str = $str + 8
+ _cmp_arg64 $str $arg9
+ end
+end
+
+document strcmp_nomalloc
+Syntax: strcmp_nomalloc <string> <a> [b] [c] [d] [e] [f] [g] [h] [i]
+| Given a pre-allocated <string>, perform a string compare with the
+| encoded string stored in arguments a - i. The result is stored in
+| $kgm_strcmp_result.
+|
+| For example, the following will result in $kgm_strcmp_result == 0:
+| strcmp_arg_pack64 'D' 'a' 'r' 'w' 'i' 'n' ' ' 'K'
+| strcmp_nomalloc version $kgm_strcmp_arg
+end
+
+# _pci_cfg_addr_value $addr $size
+define _pci_cfg_addr_value
+ readphysint $arg0 $arg1 $kgm_lcpu_self
+ set $kgm_pci_cfg_value = $kgm_readphysint_result
+end
+
+
+set $kgm_pci_cfg_init = 0
+define _pci_cfg_init
+ # get this from the registry if it exists there
+ if $kgm_pci_cfg_init == 0
+ strcmp_arg_pack64 'A' 'p' 'p' 'l' 'e' 'A' 'C' 'P'
+ set $AppleACP = $kgm_strcmp_arg
+ strcmp_arg_pack64 'I' 'P' 'l' 'a' 't' 'f' 'o' 'r'
+ set $IPlatfor = $kgm_strcmp_arg
+ strcmp_arg_pack64 'm' 'E' 'x' 'p' 'e' 'r' 't' 0
+ set $mExpert = $kgm_strcmp_arg
+ setfindregistrystr $AppleACP $IPlatfor $mExpert
+
+ set $olddepth = $kgm_reg_depth_max
+ set $kgm_reg_depth_max = 2
+ _findregistryentry
+ set $kgm_reg_depth_max = $olddepth
+
+ if $kgm_registry_entry
+ strcmp_arg_pack64 'a' 'c' 'p' 'i' '-' 'm' 'm' 'c'
+ set $acpi_mmc = $kgm_strcmp_arg
+ strcmp_arg_pack64 'f' 'g' '-' 's' 'e' 'g' '0' 0
+ set $fg_seg0 = $kgm_strcmp_arg
+ setfindregistrystr $acpi_mmc $fg_seg0
+
+ _findregistryprop $kgm_registry_entry
+ if $kgm_registry_value
+ set $kgm_pci_cfg_base = ((OSNumber *) $kgm_registry_value)->value
+ set $kgm_pci_cfg_init = 1
+ end
+ end
+ end
+
+ # if the above fails, search for 0:0:0 in likely places.
+ if $kgm_pci_cfg_init == 0
+ set $kgm_pci_cfg_base = 0xF0000000
+ while $kgm_pci_cfg_init == 0 && $kgm_pci_cfg_base > 0xA0000000
+ _pci_cfg_addr_value $kgm_pci_cfg_base 8
+ if $kgm_pci_cfg_value > 0x0 && $kgm_pci_cfg_value < 0xFF
+ set $kgm_pci_cfg_init = 1
+ else
+ set $kgm_pci_cfg_base = $kgm_pci_cfg_base - 0x10000000
+ end
+ end
+ end
+end
+
+# _pci_cfg_addr $bus $dev $fcn $off
+define _pci_cfg_addr
+ set $bus = $arg0
+ set $dev = $arg1
+ set $fcn = $arg2
+ set $off = $arg3
+
+ _pci_cfg_init
+ set $kgm_pci_cfg_addr = $kgm_pci_cfg_base | ($bus << 20) | ($dev << 15) | ($fcn << 12) | $off
+end
+
+define _pci_cfg_value
+ _pci_cfg_addr $arg0 $arg1 $arg2 $arg3
+ _pci_cfg_addr_value $kgm_pci_cfg_addr $arg4
+end
+
+define pci_cfg_read8
+ _pci_cfg_value $arg0 $arg1 $arg2 $arg3 8
+ printf "%08X: %02X\n", $kgm_pci_cfg_addr, $kgm_pci_cfg_value
+end
+
+define pci_cfg_read16
+ _pci_cfg_value $arg0 $arg1 $arg2 $arg3 16
+ printf "%08X: %04X\n", $kgm_pci_cfg_addr, $kgm_pci_cfg_value
+end
+
+define pci_cfg_read32
+ _pci_cfg_value $arg0 $arg1 $arg2 $arg3 32
+ printf "%08X: %08X\n", $kgm_pci_cfg_addr, $kgm_pci_cfg_value
+end
+
+document pci_cfg_read8
+Syntax: (gdb) pci_cfg_read8 <bus> <dev> <fcn> <off>
+| read 8 bits for the given <off> of the pci device located at
+| <bus>:<dev>:<fcn>.
+end
+
+document pci_cfg_read16
+Syntax: (gdb) pci_cfg_read <bus> <dev> <fcn> <off>
+| read 16 bits for the given <off> of the pci device located at
+| <bus>:<dev>:<fcn>.
+end
+
+document pci_cfg_read32
+Syntax: (gdb) pci_cfg_read <bus> <dev> <fcn> <off>
+| read 32 bits for the given <off> of the pci device located at
+| <bus>:<dev>:<fcn>.
+end
+
+define pci_cfg_write8
+ _pci_cfg_addr $arg0 $arg1 $arg2 $arg3
+ writephysint $kgm_pci_cfg_addr 8 $arg4 $kgm_lcpu_self
+end
+
+define pci_cfg_write16
+ _pci_cfg_addr $arg0 $arg1 $arg2 $arg3
+ writephysint $kgm_pci_cfg_addr 16 $arg4 $kgm_lcpu_self
+end
+
+define pci_cfg_write32
+ _pci_cfg_addr $arg0 $arg1 $arg2 $arg3
+ writephysint $kgm_pci_cfg_addr 32 $arg4 $kgm_lcpu_self
+end
+
+document pci_cfg_write8
+Syntax: (gdb) pci_cfg_write8 <bus> <dev> <fcn> <off> <value>
+| write an 8-bit <value> into the given <off> of the pci device located at
+| <bus>:<dev>:<fcn>.
+end
+
+document pci_cfg_write16
+Syntax: (gdb) pci_cfg_write16 <bus> <dev> <fcn> <off> <value>
+| write a 16-bit <value> into the given <off> of the pci device located at
+| <bus>:<dev>:<fcn>.
+end
+
+document pci_cfg_write32
+Syntax: (gdb) pci_cfg_write32 <bus> <dev> <fcn> <off> <value>
+| write a 32-bit <value> into the given <off> of the pci device located at
+| <bus>:<dev>:<fcn>.
+end
+
+
+define pci_cfg_dump
+ set $bus = $arg0
+ set $dev = $arg1
+ set $fcn = $arg2
+ set $off = 0
+
+ # check for a valid pci device
+ _pci_cfg_value $bus $dev $fcn $off 8
+ if $kgm_pci_cfg_value > 0x0 && $kgm_pci_cfg_value < 0xff
+ printf " address: 00 01 02 03 04 05 06 07 08 09 0A 0B 0C 0D 0E 0F\n"
+ printf "---------------------------------------------------------"
+
+ while $off < 256
+ _pci_cfg_value $bus $dev $fcn $off 32
+ if ($off & 0xF) == 0
+ printf "\n%08X: ", $kgm_pci_cfg_addr
+ end
+ printf "%02X %02X %02X %02X ", $kgm_pci_cfg_value & 0xFF, ($kgm_pci_cfg_value >> 8) & 0xFF, ($kgm_pci_cfg_value >> 16) & 0xFF, ($kgm_pci_cfg_value >> 24) & 0xFF
+ set $off = $off + 4
+ end
+ printf "\n"
+
+ # check for pcie extended capability config space
+ _pci_cfg_value $bus $dev $fcn $off 8
+ if $kgm_pci_cfg_value < 0xff
+ while $off < 4096
+ _pci_cfg_value $bus $dev $fcn $off 32
+ if ($off & 0xF) == 0
+ printf "\n%08X: ", $kgm_pci_cfg_addr
+ end
+ printf "%02X %02X %02X %02X ", $kgm_pci_cfg_value & 0xFF, ($kgm_pci_cfg_value >> 8) & 0xFF, ($kgm_pci_cfg_value >> 16) & 0xFF, ($kgm_pci_cfg_value >> 24) & 0xFF
+ set $off = $off + 4
+ end
+ printf "\n"
+ end
+ end
+end
+
+document pci_cfg_dump
+Syntax: (gdb) pci_cfg_dump <bus> <dev> <fcn>
+| dump config space for the pci device located at <bus>:<dev>:<fcn>
+| if you specify an invalid/inaccessible pci device, nothing will be
+| printed out.
+end
+
+set $kgm_pci_cfg_bus_start = 0
+set $kgm_pci_cfg_bus_max = 8
+set $kgm_pci_cfg_device_max = 32
+set $kgm_pci_cfg_function_max = 8
+define _pci_cfg_scan
+ set $dump = $arg0
+
+ set $bus = $kgm_pci_cfg_bus_start
+ while $bus < $kgm_pci_cfg_bus_max
+ # check for bus:0:0 to see if we should
+ # probe this bus further
+ _pci_cfg_value $bus 0x0 0x0 0x0 32
+ if $kgm_pci_cfg_value > 0 && $kgm_pci_cfg_value < 0xFFFFFFFF
+
+ set $dev = 0
+ while $dev < $kgm_pci_cfg_device_max
+
+ set $fcn = 0
+ while $fcn < $kgm_pci_cfg_function_max
+ _pci_cfg_value $bus $dev $fcn 0x0 32
+ if $kgm_pci_cfg_value > 0 && $kgm_pci_cfg_value < 0xFFFFFFFF
+ if $dump == 0
+ printf "%03X:%03X:%03X: %02X%02X %02X%02X", $bus, $dev, $fcn, ($kgm_pci_cfg_value >> 8) & 0xFF, $kgm_pci_cfg_value & 0xFF, ($kgm_pci_cfg_value >> 24) & 0xFF, ($kgm_pci_cfg_value >> 16) & 0xFF
+ _pci_cfg_value $bus $dev $fcn 0x8 32
+ printf " %02X | %02X%02X%02X\n", $kgm_pci_cfg_value & 0xFF, ($kgm_pci_cfg_value >> 24) & 0xFF, ($kgm_pci_cfg_value >> 16) & 0xFF, ($kgm_pci_cfg_value >> 8) & 0xFF
+ else
+ printf " device: %03X:%03X:%03X\n", $bus, $dev, $fcn
+ pci_cfg_dump $bus $dev $fcn
+ printf "\n"
+ end
+ end
+ set $fcn = $fcn + 1
+ end
+ set $dev = $dev + 1
+ end
+ end
+ set $bus = $bus + 1
+ end
+end
+
+define pci_cfg_dump_all
+ _pci_cfg_scan 1
+end
+
+document pci_cfg_dump_all
+Syntax: (gdb) pci_cfg_dump_all
+| dump config spaces for scanned pci devices. the number of busses to scan
+| is stored in $kgm_pci_cfg_bus_max. the default for that is 8. you can also
+| specify the starting bus with $kgm_pci_cfg_bus_start.
+end
+
+define pci_cfg_scan
+ printf "bus:dev:fcn: vendor device rev | class\n"
+ printf "---------------------------------------\n"
+ _pci_cfg_scan 0
+end
+
+document pci_cfg_scan
+Syntax: (gdb) pci_cfg_scan
+| scan for pci devices. the number of busses to scan is stored in
+| $kgm_pci_cfg_bus_max. the default for that is 8. you can also specify the
+| starting bus with $kgm_pci_cfg_bus_start.
+end
+
+define readioportint
+ set $kgm_readioportint_result = 0xBAD10AD
+ # set up the manual KDP packet
+ set manual_pkt.input = 0
+ set manual_pkt.len = sizeof(kdp_readioport_req_t)
+ set $kgm_pkt = (kdp_readioport_req_t *)&manual_pkt.data
+ set $kgm_pkt->hdr.request = KDP_READIOPORT
+ set $kgm_pkt->hdr.len = sizeof(kdp_readioport_req_t)
+ set $kgm_pkt->hdr.is_reply = 0
+ set $kgm_pkt->hdr.seq = 0
+ set $kgm_pkt->hdr.key = 0
+ set $kgm_pkt->address = (uint16_t)$arg0
+ set $kgm_pkt->nbytes = $arg1 >> 3
+ set $kgm_pkt->lcpu = (uint16_t)$arg2
+ set manual_pkt.input = 1
+ # dummy to make sure manual packet is executed
+ set $kgm_dummy = &_mh_execute_header
+ set $kgm_pkt = (kdp_readioport_reply_t *)&manual_pkt.data
+ if ($kgm_pkt->error == 0)
+ if $arg1 == 8
+ set $kgm_readioportint_result = *((uint8_t *) $kgm_pkt->data)
+ end
+ if $arg1 == 16
+ set $kgm_readioportint_result = *((uint16_t *) $kgm_pkt->data)
+ end
+ if $arg1 == 32
+ set $kgm_readioportint_result = *((uint32_t *) $kgm_pkt->data)
+ end
+ end
+end
+
+define readioport8
+ set $lcpu = $kgm_lcpu_self
+ if $argc > 1
+ set $lcpu = $arg1
+ end
+ readioportint $arg0 8 $lcpu
+ output /a $arg0
+ printf ":\t0x%02hhx\n", $kgm_readioportint_result
+end
+
+define readioport16
+ set $lcpu = $kgm_lcpu_self
+ if $argc > 1
+ set $lcpu = $arg1
+ end
+ readioportint $arg0 16 $lcpu
+ output /a $arg0
+ printf ":\t0x%04hx\n", $kgm_readioportint_result
+end
+
+define readioport32
+ set $lcpu = $kgm_lcpu_self
+ if $argc > 1
+ set $lcpu = $arg1
+ end
+ readioportint $arg0 32 $lcpu
+ output /a $arg0
+ printf ":\t0x%08x\n", $kgm_readioportint_result
+end
+
+document readioport8
+| See readioport32.
+end
+
+document readioport16
+| See readioport32.
+end
+
+document readioport32
+Syntax: (gdb) readioport32 <port> [lcpu (kernel's numbering convention)]
+| Read value stored in the specified IO port. The CPU can be optionally
+| specified as well.
+end
+
+define writeioportint
+ # set up the manual KDP packet
+ set manual_pkt.input = 0
+ set manual_pkt.len = sizeof(kdp_writeioport_req_t)
+ set $kgm_pkt = (kdp_writeioport_req_t *)&manual_pkt.data
+ set $kgm_pkt->hdr.request = KDP_WRITEIOPORT
+ set $kgm_pkt->hdr.len = sizeof(kdp_writeioport_req_t)
+ set $kgm_pkt->hdr.is_reply = 0
+ set $kgm_pkt->hdr.seq = 0
+ set $kgm_pkt->hdr.key = 0
+ set $kgm_pkt->address = (uint16_t)$arg0
+ set $kgm_pkt->nbytes = $arg1 >> 3
+ set $kgm_pkt->lcpu = (uint16_t)$arg3
+ if $arg1 == 8
+ set *(uint8_t *)$kgm_pkt->data = (uint8_t)$arg2
+ end
+ if $arg1 == 16
+ set *(uint16_t *)$kgm_pkt->data = (uint16_t)$arg2
+ end
+ if $arg1 == 32
+ set *(uint32_t *)$kgm_pkt->data = (uint32_t)$arg2
+ end
+ set manual_pkt.input = 1
+ # dummy to make sure manual packet is executed
+ set $kgm_dummy = &_mh_execute_header
+ set $kgm_pkt = (kdp_writeioport_reply_t *)&manual_pkt.data
+ set $kgm_writeioportint_result = $kgm_pkt->error
+end
+
+define writeioport8
+ set $lcpu = $kgm_lcpu_self
+ if $argc > 2
+ set $lcpu = $arg2
+ end
+ writeioportint $arg0 8 $arg1 $lcpu
+end
+
+define writeioport16
+ set $lcpu = $kgm_lcpu_self
+ if $argc > 2
+ set $lcpu = $arg2
+ end
+ writeioportint $arg0 16 $arg1 $lcpu
+end
+
+define writeioport32
+ set $lcpu = $kgm_lcpu_self
+ if $argc > 2
+ set $lcpu = $arg2
+ end
+ writeioportint $arg0 32 $arg1 $lcpu
+end
+
+document writeioport8
+| See writeioport32.
+end
+
+document writeioport16
+| See writeioport32.
+end
+
+document writeioport32
+Syntax: (gdb) writeioport32 <port> <value> [lcpu (kernel's numbering convention)]
+| Write the value to the specified IO port. The size of the value is
+| determined by the name of the command. The CPU used can be optionally
+| specified.
+end
+
+define readmsr64int
+ set $kgm_readmsr64int_result = 0xBAD10AD
+ # set up the manual KDP packet
+ set manual_pkt.input = 0
+ set manual_pkt.len = sizeof(kdp_readmsr64_req_t)
+ set $kgm_pkt = (kdp_readmsr64_req_t *)&manual_pkt.data
+ set $kgm_pkt->hdr.request = KDP_READMSR64
+ set $kgm_pkt->hdr.len = sizeof(kdp_readmsr64_req_t)
+ set $kgm_pkt->hdr.is_reply = 0
+ set $kgm_pkt->hdr.seq = 0
+ set $kgm_pkt->hdr.key = 0
+ set $kgm_pkt->address = (uint32_t)$arg0
+ set $kgm_pkt->lcpu = (uint16_t)$arg1
+ set manual_pkt.input = 1
+ # dummy to make sure manual packet is executed
+ set $kgm_dummy = &_mh_execute_header
+ set $kgm_pkt = (kdp_readmsr64_reply_t *)&manual_pkt.data
+ if ($kgm_pkt->error == 0)
+ set $kgm_readmsr64int_result = *((uint64_t *) $kgm_pkt->data)
+ end
+end
+
+define readmsr64
+ set $lcpu = $kgm_lcpu_self
+ if $argc > 1
+ set $lcpu = $arg1
+ end
+ readmsr64int $arg0 $lcpu
+ output /a $arg0
+ printf ":\t0x%016llx\n", $kgm_readmsr64int_result
+end
+
+define writemsr64int
+ # set up the manual KDP packet
+ set manual_pkt.input = 0
+ set manual_pkt.len = sizeof(kdp_writemsr64_req_t)
+ set $kgm_pkt = (kdp_writemsr64_req_t *)&manual_pkt.data
+ set $kgm_pkt->hdr.request = KDP_WRITEMSR64
+ set $kgm_pkt->hdr.len = sizeof(kdp_writemsr64_req_t)
+ set $kgm_pkt->hdr.is_reply = 0
+ set $kgm_pkt->hdr.seq = 0
+ set $kgm_pkt->hdr.key = 0
+ set $kgm_pkt->address = (uint32_t)$arg0
+ set $kgm_pkt->lcpu = (uint16_t)$arg2
+ set *(uint64_t *)$kgm_pkt->data = (uint64_t)$arg1
+ set manual_pkt.input = 1
+ # dummy to make sure manual packet is executed
+ set $kgm_dummy = &_mh_execute_header
+ set $kgm_pkt = (kdp_writemsr64_reply_t *)&manual_pkt.data
+ set $kgm_writemsr64int_result = $kgm_pkt->error
+end
+
+define writemsr64
+ set $lcpu = $kgm_lcpu_self
+ if $argc > 2
+ set $lcpu = $arg2
+ end
+ writemsr64int $arg0 $arg1 $lcpu
+end
+
+document writemsr64
+Syntax: (gdb) writemsr64 <msr> <value> [lcpu (kernel's numbering convention)]
+| Write <value> to the specified MSR. The CPU can be optionally specified.
+end
+
+document readmsr64
+Syntax: (gdb) readmsr64 <msr> [lcpu (kernel's numbering convention)]
+| Read the specified MSR. The CPU can be optionally specified.
+end
+
+# default if we can't find a registry entry
+set $kgm_ioapic_addr = 0xFEC00000
+set $kgm_ioapic_init = 0
+
+set $_ioapic_index_off = 0x00
+set $_ioapic_data_off = 0x10
+set $_ioapic_eoi_off = 0x40
+
+set $_ioapic_index_id = 0x00
+set $_ioapic_index_ver = 0x01
+set $_ioapic_index_redir_base = 0x10
+
+set $_apic_vector_mask = 0xFF
+set $_apic_masked = 0x10000
+set $_apic_trigger_level = 0x08000
+set $_apic_polarity_high = 0x02000
+set $_apic_pending = 0x01000
+
+define _ioapic_init
+ if $kgm_ioapic_init == 0
+ strcmp_arg_pack64 'i' 'o' '-' 'a' 'p' 'i' 'c' 0
+ setfindregistrystr $kgm_strcmp_arg
+
+ set $olddepth = $kgm_reg_depth_max
+ set $kgm_reg_depth_max = 3
+ _findregistryentry
+ set $kgm_reg_depth_max = $olddepth
+
+ if $kgm_registry_entry
+ strcmp_arg_pack64 'P' 'h' 'y' 's' 'i' 'c' 'a' 'l'
+ set $Physical = $kgm_strcmp_arg
+ strcmp_arg_pack64 ' ' 'A' 'd' 'd' 'r' 'e' 's' 's'
+ set $_Address = $kgm_strcmp_arg
+ setfindregistrystr $Physical $_Address
+
+ _findregistryprop $kgm_registry_entry
+ if $kgm_registry_value
+ set $kgm_ioapic_addr = ((OSNumber *) $kgm_registry_value)->value
+ end
+ end
+ set $kgm_ioapic_index_addr = $kgm_ioapic_addr + $_ioapic_index_off
+ set $kgm_ioapic_data_addr = $kgm_ioapic_addr + $_ioapic_data_off
+ set $kgm_ioapic_init = 1
+ end
+end
+
+define _ioapic_addr_value
+ _ioapic_init
+ writephysint $kgm_ioapic_index_addr 8 $arg0 $kgm_lcpu_self
+ if $argc > 1
+ writephysint $kgm_ioapic_data_addr 32 $arg1 $kgm_lcpu_self
+ else
+ readphysint $kgm_ioapic_data_addr 32 $kgm_lcpu_self
+ set $kgm_ioapic_value = $kgm_readphysint_result
+ end
+end
+
+define _apic_print
+ set $value = $arg0
+
+ printf "[VEC=%3d ", $value & $_apic_vector_mask
+ if $value & $_apic_masked
+ printf "MASK=yes "
+ else
+ printf "MASK=no "
+ end
+
+ if $value & $_apic_trigger_level
+ printf "TRIG=level "
+ else
+ printf "TRIG=edge "
+ end
+
+ if $value & $_apic_polarity_high
+ printf "POL=high"
+ else
+ printf "POL=low "
+ end
+
+ if $value & $_apic_pending
+ printf " PEND=yes]\n"
+ else
+ printf " PEND=no ]\n"
+ end
+end
+
+define ioapic_read32
+ if (($kgm_mtype & $kgm_mtype_x86_mask) != $kgm_mtype_x86_any)
+ printf "ioapic_read32 not supported on this architecture.\n"
+ else
+ _ioapic_addr_value $arg0
+ printf "IOAPIC[0x%02X]: 0x%08X\n", $arg0, $kgm_ioapic_value
+ end
+end
+
+document ioapic_read32
+Syntax: (gdb) ioapic_read <offset>
+| Read the IOAPIC register at the offset specified.
+end
+
+define ioapic_write32
+ if (($kgm_mtype & $kgm_mtype_x86_mask) != $kgm_mtype_x86_any)
+ printf "ioapic_write32 not supported on this architecture.\n"
+ else
+ _ioapic_addr_value $arg0 $arg1
+ end
+end
+
+document ioapic_write32
+Syntax: (gdb) ioapic_write32 <offset> <value>
+| Write the IOAPIC register at the offset specified.
+end
+
+define ioapic_dump
+ if (($kgm_mtype & $kgm_mtype_x86_mask) != $kgm_mtype_x86_any)
+ printf "ioapic_dump not supported on this architecture.\n"
+ else
+ # id
+ _ioapic_addr_value $_ioapic_index_id
+ printf "IOAPIC[0x%02X] ID: 0x%08X\n", $_ioapic_index_id, $kgm_ioapic_value
+
+ # version
+ _ioapic_addr_value $_ioapic_index_ver
+ set $maxredir = (($kgm_ioapic_value & 0xFF0000) >> 16) + 1
+
+ printf "IOAPIC[0x%02X] VERSION: 0x%08X [", $_ioapic_index_ver, $kgm_ioapic_value
+ printf "MAXREDIR=%02d PRQ=%d VERSION=0x%02X]\n", $maxredir, ($kgm_ioapic_value >> 15) & 0x1, $kgm_ioapic_value & 0xFF
+
+ # all the redir entries
+ set $i = 0
+ while $i < $maxredir
+ set $addr0 = $_ioapic_index_redir_base + ($i << 1)
+ set $addr1 = $addr0 + 1
+ _ioapic_addr_value $addr1
+ printf "IOAPIC[0x%02X] IOREDIR%02d: 0x%08X", $addr0, $i, $kgm_ioapic_value
+
+ _ioapic_addr_value $addr0
+ printf "%08X ", $kgm_ioapic_value
+ _apic_print $kgm_ioapic_value
+ set $i = $i + 1
+ end
+ end
+end
+
+document ioapic_dump
+Syntax: (gdb) ioapic_dump
+| Dump all the IOAPIC entries.
+end
+
+
+set $_lapic_base_addr = 0xFEE00000
+set $_lapic_id = 0x20
+set $_lapic_version = 0x30
+set $_lapic_tpr = 0x80
+set $_lapic_apr = 0x90
+set $_lapic_ppr = 0xA0
+set $_lapic_eoi = 0xB0
+set $_lapic_ldr = 0xD0
+set $_lapic_dfr = 0xE0
+set $_lapic_sivr = 0xF0
+
+set $_lapic_isr_size = 0x10
+set $_lapic_isr_num = 8
+set $_lapic_isr0 = 0x100
+set $_lapic_tmr0 = 0x180
+set $_lapic_irr0 = 0x200
+
+set $_lapic_esr = 0x280
+set $_lapic_esr_register = 0x80
+set $_lapic_esr_recv_vect = 0x40
+set $_lapic_esr_send_vect = 0x20
+
+set $_lapic_icr0 = 0x300
+set $_lapic_icr1 = 0x310
+
+set $_lapic_lvt_timer = 0x320
+set $_lapic_lvt_thermal = 0x330
+set $_lapic_lvt_pmcr = 0x340
+set $_lapic_lvt_lint0 = 0x350
+set $_lapic_lvt_lint1 = 0x360
+set $_lapic_lvt_error = 0x370
+
+set $_lapic_icr = 0x380
+set $_lapic_ccr = 0x390
+set $_lapic_dcr = 0x3E0
+
+set $_apic_cfg_msr = 0x1B
+set $_apic_cfg_msr_x2EN = 0x00000C00
+set $_x2apic_enabled = -1
+
+# _lapic_addr $offset returns the actual address to use
+define _lapic_addr
+ if $_x2apic_enabled < 0
+ readmsr64int $_apic_cfg_msr $kgm_lcpu_self
+ if ($kgm_readmsr64int_result & $_apic_cfg_msr_x2EN) == $_apic_cfg_msr_x2EN
+ set $_x2apic_enabled = 1
+ else
+ set $_x2apic_enabled = 0
+ end
+ end
+
+ if $_x2apic_enabled
+ # x2APIC addresses are MSRs that use xAPIC offsets that
+ # are 4-bit shifted
+ set $kgm_lapic_addr = $arg0 >> 4
+ else
+ set $kgm_lapic_addr = $_lapic_base_addr + $arg0
+ end
+end
+
+# _lapic_addr_value $offset $lcpu
+define _lapic_addr_value
+ _lapic_addr $arg0
+ if $_x2apic_enabled
+ readmsr64int $kgm_lapic_addr $arg1
+ set $kgm_lapic_value = $kgm_readmsr64int_result
+ else
+ readphysint $kgm_lapic_addr 32 $arg1
+ set $kgm_lapic_value = $kgm_readphysint_result
+ end
+end
+
+# lapic_read32 $offset [$lcpu]
+define lapic_read32
+ if (($kgm_mtype & $kgm_mtype_x86_mask) != $kgm_mtype_x86_any)
+ printf "lapic_read32 not supported on this architecture.\n"
+ else
+ set $lcpu = $kgm_lcpu_self
+ if $argc > 1
+ set $lcpu = $arg1
+ end
+ _lapic_addr_value $arg0 $lcpu
+ printf "LAPIC[0x%03X]: 0x%08X\n", $arg0, $kgm_lapic_value
+ end
+end
+
+document lapic_read32
+Syntax: (gdb) apic_read32_cpu <offset> [lcpu (kernel's numbering convention)]
+| Read the LAPIC register at the offset specified. The CPU can be optionally
+| specified.
+end
+
+# lapic_write32 $offset $value [$lcpu]
+define lapic_write32
+ if (($kgm_mtype & $kgm_mtype_x86_mask) != $kgm_mtype_x86_any)
+ printf "lapic_write32_cpu not supported on this architecture.\n"
+ else
+ set $lcpu = $kgm_lcpu_self
+ if $argc > 2
+ set $lcpu = $arg2
+ end
+
+ _lapic_addr $arg0
+ if $_x2apic_enabled
+ writemsr64int $kgm_lapic_addr $arg1 $lcpu
+ else
+ writephysint $kgm_lapic_addr 32 $arg1 $lcpu
+ end
+ end
+end
+
+document lapic_write32
+Syntax: (gdb) lapic_write32 <offset> <value> [lcpu (kernel's numbering convention)]
+| Write the LAPIC register at the offset specified. The CPU can be optionally
+| specified.
+end
+
+# lapic_dump [lcpu]
+define lapic_dump
+ if (($kgm_mtype & $kgm_mtype_x86_mask) != $kgm_mtype_x86_any)
+ printf "lapic_dump not supported on this architecture.\n"
+ else
+ set $lcpu = $kgm_lcpu_self
+ if $argc > 0
+ set $lcpu = $arg0
+ end
+
+ _lapic_addr_value $_lapic_id $lcpu
+
+ # the above also figures out if we're using an xAPIC or an x2APIC
+ printf "LAPIC operating mode: "
+ if $_x2apic_enabled
+ printf " x2APIC\n"
+ else
+ printf " xAPIC\n"
+ end
+
+ printf "LAPIC[0x%03X] ID: 0x%08X\n", $_lapic_id, $kgm_lapic_value
+
+ _lapic_addr_value $_lapic_version $lcpu
+ set $lvt_num = ($kgm_lapic_value >> 16) + 1
+ printf "LAPIC[0x%03X] VERSION: 0x%08X [VERSION=%d MaxLVT=%d]\n", $_lapic_version, $kgm_lapic_value, $kgm_lapic_value & 0xFF, $lvt_num
+
+ _lapic_addr_value $_lapic_tpr $lcpu
+ printf "LAPIC[0x%03X] TASK PRIORITY: 0x%08X\n", $_lapic_tpr, $kgm_lapic_value
+
+ _lapic_addr_value $_lapic_ppr $lcpu
+ printf "LAPIC[0x%03X] PROCESSOR PRIORITY: 0x%08X\n", $_lapic_ppr, $kgm_lapic_value
+
+ _lapic_addr_value $_lapic_ldr $lcpu
+ printf "LAPIC[0x%03X] LOGICAL DEST: 0x%08X\n", $_lapic_ldr, $kgm_lapic_value
+
+ _lapic_addr_value $_lapic_dfr $lcpu
+ printf "LAPIC[0x%03X] DEST FORMAT: 0x%08X\n", $_lapic_dfr, $kgm_lapic_value
+
+ _lapic_addr_value $_lapic_sivr $lcpu
+ printf "LAPIC[0x%03X] SPURIOUS VECTOR: 0x%08X [VEC=%3d ENABLED=%d]\n", $_lapic_sivr, $kgm_lapic_value, $kgm_lapic_value & $_apic_vector_mask, ($kgm_lapic_value & 0x100) >> 8,
+
+ set $i = 0
+ while $i < $_lapic_isr_num
+ set $addr = $_lapic_isr0 + $i * $_lapic_isr_size
+ _lapic_addr_value $addr $lcpu
+ printf "LAPIC[0x%03X] ISR[%03d:%03d]: 0x%08X\n", $addr, 32*($i + 1) - 1, 32*$i, $kgm_lapic_value
+ set $i = $i + 1
+ end
+
+ set $i = 0
+ while $i < $_lapic_isr_num
+ set $addr = $_lapic_tmr0 + $i * $_lapic_isr_size
+ _lapic_addr_value $addr $lcpu
+ printf "LAPIC[0x%03X] TMR[%03d:%03d]: 0x%08X\n", $addr, 32*($i + 1) - 1, 32*$i, $kgm_lapic_value
+ set $i = $i + 1
+ end
+
+ set $i = 0
+ while $i < $_lapic_isr_num
+ set $addr = $_lapic_irr0 + $i * $_lapic_isr_size
+ _lapic_addr_value $addr $lcpu
+ printf "LAPIC[0x%03X] IRR[%03d:%03d]: 0x%08X\n", $addr, 32*($i + 1) - 1, 32*$i, $kgm_lapic_value
+ set $i = $i + 1
+ end
+
+ _lapic_addr_value $_lapic_esr $lcpu
+ printf "LAPIC[0x%03X] ERROR STATUS: 0x%08X ", $_lapic_esr, $kgm_lapic_value
+ if $kgm_lapic_value
+ printf "["
+ end
+ if $kgm_lapic_value & $_lapic_esr_register
+ printf "Register "
+ end
+ if $kgm_lapic_value & $_lapic_esr_recv_vect
+ printf "Received Vector "
+ end
+ if $kgm_lapic_value & $_lapic_esr_send_vect
+ printf "Send Vector"
+ end
+ if $kgm_lapic_value
+ printf "]"
+ end
+ printf "\n"
+
+ _lapic_addr_value $_lapic_icr1 $lcpu
+ printf "LAPIC[0x%03X] Interrupt Command: 0x%08X [DEST=%d]\n", $_lapic_icr0, $kgm_lapic_value, $kgm_lapic_value >> 24
+ _lapic_addr_value $_lapic_icr0 $lcpu
+ printf " 0x%08X ", $kgm_lapic_value
+ _apic_print $kgm_lapic_value
+
+ if $lvt_num > 0
+ _lapic_addr_value $_lapic_lvt_timer $lcpu
+ printf "LAPIC[0x%03X] LVT Timer: 0x%08X ", $_lapic_lvt_timer, $kgm_lapic_value
+ _apic_print $kgm_lapic_value
+ end
+
+ if $lvt_num > 1
+ _lapic_addr_value $_lapic_lvt_lint0 $lcpu
+ printf "LAPIC[0x%03X] LVT LINT0: 0x%08X ", $_lapic_lvt_lint0, $kgm_lapic_value
+ _apic_print $kgm_lapic_value
+ end
+
+ if $lvt_num > 2
+ _lapic_addr_value $_lapic_lvt_lint1 $lcpu
+ printf "LAPIC[0x%03X] LVT LINT1: 0x%08X ", $_lapic_lvt_lint1, $kgm_lapic_value
+ _apic_print $kgm_lapic_value
+ end
+
+ if $lvt_num > 3
+ _lapic_addr_value $_lapic_lvt_error $lcpu
+ printf "LAPIC[0x%03X] LVT Error: 0x%08X ", $_lapic_lvt_error, $kgm_lapic_value
+ _apic_print $kgm_lapic_value
+ end
+
+ if $lvt_num > 4
+ _lapic_addr_value $_lapic_lvt_pmcr $lcpu
+ printf "LAPIC[0x%03X] LVT PerfMon: 0x%08X ", $_lapic_lvt_pmcr, $kgm_lapic_value
+ _apic_print $kgm_lapic_value
+ end
+
+ if $lvt_num > 5
+ _lapic_addr_value $_lapic_lvt_thermal $lcpu
+ printf "LAPIC[0x%03X] LVT Thermal: 0x%08X ", $_lapic_lvt_thermal, $kgm_lapic_value
+ _apic_print $kgm_lapic_value
+ end
+
+ _lapic_addr_value $_lapic_dcr $lcpu
+ printf "LAPIC[0x%03X] Timer Divide: 0x%08X [Divide by ", $_lapic_dcr, $kgm_lapic_value
+ set $kgm_lapic_value = ($kgm_lapic_value & 0x8) >> 1 | $kgm_lapic_value & 0x3
+ if $kgm_lapic_value == 0x7
+ printf "1]\n"
+ else
+ printf "%d]\n", 2 << $kgm_lapic_value
+ end
+
+ _lapic_addr_value $_lapic_icr $lcpu
+ printf "LAPIC[0x%03X] Timer Init Count: 0x%08X\n", $_lapic_icr, $kgm_lapic_value
+
+ _lapic_addr_value $_lapic_ccr $lcpu
+ printf "LAPIC[0x%03X] Timer Cur Count: 0x%08X\n", $_lapic_ccr, $kgm_lapic_value
+ end
+end
+
+document lapic_dump
+Syntax: (gdb) lapic_dump [lcpu (kernel's numbering convention)]
+| Dump all the LAPIC entries. The CPU can be optionally specified.
+end
+
+define showknoteheader
+ printf " knote filter ident kn_ptr status\n"
+end
+
+define showknoteint
+ set $kgm_knotep = ((struct knote *) $arg0)
+ printf " "
+ showptr $kgm_knotep
+ printf " "
+ set $kgm_filt = -$kgm_knotep->kn_kevent.filter
+ if ($kgm_filt == 1)
+ printf "EVFILT_READ "
+ end
+ if ($kgm_filt == 2)
+ printf "EVFILT_WRITE "
+ end
+ if ($kgm_filt == 3)
+ printf "EVFILT_AIO "
+ end
+ if ($kgm_filt == 4)
+ printf "EVFILT_VNODE "
+ end
+ if ($kgm_filt == 5)
+ printf "EVFILT_PROC "
+ end
+ if ($kgm_filt == 6)
+ printf "EVFILT_SIGNAL "
+ end
+ if ($kgm_filt == 7)
+ printf "EVFILT_TIMER "
+ end
+ if ($kgm_filt == 8)
+ printf "EVFILT_MACHPORT"
+ end
+ if ($kgm_filt == 9)
+ printf "EVFILT_FS "
+ end
+ if ($kgm_filt == 10)
+ printf "EVFILT_USER "
+ end
+ if ($kgm_filt == 11)
+ printf "EVFILT_SESSION "
+ end
+ printf "%7d ", $kgm_knotep->kn_kevent.ident
+ showptr $kgm_knotep->kn_ptr.p_fp
+ printf " "
+ if ($kgm_knotep->kn_status == 0)
+ printf "-"
+ else
+ if ($kgm_knotep->kn_status & 0x01)
+ printf "A"
+ end
+ if ($kgm_knotep->kn_status & 0x02)
+ printf "Q"
+ end
+ if ($kgm_knotep->kn_status & 0x04)
+ printf "Dis"
+ end
+ if ($kgm_knotep->kn_status & 0x08)
+ printf "Dr"
+ end
+ if ($kgm_knotep->kn_status & 0x10)
+ printf "Uw"
+ end
+ if ($kgm_knotep->kn_status & 0x20)
+ printf "Att"
+ end
+ if ($kgm_knotep->kn_status & 0x40)
+ printf "Stq"
+ end
+ end
+ printf "\n"
+end
+
+define showprocknotes
+ showknoteheader
+ set $kgm_fdp = ((proc_t)$arg0)->p_fd
+ set $kgm_knlist = $kgm_fdp->fd_knlist
+ set $i = 0
+ while (($i < $kgm_fdp->fd_knlistsize) && ($kgm_knlist != 0))
+ set $kgm_kn = ((struct knote *)$kgm_knlist[$i].slh_first)
+ while ($kgm_kn != 0)
+ showknoteint $kgm_kn
+ set $kgm_kn = ((struct knote *)$kgm_kn->kn_link.sle_next)
+ end
+ set $i = $i + 1
+ end
+ set $kgm_knhash = $kgm_fdp->fd_knhash
+ set $i = 0
+ while (($i < $kgm_fdp->fd_knhashmask + 1) && ($kgm_knhash != 0))
+ set $kgm_kn = ((struct knote *)$kgm_knhash[$i].slh_first)
+ while ($kgm_kn != 0)
+ showknoteint $kgm_kn
+ set $kgm_kn = ((struct knote *)$kgm_kn->kn_link.sle_next)
+ end
+ set $i = $i + 1
+ end
+end
+
+define showallknotes
+ set $kgm_head_taskp = &tasks
+ set $kgm_taskp = (struct task *)($kgm_head_taskp->next)
+ while $kgm_taskp != $kgm_head_taskp
+ showtaskheader
+ showtaskint $kgm_taskp
+ showprocknotes $kgm_taskp->bsd_info
+ set $kgm_taskp = (struct task *)($kgm_taskp->tasks.next)
+ end
+end
+document showprocknotes
+Syntax: showprocknotes <proc>
+| Displays filter and status information for every kevent registered for
+| the process.
+end
+
+#
+# Device node related debug macros
+#
+
+define _showtty
+ set $kgm_tty = (struct tty *) $arg0
+ printf "tty struct at "
+ showptr $kgm_tty
+ printf "\n"
+ printf "-last input to raw queue:\n"
+ p $kgm_tty->t_rawq->c_cs
+ printf "-last input to canonical queue:\n"
+ p $kgm_tty->t_canq->c_cs
+ printf "-last output data:\n"
+ p $kgm_tty->t_outq->c_cs
+ printf "state:\n"
+ if ($kgm_tty->t_state & 0x00000001)
+ printf " TS_SO_OLOWAT (Wake up when output <= low water)\n"
+ end
+ if ($kgm_tty->t_state & 0x00000002)
+ printf " TS_ASYNC (async I/O mode)\n"
+ else
+ printf " - (synchronous I/O mode)\n"
+ end
+ if ($kgm_tty->t_state & 0x00000004)
+ printf " TS_BUSY (Draining output)\n"
+ end
+ if ($kgm_tty->t_state & 0x00000008)
+ printf " TS_CARR_ON (Carrier is present)\n"
+ else
+ printf " - (Carrier is NOT present)\n"
+ end
+ if ($kgm_tty->t_state & 0x00000010)
+ printf " TS_FLUSH (Outq has been flushed during DMA)\n"
+ end
+ if ($kgm_tty->t_state & 0x00000020)
+ printf " TS_ISOPEN (Open has completed)\n"
+ else
+ printf " - (Open has NOT completed)\n"
+ end
+ if ($kgm_tty->t_state & 0x00000040)
+ printf " TS_TBLOCK (Further input blocked)\n"
+ end
+ if ($kgm_tty->t_state & 0x00000080)
+ printf " TS_TIMEOUT (Wait for output char processing)\n"
+ end
+ if ($kgm_tty->t_state & 0x00000100)
+ printf " TS_TTSTOP (Output paused)\n"
+ end
+ if ($kgm_tty->t_state & 0x00000200)
+ printf " TS_WOPEN (Open in progress)\n"
+ end
+ if ($kgm_tty->t_state & 0x00000400)
+ printf " TS_XCLUDE (Tty requires exclusivity)\n"
+ end
+ if ($kgm_tty->t_state & 0x00000800)
+ printf " TS_BKSL (State for lowercase \\ work)\n"
+ end
+ if ($kgm_tty->t_state & 0x00001000)
+ printf " TS_CNTTB (Counting tab width, ignore FLUSHO)\n"
+ end
+ if ($kgm_tty->t_state & 0x00002000)
+ printf " TS_ERASE (Within a \\.../ for PRTRUB)\n"
+ end
+ if ($kgm_tty->t_state & 0x00004000)
+ printf " TS_LNCH (Next character is literal)\n"
+ end
+ if ($kgm_tty->t_state & 0x00008000)
+ printf " TS_TYPEN (Retyping suspended input (PENDIN))\n"
+ end
+ if ($kgm_tty->t_state & 0x00010000)
+ printf " TS_CAN_BYPASS_L_RINT (Device in "raw" mode)\n"
+ end
+ if ($kgm_tty->t_state & 0x00020000)
+ printf " TS_CONNECTED (Connection open)\n"
+ else
+ printf " - (Connection NOT open)\n"
+ end
+ if ($kgm_tty->t_state & 0x00040000)
+ printf " TS_SNOOP (Device is being snooped on)\n"
+ end
+ if ($kgm_tty->t_state & 0x80000)
+ printf " TS_SO_OCOMPLETE (Wake up when output completes)\n"
+ end
+ if ($kgm_tty->t_state & 0x00100000)
+ printf " TS_ZOMBIE (Connection lost)\n"
+ end
+ if ($kgm_tty->t_state & 0x00200000)
+ printf " TS_CAR_OFLOW (For MDMBUF - handle in driver)\n"
+ end
+ if ($kgm_tty->t_state & 0x00400000)
+ printf " TS_CTS_OFLOW (For CCTS_OFLOW - handle in driver)\n"
+ end
+ if ($kgm_tty->t_state & 0x00800000)
+ printf " TS_DSR_OFLOW (For CDSR_OFLOW - handle in driver)\n"
+ end
+ # xxx todo: do we care about decoding flags?
+ printf "flags: 0x%08x\n", $kgm_tty->t_flags
+ printf "foreground process group: "
+ showptr $kgm_tty->t_pgrp
+ printf "\n"
+ printf "enclosing session: "
+ showptr $kgm_tty->t_session
+ printf "\n"
+ printf "Termios:\n"
+ # XXX todo: decode these flags, someday
+ printf " Input flags: 0x%08x\n", $kgm_tty->t_termios.c_iflag
+ printf " Output flags: 0x%08x\n", $kgm_tty->t_termios.c_oflag
+ printf " Control flags: 0x%08x\n", $kgm_tty->t_termios.c_cflag
+ printf " Local flags: 0x%08x\n", $kgm_tty->t_termios.c_lflag
+ printf " Input speed: %d\n", $kgm_tty->t_termios.c_ispeed
+ printf " Output speed: %d\n", $kgm_tty->t_termios.c_ospeed
+ # XXX todo: useful to decode t_winsize? t_iokit? c_cc? anything else?
+ printf "high watermark: %d bytes\n", $kgm_tty->t_hiwat
+ printf "low watermark: %d bytes\n", $kgm_tty->t_lowat
+end
+
+define _showwhohas
+ # _showwhohas <major> <minor>
+ printf "fd "
+ printf "fileglob "
+showptrhdrpad
+ printf "vnode "
+showptrhdrpad
+ printf "process "
+showptrhdrpad
+ printf "name\n"
+
+ set $kgm_swh_devnode_dev = (((int) $arg0) << 24) | (int) $arg1
+ # iterate all tasks to iterate all processes to iterate all
+ # open files in each process to see who has a given major/minor
+ # device open
+ set $kgm_taskp = (struct task *)($kgm_head_taskp->next)
+ while $kgm_taskp != $kgm_head_taskp
+ set $kgm_procp = (proc_t) $kgm_taskp->bsd_info
+ set $kgm_spf_filedesc = $kgm_procp->p_fd
+ set $kgm_spf_last = $kgm_spf_filedesc->fd_lastfile
+ set $kgm_spf_ofiles = $kgm_spf_filedesc->fd_ofiles
+ set $kgm_spf_count = 0
+ while (($kgm_spf_ofiles != 0) && ($kgm_spf_count <= $kgm_spf_last))
+ # only files currently open
+ if ($kgm_spf_ofiles[$kgm_spf_count] != 0)
+ set $kgm_spf_fg = $kgm_spf_ofiles[$kgm_spf_count].f_fglob
+ if ($kgm_spf_fg->fg_type == 1)
+ # display fd #, fileglob & vnode address, proc name
+ set $kgm_swh_m_vnode = (vnode_t) $kgm_spf_fg->fg_data
+ set $kgm_swh_m_vtype = (enum vtype) $kgm_swh_m_vnode->v_type
+ if (($kgm_swh_m_vtype == VBLK) || ($kgm_swh_m_vtype == VCHR)) && ((((devnode_t *)$kgm_swh_m_vnode->v_data)->dn_typeinfo.dev) == $kgm_swh_devnode_dev)
+ printf "%-5d ", $kgm_spf_count
+ showptr $kgm_spf_fg
+ printf " "
+ showptr $kgm_swh_m_vnode
+ printf " "
+ showptr $kgm_procp
+ printf " %s\n", $kgm_procp->p_comm
+ end
+ end
+ end
+ set $kgm_spf_count = $kgm_spf_count + 1
+ end
+
+ set $kgm_taskp = (struct task *)($kgm_taskp->tasks.next)
+ end
+end
+
+define _showvnodedev_cpty
+ set $kgm_ptmx_major = (int) $arg0
+ set $kgm_ptmx_minor = (int) $arg1
+ set $kgm_ptmx_ioctl = _state.pis_ioctl_list[$kgm_ptmx_minor]
+ set $kgm_ptmx_ioctl = _state.pis_ioctl_list[$kgm_ptmx_minor]
+ printf " ptmx_ioctl struct at "
+ showptr $kgm_ptmx_ioctl
+ printf "\n"
+ printf " flags:\n"
+ if ($kgm_ptmx_ioctl->pt_flags & 0x0008)
+ printf " PF_PKT (packet mode)\n"
+ end
+ if ($kgm_ptmx_ioctl->pt_flags & 0x0010)
+ printf " PF_STOPPED (user told stopped)\n"
+ end
+ if ($kgm_ptmx_ioctl->pt_flags & 0x0020)
+ printf " PF_REMOTE (remote and flow controlled input)\n"
+ end
+ if ($kgm_ptmx_ioctl->pt_flags & 0x0040)
+ printf " PF_NOSTOP"
+ end
+ if ($kgm_ptmx_ioctl->pt_flags & 0x0080)
+ printf " PF_UCNTL (user control mode)\n"
+ end
+ if ($kgm_ptmx_ioctl->pt_flags & 0x0100)
+ printf " PF_UNLOCKED (slave unlock - master open resets)\n"
+ end
+ if ($kgm_ptmx_ioctl->pt_flags & 0x0200)
+ printf " PF_OPEN_M (master is open)\n"
+ # XXX we should search for who has the master open, but
+ # XXX each master gets the same minor, even though it
+ # XXX gets a different vnode. we chold probably change
+ # XXX this, but to do it we would need some way of
+ # XXX expressing the information in the vnode structure
+ # XXX somewhere. If we *did* change it, it would buy us
+ # XXX the ability to determine who has the corresponding
+ # XXX master end of the pty open
+ else
+ printf " PF_OPEN_M (master is closed)\n"
+ end
+ if ($kgm_ptmx_ioctl->pt_flags & 0x0400)
+ printf " PF_OPEN_S (slave is open)\n"
+ printf "---vvvvv--- fds open on this device ---vvvvv---\n"
+ _showwhohas ($kgm_ptmx_major) ($kgm_ptmx_minor)
+ printf "---^^^^^--- fds open on this device ---^^^^^---\n"
+ else
+ printf " - (slave is closed)\n"
+ end
+ printf "TTY Specific Information\n"
+ _showtty $kgm_ptmx_ioctl->pt_tty
+end
+
+define showvnodedev
+ if ($argc == 1)
+ set $kgm_vnode = (vnode_t) $arg0
+ set $kgm_vtype = (enum vtype) $kgm_vnode->v_type
+ if (($kgm_vtype == VBLK) || ($kgm_vtype == VCHR))
+ set $kgm_devnode = (devnode_t *) $kgm_vnode->v_data
+ set $kgm_devnode_dev = $kgm_devnode->dn_typeinfo.dev
+ set $kgm_devnode_major = ($kgm_devnode_dev >> 24) & 0xff
+ set $kgm_devnode_minor = $kgm_devnode_dev & 0x00ffffff
+
+ # boilerplate device information for a vnode
+ printf "Device Info:\n"
+ printf " vnode: "
+ showptr $kgm_vnode
+ printf "\n"
+ printf " type: "
+ if ($kgm_vtype == VBLK)
+ printf "VBLK "
+ end
+ if ($kgm_vtype == VCHR)
+ printf "VCHR"
+ end
+ printf "\n"
+ printf " name: %s\n", $kgm_vnode->v_name
+ printf " major, minor: %d, %d\n", $kgm_devnode_major, $kgm_devnode_minor
+ printf " mode 0%o\n", $kgm_devnode->dn_mode
+ printf " owner (u,g): %d %d", $kgm_devnode->dn_uid, $kgm_devnode->dn_gid
+ printf "\n"
+
+ # decode device specific data
+ printf "Device Specific Information: "
+ if ($kgm_vtype == VBLK)
+ printf " Sorry, I do not know how to decode block devices yet!\n"
+ printf " Maybe you can write me!"
+ end
+ if ($kgm_vtype == VCHR)
+ # Device information; this is scanty
+ # range check
+ if ($kgm_devnode_major > 42) || ($kgm_devnode_major < 0)
+ printf "Invalid major #\n"
+ else
+ # static assignments in conf
+ if ($kgm_devnode_major == 0)
+ printf "Console mux device\n"
+ else
+ if ($kgm_devnode_major == 2)
+ printf "Current tty alias\n"
+ else
+ if ($kgm_devnode_major == 3)
+ printf "NULL device\n"
+ else
+ if ($kgm_devnode_major == 4)
+ printf "Old pty slave\n"
+ else
+ if ($kgm_devnode_major == 5)
+ printf "Old pty master\n"
+ else
+ if ($kgm_devnode_major == 6)
+ printf "Kernel log\n"
+ else
+ if ($kgm_devnode_major == 12)
+ printf "Memory devices\n"
+ else
+ # Statically linked dynamic assignments
+ if cdevsw[$kgm_devnode_major].d_open == ptmx_open
+ printf "Cloning pty master\n"
+ _showvnodedev_cpty ($kgm_devnode_major) ($kgm_devnode_minor)
+ else
+ if cdevsw[$kgm_devnode_major].d_open == ptsd_open
+ printf "Cloning pty slave\n"
+ _showvnodedev_cpty ($kgm_devnode_major) ($kgm_devnode_minor)
+ else
+ printf "RESERVED SLOT\n"
+ end
+ end
+ end
+ end
+ end
+ end
+ end
+ end
+ end
+ end
+ end
+ else
+ showptr $kgm_vnode
+ printf " is not a device\n"
+ end
+ else
+ printf "| Usage:\n|\n"
+ help showvnodedev
+ end
+end
+document showvnodedev
+Syntax: (gdb) showvnodedev <vnode>
+| showvnodedev Display information about a device vnode
+end
+
+define showtty
+ if ($argc == 1)
+ _showtty $arg0
+ else
+ printf "| Usage:\n|\n"
+ help showtty
+ end
+end
+document showtty
+Syntax: (gdb) showtty <tty struct>
+| showtty Display information about a struct tty
+end
+
+define showeventsourceobject
+ set $kgm_vt = *((void **) $arg1)
+ if $kgm_lp64
+ set $kgm_vt = $kgm_vt - 16
+ end
+ pcprint $kgm_vt
+end
+document showeventsourceobject
+Syntax: (gdb) showeventsourceobject <prefix> <object>
+| Routine to display information about an IOEventSource subclass.
+end
+
+define showworkloopeventsources
+ set $kgm_eventsource = (struct IOEventSource*)$arg0
+ while $kgm_eventsource != 0
+ printf " "
+ printf "EventSource:\t"
+ showptr $kgm_eventsource
+ printf " Description: "
+ showeventsourceobject _ $kgm_eventsource
+ printf "\n"
+ if $kgm_eventsource->action != 0
+ printf " "
+ printf "Action: \t"
+ pcprint $kgm_eventsource->action
+ printf "\n"
+ end
+ if $kgm_eventsource->owner != 0
+ printf " "
+ printf "Owner: \t"
+ showptr $kgm_eventsource->owner
+ printf " Description: "
+ showeventsourceobject _ $kgm_eventsource->owner
+ printf "\n"
+ end
+ set $kgm_eventsource = $kgm_eventsource->eventChainNext
+ printf "\n"
+ end
+end
+document showworkloopeventsources
+Syntax: (gdb) showworkloopeventsources
+| Routine to walk an IOEventSource chain associated with an IOWorkLoop and print information
+| about each event source in the chain.
+end
+
+define showworkloopheader
+ printf "thread "
+ showptrhdrpad
+ printf " workloop "
+ showptrhdrpad
+ printf " pri state\tLockGroupName\n"
+end
+document showworkloopheader
+Syntax: (gdb) showworkloopheader
+| Routine to print out header info about an IOKit workloop.
+end
+
+define showworkloop
+ set $kgm_workloopthread = (struct thread*)$arg0
+ set $kgm_workloop = (struct IOWorkLoop*)$arg1
+ showptr $kgm_workloopthread
+ printf " "
+ showptr $kgm_workloop
+ printf " %3d ", $kgm_workloopthread.sched_pri
+ set $kgm_state = $kgm_workloopthread.state
+ if $kgm_state & 0x80
+ printf "I"
+ end
+ if $kgm_state & 0x40
+ printf "P"
+ end
+ if $kgm_state & 0x20
+ printf "A"
+ end
+ if $kgm_state & 0x10
+ printf "H"
+ end
+ if $kgm_state & 0x08
+ printf "U"
+ end
+ if $kgm_state & 0x04
+ printf "R"
+ end
+ if $kgm_state & 0x02
+ printf "S"
+ end
+ if $kgm_state & 0x01
+ printf "W"
+ end
+ printf "\t\t"
+ set $kgm_gateLock = ( struct _IORecursiveLock *)$kgm_workloop->gateLock
+ set $kgm_lockGroup = (struct _lck_grp_*)($kgm_gateLock->group)
+ printf "%s", $kgm_lockGroup->lck_grp_name
+ printf "\n"
+ showworkloopeventsources $kgm_workloop->eventChain
+end
+document showworkloop
+Syntax: (gdb) showworkloop <thread> <workloop>
+| Routine to print out info about an IOKit workloop.
+end
+
+define showallworkloopthreads
+ set $kgm_head_taskp = &tasks
+ set $kgm_taskp = (struct task *)($kgm_head_taskp->next)
+ set $kgm_head_actp = &($kgm_taskp->threads)
+ set $kgm_actp = (struct thread *)($kgm_taskp->threads.next)
+ while $kgm_actp != $kgm_head_actp
+ if ($kgm_actp->continuation == _ZN10IOWorkLoop10threadMainEv)
+ showworkloopheader
+ showworkloop $kgm_actp $kgm_actp->parameter
+ else
+ if ($kgm_actp->kernel_stack != 0)
+ if ($kgm_mtype == $kgm_mtype_x86_64)
+ #Warning: Grokking stack looking for hopeful workloops until we squirrel some info in thread_t.
+ set $kgm_workloop = *((struct IOWorkLoop **)($kgm_actp->kernel_stack + kernel_stack_size - 0xB8))
+ else
+ if ($kgm_mtype == $kgm_mtype_i386)
+ set $kgm_workloop = *((struct IOWorkLoop **)($kgm_actp->kernel_stack + kernel_stack_size - 0x3C))
+ end
+ end
+ if ($kgm_workloop != 0)
+ set $kgm_vt = *((void **) $kgm_workloop)
+ if $kgm_lp64
+ set $kgm_vt = $kgm_vt - 16
+ end
+ if ($kgm_vt == &_ZTV10IOWorkLoop)
+ showworkloopheader
+ showworkloop $kgm_actp $kgm_workloop
+ end
+ end
+ end
+ end
+ set $kgm_actp = (struct thread *)($kgm_actp->task_threads.next)
+ end
+ printf "\n"
+end
+document showallworkloopthreads
+Syntax: (gdb) showallworkloopthreads
+| Routine to print out info about all IOKit workloop threads in the system. This macro will find
+| all IOWorkLoop threads blocked in continuations and on i386 and x86_64 systems will make a
+| best-effort guess to find any workloops that are actually not blocked in a continuation. For a
+| complete list, it is best to compare the output of this macro against the output of 'showallstacks'.
+end
+
+define showthreadfortid
+ set $kgm_id_found = 0
+
+ set $kgm_head_taskp = &tasks
+ set $kgm_taskp = (struct task *)($kgm_head_taskp->next)
+ while $kgm_taskp != $kgm_head_taskp
+ set $kgm_head_actp = &($kgm_taskp->threads)
+ set $kgm_actp = (struct thread *)($kgm_taskp->threads.next)
+ while $kgm_actp != $kgm_head_actp
+ set $kgm_thread = *(struct thread *)$kgm_actp
+ set $kgm_thread_id = $kgm_thread.thread_id
+ if ($kgm_thread_id == $arg0)
+ showptr $kgm_actp
+ printf "\n"
+ set $kgm_id_found = 1
+ loop_break
+ end
+ set $kgm_actp = (struct thread *)($kgm_actp->task_threads.next)
+ end
+ if ($kgm_id_found == 1)
+ loop_break
+ end
+ set $kgm_taskp = (struct task *)($kgm_taskp->tasks.next)
+ end
+ if ($kgm_id_found == 0)
+ printf "Not a valid thread_id\n"
+ end
+end
+
+document showthreadfortid
+Syntax: showthreadfortid <thread_id>
+|The thread structure contains a unique thread_id value for each thread.
+|This command is used to retrieve the address of the thread structure(thread_t)
+|corresponding to a given thread_id.
+end
+
+define showtaskbusyports
+ set $kgm_isp = ((task_t)$arg0)->itk_space
+ set $kgm_iindex = 0
+ while ( $kgm_iindex < $kgm_isp->is_table_size )
+ set $kgm_iep = &($kgm_isp->is_table[$kgm_iindex])
+ if $kgm_iep->ie_bits & 0x00020000
+ set $kgm_port = ((ipc_port_t)$kgm_iep->ie_object)
+ if $kgm_port->ip_messages.data.port.msgcount > 0
+ showport $kgm_port
+ end
+ end
+ set $kgm_iindex = $kgm_iindex + 1
+ end
+end
+
+document showtaskbusyports
+Syntax: showtaskbusyports <task>
+|Routine to print information about receive rights belonging to this task that
+|have enqueued messages. This is often a sign of a blocked or hung process.
+end
+
+define showallbusyports
+ set $kgm_head_taskp = &tasks
+ set $kgm_cur_taskp = (struct task *)($kgm_head_taskp->next)
+ while $kgm_cur_taskp != $kgm_head_taskp
+ showtaskbusyports $kgm_cur_taskp
+ set $kgm_cur_taskp = (struct task *)($kgm_cur_taskp->tasks.next)
+ end
+end
+
+document showallbusyports
+Syntax: showallbusyports
+|Routine to print information about all receive rights on the system that
+|have enqueued messages.
+end
+
+define kdp-connect
+ if $argc > 0
+ kdp-reattach $arg0
+ else
+ printf "Attempting to attach to localhost...\n"
+ kdp-reattach localhost
+ end
+end
+
+document kdp-connect
+Syntax: (gdb) kdpconnect <address-of-remote-host>
+| Attach to the machine with given hostname or IP address, or 'localhost' if blank
+end