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[/] [openrisc/] [trunk/] [gnu-old/] [gdb-7.1/] [gdb/] [darwin-nat-info.c] - Diff between revs 834 and 842

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/* Darwin support for GDB, the GNU debugger.
/* Darwin support for GDB, the GNU debugger.
   Copyright 1997, 1998, 1999, 2000, 2001, 2002, 2008, 2009, 2010
   Copyright 1997, 1998, 1999, 2000, 2001, 2002, 2008, 2009, 2010
   Free Software Foundation, Inc.
   Free Software Foundation, Inc.
 
 
   Contributed by Apple Computer, Inc.
   Contributed by Apple Computer, Inc.
 
 
   This file is part of GDB.
   This file is part of GDB.
 
 
   This program is free software; you can redistribute it and/or modify
   This program is free software; you can redistribute it and/or modify
   it under the terms of the GNU General Public License as published by
   it under the terms of the GNU General Public License as published by
   the Free Software Foundation; either version 3 of the License, or
   the Free Software Foundation; either version 3 of the License, or
   (at your option) any later version.
   (at your option) any later version.
 
 
   This program is distributed in the hope that it will be useful,
   This program is distributed in the hope that it will be useful,
   but WITHOUT ANY WARRANTY; without even the implied warranty of
   but WITHOUT ANY WARRANTY; without even the implied warranty of
   MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the
   MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the
   GNU General Public License for more details.
   GNU General Public License for more details.
 
 
   You should have received a copy of the GNU General Public License
   You should have received a copy of the GNU General Public License
   along with this program.  If not, see <http://www.gnu.org/licenses/>.  */
   along with this program.  If not, see <http://www.gnu.org/licenses/>.  */
 
 
/* The name of the ppc_thread_state structure, and the names of its
/* The name of the ppc_thread_state structure, and the names of its
   members, have been changed for Unix conformance reasons.  The easiest
   members, have been changed for Unix conformance reasons.  The easiest
   way to have gdb build on systems with the older names and systems
   way to have gdb build on systems with the older names and systems
   with the newer names is to build this compilation unit with the
   with the newer names is to build this compilation unit with the
   non-conformant define below.  This doesn't seem to cause the resulting
   non-conformant define below.  This doesn't seem to cause the resulting
   binary any problems but it seems like it could cause us problems in
   binary any problems but it seems like it could cause us problems in
   the future.  It'd be good to remove this at some point when compiling on
   the future.  It'd be good to remove this at some point when compiling on
   Tiger is no longer important.  */
   Tiger is no longer important.  */
 
 
#include "defs.h"
#include "defs.h"
#include "symtab.h"
#include "symtab.h"
#include "gdbtypes.h"
#include "gdbtypes.h"
#include "gdbcore.h"
#include "gdbcore.h"
#include "value.h"
#include "value.h"
#include "gdbcmd.h"
#include "gdbcmd.h"
#include "inferior.h"
#include "inferior.h"
 
 
#include <sys/param.h>
#include <sys/param.h>
#include <sys/sysctl.h>
#include <sys/sysctl.h>
 
 
#include "darwin-nat.h"
#include "darwin-nat.h"
 
 
#include <mach/thread_info.h>
#include <mach/thread_info.h>
#include <mach/thread_act.h>
#include <mach/thread_act.h>
#include <mach/task.h>
#include <mach/task.h>
#include <mach/vm_map.h>
#include <mach/vm_map.h>
#include <mach/mach_port.h>
#include <mach/mach_port.h>
#include <mach/mach_init.h>
#include <mach/mach_init.h>
#include <mach/mach_vm.h>
#include <mach/mach_vm.h>
 
 
#define CHECK_ARGS(what, args) do { \
#define CHECK_ARGS(what, args) do { \
  if ((NULL == args) || ((args[0] != '0') && (args[1] != 'x'))) \
  if ((NULL == args) || ((args[0] != '0') && (args[1] != 'x'))) \
    error("%s must be specified with 0x...", what);             \
    error("%s must be specified with 0x...", what);             \
} while (0)
} while (0)
 
 
#define PRINT_FIELD(structure, field) \
#define PRINT_FIELD(structure, field) \
  printf_unfiltered(_(#field":\t%#lx\n"), (unsigned long) (structure)->field)
  printf_unfiltered(_(#field":\t%#lx\n"), (unsigned long) (structure)->field)
 
 
#define PRINT_TV_FIELD(structure, field) \
#define PRINT_TV_FIELD(structure, field) \
  printf_unfiltered(_(#field":\t%u.%06u sec\n"),        \
  printf_unfiltered(_(#field":\t%u.%06u sec\n"),        \
  (unsigned) (structure)->field.seconds, \
  (unsigned) (structure)->field.seconds, \
  (unsigned) (structure)->field.microseconds)
  (unsigned) (structure)->field.microseconds)
 
 
#define task_self mach_task_self
#define task_self mach_task_self
#define task_by_unix_pid task_for_pid
#define task_by_unix_pid task_for_pid
#define port_name_array_t mach_port_array_t
#define port_name_array_t mach_port_array_t
#define port_type_array_t mach_port_array_t
#define port_type_array_t mach_port_array_t
 
 
static void
static void
info_mach_tasks_command (char *args, int from_tty)
info_mach_tasks_command (char *args, int from_tty)
{
{
  int sysControl[4];
  int sysControl[4];
  int count, index;
  int count, index;
  size_t length;
  size_t length;
  struct kinfo_proc *procInfo;
  struct kinfo_proc *procInfo;
 
 
  sysControl[0] = CTL_KERN;
  sysControl[0] = CTL_KERN;
  sysControl[1] = KERN_PROC;
  sysControl[1] = KERN_PROC;
  sysControl[2] = KERN_PROC_ALL;
  sysControl[2] = KERN_PROC_ALL;
 
 
  sysctl (sysControl, 3, NULL, &length, NULL, 0);
  sysctl (sysControl, 3, NULL, &length, NULL, 0);
  procInfo = (struct kinfo_proc *) xmalloc (length);
  procInfo = (struct kinfo_proc *) xmalloc (length);
  sysctl (sysControl, 3, procInfo, &length, NULL, 0);
  sysctl (sysControl, 3, procInfo, &length, NULL, 0);
 
 
  count = (length / sizeof (struct kinfo_proc));
  count = (length / sizeof (struct kinfo_proc));
  printf_unfiltered (_("%d processes:\n"), count);
  printf_unfiltered (_("%d processes:\n"), count);
  for (index = 0; index < count; ++index)
  for (index = 0; index < count; ++index)
    {
    {
      kern_return_t result;
      kern_return_t result;
      mach_port_t taskPort;
      mach_port_t taskPort;
 
 
      result =
      result =
        task_by_unix_pid (mach_task_self (), procInfo[index].kp_proc.p_pid,
        task_by_unix_pid (mach_task_self (), procInfo[index].kp_proc.p_pid,
                          &taskPort);
                          &taskPort);
      if (KERN_SUCCESS == result)
      if (KERN_SUCCESS == result)
        {
        {
          printf_unfiltered (_("    %s is %d has task %#x\n"),
          printf_unfiltered (_("    %s is %d has task %#x\n"),
                             procInfo[index].kp_proc.p_comm,
                             procInfo[index].kp_proc.p_comm,
                             procInfo[index].kp_proc.p_pid, taskPort);
                             procInfo[index].kp_proc.p_pid, taskPort);
        }
        }
      else
      else
        {
        {
          printf_unfiltered (_("    %s is %d unknown task port\n"),
          printf_unfiltered (_("    %s is %d unknown task port\n"),
                             procInfo[index].kp_proc.p_comm,
                             procInfo[index].kp_proc.p_comm,
                             procInfo[index].kp_proc.p_pid);
                             procInfo[index].kp_proc.p_pid);
        }
        }
    }
    }
 
 
  xfree (procInfo);
  xfree (procInfo);
}
}
 
 
static task_t
static task_t
get_task_from_args (char *args)
get_task_from_args (char *args)
{
{
  task_t task;
  task_t task;
  char *eptr;
  char *eptr;
 
 
  if (args == NULL || *args == 0)
  if (args == NULL || *args == 0)
    {
    {
      if (ptid_equal (inferior_ptid, null_ptid))
      if (ptid_equal (inferior_ptid, null_ptid))
        printf_unfiltered (_("No inferior running\n"));
        printf_unfiltered (_("No inferior running\n"));
      return current_inferior ()->private->task;
      return current_inferior ()->private->task;
    }
    }
  if (strcmp (args, "gdb") == 0)
  if (strcmp (args, "gdb") == 0)
    return mach_task_self ();
    return mach_task_self ();
  task = strtoul (args, &eptr, 0);
  task = strtoul (args, &eptr, 0);
  if (*eptr)
  if (*eptr)
    {
    {
      printf_unfiltered (_("cannot parse task id '%s'\n"), args);
      printf_unfiltered (_("cannot parse task id '%s'\n"), args);
      return TASK_NULL;
      return TASK_NULL;
    }
    }
  return task;
  return task;
}
}
 
 
static void
static void
info_mach_task_command (char *args, int from_tty)
info_mach_task_command (char *args, int from_tty)
{
{
  union
  union
  {
  {
    struct task_basic_info basic;
    struct task_basic_info basic;
    struct task_events_info events;
    struct task_events_info events;
    struct task_thread_times_info thread_times;
    struct task_thread_times_info thread_times;
  } task_info_data;
  } task_info_data;
 
 
  kern_return_t result;
  kern_return_t result;
  unsigned int info_count;
  unsigned int info_count;
  task_t task;
  task_t task;
 
 
  task = get_task_from_args (args);
  task = get_task_from_args (args);
  if (task == TASK_NULL)
  if (task == TASK_NULL)
    return;
    return;
 
 
  printf_unfiltered (_("TASK_BASIC_INFO for 0x%x:\n"), task);
  printf_unfiltered (_("TASK_BASIC_INFO for 0x%x:\n"), task);
  info_count = TASK_BASIC_INFO_COUNT;
  info_count = TASK_BASIC_INFO_COUNT;
  result = task_info (task,
  result = task_info (task,
                      TASK_BASIC_INFO,
                      TASK_BASIC_INFO,
                      (task_info_t) & task_info_data.basic, &info_count);
                      (task_info_t) & task_info_data.basic, &info_count);
  MACH_CHECK_ERROR (result);
  MACH_CHECK_ERROR (result);
 
 
  PRINT_FIELD (&task_info_data.basic, suspend_count);
  PRINT_FIELD (&task_info_data.basic, suspend_count);
  PRINT_FIELD (&task_info_data.basic, virtual_size);
  PRINT_FIELD (&task_info_data.basic, virtual_size);
  PRINT_FIELD (&task_info_data.basic, resident_size);
  PRINT_FIELD (&task_info_data.basic, resident_size);
  PRINT_TV_FIELD (&task_info_data.basic, user_time);
  PRINT_TV_FIELD (&task_info_data.basic, user_time);
  PRINT_TV_FIELD (&task_info_data.basic, system_time);
  PRINT_TV_FIELD (&task_info_data.basic, system_time);
  printf_unfiltered (_("\nTASK_EVENTS_INFO:\n"));
  printf_unfiltered (_("\nTASK_EVENTS_INFO:\n"));
  info_count = TASK_EVENTS_INFO_COUNT;
  info_count = TASK_EVENTS_INFO_COUNT;
  result = task_info (task,
  result = task_info (task,
                      TASK_EVENTS_INFO,
                      TASK_EVENTS_INFO,
                      (task_info_t) & task_info_data.events, &info_count);
                      (task_info_t) & task_info_data.events, &info_count);
  MACH_CHECK_ERROR (result);
  MACH_CHECK_ERROR (result);
 
 
  PRINT_FIELD (&task_info_data.events, faults);
  PRINT_FIELD (&task_info_data.events, faults);
#if 0
#if 0
  PRINT_FIELD (&task_info_data.events, zero_fills);
  PRINT_FIELD (&task_info_data.events, zero_fills);
  PRINT_FIELD (&task_info_data.events, reactivations);
  PRINT_FIELD (&task_info_data.events, reactivations);
#endif
#endif
  PRINT_FIELD (&task_info_data.events, pageins);
  PRINT_FIELD (&task_info_data.events, pageins);
  PRINT_FIELD (&task_info_data.events, cow_faults);
  PRINT_FIELD (&task_info_data.events, cow_faults);
  PRINT_FIELD (&task_info_data.events, messages_sent);
  PRINT_FIELD (&task_info_data.events, messages_sent);
  PRINT_FIELD (&task_info_data.events, messages_received);
  PRINT_FIELD (&task_info_data.events, messages_received);
  printf_unfiltered (_("\nTASK_THREAD_TIMES_INFO:\n"));
  printf_unfiltered (_("\nTASK_THREAD_TIMES_INFO:\n"));
  info_count = TASK_THREAD_TIMES_INFO_COUNT;
  info_count = TASK_THREAD_TIMES_INFO_COUNT;
  result = task_info (task,
  result = task_info (task,
                      TASK_THREAD_TIMES_INFO,
                      TASK_THREAD_TIMES_INFO,
                      (task_info_t) & task_info_data.thread_times,
                      (task_info_t) & task_info_data.thread_times,
                      &info_count);
                      &info_count);
  MACH_CHECK_ERROR (result);
  MACH_CHECK_ERROR (result);
  PRINT_TV_FIELD (&task_info_data.thread_times, user_time);
  PRINT_TV_FIELD (&task_info_data.thread_times, user_time);
  PRINT_TV_FIELD (&task_info_data.thread_times, system_time);
  PRINT_TV_FIELD (&task_info_data.thread_times, system_time);
}
}
 
 
static void
static void
info_mach_ports_command (char *args, int from_tty)
info_mach_ports_command (char *args, int from_tty)
{
{
  port_name_array_t names;
  port_name_array_t names;
  port_type_array_t types;
  port_type_array_t types;
  unsigned int name_count, type_count;
  unsigned int name_count, type_count;
  kern_return_t result;
  kern_return_t result;
  int index;
  int index;
  task_t task;
  task_t task;
 
 
  task = get_task_from_args (args);
  task = get_task_from_args (args);
  if (task == TASK_NULL)
  if (task == TASK_NULL)
    return;
    return;
 
 
  result = mach_port_names (task, &names, &name_count, &types, &type_count);
  result = mach_port_names (task, &names, &name_count, &types, &type_count);
  MACH_CHECK_ERROR (result);
  MACH_CHECK_ERROR (result);
 
 
  gdb_assert (name_count == type_count);
  gdb_assert (name_count == type_count);
 
 
  printf_unfiltered (_("Ports for task 0x%x:\n"), task);
  printf_unfiltered (_("Ports for task 0x%x:\n"), task);
  printf_unfiltered (_("port   type\n"));
  printf_unfiltered (_("port   type\n"));
  for (index = 0; index < name_count; ++index)
  for (index = 0; index < name_count; ++index)
    {
    {
      mach_port_t port = names[index];
      mach_port_t port = names[index];
      unsigned int j;
      unsigned int j;
      struct type_descr
      struct type_descr
      {
      {
        mach_port_type_t type;
        mach_port_type_t type;
        const char *name;
        const char *name;
        mach_port_right_t right;
        mach_port_right_t right;
      };
      };
      static struct type_descr descrs[] =
      static struct type_descr descrs[] =
        {
        {
          {MACH_PORT_TYPE_SEND, "send", MACH_PORT_RIGHT_SEND},
          {MACH_PORT_TYPE_SEND, "send", MACH_PORT_RIGHT_SEND},
          {MACH_PORT_TYPE_SEND_ONCE, "send-once", MACH_PORT_RIGHT_SEND_ONCE},
          {MACH_PORT_TYPE_SEND_ONCE, "send-once", MACH_PORT_RIGHT_SEND_ONCE},
          {MACH_PORT_TYPE_RECEIVE, "receive", MACH_PORT_RIGHT_RECEIVE},
          {MACH_PORT_TYPE_RECEIVE, "receive", MACH_PORT_RIGHT_RECEIVE},
          {MACH_PORT_TYPE_PORT_SET, "port-set", MACH_PORT_RIGHT_PORT_SET},
          {MACH_PORT_TYPE_PORT_SET, "port-set", MACH_PORT_RIGHT_PORT_SET},
          {MACH_PORT_TYPE_DEAD_NAME, "dead", MACH_PORT_RIGHT_DEAD_NAME}
          {MACH_PORT_TYPE_DEAD_NAME, "dead", MACH_PORT_RIGHT_DEAD_NAME}
        };
        };
 
 
      printf_unfiltered (_("%04x: %08x "), port, types[index]);
      printf_unfiltered (_("%04x: %08x "), port, types[index]);
      for (j = 0; j < sizeof(descrs) / sizeof(*descrs); j++)
      for (j = 0; j < sizeof(descrs) / sizeof(*descrs); j++)
        if (types[index] & descrs[j].type)
        if (types[index] & descrs[j].type)
          {
          {
            mach_port_urefs_t ref;
            mach_port_urefs_t ref;
            kern_return_t ret;
            kern_return_t ret;
 
 
            printf_unfiltered (_(" %s("), descrs[j].name);
            printf_unfiltered (_(" %s("), descrs[j].name);
            ret = mach_port_get_refs (task, port, descrs[j].right, &ref);
            ret = mach_port_get_refs (task, port, descrs[j].right, &ref);
            if (ret != KERN_SUCCESS)
            if (ret != KERN_SUCCESS)
              printf_unfiltered (_("??"));
              printf_unfiltered (_("??"));
            else
            else
              printf_unfiltered (_("%u"), ref);
              printf_unfiltered (_("%u"), ref);
            printf_unfiltered (_(" refs)"));
            printf_unfiltered (_(" refs)"));
          }
          }
 
 
      if (task == task_self ())
      if (task == task_self ())
        {
        {
          if (port == task_self())
          if (port == task_self())
            printf_unfiltered (_(" gdb-task"));
            printf_unfiltered (_(" gdb-task"));
          else if (port == darwin_host_self)
          else if (port == darwin_host_self)
            printf_unfiltered (_(" host-self"));
            printf_unfiltered (_(" host-self"));
          else if (port == darwin_ex_port)
          else if (port == darwin_ex_port)
            printf_unfiltered (_(" gdb-exception"));
            printf_unfiltered (_(" gdb-exception"));
          else if (port == darwin_port_set)
          else if (port == darwin_port_set)
            printf_unfiltered (_(" gdb-port_set"));
            printf_unfiltered (_(" gdb-port_set"));
          else if (!ptid_equal (inferior_ptid, null_ptid))
          else if (!ptid_equal (inferior_ptid, null_ptid))
            {
            {
              struct inferior *inf = current_inferior ();
              struct inferior *inf = current_inferior ();
 
 
              if (port == inf->private->task)
              if (port == inf->private->task)
                printf_unfiltered (_(" inferior-task"));
                printf_unfiltered (_(" inferior-task"));
              else if (port == inf->private->notify_port)
              else if (port == inf->private->notify_port)
                printf_unfiltered (_(" inferior-notify"));
                printf_unfiltered (_(" inferior-notify"));
              else
              else
                {
                {
                  int k;
                  int k;
                  darwin_thread_t *t;
                  darwin_thread_t *t;
 
 
                  for (k = 0; k < inf->private->exception_info.count; k++)
                  for (k = 0; k < inf->private->exception_info.count; k++)
                    if (port == inf->private->exception_info.ports[k])
                    if (port == inf->private->exception_info.ports[k])
                      {
                      {
                        printf_unfiltered (_(" inferior-excp-port"));
                        printf_unfiltered (_(" inferior-excp-port"));
                        break;
                        break;
                      }
                      }
 
 
                  if (inf->private->threads)
                  if (inf->private->threads)
                    {
                    {
                      for (k = 0;
                      for (k = 0;
                           VEC_iterate(darwin_thread_t,
                           VEC_iterate(darwin_thread_t,
                                       inf->private->threads, k, t);
                                       inf->private->threads, k, t);
                           k++)
                           k++)
                        if (port == t->gdb_port)
                        if (port == t->gdb_port)
                          {
                          {
                            printf_unfiltered (_(" inferior-thread for 0x%x"),
                            printf_unfiltered (_(" inferior-thread for 0x%x"),
                                               inf->private->task);
                                               inf->private->task);
                            break;
                            break;
                          }
                          }
                    }
                    }
                }
                }
            }
            }
        }
        }
      printf_unfiltered (_("\n"));
      printf_unfiltered (_("\n"));
    }
    }
 
 
  vm_deallocate (task_self (), (vm_address_t) names,
  vm_deallocate (task_self (), (vm_address_t) names,
                 (name_count * sizeof (mach_port_t)));
                 (name_count * sizeof (mach_port_t)));
  vm_deallocate (task_self (), (vm_address_t) types,
  vm_deallocate (task_self (), (vm_address_t) types,
                 (type_count * sizeof (mach_port_type_t)));
                 (type_count * sizeof (mach_port_type_t)));
}
}
 
 
 
 
void
void
darwin_debug_port_info (task_t task, mach_port_t port)
darwin_debug_port_info (task_t task, mach_port_t port)
{
{
  kern_return_t kret;
  kern_return_t kret;
  mach_port_status_t status;
  mach_port_status_t status;
  mach_msg_type_number_t len = sizeof (status);
  mach_msg_type_number_t len = sizeof (status);
 
 
  kret = mach_port_get_attributes
  kret = mach_port_get_attributes
    (task, port, MACH_PORT_RECEIVE_STATUS, (mach_port_info_t)&status, &len);
    (task, port, MACH_PORT_RECEIVE_STATUS, (mach_port_info_t)&status, &len);
  MACH_CHECK_ERROR (kret);
  MACH_CHECK_ERROR (kret);
 
 
  printf_unfiltered (_("Port 0x%lx in task 0x%lx:\n"), (unsigned long) port,
  printf_unfiltered (_("Port 0x%lx in task 0x%lx:\n"), (unsigned long) port,
                     (unsigned long) task);
                     (unsigned long) task);
  printf_unfiltered (_("  port set: 0x%x\n"), status.mps_pset);
  printf_unfiltered (_("  port set: 0x%x\n"), status.mps_pset);
  printf_unfiltered (_("     seqno: 0x%x\n"), status.mps_seqno);
  printf_unfiltered (_("     seqno: 0x%x\n"), status.mps_seqno);
  printf_unfiltered (_("   mscount: 0x%x\n"), status.mps_mscount);
  printf_unfiltered (_("   mscount: 0x%x\n"), status.mps_mscount);
  printf_unfiltered (_("    qlimit: 0x%x\n"), status.mps_qlimit);
  printf_unfiltered (_("    qlimit: 0x%x\n"), status.mps_qlimit);
  printf_unfiltered (_("  msgcount: 0x%x\n"), status.mps_msgcount);
  printf_unfiltered (_("  msgcount: 0x%x\n"), status.mps_msgcount);
  printf_unfiltered (_("  sorights: 0x%x\n"), status.mps_sorights);
  printf_unfiltered (_("  sorights: 0x%x\n"), status.mps_sorights);
  printf_unfiltered (_("   srights: 0x%x\n"), status.mps_srights);
  printf_unfiltered (_("   srights: 0x%x\n"), status.mps_srights);
  printf_unfiltered (_(" pdrequest: 0x%x\n"), status.mps_pdrequest);
  printf_unfiltered (_(" pdrequest: 0x%x\n"), status.mps_pdrequest);
  printf_unfiltered (_(" nsrequest: 0x%x\n"), status.mps_nsrequest);
  printf_unfiltered (_(" nsrequest: 0x%x\n"), status.mps_nsrequest);
  printf_unfiltered (_("     flags: 0x%x\n"), status.mps_flags);
  printf_unfiltered (_("     flags: 0x%x\n"), status.mps_flags);
}
}
 
 
static void
static void
info_mach_port_command (char *args, int from_tty)
info_mach_port_command (char *args, int from_tty)
{
{
  task_t task;
  task_t task;
  mach_port_t port;
  mach_port_t port;
 
 
  CHECK_ARGS (_("Task and port"), args);
  CHECK_ARGS (_("Task and port"), args);
  sscanf (args, "0x%x 0x%x", &task, &port);
  sscanf (args, "0x%x 0x%x", &task, &port);
 
 
  darwin_debug_port_info (task, port);
  darwin_debug_port_info (task, port);
}
}
 
 
static void
static void
info_mach_threads_command (char *args, int from_tty)
info_mach_threads_command (char *args, int from_tty)
{
{
  thread_array_t threads;
  thread_array_t threads;
  unsigned int thread_count;
  unsigned int thread_count;
  kern_return_t result;
  kern_return_t result;
  task_t task;
  task_t task;
  int i;
  int i;
 
 
  task = get_task_from_args (args);
  task = get_task_from_args (args);
  if (task == TASK_NULL)
  if (task == TASK_NULL)
    return;
    return;
 
 
  result = task_threads (task, &threads, &thread_count);
  result = task_threads (task, &threads, &thread_count);
  MACH_CHECK_ERROR (result);
  MACH_CHECK_ERROR (result);
 
 
  printf_unfiltered (_("Threads in task %#x:\n"), task);
  printf_unfiltered (_("Threads in task %#x:\n"), task);
  for (i = 0; i < thread_count; ++i)
  for (i = 0; i < thread_count; ++i)
    {
    {
      printf_unfiltered (_("    %#x\n"), threads[i]);
      printf_unfiltered (_("    %#x\n"), threads[i]);
      mach_port_deallocate (task_self (), threads[i]);
      mach_port_deallocate (task_self (), threads[i]);
    }
    }
 
 
  vm_deallocate (task_self (), (vm_address_t) threads,
  vm_deallocate (task_self (), (vm_address_t) threads,
                 (thread_count * sizeof (thread_t)));
                 (thread_count * sizeof (thread_t)));
}
}
 
 
static void
static void
info_mach_thread_command (char *args, int from_tty)
info_mach_thread_command (char *args, int from_tty)
{
{
  union
  union
  {
  {
    struct thread_basic_info basic;
    struct thread_basic_info basic;
  } thread_info_data;
  } thread_info_data;
 
 
  thread_t thread;
  thread_t thread;
  kern_return_t result;
  kern_return_t result;
  unsigned int info_count;
  unsigned int info_count;
 
 
  CHECK_ARGS (_("Thread"), args);
  CHECK_ARGS (_("Thread"), args);
  sscanf (args, "0x%x", &thread);
  sscanf (args, "0x%x", &thread);
 
 
  printf_unfiltered (_("THREAD_BASIC_INFO\n"));
  printf_unfiltered (_("THREAD_BASIC_INFO\n"));
  info_count = THREAD_BASIC_INFO_COUNT;
  info_count = THREAD_BASIC_INFO_COUNT;
  result = thread_info (thread,
  result = thread_info (thread,
                        THREAD_BASIC_INFO,
                        THREAD_BASIC_INFO,
                        (thread_info_t) & thread_info_data.basic,
                        (thread_info_t) & thread_info_data.basic,
                        &info_count);
                        &info_count);
  MACH_CHECK_ERROR (result);
  MACH_CHECK_ERROR (result);
 
 
#if 0
#if 0
  PRINT_FIELD (&thread_info_data.basic, user_time);
  PRINT_FIELD (&thread_info_data.basic, user_time);
  PRINT_FIELD (&thread_info_data.basic, system_time);
  PRINT_FIELD (&thread_info_data.basic, system_time);
#endif
#endif
  PRINT_FIELD (&thread_info_data.basic, cpu_usage);
  PRINT_FIELD (&thread_info_data.basic, cpu_usage);
  PRINT_FIELD (&thread_info_data.basic, run_state);
  PRINT_FIELD (&thread_info_data.basic, run_state);
  PRINT_FIELD (&thread_info_data.basic, flags);
  PRINT_FIELD (&thread_info_data.basic, flags);
  PRINT_FIELD (&thread_info_data.basic, suspend_count);
  PRINT_FIELD (&thread_info_data.basic, suspend_count);
  PRINT_FIELD (&thread_info_data.basic, sleep_time);
  PRINT_FIELD (&thread_info_data.basic, sleep_time);
}
}
 
 
static const char *
static const char *
unparse_protection (vm_prot_t p)
unparse_protection (vm_prot_t p)
{
{
  switch (p)
  switch (p)
    {
    {
    case VM_PROT_NONE:
    case VM_PROT_NONE:
      return "---";
      return "---";
    case VM_PROT_READ:
    case VM_PROT_READ:
      return "r--";
      return "r--";
    case VM_PROT_WRITE:
    case VM_PROT_WRITE:
      return "-w-";
      return "-w-";
    case VM_PROT_READ | VM_PROT_WRITE:
    case VM_PROT_READ | VM_PROT_WRITE:
      return "rw-";
      return "rw-";
    case VM_PROT_EXECUTE:
    case VM_PROT_EXECUTE:
      return "--x";
      return "--x";
    case VM_PROT_EXECUTE | VM_PROT_READ:
    case VM_PROT_EXECUTE | VM_PROT_READ:
      return "r-x";
      return "r-x";
    case VM_PROT_EXECUTE | VM_PROT_WRITE:
    case VM_PROT_EXECUTE | VM_PROT_WRITE:
      return "-wx";
      return "-wx";
    case VM_PROT_EXECUTE | VM_PROT_WRITE | VM_PROT_READ:
    case VM_PROT_EXECUTE | VM_PROT_WRITE | VM_PROT_READ:
      return "rwx";
      return "rwx";
    default:
    default:
      return "???";
      return "???";
    }
    }
}
}
 
 
static const char *
static const char *
unparse_inheritance (vm_inherit_t i)
unparse_inheritance (vm_inherit_t i)
{
{
  switch (i)
  switch (i)
    {
    {
    case VM_INHERIT_SHARE:
    case VM_INHERIT_SHARE:
      return _("share");
      return _("share");
    case VM_INHERIT_COPY:
    case VM_INHERIT_COPY:
      return _("copy ");
      return _("copy ");
    case VM_INHERIT_NONE:
    case VM_INHERIT_NONE:
      return _("none ");
      return _("none ");
    default:
    default:
      return _("???  ");
      return _("???  ");
    }
    }
}
}
 
 
static const char *
static const char *
unparse_share_mode (unsigned char p)
unparse_share_mode (unsigned char p)
{
{
  switch (p)
  switch (p)
    {
    {
    case SM_COW:
    case SM_COW:
      return _("cow");
      return _("cow");
    case SM_PRIVATE:
    case SM_PRIVATE:
      return _("private");
      return _("private");
    case SM_EMPTY:
    case SM_EMPTY:
      return _("empty");
      return _("empty");
    case SM_SHARED:
    case SM_SHARED:
      return _("shared");
      return _("shared");
    case SM_TRUESHARED:
    case SM_TRUESHARED:
      return _("true-shrd");
      return _("true-shrd");
    case SM_PRIVATE_ALIASED:
    case SM_PRIVATE_ALIASED:
      return _("prv-alias");
      return _("prv-alias");
    case SM_SHARED_ALIASED:
    case SM_SHARED_ALIASED:
      return _("shr-alias");
      return _("shr-alias");
    default:
    default:
      return _("???");
      return _("???");
    }
    }
}
}
 
 
static const char *
static const char *
unparse_user_tag (unsigned int tag)
unparse_user_tag (unsigned int tag)
{
{
  switch (tag)
  switch (tag)
    {
    {
    case 0:
    case 0:
      return _("default");
      return _("default");
    case VM_MEMORY_MALLOC:
    case VM_MEMORY_MALLOC:
      return _("malloc");
      return _("malloc");
    case VM_MEMORY_MALLOC_SMALL:
    case VM_MEMORY_MALLOC_SMALL:
      return _("malloc_small");
      return _("malloc_small");
    case VM_MEMORY_MALLOC_LARGE:
    case VM_MEMORY_MALLOC_LARGE:
      return _("malloc_large");
      return _("malloc_large");
    case VM_MEMORY_MALLOC_HUGE:
    case VM_MEMORY_MALLOC_HUGE:
      return _("malloc_huge");
      return _("malloc_huge");
    case VM_MEMORY_SBRK:
    case VM_MEMORY_SBRK:
      return _("sbrk");
      return _("sbrk");
    case VM_MEMORY_REALLOC:
    case VM_MEMORY_REALLOC:
      return _("realloc");
      return _("realloc");
    case VM_MEMORY_MALLOC_TINY:
    case VM_MEMORY_MALLOC_TINY:
      return _("malloc_tiny");
      return _("malloc_tiny");
    case VM_MEMORY_ANALYSIS_TOOL:
    case VM_MEMORY_ANALYSIS_TOOL:
      return _("analysis_tool");
      return _("analysis_tool");
    case VM_MEMORY_MACH_MSG:
    case VM_MEMORY_MACH_MSG:
      return _("mach_msg");
      return _("mach_msg");
    case VM_MEMORY_IOKIT:
    case VM_MEMORY_IOKIT:
      return _("iokit");
      return _("iokit");
    case VM_MEMORY_STACK:
    case VM_MEMORY_STACK:
      return _("stack");
      return _("stack");
    case VM_MEMORY_GUARD:
    case VM_MEMORY_GUARD:
      return _("guard");
      return _("guard");
    case VM_MEMORY_SHARED_PMAP:
    case VM_MEMORY_SHARED_PMAP:
      return _("shared_pmap");
      return _("shared_pmap");
    case VM_MEMORY_DYLIB:
    case VM_MEMORY_DYLIB:
      return _("dylib");
      return _("dylib");
    case VM_MEMORY_APPKIT:
    case VM_MEMORY_APPKIT:
      return _("appkit");
      return _("appkit");
    case VM_MEMORY_FOUNDATION:
    case VM_MEMORY_FOUNDATION:
      return _("foundation");
      return _("foundation");
    default:
    default:
      return NULL;
      return NULL;
    }
    }
}
}
 
 
static void
static void
darwin_debug_regions (task_t task, mach_vm_address_t address, int max)
darwin_debug_regions (task_t task, mach_vm_address_t address, int max)
{
{
  kern_return_t kret;
  kern_return_t kret;
  vm_region_basic_info_data_64_t info, prev_info;
  vm_region_basic_info_data_64_t info, prev_info;
  mach_vm_address_t prev_address;
  mach_vm_address_t prev_address;
  mach_vm_size_t size, prev_size;
  mach_vm_size_t size, prev_size;
 
 
  mach_port_t object_name;
  mach_port_t object_name;
  mach_msg_type_number_t count;
  mach_msg_type_number_t count;
 
 
  int nsubregions = 0;
  int nsubregions = 0;
  int num_printed = 0;
  int num_printed = 0;
 
 
  count = VM_REGION_BASIC_INFO_COUNT_64;
  count = VM_REGION_BASIC_INFO_COUNT_64;
  kret = mach_vm_region (task, &address, &size, VM_REGION_BASIC_INFO_64,
  kret = mach_vm_region (task, &address, &size, VM_REGION_BASIC_INFO_64,
                         (vm_region_info_t) &info, &count, &object_name);
                         (vm_region_info_t) &info, &count, &object_name);
  if (kret != KERN_SUCCESS)
  if (kret != KERN_SUCCESS)
    {
    {
      printf_filtered (_("No memory regions."));
      printf_filtered (_("No memory regions."));
      return;
      return;
    }
    }
  memcpy (&prev_info, &info, sizeof (vm_region_basic_info_data_64_t));
  memcpy (&prev_info, &info, sizeof (vm_region_basic_info_data_64_t));
  prev_address = address;
  prev_address = address;
  prev_size = size;
  prev_size = size;
  nsubregions = 1;
  nsubregions = 1;
 
 
  for (;;)
  for (;;)
    {
    {
      int print = 0;
      int print = 0;
      int done = 0;
      int done = 0;
 
 
      address = prev_address + prev_size;
      address = prev_address + prev_size;
 
 
      /* Check to see if address space has wrapped around. */
      /* Check to see if address space has wrapped around. */
      if (address == 0)
      if (address == 0)
        print = done = 1;
        print = done = 1;
 
 
      if (!done)
      if (!done)
        {
        {
          count = VM_REGION_BASIC_INFO_COUNT_64;
          count = VM_REGION_BASIC_INFO_COUNT_64;
          kret =
          kret =
            mach_vm_region (task, &address, &size, VM_REGION_BASIC_INFO_64,
            mach_vm_region (task, &address, &size, VM_REGION_BASIC_INFO_64,
                              (vm_region_info_t) &info, &count, &object_name);
                              (vm_region_info_t) &info, &count, &object_name);
          if (kret != KERN_SUCCESS)
          if (kret != KERN_SUCCESS)
            {
            {
              size = 0;
              size = 0;
              print = done = 1;
              print = done = 1;
            }
            }
        }
        }
 
 
      if (address != prev_address + prev_size)
      if (address != prev_address + prev_size)
        print = 1;
        print = 1;
 
 
      if ((info.protection != prev_info.protection)
      if ((info.protection != prev_info.protection)
          || (info.max_protection != prev_info.max_protection)
          || (info.max_protection != prev_info.max_protection)
          || (info.inheritance != prev_info.inheritance)
          || (info.inheritance != prev_info.inheritance)
          || (info.shared != prev_info.reserved)
          || (info.shared != prev_info.reserved)
          || (info.reserved != prev_info.reserved))
          || (info.reserved != prev_info.reserved))
        print = 1;
        print = 1;
 
 
      if (print)
      if (print)
        {
        {
          printf_filtered (_("%s-%s %s/%s  %s %s %s"),
          printf_filtered (_("%s-%s %s/%s  %s %s %s"),
                           paddress (target_gdbarch, prev_address),
                           paddress (target_gdbarch, prev_address),
                           paddress (target_gdbarch, prev_address + prev_size),
                           paddress (target_gdbarch, prev_address + prev_size),
                           unparse_protection (prev_info.protection),
                           unparse_protection (prev_info.protection),
                           unparse_protection (prev_info.max_protection),
                           unparse_protection (prev_info.max_protection),
                           unparse_inheritance (prev_info.inheritance),
                           unparse_inheritance (prev_info.inheritance),
                           prev_info.shared ? _("shrd") : _("priv"),
                           prev_info.shared ? _("shrd") : _("priv"),
                           prev_info.reserved ? _("reserved") : _("not-rsvd"));
                           prev_info.reserved ? _("reserved") : _("not-rsvd"));
 
 
          if (nsubregions > 1)
          if (nsubregions > 1)
            printf_filtered (_(" (%d sub-rgn)"), nsubregions);
            printf_filtered (_(" (%d sub-rgn)"), nsubregions);
 
 
          printf_filtered (_("\n"));
          printf_filtered (_("\n"));
 
 
          prev_address = address;
          prev_address = address;
          prev_size = size;
          prev_size = size;
          memcpy (&prev_info, &info, sizeof (vm_region_basic_info_data_64_t));
          memcpy (&prev_info, &info, sizeof (vm_region_basic_info_data_64_t));
          nsubregions = 1;
          nsubregions = 1;
 
 
          num_printed++;
          num_printed++;
        }
        }
      else
      else
        {
        {
          prev_size += size;
          prev_size += size;
          nsubregions++;
          nsubregions++;
        }
        }
 
 
      if ((max > 0) && (num_printed >= max))
      if ((max > 0) && (num_printed >= max))
        done = 1;
        done = 1;
 
 
      if (done)
      if (done)
        break;
        break;
    }
    }
}
}
 
 
static void
static void
darwin_debug_regions_recurse (task_t task)
darwin_debug_regions_recurse (task_t task)
{
{
  mach_vm_address_t r_addr;
  mach_vm_address_t r_addr;
  mach_vm_address_t r_start;
  mach_vm_address_t r_start;
  mach_vm_size_t r_size;
  mach_vm_size_t r_size;
  natural_t r_depth;
  natural_t r_depth;
  mach_msg_type_number_t r_info_size;
  mach_msg_type_number_t r_info_size;
  vm_region_submap_short_info_data_64_t r_info;
  vm_region_submap_short_info_data_64_t r_info;
  kern_return_t kret;
  kern_return_t kret;
  int ret;
  int ret;
  struct cleanup *table_chain;
  struct cleanup *table_chain;
 
 
  table_chain = make_cleanup_ui_out_table_begin_end (uiout, 9, -1, "regions");
  table_chain = make_cleanup_ui_out_table_begin_end (uiout, 9, -1, "regions");
 
 
  if (gdbarch_addr_bit (target_gdbarch) <= 32)
  if (gdbarch_addr_bit (target_gdbarch) <= 32)
    {
    {
      ui_out_table_header (uiout, 10, ui_left, "start", "Start");
      ui_out_table_header (uiout, 10, ui_left, "start", "Start");
      ui_out_table_header (uiout, 10, ui_left, "end", "End");
      ui_out_table_header (uiout, 10, ui_left, "end", "End");
    }
    }
  else
  else
    {
    {
      ui_out_table_header (uiout, 18, ui_left, "start", "Start");
      ui_out_table_header (uiout, 18, ui_left, "start", "Start");
      ui_out_table_header (uiout, 18, ui_left, "end", "End");
      ui_out_table_header (uiout, 18, ui_left, "end", "End");
    }
    }
  ui_out_table_header (uiout, 3, ui_left, "min-prot", "Min");
  ui_out_table_header (uiout, 3, ui_left, "min-prot", "Min");
  ui_out_table_header (uiout, 3, ui_left, "max-prot", "Max");
  ui_out_table_header (uiout, 3, ui_left, "max-prot", "Max");
  ui_out_table_header (uiout, 5, ui_left, "inheritence", "Inh");
  ui_out_table_header (uiout, 5, ui_left, "inheritence", "Inh");
  ui_out_table_header (uiout, 9, ui_left, "share-mode", "Shr");
  ui_out_table_header (uiout, 9, ui_left, "share-mode", "Shr");
  ui_out_table_header (uiout, 1, ui_left, "depth", "D");
  ui_out_table_header (uiout, 1, ui_left, "depth", "D");
  ui_out_table_header (uiout, 3, ui_left, "submap", "Sm");
  ui_out_table_header (uiout, 3, ui_left, "submap", "Sm");
  ui_out_table_header (uiout, 0, ui_noalign, "tag", "Tag");
  ui_out_table_header (uiout, 0, ui_noalign, "tag", "Tag");
 
 
  ui_out_table_body (uiout);
  ui_out_table_body (uiout);
 
 
  r_start = 0;
  r_start = 0;
  r_depth = 0;
  r_depth = 0;
  while (1)
  while (1)
    {
    {
      const char *tag;
      const char *tag;
      struct cleanup *row_chain;
      struct cleanup *row_chain;
 
 
      r_info_size = VM_REGION_SUBMAP_SHORT_INFO_COUNT_64;
      r_info_size = VM_REGION_SUBMAP_SHORT_INFO_COUNT_64;
      r_size = -1;
      r_size = -1;
      kret = mach_vm_region_recurse (task, &r_start, &r_size, &r_depth,
      kret = mach_vm_region_recurse (task, &r_start, &r_size, &r_depth,
                                     (vm_region_recurse_info_t) &r_info,
                                     (vm_region_recurse_info_t) &r_info,
                                     &r_info_size);
                                     &r_info_size);
      if (kret != KERN_SUCCESS)
      if (kret != KERN_SUCCESS)
        break;
        break;
      row_chain = make_cleanup_ui_out_tuple_begin_end (uiout, "regions-row");
      row_chain = make_cleanup_ui_out_tuple_begin_end (uiout, "regions-row");
 
 
      ui_out_field_core_addr (uiout, "start", target_gdbarch, r_start);
      ui_out_field_core_addr (uiout, "start", target_gdbarch, r_start);
      ui_out_field_core_addr (uiout, "end", target_gdbarch, r_start + r_size);
      ui_out_field_core_addr (uiout, "end", target_gdbarch, r_start + r_size);
      ui_out_field_string (uiout, "min-prot",
      ui_out_field_string (uiout, "min-prot",
                           unparse_protection (r_info.protection));
                           unparse_protection (r_info.protection));
      ui_out_field_string (uiout, "max-prot",
      ui_out_field_string (uiout, "max-prot",
                           unparse_protection (r_info.max_protection));
                           unparse_protection (r_info.max_protection));
      ui_out_field_string (uiout, "inheritence",
      ui_out_field_string (uiout, "inheritence",
                           unparse_inheritance (r_info.inheritance));
                           unparse_inheritance (r_info.inheritance));
      ui_out_field_string (uiout, "share-mode",
      ui_out_field_string (uiout, "share-mode",
                           unparse_share_mode (r_info.share_mode));
                           unparse_share_mode (r_info.share_mode));
      ui_out_field_int (uiout, "depth", r_depth);
      ui_out_field_int (uiout, "depth", r_depth);
      ui_out_field_string (uiout, "submap",
      ui_out_field_string (uiout, "submap",
                           r_info.is_submap ? _("sm ") : _("obj"));
                           r_info.is_submap ? _("sm ") : _("obj"));
      tag = unparse_user_tag (r_info.user_tag);
      tag = unparse_user_tag (r_info.user_tag);
      if (tag)
      if (tag)
        ui_out_field_string (uiout, "tag", tag);
        ui_out_field_string (uiout, "tag", tag);
      else
      else
        ui_out_field_int (uiout, "tag", r_info.user_tag);
        ui_out_field_int (uiout, "tag", r_info.user_tag);
 
 
      do_cleanups (row_chain);
      do_cleanups (row_chain);
 
 
      if (!ui_out_is_mi_like_p (uiout))
      if (!ui_out_is_mi_like_p (uiout))
        ui_out_text (uiout, "\n");
        ui_out_text (uiout, "\n");
 
 
      if (r_info.is_submap)
      if (r_info.is_submap)
        r_depth++;
        r_depth++;
      else
      else
        r_start += r_size;
        r_start += r_size;
    }
    }
  do_cleanups (table_chain);
  do_cleanups (table_chain);
 
 
}
}
 
 
 
 
static void
static void
darwin_debug_region (task_t task, mach_vm_address_t address)
darwin_debug_region (task_t task, mach_vm_address_t address)
{
{
  darwin_debug_regions (task, address, 1);
  darwin_debug_regions (task, address, 1);
}
}
 
 
static void
static void
info_mach_regions_command (char *args, int from_tty)
info_mach_regions_command (char *args, int from_tty)
{
{
  task_t task;
  task_t task;
 
 
  task = get_task_from_args (args);
  task = get_task_from_args (args);
  if (task == TASK_NULL)
  if (task == TASK_NULL)
    return;
    return;
 
 
  darwin_debug_regions (task, 0, -1);
  darwin_debug_regions (task, 0, -1);
}
}
 
 
static void
static void
info_mach_regions_recurse_command (char *args, int from_tty)
info_mach_regions_recurse_command (char *args, int from_tty)
{
{
  task_t task;
  task_t task;
 
 
  task = get_task_from_args (args);
  task = get_task_from_args (args);
  if (task == TASK_NULL)
  if (task == TASK_NULL)
    return;
    return;
 
 
  darwin_debug_regions_recurse (task);
  darwin_debug_regions_recurse (task);
}
}
 
 
static void
static void
info_mach_region_command (char *exp, int from_tty)
info_mach_region_command (char *exp, int from_tty)
{
{
  struct expression *expr;
  struct expression *expr;
  struct value *val;
  struct value *val;
  mach_vm_address_t address;
  mach_vm_address_t address;
  struct inferior *inf;
  struct inferior *inf;
 
 
  expr = parse_expression (exp);
  expr = parse_expression (exp);
  val = evaluate_expression (expr);
  val = evaluate_expression (expr);
  if (TYPE_CODE (value_type (val)) == TYPE_CODE_REF)
  if (TYPE_CODE (value_type (val)) == TYPE_CODE_REF)
    {
    {
      val = value_ind (val);
      val = value_ind (val);
    }
    }
  address = value_as_address (val);
  address = value_as_address (val);
 
 
  if (ptid_equal (inferior_ptid, null_ptid))
  if (ptid_equal (inferior_ptid, null_ptid))
    error (_("Inferior not available"));
    error (_("Inferior not available"));
 
 
  inf = current_inferior ();
  inf = current_inferior ();
  darwin_debug_region (inf->private->task, address);
  darwin_debug_region (inf->private->task, address);
}
}
 
 
static void
static void
disp_exception (const darwin_exception_info *info)
disp_exception (const darwin_exception_info *info)
{
{
  int i;
  int i;
 
 
  printf_filtered (_("%d exceptions:\n"), info->count);
  printf_filtered (_("%d exceptions:\n"), info->count);
  for (i = 0; i < info->count; i++)
  for (i = 0; i < info->count; i++)
    {
    {
      exception_mask_t mask = info->masks[i];
      exception_mask_t mask = info->masks[i];
 
 
      printf_filtered (_("port 0x%04x, behavior: "), info->ports[i]);
      printf_filtered (_("port 0x%04x, behavior: "), info->ports[i]);
      switch (info->behaviors[i])
      switch (info->behaviors[i])
        {
        {
        case EXCEPTION_DEFAULT:
        case EXCEPTION_DEFAULT:
          printf_unfiltered (_("default"));
          printf_unfiltered (_("default"));
          break;
          break;
        case EXCEPTION_STATE:
        case EXCEPTION_STATE:
          printf_unfiltered (_("state"));
          printf_unfiltered (_("state"));
          break;
          break;
        case EXCEPTION_STATE_IDENTITY:
        case EXCEPTION_STATE_IDENTITY:
          printf_unfiltered (_("state-identity"));
          printf_unfiltered (_("state-identity"));
          break;
          break;
        default:
        default:
          printf_unfiltered (_("0x%x"), info->behaviors[i]);
          printf_unfiltered (_("0x%x"), info->behaviors[i]);
        }
        }
      printf_unfiltered (_(", masks:"));
      printf_unfiltered (_(", masks:"));
      if (mask & EXC_MASK_BAD_ACCESS)
      if (mask & EXC_MASK_BAD_ACCESS)
        printf_unfiltered (_(" BAD_ACCESS"));
        printf_unfiltered (_(" BAD_ACCESS"));
      if (mask & EXC_MASK_BAD_INSTRUCTION)
      if (mask & EXC_MASK_BAD_INSTRUCTION)
        printf_unfiltered (_(" BAD_INSTRUCTION"));
        printf_unfiltered (_(" BAD_INSTRUCTION"));
      if (mask & EXC_MASK_ARITHMETIC)
      if (mask & EXC_MASK_ARITHMETIC)
        printf_unfiltered (_(" ARITHMETIC"));
        printf_unfiltered (_(" ARITHMETIC"));
      if (mask & EXC_MASK_EMULATION)
      if (mask & EXC_MASK_EMULATION)
        printf_unfiltered (_(" EMULATION"));
        printf_unfiltered (_(" EMULATION"));
      if (mask & EXC_MASK_SOFTWARE)
      if (mask & EXC_MASK_SOFTWARE)
        printf_unfiltered (_(" SOFTWARE"));
        printf_unfiltered (_(" SOFTWARE"));
      if (mask & EXC_MASK_BREAKPOINT)
      if (mask & EXC_MASK_BREAKPOINT)
        printf_unfiltered (_(" BREAKPOINT"));
        printf_unfiltered (_(" BREAKPOINT"));
      if (mask & EXC_MASK_SYSCALL)
      if (mask & EXC_MASK_SYSCALL)
        printf_unfiltered (_(" SYSCALL"));
        printf_unfiltered (_(" SYSCALL"));
      if (mask & EXC_MASK_MACH_SYSCALL)
      if (mask & EXC_MASK_MACH_SYSCALL)
        printf_unfiltered (_(" MACH_SYSCALL"));
        printf_unfiltered (_(" MACH_SYSCALL"));
      if (mask & EXC_MASK_RPC_ALERT)
      if (mask & EXC_MASK_RPC_ALERT)
        printf_unfiltered (_(" RPC_ALERT"));
        printf_unfiltered (_(" RPC_ALERT"));
      if (mask & EXC_MASK_CRASH)
      if (mask & EXC_MASK_CRASH)
        printf_unfiltered (_(" CRASH"));
        printf_unfiltered (_(" CRASH"));
      printf_unfiltered (_("\n"));
      printf_unfiltered (_("\n"));
    }
    }
}
}
 
 
static void
static void
info_mach_exceptions_command (char *args, int from_tty)
info_mach_exceptions_command (char *args, int from_tty)
{
{
  int i;
  int i;
  task_t task;
  task_t task;
  kern_return_t kret;
  kern_return_t kret;
  darwin_exception_info info;
  darwin_exception_info info;
 
 
  info.count = sizeof (info.ports) / sizeof (info.ports[0]);
  info.count = sizeof (info.ports) / sizeof (info.ports[0]);
 
 
  if (args != NULL)
  if (args != NULL)
    {
    {
      if (strcmp (args, "saved") == 0)
      if (strcmp (args, "saved") == 0)
        {
        {
          if (ptid_equal (inferior_ptid, null_ptid))
          if (ptid_equal (inferior_ptid, null_ptid))
            printf_unfiltered (_("No inferior running\n"));
            printf_unfiltered (_("No inferior running\n"));
          disp_exception (&current_inferior ()->private->exception_info);
          disp_exception (&current_inferior ()->private->exception_info);
          return;
          return;
        }
        }
      else if (strcmp (args, "host") == 0)
      else if (strcmp (args, "host") == 0)
        {
        {
          /* FIXME: This need a the privilegied host port!  */
          /* FIXME: This need a the privilegied host port!  */
          kret = host_get_exception_ports
          kret = host_get_exception_ports
            (darwin_host_self, EXC_MASK_ALL, info.masks,
            (darwin_host_self, EXC_MASK_ALL, info.masks,
             &info.count, info.ports, info.behaviors, info.flavors);
             &info.count, info.ports, info.behaviors, info.flavors);
          MACH_CHECK_ERROR (kret);
          MACH_CHECK_ERROR (kret);
          disp_exception (&info);
          disp_exception (&info);
        }
        }
      else
      else
        error (_("Parameter is saved, host or none"));
        error (_("Parameter is saved, host or none"));
    }
    }
  else
  else
    {
    {
      struct inferior *inf;
      struct inferior *inf;
 
 
      if (ptid_equal (inferior_ptid, null_ptid))
      if (ptid_equal (inferior_ptid, null_ptid))
        printf_unfiltered (_("No inferior running\n"));
        printf_unfiltered (_("No inferior running\n"));
      inf = current_inferior ();
      inf = current_inferior ();
 
 
      kret = task_get_exception_ports
      kret = task_get_exception_ports
        (inf->private->task, EXC_MASK_ALL, info.masks,
        (inf->private->task, EXC_MASK_ALL, info.masks,
         &info.count, info.ports, info.behaviors, info.flavors);
         &info.count, info.ports, info.behaviors, info.flavors);
      MACH_CHECK_ERROR (kret);
      MACH_CHECK_ERROR (kret);
      disp_exception (&info);
      disp_exception (&info);
    }
    }
}
}
 
 
void
void
_initialize_darwin_info_commands (void)
_initialize_darwin_info_commands (void)
{
{
  add_info ("mach-tasks", info_mach_tasks_command,
  add_info ("mach-tasks", info_mach_tasks_command,
            _("Get list of tasks in system."));
            _("Get list of tasks in system."));
  add_info ("mach-ports", info_mach_ports_command,
  add_info ("mach-ports", info_mach_ports_command,
            _("Get list of ports in a task."));
            _("Get list of ports in a task."));
  add_info ("mach-port", info_mach_port_command,
  add_info ("mach-port", info_mach_port_command,
            _("Get info on a specific port."));
            _("Get info on a specific port."));
  add_info ("mach-task", info_mach_task_command,
  add_info ("mach-task", info_mach_task_command,
            _("Get info on a specific task."));
            _("Get info on a specific task."));
  add_info ("mach-threads", info_mach_threads_command,
  add_info ("mach-threads", info_mach_threads_command,
            _("Get list of threads in a task."));
            _("Get list of threads in a task."));
  add_info ("mach-thread", info_mach_thread_command,
  add_info ("mach-thread", info_mach_thread_command,
            _("Get info on a specific thread."));
            _("Get info on a specific thread."));
 
 
  add_info ("mach-regions", info_mach_regions_command,
  add_info ("mach-regions", info_mach_regions_command,
            _("Get information on all mach region for the task."));
            _("Get information on all mach region for the task."));
  add_info ("mach-regions-rec", info_mach_regions_recurse_command,
  add_info ("mach-regions-rec", info_mach_regions_recurse_command,
            _("Get information on all mach sub region for the task."));
            _("Get information on all mach sub region for the task."));
  add_info ("mach-region", info_mach_region_command,
  add_info ("mach-region", info_mach_region_command,
            _("Get information on mach region at given address."));
            _("Get information on mach region at given address."));
 
 
  add_info ("mach-exceptions", info_mach_exceptions_command,
  add_info ("mach-exceptions", info_mach_exceptions_command,
            _("Disp mach exceptions."));
            _("Disp mach exceptions."));
}
}
 
 

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