D-Bus  1.12.20
dbus-connection.c
1 /* -*- mode: C; c-file-style: "gnu"; indent-tabs-mode: nil; -*- */
2 /* dbus-connection.c DBusConnection object
3  *
4  * Copyright (C) 2002-2006 Red Hat Inc.
5  *
6  * Licensed under the Academic Free License version 2.1
7  *
8  * This program is free software; you can redistribute it and/or modify
9  * it under the terms of the GNU General Public License as published by
10  * the Free Software Foundation; either version 2 of the License, or
11  * (at your option) any later version.
12  *
13  * This program is distributed in the hope that it will be useful,
14  * but WITHOUT ANY WARRANTY; without even the implied warranty of
15  * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
16  * GNU General Public License for more details.
17  *
18  * You should have received a copy of the GNU General Public License
19  * along with this program; if not, write to the Free Software
20  * Foundation, Inc., 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301 USA
21  *
22  */
23 
24 #include <config.h>
25 #include "dbus-shared.h"
26 #include "dbus-connection.h"
27 #include "dbus-list.h"
28 #include "dbus-timeout.h"
29 #include "dbus-transport.h"
30 #include "dbus-watch.h"
31 #include "dbus-connection-internal.h"
32 #include "dbus-pending-call-internal.h"
33 #include "dbus-list.h"
34 #include "dbus-hash.h"
35 #include "dbus-message-internal.h"
36 #include "dbus-message-private.h"
37 #include "dbus-threads.h"
38 #include "dbus-protocol.h"
39 #include "dbus-dataslot.h"
40 #include "dbus-string.h"
41 #include "dbus-signature.h"
42 #include "dbus-pending-call.h"
43 #include "dbus-object-tree.h"
44 #include "dbus-threads-internal.h"
45 #include "dbus-bus.h"
46 #include "dbus-marshal-basic.h"
47 
48 #ifdef DBUS_DISABLE_CHECKS
49 #define TOOK_LOCK_CHECK(connection)
50 #define RELEASING_LOCK_CHECK(connection)
51 #define HAVE_LOCK_CHECK(connection)
52 #else
53 #define TOOK_LOCK_CHECK(connection) do { \
54  _dbus_assert (!(connection)->have_connection_lock); \
55  (connection)->have_connection_lock = TRUE; \
56  } while (0)
57 #define RELEASING_LOCK_CHECK(connection) do { \
58  _dbus_assert ((connection)->have_connection_lock); \
59  (connection)->have_connection_lock = FALSE; \
60  } while (0)
61 #define HAVE_LOCK_CHECK(connection) _dbus_assert ((connection)->have_connection_lock)
62 /* A "DO_NOT_HAVE_LOCK_CHECK" is impossible since we need the lock to check the flag */
63 #endif
64 
65 #define TRACE_LOCKS 1
66 
67 #define CONNECTION_LOCK(connection) do { \
68  if (TRACE_LOCKS) { _dbus_verbose ("LOCK\n"); } \
69  _dbus_rmutex_lock ((connection)->mutex); \
70  TOOK_LOCK_CHECK (connection); \
71  } while (0)
72 
73 #define CONNECTION_UNLOCK(connection) _dbus_connection_unlock (connection)
74 
75 #define SLOTS_LOCK(connection) do { \
76  _dbus_rmutex_lock ((connection)->slot_mutex); \
77  } while (0)
78 
79 #define SLOTS_UNLOCK(connection) do { \
80  _dbus_rmutex_unlock ((connection)->slot_mutex); \
81  } while (0)
82 
83 #define DISPATCH_STATUS_NAME(s) \
84  ((s) == DBUS_DISPATCH_COMPLETE ? "complete" : \
85  (s) == DBUS_DISPATCH_DATA_REMAINS ? "data remains" : \
86  (s) == DBUS_DISPATCH_NEED_MEMORY ? "need memory" : \
87  "???")
88 
206 static void
207 _dbus_connection_trace_ref (DBusConnection *connection,
208  int old_refcount,
209  int new_refcount,
210  const char *why)
211 {
212 #ifdef DBUS_ENABLE_VERBOSE_MODE
213  static int enabled = -1;
214 
215  _dbus_trace_ref ("DBusConnection", connection, old_refcount, new_refcount,
216  why, "DBUS_CONNECTION_TRACE", &enabled);
217 #endif
218 }
219 
223 typedef struct DBusMessageFilter DBusMessageFilter;
224 
229 {
232  void *user_data;
234 };
235 
236 
241 {
245 };
246 
247 #if HAVE_DECL_MSG_NOSIGNAL
248 static dbus_bool_t _dbus_modify_sigpipe = FALSE;
249 #else
250 static dbus_bool_t _dbus_modify_sigpipe = TRUE;
251 #endif
252 
257 {
291  dbus_uint32_t client_serial;
306  char *server_guid;
308  /* These two MUST be bools and not bitfields, because they are protected by a separate lock
309  * from connection->mutex and all bitfields in a word have to be read/written together.
310  * So you can't have a different lock for different bitfields in the same word.
311  */
315  unsigned int shareable : 1;
317  unsigned int exit_on_disconnect : 1;
319  unsigned int route_peer_messages : 1;
321  unsigned int disconnected_message_arrived : 1;
329 #ifndef DBUS_DISABLE_CHECKS
330  unsigned int have_connection_lock : 1;
331 #endif
332 
333 #if defined(DBUS_ENABLE_CHECKS) || defined(DBUS_ENABLE_ASSERT)
334  int generation;
335 #endif
336 };
337 
338 static DBusDispatchStatus _dbus_connection_get_dispatch_status_unlocked (DBusConnection *connection);
339 static void _dbus_connection_update_dispatch_status_and_unlock (DBusConnection *connection,
340  DBusDispatchStatus new_status);
341 static void _dbus_connection_last_unref (DBusConnection *connection);
342 static void _dbus_connection_acquire_dispatch (DBusConnection *connection);
343 static void _dbus_connection_release_dispatch (DBusConnection *connection);
344 static DBusDispatchStatus _dbus_connection_flush_unlocked (DBusConnection *connection);
345 static void _dbus_connection_close_possibly_shared_and_unlock (DBusConnection *connection);
346 static dbus_bool_t _dbus_connection_get_is_connected_unlocked (DBusConnection *connection);
347 static dbus_bool_t _dbus_connection_peek_for_reply_unlocked (DBusConnection *connection,
348  dbus_uint32_t client_serial);
349 
350 static DBusMessageFilter *
351 _dbus_message_filter_ref (DBusMessageFilter *filter)
352 {
353 #ifdef DBUS_DISABLE_ASSERT
354  _dbus_atomic_inc (&filter->refcount);
355 #else
356  dbus_int32_t old_value;
357 
358  old_value = _dbus_atomic_inc (&filter->refcount);
359  _dbus_assert (old_value > 0);
360 #endif
361 
362  return filter;
363 }
364 
365 static void
366 _dbus_message_filter_unref (DBusMessageFilter *filter)
367 {
368  dbus_int32_t old_value;
369 
370  old_value = _dbus_atomic_dec (&filter->refcount);
371  _dbus_assert (old_value > 0);
372 
373  if (old_value == 1)
374  {
375  if (filter->free_user_data_function)
376  (* filter->free_user_data_function) (filter->user_data);
377 
378  dbus_free (filter);
379  }
380 }
381 
387 void
389 {
390  CONNECTION_LOCK (connection);
391 }
392 
398 void
400 {
401  DBusList *expired_messages;
402  DBusList *iter;
403 
404  if (TRACE_LOCKS)
405  {
406  _dbus_verbose ("UNLOCK\n");
407  }
408 
409  /* If we had messages that expired (fell off the incoming or outgoing
410  * queues) while we were locked, actually release them now */
411  expired_messages = connection->expired_messages;
412  connection->expired_messages = NULL;
413 
414  RELEASING_LOCK_CHECK (connection);
415  _dbus_rmutex_unlock (connection->mutex);
416 
417  for (iter = _dbus_list_pop_first_link (&expired_messages);
418  iter != NULL;
419  iter = _dbus_list_pop_first_link (&expired_messages))
420  {
421  DBusMessage *message = iter->data;
422 
423  dbus_message_unref (message);
424  _dbus_list_free_link (iter);
425  }
426 }
427 
435 static void
436 _dbus_connection_wakeup_mainloop (DBusConnection *connection)
437 {
438  if (connection->wakeup_main_function)
439  (*connection->wakeup_main_function) (connection->wakeup_main_data);
440 }
441 
442 #ifdef DBUS_ENABLE_EMBEDDED_TESTS
455 void
456 _dbus_connection_test_get_locks (DBusConnection *connection,
457  DBusMutex **mutex_loc,
458  DBusMutex **dispatch_mutex_loc,
459  DBusMutex **io_path_mutex_loc,
460  DBusCondVar **dispatch_cond_loc,
461  DBusCondVar **io_path_cond_loc)
462 {
463  *mutex_loc = (DBusMutex *) connection->mutex;
464  *dispatch_mutex_loc = (DBusMutex *) connection->dispatch_mutex;
465  *io_path_mutex_loc = (DBusMutex *) connection->io_path_mutex;
466  *dispatch_cond_loc = connection->dispatch_cond;
467  *io_path_cond_loc = connection->io_path_cond;
468 }
469 #endif
470 
479 void
481  DBusList *link)
482 {
483  DBusPendingCall *pending;
484  dbus_uint32_t reply_serial;
485  DBusMessage *message;
486 
488 
490  link);
491  message = link->data;
492 
493  /* If this is a reply we're waiting on, remove timeout for it */
494  reply_serial = dbus_message_get_reply_serial (message);
495  if (reply_serial != 0)
496  {
497  pending = _dbus_hash_table_lookup_int (connection->pending_replies,
498  reply_serial);
499  if (pending != NULL)
500  {
504 
506  }
507  }
508 
509 
510 
511  connection->n_incoming += 1;
512 
513  _dbus_connection_wakeup_mainloop (connection);
514 
515  _dbus_verbose ("Message %p (%s %s %s %s '%s' reply to %u) added to incoming queue %p, %d incoming\n",
516  message,
518  dbus_message_get_path (message) ?
519  dbus_message_get_path (message) :
520  "no path",
521  dbus_message_get_interface (message) ?
522  dbus_message_get_interface (message) :
523  "no interface",
524  dbus_message_get_member (message) ?
525  dbus_message_get_member (message) :
526  "no member",
527  dbus_message_get_signature (message),
529  connection,
530  connection->n_incoming);
531 
532  _dbus_message_trace_ref (message, -1, -1,
533  "_dbus_conection_queue_received_message_link");
534 }
535 
544 void
546  DBusList *link)
547 {
548  HAVE_LOCK_CHECK (connection);
549 
550  _dbus_list_append_link (&connection->incoming_messages, link);
551 
552  connection->n_incoming += 1;
553 
554  _dbus_connection_wakeup_mainloop (connection);
555 
556  _dbus_message_trace_ref (link->data, -1, -1,
557  "_dbus_connection_queue_synthesized_message_link");
558 
559  _dbus_verbose ("Synthesized message %p added to incoming queue %p, %d incoming\n",
560  link->data, connection, connection->n_incoming);
561 }
562 
563 
573 {
574  HAVE_LOCK_CHECK (connection);
575  return connection->outgoing_messages != NULL;
576 }
577 
589 {
590  dbus_bool_t v;
591 
592  _dbus_return_val_if_fail (connection != NULL, FALSE);
593 
594  CONNECTION_LOCK (connection);
596  CONNECTION_UNLOCK (connection);
597 
598  return v;
599 }
600 
610 {
611  HAVE_LOCK_CHECK (connection);
612 
613  return _dbus_list_get_last (&connection->outgoing_messages);
614 }
615 
624 void
626  DBusMessage *message)
627 {
628  DBusList *link;
629 
630  HAVE_LOCK_CHECK (connection);
631 
632  /* This can be called before we even complete authentication, since
633  * it's called on disconnect to clean up the outgoing queue.
634  * It's also called as we successfully send each message.
635  */
636 
637  link = _dbus_list_get_last_link (&connection->outgoing_messages);
638  _dbus_assert (link != NULL);
639  _dbus_assert (link->data == message);
640 
641  _dbus_list_unlink (&connection->outgoing_messages,
642  link);
643  _dbus_list_prepend_link (&connection->expired_messages, link);
644 
645  connection->n_outgoing -= 1;
646 
647  _dbus_verbose ("Message %p (%s %s %s %s '%s') removed from outgoing queue %p, %d left to send\n",
648  message,
650  dbus_message_get_path (message) ?
651  dbus_message_get_path (message) :
652  "no path",
653  dbus_message_get_interface (message) ?
654  dbus_message_get_interface (message) :
655  "no interface",
656  dbus_message_get_member (message) ?
657  dbus_message_get_member (message) :
658  "no member",
659  dbus_message_get_signature (message),
660  connection, connection->n_outgoing);
661 
662  /* It's OK that in principle we call the notify function, because for the
663  * outgoing limit, there isn't one */
664  _dbus_message_remove_counter (message, connection->outgoing_counter);
665 
666  /* The message will actually be unreffed when we unlock */
667 }
668 
671  DBusWatch *watch);
673 typedef void (* DBusWatchRemoveFunction) (DBusWatchList *list,
674  DBusWatch *watch);
676 typedef void (* DBusWatchToggleFunction) (DBusWatchList *list,
677  DBusWatch *watch,
678  dbus_bool_t enabled);
679 
680 static dbus_bool_t
681 protected_change_watch (DBusConnection *connection,
682  DBusWatch *watch,
683  DBusWatchAddFunction add_function,
684  DBusWatchRemoveFunction remove_function,
685  DBusWatchToggleFunction toggle_function,
686  dbus_bool_t enabled)
687 {
688  dbus_bool_t retval;
689 
690  HAVE_LOCK_CHECK (connection);
691 
692  /* The original purpose of protected_change_watch() was to hold a
693  * ref on the connection while dropping the connection lock, then
694  * calling out to the app. This was a broken hack that did not
695  * work, since the connection was in a hosed state (no WatchList
696  * field) while calling out.
697  *
698  * So for now we'll just keep the lock while calling out. This means
699  * apps are not allowed to call DBusConnection methods inside a
700  * watch function or they will deadlock.
701  *
702  * The "real fix" is to use the _and_unlock() pattern found
703  * elsewhere in the code, to defer calling out to the app until
704  * we're about to drop locks and return flow of control to the app
705  * anyway.
706  *
707  * See http://lists.freedesktop.org/archives/dbus/2007-July/thread.html#8144
708  */
709 
710  if (connection->watches)
711  {
712  if (add_function)
713  retval = (* add_function) (connection->watches, watch);
714  else if (remove_function)
715  {
716  retval = TRUE;
717  (* remove_function) (connection->watches, watch);
718  }
719  else
720  {
721  retval = TRUE;
722  (* toggle_function) (connection->watches, watch, enabled);
723  }
724  return retval;
725  }
726  else
727  return FALSE;
728 }
729 
730 
744  DBusWatch *watch)
745 {
746  return protected_change_watch (connection, watch,
748  NULL, NULL, FALSE);
749 }
750 
760 void
762  DBusWatch *watch)
763 {
764  protected_change_watch (connection, watch,
765  NULL,
767  NULL, FALSE);
768 }
769 
780 void
782  DBusWatch *watch,
783  dbus_bool_t enabled)
784 {
785  _dbus_assert (watch != NULL);
786 
787  protected_change_watch (connection, watch,
788  NULL, NULL,
790  enabled);
791 }
792 
795  DBusTimeout *timeout);
798  DBusTimeout *timeout);
801  DBusTimeout *timeout,
802  dbus_bool_t enabled);
803 
804 static dbus_bool_t
805 protected_change_timeout (DBusConnection *connection,
806  DBusTimeout *timeout,
807  DBusTimeoutAddFunction add_function,
808  DBusTimeoutRemoveFunction remove_function,
809  DBusTimeoutToggleFunction toggle_function,
810  dbus_bool_t enabled)
811 {
812  dbus_bool_t retval;
813 
814  HAVE_LOCK_CHECK (connection);
815 
816  /* The original purpose of protected_change_timeout() was to hold a
817  * ref on the connection while dropping the connection lock, then
818  * calling out to the app. This was a broken hack that did not
819  * work, since the connection was in a hosed state (no TimeoutList
820  * field) while calling out.
821  *
822  * So for now we'll just keep the lock while calling out. This means
823  * apps are not allowed to call DBusConnection methods inside a
824  * timeout function or they will deadlock.
825  *
826  * The "real fix" is to use the _and_unlock() pattern found
827  * elsewhere in the code, to defer calling out to the app until
828  * we're about to drop locks and return flow of control to the app
829  * anyway.
830  *
831  * See http://lists.freedesktop.org/archives/dbus/2007-July/thread.html#8144
832  */
833 
834  if (connection->timeouts)
835  {
836  if (add_function)
837  retval = (* add_function) (connection->timeouts, timeout);
838  else if (remove_function)
839  {
840  retval = TRUE;
841  (* remove_function) (connection->timeouts, timeout);
842  }
843  else
844  {
845  retval = TRUE;
846  (* toggle_function) (connection->timeouts, timeout, enabled);
847  }
848  return retval;
849  }
850  else
851  return FALSE;
852 }
853 
868  DBusTimeout *timeout)
869 {
870  return protected_change_timeout (connection, timeout,
872  NULL, NULL, FALSE);
873 }
874 
884 void
886  DBusTimeout *timeout)
887 {
888  protected_change_timeout (connection, timeout,
889  NULL,
891  NULL, FALSE);
892 }
893 
904 void
906  DBusTimeout *timeout,
907  dbus_bool_t enabled)
908 {
909  protected_change_timeout (connection, timeout,
910  NULL, NULL,
912  enabled);
913 }
914 
915 static dbus_bool_t
916 _dbus_connection_attach_pending_call_unlocked (DBusConnection *connection,
917  DBusPendingCall *pending)
918 {
919  dbus_uint32_t reply_serial;
920  DBusTimeout *timeout;
921 
922  HAVE_LOCK_CHECK (connection);
923 
924  reply_serial = _dbus_pending_call_get_reply_serial_unlocked (pending);
925 
926  _dbus_assert (reply_serial != 0);
927 
928  timeout = _dbus_pending_call_get_timeout_unlocked (pending);
929 
930  if (timeout)
931  {
932  if (!_dbus_connection_add_timeout_unlocked (connection, timeout))
933  return FALSE;
934 
936  reply_serial,
937  pending))
938  {
939  _dbus_connection_remove_timeout_unlocked (connection, timeout);
940 
942  HAVE_LOCK_CHECK (connection);
943  return FALSE;
944  }
945 
947  }
948  else
949  {
951  reply_serial,
952  pending))
953  {
954  HAVE_LOCK_CHECK (connection);
955  return FALSE;
956  }
957  }
958 
960 
961  HAVE_LOCK_CHECK (connection);
962 
963  return TRUE;
964 }
965 
966 static void
967 free_pending_call_on_hash_removal (void *data)
968 {
969  DBusPendingCall *pending;
970  DBusConnection *connection;
971 
972  if (data == NULL)
973  return;
974 
975  pending = data;
976 
977  connection = _dbus_pending_call_get_connection_unlocked (pending);
978 
979  HAVE_LOCK_CHECK (connection);
980 
982  {
985 
987  }
988 
989  /* FIXME 1.0? this is sort of dangerous and undesirable to drop the lock
990  * here, but the pending call finalizer could in principle call out to
991  * application code so we pretty much have to... some larger code reorg
992  * might be needed.
993  */
994  _dbus_connection_ref_unlocked (connection);
996  CONNECTION_LOCK (connection);
997  _dbus_connection_unref_unlocked (connection);
998 }
999 
1000 static void
1001 _dbus_connection_detach_pending_call_unlocked (DBusConnection *connection,
1002  DBusPendingCall *pending)
1003 {
1004  /* This ends up unlocking to call the pending call finalizer, which is unexpected to
1005  * say the least.
1006  */
1009 }
1010 
1011 static void
1012 _dbus_connection_detach_pending_call_and_unlock (DBusConnection *connection,
1013  DBusPendingCall *pending)
1014 {
1015  /* The idea here is to avoid finalizing the pending call
1016  * with the lock held, since there's a destroy notifier
1017  * in pending call that goes out to application code.
1018  *
1019  * There's an extra unlock inside the hash table
1020  * "free pending call" function FIXME...
1021  */
1025 
1029 
1031 
1033 }
1034 
1043 void
1045  DBusPendingCall *pending)
1046 {
1047  CONNECTION_LOCK (connection);
1048  _dbus_connection_detach_pending_call_and_unlock (connection, pending);
1049 }
1050 
1060 static dbus_bool_t
1061 _dbus_connection_acquire_io_path (DBusConnection *connection,
1062  int timeout_milliseconds)
1063 {
1064  dbus_bool_t we_acquired;
1065 
1066  HAVE_LOCK_CHECK (connection);
1067 
1068  /* We don't want the connection to vanish */
1069  _dbus_connection_ref_unlocked (connection);
1070 
1071  /* We will only touch io_path_acquired which is protected by our mutex */
1072  CONNECTION_UNLOCK (connection);
1073 
1074  _dbus_verbose ("locking io_path_mutex\n");
1075  _dbus_cmutex_lock (connection->io_path_mutex);
1076 
1077  _dbus_verbose ("start connection->io_path_acquired = %d timeout = %d\n",
1078  connection->io_path_acquired, timeout_milliseconds);
1079 
1080  we_acquired = FALSE;
1081 
1082  if (connection->io_path_acquired)
1083  {
1084  if (timeout_milliseconds != -1)
1085  {
1086  _dbus_verbose ("waiting %d for IO path to be acquirable\n",
1087  timeout_milliseconds);
1088 
1089  if (!_dbus_condvar_wait_timeout (connection->io_path_cond,
1090  connection->io_path_mutex,
1091  timeout_milliseconds))
1092  {
1093  /* We timed out before anyone signaled. */
1094  /* (writing the loop to handle the !timedout case by
1095  * waiting longer if needed is a pain since dbus
1096  * wraps pthread_cond_timedwait to take a relative
1097  * time instead of absolute, something kind of stupid
1098  * on our part. for now it doesn't matter, we will just
1099  * end up back here eventually.)
1100  */
1101  }
1102  }
1103  else
1104  {
1105  while (connection->io_path_acquired)
1106  {
1107  _dbus_verbose ("waiting for IO path to be acquirable\n");
1108  _dbus_condvar_wait (connection->io_path_cond,
1109  connection->io_path_mutex);
1110  }
1111  }
1112  }
1113 
1114  if (!connection->io_path_acquired)
1115  {
1116  we_acquired = TRUE;
1117  connection->io_path_acquired = TRUE;
1118  }
1119 
1120  _dbus_verbose ("end connection->io_path_acquired = %d we_acquired = %d\n",
1121  connection->io_path_acquired, we_acquired);
1122 
1123  _dbus_verbose ("unlocking io_path_mutex\n");
1124  _dbus_cmutex_unlock (connection->io_path_mutex);
1125 
1126  CONNECTION_LOCK (connection);
1127 
1128  HAVE_LOCK_CHECK (connection);
1129 
1130  _dbus_connection_unref_unlocked (connection);
1131 
1132  return we_acquired;
1133 }
1134 
1142 static void
1143 _dbus_connection_release_io_path (DBusConnection *connection)
1144 {
1145  HAVE_LOCK_CHECK (connection);
1146 
1147  _dbus_verbose ("locking io_path_mutex\n");
1148  _dbus_cmutex_lock (connection->io_path_mutex);
1149 
1150  _dbus_assert (connection->io_path_acquired);
1151 
1152  _dbus_verbose ("start connection->io_path_acquired = %d\n",
1153  connection->io_path_acquired);
1154 
1155  connection->io_path_acquired = FALSE;
1156  _dbus_condvar_wake_one (connection->io_path_cond);
1157 
1158  _dbus_verbose ("unlocking io_path_mutex\n");
1159  _dbus_cmutex_unlock (connection->io_path_mutex);
1160 }
1161 
1197 void
1199  DBusPendingCall *pending,
1200  unsigned int flags,
1201  int timeout_milliseconds)
1202 {
1203  _dbus_verbose ("start\n");
1204 
1205  HAVE_LOCK_CHECK (connection);
1206 
1207  if (connection->n_outgoing == 0)
1208  flags &= ~DBUS_ITERATION_DO_WRITING;
1209 
1210  if (_dbus_connection_acquire_io_path (connection,
1211  (flags & DBUS_ITERATION_BLOCK) ? timeout_milliseconds : 0))
1212  {
1213  HAVE_LOCK_CHECK (connection);
1214 
1215  if ( (pending != NULL) && _dbus_pending_call_get_completed_unlocked(pending))
1216  {
1217  _dbus_verbose ("pending call completed while acquiring I/O path");
1218  }
1219  else if ( (pending != NULL) &&
1220  _dbus_connection_peek_for_reply_unlocked (connection,
1222  {
1223  _dbus_verbose ("pending call completed while acquiring I/O path (reply found in queue)");
1224  }
1225  else
1226  {
1228  flags, timeout_milliseconds);
1229  }
1230 
1231  _dbus_connection_release_io_path (connection);
1232  }
1233 
1234  HAVE_LOCK_CHECK (connection);
1235 
1236  _dbus_verbose ("end\n");
1237 }
1238 
1250 {
1251  DBusConnection *connection;
1252  DBusWatchList *watch_list;
1253  DBusTimeoutList *timeout_list;
1254  DBusHashTable *pending_replies;
1255  DBusList *disconnect_link;
1256  DBusMessage *disconnect_message;
1257  DBusCounter *outgoing_counter;
1258  DBusObjectTree *objects;
1259 
1260  watch_list = NULL;
1261  connection = NULL;
1262  pending_replies = NULL;
1263  timeout_list = NULL;
1264  disconnect_link = NULL;
1265  disconnect_message = NULL;
1266  outgoing_counter = NULL;
1267  objects = NULL;
1268 
1269  watch_list = _dbus_watch_list_new ();
1270  if (watch_list == NULL)
1271  goto error;
1272 
1273  timeout_list = _dbus_timeout_list_new ();
1274  if (timeout_list == NULL)
1275  goto error;
1276 
1277  pending_replies =
1279  NULL,
1280  (DBusFreeFunction)free_pending_call_on_hash_removal);
1281  if (pending_replies == NULL)
1282  goto error;
1283 
1284  connection = dbus_new0 (DBusConnection, 1);
1285  if (connection == NULL)
1286  goto error;
1287 
1288  _dbus_rmutex_new_at_location (&connection->mutex);
1289  if (connection->mutex == NULL)
1290  goto error;
1291 
1293  if (connection->io_path_mutex == NULL)
1294  goto error;
1295 
1297  if (connection->dispatch_mutex == NULL)
1298  goto error;
1299 
1301  if (connection->dispatch_cond == NULL)
1302  goto error;
1303 
1305  if (connection->io_path_cond == NULL)
1306  goto error;
1307 
1309  if (connection->slot_mutex == NULL)
1310  goto error;
1311 
1312  disconnect_message = dbus_message_new_signal (DBUS_PATH_LOCAL,
1314  "Disconnected");
1315 
1316  if (disconnect_message == NULL)
1317  goto error;
1318 
1319  disconnect_link = _dbus_list_alloc_link (disconnect_message);
1320  if (disconnect_link == NULL)
1321  goto error;
1322 
1323  outgoing_counter = _dbus_counter_new ();
1324  if (outgoing_counter == NULL)
1325  goto error;
1326 
1327  objects = _dbus_object_tree_new (connection);
1328  if (objects == NULL)
1329  goto error;
1330 
1331  if (_dbus_modify_sigpipe)
1333 
1334  /* initialized to 0: use atomic op to avoid mixing atomic and non-atomic */
1335  _dbus_atomic_inc (&connection->refcount);
1336  connection->transport = transport;
1337  connection->watches = watch_list;
1338  connection->timeouts = timeout_list;
1339  connection->pending_replies = pending_replies;
1340  connection->outgoing_counter = outgoing_counter;
1341  connection->filter_list = NULL;
1342  connection->last_dispatch_status = DBUS_DISPATCH_COMPLETE; /* so we're notified first time there's data */
1343  connection->objects = objects;
1344  connection->exit_on_disconnect = FALSE;
1345  connection->shareable = FALSE;
1346  connection->route_peer_messages = FALSE;
1347  connection->disconnected_message_arrived = FALSE;
1348  connection->disconnected_message_processed = FALSE;
1349 
1350 #if defined(DBUS_ENABLE_CHECKS) || defined(DBUS_ENABLE_ASSERT)
1351  connection->generation = _dbus_current_generation;
1352 #endif
1353 
1354  _dbus_data_slot_list_init (&connection->slot_list);
1355 
1356  connection->client_serial = 1;
1357 
1358  connection->disconnect_message_link = disconnect_link;
1359 
1360  CONNECTION_LOCK (connection);
1361 
1362  if (!_dbus_transport_set_connection (transport, connection))
1363  {
1364  CONNECTION_UNLOCK (connection);
1365 
1366  goto error;
1367  }
1368 
1369  _dbus_transport_ref (transport);
1370 
1371  CONNECTION_UNLOCK (connection);
1372 
1373  _dbus_connection_trace_ref (connection, 0, 1, "new_for_transport");
1374  return connection;
1375 
1376  error:
1377  if (disconnect_message != NULL)
1378  dbus_message_unref (disconnect_message);
1379 
1380  if (disconnect_link != NULL)
1381  _dbus_list_free_link (disconnect_link);
1382 
1383  if (connection != NULL)
1384  {
1387  _dbus_rmutex_free_at_location (&connection->mutex);
1391  dbus_free (connection);
1392  }
1393  if (pending_replies)
1394  _dbus_hash_table_unref (pending_replies);
1395 
1396  if (watch_list)
1397  _dbus_watch_list_free (watch_list);
1398 
1399  if (timeout_list)
1400  _dbus_timeout_list_free (timeout_list);
1401 
1402  if (outgoing_counter)
1403  _dbus_counter_unref (outgoing_counter);
1404 
1405  if (objects)
1406  _dbus_object_tree_unref (objects);
1407 
1408  return NULL;
1409 }
1410 
1420 {
1421  dbus_int32_t old_refcount;
1422 
1423  _dbus_assert (connection != NULL);
1424  _dbus_assert (connection->generation == _dbus_current_generation);
1425 
1426  HAVE_LOCK_CHECK (connection);
1427 
1428  old_refcount = _dbus_atomic_inc (&connection->refcount);
1429  _dbus_connection_trace_ref (connection, old_refcount, old_refcount + 1,
1430  "ref_unlocked");
1431 
1432  return connection;
1433 }
1434 
1441 void
1443 {
1444  dbus_int32_t old_refcount;
1445 
1446  HAVE_LOCK_CHECK (connection);
1447 
1448  _dbus_assert (connection != NULL);
1449 
1450  old_refcount = _dbus_atomic_dec (&connection->refcount);
1451 
1452  _dbus_connection_trace_ref (connection, old_refcount, old_refcount - 1,
1453  "unref_unlocked");
1454 
1455  if (old_refcount == 1)
1456  _dbus_connection_last_unref (connection);
1457 }
1458 
1468 dbus_uint32_t
1470 {
1471  dbus_uint32_t serial;
1472 
1473  serial = connection->client_serial++;
1474 
1475  if (connection->client_serial == 0)
1476  connection->client_serial = 1;
1477 
1478  return serial;
1479 }
1480 
1496  unsigned int condition,
1497  void *data)
1498 {
1499  DBusConnection *connection;
1500  dbus_bool_t retval;
1501  DBusDispatchStatus status;
1502 
1503  connection = data;
1504 
1505  _dbus_verbose ("start\n");
1506 
1507  CONNECTION_LOCK (connection);
1508 
1509  if (!_dbus_connection_acquire_io_path (connection, 1))
1510  {
1511  /* another thread is handling the message */
1512  CONNECTION_UNLOCK (connection);
1513  return TRUE;
1514  }
1515 
1516  HAVE_LOCK_CHECK (connection);
1517  retval = _dbus_transport_handle_watch (connection->transport,
1518  watch, condition);
1519 
1520  _dbus_connection_release_io_path (connection);
1521 
1522  HAVE_LOCK_CHECK (connection);
1523 
1524  _dbus_verbose ("middle\n");
1525 
1526  status = _dbus_connection_get_dispatch_status_unlocked (connection);
1527 
1528  /* this calls out to user code */
1529  _dbus_connection_update_dispatch_status_and_unlock (connection, status);
1530 
1531  _dbus_verbose ("end\n");
1532 
1533  return retval;
1534 }
1535 
1536 /* Protected by _DBUS_LOCK (shared_connections) */
1537 static DBusHashTable *shared_connections = NULL;
1538 static DBusList *shared_connections_no_guid = NULL;
1539 
1540 static void
1541 close_connection_on_shutdown (DBusConnection *connection)
1542 {
1543  DBusMessage *message;
1544 
1545  dbus_connection_ref (connection);
1547 
1548  /* Churn through to the Disconnected message */
1549  while ((message = dbus_connection_pop_message (connection)))
1550  {
1551  dbus_message_unref (message);
1552  }
1553  dbus_connection_unref (connection);
1554 }
1555 
1556 static void
1557 shared_connections_shutdown (void *data)
1558 {
1559  int n_entries;
1560 
1561  if (!_DBUS_LOCK (shared_connections))
1562  {
1563  /* We'd have initialized locks before adding anything, so there
1564  * can't be anything there. */
1565  return;
1566  }
1567 
1568  /* This is a little bit unpleasant... better ideas? */
1569  while ((n_entries = _dbus_hash_table_get_n_entries (shared_connections)) > 0)
1570  {
1571  DBusConnection *connection;
1572  DBusHashIter iter;
1573 
1574  _dbus_hash_iter_init (shared_connections, &iter);
1575  _dbus_hash_iter_next (&iter);
1576 
1577  connection = _dbus_hash_iter_get_value (&iter);
1578 
1579  _DBUS_UNLOCK (shared_connections);
1580  close_connection_on_shutdown (connection);
1581  if (!_DBUS_LOCK (shared_connections))
1582  _dbus_assert_not_reached ("global locks were already initialized");
1583 
1584  /* The connection should now be dead and not in our hash ... */
1585  _dbus_assert (_dbus_hash_table_get_n_entries (shared_connections) < n_entries);
1586  }
1587 
1588  _dbus_assert (_dbus_hash_table_get_n_entries (shared_connections) == 0);
1589 
1590  _dbus_hash_table_unref (shared_connections);
1591  shared_connections = NULL;
1592 
1593  if (shared_connections_no_guid != NULL)
1594  {
1595  DBusConnection *connection;
1596  connection = _dbus_list_pop_first (&shared_connections_no_guid);
1597  while (connection != NULL)
1598  {
1599  _DBUS_UNLOCK (shared_connections);
1600  close_connection_on_shutdown (connection);
1601  if (!_DBUS_LOCK (shared_connections))
1602  _dbus_assert_not_reached ("global locks were already initialized");
1603  connection = _dbus_list_pop_first (&shared_connections_no_guid);
1604  }
1605  }
1606 
1607  shared_connections_no_guid = NULL;
1608 
1609  _DBUS_UNLOCK (shared_connections);
1610 }
1611 
1612 static dbus_bool_t
1613 connection_lookup_shared (DBusAddressEntry *entry,
1614  DBusConnection **result)
1615 {
1616  _dbus_verbose ("checking for existing connection\n");
1617 
1618  *result = NULL;
1619 
1620  if (!_DBUS_LOCK (shared_connections))
1621  {
1622  /* If it was shared, we'd have initialized global locks when we put
1623  * it in shared_connections. */
1624  return FALSE;
1625  }
1626 
1627  if (shared_connections == NULL)
1628  {
1629  _dbus_verbose ("creating shared_connections hash table\n");
1630 
1631  shared_connections = _dbus_hash_table_new (DBUS_HASH_STRING,
1632  dbus_free,
1633  NULL);
1634  if (shared_connections == NULL)
1635  {
1636  _DBUS_UNLOCK (shared_connections);
1637  return FALSE;
1638  }
1639 
1640  if (!_dbus_register_shutdown_func (shared_connections_shutdown, NULL))
1641  {
1642  _dbus_hash_table_unref (shared_connections);
1643  shared_connections = NULL;
1644  _DBUS_UNLOCK (shared_connections);
1645  return FALSE;
1646  }
1647 
1648  _dbus_verbose (" successfully created shared_connections\n");
1649 
1650  _DBUS_UNLOCK (shared_connections);
1651  return TRUE; /* no point looking up in the hash we just made */
1652  }
1653  else
1654  {
1655  const char *guid;
1656 
1657  guid = dbus_address_entry_get_value (entry, "guid");
1658 
1659  if (guid != NULL)
1660  {
1661  DBusConnection *connection;
1662 
1663  connection = _dbus_hash_table_lookup_string (shared_connections,
1664  guid);
1665 
1666  if (connection)
1667  {
1668  /* The DBusConnection can't be finalized without taking
1669  * the shared_connections lock to remove it from the
1670  * hash. So it's safe to ref the connection here.
1671  * However, it may be disconnected if the Disconnected
1672  * message hasn't been processed yet, in which case we
1673  * want to pretend it isn't in the hash and avoid
1674  * returning it.
1675  *
1676  * The idea is to avoid ever returning a disconnected connection
1677  * from dbus_connection_open(). We could just synchronously
1678  * drop our shared ref to the connection on connection disconnect,
1679  * and then assert here that the connection is connected, but
1680  * that causes reentrancy headaches.
1681  */
1682  CONNECTION_LOCK (connection);
1683  if (_dbus_connection_get_is_connected_unlocked (connection))
1684  {
1685  _dbus_connection_ref_unlocked (connection);
1686  *result = connection;
1687  _dbus_verbose ("looked up existing connection to server guid %s\n",
1688  guid);
1689  }
1690  else
1691  {
1692  _dbus_verbose ("looked up existing connection to server guid %s but it was disconnected so ignoring it\n",
1693  guid);
1694  }
1695  CONNECTION_UNLOCK (connection);
1696  }
1697  }
1698 
1699  _DBUS_UNLOCK (shared_connections);
1700  return TRUE;
1701  }
1702 }
1703 
1704 static dbus_bool_t
1705 connection_record_shared_unlocked (DBusConnection *connection,
1706  const char *guid)
1707 {
1708  char *guid_key;
1709  char *guid_in_connection;
1710 
1711  HAVE_LOCK_CHECK (connection);
1712  _dbus_assert (connection->server_guid == NULL);
1713  _dbus_assert (connection->shareable);
1714 
1715  /* get a hard ref on this connection, even if
1716  * we won't in fact store it in the hash, we still
1717  * need to hold a ref on it until it's disconnected.
1718  */
1719  _dbus_connection_ref_unlocked (connection);
1720 
1721  if (guid == NULL)
1722  {
1723  if (!_DBUS_LOCK (shared_connections))
1724  return FALSE;
1725 
1726  if (!_dbus_list_prepend (&shared_connections_no_guid, connection))
1727  {
1728  _DBUS_UNLOCK (shared_connections);
1729  return FALSE;
1730  }
1731 
1732  _DBUS_UNLOCK (shared_connections);
1733  return TRUE; /* don't store in the hash */
1734  }
1735 
1736  /* A separate copy of the key is required in the hash table, because
1737  * we don't have a lock on the connection when we are doing a hash
1738  * lookup.
1739  */
1740 
1741  guid_key = _dbus_strdup (guid);
1742  if (guid_key == NULL)
1743  return FALSE;
1744 
1745  guid_in_connection = _dbus_strdup (guid);
1746  if (guid_in_connection == NULL)
1747  {
1748  dbus_free (guid_key);
1749  return FALSE;
1750  }
1751 
1752  if (!_DBUS_LOCK (shared_connections))
1753  {
1754  dbus_free (guid_in_connection);
1755  dbus_free (guid_key);
1756  return FALSE;
1757  }
1758 
1759  _dbus_assert (shared_connections != NULL);
1760 
1761  if (!_dbus_hash_table_insert_string (shared_connections,
1762  guid_key, connection))
1763  {
1764  dbus_free (guid_key);
1765  dbus_free (guid_in_connection);
1766  _DBUS_UNLOCK (shared_connections);
1767  return FALSE;
1768  }
1769 
1770  connection->server_guid = guid_in_connection;
1771 
1772  _dbus_verbose ("stored connection to %s to be shared\n",
1773  connection->server_guid);
1774 
1775  _DBUS_UNLOCK (shared_connections);
1776 
1777  _dbus_assert (connection->server_guid != NULL);
1778 
1779  return TRUE;
1780 }
1781 
1782 static void
1783 connection_forget_shared_unlocked (DBusConnection *connection)
1784 {
1785  HAVE_LOCK_CHECK (connection);
1786 
1787  if (!connection->shareable)
1788  return;
1789 
1790  if (!_DBUS_LOCK (shared_connections))
1791  {
1792  /* If it was shared, we'd have initialized global locks when we put
1793  * it in the table; so it can't be there. */
1794  return;
1795  }
1796 
1797  if (connection->server_guid != NULL)
1798  {
1799  _dbus_verbose ("dropping connection to %s out of the shared table\n",
1800  connection->server_guid);
1801 
1802  if (!_dbus_hash_table_remove_string (shared_connections,
1803  connection->server_guid))
1804  _dbus_assert_not_reached ("connection was not in the shared table");
1805 
1806  dbus_free (connection->server_guid);
1807  connection->server_guid = NULL;
1808  }
1809  else
1810  {
1811  _dbus_list_remove (&shared_connections_no_guid, connection);
1812  }
1813 
1814  _DBUS_UNLOCK (shared_connections);
1815 
1816  /* remove our reference held on all shareable connections */
1817  _dbus_connection_unref_unlocked (connection);
1818 }
1819 
1820 static DBusConnection*
1821 connection_try_from_address_entry (DBusAddressEntry *entry,
1822  DBusError *error)
1823 {
1824  DBusTransport *transport;
1825  DBusConnection *connection;
1826 
1827  transport = _dbus_transport_open (entry, error);
1828 
1829  if (transport == NULL)
1830  {
1831  _DBUS_ASSERT_ERROR_IS_SET (error);
1832  return NULL;
1833  }
1834 
1835  connection = _dbus_connection_new_for_transport (transport);
1836 
1837  _dbus_transport_unref (transport);
1838 
1839  if (connection == NULL)
1840  {
1841  _DBUS_SET_OOM (error);
1842  return NULL;
1843  }
1844 
1845 #ifndef DBUS_DISABLE_CHECKS
1846  _dbus_assert (!connection->have_connection_lock);
1847 #endif
1848  return connection;
1849 }
1850 
1851 /*
1852  * If the shared parameter is true, then any existing connection will
1853  * be used (and if a new connection is created, it will be available
1854  * for use by others). If the shared parameter is false, a new
1855  * connection will always be created, and the new connection will
1856  * never be returned to other callers.
1857  *
1858  * @param address the address
1859  * @param shared whether the connection is shared or private
1860  * @param error error return
1861  * @returns the connection or #NULL on error
1862  */
1863 static DBusConnection*
1864 _dbus_connection_open_internal (const char *address,
1865  dbus_bool_t shared,
1866  DBusError *error)
1867 {
1868  DBusConnection *connection;
1869  DBusAddressEntry **entries;
1870  DBusError tmp_error = DBUS_ERROR_INIT;
1871  DBusError first_error = DBUS_ERROR_INIT;
1872  int len, i;
1873 
1874  _DBUS_ASSERT_ERROR_IS_CLEAR (error);
1875 
1876  _dbus_verbose ("opening %s connection to: %s\n",
1877  shared ? "shared" : "private", address);
1878 
1879  if (!dbus_parse_address (address, &entries, &len, error))
1880  return NULL;
1881 
1882  _DBUS_ASSERT_ERROR_IS_CLEAR (error);
1883 
1884  connection = NULL;
1885 
1886  for (i = 0; i < len; i++)
1887  {
1888  if (shared)
1889  {
1890  if (!connection_lookup_shared (entries[i], &connection))
1891  _DBUS_SET_OOM (&tmp_error);
1892  }
1893 
1894  if (connection == NULL)
1895  {
1896  connection = connection_try_from_address_entry (entries[i],
1897  &tmp_error);
1898 
1899  if (connection != NULL && shared)
1900  {
1901  const char *guid;
1902 
1903  connection->shareable = TRUE;
1904 
1905  /* guid may be NULL */
1906  guid = dbus_address_entry_get_value (entries[i], "guid");
1907 
1908  CONNECTION_LOCK (connection);
1909 
1910  if (!connection_record_shared_unlocked (connection, guid))
1911  {
1912  _DBUS_SET_OOM (&tmp_error);
1913  _dbus_connection_close_possibly_shared_and_unlock (connection);
1914  dbus_connection_unref (connection);
1915  connection = NULL;
1916  }
1917  else
1918  CONNECTION_UNLOCK (connection);
1919  }
1920  }
1921 
1922  if (connection)
1923  break;
1924 
1925  _DBUS_ASSERT_ERROR_IS_SET (&tmp_error);
1926 
1927  if (i == 0)
1928  dbus_move_error (&tmp_error, &first_error);
1929  else
1930  dbus_error_free (&tmp_error);
1931  }
1932 
1933  _DBUS_ASSERT_ERROR_IS_CLEAR (error);
1934  _DBUS_ASSERT_ERROR_IS_CLEAR (&tmp_error);
1935 
1936  if (connection == NULL)
1937  {
1938  _DBUS_ASSERT_ERROR_IS_SET (&first_error);
1939  dbus_move_error (&first_error, error);
1940  }
1941  else
1942  dbus_error_free (&first_error);
1943 
1944  dbus_address_entries_free (entries);
1945  return connection;
1946 }
1947 
1956 void
1958 {
1959  _dbus_assert (connection != NULL);
1960  _dbus_assert (connection->generation == _dbus_current_generation);
1961 
1962  CONNECTION_LOCK (connection);
1963  _dbus_connection_close_possibly_shared_and_unlock (connection);
1964 }
1965 
1966 static DBusPreallocatedSend*
1967 _dbus_connection_preallocate_send_unlocked (DBusConnection *connection)
1968 {
1969  DBusPreallocatedSend *preallocated;
1970 
1971  HAVE_LOCK_CHECK (connection);
1972 
1973  _dbus_assert (connection != NULL);
1974 
1975  preallocated = dbus_new (DBusPreallocatedSend, 1);
1976  if (preallocated == NULL)
1977  return NULL;
1978 
1979  preallocated->queue_link = _dbus_list_alloc_link (NULL);
1980  if (preallocated->queue_link == NULL)
1981  goto failed_0;
1982 
1983  preallocated->counter_link = _dbus_list_alloc_link (connection->outgoing_counter);
1984  if (preallocated->counter_link == NULL)
1985  goto failed_1;
1986 
1987  _dbus_counter_ref (preallocated->counter_link->data);
1988 
1989  preallocated->connection = connection;
1990 
1991  return preallocated;
1992 
1993  failed_1:
1994  _dbus_list_free_link (preallocated->queue_link);
1995  failed_0:
1996  dbus_free (preallocated);
1997 
1998  return NULL;
1999 }
2000 
2001 /* Called with lock held, does not update dispatch status */
2002 static void
2003 _dbus_connection_send_preallocated_unlocked_no_update (DBusConnection *connection,
2004  DBusPreallocatedSend *preallocated,
2005  DBusMessage *message,
2006  dbus_uint32_t *client_serial)
2007 {
2008  dbus_uint32_t serial;
2009 
2010  preallocated->queue_link->data = message;
2012  preallocated->queue_link);
2013 
2014  /* It's OK that we'll never call the notify function, because for the
2015  * outgoing limit, there isn't one */
2017  preallocated->counter_link);
2018 
2019  dbus_free (preallocated);
2020  preallocated = NULL;
2021 
2022  dbus_message_ref (message);
2023 
2024  connection->n_outgoing += 1;
2025 
2026  _dbus_verbose ("Message %p (%s %s %s %s '%s') for %s added to outgoing queue %p, %d pending to send\n",
2027  message,
2029  dbus_message_get_path (message) ?
2030  dbus_message_get_path (message) :
2031  "no path",
2032  dbus_message_get_interface (message) ?
2033  dbus_message_get_interface (message) :
2034  "no interface",
2035  dbus_message_get_member (message) ?
2036  dbus_message_get_member (message) :
2037  "no member",
2038  dbus_message_get_signature (message),
2039  dbus_message_get_destination (message) ?
2040  dbus_message_get_destination (message) :
2041  "null",
2042  connection,
2043  connection->n_outgoing);
2044 
2045  if (dbus_message_get_serial (message) == 0)
2046  {
2047  serial = _dbus_connection_get_next_client_serial (connection);
2048  dbus_message_set_serial (message, serial);
2049  if (client_serial)
2050  *client_serial = serial;
2051  }
2052  else
2053  {
2054  if (client_serial)
2055  *client_serial = dbus_message_get_serial (message);
2056  }
2057 
2058  _dbus_verbose ("Message %p serial is %u\n",
2059  message, dbus_message_get_serial (message));
2060 
2061  dbus_message_lock (message);
2062 
2063  /* Now we need to run an iteration to hopefully just write the messages
2064  * out immediately, and otherwise get them queued up
2065  */
2067  NULL,
2068  DBUS_ITERATION_DO_WRITING,
2069  -1);
2070 
2071  /* If stuff is still queued up, be sure we wake up the main loop */
2072  if (connection->n_outgoing > 0)
2073  _dbus_connection_wakeup_mainloop (connection);
2074 }
2075 
2076 static void
2077 _dbus_connection_send_preallocated_and_unlock (DBusConnection *connection,
2078  DBusPreallocatedSend *preallocated,
2079  DBusMessage *message,
2080  dbus_uint32_t *client_serial)
2081 {
2082  DBusDispatchStatus status;
2083 
2084  HAVE_LOCK_CHECK (connection);
2085 
2086  _dbus_connection_send_preallocated_unlocked_no_update (connection,
2087  preallocated,
2088  message, client_serial);
2089 
2090  _dbus_verbose ("middle\n");
2091  status = _dbus_connection_get_dispatch_status_unlocked (connection);
2092 
2093  /* this calls out to user code */
2094  _dbus_connection_update_dispatch_status_and_unlock (connection, status);
2095 }
2096 
2108  DBusMessage *message,
2109  dbus_uint32_t *client_serial)
2110 {
2111  DBusPreallocatedSend *preallocated;
2112 
2113  _dbus_assert (connection != NULL);
2114  _dbus_assert (message != NULL);
2115 
2116  preallocated = _dbus_connection_preallocate_send_unlocked (connection);
2117  if (preallocated == NULL)
2118  {
2119  CONNECTION_UNLOCK (connection);
2120  return FALSE;
2121  }
2122 
2123  _dbus_connection_send_preallocated_and_unlock (connection,
2124  preallocated,
2125  message,
2126  client_serial);
2127  return TRUE;
2128 }
2129 
2154 void
2156 {
2157  dbus_int32_t refcount;
2158 
2159  CONNECTION_LOCK (connection);
2160 
2161  refcount = _dbus_atomic_get (&connection->refcount);
2162  /* The caller should have at least one ref */
2163  _dbus_assert (refcount >= 1);
2164 
2165  if (refcount == 1)
2166  _dbus_connection_close_possibly_shared_and_unlock (connection);
2167  else
2168  CONNECTION_UNLOCK (connection);
2169 }
2170 
2171 
2181 static void
2182 _dbus_memory_pause_based_on_timeout (int timeout_milliseconds)
2183 {
2184  if (timeout_milliseconds == -1)
2185  _dbus_sleep_milliseconds (1000);
2186  else if (timeout_milliseconds < 100)
2187  ; /* just busy loop */
2188  else if (timeout_milliseconds <= 1000)
2189  _dbus_sleep_milliseconds (timeout_milliseconds / 3);
2190  else
2191  _dbus_sleep_milliseconds (1000);
2192 }
2193 
2194 static DBusMessage *
2195 generate_local_error_message (dbus_uint32_t serial,
2196  const char *error_name,
2197  const char *error_msg)
2198 {
2199  DBusMessage *message;
2201  if (!message)
2202  goto out;
2203 
2204  if (!dbus_message_set_error_name (message, error_name))
2205  {
2206  dbus_message_unref (message);
2207  message = NULL;
2208  goto out;
2209  }
2210 
2211  dbus_message_set_no_reply (message, TRUE);
2212 
2213  if (!dbus_message_set_reply_serial (message,
2214  serial))
2215  {
2216  dbus_message_unref (message);
2217  message = NULL;
2218  goto out;
2219  }
2220 
2221  if (error_msg != NULL)
2222  {
2223  DBusMessageIter iter;
2224 
2225  dbus_message_iter_init_append (message, &iter);
2226  if (!dbus_message_iter_append_basic (&iter,
2228  &error_msg))
2229  {
2230  dbus_message_unref (message);
2231  message = NULL;
2232  goto out;
2233  }
2234  }
2235 
2236  out:
2237  return message;
2238 }
2239 
2240 /*
2241  * Peek the incoming queue to see if we got reply for a specific serial
2242  */
2243 static dbus_bool_t
2244 _dbus_connection_peek_for_reply_unlocked (DBusConnection *connection,
2245  dbus_uint32_t client_serial)
2246 {
2247  DBusList *link;
2248  HAVE_LOCK_CHECK (connection);
2249 
2250  link = _dbus_list_get_first_link (&connection->incoming_messages);
2251 
2252  while (link != NULL)
2253  {
2254  DBusMessage *reply = link->data;
2255 
2256  if (dbus_message_get_reply_serial (reply) == client_serial)
2257  {
2258  _dbus_verbose ("%s reply to %d found in queue\n", _DBUS_FUNCTION_NAME, client_serial);
2259  return TRUE;
2260  }
2261  link = _dbus_list_get_next_link (&connection->incoming_messages, link);
2262  }
2263 
2264  return FALSE;
2265 }
2266 
2267 /* This is slightly strange since we can pop a message here without
2268  * the dispatch lock.
2269  */
2270 static DBusMessage*
2271 check_for_reply_unlocked (DBusConnection *connection,
2272  dbus_uint32_t client_serial)
2273 {
2274  DBusList *link;
2275 
2276  HAVE_LOCK_CHECK (connection);
2277 
2278  link = _dbus_list_get_first_link (&connection->incoming_messages);
2279 
2280  while (link != NULL)
2281  {
2282  DBusMessage *reply = link->data;
2283 
2284  if (dbus_message_get_reply_serial (reply) == client_serial)
2285  {
2286  _dbus_list_remove_link (&connection->incoming_messages, link);
2287  connection->n_incoming -= 1;
2288  return reply;
2289  }
2290  link = _dbus_list_get_next_link (&connection->incoming_messages, link);
2291  }
2292 
2293  return NULL;
2294 }
2295 
2296 static void
2297 connection_timeout_and_complete_all_pending_calls_unlocked (DBusConnection *connection)
2298 {
2299  /* We can't iterate over the hash in the normal way since we'll be
2300  * dropping the lock for each item. So we restart the
2301  * iter each time as we drain the hash table.
2302  */
2303 
2304  while (_dbus_hash_table_get_n_entries (connection->pending_replies) > 0)
2305  {
2306  DBusPendingCall *pending;
2307  DBusHashIter iter;
2308 
2309  _dbus_hash_iter_init (connection->pending_replies, &iter);
2310  _dbus_hash_iter_next (&iter);
2311 
2312  pending = _dbus_hash_iter_get_value (&iter);
2314 
2316  connection);
2317 
2323 
2325  CONNECTION_LOCK (connection);
2326  }
2327  HAVE_LOCK_CHECK (connection);
2328 }
2329 
2330 static void
2331 complete_pending_call_and_unlock (DBusConnection *connection,
2332  DBusPendingCall *pending,
2333  DBusMessage *message)
2334 {
2335  _dbus_pending_call_set_reply_unlocked (pending, message);
2336  _dbus_pending_call_ref_unlocked (pending); /* in case there's no app with a ref held */
2338  _dbus_connection_detach_pending_call_and_unlock (connection, pending);
2339 
2340  /* Must be called unlocked since it invokes app callback */
2342  dbus_pending_call_unref (pending);
2343 }
2344 
2345 static dbus_bool_t
2346 check_for_reply_and_update_dispatch_unlocked (DBusConnection *connection,
2347  DBusPendingCall *pending)
2348 {
2349  DBusMessage *reply;
2350  DBusDispatchStatus status;
2351 
2352  reply = check_for_reply_unlocked (connection,
2354  if (reply != NULL)
2355  {
2356  _dbus_verbose ("checked for reply\n");
2357 
2358  _dbus_verbose ("dbus_connection_send_with_reply_and_block(): got reply\n");
2359 
2360  complete_pending_call_and_unlock (connection, pending, reply);
2361  dbus_message_unref (reply);
2362 
2363  CONNECTION_LOCK (connection);
2364  status = _dbus_connection_get_dispatch_status_unlocked (connection);
2365  _dbus_connection_update_dispatch_status_and_unlock (connection, status);
2366  dbus_pending_call_unref (pending);
2367 
2368  return TRUE;
2369  }
2370 
2371  return FALSE;
2372 }
2373 
2388 void
2390 {
2391  long start_tv_sec, start_tv_usec;
2392  long tv_sec, tv_usec;
2393  DBusDispatchStatus status;
2394  DBusConnection *connection;
2395  dbus_uint32_t client_serial;
2396  DBusTimeout *timeout;
2397  int timeout_milliseconds, elapsed_milliseconds;
2398 
2399  _dbus_assert (pending != NULL);
2400 
2401  if (dbus_pending_call_get_completed (pending))
2402  return;
2403 
2404  dbus_pending_call_ref (pending); /* necessary because the call could be canceled */
2405 
2406  connection = _dbus_pending_call_get_connection_and_lock (pending);
2407 
2408  /* Flush message queue - note, can affect dispatch status */
2409  _dbus_connection_flush_unlocked (connection);
2410 
2411  client_serial = _dbus_pending_call_get_reply_serial_unlocked (pending);
2412 
2413  /* note that timeout_milliseconds is limited to a smallish value
2414  * in _dbus_pending_call_new() so overflows aren't possible
2415  * below
2416  */
2417  timeout = _dbus_pending_call_get_timeout_unlocked (pending);
2418  _dbus_get_monotonic_time (&start_tv_sec, &start_tv_usec);
2419  if (timeout)
2420  {
2421  timeout_milliseconds = dbus_timeout_get_interval (timeout);
2422 
2423  _dbus_verbose ("dbus_connection_send_with_reply_and_block(): will block %d milliseconds for reply serial %u from %ld sec %ld usec\n",
2424  timeout_milliseconds,
2425  client_serial,
2426  start_tv_sec, start_tv_usec);
2427  }
2428  else
2429  {
2430  timeout_milliseconds = -1;
2431 
2432  _dbus_verbose ("dbus_connection_send_with_reply_and_block(): will block for reply serial %u\n", client_serial);
2433  }
2434 
2435  /* check to see if we already got the data off the socket */
2436  /* from another blocked pending call */
2437  if (check_for_reply_and_update_dispatch_unlocked (connection, pending))
2438  return;
2439 
2440  /* Now we wait... */
2441  /* always block at least once as we know we don't have the reply yet */
2443  pending,
2444  DBUS_ITERATION_DO_READING |
2445  DBUS_ITERATION_BLOCK,
2446  timeout_milliseconds);
2447 
2448  recheck_status:
2449 
2450  _dbus_verbose ("top of recheck\n");
2451 
2452  HAVE_LOCK_CHECK (connection);
2453 
2454  /* queue messages and get status */
2455 
2456  status = _dbus_connection_get_dispatch_status_unlocked (connection);
2457 
2458  /* the get_completed() is in case a dispatch() while we were blocking
2459  * got the reply instead of us.
2460  */
2462  {
2463  _dbus_verbose ("Pending call completed by dispatch\n");
2464  _dbus_connection_update_dispatch_status_and_unlock (connection, status);
2465  dbus_pending_call_unref (pending);
2466  return;
2467  }
2468 
2469  if (status == DBUS_DISPATCH_DATA_REMAINS)
2470  {
2471  if (check_for_reply_and_update_dispatch_unlocked (connection, pending))
2472  return;
2473  }
2474 
2475  _dbus_get_monotonic_time (&tv_sec, &tv_usec);
2476  elapsed_milliseconds = (tv_sec - start_tv_sec) * 1000 +
2477  (tv_usec - start_tv_usec) / 1000;
2478 
2479  if (!_dbus_connection_get_is_connected_unlocked (connection))
2480  {
2481  DBusMessage *error_msg;
2482 
2483  error_msg = generate_local_error_message (client_serial,
2485  "Connection was disconnected before a reply was received");
2486 
2487  /* on OOM error_msg is set to NULL */
2488  complete_pending_call_and_unlock (connection, pending, error_msg);
2489  if (error_msg != NULL)
2490  dbus_message_unref (error_msg);
2491  dbus_pending_call_unref (pending);
2492  return;
2493  }
2494  else if (connection->disconnect_message_link == NULL)
2495  _dbus_verbose ("dbus_connection_send_with_reply_and_block(): disconnected\n");
2496  else if (timeout == NULL)
2497  {
2498  if (status == DBUS_DISPATCH_NEED_MEMORY)
2499  {
2500  /* Try sleeping a bit, as we aren't sure we need to block for reading,
2501  * we may already have a reply in the buffer and just can't process
2502  * it.
2503  */
2504  _dbus_verbose ("dbus_connection_send_with_reply_and_block() waiting for more memory\n");
2505 
2506  _dbus_memory_pause_based_on_timeout (timeout_milliseconds - elapsed_milliseconds);
2507  }
2508  else
2509  {
2510  /* block again, we don't have the reply buffered yet. */
2512  pending,
2513  DBUS_ITERATION_DO_READING |
2514  DBUS_ITERATION_BLOCK,
2515  timeout_milliseconds - elapsed_milliseconds);
2516  }
2517 
2518  goto recheck_status;
2519  }
2520  else if (tv_sec < start_tv_sec)
2521  _dbus_verbose ("dbus_connection_send_with_reply_and_block(): clock set backward\n");
2522  else if (elapsed_milliseconds < timeout_milliseconds)
2523  {
2524  _dbus_verbose ("dbus_connection_send_with_reply_and_block(): %d milliseconds remain\n", timeout_milliseconds - elapsed_milliseconds);
2525 
2526  if (status == DBUS_DISPATCH_NEED_MEMORY)
2527  {
2528  /* Try sleeping a bit, as we aren't sure we need to block for reading,
2529  * we may already have a reply in the buffer and just can't process
2530  * it.
2531  */
2532  _dbus_verbose ("dbus_connection_send_with_reply_and_block() waiting for more memory\n");
2533 
2534  _dbus_memory_pause_based_on_timeout (timeout_milliseconds - elapsed_milliseconds);
2535  }
2536  else
2537  {
2538  /* block again, we don't have the reply buffered yet. */
2540  pending,
2541  DBUS_ITERATION_DO_READING |
2542  DBUS_ITERATION_BLOCK,
2543  timeout_milliseconds - elapsed_milliseconds);
2544  }
2545 
2546  goto recheck_status;
2547  }
2548 
2549  _dbus_verbose ("dbus_connection_send_with_reply_and_block(): Waited %d milliseconds and got no reply\n",
2550  elapsed_milliseconds);
2551 
2553 
2554  /* unlock and call user code */
2555  complete_pending_call_and_unlock (connection, pending, NULL);
2556 
2557  /* update user code on dispatch status */
2558  CONNECTION_LOCK (connection);
2559  status = _dbus_connection_get_dispatch_status_unlocked (connection);
2560  _dbus_connection_update_dispatch_status_and_unlock (connection, status);
2561  dbus_pending_call_unref (pending);
2562 }
2563 
2569 int
2571 {
2572  return _dbus_transport_get_pending_fds_count (connection->transport);
2573 }
2574 
2582 void
2584  DBusPendingFdsChangeFunction callback,
2585  void *data)
2586 {
2588  callback, data);
2589 }
2590 
2628 dbus_connection_open (const char *address,
2629  DBusError *error)
2630 {
2631  DBusConnection *connection;
2632 
2633  _dbus_return_val_if_fail (address != NULL, NULL);
2634  _dbus_return_val_if_error_is_set (error, NULL);
2635 
2636  connection = _dbus_connection_open_internal (address,
2637  TRUE,
2638  error);
2639 
2640  return connection;
2641 }
2642 
2671 dbus_connection_open_private (const char *address,
2672  DBusError *error)
2673 {
2674  DBusConnection *connection;
2675 
2676  _dbus_return_val_if_fail (address != NULL, NULL);
2677  _dbus_return_val_if_error_is_set (error, NULL);
2678 
2679  connection = _dbus_connection_open_internal (address,
2680  FALSE,
2681  error);
2682 
2683  return connection;
2684 }
2685 
2694 {
2695  dbus_int32_t old_refcount;
2696 
2697  _dbus_return_val_if_fail (connection != NULL, NULL);
2698  _dbus_return_val_if_fail (connection->generation == _dbus_current_generation, NULL);
2699  old_refcount = _dbus_atomic_inc (&connection->refcount);
2700  _dbus_connection_trace_ref (connection, old_refcount, old_refcount + 1,
2701  "ref");
2702 
2703  return connection;
2704 }
2705 
2706 static void
2707 free_outgoing_message (void *element,
2708  void *data)
2709 {
2710  DBusMessage *message = element;
2711  DBusConnection *connection = data;
2712 
2713  _dbus_message_remove_counter (message, connection->outgoing_counter);
2714  dbus_message_unref (message);
2715 }
2716 
2717 /* This is run without the mutex held, but after the last reference
2718  * to the connection has been dropped we should have no thread-related
2719  * problems
2720  */
2721 static void
2722 _dbus_connection_last_unref (DBusConnection *connection)
2723 {
2724  DBusList *link;
2725 
2726  _dbus_verbose ("Finalizing connection %p\n", connection);
2727 
2728  _dbus_assert (_dbus_atomic_get (&connection->refcount) == 0);
2729 
2730  /* You have to disconnect the connection before unref:ing it. Otherwise
2731  * you won't get the disconnected message.
2732  */
2734  _dbus_assert (connection->server_guid == NULL);
2735 
2736  /* ---- We're going to call various application callbacks here, hope it doesn't break anything... */
2738 
2743 
2744  _dbus_watch_list_free (connection->watches);
2745  connection->watches = NULL;
2746 
2747  _dbus_timeout_list_free (connection->timeouts);
2748  connection->timeouts = NULL;
2749 
2750  _dbus_data_slot_list_free (&connection->slot_list);
2751 
2752  link = _dbus_list_get_first_link (&connection->filter_list);
2753  while (link != NULL)
2754  {
2755  DBusMessageFilter *filter = link->data;
2756  DBusList *next = _dbus_list_get_next_link (&connection->filter_list, link);
2757 
2758  filter->function = NULL;
2759  _dbus_message_filter_unref (filter); /* calls app callback */
2760  link->data = NULL;
2761 
2762  link = next;
2763  }
2764  _dbus_list_clear (&connection->filter_list);
2765 
2766  /* ---- Done with stuff that invokes application callbacks */
2767 
2768  _dbus_object_tree_unref (connection->objects);
2769 
2771  connection->pending_replies = NULL;
2772 
2773  _dbus_list_foreach (&connection->outgoing_messages,
2774  free_outgoing_message,
2775  connection);
2776  _dbus_list_clear (&connection->outgoing_messages);
2777 
2778  _dbus_list_foreach (&connection->incoming_messages,
2780  NULL);
2781  _dbus_list_clear (&connection->incoming_messages);
2782 
2783  _dbus_counter_unref (connection->outgoing_counter);
2784 
2785  _dbus_transport_unref (connection->transport);
2786 
2787  if (connection->disconnect_message_link)
2788  {
2789  DBusMessage *message = connection->disconnect_message_link->data;
2790  dbus_message_unref (message);
2792  }
2793 
2796 
2799 
2801 
2802  _dbus_rmutex_free_at_location (&connection->mutex);
2803 
2804  dbus_free (connection);
2805 }
2806 
2826 void
2828 {
2829  dbus_int32_t old_refcount;
2830 
2831  _dbus_return_if_fail (connection != NULL);
2832  _dbus_return_if_fail (connection->generation == _dbus_current_generation);
2833 
2834  old_refcount = _dbus_atomic_dec (&connection->refcount);
2835 
2836  _dbus_connection_trace_ref (connection, old_refcount, old_refcount - 1,
2837  "unref");
2838 
2839  if (old_refcount == 1)
2840  {
2841 #ifndef DBUS_DISABLE_CHECKS
2842  if (_dbus_transport_get_is_connected (connection->transport))
2843  {
2844  _dbus_warn_check_failed ("The last reference on a connection was dropped without closing the connection. This is a bug in an application. See dbus_connection_unref() documentation for details.\n%s",
2845  connection->shareable ?
2846  "Most likely, the application called unref() too many times and removed a reference belonging to libdbus, since this is a shared connection." :
2847  "Most likely, the application was supposed to call dbus_connection_close(), since this is a private connection.");
2848  return;
2849  }
2850 #endif
2851  _dbus_connection_last_unref (connection);
2852  }
2853 }
2854 
2855 /*
2856  * Note that the transport can disconnect itself (other end drops us)
2857  * and in that case this function never runs. So this function must
2858  * not do anything more than disconnect the transport and update the
2859  * dispatch status.
2860  *
2861  * If the transport self-disconnects, then we assume someone will
2862  * dispatch the connection to cause the dispatch status update.
2863  */
2864 static void
2865 _dbus_connection_close_possibly_shared_and_unlock (DBusConnection *connection)
2866 {
2867  DBusDispatchStatus status;
2868 
2869  HAVE_LOCK_CHECK (connection);
2870 
2871  _dbus_verbose ("Disconnecting %p\n", connection);
2872 
2873  /* We need to ref because update_dispatch_status_and_unlock will unref
2874  * the connection if it was shared and libdbus was the only remaining
2875  * refcount holder.
2876  */
2877  _dbus_connection_ref_unlocked (connection);
2878 
2879  _dbus_transport_disconnect (connection->transport);
2880 
2881  /* This has the side effect of queuing the disconnect message link
2882  * (unless we don't have enough memory, possibly, so don't assert it).
2883  * After the disconnect message link is queued, dbus_bus_get/dbus_connection_open
2884  * should never again return the newly-disconnected connection.
2885  *
2886  * However, we only unref the shared connection and exit_on_disconnect when
2887  * the disconnect message reaches the head of the message queue,
2888  * NOT when it's first queued.
2889  */
2890  status = _dbus_connection_get_dispatch_status_unlocked (connection);
2891 
2892  /* This calls out to user code */
2893  _dbus_connection_update_dispatch_status_and_unlock (connection, status);
2894 
2895  /* Could also call out to user code */
2896  dbus_connection_unref (connection);
2897 }
2898 
2941 void
2943 {
2944  _dbus_return_if_fail (connection != NULL);
2945  _dbus_return_if_fail (connection->generation == _dbus_current_generation);
2946 
2947  CONNECTION_LOCK (connection);
2948 
2949 #ifndef DBUS_DISABLE_CHECKS
2950  if (connection->shareable)
2951  {
2952  CONNECTION_UNLOCK (connection);
2953 
2954  _dbus_warn_check_failed ("Applications must not close shared connections - see dbus_connection_close() docs. This is a bug in the application.");
2955  return;
2956  }
2957 #endif
2958 
2959  _dbus_connection_close_possibly_shared_and_unlock (connection);
2960 }
2961 
2962 static dbus_bool_t
2963 _dbus_connection_get_is_connected_unlocked (DBusConnection *connection)
2964 {
2965  HAVE_LOCK_CHECK (connection);
2966  return _dbus_transport_get_is_connected (connection->transport);
2967 }
2968 
2984 {
2985  dbus_bool_t res;
2986 
2987  _dbus_return_val_if_fail (connection != NULL, FALSE);
2988 
2989  CONNECTION_LOCK (connection);
2990  res = _dbus_connection_get_is_connected_unlocked (connection);
2991  CONNECTION_UNLOCK (connection);
2992 
2993  return res;
2994 }
2995 
3006 {
3007  dbus_bool_t res;
3008 
3009  _dbus_return_val_if_fail (connection != NULL, FALSE);
3010 
3011  CONNECTION_LOCK (connection);
3012  res = _dbus_transport_try_to_authenticate (connection->transport);
3013  CONNECTION_UNLOCK (connection);
3014 
3015  return res;
3016 }
3017 
3040 {
3041  dbus_bool_t res;
3042 
3043  _dbus_return_val_if_fail (connection != NULL, FALSE);
3044 
3045  CONNECTION_LOCK (connection);
3046  res = _dbus_transport_get_is_anonymous (connection->transport);
3047  CONNECTION_UNLOCK (connection);
3048 
3049  return res;
3050 }
3051 
3083 char*
3085 {
3086  char *id;
3087 
3088  _dbus_return_val_if_fail (connection != NULL, NULL);
3089 
3090  CONNECTION_LOCK (connection);
3092  CONNECTION_UNLOCK (connection);
3093 
3094  return id;
3095 }
3096 
3116  int type)
3117 {
3118  _dbus_return_val_if_fail (connection != NULL, FALSE);
3119 
3120  if (!dbus_type_is_valid (type))
3121  return FALSE;
3122 
3123  if (type != DBUS_TYPE_UNIX_FD)
3124  return TRUE;
3125 
3126 #ifdef HAVE_UNIX_FD_PASSING
3127  {
3128  dbus_bool_t b;
3129 
3130  CONNECTION_LOCK(connection);
3132  CONNECTION_UNLOCK(connection);
3133 
3134  return b;
3135  }
3136 #endif
3137 
3138  return FALSE;
3139 }
3140 
3154 void
3156  dbus_bool_t exit_on_disconnect)
3157 {
3158  _dbus_return_if_fail (connection != NULL);
3159 
3160  CONNECTION_LOCK (connection);
3161  connection->exit_on_disconnect = exit_on_disconnect != FALSE;
3162  CONNECTION_UNLOCK (connection);
3163 }
3164 
3176 {
3177  DBusPreallocatedSend *preallocated;
3178 
3179  _dbus_return_val_if_fail (connection != NULL, NULL);
3180 
3181  CONNECTION_LOCK (connection);
3182 
3183  preallocated =
3184  _dbus_connection_preallocate_send_unlocked (connection);
3185 
3186  CONNECTION_UNLOCK (connection);
3187 
3188  return preallocated;
3189 }
3190 
3200 void
3202  DBusPreallocatedSend *preallocated)
3203 {
3204  _dbus_return_if_fail (connection != NULL);
3205  _dbus_return_if_fail (preallocated != NULL);
3206  _dbus_return_if_fail (connection == preallocated->connection);
3207 
3208  _dbus_list_free_link (preallocated->queue_link);
3209  _dbus_counter_unref (preallocated->counter_link->data);
3210  _dbus_list_free_link (preallocated->counter_link);
3211  dbus_free (preallocated);
3212 }
3213 
3226 void
3228  DBusPreallocatedSend *preallocated,
3229  DBusMessage *message,
3230  dbus_uint32_t *client_serial)
3231 {
3232  _dbus_return_if_fail (connection != NULL);
3233  _dbus_return_if_fail (preallocated != NULL);
3234  _dbus_return_if_fail (message != NULL);
3235  _dbus_return_if_fail (preallocated->connection == connection);
3236  _dbus_return_if_fail (dbus_message_get_type (message) != DBUS_MESSAGE_TYPE_METHOD_CALL ||
3237  dbus_message_get_member (message) != NULL);
3238  _dbus_return_if_fail (dbus_message_get_type (message) != DBUS_MESSAGE_TYPE_SIGNAL ||
3239  (dbus_message_get_interface (message) != NULL &&
3240  dbus_message_get_member (message) != NULL));
3241 
3242  CONNECTION_LOCK (connection);
3243 
3244 #ifdef HAVE_UNIX_FD_PASSING
3245 
3246  if (!_dbus_transport_can_pass_unix_fd(connection->transport) &&
3247  message->n_unix_fds > 0)
3248  {
3249  /* Refuse to send fds on a connection that cannot handle
3250  them. Unfortunately we cannot return a proper error here, so
3251  the best we can is just return. */
3252  CONNECTION_UNLOCK (connection);
3253  return;
3254  }
3255 
3256 #endif
3257 
3258  _dbus_connection_send_preallocated_and_unlock (connection,
3259  preallocated,
3260  message, client_serial);
3261 }
3262 
3263 static dbus_bool_t
3264 _dbus_connection_send_unlocked_no_update (DBusConnection *connection,
3265  DBusMessage *message,
3266  dbus_uint32_t *client_serial)
3267 {
3268  DBusPreallocatedSend *preallocated;
3269 
3270  _dbus_assert (connection != NULL);
3271  _dbus_assert (message != NULL);
3272 
3273  preallocated = _dbus_connection_preallocate_send_unlocked (connection);
3274  if (preallocated == NULL)
3275  return FALSE;
3276 
3277  _dbus_connection_send_preallocated_unlocked_no_update (connection,
3278  preallocated,
3279  message,
3280  client_serial);
3281  return TRUE;
3282 }
3283 
3313  DBusMessage *message,
3314  dbus_uint32_t *serial)
3315 {
3316  _dbus_return_val_if_fail (connection != NULL, FALSE);
3317  _dbus_return_val_if_fail (message != NULL, FALSE);
3318 
3319  CONNECTION_LOCK (connection);
3320 
3321 #ifdef HAVE_UNIX_FD_PASSING
3322 
3323  if (!_dbus_transport_can_pass_unix_fd(connection->transport) &&
3324  message->n_unix_fds > 0)
3325  {
3326  /* Refuse to send fds on a connection that cannot handle
3327  them. Unfortunately we cannot return a proper error here, so
3328  the best we can is just return. */
3329  CONNECTION_UNLOCK (connection);
3330  return FALSE;
3331  }
3332 
3333 #endif
3334 
3335  return _dbus_connection_send_and_unlock (connection,
3336  message,
3337  serial);
3338 }
3339 
3340 static dbus_bool_t
3341 reply_handler_timeout (void *data)
3342 {
3343  DBusConnection *connection;
3344  DBusDispatchStatus status;
3345  DBusPendingCall *pending = data;
3346 
3347  connection = _dbus_pending_call_get_connection_and_lock (pending);
3348  _dbus_connection_ref_unlocked (connection);
3349 
3351  connection);
3355 
3356  _dbus_verbose ("middle\n");
3357  status = _dbus_connection_get_dispatch_status_unlocked (connection);
3358 
3359  /* Unlocks, and calls out to user code */
3360  _dbus_connection_update_dispatch_status_and_unlock (connection, status);
3361  dbus_connection_unref (connection);
3362 
3363  return TRUE;
3364 }
3365 
3410  DBusMessage *message,
3411  DBusPendingCall **pending_return,
3412  int timeout_milliseconds)
3413 {
3414  DBusPendingCall *pending;
3415  dbus_int32_t serial = -1;
3416  DBusDispatchStatus status;
3417 
3418  _dbus_return_val_if_fail (connection != NULL, FALSE);
3419  _dbus_return_val_if_fail (message != NULL, FALSE);
3420  _dbus_return_val_if_fail (timeout_milliseconds >= 0 || timeout_milliseconds == -1, FALSE);
3421 
3422  if (pending_return)
3423  *pending_return = NULL;
3424 
3425  CONNECTION_LOCK (connection);
3426 
3427 #ifdef HAVE_UNIX_FD_PASSING
3428 
3429  if (!_dbus_transport_can_pass_unix_fd(connection->transport) &&
3430  message->n_unix_fds > 0)
3431  {
3432  /* Refuse to send fds on a connection that cannot handle
3433  them. Unfortunately we cannot return a proper error here, so
3434  the best we can do is return TRUE but leave *pending_return
3435  as NULL. */
3436  CONNECTION_UNLOCK (connection);
3437  return TRUE;
3438  }
3439 
3440 #endif
3441 
3442  if (!_dbus_connection_get_is_connected_unlocked (connection))
3443  {
3444  CONNECTION_UNLOCK (connection);
3445 
3446  return TRUE;
3447  }
3448 
3449  pending = _dbus_pending_call_new_unlocked (connection,
3450  timeout_milliseconds,
3451  reply_handler_timeout);
3452 
3453  if (pending == NULL)
3454  {
3455  CONNECTION_UNLOCK (connection);
3456  return FALSE;
3457  }
3458 
3459  /* Assign a serial to the message */
3460  serial = dbus_message_get_serial (message);
3461  if (serial == 0)
3462  {
3463  serial = _dbus_connection_get_next_client_serial (connection);
3464  dbus_message_set_serial (message, serial);
3465  }
3466 
3467  if (!_dbus_pending_call_set_timeout_error_unlocked (pending, message, serial))
3468  goto error;
3469 
3470  /* Insert the serial in the pending replies hash;
3471  * hash takes a refcount on DBusPendingCall.
3472  * Also, add the timeout.
3473  */
3474  if (!_dbus_connection_attach_pending_call_unlocked (connection,
3475  pending))
3476  goto error;
3477 
3478  if (!_dbus_connection_send_unlocked_no_update (connection, message, NULL))
3479  {
3480  _dbus_connection_detach_pending_call_and_unlock (connection,
3481  pending);
3482  goto error_unlocked;
3483  }
3484 
3485  if (pending_return)
3486  *pending_return = pending; /* hand off refcount */
3487  else
3488  {
3489  _dbus_connection_detach_pending_call_unlocked (connection, pending);
3490  /* we still have a ref to the pending call in this case, we unref
3491  * after unlocking, below
3492  */
3493  }
3494 
3495  status = _dbus_connection_get_dispatch_status_unlocked (connection);
3496 
3497  /* this calls out to user code */
3498  _dbus_connection_update_dispatch_status_and_unlock (connection, status);
3499 
3500  if (pending_return == NULL)
3501  dbus_pending_call_unref (pending);
3502 
3503  return TRUE;
3504 
3505  error:
3506  CONNECTION_UNLOCK (connection);
3507  error_unlocked:
3508  dbus_pending_call_unref (pending);
3509  return FALSE;
3510 }
3511 
3544 DBusMessage*
3546  DBusMessage *message,
3547  int timeout_milliseconds,
3548  DBusError *error)
3549 {
3550  DBusMessage *reply;
3551  DBusPendingCall *pending;
3552 
3553  _dbus_return_val_if_fail (connection != NULL, NULL);
3554  _dbus_return_val_if_fail (message != NULL, NULL);
3555  _dbus_return_val_if_fail (timeout_milliseconds >= 0 || timeout_milliseconds == -1, NULL);
3556  _dbus_return_val_if_error_is_set (error, NULL);
3557 
3558 #ifdef HAVE_UNIX_FD_PASSING
3559 
3560  CONNECTION_LOCK (connection);
3561  if (!_dbus_transport_can_pass_unix_fd(connection->transport) &&
3562  message->n_unix_fds > 0)
3563  {
3564  CONNECTION_UNLOCK (connection);
3565  dbus_set_error(error, DBUS_ERROR_FAILED, "Cannot send file descriptors on this connection.");
3566  return NULL;
3567  }
3568  CONNECTION_UNLOCK (connection);
3569 
3570 #endif
3571 
3572  if (!dbus_connection_send_with_reply (connection, message,
3573  &pending, timeout_milliseconds))
3574  {
3575  _DBUS_SET_OOM (error);
3576  return NULL;
3577  }
3578 
3579  if (pending == NULL)
3580  {
3581  dbus_set_error (error, DBUS_ERROR_DISCONNECTED, "Connection is closed");
3582  return NULL;
3583  }
3584 
3585  dbus_pending_call_block (pending);
3586 
3587  reply = dbus_pending_call_steal_reply (pending);
3588  dbus_pending_call_unref (pending);
3589 
3590  /* call_complete_and_unlock() called from pending_call_block() should
3591  * always fill this in.
3592  */
3593  _dbus_assert (reply != NULL);
3594 
3595  if (dbus_set_error_from_message (error, reply))
3596  {
3597  dbus_message_unref (reply);
3598  return NULL;
3599  }
3600  else
3601  return reply;
3602 }
3603 
3612 static DBusDispatchStatus
3613 _dbus_connection_flush_unlocked (DBusConnection *connection)
3614 {
3615  /* We have to specify DBUS_ITERATION_DO_READING here because
3616  * otherwise we could have two apps deadlock if they are both doing
3617  * a flush(), and the kernel buffers fill up. This could change the
3618  * dispatch status.
3619  */
3620  DBusDispatchStatus status;
3621 
3622  HAVE_LOCK_CHECK (connection);
3623 
3624  while (connection->n_outgoing > 0 &&
3625  _dbus_connection_get_is_connected_unlocked (connection))
3626  {
3627  _dbus_verbose ("doing iteration in\n");
3628  HAVE_LOCK_CHECK (connection);
3630  NULL,
3631  DBUS_ITERATION_DO_READING |
3632  DBUS_ITERATION_DO_WRITING |
3633  DBUS_ITERATION_BLOCK,
3634  -1);
3635  }
3636 
3637  HAVE_LOCK_CHECK (connection);
3638  _dbus_verbose ("middle\n");
3639  status = _dbus_connection_get_dispatch_status_unlocked (connection);
3640 
3641  HAVE_LOCK_CHECK (connection);
3642  return status;
3643 }
3644 
3650 void
3652 {
3653  /* We have to specify DBUS_ITERATION_DO_READING here because
3654  * otherwise we could have two apps deadlock if they are both doing
3655  * a flush(), and the kernel buffers fill up. This could change the
3656  * dispatch status.
3657  */
3658  DBusDispatchStatus status;
3659 
3660  _dbus_return_if_fail (connection != NULL);
3661 
3662  CONNECTION_LOCK (connection);
3663 
3664  status = _dbus_connection_flush_unlocked (connection);
3665 
3666  HAVE_LOCK_CHECK (connection);
3667  /* Unlocks and calls out to user code */
3668  _dbus_connection_update_dispatch_status_and_unlock (connection, status);
3669 
3670  _dbus_verbose ("end\n");
3671 }
3672 
3683 static dbus_bool_t
3684 _dbus_connection_read_write_dispatch (DBusConnection *connection,
3685  int timeout_milliseconds,
3686  dbus_bool_t dispatch)
3687 {
3688  DBusDispatchStatus dstatus;
3689  dbus_bool_t progress_possible;
3690 
3691  /* Need to grab a ref here in case we're a private connection and
3692  * the user drops the last ref in a handler we call; see bug
3693  * https://bugs.freedesktop.org/show_bug.cgi?id=15635
3694  */
3695  dbus_connection_ref (connection);
3696  dstatus = dbus_connection_get_dispatch_status (connection);
3697 
3698  if (dispatch && dstatus == DBUS_DISPATCH_DATA_REMAINS)
3699  {
3700  _dbus_verbose ("doing dispatch\n");
3701  dbus_connection_dispatch (connection);
3702  CONNECTION_LOCK (connection);
3703  }
3704  else if (dstatus == DBUS_DISPATCH_NEED_MEMORY)
3705  {
3706  _dbus_verbose ("pausing for memory\n");
3707  _dbus_memory_pause_based_on_timeout (timeout_milliseconds);
3708  CONNECTION_LOCK (connection);
3709  }
3710  else
3711  {
3712  CONNECTION_LOCK (connection);
3713  if (_dbus_connection_get_is_connected_unlocked (connection))
3714  {
3715  _dbus_verbose ("doing iteration\n");
3717  NULL,
3718  DBUS_ITERATION_DO_READING |
3719  DBUS_ITERATION_DO_WRITING |
3720  DBUS_ITERATION_BLOCK,
3721  timeout_milliseconds);
3722  }
3723  }
3724 
3725  HAVE_LOCK_CHECK (connection);
3726  /* If we can dispatch, we can make progress until the Disconnected message
3727  * has been processed; if we can only read/write, we can make progress
3728  * as long as the transport is open.
3729  */
3730  if (dispatch)
3731  progress_possible = connection->n_incoming != 0 ||
3732  connection->disconnect_message_link != NULL;
3733  else
3734  progress_possible = _dbus_connection_get_is_connected_unlocked (connection);
3735 
3736  CONNECTION_UNLOCK (connection);
3737 
3738  dbus_connection_unref (connection);
3739 
3740  return progress_possible; /* TRUE if we can make more progress */
3741 }
3742 
3743 
3780  int timeout_milliseconds)
3781 {
3782  _dbus_return_val_if_fail (connection != NULL, FALSE);
3783  _dbus_return_val_if_fail (timeout_milliseconds >= 0 || timeout_milliseconds == -1, FALSE);
3784  return _dbus_connection_read_write_dispatch(connection, timeout_milliseconds, TRUE);
3785 }
3786 
3810 dbus_bool_t
3812  int timeout_milliseconds)
3813 {
3814  _dbus_return_val_if_fail (connection != NULL, FALSE);
3815  _dbus_return_val_if_fail (timeout_milliseconds >= 0 || timeout_milliseconds == -1, FALSE);
3816  return _dbus_connection_read_write_dispatch(connection, timeout_milliseconds, FALSE);
3817 }
3818 
3819 /* We need to call this anytime we pop the head of the queue, and then
3820  * update_dispatch_status_and_unlock needs to be called afterward
3821  * which will "process" the disconnected message and set
3822  * disconnected_message_processed.
3823  */
3824 static void
3825 check_disconnected_message_arrived_unlocked (DBusConnection *connection,
3826  DBusMessage *head_of_queue)
3827 {
3828  HAVE_LOCK_CHECK (connection);
3829 
3830  /* checking that the link is NULL is an optimization to avoid the is_signal call */
3831  if (connection->disconnect_message_link == NULL &&
3832  dbus_message_is_signal (head_of_queue,
3834  "Disconnected"))
3835  {
3836  connection->disconnected_message_arrived = TRUE;
3837  }
3838 }
3839 
3859 DBusMessage*
3861 {
3862  DBusDispatchStatus status;
3863  DBusMessage *message;
3864 
3865  _dbus_return_val_if_fail (connection != NULL, NULL);
3866 
3867  _dbus_verbose ("start\n");
3868 
3869  /* this is called for the side effect that it queues
3870  * up any messages from the transport
3871  */
3872  status = dbus_connection_get_dispatch_status (connection);
3873  if (status != DBUS_DISPATCH_DATA_REMAINS)
3874  return NULL;
3875 
3876  CONNECTION_LOCK (connection);
3877 
3878  _dbus_connection_ref_unlocked (connection);
3879 
3880  _dbus_connection_acquire_dispatch (connection);
3881 
3882  /* While a message is outstanding, the dispatch lock is held */
3883  _dbus_assert (connection->message_borrowed == NULL);
3884 
3885  connection->message_borrowed = _dbus_list_get_first (&connection->incoming_messages);
3886 
3887  message = connection->message_borrowed;
3888 
3889  check_disconnected_message_arrived_unlocked (connection, message);
3890 
3891  /* Note that we KEEP the dispatch lock until the message is returned */
3892  if (message == NULL)
3893  _dbus_connection_release_dispatch (connection);
3894 
3895  CONNECTION_UNLOCK (connection);
3896 
3897  dbus_connection_unref (connection);
3898 
3899  _dbus_message_trace_ref (message, -1, -1, "dbus_connection_borrow_message");
3900 
3901  /* We don't update dispatch status until it's returned or stolen */
3902 
3903  return message;
3904 }
3905 
3914 void
3916  DBusMessage *message)
3917 {
3918  DBusDispatchStatus status;
3919 
3920  _dbus_return_if_fail (connection != NULL);
3921  _dbus_return_if_fail (message != NULL);
3922  _dbus_return_if_fail (message == connection->message_borrowed);
3923  _dbus_return_if_fail (connection->dispatch_acquired);
3924 
3925  CONNECTION_LOCK (connection);
3926 
3927  _dbus_assert (message == connection->message_borrowed);
3928 
3929  connection->message_borrowed = NULL;
3930 
3931  _dbus_connection_release_dispatch (connection);
3932 
3933  status = _dbus_connection_get_dispatch_status_unlocked (connection);
3934  _dbus_connection_update_dispatch_status_and_unlock (connection, status);
3935 
3936  _dbus_message_trace_ref (message, -1, -1, "dbus_connection_return_message");
3937 }
3938 
3948 void
3950  DBusMessage *message)
3951 {
3952  DBusMessage *pop_message;
3953  DBusDispatchStatus status;
3954 
3955  _dbus_return_if_fail (connection != NULL);
3956  _dbus_return_if_fail (message != NULL);
3957  _dbus_return_if_fail (message == connection->message_borrowed);
3958  _dbus_return_if_fail (connection->dispatch_acquired);
3959 
3960  CONNECTION_LOCK (connection);
3961 
3962  _dbus_assert (message == connection->message_borrowed);
3963 
3964  pop_message = _dbus_list_pop_first (&connection->incoming_messages);
3965  _dbus_assert (message == pop_message);
3966  (void) pop_message; /* unused unless asserting */
3967 
3968  connection->n_incoming -= 1;
3969 
3970  _dbus_verbose ("Incoming message %p stolen from queue, %d incoming\n",
3971  message, connection->n_incoming);
3972 
3973  connection->message_borrowed = NULL;
3974 
3975  _dbus_connection_release_dispatch (connection);
3976 
3977  status = _dbus_connection_get_dispatch_status_unlocked (connection);
3978  _dbus_connection_update_dispatch_status_and_unlock (connection, status);
3979  _dbus_message_trace_ref (message, -1, -1,
3980  "dbus_connection_steal_borrowed_message");
3981 }
3982 
3983 /* See dbus_connection_pop_message, but requires the caller to own
3984  * the lock before calling. May drop the lock while running.
3985  */
3986 static DBusList*
3987 _dbus_connection_pop_message_link_unlocked (DBusConnection *connection)
3988 {
3989  HAVE_LOCK_CHECK (connection);
3990 
3991  _dbus_assert (connection->message_borrowed == NULL);
3992 
3993  if (connection->n_incoming > 0)
3994  {
3995  DBusList *link;
3996 
3997  link = _dbus_list_pop_first_link (&connection->incoming_messages);
3998  connection->n_incoming -= 1;
3999 
4000  _dbus_verbose ("Message %p (%s %s %s %s sig:'%s' serial:%u) removed from incoming queue %p, %d incoming\n",
4001  link->data,
4003  dbus_message_get_path (link->data) ?
4004  dbus_message_get_path (link->data) :
4005  "no path",
4008  "no interface",
4009  dbus_message_get_member (link->data) ?
4010  dbus_message_get_member (link->data) :
4011  "no member",
4013  dbus_message_get_serial (link->data),
4014  connection, connection->n_incoming);
4015 
4016  _dbus_message_trace_ref (link->data, -1, -1,
4017  "_dbus_connection_pop_message_link_unlocked");
4018 
4019  check_disconnected_message_arrived_unlocked (connection, link->data);
4020 
4021  return link;
4022  }
4023  else
4024  return NULL;
4025 }
4026 
4027 /* See dbus_connection_pop_message, but requires the caller to own
4028  * the lock before calling. May drop the lock while running.
4029  */
4030 static DBusMessage*
4031 _dbus_connection_pop_message_unlocked (DBusConnection *connection)
4032 {
4033  DBusList *link;
4034 
4035  HAVE_LOCK_CHECK (connection);
4036 
4037  link = _dbus_connection_pop_message_link_unlocked (connection);
4038 
4039  if (link != NULL)
4040  {
4041  DBusMessage *message;
4042 
4043  message = link->data;
4044 
4045  _dbus_list_free_link (link);
4046 
4047  return message;
4048  }
4049  else
4050  return NULL;
4051 }
4052 
4053 static void
4054 _dbus_connection_putback_message_link_unlocked (DBusConnection *connection,
4055  DBusList *message_link)
4056 {
4057  HAVE_LOCK_CHECK (connection);
4058 
4059  _dbus_assert (message_link != NULL);
4060  /* You can't borrow a message while a link is outstanding */
4061  _dbus_assert (connection->message_borrowed == NULL);
4062  /* We had to have the dispatch lock across the pop/putback */
4063  _dbus_assert (connection->dispatch_acquired);
4064 
4066  message_link);
4067  connection->n_incoming += 1;
4068 
4069  _dbus_verbose ("Message %p (%s %s %s '%s') put back into queue %p, %d incoming\n",
4070  message_link->data,
4072  dbus_message_get_interface (message_link->data) ?
4073  dbus_message_get_interface (message_link->data) :
4074  "no interface",
4075  dbus_message_get_member (message_link->data) ?
4076  dbus_message_get_member (message_link->data) :
4077  "no member",
4078  dbus_message_get_signature (message_link->data),
4079  connection, connection->n_incoming);
4080 
4081  _dbus_message_trace_ref (message_link->data, -1, -1,
4082  "_dbus_connection_putback_message_link_unlocked");
4083 }
4084 
4104 DBusMessage*
4106 {
4107  DBusMessage *message;
4108  DBusDispatchStatus status;
4109 
4110  _dbus_verbose ("start\n");
4111 
4112  /* this is called for the side effect that it queues
4113  * up any messages from the transport
4114  */
4115  status = dbus_connection_get_dispatch_status (connection);
4116  if (status != DBUS_DISPATCH_DATA_REMAINS)
4117  return NULL;
4118 
4119  CONNECTION_LOCK (connection);
4120 
4121  _dbus_connection_ref_unlocked (connection);
4122 
4123  _dbus_connection_acquire_dispatch (connection);
4124  HAVE_LOCK_CHECK (connection);
4125 
4126  message = _dbus_connection_pop_message_unlocked (connection);
4127 
4128  _dbus_verbose ("Returning popped message %p\n", message);
4129 
4130  _dbus_connection_release_dispatch (connection);
4131 
4132  status = _dbus_connection_get_dispatch_status_unlocked (connection);
4133  _dbus_connection_update_dispatch_status_and_unlock (connection, status);
4134 
4135  dbus_connection_unref (connection);
4136 
4137  return message;
4138 }
4139 
4147 static void
4148 _dbus_connection_acquire_dispatch (DBusConnection *connection)
4149 {
4150  HAVE_LOCK_CHECK (connection);
4151 
4152  _dbus_connection_ref_unlocked (connection);
4153  CONNECTION_UNLOCK (connection);
4154 
4155  _dbus_verbose ("locking dispatch_mutex\n");
4156  _dbus_cmutex_lock (connection->dispatch_mutex);
4157 
4158  while (connection->dispatch_acquired)
4159  {
4160  _dbus_verbose ("waiting for dispatch to be acquirable\n");
4161  _dbus_condvar_wait (connection->dispatch_cond,
4162  connection->dispatch_mutex);
4163  }
4164 
4165  _dbus_assert (!connection->dispatch_acquired);
4166 
4167  connection->dispatch_acquired = TRUE;
4168 
4169  _dbus_verbose ("unlocking dispatch_mutex\n");
4170  _dbus_cmutex_unlock (connection->dispatch_mutex);
4171 
4172  CONNECTION_LOCK (connection);
4173  _dbus_connection_unref_unlocked (connection);
4174 }
4175 
4183 static void
4184 _dbus_connection_release_dispatch (DBusConnection *connection)
4185 {
4186  HAVE_LOCK_CHECK (connection);
4187 
4188  _dbus_verbose ("locking dispatch_mutex\n");
4189  _dbus_cmutex_lock (connection->dispatch_mutex);
4190 
4191  _dbus_assert (connection->dispatch_acquired);
4192 
4193  connection->dispatch_acquired = FALSE;
4194  _dbus_condvar_wake_one (connection->dispatch_cond);
4195 
4196  _dbus_verbose ("unlocking dispatch_mutex\n");
4197  _dbus_cmutex_unlock (connection->dispatch_mutex);
4198 }
4199 
4200 static void
4201 _dbus_connection_failed_pop (DBusConnection *connection,
4202  DBusList *message_link)
4203 {
4205  message_link);
4206  connection->n_incoming += 1;
4207 }
4208 
4209 /* Note this may be called multiple times since we don't track whether we already did it */
4210 static void
4211 notify_disconnected_unlocked (DBusConnection *connection)
4212 {
4213  HAVE_LOCK_CHECK (connection);
4214 
4215  /* Set the weakref in dbus-bus.c to NULL, so nobody will get a disconnected
4216  * connection from dbus_bus_get(). We make the same guarantee for
4217  * dbus_connection_open() but in a different way since we don't want to
4218  * unref right here; we instead check for connectedness before returning
4219  * the connection from the hash.
4220  */
4222 
4223  /* Dump the outgoing queue, we aren't going to be able to
4224  * send it now, and we'd like accessors like
4225  * dbus_connection_get_outgoing_size() to be accurate.
4226  */
4227  if (connection->n_outgoing > 0)
4228  {
4229  DBusList *link;
4230 
4231  _dbus_verbose ("Dropping %d outgoing messages since we're disconnected\n",
4232  connection->n_outgoing);
4233 
4234  while ((link = _dbus_list_get_last_link (&connection->outgoing_messages)))
4235  {
4236  _dbus_connection_message_sent_unlocked (connection, link->data);
4237  }
4238  }
4239 }
4240 
4241 /* Note this may be called multiple times since we don't track whether we already did it */
4242 static DBusDispatchStatus
4243 notify_disconnected_and_dispatch_complete_unlocked (DBusConnection *connection)
4244 {
4245  HAVE_LOCK_CHECK (connection);
4246 
4247  if (connection->disconnect_message_link != NULL)
4248  {
4249  _dbus_verbose ("Sending disconnect message\n");
4250 
4251  /* If we have pending calls, queue their timeouts - we want the Disconnected
4252  * to be the last message, after these timeouts.
4253  */
4254  connection_timeout_and_complete_all_pending_calls_unlocked (connection);
4255 
4256  /* We haven't sent the disconnect message already,
4257  * and all real messages have been queued up.
4258  */
4260  connection->disconnect_message_link);
4261  connection->disconnect_message_link = NULL;
4262 
4264  }
4265 
4266  return DBUS_DISPATCH_COMPLETE;
4267 }
4268 
4269 static DBusDispatchStatus
4270 _dbus_connection_get_dispatch_status_unlocked (DBusConnection *connection)
4271 {
4272  HAVE_LOCK_CHECK (connection);
4273 
4274  if (connection->n_incoming > 0)
4276  else if (!_dbus_transport_queue_messages (connection->transport))
4278  else
4279  {
4280  DBusDispatchStatus status;
4281  dbus_bool_t is_connected;
4282 
4283  status = _dbus_transport_get_dispatch_status (connection->transport);
4284  is_connected = _dbus_transport_get_is_connected (connection->transport);
4285 
4286  _dbus_verbose ("dispatch status = %s is_connected = %d\n",
4287  DISPATCH_STATUS_NAME (status), is_connected);
4288 
4289  if (!is_connected)
4290  {
4291  /* It's possible this would be better done by having an explicit
4292  * notification from _dbus_transport_disconnect() that would
4293  * synchronously do this, instead of waiting for the next dispatch
4294  * status check. However, probably not good to change until it causes
4295  * a problem.
4296  */
4297  notify_disconnected_unlocked (connection);
4298 
4299  /* I'm not sure this is needed; the idea is that we want to
4300  * queue the Disconnected only after we've read all the
4301  * messages, but if we're disconnected maybe we are guaranteed
4302  * to have read them all ?
4303  */
4304  if (status == DBUS_DISPATCH_COMPLETE)
4305  status = notify_disconnected_and_dispatch_complete_unlocked (connection);
4306  }
4307 
4308  if (status != DBUS_DISPATCH_COMPLETE)
4309  return status;
4310  else if (connection->n_incoming > 0)
4312  else
4313  return DBUS_DISPATCH_COMPLETE;
4314  }
4315 }
4316 
4317 static void
4318 _dbus_connection_update_dispatch_status_and_unlock (DBusConnection *connection,
4319  DBusDispatchStatus new_status)
4320 {
4321  dbus_bool_t changed;
4322  DBusDispatchStatusFunction function;
4323  void *data;
4324 
4325  HAVE_LOCK_CHECK (connection);
4326 
4327  _dbus_connection_ref_unlocked (connection);
4328 
4329  changed = new_status != connection->last_dispatch_status;
4330 
4331  connection->last_dispatch_status = new_status;
4332 
4333  function = connection->dispatch_status_function;
4334  data = connection->dispatch_status_data;
4335 
4336  if (connection->disconnected_message_arrived &&
4337  !connection->disconnected_message_processed)
4338  {
4339  connection->disconnected_message_processed = TRUE;
4340 
4341  /* this does an unref, but we have a ref
4342  * so we should not run the finalizer here
4343  * inside the lock.
4344  */
4345  connection_forget_shared_unlocked (connection);
4346 
4347  if (connection->exit_on_disconnect)
4348  {
4349  CONNECTION_UNLOCK (connection);
4350 
4351  _dbus_verbose ("Exiting on Disconnected signal\n");
4352  _dbus_exit (1);
4353  _dbus_assert_not_reached ("Call to exit() returned");
4354  }
4355  }
4356 
4357  /* We drop the lock */
4358  CONNECTION_UNLOCK (connection);
4359 
4360  if (changed && function)
4361  {
4362  _dbus_verbose ("Notifying of change to dispatch status of %p now %d (%s)\n",
4363  connection, new_status,
4364  DISPATCH_STATUS_NAME (new_status));
4365  (* function) (connection, new_status, data);
4366  }
4367 
4368  dbus_connection_unref (connection);
4369 }
4370 
4398 {
4399  DBusDispatchStatus status;
4400 
4401  _dbus_return_val_if_fail (connection != NULL, DBUS_DISPATCH_COMPLETE);
4402 
4403  _dbus_verbose ("start\n");
4404 
4405  CONNECTION_LOCK (connection);
4406 
4407  status = _dbus_connection_get_dispatch_status_unlocked (connection);
4408 
4409  CONNECTION_UNLOCK (connection);
4410 
4411  return status;
4412 }
4413 
4417 static DBusHandlerResult
4418 _dbus_connection_peer_filter_unlocked_no_update (DBusConnection *connection,
4419  DBusMessage *message)
4420 {
4421  dbus_bool_t sent = FALSE;
4422  DBusMessage *ret = NULL;
4423  DBusList *expire_link;
4424 
4425  if (connection->route_peer_messages && dbus_message_get_destination (message) != NULL)
4426  {
4427  /* This means we're letting the bus route this message */
4429  }
4430 
4432  {
4434  }
4435 
4436  /* Preallocate a linked-list link, so that if we need to dispose of a
4437  * message, we can attach it to the expired list */
4438  expire_link = _dbus_list_alloc_link (NULL);
4439 
4440  if (!expire_link)
4442 
4443  if (dbus_message_is_method_call (message,
4445  "Ping"))
4446  {
4447  ret = dbus_message_new_method_return (message);
4448  if (ret == NULL)
4449  goto out;
4450 
4451  sent = _dbus_connection_send_unlocked_no_update (connection, ret, NULL);
4452  }
4453  else if (dbus_message_is_method_call (message,
4455  "GetMachineId"))
4456  {
4457  DBusString uuid;
4458  DBusError error = DBUS_ERROR_INIT;
4459 
4460  if (!_dbus_string_init (&uuid))
4461  goto out;
4462 
4463  if (_dbus_get_local_machine_uuid_encoded (&uuid, &error))
4464  {
4465  const char *v_STRING;
4466 
4467  ret = dbus_message_new_method_return (message);
4468 
4469  if (ret == NULL)
4470  {
4471  _dbus_string_free (&uuid);
4472  goto out;
4473  }
4474 
4475  v_STRING = _dbus_string_get_const_data (&uuid);
4476  if (dbus_message_append_args (ret,
4477  DBUS_TYPE_STRING, &v_STRING,
4479  {
4480  sent = _dbus_connection_send_unlocked_no_update (connection, ret, NULL);
4481  }
4482  }
4483  else if (dbus_error_has_name (&error, DBUS_ERROR_NO_MEMORY))
4484  {
4485  dbus_error_free (&error);
4486  goto out;
4487  }
4488  else
4489  {
4490  ret = dbus_message_new_error (message, error.name, error.message);
4491  dbus_error_free (&error);
4492 
4493  if (ret == NULL)
4494  goto out;
4495 
4496  sent = _dbus_connection_send_unlocked_no_update (connection, ret,
4497  NULL);
4498  }
4499 
4500  _dbus_string_free (&uuid);
4501  }
4502  else
4503  {
4504  /* We need to bounce anything else with this interface, otherwise apps
4505  * could start extending the interface and when we added extensions
4506  * here to DBusConnection we'd break those apps.
4507  */
4508  ret = dbus_message_new_error (message,
4510  "Unknown method invoked on org.freedesktop.DBus.Peer interface");
4511  if (ret == NULL)
4512  goto out;
4513 
4514  sent = _dbus_connection_send_unlocked_no_update (connection, ret, NULL);
4515  }
4516 
4517 out:
4518  if (ret == NULL)
4519  {
4520  _dbus_list_free_link (expire_link);
4521  }
4522  else
4523  {
4524  /* It'll be safe to unref the reply when we unlock */
4525  expire_link->data = ret;
4526  _dbus_list_prepend_link (&connection->expired_messages, expire_link);
4527  }
4528 
4529  if (!sent)
4531 
4533 }
4534 
4541 static DBusHandlerResult
4542 _dbus_connection_run_builtin_filters_unlocked_no_update (DBusConnection *connection,
4543  DBusMessage *message)
4544 {
4545  /* We just run one filter for now but have the option to run more
4546  if the spec calls for it in the future */
4547 
4548  return _dbus_connection_peer_filter_unlocked_no_update (connection, message);
4549 }
4550 
4595 {
4596  DBusMessage *message;
4597  DBusList *link, *filter_list_copy, *message_link;
4598  DBusHandlerResult result;
4599  DBusPendingCall *pending;
4600  dbus_int32_t reply_serial;
4601  DBusDispatchStatus status;
4602  dbus_bool_t found_object;
4603 
4604  _dbus_return_val_if_fail (connection != NULL, DBUS_DISPATCH_COMPLETE);
4605 
4606  _dbus_verbose ("\n");
4607 
4608  CONNECTION_LOCK (connection);
4609  status = _dbus_connection_get_dispatch_status_unlocked (connection);
4610  if (status != DBUS_DISPATCH_DATA_REMAINS)
4611  {
4612  /* unlocks and calls out to user code */
4613  _dbus_connection_update_dispatch_status_and_unlock (connection, status);
4614  return status;
4615  }
4616 
4617  /* We need to ref the connection since the callback could potentially
4618  * drop the last ref to it
4619  */
4620  _dbus_connection_ref_unlocked (connection);
4621 
4622  _dbus_connection_acquire_dispatch (connection);
4623  HAVE_LOCK_CHECK (connection);
4624 
4625  message_link = _dbus_connection_pop_message_link_unlocked (connection);
4626  if (message_link == NULL)
4627  {
4628  /* another thread dispatched our stuff */
4629 
4630  _dbus_verbose ("another thread dispatched message (during acquire_dispatch above)\n");
4631 
4632  _dbus_connection_release_dispatch (connection);
4633 
4634  status = _dbus_connection_get_dispatch_status_unlocked (connection);
4635 
4636  _dbus_connection_update_dispatch_status_and_unlock (connection, status);
4637 
4638  dbus_connection_unref (connection);
4639 
4640  return status;
4641  }
4642 
4643  message = message_link->data;
4644 
4645  _dbus_verbose (" dispatching message %p (%s %s %s '%s')\n",
4646  message,
4648  dbus_message_get_interface (message) ?
4649  dbus_message_get_interface (message) :
4650  "no interface",
4651  dbus_message_get_member (message) ?
4652  dbus_message_get_member (message) :
4653  "no member",
4654  dbus_message_get_signature (message));
4655 
4657 
4658  /* Pending call handling must be first, because if you do
4659  * dbus_connection_send_with_reply_and_block() or
4660  * dbus_pending_call_block() then no handlers/filters will be run on
4661  * the reply. We want consistent semantics in the case where we
4662  * dbus_connection_dispatch() the reply.
4663  */
4664 
4665  reply_serial = dbus_message_get_reply_serial (message);
4666  pending = _dbus_hash_table_lookup_int (connection->pending_replies,
4667  reply_serial);
4668  if (pending)
4669  {
4670  _dbus_verbose ("Dispatching a pending reply\n");
4671  complete_pending_call_and_unlock (connection, pending, message);
4672  pending = NULL; /* it's probably unref'd */
4673 
4674  CONNECTION_LOCK (connection);
4675  _dbus_verbose ("pending call completed in dispatch\n");
4676  result = DBUS_HANDLER_RESULT_HANDLED;
4677  goto out;
4678  }
4679 
4680  result = _dbus_connection_run_builtin_filters_unlocked_no_update (connection, message);
4682  goto out;
4683 
4684  if (!_dbus_list_copy (&connection->filter_list, &filter_list_copy))
4685  {
4686  _dbus_connection_release_dispatch (connection);
4687  HAVE_LOCK_CHECK (connection);
4688 
4689  _dbus_connection_failed_pop (connection, message_link);
4690 
4691  /* unlocks and calls user code */
4692  _dbus_connection_update_dispatch_status_and_unlock (connection,
4694  dbus_connection_unref (connection);
4695 
4697  }
4698 
4699  _dbus_list_foreach (&filter_list_copy,
4700  (DBusForeachFunction)_dbus_message_filter_ref,
4701  NULL);
4702 
4703  /* We're still protected from dispatch() reentrancy here
4704  * since we acquired the dispatcher
4705  */
4706  CONNECTION_UNLOCK (connection);
4707 
4708  link = _dbus_list_get_first_link (&filter_list_copy);
4709  while (link != NULL)
4710  {
4711  DBusMessageFilter *filter = link->data;
4712  DBusList *next = _dbus_list_get_next_link (&filter_list_copy, link);
4713 
4714  if (filter->function == NULL)
4715  {
4716  _dbus_verbose (" filter was removed in a callback function\n");
4717  link = next;
4718  continue;
4719  }
4720 
4721  _dbus_verbose (" running filter on message %p\n", message);
4722  result = (* filter->function) (connection, message, filter->user_data);
4723 
4725  break;
4726 
4727  link = next;
4728  }
4729 
4730  _dbus_list_foreach (&filter_list_copy,
4731  (DBusForeachFunction)_dbus_message_filter_unref,
4732  NULL);
4733  _dbus_list_clear (&filter_list_copy);
4734 
4735  CONNECTION_LOCK (connection);
4736 
4737  if (result == DBUS_HANDLER_RESULT_NEED_MEMORY)
4738  {
4739  _dbus_verbose ("No memory\n");
4740  goto out;
4741  }
4742  else if (result == DBUS_HANDLER_RESULT_HANDLED)
4743  {
4744  _dbus_verbose ("filter handled message in dispatch\n");
4745  goto out;
4746  }
4747 
4748  /* We're still protected from dispatch() reentrancy here
4749  * since we acquired the dispatcher
4750  */
4751  _dbus_verbose (" running object path dispatch on message %p (%s %s %s '%s')\n",
4752  message,
4754  dbus_message_get_interface (message) ?
4755  dbus_message_get_interface (message) :
4756  "no interface",
4757  dbus_message_get_member (message) ?
4758  dbus_message_get_member (message) :
4759  "no member",
4760  dbus_message_get_signature (message));
4761 
4762  HAVE_LOCK_CHECK (connection);
4763  result = _dbus_object_tree_dispatch_and_unlock (connection->objects,
4764  message,
4765  &found_object);
4766 
4767  CONNECTION_LOCK (connection);
4768 
4770  {
4771  _dbus_verbose ("object tree handled message in dispatch\n");
4772  goto out;
4773  }
4774 
4776  {
4777  DBusMessage *reply;
4778  DBusString str;
4779  DBusPreallocatedSend *preallocated;
4780  DBusList *expire_link;
4781 
4782  _dbus_verbose (" sending error %s\n",
4784 
4785  if (!_dbus_string_init (&str))
4786  {
4788  _dbus_verbose ("no memory for error string in dispatch\n");
4789  goto out;
4790  }
4791 
4792  if (!_dbus_string_append_printf (&str,
4793  "Method \"%s\" with signature \"%s\" on interface \"%s\" doesn't exist\n",
4794  dbus_message_get_member (message),
4795  dbus_message_get_signature (message),
4796  dbus_message_get_interface (message)))
4797  {
4798  _dbus_string_free (&str);
4800  _dbus_verbose ("no memory for error string in dispatch\n");
4801  goto out;
4802  }
4803 
4804  reply = dbus_message_new_error (message,
4806  _dbus_string_get_const_data (&str));
4807  _dbus_string_free (&str);
4808 
4809  if (reply == NULL)
4810  {
4812  _dbus_verbose ("no memory for error reply in dispatch\n");
4813  goto out;
4814  }
4815 
4816  expire_link = _dbus_list_alloc_link (reply);
4817 
4818  if (expire_link == NULL)
4819  {
4820  dbus_message_unref (reply);
4822  _dbus_verbose ("no memory for error send in dispatch\n");
4823  goto out;
4824  }
4825 
4826  preallocated = _dbus_connection_preallocate_send_unlocked (connection);
4827 
4828  if (preallocated == NULL)
4829  {
4830  _dbus_list_free_link (expire_link);
4831  /* It's OK that this is finalized, because it hasn't been seen by
4832  * anything that could attach user callbacks */
4833  dbus_message_unref (reply);
4835  _dbus_verbose ("no memory for error send in dispatch\n");
4836  goto out;
4837  }
4838 
4839  _dbus_connection_send_preallocated_unlocked_no_update (connection, preallocated,
4840  reply, NULL);
4841  /* reply will be freed when we release the lock */
4842  _dbus_list_prepend_link (&connection->expired_messages, expire_link);
4843 
4844  result = DBUS_HANDLER_RESULT_HANDLED;
4845  }
4846 
4847  _dbus_verbose (" done dispatching %p (%s %s %s '%s') on connection %p\n", message,
4849  dbus_message_get_interface (message) ?
4850  dbus_message_get_interface (message) :
4851  "no interface",
4852  dbus_message_get_member (message) ?
4853  dbus_message_get_member (message) :
4854  "no member",
4855  dbus_message_get_signature (message),
4856  connection);
4857 
4858  out:
4859  if (result == DBUS_HANDLER_RESULT_NEED_MEMORY)
4860  {
4861  _dbus_verbose ("out of memory\n");
4862 
4863  /* Put message back, and we'll start over.
4864  * Yes this means handlers must be idempotent if they
4865  * don't return HANDLED; c'est la vie.
4866  */
4867  _dbus_connection_putback_message_link_unlocked (connection,
4868  message_link);
4869  /* now we don't want to free them */
4870  message_link = NULL;
4871  message = NULL;
4872  }
4873  else
4874  {
4875  _dbus_verbose (" ... done dispatching\n");
4876  }
4877 
4878  _dbus_connection_release_dispatch (connection);
4879  HAVE_LOCK_CHECK (connection);
4880 
4881  if (message != NULL)
4882  {
4883  /* We don't want this message to count in maximum message limits when
4884  * computing the dispatch status, below. We have to drop the lock
4885  * temporarily, because finalizing a message can trigger callbacks.
4886  *
4887  * We have a reference to the connection, and we don't use any cached
4888  * pointers to the connection's internals below this point, so it should
4889  * be safe to drop the lock and take it back. */
4890  CONNECTION_UNLOCK (connection);
4891  dbus_message_unref (message);
4892  CONNECTION_LOCK (connection);
4893  }
4894 
4895  if (message_link != NULL)
4896  _dbus_list_free_link (message_link);
4897 
4898  _dbus_verbose ("before final status update\n");
4899  status = _dbus_connection_get_dispatch_status_unlocked (connection);
4900 
4901  /* unlocks and calls user code */
4902  _dbus_connection_update_dispatch_status_and_unlock (connection, status);
4903 
4904  dbus_connection_unref (connection);
4905 
4906  return status;
4907 }
4908 
4972  DBusAddWatchFunction add_function,
4973  DBusRemoveWatchFunction remove_function,
4974  DBusWatchToggledFunction toggled_function,
4975  void *data,
4976  DBusFreeFunction free_data_function)
4977 {
4978  dbus_bool_t retval;
4979 
4980  _dbus_return_val_if_fail (connection != NULL, FALSE);
4981 
4982  CONNECTION_LOCK (connection);
4983 
4984  retval = _dbus_watch_list_set_functions (connection->watches,
4985  add_function, remove_function,
4986  toggled_function,
4987  data, free_data_function);
4988 
4989  CONNECTION_UNLOCK (connection);
4990 
4991  return retval;
4992 }
4993 
5035  DBusAddTimeoutFunction add_function,
5036  DBusRemoveTimeoutFunction remove_function,
5037  DBusTimeoutToggledFunction toggled_function,
5038  void *data,
5039  DBusFreeFunction free_data_function)
5040 {
5041  dbus_bool_t retval;
5042 
5043  _dbus_return_val_if_fail (connection != NULL, FALSE);
5044 
5045  CONNECTION_LOCK (connection);
5046 
5047  retval = _dbus_timeout_list_set_functions (connection->timeouts,
5048  add_function, remove_function,
5049  toggled_function,
5050  data, free_data_function);
5051 
5052  CONNECTION_UNLOCK (connection);
5053 
5054  return retval;
5055 }
5056 
5071 void
5073  DBusWakeupMainFunction wakeup_main_function,
5074  void *data,
5075  DBusFreeFunction free_data_function)
5076 {
5077  void *old_data;
5078  DBusFreeFunction old_free_data;
5079 
5080  _dbus_return_if_fail (connection != NULL);
5081 
5082  CONNECTION_LOCK (connection);
5083  old_data = connection->wakeup_main_data;
5084  old_free_data = connection->free_wakeup_main_data;
5085 
5086  connection->wakeup_main_function = wakeup_main_function;
5087  connection->wakeup_main_data = data;
5088  connection->free_wakeup_main_data = free_data_function;
5089 
5090  CONNECTION_UNLOCK (connection);
5091 
5092  /* Callback outside the lock */
5093  if (old_free_data)
5094  (*old_free_data) (old_data);
5095 }
5096 
5117 void
5119  DBusDispatchStatusFunction function,
5120  void *data,
5121  DBusFreeFunction free_data_function)
5122 {
5123  void *old_data;
5124  DBusFreeFunction old_free_data;
5125 
5126  _dbus_return_if_fail (connection != NULL);
5127 
5128  CONNECTION_LOCK (connection);
5129  old_data = connection->dispatch_status_data;
5130  old_free_data = connection->free_dispatch_status_data;
5131 
5132  connection->dispatch_status_function = function;
5133  connection->dispatch_status_data = data;
5134  connection->free_dispatch_status_data = free_data_function;
5135 
5136  CONNECTION_UNLOCK (connection);
5137 
5138  /* Callback outside the lock */
5139  if (old_free_data)
5140  (*old_free_data) (old_data);
5141 }
5142 
5164  int *fd)
5165 {
5166  _dbus_return_val_if_fail (connection != NULL, FALSE);
5167  _dbus_return_val_if_fail (connection->transport != NULL, FALSE);
5168 
5169 #ifdef DBUS_WIN
5170  /* FIXME do this on a lower level */
5171  return FALSE;
5172 #endif
5173 
5174  return dbus_connection_get_socket(connection, fd);
5175 }
5176 
5194  int *fd)
5195 {
5196  dbus_bool_t retval;
5197  DBusSocket s = DBUS_SOCKET_INIT;
5198 
5199  _dbus_return_val_if_fail (connection != NULL, FALSE);
5200  _dbus_return_val_if_fail (connection->transport != NULL, FALSE);
5201 
5202  CONNECTION_LOCK (connection);
5203 
5204  retval = _dbus_transport_get_socket_fd (connection->transport, &s);
5205 
5206  if (retval)
5207  {
5208  *fd = _dbus_socket_get_int (s);
5209  }
5210 
5211  CONNECTION_UNLOCK (connection);
5212 
5213  return retval;
5214 }
5215 
5216 
5241  unsigned long *uid)
5242 {
5243  dbus_bool_t result;
5244 
5245  _dbus_return_val_if_fail (connection != NULL, FALSE);
5246  _dbus_return_val_if_fail (uid != NULL, FALSE);
5247 
5248  CONNECTION_LOCK (connection);
5249 
5251  result = FALSE;
5252  else
5253  result = _dbus_transport_get_unix_user (connection->transport,
5254  uid);
5255 
5256 #ifdef DBUS_WIN
5257  _dbus_assert (!result);
5258 #endif
5259 
5260  CONNECTION_UNLOCK (connection);
5261 
5262  return result;
5263 }
5264 
5277  unsigned long *pid)
5278 {
5279  dbus_bool_t result;
5280 
5281  _dbus_return_val_if_fail (connection != NULL, FALSE);
5282  _dbus_return_val_if_fail (pid != NULL, FALSE);
5283 
5284  CONNECTION_LOCK (connection);
5285 
5287  result = FALSE;
5288  else
5289  result = _dbus_transport_get_unix_process_id (connection->transport,
5290  pid);
5291 
5292  CONNECTION_UNLOCK (connection);
5293 
5294  return result;
5295 }
5296 
5310  void **data,
5311  dbus_int32_t *data_size)
5312 {
5313  dbus_bool_t result;
5314 
5315  _dbus_return_val_if_fail (connection != NULL, FALSE);
5316  _dbus_return_val_if_fail (data != NULL, FALSE);
5317  _dbus_return_val_if_fail (data_size != NULL, FALSE);
5318 
5319  CONNECTION_LOCK (connection);
5320 
5322  result = FALSE;
5323  else
5325  data,
5326  data_size);
5327  CONNECTION_UNLOCK (connection);
5328 
5329  return result;
5330 }
5331 
5354 void
5356  DBusAllowUnixUserFunction function,
5357  void *data,
5358  DBusFreeFunction free_data_function)
5359 {
5360  void *old_data = NULL;
5361  DBusFreeFunction old_free_function = NULL;
5362 
5363  _dbus_return_if_fail (connection != NULL);
5364 
5365  CONNECTION_LOCK (connection);
5367  function, data, free_data_function,
5368  &old_data, &old_free_function);
5369  CONNECTION_UNLOCK (connection);
5370 
5371  if (old_free_function != NULL)
5372  (* old_free_function) (old_data);
5373 }
5374 
5375 /* Same calling convention as dbus_connection_get_windows_user */
5377 _dbus_connection_get_linux_security_label (DBusConnection *connection,
5378  char **label_p)
5379 {
5380  dbus_bool_t result;
5381 
5382  _dbus_assert (connection != NULL);
5383  _dbus_assert (label_p != NULL);
5384 
5385  CONNECTION_LOCK (connection);
5386 
5388  result = FALSE;
5389  else
5390  result = _dbus_transport_get_linux_security_label (connection->transport,
5391  label_p);
5392 #ifndef __linux__
5393  _dbus_assert (!result);
5394 #endif
5395 
5396  CONNECTION_UNLOCK (connection);
5397 
5398  return result;
5399 }
5400 
5434  char **windows_sid_p)
5435 {
5436  dbus_bool_t result;
5437 
5438  _dbus_return_val_if_fail (connection != NULL, FALSE);
5439  _dbus_return_val_if_fail (windows_sid_p != NULL, FALSE);
5440 
5441  CONNECTION_LOCK (connection);
5442 
5444  result = FALSE;
5445  else
5446  result = _dbus_transport_get_windows_user (connection->transport,
5447  windows_sid_p);
5448 
5449 #ifdef DBUS_UNIX
5450  _dbus_assert (!result);
5451 #endif
5452 
5453  CONNECTION_UNLOCK (connection);
5454 
5455  return result;
5456 }
5457 
5479 void
5482  void *data,
5483  DBusFreeFunction free_data_function)
5484 {
5485  void *old_data = NULL;
5486  DBusFreeFunction old_free_function = NULL;
5487 
5488  _dbus_return_if_fail (connection != NULL);
5489 
5490  CONNECTION_LOCK (connection);
5492  function, data, free_data_function,
5493  &old_data, &old_free_function);
5494  CONNECTION_UNLOCK (connection);
5495 
5496  if (old_free_function != NULL)
5497  (* old_free_function) (old_data);
5498 }
5499 
5526 void
5528  dbus_bool_t value)
5529 {
5530  _dbus_return_if_fail (connection != NULL);
5531 
5532  CONNECTION_LOCK (connection);
5533  _dbus_transport_set_allow_anonymous (connection->transport, value);
5534  CONNECTION_UNLOCK (connection);
5535 }
5536 
5554 void
5556  dbus_bool_t value)
5557 {
5558  _dbus_return_if_fail (connection != NULL);
5559 
5560  CONNECTION_LOCK (connection);
5561  connection->route_peer_messages = value;
5562  CONNECTION_UNLOCK (connection);
5563 }
5564 
5588  DBusHandleMessageFunction function,
5589  void *user_data,
5590  DBusFreeFunction free_data_function)
5591 {
5592  DBusMessageFilter *filter;
5593 
5594  _dbus_return_val_if_fail (connection != NULL, FALSE);
5595  _dbus_return_val_if_fail (function != NULL, FALSE);
5596 
5597  filter = dbus_new0 (DBusMessageFilter, 1);
5598  if (filter == NULL)
5599  return FALSE;
5600 
5601  _dbus_atomic_inc (&filter->refcount);
5602 
5603  CONNECTION_LOCK (connection);
5604 
5605  if (!_dbus_list_append (&connection->filter_list,
5606  filter))
5607  {
5608  _dbus_message_filter_unref (filter);
5609  CONNECTION_UNLOCK (connection);
5610  return FALSE;
5611  }
5612 
5613  /* Fill in filter after all memory allocated,
5614  * so we don't run the free_user_data_function
5615  * if the add_filter() fails
5616  */
5617 
5618  filter->function = function;
5619  filter->user_data = user_data;
5620  filter->free_user_data_function = free_data_function;
5621 
5622  CONNECTION_UNLOCK (connection);
5623  return TRUE;
5624 }
5625 
5638 void
5640  DBusHandleMessageFunction function,
5641  void *user_data)
5642 {
5643  DBusList *link;
5644  DBusMessageFilter *filter;
5645 
5646  _dbus_return_if_fail (connection != NULL);
5647  _dbus_return_if_fail (function != NULL);
5648 
5649  CONNECTION_LOCK (connection);
5650 
5651  filter = NULL;
5652 
5653  link = _dbus_list_get_last_link (&connection->filter_list);
5654  while (link != NULL)
5655  {
5656  filter = link->data;
5657 
5658  if (filter->function == function &&
5659  filter->user_data == user_data)
5660  {
5661  _dbus_list_remove_link (&connection->filter_list, link);
5662  filter->function = NULL;
5663 
5664  break;
5665  }
5666 
5667  link = _dbus_list_get_prev_link (&connection->filter_list, link);
5668  filter = NULL;
5669  }
5670 
5671  CONNECTION_UNLOCK (connection);
5672 
5673 #ifndef DBUS_DISABLE_CHECKS
5674  if (filter == NULL)
5675  {
5676  _dbus_warn_check_failed ("Attempt to remove filter function %p user data %p, but no such filter has been added",
5677  function, user_data);
5678  return;
5679  }
5680 #endif
5681 
5682  /* Call application code */
5683  if (filter->free_user_data_function)
5684  (* filter->free_user_data_function) (filter->user_data);
5685 
5686  filter->free_user_data_function = NULL;
5687  filter->user_data = NULL;
5688 
5689  _dbus_message_filter_unref (filter);
5690 }
5691 
5707 static dbus_bool_t
5708 _dbus_connection_register_object_path (DBusConnection *connection,
5709  dbus_bool_t fallback,
5710  const char *path,
5711  const DBusObjectPathVTable *vtable,
5712  void *user_data,
5713  DBusError *error)
5714 {
5715  char **decomposed_path;
5716  dbus_bool_t retval;
5717 
5718  if (!_dbus_decompose_path (path, strlen (path), &decomposed_path, NULL))
5719  return FALSE;
5720 
5721  CONNECTION_LOCK (connection);
5722 
5723  retval = _dbus_object_tree_register (connection->objects,
5724  fallback,
5725  (const char **) decomposed_path, vtable,
5726  user_data, error);
5727 
5728  CONNECTION_UNLOCK (connection);
5729 
5730  dbus_free_string_array (decomposed_path);
5731 
5732  return retval;
5733 }
5734 
5749  const char *path,
5750  const DBusObjectPathVTable *vtable,
5751  void *user_data,
5752  DBusError *error)
5753 {
5754  _dbus_return_val_if_fail (connection != NULL, FALSE);
5755  _dbus_return_val_if_fail (path != NULL, FALSE);
5756  _dbus_return_val_if_fail (path[0] == '/', FALSE);
5757  _dbus_return_val_if_fail (vtable != NULL, FALSE);
5758 
5759  return _dbus_connection_register_object_path (connection, FALSE, path, vtable, user_data, error);
5760 }
5761 
5779  const char *path,
5780  const DBusObjectPathVTable *vtable,
5781  void *user_data)
5782 {
5783  dbus_bool_t retval;
5784  DBusError error = DBUS_ERROR_INIT;
5785 
5786  _dbus_return_val_if_fail (connection != NULL, FALSE);
5787  _dbus_return_val_if_fail (path != NULL, FALSE);
5788  _dbus_return_val_if_fail (path[0] == '/', FALSE);
5789  _dbus_return_val_if_fail (vtable != NULL, FALSE);
5790 
5791  retval = _dbus_connection_register_object_path (connection, FALSE, path, vtable, user_data, &error);
5792 
5794  {
5795  _dbus_warn ("%s", error.message);
5796  dbus_error_free (&error);
5797  return FALSE;
5798  }
5799 
5800  return retval;
5801 }
5802 
5819  const char *path,
5820  const DBusObjectPathVTable *vtable,
5821  void *user_data,
5822  DBusError *error)
5823 {
5824  _dbus_return_val_if_fail (connection != NULL, FALSE);
5825  _dbus_return_val_if_fail (path != NULL, FALSE);
5826  _dbus_return_val_if_fail (path[0] == '/', FALSE);
5827  _dbus_return_val_if_fail (vtable != NULL, FALSE);
5828 
5829  return _dbus_connection_register_object_path (connection, TRUE, path, vtable, user_data, error);
5830 }
5831 
5851  const char *path,
5852  const DBusObjectPathVTable *vtable,
5853  void *user_data)
5854 {
5855  dbus_bool_t retval;
5856  DBusError error = DBUS_ERROR_INIT;
5857 
5858  _dbus_return_val_if_fail (connection != NULL, FALSE);
5859  _dbus_return_val_if_fail (path != NULL, FALSE);
5860  _dbus_return_val_if_fail (path[0] == '/', FALSE);
5861  _dbus_return_val_if_fail (vtable != NULL, FALSE);
5862 
5863  retval = _dbus_connection_register_object_path (connection, TRUE, path, vtable, user_data, &error);
5864 
5866  {
5867  _dbus_warn ("%s", error.message);
5868  dbus_error_free (&error);
5869  return FALSE;
5870  }
5871 
5872  return retval;
5873 }
5874 
5886  const char *path)
5887 {
5888  char **decomposed_path;
5889 
5890  _dbus_return_val_if_fail (connection != NULL, FALSE);
5891  _dbus_return_val_if_fail (path != NULL, FALSE);
5892  _dbus_return_val_if_fail (path[0] == '/', FALSE);
5893 
5894  if (!_dbus_decompose_path (path, strlen (path), &decomposed_path, NULL))
5895  return FALSE;
5896 
5897  CONNECTION_LOCK (connection);
5898 
5899  _dbus_object_tree_unregister_and_unlock (connection->objects, (const char **) decomposed_path);
5900 
5901  dbus_free_string_array (decomposed_path);
5902 
5903  return TRUE;
5904 }
5905 
5918  const char *path,
5919  void **data_p)
5920 {
5921  char **decomposed_path;
5922 
5923  _dbus_return_val_if_fail (connection != NULL, FALSE);
5924  _dbus_return_val_if_fail (path != NULL, FALSE);
5925  _dbus_return_val_if_fail (data_p != NULL, FALSE);
5926 
5927  *data_p = NULL;
5928 
5929  if (!_dbus_decompose_path (path, strlen (path), &decomposed_path, NULL))
5930  return FALSE;
5931 
5932  CONNECTION_LOCK (connection);
5933 
5934  *data_p = _dbus_object_tree_get_user_data_unlocked (connection->objects, (const char**) decomposed_path);
5935 
5936  CONNECTION_UNLOCK (connection);
5937 
5938  dbus_free_string_array (decomposed_path);
5939 
5940  return TRUE;
5941 }
5942 
5955  const char *parent_path,
5956  char ***child_entries)
5957 {
5958  char **decomposed_path;
5959  dbus_bool_t retval;
5960  _dbus_return_val_if_fail (connection != NULL, FALSE);
5961  _dbus_return_val_if_fail (parent_path != NULL, FALSE);
5962  _dbus_return_val_if_fail (parent_path[0] == '/', FALSE);
5963  _dbus_return_val_if_fail (child_entries != NULL, FALSE);
5964 
5965  if (!_dbus_decompose_path (parent_path, strlen (parent_path), &decomposed_path, NULL))
5966  return FALSE;
5967 
5968  CONNECTION_LOCK (connection);
5969 
5971  (const char **) decomposed_path,
5972  child_entries);
5973  dbus_free_string_array (decomposed_path);
5974 
5975  return retval;
5976 }
5977 
5978 static DBusDataSlotAllocator slot_allocator =
5979  _DBUS_DATA_SLOT_ALLOCATOR_INIT (_DBUS_LOCK_NAME (connection_slots));
5980 
5997 {
5998  return _dbus_data_slot_allocator_alloc (&slot_allocator,
5999  slot_p);
6000 }
6001 
6013 void
6014 dbus_connection_free_data_slot (dbus_int32_t *slot_p)
6015 {
6016  _dbus_return_if_fail (*slot_p >= 0);
6017 
6018  _dbus_data_slot_allocator_free (&slot_allocator, slot_p);
6019 }
6020 
6045  dbus_int32_t slot,
6046  void *data,
6047  DBusFreeFunction free_data_func)
6048 {
6049  DBusFreeFunction old_free_func;
6050  void *old_data;
6051  dbus_bool_t retval;
6052 
6053  _dbus_return_val_if_fail (connection != NULL, FALSE);
6054  _dbus_return_val_if_fail (slot >= 0, FALSE);
6055 
6056  SLOTS_LOCK (connection);
6057 
6058  retval = _dbus_data_slot_list_set (&slot_allocator,
6059  &connection->slot_list,
6060  slot, data, free_data_func,
6061  &old_free_func, &old_data);
6062 
6063  SLOTS_UNLOCK (connection);
6064 
6065  if (retval)
6066  {
6067  /* Do the actual free outside the connection lock */
6068  if (old_free_func)
6069  (* old_free_func) (old_data);
6070  }
6071 
6072  return retval;
6073 }
6074 
6092 void*
6094  dbus_int32_t slot)
6095 {
6096  void *res;
6097 
6098  _dbus_return_val_if_fail (connection != NULL, NULL);
6099  _dbus_return_val_if_fail (slot >= 0, NULL);
6100 
6101  SLOTS_LOCK (connection);
6102 
6103  res = _dbus_data_slot_list_get (&slot_allocator,
6104  &connection->slot_list,
6105  slot);
6106 
6107  SLOTS_UNLOCK (connection);
6108 
6109  return res;
6110 }
6111 
6118 void
6120 {
6121  _dbus_modify_sigpipe = will_modify_sigpipe != FALSE;
6122 }
6123 
6132 void
6134  long size)
6135 {
6136  _dbus_return_if_fail (connection != NULL);
6137 
6138  CONNECTION_LOCK (connection);
6140  size);
6141  CONNECTION_UNLOCK (connection);
6142 }
6143 
6150 long
6152 {
6153  long res;
6154 
6155  _dbus_return_val_if_fail (connection != NULL, 0);
6156 
6157  CONNECTION_LOCK (connection);
6158  res = _dbus_transport_get_max_message_size (connection->transport);
6159  CONNECTION_UNLOCK (connection);
6160  return res;
6161 }
6162 
6171 void
6173  long n)
6174 {
6175  _dbus_return_if_fail (connection != NULL);
6176 
6177  CONNECTION_LOCK (connection);
6179  n);
6180  CONNECTION_UNLOCK (connection);
6181 }
6182 
6189 long
6191 {
6192  long res;
6193 
6194  _dbus_return_val_if_fail (connection != NULL, 0);
6195 
6196  CONNECTION_LOCK (connection);
6198  CONNECTION_UNLOCK (connection);
6199  return res;
6200 }
6201 
6227 void
6229  long size)
6230 {
6231  _dbus_return_if_fail (connection != NULL);
6232 
6233  CONNECTION_LOCK (connection);
6235  size);
6236  CONNECTION_UNLOCK (connection);
6237 }
6238 
6245 long
6247 {
6248  long res;
6249 
6250  _dbus_return_val_if_fail (connection != NULL, 0);
6251 
6252  CONNECTION_LOCK (connection);
6254  CONNECTION_UNLOCK (connection);
6255  return res;
6256 }
6257 
6269 void
6271  long n)
6272 {
6273  _dbus_return_if_fail (connection != NULL);
6274 
6275  CONNECTION_LOCK (connection);
6277  n);
6278  CONNECTION_UNLOCK (connection);
6279 }
6280 
6287 long
6289 {
6290  long res;
6291 
6292  _dbus_return_val_if_fail (connection != NULL, 0);
6293 
6294  CONNECTION_LOCK (connection);
6296  CONNECTION_UNLOCK (connection);
6297  return res;
6298 }
6299 
6310 long
6312 {
6313  long res;
6314 
6315  _dbus_return_val_if_fail (connection != NULL, 0);
6316 
6317  CONNECTION_LOCK (connection);
6318  res = _dbus_counter_get_size_value (connection->outgoing_counter);
6319  CONNECTION_UNLOCK (connection);
6320  return res;
6321 }
6322 
6323 #ifdef DBUS_ENABLE_STATS
6324 void
6325 _dbus_connection_get_stats (DBusConnection *connection,
6326  dbus_uint32_t *in_messages,
6327  dbus_uint32_t *in_bytes,
6328  dbus_uint32_t *in_fds,
6329  dbus_uint32_t *in_peak_bytes,
6330  dbus_uint32_t *in_peak_fds,
6331  dbus_uint32_t *out_messages,
6332  dbus_uint32_t *out_bytes,
6333  dbus_uint32_t *out_fds,
6334  dbus_uint32_t *out_peak_bytes,
6335  dbus_uint32_t *out_peak_fds)
6336 {
6337  CONNECTION_LOCK (connection);
6338 
6339  if (in_messages != NULL)
6340  *in_messages = connection->n_incoming;
6341 
6342  _dbus_transport_get_stats (connection->transport,
6343  in_bytes, in_fds, in_peak_bytes, in_peak_fds);
6344 
6345  if (out_messages != NULL)
6346  *out_messages = connection->n_outgoing;
6347 
6348  if (out_bytes != NULL)
6349  *out_bytes = _dbus_counter_get_size_value (connection->outgoing_counter);
6350 
6351  if (out_fds != NULL)
6352  *out_fds = _dbus_counter_get_unix_fd_value (connection->outgoing_counter);
6353 
6354  if (out_peak_bytes != NULL)
6355  *out_peak_bytes = _dbus_counter_get_peak_size_value (connection->outgoing_counter);
6356 
6357  if (out_peak_fds != NULL)
6358  *out_peak_fds = _dbus_counter_get_peak_unix_fd_value (connection->outgoing_counter);
6359 
6360  CONNECTION_UNLOCK (connection);
6361 }
6362 #endif /* DBUS_ENABLE_STATS */
6363 
6371 long
6373 {
6374  long res;
6375 
6376  _dbus_return_val_if_fail (connection != NULL, 0);
6377 
6378  CONNECTION_LOCK (connection);
6380  CONNECTION_UNLOCK (connection);
6381  return res;
6382 }
6383 
6384 #ifdef DBUS_ENABLE_EMBEDDED_TESTS
6391 const char*
6392 _dbus_connection_get_address (DBusConnection *connection)
6393 {
6394  return _dbus_transport_get_address (connection->transport);
6395 }
6396 #endif
6397 
void dbus_address_entries_free(DBusAddressEntry **entries)
Frees a NULL-terminated array of address entries.
Definition: dbus-address.c:189
dbus_bool_t dbus_parse_address(const char *address, DBusAddressEntry ***entry_result, int *array_len, DBusError *error)
Parses an address string of the form:
Definition: dbus-address.c:363
const char * dbus_address_entry_get_value(DBusAddressEntry *entry, const char *key)
Returns a value from a key of an entry.
Definition: dbus-address.c:244
void _dbus_bus_notify_shared_connection_disconnected_unlocked(DBusConnection *connection)
Internal function that checks to see if this is a shared connection owned by the bus and if it is unr...
Definition: dbus-bus.c:387
dbus_bool_t _dbus_connection_handle_watch(DBusWatch *watch, unsigned int condition, void *data)
A callback for use with dbus_watch_new() to create a DBusWatch.
void _dbus_connection_toggle_timeout_unlocked(DBusConnection *connection, DBusTimeout *timeout, dbus_bool_t enabled)
Toggles a timeout and notifies app via connection's DBusTimeoutToggledFunction if available.
dbus_bool_t dbus_connection_has_messages_to_send(DBusConnection *connection)
Checks whether there are messages in the outgoing message queue.
void _dbus_connection_do_iteration_unlocked(DBusConnection *connection, DBusPendingCall *pending, unsigned int flags, int timeout_milliseconds)
Queues incoming messages and sends outgoing messages for this connection, optionally blocking in the ...
dbus_bool_t _dbus_connection_send_and_unlock(DBusConnection *connection, DBusMessage *message, dbus_uint32_t *client_serial)
Like dbus_connection_send(), but assumes the connection is already locked on function entry,...
DBusConnection * _dbus_connection_new_for_transport(DBusTransport *transport)
Creates a new connection for the given transport.
DBusMessage * _dbus_connection_get_message_to_send(DBusConnection *connection)
Gets the next outgoing message.
dbus_bool_t _dbus_connection_has_messages_to_send_unlocked(DBusConnection *connection)
Checks whether there are messages in the outgoing message queue.
void(* DBusWatchRemoveFunction)(DBusWatchList *list, DBusWatch *watch)
Function to be called in protected_change_watch() with refcount held.
void _dbus_connection_unlock(DBusConnection *connection)
Releases the connection lock.
void _dbus_connection_lock(DBusConnection *connection)
Acquires the connection lock.
void _dbus_connection_remove_watch_unlocked(DBusConnection *connection, DBusWatch *watch)
Removes a watch using the connection's DBusRemoveWatchFunction if available.
dbus_bool_t _dbus_connection_add_timeout_unlocked(DBusConnection *connection, DBusTimeout *timeout)
Adds a timeout using the connection's DBusAddTimeoutFunction if available.
void _dbus_connection_toggle_watch_unlocked(DBusConnection *connection, DBusWatch *watch, dbus_bool_t enabled)
Toggles a watch and notifies app via connection's DBusWatchToggledFunction if available.
DBusConnection * _dbus_connection_ref_unlocked(DBusConnection *connection)
Increments the reference count of a DBusConnection.
void(* DBusTimeoutToggleFunction)(DBusTimeoutList *list, DBusTimeout *timeout, dbus_bool_t enabled)
Function to be called in protected_change_timeout() with refcount held.
void(* DBusTimeoutRemoveFunction)(DBusTimeoutList *list, DBusTimeout *timeout)
Function to be called in protected_change_timeout() with refcount held.
dbus_bool_t _dbus_connection_add_watch_unlocked(DBusConnection *connection, DBusWatch *watch)
Adds a watch using the connection's DBusAddWatchFunction if available.
void _dbus_connection_remove_pending_call(DBusConnection *connection, DBusPendingCall *pending)
Removes a pending call from the connection, such that the pending reply will be ignored.
void _dbus_connection_close_if_only_one_ref(DBusConnection *connection)
Used internally to handle the semantics of dbus_server_set_new_connection_function().
void _dbus_connection_unref_unlocked(DBusConnection *connection)
Decrements the reference count of a DBusConnection.
dbus_bool_t(* DBusTimeoutAddFunction)(DBusTimeoutList *list, DBusTimeout *timeout)
Function to be called in protected_change_timeout() with refcount held.
void _dbus_connection_message_sent_unlocked(DBusConnection *connection, DBusMessage *message)
Notifies the connection that a message has been sent, so the message can be removed from the outgoing...
void _dbus_connection_remove_timeout_unlocked(DBusConnection *connection, DBusTimeout *timeout)
Removes a timeout using the connection's DBusRemoveTimeoutFunction if available.
dbus_uint32_t _dbus_connection_get_next_client_serial(DBusConnection *connection)
Allocate and return the next non-zero serial number for outgoing messages.
void(* DBusWatchToggleFunction)(DBusWatchList *list, DBusWatch *watch, dbus_bool_t enabled)
Function to be called in protected_change_watch() with refcount held.
void _dbus_connection_queue_received_message_link(DBusConnection *connection, DBusList *link)
Adds a message-containing list link to the incoming message queue, taking ownership of the link and t...
int _dbus_connection_get_pending_fds_count(DBusConnection *connection)
Return how many file descriptors are pending in the loader.
void _dbus_connection_set_pending_fds_function(DBusConnection *connection, DBusPendingFdsChangeFunction callback, void *data)
Register a function to be called whenever the number of pending file descriptors in the loader change...
dbus_bool_t(* DBusWatchAddFunction)(DBusWatchList *list, DBusWatch *watch)
Function to be called in protected_change_watch() with refcount held.
void _dbus_connection_block_pending_call(DBusPendingCall *pending)
Blocks until a pending call times out or gets a reply.
void _dbus_connection_queue_synthesized_message_link(DBusConnection *connection, DBusList *link)
Adds a link + message to the incoming message queue.
void _dbus_connection_close_possibly_shared(DBusConnection *connection)
Closes a shared OR private connection, while dbus_connection_close() can only be used on private conn...
void dbus_connection_return_message(DBusConnection *connection, DBusMessage *message)
Used to return a message after peeking at it using dbus_connection_borrow_message().
void(* DBusWatchToggledFunction)(DBusWatch *watch, void *data)
Called when dbus_watch_get_enabled() may return a different value than it did before.
dbus_bool_t dbus_connection_get_object_path_data(DBusConnection *connection, const char *path, void **data_p)
Gets the user data passed to dbus_connection_register_object_path() or dbus_connection_register_fallb...
void dbus_connection_set_max_message_size(DBusConnection *connection, long size)
Specifies the maximum size message this connection is allowed to receive.
void dbus_connection_flush(DBusConnection *connection)
Blocks until the outgoing message queue is empty.
long dbus_connection_get_max_message_unix_fds(DBusConnection *connection)
Gets the value set by dbus_connection_set_max_message_unix_fds().
void dbus_connection_set_exit_on_disconnect(DBusConnection *connection, dbus_bool_t exit_on_disconnect)
Set whether _exit() should be called when the connection receives a disconnect signal.
dbus_bool_t dbus_connection_get_socket(DBusConnection *connection, int *fd)
Gets the underlying Windows or UNIX socket file descriptor of the connection, if any.
DBusMessage * dbus_connection_pop_message(DBusConnection *connection)
Returns the first-received message from the incoming message queue, removing it from the queue.
long dbus_connection_get_max_received_unix_fds(DBusConnection *connection)
Gets the value set by dbus_connection_set_max_received_unix_fds().
dbus_bool_t dbus_connection_register_object_path(DBusConnection *connection, const char *path, const DBusObjectPathVTable *vtable, void *user_data)
Registers a handler for a given path in the object hierarchy.
void dbus_connection_close(DBusConnection *connection)
Closes a private connection, so no further data can be sent or received.
void dbus_connection_set_max_message_unix_fds(DBusConnection *connection, long n)
Specifies the maximum number of unix fds a message on this connection is allowed to receive.
void dbus_connection_set_wakeup_main_function(DBusConnection *connection, DBusWakeupMainFunction wakeup_main_function, void *data, DBusFreeFunction free_data_function)
Sets the mainloop wakeup function for the connection.
dbus_bool_t dbus_connection_get_windows_user(DBusConnection *connection, char **windows_sid_p)
Gets the Windows user SID of the connection if known.
dbus_bool_t dbus_connection_get_is_authenticated(DBusConnection *connection)
Gets whether the connection was authenticated.
void dbus_connection_send_preallocated(DBusConnection *connection, DBusPreallocatedSend *preallocated, DBusMessage *message, dbus_uint32_t *client_serial)
Sends a message using preallocated resources.
dbus_bool_t dbus_connection_read_write(DBusConnection *connection, int timeout_milliseconds)
This function is intended for use with applications that don't want to write a main loop and deal wit...
long dbus_connection_get_max_received_size(DBusConnection *connection)
Gets the value set by dbus_connection_set_max_received_size().
dbus_bool_t dbus_connection_get_unix_fd(DBusConnection *connection, int *fd)
Get the UNIX file descriptor of the connection, if any.
void(* DBusDispatchStatusFunction)(DBusConnection *connection, DBusDispatchStatus new_status, void *data)
Called when the return value of dbus_connection_get_dispatch_status() may have changed.
dbus_bool_t dbus_connection_can_send_type(DBusConnection *connection, int type)
Tests whether a certain type can be send via the connection.
dbus_bool_t dbus_connection_list_registered(DBusConnection *connection, const char *parent_path, char ***child_entries)
Lists the registered fallback handlers and object path handlers at the given parent_path.
void * dbus_connection_get_data(DBusConnection *connection, dbus_int32_t slot)
Retrieves data previously set with dbus_connection_set_data().
DBusConnection * dbus_connection_open_private(const char *address, DBusError *error)
Opens a new, dedicated connection to a remote address.
long dbus_connection_get_outgoing_size(DBusConnection *connection)
Gets the approximate size in bytes of all messages in the outgoing message queue.
void dbus_connection_set_dispatch_status_function(DBusConnection *connection, DBusDispatchStatusFunction function, void *data, DBusFreeFunction free_data_function)
Set a function to be invoked when the dispatch status changes.
dbus_bool_t dbus_connection_read_write_dispatch(DBusConnection *connection, int timeout_milliseconds)
This function is intended for use with applications that don't want to write a main loop and deal wit...
DBusHandlerResult(* DBusHandleMessageFunction)(DBusConnection *connection, DBusMessage *message, void *user_data)
Called when a message needs to be handled.
void dbus_connection_remove_filter(DBusConnection *connection, DBusHandleMessageFunction function, void *user_data)
Removes a previously-added message filter.
dbus_bool_t dbus_connection_get_is_connected(DBusConnection *connection)
Gets whether the connection is currently open.
DBusPreallocatedSend * dbus_connection_preallocate_send(DBusConnection *connection)
Preallocates resources needed to send a message, allowing the message to be sent without the possibil...
dbus_bool_t(* DBusAddWatchFunction)(DBusWatch *watch, void *data)
Called when libdbus needs a new watch to be monitored by the main loop.
void dbus_connection_unref(DBusConnection *connection)
Decrements the reference count of a DBusConnection, and finalizes it if the count reaches zero.
void dbus_connection_set_max_received_size(DBusConnection *connection, long size)
Sets the maximum total number of bytes that can be used for all messages received on this connection.
void(* DBusTimeoutToggledFunction)(DBusTimeout *timeout, void *data)
Called when dbus_timeout_get_enabled() may return a different value than it did before.
DBusDispatchStatus dbus_connection_dispatch(DBusConnection *connection)
Processes any incoming data.
dbus_bool_t dbus_connection_unregister_object_path(DBusConnection *connection, const char *path)
Unregisters the handler registered with exactly the given path.
void dbus_connection_set_unix_user_function(DBusConnection *connection, DBusAllowUnixUserFunction function, void *data, DBusFreeFunction free_data_function)
Sets a predicate function used to determine whether a given user ID is allowed to connect.
dbus_bool_t dbus_connection_try_register_object_path(DBusConnection *connection, const char *path, const DBusObjectPathVTable *vtable, void *user_data, DBusError *error)
Registers a handler for a given path in the object hierarchy.
void dbus_connection_steal_borrowed_message(DBusConnection *connection, DBusMessage *message)
Used to keep a message after peeking at it using dbus_connection_borrow_message().
dbus_bool_t dbus_connection_allocate_data_slot(dbus_int32_t *slot_p)
Allocates an integer ID to be used for storing application-specific data on any DBusConnection.
void dbus_connection_set_change_sigpipe(dbus_bool_t will_modify_sigpipe)
This function sets a global flag for whether dbus_connection_new() will set SIGPIPE behavior to SIG_I...
long dbus_connection_get_max_message_size(DBusConnection *connection)
Gets the value set by dbus_connection_set_max_message_size().
void dbus_connection_free_data_slot(dbus_int32_t *slot_p)
Deallocates a global ID for connection data slots.
dbus_bool_t(* DBusAddTimeoutFunction)(DBusTimeout *timeout, void *data)
Called when libdbus needs a new timeout to be monitored by the main loop.
void dbus_connection_set_max_received_unix_fds(DBusConnection *connection, long n)
Sets the maximum total number of unix fds that can be used for all messages received on this connecti...
dbus_bool_t dbus_connection_set_data(DBusConnection *connection, dbus_int32_t slot, void *data, DBusFreeFunction free_data_func)
Stores a pointer on a DBusConnection, along with an optional function to be used for freeing the data...
DBusDispatchStatus dbus_connection_get_dispatch_status(DBusConnection *connection)
Gets the current state of the incoming message queue.
DBusMessage * dbus_connection_send_with_reply_and_block(DBusConnection *connection, DBusMessage *message, int timeout_milliseconds, DBusError *error)
Sends a message and blocks a certain time period while waiting for a reply.
dbus_bool_t dbus_connection_try_register_fallback(DBusConnection *connection, const char *path, const DBusObjectPathVTable *vtable, void *user_data, DBusError *error)
Registers a fallback handler for a given subsection of the object hierarchy.
dbus_bool_t dbus_connection_get_adt_audit_session_data(DBusConnection *connection, void **data, dbus_int32_t *data_size)
Gets the ADT audit data of the connection if any.
DBusMessage * dbus_connection_borrow_message(DBusConnection *connection)
Returns the first-received message from the incoming message queue, leaving it in the queue.
dbus_bool_t dbus_connection_send_with_reply(DBusConnection *connection, DBusMessage *message, DBusPendingCall **pending_return, int timeout_milliseconds)
Queues a message to send, as with dbus_connection_send(), but also returns a DBusPendingCall used to ...
void dbus_connection_set_windows_user_function(DBusConnection *connection, DBusAllowWindowsUserFunction function, void *data, DBusFreeFunction free_data_function)
Sets a predicate function used to determine whether a given user ID is allowed to connect.
dbus_bool_t dbus_connection_get_is_anonymous(DBusConnection *connection)
Gets whether the connection is not authenticated as a specific user.
dbus_bool_t dbus_connection_set_timeout_functions(DBusConnection *connection, DBusAddTimeoutFunction add_function, DBusRemoveTimeoutFunction remove_function, DBusTimeoutToggledFunction toggled_function, void *data, DBusFreeFunction free_data_function)
Sets the timeout functions for the connection.
void(* DBusRemoveWatchFunction)(DBusWatch *watch, void *data)
Called when libdbus no longer needs a watch to be monitored by the main loop.
dbus_bool_t(* DBusAllowUnixUserFunction)(DBusConnection *connection, unsigned long uid, void *data)
Called during authentication to check whether the given UNIX user ID is allowed to connect,...
DBusDispatchStatus
Indicates the status of incoming data on a DBusConnection.
dbus_bool_t dbus_connection_register_fallback(DBusConnection *connection, const char *path, const DBusObjectPathVTable *vtable, void *user_data)
Registers a fallback handler for a given subsection of the object hierarchy.
DBusConnection * dbus_connection_open(const char *address, DBusError *error)
Gets a connection to a remote address.
void dbus_connection_free_preallocated_send(DBusConnection *connection, DBusPreallocatedSend *preallocated)
Frees preallocated message-sending resources from dbus_connection_preallocate_send().
long dbus_connection_get_outgoing_unix_fds(DBusConnection *connection)
Gets the approximate number of uni fds of all messages in the outgoing message queue.
void(* DBusWakeupMainFunction)(void *data)
Called when the main loop's thread should be notified that there's now work to do.
void dbus_connection_set_allow_anonymous(DBusConnection *connection, dbus_bool_t value)
This function must be called on the server side of a connection when the connection is first seen in ...
dbus_bool_t dbus_connection_add_filter(DBusConnection *connection, DBusHandleMessageFunction function, void *user_data, DBusFreeFunction free_data_function)
Adds a message filter.
dbus_bool_t dbus_connection_send(DBusConnection *connection, DBusMessage *message, dbus_uint32_t *serial)
Adds a message to the outgoing message queue.
DBusConnection * dbus_connection_ref(DBusConnection *connection)
Increments the reference count of a DBusConnection.
char * dbus_connection_get_server_id(DBusConnection *connection)
Gets the ID of the server address we are authenticated to, if this connection is on the client side.
dbus_bool_t(* DBusAllowWindowsUserFunction)(DBusConnection *connection, const char *user_sid, void *data)
Called during authentication to check whether the given Windows user ID is allowed to connect,...
dbus_bool_t dbus_connection_set_watch_functions(DBusConnection *connection, DBusAddWatchFunction add_function, DBusRemoveWatchFunction remove_function, DBusWatchToggledFunction toggled_function, void *data, DBusFreeFunction free_data_function)
Sets the watch functions for the connection.
void(* DBusRemoveTimeoutFunction)(DBusTimeout *timeout, void *data)
Called when libdbus no longer needs a timeout to be monitored by the main loop.
dbus_bool_t dbus_connection_get_unix_process_id(DBusConnection *connection, unsigned long *pid)
Gets the process ID of the connection if any.
dbus_bool_t dbus_connection_get_unix_user(DBusConnection *connection, unsigned long *uid)
Gets the UNIX user ID of the connection if known.
void dbus_connection_set_route_peer_messages(DBusConnection *connection, dbus_bool_t value)
Normally DBusConnection automatically handles all messages to the org.freedesktop....
@ DBUS_DISPATCH_NEED_MEMORY
More memory is needed to continue.
@ DBUS_DISPATCH_COMPLETE
All currently available data has been processed.
@ DBUS_DISPATCH_DATA_REMAINS
There is more data to potentially convert to messages.
void _dbus_data_slot_allocator_free(DBusDataSlotAllocator *allocator, dbus_int32_t *slot_id_p)
Deallocates an ID previously allocated with _dbus_data_slot_allocator_alloc().
void * _dbus_data_slot_list_get(DBusDataSlotAllocator *allocator, DBusDataSlotList *list, int slot)
Retrieves data previously set with _dbus_data_slot_list_set_data().
void _dbus_data_slot_list_init(DBusDataSlotList *list)
Initializes a slot list.
void _dbus_data_slot_list_free(DBusDataSlotList *list)
Frees the data slot list and all data slots contained in it, calling application-provided free functi...
dbus_bool_t _dbus_data_slot_list_set(DBusDataSlotAllocator *allocator, DBusDataSlotList *list, int slot, void *data, DBusFreeFunction free_data_func, DBusFreeFunction *old_free_func, void **old_data)
Stores a pointer in the data slot list, along with an optional function to be used for freeing the da...
dbus_bool_t _dbus_data_slot_allocator_alloc(DBusDataSlotAllocator *allocator, dbus_int32_t *slot_id_p)
Allocates an integer ID to be used for storing data in a DBusDataSlotList.
Definition: dbus-dataslot.c:69
#define DBUS_ERROR_INIT
Expands to a suitable initializer for a DBusError on the stack.
Definition: dbus-errors.h:62
void dbus_move_error(DBusError *src, DBusError *dest)
Moves an error src into dest, freeing src and overwriting dest.
Definition: dbus-errors.c:279
dbus_bool_t dbus_error_has_name(const DBusError *error, const char *name)
Checks whether the error is set and has the given name.
Definition: dbus-errors.c:302
void dbus_set_error(DBusError *error, const char *name, const char *format,...)
Assigns an error name and message to a DBusError.
Definition: dbus-errors.c:354
void dbus_error_free(DBusError *error)
Frees an error that's been set (or just initialized), then reinitializes the error as in dbus_error_i...
Definition: dbus-errors.c:211
int _dbus_hash_table_get_n_entries(DBusHashTable *table)
Gets the number of hash entries in a hash table.
Definition: dbus-hash.c:1407
void * _dbus_hash_iter_get_value(DBusHashIter *iter)
Gets the value of the current entry.
Definition: dbus-hash.c:613
dbus_bool_t _dbus_hash_table_insert_int(DBusHashTable *table, int key, void *value)
Creates a hash entry with the given key and value.
Definition: dbus-hash.c:1258
dbus_bool_t _dbus_hash_table_insert_string(DBusHashTable *table, char *key, void *value)
Creates a hash entry with the given key and value.
Definition: dbus-hash.c:1224
void _dbus_hash_table_unref(DBusHashTable *table)
Decrements the reference count for a hash table, freeing the hash table if the count reaches zero.
Definition: dbus-hash.c:361
dbus_bool_t _dbus_hash_iter_next(DBusHashIter *iter)
Move the hash iterator forward one step, to the next hash entry.
Definition: dbus-hash.c:543
void _dbus_hash_iter_init(DBusHashTable *table, DBusHashIter *iter)
Initializes a hash table iterator.
Definition: dbus-hash.c:517
DBusHashTable * _dbus_hash_table_new(DBusHashType type, DBusFreeFunction key_free_function, DBusFreeFunction value_free_function)
Constructs a new hash table.
Definition: dbus-hash.c:285
dbus_bool_t _dbus_hash_table_remove_int(DBusHashTable *table, int key)
Removes the hash entry for the given key.
Definition: dbus-hash.c:1161
dbus_bool_t _dbus_hash_table_remove_string(DBusHashTable *table, const char *key)
Removes the hash entry for the given key.
Definition: dbus-hash.c:1133
void * _dbus_hash_table_lookup_string(DBusHashTable *table, const char *key)
Looks up the value for a given string in a hash table of type DBUS_HASH_STRING.
Definition: dbus-hash.c:1059
void _dbus_hash_iter_remove_entry(DBusHashIter *iter)
Removes the current entry from the hash table.
Definition: dbus-hash.c:592
void * _dbus_hash_table_lookup_int(DBusHashTable *table, int key)
Looks up the value for a given integer in a hash table of type DBUS_HASH_INT.
Definition: dbus-hash.c:1084
@ DBUS_HASH_INT
Hash keys are integers.
Definition: dbus-hash.h:70
@ DBUS_HASH_STRING
Hash keys are strings.
Definition: dbus-hash.h:69
#define _dbus_assert_not_reached(explanation)
Aborts with an error message if called.
#define _dbus_assert(condition)
Aborts with an error message if the condition is false.
#define _DBUS_UNLOCK(name)
Unlocks a global lock.
#define _DBUS_LOCK(name)
Locks a global lock, initializing it first if necessary.
void _dbus_warn_check_failed(const char *format,...)
Prints a "critical" warning to stderr when an assertion fails; differs from _dbus_warn primarily in t...
void(* DBusForeachFunction)(void *element, void *data)
Used to iterate over each item in a collection, such as a DBusList.
dbus_bool_t _dbus_get_local_machine_uuid_encoded(DBusString *uuid_str, DBusError *error)
Gets the hex-encoded UUID of the machine this function is executed on.
char * _dbus_strdup(const char *str)
Duplicates a string.
void _dbus_warn(const char *format,...)
Prints a warning message to stderr.
#define _DBUS_LOCK_NAME(name)
Expands to name of a global lock variable.
void * _dbus_list_get_last(DBusList **list)
Gets the last data in the list.
Definition: dbus-list.c:596
dbus_bool_t _dbus_list_copy(DBusList **list, DBusList **dest)
Copies a list.
Definition: dbus-list.c:697
DBusList * _dbus_list_get_first_link(DBusList **list)
Gets the first link in the list.
Definition: dbus-list.c:567
dbus_bool_t _dbus_list_remove(DBusList **list, void *data)
Removes a value from the list.
Definition: dbus-list.c:415
void _dbus_list_append_link(DBusList **list, DBusList *link)
Appends a link to the list.
Definition: dbus-list.c:315
void * _dbus_list_get_first(DBusList **list)
Gets the first data in the list.
Definition: dbus-list.c:612
void _dbus_list_remove_link(DBusList **list, DBusList *link)
Removes a link from the list.
Definition: dbus-list.c:527
DBusList * _dbus_list_get_last_link(DBusList **list)
Gets the last link in the list.
Definition: dbus-list.c:580
void _dbus_list_unlink(DBusList **list, DBusList *link)
Removes the given link from the list, but doesn't free it.
Definition: dbus-list.c:499
#define _dbus_list_get_prev_link(list, link)
Gets the previous link in the list, or NULL if there are no more links.
Definition: dbus-list.h:117
void _dbus_list_free_link(DBusList *link)
Frees a linked list node allocated with _dbus_list_alloc_link.
Definition: dbus-list.c:254
void _dbus_list_foreach(DBusList **list, DBusForeachFunction function, void *data)
Calls the given function for each element in the list.
Definition: dbus-list.c:759
void _dbus_list_clear(DBusList **list)
Frees all links in the list and sets the list head to NULL.
Definition: dbus-list.c:542
DBusList * _dbus_list_pop_first_link(DBusList **list)
Removes the first link in the list and returns it.
Definition: dbus-list.c:628
void _dbus_list_prepend_link(DBusList **list, DBusList *link)
Prepends a link to the list.
Definition: dbus-list.c:333
dbus_bool_t _dbus_list_prepend(DBusList **list, void *data)
Prepends a value to the list.
Definition: dbus-list.c:292
DBusList * _dbus_list_alloc_link(void *data)
Allocates a linked list node.
Definition: dbus-list.c:242
void * _dbus_list_pop_first(DBusList **list)
Removes the first value in the list and returns it.
Definition: dbus-list.c:649
dbus_bool_t _dbus_list_append(DBusList **list, void *data)
Appends a value to the list.
Definition: dbus-list.c:270
#define _dbus_list_get_next_link(list, link)
Gets the next link in the list, or NULL if there are no more links.
Definition: dbus-list.h:116
#define NULL
A null pointer, defined appropriately for C or C++.
#define TRUE
Expands to "1".
#define FALSE
Expands to "0".
int _dbus_current_generation
_dbus_current_generation is used to track each time that dbus_shutdown() is called,...
Definition: dbus-memory.c:782
DBUS_PRIVATE_EXPORT dbus_bool_t _dbus_register_shutdown_func(DBusShutdownFunction function, void *data)
Register a cleanup function to be called exactly once the next time dbus_shutdown() is called.
Definition: dbus-memory.c:811
void(* DBusFreeFunction)(void *memory)
The type of a function which frees a block of memory.
Definition: dbus-memory.h:63
void dbus_free(void *memory)
Frees a block of memory previously allocated by dbus_malloc() or dbus_malloc0().
Definition: dbus-memory.c:702
#define dbus_new(type, count)
Safe macro for using dbus_malloc().
Definition: dbus-memory.h:57
#define dbus_new0(type, count)
Safe macro for using dbus_malloc0().
Definition: dbus-memory.h:58
void dbus_free_string_array(char **str_array)
Frees a NULL-terminated array of strings.
Definition: dbus-memory.c:750
void dbus_message_set_serial(DBusMessage *message, dbus_uint32_t serial)
Sets the serial number of a message.
Definition: dbus-message.c:277
void dbus_message_lock(DBusMessage *message)
Locks a message.
Definition: dbus-message.c:407
const char * dbus_message_type_to_string(int type)
Utility function to convert a D-Bus message type into a machine-readable string (not translated).
void _dbus_message_remove_counter(DBusMessage *message, DBusCounter *counter)
Removes a counter tracking the size/unix fds of this message, and decrements the counter by the size/...
Definition: dbus-message.c:375
void _dbus_message_add_counter_link(DBusMessage *message, DBusList *link)
Adds a counter to be incremented immediately with the size/unix fds of this message,...
Definition: dbus-message.c:303
dbus_bool_t dbus_message_has_interface(DBusMessage *message, const char *iface)
Checks if the message has an interface.
void dbus_message_set_no_reply(DBusMessage *message, dbus_bool_t no_reply)
Sets a flag indicating that the message does not want a reply; if this flag is set,...
dbus_bool_t dbus_message_iter_append_basic(DBusMessageIter *iter, int type, const void *value)
Appends a basic-typed value to the message.
const char * dbus_message_get_path(DBusMessage *message)
Gets the object path this message is being sent to (for DBUS_MESSAGE_TYPE_METHOD_CALL) or being emitt...
const char * dbus_message_get_interface(DBusMessage *message)
Gets the interface this message is being sent to (for DBUS_MESSAGE_TYPE_METHOD_CALL) or being emitted...
DBusMessage * dbus_message_new_error(DBusMessage *reply_to, const char *error_name, const char *error_message)
Creates a new message that is an error reply to another message.
dbus_uint32_t dbus_message_get_serial(DBusMessage *message)
Returns the serial of a message or 0 if none has been specified.
int dbus_message_get_type(DBusMessage *message)
Gets the type of a message.
dbus_bool_t dbus_message_append_args(DBusMessage *message, int first_arg_type,...)
Appends fields to a message given a variable argument list.
DBusMessage * dbus_message_new_signal(const char *path, const char *iface, const char *name)
Constructs a new message representing a signal emission.
DBusMessage * dbus_message_ref(DBusMessage *message)
Increments the reference count of a DBusMessage.
dbus_bool_t dbus_message_set_error_name(DBusMessage *message, const char *error_name)
Sets the name of the error (DBUS_MESSAGE_TYPE_ERROR).
dbus_uint32_t dbus_message_get_reply_serial(DBusMessage *message)
Returns the serial that the message is a reply to or 0 if none.
DBusMessage * dbus_message_new_method_return(DBusMessage *method_call)
Constructs a message that is a reply to a method call.
const char * dbus_message_get_destination(DBusMessage *message)
Gets the destination of a message or NULL if there is none set.
void dbus_message_unref(DBusMessage *message)
Decrements the reference count of a DBusMessage, freeing the message if the count reaches 0.
DBusMessage * dbus_message_new(int message_type)
Constructs a new message of the given message type.
dbus_bool_t dbus_set_error_from_message(DBusError *error, DBusMessage *message)
Sets a DBusError based on the contents of the given message.
dbus_bool_t dbus_message_is_method_call(DBusMessage *message, const char *iface, const char *method)
Checks whether the message is a method call with the given interface and member fields.
dbus_bool_t dbus_message_set_reply_serial(DBusMessage *message, dbus_uint32_t reply_serial)
Sets the reply serial of a message (the serial of the message this is a reply to).
dbus_bool_t dbus_message_is_signal(DBusMessage *message, const char *iface, const char *signal_name)
Checks whether the message is a signal with the given interface and member fields.
const char * dbus_message_get_signature(DBusMessage *message)
Gets the type signature of the message, i.e.
const char * dbus_message_get_member(DBusMessage *message)
Gets the interface member being invoked (DBUS_MESSAGE_TYPE_METHOD_CALL) or emitted (DBUS_MESSAGE_TYPE...
void dbus_message_iter_init_append(DBusMessage *message, DBusMessageIter *iter)
Initializes a DBusMessageIter for appending arguments to the end of a message.
void _dbus_object_tree_free_all_unlocked(DBusObjectTree *tree)
Free all the handlers in the tree.
void _dbus_object_tree_unregister_and_unlock(DBusObjectTree *tree, const char **path)
Unregisters an object subtree that was registered with the same path.
void * _dbus_object_tree_get_user_data_unlocked(DBusObjectTree *tree, const char **path)
Looks up the data passed to _dbus_object_tree_register() for a handler at the given path.
DBusObjectTree * _dbus_object_tree_new(DBusConnection *connection)
Creates a new object tree, representing a mapping from paths to handler vtables.
void _dbus_object_tree_unref(DBusObjectTree *tree)
Decrement the reference count.
dbus_bool_t _dbus_object_tree_list_registered_and_unlock(DBusObjectTree *tree, const char **parent_path, char ***child_entries)
Lists the registered fallback handlers and object path handlers at the given parent_path.
dbus_bool_t _dbus_decompose_path(const char *data, int len, char ***path, int *path_len)
Decompose an object path.
dbus_bool_t _dbus_object_tree_register(DBusObjectTree *tree, dbus_bool_t fallback, const char **path, const DBusObjectPathVTable *vtable, void *user_data, DBusError *error)
Registers a new subtree in the global object tree.
DBusHandlerResult _dbus_object_tree_dispatch_and_unlock(DBusObjectTree *tree, DBusMessage *message, dbus_bool_t *found_object)
Tries to dispatch a message by directing it to handler for the object path listed in the message head...
void _dbus_pending_call_finish_completion(DBusPendingCall *pending)
Call the notifier function for the pending call.
void _dbus_pending_call_queue_timeout_error_unlocked(DBusPendingCall *pending, DBusConnection *connection)
If the pending call hasn't been timed out, add its timeout error reply to the connection's incoming m...
DBUS_PRIVATE_EXPORT void _dbus_pending_call_unref_and_unlock(DBusPendingCall *pending)
Decrements the reference count on a pending call, freeing it if the count reaches 0.
dbus_bool_t _dbus_pending_call_get_completed_unlocked(DBusPendingCall *pending)
Checks whether the pending call has received a reply yet, or not.
DBUS_PRIVATE_EXPORT DBusPendingCall * _dbus_pending_call_new_unlocked(DBusConnection *connection, int timeout_milliseconds, DBusTimeoutHandler timeout_handler)
Creates a new pending reply object.
void _dbus_pending_call_set_reply_unlocked(DBusPendingCall *pending, DBusMessage *message)
Sets the reply of a pending call with the given message, or if the message is NULL,...
DBusConnection * _dbus_pending_call_get_connection_and_lock(DBusPendingCall *pending)
Gets the connection associated with this pending call.
dbus_bool_t _dbus_pending_call_set_timeout_error_unlocked(DBusPendingCall *pending, DBusMessage *message, dbus_uint32_t serial)
Sets the reply message associated with the pending call to a timeout error.
#define CONNECTION_LOCK(connection)
Internals of DBusPendingCall.
DBUS_PRIVATE_EXPORT DBusPendingCall * _dbus_pending_call_ref_unlocked(DBusPendingCall *pending)
Increments the reference count on a pending call, while the lock on its connection is already held.
DBusTimeout * _dbus_pending_call_get_timeout_unlocked(DBusPendingCall *pending)
Retrives the timeout.
#define CONNECTION_UNLOCK(connection)
shorter and more visible way to write _dbus_connection_unlock()
void _dbus_pending_call_start_completion_unlocked(DBusPendingCall *pending)
Sets the pending call to completed.
DBusConnection * _dbus_pending_call_get_connection_unlocked(DBusPendingCall *pending)
Gets the connection associated with this pending call.
dbus_bool_t _dbus_pending_call_is_timeout_added_unlocked(DBusPendingCall *pending)
Checks to see if a timeout has been added.
dbus_uint32_t _dbus_pending_call_get_reply_serial_unlocked(DBusPendingCall *pending)
Gets the reply's serial number.
void _dbus_pending_call_set_timeout_added_unlocked(DBusPendingCall *pending, dbus_bool_t is_added)
Sets wether the timeout has been added.
DBusPendingCall * dbus_pending_call_ref(DBusPendingCall *pending)
Increments the reference count on a pending call.
DBusMessage * dbus_pending_call_steal_reply(DBusPendingCall *pending)
Gets the reply, or returns NULL if none has been received yet.
void dbus_pending_call_block(DBusPendingCall *pending)
Block until the pending call is completed.
dbus_bool_t dbus_pending_call_get_completed(DBusPendingCall *pending)
Checks whether the pending call has received a reply yet, or not.
void dbus_pending_call_unref(DBusPendingCall *pending)
Decrements the reference count on a pending call, freeing it if the count reaches 0.
#define DBUS_MESSAGE_TYPE_METHOD_CALL
Message type of a method call message, see dbus_message_get_type()
#define DBUS_MESSAGE_TYPE_ERROR
Message type of an error reply message, see dbus_message_get_type()
#define DBUS_ERROR_UNKNOWN_METHOD
Method name you invoked isn't known by the object you invoked it on.
#define DBUS_TYPE_UNIX_FD
Type code marking a unix file descriptor.
#define DBUS_ERROR_OBJECT_PATH_IN_USE
There's already an object with the requested object path.
#define DBUS_MESSAGE_TYPE_SIGNAL
Message type of a signal message, see dbus_message_get_type()
#define DBUS_TYPE_STRING
Type code marking a UTF-8 encoded, nul-terminated Unicode string.
#define DBUS_ERROR_UNKNOWN_OBJECT
Object you invoked a method on isn't known.
#define DBUS_TYPE_INVALID
Type code that is never equal to a legitimate type code.
Definition: dbus-protocol.h:60
#define DBUS_ERROR_FAILED
A generic error; "something went wrong" - see the error message for more.
#define DBUS_ERROR_NO_MEMORY
There was not enough memory to complete an operation.
#define DBUS_ERROR_DISCONNECTED
The connection is disconnected and you're trying to use it.
long _dbus_counter_get_unix_fd_value(DBusCounter *counter)
Gets the current value of the unix fd counter.
void _dbus_counter_unref(DBusCounter *counter)
Decrements refcount of the counter and possibly finalizes the counter.
long _dbus_counter_get_size_value(DBusCounter *counter)
Gets the current value of the size counter.
DBusCounter * _dbus_counter_new(void)
Creates a new DBusCounter.
DBusCounter * _dbus_counter_ref(DBusCounter *counter)
Increments refcount of the counter.
DBusHandlerResult
Results that a message handler can return.
Definition: dbus-shared.h:67
#define DBUS_PATH_LOCAL
The object path used in local/in-process-generated messages.
Definition: dbus-shared.h:82
#define DBUS_INTERFACE_LOCAL
This is a special interface whose methods can only be invoked by the local implementation (messages f...
Definition: dbus-shared.h:105
#define DBUS_INTERFACE_PEER
The interface supported by most dbus peers.
Definition: dbus-shared.h:99
@ DBUS_HANDLER_RESULT_NEED_MEMORY
Need more memory in order to return DBUS_HANDLER_RESULT_HANDLED or DBUS_HANDLER_RESULT_NOT_YET_HANDLE...
Definition: dbus-shared.h:70
@ DBUS_HANDLER_RESULT_HANDLED
Message has had its effect - no need to run more handlers.
Definition: dbus-shared.h:68
@ DBUS_HANDLER_RESULT_NOT_YET_HANDLED
Message has not had any effect - see if other handlers want it.
Definition: dbus-shared.h:69
dbus_bool_t dbus_type_is_valid(int typecode)
Return TRUE if the argument is a valid typecode.
dbus_bool_t _dbus_string_init(DBusString *str)
Initializes a string.
Definition: dbus-string.c:175
void _dbus_string_free(DBusString *str)
Frees a string created by _dbus_string_init().
Definition: dbus-string.c:259
dbus_bool_t _dbus_string_append_printf(DBusString *str, const char *format,...)
Appends a printf-style formatted string to the DBusString.
Definition: dbus-string.c:1114
void _dbus_exit(int code)
Exit the process, returning the given value.
dbus_int32_t _dbus_atomic_dec(DBusAtomic *atomic)
Atomically decrement an integer.
dbus_int32_t _dbus_atomic_get(DBusAtomic *atomic)
Atomically get the value of an integer.
void _dbus_disable_sigpipe(void)
signal (SIGPIPE, SIG_IGN);
void _dbus_sleep_milliseconds(int milliseconds)
Sleeps the given number of milliseconds.
dbus_int32_t _dbus_atomic_inc(DBusAtomic *atomic)
Atomically increments an integer.
void _dbus_get_monotonic_time(long *tv_sec, long *tv_usec)
Get current time, as in gettimeofday().
void _dbus_rmutex_new_at_location(DBusRMutex **location_p)
Creates a new mutex or creates a no-op mutex if threads are not initialized.
Definition: dbus-threads.c:53
void _dbus_cmutex_free_at_location(DBusCMutex **location_p)
Frees a DBusCMutex; does nothing if passed a NULL pointer.
Definition: dbus-threads.c:107
void _dbus_condvar_free_at_location(DBusCondVar **location_p)
Frees a condition variable; does nothing if passed a NULL pointer.
Definition: dbus-threads.c:224
DBUS_PRIVATE_EXPORT void _dbus_rmutex_unlock(DBusRMutex *mutex)
Unlocks a mutex.
Definition: dbus-threads.c:150
void _dbus_condvar_wait(DBusCondVar *cond, DBusCMutex *mutex)
Atomically unlocks the mutex and waits for the conditions variable to be signalled.
Definition: dbus-threads.c:240
void _dbus_condvar_new_at_location(DBusCondVar **location_p)
This does the same thing as _dbus_condvar_new.
Definition: dbus-threads.c:199
void _dbus_cmutex_new_at_location(DBusCMutex **location_p)
Creates a new mutex or creates a no-op mutex if threads are not initialized.
Definition: dbus-threads.c:77
void _dbus_condvar_wake_one(DBusCondVar *cond)
If there are threads waiting on the condition variable, wake up exactly one.
Definition: dbus-threads.c:278
dbus_bool_t _dbus_condvar_wait_timeout(DBusCondVar *cond, DBusCMutex *mutex, int timeout_milliseconds)
Atomically unlocks the mutex and waits for the conditions variable to be signalled,...
Definition: dbus-threads.c:261
void _dbus_cmutex_lock(DBusCMutex *mutex)
Locks a mutex.
Definition: dbus-threads.c:136
void _dbus_cmutex_unlock(DBusCMutex *mutex)
Unlocks a mutex.
Definition: dbus-threads.c:164
void _dbus_rmutex_free_at_location(DBusRMutex **location_p)
Frees a DBusRMutex; does nothing if passed a NULL pointer.
Definition: dbus-threads.c:94
struct DBusMutex DBusMutex
An opaque mutex type provided by the DBusThreadFunctions implementation installed by dbus_threads_ini...
Definition: dbus-threads.h:41
dbus_bool_t _dbus_timeout_list_add_timeout(DBusTimeoutList *timeout_list, DBusTimeout *timeout)
Adds a new timeout to the timeout list, invoking the application DBusAddTimeoutFunction if appropriat...
Definition: dbus-timeout.c:314
void _dbus_timeout_list_free(DBusTimeoutList *timeout_list)
Frees a DBusTimeoutList.
Definition: dbus-timeout.c:215
void _dbus_timeout_list_toggle_timeout(DBusTimeoutList *timeout_list, DBusTimeout *timeout, dbus_bool_t enabled)
Sets a timeout to the given enabled state, invoking the application's DBusTimeoutToggledFunction if a...
Definition: dbus-timeout.c:366
DBusTimeoutList * _dbus_timeout_list_new(void)
Creates a new timeout list.
Definition: dbus-timeout.c:198
dbus_bool_t _dbus_timeout_list_set_functions(DBusTimeoutList *timeout_list, DBusAddTimeoutFunction add_function, DBusRemoveTimeoutFunction remove_function, DBusTimeoutToggledFunction toggled_function, void *data, DBusFreeFunction free_data_function)
Sets the timeout functions.
Definition: dbus-timeout.c:243
void _dbus_timeout_list_remove_timeout(DBusTimeoutList *timeout_list, DBusTimeout *timeout)
Removes a timeout from the timeout list, invoking the application's DBusRemoveTimeoutFunction if appr...
Definition: dbus-timeout.c:344
DBUS_EXPORT int dbus_timeout_get_interval(DBusTimeout *timeout)
Gets the timeout interval.
Definition: dbus-timeout.c:444
void _dbus_transport_set_max_message_size(DBusTransport *transport, long size)
See dbus_connection_set_max_message_size().
DBusTransport * _dbus_transport_open(DBusAddressEntry *entry, DBusError *error)
Try to open a new transport for the given address entry.
void _dbus_transport_set_max_received_size(DBusTransport *transport, long size)
See dbus_connection_set_max_received_size().
DBusTransport * _dbus_transport_ref(DBusTransport *transport)
Increments the reference count for the transport.
DBusDispatchStatus _dbus_transport_get_dispatch_status(DBusTransport *transport)
Reports our current dispatch status (whether there's buffered data to be queued as messages,...
int _dbus_transport_get_pending_fds_count(DBusTransport *transport)
Return how many file descriptors are pending in the loader.
dbus_bool_t _dbus_transport_get_adt_audit_session_data(DBusTransport *transport, void **data, int *data_size)
See dbus_connection_get_adt_audit_session_data().
dbus_bool_t _dbus_transport_get_windows_user(DBusTransport *transport, char **windows_sid_p)
See dbus_connection_get_windows_user().
dbus_bool_t _dbus_transport_queue_messages(DBusTransport *transport)
Processes data we've read while handling a watch, potentially converting some of it to messages and q...
dbus_bool_t _dbus_transport_get_socket_fd(DBusTransport *transport, DBusSocket *fd_p)
Get the socket file descriptor, if any.
dbus_bool_t _dbus_transport_handle_watch(DBusTransport *transport, DBusWatch *watch, unsigned int condition)
Handles a watch by reading data, writing data, or disconnecting the transport, as appropriate for the...
dbus_bool_t _dbus_transport_peek_is_authenticated(DBusTransport *transport)
Returns TRUE if we have been authenticated.
void _dbus_transport_set_allow_anonymous(DBusTransport *transport, dbus_bool_t value)
See dbus_connection_set_allow_anonymous()
void _dbus_transport_disconnect(DBusTransport *transport)
Closes our end of the connection to a remote application.
long _dbus_transport_get_max_received_size(DBusTransport *transport)
See dbus_connection_get_max_received_size().
const char * _dbus_transport_get_server_id(DBusTransport *transport)
Gets the id of the server we are connected to (see dbus_server_get_id()).
dbus_bool_t _dbus_transport_set_connection(DBusTransport *transport, DBusConnection *connection)
Sets the connection using this transport.
void _dbus_transport_set_unix_user_function(DBusTransport *transport, DBusAllowUnixUserFunction function, void *data, DBusFreeFunction free_data_function, void **old_data, DBusFreeFunction *old_free_data_function)
See dbus_connection_set_unix_user_function().
long _dbus_transport_get_max_message_unix_fds(DBusTransport *transport)
See dbus_connection_get_max_message_unix_fds().
void _dbus_transport_set_max_received_unix_fds(DBusTransport *transport, long n)
See dbus_connection_set_max_received_unix_fds().
void _dbus_transport_unref(DBusTransport *transport)
Decrements the reference count for the transport.
dbus_bool_t _dbus_transport_can_pass_unix_fd(DBusTransport *transport)
Returns TRUE if the transport supports sending unix fds.
dbus_bool_t _dbus_transport_try_to_authenticate(DBusTransport *transport)
Returns TRUE if we have been authenticated.
void _dbus_transport_do_iteration(DBusTransport *transport, unsigned int flags, int timeout_milliseconds)
Performs a single poll()/select() on the transport's file descriptors and then reads/writes data as a...
const char * _dbus_transport_get_address(DBusTransport *transport)
Gets the address of a transport.
long _dbus_transport_get_max_received_unix_fds(DBusTransport *transport)
See dbus_connection_set_max_received_unix_fds().
dbus_bool_t _dbus_transport_get_is_connected(DBusTransport *transport)
Returns TRUE if the transport has not been disconnected.
void _dbus_transport_set_max_message_unix_fds(DBusTransport *transport, long n)
See dbus_connection_set_max_message_unix_fds().
void _dbus_transport_set_pending_fds_function(DBusTransport *transport, void(*callback)(void *), void *data)
Register a function to be called whenever the number of pending file descriptors in the loader change...
void _dbus_transport_set_windows_user_function(DBusTransport *transport, DBusAllowWindowsUserFunction function, void *data, DBusFreeFunction free_data_function, void **old_data, DBusFreeFunction *old_free_data_function)
See dbus_connection_set_windows_user_function().
long _dbus_transport_get_max_message_size(DBusTransport *transport)
See dbus_connection_get_max_message_size().
dbus_bool_t _dbus_transport_get_unix_process_id(DBusTransport *transport, unsigned long *pid)
See dbus_connection_get_unix_process_id().
dbus_bool_t _dbus_transport_get_is_anonymous(DBusTransport *transport)
See dbus_connection_get_is_anonymous().
dbus_bool_t _dbus_transport_get_unix_user(DBusTransport *transport, unsigned long *uid)
See dbus_connection_get_unix_user().
dbus_uint32_t dbus_bool_t
A boolean, valid values are TRUE and FALSE.
Definition: dbus-types.h:35
dbus_bool_t _dbus_watch_list_add_watch(DBusWatchList *watch_list, DBusWatch *watch)
Adds a new watch to the watch list, invoking the application DBusAddWatchFunction if appropriate.
Definition: dbus-watch.c:382
void _dbus_watch_list_toggle_watch(DBusWatchList *watch_list, DBusWatch *watch, dbus_bool_t enabled)
Sets a watch to the given enabled state, invoking the application's DBusWatchToggledFunction if appro...
Definition: dbus-watch.c:442
DBusWatchList * _dbus_watch_list_new(void)
Creates a new watch list.
Definition: dbus-watch.c:232
void _dbus_watch_list_free(DBusWatchList *watch_list)
Frees a DBusWatchList.
Definition: dbus-watch.c:249
dbus_bool_t _dbus_watch_list_set_functions(DBusWatchList *watch_list, DBusAddWatchFunction add_function, DBusRemoveWatchFunction remove_function, DBusWatchToggledFunction toggled_function, void *data, DBusFreeFunction free_data_function)
Sets the watch functions.
Definition: dbus-watch.c:296
void _dbus_watch_list_remove_watch(DBusWatchList *watch_list, DBusWatch *watch)
Removes a watch from the watch list, invoking the application's DBusRemoveWatchFunction if appropriat...
Definition: dbus-watch.c:415
Internals of DBusAddressEntry.
Definition: dbus-address.c:44
An atomic integer safe to increment or decrement from multiple threads.
Definition: dbus-sysdeps.h:307
Implementation details of DBusConnection.
void * dispatch_status_data
Application data for dispatch_status_function.
int n_outgoing
Length of outgoing queue.
DBusDataSlotList slot_list
Data stored by allocated integer ID.
dbus_bool_t dispatch_acquired
Someone has dispatch path (can drain incoming queue)
DBusCondVar * dispatch_cond
Notify when dispatch_acquired is available.
DBusWakeupMainFunction wakeup_main_function
Function to wake up the mainloop
unsigned int exit_on_disconnect
If TRUE, exit after handling disconnect signal.
DBusList * filter_list
List of filters.
unsigned int have_connection_lock
Used to check locking.
unsigned int disconnected_message_processed
We did our default handling of the disconnected message, such as closing the connection.
dbus_uint32_t client_serial
Client serial.
unsigned int disconnected_message_arrived
We popped or are dispatching the disconnected message.
DBusCounter * outgoing_counter
Counts size of outgoing messages.
DBusCondVar * io_path_cond
Notify when io_path_acquired is available.
DBusAtomic refcount
Reference count.
DBusList * outgoing_messages
Queue of messages we need to send, send the end of the list first.
DBusFreeFunction free_dispatch_status_data
free dispatch_status_data
DBusRMutex * slot_mutex
Lock on slot_list so overall connection lock need not be taken.
DBusFreeFunction free_wakeup_main_data
free wakeup_main_data
DBusTransport * transport
Object that sends/receives messages over network.
DBusRMutex * mutex
Lock on the entire DBusConnection.
int n_incoming
Length of incoming queue.
dbus_bool_t io_path_acquired
Someone has transport io path (can use the transport to read/write messages)
DBusList * disconnect_message_link
Preallocated list node for queueing the disconnection message.
DBusCMutex * io_path_mutex
Protects io_path_acquired.
DBusList * incoming_messages
Queue of messages we have received, end of the list received most recently.
unsigned int shareable
TRUE if libdbus owns a reference to the connection and can return it from dbus_connection_open() more...
unsigned int route_peer_messages
If TRUE, if org.freedesktop.DBus.Peer messages have a bus name, don't handle them automatically.
DBusWatchList * watches
Stores active watches.
void * wakeup_main_data
Application data for wakeup_main_function.
DBusObjectTree * objects
Object path handlers registered with this connection.
char * server_guid
GUID of server if we are in shared_connections, NULL if server GUID is unknown or connection is priva...
DBusHashTable * pending_replies
Hash of message serials to DBusPendingCall.
DBusCMutex * dispatch_mutex
Protects dispatch_acquired.
DBusMessage * message_borrowed
Filled in if the first incoming message has been borrowed; dispatch_acquired will be set by the borro...
DBusTimeoutList * timeouts
Stores active timeouts.
DBusDispatchStatus last_dispatch_status
The last dispatch status we reported to the application.
DBusDispatchStatusFunction dispatch_status_function
Function on dispatch status changes
DBusList * expired_messages
Messages that will be released when we next unlock.
Internals of DBusCounter.
An allocator that tracks a set of slot IDs.
Definition: dbus-dataslot.h:56
Data structure that stores the actual user data set at a given slot.
Definition: dbus-dataslot.h:70
Object representing an exception.
Definition: dbus-errors.h:49
const char * name
public error name field
Definition: dbus-errors.h:50
const char * message
public error message field
Definition: dbus-errors.h:51
Hash iterator object.
Definition: dbus-hash.h:50
Internals of DBusHashTable.
Definition: dbus-hash.c:168
A node in a linked list.
Definition: dbus-list.h:35
void * data
Data stored at this element.
Definition: dbus-list.h:38
Internal struct representing a message filter function.
DBusAtomic refcount
Reference count.
DBusHandleMessageFunction function
Function to call to filter.
void * user_data
User data for the function.
DBusFreeFunction free_user_data_function
Function to free the user data.
DBusMessageIter struct; contains no public fields.
Definition: dbus-message.h:62
Internals of DBusMessage.
Virtual table that must be implemented to handle a portion of the object path hierarchy.
Internals of DBusObjectTree.
Implementation details of DBusPendingCall - all fields are private.
Internals of DBusPreallocatedSend.
DBusConnection * connection
Connection we'd send the message to.
DBusList * counter_link
Preallocated link in the resource counter.
DBusList * queue_link
Preallocated link in the queue.
Socket interface.
Definition: dbus-sysdeps.h:175
DBusTimeoutList implementation details.
Definition: dbus-timeout.c:181
Internals of DBusTimeout.
Definition: dbus-timeout.c:41
Object representing a transport such as a socket.
DBusWatchList implementation details.
Definition: dbus-watch.c:215
Implementation of DBusWatch.
Definition: dbus-watch.c:41