1 /* GStreamer
2 *
3 * Copyright (C) 1999,2000 Erik Walthinsen <omega@cse.ogi.edu>
4 * 2004 Wim Taymans <wim.taymans@gmail.com>
5 *
6 * gstbin.c: GstBin container object and support code
7 *
8 * This library is free software; you can redistribute it and/or
9 * modify it under the terms of the GNU Library General Public
10 * License as published by the Free Software Foundation; either
11 * version 2 of the License, or (at your option) any later version.
12 *
13 * This library 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 GNU
16 * Library General Public License for more details.
17 *
18 * You should have received a copy of the GNU Library General Public
19 * License along with this library; if not, write to the
20 * Free Software Foundation, Inc., 51 Franklin St, Fifth Floor,
21 * Boston, MA 02110-1301, USA.
22 */
23
24 /**
25 * SECTION:gstbin
26 * @title: GstBin
27 * @short_description: Base class and element that can contain other elements
28 *
29 * #GstBin is an element that can contain other #GstElement, allowing them to be
30 * managed as a group.
31 * Pads from the child elements can be ghosted to the bin, see #GstGhostPad.
32 * This makes the bin look like any other elements and enables creation of
33 * higher-level abstraction elements.
34 *
35 * A new #GstBin is created with gst_bin_new(). Use a #GstPipeline instead if you
36 * want to create a toplevel bin because a normal bin doesn't have a bus or
37 * handle clock distribution of its own.
38 *
39 * After the bin has been created you will typically add elements to it with
40 * gst_bin_add(). You can remove elements with gst_bin_remove().
41 *
42 * An element can be retrieved from a bin with gst_bin_get_by_name(), using the
43 * elements name. gst_bin_get_by_name_recurse_up() is mainly used for internal
44 * purposes and will query the parent bins when the element is not found in the
45 * current bin.
46 *
47 * An iterator of elements in a bin can be retrieved with
48 * gst_bin_iterate_elements(). Various other iterators exist to retrieve the
49 * elements in a bin.
50 *
51 * gst_object_unref() is used to drop your reference to the bin.
52 *
53 * The #GstBin::element-added signal is fired whenever a new element is added to
54 * the bin. Likewise the #GstBin::element-removed signal is fired whenever an
55 * element is removed from the bin.
56 *
57 * A #GstBin internally intercepts every #GstMessage posted by its children and
58 * implements the following default behaviour for each of them:
59 *
60 * * %GST_MESSAGE_EOS: This message is only posted by sinks in the PLAYING
61 * state. If all sinks posted the EOS message, this bin will post and EOS
62 * message upwards.
63 *
64 * * %GST_MESSAGE_SEGMENT_START: Just collected and never forwarded upwards.
65 * The messages are used to decide when all elements have completed playback
66 * of their segment.
67 *
68 * * %GST_MESSAGE_SEGMENT_DONE: Is posted by #GstBin when all elements that posted
69 * a SEGMENT_START have posted a SEGMENT_DONE.
70 *
71 * * %GST_MESSAGE_DURATION_CHANGED: Is posted by an element that detected a change
72 * in the stream duration. The duration change is posted to the
73 * application so that it can refetch the new duration with a duration
74 * query.
75 *
76 * Note that these messages can be posted before the bin is prerolled, in which
77 * case the duration query might fail.
78 *
79 * Note also that there might be a discrepancy (due to internal buffering/queueing)
80 * between the stream being currently displayed and the returned duration query.
81 *
82 * Applications might want to also query for duration (and changes) by
83 * listening to the %GST_MESSAGE_STREAM_START message, signaling the active start
84 * of a (new) stream.
85 *
86 * * %GST_MESSAGE_CLOCK_LOST: This message is posted by an element when it
87 * can no longer provide a clock.
88 *
89 * The default bin behaviour is to check if the lost clock was the one provided
90 * by the bin. If so and the bin is currently in the PLAYING state, the message
91 * is forwarded to the bin parent.
92 *
93 * This message is also generated when a clock provider is removed from
94 * the bin. If this message is received by the application, it should
95 * PAUSE the pipeline and set it back to PLAYING to force a new clock
96 * distribution.
97 *
98 * * %GST_MESSAGE_CLOCK_PROVIDE: This message is generated when an element
99 * can provide a clock. This mostly happens when a new clock
100 * provider is added to the bin.
101 *
102 * The default behaviour of the bin is to mark the currently selected clock as
103 * dirty, which will perform a clock recalculation the next time the bin is
104 * asked to provide a clock.
105 *
106 * This message is never sent to the application but is forwarded to
107 * the parent of the bin.
108 *
109 * * OTHERS: posted upwards.
110 *
111 * A #GstBin implements the following default behaviour for answering to a
112 * #GstQuery:
113 *
114 * * %GST_QUERY_DURATION: The bin will forward the query to all sink
115 * elements contained within and will return the maximum value.
116 * If no sinks are available in the bin, the query fails.
117 *
118 * * %GST_QUERY_POSITION: The query is sent to all sink elements in the bin and the
119 * MAXIMUM of all values is returned. If no sinks are available in the bin,
120 * the query fails.
121 *
122 * * OTHERS: the query is forwarded to all sink elements, the result
123 * of the first sink that answers the query successfully is returned. If no
124 * sink is in the bin, the query fails.
125 *
126 * A #GstBin will by default forward any event sent to it to all sink
127 * ( %GST_EVENT_TYPE_DOWNSTREAM ) or source ( %GST_EVENT_TYPE_UPSTREAM ) elements
128 * depending on the event type.
129 *
130 * If all the elements return %TRUE, the bin will also return %TRUE, else %FALSE
131 * is returned. If no elements of the required type are in the bin, the event
132 * handler will return %TRUE.
133 */
134
135 #include "gst_private.h"
136
137 #include "gstevent.h"
138 #include "gstbin.h"
139 #include "gstinfo.h"
140 #include "gsterror.h"
141
142 #include "gstutils.h"
143 #include "gstchildproxy.h"
144
145 GST_DEBUG_CATEGORY_STATIC (bin_debug);
146 #define GST_CAT_DEFAULT bin_debug
147
148 /* a bin is toplevel if it has no parent or when it is configured to behave like
149 * a toplevel bin */
150 #define BIN_IS_TOPLEVEL(bin) ((GST_OBJECT_PARENT (bin) == NULL) || bin->priv->asynchandling)
151
152 struct _GstBinPrivate
153 {
154 gboolean asynchandling;
155 /* if we get an ASYNC_DONE message from ourselves, this means that the
156 * subclass will simulate ASYNC behaviour without having ASYNC children. When
157 * such an ASYNC_DONE message is posted while we are doing a state change, we
158 * have to process the message after finishing the state change even when no
159 * child returned GST_STATE_CHANGE_ASYNC. */
160 gboolean pending_async_done;
161
162 guint32 structure_cookie;
163
164 #if 0
165 /* cached index */
166 GstIndex *index;
167 #endif
168
169 /* forward messages from our children */
170 gboolean message_forward;
171
172 gboolean posted_eos;
173 gboolean posted_playing;
174 GstElementFlags suppressed_flags;
175 };
176
177 typedef struct
178 {
179 guint32 cookie;
180 GstState pending;
181 } BinContinueData;
182
183 static void gst_bin_dispose (GObject * object);
184
185 static void gst_bin_set_property (GObject * object, guint prop_id,
186 const GValue * value, GParamSpec * pspec);
187 static void gst_bin_get_property (GObject * object, guint prop_id,
188 GValue * value, GParamSpec * pspec);
189
190 static GstStateChangeReturn gst_bin_change_state_func (GstElement * element,
191 GstStateChange transition);
192 static gboolean gst_bin_post_message (GstElement * element, GstMessage * msg);
193 static GstStateChangeReturn gst_bin_get_state_func (GstElement * element,
194 GstState * state, GstState * pending, GstClockTime timeout);
195 static void bin_handle_async_done (GstBin * bin, GstStateChangeReturn ret,
196 gboolean flag_pending, GstClockTime running_time);
197 static void bin_handle_async_start (GstBin * bin);
198 static void bin_push_state_continue (GstBin * bin, BinContinueData * data);
199 static void bin_do_eos (GstBin * bin);
200
201 static gboolean gst_bin_add_func (GstBin * bin, GstElement * element);
202 static gboolean gst_bin_remove_func (GstBin * bin, GstElement * element);
203 static void gst_bin_deep_element_added_func (GstBin * bin, GstBin * sub_bin,
204 GstElement * element);
205 static void gst_bin_deep_element_removed_func (GstBin * bin, GstBin * sub_bin,
206 GstElement * element);
207 static void gst_bin_update_context (GstBin * bin, GstContext * context);
208 static void gst_bin_update_context_unlocked (GstBin * bin,
209 GstContext * context);
210
211 #if 0
212 static void gst_bin_set_index_func (GstElement * element, GstIndex * index);
213 static GstIndex *gst_bin_get_index_func (GstElement * element);
214 #endif
215
216 static GstClock *gst_bin_provide_clock_func (GstElement * element);
217 static gboolean gst_bin_set_clock_func (GstElement * element, GstClock * clock);
218
219 static void gst_bin_handle_message_func (GstBin * bin, GstMessage * message);
220 static gboolean gst_bin_send_event (GstElement * element, GstEvent * event);
221 static GstBusSyncReply bin_bus_handler (GstBus * bus,
222 GstMessage * message, GstBin * bin);
223 static gboolean gst_bin_query (GstElement * element, GstQuery * query);
224 static void gst_bin_set_context (GstElement * element, GstContext * context);
225
226 static gboolean gst_bin_do_latency_func (GstBin * bin);
227
228 static void bin_remove_messages (GstBin * bin, GstObject * src,
229 GstMessageType types);
230 static void gst_bin_continue_func (GstBin * bin, BinContinueData * data);
231 static gint bin_element_is_sink (GstElement * child, GstBin * bin);
232 static gint bin_element_is_src (GstElement * child, GstBin * bin);
233
234 static GstIterator *gst_bin_sort_iterator_new (GstBin * bin);
235
236 /* Bin signals and properties */
237 enum
238 {
239 ELEMENT_ADDED,
240 ELEMENT_REMOVED,
241 DO_LATENCY,
242 DEEP_ELEMENT_ADDED,
243 DEEP_ELEMENT_REMOVED,
244 LAST_SIGNAL
245 };
246
247 #define DEFAULT_ASYNC_HANDLING FALSE
248 #define DEFAULT_MESSAGE_FORWARD FALSE
249
250 enum
251 {
252 PROP_0,
253 PROP_ASYNC_HANDLING,
254 PROP_MESSAGE_FORWARD,
255 PROP_LAST
256 };
257
258 static void gst_bin_child_proxy_init (gpointer g_iface, gpointer iface_data);
259
260 static guint gst_bin_signals[LAST_SIGNAL] = { 0 };
261
262 #define _do_init \
263 { \
264 static const GInterfaceInfo iface_info = { \
265 gst_bin_child_proxy_init, \
266 NULL, \
267 NULL}; \
268 \
269 g_type_add_interface_static (g_define_type_id, GST_TYPE_CHILD_PROXY, &iface_info); \
270 \
271 GST_DEBUG_CATEGORY_INIT (bin_debug, "bin", GST_DEBUG_BOLD, \
272 "debugging info for the 'bin' container element"); \
273 \
274 }
275
276 #define gst_bin_parent_class parent_class
277 G_DEFINE_TYPE_WITH_CODE (GstBin, gst_bin, GST_TYPE_ELEMENT,
278 G_ADD_PRIVATE (GstBin)
279 _do_init);
280
281 static GObject *
gst_bin_child_proxy_get_child_by_index(GstChildProxy * child_proxy,guint index)282 gst_bin_child_proxy_get_child_by_index (GstChildProxy * child_proxy,
283 guint index)
284 {
285 GstObject *res;
286 GstBin *bin;
287
288 bin = GST_BIN_CAST (child_proxy);
289
290 GST_OBJECT_LOCK (bin);
291 if ((res = g_list_nth_data (bin->children, index)))
292 gst_object_ref (res);
293 GST_OBJECT_UNLOCK (bin);
294
295 return (GObject *) res;
296 }
297
298 static guint
gst_bin_child_proxy_get_children_count(GstChildProxy * child_proxy)299 gst_bin_child_proxy_get_children_count (GstChildProxy * child_proxy)
300 {
301 guint num;
302 GstBin *bin;
303
304 bin = GST_BIN_CAST (child_proxy);
305
306 GST_OBJECT_LOCK (bin);
307 num = bin->numchildren;
308 GST_OBJECT_UNLOCK (bin);
309
310 return num;
311 }
312
313 static void
gst_bin_child_proxy_init(gpointer g_iface,gpointer iface_data)314 gst_bin_child_proxy_init (gpointer g_iface, gpointer iface_data)
315 {
316 GstChildProxyInterface *iface = g_iface;
317
318 iface->get_children_count = gst_bin_child_proxy_get_children_count;
319 iface->get_child_by_index = gst_bin_child_proxy_get_child_by_index;
320 }
321
322 static gboolean
_gst_boolean_accumulator(GSignalInvocationHint * ihint,GValue * return_accu,const GValue * handler_return,gpointer dummy)323 _gst_boolean_accumulator (GSignalInvocationHint * ihint,
324 GValue * return_accu, const GValue * handler_return, gpointer dummy)
325 {
326 gboolean myboolean;
327
328 myboolean = g_value_get_boolean (handler_return);
329 g_value_set_boolean (return_accu, myboolean);
330
331 GST_DEBUG ("invocation %d, %d", ihint->run_type, myboolean);
332
333 /* stop emission */
334 return FALSE;
335 }
336
337 static void
gst_bin_class_init(GstBinClass * klass)338 gst_bin_class_init (GstBinClass * klass)
339 {
340 GObjectClass *gobject_class;
341 GstElementClass *gstelement_class;
342
343 gobject_class = (GObjectClass *) klass;
344 gstelement_class = (GstElementClass *) klass;
345
346 gobject_class->set_property = gst_bin_set_property;
347 gobject_class->get_property = gst_bin_get_property;
348
349 /**
350 * GstBin:async-handling:
351 *
352 * If set to %TRUE, the bin will handle asynchronous state changes.
353 * This should be used only if the bin subclass is modifying the state
354 * of its children on its own.
355 */
356 g_object_class_install_property (gobject_class, PROP_ASYNC_HANDLING,
357 g_param_spec_boolean ("async-handling", "Async Handling",
358 "The bin will handle Asynchronous state changes",
359 DEFAULT_ASYNC_HANDLING, G_PARAM_READWRITE | G_PARAM_STATIC_STRINGS));
360
361 /**
362 * GstBin::element-added:
363 * @self: the #GstBin
364 * @element: the #GstElement that was added to the bin
365 *
366 * Will be emitted after the element was added to the bin.
367 */
368 gst_bin_signals[ELEMENT_ADDED] =
369 g_signal_new ("element-added", G_TYPE_FROM_CLASS (klass),
370 G_SIGNAL_RUN_FIRST, G_STRUCT_OFFSET (GstBinClass, element_added), NULL,
371 NULL, NULL, G_TYPE_NONE, 1, GST_TYPE_ELEMENT);
372 /**
373 * GstBin::element-removed:
374 * @self: the #GstBin
375 * @element: the #GstElement that was removed from the bin
376 *
377 * Will be emitted after the element was removed from the bin.
378 */
379 gst_bin_signals[ELEMENT_REMOVED] =
380 g_signal_new ("element-removed", G_TYPE_FROM_CLASS (klass),
381 G_SIGNAL_RUN_FIRST, G_STRUCT_OFFSET (GstBinClass, element_removed), NULL,
382 NULL, NULL, G_TYPE_NONE, 1, GST_TYPE_ELEMENT);
383 /**
384 * GstBin::deep-element-added:
385 * @self: the #GstBin
386 * @sub_bin: the #GstBin the element was added to
387 * @element: the #GstElement that was added to @sub_bin
388 *
389 * Will be emitted after the element was added to @sub_bin.
390 *
391 * Since: 1.10
392 */
393 gst_bin_signals[DEEP_ELEMENT_ADDED] =
394 g_signal_new ("deep-element-added", G_TYPE_FROM_CLASS (klass),
395 G_SIGNAL_RUN_FIRST, G_STRUCT_OFFSET (GstBinClass, deep_element_added),
396 NULL, NULL, NULL, G_TYPE_NONE, 2, GST_TYPE_BIN, GST_TYPE_ELEMENT);
397 /**
398 * GstBin::deep-element-removed:
399 * @self: the #GstBin
400 * @sub_bin: the #GstBin the element was removed from
401 * @element: the #GstElement that was removed from @sub_bin
402 *
403 * Will be emitted after the element was removed from @sub_bin.
404 *
405 * Since: 1.10
406 */
407 gst_bin_signals[DEEP_ELEMENT_REMOVED] =
408 g_signal_new ("deep-element-removed", G_TYPE_FROM_CLASS (klass),
409 G_SIGNAL_RUN_FIRST, G_STRUCT_OFFSET (GstBinClass, deep_element_removed),
410 NULL, NULL, NULL, G_TYPE_NONE, 2, GST_TYPE_BIN, GST_TYPE_ELEMENT);
411 /**
412 * GstBin::do-latency:
413 * @self: the #GstBin
414 *
415 * Will be emitted when the bin needs to perform latency calculations. This
416 * signal is only emitted for toplevel bins or when #GstBin:async-handling is
417 * enabled.
418 *
419 * Only one signal handler is invoked. If no signals are connected, the
420 * default handler is invoked, which will query and distribute the lowest
421 * possible latency to all sinks.
422 *
423 * Connect to this signal if the default latency calculations are not
424 * sufficient, like when you need different latencies for different sinks in
425 * the same pipeline.
426 */
427 gst_bin_signals[DO_LATENCY] =
428 g_signal_new ("do-latency", G_TYPE_FROM_CLASS (klass),
429 G_SIGNAL_RUN_LAST, G_STRUCT_OFFSET (GstBinClass, do_latency),
430 _gst_boolean_accumulator, NULL, NULL, G_TYPE_BOOLEAN, 0, G_TYPE_NONE);
431
432 /**
433 * GstBin:message-forward:
434 *
435 * Forward all children messages, even those that would normally be filtered by
436 * the bin. This can be interesting when one wants to be notified of the EOS
437 * state of individual elements, for example.
438 *
439 * The messages are converted to an ELEMENT message with the bin as the
440 * source. The structure of the message is named `GstBinForwarded` and contains
441 * a field named `message` that contains the original forwarded #GstMessage.
442 */
443 g_object_class_install_property (gobject_class, PROP_MESSAGE_FORWARD,
444 g_param_spec_boolean ("message-forward", "Message Forward",
445 "Forwards all children messages",
446 DEFAULT_MESSAGE_FORWARD, G_PARAM_READWRITE | G_PARAM_STATIC_STRINGS));
447
448 gobject_class->dispose = gst_bin_dispose;
449
450 gst_element_class_set_static_metadata (gstelement_class, "Generic bin",
451 "Generic/Bin",
452 "Simple container object",
453 "Erik Walthinsen <omega@cse.ogi.edu>,"
454 "Wim Taymans <wim.taymans@gmail.com>");
455
456 gstelement_class->change_state =
457 GST_DEBUG_FUNCPTR (gst_bin_change_state_func);
458 gstelement_class->post_message = GST_DEBUG_FUNCPTR (gst_bin_post_message);
459 gstelement_class->get_state = GST_DEBUG_FUNCPTR (gst_bin_get_state_func);
460 #if 0
461 gstelement_class->get_index = GST_DEBUG_FUNCPTR (gst_bin_get_index_func);
462 gstelement_class->set_index = GST_DEBUG_FUNCPTR (gst_bin_set_index_func);
463 #endif
464 gstelement_class->provide_clock =
465 GST_DEBUG_FUNCPTR (gst_bin_provide_clock_func);
466 gstelement_class->set_clock = GST_DEBUG_FUNCPTR (gst_bin_set_clock_func);
467
468 gstelement_class->send_event = GST_DEBUG_FUNCPTR (gst_bin_send_event);
469 gstelement_class->query = GST_DEBUG_FUNCPTR (gst_bin_query);
470 gstelement_class->set_context = GST_DEBUG_FUNCPTR (gst_bin_set_context);
471
472 klass->add_element = GST_DEBUG_FUNCPTR (gst_bin_add_func);
473 klass->remove_element = GST_DEBUG_FUNCPTR (gst_bin_remove_func);
474 klass->handle_message = GST_DEBUG_FUNCPTR (gst_bin_handle_message_func);
475
476 klass->deep_element_added = gst_bin_deep_element_added_func;
477 klass->deep_element_removed = gst_bin_deep_element_removed_func;
478
479 klass->do_latency = GST_DEBUG_FUNCPTR (gst_bin_do_latency_func);
480 }
481
482 static void
gst_bin_init(GstBin * bin)483 gst_bin_init (GstBin * bin)
484 {
485 GstBus *bus;
486
487 bin->numchildren = 0;
488 bin->children = NULL;
489 bin->children_cookie = 0;
490 bin->messages = NULL;
491 bin->provided_clock = NULL;
492 bin->clock_dirty = FALSE;
493
494 /* Set up a bus for listening to child elements */
495 bus = g_object_new (GST_TYPE_BUS, "enable-async", FALSE, NULL);
496 gst_object_ref_sink (bus);
497 bin->child_bus = bus;
498 GST_DEBUG_OBJECT (bin, "using bus %" GST_PTR_FORMAT " to listen to children",
499 bus);
500 gst_bus_set_sync_handler (bus, (GstBusSyncHandler) bin_bus_handler, bin,
501 NULL);
502
503 bin->priv = gst_bin_get_instance_private (bin);
504 bin->priv->asynchandling = DEFAULT_ASYNC_HANDLING;
505 bin->priv->structure_cookie = 0;
506 bin->priv->message_forward = DEFAULT_MESSAGE_FORWARD;
507 }
508
509 static void
gst_bin_dispose(GObject * object)510 gst_bin_dispose (GObject * object)
511 {
512 GstBin *bin = GST_BIN_CAST (object);
513 GstBus **child_bus_p = &bin->child_bus;
514 GstClock **provided_clock_p = &bin->provided_clock;
515 GstElement **clock_provider_p = &bin->clock_provider;
516
517 GST_CAT_DEBUG_OBJECT (GST_CAT_REFCOUNTING, object, "%p dispose", object);
518
519 GST_OBJECT_LOCK (object);
520 gst_object_replace ((GstObject **) child_bus_p, NULL);
521 gst_object_replace ((GstObject **) provided_clock_p, NULL);
522 gst_object_replace ((GstObject **) clock_provider_p, NULL);
523 bin_remove_messages (bin, NULL, GST_MESSAGE_ANY);
524 GST_OBJECT_UNLOCK (object);
525
526 while (bin->children) {
527 gst_bin_remove (bin, GST_ELEMENT_CAST (bin->children->data));
528 }
529 if (G_UNLIKELY (bin->children != NULL)) {
530 g_critical ("could not remove elements from bin '%s'",
531 GST_STR_NULL (GST_OBJECT_NAME (object)));
532 }
533
534 G_OBJECT_CLASS (parent_class)->dispose (object);
535 }
536
537 /**
538 * gst_bin_new:
539 * @name: (allow-none): the name of the new bin
540 *
541 * Creates a new bin with the given name.
542 *
543 * Returns: (transfer floating): a new #GstBin
544 */
545 GstElement *
gst_bin_new(const gchar * name)546 gst_bin_new (const gchar * name)
547 {
548 return gst_element_factory_make ("bin", name);
549 }
550
551 static void
gst_bin_set_property(GObject * object,guint prop_id,const GValue * value,GParamSpec * pspec)552 gst_bin_set_property (GObject * object, guint prop_id,
553 const GValue * value, GParamSpec * pspec)
554 {
555 GstBin *gstbin;
556
557 gstbin = GST_BIN_CAST (object);
558
559 switch (prop_id) {
560 case PROP_ASYNC_HANDLING:
561 GST_OBJECT_LOCK (gstbin);
562 gstbin->priv->asynchandling = g_value_get_boolean (value);
563 GST_OBJECT_UNLOCK (gstbin);
564 break;
565 case PROP_MESSAGE_FORWARD:
566 GST_OBJECT_LOCK (gstbin);
567 gstbin->priv->message_forward = g_value_get_boolean (value);
568 GST_OBJECT_UNLOCK (gstbin);
569 break;
570 default:
571 G_OBJECT_WARN_INVALID_PROPERTY_ID (object, prop_id, pspec);
572 break;
573 }
574 }
575
576 static void
gst_bin_get_property(GObject * object,guint prop_id,GValue * value,GParamSpec * pspec)577 gst_bin_get_property (GObject * object, guint prop_id,
578 GValue * value, GParamSpec * pspec)
579 {
580 GstBin *gstbin;
581
582 gstbin = GST_BIN_CAST (object);
583
584 switch (prop_id) {
585 case PROP_ASYNC_HANDLING:
586 GST_OBJECT_LOCK (gstbin);
587 g_value_set_boolean (value, gstbin->priv->asynchandling);
588 GST_OBJECT_UNLOCK (gstbin);
589 break;
590 case PROP_MESSAGE_FORWARD:
591 GST_OBJECT_LOCK (gstbin);
592 g_value_set_boolean (value, gstbin->priv->message_forward);
593 GST_OBJECT_UNLOCK (gstbin);
594 break;
595 default:
596 G_OBJECT_WARN_INVALID_PROPERTY_ID (object, prop_id, pspec);
597 break;
598 }
599 }
600
601 #if 0
602 /* return the cached index */
603 static GstIndex *
604 gst_bin_get_index_func (GstElement * element)
605 {
606 GstBin *bin;
607 GstIndex *result;
608
609 bin = GST_BIN_CAST (element);
610
611 GST_OBJECT_LOCK (bin);
612 if ((result = bin->priv->index))
613 gst_object_ref (result);
614 GST_OBJECT_UNLOCK (bin);
615
616 return result;
617 }
618
619 /* set the index on all elements in this bin
620 *
621 * MT safe
622 */
623 static void
624 gst_bin_set_index_func (GstElement * element, GstIndex * index)
625 {
626 GstBin *bin;
627 gboolean done;
628 GstIterator *it;
629 GstIndex *old;
630 GValue data = { 0, };
631
632 bin = GST_BIN_CAST (element);
633
634 GST_OBJECT_LOCK (bin);
635 old = bin->priv->index;
636 if (G_UNLIKELY (old == index))
637 goto was_set;
638 if (index)
639 gst_object_ref (index);
640 bin->priv->index = index;
641 GST_OBJECT_UNLOCK (bin);
642
643 if (old)
644 gst_object_unref (old);
645
646 it = gst_bin_iterate_elements (bin);
647
648 /* set the index on all elements in the bin */
649 done = FALSE;
650 while (!done) {
651 switch (gst_iterator_next (it, &data)) {
652 case GST_ITERATOR_OK:
653 {
654 GstElement *child = g_value_get_object (&data);
655
656 GST_DEBUG_OBJECT (bin, "setting index on '%s'",
657 GST_ELEMENT_NAME (child));
658 gst_element_set_index (child, index);
659
660 g_value_reset (&data);
661 break;
662 }
663 case GST_ITERATOR_RESYNC:
664 GST_DEBUG_OBJECT (bin, "iterator doing resync");
665 gst_iterator_resync (it);
666 break;
667 default:
668 case GST_ITERATOR_DONE:
669 GST_DEBUG_OBJECT (bin, "iterator done");
670 done = TRUE;
671 break;
672 }
673 }
674 g_value_unset (&data);
675 gst_iterator_free (it);
676 return;
677
678 was_set:
679 {
680 GST_DEBUG_OBJECT (bin, "index was already set");
681 GST_OBJECT_UNLOCK (bin);
682 return;
683 }
684 }
685 #endif
686
687 /* set the clock on all elements in this bin
688 *
689 * MT safe
690 */
691 static gboolean
gst_bin_set_clock_func(GstElement * element,GstClock * clock)692 gst_bin_set_clock_func (GstElement * element, GstClock * clock)
693 {
694 GstBin *bin;
695 gboolean done;
696 GstIterator *it;
697 gboolean res = TRUE;
698 GValue data = { 0, };
699
700 bin = GST_BIN_CAST (element);
701
702 it = gst_bin_iterate_elements (bin);
703
704 done = FALSE;
705 while (!done) {
706 switch (gst_iterator_next (it, &data)) {
707 case GST_ITERATOR_OK:
708 {
709 GstElement *child = g_value_get_object (&data);
710
711 res &= gst_element_set_clock (child, clock);
712
713 g_value_reset (&data);
714 break;
715 }
716 case GST_ITERATOR_RESYNC:
717 GST_DEBUG_OBJECT (bin, "iterator doing resync");
718 gst_iterator_resync (it);
719 res = TRUE;
720 break;
721 default:
722 case GST_ITERATOR_DONE:
723 GST_DEBUG_OBJECT (bin, "iterator done");
724 done = TRUE;
725 break;
726 }
727 }
728 g_value_unset (&data);
729 gst_iterator_free (it);
730
731 if (res)
732 res = GST_ELEMENT_CLASS (parent_class)->set_clock (element, clock);
733
734 return res;
735 }
736
737 /* get the clock for this bin by asking all of the children in this bin
738 *
739 * The ref of the returned clock in increased so unref after usage.
740 *
741 * We loop the elements in state order and pick the last clock we can
742 * get. This makes sure we get a clock from the source.
743 *
744 * MT safe
745 */
746 static GstClock *
gst_bin_provide_clock_func(GstElement * element)747 gst_bin_provide_clock_func (GstElement * element)
748 {
749 GstClock *result = NULL;
750 GstElement *provider = NULL;
751 GstBin *bin;
752 GstIterator *it;
753 gboolean done;
754 GValue val = { 0, };
755 GstClock **provided_clock_p;
756 GstElement **clock_provider_p;
757
758 bin = GST_BIN_CAST (element);
759
760 GST_OBJECT_LOCK (bin);
761 if (!bin->clock_dirty)
762 goto not_dirty;
763
764 GST_DEBUG_OBJECT (bin, "finding new clock");
765
766 it = gst_bin_sort_iterator_new (bin);
767 GST_OBJECT_UNLOCK (bin);
768
769 done = FALSE;
770 while (!done) {
771 switch (gst_iterator_next (it, &val)) {
772 case GST_ITERATOR_OK:
773 {
774 GstElement *child = g_value_get_object (&val);
775 GstClock *clock;
776
777 clock = gst_element_provide_clock (child);
778 if (clock) {
779 GST_DEBUG_OBJECT (bin, "found candidate clock %p by element %s",
780 clock, GST_ELEMENT_NAME (child));
781 if (result) {
782 gst_object_unref (result);
783 gst_object_unref (provider);
784 }
785 result = clock;
786 provider = gst_object_ref (child);
787 }
788
789 g_value_reset (&val);
790 break;
791 }
792 case GST_ITERATOR_RESYNC:
793 gst_iterator_resync (it);
794 break;
795 default:
796 case GST_ITERATOR_DONE:
797 done = TRUE;
798 break;
799 }
800 }
801 g_value_unset (&val);
802 gst_iterator_free (it);
803
804 GST_OBJECT_LOCK (bin);
805 if (!bin->clock_dirty) {
806 if (provider)
807 gst_object_unref (provider);
808 if (result)
809 gst_object_unref (result);
810 result = NULL;
811
812 goto not_dirty;
813 }
814
815 provided_clock_p = &bin->provided_clock;
816 clock_provider_p = &bin->clock_provider;
817 gst_object_replace ((GstObject **) provided_clock_p, (GstObject *) result);
818 gst_object_replace ((GstObject **) clock_provider_p, (GstObject *) provider);
819 bin->clock_dirty = FALSE;
820 GST_DEBUG_OBJECT (bin,
821 "provided new clock %" GST_PTR_FORMAT " by provider %" GST_PTR_FORMAT,
822 result, provider);
823 /* Provider is not being returned to caller, just the result */
824 if (provider)
825 gst_object_unref (provider);
826 GST_OBJECT_UNLOCK (bin);
827
828 return result;
829
830 not_dirty:
831 {
832 if ((result = bin->provided_clock))
833 gst_object_ref (result);
834 GST_DEBUG_OBJECT (bin, "returning old clock %p", result);
835 GST_OBJECT_UNLOCK (bin);
836
837 return result;
838 }
839 }
840
841 /*
842 * functions for manipulating cached messages
843 */
844 typedef struct
845 {
846 GstObject *src;
847 GstMessageType types;
848 } MessageFind;
849
850 /* check if a message is of given src and type */
851 static gint
message_check(GstMessage * message,MessageFind * target)852 message_check (GstMessage * message, MessageFind * target)
853 {
854 gboolean eq = TRUE;
855
856 if (target->src)
857 eq &= GST_MESSAGE_SRC (message) == target->src;
858 if (target->types)
859 eq &= (GST_MESSAGE_TYPE (message) & target->types) != 0;
860 GST_LOG ("looking at message %p: %d", message, eq);
861
862 return (eq ? 0 : 1);
863 }
864
865 static GList *
find_message(GstBin * bin,GstObject * src,GstMessageType types)866 find_message (GstBin * bin, GstObject * src, GstMessageType types)
867 {
868 GList *result;
869 MessageFind find;
870
871 find.src = src;
872 find.types = types;
873
874 result = g_list_find_custom (bin->messages, &find,
875 (GCompareFunc) message_check);
876
877 if (result) {
878 GST_DEBUG_OBJECT (bin, "we found a message %p from %s matching types %08x",
879 result->data, GST_OBJECT_NAME (GST_MESSAGE_CAST (result->data)->src),
880 types);
881 } else {
882 GST_DEBUG_OBJECT (bin, "no message found matching types %08x", types);
883 #ifndef GST_DISABLE_GST_DEBUG
884 {
885 guint i;
886
887 for (i = 0; i < 32; i++)
888 if (types & (1U << i))
889 GST_DEBUG_OBJECT (bin, " %s", gst_message_type_get_name (1U << i));
890 }
891 #endif
892 }
893
894 return result;
895 }
896
897 /* with LOCK, returns TRUE if message had a valid SRC, takes ownership of
898 * the message.
899 *
900 * A message that is cached and has the same SRC and type is replaced
901 * by the given message.
902 */
903 static gboolean
bin_replace_message(GstBin * bin,GstMessage * message,GstMessageType types)904 bin_replace_message (GstBin * bin, GstMessage * message, GstMessageType types)
905 {
906 GList *previous;
907 GstObject *src;
908 gboolean res = TRUE;
909
910 if ((src = GST_MESSAGE_SRC (message))) {
911 /* first find the previous message posted by this element */
912 if ((previous = find_message (bin, src, types))) {
913 GstMessage *previous_msg;
914
915 /* if we found a previous message, replace it */
916 previous_msg = previous->data;
917 previous->data = message;
918
919 GST_DEBUG_OBJECT (bin, "replace old message %s from %s with %s message",
920 GST_MESSAGE_TYPE_NAME (previous_msg), GST_ELEMENT_NAME (src),
921 GST_MESSAGE_TYPE_NAME (message));
922
923 gst_message_unref (previous_msg);
924 } else {
925 /* keep new message */
926 bin->messages = g_list_prepend (bin->messages, message);
927
928 GST_DEBUG_OBJECT (bin, "got new message %p, %s from %s",
929 message, GST_MESSAGE_TYPE_NAME (message), GST_ELEMENT_NAME (src));
930 }
931 } else {
932 GST_DEBUG_OBJECT (bin, "got message %s from (NULL), not processing",
933 GST_MESSAGE_TYPE_NAME (message));
934 res = FALSE;
935 gst_message_unref (message);
936 }
937 return res;
938 }
939
940 /* with LOCK. Remove all messages of given types */
941 static void
bin_remove_messages(GstBin * bin,GstObject * src,GstMessageType types)942 bin_remove_messages (GstBin * bin, GstObject * src, GstMessageType types)
943 {
944 MessageFind find;
945 GList *walk, *next;
946
947 find.src = src;
948 find.types = types;
949
950 for (walk = bin->messages; walk; walk = next) {
951 GstMessage *message = (GstMessage *) walk->data;
952
953 next = g_list_next (walk);
954
955 if (message_check (message, &find) == 0) {
956 GST_DEBUG_OBJECT (GST_MESSAGE_SRC (message),
957 "deleting message %p of type %s (types 0x%08x)", message,
958 GST_MESSAGE_TYPE_NAME (message), types);
959 bin->messages = g_list_delete_link (bin->messages, walk);
960 gst_message_unref (message);
961 } else {
962 GST_DEBUG_OBJECT (GST_MESSAGE_SRC (message),
963 "not deleting message %p of type 0x%08x", message,
964 GST_MESSAGE_TYPE (message));
965 }
966 }
967 }
968
969
970 /* Check if the bin is EOS. We do this by scanning all sinks and
971 * checking if they posted an EOS message.
972 *
973 * call with bin LOCK */
974 static gboolean
is_eos(GstBin * bin,guint32 * seqnum)975 is_eos (GstBin * bin, guint32 * seqnum)
976 {
977 gboolean result;
978 gint n_eos = 0;
979 GList *walk, *msgs;
980
981 result = TRUE;
982 for (walk = bin->children; walk; walk = g_list_next (walk)) {
983 GstElement *element;
984
985 element = GST_ELEMENT_CAST (walk->data);
986 if (bin_element_is_sink (element, bin) == 0) {
987 /* check if element posted EOS */
988 if ((msgs =
989 find_message (bin, GST_OBJECT_CAST (element), GST_MESSAGE_EOS))) {
990 GST_DEBUG ("sink '%s' posted EOS", GST_ELEMENT_NAME (element));
991 *seqnum = gst_message_get_seqnum (GST_MESSAGE_CAST (msgs->data));
992 n_eos++;
993 } else {
994 GST_DEBUG ("sink '%s' did not post EOS yet",
995 GST_ELEMENT_NAME (element));
996 result = FALSE;
997 break;
998 }
999 }
1000 }
1001 /* FIXME: Some tests (e.g. elements/capsfilter) use
1002 * pipelines with a dangling sinkpad but no sink element.
1003 * These tests assume that no EOS message is ever
1004 * posted on the bus so let's keep that behaviour.
1005 * In valid pipelines this doesn't make a difference.
1006 */
1007 return result && n_eos > 0;
1008 }
1009
1010
1011 /* Check if the bin is STREAM_START. We do this by scanning all sinks and
1012 * checking if they posted an STREAM_START message.
1013 *
1014 * call with bin LOCK */
1015 static gboolean
is_stream_start(GstBin * bin,guint32 * seqnum,gboolean * have_group_id,guint * group_id)1016 is_stream_start (GstBin * bin, guint32 * seqnum, gboolean * have_group_id,
1017 guint * group_id)
1018 {
1019 gboolean result;
1020 GList *walk, *msgs;
1021 guint tmp_group_id;
1022 gboolean first_stream_start = TRUE, first_group_id = TRUE;
1023 gboolean same_group_id = TRUE;
1024
1025 *have_group_id = FALSE;
1026 *group_id = 0;
1027 result = FALSE;
1028 for (walk = bin->children; walk; walk = g_list_next (walk)) {
1029 GstElement *element;
1030
1031 element = GST_ELEMENT_CAST (walk->data);
1032 if (bin_element_is_sink (element, bin) == 0) {
1033 /* check if element posted STREAM_START */
1034 if ((msgs =
1035 find_message (bin, GST_OBJECT_CAST (element),
1036 GST_MESSAGE_STREAM_START))) {
1037 /* Only initialize to TRUE if we have any stream-start messages at
1038 * all, otherwise it should be FALSE. */
1039 if (first_stream_start) {
1040 /* If any stream-start message do not contain a group id then we
1041 * will set it to FALSE below */
1042 *have_group_id = TRUE;
1043 /* Similarly if any sinks did not post stream-start then we will
1044 * set it to FALSE afterwards */
1045 result = TRUE;
1046 first_stream_start = FALSE;
1047 }
1048
1049 GST_DEBUG ("sink '%s' posted STREAM_START", GST_ELEMENT_NAME (element));
1050 *seqnum = gst_message_get_seqnum (GST_MESSAGE_CAST (msgs->data));
1051 if (gst_message_parse_group_id (GST_MESSAGE_CAST (msgs->data),
1052 &tmp_group_id)) {
1053 if (first_group_id) {
1054 first_group_id = FALSE;
1055 *group_id = tmp_group_id;
1056 } else {
1057 if (tmp_group_id != *group_id)
1058 same_group_id = FALSE;
1059 }
1060 } else {
1061 *have_group_id = FALSE;
1062 }
1063 } else {
1064 GST_DEBUG ("sink '%s' did not post STREAM_START yet",
1065 GST_ELEMENT_NAME (element));
1066 result = FALSE;
1067 break;
1068 }
1069 }
1070 }
1071
1072 /* If all have a group_id we only consider this stream started
1073 * if all group ids were the same and all sinks posted a stream-start
1074 * message */
1075 if (*have_group_id)
1076 return same_group_id && result;
1077 /* otherwise consider this stream started after all sinks
1078 * have reported stream-start for backward compatibility.
1079 * FIXME 2.0: This should go away! */
1080 return result;
1081 }
1082
1083 static void
unlink_pads(const GValue * item,gpointer user_data)1084 unlink_pads (const GValue * item, gpointer user_data)
1085 {
1086 GstPad *pad;
1087 GstPad *peer;
1088
1089 pad = g_value_get_object (item);
1090
1091 if ((peer = gst_pad_get_peer (pad))) {
1092 if (gst_pad_get_direction (pad) == GST_PAD_SRC)
1093 gst_pad_unlink (pad, peer);
1094 else
1095 gst_pad_unlink (peer, pad);
1096 gst_object_unref (peer);
1097 }
1098 }
1099
1100 static void
bin_deep_iterator_foreach(const GValue * item,gpointer user_data)1101 bin_deep_iterator_foreach (const GValue * item, gpointer user_data)
1102 {
1103 GQueue *queue = user_data;
1104
1105 g_queue_push_tail (queue, g_value_dup_object (item));
1106 }
1107
1108 static void
gst_bin_do_deep_add_remove(GstBin * bin,gint sig_id,const gchar * sig_name,GstElement * element)1109 gst_bin_do_deep_add_remove (GstBin * bin, gint sig_id, const gchar * sig_name,
1110 GstElement * element)
1111 {
1112 g_signal_emit (bin, sig_id, 0, bin, element);
1113
1114 /* When removing a bin, emit deep-element-* for everything in the bin too */
1115 if (GST_IS_BIN (element)) {
1116 GstIterator *it;
1117 GstIteratorResult ires;
1118 GQueue elements = G_QUEUE_INIT;
1119
1120 GST_LOG_OBJECT (bin, "Recursing into bin %" GST_PTR_FORMAT " for %s",
1121 element, sig_name);
1122 it = gst_bin_iterate_recurse (GST_BIN_CAST (element));
1123 do {
1124 ires = gst_iterator_foreach (it, bin_deep_iterator_foreach, &elements);
1125 if (ires != GST_ITERATOR_DONE) {
1126 g_queue_foreach (&elements, (GFunc) gst_object_unref, NULL);
1127 g_queue_clear (&elements);
1128 }
1129 if (ires == GST_ITERATOR_RESYNC)
1130 gst_iterator_resync (it);
1131 } while (ires == GST_ITERATOR_RESYNC);
1132 if (ires != GST_ITERATOR_ERROR) {
1133 GstElement *e;
1134
1135 while ((e = g_queue_pop_head (&elements))) {
1136 GstObject *parent = gst_object_get_parent (GST_OBJECT_CAST (e));
1137
1138 /* an element could have removed some of its internal elements
1139 * meanwhile, so protect against that */
1140 if (parent) {
1141 GST_LOG_OBJECT (bin, "calling %s for element %" GST_PTR_FORMAT
1142 " in bin %" GST_PTR_FORMAT, sig_name, e, parent);
1143 g_signal_emit (bin, sig_id, 0, parent, e);
1144 gst_object_unref (parent);
1145 gst_object_unref (e);
1146 }
1147 }
1148 }
1149 gst_iterator_free (it);
1150 }
1151 }
1152
1153 /* vmethod that adds an element to a bin
1154 *
1155 * MT safe
1156 */
1157 static gboolean
gst_bin_add_func(GstBin * bin,GstElement * element)1158 gst_bin_add_func (GstBin * bin, GstElement * element)
1159 {
1160 gchar *elem_name;
1161 GstIterator *it;
1162 gboolean is_sink, is_source, provides_clock, requires_clock;
1163 GstMessage *clock_message = NULL, *async_message = NULL;
1164 GstStateChangeReturn ret;
1165 GList *l, *elem_contexts, *need_context_messages;
1166
1167 GST_DEBUG_OBJECT (bin, "element :%s", GST_ELEMENT_NAME (element));
1168
1169 /* get the element name to make sure it is unique in this bin. */
1170 GST_OBJECT_LOCK (element);
1171 elem_name = g_strdup (GST_ELEMENT_NAME (element));
1172 is_sink = GST_OBJECT_FLAG_IS_SET (element, GST_ELEMENT_FLAG_SINK);
1173 is_source = GST_OBJECT_FLAG_IS_SET (element, GST_ELEMENT_FLAG_SOURCE);
1174 provides_clock =
1175 GST_OBJECT_FLAG_IS_SET (element, GST_ELEMENT_FLAG_PROVIDE_CLOCK);
1176 requires_clock =
1177 GST_OBJECT_FLAG_IS_SET (element, GST_ELEMENT_FLAG_REQUIRE_CLOCK);
1178 GST_OBJECT_UNLOCK (element);
1179
1180 GST_OBJECT_LOCK (bin);
1181
1182 /* then check to see if the element's name is already taken in the bin,
1183 * we can safely take the lock here. This check is probably bogus because
1184 * you can safely change the element name after this check and before setting
1185 * the object parent. The window is very small though... */
1186 if (G_UNLIKELY (!gst_object_check_uniqueness (bin->children, elem_name)))
1187 goto duplicate_name;
1188
1189 /* set the element's parent and add the element to the bin's list of children */
1190 if (G_UNLIKELY (!gst_object_set_parent (GST_OBJECT_CAST (element),
1191 GST_OBJECT_CAST (bin))))
1192 goto had_parent;
1193
1194 /* if we add a sink we become a sink */
1195 if (is_sink && !(bin->priv->suppressed_flags & GST_ELEMENT_FLAG_SINK)) {
1196 GST_CAT_DEBUG_OBJECT (GST_CAT_PARENTAGE, bin, "element \"%s\" was sink",
1197 elem_name);
1198 GST_OBJECT_FLAG_SET (bin, GST_ELEMENT_FLAG_SINK);
1199 }
1200 if (is_source && !(bin->priv->suppressed_flags & GST_ELEMENT_FLAG_SOURCE)) {
1201 GST_CAT_DEBUG_OBJECT (GST_CAT_PARENTAGE, bin, "element \"%s\" was source",
1202 elem_name);
1203 GST_OBJECT_FLAG_SET (bin, GST_ELEMENT_FLAG_SOURCE);
1204 }
1205 if (provides_clock
1206 && !(bin->priv->suppressed_flags & GST_ELEMENT_FLAG_PROVIDE_CLOCK)) {
1207 GST_DEBUG_OBJECT (bin, "element \"%s\" can provide a clock", elem_name);
1208 clock_message =
1209 gst_message_new_clock_provide (GST_OBJECT_CAST (element), NULL, TRUE);
1210 GST_OBJECT_FLAG_SET (bin, GST_ELEMENT_FLAG_PROVIDE_CLOCK);
1211 }
1212 if (requires_clock
1213 && !(bin->priv->suppressed_flags & GST_ELEMENT_FLAG_REQUIRE_CLOCK)) {
1214 GST_DEBUG_OBJECT (bin, "element \"%s\" requires a clock", elem_name);
1215 GST_OBJECT_FLAG_SET (bin, GST_ELEMENT_FLAG_REQUIRE_CLOCK);
1216 }
1217
1218 bin->children = g_list_prepend (bin->children, element);
1219 bin->numchildren++;
1220 bin->children_cookie++;
1221 if (!GST_BIN_IS_NO_RESYNC (bin))
1222 bin->priv->structure_cookie++;
1223
1224 /* distribute the bus */
1225 gst_element_set_bus (element, bin->child_bus);
1226
1227 /* propagate the current base_time, start_time and clock */
1228 gst_element_set_base_time (element, GST_ELEMENT_CAST (bin)->base_time);
1229 gst_element_set_start_time (element, GST_ELEMENT_START_TIME (bin));
1230 /* it's possible that the element did not accept the clock but
1231 * that is not important right now. When the pipeline goes to PLAYING,
1232 * a new clock will be selected */
1233 gst_element_set_clock (element, GST_ELEMENT_CLOCK (bin));
1234
1235 /* get the element's list of contexts before propagating our own */
1236 elem_contexts = gst_element_get_contexts (element);
1237 for (l = GST_ELEMENT_CAST (bin)->contexts; l; l = l->next)
1238 gst_element_set_context (element, l->data);
1239
1240 need_context_messages = NULL;
1241 for (l = elem_contexts; l; l = l->next) {
1242 GstContext *replacement, *context = l->data;
1243 const gchar *context_type;
1244
1245 context_type = gst_context_get_context_type (context);
1246
1247 /* we already set this context above? */
1248 replacement =
1249 gst_element_get_context_unlocked (GST_ELEMENT (bin), context_type);
1250 if (replacement) {
1251 gst_context_unref (replacement);
1252 } else {
1253 GstMessage *msg;
1254 GstStructure *s;
1255
1256 /* ask our parent for the context */
1257 msg = gst_message_new_need_context (GST_OBJECT_CAST (bin), context_type);
1258 s = (GstStructure *) gst_message_get_structure (msg);
1259 gst_structure_set (s, "bin.old.context", GST_TYPE_CONTEXT, context, NULL);
1260
1261 need_context_messages = g_list_prepend (need_context_messages, msg);
1262 }
1263 }
1264
1265 #if 0
1266 /* set the cached index on the children */
1267 if (bin->priv->index)
1268 gst_element_set_index (element, bin->priv->index);
1269 #endif
1270
1271 ret = GST_STATE_RETURN (bin);
1272 /* no need to update the state if we are in error */
1273 if (ret == GST_STATE_CHANGE_FAILURE)
1274 goto no_state_recalc;
1275
1276 /* update the bin state, the new element could have been an ASYNC or
1277 * NO_PREROLL element */
1278 ret = GST_STATE_RETURN (element);
1279 GST_DEBUG_OBJECT (bin, "added %s element",
1280 gst_element_state_change_return_get_name (ret));
1281
1282 switch (ret) {
1283 case GST_STATE_CHANGE_ASYNC:
1284 {
1285 /* create message to track this aync element when it posts an async-done
1286 * message */
1287 async_message = gst_message_new_async_start (GST_OBJECT_CAST (element));
1288 break;
1289 }
1290 case GST_STATE_CHANGE_NO_PREROLL:
1291 /* ignore all async elements we might have and commit our state */
1292 bin_handle_async_done (bin, ret, FALSE, GST_CLOCK_TIME_NONE);
1293 break;
1294 case GST_STATE_CHANGE_FAILURE:
1295 break;
1296 default:
1297 break;
1298 }
1299
1300 no_state_recalc:
1301 GST_OBJECT_UNLOCK (bin);
1302
1303 for (l = need_context_messages; l; l = l->next) {
1304 GstMessage *msg = l->data;
1305 GstStructure *s;
1306 const gchar *context_type;
1307 GstContext *replacement, *context;
1308
1309 gst_message_parse_context_type (msg, &context_type);
1310
1311 GST_LOG_OBJECT (bin, "asking parent for context type: %s "
1312 "from %" GST_PTR_FORMAT, context_type, element);
1313
1314 s = (GstStructure *) gst_message_get_structure (msg);
1315 gst_structure_get (s, "bin.old.context", GST_TYPE_CONTEXT, &context, NULL);
1316 gst_structure_remove_field (s, "bin.old.context");
1317 /* Keep the msg around while we still need access to the context_type */
1318 gst_element_post_message (GST_ELEMENT_CAST (bin), gst_message_ref (msg));
1319
1320 /* lock to avoid losing a potential write */
1321 GST_OBJECT_LOCK (bin);
1322 replacement =
1323 gst_element_get_context_unlocked (GST_ELEMENT_CAST (bin), context_type);
1324 gst_message_unref (msg);
1325
1326 if (replacement) {
1327 /* we got the context set from GstElement::set_context */
1328 gst_context_unref (replacement);
1329 GST_OBJECT_UNLOCK (bin);
1330 } else {
1331 /* Propagate the element's context upwards */
1332 GST_LOG_OBJECT (bin, "propagating existing context type: %s %p "
1333 "from %" GST_PTR_FORMAT, context_type, context, element);
1334
1335 gst_bin_update_context_unlocked (bin, context);
1336
1337 msg =
1338 gst_message_new_have_context (GST_OBJECT_CAST (bin),
1339 gst_context_ref (context));
1340 GST_OBJECT_UNLOCK (bin);
1341 gst_element_post_message (GST_ELEMENT_CAST (bin), msg);
1342 }
1343 gst_context_unref (context);
1344 }
1345 g_list_free_full (elem_contexts, (GDestroyNotify) gst_context_unref);
1346 g_list_free (need_context_messages);
1347
1348 /* post the messages on the bus of the element so that the bin can handle
1349 * them */
1350 if (clock_message)
1351 gst_element_post_message (element, clock_message);
1352
1353 if (async_message)
1354 gst_element_post_message (element, async_message);
1355
1356 /* unlink all linked pads */
1357 it = gst_element_iterate_pads (element);
1358 while (gst_iterator_foreach (it, (GstIteratorForeachFunction) unlink_pads,
1359 NULL) == GST_ITERATOR_RESYNC)
1360 gst_iterator_resync (it);
1361 gst_iterator_free (it);
1362
1363 GST_CAT_DEBUG_OBJECT (GST_CAT_PARENTAGE, bin, "added element \"%s\"",
1364 elem_name);
1365
1366 g_signal_emit (bin, gst_bin_signals[ELEMENT_ADDED], 0, element);
1367 gst_child_proxy_child_added ((GstChildProxy *) bin, (GObject *) element,
1368 elem_name);
1369
1370 gst_bin_do_deep_add_remove (bin, gst_bin_signals[DEEP_ELEMENT_ADDED],
1371 "deep-element-added", element);
1372
1373 g_free (elem_name);
1374
1375 return TRUE;
1376
1377 /* ERROR handling here */
1378 duplicate_name:
1379 {
1380 GST_OBJECT_UNLOCK (bin);
1381 GST_WARNING_OBJECT (bin, "Name '%s' is not unique in bin, not adding",
1382 elem_name);
1383 g_free (elem_name);
1384 gst_object_ref_sink (element);
1385 gst_object_unref (element);
1386 return FALSE;
1387 }
1388 had_parent:
1389 {
1390 GST_OBJECT_UNLOCK (bin);
1391 GST_WARNING_OBJECT (bin, "Element '%s' already has parent", elem_name);
1392 g_free (elem_name);
1393 return FALSE;
1394 }
1395 }
1396
1397 /**
1398 * gst_bin_set_suppressed_flags:
1399 * @bin: a #GstBin
1400 * @flags: the #GstElementFlags to suppress
1401 *
1402 * Suppresses the given flags on the bin. #GstElementFlags of a
1403 * child element are propagated when it is added to the bin.
1404 * When suppressed flags are set, those specified flags will
1405 * not be propagated to the bin.
1406 *
1407 * Since: 1.10
1408 */
1409 void
gst_bin_set_suppressed_flags(GstBin * bin,GstElementFlags flags)1410 gst_bin_set_suppressed_flags (GstBin * bin, GstElementFlags flags)
1411 {
1412 g_return_if_fail (GST_IS_BIN (bin));
1413
1414 GST_OBJECT_LOCK (bin);
1415 bin->priv->suppressed_flags = bin->priv->suppressed_flags | flags;
1416 GST_OBJECT_UNLOCK (bin);
1417
1418 GST_DEBUG_OBJECT (bin, "Set suppressed flags(0x%x) to bin '%s'", flags,
1419 GST_ELEMENT_NAME (bin));
1420 }
1421
1422 /**
1423 * gst_bin_get_suppressed_flags:
1424 * @bin: a #GstBin
1425 *
1426 * Returns: the bin's suppressed #GstElementFlags.
1427 *
1428 * Since: 1.10
1429 */
1430 GstElementFlags
gst_bin_get_suppressed_flags(GstBin * bin)1431 gst_bin_get_suppressed_flags (GstBin * bin)
1432 {
1433 GstElementFlags res;
1434
1435 g_return_val_if_fail (GST_IS_BIN (bin), 0);
1436
1437 GST_OBJECT_LOCK (bin);
1438 res = bin->priv->suppressed_flags;
1439 GST_OBJECT_UNLOCK (bin);
1440
1441 return res;
1442 }
1443
1444 /* signal vfunc, will be called when a new element was added */
1445 static void
gst_bin_deep_element_added_func(GstBin * bin,GstBin * sub_bin,GstElement * child)1446 gst_bin_deep_element_added_func (GstBin * bin, GstBin * sub_bin,
1447 GstElement * child)
1448 {
1449 GstBin *parent_bin;
1450
1451 parent_bin = (GstBin *) gst_object_get_parent (GST_OBJECT_CAST (bin));
1452 if (parent_bin == NULL) {
1453 GST_LOG_OBJECT (bin, "no parent, reached top-level");
1454 return;
1455 }
1456
1457 GST_LOG_OBJECT (parent_bin, "emitting deep-element-added for element "
1458 "%" GST_PTR_FORMAT " which has just been added to %" GST_PTR_FORMAT,
1459 child, sub_bin);
1460
1461 g_signal_emit (parent_bin, gst_bin_signals[DEEP_ELEMENT_ADDED], 0, sub_bin,
1462 child);
1463
1464 gst_object_unref (parent_bin);
1465 }
1466
1467 /* signal vfunc, will be called when an element was removed */
1468 static void
gst_bin_deep_element_removed_func(GstBin * bin,GstBin * sub_bin,GstElement * child)1469 gst_bin_deep_element_removed_func (GstBin * bin, GstBin * sub_bin,
1470 GstElement * child)
1471 {
1472 GstBin *parent_bin;
1473
1474 parent_bin = (GstBin *) gst_object_get_parent (GST_OBJECT_CAST (bin));
1475 if (parent_bin == NULL) {
1476 GST_LOG_OBJECT (bin, "no parent, reached top-level");
1477 return;
1478 }
1479
1480 GST_LOG_OBJECT (parent_bin, "emitting deep-element-removed for element "
1481 "%" GST_PTR_FORMAT " which has just been removed from %" GST_PTR_FORMAT,
1482 child, sub_bin);
1483
1484 g_signal_emit (parent_bin, gst_bin_signals[DEEP_ELEMENT_REMOVED], 0, sub_bin,
1485 child);
1486
1487 gst_object_unref (parent_bin);
1488 }
1489
1490 /**
1491 * gst_bin_add:
1492 * @bin: a #GstBin
1493 * @element: (transfer floating): the #GstElement to add
1494 *
1495 * Adds the given element to the bin. Sets the element's parent, and thus
1496 * takes ownership of the element. An element can only be added to one bin.
1497 *
1498 * If the element's pads are linked to other pads, the pads will be unlinked
1499 * before the element is added to the bin.
1500 *
1501 * > When you add an element to an already-running pipeline, you will have to
1502 * > take care to set the state of the newly-added element to the desired
1503 * > state (usually PLAYING or PAUSED, same you set the pipeline to originally)
1504 * > with gst_element_set_state(), or use gst_element_sync_state_with_parent().
1505 * > The bin or pipeline will not take care of this for you.
1506 *
1507 * Returns: %TRUE if the element could be added, %FALSE if
1508 * the bin does not want to accept the element.
1509 */
1510 gboolean
gst_bin_add(GstBin * bin,GstElement * element)1511 gst_bin_add (GstBin * bin, GstElement * element)
1512 {
1513 GstBinClass *bclass;
1514 gboolean result;
1515
1516 g_return_val_if_fail (GST_IS_BIN (bin), FALSE);
1517 g_return_val_if_fail (GST_IS_ELEMENT (element), FALSE);
1518 g_return_val_if_fail (GST_ELEMENT_CAST (bin) != element, FALSE);
1519
1520 bclass = GST_BIN_GET_CLASS (bin);
1521
1522 if (G_UNLIKELY (bclass->add_element == NULL))
1523 goto no_function;
1524
1525 GST_CAT_DEBUG (GST_CAT_PARENTAGE, "adding element %s to bin %s",
1526 GST_STR_NULL (GST_ELEMENT_NAME (element)),
1527 GST_STR_NULL (GST_ELEMENT_NAME (bin)));
1528
1529 GST_TRACER_BIN_ADD_PRE (bin, element);
1530 result = bclass->add_element (bin, element);
1531 GST_TRACER_BIN_ADD_POST (bin, element, result);
1532
1533 return result;
1534
1535 /* ERROR handling */
1536 no_function:
1537 {
1538 GST_WARNING_OBJECT (bin, "adding elements to bin is not supported");
1539 gst_object_ref_sink (element);
1540 gst_object_unref (element);
1541 return FALSE;
1542 }
1543 }
1544
1545 /* remove an element from the bin
1546 *
1547 * MT safe
1548 */
1549 static gboolean
gst_bin_remove_func(GstBin * bin,GstElement * element)1550 gst_bin_remove_func (GstBin * bin, GstElement * element)
1551 {
1552 gchar *elem_name;
1553 GstIterator *it;
1554 gboolean is_sink, is_source, provides_clock, requires_clock;
1555 gboolean othersink, othersource, otherprovider, otherrequirer, found;
1556 GstMessage *clock_message = NULL;
1557 GstClock **provided_clock_p;
1558 GstElement **clock_provider_p;
1559 GList *walk, *next;
1560 gboolean other_async, this_async, have_no_preroll, removed_eos;
1561 GstStateChangeReturn ret;
1562
1563 GST_DEBUG_OBJECT (bin, "element :%s", GST_ELEMENT_NAME (element));
1564
1565 GST_OBJECT_LOCK (bin);
1566
1567 GST_OBJECT_LOCK (element);
1568 elem_name = g_strdup (GST_ELEMENT_NAME (element));
1569
1570 if (GST_OBJECT_PARENT (element) != GST_OBJECT_CAST (bin))
1571 goto not_in_bin;
1572
1573 /* remove the parent ref */
1574 GST_OBJECT_PARENT (element) = NULL;
1575
1576 /* grab element name so we can print it */
1577 is_sink = GST_OBJECT_FLAG_IS_SET (element, GST_ELEMENT_FLAG_SINK);
1578 is_source = GST_OBJECT_FLAG_IS_SET (element, GST_ELEMENT_FLAG_SOURCE);
1579 provides_clock =
1580 GST_OBJECT_FLAG_IS_SET (element, GST_ELEMENT_FLAG_PROVIDE_CLOCK);
1581 requires_clock =
1582 GST_OBJECT_FLAG_IS_SET (element, GST_ELEMENT_FLAG_REQUIRE_CLOCK);
1583 GST_OBJECT_UNLOCK (element);
1584
1585 found = FALSE;
1586 othersink = FALSE;
1587 othersource = FALSE;
1588 otherprovider = FALSE;
1589 otherrequirer = FALSE;
1590 have_no_preroll = FALSE;
1591 /* iterate the elements, we collect which ones are async and no_preroll. We
1592 * also remove the element when we find it. */
1593 for (walk = bin->children; walk; walk = next) {
1594 GstElement *child = GST_ELEMENT_CAST (walk->data);
1595
1596 next = g_list_next (walk);
1597
1598 if (child == element) {
1599 found = TRUE;
1600 /* remove the element */
1601 bin->children = g_list_delete_link (bin->children, walk);
1602 } else {
1603 gboolean child_sink, child_source, child_provider, child_requirer;
1604
1605 GST_OBJECT_LOCK (child);
1606 child_sink = GST_OBJECT_FLAG_IS_SET (child, GST_ELEMENT_FLAG_SINK);
1607 child_source = GST_OBJECT_FLAG_IS_SET (child, GST_ELEMENT_FLAG_SOURCE);
1608 child_provider =
1609 GST_OBJECT_FLAG_IS_SET (child, GST_ELEMENT_FLAG_PROVIDE_CLOCK);
1610 child_requirer =
1611 GST_OBJECT_FLAG_IS_SET (child, GST_ELEMENT_FLAG_REQUIRE_CLOCK);
1612 /* when we remove a sink, check if there are other sinks. */
1613 if (is_sink && !othersink && child_sink)
1614 othersink = TRUE;
1615 if (is_source && !othersource && child_source)
1616 othersource = TRUE;
1617 if (provides_clock && !otherprovider && child_provider)
1618 otherprovider = TRUE;
1619 if (requires_clock && !otherrequirer && child_requirer)
1620 otherrequirer = TRUE;
1621 /* check if we have NO_PREROLL children */
1622 if (GST_STATE_RETURN (child) == GST_STATE_CHANGE_NO_PREROLL)
1623 have_no_preroll = TRUE;
1624 GST_OBJECT_UNLOCK (child);
1625 }
1626 }
1627
1628 /* the element must have been in the bin's list of children */
1629 if (G_UNLIKELY (!found))
1630 goto not_in_bin;
1631
1632 /* we now removed the element from the list of elements, increment the cookie
1633 * so that others can detect a change in the children list. */
1634 bin->numchildren--;
1635 bin->children_cookie++;
1636 if (!GST_BIN_IS_NO_RESYNC (bin))
1637 bin->priv->structure_cookie++;
1638
1639 if (is_sink && !othersink
1640 && !(bin->priv->suppressed_flags & GST_ELEMENT_FLAG_SINK)) {
1641 /* we're not a sink anymore */
1642 GST_DEBUG_OBJECT (bin, "we removed the last sink");
1643 GST_OBJECT_FLAG_UNSET (bin, GST_ELEMENT_FLAG_SINK);
1644 }
1645 if (is_source && !othersource
1646 && !(bin->priv->suppressed_flags & GST_ELEMENT_FLAG_SOURCE)) {
1647 /* we're not a source anymore */
1648 GST_DEBUG_OBJECT (bin, "we removed the last source");
1649 GST_OBJECT_FLAG_UNSET (bin, GST_ELEMENT_FLAG_SOURCE);
1650 }
1651 if (provides_clock && !otherprovider
1652 && !(bin->priv->suppressed_flags & GST_ELEMENT_FLAG_PROVIDE_CLOCK)) {
1653 /* we're not a clock provider anymore */
1654 GST_DEBUG_OBJECT (bin, "we removed the last clock provider");
1655 GST_OBJECT_FLAG_UNSET (bin, GST_ELEMENT_FLAG_PROVIDE_CLOCK);
1656 }
1657 if (requires_clock && !otherrequirer
1658 && !(bin->priv->suppressed_flags & GST_ELEMENT_FLAG_REQUIRE_CLOCK)) {
1659 /* we're not a clock requirer anymore */
1660 GST_DEBUG_OBJECT (bin, "we removed the last clock requirer");
1661 GST_OBJECT_FLAG_UNSET (bin, GST_ELEMENT_FLAG_REQUIRE_CLOCK);
1662 }
1663
1664 /* if the clock provider for this element is removed, we lost
1665 * the clock as well, we need to inform the parent of this
1666 * so that it can select a new clock */
1667 if (bin->clock_provider == element) {
1668 GST_DEBUG_OBJECT (bin, "element \"%s\" provided the clock", elem_name);
1669 bin->clock_dirty = TRUE;
1670 clock_message =
1671 gst_message_new_clock_lost (GST_OBJECT_CAST (bin), bin->provided_clock);
1672 provided_clock_p = &bin->provided_clock;
1673 clock_provider_p = &bin->clock_provider;
1674 gst_object_replace ((GstObject **) provided_clock_p, NULL);
1675 gst_object_replace ((GstObject **) clock_provider_p, NULL);
1676 }
1677
1678 /* remove messages for the element, if there was a pending ASYNC_START
1679 * message we must see if removing the element caused the bin to lose its
1680 * async state. */
1681 this_async = FALSE;
1682 other_async = FALSE;
1683 /* If we remove an EOSed element, the bin might go EOS */
1684 removed_eos = FALSE;
1685 for (walk = bin->messages; walk; walk = next) {
1686 GstMessage *message = (GstMessage *) walk->data;
1687 GstElement *src = GST_ELEMENT_CAST (GST_MESSAGE_SRC (message));
1688 gboolean remove;
1689
1690 next = g_list_next (walk);
1691 remove = FALSE;
1692
1693 switch (GST_MESSAGE_TYPE (message)) {
1694 case GST_MESSAGE_ASYNC_START:
1695 if (src == element)
1696 this_async = TRUE;
1697 else
1698 other_async = TRUE;
1699
1700 GST_DEBUG_OBJECT (src, "looking at message %p", message);
1701 break;
1702 case GST_MESSAGE_STRUCTURE_CHANGE:
1703 {
1704 GstElement *owner;
1705
1706 GST_DEBUG_OBJECT (src, "looking at structure change message %p",
1707 message);
1708 /* it's unlikely that this message is still in the list of messages
1709 * because this would mean that a link/unlink is busy in another thread
1710 * while we remove the element. We still have to remove the message
1711 * because we might not receive the done message anymore when the element
1712 * is removed from the bin. */
1713 gst_message_parse_structure_change (message, NULL, &owner, NULL);
1714 if (owner == element)
1715 remove = TRUE;
1716 break;
1717 }
1718 case GST_MESSAGE_EOS:
1719 if (src == element)
1720 removed_eos = TRUE;
1721 break;
1722 default:
1723 break;
1724 }
1725 if (src == element)
1726 remove = TRUE;
1727
1728 if (remove) {
1729 /* delete all message types */
1730 GST_DEBUG_OBJECT (src, "deleting message %p of element \"%s\"",
1731 message, elem_name);
1732 bin->messages = g_list_delete_link (bin->messages, walk);
1733 gst_message_unref (message);
1734 }
1735 }
1736
1737 /* get last return */
1738 ret = GST_STATE_RETURN (bin);
1739
1740 /* no need to update the state if we are in error */
1741 if (ret == GST_STATE_CHANGE_FAILURE)
1742 goto no_state_recalc;
1743
1744 if (!other_async && this_async) {
1745 /* all other elements were not async and we removed the async one,
1746 * handle the async-done case because we are not async anymore now. */
1747 GST_DEBUG_OBJECT (bin,
1748 "we removed the last async element, have no_preroll %d",
1749 have_no_preroll);
1750
1751 /* the current state return of the bin depends on if there are no_preroll
1752 * elements in the pipeline or not */
1753 if (have_no_preroll)
1754 ret = GST_STATE_CHANGE_NO_PREROLL;
1755 else
1756 ret = GST_STATE_CHANGE_SUCCESS;
1757
1758 bin_handle_async_done (bin, ret, FALSE, GST_CLOCK_TIME_NONE);
1759 } else {
1760 GST_DEBUG_OBJECT (bin,
1761 "recalc state preroll: %d, other async: %d, this async %d",
1762 have_no_preroll, other_async, this_async);
1763
1764 if (have_no_preroll) {
1765 ret = GST_STATE_CHANGE_NO_PREROLL;
1766 } else if (other_async) {
1767 /* there are other async elements and we were not doing an async state
1768 * change, change our pending state and go async */
1769 if (GST_STATE_PENDING (bin) == GST_STATE_VOID_PENDING) {
1770 GST_STATE_NEXT (bin) = GST_STATE (bin);
1771 GST_STATE_PENDING (bin) = GST_STATE (bin);
1772 }
1773 ret = GST_STATE_CHANGE_ASYNC;
1774 }
1775 GST_STATE_RETURN (bin) = ret;
1776 }
1777 no_state_recalc:
1778 /* clear bus */
1779 gst_element_set_bus (element, NULL);
1780 /* Clear the clock we provided to the element */
1781 gst_element_set_clock (element, NULL);
1782 GST_OBJECT_UNLOCK (bin);
1783
1784 /* If the element was a sink that had not posted EOS,
1785 * it might have been the last one we were waiting for,
1786 * so check if it's time to send EOS now */
1787 if (is_sink && !removed_eos) {
1788 GST_DEBUG_OBJECT (bin,
1789 "Removing sink that had not EOSed. Re-checking overall EOS status");
1790 bin_do_eos (bin);
1791 }
1792
1793 if (clock_message)
1794 gst_element_post_message (GST_ELEMENT_CAST (bin), clock_message);
1795
1796 /* unlink all linked pads */
1797 it = gst_element_iterate_pads (element);
1798 while (gst_iterator_foreach (it, (GstIteratorForeachFunction) unlink_pads,
1799 NULL) == GST_ITERATOR_RESYNC)
1800 gst_iterator_resync (it);
1801 gst_iterator_free (it);
1802
1803 GST_CAT_INFO_OBJECT (GST_CAT_PARENTAGE, bin, "removed child \"%s\"",
1804 elem_name);
1805
1806 g_signal_emit (bin, gst_bin_signals[ELEMENT_REMOVED], 0, element);
1807 gst_child_proxy_child_removed ((GstChildProxy *) bin, (GObject *) element,
1808 elem_name);
1809
1810 gst_bin_do_deep_add_remove (bin, gst_bin_signals[DEEP_ELEMENT_REMOVED],
1811 "deep-element-removed", element);
1812
1813 g_free (elem_name);
1814 /* element is really out of our control now */
1815 gst_object_unref (element);
1816
1817 return TRUE;
1818
1819 /* ERROR handling */
1820 not_in_bin:
1821 {
1822 GST_OBJECT_UNLOCK (element);
1823 GST_OBJECT_UNLOCK (bin);
1824 GST_WARNING_OBJECT (bin, "Element '%s' is not in bin", elem_name);
1825 g_free (elem_name);
1826 return FALSE;
1827 }
1828 }
1829
1830 /**
1831 * gst_bin_remove:
1832 * @bin: a #GstBin
1833 * @element: (transfer none): the #GstElement to remove
1834 *
1835 * Removes the element from the bin, unparenting it as well.
1836 * Unparenting the element means that the element will be dereferenced,
1837 * so if the bin holds the only reference to the element, the element
1838 * will be freed in the process of removing it from the bin. If you
1839 * want the element to still exist after removing, you need to call
1840 * gst_object_ref() before removing it from the bin.
1841 *
1842 * If the element's pads are linked to other pads, the pads will be unlinked
1843 * before the element is removed from the bin.
1844 *
1845 * Returns: %TRUE if the element could be removed, %FALSE if
1846 * the bin does not want to remove the element.
1847 */
1848 gboolean
gst_bin_remove(GstBin * bin,GstElement * element)1849 gst_bin_remove (GstBin * bin, GstElement * element)
1850 {
1851 GstBinClass *bclass;
1852 gboolean result;
1853
1854 g_return_val_if_fail (GST_IS_BIN (bin), FALSE);
1855 g_return_val_if_fail (GST_IS_ELEMENT (element), FALSE);
1856 g_return_val_if_fail (GST_ELEMENT_CAST (bin) != element, FALSE);
1857
1858 bclass = GST_BIN_GET_CLASS (bin);
1859
1860 if (G_UNLIKELY (bclass->remove_element == NULL))
1861 goto no_function;
1862
1863 GST_CAT_DEBUG (GST_CAT_PARENTAGE, "removing element %s from bin %s",
1864 GST_ELEMENT_NAME (element), GST_ELEMENT_NAME (bin));
1865
1866 GST_TRACER_BIN_REMOVE_PRE (bin, element);
1867 result = bclass->remove_element (bin, element);
1868 GST_TRACER_BIN_REMOVE_POST (bin, result);
1869
1870 return result;
1871
1872 /* ERROR handling */
1873 no_function:
1874 {
1875 GST_WARNING_OBJECT (bin, "Removing elements from bin is not supported");
1876 return FALSE;
1877 }
1878 }
1879
1880 /**
1881 * gst_bin_iterate_elements:
1882 * @bin: a #GstBin
1883 *
1884 * Gets an iterator for the elements in this bin.
1885 *
1886 * Returns: (transfer full) (nullable): a #GstIterator of #GstElement
1887 */
1888 GstIterator *
gst_bin_iterate_elements(GstBin * bin)1889 gst_bin_iterate_elements (GstBin * bin)
1890 {
1891 GstIterator *result;
1892
1893 g_return_val_if_fail (GST_IS_BIN (bin), NULL);
1894
1895 GST_OBJECT_LOCK (bin);
1896 result = gst_iterator_new_list (GST_TYPE_ELEMENT,
1897 GST_OBJECT_GET_LOCK (bin),
1898 &bin->children_cookie, &bin->children, (GObject *) bin, NULL);
1899 GST_OBJECT_UNLOCK (bin);
1900
1901 return result;
1902 }
1903
1904 static GstIteratorItem
iterate_child_recurse(GstIterator * it,const GValue * item)1905 iterate_child_recurse (GstIterator * it, const GValue * item)
1906 {
1907 GstElement *child = g_value_get_object (item);
1908
1909 if (GST_IS_BIN (child)) {
1910 GstIterator *other = gst_bin_iterate_recurse (GST_BIN_CAST (child));
1911
1912 gst_iterator_push (it, other);
1913 }
1914 return GST_ITERATOR_ITEM_PASS;
1915 }
1916
1917 /**
1918 * gst_bin_iterate_recurse:
1919 * @bin: a #GstBin
1920 *
1921 * Gets an iterator for the elements in this bin.
1922 * This iterator recurses into GstBin children.
1923 *
1924 * Returns: (transfer full) (nullable): a #GstIterator of #GstElement
1925 */
1926 GstIterator *
gst_bin_iterate_recurse(GstBin * bin)1927 gst_bin_iterate_recurse (GstBin * bin)
1928 {
1929 GstIterator *result;
1930
1931 g_return_val_if_fail (GST_IS_BIN (bin), NULL);
1932
1933 GST_OBJECT_LOCK (bin);
1934 result = gst_iterator_new_list (GST_TYPE_ELEMENT,
1935 GST_OBJECT_GET_LOCK (bin),
1936 &bin->children_cookie,
1937 &bin->children,
1938 (GObject *) bin, (GstIteratorItemFunction) iterate_child_recurse);
1939 GST_OBJECT_UNLOCK (bin);
1940
1941 return result;
1942 }
1943
1944 /* returns 0 when TRUE because this is a GCompareFunc */
1945 /* MT safe */
1946 static gint
bin_element_is_sink(GstElement * child,GstBin * bin)1947 bin_element_is_sink (GstElement * child, GstBin * bin)
1948 {
1949 gboolean is_sink;
1950
1951 /* we lock the child here for the remainder of the function to
1952 * get its name and flag safely. */
1953 GST_OBJECT_LOCK (child);
1954 is_sink = GST_OBJECT_FLAG_IS_SET (child, GST_ELEMENT_FLAG_SINK);
1955
1956 GST_CAT_DEBUG_OBJECT (GST_CAT_STATES, bin,
1957 "child %s %s sink", GST_OBJECT_NAME (child), is_sink ? "is" : "is not");
1958
1959 GST_OBJECT_UNLOCK (child);
1960 return is_sink ? 0 : 1;
1961 }
1962
1963 static gint
sink_iterator_filter(const GValue * vchild,GValue * vbin)1964 sink_iterator_filter (const GValue * vchild, GValue * vbin)
1965 {
1966 GstBin *bin = g_value_get_object (vbin);
1967 GstElement *child = g_value_get_object (vchild);
1968
1969 return (bin_element_is_sink (child, bin));
1970 }
1971
1972 /**
1973 * gst_bin_iterate_sinks:
1974 * @bin: a #GstBin
1975 *
1976 * Gets an iterator for all elements in the bin that have the
1977 * #GST_ELEMENT_FLAG_SINK flag set.
1978 *
1979 * Returns: (transfer full) (nullable): a #GstIterator of #GstElement
1980 */
1981 GstIterator *
gst_bin_iterate_sinks(GstBin * bin)1982 gst_bin_iterate_sinks (GstBin * bin)
1983 {
1984 GstIterator *children;
1985 GstIterator *result;
1986 GValue vbin = { 0, };
1987
1988 g_return_val_if_fail (GST_IS_BIN (bin), NULL);
1989
1990 g_value_init (&vbin, GST_TYPE_BIN);
1991 g_value_set_object (&vbin, bin);
1992
1993 children = gst_bin_iterate_elements (bin);
1994 result = gst_iterator_filter (children,
1995 (GCompareFunc) sink_iterator_filter, &vbin);
1996
1997 g_value_unset (&vbin);
1998
1999 return result;
2000 }
2001
2002 /* returns 0 when TRUE because this is a GCompareFunc */
2003 /* MT safe */
2004 static gint
bin_element_is_src(GstElement * child,GstBin * bin)2005 bin_element_is_src (GstElement * child, GstBin * bin)
2006 {
2007 gboolean is_src;
2008
2009 /* we lock the child here for the remainder of the function to
2010 * get its name and other info safely. */
2011 GST_OBJECT_LOCK (child);
2012 is_src = GST_OBJECT_FLAG_IS_SET (child, GST_ELEMENT_FLAG_SOURCE);
2013
2014 GST_CAT_DEBUG_OBJECT (GST_CAT_STATES, bin,
2015 "child %s %s src", GST_OBJECT_NAME (child), is_src ? "is" : "is not");
2016
2017 GST_OBJECT_UNLOCK (child);
2018 return is_src ? 0 : 1;
2019 }
2020
2021 static gint
src_iterator_filter(const GValue * vchild,GValue * vbin)2022 src_iterator_filter (const GValue * vchild, GValue * vbin)
2023 {
2024 GstBin *bin = g_value_get_object (vbin);
2025 GstElement *child = g_value_get_object (vchild);
2026
2027 return (bin_element_is_src (child, bin));
2028 }
2029
2030 /**
2031 * gst_bin_iterate_sources:
2032 * @bin: a #GstBin
2033 *
2034 * Gets an iterator for all elements in the bin that have the
2035 * #GST_ELEMENT_FLAG_SOURCE flag set.
2036 *
2037 * Returns: (transfer full) (nullable): a #GstIterator of #GstElement
2038 */
2039 GstIterator *
gst_bin_iterate_sources(GstBin * bin)2040 gst_bin_iterate_sources (GstBin * bin)
2041 {
2042 GstIterator *children;
2043 GstIterator *result;
2044 GValue vbin = { 0, };
2045
2046 g_return_val_if_fail (GST_IS_BIN (bin), NULL);
2047
2048 g_value_init (&vbin, GST_TYPE_BIN);
2049 g_value_set_object (&vbin, bin);
2050
2051 children = gst_bin_iterate_elements (bin);
2052 result = gst_iterator_filter (children,
2053 (GCompareFunc) src_iterator_filter, &vbin);
2054
2055 g_value_unset (&vbin);
2056
2057 return result;
2058 }
2059
2060 /*
2061 * MT safe
2062 */
2063 static GstStateChangeReturn
gst_bin_get_state_func(GstElement * element,GstState * state,GstState * pending,GstClockTime timeout)2064 gst_bin_get_state_func (GstElement * element, GstState * state,
2065 GstState * pending, GstClockTime timeout)
2066 {
2067 GstStateChangeReturn ret;
2068
2069 GST_CAT_INFO_OBJECT (GST_CAT_STATES, element, "getting state");
2070
2071 ret =
2072 GST_ELEMENT_CLASS (parent_class)->get_state (element, state, pending,
2073 timeout);
2074
2075 return ret;
2076 }
2077
2078 /***********************************************
2079 * Topologically sorted iterator
2080 * see http://en.wikipedia.org/wiki/Topological_sorting
2081 *
2082 * For each element in the graph, an entry is kept in a HashTable
2083 * with its number of srcpad connections (degree).
2084 * We then change state of all elements without dependencies
2085 * (degree 0) and decrement the degree of all elements connected
2086 * on the sinkpads. When an element reaches degree 0, its state is
2087 * changed next.
2088 * When all elements are handled the algorithm stops.
2089 */
2090 typedef struct _GstBinSortIterator
2091 {
2092 GstIterator it;
2093 GQueue queue; /* elements queued for state change */
2094 GstBin *bin; /* bin we iterate */
2095 gint mode; /* adding or removing dependency */
2096 GstElement *best; /* next element with least dependencies */
2097 gint best_deg; /* best degree */
2098 GHashTable *hash; /* hashtable with element dependencies */
2099 gboolean dirty; /* we detected structure change */
2100 } GstBinSortIterator;
2101
2102 static void
copy_to_queue(gpointer data,gpointer user_data)2103 copy_to_queue (gpointer data, gpointer user_data)
2104 {
2105 GstElement *element = data;
2106 GQueue *queue = user_data;
2107
2108 gst_object_ref (element);
2109 g_queue_push_tail (queue, element);
2110 }
2111
2112 static void
gst_bin_sort_iterator_copy(const GstBinSortIterator * it,GstBinSortIterator * copy)2113 gst_bin_sort_iterator_copy (const GstBinSortIterator * it,
2114 GstBinSortIterator * copy)
2115 {
2116 GHashTableIter iter;
2117 gpointer key, value;
2118
2119 g_queue_init (©->queue);
2120 g_queue_foreach ((GQueue *) & it->queue, copy_to_queue, ©->queue);
2121
2122 copy->bin = gst_object_ref (it->bin);
2123 if (it->best)
2124 copy->best = gst_object_ref (it->best);
2125
2126 copy->hash = g_hash_table_new (NULL, NULL);
2127 g_hash_table_iter_init (&iter, it->hash);
2128 while (g_hash_table_iter_next (&iter, &key, &value))
2129 g_hash_table_insert (copy->hash, key, value);
2130 }
2131
2132 /* we add and subtract 1 to make sure we don't confuse NULL and 0 */
2133 #define HASH_SET_DEGREE(bit, elem, deg) \
2134 g_hash_table_replace (bit->hash, elem, GINT_TO_POINTER(deg+1))
2135 #define HASH_GET_DEGREE(bit, elem) \
2136 (GPOINTER_TO_INT(g_hash_table_lookup (bit->hash, elem))-1)
2137
2138 /* add element to queue of next elements in the iterator.
2139 * We push at the tail to give higher priority elements a
2140 * chance first */
2141 static void
add_to_queue(GstBinSortIterator * bit,GstElement * element)2142 add_to_queue (GstBinSortIterator * bit, GstElement * element)
2143 {
2144 GST_DEBUG_OBJECT (bit->bin, "adding '%s' to queue",
2145 GST_ELEMENT_NAME (element));
2146 gst_object_ref (element);
2147 g_queue_push_tail (&bit->queue, element);
2148 HASH_SET_DEGREE (bit, element, -1);
2149 }
2150
2151 static void
remove_from_queue(GstBinSortIterator * bit,GstElement * element)2152 remove_from_queue (GstBinSortIterator * bit, GstElement * element)
2153 {
2154 GList *find;
2155
2156 if ((find = g_queue_find (&bit->queue, element))) {
2157 GST_DEBUG_OBJECT (bit->bin, "removing '%s' from queue",
2158 GST_ELEMENT_NAME (element));
2159
2160 g_queue_delete_link (&bit->queue, find);
2161 gst_object_unref (element);
2162 } else {
2163 GST_DEBUG_OBJECT (bit->bin, "unable to remove '%s' from queue",
2164 GST_ELEMENT_NAME (element));
2165 }
2166 }
2167
2168 /* clear the queue, unref all objects as we took a ref when
2169 * we added them to the queue */
2170 static void
clear_queue(GQueue * queue)2171 clear_queue (GQueue * queue)
2172 {
2173 gpointer p;
2174
2175 while ((p = g_queue_pop_head (queue)))
2176 gst_object_unref (p);
2177 }
2178
2179 /* set all degrees to 0. Elements marked as a sink are
2180 * added to the queue immediately. Since we only look at the SINK flag of the
2181 * element, it is possible that we add non-sinks to the queue. These will be
2182 * removed from the queue again when we can prove that it provides data for some
2183 * other element. */
2184 static void
reset_degree(GstElement * element,GstBinSortIterator * bit)2185 reset_degree (GstElement * element, GstBinSortIterator * bit)
2186 {
2187 gboolean is_sink;
2188
2189 /* sinks are added right away */
2190 GST_OBJECT_LOCK (element);
2191 is_sink = GST_OBJECT_FLAG_IS_SET (element, GST_ELEMENT_FLAG_SINK);
2192 GST_OBJECT_UNLOCK (element);
2193
2194 if (is_sink) {
2195 add_to_queue (bit, element);
2196 } else {
2197 /* others are marked with 0 and handled when sinks are done */
2198 HASH_SET_DEGREE (bit, element, 0);
2199 }
2200 }
2201
2202 /* adjust the degree of all elements connected to the given
2203 * element. If a degree of an element drops to 0, it is
2204 * added to the queue of elements to schedule next.
2205 *
2206 * We have to make sure not to cross the bin boundary this element
2207 * belongs to.
2208 */
2209 static void
update_degree(GstElement * element,GstBinSortIterator * bit)2210 update_degree (GstElement * element, GstBinSortIterator * bit)
2211 {
2212 gboolean linked = FALSE;
2213
2214 GST_OBJECT_LOCK (element);
2215 /* don't touch degree if element has no sinkpads */
2216 if (element->numsinkpads != 0) {
2217 /* loop over all sinkpads, decrement degree for all connected
2218 * elements in this bin */
2219 GList *pads;
2220
2221 for (pads = element->sinkpads; pads; pads = g_list_next (pads)) {
2222 GstPad *pad, *peer;
2223
2224 pad = GST_PAD_CAST (pads->data);
2225
2226 /* we're iterating over the sinkpads, check if it's busy in a link/unlink */
2227 if (G_UNLIKELY (find_message (bit->bin, GST_OBJECT_CAST (pad),
2228 GST_MESSAGE_STRUCTURE_CHANGE))) {
2229 /* mark the iterator as dirty because we won't be updating the degree
2230 * of the peer parent now. This would result in the 'loop detected'
2231 * later on because the peer parent element could become the best next
2232 * element with a degree > 0. We will simply continue our state
2233 * changes and we'll eventually resync when the unlink completed and
2234 * the iterator cookie is updated. */
2235 bit->dirty = TRUE;
2236 continue;
2237 }
2238
2239 if ((peer = gst_pad_get_peer (pad))) {
2240 GstElement *peer_element;
2241
2242 if ((peer_element = gst_pad_get_parent_element (peer))) {
2243 GST_OBJECT_LOCK (peer_element);
2244 /* check that we don't go outside of this bin */
2245 if (GST_OBJECT_CAST (peer_element)->parent ==
2246 GST_OBJECT_CAST (bit->bin)) {
2247 gint old_deg, new_deg;
2248
2249 old_deg = HASH_GET_DEGREE (bit, peer_element);
2250
2251 /* check to see if we added an element as sink that was not really a
2252 * sink because it was connected to some other element. */
2253 if (old_deg == -1) {
2254 remove_from_queue (bit, peer_element);
2255 old_deg = 0;
2256 }
2257 new_deg = old_deg + bit->mode;
2258
2259 GST_DEBUG_OBJECT (bit->bin,
2260 "change element %s, degree %d->%d, linked to %s",
2261 GST_ELEMENT_NAME (peer_element), old_deg, new_deg,
2262 GST_ELEMENT_NAME (element));
2263
2264 /* update degree, it is possible that an element was in 0 and
2265 * reaches -1 here. This would mean that the element had no sinkpads
2266 * but became linked while the state change was happening. We will
2267 * resync on this with the structure change message. */
2268 if (new_deg == 0) {
2269 /* degree hit 0, add to queue */
2270 add_to_queue (bit, peer_element);
2271 } else {
2272 HASH_SET_DEGREE (bit, peer_element, new_deg);
2273 }
2274 linked = TRUE;
2275 }
2276 GST_OBJECT_UNLOCK (peer_element);
2277 gst_object_unref (peer_element);
2278 }
2279 gst_object_unref (peer);
2280 }
2281 }
2282 }
2283 if (!linked) {
2284 GST_DEBUG_OBJECT (bit->bin, "element %s not linked on any sinkpads",
2285 GST_ELEMENT_NAME (element));
2286 }
2287 GST_OBJECT_UNLOCK (element);
2288 }
2289
2290 /* find the next best element not handled yet. This is the one
2291 * with the lowest non-negative degree */
2292 static void
find_element(GstElement * element,GstBinSortIterator * bit)2293 find_element (GstElement * element, GstBinSortIterator * bit)
2294 {
2295 gint degree;
2296
2297 /* element is already handled */
2298 if ((degree = HASH_GET_DEGREE (bit, element)) < 0)
2299 return;
2300
2301 /* first element or element with smaller degree */
2302 if (bit->best == NULL || bit->best_deg > degree) {
2303 bit->best = element;
2304 bit->best_deg = degree;
2305 } else if (bit->best_deg == degree
2306 && GST_OBJECT_FLAG_IS_SET (bit->best, GST_ELEMENT_FLAG_SOURCE)
2307 && !GST_OBJECT_FLAG_IS_SET (element, GST_ELEMENT_FLAG_SOURCE)) {
2308 /* If two elements have the same degree, we want to ensure we
2309 * return non-source elements first. */
2310 bit->best = element;
2311 }
2312 }
2313
2314 /* get next element in iterator. */
2315 static GstIteratorResult
gst_bin_sort_iterator_next(GstBinSortIterator * bit,GValue * result)2316 gst_bin_sort_iterator_next (GstBinSortIterator * bit, GValue * result)
2317 {
2318 GstElement *best;
2319 GstBin *bin = bit->bin;
2320
2321 /* empty queue, we have to find a next best element */
2322 if (g_queue_is_empty (&bit->queue)) {
2323 bit->best = NULL;
2324 bit->best_deg = G_MAXINT;
2325 g_list_foreach (bin->children, (GFunc) find_element, bit);
2326 if ((best = bit->best)) {
2327 /* when we detected an unlink, don't warn because our degrees might be
2328 * screwed up. We will resync later */
2329 if (bit->best_deg != 0 && !bit->dirty) {
2330 /* we don't fail on this one yet */
2331 GST_WARNING_OBJECT (bin, "loop dected in graph");
2332 g_warning ("loop detected in the graph of bin '%s'!!",
2333 GST_ELEMENT_NAME (bin));
2334 }
2335 /* best unhandled element, schedule as next element */
2336 GST_DEBUG_OBJECT (bin, "queue empty, next best: %s",
2337 GST_ELEMENT_NAME (best));
2338 HASH_SET_DEGREE (bit, best, -1);
2339 g_value_set_object (result, best);
2340 } else {
2341 GST_DEBUG_OBJECT (bin, "queue empty, elements exhausted");
2342 /* no more unhandled elements, we are done */
2343 return GST_ITERATOR_DONE;
2344 }
2345 } else {
2346 /* everything added to the queue got reffed */
2347 best = g_queue_pop_head (&bit->queue);
2348 g_value_set_object (result, best);
2349 gst_object_unref (best);
2350 }
2351
2352 GST_DEBUG_OBJECT (bin, "queue head gives %s", GST_ELEMENT_NAME (best));
2353 /* update degrees of linked elements */
2354 update_degree (best, bit);
2355
2356 return GST_ITERATOR_OK;
2357 }
2358
2359 /* clear queues, recalculate the degrees and restart. */
2360 static void
gst_bin_sort_iterator_resync(GstBinSortIterator * bit)2361 gst_bin_sort_iterator_resync (GstBinSortIterator * bit)
2362 {
2363 GstBin *bin = bit->bin;
2364
2365 GST_DEBUG_OBJECT (bin, "resync");
2366 bit->dirty = FALSE;
2367 clear_queue (&bit->queue);
2368 /* reset degrees */
2369 g_list_foreach (bin->children, (GFunc) reset_degree, bit);
2370 /* calc degrees, incrementing */
2371 bit->mode = 1;
2372 g_list_foreach (bin->children, (GFunc) update_degree, bit);
2373 /* for the rest of the function we decrement the degrees */
2374 bit->mode = -1;
2375 }
2376
2377 /* clear queues, unref bin and free iterator. */
2378 static void
gst_bin_sort_iterator_free(GstBinSortIterator * bit)2379 gst_bin_sort_iterator_free (GstBinSortIterator * bit)
2380 {
2381 GstBin *bin = bit->bin;
2382
2383 GST_DEBUG_OBJECT (bin, "free");
2384 clear_queue (&bit->queue);
2385 g_hash_table_destroy (bit->hash);
2386 gst_object_unref (bin);
2387 }
2388
2389 /* should be called with the bin LOCK held */
2390 static GstIterator *
gst_bin_sort_iterator_new(GstBin * bin)2391 gst_bin_sort_iterator_new (GstBin * bin)
2392 {
2393 GstBinSortIterator *result;
2394
2395 /* we don't need an ItemFunction because we ref the items in the _next
2396 * method already */
2397 result = (GstBinSortIterator *)
2398 gst_iterator_new (sizeof (GstBinSortIterator),
2399 GST_TYPE_ELEMENT,
2400 GST_OBJECT_GET_LOCK (bin),
2401 &bin->priv->structure_cookie,
2402 (GstIteratorCopyFunction) gst_bin_sort_iterator_copy,
2403 (GstIteratorNextFunction) gst_bin_sort_iterator_next,
2404 (GstIteratorItemFunction) NULL,
2405 (GstIteratorResyncFunction) gst_bin_sort_iterator_resync,
2406 (GstIteratorFreeFunction) gst_bin_sort_iterator_free);
2407 g_queue_init (&result->queue);
2408 result->hash = g_hash_table_new (NULL, NULL);
2409 gst_object_ref (bin);
2410 result->bin = bin;
2411 gst_bin_sort_iterator_resync (result);
2412
2413 return (GstIterator *) result;
2414 }
2415
2416 /**
2417 * gst_bin_iterate_sorted:
2418 * @bin: a #GstBin
2419 *
2420 * Gets an iterator for the elements in this bin in topologically
2421 * sorted order. This means that the elements are returned from
2422 * the most downstream elements (sinks) to the sources.
2423 *
2424 * This function is used internally to perform the state changes
2425 * of the bin elements and for clock selection.
2426 *
2427 * Returns: (transfer full) (nullable): a #GstIterator of #GstElement
2428 */
2429 GstIterator *
gst_bin_iterate_sorted(GstBin * bin)2430 gst_bin_iterate_sorted (GstBin * bin)
2431 {
2432 GstIterator *result;
2433
2434 g_return_val_if_fail (GST_IS_BIN (bin), NULL);
2435
2436 GST_OBJECT_LOCK (bin);
2437 result = gst_bin_sort_iterator_new (bin);
2438 GST_OBJECT_UNLOCK (bin);
2439
2440 return result;
2441 }
2442
2443 static GstStateChangeReturn
gst_bin_element_set_state(GstBin * bin,GstElement * element,GstClockTime base_time,GstClockTime start_time,GstState current,GstState next)2444 gst_bin_element_set_state (GstBin * bin, GstElement * element,
2445 GstClockTime base_time, GstClockTime start_time, GstState current,
2446 GstState next)
2447 {
2448 GstStateChangeReturn ret;
2449 GstState child_current, child_pending;
2450 gboolean locked;
2451 GList *found;
2452
2453 GST_STATE_LOCK (element);
2454
2455 GST_OBJECT_LOCK (element);
2456 /* set base_time and start time on child */
2457 GST_ELEMENT_START_TIME (element) = start_time;
2458 element->base_time = base_time;
2459 /* peel off the locked flag */
2460 locked = GST_ELEMENT_IS_LOCKED_STATE (element);
2461 /* Get the previous set_state result to preserve NO_PREROLL and ASYNC */
2462 ret = GST_STATE_RETURN (element);
2463 child_current = GST_STATE (element);
2464 child_pending = GST_STATE_PENDING (element);
2465 GST_OBJECT_UNLOCK (element);
2466
2467 /* skip locked elements */
2468 if (G_UNLIKELY (locked))
2469 goto locked;
2470
2471 /* if the element was no preroll, just start changing the state regardless
2472 * if it had async elements (in the case of a bin) because they won't preroll
2473 * anyway. */
2474 if (G_UNLIKELY (ret == GST_STATE_CHANGE_NO_PREROLL)) {
2475 GST_DEBUG_OBJECT (element, "element is NO_PREROLL, ignore async elements");
2476 goto no_preroll;
2477 }
2478
2479 GST_CAT_INFO_OBJECT (GST_CAT_STATES, element,
2480 "current %s pending %s, desired next %s",
2481 gst_element_state_get_name (child_current),
2482 gst_element_state_get_name (child_pending),
2483 gst_element_state_get_name (next));
2484
2485 /* always recurse into bins so that we can set the base time */
2486 if (GST_IS_BIN (element))
2487 goto do_state;
2488
2489 /* Try not to change the state of elements that are already in the state we're
2490 * going to */
2491 if (child_current == next && child_pending == GST_STATE_VOID_PENDING) {
2492 /* child is already at the requested state, return previous return. Note that
2493 * if the child has a pending state to next, we will still call the
2494 * set_state function */
2495 goto unneeded;
2496 } else if (next > current) {
2497 /* upward state change */
2498 if (child_pending == GST_STATE_VOID_PENDING) {
2499 /* .. and the child is not busy doing anything */
2500 if (child_current > next) {
2501 /* .. and is already past the requested state, assume it got there
2502 * without error */
2503 ret = GST_STATE_CHANGE_SUCCESS;
2504 goto unneeded;
2505 }
2506 } else if (child_pending > child_current) {
2507 /* .. and the child is busy going upwards */
2508 if (child_current >= next) {
2509 /* .. and is already past the requested state, assume it got there
2510 * without error */
2511 ret = GST_STATE_CHANGE_SUCCESS;
2512 goto unneeded;
2513 }
2514 } else {
2515 /* .. and the child is busy going downwards */
2516 if (child_current > next) {
2517 /* .. and is already past the requested state, assume it got there
2518 * without error */
2519 ret = GST_STATE_CHANGE_SUCCESS;
2520 goto unneeded;
2521 }
2522 }
2523 } else if (next < current) {
2524 /* downward state change */
2525 if (child_pending == GST_STATE_VOID_PENDING) {
2526 /* .. and the child is not busy doing anything */
2527 if (child_current < next) {
2528 /* .. and is already past the requested state, assume it got there
2529 * without error */
2530 ret = GST_STATE_CHANGE_SUCCESS;
2531 goto unneeded;
2532 }
2533 } else if (child_pending < child_current) {
2534 /* .. and the child is busy going downwards */
2535 if (child_current <= next) {
2536 /* .. and is already past the requested state, assume it got there
2537 * without error */
2538 ret = GST_STATE_CHANGE_SUCCESS;
2539 goto unneeded;
2540 }
2541 } else {
2542 /* .. and the child is busy going upwards */
2543 if (child_current < next) {
2544 /* .. and is already past the requested state, assume it got there
2545 * without error */
2546 ret = GST_STATE_CHANGE_SUCCESS;
2547 goto unneeded;
2548 }
2549 }
2550 }
2551
2552 do_state:
2553 GST_OBJECT_LOCK (bin);
2554 /* the element was busy with an upwards async state change, we must wait for
2555 * an ASYNC_DONE message before we attempt to change the state. */
2556 if ((found =
2557 find_message (bin, GST_OBJECT_CAST (element),
2558 GST_MESSAGE_ASYNC_START))) {
2559 #ifndef GST_DISABLE_GST_DEBUG
2560 GstMessage *message = GST_MESSAGE_CAST (found->data);
2561
2562 GST_DEBUG_OBJECT (element, "element message %p, %s async busy",
2563 message, GST_ELEMENT_NAME (GST_MESSAGE_SRC (message)));
2564 #endif
2565 /* only wait for upward state changes */
2566 if (next > current) {
2567 /* We found an async element check if we can force its state to change or
2568 * if we have to wait for it to preroll. */
2569 goto was_busy;
2570 }
2571 }
2572 GST_OBJECT_UNLOCK (bin);
2573
2574 no_preroll:
2575 GST_DEBUG_OBJECT (bin,
2576 "setting element %s to %s, base_time %" GST_TIME_FORMAT,
2577 GST_ELEMENT_NAME (element), gst_element_state_get_name (next),
2578 GST_TIME_ARGS (base_time));
2579
2580 /* change state */
2581 ret = gst_element_set_state (element, next);
2582
2583 GST_STATE_UNLOCK (element);
2584
2585 return ret;
2586
2587 locked:
2588 {
2589 GST_DEBUG_OBJECT (element,
2590 "element is locked, return previous return %s",
2591 gst_element_state_change_return_get_name (ret));
2592 GST_STATE_UNLOCK (element);
2593 return ret;
2594 }
2595 unneeded:
2596 {
2597 GST_CAT_INFO_OBJECT (GST_CAT_STATES, element,
2598 "skipping transition from %s to %s",
2599 gst_element_state_get_name (child_current),
2600 gst_element_state_get_name (next));
2601 GST_STATE_UNLOCK (element);
2602 return ret;
2603 }
2604 was_busy:
2605 {
2606 GST_DEBUG_OBJECT (element, "element was busy, delaying state change");
2607 GST_OBJECT_UNLOCK (bin);
2608 GST_STATE_UNLOCK (element);
2609 return GST_STATE_CHANGE_ASYNC;
2610 }
2611 }
2612
2613 /* gst_iterator_fold functions for pads_activate
2614 * Stop the iterator if activating one pad failed, but only if that pad
2615 * has not been removed from the element. */
2616 static gboolean
activate_pads(const GValue * vpad,GValue * ret,gboolean * active)2617 activate_pads (const GValue * vpad, GValue * ret, gboolean * active)
2618 {
2619 GstPad *pad = g_value_get_object (vpad);
2620 gboolean cont = TRUE;
2621
2622 if (!gst_pad_set_active (pad, *active)) {
2623 if (GST_PAD_PARENT (pad) != NULL) {
2624 cont = FALSE;
2625 g_value_set_boolean (ret, FALSE);
2626 }
2627 }
2628
2629 return cont;
2630 }
2631
2632 /* returns false on error or early cutout of the fold, true if all
2633 * pads in @iter were (de)activated successfully. */
2634 static gboolean
iterator_activate_fold_with_resync(GstIterator * iter,gpointer user_data)2635 iterator_activate_fold_with_resync (GstIterator * iter, gpointer user_data)
2636 {
2637 GstIteratorResult ires;
2638 GValue ret = { 0 };
2639
2640 /* no need to unset this later, it's just a boolean */
2641 g_value_init (&ret, G_TYPE_BOOLEAN);
2642 g_value_set_boolean (&ret, TRUE);
2643
2644 while (1) {
2645 ires = gst_iterator_fold (iter, (GstIteratorFoldFunction) activate_pads,
2646 &ret, user_data);
2647 switch (ires) {
2648 case GST_ITERATOR_RESYNC:
2649 /* need to reset the result again */
2650 g_value_set_boolean (&ret, TRUE);
2651 gst_iterator_resync (iter);
2652 break;
2653 case GST_ITERATOR_DONE:
2654 /* all pads iterated, return collected value */
2655 goto done;
2656 default:
2657 /* iterator returned _ERROR or premature end with _OK,
2658 * mark an error and exit */
2659 g_value_set_boolean (&ret, FALSE);
2660 goto done;
2661 }
2662 }
2663 done:
2664 /* return collected value */
2665 return g_value_get_boolean (&ret);
2666 }
2667
2668 /* is called with STATE_LOCK
2669 */
2670 static gboolean
gst_bin_src_pads_activate(GstBin * bin,gboolean active)2671 gst_bin_src_pads_activate (GstBin * bin, gboolean active)
2672 {
2673 GstIterator *iter;
2674 gboolean fold_ok;
2675
2676 GST_DEBUG_OBJECT (bin, "%s pads", active ? "activate" : "deactivate");
2677
2678 iter = gst_element_iterate_src_pads ((GstElement *) bin);
2679 fold_ok = iterator_activate_fold_with_resync (iter, &active);
2680 gst_iterator_free (iter);
2681 if (G_UNLIKELY (!fold_ok))
2682 goto failed;
2683
2684 GST_DEBUG_OBJECT (bin, "pad %sactivation successful", active ? "" : "de");
2685
2686 return TRUE;
2687
2688 /* ERRORS */
2689 failed:
2690 {
2691 GST_DEBUG_OBJECT (bin, "pad %sactivation failed", active ? "" : "de");
2692 return FALSE;
2693 }
2694 }
2695
2696 /**
2697 * gst_bin_recalculate_latency:
2698 * @bin: a #GstBin
2699 *
2700 * Queries @bin for the current latency and reconfigures this latency on all the
2701 * elements using a LATENCY event.
2702 *
2703 * This method is typically called on the pipeline when a #GST_MESSAGE_LATENCY
2704 * is posted on the bus.
2705 *
2706 * This function simply emits the #GstBin::do-latency signal so any custom latency
2707 * calculations will be performed.
2708 *
2709 * Returns: %TRUE if the latency could be queried and reconfigured.
2710 */
2711 gboolean
gst_bin_recalculate_latency(GstBin * bin)2712 gst_bin_recalculate_latency (GstBin * bin)
2713 {
2714 gboolean res;
2715
2716 g_signal_emit (bin, gst_bin_signals[DO_LATENCY], 0, &res);
2717 GST_DEBUG_OBJECT (bin, "latency returned %d", res);
2718
2719 return res;
2720 }
2721
2722 static gboolean
gst_bin_do_latency_func(GstBin * bin)2723 gst_bin_do_latency_func (GstBin * bin)
2724 {
2725 GstQuery *query;
2726 GstElement *element;
2727 GstClockTime min_latency, max_latency;
2728 gboolean res;
2729
2730 g_return_val_if_fail (GST_IS_BIN (bin), FALSE);
2731
2732 element = GST_ELEMENT_CAST (bin);
2733
2734 GST_DEBUG_OBJECT (element, "querying latency");
2735
2736 query = gst_query_new_latency ();
2737 if ((res = gst_element_query (element, query))) {
2738 gboolean live;
2739
2740 gst_query_parse_latency (query, &live, &min_latency, &max_latency);
2741
2742 GST_DEBUG_OBJECT (element,
2743 "got min latency %" GST_TIME_FORMAT ", max latency %"
2744 GST_TIME_FORMAT ", live %d", GST_TIME_ARGS (min_latency),
2745 GST_TIME_ARGS (max_latency), live);
2746
2747 if (max_latency < min_latency) {
2748 /* this is an impossible situation, some parts of the pipeline might not
2749 * work correctly. We post a warning for now. */
2750 GST_ELEMENT_WARNING (element, CORE, CLOCK, (NULL),
2751 ("Impossible to configure latency: max %" GST_TIME_FORMAT " < min %"
2752 GST_TIME_FORMAT ". Add queues or other buffering elements.",
2753 GST_TIME_ARGS (max_latency), GST_TIME_ARGS (min_latency)));
2754 }
2755
2756 /* configure latency on elements */
2757 res = gst_element_send_event (element, gst_event_new_latency (min_latency));
2758 if (res) {
2759 GST_INFO_OBJECT (element, "configured latency of %" GST_TIME_FORMAT,
2760 GST_TIME_ARGS (min_latency));
2761 } else {
2762 GST_WARNING_OBJECT (element,
2763 "did not really configure latency of %" GST_TIME_FORMAT,
2764 GST_TIME_ARGS (min_latency));
2765 }
2766 } else {
2767 /* this is not a real problem, we just don't configure any latency. */
2768 GST_WARNING_OBJECT (element, "failed to query latency");
2769 }
2770 gst_query_unref (query);
2771
2772 return res;
2773 }
2774
2775 static gboolean
gst_bin_post_message(GstElement * element,GstMessage * msg)2776 gst_bin_post_message (GstElement * element, GstMessage * msg)
2777 {
2778 GstElementClass *pklass = (GstElementClass *) parent_class;
2779 gboolean ret;
2780
2781 ret = pklass->post_message (element, gst_message_ref (msg));
2782
2783 if (GST_MESSAGE_TYPE (msg) == GST_MESSAGE_STATE_CHANGED &&
2784 GST_MESSAGE_SRC (msg) == GST_OBJECT_CAST (element)) {
2785 GstState newstate, pending;
2786
2787 gst_message_parse_state_changed (msg, NULL, &newstate, &pending);
2788 if (newstate == GST_STATE_PLAYING && pending == GST_STATE_VOID_PENDING) {
2789 GST_BIN_CAST (element)->priv->posted_playing = TRUE;
2790 bin_do_eos (GST_BIN_CAST (element));
2791 } else {
2792 GST_BIN_CAST (element)->priv->posted_playing = FALSE;
2793 }
2794 }
2795
2796 gst_message_unref (msg);
2797
2798 return ret;
2799 }
2800
2801 static void
reset_state(const GValue * data,gpointer user_data)2802 reset_state (const GValue * data, gpointer user_data)
2803 {
2804 GstElement *e = g_value_get_object (data);
2805 GstState state = GPOINTER_TO_INT (user_data);
2806
2807 if (gst_element_set_state (e, state) == GST_STATE_CHANGE_FAILURE)
2808 GST_WARNING_OBJECT (e, "Failed to switch back down to %s",
2809 gst_element_state_get_name (state));
2810 }
2811
2812 static GstStateChangeReturn
gst_bin_change_state_func(GstElement * element,GstStateChange transition)2813 gst_bin_change_state_func (GstElement * element, GstStateChange transition)
2814 {
2815 GstBin *bin;
2816 GstStateChangeReturn ret;
2817 GstState current, next;
2818 gboolean have_async;
2819 gboolean have_no_preroll;
2820 GstClockTime base_time, start_time;
2821 GstIterator *it;
2822 gboolean done;
2823 GValue data = { 0, };
2824
2825 /* we don't need to take the STATE_LOCK, it is already taken */
2826 current = (GstState) GST_STATE_TRANSITION_CURRENT (transition);
2827 next = (GstState) GST_STATE_TRANSITION_NEXT (transition);
2828
2829 GST_CAT_DEBUG_OBJECT (GST_CAT_STATES, element,
2830 "changing state of children from %s to %s",
2831 gst_element_state_get_name (current), gst_element_state_get_name (next));
2832
2833 bin = GST_BIN_CAST (element);
2834
2835 switch (next) {
2836 case GST_STATE_PLAYING:
2837 {
2838 gboolean toplevel, asynchandling;
2839
2840 GST_OBJECT_LOCK (bin);
2841 toplevel = BIN_IS_TOPLEVEL (bin);
2842 asynchandling = bin->priv->asynchandling;
2843 GST_OBJECT_UNLOCK (bin);
2844
2845 if (toplevel)
2846 gst_bin_recalculate_latency (bin);
2847 if (asynchandling)
2848 gst_element_post_message (element,
2849 gst_message_new_latency (GST_OBJECT_CAST (element)));
2850 break;
2851 }
2852 case GST_STATE_PAUSED:
2853 /* Clear EOS list on next PAUSED */
2854 GST_OBJECT_LOCK (bin);
2855 GST_DEBUG_OBJECT (element, "clearing EOS elements");
2856 bin_remove_messages (bin, NULL, GST_MESSAGE_EOS);
2857 bin->priv->posted_eos = FALSE;
2858 if (current == GST_STATE_READY)
2859 bin_remove_messages (bin, NULL, GST_MESSAGE_STREAM_START);
2860 GST_OBJECT_UNLOCK (bin);
2861 if (current == GST_STATE_READY)
2862 if (!(gst_bin_src_pads_activate (bin, TRUE)))
2863 goto activate_failure;
2864 break;
2865 case GST_STATE_READY:
2866 /* Clear message list on next READY */
2867 GST_OBJECT_LOCK (bin);
2868 GST_DEBUG_OBJECT (element, "clearing all cached messages");
2869 bin_remove_messages (bin, NULL, GST_MESSAGE_ANY);
2870 GST_OBJECT_UNLOCK (bin);
2871 /* We might not have reached PAUSED yet due to async errors,
2872 * make sure to always deactivate the pads nonetheless */
2873 if (!(gst_bin_src_pads_activate (bin, FALSE)))
2874 goto activate_failure;
2875 break;
2876 case GST_STATE_NULL:
2877 /* Clear message list on next NULL */
2878 GST_OBJECT_LOCK (bin);
2879 GST_DEBUG_OBJECT (element, "clearing all cached messages");
2880 bin_remove_messages (bin, NULL, GST_MESSAGE_ANY);
2881 GST_OBJECT_UNLOCK (bin);
2882 if (current == GST_STATE_READY) {
2883 if (!(gst_bin_src_pads_activate (bin, FALSE)))
2884 goto activate_failure;
2885 }
2886 break;
2887 default:
2888 break;
2889 }
2890
2891 /* this flag is used to make the async state changes return immediately. We
2892 * don't want them to interfere with this state change */
2893 GST_OBJECT_LOCK (bin);
2894 bin->polling = TRUE;
2895 GST_OBJECT_UNLOCK (bin);
2896
2897 /* iterate in state change order */
2898 it = gst_bin_iterate_sorted (bin);
2899
2900 /* mark if we've seen an ASYNC element in the bin when we did a state change.
2901 * Note how we don't reset this value when a resync happens, the reason being
2902 * that the async element posted ASYNC_START and we want to post ASYNC_DONE
2903 * even after a resync when the async element is gone */
2904 have_async = FALSE;
2905
2906 restart:
2907 /* take base_time */
2908 base_time = gst_element_get_base_time (element);
2909 start_time = gst_element_get_start_time (element);
2910
2911 have_no_preroll = FALSE;
2912
2913 done = FALSE;
2914 while (!done) {
2915 switch (gst_iterator_next (it, &data)) {
2916 case GST_ITERATOR_OK:
2917 {
2918 GstElement *child;
2919
2920 child = g_value_get_object (&data);
2921
2922 /* set state and base_time now */
2923 ret = gst_bin_element_set_state (bin, child, base_time, start_time,
2924 current, next);
2925
2926 switch (ret) {
2927 case GST_STATE_CHANGE_SUCCESS:
2928 GST_CAT_INFO_OBJECT (GST_CAT_STATES, element,
2929 "child '%s' changed state to %d(%s) successfully",
2930 GST_ELEMENT_NAME (child), next,
2931 gst_element_state_get_name (next));
2932 break;
2933 case GST_STATE_CHANGE_ASYNC:
2934 {
2935 GST_CAT_INFO_OBJECT (GST_CAT_STATES, element,
2936 "child '%s' is changing state asynchronously to %s",
2937 GST_ELEMENT_NAME (child), gst_element_state_get_name (next));
2938 have_async = TRUE;
2939 break;
2940 }
2941 case GST_STATE_CHANGE_FAILURE:{
2942 GstObject *parent;
2943
2944 GST_CAT_INFO_OBJECT (GST_CAT_STATES, element,
2945 "child '%s' failed to go to state %d(%s)",
2946 GST_ELEMENT_NAME (child),
2947 next, gst_element_state_get_name (next));
2948
2949 /* Only fail if the child is still inside
2950 * this bin. It might've been removed already
2951 * because of the error by the bin subclass
2952 * to ignore the error. */
2953 parent = gst_object_get_parent (GST_OBJECT_CAST (child));
2954 if (parent == GST_OBJECT_CAST (element)) {
2955 /* element is still in bin, really error now */
2956 gst_object_unref (parent);
2957 goto undo;
2958 }
2959 /* child removed from bin, let the resync code redo the state
2960 * change */
2961 GST_CAT_INFO_OBJECT (GST_CAT_STATES, element,
2962 "child '%s' was removed from the bin",
2963 GST_ELEMENT_NAME (child));
2964
2965 if (parent)
2966 gst_object_unref (parent);
2967
2968 break;
2969 }
2970 case GST_STATE_CHANGE_NO_PREROLL:
2971 GST_CAT_INFO_OBJECT (GST_CAT_STATES, element,
2972 "child '%s' changed state to %d(%s) successfully without preroll",
2973 GST_ELEMENT_NAME (child), next,
2974 gst_element_state_get_name (next));
2975 have_no_preroll = TRUE;
2976 break;
2977 default:
2978 g_assert_not_reached ();
2979 break;
2980 }
2981 g_value_reset (&data);
2982 break;
2983 }
2984 case GST_ITERATOR_RESYNC:
2985 GST_CAT_DEBUG_OBJECT (GST_CAT_STATES, element, "iterator doing resync");
2986 gst_iterator_resync (it);
2987 goto restart;
2988 default:
2989 case GST_ITERATOR_DONE:
2990 GST_CAT_DEBUG_OBJECT (GST_CAT_STATES, element, "iterator done");
2991 done = TRUE;
2992 break;
2993 }
2994 }
2995
2996 ret = GST_ELEMENT_CLASS (parent_class)->change_state (element, transition);
2997 if (G_UNLIKELY (ret == GST_STATE_CHANGE_FAILURE))
2998 goto done;
2999
3000 if (have_no_preroll) {
3001 GST_CAT_DEBUG_OBJECT (GST_CAT_STATES, bin,
3002 "we have NO_PREROLL elements %s -> NO_PREROLL",
3003 gst_element_state_change_return_get_name (ret));
3004 ret = GST_STATE_CHANGE_NO_PREROLL;
3005 } else if (have_async) {
3006 GST_CAT_DEBUG_OBJECT (GST_CAT_STATES, bin,
3007 "we have ASYNC elements %s -> ASYNC",
3008 gst_element_state_change_return_get_name (ret));
3009 ret = GST_STATE_CHANGE_ASYNC;
3010 }
3011
3012 done:
3013 g_value_unset (&data);
3014 gst_iterator_free (it);
3015
3016 GST_OBJECT_LOCK (bin);
3017 bin->polling = FALSE;
3018 /* it's possible that we did not get ASYNC from the children while the bin is
3019 * simulating ASYNC behaviour by posting an ASYNC_DONE message on the bus with
3020 * itself as the source. In that case we still want to check if the state
3021 * change completed. */
3022 if (ret != GST_STATE_CHANGE_ASYNC && !bin->priv->pending_async_done) {
3023 /* no element returned ASYNC and there are no pending async_done messages,
3024 * we can just complete. */
3025 GST_DEBUG_OBJECT (bin, "no async elements");
3026 goto state_end;
3027 }
3028 /* when we get here an ASYNC element was found */
3029 if (GST_STATE_TARGET (bin) <= GST_STATE_READY) {
3030 /* we ignore ASYNC state changes when we go to READY or NULL */
3031 GST_DEBUG_OBJECT (bin, "target state %s <= READY",
3032 gst_element_state_get_name (GST_STATE_TARGET (bin)));
3033 goto state_end;
3034 }
3035
3036 GST_DEBUG_OBJECT (bin, "check async elements");
3037 /* check if all elements managed to commit their state already */
3038 if (!find_message (bin, NULL, GST_MESSAGE_ASYNC_START)) {
3039 /* nothing found, remove all old ASYNC_DONE messages. This can happen when
3040 * all the elements committed their state while we were doing the state
3041 * change. We will still return ASYNC for consistency but we commit the
3042 * state already so that a _get_state() will return immediately. */
3043 bin_remove_messages (bin, NULL, GST_MESSAGE_ASYNC_DONE);
3044
3045 GST_DEBUG_OBJECT (bin, "async elements committed");
3046 bin_handle_async_done (bin, GST_STATE_CHANGE_SUCCESS, FALSE,
3047 GST_CLOCK_TIME_NONE);
3048 }
3049
3050 state_end:
3051 bin->priv->pending_async_done = FALSE;
3052 GST_OBJECT_UNLOCK (bin);
3053
3054 GST_CAT_DEBUG_OBJECT (GST_CAT_STATES, element,
3055 "done changing bin's state from %s to %s, now in %s, ret %s",
3056 gst_element_state_get_name (current),
3057 gst_element_state_get_name (next),
3058 gst_element_state_get_name (GST_STATE (element)),
3059 gst_element_state_change_return_get_name (ret));
3060
3061 return ret;
3062
3063 /* ERRORS */
3064 activate_failure:
3065 {
3066 GST_CAT_WARNING_OBJECT (GST_CAT_STATES, element,
3067 "failure (de)activating src pads");
3068 return GST_STATE_CHANGE_FAILURE;
3069 }
3070
3071 undo:
3072 {
3073 if (current < next) {
3074 GstIterator *it = gst_bin_iterate_sorted (GST_BIN (element));
3075 GstIteratorResult ret;
3076
3077 GST_DEBUG_OBJECT (element,
3078 "Bin failed to change state, switching children back to %s",
3079 gst_element_state_get_name (current));
3080 while (TRUE) {
3081 ret =
3082 gst_iterator_foreach (it, &reset_state, GINT_TO_POINTER (current));
3083 if (ret != GST_ITERATOR_RESYNC)
3084 break;
3085 gst_iterator_resync (it);
3086 }
3087 gst_iterator_free (it);
3088 }
3089 goto done;
3090 }
3091 }
3092
3093 /*
3094 * This function is a utility event handler. It will send the event to all sinks
3095 * or sources and appropriate ghost pads depending on the event-direction.
3096 *
3097 * Applications are free to override this behaviour and implement their own
3098 * handler, but this will work for pretty much all cases in practice.
3099 */
3100 static gboolean
gst_bin_send_event(GstElement * element,GstEvent * event)3101 gst_bin_send_event (GstElement * element, GstEvent * event)
3102 {
3103 GstBin *bin = GST_BIN_CAST (element);
3104 GstIterator *iter;
3105 gboolean res = TRUE;
3106 gboolean done = FALSE;
3107 GValue data = { 0, };
3108
3109 if (GST_EVENT_IS_DOWNSTREAM (event)) {
3110 iter = gst_bin_iterate_sources (bin);
3111 GST_DEBUG_OBJECT (bin, "Sending %s event to src children",
3112 GST_EVENT_TYPE_NAME (event));
3113 } else {
3114 iter = gst_bin_iterate_sinks (bin);
3115 GST_DEBUG_OBJECT (bin, "Sending %s event to sink children",
3116 GST_EVENT_TYPE_NAME (event));
3117 }
3118
3119 while (!done) {
3120 switch (gst_iterator_next (iter, &data)) {
3121 case GST_ITERATOR_OK:
3122 {
3123 GstElement *child = g_value_get_object (&data);
3124
3125 gst_event_ref (event);
3126 res &= gst_element_send_event (child, event);
3127
3128 GST_LOG_OBJECT (child, "After handling %s event: %d",
3129 GST_EVENT_TYPE_NAME (event), res);
3130
3131 g_value_reset (&data);
3132 break;
3133 }
3134 case GST_ITERATOR_RESYNC:
3135 gst_iterator_resync (iter);
3136 res = TRUE;
3137 break;
3138 case GST_ITERATOR_DONE:
3139 done = TRUE;
3140 break;
3141 case GST_ITERATOR_ERROR:
3142 g_assert_not_reached ();
3143 break;
3144 }
3145 }
3146 g_value_unset (&data);
3147 gst_iterator_free (iter);
3148
3149 if (GST_EVENT_IS_DOWNSTREAM (event)) {
3150 iter = gst_element_iterate_sink_pads (GST_ELEMENT (bin));
3151 GST_DEBUG_OBJECT (bin, "Sending %s event to sink pads",
3152 GST_EVENT_TYPE_NAME (event));
3153 } else {
3154 iter = gst_element_iterate_src_pads (GST_ELEMENT (bin));
3155 GST_DEBUG_OBJECT (bin, "Sending %s event to src pads",
3156 GST_EVENT_TYPE_NAME (event));
3157 }
3158
3159 done = FALSE;
3160 while (!done) {
3161 switch (gst_iterator_next (iter, &data)) {
3162 case GST_ITERATOR_OK:
3163 {
3164 GstPad *pad = g_value_get_object (&data);
3165
3166 gst_event_ref (event);
3167 res &= gst_pad_send_event (pad, event);
3168 GST_LOG_OBJECT (pad, "After handling %s event: %d",
3169 GST_EVENT_TYPE_NAME (event), res);
3170 break;
3171 }
3172 case GST_ITERATOR_RESYNC:
3173 gst_iterator_resync (iter);
3174 res = TRUE;
3175 break;
3176 case GST_ITERATOR_DONE:
3177 done = TRUE;
3178 break;
3179 case GST_ITERATOR_ERROR:
3180 g_assert_not_reached ();
3181 break;
3182 }
3183 }
3184
3185 g_value_unset (&data);
3186 gst_iterator_free (iter);
3187 gst_event_unref (event);
3188
3189 return res;
3190 }
3191
3192 /* this is the function called by the threadpool. When async elements commit
3193 * their state, this function will attempt to bring the bin to the next state.
3194 */
3195 static void
gst_bin_continue_func(GstBin * bin,BinContinueData * data)3196 gst_bin_continue_func (GstBin * bin, BinContinueData * data)
3197 {
3198 GstState current, next, pending;
3199 GstStateChange transition;
3200
3201 pending = data->pending;
3202
3203 GST_DEBUG_OBJECT (bin, "waiting for state lock");
3204 GST_STATE_LOCK (bin);
3205
3206 GST_DEBUG_OBJECT (bin, "doing state continue");
3207 GST_OBJECT_LOCK (bin);
3208
3209 /* if a new state change happened after this thread was scheduled, we return
3210 * immediately. */
3211 if (data->cookie != GST_ELEMENT_CAST (bin)->state_cookie)
3212 goto interrupted;
3213
3214 current = GST_STATE (bin);
3215 next = GST_STATE_GET_NEXT (current, pending);
3216 transition = (GstStateChange) GST_STATE_TRANSITION (current, next);
3217
3218 GST_STATE_NEXT (bin) = next;
3219 GST_STATE_PENDING (bin) = pending;
3220 /* mark busy */
3221 GST_STATE_RETURN (bin) = GST_STATE_CHANGE_ASYNC;
3222 GST_OBJECT_UNLOCK (bin);
3223
3224 GST_CAT_INFO_OBJECT (GST_CAT_STATES, bin,
3225 "continue state change %s to %s, final %s",
3226 gst_element_state_get_name (current),
3227 gst_element_state_get_name (next), gst_element_state_get_name (pending));
3228
3229 gst_element_change_state (GST_ELEMENT_CAST (bin), transition);
3230
3231 GST_STATE_UNLOCK (bin);
3232 GST_DEBUG_OBJECT (bin, "state continue done");
3233
3234 return;
3235
3236 interrupted:
3237 {
3238 GST_OBJECT_UNLOCK (bin);
3239 GST_STATE_UNLOCK (bin);
3240 GST_DEBUG_OBJECT (bin, "state continue aborted due to intervening change");
3241 return;
3242 }
3243 }
3244
3245 static GstBusSyncReply
bin_bus_handler(GstBus * bus,GstMessage * message,GstBin * bin)3246 bin_bus_handler (GstBus * bus, GstMessage * message, GstBin * bin)
3247 {
3248 GstBinClass *bclass;
3249
3250 bclass = GST_BIN_GET_CLASS (bin);
3251 if (bclass->handle_message)
3252 bclass->handle_message (bin, message);
3253 else
3254 gst_message_unref (message);
3255
3256 return GST_BUS_DROP;
3257 }
3258
3259 static void
free_bin_continue_data(BinContinueData * data)3260 free_bin_continue_data (BinContinueData * data)
3261 {
3262 g_slice_free (BinContinueData, data);
3263 }
3264
3265 static void
bin_push_state_continue(GstBin * bin,BinContinueData * data)3266 bin_push_state_continue (GstBin * bin, BinContinueData * data)
3267 {
3268 GST_DEBUG_OBJECT (bin, "pushing continue on thread pool");
3269 gst_element_call_async (GST_ELEMENT_CAST (bin),
3270 (GstElementCallAsyncFunc) gst_bin_continue_func, data,
3271 (GDestroyNotify) free_bin_continue_data);
3272 }
3273
3274 /* an element started an async state change, if we were not busy with a state
3275 * change, we perform a lost state.
3276 * This function is called with the OBJECT lock.
3277 */
3278 static void
bin_handle_async_start(GstBin * bin)3279 bin_handle_async_start (GstBin * bin)
3280 {
3281 GstState old_state, new_state;
3282 gboolean toplevel;
3283 GstMessage *amessage = NULL;
3284
3285 if (GST_STATE_RETURN (bin) == GST_STATE_CHANGE_FAILURE)
3286 goto had_error;
3287
3288 /* get our toplevel state */
3289 toplevel = BIN_IS_TOPLEVEL (bin);
3290
3291 /* prepare an ASYNC_START message, we always post the start message even if we
3292 * are busy with a state change or when we are NO_PREROLL. */
3293 if (!toplevel)
3294 /* non toplevel bin, prepare async-start for the parent */
3295 amessage = gst_message_new_async_start (GST_OBJECT_CAST (bin));
3296
3297 if (bin->polling || GST_STATE_PENDING (bin) != GST_STATE_VOID_PENDING)
3298 goto was_busy;
3299
3300 /* async starts are ignored when we are NO_PREROLL */
3301 if (GST_STATE_RETURN (bin) == GST_STATE_CHANGE_NO_PREROLL)
3302 goto was_no_preroll;
3303
3304 old_state = GST_STATE (bin);
3305
3306 /* when we PLAYING we go back to PAUSED, when preroll happens, we go back to
3307 * PLAYING after optionally redistributing the base_time. */
3308 if (old_state > GST_STATE_PAUSED)
3309 new_state = GST_STATE_PAUSED;
3310 else
3311 new_state = old_state;
3312
3313 GST_CAT_DEBUG_OBJECT (GST_CAT_STATES, bin,
3314 "lost state of %s, new %s", gst_element_state_get_name (old_state),
3315 gst_element_state_get_name (new_state));
3316
3317 GST_STATE (bin) = new_state;
3318 GST_STATE_NEXT (bin) = new_state;
3319 GST_STATE_PENDING (bin) = new_state;
3320 GST_STATE_RETURN (bin) = GST_STATE_CHANGE_ASYNC;
3321 GST_OBJECT_UNLOCK (bin);
3322
3323 /* post message */
3324 _priv_gst_element_state_changed (GST_ELEMENT_CAST (bin), new_state, new_state,
3325 new_state);
3326
3327 post_start:
3328 if (amessage) {
3329 /* post our ASYNC_START. */
3330 GST_DEBUG_OBJECT (bin, "posting ASYNC_START to parent");
3331 gst_element_post_message (GST_ELEMENT_CAST (bin), amessage);
3332 }
3333 GST_OBJECT_LOCK (bin);
3334
3335 return;
3336
3337 had_error:
3338 {
3339 GST_CAT_DEBUG_OBJECT (GST_CAT_STATES, bin, "we had an error");
3340 return;
3341 }
3342 was_busy:
3343 {
3344 GST_CAT_DEBUG_OBJECT (GST_CAT_STATES, bin, "state change busy");
3345 GST_OBJECT_UNLOCK (bin);
3346 goto post_start;
3347 }
3348 was_no_preroll:
3349 {
3350 GST_CAT_DEBUG_OBJECT (GST_CAT_STATES, bin, "ignoring, we are NO_PREROLL");
3351 GST_OBJECT_UNLOCK (bin);
3352 goto post_start;
3353 }
3354 }
3355
3356 /* this function is called when there are no more async elements in the bin. We
3357 * post a state changed message and an ASYNC_DONE message.
3358 * This function is called with the OBJECT lock.
3359 */
3360 static void
bin_handle_async_done(GstBin * bin,GstStateChangeReturn ret,gboolean flag_pending,GstClockTime running_time)3361 bin_handle_async_done (GstBin * bin, GstStateChangeReturn ret,
3362 gboolean flag_pending, GstClockTime running_time)
3363 {
3364 GstState current, pending, target;
3365 GstStateChangeReturn old_ret;
3366 GstState old_state, old_next;
3367 gboolean toplevel, state_changed = FALSE;
3368 GstMessage *amessage = NULL;
3369 BinContinueData *cont = NULL;
3370
3371 if (GST_STATE_RETURN (bin) == GST_STATE_CHANGE_FAILURE)
3372 goto had_error;
3373
3374 pending = GST_STATE_PENDING (bin);
3375
3376 if (bin->polling)
3377 goto was_busy;
3378
3379 /* check if there is something to commit */
3380 if (pending == GST_STATE_VOID_PENDING)
3381 goto nothing_pending;
3382
3383 old_ret = GST_STATE_RETURN (bin);
3384 GST_STATE_RETURN (bin) = ret;
3385
3386 /* move to the next target state */
3387 target = GST_STATE_TARGET (bin);
3388 pending = GST_STATE_PENDING (bin) = target;
3389
3390 amessage = gst_message_new_async_done (GST_OBJECT_CAST (bin), running_time);
3391
3392 old_state = GST_STATE (bin);
3393 /* this is the state we should go to next */
3394 old_next = GST_STATE_NEXT (bin);
3395
3396 if (old_next != GST_STATE_PLAYING) {
3397 GST_CAT_INFO_OBJECT (GST_CAT_STATES, bin,
3398 "committing state from %s to %s, old pending %s",
3399 gst_element_state_get_name (old_state),
3400 gst_element_state_get_name (old_next),
3401 gst_element_state_get_name (pending));
3402
3403 /* update current state */
3404 current = GST_STATE (bin) = old_next;
3405 } else {
3406 GST_CAT_INFO_OBJECT (GST_CAT_STATES, bin,
3407 "setting state from %s to %s, pending %s",
3408 gst_element_state_get_name (old_state),
3409 gst_element_state_get_name (old_state),
3410 gst_element_state_get_name (pending));
3411 current = old_state;
3412 }
3413
3414 /* get our toplevel state */
3415 toplevel = BIN_IS_TOPLEVEL (bin);
3416
3417 /* see if we reached the final state. If we are not toplevel, we also have to
3418 * stop here, the parent will continue our state. */
3419 if ((pending == current) || !toplevel) {
3420 GST_CAT_INFO_OBJECT (GST_CAT_STATES, bin,
3421 "completed state change, pending VOID");
3422
3423 /* mark VOID pending */
3424 pending = GST_STATE_VOID_PENDING;
3425 GST_STATE_PENDING (bin) = pending;
3426 GST_STATE_NEXT (bin) = GST_STATE_VOID_PENDING;
3427 } else {
3428 GST_CAT_INFO_OBJECT (GST_CAT_STATES, bin,
3429 "continue state change, pending %s",
3430 gst_element_state_get_name (pending));
3431
3432 cont = g_slice_new (BinContinueData);
3433
3434 /* cookie to detect concurrent state change */
3435 cont->cookie = GST_ELEMENT_CAST (bin)->state_cookie;
3436 /* pending target state */
3437 cont->pending = pending;
3438 /* mark busy */
3439 GST_STATE_RETURN (bin) = GST_STATE_CHANGE_ASYNC;
3440 GST_STATE_NEXT (bin) = GST_STATE_GET_NEXT (old_state, pending);
3441 }
3442
3443 if (old_next != GST_STATE_PLAYING) {
3444 if (old_state != old_next || old_ret == GST_STATE_CHANGE_ASYNC) {
3445 state_changed = TRUE;
3446 }
3447 }
3448 GST_OBJECT_UNLOCK (bin);
3449
3450 if (state_changed) {
3451 _priv_gst_element_state_changed (GST_ELEMENT_CAST (bin), old_state,
3452 old_next, pending);
3453 }
3454 if (amessage) {
3455 /* post our combined ASYNC_DONE when all is ASYNC_DONE. */
3456 GST_DEBUG_OBJECT (bin, "posting ASYNC_DONE to parent");
3457 gst_element_post_message (GST_ELEMENT_CAST (bin), amessage);
3458 }
3459
3460 GST_OBJECT_LOCK (bin);
3461 if (cont) {
3462 /* toplevel, start continue state */
3463 GST_DEBUG_OBJECT (bin, "all async-done, starting state continue");
3464 bin_push_state_continue (bin, cont);
3465 } else {
3466 GST_DEBUG_OBJECT (bin, "state change complete");
3467 GST_STATE_BROADCAST (bin);
3468 }
3469 return;
3470
3471 had_error:
3472 {
3473 GST_CAT_DEBUG_OBJECT (GST_CAT_STATES, bin, "we had an error");
3474 return;
3475 }
3476 was_busy:
3477 {
3478 GST_CAT_DEBUG_OBJECT (GST_CAT_STATES, bin, "state change busy");
3479 /* if we were busy with a state change and we are requested to flag a
3480 * pending async done, we do so here */
3481 if (flag_pending)
3482 bin->priv->pending_async_done = TRUE;
3483 return;
3484 }
3485 nothing_pending:
3486 {
3487 GST_CAT_INFO_OBJECT (GST_CAT_STATES, bin, "nothing pending");
3488 return;
3489 }
3490 }
3491
3492 static void
bin_do_eos(GstBin * bin)3493 bin_do_eos (GstBin * bin)
3494 {
3495 guint32 seqnum = GST_SEQNUM_INVALID;
3496 gboolean eos;
3497
3498 GST_OBJECT_LOCK (bin);
3499 /* If all sinks are EOS, we're in PLAYING and no state change is pending
3500 * (or we're doing playing to playing and no one else will trigger posting
3501 * EOS for us) we forward the EOS message to the parent bin or application
3502 */
3503 eos = GST_STATE (bin) == GST_STATE_PLAYING
3504 && (GST_STATE_PENDING (bin) == GST_STATE_VOID_PENDING ||
3505 GST_STATE_PENDING (bin) == GST_STATE_PLAYING)
3506 && bin->priv->posted_playing && is_eos (bin, &seqnum);
3507 GST_OBJECT_UNLOCK (bin);
3508
3509 if (eos
3510 && g_atomic_int_compare_and_exchange (&bin->priv->posted_eos, FALSE,
3511 TRUE)) {
3512 GstMessage *tmessage;
3513
3514 /* Clear out any further messages, and reset posted_eos so we can
3515 detect any new EOS that happens (eg, after a seek). Since all
3516 sinks have now posted an EOS, there will be no further EOS events
3517 seen unless there is a new logical EOS */
3518 GST_OBJECT_LOCK (bin);
3519 bin_remove_messages (bin, NULL, GST_MESSAGE_EOS);
3520 bin->priv->posted_eos = FALSE;
3521 GST_OBJECT_UNLOCK (bin);
3522
3523 tmessage = gst_message_new_eos (GST_OBJECT_CAST (bin));
3524 if (seqnum != GST_SEQNUM_INVALID)
3525 gst_message_set_seqnum (tmessage, seqnum);
3526 GST_DEBUG_OBJECT (bin,
3527 "all sinks posted EOS, posting seqnum #%" G_GUINT32_FORMAT, seqnum);
3528 gst_element_post_message (GST_ELEMENT_CAST (bin), tmessage);
3529 } else {
3530 GST_LOG_OBJECT (bin, "Not forwarding EOS due to in progress state change, "
3531 " or already posted, or waiting for more EOS");
3532 }
3533 }
3534
3535 static void
bin_do_stream_start(GstBin * bin)3536 bin_do_stream_start (GstBin * bin)
3537 {
3538 guint32 seqnum = GST_SEQNUM_INVALID;
3539 gboolean stream_start;
3540 gboolean have_group_id = FALSE;
3541 guint group_id = 0;
3542
3543 GST_OBJECT_LOCK (bin);
3544 /* If all sinks are STREAM_START we forward the STREAM_START message
3545 * to the parent bin or application
3546 */
3547 stream_start = is_stream_start (bin, &seqnum, &have_group_id, &group_id);
3548 GST_OBJECT_UNLOCK (bin);
3549
3550 if (stream_start) {
3551 GstMessage *tmessage;
3552
3553 GST_OBJECT_LOCK (bin);
3554 bin_remove_messages (bin, NULL, GST_MESSAGE_STREAM_START);
3555 GST_OBJECT_UNLOCK (bin);
3556
3557 tmessage = gst_message_new_stream_start (GST_OBJECT_CAST (bin));
3558 if (seqnum != GST_SEQNUM_INVALID)
3559 gst_message_set_seqnum (tmessage, seqnum);
3560 if (have_group_id)
3561 gst_message_set_group_id (tmessage, group_id);
3562
3563 GST_DEBUG_OBJECT (bin,
3564 "all sinks posted STREAM_START, posting seqnum #%" G_GUINT32_FORMAT,
3565 seqnum);
3566 gst_element_post_message (GST_ELEMENT_CAST (bin), tmessage);
3567 }
3568 }
3569
3570 /* must be called without the object lock as it posts messages */
3571 static void
bin_do_message_forward(GstBin * bin,GstMessage * message)3572 bin_do_message_forward (GstBin * bin, GstMessage * message)
3573 {
3574 if (bin->priv->message_forward) {
3575 GstMessage *forwarded;
3576
3577 GST_DEBUG_OBJECT (bin, "pass %s message upward",
3578 GST_MESSAGE_TYPE_NAME (message));
3579
3580 /* we need to convert these messages to element messages so that our parent
3581 * bin can easily ignore them and so that the application can easily
3582 * distinguish between the internally forwarded and the real messages. */
3583 forwarded = gst_message_new_element (GST_OBJECT_CAST (bin),
3584 gst_structure_new ("GstBinForwarded",
3585 "message", GST_TYPE_MESSAGE, message, NULL));
3586
3587 gst_element_post_message (GST_ELEMENT_CAST (bin), forwarded);
3588 }
3589 }
3590
3591 static void
gst_bin_update_context(GstBin * bin,GstContext * context)3592 gst_bin_update_context (GstBin * bin, GstContext * context)
3593 {
3594 GST_OBJECT_LOCK (bin);
3595 gst_bin_update_context_unlocked (bin, context);
3596 GST_OBJECT_UNLOCK (bin);
3597 }
3598
3599 static void
gst_bin_update_context_unlocked(GstBin * bin,GstContext * context)3600 gst_bin_update_context_unlocked (GstBin * bin, GstContext * context)
3601 {
3602 const gchar *context_type;
3603 GList *l, **contexts;
3604
3605 contexts = &GST_ELEMENT_CAST (bin)->contexts;
3606 context_type = gst_context_get_context_type (context);
3607
3608 GST_DEBUG_OBJECT (bin, "set context %p %" GST_PTR_FORMAT, context,
3609 gst_context_get_structure (context));
3610 for (l = *contexts; l; l = l->next) {
3611 GstContext *tmp = l->data;
3612 const gchar *tmp_type = gst_context_get_context_type (tmp);
3613
3614 /* Always store newest context but never replace
3615 * a persistent one by a non-persistent one */
3616 if (strcmp (context_type, tmp_type) == 0 &&
3617 (gst_context_is_persistent (context) ||
3618 !gst_context_is_persistent (tmp))) {
3619 gst_context_replace ((GstContext **) & l->data, context);
3620 break;
3621 }
3622 }
3623 /* Not found? Add */
3624 if (l == NULL) {
3625 *contexts = g_list_prepend (*contexts, gst_context_ref (context));
3626 }
3627 }
3628
3629 /* handle child messages:
3630 *
3631 * This method is called synchronously when a child posts a message on
3632 * the internal bus.
3633 *
3634 * GST_MESSAGE_EOS: This message is only posted by sinks
3635 * in the PLAYING state. If all sinks posted the EOS message, post
3636 * one upwards.
3637 *
3638 * GST_MESSAGE_STATE_DIRTY: Deprecated
3639 *
3640 * GST_MESSAGE_SEGMENT_START: just collect, never forward upwards. If an
3641 * element posts segment_start twice, only the last message is kept.
3642 *
3643 * GST_MESSAGE_SEGMENT_DONE: replace SEGMENT_START message from same poster
3644 * with the segment_done message. If there are no more segment_start
3645 * messages, post segment_done message upwards.
3646 *
3647 * GST_MESSAGE_CLOCK_LOST: This message is posted by an element when it
3648 * can no longer provide a clock. The default bin behaviour is to
3649 * check if the lost clock was the one provided by the bin. If so and
3650 * we are currently in the PLAYING state, we forward the message to
3651 * our parent.
3652 * This message is also generated when we remove a clock provider from
3653 * a bin. If this message is received by the application, it should
3654 * PAUSE the pipeline and set it back to PLAYING to force a new clock
3655 * and a new base_time distribution.
3656 *
3657 * GST_MESSAGE_CLOCK_PROVIDE: This message is generated when an element
3658 * can provide a clock. This mostly happens when we add a new clock
3659 * provider to the bin. The default behaviour of the bin is to mark the
3660 * currently selected clock as dirty, which will perform a clock
3661 * recalculation the next time we are asked to provide a clock.
3662 * This message is never sent to the application but is forwarded to
3663 * the parent.
3664 *
3665 * GST_MESSAGE_ASYNC_START: Create an internal ELEMENT message that stores
3666 * the state of the element and the fact that the element will need a
3667 * new base_time. This message is not forwarded to the application.
3668 *
3669 * GST_MESSAGE_ASYNC_DONE: Find the internal ELEMENT message we kept for the
3670 * element when it posted ASYNC_START. If all elements are done, post a
3671 * ASYNC_DONE message to the parent.
3672 *
3673 * OTHER: post upwards.
3674 */
3675 static void
gst_bin_handle_message_func(GstBin * bin,GstMessage * message)3676 gst_bin_handle_message_func (GstBin * bin, GstMessage * message)
3677 {
3678 GstObject *src;
3679 GstMessageType type;
3680 GstMessage *tmessage;
3681 guint32 seqnum;
3682
3683 src = GST_MESSAGE_SRC (message);
3684 type = GST_MESSAGE_TYPE (message);
3685
3686 GST_DEBUG_OBJECT (bin, "[msg %p] handling child %s message of type %s",
3687 message, src ? GST_ELEMENT_NAME (src) : "(NULL)",
3688 GST_MESSAGE_TYPE_NAME (message));
3689
3690 switch (type) {
3691 case GST_MESSAGE_ERROR:
3692 {
3693 GST_OBJECT_LOCK (bin);
3694 /* flag error */
3695 GST_DEBUG_OBJECT (bin, "got ERROR message, unlocking state change");
3696 GST_STATE_RETURN (bin) = GST_STATE_CHANGE_FAILURE;
3697 GST_STATE_BROADCAST (bin);
3698 GST_OBJECT_UNLOCK (bin);
3699
3700 goto forward;
3701 }
3702 case GST_MESSAGE_EOS:
3703 {
3704
3705 /* collect all eos messages from the children */
3706 bin_do_message_forward (bin, message);
3707 GST_OBJECT_LOCK (bin);
3708 /* ref message for future use */
3709 bin_replace_message (bin, message, GST_MESSAGE_EOS);
3710 GST_OBJECT_UNLOCK (bin);
3711
3712 bin_do_eos (bin);
3713 break;
3714 }
3715 case GST_MESSAGE_STREAM_START:
3716 {
3717
3718 /* collect all stream_start messages from the children */
3719 GST_OBJECT_LOCK (bin);
3720 /* ref message for future use */
3721 bin_replace_message (bin, message, GST_MESSAGE_STREAM_START);
3722 GST_OBJECT_UNLOCK (bin);
3723
3724 bin_do_stream_start (bin);
3725 break;
3726 }
3727 case GST_MESSAGE_STATE_DIRTY:
3728 {
3729 GST_WARNING_OBJECT (bin, "received deprecated STATE_DIRTY message");
3730
3731 /* free message */
3732 gst_message_unref (message);
3733 break;
3734 }
3735 case GST_MESSAGE_SEGMENT_START:{
3736 gboolean post = FALSE;
3737 GstFormat format;
3738 gint64 position;
3739
3740 gst_message_parse_segment_start (message, &format, &position);
3741 seqnum = gst_message_get_seqnum (message);
3742
3743 bin_do_message_forward (bin, message);
3744
3745 GST_OBJECT_LOCK (bin);
3746 /* if this is the first segment-start, post to parent but not to the
3747 * application */
3748 if (!find_message (bin, NULL, GST_MESSAGE_SEGMENT_START) &&
3749 (GST_OBJECT_PARENT (bin) != NULL)) {
3750 post = TRUE;
3751 }
3752 /* replace any previous segment_start message from this source
3753 * with the new segment start message */
3754 bin_replace_message (bin, message, GST_MESSAGE_SEGMENT_START);
3755 GST_OBJECT_UNLOCK (bin);
3756 if (post) {
3757 tmessage = gst_message_new_segment_start (GST_OBJECT_CAST (bin),
3758 format, position);
3759 gst_message_set_seqnum (tmessage, seqnum);
3760
3761 /* post segment start with initial format and position. */
3762 GST_DEBUG_OBJECT (bin, "posting SEGMENT_START (%u) bus message: %p",
3763 seqnum, message);
3764 gst_element_post_message (GST_ELEMENT_CAST (bin), tmessage);
3765 }
3766 break;
3767 }
3768 case GST_MESSAGE_SEGMENT_DONE:
3769 {
3770 gboolean post = FALSE;
3771 GstFormat format;
3772 gint64 position;
3773
3774 gst_message_parse_segment_done (message, &format, &position);
3775 seqnum = gst_message_get_seqnum (message);
3776
3777 bin_do_message_forward (bin, message);
3778
3779 GST_OBJECT_LOCK (bin);
3780 bin_replace_message (bin, message, GST_MESSAGE_SEGMENT_START);
3781 /* if there are no more segment_start messages, everybody posted
3782 * a segment_done and we can post one on the bus. */
3783
3784 /* we don't care who still has a pending segment start */
3785 if (!find_message (bin, NULL, GST_MESSAGE_SEGMENT_START)) {
3786 /* nothing found */
3787 post = TRUE;
3788 /* remove all old segment_done messages */
3789 bin_remove_messages (bin, NULL, GST_MESSAGE_SEGMENT_DONE);
3790 }
3791 GST_OBJECT_UNLOCK (bin);
3792 if (post) {
3793 tmessage = gst_message_new_segment_done (GST_OBJECT_CAST (bin),
3794 format, position);
3795 gst_message_set_seqnum (tmessage, seqnum);
3796
3797 /* post segment done with latest format and position. */
3798 GST_DEBUG_OBJECT (bin, "posting SEGMENT_DONE (%u) bus message: %p",
3799 seqnum, message);
3800 gst_element_post_message (GST_ELEMENT_CAST (bin), tmessage);
3801 }
3802 break;
3803 }
3804 case GST_MESSAGE_CLOCK_LOST:
3805 {
3806 GstClock **provided_clock_p;
3807 GstElement **clock_provider_p;
3808 gboolean playing, toplevel, provided, forward;
3809 GstClock *clock;
3810
3811 gst_message_parse_clock_lost (message, &clock);
3812
3813 GST_OBJECT_LOCK (bin);
3814 bin->clock_dirty = TRUE;
3815 /* if we lost the clock that we provided, post to parent but
3816 * only if we are not a top-level bin or PLAYING.
3817 * The reason for this is that applications should be able
3818 * to PAUSE/PLAY if they receive this message without worrying
3819 * about the state of the pipeline. */
3820 provided = (clock == bin->provided_clock);
3821 playing = (GST_STATE (bin) == GST_STATE_PLAYING);
3822 toplevel = GST_OBJECT_PARENT (bin) == NULL;
3823 forward = provided && (playing || !toplevel);
3824 if (provided) {
3825 GST_DEBUG_OBJECT (bin,
3826 "Lost clock %" GST_PTR_FORMAT " provided by %" GST_PTR_FORMAT,
3827 bin->provided_clock, bin->clock_provider);
3828 provided_clock_p = &bin->provided_clock;
3829 clock_provider_p = &bin->clock_provider;
3830 gst_object_replace ((GstObject **) provided_clock_p, NULL);
3831 gst_object_replace ((GstObject **) clock_provider_p, NULL);
3832 }
3833 GST_DEBUG_OBJECT (bin, "provided %d, playing %d, forward %d",
3834 provided, playing, forward);
3835 GST_OBJECT_UNLOCK (bin);
3836
3837 if (forward)
3838 goto forward;
3839
3840 /* free message */
3841 gst_message_unref (message);
3842 break;
3843 }
3844 case GST_MESSAGE_CLOCK_PROVIDE:
3845 {
3846 gboolean forward;
3847
3848 GST_OBJECT_LOCK (bin);
3849 bin->clock_dirty = TRUE;
3850 /* a new clock is available, post to parent but not
3851 * to the application */
3852 forward = GST_OBJECT_PARENT (bin) != NULL;
3853 GST_OBJECT_UNLOCK (bin);
3854
3855 if (forward)
3856 goto forward;
3857
3858 /* free message */
3859 gst_message_unref (message);
3860 break;
3861 }
3862 case GST_MESSAGE_ASYNC_START:
3863 {
3864 GstState target;
3865
3866 GST_DEBUG_OBJECT (bin, "ASYNC_START message %p, %s", message,
3867 src ? GST_OBJECT_NAME (src) : "(NULL)");
3868
3869 bin_do_message_forward (bin, message);
3870
3871 GST_OBJECT_LOCK (bin);
3872 /* we ignore the message if we are going to <= READY */
3873 if ((target = GST_STATE_TARGET (bin)) <= GST_STATE_READY)
3874 goto ignore_start_message;
3875
3876 /* takes ownership of the message */
3877 bin_replace_message (bin, message, GST_MESSAGE_ASYNC_START);
3878
3879 bin_handle_async_start (bin);
3880 GST_OBJECT_UNLOCK (bin);
3881 break;
3882
3883 ignore_start_message:
3884 {
3885 GST_DEBUG_OBJECT (bin, "ignoring message, target %s",
3886 gst_element_state_get_name (target));
3887 GST_OBJECT_UNLOCK (bin);
3888 gst_message_unref (message);
3889 break;
3890 }
3891 }
3892 case GST_MESSAGE_ASYNC_DONE:
3893 {
3894 GstClockTime running_time;
3895 GstState target;
3896
3897 GST_DEBUG_OBJECT (bin, "ASYNC_DONE message %p, %s", message,
3898 src ? GST_OBJECT_NAME (src) : "(NULL)");
3899
3900 gst_message_parse_async_done (message, &running_time);
3901
3902 bin_do_message_forward (bin, message);
3903
3904 GST_OBJECT_LOCK (bin);
3905 /* ignore messages if we are shutting down */
3906 if ((target = GST_STATE_TARGET (bin)) <= GST_STATE_READY)
3907 goto ignore_done_message;
3908
3909 bin_replace_message (bin, message, GST_MESSAGE_ASYNC_START);
3910 /* if there are no more ASYNC_START messages, everybody posted
3911 * a ASYNC_DONE and we can post one on the bus. When checking, we
3912 * don't care who still has a pending ASYNC_START */
3913 if (!find_message (bin, NULL, GST_MESSAGE_ASYNC_START)) {
3914 /* nothing found, remove all old ASYNC_DONE messages */
3915 bin_remove_messages (bin, NULL, GST_MESSAGE_ASYNC_DONE);
3916
3917 GST_DEBUG_OBJECT (bin, "async elements committed");
3918 /* when we get an async done message when a state change was busy, we
3919 * need to set the pending_done flag so that at the end of the state
3920 * change we can see if we need to verify pending async elements, hence
3921 * the TRUE argument here. */
3922 bin_handle_async_done (bin, GST_STATE_CHANGE_SUCCESS, TRUE,
3923 running_time);
3924 } else {
3925 GST_DEBUG_OBJECT (bin, "there are more async elements pending");
3926 }
3927 GST_OBJECT_UNLOCK (bin);
3928 break;
3929
3930 ignore_done_message:
3931 {
3932 GST_DEBUG_OBJECT (bin, "ignoring message, target %s",
3933 gst_element_state_get_name (target));
3934 GST_OBJECT_UNLOCK (bin);
3935 gst_message_unref (message);
3936 break;
3937 }
3938 }
3939 case GST_MESSAGE_STRUCTURE_CHANGE:
3940 {
3941 gboolean busy;
3942
3943 gst_message_parse_structure_change (message, NULL, NULL, &busy);
3944
3945 GST_OBJECT_LOCK (bin);
3946 if (busy) {
3947 /* while the pad is busy, avoid following it when doing state changes.
3948 * Don't update the cookie yet, we will do that after the structure
3949 * change finished and we are ready to inspect the new updated
3950 * structure. */
3951 bin_replace_message (bin, message, GST_MESSAGE_STRUCTURE_CHANGE);
3952 message = NULL;
3953 } else {
3954 /* a pad link/unlink ended, signal the state change iterator that we
3955 * need to resync by updating the structure_cookie. */
3956 bin_remove_messages (bin, GST_MESSAGE_SRC (message),
3957 GST_MESSAGE_STRUCTURE_CHANGE);
3958 if (!GST_BIN_IS_NO_RESYNC (bin))
3959 bin->priv->structure_cookie++;
3960 }
3961 GST_OBJECT_UNLOCK (bin);
3962
3963 if (message)
3964 gst_message_unref (message);
3965
3966 break;
3967 }
3968 case GST_MESSAGE_NEED_CONTEXT:{
3969 const gchar *context_type;
3970 GList *l, *contexts;
3971
3972 gst_message_parse_context_type (message, &context_type);
3973
3974 if (src) {
3975 GST_OBJECT_LOCK (bin);
3976 contexts = GST_ELEMENT_CAST (bin)->contexts;
3977 GST_LOG_OBJECT (bin, "got need-context message type: %s", context_type);
3978 for (l = contexts; l; l = l->next) {
3979 GstContext *tmp = l->data;
3980 const gchar *tmp_type = gst_context_get_context_type (tmp);
3981
3982 if (strcmp (context_type, tmp_type) == 0) {
3983 gst_element_set_context (GST_ELEMENT (src), l->data);
3984 break;
3985 }
3986 }
3987 GST_OBJECT_UNLOCK (bin);
3988
3989 /* Forward if we couldn't answer the message */
3990 if (l == NULL) {
3991 goto forward;
3992 } else {
3993 gst_message_unref (message);
3994 }
3995 } else {
3996 g_warning
3997 ("Got need-context message in bin '%s' without source element, dropping",
3998 GST_ELEMENT_NAME (bin));
3999 gst_message_unref (message);
4000 }
4001
4002 break;
4003 }
4004 case GST_MESSAGE_HAVE_CONTEXT:{
4005 GstContext *context;
4006
4007 gst_message_parse_have_context (message, &context);
4008 gst_bin_update_context (bin, context);
4009 gst_context_unref (context);
4010
4011 goto forward;
4012 break;
4013 }
4014 default:
4015 goto forward;
4016 }
4017 return;
4018
4019 forward:
4020 {
4021 /* Send all other messages upward */
4022 GST_DEBUG_OBJECT (bin, "posting message upward");
4023 gst_element_post_message (GST_ELEMENT_CAST (bin), message);
4024 return;
4025 }
4026 }
4027
4028 /* generic struct passed to all query fold methods */
4029 typedef struct
4030 {
4031 GstQuery *query;
4032 gint64 min;
4033 gint64 max;
4034 gboolean live;
4035 } QueryFold;
4036
4037 typedef void (*QueryInitFunction) (GstBin * bin, QueryFold * fold);
4038 typedef void (*QueryDoneFunction) (GstBin * bin, QueryFold * fold);
4039
4040 /* for duration/position we collect all durations/positions and take
4041 * the MAX of all valid results */
4042 static void
bin_query_min_max_init(GstBin * bin,QueryFold * fold)4043 bin_query_min_max_init (GstBin * bin, QueryFold * fold)
4044 {
4045 fold->min = 0;
4046 fold->max = -1;
4047 fold->live = FALSE;
4048 }
4049
4050 static gboolean
bin_query_duration_fold(const GValue * vitem,GValue * ret,QueryFold * fold)4051 bin_query_duration_fold (const GValue * vitem, GValue * ret, QueryFold * fold)
4052 {
4053 gboolean res = FALSE;
4054 GstObject *item = g_value_get_object (vitem);
4055 if (GST_IS_PAD (item))
4056 res = gst_pad_query (GST_PAD (item), fold->query);
4057 else
4058 res = gst_element_query (GST_ELEMENT (item), fold->query);
4059
4060 if (res) {
4061 gint64 duration;
4062
4063 g_value_set_boolean (ret, TRUE);
4064
4065 gst_query_parse_duration (fold->query, NULL, &duration);
4066
4067 GST_DEBUG_OBJECT (item, "got duration %" G_GINT64_FORMAT, duration);
4068
4069 if (duration == -1) {
4070 /* duration query succeeded, but duration is unknown */
4071 fold->max = -1;
4072 return FALSE;
4073 }
4074
4075 if (duration > fold->max)
4076 fold->max = duration;
4077 }
4078
4079 return TRUE;
4080 }
4081
4082 static void
bin_query_duration_done(GstBin * bin,QueryFold * fold)4083 bin_query_duration_done (GstBin * bin, QueryFold * fold)
4084 {
4085 GstFormat format;
4086
4087 gst_query_parse_duration (fold->query, &format, NULL);
4088 /* store max in query result */
4089 gst_query_set_duration (fold->query, format, fold->max);
4090
4091 GST_DEBUG_OBJECT (bin, "max duration %" G_GINT64_FORMAT, fold->max);
4092 }
4093
4094 static gboolean
bin_query_position_fold(const GValue * vitem,GValue * ret,QueryFold * fold)4095 bin_query_position_fold (const GValue * vitem, GValue * ret, QueryFold * fold)
4096 {
4097 gboolean res = FALSE;
4098 GstObject *item = g_value_get_object (vitem);
4099 if (GST_IS_PAD (item))
4100 res = gst_pad_query (GST_PAD (item), fold->query);
4101 else
4102 res = gst_element_query (GST_ELEMENT (item), fold->query);
4103
4104 if (res) {
4105 gint64 position;
4106
4107 g_value_set_boolean (ret, TRUE);
4108
4109 gst_query_parse_position (fold->query, NULL, &position);
4110
4111 GST_DEBUG_OBJECT (item, "got position %" G_GINT64_FORMAT, position);
4112
4113 /* ohos.opt.compat.0041
4114 * In the recorded file, the data source is not aligned.
4115 * For example, audio starts from 0ms and video starts from 100ms.
4116 * The current time after the prepare action is not 0.
4117 */
4118 #ifdef OHOS_OPT_COMPAT
4119 if ((position == 0) || (fold->max == 0)) {
4120 fold->max = 0;
4121 } else if (position > fold->max) {
4122 fold->max = position;
4123 }
4124 #else
4125 if (position > fold->max)
4126 fold->max = position;
4127 #endif
4128 }
4129
4130 return TRUE;
4131 }
4132
4133 static void
bin_query_position_done(GstBin * bin,QueryFold * fold)4134 bin_query_position_done (GstBin * bin, QueryFold * fold)
4135 {
4136 GstFormat format;
4137
4138 gst_query_parse_position (fold->query, &format, NULL);
4139 /* store max in query result */
4140 gst_query_set_position (fold->query, format, fold->max);
4141
4142 GST_DEBUG_OBJECT (bin, "max position %" G_GINT64_FORMAT, fold->max);
4143 }
4144
4145 static gboolean
bin_query_latency_fold(const GValue * vitem,GValue * ret,QueryFold * fold)4146 bin_query_latency_fold (const GValue * vitem, GValue * ret, QueryFold * fold)
4147 {
4148 gboolean res = FALSE;
4149 GstObject *item = g_value_get_object (vitem);
4150 if (GST_IS_PAD (item))
4151 res = gst_pad_query (GST_PAD (item), fold->query);
4152 else
4153 res = gst_element_query (GST_ELEMENT (item), fold->query);
4154 if (res) {
4155 GstClockTime min, max;
4156 gboolean live;
4157
4158 gst_query_parse_latency (fold->query, &live, &min, &max);
4159
4160 GST_DEBUG_OBJECT (item,
4161 "got latency min %" GST_TIME_FORMAT ", max %" GST_TIME_FORMAT
4162 ", live %d", GST_TIME_ARGS (min), GST_TIME_ARGS (max), live);
4163
4164 /* for the combined latency we collect the MAX of all min latencies and
4165 * the MIN of all max latencies */
4166 if (live) {
4167 if (min > fold->min)
4168 fold->min = min;
4169 if (fold->max == -1)
4170 fold->max = max;
4171 else if (max < fold->max)
4172 fold->max = max;
4173 if (!fold->live)
4174 fold->live = live;
4175 }
4176 } else {
4177 g_value_set_boolean (ret, FALSE);
4178 GST_DEBUG_OBJECT (item, "failed query");
4179 }
4180
4181 return TRUE;
4182 }
4183
4184 static void
bin_query_latency_done(GstBin * bin,QueryFold * fold)4185 bin_query_latency_done (GstBin * bin, QueryFold * fold)
4186 {
4187 /* store max in query result */
4188 gst_query_set_latency (fold->query, fold->live, fold->min, fold->max);
4189
4190 GST_DEBUG_OBJECT (bin,
4191 "latency min %" GST_TIME_FORMAT ", max %" GST_TIME_FORMAT
4192 ", live %d", GST_TIME_ARGS (fold->min), GST_TIME_ARGS (fold->max),
4193 fold->live);
4194 }
4195
4196 /* generic fold, return first valid result */
4197 static gboolean
bin_query_generic_fold(const GValue * vitem,GValue * ret,QueryFold * fold)4198 bin_query_generic_fold (const GValue * vitem, GValue * ret, QueryFold * fold)
4199 {
4200 gboolean res = FALSE;
4201 GstObject *item = g_value_get_object (vitem);
4202 if (GST_IS_PAD (item))
4203 res = gst_pad_query (GST_PAD (item), fold->query);
4204 else
4205 res = gst_element_query (GST_ELEMENT (item), fold->query);
4206 if (res) {
4207 g_value_set_boolean (ret, TRUE);
4208 GST_DEBUG_OBJECT (item, "answered query %p", fold->query);
4209 }
4210
4211 /* and stop as soon as we have a valid result */
4212 return !res;
4213 }
4214
4215 /* Perform a query iteration for the given bin. The query is stored in
4216 * QueryFold and iter should be either a GstPad iterator or a
4217 * GstElement iterator. */
4218 static gboolean
bin_iterate_fold(GstBin * bin,GstIterator * iter,QueryInitFunction fold_init,QueryDoneFunction fold_done,GstIteratorFoldFunction fold_func,QueryFold * fold_data,gboolean default_return)4219 bin_iterate_fold (GstBin * bin, GstIterator * iter, QueryInitFunction fold_init,
4220 QueryDoneFunction fold_done, GstIteratorFoldFunction fold_func,
4221 QueryFold * fold_data, gboolean default_return)
4222 {
4223 gboolean res = default_return;
4224 GValue ret = { 0 };
4225 /* set the result of the query to FALSE initially */
4226 g_value_init (&ret, G_TYPE_BOOLEAN);
4227 g_value_set_boolean (&ret, res);
4228
4229 while (TRUE) {
4230 GstIteratorResult ires;
4231
4232 ires = gst_iterator_fold (iter, fold_func, &ret, fold_data);
4233
4234 switch (ires) {
4235 case GST_ITERATOR_RESYNC:
4236 gst_iterator_resync (iter);
4237 if (fold_init)
4238 fold_init (bin, fold_data);
4239 g_value_set_boolean (&ret, res);
4240 break;
4241 case GST_ITERATOR_OK:
4242 case GST_ITERATOR_DONE:
4243 res = g_value_get_boolean (&ret);
4244 if (fold_done != NULL && res)
4245 fold_done (bin, fold_data);
4246 goto done;
4247 default:
4248 res = FALSE;
4249 goto done;
4250 }
4251 }
4252 done:
4253 return res;
4254 }
4255
4256 static gboolean
gst_bin_query(GstElement * element,GstQuery * query)4257 gst_bin_query (GstElement * element, GstQuery * query)
4258 {
4259 GstBin *bin = GST_BIN_CAST (element);
4260 GstIterator *iter;
4261 gboolean default_return = FALSE;
4262 gboolean res = FALSE;
4263 gboolean src_pads_query_result = FALSE;
4264 GstIteratorFoldFunction fold_func;
4265 QueryInitFunction fold_init = NULL;
4266 QueryDoneFunction fold_done = NULL;
4267 QueryFold fold_data;
4268
4269 switch (GST_QUERY_TYPE (query)) {
4270 case GST_QUERY_DURATION:
4271 {
4272 /* iterate and collect durations */
4273 fold_func = (GstIteratorFoldFunction) bin_query_duration_fold;
4274 fold_init = bin_query_min_max_init;
4275 fold_done = bin_query_duration_done;
4276 break;
4277 }
4278 case GST_QUERY_POSITION:
4279 {
4280 fold_func = (GstIteratorFoldFunction) bin_query_position_fold;
4281 fold_init = bin_query_min_max_init;
4282 fold_done = bin_query_position_done;
4283 break;
4284 }
4285 case GST_QUERY_LATENCY:
4286 {
4287 fold_func = (GstIteratorFoldFunction) bin_query_latency_fold;
4288 fold_init = bin_query_min_max_init;
4289 fold_done = bin_query_latency_done;
4290 default_return = TRUE;
4291 break;
4292 }
4293 default:
4294 fold_func = (GstIteratorFoldFunction) bin_query_generic_fold;
4295 break;
4296 }
4297
4298 fold_data.query = query;
4299
4300 iter = gst_bin_iterate_sinks (bin);
4301 GST_DEBUG_OBJECT (bin, "Sending query %p (type %s) to sink children",
4302 query, GST_QUERY_TYPE_NAME (query));
4303
4304 if (fold_init)
4305 fold_init (bin, &fold_data);
4306
4307 res =
4308 bin_iterate_fold (bin, iter, fold_init, fold_done, fold_func, &fold_data,
4309 default_return);
4310 gst_iterator_free (iter);
4311
4312 if (!res) {
4313 /* Query the source pads of the element */
4314 iter = gst_element_iterate_src_pads (element);
4315 src_pads_query_result =
4316 bin_iterate_fold (bin, iter, fold_init, fold_done, fold_func,
4317 &fold_data, default_return);
4318 gst_iterator_free (iter);
4319
4320 if (src_pads_query_result)
4321 res = TRUE;
4322 }
4323
4324 GST_DEBUG_OBJECT (bin, "query %p result %d", query, res);
4325
4326 return res;
4327 }
4328
4329 static void
set_context(const GValue * item,gpointer user_data)4330 set_context (const GValue * item, gpointer user_data)
4331 {
4332 GstElement *element = g_value_get_object (item);
4333
4334 gst_element_set_context (element, user_data);
4335 }
4336
4337 static void
gst_bin_set_context(GstElement * element,GstContext * context)4338 gst_bin_set_context (GstElement * element, GstContext * context)
4339 {
4340 GstBin *bin;
4341 GstIterator *children;
4342
4343 g_return_if_fail (GST_IS_BIN (element));
4344
4345 bin = GST_BIN (element);
4346
4347 GST_ELEMENT_CLASS (parent_class)->set_context (element, context);
4348
4349 children = gst_bin_iterate_elements (bin);
4350 while (gst_iterator_foreach (children, set_context,
4351 context) == GST_ITERATOR_RESYNC)
4352 gst_iterator_resync (children);
4353 gst_iterator_free (children);
4354 }
4355
4356 static gint
compare_name(const GValue * velement,const gchar * name)4357 compare_name (const GValue * velement, const gchar * name)
4358 {
4359 gint eq;
4360 GstElement *element = g_value_get_object (velement);
4361
4362 GST_OBJECT_LOCK (element);
4363 eq = strcmp (GST_ELEMENT_NAME (element), name);
4364 GST_OBJECT_UNLOCK (element);
4365
4366 return eq;
4367 }
4368
4369 /**
4370 * gst_bin_get_by_name:
4371 * @bin: a #GstBin
4372 * @name: the element name to search for
4373 *
4374 * Gets the element with the given name from a bin. This
4375 * function recurses into child bins.
4376 *
4377 * Returns: (transfer full) (nullable): the #GstElement with the given
4378 * name
4379 */
4380 GstElement *
gst_bin_get_by_name(GstBin * bin,const gchar * name)4381 gst_bin_get_by_name (GstBin * bin, const gchar * name)
4382 {
4383 GstIterator *children;
4384 GValue result = { 0, };
4385 GstElement *element;
4386 gboolean found;
4387
4388 g_return_val_if_fail (GST_IS_BIN (bin), NULL);
4389
4390 GST_CAT_INFO (GST_CAT_PARENTAGE, "[%s]: looking up child element %s",
4391 GST_ELEMENT_NAME (bin), name);
4392
4393 children = gst_bin_iterate_recurse (bin);
4394 found = gst_iterator_find_custom (children,
4395 (GCompareFunc) compare_name, &result, (gpointer) name);
4396 gst_iterator_free (children);
4397
4398 if (found) {
4399 element = g_value_dup_object (&result);
4400 g_value_unset (&result);
4401 } else {
4402 element = NULL;
4403 }
4404
4405 return element;
4406 }
4407
4408 /**
4409 * gst_bin_get_by_name_recurse_up:
4410 * @bin: a #GstBin
4411 * @name: the element name to search for
4412 *
4413 * Gets the element with the given name from this bin. If the
4414 * element is not found, a recursion is performed on the parent bin.
4415 *
4416 * Returns: (transfer full) (nullable): the #GstElement with the given
4417 * name
4418 */
4419 GstElement *
gst_bin_get_by_name_recurse_up(GstBin * bin,const gchar * name)4420 gst_bin_get_by_name_recurse_up (GstBin * bin, const gchar * name)
4421 {
4422 GstElement *result;
4423
4424 g_return_val_if_fail (GST_IS_BIN (bin), NULL);
4425 g_return_val_if_fail (name != NULL, NULL);
4426
4427 result = gst_bin_get_by_name (bin, name);
4428
4429 if (!result) {
4430 GstObject *parent;
4431
4432 parent = gst_object_get_parent (GST_OBJECT_CAST (bin));
4433 if (parent) {
4434 if (GST_IS_BIN (parent)) {
4435 result = gst_bin_get_by_name_recurse_up (GST_BIN_CAST (parent), name);
4436 }
4437 gst_object_unref (parent);
4438 }
4439 }
4440
4441 return result;
4442 }
4443
4444 static gint
compare_interface(const GValue * velement,GValue * interface)4445 compare_interface (const GValue * velement, GValue * interface)
4446 {
4447 GstElement *element = g_value_get_object (velement);
4448 GType interface_type = (GType) g_value_get_pointer (interface);
4449 gint ret;
4450
4451 if (G_TYPE_CHECK_INSTANCE_TYPE (element, interface_type)) {
4452 ret = 0;
4453 } else {
4454 ret = 1;
4455 }
4456 return ret;
4457 }
4458
4459 /**
4460 * gst_bin_get_by_interface:
4461 * @bin: a #GstBin
4462 * @iface: the #GType of an interface
4463 *
4464 * Looks for an element inside the bin that implements the given
4465 * interface. If such an element is found, it returns the element.
4466 * You can cast this element to the given interface afterwards. If you want
4467 * all elements that implement the interface, use
4468 * gst_bin_iterate_all_by_interface(). This function recurses into child bins.
4469 *
4470 * Returns: (transfer full) (nullable): A #GstElement inside the bin
4471 * implementing the interface
4472 */
4473 GstElement *
gst_bin_get_by_interface(GstBin * bin,GType iface)4474 gst_bin_get_by_interface (GstBin * bin, GType iface)
4475 {
4476 GstIterator *children;
4477 GValue result = { 0, };
4478 GstElement *element;
4479 gboolean found;
4480 GValue viface = { 0, };
4481
4482 g_return_val_if_fail (GST_IS_BIN (bin), NULL);
4483 g_return_val_if_fail (G_TYPE_IS_INTERFACE (iface), NULL);
4484
4485 g_value_init (&viface, G_TYPE_POINTER);
4486 g_value_set_pointer (&viface, (gpointer) iface);
4487
4488 children = gst_bin_iterate_recurse (bin);
4489 found = gst_iterator_find_custom (children, (GCompareFunc) compare_interface,
4490 &result, &viface);
4491 gst_iterator_free (children);
4492
4493 if (found) {
4494 element = g_value_dup_object (&result);
4495 g_value_unset (&result);
4496 } else {
4497 element = NULL;
4498 }
4499 g_value_unset (&viface);
4500
4501 return element;
4502 }
4503
4504 /**
4505 * gst_bin_iterate_all_by_interface:
4506 * @bin: a #GstBin
4507 * @iface: the #GType of an interface
4508 *
4509 * Looks for all elements inside the bin that implements the given
4510 * interface. You can safely cast all returned elements to the given interface.
4511 * The function recurses inside child bins. The iterator will yield a series
4512 * of #GstElement.
4513 *
4514 * Returns: (transfer full) (nullable): a #GstIterator of #GstElement
4515 * for all elements in the bin implementing the given interface
4516 */
4517 GstIterator *
gst_bin_iterate_all_by_interface(GstBin * bin,GType iface)4518 gst_bin_iterate_all_by_interface (GstBin * bin, GType iface)
4519 {
4520 GstIterator *children;
4521 GstIterator *result;
4522 GValue viface = { 0, };
4523
4524 g_return_val_if_fail (GST_IS_BIN (bin), NULL);
4525 g_return_val_if_fail (G_TYPE_IS_INTERFACE (iface), NULL);
4526
4527 g_value_init (&viface, G_TYPE_POINTER);
4528 g_value_set_pointer (&viface, (gpointer) iface);
4529
4530 children = gst_bin_iterate_recurse (bin);
4531 result = gst_iterator_filter (children, (GCompareFunc) compare_interface,
4532 &viface);
4533
4534 g_value_unset (&viface);
4535
4536 return result;
4537 }
4538
4539 static gint
compare_factory_names(const GValue * velement,GValue * factory_name_val)4540 compare_factory_names (const GValue * velement, GValue * factory_name_val)
4541 {
4542 GstElement *element = g_value_get_object (velement);
4543 GstElementFactory *factory = gst_element_get_factory (element);
4544 const gchar *factory_name = g_value_get_string (factory_name_val);
4545
4546 if (factory == NULL)
4547 return -1;
4548
4549 return g_strcmp0 (GST_OBJECT_NAME (factory), factory_name);
4550 }
4551
4552 /**
4553 * gst_bin_iterate_all_by_element_factory_name:
4554 * @bin: a #GstBin
4555 * @factory_name: (not nullable): the name of the #GstElementFactory
4556 *
4557 * Looks for all elements inside the bin with the given element factory name.
4558 * The function recurses inside child bins. The iterator will yield a series of
4559 * #GstElement.
4560 *
4561 * Returns: (transfer full) (nullable): a #GstIterator of #GstElement
4562 * for all elements in the bin with the given element factory name
4563 *
4564 * Since: 1.18
4565 */
4566 GstIterator *
gst_bin_iterate_all_by_element_factory_name(GstBin * bin,const gchar * factory_name)4567 gst_bin_iterate_all_by_element_factory_name (GstBin * bin,
4568 const gchar * factory_name)
4569 {
4570 GstIterator *children;
4571 GstIterator *result;
4572 GValue factory_name_val = G_VALUE_INIT;
4573
4574 g_return_val_if_fail (GST_IS_BIN (bin), NULL);
4575 g_return_val_if_fail (factory_name && *factory_name, NULL);
4576
4577 g_value_init (&factory_name_val, G_TYPE_STRING);
4578 g_value_set_string (&factory_name_val, factory_name);
4579
4580 children = gst_bin_iterate_recurse (bin);
4581 result = gst_iterator_filter (children, (GCompareFunc) compare_factory_names,
4582 &factory_name_val);
4583
4584 g_value_unset (&factory_name_val);
4585
4586 return result;
4587 }
4588