]> code.delx.au - pulseaudio/blob - src/pulsecore/sink.c
AC3 passthrough support
[pulseaudio] / src / pulsecore / sink.c
1 /***
2 This file is part of PulseAudio.
3
4 Copyright 2004-2006 Lennart Poettering
5 Copyright 2006 Pierre Ossman <ossman@cendio.se> for Cendio AB
6
7 PulseAudio is free software; you can redistribute it and/or modify
8 it under the terms of the GNU Lesser General Public License as published
9 by the Free Software Foundation; either version 2.1 of the License,
10 or (at your option) any later version.
11
12 PulseAudio is distributed in the hope that it will be useful, but
13 WITHOUT ANY WARRANTY; without even the implied warranty of
14 MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
15 General Public License for more details.
16
17 You should have received a copy of the GNU Lesser General Public License
18 along with PulseAudio; if not, write to the Free Software
19 Foundation, Inc., 59 Temple Place, Suite 330, Boston, MA 02111-1307
20 USA.
21 ***/
22
23 #ifdef HAVE_CONFIG_H
24 #include <config.h>
25 #endif
26
27 #include <stdlib.h>
28 #include <string.h>
29 #include <stdio.h>
30
31 #include <pulse/introspect.h>
32 #include <pulse/utf8.h>
33 #include <pulse/xmalloc.h>
34 #include <pulse/timeval.h>
35 #include <pulse/util.h>
36 #include <pulse/i18n.h>
37
38 #include <pulsecore/sink-input.h>
39 #include <pulsecore/namereg.h>
40 #include <pulsecore/core-util.h>
41 #include <pulsecore/sample-util.h>
42 #include <pulsecore/core-subscribe.h>
43 #include <pulsecore/log.h>
44 #include <pulsecore/macro.h>
45 #include <pulsecore/play-memblockq.h>
46
47 #include "sink.h"
48
49 #define MAX_MIX_CHANNELS 32
50 #define MIX_BUFFER_LENGTH (PA_PAGE_SIZE)
51 #define ABSOLUTE_MIN_LATENCY (500)
52 #define ABSOLUTE_MAX_LATENCY (10*PA_USEC_PER_SEC)
53 #define DEFAULT_FIXED_LATENCY (250*PA_USEC_PER_MSEC)
54
55 PA_DEFINE_PUBLIC_CLASS(pa_sink, pa_msgobject);
56
57 static void sink_free(pa_object *s);
58
59 pa_sink_new_data* pa_sink_new_data_init(pa_sink_new_data *data) {
60 pa_assert(data);
61
62 pa_zero(*data);
63 data->proplist = pa_proplist_new();
64
65 return data;
66 }
67
68 void pa_sink_new_data_set_name(pa_sink_new_data *data, const char *name) {
69 pa_assert(data);
70
71 pa_xfree(data->name);
72 data->name = pa_xstrdup(name);
73 }
74
75 void pa_sink_new_data_set_sample_spec(pa_sink_new_data *data, const pa_sample_spec *spec) {
76 pa_assert(data);
77
78 if ((data->sample_spec_is_set = !!spec))
79 data->sample_spec = *spec;
80 }
81
82 void pa_sink_new_data_set_channel_map(pa_sink_new_data *data, const pa_channel_map *map) {
83 pa_assert(data);
84
85 if ((data->channel_map_is_set = !!map))
86 data->channel_map = *map;
87 }
88
89 void pa_sink_new_data_set_volume(pa_sink_new_data *data, const pa_cvolume *volume) {
90 pa_assert(data);
91
92 if ((data->volume_is_set = !!volume))
93 data->volume = *volume;
94 }
95
96 void pa_sink_new_data_set_muted(pa_sink_new_data *data, pa_bool_t mute) {
97 pa_assert(data);
98
99 data->muted_is_set = TRUE;
100 data->muted = !!mute;
101 }
102
103 void pa_sink_new_data_set_port(pa_sink_new_data *data, const char *port) {
104 pa_assert(data);
105
106 pa_xfree(data->active_port);
107 data->active_port = pa_xstrdup(port);
108 }
109
110 void pa_sink_new_data_done(pa_sink_new_data *data) {
111 pa_assert(data);
112
113 pa_proplist_free(data->proplist);
114
115 if (data->ports) {
116 pa_device_port *p;
117
118 while ((p = pa_hashmap_steal_first(data->ports)))
119 pa_device_port_free(p);
120
121 pa_hashmap_free(data->ports, NULL, NULL);
122 }
123
124 pa_xfree(data->name);
125 pa_xfree(data->active_port);
126 }
127
128 pa_device_port *pa_device_port_new(const char *name, const char *description, size_t extra) {
129 pa_device_port *p;
130
131 pa_assert(name);
132
133 p = pa_xmalloc(PA_ALIGN(sizeof(pa_device_port)) + extra);
134 p->name = pa_xstrdup(name);
135 p->description = pa_xstrdup(description);
136
137 p->priority = 0;
138
139 return p;
140 }
141
142 void pa_device_port_free(pa_device_port *p) {
143 pa_assert(p);
144
145 pa_xfree(p->name);
146 pa_xfree(p->description);
147 pa_xfree(p);
148 }
149
150 /* Called from main context */
151 static void reset_callbacks(pa_sink *s) {
152 pa_assert(s);
153
154 s->set_state = NULL;
155 s->get_volume = NULL;
156 s->set_volume = NULL;
157 s->get_mute = NULL;
158 s->set_mute = NULL;
159 s->request_rewind = NULL;
160 s->update_requested_latency = NULL;
161 s->set_port = NULL;
162 }
163
164 /* Called from main context */
165 pa_sink* pa_sink_new(
166 pa_core *core,
167 pa_sink_new_data *data,
168 pa_sink_flags_t flags) {
169
170 pa_sink *s;
171 const char *name;
172 char st[PA_SAMPLE_SPEC_SNPRINT_MAX], cm[PA_CHANNEL_MAP_SNPRINT_MAX];
173 pa_source_new_data source_data;
174 const char *dn;
175 char *pt;
176
177 pa_assert(core);
178 pa_assert(data);
179 pa_assert(data->name);
180 pa_assert_ctl_context();
181
182 s = pa_msgobject_new(pa_sink);
183
184 if (!(name = pa_namereg_register(core, data->name, PA_NAMEREG_SINK, s, data->namereg_fail))) {
185 pa_log_debug("Failed to register name %s.", data->name);
186 pa_xfree(s);
187 return NULL;
188 }
189
190 pa_sink_new_data_set_name(data, name);
191
192 if (pa_hook_fire(&core->hooks[PA_CORE_HOOK_SINK_NEW], data) < 0) {
193 pa_xfree(s);
194 pa_namereg_unregister(core, name);
195 return NULL;
196 }
197
198 /* FIXME, need to free s here on failure */
199
200 pa_return_null_if_fail(!data->driver || pa_utf8_valid(data->driver));
201 pa_return_null_if_fail(data->name && pa_utf8_valid(data->name) && data->name[0]);
202
203 pa_return_null_if_fail(data->sample_spec_is_set && pa_sample_spec_valid(&data->sample_spec));
204
205 if (!data->channel_map_is_set)
206 pa_return_null_if_fail(pa_channel_map_init_auto(&data->channel_map, data->sample_spec.channels, PA_CHANNEL_MAP_DEFAULT));
207
208 pa_return_null_if_fail(pa_channel_map_valid(&data->channel_map));
209 pa_return_null_if_fail(data->channel_map.channels == data->sample_spec.channels);
210
211 if (!data->volume_is_set)
212 pa_cvolume_reset(&data->volume, data->sample_spec.channels);
213
214 pa_return_null_if_fail(pa_cvolume_valid(&data->volume));
215 pa_return_null_if_fail(pa_cvolume_compatible(&data->volume, &data->sample_spec));
216
217 if (!data->muted_is_set)
218 data->muted = FALSE;
219
220 if (data->card)
221 pa_proplist_update(data->proplist, PA_UPDATE_MERGE, data->card->proplist);
222
223 pa_device_init_description(data->proplist);
224 pa_device_init_icon(data->proplist, TRUE);
225 pa_device_init_intended_roles(data->proplist);
226
227 if (pa_hook_fire(&core->hooks[PA_CORE_HOOK_SINK_FIXATE], data) < 0) {
228 pa_xfree(s);
229 pa_namereg_unregister(core, name);
230 return NULL;
231 }
232
233 s->parent.parent.free = sink_free;
234 s->parent.process_msg = pa_sink_process_msg;
235
236 s->core = core;
237 s->state = PA_SINK_INIT;
238 s->flags = flags;
239 s->priority = 0;
240 s->suspend_cause = 0;
241 s->name = pa_xstrdup(name);
242 s->proplist = pa_proplist_copy(data->proplist);
243 s->driver = pa_xstrdup(pa_path_get_filename(data->driver));
244 s->module = data->module;
245 s->card = data->card;
246
247 s->priority = pa_device_init_priority(s->proplist);
248
249 s->sample_spec = data->sample_spec;
250 s->channel_map = data->channel_map;
251
252 s->inputs = pa_idxset_new(NULL, NULL);
253 s->n_corked = 0;
254
255 s->reference_volume = s->real_volume = data->volume;
256 pa_cvolume_reset(&s->soft_volume, s->sample_spec.channels);
257 s->base_volume = PA_VOLUME_NORM;
258 s->n_volume_steps = PA_VOLUME_NORM+1;
259 s->muted = data->muted;
260 s->refresh_volume = s->refresh_muted = FALSE;
261
262 reset_callbacks(s);
263 s->userdata = NULL;
264
265 s->asyncmsgq = NULL;
266
267 /* As a minor optimization we just steal the list instead of
268 * copying it here */
269 s->ports = data->ports;
270 data->ports = NULL;
271
272 s->active_port = NULL;
273 s->save_port = FALSE;
274
275 if (data->active_port && s->ports)
276 if ((s->active_port = pa_hashmap_get(s->ports, data->active_port)))
277 s->save_port = data->save_port;
278
279 if (!s->active_port && s->ports) {
280 void *state;
281 pa_device_port *p;
282
283 PA_HASHMAP_FOREACH(p, s->ports, state)
284 if (!s->active_port || p->priority > s->active_port->priority)
285 s->active_port = p;
286 }
287
288 s->save_volume = data->save_volume;
289 s->save_muted = data->save_muted;
290
291 pa_silence_memchunk_get(
292 &core->silence_cache,
293 core->mempool,
294 &s->silence,
295 &s->sample_spec,
296 0);
297
298 s->thread_info.rtpoll = NULL;
299 s->thread_info.inputs = pa_hashmap_new(pa_idxset_trivial_hash_func, pa_idxset_trivial_compare_func);
300 s->thread_info.soft_volume = s->soft_volume;
301 s->thread_info.soft_muted = s->muted;
302 s->thread_info.state = s->state;
303 s->thread_info.rewind_nbytes = 0;
304 s->thread_info.rewind_requested = FALSE;
305 s->thread_info.max_rewind = 0;
306 s->thread_info.max_request = 0;
307 s->thread_info.requested_latency_valid = FALSE;
308 s->thread_info.requested_latency = 0;
309 s->thread_info.min_latency = ABSOLUTE_MIN_LATENCY;
310 s->thread_info.max_latency = ABSOLUTE_MAX_LATENCY;
311 s->thread_info.fixed_latency = flags & PA_SINK_DYNAMIC_LATENCY ? 0 : DEFAULT_FIXED_LATENCY;
312
313 /* FIXME: This should probably be moved to pa_sink_put() */
314 pa_assert_se(pa_idxset_put(core->sinks, s, &s->index) >= 0);
315
316 if (s->card)
317 pa_assert_se(pa_idxset_put(s->card->sinks, s, NULL) >= 0);
318
319 pt = pa_proplist_to_string_sep(s->proplist, "\n ");
320 pa_log_info("Created sink %u \"%s\" with sample spec %s and channel map %s\n %s",
321 s->index,
322 s->name,
323 pa_sample_spec_snprint(st, sizeof(st), &s->sample_spec),
324 pa_channel_map_snprint(cm, sizeof(cm), &s->channel_map),
325 pt);
326 pa_xfree(pt);
327
328 pa_source_new_data_init(&source_data);
329 pa_source_new_data_set_sample_spec(&source_data, &s->sample_spec);
330 pa_source_new_data_set_channel_map(&source_data, &s->channel_map);
331 source_data.name = pa_sprintf_malloc("%s.monitor", name);
332 source_data.driver = data->driver;
333 source_data.module = data->module;
334 source_data.card = data->card;
335
336 dn = pa_proplist_gets(s->proplist, PA_PROP_DEVICE_DESCRIPTION);
337 pa_proplist_setf(source_data.proplist, PA_PROP_DEVICE_DESCRIPTION, "Monitor of %s", dn ? dn : s->name);
338 pa_proplist_sets(source_data.proplist, PA_PROP_DEVICE_CLASS, "monitor");
339
340 s->monitor_source = pa_source_new(core, &source_data,
341 ((flags & PA_SINK_LATENCY) ? PA_SOURCE_LATENCY : 0) |
342 ((flags & PA_SINK_DYNAMIC_LATENCY) ? PA_SOURCE_DYNAMIC_LATENCY : 0));
343
344 pa_source_new_data_done(&source_data);
345
346 if (!s->monitor_source) {
347 pa_sink_unlink(s);
348 pa_sink_unref(s);
349 return NULL;
350 }
351
352 s->monitor_source->monitor_of = s;
353
354 pa_source_set_latency_range(s->monitor_source, s->thread_info.min_latency, s->thread_info.max_latency);
355 pa_source_set_fixed_latency(s->monitor_source, s->thread_info.fixed_latency);
356 pa_source_set_max_rewind(s->monitor_source, s->thread_info.max_rewind);
357
358 return s;
359 }
360
361 /* Called from main context */
362 static int sink_set_state(pa_sink *s, pa_sink_state_t state) {
363 int ret;
364 pa_bool_t suspend_change;
365 pa_sink_state_t original_state;
366
367 pa_assert(s);
368 pa_assert_ctl_context();
369
370 if (s->state == state)
371 return 0;
372
373 original_state = s->state;
374
375 suspend_change =
376 (original_state == PA_SINK_SUSPENDED && PA_SINK_IS_OPENED(state)) ||
377 (PA_SINK_IS_OPENED(original_state) && state == PA_SINK_SUSPENDED);
378
379 if (s->set_state)
380 if ((ret = s->set_state(s, state)) < 0)
381 return ret;
382
383 if (s->asyncmsgq)
384 if ((ret = pa_asyncmsgq_send(s->asyncmsgq, PA_MSGOBJECT(s), PA_SINK_MESSAGE_SET_STATE, PA_UINT_TO_PTR(state), 0, NULL)) < 0) {
385
386 if (s->set_state)
387 s->set_state(s, original_state);
388
389 return ret;
390 }
391
392 s->state = state;
393
394 if (state != PA_SINK_UNLINKED) { /* if we enter UNLINKED state pa_sink_unlink() will fire the apropriate events */
395 pa_hook_fire(&s->core->hooks[PA_CORE_HOOK_SINK_STATE_CHANGED], s);
396 pa_subscription_post(s->core, PA_SUBSCRIPTION_EVENT_SINK | PA_SUBSCRIPTION_EVENT_CHANGE, s->index);
397 }
398
399 if (suspend_change) {
400 pa_sink_input *i;
401 uint32_t idx;
402
403 /* We're suspending or resuming, tell everyone about it */
404
405 PA_IDXSET_FOREACH(i, s->inputs, idx)
406 if (s->state == PA_SINK_SUSPENDED &&
407 (i->flags & PA_SINK_INPUT_KILL_ON_SUSPEND))
408 pa_sink_input_kill(i);
409 else if (i->suspend)
410 i->suspend(i, state == PA_SINK_SUSPENDED);
411
412 if (s->monitor_source)
413 pa_source_sync_suspend(s->monitor_source);
414 }
415
416 return 0;
417 }
418
419 /* Called from main context */
420 void pa_sink_put(pa_sink* s) {
421 pa_sink_assert_ref(s);
422 pa_assert_ctl_context();
423
424 pa_assert(s->state == PA_SINK_INIT);
425
426 /* The following fields must be initialized properly when calling _put() */
427 pa_assert(s->asyncmsgq);
428 pa_assert(s->thread_info.min_latency <= s->thread_info.max_latency);
429
430 /* Generally, flags should be initialized via pa_sink_new(). As a
431 * special exception we allow volume related flags to be set
432 * between _new() and _put(). */
433
434 if (!(s->flags & PA_SINK_HW_VOLUME_CTRL))
435 s->flags |= PA_SINK_DECIBEL_VOLUME;
436
437 if ((s->flags & PA_SINK_DECIBEL_VOLUME) && s->core->flat_volumes)
438 s->flags |= PA_SINK_FLAT_VOLUME;
439
440 /* We assume that if the sink implementor changed the default
441 * volume he did so in real_volume, because that is the usual
442 * place where he is supposed to place his changes. */
443 s->reference_volume = s->real_volume;
444
445 s->thread_info.soft_volume = s->soft_volume;
446 s->thread_info.soft_muted = s->muted;
447
448 pa_assert((s->flags & PA_SINK_HW_VOLUME_CTRL) || (s->base_volume == PA_VOLUME_NORM && s->flags & PA_SINK_DECIBEL_VOLUME));
449 pa_assert(!(s->flags & PA_SINK_DECIBEL_VOLUME) || s->n_volume_steps == PA_VOLUME_NORM+1);
450 pa_assert(!(s->flags & PA_SINK_DYNAMIC_LATENCY) == (s->thread_info.fixed_latency != 0));
451 pa_assert(!(s->flags & PA_SINK_LATENCY) == !(s->monitor_source->flags & PA_SOURCE_LATENCY));
452 pa_assert(!(s->flags & PA_SINK_DYNAMIC_LATENCY) == !(s->monitor_source->flags & PA_SOURCE_DYNAMIC_LATENCY));
453
454 pa_assert(s->monitor_source->thread_info.fixed_latency == s->thread_info.fixed_latency);
455 pa_assert(s->monitor_source->thread_info.min_latency == s->thread_info.min_latency);
456 pa_assert(s->monitor_source->thread_info.max_latency == s->thread_info.max_latency);
457
458 pa_assert_se(sink_set_state(s, PA_SINK_IDLE) == 0);
459
460 pa_source_put(s->monitor_source);
461
462 pa_subscription_post(s->core, PA_SUBSCRIPTION_EVENT_SINK | PA_SUBSCRIPTION_EVENT_NEW, s->index);
463 pa_hook_fire(&s->core->hooks[PA_CORE_HOOK_SINK_PUT], s);
464 }
465
466 /* Called from main context */
467 void pa_sink_unlink(pa_sink* s) {
468 pa_bool_t linked;
469 pa_sink_input *i, *j = NULL;
470
471 pa_assert(s);
472 pa_assert_ctl_context();
473
474 /* Please note that pa_sink_unlink() does more than simply
475 * reversing pa_sink_put(). It also undoes the registrations
476 * already done in pa_sink_new()! */
477
478 /* All operations here shall be idempotent, i.e. pa_sink_unlink()
479 * may be called multiple times on the same sink without bad
480 * effects. */
481
482 linked = PA_SINK_IS_LINKED(s->state);
483
484 if (linked)
485 pa_hook_fire(&s->core->hooks[PA_CORE_HOOK_SINK_UNLINK], s);
486
487 if (s->state != PA_SINK_UNLINKED)
488 pa_namereg_unregister(s->core, s->name);
489 pa_idxset_remove_by_data(s->core->sinks, s, NULL);
490
491 if (s->card)
492 pa_idxset_remove_by_data(s->card->sinks, s, NULL);
493
494 while ((i = pa_idxset_first(s->inputs, NULL))) {
495 pa_assert(i != j);
496 pa_sink_input_kill(i);
497 j = i;
498 }
499
500 if (linked)
501 sink_set_state(s, PA_SINK_UNLINKED);
502 else
503 s->state = PA_SINK_UNLINKED;
504
505 reset_callbacks(s);
506
507 if (s->monitor_source)
508 pa_source_unlink(s->monitor_source);
509
510 if (linked) {
511 pa_subscription_post(s->core, PA_SUBSCRIPTION_EVENT_SINK | PA_SUBSCRIPTION_EVENT_REMOVE, s->index);
512 pa_hook_fire(&s->core->hooks[PA_CORE_HOOK_SINK_UNLINK_POST], s);
513 }
514 }
515
516 /* Called from main context */
517 static void sink_free(pa_object *o) {
518 pa_sink *s = PA_SINK(o);
519 pa_sink_input *i;
520
521 pa_assert(s);
522 pa_assert_ctl_context();
523 pa_assert(pa_sink_refcnt(s) == 0);
524
525 if (PA_SINK_IS_LINKED(s->state))
526 pa_sink_unlink(s);
527
528 pa_log_info("Freeing sink %u \"%s\"", s->index, s->name);
529
530 if (s->monitor_source) {
531 pa_source_unref(s->monitor_source);
532 s->monitor_source = NULL;
533 }
534
535 pa_idxset_free(s->inputs, NULL, NULL);
536
537 while ((i = pa_hashmap_steal_first(s->thread_info.inputs)))
538 pa_sink_input_unref(i);
539
540 pa_hashmap_free(s->thread_info.inputs, NULL, NULL);
541
542 if (s->silence.memblock)
543 pa_memblock_unref(s->silence.memblock);
544
545 pa_xfree(s->name);
546 pa_xfree(s->driver);
547
548 if (s->proplist)
549 pa_proplist_free(s->proplist);
550
551 if (s->ports) {
552 pa_device_port *p;
553
554 while ((p = pa_hashmap_steal_first(s->ports)))
555 pa_device_port_free(p);
556
557 pa_hashmap_free(s->ports, NULL, NULL);
558 }
559
560 pa_xfree(s);
561 }
562
563 /* Called from main context, and not while the IO thread is active, please */
564 void pa_sink_set_asyncmsgq(pa_sink *s, pa_asyncmsgq *q) {
565 pa_sink_assert_ref(s);
566 pa_assert_ctl_context();
567
568 s->asyncmsgq = q;
569
570 if (s->monitor_source)
571 pa_source_set_asyncmsgq(s->monitor_source, q);
572 }
573
574 /* Called from main context, and not while the IO thread is active, please */
575 void pa_sink_update_flags(pa_sink *s, pa_sink_flags_t mask, pa_sink_flags_t value) {
576 pa_sink_assert_ref(s);
577 pa_assert_ctl_context();
578
579 if (mask == 0)
580 return;
581
582 /* For now, allow only a minimal set of flags to be changed. */
583 pa_assert((mask & ~(PA_SINK_DYNAMIC_LATENCY|PA_SINK_LATENCY)) == 0);
584
585 s->flags = (s->flags & ~mask) | (value & mask);
586
587 pa_source_update_flags(s->monitor_source,
588 ((mask & PA_SINK_LATENCY) ? PA_SOURCE_LATENCY : 0) |
589 ((mask & PA_SINK_DYNAMIC_LATENCY) ? PA_SOURCE_DYNAMIC_LATENCY : 0),
590 ((value & PA_SINK_LATENCY) ? PA_SOURCE_LATENCY : 0) |
591 ((value & PA_SINK_DYNAMIC_LATENCY) ? PA_SINK_DYNAMIC_LATENCY : 0));
592 }
593
594 /* Called from IO context, or before _put() from main context */
595 void pa_sink_set_rtpoll(pa_sink *s, pa_rtpoll *p) {
596 pa_sink_assert_ref(s);
597 pa_sink_assert_io_context(s);
598
599 s->thread_info.rtpoll = p;
600
601 if (s->monitor_source)
602 pa_source_set_rtpoll(s->monitor_source, p);
603 }
604
605 /* Called from main context */
606 int pa_sink_update_status(pa_sink*s) {
607 pa_sink_assert_ref(s);
608 pa_assert_ctl_context();
609 pa_assert(PA_SINK_IS_LINKED(s->state));
610
611 if (s->state == PA_SINK_SUSPENDED)
612 return 0;
613
614 return sink_set_state(s, pa_sink_used_by(s) ? PA_SINK_RUNNING : PA_SINK_IDLE);
615 }
616
617 /* Called from main context */
618 int pa_sink_suspend(pa_sink *s, pa_bool_t suspend, pa_suspend_cause_t cause) {
619 pa_sink_assert_ref(s);
620 pa_assert_ctl_context();
621 pa_assert(PA_SINK_IS_LINKED(s->state));
622 pa_assert(cause != 0);
623
624 if (suspend) {
625 s->suspend_cause |= cause;
626 s->monitor_source->suspend_cause |= cause;
627 } else {
628 s->suspend_cause &= ~cause;
629 s->monitor_source->suspend_cause &= ~cause;
630 }
631
632 if ((pa_sink_get_state(s) == PA_SINK_SUSPENDED) == !!s->suspend_cause)
633 return 0;
634
635 pa_log_debug("Suspend cause of sink %s is 0x%04x, %s", s->name, s->suspend_cause, s->suspend_cause ? "suspending" : "resuming");
636
637 if (s->suspend_cause)
638 return sink_set_state(s, PA_SINK_SUSPENDED);
639 else
640 return sink_set_state(s, pa_sink_used_by(s) ? PA_SINK_RUNNING : PA_SINK_IDLE);
641 }
642
643 /* Called from main context */
644 pa_queue *pa_sink_move_all_start(pa_sink *s, pa_queue *q) {
645 pa_sink_input *i, *n;
646 uint32_t idx;
647
648 pa_sink_assert_ref(s);
649 pa_assert_ctl_context();
650 pa_assert(PA_SINK_IS_LINKED(s->state));
651
652 if (!q)
653 q = pa_queue_new();
654
655 for (i = PA_SINK_INPUT(pa_idxset_first(s->inputs, &idx)); i; i = n) {
656 n = PA_SINK_INPUT(pa_idxset_next(s->inputs, &idx));
657
658 pa_sink_input_ref(i);
659
660 if (pa_sink_input_start_move(i) >= 0)
661 pa_queue_push(q, i);
662 else
663 pa_sink_input_unref(i);
664 }
665
666 return q;
667 }
668
669 /* Called from main context */
670 void pa_sink_move_all_finish(pa_sink *s, pa_queue *q, pa_bool_t save) {
671 pa_sink_input *i;
672
673 pa_sink_assert_ref(s);
674 pa_assert_ctl_context();
675 pa_assert(PA_SINK_IS_LINKED(s->state));
676 pa_assert(q);
677
678 while ((i = PA_SINK_INPUT(pa_queue_pop(q)))) {
679 if (pa_sink_input_finish_move(i, s, save) < 0)
680 pa_sink_input_fail_move(i);
681
682 pa_sink_input_unref(i);
683 }
684
685 pa_queue_free(q, NULL, NULL);
686 }
687
688 /* Called from main context */
689 void pa_sink_move_all_fail(pa_queue *q) {
690 pa_sink_input *i;
691
692 pa_assert_ctl_context();
693 pa_assert(q);
694
695 while ((i = PA_SINK_INPUT(pa_queue_pop(q)))) {
696 pa_sink_input_fail_move(i);
697 pa_sink_input_unref(i);
698 }
699
700 pa_queue_free(q, NULL, NULL);
701 }
702
703 /* Called from IO thread context */
704 void pa_sink_process_rewind(pa_sink *s, size_t nbytes) {
705 pa_sink_input *i;
706 void *state = NULL;
707
708 pa_sink_assert_ref(s);
709 pa_sink_assert_io_context(s);
710 pa_assert(PA_SINK_IS_LINKED(s->thread_info.state));
711
712 /* If nobody requested this and this is actually no real rewind
713 * then we can short cut this. Please note that this means that
714 * not all rewind requests triggered upstream will always be
715 * translated in actual requests! */
716 if (!s->thread_info.rewind_requested && nbytes <= 0)
717 return;
718
719 s->thread_info.rewind_nbytes = 0;
720 s->thread_info.rewind_requested = FALSE;
721
722 if (s->thread_info.state == PA_SINK_SUSPENDED)
723 return;
724
725 if (nbytes > 0)
726 pa_log_debug("Processing rewind...");
727
728 PA_HASHMAP_FOREACH(i, s->thread_info.inputs, state) {
729 pa_sink_input_assert_ref(i);
730 pa_sink_input_process_rewind(i, nbytes);
731 }
732
733 if (nbytes > 0)
734 if (s->monitor_source && PA_SOURCE_IS_LINKED(s->monitor_source->thread_info.state))
735 pa_source_process_rewind(s->monitor_source, nbytes);
736 }
737
738 /* Called from IO thread context */
739 static unsigned fill_mix_info(pa_sink *s, size_t *length, pa_mix_info *info, unsigned maxinfo) {
740 pa_sink_input *i;
741 unsigned n = 0;
742 void *state = NULL;
743 size_t mixlength = *length;
744
745 pa_sink_assert_ref(s);
746 pa_sink_assert_io_context(s);
747 pa_assert(info);
748
749 while ((i = pa_hashmap_iterate(s->thread_info.inputs, &state, NULL)) && maxinfo > 0) {
750 pa_sink_input_assert_ref(i);
751
752 pa_sink_input_peek(i, *length, &info->chunk, &info->volume);
753
754 if (mixlength == 0 || info->chunk.length < mixlength)
755 mixlength = info->chunk.length;
756
757 if (pa_memblock_is_silence(info->chunk.memblock)) {
758 pa_memblock_unref(info->chunk.memblock);
759 continue;
760 }
761
762 info->userdata = pa_sink_input_ref(i);
763
764 pa_assert(info->chunk.memblock);
765 pa_assert(info->chunk.length > 0);
766
767 info++;
768 n++;
769 maxinfo--;
770 }
771
772 if (mixlength > 0)
773 *length = mixlength;
774
775 return n;
776 }
777
778 /* Called from IO thread context */
779 static void inputs_drop(pa_sink *s, pa_mix_info *info, unsigned n, pa_memchunk *result) {
780 pa_sink_input *i;
781 void *state;
782 unsigned p = 0;
783 unsigned n_unreffed = 0;
784
785 pa_sink_assert_ref(s);
786 pa_sink_assert_io_context(s);
787 pa_assert(result);
788 pa_assert(result->memblock);
789 pa_assert(result->length > 0);
790
791 /* We optimize for the case where the order of the inputs has not changed */
792
793 PA_HASHMAP_FOREACH(i, s->thread_info.inputs, state) {
794 unsigned j;
795 pa_mix_info* m = NULL;
796
797 pa_sink_input_assert_ref(i);
798
799 /* Let's try to find the matching entry info the pa_mix_info array */
800 for (j = 0; j < n; j ++) {
801
802 if (info[p].userdata == i) {
803 m = info + p;
804 break;
805 }
806
807 p++;
808 if (p >= n)
809 p = 0;
810 }
811
812 /* Drop read data */
813 pa_sink_input_drop(i, result->length);
814
815 if (s->monitor_source && PA_SOURCE_IS_LINKED(s->monitor_source->thread_info.state)) {
816
817 if (pa_hashmap_size(i->thread_info.direct_outputs) > 0) {
818 void *ostate = NULL;
819 pa_source_output *o;
820 pa_memchunk c;
821
822 if (m && m->chunk.memblock) {
823 c = m->chunk;
824 pa_memblock_ref(c.memblock);
825 pa_assert(result->length <= c.length);
826 c.length = result->length;
827
828 pa_memchunk_make_writable(&c, 0);
829 pa_volume_memchunk(&c, &s->sample_spec, &m->volume);
830 } else {
831 c = s->silence;
832 pa_memblock_ref(c.memblock);
833 pa_assert(result->length <= c.length);
834 c.length = result->length;
835 }
836
837 while ((o = pa_hashmap_iterate(i->thread_info.direct_outputs, &ostate, NULL))) {
838 pa_source_output_assert_ref(o);
839 pa_assert(o->direct_on_input == i);
840 pa_source_post_direct(s->monitor_source, o, &c);
841 }
842
843 pa_memblock_unref(c.memblock);
844 }
845 }
846
847 if (m) {
848 if (m->chunk.memblock)
849 pa_memblock_unref(m->chunk.memblock);
850 pa_memchunk_reset(&m->chunk);
851
852 pa_sink_input_unref(m->userdata);
853 m->userdata = NULL;
854
855 n_unreffed += 1;
856 }
857 }
858
859 /* Now drop references to entries that are included in the
860 * pa_mix_info array but don't exist anymore */
861
862 if (n_unreffed < n) {
863 for (; n > 0; info++, n--) {
864 if (info->userdata)
865 pa_sink_input_unref(info->userdata);
866 if (info->chunk.memblock)
867 pa_memblock_unref(info->chunk.memblock);
868 }
869 }
870
871 if (s->monitor_source && PA_SOURCE_IS_LINKED(s->monitor_source->thread_info.state))
872 pa_source_post(s->monitor_source, result);
873 }
874
875 /* Called from IO thread context */
876 void pa_sink_render(pa_sink*s, size_t length, pa_memchunk *result) {
877 pa_mix_info info[MAX_MIX_CHANNELS];
878 unsigned n;
879 size_t block_size_max;
880
881 pa_sink_assert_ref(s);
882 pa_sink_assert_io_context(s);
883 pa_assert(PA_SINK_IS_LINKED(s->thread_info.state));
884 pa_assert(pa_frame_aligned(length, &s->sample_spec));
885 pa_assert(result);
886
887 pa_assert(!s->thread_info.rewind_requested);
888 pa_assert(s->thread_info.rewind_nbytes == 0);
889
890 if (s->thread_info.state == PA_SINK_SUSPENDED) {
891 result->memblock = pa_memblock_ref(s->silence.memblock);
892 result->index = s->silence.index;
893 result->length = PA_MIN(s->silence.length, length);
894 return;
895 }
896
897 pa_sink_ref(s);
898
899 if (length <= 0)
900 length = pa_frame_align(MIX_BUFFER_LENGTH, &s->sample_spec);
901
902 block_size_max = pa_mempool_block_size_max(s->core->mempool);
903 if (length > block_size_max)
904 length = pa_frame_align(block_size_max, &s->sample_spec);
905
906 pa_assert(length > 0);
907
908 n = fill_mix_info(s, &length, info, MAX_MIX_CHANNELS);
909
910 if (n == 0) {
911
912 *result = s->silence;
913 pa_memblock_ref(result->memblock);
914
915 if (result->length > length)
916 result->length = length;
917
918 } else if (n == 1) {
919 pa_cvolume volume;
920
921 *result = info[0].chunk;
922 pa_memblock_ref(result->memblock);
923
924 if (result->length > length)
925 result->length = length;
926
927 pa_sw_cvolume_multiply(&volume, &s->thread_info.soft_volume, &info[0].volume);
928
929 if (s->thread_info.soft_muted || pa_cvolume_is_muted(&volume)) {
930 pa_memblock_unref(result->memblock);
931 pa_silence_memchunk_get(&s->core->silence_cache,
932 s->core->mempool,
933 result,
934 &s->sample_spec,
935 result->length);
936 } else if (!pa_cvolume_is_norm(&volume)) {
937 pa_memchunk_make_writable(result, 0);
938 pa_volume_memchunk(result, &s->sample_spec, &volume);
939 }
940 } else {
941 void *ptr;
942 result->memblock = pa_memblock_new(s->core->mempool, length);
943
944 ptr = pa_memblock_acquire(result->memblock);
945 result->length = pa_mix(info, n,
946 ptr, length,
947 &s->sample_spec,
948 &s->thread_info.soft_volume,
949 s->thread_info.soft_muted);
950 pa_memblock_release(result->memblock);
951
952 result->index = 0;
953 }
954
955 inputs_drop(s, info, n, result);
956
957 pa_sink_unref(s);
958 }
959
960 /* Called from IO thread context */
961 void pa_sink_render_into(pa_sink*s, pa_memchunk *target) {
962 pa_mix_info info[MAX_MIX_CHANNELS];
963 unsigned n;
964 size_t length, block_size_max;
965
966 pa_sink_assert_ref(s);
967 pa_sink_assert_io_context(s);
968 pa_assert(PA_SINK_IS_LINKED(s->thread_info.state));
969 pa_assert(target);
970 pa_assert(target->memblock);
971 pa_assert(target->length > 0);
972 pa_assert(pa_frame_aligned(target->length, &s->sample_spec));
973
974 pa_assert(!s->thread_info.rewind_requested);
975 pa_assert(s->thread_info.rewind_nbytes == 0);
976
977 if (s->thread_info.state == PA_SINK_SUSPENDED) {
978 pa_silence_memchunk(target, &s->sample_spec);
979 return;
980 }
981
982 pa_sink_ref(s);
983
984 length = target->length;
985 block_size_max = pa_mempool_block_size_max(s->core->mempool);
986 if (length > block_size_max)
987 length = pa_frame_align(block_size_max, &s->sample_spec);
988
989 pa_assert(length > 0);
990
991 n = fill_mix_info(s, &length, info, MAX_MIX_CHANNELS);
992
993 if (n == 0) {
994 if (target->length > length)
995 target->length = length;
996
997 pa_silence_memchunk(target, &s->sample_spec);
998 } else if (n == 1) {
999 pa_cvolume volume;
1000
1001 if (target->length > length)
1002 target->length = length;
1003
1004 pa_sw_cvolume_multiply(&volume, &s->thread_info.soft_volume, &info[0].volume);
1005
1006 if (s->thread_info.soft_muted || pa_cvolume_is_muted(&volume))
1007 pa_silence_memchunk(target, &s->sample_spec);
1008 else {
1009 pa_memchunk vchunk;
1010
1011 vchunk = info[0].chunk;
1012 pa_memblock_ref(vchunk.memblock);
1013
1014 if (vchunk.length > length)
1015 vchunk.length = length;
1016
1017 if (!pa_cvolume_is_norm(&volume)) {
1018 pa_memchunk_make_writable(&vchunk, 0);
1019 pa_volume_memchunk(&vchunk, &s->sample_spec, &volume);
1020 }
1021
1022 pa_memchunk_memcpy(target, &vchunk);
1023 pa_memblock_unref(vchunk.memblock);
1024 }
1025
1026 } else {
1027 void *ptr;
1028
1029 ptr = pa_memblock_acquire(target->memblock);
1030
1031 target->length = pa_mix(info, n,
1032 (uint8_t*) ptr + target->index, length,
1033 &s->sample_spec,
1034 &s->thread_info.soft_volume,
1035 s->thread_info.soft_muted);
1036
1037 pa_memblock_release(target->memblock);
1038 }
1039
1040 inputs_drop(s, info, n, target);
1041
1042 pa_sink_unref(s);
1043 }
1044
1045 /* Called from IO thread context */
1046 void pa_sink_render_into_full(pa_sink *s, pa_memchunk *target) {
1047 pa_memchunk chunk;
1048 size_t l, d;
1049
1050 pa_sink_assert_ref(s);
1051 pa_sink_assert_io_context(s);
1052 pa_assert(PA_SINK_IS_LINKED(s->thread_info.state));
1053 pa_assert(target);
1054 pa_assert(target->memblock);
1055 pa_assert(target->length > 0);
1056 pa_assert(pa_frame_aligned(target->length, &s->sample_spec));
1057
1058 pa_assert(!s->thread_info.rewind_requested);
1059 pa_assert(s->thread_info.rewind_nbytes == 0);
1060
1061 if (s->thread_info.state == PA_SINK_SUSPENDED) {
1062 pa_silence_memchunk(target, &s->sample_spec);
1063 return;
1064 }
1065
1066 pa_sink_ref(s);
1067
1068 l = target->length;
1069 d = 0;
1070 while (l > 0) {
1071 chunk = *target;
1072 chunk.index += d;
1073 chunk.length -= d;
1074
1075 pa_sink_render_into(s, &chunk);
1076
1077 d += chunk.length;
1078 l -= chunk.length;
1079 }
1080
1081 pa_sink_unref(s);
1082 }
1083
1084 /* Called from IO thread context */
1085 void pa_sink_render_full(pa_sink *s, size_t length, pa_memchunk *result) {
1086 pa_sink_assert_ref(s);
1087 pa_sink_assert_io_context(s);
1088 pa_assert(PA_SINK_IS_LINKED(s->thread_info.state));
1089 pa_assert(length > 0);
1090 pa_assert(pa_frame_aligned(length, &s->sample_spec));
1091 pa_assert(result);
1092
1093 pa_assert(!s->thread_info.rewind_requested);
1094 pa_assert(s->thread_info.rewind_nbytes == 0);
1095
1096 pa_sink_ref(s);
1097
1098 pa_sink_render(s, length, result);
1099
1100 if (result->length < length) {
1101 pa_memchunk chunk;
1102
1103 pa_memchunk_make_writable(result, length);
1104
1105 chunk.memblock = result->memblock;
1106 chunk.index = result->index + result->length;
1107 chunk.length = length - result->length;
1108
1109 pa_sink_render_into_full(s, &chunk);
1110
1111 result->length = length;
1112 }
1113
1114 pa_sink_unref(s);
1115 }
1116
1117 /* Called from main thread */
1118 pa_usec_t pa_sink_get_latency(pa_sink *s) {
1119 pa_usec_t usec = 0;
1120
1121 pa_sink_assert_ref(s);
1122 pa_assert_ctl_context();
1123 pa_assert(PA_SINK_IS_LINKED(s->state));
1124
1125 /* The returned value is supposed to be in the time domain of the sound card! */
1126
1127 if (s->state == PA_SINK_SUSPENDED)
1128 return 0;
1129
1130 if (!(s->flags & PA_SINK_LATENCY))
1131 return 0;
1132
1133 pa_assert_se(pa_asyncmsgq_send(s->asyncmsgq, PA_MSGOBJECT(s), PA_SINK_MESSAGE_GET_LATENCY, &usec, 0, NULL) == 0);
1134
1135 return usec;
1136 }
1137
1138 /* Called from IO thread */
1139 pa_usec_t pa_sink_get_latency_within_thread(pa_sink *s) {
1140 pa_usec_t usec = 0;
1141 pa_msgobject *o;
1142
1143 pa_sink_assert_ref(s);
1144 pa_sink_assert_io_context(s);
1145 pa_assert(PA_SINK_IS_LINKED(s->thread_info.state));
1146
1147 /* The returned value is supposed to be in the time domain of the sound card! */
1148
1149 if (s->thread_info.state == PA_SINK_SUSPENDED)
1150 return 0;
1151
1152 if (!(s->flags & PA_SINK_LATENCY))
1153 return 0;
1154
1155 o = PA_MSGOBJECT(s);
1156
1157 /* FIXME: We probably should make this a proper vtable callback instead of going through process_msg() */
1158
1159 if (o->process_msg(o, PA_SINK_MESSAGE_GET_LATENCY, &usec, 0, NULL) < 0)
1160 return -1;
1161
1162 return usec;
1163 }
1164
1165 static pa_cvolume* cvolume_remap_minimal_impact(
1166 pa_cvolume *v,
1167 const pa_cvolume *template,
1168 const pa_channel_map *from,
1169 const pa_channel_map *to) {
1170
1171 pa_cvolume t;
1172
1173 pa_assert(v);
1174 pa_assert(template);
1175 pa_assert(from);
1176 pa_assert(to);
1177
1178 pa_return_val_if_fail(pa_cvolume_compatible_with_channel_map(v, from), NULL);
1179 pa_return_val_if_fail(pa_cvolume_compatible_with_channel_map(template, to), NULL);
1180
1181 /* Much like pa_cvolume_remap(), but tries to minimize impact when
1182 * mapping from sink input to sink volumes:
1183 *
1184 * If template is a possible remapping from v it is used instead
1185 * of remapping anew.
1186 *
1187 * If the channel maps don't match we set an all-channel volume on
1188 * the sink to ensure that changing a volume on one stream has no
1189 * effect that cannot be compensated for in another stream that
1190 * does not have the same channel map as the sink. */
1191
1192 if (pa_channel_map_equal(from, to))
1193 return v;
1194
1195 t = *template;
1196 if (pa_cvolume_equal(pa_cvolume_remap(&t, to, from), v)) {
1197 *v = *template;
1198 return v;
1199 }
1200
1201 pa_cvolume_set(v, to->channels, pa_cvolume_max(v));
1202 return v;
1203 }
1204
1205 /* Called from main context */
1206 static void compute_reference_ratios(pa_sink *s) {
1207 uint32_t idx;
1208 pa_sink_input *i;
1209
1210 pa_sink_assert_ref(s);
1211 pa_assert_ctl_context();
1212 pa_assert(PA_SINK_IS_LINKED(s->state));
1213 pa_assert(s->flags & PA_SINK_FLAT_VOLUME);
1214
1215 PA_IDXSET_FOREACH(i, s->inputs, idx) {
1216 unsigned c;
1217 pa_cvolume remapped;
1218
1219 /*
1220 * Calculates the reference volume from the sink's reference
1221 * volume. This basically calculates:
1222 *
1223 * i->reference_ratio = i->volume / s->reference_volume
1224 */
1225
1226 remapped = s->reference_volume;
1227 pa_cvolume_remap(&remapped, &s->channel_map, &i->channel_map);
1228
1229 i->reference_ratio.channels = i->sample_spec.channels;
1230
1231 for (c = 0; c < i->sample_spec.channels; c++) {
1232
1233 /* We don't update when the sink volume is 0 anyway */
1234 if (remapped.values[c] <= PA_VOLUME_MUTED)
1235 continue;
1236
1237 /* Don't update the reference ratio unless necessary */
1238 if (pa_sw_volume_multiply(
1239 i->reference_ratio.values[c],
1240 remapped.values[c]) == i->volume.values[c])
1241 continue;
1242
1243 i->reference_ratio.values[c] = pa_sw_volume_divide(
1244 i->volume.values[c],
1245 remapped.values[c]);
1246 }
1247 }
1248 }
1249
1250 /* Called from main context */
1251 static void compute_real_ratios(pa_sink *s) {
1252 pa_sink_input *i;
1253 uint32_t idx;
1254
1255 pa_sink_assert_ref(s);
1256 pa_assert_ctl_context();
1257 pa_assert(PA_SINK_IS_LINKED(s->state));
1258 pa_assert(s->flags & PA_SINK_FLAT_VOLUME);
1259
1260 PA_IDXSET_FOREACH(i, s->inputs, idx) {
1261 unsigned c;
1262 pa_cvolume remapped;
1263
1264 /*
1265 * This basically calculates:
1266 *
1267 * i->real_ratio := i->volume / s->real_volume
1268 * i->soft_volume := i->real_ratio * i->volume_factor
1269 */
1270
1271 remapped = s->real_volume;
1272 pa_cvolume_remap(&remapped, &s->channel_map, &i->channel_map);
1273
1274 i->real_ratio.channels = i->sample_spec.channels;
1275 i->soft_volume.channels = i->sample_spec.channels;
1276
1277 for (c = 0; c < i->sample_spec.channels; c++) {
1278
1279 if (remapped.values[c] <= PA_VOLUME_MUTED) {
1280 /* We leave i->real_ratio untouched */
1281 i->soft_volume.values[c] = PA_VOLUME_MUTED;
1282 continue;
1283 }
1284
1285 /* Don't lose accuracy unless necessary */
1286 if (pa_sw_volume_multiply(
1287 i->real_ratio.values[c],
1288 remapped.values[c]) != i->volume.values[c])
1289
1290 i->real_ratio.values[c] = pa_sw_volume_divide(
1291 i->volume.values[c],
1292 remapped.values[c]);
1293
1294 i->soft_volume.values[c] = pa_sw_volume_multiply(
1295 i->real_ratio.values[c],
1296 i->volume_factor.values[c]);
1297 }
1298
1299 /* We don't copy the soft_volume to the thread_info data
1300 * here. That must be done by the caller */
1301 }
1302 }
1303
1304 /* Called from main thread */
1305 static void compute_real_volume(pa_sink *s) {
1306 pa_sink_input *i;
1307 uint32_t idx;
1308
1309 pa_sink_assert_ref(s);
1310 pa_assert_ctl_context();
1311 pa_assert(PA_SINK_IS_LINKED(s->state));
1312 pa_assert(s->flags & PA_SINK_FLAT_VOLUME);
1313
1314 /* This determines the maximum volume of all streams and sets
1315 * s->real_volume accordingly. */
1316
1317 if (pa_idxset_isempty(s->inputs)) {
1318 /* In the special case that we have no sink input we leave the
1319 * volume unmodified. */
1320 s->real_volume = s->reference_volume;
1321 return;
1322 }
1323
1324 pa_cvolume_mute(&s->real_volume, s->channel_map.channels);
1325
1326 /* First let's determine the new maximum volume of all inputs
1327 * connected to this sink */
1328 PA_IDXSET_FOREACH(i, s->inputs, idx) {
1329 pa_cvolume remapped;
1330
1331 remapped = i->volume;
1332 cvolume_remap_minimal_impact(&remapped, &s->real_volume, &i->channel_map, &s->channel_map);
1333 pa_cvolume_merge(&s->real_volume, &s->real_volume, &remapped);
1334 }
1335
1336 /* Then, let's update the real ratios/soft volumes of all inputs
1337 * connected to this sink */
1338 compute_real_ratios(s);
1339 }
1340
1341 /* Called from main thread */
1342 static void propagate_reference_volume(pa_sink *s) {
1343 pa_sink_input *i;
1344 uint32_t idx;
1345
1346 pa_sink_assert_ref(s);
1347 pa_assert_ctl_context();
1348 pa_assert(PA_SINK_IS_LINKED(s->state));
1349 pa_assert(s->flags & PA_SINK_FLAT_VOLUME);
1350
1351 /* This is called whenever the sink volume changes that is not
1352 * caused by a sink input volume change. We need to fix up the
1353 * sink input volumes accordingly */
1354
1355 PA_IDXSET_FOREACH(i, s->inputs, idx) {
1356 pa_cvolume old_volume, remapped;
1357
1358 old_volume = i->volume;
1359
1360 /* This basically calculates:
1361 *
1362 * i->volume := s->reference_volume * i->reference_ratio */
1363
1364 remapped = s->reference_volume;
1365 pa_cvolume_remap(&remapped, &s->channel_map, &i->channel_map);
1366 pa_sw_cvolume_multiply(&i->volume, &remapped, &i->reference_ratio);
1367
1368 /* The volume changed, let's tell people so */
1369 if (!pa_cvolume_equal(&old_volume, &i->volume)) {
1370
1371 if (i->volume_changed)
1372 i->volume_changed(i);
1373
1374 pa_subscription_post(i->core, PA_SUBSCRIPTION_EVENT_SINK_INPUT|PA_SUBSCRIPTION_EVENT_CHANGE, i->index);
1375 }
1376 }
1377 }
1378
1379 /* Called from main thread */
1380 void pa_sink_set_volume(
1381 pa_sink *s,
1382 const pa_cvolume *volume,
1383 pa_bool_t send_msg,
1384 pa_bool_t save) {
1385
1386 pa_cvolume old_reference_volume;
1387 pa_bool_t reference_changed;
1388
1389 pa_sink_assert_ref(s);
1390 pa_assert_ctl_context();
1391 pa_assert(PA_SINK_IS_LINKED(s->state));
1392 pa_assert(!volume || pa_cvolume_valid(volume));
1393 pa_assert(volume || (s->flags & PA_SINK_FLAT_VOLUME));
1394 pa_assert(!volume || volume->channels == 1 || pa_cvolume_compatible(volume, &s->sample_spec));
1395
1396 /* make sure we don't change the volume when a PASSTHROUGH input is connected */
1397 if (s->flags & PA_SINK_PASSTHROUGH) {
1398 pa_sink_input *alt_i;
1399 uint32_t idx;
1400
1401 /* one and only one PASSTHROUGH input can possibly be connected */
1402 if (pa_idxset_size(s->inputs) == 1) {
1403
1404 alt_i = pa_idxset_first(s->inputs, &idx);
1405
1406 if (alt_i->flags & PA_SINK_INPUT_PASSTHROUGH) {
1407 /* FIXME: Need to notify client that volume control is disabled */
1408 pa_log_warn("Cannot change volume, Sink is connected to PASSTHROUGH input");
1409 return;
1410 }
1411 }
1412 }
1413
1414 /* As a special exception we accept mono volumes on all sinks --
1415 * even on those with more complex channel maps */
1416
1417 /* If volume is NULL we synchronize the sink's real and reference
1418 * volumes with the stream volumes. If it is not NULL we update
1419 * the reference_volume with it. */
1420
1421 old_reference_volume = s->reference_volume;
1422
1423 if (volume) {
1424
1425 if (pa_cvolume_compatible(volume, &s->sample_spec))
1426 s->reference_volume = *volume;
1427 else
1428 pa_cvolume_scale(&s->reference_volume, pa_cvolume_max(volume));
1429
1430 if (s->flags & PA_SINK_FLAT_VOLUME) {
1431 /* OK, propagate this volume change back to the inputs */
1432 propagate_reference_volume(s);
1433
1434 /* And now recalculate the real volume */
1435 compute_real_volume(s);
1436 } else
1437 s->real_volume = s->reference_volume;
1438
1439 } else {
1440 pa_assert(s->flags & PA_SINK_FLAT_VOLUME);
1441
1442 /* Ok, let's determine the new real volume */
1443 compute_real_volume(s);
1444
1445 /* Let's 'push' the reference volume if necessary */
1446 pa_cvolume_merge(&s->reference_volume, &s->reference_volume, &s->real_volume);
1447
1448 /* We need to fix the reference ratios of all streams now that
1449 * we changed the reference volume */
1450 compute_reference_ratios(s);
1451 }
1452
1453 reference_changed = !pa_cvolume_equal(&old_reference_volume, &s->reference_volume);
1454 s->save_volume = (!reference_changed && s->save_volume) || save;
1455
1456 if (s->set_volume) {
1457 /* If we have a function set_volume(), then we do not apply a
1458 * soft volume by default. However, set_volume() is free to
1459 * apply one to s->soft_volume */
1460
1461 pa_cvolume_reset(&s->soft_volume, s->sample_spec.channels);
1462 s->set_volume(s);
1463
1464 } else
1465 /* If we have no function set_volume(), then the soft volume
1466 * becomes the virtual volume */
1467 s->soft_volume = s->real_volume;
1468
1469 /* This tells the sink that soft and/or virtual volume changed */
1470 if (send_msg)
1471 pa_assert_se(pa_asyncmsgq_send(s->asyncmsgq, PA_MSGOBJECT(s), PA_SINK_MESSAGE_SET_VOLUME, NULL, 0, NULL) == 0);
1472
1473 if (reference_changed)
1474 pa_subscription_post(s->core, PA_SUBSCRIPTION_EVENT_SINK|PA_SUBSCRIPTION_EVENT_CHANGE, s->index);
1475 }
1476
1477 /* Called from main thread. Only to be called by sink implementor */
1478 void pa_sink_set_soft_volume(pa_sink *s, const pa_cvolume *volume) {
1479 pa_sink_assert_ref(s);
1480 pa_assert_ctl_context();
1481
1482 if (!volume)
1483 pa_cvolume_reset(&s->soft_volume, s->sample_spec.channels);
1484 else
1485 s->soft_volume = *volume;
1486
1487 if (PA_SINK_IS_LINKED(s->state))
1488 pa_assert_se(pa_asyncmsgq_send(s->asyncmsgq, PA_MSGOBJECT(s), PA_SINK_MESSAGE_SET_VOLUME, NULL, 0, NULL) == 0);
1489 else
1490 s->thread_info.soft_volume = s->soft_volume;
1491 }
1492
1493 static void propagate_real_volume(pa_sink *s, const pa_cvolume *old_real_volume) {
1494 pa_sink_input *i;
1495 uint32_t idx;
1496 pa_cvolume old_reference_volume;
1497
1498 pa_sink_assert_ref(s);
1499 pa_assert_ctl_context();
1500 pa_assert(PA_SINK_IS_LINKED(s->state));
1501
1502 /* This is called when the hardware's real volume changes due to
1503 * some external event. We copy the real volume into our
1504 * reference volume and then rebuild the stream volumes based on
1505 * i->real_ratio which should stay fixed. */
1506
1507 if (pa_cvolume_equal(old_real_volume, &s->real_volume))
1508 return;
1509
1510 old_reference_volume = s->reference_volume;
1511
1512 /* 1. Make the real volume the reference volume */
1513 s->reference_volume = s->real_volume;
1514
1515 if (s->flags & PA_SINK_FLAT_VOLUME) {
1516
1517 PA_IDXSET_FOREACH(i, s->inputs, idx) {
1518 pa_cvolume old_volume, remapped;
1519
1520 old_volume = i->volume;
1521
1522 /* 2. Since the sink's reference and real volumes are equal
1523 * now our ratios should be too. */
1524 i->reference_ratio = i->real_ratio;
1525
1526 /* 3. Recalculate the new stream reference volume based on the
1527 * reference ratio and the sink's reference volume.
1528 *
1529 * This basically calculates:
1530 *
1531 * i->volume = s->reference_volume * i->reference_ratio
1532 *
1533 * This is identical to propagate_reference_volume() */
1534 remapped = s->reference_volume;
1535 pa_cvolume_remap(&remapped, &s->channel_map, &i->channel_map);
1536 pa_sw_cvolume_multiply(&i->volume, &remapped, &i->reference_ratio);
1537
1538 /* Notify if something changed */
1539 if (!pa_cvolume_equal(&old_volume, &i->volume)) {
1540
1541 if (i->volume_changed)
1542 i->volume_changed(i);
1543
1544 pa_subscription_post(i->core, PA_SUBSCRIPTION_EVENT_SINK_INPUT|PA_SUBSCRIPTION_EVENT_CHANGE, i->index);
1545 }
1546 }
1547 }
1548
1549 /* Something got changed in the hardware. It probably makes sense
1550 * to save changed hw settings given that hw volume changes not
1551 * triggered by PA are almost certainly done by the user. */
1552 s->save_volume = TRUE;
1553
1554 if (!pa_cvolume_equal(&old_reference_volume, &s->reference_volume))
1555 pa_subscription_post(s->core, PA_SUBSCRIPTION_EVENT_SINK|PA_SUBSCRIPTION_EVENT_CHANGE, s->index);
1556 }
1557
1558 /* Called from main thread */
1559 const pa_cvolume *pa_sink_get_volume(pa_sink *s, pa_bool_t force_refresh) {
1560 pa_sink_assert_ref(s);
1561 pa_assert_ctl_context();
1562 pa_assert(PA_SINK_IS_LINKED(s->state));
1563
1564 if (s->refresh_volume || force_refresh) {
1565 struct pa_cvolume old_real_volume;
1566
1567 old_real_volume = s->real_volume;
1568
1569 if (s->get_volume)
1570 s->get_volume(s);
1571
1572 pa_assert_se(pa_asyncmsgq_send(s->asyncmsgq, PA_MSGOBJECT(s), PA_SINK_MESSAGE_GET_VOLUME, NULL, 0, NULL) == 0);
1573
1574 propagate_real_volume(s, &old_real_volume);
1575 }
1576
1577 return &s->reference_volume;
1578 }
1579
1580 /* Called from main thread */
1581 void pa_sink_volume_changed(pa_sink *s, const pa_cvolume *new_real_volume) {
1582 pa_cvolume old_real_volume;
1583
1584 pa_sink_assert_ref(s);
1585 pa_assert_ctl_context();
1586 pa_assert(PA_SINK_IS_LINKED(s->state));
1587
1588 /* The sink implementor may call this if the volume changed to make sure everyone is notified */
1589
1590 old_real_volume = s->real_volume;
1591 s->real_volume = *new_real_volume;
1592
1593 propagate_real_volume(s, &old_real_volume);
1594 }
1595
1596 /* Called from main thread */
1597 void pa_sink_set_mute(pa_sink *s, pa_bool_t mute, pa_bool_t save) {
1598 pa_bool_t old_muted;
1599
1600 pa_sink_assert_ref(s);
1601 pa_assert_ctl_context();
1602 pa_assert(PA_SINK_IS_LINKED(s->state));
1603
1604 old_muted = s->muted;
1605 s->muted = mute;
1606 s->save_muted = (old_muted == s->muted && s->save_muted) || save;
1607
1608 if (s->set_mute)
1609 s->set_mute(s);
1610
1611 pa_assert_se(pa_asyncmsgq_send(s->asyncmsgq, PA_MSGOBJECT(s), PA_SINK_MESSAGE_SET_MUTE, NULL, 0, NULL) == 0);
1612
1613 if (old_muted != s->muted)
1614 pa_subscription_post(s->core, PA_SUBSCRIPTION_EVENT_SINK|PA_SUBSCRIPTION_EVENT_CHANGE, s->index);
1615 }
1616
1617 /* Called from main thread */
1618 pa_bool_t pa_sink_get_mute(pa_sink *s, pa_bool_t force_refresh) {
1619
1620 pa_sink_assert_ref(s);
1621 pa_assert_ctl_context();
1622 pa_assert(PA_SINK_IS_LINKED(s->state));
1623
1624 if (s->refresh_muted || force_refresh) {
1625 pa_bool_t old_muted = s->muted;
1626
1627 if (s->get_mute)
1628 s->get_mute(s);
1629
1630 pa_assert_se(pa_asyncmsgq_send(s->asyncmsgq, PA_MSGOBJECT(s), PA_SINK_MESSAGE_GET_MUTE, NULL, 0, NULL) == 0);
1631
1632 if (old_muted != s->muted) {
1633 s->save_muted = TRUE;
1634
1635 pa_subscription_post(s->core, PA_SUBSCRIPTION_EVENT_SINK|PA_SUBSCRIPTION_EVENT_CHANGE, s->index);
1636
1637 /* Make sure the soft mute status stays in sync */
1638 pa_assert_se(pa_asyncmsgq_send(s->asyncmsgq, PA_MSGOBJECT(s), PA_SINK_MESSAGE_SET_MUTE, NULL, 0, NULL) == 0);
1639 }
1640 }
1641
1642 return s->muted;
1643 }
1644
1645 /* Called from main thread */
1646 void pa_sink_mute_changed(pa_sink *s, pa_bool_t new_muted) {
1647 pa_sink_assert_ref(s);
1648 pa_assert_ctl_context();
1649 pa_assert(PA_SINK_IS_LINKED(s->state));
1650
1651 /* The sink implementor may call this if the volume changed to make sure everyone is notified */
1652
1653 if (s->muted == new_muted)
1654 return;
1655
1656 s->muted = new_muted;
1657 s->save_muted = TRUE;
1658
1659 pa_subscription_post(s->core, PA_SUBSCRIPTION_EVENT_SINK|PA_SUBSCRIPTION_EVENT_CHANGE, s->index);
1660 }
1661
1662 /* Called from main thread */
1663 pa_bool_t pa_sink_update_proplist(pa_sink *s, pa_update_mode_t mode, pa_proplist *p) {
1664 pa_sink_assert_ref(s);
1665 pa_assert_ctl_context();
1666
1667 if (p)
1668 pa_proplist_update(s->proplist, mode, p);
1669
1670 if (PA_SINK_IS_LINKED(s->state)) {
1671 pa_hook_fire(&s->core->hooks[PA_CORE_HOOK_SINK_PROPLIST_CHANGED], s);
1672 pa_subscription_post(s->core, PA_SUBSCRIPTION_EVENT_SINK|PA_SUBSCRIPTION_EVENT_CHANGE, s->index);
1673 }
1674
1675 return TRUE;
1676 }
1677
1678 /* Called from main thread */
1679 /* FIXME -- this should be dropped and be merged into pa_sink_update_proplist() */
1680 void pa_sink_set_description(pa_sink *s, const char *description) {
1681 const char *old;
1682 pa_sink_assert_ref(s);
1683 pa_assert_ctl_context();
1684
1685 if (!description && !pa_proplist_contains(s->proplist, PA_PROP_DEVICE_DESCRIPTION))
1686 return;
1687
1688 old = pa_proplist_gets(s->proplist, PA_PROP_DEVICE_DESCRIPTION);
1689
1690 if (old && description && pa_streq(old, description))
1691 return;
1692
1693 if (description)
1694 pa_proplist_sets(s->proplist, PA_PROP_DEVICE_DESCRIPTION, description);
1695 else
1696 pa_proplist_unset(s->proplist, PA_PROP_DEVICE_DESCRIPTION);
1697
1698 if (s->monitor_source) {
1699 char *n;
1700
1701 n = pa_sprintf_malloc("Monitor Source of %s", description ? description : s->name);
1702 pa_source_set_description(s->monitor_source, n);
1703 pa_xfree(n);
1704 }
1705
1706 if (PA_SINK_IS_LINKED(s->state)) {
1707 pa_subscription_post(s->core, PA_SUBSCRIPTION_EVENT_SINK|PA_SUBSCRIPTION_EVENT_CHANGE, s->index);
1708 pa_hook_fire(&s->core->hooks[PA_CORE_HOOK_SINK_PROPLIST_CHANGED], s);
1709 }
1710 }
1711
1712 /* Called from main thread */
1713 unsigned pa_sink_linked_by(pa_sink *s) {
1714 unsigned ret;
1715
1716 pa_sink_assert_ref(s);
1717 pa_assert_ctl_context();
1718 pa_assert(PA_SINK_IS_LINKED(s->state));
1719
1720 ret = pa_idxset_size(s->inputs);
1721
1722 /* We add in the number of streams connected to us here. Please
1723 * note the asymmmetry to pa_sink_used_by()! */
1724
1725 if (s->monitor_source)
1726 ret += pa_source_linked_by(s->monitor_source);
1727
1728 return ret;
1729 }
1730
1731 /* Called from main thread */
1732 unsigned pa_sink_used_by(pa_sink *s) {
1733 unsigned ret;
1734
1735 pa_sink_assert_ref(s);
1736 pa_assert_ctl_context();
1737 pa_assert(PA_SINK_IS_LINKED(s->state));
1738
1739 ret = pa_idxset_size(s->inputs);
1740 pa_assert(ret >= s->n_corked);
1741
1742 /* Streams connected to our monitor source do not matter for
1743 * pa_sink_used_by()!.*/
1744
1745 return ret - s->n_corked;
1746 }
1747
1748 /* Called from main thread */
1749 unsigned pa_sink_check_suspend(pa_sink *s) {
1750 unsigned ret;
1751 pa_sink_input *i;
1752 uint32_t idx;
1753
1754 pa_sink_assert_ref(s);
1755 pa_assert_ctl_context();
1756
1757 if (!PA_SINK_IS_LINKED(s->state))
1758 return 0;
1759
1760 ret = 0;
1761
1762 PA_IDXSET_FOREACH(i, s->inputs, idx) {
1763 pa_sink_input_state_t st;
1764
1765 st = pa_sink_input_get_state(i);
1766 pa_assert(PA_SINK_INPUT_IS_LINKED(st));
1767
1768 if (st == PA_SINK_INPUT_CORKED)
1769 continue;
1770
1771 if (i->flags & PA_SINK_INPUT_DONT_INHIBIT_AUTO_SUSPEND)
1772 continue;
1773
1774 ret ++;
1775 }
1776
1777 if (s->monitor_source)
1778 ret += pa_source_check_suspend(s->monitor_source);
1779
1780 return ret;
1781 }
1782
1783 /* Called from the IO thread */
1784 static void sync_input_volumes_within_thread(pa_sink *s) {
1785 pa_sink_input *i;
1786 void *state = NULL;
1787
1788 pa_sink_assert_ref(s);
1789 pa_sink_assert_io_context(s);
1790
1791 PA_HASHMAP_FOREACH(i, s->thread_info.inputs, state) {
1792 if (pa_atomic_load(&i->before_ramping_v))
1793 i->thread_info.future_soft_volume = i->soft_volume;
1794
1795 if (pa_cvolume_equal(&i->thread_info.soft_volume, &i->soft_volume))
1796 continue;
1797
1798 if (!pa_atomic_load(&i->before_ramping_v))
1799 i->thread_info.soft_volume = i->soft_volume;
1800 pa_sink_input_request_rewind(i, 0, TRUE, FALSE, FALSE);
1801 }
1802 }
1803
1804 /* Called from IO thread, except when it is not */
1805 int pa_sink_process_msg(pa_msgobject *o, int code, void *userdata, int64_t offset, pa_memchunk *chunk) {
1806 pa_sink *s = PA_SINK(o);
1807 pa_sink_assert_ref(s);
1808
1809 switch ((pa_sink_message_t) code) {
1810
1811 case PA_SINK_MESSAGE_ADD_INPUT: {
1812 pa_sink_input *i = PA_SINK_INPUT(userdata);
1813
1814 /* If you change anything here, make sure to change the
1815 * sink input handling a few lines down at
1816 * PA_SINK_MESSAGE_FINISH_MOVE, too. */
1817
1818 pa_hashmap_put(s->thread_info.inputs, PA_UINT32_TO_PTR(i->index), pa_sink_input_ref(i));
1819
1820 /* Since the caller sleeps in pa_sink_input_put(), we can
1821 * safely access data outside of thread_info even though
1822 * it is mutable */
1823
1824 if ((i->thread_info.sync_prev = i->sync_prev)) {
1825 pa_assert(i->sink == i->thread_info.sync_prev->sink);
1826 pa_assert(i->sync_prev->sync_next == i);
1827 i->thread_info.sync_prev->thread_info.sync_next = i;
1828 }
1829
1830 if ((i->thread_info.sync_next = i->sync_next)) {
1831 pa_assert(i->sink == i->thread_info.sync_next->sink);
1832 pa_assert(i->sync_next->sync_prev == i);
1833 i->thread_info.sync_next->thread_info.sync_prev = i;
1834 }
1835
1836 pa_assert(!i->thread_info.attached);
1837 i->thread_info.attached = TRUE;
1838
1839 if (i->attach)
1840 i->attach(i);
1841
1842 pa_sink_input_set_state_within_thread(i, i->state);
1843
1844 /* The requested latency of the sink input needs to be
1845 * fixed up and then configured on the sink */
1846
1847 if (i->thread_info.requested_sink_latency != (pa_usec_t) -1)
1848 pa_sink_input_set_requested_latency_within_thread(i, i->thread_info.requested_sink_latency);
1849
1850 pa_sink_input_update_max_rewind(i, s->thread_info.max_rewind);
1851 pa_sink_input_update_max_request(i, s->thread_info.max_request);
1852
1853 /* We don't rewind here automatically. This is left to the
1854 * sink input implementor because some sink inputs need a
1855 * slow start, i.e. need some time to buffer client
1856 * samples before beginning streaming. */
1857
1858 /* In flat volume mode we need to update the volume as
1859 * well */
1860 return o->process_msg(o, PA_SINK_MESSAGE_SET_VOLUME, NULL, 0, NULL);
1861 }
1862
1863 case PA_SINK_MESSAGE_REMOVE_INPUT: {
1864 pa_sink_input *i = PA_SINK_INPUT(userdata);
1865
1866 /* If you change anything here, make sure to change the
1867 * sink input handling a few lines down at
1868 * PA_SINK_MESSAGE_PREPAPRE_MOVE, too. */
1869
1870 if (i->detach)
1871 i->detach(i);
1872
1873 pa_sink_input_set_state_within_thread(i, i->state);
1874
1875 pa_assert(i->thread_info.attached);
1876 i->thread_info.attached = FALSE;
1877
1878 /* Since the caller sleeps in pa_sink_input_unlink(),
1879 * we can safely access data outside of thread_info even
1880 * though it is mutable */
1881
1882 pa_assert(!i->sync_prev);
1883 pa_assert(!i->sync_next);
1884
1885 if (i->thread_info.sync_prev) {
1886 i->thread_info.sync_prev->thread_info.sync_next = i->thread_info.sync_prev->sync_next;
1887 i->thread_info.sync_prev = NULL;
1888 }
1889
1890 if (i->thread_info.sync_next) {
1891 i->thread_info.sync_next->thread_info.sync_prev = i->thread_info.sync_next->sync_prev;
1892 i->thread_info.sync_next = NULL;
1893 }
1894
1895 if (pa_hashmap_remove(s->thread_info.inputs, PA_UINT32_TO_PTR(i->index)))
1896 pa_sink_input_unref(i);
1897
1898 pa_sink_invalidate_requested_latency(s, TRUE);
1899 pa_sink_request_rewind(s, (size_t) -1);
1900
1901 /* In flat volume mode we need to update the volume as
1902 * well */
1903 return o->process_msg(o, PA_SINK_MESSAGE_SET_VOLUME, NULL, 0, NULL);
1904 }
1905
1906 case PA_SINK_MESSAGE_START_MOVE: {
1907 pa_sink_input *i = PA_SINK_INPUT(userdata);
1908
1909 /* We don't support moving synchronized streams. */
1910 pa_assert(!i->sync_prev);
1911 pa_assert(!i->sync_next);
1912 pa_assert(!i->thread_info.sync_next);
1913 pa_assert(!i->thread_info.sync_prev);
1914
1915 if (i->thread_info.state != PA_SINK_INPUT_CORKED) {
1916 pa_usec_t usec = 0;
1917 size_t sink_nbytes, total_nbytes;
1918
1919 /* Get the latency of the sink */
1920 usec = pa_sink_get_latency_within_thread(s);
1921 sink_nbytes = pa_usec_to_bytes(usec, &s->sample_spec);
1922 total_nbytes = sink_nbytes + pa_memblockq_get_length(i->thread_info.render_memblockq);
1923
1924 if (total_nbytes > 0) {
1925 i->thread_info.rewrite_nbytes = i->thread_info.resampler ? pa_resampler_request(i->thread_info.resampler, total_nbytes) : total_nbytes;
1926 i->thread_info.rewrite_flush = TRUE;
1927 pa_sink_input_process_rewind(i, sink_nbytes);
1928 }
1929 }
1930
1931 if (i->detach)
1932 i->detach(i);
1933
1934 pa_assert(i->thread_info.attached);
1935 i->thread_info.attached = FALSE;
1936
1937 /* Let's remove the sink input ...*/
1938 if (pa_hashmap_remove(s->thread_info.inputs, PA_UINT32_TO_PTR(i->index)))
1939 pa_sink_input_unref(i);
1940
1941 pa_sink_invalidate_requested_latency(s, TRUE);
1942
1943 pa_log_debug("Requesting rewind due to started move");
1944 pa_sink_request_rewind(s, (size_t) -1);
1945
1946 /* In flat volume mode we need to update the volume as
1947 * well */
1948 return o->process_msg(o, PA_SINK_MESSAGE_SET_VOLUME, NULL, 0, NULL);
1949 }
1950
1951 case PA_SINK_MESSAGE_FINISH_MOVE: {
1952 pa_sink_input *i = PA_SINK_INPUT(userdata);
1953
1954 /* We don't support moving synchronized streams. */
1955 pa_assert(!i->sync_prev);
1956 pa_assert(!i->sync_next);
1957 pa_assert(!i->thread_info.sync_next);
1958 pa_assert(!i->thread_info.sync_prev);
1959
1960 pa_hashmap_put(s->thread_info.inputs, PA_UINT32_TO_PTR(i->index), pa_sink_input_ref(i));
1961
1962 pa_assert(!i->thread_info.attached);
1963 i->thread_info.attached = TRUE;
1964
1965 if (i->attach)
1966 i->attach(i);
1967
1968 if (i->thread_info.requested_sink_latency != (pa_usec_t) -1)
1969 pa_sink_input_set_requested_latency_within_thread(i, i->thread_info.requested_sink_latency);
1970
1971 pa_sink_input_update_max_rewind(i, s->thread_info.max_rewind);
1972 pa_sink_input_update_max_request(i, s->thread_info.max_request);
1973
1974 if (i->thread_info.state != PA_SINK_INPUT_CORKED) {
1975 pa_usec_t usec = 0;
1976 size_t nbytes;
1977
1978 /* Get the latency of the sink */
1979 usec = pa_sink_get_latency_within_thread(s);
1980 nbytes = pa_usec_to_bytes(usec, &s->sample_spec);
1981
1982 if (nbytes > 0)
1983 pa_sink_input_drop(i, nbytes);
1984
1985 pa_log_debug("Requesting rewind due to finished move");
1986 pa_sink_request_rewind(s, nbytes);
1987 }
1988
1989 /* In flat volume mode we need to update the volume as
1990 * well */
1991 return o->process_msg(o, PA_SINK_MESSAGE_SET_VOLUME, NULL, 0, NULL);
1992 }
1993
1994 case PA_SINK_MESSAGE_SET_VOLUME:
1995
1996 if (!pa_cvolume_equal(&s->thread_info.soft_volume, &s->soft_volume)) {
1997 s->thread_info.soft_volume = s->soft_volume;
1998 pa_sink_request_rewind(s, (size_t) -1);
1999 }
2000
2001 if (!(s->flags & PA_SINK_FLAT_VOLUME))
2002 return 0;
2003
2004 /* Fall through ... */
2005
2006 case PA_SINK_MESSAGE_SYNC_VOLUMES:
2007 sync_input_volumes_within_thread(s);
2008 return 0;
2009
2010 case PA_SINK_MESSAGE_GET_VOLUME:
2011 return 0;
2012
2013 case PA_SINK_MESSAGE_SET_MUTE:
2014
2015 if (s->thread_info.soft_muted != s->muted) {
2016 s->thread_info.soft_muted = s->muted;
2017 pa_sink_request_rewind(s, (size_t) -1);
2018 }
2019
2020 return 0;
2021
2022 case PA_SINK_MESSAGE_GET_MUTE:
2023 return 0;
2024
2025 case PA_SINK_MESSAGE_SET_STATE: {
2026
2027 pa_bool_t suspend_change =
2028 (s->thread_info.state == PA_SINK_SUSPENDED && PA_SINK_IS_OPENED(PA_PTR_TO_UINT(userdata))) ||
2029 (PA_SINK_IS_OPENED(s->thread_info.state) && PA_PTR_TO_UINT(userdata) == PA_SINK_SUSPENDED);
2030
2031 s->thread_info.state = PA_PTR_TO_UINT(userdata);
2032
2033 if (s->thread_info.state == PA_SINK_SUSPENDED) {
2034 s->thread_info.rewind_nbytes = 0;
2035 s->thread_info.rewind_requested = FALSE;
2036 }
2037
2038 if (suspend_change) {
2039 pa_sink_input *i;
2040 void *state = NULL;
2041
2042 while ((i = pa_hashmap_iterate(s->thread_info.inputs, &state, NULL)))
2043 if (i->suspend_within_thread)
2044 i->suspend_within_thread(i, s->thread_info.state == PA_SINK_SUSPENDED);
2045 }
2046
2047 return 0;
2048 }
2049
2050 case PA_SINK_MESSAGE_DETACH:
2051
2052 /* Detach all streams */
2053 pa_sink_detach_within_thread(s);
2054 return 0;
2055
2056 case PA_SINK_MESSAGE_ATTACH:
2057
2058 /* Reattach all streams */
2059 pa_sink_attach_within_thread(s);
2060 return 0;
2061
2062 case PA_SINK_MESSAGE_GET_REQUESTED_LATENCY: {
2063
2064 pa_usec_t *usec = userdata;
2065 *usec = pa_sink_get_requested_latency_within_thread(s);
2066
2067 /* Yes, that's right, the IO thread will see -1 when no
2068 * explicit requested latency is configured, the main
2069 * thread will see max_latency */
2070 if (*usec == (pa_usec_t) -1)
2071 *usec = s->thread_info.max_latency;
2072
2073 return 0;
2074 }
2075
2076 case PA_SINK_MESSAGE_SET_LATENCY_RANGE: {
2077 pa_usec_t *r = userdata;
2078
2079 pa_sink_set_latency_range_within_thread(s, r[0], r[1]);
2080
2081 return 0;
2082 }
2083
2084 case PA_SINK_MESSAGE_GET_LATENCY_RANGE: {
2085 pa_usec_t *r = userdata;
2086
2087 r[0] = s->thread_info.min_latency;
2088 r[1] = s->thread_info.max_latency;
2089
2090 return 0;
2091 }
2092
2093 case PA_SINK_MESSAGE_GET_FIXED_LATENCY:
2094
2095 *((pa_usec_t*) userdata) = s->thread_info.fixed_latency;
2096 return 0;
2097
2098 case PA_SINK_MESSAGE_SET_FIXED_LATENCY:
2099
2100 pa_sink_set_fixed_latency_within_thread(s, (pa_usec_t) offset);
2101 return 0;
2102
2103 case PA_SINK_MESSAGE_GET_MAX_REWIND:
2104
2105 *((size_t*) userdata) = s->thread_info.max_rewind;
2106 return 0;
2107
2108 case PA_SINK_MESSAGE_GET_MAX_REQUEST:
2109
2110 *((size_t*) userdata) = s->thread_info.max_request;
2111 return 0;
2112
2113 case PA_SINK_MESSAGE_SET_MAX_REWIND:
2114
2115 pa_sink_set_max_rewind_within_thread(s, (size_t) offset);
2116 return 0;
2117
2118 case PA_SINK_MESSAGE_SET_MAX_REQUEST:
2119
2120 pa_sink_set_max_request_within_thread(s, (size_t) offset);
2121 return 0;
2122
2123 case PA_SINK_MESSAGE_GET_LATENCY:
2124 case PA_SINK_MESSAGE_MAX:
2125 ;
2126 }
2127
2128 return -1;
2129 }
2130
2131 /* Called from main thread */
2132 int pa_sink_suspend_all(pa_core *c, pa_bool_t suspend, pa_suspend_cause_t cause) {
2133 pa_sink *sink;
2134 uint32_t idx;
2135 int ret = 0;
2136
2137 pa_core_assert_ref(c);
2138 pa_assert_ctl_context();
2139 pa_assert(cause != 0);
2140
2141 PA_IDXSET_FOREACH(sink, c->sinks, idx) {
2142 int r;
2143
2144 if ((r = pa_sink_suspend(sink, suspend, cause)) < 0)
2145 ret = r;
2146 }
2147
2148 return ret;
2149 }
2150
2151 /* Called from main thread */
2152 void pa_sink_detach(pa_sink *s) {
2153 pa_sink_assert_ref(s);
2154 pa_assert_ctl_context();
2155 pa_assert(PA_SINK_IS_LINKED(s->state));
2156
2157 pa_assert_se(pa_asyncmsgq_send(s->asyncmsgq, PA_MSGOBJECT(s), PA_SINK_MESSAGE_DETACH, NULL, 0, NULL) == 0);
2158 }
2159
2160 /* Called from main thread */
2161 void pa_sink_attach(pa_sink *s) {
2162 pa_sink_assert_ref(s);
2163 pa_assert_ctl_context();
2164 pa_assert(PA_SINK_IS_LINKED(s->state));
2165
2166 pa_assert_se(pa_asyncmsgq_send(s->asyncmsgq, PA_MSGOBJECT(s), PA_SINK_MESSAGE_ATTACH, NULL, 0, NULL) == 0);
2167 }
2168
2169 /* Called from IO thread */
2170 void pa_sink_detach_within_thread(pa_sink *s) {
2171 pa_sink_input *i;
2172 void *state = NULL;
2173
2174 pa_sink_assert_ref(s);
2175 pa_sink_assert_io_context(s);
2176 pa_assert(PA_SINK_IS_LINKED(s->thread_info.state));
2177
2178 PA_HASHMAP_FOREACH(i, s->thread_info.inputs, state)
2179 if (i->detach)
2180 i->detach(i);
2181
2182 if (s->monitor_source)
2183 pa_source_detach_within_thread(s->monitor_source);
2184 }
2185
2186 /* Called from IO thread */
2187 void pa_sink_attach_within_thread(pa_sink *s) {
2188 pa_sink_input *i;
2189 void *state = NULL;
2190
2191 pa_sink_assert_ref(s);
2192 pa_sink_assert_io_context(s);
2193 pa_assert(PA_SINK_IS_LINKED(s->thread_info.state));
2194
2195 PA_HASHMAP_FOREACH(i, s->thread_info.inputs, state)
2196 if (i->attach)
2197 i->attach(i);
2198
2199 if (s->monitor_source)
2200 pa_source_attach_within_thread(s->monitor_source);
2201 }
2202
2203 /* Called from IO thread */
2204 void pa_sink_request_rewind(pa_sink*s, size_t nbytes) {
2205 pa_sink_assert_ref(s);
2206 pa_sink_assert_io_context(s);
2207 pa_assert(PA_SINK_IS_LINKED(s->thread_info.state));
2208
2209 if (s->thread_info.state == PA_SINK_SUSPENDED)
2210 return;
2211
2212 if (nbytes == (size_t) -1)
2213 nbytes = s->thread_info.max_rewind;
2214
2215 nbytes = PA_MIN(nbytes, s->thread_info.max_rewind);
2216
2217 if (s->thread_info.rewind_requested &&
2218 nbytes <= s->thread_info.rewind_nbytes)
2219 return;
2220
2221 s->thread_info.rewind_nbytes = nbytes;
2222 s->thread_info.rewind_requested = TRUE;
2223
2224 if (s->request_rewind)
2225 s->request_rewind(s);
2226 }
2227
2228 /* Called from IO thread */
2229 pa_usec_t pa_sink_get_requested_latency_within_thread(pa_sink *s) {
2230 pa_usec_t result = (pa_usec_t) -1;
2231 pa_sink_input *i;
2232 void *state = NULL;
2233 pa_usec_t monitor_latency;
2234
2235 pa_sink_assert_ref(s);
2236 pa_sink_assert_io_context(s);
2237
2238 if (!(s->flags & PA_SINK_DYNAMIC_LATENCY))
2239 return PA_CLAMP(s->thread_info.fixed_latency, s->thread_info.min_latency, s->thread_info.max_latency);
2240
2241 if (s->thread_info.requested_latency_valid)
2242 return s->thread_info.requested_latency;
2243
2244 PA_HASHMAP_FOREACH(i, s->thread_info.inputs, state)
2245 if (i->thread_info.requested_sink_latency != (pa_usec_t) -1 &&
2246 (result == (pa_usec_t) -1 || result > i->thread_info.requested_sink_latency))
2247 result = i->thread_info.requested_sink_latency;
2248
2249 monitor_latency = pa_source_get_requested_latency_within_thread(s->monitor_source);
2250
2251 if (monitor_latency != (pa_usec_t) -1 &&
2252 (result == (pa_usec_t) -1 || result > monitor_latency))
2253 result = monitor_latency;
2254
2255 if (result != (pa_usec_t) -1)
2256 result = PA_CLAMP(result, s->thread_info.min_latency, s->thread_info.max_latency);
2257
2258 if (PA_SINK_IS_LINKED(s->thread_info.state)) {
2259 /* Only cache if properly initialized */
2260 s->thread_info.requested_latency = result;
2261 s->thread_info.requested_latency_valid = TRUE;
2262 }
2263
2264 return result;
2265 }
2266
2267 /* Called from main thread */
2268 pa_usec_t pa_sink_get_requested_latency(pa_sink *s) {
2269 pa_usec_t usec = 0;
2270
2271 pa_sink_assert_ref(s);
2272 pa_assert_ctl_context();
2273 pa_assert(PA_SINK_IS_LINKED(s->state));
2274
2275 if (s->state == PA_SINK_SUSPENDED)
2276 return 0;
2277
2278 pa_assert_se(pa_asyncmsgq_send(s->asyncmsgq, PA_MSGOBJECT(s), PA_SINK_MESSAGE_GET_REQUESTED_LATENCY, &usec, 0, NULL) == 0);
2279 return usec;
2280 }
2281
2282 /* Called from IO as well as the main thread -- the latter only before the IO thread started up */
2283 void pa_sink_set_max_rewind_within_thread(pa_sink *s, size_t max_rewind) {
2284 pa_sink_input *i;
2285 void *state = NULL;
2286
2287 pa_sink_assert_ref(s);
2288 pa_sink_assert_io_context(s);
2289
2290 if (max_rewind == s->thread_info.max_rewind)
2291 return;
2292
2293 s->thread_info.max_rewind = max_rewind;
2294
2295 if (PA_SINK_IS_LINKED(s->thread_info.state))
2296 PA_HASHMAP_FOREACH(i, s->thread_info.inputs, state)
2297 pa_sink_input_update_max_rewind(i, s->thread_info.max_rewind);
2298
2299 if (s->monitor_source)
2300 pa_source_set_max_rewind_within_thread(s->monitor_source, s->thread_info.max_rewind);
2301 }
2302
2303 /* Called from main thread */
2304 void pa_sink_set_max_rewind(pa_sink *s, size_t max_rewind) {
2305 pa_sink_assert_ref(s);
2306 pa_assert_ctl_context();
2307
2308 if (PA_SINK_IS_LINKED(s->state))
2309 pa_assert_se(pa_asyncmsgq_send(s->asyncmsgq, PA_MSGOBJECT(s), PA_SINK_MESSAGE_SET_MAX_REWIND, NULL, max_rewind, NULL) == 0);
2310 else
2311 pa_sink_set_max_rewind_within_thread(s, max_rewind);
2312 }
2313
2314 /* Called from IO as well as the main thread -- the latter only before the IO thread started up */
2315 void pa_sink_set_max_request_within_thread(pa_sink *s, size_t max_request) {
2316 void *state = NULL;
2317
2318 pa_sink_assert_ref(s);
2319 pa_sink_assert_io_context(s);
2320
2321 if (max_request == s->thread_info.max_request)
2322 return;
2323
2324 s->thread_info.max_request = max_request;
2325
2326 if (PA_SINK_IS_LINKED(s->thread_info.state)) {
2327 pa_sink_input *i;
2328
2329 PA_HASHMAP_FOREACH(i, s->thread_info.inputs, state)
2330 pa_sink_input_update_max_request(i, s->thread_info.max_request);
2331 }
2332 }
2333
2334 /* Called from main thread */
2335 void pa_sink_set_max_request(pa_sink *s, size_t max_request) {
2336 pa_sink_assert_ref(s);
2337 pa_assert_ctl_context();
2338
2339 if (PA_SINK_IS_LINKED(s->state))
2340 pa_assert_se(pa_asyncmsgq_send(s->asyncmsgq, PA_MSGOBJECT(s), PA_SINK_MESSAGE_SET_MAX_REQUEST, NULL, max_request, NULL) == 0);
2341 else
2342 pa_sink_set_max_request_within_thread(s, max_request);
2343 }
2344
2345 /* Called from IO thread */
2346 void pa_sink_invalidate_requested_latency(pa_sink *s, pa_bool_t dynamic) {
2347 pa_sink_input *i;
2348 void *state = NULL;
2349
2350 pa_sink_assert_ref(s);
2351 pa_sink_assert_io_context(s);
2352
2353 if ((s->flags & PA_SINK_DYNAMIC_LATENCY))
2354 s->thread_info.requested_latency_valid = FALSE;
2355 else if (dynamic)
2356 return;
2357
2358 if (PA_SINK_IS_LINKED(s->thread_info.state)) {
2359
2360 if (s->update_requested_latency)
2361 s->update_requested_latency(s);
2362
2363 PA_HASHMAP_FOREACH(i, s->thread_info.inputs, state)
2364 if (i->update_sink_requested_latency)
2365 i->update_sink_requested_latency(i);
2366 }
2367 }
2368
2369 /* Called from main thread */
2370 void pa_sink_set_latency_range(pa_sink *s, pa_usec_t min_latency, pa_usec_t max_latency) {
2371 pa_sink_assert_ref(s);
2372 pa_assert_ctl_context();
2373
2374 /* min_latency == 0: no limit
2375 * min_latency anything else: specified limit
2376 *
2377 * Similar for max_latency */
2378
2379 if (min_latency < ABSOLUTE_MIN_LATENCY)
2380 min_latency = ABSOLUTE_MIN_LATENCY;
2381
2382 if (max_latency <= 0 ||
2383 max_latency > ABSOLUTE_MAX_LATENCY)
2384 max_latency = ABSOLUTE_MAX_LATENCY;
2385
2386 pa_assert(min_latency <= max_latency);
2387
2388 /* Hmm, let's see if someone forgot to set PA_SINK_DYNAMIC_LATENCY here... */
2389 pa_assert((min_latency == ABSOLUTE_MIN_LATENCY &&
2390 max_latency == ABSOLUTE_MAX_LATENCY) ||
2391 (s->flags & PA_SINK_DYNAMIC_LATENCY));
2392
2393 if (PA_SINK_IS_LINKED(s->state)) {
2394 pa_usec_t r[2];
2395
2396 r[0] = min_latency;
2397 r[1] = max_latency;
2398
2399 pa_assert_se(pa_asyncmsgq_send(s->asyncmsgq, PA_MSGOBJECT(s), PA_SINK_MESSAGE_SET_LATENCY_RANGE, r, 0, NULL) == 0);
2400 } else
2401 pa_sink_set_latency_range_within_thread(s, min_latency, max_latency);
2402 }
2403
2404 /* Called from main thread */
2405 void pa_sink_get_latency_range(pa_sink *s, pa_usec_t *min_latency, pa_usec_t *max_latency) {
2406 pa_sink_assert_ref(s);
2407 pa_assert_ctl_context();
2408 pa_assert(min_latency);
2409 pa_assert(max_latency);
2410
2411 if (PA_SINK_IS_LINKED(s->state)) {
2412 pa_usec_t r[2] = { 0, 0 };
2413
2414 pa_assert_se(pa_asyncmsgq_send(s->asyncmsgq, PA_MSGOBJECT(s), PA_SINK_MESSAGE_GET_LATENCY_RANGE, r, 0, NULL) == 0);
2415
2416 *min_latency = r[0];
2417 *max_latency = r[1];
2418 } else {
2419 *min_latency = s->thread_info.min_latency;
2420 *max_latency = s->thread_info.max_latency;
2421 }
2422 }
2423
2424 /* Called from IO thread */
2425 void pa_sink_set_latency_range_within_thread(pa_sink *s, pa_usec_t min_latency, pa_usec_t max_latency) {
2426 pa_sink_assert_ref(s);
2427 pa_sink_assert_io_context(s);
2428
2429 pa_assert(min_latency >= ABSOLUTE_MIN_LATENCY);
2430 pa_assert(max_latency <= ABSOLUTE_MAX_LATENCY);
2431 pa_assert(min_latency <= max_latency);
2432
2433 /* Hmm, let's see if someone forgot to set PA_SINK_DYNAMIC_LATENCY here... */
2434 pa_assert((min_latency == ABSOLUTE_MIN_LATENCY &&
2435 max_latency == ABSOLUTE_MAX_LATENCY) ||
2436 (s->flags & PA_SINK_DYNAMIC_LATENCY));
2437
2438 if (s->thread_info.min_latency == min_latency &&
2439 s->thread_info.max_latency == max_latency)
2440 return;
2441
2442 s->thread_info.min_latency = min_latency;
2443 s->thread_info.max_latency = max_latency;
2444
2445 if (PA_SINK_IS_LINKED(s->thread_info.state)) {
2446 pa_sink_input *i;
2447 void *state = NULL;
2448
2449 PA_HASHMAP_FOREACH(i, s->thread_info.inputs, state)
2450 if (i->update_sink_latency_range)
2451 i->update_sink_latency_range(i);
2452 }
2453
2454 pa_sink_invalidate_requested_latency(s, FALSE);
2455
2456 pa_source_set_latency_range_within_thread(s->monitor_source, min_latency, max_latency);
2457 }
2458
2459 /* Called from main thread */
2460 void pa_sink_set_fixed_latency(pa_sink *s, pa_usec_t latency) {
2461 pa_sink_assert_ref(s);
2462 pa_assert_ctl_context();
2463
2464 if (s->flags & PA_SINK_DYNAMIC_LATENCY) {
2465 pa_assert(latency == 0);
2466 return;
2467 }
2468
2469 if (latency < ABSOLUTE_MIN_LATENCY)
2470 latency = ABSOLUTE_MIN_LATENCY;
2471
2472 if (latency > ABSOLUTE_MAX_LATENCY)
2473 latency = ABSOLUTE_MAX_LATENCY;
2474
2475 if (PA_SINK_IS_LINKED(s->state))
2476 pa_assert_se(pa_asyncmsgq_send(s->asyncmsgq, PA_MSGOBJECT(s), PA_SINK_MESSAGE_SET_FIXED_LATENCY, NULL, (int64_t) latency, NULL) == 0);
2477 else
2478 s->thread_info.fixed_latency = latency;
2479
2480 pa_source_set_fixed_latency(s->monitor_source, latency);
2481 }
2482
2483 /* Called from main thread */
2484 pa_usec_t pa_sink_get_fixed_latency(pa_sink *s) {
2485 pa_usec_t latency;
2486
2487 pa_sink_assert_ref(s);
2488 pa_assert_ctl_context();
2489
2490 if (s->flags & PA_SINK_DYNAMIC_LATENCY)
2491 return 0;
2492
2493 if (PA_SINK_IS_LINKED(s->state))
2494 pa_assert_se(pa_asyncmsgq_send(s->asyncmsgq, PA_MSGOBJECT(s), PA_SINK_MESSAGE_GET_FIXED_LATENCY, &latency, 0, NULL) == 0);
2495 else
2496 latency = s->thread_info.fixed_latency;
2497
2498 return latency;
2499 }
2500
2501 /* Called from IO thread */
2502 void pa_sink_set_fixed_latency_within_thread(pa_sink *s, pa_usec_t latency) {
2503 pa_sink_assert_ref(s);
2504 pa_sink_assert_io_context(s);
2505
2506 if (s->flags & PA_SINK_DYNAMIC_LATENCY) {
2507 pa_assert(latency == 0);
2508 return;
2509 }
2510
2511 pa_assert(latency >= ABSOLUTE_MIN_LATENCY);
2512 pa_assert(latency <= ABSOLUTE_MAX_LATENCY);
2513
2514 if (s->thread_info.fixed_latency == latency)
2515 return;
2516
2517 s->thread_info.fixed_latency = latency;
2518
2519 if (PA_SINK_IS_LINKED(s->thread_info.state)) {
2520 pa_sink_input *i;
2521 void *state = NULL;
2522
2523 PA_HASHMAP_FOREACH(i, s->thread_info.inputs, state)
2524 if (i->update_sink_fixed_latency)
2525 i->update_sink_fixed_latency(i);
2526 }
2527
2528 pa_sink_invalidate_requested_latency(s, FALSE);
2529
2530 pa_source_set_fixed_latency_within_thread(s->monitor_source, latency);
2531 }
2532
2533 /* Called from main context */
2534 size_t pa_sink_get_max_rewind(pa_sink *s) {
2535 size_t r;
2536 pa_sink_assert_ref(s);
2537 pa_assert_ctl_context();
2538
2539 if (!PA_SINK_IS_LINKED(s->state))
2540 return s->thread_info.max_rewind;
2541
2542 pa_assert_se(pa_asyncmsgq_send(s->asyncmsgq, PA_MSGOBJECT(s), PA_SINK_MESSAGE_GET_MAX_REWIND, &r, 0, NULL) == 0);
2543
2544 return r;
2545 }
2546
2547 /* Called from main context */
2548 size_t pa_sink_get_max_request(pa_sink *s) {
2549 size_t r;
2550 pa_sink_assert_ref(s);
2551 pa_assert_ctl_context();
2552
2553 if (!PA_SINK_IS_LINKED(s->state))
2554 return s->thread_info.max_request;
2555
2556 pa_assert_se(pa_asyncmsgq_send(s->asyncmsgq, PA_MSGOBJECT(s), PA_SINK_MESSAGE_GET_MAX_REQUEST, &r, 0, NULL) == 0);
2557
2558 return r;
2559 }
2560
2561 /* Called from main context */
2562 int pa_sink_set_port(pa_sink *s, const char *name, pa_bool_t save) {
2563 pa_device_port *port;
2564
2565 pa_sink_assert_ref(s);
2566 pa_assert_ctl_context();
2567
2568 if (!s->set_port) {
2569 pa_log_debug("set_port() operation not implemented for sink %u \"%s\"", s->index, s->name);
2570 return -PA_ERR_NOTIMPLEMENTED;
2571 }
2572
2573 if (!s->ports)
2574 return -PA_ERR_NOENTITY;
2575
2576 if (!(port = pa_hashmap_get(s->ports, name)))
2577 return -PA_ERR_NOENTITY;
2578
2579 if (s->active_port == port) {
2580 s->save_port = s->save_port || save;
2581 return 0;
2582 }
2583
2584 if ((s->set_port(s, port)) < 0)
2585 return -PA_ERR_NOENTITY;
2586
2587 pa_subscription_post(s->core, PA_SUBSCRIPTION_EVENT_SINK|PA_SUBSCRIPTION_EVENT_CHANGE, s->index);
2588
2589 pa_log_info("Changed port of sink %u \"%s\" to %s", s->index, s->name, port->name);
2590
2591 s->active_port = port;
2592 s->save_port = save;
2593
2594 return 0;
2595 }
2596
2597 pa_bool_t pa_device_init_icon(pa_proplist *p, pa_bool_t is_sink) {
2598 const char *ff, *c, *t = NULL, *s = "", *profile, *bus;
2599
2600 pa_assert(p);
2601
2602 if (pa_proplist_contains(p, PA_PROP_DEVICE_ICON_NAME))
2603 return TRUE;
2604
2605 if ((ff = pa_proplist_gets(p, PA_PROP_DEVICE_FORM_FACTOR))) {
2606
2607 if (pa_streq(ff, "microphone"))
2608 t = "audio-input-microphone";
2609 else if (pa_streq(ff, "webcam"))
2610 t = "camera-web";
2611 else if (pa_streq(ff, "computer"))
2612 t = "computer";
2613 else if (pa_streq(ff, "handset"))
2614 t = "phone";
2615 else if (pa_streq(ff, "portable"))
2616 t = "multimedia-player";
2617 else if (pa_streq(ff, "tv"))
2618 t = "video-display";
2619
2620 /*
2621 * The following icons are not part of the icon naming spec,
2622 * because Rodney Dawes sucks as the maintainer of that spec.
2623 *
2624 * http://lists.freedesktop.org/archives/xdg/2009-May/010397.html
2625 */
2626 else if (pa_streq(ff, "headset"))
2627 t = "audio-headset";
2628 else if (pa_streq(ff, "headphone"))
2629 t = "audio-headphones";
2630 else if (pa_streq(ff, "speaker"))
2631 t = "audio-speakers";
2632 else if (pa_streq(ff, "hands-free"))
2633 t = "audio-handsfree";
2634 }
2635
2636 if (!t)
2637 if ((c = pa_proplist_gets(p, PA_PROP_DEVICE_CLASS)))
2638 if (pa_streq(c, "modem"))
2639 t = "modem";
2640
2641 if (!t) {
2642 if (is_sink)
2643 t = "audio-card";
2644 else
2645 t = "audio-input-microphone";
2646 }
2647
2648 if ((profile = pa_proplist_gets(p, PA_PROP_DEVICE_PROFILE_NAME))) {
2649 if (strstr(profile, "analog"))
2650 s = "-analog";
2651 else if (strstr(profile, "iec958"))
2652 s = "-iec958";
2653 else if (strstr(profile, "hdmi"))
2654 s = "-hdmi";
2655 }
2656
2657 bus = pa_proplist_gets(p, PA_PROP_DEVICE_BUS);
2658
2659 pa_proplist_setf(p, PA_PROP_DEVICE_ICON_NAME, "%s%s%s%s", t, pa_strempty(s), bus ? "-" : "", pa_strempty(bus));
2660
2661 return TRUE;
2662 }
2663
2664 pa_bool_t pa_device_init_description(pa_proplist *p) {
2665 const char *s, *d = NULL, *k;
2666 pa_assert(p);
2667
2668 if (pa_proplist_contains(p, PA_PROP_DEVICE_DESCRIPTION))
2669 return TRUE;
2670
2671 if ((s = pa_proplist_gets(p, PA_PROP_DEVICE_FORM_FACTOR)))
2672 if (pa_streq(s, "internal"))
2673 d = _("Internal Audio");
2674
2675 if (!d)
2676 if ((s = pa_proplist_gets(p, PA_PROP_DEVICE_CLASS)))
2677 if (pa_streq(s, "modem"))
2678 d = _("Modem");
2679
2680 if (!d)
2681 d = pa_proplist_gets(p, PA_PROP_DEVICE_PRODUCT_NAME);
2682
2683 if (!d)
2684 return FALSE;
2685
2686 k = pa_proplist_gets(p, PA_PROP_DEVICE_PROFILE_DESCRIPTION);
2687
2688 if (d && k)
2689 pa_proplist_setf(p, PA_PROP_DEVICE_DESCRIPTION, _("%s %s"), d, k);
2690 else if (d)
2691 pa_proplist_sets(p, PA_PROP_DEVICE_DESCRIPTION, d);
2692
2693 return TRUE;
2694 }
2695
2696 pa_bool_t pa_device_init_intended_roles(pa_proplist *p) {
2697 const char *s;
2698 pa_assert(p);
2699
2700 if (pa_proplist_contains(p, PA_PROP_DEVICE_INTENDED_ROLES))
2701 return TRUE;
2702
2703 if ((s = pa_proplist_gets(p, PA_PROP_DEVICE_FORM_FACTOR)))
2704 if (pa_streq(s, "handset") || pa_streq(s, "hands-free")) {
2705 pa_proplist_sets(p, PA_PROP_DEVICE_INTENDED_ROLES, "phone");
2706 return TRUE;
2707 }
2708
2709 return FALSE;
2710 }
2711
2712 unsigned pa_device_init_priority(pa_proplist *p) {
2713 const char *s;
2714 unsigned priority = 0;
2715
2716 pa_assert(p);
2717
2718 if ((s = pa_proplist_gets(p, PA_PROP_DEVICE_CLASS))) {
2719
2720 if (pa_streq(s, "sound"))
2721 priority += 9000;
2722 else if (!pa_streq(s, "modem"))
2723 priority += 1000;
2724 }
2725
2726 if ((s = pa_proplist_gets(p, PA_PROP_DEVICE_FORM_FACTOR))) {
2727
2728 if (pa_streq(s, "internal"))
2729 priority += 900;
2730 else if (pa_streq(s, "speaker"))
2731 priority += 500;
2732 else if (pa_streq(s, "headphone"))
2733 priority += 400;
2734 }
2735
2736 if ((s = pa_proplist_gets(p, PA_PROP_DEVICE_BUS))) {
2737
2738 if (pa_streq(s, "pci"))
2739 priority += 50;
2740 else if (pa_streq(s, "usb"))
2741 priority += 40;
2742 else if (pa_streq(s, "bluetooth"))
2743 priority += 30;
2744 }
2745
2746 if ((s = pa_proplist_gets(p, PA_PROP_DEVICE_PROFILE_NAME))) {
2747
2748 if (pa_startswith(s, "analog-"))
2749 priority += 9;
2750 else if (pa_startswith(s, "iec958-"))
2751 priority += 8;
2752 }
2753
2754 return priority;
2755 }