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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 <stdio.h>
28 #include <stdlib.h>
29
30 #include <pulse/format.h>
31 #include <pulse/utf8.h>
32 #include <pulse/xmalloc.h>
33 #include <pulse/timeval.h>
34 #include <pulse/util.h>
35 #include <pulse/rtclock.h>
36 #include <pulse/internal.h>
37
38 #include <pulsecore/core-util.h>
39 #include <pulsecore/source-output.h>
40 #include <pulsecore/namereg.h>
41 #include <pulsecore/core-subscribe.h>
42 #include <pulsecore/log.h>
43 #include <pulsecore/mix.h>
44 #include <pulsecore/flist.h>
45
46 #include "source.h"
47
48 #define ABSOLUTE_MIN_LATENCY (500)
49 #define ABSOLUTE_MAX_LATENCY (10*PA_USEC_PER_SEC)
50 #define DEFAULT_FIXED_LATENCY (250*PA_USEC_PER_MSEC)
51
52 PA_DEFINE_PUBLIC_CLASS(pa_source, pa_msgobject);
53
54 struct pa_source_volume_change {
55 pa_usec_t at;
56 pa_cvolume hw_volume;
57
58 PA_LLIST_FIELDS(pa_source_volume_change);
59 };
60
61 struct source_message_set_port {
62 pa_device_port *port;
63 int ret;
64 };
65
66 static void source_free(pa_object *o);
67
68 static void pa_source_volume_change_push(pa_source *s);
69 static void pa_source_volume_change_flush(pa_source *s);
70
71 pa_source_new_data* pa_source_new_data_init(pa_source_new_data *data) {
72 pa_assert(data);
73
74 pa_zero(*data);
75 data->proplist = pa_proplist_new();
76 data->ports = pa_hashmap_new_full(pa_idxset_string_hash_func, pa_idxset_string_compare_func, NULL, (pa_free_cb_t) pa_device_port_unref);
77
78 return data;
79 }
80
81 void pa_source_new_data_set_name(pa_source_new_data *data, const char *name) {
82 pa_assert(data);
83
84 pa_xfree(data->name);
85 data->name = pa_xstrdup(name);
86 }
87
88 void pa_source_new_data_set_sample_spec(pa_source_new_data *data, const pa_sample_spec *spec) {
89 pa_assert(data);
90
91 if ((data->sample_spec_is_set = !!spec))
92 data->sample_spec = *spec;
93 }
94
95 void pa_source_new_data_set_channel_map(pa_source_new_data *data, const pa_channel_map *map) {
96 pa_assert(data);
97
98 if ((data->channel_map_is_set = !!map))
99 data->channel_map = *map;
100 }
101
102 void pa_source_new_data_set_alternate_sample_rate(pa_source_new_data *data, const uint32_t alternate_sample_rate) {
103 pa_assert(data);
104
105 data->alternate_sample_rate_is_set = true;
106 data->alternate_sample_rate = alternate_sample_rate;
107 }
108
109 void pa_source_new_data_set_volume(pa_source_new_data *data, const pa_cvolume *volume) {
110 pa_assert(data);
111
112 if ((data->volume_is_set = !!volume))
113 data->volume = *volume;
114 }
115
116 void pa_source_new_data_set_muted(pa_source_new_data *data, bool mute) {
117 pa_assert(data);
118
119 data->muted_is_set = true;
120 data->muted = !!mute;
121 }
122
123 void pa_source_new_data_set_port(pa_source_new_data *data, const char *port) {
124 pa_assert(data);
125
126 pa_xfree(data->active_port);
127 data->active_port = pa_xstrdup(port);
128 }
129
130 void pa_source_new_data_done(pa_source_new_data *data) {
131 pa_assert(data);
132
133 pa_proplist_free(data->proplist);
134
135 if (data->ports)
136 pa_hashmap_free(data->ports);
137
138 pa_xfree(data->name);
139 pa_xfree(data->active_port);
140 }
141
142 /* Called from main context */
143 static void reset_callbacks(pa_source *s) {
144 pa_assert(s);
145
146 s->set_state = NULL;
147 s->get_volume = NULL;
148 s->set_volume = NULL;
149 s->write_volume = NULL;
150 s->get_mute = NULL;
151 s->set_mute = NULL;
152 s->update_requested_latency = NULL;
153 s->set_port = NULL;
154 s->get_formats = NULL;
155 s->update_rate = NULL;
156 }
157
158 /* Called from main context */
159 pa_source* pa_source_new(
160 pa_core *core,
161 pa_source_new_data *data,
162 pa_source_flags_t flags) {
163
164 pa_source *s;
165 const char *name;
166 char st[PA_SAMPLE_SPEC_SNPRINT_MAX], cm[PA_CHANNEL_MAP_SNPRINT_MAX];
167 char *pt;
168
169 pa_assert(core);
170 pa_assert(data);
171 pa_assert(data->name);
172 pa_assert_ctl_context();
173
174 s = pa_msgobject_new(pa_source);
175
176 if (!(name = pa_namereg_register(core, data->name, PA_NAMEREG_SOURCE, s, data->namereg_fail))) {
177 pa_log_debug("Failed to register name %s.", data->name);
178 pa_xfree(s);
179 return NULL;
180 }
181
182 pa_source_new_data_set_name(data, name);
183
184 if (pa_hook_fire(&core->hooks[PA_CORE_HOOK_SOURCE_NEW], data) < 0) {
185 pa_xfree(s);
186 pa_namereg_unregister(core, name);
187 return NULL;
188 }
189
190 /* FIXME, need to free s here on failure */
191
192 pa_return_null_if_fail(!data->driver || pa_utf8_valid(data->driver));
193 pa_return_null_if_fail(data->name && pa_utf8_valid(data->name) && data->name[0]);
194
195 pa_return_null_if_fail(data->sample_spec_is_set && pa_sample_spec_valid(&data->sample_spec));
196
197 if (!data->channel_map_is_set)
198 pa_return_null_if_fail(pa_channel_map_init_auto(&data->channel_map, data->sample_spec.channels, PA_CHANNEL_MAP_DEFAULT));
199
200 pa_return_null_if_fail(pa_channel_map_valid(&data->channel_map));
201 pa_return_null_if_fail(data->channel_map.channels == data->sample_spec.channels);
202
203 /* FIXME: There should probably be a general function for checking whether
204 * the source volume is allowed to be set, like there is for source outputs. */
205 pa_assert(!data->volume_is_set || !(flags & PA_SOURCE_SHARE_VOLUME_WITH_MASTER));
206
207 if (!data->volume_is_set) {
208 pa_cvolume_reset(&data->volume, data->sample_spec.channels);
209 data->save_volume = false;
210 }
211
212 pa_return_null_if_fail(pa_cvolume_valid(&data->volume));
213 pa_return_null_if_fail(pa_cvolume_compatible(&data->volume, &data->sample_spec));
214
215 if (!data->muted_is_set)
216 data->muted = false;
217
218 if (data->card)
219 pa_proplist_update(data->proplist, PA_UPDATE_MERGE, data->card->proplist);
220
221 pa_device_init_description(data->proplist, data->card);
222 pa_device_init_icon(data->proplist, false);
223 pa_device_init_intended_roles(data->proplist);
224
225 if (!data->active_port) {
226 pa_device_port *p = pa_device_port_find_best(data->ports);
227 if (p)
228 pa_source_new_data_set_port(data, p->name);
229 }
230
231 if (pa_hook_fire(&core->hooks[PA_CORE_HOOK_SOURCE_FIXATE], data) < 0) {
232 pa_xfree(s);
233 pa_namereg_unregister(core, name);
234 return NULL;
235 }
236
237 s->parent.parent.free = source_free;
238 s->parent.process_msg = pa_source_process_msg;
239
240 s->core = core;
241 s->state = PA_SOURCE_INIT;
242 s->flags = flags;
243 s->priority = 0;
244 s->suspend_cause = data->suspend_cause;
245 pa_source_set_mixer_dirty(s, false);
246 s->name = pa_xstrdup(name);
247 s->proplist = pa_proplist_copy(data->proplist);
248 s->driver = pa_xstrdup(pa_path_get_filename(data->driver));
249 s->module = data->module;
250 s->card = data->card;
251
252 s->priority = pa_device_init_priority(s->proplist);
253
254 s->sample_spec = data->sample_spec;
255 s->channel_map = data->channel_map;
256 s->default_sample_rate = s->sample_spec.rate;
257
258 if (data->alternate_sample_rate_is_set)
259 s->alternate_sample_rate = data->alternate_sample_rate;
260 else
261 s->alternate_sample_rate = s->core->alternate_sample_rate;
262
263 if (s->sample_spec.rate == s->alternate_sample_rate) {
264 pa_log_warn("Default and alternate sample rates are the same.");
265 s->alternate_sample_rate = 0;
266 }
267
268 s->outputs = pa_idxset_new(NULL, NULL);
269 s->n_corked = 0;
270 s->monitor_of = NULL;
271 s->output_from_master = NULL;
272
273 s->reference_volume = s->real_volume = data->volume;
274 pa_cvolume_reset(&s->soft_volume, s->sample_spec.channels);
275 s->base_volume = PA_VOLUME_NORM;
276 s->n_volume_steps = PA_VOLUME_NORM+1;
277 s->muted = data->muted;
278 s->refresh_volume = s->refresh_muted = false;
279
280 reset_callbacks(s);
281 s->userdata = NULL;
282
283 s->asyncmsgq = NULL;
284
285 /* As a minor optimization we just steal the list instead of
286 * copying it here */
287 s->ports = data->ports;
288 data->ports = NULL;
289
290 s->active_port = NULL;
291 s->save_port = false;
292
293 if (data->active_port)
294 if ((s->active_port = pa_hashmap_get(s->ports, data->active_port)))
295 s->save_port = data->save_port;
296
297 /* Hopefully the active port has already been assigned in the previous call
298 to pa_device_port_find_best, but better safe than sorry */
299 if (!s->active_port)
300 s->active_port = pa_device_port_find_best(s->ports);
301
302 if (s->active_port)
303 s->latency_offset = s->active_port->latency_offset;
304 else
305 s->latency_offset = 0;
306
307 s->save_volume = data->save_volume;
308 s->save_muted = data->save_muted;
309
310 pa_silence_memchunk_get(
311 &core->silence_cache,
312 core->mempool,
313 &s->silence,
314 &s->sample_spec,
315 0);
316
317 s->thread_info.rtpoll = NULL;
318 s->thread_info.outputs = pa_hashmap_new_full(pa_idxset_trivial_hash_func, pa_idxset_trivial_compare_func, NULL,
319 (pa_free_cb_t) pa_source_output_unref);
320 s->thread_info.soft_volume = s->soft_volume;
321 s->thread_info.soft_muted = s->muted;
322 s->thread_info.state = s->state;
323 s->thread_info.max_rewind = 0;
324 s->thread_info.requested_latency_valid = false;
325 s->thread_info.requested_latency = 0;
326 s->thread_info.min_latency = ABSOLUTE_MIN_LATENCY;
327 s->thread_info.max_latency = ABSOLUTE_MAX_LATENCY;
328 s->thread_info.fixed_latency = flags & PA_SOURCE_DYNAMIC_LATENCY ? 0 : DEFAULT_FIXED_LATENCY;
329
330 PA_LLIST_HEAD_INIT(pa_source_volume_change, s->thread_info.volume_changes);
331 s->thread_info.volume_changes_tail = NULL;
332 pa_sw_cvolume_multiply(&s->thread_info.current_hw_volume, &s->soft_volume, &s->real_volume);
333 s->thread_info.volume_change_safety_margin = core->deferred_volume_safety_margin_usec;
334 s->thread_info.volume_change_extra_delay = core->deferred_volume_extra_delay_usec;
335 s->thread_info.latency_offset = s->latency_offset;
336
337 /* FIXME: This should probably be moved to pa_source_put() */
338 pa_assert_se(pa_idxset_put(core->sources, s, &s->index) >= 0);
339
340 if (s->card)
341 pa_assert_se(pa_idxset_put(s->card->sources, s, NULL) >= 0);
342
343 pt = pa_proplist_to_string_sep(s->proplist, "\n ");
344 pa_log_info("Created source %u \"%s\" with sample spec %s and channel map %s\n %s",
345 s->index,
346 s->name,
347 pa_sample_spec_snprint(st, sizeof(st), &s->sample_spec),
348 pa_channel_map_snprint(cm, sizeof(cm), &s->channel_map),
349 pt);
350 pa_xfree(pt);
351
352 return s;
353 }
354
355 /* Called from main context */
356 static int source_set_state(pa_source *s, pa_source_state_t state) {
357 int ret;
358 bool suspend_change;
359 pa_source_state_t original_state;
360
361 pa_assert(s);
362 pa_assert_ctl_context();
363
364 if (s->state == state)
365 return 0;
366
367 original_state = s->state;
368
369 suspend_change =
370 (original_state == PA_SOURCE_SUSPENDED && PA_SOURCE_IS_OPENED(state)) ||
371 (PA_SOURCE_IS_OPENED(original_state) && state == PA_SOURCE_SUSPENDED);
372
373 if (s->set_state)
374 if ((ret = s->set_state(s, state)) < 0)
375 return ret;
376
377 if (s->asyncmsgq)
378 if ((ret = pa_asyncmsgq_send(s->asyncmsgq, PA_MSGOBJECT(s), PA_SOURCE_MESSAGE_SET_STATE, PA_UINT_TO_PTR(state), 0, NULL)) < 0) {
379
380 if (s->set_state)
381 s->set_state(s, original_state);
382
383 return ret;
384 }
385
386 s->state = state;
387
388 if (state != PA_SOURCE_UNLINKED) { /* if we enter UNLINKED state pa_source_unlink() will fire the appropriate events */
389 pa_hook_fire(&s->core->hooks[PA_CORE_HOOK_SOURCE_STATE_CHANGED], s);
390 pa_subscription_post(s->core, PA_SUBSCRIPTION_EVENT_SOURCE | PA_SUBSCRIPTION_EVENT_CHANGE, s->index);
391 }
392
393 if (suspend_change) {
394 pa_source_output *o;
395 uint32_t idx;
396
397 /* We're suspending or resuming, tell everyone about it */
398
399 PA_IDXSET_FOREACH(o, s->outputs, idx)
400 if (s->state == PA_SOURCE_SUSPENDED &&
401 (o->flags & PA_SOURCE_OUTPUT_KILL_ON_SUSPEND))
402 pa_source_output_kill(o);
403 else if (o->suspend)
404 o->suspend(o, state == PA_SOURCE_SUSPENDED);
405 }
406
407 return 0;
408 }
409
410 void pa_source_set_get_volume_callback(pa_source *s, pa_source_cb_t cb) {
411 pa_assert(s);
412
413 s->get_volume = cb;
414 }
415
416 void pa_source_set_set_volume_callback(pa_source *s, pa_source_cb_t cb) {
417 pa_source_flags_t flags;
418
419 pa_assert(s);
420 pa_assert(!s->write_volume || cb);
421
422 s->set_volume = cb;
423
424 /* Save the current flags so we can tell if they've changed */
425 flags = s->flags;
426
427 if (cb) {
428 /* The source implementor is responsible for setting decibel volume support */
429 s->flags |= PA_SOURCE_HW_VOLUME_CTRL;
430 } else {
431 s->flags &= ~PA_SOURCE_HW_VOLUME_CTRL;
432 /* See note below in pa_source_put() about volume sharing and decibel volumes */
433 pa_source_enable_decibel_volume(s, !(s->flags & PA_SOURCE_SHARE_VOLUME_WITH_MASTER));
434 }
435
436 /* If the flags have changed after init, let any clients know via a change event */
437 if (s->state != PA_SOURCE_INIT && flags != s->flags)
438 pa_subscription_post(s->core, PA_SUBSCRIPTION_EVENT_SOURCE|PA_SUBSCRIPTION_EVENT_CHANGE, s->index);
439 }
440
441 void pa_source_set_write_volume_callback(pa_source *s, pa_source_cb_t cb) {
442 pa_source_flags_t flags;
443
444 pa_assert(s);
445 pa_assert(!cb || s->set_volume);
446
447 s->write_volume = cb;
448
449 /* Save the current flags so we can tell if they've changed */
450 flags = s->flags;
451
452 if (cb)
453 s->flags |= PA_SOURCE_DEFERRED_VOLUME;
454 else
455 s->flags &= ~PA_SOURCE_DEFERRED_VOLUME;
456
457 /* If the flags have changed after init, let any clients know via a change event */
458 if (s->state != PA_SOURCE_INIT && flags != s->flags)
459 pa_subscription_post(s->core, PA_SUBSCRIPTION_EVENT_SOURCE|PA_SUBSCRIPTION_EVENT_CHANGE, s->index);
460 }
461
462 void pa_source_set_get_mute_callback(pa_source *s, pa_source_cb_t cb) {
463 pa_assert(s);
464
465 s->get_mute = cb;
466 }
467
468 void pa_source_set_set_mute_callback(pa_source *s, pa_source_cb_t cb) {
469 pa_source_flags_t flags;
470
471 pa_assert(s);
472
473 s->set_mute = cb;
474
475 /* Save the current flags so we can tell if they've changed */
476 flags = s->flags;
477
478 if (cb)
479 s->flags |= PA_SOURCE_HW_MUTE_CTRL;
480 else
481 s->flags &= ~PA_SOURCE_HW_MUTE_CTRL;
482
483 /* If the flags have changed after init, let any clients know via a change event */
484 if (s->state != PA_SOURCE_INIT && flags != s->flags)
485 pa_subscription_post(s->core, PA_SUBSCRIPTION_EVENT_SOURCE|PA_SUBSCRIPTION_EVENT_CHANGE, s->index);
486 }
487
488 static void enable_flat_volume(pa_source *s, bool enable) {
489 pa_source_flags_t flags;
490
491 pa_assert(s);
492
493 /* Always follow the overall user preference here */
494 enable = enable && s->core->flat_volumes;
495
496 /* Save the current flags so we can tell if they've changed */
497 flags = s->flags;
498
499 if (enable)
500 s->flags |= PA_SOURCE_FLAT_VOLUME;
501 else
502 s->flags &= ~PA_SOURCE_FLAT_VOLUME;
503
504 /* If the flags have changed after init, let any clients know via a change event */
505 if (s->state != PA_SOURCE_INIT && flags != s->flags)
506 pa_subscription_post(s->core, PA_SUBSCRIPTION_EVENT_SOURCE|PA_SUBSCRIPTION_EVENT_CHANGE, s->index);
507 }
508
509 void pa_source_enable_decibel_volume(pa_source *s, bool enable) {
510 pa_source_flags_t flags;
511
512 pa_assert(s);
513
514 /* Save the current flags so we can tell if they've changed */
515 flags = s->flags;
516
517 if (enable) {
518 s->flags |= PA_SOURCE_DECIBEL_VOLUME;
519 enable_flat_volume(s, true);
520 } else {
521 s->flags &= ~PA_SOURCE_DECIBEL_VOLUME;
522 enable_flat_volume(s, false);
523 }
524
525 /* If the flags have changed after init, let any clients know via a change event */
526 if (s->state != PA_SOURCE_INIT && flags != s->flags)
527 pa_subscription_post(s->core, PA_SUBSCRIPTION_EVENT_SOURCE|PA_SUBSCRIPTION_EVENT_CHANGE, s->index);
528 }
529
530 /* Called from main context */
531 void pa_source_put(pa_source *s) {
532 pa_source_assert_ref(s);
533 pa_assert_ctl_context();
534
535 pa_assert(s->state == PA_SOURCE_INIT);
536 pa_assert(!(s->flags & PA_SOURCE_SHARE_VOLUME_WITH_MASTER) || s->output_from_master);
537
538 /* The following fields must be initialized properly when calling _put() */
539 pa_assert(s->asyncmsgq);
540 pa_assert(s->thread_info.min_latency <= s->thread_info.max_latency);
541
542 /* Generally, flags should be initialized via pa_source_new(). As a
543 * special exception we allow some volume related flags to be set
544 * between _new() and _put() by the callback setter functions above.
545 *
546 * Thus we implement a couple safeguards here which ensure the above
547 * setters were used (or at least the implementor made manual changes
548 * in a compatible way).
549 *
550 * Note: All of these flags set here can change over the life time
551 * of the source. */
552 pa_assert(!(s->flags & PA_SOURCE_HW_VOLUME_CTRL) || s->set_volume);
553 pa_assert(!(s->flags & PA_SOURCE_DEFERRED_VOLUME) || s->write_volume);
554 pa_assert(!(s->flags & PA_SOURCE_HW_MUTE_CTRL) || s->set_mute);
555
556 /* XXX: Currently decibel volume is disabled for all sources that use volume
557 * sharing. When the master source supports decibel volume, it would be good
558 * to have the flag also in the filter source, but currently we don't do that
559 * so that the flags of the filter source never change when it's moved from
560 * a master source to another. One solution for this problem would be to
561 * remove user-visible volume altogether from filter sources when volume
562 * sharing is used, but the current approach was easier to implement... */
563 /* We always support decibel volumes in software, otherwise we leave it to
564 * the source implementor to set this flag as needed.
565 *
566 * Note: This flag can also change over the life time of the source. */
567 if (!(s->flags & PA_SOURCE_HW_VOLUME_CTRL) && !(s->flags & PA_SOURCE_SHARE_VOLUME_WITH_MASTER))
568 pa_source_enable_decibel_volume(s, true);
569
570 /* If the source implementor support DB volumes by itself, we should always
571 * try and enable flat volumes too */
572 if ((s->flags & PA_SOURCE_DECIBEL_VOLUME))
573 enable_flat_volume(s, true);
574
575 if (s->flags & PA_SOURCE_SHARE_VOLUME_WITH_MASTER) {
576 pa_source *root_source = pa_source_get_master(s);
577
578 pa_assert(PA_LIKELY(root_source));
579
580 s->reference_volume = root_source->reference_volume;
581 pa_cvolume_remap(&s->reference_volume, &root_source->channel_map, &s->channel_map);
582
583 s->real_volume = root_source->real_volume;
584 pa_cvolume_remap(&s->real_volume, &root_source->channel_map, &s->channel_map);
585 } else
586 /* We assume that if the sink implementor changed the default
587 * volume he did so in real_volume, because that is the usual
588 * place where he is supposed to place his changes. */
589 s->reference_volume = s->real_volume;
590
591 s->thread_info.soft_volume = s->soft_volume;
592 s->thread_info.soft_muted = s->muted;
593 pa_sw_cvolume_multiply(&s->thread_info.current_hw_volume, &s->soft_volume, &s->real_volume);
594
595 pa_assert((s->flags & PA_SOURCE_HW_VOLUME_CTRL)
596 || (s->base_volume == PA_VOLUME_NORM
597 && ((s->flags & PA_SOURCE_DECIBEL_VOLUME || (s->flags & PA_SOURCE_SHARE_VOLUME_WITH_MASTER)))));
598 pa_assert(!(s->flags & PA_SOURCE_DECIBEL_VOLUME) || s->n_volume_steps == PA_VOLUME_NORM+1);
599 pa_assert(!(s->flags & PA_SOURCE_DYNAMIC_LATENCY) == (s->thread_info.fixed_latency != 0));
600
601 if (s->suspend_cause)
602 pa_assert_se(source_set_state(s, PA_SOURCE_SUSPENDED) == 0);
603 else
604 pa_assert_se(source_set_state(s, PA_SOURCE_IDLE) == 0);
605
606 pa_subscription_post(s->core, PA_SUBSCRIPTION_EVENT_SOURCE | PA_SUBSCRIPTION_EVENT_NEW, s->index);
607 pa_hook_fire(&s->core->hooks[PA_CORE_HOOK_SOURCE_PUT], s);
608 }
609
610 /* Called from main context */
611 void pa_source_unlink(pa_source *s) {
612 bool linked;
613 pa_source_output *o, *j = NULL;
614
615 pa_assert(s);
616 pa_assert_ctl_context();
617
618 /* See pa_sink_unlink() for a couple of comments how this function
619 * works. */
620
621 linked = PA_SOURCE_IS_LINKED(s->state);
622
623 if (linked)
624 pa_hook_fire(&s->core->hooks[PA_CORE_HOOK_SOURCE_UNLINK], s);
625
626 if (s->state != PA_SOURCE_UNLINKED)
627 pa_namereg_unregister(s->core, s->name);
628 pa_idxset_remove_by_data(s->core->sources, s, NULL);
629
630 if (s->card)
631 pa_idxset_remove_by_data(s->card->sources, s, NULL);
632
633 while ((o = pa_idxset_first(s->outputs, NULL))) {
634 pa_assert(o != j);
635 pa_source_output_kill(o);
636 j = o;
637 }
638
639 if (linked)
640 source_set_state(s, PA_SOURCE_UNLINKED);
641 else
642 s->state = PA_SOURCE_UNLINKED;
643
644 reset_callbacks(s);
645
646 if (linked) {
647 pa_subscription_post(s->core, PA_SUBSCRIPTION_EVENT_SOURCE | PA_SUBSCRIPTION_EVENT_REMOVE, s->index);
648 pa_hook_fire(&s->core->hooks[PA_CORE_HOOK_SOURCE_UNLINK_POST], s);
649 }
650 }
651
652 /* Called from main context */
653 static void source_free(pa_object *o) {
654 pa_source *s = PA_SOURCE(o);
655
656 pa_assert(s);
657 pa_assert_ctl_context();
658 pa_assert(pa_source_refcnt(s) == 0);
659
660 if (PA_SOURCE_IS_LINKED(s->state))
661 pa_source_unlink(s);
662
663 pa_log_info("Freeing source %u \"%s\"", s->index, s->name);
664
665 pa_idxset_free(s->outputs, NULL);
666 pa_hashmap_free(s->thread_info.outputs);
667
668 if (s->silence.memblock)
669 pa_memblock_unref(s->silence.memblock);
670
671 pa_xfree(s->name);
672 pa_xfree(s->driver);
673
674 if (s->proplist)
675 pa_proplist_free(s->proplist);
676
677 if (s->ports)
678 pa_hashmap_free(s->ports);
679
680 pa_xfree(s);
681 }
682
683 /* Called from main context, and not while the IO thread is active, please */
684 void pa_source_set_asyncmsgq(pa_source *s, pa_asyncmsgq *q) {
685 pa_source_assert_ref(s);
686 pa_assert_ctl_context();
687
688 s->asyncmsgq = q;
689 }
690
691 /* Called from main context, and not while the IO thread is active, please */
692 void pa_source_update_flags(pa_source *s, pa_source_flags_t mask, pa_source_flags_t value) {
693 pa_source_flags_t old_flags;
694 pa_source_output *output;
695 uint32_t idx;
696
697 pa_source_assert_ref(s);
698 pa_assert_ctl_context();
699
700 /* For now, allow only a minimal set of flags to be changed. */
701 pa_assert((mask & ~(PA_SOURCE_DYNAMIC_LATENCY|PA_SOURCE_LATENCY)) == 0);
702
703 old_flags = s->flags;
704 s->flags = (s->flags & ~mask) | (value & mask);
705
706 if (s->flags == old_flags)
707 return;
708
709 if ((s->flags & PA_SOURCE_LATENCY) != (old_flags & PA_SOURCE_LATENCY))
710 pa_log_debug("Source %s: LATENCY flag %s.", s->name, (s->flags & PA_SOURCE_LATENCY) ? "enabled" : "disabled");
711
712 if ((s->flags & PA_SOURCE_DYNAMIC_LATENCY) != (old_flags & PA_SOURCE_DYNAMIC_LATENCY))
713 pa_log_debug("Source %s: DYNAMIC_LATENCY flag %s.",
714 s->name, (s->flags & PA_SOURCE_DYNAMIC_LATENCY) ? "enabled" : "disabled");
715
716 pa_subscription_post(s->core, PA_SUBSCRIPTION_EVENT_SOURCE | PA_SUBSCRIPTION_EVENT_CHANGE, s->index);
717 pa_hook_fire(&s->core->hooks[PA_CORE_HOOK_SOURCE_FLAGS_CHANGED], s);
718
719 PA_IDXSET_FOREACH(output, s->outputs, idx) {
720 if (output->destination_source)
721 pa_source_update_flags(output->destination_source, mask, value);
722 }
723 }
724
725 /* Called from IO context, or before _put() from main context */
726 void pa_source_set_rtpoll(pa_source *s, pa_rtpoll *p) {
727 pa_source_assert_ref(s);
728 pa_source_assert_io_context(s);
729
730 s->thread_info.rtpoll = p;
731 }
732
733 /* Called from main context */
734 int pa_source_update_status(pa_source*s) {
735 pa_source_assert_ref(s);
736 pa_assert_ctl_context();
737 pa_assert(PA_SOURCE_IS_LINKED(s->state));
738
739 if (s->state == PA_SOURCE_SUSPENDED)
740 return 0;
741
742 return source_set_state(s, pa_source_used_by(s) ? PA_SOURCE_RUNNING : PA_SOURCE_IDLE);
743 }
744
745 /* Called from any context - must be threadsafe */
746 void pa_source_set_mixer_dirty(pa_source *s, bool is_dirty) {
747 pa_atomic_store(&s->mixer_dirty, is_dirty ? 1 : 0);
748 }
749
750 /* Called from main context */
751 int pa_source_suspend(pa_source *s, bool suspend, pa_suspend_cause_t cause) {
752 pa_source_assert_ref(s);
753 pa_assert_ctl_context();
754 pa_assert(PA_SOURCE_IS_LINKED(s->state));
755 pa_assert(cause != 0);
756
757 if (s->monitor_of && cause != PA_SUSPEND_PASSTHROUGH)
758 return -PA_ERR_NOTSUPPORTED;
759
760 if (suspend)
761 s->suspend_cause |= cause;
762 else
763 s->suspend_cause &= ~cause;
764
765 if (!(s->suspend_cause & PA_SUSPEND_SESSION) && (pa_atomic_load(&s->mixer_dirty) != 0)) {
766 /* This might look racy but isn't: If somebody sets mixer_dirty exactly here,
767 it'll be handled just fine. */
768 pa_source_set_mixer_dirty(s, false);
769 pa_log_debug("Mixer is now accessible. Updating alsa mixer settings.");
770 if (s->active_port && s->set_port) {
771 if (s->flags & PA_SOURCE_DEFERRED_VOLUME) {
772 struct source_message_set_port msg = { .port = s->active_port, .ret = 0 };
773 pa_assert_se(pa_asyncmsgq_send(s->asyncmsgq, PA_MSGOBJECT(s), PA_SOURCE_MESSAGE_SET_PORT, &msg, 0, NULL) == 0);
774 }
775 else
776 s->set_port(s, s->active_port);
777 }
778 else {
779 if (s->set_mute)
780 s->set_mute(s);
781 if (s->set_volume)
782 s->set_volume(s);
783 }
784 }
785
786 if ((pa_source_get_state(s) == PA_SOURCE_SUSPENDED) == !!s->suspend_cause)
787 return 0;
788
789 pa_log_debug("Suspend cause of source %s is 0x%04x, %s", s->name, s->suspend_cause, s->suspend_cause ? "suspending" : "resuming");
790
791 if (s->suspend_cause)
792 return source_set_state(s, PA_SOURCE_SUSPENDED);
793 else
794 return source_set_state(s, pa_source_used_by(s) ? PA_SOURCE_RUNNING : PA_SOURCE_IDLE);
795 }
796
797 /* Called from main context */
798 int pa_source_sync_suspend(pa_source *s) {
799 pa_sink_state_t state;
800
801 pa_source_assert_ref(s);
802 pa_assert_ctl_context();
803 pa_assert(PA_SOURCE_IS_LINKED(s->state));
804 pa_assert(s->monitor_of);
805
806 state = pa_sink_get_state(s->monitor_of);
807
808 if (state == PA_SINK_SUSPENDED)
809 return source_set_state(s, PA_SOURCE_SUSPENDED);
810
811 pa_assert(PA_SINK_IS_OPENED(state));
812
813 return source_set_state(s, pa_source_used_by(s) ? PA_SOURCE_RUNNING : PA_SOURCE_IDLE);
814 }
815
816 /* Called from main context */
817 pa_queue *pa_source_move_all_start(pa_source *s, pa_queue *q) {
818 pa_source_output *o, *n;
819 uint32_t idx;
820
821 pa_source_assert_ref(s);
822 pa_assert_ctl_context();
823 pa_assert(PA_SOURCE_IS_LINKED(s->state));
824
825 if (!q)
826 q = pa_queue_new();
827
828 for (o = PA_SOURCE_OUTPUT(pa_idxset_first(s->outputs, &idx)); o; o = n) {
829 n = PA_SOURCE_OUTPUT(pa_idxset_next(s->outputs, &idx));
830
831 pa_source_output_ref(o);
832
833 if (pa_source_output_start_move(o) >= 0)
834 pa_queue_push(q, o);
835 else
836 pa_source_output_unref(o);
837 }
838
839 return q;
840 }
841
842 /* Called from main context */
843 void pa_source_move_all_finish(pa_source *s, pa_queue *q, bool save) {
844 pa_source_output *o;
845
846 pa_source_assert_ref(s);
847 pa_assert_ctl_context();
848 pa_assert(PA_SOURCE_IS_LINKED(s->state));
849 pa_assert(q);
850
851 while ((o = PA_SOURCE_OUTPUT(pa_queue_pop(q)))) {
852 if (pa_source_output_finish_move(o, s, save) < 0)
853 pa_source_output_fail_move(o);
854
855 pa_source_output_unref(o);
856 }
857
858 pa_queue_free(q, NULL);
859 }
860
861 /* Called from main context */
862 void pa_source_move_all_fail(pa_queue *q) {
863 pa_source_output *o;
864
865 pa_assert_ctl_context();
866 pa_assert(q);
867
868 while ((o = PA_SOURCE_OUTPUT(pa_queue_pop(q)))) {
869 pa_source_output_fail_move(o);
870 pa_source_output_unref(o);
871 }
872
873 pa_queue_free(q, NULL);
874 }
875
876 /* Called from IO thread context */
877 void pa_source_process_rewind(pa_source *s, size_t nbytes) {
878 pa_source_output *o;
879 void *state = NULL;
880
881 pa_source_assert_ref(s);
882 pa_source_assert_io_context(s);
883 pa_assert(PA_SOURCE_IS_LINKED(s->thread_info.state));
884
885 if (nbytes <= 0)
886 return;
887
888 if (s->thread_info.state == PA_SOURCE_SUSPENDED)
889 return;
890
891 pa_log_debug("Processing rewind...");
892
893 PA_HASHMAP_FOREACH(o, s->thread_info.outputs, state) {
894 pa_source_output_assert_ref(o);
895 pa_source_output_process_rewind(o, nbytes);
896 }
897 }
898
899 /* Called from IO thread context */
900 void pa_source_post(pa_source*s, const pa_memchunk *chunk) {
901 pa_source_output *o;
902 void *state = NULL;
903
904 pa_source_assert_ref(s);
905 pa_source_assert_io_context(s);
906 pa_assert(PA_SOURCE_IS_LINKED(s->thread_info.state));
907 pa_assert(chunk);
908
909 if (s->thread_info.state == PA_SOURCE_SUSPENDED)
910 return;
911
912 if (s->thread_info.soft_muted || !pa_cvolume_is_norm(&s->thread_info.soft_volume)) {
913 pa_memchunk vchunk = *chunk;
914
915 pa_memblock_ref(vchunk.memblock);
916 pa_memchunk_make_writable(&vchunk, 0);
917
918 if (s->thread_info.soft_muted || pa_cvolume_is_muted(&s->thread_info.soft_volume))
919 pa_silence_memchunk(&vchunk, &s->sample_spec);
920 else
921 pa_volume_memchunk(&vchunk, &s->sample_spec, &s->thread_info.soft_volume);
922
923 while ((o = pa_hashmap_iterate(s->thread_info.outputs, &state, NULL))) {
924 pa_source_output_assert_ref(o);
925
926 if (!o->thread_info.direct_on_input)
927 pa_source_output_push(o, &vchunk);
928 }
929
930 pa_memblock_unref(vchunk.memblock);
931 } else {
932
933 while ((o = pa_hashmap_iterate(s->thread_info.outputs, &state, NULL))) {
934 pa_source_output_assert_ref(o);
935
936 if (!o->thread_info.direct_on_input)
937 pa_source_output_push(o, chunk);
938 }
939 }
940 }
941
942 /* Called from IO thread context */
943 void pa_source_post_direct(pa_source*s, pa_source_output *o, const pa_memchunk *chunk) {
944 pa_source_assert_ref(s);
945 pa_source_assert_io_context(s);
946 pa_assert(PA_SOURCE_IS_LINKED(s->thread_info.state));
947 pa_source_output_assert_ref(o);
948 pa_assert(o->thread_info.direct_on_input);
949 pa_assert(chunk);
950
951 if (s->thread_info.state == PA_SOURCE_SUSPENDED)
952 return;
953
954 if (s->thread_info.soft_muted || !pa_cvolume_is_norm(&s->thread_info.soft_volume)) {
955 pa_memchunk vchunk = *chunk;
956
957 pa_memblock_ref(vchunk.memblock);
958 pa_memchunk_make_writable(&vchunk, 0);
959
960 if (s->thread_info.soft_muted || pa_cvolume_is_muted(&s->thread_info.soft_volume))
961 pa_silence_memchunk(&vchunk, &s->sample_spec);
962 else
963 pa_volume_memchunk(&vchunk, &s->sample_spec, &s->thread_info.soft_volume);
964
965 pa_source_output_push(o, &vchunk);
966
967 pa_memblock_unref(vchunk.memblock);
968 } else
969 pa_source_output_push(o, chunk);
970 }
971
972 /* Called from main thread */
973 int pa_source_update_rate(pa_source *s, uint32_t rate, bool passthrough) {
974 int ret;
975 uint32_t desired_rate = rate;
976 uint32_t default_rate = s->default_sample_rate;
977 uint32_t alternate_rate = s->alternate_sample_rate;
978 bool use_alternate = false;
979
980 if (rate == s->sample_spec.rate)
981 return 0;
982
983 if (!s->update_rate && !s->monitor_of)
984 return -1;
985
986 if (PA_UNLIKELY(default_rate == alternate_rate && !passthrough)) {
987 pa_log_debug("Default and alternate sample rates are the same.");
988 return -1;
989 }
990
991 if (PA_SOURCE_IS_RUNNING(s->state)) {
992 pa_log_info("Cannot update rate, SOURCE_IS_RUNNING, will keep using %u Hz",
993 s->sample_spec.rate);
994 return -1;
995 }
996
997 if (s->monitor_of) {
998 if (PA_SINK_IS_RUNNING(s->monitor_of->state)) {
999 pa_log_info("Cannot update rate, this is a monitor source and the sink is running.");
1000 return -1;
1001 }
1002 }
1003
1004 if (PA_UNLIKELY(!pa_sample_rate_valid(desired_rate)))
1005 return -1;
1006
1007 if (!passthrough) {
1008 pa_assert((default_rate % 4000 == 0) || (default_rate % 11025 == 0));
1009 pa_assert((alternate_rate % 4000 == 0) || (alternate_rate % 11025 == 0));
1010
1011 if (default_rate % 11025 == 0) {
1012 if ((alternate_rate % 4000 == 0) && (desired_rate % 4000 == 0))
1013 use_alternate=true;
1014 } else {
1015 /* default is 4000 multiple */
1016 if ((alternate_rate % 11025 == 0) && (desired_rate % 11025 == 0))
1017 use_alternate=true;
1018 }
1019
1020 if (use_alternate)
1021 desired_rate = alternate_rate;
1022 else
1023 desired_rate = default_rate;
1024 } else {
1025 desired_rate = rate; /* use stream sampling rate, discard default/alternate settings */
1026 }
1027
1028 if (desired_rate == s->sample_spec.rate)
1029 return -1;
1030
1031 if (!passthrough && pa_source_used_by(s) > 0)
1032 return -1;
1033
1034 pa_log_debug("Suspending source %s due to changing the sample rate.", s->name);
1035 pa_source_suspend(s, true, PA_SUSPEND_INTERNAL);
1036
1037 if (s->update_rate)
1038 ret = s->update_rate(s, desired_rate);
1039 else {
1040 /* This is a monitor source. */
1041
1042 /* XXX: This code is written with non-passthrough streams in mind. I
1043 * have no idea whether the behaviour with passthrough streams is
1044 * sensible. */
1045 if (!passthrough) {
1046 uint32_t old_rate = s->sample_spec.rate;
1047
1048 s->sample_spec.rate = desired_rate;
1049 ret = pa_sink_update_rate(s->monitor_of, desired_rate, false);
1050
1051 if (ret < 0) {
1052 /* Changing the sink rate failed, roll back the old rate for
1053 * the monitor source. Why did we set the source rate before
1054 * calling pa_sink_update_rate(), you may ask. The reason is
1055 * that pa_sink_update_rate() tries to update the monitor
1056 * source rate, but we are already in the process of updating
1057 * the monitor source rate, so there's a risk of entering an
1058 * infinite loop. Setting the source rate before calling
1059 * pa_sink_update_rate() makes the rate == s->sample_spec.rate
1060 * check in the beginning of this function return early, so we
1061 * avoid looping. */
1062 s->sample_spec.rate = old_rate;
1063 }
1064 } else
1065 ret = -1;
1066 }
1067
1068 if (ret >= 0) {
1069 uint32_t idx;
1070 pa_source_output *o;
1071
1072 PA_IDXSET_FOREACH(o, s->outputs, idx) {
1073 if (o->state == PA_SOURCE_OUTPUT_CORKED)
1074 pa_source_output_update_rate(o);
1075 }
1076
1077 pa_log_info("Changed sampling rate successfully");
1078 }
1079
1080 pa_source_suspend(s, false, PA_SUSPEND_INTERNAL);
1081
1082 return ret;
1083 }
1084
1085 /* Called from main thread */
1086 pa_usec_t pa_source_get_latency(pa_source *s) {
1087 pa_usec_t usec;
1088
1089 pa_source_assert_ref(s);
1090 pa_assert_ctl_context();
1091 pa_assert(PA_SOURCE_IS_LINKED(s->state));
1092
1093 if (s->state == PA_SOURCE_SUSPENDED)
1094 return 0;
1095
1096 if (!(s->flags & PA_SOURCE_LATENCY))
1097 return 0;
1098
1099 pa_assert_se(pa_asyncmsgq_send(s->asyncmsgq, PA_MSGOBJECT(s), PA_SOURCE_MESSAGE_GET_LATENCY, &usec, 0, NULL) == 0);
1100
1101 /* usec is unsigned, so check that the offset can be added to usec without
1102 * underflowing. */
1103 if (-s->latency_offset <= (int64_t) usec)
1104 usec += s->latency_offset;
1105 else
1106 usec = 0;
1107
1108 return usec;
1109 }
1110
1111 /* Called from IO thread */
1112 pa_usec_t pa_source_get_latency_within_thread(pa_source *s) {
1113 pa_usec_t usec = 0;
1114 pa_msgobject *o;
1115
1116 pa_source_assert_ref(s);
1117 pa_source_assert_io_context(s);
1118 pa_assert(PA_SOURCE_IS_LINKED(s->thread_info.state));
1119
1120 /* The returned value is supposed to be in the time domain of the sound card! */
1121
1122 if (s->thread_info.state == PA_SOURCE_SUSPENDED)
1123 return 0;
1124
1125 if (!(s->flags & PA_SOURCE_LATENCY))
1126 return 0;
1127
1128 o = PA_MSGOBJECT(s);
1129
1130 /* FIXME: We probably should make this a proper vtable callback instead of going through process_msg() */
1131
1132 if (o->process_msg(o, PA_SOURCE_MESSAGE_GET_LATENCY, &usec, 0, NULL) < 0)
1133 return -1;
1134
1135 /* usec is unsigned, so check that the offset can be added to usec without
1136 * underflowing. */
1137 if (-s->thread_info.latency_offset <= (int64_t) usec)
1138 usec += s->thread_info.latency_offset;
1139 else
1140 usec = 0;
1141
1142 return usec;
1143 }
1144
1145 /* Called from the main thread (and also from the IO thread while the main
1146 * thread is waiting).
1147 *
1148 * When a source uses volume sharing, it never has the PA_SOURCE_FLAT_VOLUME flag
1149 * set. Instead, flat volume mode is detected by checking whether the root source
1150 * has the flag set. */
1151 bool pa_source_flat_volume_enabled(pa_source *s) {
1152 pa_source_assert_ref(s);
1153
1154 s = pa_source_get_master(s);
1155
1156 if (PA_LIKELY(s))
1157 return (s->flags & PA_SOURCE_FLAT_VOLUME);
1158 else
1159 return false;
1160 }
1161
1162 /* Called from the main thread (and also from the IO thread while the main
1163 * thread is waiting). */
1164 pa_source *pa_source_get_master(pa_source *s) {
1165 pa_source_assert_ref(s);
1166
1167 while (s && (s->flags & PA_SOURCE_SHARE_VOLUME_WITH_MASTER)) {
1168 if (PA_UNLIKELY(!s->output_from_master))
1169 return NULL;
1170
1171 s = s->output_from_master->source;
1172 }
1173
1174 return s;
1175 }
1176
1177 /* Called from main context */
1178 bool pa_source_is_passthrough(pa_source *s) {
1179
1180 pa_source_assert_ref(s);
1181
1182 /* NB Currently only monitor sources support passthrough mode */
1183 return (s->monitor_of && pa_sink_is_passthrough(s->monitor_of));
1184 }
1185
1186 /* Called from main context */
1187 void pa_source_enter_passthrough(pa_source *s) {
1188 pa_cvolume volume;
1189
1190 /* set the volume to NORM */
1191 s->saved_volume = *pa_source_get_volume(s, true);
1192 s->saved_save_volume = s->save_volume;
1193
1194 pa_cvolume_set(&volume, s->sample_spec.channels, PA_MIN(s->base_volume, PA_VOLUME_NORM));
1195 pa_source_set_volume(s, &volume, true, false);
1196 }
1197
1198 /* Called from main context */
1199 void pa_source_leave_passthrough(pa_source *s) {
1200 /* Restore source volume to what it was before we entered passthrough mode */
1201 pa_source_set_volume(s, &s->saved_volume, true, s->saved_save_volume);
1202
1203 pa_cvolume_init(&s->saved_volume);
1204 s->saved_save_volume = false;
1205 }
1206
1207 /* Called from main context. */
1208 static void compute_reference_ratio(pa_source_output *o) {
1209 unsigned c = 0;
1210 pa_cvolume remapped;
1211
1212 pa_assert(o);
1213 pa_assert(pa_source_flat_volume_enabled(o->source));
1214
1215 /*
1216 * Calculates the reference ratio from the source's reference
1217 * volume. This basically calculates:
1218 *
1219 * o->reference_ratio = o->volume / o->source->reference_volume
1220 */
1221
1222 remapped = o->source->reference_volume;
1223 pa_cvolume_remap(&remapped, &o->source->channel_map, &o->channel_map);
1224
1225 o->reference_ratio.channels = o->sample_spec.channels;
1226
1227 for (c = 0; c < o->sample_spec.channels; c++) {
1228
1229 /* We don't update when the source volume is 0 anyway */
1230 if (remapped.values[c] <= PA_VOLUME_MUTED)
1231 continue;
1232
1233 /* Don't update the reference ratio unless necessary */
1234 if (pa_sw_volume_multiply(
1235 o->reference_ratio.values[c],
1236 remapped.values[c]) == o->volume.values[c])
1237 continue;
1238
1239 o->reference_ratio.values[c] = pa_sw_volume_divide(
1240 o->volume.values[c],
1241 remapped.values[c]);
1242 }
1243 }
1244
1245 /* Called from main context. Only called for the root source in volume sharing
1246 * cases, except for internal recursive calls. */
1247 static void compute_reference_ratios(pa_source *s) {
1248 uint32_t idx;
1249 pa_source_output *o;
1250
1251 pa_source_assert_ref(s);
1252 pa_assert_ctl_context();
1253 pa_assert(PA_SOURCE_IS_LINKED(s->state));
1254 pa_assert(pa_source_flat_volume_enabled(s));
1255
1256 PA_IDXSET_FOREACH(o, s->outputs, idx) {
1257 compute_reference_ratio(o);
1258
1259 if (o->destination_source && (o->destination_source->flags & PA_SOURCE_SHARE_VOLUME_WITH_MASTER))
1260 compute_reference_ratios(o->destination_source);
1261 }
1262 }
1263
1264 /* Called from main context. Only called for the root source in volume sharing
1265 * cases, except for internal recursive calls. */
1266 static void compute_real_ratios(pa_source *s) {
1267 pa_source_output *o;
1268 uint32_t idx;
1269
1270 pa_source_assert_ref(s);
1271 pa_assert_ctl_context();
1272 pa_assert(PA_SOURCE_IS_LINKED(s->state));
1273 pa_assert(pa_source_flat_volume_enabled(s));
1274
1275 PA_IDXSET_FOREACH(o, s->outputs, idx) {
1276 unsigned c;
1277 pa_cvolume remapped;
1278
1279 if (o->destination_source && (o->destination_source->flags & PA_SOURCE_SHARE_VOLUME_WITH_MASTER)) {
1280 /* The origin source uses volume sharing, so this input's real ratio
1281 * is handled as a special case - the real ratio must be 0 dB, and
1282 * as a result i->soft_volume must equal i->volume_factor. */
1283 pa_cvolume_reset(&o->real_ratio, o->real_ratio.channels);
1284 o->soft_volume = o->volume_factor;
1285
1286 compute_real_ratios(o->destination_source);
1287
1288 continue;
1289 }
1290
1291 /*
1292 * This basically calculates:
1293 *
1294 * i->real_ratio := i->volume / s->real_volume
1295 * i->soft_volume := i->real_ratio * i->volume_factor
1296 */
1297
1298 remapped = s->real_volume;
1299 pa_cvolume_remap(&remapped, &s->channel_map, &o->channel_map);
1300
1301 o->real_ratio.channels = o->sample_spec.channels;
1302 o->soft_volume.channels = o->sample_spec.channels;
1303
1304 for (c = 0; c < o->sample_spec.channels; c++) {
1305
1306 if (remapped.values[c] <= PA_VOLUME_MUTED) {
1307 /* We leave o->real_ratio untouched */
1308 o->soft_volume.values[c] = PA_VOLUME_MUTED;
1309 continue;
1310 }
1311
1312 /* Don't lose accuracy unless necessary */
1313 if (pa_sw_volume_multiply(
1314 o->real_ratio.values[c],
1315 remapped.values[c]) != o->volume.values[c])
1316
1317 o->real_ratio.values[c] = pa_sw_volume_divide(
1318 o->volume.values[c],
1319 remapped.values[c]);
1320
1321 o->soft_volume.values[c] = pa_sw_volume_multiply(
1322 o->real_ratio.values[c],
1323 o->volume_factor.values[c]);
1324 }
1325
1326 /* We don't copy the soft_volume to the thread_info data
1327 * here. That must be done by the caller */
1328 }
1329 }
1330
1331 static pa_cvolume *cvolume_remap_minimal_impact(
1332 pa_cvolume *v,
1333 const pa_cvolume *template,
1334 const pa_channel_map *from,
1335 const pa_channel_map *to) {
1336
1337 pa_cvolume t;
1338
1339 pa_assert(v);
1340 pa_assert(template);
1341 pa_assert(from);
1342 pa_assert(to);
1343 pa_assert(pa_cvolume_compatible_with_channel_map(v, from));
1344 pa_assert(pa_cvolume_compatible_with_channel_map(template, to));
1345
1346 /* Much like pa_cvolume_remap(), but tries to minimize impact when
1347 * mapping from source output to source volumes:
1348 *
1349 * If template is a possible remapping from v it is used instead
1350 * of remapping anew.
1351 *
1352 * If the channel maps don't match we set an all-channel volume on
1353 * the source to ensure that changing a volume on one stream has no
1354 * effect that cannot be compensated for in another stream that
1355 * does not have the same channel map as the source. */
1356
1357 if (pa_channel_map_equal(from, to))
1358 return v;
1359
1360 t = *template;
1361 if (pa_cvolume_equal(pa_cvolume_remap(&t, to, from), v)) {
1362 *v = *template;
1363 return v;
1364 }
1365
1366 pa_cvolume_set(v, to->channels, pa_cvolume_max(v));
1367 return v;
1368 }
1369
1370 /* Called from main thread. Only called for the root source in volume sharing
1371 * cases, except for internal recursive calls. */
1372 static void get_maximum_output_volume(pa_source *s, pa_cvolume *max_volume, const pa_channel_map *channel_map) {
1373 pa_source_output *o;
1374 uint32_t idx;
1375
1376 pa_source_assert_ref(s);
1377 pa_assert(max_volume);
1378 pa_assert(channel_map);
1379 pa_assert(pa_source_flat_volume_enabled(s));
1380
1381 PA_IDXSET_FOREACH(o, s->outputs, idx) {
1382 pa_cvolume remapped;
1383
1384 if (o->destination_source && (o->destination_source->flags & PA_SOURCE_SHARE_VOLUME_WITH_MASTER)) {
1385 get_maximum_output_volume(o->destination_source, max_volume, channel_map);
1386
1387 /* Ignore this output. The origin source uses volume sharing, so this
1388 * output's volume will be set to be equal to the root source's real
1389 * volume. Obviously this output's current volume must not then
1390 * affect what the root source's real volume will be. */
1391 continue;
1392 }
1393
1394 remapped = o->volume;
1395 cvolume_remap_minimal_impact(&remapped, max_volume, &o->channel_map, channel_map);
1396 pa_cvolume_merge(max_volume, max_volume, &remapped);
1397 }
1398 }
1399
1400 /* Called from main thread. Only called for the root source in volume sharing
1401 * cases, except for internal recursive calls. */
1402 static bool has_outputs(pa_source *s) {
1403 pa_source_output *o;
1404 uint32_t idx;
1405
1406 pa_source_assert_ref(s);
1407
1408 PA_IDXSET_FOREACH(o, s->outputs, idx) {
1409 if (!o->destination_source || !(o->destination_source->flags & PA_SOURCE_SHARE_VOLUME_WITH_MASTER) || has_outputs(o->destination_source))
1410 return true;
1411 }
1412
1413 return false;
1414 }
1415
1416 /* Called from main thread. Only called for the root source in volume sharing
1417 * cases, except for internal recursive calls. */
1418 static void update_real_volume(pa_source *s, const pa_cvolume *new_volume, pa_channel_map *channel_map) {
1419 pa_source_output *o;
1420 uint32_t idx;
1421
1422 pa_source_assert_ref(s);
1423 pa_assert(new_volume);
1424 pa_assert(channel_map);
1425
1426 s->real_volume = *new_volume;
1427 pa_cvolume_remap(&s->real_volume, channel_map, &s->channel_map);
1428
1429 PA_IDXSET_FOREACH(o, s->outputs, idx) {
1430 if (o->destination_source && (o->destination_source->flags & PA_SOURCE_SHARE_VOLUME_WITH_MASTER)) {
1431 if (pa_source_flat_volume_enabled(s)) {
1432 pa_cvolume new_output_volume;
1433
1434 /* Follow the root source's real volume. */
1435 new_output_volume = *new_volume;
1436 pa_cvolume_remap(&new_output_volume, channel_map, &o->channel_map);
1437 pa_source_output_set_volume_direct(o, &new_output_volume);
1438 compute_reference_ratio(o);
1439 }
1440
1441 update_real_volume(o->destination_source, new_volume, channel_map);
1442 }
1443 }
1444 }
1445
1446 /* Called from main thread. Only called for the root source in shared volume
1447 * cases. */
1448 static void compute_real_volume(pa_source *s) {
1449 pa_source_assert_ref(s);
1450 pa_assert_ctl_context();
1451 pa_assert(PA_SOURCE_IS_LINKED(s->state));
1452 pa_assert(pa_source_flat_volume_enabled(s));
1453 pa_assert(!(s->flags & PA_SOURCE_SHARE_VOLUME_WITH_MASTER));
1454
1455 /* This determines the maximum volume of all streams and sets
1456 * s->real_volume accordingly. */
1457
1458 if (!has_outputs(s)) {
1459 /* In the special case that we have no source outputs we leave the
1460 * volume unmodified. */
1461 update_real_volume(s, &s->reference_volume, &s->channel_map);
1462 return;
1463 }
1464
1465 pa_cvolume_mute(&s->real_volume, s->channel_map.channels);
1466
1467 /* First let's determine the new maximum volume of all outputs
1468 * connected to this source */
1469 get_maximum_output_volume(s, &s->real_volume, &s->channel_map);
1470 update_real_volume(s, &s->real_volume, &s->channel_map);
1471
1472 /* Then, let's update the real ratios/soft volumes of all outputs
1473 * connected to this source */
1474 compute_real_ratios(s);
1475 }
1476
1477 /* Called from main thread. Only called for the root source in shared volume
1478 * cases, except for internal recursive calls. */
1479 static void propagate_reference_volume(pa_source *s) {
1480 pa_source_output *o;
1481 uint32_t idx;
1482
1483 pa_source_assert_ref(s);
1484 pa_assert_ctl_context();
1485 pa_assert(PA_SOURCE_IS_LINKED(s->state));
1486 pa_assert(pa_source_flat_volume_enabled(s));
1487
1488 /* This is called whenever the source volume changes that is not
1489 * caused by a source output volume change. We need to fix up the
1490 * source output volumes accordingly */
1491
1492 PA_IDXSET_FOREACH(o, s->outputs, idx) {
1493 pa_cvolume new_volume;
1494
1495 if (o->destination_source && (o->destination_source->flags & PA_SOURCE_SHARE_VOLUME_WITH_MASTER)) {
1496 propagate_reference_volume(o->destination_source);
1497
1498 /* Since the origin source uses volume sharing, this output's volume
1499 * needs to be updated to match the root source's real volume, but
1500 * that will be done later in update_shared_real_volume(). */
1501 continue;
1502 }
1503
1504 /* This basically calculates:
1505 *
1506 * o->volume := o->reference_volume * o->reference_ratio */
1507
1508 new_volume = s->reference_volume;
1509 pa_cvolume_remap(&new_volume, &s->channel_map, &o->channel_map);
1510 pa_sw_cvolume_multiply(&new_volume, &new_volume, &o->reference_ratio);
1511 pa_source_output_set_volume_direct(o, &new_volume);
1512 }
1513 }
1514
1515 /* Called from main thread. Only called for the root source in volume sharing
1516 * cases, except for internal recursive calls. The return value indicates
1517 * whether any reference volume actually changed. */
1518 static bool update_reference_volume(pa_source *s, const pa_cvolume *v, const pa_channel_map *channel_map, bool save) {
1519 pa_cvolume volume;
1520 bool reference_volume_changed;
1521 pa_source_output *o;
1522 uint32_t idx;
1523
1524 pa_source_assert_ref(s);
1525 pa_assert(PA_SOURCE_IS_LINKED(s->state));
1526 pa_assert(v);
1527 pa_assert(channel_map);
1528 pa_assert(pa_cvolume_valid(v));
1529
1530 volume = *v;
1531 pa_cvolume_remap(&volume, channel_map, &s->channel_map);
1532
1533 reference_volume_changed = !pa_cvolume_equal(&volume, &s->reference_volume);
1534 pa_source_set_reference_volume_direct(s, &volume);
1535
1536 s->save_volume = (!reference_volume_changed && s->save_volume) || save;
1537
1538 if (!reference_volume_changed && !(s->flags & PA_SOURCE_SHARE_VOLUME_WITH_MASTER))
1539 /* If the root source's volume doesn't change, then there can't be any
1540 * changes in the other source in the source tree either.
1541 *
1542 * It's probably theoretically possible that even if the root source's
1543 * volume changes slightly, some filter source doesn't change its volume
1544 * due to rounding errors. If that happens, we still want to propagate
1545 * the changed root source volume to the sources connected to the
1546 * intermediate source that didn't change its volume. This theoretical
1547 * possibility is the reason why we have that !(s->flags &
1548 * PA_SOURCE_SHARE_VOLUME_WITH_MASTER) condition. Probably nobody would
1549 * notice even if we returned here false always if
1550 * reference_volume_changed is false. */
1551 return false;
1552
1553 PA_IDXSET_FOREACH(o, s->outputs, idx) {
1554 if (o->destination_source && (o->destination_source->flags & PA_SOURCE_SHARE_VOLUME_WITH_MASTER))
1555 update_reference_volume(o->destination_source, v, channel_map, false);
1556 }
1557
1558 return true;
1559 }
1560
1561 /* Called from main thread */
1562 void pa_source_set_volume(
1563 pa_source *s,
1564 const pa_cvolume *volume,
1565 bool send_msg,
1566 bool save) {
1567
1568 pa_cvolume new_reference_volume;
1569 pa_source *root_source;
1570
1571 pa_source_assert_ref(s);
1572 pa_assert_ctl_context();
1573 pa_assert(PA_SOURCE_IS_LINKED(s->state));
1574 pa_assert(!volume || pa_cvolume_valid(volume));
1575 pa_assert(volume || pa_source_flat_volume_enabled(s));
1576 pa_assert(!volume || volume->channels == 1 || pa_cvolume_compatible(volume, &s->sample_spec));
1577
1578 /* make sure we don't change the volume in PASSTHROUGH mode ...
1579 * ... *except* if we're being invoked to reset the volume to ensure 0 dB gain */
1580 if (pa_source_is_passthrough(s) && (!volume || !pa_cvolume_is_norm(volume))) {
1581 pa_log_warn("Cannot change volume, source is monitor of a PASSTHROUGH sink");
1582 return;
1583 }
1584
1585 /* In case of volume sharing, the volume is set for the root source first,
1586 * from which it's then propagated to the sharing sources. */
1587 root_source = pa_source_get_master(s);
1588
1589 if (PA_UNLIKELY(!root_source))
1590 return;
1591
1592 /* As a special exception we accept mono volumes on all sources --
1593 * even on those with more complex channel maps */
1594
1595 if (volume) {
1596 if (pa_cvolume_compatible(volume, &s->sample_spec))
1597 new_reference_volume = *volume;
1598 else {
1599 new_reference_volume = s->reference_volume;
1600 pa_cvolume_scale(&new_reference_volume, pa_cvolume_max(volume));
1601 }
1602
1603 pa_cvolume_remap(&new_reference_volume, &s->channel_map, &root_source->channel_map);
1604
1605 if (update_reference_volume(root_source, &new_reference_volume, &root_source->channel_map, save)) {
1606 if (pa_source_flat_volume_enabled(root_source)) {
1607 /* OK, propagate this volume change back to the outputs */
1608 propagate_reference_volume(root_source);
1609
1610 /* And now recalculate the real volume */
1611 compute_real_volume(root_source);
1612 } else
1613 update_real_volume(root_source, &root_source->reference_volume, &root_source->channel_map);
1614 }
1615
1616 } else {
1617 /* If volume is NULL we synchronize the source's real and
1618 * reference volumes with the stream volumes. */
1619
1620 pa_assert(pa_source_flat_volume_enabled(root_source));
1621
1622 /* Ok, let's determine the new real volume */
1623 compute_real_volume(root_source);
1624
1625 /* Let's 'push' the reference volume if necessary */
1626 pa_cvolume_merge(&new_reference_volume, &s->reference_volume, &root_source->real_volume);
1627 /* If the source and its root don't have the same number of channels, we need to remap */
1628 if (s != root_source && !pa_channel_map_equal(&s->channel_map, &root_source->channel_map))
1629 pa_cvolume_remap(&new_reference_volume, &s->channel_map, &root_source->channel_map);
1630 update_reference_volume(root_source, &new_reference_volume, &root_source->channel_map, save);
1631
1632 /* Now that the reference volume is updated, we can update the streams'
1633 * reference ratios. */
1634 compute_reference_ratios(root_source);
1635 }
1636
1637 if (root_source->set_volume) {
1638 /* If we have a function set_volume(), then we do not apply a
1639 * soft volume by default. However, set_volume() is free to
1640 * apply one to root_source->soft_volume */
1641
1642 pa_cvolume_reset(&root_source->soft_volume, root_source->sample_spec.channels);
1643 if (!(root_source->flags & PA_SOURCE_DEFERRED_VOLUME))
1644 root_source->set_volume(root_source);
1645
1646 } else
1647 /* If we have no function set_volume(), then the soft volume
1648 * becomes the real volume */
1649 root_source->soft_volume = root_source->real_volume;
1650
1651 /* This tells the source that soft volume and/or real volume changed */
1652 if (send_msg)
1653 pa_assert_se(pa_asyncmsgq_send(root_source->asyncmsgq, PA_MSGOBJECT(root_source), PA_SOURCE_MESSAGE_SET_SHARED_VOLUME, NULL, 0, NULL) == 0);
1654 }
1655
1656 /* Called from the io thread if sync volume is used, otherwise from the main thread.
1657 * Only to be called by source implementor */
1658 void pa_source_set_soft_volume(pa_source *s, const pa_cvolume *volume) {
1659
1660 pa_source_assert_ref(s);
1661 pa_assert(!(s->flags & PA_SOURCE_SHARE_VOLUME_WITH_MASTER));
1662
1663 if (s->flags & PA_SOURCE_DEFERRED_VOLUME)
1664 pa_source_assert_io_context(s);
1665 else
1666 pa_assert_ctl_context();
1667
1668 if (!volume)
1669 pa_cvolume_reset(&s->soft_volume, s->sample_spec.channels);
1670 else
1671 s->soft_volume = *volume;
1672
1673 if (PA_SOURCE_IS_LINKED(s->state) && !(s->flags & PA_SOURCE_DEFERRED_VOLUME))
1674 pa_assert_se(pa_asyncmsgq_send(s->asyncmsgq, PA_MSGOBJECT(s), PA_SOURCE_MESSAGE_SET_VOLUME, NULL, 0, NULL) == 0);
1675 else
1676 s->thread_info.soft_volume = s->soft_volume;
1677 }
1678
1679 /* Called from the main thread. Only called for the root source in volume sharing
1680 * cases, except for internal recursive calls. */
1681 static void propagate_real_volume(pa_source *s, const pa_cvolume *old_real_volume) {
1682 pa_source_output *o;
1683 uint32_t idx;
1684
1685 pa_source_assert_ref(s);
1686 pa_assert(old_real_volume);
1687 pa_assert_ctl_context();
1688 pa_assert(PA_SOURCE_IS_LINKED(s->state));
1689
1690 /* This is called when the hardware's real volume changes due to
1691 * some external event. We copy the real volume into our
1692 * reference volume and then rebuild the stream volumes based on
1693 * i->real_ratio which should stay fixed. */
1694
1695 if (!(s->flags & PA_SOURCE_SHARE_VOLUME_WITH_MASTER)) {
1696 if (pa_cvolume_equal(old_real_volume, &s->real_volume))
1697 return;
1698
1699 /* 1. Make the real volume the reference volume */
1700 update_reference_volume(s, &s->real_volume, &s->channel_map, true);
1701 }
1702
1703 if (pa_source_flat_volume_enabled(s)) {
1704 PA_IDXSET_FOREACH(o, s->outputs, idx) {
1705 pa_cvolume new_volume;
1706
1707 /* 2. Since the source's reference and real volumes are equal
1708 * now our ratios should be too. */
1709 o->reference_ratio = o->real_ratio;
1710
1711 /* 3. Recalculate the new stream reference volume based on the
1712 * reference ratio and the sink's reference volume.
1713 *
1714 * This basically calculates:
1715 *
1716 * o->volume = s->reference_volume * o->reference_ratio
1717 *
1718 * This is identical to propagate_reference_volume() */
1719 new_volume = s->reference_volume;
1720 pa_cvolume_remap(&new_volume, &s->channel_map, &o->channel_map);
1721 pa_sw_cvolume_multiply(&new_volume, &new_volume, &o->reference_ratio);
1722 pa_source_output_set_volume_direct(o, &new_volume);
1723
1724 if (o->destination_source && (o->destination_source->flags & PA_SOURCE_SHARE_VOLUME_WITH_MASTER))
1725 propagate_real_volume(o->destination_source, old_real_volume);
1726 }
1727 }
1728
1729 /* Something got changed in the hardware. It probably makes sense
1730 * to save changed hw settings given that hw volume changes not
1731 * triggered by PA are almost certainly done by the user. */
1732 if (!(s->flags & PA_SOURCE_SHARE_VOLUME_WITH_MASTER))
1733 s->save_volume = true;
1734 }
1735
1736 /* Called from io thread */
1737 void pa_source_update_volume_and_mute(pa_source *s) {
1738 pa_assert(s);
1739 pa_source_assert_io_context(s);
1740
1741 pa_asyncmsgq_post(pa_thread_mq_get()->outq, PA_MSGOBJECT(s), PA_SOURCE_MESSAGE_UPDATE_VOLUME_AND_MUTE, NULL, 0, NULL, NULL);
1742 }
1743
1744 /* Called from main thread */
1745 const pa_cvolume *pa_source_get_volume(pa_source *s, bool force_refresh) {
1746 pa_source_assert_ref(s);
1747 pa_assert_ctl_context();
1748 pa_assert(PA_SOURCE_IS_LINKED(s->state));
1749
1750 if (s->refresh_volume || force_refresh) {
1751 struct pa_cvolume old_real_volume;
1752
1753 pa_assert(!(s->flags & PA_SOURCE_SHARE_VOLUME_WITH_MASTER));
1754
1755 old_real_volume = s->real_volume;
1756
1757 if (!(s->flags & PA_SOURCE_DEFERRED_VOLUME) && s->get_volume)
1758 s->get_volume(s);
1759
1760 pa_assert_se(pa_asyncmsgq_send(s->asyncmsgq, PA_MSGOBJECT(s), PA_SOURCE_MESSAGE_GET_VOLUME, NULL, 0, NULL) == 0);
1761
1762 update_real_volume(s, &s->real_volume, &s->channel_map);
1763 propagate_real_volume(s, &old_real_volume);
1764 }
1765
1766 return &s->reference_volume;
1767 }
1768
1769 /* Called from main thread. In volume sharing cases, only the root source may
1770 * call this. */
1771 void pa_source_volume_changed(pa_source *s, const pa_cvolume *new_real_volume) {
1772 pa_cvolume old_real_volume;
1773
1774 pa_source_assert_ref(s);
1775 pa_assert_ctl_context();
1776 pa_assert(PA_SOURCE_IS_LINKED(s->state));
1777 pa_assert(!(s->flags & PA_SOURCE_SHARE_VOLUME_WITH_MASTER));
1778
1779 /* The source implementor may call this if the volume changed to make sure everyone is notified */
1780
1781 old_real_volume = s->real_volume;
1782 update_real_volume(s, new_real_volume, &s->channel_map);
1783 propagate_real_volume(s, &old_real_volume);
1784 }
1785
1786 /* Called from main thread */
1787 void pa_source_set_mute(pa_source *s, bool mute, bool save) {
1788 bool old_muted;
1789
1790 pa_source_assert_ref(s);
1791 pa_assert_ctl_context();
1792 pa_assert(PA_SOURCE_IS_LINKED(s->state));
1793
1794 old_muted = s->muted;
1795 s->muted = mute;
1796 s->save_muted = (old_muted == s->muted && s->save_muted) || save;
1797
1798 if (!(s->flags & PA_SOURCE_DEFERRED_VOLUME) && s->set_mute)
1799 s->set_mute(s);
1800
1801 pa_assert_se(pa_asyncmsgq_send(s->asyncmsgq, PA_MSGOBJECT(s), PA_SOURCE_MESSAGE_SET_MUTE, NULL, 0, NULL) == 0);
1802
1803 if (old_muted != s->muted)
1804 pa_subscription_post(s->core, PA_SUBSCRIPTION_EVENT_SOURCE|PA_SUBSCRIPTION_EVENT_CHANGE, s->index);
1805 }
1806
1807 /* Called from main thread */
1808 bool pa_source_get_mute(pa_source *s, bool force_refresh) {
1809
1810 pa_source_assert_ref(s);
1811 pa_assert_ctl_context();
1812 pa_assert(PA_SOURCE_IS_LINKED(s->state));
1813
1814 if (s->refresh_muted || force_refresh) {
1815 bool old_muted = s->muted;
1816
1817 if (!(s->flags & PA_SOURCE_DEFERRED_VOLUME) && s->get_mute)
1818 s->get_mute(s);
1819
1820 pa_assert_se(pa_asyncmsgq_send(s->asyncmsgq, PA_MSGOBJECT(s), PA_SOURCE_MESSAGE_GET_MUTE, NULL, 0, NULL) == 0);
1821
1822 if (old_muted != s->muted) {
1823 s->save_muted = true;
1824
1825 pa_subscription_post(s->core, PA_SUBSCRIPTION_EVENT_SOURCE|PA_SUBSCRIPTION_EVENT_CHANGE, s->index);
1826
1827 /* Make sure the soft mute status stays in sync */
1828 pa_assert_se(pa_asyncmsgq_send(s->asyncmsgq, PA_MSGOBJECT(s), PA_SOURCE_MESSAGE_SET_MUTE, NULL, 0, NULL) == 0);
1829 }
1830 }
1831
1832 return s->muted;
1833 }
1834
1835 /* Called from main thread */
1836 void pa_source_mute_changed(pa_source *s, bool new_muted) {
1837 pa_source_assert_ref(s);
1838 pa_assert_ctl_context();
1839 pa_assert(PA_SOURCE_IS_LINKED(s->state));
1840
1841 /* The source implementor may call this if the mute state changed to make sure everyone is notified */
1842
1843 if (s->muted == new_muted)
1844 return;
1845
1846 s->muted = new_muted;
1847 s->save_muted = true;
1848
1849 pa_subscription_post(s->core, PA_SUBSCRIPTION_EVENT_SOURCE|PA_SUBSCRIPTION_EVENT_CHANGE, s->index);
1850 }
1851
1852 /* Called from main thread */
1853 bool pa_source_update_proplist(pa_source *s, pa_update_mode_t mode, pa_proplist *p) {
1854 pa_source_assert_ref(s);
1855 pa_assert_ctl_context();
1856
1857 if (p)
1858 pa_proplist_update(s->proplist, mode, p);
1859
1860 if (PA_SOURCE_IS_LINKED(s->state)) {
1861 pa_hook_fire(&s->core->hooks[PA_CORE_HOOK_SOURCE_PROPLIST_CHANGED], s);
1862 pa_subscription_post(s->core, PA_SUBSCRIPTION_EVENT_SOURCE|PA_SUBSCRIPTION_EVENT_CHANGE, s->index);
1863 }
1864
1865 return true;
1866 }
1867
1868 /* Called from main thread */
1869 /* FIXME -- this should be dropped and be merged into pa_source_update_proplist() */
1870 void pa_source_set_description(pa_source *s, const char *description) {
1871 const char *old;
1872 pa_source_assert_ref(s);
1873 pa_assert_ctl_context();
1874
1875 if (!description && !pa_proplist_contains(s->proplist, PA_PROP_DEVICE_DESCRIPTION))
1876 return;
1877
1878 old = pa_proplist_gets(s->proplist, PA_PROP_DEVICE_DESCRIPTION);
1879
1880 if (old && description && pa_streq(old, description))
1881 return;
1882
1883 if (description)
1884 pa_proplist_sets(s->proplist, PA_PROP_DEVICE_DESCRIPTION, description);
1885 else
1886 pa_proplist_unset(s->proplist, PA_PROP_DEVICE_DESCRIPTION);
1887
1888 if (PA_SOURCE_IS_LINKED(s->state)) {
1889 pa_subscription_post(s->core, PA_SUBSCRIPTION_EVENT_SOURCE|PA_SUBSCRIPTION_EVENT_CHANGE, s->index);
1890 pa_hook_fire(&s->core->hooks[PA_CORE_HOOK_SOURCE_PROPLIST_CHANGED], s);
1891 }
1892 }
1893
1894 /* Called from main thread */
1895 unsigned pa_source_linked_by(pa_source *s) {
1896 pa_source_assert_ref(s);
1897 pa_assert_ctl_context();
1898 pa_assert(PA_SOURCE_IS_LINKED(s->state));
1899
1900 return pa_idxset_size(s->outputs);
1901 }
1902
1903 /* Called from main thread */
1904 unsigned pa_source_used_by(pa_source *s) {
1905 unsigned ret;
1906
1907 pa_source_assert_ref(s);
1908 pa_assert_ctl_context();
1909 pa_assert(PA_SOURCE_IS_LINKED(s->state));
1910
1911 ret = pa_idxset_size(s->outputs);
1912 pa_assert(ret >= s->n_corked);
1913
1914 return ret - s->n_corked;
1915 }
1916
1917 /* Called from main thread */
1918 unsigned pa_source_check_suspend(pa_source *s) {
1919 unsigned ret;
1920 pa_source_output *o;
1921 uint32_t idx;
1922
1923 pa_source_assert_ref(s);
1924 pa_assert_ctl_context();
1925
1926 if (!PA_SOURCE_IS_LINKED(s->state))
1927 return 0;
1928
1929 ret = 0;
1930
1931 PA_IDXSET_FOREACH(o, s->outputs, idx) {
1932 pa_source_output_state_t st;
1933
1934 st = pa_source_output_get_state(o);
1935
1936 /* We do not assert here. It is perfectly valid for a source output to
1937 * be in the INIT state (i.e. created, marked done but not yet put)
1938 * and we should not care if it's unlinked as it won't contribute
1939 * towards our busy status.
1940 */
1941 if (!PA_SOURCE_OUTPUT_IS_LINKED(st))
1942 continue;
1943
1944 if (st == PA_SOURCE_OUTPUT_CORKED)
1945 continue;
1946
1947 if (o->flags & PA_SOURCE_OUTPUT_DONT_INHIBIT_AUTO_SUSPEND)
1948 continue;
1949
1950 ret ++;
1951 }
1952
1953 return ret;
1954 }
1955
1956 /* Called from the IO thread */
1957 static void sync_output_volumes_within_thread(pa_source *s) {
1958 pa_source_output *o;
1959 void *state = NULL;
1960
1961 pa_source_assert_ref(s);
1962 pa_source_assert_io_context(s);
1963
1964 PA_HASHMAP_FOREACH(o, s->thread_info.outputs, state) {
1965 if (pa_cvolume_equal(&o->thread_info.soft_volume, &o->soft_volume))
1966 continue;
1967
1968 o->thread_info.soft_volume = o->soft_volume;
1969 //pa_source_output_request_rewind(o, 0, true, false, false);
1970 }
1971 }
1972
1973 /* Called from the IO thread. Only called for the root source in volume sharing
1974 * cases, except for internal recursive calls. */
1975 static void set_shared_volume_within_thread(pa_source *s) {
1976 pa_source_output *o;
1977 void *state = NULL;
1978
1979 pa_source_assert_ref(s);
1980
1981 PA_MSGOBJECT(s)->process_msg(PA_MSGOBJECT(s), PA_SOURCE_MESSAGE_SET_VOLUME_SYNCED, NULL, 0, NULL);
1982
1983 PA_HASHMAP_FOREACH(o, s->thread_info.outputs, state) {
1984 if (o->destination_source && (o->destination_source->flags & PA_SOURCE_SHARE_VOLUME_WITH_MASTER))
1985 set_shared_volume_within_thread(o->destination_source);
1986 }
1987 }
1988
1989 /* Called from IO thread, except when it is not */
1990 int pa_source_process_msg(pa_msgobject *object, int code, void *userdata, int64_t offset, pa_memchunk *chunk) {
1991 pa_source *s = PA_SOURCE(object);
1992 pa_source_assert_ref(s);
1993
1994 switch ((pa_source_message_t) code) {
1995
1996 case PA_SOURCE_MESSAGE_ADD_OUTPUT: {
1997 pa_source_output *o = PA_SOURCE_OUTPUT(userdata);
1998
1999 pa_hashmap_put(s->thread_info.outputs, PA_UINT32_TO_PTR(o->index), pa_source_output_ref(o));
2000
2001 if (o->direct_on_input) {
2002 o->thread_info.direct_on_input = o->direct_on_input;
2003 pa_hashmap_put(o->thread_info.direct_on_input->thread_info.direct_outputs, PA_UINT32_TO_PTR(o->index), o);
2004 }
2005
2006 pa_assert(!o->thread_info.attached);
2007 o->thread_info.attached = true;
2008
2009 if (o->attach)
2010 o->attach(o);
2011
2012 pa_source_output_set_state_within_thread(o, o->state);
2013
2014 if (o->thread_info.requested_source_latency != (pa_usec_t) -1)
2015 pa_source_output_set_requested_latency_within_thread(o, o->thread_info.requested_source_latency);
2016
2017 pa_source_output_update_max_rewind(o, s->thread_info.max_rewind);
2018
2019 /* We don't just invalidate the requested latency here,
2020 * because if we are in a move we might need to fix up the
2021 * requested latency. */
2022 pa_source_output_set_requested_latency_within_thread(o, o->thread_info.requested_source_latency);
2023
2024 /* In flat volume mode we need to update the volume as
2025 * well */
2026 return object->process_msg(object, PA_SOURCE_MESSAGE_SET_SHARED_VOLUME, NULL, 0, NULL);
2027 }
2028
2029 case PA_SOURCE_MESSAGE_REMOVE_OUTPUT: {
2030 pa_source_output *o = PA_SOURCE_OUTPUT(userdata);
2031
2032 pa_source_output_set_state_within_thread(o, o->state);
2033
2034 if (o->detach)
2035 o->detach(o);
2036
2037 pa_assert(o->thread_info.attached);
2038 o->thread_info.attached = false;
2039
2040 if (o->thread_info.direct_on_input) {
2041 pa_hashmap_remove(o->thread_info.direct_on_input->thread_info.direct_outputs, PA_UINT32_TO_PTR(o->index));
2042 o->thread_info.direct_on_input = NULL;
2043 }
2044
2045 pa_hashmap_remove_and_free(s->thread_info.outputs, PA_UINT32_TO_PTR(o->index));
2046 pa_source_invalidate_requested_latency(s, true);
2047
2048 /* In flat volume mode we need to update the volume as
2049 * well */
2050 return object->process_msg(object, PA_SOURCE_MESSAGE_SET_SHARED_VOLUME, NULL, 0, NULL);
2051 }
2052
2053 case PA_SOURCE_MESSAGE_SET_SHARED_VOLUME: {
2054 pa_source *root_source = pa_source_get_master(s);
2055
2056 if (PA_LIKELY(root_source))
2057 set_shared_volume_within_thread(root_source);
2058
2059 return 0;
2060 }
2061
2062 case PA_SOURCE_MESSAGE_SET_VOLUME_SYNCED:
2063
2064 if (s->flags & PA_SOURCE_DEFERRED_VOLUME) {
2065 s->set_volume(s);
2066 pa_source_volume_change_push(s);
2067 }
2068 /* Fall through ... */
2069
2070 case PA_SOURCE_MESSAGE_SET_VOLUME:
2071
2072 if (!pa_cvolume_equal(&s->thread_info.soft_volume, &s->soft_volume)) {
2073 s->thread_info.soft_volume = s->soft_volume;
2074 }
2075
2076 /* Fall through ... */
2077
2078 case PA_SOURCE_MESSAGE_SYNC_VOLUMES:
2079 sync_output_volumes_within_thread(s);
2080 return 0;
2081
2082 case PA_SOURCE_MESSAGE_GET_VOLUME:
2083
2084 if ((s->flags & PA_SOURCE_DEFERRED_VOLUME) && s->get_volume) {
2085 s->get_volume(s);
2086 pa_source_volume_change_flush(s);
2087 pa_sw_cvolume_divide(&s->thread_info.current_hw_volume, &s->real_volume, &s->soft_volume);
2088 }
2089
2090 /* In case source implementor reset SW volume. */
2091 if (!pa_cvolume_equal(&s->thread_info.soft_volume, &s->soft_volume)) {
2092 s->thread_info.soft_volume = s->soft_volume;
2093 }
2094
2095 return 0;
2096
2097 case PA_SOURCE_MESSAGE_SET_MUTE:
2098
2099 if (s->thread_info.soft_muted != s->muted) {
2100 s->thread_info.soft_muted = s->muted;
2101 }
2102
2103 if (s->flags & PA_SOURCE_DEFERRED_VOLUME && s->set_mute)
2104 s->set_mute(s);
2105
2106 return 0;
2107
2108 case PA_SOURCE_MESSAGE_GET_MUTE:
2109
2110 if (s->flags & PA_SOURCE_DEFERRED_VOLUME && s->get_mute)
2111 s->get_mute(s);
2112
2113 return 0;
2114
2115 case PA_SOURCE_MESSAGE_SET_STATE: {
2116
2117 bool suspend_change =
2118 (s->thread_info.state == PA_SOURCE_SUSPENDED && PA_SOURCE_IS_OPENED(PA_PTR_TO_UINT(userdata))) ||
2119 (PA_SOURCE_IS_OPENED(s->thread_info.state) && PA_PTR_TO_UINT(userdata) == PA_SOURCE_SUSPENDED);
2120
2121 s->thread_info.state = PA_PTR_TO_UINT(userdata);
2122
2123 if (suspend_change) {
2124 pa_source_output *o;
2125 void *state = NULL;
2126
2127 while ((o = pa_hashmap_iterate(s->thread_info.outputs, &state, NULL)))
2128 if (o->suspend_within_thread)
2129 o->suspend_within_thread(o, s->thread_info.state == PA_SOURCE_SUSPENDED);
2130 }
2131
2132 return 0;
2133 }
2134
2135 case PA_SOURCE_MESSAGE_GET_REQUESTED_LATENCY: {
2136
2137 pa_usec_t *usec = userdata;
2138 *usec = pa_source_get_requested_latency_within_thread(s);
2139
2140 /* Yes, that's right, the IO thread will see -1 when no
2141 * explicit requested latency is configured, the main
2142 * thread will see max_latency */
2143 if (*usec == (pa_usec_t) -1)
2144 *usec = s->thread_info.max_latency;
2145
2146 return 0;
2147 }
2148
2149 case PA_SOURCE_MESSAGE_SET_LATENCY_RANGE: {
2150 pa_usec_t *r = userdata;
2151
2152 pa_source_set_latency_range_within_thread(s, r[0], r[1]);
2153
2154 return 0;
2155 }
2156
2157 case PA_SOURCE_MESSAGE_GET_LATENCY_RANGE: {
2158 pa_usec_t *r = userdata;
2159
2160 r[0] = s->thread_info.min_latency;
2161 r[1] = s->thread_info.max_latency;
2162
2163 return 0;
2164 }
2165
2166 case PA_SOURCE_MESSAGE_GET_FIXED_LATENCY:
2167
2168 *((pa_usec_t*) userdata) = s->thread_info.fixed_latency;
2169 return 0;
2170
2171 case PA_SOURCE_MESSAGE_SET_FIXED_LATENCY:
2172
2173 pa_source_set_fixed_latency_within_thread(s, (pa_usec_t) offset);
2174 return 0;
2175
2176 case PA_SOURCE_MESSAGE_GET_MAX_REWIND:
2177
2178 *((size_t*) userdata) = s->thread_info.max_rewind;
2179 return 0;
2180
2181 case PA_SOURCE_MESSAGE_SET_MAX_REWIND:
2182
2183 pa_source_set_max_rewind_within_thread(s, (size_t) offset);
2184 return 0;
2185
2186 case PA_SOURCE_MESSAGE_GET_LATENCY:
2187
2188 if (s->monitor_of) {
2189 *((pa_usec_t*) userdata) = 0;
2190 return 0;
2191 }
2192
2193 /* Implementors need to overwrite this implementation! */
2194 return -1;
2195
2196 case PA_SOURCE_MESSAGE_SET_PORT:
2197
2198 pa_assert(userdata);
2199 if (s->set_port) {
2200 struct source_message_set_port *msg_data = userdata;
2201 msg_data->ret = s->set_port(s, msg_data->port);
2202 }
2203 return 0;
2204
2205 case PA_SOURCE_MESSAGE_UPDATE_VOLUME_AND_MUTE:
2206 /* This message is sent from IO-thread and handled in main thread. */
2207 pa_assert_ctl_context();
2208
2209 /* Make sure we're not messing with main thread when no longer linked */
2210 if (!PA_SOURCE_IS_LINKED(s->state))
2211 return 0;
2212
2213 pa_source_get_volume(s, true);
2214 pa_source_get_mute(s, true);
2215 return 0;
2216
2217 case PA_SOURCE_MESSAGE_SET_LATENCY_OFFSET:
2218 s->thread_info.latency_offset = offset;
2219 return 0;
2220
2221 case PA_SOURCE_MESSAGE_MAX:
2222 ;
2223 }
2224
2225 return -1;
2226 }
2227
2228 /* Called from main thread */
2229 int pa_source_suspend_all(pa_core *c, bool suspend, pa_suspend_cause_t cause) {
2230 pa_source *source;
2231 uint32_t idx;
2232 int ret = 0;
2233
2234 pa_core_assert_ref(c);
2235 pa_assert_ctl_context();
2236 pa_assert(cause != 0);
2237
2238 for (source = PA_SOURCE(pa_idxset_first(c->sources, &idx)); source; source = PA_SOURCE(pa_idxset_next(c->sources, &idx))) {
2239 int r;
2240
2241 if (source->monitor_of)
2242 continue;
2243
2244 if ((r = pa_source_suspend(source, suspend, cause)) < 0)
2245 ret = r;
2246 }
2247
2248 return ret;
2249 }
2250
2251 /* Called from IO thread */
2252 void pa_source_detach_within_thread(pa_source *s) {
2253 pa_source_output *o;
2254 void *state = NULL;
2255
2256 pa_source_assert_ref(s);
2257 pa_source_assert_io_context(s);
2258 pa_assert(PA_SOURCE_IS_LINKED(s->thread_info.state));
2259
2260 PA_HASHMAP_FOREACH(o, s->thread_info.outputs, state)
2261 if (o->detach)
2262 o->detach(o);
2263 }
2264
2265 /* Called from IO thread */
2266 void pa_source_attach_within_thread(pa_source *s) {
2267 pa_source_output *o;
2268 void *state = NULL;
2269
2270 pa_source_assert_ref(s);
2271 pa_source_assert_io_context(s);
2272 pa_assert(PA_SOURCE_IS_LINKED(s->thread_info.state));
2273
2274 PA_HASHMAP_FOREACH(o, s->thread_info.outputs, state)
2275 if (o->attach)
2276 o->attach(o);
2277 }
2278
2279 /* Called from IO thread */
2280 pa_usec_t pa_source_get_requested_latency_within_thread(pa_source *s) {
2281 pa_usec_t result = (pa_usec_t) -1;
2282 pa_source_output *o;
2283 void *state = NULL;
2284
2285 pa_source_assert_ref(s);
2286 pa_source_assert_io_context(s);
2287
2288 if (!(s->flags & PA_SOURCE_DYNAMIC_LATENCY))
2289 return PA_CLAMP(s->thread_info.fixed_latency, s->thread_info.min_latency, s->thread_info.max_latency);
2290
2291 if (s->thread_info.requested_latency_valid)
2292 return s->thread_info.requested_latency;
2293
2294 PA_HASHMAP_FOREACH(o, s->thread_info.outputs, state)
2295 if (o->thread_info.requested_source_latency != (pa_usec_t) -1 &&
2296 (result == (pa_usec_t) -1 || result > o->thread_info.requested_source_latency))
2297 result = o->thread_info.requested_source_latency;
2298
2299 if (result != (pa_usec_t) -1)
2300 result = PA_CLAMP(result, s->thread_info.min_latency, s->thread_info.max_latency);
2301
2302 if (PA_SOURCE_IS_LINKED(s->thread_info.state)) {
2303 /* Only cache this if we are fully set up */
2304 s->thread_info.requested_latency = result;
2305 s->thread_info.requested_latency_valid = true;
2306 }
2307
2308 return result;
2309 }
2310
2311 /* Called from main thread */
2312 pa_usec_t pa_source_get_requested_latency(pa_source *s) {
2313 pa_usec_t usec = 0;
2314
2315 pa_source_assert_ref(s);
2316 pa_assert_ctl_context();
2317 pa_assert(PA_SOURCE_IS_LINKED(s->state));
2318
2319 if (s->state == PA_SOURCE_SUSPENDED)
2320 return 0;
2321
2322 pa_assert_se(pa_asyncmsgq_send(s->asyncmsgq, PA_MSGOBJECT(s), PA_SOURCE_MESSAGE_GET_REQUESTED_LATENCY, &usec, 0, NULL) == 0);
2323
2324 return usec;
2325 }
2326
2327 /* Called from IO thread */
2328 void pa_source_set_max_rewind_within_thread(pa_source *s, size_t max_rewind) {
2329 pa_source_output *o;
2330 void *state = NULL;
2331
2332 pa_source_assert_ref(s);
2333 pa_source_assert_io_context(s);
2334
2335 if (max_rewind == s->thread_info.max_rewind)
2336 return;
2337
2338 s->thread_info.max_rewind = max_rewind;
2339
2340 if (PA_SOURCE_IS_LINKED(s->thread_info.state))
2341 PA_HASHMAP_FOREACH(o, s->thread_info.outputs, state)
2342 pa_source_output_update_max_rewind(o, s->thread_info.max_rewind);
2343 }
2344
2345 /* Called from main thread */
2346 void pa_source_set_max_rewind(pa_source *s, size_t max_rewind) {
2347 pa_source_assert_ref(s);
2348 pa_assert_ctl_context();
2349
2350 if (PA_SOURCE_IS_LINKED(s->state))
2351 pa_assert_se(pa_asyncmsgq_send(s->asyncmsgq, PA_MSGOBJECT(s), PA_SOURCE_MESSAGE_SET_MAX_REWIND, NULL, max_rewind, NULL) == 0);
2352 else
2353 pa_source_set_max_rewind_within_thread(s, max_rewind);
2354 }
2355
2356 /* Called from IO thread */
2357 void pa_source_invalidate_requested_latency(pa_source *s, bool dynamic) {
2358 pa_source_output *o;
2359 void *state = NULL;
2360
2361 pa_source_assert_ref(s);
2362 pa_source_assert_io_context(s);
2363
2364 if ((s->flags & PA_SOURCE_DYNAMIC_LATENCY))
2365 s->thread_info.requested_latency_valid = false;
2366 else if (dynamic)
2367 return;
2368
2369 if (PA_SOURCE_IS_LINKED(s->thread_info.state)) {
2370
2371 if (s->update_requested_latency)
2372 s->update_requested_latency(s);
2373
2374 while ((o = pa_hashmap_iterate(s->thread_info.outputs, &state, NULL)))
2375 if (o->update_source_requested_latency)
2376 o->update_source_requested_latency(o);
2377 }
2378
2379 if (s->monitor_of)
2380 pa_sink_invalidate_requested_latency(s->monitor_of, dynamic);
2381 }
2382
2383 /* Called from main thread */
2384 void pa_source_set_latency_range(pa_source *s, pa_usec_t min_latency, pa_usec_t max_latency) {
2385 pa_source_assert_ref(s);
2386 pa_assert_ctl_context();
2387
2388 /* min_latency == 0: no limit
2389 * min_latency anything else: specified limit
2390 *
2391 * Similar for max_latency */
2392
2393 if (min_latency < ABSOLUTE_MIN_LATENCY)
2394 min_latency = ABSOLUTE_MIN_LATENCY;
2395
2396 if (max_latency <= 0 ||
2397 max_latency > ABSOLUTE_MAX_LATENCY)
2398 max_latency = ABSOLUTE_MAX_LATENCY;
2399
2400 pa_assert(min_latency <= max_latency);
2401
2402 /* Hmm, let's see if someone forgot to set PA_SOURCE_DYNAMIC_LATENCY here... */
2403 pa_assert((min_latency == ABSOLUTE_MIN_LATENCY &&
2404 max_latency == ABSOLUTE_MAX_LATENCY) ||
2405 (s->flags & PA_SOURCE_DYNAMIC_LATENCY));
2406
2407 if (PA_SOURCE_IS_LINKED(s->state)) {
2408 pa_usec_t r[2];
2409
2410 r[0] = min_latency;
2411 r[1] = max_latency;
2412
2413 pa_assert_se(pa_asyncmsgq_send(s->asyncmsgq, PA_MSGOBJECT(s), PA_SOURCE_MESSAGE_SET_LATENCY_RANGE, r, 0, NULL) == 0);
2414 } else
2415 pa_source_set_latency_range_within_thread(s, min_latency, max_latency);
2416 }
2417
2418 /* Called from main thread */
2419 void pa_source_get_latency_range(pa_source *s, pa_usec_t *min_latency, pa_usec_t *max_latency) {
2420 pa_source_assert_ref(s);
2421 pa_assert_ctl_context();
2422 pa_assert(min_latency);
2423 pa_assert(max_latency);
2424
2425 if (PA_SOURCE_IS_LINKED(s->state)) {
2426 pa_usec_t r[2] = { 0, 0 };
2427
2428 pa_assert_se(pa_asyncmsgq_send(s->asyncmsgq, PA_MSGOBJECT(s), PA_SOURCE_MESSAGE_GET_LATENCY_RANGE, r, 0, NULL) == 0);
2429
2430 *min_latency = r[0];
2431 *max_latency = r[1];
2432 } else {
2433 *min_latency = s->thread_info.min_latency;
2434 *max_latency = s->thread_info.max_latency;
2435 }
2436 }
2437
2438 /* Called from IO thread, and from main thread before pa_source_put() is called */
2439 void pa_source_set_latency_range_within_thread(pa_source *s, pa_usec_t min_latency, pa_usec_t max_latency) {
2440 pa_source_assert_ref(s);
2441 pa_source_assert_io_context(s);
2442
2443 pa_assert(min_latency >= ABSOLUTE_MIN_LATENCY);
2444 pa_assert(max_latency <= ABSOLUTE_MAX_LATENCY);
2445 pa_assert(min_latency <= max_latency);
2446
2447 /* Hmm, let's see if someone forgot to set PA_SOURCE_DYNAMIC_LATENCY here... */
2448 pa_assert((min_latency == ABSOLUTE_MIN_LATENCY &&
2449 max_latency == ABSOLUTE_MAX_LATENCY) ||
2450 (s->flags & PA_SOURCE_DYNAMIC_LATENCY) ||
2451 s->monitor_of);
2452
2453 if (s->thread_info.min_latency == min_latency &&
2454 s->thread_info.max_latency == max_latency)
2455 return;
2456
2457 s->thread_info.min_latency = min_latency;
2458 s->thread_info.max_latency = max_latency;
2459
2460 if (PA_SOURCE_IS_LINKED(s->thread_info.state)) {
2461 pa_source_output *o;
2462 void *state = NULL;
2463
2464 PA_HASHMAP_FOREACH(o, s->thread_info.outputs, state)
2465 if (o->update_source_latency_range)
2466 o->update_source_latency_range(o);
2467 }
2468
2469 pa_source_invalidate_requested_latency(s, false);
2470 }
2471
2472 /* Called from main thread, before the source is put */
2473 void pa_source_set_fixed_latency(pa_source *s, pa_usec_t latency) {
2474 pa_source_assert_ref(s);
2475 pa_assert_ctl_context();
2476
2477 if (s->flags & PA_SOURCE_DYNAMIC_LATENCY) {
2478 pa_assert(latency == 0);
2479 return;
2480 }
2481
2482 if (latency < ABSOLUTE_MIN_LATENCY)
2483 latency = ABSOLUTE_MIN_LATENCY;
2484
2485 if (latency > ABSOLUTE_MAX_LATENCY)
2486 latency = ABSOLUTE_MAX_LATENCY;
2487
2488 if (PA_SOURCE_IS_LINKED(s->state))
2489 pa_assert_se(pa_asyncmsgq_send(s->asyncmsgq, PA_MSGOBJECT(s), PA_SOURCE_MESSAGE_SET_FIXED_LATENCY, NULL, (int64_t) latency, NULL) == 0);
2490 else
2491 s->thread_info.fixed_latency = latency;
2492 }
2493
2494 /* Called from main thread */
2495 pa_usec_t pa_source_get_fixed_latency(pa_source *s) {
2496 pa_usec_t latency;
2497
2498 pa_source_assert_ref(s);
2499 pa_assert_ctl_context();
2500
2501 if (s->flags & PA_SOURCE_DYNAMIC_LATENCY)
2502 return 0;
2503
2504 if (PA_SOURCE_IS_LINKED(s->state))
2505 pa_assert_se(pa_asyncmsgq_send(s->asyncmsgq, PA_MSGOBJECT(s), PA_SOURCE_MESSAGE_GET_FIXED_LATENCY, &latency, 0, NULL) == 0);
2506 else
2507 latency = s->thread_info.fixed_latency;
2508
2509 return latency;
2510 }
2511
2512 /* Called from IO thread */
2513 void pa_source_set_fixed_latency_within_thread(pa_source *s, pa_usec_t latency) {
2514 pa_source_assert_ref(s);
2515 pa_source_assert_io_context(s);
2516
2517 if (s->flags & PA_SOURCE_DYNAMIC_LATENCY) {
2518 pa_assert(latency == 0);
2519 s->thread_info.fixed_latency = 0;
2520
2521 return;
2522 }
2523
2524 pa_assert(latency >= ABSOLUTE_MIN_LATENCY);
2525 pa_assert(latency <= ABSOLUTE_MAX_LATENCY);
2526
2527 if (s->thread_info.fixed_latency == latency)
2528 return;
2529
2530 s->thread_info.fixed_latency = latency;
2531
2532 if (PA_SOURCE_IS_LINKED(s->thread_info.state)) {
2533 pa_source_output *o;
2534 void *state = NULL;
2535
2536 PA_HASHMAP_FOREACH(o, s->thread_info.outputs, state)
2537 if (o->update_source_fixed_latency)
2538 o->update_source_fixed_latency(o);
2539 }
2540
2541 pa_source_invalidate_requested_latency(s, false);
2542 }
2543
2544 /* Called from main thread */
2545 void pa_source_set_latency_offset(pa_source *s, int64_t offset) {
2546 pa_source_assert_ref(s);
2547
2548 s->latency_offset = offset;
2549
2550 if (PA_SOURCE_IS_LINKED(s->state))
2551 pa_assert_se(pa_asyncmsgq_send(s->asyncmsgq, PA_MSGOBJECT(s), PA_SOURCE_MESSAGE_SET_LATENCY_OFFSET, NULL, offset, NULL) == 0);
2552 else
2553 s->thread_info.latency_offset = offset;
2554 }
2555
2556 /* Called from main thread */
2557 size_t pa_source_get_max_rewind(pa_source *s) {
2558 size_t r;
2559 pa_assert_ctl_context();
2560 pa_source_assert_ref(s);
2561
2562 if (!PA_SOURCE_IS_LINKED(s->state))
2563 return s->thread_info.max_rewind;
2564
2565 pa_assert_se(pa_asyncmsgq_send(s->asyncmsgq, PA_MSGOBJECT(s), PA_SOURCE_MESSAGE_GET_MAX_REWIND, &r, 0, NULL) == 0);
2566
2567 return r;
2568 }
2569
2570 /* Called from main context */
2571 int pa_source_set_port(pa_source *s, const char *name, bool save) {
2572 pa_device_port *port;
2573 int ret;
2574
2575 pa_source_assert_ref(s);
2576 pa_assert_ctl_context();
2577
2578 if (!s->set_port) {
2579 pa_log_debug("set_port() operation not implemented for source %u \"%s\"", s->index, s->name);
2580 return -PA_ERR_NOTIMPLEMENTED;
2581 }
2582
2583 if (!name)
2584 return -PA_ERR_NOENTITY;
2585
2586 if (!(port = pa_hashmap_get(s->ports, name)))
2587 return -PA_ERR_NOENTITY;
2588
2589 if (s->active_port == port) {
2590 s->save_port = s->save_port || save;
2591 return 0;
2592 }
2593
2594 if (s->flags & PA_SOURCE_DEFERRED_VOLUME) {
2595 struct source_message_set_port msg = { .port = port, .ret = 0 };
2596 pa_assert_se(pa_asyncmsgq_send(s->asyncmsgq, PA_MSGOBJECT(s), PA_SOURCE_MESSAGE_SET_PORT, &msg, 0, NULL) == 0);
2597 ret = msg.ret;
2598 }
2599 else
2600 ret = s->set_port(s, port);
2601
2602 if (ret < 0)
2603 return -PA_ERR_NOENTITY;
2604
2605 pa_subscription_post(s->core, PA_SUBSCRIPTION_EVENT_SOURCE|PA_SUBSCRIPTION_EVENT_CHANGE, s->index);
2606
2607 pa_log_info("Changed port of source %u \"%s\" to %s", s->index, s->name, port->name);
2608
2609 s->active_port = port;
2610 s->save_port = save;
2611
2612 pa_hook_fire(&s->core->hooks[PA_CORE_HOOK_SOURCE_PORT_CHANGED], s);
2613
2614 return 0;
2615 }
2616
2617 PA_STATIC_FLIST_DECLARE(pa_source_volume_change, 0, pa_xfree);
2618
2619 /* Called from the IO thread. */
2620 static pa_source_volume_change *pa_source_volume_change_new(pa_source *s) {
2621 pa_source_volume_change *c;
2622 if (!(c = pa_flist_pop(PA_STATIC_FLIST_GET(pa_source_volume_change))))
2623 c = pa_xnew(pa_source_volume_change, 1);
2624
2625 PA_LLIST_INIT(pa_source_volume_change, c);
2626 c->at = 0;
2627 pa_cvolume_reset(&c->hw_volume, s->sample_spec.channels);
2628 return c;
2629 }
2630
2631 /* Called from the IO thread. */
2632 static void pa_source_volume_change_free(pa_source_volume_change *c) {
2633 pa_assert(c);
2634 if (pa_flist_push(PA_STATIC_FLIST_GET(pa_source_volume_change), c) < 0)
2635 pa_xfree(c);
2636 }
2637
2638 /* Called from the IO thread. */
2639 void pa_source_volume_change_push(pa_source *s) {
2640 pa_source_volume_change *c = NULL;
2641 pa_source_volume_change *nc = NULL;
2642 uint32_t safety_margin = s->thread_info.volume_change_safety_margin;
2643
2644 const char *direction = NULL;
2645
2646 pa_assert(s);
2647 nc = pa_source_volume_change_new(s);
2648
2649 /* NOTE: There is already more different volumes in pa_source that I can remember.
2650 * Adding one more volume for HW would get us rid of this, but I am trying
2651 * to survive with the ones we already have. */
2652 pa_sw_cvolume_divide(&nc->hw_volume, &s->real_volume, &s->soft_volume);
2653
2654 if (!s->thread_info.volume_changes && pa_cvolume_equal(&nc->hw_volume, &s->thread_info.current_hw_volume)) {
2655 pa_log_debug("Volume not changing");
2656 pa_source_volume_change_free(nc);
2657 return;
2658 }
2659
2660 nc->at = pa_source_get_latency_within_thread(s);
2661 nc->at += pa_rtclock_now() + s->thread_info.volume_change_extra_delay;
2662
2663 if (s->thread_info.volume_changes_tail) {
2664 for (c = s->thread_info.volume_changes_tail; c; c = c->prev) {
2665 /* If volume is going up let's do it a bit late. If it is going
2666 * down let's do it a bit early. */
2667 if (pa_cvolume_avg(&nc->hw_volume) > pa_cvolume_avg(&c->hw_volume)) {
2668 if (nc->at + safety_margin > c->at) {
2669 nc->at += safety_margin;
2670 direction = "up";
2671 break;
2672 }
2673 }
2674 else if (nc->at - safety_margin > c->at) {
2675 nc->at -= safety_margin;
2676 direction = "down";
2677 break;
2678 }
2679 }
2680 }
2681
2682 if (c == NULL) {
2683 if (pa_cvolume_avg(&nc->hw_volume) > pa_cvolume_avg(&s->thread_info.current_hw_volume)) {
2684 nc->at += safety_margin;
2685 direction = "up";
2686 } else {
2687 nc->at -= safety_margin;
2688 direction = "down";
2689 }
2690 PA_LLIST_PREPEND(pa_source_volume_change, s->thread_info.volume_changes, nc);
2691 }
2692 else {
2693 PA_LLIST_INSERT_AFTER(pa_source_volume_change, s->thread_info.volume_changes, c, nc);
2694 }
2695
2696 pa_log_debug("Volume going %s to %d at %llu", direction, pa_cvolume_avg(&nc->hw_volume), (long long unsigned) nc->at);
2697
2698 /* We can ignore volume events that came earlier but should happen later than this. */
2699 PA_LLIST_FOREACH(c, nc->next) {
2700 pa_log_debug("Volume change to %d at %llu was dropped", pa_cvolume_avg(&c->hw_volume), (long long unsigned) c->at);
2701 pa_source_volume_change_free(c);
2702 }
2703 nc->next = NULL;
2704 s->thread_info.volume_changes_tail = nc;
2705 }
2706
2707 /* Called from the IO thread. */
2708 static void pa_source_volume_change_flush(pa_source *s) {
2709 pa_source_volume_change *c = s->thread_info.volume_changes;
2710 pa_assert(s);
2711 s->thread_info.volume_changes = NULL;
2712 s->thread_info.volume_changes_tail = NULL;
2713 while (c) {
2714 pa_source_volume_change *next = c->next;
2715 pa_source_volume_change_free(c);
2716 c = next;
2717 }
2718 }
2719
2720 /* Called from the IO thread. */
2721 bool pa_source_volume_change_apply(pa_source *s, pa_usec_t *usec_to_next) {
2722 pa_usec_t now;
2723 bool ret = false;
2724
2725 pa_assert(s);
2726
2727 if (!s->thread_info.volume_changes || !PA_SOURCE_IS_LINKED(s->state)) {
2728 if (usec_to_next)
2729 *usec_to_next = 0;
2730 return ret;
2731 }
2732
2733 pa_assert(s->write_volume);
2734
2735 now = pa_rtclock_now();
2736
2737 while (s->thread_info.volume_changes && now >= s->thread_info.volume_changes->at) {
2738 pa_source_volume_change *c = s->thread_info.volume_changes;
2739 PA_LLIST_REMOVE(pa_source_volume_change, s->thread_info.volume_changes, c);
2740 pa_log_debug("Volume change to %d at %llu was written %llu usec late",
2741 pa_cvolume_avg(&c->hw_volume), (long long unsigned) c->at, (long long unsigned) (now - c->at));
2742 ret = true;
2743 s->thread_info.current_hw_volume = c->hw_volume;
2744 pa_source_volume_change_free(c);
2745 }
2746
2747 if (ret)
2748 s->write_volume(s);
2749
2750 if (s->thread_info.volume_changes) {
2751 if (usec_to_next)
2752 *usec_to_next = s->thread_info.volume_changes->at - now;
2753 if (pa_log_ratelimit(PA_LOG_DEBUG))
2754 pa_log_debug("Next volume change in %lld usec", (long long) (s->thread_info.volume_changes->at - now));
2755 }
2756 else {
2757 if (usec_to_next)
2758 *usec_to_next = 0;
2759 s->thread_info.volume_changes_tail = NULL;
2760 }
2761 return ret;
2762 }
2763
2764 /* Called from the main thread */
2765 /* Gets the list of formats supported by the source. The members and idxset must
2766 * be freed by the caller. */
2767 pa_idxset* pa_source_get_formats(pa_source *s) {
2768 pa_idxset *ret;
2769
2770 pa_assert(s);
2771
2772 if (s->get_formats) {
2773 /* Source supports format query, all is good */
2774 ret = s->get_formats(s);
2775 } else {
2776 /* Source doesn't support format query, so assume it does PCM */
2777 pa_format_info *f = pa_format_info_new();
2778 f->encoding = PA_ENCODING_PCM;
2779
2780 ret = pa_idxset_new(NULL, NULL);
2781 pa_idxset_put(ret, f, NULL);
2782 }
2783
2784 return ret;
2785 }
2786
2787 /* Called from the main thread */
2788 /* Checks if the source can accept this format */
2789 bool pa_source_check_format(pa_source *s, pa_format_info *f) {
2790 pa_idxset *formats = NULL;
2791 bool ret = false;
2792
2793 pa_assert(s);
2794 pa_assert(f);
2795
2796 formats = pa_source_get_formats(s);
2797
2798 if (formats) {
2799 pa_format_info *finfo_device;
2800 uint32_t i;
2801
2802 PA_IDXSET_FOREACH(finfo_device, formats, i) {
2803 if (pa_format_info_is_compatible(finfo_device, f)) {
2804 ret = true;
2805 break;
2806 }
2807 }
2808
2809 pa_idxset_free(formats, (pa_free_cb_t) pa_format_info_free);
2810 }
2811
2812 return ret;
2813 }
2814
2815 /* Called from the main thread */
2816 /* Calculates the intersection between formats supported by the source and
2817 * in_formats, and returns these, in the order of the source's formats. */
2818 pa_idxset* pa_source_check_formats(pa_source *s, pa_idxset *in_formats) {
2819 pa_idxset *out_formats = pa_idxset_new(NULL, NULL), *source_formats = NULL;
2820 pa_format_info *f_source, *f_in;
2821 uint32_t i, j;
2822
2823 pa_assert(s);
2824
2825 if (!in_formats || pa_idxset_isempty(in_formats))
2826 goto done;
2827
2828 source_formats = pa_source_get_formats(s);
2829
2830 PA_IDXSET_FOREACH(f_source, source_formats, i) {
2831 PA_IDXSET_FOREACH(f_in, in_formats, j) {
2832 if (pa_format_info_is_compatible(f_source, f_in))
2833 pa_idxset_put(out_formats, pa_format_info_copy(f_in), NULL);
2834 }
2835 }
2836
2837 done:
2838 if (source_formats)
2839 pa_idxset_free(source_formats, (pa_free_cb_t) pa_format_info_free);
2840
2841 return out_formats;
2842 }
2843
2844 /* Called from the main thread. */
2845 void pa_source_set_reference_volume_direct(pa_source *s, const pa_cvolume *volume) {
2846 pa_cvolume old_volume;
2847 char old_volume_str[PA_CVOLUME_SNPRINT_VERBOSE_MAX];
2848 char new_volume_str[PA_CVOLUME_SNPRINT_VERBOSE_MAX];
2849
2850 pa_assert(s);
2851 pa_assert(volume);
2852
2853 old_volume = s->reference_volume;
2854
2855 if (pa_cvolume_equal(volume, &old_volume))
2856 return;
2857
2858 s->reference_volume = *volume;
2859 pa_log_debug("The reference volume of source %s changed from %s to %s.", s->name,
2860 pa_cvolume_snprint_verbose(old_volume_str, sizeof(old_volume_str), &old_volume, &s->channel_map,
2861 s->flags & PA_SOURCE_DECIBEL_VOLUME),
2862 pa_cvolume_snprint_verbose(new_volume_str, sizeof(new_volume_str), volume, &s->channel_map,
2863 s->flags & PA_SOURCE_DECIBEL_VOLUME));
2864
2865 pa_subscription_post(s->core, PA_SUBSCRIPTION_EVENT_SOURCE|PA_SUBSCRIPTION_EVENT_CHANGE, s->index);
2866 }