1 /*
2 **
3 ** Copyright 2012, The Android Open Source Project
4 **
5 ** Licensed under the Apache License, Version 2.0 (the "License");
6 ** you may not use this file except in compliance with the License.
7 ** You may obtain a copy of the License at
8 **
9 ** http://www.apache.org/licenses/LICENSE-2.0
10 **
11 ** Unless required by applicable law or agreed to in writing, software
12 ** distributed under the License is distributed on an "AS IS" BASIS,
13 ** WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
14 ** See the License for the specific language governing permissions and
15 ** limitations under the License.
16 */
17
18
19 #define LOG_TAG "AudioFlinger"
20 //#define LOG_NDEBUG 0
21
22 #include "Configuration.h"
23 #include <utils/Log.h>
24 #include <audio_effects/effect_visualizer.h>
25 #include <audio_utils/primitives.h>
26 #include <private/media/AudioEffectShared.h>
27 #include <media/EffectsFactoryApi.h>
28
29 #include "AudioFlinger.h"
30 #include "ServiceUtilities.h"
31
32 // ----------------------------------------------------------------------------
33
34 // Note: the following macro is used for extremely verbose logging message. In
35 // order to run with ALOG_ASSERT turned on, we need to have LOG_NDEBUG set to
36 // 0; but one side effect of this is to turn all LOGV's as well. Some messages
37 // are so verbose that we want to suppress them even when we have ALOG_ASSERT
38 // turned on. Do not uncomment the #def below unless you really know what you
39 // are doing and want to see all of the extremely verbose messages.
40 //#define VERY_VERY_VERBOSE_LOGGING
41 #ifdef VERY_VERY_VERBOSE_LOGGING
42 #define ALOGVV ALOGV
43 #else
44 #define ALOGVV(a...) do { } while(0)
45 #endif
46
47 #define min(a, b) ((a) < (b) ? (a) : (b))
48
49 namespace android {
50
51 // ----------------------------------------------------------------------------
52 // EffectModule implementation
53 // ----------------------------------------------------------------------------
54
55 #undef LOG_TAG
56 #define LOG_TAG "AudioFlinger::EffectModule"
57
EffectModule(ThreadBase * thread,const wp<AudioFlinger::EffectChain> & chain,effect_descriptor_t * desc,int id,audio_session_t sessionId)58 AudioFlinger::EffectModule::EffectModule(ThreadBase *thread,
59 const wp<AudioFlinger::EffectChain>& chain,
60 effect_descriptor_t *desc,
61 int id,
62 audio_session_t sessionId)
63 : mPinned(sessionId > AUDIO_SESSION_OUTPUT_MIX),
64 mThread(thread), mChain(chain), mId(id), mSessionId(sessionId),
65 mDescriptor(*desc),
66 // mConfig is set by configure() and not used before then
67 mEffectInterface(NULL),
68 mStatus(NO_INIT), mState(IDLE),
69 // mMaxDisableWaitCnt is set by configure() and not used before then
70 // mDisableWaitCnt is set by process() and updateState() and not used before then
71 mSuspended(false),
72 mAudioFlinger(thread->mAudioFlinger)
73 {
74 ALOGV("Constructor %p", this);
75 int lStatus;
76
77 // create effect engine from effect factory
78 mStatus = EffectCreate(&desc->uuid, sessionId, thread->id(), &mEffectInterface);
79
80 if (mStatus != NO_ERROR) {
81 return;
82 }
83 lStatus = init();
84 if (lStatus < 0) {
85 mStatus = lStatus;
86 goto Error;
87 }
88
89 ALOGV("Constructor success name %s, Interface %p", mDescriptor.name, mEffectInterface);
90 return;
91 Error:
92 EffectRelease(mEffectInterface);
93 mEffectInterface = NULL;
94 ALOGV("Constructor Error %d", mStatus);
95 }
96
~EffectModule()97 AudioFlinger::EffectModule::~EffectModule()
98 {
99 ALOGV("Destructor %p", this);
100 if (mEffectInterface != NULL) {
101 remove_effect_from_hal_l();
102 // release effect engine
103 EffectRelease(mEffectInterface);
104 }
105 }
106
addHandle(EffectHandle * handle)107 status_t AudioFlinger::EffectModule::addHandle(EffectHandle *handle)
108 {
109 status_t status;
110
111 Mutex::Autolock _l(mLock);
112 int priority = handle->priority();
113 size_t size = mHandles.size();
114 EffectHandle *controlHandle = NULL;
115 size_t i;
116 for (i = 0; i < size; i++) {
117 EffectHandle *h = mHandles[i];
118 if (h == NULL || h->destroyed_l()) {
119 continue;
120 }
121 // first non destroyed handle is considered in control
122 if (controlHandle == NULL) {
123 controlHandle = h;
124 }
125 if (h->priority() <= priority) {
126 break;
127 }
128 }
129 // if inserted in first place, move effect control from previous owner to this handle
130 if (i == 0) {
131 bool enabled = false;
132 if (controlHandle != NULL) {
133 enabled = controlHandle->enabled();
134 controlHandle->setControl(false/*hasControl*/, true /*signal*/, enabled /*enabled*/);
135 }
136 handle->setControl(true /*hasControl*/, false /*signal*/, enabled /*enabled*/);
137 status = NO_ERROR;
138 } else {
139 status = ALREADY_EXISTS;
140 }
141 ALOGV("addHandle() %p added handle %p in position %zu", this, handle, i);
142 mHandles.insertAt(handle, i);
143 return status;
144 }
145
removeHandle(EffectHandle * handle)146 size_t AudioFlinger::EffectModule::removeHandle(EffectHandle *handle)
147 {
148 Mutex::Autolock _l(mLock);
149 size_t size = mHandles.size();
150 size_t i;
151 for (i = 0; i < size; i++) {
152 if (mHandles[i] == handle) {
153 break;
154 }
155 }
156 if (i == size) {
157 return size;
158 }
159 ALOGV("removeHandle() %p removed handle %p in position %zu", this, handle, i);
160
161 mHandles.removeAt(i);
162 // if removed from first place, move effect control from this handle to next in line
163 if (i == 0) {
164 EffectHandle *h = controlHandle_l();
165 if (h != NULL) {
166 h->setControl(true /*hasControl*/, true /*signal*/ , handle->enabled() /*enabled*/);
167 }
168 }
169
170 // Prevent calls to process() and other functions on effect interface from now on.
171 // The effect engine will be released by the destructor when the last strong reference on
172 // this object is released which can happen after next process is called.
173 if (mHandles.size() == 0 && !mPinned) {
174 mState = DESTROYED;
175 }
176
177 return mHandles.size();
178 }
179
180 // must be called with EffectModule::mLock held
controlHandle_l()181 AudioFlinger::EffectHandle *AudioFlinger::EffectModule::controlHandle_l()
182 {
183 // the first valid handle in the list has control over the module
184 for (size_t i = 0; i < mHandles.size(); i++) {
185 EffectHandle *h = mHandles[i];
186 if (h != NULL && !h->destroyed_l()) {
187 return h;
188 }
189 }
190
191 return NULL;
192 }
193
disconnect(EffectHandle * handle,bool unpinIfLast)194 size_t AudioFlinger::EffectModule::disconnect(EffectHandle *handle, bool unpinIfLast)
195 {
196 ALOGV("disconnect() %p handle %p", this, handle);
197 // keep a strong reference on this EffectModule to avoid calling the
198 // destructor before we exit
199 sp<EffectModule> keep(this);
200 {
201 if (removeHandle(handle) == 0) {
202 if (!isPinned() || unpinIfLast) {
203 sp<ThreadBase> thread = mThread.promote();
204 if (thread != 0) {
205 Mutex::Autolock _l(thread->mLock);
206 thread->removeEffect_l(this);
207 }
208 sp<AudioFlinger> af = mAudioFlinger.promote();
209 if (af != 0) {
210 af->updateOrphanEffectChains(this);
211 }
212 AudioSystem::unregisterEffect(mId);
213 }
214 }
215 }
216 return mHandles.size();
217 }
218
updateState()219 bool AudioFlinger::EffectModule::updateState() {
220 Mutex::Autolock _l(mLock);
221
222 bool started = false;
223 switch (mState) {
224 case RESTART:
225 reset_l();
226 // FALL THROUGH
227
228 case STARTING:
229 // clear auxiliary effect input buffer for next accumulation
230 if ((mDescriptor.flags & EFFECT_FLAG_TYPE_MASK) == EFFECT_FLAG_TYPE_AUXILIARY) {
231 memset(mConfig.inputCfg.buffer.raw,
232 0,
233 mConfig.inputCfg.buffer.frameCount*sizeof(int32_t));
234 }
235 if (start_l() == NO_ERROR) {
236 mState = ACTIVE;
237 started = true;
238 } else {
239 mState = IDLE;
240 }
241 break;
242 case STOPPING:
243 if (stop_l() == NO_ERROR) {
244 mDisableWaitCnt = mMaxDisableWaitCnt;
245 } else {
246 mDisableWaitCnt = 1; // will cause immediate transition to IDLE
247 }
248 mState = STOPPED;
249 break;
250 case STOPPED:
251 // mDisableWaitCnt is forced to 1 by process() when the engine indicates the end of the
252 // turn off sequence.
253 if (--mDisableWaitCnt == 0) {
254 reset_l();
255 mState = IDLE;
256 }
257 break;
258 default: //IDLE , ACTIVE, DESTROYED
259 break;
260 }
261
262 return started;
263 }
264
process()265 void AudioFlinger::EffectModule::process()
266 {
267 Mutex::Autolock _l(mLock);
268
269 if (mState == DESTROYED || mEffectInterface == NULL ||
270 mConfig.inputCfg.buffer.raw == NULL ||
271 mConfig.outputCfg.buffer.raw == NULL) {
272 return;
273 }
274
275 if (isProcessEnabled()) {
276 // do 32 bit to 16 bit conversion for auxiliary effect input buffer
277 if ((mDescriptor.flags & EFFECT_FLAG_TYPE_MASK) == EFFECT_FLAG_TYPE_AUXILIARY) {
278 ditherAndClamp(mConfig.inputCfg.buffer.s32,
279 mConfig.inputCfg.buffer.s32,
280 mConfig.inputCfg.buffer.frameCount/2);
281 }
282
283 // do the actual processing in the effect engine
284 int ret = (*mEffectInterface)->process(mEffectInterface,
285 &mConfig.inputCfg.buffer,
286 &mConfig.outputCfg.buffer);
287
288 // force transition to IDLE state when engine is ready
289 if (mState == STOPPED && ret == -ENODATA) {
290 mDisableWaitCnt = 1;
291 }
292
293 // clear auxiliary effect input buffer for next accumulation
294 if ((mDescriptor.flags & EFFECT_FLAG_TYPE_MASK) == EFFECT_FLAG_TYPE_AUXILIARY) {
295 memset(mConfig.inputCfg.buffer.raw, 0,
296 mConfig.inputCfg.buffer.frameCount*sizeof(int32_t));
297 }
298 } else if ((mDescriptor.flags & EFFECT_FLAG_TYPE_MASK) == EFFECT_FLAG_TYPE_INSERT &&
299 mConfig.inputCfg.buffer.raw != mConfig.outputCfg.buffer.raw) {
300 // If an insert effect is idle and input buffer is different from output buffer,
301 // accumulate input onto output
302 sp<EffectChain> chain = mChain.promote();
303 if (chain != 0 && chain->activeTrackCnt() != 0) {
304 size_t frameCnt = mConfig.inputCfg.buffer.frameCount * 2; //always stereo here
305 int16_t *in = mConfig.inputCfg.buffer.s16;
306 int16_t *out = mConfig.outputCfg.buffer.s16;
307 for (size_t i = 0; i < frameCnt; i++) {
308 out[i] = clamp16((int32_t)out[i] + (int32_t)in[i]);
309 }
310 }
311 }
312 }
313
reset_l()314 void AudioFlinger::EffectModule::reset_l()
315 {
316 if (mStatus != NO_ERROR || mEffectInterface == NULL) {
317 return;
318 }
319 (*mEffectInterface)->command(mEffectInterface, EFFECT_CMD_RESET, 0, NULL, 0, NULL);
320 }
321
configure()322 status_t AudioFlinger::EffectModule::configure()
323 {
324 status_t status;
325 sp<ThreadBase> thread;
326 uint32_t size;
327 audio_channel_mask_t channelMask;
328
329 if (mEffectInterface == NULL) {
330 status = NO_INIT;
331 goto exit;
332 }
333
334 thread = mThread.promote();
335 if (thread == 0) {
336 status = DEAD_OBJECT;
337 goto exit;
338 }
339
340 // TODO: handle configuration of effects replacing track process
341 channelMask = thread->channelMask();
342 mConfig.outputCfg.channels = channelMask;
343
344 if ((mDescriptor.flags & EFFECT_FLAG_TYPE_MASK) == EFFECT_FLAG_TYPE_AUXILIARY) {
345 mConfig.inputCfg.channels = AUDIO_CHANNEL_OUT_MONO;
346 } else {
347 mConfig.inputCfg.channels = channelMask;
348 // TODO: Update this logic when multichannel effects are implemented.
349 // For offloaded tracks consider mono output as stereo for proper effect initialization
350 if (channelMask == AUDIO_CHANNEL_OUT_MONO) {
351 mConfig.inputCfg.channels = AUDIO_CHANNEL_OUT_STEREO;
352 mConfig.outputCfg.channels = AUDIO_CHANNEL_OUT_STEREO;
353 ALOGV("Overriding effect input and output as STEREO");
354 }
355 }
356
357 mConfig.inputCfg.format = AUDIO_FORMAT_PCM_16_BIT;
358 mConfig.outputCfg.format = AUDIO_FORMAT_PCM_16_BIT;
359 mConfig.inputCfg.samplingRate = thread->sampleRate();
360 mConfig.outputCfg.samplingRate = mConfig.inputCfg.samplingRate;
361 mConfig.inputCfg.bufferProvider.cookie = NULL;
362 mConfig.inputCfg.bufferProvider.getBuffer = NULL;
363 mConfig.inputCfg.bufferProvider.releaseBuffer = NULL;
364 mConfig.outputCfg.bufferProvider.cookie = NULL;
365 mConfig.outputCfg.bufferProvider.getBuffer = NULL;
366 mConfig.outputCfg.bufferProvider.releaseBuffer = NULL;
367 mConfig.inputCfg.accessMode = EFFECT_BUFFER_ACCESS_READ;
368 // Insert effect:
369 // - in session AUDIO_SESSION_OUTPUT_MIX or AUDIO_SESSION_OUTPUT_STAGE,
370 // always overwrites output buffer: input buffer == output buffer
371 // - in other sessions:
372 // last effect in the chain accumulates in output buffer: input buffer != output buffer
373 // other effect: overwrites output buffer: input buffer == output buffer
374 // Auxiliary effect:
375 // accumulates in output buffer: input buffer != output buffer
376 // Therefore: accumulate <=> input buffer != output buffer
377 if (mConfig.inputCfg.buffer.raw != mConfig.outputCfg.buffer.raw) {
378 mConfig.outputCfg.accessMode = EFFECT_BUFFER_ACCESS_ACCUMULATE;
379 } else {
380 mConfig.outputCfg.accessMode = EFFECT_BUFFER_ACCESS_WRITE;
381 }
382 mConfig.inputCfg.mask = EFFECT_CONFIG_ALL;
383 mConfig.outputCfg.mask = EFFECT_CONFIG_ALL;
384 mConfig.inputCfg.buffer.frameCount = thread->frameCount();
385 mConfig.outputCfg.buffer.frameCount = mConfig.inputCfg.buffer.frameCount;
386
387 ALOGV("configure() %p thread %p buffer %p framecount %zu",
388 this, thread.get(), mConfig.inputCfg.buffer.raw, mConfig.inputCfg.buffer.frameCount);
389
390 status_t cmdStatus;
391 size = sizeof(int);
392 status = (*mEffectInterface)->command(mEffectInterface,
393 EFFECT_CMD_SET_CONFIG,
394 sizeof(effect_config_t),
395 &mConfig,
396 &size,
397 &cmdStatus);
398 if (status == 0) {
399 status = cmdStatus;
400 }
401
402 if (status == 0 &&
403 (memcmp(&mDescriptor.type, SL_IID_VISUALIZATION, sizeof(effect_uuid_t)) == 0)) {
404 uint32_t buf32[sizeof(effect_param_t) / sizeof(uint32_t) + 2];
405 effect_param_t *p = (effect_param_t *)buf32;
406
407 p->psize = sizeof(uint32_t);
408 p->vsize = sizeof(uint32_t);
409 size = sizeof(int);
410 *(int32_t *)p->data = VISUALIZER_PARAM_LATENCY;
411
412 uint32_t latency = 0;
413 PlaybackThread *pbt = thread->mAudioFlinger->checkPlaybackThread_l(thread->mId);
414 if (pbt != NULL) {
415 latency = pbt->latency_l();
416 }
417
418 *((int32_t *)p->data + 1)= latency;
419 (*mEffectInterface)->command(mEffectInterface,
420 EFFECT_CMD_SET_PARAM,
421 sizeof(effect_param_t) + 8,
422 &buf32,
423 &size,
424 &cmdStatus);
425 }
426
427 mMaxDisableWaitCnt = (MAX_DISABLE_TIME_MS * mConfig.outputCfg.samplingRate) /
428 (1000 * mConfig.outputCfg.buffer.frameCount);
429
430 exit:
431 mStatus = status;
432 return status;
433 }
434
init()435 status_t AudioFlinger::EffectModule::init()
436 {
437 Mutex::Autolock _l(mLock);
438 if (mEffectInterface == NULL) {
439 return NO_INIT;
440 }
441 status_t cmdStatus;
442 uint32_t size = sizeof(status_t);
443 status_t status = (*mEffectInterface)->command(mEffectInterface,
444 EFFECT_CMD_INIT,
445 0,
446 NULL,
447 &size,
448 &cmdStatus);
449 if (status == 0) {
450 status = cmdStatus;
451 }
452 return status;
453 }
454
addEffectToHal_l()455 void AudioFlinger::EffectModule::addEffectToHal_l()
456 {
457 if ((mDescriptor.flags & EFFECT_FLAG_TYPE_MASK) == EFFECT_FLAG_TYPE_PRE_PROC ||
458 (mDescriptor.flags & EFFECT_FLAG_TYPE_MASK) == EFFECT_FLAG_TYPE_POST_PROC) {
459 sp<ThreadBase> thread = mThread.promote();
460 if (thread != 0) {
461 audio_stream_t *stream = thread->stream();
462 if (stream != NULL) {
463 stream->add_audio_effect(stream, mEffectInterface);
464 }
465 }
466 }
467 }
468
469 // start() must be called with PlaybackThread::mLock or EffectChain::mLock held
start()470 status_t AudioFlinger::EffectModule::start()
471 {
472 sp<EffectChain> chain;
473 status_t status;
474 {
475 Mutex::Autolock _l(mLock);
476 status = start_l();
477 if (status == NO_ERROR) {
478 chain = mChain.promote();
479 }
480 }
481 if (chain != 0) {
482 chain->resetVolume_l();
483 }
484 return status;
485 }
486
start_l()487 status_t AudioFlinger::EffectModule::start_l()
488 {
489 if (mEffectInterface == NULL) {
490 return NO_INIT;
491 }
492 if (mStatus != NO_ERROR) {
493 return mStatus;
494 }
495 status_t cmdStatus;
496 uint32_t size = sizeof(status_t);
497 status_t status = (*mEffectInterface)->command(mEffectInterface,
498 EFFECT_CMD_ENABLE,
499 0,
500 NULL,
501 &size,
502 &cmdStatus);
503 if (status == 0) {
504 status = cmdStatus;
505 }
506 if (status == 0) {
507 addEffectToHal_l();
508 }
509 return status;
510 }
511
stop()512 status_t AudioFlinger::EffectModule::stop()
513 {
514 Mutex::Autolock _l(mLock);
515 return stop_l();
516 }
517
stop_l()518 status_t AudioFlinger::EffectModule::stop_l()
519 {
520 if (mEffectInterface == NULL) {
521 return NO_INIT;
522 }
523 if (mStatus != NO_ERROR) {
524 return mStatus;
525 }
526 status_t cmdStatus = NO_ERROR;
527 uint32_t size = sizeof(status_t);
528 status_t status = (*mEffectInterface)->command(mEffectInterface,
529 EFFECT_CMD_DISABLE,
530 0,
531 NULL,
532 &size,
533 &cmdStatus);
534 if (status == NO_ERROR) {
535 status = cmdStatus;
536 }
537 if (status == NO_ERROR) {
538 status = remove_effect_from_hal_l();
539 }
540 return status;
541 }
542
remove_effect_from_hal_l()543 status_t AudioFlinger::EffectModule::remove_effect_from_hal_l()
544 {
545 if ((mDescriptor.flags & EFFECT_FLAG_TYPE_MASK) == EFFECT_FLAG_TYPE_PRE_PROC ||
546 (mDescriptor.flags & EFFECT_FLAG_TYPE_MASK) == EFFECT_FLAG_TYPE_POST_PROC) {
547 sp<ThreadBase> thread = mThread.promote();
548 if (thread != 0) {
549 audio_stream_t *stream = thread->stream();
550 if (stream != NULL) {
551 stream->remove_audio_effect(stream, mEffectInterface);
552 }
553 }
554 }
555 return NO_ERROR;
556 }
557
558 // round up delta valid if value and divisor are positive.
559 template <typename T>
roundUpDelta(const T & value,const T & divisor)560 static T roundUpDelta(const T &value, const T &divisor) {
561 T remainder = value % divisor;
562 return remainder == 0 ? 0 : divisor - remainder;
563 }
564
command(uint32_t cmdCode,uint32_t cmdSize,void * pCmdData,uint32_t * replySize,void * pReplyData)565 status_t AudioFlinger::EffectModule::command(uint32_t cmdCode,
566 uint32_t cmdSize,
567 void *pCmdData,
568 uint32_t *replySize,
569 void *pReplyData)
570 {
571 Mutex::Autolock _l(mLock);
572 ALOGVV("command(), cmdCode: %d, mEffectInterface: %p", cmdCode, mEffectInterface);
573
574 if (mState == DESTROYED || mEffectInterface == NULL) {
575 return NO_INIT;
576 }
577 if (mStatus != NO_ERROR) {
578 return mStatus;
579 }
580 if (cmdCode == EFFECT_CMD_GET_PARAM &&
581 (*replySize < sizeof(effect_param_t) ||
582 ((effect_param_t *)pCmdData)->psize > *replySize - sizeof(effect_param_t))) {
583 android_errorWriteLog(0x534e4554, "29251553");
584 return -EINVAL;
585 }
586 if ((cmdCode == EFFECT_CMD_SET_PARAM
587 || cmdCode == EFFECT_CMD_SET_PARAM_DEFERRED) && // DEFERRED not generally used
588 (sizeof(effect_param_t) > cmdSize
589 || ((effect_param_t *)pCmdData)->psize > cmdSize
590 - sizeof(effect_param_t)
591 || ((effect_param_t *)pCmdData)->vsize > cmdSize
592 - sizeof(effect_param_t)
593 - ((effect_param_t *)pCmdData)->psize
594 || roundUpDelta(((effect_param_t *)pCmdData)->psize, (uint32_t)sizeof(int)) >
595 cmdSize
596 - sizeof(effect_param_t)
597 - ((effect_param_t *)pCmdData)->psize
598 - ((effect_param_t *)pCmdData)->vsize)) {
599 android_errorWriteLog(0x534e4554, "30204301");
600 return -EINVAL;
601 }
602 status_t status = (*mEffectInterface)->command(mEffectInterface,
603 cmdCode,
604 cmdSize,
605 pCmdData,
606 replySize,
607 pReplyData);
608 if (cmdCode != EFFECT_CMD_GET_PARAM && status == NO_ERROR) {
609 uint32_t size = (replySize == NULL) ? 0 : *replySize;
610 for (size_t i = 1; i < mHandles.size(); i++) {
611 EffectHandle *h = mHandles[i];
612 if (h != NULL && !h->destroyed_l()) {
613 h->commandExecuted(cmdCode, cmdSize, pCmdData, size, pReplyData);
614 }
615 }
616 }
617 return status;
618 }
619
setEnabled(bool enabled)620 status_t AudioFlinger::EffectModule::setEnabled(bool enabled)
621 {
622 Mutex::Autolock _l(mLock);
623 return setEnabled_l(enabled);
624 }
625
626 // must be called with EffectModule::mLock held
setEnabled_l(bool enabled)627 status_t AudioFlinger::EffectModule::setEnabled_l(bool enabled)
628 {
629
630 ALOGV("setEnabled %p enabled %d", this, enabled);
631
632 if (enabled != isEnabled()) {
633 status_t status = AudioSystem::setEffectEnabled(mId, enabled);
634 if (enabled && status != NO_ERROR) {
635 return status;
636 }
637
638 switch (mState) {
639 // going from disabled to enabled
640 case IDLE:
641 mState = STARTING;
642 break;
643 case STOPPED:
644 mState = RESTART;
645 break;
646 case STOPPING:
647 mState = ACTIVE;
648 break;
649
650 // going from enabled to disabled
651 case RESTART:
652 mState = STOPPED;
653 break;
654 case STARTING:
655 mState = IDLE;
656 break;
657 case ACTIVE:
658 mState = STOPPING;
659 break;
660 case DESTROYED:
661 return NO_ERROR; // simply ignore as we are being destroyed
662 }
663 for (size_t i = 1; i < mHandles.size(); i++) {
664 EffectHandle *h = mHandles[i];
665 if (h != NULL && !h->destroyed_l()) {
666 h->setEnabled(enabled);
667 }
668 }
669 }
670 return NO_ERROR;
671 }
672
isEnabled() const673 bool AudioFlinger::EffectModule::isEnabled() const
674 {
675 switch (mState) {
676 case RESTART:
677 case STARTING:
678 case ACTIVE:
679 return true;
680 case IDLE:
681 case STOPPING:
682 case STOPPED:
683 case DESTROYED:
684 default:
685 return false;
686 }
687 }
688
isProcessEnabled() const689 bool AudioFlinger::EffectModule::isProcessEnabled() const
690 {
691 if (mStatus != NO_ERROR) {
692 return false;
693 }
694
695 switch (mState) {
696 case RESTART:
697 case ACTIVE:
698 case STOPPING:
699 case STOPPED:
700 return true;
701 case IDLE:
702 case STARTING:
703 case DESTROYED:
704 default:
705 return false;
706 }
707 }
708
setVolume(uint32_t * left,uint32_t * right,bool controller)709 status_t AudioFlinger::EffectModule::setVolume(uint32_t *left, uint32_t *right, bool controller)
710 {
711 Mutex::Autolock _l(mLock);
712 if (mStatus != NO_ERROR) {
713 return mStatus;
714 }
715 status_t status = NO_ERROR;
716 // Send volume indication if EFFECT_FLAG_VOLUME_IND is set and read back altered volume
717 // if controller flag is set (Note that controller == TRUE => EFFECT_FLAG_VOLUME_CTRL set)
718 if (isProcessEnabled() &&
719 ((mDescriptor.flags & EFFECT_FLAG_VOLUME_MASK) == EFFECT_FLAG_VOLUME_CTRL ||
720 (mDescriptor.flags & EFFECT_FLAG_VOLUME_MASK) == EFFECT_FLAG_VOLUME_IND)) {
721 uint32_t volume[2];
722 uint32_t *pVolume = NULL;
723 uint32_t size = sizeof(volume);
724 volume[0] = *left;
725 volume[1] = *right;
726 if (controller) {
727 pVolume = volume;
728 }
729 status = (*mEffectInterface)->command(mEffectInterface,
730 EFFECT_CMD_SET_VOLUME,
731 size,
732 volume,
733 &size,
734 pVolume);
735 if (controller && status == NO_ERROR && size == sizeof(volume)) {
736 *left = volume[0];
737 *right = volume[1];
738 }
739 }
740 return status;
741 }
742
setDevice(audio_devices_t device)743 status_t AudioFlinger::EffectModule::setDevice(audio_devices_t device)
744 {
745 if (device == AUDIO_DEVICE_NONE) {
746 return NO_ERROR;
747 }
748
749 Mutex::Autolock _l(mLock);
750 if (mStatus != NO_ERROR) {
751 return mStatus;
752 }
753 status_t status = NO_ERROR;
754 if ((mDescriptor.flags & EFFECT_FLAG_DEVICE_MASK) == EFFECT_FLAG_DEVICE_IND) {
755 status_t cmdStatus;
756 uint32_t size = sizeof(status_t);
757 uint32_t cmd = audio_is_output_devices(device) ? EFFECT_CMD_SET_DEVICE :
758 EFFECT_CMD_SET_INPUT_DEVICE;
759 status = (*mEffectInterface)->command(mEffectInterface,
760 cmd,
761 sizeof(uint32_t),
762 &device,
763 &size,
764 &cmdStatus);
765 }
766 return status;
767 }
768
setMode(audio_mode_t mode)769 status_t AudioFlinger::EffectModule::setMode(audio_mode_t mode)
770 {
771 Mutex::Autolock _l(mLock);
772 if (mStatus != NO_ERROR) {
773 return mStatus;
774 }
775 status_t status = NO_ERROR;
776 if ((mDescriptor.flags & EFFECT_FLAG_AUDIO_MODE_MASK) == EFFECT_FLAG_AUDIO_MODE_IND) {
777 status_t cmdStatus;
778 uint32_t size = sizeof(status_t);
779 status = (*mEffectInterface)->command(mEffectInterface,
780 EFFECT_CMD_SET_AUDIO_MODE,
781 sizeof(audio_mode_t),
782 &mode,
783 &size,
784 &cmdStatus);
785 if (status == NO_ERROR) {
786 status = cmdStatus;
787 }
788 }
789 return status;
790 }
791
setAudioSource(audio_source_t source)792 status_t AudioFlinger::EffectModule::setAudioSource(audio_source_t source)
793 {
794 Mutex::Autolock _l(mLock);
795 if (mStatus != NO_ERROR) {
796 return mStatus;
797 }
798 status_t status = NO_ERROR;
799 if ((mDescriptor.flags & EFFECT_FLAG_AUDIO_SOURCE_MASK) == EFFECT_FLAG_AUDIO_SOURCE_IND) {
800 uint32_t size = 0;
801 status = (*mEffectInterface)->command(mEffectInterface,
802 EFFECT_CMD_SET_AUDIO_SOURCE,
803 sizeof(audio_source_t),
804 &source,
805 &size,
806 NULL);
807 }
808 return status;
809 }
810
setSuspended(bool suspended)811 void AudioFlinger::EffectModule::setSuspended(bool suspended)
812 {
813 Mutex::Autolock _l(mLock);
814 mSuspended = suspended;
815 }
816
suspended() const817 bool AudioFlinger::EffectModule::suspended() const
818 {
819 Mutex::Autolock _l(mLock);
820 return mSuspended;
821 }
822
purgeHandles()823 bool AudioFlinger::EffectModule::purgeHandles()
824 {
825 bool enabled = false;
826 Mutex::Autolock _l(mLock);
827 for (size_t i = 0; i < mHandles.size(); i++) {
828 EffectHandle *handle = mHandles[i];
829 if (handle != NULL && !handle->destroyed_l()) {
830 handle->effect().clear();
831 if (handle->hasControl()) {
832 enabled = handle->enabled();
833 }
834 }
835 }
836 return enabled;
837 }
838
setOffloaded(bool offloaded,audio_io_handle_t io)839 status_t AudioFlinger::EffectModule::setOffloaded(bool offloaded, audio_io_handle_t io)
840 {
841 Mutex::Autolock _l(mLock);
842 if (mStatus != NO_ERROR) {
843 return mStatus;
844 }
845 status_t status = NO_ERROR;
846 if ((mDescriptor.flags & EFFECT_FLAG_OFFLOAD_SUPPORTED) != 0) {
847 status_t cmdStatus;
848 uint32_t size = sizeof(status_t);
849 effect_offload_param_t cmd;
850
851 cmd.isOffload = offloaded;
852 cmd.ioHandle = io;
853 status = (*mEffectInterface)->command(mEffectInterface,
854 EFFECT_CMD_OFFLOAD,
855 sizeof(effect_offload_param_t),
856 &cmd,
857 &size,
858 &cmdStatus);
859 if (status == NO_ERROR) {
860 status = cmdStatus;
861 }
862 mOffloaded = (status == NO_ERROR) ? offloaded : false;
863 } else {
864 if (offloaded) {
865 status = INVALID_OPERATION;
866 }
867 mOffloaded = false;
868 }
869 ALOGV("setOffloaded() offloaded %d io %d status %d", offloaded, io, status);
870 return status;
871 }
872
isOffloaded() const873 bool AudioFlinger::EffectModule::isOffloaded() const
874 {
875 Mutex::Autolock _l(mLock);
876 return mOffloaded;
877 }
878
effectFlagsToString(uint32_t flags)879 String8 effectFlagsToString(uint32_t flags) {
880 String8 s;
881
882 s.append("conn. mode: ");
883 switch (flags & EFFECT_FLAG_TYPE_MASK) {
884 case EFFECT_FLAG_TYPE_INSERT: s.append("insert"); break;
885 case EFFECT_FLAG_TYPE_AUXILIARY: s.append("auxiliary"); break;
886 case EFFECT_FLAG_TYPE_REPLACE: s.append("replace"); break;
887 case EFFECT_FLAG_TYPE_PRE_PROC: s.append("preproc"); break;
888 case EFFECT_FLAG_TYPE_POST_PROC: s.append("postproc"); break;
889 default: s.append("unknown/reserved"); break;
890 }
891 s.append(", ");
892
893 s.append("insert pref: ");
894 switch (flags & EFFECT_FLAG_INSERT_MASK) {
895 case EFFECT_FLAG_INSERT_ANY: s.append("any"); break;
896 case EFFECT_FLAG_INSERT_FIRST: s.append("first"); break;
897 case EFFECT_FLAG_INSERT_LAST: s.append("last"); break;
898 case EFFECT_FLAG_INSERT_EXCLUSIVE: s.append("exclusive"); break;
899 default: s.append("unknown/reserved"); break;
900 }
901 s.append(", ");
902
903 s.append("volume mgmt: ");
904 switch (flags & EFFECT_FLAG_VOLUME_MASK) {
905 case EFFECT_FLAG_VOLUME_NONE: s.append("none"); break;
906 case EFFECT_FLAG_VOLUME_CTRL: s.append("implements control"); break;
907 case EFFECT_FLAG_VOLUME_IND: s.append("requires indication"); break;
908 default: s.append("unknown/reserved"); break;
909 }
910 s.append(", ");
911
912 uint32_t devind = flags & EFFECT_FLAG_DEVICE_MASK;
913 if (devind) {
914 s.append("device indication: ");
915 switch (devind) {
916 case EFFECT_FLAG_DEVICE_IND: s.append("requires updates"); break;
917 default: s.append("unknown/reserved"); break;
918 }
919 s.append(", ");
920 }
921
922 s.append("input mode: ");
923 switch (flags & EFFECT_FLAG_INPUT_MASK) {
924 case EFFECT_FLAG_INPUT_DIRECT: s.append("direct"); break;
925 case EFFECT_FLAG_INPUT_PROVIDER: s.append("provider"); break;
926 case EFFECT_FLAG_INPUT_BOTH: s.append("direct+provider"); break;
927 default: s.append("not set"); break;
928 }
929 s.append(", ");
930
931 s.append("output mode: ");
932 switch (flags & EFFECT_FLAG_OUTPUT_MASK) {
933 case EFFECT_FLAG_OUTPUT_DIRECT: s.append("direct"); break;
934 case EFFECT_FLAG_OUTPUT_PROVIDER: s.append("provider"); break;
935 case EFFECT_FLAG_OUTPUT_BOTH: s.append("direct+provider"); break;
936 default: s.append("not set"); break;
937 }
938 s.append(", ");
939
940 uint32_t accel = flags & EFFECT_FLAG_HW_ACC_MASK;
941 if (accel) {
942 s.append("hardware acceleration: ");
943 switch (accel) {
944 case EFFECT_FLAG_HW_ACC_SIMPLE: s.append("non-tunneled"); break;
945 case EFFECT_FLAG_HW_ACC_TUNNEL: s.append("tunneled"); break;
946 default: s.append("unknown/reserved"); break;
947 }
948 s.append(", ");
949 }
950
951 uint32_t modeind = flags & EFFECT_FLAG_AUDIO_MODE_MASK;
952 if (modeind) {
953 s.append("mode indication: ");
954 switch (modeind) {
955 case EFFECT_FLAG_AUDIO_MODE_IND: s.append("required"); break;
956 default: s.append("unknown/reserved"); break;
957 }
958 s.append(", ");
959 }
960
961 uint32_t srcind = flags & EFFECT_FLAG_AUDIO_SOURCE_MASK;
962 if (srcind) {
963 s.append("source indication: ");
964 switch (srcind) {
965 case EFFECT_FLAG_AUDIO_SOURCE_IND: s.append("required"); break;
966 default: s.append("unknown/reserved"); break;
967 }
968 s.append(", ");
969 }
970
971 if (flags & EFFECT_FLAG_OFFLOAD_MASK) {
972 s.append("offloadable, ");
973 }
974
975 int len = s.length();
976 if (s.length() > 2) {
977 (void) s.lockBuffer(len);
978 s.unlockBuffer(len - 2);
979 }
980 return s;
981 }
982
983
dump(int fd,const Vector<String16> & args __unused)984 void AudioFlinger::EffectModule::dump(int fd, const Vector<String16>& args __unused)
985 {
986 const size_t SIZE = 256;
987 char buffer[SIZE];
988 String8 result;
989
990 snprintf(buffer, SIZE, "\tEffect ID %d:\n", mId);
991 result.append(buffer);
992
993 bool locked = AudioFlinger::dumpTryLock(mLock);
994 // failed to lock - AudioFlinger is probably deadlocked
995 if (!locked) {
996 result.append("\t\tCould not lock Fx mutex:\n");
997 }
998
999 result.append("\t\tSession Status State Engine:\n");
1000 snprintf(buffer, SIZE, "\t\t%05d %03d %03d %p\n",
1001 mSessionId, mStatus, mState, mEffectInterface);
1002 result.append(buffer);
1003
1004 result.append("\t\tDescriptor:\n");
1005 snprintf(buffer, SIZE, "\t\t- UUID: %08X-%04X-%04X-%04X-%02X%02X%02X%02X%02X%02X\n",
1006 mDescriptor.uuid.timeLow, mDescriptor.uuid.timeMid, mDescriptor.uuid.timeHiAndVersion,
1007 mDescriptor.uuid.clockSeq, mDescriptor.uuid.node[0], mDescriptor.uuid.node[1],
1008 mDescriptor.uuid.node[2],
1009 mDescriptor.uuid.node[3],mDescriptor.uuid.node[4],mDescriptor.uuid.node[5]);
1010 result.append(buffer);
1011 snprintf(buffer, SIZE, "\t\t- TYPE: %08X-%04X-%04X-%04X-%02X%02X%02X%02X%02X%02X\n",
1012 mDescriptor.type.timeLow, mDescriptor.type.timeMid,
1013 mDescriptor.type.timeHiAndVersion,
1014 mDescriptor.type.clockSeq, mDescriptor.type.node[0], mDescriptor.type.node[1],
1015 mDescriptor.type.node[2],
1016 mDescriptor.type.node[3],mDescriptor.type.node[4],mDescriptor.type.node[5]);
1017 result.append(buffer);
1018 snprintf(buffer, SIZE, "\t\t- apiVersion: %08X\n\t\t- flags: %08X (%s)\n",
1019 mDescriptor.apiVersion,
1020 mDescriptor.flags,
1021 effectFlagsToString(mDescriptor.flags).string());
1022 result.append(buffer);
1023 snprintf(buffer, SIZE, "\t\t- name: %s\n",
1024 mDescriptor.name);
1025 result.append(buffer);
1026 snprintf(buffer, SIZE, "\t\t- implementor: %s\n",
1027 mDescriptor.implementor);
1028 result.append(buffer);
1029
1030 result.append("\t\t- Input configuration:\n");
1031 result.append("\t\t\tFrames Smp rate Channels Format Buffer\n");
1032 snprintf(buffer, SIZE, "\t\t\t%05zu %05d %08x %6d (%s) %p\n",
1033 mConfig.inputCfg.buffer.frameCount,
1034 mConfig.inputCfg.samplingRate,
1035 mConfig.inputCfg.channels,
1036 mConfig.inputCfg.format,
1037 formatToString((audio_format_t)mConfig.inputCfg.format),
1038 mConfig.inputCfg.buffer.raw);
1039 result.append(buffer);
1040
1041 result.append("\t\t- Output configuration:\n");
1042 result.append("\t\t\tBuffer Frames Smp rate Channels Format\n");
1043 snprintf(buffer, SIZE, "\t\t\t%p %05zu %05d %08x %d (%s)\n",
1044 mConfig.outputCfg.buffer.raw,
1045 mConfig.outputCfg.buffer.frameCount,
1046 mConfig.outputCfg.samplingRate,
1047 mConfig.outputCfg.channels,
1048 mConfig.outputCfg.format,
1049 formatToString((audio_format_t)mConfig.outputCfg.format));
1050 result.append(buffer);
1051
1052 snprintf(buffer, SIZE, "\t\t%zu Clients:\n", mHandles.size());
1053 result.append(buffer);
1054 result.append("\t\t\t Pid Priority Ctrl Locked client server\n");
1055 for (size_t i = 0; i < mHandles.size(); ++i) {
1056 EffectHandle *handle = mHandles[i];
1057 if (handle != NULL && !handle->destroyed_l()) {
1058 handle->dumpToBuffer(buffer, SIZE);
1059 result.append(buffer);
1060 }
1061 }
1062
1063 write(fd, result.string(), result.length());
1064
1065 if (locked) {
1066 mLock.unlock();
1067 }
1068 }
1069
1070 // ----------------------------------------------------------------------------
1071 // EffectHandle implementation
1072 // ----------------------------------------------------------------------------
1073
1074 #undef LOG_TAG
1075 #define LOG_TAG "AudioFlinger::EffectHandle"
1076
EffectHandle(const sp<EffectModule> & effect,const sp<AudioFlinger::Client> & client,const sp<IEffectClient> & effectClient,int32_t priority)1077 AudioFlinger::EffectHandle::EffectHandle(const sp<EffectModule>& effect,
1078 const sp<AudioFlinger::Client>& client,
1079 const sp<IEffectClient>& effectClient,
1080 int32_t priority)
1081 : BnEffect(),
1082 mEffect(effect), mEffectClient(effectClient), mClient(client), mCblk(NULL),
1083 mPriority(priority), mHasControl(false), mEnabled(false), mDestroyed(false)
1084 {
1085 ALOGV("constructor %p", this);
1086
1087 if (client == 0) {
1088 return;
1089 }
1090 int bufOffset = ((sizeof(effect_param_cblk_t) - 1) / sizeof(int) + 1) * sizeof(int);
1091 mCblkMemory = client->heap()->allocate(EFFECT_PARAM_BUFFER_SIZE + bufOffset);
1092 if (mCblkMemory == 0 ||
1093 (mCblk = static_cast<effect_param_cblk_t *>(mCblkMemory->pointer())) == NULL) {
1094 ALOGE("not enough memory for Effect size=%zu", EFFECT_PARAM_BUFFER_SIZE +
1095 sizeof(effect_param_cblk_t));
1096 mCblkMemory.clear();
1097 return;
1098 }
1099 new(mCblk) effect_param_cblk_t();
1100 mBuffer = (uint8_t *)mCblk + bufOffset;
1101 }
1102
~EffectHandle()1103 AudioFlinger::EffectHandle::~EffectHandle()
1104 {
1105 ALOGV("Destructor %p", this);
1106
1107 if (mEffect == 0) {
1108 mDestroyed = true;
1109 return;
1110 }
1111 mEffect->lock();
1112 mDestroyed = true;
1113 mEffect->unlock();
1114 disconnect(false);
1115 }
1116
initCheck()1117 status_t AudioFlinger::EffectHandle::initCheck()
1118 {
1119 return mClient == 0 || mCblkMemory != 0 ? OK : NO_MEMORY;
1120 }
1121
enable()1122 status_t AudioFlinger::EffectHandle::enable()
1123 {
1124 ALOGV("enable %p", this);
1125 if (!mHasControl) {
1126 return INVALID_OPERATION;
1127 }
1128 if (mEffect == 0) {
1129 return DEAD_OBJECT;
1130 }
1131
1132 if (mEnabled) {
1133 return NO_ERROR;
1134 }
1135
1136 mEnabled = true;
1137
1138 sp<ThreadBase> thread = mEffect->thread().promote();
1139 if (thread != 0) {
1140 thread->checkSuspendOnEffectEnabled(mEffect, true, mEffect->sessionId());
1141 }
1142
1143 // checkSuspendOnEffectEnabled() can suspend this same effect when enabled
1144 if (mEffect->suspended()) {
1145 return NO_ERROR;
1146 }
1147
1148 status_t status = mEffect->setEnabled(true);
1149 if (status != NO_ERROR) {
1150 if (thread != 0) {
1151 thread->checkSuspendOnEffectEnabled(mEffect, false, mEffect->sessionId());
1152 }
1153 mEnabled = false;
1154 } else {
1155 if (thread != 0) {
1156 if (thread->type() == ThreadBase::OFFLOAD) {
1157 PlaybackThread *t = (PlaybackThread *)thread.get();
1158 Mutex::Autolock _l(t->mLock);
1159 t->broadcast_l();
1160 }
1161 if (!mEffect->isOffloadable()) {
1162 if (thread->type() == ThreadBase::OFFLOAD) {
1163 PlaybackThread *t = (PlaybackThread *)thread.get();
1164 t->invalidateTracks(AUDIO_STREAM_MUSIC);
1165 }
1166 if (mEffect->sessionId() == AUDIO_SESSION_OUTPUT_MIX) {
1167 thread->mAudioFlinger->onNonOffloadableGlobalEffectEnable();
1168 }
1169 }
1170 }
1171 }
1172 return status;
1173 }
1174
disable()1175 status_t AudioFlinger::EffectHandle::disable()
1176 {
1177 ALOGV("disable %p", this);
1178 if (!mHasControl) {
1179 return INVALID_OPERATION;
1180 }
1181 if (mEffect == 0) {
1182 return DEAD_OBJECT;
1183 }
1184
1185 if (!mEnabled) {
1186 return NO_ERROR;
1187 }
1188 mEnabled = false;
1189
1190 if (mEffect->suspended()) {
1191 return NO_ERROR;
1192 }
1193
1194 status_t status = mEffect->setEnabled(false);
1195
1196 sp<ThreadBase> thread = mEffect->thread().promote();
1197 if (thread != 0) {
1198 thread->checkSuspendOnEffectEnabled(mEffect, false, mEffect->sessionId());
1199 if (thread->type() == ThreadBase::OFFLOAD) {
1200 PlaybackThread *t = (PlaybackThread *)thread.get();
1201 Mutex::Autolock _l(t->mLock);
1202 t->broadcast_l();
1203 }
1204 }
1205
1206 return status;
1207 }
1208
disconnect()1209 void AudioFlinger::EffectHandle::disconnect()
1210 {
1211 disconnect(true);
1212 }
1213
disconnect(bool unpinIfLast)1214 void AudioFlinger::EffectHandle::disconnect(bool unpinIfLast)
1215 {
1216 ALOGV("disconnect(%s)", unpinIfLast ? "true" : "false");
1217 if (mEffect == 0) {
1218 return;
1219 }
1220 // restore suspended effects if the disconnected handle was enabled and the last one.
1221 if ((mEffect->disconnect(this, unpinIfLast) == 0) && mEnabled) {
1222 sp<ThreadBase> thread = mEffect->thread().promote();
1223 if (thread != 0) {
1224 thread->checkSuspendOnEffectEnabled(mEffect, false, mEffect->sessionId());
1225 }
1226 }
1227
1228 // release sp on module => module destructor can be called now
1229 mEffect.clear();
1230 if (mClient != 0) {
1231 if (mCblk != NULL) {
1232 // unlike ~TrackBase(), mCblk is never a local new, so don't delete
1233 mCblk->~effect_param_cblk_t(); // destroy our shared-structure.
1234 }
1235 mCblkMemory.clear(); // free the shared memory before releasing the heap it belongs to
1236 // Client destructor must run with AudioFlinger client mutex locked
1237 Mutex::Autolock _l(mClient->audioFlinger()->mClientLock);
1238 mClient.clear();
1239 }
1240 }
1241
command(uint32_t cmdCode,uint32_t cmdSize,void * pCmdData,uint32_t * replySize,void * pReplyData)1242 status_t AudioFlinger::EffectHandle::command(uint32_t cmdCode,
1243 uint32_t cmdSize,
1244 void *pCmdData,
1245 uint32_t *replySize,
1246 void *pReplyData)
1247 {
1248 ALOGVV("command(), cmdCode: %d, mHasControl: %d, mEffect: %p",
1249 cmdCode, mHasControl, (mEffect == 0) ? 0 : mEffect.get());
1250
1251 // only get parameter command is permitted for applications not controlling the effect
1252 if (!mHasControl && cmdCode != EFFECT_CMD_GET_PARAM) {
1253 return INVALID_OPERATION;
1254 }
1255 if (mEffect == 0) {
1256 return DEAD_OBJECT;
1257 }
1258 if (mClient == 0) {
1259 return INVALID_OPERATION;
1260 }
1261
1262 // handle commands that are not forwarded transparently to effect engine
1263 if (cmdCode == EFFECT_CMD_SET_PARAM_COMMIT) {
1264 // No need to trylock() here as this function is executed in the binder thread serving a
1265 // particular client process: no risk to block the whole media server process or mixer
1266 // threads if we are stuck here
1267 Mutex::Autolock _l(mCblk->lock);
1268 if (mCblk->clientIndex > EFFECT_PARAM_BUFFER_SIZE ||
1269 mCblk->serverIndex > EFFECT_PARAM_BUFFER_SIZE) {
1270 mCblk->serverIndex = 0;
1271 mCblk->clientIndex = 0;
1272 return BAD_VALUE;
1273 }
1274 status_t status = NO_ERROR;
1275 while (mCblk->serverIndex < mCblk->clientIndex) {
1276 int reply;
1277 uint32_t rsize = sizeof(int);
1278 int *p = (int *)(mBuffer + mCblk->serverIndex);
1279 int size = *p++;
1280 if (((uint8_t *)p + size) > mBuffer + mCblk->clientIndex) {
1281 ALOGW("command(): invalid parameter block size");
1282 break;
1283 }
1284 effect_param_t *param = (effect_param_t *)p;
1285 if (param->psize == 0 || param->vsize == 0) {
1286 ALOGW("command(): null parameter or value size");
1287 mCblk->serverIndex += size;
1288 continue;
1289 }
1290 uint32_t psize = sizeof(effect_param_t) +
1291 ((param->psize - 1) / sizeof(int) + 1) * sizeof(int) +
1292 param->vsize;
1293 status_t ret = mEffect->command(EFFECT_CMD_SET_PARAM,
1294 psize,
1295 p,
1296 &rsize,
1297 &reply);
1298 // stop at first error encountered
1299 if (ret != NO_ERROR) {
1300 status = ret;
1301 *(int *)pReplyData = reply;
1302 break;
1303 } else if (reply != NO_ERROR) {
1304 *(int *)pReplyData = reply;
1305 break;
1306 }
1307 mCblk->serverIndex += size;
1308 }
1309 mCblk->serverIndex = 0;
1310 mCblk->clientIndex = 0;
1311 return status;
1312 } else if (cmdCode == EFFECT_CMD_ENABLE) {
1313 *(int *)pReplyData = NO_ERROR;
1314 return enable();
1315 } else if (cmdCode == EFFECT_CMD_DISABLE) {
1316 *(int *)pReplyData = NO_ERROR;
1317 return disable();
1318 }
1319
1320 return mEffect->command(cmdCode, cmdSize, pCmdData, replySize, pReplyData);
1321 }
1322
setControl(bool hasControl,bool signal,bool enabled)1323 void AudioFlinger::EffectHandle::setControl(bool hasControl, bool signal, bool enabled)
1324 {
1325 ALOGV("setControl %p control %d", this, hasControl);
1326
1327 mHasControl = hasControl;
1328 mEnabled = enabled;
1329
1330 if (signal && mEffectClient != 0) {
1331 mEffectClient->controlStatusChanged(hasControl);
1332 }
1333 }
1334
commandExecuted(uint32_t cmdCode,uint32_t cmdSize,void * pCmdData,uint32_t replySize,void * pReplyData)1335 void AudioFlinger::EffectHandle::commandExecuted(uint32_t cmdCode,
1336 uint32_t cmdSize,
1337 void *pCmdData,
1338 uint32_t replySize,
1339 void *pReplyData)
1340 {
1341 if (mEffectClient != 0) {
1342 mEffectClient->commandExecuted(cmdCode, cmdSize, pCmdData, replySize, pReplyData);
1343 }
1344 }
1345
1346
1347
setEnabled(bool enabled)1348 void AudioFlinger::EffectHandle::setEnabled(bool enabled)
1349 {
1350 if (mEffectClient != 0) {
1351 mEffectClient->enableStatusChanged(enabled);
1352 }
1353 }
1354
onTransact(uint32_t code,const Parcel & data,Parcel * reply,uint32_t flags)1355 status_t AudioFlinger::EffectHandle::onTransact(
1356 uint32_t code, const Parcel& data, Parcel* reply, uint32_t flags)
1357 {
1358 return BnEffect::onTransact(code, data, reply, flags);
1359 }
1360
1361
dumpToBuffer(char * buffer,size_t size)1362 void AudioFlinger::EffectHandle::dumpToBuffer(char* buffer, size_t size)
1363 {
1364 bool locked = mCblk != NULL && AudioFlinger::dumpTryLock(mCblk->lock);
1365
1366 snprintf(buffer, size, "\t\t\t%5d %5d %3s %3s %5u %5u\n",
1367 (mClient == 0) ? getpid_cached : mClient->pid(),
1368 mPriority,
1369 mHasControl ? "yes" : "no",
1370 locked ? "yes" : "no",
1371 mCblk ? mCblk->clientIndex : 0,
1372 mCblk ? mCblk->serverIndex : 0
1373 );
1374
1375 if (locked) {
1376 mCblk->lock.unlock();
1377 }
1378 }
1379
1380 #undef LOG_TAG
1381 #define LOG_TAG "AudioFlinger::EffectChain"
1382
EffectChain(ThreadBase * thread,audio_session_t sessionId)1383 AudioFlinger::EffectChain::EffectChain(ThreadBase *thread,
1384 audio_session_t sessionId)
1385 : mThread(thread), mSessionId(sessionId), mActiveTrackCnt(0), mTrackCnt(0), mTailBufferCount(0),
1386 mOwnInBuffer(false), mVolumeCtrlIdx(-1), mLeftVolume(UINT_MAX), mRightVolume(UINT_MAX),
1387 mNewLeftVolume(UINT_MAX), mNewRightVolume(UINT_MAX)
1388 {
1389 mStrategy = AudioSystem::getStrategyForStream(AUDIO_STREAM_MUSIC);
1390 if (thread == NULL) {
1391 return;
1392 }
1393 mMaxTailBuffers = ((kProcessTailDurationMs * thread->sampleRate()) / 1000) /
1394 thread->frameCount();
1395 }
1396
~EffectChain()1397 AudioFlinger::EffectChain::~EffectChain()
1398 {
1399 if (mOwnInBuffer) {
1400 delete mInBuffer;
1401 }
1402
1403 }
1404
1405 // getEffectFromDesc_l() must be called with ThreadBase::mLock held
getEffectFromDesc_l(effect_descriptor_t * descriptor)1406 sp<AudioFlinger::EffectModule> AudioFlinger::EffectChain::getEffectFromDesc_l(
1407 effect_descriptor_t *descriptor)
1408 {
1409 size_t size = mEffects.size();
1410
1411 for (size_t i = 0; i < size; i++) {
1412 if (memcmp(&mEffects[i]->desc().uuid, &descriptor->uuid, sizeof(effect_uuid_t)) == 0) {
1413 return mEffects[i];
1414 }
1415 }
1416 return 0;
1417 }
1418
1419 // getEffectFromId_l() must be called with ThreadBase::mLock held
getEffectFromId_l(int id)1420 sp<AudioFlinger::EffectModule> AudioFlinger::EffectChain::getEffectFromId_l(int id)
1421 {
1422 size_t size = mEffects.size();
1423
1424 for (size_t i = 0; i < size; i++) {
1425 // by convention, return first effect if id provided is 0 (0 is never a valid id)
1426 if (id == 0 || mEffects[i]->id() == id) {
1427 return mEffects[i];
1428 }
1429 }
1430 return 0;
1431 }
1432
1433 // getEffectFromType_l() must be called with ThreadBase::mLock held
getEffectFromType_l(const effect_uuid_t * type)1434 sp<AudioFlinger::EffectModule> AudioFlinger::EffectChain::getEffectFromType_l(
1435 const effect_uuid_t *type)
1436 {
1437 size_t size = mEffects.size();
1438
1439 for (size_t i = 0; i < size; i++) {
1440 if (memcmp(&mEffects[i]->desc().type, type, sizeof(effect_uuid_t)) == 0) {
1441 return mEffects[i];
1442 }
1443 }
1444 return 0;
1445 }
1446
clearInputBuffer()1447 void AudioFlinger::EffectChain::clearInputBuffer()
1448 {
1449 Mutex::Autolock _l(mLock);
1450 sp<ThreadBase> thread = mThread.promote();
1451 if (thread == 0) {
1452 ALOGW("clearInputBuffer(): cannot promote mixer thread");
1453 return;
1454 }
1455 clearInputBuffer_l(thread);
1456 }
1457
1458 // Must be called with EffectChain::mLock locked
clearInputBuffer_l(sp<ThreadBase> thread)1459 void AudioFlinger::EffectChain::clearInputBuffer_l(sp<ThreadBase> thread)
1460 {
1461 // TODO: This will change in the future, depending on multichannel
1462 // and sample format changes for effects.
1463 // Currently effects processing is only available for stereo, AUDIO_FORMAT_PCM_16_BIT
1464 // (4 bytes frame size)
1465 const size_t frameSize =
1466 audio_bytes_per_sample(AUDIO_FORMAT_PCM_16_BIT) * min(FCC_2, thread->channelCount());
1467 memset(mInBuffer, 0, thread->frameCount() * frameSize);
1468 }
1469
1470 // Must be called with EffectChain::mLock locked
process_l()1471 void AudioFlinger::EffectChain::process_l()
1472 {
1473 sp<ThreadBase> thread = mThread.promote();
1474 if (thread == 0) {
1475 ALOGW("process_l(): cannot promote mixer thread");
1476 return;
1477 }
1478 bool isGlobalSession = (mSessionId == AUDIO_SESSION_OUTPUT_MIX) ||
1479 (mSessionId == AUDIO_SESSION_OUTPUT_STAGE);
1480 // never process effects when:
1481 // - on an OFFLOAD thread
1482 // - no more tracks are on the session and the effect tail has been rendered
1483 bool doProcess = (thread->type() != ThreadBase::OFFLOAD);
1484 if (!isGlobalSession) {
1485 bool tracksOnSession = (trackCnt() != 0);
1486
1487 if (!tracksOnSession && mTailBufferCount == 0) {
1488 doProcess = false;
1489 }
1490
1491 if (activeTrackCnt() == 0) {
1492 // if no track is active and the effect tail has not been rendered,
1493 // the input buffer must be cleared here as the mixer process will not do it
1494 if (tracksOnSession || mTailBufferCount > 0) {
1495 clearInputBuffer_l(thread);
1496 if (mTailBufferCount > 0) {
1497 mTailBufferCount--;
1498 }
1499 }
1500 }
1501 }
1502
1503 size_t size = mEffects.size();
1504 if (doProcess) {
1505 for (size_t i = 0; i < size; i++) {
1506 mEffects[i]->process();
1507 }
1508 }
1509 bool doResetVolume = false;
1510 for (size_t i = 0; i < size; i++) {
1511 doResetVolume = mEffects[i]->updateState() || doResetVolume;
1512 }
1513 if (doResetVolume) {
1514 resetVolume_l();
1515 }
1516 }
1517
1518 // addEffect_l() must be called with PlaybackThread::mLock held
addEffect_l(const sp<EffectModule> & effect)1519 status_t AudioFlinger::EffectChain::addEffect_l(const sp<EffectModule>& effect)
1520 {
1521 effect_descriptor_t desc = effect->desc();
1522 uint32_t insertPref = desc.flags & EFFECT_FLAG_INSERT_MASK;
1523
1524 Mutex::Autolock _l(mLock);
1525 effect->setChain(this);
1526 sp<ThreadBase> thread = mThread.promote();
1527 if (thread == 0) {
1528 return NO_INIT;
1529 }
1530 effect->setThread(thread);
1531
1532 if ((desc.flags & EFFECT_FLAG_TYPE_MASK) == EFFECT_FLAG_TYPE_AUXILIARY) {
1533 // Auxiliary effects are inserted at the beginning of mEffects vector as
1534 // they are processed first and accumulated in chain input buffer
1535 mEffects.insertAt(effect, 0);
1536
1537 // the input buffer for auxiliary effect contains mono samples in
1538 // 32 bit format. This is to avoid saturation in AudoMixer
1539 // accumulation stage. Saturation is done in EffectModule::process() before
1540 // calling the process in effect engine
1541 size_t numSamples = thread->frameCount();
1542 int32_t *buffer = new int32_t[numSamples];
1543 memset(buffer, 0, numSamples * sizeof(int32_t));
1544 effect->setInBuffer((int16_t *)buffer);
1545 // auxiliary effects output samples to chain input buffer for further processing
1546 // by insert effects
1547 effect->setOutBuffer(mInBuffer);
1548 } else {
1549 // Insert effects are inserted at the end of mEffects vector as they are processed
1550 // after track and auxiliary effects.
1551 // Insert effect order as a function of indicated preference:
1552 // if EFFECT_FLAG_INSERT_EXCLUSIVE, insert in first position or reject if
1553 // another effect is present
1554 // else if EFFECT_FLAG_INSERT_FIRST, insert in first position or after the
1555 // last effect claiming first position
1556 // else if EFFECT_FLAG_INSERT_LAST, insert in last position or before the
1557 // first effect claiming last position
1558 // else if EFFECT_FLAG_INSERT_ANY insert after first or before last
1559 // Reject insertion if an effect with EFFECT_FLAG_INSERT_EXCLUSIVE is
1560 // already present
1561
1562 size_t size = mEffects.size();
1563 size_t idx_insert = size;
1564 ssize_t idx_insert_first = -1;
1565 ssize_t idx_insert_last = -1;
1566
1567 for (size_t i = 0; i < size; i++) {
1568 effect_descriptor_t d = mEffects[i]->desc();
1569 uint32_t iMode = d.flags & EFFECT_FLAG_TYPE_MASK;
1570 uint32_t iPref = d.flags & EFFECT_FLAG_INSERT_MASK;
1571 if (iMode == EFFECT_FLAG_TYPE_INSERT) {
1572 // check invalid effect chaining combinations
1573 if (insertPref == EFFECT_FLAG_INSERT_EXCLUSIVE ||
1574 iPref == EFFECT_FLAG_INSERT_EXCLUSIVE) {
1575 ALOGW("addEffect_l() could not insert effect %s: exclusive conflict with %s",
1576 desc.name, d.name);
1577 return INVALID_OPERATION;
1578 }
1579 // remember position of first insert effect and by default
1580 // select this as insert position for new effect
1581 if (idx_insert == size) {
1582 idx_insert = i;
1583 }
1584 // remember position of last insert effect claiming
1585 // first position
1586 if (iPref == EFFECT_FLAG_INSERT_FIRST) {
1587 idx_insert_first = i;
1588 }
1589 // remember position of first insert effect claiming
1590 // last position
1591 if (iPref == EFFECT_FLAG_INSERT_LAST &&
1592 idx_insert_last == -1) {
1593 idx_insert_last = i;
1594 }
1595 }
1596 }
1597
1598 // modify idx_insert from first position if needed
1599 if (insertPref == EFFECT_FLAG_INSERT_LAST) {
1600 if (idx_insert_last != -1) {
1601 idx_insert = idx_insert_last;
1602 } else {
1603 idx_insert = size;
1604 }
1605 } else {
1606 if (idx_insert_first != -1) {
1607 idx_insert = idx_insert_first + 1;
1608 }
1609 }
1610
1611 // always read samples from chain input buffer
1612 effect->setInBuffer(mInBuffer);
1613
1614 // if last effect in the chain, output samples to chain
1615 // output buffer, otherwise to chain input buffer
1616 if (idx_insert == size) {
1617 if (idx_insert != 0) {
1618 mEffects[idx_insert-1]->setOutBuffer(mInBuffer);
1619 mEffects[idx_insert-1]->configure();
1620 }
1621 effect->setOutBuffer(mOutBuffer);
1622 } else {
1623 effect->setOutBuffer(mInBuffer);
1624 }
1625 mEffects.insertAt(effect, idx_insert);
1626
1627 ALOGV("addEffect_l() effect %p, added in chain %p at rank %zu", effect.get(), this,
1628 idx_insert);
1629 }
1630 effect->configure();
1631 return NO_ERROR;
1632 }
1633
1634 // removeEffect_l() must be called with PlaybackThread::mLock held
removeEffect_l(const sp<EffectModule> & effect)1635 size_t AudioFlinger::EffectChain::removeEffect_l(const sp<EffectModule>& effect)
1636 {
1637 Mutex::Autolock _l(mLock);
1638 size_t size = mEffects.size();
1639 uint32_t type = effect->desc().flags & EFFECT_FLAG_TYPE_MASK;
1640
1641 for (size_t i = 0; i < size; i++) {
1642 if (effect == mEffects[i]) {
1643 // calling stop here will remove pre-processing effect from the audio HAL.
1644 // This is safe as we hold the EffectChain mutex which guarantees that we are not in
1645 // the middle of a read from audio HAL
1646 if (mEffects[i]->state() == EffectModule::ACTIVE ||
1647 mEffects[i]->state() == EffectModule::STOPPING) {
1648 mEffects[i]->stop();
1649 }
1650 if (type == EFFECT_FLAG_TYPE_AUXILIARY) {
1651 delete[] effect->inBuffer();
1652 } else {
1653 if (i == size - 1 && i != 0) {
1654 mEffects[i - 1]->setOutBuffer(mOutBuffer);
1655 mEffects[i - 1]->configure();
1656 }
1657 }
1658 mEffects.removeAt(i);
1659 ALOGV("removeEffect_l() effect %p, removed from chain %p at rank %zu", effect.get(),
1660 this, i);
1661 break;
1662 }
1663 }
1664
1665 return mEffects.size();
1666 }
1667
1668 // setDevice_l() must be called with PlaybackThread::mLock held
setDevice_l(audio_devices_t device)1669 void AudioFlinger::EffectChain::setDevice_l(audio_devices_t device)
1670 {
1671 size_t size = mEffects.size();
1672 for (size_t i = 0; i < size; i++) {
1673 mEffects[i]->setDevice(device);
1674 }
1675 }
1676
1677 // setMode_l() must be called with PlaybackThread::mLock held
setMode_l(audio_mode_t mode)1678 void AudioFlinger::EffectChain::setMode_l(audio_mode_t mode)
1679 {
1680 size_t size = mEffects.size();
1681 for (size_t i = 0; i < size; i++) {
1682 mEffects[i]->setMode(mode);
1683 }
1684 }
1685
1686 // setAudioSource_l() must be called with PlaybackThread::mLock held
setAudioSource_l(audio_source_t source)1687 void AudioFlinger::EffectChain::setAudioSource_l(audio_source_t source)
1688 {
1689 size_t size = mEffects.size();
1690 for (size_t i = 0; i < size; i++) {
1691 mEffects[i]->setAudioSource(source);
1692 }
1693 }
1694
1695 // setVolume_l() must be called with PlaybackThread::mLock or EffectChain::mLock held
setVolume_l(uint32_t * left,uint32_t * right,bool force)1696 bool AudioFlinger::EffectChain::setVolume_l(uint32_t *left, uint32_t *right, bool force)
1697 {
1698 uint32_t newLeft = *left;
1699 uint32_t newRight = *right;
1700 bool hasControl = false;
1701 int ctrlIdx = -1;
1702 size_t size = mEffects.size();
1703
1704 // first update volume controller
1705 for (size_t i = size; i > 0; i--) {
1706 if (mEffects[i - 1]->isProcessEnabled() &&
1707 (mEffects[i - 1]->desc().flags & EFFECT_FLAG_VOLUME_MASK) == EFFECT_FLAG_VOLUME_CTRL) {
1708 ctrlIdx = i - 1;
1709 hasControl = true;
1710 break;
1711 }
1712 }
1713
1714 if (!force && ctrlIdx == mVolumeCtrlIdx &&
1715 *left == mLeftVolume && *right == mRightVolume) {
1716 if (hasControl) {
1717 *left = mNewLeftVolume;
1718 *right = mNewRightVolume;
1719 }
1720 return hasControl;
1721 }
1722
1723 mVolumeCtrlIdx = ctrlIdx;
1724 mLeftVolume = newLeft;
1725 mRightVolume = newRight;
1726
1727 // second get volume update from volume controller
1728 if (ctrlIdx >= 0) {
1729 mEffects[ctrlIdx]->setVolume(&newLeft, &newRight, true);
1730 mNewLeftVolume = newLeft;
1731 mNewRightVolume = newRight;
1732 }
1733 // then indicate volume to all other effects in chain.
1734 // Pass altered volume to effects before volume controller
1735 // and requested volume to effects after controller
1736 uint32_t lVol = newLeft;
1737 uint32_t rVol = newRight;
1738
1739 for (size_t i = 0; i < size; i++) {
1740 if ((int)i == ctrlIdx) {
1741 continue;
1742 }
1743 // this also works for ctrlIdx == -1 when there is no volume controller
1744 if ((int)i > ctrlIdx) {
1745 lVol = *left;
1746 rVol = *right;
1747 }
1748 mEffects[i]->setVolume(&lVol, &rVol, false);
1749 }
1750 *left = newLeft;
1751 *right = newRight;
1752
1753 return hasControl;
1754 }
1755
1756 // resetVolume_l() must be called with PlaybackThread::mLock or EffectChain::mLock held
resetVolume_l()1757 void AudioFlinger::EffectChain::resetVolume_l()
1758 {
1759 if ((mLeftVolume != UINT_MAX) && (mRightVolume != UINT_MAX)) {
1760 uint32_t left = mLeftVolume;
1761 uint32_t right = mRightVolume;
1762 (void)setVolume_l(&left, &right, true);
1763 }
1764 }
1765
syncHalEffectsState()1766 void AudioFlinger::EffectChain::syncHalEffectsState()
1767 {
1768 Mutex::Autolock _l(mLock);
1769 for (size_t i = 0; i < mEffects.size(); i++) {
1770 if (mEffects[i]->state() == EffectModule::ACTIVE ||
1771 mEffects[i]->state() == EffectModule::STOPPING) {
1772 mEffects[i]->addEffectToHal_l();
1773 }
1774 }
1775 }
1776
dump(int fd,const Vector<String16> & args)1777 void AudioFlinger::EffectChain::dump(int fd, const Vector<String16>& args)
1778 {
1779 const size_t SIZE = 256;
1780 char buffer[SIZE];
1781 String8 result;
1782
1783 size_t numEffects = mEffects.size();
1784 snprintf(buffer, SIZE, " %zu effects for session %d\n", numEffects, mSessionId);
1785 result.append(buffer);
1786
1787 if (numEffects) {
1788 bool locked = AudioFlinger::dumpTryLock(mLock);
1789 // failed to lock - AudioFlinger is probably deadlocked
1790 if (!locked) {
1791 result.append("\tCould not lock mutex:\n");
1792 }
1793
1794 result.append("\tIn buffer Out buffer Active tracks:\n");
1795 snprintf(buffer, SIZE, "\t%p %p %d\n",
1796 mInBuffer,
1797 mOutBuffer,
1798 mActiveTrackCnt);
1799 result.append(buffer);
1800 write(fd, result.string(), result.size());
1801
1802 for (size_t i = 0; i < numEffects; ++i) {
1803 sp<EffectModule> effect = mEffects[i];
1804 if (effect != 0) {
1805 effect->dump(fd, args);
1806 }
1807 }
1808
1809 if (locked) {
1810 mLock.unlock();
1811 }
1812 }
1813 }
1814
1815 // must be called with ThreadBase::mLock held
setEffectSuspended_l(const effect_uuid_t * type,bool suspend)1816 void AudioFlinger::EffectChain::setEffectSuspended_l(
1817 const effect_uuid_t *type, bool suspend)
1818 {
1819 sp<SuspendedEffectDesc> desc;
1820 // use effect type UUID timelow as key as there is no real risk of identical
1821 // timeLow fields among effect type UUIDs.
1822 ssize_t index = mSuspendedEffects.indexOfKey(type->timeLow);
1823 if (suspend) {
1824 if (index >= 0) {
1825 desc = mSuspendedEffects.valueAt(index);
1826 } else {
1827 desc = new SuspendedEffectDesc();
1828 desc->mType = *type;
1829 mSuspendedEffects.add(type->timeLow, desc);
1830 ALOGV("setEffectSuspended_l() add entry for %08x", type->timeLow);
1831 }
1832 if (desc->mRefCount++ == 0) {
1833 sp<EffectModule> effect = getEffectIfEnabled(type);
1834 if (effect != 0) {
1835 desc->mEffect = effect;
1836 effect->setSuspended(true);
1837 effect->setEnabled(false);
1838 }
1839 }
1840 } else {
1841 if (index < 0) {
1842 return;
1843 }
1844 desc = mSuspendedEffects.valueAt(index);
1845 if (desc->mRefCount <= 0) {
1846 ALOGW("setEffectSuspended_l() restore refcount should not be 0 %d", desc->mRefCount);
1847 desc->mRefCount = 1;
1848 }
1849 if (--desc->mRefCount == 0) {
1850 ALOGV("setEffectSuspended_l() remove entry for %08x", mSuspendedEffects.keyAt(index));
1851 if (desc->mEffect != 0) {
1852 sp<EffectModule> effect = desc->mEffect.promote();
1853 if (effect != 0) {
1854 effect->setSuspended(false);
1855 effect->lock();
1856 EffectHandle *handle = effect->controlHandle_l();
1857 if (handle != NULL && !handle->destroyed_l()) {
1858 effect->setEnabled_l(handle->enabled());
1859 }
1860 effect->unlock();
1861 }
1862 desc->mEffect.clear();
1863 }
1864 mSuspendedEffects.removeItemsAt(index);
1865 }
1866 }
1867 }
1868
1869 // must be called with ThreadBase::mLock held
setEffectSuspendedAll_l(bool suspend)1870 void AudioFlinger::EffectChain::setEffectSuspendedAll_l(bool suspend)
1871 {
1872 sp<SuspendedEffectDesc> desc;
1873
1874 ssize_t index = mSuspendedEffects.indexOfKey((int)kKeyForSuspendAll);
1875 if (suspend) {
1876 if (index >= 0) {
1877 desc = mSuspendedEffects.valueAt(index);
1878 } else {
1879 desc = new SuspendedEffectDesc();
1880 mSuspendedEffects.add((int)kKeyForSuspendAll, desc);
1881 ALOGV("setEffectSuspendedAll_l() add entry for 0");
1882 }
1883 if (desc->mRefCount++ == 0) {
1884 Vector< sp<EffectModule> > effects;
1885 getSuspendEligibleEffects(effects);
1886 for (size_t i = 0; i < effects.size(); i++) {
1887 setEffectSuspended_l(&effects[i]->desc().type, true);
1888 }
1889 }
1890 } else {
1891 if (index < 0) {
1892 return;
1893 }
1894 desc = mSuspendedEffects.valueAt(index);
1895 if (desc->mRefCount <= 0) {
1896 ALOGW("setEffectSuspendedAll_l() restore refcount should not be 0 %d", desc->mRefCount);
1897 desc->mRefCount = 1;
1898 }
1899 if (--desc->mRefCount == 0) {
1900 Vector<const effect_uuid_t *> types;
1901 for (size_t i = 0; i < mSuspendedEffects.size(); i++) {
1902 if (mSuspendedEffects.keyAt(i) == (int)kKeyForSuspendAll) {
1903 continue;
1904 }
1905 types.add(&mSuspendedEffects.valueAt(i)->mType);
1906 }
1907 for (size_t i = 0; i < types.size(); i++) {
1908 setEffectSuspended_l(types[i], false);
1909 }
1910 ALOGV("setEffectSuspendedAll_l() remove entry for %08x",
1911 mSuspendedEffects.keyAt(index));
1912 mSuspendedEffects.removeItem((int)kKeyForSuspendAll);
1913 }
1914 }
1915 }
1916
1917
1918 // The volume effect is used for automated tests only
1919 #ifndef OPENSL_ES_H_
1920 static const effect_uuid_t SL_IID_VOLUME_ = { 0x09e8ede0, 0xddde, 0x11db, 0xb4f6,
1921 { 0x00, 0x02, 0xa5, 0xd5, 0xc5, 0x1b } };
1922 const effect_uuid_t * const SL_IID_VOLUME = &SL_IID_VOLUME_;
1923 #endif //OPENSL_ES_H_
1924
isEffectEligibleForSuspend(const effect_descriptor_t & desc)1925 bool AudioFlinger::EffectChain::isEffectEligibleForSuspend(const effect_descriptor_t& desc)
1926 {
1927 // auxiliary effects and visualizer are never suspended on output mix
1928 if ((mSessionId == AUDIO_SESSION_OUTPUT_MIX) &&
1929 (((desc.flags & EFFECT_FLAG_TYPE_MASK) == EFFECT_FLAG_TYPE_AUXILIARY) ||
1930 (memcmp(&desc.type, SL_IID_VISUALIZATION, sizeof(effect_uuid_t)) == 0) ||
1931 (memcmp(&desc.type, SL_IID_VOLUME, sizeof(effect_uuid_t)) == 0))) {
1932 return false;
1933 }
1934 return true;
1935 }
1936
getSuspendEligibleEffects(Vector<sp<AudioFlinger::EffectModule>> & effects)1937 void AudioFlinger::EffectChain::getSuspendEligibleEffects(
1938 Vector< sp<AudioFlinger::EffectModule> > &effects)
1939 {
1940 effects.clear();
1941 for (size_t i = 0; i < mEffects.size(); i++) {
1942 if (isEffectEligibleForSuspend(mEffects[i]->desc())) {
1943 effects.add(mEffects[i]);
1944 }
1945 }
1946 }
1947
getEffectIfEnabled(const effect_uuid_t * type)1948 sp<AudioFlinger::EffectModule> AudioFlinger::EffectChain::getEffectIfEnabled(
1949 const effect_uuid_t *type)
1950 {
1951 sp<EffectModule> effect = getEffectFromType_l(type);
1952 return effect != 0 && effect->isEnabled() ? effect : 0;
1953 }
1954
checkSuspendOnEffectEnabled(const sp<EffectModule> & effect,bool enabled)1955 void AudioFlinger::EffectChain::checkSuspendOnEffectEnabled(const sp<EffectModule>& effect,
1956 bool enabled)
1957 {
1958 ssize_t index = mSuspendedEffects.indexOfKey(effect->desc().type.timeLow);
1959 if (enabled) {
1960 if (index < 0) {
1961 // if the effect is not suspend check if all effects are suspended
1962 index = mSuspendedEffects.indexOfKey((int)kKeyForSuspendAll);
1963 if (index < 0) {
1964 return;
1965 }
1966 if (!isEffectEligibleForSuspend(effect->desc())) {
1967 return;
1968 }
1969 setEffectSuspended_l(&effect->desc().type, enabled);
1970 index = mSuspendedEffects.indexOfKey(effect->desc().type.timeLow);
1971 if (index < 0) {
1972 ALOGW("checkSuspendOnEffectEnabled() Fx should be suspended here!");
1973 return;
1974 }
1975 }
1976 ALOGV("checkSuspendOnEffectEnabled() enable suspending fx %08x",
1977 effect->desc().type.timeLow);
1978 sp<SuspendedEffectDesc> desc = mSuspendedEffects.valueAt(index);
1979 // if effect is requested to suspended but was not yet enabled, supend it now.
1980 if (desc->mEffect == 0) {
1981 desc->mEffect = effect;
1982 effect->setEnabled(false);
1983 effect->setSuspended(true);
1984 }
1985 } else {
1986 if (index < 0) {
1987 return;
1988 }
1989 ALOGV("checkSuspendOnEffectEnabled() disable restoring fx %08x",
1990 effect->desc().type.timeLow);
1991 sp<SuspendedEffectDesc> desc = mSuspendedEffects.valueAt(index);
1992 desc->mEffect.clear();
1993 effect->setSuspended(false);
1994 }
1995 }
1996
isNonOffloadableEnabled()1997 bool AudioFlinger::EffectChain::isNonOffloadableEnabled()
1998 {
1999 Mutex::Autolock _l(mLock);
2000 size_t size = mEffects.size();
2001 for (size_t i = 0; i < size; i++) {
2002 if (mEffects[i]->isEnabled() && !mEffects[i]->isOffloadable()) {
2003 return true;
2004 }
2005 }
2006 return false;
2007 }
2008
setThread(const sp<ThreadBase> & thread)2009 void AudioFlinger::EffectChain::setThread(const sp<ThreadBase>& thread)
2010 {
2011 Mutex::Autolock _l(mLock);
2012 mThread = thread;
2013 for (size_t i = 0; i < mEffects.size(); i++) {
2014 mEffects[i]->setThread(thread);
2015 }
2016 }
2017
hasSoftwareEffect() const2018 bool AudioFlinger::EffectChain::hasSoftwareEffect() const
2019 {
2020 Mutex::Autolock _l(mLock);
2021 for (size_t i = 0; i < mEffects.size(); i++) {
2022 if (mEffects[i]->isImplementationSoftware()) {
2023 return true;
2024 }
2025 }
2026 return false;
2027 }
2028
2029 // isCompatibleWithThread_l() must be called with thread->mLock held
isCompatibleWithThread_l(const sp<ThreadBase> & thread) const2030 bool AudioFlinger::EffectChain::isCompatibleWithThread_l(const sp<ThreadBase>& thread) const
2031 {
2032 Mutex::Autolock _l(mLock);
2033 for (size_t i = 0; i < mEffects.size(); i++) {
2034 if (thread->checkEffectCompatibility_l(&(mEffects[i]->desc()), mSessionId) != NO_ERROR) {
2035 return false;
2036 }
2037 }
2038 return true;
2039 }
2040
2041 } // namespace android
2042