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1 /*
2 **
3 ** Copyright 2018, 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 //#define LOG_NDEBUG 0
19 #define LOG_TAG "MediaPlayer2AudioOutput"
20 #include <mediaplayer2/MediaPlayer2AudioOutput.h>
21 
22 #include <cutils/properties.h> // for property_get
23 #include <utils/Log.h>
24 
25 #include <media/stagefright/foundation/ADebug.h>
26 
27 namespace {
28 
29 const float kMaxRequiredSpeed = 8.0f; // for PCM tracks allow up to 8x speedup.
30 
31 } // anonymous namespace
32 
33 namespace android {
34 
35 // TODO: Find real cause of Audio/Video delay in PV framework and remove this workaround
36 /* static */ int MediaPlayer2AudioOutput::mMinBufferCount = 4;
37 /* static */ bool MediaPlayer2AudioOutput::mIsOnEmulator = false;
38 
dump(int fd,const Vector<String16> & args) const39 status_t MediaPlayer2AudioOutput::dump(int fd, const Vector<String16>& args) const {
40     const size_t SIZE = 256;
41     char buffer[SIZE];
42     String8 result;
43 
44     result.append(" MediaPlayer2AudioOutput\n");
45     snprintf(buffer, 255, "  volume(%f)\n", mVolume);
46     result.append(buffer);
47     snprintf(buffer, 255, "  msec per frame(%f), latency (%d)\n",
48             mMsecsPerFrame, (mJAudioTrack != nullptr) ? mJAudioTrack->latency() : -1);
49     result.append(buffer);
50     snprintf(buffer, 255, "  aux effect id(%d), send level (%f)\n",
51             mAuxEffectId, mSendLevel);
52     result.append(buffer);
53 
54     ::write(fd, result.string(), result.size());
55     if (mJAudioTrack != nullptr) {
56         mJAudioTrack->dump(fd, args);
57     }
58     return NO_ERROR;
59 }
60 
MediaPlayer2AudioOutput(int32_t sessionId,uid_t uid,int pid,const jobject attributes)61 MediaPlayer2AudioOutput::MediaPlayer2AudioOutput(int32_t sessionId, uid_t uid, int pid,
62         const jobject attributes)
63     : mCallback(nullptr),
64       mCallbackCookie(nullptr),
65       mCallbackData(nullptr),
66       mVolume(1.0),
67       mPlaybackRate(AUDIO_PLAYBACK_RATE_DEFAULT),
68       mSampleRateHz(0),
69       mMsecsPerFrame(0),
70       mFrameSize(0),
71       mSessionId(sessionId),
72       mUid(uid),
73       mPid(pid),
74       mSendLevel(0.0),
75       mAuxEffectId(0),
76       mFlags(AUDIO_OUTPUT_FLAG_NONE) {
77     ALOGV("MediaPlayer2AudioOutput(%d)", sessionId);
78 
79     if (attributes != nullptr) {
80         mAttributes = new JObjectHolder(attributes);
81     }
82 
83     setMinBufferCount();
84     mRoutingDelegates.clear();
85 }
86 
~MediaPlayer2AudioOutput()87 MediaPlayer2AudioOutput::~MediaPlayer2AudioOutput() {
88     close();
89     delete mCallbackData;
90 }
91 
92 //static
setMinBufferCount()93 void MediaPlayer2AudioOutput::setMinBufferCount() {
94     char value[PROPERTY_VALUE_MAX];
95     if (property_get("ro.kernel.qemu", value, 0)) {
96         mIsOnEmulator = true;
97         mMinBufferCount = 12;  // to prevent systematic buffer underrun for emulator
98     }
99 }
100 
101 // static
isOnEmulator()102 bool MediaPlayer2AudioOutput::isOnEmulator() {
103     setMinBufferCount();  // benign race wrt other threads
104     return mIsOnEmulator;
105 }
106 
107 // static
getMinBufferCount()108 int MediaPlayer2AudioOutput::getMinBufferCount() {
109     setMinBufferCount();  // benign race wrt other threads
110     return mMinBufferCount;
111 }
112 
bufferSize() const113 ssize_t MediaPlayer2AudioOutput::bufferSize() const {
114     Mutex::Autolock lock(mLock);
115     if (mJAudioTrack == nullptr) {
116         return NO_INIT;
117     }
118     return mJAudioTrack->frameCount() * mFrameSize;
119 }
120 
frameCount() const121 ssize_t MediaPlayer2AudioOutput::frameCount() const {
122     Mutex::Autolock lock(mLock);
123     if (mJAudioTrack == nullptr) {
124         return NO_INIT;
125     }
126     return mJAudioTrack->frameCount();
127 }
128 
channelCount() const129 ssize_t MediaPlayer2AudioOutput::channelCount() const {
130     Mutex::Autolock lock(mLock);
131     if (mJAudioTrack == nullptr) {
132         return NO_INIT;
133     }
134     return mJAudioTrack->channelCount();
135 }
136 
frameSize() const137 ssize_t MediaPlayer2AudioOutput::frameSize() const {
138     Mutex::Autolock lock(mLock);
139     if (mJAudioTrack == nullptr) {
140         return NO_INIT;
141     }
142     return mFrameSize;
143 }
144 
latency() const145 uint32_t MediaPlayer2AudioOutput::latency () const {
146     Mutex::Autolock lock(mLock);
147     if (mJAudioTrack == nullptr) {
148         return 0;
149     }
150     return mJAudioTrack->latency();
151 }
152 
msecsPerFrame() const153 float MediaPlayer2AudioOutput::msecsPerFrame() const {
154     Mutex::Autolock lock(mLock);
155     return mMsecsPerFrame;
156 }
157 
getPosition(uint32_t * position) const158 status_t MediaPlayer2AudioOutput::getPosition(uint32_t *position) const {
159     Mutex::Autolock lock(mLock);
160     if (mJAudioTrack == nullptr) {
161         return NO_INIT;
162     }
163     return mJAudioTrack->getPosition(position);
164 }
165 
getTimestamp(AudioTimestamp & ts) const166 status_t MediaPlayer2AudioOutput::getTimestamp(AudioTimestamp &ts) const {
167     Mutex::Autolock lock(mLock);
168     if (mJAudioTrack == nullptr) {
169         return NO_INIT;
170     }
171     return mJAudioTrack->getTimestamp(ts);
172 }
173 
174 // TODO: Remove unnecessary calls to getPlayedOutDurationUs()
175 // as it acquires locks and may query the audio driver.
176 //
177 // Some calls could conceivably retrieve extrapolated data instead of
178 // accessing getTimestamp() or getPosition() every time a data buffer with
179 // a media time is received.
180 //
181 // Calculate duration of played samples if played at normal rate (i.e., 1.0).
getPlayedOutDurationUs(int64_t nowUs) const182 int64_t MediaPlayer2AudioOutput::getPlayedOutDurationUs(int64_t nowUs) const {
183     Mutex::Autolock lock(mLock);
184     if (mJAudioTrack == nullptr || mSampleRateHz == 0) {
185         return 0;
186     }
187 
188     uint32_t numFramesPlayed;
189     int64_t numFramesPlayedAtUs;
190     AudioTimestamp ts;
191 
192     status_t res = mJAudioTrack->getTimestamp(ts);
193 
194     if (res == OK) {                 // case 1: mixing audio tracks and offloaded tracks.
195         numFramesPlayed = ts.mPosition;
196         numFramesPlayedAtUs = ts.mTime.tv_sec * 1000000LL + ts.mTime.tv_nsec / 1000;
197         //ALOGD("getTimestamp: OK %d %lld", numFramesPlayed, (long long)numFramesPlayedAtUs);
198     } else {                         // case 2: transitory state on start of a new track
199                                      // case 3: transitory at new track or audio fast tracks.
200         numFramesPlayed = 0;
201         numFramesPlayedAtUs = nowUs;
202         //ALOGD("getTimestamp: WOULD_BLOCK %d %lld",
203         //        numFramesPlayed, (long long)numFramesPlayedAtUs);
204     }
205 
206     // CHECK_EQ(numFramesPlayed & (1 << 31), 0);  // can't be negative until 12.4 hrs, test
207     // TODO: remove the (int32_t) casting below as it may overflow at 12.4 hours.
208     int64_t durationUs = (int64_t)((int32_t)numFramesPlayed * 1000000LL / mSampleRateHz)
209             + nowUs - numFramesPlayedAtUs;
210     if (durationUs < 0) {
211         // Occurs when numFramesPlayed position is very small and the following:
212         // (1) In case 1, the time nowUs is computed before getTimestamp() is called and
213         //     numFramesPlayedAtUs is greater than nowUs by time more than numFramesPlayed.
214         // (2) In case 3, using getPosition and adding mAudioSink->latency() to
215         //     numFramesPlayedAtUs, by a time amount greater than numFramesPlayed.
216         //
217         // Both of these are transitory conditions.
218         ALOGV("getPlayedOutDurationUs: negative duration %lld set to zero", (long long)durationUs);
219         durationUs = 0;
220     }
221     ALOGV("getPlayedOutDurationUs(%lld) nowUs(%lld) frames(%u) framesAt(%lld)",
222             (long long)durationUs, (long long)nowUs,
223             numFramesPlayed, (long long)numFramesPlayedAtUs);
224     return durationUs;
225 }
226 
getFramesWritten(uint32_t * frameswritten) const227 status_t MediaPlayer2AudioOutput::getFramesWritten(uint32_t *frameswritten) const {
228     Mutex::Autolock lock(mLock);
229     if (mJAudioTrack == nullptr) {
230         return NO_INIT;
231     }
232     ExtendedTimestamp ets;
233     status_t status = mJAudioTrack->getTimestamp(&ets);
234     if (status == OK || status == WOULD_BLOCK) {
235         *frameswritten = (uint32_t)ets.mPosition[ExtendedTimestamp::LOCATION_CLIENT];
236     }
237     return status;
238 }
239 
setAudioAttributes(const jobject attributes)240 void MediaPlayer2AudioOutput::setAudioAttributes(const jobject attributes) {
241     Mutex::Autolock lock(mLock);
242     mAttributes = (attributes == nullptr) ? nullptr : new JObjectHolder(attributes);
243 }
244 
getAudioStreamType() const245 audio_stream_type_t MediaPlayer2AudioOutput::getAudioStreamType() const {
246     ALOGV("getAudioStreamType");
247     Mutex::Autolock lock(mLock);
248     if (mJAudioTrack == nullptr) {
249         return AUDIO_STREAM_DEFAULT;
250     }
251     return mJAudioTrack->getAudioStreamType();
252 }
253 
close_l()254 void MediaPlayer2AudioOutput::close_l() {
255     mJAudioTrack.clear();
256 }
257 
open(uint32_t sampleRate,int channelCount,audio_channel_mask_t channelMask,audio_format_t format,AudioCallback cb,void * cookie,audio_output_flags_t flags,const audio_offload_info_t * offloadInfo,uint32_t suggestedFrameCount)258 status_t MediaPlayer2AudioOutput::open(
259         uint32_t sampleRate, int channelCount, audio_channel_mask_t channelMask,
260         audio_format_t format,
261         AudioCallback cb, void *cookie,
262         audio_output_flags_t flags,
263         const audio_offload_info_t *offloadInfo,
264         uint32_t suggestedFrameCount) {
265     ALOGV("open(%u, %d, 0x%x, 0x%x, %d 0x%x)", sampleRate, channelCount, channelMask,
266                 format, mSessionId, flags);
267 
268     // offloading is only supported in callback mode for now.
269     // offloadInfo must be present if offload flag is set
270     if (((flags & AUDIO_OUTPUT_FLAG_COMPRESS_OFFLOAD) != 0) &&
271             ((cb == nullptr) || (offloadInfo == nullptr))) {
272         return BAD_VALUE;
273     }
274 
275     // compute frame count for the AudioTrack internal buffer
276     const size_t frameCount =
277            ((flags & AUDIO_OUTPUT_FLAG_COMPRESS_OFFLOAD) != 0) ? 0 : suggestedFrameCount;
278 
279     if (channelMask == CHANNEL_MASK_USE_CHANNEL_ORDER) {
280         channelMask = audio_channel_out_mask_from_count(channelCount);
281         if (0 == channelMask) {
282             ALOGE("open() error, can\'t derive mask for %d audio channels", channelCount);
283             return NO_INIT;
284         }
285     }
286 
287     Mutex::Autolock lock(mLock);
288     mCallback = cb;
289     mCallbackCookie = cookie;
290 
291     sp<JAudioTrack> jT;
292     CallbackData *newcbd = nullptr;
293 
294     ALOGV("creating new JAudioTrack");
295 
296     if (mCallback != nullptr) {
297         newcbd = new CallbackData(this);
298         jT = new JAudioTrack(
299                  sampleRate,
300                  format,
301                  channelMask,
302                  CallbackWrapper,
303                  newcbd,
304                  frameCount,
305                  mSessionId,
306                  mAttributes != nullptr ? mAttributes->getJObject() : nullptr,
307                  1.0f);  // default value for maxRequiredSpeed
308     } else {
309         // TODO: Due to buffer memory concerns, we use a max target playback speed
310         // based on mPlaybackRate at the time of open (instead of kMaxRequiredSpeed),
311         // also clamping the target speed to 1.0 <= targetSpeed <= kMaxRequiredSpeed.
312         const float targetSpeed =
313                 std::min(std::max(mPlaybackRate.mSpeed, 1.0f), kMaxRequiredSpeed);
314         ALOGW_IF(targetSpeed != mPlaybackRate.mSpeed,
315                 "track target speed:%f clamped from playback speed:%f",
316                 targetSpeed, mPlaybackRate.mSpeed);
317         jT = new JAudioTrack(
318                  sampleRate,
319                  format,
320                  channelMask,
321                  nullptr,
322                  nullptr,
323                  frameCount,
324                  mSessionId,
325                  mAttributes != nullptr ? mAttributes->getJObject() : nullptr,
326                  targetSpeed);
327     }
328 
329     if (jT == 0) {
330         ALOGE("Unable to create audio track");
331         delete newcbd;
332         // t goes out of scope, so reference count drops to zero
333         return NO_INIT;
334     }
335 
336     CHECK((jT != nullptr) && ((mCallback == nullptr) || (newcbd != nullptr)));
337 
338     mCallbackData = newcbd;
339     ALOGV("setVolume");
340     jT->setVolume(mVolume);
341 
342     mSampleRateHz = sampleRate;
343     mFlags = flags;
344     mMsecsPerFrame = 1E3f / (mPlaybackRate.mSpeed * sampleRate);
345     mFrameSize = jT->frameSize();
346     mJAudioTrack = jT;
347 
348     return updateTrack_l();
349 }
350 
updateTrack_l()351 status_t MediaPlayer2AudioOutput::updateTrack_l() {
352     if (mJAudioTrack == nullptr) {
353         return NO_ERROR;
354     }
355 
356     status_t res = NO_ERROR;
357     // Note some output devices may give us a direct track even though we don't specify it.
358     // Example: Line application b/17459982.
359     if ((mJAudioTrack->getFlags()
360             & (AUDIO_OUTPUT_FLAG_COMPRESS_OFFLOAD | AUDIO_OUTPUT_FLAG_DIRECT)) == 0) {
361         res = mJAudioTrack->setPlaybackRate(mPlaybackRate);
362         if (res == NO_ERROR) {
363             mJAudioTrack->setAuxEffectSendLevel(mSendLevel);
364             res = mJAudioTrack->attachAuxEffect(mAuxEffectId);
365         }
366     }
367     if (mPreferredDevice != nullptr) {
368         mJAudioTrack->setPreferredDevice(mPreferredDevice->getJObject());
369     }
370 
371     mJAudioTrack->registerRoutingDelegates(mRoutingDelegates);
372 
373     ALOGV("updateTrack_l() DONE status %d", res);
374     return res;
375 }
376 
start()377 status_t MediaPlayer2AudioOutput::start() {
378     ALOGV("start");
379     Mutex::Autolock lock(mLock);
380     if (mCallbackData != nullptr) {
381         mCallbackData->endTrackSwitch();
382     }
383     if (mJAudioTrack != nullptr) {
384         mJAudioTrack->setVolume(mVolume);
385         mJAudioTrack->setAuxEffectSendLevel(mSendLevel);
386         status_t status = mJAudioTrack->start();
387         return status;
388     }
389     return NO_INIT;
390 }
391 
write(const void * buffer,size_t size,bool blocking)392 ssize_t MediaPlayer2AudioOutput::write(const void* buffer, size_t size, bool blocking) {
393     Mutex::Autolock lock(mLock);
394     LOG_ALWAYS_FATAL_IF(mCallback != nullptr, "Don't call write if supplying a callback.");
395 
396     //ALOGV("write(%p, %u)", buffer, size);
397     if (mJAudioTrack != nullptr) {
398         return mJAudioTrack->write(buffer, size, blocking);
399     }
400     return NO_INIT;
401 }
402 
stop()403 void MediaPlayer2AudioOutput::stop() {
404     ALOGV("stop");
405     Mutex::Autolock lock(mLock);
406     if (mJAudioTrack != nullptr) {
407         mJAudioTrack->stop();
408     }
409 }
410 
flush()411 void MediaPlayer2AudioOutput::flush() {
412     ALOGV("flush");
413     Mutex::Autolock lock(mLock);
414     if (mJAudioTrack != nullptr) {
415         mJAudioTrack->flush();
416     }
417 }
418 
pause()419 void MediaPlayer2AudioOutput::pause() {
420     ALOGV("pause");
421     Mutex::Autolock lock(mLock);
422     if (mJAudioTrack != nullptr) {
423         mJAudioTrack->pause();
424     }
425 }
426 
close()427 void MediaPlayer2AudioOutput::close() {
428     ALOGV("close");
429     sp<JAudioTrack> track;
430     {
431         Mutex::Autolock lock(mLock);
432         track = mJAudioTrack;
433         close_l(); // clears mJAudioTrack
434     }
435     // destruction of the track occurs outside of mutex.
436 }
437 
setVolume(float volume)438 void MediaPlayer2AudioOutput::setVolume(float volume) {
439     ALOGV("setVolume(%f)", volume);
440     Mutex::Autolock lock(mLock);
441     mVolume = volume;
442     if (mJAudioTrack != nullptr) {
443         mJAudioTrack->setVolume(volume);
444     }
445 }
446 
setPlaybackRate(const AudioPlaybackRate & rate)447 status_t MediaPlayer2AudioOutput::setPlaybackRate(const AudioPlaybackRate &rate) {
448     ALOGV("setPlaybackRate(%f %f %d %d)",
449                 rate.mSpeed, rate.mPitch, rate.mFallbackMode, rate.mStretchMode);
450     Mutex::Autolock lock(mLock);
451     if (mJAudioTrack == 0) {
452         // remember rate so that we can set it when the track is opened
453         mPlaybackRate = rate;
454         return OK;
455     }
456     status_t res = mJAudioTrack->setPlaybackRate(rate);
457     if (res != NO_ERROR) {
458         return res;
459     }
460     // rate.mSpeed is always greater than 0 if setPlaybackRate succeeded
461     CHECK_GT(rate.mSpeed, 0.f);
462     mPlaybackRate = rate;
463     if (mSampleRateHz != 0) {
464         mMsecsPerFrame = 1E3f / (rate.mSpeed * mSampleRateHz);
465     }
466     return res;
467 }
468 
getPlaybackRate(AudioPlaybackRate * rate)469 status_t MediaPlayer2AudioOutput::getPlaybackRate(AudioPlaybackRate *rate) {
470     ALOGV("getPlaybackRate");
471     Mutex::Autolock lock(mLock);
472     if (mJAudioTrack == 0) {
473         return NO_INIT;
474     }
475     *rate = mJAudioTrack->getPlaybackRate();
476     return NO_ERROR;
477 }
478 
setAuxEffectSendLevel(float level)479 status_t MediaPlayer2AudioOutput::setAuxEffectSendLevel(float level) {
480     ALOGV("setAuxEffectSendLevel(%f)", level);
481     Mutex::Autolock lock(mLock);
482     mSendLevel = level;
483     if (mJAudioTrack != nullptr) {
484         return mJAudioTrack->setAuxEffectSendLevel(level);
485     }
486     return NO_ERROR;
487 }
488 
attachAuxEffect(int effectId)489 status_t MediaPlayer2AudioOutput::attachAuxEffect(int effectId) {
490     ALOGV("attachAuxEffect(%d)", effectId);
491     Mutex::Autolock lock(mLock);
492     mAuxEffectId = effectId;
493     if (mJAudioTrack != nullptr) {
494         return mJAudioTrack->attachAuxEffect(effectId);
495     }
496     return NO_ERROR;
497 }
498 
setPreferredDevice(jobject device)499 status_t MediaPlayer2AudioOutput::setPreferredDevice(jobject device) {
500     ALOGV("setPreferredDevice");
501     Mutex::Autolock lock(mLock);
502     status_t ret = NO_ERROR;
503     if (mJAudioTrack != nullptr) {
504         ret = mJAudioTrack->setPreferredDevice(device);
505     }
506     if (ret == NO_ERROR) {
507         mPreferredDevice = new JObjectHolder(device);
508     }
509     return ret;
510 }
511 
getRoutedDevice()512 jobject MediaPlayer2AudioOutput::getRoutedDevice() {
513     ALOGV("getRoutedDevice");
514     Mutex::Autolock lock(mLock);
515     if (mJAudioTrack != nullptr) {
516         return mJAudioTrack->getRoutedDevice();
517     }
518     return nullptr;
519 }
520 
addAudioDeviceCallback(jobject jRoutingDelegate)521 status_t MediaPlayer2AudioOutput::addAudioDeviceCallback(jobject jRoutingDelegate) {
522     ALOGV("addAudioDeviceCallback");
523     Mutex::Autolock lock(mLock);
524     jobject listener = JAudioTrack::getListener(jRoutingDelegate);
525     if (JAudioTrack::findByKey(mRoutingDelegates, listener) == nullptr) {
526         sp<JObjectHolder> listenerHolder = new JObjectHolder(listener);
527         jobject handler = JAudioTrack::getHandler(jRoutingDelegate);
528         sp<JObjectHolder> routingDelegateHolder = new JObjectHolder(jRoutingDelegate);
529 
530         mRoutingDelegates.push_back(std::pair<sp<JObjectHolder>, sp<JObjectHolder>>(
531                 listenerHolder, routingDelegateHolder));
532 
533         if (mJAudioTrack != nullptr) {
534             return mJAudioTrack->addAudioDeviceCallback(
535                     routingDelegateHolder->getJObject(), handler);
536         }
537     }
538     return NO_ERROR;
539 }
540 
removeAudioDeviceCallback(jobject listener)541 status_t MediaPlayer2AudioOutput::removeAudioDeviceCallback(jobject listener) {
542     ALOGV("removeAudioDeviceCallback");
543     Mutex::Autolock lock(mLock);
544     jobject routingDelegate = nullptr;
545     if ((routingDelegate = JAudioTrack::findByKey(mRoutingDelegates, listener)) != nullptr) {
546         if (mJAudioTrack != nullptr) {
547             mJAudioTrack->removeAudioDeviceCallback(routingDelegate);
548         }
549         JAudioTrack::eraseByKey(mRoutingDelegates, listener);
550     }
551     return NO_ERROR;
552 }
553 
554 // static
CallbackWrapper(int event,void * cookie,void * info)555 void MediaPlayer2AudioOutput::CallbackWrapper(
556         int event, void *cookie, void *info) {
557     //ALOGV("callbackwrapper");
558     CallbackData *data = (CallbackData*)cookie;
559     // lock to ensure we aren't caught in the middle of a track switch.
560     data->lock();
561     MediaPlayer2AudioOutput *me = data->getOutput();
562     JAudioTrack::Buffer *buffer = (JAudioTrack::Buffer *)info;
563     if (me == nullptr) {
564         // no output set, likely because the track was scheduled to be reused
565         // by another player, but the format turned out to be incompatible.
566         data->unlock();
567         if (buffer != nullptr) {
568             buffer->mSize = 0;
569         }
570         return;
571     }
572 
573     switch(event) {
574     case JAudioTrack::EVENT_MORE_DATA: {
575         size_t actualSize = (*me->mCallback)(
576                 me, buffer->mData, buffer->mSize, me->mCallbackCookie,
577                 CB_EVENT_FILL_BUFFER);
578 
579         // Log when no data is returned from the callback.
580         // (1) We may have no data (especially with network streaming sources).
581         // (2) We may have reached the EOS and the audio track is not stopped yet.
582         // Note that AwesomePlayer/AudioPlayer will only return zero size when it reaches the EOS.
583         // NuPlayer2Renderer will return zero when it doesn't have data (it doesn't block to fill).
584         //
585         // This is a benign busy-wait, with the next data request generated 10 ms or more later;
586         // nevertheless for power reasons, we don't want to see too many of these.
587 
588         ALOGV_IF(actualSize == 0 && buffer->mSize > 0, "callbackwrapper: empty buffer returned");
589 
590         buffer->mSize = actualSize;
591         } break;
592 
593     case JAudioTrack::EVENT_STREAM_END:
594         // currently only occurs for offloaded callbacks
595         ALOGV("callbackwrapper: deliver EVENT_STREAM_END");
596         (*me->mCallback)(me, nullptr /* buffer */, 0 /* size */,
597                 me->mCallbackCookie, CB_EVENT_STREAM_END);
598         break;
599 
600     case JAudioTrack::EVENT_NEW_IAUDIOTRACK :
601         ALOGV("callbackwrapper: deliver EVENT_TEAR_DOWN");
602         (*me->mCallback)(me,  nullptr /* buffer */, 0 /* size */,
603                 me->mCallbackCookie, CB_EVENT_TEAR_DOWN);
604         break;
605 
606     case JAudioTrack::EVENT_UNDERRUN:
607         // This occurs when there is no data available, typically
608         // when there is a failure to supply data to the AudioTrack.  It can also
609         // occur in non-offloaded mode when the audio device comes out of standby.
610         //
611         // If an AudioTrack underruns it outputs silence. Since this happens suddenly
612         // it may sound like an audible pop or glitch.
613         //
614         // The underrun event is sent once per track underrun; the condition is reset
615         // when more data is sent to the AudioTrack.
616         ALOGD("callbackwrapper: EVENT_UNDERRUN (discarded)");
617         break;
618 
619     default:
620         ALOGE("received unknown event type: %d inside CallbackWrapper !", event);
621     }
622 
623     data->unlock();
624 }
625 
getSessionId() const626 int32_t MediaPlayer2AudioOutput::getSessionId() const {
627     Mutex::Autolock lock(mLock);
628     return mSessionId;
629 }
630 
setSessionId(const int32_t sessionId)631 void MediaPlayer2AudioOutput::setSessionId(const int32_t sessionId) {
632     Mutex::Autolock lock(mLock);
633     mSessionId = sessionId;
634 }
635 
getSampleRate() const636 uint32_t MediaPlayer2AudioOutput::getSampleRate() const {
637     Mutex::Autolock lock(mLock);
638     if (mJAudioTrack == 0) {
639         return 0;
640     }
641     return mJAudioTrack->getSampleRate();
642 }
643 
getBufferDurationInUs() const644 int64_t MediaPlayer2AudioOutput::getBufferDurationInUs() const {
645     Mutex::Autolock lock(mLock);
646     if (mJAudioTrack == 0) {
647         return 0;
648     }
649     int64_t duration;
650     if (mJAudioTrack->getBufferDurationInUs(&duration) != OK) {
651         return 0;
652     }
653     return duration;
654 }
655 
656 } // namespace android
657