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Wei Jia53692fa2017-12-11 10:33:46 -08001/*
2**
3** Copyright 2017, 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// Proxy for media player implementations
19
20//#define LOG_NDEBUG 0
21#define LOG_TAG "MediaPlayer2Manager"
22#include <utils/Log.h>
23
24#include <sys/types.h>
25#include <sys/stat.h>
26#include <sys/time.h>
27#include <dirent.h>
28#include <unistd.h>
29
30#include <string.h>
31
32#include <cutils/atomic.h>
33#include <cutils/properties.h> // for property_get
34
35#include <utils/misc.h>
36
37#include <binder/IPCThreadState.h>
38#include <binder/IServiceManager.h>
39#include <binder/MemoryHeapBase.h>
40#include <binder/MemoryBase.h>
Wei Jia53692fa2017-12-11 10:33:46 -080041#include <utils/Errors.h> // for status_t
42#include <utils/String8.h>
43#include <utils/SystemClock.h>
44#include <utils/Timers.h>
45#include <utils/Vector.h>
46
47#include <media/AudioPolicyHelper.h>
48#include <media/MediaHTTPService.h>
49#include <media/MediaPlayer2EngineClient.h>
50#include <media/MediaPlayer2Interface.h>
51#include <media/Metadata.h>
52#include <media/AudioTrack.h>
53#include <media/MemoryLeakTrackUtil.h>
Wei Jia28288fb2017-12-15 13:45:29 -080054#include <media/NdkWrapper.h>
55
Wei Jia53692fa2017-12-11 10:33:46 -080056#include <media/stagefright/InterfaceUtils.h>
57#include <media/stagefright/MediaCodecList.h>
58#include <media/stagefright/MediaErrors.h>
59#include <media/stagefright/Utils.h>
60#include <media/stagefright/foundation/ADebug.h>
61#include <media/stagefright/foundation/ALooperRoster.h>
62#include <media/stagefright/SurfaceUtils.h>
63#include <mediautils/BatteryNotifier.h>
64
65#include <memunreachable/memunreachable.h>
66#include <system/audio.h>
Wei Jia4049f132018-01-22 10:37:31 -080067#include <system/window.h>
Wei Jia53692fa2017-12-11 10:33:46 -080068
69#include <private/android_filesystem_config.h>
70
Wei Jia678c54c2018-01-29 18:30:07 -080071#include <nuplayer2/NuPlayer2Driver.h>
Wei Jia53692fa2017-12-11 10:33:46 -080072#include "MediaPlayer2Manager.h"
Wei Jia53692fa2017-12-11 10:33:46 -080073
74static const int kDumpLockRetries = 50;
75static const int kDumpLockSleepUs = 20000;
76
77namespace {
78using android::media::Metadata;
79using android::status_t;
80using android::OK;
81using android::BAD_VALUE;
82using android::NOT_ENOUGH_DATA;
83using android::Parcel;
84using android::media::VolumeShaper;
85
86// Max number of entries in the filter.
87const int kMaxFilterSize = 64; // I pulled that out of thin air.
88
89const float kMaxRequiredSpeed = 8.0f; // for PCM tracks allow up to 8x speedup.
90
91// FIXME: Move all the metadata related function in the Metadata.cpp
92
93
94// Unmarshall a filter from a Parcel.
95// Filter format in a parcel:
96//
97// 0 1 2 3 4 5 6 7 8 9 0 1 2 3 4 5 6 7 8 9 0 1 2 3 4 5 6 7 8 9 0 1
98// +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
99// | number of entries (n) |
100// +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
101// | metadata type 1 |
102// +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
103// | metadata type 2 |
104// +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
105// ....
106// +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
107// | metadata type n |
108// +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
109//
110// @param p Parcel that should start with a filter.
111// @param[out] filter On exit contains the list of metadata type to be
112// filtered.
113// @param[out] status On exit contains the status code to be returned.
114// @return true if the parcel starts with a valid filter.
115bool unmarshallFilter(const Parcel& p,
116 Metadata::Filter *filter,
117 status_t *status)
118{
119 int32_t val;
120 if (p.readInt32(&val) != OK)
121 {
122 ALOGE("Failed to read filter's length");
123 *status = NOT_ENOUGH_DATA;
124 return false;
125 }
126
127 if( val > kMaxFilterSize || val < 0)
128 {
129 ALOGE("Invalid filter len %d", val);
130 *status = BAD_VALUE;
131 return false;
132 }
133
134 const size_t num = val;
135
136 filter->clear();
137 filter->setCapacity(num);
138
139 size_t size = num * sizeof(Metadata::Type);
140
141
142 if (p.dataAvail() < size)
143 {
144 ALOGE("Filter too short expected %zu but got %zu", size, p.dataAvail());
145 *status = NOT_ENOUGH_DATA;
146 return false;
147 }
148
149 const Metadata::Type *data =
150 static_cast<const Metadata::Type*>(p.readInplace(size));
151
152 if (NULL == data)
153 {
154 ALOGE("Filter had no data");
155 *status = BAD_VALUE;
156 return false;
157 }
158
159 // TODO: The stl impl of vector would be more efficient here
160 // because it degenerates into a memcpy on pod types. Try to
161 // replace later or use stl::set.
162 for (size_t i = 0; i < num; ++i)
163 {
164 filter->add(*data);
165 ++data;
166 }
167 *status = OK;
168 return true;
169}
170
171// @param filter Of metadata type.
172// @param val To be searched.
173// @return true if a match was found.
174bool findMetadata(const Metadata::Filter& filter, const int32_t val)
175{
176 // Deal with empty and ANY right away
177 if (filter.isEmpty()) return false;
178 if (filter[0] == Metadata::kAny) return true;
179
180 return filter.indexOf(val) >= 0;
181}
182
183} // anonymous namespace
184
185
186namespace {
187using android::Parcel;
188using android::String16;
189
190// marshalling tag indicating flattened utf16 tags
191// keep in sync with frameworks/base/media/java/android/media/AudioAttributes.java
192const int32_t kAudioAttributesMarshallTagFlattenTags = 1;
193
194// Audio attributes format in a parcel:
195//
196// 0 1 2 3 4 5 6 7 8 9 0 1 2 3 4 5 6 7 8 9 0 1 2 3 4 5 6 7 8 9 0 1
197// +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
198// | usage |
199// +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
200// | content_type |
201// +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
202// | source |
203// +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
204// | flags |
205// +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
206// | kAudioAttributesMarshallTagFlattenTags | // ignore tags if not found
207// +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
208// | flattened tags in UTF16 |
209// | ... |
210// +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
211//
212// @param p Parcel that contains audio attributes.
213// @param[out] attributes On exit points to an initialized audio_attributes_t structure
214// @param[out] status On exit contains the status code to be returned.
215void unmarshallAudioAttributes(const Parcel& parcel, audio_attributes_t *attributes)
216{
217 attributes->usage = (audio_usage_t) parcel.readInt32();
218 attributes->content_type = (audio_content_type_t) parcel.readInt32();
219 attributes->source = (audio_source_t) parcel.readInt32();
220 attributes->flags = (audio_flags_mask_t) parcel.readInt32();
221 const bool hasFlattenedTag = (parcel.readInt32() == kAudioAttributesMarshallTagFlattenTags);
222 if (hasFlattenedTag) {
223 // the tags are UTF16, convert to UTF8
224 String16 tags = parcel.readString16();
225 ssize_t realTagSize = utf16_to_utf8_length(tags.string(), tags.size());
226 if (realTagSize <= 0) {
227 strcpy(attributes->tags, "");
228 } else {
229 // copy the flattened string into the attributes as the destination for the conversion:
230 // copying array size -1, array for tags was calloc'd, no need to NULL-terminate it
231 size_t tagSize = realTagSize > AUDIO_ATTRIBUTES_TAGS_MAX_SIZE - 1 ?
232 AUDIO_ATTRIBUTES_TAGS_MAX_SIZE - 1 : realTagSize;
233 utf16_to_utf8(tags.string(), tagSize, attributes->tags,
234 sizeof(attributes->tags) / sizeof(attributes->tags[0]));
235 }
236 } else {
237 ALOGE("unmarshallAudioAttributes() received unflattened tags, ignoring tag values");
238 strcpy(attributes->tags, "");
239 }
240}
241} // anonymous namespace
242
243
244namespace android {
245
246extern ALooperRoster gLooperRoster;
247
248MediaPlayer2Manager gMediaPlayer2Manager;
249
250static bool checkPermission(const char* permissionString) {
251 if (getpid() == IPCThreadState::self()->getCallingPid()) return true;
252 bool ok = checkCallingPermission(String16(permissionString));
253 if (!ok) ALOGE("Request requires %s", permissionString);
254 return ok;
255}
256
257// TODO: Find real cause of Audio/Video delay in PV framework and remove this workaround
258/* static */ int MediaPlayer2Manager::AudioOutput::mMinBufferCount = 4;
259/* static */ bool MediaPlayer2Manager::AudioOutput::mIsOnEmulator = false;
260
261// static
262MediaPlayer2Manager& MediaPlayer2Manager::get() {
263 return gMediaPlayer2Manager;
264}
265
266MediaPlayer2Manager::MediaPlayer2Manager() {
267 ALOGV("MediaPlayer2Manager created");
268 // TODO: remove all unnecessary pid/uid handling.
269 mPid = IPCThreadState::self()->getCallingPid();
270 mUid = IPCThreadState::self()->getCallingUid();
271 mNextConnId = 1;
Wei Jia53692fa2017-12-11 10:33:46 -0800272}
273
274MediaPlayer2Manager::~MediaPlayer2Manager() {
275 ALOGV("MediaPlayer2Manager destroyed");
276}
277
278sp<MediaPlayer2Engine> MediaPlayer2Manager::create(
279 const sp<MediaPlayer2EngineClient>& client,
280 audio_session_t audioSessionId)
281{
282 int32_t connId = android_atomic_inc(&mNextConnId);
283
284 sp<Client> c = new Client(
285 mPid, connId, client, audioSessionId, mUid);
286
287 ALOGV("Create new client(%d) from pid %d, uid %d, ", connId, mPid, mUid);
288
289 wp<Client> w = c;
290 {
291 Mutex::Autolock lock(mLock);
292 mClients.add(w);
293 }
294 return c;
295}
296
297status_t MediaPlayer2Manager::AudioOutput::dump(int fd, const Vector<String16>& args) const
298{
299 const size_t SIZE = 256;
300 char buffer[SIZE];
301 String8 result;
302
303 result.append(" AudioOutput\n");
304 snprintf(buffer, 255, " stream type(%d), left - right volume(%f, %f)\n",
305 mStreamType, mLeftVolume, mRightVolume);
306 result.append(buffer);
307 snprintf(buffer, 255, " msec per frame(%f), latency (%d)\n",
308 mMsecsPerFrame, (mTrack != 0) ? mTrack->latency() : -1);
309 result.append(buffer);
310 snprintf(buffer, 255, " aux effect id(%d), send level (%f)\n",
311 mAuxEffectId, mSendLevel);
312 result.append(buffer);
313
314 ::write(fd, result.string(), result.size());
315 if (mTrack != 0) {
316 mTrack->dump(fd, args);
317 }
318 return NO_ERROR;
319}
320
321status_t MediaPlayer2Manager::Client::dump(int fd, const Vector<String16>& args)
322{
323 const size_t SIZE = 256;
324 char buffer[SIZE];
325 String8 result;
326 result.append(" Client\n");
327 snprintf(buffer, 255, " pid(%d), connId(%d), status(%d), looping(%s)\n",
328 mPid, mConnId, mStatus, mLoop?"true": "false");
329 result.append(buffer);
330
Wei Jia33abcc72018-01-30 09:47:38 -0800331 sp<MediaPlayer2Interface> p;
Wei Jia53692fa2017-12-11 10:33:46 -0800332 sp<AudioOutput> audioOutput;
333 bool locked = false;
334 for (int i = 0; i < kDumpLockRetries; ++i) {
335 if (mLock.tryLock() == NO_ERROR) {
336 locked = true;
337 break;
338 }
339 usleep(kDumpLockSleepUs);
340 }
341
342 if (locked) {
343 p = mPlayer;
344 audioOutput = mAudioOutput;
345 mLock.unlock();
346 } else {
347 result.append(" lock is taken, no dump from player and audio output\n");
348 }
349 write(fd, result.string(), result.size());
350
351 if (p != NULL) {
352 p->dump(fd, args);
353 }
354 if (audioOutput != 0) {
355 audioOutput->dump(fd, args);
356 }
357 write(fd, "\n", 1);
358 return NO_ERROR;
359}
360
361/**
362 * The only arguments this understands right now are -c, -von and -voff,
363 * which are parsed by ALooperRoster::dump()
364 */
365status_t MediaPlayer2Manager::dump(int fd, const Vector<String16>& args)
366{
367 const size_t SIZE = 256;
368 char buffer[SIZE];
369 String8 result;
370 SortedVector< sp<Client> > clients; //to serialise the mutex unlock & client destruction.
371
372 if (checkCallingPermission(String16("android.permission.DUMP")) == false) {
373 snprintf(buffer, SIZE, "Permission Denial: "
374 "can't dump MediaPlayer2Manager from pid=%d, uid=%d\n",
375 mPid, mUid);
376 result.append(buffer);
377 } else {
378 Mutex::Autolock lock(mLock);
379 for (int i = 0, n = mClients.size(); i < n; ++i) {
380 sp<Client> c = mClients[i].promote();
381 if (c != 0) c->dump(fd, args);
382 clients.add(c);
383 }
384
385 result.append(" Files opened and/or mapped:\n");
386 snprintf(buffer, SIZE, "/proc/%d/maps", getpid());
387 FILE *f = fopen(buffer, "r");
388 if (f) {
389 while (!feof(f)) {
390 fgets(buffer, SIZE, f);
391 if (strstr(buffer, " /storage/") ||
392 strstr(buffer, " /system/sounds/") ||
393 strstr(buffer, " /data/") ||
394 strstr(buffer, " /system/media/")) {
395 result.append(" ");
396 result.append(buffer);
397 }
398 }
399 fclose(f);
400 } else {
401 result.append("couldn't open ");
402 result.append(buffer);
403 result.append("\n");
404 }
405
406 snprintf(buffer, SIZE, "/proc/%d/fd", getpid());
407 DIR *d = opendir(buffer);
408 if (d) {
409 struct dirent *ent;
410 while((ent = readdir(d)) != NULL) {
411 if (strcmp(ent->d_name,".") && strcmp(ent->d_name,"..")) {
412 snprintf(buffer, SIZE, "/proc/%d/fd/%s", getpid(), ent->d_name);
413 struct stat s;
414 if (lstat(buffer, &s) == 0) {
415 if ((s.st_mode & S_IFMT) == S_IFLNK) {
416 char linkto[256];
417 int len = readlink(buffer, linkto, sizeof(linkto));
418 if(len > 0) {
419 if(len > 255) {
420 linkto[252] = '.';
421 linkto[253] = '.';
422 linkto[254] = '.';
423 linkto[255] = 0;
424 } else {
425 linkto[len] = 0;
426 }
427 if (strstr(linkto, "/storage/") == linkto ||
428 strstr(linkto, "/system/sounds/") == linkto ||
429 strstr(linkto, "/data/") == linkto ||
430 strstr(linkto, "/system/media/") == linkto) {
431 result.append(" ");
432 result.append(buffer);
433 result.append(" -> ");
434 result.append(linkto);
435 result.append("\n");
436 }
437 }
438 } else {
439 result.append(" unexpected type for ");
440 result.append(buffer);
441 result.append("\n");
442 }
443 }
444 }
445 }
446 closedir(d);
447 } else {
448 result.append("couldn't open ");
449 result.append(buffer);
450 result.append("\n");
451 }
452
453 gLooperRoster.dump(fd, args);
454
455 bool dumpMem = false;
456 bool unreachableMemory = false;
457 for (size_t i = 0; i < args.size(); i++) {
458 if (args[i] == String16("-m")) {
459 dumpMem = true;
460 } else if (args[i] == String16("--unreachable")) {
461 unreachableMemory = true;
462 }
463 }
464 if (dumpMem) {
465 result.append("\nDumping memory:\n");
466 std::string s = dumpMemoryAddresses(100 /* limit */);
467 result.append(s.c_str(), s.size());
468 }
469 if (unreachableMemory) {
470 result.append("\nDumping unreachable memory:\n");
471 // TODO - should limit be an argument parameter?
Wei Jia4049f132018-01-22 10:37:31 -0800472 // TODO: enable GetUnreachableMemoryString if it's part of stable API
473 //std::string s = GetUnreachableMemoryString(true /* contents */, 10000 /* limit */);
474 //result.append(s.c_str(), s.size());
Wei Jia53692fa2017-12-11 10:33:46 -0800475 }
476 }
477 write(fd, result.string(), result.size());
478 return NO_ERROR;
479}
480
481void MediaPlayer2Manager::removeClient(const wp<Client>& client)
482{
483 Mutex::Autolock lock(mLock);
484 mClients.remove(client);
485}
486
487bool MediaPlayer2Manager::hasClient(wp<Client> client)
488{
489 Mutex::Autolock lock(mLock);
490 return mClients.indexOf(client) != NAME_NOT_FOUND;
491}
492
493MediaPlayer2Manager::Client::Client(
494 pid_t pid,
495 int32_t connId,
496 const sp<MediaPlayer2EngineClient>& client,
497 audio_session_t audioSessionId,
498 uid_t uid)
499{
500 ALOGV("Client(%d) constructor", connId);
501 mPid = pid;
502 mConnId = connId;
503 mClient = client;
504 mLoop = false;
505 mStatus = NO_INIT;
506 mAudioSessionId = audioSessionId;
507 mUid = uid;
508 mRetransmitEndpointValid = false;
509 mAudioAttributes = NULL;
510
511#if CALLBACK_ANTAGONIZER
512 ALOGD("create Antagonizer");
513 mAntagonizer = new Antagonizer(notify, this);
514#endif
515}
516
517MediaPlayer2Manager::Client::~Client()
518{
519 ALOGV("Client(%d) destructor pid = %d", mConnId, mPid);
520 mAudioOutput.clear();
521 wp<Client> client(this);
522 disconnect();
523 gMediaPlayer2Manager.removeClient(client);
524 if (mAudioAttributes != NULL) {
525 free(mAudioAttributes);
526 }
527 mAudioDeviceUpdatedListener.clear();
528}
529
530void MediaPlayer2Manager::Client::disconnect()
531{
532 ALOGV("disconnect(%d) from pid %d", mConnId, mPid);
533 // grab local reference and clear main reference to prevent future
534 // access to object
Wei Jia33abcc72018-01-30 09:47:38 -0800535 sp<MediaPlayer2Interface> p;
Wei Jia53692fa2017-12-11 10:33:46 -0800536 {
537 Mutex::Autolock l(mLock);
538 p = mPlayer;
539 mClient.clear();
540 mPlayer.clear();
541 }
542
543 // clear the notification to prevent callbacks to dead client
544 // and reset the player. We assume the player will serialize
545 // access to itself if necessary.
546 if (p != 0) {
547 p->setNotifyCallback(0, 0);
548#if CALLBACK_ANTAGONIZER
549 ALOGD("kill Antagonizer");
550 mAntagonizer->kill();
551#endif
552 p->reset();
553 }
554
555 {
556 Mutex::Autolock l(mLock);
557 disconnectNativeWindow_l();
558 }
559
560 IPCThreadState::self()->flushCommands();
561}
562
Wei Jia33abcc72018-01-30 09:47:38 -0800563sp<MediaPlayer2Interface> MediaPlayer2Manager::Client::createPlayer() {
564 sp<MediaPlayer2Interface> p = getPlayer();
Wei Jia53692fa2017-12-11 10:33:46 -0800565 if (p == NULL) {
Wei Jia678c54c2018-01-29 18:30:07 -0800566 p = new NuPlayer2Driver(mPid);
567 status_t init_result = p->initCheck();
568 if (init_result == NO_ERROR) {
569 p->setNotifyCallback(this, notify);
570 } else {
571 ALOGE("Failed to create player, initCheck failed(res = %d)", init_result);
572 p.clear();
573 }
Wei Jia53692fa2017-12-11 10:33:46 -0800574 }
575
576 if (p != NULL) {
577 p->setUID(mUid);
578 }
579
580 return p;
581}
582
583void MediaPlayer2Manager::Client::AudioDeviceUpdatedNotifier::onAudioDeviceUpdate(
584 audio_io_handle_t audioIo,
585 audio_port_handle_t deviceId) {
Wei Jia33abcc72018-01-30 09:47:38 -0800586 sp<MediaPlayer2Interface> listener = mListener.promote();
Wei Jia53692fa2017-12-11 10:33:46 -0800587 if (listener != NULL) {
588 listener->sendEvent(MEDIA2_AUDIO_ROUTING_CHANGED, audioIo, deviceId);
589 } else {
590 ALOGW("listener for process %d death is gone", MEDIA2_AUDIO_ROUTING_CHANGED);
591 }
592}
593
Wei Jia33abcc72018-01-30 09:47:38 -0800594sp<MediaPlayer2Interface> MediaPlayer2Manager::Client::setDataSource_pre() {
595 sp<MediaPlayer2Interface> p = createPlayer();
Wei Jia53692fa2017-12-11 10:33:46 -0800596 if (p == NULL) {
597 return p;
598 }
599
600 Mutex::Autolock lock(mLock);
601
602 mAudioDeviceUpdatedListener = new AudioDeviceUpdatedNotifier(p);
603
Wei Jia33abcc72018-01-30 09:47:38 -0800604 mAudioOutput = new AudioOutput(mAudioSessionId, mUid,
605 mPid, mAudioAttributes, mAudioDeviceUpdatedListener);
606 p->setAudioSink(mAudioOutput);
Wei Jia53692fa2017-12-11 10:33:46 -0800607
608 return p;
609}
610
611status_t MediaPlayer2Manager::Client::setDataSource_post(
Wei Jia33abcc72018-01-30 09:47:38 -0800612 const sp<MediaPlayer2Interface>& p,
Wei Jia53692fa2017-12-11 10:33:46 -0800613 status_t status)
614{
615 ALOGV(" setDataSource");
616 if (status != OK) {
617 ALOGE(" error: %d", status);
618 return status;
619 }
620
621 // Set the re-transmission endpoint if one was chosen.
622 if (mRetransmitEndpointValid) {
623 status = p->setRetransmitEndpoint(&mRetransmitEndpoint);
624 if (status != NO_ERROR) {
625 ALOGE("setRetransmitEndpoint error: %d", status);
626 }
627 }
628
629 if (status == OK) {
630 Mutex::Autolock lock(mLock);
631 mPlayer = p;
632 }
633 return status;
634}
635
636status_t MediaPlayer2Manager::Client::setDataSource(
637 const sp<MediaHTTPService> &httpService,
638 const char *url,
639 const KeyedVector<String8, String8> *headers)
640{
641 ALOGV("setDataSource(%s)", url);
642 if (url == NULL)
643 return UNKNOWN_ERROR;
644
645 if ((strncmp(url, "http://", 7) == 0) ||
646 (strncmp(url, "https://", 8) == 0) ||
647 (strncmp(url, "rtsp://", 7) == 0)) {
648 if (!checkPermission("android.permission.INTERNET")) {
649 return PERMISSION_DENIED;
650 }
651 }
652
653 if (strncmp(url, "content://", 10) == 0) {
654 ALOGE("setDataSource: content scheme is not supported here");
655 mStatus = UNKNOWN_ERROR;
656 return mStatus;
657 } else {
Wei Jia33abcc72018-01-30 09:47:38 -0800658 sp<MediaPlayer2Interface> p = setDataSource_pre();
Wei Jia53692fa2017-12-11 10:33:46 -0800659 if (p == NULL) {
660 return NO_INIT;
661 }
662
663 return mStatus =
664 setDataSource_post(
665 p, p->setDataSource(httpService, url, headers));
666 }
667}
668
669status_t MediaPlayer2Manager::Client::setDataSource(int fd, int64_t offset, int64_t length)
670{
671 ALOGV("setDataSource fd=%d (%s), offset=%lld, length=%lld",
672 fd, nameForFd(fd).c_str(), (long long) offset, (long long) length);
673 struct stat sb;
674 int ret = fstat(fd, &sb);
675 if (ret != 0) {
676 ALOGE("fstat(%d) failed: %d, %s", fd, ret, strerror(errno));
677 return UNKNOWN_ERROR;
678 }
679
680 ALOGV("st_dev = %llu", static_cast<unsigned long long>(sb.st_dev));
681 ALOGV("st_mode = %u", sb.st_mode);
682 ALOGV("st_uid = %lu", static_cast<unsigned long>(sb.st_uid));
683 ALOGV("st_gid = %lu", static_cast<unsigned long>(sb.st_gid));
684 ALOGV("st_size = %llu", static_cast<unsigned long long>(sb.st_size));
685
686 if (offset >= sb.st_size) {
687 ALOGE("offset error");
688 return UNKNOWN_ERROR;
689 }
690 if (offset + length > sb.st_size) {
691 length = sb.st_size - offset;
692 ALOGV("calculated length = %lld", (long long)length);
693 }
694
Wei Jia33abcc72018-01-30 09:47:38 -0800695 sp<MediaPlayer2Interface> p = setDataSource_pre();
Wei Jia53692fa2017-12-11 10:33:46 -0800696 if (p == NULL) {
697 return NO_INIT;
698 }
699
700 // now set data source
701 return mStatus = setDataSource_post(p, p->setDataSource(fd, offset, length));
702}
703
704status_t MediaPlayer2Manager::Client::setDataSource(
705 const sp<IStreamSource> &source) {
Wei Jia33abcc72018-01-30 09:47:38 -0800706 sp<MediaPlayer2Interface> p = setDataSource_pre();
Wei Jia53692fa2017-12-11 10:33:46 -0800707 if (p == NULL) {
708 return NO_INIT;
709 }
710
711 // now set data source
712 return mStatus = setDataSource_post(p, p->setDataSource(source));
713}
714
715status_t MediaPlayer2Manager::Client::setDataSource(
Wei Jiac5c79da2017-12-21 18:03:05 -0800716 const sp<DataSource> &source) {
Wei Jia33abcc72018-01-30 09:47:38 -0800717 sp<MediaPlayer2Interface> p = setDataSource_pre();
Wei Jia53692fa2017-12-11 10:33:46 -0800718 if (p == NULL) {
719 return NO_INIT;
720 }
721 // now set data source
Wei Jiac5c79da2017-12-21 18:03:05 -0800722 return mStatus = setDataSource_post(p, p->setDataSource(source));
Wei Jia53692fa2017-12-11 10:33:46 -0800723}
724
725void MediaPlayer2Manager::Client::disconnectNativeWindow_l() {
Wei Jia28288fb2017-12-15 13:45:29 -0800726 if (mConnectedWindow != NULL && mConnectedWindow->getANativeWindow() != NULL) {
Wei Jia4049f132018-01-22 10:37:31 -0800727 status_t err = native_window_api_disconnect(
728 mConnectedWindow->getANativeWindow(), NATIVE_WINDOW_API_MEDIA);
Wei Jia53692fa2017-12-11 10:33:46 -0800729
730 if (err != OK) {
731 ALOGW("nativeWindowDisconnect returned an error: %s (%d)",
732 strerror(-err), err);
733 }
734 }
735 mConnectedWindow.clear();
736}
737
738status_t MediaPlayer2Manager::Client::setVideoSurfaceTexture(
Wei Jia28288fb2017-12-15 13:45:29 -0800739 const sp<ANativeWindowWrapper>& nww)
Wei Jia53692fa2017-12-11 10:33:46 -0800740{
Wei Jia28288fb2017-12-15 13:45:29 -0800741 ALOGV("[%d] setVideoSurfaceTexture(%p)",
742 mConnId,
743 (nww == NULL ? NULL : nww->getANativeWindow()));
Wei Jia33abcc72018-01-30 09:47:38 -0800744 sp<MediaPlayer2Interface> p = getPlayer();
Wei Jia53692fa2017-12-11 10:33:46 -0800745 if (p == 0) return UNKNOWN_ERROR;
746
Wei Jia28288fb2017-12-15 13:45:29 -0800747 if (nww != NULL && nww->getANativeWindow() != NULL) {
748 if (mConnectedWindow != NULL
749 && mConnectedWindow->getANativeWindow() == nww->getANativeWindow()) {
750 return OK;
751 }
Wei Jia4049f132018-01-22 10:37:31 -0800752 status_t err = native_window_api_connect(
753 nww->getANativeWindow(), NATIVE_WINDOW_API_MEDIA);
Wei Jia53692fa2017-12-11 10:33:46 -0800754
755 if (err != OK) {
756 ALOGE("setVideoSurfaceTexture failed: %d", err);
757 // Note that we must do the reset before disconnecting from the ANW.
758 // Otherwise queue/dequeue calls could be made on the disconnected
759 // ANW, which may result in errors.
760 reset();
761
762 Mutex::Autolock lock(mLock);
763 disconnectNativeWindow_l();
764
765 return err;
766 }
767 }
768
769 // Note that we must set the player's new GraphicBufferProducer before
770 // disconnecting the old one. Otherwise queue/dequeue calls could be made
771 // on the disconnected ANW, which may result in errors.
Wei Jia28288fb2017-12-15 13:45:29 -0800772 status_t err = p->setVideoSurfaceTexture(nww);
Wei Jia53692fa2017-12-11 10:33:46 -0800773
774 mLock.lock();
775 disconnectNativeWindow_l();
776
777 if (err == OK) {
Wei Jia28288fb2017-12-15 13:45:29 -0800778 mConnectedWindow = nww;
Wei Jia53692fa2017-12-11 10:33:46 -0800779 mLock.unlock();
Wei Jia28288fb2017-12-15 13:45:29 -0800780 } else if (nww != NULL) {
Wei Jia53692fa2017-12-11 10:33:46 -0800781 mLock.unlock();
Wei Jia4049f132018-01-22 10:37:31 -0800782 status_t err = native_window_api_disconnect(
783 nww->getANativeWindow(), NATIVE_WINDOW_API_MEDIA);
Wei Jia53692fa2017-12-11 10:33:46 -0800784
785 if (err != OK) {
786 ALOGW("nativeWindowDisconnect returned an error: %s (%d)",
787 strerror(-err), err);
788 }
789 }
790
791 return err;
792}
793
794status_t MediaPlayer2Manager::Client::invoke(const Parcel& request,
795 Parcel *reply)
796{
Wei Jia33abcc72018-01-30 09:47:38 -0800797 sp<MediaPlayer2Interface> p = getPlayer();
Wei Jia53692fa2017-12-11 10:33:46 -0800798 if (p == NULL) return UNKNOWN_ERROR;
799 return p->invoke(request, reply);
800}
801
802// This call doesn't need to access the native player.
803status_t MediaPlayer2Manager::Client::setMetadataFilter(const Parcel& filter)
804{
805 status_t status;
806 media::Metadata::Filter allow, drop;
807
808 if (unmarshallFilter(filter, &allow, &status) &&
809 unmarshallFilter(filter, &drop, &status)) {
810 Mutex::Autolock lock(mLock);
811
812 mMetadataAllow = allow;
813 mMetadataDrop = drop;
814 }
815 return status;
816}
817
818status_t MediaPlayer2Manager::Client::getMetadata(
819 bool update_only, bool /*apply_filter*/, Parcel *reply)
820{
Wei Jia33abcc72018-01-30 09:47:38 -0800821 sp<MediaPlayer2Interface> player = getPlayer();
Wei Jia53692fa2017-12-11 10:33:46 -0800822 if (player == 0) return UNKNOWN_ERROR;
823
824 status_t status;
825 // Placeholder for the return code, updated by the caller.
826 reply->writeInt32(-1);
827
828 media::Metadata::Filter ids;
829
830 // We don't block notifications while we fetch the data. We clear
831 // mMetadataUpdated first so we don't lose notifications happening
832 // during the rest of this call.
833 {
834 Mutex::Autolock lock(mLock);
835 if (update_only) {
836 ids = mMetadataUpdated;
837 }
838 mMetadataUpdated.clear();
839 }
840
841 media::Metadata metadata(reply);
842
843 metadata.appendHeader();
844 status = player->getMetadata(ids, reply);
845
846 if (status != OK) {
847 metadata.resetParcel();
848 ALOGE("getMetadata failed %d", status);
849 return status;
850 }
851
852 // FIXME: ement filtering on the result. Not critical since
853 // filtering takes place on the update notifications already. This
854 // would be when all the metadata are fetch and a filter is set.
855
856 // Everything is fine, update the metadata length.
857 metadata.updateLength();
858 return OK;
859}
860
861status_t MediaPlayer2Manager::Client::setBufferingSettings(
862 const BufferingSettings& buffering)
863{
864 ALOGV("[%d] setBufferingSettings{%s}",
865 mConnId, buffering.toString().string());
Wei Jia33abcc72018-01-30 09:47:38 -0800866 sp<MediaPlayer2Interface> p = getPlayer();
Wei Jia53692fa2017-12-11 10:33:46 -0800867 if (p == 0) return UNKNOWN_ERROR;
868 return p->setBufferingSettings(buffering);
869}
870
871status_t MediaPlayer2Manager::Client::getBufferingSettings(
872 BufferingSettings* buffering /* nonnull */)
873{
Wei Jia33abcc72018-01-30 09:47:38 -0800874 sp<MediaPlayer2Interface> p = getPlayer();
Wei Jia53692fa2017-12-11 10:33:46 -0800875 // TODO: create mPlayer on demand.
876 if (p == 0) return UNKNOWN_ERROR;
877 status_t ret = p->getBufferingSettings(buffering);
878 if (ret == NO_ERROR) {
879 ALOGV("[%d] getBufferingSettings{%s}",
880 mConnId, buffering->toString().string());
881 } else {
882 ALOGE("[%d] getBufferingSettings returned %d", mConnId, ret);
883 }
884 return ret;
885}
886
887status_t MediaPlayer2Manager::Client::prepareAsync()
888{
889 ALOGV("[%d] prepareAsync", mConnId);
Wei Jia33abcc72018-01-30 09:47:38 -0800890 sp<MediaPlayer2Interface> p = getPlayer();
Wei Jia53692fa2017-12-11 10:33:46 -0800891 if (p == 0) return UNKNOWN_ERROR;
892 status_t ret = p->prepareAsync();
893#if CALLBACK_ANTAGONIZER
894 ALOGD("start Antagonizer");
895 if (ret == NO_ERROR) mAntagonizer->start();
896#endif
897 return ret;
898}
899
900status_t MediaPlayer2Manager::Client::start()
901{
902 ALOGV("[%d] start", mConnId);
Wei Jia33abcc72018-01-30 09:47:38 -0800903 sp<MediaPlayer2Interface> p = getPlayer();
Wei Jia53692fa2017-12-11 10:33:46 -0800904 if (p == 0) return UNKNOWN_ERROR;
905 p->setLooping(mLoop);
906 return p->start();
907}
908
909status_t MediaPlayer2Manager::Client::stop()
910{
911 ALOGV("[%d] stop", mConnId);
Wei Jia33abcc72018-01-30 09:47:38 -0800912 sp<MediaPlayer2Interface> p = getPlayer();
Wei Jia53692fa2017-12-11 10:33:46 -0800913 if (p == 0) return UNKNOWN_ERROR;
914 return p->stop();
915}
916
917status_t MediaPlayer2Manager::Client::pause()
918{
919 ALOGV("[%d] pause", mConnId);
Wei Jia33abcc72018-01-30 09:47:38 -0800920 sp<MediaPlayer2Interface> p = getPlayer();
Wei Jia53692fa2017-12-11 10:33:46 -0800921 if (p == 0) return UNKNOWN_ERROR;
922 return p->pause();
923}
924
925status_t MediaPlayer2Manager::Client::isPlaying(bool* state)
926{
927 *state = false;
Wei Jia33abcc72018-01-30 09:47:38 -0800928 sp<MediaPlayer2Interface> p = getPlayer();
Wei Jia53692fa2017-12-11 10:33:46 -0800929 if (p == 0) return UNKNOWN_ERROR;
930 *state = p->isPlaying();
931 ALOGV("[%d] isPlaying: %d", mConnId, *state);
932 return NO_ERROR;
933}
934
935status_t MediaPlayer2Manager::Client::setPlaybackSettings(const AudioPlaybackRate& rate)
936{
937 ALOGV("[%d] setPlaybackSettings(%f, %f, %d, %d)",
938 mConnId, rate.mSpeed, rate.mPitch, rate.mFallbackMode, rate.mStretchMode);
Wei Jia33abcc72018-01-30 09:47:38 -0800939 sp<MediaPlayer2Interface> p = getPlayer();
Wei Jia53692fa2017-12-11 10:33:46 -0800940 if (p == 0) return UNKNOWN_ERROR;
941 return p->setPlaybackSettings(rate);
942}
943
944status_t MediaPlayer2Manager::Client::getPlaybackSettings(AudioPlaybackRate* rate /* nonnull */)
945{
Wei Jia33abcc72018-01-30 09:47:38 -0800946 sp<MediaPlayer2Interface> p = getPlayer();
Wei Jia53692fa2017-12-11 10:33:46 -0800947 if (p == 0) return UNKNOWN_ERROR;
948 status_t ret = p->getPlaybackSettings(rate);
949 if (ret == NO_ERROR) {
950 ALOGV("[%d] getPlaybackSettings(%f, %f, %d, %d)",
951 mConnId, rate->mSpeed, rate->mPitch, rate->mFallbackMode, rate->mStretchMode);
952 } else {
953 ALOGV("[%d] getPlaybackSettings returned %d", mConnId, ret);
954 }
955 return ret;
956}
957
958status_t MediaPlayer2Manager::Client::setSyncSettings(
959 const AVSyncSettings& sync, float videoFpsHint)
960{
961 ALOGV("[%d] setSyncSettings(%u, %u, %f, %f)",
962 mConnId, sync.mSource, sync.mAudioAdjustMode, sync.mTolerance, videoFpsHint);
Wei Jia33abcc72018-01-30 09:47:38 -0800963 sp<MediaPlayer2Interface> p = getPlayer();
Wei Jia53692fa2017-12-11 10:33:46 -0800964 if (p == 0) return UNKNOWN_ERROR;
965 return p->setSyncSettings(sync, videoFpsHint);
966}
967
968status_t MediaPlayer2Manager::Client::getSyncSettings(
969 AVSyncSettings* sync /* nonnull */, float* videoFps /* nonnull */)
970{
Wei Jia33abcc72018-01-30 09:47:38 -0800971 sp<MediaPlayer2Interface> p = getPlayer();
Wei Jia53692fa2017-12-11 10:33:46 -0800972 if (p == 0) return UNKNOWN_ERROR;
973 status_t ret = p->getSyncSettings(sync, videoFps);
974 if (ret == NO_ERROR) {
975 ALOGV("[%d] getSyncSettings(%u, %u, %f, %f)",
976 mConnId, sync->mSource, sync->mAudioAdjustMode, sync->mTolerance, *videoFps);
977 } else {
978 ALOGV("[%d] getSyncSettings returned %d", mConnId, ret);
979 }
980 return ret;
981}
982
983status_t MediaPlayer2Manager::Client::getCurrentPosition(int *msec)
984{
985 ALOGV("getCurrentPosition");
Wei Jia33abcc72018-01-30 09:47:38 -0800986 sp<MediaPlayer2Interface> p = getPlayer();
Wei Jia53692fa2017-12-11 10:33:46 -0800987 if (p == 0) return UNKNOWN_ERROR;
988 status_t ret = p->getCurrentPosition(msec);
989 if (ret == NO_ERROR) {
990 ALOGV("[%d] getCurrentPosition = %d", mConnId, *msec);
991 } else {
992 ALOGE("getCurrentPosition returned %d", ret);
993 }
994 return ret;
995}
996
997status_t MediaPlayer2Manager::Client::getDuration(int *msec)
998{
999 ALOGV("getDuration");
Wei Jia33abcc72018-01-30 09:47:38 -08001000 sp<MediaPlayer2Interface> p = getPlayer();
Wei Jia53692fa2017-12-11 10:33:46 -08001001 if (p == 0) return UNKNOWN_ERROR;
1002 status_t ret = p->getDuration(msec);
1003 if (ret == NO_ERROR) {
1004 ALOGV("[%d] getDuration = %d", mConnId, *msec);
1005 } else {
1006 ALOGE("getDuration returned %d", ret);
1007 }
1008 return ret;
1009}
1010
1011status_t MediaPlayer2Manager::Client::setNextPlayer(const sp<MediaPlayer2Engine>& player) {
1012 ALOGV("setNextPlayer");
1013 Mutex::Autolock l(mLock);
1014 sp<Client> c = static_cast<Client*>(player.get());
1015 if (c != NULL && !gMediaPlayer2Manager.hasClient(c)) {
1016 return BAD_VALUE;
1017 }
1018
1019 mNextClient = c;
1020
1021 if (c != NULL) {
1022 if (mAudioOutput != NULL) {
1023 mAudioOutput->setNextOutput(c->mAudioOutput);
Wei Jia33abcc72018-01-30 09:47:38 -08001024 } else {
Wei Jia53692fa2017-12-11 10:33:46 -08001025 ALOGE("no current audio output");
1026 }
1027
1028 if ((mPlayer != NULL) && (mNextClient->getPlayer() != NULL)) {
1029 mPlayer->setNextPlayer(mNextClient->getPlayer());
1030 }
1031 }
1032
1033 return OK;
1034}
1035
1036VolumeShaper::Status MediaPlayer2Manager::Client::applyVolumeShaper(
1037 const sp<VolumeShaper::Configuration>& configuration,
1038 const sp<VolumeShaper::Operation>& operation) {
1039 // for hardware output, call player instead
1040 ALOGV("Client::applyVolumeShaper(%p)", this);
Wei Jia33abcc72018-01-30 09:47:38 -08001041 sp<MediaPlayer2Interface> p = getPlayer();
Wei Jia53692fa2017-12-11 10:33:46 -08001042 {
1043 Mutex::Autolock l(mLock);
Wei Jia53692fa2017-12-11 10:33:46 -08001044 if (mAudioOutput.get() != nullptr) {
1045 return mAudioOutput->applyVolumeShaper(configuration, operation);
1046 }
1047 }
1048 return VolumeShaper::Status(INVALID_OPERATION);
1049}
1050
1051sp<VolumeShaper::State> MediaPlayer2Manager::Client::getVolumeShaperState(int id) {
1052 // for hardware output, call player instead
1053 ALOGV("Client::getVolumeShaperState(%p)", this);
Wei Jia33abcc72018-01-30 09:47:38 -08001054 sp<MediaPlayer2Interface> p = getPlayer();
Wei Jia53692fa2017-12-11 10:33:46 -08001055 {
1056 Mutex::Autolock l(mLock);
Wei Jia53692fa2017-12-11 10:33:46 -08001057 if (mAudioOutput.get() != nullptr) {
1058 return mAudioOutput->getVolumeShaperState(id);
1059 }
1060 }
1061 return nullptr;
1062}
1063
1064status_t MediaPlayer2Manager::Client::seekTo(int msec, MediaPlayer2SeekMode mode)
1065{
1066 ALOGV("[%d] seekTo(%d, %d)", mConnId, msec, mode);
Wei Jia33abcc72018-01-30 09:47:38 -08001067 sp<MediaPlayer2Interface> p = getPlayer();
Wei Jia53692fa2017-12-11 10:33:46 -08001068 if (p == 0) return UNKNOWN_ERROR;
1069 return p->seekTo(msec, mode);
1070}
1071
1072status_t MediaPlayer2Manager::Client::reset()
1073{
1074 ALOGV("[%d] reset", mConnId);
1075 mRetransmitEndpointValid = false;
Wei Jia33abcc72018-01-30 09:47:38 -08001076 sp<MediaPlayer2Interface> p = getPlayer();
Wei Jia53692fa2017-12-11 10:33:46 -08001077 if (p == 0) return UNKNOWN_ERROR;
1078 return p->reset();
1079}
1080
1081status_t MediaPlayer2Manager::Client::notifyAt(int64_t mediaTimeUs)
1082{
1083 ALOGV("[%d] notifyAt(%lld)", mConnId, (long long)mediaTimeUs);
Wei Jia33abcc72018-01-30 09:47:38 -08001084 sp<MediaPlayer2Interface> p = getPlayer();
Wei Jia53692fa2017-12-11 10:33:46 -08001085 if (p == 0) return UNKNOWN_ERROR;
1086 return p->notifyAt(mediaTimeUs);
1087}
1088
1089status_t MediaPlayer2Manager::Client::setAudioStreamType(audio_stream_type_t type)
1090{
1091 ALOGV("[%d] setAudioStreamType(%d)", mConnId, type);
1092 // TODO: for hardware output, call player instead
1093 Mutex::Autolock l(mLock);
1094 if (mAudioOutput != 0) mAudioOutput->setAudioStreamType(type);
1095 return NO_ERROR;
1096}
1097
1098status_t MediaPlayer2Manager::Client::setAudioAttributes_l(const Parcel &parcel)
1099{
1100 if (mAudioAttributes != NULL) { free(mAudioAttributes); }
1101 mAudioAttributes = (audio_attributes_t *) calloc(1, sizeof(audio_attributes_t));
1102 if (mAudioAttributes == NULL) {
1103 return NO_MEMORY;
1104 }
1105 unmarshallAudioAttributes(parcel, mAudioAttributes);
1106
1107 ALOGV("setAudioAttributes_l() usage=%d content=%d flags=0x%x tags=%s",
1108 mAudioAttributes->usage, mAudioAttributes->content_type, mAudioAttributes->flags,
1109 mAudioAttributes->tags);
1110
1111 if (mAudioOutput != 0) {
1112 mAudioOutput->setAudioAttributes(mAudioAttributes);
1113 }
1114 return NO_ERROR;
1115}
1116
1117status_t MediaPlayer2Manager::Client::setLooping(int loop)
1118{
1119 ALOGV("[%d] setLooping(%d)", mConnId, loop);
1120 mLoop = loop;
Wei Jia33abcc72018-01-30 09:47:38 -08001121 sp<MediaPlayer2Interface> p = getPlayer();
Wei Jia53692fa2017-12-11 10:33:46 -08001122 if (p != 0) return p->setLooping(loop);
1123 return NO_ERROR;
1124}
1125
1126status_t MediaPlayer2Manager::Client::setVolume(float leftVolume, float rightVolume)
1127{
1128 ALOGV("[%d] setVolume(%f, %f)", mConnId, leftVolume, rightVolume);
1129
1130 // for hardware output, call player instead
Wei Jia33abcc72018-01-30 09:47:38 -08001131 sp<MediaPlayer2Interface> p = getPlayer();
Wei Jia53692fa2017-12-11 10:33:46 -08001132 {
1133 Mutex::Autolock l(mLock);
Wei Jia33abcc72018-01-30 09:47:38 -08001134 if (mAudioOutput != 0) mAudioOutput->setVolume(leftVolume, rightVolume);
Wei Jia53692fa2017-12-11 10:33:46 -08001135 }
1136
1137 return NO_ERROR;
1138}
1139
1140status_t MediaPlayer2Manager::Client::setAuxEffectSendLevel(float level)
1141{
1142 ALOGV("[%d] setAuxEffectSendLevel(%f)", mConnId, level);
1143 Mutex::Autolock l(mLock);
1144 if (mAudioOutput != 0) return mAudioOutput->setAuxEffectSendLevel(level);
1145 return NO_ERROR;
1146}
1147
1148status_t MediaPlayer2Manager::Client::attachAuxEffect(int effectId)
1149{
1150 ALOGV("[%d] attachAuxEffect(%d)", mConnId, effectId);
1151 Mutex::Autolock l(mLock);
1152 if (mAudioOutput != 0) return mAudioOutput->attachAuxEffect(effectId);
1153 return NO_ERROR;
1154}
1155
1156status_t MediaPlayer2Manager::Client::setParameter(int key, const Parcel &request) {
1157 ALOGV("[%d] setParameter(%d)", mConnId, key);
1158 switch (key) {
1159 case MEDIA2_KEY_PARAMETER_AUDIO_ATTRIBUTES:
1160 {
1161 Mutex::Autolock l(mLock);
1162 return setAudioAttributes_l(request);
1163 }
1164 default:
Wei Jia33abcc72018-01-30 09:47:38 -08001165 sp<MediaPlayer2Interface> p = getPlayer();
Wei Jia53692fa2017-12-11 10:33:46 -08001166 if (p == 0) { return UNKNOWN_ERROR; }
1167 return p->setParameter(key, request);
1168 }
1169}
1170
1171status_t MediaPlayer2Manager::Client::getParameter(int key, Parcel *reply) {
1172 ALOGV("[%d] getParameter(%d)", mConnId, key);
Wei Jia33abcc72018-01-30 09:47:38 -08001173 sp<MediaPlayer2Interface> p = getPlayer();
Wei Jia53692fa2017-12-11 10:33:46 -08001174 if (p == 0) return UNKNOWN_ERROR;
1175 return p->getParameter(key, reply);
1176}
1177
1178status_t MediaPlayer2Manager::Client::setRetransmitEndpoint(
1179 const struct sockaddr_in* endpoint) {
1180
1181 if (NULL != endpoint) {
1182 uint32_t a = ntohl(endpoint->sin_addr.s_addr);
1183 uint16_t p = ntohs(endpoint->sin_port);
1184 ALOGV("[%d] setRetransmitEndpoint(%u.%u.%u.%u:%hu)", mConnId,
1185 (a >> 24), (a >> 16) & 0xFF, (a >> 8) & 0xFF, (a & 0xFF), p);
1186 } else {
1187 ALOGV("[%d] setRetransmitEndpoint = <none>", mConnId);
1188 }
1189
Wei Jia33abcc72018-01-30 09:47:38 -08001190 sp<MediaPlayer2Interface> p = getPlayer();
Wei Jia53692fa2017-12-11 10:33:46 -08001191
1192 // Right now, the only valid time to set a retransmit endpoint is before
1193 // player selection has been made (since the presence or absence of a
1194 // retransmit endpoint is going to determine which player is selected during
1195 // setDataSource).
1196 if (p != 0) return INVALID_OPERATION;
1197
1198 if (NULL != endpoint) {
1199 Mutex::Autolock lock(mLock);
1200 mRetransmitEndpoint = *endpoint;
1201 mRetransmitEndpointValid = true;
1202 } else {
1203 Mutex::Autolock lock(mLock);
1204 mRetransmitEndpointValid = false;
1205 }
1206
1207 return NO_ERROR;
1208}
1209
1210status_t MediaPlayer2Manager::Client::getRetransmitEndpoint(
1211 struct sockaddr_in* endpoint)
1212{
1213 if (NULL == endpoint)
1214 return BAD_VALUE;
1215
Wei Jia33abcc72018-01-30 09:47:38 -08001216 sp<MediaPlayer2Interface> p = getPlayer();
Wei Jia53692fa2017-12-11 10:33:46 -08001217
1218 if (p != NULL)
1219 return p->getRetransmitEndpoint(endpoint);
1220
1221 Mutex::Autolock lock(mLock);
1222 if (!mRetransmitEndpointValid)
1223 return NO_INIT;
1224
1225 *endpoint = mRetransmitEndpoint;
1226
1227 return NO_ERROR;
1228}
1229
1230void MediaPlayer2Manager::Client::notify(
Pawin Vongmasa50963852017-12-12 06:24:42 -08001231 const wp<MediaPlayer2Engine> &listener, int msg, int ext1, int ext2, const Parcel *obj)
Wei Jia53692fa2017-12-11 10:33:46 -08001232{
Pawin Vongmasa50963852017-12-12 06:24:42 -08001233 sp<MediaPlayer2Engine> spListener = listener.promote();
1234 if (spListener == NULL) {
Wei Jia53692fa2017-12-11 10:33:46 -08001235 return;
1236 }
Pawin Vongmasa50963852017-12-12 06:24:42 -08001237 Client* client = static_cast<Client*>(spListener.get());
Wei Jia53692fa2017-12-11 10:33:46 -08001238
1239 sp<MediaPlayer2EngineClient> c;
1240 sp<Client> nextClient;
1241 status_t errStartNext = NO_ERROR;
1242 {
1243 Mutex::Autolock l(client->mLock);
1244 c = client->mClient;
1245 if (msg == MEDIA2_PLAYBACK_COMPLETE && client->mNextClient != NULL) {
1246 nextClient = client->mNextClient;
1247
1248 if (client->mAudioOutput != NULL)
1249 client->mAudioOutput->switchToNextOutput();
1250
1251 errStartNext = nextClient->start();
1252 }
1253 }
1254
1255 if (nextClient != NULL) {
1256 sp<MediaPlayer2EngineClient> nc;
1257 {
1258 Mutex::Autolock l(nextClient->mLock);
1259 nc = nextClient->mClient;
1260 }
1261 if (nc != NULL) {
1262 if (errStartNext == NO_ERROR) {
1263 nc->notify(MEDIA2_INFO, MEDIA2_INFO_STARTED_AS_NEXT, 0, obj);
1264 } else {
1265 nc->notify(MEDIA2_ERROR, MEDIA2_ERROR_UNKNOWN , 0, obj);
1266 ALOGE("gapless:start playback for next track failed, err(%d)", errStartNext);
1267 }
1268 }
1269 }
1270
1271 if (MEDIA2_INFO == msg &&
1272 MEDIA2_INFO_METADATA_UPDATE == ext1) {
1273 const media::Metadata::Type metadata_type = ext2;
1274
1275 if(client->shouldDropMetadata(metadata_type)) {
1276 return;
1277 }
1278
1279 // Update the list of metadata that have changed. getMetadata
1280 // also access mMetadataUpdated and clears it.
1281 client->addNewMetadataUpdate(metadata_type);
1282 }
1283
1284 if (c != NULL) {
Pawin Vongmasa50963852017-12-12 06:24:42 -08001285 ALOGV("[%d] notify (%p, %d, %d, %d)", client->mConnId, spListener.get(), msg, ext1, ext2);
Wei Jia53692fa2017-12-11 10:33:46 -08001286 c->notify(msg, ext1, ext2, obj);
1287 }
1288}
1289
1290
1291bool MediaPlayer2Manager::Client::shouldDropMetadata(media::Metadata::Type code) const
1292{
1293 Mutex::Autolock lock(mLock);
1294
1295 if (findMetadata(mMetadataDrop, code)) {
1296 return true;
1297 }
1298
1299 if (mMetadataAllow.isEmpty() || findMetadata(mMetadataAllow, code)) {
1300 return false;
1301 } else {
1302 return true;
1303 }
1304}
1305
1306
1307void MediaPlayer2Manager::Client::addNewMetadataUpdate(media::Metadata::Type metadata_type) {
1308 Mutex::Autolock lock(mLock);
1309 if (mMetadataUpdated.indexOf(metadata_type) < 0) {
1310 mMetadataUpdated.add(metadata_type);
1311 }
1312}
1313
1314// Modular DRM
1315status_t MediaPlayer2Manager::Client::prepareDrm(const uint8_t uuid[16],
1316 const Vector<uint8_t>& drmSessionId)
1317{
1318 ALOGV("[%d] prepareDrm", mConnId);
Wei Jia33abcc72018-01-30 09:47:38 -08001319 sp<MediaPlayer2Interface> p = getPlayer();
Wei Jia53692fa2017-12-11 10:33:46 -08001320 if (p == 0) return UNKNOWN_ERROR;
1321
1322 status_t ret = p->prepareDrm(uuid, drmSessionId);
1323 ALOGV("prepareDrm ret: %d", ret);
1324
1325 return ret;
1326}
1327
1328status_t MediaPlayer2Manager::Client::releaseDrm()
1329{
1330 ALOGV("[%d] releaseDrm", mConnId);
Wei Jia33abcc72018-01-30 09:47:38 -08001331 sp<MediaPlayer2Interface> p = getPlayer();
Wei Jia53692fa2017-12-11 10:33:46 -08001332 if (p == 0) return UNKNOWN_ERROR;
1333
1334 status_t ret = p->releaseDrm();
1335 ALOGV("releaseDrm ret: %d", ret);
1336
1337 return ret;
1338}
1339
1340status_t MediaPlayer2Manager::Client::setOutputDevice(audio_port_handle_t deviceId)
1341{
1342 ALOGV("[%d] setOutputDevice", mConnId);
1343 {
1344 Mutex::Autolock l(mLock);
1345 if (mAudioOutput.get() != nullptr) {
1346 return mAudioOutput->setOutputDevice(deviceId);
1347 }
1348 }
1349 return NO_INIT;
1350}
1351
1352status_t MediaPlayer2Manager::Client::getRoutedDeviceId(audio_port_handle_t* deviceId)
1353{
1354 ALOGV("[%d] getRoutedDeviceId", mConnId);
1355 {
1356 Mutex::Autolock l(mLock);
1357 if (mAudioOutput.get() != nullptr) {
1358 return mAudioOutput->getRoutedDeviceId(deviceId);
1359 }
1360 }
1361 return NO_INIT;
1362}
1363
1364status_t MediaPlayer2Manager::Client::enableAudioDeviceCallback(bool enabled)
1365{
1366 ALOGV("[%d] enableAudioDeviceCallback, %d", mConnId, enabled);
1367 {
1368 Mutex::Autolock l(mLock);
1369 if (mAudioOutput.get() != nullptr) {
1370 return mAudioOutput->enableAudioDeviceCallback(enabled);
1371 }
1372 }
1373 return NO_INIT;
1374}
1375
1376#if CALLBACK_ANTAGONIZER
1377const int Antagonizer::interval = 10000; // 10 msecs
1378
Pawin Vongmasa50963852017-12-12 06:24:42 -08001379Antagonizer::Antagonizer(
1380 MediaPlayer2Manager::NotifyCallback cb,
1381 const wp<MediaPlayer2Engine> &client) :
Wei Jia53692fa2017-12-11 10:33:46 -08001382 mExit(false), mActive(false), mClient(client), mCb(cb)
1383{
1384 createThread(callbackThread, this);
1385}
1386
1387void Antagonizer::kill()
1388{
1389 Mutex::Autolock _l(mLock);
1390 mActive = false;
1391 mExit = true;
1392 mCondition.wait(mLock);
1393}
1394
1395int Antagonizer::callbackThread(void* user)
1396{
1397 ALOGD("Antagonizer started");
1398 Antagonizer* p = reinterpret_cast<Antagonizer*>(user);
1399 while (!p->mExit) {
1400 if (p->mActive) {
1401 ALOGV("send event");
1402 p->mCb(p->mClient, 0, 0, 0);
1403 }
1404 usleep(interval);
1405 }
1406 Mutex::Autolock _l(p->mLock);
1407 p->mCondition.signal();
1408 ALOGD("Antagonizer stopped");
1409 return 0;
1410}
1411#endif
1412
1413#undef LOG_TAG
1414#define LOG_TAG "AudioSink"
1415MediaPlayer2Manager::AudioOutput::AudioOutput(audio_session_t sessionId, uid_t uid, int pid,
1416 const audio_attributes_t* attr, const sp<AudioSystem::AudioDeviceCallback>& deviceCallback)
1417 : mCallback(NULL),
1418 mCallbackCookie(NULL),
1419 mCallbackData(NULL),
1420 mStreamType(AUDIO_STREAM_MUSIC),
1421 mLeftVolume(1.0),
1422 mRightVolume(1.0),
1423 mPlaybackRate(AUDIO_PLAYBACK_RATE_DEFAULT),
1424 mSampleRateHz(0),
1425 mMsecsPerFrame(0),
1426 mFrameSize(0),
1427 mSessionId(sessionId),
1428 mUid(uid),
1429 mPid(pid),
1430 mSendLevel(0.0),
1431 mAuxEffectId(0),
1432 mFlags(AUDIO_OUTPUT_FLAG_NONE),
1433 mVolumeHandler(new media::VolumeHandler()),
1434 mSelectedDeviceId(AUDIO_PORT_HANDLE_NONE),
1435 mRoutedDeviceId(AUDIO_PORT_HANDLE_NONE),
1436 mDeviceCallbackEnabled(false),
1437 mDeviceCallback(deviceCallback)
1438{
1439 ALOGV("AudioOutput(%d)", sessionId);
1440 if (attr != NULL) {
1441 mAttributes = (audio_attributes_t *) calloc(1, sizeof(audio_attributes_t));
1442 if (mAttributes != NULL) {
1443 memcpy(mAttributes, attr, sizeof(audio_attributes_t));
1444 mStreamType = audio_attributes_to_stream_type(attr);
1445 }
1446 } else {
1447 mAttributes = NULL;
1448 }
1449
1450 setMinBufferCount();
1451}
1452
1453MediaPlayer2Manager::AudioOutput::~AudioOutput()
1454{
1455 close();
1456 free(mAttributes);
1457 delete mCallbackData;
1458}
1459
1460//static
1461void MediaPlayer2Manager::AudioOutput::setMinBufferCount()
1462{
1463 char value[PROPERTY_VALUE_MAX];
1464 if (property_get("ro.kernel.qemu", value, 0)) {
1465 mIsOnEmulator = true;
1466 mMinBufferCount = 12; // to prevent systematic buffer underrun for emulator
1467 }
1468}
1469
1470// static
1471bool MediaPlayer2Manager::AudioOutput::isOnEmulator()
1472{
1473 setMinBufferCount(); // benign race wrt other threads
1474 return mIsOnEmulator;
1475}
1476
1477// static
1478int MediaPlayer2Manager::AudioOutput::getMinBufferCount()
1479{
1480 setMinBufferCount(); // benign race wrt other threads
1481 return mMinBufferCount;
1482}
1483
1484ssize_t MediaPlayer2Manager::AudioOutput::bufferSize() const
1485{
1486 Mutex::Autolock lock(mLock);
1487 if (mTrack == 0) return NO_INIT;
1488 return mTrack->frameCount() * mFrameSize;
1489}
1490
1491ssize_t MediaPlayer2Manager::AudioOutput::frameCount() const
1492{
1493 Mutex::Autolock lock(mLock);
1494 if (mTrack == 0) return NO_INIT;
1495 return mTrack->frameCount();
1496}
1497
1498ssize_t MediaPlayer2Manager::AudioOutput::channelCount() const
1499{
1500 Mutex::Autolock lock(mLock);
1501 if (mTrack == 0) return NO_INIT;
1502 return mTrack->channelCount();
1503}
1504
1505ssize_t MediaPlayer2Manager::AudioOutput::frameSize() const
1506{
1507 Mutex::Autolock lock(mLock);
1508 if (mTrack == 0) return NO_INIT;
1509 return mFrameSize;
1510}
1511
1512uint32_t MediaPlayer2Manager::AudioOutput::latency () const
1513{
1514 Mutex::Autolock lock(mLock);
1515 if (mTrack == 0) return 0;
1516 return mTrack->latency();
1517}
1518
1519float MediaPlayer2Manager::AudioOutput::msecsPerFrame() const
1520{
1521 Mutex::Autolock lock(mLock);
1522 return mMsecsPerFrame;
1523}
1524
1525status_t MediaPlayer2Manager::AudioOutput::getPosition(uint32_t *position) const
1526{
1527 Mutex::Autolock lock(mLock);
1528 if (mTrack == 0) return NO_INIT;
1529 return mTrack->getPosition(position);
1530}
1531
1532status_t MediaPlayer2Manager::AudioOutput::getTimestamp(AudioTimestamp &ts) const
1533{
1534 Mutex::Autolock lock(mLock);
1535 if (mTrack == 0) return NO_INIT;
1536 return mTrack->getTimestamp(ts);
1537}
1538
1539// TODO: Remove unnecessary calls to getPlayedOutDurationUs()
1540// as it acquires locks and may query the audio driver.
1541//
1542// Some calls could conceivably retrieve extrapolated data instead of
1543// accessing getTimestamp() or getPosition() every time a data buffer with
1544// a media time is received.
1545//
1546// Calculate duration of played samples if played at normal rate (i.e., 1.0).
1547int64_t MediaPlayer2Manager::AudioOutput::getPlayedOutDurationUs(int64_t nowUs) const
1548{
1549 Mutex::Autolock lock(mLock);
1550 if (mTrack == 0 || mSampleRateHz == 0) {
1551 return 0;
1552 }
1553
1554 uint32_t numFramesPlayed;
1555 int64_t numFramesPlayedAtUs;
1556 AudioTimestamp ts;
1557
1558 status_t res = mTrack->getTimestamp(ts);
1559 if (res == OK) { // case 1: mixing audio tracks and offloaded tracks.
1560 numFramesPlayed = ts.mPosition;
1561 numFramesPlayedAtUs = ts.mTime.tv_sec * 1000000LL + ts.mTime.tv_nsec / 1000;
1562 //ALOGD("getTimestamp: OK %d %lld", numFramesPlayed, (long long)numFramesPlayedAtUs);
1563 } else if (res == WOULD_BLOCK) { // case 2: transitory state on start of a new track
1564 numFramesPlayed = 0;
1565 numFramesPlayedAtUs = nowUs;
1566 //ALOGD("getTimestamp: WOULD_BLOCK %d %lld",
1567 // numFramesPlayed, (long long)numFramesPlayedAtUs);
1568 } else { // case 3: transitory at new track or audio fast tracks.
1569 res = mTrack->getPosition(&numFramesPlayed);
1570 CHECK_EQ(res, (status_t)OK);
1571 numFramesPlayedAtUs = nowUs;
1572 numFramesPlayedAtUs += 1000LL * mTrack->latency() / 2; /* XXX */
1573 //ALOGD("getPosition: %u %lld", numFramesPlayed, (long long)numFramesPlayedAtUs);
1574 }
1575
1576 // CHECK_EQ(numFramesPlayed & (1 << 31), 0); // can't be negative until 12.4 hrs, test
1577 // TODO: remove the (int32_t) casting below as it may overflow at 12.4 hours.
1578 int64_t durationUs = (int64_t)((int32_t)numFramesPlayed * 1000000LL / mSampleRateHz)
1579 + nowUs - numFramesPlayedAtUs;
1580 if (durationUs < 0) {
1581 // Occurs when numFramesPlayed position is very small and the following:
1582 // (1) In case 1, the time nowUs is computed before getTimestamp() is called and
1583 // numFramesPlayedAtUs is greater than nowUs by time more than numFramesPlayed.
1584 // (2) In case 3, using getPosition and adding mAudioSink->latency() to
1585 // numFramesPlayedAtUs, by a time amount greater than numFramesPlayed.
1586 //
1587 // Both of these are transitory conditions.
1588 ALOGV("getPlayedOutDurationUs: negative duration %lld set to zero", (long long)durationUs);
1589 durationUs = 0;
1590 }
1591 ALOGV("getPlayedOutDurationUs(%lld) nowUs(%lld) frames(%u) framesAt(%lld)",
1592 (long long)durationUs, (long long)nowUs,
1593 numFramesPlayed, (long long)numFramesPlayedAtUs);
1594 return durationUs;
1595}
1596
1597status_t MediaPlayer2Manager::AudioOutput::getFramesWritten(uint32_t *frameswritten) const
1598{
1599 Mutex::Autolock lock(mLock);
1600 if (mTrack == 0) return NO_INIT;
1601 ExtendedTimestamp ets;
1602 status_t status = mTrack->getTimestamp(&ets);
1603 if (status == OK || status == WOULD_BLOCK) {
1604 *frameswritten = (uint32_t)ets.mPosition[ExtendedTimestamp::LOCATION_CLIENT];
1605 }
1606 return status;
1607}
1608
1609status_t MediaPlayer2Manager::AudioOutput::setParameters(const String8& keyValuePairs)
1610{
1611 Mutex::Autolock lock(mLock);
1612 if (mTrack == 0) return NO_INIT;
1613 return mTrack->setParameters(keyValuePairs);
1614}
1615
1616String8 MediaPlayer2Manager::AudioOutput::getParameters(const String8& keys)
1617{
1618 Mutex::Autolock lock(mLock);
1619 if (mTrack == 0) return String8::empty();
1620 return mTrack->getParameters(keys);
1621}
1622
1623void MediaPlayer2Manager::AudioOutput::setAudioAttributes(const audio_attributes_t * attributes) {
1624 Mutex::Autolock lock(mLock);
1625 if (attributes == NULL) {
1626 free(mAttributes);
1627 mAttributes = NULL;
1628 } else {
1629 if (mAttributes == NULL) {
1630 mAttributes = (audio_attributes_t *) calloc(1, sizeof(audio_attributes_t));
1631 }
1632 memcpy(mAttributes, attributes, sizeof(audio_attributes_t));
1633 mStreamType = audio_attributes_to_stream_type(attributes);
1634 }
1635}
1636
1637void MediaPlayer2Manager::AudioOutput::setAudioStreamType(audio_stream_type_t streamType)
1638{
1639 Mutex::Autolock lock(mLock);
1640 // do not allow direct stream type modification if attributes have been set
1641 if (mAttributes == NULL) {
1642 mStreamType = streamType;
1643 }
1644}
1645
1646void MediaPlayer2Manager::AudioOutput::deleteRecycledTrack_l()
1647{
1648 ALOGV("deleteRecycledTrack_l");
1649 if (mRecycledTrack != 0) {
1650
1651 if (mCallbackData != NULL) {
1652 mCallbackData->setOutput(NULL);
1653 mCallbackData->endTrackSwitch();
1654 }
1655
1656 if ((mRecycledTrack->getFlags() & AUDIO_OUTPUT_FLAG_COMPRESS_OFFLOAD) == 0) {
1657 int32_t msec = 0;
1658 if (!mRecycledTrack->stopped()) { // check if active
1659 (void)mRecycledTrack->pendingDuration(&msec);
1660 }
1661 mRecycledTrack->stop(); // ensure full data drain
1662 ALOGD("deleting recycled track, waiting for data drain (%d msec)", msec);
1663 if (msec > 0) {
1664 static const int32_t WAIT_LIMIT_MS = 3000;
1665 if (msec > WAIT_LIMIT_MS) {
1666 msec = WAIT_LIMIT_MS;
1667 }
1668 usleep(msec * 1000LL);
1669 }
1670 }
1671 // An offloaded track isn't flushed because the STREAM_END is reported
1672 // slightly prematurely to allow time for the gapless track switch
1673 // but this means that if we decide not to recycle the track there
1674 // could be a small amount of residual data still playing. We leave
1675 // AudioFlinger to drain the track.
1676
1677 mRecycledTrack.clear();
1678 close_l();
1679 delete mCallbackData;
1680 mCallbackData = NULL;
1681 }
1682}
1683
1684void MediaPlayer2Manager::AudioOutput::close_l()
1685{
1686 mTrack.clear();
1687}
1688
1689status_t MediaPlayer2Manager::AudioOutput::open(
1690 uint32_t sampleRate, int channelCount, audio_channel_mask_t channelMask,
1691 audio_format_t format, int bufferCount,
1692 AudioCallback cb, void *cookie,
1693 audio_output_flags_t flags,
1694 const audio_offload_info_t *offloadInfo,
1695 bool doNotReconnect,
1696 uint32_t suggestedFrameCount)
1697{
1698 ALOGV("open(%u, %d, 0x%x, 0x%x, %d, %d 0x%x)", sampleRate, channelCount, channelMask,
1699 format, bufferCount, mSessionId, flags);
1700
1701 // offloading is only supported in callback mode for now.
1702 // offloadInfo must be present if offload flag is set
1703 if (((flags & AUDIO_OUTPUT_FLAG_COMPRESS_OFFLOAD) != 0) &&
1704 ((cb == NULL) || (offloadInfo == NULL))) {
1705 return BAD_VALUE;
1706 }
1707
1708 // compute frame count for the AudioTrack internal buffer
1709 size_t frameCount;
1710 if ((flags & AUDIO_OUTPUT_FLAG_COMPRESS_OFFLOAD) != 0) {
1711 frameCount = 0; // AudioTrack will get frame count from AudioFlinger
1712 } else {
1713 // try to estimate the buffer processing fetch size from AudioFlinger.
1714 // framesPerBuffer is approximate and generally correct, except when it's not :-).
1715 uint32_t afSampleRate;
1716 size_t afFrameCount;
1717 if (AudioSystem::getOutputFrameCount(&afFrameCount, mStreamType) != NO_ERROR) {
1718 return NO_INIT;
1719 }
1720 if (AudioSystem::getOutputSamplingRate(&afSampleRate, mStreamType) != NO_ERROR) {
1721 return NO_INIT;
1722 }
1723 const size_t framesPerBuffer =
1724 (unsigned long long)sampleRate * afFrameCount / afSampleRate;
1725
1726 if (bufferCount == 0) {
1727 // use suggestedFrameCount
1728 bufferCount = (suggestedFrameCount + framesPerBuffer - 1) / framesPerBuffer;
1729 }
1730 // Check argument bufferCount against the mininum buffer count
1731 if (bufferCount != 0 && bufferCount < mMinBufferCount) {
1732 ALOGV("bufferCount (%d) increased to %d", bufferCount, mMinBufferCount);
1733 bufferCount = mMinBufferCount;
1734 }
1735 // if frameCount is 0, then AudioTrack will get frame count from AudioFlinger
1736 // which will be the minimum size permitted.
1737 frameCount = bufferCount * framesPerBuffer;
1738 }
1739
1740 if (channelMask == CHANNEL_MASK_USE_CHANNEL_ORDER) {
1741 channelMask = audio_channel_out_mask_from_count(channelCount);
1742 if (0 == channelMask) {
1743 ALOGE("open() error, can\'t derive mask for %d audio channels", channelCount);
1744 return NO_INIT;
1745 }
1746 }
1747
1748 Mutex::Autolock lock(mLock);
1749 mCallback = cb;
1750 mCallbackCookie = cookie;
1751
1752 // Check whether we can recycle the track
1753 bool reuse = false;
1754 bool bothOffloaded = false;
1755
1756 if (mRecycledTrack != 0) {
1757 // check whether we are switching between two offloaded tracks
1758 bothOffloaded = (flags & mRecycledTrack->getFlags()
1759 & AUDIO_OUTPUT_FLAG_COMPRESS_OFFLOAD) != 0;
1760
1761 // check if the existing track can be reused as-is, or if a new track needs to be created.
1762 reuse = true;
1763
1764 if ((mCallbackData == NULL && mCallback != NULL) ||
1765 (mCallbackData != NULL && mCallback == NULL)) {
1766 // recycled track uses callbacks but the caller wants to use writes, or vice versa
1767 ALOGV("can't chain callback and write");
1768 reuse = false;
1769 } else if ((mRecycledTrack->getSampleRate() != sampleRate) ||
1770 (mRecycledTrack->channelCount() != (uint32_t)channelCount) ) {
1771 ALOGV("samplerate, channelcount differ: %u/%u Hz, %u/%d ch",
1772 mRecycledTrack->getSampleRate(), sampleRate,
1773 mRecycledTrack->channelCount(), channelCount);
1774 reuse = false;
1775 } else if (flags != mFlags) {
1776 ALOGV("output flags differ %08x/%08x", flags, mFlags);
1777 reuse = false;
1778 } else if (mRecycledTrack->format() != format) {
1779 reuse = false;
1780 }
1781 } else {
1782 ALOGV("no track available to recycle");
1783 }
1784
1785 ALOGV_IF(bothOffloaded, "both tracks offloaded");
1786
1787 // If we can't recycle and both tracks are offloaded
1788 // we must close the previous output before opening a new one
1789 if (bothOffloaded && !reuse) {
1790 ALOGV("both offloaded and not recycling");
1791 deleteRecycledTrack_l();
1792 }
1793
1794 sp<AudioTrack> t;
1795 CallbackData *newcbd = NULL;
1796
1797 // We don't attempt to create a new track if we are recycling an
1798 // offloaded track. But, if we are recycling a non-offloaded or we
1799 // are switching where one is offloaded and one isn't then we create
1800 // the new track in advance so that we can read additional stream info
1801
1802 if (!(reuse && bothOffloaded)) {
1803 ALOGV("creating new AudioTrack");
1804
1805 if (mCallback != NULL) {
1806 newcbd = new CallbackData(this);
1807 t = new AudioTrack(
1808 mStreamType,
1809 sampleRate,
1810 format,
1811 channelMask,
1812 frameCount,
1813 flags,
1814 CallbackWrapper,
1815 newcbd,
1816 0, // notification frames
1817 mSessionId,
1818 AudioTrack::TRANSFER_CALLBACK,
1819 offloadInfo,
1820 mUid,
1821 mPid,
1822 mAttributes,
1823 doNotReconnect,
1824 1.0f, // default value for maxRequiredSpeed
1825 mSelectedDeviceId);
1826 } else {
1827 // TODO: Due to buffer memory concerns, we use a max target playback speed
1828 // based on mPlaybackRate at the time of open (instead of kMaxRequiredSpeed),
1829 // also clamping the target speed to 1.0 <= targetSpeed <= kMaxRequiredSpeed.
1830 const float targetSpeed =
1831 std::min(std::max(mPlaybackRate.mSpeed, 1.0f), kMaxRequiredSpeed);
1832 ALOGW_IF(targetSpeed != mPlaybackRate.mSpeed,
1833 "track target speed:%f clamped from playback speed:%f",
1834 targetSpeed, mPlaybackRate.mSpeed);
1835 t = new AudioTrack(
1836 mStreamType,
1837 sampleRate,
1838 format,
1839 channelMask,
1840 frameCount,
1841 flags,
1842 NULL, // callback
1843 NULL, // user data
1844 0, // notification frames
1845 mSessionId,
1846 AudioTrack::TRANSFER_DEFAULT,
1847 NULL, // offload info
1848 mUid,
1849 mPid,
1850 mAttributes,
1851 doNotReconnect,
1852 targetSpeed,
1853 mSelectedDeviceId);
1854 }
1855
1856 if ((t == 0) || (t->initCheck() != NO_ERROR)) {
1857 ALOGE("Unable to create audio track");
1858 delete newcbd;
1859 // t goes out of scope, so reference count drops to zero
1860 return NO_INIT;
1861 } else {
1862 // successful AudioTrack initialization implies a legacy stream type was generated
1863 // from the audio attributes
1864 mStreamType = t->streamType();
1865 }
1866 }
1867
1868 if (reuse) {
1869 CHECK(mRecycledTrack != NULL);
1870
1871 if (!bothOffloaded) {
1872 if (mRecycledTrack->frameCount() != t->frameCount()) {
1873 ALOGV("framecount differs: %zu/%zu frames",
1874 mRecycledTrack->frameCount(), t->frameCount());
1875 reuse = false;
1876 }
1877 }
1878
1879 if (reuse) {
1880 ALOGV("chaining to next output and recycling track");
1881 close_l();
1882 mTrack = mRecycledTrack;
1883 mRecycledTrack.clear();
1884 if (mCallbackData != NULL) {
1885 mCallbackData->setOutput(this);
1886 }
1887 delete newcbd;
1888 return updateTrack();
1889 }
1890 }
1891
1892 // we're not going to reuse the track, unblock and flush it
1893 // this was done earlier if both tracks are offloaded
1894 if (!bothOffloaded) {
1895 deleteRecycledTrack_l();
1896 }
1897
1898 CHECK((t != NULL) && ((mCallback == NULL) || (newcbd != NULL)));
1899
1900 mCallbackData = newcbd;
1901 ALOGV("setVolume");
1902 t->setVolume(mLeftVolume, mRightVolume);
1903
1904 // Restore VolumeShapers for the MediaPlayer2 in case the track was recreated
1905 // due to an output sink error (e.g. offload to non-offload switch).
1906 mVolumeHandler->forall([&t](const VolumeShaper &shaper) -> VolumeShaper::Status {
1907 sp<VolumeShaper::Operation> operationToEnd =
1908 new VolumeShaper::Operation(shaper.mOperation);
1909 // TODO: Ideally we would restore to the exact xOffset position
1910 // as returned by getVolumeShaperState(), but we don't have that
1911 // information when restoring at the client unless we periodically poll
1912 // the server or create shared memory state.
1913 //
1914 // For now, we simply advance to the end of the VolumeShaper effect
1915 // if it has been started.
1916 if (shaper.isStarted()) {
1917 operationToEnd->setNormalizedTime(1.f);
1918 }
1919 return t->applyVolumeShaper(shaper.mConfiguration, operationToEnd);
1920 });
1921
1922 mSampleRateHz = sampleRate;
1923 mFlags = flags;
1924 mMsecsPerFrame = 1E3f / (mPlaybackRate.mSpeed * sampleRate);
1925 mFrameSize = t->frameSize();
1926 mTrack = t;
1927
1928 return updateTrack();
1929}
1930
1931status_t MediaPlayer2Manager::AudioOutput::updateTrack() {
1932 if (mTrack == NULL) {
1933 return NO_ERROR;
1934 }
1935
1936 status_t res = NO_ERROR;
1937 // Note some output devices may give us a direct track even though we don't specify it.
1938 // Example: Line application b/17459982.
1939 if ((mTrack->getFlags()
1940 & (AUDIO_OUTPUT_FLAG_COMPRESS_OFFLOAD | AUDIO_OUTPUT_FLAG_DIRECT)) == 0) {
1941 res = mTrack->setPlaybackRate(mPlaybackRate);
1942 if (res == NO_ERROR) {
1943 mTrack->setAuxEffectSendLevel(mSendLevel);
1944 res = mTrack->attachAuxEffect(mAuxEffectId);
1945 }
1946 }
1947 mTrack->setOutputDevice(mSelectedDeviceId);
1948 if (mDeviceCallbackEnabled) {
1949 mTrack->addAudioDeviceCallback(mDeviceCallback.promote());
1950 }
1951 ALOGV("updateTrack() DONE status %d", res);
1952 return res;
1953}
1954
1955status_t MediaPlayer2Manager::AudioOutput::start()
1956{
1957 ALOGV("start");
1958 Mutex::Autolock lock(mLock);
1959 if (mCallbackData != NULL) {
1960 mCallbackData->endTrackSwitch();
1961 }
1962 if (mTrack != 0) {
1963 mTrack->setVolume(mLeftVolume, mRightVolume);
1964 mTrack->setAuxEffectSendLevel(mSendLevel);
1965 status_t status = mTrack->start();
1966 if (status == NO_ERROR) {
1967 mVolumeHandler->setStarted();
1968 }
1969 return status;
1970 }
1971 return NO_INIT;
1972}
1973
1974void MediaPlayer2Manager::AudioOutput::setNextOutput(const sp<AudioOutput>& nextOutput) {
1975 Mutex::Autolock lock(mLock);
1976 mNextOutput = nextOutput;
1977}
1978
1979void MediaPlayer2Manager::AudioOutput::switchToNextOutput() {
1980 ALOGV("switchToNextOutput");
1981
1982 // Try to acquire the callback lock before moving track (without incurring deadlock).
1983 const unsigned kMaxSwitchTries = 100;
1984 Mutex::Autolock lock(mLock);
1985 for (unsigned tries = 0;;) {
1986 if (mTrack == 0) {
1987 return;
1988 }
1989 if (mNextOutput != NULL && mNextOutput != this) {
1990 if (mCallbackData != NULL) {
1991 // two alternative approaches
1992#if 1
1993 CallbackData *callbackData = mCallbackData;
1994 mLock.unlock();
1995 // proper acquisition sequence
1996 callbackData->lock();
1997 mLock.lock();
1998 // Caution: it is unlikely that someone deleted our callback or changed our target
1999 if (callbackData != mCallbackData || mNextOutput == NULL || mNextOutput == this) {
2000 // fatal if we are starved out.
2001 LOG_ALWAYS_FATAL_IF(++tries > kMaxSwitchTries,
2002 "switchToNextOutput() cannot obtain correct lock sequence");
2003 callbackData->unlock();
2004 continue;
2005 }
2006 callbackData->mSwitching = true; // begin track switch
2007 callbackData->setOutput(NULL);
2008#else
2009 // tryBeginTrackSwitch() returns false if the callback has the lock.
2010 if (!mCallbackData->tryBeginTrackSwitch()) {
2011 // fatal if we are starved out.
2012 LOG_ALWAYS_FATAL_IF(++tries > kMaxSwitchTries,
2013 "switchToNextOutput() cannot obtain callback lock");
2014 mLock.unlock();
2015 usleep(5 * 1000 /* usec */); // allow callback to use AudioOutput
2016 mLock.lock();
2017 continue;
2018 }
2019#endif
2020 }
2021
2022 Mutex::Autolock nextLock(mNextOutput->mLock);
2023
2024 // If the next output track is not NULL, then it has been
2025 // opened already for playback.
2026 // This is possible even without the next player being started,
2027 // for example, the next player could be prepared and seeked.
2028 //
2029 // Presuming it isn't advisable to force the track over.
2030 if (mNextOutput->mTrack == NULL) {
2031 ALOGD("Recycling track for gapless playback");
2032 delete mNextOutput->mCallbackData;
2033 mNextOutput->mCallbackData = mCallbackData;
2034 mNextOutput->mRecycledTrack = mTrack;
2035 mNextOutput->mSampleRateHz = mSampleRateHz;
2036 mNextOutput->mMsecsPerFrame = mMsecsPerFrame;
2037 mNextOutput->mFlags = mFlags;
2038 mNextOutput->mFrameSize = mFrameSize;
2039 close_l();
2040 mCallbackData = NULL; // destruction handled by mNextOutput
2041 } else {
2042 ALOGW("Ignoring gapless playback because next player has already started");
2043 // remove track in case resource needed for future players.
2044 if (mCallbackData != NULL) {
2045 mCallbackData->endTrackSwitch(); // release lock for callbacks before close.
2046 }
2047 close_l();
2048 }
2049 }
2050 break;
2051 }
2052}
2053
2054ssize_t MediaPlayer2Manager::AudioOutput::write(const void* buffer, size_t size, bool blocking)
2055{
2056 Mutex::Autolock lock(mLock);
2057 LOG_ALWAYS_FATAL_IF(mCallback != NULL, "Don't call write if supplying a callback.");
2058
2059 //ALOGV("write(%p, %u)", buffer, size);
2060 if (mTrack != 0) {
2061 return mTrack->write(buffer, size, blocking);
2062 }
2063 return NO_INIT;
2064}
2065
2066void MediaPlayer2Manager::AudioOutput::stop()
2067{
2068 ALOGV("stop");
2069 Mutex::Autolock lock(mLock);
2070 if (mTrack != 0) mTrack->stop();
2071}
2072
2073void MediaPlayer2Manager::AudioOutput::flush()
2074{
2075 ALOGV("flush");
2076 Mutex::Autolock lock(mLock);
2077 if (mTrack != 0) mTrack->flush();
2078}
2079
2080void MediaPlayer2Manager::AudioOutput::pause()
2081{
2082 ALOGV("pause");
2083 Mutex::Autolock lock(mLock);
2084 if (mTrack != 0) mTrack->pause();
2085}
2086
2087void MediaPlayer2Manager::AudioOutput::close()
2088{
2089 ALOGV("close");
2090 sp<AudioTrack> track;
2091 {
2092 Mutex::Autolock lock(mLock);
2093 track = mTrack;
2094 close_l(); // clears mTrack
2095 }
2096 // destruction of the track occurs outside of mutex.
2097}
2098
2099void MediaPlayer2Manager::AudioOutput::setVolume(float left, float right)
2100{
2101 ALOGV("setVolume(%f, %f)", left, right);
2102 Mutex::Autolock lock(mLock);
2103 mLeftVolume = left;
2104 mRightVolume = right;
2105 if (mTrack != 0) {
2106 mTrack->setVolume(left, right);
2107 }
2108}
2109
2110status_t MediaPlayer2Manager::AudioOutput::setPlaybackRate(const AudioPlaybackRate &rate)
2111{
2112 ALOGV("setPlaybackRate(%f %f %d %d)",
2113 rate.mSpeed, rate.mPitch, rate.mFallbackMode, rate.mStretchMode);
2114 Mutex::Autolock lock(mLock);
2115 if (mTrack == 0) {
2116 // remember rate so that we can set it when the track is opened
2117 mPlaybackRate = rate;
2118 return OK;
2119 }
2120 status_t res = mTrack->setPlaybackRate(rate);
2121 if (res != NO_ERROR) {
2122 return res;
2123 }
2124 // rate.mSpeed is always greater than 0 if setPlaybackRate succeeded
2125 CHECK_GT(rate.mSpeed, 0.f);
2126 mPlaybackRate = rate;
2127 if (mSampleRateHz != 0) {
2128 mMsecsPerFrame = 1E3f / (rate.mSpeed * mSampleRateHz);
2129 }
2130 return res;
2131}
2132
2133status_t MediaPlayer2Manager::AudioOutput::getPlaybackRate(AudioPlaybackRate *rate)
2134{
2135 ALOGV("setPlaybackRate");
2136 Mutex::Autolock lock(mLock);
2137 if (mTrack == 0) {
2138 return NO_INIT;
2139 }
2140 *rate = mTrack->getPlaybackRate();
2141 return NO_ERROR;
2142}
2143
2144status_t MediaPlayer2Manager::AudioOutput::setAuxEffectSendLevel(float level)
2145{
2146 ALOGV("setAuxEffectSendLevel(%f)", level);
2147 Mutex::Autolock lock(mLock);
2148 mSendLevel = level;
2149 if (mTrack != 0) {
2150 return mTrack->setAuxEffectSendLevel(level);
2151 }
2152 return NO_ERROR;
2153}
2154
2155status_t MediaPlayer2Manager::AudioOutput::attachAuxEffect(int effectId)
2156{
2157 ALOGV("attachAuxEffect(%d)", effectId);
2158 Mutex::Autolock lock(mLock);
2159 mAuxEffectId = effectId;
2160 if (mTrack != 0) {
2161 return mTrack->attachAuxEffect(effectId);
2162 }
2163 return NO_ERROR;
2164}
2165
2166status_t MediaPlayer2Manager::AudioOutput::setOutputDevice(audio_port_handle_t deviceId)
2167{
2168 ALOGV("setOutputDevice(%d)", deviceId);
2169 Mutex::Autolock lock(mLock);
2170 mSelectedDeviceId = deviceId;
2171 if (mTrack != 0) {
2172 return mTrack->setOutputDevice(deviceId);
2173 }
2174 return NO_ERROR;
2175}
2176
2177status_t MediaPlayer2Manager::AudioOutput::getRoutedDeviceId(audio_port_handle_t* deviceId)
2178{
2179 ALOGV("getRoutedDeviceId");
2180 Mutex::Autolock lock(mLock);
2181 if (mTrack != 0) {
2182 mRoutedDeviceId = mTrack->getRoutedDeviceId();
2183 }
2184 *deviceId = mRoutedDeviceId;
2185 return NO_ERROR;
2186}
2187
2188status_t MediaPlayer2Manager::AudioOutput::enableAudioDeviceCallback(bool enabled)
2189{
2190 ALOGV("enableAudioDeviceCallback, %d", enabled);
2191 Mutex::Autolock lock(mLock);
2192 mDeviceCallbackEnabled = enabled;
2193 if (mTrack != 0) {
2194 status_t status;
2195 if (enabled) {
2196 status = mTrack->addAudioDeviceCallback(mDeviceCallback.promote());
2197 } else {
2198 status = mTrack->removeAudioDeviceCallback(mDeviceCallback.promote());
2199 }
2200 return status;
2201 }
2202 return NO_ERROR;
2203}
2204
2205VolumeShaper::Status MediaPlayer2Manager::AudioOutput::applyVolumeShaper(
2206 const sp<VolumeShaper::Configuration>& configuration,
2207 const sp<VolumeShaper::Operation>& operation)
2208{
2209 Mutex::Autolock lock(mLock);
2210 ALOGV("AudioOutput::applyVolumeShaper");
2211
2212 mVolumeHandler->setIdIfNecessary(configuration);
2213
2214 VolumeShaper::Status status;
2215 if (mTrack != 0) {
2216 status = mTrack->applyVolumeShaper(configuration, operation);
2217 if (status >= 0) {
2218 (void)mVolumeHandler->applyVolumeShaper(configuration, operation);
2219 if (mTrack->isPlaying()) { // match local AudioTrack to properly restore.
2220 mVolumeHandler->setStarted();
2221 }
2222 }
2223 } else {
2224 // VolumeShapers are not affected when a track moves between players for
2225 // gapless playback (setNextMediaPlayer).
2226 // We forward VolumeShaper operations that do not change configuration
2227 // to the new player so that unducking may occur as expected.
2228 // Unducking is an idempotent operation, same if applied back-to-back.
2229 if (configuration->getType() == VolumeShaper::Configuration::TYPE_ID
2230 && mNextOutput != nullptr) {
2231 ALOGV("applyVolumeShaper: Attempting to forward missed operation: %s %s",
2232 configuration->toString().c_str(), operation->toString().c_str());
2233 Mutex::Autolock nextLock(mNextOutput->mLock);
2234
2235 // recycled track should be forwarded from this AudioSink by switchToNextOutput
2236 sp<AudioTrack> track = mNextOutput->mRecycledTrack;
2237 if (track != nullptr) {
2238 ALOGD("Forward VolumeShaper operation to recycled track %p", track.get());
2239 (void)track->applyVolumeShaper(configuration, operation);
2240 } else {
2241 // There is a small chance that the unduck occurs after the next
2242 // player has already started, but before it is registered to receive
2243 // the unduck command.
2244 track = mNextOutput->mTrack;
2245 if (track != nullptr) {
2246 ALOGD("Forward VolumeShaper operation to track %p", track.get());
2247 (void)track->applyVolumeShaper(configuration, operation);
2248 }
2249 }
2250 }
2251 status = mVolumeHandler->applyVolumeShaper(configuration, operation);
2252 }
2253 return status;
2254}
2255
2256sp<VolumeShaper::State> MediaPlayer2Manager::AudioOutput::getVolumeShaperState(int id)
2257{
2258 Mutex::Autolock lock(mLock);
2259 if (mTrack != 0) {
2260 return mTrack->getVolumeShaperState(id);
2261 } else {
2262 return mVolumeHandler->getVolumeShaperState(id);
2263 }
2264}
2265
2266// static
2267void MediaPlayer2Manager::AudioOutput::CallbackWrapper(
2268 int event, void *cookie, void *info) {
2269 //ALOGV("callbackwrapper");
2270 CallbackData *data = (CallbackData*)cookie;
2271 // lock to ensure we aren't caught in the middle of a track switch.
2272 data->lock();
2273 AudioOutput *me = data->getOutput();
2274 AudioTrack::Buffer *buffer = (AudioTrack::Buffer *)info;
2275 if (me == NULL) {
2276 // no output set, likely because the track was scheduled to be reused
2277 // by another player, but the format turned out to be incompatible.
2278 data->unlock();
2279 if (buffer != NULL) {
2280 buffer->size = 0;
2281 }
2282 return;
2283 }
2284
2285 switch(event) {
2286 case AudioTrack::EVENT_MORE_DATA: {
2287 size_t actualSize = (*me->mCallback)(
2288 me, buffer->raw, buffer->size, me->mCallbackCookie,
2289 CB_EVENT_FILL_BUFFER);
2290
2291 // Log when no data is returned from the callback.
2292 // (1) We may have no data (especially with network streaming sources).
2293 // (2) We may have reached the EOS and the audio track is not stopped yet.
2294 // Note that AwesomePlayer/AudioPlayer will only return zero size when it reaches the EOS.
2295 // NuPlayer2Renderer will return zero when it doesn't have data (it doesn't block to fill).
2296 //
2297 // This is a benign busy-wait, with the next data request generated 10 ms or more later;
2298 // nevertheless for power reasons, we don't want to see too many of these.
2299
2300 ALOGV_IF(actualSize == 0 && buffer->size > 0, "callbackwrapper: empty buffer returned");
2301
2302 buffer->size = actualSize;
2303 } break;
2304
2305 case AudioTrack::EVENT_STREAM_END:
2306 // currently only occurs for offloaded callbacks
2307 ALOGV("callbackwrapper: deliver EVENT_STREAM_END");
2308 (*me->mCallback)(me, NULL /* buffer */, 0 /* size */,
2309 me->mCallbackCookie, CB_EVENT_STREAM_END);
2310 break;
2311
2312 case AudioTrack::EVENT_NEW_IAUDIOTRACK :
2313 ALOGV("callbackwrapper: deliver EVENT_TEAR_DOWN");
2314 (*me->mCallback)(me, NULL /* buffer */, 0 /* size */,
2315 me->mCallbackCookie, CB_EVENT_TEAR_DOWN);
2316 break;
2317
2318 case AudioTrack::EVENT_UNDERRUN:
2319 // This occurs when there is no data available, typically
2320 // when there is a failure to supply data to the AudioTrack. It can also
2321 // occur in non-offloaded mode when the audio device comes out of standby.
2322 //
2323 // If an AudioTrack underruns it outputs silence. Since this happens suddenly
2324 // it may sound like an audible pop or glitch.
2325 //
2326 // The underrun event is sent once per track underrun; the condition is reset
2327 // when more data is sent to the AudioTrack.
2328 ALOGD("callbackwrapper: EVENT_UNDERRUN (discarded)");
2329 break;
2330
2331 default:
2332 ALOGE("received unknown event type: %d inside CallbackWrapper !", event);
2333 }
2334
2335 data->unlock();
2336}
2337
2338audio_session_t MediaPlayer2Manager::AudioOutput::getSessionId() const
2339{
2340 Mutex::Autolock lock(mLock);
2341 return mSessionId;
2342}
2343
2344uint32_t MediaPlayer2Manager::AudioOutput::getSampleRate() const
2345{
2346 Mutex::Autolock lock(mLock);
2347 if (mTrack == 0) return 0;
2348 return mTrack->getSampleRate();
2349}
2350
2351int64_t MediaPlayer2Manager::AudioOutput::getBufferDurationInUs() const
2352{
2353 Mutex::Autolock lock(mLock);
2354 if (mTrack == 0) {
2355 return 0;
2356 }
2357 int64_t duration;
2358 if (mTrack->getBufferDurationInUs(&duration) != OK) {
2359 return 0;
2360 }
2361 return duration;
2362}
2363
2364} // namespace android