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The Android Open Source Projectedbf3b62009-03-03 19:31:44 -08001/* //device/include/server/AudioFlinger/AudioFlinger.cpp
2**
3** Copyright 2007, The Android Open Source Project
4**
5** Licensed under the Apache License, Version 2.0 (the "License");
6** you may not use this file except in compliance with the License.
7** You may obtain a copy of the License at
8**
9** http://www.apache.org/licenses/LICENSE-2.0
10**
11** Unless required by applicable law or agreed to in writing, software
12** distributed under the License is distributed on an "AS IS" BASIS,
13** WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
14** See the License for the specific language governing permissions and
15** limitations under the License.
16*/
17
18
19#define LOG_TAG "AudioFlinger"
20//#define LOG_NDEBUG 0
21
22#include <math.h>
23#include <signal.h>
24#include <sys/time.h>
25#include <sys/resource.h>
26
27#include <utils/IServiceManager.h>
28#include <utils/Log.h>
29#include <utils/Parcel.h>
30#include <utils/IPCThreadState.h>
31#include <utils/String16.h>
32#include <utils/threads.h>
33
34#include <cutils/properties.h>
35
36#include <media/AudioTrack.h>
37#include <media/AudioRecord.h>
38
39#include <private/media/AudioTrackShared.h>
40
41#include <hardware_legacy/AudioHardwareInterface.h>
42
43#include "AudioMixer.h"
44#include "AudioFlinger.h"
45
46#ifdef WITH_A2DP
47#include "A2dpAudioInterface.h"
48#endif
49
50// ----------------------------------------------------------------------------
51// the sim build doesn't have gettid
52
53#ifndef HAVE_GETTID
54# define gettid getpid
55#endif
56
57// ----------------------------------------------------------------------------
58
59namespace android {
60
61//static const nsecs_t kStandbyTimeInNsecs = seconds(3);
62static const unsigned long kBufferRecoveryInUsecs = 2000;
63static const unsigned long kMaxBufferRecoveryInUsecs = 20000;
64static const float MAX_GAIN = 4096.0f;
65
66// retry counts for buffer fill timeout
67// 50 * ~20msecs = 1 second
68static const int8_t kMaxTrackRetries = 50;
69static const int8_t kMaxTrackStartupRetries = 50;
70
71static const int kStartSleepTime = 30000;
72static const int kStopSleepTime = 30000;
73
The Android Open Source Project22f8def2009-03-09 11:52:12 -070074static const int kDumpLockRetries = 50;
75static const int kDumpLockSleep = 20000;
76
The Android Open Source Projectedbf3b62009-03-03 19:31:44 -080077// Maximum number of pending buffers allocated by OutputTrack::write()
78static const uint8_t kMaxOutputTrackBuffers = 5;
79
80
81#define AUDIOFLINGER_SECURITY_ENABLED 1
82
83// ----------------------------------------------------------------------------
84
85static bool recordingAllowed() {
86#ifndef HAVE_ANDROID_OS
87 return true;
88#endif
89#if AUDIOFLINGER_SECURITY_ENABLED
90 if (getpid() == IPCThreadState::self()->getCallingPid()) return true;
91 bool ok = checkCallingPermission(String16("android.permission.RECORD_AUDIO"));
92 if (!ok) LOGE("Request requires android.permission.RECORD_AUDIO");
93 return ok;
94#else
95 if (!checkCallingPermission(String16("android.permission.RECORD_AUDIO")))
96 LOGW("WARNING: Need to add android.permission.RECORD_AUDIO to manifest");
97 return true;
98#endif
99}
100
101static bool settingsAllowed() {
102#ifndef HAVE_ANDROID_OS
103 return true;
104#endif
105#if AUDIOFLINGER_SECURITY_ENABLED
106 if (getpid() == IPCThreadState::self()->getCallingPid()) return true;
107 bool ok = checkCallingPermission(String16("android.permission.MODIFY_AUDIO_SETTINGS"));
108 if (!ok) LOGE("Request requires android.permission.MODIFY_AUDIO_SETTINGS");
109 return ok;
110#else
111 if (!checkCallingPermission(String16("android.permission.MODIFY_AUDIO_SETTINGS")))
112 LOGW("WARNING: Need to add android.permission.MODIFY_AUDIO_SETTINGS to manifest");
113 return true;
114#endif
115}
116
117// ----------------------------------------------------------------------------
118
119AudioFlinger::AudioFlinger()
120 : BnAudioFlinger(),
The Android Open Source Project22f8def2009-03-09 11:52:12 -0700121 mAudioHardware(0), mA2dpAudioInterface(0), mA2dpEnabled(false), mNotifyA2dpChange(false),
The Android Open Source Projectbcef13b2009-03-11 12:11:56 -0700122 mForcedSpeakerCount(0), mA2dpDisableCount(0), mA2dpSuppressed(false), mForcedRoute(0),
123 mRouteRestoreTime(0), mMusicMuteSaved(false)
The Android Open Source Projectedbf3b62009-03-03 19:31:44 -0800124{
125 mHardwareStatus = AUDIO_HW_IDLE;
126 mAudioHardware = AudioHardwareInterface::create();
127 mHardwareStatus = AUDIO_HW_INIT;
128 if (mAudioHardware->initCheck() == NO_ERROR) {
129 // open 16-bit output stream for s/w mixer
130 mHardwareStatus = AUDIO_HW_OUTPUT_OPEN;
131 status_t status;
132 AudioStreamOut *hwOutput = mAudioHardware->openOutputStream(AudioSystem::PCM_16_BIT, 0, 0, &status);
133 mHardwareStatus = AUDIO_HW_IDLE;
134 if (hwOutput) {
135 mHardwareMixerThread = new MixerThread(this, hwOutput, AudioSystem::AUDIO_OUTPUT_HARDWARE);
136 } else {
137 LOGE("Failed to initialize hardware output stream, status: %d", status);
138 }
139
140#ifdef WITH_A2DP
141 // Create A2DP interface
142 mA2dpAudioInterface = new A2dpAudioInterface();
143 AudioStreamOut *a2dpOutput = mA2dpAudioInterface->openOutputStream(AudioSystem::PCM_16_BIT, 0, 0, &status);
144 if (a2dpOutput) {
145 mA2dpMixerThread = new MixerThread(this, a2dpOutput, AudioSystem::AUDIO_OUTPUT_A2DP);
146 if (hwOutput) {
147 uint32_t frameCount = ((a2dpOutput->bufferSize()/a2dpOutput->frameSize()) * hwOutput->sampleRate()) / a2dpOutput->sampleRate();
148 MixerThread::OutputTrack *a2dpOutTrack = new MixerThread::OutputTrack(mA2dpMixerThread,
149 hwOutput->sampleRate(),
150 AudioSystem::PCM_16_BIT,
151 hwOutput->channelCount(),
152 frameCount);
153 mHardwareMixerThread->setOuputTrack(a2dpOutTrack);
154 }
155 } else {
156 LOGE("Failed to initialize A2DP output stream, status: %d", status);
157 }
158#endif
159
160 // FIXME - this should come from settings
161 setRouting(AudioSystem::MODE_NORMAL, AudioSystem::ROUTE_SPEAKER, AudioSystem::ROUTE_ALL);
162 setRouting(AudioSystem::MODE_RINGTONE, AudioSystem::ROUTE_SPEAKER, AudioSystem::ROUTE_ALL);
163 setRouting(AudioSystem::MODE_IN_CALL, AudioSystem::ROUTE_EARPIECE, AudioSystem::ROUTE_ALL);
164 setMode(AudioSystem::MODE_NORMAL);
165
166 setMasterVolume(1.0f);
167 setMasterMute(false);
168
169 // Start record thread
The Android Open Source Projectbcef13b2009-03-11 12:11:56 -0700170 mAudioRecordThread = new AudioRecordThread(mAudioHardware, this);
The Android Open Source Projectedbf3b62009-03-03 19:31:44 -0800171 if (mAudioRecordThread != 0) {
172 mAudioRecordThread->run("AudioRecordThread", PRIORITY_URGENT_AUDIO);
173 }
174 } else {
175 LOGE("Couldn't even initialize the stubbed audio hardware!");
176 }
177}
178
179AudioFlinger::~AudioFlinger()
180{
181 if (mAudioRecordThread != 0) {
182 mAudioRecordThread->exit();
183 mAudioRecordThread.clear();
184 }
185 mHardwareMixerThread.clear();
186 delete mAudioHardware;
187 // deleting mA2dpAudioInterface also deletes mA2dpOutput;
188#ifdef WITH_A2DP
189 mA2dpMixerThread.clear();
190 delete mA2dpAudioInterface;
191#endif
192}
193
194
195#ifdef WITH_A2DP
The Android Open Source Project22f8def2009-03-09 11:52:12 -0700196// setA2dpEnabled_l() must be called with AudioFlinger::mLock held
197void AudioFlinger::setA2dpEnabled_l(bool enable)
The Android Open Source Projectedbf3b62009-03-03 19:31:44 -0800198{
The Android Open Source Project22f8def2009-03-09 11:52:12 -0700199 SortedVector < sp<MixerThread::Track> > tracks;
200 SortedVector < wp<MixerThread::Track> > activeTracks;
201
The Android Open Source Projectedbf3b62009-03-03 19:31:44 -0800202 LOGV_IF(enable, "set output to A2DP\n");
203 LOGV_IF(!enable, "set output to hardware audio\n");
204
The Android Open Source Project22f8def2009-03-09 11:52:12 -0700205 // Transfer tracks playing on MUSIC stream from one mixer to the other
206 if (enable) {
207 mHardwareMixerThread->getTracks_l(tracks, activeTracks);
208 mA2dpMixerThread->putTracks_l(tracks, activeTracks);
209 } else {
210 mA2dpMixerThread->getTracks_l(tracks, activeTracks);
211 mHardwareMixerThread->putTracks_l(tracks, activeTracks);
212 }
213 mA2dpEnabled = enable;
214 mNotifyA2dpChange = true;
215 mWaitWorkCV.broadcast();
216}
217
218// checkA2dpEnabledChange_l() must be called with AudioFlinger::mLock held
219void AudioFlinger::checkA2dpEnabledChange_l()
220{
221 if (mNotifyA2dpChange) {
222 // Notify AudioSystem of the A2DP activation/deactivation
223 size_t size = mNotificationClients.size();
224 for (size_t i = 0; i < size; i++) {
225 sp<IBinder> binder = mNotificationClients.itemAt(i).promote();
226 if (binder != NULL) {
227 LOGV("Notifying output change to client %p", binder.get());
228 sp<IAudioFlingerClient> client = interface_cast<IAudioFlingerClient> (binder);
229 client->a2dpEnabledChanged(mA2dpEnabled);
230 }
231 }
232 mNotifyA2dpChange = false;
233 }
The Android Open Source Projectedbf3b62009-03-03 19:31:44 -0800234}
235#endif // WITH_A2DP
236
237bool AudioFlinger::streamForcedToSpeaker(int streamType)
238{
239 // NOTE that streams listed here must not be routed to A2DP by default:
240 // AudioSystem::routedToA2dpOutput(streamType) == false
241 return (streamType == AudioSystem::RING ||
242 streamType == AudioSystem::ALARM ||
243 streamType == AudioSystem::NOTIFICATION);
244}
245
The Android Open Source Projectbcef13b2009-03-11 12:11:56 -0700246bool AudioFlinger::streamDisablesA2dp(int streamType)
247{
248 return (streamType == AudioSystem::VOICE_CALL ||
249 streamType == AudioSystem::BLUETOOTH_SCO);
250}
251
The Android Open Source Projectedbf3b62009-03-03 19:31:44 -0800252status_t AudioFlinger::dumpClients(int fd, const Vector<String16>& args)
253{
254 const size_t SIZE = 256;
255 char buffer[SIZE];
256 String8 result;
257
258 result.append("Clients:\n");
259 for (size_t i = 0; i < mClients.size(); ++i) {
260 wp<Client> wClient = mClients.valueAt(i);
261 if (wClient != 0) {
262 sp<Client> client = wClient.promote();
263 if (client != 0) {
264 snprintf(buffer, SIZE, " pid: %d\n", client->pid());
265 result.append(buffer);
266 }
267 }
268 }
269 write(fd, result.string(), result.size());
270 return NO_ERROR;
271}
272
273
274status_t AudioFlinger::dumpInternals(int fd, const Vector<String16>& args)
275{
276 const size_t SIZE = 256;
277 char buffer[SIZE];
278 String8 result;
The Android Open Source Project22f8def2009-03-09 11:52:12 -0700279 int hardwareStatus = mHardwareStatus;
280
281 if (hardwareStatus == AUDIO_HW_IDLE && mHardwareMixerThread->mStandby) {
282 hardwareStatus = AUDIO_HW_STANDBY;
283 }
284 snprintf(buffer, SIZE, "Hardware status: %d\n", hardwareStatus);
The Android Open Source Projectedbf3b62009-03-03 19:31:44 -0800285 result.append(buffer);
286 write(fd, result.string(), result.size());
287 return NO_ERROR;
288}
289
290status_t AudioFlinger::dumpPermissionDenial(int fd, const Vector<String16>& args)
291{
292 const size_t SIZE = 256;
293 char buffer[SIZE];
294 String8 result;
295 snprintf(buffer, SIZE, "Permission Denial: "
296 "can't dump AudioFlinger from pid=%d, uid=%d\n",
297 IPCThreadState::self()->getCallingPid(),
298 IPCThreadState::self()->getCallingUid());
299 result.append(buffer);
300 write(fd, result.string(), result.size());
301 return NO_ERROR;
302}
303
304status_t AudioFlinger::dump(int fd, const Vector<String16>& args)
305{
306 if (checkCallingPermission(String16("android.permission.DUMP")) == false) {
307 dumpPermissionDenial(fd, args);
308 } else {
The Android Open Source Project22f8def2009-03-09 11:52:12 -0700309 bool locked = false;
310 for (int i = 0; i < kDumpLockRetries; ++i) {
311 if (mLock.tryLock() == NO_ERROR) {
312 locked = true;
313 break;
314 }
315 usleep(kDumpLockSleep);
316 }
The Android Open Source Projectedbf3b62009-03-03 19:31:44 -0800317
318 dumpClients(fd, args);
319 dumpInternals(fd, args);
320 mHardwareMixerThread->dump(fd, args);
321#ifdef WITH_A2DP
322 mA2dpMixerThread->dump(fd, args);
323#endif
324
325 // dump record client
326 if (mAudioRecordThread != 0) mAudioRecordThread->dump(fd, args);
327
328 if (mAudioHardware) {
329 mAudioHardware->dumpState(fd, args);
330 }
The Android Open Source Project22f8def2009-03-09 11:52:12 -0700331 if (locked) mLock.unlock();
The Android Open Source Projectedbf3b62009-03-03 19:31:44 -0800332 }
333 return NO_ERROR;
334}
335
336// IAudioFlinger interface
337
338
339sp<IAudioTrack> AudioFlinger::createTrack(
340 pid_t pid,
341 int streamType,
342 uint32_t sampleRate,
343 int format,
344 int channelCount,
345 int frameCount,
346 uint32_t flags,
347 const sp<IMemory>& sharedBuffer,
348 status_t *status)
349{
350 sp<MixerThread::Track> track;
351 sp<TrackHandle> trackHandle;
352 sp<Client> client;
353 wp<Client> wclient;
354 status_t lStatus;
355
356 if (streamType >= AudioSystem::NUM_STREAM_TYPES) {
357 LOGE("invalid stream type");
358 lStatus = BAD_VALUE;
359 goto Exit;
360 }
361
362 {
363 Mutex::Autolock _l(mLock);
364
365 wclient = mClients.valueFor(pid);
366
367 if (wclient != NULL) {
368 client = wclient.promote();
369 } else {
370 client = new Client(this, pid);
371 mClients.add(pid, client);
372 }
373#ifdef WITH_A2DP
374 if (isA2dpEnabled() && AudioSystem::routedToA2dpOutput(streamType)) {
The Android Open Source Project22f8def2009-03-09 11:52:12 -0700375 track = mA2dpMixerThread->createTrack_l(client, streamType, sampleRate, format,
The Android Open Source Projectedbf3b62009-03-03 19:31:44 -0800376 channelCount, frameCount, sharedBuffer, &lStatus);
377 } else
378#endif
379 {
The Android Open Source Project22f8def2009-03-09 11:52:12 -0700380 track = mHardwareMixerThread->createTrack_l(client, streamType, sampleRate, format,
The Android Open Source Projectedbf3b62009-03-03 19:31:44 -0800381 channelCount, frameCount, sharedBuffer, &lStatus);
382 }
The Android Open Source Project22f8def2009-03-09 11:52:12 -0700383 }
384 if (lStatus == NO_ERROR) {
385 trackHandle = new TrackHandle(track);
386 } else {
387 track.clear();
The Android Open Source Projectedbf3b62009-03-03 19:31:44 -0800388 }
389
390Exit:
391 if(status) {
392 *status = lStatus;
393 }
394 return trackHandle;
395}
396
397uint32_t AudioFlinger::sampleRate(int output) const
398{
399#ifdef WITH_A2DP
400 if (output == AudioSystem::AUDIO_OUTPUT_A2DP) {
401 return mA2dpMixerThread->sampleRate();
402 }
403#endif
404 return mHardwareMixerThread->sampleRate();
405}
406
407int AudioFlinger::channelCount(int output) const
408{
409#ifdef WITH_A2DP
410 if (output == AudioSystem::AUDIO_OUTPUT_A2DP) {
411 return mA2dpMixerThread->channelCount();
412 }
413#endif
414 return mHardwareMixerThread->channelCount();
415}
416
417int AudioFlinger::format(int output) const
418{
419#ifdef WITH_A2DP
420 if (output == AudioSystem::AUDIO_OUTPUT_A2DP) {
421 return mA2dpMixerThread->format();
422 }
423#endif
424 return mHardwareMixerThread->format();
425}
426
427size_t AudioFlinger::frameCount(int output) const
428{
429#ifdef WITH_A2DP
430 if (output == AudioSystem::AUDIO_OUTPUT_A2DP) {
431 return mA2dpMixerThread->frameCount();
432 }
433#endif
434 return mHardwareMixerThread->frameCount();
435}
436
437uint32_t AudioFlinger::latency(int output) const
438{
439#ifdef WITH_A2DP
440 if (output == AudioSystem::AUDIO_OUTPUT_A2DP) {
441 return mA2dpMixerThread->latency();
442 }
443#endif
444 return mHardwareMixerThread->latency();
445}
446
447status_t AudioFlinger::setMasterVolume(float value)
448{
449 // check calling permissions
450 if (!settingsAllowed()) {
451 return PERMISSION_DENIED;
452 }
453
454 // when hw supports master volume, don't scale in sw mixer
455 AutoMutex lock(mHardwareLock);
456 mHardwareStatus = AUDIO_HW_SET_MASTER_VOLUME;
457 if (mAudioHardware->setMasterVolume(value) == NO_ERROR) {
458 value = 1.0f;
459 }
460 mHardwareStatus = AUDIO_HW_IDLE;
461 mHardwareMixerThread->setMasterVolume(value);
462#ifdef WITH_A2DP
463 mA2dpMixerThread->setMasterVolume(value);
464#endif
The Android Open Source Project22f8def2009-03-09 11:52:12 -0700465
The Android Open Source Projectedbf3b62009-03-03 19:31:44 -0800466 return NO_ERROR;
467}
468
469status_t AudioFlinger::setRouting(int mode, uint32_t routes, uint32_t mask)
470{
471 status_t err = NO_ERROR;
472
473 // check calling permissions
474 if (!settingsAllowed()) {
475 return PERMISSION_DENIED;
476 }
477 if ((mode < AudioSystem::MODE_CURRENT) || (mode >= AudioSystem::NUM_MODES)) {
478 LOGW("Illegal value: setRouting(%d, %u, %u)", mode, routes, mask);
479 return BAD_VALUE;
480 }
481
482#ifdef WITH_A2DP
483 LOGD("setRouting %d %d %d, tid %d, calling tid %d\n", mode, routes, mask, gettid(), IPCThreadState::self()->getCallingPid());
484 if (mode == AudioSystem::MODE_NORMAL &&
485 (mask & AudioSystem::ROUTE_BLUETOOTH_A2DP)) {
486 AutoMutex lock(&mLock);
487
488 bool enableA2dp = false;
489 if (routes & AudioSystem::ROUTE_BLUETOOTH_A2DP) {
490 enableA2dp = true;
491 }
The Android Open Source Projectbcef13b2009-03-11 12:11:56 -0700492 if (mA2dpDisableCount > 0) {
493 mA2dpSuppressed = enableA2dp;
494 } else {
495 setA2dpEnabled_l(enableA2dp);
496 }
The Android Open Source Projectedbf3b62009-03-03 19:31:44 -0800497 LOGV("setOutput done\n");
498 }
499#endif
500
501 // do nothing if only A2DP routing is affected
502 mask &= ~AudioSystem::ROUTE_BLUETOOTH_A2DP;
503 if (mask) {
504 AutoMutex lock(mHardwareLock);
505 mHardwareStatus = AUDIO_HW_GET_ROUTING;
506 uint32_t r;
507 err = mAudioHardware->getRouting(mode, &r);
508 if (err == NO_ERROR) {
509 r = (r & ~mask) | (routes & mask);
510 if (mode == AudioSystem::MODE_NORMAL ||
511 (mode == AudioSystem::MODE_CURRENT && getMode() == AudioSystem::MODE_NORMAL)) {
512 mSavedRoute = r;
513 r |= mForcedRoute;
514 LOGV("setRouting mSavedRoute %08x mForcedRoute %08x\n", mSavedRoute, mForcedRoute);
515 }
516 mHardwareStatus = AUDIO_HW_SET_ROUTING;
517 err = mAudioHardware->setRouting(mode, r);
518 }
519 mHardwareStatus = AUDIO_HW_IDLE;
520 }
521 return err;
522}
523
524uint32_t AudioFlinger::getRouting(int mode) const
525{
526 uint32_t routes = 0;
527 if ((mode >= AudioSystem::MODE_CURRENT) && (mode < AudioSystem::NUM_MODES)) {
528 if (mode == AudioSystem::MODE_NORMAL ||
529 (mode == AudioSystem::MODE_CURRENT && getMode() == AudioSystem::MODE_NORMAL)) {
530 routes = mSavedRoute;
531 } else {
532 mHardwareStatus = AUDIO_HW_GET_ROUTING;
533 mAudioHardware->getRouting(mode, &routes);
534 mHardwareStatus = AUDIO_HW_IDLE;
535 }
536 } else {
537 LOGW("Illegal value: getRouting(%d)", mode);
538 }
539 return routes;
540}
541
542status_t AudioFlinger::setMode(int mode)
543{
544 // check calling permissions
545 if (!settingsAllowed()) {
546 return PERMISSION_DENIED;
547 }
548 if ((mode < 0) || (mode >= AudioSystem::NUM_MODES)) {
549 LOGW("Illegal value: setMode(%d)", mode);
550 return BAD_VALUE;
551 }
552
553 AutoMutex lock(mHardwareLock);
554 mHardwareStatus = AUDIO_HW_SET_MODE;
555 status_t ret = mAudioHardware->setMode(mode);
556 mHardwareStatus = AUDIO_HW_IDLE;
557 return ret;
558}
559
560int AudioFlinger::getMode() const
561{
562 int mode = AudioSystem::MODE_INVALID;
563 mHardwareStatus = AUDIO_HW_SET_MODE;
564 mAudioHardware->getMode(&mode);
565 mHardwareStatus = AUDIO_HW_IDLE;
566 return mode;
567}
568
569status_t AudioFlinger::setMicMute(bool state)
570{
571 // check calling permissions
572 if (!settingsAllowed()) {
573 return PERMISSION_DENIED;
574 }
575
576 AutoMutex lock(mHardwareLock);
577 mHardwareStatus = AUDIO_HW_SET_MIC_MUTE;
578 status_t ret = mAudioHardware->setMicMute(state);
579 mHardwareStatus = AUDIO_HW_IDLE;
580 return ret;
581}
582
583bool AudioFlinger::getMicMute() const
584{
585 bool state = AudioSystem::MODE_INVALID;
586 mHardwareStatus = AUDIO_HW_GET_MIC_MUTE;
587 mAudioHardware->getMicMute(&state);
588 mHardwareStatus = AUDIO_HW_IDLE;
589 return state;
590}
591
592status_t AudioFlinger::setMasterMute(bool muted)
593{
594 // check calling permissions
595 if (!settingsAllowed()) {
596 return PERMISSION_DENIED;
597 }
598 mHardwareMixerThread->setMasterMute(muted);
599#ifdef WITH_A2DP
600 mA2dpMixerThread->setMasterMute(muted);
601#endif
602 return NO_ERROR;
603}
604
605float AudioFlinger::masterVolume() const
606{
607 return mHardwareMixerThread->masterVolume();
608}
609
610bool AudioFlinger::masterMute() const
611{
612 return mHardwareMixerThread->masterMute();
613}
614
615status_t AudioFlinger::setStreamVolume(int stream, float value)
616{
617 // check calling permissions
618 if (!settingsAllowed()) {
619 return PERMISSION_DENIED;
620 }
621
622 if (uint32_t(stream) >= AudioSystem::NUM_STREAM_TYPES) {
623 return BAD_VALUE;
624 }
625
626 mHardwareMixerThread->setStreamVolume(stream, value);
627#ifdef WITH_A2DP
628 mA2dpMixerThread->setStreamVolume(stream, value);
629#endif
630
631 status_t ret = NO_ERROR;
632 if (stream == AudioSystem::VOICE_CALL ||
633 stream == AudioSystem::BLUETOOTH_SCO) {
634
635 if (stream == AudioSystem::VOICE_CALL) {
636 value = (float)AudioSystem::logToLinear(value)/100.0f;
637 } else { // (type == AudioSystem::BLUETOOTH_SCO)
638 value = 1.0f;
639 }
640
641 AutoMutex lock(mHardwareLock);
642 mHardwareStatus = AUDIO_SET_VOICE_VOLUME;
643 ret = mAudioHardware->setVoiceVolume(value);
644 mHardwareStatus = AUDIO_HW_IDLE;
645 }
646
647 return ret;
648}
649
650status_t AudioFlinger::setStreamMute(int stream, bool muted)
651{
652 // check calling permissions
653 if (!settingsAllowed()) {
654 return PERMISSION_DENIED;
655 }
656
657 if (uint32_t(stream) >= AudioSystem::NUM_STREAM_TYPES) {
658 return BAD_VALUE;
659 }
660
661#ifdef WITH_A2DP
662 mA2dpMixerThread->setStreamMute(stream, muted);
663#endif
664 if (stream == AudioSystem::MUSIC)
665 {
666 AutoMutex lock(&mHardwareLock);
667 if (mForcedRoute != 0)
668 mMusicMuteSaved = muted;
669 else
670 mHardwareMixerThread->setStreamMute(stream, muted);
671 } else {
672 mHardwareMixerThread->setStreamMute(stream, muted);
673 }
674
675
676
677 return NO_ERROR;
678}
679
680float AudioFlinger::streamVolume(int stream) const
681{
682 if (uint32_t(stream) >= AudioSystem::NUM_STREAM_TYPES) {
683 return 0.0f;
684 }
685 return mHardwareMixerThread->streamVolume(stream);
686}
687
688bool AudioFlinger::streamMute(int stream) const
689{
690 if (uint32_t(stream) >= AudioSystem::NUM_STREAM_TYPES) {
691 return true;
692 }
693
694 if (stream == AudioSystem::MUSIC && mForcedRoute != 0)
695 {
696 return mMusicMuteSaved;
697 }
698 return mHardwareMixerThread->streamMute(stream);
699}
700
701bool AudioFlinger::isMusicActive() const
702{
703 #ifdef WITH_A2DP
704 if (isA2dpEnabled()) {
705 return mA2dpMixerThread->isMusicActive();
706 }
707 #endif
708 return mHardwareMixerThread->isMusicActive();
709}
710
711status_t AudioFlinger::setParameter(const char* key, const char* value)
712{
713 status_t result, result2;
714 AutoMutex lock(mHardwareLock);
715 mHardwareStatus = AUDIO_SET_PARAMETER;
716
717 LOGV("setParameter() key %s, value %s, tid %d, calling tid %d", key, value, gettid(), IPCThreadState::self()->getCallingPid());
718 result = mAudioHardware->setParameter(key, value);
719 if (mA2dpAudioInterface) {
720 result2 = mA2dpAudioInterface->setParameter(key, value);
721 if (result2)
722 result = result2;
723 }
724 mHardwareStatus = AUDIO_HW_IDLE;
725 return result;
726}
727
728size_t AudioFlinger::getInputBufferSize(uint32_t sampleRate, int format, int channelCount)
729{
730 return mAudioHardware->getInputBufferSize(sampleRate, format, channelCount);
731}
732
733void AudioFlinger::registerClient(const sp<IAudioFlingerClient>& client)
734{
735
736 LOGV("registerClient() %p, tid %d, calling tid %d", client.get(), gettid(), IPCThreadState::self()->getCallingPid());
737 Mutex::Autolock _l(mLock);
738
739 sp<IBinder> binder = client->asBinder();
740 if (mNotificationClients.indexOf(binder) < 0) {
741 LOGV("Adding notification client %p", binder.get());
742 binder->linkToDeath(this);
743 mNotificationClients.add(binder);
744 client->a2dpEnabledChanged(isA2dpEnabled());
745 }
746}
747
748void AudioFlinger::binderDied(const wp<IBinder>& who) {
749
750 LOGV("binderDied() %p, tid %d, calling tid %d", who.unsafe_get(), gettid(), IPCThreadState::self()->getCallingPid());
751 Mutex::Autolock _l(mLock);
752
753 IBinder *binder = who.unsafe_get();
754
755 if (binder != NULL) {
756 int index = mNotificationClients.indexOf(binder);
757 if (index >= 0) {
758 LOGV("Removing notification client %p", binder);
759 mNotificationClients.removeAt(index);
760 }
761 }
762}
763
The Android Open Source Projectedbf3b62009-03-03 19:31:44 -0800764void AudioFlinger::removeClient(pid_t pid)
765{
766 LOGV("removeClient() pid %d, tid %d, calling tid %d", pid, gettid(), IPCThreadState::self()->getCallingPid());
767 Mutex::Autolock _l(mLock);
768 mClients.removeItem(pid);
769}
770
The Android Open Source Projectedbf3b62009-03-03 19:31:44 -0800771bool AudioFlinger::isA2dpEnabled() const
772{
The Android Open Source Project22f8def2009-03-09 11:52:12 -0700773 return mA2dpEnabled;
The Android Open Source Projectedbf3b62009-03-03 19:31:44 -0800774}
775
776void AudioFlinger::handleForcedSpeakerRoute(int command)
777{
778 switch(command) {
779 case ACTIVE_TRACK_ADDED:
780 {
781 AutoMutex lock(mHardwareLock);
782 if (mForcedSpeakerCount++ == 0) {
783 mRouteRestoreTime = 0;
784 mMusicMuteSaved = mHardwareMixerThread->streamMute(AudioSystem::MUSIC);
785 if (mForcedRoute == 0 && !(mSavedRoute & AudioSystem::ROUTE_SPEAKER)) {
786 LOGV("Route forced to Speaker ON %08x", mSavedRoute | AudioSystem::ROUTE_SPEAKER);
787 mHardwareMixerThread->setStreamMute(AudioSystem::MUSIC, true);
788 mHardwareStatus = AUDIO_HW_SET_MASTER_VOLUME;
789 mAudioHardware->setMasterVolume(0);
790 usleep(mHardwareMixerThread->latency()*1000);
791 mHardwareStatus = AUDIO_HW_SET_ROUTING;
792 mAudioHardware->setRouting(AudioSystem::MODE_NORMAL, mSavedRoute | AudioSystem::ROUTE_SPEAKER);
793 mHardwareStatus = AUDIO_HW_IDLE;
794 // delay track start so that audio hardware has time to siwtch routes
795 usleep(kStartSleepTime);
796 mHardwareStatus = AUDIO_HW_SET_MASTER_VOLUME;
797 mAudioHardware->setMasterVolume(mHardwareMixerThread->masterVolume());
798 mHardwareStatus = AUDIO_HW_IDLE;
799 }
800 mForcedRoute = AudioSystem::ROUTE_SPEAKER;
801 }
802 LOGV("mForcedSpeakerCount incremented to %d", mForcedSpeakerCount);
803 }
804 break;
805 case ACTIVE_TRACK_REMOVED:
806 {
807 AutoMutex lock(mHardwareLock);
808 if (mForcedSpeakerCount > 0){
809 if (--mForcedSpeakerCount == 0) {
810 mRouteRestoreTime = systemTime() + milliseconds(kStopSleepTime/1000);
811 }
The Android Open Source Projectbcef13b2009-03-11 12:11:56 -0700812 LOGV("mForcedSpeakerCount decremented to %d", mForcedSpeakerCount);
The Android Open Source Projectedbf3b62009-03-03 19:31:44 -0800813 } else {
The Android Open Source Projectbcef13b2009-03-11 12:11:56 -0700814 LOGE("mForcedSpeakerCount is already zero");
The Android Open Source Project22f8def2009-03-09 11:52:12 -0700815 }
The Android Open Source Projectedbf3b62009-03-03 19:31:44 -0800816 }
817 break;
818 case CHECK_ROUTE_RESTORE_TIME:
819 case FORCE_ROUTE_RESTORE:
820 if (mRouteRestoreTime) {
821 AutoMutex lock(mHardwareLock);
822 if (mRouteRestoreTime &&
823 (systemTime() > mRouteRestoreTime || command == FORCE_ROUTE_RESTORE)) {
824 mHardwareMixerThread->setStreamMute(AudioSystem::MUSIC, mMusicMuteSaved);
825 mForcedRoute = 0;
826 if (!(mSavedRoute & AudioSystem::ROUTE_SPEAKER)) {
827 mHardwareStatus = AUDIO_HW_SET_ROUTING;
828 mAudioHardware->setRouting(AudioSystem::MODE_NORMAL, mSavedRoute);
829 mHardwareStatus = AUDIO_HW_IDLE;
830 LOGV("Route forced to Speaker OFF %08x", mSavedRoute);
831 }
832 mRouteRestoreTime = 0;
833 }
834 }
835 break;
836 }
837}
838
The Android Open Source Projectbcef13b2009-03-11 12:11:56 -0700839#ifdef WITH_A2DP
840void AudioFlinger::handleStreamDisablesA2dp(int command)
841{
842 switch(command) {
843 case ACTIVE_TRACK_ADDED:
844 {
845 AutoMutex lock(mHardwareLock);
846 if (mA2dpDisableCount++ == 0) {
847 if (mA2dpEnabled) {
848 setA2dpEnabled_l(false);
849 mA2dpSuppressed = true;
850 }
851 }
852 LOGV("mA2dpDisableCount incremented to %d", mA2dpDisableCount);
853 }
854 break;
855 case ACTIVE_TRACK_REMOVED:
856 {
857 AutoMutex lock(mHardwareLock);
858 if (mA2dpDisableCount > 0){
859 if (--mA2dpDisableCount == 0) {
860 if (mA2dpSuppressed) {
861 setA2dpEnabled_l(true);
862 mA2dpSuppressed = false;
863 }
864 }
865 LOGV("mA2dpDisableCount decremented to %d", mA2dpDisableCount);
866 } else {
867 LOGE("mA2dpDisableCount is already zero");
868 }
869 }
870 break;
871 }
872}
873#endif
The Android Open Source Projectedbf3b62009-03-03 19:31:44 -0800874
875// ----------------------------------------------------------------------------
876
877AudioFlinger::MixerThread::MixerThread(const sp<AudioFlinger>& audioFlinger, AudioStreamOut* output, int outputType)
878 : Thread(false),
879 mAudioFlinger(audioFlinger), mAudioMixer(0), mOutput(output), mOutputType(outputType),
880 mSampleRate(0), mFrameCount(0), mChannelCount(0), mFormat(0), mMixBuffer(0),
881 mLastWriteTime(0), mNumWrites(0), mNumDelayedWrites(0), mStandby(false),
882 mInWrite(false)
883{
884 mSampleRate = output->sampleRate();
885 mChannelCount = output->channelCount();
886
887 // FIXME - Current mixer implementation only supports stereo output
888 if (mChannelCount == 1) {
889 LOGE("Invalid audio hardware channel count");
890 }
891
892 mFormat = output->format();
893 mFrameCount = output->bufferSize() / output->channelCount() / sizeof(int16_t);
894 mAudioMixer = new AudioMixer(mFrameCount, output->sampleRate());
895
896 // FIXME - Current mixer implementation only supports stereo output: Always
897 // Allocate a stereo buffer even if HW output is mono.
898 mMixBuffer = new int16_t[mFrameCount * 2];
899 memset(mMixBuffer, 0, mFrameCount * 2 * sizeof(int16_t));
900}
901
902AudioFlinger::MixerThread::~MixerThread()
903{
904 delete [] mMixBuffer;
905 delete mAudioMixer;
906}
907
908status_t AudioFlinger::MixerThread::dump(int fd, const Vector<String16>& args)
909{
910 dumpInternals(fd, args);
911 dumpTracks(fd, args);
912 return NO_ERROR;
913}
914
915status_t AudioFlinger::MixerThread::dumpTracks(int fd, const Vector<String16>& args)
916{
917 const size_t SIZE = 256;
918 char buffer[SIZE];
919 String8 result;
920
921 snprintf(buffer, SIZE, "Output %d mixer thread tracks\n", mOutputType);
922 result.append(buffer);
923 result.append(" Name Clien Typ Fmt Chn Buf S M F SRate LeftV RighV Serv User\n");
924 for (size_t i = 0; i < mTracks.size(); ++i) {
925 wp<Track> wTrack = mTracks[i];
926 if (wTrack != 0) {
927 sp<Track> track = wTrack.promote();
928 if (track != 0) {
929 track->dump(buffer, SIZE);
930 result.append(buffer);
931 }
932 }
933 }
934
935 snprintf(buffer, SIZE, "Output %d mixer thread active tracks\n", mOutputType);
936 result.append(buffer);
937 result.append(" Name Clien Typ Fmt Chn Buf S M F SRate LeftV RighV Serv User\n");
938 for (size_t i = 0; i < mActiveTracks.size(); ++i) {
939 wp<Track> wTrack = mTracks[i];
940 if (wTrack != 0) {
941 sp<Track> track = wTrack.promote();
942 if (track != 0) {
943 track->dump(buffer, SIZE);
944 result.append(buffer);
945 }
946 }
947 }
948 write(fd, result.string(), result.size());
949 return NO_ERROR;
950}
951
952status_t AudioFlinger::MixerThread::dumpInternals(int fd, const Vector<String16>& args)
953{
954 const size_t SIZE = 256;
955 char buffer[SIZE];
956 String8 result;
957
958 snprintf(buffer, SIZE, "Output %d mixer thread internals\n", mOutputType);
959 result.append(buffer);
960 snprintf(buffer, SIZE, "AudioMixer tracks: %08x\n", mAudioMixer->trackNames());
961 result.append(buffer);
962 snprintf(buffer, SIZE, "last write occurred (msecs): %llu\n", ns2ms(systemTime() - mLastWriteTime));
963 result.append(buffer);
964 snprintf(buffer, SIZE, "total writes: %d\n", mNumWrites);
965 result.append(buffer);
966 snprintf(buffer, SIZE, "delayed writes: %d\n", mNumDelayedWrites);
967 result.append(buffer);
968 snprintf(buffer, SIZE, "blocked in write: %d\n", mInWrite);
969 result.append(buffer);
970 snprintf(buffer, SIZE, "standby: %d\n", mStandby);
971 result.append(buffer);
972 write(fd, result.string(), result.size());
973 return NO_ERROR;
974}
975
976// Thread virtuals
977bool AudioFlinger::MixerThread::threadLoop()
978{
979 unsigned long sleepTime = kBufferRecoveryInUsecs;
980 int16_t* curBuf = mMixBuffer;
981 Vector< sp<Track> > tracksToRemove;
982 size_t enabledTracks = 0;
983 nsecs_t standbyTime = systemTime();
984 size_t mixBufferSize = mFrameCount*mChannelCount*sizeof(int16_t);
985 nsecs_t maxPeriod = seconds(mFrameCount) / mSampleRate * 2;
986
987#ifdef WITH_A2DP
988 bool outputTrackActive = false;
989#endif
990
991 do {
992 enabledTracks = 0;
The Android Open Source Project22f8def2009-03-09 11:52:12 -0700993 { // scope for the AudioFlinger::mLock
The Android Open Source Projectedbf3b62009-03-03 19:31:44 -0800994
The Android Open Source Project22f8def2009-03-09 11:52:12 -0700995 Mutex::Autolock _l(mAudioFlinger->mLock);
The Android Open Source Projectedbf3b62009-03-03 19:31:44 -0800996
997#ifdef WITH_A2DP
The Android Open Source Projectedbf3b62009-03-03 19:31:44 -0800998 if (mOutputTrack != NULL && !mAudioFlinger->isA2dpEnabled()) {
999 if (outputTrackActive) {
The Android Open Source Project22f8def2009-03-09 11:52:12 -07001000 mAudioFlinger->mLock.unlock();
The Android Open Source Projectedbf3b62009-03-03 19:31:44 -08001001 mOutputTrack->stop();
The Android Open Source Project22f8def2009-03-09 11:52:12 -07001002 mAudioFlinger->mLock.lock();
The Android Open Source Projectedbf3b62009-03-03 19:31:44 -08001003 outputTrackActive = false;
1004 }
1005 }
The Android Open Source Project22f8def2009-03-09 11:52:12 -07001006 mAudioFlinger->checkA2dpEnabledChange_l();
The Android Open Source Projectedbf3b62009-03-03 19:31:44 -08001007#endif
1008
1009 const SortedVector< wp<Track> >& activeTracks = mActiveTracks;
1010
1011 // put audio hardware into standby after short delay
1012 if UNLIKELY(!activeTracks.size() && systemTime() > standbyTime) {
1013 // wait until we have something to do...
1014 LOGV("Audio hardware entering standby, output %d\n", mOutputType);
The Android Open Source Projectedbf3b62009-03-03 19:31:44 -08001015 if (!mStandby) {
1016 mOutput->standby();
1017 mStandby = true;
1018 }
1019
1020#ifdef WITH_A2DP
1021 if (outputTrackActive) {
The Android Open Source Project22f8def2009-03-09 11:52:12 -07001022 mAudioFlinger->mLock.unlock();
The Android Open Source Projectedbf3b62009-03-03 19:31:44 -08001023 mOutputTrack->stop();
The Android Open Source Project22f8def2009-03-09 11:52:12 -07001024 mAudioFlinger->mLock.lock();
The Android Open Source Projectedbf3b62009-03-03 19:31:44 -08001025 outputTrackActive = false;
1026 }
1027#endif
1028 if (mOutputType == AudioSystem::AUDIO_OUTPUT_HARDWARE) {
1029 mAudioFlinger->handleForcedSpeakerRoute(FORCE_ROUTE_RESTORE);
1030 }
The Android Open Source Projectedbf3b62009-03-03 19:31:44 -08001031 // we're about to wait, flush the binder command buffer
1032 IPCThreadState::self()->flushCommands();
The Android Open Source Project22f8def2009-03-09 11:52:12 -07001033 mAudioFlinger->mWaitWorkCV.wait(mAudioFlinger->mLock);
The Android Open Source Projectedbf3b62009-03-03 19:31:44 -08001034 LOGV("Audio hardware exiting standby, output %d\n", mOutputType);
1035
1036 if (mMasterMute == false) {
1037 char value[PROPERTY_VALUE_MAX];
1038 property_get("ro.audio.silent", value, "0");
1039 if (atoi(value)) {
1040 LOGD("Silence is golden");
1041 setMasterMute(true);
1042 }
1043 }
1044
1045 standbyTime = systemTime() + kStandbyTimeInNsecs;
1046 continue;
1047 }
1048
1049 // Forced route to speaker is handled by hardware mixer thread
1050 if (mOutputType == AudioSystem::AUDIO_OUTPUT_HARDWARE) {
1051 mAudioFlinger->handleForcedSpeakerRoute(CHECK_ROUTE_RESTORE_TIME);
1052 }
1053
1054 // find out which tracks need to be processed
1055 size_t count = activeTracks.size();
1056 for (size_t i=0 ; i<count ; i++) {
1057 sp<Track> t = activeTracks[i].promote();
1058 if (t == 0) continue;
1059
1060 Track* const track = t.get();
1061 audio_track_cblk_t* cblk = track->cblk();
1062
1063 // The first time a track is added we wait
1064 // for all its buffers to be filled before processing it
1065 mAudioMixer->setActiveTrack(track->name());
1066 if (cblk->framesReady() && (track->isReady() || track->isStopped()) &&
1067 !track->isPaused())
1068 {
1069 //LOGV("track %d u=%08x, s=%08x [OK]", track->name(), cblk->user, cblk->server);
1070
1071 // compute volume for this track
1072 int16_t left, right;
1073 if (track->isMuted() || mMasterMute || track->isPausing()) {
1074 left = right = 0;
1075 if (track->isPausing()) {
1076 LOGV("paused(%d)", track->name());
1077 track->setPaused();
1078 }
1079 } else {
1080 float typeVolume = mStreamTypes[track->type()].volume;
1081 float v = mMasterVolume * typeVolume;
1082 float v_clamped = v * cblk->volume[0];
1083 if (v_clamped > MAX_GAIN) v_clamped = MAX_GAIN;
1084 left = int16_t(v_clamped);
1085 v_clamped = v * cblk->volume[1];
1086 if (v_clamped > MAX_GAIN) v_clamped = MAX_GAIN;
1087 right = int16_t(v_clamped);
1088 }
1089
1090 // XXX: these things DON'T need to be done each time
1091 mAudioMixer->setBufferProvider(track);
1092 mAudioMixer->enable(AudioMixer::MIXING);
1093
1094 int param;
1095 if ( track->mFillingUpStatus == Track::FS_FILLED) {
1096 // no ramp for the first volume setting
1097 track->mFillingUpStatus = Track::FS_ACTIVE;
1098 if (track->mState == TrackBase::RESUMING) {
1099 track->mState = TrackBase::ACTIVE;
1100 param = AudioMixer::RAMP_VOLUME;
1101 } else {
1102 param = AudioMixer::VOLUME;
1103 }
1104 } else {
1105 param = AudioMixer::RAMP_VOLUME;
1106 }
1107 mAudioMixer->setParameter(param, AudioMixer::VOLUME0, left);
1108 mAudioMixer->setParameter(param, AudioMixer::VOLUME1, right);
1109 mAudioMixer->setParameter(
1110 AudioMixer::TRACK,
1111 AudioMixer::FORMAT, track->format());
1112 mAudioMixer->setParameter(
1113 AudioMixer::TRACK,
1114 AudioMixer::CHANNEL_COUNT, track->channelCount());
1115 mAudioMixer->setParameter(
1116 AudioMixer::RESAMPLE,
1117 AudioMixer::SAMPLE_RATE,
1118 int(cblk->sampleRate));
1119
1120 // reset retry count
1121 track->mRetryCount = kMaxTrackRetries;
1122 enabledTracks++;
1123 } else {
1124 //LOGV("track %d u=%08x, s=%08x [NOT READY]", track->name(), cblk->user, cblk->server);
1125 if (track->isStopped()) {
1126 track->reset();
1127 }
1128 if (track->isTerminated() || track->isStopped() || track->isPaused()) {
1129 // We have consumed all the buffers of this track.
1130 // Remove it from the list of active tracks.
1131 LOGV("remove(%d) from active list", track->name());
1132 tracksToRemove.add(track);
1133 } else {
1134 // No buffers for this track. Give it a few chances to
1135 // fill a buffer, then remove it from active list.
1136 if (--(track->mRetryCount) <= 0) {
1137 LOGV("BUFFER TIMEOUT: remove(%d) from active list", track->name());
1138 tracksToRemove.add(track);
1139 }
1140 }
1141 // LOGV("disable(%d)", track->name());
1142 mAudioMixer->disable(AudioMixer::MIXING);
1143 }
1144 }
1145
1146 // remove all the tracks that need to be...
1147 count = tracksToRemove.size();
1148 if (UNLIKELY(count)) {
1149 for (size_t i=0 ; i<count ; i++) {
1150 const sp<Track>& track = tracksToRemove[i];
The Android Open Source Project22f8def2009-03-09 11:52:12 -07001151 removeActiveTrack_l(track);
The Android Open Source Projectedbf3b62009-03-03 19:31:44 -08001152 if (track->isTerminated()) {
1153 mTracks.remove(track);
The Android Open Source Project22f8def2009-03-09 11:52:12 -07001154 deleteTrackName_l(track->mName);
The Android Open Source Projectedbf3b62009-03-03 19:31:44 -08001155 }
1156 }
The Android Open Source Project22f8def2009-03-09 11:52:12 -07001157 }
The Android Open Source Projectedbf3b62009-03-03 19:31:44 -08001158 }
1159
1160 if (LIKELY(enabledTracks)) {
1161 // mix buffers...
1162 mAudioMixer->process(curBuf);
1163
1164#ifdef WITH_A2DP
1165 if (mOutputTrack != NULL && mAudioFlinger->isA2dpEnabled()) {
1166 if (!outputTrackActive) {
1167 LOGV("starting output track in mixer for output %d", mOutputType);
1168 mOutputTrack->start();
1169 outputTrackActive = true;
1170 }
1171 mOutputTrack->write(curBuf, mFrameCount);
1172 }
1173#endif
1174
1175 // output audio to hardware
1176 mLastWriteTime = systemTime();
1177 mInWrite = true;
1178 mOutput->write(curBuf, mixBufferSize);
1179 mNumWrites++;
1180 mInWrite = false;
1181 mStandby = false;
1182 nsecs_t temp = systemTime();
1183 standbyTime = temp + kStandbyTimeInNsecs;
1184 nsecs_t delta = temp - mLastWriteTime;
1185 if (delta > maxPeriod) {
1186 LOGW("write blocked for %llu msecs", ns2ms(delta));
1187 mNumDelayedWrites++;
1188 }
1189 sleepTime = kBufferRecoveryInUsecs;
1190 } else {
1191#ifdef WITH_A2DP
1192 if (mOutputTrack != NULL && mAudioFlinger->isA2dpEnabled()) {
1193 if (outputTrackActive) {
1194 mOutputTrack->write(curBuf, 0);
1195 if (mOutputTrack->bufferQueueEmpty()) {
1196 mOutputTrack->stop();
1197 outputTrackActive = false;
1198 } else {
1199 standbyTime = systemTime() + kStandbyTimeInNsecs;
1200 }
1201 }
1202 }
1203#endif
1204 // There was nothing to mix this round, which means all
1205 // active tracks were late. Sleep a little bit to give
1206 // them another chance. If we're too late, the audio
1207 // hardware will zero-fill for us.
1208 //LOGV("no buffers - usleep(%lu)", sleepTime);
1209 usleep(sleepTime);
1210 if (sleepTime < kMaxBufferRecoveryInUsecs) {
1211 sleepTime += kBufferRecoveryInUsecs;
1212 }
1213 }
1214
1215 // finally let go of all our tracks, without the lock held
1216 // since we can't guarantee the destructors won't acquire that
1217 // same lock.
1218 tracksToRemove.clear();
1219 } while (true);
1220
1221 return false;
1222}
1223
1224status_t AudioFlinger::MixerThread::readyToRun()
1225{
1226 if (mSampleRate == 0) {
1227 LOGE("No working audio driver found.");
1228 return NO_INIT;
1229 }
1230 LOGI("AudioFlinger's thread ready to run for output %d", mOutputType);
1231 return NO_ERROR;
1232}
1233
1234void AudioFlinger::MixerThread::onFirstRef()
1235{
1236 const size_t SIZE = 256;
1237 char buffer[SIZE];
1238
1239 snprintf(buffer, SIZE, "Mixer Thread for output %d", mOutputType);
1240
1241 run(buffer, ANDROID_PRIORITY_URGENT_AUDIO);
1242}
1243
The Android Open Source Project22f8def2009-03-09 11:52:12 -07001244// MixerThread::createTrack_l() must be called with AudioFlinger::mLock held
1245sp<AudioFlinger::MixerThread::Track> AudioFlinger::MixerThread::createTrack_l(
The Android Open Source Projectedbf3b62009-03-03 19:31:44 -08001246 const sp<AudioFlinger::Client>& client,
1247 int streamType,
1248 uint32_t sampleRate,
1249 int format,
1250 int channelCount,
1251 int frameCount,
1252 const sp<IMemory>& sharedBuffer,
1253 status_t *status)
1254{
1255 sp<Track> track;
1256 status_t lStatus;
1257
1258 // Resampler implementation limits input sampling rate to 2 x output sampling rate.
1259 if (sampleRate > MAX_SAMPLE_RATE || sampleRate > mSampleRate*2) {
1260 LOGE("Sample rate out of range: %d mSampleRate %d", sampleRate, mSampleRate);
1261 lStatus = BAD_VALUE;
1262 goto Exit;
1263 }
1264
The Android Open Source Projectedbf3b62009-03-03 19:31:44 -08001265
The Android Open Source Project22f8def2009-03-09 11:52:12 -07001266 if (mSampleRate == 0) {
1267 LOGE("Audio driver not initialized.");
1268 lStatus = NO_INIT;
1269 goto Exit;
The Android Open Source Projectedbf3b62009-03-03 19:31:44 -08001270 }
1271
The Android Open Source Project22f8def2009-03-09 11:52:12 -07001272 track = new Track(this, client, streamType, sampleRate, format,
1273 channelCount, frameCount, sharedBuffer);
1274 if (track->getCblk() == NULL) {
1275 lStatus = NO_MEMORY;
1276 goto Exit;
1277 }
1278 mTracks.add(track);
1279 lStatus = NO_ERROR;
1280
The Android Open Source Projectedbf3b62009-03-03 19:31:44 -08001281Exit:
1282 if(status) {
1283 *status = lStatus;
1284 }
1285 return track;
1286}
1287
The Android Open Source Project22f8def2009-03-09 11:52:12 -07001288// getTracks_l() must be called with AudioFlinger::mLock held
1289void AudioFlinger::MixerThread::getTracks_l(
The Android Open Source Projectedbf3b62009-03-03 19:31:44 -08001290 SortedVector < sp<Track> >& tracks,
1291 SortedVector < wp<Track> >& activeTracks)
1292{
1293 size_t size = mTracks.size();
The Android Open Source Project22f8def2009-03-09 11:52:12 -07001294 LOGV ("MixerThread::getTracks_l() for output %d, mTracks.size %d, mActiveTracks.size %d", mOutputType, mTracks.size(), mActiveTracks.size());
The Android Open Source Projectedbf3b62009-03-03 19:31:44 -08001295 for (size_t i = 0; i < size; i++) {
1296 sp<Track> t = mTracks[i];
1297 if (AudioSystem::routedToA2dpOutput(t->mStreamType)) {
1298 tracks.add(t);
1299 int j = mActiveTracks.indexOf(t);
1300 if (j >= 0) {
1301 t = mActiveTracks[j].promote();
1302 if (t != NULL) {
1303 activeTracks.add(t);
1304 }
1305 }
1306 }
1307 }
1308
1309 size = activeTracks.size();
1310 for (size_t i = 0; i < size; i++) {
The Android Open Source Project22f8def2009-03-09 11:52:12 -07001311 removeActiveTrack_l(activeTracks[i]);
The Android Open Source Projectedbf3b62009-03-03 19:31:44 -08001312 }
1313
1314 size = tracks.size();
1315 for (size_t i = 0; i < size; i++) {
1316 sp<Track> t = tracks[i];
1317 mTracks.remove(t);
The Android Open Source Project22f8def2009-03-09 11:52:12 -07001318 deleteTrackName_l(t->name());
The Android Open Source Projectedbf3b62009-03-03 19:31:44 -08001319 }
1320}
1321
The Android Open Source Project22f8def2009-03-09 11:52:12 -07001322// putTracks_l() must be called with AudioFlinger::mLock held
1323void AudioFlinger::MixerThread::putTracks_l(
The Android Open Source Projectedbf3b62009-03-03 19:31:44 -08001324 SortedVector < sp<Track> >& tracks,
1325 SortedVector < wp<Track> >& activeTracks)
1326{
1327
The Android Open Source Project22f8def2009-03-09 11:52:12 -07001328 LOGV ("MixerThread::putTracks_l() for output %d, tracks.size %d, activeTracks.size %d", mOutputType, tracks.size(), activeTracks.size());
The Android Open Source Projectedbf3b62009-03-03 19:31:44 -08001329
1330 size_t size = tracks.size();
1331 for (size_t i = 0; i < size ; i++) {
1332 sp<Track> t = tracks[i];
The Android Open Source Project22f8def2009-03-09 11:52:12 -07001333 int name = getTrackName_l();
The Android Open Source Projectedbf3b62009-03-03 19:31:44 -08001334
1335 if (name < 0) return;
1336
1337 t->mName = name;
1338 t->mMixerThread = this;
1339 mTracks.add(t);
1340
1341 int j = activeTracks.indexOf(t);
1342 if (j >= 0) {
The Android Open Source Project22f8def2009-03-09 11:52:12 -07001343 addActiveTrack_l(t);
The Android Open Source Projectedbf3b62009-03-03 19:31:44 -08001344 }
1345 }
1346}
1347
1348uint32_t AudioFlinger::MixerThread::sampleRate() const
1349{
1350 return mSampleRate;
1351}
1352
1353int AudioFlinger::MixerThread::channelCount() const
1354{
1355 return mChannelCount;
1356}
1357
1358int AudioFlinger::MixerThread::format() const
1359{
1360 return mFormat;
1361}
1362
1363size_t AudioFlinger::MixerThread::frameCount() const
1364{
1365 return mFrameCount;
1366}
1367
1368uint32_t AudioFlinger::MixerThread::latency() const
1369{
1370 if (mOutput) {
1371 return mOutput->latency();
1372 }
1373 else {
1374 return 0;
1375 }
1376}
1377
1378status_t AudioFlinger::MixerThread::setMasterVolume(float value)
1379{
1380 mMasterVolume = value;
1381 return NO_ERROR;
1382}
1383
1384status_t AudioFlinger::MixerThread::setMasterMute(bool muted)
1385{
1386 mMasterMute = muted;
1387 return NO_ERROR;
1388}
1389
1390float AudioFlinger::MixerThread::masterVolume() const
1391{
1392 return mMasterVolume;
1393}
1394
1395bool AudioFlinger::MixerThread::masterMute() const
1396{
1397 return mMasterMute;
1398}
1399
1400status_t AudioFlinger::MixerThread::setStreamVolume(int stream, float value)
1401{
1402 mStreamTypes[stream].volume = value;
1403 return NO_ERROR;
1404}
1405
1406status_t AudioFlinger::MixerThread::setStreamMute(int stream, bool muted)
1407{
1408 mStreamTypes[stream].mute = muted;
1409 return NO_ERROR;
1410}
1411
1412float AudioFlinger::MixerThread::streamVolume(int stream) const
1413{
1414 return mStreamTypes[stream].volume;
1415}
1416
1417bool AudioFlinger::MixerThread::streamMute(int stream) const
1418{
1419 return mStreamTypes[stream].mute;
1420}
1421
1422bool AudioFlinger::MixerThread::isMusicActive() const
1423{
1424 size_t count = mActiveTracks.size();
1425 for (size_t i = 0 ; i < count ; ++i) {
1426 sp<Track> t = mActiveTracks[i].promote();
1427 if (t == 0) continue;
1428 Track* const track = t.get();
1429 if (t->mStreamType == AudioSystem::MUSIC)
1430 return true;
1431 }
1432 return false;
1433}
1434
The Android Open Source Project22f8def2009-03-09 11:52:12 -07001435// addTrack_l() must be called with AudioFlinger::mLock held
1436status_t AudioFlinger::MixerThread::addTrack_l(const sp<Track>& track)
The Android Open Source Projectedbf3b62009-03-03 19:31:44 -08001437{
1438 status_t status = ALREADY_EXISTS;
The Android Open Source Projectedbf3b62009-03-03 19:31:44 -08001439
1440 // here the track could be either new, or restarted
1441 // in both cases "unstop" the track
1442 if (track->isPaused()) {
1443 track->mState = TrackBase::RESUMING;
1444 LOGV("PAUSED => RESUMING (%d)", track->name());
1445 } else {
1446 track->mState = TrackBase::ACTIVE;
1447 LOGV("? => ACTIVE (%d)", track->name());
1448 }
1449 // set retry count for buffer fill
1450 track->mRetryCount = kMaxTrackStartupRetries;
1451 if (mActiveTracks.indexOf(track) < 0) {
1452 // the track is newly added, make sure it fills up all its
1453 // buffers before playing. This is to ensure the client will
1454 // effectively get the latency it requested.
1455 track->mFillingUpStatus = Track::FS_FILLING;
1456 track->mResetDone = false;
The Android Open Source Project22f8def2009-03-09 11:52:12 -07001457 addActiveTrack_l(track);
The Android Open Source Projectedbf3b62009-03-03 19:31:44 -08001458 status = NO_ERROR;
1459 }
1460
1461 LOGV("mWaitWorkCV.broadcast");
The Android Open Source Project22f8def2009-03-09 11:52:12 -07001462 mAudioFlinger->mWaitWorkCV.broadcast();
The Android Open Source Projectedbf3b62009-03-03 19:31:44 -08001463
1464 return status;
1465}
1466
The Android Open Source Project22f8def2009-03-09 11:52:12 -07001467// removeTrack_l() must be called with AudioFlinger::mLock held
1468void AudioFlinger::MixerThread::removeTrack_l(wp<Track> track, int name)
The Android Open Source Projectedbf3b62009-03-03 19:31:44 -08001469{
The Android Open Source Projectedbf3b62009-03-03 19:31:44 -08001470 sp<Track> t = track.promote();
1471 if (t!=NULL && (t->mState <= TrackBase::STOPPED)) {
The Android Open Source Projectedbf3b62009-03-03 19:31:44 -08001472 t->reset();
The Android Open Source Project22f8def2009-03-09 11:52:12 -07001473 deleteTrackName_l(name);
1474 removeActiveTrack_l(track);
1475 mAudioFlinger->mWaitWorkCV.broadcast();
The Android Open Source Projectedbf3b62009-03-03 19:31:44 -08001476 }
The Android Open Source Projectedbf3b62009-03-03 19:31:44 -08001477}
1478
The Android Open Source Project22f8def2009-03-09 11:52:12 -07001479// destroyTrack_l() must be called with AudioFlinger::mLock held
1480void AudioFlinger::MixerThread::destroyTrack_l(const sp<Track>& track)
The Android Open Source Projectedbf3b62009-03-03 19:31:44 -08001481{
The Android Open Source Projectedbf3b62009-03-03 19:31:44 -08001482 track->mState = TrackBase::TERMINATED;
1483 if (mActiveTracks.indexOf(track) < 0) {
1484 LOGV("remove track (%d) and delete from mixer", track->name());
1485 mTracks.remove(track);
The Android Open Source Project22f8def2009-03-09 11:52:12 -07001486 deleteTrackName_l(track->name());
The Android Open Source Projectedbf3b62009-03-03 19:31:44 -08001487 }
1488}
1489
The Android Open Source Project22f8def2009-03-09 11:52:12 -07001490// addActiveTrack_l() must be called with AudioFlinger::mLock held
1491void AudioFlinger::MixerThread::addActiveTrack_l(const wp<Track>& t)
The Android Open Source Projectedbf3b62009-03-03 19:31:44 -08001492{
1493 mActiveTracks.add(t);
1494
1495 // Force routing to speaker for certain stream types
1496 // The forced routing to speaker is managed by hardware mixer
1497 if (mOutputType == AudioSystem::AUDIO_OUTPUT_HARDWARE) {
1498 sp<Track> track = t.promote();
1499 if (track == NULL) return;
1500
1501 if (streamForcedToSpeaker(track->type())) {
1502 mAudioFlinger->handleForcedSpeakerRoute(ACTIVE_TRACK_ADDED);
1503 }
The Android Open Source Projectbcef13b2009-03-11 12:11:56 -07001504#ifdef WITH_A2DP
1505 if (streamDisablesA2dp(track->type())) {
1506 mAudioFlinger->handleStreamDisablesA2dp(ACTIVE_TRACK_ADDED);
1507 }
1508#endif
The Android Open Source Projectedbf3b62009-03-03 19:31:44 -08001509 }
1510}
1511
The Android Open Source Project22f8def2009-03-09 11:52:12 -07001512// removeActiveTrack_l() must be called with AudioFlinger::mLock held
1513void AudioFlinger::MixerThread::removeActiveTrack_l(const wp<Track>& t)
The Android Open Source Projectedbf3b62009-03-03 19:31:44 -08001514{
1515 mActiveTracks.remove(t);
1516
1517 // Force routing to speaker for certain stream types
1518 // The forced routing to speaker is managed by hardware mixer
1519 if (mOutputType == AudioSystem::AUDIO_OUTPUT_HARDWARE) {
1520 sp<Track> track = t.promote();
1521 if (track == NULL) return;
1522
1523 if (streamForcedToSpeaker(track->type())) {
1524 mAudioFlinger->handleForcedSpeakerRoute(ACTIVE_TRACK_REMOVED);
1525 }
The Android Open Source Projectbcef13b2009-03-11 12:11:56 -07001526#ifdef WITH_A2DP
1527 if (streamDisablesA2dp(track->type())) {
1528 mAudioFlinger->handleStreamDisablesA2dp(ACTIVE_TRACK_REMOVED);
1529 }
1530#endif
The Android Open Source Projectedbf3b62009-03-03 19:31:44 -08001531 }
1532}
1533
The Android Open Source Project22f8def2009-03-09 11:52:12 -07001534// getTrackName_l() must be called with AudioFlinger::mLock held
1535int AudioFlinger::MixerThread::getTrackName_l()
The Android Open Source Projectedbf3b62009-03-03 19:31:44 -08001536{
1537 return mAudioMixer->getTrackName();
1538}
1539
The Android Open Source Project22f8def2009-03-09 11:52:12 -07001540// deleteTrackName_l() must be called with AudioFlinger::mLock held
1541void AudioFlinger::MixerThread::deleteTrackName_l(int name)
The Android Open Source Projectedbf3b62009-03-03 19:31:44 -08001542{
1543 mAudioMixer->deleteTrackName(name);
1544}
1545
1546size_t AudioFlinger::MixerThread::getOutputFrameCount()
1547{
1548 return mOutput->bufferSize() / mOutput->channelCount() / sizeof(int16_t);
1549}
1550
1551// ----------------------------------------------------------------------------
1552
The Android Open Source Project22f8def2009-03-09 11:52:12 -07001553// TrackBase constructor must be called with AudioFlinger::mLock held
The Android Open Source Projectedbf3b62009-03-03 19:31:44 -08001554AudioFlinger::MixerThread::TrackBase::TrackBase(
1555 const sp<MixerThread>& mixerThread,
1556 const sp<Client>& client,
1557 int streamType,
1558 uint32_t sampleRate,
1559 int format,
1560 int channelCount,
1561 int frameCount,
1562 uint32_t flags,
1563 const sp<IMemory>& sharedBuffer)
1564 : RefBase(),
1565 mMixerThread(mixerThread),
1566 mClient(client),
1567 mStreamType(streamType),
1568 mFrameCount(0),
1569 mState(IDLE),
1570 mClientTid(-1),
1571 mFormat(format),
1572 mFlags(flags & ~SYSTEM_FLAGS_MASK)
1573{
The Android Open Source Project22f8def2009-03-09 11:52:12 -07001574 mName = mixerThread->getTrackName_l();
The Android Open Source Projectedbf3b62009-03-03 19:31:44 -08001575 LOGV("TrackBase contructor name %d, calling thread %d", mName, IPCThreadState::self()->getCallingPid());
1576 if (mName < 0) {
1577 LOGE("no more track names availlable");
1578 return;
1579 }
1580
1581 LOGV_IF(sharedBuffer != 0, "sharedBuffer: %p, size: %d", sharedBuffer->pointer(), sharedBuffer->size());
1582
1583 // LOGD("Creating track with %d buffers @ %d bytes", bufferCount, bufferSize);
1584 size_t size = sizeof(audio_track_cblk_t);
1585 size_t bufferSize = frameCount*channelCount*sizeof(int16_t);
1586 if (sharedBuffer == 0) {
1587 size += bufferSize;
1588 }
1589
1590 if (client != NULL) {
1591 mCblkMemory = client->heap()->allocate(size);
1592 if (mCblkMemory != 0) {
1593 mCblk = static_cast<audio_track_cblk_t *>(mCblkMemory->pointer());
1594 if (mCblk) { // construct the shared structure in-place.
1595 new(mCblk) audio_track_cblk_t();
1596 // clear all buffers
1597 mCblk->frameCount = frameCount;
1598 mCblk->sampleRate = sampleRate;
1599 mCblk->channels = channelCount;
1600 if (sharedBuffer == 0) {
1601 mBuffer = (char*)mCblk + sizeof(audio_track_cblk_t);
1602 memset(mBuffer, 0, frameCount*channelCount*sizeof(int16_t));
1603 // Force underrun condition to avoid false underrun callback until first data is
1604 // written to buffer
1605 mCblk->flowControlFlag = 1;
1606 } else {
1607 mBuffer = sharedBuffer->pointer();
1608 }
1609 mBufferEnd = (uint8_t *)mBuffer + bufferSize;
1610 }
1611 } else {
1612 LOGE("not enough memory for AudioTrack size=%u", size);
1613 client->heap()->dump("AudioTrack");
1614 return;
1615 }
1616 } else {
1617 mCblk = (audio_track_cblk_t *)(new uint8_t[size]);
1618 if (mCblk) { // construct the shared structure in-place.
1619 new(mCblk) audio_track_cblk_t();
1620 // clear all buffers
1621 mCblk->frameCount = frameCount;
1622 mCblk->sampleRate = sampleRate;
1623 mCblk->channels = channelCount;
1624 mBuffer = (char*)mCblk + sizeof(audio_track_cblk_t);
1625 memset(mBuffer, 0, frameCount*channelCount*sizeof(int16_t));
1626 // Force underrun condition to avoid false underrun callback until first data is
1627 // written to buffer
1628 mCblk->flowControlFlag = 1;
1629 mBufferEnd = (uint8_t *)mBuffer + bufferSize;
1630 }
1631 }
1632}
1633
1634AudioFlinger::MixerThread::TrackBase::~TrackBase()
1635{
1636 if (mCblk) {
1637 mCblk->~audio_track_cblk_t(); // destroy our shared-structure.
1638 }
1639 mCblkMemory.clear(); // and free the shared memory
1640 mClient.clear();
1641}
1642
1643void AudioFlinger::MixerThread::TrackBase::releaseBuffer(AudioBufferProvider::Buffer* buffer)
1644{
1645 buffer->raw = 0;
1646 mFrameCount = buffer->frameCount;
1647 step();
1648 buffer->frameCount = 0;
1649}
1650
1651bool AudioFlinger::MixerThread::TrackBase::step() {
1652 bool result;
1653 audio_track_cblk_t* cblk = this->cblk();
1654
1655 result = cblk->stepServer(mFrameCount);
1656 if (!result) {
1657 LOGV("stepServer failed acquiring cblk mutex");
1658 mFlags |= STEPSERVER_FAILED;
1659 }
1660 return result;
1661}
1662
1663void AudioFlinger::MixerThread::TrackBase::reset() {
1664 audio_track_cblk_t* cblk = this->cblk();
1665
1666 cblk->user = 0;
1667 cblk->server = 0;
1668 cblk->userBase = 0;
1669 cblk->serverBase = 0;
1670 mFlags &= (uint32_t)(~SYSTEM_FLAGS_MASK);
1671 LOGV("TrackBase::reset");
1672}
1673
1674sp<IMemory> AudioFlinger::MixerThread::TrackBase::getCblk() const
1675{
1676 return mCblkMemory;
1677}
1678
1679int AudioFlinger::MixerThread::TrackBase::sampleRate() const {
1680 return mCblk->sampleRate;
1681}
1682
1683int AudioFlinger::MixerThread::TrackBase::channelCount() const {
1684 return mCblk->channels;
1685}
1686
1687void* AudioFlinger::MixerThread::TrackBase::getBuffer(uint32_t offset, uint32_t frames) const {
1688 audio_track_cblk_t* cblk = this->cblk();
1689 int16_t *bufferStart = (int16_t *)mBuffer + (offset-cblk->serverBase)*cblk->channels;
1690 int16_t *bufferEnd = bufferStart + frames * cblk->channels;
1691
1692 // Check validity of returned pointer in case the track control block would have been corrupted.
1693 if (bufferStart < mBuffer || bufferStart > bufferEnd || bufferEnd > mBufferEnd) {
1694 LOGW("TrackBase::getBuffer buffer out of range:\n start: %p, end %p , mBuffer %p mBufferEnd %p\n \
1695 server %d, serverBase %d, user %d, userBase %d",
1696 bufferStart, bufferEnd, mBuffer, mBufferEnd,
1697 cblk->server, cblk->serverBase, cblk->user, cblk->userBase);
1698 return 0;
1699 }
1700
1701 return bufferStart;
1702}
1703
1704// ----------------------------------------------------------------------------
1705
The Android Open Source Project22f8def2009-03-09 11:52:12 -07001706// Track constructor must be called with AudioFlinger::mLock held
The Android Open Source Projectedbf3b62009-03-03 19:31:44 -08001707AudioFlinger::MixerThread::Track::Track(
1708 const sp<MixerThread>& mixerThread,
1709 const sp<Client>& client,
1710 int streamType,
1711 uint32_t sampleRate,
1712 int format,
1713 int channelCount,
1714 int frameCount,
1715 const sp<IMemory>& sharedBuffer)
1716 : TrackBase(mixerThread, client, streamType, sampleRate, format, channelCount, frameCount, 0, sharedBuffer)
1717{
1718 mVolume[0] = 1.0f;
1719 mVolume[1] = 1.0f;
1720 mMute = false;
1721 mSharedBuffer = sharedBuffer;
1722}
1723
1724AudioFlinger::MixerThread::Track::~Track()
1725{
1726 wp<Track> weak(this); // never create a strong ref from the dtor
The Android Open Source Project22f8def2009-03-09 11:52:12 -07001727 Mutex::Autolock _l(mMixerThread->mAudioFlinger->mLock);
The Android Open Source Projectedbf3b62009-03-03 19:31:44 -08001728 mState = TERMINATED;
The Android Open Source Project22f8def2009-03-09 11:52:12 -07001729 mMixerThread->removeTrack_l(weak, mName);
The Android Open Source Projectedbf3b62009-03-03 19:31:44 -08001730}
1731
1732void AudioFlinger::MixerThread::Track::destroy()
1733{
The Android Open Source Project22f8def2009-03-09 11:52:12 -07001734 // NOTE: destroyTrack_l() can remove a strong reference to this Track
1735 // by removing it from mTracks vector, so there is a risk that this Tracks's
1736 // desctructor is called. As the destructor needs to lock AudioFlinger::mLock,
1737 // we must acquire a strong reference on this Track before locking AudioFlinger::mLock
1738 // here so that the destructor is called only when exiting this function.
1739 // On the other hand, as long as Track::destroy() is only called by
1740 // TrackHandle destructor, the TrackHandle still holds a strong ref on
1741 // this Track with its member mTrack.
1742 sp<Track> keep(this);
1743 { // scope for AudioFlinger::mLock
1744 Mutex::Autolock _l(mMixerThread->mAudioFlinger->mLock);
1745 mMixerThread->destroyTrack_l(this);
1746 }
The Android Open Source Projectedbf3b62009-03-03 19:31:44 -08001747}
1748
1749void AudioFlinger::MixerThread::Track::dump(char* buffer, size_t size)
1750{
1751 snprintf(buffer, size, " %5d %5d %3u %3u %3u %3u %1d %1d %1d %5u %5u %5u %04x %04x\n",
1752 mName - AudioMixer::TRACK0,
1753 (mClient == NULL) ? getpid() : mClient->pid(),
1754 mStreamType,
1755 mFormat,
1756 mCblk->channels,
1757 mFrameCount,
1758 mState,
1759 mMute,
1760 mFillingUpStatus,
1761 mCblk->sampleRate,
1762 mCblk->volume[0],
1763 mCblk->volume[1],
1764 mCblk->server,
1765 mCblk->user);
1766}
1767
1768status_t AudioFlinger::MixerThread::Track::getNextBuffer(AudioBufferProvider::Buffer* buffer)
1769{
1770 audio_track_cblk_t* cblk = this->cblk();
1771 uint32_t framesReady;
1772 uint32_t framesReq = buffer->frameCount;
1773
1774 // Check if last stepServer failed, try to step now
1775 if (mFlags & TrackBase::STEPSERVER_FAILED) {
1776 if (!step()) goto getNextBuffer_exit;
1777 LOGV("stepServer recovered");
1778 mFlags &= ~TrackBase::STEPSERVER_FAILED;
1779 }
1780
1781 framesReady = cblk->framesReady();
1782
1783 if (LIKELY(framesReady)) {
1784 uint32_t s = cblk->server;
1785 uint32_t bufferEnd = cblk->serverBase + cblk->frameCount;
1786
1787 bufferEnd = (cblk->loopEnd < bufferEnd) ? cblk->loopEnd : bufferEnd;
1788 if (framesReq > framesReady) {
1789 framesReq = framesReady;
1790 }
1791 if (s + framesReq > bufferEnd) {
1792 framesReq = bufferEnd - s;
1793 }
1794
1795 buffer->raw = getBuffer(s, framesReq);
1796 if (buffer->raw == 0) goto getNextBuffer_exit;
1797
1798 buffer->frameCount = framesReq;
1799 return NO_ERROR;
1800 }
1801
1802getNextBuffer_exit:
1803 buffer->raw = 0;
1804 buffer->frameCount = 0;
1805 return NOT_ENOUGH_DATA;
1806}
1807
1808bool AudioFlinger::MixerThread::Track::isReady() const {
1809 if (mFillingUpStatus != FS_FILLING) return true;
1810
1811 if (mCblk->framesReady() >= mCblk->frameCount ||
1812 mCblk->forceReady) {
1813 mFillingUpStatus = FS_FILLED;
1814 mCblk->forceReady = 0;
1815 LOGV("Track::isReady() track %d for output %d", mName, mMixerThread->mOutputType);
1816 return true;
1817 }
1818 return false;
1819}
1820
1821status_t AudioFlinger::MixerThread::Track::start()
1822{
1823 LOGV("start(%d), calling thread %d for output %d", mName, IPCThreadState::self()->getCallingPid(), mMixerThread->mOutputType);
The Android Open Source Project22f8def2009-03-09 11:52:12 -07001824 Mutex::Autolock _l(mMixerThread->mAudioFlinger->mLock);
1825 mMixerThread->addTrack_l(this);
The Android Open Source Projectedbf3b62009-03-03 19:31:44 -08001826 return NO_ERROR;
1827}
1828
1829void AudioFlinger::MixerThread::Track::stop()
1830{
1831 LOGV("stop(%d), calling thread %d for output %d", mName, IPCThreadState::self()->getCallingPid(), mMixerThread->mOutputType);
The Android Open Source Project22f8def2009-03-09 11:52:12 -07001832 Mutex::Autolock _l(mMixerThread->mAudioFlinger->mLock);
The Android Open Source Projectedbf3b62009-03-03 19:31:44 -08001833 if (mState > STOPPED) {
1834 mState = STOPPED;
1835 // If the track is not active (PAUSED and buffers full), flush buffers
1836 if (mMixerThread->mActiveTracks.indexOf(this) < 0) {
1837 reset();
1838 }
1839 LOGV("(> STOPPED) => STOPPED (%d)", mName);
1840 }
1841}
1842
1843void AudioFlinger::MixerThread::Track::pause()
1844{
1845 LOGV("pause(%d), calling thread %d", mName, IPCThreadState::self()->getCallingPid());
The Android Open Source Project22f8def2009-03-09 11:52:12 -07001846 Mutex::Autolock _l(mMixerThread->mAudioFlinger->mLock);
The Android Open Source Projectedbf3b62009-03-03 19:31:44 -08001847 if (mState == ACTIVE || mState == RESUMING) {
1848 mState = PAUSING;
1849 LOGV("ACTIVE/RESUMING => PAUSING (%d)", mName);
1850 }
1851}
1852
1853void AudioFlinger::MixerThread::Track::flush()
1854{
1855 LOGV("flush(%d)", mName);
The Android Open Source Project22f8def2009-03-09 11:52:12 -07001856 Mutex::Autolock _l(mMixerThread->mAudioFlinger->mLock);
The Android Open Source Projectedbf3b62009-03-03 19:31:44 -08001857 if (mState != STOPPED && mState != PAUSED && mState != PAUSING) {
1858 return;
1859 }
1860 // No point remaining in PAUSED state after a flush => go to
1861 // STOPPED state
1862 mState = STOPPED;
1863
1864 // NOTE: reset() will reset cblk->user and cblk->server with
1865 // the risk that at the same time, the AudioMixer is trying to read
1866 // data. In this case, getNextBuffer() would return a NULL pointer
1867 // as audio buffer => the AudioMixer code MUST always test that pointer
1868 // returned by getNextBuffer() is not NULL!
1869 reset();
1870}
1871
1872void AudioFlinger::MixerThread::Track::reset()
1873{
1874 // Do not reset twice to avoid discarding data written just after a flush and before
1875 // the audioflinger thread detects the track is stopped.
1876 if (!mResetDone) {
1877 TrackBase::reset();
1878 // Force underrun condition to avoid false underrun callback until first data is
1879 // written to buffer
1880 mCblk->flowControlFlag = 1;
1881 mCblk->forceReady = 0;
1882 mFillingUpStatus = FS_FILLING;
1883 mResetDone = true;
1884 }
1885}
1886
1887void AudioFlinger::MixerThread::Track::mute(bool muted)
1888{
1889 mMute = muted;
1890}
1891
1892void AudioFlinger::MixerThread::Track::setVolume(float left, float right)
1893{
1894 mVolume[0] = left;
1895 mVolume[1] = right;
1896}
1897
1898// ----------------------------------------------------------------------------
1899
The Android Open Source Project22f8def2009-03-09 11:52:12 -07001900// RecordTrack constructor must be called with AudioFlinger::mLock held
The Android Open Source Projectedbf3b62009-03-03 19:31:44 -08001901AudioFlinger::MixerThread::RecordTrack::RecordTrack(
1902 const sp<MixerThread>& mixerThread,
1903 const sp<Client>& client,
1904 int streamType,
1905 uint32_t sampleRate,
1906 int format,
1907 int channelCount,
1908 int frameCount,
1909 uint32_t flags)
1910 : TrackBase(mixerThread, client, streamType, sampleRate, format,
1911 channelCount, frameCount, flags, 0),
1912 mOverflow(false)
1913{
1914}
1915
1916AudioFlinger::MixerThread::RecordTrack::~RecordTrack()
1917{
The Android Open Source Project22f8def2009-03-09 11:52:12 -07001918 Mutex::Autolock _l(mMixerThread->mAudioFlinger->mLock);
1919 mMixerThread->deleteTrackName_l(mName);
The Android Open Source Projectedbf3b62009-03-03 19:31:44 -08001920}
1921
1922status_t AudioFlinger::MixerThread::RecordTrack::getNextBuffer(AudioBufferProvider::Buffer* buffer)
1923{
1924 audio_track_cblk_t* cblk = this->cblk();
1925 uint32_t framesAvail;
1926 uint32_t framesReq = buffer->frameCount;
1927
1928 // Check if last stepServer failed, try to step now
1929 if (mFlags & TrackBase::STEPSERVER_FAILED) {
1930 if (!step()) goto getNextBuffer_exit;
1931 LOGV("stepServer recovered");
1932 mFlags &= ~TrackBase::STEPSERVER_FAILED;
1933 }
1934
1935 framesAvail = cblk->framesAvailable_l();
1936
1937 if (LIKELY(framesAvail)) {
1938 uint32_t s = cblk->server;
1939 uint32_t bufferEnd = cblk->serverBase + cblk->frameCount;
1940
1941 if (framesReq > framesAvail) {
1942 framesReq = framesAvail;
1943 }
1944 if (s + framesReq > bufferEnd) {
1945 framesReq = bufferEnd - s;
1946 }
1947
1948 buffer->raw = getBuffer(s, framesReq);
1949 if (buffer->raw == 0) goto getNextBuffer_exit;
1950
1951 buffer->frameCount = framesReq;
1952 return NO_ERROR;
1953 }
1954
1955getNextBuffer_exit:
1956 buffer->raw = 0;
1957 buffer->frameCount = 0;
1958 return NOT_ENOUGH_DATA;
1959}
1960
1961status_t AudioFlinger::MixerThread::RecordTrack::start()
1962{
1963 return mMixerThread->mAudioFlinger->startRecord(this);
1964}
1965
1966void AudioFlinger::MixerThread::RecordTrack::stop()
1967{
1968 mMixerThread->mAudioFlinger->stopRecord(this);
1969 TrackBase::reset();
1970 // Force overerrun condition to avoid false overrun callback until first data is
1971 // read from buffer
1972 mCblk->flowControlFlag = 1;
1973}
1974
1975
1976// ----------------------------------------------------------------------------
1977
1978AudioFlinger::MixerThread::OutputTrack::OutputTrack(
1979 const sp<MixerThread>& mixerThread,
1980 uint32_t sampleRate,
1981 int format,
1982 int channelCount,
1983 int frameCount)
1984 : Track(mixerThread, NULL, AudioSystem::SYSTEM, sampleRate, format, channelCount, frameCount, NULL),
1985 mOutputMixerThread(mixerThread)
1986{
1987
1988 mCblk->out = 1;
1989 mCblk->buffers = (char*)mCblk + sizeof(audio_track_cblk_t);
1990 mCblk->volume[0] = mCblk->volume[1] = 0x1000;
1991 mOutBuffer.frameCount = 0;
1992 mCblk->bufferTimeoutMs = 10;
1993
1994 LOGV("OutputTrack constructor mCblk %p, mBuffer %p, mCblk->buffers %p, mCblk->frameCount %d, mCblk->sampleRate %d, mCblk->channels %d mBufferEnd %p",
1995 mCblk, mBuffer, mCblk->buffers, mCblk->frameCount, mCblk->sampleRate, mCblk->channels, mBufferEnd);
1996
1997}
1998
1999AudioFlinger::MixerThread::OutputTrack::~OutputTrack()
2000{
2001 stop();
2002}
2003
2004status_t AudioFlinger::MixerThread::OutputTrack::start()
2005{
2006 status_t status = Track::start();
2007
2008 mRetryCount = 127;
2009 return status;
2010}
2011
2012void AudioFlinger::MixerThread::OutputTrack::stop()
2013{
2014 Track::stop();
2015 clearBufferQueue();
2016 mOutBuffer.frameCount = 0;
2017}
2018
2019void AudioFlinger::MixerThread::OutputTrack::write(int16_t* data, uint32_t frames)
2020{
2021 Buffer *pInBuffer;
2022 Buffer inBuffer;
2023 uint32_t channels = mCblk->channels;
2024
2025 inBuffer.frameCount = frames;
2026 inBuffer.i16 = data;
2027
2028 if (mCblk->user == 0) {
2029 if (mOutputMixerThread->isMusicActive()) {
2030 mCblk->forceReady = 1;
2031 LOGV("OutputTrack::start() force ready");
2032 } else if (mCblk->frameCount > frames){
2033 if (mBufferQueue.size() < kMaxOutputTrackBuffers) {
2034 uint32_t startFrames = (mCblk->frameCount - frames);
2035 LOGV("OutputTrack::start() write %d frames", startFrames);
2036 pInBuffer = new Buffer;
2037 pInBuffer->mBuffer = new int16_t[startFrames * channels];
2038 pInBuffer->frameCount = startFrames;
2039 pInBuffer->i16 = pInBuffer->mBuffer;
2040 memset(pInBuffer->raw, 0, startFrames * channels * sizeof(int16_t));
2041 mBufferQueue.add(pInBuffer);
2042 } else {
2043 LOGW ("OutputTrack::write() no more buffers");
2044 }
2045 }
2046 }
2047
2048 while (1) {
2049 // First write pending buffers, then new data
2050 if (mBufferQueue.size()) {
2051 pInBuffer = mBufferQueue.itemAt(0);
2052 } else {
2053 pInBuffer = &inBuffer;
2054 }
2055
2056 if (pInBuffer->frameCount == 0) {
2057 break;
2058 }
2059
2060 if (mOutBuffer.frameCount == 0) {
2061 mOutBuffer.frameCount = pInBuffer->frameCount;
2062 if (obtainBuffer(&mOutBuffer) == (status_t)AudioTrack::NO_MORE_BUFFERS) {
2063 break;
2064 }
2065 }
2066
2067 uint32_t outFrames = pInBuffer->frameCount > mOutBuffer.frameCount ? mOutBuffer.frameCount : pInBuffer->frameCount;
2068 memcpy(mOutBuffer.raw, pInBuffer->raw, outFrames * channels * sizeof(int16_t));
2069 mCblk->stepUser(outFrames);
2070 pInBuffer->frameCount -= outFrames;
2071 pInBuffer->i16 += outFrames * channels;
2072 mOutBuffer.frameCount -= outFrames;
2073 mOutBuffer.i16 += outFrames * channels;
2074
2075 if (pInBuffer->frameCount == 0) {
2076 if (mBufferQueue.size()) {
2077 mBufferQueue.removeAt(0);
2078 delete [] pInBuffer->mBuffer;
2079 delete pInBuffer;
2080 } else {
2081 break;
2082 }
2083 }
2084 }
2085
2086 // If we could not write all frames, allocate a buffer and queue it for next time.
2087 if (inBuffer.frameCount) {
2088 if (mBufferQueue.size() < kMaxOutputTrackBuffers) {
2089 pInBuffer = new Buffer;
2090 pInBuffer->mBuffer = new int16_t[inBuffer.frameCount * channels];
2091 pInBuffer->frameCount = inBuffer.frameCount;
2092 pInBuffer->i16 = pInBuffer->mBuffer;
2093 memcpy(pInBuffer->raw, inBuffer.raw, inBuffer.frameCount * channels * sizeof(int16_t));
2094 mBufferQueue.add(pInBuffer);
2095 } else {
2096 LOGW("OutputTrack::write() no more buffers");
2097 }
2098 }
2099
2100 // Calling write() with a 0 length buffer, means that no more data will be written:
2101 // If no more buffers are pending, fill output track buffer to make sure it is started
2102 // by output mixer.
2103 if (frames == 0 && mBufferQueue.size() == 0 && mCblk->user < mCblk->frameCount) {
2104 frames = mCblk->frameCount - mCblk->user;
2105 pInBuffer = new Buffer;
2106 pInBuffer->mBuffer = new int16_t[frames * channels];
2107 pInBuffer->frameCount = frames;
2108 pInBuffer->i16 = pInBuffer->mBuffer;
2109 memset(pInBuffer->raw, 0, frames * channels * sizeof(int16_t));
2110 mBufferQueue.add(pInBuffer);
2111 }
2112
2113}
2114
2115status_t AudioFlinger::MixerThread::OutputTrack::obtainBuffer(AudioBufferProvider::Buffer* buffer)
2116{
2117 int active;
2118 int timeout = 0;
2119 status_t result;
2120 audio_track_cblk_t* cblk = mCblk;
2121 uint32_t framesReq = buffer->frameCount;
2122
2123 LOGV("OutputTrack::obtainBuffer user %d, server %d", cblk->user, cblk->server);
2124 buffer->frameCount = 0;
2125
2126 uint32_t framesAvail = cblk->framesAvailable();
2127
2128 if (framesAvail == 0) {
2129 return AudioTrack::NO_MORE_BUFFERS;
2130 }
2131
2132 if (framesReq > framesAvail) {
2133 framesReq = framesAvail;
2134 }
2135
2136 uint32_t u = cblk->user;
2137 uint32_t bufferEnd = cblk->userBase + cblk->frameCount;
2138
2139 if (u + framesReq > bufferEnd) {
2140 framesReq = bufferEnd - u;
2141 }
2142
2143 buffer->frameCount = framesReq;
2144 buffer->raw = (void *)cblk->buffer(u);
2145 return NO_ERROR;
2146}
2147
2148
2149void AudioFlinger::MixerThread::OutputTrack::clearBufferQueue()
2150{
2151 size_t size = mBufferQueue.size();
2152 Buffer *pBuffer;
2153
2154 for (size_t i = 0; i < size; i++) {
2155 pBuffer = mBufferQueue.itemAt(i);
2156 delete [] pBuffer->mBuffer;
2157 delete pBuffer;
2158 }
2159 mBufferQueue.clear();
2160}
2161
2162// ----------------------------------------------------------------------------
2163
2164AudioFlinger::Client::Client(const sp<AudioFlinger>& audioFlinger, pid_t pid)
2165 : RefBase(),
2166 mAudioFlinger(audioFlinger),
2167 mMemoryDealer(new MemoryDealer(1024*1024)),
2168 mPid(pid)
2169{
2170 // 1 MB of address space is good for 32 tracks, 8 buffers each, 4 KB/buffer
2171}
2172
2173AudioFlinger::Client::~Client()
2174{
2175 mAudioFlinger->removeClient(mPid);
2176}
2177
2178const sp<MemoryDealer>& AudioFlinger::Client::heap() const
2179{
2180 return mMemoryDealer;
2181}
2182
2183// ----------------------------------------------------------------------------
2184
2185AudioFlinger::TrackHandle::TrackHandle(const sp<AudioFlinger::MixerThread::Track>& track)
2186 : BnAudioTrack(),
2187 mTrack(track)
2188{
2189}
2190
2191AudioFlinger::TrackHandle::~TrackHandle() {
2192 // just stop the track on deletion, associated resources
2193 // will be freed from the main thread once all pending buffers have
2194 // been played. Unless it's not in the active track list, in which
2195 // case we free everything now...
2196 mTrack->destroy();
2197}
2198
2199status_t AudioFlinger::TrackHandle::start() {
2200 return mTrack->start();
2201}
2202
2203void AudioFlinger::TrackHandle::stop() {
2204 mTrack->stop();
2205}
2206
2207void AudioFlinger::TrackHandle::flush() {
2208 mTrack->flush();
2209}
2210
2211void AudioFlinger::TrackHandle::mute(bool e) {
2212 mTrack->mute(e);
2213}
2214
2215void AudioFlinger::TrackHandle::pause() {
2216 mTrack->pause();
2217}
2218
2219void AudioFlinger::TrackHandle::setVolume(float left, float right) {
2220 mTrack->setVolume(left, right);
2221}
2222
2223sp<IMemory> AudioFlinger::TrackHandle::getCblk() const {
2224 return mTrack->getCblk();
2225}
2226
2227status_t AudioFlinger::TrackHandle::onTransact(
2228 uint32_t code, const Parcel& data, Parcel* reply, uint32_t flags)
2229{
2230 return BnAudioTrack::onTransact(code, data, reply, flags);
2231}
2232
2233// ----------------------------------------------------------------------------
2234
2235sp<IAudioRecord> AudioFlinger::openRecord(
2236 pid_t pid,
2237 int streamType,
2238 uint32_t sampleRate,
2239 int format,
2240 int channelCount,
2241 int frameCount,
2242 uint32_t flags,
2243 status_t *status)
2244{
The Android Open Source Projectedbf3b62009-03-03 19:31:44 -08002245 sp<MixerThread::RecordTrack> recordTrack;
2246 sp<RecordHandle> recordHandle;
2247 sp<Client> client;
2248 wp<Client> wclient;
2249 AudioStreamIn* input = 0;
2250 int inFrameCount;
2251 size_t inputBufferSize;
2252 status_t lStatus;
2253
2254 // check calling permissions
2255 if (!recordingAllowed()) {
2256 lStatus = PERMISSION_DENIED;
2257 goto Exit;
2258 }
2259
2260 if (uint32_t(streamType) >= AudioRecord::NUM_STREAM_TYPES) {
2261 LOGE("invalid stream type");
2262 lStatus = BAD_VALUE;
2263 goto Exit;
2264 }
2265
2266 if (sampleRate > MAX_SAMPLE_RATE) {
2267 LOGE("Sample rate out of range");
2268 lStatus = BAD_VALUE;
2269 goto Exit;
2270 }
2271
2272 if (mAudioRecordThread == 0) {
2273 LOGE("Audio record thread not started");
2274 lStatus = NO_INIT;
2275 goto Exit;
2276 }
2277
2278
2279 // Check that audio input stream accepts requested audio parameters
2280 inputBufferSize = mAudioHardware->getInputBufferSize(sampleRate, format, channelCount);
2281 if (inputBufferSize == 0) {
2282 lStatus = BAD_VALUE;
2283 LOGE("Bad audio input parameters: sampling rate %u, format %d, channels %d", sampleRate, format, channelCount);
2284 goto Exit;
2285 }
2286
2287 // add client to list
The Android Open Source Project22f8def2009-03-09 11:52:12 -07002288 { // scope for mLock
The Android Open Source Projectedbf3b62009-03-03 19:31:44 -08002289 Mutex::Autolock _l(mLock);
2290 wclient = mClients.valueFor(pid);
2291 if (wclient != NULL) {
2292 client = wclient.promote();
2293 } else {
2294 client = new Client(this, pid);
2295 mClients.add(pid, client);
2296 }
The Android Open Source Project22f8def2009-03-09 11:52:12 -07002297
2298 // frameCount must be a multiple of input buffer size
2299 inFrameCount = inputBufferSize/channelCount/sizeof(short);
2300 frameCount = ((frameCount - 1)/inFrameCount + 1) * inFrameCount;
2301
2302 // create new record track. The record track uses one track in mHardwareMixerThread by convention.
2303 recordTrack = new MixerThread::RecordTrack(mHardwareMixerThread, client, streamType, sampleRate,
2304 format, channelCount, frameCount, flags);
The Android Open Source Projectedbf3b62009-03-03 19:31:44 -08002305 }
The Android Open Source Projectedbf3b62009-03-03 19:31:44 -08002306 if (recordTrack->getCblk() == NULL) {
2307 recordTrack.clear();
2308 lStatus = NO_MEMORY;
2309 goto Exit;
2310 }
2311
2312 // return to handle to client
2313 recordHandle = new RecordHandle(recordTrack);
2314 lStatus = NO_ERROR;
2315
2316Exit:
2317 if (status) {
2318 *status = lStatus;
2319 }
2320 return recordHandle;
2321}
2322
2323status_t AudioFlinger::startRecord(MixerThread::RecordTrack* recordTrack) {
2324 if (mAudioRecordThread != 0) {
2325 return mAudioRecordThread->start(recordTrack);
2326 }
2327 return NO_INIT;
2328}
2329
2330void AudioFlinger::stopRecord(MixerThread::RecordTrack* recordTrack) {
2331 if (mAudioRecordThread != 0) {
2332 mAudioRecordThread->stop(recordTrack);
2333 }
2334}
2335
2336// ----------------------------------------------------------------------------
2337
2338AudioFlinger::RecordHandle::RecordHandle(const sp<AudioFlinger::MixerThread::RecordTrack>& recordTrack)
2339 : BnAudioRecord(),
2340 mRecordTrack(recordTrack)
2341{
2342}
2343
2344AudioFlinger::RecordHandle::~RecordHandle() {
2345 stop();
2346}
2347
2348status_t AudioFlinger::RecordHandle::start() {
2349 LOGV("RecordHandle::start()");
2350 return mRecordTrack->start();
2351}
2352
2353void AudioFlinger::RecordHandle::stop() {
2354 LOGV("RecordHandle::stop()");
2355 mRecordTrack->stop();
2356}
2357
2358sp<IMemory> AudioFlinger::RecordHandle::getCblk() const {
2359 return mRecordTrack->getCblk();
2360}
2361
2362status_t AudioFlinger::RecordHandle::onTransact(
2363 uint32_t code, const Parcel& data, Parcel* reply, uint32_t flags)
2364{
2365 return BnAudioRecord::onTransact(code, data, reply, flags);
2366}
2367
2368// ----------------------------------------------------------------------------
2369
The Android Open Source Projectbcef13b2009-03-11 12:11:56 -07002370AudioFlinger::AudioRecordThread::AudioRecordThread(AudioHardwareInterface* audioHardware,
2371 const sp<AudioFlinger>& audioFlinger) :
The Android Open Source Projectedbf3b62009-03-03 19:31:44 -08002372 mAudioHardware(audioHardware),
The Android Open Source Projectbcef13b2009-03-11 12:11:56 -07002373 mAudioFlinger(audioFlinger),
The Android Open Source Projectedbf3b62009-03-03 19:31:44 -08002374 mActive(false)
2375{
2376}
2377
2378AudioFlinger::AudioRecordThread::~AudioRecordThread()
2379{
2380}
2381
2382bool AudioFlinger::AudioRecordThread::threadLoop()
2383{
2384 LOGV("AudioRecordThread: start record loop");
2385 AudioBufferProvider::Buffer buffer;
2386 int inBufferSize = 0;
2387 int inFrameCount = 0;
2388 AudioStreamIn* input = 0;
2389
2390 mActive = 0;
2391
2392 // start recording
2393 while (!exitPending()) {
2394 if (!mActive) {
2395 mLock.lock();
2396 if (!mActive && !exitPending()) {
2397 LOGV("AudioRecordThread: loop stopping");
2398 if (input) {
2399 delete input;
2400 input = 0;
2401 }
2402 mRecordTrack.clear();
2403 mStopped.signal();
2404
2405 mWaitWorkCV.wait(mLock);
2406
2407 LOGV("AudioRecordThread: loop starting");
2408 if (mRecordTrack != 0) {
2409 input = mAudioHardware->openInputStream(mRecordTrack->format(),
2410 mRecordTrack->channelCount(),
2411 mRecordTrack->sampleRate(),
2412 &mStartStatus,
2413 (AudioSystem::audio_in_acoustics)(mRecordTrack->mFlags >> 16));
2414 if (input != 0) {
2415 inBufferSize = input->bufferSize();
2416 inFrameCount = inBufferSize/input->frameSize();
2417 }
2418 } else {
2419 mStartStatus = NO_INIT;
2420 }
2421 if (mStartStatus !=NO_ERROR) {
2422 LOGW("record start failed, status %d", mStartStatus);
2423 mActive = false;
2424 mRecordTrack.clear();
2425 }
2426 mWaitWorkCV.signal();
2427 }
2428 mLock.unlock();
2429 } else if (mRecordTrack != 0) {
2430
2431 buffer.frameCount = inFrameCount;
The Android Open Source Project22f8def2009-03-09 11:52:12 -07002432 if (LIKELY(mRecordTrack->getNextBuffer(&buffer) == NO_ERROR &&
2433 (int)buffer.frameCount == inFrameCount)) {
The Android Open Source Projectedbf3b62009-03-03 19:31:44 -08002434 LOGV("AudioRecordThread read: %d frames", buffer.frameCount);
2435 ssize_t bytesRead = input->read(buffer.raw, inBufferSize);
2436 if (bytesRead < 0) {
2437 LOGE("Error reading audio input");
2438 sleep(1);
2439 }
2440 mRecordTrack->releaseBuffer(&buffer);
2441 mRecordTrack->overflow();
2442 }
2443
2444 // client isn't retrieving buffers fast enough
2445 else {
2446 if (!mRecordTrack->setOverflow())
2447 LOGW("AudioRecordThread: buffer overflow");
2448 // Release the processor for a while before asking for a new buffer.
2449 // This will give the application more chance to read from the buffer and
2450 // clear the overflow.
2451 usleep(5000);
2452 }
2453 }
2454 }
2455
2456
2457 if (input) {
2458 delete input;
2459 }
2460 mRecordTrack.clear();
2461
2462 return false;
2463}
2464
2465status_t AudioFlinger::AudioRecordThread::start(MixerThread::RecordTrack* recordTrack)
2466{
2467 LOGV("AudioRecordThread::start");
2468 AutoMutex lock(&mLock);
2469 mActive = true;
2470 // If starting the active track, just reset mActive in case a stop
2471 // was pending and exit
2472 if (recordTrack == mRecordTrack.get()) return NO_ERROR;
2473
2474 if (mRecordTrack != 0) return -EBUSY;
2475
2476 mRecordTrack = recordTrack;
2477
The Android Open Source Projectbcef13b2009-03-11 12:11:56 -07002478#ifdef WITH_A2DP
2479 if (streamDisablesA2dp(recordTrack->type())) {
2480 mAudioFlinger->handleStreamDisablesA2dp(ACTIVE_TRACK_ADDED);
2481 }
2482#endif
2483
The Android Open Source Projectedbf3b62009-03-03 19:31:44 -08002484 // signal thread to start
2485 LOGV("Signal record thread");
2486 mWaitWorkCV.signal();
2487 mWaitWorkCV.wait(mLock);
2488 LOGV("Record started, status %d", mStartStatus);
2489 return mStartStatus;
2490}
2491
2492void AudioFlinger::AudioRecordThread::stop(MixerThread::RecordTrack* recordTrack) {
2493 LOGV("AudioRecordThread::stop");
2494 AutoMutex lock(&mLock);
2495 if (mActive && (recordTrack == mRecordTrack.get())) {
The Android Open Source Projectbcef13b2009-03-11 12:11:56 -07002496#ifdef WITH_A2DP
2497 if (streamDisablesA2dp(recordTrack->type())) {
2498 mAudioFlinger->handleStreamDisablesA2dp(ACTIVE_TRACK_REMOVED);
2499 }
2500#endif
The Android Open Source Projectedbf3b62009-03-03 19:31:44 -08002501 mActive = false;
2502 mStopped.wait(mLock);
2503 }
2504}
2505
2506void AudioFlinger::AudioRecordThread::exit()
2507{
2508 LOGV("AudioRecordThread::exit");
2509 {
2510 AutoMutex lock(&mLock);
2511 requestExit();
2512 mWaitWorkCV.signal();
2513 }
2514 requestExitAndWait();
2515}
2516
2517status_t AudioFlinger::AudioRecordThread::dump(int fd, const Vector<String16>& args)
2518{
2519 const size_t SIZE = 256;
2520 char buffer[SIZE];
2521 String8 result;
2522 pid_t pid = 0;
2523
2524 if (mRecordTrack != 0 && mRecordTrack->mClient != 0) {
2525 snprintf(buffer, SIZE, "Record client pid: %d\n", mRecordTrack->mClient->pid());
2526 result.append(buffer);
2527 } else {
2528 result.append("No record client\n");
2529 }
2530 write(fd, result.string(), result.size());
2531 return NO_ERROR;
2532}
2533
2534status_t AudioFlinger::onTransact(
2535 uint32_t code, const Parcel& data, Parcel* reply, uint32_t flags)
2536{
2537 return BnAudioFlinger::onTransact(code, data, reply, flags);
2538}
2539
2540// ----------------------------------------------------------------------------
2541void AudioFlinger::instantiate() {
2542 defaultServiceManager()->addService(
2543 String16("media.audio_flinger"), new AudioFlinger());
2544}
2545
2546}; // namespace android