AudioFlinger.cpp revision 7fc9a6fdf146ded90b51c52f4a05d797294dcb85
1/* //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 <binder/IPCThreadState.h>
28#include <binder/IServiceManager.h>
29#include <utils/Log.h>
30#include <binder/Parcel.h>
31#include <binder/IPCThreadState.h>
32#include <utils/String16.h>
33#include <utils/threads.h>
34#include <utils/Atomic.h>
35
36#include <cutils/bitops.h>
37#include <cutils/properties.h>
38#include <cutils/compiler.h>
39
40#include <media/AudioTrack.h>
41#include <media/AudioRecord.h>
42#include <media/IMediaPlayerService.h>
43#include <media/IMediaDeathNotifier.h>
44
45#include <private/media/AudioTrackShared.h>
46#include <private/media/AudioEffectShared.h>
47
48#include <system/audio.h>
49#include <hardware/audio.h>
50
51#include "AudioMixer.h"
52#include "AudioFlinger.h"
53
54#include <media/EffectsFactoryApi.h>
55#include <audio_effects/effect_visualizer.h>
56#include <audio_effects/effect_ns.h>
57#include <audio_effects/effect_aec.h>
58
59#include <audio_utils/primitives.h>
60
61#include <cpustats/ThreadCpuUsage.h>
62#include <powermanager/PowerManager.h>
63// #define DEBUG_CPU_USAGE 10  // log statistics every n wall clock seconds
64
65// ----------------------------------------------------------------------------
66
67
68namespace android {
69
70static const char kDeadlockedString[] = "AudioFlinger may be deadlocked\n";
71static const char kHardwareLockedString[] = "Hardware lock is taken\n";
72
73//static const nsecs_t kStandbyTimeInNsecs = seconds(3);
74static const float MAX_GAIN = 4096.0f;
75static const uint32_t MAX_GAIN_INT = 0x1000;
76
77// retry counts for buffer fill timeout
78// 50 * ~20msecs = 1 second
79static const int8_t kMaxTrackRetries = 50;
80static const int8_t kMaxTrackStartupRetries = 50;
81// allow less retry attempts on direct output thread.
82// direct outputs can be a scarce resource in audio hardware and should
83// be released as quickly as possible.
84static const int8_t kMaxTrackRetriesDirect = 2;
85
86static const int kDumpLockRetries = 50;
87static const int kDumpLockSleepUs = 20000;
88
89// don't warn about blocked writes or record buffer overflows more often than this
90static const nsecs_t kWarningThrottleNs = seconds(5);
91
92// RecordThread loop sleep time upon application overrun or audio HAL read error
93static const int kRecordThreadSleepUs = 5000;
94
95// maximum time to wait for setParameters to complete
96static const nsecs_t kSetParametersTimeoutNs = seconds(2);
97
98// minimum sleep time for the mixer thread loop when tracks are active but in underrun
99static const uint32_t kMinThreadSleepTimeUs = 5000;
100// maximum divider applied to the active sleep time in the mixer thread loop
101static const uint32_t kMaxThreadSleepTimeShift = 2;
102
103
104// ----------------------------------------------------------------------------
105
106static bool recordingAllowed() {
107    if (getpid() == IPCThreadState::self()->getCallingPid()) return true;
108    bool ok = checkCallingPermission(String16("android.permission.RECORD_AUDIO"));
109    if (!ok) ALOGE("Request requires android.permission.RECORD_AUDIO");
110    return ok;
111}
112
113static bool settingsAllowed() {
114    if (getpid() == IPCThreadState::self()->getCallingPid()) return true;
115    bool ok = checkCallingPermission(String16("android.permission.MODIFY_AUDIO_SETTINGS"));
116    if (!ok) ALOGE("Request requires android.permission.MODIFY_AUDIO_SETTINGS");
117    return ok;
118}
119
120// To collect the amplifier usage
121static void addBatteryData(uint32_t params) {
122    sp<IMediaPlayerService> service = IMediaDeathNotifier::getMediaPlayerService();
123    if (service == NULL) {
124        // it already logged
125        return;
126    }
127
128    service->addBatteryData(params);
129}
130
131static int load_audio_interface(const char *if_name, const hw_module_t **mod,
132                                audio_hw_device_t **dev)
133{
134    int rc;
135
136    rc = hw_get_module_by_class(AUDIO_HARDWARE_MODULE_ID, if_name, mod);
137    if (rc)
138        goto out;
139
140    rc = audio_hw_device_open(*mod, dev);
141    ALOGE_IF(rc, "couldn't open audio hw device in %s.%s (%s)",
142            AUDIO_HARDWARE_MODULE_ID, if_name, strerror(-rc));
143    if (rc)
144        goto out;
145
146    return 0;
147
148out:
149    *mod = NULL;
150    *dev = NULL;
151    return rc;
152}
153
154static const char * const audio_interfaces[] = {
155    "primary",
156    "a2dp",
157    "usb",
158};
159#define ARRAY_SIZE(x) (sizeof((x))/sizeof(((x)[0])))
160
161// ----------------------------------------------------------------------------
162
163AudioFlinger::AudioFlinger()
164    : BnAudioFlinger(),
165        mPrimaryHardwareDev(NULL), mMasterVolume(1.0f), mMasterMute(false), mNextUniqueId(1),
166        mBtNrecIsOff(false)
167{
168}
169
170void AudioFlinger::onFirstRef()
171{
172    int rc = 0;
173
174    Mutex::Autolock _l(mLock);
175
176    /* TODO: move all this work into an Init() function */
177    mHardwareStatus = AUDIO_HW_IDLE;
178
179    for (size_t i = 0; i < ARRAY_SIZE(audio_interfaces); i++) {
180        const hw_module_t *mod;
181        audio_hw_device_t *dev;
182
183        rc = load_audio_interface(audio_interfaces[i], &mod, &dev);
184        if (rc)
185            continue;
186
187        ALOGI("Loaded %s audio interface from %s (%s)", audio_interfaces[i],
188             mod->name, mod->id);
189        mAudioHwDevs.push(dev);
190
191        if (!mPrimaryHardwareDev) {
192            mPrimaryHardwareDev = dev;
193            ALOGI("Using '%s' (%s.%s) as the primary audio interface",
194                 mod->name, mod->id, audio_interfaces[i]);
195        }
196    }
197
198    mHardwareStatus = AUDIO_HW_INIT;
199
200    if (!mPrimaryHardwareDev || mAudioHwDevs.size() == 0) {
201        ALOGE("Primary audio interface not found");
202        return;
203    }
204
205    for (size_t i = 0; i < mAudioHwDevs.size(); i++) {
206        audio_hw_device_t *dev = mAudioHwDevs[i];
207
208        mHardwareStatus = AUDIO_HW_INIT;
209        rc = dev->init_check(dev);
210        if (rc == 0) {
211            AutoMutex lock(mHardwareLock);
212
213            mMode = AUDIO_MODE_NORMAL;
214            mHardwareStatus = AUDIO_HW_SET_MODE;
215            dev->set_mode(dev, mMode);
216            mHardwareStatus = AUDIO_HW_SET_MASTER_VOLUME;
217            dev->set_master_volume(dev, 1.0f);
218            mHardwareStatus = AUDIO_HW_IDLE;
219        }
220    }
221}
222
223status_t AudioFlinger::initCheck() const
224{
225    Mutex::Autolock _l(mLock);
226    if (mPrimaryHardwareDev == NULL || mAudioHwDevs.size() == 0)
227        return NO_INIT;
228    return NO_ERROR;
229}
230
231AudioFlinger::~AudioFlinger()
232{
233    int num_devs = mAudioHwDevs.size();
234
235    while (!mRecordThreads.isEmpty()) {
236        // closeInput() will remove first entry from mRecordThreads
237        closeInput(mRecordThreads.keyAt(0));
238    }
239    while (!mPlaybackThreads.isEmpty()) {
240        // closeOutput() will remove first entry from mPlaybackThreads
241        closeOutput(mPlaybackThreads.keyAt(0));
242    }
243
244    for (int i = 0; i < num_devs; i++) {
245        audio_hw_device_t *dev = mAudioHwDevs[i];
246        audio_hw_device_close(dev);
247    }
248    mAudioHwDevs.clear();
249}
250
251audio_hw_device_t* AudioFlinger::findSuitableHwDev_l(uint32_t devices)
252{
253    /* first matching HW device is returned */
254    for (size_t i = 0; i < mAudioHwDevs.size(); i++) {
255        audio_hw_device_t *dev = mAudioHwDevs[i];
256        if ((dev->get_supported_devices(dev) & devices) == devices)
257            return dev;
258    }
259    return NULL;
260}
261
262status_t AudioFlinger::dumpClients(int fd, const Vector<String16>& args)
263{
264    const size_t SIZE = 256;
265    char buffer[SIZE];
266    String8 result;
267
268    result.append("Clients:\n");
269    for (size_t i = 0; i < mClients.size(); ++i) {
270        wp<Client> wClient = mClients.valueAt(i);
271        if (wClient != 0) {
272            sp<Client> client = wClient.promote();
273            if (client != 0) {
274                snprintf(buffer, SIZE, "  pid: %d\n", client->pid());
275                result.append(buffer);
276            }
277        }
278    }
279
280    result.append("Global session refs:\n");
281    result.append(" session pid cnt\n");
282    for (size_t i = 0; i < mAudioSessionRefs.size(); i++) {
283        AudioSessionRef *r = mAudioSessionRefs[i];
284        snprintf(buffer, SIZE, " %7d %3d %3d\n", r->sessionid, r->pid, r->cnt);
285        result.append(buffer);
286    }
287    write(fd, result.string(), result.size());
288    return NO_ERROR;
289}
290
291
292status_t AudioFlinger::dumpInternals(int fd, const Vector<String16>& args)
293{
294    const size_t SIZE = 256;
295    char buffer[SIZE];
296    String8 result;
297    hardware_call_state hardwareStatus = mHardwareStatus;
298
299    snprintf(buffer, SIZE, "Hardware status: %d\n", hardwareStatus);
300    result.append(buffer);
301    write(fd, result.string(), result.size());
302    return NO_ERROR;
303}
304
305status_t AudioFlinger::dumpPermissionDenial(int fd, const Vector<String16>& args)
306{
307    const size_t SIZE = 256;
308    char buffer[SIZE];
309    String8 result;
310    snprintf(buffer, SIZE, "Permission Denial: "
311            "can't dump AudioFlinger from pid=%d, uid=%d\n",
312            IPCThreadState::self()->getCallingPid(),
313            IPCThreadState::self()->getCallingUid());
314    result.append(buffer);
315    write(fd, result.string(), result.size());
316    return NO_ERROR;
317}
318
319static bool tryLock(Mutex& mutex)
320{
321    bool locked = false;
322    for (int i = 0; i < kDumpLockRetries; ++i) {
323        if (mutex.tryLock() == NO_ERROR) {
324            locked = true;
325            break;
326        }
327        usleep(kDumpLockSleepUs);
328    }
329    return locked;
330}
331
332status_t AudioFlinger::dump(int fd, const Vector<String16>& args)
333{
334    if (!checkCallingPermission(String16("android.permission.DUMP"))) {
335        dumpPermissionDenial(fd, args);
336    } else {
337        // get state of hardware lock
338        bool hardwareLocked = tryLock(mHardwareLock);
339        if (!hardwareLocked) {
340            String8 result(kHardwareLockedString);
341            write(fd, result.string(), result.size());
342        } else {
343            mHardwareLock.unlock();
344        }
345
346        bool locked = tryLock(mLock);
347
348        // failed to lock - AudioFlinger is probably deadlocked
349        if (!locked) {
350            String8 result(kDeadlockedString);
351            write(fd, result.string(), result.size());
352        }
353
354        dumpClients(fd, args);
355        dumpInternals(fd, args);
356
357        // dump playback threads
358        for (size_t i = 0; i < mPlaybackThreads.size(); i++) {
359            mPlaybackThreads.valueAt(i)->dump(fd, args);
360        }
361
362        // dump record threads
363        for (size_t i = 0; i < mRecordThreads.size(); i++) {
364            mRecordThreads.valueAt(i)->dump(fd, args);
365        }
366
367        // dump all hardware devs
368        for (size_t i = 0; i < mAudioHwDevs.size(); i++) {
369            audio_hw_device_t *dev = mAudioHwDevs[i];
370            dev->dump(dev, fd);
371        }
372        if (locked) mLock.unlock();
373    }
374    return NO_ERROR;
375}
376
377
378// IAudioFlinger interface
379
380
381sp<IAudioTrack> AudioFlinger::createTrack(
382        pid_t pid,
383        audio_stream_type_t streamType,
384        uint32_t sampleRate,
385        uint32_t format,
386        uint32_t channelMask,
387        int frameCount,
388        uint32_t flags,
389        const sp<IMemory>& sharedBuffer,
390        int output,
391        int *sessionId,
392        status_t *status)
393{
394    sp<PlaybackThread::Track> track;
395    sp<TrackHandle> trackHandle;
396    sp<Client> client;
397    wp<Client> wclient;
398    status_t lStatus;
399    int lSessionId;
400
401    // client AudioTrack::set already implements AUDIO_STREAM_DEFAULT => AUDIO_STREAM_MUSIC,
402    // but if someone uses binder directly they could bypass that and cause us to crash
403    if (uint32_t(streamType) >= AUDIO_STREAM_CNT) {
404        ALOGE("createTrack() invalid stream type %d", streamType);
405        lStatus = BAD_VALUE;
406        goto Exit;
407    }
408
409    {
410        Mutex::Autolock _l(mLock);
411        PlaybackThread *thread = checkPlaybackThread_l(output);
412        PlaybackThread *effectThread = NULL;
413        if (thread == NULL) {
414            ALOGE("unknown output thread");
415            lStatus = BAD_VALUE;
416            goto Exit;
417        }
418
419        wclient = mClients.valueFor(pid);
420
421        if (wclient != NULL) {
422            client = wclient.promote();
423        } else {
424            client = new Client(this, pid);
425            mClients.add(pid, client);
426        }
427
428        ALOGV("createTrack() sessionId: %d", (sessionId == NULL) ? -2 : *sessionId);
429        if (sessionId != NULL && *sessionId != AUDIO_SESSION_OUTPUT_MIX) {
430            for (size_t i = 0; i < mPlaybackThreads.size(); i++) {
431                sp<PlaybackThread> t = mPlaybackThreads.valueAt(i);
432                if (mPlaybackThreads.keyAt(i) != output) {
433                    // prevent same audio session on different output threads
434                    uint32_t sessions = t->hasAudioSession(*sessionId);
435                    if (sessions & PlaybackThread::TRACK_SESSION) {
436                        ALOGE("createTrack() session ID %d already in use", *sessionId);
437                        lStatus = BAD_VALUE;
438                        goto Exit;
439                    }
440                    // check if an effect with same session ID is waiting for a track to be created
441                    if (sessions & PlaybackThread::EFFECT_SESSION) {
442                        effectThread = t.get();
443                    }
444                }
445            }
446            lSessionId = *sessionId;
447        } else {
448            // if no audio session id is provided, create one here
449            lSessionId = nextUniqueId();
450            if (sessionId != NULL) {
451                *sessionId = lSessionId;
452            }
453        }
454        ALOGV("createTrack() lSessionId: %d", lSessionId);
455
456        track = thread->createTrack_l(client, streamType, sampleRate, format,
457                channelMask, frameCount, sharedBuffer, lSessionId, &lStatus);
458
459        // move effect chain to this output thread if an effect on same session was waiting
460        // for a track to be created
461        if (lStatus == NO_ERROR && effectThread != NULL) {
462            Mutex::Autolock _dl(thread->mLock);
463            Mutex::Autolock _sl(effectThread->mLock);
464            moveEffectChain_l(lSessionId, effectThread, thread, true);
465        }
466    }
467    if (lStatus == NO_ERROR) {
468        trackHandle = new TrackHandle(track);
469    } else {
470        // remove local strong reference to Client before deleting the Track so that the Client
471        // destructor is called by the TrackBase destructor with mLock held
472        client.clear();
473        track.clear();
474    }
475
476Exit:
477    if(status) {
478        *status = lStatus;
479    }
480    return trackHandle;
481}
482
483uint32_t AudioFlinger::sampleRate(int output) const
484{
485    Mutex::Autolock _l(mLock);
486    PlaybackThread *thread = checkPlaybackThread_l(output);
487    if (thread == NULL) {
488        ALOGW("sampleRate() unknown thread %d", output);
489        return 0;
490    }
491    return thread->sampleRate();
492}
493
494int AudioFlinger::channelCount(int output) const
495{
496    Mutex::Autolock _l(mLock);
497    PlaybackThread *thread = checkPlaybackThread_l(output);
498    if (thread == NULL) {
499        ALOGW("channelCount() unknown thread %d", output);
500        return 0;
501    }
502    return thread->channelCount();
503}
504
505uint32_t AudioFlinger::format(int output) const
506{
507    Mutex::Autolock _l(mLock);
508    PlaybackThread *thread = checkPlaybackThread_l(output);
509    if (thread == NULL) {
510        ALOGW("format() unknown thread %d", output);
511        return 0;
512    }
513    return thread->format();
514}
515
516size_t AudioFlinger::frameCount(int output) const
517{
518    Mutex::Autolock _l(mLock);
519    PlaybackThread *thread = checkPlaybackThread_l(output);
520    if (thread == NULL) {
521        ALOGW("frameCount() unknown thread %d", output);
522        return 0;
523    }
524    return thread->frameCount();
525}
526
527uint32_t AudioFlinger::latency(int output) const
528{
529    Mutex::Autolock _l(mLock);
530    PlaybackThread *thread = checkPlaybackThread_l(output);
531    if (thread == NULL) {
532        ALOGW("latency() unknown thread %d", output);
533        return 0;
534    }
535    return thread->latency();
536}
537
538status_t AudioFlinger::setMasterVolume(float value)
539{
540    status_t ret = initCheck();
541    if (ret != NO_ERROR) {
542        return ret;
543    }
544
545    // check calling permissions
546    if (!settingsAllowed()) {
547        return PERMISSION_DENIED;
548    }
549
550    // when hw supports master volume, don't scale in sw mixer
551    { // scope for the lock
552        AutoMutex lock(mHardwareLock);
553        mHardwareStatus = AUDIO_HW_SET_MASTER_VOLUME;
554        if (mPrimaryHardwareDev->set_master_volume(mPrimaryHardwareDev, value) == NO_ERROR) {
555            value = 1.0f;
556        }
557        mHardwareStatus = AUDIO_HW_IDLE;
558    }
559
560    Mutex::Autolock _l(mLock);
561    mMasterVolume = value;
562    for (uint32_t i = 0; i < mPlaybackThreads.size(); i++)
563       mPlaybackThreads.valueAt(i)->setMasterVolume(value);
564
565    return NO_ERROR;
566}
567
568status_t AudioFlinger::setMode(audio_mode_t mode)
569{
570    status_t ret = initCheck();
571    if (ret != NO_ERROR) {
572        return ret;
573    }
574
575    // check calling permissions
576    if (!settingsAllowed()) {
577        return PERMISSION_DENIED;
578    }
579    if (uint32_t(mode) >= AUDIO_MODE_CNT) {
580        ALOGW("Illegal value: setMode(%d)", mode);
581        return BAD_VALUE;
582    }
583
584    { // scope for the lock
585        AutoMutex lock(mHardwareLock);
586        mHardwareStatus = AUDIO_HW_SET_MODE;
587        ret = mPrimaryHardwareDev->set_mode(mPrimaryHardwareDev, mode);
588        mHardwareStatus = AUDIO_HW_IDLE;
589    }
590
591    if (NO_ERROR == ret) {
592        Mutex::Autolock _l(mLock);
593        mMode = mode;
594        for (uint32_t i = 0; i < mPlaybackThreads.size(); i++)
595           mPlaybackThreads.valueAt(i)->setMode(mode);
596    }
597
598    return ret;
599}
600
601status_t AudioFlinger::setMicMute(bool state)
602{
603    status_t ret = initCheck();
604    if (ret != NO_ERROR) {
605        return ret;
606    }
607
608    // check calling permissions
609    if (!settingsAllowed()) {
610        return PERMISSION_DENIED;
611    }
612
613    AutoMutex lock(mHardwareLock);
614    mHardwareStatus = AUDIO_HW_SET_MIC_MUTE;
615    ret = mPrimaryHardwareDev->set_mic_mute(mPrimaryHardwareDev, state);
616    mHardwareStatus = AUDIO_HW_IDLE;
617    return ret;
618}
619
620bool AudioFlinger::getMicMute() const
621{
622    status_t ret = initCheck();
623    if (ret != NO_ERROR) {
624        return false;
625    }
626
627    bool state = AUDIO_MODE_INVALID;
628    mHardwareStatus = AUDIO_HW_GET_MIC_MUTE;
629    mPrimaryHardwareDev->get_mic_mute(mPrimaryHardwareDev, &state);
630    mHardwareStatus = AUDIO_HW_IDLE;
631    return state;
632}
633
634status_t AudioFlinger::setMasterMute(bool muted)
635{
636    // check calling permissions
637    if (!settingsAllowed()) {
638        return PERMISSION_DENIED;
639    }
640
641    Mutex::Autolock _l(mLock);
642    mMasterMute = muted;
643    for (uint32_t i = 0; i < mPlaybackThreads.size(); i++)
644       mPlaybackThreads.valueAt(i)->setMasterMute(muted);
645
646    return NO_ERROR;
647}
648
649float AudioFlinger::masterVolume() const
650{
651    Mutex::Autolock _l(mLock);
652    return masterVolume_l();
653}
654
655bool AudioFlinger::masterMute() const
656{
657    Mutex::Autolock _l(mLock);
658    return masterMute_l();
659}
660
661status_t AudioFlinger::setStreamVolume(audio_stream_type_t stream, float value, int output)
662{
663    // check calling permissions
664    if (!settingsAllowed()) {
665        return PERMISSION_DENIED;
666    }
667
668    if (uint32_t(stream) >= AUDIO_STREAM_CNT) {
669        ALOGE("setStreamVolume() invalid stream %d", stream);
670        return BAD_VALUE;
671    }
672
673    AutoMutex lock(mLock);
674    PlaybackThread *thread = NULL;
675    if (output) {
676        thread = checkPlaybackThread_l(output);
677        if (thread == NULL) {
678            return BAD_VALUE;
679        }
680    }
681
682    mStreamTypes[stream].volume = value;
683
684    if (thread == NULL) {
685        for (uint32_t i = 0; i < mPlaybackThreads.size(); i++) {
686           mPlaybackThreads.valueAt(i)->setStreamVolume(stream, value);
687        }
688    } else {
689        thread->setStreamVolume(stream, value);
690    }
691
692    return NO_ERROR;
693}
694
695status_t AudioFlinger::setStreamMute(audio_stream_type_t stream, bool muted)
696{
697    // check calling permissions
698    if (!settingsAllowed()) {
699        return PERMISSION_DENIED;
700    }
701
702    if (uint32_t(stream) >= AUDIO_STREAM_CNT ||
703        uint32_t(stream) == AUDIO_STREAM_ENFORCED_AUDIBLE) {
704        ALOGE("setStreamMute() invalid stream %d", stream);
705        return BAD_VALUE;
706    }
707
708    AutoMutex lock(mLock);
709    mStreamTypes[stream].mute = muted;
710    for (uint32_t i = 0; i < mPlaybackThreads.size(); i++)
711       mPlaybackThreads.valueAt(i)->setStreamMute(stream, muted);
712
713    return NO_ERROR;
714}
715
716float AudioFlinger::streamVolume(audio_stream_type_t stream, int output) const
717{
718    if (uint32_t(stream) >= AUDIO_STREAM_CNT) {
719        return 0.0f;
720    }
721
722    AutoMutex lock(mLock);
723    float volume;
724    if (output) {
725        PlaybackThread *thread = checkPlaybackThread_l(output);
726        if (thread == NULL) {
727            return 0.0f;
728        }
729        volume = thread->streamVolume(stream);
730    } else {
731        volume = mStreamTypes[stream].volume;
732    }
733
734    return volume;
735}
736
737bool AudioFlinger::streamMute(audio_stream_type_t stream) const
738{
739    if (uint32_t(stream) >= AUDIO_STREAM_CNT) {
740        return true;
741    }
742
743    return mStreamTypes[stream].mute;
744}
745
746status_t AudioFlinger::setParameters(int ioHandle, const String8& keyValuePairs)
747{
748    status_t result;
749
750    ALOGV("setParameters(): io %d, keyvalue %s, tid %d, calling tid %d",
751            ioHandle, keyValuePairs.string(), gettid(), IPCThreadState::self()->getCallingPid());
752    // check calling permissions
753    if (!settingsAllowed()) {
754        return PERMISSION_DENIED;
755    }
756
757    // ioHandle == 0 means the parameters are global to the audio hardware interface
758    if (ioHandle == 0) {
759        AutoMutex lock(mHardwareLock);
760        mHardwareStatus = AUDIO_SET_PARAMETER;
761        status_t final_result = NO_ERROR;
762        for (size_t i = 0; i < mAudioHwDevs.size(); i++) {
763            audio_hw_device_t *dev = mAudioHwDevs[i];
764            result = dev->set_parameters(dev, keyValuePairs.string());
765            final_result = result ?: final_result;
766        }
767        mHardwareStatus = AUDIO_HW_IDLE;
768        // disable AEC and NS if the device is a BT SCO headset supporting those pre processings
769        AudioParameter param = AudioParameter(keyValuePairs);
770        String8 value;
771        if (param.get(String8(AUDIO_PARAMETER_KEY_BT_NREC), value) == NO_ERROR) {
772            Mutex::Autolock _l(mLock);
773            bool btNrecIsOff = (value == AUDIO_PARAMETER_VALUE_OFF);
774            if (mBtNrecIsOff != btNrecIsOff) {
775                for (size_t i = 0; i < mRecordThreads.size(); i++) {
776                    sp<RecordThread> thread = mRecordThreads.valueAt(i);
777                    RecordThread::RecordTrack *track = thread->track();
778                    if (track != NULL) {
779                        audio_devices_t device = (audio_devices_t)(
780                                thread->device() & AUDIO_DEVICE_IN_ALL);
781                        bool suspend = audio_is_bluetooth_sco_device(device) && btNrecIsOff;
782                        thread->setEffectSuspended(FX_IID_AEC,
783                                                   suspend,
784                                                   track->sessionId());
785                        thread->setEffectSuspended(FX_IID_NS,
786                                                   suspend,
787                                                   track->sessionId());
788                    }
789                }
790                mBtNrecIsOff = btNrecIsOff;
791            }
792        }
793        return final_result;
794    }
795
796    // hold a strong ref on thread in case closeOutput() or closeInput() is called
797    // and the thread is exited once the lock is released
798    sp<ThreadBase> thread;
799    {
800        Mutex::Autolock _l(mLock);
801        thread = checkPlaybackThread_l(ioHandle);
802        if (thread == NULL) {
803            thread = checkRecordThread_l(ioHandle);
804        } else if (thread == primaryPlaybackThread_l()) {
805            // indicate output device change to all input threads for pre processing
806            AudioParameter param = AudioParameter(keyValuePairs);
807            int value;
808            if (param.getInt(String8(AudioParameter::keyRouting), value) == NO_ERROR) {
809                for (size_t i = 0; i < mRecordThreads.size(); i++) {
810                    mRecordThreads.valueAt(i)->setParameters(keyValuePairs);
811                }
812            }
813        }
814    }
815    if (thread != NULL) {
816        result = thread->setParameters(keyValuePairs);
817        return result;
818    }
819    return BAD_VALUE;
820}
821
822String8 AudioFlinger::getParameters(int ioHandle, const String8& keys)
823{
824//    ALOGV("getParameters() io %d, keys %s, tid %d, calling tid %d",
825//            ioHandle, keys.string(), gettid(), IPCThreadState::self()->getCallingPid());
826
827    if (ioHandle == 0) {
828        String8 out_s8;
829
830        for (size_t i = 0; i < mAudioHwDevs.size(); i++) {
831            audio_hw_device_t *dev = mAudioHwDevs[i];
832            char *s = dev->get_parameters(dev, keys.string());
833            out_s8 += String8(s);
834            free(s);
835        }
836        return out_s8;
837    }
838
839    Mutex::Autolock _l(mLock);
840
841    PlaybackThread *playbackThread = checkPlaybackThread_l(ioHandle);
842    if (playbackThread != NULL) {
843        return playbackThread->getParameters(keys);
844    }
845    RecordThread *recordThread = checkRecordThread_l(ioHandle);
846    if (recordThread != NULL) {
847        return recordThread->getParameters(keys);
848    }
849    return String8("");
850}
851
852size_t AudioFlinger::getInputBufferSize(uint32_t sampleRate, int format, int channelCount)
853{
854    status_t ret = initCheck();
855    if (ret != NO_ERROR) {
856        return 0;
857    }
858
859    return mPrimaryHardwareDev->get_input_buffer_size(mPrimaryHardwareDev, sampleRate, format, channelCount);
860}
861
862unsigned int AudioFlinger::getInputFramesLost(int ioHandle)
863{
864    if (ioHandle == 0) {
865        return 0;
866    }
867
868    Mutex::Autolock _l(mLock);
869
870    RecordThread *recordThread = checkRecordThread_l(ioHandle);
871    if (recordThread != NULL) {
872        return recordThread->getInputFramesLost();
873    }
874    return 0;
875}
876
877status_t AudioFlinger::setVoiceVolume(float value)
878{
879    status_t ret = initCheck();
880    if (ret != NO_ERROR) {
881        return ret;
882    }
883
884    // check calling permissions
885    if (!settingsAllowed()) {
886        return PERMISSION_DENIED;
887    }
888
889    AutoMutex lock(mHardwareLock);
890    mHardwareStatus = AUDIO_SET_VOICE_VOLUME;
891    ret = mPrimaryHardwareDev->set_voice_volume(mPrimaryHardwareDev, value);
892    mHardwareStatus = AUDIO_HW_IDLE;
893
894    return ret;
895}
896
897status_t AudioFlinger::getRenderPosition(uint32_t *halFrames, uint32_t *dspFrames, int output)
898{
899    status_t status;
900
901    Mutex::Autolock _l(mLock);
902
903    PlaybackThread *playbackThread = checkPlaybackThread_l(output);
904    if (playbackThread != NULL) {
905        return playbackThread->getRenderPosition(halFrames, dspFrames);
906    }
907
908    return BAD_VALUE;
909}
910
911void AudioFlinger::registerClient(const sp<IAudioFlingerClient>& client)
912{
913
914    Mutex::Autolock _l(mLock);
915
916    int pid = IPCThreadState::self()->getCallingPid();
917    if (mNotificationClients.indexOfKey(pid) < 0) {
918        sp<NotificationClient> notificationClient = new NotificationClient(this,
919                                                                            client,
920                                                                            pid);
921        ALOGV("registerClient() client %p, pid %d", notificationClient.get(), pid);
922
923        mNotificationClients.add(pid, notificationClient);
924
925        sp<IBinder> binder = client->asBinder();
926        binder->linkToDeath(notificationClient);
927
928        // the config change is always sent from playback or record threads to avoid deadlock
929        // with AudioSystem::gLock
930        for (size_t i = 0; i < mPlaybackThreads.size(); i++) {
931            mPlaybackThreads.valueAt(i)->sendConfigEvent(AudioSystem::OUTPUT_OPENED);
932        }
933
934        for (size_t i = 0; i < mRecordThreads.size(); i++) {
935            mRecordThreads.valueAt(i)->sendConfigEvent(AudioSystem::INPUT_OPENED);
936        }
937    }
938}
939
940void AudioFlinger::removeNotificationClient(pid_t pid)
941{
942    Mutex::Autolock _l(mLock);
943
944    int index = mNotificationClients.indexOfKey(pid);
945    if (index >= 0) {
946        sp <NotificationClient> client = mNotificationClients.valueFor(pid);
947        ALOGV("removeNotificationClient() %p, pid %d", client.get(), pid);
948        mNotificationClients.removeItem(pid);
949    }
950
951    ALOGV("%d died, releasing its sessions", pid);
952    int num = mAudioSessionRefs.size();
953    bool removed = false;
954    for (int i = 0; i< num; i++) {
955        AudioSessionRef *ref = mAudioSessionRefs.itemAt(i);
956        ALOGV(" pid %d @ %d", ref->pid, i);
957        if (ref->pid == pid) {
958            ALOGV(" removing entry for pid %d session %d", pid, ref->sessionid);
959            mAudioSessionRefs.removeAt(i);
960            delete ref;
961            removed = true;
962            i--;
963            num--;
964        }
965    }
966    if (removed) {
967        purgeStaleEffects_l();
968    }
969}
970
971// audioConfigChanged_l() must be called with AudioFlinger::mLock held
972void AudioFlinger::audioConfigChanged_l(int event, int ioHandle, void *param2)
973{
974    size_t size = mNotificationClients.size();
975    for (size_t i = 0; i < size; i++) {
976        mNotificationClients.valueAt(i)->client()->ioConfigChanged(event, ioHandle, param2);
977    }
978}
979
980// removeClient_l() must be called with AudioFlinger::mLock held
981void AudioFlinger::removeClient_l(pid_t pid)
982{
983    ALOGV("removeClient_l() pid %d, tid %d, calling tid %d", pid, gettid(), IPCThreadState::self()->getCallingPid());
984    mClients.removeItem(pid);
985}
986
987
988// ----------------------------------------------------------------------------
989
990AudioFlinger::ThreadBase::ThreadBase(const sp<AudioFlinger>& audioFlinger, int id, uint32_t device)
991    :   Thread(false),
992        mAudioFlinger(audioFlinger), mSampleRate(0), mFrameCount(0), mChannelCount(0),
993        mFrameSize(1), mFormat(0), mStandby(false), mId(id), mExiting(false),
994        mDevice(device)
995{
996    mDeathRecipient = new PMDeathRecipient(this);
997}
998
999AudioFlinger::ThreadBase::~ThreadBase()
1000{
1001    mParamCond.broadcast();
1002    // do not lock the mutex in destructor
1003    releaseWakeLock_l();
1004    if (mPowerManager != 0) {
1005        sp<IBinder> binder = mPowerManager->asBinder();
1006        binder->unlinkToDeath(mDeathRecipient);
1007    }
1008}
1009
1010void AudioFlinger::ThreadBase::exit()
1011{
1012    // keep a strong ref on ourself so that we won't get
1013    // destroyed in the middle of requestExitAndWait()
1014    sp <ThreadBase> strongMe = this;
1015
1016    ALOGV("ThreadBase::exit");
1017    {
1018        AutoMutex lock(mLock);
1019        mExiting = true;
1020        requestExit();
1021        mWaitWorkCV.signal();
1022    }
1023    requestExitAndWait();
1024}
1025
1026uint32_t AudioFlinger::ThreadBase::sampleRate() const
1027{
1028    return mSampleRate;
1029}
1030
1031int AudioFlinger::ThreadBase::channelCount() const
1032{
1033    return (int)mChannelCount;
1034}
1035
1036uint32_t AudioFlinger::ThreadBase::format() const
1037{
1038    return mFormat;
1039}
1040
1041size_t AudioFlinger::ThreadBase::frameCount() const
1042{
1043    return mFrameCount;
1044}
1045
1046status_t AudioFlinger::ThreadBase::setParameters(const String8& keyValuePairs)
1047{
1048    status_t status;
1049
1050    ALOGV("ThreadBase::setParameters() %s", keyValuePairs.string());
1051    Mutex::Autolock _l(mLock);
1052
1053    mNewParameters.add(keyValuePairs);
1054    mWaitWorkCV.signal();
1055    // wait condition with timeout in case the thread loop has exited
1056    // before the request could be processed
1057    if (mParamCond.waitRelative(mLock, kSetParametersTimeoutNs) == NO_ERROR) {
1058        status = mParamStatus;
1059        mWaitWorkCV.signal();
1060    } else {
1061        status = TIMED_OUT;
1062    }
1063    return status;
1064}
1065
1066void AudioFlinger::ThreadBase::sendConfigEvent(int event, int param)
1067{
1068    Mutex::Autolock _l(mLock);
1069    sendConfigEvent_l(event, param);
1070}
1071
1072// sendConfigEvent_l() must be called with ThreadBase::mLock held
1073void AudioFlinger::ThreadBase::sendConfigEvent_l(int event, int param)
1074{
1075    ConfigEvent configEvent;
1076    configEvent.mEvent = event;
1077    configEvent.mParam = param;
1078    mConfigEvents.add(configEvent);
1079    ALOGV("sendConfigEvent() num events %d event %d, param %d", mConfigEvents.size(), event, param);
1080    mWaitWorkCV.signal();
1081}
1082
1083void AudioFlinger::ThreadBase::processConfigEvents()
1084{
1085    mLock.lock();
1086    while(!mConfigEvents.isEmpty()) {
1087        ALOGV("processConfigEvents() remaining events %d", mConfigEvents.size());
1088        ConfigEvent configEvent = mConfigEvents[0];
1089        mConfigEvents.removeAt(0);
1090        // release mLock before locking AudioFlinger mLock: lock order is always
1091        // AudioFlinger then ThreadBase to avoid cross deadlock
1092        mLock.unlock();
1093        mAudioFlinger->mLock.lock();
1094        audioConfigChanged_l(configEvent.mEvent, configEvent.mParam);
1095        mAudioFlinger->mLock.unlock();
1096        mLock.lock();
1097    }
1098    mLock.unlock();
1099}
1100
1101status_t AudioFlinger::ThreadBase::dumpBase(int fd, const Vector<String16>& args)
1102{
1103    const size_t SIZE = 256;
1104    char buffer[SIZE];
1105    String8 result;
1106
1107    bool locked = tryLock(mLock);
1108    if (!locked) {
1109        snprintf(buffer, SIZE, "thread %p maybe dead locked\n", this);
1110        write(fd, buffer, strlen(buffer));
1111    }
1112
1113    snprintf(buffer, SIZE, "standby: %d\n", mStandby);
1114    result.append(buffer);
1115    snprintf(buffer, SIZE, "Sample rate: %d\n", mSampleRate);
1116    result.append(buffer);
1117    snprintf(buffer, SIZE, "Frame count: %d\n", mFrameCount);
1118    result.append(buffer);
1119    snprintf(buffer, SIZE, "Channel Count: %d\n", mChannelCount);
1120    result.append(buffer);
1121    snprintf(buffer, SIZE, "Channel Mask: 0x%08x\n", mChannelMask);
1122    result.append(buffer);
1123    snprintf(buffer, SIZE, "Format: %d\n", mFormat);
1124    result.append(buffer);
1125    snprintf(buffer, SIZE, "Frame size: %u\n", mFrameSize);
1126    result.append(buffer);
1127
1128    snprintf(buffer, SIZE, "\nPending setParameters commands: \n");
1129    result.append(buffer);
1130    result.append(" Index Command");
1131    for (size_t i = 0; i < mNewParameters.size(); ++i) {
1132        snprintf(buffer, SIZE, "\n %02d    ", i);
1133        result.append(buffer);
1134        result.append(mNewParameters[i]);
1135    }
1136
1137    snprintf(buffer, SIZE, "\n\nPending config events: \n");
1138    result.append(buffer);
1139    snprintf(buffer, SIZE, " Index event param\n");
1140    result.append(buffer);
1141    for (size_t i = 0; i < mConfigEvents.size(); i++) {
1142        snprintf(buffer, SIZE, " %02d    %02d    %d\n", i, mConfigEvents[i].mEvent, mConfigEvents[i].mParam);
1143        result.append(buffer);
1144    }
1145    result.append("\n");
1146
1147    write(fd, result.string(), result.size());
1148
1149    if (locked) {
1150        mLock.unlock();
1151    }
1152    return NO_ERROR;
1153}
1154
1155status_t AudioFlinger::ThreadBase::dumpEffectChains(int fd, const Vector<String16>& args)
1156{
1157    const size_t SIZE = 256;
1158    char buffer[SIZE];
1159    String8 result;
1160
1161    snprintf(buffer, SIZE, "\n- %d Effect Chains:\n", mEffectChains.size());
1162    write(fd, buffer, strlen(buffer));
1163
1164    for (size_t i = 0; i < mEffectChains.size(); ++i) {
1165        sp<EffectChain> chain = mEffectChains[i];
1166        if (chain != 0) {
1167            chain->dump(fd, args);
1168        }
1169    }
1170    return NO_ERROR;
1171}
1172
1173void AudioFlinger::ThreadBase::acquireWakeLock()
1174{
1175    Mutex::Autolock _l(mLock);
1176    acquireWakeLock_l();
1177}
1178
1179void AudioFlinger::ThreadBase::acquireWakeLock_l()
1180{
1181    if (mPowerManager == 0) {
1182        // use checkService() to avoid blocking if power service is not up yet
1183        sp<IBinder> binder =
1184            defaultServiceManager()->checkService(String16("power"));
1185        if (binder == 0) {
1186            ALOGW("Thread %s cannot connect to the power manager service", mName);
1187        } else {
1188            mPowerManager = interface_cast<IPowerManager>(binder);
1189            binder->linkToDeath(mDeathRecipient);
1190        }
1191    }
1192    if (mPowerManager != 0) {
1193        sp<IBinder> binder = new BBinder();
1194        status_t status = mPowerManager->acquireWakeLock(POWERMANAGER_PARTIAL_WAKE_LOCK,
1195                                                         binder,
1196                                                         String16(mName));
1197        if (status == NO_ERROR) {
1198            mWakeLockToken = binder;
1199        }
1200        ALOGV("acquireWakeLock_l() %s status %d", mName, status);
1201    }
1202}
1203
1204void AudioFlinger::ThreadBase::releaseWakeLock()
1205{
1206    Mutex::Autolock _l(mLock);
1207    releaseWakeLock_l();
1208}
1209
1210void AudioFlinger::ThreadBase::releaseWakeLock_l()
1211{
1212    if (mWakeLockToken != 0) {
1213        ALOGV("releaseWakeLock_l() %s", mName);
1214        if (mPowerManager != 0) {
1215            mPowerManager->releaseWakeLock(mWakeLockToken, 0);
1216        }
1217        mWakeLockToken.clear();
1218    }
1219}
1220
1221void AudioFlinger::ThreadBase::clearPowerManager()
1222{
1223    Mutex::Autolock _l(mLock);
1224    releaseWakeLock_l();
1225    mPowerManager.clear();
1226}
1227
1228void AudioFlinger::ThreadBase::PMDeathRecipient::binderDied(const wp<IBinder>& who)
1229{
1230    sp<ThreadBase> thread = mThread.promote();
1231    if (thread != 0) {
1232        thread->clearPowerManager();
1233    }
1234    ALOGW("power manager service died !!!");
1235}
1236
1237void AudioFlinger::ThreadBase::setEffectSuspended(
1238        const effect_uuid_t *type, bool suspend, int sessionId)
1239{
1240    Mutex::Autolock _l(mLock);
1241    setEffectSuspended_l(type, suspend, sessionId);
1242}
1243
1244void AudioFlinger::ThreadBase::setEffectSuspended_l(
1245        const effect_uuid_t *type, bool suspend, int sessionId)
1246{
1247    sp<EffectChain> chain;
1248    chain = getEffectChain_l(sessionId);
1249    if (chain != 0) {
1250        if (type != NULL) {
1251            chain->setEffectSuspended_l(type, suspend);
1252        } else {
1253            chain->setEffectSuspendedAll_l(suspend);
1254        }
1255    }
1256
1257    updateSuspendedSessions_l(type, suspend, sessionId);
1258}
1259
1260void AudioFlinger::ThreadBase::checkSuspendOnAddEffectChain_l(const sp<EffectChain>& chain)
1261{
1262    int index = mSuspendedSessions.indexOfKey(chain->sessionId());
1263    if (index < 0) {
1264        return;
1265    }
1266
1267    KeyedVector <int, sp<SuspendedSessionDesc> > sessionEffects =
1268            mSuspendedSessions.editValueAt(index);
1269
1270    for (size_t i = 0; i < sessionEffects.size(); i++) {
1271        sp <SuspendedSessionDesc> desc = sessionEffects.valueAt(i);
1272        for (int j = 0; j < desc->mRefCount; j++) {
1273            if (sessionEffects.keyAt(i) == EffectChain::kKeyForSuspendAll) {
1274                chain->setEffectSuspendedAll_l(true);
1275            } else {
1276                ALOGV("checkSuspendOnAddEffectChain_l() suspending effects %08x",
1277                     desc->mType.timeLow);
1278                chain->setEffectSuspended_l(&desc->mType, true);
1279            }
1280        }
1281    }
1282}
1283
1284void AudioFlinger::ThreadBase::updateSuspendedSessions_l(const effect_uuid_t *type,
1285                                                         bool suspend,
1286                                                         int sessionId)
1287{
1288    int index = mSuspendedSessions.indexOfKey(sessionId);
1289
1290    KeyedVector <int, sp<SuspendedSessionDesc> > sessionEffects;
1291
1292    if (suspend) {
1293        if (index >= 0) {
1294            sessionEffects = mSuspendedSessions.editValueAt(index);
1295        } else {
1296            mSuspendedSessions.add(sessionId, sessionEffects);
1297        }
1298    } else {
1299        if (index < 0) {
1300            return;
1301        }
1302        sessionEffects = mSuspendedSessions.editValueAt(index);
1303    }
1304
1305
1306    int key = EffectChain::kKeyForSuspendAll;
1307    if (type != NULL) {
1308        key = type->timeLow;
1309    }
1310    index = sessionEffects.indexOfKey(key);
1311
1312    sp <SuspendedSessionDesc> desc;
1313    if (suspend) {
1314        if (index >= 0) {
1315            desc = sessionEffects.valueAt(index);
1316        } else {
1317            desc = new SuspendedSessionDesc();
1318            if (type != NULL) {
1319                memcpy(&desc->mType, type, sizeof(effect_uuid_t));
1320            }
1321            sessionEffects.add(key, desc);
1322            ALOGV("updateSuspendedSessions_l() suspend adding effect %08x", key);
1323        }
1324        desc->mRefCount++;
1325    } else {
1326        if (index < 0) {
1327            return;
1328        }
1329        desc = sessionEffects.valueAt(index);
1330        if (--desc->mRefCount == 0) {
1331            ALOGV("updateSuspendedSessions_l() restore removing effect %08x", key);
1332            sessionEffects.removeItemsAt(index);
1333            if (sessionEffects.isEmpty()) {
1334                ALOGV("updateSuspendedSessions_l() restore removing session %d",
1335                                 sessionId);
1336                mSuspendedSessions.removeItem(sessionId);
1337            }
1338        }
1339    }
1340    if (!sessionEffects.isEmpty()) {
1341        mSuspendedSessions.replaceValueFor(sessionId, sessionEffects);
1342    }
1343}
1344
1345void AudioFlinger::ThreadBase::checkSuspendOnEffectEnabled(const sp<EffectModule>& effect,
1346                                                            bool enabled,
1347                                                            int sessionId)
1348{
1349    Mutex::Autolock _l(mLock);
1350    checkSuspendOnEffectEnabled_l(effect, enabled, sessionId);
1351}
1352
1353void AudioFlinger::ThreadBase::checkSuspendOnEffectEnabled_l(const sp<EffectModule>& effect,
1354                                                            bool enabled,
1355                                                            int sessionId)
1356{
1357    if (mType != RECORD) {
1358        // suspend all effects in AUDIO_SESSION_OUTPUT_MIX when enabling any effect on
1359        // another session. This gives the priority to well behaved effect control panels
1360        // and applications not using global effects.
1361        if (sessionId != AUDIO_SESSION_OUTPUT_MIX) {
1362            setEffectSuspended_l(NULL, enabled, AUDIO_SESSION_OUTPUT_MIX);
1363        }
1364    }
1365
1366    sp<EffectChain> chain = getEffectChain_l(sessionId);
1367    if (chain != 0) {
1368        chain->checkSuspendOnEffectEnabled(effect, enabled);
1369    }
1370}
1371
1372// ----------------------------------------------------------------------------
1373
1374AudioFlinger::PlaybackThread::PlaybackThread(const sp<AudioFlinger>& audioFlinger,
1375                                             AudioStreamOut* output,
1376                                             int id,
1377                                             uint32_t device)
1378    :   ThreadBase(audioFlinger, id, device),
1379        mMixBuffer(NULL), mSuspended(0), mBytesWritten(0), mOutput(output),
1380        mLastWriteTime(0), mNumWrites(0), mNumDelayedWrites(0), mInWrite(false)
1381{
1382    snprintf(mName, kNameLength, "AudioOut_%d", id);
1383
1384    readOutputParameters();
1385
1386    // Assumes constructor is called by AudioFlinger with it's mLock held,
1387    // but it would be safer to explicitly pass these as parameters
1388    mMasterVolume = mAudioFlinger->masterVolume_l();
1389    mMasterMute = mAudioFlinger->masterMute_l();
1390
1391    // mStreamTypes[AUDIO_STREAM_CNT] is initialized by stream_type_t default constructor
1392    // There is no AUDIO_STREAM_MIN, and ++ operator does not compile
1393    for (audio_stream_type_t stream = (audio_stream_type_t) 0; stream < AUDIO_STREAM_CNT;
1394            stream = (audio_stream_type_t) (stream + 1)) {
1395        mStreamTypes[stream].volume = mAudioFlinger->streamVolumeInternal(stream);
1396        mStreamTypes[stream].mute = mAudioFlinger->streamMute(stream);
1397        // initialized by stream_type_t default constructor
1398        // mStreamTypes[stream].valid = true;
1399    }
1400}
1401
1402AudioFlinger::PlaybackThread::~PlaybackThread()
1403{
1404    delete [] mMixBuffer;
1405}
1406
1407status_t AudioFlinger::PlaybackThread::dump(int fd, const Vector<String16>& args)
1408{
1409    dumpInternals(fd, args);
1410    dumpTracks(fd, args);
1411    dumpEffectChains(fd, args);
1412    return NO_ERROR;
1413}
1414
1415status_t AudioFlinger::PlaybackThread::dumpTracks(int fd, const Vector<String16>& args)
1416{
1417    const size_t SIZE = 256;
1418    char buffer[SIZE];
1419    String8 result;
1420
1421    snprintf(buffer, SIZE, "Output thread %p tracks\n", this);
1422    result.append(buffer);
1423    result.append("   Name  Clien Typ Fmt Chn mask   Session Buf  S M F SRate LeftV RighV  Serv       User       Main buf   Aux Buf\n");
1424    for (size_t i = 0; i < mTracks.size(); ++i) {
1425        sp<Track> track = mTracks[i];
1426        if (track != 0) {
1427            track->dump(buffer, SIZE);
1428            result.append(buffer);
1429        }
1430    }
1431
1432    snprintf(buffer, SIZE, "Output thread %p active tracks\n", this);
1433    result.append(buffer);
1434    result.append("   Name  Clien Typ Fmt Chn mask   Session Buf  S M F SRate LeftV RighV  Serv       User       Main buf   Aux Buf\n");
1435    for (size_t i = 0; i < mActiveTracks.size(); ++i) {
1436        wp<Track> wTrack = mActiveTracks[i];
1437        if (wTrack != 0) {
1438            sp<Track> track = wTrack.promote();
1439            if (track != 0) {
1440                track->dump(buffer, SIZE);
1441                result.append(buffer);
1442            }
1443        }
1444    }
1445    write(fd, result.string(), result.size());
1446    return NO_ERROR;
1447}
1448
1449status_t AudioFlinger::PlaybackThread::dumpInternals(int fd, const Vector<String16>& args)
1450{
1451    const size_t SIZE = 256;
1452    char buffer[SIZE];
1453    String8 result;
1454
1455    snprintf(buffer, SIZE, "\nOutput thread %p internals\n", this);
1456    result.append(buffer);
1457    snprintf(buffer, SIZE, "last write occurred (msecs): %llu\n", ns2ms(systemTime() - mLastWriteTime));
1458    result.append(buffer);
1459    snprintf(buffer, SIZE, "total writes: %d\n", mNumWrites);
1460    result.append(buffer);
1461    snprintf(buffer, SIZE, "delayed writes: %d\n", mNumDelayedWrites);
1462    result.append(buffer);
1463    snprintf(buffer, SIZE, "blocked in write: %d\n", mInWrite);
1464    result.append(buffer);
1465    snprintf(buffer, SIZE, "suspend count: %d\n", mSuspended);
1466    result.append(buffer);
1467    snprintf(buffer, SIZE, "mix buffer : %p\n", mMixBuffer);
1468    result.append(buffer);
1469    write(fd, result.string(), result.size());
1470
1471    dumpBase(fd, args);
1472
1473    return NO_ERROR;
1474}
1475
1476// Thread virtuals
1477status_t AudioFlinger::PlaybackThread::readyToRun()
1478{
1479    status_t status = initCheck();
1480    if (status == NO_ERROR) {
1481        ALOGI("AudioFlinger's thread %p ready to run", this);
1482    } else {
1483        ALOGE("No working audio driver found.");
1484    }
1485    return status;
1486}
1487
1488void AudioFlinger::PlaybackThread::onFirstRef()
1489{
1490    run(mName, ANDROID_PRIORITY_URGENT_AUDIO);
1491}
1492
1493// PlaybackThread::createTrack_l() must be called with AudioFlinger::mLock held
1494sp<AudioFlinger::PlaybackThread::Track>  AudioFlinger::PlaybackThread::createTrack_l(
1495        const sp<AudioFlinger::Client>& client,
1496        audio_stream_type_t streamType,
1497        uint32_t sampleRate,
1498        uint32_t format,
1499        uint32_t channelMask,
1500        int frameCount,
1501        const sp<IMemory>& sharedBuffer,
1502        int sessionId,
1503        status_t *status)
1504{
1505    sp<Track> track;
1506    status_t lStatus;
1507
1508    if (mType == DIRECT) {
1509        if ((format & AUDIO_FORMAT_MAIN_MASK) == AUDIO_FORMAT_PCM) {
1510            if (sampleRate != mSampleRate || format != mFormat || channelMask != mChannelMask) {
1511                ALOGE("createTrack_l() Bad parameter: sampleRate %d format %d, channelMask 0x%08x \""
1512                        "for output %p with format %d",
1513                        sampleRate, format, channelMask, mOutput, mFormat);
1514                lStatus = BAD_VALUE;
1515                goto Exit;
1516            }
1517        }
1518    } else {
1519        // Resampler implementation limits input sampling rate to 2 x output sampling rate.
1520        if (sampleRate > mSampleRate*2) {
1521            ALOGE("Sample rate out of range: %d mSampleRate %d", sampleRate, mSampleRate);
1522            lStatus = BAD_VALUE;
1523            goto Exit;
1524        }
1525    }
1526
1527    lStatus = initCheck();
1528    if (lStatus != NO_ERROR) {
1529        ALOGE("Audio driver not initialized.");
1530        goto Exit;
1531    }
1532
1533    { // scope for mLock
1534        Mutex::Autolock _l(mLock);
1535
1536        // all tracks in same audio session must share the same routing strategy otherwise
1537        // conflicts will happen when tracks are moved from one output to another by audio policy
1538        // manager
1539        uint32_t strategy =
1540                AudioSystem::getStrategyForStream((audio_stream_type_t)streamType);
1541        for (size_t i = 0; i < mTracks.size(); ++i) {
1542            sp<Track> t = mTracks[i];
1543            if (t != 0) {
1544                uint32_t actual = AudioSystem::getStrategyForStream((audio_stream_type_t)t->type());
1545                if (sessionId == t->sessionId() && strategy != actual) {
1546                    ALOGE("createTrack_l() mismatched strategy; expected %u but found %u",
1547                            strategy, actual);
1548                    lStatus = BAD_VALUE;
1549                    goto Exit;
1550                }
1551            }
1552        }
1553
1554        track = new Track(this, client, streamType, sampleRate, format,
1555                channelMask, frameCount, sharedBuffer, sessionId);
1556        if (track->getCblk() == NULL || track->name() < 0) {
1557            lStatus = NO_MEMORY;
1558            goto Exit;
1559        }
1560        mTracks.add(track);
1561
1562        sp<EffectChain> chain = getEffectChain_l(sessionId);
1563        if (chain != 0) {
1564            ALOGV("createTrack_l() setting main buffer %p", chain->inBuffer());
1565            track->setMainBuffer(chain->inBuffer());
1566            chain->setStrategy(AudioSystem::getStrategyForStream((audio_stream_type_t)track->type()));
1567            chain->incTrackCnt();
1568        }
1569
1570        // invalidate track immediately if the stream type was moved to another thread since
1571        // createTrack() was called by the client process.
1572        if (!mStreamTypes[streamType].valid) {
1573            ALOGW("createTrack_l() on thread %p: invalidating track on stream %d",
1574                 this, streamType);
1575            android_atomic_or(CBLK_INVALID_ON, &track->mCblk->flags);
1576        }
1577    }
1578    lStatus = NO_ERROR;
1579
1580Exit:
1581    if(status) {
1582        *status = lStatus;
1583    }
1584    return track;
1585}
1586
1587uint32_t AudioFlinger::PlaybackThread::latency() const
1588{
1589    Mutex::Autolock _l(mLock);
1590    if (initCheck() == NO_ERROR) {
1591        return mOutput->stream->get_latency(mOutput->stream);
1592    } else {
1593        return 0;
1594    }
1595}
1596
1597status_t AudioFlinger::PlaybackThread::setMasterVolume(float value)
1598{
1599    mMasterVolume = value;
1600    return NO_ERROR;
1601}
1602
1603status_t AudioFlinger::PlaybackThread::setMasterMute(bool muted)
1604{
1605    mMasterMute = muted;
1606    return NO_ERROR;
1607}
1608
1609float AudioFlinger::PlaybackThread::masterVolume() const
1610{
1611    return mMasterVolume;
1612}
1613
1614bool AudioFlinger::PlaybackThread::masterMute() const
1615{
1616    return mMasterMute;
1617}
1618
1619status_t AudioFlinger::PlaybackThread::setStreamVolume(audio_stream_type_t stream, float value)
1620{
1621    mStreamTypes[stream].volume = value;
1622    return NO_ERROR;
1623}
1624
1625status_t AudioFlinger::PlaybackThread::setStreamMute(audio_stream_type_t stream, bool muted)
1626{
1627    mStreamTypes[stream].mute = muted;
1628    return NO_ERROR;
1629}
1630
1631float AudioFlinger::PlaybackThread::streamVolume(audio_stream_type_t stream) const
1632{
1633    return mStreamTypes[stream].volume;
1634}
1635
1636bool AudioFlinger::PlaybackThread::streamMute(audio_stream_type_t stream) const
1637{
1638    return mStreamTypes[stream].mute;
1639}
1640
1641// addTrack_l() must be called with ThreadBase::mLock held
1642status_t AudioFlinger::PlaybackThread::addTrack_l(const sp<Track>& track)
1643{
1644    status_t status = ALREADY_EXISTS;
1645
1646    // set retry count for buffer fill
1647    track->mRetryCount = kMaxTrackStartupRetries;
1648    if (mActiveTracks.indexOf(track) < 0) {
1649        // the track is newly added, make sure it fills up all its
1650        // buffers before playing. This is to ensure the client will
1651        // effectively get the latency it requested.
1652        track->mFillingUpStatus = Track::FS_FILLING;
1653        track->mResetDone = false;
1654        mActiveTracks.add(track);
1655        if (track->mainBuffer() != mMixBuffer) {
1656            sp<EffectChain> chain = getEffectChain_l(track->sessionId());
1657            if (chain != 0) {
1658                ALOGV("addTrack_l() starting track on chain %p for session %d", chain.get(), track->sessionId());
1659                chain->incActiveTrackCnt();
1660            }
1661        }
1662
1663        status = NO_ERROR;
1664    }
1665
1666    ALOGV("mWaitWorkCV.broadcast");
1667    mWaitWorkCV.broadcast();
1668
1669    return status;
1670}
1671
1672// destroyTrack_l() must be called with ThreadBase::mLock held
1673void AudioFlinger::PlaybackThread::destroyTrack_l(const sp<Track>& track)
1674{
1675    track->mState = TrackBase::TERMINATED;
1676    if (mActiveTracks.indexOf(track) < 0) {
1677        removeTrack_l(track);
1678    }
1679}
1680
1681void AudioFlinger::PlaybackThread::removeTrack_l(const sp<Track>& track)
1682{
1683    mTracks.remove(track);
1684    deleteTrackName_l(track->name());
1685    sp<EffectChain> chain = getEffectChain_l(track->sessionId());
1686    if (chain != 0) {
1687        chain->decTrackCnt();
1688    }
1689}
1690
1691String8 AudioFlinger::PlaybackThread::getParameters(const String8& keys)
1692{
1693    String8 out_s8 = String8("");
1694    char *s;
1695
1696    Mutex::Autolock _l(mLock);
1697    if (initCheck() != NO_ERROR) {
1698        return out_s8;
1699    }
1700
1701    s = mOutput->stream->common.get_parameters(&mOutput->stream->common, keys.string());
1702    out_s8 = String8(s);
1703    free(s);
1704    return out_s8;
1705}
1706
1707// audioConfigChanged_l() must be called with AudioFlinger::mLock held
1708void AudioFlinger::PlaybackThread::audioConfigChanged_l(int event, int param) {
1709    AudioSystem::OutputDescriptor desc;
1710    void *param2 = 0;
1711
1712    ALOGV("PlaybackThread::audioConfigChanged_l, thread %p, event %d, param %d", this, event, param);
1713
1714    switch (event) {
1715    case AudioSystem::OUTPUT_OPENED:
1716    case AudioSystem::OUTPUT_CONFIG_CHANGED:
1717        desc.channels = mChannelMask;
1718        desc.samplingRate = mSampleRate;
1719        desc.format = mFormat;
1720        desc.frameCount = mFrameCount;
1721        desc.latency = latency();
1722        param2 = &desc;
1723        break;
1724
1725    case AudioSystem::STREAM_CONFIG_CHANGED:
1726        param2 = &param;
1727    case AudioSystem::OUTPUT_CLOSED:
1728    default:
1729        break;
1730    }
1731    mAudioFlinger->audioConfigChanged_l(event, mId, param2);
1732}
1733
1734void AudioFlinger::PlaybackThread::readOutputParameters()
1735{
1736    mSampleRate = mOutput->stream->common.get_sample_rate(&mOutput->stream->common);
1737    mChannelMask = mOutput->stream->common.get_channels(&mOutput->stream->common);
1738    mChannelCount = (uint16_t)popcount(mChannelMask);
1739    mFormat = mOutput->stream->common.get_format(&mOutput->stream->common);
1740    mFrameSize = audio_stream_frame_size(&mOutput->stream->common);
1741    mFrameCount = mOutput->stream->common.get_buffer_size(&mOutput->stream->common) / mFrameSize;
1742
1743    // FIXME - Current mixer implementation only supports stereo output: Always
1744    // Allocate a stereo buffer even if HW output is mono.
1745    if (mMixBuffer != NULL) delete[] mMixBuffer;
1746    mMixBuffer = new int16_t[mFrameCount * 2];
1747    memset(mMixBuffer, 0, mFrameCount * 2 * sizeof(int16_t));
1748
1749    // force reconfiguration of effect chains and engines to take new buffer size and audio
1750    // parameters into account
1751    // Note that mLock is not held when readOutputParameters() is called from the constructor
1752    // but in this case nothing is done below as no audio sessions have effect yet so it doesn't
1753    // matter.
1754    // create a copy of mEffectChains as calling moveEffectChain_l() can reorder some effect chains
1755    Vector< sp<EffectChain> > effectChains = mEffectChains;
1756    for (size_t i = 0; i < effectChains.size(); i ++) {
1757        mAudioFlinger->moveEffectChain_l(effectChains[i]->sessionId(), this, this, false);
1758    }
1759}
1760
1761status_t AudioFlinger::PlaybackThread::getRenderPosition(uint32_t *halFrames, uint32_t *dspFrames)
1762{
1763    if (halFrames == 0 || dspFrames == 0) {
1764        return BAD_VALUE;
1765    }
1766    Mutex::Autolock _l(mLock);
1767    if (initCheck() != NO_ERROR) {
1768        return INVALID_OPERATION;
1769    }
1770    *halFrames = mBytesWritten / audio_stream_frame_size(&mOutput->stream->common);
1771
1772    return mOutput->stream->get_render_position(mOutput->stream, dspFrames);
1773}
1774
1775uint32_t AudioFlinger::PlaybackThread::hasAudioSession(int sessionId)
1776{
1777    Mutex::Autolock _l(mLock);
1778    uint32_t result = 0;
1779    if (getEffectChain_l(sessionId) != 0) {
1780        result = EFFECT_SESSION;
1781    }
1782
1783    for (size_t i = 0; i < mTracks.size(); ++i) {
1784        sp<Track> track = mTracks[i];
1785        if (sessionId == track->sessionId() &&
1786                !(track->mCblk->flags & CBLK_INVALID_MSK)) {
1787            result |= TRACK_SESSION;
1788            break;
1789        }
1790    }
1791
1792    return result;
1793}
1794
1795uint32_t AudioFlinger::PlaybackThread::getStrategyForSession_l(int sessionId)
1796{
1797    // session AUDIO_SESSION_OUTPUT_MIX is placed in same strategy as MUSIC stream so that
1798    // it is moved to correct output by audio policy manager when A2DP is connected or disconnected
1799    if (sessionId == AUDIO_SESSION_OUTPUT_MIX) {
1800        return AudioSystem::getStrategyForStream(AUDIO_STREAM_MUSIC);
1801    }
1802    for (size_t i = 0; i < mTracks.size(); i++) {
1803        sp<Track> track = mTracks[i];
1804        if (sessionId == track->sessionId() &&
1805                !(track->mCblk->flags & CBLK_INVALID_MSK)) {
1806            return AudioSystem::getStrategyForStream((audio_stream_type_t) track->type());
1807        }
1808    }
1809    return AudioSystem::getStrategyForStream(AUDIO_STREAM_MUSIC);
1810}
1811
1812
1813AudioFlinger::AudioStreamOut* AudioFlinger::PlaybackThread::getOutput()
1814{
1815    Mutex::Autolock _l(mLock);
1816    return mOutput;
1817}
1818
1819AudioFlinger::AudioStreamOut* AudioFlinger::PlaybackThread::clearOutput()
1820{
1821    Mutex::Autolock _l(mLock);
1822    AudioStreamOut *output = mOutput;
1823    mOutput = NULL;
1824    return output;
1825}
1826
1827// this method must always be called either with ThreadBase mLock held or inside the thread loop
1828audio_stream_t* AudioFlinger::PlaybackThread::stream()
1829{
1830    if (mOutput == NULL) {
1831        return NULL;
1832    }
1833    return &mOutput->stream->common;
1834}
1835
1836uint32_t AudioFlinger::PlaybackThread::activeSleepTimeUs()
1837{
1838    // A2DP output latency is not due only to buffering capacity. It also reflects encoding,
1839    // decoding and transfer time. So sleeping for half of the latency would likely cause
1840    // underruns
1841    if (audio_is_a2dp_device((audio_devices_t)mDevice)) {
1842        return (uint32_t)((uint32_t)((mFrameCount * 1000) / mSampleRate) * 1000);
1843    } else {
1844        return (uint32_t)(mOutput->stream->get_latency(mOutput->stream) * 1000) / 2;
1845    }
1846}
1847
1848// ----------------------------------------------------------------------------
1849
1850AudioFlinger::MixerThread::MixerThread(const sp<AudioFlinger>& audioFlinger, AudioStreamOut* output, int id, uint32_t device)
1851    :   PlaybackThread(audioFlinger, output, id, device),
1852        mAudioMixer(NULL)
1853{
1854    mType = ThreadBase::MIXER;
1855    mAudioMixer = new AudioMixer(mFrameCount, mSampleRate);
1856
1857    // FIXME - Current mixer implementation only supports stereo output
1858    if (mChannelCount == 1) {
1859        ALOGE("Invalid audio hardware channel count");
1860    }
1861}
1862
1863AudioFlinger::MixerThread::~MixerThread()
1864{
1865    delete mAudioMixer;
1866}
1867
1868bool AudioFlinger::MixerThread::threadLoop()
1869{
1870    Vector< sp<Track> > tracksToRemove;
1871    uint32_t mixerStatus = MIXER_IDLE;
1872    nsecs_t standbyTime = systemTime();
1873    size_t mixBufferSize = mFrameCount * mFrameSize;
1874    // FIXME: Relaxed timing because of a certain device that can't meet latency
1875    // Should be reduced to 2x after the vendor fixes the driver issue
1876    // increase threshold again due to low power audio mode. The way this warning threshold is
1877    // calculated and its usefulness should be reconsidered anyway.
1878    nsecs_t maxPeriod = seconds(mFrameCount) / mSampleRate * 15;
1879    nsecs_t lastWarning = 0;
1880    bool longStandbyExit = false;
1881    uint32_t activeSleepTime = activeSleepTimeUs();
1882    uint32_t idleSleepTime = idleSleepTimeUs();
1883    uint32_t sleepTime = idleSleepTime;
1884    uint32_t sleepTimeShift = 0;
1885    Vector< sp<EffectChain> > effectChains;
1886#ifdef DEBUG_CPU_USAGE
1887    ThreadCpuUsage cpu;
1888    const CentralTendencyStatistics& stats = cpu.statistics();
1889#endif
1890
1891    acquireWakeLock();
1892
1893    while (!exitPending())
1894    {
1895#ifdef DEBUG_CPU_USAGE
1896        cpu.sampleAndEnable();
1897        unsigned n = stats.n();
1898        // cpu.elapsed() is expensive, so don't call it every loop
1899        if ((n & 127) == 1) {
1900            long long elapsed = cpu.elapsed();
1901            if (elapsed >= DEBUG_CPU_USAGE * 1000000000LL) {
1902                double perLoop = elapsed / (double) n;
1903                double perLoop100 = perLoop * 0.01;
1904                double mean = stats.mean();
1905                double stddev = stats.stddev();
1906                double minimum = stats.minimum();
1907                double maximum = stats.maximum();
1908                cpu.resetStatistics();
1909                ALOGI("CPU usage over past %.1f secs (%u mixer loops at %.1f mean ms per loop):\n  us per mix loop: mean=%.0f stddev=%.0f min=%.0f max=%.0f\n  %% of wall: mean=%.1f stddev=%.1f min=%.1f max=%.1f",
1910                        elapsed * .000000001, n, perLoop * .000001,
1911                        mean * .001,
1912                        stddev * .001,
1913                        minimum * .001,
1914                        maximum * .001,
1915                        mean / perLoop100,
1916                        stddev / perLoop100,
1917                        minimum / perLoop100,
1918                        maximum / perLoop100);
1919            }
1920        }
1921#endif
1922        processConfigEvents();
1923
1924        mixerStatus = MIXER_IDLE;
1925        { // scope for mLock
1926
1927            Mutex::Autolock _l(mLock);
1928
1929            if (checkForNewParameters_l()) {
1930                mixBufferSize = mFrameCount * mFrameSize;
1931                // FIXME: Relaxed timing because of a certain device that can't meet latency
1932                // Should be reduced to 2x after the vendor fixes the driver issue
1933                // increase threshold again due to low power audio mode. The way this warning
1934                // threshold is calculated and its usefulness should be reconsidered anyway.
1935                maxPeriod = seconds(mFrameCount) / mSampleRate * 15;
1936                activeSleepTime = activeSleepTimeUs();
1937                idleSleepTime = idleSleepTimeUs();
1938            }
1939
1940            const SortedVector< wp<Track> >& activeTracks = mActiveTracks;
1941
1942            // put audio hardware into standby after short delay
1943            if (CC_UNLIKELY((!activeTracks.size() && systemTime() > standbyTime) ||
1944                        mSuspended)) {
1945                if (!mStandby) {
1946                    ALOGV("Audio hardware entering standby, mixer %p, mSuspended %d\n", this, mSuspended);
1947                    mOutput->stream->common.standby(&mOutput->stream->common);
1948                    mStandby = true;
1949                    mBytesWritten = 0;
1950                }
1951
1952                if (!activeTracks.size() && mConfigEvents.isEmpty()) {
1953                    // we're about to wait, flush the binder command buffer
1954                    IPCThreadState::self()->flushCommands();
1955
1956                    if (exitPending()) break;
1957
1958                    releaseWakeLock_l();
1959                    // wait until we have something to do...
1960                    ALOGV("MixerThread %p TID %d going to sleep\n", this, gettid());
1961                    mWaitWorkCV.wait(mLock);
1962                    ALOGV("MixerThread %p TID %d waking up\n", this, gettid());
1963                    acquireWakeLock_l();
1964
1965                    if (!mMasterMute) {
1966                        char value[PROPERTY_VALUE_MAX];
1967                        property_get("ro.audio.silent", value, "0");
1968                        if (atoi(value)) {
1969                            ALOGD("Silence is golden");
1970                            setMasterMute(true);
1971                        }
1972                    }
1973
1974                    standbyTime = systemTime() + kStandbyTimeInNsecs;
1975                    sleepTime = idleSleepTime;
1976                    sleepTimeShift = 0;
1977                    continue;
1978                }
1979            }
1980
1981            mixerStatus = prepareTracks_l(activeTracks, &tracksToRemove);
1982
1983            // prevent any changes in effect chain list and in each effect chain
1984            // during mixing and effect process as the audio buffers could be deleted
1985            // or modified if an effect is created or deleted
1986            lockEffectChains_l(effectChains);
1987        }
1988
1989        if (CC_LIKELY(mixerStatus == MIXER_TRACKS_READY)) {
1990            // mix buffers...
1991            mAudioMixer->process();
1992            sleepTime = 0;
1993            // increase sleep time progressively when application underrun condition clears
1994            if (sleepTimeShift > 0) {
1995                sleepTimeShift--;
1996            }
1997            standbyTime = systemTime() + kStandbyTimeInNsecs;
1998            //TODO: delay standby when effects have a tail
1999        } else {
2000            // If no tracks are ready, sleep once for the duration of an output
2001            // buffer size, then write 0s to the output
2002            if (sleepTime == 0) {
2003                if (mixerStatus == MIXER_TRACKS_ENABLED) {
2004                    sleepTime = activeSleepTime >> sleepTimeShift;
2005                    if (sleepTime < kMinThreadSleepTimeUs) {
2006                        sleepTime = kMinThreadSleepTimeUs;
2007                    }
2008                    // reduce sleep time in case of consecutive application underruns to avoid
2009                    // starving the audio HAL. As activeSleepTimeUs() is larger than a buffer
2010                    // duration we would end up writing less data than needed by the audio HAL if
2011                    // the condition persists.
2012                    if (sleepTimeShift < kMaxThreadSleepTimeShift) {
2013                        sleepTimeShift++;
2014                    }
2015                } else {
2016                    sleepTime = idleSleepTime;
2017                }
2018            } else if (mBytesWritten != 0 ||
2019                       (mixerStatus == MIXER_TRACKS_ENABLED && longStandbyExit)) {
2020                memset (mMixBuffer, 0, mixBufferSize);
2021                sleepTime = 0;
2022                ALOGV_IF((mBytesWritten == 0 && (mixerStatus == MIXER_TRACKS_ENABLED && longStandbyExit)), "anticipated start");
2023            }
2024            // TODO add standby time extension fct of effect tail
2025        }
2026
2027        if (mSuspended) {
2028            sleepTime = suspendSleepTimeUs();
2029        }
2030        // sleepTime == 0 means we must write to audio hardware
2031        if (sleepTime == 0) {
2032            for (size_t i = 0; i < effectChains.size(); i ++) {
2033                effectChains[i]->process_l();
2034            }
2035            // enable changes in effect chain
2036            unlockEffectChains(effectChains);
2037            mLastWriteTime = systemTime();
2038            mInWrite = true;
2039            mBytesWritten += mixBufferSize;
2040
2041            int bytesWritten = (int)mOutput->stream->write(mOutput->stream, mMixBuffer, mixBufferSize);
2042            if (bytesWritten < 0) mBytesWritten -= mixBufferSize;
2043            mNumWrites++;
2044            mInWrite = false;
2045            nsecs_t now = systemTime();
2046            nsecs_t delta = now - mLastWriteTime;
2047            if (!mStandby && delta > maxPeriod) {
2048                mNumDelayedWrites++;
2049                if ((now - lastWarning) > kWarningThrottleNs) {
2050                    ALOGW("write blocked for %llu msecs, %d delayed writes, thread %p",
2051                            ns2ms(delta), mNumDelayedWrites, this);
2052                    lastWarning = now;
2053                }
2054                if (mStandby) {
2055                    longStandbyExit = true;
2056                }
2057            }
2058            mStandby = false;
2059        } else {
2060            // enable changes in effect chain
2061            unlockEffectChains(effectChains);
2062            usleep(sleepTime);
2063        }
2064
2065        // finally let go of all our tracks, without the lock held
2066        // since we can't guarantee the destructors won't acquire that
2067        // same lock.
2068        tracksToRemove.clear();
2069
2070        // Effect chains will be actually deleted here if they were removed from
2071        // mEffectChains list during mixing or effects processing
2072        effectChains.clear();
2073    }
2074
2075    if (!mStandby) {
2076        mOutput->stream->common.standby(&mOutput->stream->common);
2077    }
2078
2079    releaseWakeLock();
2080
2081    ALOGV("MixerThread %p exiting", this);
2082    return false;
2083}
2084
2085// prepareTracks_l() must be called with ThreadBase::mLock held
2086uint32_t AudioFlinger::MixerThread::prepareTracks_l(const SortedVector< wp<Track> >& activeTracks, Vector< sp<Track> > *tracksToRemove)
2087{
2088
2089    uint32_t mixerStatus = MIXER_IDLE;
2090    // find out which tracks need to be processed
2091    size_t count = activeTracks.size();
2092    size_t mixedTracks = 0;
2093    size_t tracksWithEffect = 0;
2094
2095    float masterVolume = mMasterVolume;
2096    bool  masterMute = mMasterMute;
2097
2098    if (masterMute) {
2099        masterVolume = 0;
2100    }
2101    // Delegate master volume control to effect in output mix effect chain if needed
2102    sp<EffectChain> chain = getEffectChain_l(AUDIO_SESSION_OUTPUT_MIX);
2103    if (chain != 0) {
2104        uint32_t v = (uint32_t)(masterVolume * (1 << 24));
2105        chain->setVolume_l(&v, &v);
2106        masterVolume = (float)((v + (1 << 23)) >> 24);
2107        chain.clear();
2108    }
2109
2110    for (size_t i=0 ; i<count ; i++) {
2111        sp<Track> t = activeTracks[i].promote();
2112        if (t == 0) continue;
2113
2114        // this const just means the local variable doesn't change
2115        Track* const track = t.get();
2116        audio_track_cblk_t* cblk = track->cblk();
2117
2118        // The first time a track is added we wait
2119        // for all its buffers to be filled before processing it
2120        int name = track->name();
2121        // make sure that we have enough frames to mix one full buffer.
2122        // enforce this condition only once to enable draining the buffer in case the client
2123        // app does not call stop() and relies on underrun to stop:
2124        // hence the test on (track->mRetryCount >= kMaxTrackRetries) meaning the track was mixed
2125        // during last round
2126        uint32_t minFrames = 1;
2127        if (!track->isStopped() && !track->isPausing() &&
2128                (track->mRetryCount >= kMaxTrackRetries)) {
2129            if (t->sampleRate() == (int)mSampleRate) {
2130                minFrames = mFrameCount;
2131            } else {
2132                // +1 for rounding and +1 for additional sample needed for interpolation
2133                minFrames = (mFrameCount * t->sampleRate()) / mSampleRate + 1 + 1;
2134                // add frames already consumed but not yet released by the resampler
2135                // because cblk->framesReady() will  include these frames
2136                minFrames += mAudioMixer->getUnreleasedFrames(track->name());
2137                // the minimum track buffer size is normally twice the number of frames necessary
2138                // to fill one buffer and the resampler should not leave more than one buffer worth
2139                // of unreleased frames after each pass, but just in case...
2140                ALOG_ASSERT(minFrames <= cblk->frameCount);
2141            }
2142        }
2143        if ((cblk->framesReady() >= minFrames) && track->isReady() &&
2144                !track->isPaused() && !track->isTerminated())
2145        {
2146            //ALOGV("track %d u=%08x, s=%08x [OK] on thread %p", name, cblk->user, cblk->server, this);
2147
2148            mixedTracks++;
2149
2150            // track->mainBuffer() != mMixBuffer means there is an effect chain
2151            // connected to the track
2152            chain.clear();
2153            if (track->mainBuffer() != mMixBuffer) {
2154                chain = getEffectChain_l(track->sessionId());
2155                // Delegate volume control to effect in track effect chain if needed
2156                if (chain != 0) {
2157                    tracksWithEffect++;
2158                } else {
2159                    ALOGW("prepareTracks_l(): track %d attached to effect but no chain found on session %d",
2160                            name, track->sessionId());
2161                }
2162            }
2163
2164
2165            int param = AudioMixer::VOLUME;
2166            if (track->mFillingUpStatus == Track::FS_FILLED) {
2167                // no ramp for the first volume setting
2168                track->mFillingUpStatus = Track::FS_ACTIVE;
2169                if (track->mState == TrackBase::RESUMING) {
2170                    track->mState = TrackBase::ACTIVE;
2171                    param = AudioMixer::RAMP_VOLUME;
2172                }
2173                mAudioMixer->setParameter(name, AudioMixer::RESAMPLE, AudioMixer::RESET, NULL);
2174            } else if (cblk->server != 0) {
2175                // If the track is stopped before the first frame was mixed,
2176                // do not apply ramp
2177                param = AudioMixer::RAMP_VOLUME;
2178            }
2179
2180            // compute volume for this track
2181            uint32_t vl, vr, va;
2182            if (track->isMuted() || track->isPausing() ||
2183                mStreamTypes[track->type()].mute) {
2184                vl = vr = va = 0;
2185                if (track->isPausing()) {
2186                    track->setPaused();
2187                }
2188            } else {
2189
2190                // read original volumes with volume control
2191                float typeVolume = mStreamTypes[track->type()].volume;
2192                float v = masterVolume * typeVolume;
2193                uint32_t vlr = cblk->volumeLR;
2194                vl = vlr & 0xFFFF;
2195                vr = vlr >> 16;
2196                // track volumes come from shared memory, so can't be trusted and must be clamped
2197                if (vl > MAX_GAIN_INT) {
2198                    ALOGV("Track left volume out of range: %04X", vl);
2199                    vl = MAX_GAIN_INT;
2200                }
2201                if (vr > MAX_GAIN_INT) {
2202                    ALOGV("Track right volume out of range: %04X", vr);
2203                    vr = MAX_GAIN_INT;
2204                }
2205                // now apply the master volume and stream type volume
2206                vl = (uint32_t)(v * vl) << 12;
2207                vr = (uint32_t)(v * vr) << 12;
2208                // assuming master volume and stream type volume each go up to 1.0,
2209                // vl and vr are now in 8.24 format
2210
2211                uint16_t sendLevel = cblk->getSendLevel_U4_12();
2212                // send level comes from shared memory and so may be corrupt
2213                if (sendLevel >= MAX_GAIN_INT) {
2214                    ALOGV("Track send level out of range: %04X", sendLevel);
2215                    sendLevel = MAX_GAIN_INT;
2216                }
2217                va = (uint32_t)(v * sendLevel);
2218            }
2219            // Delegate volume control to effect in track effect chain if needed
2220            if (chain != 0 && chain->setVolume_l(&vl, &vr)) {
2221                // Do not ramp volume if volume is controlled by effect
2222                param = AudioMixer::VOLUME;
2223                track->mHasVolumeController = true;
2224            } else {
2225                // force no volume ramp when volume controller was just disabled or removed
2226                // from effect chain to avoid volume spike
2227                if (track->mHasVolumeController) {
2228                    param = AudioMixer::VOLUME;
2229                }
2230                track->mHasVolumeController = false;
2231            }
2232
2233            // Convert volumes from 8.24 to 4.12 format
2234            int16_t left, right, aux;
2235            // This additional clamping is needed in case chain->setVolume_l() overshot
2236            uint32_t v_clamped = (vl + (1 << 11)) >> 12;
2237            if (v_clamped > MAX_GAIN_INT) v_clamped = MAX_GAIN_INT;
2238            left = int16_t(v_clamped);
2239            v_clamped = (vr + (1 << 11)) >> 12;
2240            if (v_clamped > MAX_GAIN_INT) v_clamped = MAX_GAIN_INT;
2241            right = int16_t(v_clamped);
2242
2243            if (va > MAX_GAIN_INT) va = MAX_GAIN_INT;
2244            aux = int16_t(va);
2245
2246            // XXX: these things DON'T need to be done each time
2247            mAudioMixer->setBufferProvider(name, track);
2248            mAudioMixer->enable(name);
2249
2250            mAudioMixer->setParameter(name, param, AudioMixer::VOLUME0, (void *)left);
2251            mAudioMixer->setParameter(name, param, AudioMixer::VOLUME1, (void *)right);
2252            mAudioMixer->setParameter(name, param, AudioMixer::AUXLEVEL, (void *)aux);
2253            mAudioMixer->setParameter(
2254                name,
2255                AudioMixer::TRACK,
2256                AudioMixer::FORMAT, (void *)track->format());
2257            mAudioMixer->setParameter(
2258                name,
2259                AudioMixer::TRACK,
2260                AudioMixer::CHANNEL_MASK, (void *)track->channelMask());
2261            mAudioMixer->setParameter(
2262                name,
2263                AudioMixer::RESAMPLE,
2264                AudioMixer::SAMPLE_RATE,
2265                (void *)(cblk->sampleRate));
2266            mAudioMixer->setParameter(
2267                name,
2268                AudioMixer::TRACK,
2269                AudioMixer::MAIN_BUFFER, (void *)track->mainBuffer());
2270            mAudioMixer->setParameter(
2271                name,
2272                AudioMixer::TRACK,
2273                AudioMixer::AUX_BUFFER, (void *)track->auxBuffer());
2274
2275            // reset retry count
2276            track->mRetryCount = kMaxTrackRetries;
2277            mixerStatus = MIXER_TRACKS_READY;
2278        } else {
2279            //ALOGV("track %d u=%08x, s=%08x [NOT READY] on thread %p", name, cblk->user, cblk->server, this);
2280            if (track->isStopped()) {
2281                track->reset();
2282            }
2283            if (track->isTerminated() || track->isStopped() || track->isPaused()) {
2284                // We have consumed all the buffers of this track.
2285                // Remove it from the list of active tracks.
2286                tracksToRemove->add(track);
2287            } else {
2288                // No buffers for this track. Give it a few chances to
2289                // fill a buffer, then remove it from active list.
2290                if (--(track->mRetryCount) <= 0) {
2291                    ALOGV("BUFFER TIMEOUT: remove(%d) from active list on thread %p", name, this);
2292                    tracksToRemove->add(track);
2293                    // indicate to client process that the track was disabled because of underrun
2294                    android_atomic_or(CBLK_DISABLED_ON, &cblk->flags);
2295                } else if (mixerStatus != MIXER_TRACKS_READY) {
2296                    mixerStatus = MIXER_TRACKS_ENABLED;
2297                }
2298            }
2299            mAudioMixer->disable(name);
2300        }
2301    }
2302
2303    // remove all the tracks that need to be...
2304    count = tracksToRemove->size();
2305    if (CC_UNLIKELY(count)) {
2306        for (size_t i=0 ; i<count ; i++) {
2307            const sp<Track>& track = tracksToRemove->itemAt(i);
2308            mActiveTracks.remove(track);
2309            if (track->mainBuffer() != mMixBuffer) {
2310                chain = getEffectChain_l(track->sessionId());
2311                if (chain != 0) {
2312                    ALOGV("stopping track on chain %p for session Id: %d", chain.get(), track->sessionId());
2313                    chain->decActiveTrackCnt();
2314                }
2315            }
2316            if (track->isTerminated()) {
2317                removeTrack_l(track);
2318            }
2319        }
2320    }
2321
2322    // mix buffer must be cleared if all tracks are connected to an
2323    // effect chain as in this case the mixer will not write to
2324    // mix buffer and track effects will accumulate into it
2325    if (mixedTracks != 0 && mixedTracks == tracksWithEffect) {
2326        memset(mMixBuffer, 0, mFrameCount * mChannelCount * sizeof(int16_t));
2327    }
2328
2329    return mixerStatus;
2330}
2331
2332void AudioFlinger::MixerThread::invalidateTracks(audio_stream_type_t streamType)
2333{
2334    ALOGV ("MixerThread::invalidateTracks() mixer %p, streamType %d, mTracks.size %d",
2335            this,  streamType, mTracks.size());
2336    Mutex::Autolock _l(mLock);
2337
2338    size_t size = mTracks.size();
2339    for (size_t i = 0; i < size; i++) {
2340        sp<Track> t = mTracks[i];
2341        if (t->type() == streamType) {
2342            android_atomic_or(CBLK_INVALID_ON, &t->mCblk->flags);
2343            t->mCblk->cv.signal();
2344        }
2345    }
2346}
2347
2348void AudioFlinger::PlaybackThread::setStreamValid(audio_stream_type_t streamType, bool valid)
2349{
2350    ALOGV ("PlaybackThread::setStreamValid() thread %p, streamType %d, valid %d",
2351            this,  streamType, valid);
2352    Mutex::Autolock _l(mLock);
2353
2354    mStreamTypes[streamType].valid = valid;
2355}
2356
2357// getTrackName_l() must be called with ThreadBase::mLock held
2358int AudioFlinger::MixerThread::getTrackName_l()
2359{
2360    return mAudioMixer->getTrackName();
2361}
2362
2363// deleteTrackName_l() must be called with ThreadBase::mLock held
2364void AudioFlinger::MixerThread::deleteTrackName_l(int name)
2365{
2366    ALOGV("remove track (%d) and delete from mixer", name);
2367    mAudioMixer->deleteTrackName(name);
2368}
2369
2370// checkForNewParameters_l() must be called with ThreadBase::mLock held
2371bool AudioFlinger::MixerThread::checkForNewParameters_l()
2372{
2373    bool reconfig = false;
2374
2375    while (!mNewParameters.isEmpty()) {
2376        status_t status = NO_ERROR;
2377        String8 keyValuePair = mNewParameters[0];
2378        AudioParameter param = AudioParameter(keyValuePair);
2379        int value;
2380
2381        if (param.getInt(String8(AudioParameter::keySamplingRate), value) == NO_ERROR) {
2382            reconfig = true;
2383        }
2384        if (param.getInt(String8(AudioParameter::keyFormat), value) == NO_ERROR) {
2385            if (value != AUDIO_FORMAT_PCM_16_BIT) {
2386                status = BAD_VALUE;
2387            } else {
2388                reconfig = true;
2389            }
2390        }
2391        if (param.getInt(String8(AudioParameter::keyChannels), value) == NO_ERROR) {
2392            if (value != AUDIO_CHANNEL_OUT_STEREO) {
2393                status = BAD_VALUE;
2394            } else {
2395                reconfig = true;
2396            }
2397        }
2398        if (param.getInt(String8(AudioParameter::keyFrameCount), value) == NO_ERROR) {
2399            // do not accept frame count changes if tracks are open as the track buffer
2400            // size depends on frame count and correct behavior would not be guaranteed
2401            // if frame count is changed after track creation
2402            if (!mTracks.isEmpty()) {
2403                status = INVALID_OPERATION;
2404            } else {
2405                reconfig = true;
2406            }
2407        }
2408        if (param.getInt(String8(AudioParameter::keyRouting), value) == NO_ERROR) {
2409            // when changing the audio output device, call addBatteryData to notify
2410            // the change
2411            if ((int)mDevice != value) {
2412                uint32_t params = 0;
2413                // check whether speaker is on
2414                if (value & AUDIO_DEVICE_OUT_SPEAKER) {
2415                    params |= IMediaPlayerService::kBatteryDataSpeakerOn;
2416                }
2417
2418                int deviceWithoutSpeaker
2419                    = AUDIO_DEVICE_OUT_ALL & ~AUDIO_DEVICE_OUT_SPEAKER;
2420                // check if any other device (except speaker) is on
2421                if (value & deviceWithoutSpeaker ) {
2422                    params |= IMediaPlayerService::kBatteryDataOtherAudioDeviceOn;
2423                }
2424
2425                if (params != 0) {
2426                    addBatteryData(params);
2427                }
2428            }
2429
2430            // forward device change to effects that have requested to be
2431            // aware of attached audio device.
2432            mDevice = (uint32_t)value;
2433            for (size_t i = 0; i < mEffectChains.size(); i++) {
2434                mEffectChains[i]->setDevice_l(mDevice);
2435            }
2436        }
2437
2438        if (status == NO_ERROR) {
2439            status = mOutput->stream->common.set_parameters(&mOutput->stream->common,
2440                                                    keyValuePair.string());
2441            if (!mStandby && status == INVALID_OPERATION) {
2442               mOutput->stream->common.standby(&mOutput->stream->common);
2443               mStandby = true;
2444               mBytesWritten = 0;
2445               status = mOutput->stream->common.set_parameters(&mOutput->stream->common,
2446                                                       keyValuePair.string());
2447            }
2448            if (status == NO_ERROR && reconfig) {
2449                delete mAudioMixer;
2450                readOutputParameters();
2451                mAudioMixer = new AudioMixer(mFrameCount, mSampleRate);
2452                for (size_t i = 0; i < mTracks.size() ; i++) {
2453                    int name = getTrackName_l();
2454                    if (name < 0) break;
2455                    mTracks[i]->mName = name;
2456                    // limit track sample rate to 2 x new output sample rate
2457                    if (mTracks[i]->mCblk->sampleRate > 2 * sampleRate()) {
2458                        mTracks[i]->mCblk->sampleRate = 2 * sampleRate();
2459                    }
2460                }
2461                sendConfigEvent_l(AudioSystem::OUTPUT_CONFIG_CHANGED);
2462            }
2463        }
2464
2465        mNewParameters.removeAt(0);
2466
2467        mParamStatus = status;
2468        mParamCond.signal();
2469        // wait for condition with time out in case the thread calling ThreadBase::setParameters()
2470        // already timed out waiting for the status and will never signal the condition.
2471        mWaitWorkCV.waitRelative(mLock, kSetParametersTimeoutNs);
2472    }
2473    return reconfig;
2474}
2475
2476status_t AudioFlinger::MixerThread::dumpInternals(int fd, const Vector<String16>& args)
2477{
2478    const size_t SIZE = 256;
2479    char buffer[SIZE];
2480    String8 result;
2481
2482    PlaybackThread::dumpInternals(fd, args);
2483
2484    snprintf(buffer, SIZE, "AudioMixer tracks: %08x\n", mAudioMixer->trackNames());
2485    result.append(buffer);
2486    write(fd, result.string(), result.size());
2487    return NO_ERROR;
2488}
2489
2490uint32_t AudioFlinger::MixerThread::idleSleepTimeUs()
2491{
2492    return (uint32_t)(((mFrameCount * 1000) / mSampleRate) * 1000) / 2;
2493}
2494
2495uint32_t AudioFlinger::MixerThread::suspendSleepTimeUs()
2496{
2497    return (uint32_t)(((mFrameCount * 1000) / mSampleRate) * 1000);
2498}
2499
2500// ----------------------------------------------------------------------------
2501AudioFlinger::DirectOutputThread::DirectOutputThread(const sp<AudioFlinger>& audioFlinger, AudioStreamOut* output, int id, uint32_t device)
2502    :   PlaybackThread(audioFlinger, output, id, device)
2503{
2504    mType = ThreadBase::DIRECT;
2505}
2506
2507AudioFlinger::DirectOutputThread::~DirectOutputThread()
2508{
2509}
2510
2511static inline
2512int32_t mul(int16_t in, int16_t v)
2513{
2514#if defined(__arm__) && !defined(__thumb__)
2515    int32_t out;
2516    asm( "smulbb %[out], %[in], %[v] \n"
2517         : [out]"=r"(out)
2518         : [in]"%r"(in), [v]"r"(v)
2519         : );
2520    return out;
2521#else
2522    return in * int32_t(v);
2523#endif
2524}
2525
2526void AudioFlinger::DirectOutputThread::applyVolume(uint16_t leftVol, uint16_t rightVol, bool ramp)
2527{
2528    // Do not apply volume on compressed audio
2529    if (!audio_is_linear_pcm(mFormat)) {
2530        return;
2531    }
2532
2533    // convert to signed 16 bit before volume calculation
2534    if (mFormat == AUDIO_FORMAT_PCM_8_BIT) {
2535        size_t count = mFrameCount * mChannelCount;
2536        uint8_t *src = (uint8_t *)mMixBuffer + count-1;
2537        int16_t *dst = mMixBuffer + count-1;
2538        while(count--) {
2539            *dst-- = (int16_t)(*src--^0x80) << 8;
2540        }
2541    }
2542
2543    size_t frameCount = mFrameCount;
2544    int16_t *out = mMixBuffer;
2545    if (ramp) {
2546        if (mChannelCount == 1) {
2547            int32_t d = ((int32_t)leftVol - (int32_t)mLeftVolShort) << 16;
2548            int32_t vlInc = d / (int32_t)frameCount;
2549            int32_t vl = ((int32_t)mLeftVolShort << 16);
2550            do {
2551                out[0] = clamp16(mul(out[0], vl >> 16) >> 12);
2552                out++;
2553                vl += vlInc;
2554            } while (--frameCount);
2555
2556        } else {
2557            int32_t d = ((int32_t)leftVol - (int32_t)mLeftVolShort) << 16;
2558            int32_t vlInc = d / (int32_t)frameCount;
2559            d = ((int32_t)rightVol - (int32_t)mRightVolShort) << 16;
2560            int32_t vrInc = d / (int32_t)frameCount;
2561            int32_t vl = ((int32_t)mLeftVolShort << 16);
2562            int32_t vr = ((int32_t)mRightVolShort << 16);
2563            do {
2564                out[0] = clamp16(mul(out[0], vl >> 16) >> 12);
2565                out[1] = clamp16(mul(out[1], vr >> 16) >> 12);
2566                out += 2;
2567                vl += vlInc;
2568                vr += vrInc;
2569            } while (--frameCount);
2570        }
2571    } else {
2572        if (mChannelCount == 1) {
2573            do {
2574                out[0] = clamp16(mul(out[0], leftVol) >> 12);
2575                out++;
2576            } while (--frameCount);
2577        } else {
2578            do {
2579                out[0] = clamp16(mul(out[0], leftVol) >> 12);
2580                out[1] = clamp16(mul(out[1], rightVol) >> 12);
2581                out += 2;
2582            } while (--frameCount);
2583        }
2584    }
2585
2586    // convert back to unsigned 8 bit after volume calculation
2587    if (mFormat == AUDIO_FORMAT_PCM_8_BIT) {
2588        size_t count = mFrameCount * mChannelCount;
2589        int16_t *src = mMixBuffer;
2590        uint8_t *dst = (uint8_t *)mMixBuffer;
2591        while(count--) {
2592            *dst++ = (uint8_t)(((int32_t)*src++ + (1<<7)) >> 8)^0x80;
2593        }
2594    }
2595
2596    mLeftVolShort = leftVol;
2597    mRightVolShort = rightVol;
2598}
2599
2600bool AudioFlinger::DirectOutputThread::threadLoop()
2601{
2602    uint32_t mixerStatus = MIXER_IDLE;
2603    sp<Track> trackToRemove;
2604    sp<Track> activeTrack;
2605    nsecs_t standbyTime = systemTime();
2606    int8_t *curBuf;
2607    size_t mixBufferSize = mFrameCount*mFrameSize;
2608    uint32_t activeSleepTime = activeSleepTimeUs();
2609    uint32_t idleSleepTime = idleSleepTimeUs();
2610    uint32_t sleepTime = idleSleepTime;
2611    // use shorter standby delay as on normal output to release
2612    // hardware resources as soon as possible
2613    nsecs_t standbyDelay = microseconds(activeSleepTime*2);
2614
2615    acquireWakeLock();
2616
2617    while (!exitPending())
2618    {
2619        bool rampVolume;
2620        uint16_t leftVol;
2621        uint16_t rightVol;
2622        Vector< sp<EffectChain> > effectChains;
2623
2624        processConfigEvents();
2625
2626        mixerStatus = MIXER_IDLE;
2627
2628        { // scope for the mLock
2629
2630            Mutex::Autolock _l(mLock);
2631
2632            if (checkForNewParameters_l()) {
2633                mixBufferSize = mFrameCount*mFrameSize;
2634                activeSleepTime = activeSleepTimeUs();
2635                idleSleepTime = idleSleepTimeUs();
2636                standbyDelay = microseconds(activeSleepTime*2);
2637            }
2638
2639            // put audio hardware into standby after short delay
2640            if (CC_UNLIKELY((!mActiveTracks.size() && systemTime() > standbyTime) ||
2641                        mSuspended)) {
2642                // wait until we have something to do...
2643                if (!mStandby) {
2644                    ALOGV("Audio hardware entering standby, mixer %p\n", this);
2645                    mOutput->stream->common.standby(&mOutput->stream->common);
2646                    mStandby = true;
2647                    mBytesWritten = 0;
2648                }
2649
2650                if (!mActiveTracks.size() && mConfigEvents.isEmpty()) {
2651                    // we're about to wait, flush the binder command buffer
2652                    IPCThreadState::self()->flushCommands();
2653
2654                    if (exitPending()) break;
2655
2656                    releaseWakeLock_l();
2657                    ALOGV("DirectOutputThread %p TID %d going to sleep\n", this, gettid());
2658                    mWaitWorkCV.wait(mLock);
2659                    ALOGV("DirectOutputThread %p TID %d waking up in active mode\n", this, gettid());
2660                    acquireWakeLock_l();
2661
2662                    if (!mMasterMute) {
2663                        char value[PROPERTY_VALUE_MAX];
2664                        property_get("ro.audio.silent", value, "0");
2665                        if (atoi(value)) {
2666                            ALOGD("Silence is golden");
2667                            setMasterMute(true);
2668                        }
2669                    }
2670
2671                    standbyTime = systemTime() + standbyDelay;
2672                    sleepTime = idleSleepTime;
2673                    continue;
2674                }
2675            }
2676
2677            effectChains = mEffectChains;
2678
2679            // find out which tracks need to be processed
2680            if (mActiveTracks.size() != 0) {
2681                sp<Track> t = mActiveTracks[0].promote();
2682                if (t == 0) continue;
2683
2684                Track* const track = t.get();
2685                audio_track_cblk_t* cblk = track->cblk();
2686
2687                // The first time a track is added we wait
2688                // for all its buffers to be filled before processing it
2689                if (cblk->framesReady() && track->isReady() &&
2690                        !track->isPaused() && !track->isTerminated())
2691                {
2692                    //ALOGV("track %d u=%08x, s=%08x [OK]", track->name(), cblk->user, cblk->server);
2693
2694                    if (track->mFillingUpStatus == Track::FS_FILLED) {
2695                        track->mFillingUpStatus = Track::FS_ACTIVE;
2696                        mLeftVolFloat = mRightVolFloat = 0;
2697                        mLeftVolShort = mRightVolShort = 0;
2698                        if (track->mState == TrackBase::RESUMING) {
2699                            track->mState = TrackBase::ACTIVE;
2700                            rampVolume = true;
2701                        }
2702                    } else if (cblk->server != 0) {
2703                        // If the track is stopped before the first frame was mixed,
2704                        // do not apply ramp
2705                        rampVolume = true;
2706                    }
2707                    // compute volume for this track
2708                    float left, right;
2709                    if (track->isMuted() || mMasterMute || track->isPausing() ||
2710                        mStreamTypes[track->type()].mute) {
2711                        left = right = 0;
2712                        if (track->isPausing()) {
2713                            track->setPaused();
2714                        }
2715                    } else {
2716                        float typeVolume = mStreamTypes[track->type()].volume;
2717                        float v = mMasterVolume * typeVolume;
2718                        uint32_t vlr = cblk->volumeLR;
2719                        float v_clamped = v * (vlr & 0xFFFF);
2720                        if (v_clamped > MAX_GAIN) v_clamped = MAX_GAIN;
2721                        left = v_clamped/MAX_GAIN;
2722                        v_clamped = v * (vlr >> 16);
2723                        if (v_clamped > MAX_GAIN) v_clamped = MAX_GAIN;
2724                        right = v_clamped/MAX_GAIN;
2725                    }
2726
2727                    if (left != mLeftVolFloat || right != mRightVolFloat) {
2728                        mLeftVolFloat = left;
2729                        mRightVolFloat = right;
2730
2731                        // If audio HAL implements volume control,
2732                        // force software volume to nominal value
2733                        if (mOutput->stream->set_volume(mOutput->stream, left, right) == NO_ERROR) {
2734                            left = 1.0f;
2735                            right = 1.0f;
2736                        }
2737
2738                        // Convert volumes from float to 8.24
2739                        uint32_t vl = (uint32_t)(left * (1 << 24));
2740                        uint32_t vr = (uint32_t)(right * (1 << 24));
2741
2742                        // Delegate volume control to effect in track effect chain if needed
2743                        // only one effect chain can be present on DirectOutputThread, so if
2744                        // there is one, the track is connected to it
2745                        if (!effectChains.isEmpty()) {
2746                            // Do not ramp volume if volume is controlled by effect
2747                            if(effectChains[0]->setVolume_l(&vl, &vr)) {
2748                                rampVolume = false;
2749                            }
2750                        }
2751
2752                        // Convert volumes from 8.24 to 4.12 format
2753                        uint32_t v_clamped = (vl + (1 << 11)) >> 12;
2754                        if (v_clamped > MAX_GAIN_INT) v_clamped = MAX_GAIN_INT;
2755                        leftVol = (uint16_t)v_clamped;
2756                        v_clamped = (vr + (1 << 11)) >> 12;
2757                        if (v_clamped > MAX_GAIN_INT) v_clamped = MAX_GAIN_INT;
2758                        rightVol = (uint16_t)v_clamped;
2759                    } else {
2760                        leftVol = mLeftVolShort;
2761                        rightVol = mRightVolShort;
2762                        rampVolume = false;
2763                    }
2764
2765                    // reset retry count
2766                    track->mRetryCount = kMaxTrackRetriesDirect;
2767                    activeTrack = t;
2768                    mixerStatus = MIXER_TRACKS_READY;
2769                } else {
2770                    //ALOGV("track %d u=%08x, s=%08x [NOT READY]", track->name(), cblk->user, cblk->server);
2771                    if (track->isStopped()) {
2772                        track->reset();
2773                    }
2774                    if (track->isTerminated() || track->isStopped() || track->isPaused()) {
2775                        // We have consumed all the buffers of this track.
2776                        // Remove it from the list of active tracks.
2777                        trackToRemove = track;
2778                    } else {
2779                        // No buffers for this track. Give it a few chances to
2780                        // fill a buffer, then remove it from active list.
2781                        if (--(track->mRetryCount) <= 0) {
2782                            ALOGV("BUFFER TIMEOUT: remove(%d) from active list", track->name());
2783                            trackToRemove = track;
2784                        } else {
2785                            mixerStatus = MIXER_TRACKS_ENABLED;
2786                        }
2787                    }
2788                }
2789            }
2790
2791            // remove all the tracks that need to be...
2792            if (CC_UNLIKELY(trackToRemove != 0)) {
2793                mActiveTracks.remove(trackToRemove);
2794                if (!effectChains.isEmpty()) {
2795                    ALOGV("stopping track on chain %p for session Id: %d", effectChains[0].get(),
2796                            trackToRemove->sessionId());
2797                    effectChains[0]->decActiveTrackCnt();
2798                }
2799                if (trackToRemove->isTerminated()) {
2800                    removeTrack_l(trackToRemove);
2801                }
2802            }
2803
2804            lockEffectChains_l(effectChains);
2805       }
2806
2807        if (CC_LIKELY(mixerStatus == MIXER_TRACKS_READY)) {
2808            AudioBufferProvider::Buffer buffer;
2809            size_t frameCount = mFrameCount;
2810            curBuf = (int8_t *)mMixBuffer;
2811            // output audio to hardware
2812            while (frameCount) {
2813                buffer.frameCount = frameCount;
2814                activeTrack->getNextBuffer(&buffer);
2815                if (CC_UNLIKELY(buffer.raw == NULL)) {
2816                    memset(curBuf, 0, frameCount * mFrameSize);
2817                    break;
2818                }
2819                memcpy(curBuf, buffer.raw, buffer.frameCount * mFrameSize);
2820                frameCount -= buffer.frameCount;
2821                curBuf += buffer.frameCount * mFrameSize;
2822                activeTrack->releaseBuffer(&buffer);
2823            }
2824            sleepTime = 0;
2825            standbyTime = systemTime() + standbyDelay;
2826        } else {
2827            if (sleepTime == 0) {
2828                if (mixerStatus == MIXER_TRACKS_ENABLED) {
2829                    sleepTime = activeSleepTime;
2830                } else {
2831                    sleepTime = idleSleepTime;
2832                }
2833            } else if (mBytesWritten != 0 && audio_is_linear_pcm(mFormat)) {
2834                memset (mMixBuffer, 0, mFrameCount * mFrameSize);
2835                sleepTime = 0;
2836            }
2837        }
2838
2839        if (mSuspended) {
2840            sleepTime = suspendSleepTimeUs();
2841        }
2842        // sleepTime == 0 means we must write to audio hardware
2843        if (sleepTime == 0) {
2844            if (mixerStatus == MIXER_TRACKS_READY) {
2845                applyVolume(leftVol, rightVol, rampVolume);
2846            }
2847            for (size_t i = 0; i < effectChains.size(); i ++) {
2848                effectChains[i]->process_l();
2849            }
2850            unlockEffectChains(effectChains);
2851
2852            mLastWriteTime = systemTime();
2853            mInWrite = true;
2854            mBytesWritten += mixBufferSize;
2855            int bytesWritten = (int)mOutput->stream->write(mOutput->stream, mMixBuffer, mixBufferSize);
2856            if (bytesWritten < 0) mBytesWritten -= mixBufferSize;
2857            mNumWrites++;
2858            mInWrite = false;
2859            mStandby = false;
2860        } else {
2861            unlockEffectChains(effectChains);
2862            usleep(sleepTime);
2863        }
2864
2865        // finally let go of removed track, without the lock held
2866        // since we can't guarantee the destructors won't acquire that
2867        // same lock.
2868        trackToRemove.clear();
2869        activeTrack.clear();
2870
2871        // Effect chains will be actually deleted here if they were removed from
2872        // mEffectChains list during mixing or effects processing
2873        effectChains.clear();
2874    }
2875
2876    if (!mStandby) {
2877        mOutput->stream->common.standby(&mOutput->stream->common);
2878    }
2879
2880    releaseWakeLock();
2881
2882    ALOGV("DirectOutputThread %p exiting", this);
2883    return false;
2884}
2885
2886// getTrackName_l() must be called with ThreadBase::mLock held
2887int AudioFlinger::DirectOutputThread::getTrackName_l()
2888{
2889    return 0;
2890}
2891
2892// deleteTrackName_l() must be called with ThreadBase::mLock held
2893void AudioFlinger::DirectOutputThread::deleteTrackName_l(int name)
2894{
2895}
2896
2897// checkForNewParameters_l() must be called with ThreadBase::mLock held
2898bool AudioFlinger::DirectOutputThread::checkForNewParameters_l()
2899{
2900    bool reconfig = false;
2901
2902    while (!mNewParameters.isEmpty()) {
2903        status_t status = NO_ERROR;
2904        String8 keyValuePair = mNewParameters[0];
2905        AudioParameter param = AudioParameter(keyValuePair);
2906        int value;
2907
2908        if (param.getInt(String8(AudioParameter::keyFrameCount), value) == NO_ERROR) {
2909            // do not accept frame count changes if tracks are open as the track buffer
2910            // size depends on frame count and correct behavior would not be garantied
2911            // if frame count is changed after track creation
2912            if (!mTracks.isEmpty()) {
2913                status = INVALID_OPERATION;
2914            } else {
2915                reconfig = true;
2916            }
2917        }
2918        if (status == NO_ERROR) {
2919            status = mOutput->stream->common.set_parameters(&mOutput->stream->common,
2920                                                    keyValuePair.string());
2921            if (!mStandby && status == INVALID_OPERATION) {
2922               mOutput->stream->common.standby(&mOutput->stream->common);
2923               mStandby = true;
2924               mBytesWritten = 0;
2925               status = mOutput->stream->common.set_parameters(&mOutput->stream->common,
2926                                                       keyValuePair.string());
2927            }
2928            if (status == NO_ERROR && reconfig) {
2929                readOutputParameters();
2930                sendConfigEvent_l(AudioSystem::OUTPUT_CONFIG_CHANGED);
2931            }
2932        }
2933
2934        mNewParameters.removeAt(0);
2935
2936        mParamStatus = status;
2937        mParamCond.signal();
2938        // wait for condition with time out in case the thread calling ThreadBase::setParameters()
2939        // already timed out waiting for the status and will never signal the condition.
2940        mWaitWorkCV.waitRelative(mLock, kSetParametersTimeoutNs);
2941    }
2942    return reconfig;
2943}
2944
2945uint32_t AudioFlinger::DirectOutputThread::activeSleepTimeUs()
2946{
2947    uint32_t time;
2948    if (audio_is_linear_pcm(mFormat)) {
2949        time = PlaybackThread::activeSleepTimeUs();
2950    } else {
2951        time = 10000;
2952    }
2953    return time;
2954}
2955
2956uint32_t AudioFlinger::DirectOutputThread::idleSleepTimeUs()
2957{
2958    uint32_t time;
2959    if (audio_is_linear_pcm(mFormat)) {
2960        time = (uint32_t)(((mFrameCount * 1000) / mSampleRate) * 1000) / 2;
2961    } else {
2962        time = 10000;
2963    }
2964    return time;
2965}
2966
2967uint32_t AudioFlinger::DirectOutputThread::suspendSleepTimeUs()
2968{
2969    uint32_t time;
2970    if (audio_is_linear_pcm(mFormat)) {
2971        time = (uint32_t)(((mFrameCount * 1000) / mSampleRate) * 1000);
2972    } else {
2973        time = 10000;
2974    }
2975    return time;
2976}
2977
2978
2979// ----------------------------------------------------------------------------
2980
2981AudioFlinger::DuplicatingThread::DuplicatingThread(const sp<AudioFlinger>& audioFlinger, AudioFlinger::MixerThread* mainThread, int id)
2982    :   MixerThread(audioFlinger, mainThread->getOutput(), id, mainThread->device()), mWaitTimeMs(UINT_MAX)
2983{
2984    mType = ThreadBase::DUPLICATING;
2985    addOutputTrack(mainThread);
2986}
2987
2988AudioFlinger::DuplicatingThread::~DuplicatingThread()
2989{
2990    for (size_t i = 0; i < mOutputTracks.size(); i++) {
2991        mOutputTracks[i]->destroy();
2992    }
2993    mOutputTracks.clear();
2994}
2995
2996bool AudioFlinger::DuplicatingThread::threadLoop()
2997{
2998    Vector< sp<Track> > tracksToRemove;
2999    uint32_t mixerStatus = MIXER_IDLE;
3000    nsecs_t standbyTime = systemTime();
3001    size_t mixBufferSize = mFrameCount*mFrameSize;
3002    SortedVector< sp<OutputTrack> > outputTracks;
3003    uint32_t writeFrames = 0;
3004    uint32_t activeSleepTime = activeSleepTimeUs();
3005    uint32_t idleSleepTime = idleSleepTimeUs();
3006    uint32_t sleepTime = idleSleepTime;
3007    Vector< sp<EffectChain> > effectChains;
3008
3009    acquireWakeLock();
3010
3011    while (!exitPending())
3012    {
3013        processConfigEvents();
3014
3015        mixerStatus = MIXER_IDLE;
3016        { // scope for the mLock
3017
3018            Mutex::Autolock _l(mLock);
3019
3020            if (checkForNewParameters_l()) {
3021                mixBufferSize = mFrameCount*mFrameSize;
3022                updateWaitTime();
3023                activeSleepTime = activeSleepTimeUs();
3024                idleSleepTime = idleSleepTimeUs();
3025            }
3026
3027            const SortedVector< wp<Track> >& activeTracks = mActiveTracks;
3028
3029            for (size_t i = 0; i < mOutputTracks.size(); i++) {
3030                outputTracks.add(mOutputTracks[i]);
3031            }
3032
3033            // put audio hardware into standby after short delay
3034            if (CC_UNLIKELY((!activeTracks.size() && systemTime() > standbyTime) ||
3035                         mSuspended)) {
3036                if (!mStandby) {
3037                    for (size_t i = 0; i < outputTracks.size(); i++) {
3038                        outputTracks[i]->stop();
3039                    }
3040                    mStandby = true;
3041                    mBytesWritten = 0;
3042                }
3043
3044                if (!activeTracks.size() && mConfigEvents.isEmpty()) {
3045                    // we're about to wait, flush the binder command buffer
3046                    IPCThreadState::self()->flushCommands();
3047                    outputTracks.clear();
3048
3049                    if (exitPending()) break;
3050
3051                    releaseWakeLock_l();
3052                    ALOGV("DuplicatingThread %p TID %d going to sleep\n", this, gettid());
3053                    mWaitWorkCV.wait(mLock);
3054                    ALOGV("DuplicatingThread %p TID %d waking up\n", this, gettid());
3055                    acquireWakeLock_l();
3056
3057                    if (!mMasterMute) {
3058                        char value[PROPERTY_VALUE_MAX];
3059                        property_get("ro.audio.silent", value, "0");
3060                        if (atoi(value)) {
3061                            ALOGD("Silence is golden");
3062                            setMasterMute(true);
3063                        }
3064                    }
3065
3066                    standbyTime = systemTime() + kStandbyTimeInNsecs;
3067                    sleepTime = idleSleepTime;
3068                    continue;
3069                }
3070            }
3071
3072            mixerStatus = prepareTracks_l(activeTracks, &tracksToRemove);
3073
3074            // prevent any changes in effect chain list and in each effect chain
3075            // during mixing and effect process as the audio buffers could be deleted
3076            // or modified if an effect is created or deleted
3077            lockEffectChains_l(effectChains);
3078        }
3079
3080        if (CC_LIKELY(mixerStatus == MIXER_TRACKS_READY)) {
3081            // mix buffers...
3082            if (outputsReady(outputTracks)) {
3083                mAudioMixer->process();
3084            } else {
3085                memset(mMixBuffer, 0, mixBufferSize);
3086            }
3087            sleepTime = 0;
3088            writeFrames = mFrameCount;
3089        } else {
3090            if (sleepTime == 0) {
3091                if (mixerStatus == MIXER_TRACKS_ENABLED) {
3092                    sleepTime = activeSleepTime;
3093                } else {
3094                    sleepTime = idleSleepTime;
3095                }
3096            } else if (mBytesWritten != 0) {
3097                // flush remaining overflow buffers in output tracks
3098                for (size_t i = 0; i < outputTracks.size(); i++) {
3099                    if (outputTracks[i]->isActive()) {
3100                        sleepTime = 0;
3101                        writeFrames = 0;
3102                        memset(mMixBuffer, 0, mixBufferSize);
3103                        break;
3104                    }
3105                }
3106            }
3107        }
3108
3109        if (mSuspended) {
3110            sleepTime = suspendSleepTimeUs();
3111        }
3112        // sleepTime == 0 means we must write to audio hardware
3113        if (sleepTime == 0) {
3114            for (size_t i = 0; i < effectChains.size(); i ++) {
3115                effectChains[i]->process_l();
3116            }
3117            // enable changes in effect chain
3118            unlockEffectChains(effectChains);
3119
3120            standbyTime = systemTime() + kStandbyTimeInNsecs;
3121            for (size_t i = 0; i < outputTracks.size(); i++) {
3122                outputTracks[i]->write(mMixBuffer, writeFrames);
3123            }
3124            mStandby = false;
3125            mBytesWritten += mixBufferSize;
3126        } else {
3127            // enable changes in effect chain
3128            unlockEffectChains(effectChains);
3129            usleep(sleepTime);
3130        }
3131
3132        // finally let go of all our tracks, without the lock held
3133        // since we can't guarantee the destructors won't acquire that
3134        // same lock.
3135        tracksToRemove.clear();
3136        outputTracks.clear();
3137
3138        // Effect chains will be actually deleted here if they were removed from
3139        // mEffectChains list during mixing or effects processing
3140        effectChains.clear();
3141    }
3142
3143    releaseWakeLock();
3144
3145    return false;
3146}
3147
3148void AudioFlinger::DuplicatingThread::addOutputTrack(MixerThread *thread)
3149{
3150    int frameCount = (3 * mFrameCount * mSampleRate) / thread->sampleRate();
3151    OutputTrack *outputTrack = new OutputTrack((ThreadBase *)thread,
3152                                            this,
3153                                            mSampleRate,
3154                                            mFormat,
3155                                            mChannelMask,
3156                                            frameCount);
3157    if (outputTrack->cblk() != NULL) {
3158        thread->setStreamVolume(AUDIO_STREAM_CNT, 1.0f);
3159        mOutputTracks.add(outputTrack);
3160        ALOGV("addOutputTrack() track %p, on thread %p", outputTrack, thread);
3161        updateWaitTime();
3162    }
3163}
3164
3165void AudioFlinger::DuplicatingThread::removeOutputTrack(MixerThread *thread)
3166{
3167    Mutex::Autolock _l(mLock);
3168    for (size_t i = 0; i < mOutputTracks.size(); i++) {
3169        if (mOutputTracks[i]->thread() == (ThreadBase *)thread) {
3170            mOutputTracks[i]->destroy();
3171            mOutputTracks.removeAt(i);
3172            updateWaitTime();
3173            return;
3174        }
3175    }
3176    ALOGV("removeOutputTrack(): unkonwn thread: %p", thread);
3177}
3178
3179void AudioFlinger::DuplicatingThread::updateWaitTime()
3180{
3181    mWaitTimeMs = UINT_MAX;
3182    for (size_t i = 0; i < mOutputTracks.size(); i++) {
3183        sp<ThreadBase> strong = mOutputTracks[i]->thread().promote();
3184        if (strong != NULL) {
3185            uint32_t waitTimeMs = (strong->frameCount() * 2 * 1000) / strong->sampleRate();
3186            if (waitTimeMs < mWaitTimeMs) {
3187                mWaitTimeMs = waitTimeMs;
3188            }
3189        }
3190    }
3191}
3192
3193
3194bool AudioFlinger::DuplicatingThread::outputsReady(SortedVector< sp<OutputTrack> > &outputTracks)
3195{
3196    for (size_t i = 0; i < outputTracks.size(); i++) {
3197        sp <ThreadBase> thread = outputTracks[i]->thread().promote();
3198        if (thread == 0) {
3199            ALOGW("DuplicatingThread::outputsReady() could not promote thread on output track %p", outputTracks[i].get());
3200            return false;
3201        }
3202        PlaybackThread *playbackThread = (PlaybackThread *)thread.get();
3203        if (playbackThread->standby() && !playbackThread->isSuspended()) {
3204            ALOGV("DuplicatingThread output track %p on thread %p Not Ready", outputTracks[i].get(), thread.get());
3205            return false;
3206        }
3207    }
3208    return true;
3209}
3210
3211uint32_t AudioFlinger::DuplicatingThread::activeSleepTimeUs()
3212{
3213    return (mWaitTimeMs * 1000) / 2;
3214}
3215
3216// ----------------------------------------------------------------------------
3217
3218// TrackBase constructor must be called with AudioFlinger::mLock held
3219AudioFlinger::ThreadBase::TrackBase::TrackBase(
3220            const wp<ThreadBase>& thread,
3221            const sp<Client>& client,
3222            uint32_t sampleRate,
3223            uint32_t format,
3224            uint32_t channelMask,
3225            int frameCount,
3226            uint32_t flags,
3227            const sp<IMemory>& sharedBuffer,
3228            int sessionId)
3229    :   RefBase(),
3230        mThread(thread),
3231        mClient(client),
3232        mCblk(0),
3233        mFrameCount(0),
3234        mState(IDLE),
3235        mClientTid(-1),
3236        mFormat(format),
3237        mFlags(flags & ~SYSTEM_FLAGS_MASK),
3238        mSessionId(sessionId)
3239{
3240    ALOGV_IF(sharedBuffer != 0, "sharedBuffer: %p, size: %d", sharedBuffer->pointer(), sharedBuffer->size());
3241
3242    // ALOGD("Creating track with %d buffers @ %d bytes", bufferCount, bufferSize);
3243   size_t size = sizeof(audio_track_cblk_t);
3244   uint8_t channelCount = popcount(channelMask);
3245   size_t bufferSize = frameCount*channelCount*sizeof(int16_t);
3246   if (sharedBuffer == 0) {
3247       size += bufferSize;
3248   }
3249
3250   if (client != NULL) {
3251        mCblkMemory = client->heap()->allocate(size);
3252        if (mCblkMemory != 0) {
3253            mCblk = static_cast<audio_track_cblk_t *>(mCblkMemory->pointer());
3254            if (mCblk) { // construct the shared structure in-place.
3255                new(mCblk) audio_track_cblk_t();
3256                // clear all buffers
3257                mCblk->frameCount = frameCount;
3258                mCblk->sampleRate = sampleRate;
3259                mChannelCount = channelCount;
3260                mChannelMask = channelMask;
3261                if (sharedBuffer == 0) {
3262                    mBuffer = (char*)mCblk + sizeof(audio_track_cblk_t);
3263                    memset(mBuffer, 0, frameCount*channelCount*sizeof(int16_t));
3264                    // Force underrun condition to avoid false underrun callback until first data is
3265                    // written to buffer (other flags are cleared)
3266                    mCblk->flags = CBLK_UNDERRUN_ON;
3267                } else {
3268                    mBuffer = sharedBuffer->pointer();
3269                }
3270                mBufferEnd = (uint8_t *)mBuffer + bufferSize;
3271            }
3272        } else {
3273            ALOGE("not enough memory for AudioTrack size=%u", size);
3274            client->heap()->dump("AudioTrack");
3275            return;
3276        }
3277   } else {
3278       mCblk = (audio_track_cblk_t *)(new uint8_t[size]);
3279           // construct the shared structure in-place.
3280           new(mCblk) audio_track_cblk_t();
3281           // clear all buffers
3282           mCblk->frameCount = frameCount;
3283           mCblk->sampleRate = sampleRate;
3284           mChannelCount = channelCount;
3285           mChannelMask = channelMask;
3286           mBuffer = (char*)mCblk + sizeof(audio_track_cblk_t);
3287           memset(mBuffer, 0, frameCount*channelCount*sizeof(int16_t));
3288           // Force underrun condition to avoid false underrun callback until first data is
3289           // written to buffer (other flags are cleared)
3290           mCblk->flags = CBLK_UNDERRUN_ON;
3291           mBufferEnd = (uint8_t *)mBuffer + bufferSize;
3292   }
3293}
3294
3295AudioFlinger::ThreadBase::TrackBase::~TrackBase()
3296{
3297    if (mCblk) {
3298        mCblk->~audio_track_cblk_t();   // destroy our shared-structure.
3299        if (mClient == NULL) {
3300            delete mCblk;
3301        }
3302    }
3303    mCblkMemory.clear();            // and free the shared memory
3304    if (mClient != NULL) {
3305        Mutex::Autolock _l(mClient->audioFlinger()->mLock);
3306        mClient.clear();
3307    }
3308}
3309
3310void AudioFlinger::ThreadBase::TrackBase::releaseBuffer(AudioBufferProvider::Buffer* buffer)
3311{
3312    buffer->raw = NULL;
3313    mFrameCount = buffer->frameCount;
3314    step();
3315    buffer->frameCount = 0;
3316}
3317
3318bool AudioFlinger::ThreadBase::TrackBase::step() {
3319    bool result;
3320    audio_track_cblk_t* cblk = this->cblk();
3321
3322    result = cblk->stepServer(mFrameCount);
3323    if (!result) {
3324        ALOGV("stepServer failed acquiring cblk mutex");
3325        mFlags |= STEPSERVER_FAILED;
3326    }
3327    return result;
3328}
3329
3330void AudioFlinger::ThreadBase::TrackBase::reset() {
3331    audio_track_cblk_t* cblk = this->cblk();
3332
3333    cblk->user = 0;
3334    cblk->server = 0;
3335    cblk->userBase = 0;
3336    cblk->serverBase = 0;
3337    mFlags &= (uint32_t)(~SYSTEM_FLAGS_MASK);
3338    ALOGV("TrackBase::reset");
3339}
3340
3341sp<IMemory> AudioFlinger::ThreadBase::TrackBase::getCblk() const
3342{
3343    return mCblkMemory;
3344}
3345
3346int AudioFlinger::ThreadBase::TrackBase::sampleRate() const {
3347    return (int)mCblk->sampleRate;
3348}
3349
3350int AudioFlinger::ThreadBase::TrackBase::channelCount() const {
3351    return (const int)mChannelCount;
3352}
3353
3354uint32_t AudioFlinger::ThreadBase::TrackBase::channelMask() const {
3355    return mChannelMask;
3356}
3357
3358void* AudioFlinger::ThreadBase::TrackBase::getBuffer(uint32_t offset, uint32_t frames) const {
3359    audio_track_cblk_t* cblk = this->cblk();
3360    size_t frameSize = cblk->frameSize;
3361    int8_t *bufferStart = (int8_t *)mBuffer + (offset-cblk->serverBase)*frameSize;
3362    int8_t *bufferEnd = bufferStart + frames * frameSize;
3363
3364    // Check validity of returned pointer in case the track control block would have been corrupted.
3365    if (bufferStart < mBuffer || bufferStart > bufferEnd || bufferEnd > mBufferEnd ||
3366        ((unsigned long)bufferStart & (unsigned long)(frameSize - 1))) {
3367        ALOGE("TrackBase::getBuffer buffer out of range:\n    start: %p, end %p , mBuffer %p mBufferEnd %p\n    \
3368                server %d, serverBase %d, user %d, userBase %d",
3369                bufferStart, bufferEnd, mBuffer, mBufferEnd,
3370                cblk->server, cblk->serverBase, cblk->user, cblk->userBase);
3371        return 0;
3372    }
3373
3374    return bufferStart;
3375}
3376
3377// ----------------------------------------------------------------------------
3378
3379// Track constructor must be called with AudioFlinger::mLock and ThreadBase::mLock held
3380AudioFlinger::PlaybackThread::Track::Track(
3381            const wp<ThreadBase>& thread,
3382            const sp<Client>& client,
3383            audio_stream_type_t streamType,
3384            uint32_t sampleRate,
3385            uint32_t format,
3386            uint32_t channelMask,
3387            int frameCount,
3388            const sp<IMemory>& sharedBuffer,
3389            int sessionId)
3390    :   TrackBase(thread, client, sampleRate, format, channelMask, frameCount, 0, sharedBuffer, sessionId),
3391    mMute(false), mSharedBuffer(sharedBuffer), mName(-1), mMainBuffer(NULL), mAuxBuffer(NULL),
3392    mAuxEffectId(0), mHasVolumeController(false)
3393{
3394    if (mCblk != NULL) {
3395        sp<ThreadBase> baseThread = thread.promote();
3396        if (baseThread != 0) {
3397            PlaybackThread *playbackThread = (PlaybackThread *)baseThread.get();
3398            mName = playbackThread->getTrackName_l();
3399            mMainBuffer = playbackThread->mixBuffer();
3400        }
3401        ALOGV("Track constructor name %d, calling thread %d", mName, IPCThreadState::self()->getCallingPid());
3402        if (mName < 0) {
3403            ALOGE("no more track names available");
3404        }
3405        mStreamType = streamType;
3406        // NOTE: audio_track_cblk_t::frameSize for 8 bit PCM data is based on a sample size of
3407        // 16 bit because data is converted to 16 bit before being stored in buffer by AudioTrack
3408        mCblk->frameSize = audio_is_linear_pcm(format) ? mChannelCount * sizeof(int16_t) : sizeof(uint8_t);
3409    }
3410}
3411
3412AudioFlinger::PlaybackThread::Track::~Track()
3413{
3414    ALOGV("PlaybackThread::Track destructor");
3415    sp<ThreadBase> thread = mThread.promote();
3416    if (thread != 0) {
3417        Mutex::Autolock _l(thread->mLock);
3418        mState = TERMINATED;
3419    }
3420}
3421
3422void AudioFlinger::PlaybackThread::Track::destroy()
3423{
3424    // NOTE: destroyTrack_l() can remove a strong reference to this Track
3425    // by removing it from mTracks vector, so there is a risk that this Tracks's
3426    // desctructor is called. As the destructor needs to lock mLock,
3427    // we must acquire a strong reference on this Track before locking mLock
3428    // here so that the destructor is called only when exiting this function.
3429    // On the other hand, as long as Track::destroy() is only called by
3430    // TrackHandle destructor, the TrackHandle still holds a strong ref on
3431    // this Track with its member mTrack.
3432    sp<Track> keep(this);
3433    { // scope for mLock
3434        sp<ThreadBase> thread = mThread.promote();
3435        if (thread != 0) {
3436            if (!isOutputTrack()) {
3437                if (mState == ACTIVE || mState == RESUMING) {
3438                    AudioSystem::stopOutput(thread->id(),
3439                                            (audio_stream_type_t)mStreamType,
3440                                            mSessionId);
3441
3442                    // to track the speaker usage
3443                    addBatteryData(IMediaPlayerService::kBatteryDataAudioFlingerStop);
3444                }
3445                AudioSystem::releaseOutput(thread->id());
3446            }
3447            Mutex::Autolock _l(thread->mLock);
3448            PlaybackThread *playbackThread = (PlaybackThread *)thread.get();
3449            playbackThread->destroyTrack_l(this);
3450        }
3451    }
3452}
3453
3454void AudioFlinger::PlaybackThread::Track::dump(char* buffer, size_t size)
3455{
3456    uint32_t vlr = mCblk->volumeLR;
3457    snprintf(buffer, size, "   %05d %05d %03u %03u 0x%08x %05u   %04u %1d %1d %1d %05u %05u %05u  0x%08x 0x%08x 0x%08x 0x%08x\n",
3458            mName - AudioMixer::TRACK0,
3459            (mClient == NULL) ? getpid() : mClient->pid(),
3460            mStreamType,
3461            mFormat,
3462            mChannelMask,
3463            mSessionId,
3464            mFrameCount,
3465            mState,
3466            mMute,
3467            mFillingUpStatus,
3468            mCblk->sampleRate,
3469            vlr & 0xFFFF,
3470            vlr >> 16,
3471            mCblk->server,
3472            mCblk->user,
3473            (int)mMainBuffer,
3474            (int)mAuxBuffer);
3475}
3476
3477status_t AudioFlinger::PlaybackThread::Track::getNextBuffer(AudioBufferProvider::Buffer* buffer)
3478{
3479     audio_track_cblk_t* cblk = this->cblk();
3480     uint32_t framesReady;
3481     uint32_t framesReq = buffer->frameCount;
3482
3483     // Check if last stepServer failed, try to step now
3484     if (mFlags & TrackBase::STEPSERVER_FAILED) {
3485         if (!step())  goto getNextBuffer_exit;
3486         ALOGV("stepServer recovered");
3487         mFlags &= ~TrackBase::STEPSERVER_FAILED;
3488     }
3489
3490     framesReady = cblk->framesReady();
3491
3492     if (CC_LIKELY(framesReady)) {
3493        uint32_t s = cblk->server;
3494        uint32_t bufferEnd = cblk->serverBase + cblk->frameCount;
3495
3496        bufferEnd = (cblk->loopEnd < bufferEnd) ? cblk->loopEnd : bufferEnd;
3497        if (framesReq > framesReady) {
3498            framesReq = framesReady;
3499        }
3500        if (s + framesReq > bufferEnd) {
3501            framesReq = bufferEnd - s;
3502        }
3503
3504         buffer->raw = getBuffer(s, framesReq);
3505         if (buffer->raw == NULL) goto getNextBuffer_exit;
3506
3507         buffer->frameCount = framesReq;
3508        return NO_ERROR;
3509     }
3510
3511getNextBuffer_exit:
3512     buffer->raw = NULL;
3513     buffer->frameCount = 0;
3514     ALOGV("getNextBuffer() no more data for track %d on thread %p", mName, mThread.unsafe_get());
3515     return NOT_ENOUGH_DATA;
3516}
3517
3518bool AudioFlinger::PlaybackThread::Track::isReady() const {
3519    if (mFillingUpStatus != FS_FILLING || isStopped() || isPausing()) return true;
3520
3521    if (mCblk->framesReady() >= mCblk->frameCount ||
3522            (mCblk->flags & CBLK_FORCEREADY_MSK)) {
3523        mFillingUpStatus = FS_FILLED;
3524        android_atomic_and(~CBLK_FORCEREADY_MSK, &mCblk->flags);
3525        return true;
3526    }
3527    return false;
3528}
3529
3530status_t AudioFlinger::PlaybackThread::Track::start()
3531{
3532    status_t status = NO_ERROR;
3533    ALOGV("start(%d), calling thread %d session %d",
3534            mName, IPCThreadState::self()->getCallingPid(), mSessionId);
3535    sp<ThreadBase> thread = mThread.promote();
3536    if (thread != 0) {
3537        Mutex::Autolock _l(thread->mLock);
3538        int state = mState;
3539        // here the track could be either new, or restarted
3540        // in both cases "unstop" the track
3541        if (mState == PAUSED) {
3542            mState = TrackBase::RESUMING;
3543            ALOGV("PAUSED => RESUMING (%d) on thread %p", mName, this);
3544        } else {
3545            mState = TrackBase::ACTIVE;
3546            ALOGV("? => ACTIVE (%d) on thread %p", mName, this);
3547        }
3548
3549        if (!isOutputTrack() && state != ACTIVE && state != RESUMING) {
3550            thread->mLock.unlock();
3551            status = AudioSystem::startOutput(thread->id(),
3552                                              (audio_stream_type_t)mStreamType,
3553                                              mSessionId);
3554            thread->mLock.lock();
3555
3556            // to track the speaker usage
3557            if (status == NO_ERROR) {
3558                addBatteryData(IMediaPlayerService::kBatteryDataAudioFlingerStart);
3559            }
3560        }
3561        if (status == NO_ERROR) {
3562            PlaybackThread *playbackThread = (PlaybackThread *)thread.get();
3563            playbackThread->addTrack_l(this);
3564        } else {
3565            mState = state;
3566        }
3567    } else {
3568        status = BAD_VALUE;
3569    }
3570    return status;
3571}
3572
3573void AudioFlinger::PlaybackThread::Track::stop()
3574{
3575    ALOGV("stop(%d), calling thread %d", mName, IPCThreadState::self()->getCallingPid());
3576    sp<ThreadBase> thread = mThread.promote();
3577    if (thread != 0) {
3578        Mutex::Autolock _l(thread->mLock);
3579        int state = mState;
3580        if (mState > STOPPED) {
3581            mState = STOPPED;
3582            // If the track is not active (PAUSED and buffers full), flush buffers
3583            PlaybackThread *playbackThread = (PlaybackThread *)thread.get();
3584            if (playbackThread->mActiveTracks.indexOf(this) < 0) {
3585                reset();
3586            }
3587            ALOGV("(> STOPPED) => STOPPED (%d) on thread %p", mName, playbackThread);
3588        }
3589        if (!isOutputTrack() && (state == ACTIVE || state == RESUMING)) {
3590            thread->mLock.unlock();
3591            AudioSystem::stopOutput(thread->id(),
3592                                    (audio_stream_type_t)mStreamType,
3593                                    mSessionId);
3594            thread->mLock.lock();
3595
3596            // to track the speaker usage
3597            addBatteryData(IMediaPlayerService::kBatteryDataAudioFlingerStop);
3598        }
3599    }
3600}
3601
3602void AudioFlinger::PlaybackThread::Track::pause()
3603{
3604    ALOGV("pause(%d), calling thread %d", mName, IPCThreadState::self()->getCallingPid());
3605    sp<ThreadBase> thread = mThread.promote();
3606    if (thread != 0) {
3607        Mutex::Autolock _l(thread->mLock);
3608        if (mState == ACTIVE || mState == RESUMING) {
3609            mState = PAUSING;
3610            ALOGV("ACTIVE/RESUMING => PAUSING (%d) on thread %p", mName, thread.get());
3611            if (!isOutputTrack()) {
3612                thread->mLock.unlock();
3613                AudioSystem::stopOutput(thread->id(),
3614                                        (audio_stream_type_t)mStreamType,
3615                                        mSessionId);
3616                thread->mLock.lock();
3617
3618                // to track the speaker usage
3619                addBatteryData(IMediaPlayerService::kBatteryDataAudioFlingerStop);
3620            }
3621        }
3622    }
3623}
3624
3625void AudioFlinger::PlaybackThread::Track::flush()
3626{
3627    ALOGV("flush(%d)", mName);
3628    sp<ThreadBase> thread = mThread.promote();
3629    if (thread != 0) {
3630        Mutex::Autolock _l(thread->mLock);
3631        if (mState != STOPPED && mState != PAUSED && mState != PAUSING) {
3632            return;
3633        }
3634        // No point remaining in PAUSED state after a flush => go to
3635        // STOPPED state
3636        mState = STOPPED;
3637
3638        // do not reset the track if it is still in the process of being stopped or paused.
3639        // this will be done by prepareTracks_l() when the track is stopped.
3640        PlaybackThread *playbackThread = (PlaybackThread *)thread.get();
3641        if (playbackThread->mActiveTracks.indexOf(this) < 0) {
3642            reset();
3643        }
3644    }
3645}
3646
3647void AudioFlinger::PlaybackThread::Track::reset()
3648{
3649    // Do not reset twice to avoid discarding data written just after a flush and before
3650    // the audioflinger thread detects the track is stopped.
3651    if (!mResetDone) {
3652        TrackBase::reset();
3653        // Force underrun condition to avoid false underrun callback until first data is
3654        // written to buffer
3655        android_atomic_and(~CBLK_FORCEREADY_MSK, &mCblk->flags);
3656        android_atomic_or(CBLK_UNDERRUN_ON, &mCblk->flags);
3657        mFillingUpStatus = FS_FILLING;
3658        mResetDone = true;
3659    }
3660}
3661
3662void AudioFlinger::PlaybackThread::Track::mute(bool muted)
3663{
3664    mMute = muted;
3665}
3666
3667status_t AudioFlinger::PlaybackThread::Track::attachAuxEffect(int EffectId)
3668{
3669    status_t status = DEAD_OBJECT;
3670    sp<ThreadBase> thread = mThread.promote();
3671    if (thread != 0) {
3672       PlaybackThread *playbackThread = (PlaybackThread *)thread.get();
3673       status = playbackThread->attachAuxEffect(this, EffectId);
3674    }
3675    return status;
3676}
3677
3678void AudioFlinger::PlaybackThread::Track::setAuxBuffer(int EffectId, int32_t *buffer)
3679{
3680    mAuxEffectId = EffectId;
3681    mAuxBuffer = buffer;
3682}
3683
3684// ----------------------------------------------------------------------------
3685
3686// RecordTrack constructor must be called with AudioFlinger::mLock held
3687AudioFlinger::RecordThread::RecordTrack::RecordTrack(
3688            const wp<ThreadBase>& thread,
3689            const sp<Client>& client,
3690            uint32_t sampleRate,
3691            uint32_t format,
3692            uint32_t channelMask,
3693            int frameCount,
3694            uint32_t flags,
3695            int sessionId)
3696    :   TrackBase(thread, client, sampleRate, format,
3697                  channelMask, frameCount, flags, 0, sessionId),
3698        mOverflow(false)
3699{
3700    if (mCblk != NULL) {
3701       ALOGV("RecordTrack constructor, size %d", (int)mBufferEnd - (int)mBuffer);
3702       if (format == AUDIO_FORMAT_PCM_16_BIT) {
3703           mCblk->frameSize = mChannelCount * sizeof(int16_t);
3704       } else if (format == AUDIO_FORMAT_PCM_8_BIT) {
3705           mCblk->frameSize = mChannelCount * sizeof(int8_t);
3706       } else {
3707           mCblk->frameSize = sizeof(int8_t);
3708       }
3709    }
3710}
3711
3712AudioFlinger::RecordThread::RecordTrack::~RecordTrack()
3713{
3714    sp<ThreadBase> thread = mThread.promote();
3715    if (thread != 0) {
3716        AudioSystem::releaseInput(thread->id());
3717    }
3718}
3719
3720status_t AudioFlinger::RecordThread::RecordTrack::getNextBuffer(AudioBufferProvider::Buffer* buffer)
3721{
3722    audio_track_cblk_t* cblk = this->cblk();
3723    uint32_t framesAvail;
3724    uint32_t framesReq = buffer->frameCount;
3725
3726     // Check if last stepServer failed, try to step now
3727    if (mFlags & TrackBase::STEPSERVER_FAILED) {
3728        if (!step()) goto getNextBuffer_exit;
3729        ALOGV("stepServer recovered");
3730        mFlags &= ~TrackBase::STEPSERVER_FAILED;
3731    }
3732
3733    framesAvail = cblk->framesAvailable_l();
3734
3735    if (CC_LIKELY(framesAvail)) {
3736        uint32_t s = cblk->server;
3737        uint32_t bufferEnd = cblk->serverBase + cblk->frameCount;
3738
3739        if (framesReq > framesAvail) {
3740            framesReq = framesAvail;
3741        }
3742        if (s + framesReq > bufferEnd) {
3743            framesReq = bufferEnd - s;
3744        }
3745
3746        buffer->raw = getBuffer(s, framesReq);
3747        if (buffer->raw == NULL) goto getNextBuffer_exit;
3748
3749        buffer->frameCount = framesReq;
3750        return NO_ERROR;
3751    }
3752
3753getNextBuffer_exit:
3754    buffer->raw = NULL;
3755    buffer->frameCount = 0;
3756    return NOT_ENOUGH_DATA;
3757}
3758
3759status_t AudioFlinger::RecordThread::RecordTrack::start()
3760{
3761    sp<ThreadBase> thread = mThread.promote();
3762    if (thread != 0) {
3763        RecordThread *recordThread = (RecordThread *)thread.get();
3764        return recordThread->start(this);
3765    } else {
3766        return BAD_VALUE;
3767    }
3768}
3769
3770void AudioFlinger::RecordThread::RecordTrack::stop()
3771{
3772    sp<ThreadBase> thread = mThread.promote();
3773    if (thread != 0) {
3774        RecordThread *recordThread = (RecordThread *)thread.get();
3775        recordThread->stop(this);
3776        TrackBase::reset();
3777        // Force overerrun condition to avoid false overrun callback until first data is
3778        // read from buffer
3779        android_atomic_or(CBLK_UNDERRUN_ON, &mCblk->flags);
3780    }
3781}
3782
3783void AudioFlinger::RecordThread::RecordTrack::dump(char* buffer, size_t size)
3784{
3785    snprintf(buffer, size, "   %05d %03u 0x%08x %05d   %04u %01d %05u  %08x %08x\n",
3786            (mClient == NULL) ? getpid() : mClient->pid(),
3787            mFormat,
3788            mChannelMask,
3789            mSessionId,
3790            mFrameCount,
3791            mState,
3792            mCblk->sampleRate,
3793            mCblk->server,
3794            mCblk->user);
3795}
3796
3797
3798// ----------------------------------------------------------------------------
3799
3800AudioFlinger::PlaybackThread::OutputTrack::OutputTrack(
3801            const wp<ThreadBase>& thread,
3802            DuplicatingThread *sourceThread,
3803            uint32_t sampleRate,
3804            uint32_t format,
3805            uint32_t channelMask,
3806            int frameCount)
3807    :   Track(thread, NULL, AUDIO_STREAM_CNT, sampleRate, format, channelMask, frameCount, NULL, 0),
3808    mActive(false), mSourceThread(sourceThread)
3809{
3810
3811    PlaybackThread *playbackThread = (PlaybackThread *)thread.unsafe_get();
3812    if (mCblk != NULL) {
3813        mCblk->flags |= CBLK_DIRECTION_OUT;
3814        mCblk->buffers = (char*)mCblk + sizeof(audio_track_cblk_t);
3815        mCblk->volumeLR = (MAX_GAIN_INT << 16) | MAX_GAIN_INT;
3816        mOutBuffer.frameCount = 0;
3817        playbackThread->mTracks.add(this);
3818        ALOGV("OutputTrack constructor mCblk %p, mBuffer %p, mCblk->buffers %p, " \
3819                "mCblk->frameCount %d, mCblk->sampleRate %d, mChannelMask 0x%08x mBufferEnd %p",
3820                mCblk, mBuffer, mCblk->buffers,
3821                mCblk->frameCount, mCblk->sampleRate, mChannelMask, mBufferEnd);
3822    } else {
3823        ALOGW("Error creating output track on thread %p", playbackThread);
3824    }
3825}
3826
3827AudioFlinger::PlaybackThread::OutputTrack::~OutputTrack()
3828{
3829    clearBufferQueue();
3830}
3831
3832status_t AudioFlinger::PlaybackThread::OutputTrack::start()
3833{
3834    status_t status = Track::start();
3835    if (status != NO_ERROR) {
3836        return status;
3837    }
3838
3839    mActive = true;
3840    mRetryCount = 127;
3841    return status;
3842}
3843
3844void AudioFlinger::PlaybackThread::OutputTrack::stop()
3845{
3846    Track::stop();
3847    clearBufferQueue();
3848    mOutBuffer.frameCount = 0;
3849    mActive = false;
3850}
3851
3852bool AudioFlinger::PlaybackThread::OutputTrack::write(int16_t* data, uint32_t frames)
3853{
3854    Buffer *pInBuffer;
3855    Buffer inBuffer;
3856    uint32_t channelCount = mChannelCount;
3857    bool outputBufferFull = false;
3858    inBuffer.frameCount = frames;
3859    inBuffer.i16 = data;
3860
3861    uint32_t waitTimeLeftMs = mSourceThread->waitTimeMs();
3862
3863    if (!mActive && frames != 0) {
3864        start();
3865        sp<ThreadBase> thread = mThread.promote();
3866        if (thread != 0) {
3867            MixerThread *mixerThread = (MixerThread *)thread.get();
3868            if (mCblk->frameCount > frames){
3869                if (mBufferQueue.size() < kMaxOverFlowBuffers) {
3870                    uint32_t startFrames = (mCblk->frameCount - frames);
3871                    pInBuffer = new Buffer;
3872                    pInBuffer->mBuffer = new int16_t[startFrames * channelCount];
3873                    pInBuffer->frameCount = startFrames;
3874                    pInBuffer->i16 = pInBuffer->mBuffer;
3875                    memset(pInBuffer->raw, 0, startFrames * channelCount * sizeof(int16_t));
3876                    mBufferQueue.add(pInBuffer);
3877                } else {
3878                    ALOGW ("OutputTrack::write() %p no more buffers in queue", this);
3879                }
3880            }
3881        }
3882    }
3883
3884    while (waitTimeLeftMs) {
3885        // First write pending buffers, then new data
3886        if (mBufferQueue.size()) {
3887            pInBuffer = mBufferQueue.itemAt(0);
3888        } else {
3889            pInBuffer = &inBuffer;
3890        }
3891
3892        if (pInBuffer->frameCount == 0) {
3893            break;
3894        }
3895
3896        if (mOutBuffer.frameCount == 0) {
3897            mOutBuffer.frameCount = pInBuffer->frameCount;
3898            nsecs_t startTime = systemTime();
3899            if (obtainBuffer(&mOutBuffer, waitTimeLeftMs) == (status_t)AudioTrack::NO_MORE_BUFFERS) {
3900                ALOGV ("OutputTrack::write() %p thread %p no more output buffers", this, mThread.unsafe_get());
3901                outputBufferFull = true;
3902                break;
3903            }
3904            uint32_t waitTimeMs = (uint32_t)ns2ms(systemTime() - startTime);
3905            if (waitTimeLeftMs >= waitTimeMs) {
3906                waitTimeLeftMs -= waitTimeMs;
3907            } else {
3908                waitTimeLeftMs = 0;
3909            }
3910        }
3911
3912        uint32_t outFrames = pInBuffer->frameCount > mOutBuffer.frameCount ? mOutBuffer.frameCount : pInBuffer->frameCount;
3913        memcpy(mOutBuffer.raw, pInBuffer->raw, outFrames * channelCount * sizeof(int16_t));
3914        mCblk->stepUser(outFrames);
3915        pInBuffer->frameCount -= outFrames;
3916        pInBuffer->i16 += outFrames * channelCount;
3917        mOutBuffer.frameCount -= outFrames;
3918        mOutBuffer.i16 += outFrames * channelCount;
3919
3920        if (pInBuffer->frameCount == 0) {
3921            if (mBufferQueue.size()) {
3922                mBufferQueue.removeAt(0);
3923                delete [] pInBuffer->mBuffer;
3924                delete pInBuffer;
3925                ALOGV("OutputTrack::write() %p thread %p released overflow buffer %d", this, mThread.unsafe_get(), mBufferQueue.size());
3926            } else {
3927                break;
3928            }
3929        }
3930    }
3931
3932    // If we could not write all frames, allocate a buffer and queue it for next time.
3933    if (inBuffer.frameCount) {
3934        sp<ThreadBase> thread = mThread.promote();
3935        if (thread != 0 && !thread->standby()) {
3936            if (mBufferQueue.size() < kMaxOverFlowBuffers) {
3937                pInBuffer = new Buffer;
3938                pInBuffer->mBuffer = new int16_t[inBuffer.frameCount * channelCount];
3939                pInBuffer->frameCount = inBuffer.frameCount;
3940                pInBuffer->i16 = pInBuffer->mBuffer;
3941                memcpy(pInBuffer->raw, inBuffer.raw, inBuffer.frameCount * channelCount * sizeof(int16_t));
3942                mBufferQueue.add(pInBuffer);
3943                ALOGV("OutputTrack::write() %p thread %p adding overflow buffer %d", this, mThread.unsafe_get(), mBufferQueue.size());
3944            } else {
3945                ALOGW("OutputTrack::write() %p thread %p no more overflow buffers", mThread.unsafe_get(), this);
3946            }
3947        }
3948    }
3949
3950    // Calling write() with a 0 length buffer, means that no more data will be written:
3951    // If no more buffers are pending, fill output track buffer to make sure it is started
3952    // by output mixer.
3953    if (frames == 0 && mBufferQueue.size() == 0) {
3954        if (mCblk->user < mCblk->frameCount) {
3955            frames = mCblk->frameCount - mCblk->user;
3956            pInBuffer = new Buffer;
3957            pInBuffer->mBuffer = new int16_t[frames * channelCount];
3958            pInBuffer->frameCount = frames;
3959            pInBuffer->i16 = pInBuffer->mBuffer;
3960            memset(pInBuffer->raw, 0, frames * channelCount * sizeof(int16_t));
3961            mBufferQueue.add(pInBuffer);
3962        } else if (mActive) {
3963            stop();
3964        }
3965    }
3966
3967    return outputBufferFull;
3968}
3969
3970status_t AudioFlinger::PlaybackThread::OutputTrack::obtainBuffer(AudioBufferProvider::Buffer* buffer, uint32_t waitTimeMs)
3971{
3972    int active;
3973    status_t result;
3974    audio_track_cblk_t* cblk = mCblk;
3975    uint32_t framesReq = buffer->frameCount;
3976
3977//    ALOGV("OutputTrack::obtainBuffer user %d, server %d", cblk->user, cblk->server);
3978    buffer->frameCount  = 0;
3979
3980    uint32_t framesAvail = cblk->framesAvailable();
3981
3982
3983    if (framesAvail == 0) {
3984        Mutex::Autolock _l(cblk->lock);
3985        goto start_loop_here;
3986        while (framesAvail == 0) {
3987            active = mActive;
3988            if (CC_UNLIKELY(!active)) {
3989                ALOGV("Not active and NO_MORE_BUFFERS");
3990                return AudioTrack::NO_MORE_BUFFERS;
3991            }
3992            result = cblk->cv.waitRelative(cblk->lock, milliseconds(waitTimeMs));
3993            if (result != NO_ERROR) {
3994                return AudioTrack::NO_MORE_BUFFERS;
3995            }
3996            // read the server count again
3997        start_loop_here:
3998            framesAvail = cblk->framesAvailable_l();
3999        }
4000    }
4001
4002//    if (framesAvail < framesReq) {
4003//        return AudioTrack::NO_MORE_BUFFERS;
4004//    }
4005
4006    if (framesReq > framesAvail) {
4007        framesReq = framesAvail;
4008    }
4009
4010    uint32_t u = cblk->user;
4011    uint32_t bufferEnd = cblk->userBase + cblk->frameCount;
4012
4013    if (u + framesReq > bufferEnd) {
4014        framesReq = bufferEnd - u;
4015    }
4016
4017    buffer->frameCount  = framesReq;
4018    buffer->raw         = (void *)cblk->buffer(u);
4019    return NO_ERROR;
4020}
4021
4022
4023void AudioFlinger::PlaybackThread::OutputTrack::clearBufferQueue()
4024{
4025    size_t size = mBufferQueue.size();
4026    Buffer *pBuffer;
4027
4028    for (size_t i = 0; i < size; i++) {
4029        pBuffer = mBufferQueue.itemAt(i);
4030        delete [] pBuffer->mBuffer;
4031        delete pBuffer;
4032    }
4033    mBufferQueue.clear();
4034}
4035
4036// ----------------------------------------------------------------------------
4037
4038AudioFlinger::Client::Client(const sp<AudioFlinger>& audioFlinger, pid_t pid)
4039    :   RefBase(),
4040        mAudioFlinger(audioFlinger),
4041        mMemoryDealer(new MemoryDealer(1024*1024, "AudioFlinger::Client")),
4042        mPid(pid)
4043{
4044    // 1 MB of address space is good for 32 tracks, 8 buffers each, 4 KB/buffer
4045}
4046
4047// Client destructor must be called with AudioFlinger::mLock held
4048AudioFlinger::Client::~Client()
4049{
4050    mAudioFlinger->removeClient_l(mPid);
4051}
4052
4053const sp<MemoryDealer>& AudioFlinger::Client::heap() const
4054{
4055    return mMemoryDealer;
4056}
4057
4058// ----------------------------------------------------------------------------
4059
4060AudioFlinger::NotificationClient::NotificationClient(const sp<AudioFlinger>& audioFlinger,
4061                                                     const sp<IAudioFlingerClient>& client,
4062                                                     pid_t pid)
4063    : mAudioFlinger(audioFlinger), mPid(pid), mClient(client)
4064{
4065}
4066
4067AudioFlinger::NotificationClient::~NotificationClient()
4068{
4069    mClient.clear();
4070}
4071
4072void AudioFlinger::NotificationClient::binderDied(const wp<IBinder>& who)
4073{
4074    sp<NotificationClient> keep(this);
4075    {
4076        mAudioFlinger->removeNotificationClient(mPid);
4077    }
4078}
4079
4080// ----------------------------------------------------------------------------
4081
4082AudioFlinger::TrackHandle::TrackHandle(const sp<AudioFlinger::PlaybackThread::Track>& track)
4083    : BnAudioTrack(),
4084      mTrack(track)
4085{
4086}
4087
4088AudioFlinger::TrackHandle::~TrackHandle() {
4089    // just stop the track on deletion, associated resources
4090    // will be freed from the main thread once all pending buffers have
4091    // been played. Unless it's not in the active track list, in which
4092    // case we free everything now...
4093    mTrack->destroy();
4094}
4095
4096status_t AudioFlinger::TrackHandle::start() {
4097    return mTrack->start();
4098}
4099
4100void AudioFlinger::TrackHandle::stop() {
4101    mTrack->stop();
4102}
4103
4104void AudioFlinger::TrackHandle::flush() {
4105    mTrack->flush();
4106}
4107
4108void AudioFlinger::TrackHandle::mute(bool e) {
4109    mTrack->mute(e);
4110}
4111
4112void AudioFlinger::TrackHandle::pause() {
4113    mTrack->pause();
4114}
4115
4116sp<IMemory> AudioFlinger::TrackHandle::getCblk() const {
4117    return mTrack->getCblk();
4118}
4119
4120status_t AudioFlinger::TrackHandle::attachAuxEffect(int EffectId)
4121{
4122    return mTrack->attachAuxEffect(EffectId);
4123}
4124
4125status_t AudioFlinger::TrackHandle::onTransact(
4126    uint32_t code, const Parcel& data, Parcel* reply, uint32_t flags)
4127{
4128    return BnAudioTrack::onTransact(code, data, reply, flags);
4129}
4130
4131// ----------------------------------------------------------------------------
4132
4133sp<IAudioRecord> AudioFlinger::openRecord(
4134        pid_t pid,
4135        int input,
4136        uint32_t sampleRate,
4137        uint32_t format,
4138        uint32_t channelMask,
4139        int frameCount,
4140        uint32_t flags,
4141        int *sessionId,
4142        status_t *status)
4143{
4144    sp<RecordThread::RecordTrack> recordTrack;
4145    sp<RecordHandle> recordHandle;
4146    sp<Client> client;
4147    wp<Client> wclient;
4148    status_t lStatus;
4149    RecordThread *thread;
4150    size_t inFrameCount;
4151    int lSessionId;
4152
4153    // check calling permissions
4154    if (!recordingAllowed()) {
4155        lStatus = PERMISSION_DENIED;
4156        goto Exit;
4157    }
4158
4159    // add client to list
4160    { // scope for mLock
4161        Mutex::Autolock _l(mLock);
4162        thread = checkRecordThread_l(input);
4163        if (thread == NULL) {
4164            lStatus = BAD_VALUE;
4165            goto Exit;
4166        }
4167
4168        wclient = mClients.valueFor(pid);
4169        if (wclient != NULL) {
4170            client = wclient.promote();
4171        } else {
4172            client = new Client(this, pid);
4173            mClients.add(pid, client);
4174        }
4175
4176        // If no audio session id is provided, create one here
4177        if (sessionId != NULL && *sessionId != AUDIO_SESSION_OUTPUT_MIX) {
4178            lSessionId = *sessionId;
4179        } else {
4180            lSessionId = nextUniqueId();
4181            if (sessionId != NULL) {
4182                *sessionId = lSessionId;
4183            }
4184        }
4185        // create new record track. The record track uses one track in mHardwareMixerThread by convention.
4186        recordTrack = thread->createRecordTrack_l(client,
4187                                                sampleRate,
4188                                                format,
4189                                                channelMask,
4190                                                frameCount,
4191                                                flags,
4192                                                lSessionId,
4193                                                &lStatus);
4194    }
4195    if (lStatus != NO_ERROR) {
4196        // remove local strong reference to Client before deleting the RecordTrack so that the Client
4197        // destructor is called by the TrackBase destructor with mLock held
4198        client.clear();
4199        recordTrack.clear();
4200        goto Exit;
4201    }
4202
4203    // return to handle to client
4204    recordHandle = new RecordHandle(recordTrack);
4205    lStatus = NO_ERROR;
4206
4207Exit:
4208    if (status) {
4209        *status = lStatus;
4210    }
4211    return recordHandle;
4212}
4213
4214// ----------------------------------------------------------------------------
4215
4216AudioFlinger::RecordHandle::RecordHandle(const sp<AudioFlinger::RecordThread::RecordTrack>& recordTrack)
4217    : BnAudioRecord(),
4218    mRecordTrack(recordTrack)
4219{
4220}
4221
4222AudioFlinger::RecordHandle::~RecordHandle() {
4223    stop();
4224}
4225
4226status_t AudioFlinger::RecordHandle::start() {
4227    ALOGV("RecordHandle::start()");
4228    return mRecordTrack->start();
4229}
4230
4231void AudioFlinger::RecordHandle::stop() {
4232    ALOGV("RecordHandle::stop()");
4233    mRecordTrack->stop();
4234}
4235
4236sp<IMemory> AudioFlinger::RecordHandle::getCblk() const {
4237    return mRecordTrack->getCblk();
4238}
4239
4240status_t AudioFlinger::RecordHandle::onTransact(
4241    uint32_t code, const Parcel& data, Parcel* reply, uint32_t flags)
4242{
4243    return BnAudioRecord::onTransact(code, data, reply, flags);
4244}
4245
4246// ----------------------------------------------------------------------------
4247
4248AudioFlinger::RecordThread::RecordThread(const sp<AudioFlinger>& audioFlinger,
4249                                         AudioStreamIn *input,
4250                                         uint32_t sampleRate,
4251                                         uint32_t channels,
4252                                         int id,
4253                                         uint32_t device) :
4254    ThreadBase(audioFlinger, id, device),
4255    mInput(input), mTrack(NULL), mResampler(NULL), mRsmpOutBuffer(NULL), mRsmpInBuffer(NULL)
4256{
4257    mType = ThreadBase::RECORD;
4258
4259    snprintf(mName, kNameLength, "AudioIn_%d", id);
4260
4261    mReqChannelCount = popcount(channels);
4262    mReqSampleRate = sampleRate;
4263    readInputParameters();
4264}
4265
4266
4267AudioFlinger::RecordThread::~RecordThread()
4268{
4269    delete[] mRsmpInBuffer;
4270    if (mResampler != NULL) {
4271        delete mResampler;
4272        delete[] mRsmpOutBuffer;
4273    }
4274}
4275
4276void AudioFlinger::RecordThread::onFirstRef()
4277{
4278    run(mName, PRIORITY_URGENT_AUDIO);
4279}
4280
4281status_t AudioFlinger::RecordThread::readyToRun()
4282{
4283    status_t status = initCheck();
4284    ALOGW_IF(status != NO_ERROR,"RecordThread %p could not initialize", this);
4285    return status;
4286}
4287
4288bool AudioFlinger::RecordThread::threadLoop()
4289{
4290    AudioBufferProvider::Buffer buffer;
4291    sp<RecordTrack> activeTrack;
4292    Vector< sp<EffectChain> > effectChains;
4293
4294    nsecs_t lastWarning = 0;
4295
4296    acquireWakeLock();
4297
4298    // start recording
4299    while (!exitPending()) {
4300
4301        processConfigEvents();
4302
4303        { // scope for mLock
4304            Mutex::Autolock _l(mLock);
4305            checkForNewParameters_l();
4306            if (mActiveTrack == 0 && mConfigEvents.isEmpty()) {
4307                if (!mStandby) {
4308                    mInput->stream->common.standby(&mInput->stream->common);
4309                    mStandby = true;
4310                }
4311
4312                if (exitPending()) break;
4313
4314                releaseWakeLock_l();
4315                ALOGV("RecordThread: loop stopping");
4316                // go to sleep
4317                mWaitWorkCV.wait(mLock);
4318                ALOGV("RecordThread: loop starting");
4319                acquireWakeLock_l();
4320                continue;
4321            }
4322            if (mActiveTrack != 0) {
4323                if (mActiveTrack->mState == TrackBase::PAUSING) {
4324                    if (!mStandby) {
4325                        mInput->stream->common.standby(&mInput->stream->common);
4326                        mStandby = true;
4327                    }
4328                    mActiveTrack.clear();
4329                    mStartStopCond.broadcast();
4330                } else if (mActiveTrack->mState == TrackBase::RESUMING) {
4331                    if (mReqChannelCount != mActiveTrack->channelCount()) {
4332                        mActiveTrack.clear();
4333                        mStartStopCond.broadcast();
4334                    } else if (mBytesRead != 0) {
4335                        // record start succeeds only if first read from audio input
4336                        // succeeds
4337                        if (mBytesRead > 0) {
4338                            mActiveTrack->mState = TrackBase::ACTIVE;
4339                        } else {
4340                            mActiveTrack.clear();
4341                        }
4342                        mStartStopCond.broadcast();
4343                    }
4344                    mStandby = false;
4345                }
4346            }
4347            lockEffectChains_l(effectChains);
4348        }
4349
4350        if (mActiveTrack != 0) {
4351            if (mActiveTrack->mState != TrackBase::ACTIVE &&
4352                mActiveTrack->mState != TrackBase::RESUMING) {
4353                unlockEffectChains(effectChains);
4354                usleep(kRecordThreadSleepUs);
4355                continue;
4356            }
4357            for (size_t i = 0; i < effectChains.size(); i ++) {
4358                effectChains[i]->process_l();
4359            }
4360
4361            buffer.frameCount = mFrameCount;
4362            if (CC_LIKELY(mActiveTrack->getNextBuffer(&buffer) == NO_ERROR)) {
4363                size_t framesOut = buffer.frameCount;
4364                if (mResampler == NULL) {
4365                    // no resampling
4366                    while (framesOut) {
4367                        size_t framesIn = mFrameCount - mRsmpInIndex;
4368                        if (framesIn) {
4369                            int8_t *src = (int8_t *)mRsmpInBuffer + mRsmpInIndex * mFrameSize;
4370                            int8_t *dst = buffer.i8 + (buffer.frameCount - framesOut) * mActiveTrack->mCblk->frameSize;
4371                            if (framesIn > framesOut)
4372                                framesIn = framesOut;
4373                            mRsmpInIndex += framesIn;
4374                            framesOut -= framesIn;
4375                            if ((int)mChannelCount == mReqChannelCount ||
4376                                mFormat != AUDIO_FORMAT_PCM_16_BIT) {
4377                                memcpy(dst, src, framesIn * mFrameSize);
4378                            } else {
4379                                int16_t *src16 = (int16_t *)src;
4380                                int16_t *dst16 = (int16_t *)dst;
4381                                if (mChannelCount == 1) {
4382                                    while (framesIn--) {
4383                                        *dst16++ = *src16;
4384                                        *dst16++ = *src16++;
4385                                    }
4386                                } else {
4387                                    while (framesIn--) {
4388                                        *dst16++ = (int16_t)(((int32_t)*src16 + (int32_t)*(src16 + 1)) >> 1);
4389                                        src16 += 2;
4390                                    }
4391                                }
4392                            }
4393                        }
4394                        if (framesOut && mFrameCount == mRsmpInIndex) {
4395                            if (framesOut == mFrameCount &&
4396                                ((int)mChannelCount == mReqChannelCount || mFormat != AUDIO_FORMAT_PCM_16_BIT)) {
4397                                mBytesRead = mInput->stream->read(mInput->stream, buffer.raw, mInputBytes);
4398                                framesOut = 0;
4399                            } else {
4400                                mBytesRead = mInput->stream->read(mInput->stream, mRsmpInBuffer, mInputBytes);
4401                                mRsmpInIndex = 0;
4402                            }
4403                            if (mBytesRead < 0) {
4404                                ALOGE("Error reading audio input");
4405                                if (mActiveTrack->mState == TrackBase::ACTIVE) {
4406                                    // Force input into standby so that it tries to
4407                                    // recover at next read attempt
4408                                    mInput->stream->common.standby(&mInput->stream->common);
4409                                    usleep(kRecordThreadSleepUs);
4410                                }
4411                                mRsmpInIndex = mFrameCount;
4412                                framesOut = 0;
4413                                buffer.frameCount = 0;
4414                            }
4415                        }
4416                    }
4417                } else {
4418                    // resampling
4419
4420                    memset(mRsmpOutBuffer, 0, framesOut * 2 * sizeof(int32_t));
4421                    // alter output frame count as if we were expecting stereo samples
4422                    if (mChannelCount == 1 && mReqChannelCount == 1) {
4423                        framesOut >>= 1;
4424                    }
4425                    mResampler->resample(mRsmpOutBuffer, framesOut, this);
4426                    // ditherAndClamp() works as long as all buffers returned by mActiveTrack->getNextBuffer()
4427                    // are 32 bit aligned which should be always true.
4428                    if (mChannelCount == 2 && mReqChannelCount == 1) {
4429                        ditherAndClamp(mRsmpOutBuffer, mRsmpOutBuffer, framesOut);
4430                        // the resampler always outputs stereo samples: do post stereo to mono conversion
4431                        int16_t *src = (int16_t *)mRsmpOutBuffer;
4432                        int16_t *dst = buffer.i16;
4433                        while (framesOut--) {
4434                            *dst++ = (int16_t)(((int32_t)*src + (int32_t)*(src + 1)) >> 1);
4435                            src += 2;
4436                        }
4437                    } else {
4438                        ditherAndClamp((int32_t *)buffer.raw, mRsmpOutBuffer, framesOut);
4439                    }
4440
4441                }
4442                mActiveTrack->releaseBuffer(&buffer);
4443                mActiveTrack->overflow();
4444            }
4445            // client isn't retrieving buffers fast enough
4446            else {
4447                if (!mActiveTrack->setOverflow()) {
4448                    nsecs_t now = systemTime();
4449                    if ((now - lastWarning) > kWarningThrottleNs) {
4450                        ALOGW("RecordThread: buffer overflow");
4451                        lastWarning = now;
4452                    }
4453                }
4454                // Release the processor for a while before asking for a new buffer.
4455                // This will give the application more chance to read from the buffer and
4456                // clear the overflow.
4457                usleep(kRecordThreadSleepUs);
4458            }
4459        }
4460        // enable changes in effect chain
4461        unlockEffectChains(effectChains);
4462        effectChains.clear();
4463    }
4464
4465    if (!mStandby) {
4466        mInput->stream->common.standby(&mInput->stream->common);
4467    }
4468    mActiveTrack.clear();
4469
4470    mStartStopCond.broadcast();
4471
4472    releaseWakeLock();
4473
4474    ALOGV("RecordThread %p exiting", this);
4475    return false;
4476}
4477
4478
4479sp<AudioFlinger::RecordThread::RecordTrack>  AudioFlinger::RecordThread::createRecordTrack_l(
4480        const sp<AudioFlinger::Client>& client,
4481        uint32_t sampleRate,
4482        int format,
4483        int channelMask,
4484        int frameCount,
4485        uint32_t flags,
4486        int sessionId,
4487        status_t *status)
4488{
4489    sp<RecordTrack> track;
4490    status_t lStatus;
4491
4492    lStatus = initCheck();
4493    if (lStatus != NO_ERROR) {
4494        ALOGE("Audio driver not initialized.");
4495        goto Exit;
4496    }
4497
4498    { // scope for mLock
4499        Mutex::Autolock _l(mLock);
4500
4501        track = new RecordTrack(this, client, sampleRate,
4502                      format, channelMask, frameCount, flags, sessionId);
4503
4504        if (track->getCblk() == NULL) {
4505            lStatus = NO_MEMORY;
4506            goto Exit;
4507        }
4508
4509        mTrack = track.get();
4510        // disable AEC and NS if the device is a BT SCO headset supporting those pre processings
4511        bool suspend = audio_is_bluetooth_sco_device(
4512                (audio_devices_t)(mDevice & AUDIO_DEVICE_IN_ALL)) && mAudioFlinger->btNrecIsOff();
4513        setEffectSuspended_l(FX_IID_AEC, suspend, sessionId);
4514        setEffectSuspended_l(FX_IID_NS, suspend, sessionId);
4515    }
4516    lStatus = NO_ERROR;
4517
4518Exit:
4519    if (status) {
4520        *status = lStatus;
4521    }
4522    return track;
4523}
4524
4525status_t AudioFlinger::RecordThread::start(RecordThread::RecordTrack* recordTrack)
4526{
4527    ALOGV("RecordThread::start");
4528    sp <ThreadBase> strongMe = this;
4529    status_t status = NO_ERROR;
4530    {
4531        AutoMutex lock(mLock);
4532        if (mActiveTrack != 0) {
4533            if (recordTrack != mActiveTrack.get()) {
4534                status = -EBUSY;
4535            } else if (mActiveTrack->mState == TrackBase::PAUSING) {
4536                mActiveTrack->mState = TrackBase::ACTIVE;
4537            }
4538            return status;
4539        }
4540
4541        recordTrack->mState = TrackBase::IDLE;
4542        mActiveTrack = recordTrack;
4543        mLock.unlock();
4544        status_t status = AudioSystem::startInput(mId);
4545        mLock.lock();
4546        if (status != NO_ERROR) {
4547            mActiveTrack.clear();
4548            return status;
4549        }
4550        mRsmpInIndex = mFrameCount;
4551        mBytesRead = 0;
4552        if (mResampler != NULL) {
4553            mResampler->reset();
4554        }
4555        mActiveTrack->mState = TrackBase::RESUMING;
4556        // signal thread to start
4557        ALOGV("Signal record thread");
4558        mWaitWorkCV.signal();
4559        // do not wait for mStartStopCond if exiting
4560        if (mExiting) {
4561            mActiveTrack.clear();
4562            status = INVALID_OPERATION;
4563            goto startError;
4564        }
4565        mStartStopCond.wait(mLock);
4566        if (mActiveTrack == 0) {
4567            ALOGV("Record failed to start");
4568            status = BAD_VALUE;
4569            goto startError;
4570        }
4571        ALOGV("Record started OK");
4572        return status;
4573    }
4574startError:
4575    AudioSystem::stopInput(mId);
4576    return status;
4577}
4578
4579void AudioFlinger::RecordThread::stop(RecordThread::RecordTrack* recordTrack) {
4580    ALOGV("RecordThread::stop");
4581    sp <ThreadBase> strongMe = this;
4582    {
4583        AutoMutex lock(mLock);
4584        if (mActiveTrack != 0 && recordTrack == mActiveTrack.get()) {
4585            mActiveTrack->mState = TrackBase::PAUSING;
4586            // do not wait for mStartStopCond if exiting
4587            if (mExiting) {
4588                return;
4589            }
4590            mStartStopCond.wait(mLock);
4591            // if we have been restarted, recordTrack == mActiveTrack.get() here
4592            if (mActiveTrack == 0 || recordTrack != mActiveTrack.get()) {
4593                mLock.unlock();
4594                AudioSystem::stopInput(mId);
4595                mLock.lock();
4596                ALOGV("Record stopped OK");
4597            }
4598        }
4599    }
4600}
4601
4602status_t AudioFlinger::RecordThread::dump(int fd, const Vector<String16>& args)
4603{
4604    const size_t SIZE = 256;
4605    char buffer[SIZE];
4606    String8 result;
4607    pid_t pid = 0;
4608
4609    snprintf(buffer, SIZE, "\nInput thread %p internals\n", this);
4610    result.append(buffer);
4611
4612    if (mActiveTrack != 0) {
4613        result.append("Active Track:\n");
4614        result.append("   Clien Fmt Chn mask   Session Buf  S SRate  Serv     User\n");
4615        mActiveTrack->dump(buffer, SIZE);
4616        result.append(buffer);
4617
4618        snprintf(buffer, SIZE, "In index: %d\n", mRsmpInIndex);
4619        result.append(buffer);
4620        snprintf(buffer, SIZE, "In size: %d\n", mInputBytes);
4621        result.append(buffer);
4622        snprintf(buffer, SIZE, "Resampling: %d\n", (mResampler != NULL));
4623        result.append(buffer);
4624        snprintf(buffer, SIZE, "Out channel count: %d\n", mReqChannelCount);
4625        result.append(buffer);
4626        snprintf(buffer, SIZE, "Out sample rate: %d\n", mReqSampleRate);
4627        result.append(buffer);
4628
4629
4630    } else {
4631        result.append("No record client\n");
4632    }
4633    write(fd, result.string(), result.size());
4634
4635    dumpBase(fd, args);
4636    dumpEffectChains(fd, args);
4637
4638    return NO_ERROR;
4639}
4640
4641status_t AudioFlinger::RecordThread::getNextBuffer(AudioBufferProvider::Buffer* buffer)
4642{
4643    size_t framesReq = buffer->frameCount;
4644    size_t framesReady = mFrameCount - mRsmpInIndex;
4645    int channelCount;
4646
4647    if (framesReady == 0) {
4648        mBytesRead = mInput->stream->read(mInput->stream, mRsmpInBuffer, mInputBytes);
4649        if (mBytesRead < 0) {
4650            ALOGE("RecordThread::getNextBuffer() Error reading audio input");
4651            if (mActiveTrack->mState == TrackBase::ACTIVE) {
4652                // Force input into standby so that it tries to
4653                // recover at next read attempt
4654                mInput->stream->common.standby(&mInput->stream->common);
4655                usleep(kRecordThreadSleepUs);
4656            }
4657            buffer->raw = NULL;
4658            buffer->frameCount = 0;
4659            return NOT_ENOUGH_DATA;
4660        }
4661        mRsmpInIndex = 0;
4662        framesReady = mFrameCount;
4663    }
4664
4665    if (framesReq > framesReady) {
4666        framesReq = framesReady;
4667    }
4668
4669    if (mChannelCount == 1 && mReqChannelCount == 2) {
4670        channelCount = 1;
4671    } else {
4672        channelCount = 2;
4673    }
4674    buffer->raw = mRsmpInBuffer + mRsmpInIndex * channelCount;
4675    buffer->frameCount = framesReq;
4676    return NO_ERROR;
4677}
4678
4679void AudioFlinger::RecordThread::releaseBuffer(AudioBufferProvider::Buffer* buffer)
4680{
4681    mRsmpInIndex += buffer->frameCount;
4682    buffer->frameCount = 0;
4683}
4684
4685bool AudioFlinger::RecordThread::checkForNewParameters_l()
4686{
4687    bool reconfig = false;
4688
4689    while (!mNewParameters.isEmpty()) {
4690        status_t status = NO_ERROR;
4691        String8 keyValuePair = mNewParameters[0];
4692        AudioParameter param = AudioParameter(keyValuePair);
4693        int value;
4694        int reqFormat = mFormat;
4695        int reqSamplingRate = mReqSampleRate;
4696        int reqChannelCount = mReqChannelCount;
4697
4698        if (param.getInt(String8(AudioParameter::keySamplingRate), value) == NO_ERROR) {
4699            reqSamplingRate = value;
4700            reconfig = true;
4701        }
4702        if (param.getInt(String8(AudioParameter::keyFormat), value) == NO_ERROR) {
4703            reqFormat = value;
4704            reconfig = true;
4705        }
4706        if (param.getInt(String8(AudioParameter::keyChannels), value) == NO_ERROR) {
4707            reqChannelCount = popcount(value);
4708            reconfig = true;
4709        }
4710        if (param.getInt(String8(AudioParameter::keyFrameCount), value) == NO_ERROR) {
4711            // do not accept frame count changes if tracks are open as the track buffer
4712            // size depends on frame count and correct behavior would not be garantied
4713            // if frame count is changed after track creation
4714            if (mActiveTrack != 0) {
4715                status = INVALID_OPERATION;
4716            } else {
4717                reconfig = true;
4718            }
4719        }
4720        if (param.getInt(String8(AudioParameter::keyRouting), value) == NO_ERROR) {
4721            // forward device change to effects that have requested to be
4722            // aware of attached audio device.
4723            for (size_t i = 0; i < mEffectChains.size(); i++) {
4724                mEffectChains[i]->setDevice_l(value);
4725            }
4726            // store input device and output device but do not forward output device to audio HAL.
4727            // Note that status is ignored by the caller for output device
4728            // (see AudioFlinger::setParameters()
4729            if (value & AUDIO_DEVICE_OUT_ALL) {
4730                mDevice &= (uint32_t)~(value & AUDIO_DEVICE_OUT_ALL);
4731                status = BAD_VALUE;
4732            } else {
4733                mDevice &= (uint32_t)~(value & AUDIO_DEVICE_IN_ALL);
4734                // disable AEC and NS if the device is a BT SCO headset supporting those pre processings
4735                if (mTrack != NULL) {
4736                    bool suspend = audio_is_bluetooth_sco_device(
4737                            (audio_devices_t)value) && mAudioFlinger->btNrecIsOff();
4738                    setEffectSuspended_l(FX_IID_AEC, suspend, mTrack->sessionId());
4739                    setEffectSuspended_l(FX_IID_NS, suspend, mTrack->sessionId());
4740                }
4741            }
4742            mDevice |= (uint32_t)value;
4743        }
4744        if (status == NO_ERROR) {
4745            status = mInput->stream->common.set_parameters(&mInput->stream->common, keyValuePair.string());
4746            if (status == INVALID_OPERATION) {
4747               mInput->stream->common.standby(&mInput->stream->common);
4748               status = mInput->stream->common.set_parameters(&mInput->stream->common, keyValuePair.string());
4749            }
4750            if (reconfig) {
4751                if (status == BAD_VALUE &&
4752                    reqFormat == mInput->stream->common.get_format(&mInput->stream->common) &&
4753                    reqFormat == AUDIO_FORMAT_PCM_16_BIT &&
4754                    ((int)mInput->stream->common.get_sample_rate(&mInput->stream->common) <= (2 * reqSamplingRate)) &&
4755                    (popcount(mInput->stream->common.get_channels(&mInput->stream->common)) < 3) &&
4756                    (reqChannelCount < 3)) {
4757                    status = NO_ERROR;
4758                }
4759                if (status == NO_ERROR) {
4760                    readInputParameters();
4761                    sendConfigEvent_l(AudioSystem::INPUT_CONFIG_CHANGED);
4762                }
4763            }
4764        }
4765
4766        mNewParameters.removeAt(0);
4767
4768        mParamStatus = status;
4769        mParamCond.signal();
4770        // wait for condition with time out in case the thread calling ThreadBase::setParameters()
4771        // already timed out waiting for the status and will never signal the condition.
4772        mWaitWorkCV.waitRelative(mLock, kSetParametersTimeoutNs);
4773    }
4774    return reconfig;
4775}
4776
4777String8 AudioFlinger::RecordThread::getParameters(const String8& keys)
4778{
4779    char *s;
4780    String8 out_s8 = String8();
4781
4782    Mutex::Autolock _l(mLock);
4783    if (initCheck() != NO_ERROR) {
4784        return out_s8;
4785    }
4786
4787    s = mInput->stream->common.get_parameters(&mInput->stream->common, keys.string());
4788    out_s8 = String8(s);
4789    free(s);
4790    return out_s8;
4791}
4792
4793void AudioFlinger::RecordThread::audioConfigChanged_l(int event, int param) {
4794    AudioSystem::OutputDescriptor desc;
4795    void *param2 = 0;
4796
4797    switch (event) {
4798    case AudioSystem::INPUT_OPENED:
4799    case AudioSystem::INPUT_CONFIG_CHANGED:
4800        desc.channels = mChannelMask;
4801        desc.samplingRate = mSampleRate;
4802        desc.format = mFormat;
4803        desc.frameCount = mFrameCount;
4804        desc.latency = 0;
4805        param2 = &desc;
4806        break;
4807
4808    case AudioSystem::INPUT_CLOSED:
4809    default:
4810        break;
4811    }
4812    mAudioFlinger->audioConfigChanged_l(event, mId, param2);
4813}
4814
4815void AudioFlinger::RecordThread::readInputParameters()
4816{
4817    if (mRsmpInBuffer) delete mRsmpInBuffer;
4818    if (mRsmpOutBuffer) delete mRsmpOutBuffer;
4819    if (mResampler) delete mResampler;
4820    mResampler = NULL;
4821
4822    mSampleRate = mInput->stream->common.get_sample_rate(&mInput->stream->common);
4823    mChannelMask = mInput->stream->common.get_channels(&mInput->stream->common);
4824    mChannelCount = (uint16_t)popcount(mChannelMask);
4825    mFormat = mInput->stream->common.get_format(&mInput->stream->common);
4826    mFrameSize = audio_stream_frame_size(&mInput->stream->common);
4827    mInputBytes = mInput->stream->common.get_buffer_size(&mInput->stream->common);
4828    mFrameCount = mInputBytes / mFrameSize;
4829    mRsmpInBuffer = new int16_t[mFrameCount * mChannelCount];
4830
4831    if (mSampleRate != mReqSampleRate && mChannelCount < 3 && mReqChannelCount < 3)
4832    {
4833        int channelCount;
4834         // optmization: if mono to mono, use the resampler in stereo to stereo mode to avoid
4835         // stereo to mono post process as the resampler always outputs stereo.
4836        if (mChannelCount == 1 && mReqChannelCount == 2) {
4837            channelCount = 1;
4838        } else {
4839            channelCount = 2;
4840        }
4841        mResampler = AudioResampler::create(16, channelCount, mReqSampleRate);
4842        mResampler->setSampleRate(mSampleRate);
4843        mResampler->setVolume(AudioMixer::UNITY_GAIN, AudioMixer::UNITY_GAIN);
4844        mRsmpOutBuffer = new int32_t[mFrameCount * 2];
4845
4846        // optmization: if mono to mono, alter input frame count as if we were inputing stereo samples
4847        if (mChannelCount == 1 && mReqChannelCount == 1) {
4848            mFrameCount >>= 1;
4849        }
4850
4851    }
4852    mRsmpInIndex = mFrameCount;
4853}
4854
4855unsigned int AudioFlinger::RecordThread::getInputFramesLost()
4856{
4857    Mutex::Autolock _l(mLock);
4858    if (initCheck() != NO_ERROR) {
4859        return 0;
4860    }
4861
4862    return mInput->stream->get_input_frames_lost(mInput->stream);
4863}
4864
4865uint32_t AudioFlinger::RecordThread::hasAudioSession(int sessionId)
4866{
4867    Mutex::Autolock _l(mLock);
4868    uint32_t result = 0;
4869    if (getEffectChain_l(sessionId) != 0) {
4870        result = EFFECT_SESSION;
4871    }
4872
4873    if (mTrack != NULL && sessionId == mTrack->sessionId()) {
4874        result |= TRACK_SESSION;
4875    }
4876
4877    return result;
4878}
4879
4880AudioFlinger::RecordThread::RecordTrack* AudioFlinger::RecordThread::track()
4881{
4882    Mutex::Autolock _l(mLock);
4883    return mTrack;
4884}
4885
4886AudioFlinger::AudioStreamIn* AudioFlinger::RecordThread::getInput()
4887{
4888    Mutex::Autolock _l(mLock);
4889    return mInput;
4890}
4891
4892AudioFlinger::AudioStreamIn* AudioFlinger::RecordThread::clearInput()
4893{
4894    Mutex::Autolock _l(mLock);
4895    AudioStreamIn *input = mInput;
4896    mInput = NULL;
4897    return input;
4898}
4899
4900// this method must always be called either with ThreadBase mLock held or inside the thread loop
4901audio_stream_t* AudioFlinger::RecordThread::stream()
4902{
4903    if (mInput == NULL) {
4904        return NULL;
4905    }
4906    return &mInput->stream->common;
4907}
4908
4909
4910// ----------------------------------------------------------------------------
4911
4912int AudioFlinger::openOutput(uint32_t *pDevices,
4913                                uint32_t *pSamplingRate,
4914                                uint32_t *pFormat,
4915                                uint32_t *pChannels,
4916                                uint32_t *pLatencyMs,
4917                                uint32_t flags)
4918{
4919    status_t status;
4920    PlaybackThread *thread = NULL;
4921    mHardwareStatus = AUDIO_HW_OUTPUT_OPEN;
4922    uint32_t samplingRate = pSamplingRate ? *pSamplingRate : 0;
4923    uint32_t format = pFormat ? *pFormat : 0;
4924    uint32_t channels = pChannels ? *pChannels : 0;
4925    uint32_t latency = pLatencyMs ? *pLatencyMs : 0;
4926    audio_stream_out_t *outStream;
4927    audio_hw_device_t *outHwDev;
4928
4929    ALOGV("openOutput(), Device %x, SamplingRate %d, Format %d, Channels %x, flags %x",
4930            pDevices ? *pDevices : 0,
4931            samplingRate,
4932            format,
4933            channels,
4934            flags);
4935
4936    if (pDevices == NULL || *pDevices == 0) {
4937        return 0;
4938    }
4939
4940    Mutex::Autolock _l(mLock);
4941
4942    outHwDev = findSuitableHwDev_l(*pDevices);
4943    if (outHwDev == NULL)
4944        return 0;
4945
4946    status = outHwDev->open_output_stream(outHwDev, *pDevices, (int *)&format,
4947                                          &channels, &samplingRate, &outStream);
4948    ALOGV("openOutput() openOutputStream returned output %p, SamplingRate %d, Format %d, Channels %x, status %d",
4949            outStream,
4950            samplingRate,
4951            format,
4952            channels,
4953            status);
4954
4955    mHardwareStatus = AUDIO_HW_IDLE;
4956    if (outStream != NULL) {
4957        AudioStreamOut *output = new AudioStreamOut(outHwDev, outStream);
4958        int id = nextUniqueId();
4959
4960        if ((flags & AUDIO_POLICY_OUTPUT_FLAG_DIRECT) ||
4961            (format != AUDIO_FORMAT_PCM_16_BIT) ||
4962            (channels != AUDIO_CHANNEL_OUT_STEREO)) {
4963            thread = new DirectOutputThread(this, output, id, *pDevices);
4964            ALOGV("openOutput() created direct output: ID %d thread %p", id, thread);
4965        } else {
4966            thread = new MixerThread(this, output, id, *pDevices);
4967            ALOGV("openOutput() created mixer output: ID %d thread %p", id, thread);
4968        }
4969        mPlaybackThreads.add(id, thread);
4970
4971        if (pSamplingRate) *pSamplingRate = samplingRate;
4972        if (pFormat) *pFormat = format;
4973        if (pChannels) *pChannels = channels;
4974        if (pLatencyMs) *pLatencyMs = thread->latency();
4975
4976        // notify client processes of the new output creation
4977        thread->audioConfigChanged_l(AudioSystem::OUTPUT_OPENED);
4978        return id;
4979    }
4980
4981    return 0;
4982}
4983
4984int AudioFlinger::openDuplicateOutput(int output1, int output2)
4985{
4986    Mutex::Autolock _l(mLock);
4987    MixerThread *thread1 = checkMixerThread_l(output1);
4988    MixerThread *thread2 = checkMixerThread_l(output2);
4989
4990    if (thread1 == NULL || thread2 == NULL) {
4991        ALOGW("openDuplicateOutput() wrong output mixer type for output %d or %d", output1, output2);
4992        return 0;
4993    }
4994
4995    int id = nextUniqueId();
4996    DuplicatingThread *thread = new DuplicatingThread(this, thread1, id);
4997    thread->addOutputTrack(thread2);
4998    mPlaybackThreads.add(id, thread);
4999    // notify client processes of the new output creation
5000    thread->audioConfigChanged_l(AudioSystem::OUTPUT_OPENED);
5001    return id;
5002}
5003
5004status_t AudioFlinger::closeOutput(int output)
5005{
5006    // keep strong reference on the playback thread so that
5007    // it is not destroyed while exit() is executed
5008    sp <PlaybackThread> thread;
5009    {
5010        Mutex::Autolock _l(mLock);
5011        thread = checkPlaybackThread_l(output);
5012        if (thread == NULL) {
5013            return BAD_VALUE;
5014        }
5015
5016        ALOGV("closeOutput() %d", output);
5017
5018        if (thread->type() == ThreadBase::MIXER) {
5019            for (size_t i = 0; i < mPlaybackThreads.size(); i++) {
5020                if (mPlaybackThreads.valueAt(i)->type() == ThreadBase::DUPLICATING) {
5021                    DuplicatingThread *dupThread = (DuplicatingThread *)mPlaybackThreads.valueAt(i).get();
5022                    dupThread->removeOutputTrack((MixerThread *)thread.get());
5023                }
5024            }
5025        }
5026        void *param2 = 0;
5027        audioConfigChanged_l(AudioSystem::OUTPUT_CLOSED, output, param2);
5028        mPlaybackThreads.removeItem(output);
5029    }
5030    thread->exit();
5031
5032    if (thread->type() != ThreadBase::DUPLICATING) {
5033        AudioStreamOut *out = thread->clearOutput();
5034        // from now on thread->mOutput is NULL
5035        out->hwDev->close_output_stream(out->hwDev, out->stream);
5036        delete out;
5037    }
5038    return NO_ERROR;
5039}
5040
5041status_t AudioFlinger::suspendOutput(int output)
5042{
5043    Mutex::Autolock _l(mLock);
5044    PlaybackThread *thread = checkPlaybackThread_l(output);
5045
5046    if (thread == NULL) {
5047        return BAD_VALUE;
5048    }
5049
5050    ALOGV("suspendOutput() %d", output);
5051    thread->suspend();
5052
5053    return NO_ERROR;
5054}
5055
5056status_t AudioFlinger::restoreOutput(int output)
5057{
5058    Mutex::Autolock _l(mLock);
5059    PlaybackThread *thread = checkPlaybackThread_l(output);
5060
5061    if (thread == NULL) {
5062        return BAD_VALUE;
5063    }
5064
5065    ALOGV("restoreOutput() %d", output);
5066
5067    thread->restore();
5068
5069    return NO_ERROR;
5070}
5071
5072int AudioFlinger::openInput(uint32_t *pDevices,
5073                                uint32_t *pSamplingRate,
5074                                uint32_t *pFormat,
5075                                uint32_t *pChannels,
5076                                uint32_t acoustics)
5077{
5078    status_t status;
5079    RecordThread *thread = NULL;
5080    uint32_t samplingRate = pSamplingRate ? *pSamplingRate : 0;
5081    uint32_t format = pFormat ? *pFormat : 0;
5082    uint32_t channels = pChannels ? *pChannels : 0;
5083    uint32_t reqSamplingRate = samplingRate;
5084    uint32_t reqFormat = format;
5085    uint32_t reqChannels = channels;
5086    audio_stream_in_t *inStream;
5087    audio_hw_device_t *inHwDev;
5088
5089    if (pDevices == NULL || *pDevices == 0) {
5090        return 0;
5091    }
5092
5093    Mutex::Autolock _l(mLock);
5094
5095    inHwDev = findSuitableHwDev_l(*pDevices);
5096    if (inHwDev == NULL)
5097        return 0;
5098
5099    status = inHwDev->open_input_stream(inHwDev, *pDevices, (int *)&format,
5100                                        &channels, &samplingRate,
5101                                        (audio_in_acoustics_t)acoustics,
5102                                        &inStream);
5103    ALOGV("openInput() openInputStream returned input %p, SamplingRate %d, Format %d, Channels %x, acoustics %x, status %d",
5104            inStream,
5105            samplingRate,
5106            format,
5107            channels,
5108            acoustics,
5109            status);
5110
5111    // If the input could not be opened with the requested parameters and we can handle the conversion internally,
5112    // try to open again with the proposed parameters. The AudioFlinger can resample the input and do mono to stereo
5113    // or stereo to mono conversions on 16 bit PCM inputs.
5114    if (inStream == NULL && status == BAD_VALUE &&
5115        reqFormat == format && format == AUDIO_FORMAT_PCM_16_BIT &&
5116        (samplingRate <= 2 * reqSamplingRate) &&
5117        (popcount(channels) < 3) && (popcount(reqChannels) < 3)) {
5118        ALOGV("openInput() reopening with proposed sampling rate and channels");
5119        status = inHwDev->open_input_stream(inHwDev, *pDevices, (int *)&format,
5120                                            &channels, &samplingRate,
5121                                            (audio_in_acoustics_t)acoustics,
5122                                            &inStream);
5123    }
5124
5125    if (inStream != NULL) {
5126        AudioStreamIn *input = new AudioStreamIn(inHwDev, inStream);
5127
5128        int id = nextUniqueId();
5129        // Start record thread
5130        // RecorThread require both input and output device indication to forward to audio
5131        // pre processing modules
5132        uint32_t device = (*pDevices) | primaryOutputDevice_l();
5133        thread = new RecordThread(this,
5134                                  input,
5135                                  reqSamplingRate,
5136                                  reqChannels,
5137                                  id,
5138                                  device);
5139        mRecordThreads.add(id, thread);
5140        ALOGV("openInput() created record thread: ID %d thread %p", id, thread);
5141        if (pSamplingRate) *pSamplingRate = reqSamplingRate;
5142        if (pFormat) *pFormat = format;
5143        if (pChannels) *pChannels = reqChannels;
5144
5145        input->stream->common.standby(&input->stream->common);
5146
5147        // notify client processes of the new input creation
5148        thread->audioConfigChanged_l(AudioSystem::INPUT_OPENED);
5149        return id;
5150    }
5151
5152    return 0;
5153}
5154
5155status_t AudioFlinger::closeInput(int input)
5156{
5157    // keep strong reference on the record thread so that
5158    // it is not destroyed while exit() is executed
5159    sp <RecordThread> thread;
5160    {
5161        Mutex::Autolock _l(mLock);
5162        thread = checkRecordThread_l(input);
5163        if (thread == NULL) {
5164            return BAD_VALUE;
5165        }
5166
5167        ALOGV("closeInput() %d", input);
5168        void *param2 = 0;
5169        audioConfigChanged_l(AudioSystem::INPUT_CLOSED, input, param2);
5170        mRecordThreads.removeItem(input);
5171    }
5172    thread->exit();
5173
5174    AudioStreamIn *in = thread->clearInput();
5175    // from now on thread->mInput is NULL
5176    in->hwDev->close_input_stream(in->hwDev, in->stream);
5177    delete in;
5178
5179    return NO_ERROR;
5180}
5181
5182status_t AudioFlinger::setStreamOutput(audio_stream_type_t stream, int output)
5183{
5184    Mutex::Autolock _l(mLock);
5185    MixerThread *dstThread = checkMixerThread_l(output);
5186    if (dstThread == NULL) {
5187        ALOGW("setStreamOutput() bad output id %d", output);
5188        return BAD_VALUE;
5189    }
5190
5191    ALOGV("setStreamOutput() stream %d to output %d", stream, output);
5192    audioConfigChanged_l(AudioSystem::STREAM_CONFIG_CHANGED, output, &stream);
5193
5194    dstThread->setStreamValid(stream, true);
5195
5196    for (size_t i = 0; i < mPlaybackThreads.size(); i++) {
5197        PlaybackThread *thread = mPlaybackThreads.valueAt(i).get();
5198        if (thread != dstThread &&
5199            thread->type() != ThreadBase::DIRECT) {
5200            MixerThread *srcThread = (MixerThread *)thread;
5201            srcThread->setStreamValid(stream, false);
5202            srcThread->invalidateTracks(stream);
5203        }
5204    }
5205
5206    return NO_ERROR;
5207}
5208
5209
5210int AudioFlinger::newAudioSessionId()
5211{
5212    return nextUniqueId();
5213}
5214
5215void AudioFlinger::acquireAudioSessionId(int audioSession)
5216{
5217    Mutex::Autolock _l(mLock);
5218    int caller = IPCThreadState::self()->getCallingPid();
5219    ALOGV("acquiring %d from %d", audioSession, caller);
5220    int num = mAudioSessionRefs.size();
5221    for (int i = 0; i< num; i++) {
5222        AudioSessionRef *ref = mAudioSessionRefs.editItemAt(i);
5223        if (ref->sessionid == audioSession && ref->pid == caller) {
5224            ref->cnt++;
5225            ALOGV(" incremented refcount to %d", ref->cnt);
5226            return;
5227        }
5228    }
5229    AudioSessionRef *ref = new AudioSessionRef();
5230    ref->sessionid = audioSession;
5231    ref->pid = caller;
5232    ref->cnt = 1;
5233    mAudioSessionRefs.push(ref);
5234    ALOGV(" added new entry for %d", ref->sessionid);
5235}
5236
5237void AudioFlinger::releaseAudioSessionId(int audioSession)
5238{
5239    Mutex::Autolock _l(mLock);
5240    int caller = IPCThreadState::self()->getCallingPid();
5241    ALOGV("releasing %d from %d", audioSession, caller);
5242    int num = mAudioSessionRefs.size();
5243    for (int i = 0; i< num; i++) {
5244        AudioSessionRef *ref = mAudioSessionRefs.itemAt(i);
5245        if (ref->sessionid == audioSession && ref->pid == caller) {
5246            ref->cnt--;
5247            ALOGV(" decremented refcount to %d", ref->cnt);
5248            if (ref->cnt == 0) {
5249                mAudioSessionRefs.removeAt(i);
5250                delete ref;
5251                purgeStaleEffects_l();
5252            }
5253            return;
5254        }
5255    }
5256    ALOGW("session id %d not found for pid %d", audioSession, caller);
5257}
5258
5259void AudioFlinger::purgeStaleEffects_l() {
5260
5261    ALOGV("purging stale effects");
5262
5263    Vector< sp<EffectChain> > chains;
5264
5265    for (size_t i = 0; i < mPlaybackThreads.size(); i++) {
5266        sp<PlaybackThread> t = mPlaybackThreads.valueAt(i);
5267        for (size_t j = 0; j < t->mEffectChains.size(); j++) {
5268            sp<EffectChain> ec = t->mEffectChains[j];
5269            if (ec->sessionId() > AUDIO_SESSION_OUTPUT_MIX) {
5270                chains.push(ec);
5271            }
5272        }
5273    }
5274    for (size_t i = 0; i < mRecordThreads.size(); i++) {
5275        sp<RecordThread> t = mRecordThreads.valueAt(i);
5276        for (size_t j = 0; j < t->mEffectChains.size(); j++) {
5277            sp<EffectChain> ec = t->mEffectChains[j];
5278            chains.push(ec);
5279        }
5280    }
5281
5282    for (size_t i = 0; i < chains.size(); i++) {
5283        sp<EffectChain> ec = chains[i];
5284        int sessionid = ec->sessionId();
5285        sp<ThreadBase> t = ec->mThread.promote();
5286        if (t == 0) {
5287            continue;
5288        }
5289        size_t numsessionrefs = mAudioSessionRefs.size();
5290        bool found = false;
5291        for (size_t k = 0; k < numsessionrefs; k++) {
5292            AudioSessionRef *ref = mAudioSessionRefs.itemAt(k);
5293            if (ref->sessionid == sessionid) {
5294                ALOGV(" session %d still exists for %d with %d refs",
5295                     sessionid, ref->pid, ref->cnt);
5296                found = true;
5297                break;
5298            }
5299        }
5300        if (!found) {
5301            // remove all effects from the chain
5302            while (ec->mEffects.size()) {
5303                sp<EffectModule> effect = ec->mEffects[0];
5304                effect->unPin();
5305                Mutex::Autolock _l (t->mLock);
5306                t->removeEffect_l(effect);
5307                for (size_t j = 0; j < effect->mHandles.size(); j++) {
5308                    sp<EffectHandle> handle = effect->mHandles[j].promote();
5309                    if (handle != 0) {
5310                        handle->mEffect.clear();
5311                        if (handle->mHasControl && handle->mEnabled) {
5312                            t->checkSuspendOnEffectEnabled_l(effect, false, effect->sessionId());
5313                        }
5314                    }
5315                }
5316                AudioSystem::unregisterEffect(effect->id());
5317            }
5318        }
5319    }
5320    return;
5321}
5322
5323// checkPlaybackThread_l() must be called with AudioFlinger::mLock held
5324AudioFlinger::PlaybackThread *AudioFlinger::checkPlaybackThread_l(int output) const
5325{
5326    PlaybackThread *thread = NULL;
5327    if (mPlaybackThreads.indexOfKey(output) >= 0) {
5328        thread = (PlaybackThread *)mPlaybackThreads.valueFor(output).get();
5329    }
5330    return thread;
5331}
5332
5333// checkMixerThread_l() must be called with AudioFlinger::mLock held
5334AudioFlinger::MixerThread *AudioFlinger::checkMixerThread_l(int output) const
5335{
5336    PlaybackThread *thread = checkPlaybackThread_l(output);
5337    if (thread != NULL) {
5338        if (thread->type() == ThreadBase::DIRECT) {
5339            thread = NULL;
5340        }
5341    }
5342    return (MixerThread *)thread;
5343}
5344
5345// checkRecordThread_l() must be called with AudioFlinger::mLock held
5346AudioFlinger::RecordThread *AudioFlinger::checkRecordThread_l(int input) const
5347{
5348    RecordThread *thread = NULL;
5349    if (mRecordThreads.indexOfKey(input) >= 0) {
5350        thread = (RecordThread *)mRecordThreads.valueFor(input).get();
5351    }
5352    return thread;
5353}
5354
5355uint32_t AudioFlinger::nextUniqueId()
5356{
5357    return android_atomic_inc(&mNextUniqueId);
5358}
5359
5360AudioFlinger::PlaybackThread *AudioFlinger::primaryPlaybackThread_l()
5361{
5362    for (size_t i = 0; i < mPlaybackThreads.size(); i++) {
5363        PlaybackThread *thread = mPlaybackThreads.valueAt(i).get();
5364        AudioStreamOut *output = thread->getOutput();
5365        if (output != NULL && output->hwDev == mPrimaryHardwareDev) {
5366            return thread;
5367        }
5368    }
5369    return NULL;
5370}
5371
5372uint32_t AudioFlinger::primaryOutputDevice_l()
5373{
5374    PlaybackThread *thread = primaryPlaybackThread_l();
5375
5376    if (thread == NULL) {
5377        return 0;
5378    }
5379
5380    return thread->device();
5381}
5382
5383
5384// ----------------------------------------------------------------------------
5385//  Effect management
5386// ----------------------------------------------------------------------------
5387
5388
5389status_t AudioFlinger::queryNumberEffects(uint32_t *numEffects)
5390{
5391    Mutex::Autolock _l(mLock);
5392    return EffectQueryNumberEffects(numEffects);
5393}
5394
5395status_t AudioFlinger::queryEffect(uint32_t index, effect_descriptor_t *descriptor)
5396{
5397    Mutex::Autolock _l(mLock);
5398    return EffectQueryEffect(index, descriptor);
5399}
5400
5401status_t AudioFlinger::getEffectDescriptor(effect_uuid_t *pUuid, effect_descriptor_t *descriptor)
5402{
5403    Mutex::Autolock _l(mLock);
5404    return EffectGetDescriptor(pUuid, descriptor);
5405}
5406
5407
5408sp<IEffect> AudioFlinger::createEffect(pid_t pid,
5409        effect_descriptor_t *pDesc,
5410        const sp<IEffectClient>& effectClient,
5411        int32_t priority,
5412        int io,
5413        int sessionId,
5414        status_t *status,
5415        int *id,
5416        int *enabled)
5417{
5418    status_t lStatus = NO_ERROR;
5419    sp<EffectHandle> handle;
5420    effect_descriptor_t desc;
5421    sp<Client> client;
5422    wp<Client> wclient;
5423
5424    ALOGV("createEffect pid %d, client %p, priority %d, sessionId %d, io %d",
5425            pid, effectClient.get(), priority, sessionId, io);
5426
5427    if (pDesc == NULL) {
5428        lStatus = BAD_VALUE;
5429        goto Exit;
5430    }
5431
5432    // check audio settings permission for global effects
5433    if (sessionId == AUDIO_SESSION_OUTPUT_MIX && !settingsAllowed()) {
5434        lStatus = PERMISSION_DENIED;
5435        goto Exit;
5436    }
5437
5438    // Session AUDIO_SESSION_OUTPUT_STAGE is reserved for output stage effects
5439    // that can only be created by audio policy manager (running in same process)
5440    if (sessionId == AUDIO_SESSION_OUTPUT_STAGE && getpid() != pid) {
5441        lStatus = PERMISSION_DENIED;
5442        goto Exit;
5443    }
5444
5445    if (io == 0) {
5446        if (sessionId == AUDIO_SESSION_OUTPUT_STAGE) {
5447            // output must be specified by AudioPolicyManager when using session
5448            // AUDIO_SESSION_OUTPUT_STAGE
5449            lStatus = BAD_VALUE;
5450            goto Exit;
5451        } else if (sessionId == AUDIO_SESSION_OUTPUT_MIX) {
5452            // if the output returned by getOutputForEffect() is removed before we lock the
5453            // mutex below, the call to checkPlaybackThread_l(io) below will detect it
5454            // and we will exit safely
5455            io = AudioSystem::getOutputForEffect(&desc);
5456        }
5457    }
5458
5459    {
5460        Mutex::Autolock _l(mLock);
5461
5462
5463        if (!EffectIsNullUuid(&pDesc->uuid)) {
5464            // if uuid is specified, request effect descriptor
5465            lStatus = EffectGetDescriptor(&pDesc->uuid, &desc);
5466            if (lStatus < 0) {
5467                ALOGW("createEffect() error %d from EffectGetDescriptor", lStatus);
5468                goto Exit;
5469            }
5470        } else {
5471            // if uuid is not specified, look for an available implementation
5472            // of the required type in effect factory
5473            if (EffectIsNullUuid(&pDesc->type)) {
5474                ALOGW("createEffect() no effect type");
5475                lStatus = BAD_VALUE;
5476                goto Exit;
5477            }
5478            uint32_t numEffects = 0;
5479            effect_descriptor_t d;
5480            d.flags = 0; // prevent compiler warning
5481            bool found = false;
5482
5483            lStatus = EffectQueryNumberEffects(&numEffects);
5484            if (lStatus < 0) {
5485                ALOGW("createEffect() error %d from EffectQueryNumberEffects", lStatus);
5486                goto Exit;
5487            }
5488            for (uint32_t i = 0; i < numEffects; i++) {
5489                lStatus = EffectQueryEffect(i, &desc);
5490                if (lStatus < 0) {
5491                    ALOGW("createEffect() error %d from EffectQueryEffect", lStatus);
5492                    continue;
5493                }
5494                if (memcmp(&desc.type, &pDesc->type, sizeof(effect_uuid_t)) == 0) {
5495                    // If matching type found save effect descriptor. If the session is
5496                    // 0 and the effect is not auxiliary, continue enumeration in case
5497                    // an auxiliary version of this effect type is available
5498                    found = true;
5499                    memcpy(&d, &desc, sizeof(effect_descriptor_t));
5500                    if (sessionId != AUDIO_SESSION_OUTPUT_MIX ||
5501                            (desc.flags & EFFECT_FLAG_TYPE_MASK) == EFFECT_FLAG_TYPE_AUXILIARY) {
5502                        break;
5503                    }
5504                }
5505            }
5506            if (!found) {
5507                lStatus = BAD_VALUE;
5508                ALOGW("createEffect() effect not found");
5509                goto Exit;
5510            }
5511            // For same effect type, chose auxiliary version over insert version if
5512            // connect to output mix (Compliance to OpenSL ES)
5513            if (sessionId == AUDIO_SESSION_OUTPUT_MIX &&
5514                    (d.flags & EFFECT_FLAG_TYPE_MASK) != EFFECT_FLAG_TYPE_AUXILIARY) {
5515                memcpy(&desc, &d, sizeof(effect_descriptor_t));
5516            }
5517        }
5518
5519        // Do not allow auxiliary effects on a session different from 0 (output mix)
5520        if (sessionId != AUDIO_SESSION_OUTPUT_MIX &&
5521             (desc.flags & EFFECT_FLAG_TYPE_MASK) == EFFECT_FLAG_TYPE_AUXILIARY) {
5522            lStatus = INVALID_OPERATION;
5523            goto Exit;
5524        }
5525
5526        // check recording permission for visualizer
5527        if ((memcmp(&desc.type, SL_IID_VISUALIZATION, sizeof(effect_uuid_t)) == 0) &&
5528            !recordingAllowed()) {
5529            lStatus = PERMISSION_DENIED;
5530            goto Exit;
5531        }
5532
5533        // return effect descriptor
5534        memcpy(pDesc, &desc, sizeof(effect_descriptor_t));
5535
5536        // If output is not specified try to find a matching audio session ID in one of the
5537        // output threads.
5538        // If output is 0 here, sessionId is neither SESSION_OUTPUT_STAGE nor SESSION_OUTPUT_MIX
5539        // because of code checking output when entering the function.
5540        // Note: io is never 0 when creating an effect on an input
5541        if (io == 0) {
5542             // look for the thread where the specified audio session is present
5543            for (size_t i = 0; i < mPlaybackThreads.size(); i++) {
5544                if (mPlaybackThreads.valueAt(i)->hasAudioSession(sessionId) != 0) {
5545                    io = mPlaybackThreads.keyAt(i);
5546                    break;
5547                }
5548            }
5549            if (io == 0) {
5550               for (size_t i = 0; i < mRecordThreads.size(); i++) {
5551                   if (mRecordThreads.valueAt(i)->hasAudioSession(sessionId) != 0) {
5552                       io = mRecordThreads.keyAt(i);
5553                       break;
5554                   }
5555               }
5556            }
5557            // If no output thread contains the requested session ID, default to
5558            // first output. The effect chain will be moved to the correct output
5559            // thread when a track with the same session ID is created
5560            if (io == 0 && mPlaybackThreads.size()) {
5561                io = mPlaybackThreads.keyAt(0);
5562            }
5563            ALOGV("createEffect() got io %d for effect %s", io, desc.name);
5564        }
5565        ThreadBase *thread = checkRecordThread_l(io);
5566        if (thread == NULL) {
5567            thread = checkPlaybackThread_l(io);
5568            if (thread == NULL) {
5569                ALOGE("createEffect() unknown output thread");
5570                lStatus = BAD_VALUE;
5571                goto Exit;
5572            }
5573        }
5574
5575        wclient = mClients.valueFor(pid);
5576
5577        if (wclient != NULL) {
5578            client = wclient.promote();
5579        } else {
5580            client = new Client(this, pid);
5581            mClients.add(pid, client);
5582        }
5583
5584        // create effect on selected output thread
5585        handle = thread->createEffect_l(client, effectClient, priority, sessionId,
5586                &desc, enabled, &lStatus);
5587        if (handle != 0 && id != NULL) {
5588            *id = handle->id();
5589        }
5590    }
5591
5592Exit:
5593    if(status) {
5594        *status = lStatus;
5595    }
5596    return handle;
5597}
5598
5599status_t AudioFlinger::moveEffects(int sessionId, int srcOutput, int dstOutput)
5600{
5601    ALOGV("moveEffects() session %d, srcOutput %d, dstOutput %d",
5602            sessionId, srcOutput, dstOutput);
5603    Mutex::Autolock _l(mLock);
5604    if (srcOutput == dstOutput) {
5605        ALOGW("moveEffects() same dst and src outputs %d", dstOutput);
5606        return NO_ERROR;
5607    }
5608    PlaybackThread *srcThread = checkPlaybackThread_l(srcOutput);
5609    if (srcThread == NULL) {
5610        ALOGW("moveEffects() bad srcOutput %d", srcOutput);
5611        return BAD_VALUE;
5612    }
5613    PlaybackThread *dstThread = checkPlaybackThread_l(dstOutput);
5614    if (dstThread == NULL) {
5615        ALOGW("moveEffects() bad dstOutput %d", dstOutput);
5616        return BAD_VALUE;
5617    }
5618
5619    Mutex::Autolock _dl(dstThread->mLock);
5620    Mutex::Autolock _sl(srcThread->mLock);
5621    moveEffectChain_l(sessionId, srcThread, dstThread, false);
5622
5623    return NO_ERROR;
5624}
5625
5626// moveEffectChain_l must be called with both srcThread and dstThread mLocks held
5627status_t AudioFlinger::moveEffectChain_l(int sessionId,
5628                                   AudioFlinger::PlaybackThread *srcThread,
5629                                   AudioFlinger::PlaybackThread *dstThread,
5630                                   bool reRegister)
5631{
5632    ALOGV("moveEffectChain_l() session %d from thread %p to thread %p",
5633            sessionId, srcThread, dstThread);
5634
5635    sp<EffectChain> chain = srcThread->getEffectChain_l(sessionId);
5636    if (chain == 0) {
5637        ALOGW("moveEffectChain_l() effect chain for session %d not on source thread %p",
5638                sessionId, srcThread);
5639        return INVALID_OPERATION;
5640    }
5641
5642    // remove chain first. This is useful only if reconfiguring effect chain on same output thread,
5643    // so that a new chain is created with correct parameters when first effect is added. This is
5644    // otherwise unnecessary as removeEffect_l() will remove the chain when last effect is
5645    // removed.
5646    srcThread->removeEffectChain_l(chain);
5647
5648    // transfer all effects one by one so that new effect chain is created on new thread with
5649    // correct buffer sizes and audio parameters and effect engines reconfigured accordingly
5650    int dstOutput = dstThread->id();
5651    sp<EffectChain> dstChain;
5652    uint32_t strategy = 0; // prevent compiler warning
5653    sp<EffectModule> effect = chain->getEffectFromId_l(0);
5654    while (effect != 0) {
5655        srcThread->removeEffect_l(effect);
5656        dstThread->addEffect_l(effect);
5657        // removeEffect_l() has stopped the effect if it was active so it must be restarted
5658        if (effect->state() == EffectModule::ACTIVE ||
5659                effect->state() == EffectModule::STOPPING) {
5660            effect->start();
5661        }
5662        // if the move request is not received from audio policy manager, the effect must be
5663        // re-registered with the new strategy and output
5664        if (dstChain == 0) {
5665            dstChain = effect->chain().promote();
5666            if (dstChain == 0) {
5667                ALOGW("moveEffectChain_l() cannot get chain from effect %p", effect.get());
5668                srcThread->addEffect_l(effect);
5669                return NO_INIT;
5670            }
5671            strategy = dstChain->strategy();
5672        }
5673        if (reRegister) {
5674            AudioSystem::unregisterEffect(effect->id());
5675            AudioSystem::registerEffect(&effect->desc(),
5676                                        dstOutput,
5677                                        strategy,
5678                                        sessionId,
5679                                        effect->id());
5680        }
5681        effect = chain->getEffectFromId_l(0);
5682    }
5683
5684    return NO_ERROR;
5685}
5686
5687
5688// PlaybackThread::createEffect_l() must be called with AudioFlinger::mLock held
5689sp<AudioFlinger::EffectHandle> AudioFlinger::ThreadBase::createEffect_l(
5690        const sp<AudioFlinger::Client>& client,
5691        const sp<IEffectClient>& effectClient,
5692        int32_t priority,
5693        int sessionId,
5694        effect_descriptor_t *desc,
5695        int *enabled,
5696        status_t *status
5697        )
5698{
5699    sp<EffectModule> effect;
5700    sp<EffectHandle> handle;
5701    status_t lStatus;
5702    sp<EffectChain> chain;
5703    bool chainCreated = false;
5704    bool effectCreated = false;
5705    bool effectRegistered = false;
5706
5707    lStatus = initCheck();
5708    if (lStatus != NO_ERROR) {
5709        ALOGW("createEffect_l() Audio driver not initialized.");
5710        goto Exit;
5711    }
5712
5713    // Do not allow effects with session ID 0 on direct output or duplicating threads
5714    // TODO: add rule for hw accelerated effects on direct outputs with non PCM format
5715    if (sessionId == AUDIO_SESSION_OUTPUT_MIX && mType != MIXER) {
5716        ALOGW("createEffect_l() Cannot add auxiliary effect %s to session %d",
5717                desc->name, sessionId);
5718        lStatus = BAD_VALUE;
5719        goto Exit;
5720    }
5721    // Only Pre processor effects are allowed on input threads and only on input threads
5722    if ((mType == RECORD &&
5723            (desc->flags & EFFECT_FLAG_TYPE_MASK) != EFFECT_FLAG_TYPE_PRE_PROC) ||
5724            (mType != RECORD &&
5725                    (desc->flags & EFFECT_FLAG_TYPE_MASK) == EFFECT_FLAG_TYPE_PRE_PROC)) {
5726        ALOGW("createEffect_l() effect %s (flags %08x) created on wrong thread type %d",
5727                desc->name, desc->flags, mType);
5728        lStatus = BAD_VALUE;
5729        goto Exit;
5730    }
5731
5732    ALOGV("createEffect_l() thread %p effect %s on session %d", this, desc->name, sessionId);
5733
5734    { // scope for mLock
5735        Mutex::Autolock _l(mLock);
5736
5737        // check for existing effect chain with the requested audio session
5738        chain = getEffectChain_l(sessionId);
5739        if (chain == 0) {
5740            // create a new chain for this session
5741            ALOGV("createEffect_l() new effect chain for session %d", sessionId);
5742            chain = new EffectChain(this, sessionId);
5743            addEffectChain_l(chain);
5744            chain->setStrategy(getStrategyForSession_l(sessionId));
5745            chainCreated = true;
5746        } else {
5747            effect = chain->getEffectFromDesc_l(desc);
5748        }
5749
5750        ALOGV("createEffect_l() got effect %p on chain %p", effect.get(), chain.get());
5751
5752        if (effect == 0) {
5753            int id = mAudioFlinger->nextUniqueId();
5754            // Check CPU and memory usage
5755            lStatus = AudioSystem::registerEffect(desc, mId, chain->strategy(), sessionId, id);
5756            if (lStatus != NO_ERROR) {
5757                goto Exit;
5758            }
5759            effectRegistered = true;
5760            // create a new effect module if none present in the chain
5761            effect = new EffectModule(this, chain, desc, id, sessionId);
5762            lStatus = effect->status();
5763            if (lStatus != NO_ERROR) {
5764                goto Exit;
5765            }
5766            lStatus = chain->addEffect_l(effect);
5767            if (lStatus != NO_ERROR) {
5768                goto Exit;
5769            }
5770            effectCreated = true;
5771
5772            effect->setDevice(mDevice);
5773            effect->setMode(mAudioFlinger->getMode());
5774        }
5775        // create effect handle and connect it to effect module
5776        handle = new EffectHandle(effect, client, effectClient, priority);
5777        lStatus = effect->addHandle(handle);
5778        if (enabled) {
5779            *enabled = (int)effect->isEnabled();
5780        }
5781    }
5782
5783Exit:
5784    if (lStatus != NO_ERROR && lStatus != ALREADY_EXISTS) {
5785        Mutex::Autolock _l(mLock);
5786        if (effectCreated) {
5787            chain->removeEffect_l(effect);
5788        }
5789        if (effectRegistered) {
5790            AudioSystem::unregisterEffect(effect->id());
5791        }
5792        if (chainCreated) {
5793            removeEffectChain_l(chain);
5794        }
5795        handle.clear();
5796    }
5797
5798    if(status) {
5799        *status = lStatus;
5800    }
5801    return handle;
5802}
5803
5804sp<AudioFlinger::EffectModule> AudioFlinger::ThreadBase::getEffect_l(int sessionId, int effectId)
5805{
5806    sp<EffectModule> effect;
5807
5808    sp<EffectChain> chain = getEffectChain_l(sessionId);
5809    if (chain != 0) {
5810        effect = chain->getEffectFromId_l(effectId);
5811    }
5812    return effect;
5813}
5814
5815// PlaybackThread::addEffect_l() must be called with AudioFlinger::mLock and
5816// PlaybackThread::mLock held
5817status_t AudioFlinger::ThreadBase::addEffect_l(const sp<EffectModule>& effect)
5818{
5819    // check for existing effect chain with the requested audio session
5820    int sessionId = effect->sessionId();
5821    sp<EffectChain> chain = getEffectChain_l(sessionId);
5822    bool chainCreated = false;
5823
5824    if (chain == 0) {
5825        // create a new chain for this session
5826        ALOGV("addEffect_l() new effect chain for session %d", sessionId);
5827        chain = new EffectChain(this, sessionId);
5828        addEffectChain_l(chain);
5829        chain->setStrategy(getStrategyForSession_l(sessionId));
5830        chainCreated = true;
5831    }
5832    ALOGV("addEffect_l() %p chain %p effect %p", this, chain.get(), effect.get());
5833
5834    if (chain->getEffectFromId_l(effect->id()) != 0) {
5835        ALOGW("addEffect_l() %p effect %s already present in chain %p",
5836                this, effect->desc().name, chain.get());
5837        return BAD_VALUE;
5838    }
5839
5840    status_t status = chain->addEffect_l(effect);
5841    if (status != NO_ERROR) {
5842        if (chainCreated) {
5843            removeEffectChain_l(chain);
5844        }
5845        return status;
5846    }
5847
5848    effect->setDevice(mDevice);
5849    effect->setMode(mAudioFlinger->getMode());
5850    return NO_ERROR;
5851}
5852
5853void AudioFlinger::ThreadBase::removeEffect_l(const sp<EffectModule>& effect) {
5854
5855    ALOGV("removeEffect_l() %p effect %p", this, effect.get());
5856    effect_descriptor_t desc = effect->desc();
5857    if ((desc.flags & EFFECT_FLAG_TYPE_MASK) == EFFECT_FLAG_TYPE_AUXILIARY) {
5858        detachAuxEffect_l(effect->id());
5859    }
5860
5861    sp<EffectChain> chain = effect->chain().promote();
5862    if (chain != 0) {
5863        // remove effect chain if removing last effect
5864        if (chain->removeEffect_l(effect) == 0) {
5865            removeEffectChain_l(chain);
5866        }
5867    } else {
5868        ALOGW("removeEffect_l() %p cannot promote chain for effect %p", this, effect.get());
5869    }
5870}
5871
5872void AudioFlinger::ThreadBase::lockEffectChains_l(
5873        Vector<sp <AudioFlinger::EffectChain> >& effectChains)
5874{
5875    effectChains = mEffectChains;
5876    for (size_t i = 0; i < mEffectChains.size(); i++) {
5877        mEffectChains[i]->lock();
5878    }
5879}
5880
5881void AudioFlinger::ThreadBase::unlockEffectChains(
5882        Vector<sp <AudioFlinger::EffectChain> >& effectChains)
5883{
5884    for (size_t i = 0; i < effectChains.size(); i++) {
5885        effectChains[i]->unlock();
5886    }
5887}
5888
5889sp<AudioFlinger::EffectChain> AudioFlinger::ThreadBase::getEffectChain(int sessionId)
5890{
5891    Mutex::Autolock _l(mLock);
5892    return getEffectChain_l(sessionId);
5893}
5894
5895sp<AudioFlinger::EffectChain> AudioFlinger::ThreadBase::getEffectChain_l(int sessionId)
5896{
5897    sp<EffectChain> chain;
5898
5899    size_t size = mEffectChains.size();
5900    for (size_t i = 0; i < size; i++) {
5901        if (mEffectChains[i]->sessionId() == sessionId) {
5902            chain = mEffectChains[i];
5903            break;
5904        }
5905    }
5906    return chain;
5907}
5908
5909void AudioFlinger::ThreadBase::setMode(audio_mode_t mode)
5910{
5911    Mutex::Autolock _l(mLock);
5912    size_t size = mEffectChains.size();
5913    for (size_t i = 0; i < size; i++) {
5914        mEffectChains[i]->setMode_l(mode);
5915    }
5916}
5917
5918void AudioFlinger::ThreadBase::disconnectEffect(const sp<EffectModule>& effect,
5919                                                    const wp<EffectHandle>& handle,
5920                                                    bool unpiniflast) {
5921
5922    Mutex::Autolock _l(mLock);
5923    ALOGV("disconnectEffect() %p effect %p", this, effect.get());
5924    // delete the effect module if removing last handle on it
5925    if (effect->removeHandle(handle) == 0) {
5926        if (!effect->isPinned() || unpiniflast) {
5927            removeEffect_l(effect);
5928            AudioSystem::unregisterEffect(effect->id());
5929        }
5930    }
5931}
5932
5933status_t AudioFlinger::PlaybackThread::addEffectChain_l(const sp<EffectChain>& chain)
5934{
5935    int session = chain->sessionId();
5936    int16_t *buffer = mMixBuffer;
5937    bool ownsBuffer = false;
5938
5939    ALOGV("addEffectChain_l() %p on thread %p for session %d", chain.get(), this, session);
5940    if (session > 0) {
5941        // Only one effect chain can be present in direct output thread and it uses
5942        // the mix buffer as input
5943        if (mType != DIRECT) {
5944            size_t numSamples = mFrameCount * mChannelCount;
5945            buffer = new int16_t[numSamples];
5946            memset(buffer, 0, numSamples * sizeof(int16_t));
5947            ALOGV("addEffectChain_l() creating new input buffer %p session %d", buffer, session);
5948            ownsBuffer = true;
5949        }
5950
5951        // Attach all tracks with same session ID to this chain.
5952        for (size_t i = 0; i < mTracks.size(); ++i) {
5953            sp<Track> track = mTracks[i];
5954            if (session == track->sessionId()) {
5955                ALOGV("addEffectChain_l() track->setMainBuffer track %p buffer %p", track.get(), buffer);
5956                track->setMainBuffer(buffer);
5957                chain->incTrackCnt();
5958            }
5959        }
5960
5961        // indicate all active tracks in the chain
5962        for (size_t i = 0 ; i < mActiveTracks.size() ; ++i) {
5963            sp<Track> track = mActiveTracks[i].promote();
5964            if (track == 0) continue;
5965            if (session == track->sessionId()) {
5966                ALOGV("addEffectChain_l() activating track %p on session %d", track.get(), session);
5967                chain->incActiveTrackCnt();
5968            }
5969        }
5970    }
5971
5972    chain->setInBuffer(buffer, ownsBuffer);
5973    chain->setOutBuffer(mMixBuffer);
5974    // Effect chain for session AUDIO_SESSION_OUTPUT_STAGE is inserted at end of effect
5975    // chains list in order to be processed last as it contains output stage effects
5976    // Effect chain for session AUDIO_SESSION_OUTPUT_MIX is inserted before
5977    // session AUDIO_SESSION_OUTPUT_STAGE to be processed
5978    // after track specific effects and before output stage
5979    // It is therefore mandatory that AUDIO_SESSION_OUTPUT_MIX == 0 and
5980    // that AUDIO_SESSION_OUTPUT_STAGE < AUDIO_SESSION_OUTPUT_MIX
5981    // Effect chain for other sessions are inserted at beginning of effect
5982    // chains list to be processed before output mix effects. Relative order between other
5983    // sessions is not important
5984    size_t size = mEffectChains.size();
5985    size_t i = 0;
5986    for (i = 0; i < size; i++) {
5987        if (mEffectChains[i]->sessionId() < session) break;
5988    }
5989    mEffectChains.insertAt(chain, i);
5990    checkSuspendOnAddEffectChain_l(chain);
5991
5992    return NO_ERROR;
5993}
5994
5995size_t AudioFlinger::PlaybackThread::removeEffectChain_l(const sp<EffectChain>& chain)
5996{
5997    int session = chain->sessionId();
5998
5999    ALOGV("removeEffectChain_l() %p from thread %p for session %d", chain.get(), this, session);
6000
6001    for (size_t i = 0; i < mEffectChains.size(); i++) {
6002        if (chain == mEffectChains[i]) {
6003            mEffectChains.removeAt(i);
6004            // detach all active tracks from the chain
6005            for (size_t i = 0 ; i < mActiveTracks.size() ; ++i) {
6006                sp<Track> track = mActiveTracks[i].promote();
6007                if (track == 0) continue;
6008                if (session == track->sessionId()) {
6009                    ALOGV("removeEffectChain_l(): stopping track on chain %p for session Id: %d",
6010                            chain.get(), session);
6011                    chain->decActiveTrackCnt();
6012                }
6013            }
6014
6015            // detach all tracks with same session ID from this chain
6016            for (size_t i = 0; i < mTracks.size(); ++i) {
6017                sp<Track> track = mTracks[i];
6018                if (session == track->sessionId()) {
6019                    track->setMainBuffer(mMixBuffer);
6020                    chain->decTrackCnt();
6021                }
6022            }
6023            break;
6024        }
6025    }
6026    return mEffectChains.size();
6027}
6028
6029status_t AudioFlinger::PlaybackThread::attachAuxEffect(
6030        const sp<AudioFlinger::PlaybackThread::Track> track, int EffectId)
6031{
6032    Mutex::Autolock _l(mLock);
6033    return attachAuxEffect_l(track, EffectId);
6034}
6035
6036status_t AudioFlinger::PlaybackThread::attachAuxEffect_l(
6037        const sp<AudioFlinger::PlaybackThread::Track> track, int EffectId)
6038{
6039    status_t status = NO_ERROR;
6040
6041    if (EffectId == 0) {
6042        track->setAuxBuffer(0, NULL);
6043    } else {
6044        // Auxiliary effects are always in audio session AUDIO_SESSION_OUTPUT_MIX
6045        sp<EffectModule> effect = getEffect_l(AUDIO_SESSION_OUTPUT_MIX, EffectId);
6046        if (effect != 0) {
6047            if ((effect->desc().flags & EFFECT_FLAG_TYPE_MASK) == EFFECT_FLAG_TYPE_AUXILIARY) {
6048                track->setAuxBuffer(EffectId, (int32_t *)effect->inBuffer());
6049            } else {
6050                status = INVALID_OPERATION;
6051            }
6052        } else {
6053            status = BAD_VALUE;
6054        }
6055    }
6056    return status;
6057}
6058
6059void AudioFlinger::PlaybackThread::detachAuxEffect_l(int effectId)
6060{
6061     for (size_t i = 0; i < mTracks.size(); ++i) {
6062        sp<Track> track = mTracks[i];
6063        if (track->auxEffectId() == effectId) {
6064            attachAuxEffect_l(track, 0);
6065        }
6066    }
6067}
6068
6069status_t AudioFlinger::RecordThread::addEffectChain_l(const sp<EffectChain>& chain)
6070{
6071    // only one chain per input thread
6072    if (mEffectChains.size() != 0) {
6073        return INVALID_OPERATION;
6074    }
6075    ALOGV("addEffectChain_l() %p on thread %p", chain.get(), this);
6076
6077    chain->setInBuffer(NULL);
6078    chain->setOutBuffer(NULL);
6079
6080    checkSuspendOnAddEffectChain_l(chain);
6081
6082    mEffectChains.add(chain);
6083
6084    return NO_ERROR;
6085}
6086
6087size_t AudioFlinger::RecordThread::removeEffectChain_l(const sp<EffectChain>& chain)
6088{
6089    ALOGV("removeEffectChain_l() %p from thread %p", chain.get(), this);
6090    ALOGW_IF(mEffectChains.size() != 1,
6091            "removeEffectChain_l() %p invalid chain size %d on thread %p",
6092            chain.get(), mEffectChains.size(), this);
6093    if (mEffectChains.size() == 1) {
6094        mEffectChains.removeAt(0);
6095    }
6096    return 0;
6097}
6098
6099// ----------------------------------------------------------------------------
6100//  EffectModule implementation
6101// ----------------------------------------------------------------------------
6102
6103#undef LOG_TAG
6104#define LOG_TAG "AudioFlinger::EffectModule"
6105
6106AudioFlinger::EffectModule::EffectModule(const wp<ThreadBase>& wThread,
6107                                        const wp<AudioFlinger::EffectChain>& chain,
6108                                        effect_descriptor_t *desc,
6109                                        int id,
6110                                        int sessionId)
6111    : mThread(wThread), mChain(chain), mId(id), mSessionId(sessionId), mEffectInterface(NULL),
6112      mStatus(NO_INIT), mState(IDLE), mSuspended(false)
6113{
6114    ALOGV("Constructor %p", this);
6115    int lStatus;
6116    sp<ThreadBase> thread = mThread.promote();
6117    if (thread == 0) {
6118        return;
6119    }
6120
6121    memcpy(&mDescriptor, desc, sizeof(effect_descriptor_t));
6122
6123    // create effect engine from effect factory
6124    mStatus = EffectCreate(&desc->uuid, sessionId, thread->id(), &mEffectInterface);
6125
6126    if (mStatus != NO_ERROR) {
6127        return;
6128    }
6129    lStatus = init();
6130    if (lStatus < 0) {
6131        mStatus = lStatus;
6132        goto Error;
6133    }
6134
6135    if (mSessionId > AUDIO_SESSION_OUTPUT_MIX) {
6136        mPinned = true;
6137    }
6138    ALOGV("Constructor success name %s, Interface %p", mDescriptor.name, mEffectInterface);
6139    return;
6140Error:
6141    EffectRelease(mEffectInterface);
6142    mEffectInterface = NULL;
6143    ALOGV("Constructor Error %d", mStatus);
6144}
6145
6146AudioFlinger::EffectModule::~EffectModule()
6147{
6148    ALOGV("Destructor %p", this);
6149    if (mEffectInterface != NULL) {
6150        if ((mDescriptor.flags & EFFECT_FLAG_TYPE_MASK) == EFFECT_FLAG_TYPE_PRE_PROC ||
6151                (mDescriptor.flags & EFFECT_FLAG_TYPE_MASK) == EFFECT_FLAG_TYPE_POST_PROC) {
6152            sp<ThreadBase> thread = mThread.promote();
6153            if (thread != 0) {
6154                audio_stream_t *stream = thread->stream();
6155                if (stream != NULL) {
6156                    stream->remove_audio_effect(stream, mEffectInterface);
6157                }
6158            }
6159        }
6160        // release effect engine
6161        EffectRelease(mEffectInterface);
6162    }
6163}
6164
6165status_t AudioFlinger::EffectModule::addHandle(sp<EffectHandle>& handle)
6166{
6167    status_t status;
6168
6169    Mutex::Autolock _l(mLock);
6170    // First handle in mHandles has highest priority and controls the effect module
6171    int priority = handle->priority();
6172    size_t size = mHandles.size();
6173    sp<EffectHandle> h;
6174    size_t i;
6175    for (i = 0; i < size; i++) {
6176        h = mHandles[i].promote();
6177        if (h == 0) continue;
6178        if (h->priority() <= priority) break;
6179    }
6180    // if inserted in first place, move effect control from previous owner to this handle
6181    if (i == 0) {
6182        bool enabled = false;
6183        if (h != 0) {
6184            enabled = h->enabled();
6185            h->setControl(false/*hasControl*/, true /*signal*/, enabled /*enabled*/);
6186        }
6187        handle->setControl(true /*hasControl*/, false /*signal*/, enabled /*enabled*/);
6188        status = NO_ERROR;
6189    } else {
6190        status = ALREADY_EXISTS;
6191    }
6192    ALOGV("addHandle() %p added handle %p in position %d", this, handle.get(), i);
6193    mHandles.insertAt(handle, i);
6194    return status;
6195}
6196
6197size_t AudioFlinger::EffectModule::removeHandle(const wp<EffectHandle>& handle)
6198{
6199    Mutex::Autolock _l(mLock);
6200    size_t size = mHandles.size();
6201    size_t i;
6202    for (i = 0; i < size; i++) {
6203        if (mHandles[i] == handle) break;
6204    }
6205    if (i == size) {
6206        return size;
6207    }
6208    ALOGV("removeHandle() %p removed handle %p in position %d", this, handle.unsafe_get(), i);
6209
6210    bool enabled = false;
6211    EffectHandle *hdl = handle.unsafe_get();
6212    if (hdl) {
6213        ALOGV("removeHandle() unsafe_get OK");
6214        enabled = hdl->enabled();
6215    }
6216    mHandles.removeAt(i);
6217    size = mHandles.size();
6218    // if removed from first place, move effect control from this handle to next in line
6219    if (i == 0 && size != 0) {
6220        sp<EffectHandle> h = mHandles[0].promote();
6221        if (h != 0) {
6222            h->setControl(true /*hasControl*/, true /*signal*/ , enabled /*enabled*/);
6223        }
6224    }
6225
6226    // Prevent calls to process() and other functions on effect interface from now on.
6227    // The effect engine will be released by the destructor when the last strong reference on
6228    // this object is released which can happen after next process is called.
6229    if (size == 0 && !mPinned) {
6230        mState = DESTROYED;
6231    }
6232
6233    return size;
6234}
6235
6236sp<AudioFlinger::EffectHandle> AudioFlinger::EffectModule::controlHandle()
6237{
6238    Mutex::Autolock _l(mLock);
6239    sp<EffectHandle> handle;
6240    if (mHandles.size() != 0) {
6241        handle = mHandles[0].promote();
6242    }
6243    return handle;
6244}
6245
6246void AudioFlinger::EffectModule::disconnect(const wp<EffectHandle>& handle, bool unpiniflast)
6247{
6248    ALOGV("disconnect() %p handle %p ", this, handle.unsafe_get());
6249    // keep a strong reference on this EffectModule to avoid calling the
6250    // destructor before we exit
6251    sp<EffectModule> keep(this);
6252    {
6253        sp<ThreadBase> thread = mThread.promote();
6254        if (thread != 0) {
6255            thread->disconnectEffect(keep, handle, unpiniflast);
6256        }
6257    }
6258}
6259
6260void AudioFlinger::EffectModule::updateState() {
6261    Mutex::Autolock _l(mLock);
6262
6263    switch (mState) {
6264    case RESTART:
6265        reset_l();
6266        // FALL THROUGH
6267
6268    case STARTING:
6269        // clear auxiliary effect input buffer for next accumulation
6270        if ((mDescriptor.flags & EFFECT_FLAG_TYPE_MASK) == EFFECT_FLAG_TYPE_AUXILIARY) {
6271            memset(mConfig.inputCfg.buffer.raw,
6272                   0,
6273                   mConfig.inputCfg.buffer.frameCount*sizeof(int32_t));
6274        }
6275        start_l();
6276        mState = ACTIVE;
6277        break;
6278    case STOPPING:
6279        stop_l();
6280        mDisableWaitCnt = mMaxDisableWaitCnt;
6281        mState = STOPPED;
6282        break;
6283    case STOPPED:
6284        // mDisableWaitCnt is forced to 1 by process() when the engine indicates the end of the
6285        // turn off sequence.
6286        if (--mDisableWaitCnt == 0) {
6287            reset_l();
6288            mState = IDLE;
6289        }
6290        break;
6291    default: //IDLE , ACTIVE, DESTROYED
6292        break;
6293    }
6294}
6295
6296void AudioFlinger::EffectModule::process()
6297{
6298    Mutex::Autolock _l(mLock);
6299
6300    if (mState == DESTROYED || mEffectInterface == NULL ||
6301            mConfig.inputCfg.buffer.raw == NULL ||
6302            mConfig.outputCfg.buffer.raw == NULL) {
6303        return;
6304    }
6305
6306    if (isProcessEnabled()) {
6307        // do 32 bit to 16 bit conversion for auxiliary effect input buffer
6308        if ((mDescriptor.flags & EFFECT_FLAG_TYPE_MASK) == EFFECT_FLAG_TYPE_AUXILIARY) {
6309            ditherAndClamp(mConfig.inputCfg.buffer.s32,
6310                                        mConfig.inputCfg.buffer.s32,
6311                                        mConfig.inputCfg.buffer.frameCount/2);
6312        }
6313
6314        // do the actual processing in the effect engine
6315        int ret = (*mEffectInterface)->process(mEffectInterface,
6316                                               &mConfig.inputCfg.buffer,
6317                                               &mConfig.outputCfg.buffer);
6318
6319        // force transition to IDLE state when engine is ready
6320        if (mState == STOPPED && ret == -ENODATA) {
6321            mDisableWaitCnt = 1;
6322        }
6323
6324        // clear auxiliary effect input buffer for next accumulation
6325        if ((mDescriptor.flags & EFFECT_FLAG_TYPE_MASK) == EFFECT_FLAG_TYPE_AUXILIARY) {
6326            memset(mConfig.inputCfg.buffer.raw, 0,
6327                   mConfig.inputCfg.buffer.frameCount*sizeof(int32_t));
6328        }
6329    } else if ((mDescriptor.flags & EFFECT_FLAG_TYPE_MASK) == EFFECT_FLAG_TYPE_INSERT &&
6330                mConfig.inputCfg.buffer.raw != mConfig.outputCfg.buffer.raw) {
6331        // If an insert effect is idle and input buffer is different from output buffer,
6332        // accumulate input onto output
6333        sp<EffectChain> chain = mChain.promote();
6334        if (chain != 0 && chain->activeTrackCnt() != 0) {
6335            size_t frameCnt = mConfig.inputCfg.buffer.frameCount * 2;  //always stereo here
6336            int16_t *in = mConfig.inputCfg.buffer.s16;
6337            int16_t *out = mConfig.outputCfg.buffer.s16;
6338            for (size_t i = 0; i < frameCnt; i++) {
6339                out[i] = clamp16((int32_t)out[i] + (int32_t)in[i]);
6340            }
6341        }
6342    }
6343}
6344
6345void AudioFlinger::EffectModule::reset_l()
6346{
6347    if (mEffectInterface == NULL) {
6348        return;
6349    }
6350    (*mEffectInterface)->command(mEffectInterface, EFFECT_CMD_RESET, 0, NULL, 0, NULL);
6351}
6352
6353status_t AudioFlinger::EffectModule::configure()
6354{
6355    uint32_t channels;
6356    if (mEffectInterface == NULL) {
6357        return NO_INIT;
6358    }
6359
6360    sp<ThreadBase> thread = mThread.promote();
6361    if (thread == 0) {
6362        return DEAD_OBJECT;
6363    }
6364
6365    // TODO: handle configuration of effects replacing track process
6366    if (thread->channelCount() == 1) {
6367        channels = AUDIO_CHANNEL_OUT_MONO;
6368    } else {
6369        channels = AUDIO_CHANNEL_OUT_STEREO;
6370    }
6371
6372    if ((mDescriptor.flags & EFFECT_FLAG_TYPE_MASK) == EFFECT_FLAG_TYPE_AUXILIARY) {
6373        mConfig.inputCfg.channels = AUDIO_CHANNEL_OUT_MONO;
6374    } else {
6375        mConfig.inputCfg.channels = channels;
6376    }
6377    mConfig.outputCfg.channels = channels;
6378    mConfig.inputCfg.format = AUDIO_FORMAT_PCM_16_BIT;
6379    mConfig.outputCfg.format = AUDIO_FORMAT_PCM_16_BIT;
6380    mConfig.inputCfg.samplingRate = thread->sampleRate();
6381    mConfig.outputCfg.samplingRate = mConfig.inputCfg.samplingRate;
6382    mConfig.inputCfg.bufferProvider.cookie = NULL;
6383    mConfig.inputCfg.bufferProvider.getBuffer = NULL;
6384    mConfig.inputCfg.bufferProvider.releaseBuffer = NULL;
6385    mConfig.outputCfg.bufferProvider.cookie = NULL;
6386    mConfig.outputCfg.bufferProvider.getBuffer = NULL;
6387    mConfig.outputCfg.bufferProvider.releaseBuffer = NULL;
6388    mConfig.inputCfg.accessMode = EFFECT_BUFFER_ACCESS_READ;
6389    // Insert effect:
6390    // - in session AUDIO_SESSION_OUTPUT_MIX or AUDIO_SESSION_OUTPUT_STAGE,
6391    // always overwrites output buffer: input buffer == output buffer
6392    // - in other sessions:
6393    //      last effect in the chain accumulates in output buffer: input buffer != output buffer
6394    //      other effect: overwrites output buffer: input buffer == output buffer
6395    // Auxiliary effect:
6396    //      accumulates in output buffer: input buffer != output buffer
6397    // Therefore: accumulate <=> input buffer != output buffer
6398    if (mConfig.inputCfg.buffer.raw != mConfig.outputCfg.buffer.raw) {
6399        mConfig.outputCfg.accessMode = EFFECT_BUFFER_ACCESS_ACCUMULATE;
6400    } else {
6401        mConfig.outputCfg.accessMode = EFFECT_BUFFER_ACCESS_WRITE;
6402    }
6403    mConfig.inputCfg.mask = EFFECT_CONFIG_ALL;
6404    mConfig.outputCfg.mask = EFFECT_CONFIG_ALL;
6405    mConfig.inputCfg.buffer.frameCount = thread->frameCount();
6406    mConfig.outputCfg.buffer.frameCount = mConfig.inputCfg.buffer.frameCount;
6407
6408    ALOGV("configure() %p thread %p buffer %p framecount %d",
6409            this, thread.get(), mConfig.inputCfg.buffer.raw, mConfig.inputCfg.buffer.frameCount);
6410
6411    status_t cmdStatus;
6412    uint32_t size = sizeof(int);
6413    status_t status = (*mEffectInterface)->command(mEffectInterface,
6414                                                   EFFECT_CMD_SET_CONFIG,
6415                                                   sizeof(effect_config_t),
6416                                                   &mConfig,
6417                                                   &size,
6418                                                   &cmdStatus);
6419    if (status == 0) {
6420        status = cmdStatus;
6421    }
6422
6423    mMaxDisableWaitCnt = (MAX_DISABLE_TIME_MS * mConfig.outputCfg.samplingRate) /
6424            (1000 * mConfig.outputCfg.buffer.frameCount);
6425
6426    return status;
6427}
6428
6429status_t AudioFlinger::EffectModule::init()
6430{
6431    Mutex::Autolock _l(mLock);
6432    if (mEffectInterface == NULL) {
6433        return NO_INIT;
6434    }
6435    status_t cmdStatus;
6436    uint32_t size = sizeof(status_t);
6437    status_t status = (*mEffectInterface)->command(mEffectInterface,
6438                                                   EFFECT_CMD_INIT,
6439                                                   0,
6440                                                   NULL,
6441                                                   &size,
6442                                                   &cmdStatus);
6443    if (status == 0) {
6444        status = cmdStatus;
6445    }
6446    return status;
6447}
6448
6449status_t AudioFlinger::EffectModule::start()
6450{
6451    Mutex::Autolock _l(mLock);
6452    return start_l();
6453}
6454
6455status_t AudioFlinger::EffectModule::start_l()
6456{
6457    if (mEffectInterface == NULL) {
6458        return NO_INIT;
6459    }
6460    status_t cmdStatus;
6461    uint32_t size = sizeof(status_t);
6462    status_t status = (*mEffectInterface)->command(mEffectInterface,
6463                                                   EFFECT_CMD_ENABLE,
6464                                                   0,
6465                                                   NULL,
6466                                                   &size,
6467                                                   &cmdStatus);
6468    if (status == 0) {
6469        status = cmdStatus;
6470    }
6471    if (status == 0 &&
6472            ((mDescriptor.flags & EFFECT_FLAG_TYPE_MASK) == EFFECT_FLAG_TYPE_PRE_PROC ||
6473             (mDescriptor.flags & EFFECT_FLAG_TYPE_MASK) == EFFECT_FLAG_TYPE_POST_PROC)) {
6474        sp<ThreadBase> thread = mThread.promote();
6475        if (thread != 0) {
6476            audio_stream_t *stream = thread->stream();
6477            if (stream != NULL) {
6478                stream->add_audio_effect(stream, mEffectInterface);
6479            }
6480        }
6481    }
6482    return status;
6483}
6484
6485status_t AudioFlinger::EffectModule::stop()
6486{
6487    Mutex::Autolock _l(mLock);
6488    return stop_l();
6489}
6490
6491status_t AudioFlinger::EffectModule::stop_l()
6492{
6493    if (mEffectInterface == NULL) {
6494        return NO_INIT;
6495    }
6496    status_t cmdStatus;
6497    uint32_t size = sizeof(status_t);
6498    status_t status = (*mEffectInterface)->command(mEffectInterface,
6499                                                   EFFECT_CMD_DISABLE,
6500                                                   0,
6501                                                   NULL,
6502                                                   &size,
6503                                                   &cmdStatus);
6504    if (status == 0) {
6505        status = cmdStatus;
6506    }
6507    if (status == 0 &&
6508            ((mDescriptor.flags & EFFECT_FLAG_TYPE_MASK) == EFFECT_FLAG_TYPE_PRE_PROC ||
6509             (mDescriptor.flags & EFFECT_FLAG_TYPE_MASK) == EFFECT_FLAG_TYPE_POST_PROC)) {
6510        sp<ThreadBase> thread = mThread.promote();
6511        if (thread != 0) {
6512            audio_stream_t *stream = thread->stream();
6513            if (stream != NULL) {
6514                stream->remove_audio_effect(stream, mEffectInterface);
6515            }
6516        }
6517    }
6518    return status;
6519}
6520
6521status_t AudioFlinger::EffectModule::command(uint32_t cmdCode,
6522                                             uint32_t cmdSize,
6523                                             void *pCmdData,
6524                                             uint32_t *replySize,
6525                                             void *pReplyData)
6526{
6527    Mutex::Autolock _l(mLock);
6528//    ALOGV("command(), cmdCode: %d, mEffectInterface: %p", cmdCode, mEffectInterface);
6529
6530    if (mState == DESTROYED || mEffectInterface == NULL) {
6531        return NO_INIT;
6532    }
6533    status_t status = (*mEffectInterface)->command(mEffectInterface,
6534                                                   cmdCode,
6535                                                   cmdSize,
6536                                                   pCmdData,
6537                                                   replySize,
6538                                                   pReplyData);
6539    if (cmdCode != EFFECT_CMD_GET_PARAM && status == NO_ERROR) {
6540        uint32_t size = (replySize == NULL) ? 0 : *replySize;
6541        for (size_t i = 1; i < mHandles.size(); i++) {
6542            sp<EffectHandle> h = mHandles[i].promote();
6543            if (h != 0) {
6544                h->commandExecuted(cmdCode, cmdSize, pCmdData, size, pReplyData);
6545            }
6546        }
6547    }
6548    return status;
6549}
6550
6551status_t AudioFlinger::EffectModule::setEnabled(bool enabled)
6552{
6553
6554    Mutex::Autolock _l(mLock);
6555    ALOGV("setEnabled %p enabled %d", this, enabled);
6556
6557    if (enabled != isEnabled()) {
6558        status_t status = AudioSystem::setEffectEnabled(mId, enabled);
6559        if (enabled && status != NO_ERROR) {
6560            return status;
6561        }
6562
6563        switch (mState) {
6564        // going from disabled to enabled
6565        case IDLE:
6566            mState = STARTING;
6567            break;
6568        case STOPPED:
6569            mState = RESTART;
6570            break;
6571        case STOPPING:
6572            mState = ACTIVE;
6573            break;
6574
6575        // going from enabled to disabled
6576        case RESTART:
6577            mState = STOPPED;
6578            break;
6579        case STARTING:
6580            mState = IDLE;
6581            break;
6582        case ACTIVE:
6583            mState = STOPPING;
6584            break;
6585        case DESTROYED:
6586            return NO_ERROR; // simply ignore as we are being destroyed
6587        }
6588        for (size_t i = 1; i < mHandles.size(); i++) {
6589            sp<EffectHandle> h = mHandles[i].promote();
6590            if (h != 0) {
6591                h->setEnabled(enabled);
6592            }
6593        }
6594    }
6595    return NO_ERROR;
6596}
6597
6598bool AudioFlinger::EffectModule::isEnabled()
6599{
6600    switch (mState) {
6601    case RESTART:
6602    case STARTING:
6603    case ACTIVE:
6604        return true;
6605    case IDLE:
6606    case STOPPING:
6607    case STOPPED:
6608    case DESTROYED:
6609    default:
6610        return false;
6611    }
6612}
6613
6614bool AudioFlinger::EffectModule::isProcessEnabled()
6615{
6616    switch (mState) {
6617    case RESTART:
6618    case ACTIVE:
6619    case STOPPING:
6620    case STOPPED:
6621        return true;
6622    case IDLE:
6623    case STARTING:
6624    case DESTROYED:
6625    default:
6626        return false;
6627    }
6628}
6629
6630status_t AudioFlinger::EffectModule::setVolume(uint32_t *left, uint32_t *right, bool controller)
6631{
6632    Mutex::Autolock _l(mLock);
6633    status_t status = NO_ERROR;
6634
6635    // Send volume indication if EFFECT_FLAG_VOLUME_IND is set and read back altered volume
6636    // if controller flag is set (Note that controller == TRUE => EFFECT_FLAG_VOLUME_CTRL set)
6637    if (isProcessEnabled() &&
6638            ((mDescriptor.flags & EFFECT_FLAG_VOLUME_MASK) == EFFECT_FLAG_VOLUME_CTRL ||
6639            (mDescriptor.flags & EFFECT_FLAG_VOLUME_MASK) == EFFECT_FLAG_VOLUME_IND)) {
6640        status_t cmdStatus;
6641        uint32_t volume[2];
6642        uint32_t *pVolume = NULL;
6643        uint32_t size = sizeof(volume);
6644        volume[0] = *left;
6645        volume[1] = *right;
6646        if (controller) {
6647            pVolume = volume;
6648        }
6649        status = (*mEffectInterface)->command(mEffectInterface,
6650                                              EFFECT_CMD_SET_VOLUME,
6651                                              size,
6652                                              volume,
6653                                              &size,
6654                                              pVolume);
6655        if (controller && status == NO_ERROR && size == sizeof(volume)) {
6656            *left = volume[0];
6657            *right = volume[1];
6658        }
6659    }
6660    return status;
6661}
6662
6663status_t AudioFlinger::EffectModule::setDevice(uint32_t device)
6664{
6665    Mutex::Autolock _l(mLock);
6666    status_t status = NO_ERROR;
6667    if (device && (mDescriptor.flags & EFFECT_FLAG_DEVICE_MASK) == EFFECT_FLAG_DEVICE_IND) {
6668        // audio pre processing modules on RecordThread can receive both output and
6669        // input device indication in the same call
6670        uint32_t dev = device & AUDIO_DEVICE_OUT_ALL;
6671        if (dev) {
6672            status_t cmdStatus;
6673            uint32_t size = sizeof(status_t);
6674
6675            status = (*mEffectInterface)->command(mEffectInterface,
6676                                                  EFFECT_CMD_SET_DEVICE,
6677                                                  sizeof(uint32_t),
6678                                                  &dev,
6679                                                  &size,
6680                                                  &cmdStatus);
6681            if (status == NO_ERROR) {
6682                status = cmdStatus;
6683            }
6684        }
6685        dev = device & AUDIO_DEVICE_IN_ALL;
6686        if (dev) {
6687            status_t cmdStatus;
6688            uint32_t size = sizeof(status_t);
6689
6690            status_t status2 = (*mEffectInterface)->command(mEffectInterface,
6691                                                  EFFECT_CMD_SET_INPUT_DEVICE,
6692                                                  sizeof(uint32_t),
6693                                                  &dev,
6694                                                  &size,
6695                                                  &cmdStatus);
6696            if (status2 == NO_ERROR) {
6697                status2 = cmdStatus;
6698            }
6699            if (status == NO_ERROR) {
6700                status = status2;
6701            }
6702        }
6703    }
6704    return status;
6705}
6706
6707status_t AudioFlinger::EffectModule::setMode(audio_mode_t mode)
6708{
6709    Mutex::Autolock _l(mLock);
6710    status_t status = NO_ERROR;
6711    if ((mDescriptor.flags & EFFECT_FLAG_AUDIO_MODE_MASK) == EFFECT_FLAG_AUDIO_MODE_IND) {
6712        status_t cmdStatus;
6713        uint32_t size = sizeof(status_t);
6714        status = (*mEffectInterface)->command(mEffectInterface,
6715                                              EFFECT_CMD_SET_AUDIO_MODE,
6716                                              sizeof(audio_mode_t),
6717                                              &mode,
6718                                              &size,
6719                                              &cmdStatus);
6720        if (status == NO_ERROR) {
6721            status = cmdStatus;
6722        }
6723    }
6724    return status;
6725}
6726
6727void AudioFlinger::EffectModule::setSuspended(bool suspended)
6728{
6729    Mutex::Autolock _l(mLock);
6730    mSuspended = suspended;
6731}
6732
6733bool AudioFlinger::EffectModule::suspended() const
6734{
6735    Mutex::Autolock _l(mLock);
6736    return mSuspended;
6737}
6738
6739status_t AudioFlinger::EffectModule::dump(int fd, const Vector<String16>& args)
6740{
6741    const size_t SIZE = 256;
6742    char buffer[SIZE];
6743    String8 result;
6744
6745    snprintf(buffer, SIZE, "\tEffect ID %d:\n", mId);
6746    result.append(buffer);
6747
6748    bool locked = tryLock(mLock);
6749    // failed to lock - AudioFlinger is probably deadlocked
6750    if (!locked) {
6751        result.append("\t\tCould not lock Fx mutex:\n");
6752    }
6753
6754    result.append("\t\tSession Status State Engine:\n");
6755    snprintf(buffer, SIZE, "\t\t%05d   %03d    %03d   0x%08x\n",
6756            mSessionId, mStatus, mState, (uint32_t)mEffectInterface);
6757    result.append(buffer);
6758
6759    result.append("\t\tDescriptor:\n");
6760    snprintf(buffer, SIZE, "\t\t- UUID: %08X-%04X-%04X-%04X-%02X%02X%02X%02X%02X%02X\n",
6761            mDescriptor.uuid.timeLow, mDescriptor.uuid.timeMid, mDescriptor.uuid.timeHiAndVersion,
6762            mDescriptor.uuid.clockSeq, mDescriptor.uuid.node[0], mDescriptor.uuid.node[1],mDescriptor.uuid.node[2],
6763            mDescriptor.uuid.node[3],mDescriptor.uuid.node[4],mDescriptor.uuid.node[5]);
6764    result.append(buffer);
6765    snprintf(buffer, SIZE, "\t\t- TYPE: %08X-%04X-%04X-%04X-%02X%02X%02X%02X%02X%02X\n",
6766                mDescriptor.type.timeLow, mDescriptor.type.timeMid, mDescriptor.type.timeHiAndVersion,
6767                mDescriptor.type.clockSeq, mDescriptor.type.node[0], mDescriptor.type.node[1],mDescriptor.type.node[2],
6768                mDescriptor.type.node[3],mDescriptor.type.node[4],mDescriptor.type.node[5]);
6769    result.append(buffer);
6770    snprintf(buffer, SIZE, "\t\t- apiVersion: %08X\n\t\t- flags: %08X\n",
6771            mDescriptor.apiVersion,
6772            mDescriptor.flags);
6773    result.append(buffer);
6774    snprintf(buffer, SIZE, "\t\t- name: %s\n",
6775            mDescriptor.name);
6776    result.append(buffer);
6777    snprintf(buffer, SIZE, "\t\t- implementor: %s\n",
6778            mDescriptor.implementor);
6779    result.append(buffer);
6780
6781    result.append("\t\t- Input configuration:\n");
6782    result.append("\t\t\tBuffer     Frames  Smp rate Channels Format\n");
6783    snprintf(buffer, SIZE, "\t\t\t0x%08x %05d   %05d    %08x %d\n",
6784            (uint32_t)mConfig.inputCfg.buffer.raw,
6785            mConfig.inputCfg.buffer.frameCount,
6786            mConfig.inputCfg.samplingRate,
6787            mConfig.inputCfg.channels,
6788            mConfig.inputCfg.format);
6789    result.append(buffer);
6790
6791    result.append("\t\t- Output configuration:\n");
6792    result.append("\t\t\tBuffer     Frames  Smp rate Channels Format\n");
6793    snprintf(buffer, SIZE, "\t\t\t0x%08x %05d   %05d    %08x %d\n",
6794            (uint32_t)mConfig.outputCfg.buffer.raw,
6795            mConfig.outputCfg.buffer.frameCount,
6796            mConfig.outputCfg.samplingRate,
6797            mConfig.outputCfg.channels,
6798            mConfig.outputCfg.format);
6799    result.append(buffer);
6800
6801    snprintf(buffer, SIZE, "\t\t%d Clients:\n", mHandles.size());
6802    result.append(buffer);
6803    result.append("\t\t\tPid   Priority Ctrl Locked client server\n");
6804    for (size_t i = 0; i < mHandles.size(); ++i) {
6805        sp<EffectHandle> handle = mHandles[i].promote();
6806        if (handle != 0) {
6807            handle->dump(buffer, SIZE);
6808            result.append(buffer);
6809        }
6810    }
6811
6812    result.append("\n");
6813
6814    write(fd, result.string(), result.length());
6815
6816    if (locked) {
6817        mLock.unlock();
6818    }
6819
6820    return NO_ERROR;
6821}
6822
6823// ----------------------------------------------------------------------------
6824//  EffectHandle implementation
6825// ----------------------------------------------------------------------------
6826
6827#undef LOG_TAG
6828#define LOG_TAG "AudioFlinger::EffectHandle"
6829
6830AudioFlinger::EffectHandle::EffectHandle(const sp<EffectModule>& effect,
6831                                        const sp<AudioFlinger::Client>& client,
6832                                        const sp<IEffectClient>& effectClient,
6833                                        int32_t priority)
6834    : BnEffect(),
6835    mEffect(effect), mEffectClient(effectClient), mClient(client), mCblk(NULL),
6836    mPriority(priority), mHasControl(false), mEnabled(false)
6837{
6838    ALOGV("constructor %p", this);
6839
6840    if (client == 0) {
6841        return;
6842    }
6843    int bufOffset = ((sizeof(effect_param_cblk_t) - 1) / sizeof(int) + 1) * sizeof(int);
6844    mCblkMemory = client->heap()->allocate(EFFECT_PARAM_BUFFER_SIZE + bufOffset);
6845    if (mCblkMemory != 0) {
6846        mCblk = static_cast<effect_param_cblk_t *>(mCblkMemory->pointer());
6847
6848        if (mCblk) {
6849            new(mCblk) effect_param_cblk_t();
6850            mBuffer = (uint8_t *)mCblk + bufOffset;
6851         }
6852    } else {
6853        ALOGE("not enough memory for Effect size=%u", EFFECT_PARAM_BUFFER_SIZE + sizeof(effect_param_cblk_t));
6854        return;
6855    }
6856}
6857
6858AudioFlinger::EffectHandle::~EffectHandle()
6859{
6860    ALOGV("Destructor %p", this);
6861    disconnect(false);
6862    ALOGV("Destructor DONE %p", this);
6863}
6864
6865status_t AudioFlinger::EffectHandle::enable()
6866{
6867    ALOGV("enable %p", this);
6868    if (!mHasControl) return INVALID_OPERATION;
6869    if (mEffect == 0) return DEAD_OBJECT;
6870
6871    if (mEnabled) {
6872        return NO_ERROR;
6873    }
6874
6875    mEnabled = true;
6876
6877    sp<ThreadBase> thread = mEffect->thread().promote();
6878    if (thread != 0) {
6879        thread->checkSuspendOnEffectEnabled(mEffect, true, mEffect->sessionId());
6880    }
6881
6882    // checkSuspendOnEffectEnabled() can suspend this same effect when enabled
6883    if (mEffect->suspended()) {
6884        return NO_ERROR;
6885    }
6886
6887    status_t status = mEffect->setEnabled(true);
6888    if (status != NO_ERROR) {
6889        if (thread != 0) {
6890            thread->checkSuspendOnEffectEnabled(mEffect, false, mEffect->sessionId());
6891        }
6892        mEnabled = false;
6893    }
6894    return status;
6895}
6896
6897status_t AudioFlinger::EffectHandle::disable()
6898{
6899    ALOGV("disable %p", this);
6900    if (!mHasControl) return INVALID_OPERATION;
6901    if (mEffect == 0) return DEAD_OBJECT;
6902
6903    if (!mEnabled) {
6904        return NO_ERROR;
6905    }
6906    mEnabled = false;
6907
6908    if (mEffect->suspended()) {
6909        return NO_ERROR;
6910    }
6911
6912    status_t status = mEffect->setEnabled(false);
6913
6914    sp<ThreadBase> thread = mEffect->thread().promote();
6915    if (thread != 0) {
6916        thread->checkSuspendOnEffectEnabled(mEffect, false, mEffect->sessionId());
6917    }
6918
6919    return status;
6920}
6921
6922void AudioFlinger::EffectHandle::disconnect()
6923{
6924    disconnect(true);
6925}
6926
6927void AudioFlinger::EffectHandle::disconnect(bool unpiniflast)
6928{
6929    ALOGV("disconnect(%s)", unpiniflast ? "true" : "false");
6930    if (mEffect == 0) {
6931        return;
6932    }
6933    mEffect->disconnect(this, unpiniflast);
6934
6935    if (mHasControl && mEnabled) {
6936        sp<ThreadBase> thread = mEffect->thread().promote();
6937        if (thread != 0) {
6938            thread->checkSuspendOnEffectEnabled(mEffect, false, mEffect->sessionId());
6939        }
6940    }
6941
6942    // release sp on module => module destructor can be called now
6943    mEffect.clear();
6944    if (mClient != 0) {
6945        if (mCblk) {
6946            mCblk->~effect_param_cblk_t();   // destroy our shared-structure.
6947        }
6948        mCblkMemory.clear();            // and free the shared memory
6949        Mutex::Autolock _l(mClient->audioFlinger()->mLock);
6950        mClient.clear();
6951    }
6952}
6953
6954status_t AudioFlinger::EffectHandle::command(uint32_t cmdCode,
6955                                             uint32_t cmdSize,
6956                                             void *pCmdData,
6957                                             uint32_t *replySize,
6958                                             void *pReplyData)
6959{
6960//    ALOGV("command(), cmdCode: %d, mHasControl: %d, mEffect: %p",
6961//              cmdCode, mHasControl, (mEffect == 0) ? 0 : mEffect.get());
6962
6963    // only get parameter command is permitted for applications not controlling the effect
6964    if (!mHasControl && cmdCode != EFFECT_CMD_GET_PARAM) {
6965        return INVALID_OPERATION;
6966    }
6967    if (mEffect == 0) return DEAD_OBJECT;
6968    if (mClient == 0) return INVALID_OPERATION;
6969
6970    // handle commands that are not forwarded transparently to effect engine
6971    if (cmdCode == EFFECT_CMD_SET_PARAM_COMMIT) {
6972        // No need to trylock() here as this function is executed in the binder thread serving a particular client process:
6973        // no risk to block the whole media server process or mixer threads is we are stuck here
6974        Mutex::Autolock _l(mCblk->lock);
6975        if (mCblk->clientIndex > EFFECT_PARAM_BUFFER_SIZE ||
6976            mCblk->serverIndex > EFFECT_PARAM_BUFFER_SIZE) {
6977            mCblk->serverIndex = 0;
6978            mCblk->clientIndex = 0;
6979            return BAD_VALUE;
6980        }
6981        status_t status = NO_ERROR;
6982        while (mCblk->serverIndex < mCblk->clientIndex) {
6983            int reply;
6984            uint32_t rsize = sizeof(int);
6985            int *p = (int *)(mBuffer + mCblk->serverIndex);
6986            int size = *p++;
6987            if (((uint8_t *)p + size) > mBuffer + mCblk->clientIndex) {
6988                ALOGW("command(): invalid parameter block size");
6989                break;
6990            }
6991            effect_param_t *param = (effect_param_t *)p;
6992            if (param->psize == 0 || param->vsize == 0) {
6993                ALOGW("command(): null parameter or value size");
6994                mCblk->serverIndex += size;
6995                continue;
6996            }
6997            uint32_t psize = sizeof(effect_param_t) +
6998                             ((param->psize - 1) / sizeof(int) + 1) * sizeof(int) +
6999                             param->vsize;
7000            status_t ret = mEffect->command(EFFECT_CMD_SET_PARAM,
7001                                            psize,
7002                                            p,
7003                                            &rsize,
7004                                            &reply);
7005            // stop at first error encountered
7006            if (ret != NO_ERROR) {
7007                status = ret;
7008                *(int *)pReplyData = reply;
7009                break;
7010            } else if (reply != NO_ERROR) {
7011                *(int *)pReplyData = reply;
7012                break;
7013            }
7014            mCblk->serverIndex += size;
7015        }
7016        mCblk->serverIndex = 0;
7017        mCblk->clientIndex = 0;
7018        return status;
7019    } else if (cmdCode == EFFECT_CMD_ENABLE) {
7020        *(int *)pReplyData = NO_ERROR;
7021        return enable();
7022    } else if (cmdCode == EFFECT_CMD_DISABLE) {
7023        *(int *)pReplyData = NO_ERROR;
7024        return disable();
7025    }
7026
7027    return mEffect->command(cmdCode, cmdSize, pCmdData, replySize, pReplyData);
7028}
7029
7030sp<IMemory> AudioFlinger::EffectHandle::getCblk() const {
7031    return mCblkMemory;
7032}
7033
7034void AudioFlinger::EffectHandle::setControl(bool hasControl, bool signal, bool enabled)
7035{
7036    ALOGV("setControl %p control %d", this, hasControl);
7037
7038    mHasControl = hasControl;
7039    mEnabled = enabled;
7040
7041    if (signal && mEffectClient != 0) {
7042        mEffectClient->controlStatusChanged(hasControl);
7043    }
7044}
7045
7046void AudioFlinger::EffectHandle::commandExecuted(uint32_t cmdCode,
7047                                                 uint32_t cmdSize,
7048                                                 void *pCmdData,
7049                                                 uint32_t replySize,
7050                                                 void *pReplyData)
7051{
7052    if (mEffectClient != 0) {
7053        mEffectClient->commandExecuted(cmdCode, cmdSize, pCmdData, replySize, pReplyData);
7054    }
7055}
7056
7057
7058
7059void AudioFlinger::EffectHandle::setEnabled(bool enabled)
7060{
7061    if (mEffectClient != 0) {
7062        mEffectClient->enableStatusChanged(enabled);
7063    }
7064}
7065
7066status_t AudioFlinger::EffectHandle::onTransact(
7067    uint32_t code, const Parcel& data, Parcel* reply, uint32_t flags)
7068{
7069    return BnEffect::onTransact(code, data, reply, flags);
7070}
7071
7072
7073void AudioFlinger::EffectHandle::dump(char* buffer, size_t size)
7074{
7075    bool locked = mCblk ? tryLock(mCblk->lock) : false;
7076
7077    snprintf(buffer, size, "\t\t\t%05d %05d    %01u    %01u      %05u  %05u\n",
7078            (mClient == NULL) ? getpid() : mClient->pid(),
7079            mPriority,
7080            mHasControl,
7081            !locked,
7082            mCblk ? mCblk->clientIndex : 0,
7083            mCblk ? mCblk->serverIndex : 0
7084            );
7085
7086    if (locked) {
7087        mCblk->lock.unlock();
7088    }
7089}
7090
7091#undef LOG_TAG
7092#define LOG_TAG "AudioFlinger::EffectChain"
7093
7094AudioFlinger::EffectChain::EffectChain(const wp<ThreadBase>& wThread,
7095                                        int sessionId)
7096    : mThread(wThread), mSessionId(sessionId), mActiveTrackCnt(0), mTrackCnt(0), mTailBufferCount(0),
7097      mOwnInBuffer(false), mVolumeCtrlIdx(-1), mLeftVolume(UINT_MAX), mRightVolume(UINT_MAX),
7098      mNewLeftVolume(UINT_MAX), mNewRightVolume(UINT_MAX)
7099{
7100    mStrategy = AudioSystem::getStrategyForStream(AUDIO_STREAM_MUSIC);
7101    sp<ThreadBase> thread = mThread.promote();
7102    if (thread == 0) {
7103        return;
7104    }
7105    mMaxTailBuffers = ((kProcessTailDurationMs * thread->sampleRate()) / 1000) /
7106                                    thread->frameCount();
7107}
7108
7109AudioFlinger::EffectChain::~EffectChain()
7110{
7111    if (mOwnInBuffer) {
7112        delete mInBuffer;
7113    }
7114
7115}
7116
7117// getEffectFromDesc_l() must be called with ThreadBase::mLock held
7118sp<AudioFlinger::EffectModule> AudioFlinger::EffectChain::getEffectFromDesc_l(effect_descriptor_t *descriptor)
7119{
7120    sp<EffectModule> effect;
7121    size_t size = mEffects.size();
7122
7123    for (size_t i = 0; i < size; i++) {
7124        if (memcmp(&mEffects[i]->desc().uuid, &descriptor->uuid, sizeof(effect_uuid_t)) == 0) {
7125            effect = mEffects[i];
7126            break;
7127        }
7128    }
7129    return effect;
7130}
7131
7132// getEffectFromId_l() must be called with ThreadBase::mLock held
7133sp<AudioFlinger::EffectModule> AudioFlinger::EffectChain::getEffectFromId_l(int id)
7134{
7135    sp<EffectModule> effect;
7136    size_t size = mEffects.size();
7137
7138    for (size_t i = 0; i < size; i++) {
7139        // by convention, return first effect if id provided is 0 (0 is never a valid id)
7140        if (id == 0 || mEffects[i]->id() == id) {
7141            effect = mEffects[i];
7142            break;
7143        }
7144    }
7145    return effect;
7146}
7147
7148// getEffectFromType_l() must be called with ThreadBase::mLock held
7149sp<AudioFlinger::EffectModule> AudioFlinger::EffectChain::getEffectFromType_l(
7150        const effect_uuid_t *type)
7151{
7152    sp<EffectModule> effect;
7153    size_t size = mEffects.size();
7154
7155    for (size_t i = 0; i < size; i++) {
7156        if (memcmp(&mEffects[i]->desc().type, type, sizeof(effect_uuid_t)) == 0) {
7157            effect = mEffects[i];
7158            break;
7159        }
7160    }
7161    return effect;
7162}
7163
7164// Must be called with EffectChain::mLock locked
7165void AudioFlinger::EffectChain::process_l()
7166{
7167    sp<ThreadBase> thread = mThread.promote();
7168    if (thread == 0) {
7169        ALOGW("process_l(): cannot promote mixer thread");
7170        return;
7171    }
7172    bool isGlobalSession = (mSessionId == AUDIO_SESSION_OUTPUT_MIX) ||
7173            (mSessionId == AUDIO_SESSION_OUTPUT_STAGE);
7174    // always process effects unless no more tracks are on the session and the effect tail
7175    // has been rendered
7176    bool doProcess = true;
7177    if (!isGlobalSession) {
7178        bool tracksOnSession = (trackCnt() != 0);
7179
7180        if (!tracksOnSession && mTailBufferCount == 0) {
7181            doProcess = false;
7182        }
7183
7184        if (activeTrackCnt() == 0) {
7185            // if no track is active and the effect tail has not been rendered,
7186            // the input buffer must be cleared here as the mixer process will not do it
7187            if (tracksOnSession || mTailBufferCount > 0) {
7188                size_t numSamples = thread->frameCount() * thread->channelCount();
7189                memset(mInBuffer, 0, numSamples * sizeof(int16_t));
7190                if (mTailBufferCount > 0) {
7191                    mTailBufferCount--;
7192                }
7193            }
7194        }
7195    }
7196
7197    size_t size = mEffects.size();
7198    if (doProcess) {
7199        for (size_t i = 0; i < size; i++) {
7200            mEffects[i]->process();
7201        }
7202    }
7203    for (size_t i = 0; i < size; i++) {
7204        mEffects[i]->updateState();
7205    }
7206}
7207
7208// addEffect_l() must be called with PlaybackThread::mLock held
7209status_t AudioFlinger::EffectChain::addEffect_l(const sp<EffectModule>& effect)
7210{
7211    effect_descriptor_t desc = effect->desc();
7212    uint32_t insertPref = desc.flags & EFFECT_FLAG_INSERT_MASK;
7213
7214    Mutex::Autolock _l(mLock);
7215    effect->setChain(this);
7216    sp<ThreadBase> thread = mThread.promote();
7217    if (thread == 0) {
7218        return NO_INIT;
7219    }
7220    effect->setThread(thread);
7221
7222    if ((desc.flags & EFFECT_FLAG_TYPE_MASK) == EFFECT_FLAG_TYPE_AUXILIARY) {
7223        // Auxiliary effects are inserted at the beginning of mEffects vector as
7224        // they are processed first and accumulated in chain input buffer
7225        mEffects.insertAt(effect, 0);
7226
7227        // the input buffer for auxiliary effect contains mono samples in
7228        // 32 bit format. This is to avoid saturation in AudoMixer
7229        // accumulation stage. Saturation is done in EffectModule::process() before
7230        // calling the process in effect engine
7231        size_t numSamples = thread->frameCount();
7232        int32_t *buffer = new int32_t[numSamples];
7233        memset(buffer, 0, numSamples * sizeof(int32_t));
7234        effect->setInBuffer((int16_t *)buffer);
7235        // auxiliary effects output samples to chain input buffer for further processing
7236        // by insert effects
7237        effect->setOutBuffer(mInBuffer);
7238    } else {
7239        // Insert effects are inserted at the end of mEffects vector as they are processed
7240        //  after track and auxiliary effects.
7241        // Insert effect order as a function of indicated preference:
7242        //  if EFFECT_FLAG_INSERT_EXCLUSIVE, insert in first position or reject if
7243        //  another effect is present
7244        //  else if EFFECT_FLAG_INSERT_FIRST, insert in first position or after the
7245        //  last effect claiming first position
7246        //  else if EFFECT_FLAG_INSERT_LAST, insert in last position or before the
7247        //  first effect claiming last position
7248        //  else if EFFECT_FLAG_INSERT_ANY insert after first or before last
7249        // Reject insertion if an effect with EFFECT_FLAG_INSERT_EXCLUSIVE is
7250        // already present
7251
7252        int size = (int)mEffects.size();
7253        int idx_insert = size;
7254        int idx_insert_first = -1;
7255        int idx_insert_last = -1;
7256
7257        for (int i = 0; i < size; i++) {
7258            effect_descriptor_t d = mEffects[i]->desc();
7259            uint32_t iMode = d.flags & EFFECT_FLAG_TYPE_MASK;
7260            uint32_t iPref = d.flags & EFFECT_FLAG_INSERT_MASK;
7261            if (iMode == EFFECT_FLAG_TYPE_INSERT) {
7262                // check invalid effect chaining combinations
7263                if (insertPref == EFFECT_FLAG_INSERT_EXCLUSIVE ||
7264                    iPref == EFFECT_FLAG_INSERT_EXCLUSIVE) {
7265                    ALOGW("addEffect_l() could not insert effect %s: exclusive conflict with %s", desc.name, d.name);
7266                    return INVALID_OPERATION;
7267                }
7268                // remember position of first insert effect and by default
7269                // select this as insert position for new effect
7270                if (idx_insert == size) {
7271                    idx_insert = i;
7272                }
7273                // remember position of last insert effect claiming
7274                // first position
7275                if (iPref == EFFECT_FLAG_INSERT_FIRST) {
7276                    idx_insert_first = i;
7277                }
7278                // remember position of first insert effect claiming
7279                // last position
7280                if (iPref == EFFECT_FLAG_INSERT_LAST &&
7281                    idx_insert_last == -1) {
7282                    idx_insert_last = i;
7283                }
7284            }
7285        }
7286
7287        // modify idx_insert from first position if needed
7288        if (insertPref == EFFECT_FLAG_INSERT_LAST) {
7289            if (idx_insert_last != -1) {
7290                idx_insert = idx_insert_last;
7291            } else {
7292                idx_insert = size;
7293            }
7294        } else {
7295            if (idx_insert_first != -1) {
7296                idx_insert = idx_insert_first + 1;
7297            }
7298        }
7299
7300        // always read samples from chain input buffer
7301        effect->setInBuffer(mInBuffer);
7302
7303        // if last effect in the chain, output samples to chain
7304        // output buffer, otherwise to chain input buffer
7305        if (idx_insert == size) {
7306            if (idx_insert != 0) {
7307                mEffects[idx_insert-1]->setOutBuffer(mInBuffer);
7308                mEffects[idx_insert-1]->configure();
7309            }
7310            effect->setOutBuffer(mOutBuffer);
7311        } else {
7312            effect->setOutBuffer(mInBuffer);
7313        }
7314        mEffects.insertAt(effect, idx_insert);
7315
7316        ALOGV("addEffect_l() effect %p, added in chain %p at rank %d", effect.get(), this, idx_insert);
7317    }
7318    effect->configure();
7319    return NO_ERROR;
7320}
7321
7322// removeEffect_l() must be called with PlaybackThread::mLock held
7323size_t AudioFlinger::EffectChain::removeEffect_l(const sp<EffectModule>& effect)
7324{
7325    Mutex::Autolock _l(mLock);
7326    int size = (int)mEffects.size();
7327    int i;
7328    uint32_t type = effect->desc().flags & EFFECT_FLAG_TYPE_MASK;
7329
7330    for (i = 0; i < size; i++) {
7331        if (effect == mEffects[i]) {
7332            // calling stop here will remove pre-processing effect from the audio HAL.
7333            // This is safe as we hold the EffectChain mutex which guarantees that we are not in
7334            // the middle of a read from audio HAL
7335            if (mEffects[i]->state() == EffectModule::ACTIVE ||
7336                    mEffects[i]->state() == EffectModule::STOPPING) {
7337                mEffects[i]->stop();
7338            }
7339            if (type == EFFECT_FLAG_TYPE_AUXILIARY) {
7340                delete[] effect->inBuffer();
7341            } else {
7342                if (i == size - 1 && i != 0) {
7343                    mEffects[i - 1]->setOutBuffer(mOutBuffer);
7344                    mEffects[i - 1]->configure();
7345                }
7346            }
7347            mEffects.removeAt(i);
7348            ALOGV("removeEffect_l() effect %p, removed from chain %p at rank %d", effect.get(), this, i);
7349            break;
7350        }
7351    }
7352
7353    return mEffects.size();
7354}
7355
7356// setDevice_l() must be called with PlaybackThread::mLock held
7357void AudioFlinger::EffectChain::setDevice_l(uint32_t device)
7358{
7359    size_t size = mEffects.size();
7360    for (size_t i = 0; i < size; i++) {
7361        mEffects[i]->setDevice(device);
7362    }
7363}
7364
7365// setMode_l() must be called with PlaybackThread::mLock held
7366void AudioFlinger::EffectChain::setMode_l(audio_mode_t mode)
7367{
7368    size_t size = mEffects.size();
7369    for (size_t i = 0; i < size; i++) {
7370        mEffects[i]->setMode(mode);
7371    }
7372}
7373
7374// setVolume_l() must be called with PlaybackThread::mLock held
7375bool AudioFlinger::EffectChain::setVolume_l(uint32_t *left, uint32_t *right)
7376{
7377    uint32_t newLeft = *left;
7378    uint32_t newRight = *right;
7379    bool hasControl = false;
7380    int ctrlIdx = -1;
7381    size_t size = mEffects.size();
7382
7383    // first update volume controller
7384    for (size_t i = size; i > 0; i--) {
7385        if (mEffects[i - 1]->isProcessEnabled() &&
7386            (mEffects[i - 1]->desc().flags & EFFECT_FLAG_VOLUME_MASK) == EFFECT_FLAG_VOLUME_CTRL) {
7387            ctrlIdx = i - 1;
7388            hasControl = true;
7389            break;
7390        }
7391    }
7392
7393    if (ctrlIdx == mVolumeCtrlIdx && *left == mLeftVolume && *right == mRightVolume) {
7394        if (hasControl) {
7395            *left = mNewLeftVolume;
7396            *right = mNewRightVolume;
7397        }
7398        return hasControl;
7399    }
7400
7401    mVolumeCtrlIdx = ctrlIdx;
7402    mLeftVolume = newLeft;
7403    mRightVolume = newRight;
7404
7405    // second get volume update from volume controller
7406    if (ctrlIdx >= 0) {
7407        mEffects[ctrlIdx]->setVolume(&newLeft, &newRight, true);
7408        mNewLeftVolume = newLeft;
7409        mNewRightVolume = newRight;
7410    }
7411    // then indicate volume to all other effects in chain.
7412    // Pass altered volume to effects before volume controller
7413    // and requested volume to effects after controller
7414    uint32_t lVol = newLeft;
7415    uint32_t rVol = newRight;
7416
7417    for (size_t i = 0; i < size; i++) {
7418        if ((int)i == ctrlIdx) continue;
7419        // this also works for ctrlIdx == -1 when there is no volume controller
7420        if ((int)i > ctrlIdx) {
7421            lVol = *left;
7422            rVol = *right;
7423        }
7424        mEffects[i]->setVolume(&lVol, &rVol, false);
7425    }
7426    *left = newLeft;
7427    *right = newRight;
7428
7429    return hasControl;
7430}
7431
7432status_t AudioFlinger::EffectChain::dump(int fd, const Vector<String16>& args)
7433{
7434    const size_t SIZE = 256;
7435    char buffer[SIZE];
7436    String8 result;
7437
7438    snprintf(buffer, SIZE, "Effects for session %d:\n", mSessionId);
7439    result.append(buffer);
7440
7441    bool locked = tryLock(mLock);
7442    // failed to lock - AudioFlinger is probably deadlocked
7443    if (!locked) {
7444        result.append("\tCould not lock mutex:\n");
7445    }
7446
7447    result.append("\tNum fx In buffer   Out buffer   Active tracks:\n");
7448    snprintf(buffer, SIZE, "\t%02d     0x%08x  0x%08x   %d\n",
7449            mEffects.size(),
7450            (uint32_t)mInBuffer,
7451            (uint32_t)mOutBuffer,
7452            mActiveTrackCnt);
7453    result.append(buffer);
7454    write(fd, result.string(), result.size());
7455
7456    for (size_t i = 0; i < mEffects.size(); ++i) {
7457        sp<EffectModule> effect = mEffects[i];
7458        if (effect != 0) {
7459            effect->dump(fd, args);
7460        }
7461    }
7462
7463    if (locked) {
7464        mLock.unlock();
7465    }
7466
7467    return NO_ERROR;
7468}
7469
7470// must be called with ThreadBase::mLock held
7471void AudioFlinger::EffectChain::setEffectSuspended_l(
7472        const effect_uuid_t *type, bool suspend)
7473{
7474    sp<SuspendedEffectDesc> desc;
7475    // use effect type UUID timelow as key as there is no real risk of identical
7476    // timeLow fields among effect type UUIDs.
7477    int index = mSuspendedEffects.indexOfKey(type->timeLow);
7478    if (suspend) {
7479        if (index >= 0) {
7480            desc = mSuspendedEffects.valueAt(index);
7481        } else {
7482            desc = new SuspendedEffectDesc();
7483            memcpy(&desc->mType, type, sizeof(effect_uuid_t));
7484            mSuspendedEffects.add(type->timeLow, desc);
7485            ALOGV("setEffectSuspended_l() add entry for %08x", type->timeLow);
7486        }
7487        if (desc->mRefCount++ == 0) {
7488            sp<EffectModule> effect = getEffectIfEnabled(type);
7489            if (effect != 0) {
7490                desc->mEffect = effect;
7491                effect->setSuspended(true);
7492                effect->setEnabled(false);
7493            }
7494        }
7495    } else {
7496        if (index < 0) {
7497            return;
7498        }
7499        desc = mSuspendedEffects.valueAt(index);
7500        if (desc->mRefCount <= 0) {
7501            ALOGW("setEffectSuspended_l() restore refcount should not be 0 %d", desc->mRefCount);
7502            desc->mRefCount = 1;
7503        }
7504        if (--desc->mRefCount == 0) {
7505            ALOGV("setEffectSuspended_l() remove entry for %08x", mSuspendedEffects.keyAt(index));
7506            if (desc->mEffect != 0) {
7507                sp<EffectModule> effect = desc->mEffect.promote();
7508                if (effect != 0) {
7509                    effect->setSuspended(false);
7510                    sp<EffectHandle> handle = effect->controlHandle();
7511                    if (handle != 0) {
7512                        effect->setEnabled(handle->enabled());
7513                    }
7514                }
7515                desc->mEffect.clear();
7516            }
7517            mSuspendedEffects.removeItemsAt(index);
7518        }
7519    }
7520}
7521
7522// must be called with ThreadBase::mLock held
7523void AudioFlinger::EffectChain::setEffectSuspendedAll_l(bool suspend)
7524{
7525    sp<SuspendedEffectDesc> desc;
7526
7527    int index = mSuspendedEffects.indexOfKey((int)kKeyForSuspendAll);
7528    if (suspend) {
7529        if (index >= 0) {
7530            desc = mSuspendedEffects.valueAt(index);
7531        } else {
7532            desc = new SuspendedEffectDesc();
7533            mSuspendedEffects.add((int)kKeyForSuspendAll, desc);
7534            ALOGV("setEffectSuspendedAll_l() add entry for 0");
7535        }
7536        if (desc->mRefCount++ == 0) {
7537            Vector< sp<EffectModule> > effects = getSuspendEligibleEffects();
7538            for (size_t i = 0; i < effects.size(); i++) {
7539                setEffectSuspended_l(&effects[i]->desc().type, true);
7540            }
7541        }
7542    } else {
7543        if (index < 0) {
7544            return;
7545        }
7546        desc = mSuspendedEffects.valueAt(index);
7547        if (desc->mRefCount <= 0) {
7548            ALOGW("setEffectSuspendedAll_l() restore refcount should not be 0 %d", desc->mRefCount);
7549            desc->mRefCount = 1;
7550        }
7551        if (--desc->mRefCount == 0) {
7552            Vector<const effect_uuid_t *> types;
7553            for (size_t i = 0; i < mSuspendedEffects.size(); i++) {
7554                if (mSuspendedEffects.keyAt(i) == (int)kKeyForSuspendAll) {
7555                    continue;
7556                }
7557                types.add(&mSuspendedEffects.valueAt(i)->mType);
7558            }
7559            for (size_t i = 0; i < types.size(); i++) {
7560                setEffectSuspended_l(types[i], false);
7561            }
7562            ALOGV("setEffectSuspendedAll_l() remove entry for %08x", mSuspendedEffects.keyAt(index));
7563            mSuspendedEffects.removeItem((int)kKeyForSuspendAll);
7564        }
7565    }
7566}
7567
7568
7569// The volume effect is used for automated tests only
7570#ifndef OPENSL_ES_H_
7571static const effect_uuid_t SL_IID_VOLUME_ = { 0x09e8ede0, 0xddde, 0x11db, 0xb4f6,
7572                                            { 0x00, 0x02, 0xa5, 0xd5, 0xc5, 0x1b } };
7573const effect_uuid_t * const SL_IID_VOLUME = &SL_IID_VOLUME_;
7574#endif //OPENSL_ES_H_
7575
7576bool AudioFlinger::EffectChain::isEffectEligibleForSuspend(const effect_descriptor_t& desc)
7577{
7578    // auxiliary effects and visualizer are never suspended on output mix
7579    if ((mSessionId == AUDIO_SESSION_OUTPUT_MIX) &&
7580        (((desc.flags & EFFECT_FLAG_TYPE_MASK) == EFFECT_FLAG_TYPE_AUXILIARY) ||
7581         (memcmp(&desc.type, SL_IID_VISUALIZATION, sizeof(effect_uuid_t)) == 0) ||
7582         (memcmp(&desc.type, SL_IID_VOLUME, sizeof(effect_uuid_t)) == 0))) {
7583        return false;
7584    }
7585    return true;
7586}
7587
7588Vector< sp<AudioFlinger::EffectModule> > AudioFlinger::EffectChain::getSuspendEligibleEffects()
7589{
7590    Vector< sp<EffectModule> > effects;
7591    for (size_t i = 0; i < mEffects.size(); i++) {
7592        if (!isEffectEligibleForSuspend(mEffects[i]->desc())) {
7593            continue;
7594        }
7595        effects.add(mEffects[i]);
7596    }
7597    return effects;
7598}
7599
7600sp<AudioFlinger::EffectModule> AudioFlinger::EffectChain::getEffectIfEnabled(
7601                                                            const effect_uuid_t *type)
7602{
7603    sp<EffectModule> effect;
7604    effect = getEffectFromType_l(type);
7605    if (effect != 0 && !effect->isEnabled()) {
7606        effect.clear();
7607    }
7608    return effect;
7609}
7610
7611void AudioFlinger::EffectChain::checkSuspendOnEffectEnabled(const sp<EffectModule>& effect,
7612                                                            bool enabled)
7613{
7614    int index = mSuspendedEffects.indexOfKey(effect->desc().type.timeLow);
7615    if (enabled) {
7616        if (index < 0) {
7617            // if the effect is not suspend check if all effects are suspended
7618            index = mSuspendedEffects.indexOfKey((int)kKeyForSuspendAll);
7619            if (index < 0) {
7620                return;
7621            }
7622            if (!isEffectEligibleForSuspend(effect->desc())) {
7623                return;
7624            }
7625            setEffectSuspended_l(&effect->desc().type, enabled);
7626            index = mSuspendedEffects.indexOfKey(effect->desc().type.timeLow);
7627            if (index < 0) {
7628                ALOGW("checkSuspendOnEffectEnabled() Fx should be suspended here!");
7629                return;
7630            }
7631        }
7632        ALOGV("checkSuspendOnEffectEnabled() enable suspending fx %08x",
7633             effect->desc().type.timeLow);
7634        sp<SuspendedEffectDesc> desc = mSuspendedEffects.valueAt(index);
7635        // if effect is requested to suspended but was not yet enabled, supend it now.
7636        if (desc->mEffect == 0) {
7637            desc->mEffect = effect;
7638            effect->setEnabled(false);
7639            effect->setSuspended(true);
7640        }
7641    } else {
7642        if (index < 0) {
7643            return;
7644        }
7645        ALOGV("checkSuspendOnEffectEnabled() disable restoring fx %08x",
7646             effect->desc().type.timeLow);
7647        sp<SuspendedEffectDesc> desc = mSuspendedEffects.valueAt(index);
7648        desc->mEffect.clear();
7649        effect->setSuspended(false);
7650    }
7651}
7652
7653#undef LOG_TAG
7654#define LOG_TAG "AudioFlinger"
7655
7656// ----------------------------------------------------------------------------
7657
7658status_t AudioFlinger::onTransact(
7659        uint32_t code, const Parcel& data, Parcel* reply, uint32_t flags)
7660{
7661    return BnAudioFlinger::onTransact(code, data, reply, flags);
7662}
7663
7664}; // namespace android
7665