Effects.cpp revision e75da4004b2c814987aa2adf8a76190f92d99c65
1a6bbcc801f63c451f814d6da77a1a48fba3d36c6yangguo@chromium.org/*
2a6bbcc801f63c451f814d6da77a1a48fba3d36c6yangguo@chromium.org**
3a6bbcc801f63c451f814d6da77a1a48fba3d36c6yangguo@chromium.org** Copyright 2012, The Android Open Source Project
4a6bbcc801f63c451f814d6da77a1a48fba3d36c6yangguo@chromium.org**
5a6bbcc801f63c451f814d6da77a1a48fba3d36c6yangguo@chromium.org** Licensed under the Apache License, Version 2.0 (the "License");
6a6bbcc801f63c451f814d6da77a1a48fba3d36c6yangguo@chromium.org** you may not use this file except in compliance with the License.
7a6bbcc801f63c451f814d6da77a1a48fba3d36c6yangguo@chromium.org** You may obtain a copy of the License at
8a6bbcc801f63c451f814d6da77a1a48fba3d36c6yangguo@chromium.org**
9a6bbcc801f63c451f814d6da77a1a48fba3d36c6yangguo@chromium.org**     http://www.apache.org/licenses/LICENSE-2.0
10a6bbcc801f63c451f814d6da77a1a48fba3d36c6yangguo@chromium.org**
11a6bbcc801f63c451f814d6da77a1a48fba3d36c6yangguo@chromium.org** Unless required by applicable law or agreed to in writing, software
12a6bbcc801f63c451f814d6da77a1a48fba3d36c6yangguo@chromium.org** distributed under the License is distributed on an "AS IS" BASIS,
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14a6bbcc801f63c451f814d6da77a1a48fba3d36c6yangguo@chromium.org** See the License for the specific language governing permissions and
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16a6bbcc801f63c451f814d6da77a1a48fba3d36c6yangguo@chromium.org*/
17a6bbcc801f63c451f814d6da77a1a48fba3d36c6yangguo@chromium.org
18a6bbcc801f63c451f814d6da77a1a48fba3d36c6yangguo@chromium.org
19a6bbcc801f63c451f814d6da77a1a48fba3d36c6yangguo@chromium.org#define LOG_TAG "AudioFlinger"
20a6bbcc801f63c451f814d6da77a1a48fba3d36c6yangguo@chromium.org//#define LOG_NDEBUG 0
21a6bbcc801f63c451f814d6da77a1a48fba3d36c6yangguo@chromium.org
22a6bbcc801f63c451f814d6da77a1a48fba3d36c6yangguo@chromium.org#include "Configuration.h"
23a6bbcc801f63c451f814d6da77a1a48fba3d36c6yangguo@chromium.org#include <utils/Log.h>
24a6bbcc801f63c451f814d6da77a1a48fba3d36c6yangguo@chromium.org#include <audio_effects/effect_visualizer.h>
25a6bbcc801f63c451f814d6da77a1a48fba3d36c6yangguo@chromium.org#include <audio_utils/primitives.h>
26a6bbcc801f63c451f814d6da77a1a48fba3d36c6yangguo@chromium.org#include <private/media/AudioEffectShared.h>
27a6bbcc801f63c451f814d6da77a1a48fba3d36c6yangguo@chromium.org#include <media/EffectsFactoryApi.h>
28a6bbcc801f63c451f814d6da77a1a48fba3d36c6yangguo@chromium.org
29a6bbcc801f63c451f814d6da77a1a48fba3d36c6yangguo@chromium.org#include "AudioFlinger.h"
30a6bbcc801f63c451f814d6da77a1a48fba3d36c6yangguo@chromium.org#include "ServiceUtilities.h"
31a6bbcc801f63c451f814d6da77a1a48fba3d36c6yangguo@chromium.org
32a6bbcc801f63c451f814d6da77a1a48fba3d36c6yangguo@chromium.org// ----------------------------------------------------------------------------
33a6bbcc801f63c451f814d6da77a1a48fba3d36c6yangguo@chromium.org
34// Note: the following macro is used for extremely verbose logging message.  In
35// order to run with ALOG_ASSERT turned on, we need to have LOG_NDEBUG set to
36// 0; but one side effect of this is to turn all LOGV's as well.  Some messages
37// are so verbose that we want to suppress them even when we have ALOG_ASSERT
38// turned on.  Do not uncomment the #def below unless you really know what you
39// are doing and want to see all of the extremely verbose messages.
40//#define VERY_VERY_VERBOSE_LOGGING
41#ifdef VERY_VERY_VERBOSE_LOGGING
42#define ALOGVV ALOGV
43#else
44#define ALOGVV(a...) do { } while(0)
45#endif
46
47namespace android {
48
49// ----------------------------------------------------------------------------
50//  EffectModule implementation
51// ----------------------------------------------------------------------------
52
53#undef LOG_TAG
54#define LOG_TAG "AudioFlinger::EffectModule"
55
56AudioFlinger::EffectModule::EffectModule(ThreadBase *thread,
57                                        const wp<AudioFlinger::EffectChain>& chain,
58                                        effect_descriptor_t *desc,
59                                        int id,
60                                        int sessionId)
61    : mPinned(sessionId > AUDIO_SESSION_OUTPUT_MIX),
62      mThread(thread), mChain(chain), mId(id), mSessionId(sessionId),
63      mDescriptor(*desc),
64      // mConfig is set by configure() and not used before then
65      mEffectInterface(NULL),
66      mStatus(NO_INIT), mState(IDLE),
67      // mMaxDisableWaitCnt is set by configure() and not used before then
68      // mDisableWaitCnt is set by process() and updateState() and not used before then
69      mSuspended(false)
70{
71    ALOGV("Constructor %p", this);
72    int lStatus;
73
74    // create effect engine from effect factory
75    mStatus = EffectCreate(&desc->uuid, sessionId, thread->id(), &mEffectInterface);
76
77    if (mStatus != NO_ERROR) {
78        return;
79    }
80    lStatus = init();
81    if (lStatus < 0) {
82        mStatus = lStatus;
83        goto Error;
84    }
85
86    ALOGV("Constructor success name %s, Interface %p", mDescriptor.name, mEffectInterface);
87    return;
88Error:
89    EffectRelease(mEffectInterface);
90    mEffectInterface = NULL;
91    ALOGV("Constructor Error %d", mStatus);
92}
93
94AudioFlinger::EffectModule::~EffectModule()
95{
96    ALOGV("Destructor %p", this);
97    if (mEffectInterface != NULL) {
98        remove_effect_from_hal_l();
99        // release effect engine
100        EffectRelease(mEffectInterface);
101    }
102}
103
104status_t AudioFlinger::EffectModule::addHandle(EffectHandle *handle)
105{
106    status_t status;
107
108    Mutex::Autolock _l(mLock);
109    int priority = handle->priority();
110    size_t size = mHandles.size();
111    EffectHandle *controlHandle = NULL;
112    size_t i;
113    for (i = 0; i < size; i++) {
114        EffectHandle *h = mHandles[i];
115        if (h == NULL || h->destroyed_l()) {
116            continue;
117        }
118        // first non destroyed handle is considered in control
119        if (controlHandle == NULL) {
120            controlHandle = h;
121        }
122        if (h->priority() <= priority) {
123            break;
124        }
125    }
126    // if inserted in first place, move effect control from previous owner to this handle
127    if (i == 0) {
128        bool enabled = false;
129        if (controlHandle != NULL) {
130            enabled = controlHandle->enabled();
131            controlHandle->setControl(false/*hasControl*/, true /*signal*/, enabled /*enabled*/);
132        }
133        handle->setControl(true /*hasControl*/, false /*signal*/, enabled /*enabled*/);
134        status = NO_ERROR;
135    } else {
136        status = ALREADY_EXISTS;
137    }
138    ALOGV("addHandle() %p added handle %p in position %d", this, handle, i);
139    mHandles.insertAt(handle, i);
140    return status;
141}
142
143size_t AudioFlinger::EffectModule::removeHandle(EffectHandle *handle)
144{
145    Mutex::Autolock _l(mLock);
146    size_t size = mHandles.size();
147    size_t i;
148    for (i = 0; i < size; i++) {
149        if (mHandles[i] == handle) {
150            break;
151        }
152    }
153    if (i == size) {
154        return size;
155    }
156    ALOGV("removeHandle() %p removed handle %p in position %d", this, handle, i);
157
158    mHandles.removeAt(i);
159    // if removed from first place, move effect control from this handle to next in line
160    if (i == 0) {
161        EffectHandle *h = controlHandle_l();
162        if (h != NULL) {
163            h->setControl(true /*hasControl*/, true /*signal*/ , handle->enabled() /*enabled*/);
164        }
165    }
166
167    // Prevent calls to process() and other functions on effect interface from now on.
168    // The effect engine will be released by the destructor when the last strong reference on
169    // this object is released which can happen after next process is called.
170    if (mHandles.size() == 0 && !mPinned) {
171        mState = DESTROYED;
172    }
173
174    return mHandles.size();
175}
176
177// must be called with EffectModule::mLock held
178AudioFlinger::EffectHandle *AudioFlinger::EffectModule::controlHandle_l()
179{
180    // the first valid handle in the list has control over the module
181    for (size_t i = 0; i < mHandles.size(); i++) {
182        EffectHandle *h = mHandles[i];
183        if (h != NULL && !h->destroyed_l()) {
184            return h;
185        }
186    }
187
188    return NULL;
189}
190
191size_t AudioFlinger::EffectModule::disconnect(EffectHandle *handle, bool unpinIfLast)
192{
193    ALOGV("disconnect() %p handle %p", this, handle);
194    // keep a strong reference on this EffectModule to avoid calling the
195    // destructor before we exit
196    sp<EffectModule> keep(this);
197    {
198        sp<ThreadBase> thread = mThread.promote();
199        if (thread != 0) {
200            thread->disconnectEffect(keep, handle, unpinIfLast);
201        }
202    }
203    return mHandles.size();
204}
205
206void AudioFlinger::EffectModule::updateState() {
207    Mutex::Autolock _l(mLock);
208
209    switch (mState) {
210    case RESTART:
211        reset_l();
212        // FALL THROUGH
213
214    case STARTING:
215        // clear auxiliary effect input buffer for next accumulation
216        if ((mDescriptor.flags & EFFECT_FLAG_TYPE_MASK) == EFFECT_FLAG_TYPE_AUXILIARY) {
217            memset(mConfig.inputCfg.buffer.raw,
218                   0,
219                   mConfig.inputCfg.buffer.frameCount*sizeof(int32_t));
220        }
221        if (start_l() == NO_ERROR) {
222            mState = ACTIVE;
223        } else {
224            mState = IDLE;
225        }
226        break;
227    case STOPPING:
228        if (stop_l() == NO_ERROR) {
229            mDisableWaitCnt = mMaxDisableWaitCnt;
230        } else {
231            mDisableWaitCnt = 1; // will cause immediate transition to IDLE
232        }
233        mState = STOPPED;
234        break;
235    case STOPPED:
236        // mDisableWaitCnt is forced to 1 by process() when the engine indicates the end of the
237        // turn off sequence.
238        if (--mDisableWaitCnt == 0) {
239            reset_l();
240            mState = IDLE;
241        }
242        break;
243    default: //IDLE , ACTIVE, DESTROYED
244        break;
245    }
246}
247
248void AudioFlinger::EffectModule::process()
249{
250    Mutex::Autolock _l(mLock);
251
252    if (mState == DESTROYED || mEffectInterface == NULL ||
253            mConfig.inputCfg.buffer.raw == NULL ||
254            mConfig.outputCfg.buffer.raw == NULL) {
255        return;
256    }
257
258    if (isProcessEnabled()) {
259        // do 32 bit to 16 bit conversion for auxiliary effect input buffer
260        if ((mDescriptor.flags & EFFECT_FLAG_TYPE_MASK) == EFFECT_FLAG_TYPE_AUXILIARY) {
261            ditherAndClamp(mConfig.inputCfg.buffer.s32,
262                                        mConfig.inputCfg.buffer.s32,
263                                        mConfig.inputCfg.buffer.frameCount/2);
264        }
265
266        // do the actual processing in the effect engine
267        int ret = (*mEffectInterface)->process(mEffectInterface,
268                                               &mConfig.inputCfg.buffer,
269                                               &mConfig.outputCfg.buffer);
270
271        // force transition to IDLE state when engine is ready
272        if (mState == STOPPED && ret == -ENODATA) {
273            mDisableWaitCnt = 1;
274        }
275
276        // clear auxiliary effect input buffer for next accumulation
277        if ((mDescriptor.flags & EFFECT_FLAG_TYPE_MASK) == EFFECT_FLAG_TYPE_AUXILIARY) {
278            memset(mConfig.inputCfg.buffer.raw, 0,
279                   mConfig.inputCfg.buffer.frameCount*sizeof(int32_t));
280        }
281    } else if ((mDescriptor.flags & EFFECT_FLAG_TYPE_MASK) == EFFECT_FLAG_TYPE_INSERT &&
282                mConfig.inputCfg.buffer.raw != mConfig.outputCfg.buffer.raw) {
283        // If an insert effect is idle and input buffer is different from output buffer,
284        // accumulate input onto output
285        sp<EffectChain> chain = mChain.promote();
286        if (chain != 0 && chain->activeTrackCnt() != 0) {
287            size_t frameCnt = mConfig.inputCfg.buffer.frameCount * 2;  //always stereo here
288            int16_t *in = mConfig.inputCfg.buffer.s16;
289            int16_t *out = mConfig.outputCfg.buffer.s16;
290            for (size_t i = 0; i < frameCnt; i++) {
291                out[i] = clamp16((int32_t)out[i] + (int32_t)in[i]);
292            }
293        }
294    }
295}
296
297void AudioFlinger::EffectModule::reset_l()
298{
299    if (mStatus != NO_ERROR || mEffectInterface == NULL) {
300        return;
301    }
302    (*mEffectInterface)->command(mEffectInterface, EFFECT_CMD_RESET, 0, NULL, 0, NULL);
303}
304
305status_t AudioFlinger::EffectModule::configure()
306{
307    status_t status;
308    sp<ThreadBase> thread;
309    uint32_t size;
310    audio_channel_mask_t channelMask;
311
312    if (mEffectInterface == NULL) {
313        status = NO_INIT;
314        goto exit;
315    }
316
317    thread = mThread.promote();
318    if (thread == 0) {
319        status = DEAD_OBJECT;
320        goto exit;
321    }
322
323    // TODO: handle configuration of effects replacing track process
324    channelMask = thread->channelMask();
325
326    if ((mDescriptor.flags & EFFECT_FLAG_TYPE_MASK) == EFFECT_FLAG_TYPE_AUXILIARY) {
327        mConfig.inputCfg.channels = AUDIO_CHANNEL_OUT_MONO;
328    } else {
329        mConfig.inputCfg.channels = channelMask;
330    }
331    mConfig.outputCfg.channels = channelMask;
332    mConfig.inputCfg.format = AUDIO_FORMAT_PCM_16_BIT;
333    mConfig.outputCfg.format = AUDIO_FORMAT_PCM_16_BIT;
334    mConfig.inputCfg.samplingRate = thread->sampleRate();
335    mConfig.outputCfg.samplingRate = mConfig.inputCfg.samplingRate;
336    mConfig.inputCfg.bufferProvider.cookie = NULL;
337    mConfig.inputCfg.bufferProvider.getBuffer = NULL;
338    mConfig.inputCfg.bufferProvider.releaseBuffer = NULL;
339    mConfig.outputCfg.bufferProvider.cookie = NULL;
340    mConfig.outputCfg.bufferProvider.getBuffer = NULL;
341    mConfig.outputCfg.bufferProvider.releaseBuffer = NULL;
342    mConfig.inputCfg.accessMode = EFFECT_BUFFER_ACCESS_READ;
343    // Insert effect:
344    // - in session AUDIO_SESSION_OUTPUT_MIX or AUDIO_SESSION_OUTPUT_STAGE,
345    // always overwrites output buffer: input buffer == output buffer
346    // - in other sessions:
347    //      last effect in the chain accumulates in output buffer: input buffer != output buffer
348    //      other effect: overwrites output buffer: input buffer == output buffer
349    // Auxiliary effect:
350    //      accumulates in output buffer: input buffer != output buffer
351    // Therefore: accumulate <=> input buffer != output buffer
352    if (mConfig.inputCfg.buffer.raw != mConfig.outputCfg.buffer.raw) {
353        mConfig.outputCfg.accessMode = EFFECT_BUFFER_ACCESS_ACCUMULATE;
354    } else {
355        mConfig.outputCfg.accessMode = EFFECT_BUFFER_ACCESS_WRITE;
356    }
357    mConfig.inputCfg.mask = EFFECT_CONFIG_ALL;
358    mConfig.outputCfg.mask = EFFECT_CONFIG_ALL;
359    mConfig.inputCfg.buffer.frameCount = thread->frameCount();
360    mConfig.outputCfg.buffer.frameCount = mConfig.inputCfg.buffer.frameCount;
361
362    ALOGV("configure() %p thread %p buffer %p framecount %d",
363            this, thread.get(), mConfig.inputCfg.buffer.raw, mConfig.inputCfg.buffer.frameCount);
364
365    status_t cmdStatus;
366    size = sizeof(int);
367    status = (*mEffectInterface)->command(mEffectInterface,
368                                                   EFFECT_CMD_SET_CONFIG,
369                                                   sizeof(effect_config_t),
370                                                   &mConfig,
371                                                   &size,
372                                                   &cmdStatus);
373    if (status == 0) {
374        status = cmdStatus;
375    }
376
377    if (status == 0 &&
378            (memcmp(&mDescriptor.type, SL_IID_VISUALIZATION, sizeof(effect_uuid_t)) == 0)) {
379        uint32_t buf32[sizeof(effect_param_t) / sizeof(uint32_t) + 2];
380        effect_param_t *p = (effect_param_t *)buf32;
381
382        p->psize = sizeof(uint32_t);
383        p->vsize = sizeof(uint32_t);
384        size = sizeof(int);
385        *(int32_t *)p->data = VISUALIZER_PARAM_LATENCY;
386
387        uint32_t latency = 0;
388        PlaybackThread *pbt = thread->mAudioFlinger->checkPlaybackThread_l(thread->mId);
389        if (pbt != NULL) {
390            latency = pbt->latency_l();
391        }
392
393        *((int32_t *)p->data + 1)= latency;
394        (*mEffectInterface)->command(mEffectInterface,
395                                     EFFECT_CMD_SET_PARAM,
396                                     sizeof(effect_param_t) + 8,
397                                     &buf32,
398                                     &size,
399                                     &cmdStatus);
400    }
401
402    mMaxDisableWaitCnt = (MAX_DISABLE_TIME_MS * mConfig.outputCfg.samplingRate) /
403            (1000 * mConfig.outputCfg.buffer.frameCount);
404
405exit:
406    mStatus = status;
407    return status;
408}
409
410status_t AudioFlinger::EffectModule::init()
411{
412    Mutex::Autolock _l(mLock);
413    if (mEffectInterface == NULL) {
414        return NO_INIT;
415    }
416    status_t cmdStatus;
417    uint32_t size = sizeof(status_t);
418    status_t status = (*mEffectInterface)->command(mEffectInterface,
419                                                   EFFECT_CMD_INIT,
420                                                   0,
421                                                   NULL,
422                                                   &size,
423                                                   &cmdStatus);
424    if (status == 0) {
425        status = cmdStatus;
426    }
427    return status;
428}
429
430status_t AudioFlinger::EffectModule::start()
431{
432    Mutex::Autolock _l(mLock);
433    return start_l();
434}
435
436status_t AudioFlinger::EffectModule::start_l()
437{
438    if (mEffectInterface == NULL) {
439        return NO_INIT;
440    }
441    if (mStatus != NO_ERROR) {
442        return mStatus;
443    }
444    status_t cmdStatus;
445    uint32_t size = sizeof(status_t);
446    status_t status = (*mEffectInterface)->command(mEffectInterface,
447                                                   EFFECT_CMD_ENABLE,
448                                                   0,
449                                                   NULL,
450                                                   &size,
451                                                   &cmdStatus);
452    if (status == 0) {
453        status = cmdStatus;
454    }
455    if (status == 0 &&
456            ((mDescriptor.flags & EFFECT_FLAG_TYPE_MASK) == EFFECT_FLAG_TYPE_PRE_PROC ||
457             (mDescriptor.flags & EFFECT_FLAG_TYPE_MASK) == EFFECT_FLAG_TYPE_POST_PROC)) {
458        sp<ThreadBase> thread = mThread.promote();
459        if (thread != 0) {
460            audio_stream_t *stream = thread->stream();
461            if (stream != NULL) {
462                stream->add_audio_effect(stream, mEffectInterface);
463            }
464        }
465    }
466    return status;
467}
468
469status_t AudioFlinger::EffectModule::stop()
470{
471    Mutex::Autolock _l(mLock);
472    return stop_l();
473}
474
475status_t AudioFlinger::EffectModule::stop_l()
476{
477    if (mEffectInterface == NULL) {
478        return NO_INIT;
479    }
480    if (mStatus != NO_ERROR) {
481        return mStatus;
482    }
483    status_t cmdStatus = NO_ERROR;
484    uint32_t size = sizeof(status_t);
485    status_t status = (*mEffectInterface)->command(mEffectInterface,
486                                                   EFFECT_CMD_DISABLE,
487                                                   0,
488                                                   NULL,
489                                                   &size,
490                                                   &cmdStatus);
491    if (status == NO_ERROR) {
492        status = cmdStatus;
493    }
494    if (status == NO_ERROR) {
495        status = remove_effect_from_hal_l();
496    }
497    return status;
498}
499
500status_t AudioFlinger::EffectModule::remove_effect_from_hal_l()
501{
502    if ((mDescriptor.flags & EFFECT_FLAG_TYPE_MASK) == EFFECT_FLAG_TYPE_PRE_PROC ||
503             (mDescriptor.flags & EFFECT_FLAG_TYPE_MASK) == EFFECT_FLAG_TYPE_POST_PROC) {
504        sp<ThreadBase> thread = mThread.promote();
505        if (thread != 0) {
506            audio_stream_t *stream = thread->stream();
507            if (stream != NULL) {
508                stream->remove_audio_effect(stream, mEffectInterface);
509            }
510        }
511    }
512    return NO_ERROR;
513}
514
515status_t AudioFlinger::EffectModule::command(uint32_t cmdCode,
516                                             uint32_t cmdSize,
517                                             void *pCmdData,
518                                             uint32_t *replySize,
519                                             void *pReplyData)
520{
521    Mutex::Autolock _l(mLock);
522    ALOGVV("command(), cmdCode: %d, mEffectInterface: %p", cmdCode, mEffectInterface);
523
524    if (mState == DESTROYED || mEffectInterface == NULL) {
525        return NO_INIT;
526    }
527    if (mStatus != NO_ERROR) {
528        return mStatus;
529    }
530    status_t status = (*mEffectInterface)->command(mEffectInterface,
531                                                   cmdCode,
532                                                   cmdSize,
533                                                   pCmdData,
534                                                   replySize,
535                                                   pReplyData);
536    if (cmdCode != EFFECT_CMD_GET_PARAM && status == NO_ERROR) {
537        uint32_t size = (replySize == NULL) ? 0 : *replySize;
538        for (size_t i = 1; i < mHandles.size(); i++) {
539            EffectHandle *h = mHandles[i];
540            if (h != NULL && !h->destroyed_l()) {
541                h->commandExecuted(cmdCode, cmdSize, pCmdData, size, pReplyData);
542            }
543        }
544    }
545    return status;
546}
547
548status_t AudioFlinger::EffectModule::setEnabled(bool enabled)
549{
550    Mutex::Autolock _l(mLock);
551    return setEnabled_l(enabled);
552}
553
554// must be called with EffectModule::mLock held
555status_t AudioFlinger::EffectModule::setEnabled_l(bool enabled)
556{
557
558    ALOGV("setEnabled %p enabled %d", this, enabled);
559
560    if (enabled != isEnabled()) {
561        status_t status = AudioSystem::setEffectEnabled(mId, enabled);
562        if (enabled && status != NO_ERROR) {
563            return status;
564        }
565
566        switch (mState) {
567        // going from disabled to enabled
568        case IDLE:
569            mState = STARTING;
570            break;
571        case STOPPED:
572            mState = RESTART;
573            break;
574        case STOPPING:
575            mState = ACTIVE;
576            break;
577
578        // going from enabled to disabled
579        case RESTART:
580            mState = STOPPED;
581            break;
582        case STARTING:
583            mState = IDLE;
584            break;
585        case ACTIVE:
586            mState = STOPPING;
587            break;
588        case DESTROYED:
589            return NO_ERROR; // simply ignore as we are being destroyed
590        }
591        for (size_t i = 1; i < mHandles.size(); i++) {
592            EffectHandle *h = mHandles[i];
593            if (h != NULL && !h->destroyed_l()) {
594                h->setEnabled(enabled);
595            }
596        }
597    }
598    return NO_ERROR;
599}
600
601bool AudioFlinger::EffectModule::isEnabled() const
602{
603    switch (mState) {
604    case RESTART:
605    case STARTING:
606    case ACTIVE:
607        return true;
608    case IDLE:
609    case STOPPING:
610    case STOPPED:
611    case DESTROYED:
612    default:
613        return false;
614    }
615}
616
617bool AudioFlinger::EffectModule::isProcessEnabled() const
618{
619    if (mStatus != NO_ERROR) {
620        return false;
621    }
622
623    switch (mState) {
624    case RESTART:
625    case ACTIVE:
626    case STOPPING:
627    case STOPPED:
628        return true;
629    case IDLE:
630    case STARTING:
631    case DESTROYED:
632    default:
633        return false;
634    }
635}
636
637status_t AudioFlinger::EffectModule::setVolume(uint32_t *left, uint32_t *right, bool controller)
638{
639    Mutex::Autolock _l(mLock);
640    if (mStatus != NO_ERROR) {
641        return mStatus;
642    }
643    status_t status = NO_ERROR;
644    // Send volume indication if EFFECT_FLAG_VOLUME_IND is set and read back altered volume
645    // if controller flag is set (Note that controller == TRUE => EFFECT_FLAG_VOLUME_CTRL set)
646    if (isProcessEnabled() &&
647            ((mDescriptor.flags & EFFECT_FLAG_VOLUME_MASK) == EFFECT_FLAG_VOLUME_CTRL ||
648            (mDescriptor.flags & EFFECT_FLAG_VOLUME_MASK) == EFFECT_FLAG_VOLUME_IND)) {
649        status_t cmdStatus;
650        uint32_t volume[2];
651        uint32_t *pVolume = NULL;
652        uint32_t size = sizeof(volume);
653        volume[0] = *left;
654        volume[1] = *right;
655        if (controller) {
656            pVolume = volume;
657        }
658        status = (*mEffectInterface)->command(mEffectInterface,
659                                              EFFECT_CMD_SET_VOLUME,
660                                              size,
661                                              volume,
662                                              &size,
663                                              pVolume);
664        if (controller && status == NO_ERROR && size == sizeof(volume)) {
665            *left = volume[0];
666            *right = volume[1];
667        }
668    }
669    return status;
670}
671
672status_t AudioFlinger::EffectModule::setDevice(audio_devices_t device)
673{
674    if (device == AUDIO_DEVICE_NONE) {
675        return NO_ERROR;
676    }
677
678    Mutex::Autolock _l(mLock);
679    if (mStatus != NO_ERROR) {
680        return mStatus;
681    }
682    status_t status = NO_ERROR;
683    if ((mDescriptor.flags & EFFECT_FLAG_DEVICE_MASK) == EFFECT_FLAG_DEVICE_IND) {
684        status_t cmdStatus;
685        uint32_t size = sizeof(status_t);
686        uint32_t cmd = audio_is_output_devices(device) ? EFFECT_CMD_SET_DEVICE :
687                            EFFECT_CMD_SET_INPUT_DEVICE;
688        status = (*mEffectInterface)->command(mEffectInterface,
689                                              cmd,
690                                              sizeof(uint32_t),
691                                              &device,
692                                              &size,
693                                              &cmdStatus);
694    }
695    return status;
696}
697
698status_t AudioFlinger::EffectModule::setMode(audio_mode_t mode)
699{
700    Mutex::Autolock _l(mLock);
701    if (mStatus != NO_ERROR) {
702        return mStatus;
703    }
704    status_t status = NO_ERROR;
705    if ((mDescriptor.flags & EFFECT_FLAG_AUDIO_MODE_MASK) == EFFECT_FLAG_AUDIO_MODE_IND) {
706        status_t cmdStatus;
707        uint32_t size = sizeof(status_t);
708        status = (*mEffectInterface)->command(mEffectInterface,
709                                              EFFECT_CMD_SET_AUDIO_MODE,
710                                              sizeof(audio_mode_t),
711                                              &mode,
712                                              &size,
713                                              &cmdStatus);
714        if (status == NO_ERROR) {
715            status = cmdStatus;
716        }
717    }
718    return status;
719}
720
721status_t AudioFlinger::EffectModule::setAudioSource(audio_source_t source)
722{
723    Mutex::Autolock _l(mLock);
724    if (mStatus != NO_ERROR) {
725        return mStatus;
726    }
727    status_t status = NO_ERROR;
728    if ((mDescriptor.flags & EFFECT_FLAG_AUDIO_SOURCE_MASK) == EFFECT_FLAG_AUDIO_SOURCE_IND) {
729        uint32_t size = 0;
730        status = (*mEffectInterface)->command(mEffectInterface,
731                                              EFFECT_CMD_SET_AUDIO_SOURCE,
732                                              sizeof(audio_source_t),
733                                              &source,
734                                              &size,
735                                              NULL);
736    }
737    return status;
738}
739
740void AudioFlinger::EffectModule::setSuspended(bool suspended)
741{
742    Mutex::Autolock _l(mLock);
743    mSuspended = suspended;
744}
745
746bool AudioFlinger::EffectModule::suspended() const
747{
748    Mutex::Autolock _l(mLock);
749    return mSuspended;
750}
751
752bool AudioFlinger::EffectModule::purgeHandles()
753{
754    bool enabled = false;
755    Mutex::Autolock _l(mLock);
756    for (size_t i = 0; i < mHandles.size(); i++) {
757        EffectHandle *handle = mHandles[i];
758        if (handle != NULL && !handle->destroyed_l()) {
759            handle->effect().clear();
760            if (handle->hasControl()) {
761                enabled = handle->enabled();
762            }
763        }
764    }
765    return enabled;
766}
767
768status_t AudioFlinger::EffectModule::setOffloaded(bool offloaded, audio_io_handle_t io)
769{
770    Mutex::Autolock _l(mLock);
771    if (mStatus != NO_ERROR) {
772        return mStatus;
773    }
774    status_t status = NO_ERROR;
775    if ((mDescriptor.flags & EFFECT_FLAG_OFFLOAD_SUPPORTED) != 0) {
776        status_t cmdStatus;
777        uint32_t size = sizeof(status_t);
778        effect_offload_param_t cmd;
779
780        cmd.isOffload = offloaded;
781        cmd.ioHandle = io;
782        status = (*mEffectInterface)->command(mEffectInterface,
783                                              EFFECT_CMD_OFFLOAD,
784                                              sizeof(effect_offload_param_t),
785                                              &cmd,
786                                              &size,
787                                              &cmdStatus);
788        if (status == NO_ERROR) {
789            status = cmdStatus;
790        }
791        mOffloaded = (status == NO_ERROR) ? offloaded : false;
792    } else {
793        if (offloaded) {
794            status = INVALID_OPERATION;
795        }
796        mOffloaded = false;
797    }
798    ALOGV("setOffloaded() offloaded %d io %d status %d", offloaded, io, status);
799    return status;
800}
801
802bool AudioFlinger::EffectModule::isOffloaded() const
803{
804    Mutex::Autolock _l(mLock);
805    return mOffloaded;
806}
807
808void AudioFlinger::EffectModule::dump(int fd, const Vector<String16>& args)
809{
810    const size_t SIZE = 256;
811    char buffer[SIZE];
812    String8 result;
813
814    snprintf(buffer, SIZE, "\tEffect ID %d:\n", mId);
815    result.append(buffer);
816
817    bool locked = AudioFlinger::dumpTryLock(mLock);
818    // failed to lock - AudioFlinger is probably deadlocked
819    if (!locked) {
820        result.append("\t\tCould not lock Fx mutex:\n");
821    }
822
823    result.append("\t\tSession Status State Engine:\n");
824    snprintf(buffer, SIZE, "\t\t%05d   %03d    %03d   0x%08x\n",
825            mSessionId, mStatus, mState, (uint32_t)mEffectInterface);
826    result.append(buffer);
827
828    result.append("\t\tDescriptor:\n");
829    snprintf(buffer, SIZE, "\t\t- UUID: %08X-%04X-%04X-%04X-%02X%02X%02X%02X%02X%02X\n",
830            mDescriptor.uuid.timeLow, mDescriptor.uuid.timeMid, mDescriptor.uuid.timeHiAndVersion,
831            mDescriptor.uuid.clockSeq, mDescriptor.uuid.node[0], mDescriptor.uuid.node[1],
832                    mDescriptor.uuid.node[2],
833            mDescriptor.uuid.node[3],mDescriptor.uuid.node[4],mDescriptor.uuid.node[5]);
834    result.append(buffer);
835    snprintf(buffer, SIZE, "\t\t- TYPE: %08X-%04X-%04X-%04X-%02X%02X%02X%02X%02X%02X\n",
836                mDescriptor.type.timeLow, mDescriptor.type.timeMid,
837                    mDescriptor.type.timeHiAndVersion,
838                mDescriptor.type.clockSeq, mDescriptor.type.node[0], mDescriptor.type.node[1],
839                    mDescriptor.type.node[2],
840                mDescriptor.type.node[3],mDescriptor.type.node[4],mDescriptor.type.node[5]);
841    result.append(buffer);
842    snprintf(buffer, SIZE, "\t\t- apiVersion: %08X\n\t\t- flags: %08X\n",
843            mDescriptor.apiVersion,
844            mDescriptor.flags);
845    result.append(buffer);
846    snprintf(buffer, SIZE, "\t\t- name: %s\n",
847            mDescriptor.name);
848    result.append(buffer);
849    snprintf(buffer, SIZE, "\t\t- implementor: %s\n",
850            mDescriptor.implementor);
851    result.append(buffer);
852
853    result.append("\t\t- Input configuration:\n");
854    result.append("\t\t\tBuffer     Frames  Smp rate Channels Format\n");
855    snprintf(buffer, SIZE, "\t\t\t0x%08x %05d   %05d    %08x %d\n",
856            (uint32_t)mConfig.inputCfg.buffer.raw,
857            mConfig.inputCfg.buffer.frameCount,
858            mConfig.inputCfg.samplingRate,
859            mConfig.inputCfg.channels,
860            mConfig.inputCfg.format);
861    result.append(buffer);
862
863    result.append("\t\t- Output configuration:\n");
864    result.append("\t\t\tBuffer     Frames  Smp rate Channels Format\n");
865    snprintf(buffer, SIZE, "\t\t\t0x%08x %05d   %05d    %08x %d\n",
866            (uint32_t)mConfig.outputCfg.buffer.raw,
867            mConfig.outputCfg.buffer.frameCount,
868            mConfig.outputCfg.samplingRate,
869            mConfig.outputCfg.channels,
870            mConfig.outputCfg.format);
871    result.append(buffer);
872
873    snprintf(buffer, SIZE, "\t\t%d Clients:\n", mHandles.size());
874    result.append(buffer);
875    result.append("\t\t\tPid   Priority Ctrl Locked client server\n");
876    for (size_t i = 0; i < mHandles.size(); ++i) {
877        EffectHandle *handle = mHandles[i];
878        if (handle != NULL && !handle->destroyed_l()) {
879            handle->dump(buffer, SIZE);
880            result.append(buffer);
881        }
882    }
883
884    result.append("\n");
885
886    write(fd, result.string(), result.length());
887
888    if (locked) {
889        mLock.unlock();
890    }
891}
892
893// ----------------------------------------------------------------------------
894//  EffectHandle implementation
895// ----------------------------------------------------------------------------
896
897#undef LOG_TAG
898#define LOG_TAG "AudioFlinger::EffectHandle"
899
900AudioFlinger::EffectHandle::EffectHandle(const sp<EffectModule>& effect,
901                                        const sp<AudioFlinger::Client>& client,
902                                        const sp<IEffectClient>& effectClient,
903                                        int32_t priority)
904    : BnEffect(),
905    mEffect(effect), mEffectClient(effectClient), mClient(client), mCblk(NULL),
906    mPriority(priority), mHasControl(false), mEnabled(false), mDestroyed(false)
907{
908    ALOGV("constructor %p", this);
909
910    if (client == 0) {
911        return;
912    }
913    int bufOffset = ((sizeof(effect_param_cblk_t) - 1) / sizeof(int) + 1) * sizeof(int);
914    mCblkMemory = client->heap()->allocate(EFFECT_PARAM_BUFFER_SIZE + bufOffset);
915    if (mCblkMemory == 0 ||
916            (mCblk = static_cast<effect_param_cblk_t *>(mCblkMemory->pointer())) == NULL) {
917        ALOGE("not enough memory for Effect size=%u", EFFECT_PARAM_BUFFER_SIZE +
918                sizeof(effect_param_cblk_t));
919        mCblkMemory.clear();
920        return;
921    }
922    new(mCblk) effect_param_cblk_t();
923    mBuffer = (uint8_t *)mCblk + bufOffset;
924}
925
926AudioFlinger::EffectHandle::~EffectHandle()
927{
928    ALOGV("Destructor %p", this);
929
930    if (mEffect == 0) {
931        mDestroyed = true;
932        return;
933    }
934    mEffect->lock();
935    mDestroyed = true;
936    mEffect->unlock();
937    disconnect(false);
938}
939
940status_t AudioFlinger::EffectHandle::initCheck()
941{
942    return mClient == 0 || mCblkMemory != 0 ? OK : NO_MEMORY;
943}
944
945status_t AudioFlinger::EffectHandle::enable()
946{
947    ALOGV("enable %p", this);
948    if (!mHasControl) {
949        return INVALID_OPERATION;
950    }
951    if (mEffect == 0) {
952        return DEAD_OBJECT;
953    }
954
955    if (mEnabled) {
956        return NO_ERROR;
957    }
958
959    mEnabled = true;
960
961    sp<ThreadBase> thread = mEffect->thread().promote();
962    if (thread != 0) {
963        thread->checkSuspendOnEffectEnabled(mEffect, true, mEffect->sessionId());
964    }
965
966    // checkSuspendOnEffectEnabled() can suspend this same effect when enabled
967    if (mEffect->suspended()) {
968        return NO_ERROR;
969    }
970
971    status_t status = mEffect->setEnabled(true);
972    if (status != NO_ERROR) {
973        if (thread != 0) {
974            thread->checkSuspendOnEffectEnabled(mEffect, false, mEffect->sessionId());
975        }
976        mEnabled = false;
977    } else {
978        if (thread != 0) {
979            if (thread->type() == ThreadBase::OFFLOAD) {
980                PlaybackThread *t = (PlaybackThread *)thread.get();
981                Mutex::Autolock _l(t->mLock);
982                t->broadcast_l();
983            }
984            if (!mEffect->isOffloadable()) {
985                if (thread->type() == ThreadBase::OFFLOAD) {
986                    PlaybackThread *t = (PlaybackThread *)thread.get();
987                    t->invalidateTracks(AUDIO_STREAM_MUSIC);
988                }
989                if (mEffect->sessionId() == AUDIO_SESSION_OUTPUT_MIX) {
990                    thread->mAudioFlinger->onNonOffloadableGlobalEffectEnable();
991                }
992            }
993        }
994    }
995    return status;
996}
997
998status_t AudioFlinger::EffectHandle::disable()
999{
1000    ALOGV("disable %p", this);
1001    if (!mHasControl) {
1002        return INVALID_OPERATION;
1003    }
1004    if (mEffect == 0) {
1005        return DEAD_OBJECT;
1006    }
1007
1008    if (!mEnabled) {
1009        return NO_ERROR;
1010    }
1011    mEnabled = false;
1012
1013    if (mEffect->suspended()) {
1014        return NO_ERROR;
1015    }
1016
1017    status_t status = mEffect->setEnabled(false);
1018
1019    sp<ThreadBase> thread = mEffect->thread().promote();
1020    if (thread != 0) {
1021        thread->checkSuspendOnEffectEnabled(mEffect, false, mEffect->sessionId());
1022        if (thread->type() == ThreadBase::OFFLOAD) {
1023            PlaybackThread *t = (PlaybackThread *)thread.get();
1024            Mutex::Autolock _l(t->mLock);
1025            t->broadcast_l();
1026        }
1027    }
1028
1029    return status;
1030}
1031
1032void AudioFlinger::EffectHandle::disconnect()
1033{
1034    disconnect(true);
1035}
1036
1037void AudioFlinger::EffectHandle::disconnect(bool unpinIfLast)
1038{
1039    ALOGV("disconnect(%s)", unpinIfLast ? "true" : "false");
1040    if (mEffect == 0) {
1041        return;
1042    }
1043    // restore suspended effects if the disconnected handle was enabled and the last one.
1044    if ((mEffect->disconnect(this, unpinIfLast) == 0) && mEnabled) {
1045        sp<ThreadBase> thread = mEffect->thread().promote();
1046        if (thread != 0) {
1047            thread->checkSuspendOnEffectEnabled(mEffect, false, mEffect->sessionId());
1048        }
1049    }
1050
1051    // release sp on module => module destructor can be called now
1052    mEffect.clear();
1053    if (mClient != 0) {
1054        if (mCblk != NULL) {
1055            // unlike ~TrackBase(), mCblk is never a local new, so don't delete
1056            mCblk->~effect_param_cblk_t();   // destroy our shared-structure.
1057        }
1058        mCblkMemory.clear();    // free the shared memory before releasing the heap it belongs to
1059        // Client destructor must run with AudioFlinger mutex locked
1060        Mutex::Autolock _l(mClient->audioFlinger()->mLock);
1061        mClient.clear();
1062    }
1063}
1064
1065status_t AudioFlinger::EffectHandle::command(uint32_t cmdCode,
1066                                             uint32_t cmdSize,
1067                                             void *pCmdData,
1068                                             uint32_t *replySize,
1069                                             void *pReplyData)
1070{
1071    ALOGVV("command(), cmdCode: %d, mHasControl: %d, mEffect: %p",
1072            cmdCode, mHasControl, (mEffect == 0) ? 0 : mEffect.get());
1073
1074    // only get parameter command is permitted for applications not controlling the effect
1075    if (!mHasControl && cmdCode != EFFECT_CMD_GET_PARAM) {
1076        return INVALID_OPERATION;
1077    }
1078    if (mEffect == 0) {
1079        return DEAD_OBJECT;
1080    }
1081    if (mClient == 0) {
1082        return INVALID_OPERATION;
1083    }
1084
1085    // handle commands that are not forwarded transparently to effect engine
1086    if (cmdCode == EFFECT_CMD_SET_PARAM_COMMIT) {
1087        // No need to trylock() here as this function is executed in the binder thread serving a
1088        // particular client process:  no risk to block the whole media server process or mixer
1089        // threads if we are stuck here
1090        Mutex::Autolock _l(mCblk->lock);
1091        if (mCblk->clientIndex > EFFECT_PARAM_BUFFER_SIZE ||
1092            mCblk->serverIndex > EFFECT_PARAM_BUFFER_SIZE) {
1093            mCblk->serverIndex = 0;
1094            mCblk->clientIndex = 0;
1095            return BAD_VALUE;
1096        }
1097        status_t status = NO_ERROR;
1098        while (mCblk->serverIndex < mCblk->clientIndex) {
1099            int reply;
1100            uint32_t rsize = sizeof(int);
1101            int *p = (int *)(mBuffer + mCblk->serverIndex);
1102            int size = *p++;
1103            if (((uint8_t *)p + size) > mBuffer + mCblk->clientIndex) {
1104                ALOGW("command(): invalid parameter block size");
1105                break;
1106            }
1107            effect_param_t *param = (effect_param_t *)p;
1108            if (param->psize == 0 || param->vsize == 0) {
1109                ALOGW("command(): null parameter or value size");
1110                mCblk->serverIndex += size;
1111                continue;
1112            }
1113            uint32_t psize = sizeof(effect_param_t) +
1114                             ((param->psize - 1) / sizeof(int) + 1) * sizeof(int) +
1115                             param->vsize;
1116            status_t ret = mEffect->command(EFFECT_CMD_SET_PARAM,
1117                                            psize,
1118                                            p,
1119                                            &rsize,
1120                                            &reply);
1121            // stop at first error encountered
1122            if (ret != NO_ERROR) {
1123                status = ret;
1124                *(int *)pReplyData = reply;
1125                break;
1126            } else if (reply != NO_ERROR) {
1127                *(int *)pReplyData = reply;
1128                break;
1129            }
1130            mCblk->serverIndex += size;
1131        }
1132        mCblk->serverIndex = 0;
1133        mCblk->clientIndex = 0;
1134        return status;
1135    } else if (cmdCode == EFFECT_CMD_ENABLE) {
1136        *(int *)pReplyData = NO_ERROR;
1137        return enable();
1138    } else if (cmdCode == EFFECT_CMD_DISABLE) {
1139        *(int *)pReplyData = NO_ERROR;
1140        return disable();
1141    }
1142
1143    return mEffect->command(cmdCode, cmdSize, pCmdData, replySize, pReplyData);
1144}
1145
1146void AudioFlinger::EffectHandle::setControl(bool hasControl, bool signal, bool enabled)
1147{
1148    ALOGV("setControl %p control %d", this, hasControl);
1149
1150    mHasControl = hasControl;
1151    mEnabled = enabled;
1152
1153    if (signal && mEffectClient != 0) {
1154        mEffectClient->controlStatusChanged(hasControl);
1155    }
1156}
1157
1158void AudioFlinger::EffectHandle::commandExecuted(uint32_t cmdCode,
1159                                                 uint32_t cmdSize,
1160                                                 void *pCmdData,
1161                                                 uint32_t replySize,
1162                                                 void *pReplyData)
1163{
1164    if (mEffectClient != 0) {
1165        mEffectClient->commandExecuted(cmdCode, cmdSize, pCmdData, replySize, pReplyData);
1166    }
1167}
1168
1169
1170
1171void AudioFlinger::EffectHandle::setEnabled(bool enabled)
1172{
1173    if (mEffectClient != 0) {
1174        mEffectClient->enableStatusChanged(enabled);
1175    }
1176}
1177
1178status_t AudioFlinger::EffectHandle::onTransact(
1179    uint32_t code, const Parcel& data, Parcel* reply, uint32_t flags)
1180{
1181    return BnEffect::onTransact(code, data, reply, flags);
1182}
1183
1184
1185void AudioFlinger::EffectHandle::dump(char* buffer, size_t size)
1186{
1187    bool locked = mCblk != NULL && AudioFlinger::dumpTryLock(mCblk->lock);
1188
1189    snprintf(buffer, size, "\t\t\t%05d %05d    %01u    %01u      %05u  %05u\n",
1190            (mClient == 0) ? getpid_cached : mClient->pid(),
1191            mPriority,
1192            mHasControl,
1193            !locked,
1194            mCblk ? mCblk->clientIndex : 0,
1195            mCblk ? mCblk->serverIndex : 0
1196            );
1197
1198    if (locked) {
1199        mCblk->lock.unlock();
1200    }
1201}
1202
1203#undef LOG_TAG
1204#define LOG_TAG "AudioFlinger::EffectChain"
1205
1206AudioFlinger::EffectChain::EffectChain(ThreadBase *thread,
1207                                        int sessionId)
1208    : mThread(thread), mSessionId(sessionId), mActiveTrackCnt(0), mTrackCnt(0), mTailBufferCount(0),
1209      mOwnInBuffer(false), mVolumeCtrlIdx(-1), mLeftVolume(UINT_MAX), mRightVolume(UINT_MAX),
1210      mNewLeftVolume(UINT_MAX), mNewRightVolume(UINT_MAX)
1211{
1212    mStrategy = AudioSystem::getStrategyForStream(AUDIO_STREAM_MUSIC);
1213    if (thread == NULL) {
1214        return;
1215    }
1216    mMaxTailBuffers = ((kProcessTailDurationMs * thread->sampleRate()) / 1000) /
1217                                    thread->frameCount();
1218}
1219
1220AudioFlinger::EffectChain::~EffectChain()
1221{
1222    if (mOwnInBuffer) {
1223        delete mInBuffer;
1224    }
1225
1226}
1227
1228// getEffectFromDesc_l() must be called with ThreadBase::mLock held
1229sp<AudioFlinger::EffectModule> AudioFlinger::EffectChain::getEffectFromDesc_l(
1230        effect_descriptor_t *descriptor)
1231{
1232    size_t size = mEffects.size();
1233
1234    for (size_t i = 0; i < size; i++) {
1235        if (memcmp(&mEffects[i]->desc().uuid, &descriptor->uuid, sizeof(effect_uuid_t)) == 0) {
1236            return mEffects[i];
1237        }
1238    }
1239    return 0;
1240}
1241
1242// getEffectFromId_l() must be called with ThreadBase::mLock held
1243sp<AudioFlinger::EffectModule> AudioFlinger::EffectChain::getEffectFromId_l(int id)
1244{
1245    size_t size = mEffects.size();
1246
1247    for (size_t i = 0; i < size; i++) {
1248        // by convention, return first effect if id provided is 0 (0 is never a valid id)
1249        if (id == 0 || mEffects[i]->id() == id) {
1250            return mEffects[i];
1251        }
1252    }
1253    return 0;
1254}
1255
1256// getEffectFromType_l() must be called with ThreadBase::mLock held
1257sp<AudioFlinger::EffectModule> AudioFlinger::EffectChain::getEffectFromType_l(
1258        const effect_uuid_t *type)
1259{
1260    size_t size = mEffects.size();
1261
1262    for (size_t i = 0; i < size; i++) {
1263        if (memcmp(&mEffects[i]->desc().type, type, sizeof(effect_uuid_t)) == 0) {
1264            return mEffects[i];
1265        }
1266    }
1267    return 0;
1268}
1269
1270void AudioFlinger::EffectChain::clearInputBuffer()
1271{
1272    Mutex::Autolock _l(mLock);
1273    sp<ThreadBase> thread = mThread.promote();
1274    if (thread == 0) {
1275        ALOGW("clearInputBuffer(): cannot promote mixer thread");
1276        return;
1277    }
1278    clearInputBuffer_l(thread);
1279}
1280
1281// Must be called with EffectChain::mLock locked
1282void AudioFlinger::EffectChain::clearInputBuffer_l(sp<ThreadBase> thread)
1283{
1284    memset(mInBuffer, 0, thread->frameCount() * thread->frameSize());
1285}
1286
1287// Must be called with EffectChain::mLock locked
1288void AudioFlinger::EffectChain::process_l()
1289{
1290    sp<ThreadBase> thread = mThread.promote();
1291    if (thread == 0) {
1292        ALOGW("process_l(): cannot promote mixer thread");
1293        return;
1294    }
1295    bool isGlobalSession = (mSessionId == AUDIO_SESSION_OUTPUT_MIX) ||
1296            (mSessionId == AUDIO_SESSION_OUTPUT_STAGE);
1297    // never process effects when:
1298    // - on an OFFLOAD thread
1299    // - no more tracks are on the session and the effect tail has been rendered
1300    bool doProcess = (thread->type() != ThreadBase::OFFLOAD);
1301    if (!isGlobalSession) {
1302        bool tracksOnSession = (trackCnt() != 0);
1303
1304        if (!tracksOnSession && mTailBufferCount == 0) {
1305            doProcess = false;
1306        }
1307
1308        if (activeTrackCnt() == 0) {
1309            // if no track is active and the effect tail has not been rendered,
1310            // the input buffer must be cleared here as the mixer process will not do it
1311            if (tracksOnSession || mTailBufferCount > 0) {
1312                clearInputBuffer_l(thread);
1313                if (mTailBufferCount > 0) {
1314                    mTailBufferCount--;
1315                }
1316            }
1317        }
1318    }
1319
1320    size_t size = mEffects.size();
1321    if (doProcess) {
1322        for (size_t i = 0; i < size; i++) {
1323            mEffects[i]->process();
1324        }
1325    }
1326    for (size_t i = 0; i < size; i++) {
1327        mEffects[i]->updateState();
1328    }
1329}
1330
1331// addEffect_l() must be called with PlaybackThread::mLock held
1332status_t AudioFlinger::EffectChain::addEffect_l(const sp<EffectModule>& effect)
1333{
1334    effect_descriptor_t desc = effect->desc();
1335    uint32_t insertPref = desc.flags & EFFECT_FLAG_INSERT_MASK;
1336
1337    Mutex::Autolock _l(mLock);
1338    effect->setChain(this);
1339    sp<ThreadBase> thread = mThread.promote();
1340    if (thread == 0) {
1341        return NO_INIT;
1342    }
1343    effect->setThread(thread);
1344
1345    if ((desc.flags & EFFECT_FLAG_TYPE_MASK) == EFFECT_FLAG_TYPE_AUXILIARY) {
1346        // Auxiliary effects are inserted at the beginning of mEffects vector as
1347        // they are processed first and accumulated in chain input buffer
1348        mEffects.insertAt(effect, 0);
1349
1350        // the input buffer for auxiliary effect contains mono samples in
1351        // 32 bit format. This is to avoid saturation in AudoMixer
1352        // accumulation stage. Saturation is done in EffectModule::process() before
1353        // calling the process in effect engine
1354        size_t numSamples = thread->frameCount();
1355        int32_t *buffer = new int32_t[numSamples];
1356        memset(buffer, 0, numSamples * sizeof(int32_t));
1357        effect->setInBuffer((int16_t *)buffer);
1358        // auxiliary effects output samples to chain input buffer for further processing
1359        // by insert effects
1360        effect->setOutBuffer(mInBuffer);
1361    } else {
1362        // Insert effects are inserted at the end of mEffects vector as they are processed
1363        //  after track and auxiliary effects.
1364        // Insert effect order as a function of indicated preference:
1365        //  if EFFECT_FLAG_INSERT_EXCLUSIVE, insert in first position or reject if
1366        //  another effect is present
1367        //  else if EFFECT_FLAG_INSERT_FIRST, insert in first position or after the
1368        //  last effect claiming first position
1369        //  else if EFFECT_FLAG_INSERT_LAST, insert in last position or before the
1370        //  first effect claiming last position
1371        //  else if EFFECT_FLAG_INSERT_ANY insert after first or before last
1372        // Reject insertion if an effect with EFFECT_FLAG_INSERT_EXCLUSIVE is
1373        // already present
1374
1375        size_t size = mEffects.size();
1376        size_t idx_insert = size;
1377        ssize_t idx_insert_first = -1;
1378        ssize_t idx_insert_last = -1;
1379
1380        for (size_t i = 0; i < size; i++) {
1381            effect_descriptor_t d = mEffects[i]->desc();
1382            uint32_t iMode = d.flags & EFFECT_FLAG_TYPE_MASK;
1383            uint32_t iPref = d.flags & EFFECT_FLAG_INSERT_MASK;
1384            if (iMode == EFFECT_FLAG_TYPE_INSERT) {
1385                // check invalid effect chaining combinations
1386                if (insertPref == EFFECT_FLAG_INSERT_EXCLUSIVE ||
1387                    iPref == EFFECT_FLAG_INSERT_EXCLUSIVE) {
1388                    ALOGW("addEffect_l() could not insert effect %s: exclusive conflict with %s",
1389                            desc.name, d.name);
1390                    return INVALID_OPERATION;
1391                }
1392                // remember position of first insert effect and by default
1393                // select this as insert position for new effect
1394                if (idx_insert == size) {
1395                    idx_insert = i;
1396                }
1397                // remember position of last insert effect claiming
1398                // first position
1399                if (iPref == EFFECT_FLAG_INSERT_FIRST) {
1400                    idx_insert_first = i;
1401                }
1402                // remember position of first insert effect claiming
1403                // last position
1404                if (iPref == EFFECT_FLAG_INSERT_LAST &&
1405                    idx_insert_last == -1) {
1406                    idx_insert_last = i;
1407                }
1408            }
1409        }
1410
1411        // modify idx_insert from first position if needed
1412        if (insertPref == EFFECT_FLAG_INSERT_LAST) {
1413            if (idx_insert_last != -1) {
1414                idx_insert = idx_insert_last;
1415            } else {
1416                idx_insert = size;
1417            }
1418        } else {
1419            if (idx_insert_first != -1) {
1420                idx_insert = idx_insert_first + 1;
1421            }
1422        }
1423
1424        // always read samples from chain input buffer
1425        effect->setInBuffer(mInBuffer);
1426
1427        // if last effect in the chain, output samples to chain
1428        // output buffer, otherwise to chain input buffer
1429        if (idx_insert == size) {
1430            if (idx_insert != 0) {
1431                mEffects[idx_insert-1]->setOutBuffer(mInBuffer);
1432                mEffects[idx_insert-1]->configure();
1433            }
1434            effect->setOutBuffer(mOutBuffer);
1435        } else {
1436            effect->setOutBuffer(mInBuffer);
1437        }
1438        mEffects.insertAt(effect, idx_insert);
1439
1440        ALOGV("addEffect_l() effect %p, added in chain %p at rank %d", effect.get(), this,
1441                idx_insert);
1442    }
1443    effect->configure();
1444    return NO_ERROR;
1445}
1446
1447// removeEffect_l() must be called with PlaybackThread::mLock held
1448size_t AudioFlinger::EffectChain::removeEffect_l(const sp<EffectModule>& effect)
1449{
1450    Mutex::Autolock _l(mLock);
1451    size_t size = mEffects.size();
1452    uint32_t type = effect->desc().flags & EFFECT_FLAG_TYPE_MASK;
1453
1454    for (size_t i = 0; i < size; i++) {
1455        if (effect == mEffects[i]) {
1456            // calling stop here will remove pre-processing effect from the audio HAL.
1457            // This is safe as we hold the EffectChain mutex which guarantees that we are not in
1458            // the middle of a read from audio HAL
1459            if (mEffects[i]->state() == EffectModule::ACTIVE ||
1460                    mEffects[i]->state() == EffectModule::STOPPING) {
1461                mEffects[i]->stop();
1462            }
1463            if (type == EFFECT_FLAG_TYPE_AUXILIARY) {
1464                delete[] effect->inBuffer();
1465            } else {
1466                if (i == size - 1 && i != 0) {
1467                    mEffects[i - 1]->setOutBuffer(mOutBuffer);
1468                    mEffects[i - 1]->configure();
1469                }
1470            }
1471            mEffects.removeAt(i);
1472            ALOGV("removeEffect_l() effect %p, removed from chain %p at rank %d", effect.get(),
1473                    this, i);
1474            break;
1475        }
1476    }
1477
1478    return mEffects.size();
1479}
1480
1481// setDevice_l() must be called with PlaybackThread::mLock held
1482void AudioFlinger::EffectChain::setDevice_l(audio_devices_t device)
1483{
1484    size_t size = mEffects.size();
1485    for (size_t i = 0; i < size; i++) {
1486        mEffects[i]->setDevice(device);
1487    }
1488}
1489
1490// setMode_l() must be called with PlaybackThread::mLock held
1491void AudioFlinger::EffectChain::setMode_l(audio_mode_t mode)
1492{
1493    size_t size = mEffects.size();
1494    for (size_t i = 0; i < size; i++) {
1495        mEffects[i]->setMode(mode);
1496    }
1497}
1498
1499// setAudioSource_l() must be called with PlaybackThread::mLock held
1500void AudioFlinger::EffectChain::setAudioSource_l(audio_source_t source)
1501{
1502    size_t size = mEffects.size();
1503    for (size_t i = 0; i < size; i++) {
1504        mEffects[i]->setAudioSource(source);
1505    }
1506}
1507
1508// setVolume_l() must be called with PlaybackThread::mLock held
1509bool AudioFlinger::EffectChain::setVolume_l(uint32_t *left, uint32_t *right)
1510{
1511    uint32_t newLeft = *left;
1512    uint32_t newRight = *right;
1513    bool hasControl = false;
1514    int ctrlIdx = -1;
1515    size_t size = mEffects.size();
1516
1517    // first update volume controller
1518    for (size_t i = size; i > 0; i--) {
1519        if (mEffects[i - 1]->isProcessEnabled() &&
1520            (mEffects[i - 1]->desc().flags & EFFECT_FLAG_VOLUME_MASK) == EFFECT_FLAG_VOLUME_CTRL) {
1521            ctrlIdx = i - 1;
1522            hasControl = true;
1523            break;
1524        }
1525    }
1526
1527    if (ctrlIdx == mVolumeCtrlIdx && *left == mLeftVolume && *right == mRightVolume) {
1528        if (hasControl) {
1529            *left = mNewLeftVolume;
1530            *right = mNewRightVolume;
1531        }
1532        return hasControl;
1533    }
1534
1535    mVolumeCtrlIdx = ctrlIdx;
1536    mLeftVolume = newLeft;
1537    mRightVolume = newRight;
1538
1539    // second get volume update from volume controller
1540    if (ctrlIdx >= 0) {
1541        mEffects[ctrlIdx]->setVolume(&newLeft, &newRight, true);
1542        mNewLeftVolume = newLeft;
1543        mNewRightVolume = newRight;
1544    }
1545    // then indicate volume to all other effects in chain.
1546    // Pass altered volume to effects before volume controller
1547    // and requested volume to effects after controller
1548    uint32_t lVol = newLeft;
1549    uint32_t rVol = newRight;
1550
1551    for (size_t i = 0; i < size; i++) {
1552        if ((int)i == ctrlIdx) {
1553            continue;
1554        }
1555        // this also works for ctrlIdx == -1 when there is no volume controller
1556        if ((int)i > ctrlIdx) {
1557            lVol = *left;
1558            rVol = *right;
1559        }
1560        mEffects[i]->setVolume(&lVol, &rVol, false);
1561    }
1562    *left = newLeft;
1563    *right = newRight;
1564
1565    return hasControl;
1566}
1567
1568void AudioFlinger::EffectChain::dump(int fd, const Vector<String16>& args)
1569{
1570    const size_t SIZE = 256;
1571    char buffer[SIZE];
1572    String8 result;
1573
1574    snprintf(buffer, SIZE, "Effects for session %d:\n", mSessionId);
1575    result.append(buffer);
1576
1577    bool locked = AudioFlinger::dumpTryLock(mLock);
1578    // failed to lock - AudioFlinger is probably deadlocked
1579    if (!locked) {
1580        result.append("\tCould not lock mutex:\n");
1581    }
1582
1583    result.append("\tNum fx In buffer   Out buffer   Active tracks:\n");
1584    snprintf(buffer, SIZE, "\t%02d     0x%08x  0x%08x   %d\n",
1585            mEffects.size(),
1586            (uint32_t)mInBuffer,
1587            (uint32_t)mOutBuffer,
1588            mActiveTrackCnt);
1589    result.append(buffer);
1590    write(fd, result.string(), result.size());
1591
1592    for (size_t i = 0; i < mEffects.size(); ++i) {
1593        sp<EffectModule> effect = mEffects[i];
1594        if (effect != 0) {
1595            effect->dump(fd, args);
1596        }
1597    }
1598
1599    if (locked) {
1600        mLock.unlock();
1601    }
1602}
1603
1604// must be called with ThreadBase::mLock held
1605void AudioFlinger::EffectChain::setEffectSuspended_l(
1606        const effect_uuid_t *type, bool suspend)
1607{
1608    sp<SuspendedEffectDesc> desc;
1609    // use effect type UUID timelow as key as there is no real risk of identical
1610    // timeLow fields among effect type UUIDs.
1611    ssize_t index = mSuspendedEffects.indexOfKey(type->timeLow);
1612    if (suspend) {
1613        if (index >= 0) {
1614            desc = mSuspendedEffects.valueAt(index);
1615        } else {
1616            desc = new SuspendedEffectDesc();
1617            desc->mType = *type;
1618            mSuspendedEffects.add(type->timeLow, desc);
1619            ALOGV("setEffectSuspended_l() add entry for %08x", type->timeLow);
1620        }
1621        if (desc->mRefCount++ == 0) {
1622            sp<EffectModule> effect = getEffectIfEnabled(type);
1623            if (effect != 0) {
1624                desc->mEffect = effect;
1625                effect->setSuspended(true);
1626                effect->setEnabled(false);
1627            }
1628        }
1629    } else {
1630        if (index < 0) {
1631            return;
1632        }
1633        desc = mSuspendedEffects.valueAt(index);
1634        if (desc->mRefCount <= 0) {
1635            ALOGW("setEffectSuspended_l() restore refcount should not be 0 %d", desc->mRefCount);
1636            desc->mRefCount = 1;
1637        }
1638        if (--desc->mRefCount == 0) {
1639            ALOGV("setEffectSuspended_l() remove entry for %08x", mSuspendedEffects.keyAt(index));
1640            if (desc->mEffect != 0) {
1641                sp<EffectModule> effect = desc->mEffect.promote();
1642                if (effect != 0) {
1643                    effect->setSuspended(false);
1644                    effect->lock();
1645                    EffectHandle *handle = effect->controlHandle_l();
1646                    if (handle != NULL && !handle->destroyed_l()) {
1647                        effect->setEnabled_l(handle->enabled());
1648                    }
1649                    effect->unlock();
1650                }
1651                desc->mEffect.clear();
1652            }
1653            mSuspendedEffects.removeItemsAt(index);
1654        }
1655    }
1656}
1657
1658// must be called with ThreadBase::mLock held
1659void AudioFlinger::EffectChain::setEffectSuspendedAll_l(bool suspend)
1660{
1661    sp<SuspendedEffectDesc> desc;
1662
1663    ssize_t index = mSuspendedEffects.indexOfKey((int)kKeyForSuspendAll);
1664    if (suspend) {
1665        if (index >= 0) {
1666            desc = mSuspendedEffects.valueAt(index);
1667        } else {
1668            desc = new SuspendedEffectDesc();
1669            mSuspendedEffects.add((int)kKeyForSuspendAll, desc);
1670            ALOGV("setEffectSuspendedAll_l() add entry for 0");
1671        }
1672        if (desc->mRefCount++ == 0) {
1673            Vector< sp<EffectModule> > effects;
1674            getSuspendEligibleEffects(effects);
1675            for (size_t i = 0; i < effects.size(); i++) {
1676                setEffectSuspended_l(&effects[i]->desc().type, true);
1677            }
1678        }
1679    } else {
1680        if (index < 0) {
1681            return;
1682        }
1683        desc = mSuspendedEffects.valueAt(index);
1684        if (desc->mRefCount <= 0) {
1685            ALOGW("setEffectSuspendedAll_l() restore refcount should not be 0 %d", desc->mRefCount);
1686            desc->mRefCount = 1;
1687        }
1688        if (--desc->mRefCount == 0) {
1689            Vector<const effect_uuid_t *> types;
1690            for (size_t i = 0; i < mSuspendedEffects.size(); i++) {
1691                if (mSuspendedEffects.keyAt(i) == (int)kKeyForSuspendAll) {
1692                    continue;
1693                }
1694                types.add(&mSuspendedEffects.valueAt(i)->mType);
1695            }
1696            for (size_t i = 0; i < types.size(); i++) {
1697                setEffectSuspended_l(types[i], false);
1698            }
1699            ALOGV("setEffectSuspendedAll_l() remove entry for %08x",
1700                    mSuspendedEffects.keyAt(index));
1701            mSuspendedEffects.removeItem((int)kKeyForSuspendAll);
1702        }
1703    }
1704}
1705
1706
1707// The volume effect is used for automated tests only
1708#ifndef OPENSL_ES_H_
1709static const effect_uuid_t SL_IID_VOLUME_ = { 0x09e8ede0, 0xddde, 0x11db, 0xb4f6,
1710                                            { 0x00, 0x02, 0xa5, 0xd5, 0xc5, 0x1b } };
1711const effect_uuid_t * const SL_IID_VOLUME = &SL_IID_VOLUME_;
1712#endif //OPENSL_ES_H_
1713
1714bool AudioFlinger::EffectChain::isEffectEligibleForSuspend(const effect_descriptor_t& desc)
1715{
1716    // auxiliary effects and visualizer are never suspended on output mix
1717    if ((mSessionId == AUDIO_SESSION_OUTPUT_MIX) &&
1718        (((desc.flags & EFFECT_FLAG_TYPE_MASK) == EFFECT_FLAG_TYPE_AUXILIARY) ||
1719         (memcmp(&desc.type, SL_IID_VISUALIZATION, sizeof(effect_uuid_t)) == 0) ||
1720         (memcmp(&desc.type, SL_IID_VOLUME, sizeof(effect_uuid_t)) == 0))) {
1721        return false;
1722    }
1723    return true;
1724}
1725
1726void AudioFlinger::EffectChain::getSuspendEligibleEffects(
1727        Vector< sp<AudioFlinger::EffectModule> > &effects)
1728{
1729    effects.clear();
1730    for (size_t i = 0; i < mEffects.size(); i++) {
1731        if (isEffectEligibleForSuspend(mEffects[i]->desc())) {
1732            effects.add(mEffects[i]);
1733        }
1734    }
1735}
1736
1737sp<AudioFlinger::EffectModule> AudioFlinger::EffectChain::getEffectIfEnabled(
1738                                                            const effect_uuid_t *type)
1739{
1740    sp<EffectModule> effect = getEffectFromType_l(type);
1741    return effect != 0 && effect->isEnabled() ? effect : 0;
1742}
1743
1744void AudioFlinger::EffectChain::checkSuspendOnEffectEnabled(const sp<EffectModule>& effect,
1745                                                            bool enabled)
1746{
1747    ssize_t index = mSuspendedEffects.indexOfKey(effect->desc().type.timeLow);
1748    if (enabled) {
1749        if (index < 0) {
1750            // if the effect is not suspend check if all effects are suspended
1751            index = mSuspendedEffects.indexOfKey((int)kKeyForSuspendAll);
1752            if (index < 0) {
1753                return;
1754            }
1755            if (!isEffectEligibleForSuspend(effect->desc())) {
1756                return;
1757            }
1758            setEffectSuspended_l(&effect->desc().type, enabled);
1759            index = mSuspendedEffects.indexOfKey(effect->desc().type.timeLow);
1760            if (index < 0) {
1761                ALOGW("checkSuspendOnEffectEnabled() Fx should be suspended here!");
1762                return;
1763            }
1764        }
1765        ALOGV("checkSuspendOnEffectEnabled() enable suspending fx %08x",
1766            effect->desc().type.timeLow);
1767        sp<SuspendedEffectDesc> desc = mSuspendedEffects.valueAt(index);
1768        // if effect is requested to suspended but was not yet enabled, supend it now.
1769        if (desc->mEffect == 0) {
1770            desc->mEffect = effect;
1771            effect->setEnabled(false);
1772            effect->setSuspended(true);
1773        }
1774    } else {
1775        if (index < 0) {
1776            return;
1777        }
1778        ALOGV("checkSuspendOnEffectEnabled() disable restoring fx %08x",
1779            effect->desc().type.timeLow);
1780        sp<SuspendedEffectDesc> desc = mSuspendedEffects.valueAt(index);
1781        desc->mEffect.clear();
1782        effect->setSuspended(false);
1783    }
1784}
1785
1786bool AudioFlinger::EffectChain::isNonOffloadableEnabled()
1787{
1788    Mutex::Autolock _l(mLock);
1789    size_t size = mEffects.size();
1790    for (size_t i = 0; i < size; i++) {
1791        if (mEffects[i]->isEnabled() && !mEffects[i]->isOffloadable()) {
1792            return true;
1793        }
1794    }
1795    return false;
1796}
1797
1798}; // namespace android
1799