171 lines
5.9 KiB
C++
171 lines
5.9 KiB
C++
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//
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// libtgvoip is free and unencumbered public domain software.
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// For more information, see http://unlicense.org or the UNLICENSE file
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// you should have received with this source code distribution.
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//
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#include <sys/time.h>
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#include <unistd.h>
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#include <assert.h>
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#include "AudioOutputOpenSLES.h"
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#include "../../logging.h"
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#include "../../VoIPController.h"
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#include "OpenSLEngineWrapper.h"
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#include "AudioInputAndroid.h"
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#define CHECK_SL_ERROR(res, msg) if(res!=SL_RESULT_SUCCESS){ LOGE(msg); failed=true; return; }
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#define BUFFER_SIZE 960 // 20 ms
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using namespace tgvoip;
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using namespace tgvoip::audio;
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unsigned int AudioOutputOpenSLES::nativeBufferSize;
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AudioOutputOpenSLES::AudioOutputOpenSLES(){
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SLresult result;
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slEngine=OpenSLEngineWrapper::CreateEngine();
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const SLInterfaceID pOutputMixIDs[] = {};
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const SLboolean pOutputMixRequired[] = {};
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result = (*slEngine)->CreateOutputMix(slEngine, &slOutputMixObj, 0, pOutputMixIDs, pOutputMixRequired);
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CHECK_SL_ERROR(result, "Error creating output mix");
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result = (*slOutputMixObj)->Realize(slOutputMixObj, SL_BOOLEAN_FALSE);
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CHECK_SL_ERROR(result, "Error realizing output mix");
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LOGI("Native buffer size is %u samples", nativeBufferSize);
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/*if(nativeBufferSize<BUFFER_SIZE && BUFFER_SIZE % nativeBufferSize!=0){
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LOGE("20ms is not divisible by native buffer size!!");
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nativeBufferSize=BUFFER_SIZE;
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}else if(nativeBufferSize>BUFFER_SIZE && nativeBufferSize%BUFFER_SIZE!=0){
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LOGE("native buffer size is not multiple of 20ms!!");
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nativeBufferSize+=nativeBufferSize%BUFFER_SIZE;
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}
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LOGI("Adjusted native buffer size is %u", nativeBufferSize);*/
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buffer=(int16_t*)calloc(BUFFER_SIZE, sizeof(int16_t));
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nativeBuffer=(int16_t*)calloc((size_t) nativeBufferSize, sizeof(int16_t));
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slPlayerObj=NULL;
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remainingDataSize=0;
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}
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AudioOutputOpenSLES::~AudioOutputOpenSLES(){
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if(!stopped)
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Stop();
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(*slBufferQueue)->Clear(slBufferQueue);
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LOGV("destroy slPlayerObj");
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(*slPlayerObj)->Destroy(slPlayerObj);
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LOGV("destroy slOutputMixObj");
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(*slOutputMixObj)->Destroy(slOutputMixObj);
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OpenSLEngineWrapper::DestroyEngine();
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free(buffer);
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free(nativeBuffer);
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}
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void AudioOutputOpenSLES::SetNativeBufferSize(unsigned int size){
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AudioOutputOpenSLES::nativeBufferSize=size;
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}
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void AudioOutputOpenSLES::BufferCallback(SLAndroidSimpleBufferQueueItf bq, void *context){
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((AudioOutputOpenSLES*)context)->HandleSLCallback();
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}
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void AudioOutputOpenSLES::Configure(uint32_t sampleRate, uint32_t bitsPerSample, uint32_t channels){
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assert(slPlayerObj==NULL);
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SLDataLocator_AndroidSimpleBufferQueue locatorBufferQueue =
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{SL_DATALOCATOR_ANDROIDSIMPLEBUFFERQUEUE, 1};
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SLDataFormat_PCM formatPCM = {SL_DATAFORMAT_PCM, channels, sampleRate*1000,
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SL_PCMSAMPLEFORMAT_FIXED_16, SL_PCMSAMPLEFORMAT_FIXED_16,
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channels==2 ? (SL_SPEAKER_FRONT_LEFT | SL_SPEAKER_FRONT_RIGHT) : SL_SPEAKER_FRONT_CENTER, SL_BYTEORDER_LITTLEENDIAN};
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SLDataSource audioSrc = {&locatorBufferQueue, &formatPCM};
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SLDataLocator_OutputMix locatorOutMix = {SL_DATALOCATOR_OUTPUTMIX, slOutputMixObj};
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SLDataSink audioSnk = {&locatorOutMix, NULL};
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const SLInterfaceID id[2] = {SL_IID_BUFFERQUEUE, SL_IID_ANDROIDCONFIGURATION};
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const SLboolean req[2] = {SL_BOOLEAN_TRUE, SL_BOOLEAN_TRUE};
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SLresult result = (*slEngine)->CreateAudioPlayer(slEngine, &slPlayerObj, &audioSrc, &audioSnk, 2, id, req);
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CHECK_SL_ERROR(result, "Error creating player");
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SLAndroidConfigurationItf playerConfig;
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result = (*slPlayerObj)->GetInterface(slPlayerObj, SL_IID_ANDROIDCONFIGURATION, &playerConfig);
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SLint32 streamType = SL_ANDROID_STREAM_VOICE;
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result = (*playerConfig)->SetConfiguration(playerConfig, SL_ANDROID_KEY_STREAM_TYPE, &streamType, sizeof(SLint32));
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result=(*slPlayerObj)->Realize(slPlayerObj, SL_BOOLEAN_FALSE);
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CHECK_SL_ERROR(result, "Error realizing player");
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result=(*slPlayerObj)->GetInterface(slPlayerObj, SL_IID_PLAY, &slPlayer);
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CHECK_SL_ERROR(result, "Error getting player interface");
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result=(*slPlayerObj)->GetInterface(slPlayerObj, SL_IID_ANDROIDSIMPLEBUFFERQUEUE, &slBufferQueue);
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CHECK_SL_ERROR(result, "Error getting buffer queue");
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result=(*slBufferQueue)->RegisterCallback(slBufferQueue, AudioOutputOpenSLES::BufferCallback, this);
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CHECK_SL_ERROR(result, "Error setting buffer queue callback");
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(*slBufferQueue)->Enqueue(slBufferQueue, nativeBuffer, nativeBufferSize*sizeof(int16_t));
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}
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bool AudioOutputOpenSLES::IsPhone(){
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return false;
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}
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void AudioOutputOpenSLES::EnableLoudspeaker(bool enabled){
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}
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void AudioOutputOpenSLES::Start(){
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stopped=false;
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SLresult result=(*slPlayer)->SetPlayState(slPlayer, SL_PLAYSTATE_PLAYING);
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CHECK_SL_ERROR(result, "Error starting player");
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}
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void AudioOutputOpenSLES::Stop(){
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stopped=true;
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LOGV("Stopping OpenSL output");
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SLresult result=(*slPlayer)->SetPlayState(slPlayer, SL_PLAYSTATE_PAUSED);
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CHECK_SL_ERROR(result, "Error starting player");
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}
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void AudioOutputOpenSLES::HandleSLCallback(){
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/*if(stopped){
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//LOGV("left HandleSLCallback early");
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return;
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}*/
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//LOGV("before InvokeCallback");
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if(!stopped){
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while(remainingDataSize<nativeBufferSize*2){
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assert(remainingDataSize+BUFFER_SIZE*2<10240);
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InvokeCallback(remainingData+remainingDataSize, BUFFER_SIZE*2);
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remainingDataSize+=BUFFER_SIZE*2;
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}
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memcpy(nativeBuffer, remainingData, nativeBufferSize*2);
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remainingDataSize-=nativeBufferSize*2;
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if(remainingDataSize>0)
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memmove(remainingData, remainingData+nativeBufferSize*2, remainingDataSize);
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//InvokeCallback((unsigned char *) nativeBuffer, nativeBufferSize*sizeof(int16_t));
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}else{
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memset(nativeBuffer, 0, nativeBufferSize*2);
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}
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(*slBufferQueue)->Enqueue(slBufferQueue, nativeBuffer, nativeBufferSize*sizeof(int16_t));
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//LOGV("left HandleSLCallback");
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}
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bool AudioOutputOpenSLES::IsPlaying(){
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if(slPlayer){
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uint32_t state;
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(*slPlayer)->GetPlayState(slPlayer, &state);
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return state==SL_PLAYSTATE_PLAYING;
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}
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return false;
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}
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float AudioOutputOpenSLES::GetLevel(){
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return 0; // we don't use this anyway
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}
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