Remove waiting for stream closure in multi-thread audio
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5458632c40
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@ -36,6 +36,7 @@ std::mutex gAudioThreadQueueMutex;
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std::condition_variable gAudioThreadCv;
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bool gAudioThreadTerm = false;
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std::queue<CStream*> gStreamsToProcess; // values are not unique, we will handle that ourself
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std::queue<std::pair<IDecoder*, void*>> gStreamsToClose;
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#else
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#include "stream.h"
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#endif
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@ -1012,7 +1013,11 @@ CStream::FlagAsToBeProcessed(bool close)
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return;
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gAudioThreadQueueMutex.lock();
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gStreamsToProcess.push(this);
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if (close)
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gStreamsToClose.push(std::pair<IDecoder*, void*>(m_pSoundFile ? m_pSoundFile : nil, m_pBuffer ? m_pBuffer : nil));
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else
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gStreamsToProcess.push(this);
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gAudioThreadQueueMutex.unlock();
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gAudioThreadCv.notify_one();
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@ -1026,10 +1031,22 @@ void audioFileOpsThread()
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{
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// Just a semaphore
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std::unique_lock<std::mutex> queueMutex(gAudioThreadQueueMutex);
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gAudioThreadCv.wait(queueMutex, [] { return gStreamsToProcess.size() > 0 || gAudioThreadTerm; });
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gAudioThreadCv.wait(queueMutex, [] { return gStreamsToProcess.size() > 0 || gStreamsToClose.size() > 0 || gAudioThreadTerm; });
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if (gAudioThreadTerm)
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return;
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if (!gStreamsToClose.empty()) {
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auto streamToClose = gStreamsToClose.front();
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gStreamsToClose.pop();
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if (streamToClose.first) { // pSoundFile
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delete streamToClose.first;
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}
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if (streamToClose.second) { // pBuffer
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free(streamToClose.second);
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}
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}
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if (!gStreamsToProcess.empty()) {
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stream = gStreamsToProcess.front();
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gStreamsToProcess.pop();
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@ -1044,18 +1061,6 @@ void audioFileOpsThread()
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do {
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if (!stream->IsOpened()) {
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// We MUST do that here, because we release mutex for m_pSoundFile->Seek() and m_pSoundFile->Decode() since they're costly
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if (stream->m_pSoundFile) {
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delete stream->m_pSoundFile;
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stream->m_pSoundFile = nil;
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}
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if (stream->m_pBuffer) {
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free(stream->m_pBuffer);
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stream->m_pBuffer = nil;
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}
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lock.unlock();
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stream->m_closeCv.notify_one();
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break;
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}
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@ -1166,10 +1171,6 @@ bool CStream::Open(const char* filename, uint32 overrideSampleRate)
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#ifdef MULTITHREADED_AUDIO
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std::unique_lock<std::mutex> lock(m_mutex);
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CStream *stream = this;
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// Wait for thread to close old one. We can't close it here, because the thread might be running Decode() or Seek(), while mutex is released
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m_closeCv.wait(lock, [this] { return m_pSoundFile == nil && m_pBuffer == nil; });
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m_bDoSeek = false;
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m_SeekPos = 0;
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#endif
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@ -1255,7 +1256,8 @@ void CStream::Close()
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Stop();
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ClearBuffers();
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m_bIExist = false;
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// clearing buffer queues are not needed. after m_bIExist is cleared, this stream is ded
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std::queue<std::pair<ALuint, ALuint>>().swap(m_fillBuffers);
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tsQueue<std::pair<ALuint, ALuint>>().swapNts(m_queueBuffers); // TSness not required, mutex is acquired
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}
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FlagAsToBeProcessed(true);
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@ -127,7 +127,7 @@ public:
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std::mutex m_mutex;
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std::queue<std::pair<ALuint, ALuint>> m_fillBuffers; // left and right buffer
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tsQueue<std::pair<ALuint, ALuint>> m_queueBuffers;
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std::condition_variable m_closeCv;
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// std::condition_variable m_closeCv;
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bool m_bDoSeek;
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uint32 m_SeekPos;
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bool m_bIExist;
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@ -526,6 +526,7 @@ _FindMP3s(void)
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{
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total_ms = aStream[0]->GetLengthMS();
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aStream[0]->Close();
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OutputDebugString(fd.cFileName);
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_pMP3List = new tMP3Entry;
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