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https://github.com/RetroDECK/Supermodel.git
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Changes to Audio.cpp:
- audio buffer is now kept as full as possible with new audio buffering method rather than just half full like before (this is okay now that buffer overruns have been eliminated) - altered minimum size of audio buffer so that audio still works with a zero latency setting (obviously there will still be some latency)
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@ -38,8 +38,8 @@ static bool writeWrapped = false; // True if write position has wrapped around
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static unsigned underRuns = 0; // Number of buffer under-runs that have occured
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static unsigned overRuns = 0; // Number of buffer over-runs that have occured
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static AudioCallbackFPtr callback = NULL;
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static void *callbackData = NULL;
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static AudioCallbackFPtr callback = NULL; // Pointer to audio callback that is called when audio buffer is less than half empty
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static void *callbackData = NULL; // Pointer to data to be passed to audio callback when it is called
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void SetAudioCallback(AudioCallbackFPtr newCallback, void *newData)
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{
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@ -147,8 +147,8 @@ static void PlayCallback(void *data, Uint8 *stream, int len)
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// Move play position forward for next time
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playPos += len;
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bool halfEmpty = adjWritePos + audioBufferSize / 2 - BYTES_PER_FRAME / 2 < playPos + audioBufferSize;
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bool bufferFull = adjWritePos + 2 * BYTES_PER_FRAME > playPos + audioBufferSize;
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// Check if play position has moved past end of buffer
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if (playPos >= audioBufferSize)
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{
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@ -157,8 +157,8 @@ static void PlayCallback(void *data, Uint8 *stream, int len)
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writeWrapped = false;
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}
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// If buffer is more than half empty then call callback
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if (callback && halfEmpty)
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// If buffer is not full then call audio callback
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if (callback && !bufferFull)
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callback(callbackData);
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}
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@ -228,8 +228,8 @@ bool OpenAudio()
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// Create audio buffer
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audioBufferSize = SAMPLE_RATE * BYTES_PER_SAMPLE * latency / MAX_LATENCY;
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int roundBuffer = 2 * playSamples;
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audioBufferSize = max<int>(roundBuffer, (audioBufferSize / roundBuffer) * roundBuffer);
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int minBufferSize = 3 * BYTES_PER_FRAME;
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audioBufferSize = max<int>(minBufferSize, audioBufferSize);
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audioBuffer = new(std::nothrow) INT8[audioBufferSize];
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if (audioBuffer == NULL)
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{
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@ -240,7 +240,7 @@ bool OpenAudio()
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// Set initial play position to be beginning of buffer and initial write position to be half-way into buffer
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playPos = 0;
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writePos = (BYTES_PER_FRAME + audioBufferSize) / 2;
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writePos = min<int>(audioBufferSize - BYTES_PER_FRAME, (BYTES_PER_FRAME + audioBufferSize) / 2);
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writeWrapped = false;
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// Reset counters
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@ -257,8 +257,6 @@ bool OutputAudio(unsigned numSamples, INT16 *leftBuffer, INT16 *rightBuffer)
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//printf("OutputAudio(%u) [writePos = %u, writeWrapped = %s, playPos = %u, audioBufferSize = %u]\n",
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// numSamples, writePos, (writeWrapped ? "true" : "false"), playPos, audioBufferSize);
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bool halfFull = false;
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UINT32 bytesRemaining;
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UINT32 bytesToCopy;
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INT16 *src;
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@ -323,8 +321,7 @@ bool OutputAudio(unsigned numSamples, INT16 *leftBuffer, INT16 *rightBuffer)
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// Check if write position has caught up with play region and now overlaps it (ie buffer over-run)
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bool overRun = writePos + numBytes > playPos + audioBufferSize;
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if (writePos + audioBufferSize / 2 + BYTES_PER_FRAME / 2 > playPos + audioBufferSize)
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halfFull = true;
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bool bufferFull = writePos + 2 * BYTES_PER_FRAME > playPos + audioBufferSize;
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// Move write position back to within buffer
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if (writePos >= audioBufferSize)
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@ -338,7 +335,7 @@ bool OutputAudio(unsigned numSamples, INT16 *leftBuffer, INT16 *rightBuffer)
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//printf("Audio buffer over-run #%u in OutputAudio(%u) [writePos = %u, writeWrapped = %s, playPos = %u, audioBufferSize = %u, numBytes = %u]\n",
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// overRuns, numSamples, writePos, (writeWrapped ? "true" : "false"), playPos, audioBufferSize, numBytes);
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halfFull = true;
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bufferFull = true;
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// Discard current chunk of data
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goto Finish;
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@ -400,7 +397,7 @@ Finish:
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SDL_UnlockAudio();
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// Return whether buffer is half full
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return halfFull;
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return bufferFull;
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}
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void CloseAudio()
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