mirror of
https://github.com/moonlight-stream/moonlight-android.git
synced 2026-02-16 10:31:07 +00:00
Add support for recovering from non-transient CodecExceptions
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@@ -70,6 +70,15 @@ public class MediaCodecDecoderRenderer extends VideoDecoderRenderer implements C
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private String glRenderer;
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private boolean foreground = true;
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private PerfOverlayListener perfListener;
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private volatile boolean needsRestart;
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private volatile boolean needsReset;
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private final Object codecRecoveryMonitor = new Object();
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private static final int CR_FLAG_INPUT_THREAD = 0x1;
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private static final int CR_FLAG_RENDER_THREAD = 0x2;
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private static final int CR_FLAG_CHOREOGRAPHER = 0x4;
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private static final int CR_FLAG_ALL = CR_FLAG_INPUT_THREAD | CR_FLAG_RENDER_THREAD | CR_FLAG_CHOREOGRAPHER;
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private int codecRecoveryThreadQuiescedFlags = 0;
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private MediaFormat inputFormat;
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private MediaFormat outputFormat;
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@@ -337,48 +346,43 @@ public class MediaCodecDecoderRenderer extends VideoDecoderRenderer implements C
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return videoFormat;
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}
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private void configureAndStartDecoder(MediaFormat format) {
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LimeLog.info("Configuring with format: "+format);
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videoDecoder.configure(format, renderTarget.getSurface(), null, 0);
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configuredFormat = format;
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// After reconfiguration, we must resubmit CSD buffers
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submittedCsd = false;
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submitCsdNextCall = false;
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vpsBuffer = null;
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spsBuffer = null;
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ppsBuffer = null;
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if (Build.VERSION.SDK_INT >= Build.VERSION_CODES.LOLLIPOP) {
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// This will contain the actual accepted input format attributes
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inputFormat = videoDecoder.getInputFormat();
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LimeLog.info("Input format: "+inputFormat);
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}
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videoDecoder.setVideoScalingMode(MediaCodec.VIDEO_SCALING_MODE_SCALE_TO_FIT);
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// Start the decoder
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videoDecoder.start();
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if (Build.VERSION.SDK_INT < Build.VERSION_CODES.LOLLIPOP) {
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legacyInputBuffers = videoDecoder.getInputBuffers();
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}
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fetchNextInputBuffer();
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}
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private boolean tryConfigureDecoder(MediaCodecInfo selectedDecoderInfo, MediaFormat format) {
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try {
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videoDecoder = MediaCodec.createByCodecName(selectedDecoderInfo.getName());
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LimeLog.info("Configuring with format: "+format);
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videoDecoder.configure(format, renderTarget.getSurface(), null, 0);
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configuredFormat = format;
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if (Build.VERSION.SDK_INT >= Build.VERSION_CODES.LOLLIPOP) {
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// This will contain the actual accepted input format attributes
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inputFormat = videoDecoder.getInputFormat();
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LimeLog.info("Input format: "+inputFormat);
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}
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videoDecoder.setVideoScalingMode(MediaCodec.VIDEO_SCALING_MODE_SCALE_TO_FIT);
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if (USE_FRAME_RENDER_TIME && Build.VERSION.SDK_INT >= Build.VERSION_CODES.M) {
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videoDecoder.setOnFrameRenderedListener(new MediaCodec.OnFrameRenderedListener() {
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@Override
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public void onFrameRendered(MediaCodec mediaCodec, long presentationTimeUs, long renderTimeNanos) {
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long delta = (renderTimeNanos / 1000000L) - (presentationTimeUs / 1000);
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if (delta >= 0 && delta < 1000) {
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if (USE_FRAME_RENDER_TIME) {
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activeWindowVideoStats.totalTimeMs += delta;
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}
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}
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}
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}, null);
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}
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configureAndStartDecoder(format);
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LimeLog.info("Using codec "+selectedDecoderInfo.getName()+" for hardware decoding "+format.getString(MediaFormat.KEY_MIME));
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// Start the decoder
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videoDecoder.start();
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if (Build.VERSION.SDK_INT < Build.VERSION_CODES.LOLLIPOP) {
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legacyInputBuffers = videoDecoder.getInputBuffers();
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}
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fetchNextInputBuffer();
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return true;
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} catch (Exception e) {
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e.printStackTrace();
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@@ -392,13 +396,7 @@ public class MediaCodecDecoderRenderer extends VideoDecoderRenderer implements C
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}
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}
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@Override
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public int setup(int format, int width, int height, int redrawRate) {
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this.initialWidth = width;
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this.initialHeight = height;
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this.videoFormat = format;
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this.refreshRate = redrawRate;
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public int initializeDecoder() {
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String mimeType;
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MediaCodecInfo selectedDecoderInfo;
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@@ -411,7 +409,7 @@ public class MediaCodecDecoderRenderer extends VideoDecoderRenderer implements C
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return -1;
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}
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if (width > 4096 || height > 4096) {
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if (initialWidth > 4096 || initialHeight > 4096) {
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LimeLog.severe("> 4K streaming only supported on HEVC");
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return -1;
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}
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@@ -475,9 +473,98 @@ public class MediaCodecDecoderRenderer extends VideoDecoderRenderer implements C
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}
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}
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if (USE_FRAME_RENDER_TIME && Build.VERSION.SDK_INT >= Build.VERSION_CODES.M) {
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videoDecoder.setOnFrameRenderedListener(new MediaCodec.OnFrameRenderedListener() {
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@Override
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public void onFrameRendered(MediaCodec mediaCodec, long presentationTimeUs, long renderTimeNanos) {
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long delta = (renderTimeNanos / 1000000L) - (presentationTimeUs / 1000);
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if (delta >= 0 && delta < 1000) {
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if (USE_FRAME_RENDER_TIME) {
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activeWindowVideoStats.totalTimeMs += delta;
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}
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}
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}
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}, null);
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}
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return 0;
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}
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@Override
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public int setup(int format, int width, int height, int redrawRate) {
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this.initialWidth = width;
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this.initialHeight = height;
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this.videoFormat = format;
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this.refreshRate = redrawRate;
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return initializeDecoder();
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}
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private boolean doCodecRecoveryIfRequired(int quiescenceFlag) {
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if (!needsReset && !needsRestart) {
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// Common case
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return false;
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}
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// We need some sort of recovery, so quiesce all threads before starting that
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synchronized (codecRecoveryMonitor) {
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if (choreographerHandlerThread == null) {
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// If we have no choreographer thread, we can just mark that as quiesced right now.
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codecRecoveryThreadQuiescedFlags |= CR_FLAG_CHOREOGRAPHER;
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}
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codecRecoveryThreadQuiescedFlags |= quiescenceFlag;
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if (codecRecoveryThreadQuiescedFlags == CR_FLAG_ALL) {
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// This is the final thread to quiesce, so let's perform the codec recovery now.
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// Input and output buffers are invalidated by stop() and reset().
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nextInputBuffer = null;
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nextInputBufferIndex = -1;
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outputBufferQueue.clear();
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if (needsReset) {
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// For "non-recoverable" exceptions, we have to release and recreate the decoder.
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LimeLog.warning("Trying to reset decoder after CodecException");
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videoDecoder.release();
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int err = initializeDecoder();
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if (err != 0) {
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throw new IllegalStateException("Decoder reset failed: " + err);
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}
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}
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else {
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// For "recoverable" exceptions, we can just stop, reconfigure, and restart.
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LimeLog.warning("Trying to recover decoder after CodecException");
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videoDecoder.stop();
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configureAndStartDecoder(configuredFormat);
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}
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// Wake all quiesced threads and allow them to begin work again
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needsReset = needsRestart = false;
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codecRecoveryThreadQuiescedFlags = 0;
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codecRecoveryMonitor.notifyAll();
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}
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else {
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// If we haven't quiesced all threads yet, wait to be signalled after recovery.
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// The final thread to be quiesced will handle the codec recovery.
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while (needsReset || needsRestart) {
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try {
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codecRecoveryMonitor.wait();
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} catch (InterruptedException e) {
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e.printStackTrace();
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// InterruptedException clears the thread's interrupt status. Since we can't
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// handle that here, we will re-interrupt the thread to set the interrupt
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// status back to true.
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Thread.currentThread().interrupt();
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}
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}
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}
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}
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return true;
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}
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// Returns true if the exception is transient
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private boolean handleDecoderException(Exception e, ByteBuffer buf, int codecFlags) {
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if (Build.VERSION.SDK_INT >= Build.VERSION_CODES.LOLLIPOP) {
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@@ -491,6 +578,17 @@ public class MediaCodecDecoderRenderer extends VideoDecoderRenderer implements C
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}
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LimeLog.severe(codecExc.getDiagnosticInfo());
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// We can attempt a recovery or reset at this stage to try to start decoding again
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if (codecExc.isRecoverable()) {
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needsRestart = true;
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}
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else {
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needsReset = true;
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}
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// The recovery will take place when all threads reach doCodecRecoveryIfRequired().
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return false;
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}
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}
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@@ -567,6 +665,8 @@ public class MediaCodecDecoderRenderer extends VideoDecoderRenderer implements C
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// This will leak nextOutputBuffer, but there's really nothing else we can do
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handleDecoderException(e, null, 0);
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}
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} finally {
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doCodecRecoveryIfRequired(CR_FLAG_CHOREOGRAPHER);
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}
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}
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}
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@@ -687,6 +787,8 @@ public class MediaCodecDecoderRenderer extends VideoDecoderRenderer implements C
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}
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} catch (Exception e) {
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handleDecoderException(e, null, 0);
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} finally {
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doCodecRecoveryIfRequired(CR_FLAG_RENDER_THREAD);
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}
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}
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}
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@@ -735,6 +837,11 @@ public class MediaCodecDecoderRenderer extends VideoDecoderRenderer implements C
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} catch (Exception e) {
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handleDecoderException(e, null, 0);
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return false;
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} finally {
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// This will reset nextInputBuffer if codec recovery is required, so we will return
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// false below. This will trigger the caller to request an IDR frame to complete
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// the decoder recovery process.
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doCodecRecoveryIfRequired(CR_FLAG_INPUT_THREAD);
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}
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int deltaMs = (int)(SystemClock.uptimeMillis() - startTime);
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@@ -835,6 +942,8 @@ public class MediaCodecDecoderRenderer extends VideoDecoderRenderer implements C
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}
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private boolean queueNextInputBuffer(long timestampUs, int codecFlags) {
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boolean ret;
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try {
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videoDecoder.queueInputBuffer(nextInputBufferIndex,
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0, nextInputBuffer.position(),
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@@ -843,6 +952,7 @@ public class MediaCodecDecoderRenderer extends VideoDecoderRenderer implements C
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// We need a new buffer now
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nextInputBufferIndex = -1;
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nextInputBuffer = null;
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ret = true;
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} catch (Exception e) {
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if (handleDecoderException(e, null, codecFlags)) {
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// We encountered a transient error. In this case, just hold onto the buffer
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@@ -856,14 +966,20 @@ public class MediaCodecDecoderRenderer extends VideoDecoderRenderer implements C
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nextInputBufferIndex = -1;
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nextInputBuffer = null;
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}
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return false;
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ret = false;
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}
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// If codec recovery is required, always return false to ensure the caller will request
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// an IDR frame to complete the codec recovery.
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if (doCodecRecoveryIfRequired(CR_FLAG_INPUT_THREAD)) {
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ret = false;
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}
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// Fetch a new input buffer now while we have some time between frames
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// to have it ready immediately when the next frame arrives.
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fetchNextInputBuffer();
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return true;
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return ret;
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}
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private void doProfileSpecificSpsPatching(SeqParameterSet sps) {
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