Merge "Coalesce multiple encoded AAC frames into a single input buffer on this particular OMX codec to increase throughput significantly." into froyo
This commit is contained in:
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Android (Google) Code Review
commit
eb6e3edc0f
@ -158,6 +158,7 @@ static void playSource(OMXClient *client, const sp<MediaSource> &source) {
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MediaSource::ReadOptions options;
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int64_t sumDecodeUs = 0;
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int64_t totalBytes = 0;
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while (numIterationsLeft-- > 0) {
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long numFrames = 0;
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@ -188,6 +189,7 @@ static void playSource(OMXClient *client, const sp<MediaSource> &source) {
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}
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sumDecodeUs += delayDecodeUs;
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totalBytes += buffer->range_length();
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buffer->release();
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buffer = NULL;
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@ -216,11 +218,20 @@ static void playSource(OMXClient *client, const sp<MediaSource> &source) {
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printf("\n");
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int64_t delay = getNowUs() - startTime;
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printf("avg. %.2f fps\n", n * 1E6 / delay);
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printf("avg. time to decode one buffer %.2f usecs\n",
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(double)sumDecodeUs / n);
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if (!strncasecmp("video/", mime, 6)) {
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printf("avg. %.2f fps\n", n * 1E6 / delay);
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printf("decoded a total of %d frame(s).\n", n);
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printf("avg. time to decode one buffer %.2f usecs\n",
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(double)sumDecodeUs / n);
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printf("decoded a total of %d frame(s).\n", n);
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} else if (!strncasecmp("audio/", mime, 6)) {
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// Frame count makes less sense for audio, as the output buffer
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// sizes may be different across decoders.
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printf("avg. %.2f KB/sec\n", totalBytes / 1024 * 1E6 / delay);
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printf("decoded a total of %lld bytes\n", totalBytes);
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}
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}
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static void usage(const char *me) {
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@ -87,16 +87,17 @@ private:
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};
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enum Quirks {
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kNeedsFlushBeforeDisable = 1,
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kWantsNALFragments = 2,
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kRequiresLoadedToIdleAfterAllocation = 4,
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kRequiresAllocateBufferOnInputPorts = 8,
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kRequiresFlushCompleteEmulation = 16,
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kRequiresAllocateBufferOnOutputPorts = 32,
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kRequiresFlushBeforeShutdown = 64,
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kDefersOutputBufferAllocation = 128,
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kDecoderLiesAboutNumberOfChannels = 256,
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kInputBufferSizesAreBogus = 512,
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kNeedsFlushBeforeDisable = 1,
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kWantsNALFragments = 2,
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kRequiresLoadedToIdleAfterAllocation = 4,
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kRequiresAllocateBufferOnInputPorts = 8,
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kRequiresFlushCompleteEmulation = 16,
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kRequiresAllocateBufferOnOutputPorts = 32,
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kRequiresFlushBeforeShutdown = 64,
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kDefersOutputBufferAllocation = 128,
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kDecoderLiesAboutNumberOfChannels = 256,
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kInputBufferSizesAreBogus = 512,
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kSupportsMultipleFramesPerInputBuffer = 1024,
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};
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struct BufferInfo {
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@ -137,6 +138,8 @@ private:
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bool mOutputPortSettingsHaveChanged;
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int64_t mSeekTimeUs;
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MediaBuffer *mLeftOverBuffer;
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Mutex mLock;
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Condition mAsyncCompletion;
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@ -103,6 +103,7 @@ static const CodecInfo kDecoderInfo[] = {
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{ MEDIA_MIMETYPE_AUDIO_MPEG, "OMX.TI.MP3.decode" },
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{ MEDIA_MIMETYPE_AUDIO_MPEG, "MP3Decoder" },
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// { MEDIA_MIMETYPE_AUDIO_MPEG, "OMX.PV.mp3dec" },
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// { MEDIA_MIMETYPE_AUDIO_AMR_NB, "OMX.TI.AMR.decode" },
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{ MEDIA_MIMETYPE_AUDIO_AMR_NB, "AMRNBDecoder" },
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// { MEDIA_MIMETYPE_AUDIO_AMR_NB, "OMX.PV.amrdec" },
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{ MEDIA_MIMETYPE_AUDIO_AMR_WB, "OMX.TI.WBAMR.decode" },
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@ -284,6 +285,7 @@ uint32_t OMXCodec::getComponentQuirks(const char *componentName) {
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if (!strcmp(componentName, "OMX.TI.AAC.decode")) {
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quirks |= kNeedsFlushBeforeDisable;
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quirks |= kRequiresFlushCompleteEmulation;
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quirks |= kSupportsMultipleFramesPerInputBuffer;
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}
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if (!strncmp(componentName, "OMX.qcom.video.encoder.", 23)) {
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quirks |= kRequiresLoadedToIdleAfterAllocation;
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@ -533,7 +535,28 @@ status_t OMXCodec::configureCodec(const sp<MetaData> &meta) {
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return err;
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}
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}
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} else if (!strncasecmp(mMIME, "audio/", 6)) {
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if ((mQuirks & kSupportsMultipleFramesPerInputBuffer)
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&& !strcmp(mComponentName, "OMX.TI.AAC.decode")) {
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OMX_PARAM_PORTDEFINITIONTYPE def;
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InitOMXParams(&def);
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def.nPortIndex = kPortIndexInput;
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status_t err = mOMX->getParameter(
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mNode, OMX_IndexParamPortDefinition, &def, sizeof(def));
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CHECK_EQ(err, OK);
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const size_t kMinBufferSize = 100 * 1024;
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if (def.nBufferSize < kMinBufferSize) {
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def.nBufferSize = kMinBufferSize;
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}
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err = mOMX->setParameter(
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mNode, OMX_IndexParamPortDefinition, &def, sizeof(def));
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CHECK_EQ(err, OK);
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}
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}
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if (!strcasecmp(mMIME, MEDIA_MIMETYPE_IMAGE_JPEG)
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&& !strcmp(mComponentName, "OMX.TI.JPEG.decode")) {
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OMX_COLOR_FORMATTYPE format =
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@ -1049,7 +1072,8 @@ OMXCodec::OMXCodec(
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mSignalledEOS(false),
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mNoMoreOutputData(false),
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mOutputPortSettingsHaveChanged(false),
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mSeekTimeUs(-1) {
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mSeekTimeUs(-1),
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mLeftOverBuffer(NULL) {
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mPortStatus[kPortIndexInput] = ENABLED;
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mPortStatus[kPortIndexOutput] = ENABLED;
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@ -1938,66 +1962,104 @@ void OMXCodec::drainInputBuffer(BufferInfo *info) {
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return;
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}
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MediaBuffer *srcBuffer;
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status_t err;
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if (mSeekTimeUs >= 0) {
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MediaSource::ReadOptions options;
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options.setSeekTo(mSeekTimeUs);
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mSeekTimeUs = -1;
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mBufferFilled.signal();
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bool signalEOS = false;
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int64_t timestampUs = 0;
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err = mSource->read(&srcBuffer, &options);
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} else {
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err = mSource->read(&srcBuffer);
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size_t offset = 0;
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int32_t n = 0;
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for (;;) {
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MediaBuffer *srcBuffer;
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if (mSeekTimeUs >= 0) {
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if (mLeftOverBuffer) {
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mLeftOverBuffer->release();
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mLeftOverBuffer = NULL;
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}
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MediaSource::ReadOptions options;
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options.setSeekTo(mSeekTimeUs);
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mSeekTimeUs = -1;
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mBufferFilled.signal();
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err = mSource->read(&srcBuffer, &options);
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} else if (mLeftOverBuffer) {
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srcBuffer = mLeftOverBuffer;
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mLeftOverBuffer = NULL;
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err = OK;
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} else {
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err = mSource->read(&srcBuffer);
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}
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if (err != OK) {
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signalEOS = true;
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mFinalStatus = err;
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mSignalledEOS = true;
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break;
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}
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size_t remainingBytes = info->mSize - offset;
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if (srcBuffer->range_length() > remainingBytes) {
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if (offset == 0) {
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CODEC_LOGE(
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"Codec's input buffers are too small to accomodate "
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"buffer read from source (info->mSize = %d, srcLength = %d)",
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info->mSize, srcBuffer->range_length());
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srcBuffer->release();
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srcBuffer = NULL;
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setState(ERROR);
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return;
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}
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mLeftOverBuffer = srcBuffer;
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break;
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}
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memcpy((uint8_t *)info->mData + offset,
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(const uint8_t *)srcBuffer->data() + srcBuffer->range_offset(),
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srcBuffer->range_length());
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if (offset == 0) {
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CHECK(srcBuffer->meta_data()->findInt64(kKeyTime, ×tampUs));
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CHECK(timestampUs >= 0);
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}
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offset += srcBuffer->range_length();
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srcBuffer->release();
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srcBuffer = NULL;
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++n;
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if (!(mQuirks & kSupportsMultipleFramesPerInputBuffer)) {
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break;
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}
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}
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if (n > 1) {
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LOGV("coalesced %d frames into one input buffer", n);
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}
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OMX_U32 flags = OMX_BUFFERFLAG_ENDOFFRAME;
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OMX_TICKS timestampUs = 0;
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size_t srcLength = 0;
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if (err != OK) {
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CODEC_LOGV("signalling end of input stream.");
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if (signalEOS) {
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flags |= OMX_BUFFERFLAG_EOS;
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mFinalStatus = err;
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mSignalledEOS = true;
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} else {
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mNoMoreOutputData = false;
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srcLength = srcBuffer->range_length();
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if (info->mSize < srcLength) {
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CODEC_LOGE(
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"Codec's input buffers are too small to accomodate "
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"buffer read from source (info->mSize = %d, srcLength = %d)",
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info->mSize, srcLength);
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srcBuffer->release();
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srcBuffer = NULL;
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setState(ERROR);
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return;
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}
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memcpy(info->mData,
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(const uint8_t *)srcBuffer->data() + srcBuffer->range_offset(),
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srcLength);
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if (srcBuffer->meta_data()->findInt64(kKeyTime, ×tampUs)) {
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CODEC_LOGV("Calling emptyBuffer on buffer %p (length %d), "
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"timestamp %lld us (%.2f secs)",
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info->mBuffer, srcLength,
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timestampUs, timestampUs / 1E6);
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}
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}
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if (srcBuffer != NULL) {
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srcBuffer->release();
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srcBuffer = NULL;
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}
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CODEC_LOGV("Calling emptyBuffer on buffer %p (length %d), "
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"timestamp %lld us (%.2f secs)",
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info->mBuffer, offset,
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timestampUs, timestampUs / 1E6);
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err = mOMX->emptyBuffer(
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mNode, info->mBuffer, 0, srcLength,
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mNode, info->mBuffer, 0, offset,
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flags, timestampUs);
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if (err != OK) {
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@ -2352,6 +2414,11 @@ status_t OMXCodec::stop() {
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}
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}
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if (mLeftOverBuffer) {
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mLeftOverBuffer->release();
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mLeftOverBuffer = NULL;
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}
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mSource->stop();
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CODEC_LOGV("stopped");
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