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782 lines
27 KiB
782 lines
27 KiB
// Copyright 2020 The Chromium Authors. All rights reserved.
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// Use of this source code is governed by a BSD-style license that can be
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// found in the LICENSE file.
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//#define LOG_NDEBUG 0
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#define LOG_TAG "V4L2Decoder"
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#include <v4l2_codec2/components/V4L2Decoder.h>
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#include <stdint.h>
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#include <vector>
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#include <base/bind.h>
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#include <base/files/scoped_file.h>
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#include <base/memory/ptr_util.h>
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#include <log/log.h>
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#include <v4l2_codec2/common/Common.h>
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#include <v4l2_codec2/common/Fourcc.h>
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namespace android {
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namespace {
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constexpr size_t kNumInputBuffers = 16;
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// Extra buffers for transmitting in the whole video pipeline.
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constexpr size_t kNumExtraOutputBuffers = 4;
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// Currently we only support flexible pixel 420 format YCBCR_420_888 in Android.
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// Here is the list of flexible 420 format.
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constexpr std::initializer_list<uint32_t> kSupportedOutputFourccs = {
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Fourcc::YU12, Fourcc::YV12, Fourcc::YM12, Fourcc::YM21,
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Fourcc::NV12, Fourcc::NV21, Fourcc::NM12, Fourcc::NM21,
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};
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uint32_t VideoCodecToV4L2PixFmt(VideoCodec codec) {
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switch (codec) {
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case VideoCodec::H264:
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return V4L2_PIX_FMT_H264;
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case VideoCodec::VP8:
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return V4L2_PIX_FMT_VP8;
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case VideoCodec::VP9:
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return V4L2_PIX_FMT_VP9;
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}
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}
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} // namespace
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// static
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std::unique_ptr<VideoDecoder> V4L2Decoder::Create(
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const VideoCodec& codec, const size_t inputBufferSize, GetPoolCB getPoolCb,
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OutputCB outputCb, ErrorCB errorCb, scoped_refptr<::base::SequencedTaskRunner> taskRunner) {
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std::unique_ptr<V4L2Decoder> decoder =
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::base::WrapUnique<V4L2Decoder>(new V4L2Decoder(taskRunner));
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if (!decoder->start(codec, inputBufferSize, std::move(getPoolCb), std::move(outputCb),
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std::move(errorCb))) {
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return nullptr;
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}
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return decoder;
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}
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V4L2Decoder::V4L2Decoder(scoped_refptr<::base::SequencedTaskRunner> taskRunner)
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: mTaskRunner(std::move(taskRunner)) {
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ALOGV("%s()", __func__);
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mWeakThis = mWeakThisFactory.GetWeakPtr();
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}
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V4L2Decoder::~V4L2Decoder() {
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ALOGV("%s()", __func__);
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ALOG_ASSERT(mTaskRunner->RunsTasksInCurrentSequence());
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mWeakThisFactory.InvalidateWeakPtrs();
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// Streamoff input and output queue.
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if (mOutputQueue) {
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mOutputQueue->streamoff();
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mOutputQueue->deallocateBuffers();
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mOutputQueue = nullptr;
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}
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if (mInputQueue) {
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mInputQueue->streamoff();
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mInputQueue->deallocateBuffers();
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mInputQueue = nullptr;
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}
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if (mDevice) {
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mDevice->stopPolling();
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mDevice = nullptr;
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}
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}
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bool V4L2Decoder::start(const VideoCodec& codec, const size_t inputBufferSize, GetPoolCB getPoolCb,
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OutputCB outputCb, ErrorCB errorCb) {
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ALOGV("%s(codec=%s, inputBufferSize=%zu)", __func__, VideoCodecToString(codec),
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inputBufferSize);
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ALOG_ASSERT(mTaskRunner->RunsTasksInCurrentSequence());
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mGetPoolCb = std::move(getPoolCb);
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mOutputCb = std::move(outputCb);
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mErrorCb = std::move(errorCb);
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if (mState == State::Error) {
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ALOGE("Ignore due to error state.");
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return false;
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}
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mDevice = V4L2Device::create();
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const uint32_t inputPixelFormat = VideoCodecToV4L2PixFmt(codec);
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if (!mDevice->open(V4L2Device::Type::kDecoder, inputPixelFormat)) {
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ALOGE("Failed to open device for %s", VideoCodecToString(codec));
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return false;
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}
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if (!mDevice->hasCapabilities(V4L2_CAP_VIDEO_M2M_MPLANE | V4L2_CAP_STREAMING)) {
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ALOGE("Device does not have VIDEO_M2M_MPLANE and STREAMING capabilities.");
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return false;
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}
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struct v4l2_decoder_cmd cmd;
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memset(&cmd, 0, sizeof(cmd));
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cmd.cmd = V4L2_DEC_CMD_STOP;
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if (mDevice->ioctl(VIDIOC_TRY_DECODER_CMD, &cmd) != 0) {
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ALOGE("Device does not support flushing (V4L2_DEC_CMD_STOP)");
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return false;
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}
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// Subscribe to the resolution change event.
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struct v4l2_event_subscription sub;
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memset(&sub, 0, sizeof(sub));
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sub.type = V4L2_EVENT_SOURCE_CHANGE;
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if (mDevice->ioctl(VIDIOC_SUBSCRIBE_EVENT, &sub) != 0) {
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ALOGE("ioctl() failed: VIDIOC_SUBSCRIBE_EVENT: V4L2_EVENT_SOURCE_CHANGE");
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return false;
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}
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// Create Input/Output V4L2Queue, and setup input queue.
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mInputQueue = mDevice->getQueue(V4L2_BUF_TYPE_VIDEO_OUTPUT_MPLANE);
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mOutputQueue = mDevice->getQueue(V4L2_BUF_TYPE_VIDEO_CAPTURE_MPLANE);
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if (!mInputQueue || !mOutputQueue) {
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ALOGE("Failed to create V4L2 queue.");
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return false;
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}
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if (!setupInputFormat(inputPixelFormat, inputBufferSize)) {
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ALOGE("Failed to setup input format.");
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return false;
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}
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if (!mDevice->startPolling(::base::BindRepeating(&V4L2Decoder::serviceDeviceTask, mWeakThis),
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::base::BindRepeating(&V4L2Decoder::onError, mWeakThis))) {
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ALOGE("Failed to start polling V4L2 device.");
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return false;
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}
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setState(State::Idle);
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return true;
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}
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bool V4L2Decoder::setupInputFormat(const uint32_t inputPixelFormat, const size_t inputBufferSize) {
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ALOGV("%s(inputPixelFormat=%u, inputBufferSize=%zu)", __func__, inputPixelFormat,
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inputBufferSize);
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ALOG_ASSERT(mTaskRunner->RunsTasksInCurrentSequence());
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// Check if the format is supported.
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std::vector<uint32_t> formats =
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mDevice->enumerateSupportedPixelformats(V4L2_BUF_TYPE_VIDEO_OUTPUT_MPLANE);
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if (std::find(formats.begin(), formats.end(), inputPixelFormat) == formats.end()) {
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ALOGE("Input codec s not supported by device.");
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return false;
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}
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// Setup the input format.
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auto format = mInputQueue->setFormat(inputPixelFormat, ui::Size(), inputBufferSize, 0);
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if (!format) {
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ALOGE("Failed to call IOCTL to set input format.");
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return false;
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}
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ALOG_ASSERT(format->fmt.pix_mp.pixelformat == inputPixelFormat);
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if (mInputQueue->allocateBuffers(kNumInputBuffers, V4L2_MEMORY_DMABUF) == 0) {
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ALOGE("Failed to allocate input buffer.");
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return false;
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}
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if (!mInputQueue->streamon()) {
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ALOGE("Failed to streamon input queue.");
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return false;
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}
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return true;
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}
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void V4L2Decoder::decode(std::unique_ptr<BitstreamBuffer> buffer, DecodeCB decodeCb) {
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ALOGV("%s(id=%d)", __func__, buffer->id);
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ALOG_ASSERT(mTaskRunner->RunsTasksInCurrentSequence());
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if (mState == State::Error) {
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ALOGE("Ignore due to error state.");
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mTaskRunner->PostTask(FROM_HERE, ::base::BindOnce(std::move(decodeCb),
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VideoDecoder::DecodeStatus::kError));
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return;
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}
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if (mState == State::Idle) {
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setState(State::Decoding);
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}
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mDecodeRequests.push(DecodeRequest(std::move(buffer), std::move(decodeCb)));
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pumpDecodeRequest();
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}
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void V4L2Decoder::drain(DecodeCB drainCb) {
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ALOGV("%s()", __func__);
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ALOG_ASSERT(mTaskRunner->RunsTasksInCurrentSequence());
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switch (mState) {
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case State::Idle:
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ALOGV("Nothing need to drain, ignore.");
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mTaskRunner->PostTask(
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FROM_HERE, ::base::BindOnce(std::move(drainCb), VideoDecoder::DecodeStatus::kOk));
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return;
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case State::Decoding:
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mDecodeRequests.push(DecodeRequest(nullptr, std::move(drainCb)));
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pumpDecodeRequest();
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return;
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case State::Draining:
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case State::Error:
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ALOGE("Ignore due to wrong state: %s", StateToString(mState));
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mTaskRunner->PostTask(FROM_HERE, ::base::BindOnce(std::move(drainCb),
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VideoDecoder::DecodeStatus::kError));
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return;
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}
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}
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void V4L2Decoder::pumpDecodeRequest() {
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ALOGV("%s()", __func__);
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ALOG_ASSERT(mTaskRunner->RunsTasksInCurrentSequence());
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if (mState != State::Decoding) return;
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while (!mDecodeRequests.empty()) {
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// Drain the decoder.
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if (mDecodeRequests.front().buffer == nullptr) {
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ALOGV("Get drain request.");
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// Send the flush command after all input buffers are dequeued. This makes
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// sure all previous resolution changes have been handled because the
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// driver must hold the input buffer that triggers resolution change. The
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// driver cannot decode data in it without new output buffers. If we send
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// the flush now and a queued input buffer triggers resolution change
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// later, the driver will send an output buffer that has
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// V4L2_BUF_FLAG_LAST. But some queued input buffer have not been decoded
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// yet. Also, V4L2VDA calls STREAMOFF and STREAMON after resolution
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// change. They implicitly send a V4L2_DEC_CMD_STOP and V4L2_DEC_CMD_START
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// to the decoder.
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if (mInputQueue->queuedBuffersCount() > 0) {
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ALOGV("Wait for all input buffers dequeued.");
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return;
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}
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auto request = std::move(mDecodeRequests.front());
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mDecodeRequests.pop();
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if (!sendV4L2DecoderCmd(false)) {
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std::move(request.decodeCb).Run(VideoDecoder::DecodeStatus::kError);
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onError();
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return;
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}
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mDrainCb = std::move(request.decodeCb);
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setState(State::Draining);
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return;
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}
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// Pause if no free input buffer. We resume decoding after dequeueing input buffers.
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auto inputBuffer = mInputQueue->getFreeBuffer();
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if (!inputBuffer) {
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ALOGV("There is no free input buffer.");
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return;
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}
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auto request = std::move(mDecodeRequests.front());
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mDecodeRequests.pop();
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const int32_t bitstreamId = request.buffer->id;
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ALOGV("QBUF to input queue, bitstreadId=%d", bitstreamId);
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inputBuffer->setTimeStamp({.tv_sec = bitstreamId});
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size_t planeSize = inputBuffer->getPlaneSize(0);
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if (request.buffer->size > planeSize) {
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ALOGE("The input size (%zu) is not enough, we need %zu", planeSize,
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request.buffer->size);
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onError();
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return;
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}
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ALOGV("Set bytes_used=%zu, offset=%zu", request.buffer->offset + request.buffer->size,
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request.buffer->offset);
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inputBuffer->setPlaneDataOffset(0, request.buffer->offset);
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inputBuffer->setPlaneBytesUsed(0, request.buffer->offset + request.buffer->size);
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std::vector<int> fds;
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fds.push_back(std::move(request.buffer->dmabuf_fd));
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if (!std::move(*inputBuffer).queueDMABuf(fds)) {
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ALOGE("%s(): Failed to QBUF to input queue, bitstreamId=%d", __func__, bitstreamId);
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onError();
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return;
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}
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mPendingDecodeCbs.insert(std::make_pair(bitstreamId, std::move(request.decodeCb)));
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}
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}
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void V4L2Decoder::flush() {
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ALOGV("%s()", __func__);
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ALOG_ASSERT(mTaskRunner->RunsTasksInCurrentSequence());
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if (mState == State::Idle) {
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ALOGV("Nothing need to flush, ignore.");
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return;
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}
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if (mState == State::Error) {
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ALOGE("Ignore due to error state.");
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return;
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}
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// Call all pending callbacks.
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for (auto& item : mPendingDecodeCbs) {
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std::move(item.second).Run(VideoDecoder::DecodeStatus::kAborted);
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}
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mPendingDecodeCbs.clear();
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if (mDrainCb) {
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std::move(mDrainCb).Run(VideoDecoder::DecodeStatus::kAborted);
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}
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// Streamoff both V4L2 queues to drop input and output buffers.
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mDevice->stopPolling();
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mOutputQueue->streamoff();
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mFrameAtDevice.clear();
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mInputQueue->streamoff();
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// Streamon both V4L2 queues.
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mInputQueue->streamon();
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mOutputQueue->streamon();
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// If there is no free buffer at mOutputQueue, tryFetchVideoFrame() should be triggerred after
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// a buffer is DQBUF from output queue. Now all the buffers are dropped at mOutputQueue, we
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// have to trigger tryFetchVideoFrame() here.
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if (mVideoFramePool) {
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tryFetchVideoFrame();
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}
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if (!mDevice->startPolling(::base::BindRepeating(&V4L2Decoder::serviceDeviceTask, mWeakThis),
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::base::BindRepeating(&V4L2Decoder::onError, mWeakThis))) {
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ALOGE("Failed to start polling V4L2 device.");
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onError();
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return;
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}
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setState(State::Idle);
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}
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void V4L2Decoder::serviceDeviceTask(bool event) {
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ALOGV("%s(event=%d) state=%s InputQueue(%s):%zu+%zu/%zu, OutputQueue(%s):%zu+%zu/%zu", __func__,
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event, StateToString(mState), (mInputQueue->isStreaming() ? "streamon" : "streamoff"),
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mInputQueue->freeBuffersCount(), mInputQueue->queuedBuffersCount(),
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mInputQueue->allocatedBuffersCount(),
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(mOutputQueue->isStreaming() ? "streamon" : "streamoff"),
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mOutputQueue->freeBuffersCount(), mOutputQueue->queuedBuffersCount(),
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mOutputQueue->allocatedBuffersCount());
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ALOG_ASSERT(mTaskRunner->RunsTasksInCurrentSequence());
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if (mState == State::Error) return;
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// Dequeue output and input queue.
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bool inputDequeued = false;
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while (mInputQueue->queuedBuffersCount() > 0) {
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bool success;
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V4L2ReadableBufferRef dequeuedBuffer;
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std::tie(success, dequeuedBuffer) = mInputQueue->dequeueBuffer();
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if (!success) {
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ALOGE("Failed to dequeue buffer from input queue.");
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onError();
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return;
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}
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if (!dequeuedBuffer) break;
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inputDequeued = true;
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// Run the corresponding decode callback.
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int32_t id = dequeuedBuffer->getTimeStamp().tv_sec;
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ALOGV("DQBUF from input queue, bitstreamId=%d", id);
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auto it = mPendingDecodeCbs.find(id);
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if (it == mPendingDecodeCbs.end()) {
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ALOGW("Callback is already abandoned.");
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continue;
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}
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std::move(it->second).Run(VideoDecoder::DecodeStatus::kOk);
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mPendingDecodeCbs.erase(it);
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}
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bool outputDequeued = false;
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while (mOutputQueue->queuedBuffersCount() > 0) {
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bool success;
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V4L2ReadableBufferRef dequeuedBuffer;
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std::tie(success, dequeuedBuffer) = mOutputQueue->dequeueBuffer();
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if (!success) {
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ALOGE("Failed to dequeue buffer from output queue.");
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onError();
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return;
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}
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if (!dequeuedBuffer) break;
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outputDequeued = true;
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const size_t bufferId = dequeuedBuffer->bufferId();
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const int32_t bitstreamId = static_cast<int32_t>(dequeuedBuffer->getTimeStamp().tv_sec);
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const size_t bytesUsed = dequeuedBuffer->getPlaneBytesUsed(0);
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const bool isLast = dequeuedBuffer->isLast();
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ALOGV("DQBUF from output queue, bufferId=%zu, bitstreamId=%d, bytesused=%zu, isLast=%d",
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bufferId, bitstreamId, bytesUsed, isLast);
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// Get the corresponding VideoFrame of the dequeued buffer.
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auto it = mFrameAtDevice.find(bufferId);
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ALOG_ASSERT(it != mFrameAtDevice.end(), "buffer %zu is not found at mFrameAtDevice",
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bufferId);
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auto frame = std::move(it->second);
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mFrameAtDevice.erase(it);
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if (bytesUsed > 0) {
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ALOGV("Send output frame(bitstreamId=%d) to client", bitstreamId);
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frame->setBitstreamId(bitstreamId);
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frame->setVisibleRect(mVisibleRect);
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mOutputCb.Run(std::move(frame));
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} else {
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// Workaround(b/168750131): If the buffer is not enqueued before the next drain is done,
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// then the driver will fail to notify EOS. So we recycle the buffer immediately.
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ALOGV("Recycle empty buffer %zu back to V4L2 output queue.", bufferId);
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dequeuedBuffer.reset();
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auto outputBuffer = mOutputQueue->getFreeBuffer(bufferId);
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ALOG_ASSERT(outputBuffer, "V4L2 output queue slot %zu is not freed.", bufferId);
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if (!std::move(*outputBuffer).queueDMABuf(frame->getFDs())) {
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ALOGE("%s(): Failed to recycle empty buffer to output queue.", __func__);
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onError();
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return;
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}
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mFrameAtDevice.insert(std::make_pair(bufferId, std::move(frame)));
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}
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if (mDrainCb && isLast) {
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ALOGV("All buffers are drained.");
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sendV4L2DecoderCmd(true);
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std::move(mDrainCb).Run(VideoDecoder::DecodeStatus::kOk);
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setState(State::Idle);
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}
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}
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// Handle resolution change event.
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if (event && dequeueResolutionChangeEvent()) {
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if (!changeResolution()) {
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onError();
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return;
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}
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}
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// We freed some input buffers, continue handling decode requests.
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if (inputDequeued) {
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mTaskRunner->PostTask(FROM_HERE,
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::base::BindOnce(&V4L2Decoder::pumpDecodeRequest, mWeakThis));
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}
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// We free some output buffers, try to get VideoFrame.
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if (outputDequeued) {
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mTaskRunner->PostTask(FROM_HERE,
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::base::BindOnce(&V4L2Decoder::tryFetchVideoFrame, mWeakThis));
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}
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}
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bool V4L2Decoder::dequeueResolutionChangeEvent() {
|
|
ALOGV("%s()", __func__);
|
|
ALOG_ASSERT(mTaskRunner->RunsTasksInCurrentSequence());
|
|
|
|
struct v4l2_event ev;
|
|
memset(&ev, 0, sizeof(ev));
|
|
while (mDevice->ioctl(VIDIOC_DQEVENT, &ev) == 0) {
|
|
if (ev.type == V4L2_EVENT_SOURCE_CHANGE &&
|
|
ev.u.src_change.changes & V4L2_EVENT_SRC_CH_RESOLUTION) {
|
|
return true;
|
|
}
|
|
}
|
|
return false;
|
|
}
|
|
|
|
bool V4L2Decoder::changeResolution() {
|
|
ALOGV("%s()", __func__);
|
|
ALOG_ASSERT(mTaskRunner->RunsTasksInCurrentSequence());
|
|
|
|
const std::optional<struct v4l2_format> format = getFormatInfo();
|
|
std::optional<size_t> numOutputBuffers = getNumOutputBuffers();
|
|
if (!format || !numOutputBuffers) {
|
|
return false;
|
|
}
|
|
|
|
const ui::Size codedSize(format->fmt.pix_mp.width, format->fmt.pix_mp.height);
|
|
if (!setupOutputFormat(codedSize)) {
|
|
return false;
|
|
}
|
|
|
|
const std::optional<struct v4l2_format> adjustedFormat = getFormatInfo();
|
|
if (!adjustedFormat) {
|
|
return false;
|
|
}
|
|
mCodedSize.set(adjustedFormat->fmt.pix_mp.width, adjustedFormat->fmt.pix_mp.height);
|
|
mVisibleRect = getVisibleRect(mCodedSize);
|
|
|
|
ALOGI("Need %zu output buffers. coded size: %s, visible rect: %s", *numOutputBuffers,
|
|
toString(mCodedSize).c_str(), toString(mVisibleRect).c_str());
|
|
if (isEmpty(mCodedSize)) {
|
|
ALOGE("Failed to get resolution from V4L2 driver.");
|
|
return false;
|
|
}
|
|
|
|
mOutputQueue->streamoff();
|
|
mOutputQueue->deallocateBuffers();
|
|
mFrameAtDevice.clear();
|
|
mBlockIdToV4L2Id.clear();
|
|
|
|
if (mOutputQueue->allocateBuffers(*numOutputBuffers, V4L2_MEMORY_DMABUF) == 0) {
|
|
ALOGE("Failed to allocate output buffer.");
|
|
return false;
|
|
}
|
|
if (!mOutputQueue->streamon()) {
|
|
ALOGE("Failed to streamon output queue.");
|
|
return false;
|
|
}
|
|
|
|
// Release the previous VideoFramePool before getting a new one to guarantee only one pool
|
|
// exists at the same time.
|
|
mVideoFramePool.reset();
|
|
// Always use flexible pixel 420 format YCBCR_420_888 in Android.
|
|
mVideoFramePool = mGetPoolCb.Run(mCodedSize, HalPixelFormat::YCBCR_420_888, *numOutputBuffers);
|
|
if (!mVideoFramePool) {
|
|
ALOGE("Failed to get block pool with size: %s", toString(mCodedSize).c_str());
|
|
return false;
|
|
}
|
|
|
|
tryFetchVideoFrame();
|
|
return true;
|
|
}
|
|
|
|
bool V4L2Decoder::setupOutputFormat(const ui::Size& size) {
|
|
for (const uint32_t& pixfmt :
|
|
mDevice->enumerateSupportedPixelformats(V4L2_BUF_TYPE_VIDEO_CAPTURE_MPLANE)) {
|
|
if (std::find(kSupportedOutputFourccs.begin(), kSupportedOutputFourccs.end(), pixfmt) ==
|
|
kSupportedOutputFourccs.end()) {
|
|
ALOGD("Pixel format %s is not supported, skipping...", fourccToString(pixfmt).c_str());
|
|
continue;
|
|
}
|
|
|
|
if (mOutputQueue->setFormat(pixfmt, size, 0) != std::nullopt) {
|
|
return true;
|
|
}
|
|
}
|
|
|
|
ALOGE("Failed to find supported pixel format");
|
|
return false;
|
|
}
|
|
|
|
void V4L2Decoder::tryFetchVideoFrame() {
|
|
ALOGV("%s()", __func__);
|
|
ALOG_ASSERT(mTaskRunner->RunsTasksInCurrentSequence());
|
|
|
|
if (!mVideoFramePool) {
|
|
ALOGE("mVideoFramePool is null, failed to get the instance after resolution change?");
|
|
onError();
|
|
return;
|
|
}
|
|
|
|
if (mOutputQueue->freeBuffersCount() == 0) {
|
|
ALOGV("No free V4L2 output buffers, ignore.");
|
|
return;
|
|
}
|
|
|
|
if (!mVideoFramePool->getVideoFrame(
|
|
::base::BindOnce(&V4L2Decoder::onVideoFrameReady, mWeakThis))) {
|
|
ALOGV("%s(): Previous callback is running, ignore.", __func__);
|
|
}
|
|
}
|
|
|
|
void V4L2Decoder::onVideoFrameReady(
|
|
std::optional<VideoFramePool::FrameWithBlockId> frameWithBlockId) {
|
|
ALOGV("%s()", __func__);
|
|
ALOG_ASSERT(mTaskRunner->RunsTasksInCurrentSequence());
|
|
|
|
if (!frameWithBlockId) {
|
|
ALOGE("Got nullptr VideoFrame.");
|
|
onError();
|
|
return;
|
|
}
|
|
|
|
// Unwrap our arguments.
|
|
std::unique_ptr<VideoFrame> frame;
|
|
uint32_t blockId;
|
|
std::tie(frame, blockId) = std::move(*frameWithBlockId);
|
|
|
|
std::optional<V4L2WritableBufferRef> outputBuffer;
|
|
// Find the V4L2 buffer that is associated with this block.
|
|
auto iter = mBlockIdToV4L2Id.find(blockId);
|
|
if (iter != mBlockIdToV4L2Id.end()) {
|
|
// If we have met this block in the past, reuse the same V4L2 buffer.
|
|
outputBuffer = mOutputQueue->getFreeBuffer(iter->second);
|
|
} else if (mBlockIdToV4L2Id.size() < mOutputQueue->allocatedBuffersCount()) {
|
|
// If this is the first time we see this block, give it the next
|
|
// available V4L2 buffer.
|
|
const size_t v4l2BufferId = mBlockIdToV4L2Id.size();
|
|
mBlockIdToV4L2Id.emplace(blockId, v4l2BufferId);
|
|
outputBuffer = mOutputQueue->getFreeBuffer(v4l2BufferId);
|
|
} else {
|
|
// If this happens, this is a bug in VideoFramePool. It should never
|
|
// provide more blocks than we have V4L2 buffers.
|
|
ALOGE("Got more different blocks than we have V4L2 buffers for.");
|
|
}
|
|
|
|
if (!outputBuffer) {
|
|
ALOGE("V4L2 buffer not available. blockId=%u", blockId);
|
|
onError();
|
|
return;
|
|
}
|
|
|
|
uint32_t v4l2Id = outputBuffer->bufferId();
|
|
ALOGV("QBUF to output queue, blockId=%u, V4L2Id=%u", blockId, v4l2Id);
|
|
|
|
if (!std::move(*outputBuffer).queueDMABuf(frame->getFDs())) {
|
|
ALOGE("%s(): Failed to QBUF to output queue, blockId=%u, V4L2Id=%u", __func__, blockId,
|
|
v4l2Id);
|
|
onError();
|
|
return;
|
|
}
|
|
if (mFrameAtDevice.find(v4l2Id) != mFrameAtDevice.end()) {
|
|
ALOGE("%s(): V4L2 buffer %d already enqueued.", __func__, v4l2Id);
|
|
onError();
|
|
return;
|
|
}
|
|
mFrameAtDevice.insert(std::make_pair(v4l2Id, std::move(frame)));
|
|
|
|
tryFetchVideoFrame();
|
|
}
|
|
|
|
std::optional<size_t> V4L2Decoder::getNumOutputBuffers() {
|
|
ALOGV("%s()", __func__);
|
|
ALOG_ASSERT(mTaskRunner->RunsTasksInCurrentSequence());
|
|
|
|
struct v4l2_control ctrl;
|
|
memset(&ctrl, 0, sizeof(ctrl));
|
|
ctrl.id = V4L2_CID_MIN_BUFFERS_FOR_CAPTURE;
|
|
if (mDevice->ioctl(VIDIOC_G_CTRL, &ctrl) != 0) {
|
|
ALOGE("ioctl() failed: VIDIOC_G_CTRL");
|
|
return std::nullopt;
|
|
}
|
|
ALOGV("%s() V4L2_CID_MIN_BUFFERS_FOR_CAPTURE returns %u", __func__, ctrl.value);
|
|
|
|
return ctrl.value + kNumExtraOutputBuffers;
|
|
}
|
|
|
|
std::optional<struct v4l2_format> V4L2Decoder::getFormatInfo() {
|
|
ALOGV("%s()", __func__);
|
|
ALOG_ASSERT(mTaskRunner->RunsTasksInCurrentSequence());
|
|
|
|
struct v4l2_format format;
|
|
memset(&format, 0, sizeof(format));
|
|
format.type = V4L2_BUF_TYPE_VIDEO_CAPTURE_MPLANE;
|
|
if (mDevice->ioctl(VIDIOC_G_FMT, &format) != 0) {
|
|
ALOGE("ioctl() failed: VIDIOC_G_FMT");
|
|
return std::nullopt;
|
|
}
|
|
|
|
return format;
|
|
}
|
|
|
|
Rect V4L2Decoder::getVisibleRect(const ui::Size& codedSize) {
|
|
ALOGV("%s()", __func__);
|
|
ALOG_ASSERT(mTaskRunner->RunsTasksInCurrentSequence());
|
|
|
|
struct v4l2_rect* visible_rect = nullptr;
|
|
struct v4l2_selection selection_arg;
|
|
memset(&selection_arg, 0, sizeof(selection_arg));
|
|
selection_arg.type = V4L2_BUF_TYPE_VIDEO_CAPTURE;
|
|
selection_arg.target = V4L2_SEL_TGT_COMPOSE;
|
|
|
|
if (mDevice->ioctl(VIDIOC_G_SELECTION, &selection_arg) == 0) {
|
|
ALOGV("VIDIOC_G_SELECTION is supported");
|
|
visible_rect = &selection_arg.r;
|
|
} else {
|
|
ALOGV("Fallback to VIDIOC_G_CROP");
|
|
struct v4l2_crop crop_arg;
|
|
memset(&crop_arg, 0, sizeof(crop_arg));
|
|
crop_arg.type = V4L2_BUF_TYPE_VIDEO_CAPTURE_MPLANE;
|
|
|
|
if (mDevice->ioctl(VIDIOC_G_CROP, &crop_arg) != 0) {
|
|
ALOGW("ioctl() VIDIOC_G_CROP failed");
|
|
return Rect(codedSize.width, codedSize.height);
|
|
}
|
|
visible_rect = &crop_arg.c;
|
|
}
|
|
|
|
Rect rect(visible_rect->left, visible_rect->top, visible_rect->left + visible_rect->width,
|
|
visible_rect->top + visible_rect->height);
|
|
ALOGV("visible rectangle is %s", toString(rect).c_str());
|
|
if (!contains(Rect(codedSize.width, codedSize.height), rect)) {
|
|
ALOGW("visible rectangle %s is not inside coded size %s", toString(rect).c_str(),
|
|
toString(codedSize).c_str());
|
|
return Rect(codedSize.width, codedSize.height);
|
|
}
|
|
if (rect.isEmpty()) {
|
|
ALOGW("visible size is empty");
|
|
return Rect(codedSize.width, codedSize.height);
|
|
}
|
|
|
|
return rect;
|
|
}
|
|
|
|
bool V4L2Decoder::sendV4L2DecoderCmd(bool start) {
|
|
ALOGV("%s(start=%d)", __func__, start);
|
|
ALOG_ASSERT(mTaskRunner->RunsTasksInCurrentSequence());
|
|
|
|
struct v4l2_decoder_cmd cmd;
|
|
memset(&cmd, 0, sizeof(cmd));
|
|
cmd.cmd = start ? V4L2_DEC_CMD_START : V4L2_DEC_CMD_STOP;
|
|
if (mDevice->ioctl(VIDIOC_DECODER_CMD, &cmd) != 0) {
|
|
ALOGE("ioctl() VIDIOC_DECODER_CMD failed: start=%d", start);
|
|
return false;
|
|
}
|
|
|
|
return true;
|
|
}
|
|
|
|
void V4L2Decoder::onError() {
|
|
ALOGV("%s()", __func__);
|
|
ALOG_ASSERT(mTaskRunner->RunsTasksInCurrentSequence());
|
|
|
|
setState(State::Error);
|
|
mErrorCb.Run();
|
|
}
|
|
|
|
void V4L2Decoder::setState(State newState) {
|
|
ALOGV("%s(%s)", __func__, StateToString(newState));
|
|
ALOG_ASSERT(mTaskRunner->RunsTasksInCurrentSequence());
|
|
|
|
if (mState == newState) return;
|
|
if (mState == State::Error) {
|
|
ALOGV("Already in Error state.");
|
|
return;
|
|
}
|
|
|
|
switch (newState) {
|
|
case State::Idle:
|
|
break;
|
|
case State::Decoding:
|
|
break;
|
|
case State::Draining:
|
|
if (mState != State::Decoding) newState = State::Error;
|
|
break;
|
|
case State::Error:
|
|
break;
|
|
}
|
|
|
|
ALOGI("Set state %s => %s", StateToString(mState), StateToString(newState));
|
|
mState = newState;
|
|
}
|
|
|
|
// static
|
|
const char* V4L2Decoder::StateToString(State state) {
|
|
switch (state) {
|
|
case State::Idle:
|
|
return "Idle";
|
|
case State::Decoding:
|
|
return "Decoding";
|
|
case State::Draining:
|
|
return "Draining";
|
|
case State::Error:
|
|
return "Error";
|
|
}
|
|
}
|
|
|
|
} // namespace android
|