195 lines
4.8 KiB
C++
195 lines
4.8 KiB
C++
// Copyright 2015 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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#include "vp8_decoder.h"
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namespace media {
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VP8Decoder::VP8Accelerator::VP8Accelerator() {}
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VP8Decoder::VP8Accelerator::~VP8Accelerator() {}
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VP8Decoder::VP8Decoder(VP8Accelerator* accelerator)
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: state_(kNeedStreamMetadata),
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curr_frame_start_(nullptr),
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frame_size_(0),
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accelerator_(accelerator) {
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DCHECK(accelerator_);
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}
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VP8Decoder::~VP8Decoder() {}
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bool VP8Decoder::Flush() {
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DVLOG(2) << "Decoder flush";
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Reset();
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return true;
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}
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void VP8Decoder::SetStream(const uint8_t* ptr, size_t size) {
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DCHECK(ptr);
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DCHECK(size);
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curr_frame_start_ = ptr;
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frame_size_ = size;
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DVLOG(4) << "New input stream at: " << (void*)ptr << " size: " << size;
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}
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void VP8Decoder::Reset() {
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curr_pic_ = nullptr;
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curr_frame_hdr_ = nullptr;
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curr_frame_start_ = nullptr;
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frame_size_ = 0;
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last_frame_ = nullptr;
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golden_frame_ = nullptr;
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alt_frame_ = nullptr;
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if (state_ == kDecoding)
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state_ = kAfterReset;
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}
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VP8Decoder::DecodeResult VP8Decoder::Decode() {
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if (!curr_frame_start_ || frame_size_ == 0)
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return kRanOutOfStreamData;
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if (!curr_frame_hdr_) {
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curr_frame_hdr_.reset(new Vp8FrameHeader());
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if (!parser_.ParseFrame(curr_frame_start_, frame_size_,
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curr_frame_hdr_.get())) {
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DVLOG(1) << "Error during decode";
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state_ = kError;
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return kDecodeError;
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}
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}
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if (curr_frame_hdr_->IsKeyframe()) {
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Size new_pic_size(curr_frame_hdr_->width, curr_frame_hdr_->height);
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if (new_pic_size.IsEmpty())
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return kDecodeError;
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if (new_pic_size != pic_size_) {
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DVLOG(2) << "New resolution: " << new_pic_size.ToString();
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pic_size_ = new_pic_size;
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DCHECK(!curr_pic_);
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last_frame_ = nullptr;
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golden_frame_ = nullptr;
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alt_frame_ = nullptr;
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return kAllocateNewSurfaces;
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}
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state_ = kDecoding;
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} else {
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if (state_ != kDecoding) {
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// Need a resume point.
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curr_frame_hdr_.reset();
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return kRanOutOfStreamData;
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}
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}
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curr_pic_ = accelerator_->CreateVP8Picture();
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if (!curr_pic_)
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return kRanOutOfSurfaces;
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if (!DecodeAndOutputCurrentFrame())
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return kDecodeError;
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return kRanOutOfStreamData;
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}
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void VP8Decoder::RefreshReferenceFrames() {
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if (curr_frame_hdr_->IsKeyframe()) {
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last_frame_ = curr_pic_;
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golden_frame_ = curr_pic_;
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alt_frame_ = curr_pic_;
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return;
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}
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// Save current golden since we overwrite it here,
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// but may have to use it to update alt below.
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scoped_refptr<VP8Picture> curr_golden = golden_frame_;
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if (curr_frame_hdr_->refresh_golden_frame) {
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golden_frame_ = curr_pic_;
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} else {
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switch (curr_frame_hdr_->copy_buffer_to_golden) {
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case Vp8FrameHeader::COPY_LAST_TO_GOLDEN:
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DCHECK(last_frame_);
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golden_frame_ = last_frame_;
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break;
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case Vp8FrameHeader::COPY_ALT_TO_GOLDEN:
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DCHECK(alt_frame_);
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golden_frame_ = alt_frame_;
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break;
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}
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}
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if (curr_frame_hdr_->refresh_alternate_frame) {
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alt_frame_ = curr_pic_;
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} else {
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switch (curr_frame_hdr_->copy_buffer_to_alternate) {
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case Vp8FrameHeader::COPY_LAST_TO_ALT:
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DCHECK(last_frame_);
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alt_frame_ = last_frame_;
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break;
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case Vp8FrameHeader::COPY_GOLDEN_TO_ALT:
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DCHECK(curr_golden);
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alt_frame_ = curr_golden;
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break;
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}
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}
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if (curr_frame_hdr_->refresh_last)
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last_frame_ = curr_pic_;
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}
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bool VP8Decoder::DecodeAndOutputCurrentFrame() {
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DCHECK(!pic_size_.IsEmpty());
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DCHECK(curr_pic_);
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DCHECK(curr_frame_hdr_);
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if (curr_frame_hdr_->IsKeyframe()) {
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horizontal_scale_ = curr_frame_hdr_->horizontal_scale;
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vertical_scale_ = curr_frame_hdr_->vertical_scale;
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} else {
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// Populate fields from decoder state instead.
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curr_frame_hdr_->width = pic_size_.width();
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curr_frame_hdr_->height = pic_size_.height();
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curr_frame_hdr_->horizontal_scale = horizontal_scale_;
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curr_frame_hdr_->vertical_scale = vertical_scale_;
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}
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if (!accelerator_->SubmitDecode(curr_pic_, curr_frame_hdr_.get(), last_frame_,
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golden_frame_, alt_frame_))
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return false;
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if (curr_frame_hdr_->show_frame)
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if (!accelerator_->OutputPicture(curr_pic_))
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return false;
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RefreshReferenceFrames();
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curr_pic_ = nullptr;
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curr_frame_hdr_ = nullptr;
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curr_frame_start_ = nullptr;
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frame_size_ = 0;
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return true;
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}
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Size VP8Decoder::GetPicSize() const {
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return pic_size_;
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}
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size_t VP8Decoder::GetRequiredNumOfPictures() const {
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const size_t kVP8NumFramesActive = 4;
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// TODO(johnylin): see if we could get rid of kMaxVideoFrames.
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const size_t kMaxVideoFrames = 4;
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const size_t kPicsInPipeline = kMaxVideoFrames + 2;
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return kVP8NumFramesActive + kPicsInPipeline;
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}
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} // namespace media
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