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In order to eliminate the WebRTC Subtree mirror in Chromium, WebRTC is moving the content of the src/webrtc directory up to the src/ directory. NOPRESUBMIT=true NOTREECHECKS=true NOTRY=true TBR=tommi@webrtc.org Bug: chromium:611808 Change-Id: Iac59c5b51b950f174119565bac87955a7994bc38 Reviewed-on: https://webrtc-review.googlesource.com/1560 Commit-Queue: Mirko Bonadei <mbonadei@webrtc.org> Reviewed-by: Henrik Kjellander <kjellander@webrtc.org> Cr-Commit-Position: refs/heads/master@{#19845}
313 lines
12 KiB
C++
313 lines
12 KiB
C++
/*
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* Copyright (c) 2012 The WebRTC project authors. All Rights Reserved.
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*
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* Use of this source code is governed by a BSD-style license
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* that can be found in the LICENSE file in the root of the source
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* tree. An additional intellectual property rights grant can be found
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* in the file PATENTS. All contributing project authors may
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* be found in the AUTHORS file in the root of the source tree.
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*/
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#ifndef WEBRTC_MODULES_VIDEO_CODING_CODECS_TEST_VIDEOPROCESSOR_H_
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#define WEBRTC_MODULES_VIDEO_CODING_CODECS_TEST_VIDEOPROCESSOR_H_
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#include <map>
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#include <memory>
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#include <string>
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#include <vector>
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#include "webrtc/api/video/video_frame.h"
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#include "webrtc/common_video/libyuv/include/webrtc_libyuv.h"
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#include "webrtc/modules/video_coding/codecs/test/packet_manipulator.h"
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#include "webrtc/modules/video_coding/codecs/test/stats.h"
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#include "webrtc/modules/video_coding/include/video_codec_interface.h"
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#include "webrtc/modules/video_coding/utility/ivf_file_writer.h"
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#include "webrtc/modules/video_coding/utility/vp8_header_parser.h"
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#include "webrtc/modules/video_coding/utility/vp9_uncompressed_header_parser.h"
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#include "webrtc/rtc_base/buffer.h"
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#include "webrtc/rtc_base/checks.h"
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#include "webrtc/rtc_base/constructormagic.h"
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#include "webrtc/rtc_base/sequenced_task_checker.h"
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#include "webrtc/rtc_base/task_queue.h"
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#include "webrtc/test/testsupport/frame_reader.h"
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#include "webrtc/test/testsupport/frame_writer.h"
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namespace webrtc {
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class VideoBitrateAllocator;
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namespace test {
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// Defines which frame types shall be excluded from packet loss and when.
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enum ExcludeFrameTypes {
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// Will exclude the first keyframe in the video sequence from packet loss.
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// Following keyframes will be targeted for packet loss.
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kExcludeOnlyFirstKeyFrame,
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// Exclude all keyframes from packet loss, no matter where in the video
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// sequence they occur.
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kExcludeAllKeyFrames
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};
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// Returns a string representation of the enum value.
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const char* ExcludeFrameTypesToStr(ExcludeFrameTypes e);
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// Test configuration for a test run.
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struct TestConfig {
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// Plain name of YUV file to process without file extension.
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std::string filename;
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// File to process. This must be a video file in the YUV format.
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std::string input_filename;
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// File to write to during processing for the test. Will be a video file
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// in the YUV format.
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std::string output_filename;
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// Configurations related to networking.
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NetworkingConfig networking_config;
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// Decides how the packet loss simulations shall exclude certain frames
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// from packet loss.
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ExcludeFrameTypes exclude_frame_types = kExcludeOnlyFirstKeyFrame;
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// Force the encoder and decoder to use a single core for processing.
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// Using a single core is necessary to get a deterministic behavior for the
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// encoded frames - using multiple cores will produce different encoded frames
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// since multiple cores are competing to consume the byte budget for each
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// frame in parallel.
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// If set to false, the maximum number of available cores will be used.
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bool use_single_core = false;
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// If > 0: forces the encoder to create a keyframe every Nth frame.
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// Note that the encoder may create a keyframe in other locations in addition
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// to this setting. Forcing key frames may also affect encoder planning
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// optimizations in a negative way, since it will suddenly be forced to
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// produce an expensive key frame.
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int keyframe_interval = 0;
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// The codec settings to use for the test (target bitrate, video size,
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// framerate and so on). This struct should be filled in using the
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// VideoCodingModule::Codec() method.
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webrtc::VideoCodec codec_settings;
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// If printing of information to stdout shall be performed during processing.
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bool verbose = true;
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// Should hardware accelerated codecs be used?
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bool hw_encoder = false;
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bool hw_decoder = false;
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// Should the hardware codecs be wrapped in software fallbacks?
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bool sw_fallback_encoder = false;
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// TODO(brandtr): Add support for SW decoder fallbacks, when
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// webrtc::VideoDecoder's can be wrapped in std::unique_ptr's.
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};
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// Handles encoding/decoding of video using the VideoEncoder/VideoDecoder
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// interfaces. This is done in a sequential manner in order to be able to
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// measure times properly.
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// The class processes a frame at the time for the configured input file.
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// It maintains state of where in the source input file the processing is at.
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//
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// Regarding packet loss: Note that keyframes are excluded (first or all
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// depending on the ExcludeFrameTypes setting). This is because if key frames
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// would be altered, all the following delta frames would be pretty much
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// worthless. VP8 has an error-resilience feature that makes it able to handle
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// packet loss in key non-first keyframes, which is why only the first is
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// excluded by default.
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// Packet loss in such important frames is handled on a higher level in the
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// Video Engine, where signaling would request a retransmit of the lost packets,
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// since they're so important.
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//
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// Note this class is not thread safe in any way and is meant for simple testing
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// purposes.
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class VideoProcessor {
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public:
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VideoProcessor(webrtc::VideoEncoder* encoder,
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webrtc::VideoDecoder* decoder,
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FrameReader* analysis_frame_reader,
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FrameWriter* analysis_frame_writer,
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PacketManipulator* packet_manipulator,
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const TestConfig& config,
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Stats* stats,
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IvfFileWriter* encoded_frame_writer,
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FrameWriter* decoded_frame_writer);
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~VideoProcessor();
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// Sets up callbacks and initializes the encoder and decoder.
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void Init();
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// Tears down callbacks and releases the encoder and decoder.
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void Release();
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// Reads a frame from the analysis frame reader and sends it to the encoder.
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// When the encode callback is received, the encoded frame is sent to the
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// decoder. The decoded frame is written to disk by the analysis frame writer.
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// Objective video quality metrics can thus be calculated after the fact.
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void ProcessFrame();
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// Updates the encoder with target rates. Must be called at least once.
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void SetRates(int bitrate_kbps, int framerate_fps);
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// Returns the number of dropped frames.
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std::vector<int> NumberDroppedFramesPerRateUpdate() const;
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// Returns the number of spatial resizes.
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std::vector<int> NumberSpatialResizesPerRateUpdate() const;
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private:
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class VideoProcessorEncodeCompleteCallback
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: public webrtc::EncodedImageCallback {
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public:
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explicit VideoProcessorEncodeCompleteCallback(
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VideoProcessor* video_processor)
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: video_processor_(video_processor),
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task_queue_(rtc::TaskQueue::Current()) {}
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Result OnEncodedImage(
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const webrtc::EncodedImage& encoded_image,
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const webrtc::CodecSpecificInfo* codec_specific_info,
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const webrtc::RTPFragmentationHeader* fragmentation) override {
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RTC_CHECK(codec_specific_info);
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if (task_queue_ && !task_queue_->IsCurrent()) {
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task_queue_->PostTask(
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std::unique_ptr<rtc::QueuedTask>(new EncodeCallbackTask(
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video_processor_, encoded_image, codec_specific_info)));
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return Result(Result::OK, 0);
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}
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video_processor_->FrameEncoded(codec_specific_info->codecType,
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encoded_image);
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return Result(Result::OK, 0);
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}
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private:
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class EncodeCallbackTask : public rtc::QueuedTask {
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public:
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EncodeCallbackTask(VideoProcessor* video_processor,
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const webrtc::EncodedImage& encoded_image,
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const webrtc::CodecSpecificInfo* codec_specific_info)
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: video_processor_(video_processor),
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buffer_(encoded_image._buffer, encoded_image._length),
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encoded_image_(encoded_image),
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codec_specific_info_(*codec_specific_info) {
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encoded_image_._buffer = buffer_.data();
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}
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bool Run() override {
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video_processor_->FrameEncoded(codec_specific_info_.codecType,
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encoded_image_);
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return true;
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}
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private:
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VideoProcessor* const video_processor_;
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rtc::Buffer buffer_;
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webrtc::EncodedImage encoded_image_;
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const webrtc::CodecSpecificInfo codec_specific_info_;
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};
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VideoProcessor* const video_processor_;
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rtc::TaskQueue* const task_queue_;
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};
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class VideoProcessorDecodeCompleteCallback
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: public webrtc::DecodedImageCallback {
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public:
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explicit VideoProcessorDecodeCompleteCallback(
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VideoProcessor* video_processor)
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: video_processor_(video_processor),
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task_queue_(rtc::TaskQueue::Current()) {}
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int32_t Decoded(webrtc::VideoFrame& image) override {
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if (task_queue_ && !task_queue_->IsCurrent()) {
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task_queue_->PostTask(
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[this, image]() { video_processor_->FrameDecoded(image); });
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return 0;
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}
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video_processor_->FrameDecoded(image);
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return 0;
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}
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int32_t Decoded(webrtc::VideoFrame& image,
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int64_t decode_time_ms) override {
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return Decoded(image);
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}
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void Decoded(webrtc::VideoFrame& image,
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rtc::Optional<int32_t> decode_time_ms,
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rtc::Optional<uint8_t> qp) override {
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Decoded(image);
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}
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private:
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VideoProcessor* const video_processor_;
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rtc::TaskQueue* const task_queue_;
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};
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// Invoked by the callback adapter when a frame has completed encoding.
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void FrameEncoded(webrtc::VideoCodecType codec,
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const webrtc::EncodedImage& encodedImage);
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// Invoked by the callback adapter when a frame has completed decoding.
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void FrameDecoded(const webrtc::VideoFrame& image);
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bool initialized_ RTC_GUARDED_BY(sequence_checker_);
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TestConfig config_ RTC_GUARDED_BY(sequence_checker_);
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webrtc::VideoEncoder* const encoder_;
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webrtc::VideoDecoder* const decoder_;
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const std::unique_ptr<VideoBitrateAllocator> bitrate_allocator_;
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// Adapters for the codec callbacks.
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VideoProcessorEncodeCompleteCallback encode_callback_;
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VideoProcessorDecodeCompleteCallback decode_callback_;
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// Fake network.
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PacketManipulator* const packet_manipulator_;
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// These (mandatory) file manipulators are used for, e.g., objective PSNR and
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// SSIM calculations at the end of a test run.
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FrameReader* const analysis_frame_reader_;
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FrameWriter* const analysis_frame_writer_;
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// These (optional) file writers are used to persistently store the encoded
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// and decoded bitstreams. The purpose is to give the experimenter an option
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// to subjectively evaluate the quality of the processing. Each frame writer
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// is enabled by being non-null.
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IvfFileWriter* const encoded_frame_writer_;
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FrameWriter* const decoded_frame_writer_;
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// Keep track of inputed/encoded/decoded frames, so we can detect frame drops.
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int last_inputed_frame_num_ RTC_GUARDED_BY(sequence_checker_);
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int last_encoded_frame_num_ RTC_GUARDED_BY(sequence_checker_);
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int last_decoded_frame_num_ RTC_GUARDED_BY(sequence_checker_);
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// Store an RTP timestamp -> frame number map, since the timestamps are
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// based off of the frame rate, which can change mid-test.
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std::map<uint32_t, int> rtp_timestamp_to_frame_num_
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RTC_GUARDED_BY(sequence_checker_);
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// Keep track of if we have excluded the first key frame from packet loss.
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bool first_key_frame_has_been_excluded_ RTC_GUARDED_BY(sequence_checker_);
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// Keep track of the last successfully decoded frame, since we write that
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// frame to disk when decoding fails.
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rtc::Buffer last_decoded_frame_buffer_ RTC_GUARDED_BY(sequence_checker_);
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// Statistics.
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Stats* stats_;
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std::vector<int> num_dropped_frames_ RTC_GUARDED_BY(sequence_checker_);
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std::vector<int> num_spatial_resizes_ RTC_GUARDED_BY(sequence_checker_);
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int rate_update_index_ RTC_GUARDED_BY(sequence_checker_);
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rtc::SequencedTaskChecker sequence_checker_;
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RTC_DISALLOW_COPY_AND_ASSIGN(VideoProcessor);
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};
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} // namespace test
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} // namespace webrtc
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#endif // WEBRTC_MODULES_VIDEO_CODING_CODECS_TEST_VIDEOPROCESSOR_H_
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