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BUG=none Change-Id: Ib144b377115a48d26ff053e3b4b43f5260aa9f84 Reviewed-on: https://webrtc-review.googlesource.com/3760 Reviewed-by: Åsa Persson <asapersson@webrtc.org> Commit-Queue: Rasmus Brandt <brandtr@webrtc.org> Cr-Commit-Position: refs/heads/master@{#19999}
219 lines
8 KiB
C++
219 lines
8 KiB
C++
/*
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* Copyright (c) 2017 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 MODULES_VIDEO_CODING_CODECS_TEST_VIDEOPROCESSOR_INTEGRATIONTEST_H_
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#define MODULES_VIDEO_CODING_CODECS_TEST_VIDEOPROCESSOR_INTEGRATIONTEST_H_
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#include <memory>
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#include <string>
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#include <vector>
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#include "common_types.h" // NOLINT(build/include)
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#include "media/engine/webrtcvideodecoderfactory.h"
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#include "media/engine/webrtcvideoencoderfactory.h"
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#include "modules/video_coding/codecs/test/packet_manipulator.h"
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#include "modules/video_coding/codecs/test/stats.h"
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#include "modules/video_coding/codecs/test/videoprocessor.h"
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#include "modules/video_coding/utility/ivf_file_writer.h"
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#include "test/gtest.h"
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#include "test/testsupport/frame_reader.h"
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#include "test/testsupport/frame_writer.h"
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#include "test/testsupport/packet_reader.h"
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namespace webrtc {
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namespace test {
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// The sequence of bit rate and frame rate changes for the encoder, the frame
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// number where the changes are made, and the total number of frames to process.
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struct RateProfile {
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static const int kMaxNumRateUpdates = 3;
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int target_bit_rate[kMaxNumRateUpdates];
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int input_frame_rate[kMaxNumRateUpdates];
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int frame_index_rate_update[kMaxNumRateUpdates + 1];
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int num_frames;
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};
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// Thresholds for the rate control metrics. The thresholds are defined for each
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// rate update sequence. |max_num_frames_to_hit_target| is defined as number of
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// frames, after a rate update is made to the encoder, for the encoder to reach
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// |kMaxBitrateMismatchPercent| of new target rate.
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struct RateControlThresholds {
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int max_num_dropped_frames;
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int max_key_framesize_mismatch_percent;
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int max_delta_framesize_mismatch_percent;
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int max_bitrate_mismatch_percent;
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int max_num_frames_to_hit_target;
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int num_spatial_resizes;
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int num_key_frames;
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};
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// Thresholds for the quality metrics.
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struct QualityThresholds {
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QualityThresholds(double min_avg_psnr,
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double min_min_psnr,
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double min_avg_ssim,
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double min_min_ssim)
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: min_avg_psnr(min_avg_psnr),
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min_min_psnr(min_min_psnr),
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min_avg_ssim(min_avg_ssim),
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min_min_ssim(min_min_ssim) {}
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double min_avg_psnr;
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double min_min_psnr;
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double min_avg_ssim;
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double min_min_ssim;
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};
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// Should video files be saved persistently to disk for post-run visualization?
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struct VisualizationParams {
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bool save_encoded_ivf;
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bool save_decoded_y4m;
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};
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// Integration test for video processor. Encodes+decodes a clip and
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// writes it to the output directory. After completion, quality metrics
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// (PSNR and SSIM) and rate control metrics are computed and compared to given
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// thresholds, to verify that the quality and encoder response is acceptable.
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// The rate control tests allow us to verify the behavior for changing bit rate,
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// changing frame rate, frame dropping/spatial resize, and temporal layers.
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// The thresholds for the rate control metrics are set to be fairly
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// conservative, so failure should only happen when some significant regression
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// or breakdown occurs.
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class VideoProcessorIntegrationTest : public testing::Test {
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protected:
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VideoProcessorIntegrationTest();
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~VideoProcessorIntegrationTest() override;
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static void SetCodecSettings(TestConfig* config,
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VideoCodecType codec_type,
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int num_temporal_layers,
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bool error_concealment_on,
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bool denoising_on,
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bool frame_dropper_on,
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bool spatial_resize_on,
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bool resilience_on,
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int width,
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int height);
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static void SetRateProfile(RateProfile* rate_profile,
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int rate_update_index,
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int bitrate_kbps,
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int framerate_fps,
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int frame_index_rate_update);
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static void AddRateControlThresholds(
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int max_num_dropped_frames,
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int max_key_framesize_mismatch_percent,
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int max_delta_framesize_mismatch_percent,
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int max_bitrate_mismatch_percent,
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int max_num_frames_to_hit_target,
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int num_spatial_resizes,
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int num_key_frames,
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std::vector<RateControlThresholds>* rc_thresholds);
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void ProcessFramesAndMaybeVerify(
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const RateProfile& rate_profile,
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const std::vector<RateControlThresholds>* rc_thresholds,
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const QualityThresholds* quality_thresholds,
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const VisualizationParams* visualization_params);
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// Config.
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TestConfig config_;
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private:
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static const int kMaxNumTemporalLayers = 3;
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struct TestResults {
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int KeyFrameSizeMismatchPercent() const {
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if (num_key_frames == 0) {
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return -1;
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}
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return 100 * sum_key_framesize_mismatch / num_key_frames;
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}
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int DeltaFrameSizeMismatchPercent(int i) const {
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return 100 * sum_delta_framesize_mismatch_layer[i] / num_frames_layer[i];
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}
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int BitrateMismatchPercent(float target_kbps) const {
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return 100 * fabs(kbps - target_kbps) / target_kbps;
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}
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int BitrateMismatchPercent(int i, float target_kbps_layer) const {
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return 100 * fabs(kbps_layer[i] - target_kbps_layer) / target_kbps_layer;
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}
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int num_frames = 0;
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int num_frames_layer[kMaxNumTemporalLayers] = {0};
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int num_key_frames = 0;
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int num_frames_to_hit_target = 0;
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float sum_framesize_kbits = 0.0f;
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float sum_framesize_kbits_layer[kMaxNumTemporalLayers] = {0};
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float kbps = 0.0f;
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float kbps_layer[kMaxNumTemporalLayers] = {0};
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float sum_key_framesize_mismatch = 0.0f;
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float sum_delta_framesize_mismatch_layer[kMaxNumTemporalLayers] = {0};
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};
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struct TargetRates {
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int kbps;
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int fps;
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float kbps_layer[kMaxNumTemporalLayers];
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float fps_layer[kMaxNumTemporalLayers];
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float framesize_kbits_layer[kMaxNumTemporalLayers];
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float key_framesize_kbits_initial;
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float key_framesize_kbits;
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};
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void CreateEncoderAndDecoder();
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void DestroyEncoderAndDecoder();
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void SetUpAndInitObjects(rtc::TaskQueue* task_queue,
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const int initial_bitrate_kbps,
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const int initial_framerate_fps,
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const VisualizationParams* visualization_params);
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void ReleaseAndCloseObjects(rtc::TaskQueue* task_queue);
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int TemporalLayerIndexForFrame(int frame_number) const;
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// Rate control metrics.
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void ResetRateControlMetrics(int rate_update_index,
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const RateProfile& rate_profile);
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void SetRatesPerTemporalLayer();
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void UpdateRateControlMetrics(int frame_number);
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void PrintRateControlMetrics(
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int rate_update_index,
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const std::vector<int>& num_dropped_frames,
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const std::vector<int>& num_spatial_resizes) const;
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void VerifyRateControlMetrics(
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int rate_update_index,
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const std::vector<RateControlThresholds>* rc_thresholds,
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const std::vector<int>& num_dropped_frames,
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const std::vector<int>& num_spatial_resizes) const;
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// Codecs.
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std::unique_ptr<VideoEncoder> encoder_;
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std::unique_ptr<VideoDecoder> decoder_;
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// Helper objects.
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std::unique_ptr<FrameReader> analysis_frame_reader_;
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std::unique_ptr<FrameWriter> analysis_frame_writer_;
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std::unique_ptr<IvfFileWriter> encoded_frame_writer_;
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std::unique_ptr<FrameWriter> decoded_frame_writer_;
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PacketReader packet_reader_;
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std::unique_ptr<PacketManipulator> packet_manipulator_;
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Stats stats_;
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std::unique_ptr<VideoProcessor> processor_;
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// Quantities updated for every encoded frame.
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TestResults actual_;
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// Rates set for every encoder rate update.
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TargetRates target_;
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};
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} // namespace test
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} // namespace webrtc
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#endif // MODULES_VIDEO_CODING_CODECS_TEST_VIDEOPROCESSOR_INTEGRATIONTEST_H_
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