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This feature is not needed in video codec testing framework. In WebRTC video codecs never deal with packet loss. Packet loss is handled by jitter buffer which prevents passing of incomplete frames to decoder. Bug: webrtc:8768 Change-Id: I211cf51d913bec6a1f935e30691661d428ebd3b6 Reviewed-on: https://webrtc-review.googlesource.com/40740 Commit-Queue: Sergey Silkin <ssilkin@webrtc.org> Reviewed-by: Stefan Holmer <stefan@webrtc.org> Reviewed-by: Rasmus Brandt <brandtr@webrtc.org> Reviewed-by: Åsa Persson <asapersson@webrtc.org> Cr-Commit-Position: refs/heads/master@{#21722}
164 lines
5.3 KiB
C++
164 lines
5.3 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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#include <memory>
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#include "api/video/i420_buffer.h"
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#include "common_types.h" // NOLINT(build/include)
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#include "modules/video_coding/codecs/test/videoprocessor.h"
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#include "modules/video_coding/include/mock/mock_video_codec_interface.h"
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#include "modules/video_coding/include/video_coding.h"
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#include "rtc_base/ptr_util.h"
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#include "test/gmock.h"
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#include "test/gtest.h"
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#include "test/testsupport/mock/mock_frame_reader.h"
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#include "test/testsupport/unittest_utils.h"
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#include "test/video_codec_settings.h"
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#include "typedefs.h" // NOLINT(build/include)
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using ::testing::_;
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using ::testing::ElementsAre;
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using ::testing::Property;
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using ::testing::Return;
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namespace webrtc {
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namespace test {
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namespace {
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const int kWidth = 352;
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const int kHeight = 288;
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const int kFrameSize = kWidth * kHeight * 3 / 2; // I420.
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} // namespace
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class VideoProcessorTest : public testing::Test {
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protected:
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VideoProcessorTest() {
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// Get a codec configuration struct and configure it.
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webrtc::test::CodecSettings(kVideoCodecVP8, &config_.codec_settings);
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config_.codec_settings.width = kWidth;
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config_.codec_settings.height = kHeight;
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ExpectInit();
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EXPECT_CALL(frame_reader_mock_, FrameLength())
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.WillRepeatedly(Return(kFrameSize));
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video_processor_ = rtc::MakeUnique<VideoProcessor>(
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&encoder_mock_, &decoder_mock_, &frame_reader_mock_, config_, &stats_,
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nullptr /* encoded_frame_writer */, nullptr /* decoded_frame_writer */);
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}
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void ExpectInit() {
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EXPECT_CALL(encoder_mock_, InitEncode(_, _, _)).Times(1);
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EXPECT_CALL(encoder_mock_, RegisterEncodeCompleteCallback(_)).Times(1);
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EXPECT_CALL(decoder_mock_, InitDecode(_, _)).Times(1);
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EXPECT_CALL(decoder_mock_, RegisterDecodeCompleteCallback(_)).Times(1);
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}
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void ExpectRelease() {
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EXPECT_CALL(encoder_mock_, Release()).Times(1);
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EXPECT_CALL(encoder_mock_, RegisterEncodeCompleteCallback(_)).Times(1);
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EXPECT_CALL(decoder_mock_, Release()).Times(1);
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EXPECT_CALL(decoder_mock_, RegisterDecodeCompleteCallback(_)).Times(1);
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}
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TestConfig config_;
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MockVideoEncoder encoder_mock_;
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MockVideoDecoder decoder_mock_;
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MockFrameReader frame_reader_mock_;
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Stats stats_;
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std::unique_ptr<VideoProcessor> video_processor_;
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};
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TEST_F(VideoProcessorTest, InitRelease) {
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ExpectRelease();
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}
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TEST_F(VideoProcessorTest, ProcessFrames_FixedFramerate) {
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const int kBitrateKbps = 456;
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const int kFramerateFps = 31;
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EXPECT_CALL(encoder_mock_, SetRateAllocation(_, kFramerateFps))
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.Times(1)
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.WillOnce(Return(0));
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video_processor_->SetRates(kBitrateKbps, kFramerateFps);
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EXPECT_CALL(frame_reader_mock_, ReadFrame())
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.WillRepeatedly(Return(I420Buffer::Create(kWidth, kHeight)));
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EXPECT_CALL(
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encoder_mock_,
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Encode(Property(&VideoFrame::timestamp, 1 * 90000 / kFramerateFps), _, _))
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.Times(1);
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video_processor_->ProcessFrame();
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EXPECT_CALL(
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encoder_mock_,
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Encode(Property(&VideoFrame::timestamp, 2 * 90000 / kFramerateFps), _, _))
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.Times(1);
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video_processor_->ProcessFrame();
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ExpectRelease();
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}
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TEST_F(VideoProcessorTest, ProcessFrames_VariableFramerate) {
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const int kBitrateKbps = 456;
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const int kStartFramerateFps = 27;
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EXPECT_CALL(encoder_mock_, SetRateAllocation(_, kStartFramerateFps))
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.Times(1)
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.WillOnce(Return(0));
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video_processor_->SetRates(kBitrateKbps, kStartFramerateFps);
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EXPECT_CALL(frame_reader_mock_, ReadFrame())
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.WillRepeatedly(Return(I420Buffer::Create(kWidth, kHeight)));
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EXPECT_CALL(encoder_mock_, Encode(Property(&VideoFrame::timestamp,
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1 * 90000 / kStartFramerateFps),
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_, _))
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.Times(1);
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video_processor_->ProcessFrame();
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const int kNewFramerateFps = 13;
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EXPECT_CALL(encoder_mock_, SetRateAllocation(_, kNewFramerateFps))
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.Times(1)
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.WillOnce(Return(0));
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video_processor_->SetRates(kBitrateKbps, kNewFramerateFps);
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EXPECT_CALL(encoder_mock_, Encode(Property(&VideoFrame::timestamp,
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2 * 90000 / kNewFramerateFps),
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_, _))
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.Times(1);
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video_processor_->ProcessFrame();
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ExpectRelease();
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}
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TEST_F(VideoProcessorTest, SetRates) {
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const int kBitrateKbps = 123;
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const int kFramerateFps = 17;
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EXPECT_CALL(encoder_mock_,
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SetRateAllocation(
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Property(&BitrateAllocation::get_sum_kbps, kBitrateKbps),
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kFramerateFps))
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.Times(1);
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video_processor_->SetRates(kBitrateKbps, kFramerateFps);
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const int kNewBitrateKbps = 456;
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const int kNewFramerateFps = 34;
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EXPECT_CALL(encoder_mock_,
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SetRateAllocation(
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Property(&BitrateAllocation::get_sum_kbps, kNewBitrateKbps),
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kNewFramerateFps))
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.Times(1);
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video_processor_->SetRates(kNewBitrateKbps, kNewFramerateFps);
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ExpectRelease();
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}
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} // namespace test
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} // namespace webrtc
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