
This is a reland of fb82fcc7f9c414dc8ba1ddd314e9524fee54cb80 Original change's description: > Move creating encoder to VideoStreamEncoder. > > This used to be in WebRtcVideoChannel::WebRtcVideoSendStream. > One implication is that encoder is not created until the first > frame arrives, and some of the tests needed updates to emit a > frame or two. > > Bug: webrtc:8830 > Change-Id: I78169b2bb4dfa4197b4b4229af9fd69d0f747835 > Reviewed-on: https://webrtc-review.googlesource.com/64885 > Commit-Queue: Niels Moller <nisse@webrtc.org> > Reviewed-by: Erik Språng <sprang@webrtc.org> > Reviewed-by: Karl Wiberg <kwiberg@webrtc.org> > Cr-Commit-Position: refs/heads/master@{#22905} TBR=magjed@webrtc.org,kwiberg@webrtc.org Bug: webrtc:8830 Change-Id: I9565095ea1880fb49d15111198c08b2fcb84f18c Reviewed-on: https://webrtc-review.googlesource.com/70740 Commit-Queue: Niels Moller <nisse@webrtc.org> Reviewed-by: Niels Moller <nisse@webrtc.org> Reviewed-by: Erik Språng <sprang@webrtc.org> Cr-Commit-Position: refs/heads/master@{#22930}
500 lines
18 KiB
C++
500 lines
18 KiB
C++
/*
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* Copyright 2018 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 "modules/rtp_rtcp/source/byte_io.h"
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#include "modules/video_coding/codecs/vp8/include/vp8.h"
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#include "test/call_test.h"
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#include "test/field_trial.h"
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#include "test/function_video_encoder_factory.h"
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#include "test/gtest.h"
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#include "test/rtcp_packet_parser.h"
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namespace webrtc {
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class FecEndToEndTest : public test::CallTest,
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public testing::WithParamInterface<std::string> {
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public:
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FecEndToEndTest() : field_trial_(GetParam()) {}
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virtual ~FecEndToEndTest() {
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EXPECT_EQ(nullptr, video_send_stream_);
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EXPECT_TRUE(video_receive_streams_.empty());
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}
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private:
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test::ScopedFieldTrials field_trial_;
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};
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INSTANTIATE_TEST_CASE_P(RoundRobin,
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FecEndToEndTest,
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::testing::Values("WebRTC-RoundRobinPacing/Disabled/",
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"WebRTC-RoundRobinPacing/Enabled/"));
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TEST_P(FecEndToEndTest, ReceivesUlpfec) {
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class UlpfecRenderObserver : public test::EndToEndTest,
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public rtc::VideoSinkInterface<VideoFrame> {
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public:
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UlpfecRenderObserver()
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: EndToEndTest(kDefaultTimeoutMs),
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encoder_factory_([]() { return VP8Encoder::Create(); }),
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random_(0xcafef00d1),
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num_packets_sent_(0) {}
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private:
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Action OnSendRtp(const uint8_t* packet, size_t length) override {
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rtc::CritScope lock(&crit_);
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RTPHeader header;
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EXPECT_TRUE(parser_->Parse(packet, length, &header));
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EXPECT_TRUE(header.payloadType == kVideoSendPayloadType ||
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header.payloadType == kRedPayloadType)
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<< "Unknown payload type received.";
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EXPECT_EQ(kVideoSendSsrcs[0], header.ssrc) << "Unknown SSRC received.";
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// Parse RED header.
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int encapsulated_payload_type = -1;
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if (header.payloadType == kRedPayloadType) {
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encapsulated_payload_type =
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static_cast<int>(packet[header.headerLength]);
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EXPECT_TRUE(encapsulated_payload_type == kVideoSendPayloadType ||
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encapsulated_payload_type == kUlpfecPayloadType)
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<< "Unknown encapsulated payload type received.";
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}
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// To minimize test flakiness, always let ULPFEC packets through.
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if (encapsulated_payload_type == kUlpfecPayloadType) {
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return SEND_PACKET;
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}
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// Simulate 5% video packet loss after rampup period. Record the
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// corresponding timestamps that were dropped.
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if (num_packets_sent_++ > 100 && random_.Rand(1, 100) <= 5) {
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if (encapsulated_payload_type == kVideoSendPayloadType) {
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dropped_sequence_numbers_.insert(header.sequenceNumber);
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dropped_timestamps_.insert(header.timestamp);
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}
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return DROP_PACKET;
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}
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return SEND_PACKET;
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}
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void OnFrame(const VideoFrame& video_frame) override {
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rtc::CritScope lock(&crit_);
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// Rendering frame with timestamp of packet that was dropped -> FEC
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// protection worked.
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auto it = dropped_timestamps_.find(video_frame.timestamp());
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if (it != dropped_timestamps_.end()) {
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observation_complete_.Set();
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}
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}
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void ModifyVideoConfigs(
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VideoSendStream::Config* send_config,
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std::vector<VideoReceiveStream::Config>* receive_configs,
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VideoEncoderConfig* encoder_config) override {
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// Use VP8 instead of FAKE, since the latter does not have PictureID
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// in the packetization headers.
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send_config->encoder_settings.encoder_factory = &encoder_factory_;
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send_config->rtp.payload_name = "VP8";
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send_config->rtp.payload_type = kVideoSendPayloadType;
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encoder_config->codec_type = kVideoCodecVP8;
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VideoReceiveStream::Decoder decoder =
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test::CreateMatchingDecoder(*send_config);
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decoder_.reset(decoder.decoder);
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(*receive_configs)[0].decoders.clear();
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(*receive_configs)[0].decoders.push_back(decoder);
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// Enable ULPFEC over RED.
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send_config->rtp.ulpfec.red_payload_type = kRedPayloadType;
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send_config->rtp.ulpfec.ulpfec_payload_type = kUlpfecPayloadType;
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(*receive_configs)[0].rtp.red_payload_type = kRedPayloadType;
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(*receive_configs)[0].rtp.ulpfec_payload_type = kUlpfecPayloadType;
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(*receive_configs)[0].renderer = this;
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}
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void PerformTest() override {
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EXPECT_TRUE(Wait())
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<< "Timed out waiting for dropped frames to be rendered.";
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}
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rtc::CriticalSection crit_;
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std::unique_ptr<VideoEncoder> encoder_;
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test::FunctionVideoEncoderFactory encoder_factory_;
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std::unique_ptr<VideoDecoder> decoder_;
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std::set<uint32_t> dropped_sequence_numbers_ RTC_GUARDED_BY(crit_);
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// Several packets can have the same timestamp.
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std::multiset<uint32_t> dropped_timestamps_ RTC_GUARDED_BY(crit_);
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Random random_;
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int num_packets_sent_ RTC_GUARDED_BY(crit_);
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} test;
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RunBaseTest(&test);
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}
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class FlexfecRenderObserver : public test::EndToEndTest,
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public rtc::VideoSinkInterface<VideoFrame> {
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public:
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static constexpr uint32_t kVideoLocalSsrc = 123;
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static constexpr uint32_t kFlexfecLocalSsrc = 456;
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explicit FlexfecRenderObserver(bool enable_nack, bool expect_flexfec_rtcp)
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: test::EndToEndTest(test::CallTest::kDefaultTimeoutMs),
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enable_nack_(enable_nack),
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expect_flexfec_rtcp_(expect_flexfec_rtcp),
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received_flexfec_rtcp_(false),
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random_(0xcafef00d1),
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num_packets_sent_(0) {}
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size_t GetNumFlexfecStreams() const override { return 1; }
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private:
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Action OnSendRtp(const uint8_t* packet, size_t length) override {
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rtc::CritScope lock(&crit_);
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RTPHeader header;
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EXPECT_TRUE(parser_->Parse(packet, length, &header));
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EXPECT_TRUE(header.payloadType ==
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test::CallTest::kFakeVideoSendPayloadType ||
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header.payloadType == test::CallTest::kFlexfecPayloadType ||
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(enable_nack_ &&
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header.payloadType == test::CallTest::kSendRtxPayloadType))
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<< "Unknown payload type received.";
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EXPECT_TRUE(
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header.ssrc == test::CallTest::kVideoSendSsrcs[0] ||
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header.ssrc == test::CallTest::kFlexfecSendSsrc ||
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(enable_nack_ && header.ssrc == test::CallTest::kSendRtxSsrcs[0]))
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<< "Unknown SSRC received.";
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// To reduce test flakiness, always let FlexFEC packets through.
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if (header.payloadType == test::CallTest::kFlexfecPayloadType) {
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EXPECT_EQ(test::CallTest::kFlexfecSendSsrc, header.ssrc);
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return SEND_PACKET;
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}
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// To reduce test flakiness, always let RTX packets through.
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if (header.payloadType == test::CallTest::kSendRtxPayloadType) {
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EXPECT_EQ(test::CallTest::kSendRtxSsrcs[0], header.ssrc);
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// Parse RTX header.
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uint16_t original_sequence_number =
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ByteReader<uint16_t>::ReadBigEndian(&packet[header.headerLength]);
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// From the perspective of FEC, a retransmitted packet is no longer
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// dropped, so remove it from list of dropped packets.
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auto seq_num_it =
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dropped_sequence_numbers_.find(original_sequence_number);
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if (seq_num_it != dropped_sequence_numbers_.end()) {
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dropped_sequence_numbers_.erase(seq_num_it);
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auto ts_it = dropped_timestamps_.find(header.timestamp);
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EXPECT_NE(ts_it, dropped_timestamps_.end());
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dropped_timestamps_.erase(ts_it);
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}
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return SEND_PACKET;
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}
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// Simulate 5% video packet loss after rampup period. Record the
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// corresponding timestamps that were dropped.
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if (num_packets_sent_++ > 100 && random_.Rand(1, 100) <= 5) {
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EXPECT_EQ(test::CallTest::kFakeVideoSendPayloadType, header.payloadType);
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EXPECT_EQ(test::CallTest::kVideoSendSsrcs[0], header.ssrc);
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dropped_sequence_numbers_.insert(header.sequenceNumber);
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dropped_timestamps_.insert(header.timestamp);
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return DROP_PACKET;
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}
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return SEND_PACKET;
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}
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Action OnReceiveRtcp(const uint8_t* data, size_t length) override {
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test::RtcpPacketParser parser;
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parser.Parse(data, length);
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if (parser.sender_ssrc() == kFlexfecLocalSsrc) {
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EXPECT_EQ(1, parser.receiver_report()->num_packets());
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const std::vector<rtcp::ReportBlock>& report_blocks =
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parser.receiver_report()->report_blocks();
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if (!report_blocks.empty()) {
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EXPECT_EQ(1U, report_blocks.size());
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EXPECT_EQ(test::CallTest::kFlexfecSendSsrc,
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report_blocks[0].source_ssrc());
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rtc::CritScope lock(&crit_);
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received_flexfec_rtcp_ = true;
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}
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}
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return SEND_PACKET;
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}
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test::PacketTransport* CreateSendTransport(
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test::SingleThreadedTaskQueueForTesting* task_queue,
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Call* sender_call) override {
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// At low RTT (< kLowRttNackMs) -> NACK only, no FEC.
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const int kNetworkDelayMs = 100;
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FakeNetworkPipe::Config config;
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config.queue_delay_ms = kNetworkDelayMs;
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return new test::PacketTransport(task_queue, sender_call, this,
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test::PacketTransport::kSender,
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test::CallTest::payload_type_map_, config);
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}
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void OnFrame(const VideoFrame& video_frame) override {
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EXPECT_EQ(kVideoRotation_90, video_frame.rotation());
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rtc::CritScope lock(&crit_);
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// Rendering frame with timestamp of packet that was dropped -> FEC
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// protection worked.
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auto it = dropped_timestamps_.find(video_frame.timestamp());
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if (it != dropped_timestamps_.end()) {
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if (!expect_flexfec_rtcp_ || received_flexfec_rtcp_) {
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observation_complete_.Set();
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}
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}
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}
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void ModifyVideoConfigs(
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VideoSendStream::Config* send_config,
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std::vector<VideoReceiveStream::Config>* receive_configs,
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VideoEncoderConfig* encoder_config) override {
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(*receive_configs)[0].rtp.local_ssrc = kVideoLocalSsrc;
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(*receive_configs)[0].renderer = this;
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if (enable_nack_) {
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send_config->rtp.nack.rtp_history_ms = test::CallTest::kNackRtpHistoryMs;
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send_config->rtp.rtx.ssrcs.push_back(test::CallTest::kSendRtxSsrcs[0]);
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send_config->rtp.rtx.payload_type = test::CallTest::kSendRtxPayloadType;
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(*receive_configs)[0].rtp.nack.rtp_history_ms =
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test::CallTest::kNackRtpHistoryMs;
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(*receive_configs)[0].rtp.rtx_ssrc = test::CallTest::kSendRtxSsrcs[0];
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(*receive_configs)[0]
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.rtp
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.rtx_associated_payload_types[test::CallTest::kSendRtxPayloadType] =
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test::CallTest::kVideoSendPayloadType;
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}
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}
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void OnFrameGeneratorCapturerCreated(
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test::FrameGeneratorCapturer* frame_generator_capturer) override {
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frame_generator_capturer->SetFakeRotation(kVideoRotation_90);
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}
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void ModifyFlexfecConfigs(
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std::vector<FlexfecReceiveStream::Config>* receive_configs) override {
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(*receive_configs)[0].local_ssrc = kFlexfecLocalSsrc;
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}
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void PerformTest() override {
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EXPECT_TRUE(Wait())
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<< "Timed out waiting for dropped frames to be rendered.";
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}
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rtc::CriticalSection crit_;
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std::set<uint32_t> dropped_sequence_numbers_ RTC_GUARDED_BY(crit_);
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// Several packets can have the same timestamp.
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std::multiset<uint32_t> dropped_timestamps_ RTC_GUARDED_BY(crit_);
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const bool enable_nack_;
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const bool expect_flexfec_rtcp_;
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bool received_flexfec_rtcp_ RTC_GUARDED_BY(crit_);
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Random random_;
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int num_packets_sent_;
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};
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TEST_P(FecEndToEndTest, RecoversWithFlexfec) {
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FlexfecRenderObserver test(false, false);
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RunBaseTest(&test);
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}
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TEST_P(FecEndToEndTest, RecoversWithFlexfecAndNack) {
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FlexfecRenderObserver test(true, false);
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RunBaseTest(&test);
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}
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TEST_P(FecEndToEndTest, RecoversWithFlexfecAndSendsCorrespondingRtcp) {
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FlexfecRenderObserver test(false, true);
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RunBaseTest(&test);
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}
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TEST_P(FecEndToEndTest, ReceivedUlpfecPacketsNotNacked) {
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class UlpfecNackObserver : public test::EndToEndTest {
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public:
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UlpfecNackObserver()
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: EndToEndTest(kDefaultTimeoutMs),
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state_(kFirstPacket),
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ulpfec_sequence_number_(0),
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has_last_sequence_number_(false),
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last_sequence_number_(0),
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encoder_factory_([]() { return VP8Encoder::Create(); }),
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decoder_(VP8Decoder::Create()) {}
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private:
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Action OnSendRtp(const uint8_t* packet, size_t length) override {
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rtc::CritScope lock_(&crit_);
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RTPHeader header;
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EXPECT_TRUE(parser_->Parse(packet, length, &header));
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int encapsulated_payload_type = -1;
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if (header.payloadType == kRedPayloadType) {
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encapsulated_payload_type =
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static_cast<int>(packet[header.headerLength]);
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if (encapsulated_payload_type != kFakeVideoSendPayloadType)
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EXPECT_EQ(kUlpfecPayloadType, encapsulated_payload_type);
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} else {
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EXPECT_EQ(kFakeVideoSendPayloadType, header.payloadType);
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}
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if (has_last_sequence_number_ &&
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!IsNewerSequenceNumber(header.sequenceNumber,
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last_sequence_number_)) {
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// Drop retransmitted packets.
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return DROP_PACKET;
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}
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last_sequence_number_ = header.sequenceNumber;
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has_last_sequence_number_ = true;
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bool ulpfec_packet = encapsulated_payload_type == kUlpfecPayloadType;
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switch (state_) {
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case kFirstPacket:
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state_ = kDropEveryOtherPacketUntilUlpfec;
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break;
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case kDropEveryOtherPacketUntilUlpfec:
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if (ulpfec_packet) {
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state_ = kDropAllMediaPacketsUntilUlpfec;
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} else if (header.sequenceNumber % 2 == 0) {
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return DROP_PACKET;
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}
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break;
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case kDropAllMediaPacketsUntilUlpfec:
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if (!ulpfec_packet)
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return DROP_PACKET;
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ulpfec_sequence_number_ = header.sequenceNumber;
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state_ = kDropOneMediaPacket;
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break;
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case kDropOneMediaPacket:
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if (ulpfec_packet)
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return DROP_PACKET;
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state_ = kPassOneMediaPacket;
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return DROP_PACKET;
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break;
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case kPassOneMediaPacket:
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if (ulpfec_packet)
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return DROP_PACKET;
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// Pass one media packet after dropped packet after last FEC,
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// otherwise receiver might never see a seq_no after
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// |ulpfec_sequence_number_|
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state_ = kVerifyUlpfecPacketNotInNackList;
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break;
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case kVerifyUlpfecPacketNotInNackList:
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// Continue to drop packets. Make sure no frame can be decoded.
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if (ulpfec_packet || header.sequenceNumber % 2 == 0)
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return DROP_PACKET;
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break;
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}
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return SEND_PACKET;
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}
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Action OnReceiveRtcp(const uint8_t* packet, size_t length) override {
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rtc::CritScope lock_(&crit_);
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if (state_ == kVerifyUlpfecPacketNotInNackList) {
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test::RtcpPacketParser rtcp_parser;
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rtcp_parser.Parse(packet, length);
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const std::vector<uint16_t>& nacks = rtcp_parser.nack()->packet_ids();
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EXPECT_TRUE(std::find(nacks.begin(), nacks.end(),
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ulpfec_sequence_number_) == nacks.end())
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<< "Got nack for ULPFEC packet";
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if (!nacks.empty() &&
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IsNewerSequenceNumber(nacks.back(), ulpfec_sequence_number_)) {
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observation_complete_.Set();
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}
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}
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return SEND_PACKET;
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}
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test::PacketTransport* CreateSendTransport(
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test::SingleThreadedTaskQueueForTesting* task_queue,
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Call* sender_call) override {
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// At low RTT (< kLowRttNackMs) -> NACK only, no FEC.
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// Configure some network delay.
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const int kNetworkDelayMs = 50;
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FakeNetworkPipe::Config config;
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config.queue_delay_ms = kNetworkDelayMs;
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return new test::PacketTransport(task_queue, sender_call, this,
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test::PacketTransport::kSender,
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payload_type_map_, config);
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}
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// TODO(holmer): Investigate why we don't send FEC packets when the bitrate
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// is 10 kbps.
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Call::Config GetSenderCallConfig() override {
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Call::Config config(event_log_.get());
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const int kMinBitrateBps = 30000;
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config.bitrate_config.min_bitrate_bps = kMinBitrateBps;
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return config;
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}
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void ModifyVideoConfigs(
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VideoSendStream::Config* send_config,
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std::vector<VideoReceiveStream::Config>* receive_configs,
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VideoEncoderConfig* encoder_config) override {
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// Configure hybrid NACK/FEC.
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send_config->rtp.nack.rtp_history_ms = kNackRtpHistoryMs;
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send_config->rtp.ulpfec.red_payload_type = kRedPayloadType;
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send_config->rtp.ulpfec.ulpfec_payload_type = kUlpfecPayloadType;
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// Set codec to VP8, otherwise NACK/FEC hybrid will be disabled.
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send_config->encoder_settings.encoder_factory = &encoder_factory_;
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send_config->rtp.payload_name = "VP8";
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send_config->rtp.payload_type = kFakeVideoSendPayloadType;
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encoder_config->codec_type = kVideoCodecVP8;
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(*receive_configs)[0].rtp.nack.rtp_history_ms = kNackRtpHistoryMs;
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(*receive_configs)[0].rtp.red_payload_type = kRedPayloadType;
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(*receive_configs)[0].rtp.ulpfec_payload_type = kUlpfecPayloadType;
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(*receive_configs)[0].decoders.resize(1);
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(*receive_configs)[0].decoders[0].payload_type =
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send_config->rtp.payload_type;
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(*receive_configs)[0].decoders[0].payload_name =
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send_config->rtp.payload_name;
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(*receive_configs)[0].decoders[0].decoder = decoder_.get();
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}
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void PerformTest() override {
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EXPECT_TRUE(Wait())
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<< "Timed out while waiting for FEC packets to be received.";
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}
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enum {
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kFirstPacket,
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kDropEveryOtherPacketUntilUlpfec,
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kDropAllMediaPacketsUntilUlpfec,
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kDropOneMediaPacket,
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kPassOneMediaPacket,
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kVerifyUlpfecPacketNotInNackList,
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} state_;
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rtc::CriticalSection crit_;
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uint16_t ulpfec_sequence_number_ RTC_GUARDED_BY(&crit_);
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bool has_last_sequence_number_;
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uint16_t last_sequence_number_;
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std::unique_ptr<webrtc::VideoEncoder> encoder_;
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test::FunctionVideoEncoderFactory encoder_factory_;
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std::unique_ptr<webrtc::VideoDecoder> decoder_;
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} test;
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RunBaseTest(&test);
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}
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} // namespace webrtc
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