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Change-Id: I188ed4c7cebc5cafb31e01a38e0460cde65fefa1 Bug: none Reviewed-on: https://webrtc-review.googlesource.com/c/src/+/341800 Reviewed-by: Tomas Gunnarsson <tommi@webrtc.org> Reviewed-by: Mirko Bonadei <mbonadei@webrtc.org> Commit-Queue: Philip Eliasson <philipel@webrtc.org> Cr-Commit-Position: refs/heads/main@{#41926}
729 lines
27 KiB
C++
729 lines
27 KiB
C++
/*
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* Copyright (c) 2014 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 <stdio.h>
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#include <fstream>
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#include <map>
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#include <memory>
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#include "absl/flags/flag.h"
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#include "absl/flags/parse.h"
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#include "absl/strings/str_split.h"
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#include "api/environment/environment.h"
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#include "api/environment/environment_factory.h"
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#include "api/field_trials.h"
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#include "api/media_types.h"
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#include "api/task_queue/task_queue_base.h"
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#include "api/test/video/function_video_decoder_factory.h"
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#include "api/transport/field_trial_based_config.h"
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#include "api/units/timestamp.h"
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#include "api/video/video_codec_type.h"
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#include "api/video_codecs/video_decoder.h"
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#include "call/call.h"
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#include "common_video/libyuv/include/webrtc_libyuv.h"
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#include "media/engine/internal_decoder_factory.h"
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#include "modules/rtp_rtcp/include/rtp_header_extension_map.h"
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#include "modules/rtp_rtcp/source/rtp_dependency_descriptor_extension.h"
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#include "modules/rtp_rtcp/source/rtp_packet.h"
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#include "modules/rtp_rtcp/source/rtp_packet_received.h"
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#include "modules/rtp_rtcp/source/rtp_util.h"
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#include "modules/video_coding/utility/ivf_file_writer.h"
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#include "rtc_base/checks.h"
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#include "rtc_base/string_to_number.h"
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#include "rtc_base/strings/json.h"
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#include "system_wrappers/include/clock.h"
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#include "system_wrappers/include/sleep.h"
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#include "test/call_config_utils.h"
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#include "test/encoder_settings.h"
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#include "test/fake_decoder.h"
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#include "test/gtest.h"
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#include "test/null_transport.h"
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#include "test/rtp_file_reader.h"
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#include "test/run_loop.h"
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#include "test/run_test.h"
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#include "test/test_video_capturer.h"
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#include "test/testsupport/frame_writer.h"
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#include "test/time_controller/simulated_time_controller.h"
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#include "test/video_renderer.h"
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#include "test/video_test_constants.h"
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// Flag for payload type.
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ABSL_FLAG(int,
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media_payload_type,
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webrtc::test::VideoTestConstants::kPayloadTypeVP8,
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"Media payload type");
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// Flag for RED payload type.
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ABSL_FLAG(int,
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red_payload_type,
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webrtc::test::VideoTestConstants::kRedPayloadType,
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"RED payload type");
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// Flag for ULPFEC payload type.
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ABSL_FLAG(int,
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ulpfec_payload_type,
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webrtc::test::VideoTestConstants::kUlpfecPayloadType,
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"ULPFEC payload type");
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// Flag for FLEXFEC payload type.
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ABSL_FLAG(int,
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flexfec_payload_type,
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webrtc::test::VideoTestConstants::kFlexfecPayloadType,
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"FLEXFEC payload type");
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ABSL_FLAG(int,
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media_payload_type_rtx,
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webrtc::test::VideoTestConstants::kSendRtxPayloadType,
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"Media over RTX payload type");
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ABSL_FLAG(int,
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red_payload_type_rtx,
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webrtc::test::VideoTestConstants::kRtxRedPayloadType,
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"RED over RTX payload type");
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// Flag for SSRC and RTX SSRC.
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ABSL_FLAG(uint32_t,
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ssrc,
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webrtc::test::VideoTestConstants::kVideoSendSsrcs[0],
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"Incoming SSRC");
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ABSL_FLAG(uint32_t,
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ssrc_rtx,
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webrtc::test::VideoTestConstants::kSendRtxSsrcs[0],
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"Incoming RTX SSRC");
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ABSL_FLAG(uint32_t,
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ssrc_flexfec,
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webrtc::test::VideoTestConstants::kFlexfecSendSsrc,
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"Incoming FLEXFEC SSRC");
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ABSL_FLAG(std::vector<std::string>,
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ext_map,
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{},
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"RTP extension to ID map in the format of EXT1:ID,EXT2:ID,EXT3:ID"
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" Known extensions are:\n"
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"TOFF - kTimestampOffsetUri\n"
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"ABSSEND - kAbsSendTimeUri\n"
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"ABSCAPT - kAbsoluteCaptureTimeUri\n"
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"ROT - kVideoRotationUri\n"
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"CONT - kVideoContentTypeUri\n"
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"DD - kDependencyDescriptorUri\n"
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"LALOC - kVideoLayersAllocationUri\n"
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"TWCC - kTransportSequenceNumberUri\n"
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"TWCC2 - kTransportSequenceNumberV2Uri\n"
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"DELAY - kPlayoutDelayUri\n"
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"COLOR - kColorSpaceUri\n");
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// Flag for rtpdump input file.
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ABSL_FLAG(std::string, input_file, "", "input file");
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ABSL_FLAG(std::string, config_file, "", "config file");
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// Flag for raw output files.
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ABSL_FLAG(std::string,
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out_base,
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"",
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"Basename (excluding .jpg) for raw output");
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ABSL_FLAG(std::string,
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decoder_bitstream_filename,
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"",
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"Decoder bitstream output file");
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ABSL_FLAG(std::string, decoder_ivf_filename, "", "Decoder ivf output file");
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// Flag for video codec.
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ABSL_FLAG(std::string, codec, "VP8", "Video codec");
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// Flags for rtp start and stop timestamp.
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ABSL_FLAG(uint32_t,
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start_timestamp,
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0,
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"RTP start timestamp, packets with smaller timestamp will be ignored "
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"(no wraparound)");
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ABSL_FLAG(uint32_t,
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stop_timestamp,
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4294967295,
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"RTP stop timestamp, packets with larger timestamp will be ignored "
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"(no wraparound)");
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// Flags for render window width and height
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ABSL_FLAG(uint32_t, render_width, 640, "Width of render window");
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ABSL_FLAG(uint32_t, render_height, 480, "Height of render window");
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ABSL_FLAG(
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std::string,
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force_fieldtrials,
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"",
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"Field trials control experimental feature code which can be forced. "
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"E.g. running with --force_fieldtrials=WebRTC-FooFeature/Enabled/"
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" will assign the group Enable to field trial WebRTC-FooFeature. Multiple "
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"trials are separated by \"/\"");
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ABSL_FLAG(bool, simulated_time, false, "Run in simulated time");
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ABSL_FLAG(bool, disable_preview, false, "Disable decoded video preview.");
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ABSL_FLAG(bool, disable_decoding, false, "Disable video decoding.");
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ABSL_FLAG(int,
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extend_run_time_duration,
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0,
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"Extends the run time of the receiving client after the last RTP "
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"packet has been delivered. Typically useful to let the last few "
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"frames be decoded and rendered. Duration given in seconds.");
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namespace {
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bool ValidatePayloadType(int32_t payload_type) {
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return payload_type > 0 && payload_type <= 127;
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}
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bool ValidateOptionalPayloadType(int32_t payload_type) {
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return payload_type == -1 || ValidatePayloadType(payload_type);
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}
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bool ValidateInputFilenameNotEmpty(const std::string& string) {
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return !string.empty();
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}
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} // namespace
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namespace webrtc {
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namespace {
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const uint32_t kReceiverLocalSsrc = 0x123456;
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class NullRenderer : public rtc::VideoSinkInterface<VideoFrame> {
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public:
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void OnFrame(const VideoFrame& frame) override {}
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};
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class FileRenderPassthrough : public rtc::VideoSinkInterface<VideoFrame> {
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public:
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FileRenderPassthrough(const std::string& basename,
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rtc::VideoSinkInterface<VideoFrame>* renderer)
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: basename_(basename), renderer_(renderer), file_(nullptr), count_(0) {}
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~FileRenderPassthrough() override {
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if (file_)
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fclose(file_);
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}
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private:
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void OnFrame(const VideoFrame& video_frame) override {
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if (renderer_)
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renderer_->OnFrame(video_frame);
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if (basename_.empty())
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return;
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std::stringstream filename;
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filename << basename_ << count_++ << "_" << video_frame.rtp_timestamp()
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<< ".jpg";
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test::JpegFrameWriter frame_writer(filename.str());
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RTC_CHECK(frame_writer.WriteFrame(video_frame, 100));
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}
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const std::string basename_;
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rtc::VideoSinkInterface<VideoFrame>* const renderer_;
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FILE* file_;
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size_t count_;
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};
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class DecoderBitstreamFileWriter : public test::FakeDecoder {
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public:
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explicit DecoderBitstreamFileWriter(const char* filename)
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: file_(fopen(filename, "wb")) {
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RTC_DCHECK(file_);
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}
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~DecoderBitstreamFileWriter() override { fclose(file_); }
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int32_t Decode(const EncodedImage& encoded_frame,
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int64_t /* render_time_ms */) override {
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if (fwrite(encoded_frame.data(), 1, encoded_frame.size(), file_) <
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encoded_frame.size()) {
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RTC_LOG_ERR(LS_ERROR) << "fwrite of encoded frame failed.";
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return WEBRTC_VIDEO_CODEC_ERROR;
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}
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return WEBRTC_VIDEO_CODEC_OK;
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}
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private:
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FILE* file_;
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};
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class DecoderIvfFileWriter : public test::FakeDecoder {
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public:
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explicit DecoderIvfFileWriter(const char* filename, const std::string& codec)
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: file_writer_(
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IvfFileWriter::Wrap(FileWrapper::OpenWriteOnly(filename), 0)) {
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RTC_DCHECK(file_writer_.get());
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if (codec == "VP8") {
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video_codec_type_ = VideoCodecType::kVideoCodecVP8;
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} else if (codec == "VP9") {
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video_codec_type_ = VideoCodecType::kVideoCodecVP9;
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} else if (codec == "H264") {
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video_codec_type_ = VideoCodecType::kVideoCodecH264;
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} else if (codec == "AV1") {
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video_codec_type_ = VideoCodecType::kVideoCodecAV1;
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} else if (codec == "H265") {
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video_codec_type_ = VideoCodecType::kVideoCodecH265;
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} else {
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RTC_LOG(LS_ERROR) << "Unsupported video codec " << codec;
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RTC_DCHECK_NOTREACHED();
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}
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}
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~DecoderIvfFileWriter() override { file_writer_->Close(); }
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int32_t Decode(const EncodedImage& encoded_frame,
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int64_t render_time_ms) override {
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if (!file_writer_->WriteFrame(encoded_frame, video_codec_type_)) {
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return WEBRTC_VIDEO_CODEC_ERROR;
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}
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return WEBRTC_VIDEO_CODEC_OK;
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}
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private:
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std::unique_ptr<IvfFileWriter> file_writer_;
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VideoCodecType video_codec_type_;
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};
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// Holds all the shared memory structures required for a receive stream. This
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// structure is used to prevent members being deallocated before the replay
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// has been finished.
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struct StreamState {
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test::NullTransport transport;
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std::vector<std::unique_ptr<rtc::VideoSinkInterface<VideoFrame>>> sinks;
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std::vector<VideoReceiveStreamInterface*> receive_streams;
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std::vector<FlexfecReceiveStream*> flexfec_streams;
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std::unique_ptr<VideoDecoderFactory> decoder_factory;
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};
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// Loads multiple configurations from the provided configuration file.
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std::unique_ptr<StreamState> ConfigureFromFile(const std::string& config_path,
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Call* call) {
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auto stream_state = std::make_unique<StreamState>();
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// Parse the configuration file.
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std::ifstream config_file(config_path);
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std::stringstream raw_json_buffer;
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raw_json_buffer << config_file.rdbuf();
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std::string raw_json = raw_json_buffer.str();
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Json::CharReaderBuilder builder;
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Json::Value json_configs;
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std::string error_message;
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std::unique_ptr<Json::CharReader> json_reader(builder.newCharReader());
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if (!json_reader->parse(raw_json.data(), raw_json.data() + raw_json.size(),
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&json_configs, &error_message)) {
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fprintf(stderr, "Error parsing JSON config\n");
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fprintf(stderr, "%s\n", error_message.c_str());
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return nullptr;
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}
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if (absl::GetFlag(FLAGS_disable_decoding)) {
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stream_state->decoder_factory =
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std::make_unique<test::FunctionVideoDecoderFactory>(
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[]() { return std::make_unique<test::FakeDecoder>(); });
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} else {
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stream_state->decoder_factory = std::make_unique<InternalDecoderFactory>();
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}
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size_t config_count = 0;
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for (const auto& json : json_configs) {
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// Create the configuration and parse the JSON into the config.
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auto receive_config =
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ParseVideoReceiveStreamJsonConfig(&(stream_state->transport), json);
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// Instantiate the underlying decoder.
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for (auto& decoder : receive_config.decoders) {
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decoder = test::CreateMatchingDecoder(decoder.payload_type,
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decoder.video_format.name);
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}
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// Create a window for this config.
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std::stringstream window_title;
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window_title << "Playback Video (" << config_count++ << ")";
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if (absl::GetFlag(FLAGS_disable_preview)) {
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stream_state->sinks.emplace_back(std::make_unique<NullRenderer>());
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} else {
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stream_state->sinks.emplace_back(test::VideoRenderer::Create(
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window_title.str().c_str(), absl::GetFlag(FLAGS_render_width),
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absl::GetFlag(FLAGS_render_height)));
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}
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// Create a receive stream for this config.
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receive_config.renderer = stream_state->sinks.back().get();
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receive_config.decoder_factory = stream_state->decoder_factory.get();
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stream_state->receive_streams.emplace_back(
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call->CreateVideoReceiveStream(std::move(receive_config)));
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}
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return stream_state;
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}
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// Loads the base configuration from flags passed in on the commandline.
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std::unique_ptr<StreamState> ConfigureFromFlags(
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const std::string& rtp_dump_path,
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Call* call) {
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auto stream_state = std::make_unique<StreamState>();
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// Create the video renderers. We must add both to the stream state to keep
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// them from deallocating.
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std::stringstream window_title;
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window_title << "Playback Video (" << rtp_dump_path << ")";
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std::unique_ptr<rtc::VideoSinkInterface<VideoFrame>> playback_video;
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if (absl::GetFlag(FLAGS_disable_preview)) {
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playback_video = std::make_unique<NullRenderer>();
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} else {
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playback_video.reset(test::VideoRenderer::Create(
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window_title.str().c_str(), absl::GetFlag(FLAGS_render_width),
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absl::GetFlag(FLAGS_render_height)));
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}
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auto file_passthrough = std::make_unique<FileRenderPassthrough>(
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absl::GetFlag(FLAGS_out_base), playback_video.get());
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stream_state->sinks.push_back(std::move(playback_video));
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stream_state->sinks.push_back(std::move(file_passthrough));
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// Setup the configuration from the flags.
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VideoReceiveStreamInterface::Config receive_config(
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&(stream_state->transport));
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receive_config.rtp.remote_ssrc = absl::GetFlag(FLAGS_ssrc);
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receive_config.rtp.local_ssrc = kReceiverLocalSsrc;
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receive_config.rtp.rtx_ssrc = absl::GetFlag(FLAGS_ssrc_rtx);
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receive_config.rtp.rtx_associated_payload_types[absl::GetFlag(
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FLAGS_media_payload_type_rtx)] = absl::GetFlag(FLAGS_media_payload_type);
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receive_config.rtp
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.rtx_associated_payload_types[absl::GetFlag(FLAGS_red_payload_type_rtx)] =
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absl::GetFlag(FLAGS_red_payload_type);
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receive_config.rtp.ulpfec_payload_type =
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absl::GetFlag(FLAGS_ulpfec_payload_type);
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receive_config.rtp.red_payload_type = absl::GetFlag(FLAGS_red_payload_type);
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receive_config.rtp.nack.rtp_history_ms = 1000;
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if (absl::GetFlag(FLAGS_flexfec_payload_type) != -1) {
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receive_config.rtp.protected_by_flexfec = true;
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FlexfecReceiveStream::Config flexfec_config(&(stream_state->transport));
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flexfec_config.payload_type = absl::GetFlag(FLAGS_flexfec_payload_type);
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flexfec_config.protected_media_ssrcs.push_back(absl::GetFlag(FLAGS_ssrc));
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flexfec_config.rtp.remote_ssrc = absl::GetFlag(FLAGS_ssrc_flexfec);
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FlexfecReceiveStream* flexfec_stream =
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call->CreateFlexfecReceiveStream(flexfec_config);
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receive_config.rtp.packet_sink_ = flexfec_stream;
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stream_state->flexfec_streams.push_back(flexfec_stream);
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}
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receive_config.renderer = stream_state->sinks.back().get();
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// Setup the receiving stream
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VideoReceiveStreamInterface::Decoder decoder;
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decoder = test::CreateMatchingDecoder(absl::GetFlag(FLAGS_media_payload_type),
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absl::GetFlag(FLAGS_codec));
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if (!absl::GetFlag(FLAGS_decoder_bitstream_filename).empty()) {
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// Replace decoder with file writer if we're writing the bitstream to a
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// file instead.
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stream_state->decoder_factory =
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std::make_unique<test::FunctionVideoDecoderFactory>([]() {
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return std::make_unique<DecoderBitstreamFileWriter>(
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absl::GetFlag(FLAGS_decoder_bitstream_filename).c_str());
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});
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} else if (!absl::GetFlag(FLAGS_decoder_ivf_filename).empty()) {
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// Replace decoder with file writer if we're writing the ivf to a
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// file instead.
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stream_state->decoder_factory =
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std::make_unique<test::FunctionVideoDecoderFactory>([]() {
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return std::make_unique<DecoderIvfFileWriter>(
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absl::GetFlag(FLAGS_decoder_ivf_filename).c_str(),
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absl::GetFlag(FLAGS_codec));
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});
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} else if (absl::GetFlag(FLAGS_disable_decoding)) {
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stream_state->decoder_factory =
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std::make_unique<test::FunctionVideoDecoderFactory>(
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[]() { return std::make_unique<test::FakeDecoder>(); });
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} else {
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stream_state->decoder_factory = std::make_unique<InternalDecoderFactory>();
|
|
}
|
|
receive_config.decoder_factory = stream_state->decoder_factory.get();
|
|
receive_config.decoders.push_back(decoder);
|
|
|
|
stream_state->receive_streams.emplace_back(
|
|
call->CreateVideoReceiveStream(std::move(receive_config)));
|
|
return stream_state;
|
|
}
|
|
|
|
std::unique_ptr<test::RtpFileReader> CreateRtpReader(
|
|
const std::string& rtp_dump_path) {
|
|
std::unique_ptr<test::RtpFileReader> rtp_reader(test::RtpFileReader::Create(
|
|
test::RtpFileReader::kRtpDump, rtp_dump_path));
|
|
if (!rtp_reader) {
|
|
rtp_reader.reset(
|
|
test::RtpFileReader::Create(test::RtpFileReader::kPcap, rtp_dump_path));
|
|
if (!rtp_reader) {
|
|
fprintf(stderr,
|
|
"Couldn't open input file as either a rtpdump or .pcap. Note "
|
|
"that .pcapng is not supported.\nTrying to interpret the file as "
|
|
"length/packet interleaved.\n");
|
|
rtp_reader.reset(test::RtpFileReader::Create(
|
|
test::RtpFileReader::kLengthPacketInterleaved, rtp_dump_path));
|
|
if (!rtp_reader) {
|
|
fprintf(stderr,
|
|
"Unable to open input file with any supported format\n");
|
|
return nullptr;
|
|
}
|
|
}
|
|
}
|
|
return rtp_reader;
|
|
}
|
|
|
|
// The RtpReplayer is responsible for parsing the configuration provided by
|
|
// the user, setting up the windows, receive streams and decoders and then
|
|
// replaying the provided RTP dump.
|
|
class RtpReplayer final {
|
|
public:
|
|
RtpReplayer(absl::string_view replay_config_path,
|
|
absl::string_view rtp_dump_path,
|
|
std::unique_ptr<FieldTrialsView> field_trials,
|
|
bool simulated_time)
|
|
: replay_config_path_(replay_config_path),
|
|
rtp_dump_path_(rtp_dump_path),
|
|
time_sim_(simulated_time
|
|
? std::make_unique<GlobalSimulatedTimeController>(
|
|
Timestamp::Millis(1 << 30))
|
|
: nullptr),
|
|
env_(CreateEnvironment(
|
|
std::move(field_trials),
|
|
time_sim_ ? time_sim_->GetTaskQueueFactory() : nullptr,
|
|
time_sim_ ? time_sim_->GetClock() : nullptr)),
|
|
rtp_reader_(CreateRtpReader(rtp_dump_path_)) {
|
|
worker_thread_ = env_.task_queue_factory().CreateTaskQueue(
|
|
"worker_thread", TaskQueueFactory::Priority::NORMAL);
|
|
rtc::Event event;
|
|
worker_thread_->PostTask([&]() {
|
|
call_ = Call::Create(CallConfig(env_));
|
|
|
|
// Creation of the streams must happen inside a task queue because it is
|
|
// resued as a worker thread.
|
|
if (replay_config_path_.empty()) {
|
|
stream_state_ = ConfigureFromFlags(rtp_dump_path_, call_.get());
|
|
} else {
|
|
stream_state_ = ConfigureFromFile(replay_config_path_, call_.get());
|
|
}
|
|
event.Set();
|
|
});
|
|
event.Wait(/*give_up_after=*/TimeDelta::Seconds(10));
|
|
|
|
RTC_CHECK(stream_state_);
|
|
RTC_CHECK(rtp_reader_);
|
|
}
|
|
|
|
~RtpReplayer() {
|
|
// Destruction of streams and the call must happen on the same thread as
|
|
// their creation.
|
|
rtc::Event event;
|
|
worker_thread_->PostTask([&]() {
|
|
for (const auto& receive_stream : stream_state_->receive_streams) {
|
|
call_->DestroyVideoReceiveStream(receive_stream);
|
|
}
|
|
for (const auto& flexfec_stream : stream_state_->flexfec_streams) {
|
|
call_->DestroyFlexfecReceiveStream(flexfec_stream);
|
|
}
|
|
call_.reset();
|
|
event.Set();
|
|
});
|
|
event.Wait(/*give_up_after=*/TimeDelta::Seconds(10));
|
|
}
|
|
|
|
void Run() {
|
|
rtc::Event event;
|
|
worker_thread_->PostTask([&]() {
|
|
// Start replaying the provided stream now that it has been configured.
|
|
// VideoReceiveStreams must be started on the same thread as they were
|
|
// created on.
|
|
for (const auto& receive_stream : stream_state_->receive_streams) {
|
|
receive_stream->Start();
|
|
}
|
|
event.Set();
|
|
});
|
|
event.Wait(/*give_up_after=*/TimeDelta::Seconds(10));
|
|
|
|
ReplayPackets();
|
|
}
|
|
|
|
private:
|
|
RtpHeaderExtensionMap GetExtensionMapFromFlags() {
|
|
const std::map<std::string_view, absl::string_view> kKnownExtensions = {
|
|
{"TOFF", RtpExtension::kTimestampOffsetUri},
|
|
{"ABSSEND", RtpExtension::kAbsSendTimeUri},
|
|
{"ABSCAPT", RtpExtension::kAbsoluteCaptureTimeUri},
|
|
{"ROT", RtpExtension::kVideoRotationUri},
|
|
{"CONT", RtpExtension::kVideoContentTypeUri},
|
|
{"DD", RtpExtension::kDependencyDescriptorUri},
|
|
{"LALOC", RtpExtension::kVideoLayersAllocationUri},
|
|
{"TWCC", RtpExtension::kTransportSequenceNumberUri},
|
|
{"TWCC2", RtpExtension::kTransportSequenceNumberV2Uri},
|
|
{"DELAY", RtpExtension::kPlayoutDelayUri},
|
|
{"COLOR", RtpExtension::kColorSpaceUri},
|
|
};
|
|
|
|
RtpHeaderExtensionMap res;
|
|
for (const std::string& extension : absl::GetFlag(FLAGS_ext_map)) {
|
|
std::pair<std::string, std::string> ext = absl::StrSplit(extension, ':');
|
|
if (auto it = kKnownExtensions.find(ext.first);
|
|
it != kKnownExtensions.end()) {
|
|
res.RegisterByUri(std::stoi(ext.second), it->second);
|
|
} else {
|
|
RTC_DCHECK_NOTREACHED() << "Unknown extension \"" << ext.first << "\"";
|
|
}
|
|
}
|
|
|
|
return res;
|
|
}
|
|
|
|
void ReplayPackets() {
|
|
enum class Result { kOk, kUnknownSsrc, kParsingFailed };
|
|
int64_t replay_start_ms = -1;
|
|
int num_packets = 0;
|
|
std::map<uint32_t, int> unknown_packets;
|
|
rtc::Event event(/*manual_reset=*/false, /*initially_signalled=*/false);
|
|
uint32_t start_timestamp = absl::GetFlag(FLAGS_start_timestamp);
|
|
uint32_t stop_timestamp = absl::GetFlag(FLAGS_stop_timestamp);
|
|
|
|
RtpHeaderExtensionMap extensions = GetExtensionMapFromFlags();
|
|
|
|
while (true) {
|
|
int64_t now_ms = CurrentTimeMs();
|
|
if (replay_start_ms == -1) {
|
|
replay_start_ms = now_ms;
|
|
}
|
|
|
|
test::RtpPacket packet;
|
|
if (!rtp_reader_->NextPacket(&packet)) {
|
|
break;
|
|
}
|
|
rtc::CopyOnWriteBuffer packet_buffer(
|
|
packet.original_length > 0 ? packet.original_length : packet.length);
|
|
memcpy(packet_buffer.MutableData(), packet.data, packet.length);
|
|
if (packet.length < packet.original_length) {
|
|
// Only the RTP header was recorded in the RTP dump, payload is not
|
|
// known and and padding length is not known, zero the payload and
|
|
// clear the padding bit.
|
|
memset(packet_buffer.MutableData() + packet.length, 0,
|
|
packet.original_length - packet.length);
|
|
packet_buffer.MutableData()[0] &= ~0x20;
|
|
}
|
|
RtpPacket header;
|
|
header.Parse(packet_buffer);
|
|
if (header.Timestamp() < start_timestamp ||
|
|
header.Timestamp() > stop_timestamp) {
|
|
continue;
|
|
}
|
|
|
|
int64_t deliver_in_ms = replay_start_ms + packet.time_ms - now_ms;
|
|
SleepOrAdvanceTime(deliver_in_ms);
|
|
|
|
++num_packets;
|
|
|
|
Result result = Result::kOk;
|
|
worker_thread_->PostTask([&]() {
|
|
if (IsRtcpPacket(packet_buffer)) {
|
|
call_->Receiver()->DeliverRtcpPacket(std::move(packet_buffer));
|
|
}
|
|
RtpPacketReceived received_packet(&extensions,
|
|
Timestamp::Millis(CurrentTimeMs()));
|
|
if (!received_packet.Parse(std::move(packet_buffer))) {
|
|
result = Result::kParsingFailed;
|
|
} else {
|
|
call_->Receiver()->DeliverRtpPacket(
|
|
MediaType::VIDEO, received_packet,
|
|
[&result](const RtpPacketReceived& parsed_packet) -> bool {
|
|
result = Result::kUnknownSsrc;
|
|
// No point in trying to demux again.
|
|
return false;
|
|
});
|
|
}
|
|
event.Set();
|
|
});
|
|
event.Wait(/*give_up_after=*/TimeDelta::Seconds(10));
|
|
|
|
switch (result) {
|
|
case Result::kOk:
|
|
break;
|
|
case Result::kUnknownSsrc: {
|
|
if (unknown_packets[header.Ssrc()] == 0)
|
|
fprintf(stderr, "Unknown SSRC: %u!\n", header.Ssrc());
|
|
++unknown_packets[header.Ssrc()];
|
|
break;
|
|
}
|
|
case Result::kParsingFailed: {
|
|
fprintf(stderr,
|
|
"Packet error, corrupt packets or incorrect setup?\n");
|
|
fprintf(stderr, "Packet len=%zu pt=%u seq=%u ts=%u ssrc=0x%8x\n",
|
|
packet.length, header.PayloadType(), header.SequenceNumber(),
|
|
header.Timestamp(), header.Ssrc());
|
|
break;
|
|
}
|
|
}
|
|
}
|
|
// Note that even when `extend_run_time_duration` is zero
|
|
// `SleepOrAdvanceTime` should still be called in order to process the last
|
|
// delivered packet when running in simulated time.
|
|
SleepOrAdvanceTime(absl::GetFlag(FLAGS_extend_run_time_duration) * 1000);
|
|
|
|
fprintf(stderr, "num_packets: %d\n", num_packets);
|
|
|
|
for (std::map<uint32_t, int>::const_iterator it = unknown_packets.begin();
|
|
it != unknown_packets.end(); ++it) {
|
|
fprintf(stderr, "Packets for unknown ssrc '%u': %d\n", it->first,
|
|
it->second);
|
|
}
|
|
}
|
|
|
|
int64_t CurrentTimeMs() { return env_.clock().CurrentTime().ms(); }
|
|
|
|
void SleepOrAdvanceTime(int64_t duration_ms) {
|
|
if (time_sim_) {
|
|
time_sim_->AdvanceTime(TimeDelta::Millis(duration_ms));
|
|
} else if (duration_ms > 0) {
|
|
SleepMs(duration_ms);
|
|
}
|
|
}
|
|
|
|
const std::string replay_config_path_;
|
|
const std::string rtp_dump_path_;
|
|
std::unique_ptr<GlobalSimulatedTimeController> time_sim_;
|
|
Environment env_;
|
|
std::unique_ptr<TaskQueueBase, TaskQueueDeleter> worker_thread_;
|
|
std::unique_ptr<Call> call_;
|
|
std::unique_ptr<test::RtpFileReader> rtp_reader_;
|
|
std::unique_ptr<StreamState> stream_state_;
|
|
};
|
|
|
|
void RtpReplay() {
|
|
RtpReplayer replayer(
|
|
absl::GetFlag(FLAGS_config_file), absl::GetFlag(FLAGS_input_file),
|
|
std::make_unique<FieldTrials>(absl::GetFlag(FLAGS_force_fieldtrials)),
|
|
absl::GetFlag(FLAGS_simulated_time));
|
|
replayer.Run();
|
|
}
|
|
|
|
} // namespace
|
|
} // namespace webrtc
|
|
|
|
int main(int argc, char* argv[]) {
|
|
::testing::InitGoogleTest(&argc, argv);
|
|
absl::ParseCommandLine(argc, argv);
|
|
|
|
RTC_CHECK(ValidatePayloadType(absl::GetFlag(FLAGS_media_payload_type)));
|
|
RTC_CHECK(ValidatePayloadType(absl::GetFlag(FLAGS_media_payload_type_rtx)));
|
|
RTC_CHECK(ValidateOptionalPayloadType(absl::GetFlag(FLAGS_red_payload_type)));
|
|
RTC_CHECK(
|
|
ValidateOptionalPayloadType(absl::GetFlag(FLAGS_red_payload_type_rtx)));
|
|
RTC_CHECK(
|
|
ValidateOptionalPayloadType(absl::GetFlag(FLAGS_ulpfec_payload_type)));
|
|
RTC_CHECK(
|
|
ValidateOptionalPayloadType(absl::GetFlag(FLAGS_flexfec_payload_type)));
|
|
RTC_CHECK(ValidateInputFilenameNotEmpty(absl::GetFlag(FLAGS_input_file)));
|
|
RTC_CHECK_GE(absl::GetFlag(FLAGS_extend_run_time_duration), 0);
|
|
|
|
rtc::ThreadManager::Instance()->WrapCurrentThread();
|
|
webrtc::test::RunTest(webrtc::RtpReplay);
|
|
return 0;
|
|
}
|