The CL includes several changes:
- Adding flags describing the streams and spatial layers.
- Reorganizing the order of the flags, to make them easier to maintain.
- Adding a member .params_ to VideoQualityAnalyzer.
(instead of passing it to every member function manually)
- Updating VideoAnalyzer to support simulcast.
(select appropriate ssrc and fix timestamps which are sometimes increased by 1)
- VP9EncoderImpl already had code for automatic calculation of bitrate for each layer.
Changing to first read bitrates and resolution ratios from the flags, if specified.
If not specified, reverting to the old code are setting the values automatically.
- Changing the parameters in LayerFilteringTransport, replacing
xx_discard_thresholds with selected_xx, to make it easier to use for the end user.
Review URL: https://codereview.webrtc.org/1353263005
Cr-Commit-Position: refs/heads/master@{#10215}
258 lines
7.8 KiB
C++
258 lines
7.8 KiB
C++
/*
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* Copyright (c) 2015 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 "gflags/gflags.h"
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#include "testing/gtest/include/gtest/gtest.h"
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#include "webrtc/test/field_trial.h"
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#include "webrtc/test/run_test.h"
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#include "webrtc/video/video_quality_test.h"
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namespace webrtc {
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namespace flags {
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// Flags common with video loopback, with different default values.
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DEFINE_int32(width, 1850, "Video width (crops source).");
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size_t Width() {
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return static_cast<size_t>(FLAGS_width);
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}
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DEFINE_int32(height, 1110, "Video height (crops source).");
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size_t Height() {
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return static_cast<size_t>(FLAGS_height);
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}
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DEFINE_int32(fps, 5, "Frames per second.");
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int Fps() {
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return static_cast<int>(FLAGS_fps);
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}
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DEFINE_int32(min_bitrate, 50, "Call and stream min bitrate in kbps.");
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int MinBitrateKbps() {
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return static_cast<int>(FLAGS_min_bitrate);
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}
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DEFINE_int32(start_bitrate, 200, "Call start bitrate in kbps.");
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int StartBitrateKbps() {
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return static_cast<int>(FLAGS_start_bitrate);
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}
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DEFINE_int32(target_bitrate, 2000, "Stream target bitrate in kbps.");
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int TargetBitrateKbps() {
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return static_cast<int>(FLAGS_target_bitrate);
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}
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DEFINE_int32(max_bitrate, 2000, "Call and stream max bitrate in kbps.");
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int MaxBitrateKbps() {
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return static_cast<int>(FLAGS_max_bitrate);
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}
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DEFINE_int32(num_temporal_layers, 2, "Number of temporal layers to use.");
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int NumTemporalLayers() {
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return static_cast<int>(FLAGS_num_temporal_layers);
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}
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// Flags common with video loopback, with equal default values.
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DEFINE_string(codec, "VP8", "Video codec to use.");
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std::string Codec() {
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return static_cast<std::string>(FLAGS_codec);
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}
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DEFINE_int32(selected_tl,
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-1,
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"Temporal layer to show or analyze. -1 to disable filtering.");
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int SelectedTL() {
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return static_cast<int>(FLAGS_selected_tl);
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}
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DEFINE_int32(
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duration,
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0,
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"Duration of the test in seconds. If 0, rendered will be shown instead.");
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int DurationSecs() {
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return static_cast<int>(FLAGS_duration);
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}
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DEFINE_string(output_filename, "", "Target graph data filename.");
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std::string OutputFilename() {
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return static_cast<std::string>(FLAGS_output_filename);
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}
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DEFINE_string(
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graph_title, "", "If empty, title will be generated automatically.");
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std::string GraphTitle() {
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return static_cast<std::string>(FLAGS_graph_title);
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}
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DEFINE_int32(loss_percent, 0, "Percentage of packets randomly lost.");
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int LossPercent() {
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return static_cast<int>(FLAGS_loss_percent);
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}
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DEFINE_int32(link_capacity,
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0,
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"Capacity (kbps) of the fake link. 0 means infinite.");
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int LinkCapacityKbps() {
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return static_cast<int>(FLAGS_link_capacity);
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}
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DEFINE_int32(queue_size, 0, "Size of the bottleneck link queue in packets.");
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int QueueSize() {
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return static_cast<int>(FLAGS_queue_size);
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}
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DEFINE_int32(avg_propagation_delay_ms,
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0,
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"Average link propagation delay in ms.");
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int AvgPropagationDelayMs() {
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return static_cast<int>(FLAGS_avg_propagation_delay_ms);
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}
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DEFINE_int32(std_propagation_delay_ms,
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0,
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"Link propagation delay standard deviation in ms.");
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int StdPropagationDelayMs() {
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return static_cast<int>(FLAGS_std_propagation_delay_ms);
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}
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DEFINE_int32(selected_stream, 0, "ID of the stream to show or analyze.");
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int SelectedStream() {
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return static_cast<int>(FLAGS_selected_stream);
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}
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DEFINE_int32(num_spatial_layers, 1, "Number of spatial layers to use.");
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int NumSpatialLayers() {
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return static_cast<int>(FLAGS_num_spatial_layers);
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}
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DEFINE_int32(selected_sl,
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-1,
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"Spatial layer to show or analyze. -1 to disable filtering.");
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int SelectedSL() {
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return static_cast<int>(FLAGS_selected_sl);
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}
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DEFINE_string(stream0,
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"",
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"Comma separated values describing VideoStream for stream #0.");
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std::string Stream0() {
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return static_cast<std::string>(FLAGS_stream0);
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}
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DEFINE_string(stream1,
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"",
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"Comma separated values describing VideoStream for stream #1.");
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std::string Stream1() {
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return static_cast<std::string>(FLAGS_stream1);
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}
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DEFINE_string(
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sl0, "", "Comma separated values describing SpatialLayer for layer #0.");
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std::string SL0() {
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return static_cast<std::string>(FLAGS_sl0);
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}
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DEFINE_string(
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sl1, "", "Comma separated values describing SpatialLayer for layer #1.");
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std::string SL1() {
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return static_cast<std::string>(FLAGS_sl1);
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}
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DEFINE_bool(logs, false, "print logs to stderr");
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DEFINE_bool(send_side_bwe, true, "Use send-side bandwidth estimation");
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DEFINE_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/Enable/"
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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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// Screenshare-specific flags.
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DEFINE_int32(min_transmit_bitrate, 400, "Min transmit bitrate incl. padding.");
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int MinTransmitBitrateKbps() {
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return FLAGS_min_transmit_bitrate;
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}
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DEFINE_int32(slide_change_interval,
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10,
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"Interval (in seconds) between simulated slide changes.");
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int SlideChangeInterval() {
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return static_cast<int>(FLAGS_slide_change_interval);
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}
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DEFINE_int32(
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scroll_duration,
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0,
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"Duration (in seconds) during which a slide will be scrolled into place.");
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int ScrollDuration() {
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return static_cast<int>(FLAGS_scroll_duration);
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}
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} // namespace flags
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void Loopback() {
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FakeNetworkPipe::Config pipe_config;
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pipe_config.loss_percent = flags::LossPercent();
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pipe_config.link_capacity_kbps = flags::LinkCapacityKbps();
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pipe_config.queue_length_packets = flags::QueueSize();
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pipe_config.queue_delay_ms = flags::AvgPropagationDelayMs();
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pipe_config.delay_standard_deviation_ms = flags::StdPropagationDelayMs();
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Call::Config::BitrateConfig call_bitrate_config;
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call_bitrate_config.min_bitrate_bps = flags::MinBitrateKbps() * 1000;
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call_bitrate_config.start_bitrate_bps = flags::StartBitrateKbps() * 1000;
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call_bitrate_config.max_bitrate_bps = flags::MaxBitrateKbps() * 1000;
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VideoQualityTest::Params params{
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{flags::Width(), flags::Height(), flags::Fps(),
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flags::MinBitrateKbps() * 1000, flags::TargetBitrateKbps() * 1000,
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flags::MaxBitrateKbps() * 1000, flags::Codec(),
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flags::NumTemporalLayers(), flags::SelectedTL(),
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flags::MinTransmitBitrateKbps() * 1000, call_bitrate_config,
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flags::FLAGS_send_side_bwe},
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{}, // Video specific.
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{true, flags::SlideChangeInterval(), flags::ScrollDuration()},
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{"screenshare", 0.0, 0.0, flags::DurationSecs(), flags::OutputFilename(),
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flags::GraphTitle()},
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pipe_config,
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flags::FLAGS_logs};
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std::vector<std::string> stream_descriptors;
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stream_descriptors.push_back(flags::Stream0());
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stream_descriptors.push_back(flags::Stream1());
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std::vector<std::string> SL_descriptors;
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SL_descriptors.push_back(flags::SL0());
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SL_descriptors.push_back(flags::SL1());
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VideoQualityTest::FillScalabilitySettings(¶ms, stream_descriptors,
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flags::SelectedStream(), flags::NumSpatialLayers(), flags::SelectedSL(),
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SL_descriptors);
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VideoQualityTest test;
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if (flags::DurationSecs())
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test.RunWithAnalyzer(params);
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else
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test.RunWithVideoRenderer(params);
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}
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} // namespace webrtc
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int main(int argc, char* argv[]) {
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::testing::InitGoogleTest(&argc, argv);
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google::ParseCommandLineFlags(&argc, &argv, true);
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webrtc::test::InitFieldTrialsFromString(
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webrtc::flags::FLAGS_force_fieldtrials);
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webrtc::test::RunTest(webrtc::Loopback);
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return 0;
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}
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