| Index: webrtc/modules/video_coding/video_codec_initializer.cc
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| diff --git a/webrtc/modules/video_coding/video_codec_initializer.cc b/webrtc/modules/video_coding/video_codec_initializer.cc
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| new file mode 100644
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| index 0000000000000000000000000000000000000000..5d32fd2151e98355b557c25b52ac0a6c6964d920
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| --- /dev/null
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| +++ b/webrtc/modules/video_coding/video_codec_initializer.cc
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| @@ -0,0 +1,212 @@
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| +/*
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| + *  Copyright (c) 2016 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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| +
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| +#include "webrtc/modules/video_coding/include/video_codec_initializer.h"
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| +
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| +#include "webrtc/base/basictypes.h"
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| +#include "webrtc/common_video/include/video_bitrate_allocator.h"
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| +#include "webrtc/common_types.h"
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| +#include "webrtc/modules/video_coding/codecs/vp8/screenshare_layers.h"
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| +#include "webrtc/modules/video_coding/codecs/vp8/temporal_layers.h"
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| +#include "webrtc/modules/video_coding/utility/simulcast_rate_allocator.h"
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| +#include "webrtc/modules/video_coding/utility/default_video_bitrate_allocator.h"
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| +#include "webrtc/system_wrappers/include/clock.h"
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| +
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| +namespace webrtc {
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| +
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| +bool VideoCodecInitializer::SetupCodec(
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| +    const VideoEncoderConfig& config,
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| +    const VideoSendStream::Config::EncoderSettings settings,
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| +    const std::vector<VideoStream>& streams,
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| +    VideoCodec* codec,
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| +    std::unique_ptr<VideoBitrateAllocator>* bitrate_allocator) {
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| +  *codec = VideoEncoderConfigToVideoCodec(
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| +      config, streams, settings.payload_name, settings.payload_type);
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| +
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| +  std::unique_ptr<TemporalLayersFactory> tl_factory;
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| +  switch (codec->codecType) {
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| +    case kVideoCodecVP8: {
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| +      if (!codec->VP8()->tl_factory) {
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| +        if (codec->mode == kScreensharing &&
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| +            codec->numberOfSimulcastStreams == 1 &&
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| +            codec->VP8()->numberOfTemporalLayers == 2) {
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| +          // Conference mode temporal layering for screen content.
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| +          tl_factory.reset(new ScreenshareTemporalLayersFactory());
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| +        } else {
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| +          // Standard video temporal layers.
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| +          tl_factory.reset(new TemporalLayersFactory());
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| +        }
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| +        codec->VP8()->tl_factory = tl_factory.get();
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| +      }
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| +      break;
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| +    }
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| +    default: {
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| +      // TODO(sprang): Warn, once we have specific allocators for all supported
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| +      //               codec types.
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| +      break;
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| +    }
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| +  }
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| +  *bitrate_allocator = CreateBitrateAllocator(*codec, std::move(tl_factory));
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| +
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| +  return true;
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| +}
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| +
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| +std::unique_ptr<VideoBitrateAllocator>
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| +VideoCodecInitializer::CreateBitrateAllocator(
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| +    const VideoCodec& codec,
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| +    std::unique_ptr<TemporalLayersFactory> tl_factory) {
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| +  std::unique_ptr<VideoBitrateAllocator> rate_allocator;
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| +
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| +  switch (codec.codecType) {
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| +    case kVideoCodecVP8: {
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| +      // Set up default VP8 temporal layer factory, if not provided.
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| +      rate_allocator.reset(
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| +          new SimulcastRateAllocator(codec, std::move(tl_factory)));
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| +    } break;
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| +    default:
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| +      rate_allocator.reset(new DefaultVideoBitrateAllocator(codec));
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| +  }
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| +
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| +  return rate_allocator;
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| +}
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| +
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| +// TODO(sprang): Split this up and separate the codec specific parts.
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| +VideoCodec VideoCodecInitializer::VideoEncoderConfigToVideoCodec(
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| +    const VideoEncoderConfig& config,
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| +    const std::vector<VideoStream>& streams,
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| +    const std::string& payload_name,
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| +    int payload_type) {
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| +  static const int kEncoderMinBitrateKbps = 30;
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| +  RTC_DCHECK(!streams.empty());
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| +  RTC_DCHECK_GE(config.min_transmit_bitrate_bps, 0);
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| +
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| +  VideoCodec video_codec;
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| +  memset(&video_codec, 0, sizeof(video_codec));
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| +  video_codec.codecType = PayloadNameToCodecType(payload_name)
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| +                              .value_or(VideoCodecType::kVideoCodecGeneric);
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| +
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| +  switch (config.content_type) {
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| +    case VideoEncoderConfig::ContentType::kRealtimeVideo:
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| +      video_codec.mode = kRealtimeVideo;
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| +      break;
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| +    case VideoEncoderConfig::ContentType::kScreen:
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| +      video_codec.mode = kScreensharing;
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| +      if (streams.size() == 1 &&
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| +          streams[0].temporal_layer_thresholds_bps.size() == 1) {
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| +        video_codec.targetBitrate =
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| +            streams[0].temporal_layer_thresholds_bps[0] / 1000;
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| +      }
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| +      break;
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| +  }
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| +
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| +  if (config.encoder_specific_settings)
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| +    config.encoder_specific_settings->FillEncoderSpecificSettings(&video_codec);
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| +
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| +  switch (video_codec.codecType) {
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| +    case kVideoCodecVP8: {
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| +      if (!config.encoder_specific_settings)
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| +        *video_codec.VP8() = VideoEncoder::GetDefaultVp8Settings();
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| +      video_codec.VP8()->numberOfTemporalLayers = static_cast<unsigned char>(
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| +          streams.back().temporal_layer_thresholds_bps.size() + 1);
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| +      break;
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| +    }
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| +    case kVideoCodecVP9: {
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| +      if (!config.encoder_specific_settings)
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| +        *video_codec.VP9() = VideoEncoder::GetDefaultVp9Settings();
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| +      if (video_codec.mode == kScreensharing &&
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| +          config.encoder_specific_settings) {
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| +        video_codec.VP9()->flexibleMode = true;
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| +        // For now VP9 screensharing use 1 temporal and 2 spatial layers.
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| +        RTC_DCHECK_EQ(1, video_codec.VP9()->numberOfTemporalLayers);
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| +        RTC_DCHECK_EQ(2, video_codec.VP9()->numberOfSpatialLayers);
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| +      }
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| +      video_codec.VP9()->numberOfTemporalLayers = static_cast<unsigned char>(
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| +          streams.back().temporal_layer_thresholds_bps.size() + 1);
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| +      break;
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| +    }
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| +    case kVideoCodecH264: {
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| +      if (!config.encoder_specific_settings)
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| +        *video_codec.H264() = VideoEncoder::GetDefaultH264Settings();
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| +      break;
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| +    }
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| +    default:
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| +      // TODO(pbos): Support encoder_settings codec-agnostically.
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| +      RTC_DCHECK(!config.encoder_specific_settings)
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| +          << "Encoder-specific settings for codec type not wired up.";
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| +      break;
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| +  }
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| +
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| +  strncpy(video_codec.plName, payload_name.c_str(), kPayloadNameSize - 1);
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| +  video_codec.plName[kPayloadNameSize - 1] = '\0';
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| +  video_codec.plType = payload_type;
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| +  video_codec.numberOfSimulcastStreams =
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| +      static_cast<unsigned char>(streams.size());
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| +  video_codec.minBitrate = streams[0].min_bitrate_bps / 1000;
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| +  if (video_codec.minBitrate < kEncoderMinBitrateKbps)
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| +    video_codec.minBitrate = kEncoderMinBitrateKbps;
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| +  RTC_DCHECK_LE(streams.size(), static_cast<size_t>(kMaxSimulcastStreams));
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| +  if (video_codec.codecType == kVideoCodecVP9) {
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| +    // If the vector is empty, bitrates will be configured automatically.
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| +    RTC_DCHECK(config.spatial_layers.empty() ||
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| +               config.spatial_layers.size() ==
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| +                   video_codec.VP9()->numberOfSpatialLayers);
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| +    RTC_DCHECK_LE(video_codec.VP9()->numberOfSpatialLayers,
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| +                  kMaxSimulcastStreams);
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| +    for (size_t i = 0; i < config.spatial_layers.size(); ++i)
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| +      video_codec.spatialLayers[i] = config.spatial_layers[i];
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| +  }
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| +  for (size_t i = 0; i < streams.size(); ++i) {
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| +    SimulcastStream* sim_stream = &video_codec.simulcastStream[i];
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| +    RTC_DCHECK_GT(streams[i].width, 0u);
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| +    RTC_DCHECK_GT(streams[i].height, 0u);
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| +    RTC_DCHECK_GT(streams[i].max_framerate, 0);
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| +    // Different framerates not supported per stream at the moment.
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| +    RTC_DCHECK_EQ(streams[i].max_framerate, streams[0].max_framerate);
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| +    RTC_DCHECK_GE(streams[i].min_bitrate_bps, 0);
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| +    RTC_DCHECK_GE(streams[i].target_bitrate_bps, streams[i].min_bitrate_bps);
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| +    RTC_DCHECK_GE(streams[i].max_bitrate_bps, streams[i].target_bitrate_bps);
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| +    RTC_DCHECK_GE(streams[i].max_qp, 0);
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| +
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| +    sim_stream->width = static_cast<uint16_t>(streams[i].width);
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| +    sim_stream->height = static_cast<uint16_t>(streams[i].height);
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| +    sim_stream->minBitrate = streams[i].min_bitrate_bps / 1000;
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| +    sim_stream->targetBitrate = streams[i].target_bitrate_bps / 1000;
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| +    sim_stream->maxBitrate = streams[i].max_bitrate_bps / 1000;
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| +    sim_stream->qpMax = streams[i].max_qp;
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| +    sim_stream->numberOfTemporalLayers = static_cast<unsigned char>(
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| +        streams[i].temporal_layer_thresholds_bps.size() + 1);
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| +
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| +    video_codec.width =
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| +        std::max(video_codec.width, static_cast<uint16_t>(streams[i].width));
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| +    video_codec.height =
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| +        std::max(video_codec.height, static_cast<uint16_t>(streams[i].height));
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| +    video_codec.minBitrate =
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| +        std::min(static_cast<uint16_t>(video_codec.minBitrate),
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| +                 static_cast<uint16_t>(streams[i].min_bitrate_bps / 1000));
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| +    video_codec.maxBitrate += streams[i].max_bitrate_bps / 1000;
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| +    video_codec.qpMax = std::max(video_codec.qpMax,
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| +                                 static_cast<unsigned int>(streams[i].max_qp));
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| +  }
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| +
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| +  if (video_codec.maxBitrate == 0) {
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| +    // Unset max bitrate -> cap to one bit per pixel.
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| +    video_codec.maxBitrate =
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| +        (video_codec.width * video_codec.height * video_codec.maxFramerate) /
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| +        1000;
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| +  }
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| +  if (video_codec.maxBitrate < kEncoderMinBitrateKbps)
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| +    video_codec.maxBitrate = kEncoderMinBitrateKbps;
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| +
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| +  RTC_DCHECK_GT(streams[0].max_framerate, 0);
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| +  video_codec.maxFramerate = streams[0].max_framerate;
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| +  return video_codec;
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| +}
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| +
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| +}  // namespace webrtc
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| 
 |