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@ -312,8 +312,6 @@ struct VideoOptions {
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video_start_bitrate.SetFrom(change.video_start_bitrate);
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video_temporal_layer_screencast.SetFrom(
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change.video_temporal_layer_screencast);
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video_temporal_layer_realtime.SetFrom(
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change.video_temporal_layer_realtime);
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video_leaky_bucket.SetFrom(change.video_leaky_bucket);
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video_highest_bitrate.SetFrom(change.video_highest_bitrate);
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cpu_overuse_detection.SetFrom(change.cpu_overuse_detection);
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@ -336,7 +334,6 @@ struct VideoOptions {
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suspend_below_min_bitrate.SetFrom(change.suspend_below_min_bitrate);
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unsignalled_recv_stream_limit.SetFrom(change.unsignalled_recv_stream_limit);
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use_simulcast_adapter.SetFrom(change.use_simulcast_adapter);
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skip_encoding_unused_streams.SetFrom(change.skip_encoding_unused_streams);
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screencast_min_bitrate.SetFrom(change.screencast_min_bitrate);
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use_improved_wifi_bandwidth_estimator.SetFrom(
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change.use_improved_wifi_bandwidth_estimator);
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@ -354,7 +351,6 @@ struct VideoOptions {
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video_high_bitrate == o.video_high_bitrate &&
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video_start_bitrate == o.video_start_bitrate &&
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video_temporal_layer_screencast == o.video_temporal_layer_screencast &&
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video_temporal_layer_realtime == o.video_temporal_layer_realtime &&
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video_leaky_bucket == o.video_leaky_bucket &&
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video_highest_bitrate == o.video_highest_bitrate &&
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cpu_overuse_detection == o.cpu_overuse_detection &&
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@ -377,7 +373,6 @@ struct VideoOptions {
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suspend_below_min_bitrate == o.suspend_below_min_bitrate &&
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unsignalled_recv_stream_limit == o.unsignalled_recv_stream_limit &&
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use_simulcast_adapter == o.use_simulcast_adapter &&
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skip_encoding_unused_streams == o.skip_encoding_unused_streams &&
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screencast_min_bitrate == o.screencast_min_bitrate &&
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use_improved_wifi_bandwidth_estimator ==
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o.use_improved_wifi_bandwidth_estimator &&
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@ -398,8 +393,6 @@ struct VideoOptions {
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ost << ToStringIfSet("start bitrate", video_start_bitrate);
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ost << ToStringIfSet("video temporal layer screencast",
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video_temporal_layer_screencast);
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ost << ToStringIfSet("video temporal layer realtime",
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video_temporal_layer_realtime);
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ost << ToStringIfSet("leaky bucket", video_leaky_bucket);
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ost << ToStringIfSet("highest video bitrate", video_highest_bitrate);
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ost << ToStringIfSet("cpu overuse detection", cpu_overuse_detection);
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@ -423,8 +416,6 @@ struct VideoOptions {
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ost << ToStringIfSet("num channels for early receive",
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unsignalled_recv_stream_limit);
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ost << ToStringIfSet("use simulcast adapter", use_simulcast_adapter);
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ost << ToStringIfSet("skip encoding unused streams",
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skip_encoding_unused_streams);
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ost << ToStringIfSet("screencast min bitrate", screencast_min_bitrate);
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ost << ToStringIfSet("improved wifi bwe",
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use_improved_wifi_bandwidth_estimator);
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@ -453,8 +444,6 @@ struct VideoOptions {
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Settable<int> video_start_bitrate;
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// Experimental: Enable WebRTC layered screencast.
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Settable<bool> video_temporal_layer_screencast;
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// Experimental: Enable WebRTC temporal layer strategy for realtime video.
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Settable<bool> video_temporal_layer_realtime;
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// Enable WebRTC leaky bucket when sending media packets.
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Settable<bool> video_leaky_bucket;
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// Set highest bitrate mode for video.
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@ -502,9 +491,6 @@ struct VideoOptions {
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Settable<int> unsignalled_recv_stream_limit;
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// Enable use of simulcast adapter.
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Settable<bool> use_simulcast_adapter;
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// Enables the encoder to skip encoding stream not actually sent due to too
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// low available bit rate.
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Settable<bool> skip_encoding_unused_streams;
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// Force screencast to use a minimum bitrate
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Settable<int> screencast_min_bitrate;
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// Enable improved bandwidth estiamtor on wifi.
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