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This is in the webrtc-stats spec at https://www.w3.org/TR/webrtc-stats/#dom-rtcoutboundrtpstreamstats-scalabilitymode. This adds the scalability mode to CodecSpecificInfo which is used to plumb the modes for each simulcast layer. TBR=orphis@webrtc.org Tested: Compiled into Chrome and confirmed the scalability mode set for AV1, VP9, VP8 and H264 software encoders in chrome://webrtc-internals. Bug: webrtc:14730 Change-Id: I71ceba8f6485a4f4a73e0856031b8d5f16f913f2 Reviewed-on: https://webrtc-review.googlesource.com/c/src/+/285085 Reviewed-by: Harald Alvestrand <hta@webrtc.org> Reviewed-by: Åsa Persson <asapersson@webrtc.org> Commit-Queue: Evan Shrubsole <eshr@webrtc.org> Cr-Commit-Position: refs/heads/main@{#38847}
247 lines
9.4 KiB
C++
247 lines
9.4 KiB
C++
/*
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* Copyright (c) 2020 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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#ifndef MODULES_VIDEO_CODING_CODECS_VP9_LIBVPX_VP9_ENCODER_H_
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#define MODULES_VIDEO_CODING_CODECS_VP9_LIBVPX_VP9_ENCODER_H_
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#ifdef RTC_ENABLE_VP9
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#include <array>
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#include <memory>
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#include <vector>
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#include "api/fec_controller_override.h"
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#include "api/field_trials_view.h"
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#include "api/video_codecs/scalability_mode.h"
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#include "api/video_codecs/video_encoder.h"
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#include "api/video_codecs/vp9_profile.h"
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#include "common_video/include/video_frame_buffer_pool.h"
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#include "modules/video_coding/codecs/interface/libvpx_interface.h"
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#include "modules/video_coding/codecs/vp9/include/vp9.h"
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#include "modules/video_coding/codecs/vp9/vp9_frame_buffer_pool.h"
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#include "modules/video_coding/svc/scalable_video_controller.h"
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#include "modules/video_coding/utility/framerate_controller_deprecated.h"
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#include "rtc_base/containers/flat_map.h"
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#include "rtc_base/experiments/encoder_info_settings.h"
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#include "vpx/vp8cx.h"
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namespace webrtc {
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class LibvpxVp9Encoder : public VP9Encoder {
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public:
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LibvpxVp9Encoder(const cricket::VideoCodec& codec,
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std::unique_ptr<LibvpxInterface> interface,
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const FieldTrialsView& trials);
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~LibvpxVp9Encoder() override;
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void SetFecControllerOverride(
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FecControllerOverride* fec_controller_override) override;
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int Release() override;
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int InitEncode(const VideoCodec* codec_settings,
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const Settings& settings) override;
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int Encode(const VideoFrame& input_image,
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const std::vector<VideoFrameType>* frame_types) override;
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int RegisterEncodeCompleteCallback(EncodedImageCallback* callback) override;
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void SetRates(const RateControlParameters& parameters) override;
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EncoderInfo GetEncoderInfo() const override;
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private:
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// Determine number of encoder threads to use.
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int NumberOfThreads(int width, int height, int number_of_cores);
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// Call encoder initialize function and set control settings.
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int InitAndSetControlSettings(const VideoCodec* inst);
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bool PopulateCodecSpecific(CodecSpecificInfo* codec_specific,
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absl::optional<int>* spatial_idx,
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absl::optional<int>* temporal_idx,
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const vpx_codec_cx_pkt& pkt);
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void FillReferenceIndices(const vpx_codec_cx_pkt& pkt,
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size_t pic_num,
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bool inter_layer_predicted,
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CodecSpecificInfoVP9* vp9_info);
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void UpdateReferenceBuffers(const vpx_codec_cx_pkt& pkt, size_t pic_num);
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vpx_svc_ref_frame_config_t SetReferences(bool is_key_pic,
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int first_active_spatial_layer_id);
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bool ExplicitlyConfiguredSpatialLayers() const;
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bool SetSvcRates(const VideoBitrateAllocation& bitrate_allocation);
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// Configures which spatial layers libvpx should encode according to
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// configuration provided by svc_controller_.
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void EnableSpatialLayer(int sid);
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void DisableSpatialLayer(int sid);
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void SetActiveSpatialLayers();
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void GetEncodedLayerFrame(const vpx_codec_cx_pkt* pkt);
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// Callback function for outputting packets per spatial layer.
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static void EncoderOutputCodedPacketCallback(vpx_codec_cx_pkt* pkt,
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void* user_data);
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void DeliverBufferedFrame(bool end_of_picture);
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bool DropFrame(uint8_t spatial_idx, uint32_t rtp_timestamp);
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// Determine maximum target for Intra frames
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//
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// Input:
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// - optimal_buffer_size : Optimal buffer size
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// Return Value : Max target size for Intra frames represented as
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// percentage of the per frame bandwidth
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uint32_t MaxIntraTarget(uint32_t optimal_buffer_size);
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size_t SteadyStateSize(int sid, int tid);
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void MaybeRewrapRawWithFormat(vpx_img_fmt fmt);
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// Prepares `raw_` to reference image data of `buffer`, or of mapped or scaled
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// versions of `buffer`. Returns the buffer that got referenced as a result,
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// allowing the caller to keep a reference to it until after encoding has
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// finished. On failure to convert the buffer, null is returned.
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rtc::scoped_refptr<VideoFrameBuffer> PrepareBufferForProfile0(
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rtc::scoped_refptr<VideoFrameBuffer> buffer);
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const std::unique_ptr<LibvpxInterface> libvpx_;
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EncodedImage encoded_image_;
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CodecSpecificInfo codec_specific_;
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EncodedImageCallback* encoded_complete_callback_;
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VideoCodec codec_;
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const VP9Profile profile_;
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bool inited_;
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int64_t timestamp_;
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uint32_t rc_max_intra_target_;
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vpx_codec_ctx_t* encoder_;
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vpx_codec_enc_cfg_t* config_;
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vpx_image_t* raw_;
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vpx_svc_extra_cfg_t svc_params_;
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const VideoFrame* input_image_;
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GofInfoVP9 gof_; // Contains each frame's temporal information for
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// non-flexible mode.
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bool force_key_frame_;
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size_t pics_since_key_;
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uint8_t num_temporal_layers_;
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uint8_t num_spatial_layers_; // Number of configured SLs
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uint8_t num_active_spatial_layers_; // Number of actively encoded SLs
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uint8_t first_active_layer_;
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bool layer_deactivation_requires_key_frame_;
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bool is_svc_;
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InterLayerPredMode inter_layer_pred_;
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bool external_ref_control_;
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const bool trusted_rate_controller_;
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bool layer_buffering_;
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const bool full_superframe_drop_;
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vpx_svc_frame_drop_t svc_drop_frame_;
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bool first_frame_in_picture_;
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VideoBitrateAllocation current_bitrate_allocation_;
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bool ss_info_needed_;
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bool force_all_active_layers_;
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std::unique_ptr<ScalableVideoController> svc_controller_;
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absl::optional<ScalabilityMode> scalability_mode_;
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std::vector<FramerateControllerDeprecated> framerate_controller_;
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// Used for flexible mode.
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bool is_flexible_mode_;
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struct RefFrameBuffer {
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bool operator==(const RefFrameBuffer& o) {
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return pic_num == o.pic_num && spatial_layer_id == o.spatial_layer_id &&
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temporal_layer_id == o.temporal_layer_id;
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}
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size_t pic_num = 0;
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int spatial_layer_id = 0;
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int temporal_layer_id = 0;
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};
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std::array<RefFrameBuffer, kNumVp9Buffers> ref_buf_;
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std::vector<ScalableVideoController::LayerFrameConfig> layer_frames_;
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// Variable frame-rate related fields and methods.
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const struct VariableFramerateExperiment {
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bool enabled;
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// Framerate is limited to this value in steady state.
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float framerate_limit;
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// This qp or below is considered a steady state.
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int steady_state_qp;
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// Frames of at least this percentage below ideal for configured bitrate are
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// considered in a steady state.
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int steady_state_undershoot_percentage;
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// Number of consecutive frames with good QP and size required to detect
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// the steady state.
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int frames_before_steady_state;
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} variable_framerate_experiment_;
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static VariableFramerateExperiment ParseVariableFramerateConfig(
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const FieldTrialsView& trials);
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FramerateControllerDeprecated variable_framerate_controller_;
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const struct QualityScalerExperiment {
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int low_qp;
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int high_qp;
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bool enabled;
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} quality_scaler_experiment_;
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static QualityScalerExperiment ParseQualityScalerConfig(
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const FieldTrialsView& trials);
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const bool external_ref_ctrl_;
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// Flags that can affect speed vs quality tradeoff, and are configureable per
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// resolution ranges.
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struct PerformanceFlags {
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// If false, a lookup will be made in `settings_by_resolution` base on the
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// highest currently active resolution, and the overall speed then set to
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// to the `base_layer_speed` matching that entry.
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// If true, each active resolution will have it's speed and deblock_mode set
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// based on it resolution, and the high layer speed configured for non
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// base temporal layer frames.
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bool use_per_layer_speed = false;
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struct ParameterSet {
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int base_layer_speed = -1; // Speed setting for TL0.
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int high_layer_speed = -1; // Speed setting for TL1-TL3.
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// 0 = deblock all temporal layers (TL)
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// 1 = disable deblock for top-most TL
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// 2 = disable deblock for all TLs
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int deblock_mode = 0;
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bool allow_denoising = true;
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};
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// Map from min pixel count to settings for that resolution and above.
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// E.g. if you want some settings A if below wvga (640x360) and some other
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// setting B at wvga and above, you'd use map {{0, A}, {230400, B}}.
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flat_map<int, ParameterSet> settings_by_resolution;
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};
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// Performance flags, ordered by `min_pixel_count`.
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const PerformanceFlags performance_flags_;
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// Caching of of `speed_configs_`, where index i maps to the resolution as
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// specified in `codec_.spatialLayer[i]`.
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std::vector<PerformanceFlags::ParameterSet>
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performance_flags_by_spatial_index_;
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void UpdatePerformanceFlags();
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static PerformanceFlags ParsePerformanceFlagsFromTrials(
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const FieldTrialsView& trials);
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static PerformanceFlags GetDefaultPerformanceFlags();
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int num_steady_state_frames_;
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// Only set config when this flag is set.
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bool config_changed_;
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const LibvpxVp9EncoderInfoSettings encoder_info_override_;
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};
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} // namespace webrtc
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#endif // RTC_ENABLE_VP9
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#endif // MODULES_VIDEO_CODING_CODECS_VP9_LIBVPX_VP9_ENCODER_H_
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