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Bug: webrtc:13960 Change-Id: Ib5c8309271d83a0fcfdecf7a93fdd61483c7d3e2 Reviewed-on: https://webrtc-review.googlesource.com/c/src/+/273105 Commit-Queue: Åsa Persson <asapersson@webrtc.org> Reviewed-by: Danil Chapovalov <danilchap@webrtc.org> Reviewed-by: Florent Castelli <orphis@webrtc.org> Cr-Commit-Position: refs/heads/main@{#37927}
444 lines
18 KiB
C++
444 lines
18 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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#include "modules/video_coding/svc/scalability_structure_full_svc.h"
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#include <utility>
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#include <vector>
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#include "absl/strings/string_view.h"
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#include "absl/types/optional.h"
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#include "api/transport/rtp/dependency_descriptor.h"
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#include "rtc_base/checks.h"
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#include "rtc_base/logging.h"
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namespace webrtc {
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constexpr int ScalabilityStructureFullSvc::kMaxNumSpatialLayers;
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constexpr int ScalabilityStructureFullSvc::kMaxNumTemporalLayers;
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constexpr absl::string_view ScalabilityStructureFullSvc::kFramePatternNames[];
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ScalabilityStructureFullSvc::ScalabilityStructureFullSvc(
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int num_spatial_layers,
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int num_temporal_layers,
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ScalingFactor resolution_factor)
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: num_spatial_layers_(num_spatial_layers),
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num_temporal_layers_(num_temporal_layers),
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resolution_factor_(resolution_factor),
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active_decode_targets_(
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(uint32_t{1} << (num_spatial_layers * num_temporal_layers)) - 1) {
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RTC_DCHECK_LE(num_spatial_layers, kMaxNumSpatialLayers);
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RTC_DCHECK_LE(num_temporal_layers, kMaxNumTemporalLayers);
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}
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ScalabilityStructureFullSvc::~ScalabilityStructureFullSvc() = default;
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ScalabilityStructureFullSvc::StreamLayersConfig
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ScalabilityStructureFullSvc::StreamConfig() const {
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StreamLayersConfig result;
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result.num_spatial_layers = num_spatial_layers_;
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result.num_temporal_layers = num_temporal_layers_;
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result.scaling_factor_num[num_spatial_layers_ - 1] = 1;
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result.scaling_factor_den[num_spatial_layers_ - 1] = 1;
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for (int sid = num_spatial_layers_ - 1; sid > 0; --sid) {
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result.scaling_factor_num[sid - 1] =
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resolution_factor_.num * result.scaling_factor_num[sid];
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result.scaling_factor_den[sid - 1] =
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resolution_factor_.den * result.scaling_factor_den[sid];
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}
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result.uses_reference_scaling = num_spatial_layers_ > 1;
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return result;
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}
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bool ScalabilityStructureFullSvc::TemporalLayerIsActive(int tid) const {
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if (tid >= num_temporal_layers_) {
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return false;
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}
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for (int sid = 0; sid < num_spatial_layers_; ++sid) {
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if (DecodeTargetIsActive(sid, tid)) {
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return true;
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}
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}
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return false;
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}
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DecodeTargetIndication ScalabilityStructureFullSvc::Dti(
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int sid,
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int tid,
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const LayerFrameConfig& config) {
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if (sid < config.SpatialId() || tid < config.TemporalId()) {
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return DecodeTargetIndication::kNotPresent;
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}
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if (sid == config.SpatialId()) {
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if (tid == 0) {
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RTC_DCHECK_EQ(config.TemporalId(), 0);
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return DecodeTargetIndication::kSwitch;
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}
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if (tid == config.TemporalId()) {
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return DecodeTargetIndication::kDiscardable;
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}
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if (tid > config.TemporalId()) {
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RTC_DCHECK_GT(tid, config.TemporalId());
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return DecodeTargetIndication::kSwitch;
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}
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}
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RTC_DCHECK_GT(sid, config.SpatialId());
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RTC_DCHECK_GE(tid, config.TemporalId());
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if (config.IsKeyframe() || config.Id() == kKey) {
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return DecodeTargetIndication::kSwitch;
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}
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return DecodeTargetIndication::kRequired;
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}
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ScalabilityStructureFullSvc::FramePattern
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ScalabilityStructureFullSvc::NextPattern() const {
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switch (last_pattern_) {
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case kNone:
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return kKey;
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case kDeltaT2B:
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return kDeltaT0;
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case kDeltaT2A:
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if (TemporalLayerIsActive(1)) {
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return kDeltaT1;
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}
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return kDeltaT0;
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case kDeltaT1:
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if (TemporalLayerIsActive(2)) {
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return kDeltaT2B;
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}
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return kDeltaT0;
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case kKey:
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case kDeltaT0:
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if (TemporalLayerIsActive(2)) {
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return kDeltaT2A;
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}
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if (TemporalLayerIsActive(1)) {
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return kDeltaT1;
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}
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return kDeltaT0;
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}
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RTC_DCHECK_NOTREACHED();
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return kNone;
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}
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std::vector<ScalableVideoController::LayerFrameConfig>
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ScalabilityStructureFullSvc::NextFrameConfig(bool restart) {
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std::vector<LayerFrameConfig> configs;
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if (active_decode_targets_.none()) {
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last_pattern_ = kNone;
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return configs;
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}
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configs.reserve(num_spatial_layers_);
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if (last_pattern_ == kNone || restart) {
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can_reference_t0_frame_for_spatial_id_.reset();
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last_pattern_ = kNone;
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}
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FramePattern current_pattern = NextPattern();
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absl::optional<int> spatial_dependency_buffer_id;
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switch (current_pattern) {
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case kDeltaT0:
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case kKey:
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// Disallow temporal references cross T0 on higher temporal layers.
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can_reference_t1_frame_for_spatial_id_.reset();
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for (int sid = 0; sid < num_spatial_layers_; ++sid) {
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if (!DecodeTargetIsActive(sid, /*tid=*/0)) {
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// Next frame from the spatial layer `sid` shouldn't depend on
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// potentially old previous frame from the spatial layer `sid`.
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can_reference_t0_frame_for_spatial_id_.reset(sid);
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continue;
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}
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configs.emplace_back();
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ScalableVideoController::LayerFrameConfig& config = configs.back();
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config.Id(current_pattern).S(sid).T(0);
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if (spatial_dependency_buffer_id) {
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config.Reference(*spatial_dependency_buffer_id);
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} else if (current_pattern == kKey) {
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config.Keyframe();
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}
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if (can_reference_t0_frame_for_spatial_id_[sid]) {
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config.ReferenceAndUpdate(BufferIndex(sid, /*tid=*/0));
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} else {
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// TODO(bugs.webrtc.org/11999): Propagate chain restart on delta frame
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// to ChainDiffCalculator
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config.Update(BufferIndex(sid, /*tid=*/0));
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}
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spatial_dependency_buffer_id = BufferIndex(sid, /*tid=*/0);
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}
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break;
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case kDeltaT1:
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for (int sid = 0; sid < num_spatial_layers_; ++sid) {
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if (!DecodeTargetIsActive(sid, /*tid=*/1) ||
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!can_reference_t0_frame_for_spatial_id_[sid]) {
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continue;
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}
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configs.emplace_back();
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ScalableVideoController::LayerFrameConfig& config = configs.back();
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config.Id(current_pattern).S(sid).T(1);
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// Temporal reference.
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config.Reference(BufferIndex(sid, /*tid=*/0));
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// Spatial reference unless this is the lowest active spatial layer.
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if (spatial_dependency_buffer_id) {
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config.Reference(*spatial_dependency_buffer_id);
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}
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// No frame reference top layer frame, so no need save it into a buffer.
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if (num_temporal_layers_ > 2 || sid < num_spatial_layers_ - 1) {
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config.Update(BufferIndex(sid, /*tid=*/1));
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}
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spatial_dependency_buffer_id = BufferIndex(sid, /*tid=*/1);
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}
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break;
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case kDeltaT2A:
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case kDeltaT2B:
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for (int sid = 0; sid < num_spatial_layers_; ++sid) {
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if (!DecodeTargetIsActive(sid, /*tid=*/2) ||
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!can_reference_t0_frame_for_spatial_id_[sid]) {
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continue;
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}
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configs.emplace_back();
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ScalableVideoController::LayerFrameConfig& config = configs.back();
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config.Id(current_pattern).S(sid).T(2);
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// Temporal reference.
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if (current_pattern == kDeltaT2B &&
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can_reference_t1_frame_for_spatial_id_[sid]) {
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config.Reference(BufferIndex(sid, /*tid=*/1));
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} else {
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config.Reference(BufferIndex(sid, /*tid=*/0));
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}
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// Spatial reference unless this is the lowest active spatial layer.
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if (spatial_dependency_buffer_id) {
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config.Reference(*spatial_dependency_buffer_id);
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}
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// No frame reference top layer frame, so no need save it into a buffer.
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if (sid < num_spatial_layers_ - 1) {
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config.Update(BufferIndex(sid, /*tid=*/2));
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}
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spatial_dependency_buffer_id = BufferIndex(sid, /*tid=*/2);
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}
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break;
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case kNone:
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RTC_DCHECK_NOTREACHED();
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break;
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}
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if (configs.empty() && !restart) {
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RTC_LOG(LS_WARNING) << "Failed to generate configuration for L"
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<< num_spatial_layers_ << "T" << num_temporal_layers_
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<< " with active decode targets "
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<< active_decode_targets_.to_string('-').substr(
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active_decode_targets_.size() -
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num_spatial_layers_ * num_temporal_layers_)
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<< " and transition from "
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<< kFramePatternNames[last_pattern_] << " to "
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<< kFramePatternNames[current_pattern]
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<< ". Resetting.";
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return NextFrameConfig(/*restart=*/true);
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}
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return configs;
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}
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GenericFrameInfo ScalabilityStructureFullSvc::OnEncodeDone(
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const LayerFrameConfig& config) {
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// When encoder drops all frames for a temporal unit, it is better to reuse
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// old temporal pattern rather than switch to next one, thus switch to next
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// pattern defered here from the `NextFrameConfig`.
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// In particular creating VP9 references rely on this behavior.
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last_pattern_ = static_cast<FramePattern>(config.Id());
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if (config.TemporalId() == 0) {
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can_reference_t0_frame_for_spatial_id_.set(config.SpatialId());
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}
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if (config.TemporalId() == 1) {
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can_reference_t1_frame_for_spatial_id_.set(config.SpatialId());
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}
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GenericFrameInfo frame_info;
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frame_info.spatial_id = config.SpatialId();
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frame_info.temporal_id = config.TemporalId();
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frame_info.encoder_buffers = config.Buffers();
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frame_info.decode_target_indications.reserve(num_spatial_layers_ *
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num_temporal_layers_);
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for (int sid = 0; sid < num_spatial_layers_; ++sid) {
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for (int tid = 0; tid < num_temporal_layers_; ++tid) {
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frame_info.decode_target_indications.push_back(Dti(sid, tid, config));
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}
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}
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if (config.TemporalId() == 0) {
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frame_info.part_of_chain.resize(num_spatial_layers_);
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for (int sid = 0; sid < num_spatial_layers_; ++sid) {
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frame_info.part_of_chain[sid] = config.SpatialId() <= sid;
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}
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} else {
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frame_info.part_of_chain.assign(num_spatial_layers_, false);
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}
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frame_info.active_decode_targets = active_decode_targets_;
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return frame_info;
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}
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void ScalabilityStructureFullSvc::OnRatesUpdated(
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const VideoBitrateAllocation& bitrates) {
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for (int sid = 0; sid < num_spatial_layers_; ++sid) {
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// Enable/disable spatial layers independetely.
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bool active = true;
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for (int tid = 0; tid < num_temporal_layers_; ++tid) {
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// To enable temporal layer, require bitrates for lower temporal layers.
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active = active && bitrates.GetBitrate(sid, tid) > 0;
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SetDecodeTargetIsActive(sid, tid, active);
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}
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}
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}
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FrameDependencyStructure ScalabilityStructureL1T2::DependencyStructure() const {
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FrameDependencyStructure structure;
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structure.num_decode_targets = 2;
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structure.num_chains = 1;
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structure.decode_target_protected_by_chain = {0, 0};
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structure.templates.resize(3);
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structure.templates[0].T(0).Dtis("SS").ChainDiffs({0});
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structure.templates[1].T(0).Dtis("SS").ChainDiffs({2}).FrameDiffs({2});
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structure.templates[2].T(1).Dtis("-D").ChainDiffs({1}).FrameDiffs({1});
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return structure;
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}
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FrameDependencyStructure ScalabilityStructureL1T3::DependencyStructure() const {
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FrameDependencyStructure structure;
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structure.num_decode_targets = 3;
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structure.num_chains = 1;
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structure.decode_target_protected_by_chain = {0, 0, 0};
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structure.templates.resize(5);
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structure.templates[0].T(0).Dtis("SSS").ChainDiffs({0});
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structure.templates[1].T(0).Dtis("SSS").ChainDiffs({4}).FrameDiffs({4});
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structure.templates[2].T(1).Dtis("-DS").ChainDiffs({2}).FrameDiffs({2});
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structure.templates[3].T(2).Dtis("--D").ChainDiffs({1}).FrameDiffs({1});
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structure.templates[4].T(2).Dtis("--D").ChainDiffs({3}).FrameDiffs({1});
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return structure;
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}
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FrameDependencyStructure ScalabilityStructureL2T1::DependencyStructure() const {
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FrameDependencyStructure structure;
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structure.num_decode_targets = 2;
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structure.num_chains = 2;
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structure.decode_target_protected_by_chain = {0, 1};
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structure.templates.resize(4);
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structure.templates[0].S(0).Dtis("SR").ChainDiffs({2, 1}).FrameDiffs({2});
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structure.templates[1].S(0).Dtis("SS").ChainDiffs({0, 0});
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structure.templates[2].S(1).Dtis("-S").ChainDiffs({1, 1}).FrameDiffs({2, 1});
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structure.templates[3].S(1).Dtis("-S").ChainDiffs({1, 1}).FrameDiffs({1});
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return structure;
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}
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FrameDependencyStructure ScalabilityStructureL2T2::DependencyStructure() const {
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FrameDependencyStructure structure;
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structure.num_decode_targets = 4;
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structure.num_chains = 2;
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structure.decode_target_protected_by_chain = {0, 0, 1, 1};
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structure.templates.resize(6);
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auto& templates = structure.templates;
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templates[0].S(0).T(0).Dtis("SSSS").ChainDiffs({0, 0});
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templates[1].S(0).T(0).Dtis("SSRR").ChainDiffs({4, 3}).FrameDiffs({4});
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templates[2].S(0).T(1).Dtis("-D-R").ChainDiffs({2, 1}).FrameDiffs({2});
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templates[3].S(1).T(0).Dtis("--SS").ChainDiffs({1, 1}).FrameDiffs({1});
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templates[4].S(1).T(0).Dtis("--SS").ChainDiffs({1, 1}).FrameDiffs({4, 1});
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templates[5].S(1).T(1).Dtis("---D").ChainDiffs({3, 2}).FrameDiffs({2, 1});
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return structure;
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}
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FrameDependencyStructure ScalabilityStructureL2T3::DependencyStructure() const {
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FrameDependencyStructure structure;
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structure.num_decode_targets = 6;
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structure.num_chains = 2;
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structure.decode_target_protected_by_chain = {0, 0, 0, 1, 1, 1};
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auto& t = structure.templates;
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t.resize(10);
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t[1].S(0).T(0).Dtis("SSSSSS").ChainDiffs({0, 0});
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t[6].S(1).T(0).Dtis("---SSS").ChainDiffs({1, 1}).FrameDiffs({1});
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t[3].S(0).T(2).Dtis("--D--R").ChainDiffs({2, 1}).FrameDiffs({2});
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t[8].S(1).T(2).Dtis("-----D").ChainDiffs({3, 2}).FrameDiffs({2, 1});
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t[2].S(0).T(1).Dtis("-DS-RR").ChainDiffs({4, 3}).FrameDiffs({4});
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t[7].S(1).T(1).Dtis("----DS").ChainDiffs({5, 4}).FrameDiffs({4, 1});
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t[4].S(0).T(2).Dtis("--D--R").ChainDiffs({6, 5}).FrameDiffs({2});
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t[9].S(1).T(2).Dtis("-----D").ChainDiffs({7, 6}).FrameDiffs({2, 1});
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t[0].S(0).T(0).Dtis("SSSRRR").ChainDiffs({8, 7}).FrameDiffs({8});
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t[5].S(1).T(0).Dtis("---SSS").ChainDiffs({1, 1}).FrameDiffs({8, 1});
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return structure;
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}
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FrameDependencyStructure ScalabilityStructureL3T1::DependencyStructure() const {
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FrameDependencyStructure structure;
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structure.num_decode_targets = 3;
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structure.num_chains = 3;
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structure.decode_target_protected_by_chain = {0, 1, 2};
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auto& templates = structure.templates;
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templates.resize(6);
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templates[0].S(0).Dtis("SRR").ChainDiffs({3, 2, 1}).FrameDiffs({3});
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templates[1].S(0).Dtis("SSS").ChainDiffs({0, 0, 0});
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templates[2].S(1).Dtis("-SR").ChainDiffs({1, 1, 1}).FrameDiffs({3, 1});
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templates[3].S(1).Dtis("-SS").ChainDiffs({1, 1, 1}).FrameDiffs({1});
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templates[4].S(2).Dtis("--S").ChainDiffs({2, 1, 1}).FrameDiffs({3, 1});
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templates[5].S(2).Dtis("--S").ChainDiffs({2, 1, 1}).FrameDiffs({1});
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return structure;
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}
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FrameDependencyStructure ScalabilityStructureL3T2::DependencyStructure() const {
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FrameDependencyStructure structure;
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structure.num_decode_targets = 6;
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structure.num_chains = 3;
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structure.decode_target_protected_by_chain = {0, 0, 1, 1, 2, 2};
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auto& t = structure.templates;
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t.resize(9);
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// Templates are shown in the order frames following them appear in the
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// stream, but in `structure.templates` array templates are sorted by
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// (`spatial_id`, `temporal_id`) since that is a dependency descriptor
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// requirement.
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t[1].S(0).T(0).Dtis("SSSSSS").ChainDiffs({0, 0, 0});
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t[4].S(1).T(0).Dtis("--SSSS").ChainDiffs({1, 1, 1}).FrameDiffs({1});
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t[7].S(2).T(0).Dtis("----SS").ChainDiffs({2, 1, 1}).FrameDiffs({1});
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t[2].S(0).T(1).Dtis("-D-R-R").ChainDiffs({3, 2, 1}).FrameDiffs({3});
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t[5].S(1).T(1).Dtis("---D-R").ChainDiffs({4, 3, 2}).FrameDiffs({3, 1});
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t[8].S(2).T(1).Dtis("-----D").ChainDiffs({5, 4, 3}).FrameDiffs({3, 1});
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t[0].S(0).T(0).Dtis("SSRRRR").ChainDiffs({6, 5, 4}).FrameDiffs({6});
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t[3].S(1).T(0).Dtis("--SSRR").ChainDiffs({1, 1, 1}).FrameDiffs({6, 1});
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t[6].S(2).T(0).Dtis("----SS").ChainDiffs({2, 1, 1}).FrameDiffs({6, 1});
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return structure;
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|
}
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|
|
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FrameDependencyStructure ScalabilityStructureL3T3::DependencyStructure() const {
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FrameDependencyStructure structure;
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structure.num_decode_targets = 9;
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|
structure.num_chains = 3;
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structure.decode_target_protected_by_chain = {0, 0, 0, 1, 1, 1, 2, 2, 2};
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|
auto& t = structure.templates;
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|
t.resize(15);
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|
// Templates are shown in the order frames following them appear in the
|
|
// stream, but in `structure.templates` array templates are sorted by
|
|
// (`spatial_id`, `temporal_id`) since that is a dependency descriptor
|
|
// requirement. Indexes are written in hex for nicer alignment.
|
|
t[0x1].S(0).T(0).Dtis("SSSSSSSSS").ChainDiffs({0, 0, 0});
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|
t[0x6].S(1).T(0).Dtis("---SSSSSS").ChainDiffs({1, 1, 1}).FrameDiffs({1});
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|
t[0xB].S(2).T(0).Dtis("------SSS").ChainDiffs({2, 1, 1}).FrameDiffs({1});
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|
t[0x3].S(0).T(2).Dtis("--D--R--R").ChainDiffs({3, 2, 1}).FrameDiffs({3});
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|
t[0x8].S(1).T(2).Dtis("-----D--R").ChainDiffs({4, 3, 2}).FrameDiffs({3, 1});
|
|
t[0xD].S(2).T(2).Dtis("--------D").ChainDiffs({5, 4, 3}).FrameDiffs({3, 1});
|
|
t[0x2].S(0).T(1).Dtis("-DS-RR-RR").ChainDiffs({6, 5, 4}).FrameDiffs({6});
|
|
t[0x7].S(1).T(1).Dtis("----DS-RR").ChainDiffs({7, 6, 5}).FrameDiffs({6, 1});
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|
t[0xC].S(2).T(1).Dtis("-------DS").ChainDiffs({8, 7, 6}).FrameDiffs({6, 1});
|
|
t[0x4].S(0).T(2).Dtis("--D--R--R").ChainDiffs({9, 8, 7}).FrameDiffs({3});
|
|
t[0x9].S(1).T(2).Dtis("-----D--R").ChainDiffs({10, 9, 8}).FrameDiffs({3, 1});
|
|
t[0xE].S(2).T(2).Dtis("--------D").ChainDiffs({11, 10, 9}).FrameDiffs({3, 1});
|
|
t[0x0].S(0).T(0).Dtis("SSSRRRRRR").ChainDiffs({12, 11, 10}).FrameDiffs({12});
|
|
t[0x5].S(1).T(0).Dtis("---SSSRRR").ChainDiffs({1, 1, 1}).FrameDiffs({12, 1});
|
|
t[0xA].S(2).T(0).Dtis("------SSS").ChainDiffs({2, 1, 1}).FrameDiffs({12, 1});
|
|
return structure;
|
|
}
|
|
|
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} // namespace webrtc
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