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/*
* Copyright (c) 2020 The WebRTC project authors. All Rights Reserved.
*
* Use of this source code is governed by a BSD-style license
* that can be found in the LICENSE file in the root of the source
* tree. An additional intellectual property rights grant can be found
* in the file PATENTS. All contributing project authors may
* be found in the AUTHORS file in the root of the source tree.
*/
#include "modules/video_coding/svc/scalability_structure_l2t2_key.h"
#include <utility>
#include <vector>
#include "absl/base/macros.h"
#include "api/transport/rtp/dependency_descriptor.h"
#include "rtc_base/checks.h"
#include "rtc_base/logging.h"
namespace webrtc {
namespace {
constexpr auto kNotPresent = DecodeTargetIndication::kNotPresent;
constexpr auto kDiscardable = DecodeTargetIndication::kDiscardable;
constexpr auto kSwitch = DecodeTargetIndication::kSwitch;
// decode targets: S0T0, S0T1, S1T0, S1T1
constexpr DecodeTargetIndication kDtis[6][4] = {
{kSwitch, kSwitch, kSwitch, kSwitch}, // kKey, S0
{kNotPresent, kNotPresent, kSwitch, kSwitch}, // kKey, S1
{kNotPresent, kDiscardable, kNotPresent, kNotPresent}, // kDeltaT1, S0
{kNotPresent, kNotPresent, kNotPresent, kDiscardable}, // kDeltaT1, S1
{kSwitch, kSwitch, kNotPresent, kNotPresent}, // kDeltaT0, S0
{kNotPresent, kNotPresent, kSwitch, kSwitch}, // kDeltaT0, S1
};
} // namespace
ScalabilityStructureL2T2Key::~ScalabilityStructureL2T2Key() = default;
ScalableVideoController::StreamLayersConfig
ScalabilityStructureL2T2Key::StreamConfig() const {
StreamLayersConfig result;
result.num_spatial_layers = 2;
result.num_temporal_layers = 2;
result.scaling_factor_num[0] = 1;
result.scaling_factor_den[0] = 2;
return result;
}
FrameDependencyStructure ScalabilityStructureL2T2Key::DependencyStructure()
const {
FrameDependencyStructure structure;
structure.num_decode_targets = 4;
structure.num_chains = 2;
structure.decode_target_protected_by_chain = {0, 0, 1, 1};
structure.templates.resize(6);
auto& templates = structure.templates;
templates[0].S(0).T(0).Dtis("SSSS").ChainDiffs({0, 0});
templates[1].S(0).T(0).Dtis("SS--").ChainDiffs({4, 3}).FrameDiffs({4});
templates[2].S(0).T(1).Dtis("-D--").ChainDiffs({2, 1}).FrameDiffs({2});
templates[3].S(1).T(0).Dtis("--SS").ChainDiffs({1, 1}).FrameDiffs({1});
templates[4].S(1).T(0).Dtis("--SS").ChainDiffs({1, 4}).FrameDiffs({4});
templates[5].S(1).T(1).Dtis("---D").ChainDiffs({3, 2}).FrameDiffs({2});
return structure;
}
ScalableVideoController::LayerFrameConfig
ScalabilityStructureL2T2Key::KeyFrameConfig() const {
return LayerFrameConfig().Id(0).Keyframe().S(0).T(0).Update(0);
}
std::vector<ScalableVideoController::LayerFrameConfig>
ScalabilityStructureL2T2Key::NextFrameConfig(bool restart) {
if (restart) {
next_pattern_ = kKey;
}
std::vector<LayerFrameConfig> result(2);
// Buffer0 keeps latest S0T0 frame,
// Buffer1 keeps latest S1T0 frame.
switch (next_pattern_) {
case kKey:
result[0] = KeyFrameConfig();
result[1].Id(1).S(1).T(0).Reference(0).Update(1);
next_pattern_ = kDeltaT1;
break;
case kDeltaT1:
result[0].Id(2).S(0).T(1).Reference(0);
result[1].Id(3).S(1).T(1).Reference(1);
next_pattern_ = kDeltaT0;
break;
case kDeltaT0:
result[0].Id(4).S(0).T(0).ReferenceAndUpdate(0);
result[1].Id(5).S(1).T(0).ReferenceAndUpdate(1);
next_pattern_ = kDeltaT1;
break;
}
return result;
}
GenericFrameInfo ScalabilityStructureL2T2Key::OnEncodeDone(
const LayerFrameConfig& config) {
RTC_CHECK_GE(config.Id(), 0);
RTC_CHECK_LT(config.Id(), ABSL_ARRAYSIZE(kDtis));
GenericFrameInfo frame_info;
frame_info.spatial_id = config.SpatialId();
frame_info.temporal_id = config.TemporalId();
frame_info.encoder_buffers = config.Buffers();
int config_id = config.IsKeyframe() ? 0 : config.Id();
frame_info.decode_target_indications.assign(std::begin(kDtis[config_id]),
std::end(kDtis[config_id]));
if (config.IsKeyframe()) {
frame_info.part_of_chain = {true, true};
} else if (config.TemporalId() == 0) {
frame_info.part_of_chain = {config.SpatialId() == 0,
config.SpatialId() == 1};
} else {
frame_info.part_of_chain = {false, false};
}
return frame_info;
}
} // namespace webrtc