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Specifically, reject any bitrate allocated for a layer not representable by the BitrateAllocation struct. BUG=chromium:671312 Review-Url: https://codereview.webrtc.org/2549233005 Cr-Commit-Position: refs/heads/master@{#15447}
187 lines
5.9 KiB
C++
187 lines
5.9 KiB
C++
/*
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* Copyright (c) 2012 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 "webrtc/common_types.h"
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#include <limits>
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#include <string.h>
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#include "webrtc/base/checks.h"
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#include "webrtc/base/stringutils.h"
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namespace webrtc {
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StreamDataCounters::StreamDataCounters() : first_packet_time_ms(-1) {}
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RTPHeaderExtension::RTPHeaderExtension()
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: hasTransmissionTimeOffset(false),
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transmissionTimeOffset(0),
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hasAbsoluteSendTime(false),
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absoluteSendTime(0),
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hasTransportSequenceNumber(false),
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transportSequenceNumber(0),
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hasAudioLevel(false),
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voiceActivity(false),
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audioLevel(0),
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hasVideoRotation(false),
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videoRotation(kVideoRotation_0) {}
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RTPHeader::RTPHeader()
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: markerBit(false),
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payloadType(0),
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sequenceNumber(0),
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timestamp(0),
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ssrc(0),
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numCSRCs(0),
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arrOfCSRCs(),
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paddingLength(0),
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headerLength(0),
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payload_type_frequency(0),
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extension() {}
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VideoCodec::VideoCodec()
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: codecType(kVideoCodecUnknown),
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plName(),
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plType(0),
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width(0),
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height(0),
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startBitrate(0),
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maxBitrate(0),
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minBitrate(0),
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targetBitrate(0),
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maxFramerate(0),
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qpMax(0),
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numberOfSimulcastStreams(0),
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simulcastStream(),
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spatialLayers(),
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mode(kRealtimeVideo),
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expect_encode_from_texture(false),
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codec_specific_() {}
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VideoCodecVP8* VideoCodec::VP8() {
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RTC_DCHECK_EQ(codecType, kVideoCodecVP8);
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return &codec_specific_.VP8;
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}
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const VideoCodecVP8& VideoCodec::VP8() const {
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RTC_DCHECK_EQ(codecType, kVideoCodecVP8);
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return codec_specific_.VP8;
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}
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VideoCodecVP9* VideoCodec::VP9() {
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RTC_DCHECK_EQ(codecType, kVideoCodecVP9);
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return &codec_specific_.VP9;
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}
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const VideoCodecVP9& VideoCodec::VP9() const {
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RTC_DCHECK_EQ(codecType, kVideoCodecVP9);
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return codec_specific_.VP9;
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}
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VideoCodecH264* VideoCodec::H264() {
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RTC_DCHECK_EQ(codecType, kVideoCodecH264);
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return &codec_specific_.H264;
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}
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const VideoCodecH264& VideoCodec::H264() const {
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RTC_DCHECK_EQ(codecType, kVideoCodecH264);
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return codec_specific_.H264;
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}
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static const char* kPayloadNameVp8 = "VP8";
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static const char* kPayloadNameVp9 = "VP9";
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static const char* kPayloadNameH264 = "H264";
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static const char* kPayloadNameI420 = "I420";
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static const char* kPayloadNameRED = "RED";
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static const char* kPayloadNameULPFEC = "ULPFEC";
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static const char* kPayloadNameGeneric = "Generic";
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static bool CodecNamesEq(const char* name1, const char* name2) {
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return _stricmp(name1, name2) == 0;
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}
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rtc::Optional<const char*> CodecTypeToPayloadName(VideoCodecType type) {
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switch (type) {
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case kVideoCodecVP8:
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return rtc::Optional<const char*>(kPayloadNameVp8);
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case kVideoCodecVP9:
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return rtc::Optional<const char*>(kPayloadNameVp9);
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case kVideoCodecH264:
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return rtc::Optional<const char*>(kPayloadNameH264);
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case kVideoCodecI420:
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return rtc::Optional<const char*>(kPayloadNameI420);
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case kVideoCodecRED:
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return rtc::Optional<const char*>(kPayloadNameRED);
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case kVideoCodecULPFEC:
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return rtc::Optional<const char*>(kPayloadNameULPFEC);
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case kVideoCodecGeneric:
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return rtc::Optional<const char*>(kPayloadNameGeneric);
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default:
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return rtc::Optional<const char*>();
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}
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}
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rtc::Optional<VideoCodecType> PayloadNameToCodecType(const std::string& name) {
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if (CodecNamesEq(name.c_str(), kPayloadNameVp8))
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return rtc::Optional<VideoCodecType>(kVideoCodecVP8);
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if (CodecNamesEq(name.c_str(), kPayloadNameVp9))
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return rtc::Optional<VideoCodecType>(kVideoCodecVP9);
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if (CodecNamesEq(name.c_str(), kPayloadNameH264))
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return rtc::Optional<VideoCodecType>(kVideoCodecH264);
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if (CodecNamesEq(name.c_str(), kPayloadNameI420))
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return rtc::Optional<VideoCodecType>(kVideoCodecI420);
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if (CodecNamesEq(name.c_str(), kPayloadNameRED))
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return rtc::Optional<VideoCodecType>(kVideoCodecRED);
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if (CodecNamesEq(name.c_str(), kPayloadNameULPFEC))
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return rtc::Optional<VideoCodecType>(kVideoCodecULPFEC);
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if (CodecNamesEq(name.c_str(), kPayloadNameGeneric))
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return rtc::Optional<VideoCodecType>(kVideoCodecGeneric);
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return rtc::Optional<VideoCodecType>();
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}
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const uint32_t BitrateAllocation::kMaxBitrateBps =
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std::numeric_limits<uint32_t>::max();
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BitrateAllocation::BitrateAllocation() : sum_(0), bitrates_{} {}
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bool BitrateAllocation::SetBitrate(size_t spatial_index,
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size_t temporal_index,
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uint32_t bitrate_bps) {
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RTC_CHECK_LT(spatial_index, kMaxSpatialLayers);
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RTC_CHECK_LT(temporal_index, kMaxTemporalStreams);
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RTC_CHECK_LE(bitrates_[spatial_index][temporal_index], sum_);
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uint64_t new_bitrate_sum_bps = sum_;
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new_bitrate_sum_bps -= bitrates_[spatial_index][temporal_index];
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new_bitrate_sum_bps += bitrate_bps;
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if (new_bitrate_sum_bps > kMaxBitrateBps)
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return false;
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bitrates_[spatial_index][temporal_index] = bitrate_bps;
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sum_ = static_cast<uint32_t>(new_bitrate_sum_bps);
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return true;
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}
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uint32_t BitrateAllocation::GetBitrate(size_t spatial_index,
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size_t temporal_index) const {
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RTC_CHECK_LT(spatial_index, kMaxSpatialLayers);
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RTC_CHECK_LT(temporal_index, kMaxTemporalStreams);
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return bitrates_[spatial_index][temporal_index];
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}
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// Get the sum of all the temporal layer for a specific spatial layer.
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uint32_t BitrateAllocation::GetSpatialLayerSum(size_t spatial_index) const {
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RTC_CHECK_LT(spatial_index, kMaxSpatialLayers);
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uint32_t sum = 0;
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for (int i = 0; i < kMaxTemporalStreams; ++i)
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sum += bitrates_[spatial_index][i];
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return sum;
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}
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} // namespace webrtc
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