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This is needed in the general case, now that we aim to support codecs other than those built-in to WebRTC. BUG=webrtc:8159 Change-Id: I40a41252bf69ad5d4d0208e3c1e8918da7394706 Reviewed-on: https://webrtc-review.googlesource.com/5380 Commit-Queue: Karl Wiberg <kwiberg@webrtc.org> Reviewed-by: Danil Chapovalov <danilchap@webrtc.org> Cr-Commit-Position: refs/heads/master@{#20136}
346 lines
10 KiB
C++
346 lines
10 KiB
C++
/*
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* Copyright (c) 2013 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/rtp_rtcp/include/rtp_payload_registry.h"
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#include <algorithm>
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#include "common_types.h" // NOLINT(build/include)
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#include "modules/audio_coding/codecs/audio_format_conversion.h"
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#include "rtc_base/checks.h"
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#include "rtc_base/logging.h"
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#include "rtc_base/stringutils.h"
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namespace webrtc {
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namespace {
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bool PayloadIsCompatible(const RtpUtility::Payload& payload,
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const SdpAudioFormat& audio_format) {
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return payload.typeSpecific.is_audio() &&
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audio_format.Matches(payload.typeSpecific.audio_payload().format);
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}
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bool PayloadIsCompatible(const RtpUtility::Payload& payload,
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const VideoCodec& video_codec) {
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if (!payload.typeSpecific.is_video() ||
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_stricmp(payload.name, video_codec.plName) != 0)
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return false;
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// For H264, profiles must match as well.
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if (video_codec.codecType == kVideoCodecH264) {
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return video_codec.H264().profile ==
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payload.typeSpecific.video_payload().h264_profile;
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}
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return true;
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}
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RtpUtility::Payload CreatePayloadType(const SdpAudioFormat& audio_format) {
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RTC_DCHECK_GE(audio_format.clockrate_hz, 1000);
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return {audio_format.name.c_str(),
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PayloadUnion(AudioPayload{audio_format, 0})};
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}
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RtpVideoCodecTypes ConvertToRtpVideoCodecType(VideoCodecType type) {
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switch (type) {
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case kVideoCodecVP8:
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return kRtpVideoVp8;
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case kVideoCodecVP9:
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return kRtpVideoVp9;
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case kVideoCodecH264:
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return kRtpVideoH264;
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case kVideoCodecRED:
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case kVideoCodecULPFEC:
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return kRtpVideoNone;
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default:
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return kRtpVideoGeneric;
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}
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}
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RtpUtility::Payload CreatePayloadType(const VideoCodec& video_codec) {
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VideoPayload p;
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p.videoCodecType = ConvertToRtpVideoCodecType(video_codec.codecType);
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if (video_codec.codecType == kVideoCodecH264)
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p.h264_profile = video_codec.H264().profile;
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return {video_codec.plName, PayloadUnion(p)};
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}
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bool IsPayloadTypeValid(int8_t payload_type) {
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assert(payload_type >= 0);
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// Sanity check.
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switch (payload_type) {
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// Reserved payload types to avoid RTCP conflicts when marker bit is set.
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case 64: // 192 Full INTRA-frame request.
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case 72: // 200 Sender report.
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case 73: // 201 Receiver report.
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case 74: // 202 Source description.
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case 75: // 203 Goodbye.
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case 76: // 204 Application-defined.
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case 77: // 205 Transport layer FB message.
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case 78: // 206 Payload-specific FB message.
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case 79: // 207 Extended report.
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LOG(LS_ERROR) << "Can't register invalid receiver payload type: "
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<< payload_type;
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return false;
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default:
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return true;
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}
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}
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} // namespace
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RTPPayloadRegistry::RTPPayloadRegistry()
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: incoming_payload_type_(-1),
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last_received_payload_type_(-1),
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last_received_media_payload_type_(-1),
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rtx_(false),
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ssrc_rtx_(0) {}
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RTPPayloadRegistry::~RTPPayloadRegistry() = default;
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void RTPPayloadRegistry::SetAudioReceivePayloads(
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std::map<int, SdpAudioFormat> codecs) {
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rtc::CritScope cs(&crit_sect_);
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#if RTC_DCHECK_IS_ON
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RTC_DCHECK(!used_for_video_);
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used_for_audio_ = true;
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#endif
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payload_type_map_.clear();
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for (const auto& kv : codecs) {
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const int& rtp_payload_type = kv.first;
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const SdpAudioFormat& audio_format = kv.second;
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RTC_DCHECK(IsPayloadTypeValid(rtp_payload_type));
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payload_type_map_.emplace(rtp_payload_type,
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CreatePayloadType(audio_format));
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}
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// Clear the value of last received payload type since it might mean
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// something else now.
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last_received_payload_type_ = -1;
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last_received_media_payload_type_ = -1;
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}
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int32_t RTPPayloadRegistry::RegisterReceivePayload(
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int payload_type,
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const SdpAudioFormat& audio_format,
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bool* created_new_payload) {
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rtc::CritScope cs(&crit_sect_);
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#if RTC_DCHECK_IS_ON
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RTC_DCHECK(!used_for_video_);
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used_for_audio_ = true;
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#endif
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*created_new_payload = false;
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if (!IsPayloadTypeValid(payload_type))
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return -1;
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const auto it = payload_type_map_.find(payload_type);
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if (it != payload_type_map_.end()) {
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// We already use this payload type. Check if it's the same as we already
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// have. If same, ignore sending an error.
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if (PayloadIsCompatible(it->second, audio_format)) {
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it->second.typeSpecific.audio_payload().rate = 0;
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return 0;
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}
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LOG(LS_ERROR) << "Payload type already registered: " << payload_type;
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return -1;
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}
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// Audio codecs must be unique.
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DeregisterAudioCodecOrRedTypeRegardlessOfPayloadType(audio_format);
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const auto insert_status =
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payload_type_map_.emplace(payload_type, CreatePayloadType(audio_format));
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RTC_DCHECK(insert_status.second); // Insertion succeeded.
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*created_new_payload = true;
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// Successful set of payload type, clear the value of last received payload
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// type since it might mean something else.
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last_received_payload_type_ = -1;
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last_received_media_payload_type_ = -1;
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return 0;
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}
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int32_t RTPPayloadRegistry::RegisterReceivePayload(
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const VideoCodec& video_codec) {
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rtc::CritScope cs(&crit_sect_);
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#if RTC_DCHECK_IS_ON
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RTC_DCHECK(!used_for_audio_);
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used_for_video_ = true;
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#endif
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if (!IsPayloadTypeValid(video_codec.plType))
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return -1;
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auto it = payload_type_map_.find(video_codec.plType);
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if (it != payload_type_map_.end()) {
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// We already use this payload type. Check if it's the same as we already
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// have. If same, ignore sending an error.
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if (PayloadIsCompatible(it->second, video_codec))
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return 0;
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LOG(LS_ERROR) << "Payload type already registered: "
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<< static_cast<int>(video_codec.plType);
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return -1;
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}
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const auto insert_status = payload_type_map_.emplace(
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video_codec.plType, CreatePayloadType(video_codec));
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RTC_DCHECK(insert_status.second); // Insertion succeeded.
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// Successful set of payload type, clear the value of last received payload
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// type since it might mean something else.
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last_received_payload_type_ = -1;
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last_received_media_payload_type_ = -1;
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return 0;
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}
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int32_t RTPPayloadRegistry::DeRegisterReceivePayload(
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const int8_t payload_type) {
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rtc::CritScope cs(&crit_sect_);
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payload_type_map_.erase(payload_type);
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return 0;
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}
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// There can't be several codecs with the same rate, frequency and channels
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// for audio codecs, but there can for video.
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// Always called from within a critical section.
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void RTPPayloadRegistry::DeregisterAudioCodecOrRedTypeRegardlessOfPayloadType(
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const SdpAudioFormat& audio_format) {
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for (auto iterator = payload_type_map_.begin();
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iterator != payload_type_map_.end(); ++iterator) {
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if (PayloadIsCompatible(iterator->second, audio_format)) {
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// Remove old setting.
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payload_type_map_.erase(iterator);
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break;
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}
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}
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}
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int32_t RTPPayloadRegistry::ReceivePayloadType(
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const SdpAudioFormat& audio_format,
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int8_t* payload_type) const {
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assert(payload_type);
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rtc::CritScope cs(&crit_sect_);
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for (const auto& it : payload_type_map_) {
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if (PayloadIsCompatible(it.second, audio_format)) {
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*payload_type = it.first;
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return 0;
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}
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}
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return -1;
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}
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int32_t RTPPayloadRegistry::ReceivePayloadType(const VideoCodec& video_codec,
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int8_t* payload_type) const {
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assert(payload_type);
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rtc::CritScope cs(&crit_sect_);
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for (const auto& it : payload_type_map_) {
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if (PayloadIsCompatible(it.second, video_codec)) {
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*payload_type = it.first;
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return 0;
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}
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}
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return -1;
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}
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bool RTPPayloadRegistry::RtxEnabled() const {
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rtc::CritScope cs(&crit_sect_);
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return rtx_;
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}
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bool RTPPayloadRegistry::IsRtxInternal(const RTPHeader& header) const {
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return rtx_ && ssrc_rtx_ == header.ssrc;
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}
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void RTPPayloadRegistry::SetRtxSsrc(uint32_t ssrc) {
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rtc::CritScope cs(&crit_sect_);
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ssrc_rtx_ = ssrc;
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rtx_ = true;
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}
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bool RTPPayloadRegistry::GetRtxSsrc(uint32_t* ssrc) const {
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rtc::CritScope cs(&crit_sect_);
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*ssrc = ssrc_rtx_;
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return rtx_;
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}
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void RTPPayloadRegistry::SetRtxPayloadType(int payload_type,
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int associated_payload_type) {
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rtc::CritScope cs(&crit_sect_);
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if (payload_type < 0) {
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LOG(LS_ERROR) << "Invalid RTX payload type: " << payload_type;
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return;
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}
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rtx_payload_type_map_[payload_type] = associated_payload_type;
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rtx_ = true;
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}
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bool RTPPayloadRegistry::IsRed(const RTPHeader& header) const {
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rtc::CritScope cs(&crit_sect_);
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auto it = payload_type_map_.find(header.payloadType);
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return it != payload_type_map_.end() && _stricmp(it->second.name, "red") == 0;
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}
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int RTPPayloadRegistry::GetPayloadTypeFrequency(
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uint8_t payload_type) const {
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const auto payload = PayloadTypeToPayload(payload_type);
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if (!payload) {
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return -1;
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}
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rtc::CritScope cs(&crit_sect_);
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return payload->typeSpecific.is_audio()
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? payload->typeSpecific.audio_payload().format.clockrate_hz
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: kVideoPayloadTypeFrequency;
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}
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rtc::Optional<RtpUtility::Payload> RTPPayloadRegistry::PayloadTypeToPayload(
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uint8_t payload_type) const {
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rtc::CritScope cs(&crit_sect_);
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const auto it = payload_type_map_.find(payload_type);
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return it == payload_type_map_.end()
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? rtc::Optional<RtpUtility::Payload>()
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: rtc::Optional<RtpUtility::Payload>(it->second);
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}
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void RTPPayloadRegistry::SetIncomingPayloadType(const RTPHeader& header) {
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rtc::CritScope cs(&crit_sect_);
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if (!IsRtxInternal(header))
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incoming_payload_type_ = header.payloadType;
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}
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bool RTPPayloadRegistry::ReportMediaPayloadType(uint8_t media_payload_type) {
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rtc::CritScope cs(&crit_sect_);
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if (last_received_media_payload_type_ == media_payload_type) {
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// Media type unchanged.
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return true;
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}
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last_received_media_payload_type_ = media_payload_type;
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return false;
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}
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// Returns -1 if a payload with name |payload_name| is not registered.
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int8_t RTPPayloadRegistry::GetPayloadTypeWithName(
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const char* payload_name) const {
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rtc::CritScope cs(&crit_sect_);
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for (const auto& it : payload_type_map_) {
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if (_stricmp(it.second.name, payload_name) == 0)
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return it.first;
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}
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return -1;
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}
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} // namespace webrtc
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