2020-08-14 16:58:22 +00:00
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/*
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* Copyright 2017 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 "pc/rtp_parameters_conversion.h"
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2021-06-25 00:43:10 +00:00
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#include <algorithm>
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2020-08-14 16:58:22 +00:00
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#include <cstdint>
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#include <set>
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#include <string>
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#include <utility>
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#include "api/array_view.h"
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#include "api/media_types.h"
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#include "media/base/media_constants.h"
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#include "media/base/rtp_utils.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/strings/string_builder.h"
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namespace webrtc {
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RTCErrorOr<cricket::FeedbackParam> ToCricketFeedbackParam(
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const RtcpFeedback& feedback) {
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switch (feedback.type) {
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case RtcpFeedbackType::CCM:
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if (!feedback.message_type) {
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LOG_AND_RETURN_ERROR(RTCErrorType::INVALID_PARAMETER,
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"Missing message type in CCM RtcpFeedback.");
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} else if (*feedback.message_type != RtcpFeedbackMessageType::FIR) {
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LOG_AND_RETURN_ERROR(RTCErrorType::INVALID_PARAMETER,
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"Invalid message type in CCM RtcpFeedback.");
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}
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return cricket::FeedbackParam(cricket::kRtcpFbParamCcm,
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cricket::kRtcpFbCcmParamFir);
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case RtcpFeedbackType::LNTF:
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if (feedback.message_type) {
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LOG_AND_RETURN_ERROR(
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RTCErrorType::INVALID_PARAMETER,
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"Didn't expect message type in LNTF RtcpFeedback.");
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}
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return cricket::FeedbackParam(cricket::kRtcpFbParamLntf);
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case RtcpFeedbackType::NACK:
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if (!feedback.message_type) {
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LOG_AND_RETURN_ERROR(RTCErrorType::INVALID_PARAMETER,
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"Missing message type in NACK RtcpFeedback.");
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}
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switch (*feedback.message_type) {
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case RtcpFeedbackMessageType::GENERIC_NACK:
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return cricket::FeedbackParam(cricket::kRtcpFbParamNack);
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case RtcpFeedbackMessageType::PLI:
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return cricket::FeedbackParam(cricket::kRtcpFbParamNack,
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cricket::kRtcpFbNackParamPli);
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default:
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LOG_AND_RETURN_ERROR(RTCErrorType::INVALID_PARAMETER,
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"Invalid message type in NACK RtcpFeedback.");
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}
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case RtcpFeedbackType::REMB:
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if (feedback.message_type) {
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LOG_AND_RETURN_ERROR(
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RTCErrorType::INVALID_PARAMETER,
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"Didn't expect message type in REMB RtcpFeedback.");
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}
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return cricket::FeedbackParam(cricket::kRtcpFbParamRemb);
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case RtcpFeedbackType::TRANSPORT_CC:
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if (feedback.message_type) {
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LOG_AND_RETURN_ERROR(
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RTCErrorType::INVALID_PARAMETER,
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"Didn't expect message type in transport-cc RtcpFeedback.");
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}
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return cricket::FeedbackParam(cricket::kRtcpFbParamTransportCc);
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}
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2020-12-23 07:48:30 +00:00
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RTC_CHECK_NOTREACHED();
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2020-08-14 16:58:22 +00:00
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}
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template <typename C>
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static RTCError ToCricketCodecTypeSpecific(const RtpCodecParameters& codec,
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C* cricket_codec);
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template <>
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RTCError ToCricketCodecTypeSpecific<cricket::AudioCodec>(
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const RtpCodecParameters& codec,
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cricket::AudioCodec* cricket_codec) {
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if (codec.kind != cricket::MEDIA_TYPE_AUDIO) {
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LOG_AND_RETURN_ERROR(
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RTCErrorType::INVALID_PARAMETER,
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"Can't use video codec with audio sender or receiver.");
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}
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if (!codec.num_channels) {
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LOG_AND_RETURN_ERROR(RTCErrorType::INVALID_PARAMETER,
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"Missing number of channels for audio codec.");
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}
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if (*codec.num_channels <= 0) {
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LOG_AND_RETURN_ERROR(RTCErrorType::INVALID_RANGE,
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"Number of channels must be positive.");
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}
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cricket_codec->channels = *codec.num_channels;
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if (!codec.clock_rate) {
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LOG_AND_RETURN_ERROR(RTCErrorType::INVALID_PARAMETER,
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"Missing codec clock rate.");
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}
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if (*codec.clock_rate <= 0) {
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LOG_AND_RETURN_ERROR(RTCErrorType::INVALID_RANGE,
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"Clock rate must be positive.");
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}
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cricket_codec->clockrate = *codec.clock_rate;
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return RTCError::OK();
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}
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// Video codecs don't use num_channels or clock_rate, but they should at least
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// be validated to ensure the application isn't trying to do something it
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// doesn't intend to.
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template <>
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RTCError ToCricketCodecTypeSpecific<cricket::VideoCodec>(
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const RtpCodecParameters& codec,
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cricket::VideoCodec*) {
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if (codec.kind != cricket::MEDIA_TYPE_VIDEO) {
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LOG_AND_RETURN_ERROR(
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RTCErrorType::INVALID_PARAMETER,
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"Can't use audio codec with video sender or receiver.");
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}
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if (codec.num_channels) {
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LOG_AND_RETURN_ERROR(RTCErrorType::INVALID_PARAMETER,
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"Video codec shouldn't have num_channels.");
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}
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if (!codec.clock_rate) {
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LOG_AND_RETURN_ERROR(RTCErrorType::INVALID_PARAMETER,
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"Missing codec clock rate.");
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}
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if (*codec.clock_rate != cricket::kVideoCodecClockrate) {
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LOG_AND_RETURN_ERROR(RTCErrorType::INVALID_PARAMETER,
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"Video clock rate must be 90000.");
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}
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return RTCError::OK();
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}
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template <typename C>
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RTCErrorOr<C> ToCricketCodec(const RtpCodecParameters& codec) {
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C cricket_codec;
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// Start with audio/video specific conversion.
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RTCError err = ToCricketCodecTypeSpecific(codec, &cricket_codec);
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if (!err.ok()) {
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return std::move(err);
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}
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cricket_codec.name = codec.name;
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if (!cricket::IsValidRtpPayloadType(codec.payload_type)) {
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char buf[40];
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rtc::SimpleStringBuilder sb(buf);
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sb << "Invalid payload type: " << codec.payload_type;
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LOG_AND_RETURN_ERROR(RTCErrorType::INVALID_RANGE, sb.str());
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}
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cricket_codec.id = codec.payload_type;
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for (const RtcpFeedback& feedback : codec.rtcp_feedback) {
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auto result = ToCricketFeedbackParam(feedback);
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if (!result.ok()) {
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return result.MoveError();
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}
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cricket_codec.AddFeedbackParam(result.MoveValue());
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}
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cricket_codec.params = codec.parameters;
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return std::move(cricket_codec);
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}
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template RTCErrorOr<cricket::AudioCodec> ToCricketCodec(
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const RtpCodecParameters& codec);
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template RTCErrorOr<cricket::VideoCodec> ToCricketCodec(
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const RtpCodecParameters& codec);
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template <typename C>
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RTCErrorOr<std::vector<C>> ToCricketCodecs(
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const std::vector<RtpCodecParameters>& codecs) {
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std::vector<C> cricket_codecs;
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std::set<int> seen_payload_types;
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for (const RtpCodecParameters& codec : codecs) {
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auto result = ToCricketCodec<C>(codec);
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if (!result.ok()) {
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return result.MoveError();
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}
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if (!seen_payload_types.insert(codec.payload_type).second) {
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char buf[40];
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rtc::SimpleStringBuilder sb(buf);
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sb << "Duplicate payload type: " << codec.payload_type;
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LOG_AND_RETURN_ERROR(RTCErrorType::INVALID_PARAMETER, sb.str());
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}
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cricket_codecs.push_back(result.MoveValue());
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}
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return std::move(cricket_codecs);
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}
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template RTCErrorOr<std::vector<cricket::AudioCodec>> ToCricketCodecs<
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cricket::AudioCodec>(const std::vector<RtpCodecParameters>& codecs);
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template RTCErrorOr<std::vector<cricket::VideoCodec>> ToCricketCodecs<
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cricket::VideoCodec>(const std::vector<RtpCodecParameters>& codecs);
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RTCErrorOr<cricket::StreamParamsVec> ToCricketStreamParamsVec(
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const std::vector<RtpEncodingParameters>& encodings) {
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if (encodings.size() > 1u) {
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LOG_AND_RETURN_ERROR(RTCErrorType::UNSUPPORTED_PARAMETER,
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"ORTC API implementation doesn't currently "
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"support simulcast or layered encodings.");
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} else if (encodings.empty()) {
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return cricket::StreamParamsVec();
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}
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cricket::StreamParamsVec cricket_streams;
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const RtpEncodingParameters& encoding = encodings[0];
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if (encoding.ssrc) {
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cricket::StreamParams stream_params;
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stream_params.add_ssrc(*encoding.ssrc);
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cricket_streams.push_back(std::move(stream_params));
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}
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return std::move(cricket_streams);
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}
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absl::optional<RtcpFeedback> ToRtcpFeedback(
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const cricket::FeedbackParam& cricket_feedback) {
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if (cricket_feedback.id() == cricket::kRtcpFbParamCcm) {
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if (cricket_feedback.param() == cricket::kRtcpFbCcmParamFir) {
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return RtcpFeedback(RtcpFeedbackType::CCM, RtcpFeedbackMessageType::FIR);
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} else {
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RTC_LOG(LS_WARNING) << "Unsupported parameter for CCM RTCP feedback: "
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<< cricket_feedback.param();
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return absl::nullopt;
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}
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} else if (cricket_feedback.id() == cricket::kRtcpFbParamLntf) {
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if (cricket_feedback.param().empty()) {
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return RtcpFeedback(RtcpFeedbackType::LNTF);
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} else {
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RTC_LOG(LS_WARNING) << "Unsupported parameter for LNTF RTCP feedback: "
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<< cricket_feedback.param();
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return absl::nullopt;
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}
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} else if (cricket_feedback.id() == cricket::kRtcpFbParamNack) {
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if (cricket_feedback.param().empty()) {
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return RtcpFeedback(RtcpFeedbackType::NACK,
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RtcpFeedbackMessageType::GENERIC_NACK);
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} else if (cricket_feedback.param() == cricket::kRtcpFbNackParamPli) {
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return RtcpFeedback(RtcpFeedbackType::NACK, RtcpFeedbackMessageType::PLI);
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} else {
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RTC_LOG(LS_WARNING) << "Unsupported parameter for NACK RTCP feedback: "
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<< cricket_feedback.param();
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return absl::nullopt;
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}
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} else if (cricket_feedback.id() == cricket::kRtcpFbParamRemb) {
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if (!cricket_feedback.param().empty()) {
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RTC_LOG(LS_WARNING) << "Unsupported parameter for REMB RTCP feedback: "
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<< cricket_feedback.param();
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return absl::nullopt;
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} else {
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return RtcpFeedback(RtcpFeedbackType::REMB);
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}
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} else if (cricket_feedback.id() == cricket::kRtcpFbParamTransportCc) {
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if (!cricket_feedback.param().empty()) {
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RTC_LOG(LS_WARNING)
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<< "Unsupported parameter for transport-cc RTCP feedback: "
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<< cricket_feedback.param();
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return absl::nullopt;
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} else {
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return RtcpFeedback(RtcpFeedbackType::TRANSPORT_CC);
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}
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}
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RTC_LOG(LS_WARNING) << "Unsupported RTCP feedback type: "
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<< cricket_feedback.id();
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return absl::nullopt;
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}
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std::vector<RtpEncodingParameters> ToRtpEncodings(
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const cricket::StreamParamsVec& stream_params) {
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std::vector<RtpEncodingParameters> rtp_encodings;
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for (const cricket::StreamParams& stream_param : stream_params) {
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RtpEncodingParameters rtp_encoding;
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rtp_encoding.ssrc.emplace(stream_param.first_ssrc());
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rtp_encodings.push_back(std::move(rtp_encoding));
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}
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return rtp_encodings;
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}
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template <typename C>
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cricket::MediaType KindOfCodec();
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template <>
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cricket::MediaType KindOfCodec<cricket::AudioCodec>() {
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return cricket::MEDIA_TYPE_AUDIO;
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}
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template <>
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cricket::MediaType KindOfCodec<cricket::VideoCodec>() {
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return cricket::MEDIA_TYPE_VIDEO;
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}
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template <typename C>
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static void ToRtpCodecCapabilityTypeSpecific(const C& cricket_codec,
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RtpCodecCapability* codec);
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template <>
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void ToRtpCodecCapabilityTypeSpecific<cricket::AudioCodec>(
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const cricket::AudioCodec& cricket_codec,
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RtpCodecCapability* codec) {
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codec->num_channels = static_cast<int>(cricket_codec.channels);
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}
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template <>
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void ToRtpCodecCapabilityTypeSpecific<cricket::VideoCodec>(
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const cricket::VideoCodec& cricket_codec,
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RtpCodecCapability* codec) {}
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template <typename C>
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RtpCodecCapability ToRtpCodecCapability(const C& cricket_codec) {
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RtpCodecCapability codec;
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codec.name = cricket_codec.name;
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codec.kind = KindOfCodec<C>();
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codec.clock_rate.emplace(cricket_codec.clockrate);
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codec.preferred_payload_type.emplace(cricket_codec.id);
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for (const cricket::FeedbackParam& cricket_feedback :
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cricket_codec.feedback_params.params()) {
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absl::optional<RtcpFeedback> feedback = ToRtcpFeedback(cricket_feedback);
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if (feedback) {
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codec.rtcp_feedback.push_back(feedback.value());
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}
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}
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ToRtpCodecCapabilityTypeSpecific(cricket_codec, &codec);
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codec.parameters.insert(cricket_codec.params.begin(),
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cricket_codec.params.end());
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return codec;
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}
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template RtpCodecCapability ToRtpCodecCapability<cricket::AudioCodec>(
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const cricket::AudioCodec& cricket_codec);
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template RtpCodecCapability ToRtpCodecCapability<cricket::VideoCodec>(
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const cricket::VideoCodec& cricket_codec);
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template <typename C>
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static void ToRtpCodecParametersTypeSpecific(const C& cricket_codec,
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RtpCodecParameters* codec);
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template <>
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void ToRtpCodecParametersTypeSpecific<cricket::AudioCodec>(
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const cricket::AudioCodec& cricket_codec,
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RtpCodecParameters* codec) {
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codec->num_channels = static_cast<int>(cricket_codec.channels);
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}
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template <>
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void ToRtpCodecParametersTypeSpecific<cricket::VideoCodec>(
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const cricket::VideoCodec& cricket_codec,
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RtpCodecParameters* codec) {}
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template <typename C>
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RtpCodecParameters ToRtpCodecParameters(const C& cricket_codec) {
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RtpCodecParameters codec_param;
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codec_param.name = cricket_codec.name;
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codec_param.kind = KindOfCodec<C>();
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codec_param.clock_rate.emplace(cricket_codec.clockrate);
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codec_param.payload_type = cricket_codec.id;
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for (const cricket::FeedbackParam& cricket_feedback :
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cricket_codec.feedback_params.params()) {
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absl::optional<RtcpFeedback> feedback = ToRtcpFeedback(cricket_feedback);
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if (feedback) {
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codec_param.rtcp_feedback.push_back(feedback.value());
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}
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}
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ToRtpCodecParametersTypeSpecific(cricket_codec, &codec_param);
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codec_param.parameters = cricket_codec.params;
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return codec_param;
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}
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template RtpCodecParameters ToRtpCodecParameters<cricket::AudioCodec>(
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const cricket::AudioCodec& cricket_codec);
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template RtpCodecParameters ToRtpCodecParameters<cricket::VideoCodec>(
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const cricket::VideoCodec& cricket_codec);
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template <class C>
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RtpCapabilities ToRtpCapabilities(
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const std::vector<C>& cricket_codecs,
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const cricket::RtpHeaderExtensions& cricket_extensions) {
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RtpCapabilities capabilities;
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bool have_red = false;
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bool have_ulpfec = false;
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bool have_flexfec = false;
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bool have_rtx = false;
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for (const C& cricket_codec : cricket_codecs) {
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if (cricket_codec.name == cricket::kRedCodecName) {
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have_red = true;
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} else if (cricket_codec.name == cricket::kUlpfecCodecName) {
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have_ulpfec = true;
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} else if (cricket_codec.name == cricket::kFlexfecCodecName) {
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have_flexfec = true;
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} else if (cricket_codec.name == cricket::kRtxCodecName) {
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if (have_rtx) {
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// There should only be one RTX codec entry
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continue;
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}
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have_rtx = true;
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}
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auto codec_capability = ToRtpCodecCapability(cricket_codec);
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if (cricket_codec.name == cricket::kRtxCodecName) {
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// RTX codec should not have any parameter
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codec_capability.parameters.clear();
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}
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capabilities.codecs.push_back(codec_capability);
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}
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for (const RtpExtension& cricket_extension : cricket_extensions) {
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capabilities.header_extensions.emplace_back(cricket_extension.uri,
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cricket_extension.id);
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}
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if (have_red) {
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capabilities.fec.push_back(FecMechanism::RED);
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}
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if (have_red && have_ulpfec) {
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capabilities.fec.push_back(FecMechanism::RED_AND_ULPFEC);
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}
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if (have_flexfec) {
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capabilities.fec.push_back(FecMechanism::FLEXFEC);
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}
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return capabilities;
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}
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template RtpCapabilities ToRtpCapabilities<cricket::AudioCodec>(
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const std::vector<cricket::AudioCodec>& cricket_codecs,
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const cricket::RtpHeaderExtensions& cricket_extensions);
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template RtpCapabilities ToRtpCapabilities<cricket::VideoCodec>(
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const std::vector<cricket::VideoCodec>& cricket_codecs,
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const cricket::RtpHeaderExtensions& cricket_extensions);
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template <class C>
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RtpParameters ToRtpParameters(
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const std::vector<C>& cricket_codecs,
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const cricket::RtpHeaderExtensions& cricket_extensions,
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const cricket::StreamParamsVec& stream_params) {
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RtpParameters rtp_parameters;
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for (const C& cricket_codec : cricket_codecs) {
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rtp_parameters.codecs.push_back(ToRtpCodecParameters(cricket_codec));
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}
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for (const RtpExtension& cricket_extension : cricket_extensions) {
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rtp_parameters.header_extensions.emplace_back(cricket_extension.uri,
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cricket_extension.id);
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}
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rtp_parameters.encodings = ToRtpEncodings(stream_params);
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return rtp_parameters;
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}
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template RtpParameters ToRtpParameters<cricket::AudioCodec>(
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const std::vector<cricket::AudioCodec>& cricket_codecs,
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const cricket::RtpHeaderExtensions& cricket_extensions,
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const cricket::StreamParamsVec& stream_params);
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template RtpParameters ToRtpParameters<cricket::VideoCodec>(
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const std::vector<cricket::VideoCodec>& cricket_codecs,
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const cricket::RtpHeaderExtensions& cricket_extensions,
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const cricket::StreamParamsVec& stream_params);
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} // namespace webrtc
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