This approach extends the H.264 specific information with a packetization mode enum. Status: Parameter is in code. No way to set it yet. Rebase of CL 2009213002 BUG=600254 Review-Url: https://codereview.webrtc.org/2337453002 Cr-Commit-Position: refs/heads/master@{#15032}
167 lines
6.1 KiB
C++
167 lines
6.1 KiB
C++
/*
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* Copyright (c) 2015 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/video/payload_router.h"
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#include "webrtc/base/checks.h"
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#include "webrtc/modules/rtp_rtcp/include/rtp_rtcp.h"
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#include "webrtc/modules/rtp_rtcp/include/rtp_rtcp_defines.h"
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#include "webrtc/modules/video_coding/include/video_codec_interface.h"
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namespace webrtc {
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namespace {
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// Map information from info into rtp.
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void CopyCodecSpecific(const CodecSpecificInfo* info, RTPVideoHeader* rtp) {
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RTC_DCHECK(info);
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switch (info->codecType) {
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case kVideoCodecVP8: {
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rtp->codec = kRtpVideoVp8;
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rtp->codecHeader.VP8.InitRTPVideoHeaderVP8();
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rtp->codecHeader.VP8.pictureId = info->codecSpecific.VP8.pictureId;
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rtp->codecHeader.VP8.nonReference = info->codecSpecific.VP8.nonReference;
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rtp->codecHeader.VP8.temporalIdx = info->codecSpecific.VP8.temporalIdx;
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rtp->codecHeader.VP8.layerSync = info->codecSpecific.VP8.layerSync;
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rtp->codecHeader.VP8.tl0PicIdx = info->codecSpecific.VP8.tl0PicIdx;
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rtp->codecHeader.VP8.keyIdx = info->codecSpecific.VP8.keyIdx;
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rtp->simulcastIdx = info->codecSpecific.VP8.simulcastIdx;
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return;
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}
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case kVideoCodecVP9: {
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rtp->codec = kRtpVideoVp9;
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rtp->codecHeader.VP9.InitRTPVideoHeaderVP9();
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rtp->codecHeader.VP9.inter_pic_predicted =
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info->codecSpecific.VP9.inter_pic_predicted;
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rtp->codecHeader.VP9.flexible_mode =
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info->codecSpecific.VP9.flexible_mode;
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rtp->codecHeader.VP9.ss_data_available =
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info->codecSpecific.VP9.ss_data_available;
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rtp->codecHeader.VP9.picture_id = info->codecSpecific.VP9.picture_id;
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rtp->codecHeader.VP9.tl0_pic_idx = info->codecSpecific.VP9.tl0_pic_idx;
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rtp->codecHeader.VP9.temporal_idx = info->codecSpecific.VP9.temporal_idx;
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rtp->codecHeader.VP9.spatial_idx = info->codecSpecific.VP9.spatial_idx;
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rtp->codecHeader.VP9.temporal_up_switch =
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info->codecSpecific.VP9.temporal_up_switch;
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rtp->codecHeader.VP9.inter_layer_predicted =
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info->codecSpecific.VP9.inter_layer_predicted;
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rtp->codecHeader.VP9.gof_idx = info->codecSpecific.VP9.gof_idx;
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rtp->codecHeader.VP9.num_spatial_layers =
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info->codecSpecific.VP9.num_spatial_layers;
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if (info->codecSpecific.VP9.ss_data_available) {
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rtp->codecHeader.VP9.spatial_layer_resolution_present =
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info->codecSpecific.VP9.spatial_layer_resolution_present;
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if (info->codecSpecific.VP9.spatial_layer_resolution_present) {
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for (size_t i = 0; i < info->codecSpecific.VP9.num_spatial_layers;
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++i) {
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rtp->codecHeader.VP9.width[i] = info->codecSpecific.VP9.width[i];
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rtp->codecHeader.VP9.height[i] = info->codecSpecific.VP9.height[i];
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}
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}
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rtp->codecHeader.VP9.gof.CopyGofInfoVP9(info->codecSpecific.VP9.gof);
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}
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rtp->codecHeader.VP9.num_ref_pics = info->codecSpecific.VP9.num_ref_pics;
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for (int i = 0; i < info->codecSpecific.VP9.num_ref_pics; ++i)
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rtp->codecHeader.VP9.pid_diff[i] = info->codecSpecific.VP9.p_diff[i];
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return;
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}
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case kVideoCodecH264:
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rtp->codec = kRtpVideoH264;
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rtp->codecHeader.H264.packetization_mode =
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info->codecSpecific.H264.packetization_mode;
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return;
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case kVideoCodecGeneric:
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rtp->codec = kRtpVideoGeneric;
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rtp->simulcastIdx = info->codecSpecific.generic.simulcast_idx;
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return;
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default:
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return;
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}
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}
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} // namespace
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PayloadRouter::PayloadRouter(const std::vector<RtpRtcp*>& rtp_modules,
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int payload_type)
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: active_(false),
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rtp_modules_(rtp_modules),
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payload_type_(payload_type) {
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}
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PayloadRouter::~PayloadRouter() {}
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size_t PayloadRouter::DefaultMaxPayloadLength() {
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const size_t kIpUdpSrtpLength = 44;
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return IP_PACKET_SIZE - kIpUdpSrtpLength;
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}
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void PayloadRouter::set_active(bool active) {
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rtc::CritScope lock(&crit_);
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if (active_ == active)
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return;
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active_ = active;
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for (auto& module : rtp_modules_) {
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module->SetSendingStatus(active_);
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module->SetSendingMediaStatus(active_);
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}
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}
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bool PayloadRouter::active() {
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rtc::CritScope lock(&crit_);
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return active_ && !rtp_modules_.empty();
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}
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EncodedImageCallback::Result PayloadRouter::OnEncodedImage(
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const EncodedImage& encoded_image,
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const CodecSpecificInfo* codec_specific_info,
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const RTPFragmentationHeader* fragmentation) {
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rtc::CritScope lock(&crit_);
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RTC_DCHECK(!rtp_modules_.empty());
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if (!active_)
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return Result(Result::ERROR_SEND_FAILED);
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int stream_index = 0;
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RTPVideoHeader rtp_video_header;
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memset(&rtp_video_header, 0, sizeof(RTPVideoHeader));
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if (codec_specific_info)
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CopyCodecSpecific(codec_specific_info, &rtp_video_header);
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rtp_video_header.rotation = encoded_image.rotation_;
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rtp_video_header.playout_delay = encoded_image.playout_delay_;
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stream_index = rtp_video_header.simulcastIdx;
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uint32_t frame_id;
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int send_result = rtp_modules_[stream_index]->SendOutgoingData(
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encoded_image._frameType, payload_type_, encoded_image._timeStamp,
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encoded_image.capture_time_ms_, encoded_image._buffer,
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encoded_image._length, fragmentation, &rtp_video_header, &frame_id);
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RTC_DCHECK_LT(rtp_video_header.simulcastIdx, rtp_modules_.size());
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if (send_result < 0)
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return Result(Result::ERROR_SEND_FAILED);
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return Result(Result::OK, frame_id);
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}
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size_t PayloadRouter::MaxPayloadLength() const {
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size_t min_payload_length = DefaultMaxPayloadLength();
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rtc::CritScope lock(&crit_);
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for (size_t i = 0; i < rtp_modules_.size(); ++i) {
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size_t module_payload_length = rtp_modules_[i]->MaxDataPayloadLength();
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if (module_payload_length < min_payload_length)
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min_payload_length = module_payload_length;
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}
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return min_payload_length;
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}
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} // namespace webrtc
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