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https://github.com/kunkundi/crossdesk.git
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[feat] refactor h264 frame assember
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123
src/media/video/assemble_frame/h264_frame_assember.cpp
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123
src/media/video/assemble_frame/h264_frame_assember.cpp
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@@ -0,0 +1,123 @@
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#include "h264_frame_assember.h"
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H264FrameAssembler::H264FrameAssembler() {}
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H264FrameAssembler::~H264FrameAssembler() {}
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int64_t EuclideanMod(int64_t n, int64_t div) {
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return (n %= div) < 0 ? n + div : n;
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}
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template <typename T>
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inline bool AheadOrAt(T a, T b) {
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const T maxDist = std::numeric_limits<T>::max() / 2 + T(1);
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if (a - b == maxDist) return b < a;
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return b - a < maxDist;
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}
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int64_t* GetContinuousSequence(
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std::array<int64_t, MAX_TRACKED_SEQUENCE_SIZE>& last_continuous,
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int64_t unwrapped_seq_num) {
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for (int64_t& last : last_continuous) {
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if (unwrapped_seq_num - 1 == last) {
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return &last;
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}
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}
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return nullptr;
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}
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int64_t H264FrameAssembler::Unwrap(uint16_t seq_num) {
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return (int64_t)seq_num;
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}
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std::vector<std::unique_ptr<RtpPacketH264>>& H264FrameAssembler::InsertPacket(
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std::unique_ptr<RtpPacketH264> rtp_packet) {
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std::vector<std::unique_ptr<RtpPacketH264>> result;
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int64_t unwrapped_seq_num = Unwrap(rtp_packet->SequenceNumber());
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auto& packet_slotted = GetPacketFromBuffer(unwrapped_seq_num);
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if (packet_slotted != nullptr &&
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AheadOrAt(packet_slotted->Timestamp(), rtp_packet->Timestamp())) {
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// The incoming `packet` is old or a duplicate.
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return std::move(result);
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} else {
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packet_slotted = std::move(rtp_packet);
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}
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return std::move(FindFrames(unwrapped_seq_num));
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}
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std::unique_ptr<RtpPacketH264>& H264FrameAssembler::GetPacketFromBuffer(
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int64_t unwrapped_seq_num) {
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return packet_buffer_[EuclideanMod(unwrapped_seq_num,
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MAX_PACKET_BUFFER_SIZE)];
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}
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std::vector<std::unique_ptr<RtpPacketH264>> H264FrameAssembler::FindFrames(
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int64_t unwrapped_seq_num) {
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std::vector<std::unique_ptr<RtpPacketH264>> result;
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RtpPacketH264* packet_slotted = GetPacketFromBuffer(unwrapped_seq_num).get();
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int64_t* last_continuous_unwrapped_seq_num =
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GetContinuousSequence(last_continuous_in_sequence_, unwrapped_seq_num);
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// not continuous or the beginning of a new coded video sequence.
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if (last_continuous_unwrapped_seq_num == nullptr) {
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// if (packet_slotted->FuAStart()) {
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// return result;
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// }
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last_continuous_in_sequence_[last_continuous_in_sequence_index_] =
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unwrapped_seq_num;
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last_continuous_unwrapped_seq_num =
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&last_continuous_in_sequence_[last_continuous_in_sequence_index_];
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last_continuous_in_sequence_index_ =
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(last_continuous_in_sequence_index_ + 1) %
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last_continuous_in_sequence_.size();
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}
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for (int64_t seq_num = unwrapped_seq_num;
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seq_num < unwrapped_seq_num + MAX_PACKET_BUFFER_SIZE;) {
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// Packets that were never assembled into a completed frame will stay in
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// the 'buffer_'. Check that the `packet` sequence number match the expected
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// unwrapped sequence number.
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if (seq_num != Unwrap(packet_slotted->SequenceNumber())) {
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return result;
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}
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*last_continuous_unwrapped_seq_num = seq_num;
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// Last packet of the frame, try to assemble the frame.
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if (packet_slotted->FuAEnd()) {
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uint32_t rtp_timestamp = packet_slotted->Timestamp();
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// Iterate backwards to find where the frame starts.
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for (int64_t seq_num_start = seq_num;
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seq_num_start > seq_num - MAX_PACKET_BUFFER_SIZE; --seq_num_start) {
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auto& prev_packet = GetPacketFromBuffer(seq_num_start - 1);
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if (prev_packet == nullptr ||
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prev_packet->Timestamp() != rtp_timestamp) {
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const auto& current_packet = GetPacketFromBuffer(seq_num_start);
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if (!current_packet->FuAStart()) {
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// First packet of the frame is missing.
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return result;
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}
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for (int64_t seq_num = seq_num_start; seq_num <= seq_num; ++seq_num) {
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auto& packet = GetPacketFromBuffer(seq_num);
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result.push_back(std::move(packet));
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}
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break;
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}
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}
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}
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seq_num++;
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packet_slotted = GetPacketFromBuffer(seq_num).get();
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if (packet_slotted == nullptr) {
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return result;
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}
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}
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return result;
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}
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42
src/media/video/assemble_frame/h264_frame_assember.h
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42
src/media/video/assemble_frame/h264_frame_assember.h
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@@ -0,0 +1,42 @@
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/*
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* @Author: DI JUNKUN
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* @Date: 2025-03-26
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* Copyright (c) 2025 by DI JUNKUN, All Rights Reserved.
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*/
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#ifndef _H264_FRAME_ASSEMBER_H_
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#define _H264_FRAME_ASSEMBER_H_
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#include <array>
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#include "rtp_packet_h264.h"
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#define MAX_PACKET_BUFFER_SIZE 2048
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#define MAX_TRACKED_SEQUENCE_SIZE 5
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class H264FrameAssembler {
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public:
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H264FrameAssembler();
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~H264FrameAssembler();
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public:
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std::vector<std::unique_ptr<RtpPacketH264>>& InsertPacket(
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std::unique_ptr<RtpPacketH264> rtp_packet);
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private:
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int64_t Unwrap(uint16_t seq_num);
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std::unique_ptr<RtpPacketH264>& GetPacketFromBuffer(
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int64_t unwrapped_seq_num);
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std::vector<std::unique_ptr<RtpPacketH264>> FindFrames(
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int64_t unwrapped_seq_num);
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private:
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std::array<std::unique_ptr<RtpPacketH264>, MAX_PACKET_BUFFER_SIZE>
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packet_buffer_;
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std::array<int64_t, MAX_TRACKED_SEQUENCE_SIZE> last_continuous_in_sequence_;
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int64_t last_continuous_in_sequence_index_ = 0;
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};
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#endif
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@@ -248,7 +248,7 @@ class RtpPacket {
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return rtp::PAYLOAD_TYPE(payload_type_);
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}
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uint16_t SequenceNumber() const { return sequence_number_; }
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uint64_t Timestamp() const { return timestamp_; }
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uint32_t Timestamp() const { return timestamp_; }
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uint32_t Ssrc() const { return ssrc_; }
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std::vector<uint32_t> Csrcs() const { return csrcs_; };
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uint16_t ExtensionProfile() const { return extension_profile_; }
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@@ -329,7 +329,7 @@ class RtpPacket {
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// ParseRtpData();
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return sequence_number_;
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}
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uint64_t Timestamp() const {
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uint32_t Timestamp() const {
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// ParseRtpData();
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return timestamp_;
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}
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@@ -195,6 +195,27 @@ void RtpVideoReceiver::InsertRtpPacket(RtpPacket& rtp_packet) {
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ProcessAv1RtpPacket(rtp_packet_av1);
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} else if (rtp_packet.PayloadType() == rtp::PAYLOAD_TYPE::H264 ||
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rtp_packet.PayloadType() == rtp::PAYLOAD_TYPE::H264 - 1) {
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// std::unique_ptr<RtpPacketH264> rtp_packet_h264 =
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// std::make_unique<RtpPacketH264>();
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// if (rtp_packet_h264->Build(rtp_packet.Buffer().data(),
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// rtp_packet.Size())) {
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// std::vector<std::unique_ptr<RtpPacketH264>> complete_frame = std::move(
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// h264_frame_assembler_.InsertPacket(std::move(rtp_packet_h264)));
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// if (!complete_frame.empty()) {
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// for (auto& frame : complete_frame) {
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// ReceivedFrame received_frame(frame->Payload(),
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// frame->PayloadSize());
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// received_frame.SetReceivedTimestamp(clock_->CurrentTime().us());
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// received_frame.SetCapturedTimestamp(
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// (static_cast<int64_t>(frame->Timestamp()) /
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// rtp::kMsToRtpTimestamp -
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// delta_ntp_internal_ms_) *
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// 1000);
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// compelete_video_frame_queue_.push(received_frame);
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// }
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// }
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// }
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RtpPacketH264 rtp_packet_h264;
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if (rtp_packet_h264.Build(rtp_packet.Buffer().data(), rtp_packet.Size())) {
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rtp_packet_h264.GetFrameHeaderInfo();
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@@ -11,6 +11,7 @@
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#include "api/clock/clock.h"
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#include "clock/system_clock.h"
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#include "fec_decoder.h"
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#include "h264_frame_assember.h"
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#include "io_statistics.h"
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#include "nack_requester.h"
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#include "receive_side_congestion_controller.h"
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@@ -125,6 +126,7 @@ class RtpVideoReceiver : public ThreadBase,
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missing_sequence_numbers_;
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std::unordered_map<uint64_t, uint16_t> fua_end_sequence_numbers_;
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std::unordered_map<uint64_t, int64_t> missing_sequence_numbers_wait_time_;
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H264FrameAssembler h264_frame_assembler_;
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private:
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std::thread rtcp_thread_;
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@@ -149,7 +149,7 @@ target("transport")
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target("media")
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set_kind("object")
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add_deps("log", "frame", "common")
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add_deps("log", "frame", "common", "rtp")
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if is_os("windows") then
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add_files("src/media/video/encode/*.cpp",
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"src/media/video/decode/*.cpp",
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@@ -214,10 +214,12 @@ target("media")
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end
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add_files("src/media/audio/encode/*.cpp",
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"src/media/audio/decode/*.cpp",
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"src/media/resolution_adapter/*.cpp")
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"src/media/resolution_adapter/*.cpp",
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"src/media/video/assemble_frame/*.cpp")
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add_includedirs("src/media/audio/encode",
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"src/media/audio/decode",
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"src/media/resolution_adapter",
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"src/media/video/assemble_frame",
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"src/interface", {public = true})
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target("pc")
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