261 lines
8.4 KiB
C++
261 lines
8.4 KiB
C++
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/*
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* Copyright (c) 2016-present The ZLMediaKit project authors. All Rights Reserved.
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*
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* This file is part of ZLMediaKit(https://github.com/ZLMediaKit/ZLMediaKit).
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*
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* Use of this source code is governed by MIT-like license that can be found in the
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* LICENSE file in the root of the source tree. All contributing project authors
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* may be found in the AUTHORS file in the root of the source tree.
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*/
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#if defined(ENABLE_MP4)
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#include "MP4Muxer.h"
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#include "Common/config.h"
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using namespace std;
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using namespace toolkit;
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namespace mediakit {
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MP4Muxer::~MP4Muxer() {
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closeMP4();
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}
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void MP4Muxer::openMP4(const string &file) {
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closeMP4();
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_file_name = file;
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_mp4_file = std::make_shared<MP4FileDisk>();
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_mp4_file->openFile(_file_name.data(), "wb+");
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}
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MP4FileIO::Writer MP4Muxer::createWriter() {
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GET_CONFIG(bool, mp4FastStart, Record::kFastStart);
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GET_CONFIG(bool, recordEnableFmp4, Record::kEnableFmp4);
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return _mp4_file->createWriter(mp4FastStart ? MOV_FLAG_FASTSTART : 0, recordEnableFmp4);
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}
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void MP4Muxer::closeMP4() {
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MP4MuxerInterface::resetTracks();
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_mp4_file = nullptr;
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}
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void MP4Muxer::resetTracks() {
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MP4MuxerInterface::resetTracks();
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openMP4(_file_name);
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}
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/////////////////////////////////////////// MP4MuxerInterface /////////////////////////////////////////////
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void MP4MuxerInterface::saveSegment() {
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mp4_writer_save_segment(_mov_writter.get());
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}
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void MP4MuxerInterface::initSegment() {
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mp4_writer_init_segment(_mov_writter.get());
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}
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bool MP4MuxerInterface::haveVideo() const {
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return _have_video;
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}
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uint64_t MP4MuxerInterface::getDuration() const {
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uint64_t ret = 0;
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for (auto &pr : _tracks) {
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if (pr.second.stamp.getRelativeStamp() > (int64_t)ret) {
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ret = pr.second.stamp.getRelativeStamp();
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}
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}
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return ret;
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}
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void MP4MuxerInterface::resetTracks() {
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_started = false;
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_have_video = false;
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_mov_writter = nullptr;
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_tracks.clear();
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}
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void MP4MuxerInterface::flush() {
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for (auto &pr : _tracks) {
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pr.second.merger.flush();
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}
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}
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bool MP4MuxerInterface::inputFrame(const Frame::Ptr &frame) {
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auto it = _tracks.find(frame->getIndex());
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if (it == _tracks.end()) {
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// 该Track不存在或初始化失败 [AUTO-TRANSLATED:316597dc]
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// This Track does not exist or initialization failed
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return false;
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}
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if (!_started) {
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// 该逻辑确保含有视频时,第一帧为关键帧 [AUTO-TRANSLATED:04f177fb]
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// This logic ensures that the first frame is a keyframe when there is video
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if (_have_video && !frame->keyFrame()) {
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// 含有视频,但是不是关键帧,那么前面的帧丢弃 [AUTO-TRANSLATED:5f0ba99e]
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// Contains video, but not a keyframe, then the previous frames are discarded
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return false;
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}
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// 开始写文件 [AUTO-TRANSLATED:bc3f11e2]
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// Start writing the file
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_started = true;
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}
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// fmp4封装超过一定I帧间隔,强制刷新segment,防止内存上涨 [AUTO-TRANSLATED:0be6ef15]
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// fmp4 encapsulation exceeds a certain I-frame interval, force refresh segment to prevent memory increase
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if (frame->getTrackType() == TrackVideo && _mov_writter->fmp4) {
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if (frame->keyFrame()) {
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_non_iframe_video_count = 0;
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} else {
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_non_iframe_video_count++;
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}
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if (_non_iframe_video_count > 200) {
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saveSegment();
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_non_iframe_video_count = 0;
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}
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}
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// mp4文件时间戳需要从0开始 [AUTO-TRANSLATED:c963b841]
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// The mp4 file timestamp needs to start from 0
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auto &track = it->second;
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switch (frame->getCodecId()) {
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case CodecH264:
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case CodecH265: {
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// 这里的代码逻辑是让SPS、PPS、IDR这些时间戳相同的帧打包到一起当做一个帧处理, [AUTO-TRANSLATED:edf57c32]
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// The code logic here is to package frames with the same timestamp, such as SPS, PPS, and IDR, as one frame,
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track.merger.inputFrame(frame, [this, &track](uint64_t dts, uint64_t pts, const Buffer::Ptr &buffer, bool have_idr) {
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int64_t dts_out, pts_out;
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track.stamp.revise(dts, pts, dts_out, pts_out);
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mp4_writer_write(_mov_writter.get(), track.track_id, buffer->data(), buffer->size(), pts_out, dts_out, have_idr ? MOV_AV_FLAG_KEYFREAME : 0);
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});
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break;
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}
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default: {
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int64_t dts_out, pts_out;
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track.stamp.revise(frame->dts(), frame->pts(), dts_out, pts_out);
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mp4_writer_write(_mov_writter.get(), track.track_id, frame->data() + frame->prefixSize(), frame->size() - frame->prefixSize(), pts_out, dts_out, frame->keyFrame() ? MOV_AV_FLAG_KEYFREAME : 0);
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break;
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}
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}
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return true;
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}
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void MP4MuxerInterface::stampSync() {
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Stamp *first = nullptr;
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for (auto &pr : _tracks) {
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if (!first) {
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first = &pr.second.stamp;
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} else {
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pr.second.stamp.syncTo(*first);
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}
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}
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}
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bool MP4MuxerInterface::addTrack(const Track::Ptr &track) {
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if (!_mov_writter) {
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_mov_writter = createWriter();
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}
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auto mp4_object = getMovIdByCodec(track->getCodecId());
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if (mp4_object == MOV_OBJECT_NONE) {
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WarnL << "Unsupported codec: " << track->getCodecName();
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return false;
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}
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if (!track->ready()) {
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WarnL << "Track " << track->getCodecName() << " unready";
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return false;
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}
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track->update();
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auto extra = track->getExtraData();
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auto extra_data = extra ? extra->data() : nullptr;
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auto extra_size = extra ? extra->size() : 0;
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if (track->getTrackType() == TrackVideo) {
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auto video_track = dynamic_pointer_cast<VideoTrack>(track);
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CHECK(video_track);
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auto track_id = mp4_writer_add_video(_mov_writter.get(), mp4_object, video_track->getVideoWidth(), video_track->getVideoHeight(), extra_data, extra_size);
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if (track_id < 0) {
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WarnL << "mp4_writer_add_video failed: " << video_track->getCodecName();
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return false;
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}
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_tracks[track->getIndex()].track_id = track_id;
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_have_video = true;
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_non_iframe_video_count = 0;
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} else if (track->getTrackType() == TrackAudio) {
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auto audio_track = dynamic_pointer_cast<AudioTrack>(track);
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CHECK(audio_track);
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auto track_id = mp4_writer_add_audio(_mov_writter.get(), mp4_object, audio_track->getAudioChannel(), audio_track->getAudioSampleBit() * audio_track->getAudioChannel(), audio_track->getAudioSampleRate(), extra_data, extra_size);
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if (track_id < 0) {
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WarnL << "mp4_writer_add_audio failed: " << audio_track->getCodecName();
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return false;
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}
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_tracks[track->getIndex()].track_id = track_id;
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}
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// 尝试音视频同步 [AUTO-TRANSLATED:5f8b8040]
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// Try audio and video synchronization
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stampSync();
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return true;
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}
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/////////////////////////////////////////// MP4MuxerMemory /////////////////////////////////////////////
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MP4MuxerMemory::MP4MuxerMemory() {
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_memory_file = std::make_shared<MP4FileMemory>();
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}
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MP4FileIO::Writer MP4MuxerMemory::createWriter() {
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return _memory_file->createWriter(MOV_FLAG_SEGMENT, true);
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}
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const string &MP4MuxerMemory::getInitSegment() {
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if (_init_segment.empty()) {
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initSegment();
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saveSegment();
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_init_segment = _memory_file->getAndClearMemory();
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}
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return _init_segment;
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}
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void MP4MuxerMemory::resetTracks() {
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MP4MuxerInterface::resetTracks();
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_memory_file = std::make_shared<MP4FileMemory>();
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_init_segment.clear();
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}
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bool MP4MuxerMemory::inputFrame(const Frame::Ptr &frame) {
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if (_init_segment.empty()) {
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// 尚未生成init segment [AUTO-TRANSLATED:b4baa65f]
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// Init segment has not been generated yet
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return false;
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}
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// flush切片 [AUTO-TRANSLATED:c4358dce]
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// Flush segment
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saveSegment();
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auto data = _memory_file->getAndClearMemory();
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if (!data.empty()) {
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// 输出切片数据 [AUTO-TRANSLATED:4bc994c9]
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// Output segment data
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onSegmentData(std::move(data), _last_dst, _key_frame);
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_key_frame = false;
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}
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if (frame->keyFrame()) {
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_key_frame = true;
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}
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if (frame->getTrackType() == TrackVideo || !haveVideo()) {
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_last_dst = frame->dts();
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}
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return MP4MuxerInterface::inputFrame(frame);
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}
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} // namespace mediakit
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#endif // defined(ENABLE_MP4)
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