2019-07-24 18:40:18 +08:00
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/*
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2020-04-04 20:30:09 +08:00
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* Copyright (c) 2016 The ZLMediaKit project authors. All Rights Reserved.
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2019-07-24 18:40:18 +08:00
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*
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2021-01-17 18:31:50 +08:00
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* This file is part of ZLMediaKit(https://github.com/xia-chu/ZLMediaKit).
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2019-07-24 18:40:18 +08:00
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*
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2020-04-04 20:30:09 +08:00
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* Use of this source code is governed by MIT 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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2019-07-24 18:40:18 +08:00
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*/
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#include "Frame.h"
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2021-02-05 11:51:16 +08:00
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#include "H264.h"
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#include "H265.h"
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2021-03-30 10:59:15 +08:00
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#include "Common/Parser.h"
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2019-07-24 18:40:18 +08:00
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using namespace std;
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using namespace toolkit;
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2021-01-23 09:44:37 +08:00
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namespace toolkit {
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StatisticImp(mediakit::Frame);
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StatisticImp(mediakit::FrameImp);
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}
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2019-07-24 18:40:18 +08:00
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namespace mediakit{
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2021-02-05 11:51:16 +08:00
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template<typename C>
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std::shared_ptr<C> FrameImp::create_l() {
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#if 0
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static ResourcePool<C> packet_pool;
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static onceToken token([]() {
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packet_pool.setSize(1024);
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});
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auto ret = packet_pool.obtain();
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ret->_buffer.clear();
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ret->_prefix_size = 0;
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ret->_dts = 0;
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ret->_pts = 0;
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return ret;
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#else
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return std::shared_ptr<C>(new C());
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#endif
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}
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#define CREATE_FRAME_IMP(C) \
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template<> \
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std::shared_ptr<C> FrameImp::create<C>() { \
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return create_l<C>(); \
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}
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CREATE_FRAME_IMP(FrameImp);
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CREATE_FRAME_IMP(H264Frame);
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CREATE_FRAME_IMP(H265Frame);
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2020-05-11 22:33:10 +08:00
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/**
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* 该对象的功能是把一个不可缓存的帧转换成可缓存的帧
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*/
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class FrameCacheAble : public FrameFromPtr {
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public:
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typedef std::shared_ptr<FrameCacheAble> Ptr;
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FrameCacheAble(const Frame::Ptr &frame){
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if(frame->cacheAble()){
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_frame = frame;
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_ptr = frame->data();
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}else{
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2021-02-05 11:51:16 +08:00
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_buffer = FrameImp::create();
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_buffer->_buffer.assign(frame->data(),frame->size());
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2020-05-11 22:33:10 +08:00
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_ptr = _buffer->data();
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}
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_size = frame->size();
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_dts = frame->dts();
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_pts = frame->pts();
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_prefix_size = frame->prefixSize();
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2020-08-01 10:22:12 +08:00
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_codec_id = frame->getCodecId();
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2020-05-11 22:33:10 +08:00
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_key = frame->keyFrame();
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_config = frame->configFrame();
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}
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2020-08-01 10:22:12 +08:00
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~FrameCacheAble() override = default;
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2020-05-11 22:33:10 +08:00
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/**
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* 可以被缓存
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*/
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bool cacheAble() const override {
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return true;
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}
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bool keyFrame() const override{
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return _key;
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}
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bool configFrame() const override{
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return _config;
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}
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2020-08-01 10:22:12 +08:00
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2020-05-11 22:33:10 +08:00
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private:
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bool _key;
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bool _config;
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2021-01-17 18:31:50 +08:00
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Frame::Ptr _frame;
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2021-02-05 11:51:16 +08:00
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FrameImp::Ptr _buffer;
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2020-05-11 22:33:10 +08:00
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};
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2019-07-24 18:40:18 +08:00
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Frame::Ptr Frame::getCacheAbleFrame(const Frame::Ptr &frame){
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if(frame->cacheAble()){
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return frame;
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}
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return std::make_shared<FrameCacheAble>(frame);
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}
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2021-06-16 11:14:10 +08:00
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TrackType getTrackType(CodecId codecId) {
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switch (codecId) {
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#define XX(name, type, value, str) case name : return type;
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CODEC_MAP(XX)
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#undef XX
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default : return TrackInvalid;
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2020-05-11 22:33:10 +08:00
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}
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}
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2019-07-24 18:40:18 +08:00
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2021-06-16 11:14:10 +08:00
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const char *getCodecName(CodecId codec) {
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2021-03-30 10:59:15 +08:00
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switch (codec) {
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2021-06-16 11:14:10 +08:00
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#define XX(name, type, value, str) case name : return str;
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CODEC_MAP(XX)
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#undef XX
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default : return "invalid";
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2021-03-30 10:59:15 +08:00
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}
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}
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2021-06-16 11:14:10 +08:00
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#define XX(name, type, value, str) {str, name},
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static map<string, CodecId, StrCaseCompare> codec_map = {CODEC_MAP(XX)};
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#undef XX
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2021-03-30 10:59:15 +08:00
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CodecId getCodecId(const string &str){
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auto it = codec_map.find(str);
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return it == codec_map.end() ? CodecInvalid : it->second;
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}
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static map<string, TrackType, StrCaseCompare> track_str_map = {
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{"video", TrackVideo},
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{"audio", TrackAudio},
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{"application", TrackApplication}
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};
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TrackType getTrackType(const string &str) {
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auto it = track_str_map.find(str);
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return it == track_str_map.end() ? TrackInvalid : it->second;
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}
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const char* getTrackString(TrackType type){
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switch (type) {
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case TrackVideo : return "video";
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case TrackAudio : return "audio";
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case TrackApplication : return "application";
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default: return "invalid";
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}
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}
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2020-05-15 18:08:54 +08:00
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const char *CodecInfo::getCodecName() {
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return mediakit::getCodecName(getCodecId());
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}
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TrackType CodecInfo::getTrackType() {
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return mediakit::getTrackType(getCodecId());
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}
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2021-04-26 18:26:07 +08:00
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static size_t constexpr kMaxFrameCacheSize = 100;
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bool FrameMerger::willFlush(const Frame::Ptr &frame) const{
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if (_frameCached.empty()) {
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return false;
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}
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switch (_type) {
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case none : {
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//frame不是完整的帧,我们合并为一帧
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bool new_frame = false;
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switch (frame->getCodecId()) {
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case CodecH264:
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case CodecH265: {
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//如果是新的一帧,前面的缓存需要输出
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new_frame = frame->prefixSize();
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break;
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}
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default: break;
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}
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return new_frame || _frameCached.back()->dts() != frame->dts() || _frameCached.size() > kMaxFrameCacheSize;
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}
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case mp4_nal_size:
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case h264_prefix: {
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if (_frameCached.back()->dts() != frame->dts()) {
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//时间戳变化了
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return true;
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}
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2021-06-15 12:55:55 +08:00
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switch (frame->getCodecId()) {
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case CodecH264 : {
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2021-06-17 19:26:58 +08:00
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auto type = H264_TYPE(frame->data()[frame->prefixSize()]);
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if (frame->data()[frame->prefixSize()+1]&0x80 !=0 && type >=H264Frame::NAL_B_P && type<=H264Frame::NAL_IDR ) {// sei aud pps sps 不判断
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2021-06-17 18:08:35 +08:00
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//264 新一帧的开始,刷新输出
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2021-06-15 12:55:55 +08:00
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return true;
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2021-06-17 18:08:35 +08:00
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}else{
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// 不刷新输出
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return false;
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2021-06-15 12:55:55 +08:00
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}
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break;
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}
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case CodecH265 : {
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if (H265_TYPE(frame->data()[frame->prefixSize()]) == H265Frame::NAL_TRAIL_R) {
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//如果是265的TRAIL_R帧,那么也刷新输出
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return true;
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}
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break;
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}
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default : break;
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2021-04-26 18:26:07 +08:00
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}
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return _frameCached.size() > kMaxFrameCacheSize;
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}
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default: /*不可达*/ assert(0); return true;
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}
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}
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void FrameMerger::doMerge(BufferLikeString &merged, const Frame::Ptr &frame) const{
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switch (_type) {
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case none : {
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merged.append(frame->data(), frame->size());
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break;
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}
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case h264_prefix: {
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if (frame->prefixSize()) {
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merged.append(frame->data(), frame->size());
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} else {
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merged.append("\x00\x00\x00\x01", 4);
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merged.append(frame->data(), frame->size());
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}
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break;
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}
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case mp4_nal_size: {
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uint32_t nalu_size = (uint32_t) (frame->size() - frame->prefixSize());
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nalu_size = htonl(nalu_size);
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merged.append((char *) &nalu_size, 4);
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merged.append(frame->data() + frame->prefixSize(), frame->size() - frame->prefixSize());
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break;
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}
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default: /*不可达*/ assert(0); break;
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}
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}
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void FrameMerger::inputFrame(const Frame::Ptr &frame, const onOutput &cb) {
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if (willFlush(frame)) {
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Frame::Ptr back = _frameCached.back();
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Buffer::Ptr merged_frame = back;
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bool have_idr = back->keyFrame();
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if (_frameCached.size() != 1 || _type == mp4_nal_size) {
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//在MP4模式下,一帧数据也需要在前添加nalu_size
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BufferLikeString merged;
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merged.reserve(back->size() + 1024);
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_frameCached.for_each([&](const Frame::Ptr &frame) {
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doMerge(merged, frame);
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if (frame->keyFrame()) {
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have_idr = true;
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}
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});
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merged_frame = std::make_shared<BufferOffset<BufferLikeString> >(std::move(merged));
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}
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cb(back->dts(), back->pts(), merged_frame, have_idr);
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_frameCached.clear();
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}
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_frameCached.emplace_back(Frame::getCacheAbleFrame(frame));
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}
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FrameMerger::FrameMerger(int type) {
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_type = type;
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}
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void FrameMerger::clear() {
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_frameCached.clear();
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}
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2020-05-11 22:33:10 +08:00
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}//namespace mediakit
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