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https://github.com/ZLMediaKit/ZLMediaKit.git
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添加按需转协议开关,默认一直转协议:#569
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@ -55,6 +55,21 @@ modifyStamp=0
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#服务器唯一id,用于触发hook时区别是哪台服务器
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#服务器唯一id,用于触发hook时区别是哪台服务器
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mediaServerId=your_server_id
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mediaServerId=your_server_id
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###### 以下是按需转协议的开关,在测试ZLMediaKit的接收推流性能时,请关闭以下全部开关
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###### 如果某种协议你用不到,你可以把以下开关置1以便节省资源(但是还是可以播放,只是第一个播放者体验稍微差点),
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###### 如果某种协议你想获取最好的用户体验,请置1(第一个播放者可以秒开,且不花屏)
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#hls协议是否按需生成,如果hls.segNum配置为0(意味着hls录制),那么hls将一直生成(不管此开关)
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hls_demand=0
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#rtsp[s]协议是否按需生成
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rtsp_demand=0
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#rtmp[s]、http[s]-flv、ws[s]-flv协议是否按需生成
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rtmp_demand=0
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#http[s]-ts协议是否按需生成
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ts_demand=0
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#http[s]-fmp4、ws[s]-fmp4协议是否按需生成
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fmp4_demand=0
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[hls]
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[hls]
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#hls写文件的buf大小,调整参数可以提高文件io性能
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#hls写文件的buf大小,调整参数可以提高文件io性能
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fileBufSize=65536
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fileBufSize=65536
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@ -69,6 +69,11 @@ const string kPublishToHls = GENERAL_FIELD"publishToHls";
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const string kPublishToMP4 = GENERAL_FIELD"publishToMP4";
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const string kPublishToMP4 = GENERAL_FIELD"publishToMP4";
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const string kMergeWriteMS = GENERAL_FIELD"mergeWriteMS";
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const string kMergeWriteMS = GENERAL_FIELD"mergeWriteMS";
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const string kModifyStamp = GENERAL_FIELD"modifyStamp";
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const string kModifyStamp = GENERAL_FIELD"modifyStamp";
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const string kHlsDemand = GENERAL_FIELD"hls_demand";
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const string kRtspDemand = GENERAL_FIELD"rtsp_demand";
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const string kRtmpDemand = GENERAL_FIELD"rtmp_demand";
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const string kTSDemand = GENERAL_FIELD"ts_demand";
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const string kFMP4Demand = GENERAL_FIELD"fmp4_demand";
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onceToken token([](){
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onceToken token([](){
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mINI::Instance()[kFlowThreshold] = 1024;
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mINI::Instance()[kFlowThreshold] = 1024;
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@ -181,6 +181,12 @@ extern const string kPublishToMP4 ;
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extern const string kMergeWriteMS ;
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extern const string kMergeWriteMS ;
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//全局的时间戳覆盖开关,在转协议时,对frame进行时间戳覆盖
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//全局的时间戳覆盖开关,在转协议时,对frame进行时间戳覆盖
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extern const string kModifyStamp;
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extern const string kModifyStamp;
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//按需转协议的开关
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extern const string kHlsDemand;
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extern const string kRtspDemand;
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extern const string kRtmpDemand;
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extern const string kTSDemand;
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extern const string kFMP4Demand;
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}//namespace General
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}//namespace General
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@ -41,26 +41,29 @@ public:
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}
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}
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void onReaderChanged(MediaSource &sender, int size) override {
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void onReaderChanged(MediaSource &sender, int size) override {
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_enabled = size;
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GET_CONFIG(bool, fmp4_demand, General::kFMP4Demand);
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if (!size) {
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_enabled = fmp4_demand ? size : true;
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if (!size && fmp4_demand) {
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_clear_cache = true;
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_clear_cache = true;
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}
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}
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MediaSourceEventInterceptor::onReaderChanged(sender, size);
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MediaSourceEventInterceptor::onReaderChanged(sender, size);
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}
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}
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void inputFrame(const Frame::Ptr &frame) override {
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void inputFrame(const Frame::Ptr &frame) override {
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if (_clear_cache) {
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GET_CONFIG(bool, fmp4_demand, General::kFMP4Demand);
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if (_clear_cache && fmp4_demand) {
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_clear_cache = false;
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_clear_cache = false;
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_media_src->clearCache();
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_media_src->clearCache();
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}
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}
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if (_enabled) {
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if (_enabled || !fmp4_demand) {
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MP4MuxerMemory::inputFrame(frame);
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MP4MuxerMemory::inputFrame(frame);
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}
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}
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}
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}
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bool isEnabled() {
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bool isEnabled() {
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GET_CONFIG(bool, fmp4_demand, General::kFMP4Demand);
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//缓存尚未清空时,还允许触发inputFrame函数,以便及时清空缓存
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//缓存尚未清空时,还允许触发inputFrame函数,以便及时清空缓存
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return _clear_cache ? true : _enabled;
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return fmp4_demand ? (_clear_cache ? true : _enabled) : true;
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}
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}
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void onAllTrackReady() {
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void onAllTrackReady() {
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@ -45,9 +45,10 @@ public:
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}
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}
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void onReaderChanged(MediaSource &sender, int size) override {
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void onReaderChanged(MediaSource &sender, int size) override {
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GET_CONFIG(bool, hls_demand, General::kHlsDemand);
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//hls保留切片个数为0时代表为hls录制(不删除切片),那么不管有无观看者都一直生成hls
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//hls保留切片个数为0时代表为hls录制(不删除切片),那么不管有无观看者都一直生成hls
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_enabled = _hls->isLive() ? size : true;
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_enabled = hls_demand ? (_hls->isLive() ? size : true) : true;
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if (!size && _hls->isLive()) {
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if (!size && _hls->isLive() && hls_demand) {
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//hls直播时,如果无人观看就删除视频缓存,目的是为了防止视频跳跃
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//hls直播时,如果无人观看就删除视频缓存,目的是为了防止视频跳跃
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_clear_cache = true;
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_clear_cache = true;
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}
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}
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@ -55,16 +56,18 @@ public:
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}
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}
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bool isEnabled() {
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bool isEnabled() {
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GET_CONFIG(bool, hls_demand, General::kHlsDemand);
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//缓存尚未清空时,还允许触发inputFrame函数,以便及时清空缓存
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//缓存尚未清空时,还允许触发inputFrame函数,以便及时清空缓存
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return _clear_cache ? true : _enabled;
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return hls_demand ? (_clear_cache ? true : _enabled) : true;
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}
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}
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void inputFrame(const Frame::Ptr &frame) override{
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void inputFrame(const Frame::Ptr &frame) override {
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if (_clear_cache) {
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GET_CONFIG(bool, hls_demand, General::kHlsDemand);
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if (_clear_cache && hls_demand) {
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_clear_cache = false;
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_clear_cache = false;
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_hls->clearCache();
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_hls->clearCache();
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}
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}
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if (_enabled) {
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if (_enabled || !hls_demand) {
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TsMuxer::inputFrame(frame);
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TsMuxer::inputFrame(frame);
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}
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}
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}
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}
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@ -50,26 +50,29 @@ public:
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}
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}
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void onReaderChanged(MediaSource &sender, int size) override {
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void onReaderChanged(MediaSource &sender, int size) override {
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_enabled = size;
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GET_CONFIG(bool, rtmp_demand, General::kRtmpDemand);
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if (!size) {
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_enabled = rtmp_demand ? size : true;
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if (!size && rtmp_demand) {
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_clear_cache = true;
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_clear_cache = true;
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}
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}
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MediaSourceEventInterceptor::onReaderChanged(sender, size);
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MediaSourceEventInterceptor::onReaderChanged(sender, size);
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}
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}
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void inputFrame(const Frame::Ptr &frame) override {
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void inputFrame(const Frame::Ptr &frame) override {
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if (_clear_cache) {
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GET_CONFIG(bool, rtmp_demand, General::kRtmpDemand);
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if (_clear_cache && rtmp_demand) {
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_clear_cache = false;
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_clear_cache = false;
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_media_src->clearCache();
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_media_src->clearCache();
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}
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}
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if (_enabled) {
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if (_enabled || !rtmp_demand) {
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RtmpMuxer::inputFrame(frame);
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RtmpMuxer::inputFrame(frame);
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}
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}
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}
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}
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bool isEnabled() {
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bool isEnabled() {
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GET_CONFIG(bool, rtmp_demand, General::kRtmpDemand);
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//缓存尚未清空时,还允许触发inputFrame函数,以便及时清空缓存
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//缓存尚未清空时,还允许触发inputFrame函数,以便及时清空缓存
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return _clear_cache ? true : _enabled;
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return rtmp_demand ? (_clear_cache ? true : _enabled) : true;
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}
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}
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private:
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private:
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@ -49,26 +49,29 @@ public:
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}
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}
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void onReaderChanged(MediaSource &sender, int size) override {
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void onReaderChanged(MediaSource &sender, int size) override {
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_enabled = size;
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GET_CONFIG(bool, rtsp_demand, General::kRtspDemand);
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if (!size) {
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_enabled = rtsp_demand ? size : true;
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if (!size && rtsp_demand) {
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_clear_cache = true;
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_clear_cache = true;
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}
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}
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MediaSourceEventInterceptor::onReaderChanged(sender, size);
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MediaSourceEventInterceptor::onReaderChanged(sender, size);
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}
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}
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void inputFrame(const Frame::Ptr &frame) override {
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void inputFrame(const Frame::Ptr &frame) override {
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if (_clear_cache) {
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GET_CONFIG(bool, rtsp_demand, General::kRtspDemand);
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if (_clear_cache && rtsp_demand) {
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_clear_cache = false;
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_clear_cache = false;
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_media_src->clearCache();
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_media_src->clearCache();
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}
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}
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if (_enabled) {
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if (_enabled || !rtsp_demand) {
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RtspMuxer::inputFrame(frame);
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RtspMuxer::inputFrame(frame);
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}
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}
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}
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}
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bool isEnabled() {
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bool isEnabled() {
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GET_CONFIG(bool, rtsp_demand, General::kRtspDemand);
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//缓存尚未清空时,还允许触发inputFrame函数,以便及时清空缓存
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//缓存尚未清空时,还允许触发inputFrame函数,以便及时清空缓存
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return _clear_cache ? true : _enabled;
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return rtsp_demand ? (_clear_cache ? true : _enabled) : true;
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}
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}
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private:
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private:
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@ -40,26 +40,29 @@ public:
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}
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}
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void onReaderChanged(MediaSource &sender, int size) override {
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void onReaderChanged(MediaSource &sender, int size) override {
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_enabled = size;
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GET_CONFIG(bool, ts_demand, General::kTSDemand);
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if (!size) {
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_enabled = ts_demand ? size : true;
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if (!size && ts_demand) {
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_clear_cache = true;
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_clear_cache = true;
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}
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}
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MediaSourceEventInterceptor::onReaderChanged(sender, size);
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MediaSourceEventInterceptor::onReaderChanged(sender, size);
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}
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}
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void inputFrame(const Frame::Ptr &frame) override {
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void inputFrame(const Frame::Ptr &frame) override {
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if (_clear_cache) {
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GET_CONFIG(bool, ts_demand, General::kTSDemand);
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if (_clear_cache && ts_demand) {
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_clear_cache = false;
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_clear_cache = false;
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_media_src->clearCache();
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_media_src->clearCache();
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}
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}
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if (_enabled) {
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if (_enabled || !ts_demand) {
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TsMuxer::inputFrame(frame);
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TsMuxer::inputFrame(frame);
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}
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}
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}
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}
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bool isEnabled() {
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bool isEnabled() {
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GET_CONFIG(bool, ts_demand, General::kTSDemand);
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//缓存尚未清空时,还允许触发inputFrame函数,以便及时清空缓存
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//缓存尚未清空时,还允许触发inputFrame函数,以便及时清空缓存
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return _clear_cache ? true : _enabled;
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return ts_demand ? (_clear_cache ? true : _enabled) : true;
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}
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}
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protected:
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protected:
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