mirror of
https://github.com/ZLMediaKit/ZLMediaKit.git
synced 2024-10-30 16:27:36 +08:00
整理代码
This commit is contained in:
parent
430229fe94
commit
8f730b8dab
@ -192,10 +192,11 @@ bool FrameMerger::willFlush(const Frame::Ptr &frame) const{
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switch (frame->getCodecId()) {
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case CodecH264 : {
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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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if ((frame->data()[frame->prefixSize() + 1] & 0x80) != 0 && type >= H264Frame::NAL_B_P &&
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type <= H264Frame::NAL_IDR) {// sei aud pps sps 不判断
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//264 新一帧的开始,刷新输出
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return true;
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}else{
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} else {
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// 不刷新输出
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return false;
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}
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@ -203,10 +204,11 @@ bool FrameMerger::willFlush(const Frame::Ptr &frame) const{
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}
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case CodecH265 : {
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auto type = H265_TYPE(frame->data()[frame->prefixSize()]);
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if ((type>=H265Frame::NAL_TRAIL_R &&type<= H265Frame::NAL_RSV_IRAP_VCL23) && ( (frame->data()[frame->prefixSize()+2]>>7 & 0x01) != 0)) {
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if ((type >= H265Frame::NAL_TRAIL_R && type <= H265Frame::NAL_RSV_IRAP_VCL23) &&
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((frame->data()[frame->prefixSize() + 2] >> 7 & 0x01) != 0)) {
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//first_slice_segment_in_pic_flag is frame start
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return true;
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}else{
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} else {
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return false;
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}
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break;
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@ -244,64 +246,68 @@ void FrameMerger::doMerge(BufferLikeString &merged, const Frame::Ptr &frame) con
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default: /*不可达*/ assert(0); break;
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}
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}
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bool FrameMerger::shouldDrop(const Frame::Ptr &frame) const{
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switch (frame->getCodecId()) {
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case CodecH264:{
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auto type = H264_TYPE(frame->data()[frame->prefixSize()]);
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if(type == H264Frame::NAL_SEI || type == H264Frame::NAL_AUD){
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// 防止吧AUD或者SEI当成一帧
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return true;
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}
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break;
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}
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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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auto type = H265_TYPE(frame->data()[frame->prefixSize()]);
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if(type == H265Frame::NAL_AUD || type == H265Frame::NAL_SEI_PREFIX || type == H265Frame::NAL_SEI_SUFFIX){
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// 防止吧AUD或者SEI当成一帧
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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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case CodecH264: {
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auto type = H264_TYPE(frame->data()[frame->prefixSize()]);
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if (type == H264Frame::NAL_SEI || type == H264Frame::NAL_AUD) {
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// 防止吧AUD或者SEI当成一帧
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return true;
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}
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break;
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}
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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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auto type = H265_TYPE(frame->data()[frame->prefixSize()]);
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if (type == H265Frame::NAL_AUD || type == H265Frame::NAL_SEI_PREFIX || type == H265Frame::NAL_SEI_SUFFIX) {
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// 防止吧AUD或者SEI当成一帧
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return true;
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}
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break;
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}
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default:
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break;
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}
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return false;
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}
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bool FrameMerger::frameCacheHasVCL(List<Frame::Ptr> &frameCached) const{
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bool FrameMerger::frameCacheHasVCL(List<Frame::Ptr> &frameCached) const {
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bool hasVCL = false;
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bool isH264OrH265 = false;
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frameCached.for_each([&hasVCL,&isH264OrH265](const Frame::Ptr &frame){
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frameCached.for_each([&hasVCL, &isH264OrH265](const Frame::Ptr &frame) {
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switch (frame->getCodecId()) {
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case CodecH264:{
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auto type = H264_TYPE(frame->data()[frame->prefixSize()]);
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if(type >=H264Frame::NAL_B_P && type <= H264Frame::NAL_IDR){
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//有编码数据
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hasVCL=true;
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}
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isH264OrH265 = true;
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break;
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case CodecH264: {
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auto type = H264_TYPE(frame->data()[frame->prefixSize()]);
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if (type >= H264Frame::NAL_B_P && type <= H264Frame::NAL_IDR) {
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//有编码数据
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hasVCL = true;
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}
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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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auto type = H265_TYPE(frame->data()[frame->prefixSize()]);
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if(type>=H265Frame::NAL_TRAIL_R &&type<= H265Frame::NAL_RSV_IRAP_VCL23){
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//有编码数据
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hasVCL=true;
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}
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isH264OrH265 = true;
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break;
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}
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default: break;
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isH264OrH265 = true;
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break;
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}
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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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auto type = H265_TYPE(frame->data()[frame->prefixSize()]);
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if (type >= H265Frame::NAL_TRAIL_R && type <= H265Frame::NAL_RSV_IRAP_VCL23) {
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//有编码数据
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hasVCL = true;
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}
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isH264OrH265 = true;
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break;
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}
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default:
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break;
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}
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});
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if(isH264OrH265){
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return hasVCL;
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if (isH264OrH265) {
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return hasVCL;
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}
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return true;
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}
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void FrameMerger::inputFrame(const Frame::Ptr &frame, const onOutput &cb) {
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if(shouldDrop(frame)){
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if (shouldDrop(frame)) {
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return;
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}
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if (willFlush(frame) && frameCacheHasVCL(_frameCached)) {
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@ -95,22 +95,21 @@ void H264RtmpDecoder::inputRtmp(const RtmpPacket::Ptr &pkt) {
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}
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if (pkt->buffer.size() > 9) {
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auto iTotalLen = pkt->buffer.size();
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size_t iOffset = 5;
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auto total_len = pkt->buffer.size();
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size_t offset = 5;
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uint8_t *cts_ptr = (uint8_t *) (pkt->buffer.data() + 2);
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int32_t cts = (((cts_ptr[0] << 16) | (cts_ptr[1] << 8) | (cts_ptr[2])) + 0xff800000) ^ 0xff800000;
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auto pts = pkt->time_stamp + cts;
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while(iOffset + 4 < iTotalLen){
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uint32_t iFrameLen;
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memcpy(&iFrameLen, pkt->buffer.data() + iOffset, 4);
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iFrameLen = ntohl(iFrameLen);
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iOffset += 4;
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if(iFrameLen + iOffset > iTotalLen){
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while (offset + 4 < total_len) {
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uint32_t frame_len;
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memcpy(&frame_len, pkt->buffer.data() + offset, 4);
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frame_len = ntohl(frame_len);
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offset += 4;
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if (frame_len + offset > total_len) {
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break;
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}
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onGetH264(pkt->buffer.data() + iOffset, iFrameLen, pkt->time_stamp , pts);
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iOffset += iFrameLen;
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onGetH264(pkt->buffer.data() + offset, frame_len, pkt->time_stamp, pts);
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offset += frame_len;
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}
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}
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}
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@ -151,79 +150,73 @@ void H264RtmpEncoder::makeConfigPacket(){
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if (!_sps.empty() && !_pps.empty()) {
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//获取到sps/pps
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makeVideoConfigPkt();
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_gotSpsPps = true;
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_got_config_frame = true;
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}
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}
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void H264RtmpEncoder::inputFrame(const Frame::Ptr &frame) {
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auto pcData = frame->data() + frame->prefixSize();
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auto iLen = frame->size() - frame->prefixSize();
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auto type = H264_TYPE(((uint8_t*)pcData)[0]);
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if(type == H264Frame::NAL_SEI || type == H264Frame::NAL_AUD){
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return;
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}
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if (!_gotSpsPps) {
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//尝试从frame中获取sps pps
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switch (type) {
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case H264Frame::NAL_SPS: {
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//sps
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_sps = string(pcData, iLen);
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auto data = frame->data() + frame->prefixSize();
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auto len = frame->size() - frame->prefixSize();
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auto type = H264_TYPE(((uint8_t*)data)[0]);
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switch (type) {
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case H264Frame::NAL_SEI:
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case H264Frame::NAL_AUD: return;
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case H264Frame::NAL_SPS: {
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if (!_got_config_frame) {
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_sps = string(data, len);
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makeConfigPacket();
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break;
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}
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case H264Frame::NAL_PPS: {
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//pps
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_pps = string(pcData, iLen);
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makeConfigPacket();
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break;
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}
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default:
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break;
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break;
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}
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case H264Frame::NAL_PPS: {
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if (!_got_config_frame) {
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_pps = string(data, len);
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makeConfigPacket();
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}
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break;
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}
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default : break;
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}
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if(frame->configFrame() && _lastPacket &&_lastPacketHasVCL){
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if (frame->configFrame() && _rtmp_packet && _has_vcl) {
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//sps pps flush frame
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RtmpCodec::inputRtmp(_lastPacket);
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_lastPacket = nullptr;
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_lastPacketHasVCL = false;
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RtmpCodec::inputRtmp(_rtmp_packet);
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_has_vcl = false;
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_rtmp_packet = nullptr;
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}
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if(_lastPacket && (_lastPacket->time_stamp != frame->dts() || ((pcData[1]&0x80) != 0 && type>=H264Frame::NAL_B_P && type<=H264Frame::NAL_IDR && _lastPacketHasVCL))) {
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RtmpCodec::inputRtmp(_lastPacket);
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_lastPacket = nullptr;
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_lastPacketHasVCL = false;
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if (_rtmp_packet && (_rtmp_packet->time_stamp != frame->dts() || ((data[1] & 0x80) != 0 && type >= H264Frame::NAL_B_P && type <= H264Frame::NAL_IDR && _has_vcl))) {
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RtmpCodec::inputRtmp(_rtmp_packet);
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_has_vcl = false;
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_rtmp_packet = nullptr;
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}
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if(type>=H264Frame::NAL_B_P && type<=H264Frame::NAL_IDR){
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_lastPacketHasVCL = true;
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if (type >= H264Frame::NAL_B_P && type <= H264Frame::NAL_IDR) {
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_has_vcl = true;
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}
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if(!_lastPacket) {
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if (!_rtmp_packet) {
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//I or P or B frame
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int8_t flags = FLV_CODEC_H264;
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bool is_config = false;
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flags |= (((frame->configFrame() || frame->keyFrame()) ? FLV_KEY_FRAME : FLV_INTER_FRAME) << 4);
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_lastPacket = RtmpPacket::create();
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_lastPacket->buffer.push_back(flags);
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_lastPacket->buffer.push_back(!is_config);
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_rtmp_packet = RtmpPacket::create();
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_rtmp_packet->buffer.push_back(flags);
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_rtmp_packet->buffer.push_back(!is_config);
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int32_t cts = frame->pts() - frame->dts();
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if (cts < 0) {
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cts = 0;
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}
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cts = htonl(cts);
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_lastPacket->buffer.append((char *)&cts + 1, 3);
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_lastPacket->chunk_id = CHUNK_VIDEO;
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_lastPacket->stream_index = STREAM_MEDIA;
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_lastPacket->time_stamp = frame->dts();
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_lastPacket->type_id = MSG_VIDEO;
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_rtmp_packet->buffer.append((char *) &cts + 1, 3);
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_rtmp_packet->chunk_id = CHUNK_VIDEO;
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_rtmp_packet->stream_index = STREAM_MEDIA;
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_rtmp_packet->time_stamp = frame->dts();
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_rtmp_packet->type_id = MSG_VIDEO;
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}
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uint32_t size = htonl((uint32_t)iLen);
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_lastPacket->buffer.append((char *) &size, 4);
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_lastPacket->buffer.append(pcData, iLen);
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_lastPacket->body_size = _lastPacket->buffer.size();
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uint32_t size = htonl((uint32_t) len);
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_rtmp_packet->buffer.append((char *) &size, 4);
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_rtmp_packet->buffer.append(data, len);
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_rtmp_packet->body_size = _rtmp_packet->buffer.size();
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}
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void H264RtmpEncoder::makeVideoConfigPkt() {
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@ -78,10 +78,10 @@ public:
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private:
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void makeVideoConfigPkt();
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private:
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bool _has_vcl = false;
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bool _got_config_frame = false;
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H264Track::Ptr _track;
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bool _gotSpsPps = false;
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bool _lastPacketHasVCL = false;
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RtmpPacket::Ptr _lastPacket;
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RtmpPacket::Ptr _rtmp_packet;
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};
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}//namespace mediakit
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@ -64,7 +64,7 @@ bool H265Frame::configFrame() const {
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}
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bool H265Frame::isKeyFrame(int type, const char *ptr) {
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if(ptr){
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if (ptr) {
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return (((*((uint8_t *) ptr + 2)) >> 7) & 0x01) == 1 && (type == NAL_IDR_N_LP || type == NAL_IDR_W_RADL);
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}
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return false;
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@ -73,22 +73,21 @@ void H265RtmpDecoder::inputRtmp(const RtmpPacket::Ptr &pkt) {
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}
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if (pkt->buffer.size() > 9) {
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auto iTotalLen = pkt->buffer.size();
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size_t iOffset = 5;
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auto total_len = pkt->buffer.size();
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size_t offset = 5;
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uint8_t *cts_ptr = (uint8_t *) (pkt->buffer.data() + 2);
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int32_t cts = (((cts_ptr[0] << 16) | (cts_ptr[1] << 8) | (cts_ptr[2])) + 0xff800000) ^ 0xff800000;
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auto pts = pkt->time_stamp + cts;
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while(iOffset + 4 < iTotalLen){
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uint32_t iFrameLen;
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memcpy(&iFrameLen, pkt->buffer.data() + iOffset, 4);
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iFrameLen = ntohl(iFrameLen);
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iOffset += 4;
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if(iFrameLen + iOffset > iTotalLen){
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while (offset + 4 < total_len) {
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uint32_t frame_len;
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memcpy(&frame_len, pkt->buffer.data() + offset, 4);
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frame_len = ntohl(frame_len);
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offset += 4;
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if (frame_len + offset > total_len) {
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break;
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}
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onGetH265(pkt->buffer.data() + iOffset, iFrameLen, pkt->time_stamp , pts);
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iOffset += iFrameLen;
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onGetH265(pkt->buffer.data() + offset, frame_len, pkt->time_stamp, pts);
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offset += frame_len;
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}
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}
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}
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@ -130,87 +129,85 @@ void H265RtmpEncoder::makeConfigPacket(){
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if (!_sps.empty() && !_pps.empty() && !_vps.empty()) {
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//获取到sps/pps
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makeVideoConfigPkt();
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_gotSpsPps = true;
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_got_config_frame = true;
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}
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}
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void H265RtmpEncoder::inputFrame(const Frame::Ptr &frame) {
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auto pcData = frame->data() + frame->prefixSize();
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auto iLen = frame->size() - frame->prefixSize();
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auto type = H265_TYPE(((uint8_t*)pcData)[0]);
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auto data = frame->data() + frame->prefixSize();
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auto len = frame->size() - frame->prefixSize();
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auto type = H265_TYPE(((uint8_t*)data)[0]);
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if (!_gotSpsPps) {
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//尝试从frame中获取sps pps
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switch (type) {
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case H265Frame::NAL_SPS: {
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//sps
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_sps = string(pcData, iLen);
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switch (type) {
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case H265Frame::NAL_SPS: {
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if (!_got_config_frame) {
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_sps = string(data, len);
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makeConfigPacket();
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break;
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}
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case H265Frame::NAL_PPS: {
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//pps
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_pps = string(pcData, iLen);
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makeConfigPacket();
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break;
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}
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case H265Frame::NAL_VPS: {
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//vps
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_vps = string(pcData, iLen);
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makeConfigPacket();
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break;
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}
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default:
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break;
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break;
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}
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case H265Frame::NAL_PPS: {
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if (!_got_config_frame) {
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_pps = string(data, len);
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makeConfigPacket();
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}
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break;
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}
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case H265Frame::NAL_VPS: {
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if (!_got_config_frame) {
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_vps = string(data, len);
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makeConfigPacket();
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break;
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}
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}
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case H265Frame::NAL_AUD:
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case H265Frame::NAL_SEI_PREFIX:
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case H265Frame::NAL_SEI_SUFFIX: return;
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default: break;
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}
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if(type == H265Frame::NAL_SEI_PREFIX || type == H265Frame::NAL_SEI_SUFFIX || type == H265Frame::NAL_AUD){
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return;// 防止sei aud 作为一帧
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}
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if(frame->configFrame() && _lastPacket &&_lastPacketHasVCL){
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if(frame->configFrame() && _rtmp_packet && _has_vcl){
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// sps pps flush frame
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RtmpCodec::inputRtmp(_lastPacket);
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||||
_lastPacket = nullptr;
|
||||
_lastPacketHasVCL = false;
|
||||
RtmpCodec::inputRtmp(_rtmp_packet);
|
||||
_rtmp_packet = nullptr;
|
||||
_has_vcl = false;
|
||||
}
|
||||
|
||||
if (_lastPacket && (_lastPacket->time_stamp != frame->dts() || (_lastPacketHasVCL &&type>=H265Frame::NAL_TRAIL_R &&type<= H265Frame::NAL_RSV_IRAP_VCL23 && (pcData[2]>>7 &0x01) !=0))) {
|
||||
RtmpCodec::inputRtmp(_lastPacket);
|
||||
_lastPacket = nullptr;
|
||||
_lastPacketHasVCL = false;
|
||||
if (_rtmp_packet && (_rtmp_packet->time_stamp != frame->dts() || (_has_vcl && type >= H265Frame::NAL_TRAIL_R && type <= H265Frame::NAL_RSV_IRAP_VCL23 && (data[2] >> 7 & 0x01) != 0))) {
|
||||
RtmpCodec::inputRtmp(_rtmp_packet);
|
||||
_has_vcl = false;
|
||||
_rtmp_packet = nullptr;
|
||||
}
|
||||
|
||||
if(type>=H265Frame::NAL_TRAIL_R &&type<= H265Frame::NAL_RSV_IRAP_VCL23){
|
||||
_lastPacketHasVCL = true;
|
||||
if (type >= H265Frame::NAL_TRAIL_R && type <= H265Frame::NAL_RSV_IRAP_VCL23) {
|
||||
_has_vcl = true;
|
||||
}
|
||||
|
||||
if(!_lastPacket) {
|
||||
if (!_rtmp_packet) {
|
||||
//I or P or B frame
|
||||
int8_t flags = FLV_CODEC_H265;
|
||||
bool is_config = false;
|
||||
flags |= (((frame->configFrame() || frame->keyFrame()) ? FLV_KEY_FRAME : FLV_INTER_FRAME) << 4);
|
||||
// to do
|
||||
// 必须是IDR帧才能是关键帧,否则有可能开始帧会花屏 SPS PPS VPS 打头的是一般I帧,但不一定是IDR帧
|
||||
// RtmpCodec::inputRtmp 时需要判断 是否是IDR帧,做出相应的修改
|
||||
_lastPacket = RtmpPacket::create();
|
||||
_lastPacket->buffer.push_back(flags);
|
||||
_lastPacket->buffer.push_back(!is_config);
|
||||
auto cts = frame->pts() - frame->dts();
|
||||
// todo 必须是IDR帧才能是关键帧,否则有可能开始帧会花屏 SPS PPS VPS 打头的是一般I帧,但不一定是IDR帧
|
||||
// RtmpCodec::inputRtmp 时需要判断 是否是IDR帧,做出相应的修改
|
||||
_rtmp_packet = RtmpPacket::create();
|
||||
_rtmp_packet->buffer.push_back(flags);
|
||||
_rtmp_packet->buffer.push_back(!is_config);
|
||||
int32_t cts = frame->pts() - frame->dts();
|
||||
if (cts < 0) {
|
||||
cts = 0;
|
||||
}
|
||||
cts = htonl(cts);
|
||||
_lastPacket->buffer.append((char *)&cts + 1, 3);
|
||||
|
||||
_lastPacket->chunk_id = CHUNK_VIDEO;
|
||||
_lastPacket->stream_index = STREAM_MEDIA;
|
||||
_lastPacket->time_stamp = frame->dts();
|
||||
_lastPacket->type_id = MSG_VIDEO;
|
||||
|
||||
_rtmp_packet->buffer.append((char *) &cts + 1, 3);
|
||||
_rtmp_packet->chunk_id = CHUNK_VIDEO;
|
||||
_rtmp_packet->stream_index = STREAM_MEDIA;
|
||||
_rtmp_packet->time_stamp = frame->dts();
|
||||
_rtmp_packet->type_id = MSG_VIDEO;
|
||||
}
|
||||
uint32_t size = htonl((uint32_t)iLen);
|
||||
_lastPacket->buffer.append((char *) &size, 4);
|
||||
_lastPacket->buffer.append(pcData, iLen);
|
||||
_lastPacket->body_size = _lastPacket->buffer.size();
|
||||
uint32_t size = htonl((uint32_t) len);
|
||||
_rtmp_packet->buffer.append((char *) &size, 4);
|
||||
_rtmp_packet->buffer.append(data, len);
|
||||
_rtmp_packet->body_size = _rtmp_packet->buffer.size();
|
||||
}
|
||||
|
||||
void H265RtmpEncoder::makeVideoConfigPkt() {
|
||||
@ -218,7 +215,6 @@ void H265RtmpEncoder::makeVideoConfigPkt() {
|
||||
int8_t flags = FLV_CODEC_H265;
|
||||
flags |= (FLV_KEY_FRAME << 4);
|
||||
bool is_config = true;
|
||||
|
||||
auto rtmpPkt = RtmpPacket::create();
|
||||
//header
|
||||
rtmpPkt->buffer.push_back(flags);
|
||||
@ -237,10 +233,8 @@ void H265RtmpEncoder::makeVideoConfigPkt() {
|
||||
WarnL << "生成H265 extra_data 失败";
|
||||
return;
|
||||
}
|
||||
|
||||
//HEVCDecoderConfigurationRecord
|
||||
rtmpPkt->buffer.append((char *)extra_data, extra_data_size);
|
||||
|
||||
rtmpPkt->body_size = rtmpPkt->buffer.size();
|
||||
rtmpPkt->chunk_id = CHUNK_VIDEO;
|
||||
rtmpPkt->stream_index = STREAM_MEDIA;
|
||||
|
@ -78,13 +78,13 @@ private:
|
||||
void makeVideoConfigPkt();
|
||||
|
||||
private:
|
||||
bool _gotSpsPps = false;
|
||||
bool _has_vcl = false;
|
||||
bool _got_config_frame = false;
|
||||
string _vps;
|
||||
string _sps;
|
||||
string _pps;
|
||||
H265Track::Ptr _track;
|
||||
RtmpPacket::Ptr _lastPacket;
|
||||
bool _lastPacketHasVCL = false;
|
||||
RtmpPacket::Ptr _rtmp_packet;
|
||||
};
|
||||
|
||||
}//namespace mediakit
|
||||
|
Loading…
Reference in New Issue
Block a user