mirror of
https://github.com/ZLMediaKit/ZLMediaKit.git
synced 2024-11-25 20:27:34 +08:00
初步完成H264 的 RTMP打包解包
This commit is contained in:
parent
3850ecec96
commit
6c9d50b04b
@ -65,6 +65,21 @@ public:
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virtual bool keyFrame() const = 0;
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};
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template <typename T>
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class ResourcePoolHelper{
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public:
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ResourcePoolHelper(int size = 8){
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_pool.setSize(size);
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}
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virtual ~ResourcePoolHelper(){}
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std::shared_ptr<T> obtainObj(){
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return _pool.obtain();
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}
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private:
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ResourcePool<T> _pool;
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};
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/**
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* 帧环形缓存接口类
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*/
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@ -55,8 +55,8 @@ void AACRtpEncoder::makeAACRtp(const void *pData, unsigned int uiLen, bool bMark
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uint32_t ts = htonl(m_ui32TimeStamp);
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uint16_t sq = htons(m_ui16Sequence);
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uint32_t sc = htonl(m_ui32Ssrc);
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auto pRtppkt = obtainRtp();
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auto &rtppkt = *(pRtppkt.get());
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auto pRtppkt = ResourcePoolHelper<RtpPacket>::obtainObj();
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auto &rtppkt = *pRtppkt;
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unsigned char *pucRtp = rtppkt.payload;
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pucRtp[0] = '$';
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pucRtp[1] = m_ui8Interleaved;
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@ -93,7 +93,7 @@ AACRtpDecoder::AACRtpDecoder(uint32_t ui32SampleRate) {
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AACFrame::Ptr AACRtpDecoder::obtainFrame() {
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//从缓存池重新申请对象,防止覆盖已经写入环形缓存的对象
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auto frame = m_framePool.obtain();
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auto frame = ResourcePoolHelper<AACFrame>::obtainObj();
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frame->aac_frame_length = 7;
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frame->iPrefixSize = 7;
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return frame;
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@ -10,7 +10,7 @@
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/**
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* aac rtp转adts类
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*/
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class AACRtpDecoder : public RtpCodec {
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class AACRtpDecoder : public RtpCodec , public ResourcePoolHelper<AACFrame> {
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public:
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typedef std::shared_ptr<AACRtpDecoder> Ptr;
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@ -39,7 +39,6 @@ private:
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AACFrame::Ptr obtainFrame();
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private:
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AACFrame::Ptr m_adts;
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ResourcePool<AACFrame> m_framePool;
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uint32_t m_sampleRate;
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};
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@ -11,7 +11,7 @@ H264RtpDecoder::H264RtpDecoder() {
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H264Frame::Ptr H264RtpDecoder::obtainFrame() {
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//从缓存池重新申请对象,防止覆盖已经写入环形缓存的对象
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auto frame = m_framePool.obtain();
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auto frame = ResourcePoolHelper<H264Frame>::obtainObj();
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frame->buffer.clear();
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frame->iPrefixSize = 4;
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return frame;
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@ -174,7 +174,7 @@ void H264RtpEncoder::makeH264Rtp(const void* data, unsigned int len, bool mark,
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uint16_t sq = htons(m_ui16Sequence);
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uint32_t sc = htonl(m_ui32Ssrc);
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auto rtppkt = obtainRtp();
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auto rtppkt = ResourcePoolHelper<RtpPacket>::obtainObj();
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unsigned char *pucRtp = rtppkt->payload;
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pucRtp[0] = '$';
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pucRtp[1] = m_ui8Interleaved;
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@ -13,7 +13,7 @@ using namespace ZL::Util;
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/**
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* h264 rtp解码类
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*/
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class H264RtpDecoder : public RtpCodec {
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class H264RtpDecoder : public RtpCodec , public ResourcePoolHelper<H264Frame> {
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public:
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typedef std::shared_ptr<H264RtpDecoder> Ptr;
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@ -40,7 +40,6 @@ private:
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H264Frame::Ptr obtainFrame();
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private:
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H264Frame::Ptr m_h264frame;
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ResourcePool<H264Frame> m_framePool;
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};
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/**
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@ -72,7 +72,6 @@ public:
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typedef std::shared_ptr<RtpRing> Ptr;
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RtpRing(){
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//禁用缓存
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_rtpRing = std::make_shared<RingType>();
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}
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virtual ~RtpRing(){}
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@ -111,7 +110,6 @@ public:
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m_ui32MtuSize = ui32MtuSize;
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m_ui8PlayloadType = ui8PlayloadType;
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m_ui8Interleaved = ui8Interleaved;
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m_rtpPool.setSize(32);
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}
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virtual ~RtpInfo(){}
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@ -141,10 +139,6 @@ public:
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uint32_t getMtuSize() const {
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return m_ui32MtuSize;
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}
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protected:
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RtpPacket::Ptr obtainRtp(){
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return m_rtpPool.obtain();
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}
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protected:
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uint32_t m_ui32Ssrc;
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uint32_t m_ui32SampleRate;
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@ -153,10 +147,9 @@ protected:
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uint8_t m_ui8Interleaved;
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uint16_t m_ui16Sequence = 0;
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uint32_t m_ui32TimeStamp = 0;
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ResourcePool<RtpPacket> m_rtpPool;
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};
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class RtpCodec : public RtpRing, public FrameRingInterfaceDelegate , public CodecInfo{
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class RtpCodec : public RtpRing, public FrameRingInterfaceDelegate , public CodecInfo , public ResourcePoolHelper<RtpPacket>{
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public:
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typedef std::shared_ptr<RtpCodec> Ptr;
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RtpCodec(){}
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@ -188,6 +188,11 @@ public:
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const static int channel[] = { 1, 2 };
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return channel[flvStereoOrMono];
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}
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/**
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* 返回不带0x00 00 00 01头的sps
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* @return
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*/
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string getH264SPS() const {
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string ret;
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if (getMediaType() != 7) {
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@ -210,6 +215,11 @@ public:
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ret.assign(strBuf.data() + 13, sps_size);
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return ret;
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}
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/**
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* 返回不带0x00 00 00 01头的pps
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* @return
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*/
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string getH264PPS() const {
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string ret;
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if (getMediaType() != 7) {
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@ -258,4 +268,8 @@ public:
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}
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};
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#endif
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206
src/RtmpCodec/H264RtmpCodec.cpp
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206
src/RtmpCodec/H264RtmpCodec.cpp
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@ -0,0 +1,206 @@
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//
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// Created by xzl on 2018/10/18.
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//
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#include "H264RtmpCodec.h"
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H264RtmpDecoder::H264RtmpDecoder() {
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m_h264frame = obtainFrame();
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}
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H264Frame::Ptr H264RtmpDecoder::obtainFrame() {
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//从缓存池重新申请对象,防止覆盖已经写入环形缓存的对象
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auto frame = obtainObj();
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frame->buffer.clear();
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frame->iPrefixSize = 4;
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return frame;
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}
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bool H264RtmpDecoder::inputRtmp(const RtmpPacket::Ptr &rtmp, bool key_pos) {
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key_pos = decodeRtmp(rtmp);
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RtmpCodec::inputRtmp(rtmp, key_pos);
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return key_pos;
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}
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bool H264RtmpDecoder::decodeRtmp(const RtmpPacket::Ptr &pkt) {
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if (pkt->isCfgFrame()) {
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//缓存sps pps,后续插入到I帧之前
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m_strSPS = pkt->getH264SPS();
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m_strPPS = pkt->getH264PPS();
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return false;
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}
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if (m_strSPS.size()) {
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uint32_t iTotalLen = pkt->strBuf.size();
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uint32_t iOffset = 5;
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while(iOffset + 4 < iTotalLen){
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uint32_t iFrameLen;
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memcpy(&iFrameLen, pkt->strBuf.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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break;
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}
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onGetH264_l(pkt->strBuf.data() + iOffset, iFrameLen, pkt->timeStamp);
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iOffset += iFrameLen;
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}
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}
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return pkt->isVideoKeyFrame();
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}
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inline void H264RtmpDecoder::onGetH264_l(const char* pcData, int iLen, uint32_t ui32TimeStamp) {
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switch (pcData[0] & 0x1F) {
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case 5: {
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//I frame
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onGetH264(m_strSPS.data(), m_strSPS.length(), ui32TimeStamp);
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onGetH264(m_strPPS.data(), m_strPPS.length(), ui32TimeStamp);
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}
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case 1: {
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//I or P or B frame
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onGetH264(pcData, iLen, ui32TimeStamp);
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}
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break;
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default:
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//WarnL <<(int)(pcData[0] & 0x1F);
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break;
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}
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}
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inline void H264RtmpDecoder::onGetH264(const char* pcData, int iLen, uint32_t ui32TimeStamp) {
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m_h264frame->type = pcData[0] & 0x1F;
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m_h264frame->timeStamp = ui32TimeStamp;
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m_h264frame->buffer.assign("\x0\x0\x0\x1", 4); //添加264头
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m_h264frame->buffer.append(pcData, iLen);
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//写入环形缓存
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RtmpCodec::inputFrame(m_h264frame);
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m_h264frame = obtainFrame();
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}
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////////////////////////////////////////////////////////////////////////
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H264RtmpEncoder::H264RtmpEncoder() {
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}
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void H264RtmpEncoder::inputFrame(const Frame::Ptr &frame) {
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RtmpCodec::inputFrame(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 = ((uint8_t*)pcData)[0] & 0x1F;
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switch (type){
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case 7:{
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//sps
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if(m_sps.empty()){
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m_sps = string(pcData,iLen);
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if(!m_pps.empty()){
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makeVideoConfigPkt();
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}
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}
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}
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break;
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case 8:{
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//pps
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if(m_pps.empty()){
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m_pps = string(pcData,iLen);
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if(!m_sps.empty()){
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makeVideoConfigPkt();
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}
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}
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}
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break;
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case 1:
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case 5:{
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//I or P or B frame
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int8_t flags = 7; //h.264
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bool is_config = false;
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bool keyFrame = frame->keyFrame();
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flags |= ((keyFrame ? FLV_KEY_FRAME : FLV_INTER_FRAME) << 4);
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RtmpPacket::Ptr rtmpPkt = ResourcePoolHelper<RtmpPacket>::obtainObj();
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rtmpPkt->strBuf.push_back(flags);
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rtmpPkt->strBuf.push_back(!is_config);
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rtmpPkt->strBuf.append("\x0\x0\x0", 3);
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auto size = htonl(iLen);
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rtmpPkt->strBuf.append((char *) &size, 4);
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rtmpPkt->strBuf.append(pcData, iLen);
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rtmpPkt->bodySize = rtmpPkt->strBuf.size();
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rtmpPkt->chunkId = CHUNK_VIDEO;
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rtmpPkt->streamId = STREAM_MEDIA;
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rtmpPkt->timeStamp = frame->stamp();
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rtmpPkt->typeId = MSG_VIDEO;
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RtmpCodec::inputRtmp(rtmpPkt,keyFrame);
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}
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break;
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default:
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break;
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}
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}
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void H264RtmpEncoder::makeVideoConfigPkt() {
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int8_t flags = 7; //h.264
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flags |= (FLV_KEY_FRAME << 4);
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bool is_config = true;
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RtmpPacket::Ptr rtmpPkt = ResourcePoolHelper<RtmpPacket>::obtainObj();
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//////////header
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rtmpPkt->strBuf.push_back(flags);
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rtmpPkt->strBuf.push_back(!is_config);
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rtmpPkt->strBuf.append("\x0\x0\x0", 3);
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////////////sps
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rtmpPkt->strBuf.push_back(1); // version
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//DebugL<<hexdump(m_sps.data(), m_sps.size());
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rtmpPkt->strBuf.push_back(m_sps[1]); // profile
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rtmpPkt->strBuf.push_back(m_sps[2]); // compat
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rtmpPkt->strBuf.push_back(m_sps[3]); // level
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rtmpPkt->strBuf.push_back(0xff); // 6 bits reserved + 2 bits nal size length - 1 (11)
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rtmpPkt->strBuf.push_back(0xe1); // 3 bits reserved + 5 bits number of sps (00001)
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uint16_t size = m_sps.size();
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size = htons(size);
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rtmpPkt->strBuf.append((char *) &size, 2);
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rtmpPkt->strBuf.append(m_sps);
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/////////////pps
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rtmpPkt->strBuf.push_back(1); // version
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size = m_pps.size();
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size = htons(size);
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rtmpPkt->strBuf.append((char *) &size, 2);
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rtmpPkt->strBuf.append(m_pps);
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rtmpPkt->bodySize = rtmpPkt->strBuf.size();
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rtmpPkt->chunkId = CHUNK_VIDEO;
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rtmpPkt->streamId = STREAM_MEDIA;
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rtmpPkt->timeStamp = 0;
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rtmpPkt->typeId = MSG_VIDEO;
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RtmpCodec::inputRtmp(rtmpPkt, true);
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}
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70
src/RtmpCodec/H264RtmpCodec.h
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70
src/RtmpCodec/H264RtmpCodec.h
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//
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// Created by xzl on 2018/10/24.
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//
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#ifndef ZLMEDIAKIT_H264RTMPCODEC_H
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#define ZLMEDIAKIT_H264RTMPCODEC_H
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#include "RtmpCodec.h"
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#include "Util/ResourcePool.h"
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using namespace ZL::Rtmp;
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/**
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* h264 Rtmp解码类
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*/
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class H264RtmpDecoder : public RtmpCodec ,public ResourcePoolHelper<H264Frame> {
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public:
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typedef std::shared_ptr<H264RtmpDecoder> Ptr;
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H264RtmpDecoder();
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~H264RtmpDecoder() {}
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/**
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* 输入264 Rtmp包
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* @param rtmp Rtmp包
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* @param key_pos 此参数忽略之
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*/
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bool inputRtmp(const RtmpPacket::Ptr &rtmp, bool key_pos = true) override;
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TrackType getTrackType() const override{
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return TrackVideo;
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}
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CodecId getCodecId() const override{
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return CodecH264;
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}
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private:
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bool decodeRtmp(const RtmpPacket::Ptr &Rtmp);
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void onGetH264_l(const char *pcData, int iLen, uint32_t ui32TimeStamp);
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void onGetH264(const char *pcData, int iLen, uint32_t ui32TimeStamp);
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H264Frame::Ptr obtainFrame();
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private:
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H264Frame::Ptr m_h264frame;
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string m_strSPS;
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string m_strPPS;
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};
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/**
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* 264 Rtmp打包类
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*/
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class H264RtmpEncoder : public H264RtmpDecoder, public ResourcePoolHelper<RtmpPacket> {
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public:
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typedef std::shared_ptr<H264RtmpEncoder> Ptr;
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H264RtmpEncoder();
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~H264RtmpEncoder() {}
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/**
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* 输入264帧,需要指出的是,必须输入sps pps帧
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* @param frame 帧数据
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*/
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void inputFrame(const Frame::Ptr &frame) override;
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private:
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void makeVideoConfigPkt();
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private:
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string m_sps;
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string m_pps;
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};
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#endif //ZLMEDIAKIT_H264RTMPCODEC_H
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5
src/RtmpCodec/RtmpCodec.cpp
Normal file
5
src/RtmpCodec/RtmpCodec.cpp
Normal file
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//
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// Created by xzl on 2018/10/24.
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//
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#include "RtmpCodec.h"
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86
src/RtmpCodec/RtmpCodec.h
Normal file
86
src/RtmpCodec/RtmpCodec.h
Normal file
@ -0,0 +1,86 @@
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//
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// Created by xzl on 2018/10/24.
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//
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#ifndef ZLMEDIAKIT_RTMPCODEC_H
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#define ZLMEDIAKIT_RTMPCODEC_H
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#include "Rtmp/Rtmp.h"
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#include "Player/Frame.h"
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#include "Util/RingBuffer.h"
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using namespace ZL::Util;
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namespace ZL{
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namespace Rtmp {
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class RtmpRingInterface {
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public:
|
||||
typedef RingBuffer<RtmpPacket::Ptr> RingType;
|
||||
typedef std::shared_ptr<RtmpRingInterface> Ptr;
|
||||
|
||||
RtmpRingInterface(){}
|
||||
virtual ~RtmpRingInterface(){}
|
||||
|
||||
/**
|
||||
* 获取rtmp环形缓存
|
||||
* @return
|
||||
*/
|
||||
virtual RingType::Ptr getRtmpRing() const = 0;
|
||||
|
||||
/**
|
||||
* 设置rtmp环形缓存
|
||||
* @param ring
|
||||
*/
|
||||
virtual void setRtmpRing(const RingType::Ptr &ring) = 0;
|
||||
|
||||
/**
|
||||
* 输入rtmp包
|
||||
* @param rtmp rtmp包
|
||||
* @param key_pos 是否为关键帧
|
||||
* @return 是否为关键帧
|
||||
*/
|
||||
virtual bool inputRtmp(const RtmpPacket::Ptr &rtmp, bool key_pos) = 0;
|
||||
};
|
||||
|
||||
class RtmpRing : public RtmpRingInterface {
|
||||
public:
|
||||
typedef std::shared_ptr<RtmpRing> Ptr;
|
||||
|
||||
RtmpRing(){
|
||||
_rtmpRing = std::make_shared<RingType>();
|
||||
}
|
||||
virtual ~RtmpRing(){}
|
||||
|
||||
RingType::Ptr getRtmpRing() const override {
|
||||
return _rtmpRing;
|
||||
}
|
||||
|
||||
void setRtmpRing(const RingType::Ptr &ring) override {
|
||||
_rtmpRing = ring;
|
||||
}
|
||||
|
||||
bool inputRtmp(const RtmpPacket::Ptr &rtmp, bool key_pos) override{
|
||||
_rtmpRing->write(rtmp,key_pos);
|
||||
return key_pos;
|
||||
}
|
||||
protected:
|
||||
RingType::Ptr _rtmpRing;
|
||||
};
|
||||
|
||||
|
||||
class RtmpCodec : public RtmpRing, public FrameRingInterfaceDelegate , public CodecInfo{
|
||||
public:
|
||||
typedef std::shared_ptr<RtmpCodec> Ptr;
|
||||
RtmpCodec(){}
|
||||
virtual ~RtmpCodec(){}
|
||||
};
|
||||
|
||||
|
||||
|
||||
|
||||
}//namespace Rtmp
|
||||
}//namespace ZL
|
||||
|
||||
#endif //ZLMEDIAKIT_RTMPCODEC_H
|
Loading…
Reference in New Issue
Block a user