mirror of
https://github.com/ZLMediaKit/ZLMediaKit.git
synced 2024-11-22 02:34:26 +08:00
330 lines
11 KiB
C++
330 lines
11 KiB
C++
/*
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* Copyright (c) 2016-present The ZLMediaKit project authors. All Rights Reserved.
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*
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* This file is part of ZLMediaKit(https://github.com/ZLMediaKit/ZLMediaKit).
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*
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* Use of this source code is governed by MIT-like license that can be found in the
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* LICENSE file in the root of the source tree. All contributing project authors
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* may be found in the AUTHORS file in the root of the source tree.
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*/
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#include "H265.h"
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#include "H265Rtp.h"
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#include "H265Rtmp.h"
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#include "SPSParser.h"
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#include "Util/base64.h"
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#include "Common/Parser.h"
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#include "Extension/Factory.h"
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#ifdef ENABLE_MP4
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#include "mpeg4-hevc.h"
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#endif
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using namespace std;
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using namespace toolkit;
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namespace mediakit {
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bool getHEVCInfo(const char * vps, size_t vps_len,const char * sps,size_t sps_len,int &iVideoWidth, int &iVideoHeight, float &iVideoFps){
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T_GetBitContext tGetBitBuf;
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T_HEVCSPS tH265SpsInfo;
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T_HEVCVPS tH265VpsInfo;
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if ( vps_len > 2 ){
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memset(&tGetBitBuf,0,sizeof(tGetBitBuf));
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memset(&tH265VpsInfo,0,sizeof(tH265VpsInfo));
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tGetBitBuf.pu8Buf = (uint8_t*)vps+2;
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tGetBitBuf.iBufSize = (int)(vps_len-2);
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if(0 != h265DecVideoParameterSet((void *) &tGetBitBuf, &tH265VpsInfo)){
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return false;
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}
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}
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if ( sps_len > 2 ){
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memset(&tGetBitBuf,0,sizeof(tGetBitBuf));
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memset(&tH265SpsInfo,0,sizeof(tH265SpsInfo));
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tGetBitBuf.pu8Buf = (uint8_t*)sps+2;
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tGetBitBuf.iBufSize = (int)(sps_len-2);
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if(0 != h265DecSeqParameterSet((void *) &tGetBitBuf, &tH265SpsInfo)){
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return false;
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}
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}
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else
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return false;
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h265GetWidthHeight(&tH265SpsInfo, &iVideoWidth, &iVideoHeight);
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iVideoFps = 0;
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h265GeFramerate(&tH265VpsInfo, &tH265SpsInfo, &iVideoFps);
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return true;
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}
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bool getHEVCInfo(const string &strVps, const string &strSps, int &iVideoWidth, int &iVideoHeight, float &iVideoFps) {
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return getHEVCInfo(strVps.data(), strVps.size(), strSps.data(), strSps.size(), iVideoWidth, iVideoHeight,iVideoFps);
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}
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/////////////////////////////////////////////////////////////////////////////////////////////////////////////////////
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H265Track::H265Track(const string &vps,const string &sps, const string &pps,int vps_prefix_len, int sps_prefix_len, int pps_prefix_len) {
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_vps = vps.substr(vps_prefix_len);
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_sps = sps.substr(sps_prefix_len);
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_pps = pps.substr(pps_prefix_len);
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H265Track::update();
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}
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CodecId H265Track::getCodecId() const {
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return CodecH265;
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}
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int H265Track::getVideoHeight() const {
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return _height;
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}
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int H265Track::getVideoWidth() const {
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return _width;
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}
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float H265Track::getVideoFps() const {
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return _fps;
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}
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bool H265Track::ready() const {
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return !_vps.empty() && !_sps.empty() && !_pps.empty();
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}
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bool H265Track::inputFrame(const Frame::Ptr &frame) {
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int type = H265_TYPE(frame->data()[frame->prefixSize()]);
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if (!frame->configFrame() && type != H265Frame::NAL_SEI_PREFIX && ready()) {
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return inputFrame_l(frame);
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}
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bool ret = false;
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splitH264(frame->data(), frame->size(), frame->prefixSize(), [&](const char *ptr, size_t len, size_t prefix) {
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using H265FrameInternal = FrameInternal<H265FrameNoCacheAble>;
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H265FrameInternal::Ptr sub_frame = std::make_shared<H265FrameInternal>(frame, (char *) ptr, len, prefix);
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if (inputFrame_l(sub_frame)) {
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ret = true;
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}
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});
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return ret;
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}
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bool H265Track::inputFrame_l(const Frame::Ptr &frame) {
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int type = H265_TYPE(frame->data()[frame->prefixSize()]);
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bool ret = true;
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switch (type) {
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case H265Frame::NAL_VPS: {
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_vps = string(frame->data() + frame->prefixSize(), frame->size() - frame->prefixSize());
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_latest_is_config_frame = true;
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ret = VideoTrack::inputFrame(frame);
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break;
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}
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case H265Frame::NAL_SPS: {
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_sps = string(frame->data() + frame->prefixSize(), frame->size() - frame->prefixSize());
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_latest_is_config_frame = true;
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ret = VideoTrack::inputFrame(frame);
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break;
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}
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case H265Frame::NAL_PPS: {
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_pps = string(frame->data() + frame->prefixSize(), frame->size() - frame->prefixSize());
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_latest_is_config_frame = true;
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ret = VideoTrack::inputFrame(frame);
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break;
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}
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default: {
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// 判断是否是I帧, 并且如果是,那判断前面是否插入过config帧, 如果插入过就不插入了
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if (frame->keyFrame() && !_latest_is_config_frame) {
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insertConfigFrame(frame);
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}
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if (!frame->dropAble()) {
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_latest_is_config_frame = false;
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}
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ret = VideoTrack::inputFrame(frame);
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break;
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}
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}
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if (_width == 0 && ready()) {
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update();
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}
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return ret;
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}
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toolkit::Buffer::Ptr H265Track::getExtraData() const {
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CHECK(ready());
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#ifdef ENABLE_MP4
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struct mpeg4_hevc_t hevc;
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memset(&hevc, 0, sizeof(hevc));
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string vps_sps_pps = string("\x00\x00\x00\x01", 4) + _vps + string("\x00\x00\x00\x01", 4) + _sps + string("\x00\x00\x00\x01", 4) + _pps;
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h265_annexbtomp4(&hevc, vps_sps_pps.data(), (int) vps_sps_pps.size(), NULL, 0, NULL, NULL);
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std::string extra_data;
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extra_data.resize(1024);
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auto extra_data_size = mpeg4_hevc_decoder_configuration_record_save(&hevc, (uint8_t *)extra_data.data(), extra_data.size());
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if (extra_data_size == -1) {
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WarnL << "生成H265 extra_data 失败";
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return nullptr;
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}
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return std::make_shared<BufferString>(std::move(extra_data));
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#else
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WarnL << "请开启MP4相关功能并使能\"ENABLE_MP4\",否则对H265的支持不完善";
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return nullptr;
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#endif
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}
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void H265Track::setExtraData(const uint8_t *data, size_t bytes) {
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#ifdef ENABLE_MP4
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struct mpeg4_hevc_t hevc;
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memset(&hevc, 0, sizeof(hevc));
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if (mpeg4_hevc_decoder_configuration_record_load(data, bytes, &hevc) > 0) {
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std::vector<uint8_t> config(bytes * 2);
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int size = mpeg4_hevc_to_nalu(&hevc, config.data(), bytes * 2);
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if (size > 4) {
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splitH264((char *)config.data(), size, 4, [&](const char *ptr, size_t len, size_t prefix) {
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inputFrame_l(std::make_shared<H265FrameNoCacheAble>((char *)ptr, len, 0, 0, prefix));
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});
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update();
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}
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}
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#else
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WarnL << "请开启MP4相关功能并使能\"ENABLE_MP4\",否则对H265的支持不完善";
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#endif
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}
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bool H265Track::update() {
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return getHEVCInfo(_vps, _sps, _width, _height, _fps);
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}
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std::vector<Frame::Ptr> H265Track::getConfigFrames() const {
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if (!ready()) {
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return {};
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}
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return { createConfigFrame<H265Frame>(_vps, 0, getIndex()),
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createConfigFrame<H265Frame>(_sps, 0, getIndex()),
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createConfigFrame<H265Frame>(_pps, 0, getIndex()) };
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}
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Track::Ptr H265Track::clone() const {
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return std::make_shared<H265Track>(*this);
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}
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void H265Track::insertConfigFrame(const Frame::Ptr &frame) {
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if (!_vps.empty()) {
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VideoTrack::inputFrame(createConfigFrame<H265Frame>(_vps, frame->dts(), frame->getIndex()));
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}
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if (!_sps.empty()) {
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VideoTrack::inputFrame(createConfigFrame<H265Frame>(_sps, frame->dts(), frame->getIndex()));
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}
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if (!_pps.empty()) {
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VideoTrack::inputFrame(createConfigFrame<H265Frame>(_pps, frame->dts(), frame->getIndex()));
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}
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}
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/////////////////////////////////////////////////////////////////////////////////////////////////////////////////////
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/**
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* h265类型sdp
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* h265 type sdp
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* [AUTO-TRANSLATED:4418a7df]
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*/
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class H265Sdp : public Sdp {
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public:
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/**
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* 构造函数
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* @param sps 265 sps,不带0x00000001头
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* @param pps 265 pps,不带0x00000001头
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* @param payload_type rtp payload type 默认96
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* @param bitrate 比特率
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* Constructor
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* @param sps 265 sps, without 0x00000001 header
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* @param pps 265 pps, without 0x00000001 header
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* @param payload_type rtp payload type, default 96
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* @param bitrate Bitrate
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* [AUTO-TRANSLATED:93f4ec48]
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*/
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H265Sdp(const string &strVPS, const string &strSPS, const string &strPPS, int payload_type, int bitrate) : Sdp(90000, payload_type) {
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// 视频通道 [AUTO-TRANSLATED:642ca881]
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// Video channel
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_printer << "m=video 0 RTP/AVP " << payload_type << "\r\n";
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if (bitrate) {
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_printer << "b=AS:" << bitrate << "\r\n";
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}
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_printer << "a=rtpmap:" << payload_type << " " << getCodecName(CodecH265) << "/" << 90000 << "\r\n";
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_printer << "a=fmtp:" << payload_type << " ";
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_printer << "sprop-vps=";
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_printer << encodeBase64(strVPS) << "; ";
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_printer << "sprop-sps=";
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_printer << encodeBase64(strSPS) << "; ";
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_printer << "sprop-pps=";
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_printer << encodeBase64(strPPS) << "\r\n";
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}
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string getSdp() const override { return _printer; }
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private:
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_StrPrinter _printer;
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};
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Sdp::Ptr H265Track::getSdp(uint8_t payload_type) const {
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if (!ready()) {
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WarnL << getCodecName() << " Track未准备好";
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return nullptr;
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}
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return std::make_shared<H265Sdp>(_vps, _sps, _pps, payload_type, getBitRate() / 1024);
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}
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namespace {
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CodecId getCodec() {
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return CodecH265;
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}
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Track::Ptr getTrackByCodecId(int sample_rate, int channels, int sample_bit) {
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return std::make_shared<H265Track>();
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}
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Track::Ptr getTrackBySdp(const SdpTrack::Ptr &track) {
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// a=fmtp:96 sprop-sps=QgEBAWAAAAMAsAAAAwAAAwBdoAKAgC0WNrkky/AIAAADAAgAAAMBlQg=; sprop-pps=RAHA8vA8kAA=
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auto map = Parser::parseArgs(track->_fmtp, ";", "=");
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auto vps = decodeBase64(map["sprop-vps"]);
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auto sps = decodeBase64(map["sprop-sps"]);
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auto pps = decodeBase64(map["sprop-pps"]);
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if (sps.empty() || pps.empty()) {
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// 如果sdp里面没有sps/pps,那么可能在后续的rtp里面恢复出sps/pps [AUTO-TRANSLATED:9300510b]
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// If there is no sps/pps in the sdp, then it may be possible to recover sps/pps from the subsequent rtp
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return std::make_shared<H265Track>();
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}
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return std::make_shared<H265Track>(vps, sps, pps, 0, 0, 0);
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}
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RtpCodec::Ptr getRtpEncoderByCodecId(uint8_t pt) {
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return std::make_shared<H265RtpEncoder>();
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}
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RtpCodec::Ptr getRtpDecoderByCodecId() {
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return std::make_shared<H265RtpDecoder>();
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}
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RtmpCodec::Ptr getRtmpEncoderByTrack(const Track::Ptr &track) {
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return std::make_shared<H265RtmpEncoder>(track);
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}
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RtmpCodec::Ptr getRtmpDecoderByTrack(const Track::Ptr &track) {
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return std::make_shared<H265RtmpDecoder>(track);
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}
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Frame::Ptr getFrameFromPtr(const char *data, size_t bytes, uint64_t dts, uint64_t pts) {
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return std::make_shared<H265FrameNoCacheAble>((char *)data, bytes, dts, pts, prefixSize(data, bytes));
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}
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} // namespace
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CodecPlugin h265_plugin = { getCodec,
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getTrackByCodecId,
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getTrackBySdp,
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getRtpEncoderByCodecId,
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getRtpDecoderByCodecId,
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getRtmpEncoderByTrack,
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getRtmpDecoderByTrack,
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getFrameFromPtr };
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}//namespace mediakit
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