2020-03-06 13:00:06 +08:00
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/*
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2020-04-04 20:30:09 +08:00
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* Copyright (c) 2016 The ZLMediaKit project authors. All Rights Reserved.
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2020-03-06 13:00:06 +08:00
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*
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* This file is part of ZLMediaKit(https://github.com/xiongziliang/ZLMediaKit).
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*
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2020-04-04 20:30:09 +08:00
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* Use of this source code is governed by MIT license that can be found in the
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* LICENSE file in the root of the source tree. All contributing project authors
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* may be found in the AUTHORS file in the root of the source tree.
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2020-03-06 13:00:06 +08:00
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*/
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#include "Decoder.h"
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#include "PSDecoder.h"
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#include "TSDecoder.h"
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2020-05-17 18:00:23 +08:00
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#include "Extension/H264.h"
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#include "Extension/H265.h"
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#include "Extension/AAC.h"
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#include "Extension/G711.h"
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2020-06-12 18:17:49 +08:00
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#if defined(ENABLE_RTPPROXY) || defined(ENABLE_HLS)
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#include "mpeg-ts-proto.h"
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#endif
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2020-03-06 13:00:06 +08:00
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namespace mediakit {
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2020-05-17 18:00:23 +08:00
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static Decoder::Ptr createDecoder_l(DecoderImp::Type type) {
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2020-03-06 13:00:06 +08:00
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switch (type){
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2020-05-17 18:00:23 +08:00
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case DecoderImp::decoder_ps:
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#ifdef ENABLE_RTPPROXY
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return std::make_shared<PSDecoder>();
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#else
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WarnL << "创建ps解复用器失败,请打开ENABLE_RTPPROXY然后重新编译";
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return nullptr;
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#endif//ENABLE_RTPPROXY
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case DecoderImp::decoder_ts:
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#ifdef ENABLE_HLS
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return std::make_shared<TSDecoder>();
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#else
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WarnL << "创建mpegts解复用器失败,请打开ENABLE_HLS然后重新编译";
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return nullptr;
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#endif//ENABLE_HLS
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default: return nullptr;
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}
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}
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/////////////////////////////////////////////////////////////
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2020-05-21 11:44:57 +08:00
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DecoderImp::Ptr DecoderImp::createDecoder(Type type, MediaSinkInterface *sink){
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2020-05-17 18:00:23 +08:00
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auto decoder = createDecoder_l(type);
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if(!decoder){
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return nullptr;
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}
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return DecoderImp::Ptr(new DecoderImp(decoder, sink));
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}
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int DecoderImp::input(const uint8_t *data, int bytes){
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return _decoder->input(data, bytes);
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}
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2020-05-21 11:44:57 +08:00
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DecoderImp::DecoderImp(const Decoder::Ptr &decoder, MediaSinkInterface *sink){
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2020-05-17 18:00:23 +08:00
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_decoder = decoder;
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_sink = sink;
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_decoder->setOnDecode([this](int stream,int codecid,int flags,int64_t pts,int64_t dts,const void *data,int bytes){
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onDecode(stream,codecid,flags,pts,dts,data,bytes);
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});
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}
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2020-06-12 18:17:49 +08:00
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#if defined(ENABLE_RTPPROXY) || defined(ENABLE_HLS)
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2020-05-17 18:00:23 +08:00
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#define SWITCH_CASE(codec_id) case codec_id : return #codec_id
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static const char *getCodecName(int codec_id) {
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switch (codec_id) {
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SWITCH_CASE(PSI_STREAM_MPEG1);
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SWITCH_CASE(PSI_STREAM_MPEG2);
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SWITCH_CASE(PSI_STREAM_AUDIO_MPEG1);
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SWITCH_CASE(PSI_STREAM_MP3);
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SWITCH_CASE(PSI_STREAM_AAC);
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SWITCH_CASE(PSI_STREAM_MPEG4);
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SWITCH_CASE(PSI_STREAM_MPEG4_AAC_LATM);
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SWITCH_CASE(PSI_STREAM_H264);
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SWITCH_CASE(PSI_STREAM_MPEG4_AAC);
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SWITCH_CASE(PSI_STREAM_H265);
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SWITCH_CASE(PSI_STREAM_AUDIO_AC3);
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SWITCH_CASE(PSI_STREAM_AUDIO_EAC3);
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SWITCH_CASE(PSI_STREAM_AUDIO_DTS);
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SWITCH_CASE(PSI_STREAM_VIDEO_DIRAC);
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SWITCH_CASE(PSI_STREAM_VIDEO_VC1);
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SWITCH_CASE(PSI_STREAM_VIDEO_SVAC);
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SWITCH_CASE(PSI_STREAM_AUDIO_SVAC);
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SWITCH_CASE(PSI_STREAM_AUDIO_G711A);
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SWITCH_CASE(PSI_STREAM_AUDIO_G711U);
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SWITCH_CASE(PSI_STREAM_AUDIO_G722);
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SWITCH_CASE(PSI_STREAM_AUDIO_G723);
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SWITCH_CASE(PSI_STREAM_AUDIO_G729);
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default : return "unknown codec";
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}
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}
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void FrameMerger::inputFrame(const Frame::Ptr &frame,const function<void(uint32_t dts,uint32_t pts,const Buffer::Ptr &buffer)> &cb){
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if (!_frameCached.empty() && _frameCached.back()->dts() != frame->dts()) {
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Frame::Ptr back = _frameCached.back();
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Buffer::Ptr merged_frame = back;
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if(_frameCached.size() != 1){
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string merged;
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_frameCached.for_each([&](const Frame::Ptr &frame){
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merged.append(frame->data(),frame->size());
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});
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merged_frame = std::make_shared<BufferString>(std::move(merged));
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}
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cb(back->dts(),back->pts(),merged_frame);
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_frameCached.clear();
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}
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_frameCached.emplace_back(Frame::getCacheAbleFrame(frame));
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}
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void DecoderImp::onDecode(int stream,int codecid,int flags,int64_t pts,int64_t dts,const void *data,int bytes) {
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pts /= 90;
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dts /= 90;
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switch (codecid) {
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case PSI_STREAM_H264: {
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if (!_codecid_video) {
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//获取到视频
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_codecid_video = codecid;
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InfoL<< "got video track: H264";
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auto track = std::make_shared<H264Track>();
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onTrack(track);
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}
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if (codecid != _codecid_video) {
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WarnL<< "video track change to H264 from codecid:" << getCodecName(_codecid_video);
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return;
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}
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auto frame = std::make_shared<H264FrameNoCacheAble>((char *) data, bytes, dts, pts,0);
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_merger.inputFrame(frame,[this](uint32_t dts, uint32_t pts, const Buffer::Ptr &buffer) {
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2020-05-26 17:00:51 +08:00
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onFrame(std::make_shared<H264FrameNoCacheAble>(buffer->data(), buffer->size(), dts, pts, prefixSize(buffer->data(), buffer->size())));
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2020-05-17 18:00:23 +08:00
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});
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break;
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}
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case PSI_STREAM_H265: {
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if (!_codecid_video) {
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//获取到视频
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_codecid_video = codecid;
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InfoL<< "got video track: H265";
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auto track = std::make_shared<H265Track>();
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onTrack(track);
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}
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if (codecid != _codecid_video) {
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WarnL<< "video track change to H265 from codecid:" << getCodecName(_codecid_video);
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return;
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}
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auto frame = std::make_shared<H265FrameNoCacheAble>((char *) data, bytes, dts, pts, 0);
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_merger.inputFrame(frame,[this](uint32_t dts, uint32_t pts, const Buffer::Ptr &buffer) {
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2020-05-26 17:00:51 +08:00
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onFrame(std::make_shared<H265FrameNoCacheAble>(buffer->data(), buffer->size(), dts, pts, prefixSize(buffer->data(), buffer->size())));
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2020-05-17 18:00:23 +08:00
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});
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break;
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}
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case PSI_STREAM_AAC: {
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2020-06-29 11:55:13 +08:00
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uint8_t *ptr = (uint8_t *)data;
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if(!(bytes > 7 && ptr[0] == 0xFF && (ptr[1] & 0xF0) == 0xF0)){
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//这不是aac
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break;
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}
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2020-05-17 18:00:23 +08:00
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if (!_codecid_audio) {
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//获取到音频
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_codecid_audio = codecid;
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InfoL<< "got audio track: AAC";
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auto track = std::make_shared<AACTrack>();
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onTrack(track);
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}
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if (codecid != _codecid_audio) {
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WarnL<< "audio track change to AAC from codecid:" << getCodecName(_codecid_audio);
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return;
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}
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2020-08-01 10:22:12 +08:00
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onFrame(std::make_shared<FrameFromPtr>(CodecAAC, (char *) data, bytes, dts, 0, ADTS_HEADER_LEN));
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2020-05-17 18:00:23 +08:00
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break;
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}
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case PSI_STREAM_AUDIO_G711A:
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case PSI_STREAM_AUDIO_G711U: {
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auto codec = codecid == PSI_STREAM_AUDIO_G711A ? CodecG711A : CodecG711U;
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if (!_codecid_audio) {
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//获取到音频
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_codecid_audio = codecid;
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InfoL<< "got audio track: G711";
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//G711传统只支持 8000/1/16的规格,FFmpeg貌似做了扩展,但是这里不管它了
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auto track = std::make_shared<G711Track>(codec, 8000, 1, 16);
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onTrack(track);
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}
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if (codecid != _codecid_audio) {
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WarnL<< "audio track change to G711 from codecid:" << getCodecName(_codecid_audio);
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return;
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}
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2020-08-01 10:22:12 +08:00
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onFrame(std::make_shared<FrameFromPtr>(codec, (char *) data, bytes, dts));
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2020-05-17 18:00:23 +08:00
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break;
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}
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default:
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if(codecid != 0){
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WarnL<< "unsupported codec type:" << getCodecName(codecid) << " " << (int)codecid;
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}
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break;
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2020-03-06 13:00:06 +08:00
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}
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}
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2020-06-12 18:17:49 +08:00
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#else
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void DecoderImp::onDecode(int stream,int codecid,int flags,int64_t pts,int64_t dts,const void *data,int bytes) {}
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#endif
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2020-03-06 13:00:06 +08:00
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2020-05-17 18:00:23 +08:00
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void DecoderImp::onTrack(const Track::Ptr &track) {
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_sink->addTrack(track);
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}
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void DecoderImp::onFrame(const Frame::Ptr &frame) {
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_sink->inputFrame(frame);
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}
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2020-03-06 13:00:06 +08:00
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}//namespace mediakit
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2020-06-12 18:17:49 +08:00
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