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https://github.com/ZLMediaKit/ZLMediaKit.git
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e52c1cc510
此pr主要为了修复 #2629,通过新增getMuxer接口, 可以直接获取到所有协议共享的MultiMediaSourceMuxer对象, 在此对象完成事件拦截,防止某种协议事件丢失。 同时调整了下FFmpegSource.cpp代码格式。
350 lines
14 KiB
C++
350 lines
14 KiB
C++
/*
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* Copyright (c) 2016 The ZLMediaKit project authors. All Rights Reserved.
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*
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* This file is part of ZLMediaKit(https://github.com/xia-chu/ZLMediaKit).
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*
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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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*/
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#include "FFmpegSource.h"
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#include "Common/config.h"
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#include "Common/MediaSource.h"
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#include "Common/MultiMediaSourceMuxer.h"
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#include "Util/File.h"
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#include "System.h"
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#include "Thread/WorkThreadPool.h"
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#include "Network/sockutil.h"
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using namespace std;
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using namespace toolkit;
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using namespace mediakit;
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namespace FFmpeg {
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#define FFmpeg_FIELD "ffmpeg."
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const string kBin = FFmpeg_FIELD"bin";
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const string kCmd = FFmpeg_FIELD"cmd";
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const string kLog = FFmpeg_FIELD"log";
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const string kSnap = FFmpeg_FIELD"snap";
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const string kRestartSec = FFmpeg_FIELD"restart_sec";
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onceToken token([]() {
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#ifdef _WIN32
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string ffmpeg_bin = trim(System::execute("where ffmpeg"));
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#else
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string ffmpeg_bin = trim(System::execute("which ffmpeg"));
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#endif
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//默认ffmpeg命令路径为环境变量中路径
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mINI::Instance()[kBin] = ffmpeg_bin.empty() ? "ffmpeg" : ffmpeg_bin;
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//ffmpeg日志保存路径
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mINI::Instance()[kLog] = "./ffmpeg/ffmpeg.log";
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mINI::Instance()[kCmd] = "%s -re -i %s -c:a aac -strict -2 -ar 44100 -ab 48k -c:v libx264 -f flv %s";
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mINI::Instance()[kSnap] = "%s -i %s -y -f mjpeg -frames:v 1 %s";
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mINI::Instance()[kRestartSec] = 0;
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});
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}
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FFmpegSource::FFmpegSource() {
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_poller = EventPollerPool::Instance().getPoller();
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}
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FFmpegSource::~FFmpegSource() {
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DebugL;
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}
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static bool is_local_ip(const string &ip){
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if (ip == "127.0.0.1" || ip == "localhost") {
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return true;
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}
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auto ips = SockUtil::getInterfaceList();
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for (auto &obj : ips) {
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if (ip == obj["ip"]) {
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return true;
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}
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}
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return false;
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}
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void FFmpegSource::setupRecordFlag(bool enable_hls, bool enable_mp4){
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_enable_hls = enable_hls;
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_enable_mp4 = enable_mp4;
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}
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void FFmpegSource::play(const string &ffmpeg_cmd_key, const string &src_url, const string &dst_url, int timeout_ms, const onPlay &cb) {
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GET_CONFIG(string, ffmpeg_bin, FFmpeg::kBin);
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GET_CONFIG(string, ffmpeg_cmd_default, FFmpeg::kCmd);
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GET_CONFIG(string, ffmpeg_log, FFmpeg::kLog);
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_src_url = src_url;
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_dst_url = dst_url;
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_ffmpeg_cmd_key = ffmpeg_cmd_key;
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try {
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_media_info.parse(dst_url);
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} catch (std::exception &ex) {
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cb(SockException(Err_other, ex.what()));
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return;
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}
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auto ffmpeg_cmd = ffmpeg_cmd_default;
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if (!ffmpeg_cmd_key.empty()) {
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auto cmd_it = mINI::Instance().find(ffmpeg_cmd_key);
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if (cmd_it != mINI::Instance().end()) {
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ffmpeg_cmd = cmd_it->second;
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} else {
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WarnL << "配置文件中,ffmpeg命令模板(" << ffmpeg_cmd_key << ")不存在,已采用默认模板(" << ffmpeg_cmd_default << ")";
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}
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}
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char cmd[2048] = { 0 };
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snprintf(cmd, sizeof(cmd), ffmpeg_cmd.data(), File::absolutePath("", ffmpeg_bin).data(), src_url.data(), dst_url.data());
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auto log_file = ffmpeg_log.empty() ? "" : File::absolutePath("", ffmpeg_log);
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_process.run(cmd, log_file);
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InfoL << cmd;
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if (is_local_ip(_media_info.host)) {
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// 推流给自己的,通过判断流是否注册上来判断是否正常
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if (_media_info.schema != RTSP_SCHEMA && _media_info.schema != RTMP_SCHEMA) {
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cb(SockException(Err_other, "本服务只支持rtmp/rtsp推流"));
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return;
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}
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weak_ptr<FFmpegSource> weakSelf = shared_from_this();
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findAsync(timeout_ms, [cb, weakSelf, timeout_ms](const MediaSource::Ptr &src) {
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auto strongSelf = weakSelf.lock();
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if (!strongSelf) {
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// 自己已经销毁
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return;
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}
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if (src) {
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// 推流给自己成功
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cb(SockException());
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strongSelf->onGetMediaSource(src);
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strongSelf->startTimer(timeout_ms);
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return;
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}
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//推流失败
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if (!strongSelf->_process.wait(false)) {
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// ffmpeg进程已经退出
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cb(SockException(Err_other, StrPrinter << "ffmpeg已经退出,exit code = " << strongSelf->_process.exit_code()));
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return;
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}
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// ffmpeg进程还在线,但是等待推流超时
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cb(SockException(Err_other, "等待超时"));
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});
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} else{
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//推流给其他服务器的,通过判断FFmpeg进程是否在线判断是否成功
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weak_ptr<FFmpegSource> weakSelf = shared_from_this();
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_timer = std::make_shared<Timer>(timeout_ms / 1000.0f, [weakSelf, cb, timeout_ms]() {
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auto strongSelf = weakSelf.lock();
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if (!strongSelf) {
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// 自身已经销毁
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return false;
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}
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// FFmpeg还在线,那么我们认为推流成功
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if (strongSelf->_process.wait(false)) {
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cb(SockException());
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strongSelf->startTimer(timeout_ms);
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return false;
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}
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// ffmpeg进程已经退出
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cb(SockException(Err_other, StrPrinter << "ffmpeg已经退出,exit code = " << strongSelf->_process.exit_code()));
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return false;
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}, _poller);
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}
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}
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void FFmpegSource::findAsync(int maxWaitMS, const function<void(const MediaSource::Ptr &src)> &cb) {
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auto src = MediaSource::find(_media_info.schema, _media_info.vhost, _media_info.app, _media_info.stream);
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if (src || !maxWaitMS) {
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cb(src);
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return;
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}
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void *listener_tag = this;
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// 若干秒后执行等待媒体注册超时回调
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auto onRegistTimeout = _poller->doDelayTask(maxWaitMS, [cb, listener_tag]() {
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// 取消监听该事件
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NoticeCenter::Instance().delListener(listener_tag, Broadcast::kBroadcastMediaChanged);
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cb(nullptr);
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return 0;
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});
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weak_ptr<FFmpegSource> weakSelf = shared_from_this();
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auto onRegist = [listener_tag, weakSelf, cb, onRegistTimeout](BroadcastMediaChangedArgs) {
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auto strongSelf = weakSelf.lock();
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if (!strongSelf) {
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// 本身已经销毁,取消延时任务
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onRegistTimeout->cancel();
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NoticeCenter::Instance().delListener(listener_tag, Broadcast::kBroadcastMediaChanged);
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return;
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}
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if (!bRegist || sender.getSchema() != strongSelf->_media_info.schema ||
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!equalMediaTuple(sender.getMediaTuple(), strongSelf->_media_info)) {
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// 不是自己感兴趣的事件,忽略之
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return;
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}
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// 查找的流终于注册上了;取消延时任务,防止多次回调
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onRegistTimeout->cancel();
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// 取消事件监听
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NoticeCenter::Instance().delListener(listener_tag, Broadcast::kBroadcastMediaChanged);
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// 切换到自己的线程再回复
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strongSelf->_poller->async([weakSelf, cb]() {
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if (auto strongSelf = weakSelf.lock()) {
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// 再找一遍媒体源,一般能找到
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strongSelf->findAsync(0, cb);
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}
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}, false);
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};
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// 监听媒体注册事件
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NoticeCenter::Instance().addListener(listener_tag, Broadcast::kBroadcastMediaChanged, onRegist);
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}
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/**
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* 定时检查媒体是否在线
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*/
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void FFmpegSource::startTimer(int timeout_ms) {
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weak_ptr<FFmpegSource> weakSelf = shared_from_this();
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GET_CONFIG(uint64_t,ffmpeg_restart_sec,FFmpeg::kRestartSec);
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_timer = std::make_shared<Timer>(1.0f, [weakSelf, timeout_ms]() {
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auto strongSelf = weakSelf.lock();
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if (!strongSelf) {
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//自身已经销毁
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return false;
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}
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bool needRestart = ffmpeg_restart_sec > 0 && strongSelf->_replay_ticker.elapsedTime() > ffmpeg_restart_sec * 1000;
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if (is_local_ip(strongSelf->_media_info.host)) {
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// 推流给自己的,我们通过检查是否已经注册来判断FFmpeg是否工作正常
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strongSelf->findAsync(0, [&](const MediaSource::Ptr &src) {
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// 同步查找流
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if (!src || needRestart) {
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if (needRestart) {
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strongSelf->_replay_ticker.resetTime();
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if (strongSelf->_process.wait(false)) {
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// FFmpeg进程还在运行,超时就关闭它
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strongSelf->_process.kill(2000);
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}
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InfoL << "FFmpeg即将重启, 将会继续拉流 " << strongSelf->_src_url;
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}
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// 流不在线,重新拉流, 这里原先是10秒超时,实际发现10秒不够,改成20秒了
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if (strongSelf->_replay_ticker.elapsedTime() > 20 * 1000) {
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// 上次重试时间超过10秒,那么再重试FFmpeg拉流
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strongSelf->_replay_ticker.resetTime();
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strongSelf->play(strongSelf->_ffmpeg_cmd_key, strongSelf->_src_url, strongSelf->_dst_url, timeout_ms, [](const SockException &) {});
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}
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}
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});
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} else {
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// 推流给其他服务器的,我们通过判断FFmpeg进程是否在线,如果FFmpeg推流中断,那么它应该会自动退出
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if (!strongSelf->_process.wait(false) || needRestart) {
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if (needRestart) {
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strongSelf->_replay_ticker.resetTime();
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if (strongSelf->_process.wait(false)) {
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// FFmpeg进程还在运行,超时就关闭它
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strongSelf->_process.kill(2000);
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}
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InfoL << "FFmpeg即将重启, 将会继续拉流 " << strongSelf->_src_url;
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}
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// ffmpeg不在线,重新拉流
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strongSelf->play(strongSelf->_ffmpeg_cmd_key, strongSelf->_src_url, strongSelf->_dst_url, timeout_ms, [weakSelf](const SockException &ex) {
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if (!ex) {
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// 没有错误
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return;
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}
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auto strongSelf = weakSelf.lock();
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if (!strongSelf) {
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// 自身已经销毁
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return;
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}
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// 上次重试时间超过10秒,那么再重试FFmpeg拉流
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strongSelf->startTimer(10 * 1000);
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});
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}
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}
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return true;
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}, _poller);
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}
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void FFmpegSource::setOnClose(const function<void()> &cb){
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_onClose = cb;
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}
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bool FFmpegSource::close(MediaSource &sender) {
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auto listener = getDelegate();
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if (listener && !listener->close(sender)) {
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//关闭失败
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return false;
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}
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//该流无人观看,我们停止吧
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if (_onClose) {
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_onClose();
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}
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return true;
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}
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MediaOriginType FFmpegSource::getOriginType(MediaSource &sender) const{
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return MediaOriginType::ffmpeg_pull;
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}
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string FFmpegSource::getOriginUrl(MediaSource &sender) const {
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return _src_url;
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}
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void FFmpegSource::onGetMediaSource(const MediaSource::Ptr &src) {
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auto muxer = src->getMuxer();
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auto listener = muxer ? muxer->getDelegate() : nullptr;
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if (listener && listener.get() != this) {
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//防止多次进入onGetMediaSource函数导致无限递归调用的bug
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setDelegate(listener);
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muxer->setDelegate(shared_from_this());
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if (_enable_hls) {
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src->setupRecord(Recorder::type_hls, true, "", 0);
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}
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if (_enable_mp4) {
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src->setupRecord(Recorder::type_mp4, true, "", 0);
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}
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}
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}
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void FFmpegSnap::makeSnap(const string &play_url, const string &save_path, float timeout_sec, const onSnap &cb) {
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GET_CONFIG(string, ffmpeg_bin, FFmpeg::kBin);
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GET_CONFIG(string, ffmpeg_snap, FFmpeg::kSnap);
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GET_CONFIG(string, ffmpeg_log, FFmpeg::kLog);
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Ticker ticker;
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WorkThreadPool::Instance().getPoller()->async([timeout_sec, play_url, save_path, cb, ticker]() {
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auto elapsed_ms = ticker.elapsedTime();
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if (elapsed_ms > timeout_sec * 1000) {
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// 超时,后台线程负载太高,当代太久才启动该任务
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cb(false, "wait work poller schedule snap task timeout");
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return;
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}
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char cmd[2048] = { 0 };
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snprintf(cmd, sizeof(cmd), ffmpeg_snap.data(), File::absolutePath("", ffmpeg_bin).data(), play_url.data(), save_path.data());
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std::shared_ptr<Process> process = std::make_shared<Process>();
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auto log_file = ffmpeg_log.empty() ? ffmpeg_log : File::absolutePath("", ffmpeg_log);
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process->run(cmd, log_file);
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//定时器延时应该减去后台任务启动的延时
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auto delayTask = EventPollerPool::Instance().getPoller()->doDelayTask(
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(uint64_t)(timeout_sec * 1000 - elapsed_ms), [process, cb, log_file, save_path]() {
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if (process->wait(false)) {
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// FFmpeg进程还在运行,超时就关闭它
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process->kill(2000);
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}
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return 0;
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});
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// 等待FFmpeg进程退出
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process->wait(true);
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// FFmpeg进程退出了可以取消定时器了
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delayTask->cancel();
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// 执行回调函数
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bool success = process->exit_code() == 0 && File::fileSize(save_path.data());
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cb(success, (!success && !log_file.empty()) ? File::loadFile(log_file.data()) : "");
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});
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}
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