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https://github.com/ZLMediaKit/ZLMediaKit.git
synced 2024-11-22 10:40:05 +08:00
GB28181单端口接收流支持多线程
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@ -1 +1 @@
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Subproject commit 58d0e6a4488a290e966b2a0535445dc75af0529c
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Subproject commit 0c37146426d8fb0a6d98472739ec3bcc683922db
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@ -86,55 +86,69 @@ private:
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void RtpServer::start(uint16_t local_port, const string &stream_id, bool enable_tcp, const char *local_ip) {
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//创建udp服务器
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Socket::Ptr udp_server = Socket::createSocket(nullptr, true);
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Socket::Ptr rtcp_server = Socket::createSocket(nullptr, true);
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Socket::Ptr rtp_socket = Socket::createSocket(nullptr, true);
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Socket::Ptr rtcp_socket = Socket::createSocket(nullptr, true);
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if (local_port == 0) {
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//随机端口,rtp端口采用偶数
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auto pair = std::make_pair(udp_server, rtcp_server);
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auto pair = std::make_pair(rtp_socket, rtcp_socket);
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makeSockPair(pair, local_ip);
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//取偶数端口
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udp_server = pair.first;
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rtcp_server = pair.second;
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} else if (!udp_server->bindUdpSock(local_port, local_ip)) {
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rtp_socket = pair.first;
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rtcp_socket = pair.second;
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} else if (!rtp_socket->bindUdpSock(local_port, local_ip)) {
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//用户指定端口
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throw std::runtime_error(StrPrinter << "创建rtp端口 " << local_ip << ":" << local_port << " 失败:" << get_uv_errmsg(true));
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} else if(!rtcp_server->bindUdpSock(udp_server->get_local_port() + 1, local_ip)) {
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} else if(!rtcp_socket->bindUdpSock(rtp_socket->get_local_port() + 1, local_ip)) {
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// rtcp端口
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throw std::runtime_error(StrPrinter << "创建rtcp端口 " << local_ip << ":" << local_port << " 失败:" << get_uv_errmsg(true));
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}
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//设置udp socket读缓存
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SockUtil::setRecvBuf(udp_server->rawFD(), 4 * 1024 * 1024);
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SockUtil::setRecvBuf(rtp_socket->rawFD(), 4 * 1024 * 1024);
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TcpServer::Ptr tcp_server;
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if (enable_tcp) {
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//创建tcp服务器
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tcp_server = std::make_shared<TcpServer>(udp_server->getPoller());
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tcp_server = std::make_shared<TcpServer>(rtp_socket->getPoller());
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(*tcp_server)[RtpSession::kStreamID] = stream_id;
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tcp_server->start<RtpSession>(udp_server->get_local_port(), local_ip);
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(*tcp_server)[RtpSession::kIsUDP] = 0;
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tcp_server->start<RtpSession>(rtp_socket->get_local_port(), local_ip);
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}
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//创建udp服务器
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UdpServer::Ptr udp_server;
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RtpProcess::Ptr process;
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if (!stream_id.empty()) {
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//指定了流id,那么一个端口一个流(不管是否包含多个ssrc的多个流,绑定rtp源后,会筛选掉ip端口不匹配的流)
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//由于是一个端口一个流,单线程处理即可
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process = RtpSelector::Instance().getProcess(stream_id, true);
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RtcpHelper::Ptr helper = std::make_shared<RtcpHelper>(std::move(rtcp_server), 90000);
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RtcpHelper::Ptr helper = std::make_shared<RtcpHelper>(std::move(rtcp_socket), 90000);
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helper->startRtcp();
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udp_server->setOnRead([udp_server, process, helper](const Buffer::Ptr &buf, struct sockaddr *addr, int addr_len) {
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rtp_socket->setOnRead([rtp_socket, process, helper](const Buffer::Ptr &buf, struct sockaddr *addr, int addr_len) {
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helper->onRecvRtp(buf, addr, addr_len);
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process->inputRtp(true, udp_server, buf->data(), buf->size(), addr);
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process->inputRtp(true, rtp_socket, buf->data(), buf->size(), addr);
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});
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} else {
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//未指定流id,一个端口多个流,通过ssrc来分流
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#if 1
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//单端口多线程接收多个流,根据ssrc区分流
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udp_server = std::make_shared<UdpServer>(rtp_socket->getPoller());
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(*udp_server)[RtpSession::kIsUDP] = 1;
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udp_server->start<RtpSession>(rtp_socket->get_local_port(), local_ip);
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rtp_socket = nullptr;
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#else
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//单端口单线程接收多个流
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auto &ref = RtpSelector::Instance();
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udp_server->setOnRead([&ref, udp_server](const Buffer::Ptr &buf, struct sockaddr *addr, int) {
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ref.inputRtp(udp_server, buf->data(), buf->size(), addr);
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rtp_socket->setOnRead([&ref, rtp_socket](const Buffer::Ptr &buf, struct sockaddr *addr, int) {
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ref.inputRtp(rtp_socket, buf->data(), buf->size(), addr);
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});
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#endif
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}
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_on_clearup = [udp_server, process, stream_id]() {
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//去除循环引用
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udp_server->setOnRead(nullptr);
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_on_clearup = [rtp_socket, process, stream_id]() {
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if (rtp_socket) {
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//去除循环引用
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rtp_socket->setOnRead(nullptr);
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}
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if (process) {
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//删除rtp处理器
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RtpSelector::Instance().delProcess(stream_id, process.get());
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@ -143,6 +157,7 @@ void RtpServer::start(uint16_t local_port, const string &stream_id, bool enable
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_tcp_server = tcp_server;
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_udp_server = udp_server;
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_rtp_socket = rtp_socket;
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_rtp_process = process;
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}
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@ -152,12 +167,8 @@ void RtpServer::setOnDetach(const function<void()> &cb){
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}
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}
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EventPoller::Ptr RtpServer::getPoller() {
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return _udp_server->getPoller();
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}
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uint16_t RtpServer::getPort() {
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return _udp_server ? _udp_server->get_local_port() : 0;
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return _udp_server ? _udp_server->getPort() : _rtp_socket->get_local_port();
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}
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}//namespace mediakit
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@ -15,6 +15,7 @@
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#include <memory>
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#include "Network/Socket.h"
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#include "Network/TcpServer.h"
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#include "Network/UdpServer.h"
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#include "RtpSession.h"
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using namespace std;
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@ -47,18 +48,14 @@ public:
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*/
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uint16_t getPort();
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/**
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* 获取绑定的线程
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*/
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EventPoller::Ptr getPoller();
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/**
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* 设置RtpProcess onDetach事件回调
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*/
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void setOnDetach(const function<void()> &cb);
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protected:
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Socket::Ptr _udp_server;
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Socket::Ptr _rtp_socket;
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UdpServer::Ptr _udp_server;
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TcpServer::Ptr _tcp_server;
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RtpProcess::Ptr _rtp_process;
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function<void()> _on_clearup;
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@ -16,16 +16,27 @@
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namespace mediakit{
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const string RtpSession::kStreamID = "stream_id";
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const string RtpSession::kIsUDP = "is_udp";
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void RtpSession::attachServer(const Server &server) {
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_stream_id = const_cast<Server &>(server)[kStreamID];
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_is_udp = const_cast<Server &>(server)[kIsUDP];
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if (_is_udp) {
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//设置udp socket读缓存
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SockUtil::setRecvBuf(getSock()->rawFD(), 4 * 1024 * 1024);
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_statistic_udp = std::make_shared<ObjectStatistic<UdpSession> >();
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} else {
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_statistic_tcp = std::make_shared<ObjectStatistic<TcpSession> >();
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}
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}
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RtpSession::RtpSession(const Socket::Ptr &sock) : TcpSession(sock) {
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RtpSession::RtpSession(const Socket::Ptr &sock) : Session(sock) {
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DebugP(this);
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socklen_t addr_len = sizeof(addr);
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getpeername(sock->rawFD(), &addr, &addr_len);
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socklen_t addr_len = sizeof(_addr);
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getpeername(sock->rawFD(), &_addr, &addr_len);
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}
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RtpSession::~RtpSession() {
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DebugP(this);
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if(_process){
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@ -35,6 +46,10 @@ RtpSession::~RtpSession() {
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void RtpSession::onRecv(const Buffer::Ptr &data) {
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try {
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if (_is_udp) {
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onRtpPacket(data->data(), data->size());
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return;
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}
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RtpSplitter::input(data->data(), data->size());
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} catch (SockException &ex) {
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shutdown(ex);
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@ -58,19 +73,21 @@ void RtpSession::onManager() {
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}
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void RtpSession::onRtpPacket(const char *data, size_t len) {
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if (_search_rtp) {
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//搜索上下文期间,数据丢弃
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if (_search_rtp_finished) {
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//下个包开始就是正确的rtp包了
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_search_rtp_finished = false;
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_search_rtp = false;
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if (!_is_udp) {
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if (_search_rtp) {
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//搜索上下文期间,数据丢弃
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if (_search_rtp_finished) {
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//下个包开始就是正确的rtp包了
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_search_rtp_finished = false;
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_search_rtp = false;
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}
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return;
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}
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if (len > 1024 * 10) {
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_search_rtp = true;
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WarnL << "rtp包长度异常(" << len << "),发送端可能缓存溢出并覆盖,开始搜索ssrc以便恢复上下文";
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return;
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}
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return;
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}
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if (len > 1024 * 10) {
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_search_rtp = true;
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WarnL << "rtp包长度异常(" << len << "),发送端可能缓存溢出并覆盖,开始搜索ssrc以便恢复上下文";
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return;
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}
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if (!_process) {
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if (!RtpSelector::getSSRC(data, len, _ssrc)) {
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@ -85,10 +102,14 @@ void RtpSession::onRtpPacket(const char *data, size_t len) {
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_process->setListener(dynamic_pointer_cast<RtpSession>(shared_from_this()));
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}
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try {
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_process->inputRtp(false, getSock(), data, len, &addr);
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_process->inputRtp(false, getSock(), data, len, &_addr);
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} catch (RtpReceiver::BadRtpException &ex) {
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WarnL << ex.what() << ",开始搜索ssrc以便恢复上下文";
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_search_rtp = true;
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if (!_is_udp) {
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WarnL << ex.what() << ",开始搜索ssrc以便恢复上下文";
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_search_rtp = true;
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} else {
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throw;
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}
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} catch (...) {
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throw;
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}
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@ -20,9 +20,11 @@ using namespace toolkit;
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namespace mediakit{
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class RtpSession : public TcpSession , public RtpSplitter , public MediaSourceEvent{
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class RtpSession : public Session , public RtpSplitter , public MediaSourceEvent{
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public:
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static const string kStreamID;
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static const string kIsUDP;
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RtpSession(const Socket::Ptr &sock);
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~RtpSession() override;
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void onRecv(const Buffer::Ptr &) override;
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@ -41,13 +43,16 @@ protected:
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const char *onSearchPacketTail(const char *data, size_t len) override;
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private:
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bool _is_udp = false;
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bool _search_rtp = false;
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bool _search_rtp_finished = false;
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uint32_t _ssrc = 0;
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Ticker _ticker;
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string _stream_id;
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struct sockaddr addr;
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struct sockaddr _addr;
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RtpProcess::Ptr _process;
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std::shared_ptr<ObjectStatistic<TcpSession> > _statistic_tcp;
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std::shared_ptr<ObjectStatistic<UdpSession> > _statistic_udp;
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};
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}//namespace mediakit
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