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📄 rtpinterface.hh

📁 H.264 RTSP 串流(live 555)視窗版本
💻 HH
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/**********This library is free software; you can redistribute it and/or modify it underthe terms of the GNU Lesser General Public License as published by theFree Software Foundation; either version 2.1 of the License, or (at youroption) any later version. (See <http://www.gnu.org/copyleft/lesser.html>.)This library is distributed in the hope that it will be useful, but WITHOUTANY WARRANTY; without even the implied warranty of MERCHANTABILITY or FITNESSFOR A PARTICULAR PURPOSE.  See the GNU Lesser General Public License formore details.You should have received a copy of the GNU Lesser General Public Licensealong with this library; if not, write to the Free Software Foundation, Inc.,51 Franklin Street, Fifth Floor, Boston, MA 02110-1301  USA**********/// "liveMedia"// Copyright (c) 1996-2010 Live Networks, Inc.  All rights reserved.// An abstraction of a network interface used for RTP (or RTCP).// (This allows the RTP-over-TCP hack (RFC 2326, section 10.12) to// be implemented transparently.)// C++ header#ifndef _RTP_INTERFACE_HH#define _RTP_INTERFACE_HH#ifndef _MEDIA_HH#include <Media.hh>#endif#ifndef _GROUPSOCK_HH#include "Groupsock.hh"#endif// Typedef for an optional auxilliary handler function, to be called// when each new packet is read:typedef void AuxHandlerFunc(void* clientData, unsigned char* packet,			    unsigned packetSize);typedef void ServerRequestAlternativeByteHandler(void* instance, u_int8_t requestByte);// A hack that allows a handler for RTP/RTCP packets received over TCP to process RTSP commands that may also appear within// the same TCP connection.  A RTSP server implementation would supply a function like this - as a parameter to// "ServerMediaSubsession::startStream()".class tcpStreamRecord {public:  tcpStreamRecord(int streamSocketNum, unsigned char streamChannelId,		  tcpStreamRecord* next);  virtual ~tcpStreamRecord();public:  tcpStreamRecord* fNext;  int fStreamSocketNum;  unsigned char fStreamChannelId;};class RTPInterface {public:  RTPInterface(Medium* owner, Groupsock* gs);  virtual ~RTPInterface();  Groupsock* gs() const { return fGS; }  void setStreamSocket(int sockNum, unsigned char streamChannelId);  void addStreamSocket(int sockNum, unsigned char streamChannelId);  void removeStreamSocket(int sockNum, unsigned char streamChannelId);  void setServerRequestAlternativeByteHandler(ServerRequestAlternativeByteHandler* handler, void* clientData);  void sendPacket(unsigned char* packet, unsigned packetSize);  void startNetworkReading(TaskScheduler::BackgroundHandlerProc*                           handlerProc);  Boolean handleRead(unsigned char* buffer, unsigned bufferMaxSize,		     unsigned& bytesRead, struct sockaddr_in& fromAddress, Boolean& packetReadWasIncomplete);  void stopNetworkReading();  UsageEnvironment& envir() const { return fOwner->envir(); }  void setAuxilliaryReadHandler(AuxHandlerFunc* handlerFunc,				void* handlerClientData) {    fAuxReadHandlerFunc = handlerFunc;    fAuxReadHandlerClientData = handlerClientData;  }  // A hack for supporting handlers for RTCP packets arriving interleaved over TCP:  int nextTCPReadStreamSocketNum() const { return fNextTCPReadStreamSocketNum; }  unsigned char nextTCPReadStreamChannelId() const { return fNextTCPReadStreamChannelId; }private:  friend class SocketDescriptor;  Medium* fOwner;  Groupsock* fGS;  tcpStreamRecord* fTCPStreams; // optional, for RTP-over-TCP streaming/receiving  unsigned short fNextTCPReadSize;    // how much data (if any) is available to be read from the TCP stream  int fNextTCPReadStreamSocketNum;  unsigned char fNextTCPReadStreamChannelId;  TaskScheduler::BackgroundHandlerProc* fReadHandlerProc; // if any  AuxHandlerFunc* fAuxReadHandlerFunc;  void* fAuxReadHandlerClientData;};#endif

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