mirror of
https://github.com/dashr9230/SA-MP.git
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bcdbedc0be
* Add RakNet source files to the VS project
182 lines
5.1 KiB
C++
182 lines
5.1 KiB
C++
/// \file
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///
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/// This file is part of RakNet Copyright 2003 Kevin Jenkins.
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///
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/// Usage of RakNet is subject to the appropriate license agreement.
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/// Creative Commons Licensees are subject to the
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/// license found at
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/// http://creativecommons.org/licenses/by-nc/2.5/
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/// Single application licensees are subject to the license found at
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/// http://www.rakkarsoft.com/SingleApplicationLicense.html
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/// Custom license users are subject to the terms therein.
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/// GPL license users are subject to the GNU General Public
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/// License as published by the Free
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/// Software Foundation; either version 2 of the License, or (at your
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/// option) any later version.
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#include "NetworkTypes.h"
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#include <string.h>
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#include <stdio.h>
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#ifdef _COMPATIBILITY_1
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#include "Compatibility1Includes.h"
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#elif defined(_WIN32)
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// IP_DONTFRAGMENT is different between winsock 1 and winsock 2. Therefore, Winsock2.h must be linked againt Ws2_32.lib
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// winsock.h must be linked against WSock32.lib. If these two are mixed up the flag won't work correctly
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#include <winsock2.h>
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#include <stdlib.h> // itoa
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#else
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#include <sys/socket.h>
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#include <netinet/in.h>
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#include <arpa/inet.h>
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#endif
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// Fast itoa from http://www.jb.man.ac.uk/~slowe/cpp/itoa.html for Linux since it seems like Linux doesn't support this function.
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// I modified it to remove the std dependencies.
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char* my_itoa( int value, char* result, int base ) {
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// check that the base if valid
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if (base < 2 || base > 16) { *result = 0; return result; }
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char* out = result;
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int quotient = value;
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int absQModB;
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do {
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// KevinJ - get rid of this dependency
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//*out = "0123456789abcdef"[ std::abs( quotient % base ) ];
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absQModB=quotient % base;
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if (absQModB < 0)
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absQModB=-absQModB;
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*out = "0123456789abcdef"[ absQModB ];
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++out;
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quotient /= base;
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} while ( quotient );
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// Only apply negative sign for base 10
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if ( value < 0 && base == 10) *out++ = '-';
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// KevinJ - get rid of this dependency
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// std::reverse( result, out );
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*out = 0;
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// KevinJ - My own reverse code
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char *start = result;
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char temp;
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out--;
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while (start < out)
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{
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temp=*start;
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*start=*out;
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*out=temp;
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start++;
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out--;
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}
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return result;
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}
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// Defaults to not in peer to peer mode for NetworkIDs. This only sends the localSystemId portion in the BitStream class
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// This is what you want for client/server, where the server assigns all NetworkIDs and it is unnecessary to transmit the full structure.
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// For peer to peer, this will transmit the playerId of the system that created the object in addition to localSystemId. This allows
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// Any system to create unique ids locally.
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// All systems must use the same value for this variable.
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bool RAK_DLL_EXPORT NetworkID::peerToPeerMode=false;
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bool PlayerID::operator==( const PlayerID& right ) const
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{
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return binaryAddress == right.binaryAddress && port == right.port;
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}
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bool PlayerID::operator!=( const PlayerID& right ) const
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{
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return binaryAddress != right.binaryAddress || port != right.port;
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}
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bool PlayerID::operator>( const PlayerID& right ) const
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{
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return ( ( binaryAddress > right.binaryAddress ) || ( ( binaryAddress == right.binaryAddress ) && ( port > right.port ) ) );
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}
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bool PlayerID::operator<( const PlayerID& right ) const
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{
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return ( ( binaryAddress < right.binaryAddress ) || ( ( binaryAddress == right.binaryAddress ) && ( port < right.port ) ) );
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}
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char *PlayerID::ToString(bool writePort) const
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{
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#ifdef _COMPATIBILITY_1
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return "";
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#else
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static char str[22];
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in_addr in;
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in.s_addr = binaryAddress;
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strcpy(str, inet_ntoa( in ));
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if (writePort)
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{
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strcat(str, ":");
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#if (defined(__GNUC__) || defined(__GCCXML__))
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my_itoa(port, str+strlen(str), 10);
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#else
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_itoa(port, str+strlen(str), 10);
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#endif
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}
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return (char*) str;
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#endif
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}
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void PlayerID::SetBinaryAddress(const char *str)
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{
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#ifdef _COMPATIBILITY_1
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binaryAddress=UNASSIGNED_PLAYER_ID.binaryAddress;
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#else
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binaryAddress=inet_addr(str);
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#endif
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}
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NetworkID& NetworkID::operator = ( const NetworkID& input )
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{
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playerId = input.playerId;
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localSystemId = input.localSystemId;
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return *this;
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}
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bool NetworkID::operator==( const NetworkID& right ) const
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{
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if (NetworkID::peerToPeerMode)
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return playerId == right.playerId && localSystemId == right.localSystemId;
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else
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return localSystemId==right.localSystemId;
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}
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bool NetworkID::operator!=( const NetworkID& right ) const
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{
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if (NetworkID::peerToPeerMode)
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return playerId != right.playerId || localSystemId != right.localSystemId;
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else
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return localSystemId!=right.localSystemId;
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}
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bool NetworkID::operator>( const NetworkID& right ) const
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{
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if (NetworkID::peerToPeerMode)
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return ( ( playerId > right.playerId ) || ( ( playerId == right.playerId ) && ( localSystemId > right.localSystemId ) ) );
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else
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return localSystemId>right.localSystemId;
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}
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bool NetworkID::operator<( const NetworkID& right ) const
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{
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if (NetworkID::peerToPeerMode)
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return ( ( playerId < right.playerId ) || ( ( playerId == right.playerId ) && ( localSystemId < right.localSystemId ) ) );
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else
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return localSystemId<right.localSystemId;
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}
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bool NetworkID::IsPeerToPeerMode(void)
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{
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return peerToPeerMode;
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}
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void NetworkID::SetPeerToPeerMode(bool isPeerToPeer)
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{
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peerToPeerMode=isPeerToPeer;
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}
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