527 lines
12 KiB
C
527 lines
12 KiB
C
#include "../client/client.h"
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#include "mac_local.h"
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#include <OpenTransport.h>
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#include <OpenTptInternet.h>
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static qboolean gOTInited;
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static EndpointRef endpoint = kOTInvalidEndpointRef;
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static EndpointRef resolverEndpoint = kOTInvalidEndpointRef;
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#define MAX_IPS 16
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static int numIP;
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static InetInterfaceInfo sys_inetInfo[MAX_IPS];
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static TUDErr uderr;
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void RcvUDErr( void ) {
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memset( &uderr, 0, sizeof( uderr ) );
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uderr.addr.maxlen = 0;
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uderr.opt.maxlen = 0;
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OTRcvUDErr( endpoint, &uderr );
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}
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void HandleOTError( int err, const char *func ) {
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int r;
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static int lastErr;
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if ( err != lastErr ) {
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Com_Printf( "%s: error %i\n", func, err );
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}
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// if we don't call OTLook, things wedge
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r = OTLook( endpoint );
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if ( err != lastErr ) {
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Com_DPrintf( "%s: OTLook %i\n", func, r );
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}
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switch( r ) {
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case T_UDERR:
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RcvUDErr();
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if ( err != lastErr ) {
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Com_DPrintf( "%s: OTRcvUDErr %i\n", func, uderr.error );
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}
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break;
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default:
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// Com_Printf( "%s: Unknown OTLook error %i\n", func, r );
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break;
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}
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lastErr = err; // don't spew tons of messages
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}
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/*
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=================
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NotifyProc
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=================
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*/
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pascal void NotifyProc(void* contextPtr, OTEventCode code,
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OTResult result, void* cookie) {
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switch( code ) {
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case T_OPENCOMPLETE:
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endpoint = cookie;
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break;
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case T_UDERR:
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RcvUDErr();
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break;
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}
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}
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/*
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=================
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GetFourByteOption
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=================
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*/
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static OTResult GetFourByteOption(EndpointRef ep,
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OTXTILevel level,
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OTXTIName name,
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UInt32 *value)
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{
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OTResult err;
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TOption option;
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TOptMgmt request;
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TOptMgmt result;
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/* Set up the option buffer */
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option.len = kOTFourByteOptionSize;
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option.level= level;
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option.name = name;
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option.status = 0;
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option.value[0] = 0;// Ignored because we're getting the value.
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/* Set up the request parameter for OTOptionManagement to point
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to the option buffer we just filled out */
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request.opt.buf= (UInt8 *) &option;
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request.opt.len= sizeof(option);
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request.flags= T_CURRENT;
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/* Set up the reply parameter for OTOptionManagement. */
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result.opt.buf = (UInt8 *) &option;
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result.opt.maxlen = sizeof(option);
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err = OTOptionManagement(ep, &request, &result);
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if (err == noErr) {
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switch (option.status)
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{
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case T_SUCCESS:
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case T_READONLY:
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*value = option.value[0];
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break;
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default:
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err = option.status;
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break;
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}
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}
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return (err);
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}
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/*
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=================
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SetFourByteOption
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=================
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*/
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static OTResult SetFourByteOption(EndpointRef ep,
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OTXTILevel level,
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OTXTIName name,
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UInt32 value)
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{
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OTResult err;
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TOption option;
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TOptMgmt request;
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TOptMgmt result;
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/* Set up the option buffer to specify the option and value to
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set. */
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option.len = kOTFourByteOptionSize;
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option.level= level;
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option.name = name;
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option.status = 0;
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option.value[0] = value;
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/* Set up request parameter for OTOptionManagement */
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request.opt.buf= (UInt8 *) &option;
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request.opt.len= sizeof(option);
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request.flags = T_NEGOTIATE;
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/* Set up reply parameter for OTOptionManagement. */
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result.opt.buf = (UInt8 *) &option;
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result.opt.maxlen = sizeof(option);
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err = OTOptionManagement(ep, &request, &result);
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if (err == noErr) {
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if (option.status != T_SUCCESS)
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err = option.status;
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}
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return (err);
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}
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/*
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=====================
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NET_GetLocalAddress
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=====================
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*/
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void NET_GetLocalAddress( void ) {
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OSStatus err;
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for ( numIP = 0 ; numIP < MAX_IPS ; numIP++ ) {
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err = OTInetGetInterfaceInfo( &sys_inetInfo[ numIP ], numIP );
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if ( err ) {
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break;
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}
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Com_Printf( "LocalAddress: %i.%i.%i.%i\n",
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((byte *)&sys_inetInfo[numIP].fAddress)[0],
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((byte *)&sys_inetInfo[numIP].fAddress)[1],
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((byte *)&sys_inetInfo[numIP].fAddress)[2],
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((byte *)&sys_inetInfo[numIP].fAddress)[3] );
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Com_Printf( "Netmask: %i.%i.%i.%i\n",
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((byte *)&sys_inetInfo[numIP].fNetmask)[0],
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((byte *)&sys_inetInfo[numIP].fNetmask)[1],
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((byte *)&sys_inetInfo[numIP].fNetmask)[2],
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((byte *)&sys_inetInfo[numIP].fNetmask)[3] );
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}
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}
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/*
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==================
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Sys_InitNetworking
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struct InetAddress
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{
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OTAddressType fAddressType; // always AF_INET
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InetPort fPort; // Port number
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InetHost fHost; // Host address in net byte order
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UInt8 fUnused[8]; // Traditional unused bytes
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};
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typedef struct InetAddress InetAddress;
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==================
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*/
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void Sys_InitNetworking( void ) {
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OSStatus err;
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OTConfiguration *config;
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TBind bind, bindOut;
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InetAddress in, out;
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int i;
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Com_Printf( "----- Sys_InitNetworking -----\n" );
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// init OpenTransport
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Com_Printf( "... InitOpenTransport()\n" );
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err = InitOpenTransport();
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if ( err != noErr ) {
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Com_Printf( "InitOpenTransport() failed\n" );
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Com_Printf( "------------------------------\n" );
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return;
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}
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gOTInited = true;
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// get an endpoint
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Com_Printf( "... OTOpenEndpoint()\n" );
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config = OTCreateConfiguration( kUDPName );
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#if 1
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endpoint = OTOpenEndpoint( config, 0, nil, &err);
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#else
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err = OTAsyncOpenEndpoint( config, 0, 0, NotifyProc, 0 );
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if ( !endpoint ) {
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err = 1;
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}
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#endif
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if ( err != noErr ) {
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endpoint = 0;
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Com_Printf( "OTOpenEndpoint() failed\n" );
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Com_Printf( "------------------------------\n" );
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return;
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}
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// set non-blocking
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err = OTSetNonBlocking( endpoint );
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// scan for a valid port in our range
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Com_Printf( "... OTBind()\n" );
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for ( i = 0 ; i < 10 ; i++ ) {
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in.fAddressType = AF_INET;
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in.fPort = PORT_SERVER + i;
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in.fHost = 0;
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bind.addr.maxlen = sizeof( in );
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bind.addr.len = sizeof( in );
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bind.addr.buf = (unsigned char *)∈
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bind.qlen = 0;
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bindOut.addr.maxlen = sizeof( out );
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bindOut.addr.len = sizeof( out );
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bindOut.addr.buf = (unsigned char *)&out;
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bindOut.qlen = 0;
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err = OTBind( endpoint, &bind, &bindOut );
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if ( err == noErr ) {
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Com_Printf( "Opened UDP endpoint at port %i\n",
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out.fPort );
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break;
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}
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}
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if ( err != noErr ) {
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Com_Printf( "Couldn't bind a local port\n" );
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}
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// get the local address for LAN client detection
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NET_GetLocalAddress();
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// set to allow broadcasts
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err = SetFourByteOption( endpoint, INET_IP, IP_BROADCAST, T_YES );
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if ( err != noErr ) {
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Com_Printf( "IP_BROADCAST failed\n" );
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}
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// get an endpoint just for resolving addresses, because
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// I was having crashing problems doing it on the same endpoint
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config = OTCreateConfiguration( kUDPName );
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resolverEndpoint = OTOpenEndpoint( config, 0, nil, &err);
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if ( err != noErr ) {
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resolverEndpoint = 0;
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Com_Printf( "OTOpenEndpoint() for resolver failed\n" );
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Com_Printf( "------------------------------\n" );
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return;
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}
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in.fAddressType = AF_INET;
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in.fPort = 0;
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in.fHost = 0;
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bind.addr.maxlen = sizeof( in );
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bind.addr.len = sizeof( in );
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bind.addr.buf = (unsigned char *)∈
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bind.qlen = 0;
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bindOut.addr.maxlen = sizeof( out );
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bindOut.addr.len = sizeof( out );
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bindOut.addr.buf = (unsigned char *)&out;
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bindOut.qlen = 0;
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err = OTBind( resolverEndpoint, &bind, &bindOut );
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Com_Printf( "------------------------------\n" );
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}
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/*
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==================
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Sys_ShutdownNetworking
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==================
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*/
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void Sys_ShutdownNetworking( void ) {
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Com_Printf( "Sys_ShutdownNetworking();\n" );
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if ( endpoint != kOTInvalidEndpointRef ) {
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OTUnbind( endpoint );
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OTCloseProvider( endpoint );
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endpoint = kOTInvalidEndpointRef;
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}
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if ( resolverEndpoint != kOTInvalidEndpointRef ) {
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OTUnbind( resolverEndpoint );
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OTCloseProvider( resolverEndpoint );
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resolverEndpoint = kOTInvalidEndpointRef;
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}
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if (gOTInited) {
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CloseOpenTransport();
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gOTInited = false;
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}
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}
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/*
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=============
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Sys_StringToAdr
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Does NOT parse port numbers
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idnewt
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192.246.40.70
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=============
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*/
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qboolean Sys_StringToAdr( const char *s, netadr_t *a ) {
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OSStatus err;
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TBind in, out;
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InetAddress inAddr;
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DNSAddress dnsAddr;
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if ( !resolverEndpoint ) {
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return qfalse;
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}
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memset( &in, 0, sizeof( in ) );
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in.addr.buf = (UInt8 *) &dnsAddr;
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in.addr.len = OTInitDNSAddress(&dnsAddr, (char *)s );
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in.qlen = 0;
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memset( &out, 0, sizeof( out ) );
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out.addr.buf = (byte *)&inAddr;
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out.addr.maxlen = sizeof( inAddr );
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out.qlen = 0;
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err = OTResolveAddress( resolverEndpoint, &in, &out, 10000 );
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if ( err ) {
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HandleOTError( err, "Sys_StringToAdr" );
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return qfalse;
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}
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a->type = NA_IP;
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*(int *)a->ip = inAddr.fHost;
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return qtrue;
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}
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/*
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==================
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Sys_SendPacket
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==================
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*/
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#define MAX_PACKETLEN 1400
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void Sys_SendPacket( int length, const void *data, netadr_t to ) {
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TUnitData d;
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InetAddress inAddr;
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OSStatus err;
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if ( !endpoint ) {
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return;
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}
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if ( length > MAX_PACKETLEN ) {
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Com_Error( ERR_DROP, "Sys_SendPacket: length > MAX_PACKETLEN" );
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}
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inAddr.fAddressType = AF_INET;
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inAddr.fPort = to.port;
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if ( to.type == NA_BROADCAST ) {
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inAddr.fHost = -1;
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} else {
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inAddr.fHost = *(int *)&to.ip;
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}
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memset( &d, 0, sizeof( d ) );
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d.addr.len = sizeof( inAddr );
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d.addr.maxlen = sizeof( inAddr );
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d.addr.buf = (unsigned char *)&inAddr;
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d.opt.len = 0;
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d.opt.maxlen = 0;
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d.opt.buf = NULL;
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d.udata.len = length;
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d.udata.maxlen = length;
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d.udata.buf = (unsigned char *)data;
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err = OTSndUData( endpoint, &d );
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if ( err ) {
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HandleOTError( err, "Sys_SendPacket" );
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}
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}
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/*
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==================
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Sys_GetPacket
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Never called by the game logic, just the system event queing
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==================
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*/
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qboolean Sys_GetPacket ( netadr_t *net_from, msg_t *net_message ) {
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TUnitData d;
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InetAddress inAddr;
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OSStatus err;
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OTFlags flags;
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if ( !endpoint ) {
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return qfalse;
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}
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inAddr.fAddressType = AF_INET;
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inAddr.fPort = 0;
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inAddr.fHost = 0;
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memset( &d, 0, sizeof( d ) );
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d.addr.len = sizeof( inAddr );
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d.addr.maxlen = sizeof( inAddr );
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d.addr.buf = (unsigned char *)&inAddr;
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d.opt.len = 0;
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d.opt.maxlen = 0;
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d.opt.buf = 0;
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d.udata.len = net_message->maxsize;
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d.udata.maxlen = net_message->maxsize;
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d.udata.buf = net_message->data;
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err = OTRcvUData( endpoint, &d, &flags );
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if ( err ) {
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if ( err == kOTNoDataErr ) {
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return false;
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}
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HandleOTError( err, "Sys_GetPacket" );
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return qfalse;
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}
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net_from->type = NA_IP;
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net_from->port = inAddr.fPort;
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*(int *)net_from->ip = inAddr.fHost;
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net_message->cursize = d.udata.len;
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return qtrue;
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}
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/*
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==================
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Sys_IsLANAddress
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LAN clients will have their rate var ignored
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==================
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*/
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qboolean Sys_IsLANAddress (netadr_t adr) {
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int i;
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int ip;
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if ( adr.type == NA_LOOPBACK ) {
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return qtrue;
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}
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if ( adr.type != NA_IP ) {
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return qfalse;
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}
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for ( ip = 0 ; ip < numIP ; ip++ ) {
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for ( i = 0 ; i < 4 ; i++ ) {
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if ( ( adr.ip[i] & ((byte *)&sys_inetInfo[ip].fNetmask)[i] )
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!= ( ((byte *)&sys_inetInfo[ip].fAddress)[i] & ((byte *)&sys_inetInfo[ip].fNetmask)[i] ) ) {
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break;
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}
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}
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if ( i == 4 ) {
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return qtrue; // matches this subnet
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}
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}
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return qfalse;
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}
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void NET_Sleep( int i ) {
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}
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