mirror of
https://github.com/UberGames/lilium-voyager.git
synced 2024-11-14 16:31:33 +00:00
e2d63b1fea
This will prevent further symbol clashes, and makes the shared libraries 10 to 20 percent smaller. We should enable this on other platforms, too, if we can guarantee they'll use gcc 4.0 or later and the platform supports it.
445 lines
14 KiB
C
445 lines
14 KiB
C
/*
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===========================================================================
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Copyright (C) 1999-2005 Id Software, Inc.
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This file is part of Quake III Arena source code.
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Quake III Arena source code is free software; you can redistribute it
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and/or modify it under the terms of the GNU General Public License as
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published by the Free Software Foundation; either version 2 of the License,
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or (at your option) any later version.
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Quake III Arena source code is distributed in the hope that it will be
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useful, but WITHOUT ANY WARRANTY; without even the implied warranty of
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MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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GNU General Public License for more details.
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You should have received a copy of the GNU General Public License
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along with Quake III Arena source code; if not, write to the Free Software
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Foundation, Inc., 51 Franklin St, Fifth Floor, Boston, MA 02110-1301 USA
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===========================================================================
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*/
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//
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// cg_syscalls.c -- this file is only included when building a dll
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// cg_syscalls.asm is included instead when building a qvm
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#ifdef Q3_VM
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#error "Do not use in VM build"
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#endif
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#include "cg_local.h"
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static intptr_t (QDECL *syscall)( intptr_t arg, ... ) = (intptr_t (QDECL *)( intptr_t, ...))-1;
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Q_EXPORT void dllEntry( intptr_t (QDECL *syscallptr)( intptr_t arg,... ) ) {
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syscall = syscallptr;
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}
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int PASSFLOAT( float x ) {
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floatint_t fi;
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fi.f = x;
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return fi.i;
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}
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void trap_Print( const char *fmt ) {
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syscall( CG_PRINT, fmt );
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}
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void trap_Error( const char *fmt ) {
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syscall( CG_ERROR, fmt );
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}
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int trap_Milliseconds( void ) {
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return syscall( CG_MILLISECONDS );
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}
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void trap_Cvar_Register( vmCvar_t *vmCvar, const char *varName, const char *defaultValue, int flags ) {
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syscall( CG_CVAR_REGISTER, vmCvar, varName, defaultValue, flags );
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}
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void trap_Cvar_Update( vmCvar_t *vmCvar ) {
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syscall( CG_CVAR_UPDATE, vmCvar );
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}
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void trap_Cvar_Set( const char *var_name, const char *value ) {
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syscall( CG_CVAR_SET, var_name, value );
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}
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void trap_Cvar_VariableStringBuffer( const char *var_name, char *buffer, int bufsize ) {
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syscall( CG_CVAR_VARIABLESTRINGBUFFER, var_name, buffer, bufsize );
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}
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int trap_Argc( void ) {
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return syscall( CG_ARGC );
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}
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void trap_Argv( int n, char *buffer, int bufferLength ) {
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syscall( CG_ARGV, n, buffer, bufferLength );
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}
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void trap_Args( char *buffer, int bufferLength ) {
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syscall( CG_ARGS, buffer, bufferLength );
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}
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int trap_FS_FOpenFile( const char *qpath, fileHandle_t *f, fsMode_t mode ) {
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return syscall( CG_FS_FOPENFILE, qpath, f, mode );
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}
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void trap_FS_Read( void *buffer, int len, fileHandle_t f ) {
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syscall( CG_FS_READ, buffer, len, f );
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}
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void trap_FS_Write( const void *buffer, int len, fileHandle_t f ) {
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syscall( CG_FS_WRITE, buffer, len, f );
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}
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void trap_FS_FCloseFile( fileHandle_t f ) {
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syscall( CG_FS_FCLOSEFILE, f );
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}
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int trap_FS_Seek( fileHandle_t f, long offset, int origin ) {
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return syscall( CG_FS_SEEK, f, offset, origin );
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}
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void trap_SendConsoleCommand( const char *text ) {
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syscall( CG_SENDCONSOLECOMMAND, text );
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}
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void trap_AddCommand( const char *cmdName ) {
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syscall( CG_ADDCOMMAND, cmdName );
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}
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void trap_RemoveCommand( const char *cmdName ) {
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syscall( CG_REMOVECOMMAND, cmdName );
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}
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void trap_SendClientCommand( const char *s ) {
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syscall( CG_SENDCLIENTCOMMAND, s );
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}
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void trap_UpdateScreen( void ) {
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syscall( CG_UPDATESCREEN );
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}
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void trap_CM_LoadMap( const char *mapname ) {
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syscall( CG_CM_LOADMAP, mapname );
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}
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int trap_CM_NumInlineModels( void ) {
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return syscall( CG_CM_NUMINLINEMODELS );
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}
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clipHandle_t trap_CM_InlineModel( int index ) {
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return syscall( CG_CM_INLINEMODEL, index );
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}
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clipHandle_t trap_CM_TempBoxModel( const vec3_t mins, const vec3_t maxs ) {
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return syscall( CG_CM_TEMPBOXMODEL, mins, maxs );
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}
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clipHandle_t trap_CM_TempCapsuleModel( const vec3_t mins, const vec3_t maxs ) {
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return syscall( CG_CM_TEMPCAPSULEMODEL, mins, maxs );
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}
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int trap_CM_PointContents( const vec3_t p, clipHandle_t model ) {
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return syscall( CG_CM_POINTCONTENTS, p, model );
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}
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int trap_CM_TransformedPointContents( const vec3_t p, clipHandle_t model, const vec3_t origin, const vec3_t angles ) {
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return syscall( CG_CM_TRANSFORMEDPOINTCONTENTS, p, model, origin, angles );
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}
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void trap_CM_BoxTrace( trace_t *results, const vec3_t start, const vec3_t end,
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const vec3_t mins, const vec3_t maxs,
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clipHandle_t model, int brushmask ) {
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syscall( CG_CM_BOXTRACE, results, start, end, mins, maxs, model, brushmask );
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}
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void trap_CM_CapsuleTrace( trace_t *results, const vec3_t start, const vec3_t end,
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const vec3_t mins, const vec3_t maxs,
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clipHandle_t model, int brushmask ) {
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syscall( CG_CM_CAPSULETRACE, results, start, end, mins, maxs, model, brushmask );
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}
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void trap_CM_TransformedBoxTrace( trace_t *results, const vec3_t start, const vec3_t end,
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const vec3_t mins, const vec3_t maxs,
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clipHandle_t model, int brushmask,
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const vec3_t origin, const vec3_t angles ) {
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syscall( CG_CM_TRANSFORMEDBOXTRACE, results, start, end, mins, maxs, model, brushmask, origin, angles );
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}
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void trap_CM_TransformedCapsuleTrace( trace_t *results, const vec3_t start, const vec3_t end,
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const vec3_t mins, const vec3_t maxs,
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clipHandle_t model, int brushmask,
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const vec3_t origin, const vec3_t angles ) {
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syscall( CG_CM_TRANSFORMEDCAPSULETRACE, results, start, end, mins, maxs, model, brushmask, origin, angles );
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}
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int trap_CM_MarkFragments( int numPoints, const vec3_t *points,
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const vec3_t projection,
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int maxPoints, vec3_t pointBuffer,
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int maxFragments, markFragment_t *fragmentBuffer ) {
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return syscall( CG_CM_MARKFRAGMENTS, numPoints, points, projection, maxPoints, pointBuffer, maxFragments, fragmentBuffer );
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}
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void trap_S_StartSound( vec3_t origin, int entityNum, int entchannel, sfxHandle_t sfx ) {
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syscall( CG_S_STARTSOUND, origin, entityNum, entchannel, sfx );
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}
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void trap_S_StartLocalSound( sfxHandle_t sfx, int channelNum ) {
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syscall( CG_S_STARTLOCALSOUND, sfx, channelNum );
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}
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void trap_S_ClearLoopingSounds( qboolean killall ) {
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syscall( CG_S_CLEARLOOPINGSOUNDS, killall );
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}
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void trap_S_AddLoopingSound( int entityNum, const vec3_t origin, const vec3_t velocity, sfxHandle_t sfx ) {
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syscall( CG_S_ADDLOOPINGSOUND, entityNum, origin, velocity, sfx );
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}
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void trap_S_AddRealLoopingSound( int entityNum, const vec3_t origin, const vec3_t velocity, sfxHandle_t sfx ) {
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syscall( CG_S_ADDREALLOOPINGSOUND, entityNum, origin, velocity, sfx );
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}
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void trap_S_StopLoopingSound( int entityNum ) {
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syscall( CG_S_STOPLOOPINGSOUND, entityNum );
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}
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void trap_S_UpdateEntityPosition( int entityNum, const vec3_t origin ) {
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syscall( CG_S_UPDATEENTITYPOSITION, entityNum, origin );
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}
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void trap_S_Respatialize( int entityNum, const vec3_t origin, vec3_t axis[3], int inwater ) {
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syscall( CG_S_RESPATIALIZE, entityNum, origin, axis, inwater );
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}
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sfxHandle_t trap_S_RegisterSound( const char *sample, qboolean compressed ) {
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return syscall( CG_S_REGISTERSOUND, sample, compressed );
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}
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void trap_S_StartBackgroundTrack( const char *intro, const char *loop ) {
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syscall( CG_S_STARTBACKGROUNDTRACK, intro, loop );
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}
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void trap_R_LoadWorldMap( const char *mapname ) {
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syscall( CG_R_LOADWORLDMAP, mapname );
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}
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qhandle_t trap_R_RegisterModel( const char *name ) {
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return syscall( CG_R_REGISTERMODEL, name );
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}
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qhandle_t trap_R_RegisterSkin( const char *name ) {
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return syscall( CG_R_REGISTERSKIN, name );
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}
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qhandle_t trap_R_RegisterShader( const char *name ) {
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return syscall( CG_R_REGISTERSHADER, name );
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}
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qhandle_t trap_R_RegisterShaderNoMip( const char *name ) {
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return syscall( CG_R_REGISTERSHADERNOMIP, name );
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}
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void trap_R_RegisterFont(const char *fontName, int pointSize, fontInfo_t *font) {
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syscall(CG_R_REGISTERFONT, fontName, pointSize, font );
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}
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void trap_R_ClearScene( void ) {
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syscall( CG_R_CLEARSCENE );
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}
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void trap_R_AddRefEntityToScene( const refEntity_t *re ) {
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syscall( CG_R_ADDREFENTITYTOSCENE, re );
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}
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void trap_R_AddPolyToScene( qhandle_t hShader , int numVerts, const polyVert_t *verts ) {
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syscall( CG_R_ADDPOLYTOSCENE, hShader, numVerts, verts );
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}
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void trap_R_AddPolysToScene( qhandle_t hShader , int numVerts, const polyVert_t *verts, int num ) {
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syscall( CG_R_ADDPOLYSTOSCENE, hShader, numVerts, verts, num );
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}
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int trap_R_LightForPoint( vec3_t point, vec3_t ambientLight, vec3_t directedLight, vec3_t lightDir ) {
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return syscall( CG_R_LIGHTFORPOINT, point, ambientLight, directedLight, lightDir );
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}
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void trap_R_AddLightToScene( const vec3_t org, float intensity, float r, float g, float b ) {
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syscall( CG_R_ADDLIGHTTOSCENE, org, PASSFLOAT(intensity), PASSFLOAT(r), PASSFLOAT(g), PASSFLOAT(b) );
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}
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void trap_R_AddAdditiveLightToScene( const vec3_t org, float intensity, float r, float g, float b ) {
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syscall( CG_R_ADDADDITIVELIGHTTOSCENE, org, PASSFLOAT(intensity), PASSFLOAT(r), PASSFLOAT(g), PASSFLOAT(b) );
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}
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void trap_R_RenderScene( const refdef_t *fd ) {
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syscall( CG_R_RENDERSCENE, fd );
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}
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void trap_R_SetColor( const float *rgba ) {
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syscall( CG_R_SETCOLOR, rgba );
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}
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void trap_R_DrawStretchPic( float x, float y, float w, float h,
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float s1, float t1, float s2, float t2, qhandle_t hShader ) {
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syscall( CG_R_DRAWSTRETCHPIC, PASSFLOAT(x), PASSFLOAT(y), PASSFLOAT(w), PASSFLOAT(h), PASSFLOAT(s1), PASSFLOAT(t1), PASSFLOAT(s2), PASSFLOAT(t2), hShader );
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}
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void trap_R_ModelBounds( clipHandle_t model, vec3_t mins, vec3_t maxs ) {
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syscall( CG_R_MODELBOUNDS, model, mins, maxs );
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}
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int trap_R_LerpTag( orientation_t *tag, clipHandle_t mod, int startFrame, int endFrame,
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float frac, const char *tagName ) {
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return syscall( CG_R_LERPTAG, tag, mod, startFrame, endFrame, PASSFLOAT(frac), tagName );
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}
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void trap_R_RemapShader( const char *oldShader, const char *newShader, const char *timeOffset ) {
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syscall( CG_R_REMAP_SHADER, oldShader, newShader, timeOffset );
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}
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void trap_GetGlconfig( glconfig_t *glconfig ) {
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syscall( CG_GETGLCONFIG, glconfig );
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}
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void trap_GetGameState( gameState_t *gamestate ) {
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syscall( CG_GETGAMESTATE, gamestate );
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}
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void trap_GetCurrentSnapshotNumber( int *snapshotNumber, int *serverTime ) {
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syscall( CG_GETCURRENTSNAPSHOTNUMBER, snapshotNumber, serverTime );
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}
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qboolean trap_GetSnapshot( int snapshotNumber, snapshot_t *snapshot ) {
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return syscall( CG_GETSNAPSHOT, snapshotNumber, snapshot );
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}
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qboolean trap_GetServerCommand( int serverCommandNumber ) {
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return syscall( CG_GETSERVERCOMMAND, serverCommandNumber );
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}
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int trap_GetCurrentCmdNumber( void ) {
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return syscall( CG_GETCURRENTCMDNUMBER );
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}
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qboolean trap_GetUserCmd( int cmdNumber, usercmd_t *ucmd ) {
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return syscall( CG_GETUSERCMD, cmdNumber, ucmd );
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}
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void trap_SetUserCmdValue( int stateValue, float sensitivityScale ) {
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syscall( CG_SETUSERCMDVALUE, stateValue, PASSFLOAT(sensitivityScale) );
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}
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void testPrintInt( char *string, int i ) {
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syscall( CG_TESTPRINTINT, string, i );
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}
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void testPrintFloat( char *string, float f ) {
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syscall( CG_TESTPRINTFLOAT, string, PASSFLOAT(f) );
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}
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int trap_MemoryRemaining( void ) {
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return syscall( CG_MEMORY_REMAINING );
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}
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qboolean trap_Key_IsDown( int keynum ) {
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return syscall( CG_KEY_ISDOWN, keynum );
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}
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int trap_Key_GetCatcher( void ) {
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return syscall( CG_KEY_GETCATCHER );
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}
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void trap_Key_SetCatcher( int catcher ) {
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syscall( CG_KEY_SETCATCHER, catcher );
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}
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int trap_Key_GetKey( const char *binding ) {
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return syscall( CG_KEY_GETKEY, binding );
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}
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int trap_PC_AddGlobalDefine( char *define ) {
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return syscall( CG_PC_ADD_GLOBAL_DEFINE, define );
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}
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int trap_PC_LoadSource( const char *filename ) {
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return syscall( CG_PC_LOAD_SOURCE, filename );
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}
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int trap_PC_FreeSource( int handle ) {
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return syscall( CG_PC_FREE_SOURCE, handle );
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}
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int trap_PC_ReadToken( int handle, pc_token_t *pc_token ) {
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return syscall( CG_PC_READ_TOKEN, handle, pc_token );
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}
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int trap_PC_SourceFileAndLine( int handle, char *filename, int *line ) {
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return syscall( CG_PC_SOURCE_FILE_AND_LINE, handle, filename, line );
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}
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void trap_S_StopBackgroundTrack( void ) {
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syscall( CG_S_STOPBACKGROUNDTRACK );
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}
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int trap_RealTime(qtime_t *qtime) {
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return syscall( CG_REAL_TIME, qtime );
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}
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void trap_SnapVector( float *v ) {
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syscall( CG_SNAPVECTOR, v );
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}
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// this returns a handle. arg0 is the name in the format "idlogo.roq", set arg1 to NULL, alteredstates to qfalse (do not alter gamestate)
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int trap_CIN_PlayCinematic( const char *arg0, int xpos, int ypos, int width, int height, int bits) {
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return syscall(CG_CIN_PLAYCINEMATIC, arg0, xpos, ypos, width, height, bits);
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}
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// stops playing the cinematic and ends it. should always return FMV_EOF
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// cinematics must be stopped in reverse order of when they are started
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e_status trap_CIN_StopCinematic(int handle) {
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return syscall(CG_CIN_STOPCINEMATIC, handle);
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}
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// will run a frame of the cinematic but will not draw it. Will return FMV_EOF if the end of the cinematic has been reached.
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e_status trap_CIN_RunCinematic (int handle) {
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return syscall(CG_CIN_RUNCINEMATIC, handle);
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}
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// draws the current frame
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void trap_CIN_DrawCinematic (int handle) {
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syscall(CG_CIN_DRAWCINEMATIC, handle);
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}
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// allows you to resize the animation dynamically
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void trap_CIN_SetExtents (int handle, int x, int y, int w, int h) {
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syscall(CG_CIN_SETEXTENTS, handle, x, y, w, h);
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}
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/*
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qboolean trap_loadCamera( const char *name ) {
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return syscall( CG_LOADCAMERA, name );
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}
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void trap_startCamera(int time) {
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syscall(CG_STARTCAMERA, time);
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}
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qboolean trap_getCameraInfo( int time, vec3_t *origin, vec3_t *angles) {
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return syscall( CG_GETCAMERAINFO, time, origin, angles );
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}
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*/
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qboolean trap_GetEntityToken( char *buffer, int bufferSize ) {
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return syscall( CG_GET_ENTITY_TOKEN, buffer, bufferSize );
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}
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qboolean trap_R_inPVS( const vec3_t p1, const vec3_t p2 ) {
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return syscall( CG_R_INPVS, p1, p2 );
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}
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