merge the new build system

use the "premake" tool from the cnq3tools repo with
"--quake3dir=<q3dir>" to generate a VS sln and gcc makefiles

this changeset also removes the "clever" handling of fullscreen/windowed
changes which didn't actually work and just broke windowed mode
This commit is contained in:
arQon 2016-12-29 20:13:59 -08:00
parent 3ea8c861a1
commit 954c80a8b5
86 changed files with 1365 additions and 32254 deletions

1
.gitignore vendored
View file

@ -8,6 +8,7 @@
*.idb *.idb
code/freetype/objs/ code/freetype/objs/
code/freetype/builds/ code/freetype/builds/
code/qcommon/git.h
code/win32/msvc*/build/ code/win32/msvc*/build/
code/win32/msvc*/*user* code/win32/msvc*/*user*
code/win32/msvc*/*sdf code/win32/msvc*/*sdf

View file

@ -79,8 +79,6 @@ void Con_ToggleConsole_f( void )
Con_ClearNotify(); Con_ClearNotify();
cls.keyCatchers ^= KEYCATCH_CONSOLE; cls.keyCatchers ^= KEYCATCH_CONSOLE;
in_keyboardShortcuts->modified = qtrue; // drakkar
} }
/* /*
@ -672,6 +670,4 @@ void Con_Close()
cls.keyCatchers &= ~KEYCATCH_CONSOLE; cls.keyCatchers &= ~KEYCATCH_CONSOLE;
con.finalFrac = 0; // none visible con.finalFrac = 0; // none visible
con.displayFrac = 0; con.displayFrac = 0;
in_keyboardShortcuts->modified = qtrue; // drakkar
} }

View file

@ -342,7 +342,6 @@ extern cvar_t *cl_aviMotionJpeg;
extern cvar_t *cl_allowDownload; extern cvar_t *cl_allowDownload;
extern cvar_t *cl_inGameVideo; extern cvar_t *cl_inGameVideo;
extern cvar_t *in_keyboardShortcuts; // drakkar
//================================================= //=================================================

View file

@ -1,361 +0,0 @@
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View file

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Name="VCResourceCompilerTool"
PreprocessorDefinitions="NDEBUG"
Culture="1033"
/>
<Tool
Name="VCPreLinkEventTool"
/>
<Tool
Name="VCLibrarianTool"
OutputFile="..\..\..\objs\freetype.lib"
SuppressStartupBanner="true"
/>
<Tool
Name="VCALinkTool"
/>
<Tool
Name="VCXDCMakeTool"
/>
<Tool
Name="VCBscMakeTool"
/>
<Tool
Name="VCFxCopTool"
/>
<Tool
Name="VCPostBuildEventTool"
/>
</Configuration>
<Configuration
Name="Debug|Win32"
OutputDirectory=".\..\..\..\objs\debug"
IntermediateDirectory=".\..\..\..\objs\debug"
ConfigurationType="4"
InheritedPropertySheets="$(VCInstallDir)VCProjectDefaults\UpgradeFromVC71.vsprops"
UseOfMFC="0"
ATLMinimizesCRunTimeLibraryUsage="false"
CharacterSet="2"
>
<Tool
Name="VCPreBuildEventTool"
/>
<Tool
Name="VCCustomBuildTool"
/>
<Tool
Name="VCXMLDataGeneratorTool"
/>
<Tool
Name="VCWebServiceProxyGeneratorTool"
/>
<Tool
Name="VCMIDLTool"
/>
<Tool
Name="VCCLCompilerTool"
Optimization="0"
AdditionalIncludeDirectories="..\..\..\include"
PreprocessorDefinitions="_DEBUG;WIN32;_LIB;FT2_BUILD_LIBRARY"
BasicRuntimeChecks="3"
RuntimeLibrary="1"
DisableLanguageExtensions="true"
PrecompiledHeaderFile=".\..\..\..\objs\debug/freetype.pch"
AssemblerListingLocation=".\..\..\..\objs\debug/"
ObjectFile=".\..\..\..\objs\debug/"
ProgramDataBaseFileName=".\..\..\..\objs\debug/"
WarningLevel="4"
DebugInformationFormat="3"
CompileAs="0"
/>
<Tool
Name="VCManagedResourceCompilerTool"
/>
<Tool
Name="VCResourceCompilerTool"
PreprocessorDefinitions="_DEBUG"
Culture="1033"
/>
<Tool
Name="VCPreLinkEventTool"
/>
<Tool
Name="VCLibrarianTool"
OutputFile="..\..\..\objs\freetype_D.lib"
SuppressStartupBanner="true"
/>
<Tool
Name="VCALinkTool"
/>
<Tool
Name="VCXDCMakeTool"
/>
<Tool
Name="VCBscMakeTool"
/>
<Tool
Name="VCFxCopTool"
/>
<Tool
Name="VCPostBuildEventTool"
/>
</Configuration>
</Configurations>
<References>
</References>
<Files>
<Filter
Name="Source Files"
Filter="cpp;c;cxx;rc;def;r;odl;idl;hpj;bat"
>
<File
RelativePath="..\..\..\src\base\ftbase.c"
>
<FileConfiguration
Name="Release|Win32"
>
<Tool
Name="VCCLCompilerTool"
AdditionalIncludeDirectories=""
PreprocessorDefinitions=""
/>
</FileConfiguration>
<FileConfiguration
Name="Debug|Win32"
>
<Tool
Name="VCCLCompilerTool"
Optimization="0"
AdditionalIncludeDirectories=""
PreprocessorDefinitions=""
BasicRuntimeChecks="3"
/>
</FileConfiguration>
</File>
<File
RelativePath="..\..\..\src\base\ftglyph.c"
>
<FileConfiguration
Name="Release|Win32"
>
<Tool
Name="VCCLCompilerTool"
AdditionalIncludeDirectories=""
PreprocessorDefinitions=""
/>
</FileConfiguration>
<FileConfiguration
Name="Debug|Win32"
>
<Tool
Name="VCCLCompilerTool"
Optimization="0"
AdditionalIncludeDirectories=""
PreprocessorDefinitions=""
BasicRuntimeChecks="3"
/>
</FileConfiguration>
</File>
<File
RelativePath="..\..\..\src\base\ftinit.c"
>
<FileConfiguration
Name="Release|Win32"
>
<Tool
Name="VCCLCompilerTool"
AdditionalIncludeDirectories=""
PreprocessorDefinitions=""
/>
</FileConfiguration>
<FileConfiguration
Name="Debug|Win32"
>
<Tool
Name="VCCLCompilerTool"
Optimization="0"
AdditionalIncludeDirectories=""
PreprocessorDefinitions=""
BasicRuntimeChecks="3"
/>
</FileConfiguration>
</File>
<File
RelativePath="..\..\..\src\base\ftstroke.c"
>
</File>
<File
RelativePath="..\..\..\src\base\ftsystem.c"
>
</File>
<File
RelativePath="..\..\..\src\smooth\smooth.c"
>
<FileConfiguration
Name="Release|Win32"
>
<Tool
Name="VCCLCompilerTool"
AdditionalIncludeDirectories=""
PreprocessorDefinitions=""
/>
</FileConfiguration>
<FileConfiguration
Name="Debug|Win32"
>
<Tool
Name="VCCLCompilerTool"
Optimization="0"
AdditionalIncludeDirectories=""
PreprocessorDefinitions=""
BasicRuntimeChecks="3"
/>
</FileConfiguration>
</File>
<Filter
Name="FT_MODULES"
>
<File
RelativePath="..\..\..\src\base\ftbbox.c"
>
</File>
<File
RelativePath="..\..\..\src\base\ftsynth.c"
>
</File>
<File
RelativePath="..\..\..\src\sfnt\sfnt.c"
>
</File>
<File
RelativePath="..\..\..\src\truetype\truetype.c"
>
<FileConfiguration
Name="Release|Win32"
>
<Tool
Name="VCCLCompilerTool"
AdditionalIncludeDirectories=""
PreprocessorDefinitions=""
/>
</FileConfiguration>
<FileConfiguration
Name="Debug|Win32"
>
<Tool
Name="VCCLCompilerTool"
Optimization="0"
AdditionalIncludeDirectories=""
PreprocessorDefinitions=""
BasicRuntimeChecks="3"
/>
</FileConfiguration>
</File>
</Filter>
</Filter>
<Filter
Name="Header Files"
Filter="h;hpp;hxx;hm;inl"
>
<File
RelativePath="..\..\..\include\ft2build.h"
>
</File>
<File
RelativePath="..\..\..\include\freetype\config\ftconfig.h"
>
</File>
<File
RelativePath="..\..\..\include\freetype\config\ftheader.h"
>
</File>
<File
RelativePath="..\..\..\include\freetype\config\ftmodule.h"
>
</File>
<File
RelativePath="..\..\..\include\freetype\config\ftoption.h"
>
</File>
<File
RelativePath="..\..\..\include\freetype\config\ftstdlib.h"
>
</File>
</Filter>
</Files>
<Globals>
</Globals>
</VisualStudioProject>

View file

@ -488,16 +488,19 @@ void Cmd_ExecuteString( const char* text )
return; return;
} }
#ifndef DEDICATED
// check client game commands // check client game commands
if ( com_cl_running && com_cl_running->integer && CL_GameCommand() ) { if ( com_cl_running && com_cl_running->integer && CL_GameCommand() ) {
return; return;
} }
#endif
// check server game commands // check server game commands
if ( com_sv_running && com_sv_running->integer && SV_GameCommand() ) { if ( com_sv_running && com_sv_running->integer && SV_GameCommand() ) {
return; return;
} }
#ifndef DEDICATED
// check ui commands // check ui commands
if ( com_cl_running && com_cl_running->integer && UI_GameCommand() ) { if ( com_cl_running && com_cl_running->integer && UI_GameCommand() ) {
return; return;
@ -506,6 +509,7 @@ void Cmd_ExecuteString( const char* text )
// send it as a server command if we are connected // send it as a server command if we are connected
// this will usually result in a chat message // this will usually result in a chat message
CL_ForwardCommandToServer( text ); CL_ForwardCommandToServer( text );
#endif
} }

View file

@ -30,6 +30,10 @@ Foundation, Inc., 51 Franklin St, Fifth Floor, Boston, MA 02110-1301 USA
#include <sys/stat.h> // umask #include <sys/stat.h> // umask
#endif #endif
#if defined(_MSC_VER)
#include "../win32/windows.h"
#endif
#define MIN_DEDICATED_COMHUNKMEGS 8 #define MIN_DEDICATED_COMHUNKMEGS 8
#define MIN_COMHUNKMEGS 56 #define MIN_COMHUNKMEGS 56
@ -217,10 +221,8 @@ void QDECL Com_Error( int code, const char *fmt, ... )
#if defined(_WIN32) && defined(_DEBUG) #if defined(_WIN32) && defined(_DEBUG)
if ( code != ERR_DISCONNECT && code != ERR_NEED_CD ) { if ( code != ERR_DISCONNECT && code != ERR_NEED_CD ) {
if (!com_noErrorInterrupt->integer) { if (!com_noErrorInterrupt->integer && IsDebuggerPresent()) {
__asm { __debugbreak();
int 0x03
}
} }
} }
#endif #endif
@ -260,19 +262,24 @@ void QDECL Com_Error( int code, const char *fmt, ... )
} }
if ( code == ERR_SERVERDISCONNECT ) { if ( code == ERR_SERVERDISCONNECT ) {
#ifndef DEDICATED
CL_Disconnect( qtrue ); CL_Disconnect( qtrue );
CL_FlushMemory(); CL_FlushMemory();
#endif
com_errorEntered = qfalse; com_errorEntered = qfalse;
longjmp (abortframe, -1); longjmp (abortframe, -1);
} else if ( code == ERR_DROP || code == ERR_DISCONNECT ) { } else if ( code == ERR_DROP || code == ERR_DISCONNECT ) {
Com_Printf( "********************\nERROR: %s\n********************\n", com_errorMessage ); Com_Printf( "********************\nERROR: %s\n********************\n", com_errorMessage );
SV_Shutdown( va("Server crashed: %s", com_errorMessage) ); SV_Shutdown( va("Server crashed: %s", com_errorMessage) );
#ifndef DEDICATED
CL_Disconnect( qtrue ); CL_Disconnect( qtrue );
CL_FlushMemory(); CL_FlushMemory();
#endif
com_errorEntered = qfalse; com_errorEntered = qfalse;
longjmp (abortframe, -1); longjmp (abortframe, -1);
} else if ( code == ERR_NEED_CD ) { } else if ( code == ERR_NEED_CD ) {
SV_Shutdown( "Server didn't have CD" ); SV_Shutdown( "Server didn't have CD" );
#ifndef DEDICATED
if ( com_cl_running && com_cl_running->integer ) { if ( com_cl_running && com_cl_running->integer ) {
CL_Disconnect( qtrue ); CL_Disconnect( qtrue );
CL_FlushMemory(); CL_FlushMemory();
@ -281,9 +288,12 @@ void QDECL Com_Error( int code, const char *fmt, ... )
} else { } else {
Com_Printf("Server didn't have CD\n" ); Com_Printf("Server didn't have CD\n" );
} }
#endif
longjmp (abortframe, -1); longjmp (abortframe, -1);
} else { } else {
#ifndef DEDICATED
CL_Shutdown(); CL_Shutdown();
#endif
SV_Shutdown( va("Server fatal crashed: %s", com_errorMessage) ); SV_Shutdown( va("Server fatal crashed: %s", com_errorMessage) );
} }
@ -298,7 +308,9 @@ void Com_Quit_f( void )
// don't try to shutdown if we are in a recursive error // don't try to shutdown if we are in a recursive error
if ( !com_errorEntered ) { if ( !com_errorEntered ) {
SV_Shutdown( "Server quit" ); SV_Shutdown( "Server quit" );
#ifndef DEDICATED
CL_Shutdown(); CL_Shutdown();
#endif
Com_Shutdown(); Com_Shutdown();
FS_Shutdown( qtrue ); FS_Shutdown( qtrue );
} }
@ -1401,8 +1413,10 @@ qbool Hunk_CheckMark()
void Hunk_Clear() void Hunk_Clear()
{ {
#ifndef DEDICATED
extern void CL_ShutdownCGame(); extern void CL_ShutdownCGame();
extern void CL_ShutdownUI(); extern void CL_ShutdownUI();
#endif
extern void SV_ShutdownGameProgs(); extern void SV_ShutdownGameProgs();
#ifndef DEDICATED #ifndef DEDICATED
@ -1772,10 +1786,11 @@ int Com_EventLoop()
// if no more events are available // if no more events are available
if ( ev.evType == SE_NONE ) { if ( ev.evType == SE_NONE ) {
// manually send packet events for the loopback channel // manually send packet events for the loopback channel
#ifndef DEDICATED
while ( NET_GetLoopPacket( NS_CLIENT, &evFrom, &buf ) ) { while ( NET_GetLoopPacket( NS_CLIENT, &evFrom, &buf ) ) {
CL_PacketEvent( evFrom, &buf ); CL_PacketEvent( evFrom, &buf );
} }
#endif
while ( NET_GetLoopPacket( NS_SERVER, &evFrom, &buf ) ) { while ( NET_GetLoopPacket( NS_SERVER, &evFrom, &buf ) ) {
// if the server just shut down, flush the events // if the server just shut down, flush the events
if ( com_sv_running->integer ) { if ( com_sv_running->integer ) {
@ -1793,6 +1808,7 @@ int Com_EventLoop()
break; break;
case SE_NONE: case SE_NONE:
break; break;
#ifndef DEDICATED
case SE_KEY: case SE_KEY:
CL_KeyEvent( ev.evValue, (ev.evValue2 != 0), ev.evTime ); CL_KeyEvent( ev.evValue, (ev.evValue2 != 0), ev.evTime );
break; break;
@ -1805,6 +1821,7 @@ int Com_EventLoop()
case SE_JOYSTICK_AXIS: case SE_JOYSTICK_AXIS:
CL_JoystickEvent( ev.evValue, ev.evValue2, ev.evTime ); CL_JoystickEvent( ev.evValue, ev.evValue2, ev.evTime );
break; break;
#endif
case SE_CONSOLE: case SE_CONSOLE:
Cbuf_AddText( (char *)ev.evPtr ); Cbuf_AddText( (char *)ev.evPtr );
Cbuf_AddText( "\n" ); Cbuf_AddText( "\n" );
@ -1825,7 +1842,9 @@ int Com_EventLoop()
if ( com_sv_running->integer ) { if ( com_sv_running->integer ) {
Com_RunAndTimeServerPacket( evFrom, &buf ); Com_RunAndTimeServerPacket( evFrom, &buf );
} else { } else {
#ifndef DEDICATED
CL_PacketEvent( evFrom, &buf ); CL_PacketEvent( evFrom, &buf );
#endif
} }
break; break;
} }
@ -1907,6 +1926,7 @@ char cl_cdkey[34] = " ";
char cl_cdkey[34] = "123456789"; char cl_cdkey[34] = "123456789";
#endif #endif
#ifndef DEDICATED
/* /*
================= =================
Com_ReadCDKey Com_ReadCDKey
@ -1938,6 +1958,7 @@ void Com_ReadCDKey( const char *filename ) {
} }
} }
/* /*
================= =================
Com_AppendCDKey Com_AppendCDKey
@ -1968,50 +1989,15 @@ void Com_AppendCDKey( const char *filename ) {
} }
} }
#else
/* void Com_AppendCDKey( const char *filename ) {
#ifndef DEDICATED
static void Com_WriteCDKey( const char *filename, const char *ikey )
{
fileHandle_t f;
char fbuffer[MAX_OSPATH];
char key[17];
#ifndef _WIN32
mode_t savedumask;
#endif
sprintf(fbuffer, "%s/q3key", filename);
Q_strncpyz( key, ikey, 17 );
if(!CL_CDKeyValidate(key, NULL) ) {
return;
}
#ifndef _WIN32
savedumask = umask(0077);
#endif
f = FS_SV_FOpenFileWrite( fbuffer );
if ( !f ) {
Com_Printf ("Couldn't write CD key to %s.\n", fbuffer );
goto out;
}
FS_Write( key, 16, f );
FS_Printf( f, "\n// generated by quake, do not modify\r\n" );
FS_Printf( f, "// Do not give this file to ANYONE.\r\n" );
FS_Printf( f, "// id Software and Activision will NOT ask you to send this file to them.\r\n");
FS_FCloseFile( f );
out:
#ifndef _WIN32
umask(savedumask);
#endif
return;
} }
void Com_ReadCDKey( const char *filename ) {
}
#endif #endif
*/
#if defined(_MSC_VER) #if defined(_MSC_VER)
@ -2049,7 +2035,9 @@ void Com_Init( char *commandLine )
Com_StartupVariable( "developer" ); Com_StartupVariable( "developer" );
// done early so bind command exists // done early so bind command exists
#ifndef DEDICATED
CL_InitKeyCommands(); CL_InitKeyCommands();
#endif
FS_InitFilesystem(); FS_InitFilesystem();
@ -2136,7 +2124,9 @@ void Com_Init( char *commandLine )
com_dedicated->modified = qfalse; com_dedicated->modified = qfalse;
if ( !com_dedicated->integer ) { if ( !com_dedicated->integer ) {
#ifndef DEDICATED
CL_Init(); CL_Init();
#endif
Sys_ShowConsole( com_viewlog->integer, qfalse ); Sys_ShowConsole( com_viewlog->integer, qfalse );
} }
@ -2160,7 +2150,9 @@ void Com_Init( char *commandLine )
// start in full screen ui mode // start in full screen ui mode
Cvar_Set( "r_uiFullScreen", "1" ); Cvar_Set( "r_uiFullScreen", "1" );
#ifndef DEDICATED
CL_StartHunkUsers(); CL_StartHunkUsers();
#endif
// make sure single player is off by default // make sure single player is off by default
Cvar_Set( "sv_singlePlayer", "0" ); Cvar_Set( "sv_singlePlayer", "0" );
@ -2183,7 +2175,9 @@ static void Com_WriteConfigToFile( const char* filename )
} }
FS_Printf(f, "// generated by quake, do not modify\n"); FS_Printf(f, "// generated by quake, do not modify\n");
#ifndef DEDICATED
Key_WriteBindings(f); Key_WriteBindings(f);
#endif
Cvar_WriteVariables(f); Cvar_WriteVariables(f);
FS_FCloseFile( f ); FS_FCloseFile( f );
} }
@ -2315,14 +2309,25 @@ void Com_Frame()
Cvar_Get( "dedicated", "0", 0 ); Cvar_Get( "dedicated", "0", 0 );
com_dedicated->modified = qfalse; com_dedicated->modified = qfalse;
if ( !com_dedicated->integer ) { if ( !com_dedicated->integer ) {
#ifndef DEDICATED
CL_Init(); CL_Init();
#endif
Sys_ShowConsole( com_viewlog->integer, qfalse ); Sys_ShowConsole( com_viewlog->integer, qfalse );
} else { } else {
#ifndef DEDICATED
CL_Shutdown(); CL_Shutdown();
#endif
Sys_ShowConsole( 1, qtrue ); Sys_ShowConsole( 1, qtrue );
} }
} }
#ifdef DEDICATED
if ( com_speeds->integer ) {
timeAfter = Sys_Milliseconds();
timeBeforeEvents = timeAfter;
timeBeforeClient = timeAfter;
}
#else
// //
// client system // client system
// //
@ -2350,6 +2355,7 @@ void Com_Frame()
timeAfter = Sys_Milliseconds(); timeAfter = Sys_Milliseconds();
} }
} }
#endif
// //
// report timing information // report timing information

View file

@ -553,6 +553,13 @@ fileHandle_t FS_SV_FOpenFileWrite( const char *filename ) {
return f; return f;
} }
static void FS_PreventSoundStutter()
{
#ifndef DEDICATED
S_ClearSoundBuffer();
#endif
}
/* /*
=========== ===========
FS_SV_FOpenFileRead FS_SV_FOpenFileRead
@ -574,8 +581,7 @@ int FS_SV_FOpenFileRead( const char *filename, fileHandle_t *fp )
Q_strncpyz( fsh[f].name, filename, sizeof( fsh[f].name ) ); Q_strncpyz( fsh[f].name, filename, sizeof( fsh[f].name ) );
// don't let sound stutter FS_PreventSoundStutter();
S_ClearSoundBuffer();
// search homepath // search homepath
ospath = FS_BuildOSPath( fs_homepath->string, filename, "" ); ospath = FS_BuildOSPath( fs_homepath->string, filename, "" );
@ -636,8 +642,7 @@ void FS_SV_Rename( const char *from, const char *to ) {
Com_Error( ERR_FATAL, "Filesystem call made without initialization\n" ); Com_Error( ERR_FATAL, "Filesystem call made without initialization\n" );
} }
// don't let sound stutter FS_PreventSoundStutter();
S_ClearSoundBuffer();
from_ospath = FS_BuildOSPath( fs_homepath->string, from, "" ); from_ospath = FS_BuildOSPath( fs_homepath->string, from, "" );
to_ospath = FS_BuildOSPath( fs_homepath->string, to, "" ); to_ospath = FS_BuildOSPath( fs_homepath->string, to, "" );
@ -670,8 +675,7 @@ void FS_Rename( const char *from, const char *to ) {
Com_Error( ERR_FATAL, "Filesystem call made without initialization\n" ); Com_Error( ERR_FATAL, "Filesystem call made without initialization\n" );
} }
// don't let sound stutter FS_PreventSoundStutter();
S_ClearSoundBuffer();
from_ospath = FS_BuildOSPath( fs_homepath->string, fs_gamedir, from ); from_ospath = FS_BuildOSPath( fs_homepath->string, fs_gamedir, from );
to_ospath = FS_BuildOSPath( fs_homepath->string, fs_gamedir, to ); to_ospath = FS_BuildOSPath( fs_homepath->string, fs_gamedir, to );
@ -774,8 +778,7 @@ fileHandle_t FS_FOpenFileAppend( const char *filename ) {
Q_strncpyz( fsh[f].name, filename, sizeof( fsh[f].name ) ); Q_strncpyz( fsh[f].name, filename, sizeof( fsh[f].name ) );
// don't let sound stutter FS_PreventSoundStutter();
S_ClearSoundBuffer();
ospath = FS_BuildOSPath( fs_homepath->string, fs_gamedir, filename ); ospath = FS_BuildOSPath( fs_homepath->string, fs_gamedir, filename );

View file

@ -26,10 +26,6 @@ static huffman_t msgHuff;
static qbool msgInit = qfalse; static qbool msgInit = qfalse;
//static int pcount[256];
extern cvar_t* cl_shownet;
/* /*
============================================================================== ==============================================================================
@ -464,7 +460,12 @@ delta functions with keys
============================================================================= =============================================================================
*/ */
#ifndef DEDICATED
extern cvar_t* cl_shownet;
#define NETLOG(x) if ( cl_shownet->integer == 4 ) { Com_Printf("%s ", x ); }; #define NETLOG(x) if ( cl_shownet->integer == 4 ) { Com_Printf("%s ", x ); };
#else
#define NETLOG(x)
#endif
static const int kbitmask[32] = { static const int kbitmask[32] = {
0x00000001, 0x00000003, 0x00000007, 0x0000000F, 0x00000001, 0x00000003, 0x00000007, 0x0000000F,
@ -795,9 +796,11 @@ void MSG_ReadDeltaEntity( msg_t* msg, const entityState_t* from, entityState_t*
if ( MSG_ReadBits( msg, 1 ) == 1 ) { if ( MSG_ReadBits( msg, 1 ) == 1 ) {
Com_Memset( to, 0, sizeof( *to ) ); Com_Memset( to, 0, sizeof( *to ) );
to->number = MAX_GENTITIES - 1; to->number = MAX_GENTITIES - 1;
#ifndef DEDICATED
if ( cl_shownet->integer >= 2 || cl_shownet->integer == -1 ) { if ( cl_shownet->integer >= 2 || cl_shownet->integer == -1 ) {
Com_Printf( "%3i: #%-3i remove\n", msg->readcount, number ); Com_Printf( "%3i: #%-3i remove\n", msg->readcount, number );
} }
#endif
return; return;
} }
@ -812,12 +815,16 @@ void MSG_ReadDeltaEntity( msg_t* msg, const entityState_t* from, entityState_t*
// shownet 2/3 will interleave with other printed info, -1 will // shownet 2/3 will interleave with other printed info, -1 will
// just print the delta records // just print the delta records
#ifndef DEDICATED
if ( cl_shownet->integer >= 2 || cl_shownet->integer == -1 ) { if ( cl_shownet->integer >= 2 || cl_shownet->integer == -1 ) {
print = 1; print = 1;
Com_Printf( "%3i: #%-3i ", msg->readcount, to->number ); Com_Printf( "%3i: #%-3i ", msg->readcount, to->number );
} else { } else {
print = 0; print = 0;
} }
#else
print = 0;
#endif
to->number = number; to->number = number;
@ -1114,12 +1121,16 @@ void MSG_ReadDeltaPlayerstate( msg_t* msg, const playerState_t* from, playerStat
// shownet 2/3 will interleave with other printed info, -2 will // shownet 2/3 will interleave with other printed info, -2 will
// just print the delta records // just print the delta records
#ifndef DEDICATED
if ( cl_shownet->integer >= 2 || cl_shownet->integer == -2 ) { if ( cl_shownet->integer >= 2 || cl_shownet->integer == -2 ) {
print = 1; print = 1;
Com_Printf( "%3i: playerstate ", msg->readcount ); Com_Printf( "%3i: playerstate ", msg->readcount );
} else { } else {
print = 0; print = 0;
} }
#else
print = 0;
#endif
lc = MSG_ReadByte(msg); lc = MSG_ReadByte(msg);

View file

@ -629,7 +629,7 @@ int BoxOnPlaneSide2 (vec3_t emins, vec3_t emaxs, struct cplane_s *p)
================== ==================
*/ */
#if !id386 #if !id386 || defined(__GNUC__)
int BoxOnPlaneSide( const vec3_t emins, const vec3_t emaxs, const struct cplane_s* p ) int BoxOnPlaneSide( const vec3_t emins, const vec3_t emaxs, const struct cplane_s* p )
{ {
@ -694,11 +694,10 @@ int BoxOnPlaneSide( const vec3_t emins, const vec3_t emaxs, const struct cplane_
return sides; return sides;
} }
#elif __GNUC__
// use matha.s
#else
#pragma warning( disable: 4035 )
#else
#pragma warning( disable: 4035 )
__declspec( naked ) int BoxOnPlaneSide( const vec3_t emins, const vec3_t emaxs, const struct cplane_s* p ) __declspec( naked ) int BoxOnPlaneSide( const vec3_t emins, const vec3_t emaxs, const struct cplane_s* p )
{ {
static int bops_initialized; static int bops_initialized;

View file

@ -24,6 +24,10 @@ Foundation, Inc., 51 Franklin St, Fifth Floor, Boston, MA 02110-1301 USA
#include "q_shared.h" #include "q_shared.h"
#if defined(_DEBUG) && defined(_MSC_VER)
#include "../win32/windows.h"
#endif
#if defined(__cplusplus) #if defined(__cplusplus)
extern "C" { extern "C" {
@ -592,10 +596,9 @@ void QDECL Com_sprintf( char *dest, int size, const char *fmt, ...) {
} }
if (len >= size) { if (len >= size) {
Com_Printf ("Com_sprintf: overflow of %i in %i\n", len, size); Com_Printf ("Com_sprintf: overflow of %i in %i\n", len, size);
#ifdef _DEBUG #if defined(_DEBUG) && defined(_MSC_VER)
__asm { if (IsDebuggerPresent())
int 3; __debugbreak();
}
#endif #endif
} }
Q_strncpyz (dest, bigbuffer, size ); Q_strncpyz (dest, bigbuffer, size );

View file

@ -472,11 +472,7 @@ void AxisCopy( const vec3_t in[3], vec3_t out[3] );
struct cplane_s; struct cplane_s;
void SetPlaneSignbits( struct cplane_s *out ); void SetPlaneSignbits( struct cplane_s *out );
#if !defined(__GNUC__)
int BoxOnPlaneSide( const vec3_t emins, const vec3_t emaxs, const struct cplane_s* p ); int BoxOnPlaneSide( const vec3_t emins, const vec3_t emaxs, const struct cplane_s* p );
#else
extern "C" int BoxOnPlaneSide( const vec3_t emins, const vec3_t emaxs, const struct cplane_s* p );
#endif
float AngleMod( float a ); float AngleMod( float a );
float LerpAngle( float from, float to, float frac ); float LerpAngle( float from, float to, float frac );

View file

@ -566,11 +566,11 @@ intptr_t VM_ArgPtr( intptr_t intValue )
intptr_t VM_ExplicitArgPtr( const vm_t* vm, intptr_t intValue ) intptr_t VM_ExplicitArgPtr( const vm_t* vm, intptr_t intValue )
{ {
if (!intValue) if (!intValue)
return NULL; return 0;
// bk010124 - currentVM is missing on reconnect here as well? // bk010124 - currentVM is missing on reconnect here as well?
if (!currentVM) if (!currentVM)
return NULL; return 0;
if ( vm->entryPoint ) { if ( vm->entryPoint ) {
return (intptr_t)(vm->dataBase + intValue); return (intptr_t)(vm->dataBase + intValue);

View file

@ -24,7 +24,7 @@ Foundation, Inc., 51 Franklin St, Fifth Floor, Boston, MA 02110-1301 USA
#include "vm_local.h" #include "vm_local.h"
#ifdef _WIN32 #ifdef _WIN32
#include <windows.h> #include "../win32/windows.h"
#endif #endif
#ifndef _WIN32 #ifndef _WIN32
@ -56,47 +56,6 @@ static int pc = 0;
static int *instructionPointers = NULL; static int *instructionPointers = NULL;
// BEWARE: static int Q_ftol( float f ) { return (int)f; }
// does NOT work - the function needs to be naked
// there are "clever" ways to do ftol with bit-hacking, but they aren't worthwhile
#if defined(_MSC_VER)
static const __int16 FPU_CW = 0x0E7F; // double precision, round towards 0
// the float value is already sitting on the top of the FP stack
static __declspec(naked) void QVM_ftol()
{
static __int16 cw;
int n;
__asm {
fnstcw cw
fldcw FPU_CW
fistp n
fldcw cw
mov eax, n
ret
}
}
#define FTOL_PTR
static int ftolPtr = (int)QVM_ftol;
#elif defined(__GNUC__)
#define FTOL_PTR
extern "C" int qftol0F7F( void );
static int ftolPtr = (int)qftol0F7F;
#else
#error no ANSI-compatible ftol for this platform/compiler
#endif
static int instruction, pass; static int instruction, pass;
static int lastConst = 0; static int lastConst = 0;
static int oc0, oc1, pop0, pop1; static int oc0, oc1, pop0, pop1;
@ -472,7 +431,7 @@ static void EmitMovEAXEDI(vm_t *vm) {
EmitString( "8B 07" ); // mov eax, dword ptr [edi] EmitString( "8B 07" ); // mov eax, dword ptr [edi]
} }
qbool EmitMovEBXEDI(vm_t *vm, int andit) { static qbool EmitMovEBXEDI(vm_t *vm, int andit) {
if (LastCommand == LAST_COMMAND_MOV_EDI_EAX) if (LastCommand == LAST_COMMAND_MOV_EDI_EAX)
{ // mov [edi], eax { // mov [edi], eax
compiledOfs -= 2; compiledOfs -= 2;
@ -506,6 +465,11 @@ qbool EmitMovEBXEDI(vm_t *vm, int andit) {
void VM_Compile( vm_t* vm, const vmHeader_t* header ) void VM_Compile( vm_t* vm, const vmHeader_t* header )
{ {
// floating point control word, for OP_CVFI
// [0] used for saving the current mode
// [1] all exceptions bits set, single-precision, round towards 0
static int fpcw[2] = { 0x0000, 0x0F7F };
int op; int op;
int maxLength; int maxLength;
int v; int v;
@ -1109,17 +1073,13 @@ void VM_Compile( vm_t* vm, const vmHeader_t* header )
EmitString( "D9 1F" ); // fstp dword ptr [edi] EmitString( "D9 1F" ); // fstp dword ptr [edi]
break; break;
case OP_CVFI: case OP_CVFI:
#ifndef FTOL_PTR // WHENHELLISFROZENOVER // bk001213 - was used in 1.17
// not IEEE compliant, but simple and fast
EmitString( "D9 07" ); // fld dword ptr [edi] EmitString( "D9 07" ); // fld dword ptr [edi]
EmitString( "B8" ); // mov eax, &fp_cw[0]
Emit4( (int)&fpcw[0] );
EmitString( "9B D9 38" ); // fnstcw word ptr [eax]
EmitString( "D9 68 04" ); // fldcw word ptr [eax+4]
EmitString( "DB 1F" ); // fistp dword ptr [edi] EmitString( "DB 1F" ); // fistp dword ptr [edi]
#else // FTOL_PTR EmitString( "D9 28" ); // fldcw word ptr [eax]
// call the library conversion function
EmitString( "D9 07" ); // fld dword ptr [edi]
EmitString( "FF 15" ); // call ftolPtr
Emit4( (int)&ftolPtr );
EmitCommand(LAST_COMMAND_MOV_EDI_EAX); // mov dword ptr [edi], eax
#endif
break; break;
case OP_SEX8: case OP_SEX8:
EmitString( "0F BE 07" ); // movsx eax, byte ptr [edi] EmitString( "0F BE 07" ); // movsx eax, byte ptr [edi]

View file

@ -32,7 +32,7 @@ Foundation, Inc., 51 Franklin St, Fifth Floor, Boston, MA 02110-1301 USA
#elif defined( _WIN32 ) #elif defined( _WIN32 )
#include <windows.h> #include "../win32/windows.h"
#include <GL/gl.h> #include <GL/gl.h>
#include "../win32/glext.h" #include "../win32/glext.h"

View file

@ -152,7 +152,7 @@ void ARB_SetupLight()
qglProgramLocalParameter4f( GL_FRAGMENT_PROGRAM_ARB, 1, 1.0 / Square(dl->radius), 0, 0, 0 ); qglProgramLocalParameter4f( GL_FRAGMENT_PROGRAM_ARB, 1, 1.0 / Square(dl->radius), 0, 0, 0 );
qglProgramEnvParameter4f( GL_VERTEX_PROGRAM_ARB, VP_GLOBAL_EYEPOS, qglProgramEnvParameter4f( GL_VERTEX_PROGRAM_ARB, VP_GLOBAL_EYEPOS,
backEnd.or.viewOrigin[0], backEnd.or.viewOrigin[1], backEnd.or.viewOrigin[2], 0 ); backEnd.orient.viewOrigin[0], backEnd.orient.viewOrigin[1], backEnd.orient.viewOrigin[2], 0 );
} }

View file

@ -413,10 +413,10 @@ static void RB_BeginDrawingView()
plane[2] = backEnd.viewParms.portalPlane.normal[2]; plane[2] = backEnd.viewParms.portalPlane.normal[2];
plane[3] = backEnd.viewParms.portalPlane.dist; plane[3] = backEnd.viewParms.portalPlane.dist;
plane2[0] = DotProduct (backEnd.viewParms.or.axis[0], plane); plane2[0] = DotProduct (backEnd.viewParms.orient.axis[0], plane);
plane2[1] = DotProduct (backEnd.viewParms.or.axis[1], plane); plane2[1] = DotProduct (backEnd.viewParms.orient.axis[1], plane);
plane2[2] = DotProduct (backEnd.viewParms.or.axis[2], plane); plane2[2] = DotProduct (backEnd.viewParms.orient.axis[2], plane);
plane2[3] = DotProduct (plane, backEnd.viewParms.or.origin) - plane[3]; plane2[3] = DotProduct (plane, backEnd.viewParms.orient.origin) - plane[3];
qglLoadMatrixf( s_flipMatrix ); qglLoadMatrixf( s_flipMatrix );
qglClipPlane (GL_CLIP_PLANE0, plane2); qglClipPlane (GL_CLIP_PLANE0, plane2);
@ -491,7 +491,7 @@ static void RB_RenderDrawSurfList( const drawSurf_t* drawSurfs, int numDrawSurfs
tess.shaderTime = backEnd.refdef.floatTime - tess.shader->timeOffset; tess.shaderTime = backEnd.refdef.floatTime - tess.shader->timeOffset;
// set up the transformation matrix // set up the transformation matrix
R_RotateForEntity( backEnd.currentEntity, &backEnd.viewParms, &backEnd.or ); R_RotateForEntity( backEnd.currentEntity, &backEnd.viewParms, &backEnd.orient );
if ( backEnd.currentEntity->e.renderfx & RF_DEPTHHACK ) { if ( backEnd.currentEntity->e.renderfx & RF_DEPTHHACK ) {
// hack the depth range to prevent view model from poking into walls // hack the depth range to prevent view model from poking into walls
@ -500,13 +500,13 @@ static void RB_RenderDrawSurfList( const drawSurf_t* drawSurfs, int numDrawSurfs
} else { } else {
backEnd.currentEntity = &tr.worldEntity; backEnd.currentEntity = &tr.worldEntity;
backEnd.refdef.floatTime = originalTime; backEnd.refdef.floatTime = originalTime;
backEnd.or = backEnd.viewParms.world; backEnd.orient = backEnd.viewParms.world;
// we have to reset the shaderTime as well otherwise image animations on // we have to reset the shaderTime as well otherwise image animations on
// the world (like water) continue with the wrong frame // the world (like water) continue with the wrong frame
tess.shaderTime = backEnd.refdef.floatTime - tess.shader->timeOffset; tess.shaderTime = backEnd.refdef.floatTime - tess.shader->timeOffset;
} }
qglLoadMatrixf( backEnd.or.modelMatrix ); qglLoadMatrixf( backEnd.orient.modelMatrix );
// //
// change depthrange if needed // change depthrange if needed
@ -605,9 +605,9 @@ static void RB_RenderLitSurfList( dlight_t* dl )
tess.shaderTime = backEnd.refdef.floatTime - tess.shader->timeOffset; tess.shaderTime = backEnd.refdef.floatTime - tess.shader->timeOffset;
// set up the transformation matrix // set up the transformation matrix
R_RotateForEntity( backEnd.currentEntity, &backEnd.viewParms, &backEnd.or ); R_RotateForEntity( backEnd.currentEntity, &backEnd.viewParms, &backEnd.orient );
R_TransformDlights( 1, dl, &backEnd.or ); R_TransformDlights( 1, dl, &backEnd.orient );
ARB_SetupLight(); ARB_SetupLight();
if ( backEnd.currentEntity->e.renderfx & RF_DEPTHHACK ) { if ( backEnd.currentEntity->e.renderfx & RF_DEPTHHACK ) {
@ -617,15 +617,15 @@ static void RB_RenderLitSurfList( dlight_t* dl )
} else { } else {
backEnd.currentEntity = &tr.worldEntity; backEnd.currentEntity = &tr.worldEntity;
backEnd.refdef.floatTime = originalTime; backEnd.refdef.floatTime = originalTime;
backEnd.or = backEnd.viewParms.world; backEnd.orient = backEnd.viewParms.world;
// we have to reset the shaderTime as well otherwise image animations on // we have to reset the shaderTime as well otherwise image animations on
// the world (like water) continue with the wrong frame // the world (like water) continue with the wrong frame
tess.shaderTime = backEnd.refdef.floatTime - tess.shader->timeOffset; tess.shaderTime = backEnd.refdef.floatTime - tess.shader->timeOffset;
R_TransformDlights( 1, dl, &backEnd.or ); R_TransformDlights( 1, dl, &backEnd.orient );
ARB_SetupLight(); ARB_SetupLight();
} }
qglLoadMatrixf( backEnd.or.modelMatrix ); qglLoadMatrixf( backEnd.orient.modelMatrix );
// //
// change depthrange if needed // change depthrange if needed

View file

@ -131,7 +131,7 @@ void RB_AddFlare( void *surface, int fogNum, vec3_t point, vec3_t color, vec3_t
if(normal && (normal[0] || normal[1] || normal[2])) if(normal && (normal[0] || normal[1] || normal[2]))
{ {
VectorSubtract( backEnd.viewParms.or.origin, point, local ); VectorSubtract( backEnd.viewParms.orient.origin, point, local );
VectorNormalizeFast(local); VectorNormalizeFast(local);
d = DotProduct(local, normal); d = DotProduct(local, normal);
@ -142,7 +142,7 @@ void RB_AddFlare( void *surface, int fogNum, vec3_t point, vec3_t color, vec3_t
// if the point is off the screen, don't bother adding it // if the point is off the screen, don't bother adding it
// calculate screen coordinates and depth // calculate screen coordinates and depth
R_TransformModelToClip( point, backEnd.or.modelMatrix, R_TransformModelToClip( point, backEnd.orient.modelMatrix,
backEnd.viewParms.projectionMatrix, eye, clip ); backEnd.viewParms.projectionMatrix, eye, clip );
// check to see if the point is completely off screen // check to see if the point is completely off screen
@ -477,7 +477,7 @@ void RB_RenderFlares (void) {
// Reset currentEntity to world so that any previously referenced entities // Reset currentEntity to world so that any previously referenced entities
// don't have influence on the rendering of these flares (i.e. RF_ renderer flags). // don't have influence on the rendering of these flares (i.e. RF_ renderer flags).
backEnd.currentEntity = &tr.worldEntity; backEnd.currentEntity = &tr.worldEntity;
backEnd.or = backEnd.viewParms.world; backEnd.orient = backEnd.viewParms.world;
// if we use it - flare is blink // if we use it - flare is blink
//RB_AddDlightFlares(); //RB_AddDlightFlares();

View file

@ -477,34 +477,6 @@ void GfxInfo_f( void )
} }
static void R_WindowMode_f()
{
const char *str = ri.Cmd_Argv(1);
if ( !Q_stricmpn( str, "restart", 7 ) ) GLimp_WindowMode( WMODE_RESTART );
else if( !Q_stricmpn( str, "minimized", 3 ) ) GLimp_WindowMode( WMODE_SET_MINIMIZED );
else if( !Q_stricmpn( str, "windowed", 3 ) ) GLimp_WindowMode( WMODE_SET_WINDOWED );
else if( !Q_stricmpn( str, "fullscreen", 4 ) ) GLimp_WindowMode( WMODE_SET_FULLSCREEN );
else if( !Q_stricmpn( str, "swapFullscreen", 8 ) ) GLimp_WindowMode( WMODE_SWAP_FULLSCREEN );
else if( !Q_stricmpn( str, "swapMinimized", 7 ) ) GLimp_WindowMode( WMODE_SWAP_MINIMIZED );
else
{
str = ri.Cmd_Argv(0);
ri.Printf( PRINT_ALL,
"How to use:\n"
"\\%s restart\n"
"\\%s minimized\n"
"\\%s windowed\n"
"\\%s fullscreen\n"
"\\%s swapFullscreen\n"
"\\%s swapMinimized\n"
, str, str, str, str, str, str
);
}
Cvar_Get( "in_keyboardShortcuts", "", 0 )->modified = qtrue;
}
/////////////////////////////////////////////////////////////// ///////////////////////////////////////////////////////////////
@ -519,7 +491,6 @@ static struct r_ConsoleCmd {
{ "modellist", R_Modellist_f }, { "modellist", R_Modellist_f },
{ "screenshot", R_ScreenShotTGA_f }, { "screenshot", R_ScreenShotTGA_f },
{ "screenshotJPEG", R_ScreenShotJPG_f }, { "screenshotJPEG", R_ScreenShotJPG_f },
{ "windowMode", R_WindowMode_f },
{ } { }
}; };
@ -827,8 +798,5 @@ const refexport_t* GetRefAPI( const refimport_t* rimp )
re.TakeVideoFrame = RE_TakeVideoFrame; re.TakeVideoFrame = RE_TakeVideoFrame;
// drakkar
re.WindowFocus = GLimp_WindowFocus;
return &re; return &re;
} }

View file

@ -30,15 +30,15 @@ Foundation, Inc., 51 Franklin St, Fifth Floor, Boston, MA 02110-1301 USA
// never calculate a range less than this to prevent huge light numbers // never calculate a range less than this to prevent huge light numbers
void R_TransformDlights( int count, dlight_t* dl, const orientationr_t* or ) void R_TransformDlights( int count, dlight_t* dl, const orientationr_t* orient )
{ {
vec3_t temp; vec3_t temp;
for ( int i = 0; i < count; ++i, ++dl ) { for ( int i = 0; i < count; ++i, ++dl ) {
VectorSubtract( dl->origin, or->origin, temp ); VectorSubtract( dl->origin, orient->origin, temp );
dl->transformed[0] = DotProduct( temp, or->axis[0] ); dl->transformed[0] = DotProduct( temp, orient->axis[0] );
dl->transformed[1] = DotProduct( temp, or->axis[1] ); dl->transformed[1] = DotProduct( temp, orient->axis[1] );
dl->transformed[2] = DotProduct( temp, or->axis[2] ); dl->transformed[2] = DotProduct( temp, orient->axis[2] );
} }
} }

View file

@ -421,7 +421,7 @@ typedef struct {
typedef struct { typedef struct {
orientationr_t or; orientationr_t orient;
orientationr_t world; orientationr_t world;
vec3_t pvsOrigin; // may be different than or.origin for portals vec3_t pvsOrigin; // may be different than or.origin for portals
qbool isPortal; // true if this view is through a portal qbool isPortal; // true if this view is through a portal
@ -813,7 +813,7 @@ typedef struct {
int smpFrame; int smpFrame;
trRefdef_t refdef; trRefdef_t refdef;
viewParms_t viewParms; viewParms_t viewParms;
orientationr_t or; orientationr_t orient;
trRefEntity_t* currentEntity; trRefEntity_t* currentEntity;
qbool projection2D; // if qtrue, drawstretchpic doesn't need to change modes qbool projection2D; // if qtrue, drawstretchpic doesn't need to change modes
@ -883,7 +883,7 @@ typedef struct {
int identityLightByte; // identityLight * 255 int identityLightByte; // identityLight * 255
int overbrightBits; // r_overbrightBits->integer, but set to 0 if no hw gamma int overbrightBits; // r_overbrightBits->integer, but set to 0 if no hw gamma
orientationr_t or; // for current entity orientationr_t orient; // for current entity
trRefdef_t refdef; trRefdef_t refdef;
@ -1057,7 +1057,7 @@ int R_CullLocalBox( const vec3_t bounds[2] );
int R_CullPointAndRadius( const vec3_t origin, float radius ); int R_CullPointAndRadius( const vec3_t origin, float radius );
int R_CullLocalPointAndRadius( const vec3_t origin, float radius ); int R_CullLocalPointAndRadius( const vec3_t origin, float radius );
void R_RotateForEntity( const trRefEntity_t* ent, const viewParms_t* viewParms, orientationr_t* or ); void R_RotateForEntity( const trRefEntity_t* ent, const viewParms_t* viewParms, orientationr_t* orient );
/* /*
** GL wrapper/helper functions ** GL wrapper/helper functions
@ -1175,18 +1175,6 @@ void GLimp_WakeRenderer( void *data );
// the params won't be used, getting the r_gamma cvar directly // the params won't be used, getting the r_gamma cvar directly
void GLimp_SetGamma( unsigned char red[256], unsigned char green[256], unsigned char blue[256] ); void GLimp_SetGamma( unsigned char red[256], unsigned char green[256], unsigned char blue[256] );
// drakkar
typedef enum {
WMODE_RESTART = 0,
WMODE_SET_MINIMIZED,
WMODE_SET_WINDOWED,
WMODE_SET_FULLSCREEN,
WMODE_SWAP_FULLSCREEN,
WMODE_SWAP_MINIMIZED
} windowMode_t;
void GLimp_WindowMode( windowMode_t wmode );
void GLimp_WindowFocus(qbool focus);
// !drakkar
/* /*
==================================================================== ====================================================================
@ -1286,7 +1274,7 @@ LIGHTS
*/ */
void R_SetupEntityLighting( const trRefdef_t *refdef, trRefEntity_t *ent ); void R_SetupEntityLighting( const trRefdef_t *refdef, trRefEntity_t *ent );
void R_TransformDlights( int count, dlight_t* dl, const orientationr_t* or ); void R_TransformDlights( int count, dlight_t* dl, const orientationr_t* orient );
qbool R_LightForPoint( const vec3_t point, vec3_t ambientLight, vec3_t directedLight, vec3_t lightDir ); qbool R_LightForPoint( const vec3_t point, vec3_t ambientLight, vec3_t directedLight, vec3_t lightDir );

View file

@ -40,17 +40,17 @@ const float s_flipMatrix[16] = {
static void R_LocalPointToWorld( const vec3_t local, vec3_t world ) static void R_LocalPointToWorld( const vec3_t local, vec3_t world )
{ {
world[0] = local[0] * tr.or.axis[0][0] + local[1] * tr.or.axis[1][0] + local[2] * tr.or.axis[2][0] + tr.or.origin[0]; world[0] = local[0] * tr.orient.axis[0][0] + local[1] * tr.orient.axis[1][0] + local[2] * tr.orient.axis[2][0] + tr.orient.origin[0];
world[1] = local[0] * tr.or.axis[0][1] + local[1] * tr.or.axis[1][1] + local[2] * tr.or.axis[2][1] + tr.or.origin[1]; world[1] = local[0] * tr.orient.axis[0][1] + local[1] * tr.orient.axis[1][1] + local[2] * tr.orient.axis[2][1] + tr.orient.origin[1];
world[2] = local[0] * tr.or.axis[0][2] + local[1] * tr.or.axis[1][2] + local[2] * tr.or.axis[2][2] + tr.or.origin[2]; world[2] = local[0] * tr.orient.axis[0][2] + local[1] * tr.orient.axis[1][2] + local[2] * tr.orient.axis[2][2] + tr.orient.origin[2];
} }
static void R_LocalNormalToWorld( const vec3_t local, vec3_t world ) static void R_LocalNormalToWorld( const vec3_t local, vec3_t world )
{ {
world[0] = local[0] * tr.or.axis[0][0] + local[1] * tr.or.axis[1][0] + local[2] * tr.or.axis[2][0]; world[0] = local[0] * tr.orient.axis[0][0] + local[1] * tr.orient.axis[1][0] + local[2] * tr.orient.axis[2][0];
world[1] = local[0] * tr.or.axis[0][1] + local[1] * tr.or.axis[1][1] + local[2] * tr.or.axis[2][1]; world[1] = local[0] * tr.orient.axis[0][1] + local[1] * tr.orient.axis[1][1] + local[2] * tr.orient.axis[2][1];
world[2] = local[0] * tr.or.axis[0][2] + local[1] * tr.or.axis[1][2] + local[2] * tr.or.axis[2][2]; world[2] = local[0] * tr.orient.axis[0][2] + local[1] * tr.orient.axis[1][2] + local[2] * tr.orient.axis[2][2];
} }
@ -76,10 +76,10 @@ int R_CullLocalBox( const vec3_t bounds[2] )
v[1] = bounds[(i>>1)&1][1]; v[1] = bounds[(i>>1)&1][1];
v[2] = bounds[(i>>2)&1][2]; v[2] = bounds[(i>>2)&1][2];
VectorCopy( tr.or.origin, transformed[i] ); VectorCopy( tr.orient.origin, transformed[i] );
VectorMA( transformed[i], v[0], tr.or.axis[0], transformed[i] ); VectorMA( transformed[i], v[0], tr.orient.axis[0], transformed[i] );
VectorMA( transformed[i], v[1], tr.or.axis[1], transformed[i] ); VectorMA( transformed[i], v[1], tr.orient.axis[1], transformed[i] );
VectorMA( transformed[i], v[2], tr.or.axis[2], transformed[i] ); VectorMA( transformed[i], v[2], tr.orient.axis[2], transformed[i] );
} }
// check against frustum planes // check against frustum planes
@ -227,48 +227,48 @@ Does NOT produce any GL calls
Called by both the front end and the back end Called by both the front end and the back end
================= =================
*/ */
void R_RotateForEntity( const trRefEntity_t* ent, const viewParms_t* viewParms, orientationr_t* or ) void R_RotateForEntity( const trRefEntity_t* ent, const viewParms_t* viewParms, orientationr_t* orient )
{ {
float glMatrix[16]; float glMatrix[16];
vec3_t delta; vec3_t delta;
float axisLength; float axisLength;
if ( ent->e.reType != RT_MODEL ) { if ( ent->e.reType != RT_MODEL ) {
*or = viewParms->world; *orient = viewParms->world;
return; return;
} }
VectorCopy( ent->e.origin, or->origin ); VectorCopy( ent->e.origin, orient->origin );
VectorCopy( ent->e.axis[0], or->axis[0] ); VectorCopy( ent->e.axis[0], orient->axis[0] );
VectorCopy( ent->e.axis[1], or->axis[1] ); VectorCopy( ent->e.axis[1], orient->axis[1] );
VectorCopy( ent->e.axis[2], or->axis[2] ); VectorCopy( ent->e.axis[2], orient->axis[2] );
glMatrix[0] = or->axis[0][0]; glMatrix[0] = orient->axis[0][0];
glMatrix[4] = or->axis[1][0]; glMatrix[4] = orient->axis[1][0];
glMatrix[8] = or->axis[2][0]; glMatrix[8] = orient->axis[2][0];
glMatrix[12] = or->origin[0]; glMatrix[12] = orient->origin[0];
glMatrix[1] = or->axis[0][1]; glMatrix[1] = orient->axis[0][1];
glMatrix[5] = or->axis[1][1]; glMatrix[5] = orient->axis[1][1];
glMatrix[9] = or->axis[2][1]; glMatrix[9] = orient->axis[2][1];
glMatrix[13] = or->origin[1]; glMatrix[13] = orient->origin[1];
glMatrix[2] = or->axis[0][2]; glMatrix[2] = orient->axis[0][2];
glMatrix[6] = or->axis[1][2]; glMatrix[6] = orient->axis[1][2];
glMatrix[10] = or->axis[2][2]; glMatrix[10] = orient->axis[2][2];
glMatrix[14] = or->origin[2]; glMatrix[14] = orient->origin[2];
glMatrix[3] = 0; glMatrix[3] = 0;
glMatrix[7] = 0; glMatrix[7] = 0;
glMatrix[11] = 0; glMatrix[11] = 0;
glMatrix[15] = 1; glMatrix[15] = 1;
myGlMultMatrix( glMatrix, viewParms->world.modelMatrix, or->modelMatrix ); myGlMultMatrix( glMatrix, viewParms->world.modelMatrix, orient->modelMatrix );
// calculate the viewer origin in the model's space // calculate the viewer origin in the model's space
// needed for fog, specular, and environment mapping // needed for fog, specular, and environment mapping
VectorSubtract( viewParms->or.origin, or->origin, delta ); VectorSubtract( viewParms->orient.origin, orient->origin, delta );
// compensate for scale in the axes if necessary // compensate for scale in the axes if necessary
if ( ent->e.nonNormalizedAxes ) { if ( ent->e.nonNormalizedAxes ) {
@ -282,9 +282,9 @@ void R_RotateForEntity( const trRefEntity_t* ent, const viewParms_t* viewParms,
axisLength = 1.0f; axisLength = 1.0f;
} }
or->viewOrigin[0] = DotProduct( delta, or->axis[0] ) * axisLength; orient->viewOrigin[0] = DotProduct( delta, orient->axis[0] ) * axisLength;
or->viewOrigin[1] = DotProduct( delta, or->axis[1] ) * axisLength; orient->viewOrigin[1] = DotProduct( delta, orient->axis[1] ) * axisLength;
or->viewOrigin[2] = DotProduct( delta, or->axis[2] ) * axisLength; orient->viewOrigin[2] = DotProduct( delta, orient->axis[2] ) * axisLength;
} }
@ -295,28 +295,28 @@ static void R_RotateForViewer()
float viewerMatrix[16]; float viewerMatrix[16];
vec3_t origin; vec3_t origin;
Com_Memset( &tr.or, 0, sizeof(tr.or) ); Com_Memset( &tr.orient, 0, sizeof(tr.orient) );
tr.or.axis[0][0] = 1; tr.orient.axis[0][0] = 1;
tr.or.axis[1][1] = 1; tr.orient.axis[1][1] = 1;
tr.or.axis[2][2] = 1; tr.orient.axis[2][2] = 1;
VectorCopy( tr.viewParms.or.origin, tr.or.viewOrigin ); VectorCopy( tr.viewParms.orient.origin, tr.orient.viewOrigin );
// transform by the camera placement // transform by the camera placement
VectorCopy( tr.viewParms.or.origin, origin ); VectorCopy( tr.viewParms.orient.origin, origin );
viewerMatrix[0] = tr.viewParms.or.axis[0][0]; viewerMatrix[0] = tr.viewParms.orient.axis[0][0];
viewerMatrix[4] = tr.viewParms.or.axis[0][1]; viewerMatrix[4] = tr.viewParms.orient.axis[0][1];
viewerMatrix[8] = tr.viewParms.or.axis[0][2]; viewerMatrix[8] = tr.viewParms.orient.axis[0][2];
viewerMatrix[12] = -origin[0] * viewerMatrix[0] + -origin[1] * viewerMatrix[4] + -origin[2] * viewerMatrix[8]; viewerMatrix[12] = -origin[0] * viewerMatrix[0] + -origin[1] * viewerMatrix[4] + -origin[2] * viewerMatrix[8];
viewerMatrix[1] = tr.viewParms.or.axis[1][0]; viewerMatrix[1] = tr.viewParms.orient.axis[1][0];
viewerMatrix[5] = tr.viewParms.or.axis[1][1]; viewerMatrix[5] = tr.viewParms.orient.axis[1][1];
viewerMatrix[9] = tr.viewParms.or.axis[1][2]; viewerMatrix[9] = tr.viewParms.orient.axis[1][2];
viewerMatrix[13] = -origin[0] * viewerMatrix[1] + -origin[1] * viewerMatrix[5] + -origin[2] * viewerMatrix[9]; viewerMatrix[13] = -origin[0] * viewerMatrix[1] + -origin[1] * viewerMatrix[5] + -origin[2] * viewerMatrix[9];
viewerMatrix[2] = tr.viewParms.or.axis[2][0]; viewerMatrix[2] = tr.viewParms.orient.axis[2][0];
viewerMatrix[6] = tr.viewParms.or.axis[2][1]; viewerMatrix[6] = tr.viewParms.orient.axis[2][1];
viewerMatrix[10] = tr.viewParms.or.axis[2][2]; viewerMatrix[10] = tr.viewParms.orient.axis[2][2];
viewerMatrix[14] = -origin[0] * viewerMatrix[2] + -origin[1] * viewerMatrix[6] + -origin[2] * viewerMatrix[10]; viewerMatrix[14] = -origin[0] * viewerMatrix[2] + -origin[1] * viewerMatrix[6] + -origin[2] * viewerMatrix[10];
viewerMatrix[3] = 0; viewerMatrix[3] = 0;
@ -326,9 +326,9 @@ static void R_RotateForViewer()
// convert from our coordinate system (looking down X) // convert from our coordinate system (looking down X)
// to OpenGL's coordinate system (looking down -Z) // to OpenGL's coordinate system (looking down -Z)
myGlMultMatrix( viewerMatrix, s_flipMatrix, tr.or.modelMatrix ); myGlMultMatrix( viewerMatrix, s_flipMatrix, tr.orient.modelMatrix );
tr.viewParms.world = tr.or; tr.viewParms.world = tr.orient;
} }
@ -351,7 +351,7 @@ static void SetFarClip()
v[1] = (i & 2) ? tr.viewParms.visBounds[0][1] : tr.viewParms.visBounds[1][1]; v[1] = (i & 2) ? tr.viewParms.visBounds[0][1] : tr.viewParms.visBounds[1][1];
v[2] = (i & 4) ? tr.viewParms.visBounds[0][2] : tr.viewParms.visBounds[1][2]; v[2] = (i & 4) ? tr.viewParms.visBounds[0][2] : tr.viewParms.visBounds[1][2];
float d = DistanceSquared( v, tr.viewParms.or.origin ); float d = DistanceSquared( v, tr.viewParms.orient.origin );
if ( d > farthestCornerDistance ) if ( d > farthestCornerDistance )
{ {
farthestCornerDistance = d; farthestCornerDistance = d;
@ -419,25 +419,25 @@ static void R_SetupFrustum()
xs = sin( ang ); xs = sin( ang );
xc = cos( ang ); xc = cos( ang );
VectorScale( tr.viewParms.or.axis[0], xs, tr.viewParms.frustum[0].normal ); VectorScale( tr.viewParms.orient.axis[0], xs, tr.viewParms.frustum[0].normal );
VectorMA( tr.viewParms.frustum[0].normal, xc, tr.viewParms.or.axis[1], tr.viewParms.frustum[0].normal ); VectorMA( tr.viewParms.frustum[0].normal, xc, tr.viewParms.orient.axis[1], tr.viewParms.frustum[0].normal );
VectorScale( tr.viewParms.or.axis[0], xs, tr.viewParms.frustum[1].normal ); VectorScale( tr.viewParms.orient.axis[0], xs, tr.viewParms.frustum[1].normal );
VectorMA( tr.viewParms.frustum[1].normal, -xc, tr.viewParms.or.axis[1], tr.viewParms.frustum[1].normal ); VectorMA( tr.viewParms.frustum[1].normal, -xc, tr.viewParms.orient.axis[1], tr.viewParms.frustum[1].normal );
ang = tr.viewParms.fovY / 180 * M_PI * 0.5f; ang = tr.viewParms.fovY / 180 * M_PI * 0.5f;
xs = sin( ang ); xs = sin( ang );
xc = cos( ang ); xc = cos( ang );
VectorScale( tr.viewParms.or.axis[0], xs, tr.viewParms.frustum[2].normal ); VectorScale( tr.viewParms.orient.axis[0], xs, tr.viewParms.frustum[2].normal );
VectorMA( tr.viewParms.frustum[2].normal, xc, tr.viewParms.or.axis[2], tr.viewParms.frustum[2].normal ); VectorMA( tr.viewParms.frustum[2].normal, xc, tr.viewParms.orient.axis[2], tr.viewParms.frustum[2].normal );
VectorScale( tr.viewParms.or.axis[0], xs, tr.viewParms.frustum[3].normal ); VectorScale( tr.viewParms.orient.axis[0], xs, tr.viewParms.frustum[3].normal );
VectorMA( tr.viewParms.frustum[3].normal, -xc, tr.viewParms.or.axis[2], tr.viewParms.frustum[3].normal ); VectorMA( tr.viewParms.frustum[3].normal, -xc, tr.viewParms.orient.axis[2], tr.viewParms.frustum[3].normal );
for (int i = 0; i < 4; ++i) { for (int i = 0; i < 4; ++i) {
tr.viewParms.frustum[i].type = PLANE_NON_AXIAL; tr.viewParms.frustum[i].type = PLANE_NON_AXIAL;
tr.viewParms.frustum[i].dist = DotProduct (tr.viewParms.or.origin, tr.viewParms.frustum[i].normal); tr.viewParms.frustum[i].dist = DotProduct (tr.viewParms.orient.origin, tr.viewParms.frustum[i].normal);
SetPlaneSignbits( &tr.viewParms.frustum[i] ); SetPlaneSignbits( &tr.viewParms.frustum[i] );
} }
} }
@ -542,15 +542,15 @@ qbool R_GetPortalOrientations( drawSurf_t *drawSurf, int entityNum,
tr.currentEntity = &tr.refdef.entities[entityNum]; tr.currentEntity = &tr.refdef.entities[entityNum];
// get the orientation of the entity // get the orientation of the entity
R_RotateForEntity( tr.currentEntity, &tr.viewParms, &tr.or ); R_RotateForEntity( tr.currentEntity, &tr.viewParms, &tr.orient );
// rotate the plane, but keep the non-rotated version for matching // rotate the plane, but keep the non-rotated version for matching
// against the portalSurface entities // against the portalSurface entities
R_LocalNormalToWorld( originalPlane.normal, plane.normal ); R_LocalNormalToWorld( originalPlane.normal, plane.normal );
plane.dist = originalPlane.dist + DotProduct( plane.normal, tr.or.origin ); plane.dist = originalPlane.dist + DotProduct( plane.normal, tr.orient.origin );
// translate the original plane // translate the original plane
originalPlane.dist = originalPlane.dist + DotProduct( originalPlane.normal, tr.or.origin ); originalPlane.dist = originalPlane.dist + DotProduct( originalPlane.normal, tr.orient.origin );
} else { } else {
plane = originalPlane; plane = originalPlane;
} }
@ -659,15 +659,15 @@ static qbool IsMirror( const drawSurf_t *drawSurf, int entityNum )
tr.currentEntity = &tr.refdef.entities[entityNum]; tr.currentEntity = &tr.refdef.entities[entityNum];
// get the orientation of the entity // get the orientation of the entity
R_RotateForEntity( tr.currentEntity, &tr.viewParms, &tr.or ); R_RotateForEntity( tr.currentEntity, &tr.viewParms, &tr.orient );
// rotate the plane, but keep the non-rotated version for matching // rotate the plane, but keep the non-rotated version for matching
// against the portalSurface entities // against the portalSurface entities
R_LocalNormalToWorld( originalPlane.normal, plane.normal ); R_LocalNormalToWorld( originalPlane.normal, plane.normal );
plane.dist = originalPlane.dist + DotProduct( plane.normal, tr.or.origin ); plane.dist = originalPlane.dist + DotProduct( plane.normal, tr.orient.origin );
// translate the original plane // translate the original plane
originalPlane.dist = originalPlane.dist + DotProduct( originalPlane.normal, tr.or.origin ); originalPlane.dist = originalPlane.dist + DotProduct( originalPlane.normal, tr.orient.origin );
} }
else else
{ {
@ -729,7 +729,7 @@ static qbool SurfIsOffscreen( const drawSurf_t* drawSurf )
int j; int j;
unsigned int pointFlags = 0; unsigned int pointFlags = 0;
R_TransformModelToClip( tess.xyz[i], tr.or.modelMatrix, tr.viewParms.projectionMatrix, eye, clip ); R_TransformModelToClip( tess.xyz[i], tr.orient.modelMatrix, tr.viewParms.projectionMatrix, eye, clip );
for ( j = 0; j < 3; j++ ) for ( j = 0; j < 3; j++ )
{ {
@ -764,7 +764,7 @@ static qbool SurfIsOffscreen( const drawSurf_t* drawSurf )
float dot; float dot;
float len; float len;
VectorSubtract( tess.xyz[tess.indexes[i]], tr.viewParms.or.origin, normal ); VectorSubtract( tess.xyz[tess.indexes[i]], tr.viewParms.orient.origin, normal );
len = VectorLengthSquared( normal ); // lose the sqrt len = VectorLengthSquared( normal ); // lose the sqrt
if ( len < shortest ) if ( len < shortest )
@ -832,14 +832,14 @@ static qbool R_MirrorViewBySurface( drawSurf_t* drawSurf, int entityNum )
return qfalse; // bad portal, no portalentity return qfalse; // bad portal, no portalentity
} }
R_MirrorPoint( oldParms.or.origin, &surface, &camera, newParms.or.origin ); R_MirrorPoint( oldParms.orient.origin, &surface, &camera, newParms.orient.origin );
VectorSubtract( vec3_origin, camera.axis[0], newParms.portalPlane.normal ); VectorSubtract( vec3_origin, camera.axis[0], newParms.portalPlane.normal );
newParms.portalPlane.dist = DotProduct( camera.origin, newParms.portalPlane.normal ); newParms.portalPlane.dist = DotProduct( camera.origin, newParms.portalPlane.normal );
R_MirrorVector( oldParms.or.axis[0], &surface, &camera, newParms.or.axis[0] ); R_MirrorVector( oldParms.orient.axis[0], &surface, &camera, newParms.orient.axis[0] );
R_MirrorVector( oldParms.or.axis[1], &surface, &camera, newParms.or.axis[1] ); R_MirrorVector( oldParms.orient.axis[1], &surface, &camera, newParms.orient.axis[1] );
R_MirrorVector( oldParms.or.axis[2], &surface, &camera, newParms.or.axis[2] ); R_MirrorVector( oldParms.orient.axis[2], &surface, &camera, newParms.orient.axis[2] );
// OPTIMIZE: restrict the viewport on the mirrored view // OPTIMIZE: restrict the viewport on the mirrored view
@ -1182,7 +1182,7 @@ static void R_AddEntitySurfaces()
case RT_MODEL: case RT_MODEL:
// we must set up parts of tr.or for model culling // we must set up parts of tr.or for model culling
R_RotateForEntity( ent, &tr.viewParms, &tr.or ); R_RotateForEntity( ent, &tr.viewParms, &tr.orient );
tr.currentModel = R_GetModelByHandle( ent->e.hModel ); tr.currentModel = R_GetModelByHandle( ent->e.hModel );
if (!tr.currentModel) { if (!tr.currentModel) {

View file

@ -32,8 +32,8 @@ static float ProjectRadius( float r, const vec3_t location )
vec3_t p; vec3_t p;
float projected[4]; float projected[4];
c = DotProduct( tr.viewParms.or.axis[0], tr.viewParms.or.origin ); c = DotProduct( tr.viewParms.orient.axis[0], tr.viewParms.orient.origin );
dist = DotProduct( tr.viewParms.or.axis[0], location ) - c; dist = DotProduct( tr.viewParms.orient.axis[0], location ) - c;
if ( dist <= 0 ) if ( dist <= 0 )
return 0; return 0;

View file

@ -305,10 +305,10 @@ void RE_RenderScene( const refdef_t* fd )
parms.fovX = tr.refdef.fov_x; parms.fovX = tr.refdef.fov_x;
parms.fovY = tr.refdef.fov_y; parms.fovY = tr.refdef.fov_y;
VectorCopy( fd->vieworg, parms.or.origin ); VectorCopy( fd->vieworg, parms.orient.origin );
VectorCopy( fd->viewaxis[0], parms.or.axis[0] ); VectorCopy( fd->viewaxis[0], parms.orient.axis[0] );
VectorCopy( fd->viewaxis[1], parms.or.axis[1] ); VectorCopy( fd->viewaxis[1], parms.orient.axis[1] );
VectorCopy( fd->viewaxis[2], parms.or.axis[2] ); VectorCopy( fd->viewaxis[2], parms.orient.axis[2] );
VectorCopy( fd->vieworg, parms.pvsOrigin ); VectorCopy( fd->vieworg, parms.pvsOrigin );

View file

@ -102,7 +102,7 @@ void R_BindAnimatedImage( const textureBundle_t* bundle )
// it is necessary to do this messy calc to make sure animations line up // it is necessary to do this messy calc to make sure animations line up
// exactly with waveforms of the same frequency // exactly with waveforms of the same frequency
double v = tess.shaderTime * bundle->imageAnimationSpeed * FUNCTABLE_SIZE; double v = tess.shaderTime * bundle->imageAnimationSpeed * FUNCTABLE_SIZE;
__int64 index = v; //myftol( tess.shaderTime * bundle->imageAnimationSpeed * FUNCTABLE_SIZE ); long long int index = v; //myftol( tess.shaderTime * bundle->imageAnimationSpeed * FUNCTABLE_SIZE );
index >>= FUNCTABLE_SHIFT; index >>= FUNCTABLE_SHIFT;
if ( index < 0 ) // may happen with shader time offsets if ( index < 0 ) // may happen with shader time offsets
@ -383,7 +383,7 @@ void R_ComputeColors( const shaderStage_t* pStage, stageVars_t& svars )
for ( i = 0; i < tess.numVertexes; i++ ) for ( i = 0; i < tess.numVertexes; i++ )
{ {
vec3_t v; vec3_t v;
VectorSubtract( tess.xyz[i], backEnd.viewParms.or.origin, v ); VectorSubtract( tess.xyz[i], backEnd.viewParms.orient.origin, v );
float len = VectorLength( v ) / tess.shader->portalRange; float len = VectorLength( v ) / tess.shader->portalRange;
svars.colors[i][3] = (byte)Com_Clamp( 0, 255, len * 255 ); svars.colors[i][3] = (byte)Com_Clamp( 0, 255, len * 255 );
} }

View file

@ -314,9 +314,9 @@ void DeformText( const char *text ) {
static void GlobalVectorToLocal( const vec3_t in, vec3_t out ) static void GlobalVectorToLocal( const vec3_t in, vec3_t out )
{ {
out[0] = DotProduct( in, backEnd.or.axis[0] ); out[0] = DotProduct( in, backEnd.orient.axis[0] );
out[1] = DotProduct( in, backEnd.or.axis[1] ); out[1] = DotProduct( in, backEnd.orient.axis[1] );
out[2] = DotProduct( in, backEnd.or.axis[2] ); out[2] = DotProduct( in, backEnd.orient.axis[2] );
} }
@ -345,11 +345,11 @@ static void AutospriteDeform()
tess.numIndexes = 0; tess.numIndexes = 0;
if ( backEnd.currentEntity != &tr.worldEntity ) { if ( backEnd.currentEntity != &tr.worldEntity ) {
GlobalVectorToLocal( backEnd.viewParms.or.axis[1], leftDir ); GlobalVectorToLocal( backEnd.viewParms.orient.axis[1], leftDir );
GlobalVectorToLocal( backEnd.viewParms.or.axis[2], upDir ); GlobalVectorToLocal( backEnd.viewParms.orient.axis[2], upDir );
} else { } else {
VectorCopy( backEnd.viewParms.or.axis[1], leftDir ); VectorCopy( backEnd.viewParms.orient.axis[1], leftDir );
VectorCopy( backEnd.viewParms.or.axis[2], upDir ); VectorCopy( backEnd.viewParms.orient.axis[2], upDir );
} }
for ( i = 0 ; i < oldVerts ; i+=4 ) { for ( i = 0 ; i < oldVerts ; i+=4 ) {
@ -413,9 +413,9 @@ static void Autosprite2Deform( void ) {
} }
if ( backEnd.currentEntity != &tr.worldEntity ) { if ( backEnd.currentEntity != &tr.worldEntity ) {
GlobalVectorToLocal( backEnd.viewParms.or.axis[0], forward ); GlobalVectorToLocal( backEnd.viewParms.orient.axis[0], forward );
} else { } else {
VectorCopy( backEnd.viewParms.or.axis[0], forward ); VectorCopy( backEnd.viewParms.orient.axis[0], forward );
} }
// this is a lot of work for two triangles... // this is a lot of work for two triangles...
@ -783,11 +783,11 @@ void RB_CalcFogTexCoords( float *st ) {
fog = tr.world->fogs + tess.fogNum; fog = tr.world->fogs + tess.fogNum;
// all fogging distance is based on world Z units // all fogging distance is based on world Z units
VectorSubtract( backEnd.or.origin, backEnd.viewParms.or.origin, local ); VectorSubtract( backEnd.orient.origin, backEnd.viewParms.orient.origin, local );
fogDistanceVector[0] = -backEnd.or.modelMatrix[2]; fogDistanceVector[0] = -backEnd.orient.modelMatrix[2];
fogDistanceVector[1] = -backEnd.or.modelMatrix[6]; fogDistanceVector[1] = -backEnd.orient.modelMatrix[6];
fogDistanceVector[2] = -backEnd.or.modelMatrix[10]; fogDistanceVector[2] = -backEnd.orient.modelMatrix[10];
fogDistanceVector[3] = DotProduct( local, backEnd.viewParms.or.axis[0] ); fogDistanceVector[3] = DotProduct( local, backEnd.viewParms.orient.axis[0] );
// scale the fog vectors based on the fog's thickness // scale the fog vectors based on the fog's thickness
fogDistanceVector[0] *= fog->tcScale; fogDistanceVector[0] *= fog->tcScale;
@ -797,15 +797,15 @@ void RB_CalcFogTexCoords( float *st ) {
// rotate the gradient vector for this orientation // rotate the gradient vector for this orientation
if ( fog->hasSurface ) { if ( fog->hasSurface ) {
fogDepthVector[0] = fog->surface[0] * backEnd.or.axis[0][0] + fogDepthVector[0] = fog->surface[0] * backEnd.orient.axis[0][0] +
fog->surface[1] * backEnd.or.axis[0][1] + fog->surface[2] * backEnd.or.axis[0][2]; fog->surface[1] * backEnd.orient.axis[0][1] + fog->surface[2] * backEnd.orient.axis[0][2];
fogDepthVector[1] = fog->surface[0] * backEnd.or.axis[1][0] + fogDepthVector[1] = fog->surface[0] * backEnd.orient.axis[1][0] +
fog->surface[1] * backEnd.or.axis[1][1] + fog->surface[2] * backEnd.or.axis[1][2]; fog->surface[1] * backEnd.orient.axis[1][1] + fog->surface[2] * backEnd.orient.axis[1][2];
fogDepthVector[2] = fog->surface[0] * backEnd.or.axis[2][0] + fogDepthVector[2] = fog->surface[0] * backEnd.orient.axis[2][0] +
fog->surface[1] * backEnd.or.axis[2][1] + fog->surface[2] * backEnd.or.axis[2][2]; fog->surface[1] * backEnd.orient.axis[2][1] + fog->surface[2] * backEnd.orient.axis[2][2];
fogDepthVector[3] = -fog->surface[3] + DotProduct( backEnd.or.origin, fog->surface ); fogDepthVector[3] = -fog->surface[3] + DotProduct( backEnd.orient.origin, fog->surface );
eyeT = DotProduct( backEnd.or.viewOrigin, fogDepthVector ) + fogDepthVector[3]; eyeT = DotProduct( backEnd.orient.viewOrigin, fogDepthVector ) + fogDepthVector[3];
} else { } else {
eyeT = 1; // non-surface fog always has eye inside eyeT = 1; // non-surface fog always has eye inside
} }
@ -865,7 +865,7 @@ void RB_CalcEnvironmentTexCoords( float *st )
for (i = 0 ; i < tess.numVertexes ; i++, v += 4, normal += 4, st += 2 ) for (i = 0 ; i < tess.numVertexes ; i++, v += 4, normal += 4, st += 2 )
{ {
VectorSubtract (backEnd.or.viewOrigin, v, viewer); VectorSubtract (backEnd.orient.viewOrigin, v, viewer);
VectorNormalizeFast (viewer); VectorNormalizeFast (viewer);
d = DotProduct (normal, viewer); d = DotProduct (normal, viewer);
@ -979,20 +979,6 @@ void RB_CalcRotateTexCoords( float degsPerSecond, float *st )
RB_CalcTransformTexCoords( &tmi, st ); RB_CalcTransformTexCoords( &tmi, st );
} }
#if 0
#if id386 && !defined(__GNUC__)
long myftol( float f ) {
static int tmp;
__asm fld f
__asm fistp tmp
__asm mov eax, tmp
}
#endif
#endif
/* /*
** RB_CalcSpecularAlpha ** RB_CalcSpecularAlpha
** **
@ -1032,7 +1018,7 @@ void RB_CalcSpecularAlpha( unsigned char *alphas ) {
reflected[1] = normal[1]*2*d - lightDir[1]; reflected[1] = normal[1]*2*d - lightDir[1];
reflected[2] = normal[2]*2*d - lightDir[2]; reflected[2] = normal[2]*2*d - lightDir[2];
VectorSubtract (backEnd.or.viewOrigin, v, viewer); VectorSubtract (backEnd.orient.viewOrigin, v, viewer);
ilength = Q_rsqrt( DotProduct( viewer, viewer ) ); ilength = Q_rsqrt( DotProduct( viewer, viewer ) );
l = DotProduct (reflected, viewer); l = DotProduct (reflected, viewer);
l *= ilength; l *= ilength;

View file

@ -929,7 +929,7 @@ static qbool ParseStage( const char** text, shaderStage_t* stage )
} }
// decide which agens we can skip // decide which agens we can skip
if ( stage->alphaGen == CGEN_IDENTITY ) { if ( stage->alphaGen == AGEN_IDENTITY ) {
if ( stage->rgbGen == CGEN_IDENTITY if ( stage->rgbGen == CGEN_IDENTITY
|| stage->rgbGen == CGEN_LIGHTING_DIFFUSE ) { || stage->rgbGen == CGEN_LIGHTING_DIFFUSE ) {
stage->alphaGen = AGEN_SKIP; stage->alphaGen = AGEN_SKIP;
@ -1651,7 +1651,7 @@ static qbool CollapseMultitexture( void ) {
return qfalse; return qfalse;
} }
} }
if ( stages[0].alphaGen == CGEN_WAVEFORM ) if ( stages[0].alphaGen == AGEN_WAVEFORM )
{ {
if ( memcmp( &stages[0].alphaWave, if ( memcmp( &stages[0].alphaWave,
&stages[1].alphaWave, &stages[1].alphaWave,

View file

@ -251,9 +251,9 @@ static void RB_ClipSkyPolygons( const shaderCommands_t* input )
ClearSkyBox(); ClearSkyBox();
for ( int i = 0; i < input->numIndexes; i += 3 ) { for ( int i = 0; i < input->numIndexes; i += 3 ) {
VectorSubtract( input->xyz[input->indexes[i+0]], backEnd.viewParms.or.origin, p[0] ); VectorSubtract( input->xyz[input->indexes[i+0]], backEnd.viewParms.orient.origin, p[0] );
VectorSubtract( input->xyz[input->indexes[i+1]], backEnd.viewParms.or.origin, p[1] ); VectorSubtract( input->xyz[input->indexes[i+1]], backEnd.viewParms.orient.origin, p[1] );
VectorSubtract( input->xyz[input->indexes[i+2]], backEnd.viewParms.or.origin, p[2] ); VectorSubtract( input->xyz[input->indexes[i+2]], backEnd.viewParms.orient.origin, p[2] );
ClipSkyPolygon( 3, p[0], 0 ); ClipSkyPolygon( 3, p[0], 0 );
} }
} }
@ -387,7 +387,7 @@ static void FillCloudySkySide( const int mins[2], const int maxs[2], qbool addIn
{ {
for ( s = mins[0]+HALF_SKY_SUBDIVISIONS; s <= maxs[0]+HALF_SKY_SUBDIVISIONS; s++ ) for ( s = mins[0]+HALF_SKY_SUBDIVISIONS; s <= maxs[0]+HALF_SKY_SUBDIVISIONS; s++ )
{ {
VectorAdd( s_skyPoints[t][s], backEnd.viewParms.or.origin, tess.xyz[tess.numVertexes] ); VectorAdd( s_skyPoints[t][s], backEnd.viewParms.orient.origin, tess.xyz[tess.numVertexes] );
tess.texCoords[tess.numVertexes][0][0] = s_skyTexCoords[t][s][0]; tess.texCoords[tess.numVertexes][0][0] = s_skyTexCoords[t][s][0];
tess.texCoords[tess.numVertexes][0][1] = s_skyTexCoords[t][s][1]; tess.texCoords[tess.numVertexes][0][1] = s_skyTexCoords[t][s][1];
@ -580,7 +580,7 @@ void RB_StageIteratorSky()
qglColor3f( tr.identityLight, tr.identityLight, tr.identityLight ); qglColor3f( tr.identityLight, tr.identityLight, tr.identityLight );
qglPushMatrix(); qglPushMatrix();
GL_State( 0 ); GL_State( 0 );
qglTranslatef (backEnd.viewParms.or.origin[0], backEnd.viewParms.or.origin[1], backEnd.viewParms.or.origin[2]); qglTranslatef (backEnd.viewParms.orient.origin[0], backEnd.viewParms.orient.origin[1], backEnd.viewParms.orient.origin[2]);
DrawSkyBox( tess.shader ); DrawSkyBox( tess.shader );
qglPopMatrix(); qglPopMatrix();
} }

View file

@ -103,7 +103,7 @@ void RB_AddQuadStampExt( vec3_t origin, vec3_t left, vec3_t up, byte *color, flo
// constant normal all the way around // constant normal all the way around
VectorSubtract( vec3_origin, backEnd.viewParms.or.axis[0], normal ); VectorSubtract( vec3_origin, backEnd.viewParms.orient.axis[0], normal );
tess.normal[ndx][0] = tess.normal[ndx+1][0] = tess.normal[ndx+2][0] = tess.normal[ndx+3][0] = normal[0]; tess.normal[ndx][0] = tess.normal[ndx+1][0] = tess.normal[ndx+2][0] = tess.normal[ndx+3][0] = normal[0];
tess.normal[ndx][1] = tess.normal[ndx+1][1] = tess.normal[ndx+2][1] = tess.normal[ndx+3][1] = normal[1]; tess.normal[ndx][1] = tess.normal[ndx+1][1] = tess.normal[ndx+2][1] = tess.normal[ndx+3][1] = normal[1];
@ -152,18 +152,18 @@ static void RB_SurfaceSprite()
// calculate the xyz locations for the four corners // calculate the xyz locations for the four corners
if ( backEnd.currentEntity->e.rotation == 0 ) { if ( backEnd.currentEntity->e.rotation == 0 ) {
VectorScale( backEnd.viewParms.or.axis[1], radius, left ); VectorScale( backEnd.viewParms.orient.axis[1], radius, left );
VectorScale( backEnd.viewParms.or.axis[2], radius, up ); VectorScale( backEnd.viewParms.orient.axis[2], radius, up );
} else { } else {
float ang = M_PI * backEnd.currentEntity->e.rotation / 180; float ang = M_PI * backEnd.currentEntity->e.rotation / 180;
float s = sin( ang ); float s = sin( ang );
float c = cos( ang ); float c = cos( ang );
VectorScale( backEnd.viewParms.or.axis[1], c * radius, left ); VectorScale( backEnd.viewParms.orient.axis[1], c * radius, left );
VectorMA( left, -s * radius, backEnd.viewParms.or.axis[2], left ); VectorMA( left, -s * radius, backEnd.viewParms.orient.axis[2], left );
VectorScale( backEnd.viewParms.or.axis[2], c * radius, up ); VectorScale( backEnd.viewParms.orient.axis[2], c * radius, up );
VectorMA( up, s * radius, backEnd.viewParms.or.axis[1], up ); VectorMA( up, s * radius, backEnd.viewParms.orient.axis[1], up );
} }
if ( backEnd.viewParms.isMirror ) { if ( backEnd.viewParms.isMirror ) {
VectorSubtract( vec3_origin, left, left ); VectorSubtract( vec3_origin, left, left );
@ -297,9 +297,9 @@ static void RB_SurfaceLightningBolt()
len = VectorNormalize( vec ); len = VectorNormalize( vec );
// compute side vector // compute side vector
VectorSubtract( start, backEnd.viewParms.or.origin, v1 ); VectorSubtract( start, backEnd.viewParms.orient.origin, v1 );
VectorNormalize( v1 ); VectorNormalize( v1 );
VectorSubtract( end, backEnd.viewParms.or.origin, v2 ); VectorSubtract( end, backEnd.viewParms.orient.origin, v2 );
VectorNormalize( v2 ); VectorNormalize( v2 );
CrossProduct( v1, v2, right ); CrossProduct( v1, v2, right );
VectorNormalize( right ); VectorNormalize( right );
@ -554,15 +554,15 @@ static float LodErrorForVolume( vec3_t local, float radius ) {
return 0; return 0;
} }
world[0] = local[0] * backEnd.or.axis[0][0] + local[1] * backEnd.or.axis[1][0] + world[0] = local[0] * backEnd.orient.axis[0][0] + local[1] * backEnd.orient.axis[1][0] +
local[2] * backEnd.or.axis[2][0] + backEnd.or.origin[0]; local[2] * backEnd.orient.axis[2][0] + backEnd.orient.origin[0];
world[1] = local[0] * backEnd.or.axis[0][1] + local[1] * backEnd.or.axis[1][1] + world[1] = local[0] * backEnd.orient.axis[0][1] + local[1] * backEnd.orient.axis[1][1] +
local[2] * backEnd.or.axis[2][1] + backEnd.or.origin[1]; local[2] * backEnd.orient.axis[2][1] + backEnd.orient.origin[1];
world[2] = local[0] * backEnd.or.axis[0][2] + local[1] * backEnd.or.axis[1][2] + world[2] = local[0] * backEnd.orient.axis[0][2] + local[1] * backEnd.orient.axis[1][2] +
local[2] * backEnd.or.axis[2][2] + backEnd.or.origin[2]; local[2] * backEnd.orient.axis[2][2] + backEnd.orient.origin[2];
VectorSubtract( world, backEnd.viewParms.or.origin, world ); VectorSubtract( world, backEnd.viewParms.orient.origin, world );
d = DotProduct( world, backEnd.viewParms.or.axis[0] ); d = DotProduct( world, backEnd.viewParms.orient.axis[0] );
if ( d < 0 ) { if ( d < 0 ) {
d = -d; d = -d;

View file

@ -111,7 +111,7 @@ static qbool R_CullSurface( const surfaceType_t* surface, const shader_t* shader
} }
const srfSurfaceFace_t* face = (const srfSurfaceFace_t*)surface; const srfSurfaceFace_t* face = (const srfSurfaceFace_t*)surface;
float d = DotProduct( tr.or.viewOrigin, face->plane.normal ); float d = DotProduct( tr.orient.viewOrigin, face->plane.normal );
// don't cull exactly on the plane, because there are levels of rounding // don't cull exactly on the plane, because there are levels of rounding
// through the BSP, ICD, and hardware that may cause pixel gaps if an // through the BSP, ICD, and hardware that may cause pixel gaps if an
@ -415,7 +415,7 @@ void R_AddBrushModelSurfaces( const trRefEntity_t* re )
R_AddWorldSurface( bmodel->firstSurface + s ); R_AddWorldSurface( bmodel->firstSurface + s );
} }
R_TransformDlights( tr.refdef.num_dlights, tr.refdef.dlights, &tr.or ); R_TransformDlights( tr.refdef.num_dlights, tr.refdef.dlights, &tr.orient );
for ( int i = 0; i < tr.refdef.num_dlights; ++i ) { for ( int i = 0; i < tr.refdef.num_dlights; ++i ) {
dlight_t* dl = &tr.refdef.dlights[i]; dlight_t* dl = &tr.refdef.dlights[i];

View file

@ -331,12 +331,14 @@ void SV_SpawnServer( const char* mapname )
QSUBSYSTEM_INIT_START( "Server" ); QSUBSYSTEM_INIT_START( "Server" );
Com_Printf( "Map: %s\n", mapname ); Com_Printf( "Map: %s\n", mapname );
#ifndef DEDICATED
// if not running a dedicated server CL_MapLoading will connect the client to the server // if not running a dedicated server CL_MapLoading will connect the client to the server
// also print some status stuff // also print some status stuff
CL_MapLoading(); CL_MapLoading();
// make sure all the client stuff is unloaded // make sure all the client stuff is unloaded
CL_ShutdownAll(); CL_ShutdownAll();
#endif
// clear the whole hunk because we're (re)loading the server // clear the whole hunk because we're (re)loading the server
Hunk_Clear(); Hunk_Clear();
@ -648,7 +650,9 @@ void SV_Shutdown( const char* finalmsg )
Com_Printf( "---------------------------\n" ); Com_Printf( "---------------------------\n" );
#ifndef DEDICATED
// disconnect any local clients // disconnect any local clients
CL_Disconnect( qfalse ); CL_Disconnect( qfalse );
#endif
} }

View file

@ -1,160 +0,0 @@
/*
===========================================================================
Copyright (C) 1999-2005 Id Software, Inc.
This file is part of Quake III Arena source code.
Quake III Arena source code is free software; you can redistribute it
and/or modify it under the terms of the GNU General Public License as
published by the Free Software Foundation; either version 2 of the License,
or (at your option) any later version.
Quake III Arena source code is distributed in the hope that it will be
useful, but WITHOUT ANY WARRANTY; without even the implied warranty of
MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
GNU General Public License for more details.
You should have received a copy of the GNU General Public License
along with Foobar; if not, write to the Free Software
Foundation, Inc., 51 Franklin St, Fifth Floor, Boston, MA 02110-1301 USA
===========================================================================
*/
//
// qftol -- fast floating point to long conversion.
//
// 23/09/05 Ported to gas by intel2gas, best supporting actor Tim Angus
// <tim@ngus.net>
#include "qasm.h"
#if id386
.data
temp: .single 0.0
fpucw: .long 0
// Precision Control Field , 2 bits / 0x0300
// PC24 0x0000 Single precision (24 bits).
// PC53 0x0200 Double precision (53 bits).
// PC64 0x0300 Extended precision (64 bits).
// Rounding Control Field, 2 bits / 0x0C00
// RCN 0x0000 Rounding to nearest (even).
// RCD 0x0400 Rounding down (directed, minus).
// RCU 0x0800 Rounding up (directed plus).
// RC0 0x0C00 Rounding towards zero (chop mode).
// rounding towards nearest (even)
cw027F: .long 0x027F
cw037F: .long 0x037F
// rounding towards zero (chop mode)
cw0E7F: .long 0x0E7F
cw0F7F: .long 0x0F7F
.text
//
// int qftol( void ) - default control word
//
.globl C(qftol)
C(qftol):
fistpl temp
movl temp,%eax
ret
//
// int qftol027F( void ) - DirectX FPU
//
.globl C(qftol027F)
C(qftol027F):
fnstcw fpucw
fldcw cw027F
fistpl temp
fldcw fpucw
movl temp,%eax
ret
//
// int qftol037F( void ) - Linux FPU
//
.globl C(qftol037F)
C(qftol037F):
fnstcw fpucw
fldcw cw037F
fistpl temp
fldcw fpucw
movl temp,%eax
ret
//
// int qftol0F7F( void ) - ANSI
//
.globl C(qftol0F7F)
C(qftol0F7F):
fnstcw fpucw
fldcw cw0F7F
fistpl temp
fldcw fpucw
movl temp,%eax
ret
//
// int qftol0E7F( void )
//
.globl C(qftol0E7F)
C(qftol0E7F):
fnstcw fpucw
fldcw cw0E7F
fistpl temp
fldcw fpucw
movl temp,%eax
ret
//
// long Q_ftol( float q )
//
.globl C(Q_ftol)
C(Q_ftol):
flds 4(%esp)
fistpl temp
movl temp,%eax
ret
//
// long qftol0F7F( float q ) - Linux FPU
//
.globl C(Q_ftol0F7F)
C(Q_ftol0F7F):
fnstcw fpucw
flds 4(%esp)
fldcw cw0F7F
fistpl temp
fldcw fpucw
movl temp,%eax
ret
#endif

View file

@ -69,8 +69,9 @@ Foundation, Inc., 51 Franklin St, Fifth Floor, Boston, MA 02110-1301 USA
#include <X11/cursorfont.h> #include <X11/cursorfont.h>
#if !defined(__sun) #if !defined(__sun)
#include <X11/extensions/xf86dga.h> // @TODO:
#include <X11/extensions/xf86vmode.h> //#include <X11/extensions/Xxf86dga.h>
//#include <X11/extensions/xf86vmode.h>
#endif #endif
#if defined(__sun) #if defined(__sun)
@ -81,7 +82,10 @@ Foundation, Inc., 51 Franklin St, Fifth Floor, Boston, MA 02110-1301 USA
#define HAVE_XF86DGA #define HAVE_XF86DGA
#endif #endif
#define WINDOW_CLASS_NAME Q3_WINDOW_TITLE #define WINDOW_CLASS_NAME "CNQ3"
// OpenGL driver
#define OPENGL_DRIVER_NAME "libGL.so.1"
typedef enum typedef enum
{ {
@ -132,10 +136,8 @@ cvar_t *in_joystick = NULL;
cvar_t *in_joystickDebug = NULL; cvar_t *in_joystickDebug = NULL;
cvar_t *joy_threshold = NULL; cvar_t *joy_threshold = NULL;
cvar_t *in_keyboardShortcuts = NULL; // drakkar - ignored in linux
cvar_t *r_allowSoftwareGL; // don't abort out if the pixelformat claims software cvar_t *r_allowSoftwareGL; // don't abort out if the pixelformat claims software
cvar_t *r_previousglDriver; cvar_t *r_fullscreen;
qboolean vidmode_ext = qfalse; qboolean vidmode_ext = qfalse;
#ifdef HAVE_XF86DGA #ifdef HAVE_XF86DGA
@ -148,8 +150,6 @@ static XF86VidModeGamma vidmode_InitialGamma = { -1,-1,-1 }; // drakkar - initi
static int win_x = 50, win_y = 50; // drakkar - initialize window position static int win_x = 50, win_y = 50; // drakkar - initialize window position
qboolean win_active = qtrue; qboolean win_active = qtrue;
qboolean win_minimized = qfalse; qboolean win_minimized = qfalse;
static qboolean windowModeLock = qtrue;
static unsigned long int ignoreFocus = 0;
static int desktopVideoMode = -1; static int desktopVideoMode = -1;
#ifdef HAVE_XF86DGA #ifdef HAVE_XF86DGA
@ -161,7 +161,7 @@ static qboolean vidmode_active = qfalse;
static int mouse_accel_numerator; static int mouse_accel_numerator;
static int mouse_accel_denominator; static int mouse_accel_denominator;
static int mouse_threshold; static int mouse_threshold;
/* /*
* Find the first occurrence of find in s. * Find the first occurrence of find in s.
@ -323,7 +323,7 @@ static char *XLateKey(XKeyEvent *ev, int *key)
// drakkar // drakkar
case XK_Super_L: case XK_Super_L:
case XK_Super_R: *key = K_WIN; break; case XK_Super_R: *key = K_WIN; break;
case XK_Menu: *key = K_MENU; break; case XK_Menu: *key = K_MENU; break;
// !drakkar // !drakkar
@ -396,7 +396,7 @@ static char *XLateKey(XKeyEvent *ev, int *key)
static Cursor CreateNullCursor(Display *display, Window root) static Cursor CreateNullCursor(Display *display, Window root)
{ {
Pixmap cursormask; Pixmap cursormask;
XGCValues xgc; XGCValues xgc;
GC gc; GC gc;
XColor dummycolour; XColor dummycolour;
@ -485,7 +485,7 @@ static void uninstall_grabs(void)
} }
#endif /* HAVE_XF86DGA */ #endif /* HAVE_XF86DGA */
XChangePointerControl(dpy, qtrue, qtrue, mouse_accel_numerator, XChangePointerControl(dpy, qtrue, qtrue, mouse_accel_numerator,
mouse_accel_denominator, mouse_threshold); mouse_accel_denominator, mouse_threshold);
XUngrabPointer(dpy, CurrentTime); XUngrabPointer(dpy, CurrentTime);
@ -503,7 +503,7 @@ static void uninstall_grabs(void)
// drakkar // drakkar
// Sys_MilliSeconds returns CPU usage time, // Sys_MilliSeconds returns CPU usage time,
// this fuction returns real time milliseconds // this fuction returns real time milliseconds
unsigned long int realMilliSeconds() unsigned long int realMilliSeconds()
{ {
struct timeval tv; struct timeval tv;
gettimeofday( &tv, NULL ); gettimeofday( &tv, NULL );
@ -514,7 +514,7 @@ unsigned long int realMilliSeconds()
// bk001206 - from Ryan's Fakk2 // bk001206 - from Ryan's Fakk2
/** /**
* XPending() actually performs a blocking read * XPending() actually performs a blocking read
* if no events available. From Fakk2, by way of * if no events available. From Fakk2, by way of
* Heretic2, by way of SDL, original idea GGI project. * Heretic2, by way of SDL, original idea GGI project.
* The benefit of this approach over the quite * The benefit of this approach over the quite
@ -522,8 +522,8 @@ unsigned long int realMilliSeconds()
* focus handling for free, which is a major win * focus handling for free, which is a major win
* with debug and windowed mode. It rests on the * with debug and windowed mode. It rests on the
* assumption that the X server will use the * assumption that the X server will use the
* same timestamp on press/release event pairs * same timestamp on press/release event pairs
* for key repeats. * for key repeats.
*/ */
static qboolean X11_PendingInput(void) { static qboolean X11_PendingInput(void) {
@ -590,7 +590,7 @@ static void HandleEvents(void)
char *p; char *p;
int dx, dy; int dx, dy;
int t = 0; // default to 0 in case we don't set int t = 0; // default to 0 in case we don't set
if (!dpy) if (!dpy)
return; return;
@ -620,7 +620,7 @@ static void HandleEvents(void)
// bk001206 - handle key repeat w/o XAutRepatOn/Off // bk001206 - handle key repeat w/o XAutRepatOn/Off
// also: not done if console/menu is active. // also: not done if console/menu is active.
// From Ryan's Fakk2. // From Ryan's Fakk2.
// see game/q_shared.h, KEYCATCH_* . 0 == in 3d game. // see game/q_shared.h, KEYCATCH_* . 0 == in 3d game.
if (cls.keyCatchers == 0) if (cls.keyCatchers == 0)
{ // FIXME: KEYCATCH_NONE { // FIXME: KEYCATCH_NONE
if (repeated_press(&event) == qtrue) if (repeated_press(&event) == qtrue)
@ -756,40 +756,26 @@ static void HandleEvents(void)
break; break;
case ConfigureNotify : case ConfigureNotify :
if( glConfig.isFullscreen ) break; if( glInfo.isFullscreen ) break;
if( win_active ) break; if( win_active ) break;
if( event.xcreatewindow.x < 1 ) break; if( event.xcreatewindow.x < 1 ) break;
if( event.xcreatewindow.y < 1 ) break; if( event.xcreatewindow.y < 1 ) break;
win_x = event.xconfigure.x; win_x = event.xconfigure.x;
win_y = event.xconfigure.y; win_y = event.xconfigure.y;
break; break;
// drakkar
case FocusIn:
if( ignoreFocus < realMilliSeconds() ) {
GLimp_WindowFocus( qtrue );
Key_ClearStates();
}
break;
case FocusOut:
if( ignoreFocus < realMilliSeconds() ) {
GLimp_WindowFocus( qfalse );
Key_ClearStates();
}
break;
// !drakkar
} }
} }
if (dowarp) if (dowarp)
{ {
XWarpPointer(dpy,None,win,0,0,0,0, XWarpPointer(dpy,None,win,0,0,0,0,
(glConfig.vidWidth/2),(glConfig.vidHeight/2)); (glConfig.vidWidth/2),(glConfig.vidHeight/2));
} }
} }
// NOTE TTimo for the tty console input, we didn't rely on those .. // NOTE TTimo for the tty console input, we didn't rely on those ..
// it's not very surprising actually cause they are not used otherwise // it's not very surprising actually cause they are not used otherwise
void KBD_Init(void) void KBD_Init(void)
{ {
@ -799,7 +785,7 @@ void KBD_Close(void)
{ {
} }
void IN_ActivateMouse( void ) void IN_ActivateMouse( void )
{ {
if (!mouse_avail || !dpy || !win) if (!mouse_avail || !dpy || !win)
return; return;
@ -814,7 +800,7 @@ void IN_ActivateMouse( void )
} }
} }
void IN_DeactivateMouse( void ) void IN_DeactivateMouse( void )
{ {
if (!mouse_avail || !dpy || !win) if (!mouse_avail || !dpy || !win)
return; return;
@ -899,11 +885,13 @@ void GLimp_Shutdown( void )
dpy = NULL; dpy = NULL;
win = 0; win = 0;
ctx = NULL; ctx = NULL;
// drakkar // drakkar
visinfo = NULL; visinfo = NULL;
#ifdef HAVE_XF86DGA
if( vidmodes ) XFree( vidmodes ); if( vidmodes ) XFree( vidmodes );
vidmodes = NULL; vidmodes = NULL;
// !drakkar #endif
// !drakkar
memset( &glConfig, 0, sizeof( glConfig ) ); memset( &glConfig, 0, sizeof( glConfig ) );
memset( &glState, 0, sizeof( glState ) ); memset( &glState, 0, sizeof( glState ) );
@ -926,32 +914,20 @@ void GLimp_LogComment( const char* comment )
** GLW_StartDriverAndSetMode ** GLW_StartDriverAndSetMode
*/ */
// bk001204 - prototype needed // bk001204 - prototype needed
int GLW_SetMode( const char *drivername, int mode, qboolean fullscreen ); rserr_t GLW_SetMode( qboolean fullscreen );
static qboolean GLW_StartDriverAndSetMode( const char *drivername, static qboolean GLW_StartDriverAndSetMode( qboolean fullscreen )
int mode,
qboolean fullscreen )
{ {
rserr_t err; rserr_t err;
// don't ever bother going into fullscreen with a voodoo card
#if 1 // JDC: I reenabled this
if ( Q_stristr( drivername, "Voodoo" ) )
{
ri.Cvar_Set( "r_fullscreen", "0" );
r_fullscreen->modified = qfalse;
fullscreen = qfalse;
}
#endif
if (fullscreen && in_nograb->value) if (fullscreen && in_nograb->value)
{ {
ri.Printf( PRINT_ALL, "Fullscreen not allowed with in_nograb 1\n"); ri.Printf( PRINT_ALL, "Fullscreen not allowed with in_nograb 1\n");
ri.Cvar_Set( "r_fullscreen", "0" ); ri.Cvar_Set( "r_fullscreen", "0" );
r_fullscreen->modified = qfalse; r_fullscreen->modified = qfalse;
fullscreen = qfalse; fullscreen = qfalse;
} }
err = GLW_SetMode( drivername, mode, fullscreen ); err = GLW_SetMode( fullscreen );
switch ( err ) switch ( err )
{ {
@ -959,7 +935,7 @@ static qboolean GLW_StartDriverAndSetMode( const char *drivername,
ri.Printf( PRINT_ALL, "...WARNING: fullscreen unavailable in this mode\n" ); ri.Printf( PRINT_ALL, "...WARNING: fullscreen unavailable in this mode\n" );
return qfalse; return qfalse;
case RSERR_INVALID_MODE: case RSERR_INVALID_MODE:
ri.Printf( PRINT_ALL, "...WARNING: could not set the given mode (%d)\n", mode ); ri.Printf( PRINT_ALL, "...WARNING: could not set the given mode\n" );
return qfalse; return qfalse;
default: default:
break; break;
@ -967,33 +943,10 @@ static qboolean GLW_StartDriverAndSetMode( const char *drivername,
return qtrue; return qtrue;
} }
// drakkar
void GLimp_WindowFocus(qboolean focus)
{
if( !dpy || !win ) return;
if( focus )
{
R_SetColorMappings();
if( win_minimized )
GLimp_WindowMode( WMODE_SWAP_MINIMIZED );
}
else
{
if( glConfig.deviceSupportsGamma )
XF86VidModeSetGamma( dpy, scrnum, &vidmode_InitialGamma );
if( glConfig.isFullscreen )
GLimp_WindowMode( WMODE_SWAP_MINIMIZED );
}
win_active = ( focus && !win_minimized );
}
// !drakkar
/* /*
** GLW_SetMode ** GLW_SetMode
*/ */
int GLW_SetMode( const char *drivername, int mode, qboolean fullscreen ) rserr_t GLW_SetMode( qboolean fullscreen )
{ {
int attrib[] = { int attrib[] = {
GLX_RGBA, // 0 GLX_RGBA, // 0
@ -1025,9 +978,9 @@ int GLW_SetMode( const char *drivername, int mode, qboolean fullscreen )
ri.Printf( PRINT_ALL, "Initializing OpenGL display\n"); ri.Printf( PRINT_ALL, "Initializing OpenGL display\n");
ri.Printf (PRINT_ALL, "...setting mode %d:", mode ); ri.Printf (PRINT_ALL, "...setting mode...\n" );
if ( !R_GetModeInfo( &glConfig.vidWidth, &glConfig.vidHeight, &glConfig.windowAspect, mode ) ) if ( !R_GetModeInfo( &glConfig.vidWidth, &glConfig.vidHeight, &glConfig.windowAspect ) )
{ {
ri.Printf( PRINT_ALL, " invalid mode\n" ); ri.Printf( PRINT_ALL, " invalid mode\n" );
return RSERR_INVALID_MODE; return RSERR_INVALID_MODE;
@ -1039,7 +992,7 @@ int GLW_SetMode( const char *drivername, int mode, qboolean fullscreen )
fprintf(stderr, "Error couldn't open the X display\n"); fprintf(stderr, "Error couldn't open the X display\n");
return RSERR_INVALID_MODE; return RSERR_INVALID_MODE;
} }
scrnum = DefaultScreen(dpy); scrnum = DefaultScreen(dpy);
root = RootWindow(dpy, scrnum); root = RootWindow(dpy, scrnum);
@ -1061,7 +1014,7 @@ int GLW_SetMode( const char *drivername, int mode, qboolean fullscreen )
} }
#endif /* HAVE_XF86DGA */ #endif /* HAVE_XF86DGA */
// Check for DGA // Check for DGA
dga_MajorVersion = 0, dga_MinorVersion = 0; dga_MajorVersion = 0, dga_MinorVersion = 0;
#ifdef HAVE_XF86DGA #ifdef HAVE_XF86DGA
if (in_dgamouse->value) if (in_dgamouse->value)
@ -1130,7 +1083,7 @@ int GLW_SetMode( const char *drivername, int mode, qboolean fullscreen )
} }
} else } else
{ {
ri.Printf(PRINT_ALL, "XFree86-VidModeExtension: Ignored on non-fullscreen/Voodoo\n"); ri.Printf(PRINT_ALL, "XFree86-VidModeExtension: Ignored on non-fullscreen\n");
} }
} }
#endif /* HAVE_XF86DGA */ #endif /* HAVE_XF86DGA */
@ -1141,9 +1094,6 @@ int GLW_SetMode( const char *drivername, int mode, qboolean fullscreen )
else else
colorbits = r_colorbits->value; colorbits = r_colorbits->value;
if ( !Q_stricmp( r_glDriver->string, _3DFX_DRIVER_NAME ) )
colorbits = 16;
if (!r_depthbits->value) if (!r_depthbits->value)
depthbits = 24; depthbits = 24;
else else
@ -1228,7 +1178,7 @@ int GLW_SetMode( const char *drivername, int mode, qboolean fullscreen )
continue; continue;
} }
ri.Printf( PRINT_ALL, "Using %d/%d/%d Color bits, %d depth, %d stencil display.\n", ri.Printf( PRINT_ALL, "Using %d/%d/%d Color bits, %d depth, %d stencil display.\n",
attrib[ATTR_RED_IDX], attrib[ATTR_GREEN_IDX], attrib[ATTR_BLUE_IDX], attrib[ATTR_RED_IDX], attrib[ATTR_GREEN_IDX], attrib[ATTR_BLUE_IDX],
attrib[ATTR_DEPTH_IDX], attrib[ATTR_STENCIL_IDX]); attrib[ATTR_DEPTH_IDX], attrib[ATTR_STENCIL_IDX]);
@ -1253,7 +1203,7 @@ int GLW_SetMode( const char *drivername, int mode, qboolean fullscreen )
attr.event_mask = X_MASK; attr.event_mask = X_MASK;
if (vidmode_active) if (vidmode_active)
{ {
mask = CWBackPixel | CWColormap | CWSaveUnder | CWBackingStore | mask = CWBackPixel | CWColormap | CWSaveUnder | CWBackingStore |
CWEventMask | CWOverrideRedirect; CWEventMask | CWOverrideRedirect;
attr.override_redirect = True; attr.override_redirect = True;
attr.backing_store = NotUseful; attr.backing_store = NotUseful;
@ -1261,13 +1211,13 @@ int GLW_SetMode( const char *drivername, int mode, qboolean fullscreen )
} else } else
mask = CWBackPixel | CWBorderPixel | CWColormap | CWEventMask; mask = CWBackPixel | CWBorderPixel | CWColormap | CWEventMask;
win = XCreateWindow(dpy, root, 0, 0, win = XCreateWindow(dpy, root, 0, 0,
actualWidth, actualHeight, actualWidth, actualHeight,
0, visinfo->depth, InputOutput, 0, visinfo->depth, InputOutput,
visinfo->visual, mask, &attr); visinfo->visual, mask, &attr);
if( !win ) return 0; if( !win ) return RSERR_OK;
XStoreName( dpy, win, WINDOW_CLASS_NAME ); XStoreName( dpy, win, WINDOW_CLASS_NAME );
XMapWindow( dpy, win ); XMapWindow( dpy, win );
XFlush(dpy); XFlush(dpy);
XMoveWindow( dpy, win, 0, 0 ); XMoveWindow( dpy, win, 0, 0 );
@ -1305,7 +1255,7 @@ int GLW_SetMode( const char *drivername, int mode, qboolean fullscreen )
{ {
ri.Printf( PRINT_ALL, "\n\n***********************************************************\n" ); ri.Printf( PRINT_ALL, "\n\n***********************************************************\n" );
ri.Printf( PRINT_ALL, " You are using software Mesa (no hardware acceleration)! \n" ); ri.Printf( PRINT_ALL, " You are using software Mesa (no hardware acceleration)! \n" );
ri.Printf( PRINT_ALL, " Driver DLL used: %s\n", drivername ); ri.Printf( PRINT_ALL, " Driver DLL used: %s\n", OPENGL_DRIVER_NAME );
ri.Printf( PRINT_ALL, " If this is intentional, add\n" ); ri.Printf( PRINT_ALL, " If this is intentional, add\n" );
ri.Printf( PRINT_ALL, " \"+set r_allowSoftwareGL 1\"\n" ); ri.Printf( PRINT_ALL, " \"+set r_allowSoftwareGL 1\"\n" );
ri.Printf( PRINT_ALL, " to the command line when starting the game.\n" ); ri.Printf( PRINT_ALL, " to the command line when starting the game.\n" );
@ -1326,133 +1276,33 @@ int GLW_SetMode( const char *drivername, int mode, qboolean fullscreen )
*/ */
static void GLW_InitExtensions( void ) static void GLW_InitExtensions( void )
{ {
if ( !r_allowExtensions->integer ) ri.Printf( PRINT_ALL, "Initializing OpenGL extensions\n" );
{
ri.Printf( PRINT_ALL, "*** IGNORING OPENGL EXTENSIONS ***\n" );
return;
}
ri.Printf( PRINT_ALL, "Initializing OpenGL extensions\n" ); int maxAnisotropy = 0;
if ( strstr( glConfig.extensions_string, "GL_EXT_texture_filter_anisotropic" ) )
// GL_S3_s3tc
if ( Q_stristr( glConfig.extensions_string, "GL_S3_s3tc" ) )
{
if ( r_ext_compressed_textures->value )
{ {
glConfig.textureCompression = TC_S3TC; if ( r_ext_max_anisotropy->integer > 1 )
ri.Printf( PRINT_ALL, "...using GL_S3_s3tc\n" );
} else
{
glConfig.textureCompression = TC_NONE;
ri.Printf( PRINT_ALL, "...ignoring GL_S3_s3tc\n" );
}
} else
{
glConfig.textureCompression = TC_NONE;
ri.Printf( PRINT_ALL, "...GL_S3_s3tc not found\n" );
}
// GL_EXT_texture_env_add
glConfig.textureEnvAddAvailable = qfalse;
if ( Q_stristr( glConfig.extensions_string, "EXT_texture_env_add" ) )
{
if ( r_ext_texture_env_add->integer )
{
glConfig.textureEnvAddAvailable = qtrue;
ri.Printf( PRINT_ALL, "...using GL_EXT_texture_env_add\n" );
} else
{
glConfig.textureEnvAddAvailable = qfalse;
ri.Printf( PRINT_ALL, "...ignoring GL_EXT_texture_env_add\n" );
}
} else
{
ri.Printf( PRINT_ALL, "...GL_EXT_texture_env_add not found\n" );
}
// GL_ARB_multitexture
qglMultiTexCoord2fARB = NULL;
qglActiveTextureARB = NULL;
qglClientActiveTextureARB = NULL;
if ( Q_stristr( glConfig.extensions_string, "GL_ARB_multitexture" ) )
{
if ( r_ext_multitexture->value )
{
qglMultiTexCoord2fARB = ( PFNGLMULTITEXCOORD2FARBPROC ) dlsym( glw_state.OpenGLLib, "glMultiTexCoord2fARB" );
qglActiveTextureARB = ( PFNGLACTIVETEXTUREARBPROC ) dlsym( glw_state.OpenGLLib, "glActiveTextureARB" );
qglClientActiveTextureARB = ( PFNGLCLIENTACTIVETEXTUREARBPROC ) dlsym( glw_state.OpenGLLib, "glClientActiveTextureARB" );
if ( qglActiveTextureARB )
{
GLint glint = 0;
qglGetIntegerv( GL_MAX_ACTIVE_TEXTURES_ARB, &glint );
glConfig.maxActiveTextures = (int) glint;
if ( glConfig.maxActiveTextures > 1 )
{ {
ri.Printf( PRINT_ALL, "...using GL_ARB_multitexture\n" ); qglGetIntegerv( GL_MAX_TEXTURE_MAX_ANISOTROPY_EXT, &maxAnisotropy );
} else if ( maxAnisotropy <= 0 ) {
{ ri.Printf( PRINT_DEVELOPER, "...GL_EXT_texture_filter_anisotropic not properly supported!\n" );
qglMultiTexCoord2fARB = NULL; maxAnisotropy = 0;
qglActiveTextureARB = NULL; }
qglClientActiveTextureARB = NULL; else
ri.Printf( PRINT_ALL, "...not using GL_ARB_multitexture, < 2 texture units\n" ); {
ri.Printf( PRINT_DEVELOPER, "...using GL_EXT_texture_filter_anisotropic (max: %i)\n", maxAnisotropy );
}
}
else
{
ri.Printf( PRINT_DEVELOPER, "...ignoring GL_EXT_texture_filter_anisotropic\n" );
} }
}
} else
{
ri.Printf( PRINT_ALL, "...ignoring GL_ARB_multitexture\n" );
}
} else
{
ri.Printf( PRINT_ALL, "...GL_ARB_multitexture not found\n" );
}
// GL_EXT_compiled_vertex_array
if ( Q_stristr( glConfig.extensions_string, "GL_EXT_compiled_vertex_array" ) )
{
if ( r_ext_compiled_vertex_array->value )
{
ri.Printf( PRINT_ALL, "...using GL_EXT_compiled_vertex_array\n" );
qglLockArraysEXT = ( void ( APIENTRY * )( int, int ) ) dlsym( glw_state.OpenGLLib, "glLockArraysEXT" );
qglUnlockArraysEXT = ( void ( APIENTRY * )( void ) ) dlsym( glw_state.OpenGLLib, "glUnlockArraysEXT" );
if (!qglLockArraysEXT || !qglUnlockArraysEXT)
{
ri.Error (ERR_FATAL, "bad getprocaddress");
}
} else
{
ri.Printf( PRINT_ALL, "...ignoring GL_EXT_compiled_vertex_array\n" );
}
} else
{
ri.Printf( PRINT_ALL, "...GL_EXT_compiled_vertex_array not found\n" );
}
textureFilterAnisotropic = qfalse;
if ( strstr( glConfig.extensions_string, "GL_EXT_texture_filter_anisotropic" ) )
{
if ( r_ext_texture_filter_anisotropic->integer ) {
qglGetIntegerv( GL_MAX_TEXTURE_MAX_ANISOTROPY_EXT, &maxAnisotropy );
if ( maxAnisotropy <= 0 ) {
ri.Printf( PRINT_ALL, "...GL_EXT_texture_filter_anisotropic not properly supported!\n" );
maxAnisotropy = 0;
}
else
{
ri.Printf( PRINT_ALL, "...using GL_EXT_texture_filter_anisotropic (max: %i)\n", maxAnisotropy );
textureFilterAnisotropic = qtrue;
}
} }
else else
{ {
ri.Printf( PRINT_ALL, "...ignoring GL_EXT_texture_filter_anisotropic\n" ); ri.Printf( PRINT_DEVELOPER, "...GL_EXT_texture_filter_anisotropic not found\n" );
} }
} Cvar_Set( "r_ext_max_anisotropy", va("%i", maxAnisotropy) );
else
{
ri.Printf( PRINT_ALL, "...GL_EXT_texture_filter_anisotropic not found\n" );
}
} }
static void GLW_InitGamma(void) static void GLW_InitGamma(void)
@ -1460,13 +1310,13 @@ static void GLW_InitGamma(void)
/* Minimum extension version required */ /* Minimum extension version required */
#define GAMMA_MINMAJOR 2 #define GAMMA_MINMAJOR 2
#define GAMMA_MINMINOR 0 #define GAMMA_MINMINOR 0
glConfig.deviceSupportsGamma = qfalse; glConfig.deviceSupportsGamma = qfalse;
#ifdef HAVE_XF86DGA #ifdef HAVE_XF86DGA
if (vidmode_ext) if (vidmode_ext)
{ {
if (vidmode_MajorVersion < GAMMA_MINMAJOR || if (vidmode_MajorVersion < GAMMA_MINMAJOR ||
(vidmode_MajorVersion == GAMMA_MINMAJOR && vidmode_MinorVersion < GAMMA_MINMINOR)) { (vidmode_MajorVersion == GAMMA_MINMAJOR && vidmode_MinorVersion < GAMMA_MINMINOR)) {
ri.Printf( PRINT_ALL, "XF86 Gamma extension not supported in this version\n"); ri.Printf( PRINT_ALL, "XF86 Gamma extension not supported in this version\n");
return; return;
@ -1482,49 +1332,26 @@ static void GLW_InitGamma(void)
/* /*
** GLW_LoadOpenGL ** GLW_LoadOpenGL
** **
** GLimp_win.c internal function that that attempts to load and use ** GLimp_win.c internal function that that attempts to load and use
** a specific OpenGL DLL. ** a specific OpenGL DLL.
*/ */
static qboolean GLW_LoadOpenGL( const char *name ) static qboolean GLW_LoadOpenGL( void )
{ {
qboolean fullscreen; qboolean fullscreen;
ri.Printf( PRINT_ALL, "...loading %s: ", name ); ri.Printf( PRINT_ALL, "...loading %s: ", OPENGL_DRIVER_NAME );
// disable the 3Dfx splash screen and set gamma
// we do this all the time, but it shouldn't hurt anything
// on non-3Dfx stuff
putenv("FX_GLIDE_NO_SPLASH=0");
// Mesa VooDoo hacks
putenv("MESA_GLX_FX=fullscreen\n");
// load the QGL layer // load the QGL layer
if ( QGL_Init( name ) ) if ( QGL_Init( OPENGL_DRIVER_NAME ) )
{ {
fullscreen = r_fullscreen->integer; fullscreen = r_fullscreen->integer;
// drakkar
windowModeLock = qfalse;
// !drakkar
// create the window and set up the context // create the window and set up the context
if ( !GLW_StartDriverAndSetMode( name, r_mode->integer, fullscreen ) ) if ( !GLW_StartDriverAndSetMode( fullscreen ) )
{ {
if (r_mode->integer != 3) goto fail;
{
if ( !GLW_StartDriverAndSetMode( name, 3, fullscreen ) )
{
goto fail;
}
} else
goto fail;
} }
// drakkar
windowModeLock = qtrue;
// !drakkar
return qtrue; return qtrue;
} else } else
{ {
@ -1550,94 +1377,22 @@ int qXErrorHandler(Display *dpy, XErrorEvent *ev)
XGetErrorText(dpy, ev->error_code, buf, 1024); XGetErrorText(dpy, ev->error_code, buf, 1024);
ri.Printf( PRINT_ALL, "X Error of failed request: %s\n", buf); ri.Printf( PRINT_ALL, "X Error of failed request: %s\n", buf);
ri.Printf( PRINT_ALL, " Major opcode of failed request: %d\n", ev->request_code, buf); ri.Printf( PRINT_ALL, " Major opcode of failed request: %d\n", ev->request_code, buf);
ri.Printf( PRINT_ALL, " Minor opcode of failed request: %d\n", ev->minor_code); ri.Printf( PRINT_ALL, " Minor opcode of failed request: %d\n", ev->minor_code);
ri.Printf( PRINT_ALL, " Serial number of failed request: %d\n", ev->serial); ri.Printf( PRINT_ALL, " Serial number of failed request: %d\n", ev->serial);
return 0; return 0;
} }
// drakkar void QGL_SwapInterval( Display *dpy, Window win, int interval );
/*
** GLimp_WindowMode
**
** Changes window mode ( minimized, windowed, fullscreen ) without vid_restart.
*/
void GLimp_WindowMode( windowMode_t wmode )
{
if( !windowModeLock ) return;
switch( wmode )
{
case WMODE_SET_MINIMIZED:
windowModeLock = qfalse;
GLW_StartDriverAndSetMode( r_glDriver->string, r_mode->integer, qfalse );
XIconifyWindow( dpy, win, scrnum );
win_minimized = qtrue;
GLimp_WindowFocus( qfalse );
windowModeLock = qtrue;
break;
case WMODE_SET_WINDOWED:
windowModeLock = qfalse;
GLW_StartDriverAndSetMode( r_glDriver->string, r_mode->integer, qfalse );
win_minimized = qfalse;
GLimp_WindowFocus( qtrue );
uninstall_grabs();
install_grabs();
windowModeLock = qtrue;
ri.Cvar_Set( "r_fullscreen", "0" );
if( glConfig.isFullscreen )
Cbuf_AddText( "vid_restart\n" );
break;
case WMODE_SET_FULLSCREEN:
windowModeLock = qfalse;
GLW_StartDriverAndSetMode( r_glDriver->string, r_mode->integer, qtrue );
win_minimized = qfalse;
GLimp_WindowFocus( qtrue );
windowModeLock = qtrue;
ri.Cvar_Set( "r_fullscreen", "1" );
if( !glConfig.isFullscreen )
Cbuf_AddText( "vid_restart\n" );
break;
case WMODE_RESTART:
if( r_fullscreen->modified && r_fullscreen->latchedString )
{
if( !Q_strncmp( r_fullscreen->latchedString, "0", 1 ) )
GLimp_WindowMode( WMODE_SET_WINDOWED );
else
GLimp_WindowMode( WMODE_SET_FULLSCREEN );
}
else
{
GLimp_WindowMode( r_fullscreen->integer ? WMODE_SET_FULLSCREEN : WMODE_SET_WINDOWED );
}
break;
case WMODE_SWAP_FULLSCREEN:
GLimp_WindowMode( glConfig.isFullscreen ? WMODE_SET_WINDOWED : WMODE_SET_FULLSCREEN );
break;
case WMODE_SWAP_MINIMIZED:
GLimp_WindowMode( win_minimized ? WMODE_RESTART : WMODE_SET_MINIMIZED );
break;
default:
Com_Printf( "Invalid Window Mode\n" );
}
}
// !drakkar
/* /*
** GLimp_Init ** GLimp_Init
** **
** This routine is responsible for initializing the OS specific portions ** This routine is responsible for initializing the OS specific portions
** of OpenGL. ** of OpenGL.
*/ */
void GLimp_Init( void ) void GLimp_Init( void )
{ {
qboolean attemptedlibGL = qfalse; qboolean attemptedlibGL = qfalse;
qboolean attempted3Dfx = qfalse;
qboolean success = qfalse; qboolean success = qfalse;
cvar_t *lastValidRenderer = ri.Cvar_Get( "r_lastValidRenderer", "(uninitialized)", CVAR_ARCHIVE ); cvar_t *lastValidRenderer = ri.Cvar_Get( "r_lastValidRenderer", "(uninitialized)", CVAR_ARCHIVE );
@ -1653,59 +1408,16 @@ void GLimp_Init( void )
r_allowSoftwareGL = ri.Cvar_Get( "r_allowSoftwareGL", "0", CVAR_LATCH ); r_allowSoftwareGL = ri.Cvar_Get( "r_allowSoftwareGL", "0", CVAR_LATCH );
r_previousglDriver = ri.Cvar_Get( "r_previousglDriver", "", CVAR_ROM );
InitSig(); InitSig();
IN_Init(); // rcg08312005 moved into glimp. IN_Init(); // rcg08312005 moved into glimp.
// Hack here so that if the UI
if ( *r_previousglDriver->string )
{
// The UI changed it on us, hack it back
// This means the renderer can't be changed on the fly
ri.Cvar_Set( "r_glDriver", r_previousglDriver->string );
}
// set up our custom error handler for X failures // set up our custom error handler for X failures
XSetErrorHandler(&qXErrorHandler); XSetErrorHandler(&qXErrorHandler);
// // load appropriate DLL and initialize subsystem
// load and initialize the specific OpenGL driver if (!GLW_LoadOpenGL() )
// ri.Error( ERR_FATAL, "GLimp_Init()->GLW_LoadOpenGL() - could not load OpenGL subsystem (using '%s')\n", OPENGL_DRIVER_NAME );
if ( !GLW_LoadOpenGL( r_glDriver->string ) )
{
if ( !Q_stricmp( r_glDriver->string, OPENGL_DRIVER_NAME ) )
{
attemptedlibGL = qtrue;
} else if ( !Q_stricmp( r_glDriver->string, _3DFX_DRIVER_NAME ) )
{
attempted3Dfx = qtrue;
}
// try ICD before trying 3Dfx standalone driver
if ( !attemptedlibGL && !success )
{
attemptedlibGL = qtrue;
if ( GLW_LoadOpenGL( OPENGL_DRIVER_NAME ) )
{
ri.Cvar_Set( "r_glDriver", OPENGL_DRIVER_NAME );
r_glDriver->modified = qfalse;
success = qtrue;
}
}
if (!success)
ri.Error( ERR_FATAL, "GLimp_Init() - could not load OpenGL subsystem\n" );
}
// Save it in case the UI stomps it
ri.Cvar_Set( "r_previousglDriver", r_glDriver->string );
// This values force the UI to disable driver selection
glConfig.driverType = GLDRV_ICD;
glConfig.hardwareType = GLHW_GENERIC;
// get our config strings // get our config strings
Q_strncpyz( glConfig.vendor_string, (char *)qglGetString (GL_VENDOR), sizeof( glConfig.vendor_string ) ); Q_strncpyz( glConfig.vendor_string, (char *)qglGetString (GL_VENDOR), sizeof( glConfig.vendor_string ) );
@ -1719,7 +1431,10 @@ void GLimp_Init( void )
// initialize extensions // initialize extensions
GLW_InitExtensions(); GLW_InitExtensions();
GLW_InitARB(); // loads the ARB extensions
GLW_InitGamma(); GLW_InitGamma();
QGL_InitARB(); // compiles the shaders etc
QGL_SwapInterval( dpy, win, r_swapInterval->integer );
InitSig(); // not clear why this is at begin & end of function InitSig(); // not clear why this is at begin & end of function
@ -1729,21 +1444,25 @@ void GLimp_Init( void )
/* /*
** GLimp_EndFrame ** GLimp_EndFrame
** **
** Responsible for doing a swapbuffers and possibly for other stuff ** Responsible for doing a swapbuffers and possibly for other stuff
** as yet to be determined. Probably better not to make this a GLimp ** as yet to be determined. Probably better not to make this a GLimp
** function and instead do a call to GLimp_SwapBuffers. ** function and instead do a call to GLimp_SwapBuffers.
*/ */
void GLimp_EndFrame (void) void GLimp_EndFrame (void)
{ {
// update the swap interval
if ( r_swapInterval->modified )
{
r_swapInterval->modified = qfalse;
QGL_SwapInterval( dpy, win, r_swapInterval->integer );
}
// don't flip if drawing to front buffer // don't flip if drawing to front buffer
if ( Q_stricmp( r_drawBuffer->string, "GL_FRONT" ) != 0 ) if ( Q_stricmp( r_drawBuffer->string, "GL_FRONT" ) != 0 )
{ {
qglXSwapBuffers(dpy, win); qglXSwapBuffers(dpy, win);
} }
// check logging
QGL_EnableLogging( (qboolean)r_logFile->integer ); // bk001205 - was ->value
} }
#ifdef SMP #ifdef SMP
@ -1888,10 +1607,10 @@ void IN_Init(void) {
in_mouse = Cvar_Get ("in_mouse", "1", CVAR_ARCHIVE); in_mouse = Cvar_Get ("in_mouse", "1", CVAR_ARCHIVE);
in_dgamouse = Cvar_Get ("in_dgamouse", "1", CVAR_ARCHIVE); in_dgamouse = Cvar_Get ("in_dgamouse", "1", CVAR_ARCHIVE);
in_shiftedKeys = Cvar_Get ("in_shiftedKeys", "0", CVAR_ARCHIVE); in_shiftedKeys = Cvar_Get ("in_shiftedKeys", "0", CVAR_ARCHIVE);
// turn on-off sub-frame timing of X events // turn on-off sub-frame timing of X events
in_subframe = Cvar_Get ("in_subframe", "1", CVAR_ARCHIVE); in_subframe = Cvar_Get ("in_subframe", "1", CVAR_ARCHIVE);
// developer feature, allows to break without loosing mouse pointer // developer feature, allows to break without loosing mouse pointer
in_nograb = Cvar_Get ("in_nograb", "0", 0); in_nograb = Cvar_Get ("in_nograb", "0", 0);
@ -1901,7 +1620,6 @@ void IN_Init(void) {
in_joystickDebug = Cvar_Get ("in_debugjoystick", "0", CVAR_TEMP); in_joystickDebug = Cvar_Get ("in_debugjoystick", "0", CVAR_TEMP);
joy_threshold = Cvar_Get ("joy_threshold", "0.15", CVAR_ARCHIVE); // FIXME: in_joythreshold joy_threshold = Cvar_Get ("joy_threshold", "0.15", CVAR_ARCHIVE); // FIXME: in_joythreshold
in_keyboardShortcuts = Cvar_Get ("in_keyboardShortcuts", "0", CVAR_TEMP); // drakkar - not used in linux
Cvar_Set( "cl_platformSensitivity", "2.0" ); Cvar_Set( "cl_platformSensitivity", "2.0" );
if (in_mouse->value) if (in_mouse->value)
@ -1927,9 +1645,7 @@ void IN_Frame (void) {
{ {
// temporarily deactivate if not in the game and // temporarily deactivate if not in the game and
// running on the desktop // running on the desktop
// voodoo always counts as full screen if ( Cvar_VariableValue ("r_fullscreen") == 0 )
if (Cvar_VariableValue ("r_fullscreen") == 0
&& strcmp( Cvar_VariableString("r_glDriver"), _3DFX_DRIVER_NAME ) )
{ {
IN_DeactivateMouse (); IN_DeactivateMouse ();
return; return;

View file

@ -64,12 +64,16 @@ void (*qfxMesaSwapBuffers)(void);
//GLX Functions //GLX Functions
#if !defined(USE_SDL_VIDEO) #if !defined(USE_SDL_VIDEO)
void* (*qglXGetProcAddress)( const char *symbol );
XVisualInfo * (*qglXChooseVisual)( Display *dpy, int screen, int *attribList ); XVisualInfo * (*qglXChooseVisual)( Display *dpy, int screen, int *attribList );
GLXContext (*qglXCreateContext)( Display *dpy, XVisualInfo *vis, GLXContext shareList, Bool direct ); GLXContext (*qglXCreateContext)( Display *dpy, XVisualInfo *vis, GLXContext shareList, Bool direct );
void (*qglXDestroyContext)( Display *dpy, GLXContext ctx ); void (*qglXDestroyContext)( Display *dpy, GLXContext ctx );
Bool (*qglXMakeCurrent)( Display *dpy, GLXDrawable drawable, GLXContext ctx); Bool (*qglXMakeCurrent)( Display *dpy, GLXDrawable drawable, GLXContext ctx);
void (*qglXCopyContext)( Display *dpy, GLXContext src, GLXContext dst, GLuint mask ); void (*qglXCopyContext)( Display *dpy, GLXContext src, GLXContext dst, GLuint mask );
void (*qglXSwapBuffers)( Display *dpy, GLXDrawable drawable ); void (*qglXSwapBuffers)( Display *dpy, GLXDrawable drawable );
void (*qglXSwapIntervalEXT)( Display *dpy, GLXDrawable drawable, int si );
int (*qglXSwapIntervalMESA)( unsigned si );
int (*qglXSwapIntervalSGI)( int si );
#endif #endif
void ( APIENTRY * qglSwapIntervalEXT)( int interval ); // added to setup SDL swap interval support void ( APIENTRY * qglSwapIntervalEXT)( int interval ); // added to setup SDL swap interval support
@ -1145,19 +1149,23 @@ void QGL_Shutdown( void )
#endif #endif
#if !defined(USE_SDL_VIDEO) #if !defined(USE_SDL_VIDEO)
qglXGetProcAddress = NULL;
qglXChooseVisual = NULL; qglXChooseVisual = NULL;
qglXCreateContext = NULL; qglXCreateContext = NULL;
qglXDestroyContext = NULL; qglXDestroyContext = NULL;
qglXMakeCurrent = NULL; qglXMakeCurrent = NULL;
qglXCopyContext = NULL; qglXCopyContext = NULL;
qglXSwapBuffers = NULL; qglXSwapBuffers = NULL;
qglXSwapIntervalEXT = NULL;
qglXSwapIntervalMESA = NULL;
qglXSwapIntervalSGI = NULL;
#endif #endif
} // QGL_Shutdown } // QGL_Shutdown
/* /*
** GPA ** GPA
** **
** This'll setup a wrapper around calling GetProcAddress for all our ** This'll setup a wrapper around calling GetProcAddress for all our
** GL to QGL bindings, hopefully making them less cumbersome to setup ** GL to QGL bindings, hopefully making them less cumbersome to setup
** **
@ -1167,19 +1175,34 @@ void QGL_Shutdown( void )
#define GPA( a ) SDL_GL_GetProcAddress( a ) #define GPA( a ) SDL_GL_GetProcAddress( a )
qboolean GLimp_sdl_init_video(void); qboolean GLimp_sdl_init_video(void);
#else #else
#define GPA( a ) dlsym( glw_state.OpenGLLib, a ) static void *QGL_GetProcAddress( const char *symbol )
{
void *sym;
if ( qglXGetProcAddress )
{
sym = qglXGetProcAddress( symbol );
if ( sym )
{
return sym;
}
}
return dlsym( glw_state.OpenGLLib, symbol );
}
#define GPA( a ) QGL_GetProcAddress( a )
#endif #endif
/* /*
** QGL_Init ** QGL_Init
** **
** This is responsible for binding our qgl function pointers to ** This is responsible for binding our qgl function pointers to
** the appropriate GL stuff. In Windows this means doing a ** the appropriate GL stuff. In Windows this means doing a
** LoadLibrary and a bunch of calls to GetProcAddress. On other ** LoadLibrary and a bunch of calls to GetProcAddress. On other
** operating systems we need to do the right thing, whatever that ** operating systems we need to do the right thing, whatever that
** might be. ** might be.
** **
*/ */
qboolean QGL_Init( const char *dllname ) qboolean QGL_Init( const char *dllname )
@ -1200,33 +1223,9 @@ qboolean QGL_Init( const char *dllname )
return qfalse; return qfalse;
} }
/* @brut: i don't know who did this, but it's blatantly Shit And Wrong #if !defined(USE_SDL_VIDEO)
if (glw_state.OpenGLLib == 0) qglXGetProcAddress = (void* (*)( const char *symbol ))GPA( "glXGetProcAddress" );
{ #endif
char fn[1024];
// FILE *fp; // bk001204 - unused
// if we are not setuid, try current directory
if (dllname != NULL) {
getcwd(fn, sizeof(fn));
Q_strcat(fn, sizeof(fn), "/");
Q_strcat(fn, sizeof(fn), dllname);
#if USE_SDL_VIDEO
glw_state.OpenGLLib = (void*)(long)((SDL_GL_LoadLibrary(fn) == -1) ? 0 : 1);
#else
glw_state.OpenGLLib = dlopen( fn, RTLD_LAZY );
#endif
if ( glw_state.OpenGLLib == 0 ) {
ri.Printf(PRINT_ALL, "QGL_Init: Can't load %s from /etc/ld.so.conf or current dir: %s\n", dllname, do_dlerror());
return qfalse;
}
} else {
ri.Printf(PRINT_ALL, "QGL_Init: Can't load %s from /etc/ld.so.conf: %s\n", dllname, do_dlerror());
return qfalse;
}
}
*/
qglAccum = dllAccum =(void (*)(GLenum, GLfloat))GPA( "glAccum" ); qglAccum = dllAccum =(void (*)(GLenum, GLfloat))GPA( "glAccum" );
qglAlphaFunc = dllAlphaFunc =(void (*)(GLenum, GLclampf))GPA( "glAlphaFunc" ); qglAlphaFunc = dllAlphaFunc =(void (*)(GLenum, GLclampf))GPA( "glAlphaFunc" );
@ -1576,27 +1575,30 @@ qboolean QGL_Init( const char *dllname )
#endif #endif
#if !defined(USE_SDL_VIDEO) #if !defined(USE_SDL_VIDEO)
qglXChooseVisual = GPA("glXChooseVisual"); qglXChooseVisual = (XVisualInfo * (*)( Display *dpy, int screen, int *attribList ))GPA("glXChooseVisual");
qglXCreateContext = GPA("glXCreateContext"); qglXCreateContext = (GLXContext (*)( Display *dpy, XVisualInfo *vis, GLXContext shareList, Bool direct ))GPA("glXCreateContext");
qglXDestroyContext = GPA("glXDestroyContext"); qglXDestroyContext = (void (*)( Display *dpy, GLXContext ctx ))GPA("glXDestroyContext");
qglXMakeCurrent = GPA("glXMakeCurrent"); qglXMakeCurrent = (Bool (*)( Display *dpy, GLXDrawable drawable, GLXContext ctx))GPA("glXMakeCurrent");
qglXCopyContext = GPA("glXCopyContext"); qglXCopyContext = (void (*)( Display *dpy, GLXContext src, GLXContext dst, GLuint mask ))GPA("glXCopyContext");
qglXSwapBuffers = GPA("glXSwapBuffers"); qglXSwapBuffers = (void (*)( Display *dpy, GLXDrawable drawable ))GPA("glXSwapBuffers");
#endif #endif
qglLockArraysEXT = 0; qglLockArraysEXT = (PFNGLLOCKARRAYSEXTPROC)GPA("glLockArraysEXT");
qglUnlockArraysEXT = 0; qglUnlockArraysEXT = (PFNGLUNLOCKARRAYSEXTPROC)GPA("glUnlockArraysEXT");
qglActiveTextureARB = 0; qglActiveTextureARB = (void ( APIENTRY * )( GLenum texture ))GPA("glActiveTextureARB");
qglClientActiveTextureARB = 0; qglClientActiveTextureARB = (void ( APIENTRY * )( GLenum texture ))GPA("glClientActiveTextureARB");
qglSwapIntervalEXT = 0; qglSwapIntervalEXT = (void ( APIENTRY * )( int interval ))GPA("glSwapIntervalEXT");
qglXSwapIntervalEXT = (void (*)( Display *dpy, GLXDrawable drawable, int si ))GPA( "glXSwapIntervalEXT" );
qglXSwapIntervalMESA = (int (*)( unsigned si ))GPA( "glXSwapIntervalMESA" );
qglXSwapIntervalSGI = (int (*)( int si ))GPA( "glXSwapIntervalSGI" );
qglPointParameterfEXT = NULL; qglPointParameterfEXT = (void ( APIENTRY * )( GLenum param, GLfloat value ))GPA("glPointParameterfEXT");
qglPointParameterfvEXT = NULL; qglPointParameterfvEXT = (void ( APIENTRY * )( GLenum param, const GLfloat *value ))GPA("glPointParameterfvEXT");
qglColorTableEXT = NULL; qglColorTableEXT = (void ( APIENTRY * )( int, int, int, int, int, const void * ))GPA("glColorTableEXT");
qgl3DfxSetPaletteEXT = NULL; qgl3DfxSetPaletteEXT = (void ( APIENTRY * )( GLuint * ))GPA("gl3DfxSetPaletteEXT");
qglSelectTextureSGIS = NULL; qglSelectTextureSGIS = (void ( APIENTRY * )( GLenum ))GPA("glSelectTextureSGIS");
qglMTexCoord2fSGIS = NULL; qglMTexCoord2fSGIS = (void ( APIENTRY * )( GLenum, GLfloat, GLfloat ))GPA("glMTexCoord2fSGIS");
qglMultiTexCoord2fARB = NULL; qglMultiTexCoord2fARB = (void ( APIENTRY * )( GLenum texture, GLfloat s, GLfloat t ))GPA("glMultiTexCoord2fARB");
return qtrue; return qtrue;
} }
@ -1632,10 +1634,30 @@ qbool GLW_InitARB()
QGL_ARB( glEnableVertexAttribArray, PFNGLENABLEVERTEXATTRIBARRAYARBPROC ); QGL_ARB( glEnableVertexAttribArray, PFNGLENABLEVERTEXATTRIBARRAYARBPROC );
QGL_ARB( glVertexAttribPointer, PFNGLVERTEXATTRIBPOINTERARBPROC ); QGL_ARB( glVertexAttribPointer, PFNGLVERTEXATTRIBPOINTERARBPROC );
QGL_ARB( glProgramEnvParameter4f, PFNGLPROGRAMENVPARAMETER4FARBPROC ); QGL_ARB( glProgramEnvParameter4f, PFNGLPROGRAMENVPARAMETER4FARBPROC );
QGL_ARB( glProgramLocalParameter4f, PFNGLPROGRAMLOCALPARAMETER4FARBPROC ); QGL_ARB( glProgramLocalParameter4f, PFNGLPROGRAMLOCALPARAMETER4FARBPROC );
return qtrue; return qtrue;
} }
void QGL_SwapInterval( Display *dpy, Window win, int interval )
{
if( qglSwapIntervalEXT )
{
qglSwapIntervalEXT( interval );
}
else if ( qglXSwapIntervalEXT )
{
qglXSwapIntervalEXT( dpy, win, interval );
}
else if ( qglXSwapIntervalMESA )
{
qglXSwapIntervalMESA( interval );
}
else if ( qglXSwapIntervalSGI )
{
qglXSwapIntervalSGI( (unsigned int)interval );
}
}
// END linux_qgl.c // END linux_qgl.c

View file

@ -1,424 +0,0 @@
/*
===========================================================================
Copyright (C) 1999-2005 Id Software, Inc.
This file is part of Quake III Arena source code.
Quake III Arena source code is free software; you can redistribute it
and/or modify it under the terms of the GNU General Public License as
published by the Free Software Foundation; either version 2 of the License,
or (at your option) any later version.
Quake III Arena source code is distributed in the hope that it will be
useful, but WITHOUT ANY WARRANTY; without even the implied warranty of
MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
GNU General Public License for more details.
You should have received a copy of the GNU General Public License
along with Foobar; if not, write to the Free Software
Foundation, Inc., 51 Franklin St, Fifth Floor, Boston, MA 02110-1301 USA
===========================================================================
*/
//
// math.s
// x86 assembly-language math routines.
#include "qasm.h"
#if id386
.data
.align 4
Ljmptab: .long Lcase0, Lcase1, Lcase2, Lcase3
.long Lcase4, Lcase5, Lcase6, Lcase7
.text
// TODO: rounding needed?
// stack parameter offset
#define val 4
.globl C(Invert24To16)
C(Invert24To16):
movl val(%esp),%ecx
movl $0x100,%edx // 0x10000000000 as dividend
cmpl %edx,%ecx
jle LOutOfRange
subl %eax,%eax
divl %ecx
ret
LOutOfRange:
movl $0xFFFFFFFF,%eax
ret
#if 0
#define in 4
#define out 8
.align 2
.globl C(TransformVector)
C(TransformVector):
movl in(%esp),%eax
movl out(%esp),%edx
flds (%eax) // in[0]
fmuls C(vright) // in[0]*vright[0]
flds (%eax) // in[0] | in[0]*vright[0]
fmuls C(vup) // in[0]*vup[0] | in[0]*vright[0]
flds (%eax) // in[0] | in[0]*vup[0] | in[0]*vright[0]
fmuls C(vpn) // in[0]*vpn[0] | in[0]*vup[0] | in[0]*vright[0]
flds 4(%eax) // in[1] | ...
fmuls C(vright)+4 // in[1]*vright[1] | ...
flds 4(%eax) // in[1] | in[1]*vright[1] | ...
fmuls C(vup)+4 // in[1]*vup[1] | in[1]*vright[1] | ...
flds 4(%eax) // in[1] | in[1]*vup[1] | in[1]*vright[1] | ...
fmuls C(vpn)+4 // in[1]*vpn[1] | in[1]*vup[1] | in[1]*vright[1] | ...
fxch %st(2) // in[1]*vright[1] | in[1]*vup[1] | in[1]*vpn[1] | ...
faddp %st(0),%st(5) // in[1]*vup[1] | in[1]*vpn[1] | ...
faddp %st(0),%st(3) // in[1]*vpn[1] | ...
faddp %st(0),%st(1) // vpn_accum | vup_accum | vright_accum
flds 8(%eax) // in[2] | ...
fmuls C(vright)+8 // in[2]*vright[2] | ...
flds 8(%eax) // in[2] | in[2]*vright[2] | ...
fmuls C(vup)+8 // in[2]*vup[2] | in[2]*vright[2] | ...
flds 8(%eax) // in[2] | in[2]*vup[2] | in[2]*vright[2] | ...
fmuls C(vpn)+8 // in[2]*vpn[2] | in[2]*vup[2] | in[2]*vright[2] | ...
fxch %st(2) // in[2]*vright[2] | in[2]*vup[2] | in[2]*vpn[2] | ...
faddp %st(0),%st(5) // in[2]*vup[2] | in[2]*vpn[2] | ...
faddp %st(0),%st(3) // in[2]*vpn[2] | ...
faddp %st(0),%st(1) // vpn_accum | vup_accum | vright_accum
fstps 8(%edx) // out[2]
fstps 4(%edx) // out[1]
fstps (%edx) // out[0]
ret
#endif
#define EMINS 4+4
#define EMAXS 4+8
#define P 4+12
.align 2
.globl C(BoxOnPlaneSide)
C(BoxOnPlaneSide):
pushl %ebx
movl P(%esp),%edx
movl EMINS(%esp),%ecx
xorl %eax,%eax
movl EMAXS(%esp),%ebx
movb pl_signbits(%edx),%al
cmpb $8,%al
jge Lerror
flds pl_normal(%edx) // p->normal[0]
fld %st(0) // p->normal[0] | p->normal[0]
// bk000422 - warning: missing prefix `*' in absolute indirect address, maybe misassembled!
// bk001129 - fix from Andrew Henderson, was: Ljmptab(,%eax,4)
jmp *Ljmptab(,%eax,4)
//dist1= p->normal[0]*emaxs[0] + p->normal[1]*emaxs[1] + p->normal[2]*emaxs[2];
//dist2= p->normal[0]*emins[0] + p->normal[1]*emins[1] + p->normal[2]*emins[2];
Lcase0:
fmuls (%ebx) // p->normal[0]*emaxs[0] | p->normal[0]
flds pl_normal+4(%edx) // p->normal[1] | p->normal[0]*emaxs[0] |
// p->normal[0]
fxch %st(2) // p->normal[0] | p->normal[0]*emaxs[0] |
// p->normal[1]
fmuls (%ecx) // p->normal[0]*emins[0] |
// p->normal[0]*emaxs[0] | p->normal[1]
fxch %st(2) // p->normal[1] | p->normal[0]*emaxs[0] |
// p->normal[0]*emins[0]
fld %st(0) // p->normal[1] | p->normal[1] |
// p->normal[0]*emaxs[0] |
// p->normal[0]*emins[0]
fmuls 4(%ebx) // p->normal[1]*emaxs[1] | p->normal[1] |
// p->normal[0]*emaxs[0] |
// p->normal[0]*emins[0]
flds pl_normal+8(%edx) // p->normal[2] | p->normal[1]*emaxs[1] |
// p->normal[1] | p->normal[0]*emaxs[0] |
// p->normal[0]*emins[0]
fxch %st(2) // p->normal[1] | p->normal[1]*emaxs[1] |
// p->normal[2] | p->normal[0]*emaxs[0] |
// p->normal[0]*emins[0]
fmuls 4(%ecx) // p->normal[1]*emins[1] |
// p->normal[1]*emaxs[1] |
// p->normal[2] | p->normal[0]*emaxs[0] |
// p->normal[0]*emins[0]
fxch %st(2) // p->normal[2] | p->normal[1]*emaxs[1] |
// p->normal[1]*emins[1] |
// p->normal[0]*emaxs[0] |
// p->normal[0]*emins[0]
fld %st(0) // p->normal[2] | p->normal[2] |
// p->normal[1]*emaxs[1] |
// p->normal[1]*emins[1] |
// p->normal[0]*emaxs[0] |
// p->normal[0]*emins[0]
fmuls 8(%ebx) // p->normal[2]*emaxs[2] |
// p->normal[2] |
// p->normal[1]*emaxs[1] |
// p->normal[1]*emins[1] |
// p->normal[0]*emaxs[0] |
// p->normal[0]*emins[0]
fxch %st(5) // p->normal[0]*emins[0] |
// p->normal[2] |
// p->normal[1]*emaxs[1] |
// p->normal[1]*emins[1] |
// p->normal[0]*emaxs[0] |
// p->normal[2]*emaxs[2]
faddp %st(0),%st(3) //p->normal[2] |
// p->normal[1]*emaxs[1] |
// p->normal[1]*emins[1]+p->normal[0]*emins[0]|
// p->normal[0]*emaxs[0] |
// p->normal[2]*emaxs[2]
fmuls 8(%ecx) //p->normal[2]*emins[2] |
// p->normal[1]*emaxs[1] |
// p->normal[1]*emins[1]+p->normal[0]*emins[0]|
// p->normal[0]*emaxs[0] |
// p->normal[2]*emaxs[2]
fxch %st(1) //p->normal[1]*emaxs[1] |
// p->normal[2]*emins[2] |
// p->normal[1]*emins[1]+p->normal[0]*emins[0]|
// p->normal[0]*emaxs[0] |
// p->normal[2]*emaxs[2]
faddp %st(0),%st(3) //p->normal[2]*emins[2] |
// p->normal[1]*emins[1]+p->normal[0]*emins[0]|
// p->normal[0]*emaxs[0]+p->normal[1]*emaxs[1]|
// p->normal[2]*emaxs[2]
fxch %st(3) //p->normal[2]*emaxs[2] +
// p->normal[1]*emins[1]+p->normal[0]*emins[0]|
// p->normal[0]*emaxs[0]+p->normal[1]*emaxs[1]|
// p->normal[2]*emins[2]
faddp %st(0),%st(2) //p->normal[1]*emins[1]+p->normal[0]*emins[0]|
// dist1 | p->normal[2]*emins[2]
jmp LSetSides
//dist1= p->normal[0]*emins[0] + p->normal[1]*emaxs[1] + p->normal[2]*emaxs[2];
//dist2= p->normal[0]*emaxs[0] + p->normal[1]*emins[1] + p->normal[2]*emins[2];
Lcase1:
fmuls (%ecx) // emins[0]
flds pl_normal+4(%edx)
fxch %st(2)
fmuls (%ebx) // emaxs[0]
fxch %st(2)
fld %st(0)
fmuls 4(%ebx) // emaxs[1]
flds pl_normal+8(%edx)
fxch %st(2)
fmuls 4(%ecx) // emins[1]
fxch %st(2)
fld %st(0)
fmuls 8(%ebx) // emaxs[2]
fxch %st(5)
faddp %st(0),%st(3)
fmuls 8(%ecx) // emins[2]
fxch %st(1)
faddp %st(0),%st(3)
fxch %st(3)
faddp %st(0),%st(2)
jmp LSetSides
//dist1= p->normal[0]*emaxs[0] + p->normal[1]*emins[1] + p->normal[2]*emaxs[2];
//dist2= p->normal[0]*emins[0] + p->normal[1]*emaxs[1] + p->normal[2]*emins[2];
Lcase2:
fmuls (%ebx) // emaxs[0]
flds pl_normal+4(%edx)
fxch %st(2)
fmuls (%ecx) // emins[0]
fxch %st(2)
fld %st(0)
fmuls 4(%ecx) // emins[1]
flds pl_normal+8(%edx)
fxch %st(2)
fmuls 4(%ebx) // emaxs[1]
fxch %st(2)
fld %st(0)
fmuls 8(%ebx) // emaxs[2]
fxch %st(5)
faddp %st(0),%st(3)
fmuls 8(%ecx) // emins[2]
fxch %st(1)
faddp %st(0),%st(3)
fxch %st(3)
faddp %st(0),%st(2)
jmp LSetSides
//dist1= p->normal[0]*emins[0] + p->normal[1]*emins[1] + p->normal[2]*emaxs[2];
//dist2= p->normal[0]*emaxs[0] + p->normal[1]*emaxs[1] + p->normal[2]*emins[2];
Lcase3:
fmuls (%ecx) // emins[0]
flds pl_normal+4(%edx)
fxch %st(2)
fmuls (%ebx) // emaxs[0]
fxch %st(2)
fld %st(0)
fmuls 4(%ecx) // emins[1]
flds pl_normal+8(%edx)
fxch %st(2)
fmuls 4(%ebx) // emaxs[1]
fxch %st(2)
fld %st(0)
fmuls 8(%ebx) // emaxs[2]
fxch %st(5)
faddp %st(0),%st(3)
fmuls 8(%ecx) // emins[2]
fxch %st(1)
faddp %st(0),%st(3)
fxch %st(3)
faddp %st(0),%st(2)
jmp LSetSides
//dist1= p->normal[0]*emaxs[0] + p->normal[1]*emaxs[1] + p->normal[2]*emins[2];
//dist2= p->normal[0]*emins[0] + p->normal[1]*emins[1] + p->normal[2]*emaxs[2];
Lcase4:
fmuls (%ebx) // emaxs[0]
flds pl_normal+4(%edx)
fxch %st(2)
fmuls (%ecx) // emins[0]
fxch %st(2)
fld %st(0)
fmuls 4(%ebx) // emaxs[1]
flds pl_normal+8(%edx)
fxch %st(2)
fmuls 4(%ecx) // emins[1]
fxch %st(2)
fld %st(0)
fmuls 8(%ecx) // emins[2]
fxch %st(5)
faddp %st(0),%st(3)
fmuls 8(%ebx) // emaxs[2]
fxch %st(1)
faddp %st(0),%st(3)
fxch %st(3)
faddp %st(0),%st(2)
jmp LSetSides
//dist1= p->normal[0]*emins[0] + p->normal[1]*emaxs[1] + p->normal[2]*emins[2];
//dist2= p->normal[0]*emaxs[0] + p->normal[1]*emins[1] + p->normal[2]*emaxs[2];
Lcase5:
fmuls (%ecx) // emins[0]
flds pl_normal+4(%edx)
fxch %st(2)
fmuls (%ebx) // emaxs[0]
fxch %st(2)
fld %st(0)
fmuls 4(%ebx) // emaxs[1]
flds pl_normal+8(%edx)
fxch %st(2)
fmuls 4(%ecx) // emins[1]
fxch %st(2)
fld %st(0)
fmuls 8(%ecx) // emins[2]
fxch %st(5)
faddp %st(0),%st(3)
fmuls 8(%ebx) // emaxs[2]
fxch %st(1)
faddp %st(0),%st(3)
fxch %st(3)
faddp %st(0),%st(2)
jmp LSetSides
//dist1= p->normal[0]*emaxs[0] + p->normal[1]*emins[1] + p->normal[2]*emins[2];
//dist2= p->normal[0]*emins[0] + p->normal[1]*emaxs[1] + p->normal[2]*emaxs[2];
Lcase6:
fmuls (%ebx) // emaxs[0]
flds pl_normal+4(%edx)
fxch %st(2)
fmuls (%ecx) // emins[0]
fxch %st(2)
fld %st(0)
fmuls 4(%ecx) // emins[1]
flds pl_normal+8(%edx)
fxch %st(2)
fmuls 4(%ebx) // emaxs[1]
fxch %st(2)
fld %st(0)
fmuls 8(%ecx) // emins[2]
fxch %st(5)
faddp %st(0),%st(3)
fmuls 8(%ebx) // emaxs[2]
fxch %st(1)
faddp %st(0),%st(3)
fxch %st(3)
faddp %st(0),%st(2)
jmp LSetSides
//dist1= p->normal[0]*emins[0] + p->normal[1]*emins[1] + p->normal[2]*emins[2];
//dist2= p->normal[0]*emaxs[0] + p->normal[1]*emaxs[1] + p->normal[2]*emaxs[2];
Lcase7:
fmuls (%ecx) // emins[0]
flds pl_normal+4(%edx)
fxch %st(2)
fmuls (%ebx) // emaxs[0]
fxch %st(2)
fld %st(0)
fmuls 4(%ecx) // emins[1]
flds pl_normal+8(%edx)
fxch %st(2)
fmuls 4(%ebx) // emaxs[1]
fxch %st(2)
fld %st(0)
fmuls 8(%ecx) // emins[2]
fxch %st(5)
faddp %st(0),%st(3)
fmuls 8(%ebx) // emaxs[2]
fxch %st(1)
faddp %st(0),%st(3)
fxch %st(3)
faddp %st(0),%st(2)
LSetSides:
// sides = 0;
// if (dist1 >= p->dist)
// sides = 1;
// if (dist2 < p->dist)
// sides |= 2;
faddp %st(0),%st(2) // dist1 | dist2
fcomps pl_dist(%edx)
xorl %ecx,%ecx
fnstsw %ax
fcomps pl_dist(%edx)
andb $1,%ah
xorb $1,%ah
addb %ah,%cl
fnstsw %ax
andb $1,%ah
addb %ah,%ah
addb %ah,%cl
// return sides;
popl %ebx
movl %ecx,%eax // return status
ret
Lerror:
movl 1, %eax
ret
#endif // id386

View file

@ -1,50 +0,0 @@
/*
===========================================================================
Copyright (C) 1999-2005 Id Software, Inc.
This file is part of Quake III Arena source code.
Quake III Arena source code is free software; you can redistribute it
and/or modify it under the terms of the GNU General Public License as
published by the Free Software Foundation; either version 2 of the License,
or (at your option) any later version.
Quake III Arena source code is distributed in the hope that it will be
useful, but WITHOUT ANY WARRANTY; without even the implied warranty of
MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
GNU General Public License for more details.
You should have received a copy of the GNU General Public License
along with Quake III Arena source code; if not, write to the Free Software
Foundation, Inc., 51 Franklin St, Fifth Floor, Boston, MA 02110-1301 USA
===========================================================================
*/
#ifndef __ASM_I386__
#define __ASM_I386__
#include "../qcommon/q_platform.h"
#if defined(__MINGW32__) || defined(MACOS_X)
#undef ELF
#endif
#ifdef __ELF__
.section .note.GNU-stack,"",@progbits
#endif
#ifdef ELF
#define C(label) label
#else
#define C(label) _##label
#endif
// plane_t structure
// !!! if this is changed, it must be changed in q_shared.h too !!!
#define pl_normal 0
#define pl_dist 12
#define pl_type 16
#define pl_signbits 17
#define pl_pad 18
#define pl_size 20
#endif

View file

@ -469,7 +469,9 @@ void Sys_Error( const char *error, ... )
if (ttycon_on) if (ttycon_on)
tty_Hide(); tty_Hide();
#ifndef DEDICATED
CL_Shutdown(); CL_Shutdown();
#endif
va_start (argptr,error); va_start (argptr,error);
vsprintf (string,error,argptr); vsprintf (string,error,argptr);
@ -482,7 +484,10 @@ void Sys_Error( const char *error, ... )
void Sys_Quit() void Sys_Quit()
{ {
#ifndef DEDICATED
CL_Shutdown(); CL_Shutdown();
#endif
fcntl( 0, F_SETFL, fcntl(0, F_GETFL, 0) & ~FNDELAY ); fcntl( 0, F_SETFL, fcntl(0, F_GETFL, 0) & ~FNDELAY );
Sys_Exit(0); Sys_Exit(0);
} }
@ -644,9 +649,11 @@ sysEvent_t Sys_GetEvent()
return eventQue[ ( eventTail - 1 ) & MASK_QUED_EVENTS ]; return eventQue[ ( eventTail - 1 ) & MASK_QUED_EVENTS ];
} }
#ifndef DEDICATED
// pump the message loop // pump the message loop
// in vga this calls KBD_Update, under X, it calls GetEvent // in vga this calls KBD_Update, under X, it calls GetEvent
Sys_SendKeyEvents(); Sys_SendKeyEvents();
#endif
// check for console commands // check for console commands
const char* s = Sys_ConsoleInput(); const char* s = Sys_ConsoleInput();
@ -657,8 +664,10 @@ sysEvent_t Sys_GetEvent()
Sys_QueEvent( 0, SE_CONSOLE, 0, 0, len, b ); Sys_QueEvent( 0, SE_CONSOLE, 0, 0, len, b );
} }
#ifndef DEDICATED
// check for other input devices // check for other input devices
IN_Frame(); IN_Frame();
#endif
// check for network packets // check for network packets
msg_t netmsg; msg_t netmsg;
@ -691,11 +700,13 @@ sysEvent_t Sys_GetEvent()
/////////////////////////////////////////////////////////////// ///////////////////////////////////////////////////////////////
#ifndef DEDICATED
static void Sys_In_Restart_f( void ) static void Sys_In_Restart_f( void )
{ {
IN_Shutdown(); IN_Shutdown();
IN_Init(); IN_Init();
} }
#endif
char *Sys_GetClipboardData(void) char *Sys_GetClipboardData(void)
@ -806,7 +817,9 @@ void Sys_Print( const char *msg )
void Sys_Init() void Sys_Init()
{ {
#ifndef DEDICATED
Cmd_AddCommand( "in_restart", Sys_In_Restart_f ); Cmd_AddCommand( "in_restart", Sys_In_Restart_f );
#endif
Cvar_Set( "arch", OS_STRING " " ARCH_STRING ); Cvar_Set( "arch", OS_STRING " " ARCH_STRING );
Cvar_Set( "username", Sys_GetCurrentUser() ); Cvar_Set( "username", Sys_GetCurrentUser() );
} }

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@ -1,3 +0,0 @@
EXPORTS
vmMain
dllEntry

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@ -1,3 +0,0 @@
EXPORTS
dllEntry
vmMain

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@ -1,3 +0,0 @@
EXPORTS
vmMain
dllEntry

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@ -1,44 +0,0 @@
Microsoft Visual Studio Solution File, Format Version 10.00
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EndProject
Project("{8BC9CEB8-8B4A-11D0-8D11-00A0C91BC942}") = "quake3", "quake3.vcproj", "{81CB51C4-B434-4E12-B69B-BAEE102F2852}"
ProjectSection(ProjectDependencies) = postProject
{A410161F-AE9F-485D-A01F-5294891430A6} = {A410161F-AE9F-485D-A01F-5294891430A6}
{AB424155-FBED-4D8D-B007-5B6CF93EA395} = {AB424155-FBED-4D8D-B007-5B6CF93EA395}
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Project("{8BC9CEB8-8B4A-11D0-8D11-00A0C91BC942}") = "renderer", "renderer.vcproj", "{AB424155-FBED-4D8D-B007-5B6CF93EA395}"
ProjectSection(ProjectDependencies) = postProject
{78B079BD-9FC7-4B9E-B4A6-96DA0F00248B} = {78B079BD-9FC7-4B9E-B4A6-96DA0F00248B}
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Global
GlobalSection(SolutionConfigurationPlatforms) = preSolution
Debug|Win32 = Debug|Win32
Release|Win32 = Release|Win32
EndGlobalSection
GlobalSection(ProjectConfigurationPlatforms) = postSolution
{A410161F-AE9F-485D-A01F-5294891430A6}.Debug|Win32.ActiveCfg = Debug|Win32
{A410161F-AE9F-485D-A01F-5294891430A6}.Debug|Win32.Build.0 = Debug|Win32
{A410161F-AE9F-485D-A01F-5294891430A6}.Release|Win32.ActiveCfg = Release|Win32
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{81CB51C4-B434-4E12-B69B-BAEE102F2852}.Release|Win32.ActiveCfg = Release|Win32
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GlobalSection(SolutionProperties) = preSolution
HideSolutionNode = FALSE
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@ -1,3 +0,0 @@
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<ClInclude Include="..\..\jpeg-6\jversion.h">
<Filter>jpeg\Header Files</Filter>
</ClInclude>
</ItemGroup>
</Project>

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@ -1,3 +0,0 @@
EXPORTS
vmMain
dllEntry

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@ -1,3 +0,0 @@
EXPORTS
dllEntry
vmMain

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@ -1,3 +0,0 @@
EXPORTS
vmMain
dllEntry

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@ -1,44 +0,0 @@
Microsoft Visual Studio Solution File, Format Version 9.00
# Visual C++ Express 2005
Project("{8BC9CEB8-8B4A-11D0-8D11-00A0C91BC942}") = "botlib", "botlib.vcproj", "{A410161F-AE9F-485D-A01F-5294891430A6}"
EndProject
Project("{8BC9CEB8-8B4A-11D0-8D11-00A0C91BC942}") = "quake3", "quake3.vcproj", "{81CB51C4-B434-4E12-B69B-BAEE102F2852}"
ProjectSection(ProjectDependencies) = postProject
{A410161F-AE9F-485D-A01F-5294891430A6} = {A410161F-AE9F-485D-A01F-5294891430A6}
{AB424155-FBED-4D8D-B007-5B6CF93EA395} = {AB424155-FBED-4D8D-B007-5B6CF93EA395}
EndProjectSection
EndProject
Project("{8BC9CEB8-8B4A-11D0-8D11-00A0C91BC942}") = "renderer", "renderer.vcproj", "{AB424155-FBED-4D8D-B007-5B6CF93EA395}"
ProjectSection(ProjectDependencies) = postProject
{78B079BD-9FC7-4B9E-B4A6-96DA0F00248B} = {78B079BD-9FC7-4B9E-B4A6-96DA0F00248B}
EndProjectSection
EndProject
Project("{8BC9CEB8-8B4A-11D0-8D11-00A0C91BC942}") = "freetype", "..\..\freetype\builds\win32\visualc\freetype.vcproj", "{78B079BD-9FC7-4B9E-B4A6-96DA0F00248B}"
EndProject
Global
GlobalSection(SolutionConfigurationPlatforms) = preSolution
Debug|Win32 = Debug|Win32
Release|Win32 = Release|Win32
EndGlobalSection
GlobalSection(ProjectConfigurationPlatforms) = postSolution
{A410161F-AE9F-485D-A01F-5294891430A6}.Debug|Win32.ActiveCfg = Debug|Win32
{A410161F-AE9F-485D-A01F-5294891430A6}.Debug|Win32.Build.0 = Debug|Win32
{A410161F-AE9F-485D-A01F-5294891430A6}.Release|Win32.ActiveCfg = Release|Win32
{A410161F-AE9F-485D-A01F-5294891430A6}.Release|Win32.Build.0 = Release|Win32
{81CB51C4-B434-4E12-B69B-BAEE102F2852}.Debug|Win32.ActiveCfg = Debug|Win32
{81CB51C4-B434-4E12-B69B-BAEE102F2852}.Debug|Win32.Build.0 = Debug|Win32
{81CB51C4-B434-4E12-B69B-BAEE102F2852}.Release|Win32.ActiveCfg = Release|Win32
{81CB51C4-B434-4E12-B69B-BAEE102F2852}.Release|Win32.Build.0 = Release|Win32
{AB424155-FBED-4D8D-B007-5B6CF93EA395}.Debug|Win32.ActiveCfg = Debug|Win32
{AB424155-FBED-4D8D-B007-5B6CF93EA395}.Debug|Win32.Build.0 = Debug|Win32
{AB424155-FBED-4D8D-B007-5B6CF93EA395}.Release|Win32.ActiveCfg = Release|Win32
{AB424155-FBED-4D8D-B007-5B6CF93EA395}.Release|Win32.Build.0 = Release|Win32
{78B079BD-9FC7-4B9E-B4A6-96DA0F00248B}.Debug|Win32.ActiveCfg = Debug|Win32
{78B079BD-9FC7-4B9E-B4A6-96DA0F00248B}.Debug|Win32.Build.0 = Debug|Win32
{78B079BD-9FC7-4B9E-B4A6-96DA0F00248B}.Release|Win32.ActiveCfg = Release|Win32
{78B079BD-9FC7-4B9E-B4A6-96DA0F00248B}.Release|Win32.Build.0 = Release|Win32
EndGlobalSection
GlobalSection(SolutionProperties) = preSolution
HideSolutionNode = FALSE
EndGlobalSection
EndGlobal

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@ -1,3 +0,0 @@
EXPORTS
vmMain
dllEntry

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@ -50,7 +50,7 @@ Foundation, Inc., 51 Franklin St, Fifth Floor, Boston, MA 02110-1301 USA
#define TRY_PFD_FAIL_HARD 2 #define TRY_PFD_FAIL_HARD 2
glwstate_t glw_state; glwstate_t glw_state;
static qbool windowModeLock = qtrue;
/* /*
** ChoosePFD ** ChoosePFD
@ -231,8 +231,7 @@ static void GLW_CreatePFD( PIXELFORMATDESCRIPTOR *pPFD, int colorbits, int depth
1, // version number 1, // version number
PFD_DRAW_TO_WINDOW | // support window PFD_DRAW_TO_WINDOW | // support window
PFD_SUPPORT_OPENGL | // support OpenGL PFD_SUPPORT_OPENGL | // support OpenGL
PFD_DOUBLEBUFFER | // double buffered PFD_DOUBLEBUFFER, // double buffered
PFD_SUPPORT_COMPOSITION, // double buffered
PFD_TYPE_RGBA, // RGBA type PFD_TYPE_RGBA, // RGBA type
24, // 24-bit color depth 24, // 24-bit color depth
0, 0, 0, 0, 0, 0, // color bits ignored 0, 0, 0, 0, 0, 0, // color bits ignored
@ -268,13 +267,14 @@ static void GLW_CreatePFD( PIXELFORMATDESCRIPTOR *pPFD, int colorbits, int depth
static int GLW_MakeContext( PIXELFORMATDESCRIPTOR *pPFD ) static int GLW_MakeContext( PIXELFORMATDESCRIPTOR *pPFD )
{ {
int pixelformat;
// //
// don't putz around with pixelformat if it's already set (e.g. this is a soft // don't putz around with pixelformat if it's already set (e.g. this is a soft
// reset of the graphics system) // reset of the graphics system)
// //
if ( !glw_state.pixelFormatSet ) if ( !glw_state.pixelFormatSet )
{ {
int pixelformat;
// //
// choose, set, and describe our desired pixel format. If we're // choose, set, and describe our desired pixel format. If we're
// using a minidriver then we need to bypass the GDI functions, // using a minidriver then we need to bypass the GDI functions,
@ -475,15 +475,15 @@ static qbool GLW_CreateWindow( int width, int height, int colorbits )
ri.Printf( PRINT_DEVELOPER, "...registered window class\n" ); ri.Printf( PRINT_DEVELOPER, "...registered window class\n" );
} }
g_wv.isMinimized = qfalse;
RECT r;
int x, y, w, h;
// //
// create the HWND if one does not already exist // create the HWND if one does not already exist
// //
if ( !g_wv.hWnd ) if ( !g_wv.hWnd )
{ {
RECT r;
int x, y, w, h;
// //
// compute width and height // compute width and height
// //
@ -492,18 +492,18 @@ static qbool GLW_CreateWindow( int width, int height, int colorbits )
r.right = width; r.right = width;
r.bottom = height; r.bottom = height;
int style = WS_VISIBLE | WS_CLIPSIBLINGS | WS_CLIPCHILDREN | WS_SYSMENU; int style = WS_VISIBLE | WS_SYSMENU;
int exstyle; int exstyle;
if ( glInfo.isFullscreen ) if ( glInfo.isFullscreen )
{ {
style |= WS_POPUP | WS_MAXIMIZE; style |= WS_POPUP;
exstyle = WS_EX_APPWINDOW | WS_EX_TOPMOST; exstyle = WS_EX_TOPMOST;
} }
else else
{ {
style |= WS_SYSMENU | WS_OVERLAPPED | WS_BORDER | WS_CAPTION | WS_MINIMIZEBOX | WS_MAXIMIZEBOX; style |= WS_OVERLAPPED | WS_BORDER | WS_CAPTION;
exstyle = WS_EX_APPWINDOW | WS_EX_WINDOWEDGE; exstyle = 0;
AdjustWindowRect( &r, style, FALSE ); AdjustWindowRect( &r, style, FALSE );
} }
@ -517,8 +517,8 @@ static qbool GLW_CreateWindow( int width, int height, int colorbits )
} }
else else
{ {
const cvar_t* vid_xpos = ri.Cvar_Get( "vid_xpos", "", CVAR_ARCHIVE ); const cvar_t* vid_xpos = ri.Cvar_Get( "vid_xpos", "", 0 );
const cvar_t* vid_ypos = ri.Cvar_Get( "vid_ypos", "", CVAR_ARCHIVE ); const cvar_t* vid_ypos = ri.Cvar_Get( "vid_ypos", "", 0 );
x = vid_xpos->integer; x = vid_xpos->integer;
y = vid_ypos->integer; y = vid_ypos->integer;
} }
@ -529,21 +529,15 @@ static qbool GLW_CreateWindow( int width, int height, int colorbits )
if ( !g_wv.hWnd ) if ( !g_wv.hWnd )
ri.Error( ERR_FATAL, "GLW_CreateWindow() - Couldn't create window" ); ri.Error( ERR_FATAL, "GLW_CreateWindow() - Couldn't create window" );
//ShowWindow( g_wv.hWnd, SW_SHOW ); ShowWindow( g_wv.hWnd, SW_SHOW );
//UpdateWindow( g_wv.hWnd ); UpdateWindow( g_wv.hWnd );
ri.Printf( PRINT_DEVELOPER, "...created window@%d,%d (%dx%d)\n", x, y, w, h ); ri.Printf( PRINT_DEVELOPER, "...created window@%d,%d (%dx%d)\n", x, y, w, h );
} }
else else
{ {
ri.Printf( PRINT_DEVELOPER, "...window already present, CreateWindowEx skipped\n" ); ri.Printf( PRINT_DEVELOPER, "...window already present, CreateWindowEx skipped\n" );
//SetWindowLong( g_wv.hWnd, GWL_STYLE, style );
//SetWindowLong( g_wv.hWnd, GWL_EXSTYLE, exstyle );
//SetWindowPos( g_wv.hWnd, glInfo.isFullscreen ? HWND_TOPMOST:HWND_NOTOPMOST, x,y, w,h, SWP_SHOWWINDOW );
} }
ShowWindow( g_wv.hWnd, SW_SHOW );
UpdateWindow( g_wv.hWnd );
if ( !GLW_InitDriver( colorbits ) ) if ( !GLW_InitDriver( colorbits ) )
{ {
ShowWindow( g_wv.hWnd, SW_HIDE ); ShowWindow( g_wv.hWnd, SW_HIDE );
@ -558,6 +552,7 @@ static qbool GLW_CreateWindow( int width, int height, int colorbits )
return qtrue; return qtrue;
} }
static qbool GLW_Fullscreen( DEVMODE& dm ) static qbool GLW_Fullscreen( DEVMODE& dm )
{ {
int cds = ChangeDisplaySettings( &dm, CDS_FULLSCREEN ); int cds = ChangeDisplaySettings( &dm, CDS_FULLSCREEN );
@ -617,7 +612,7 @@ static void GLW_AttemptFSAA()
if (!qwglChoosePixelFormatARB(glw_state.hDC, anAttributes, ar, 1, &iPFD, &cPFD) || !cPFD) if (!qwglChoosePixelFormatARB(glw_state.hDC, anAttributes, ar, 1, &iPFD, &cPFD) || !cPFD)
return; return;
// now bounce the ENTIRE fucking subsystem thanks to WGL stupidity // now bounce the ENTIRE fucking subsytem thanks to WGL stupidity
// we can't use GLimp_Shutdown() for this, because that does CDS poking that we don't want // we can't use GLimp_Shutdown() for this, because that does CDS poking that we don't want
assert( glw_state.hGLRC && glw_state.hDC && g_wv.hWnd ); assert( glw_state.hGLRC && glw_state.hDC && g_wv.hWnd );
@ -649,7 +644,7 @@ static void GLW_AttemptFSAA()
} }
static qbool GLW_ResetMode( qbool cdsFullscreen ) static qbool GLW_SetMode( qbool cdsFullscreen )
{ {
HDC hDC = GetDC( GetDesktopWindow() ); HDC hDC = GetDC( GetDesktopWindow() );
glw_state.desktopBPP = GetDeviceCaps( hDC, BITSPIXEL ); glw_state.desktopBPP = GetDeviceCaps( hDC, BITSPIXEL );
@ -659,11 +654,6 @@ static qbool GLW_ResetMode( qbool cdsFullscreen )
glInfo.isFullscreen = cdsFullscreen; glInfo.isFullscreen = cdsFullscreen;
if ( !R_GetModeInfo( &glConfig.vidWidth, &glConfig.vidHeight, &glConfig.windowAspect ) ) { if ( !R_GetModeInfo( &glConfig.vidWidth, &glConfig.vidHeight, &glConfig.windowAspect ) ) {
if (!glInfo.isFullscreen)
{
Cvar_SetValue( "vid_xpos", 0 );
Cvar_SetValue( "vid_ypos", 0 );
}
glConfig.vidWidth = glw_state.desktopWidth; glConfig.vidWidth = glw_state.desktopWidth;
glConfig.vidHeight = glw_state.desktopHeight; glConfig.vidHeight = glw_state.desktopHeight;
glConfig.windowAspect = (float)glConfig.vidWidth / glConfig.vidHeight; glConfig.windowAspect = (float)glConfig.vidWidth / glConfig.vidHeight;
@ -712,22 +702,12 @@ static qbool GLW_ResetMode( qbool cdsFullscreen )
if (EnumDisplaySettings( NULL, ENUM_CURRENT_SETTINGS, &dm )) if (EnumDisplaySettings( NULL, ENUM_CURRENT_SETTINGS, &dm ))
glInfo.displayFrequency = dm.dmDisplayFrequency; glInfo.displayFrequency = dm.dmDisplayFrequency;
GLW_AttemptFSAA();
return qtrue; return qtrue;
} }
static qbool GLW_SetMode( qbool cdsFullscreen )
{
if (GLW_ResetMode(cdsFullscreen))
{
GLW_AttemptFSAA();
return qtrue;
}
return qfalse;
}
static void GLW_InitExtensions() static void GLW_InitExtensions()
{ {
ri.Printf( PRINT_DEVELOPER, "Initializing OpenGL extensions\n" ); ri.Printf( PRINT_DEVELOPER, "Initializing OpenGL extensions\n" );
@ -797,10 +777,8 @@ static qbool GLW_LoadOpenGL()
// load the driver and bind our function pointers to it // load the driver and bind our function pointers to it
if ( QGL_Init( OPENGL_DRIVER_NAME ) ) { if ( QGL_Init( OPENGL_DRIVER_NAME ) ) {
windowModeLock = qfalse;
// create the window and set up the context // create the window and set up the context
if ( GLW_SetMode( (qbool)r_fullscreen->integer ) ) { if ( GLW_SetMode( (qbool)r_fullscreen->integer ) ) {
windowModeLock = qtrue;
return qtrue; return qtrue;
} }
} }
@ -885,15 +863,12 @@ static void GLW_RestoreGamma()
void GLimp_SetGamma( unsigned char red[256], unsigned char green[256], unsigned char blue[256] ) void GLimp_SetGamma( unsigned char red[256], unsigned char green[256], unsigned char blue[256] )
{ {
if ( !glConfig.deviceSupportsGamma || r_ignorehwgamma->integer || !glw_state.hDC )
return;
if( g_wv.hWnd != GetFocus() )
return;
unsigned short table[3][256]; unsigned short table[3][256];
int i, j; int i, j;
if ( !glConfig.deviceSupportsGamma || r_ignorehwgamma->integer || !glw_state.hDC )
return;
for ( i = 0; i < 256; i++ ) { for ( i = 0; i < 256; i++ ) {
table[0][i] = ( ( ( unsigned short ) red[i] ) << 8 ) | red[i]; table[0][i] = ( ( ( unsigned short ) red[i] ) << 8 ) | red[i];
table[1][i] = ( ( ( unsigned short ) green[i] ) << 8 ) | green[i]; table[1][i] = ( ( ( unsigned short ) green[i] ) << 8 ) | green[i];
@ -920,121 +895,12 @@ void GLimp_SetGamma( unsigned char red[256], unsigned char green[256], unsigned
Com_DPrintf( "skipping W2K gamma clamp.\n" ); Com_DPrintf( "skipping W2K gamma clamp.\n" );
} }
// enforce constantly increasing
for (int j = 0 ; j < 3 ; j++ ) {
for (int i = 1 ; i < 256 ; i++ ) {
if ( table[j][i] < table[j][i-1] ) {
table[j][i] = table[j][i-1];
}
}
}
if ( !SetDeviceGammaRamp( glw_state.hDC, table ) ) { if ( !SetDeviceGammaRamp( glw_state.hDC, table ) ) {
Com_Printf( "SetDeviceGammaRamp failed.\n" ); Com_Printf( "SetDeviceGammaRamp failed.\n" );
} }
} }
// drakkar
/*
** GLimp_WindowMode
**
** Changes window mode ( minimized, windowed, fullscreen ) without vid_restart.
*/
void GLimp_WindowMode( windowMode_t wmode )
{
if( !windowModeLock )
return;
Cvar_Get( "in_keyboardShortcuts", "", 0 )->modified = qtrue;
switch( wmode )
{
case WMODE_SET_MINIMIZED:
windowModeLock = qfalse;
glw_state.cdsFullscreen = qfalse;
ChangeDisplaySettings( 0, 0 );
ShowWindow( g_wv.hWnd, SW_SHOWMINIMIZED );
g_wv.isMinimized = qtrue;
GLimp_WindowFocus( qfalse );
windowModeLock = qtrue;
break;
case WMODE_SET_WINDOWED:
windowModeLock = qfalse;
GLW_ResetMode( qfalse );
ShowWindow( g_wv.hWnd, SW_SHOWNORMAL );
g_wv.isMinimized = qfalse;
GLimp_WindowFocus( qtrue );
windowModeLock = qtrue;
ri.Cvar_Set( "r_fullscreen", "0" );
if( glInfo.isFullscreen )
Cbuf_AddText( "vid_restart\n" );
break;
case WMODE_SET_FULLSCREEN:
windowModeLock = qfalse;
GLW_SetMode( qtrue );
ShowWindow( g_wv.hWnd, SW_SHOWMAXIMIZED );
g_wv.isMinimized = qfalse;
GLimp_WindowFocus( qtrue );
windowModeLock = qtrue;
ri.Cvar_Set( "r_fullscreen", "1" );
Cbuf_AddText( "vid_restart\n" );
break;
case WMODE_RESTART:
if( r_fullscreen->modified && r_fullscreen->latchedString )
{
if( !Q_strncmp( r_fullscreen->latchedString, "0", 1 ) )
GLimp_WindowMode( WMODE_SET_WINDOWED );
else
GLimp_WindowMode( WMODE_SET_FULLSCREEN );
}
else
{
GLimp_WindowMode( r_fullscreen->integer ? WMODE_SET_FULLSCREEN : WMODE_SET_WINDOWED );
}
break;
case WMODE_SWAP_FULLSCREEN:
GLimp_WindowMode( glInfo.isFullscreen ? WMODE_SET_WINDOWED : WMODE_SET_FULLSCREEN );
break;
case WMODE_SWAP_MINIMIZED:
GLimp_WindowMode( g_wv.isMinimized ? WMODE_RESTART : WMODE_SET_MINIMIZED );
break;
default:
Com_Printf( "Invalid Window Mode\n" );
}
}
void GLimp_WindowFocus(qbool focus)
{
if( !g_wv.hWnd ) return;
if( focus )
{
// Cgg - sets gamma correction, I believe this is not needed when quake hasn't got focus
R_SetColorMappings();
if( g_wv.isMinimized )
GLimp_WindowMode( WMODE_SWAP_MINIMIZED );
}
else
{
GLW_RestoreGamma();
if( glInfo.isFullscreen )
GLimp_WindowMode( WMODE_SWAP_MINIMIZED );
}
g_wv.activeApp = ( focus && !g_wv.isMinimized );
Cvar_Get( "in_keyboardShortcuts", "", 0 )->modified = qtrue;
}
// !drakkar
/////////////////////////////////////////////////////////////// ///////////////////////////////////////////////////////////////
@ -1082,6 +948,9 @@ void GLimp_Init()
void GLimp_Shutdown() void GLimp_Shutdown()
{ {
const char* success[] = { "failed", "success" };
int retVal;
// FIXME: Brian, we need better fallbacks from partially initialized failures // FIXME: Brian, we need better fallbacks from partially initialized failures
if ( !qwglMakeCurrent ) { if ( !qwglMakeCurrent ) {
return; return;
@ -1091,9 +960,6 @@ void GLimp_Shutdown()
GLW_RestoreGamma(); GLW_RestoreGamma();
const char* success[] = { "failed", "success" };
int retVal;
// set current context to NULL // set current context to NULL
if ( qwglMakeCurrent ) if ( qwglMakeCurrent )
{ {
@ -1188,8 +1054,9 @@ qbool GLimp_SpawnRenderThread( void (*function)( void ) )
static void *smpData; static void *smpData;
static int wglErrors; static int wglErrors;
void *GLimp_RendererSleep( void ) void *GLimp_RendererSleep( void ) {
{ void *data;
if ( !qwglMakeCurrent( glw_state.hDC, NULL ) ) { if ( !qwglMakeCurrent( glw_state.hDC, NULL ) ) {
wglErrors++; wglErrors++;
} }
@ -1208,7 +1075,7 @@ void *GLimp_RendererSleep( void )
ResetEvent( renderCompletedEvent ); ResetEvent( renderCompletedEvent );
ResetEvent( renderCommandsEvent ); ResetEvent( renderCommandsEvent );
void *data = smpData; data = smpData;
// after this, the main thread can exit GLimp_WakeRenderer // after this, the main thread can exit GLimp_WakeRenderer
SetEvent( renderActiveEvent ); SetEvent( renderActiveEvent );
@ -1218,8 +1085,8 @@ void *GLimp_RendererSleep( void )
void GLimp_FrontEndSleep( void ) { void GLimp_FrontEndSleep( void ) {
WaitForSingleObject( renderCompletedEvent, INFINITE ); WaitForSingleObject( renderCompletedEvent, INFINITE );
if ( !qwglMakeCurrent( glw_state.hDC, glw_state.hGLRC ) ) { if ( !qwglMakeCurrent( glw_state.hDC, glw_state.hGLRC ) ) {
wglErrors++; wglErrors++;
} }
@ -1235,7 +1102,7 @@ void GLimp_WakeRenderer( void *data ) {
// after this, the renderer can continue through GLimp_RendererSleep // after this, the renderer can continue through GLimp_RendererSleep
SetEvent( renderCommandsEvent ); SetEvent( renderCommandsEvent );
WaitForSingleObject( renderActiveEvent, INFINITE ); WaitForSingleObject( renderActiveEvent, INFINITE );
} }

View file

@ -23,24 +23,13 @@ Foundation, Inc., 51 Franklin St, Fifth Floor, Boston, MA 02110-1301 USA
#include "../client/client.h" #include "../client/client.h"
#include "win_local.h" #include "win_local.h"
#define DIRECTINPUT_VERSION 0x0800
#include <dinput.h>
#pragma comment( lib, "dinput8" )
#pragma comment( lib, "dxguid" )
cvar_t *in_keyboardShortcuts; // 0: always off, 1: always on, 2: on/off if console is down/up, 3: on/off if windowed/fullscreen
#define DX_MOUSE_BUFFER_SIZE 64
#define MAX_MOUSE_BUTTONS 8
struct Mouse { struct Mouse {
virtual qbool Init() { return qtrue; } virtual qbool Init() { return qtrue; }
virtual qbool Activate( qbool active ); virtual qbool Activate( qbool active );
virtual void Move() {}
virtual void Shutdown() {} virtual void Shutdown() {}
virtual void Read( int* mx, int* my ) = 0; virtual void Read( int* mx, int* my ) = 0;
virtual qbool ProcessMessage( UINT msg, WPARAM wParam, LPARAM lParam ) { return qfalse; } virtual qbool ProcessMessage( UINT msg, WPARAM wParam, LPARAM lParam ) { return qfalse; } // returns true if the event was handled
Mouse() : active(qfalse), wheel(0) {} Mouse() : active(qfalse), wheel(0) {}
void UpdateWheel( int delta ); void UpdateWheel( int delta );
@ -84,219 +73,6 @@ void Mouse::UpdateWheel( int delta )
/////////////////////////////////////////////////////////////// ///////////////////////////////////////////////////////////////
struct dimouse_t :public Mouse {
virtual qbool Init();
virtual qbool Activate( qbool active );
virtual void Read( int* mx, int* my );
virtual void Shutdown();
private:
HRESULT (WINAPI *pDirectInputCreate)(HINSTANCE hinst, DWORD dwVersion, LPDIRECTINPUT* lplpDirectInput, LPUNKNOWN punkOuter);
HINSTANCE hInstDI;
LPDIRECTINPUT m_pdi;
LPDIRECTINPUTDEVICE m_pMouse;
};
static dimouse_t dimouse;
qbool dimouse_t::Init()
{
HRESULT hr;
DIPROPDWORD dipdw = {
{
sizeof(DIPROPDWORD), // diph.dwSize
sizeof(DIPROPHEADER), // diph.dwHeaderSize
0, // diph.dwObj
DIPH_DEVICE, // diph.dwHow
},
DX_MOUSE_BUFFER_SIZE, // dwData
};
Com_Printf( "Initializing DirectInput...\n" );
if (!hInstDI) {
hInstDI = LoadLibrary("dinput.dll");
if (hInstDI == NULL) {
Com_Printf( "Couldn't load dinput.dll\n" );
return qfalse;
}
}
if (!pDirectInputCreate) {
pDirectInputCreate = (HRESULT (WINAPI *)(HINSTANCE, DWORD, LPDIRECTINPUT *, LPUNKNOWN))
GetProcAddress(hInstDI, "DirectInputCreateA");
if (!pDirectInputCreate) {
Com_Printf( "Couldn't get DI proc addr\n" );
return qfalse;
}
}
// register with DirectInput and get an IDirectInput to play with.
hr = DirectInput8Create( g_wv.hInstance, DIRECTINPUT_VERSION, IID_IDirectInput8, (LPVOID*)&m_pdi, NULL );
if (FAILED(hr)) {
Com_Printf( "DI8Create failed\n" );
return qfalse;
}
// obtain an interface to the system mouse device.
hr = IDirectInput_CreateDevice( m_pdi, GUID_SysMouse, &m_pMouse, NULL );
if (FAILED(hr)) {
Com_Printf( "Couldn't open DI mouse device\n" );
return qfalse;
}
// set the data format to DIv8 mice (8 buttons)
hr = IDirectInputDevice_SetDataFormat( m_pMouse, &c_dfDIMouse2 );
if (FAILED(hr)) {
Com_Printf( "Couldn't set DI mouse format\n" );
return qfalse;
}
// set the cooperatively level.
hr = IDirectInputDevice_SetCooperativeLevel( m_pMouse, g_wv.hWnd, DISCL_EXCLUSIVE | DISCL_FOREGROUND );
// https://zerowing.idsoftware.com/bugzilla/show_bug.cgi?id=50
if (FAILED(hr)) {
Com_Printf( "Couldn't set DI coop level\n" );
return qfalse;
}
// set the buffer size to DINPUT_BUFFERSIZE elements.
// the buffer size is a DWORD property associated with the device
hr = IDirectInputDevice_SetProperty( m_pMouse, DIPROP_BUFFERSIZE, &dipdw.diph );
if (FAILED(hr)) {
Com_Printf( "Couldn't set DI buffer size\n" );
return qfalse;
}
// clear any pending samples
int x, y;
Read( &x, &y );
Read( &x, &y );
Com_Printf( "DirectInput initialized.\n" );
return qtrue;
}
void dimouse_t::Shutdown()
{
if (m_pMouse) {
IDirectInputDevice_Release(m_pMouse);
m_pMouse = NULL;
}
if (m_pdi) {
IDirectInput_Release(m_pdi);
m_pdi = NULL;
}
}
qbool dimouse_t::Activate( qbool active )
{
if (!m_pMouse) {
return qfalse;
}
if (active) {
// we may fail to reacquire if the window has been recreated
HRESULT hr = IDirectInputDevice_Acquire( m_pMouse );
if (FAILED(hr)) {
if ( !Init() ) {
Com_Printf( "Falling back to Win32 mouse support...\n" );
Cvar_Set( "in_mouse", "-1" );
return qfalse;
}
}
} else {
IDirectInputDevice_Unacquire( m_pMouse );
}
return qtrue;
}
void dimouse_t::Read( int* mx, int* my )
{
DIDEVICEOBJECTDATA od[ DX_MOUSE_BUFFER_SIZE ]; // receives buffered data
HRESULT hr;
int value;
if ( !m_pMouse ) {
return;
}
// fetch new events
for (;;)
{
DWORD dwElements = DX_MOUSE_BUFFER_SIZE;
hr = IDirectInputDevice_GetDeviceData(m_pMouse, sizeof(DIDEVICEOBJECTDATA), od, &dwElements, 0);
if ((hr == DIERR_INPUTLOST) || (hr == DIERR_NOTACQUIRED)) {
// drakkar - vid_restart creates a new window, so we have a new window handle ( hWnd )
IDirectInputDevice_SetCooperativeLevel( m_pMouse, g_wv.hWnd, DISCL_EXCLUSIVE | DISCL_FOREGROUND );
// !drakkar
IDirectInputDevice_Acquire(m_pMouse);
return;
}
// unable to read data or no data available
if ( FAILED(hr) || !dwElements ) {
break;
}
for (DWORD i = 0; i < dwElements; ++i)
{
switch (od[i].dwOfs) {
case DIMOFS_BUTTON0:
case DIMOFS_BUTTON1:
case DIMOFS_BUTTON2:
case DIMOFS_BUTTON3:
case DIMOFS_BUTTON4:
Sys_QueEvent( od[i].dwTimeStamp, SE_KEY, K_MOUSE1 + od[i].dwOfs - DIMOFS_BUTTON0, (od[i].dwData & 0x80), 0, NULL );
break;
// the keycodes generated by these DI8 buttons are NOT contiguous with the original ones
case DIMOFS_BUTTON5:
Sys_QueEvent( od[i].dwTimeStamp, SE_KEY, K_MOUSE6, (od[i].dwData & 0x80), 0, NULL );
break;
case DIMOFS_BUTTON6:
Sys_QueEvent( od[i].dwTimeStamp, SE_KEY, K_MOUSE7, (od[i].dwData & 0x80), 0, NULL );
break;
case DIMOFS_BUTTON7:
Sys_QueEvent( od[i].dwTimeStamp, SE_KEY, K_MOUSE8, (od[i].dwData & 0x80), 0, NULL );
break;
case DIMOFS_Z:
value = (int)od[i].dwData;
if (value < 0) {
Sys_QueEvent( od[i].dwTimeStamp, SE_KEY, K_MWHEELDOWN, qtrue, 0, NULL );
Sys_QueEvent( od[i].dwTimeStamp, SE_KEY, K_MWHEELDOWN, qfalse, 0, NULL );
} else if (value > 0) {
Sys_QueEvent( od[i].dwTimeStamp, SE_KEY, K_MWHEELUP, qtrue, 0, NULL );
Sys_QueEvent( od[i].dwTimeStamp, SE_KEY, K_MWHEELUP, qfalse, 0, NULL );
}
break;
}
}
}
// read the raw delta counter and ignore the individual sample time / values
DIMOUSESTATE2 state;
hr = IDirectInputDevice_GetDeviceState( m_pMouse, sizeof(state), &state );
if ( FAILED(hr) ) {
*mx = *my = 0;
return;
}
*mx = state.lX;
*my = state.lY;
}
///////////////////////////////////////////////////////////////
struct rawmouse_t : public Mouse { struct rawmouse_t : public Mouse {
virtual qbool Init(); virtual qbool Init();
@ -395,7 +171,6 @@ qbool rawmouse_t::ProcessMessage( UINT msg, WPARAM wParam, LPARAM lParam )
struct winmouse_t : public Mouse { struct winmouse_t : public Mouse {
virtual qbool Activate( qbool active ); virtual qbool Activate( qbool active );
virtual void Move();
virtual void Read( int* mx, int* my ); virtual void Read( int* mx, int* my );
virtual qbool ProcessMessage( UINT msg, WPARAM wParam, LPARAM lParam ); virtual qbool ProcessMessage( UINT msg, WPARAM wParam, LPARAM lParam );
@ -410,33 +185,20 @@ qbool winmouse_t::Activate( qbool active )
if (!active) if (!active)
return qtrue; return qtrue;
Move(); int sw = GetSystemMetrics(SM_CXSCREEN);
int sh = GetSystemMetrics(SM_CYSCREEN);
RECT rc;
GetWindowRect( g_wv.hWnd, &rc );
window_center_x = ( max(rc.left, 0) + min(rc.right, sw) ) / 2;
window_center_y = ( max(rc.top, 0) + min(rc.bottom, sh) ) / 2;
SetCursorPos( window_center_x, window_center_y ); SetCursorPos( window_center_x, window_center_y );
return qtrue; return qtrue;
} }
void winmouse_t::Move()
{
HMONITOR monitor = MonitorFromWindow( g_wv.hWnd, MONITOR_DEFAULTTOPRIMARY );
MONITORINFO minfo = { sizeof(MONITORINFO) };
int sw = GetSystemMetrics(SM_CXSCREEN);
int sh = GetSystemMetrics(SM_CYSCREEN);
if (GetMonitorInfo(monitor, &minfo))
{
sw = minfo.rcMonitor.right;
sh = minfo.rcMonitor.bottom;
}
RECT rc;
GetWindowRect( g_wv.hWnd, &rc );
window_center_x = ( max(rc.left, 0) + min(rc.right, sw) ) / 2;
window_center_y = ( max(rc.top, 0) + min(rc.bottom, sh) ) / 2;
}
void winmouse_t::Read( int* mx, int* my ) void winmouse_t::Read( int* mx, int* my )
{ {
@ -447,6 +209,7 @@ void winmouse_t::Read( int* mx, int* my )
SetCursorPos( window_center_x, window_center_y ); SetCursorPos( window_center_x, window_center_y );
} }
qbool winmouse_t::ProcessMessage( UINT msg, WPARAM wParam, LPARAM lParam ) qbool winmouse_t::ProcessMessage( UINT msg, WPARAM wParam, LPARAM lParam )
{ {
#define QUEUE_WM_BUTTON( qbutton, mask ) \ #define QUEUE_WM_BUTTON( qbutton, mask ) \
@ -455,7 +218,7 @@ qbool winmouse_t::ProcessMessage( UINT msg, WPARAM wParam, LPARAM lParam )
switch (msg) { switch (msg) {
case WM_LBUTTONDOWN: case WM_LBUTTONDOWN:
case WM_LBUTTONUP: case WM_LBUTTONUP:
QUEUE_WM_BUTTON( K_MOUSE1, MK_LBUTTON ); QUEUE_WM_BUTTON( K_MOUSE1, MK_LBUTTON );
break; break;
case WM_RBUTTONDOWN: case WM_RBUTTONDOWN:
case WM_RBUTTONUP: case WM_RBUTTONUP:
@ -509,16 +272,7 @@ static void IN_StartupMouse()
return; return;
} }
Com_Printf( "Raw mouse initialization failed\n" ); Com_Printf( "Raw mouse initialization failed\n" );
} }
if (in_mouse->integer == 2) {
if (dimouse.Init()) {
mouse = &dimouse;
Com_Printf( "Using directInput mouse input\n" );
return;
}
Com_Printf( "DirectInput mouse initialization failed\n" );
}
mouse = &winmouse; mouse = &winmouse;
mouse->Init(); mouse->Init();
@ -530,35 +284,10 @@ qbool IN_ProcessMessage( UINT msg, WPARAM wParam, LPARAM lParam )
{ {
if (!mouse) if (!mouse)
return qfalse; return qfalse;
return mouse->ProcessMessage( msg, wParam, lParam ); return mouse->ProcessMessage( msg, wParam, lParam );
} }
void IN_Move()
{
if (mouse)
mouse->Move();
}
void IN_UpdateKeyboardShortcuts()
{
int mode, enable = 1;
mode = in_keyboardShortcuts->integer;
if ( mode == 0 ) enable = 0;
else if ( mode == 1 ) enable = 1;
else if ( mode == 2 ) enable = ( cls.keyCatchers & KEYCATCH_CONSOLE ? 1 : 0 );
else if ( mode == 3 ) enable = !Cvar_VariableIntegerValue( "r_fullscreen" );
else
{
Com_Printf( "Invalid in_keyboardShortcuts value\n" );
Cvar_Reset( "in_keyboardShortcuts" );
return;
}
EnableKeyboardShortcuts( enable );
}
/////////////////////////////////////////////////////////////// ///////////////////////////////////////////////////////////////
@ -577,11 +306,9 @@ cvar_t* in_midi;
static void IN_Startup() static void IN_Startup()
{ {
QSUBSYSTEM_INIT_START( "Input" ); QSUBSYSTEM_INIT_START( "Input" );
IN_StartupMouse(); IN_StartupMouse();
IN_StartupJoystick(); IN_StartupJoystick();
IN_StartupMIDI(); IN_StartupMIDI();
QSUBSYSTEM_INIT_DONE( "Input" ); QSUBSYSTEM_INIT_DONE( "Input" );
in_joystick->modified = qfalse; in_joystick->modified = qfalse;
@ -590,9 +317,8 @@ static void IN_Startup()
void IN_Init() void IN_Init()
{ {
in_midi = Cvar_Get( "in_midi", "0", CVAR_ARCHIVE ); in_midi = Cvar_Get( "in_midi", "0", CVAR_ARCHIVE );
in_joystick = Cvar_Get( "in_joystick", "0", CVAR_ARCHIVE|CVAR_LATCH ); in_joystick = Cvar_Get( "in_joystick", "0", CVAR_ARCHIVE|CVAR_LATCH );
in_keyboardShortcuts = Cvar_Get ("in_keyboardShortcuts", "2", CVAR_ARCHIVE);
IN_Startup(); IN_Startup();
} }
@ -645,13 +371,6 @@ void IN_Frame()
if (!mouse) if (!mouse)
return; return;
// drakkar
if( in_keyboardShortcuts->modified ) {
in_keyboardShortcuts->modified = qfalse;
IN_UpdateKeyboardShortcuts();
}
// !drakkar
if (cls.keyCatchers & KEYCATCH_CONSOLE) { if (cls.keyCatchers & KEYCATCH_CONSOLE) {
// temporarily deactivate if not in the game and running on the desktop // temporarily deactivate if not in the game and running on the desktop
@ -661,15 +380,11 @@ void IN_Frame()
} }
} }
if (!g_wv.activeApp){ // this should really only happen on actual focus changes
IN_Activate( qfalse ); // but is needed to compensate for the console+windowed hack
return; if (g_wv.activeApp)
} IN_Activate( qtrue );
// this should really only happen on actual focus changes
// but is needed to compensate for the console+windowed hack
IN_Activate( qtrue );
int mx, my; int mx, my;
mouse->Read( &mx, &my ); mouse->Read( &mx, &my );
@ -782,11 +497,13 @@ static void IN_StartupJoystick()
static float JoyToF( int value ) static float JoyToF( int value )
{ {
float fValue;
// move centerpoint to zero // move centerpoint to zero
value -= 32768; value -= 32768;
// convert range from -32768..32767 to -1..1 // convert range from -32768..32767 to -1..1
float fValue = (float)value / 32768.0; fValue = (float)value / 32768.0;
return Com_Clamp( -1, 1, fValue ); return Com_Clamp( -1, 1, fValue );
} }
@ -813,6 +530,11 @@ static const int joyDirectionKeys[16] = {
static void IN_JoyMove() static void IN_JoyMove()
{ {
float fAxisValue;
UINT i;
DWORD buttonstate, povstate;
int x, y;
// verify joystick is available and that the user wants to use it // verify joystick is available and that the user wants to use it
if ( !joy.avail ) { if ( !joy.avail ) {
return; return;
@ -843,8 +565,8 @@ static void IN_JoyMove()
// loop through the joystick buttons // loop through the joystick buttons
// key a joystick event or auxillary event for higher number buttons for each state change // key a joystick event or auxillary event for higher number buttons for each state change
DWORD buttonstate = joy.ji.dwButtons; buttonstate = joy.ji.dwButtons;
for (UINT i=0 ; i < joy.jc.wNumButtons ; i++ ) { for ( i=0 ; i < joy.jc.wNumButtons ; i++ ) {
if ( (buttonstate & (1<<i)) && !(joy.oldbuttonstate & (1<<i)) ) { if ( (buttonstate & (1<<i)) && !(joy.oldbuttonstate & (1<<i)) ) {
Sys_QueEvent( g_wv.sysMsgTime, SE_KEY, K_JOY1 + i, qtrue, 0, NULL ); Sys_QueEvent( g_wv.sysMsgTime, SE_KEY, K_JOY1 + i, qtrue, 0, NULL );
} }
@ -854,12 +576,12 @@ static void IN_JoyMove()
} }
joy.oldbuttonstate = buttonstate; joy.oldbuttonstate = buttonstate;
DWORD povstate = 0; povstate = 0;
// convert main joystick motion into 6 direction button bits // convert main joystick motion into 6 direction button bits
for (UINT i = 0; i < joy.jc.wNumAxes && i < 4 ; i++) { for (i = 0; i < joy.jc.wNumAxes && i < 4 ; i++) {
// get the floating point zero-centered, potentially-inverted data for the current axis // get the floating point zero-centered, potentially-inverted data for the current axis
float fAxisValue = JoyToF( (&joy.ji.dwXpos)[i] ); fAxisValue = JoyToF( (&joy.ji.dwXpos)[i] );
if ( fAxisValue < -joy_threshold->value ) { if ( fAxisValue < -joy_threshold->value ) {
povstate |= (1<<(i*2)); povstate |= (1<<(i*2));
@ -883,7 +605,7 @@ static void IN_JoyMove()
} }
// determine which bits have changed and key an auxillary event for each change // determine which bits have changed and key an auxillary event for each change
for (UINT i=0 ; i < 16 ; i++) { for (i=0 ; i < 16 ; i++) {
if ( (povstate & (1<<i)) && !(joy.oldpovstate & (1<<i)) ) { if ( (povstate & (1<<i)) && !(joy.oldpovstate & (1<<i)) ) {
Sys_QueEvent( g_wv.sysMsgTime, SE_KEY, joyDirectionKeys[i], qtrue, 0, NULL ); Sys_QueEvent( g_wv.sysMsgTime, SE_KEY, joyDirectionKeys[i], qtrue, 0, NULL );
} }
@ -896,8 +618,8 @@ static void IN_JoyMove()
// if there is a trackball like interface, simulate mouse moves // if there is a trackball like interface, simulate mouse moves
if ( joy.jc.wNumAxes >= 6 ) { if ( joy.jc.wNumAxes >= 6 ) {
int x = JoyToI( joy.ji.dwUpos ) * in_joyBallScale->value; x = JoyToI( joy.ji.dwUpos ) * in_joyBallScale->value;
int y = JoyToI( joy.ji.dwVpos ) * in_joyBallScale->value; y = JoyToI( joy.ji.dwVpos ) * in_joyBallScale->value;
if ( x || y ) { if ( x || y ) {
Sys_QueEvent( g_wv.sysMsgTime, SE_MOUSE, x, y, 0, NULL ); Sys_QueEvent( g_wv.sysMsgTime, SE_MOUSE, x, y, 0, NULL );
} }
@ -932,7 +654,9 @@ static const cvar_t* in_mididevice;
static void MIDI_NoteOff( int note ) static void MIDI_NoteOff( int note )
{ {
int qkey = note - 60 + K_AUX1; int qkey;
qkey = note - 60 + K_AUX1;
if ( qkey > 255 || qkey < K_AUX1 ) if ( qkey > 255 || qkey < K_AUX1 )
return; return;
@ -942,10 +666,12 @@ static void MIDI_NoteOff( int note )
static void MIDI_NoteOn( int note, int velocity ) static void MIDI_NoteOn( int note, int velocity )
{ {
int qkey;
if ( velocity == 0 ) if ( velocity == 0 )
MIDI_NoteOff( note ); MIDI_NoteOff( note );
int qkey = note - 60 + K_AUX1; qkey = note - 60 + K_AUX1;
if ( qkey > 255 || qkey < K_AUX1 ) if ( qkey > 255 || qkey < K_AUX1 )
return; return;
@ -955,6 +681,8 @@ static void MIDI_NoteOn( int note, int velocity )
static void CALLBACK MidiInProc( HMIDIIN hMidiIn, UINT uMsg, DWORD dwInstance, DWORD dwParam1, DWORD dwParam2 ) static void CALLBACK MidiInProc( HMIDIIN hMidiIn, UINT uMsg, DWORD dwInstance, DWORD dwParam1, DWORD dwParam2 )
{ {
int message;
switch ( uMsg ) switch ( uMsg )
{ {
case MIM_OPEN: case MIM_OPEN:
@ -962,18 +690,16 @@ static void CALLBACK MidiInProc( HMIDIIN hMidiIn, UINT uMsg, DWORD dwInstance, D
case MIM_CLOSE: case MIM_CLOSE:
break; break;
case MIM_DATA: case MIM_DATA:
{ message = dwParam1 & 0xff;
int message = dwParam1 & 0xff; if ( ( message & 0xf0 ) == 0x90 )
if ( ( message & 0xf0 ) == 0x90 ) {
{ if ( ( ( message & 0x0f ) + 1 ) == in_midichannel->integer )
if ( ( ( message & 0x0f ) + 1 ) == in_midichannel->integer ) MIDI_NoteOn( ( dwParam1 & 0xff00 ) >> 8, ( dwParam1 & 0xff0000 ) >> 16 );
MIDI_NoteOn( ( dwParam1 & 0xff00 ) >> 8, ( dwParam1 & 0xff0000 ) >> 16 ); }
} else if ( ( message & 0xf0 ) == 0x80 )
else if ( ( message & 0xf0 ) == 0x80 ) {
{ if ( ( ( message & 0x0f ) + 1 ) == in_midichannel->integer )
if ( ( ( message & 0x0f ) + 1 ) == in_midichannel->integer ) MIDI_NoteOff( ( dwParam1 & 0xff00 ) >> 8 );
MIDI_NoteOff( ( dwParam1 & 0xff00 ) >> 8 );
}
} }
break; break;
case MIM_LONGDATA: case MIM_LONGDATA:
@ -989,6 +715,8 @@ static void CALLBACK MidiInProc( HMIDIIN hMidiIn, UINT uMsg, DWORD dwInstance, D
static void MidiInfo_f( void ) static void MidiInfo_f( void )
{ {
int i;
const char *enableStrings[] = { "disabled", "enabled" }; const char *enableStrings[] = { "disabled", "enabled" };
Com_Printf( "\nMIDI control: %s\n", enableStrings[in_midi->integer != 0] ); Com_Printf( "\nMIDI control: %s\n", enableStrings[in_midi->integer != 0] );
@ -997,7 +725,7 @@ static void MidiInfo_f( void )
Com_Printf( "current device: %d\n", in_mididevice->integer ); Com_Printf( "current device: %d\n", in_mididevice->integer );
Com_Printf( "number of devices: %d\n", s_midiInfo.numDevices ); Com_Printf( "number of devices: %d\n", s_midiInfo.numDevices );
for (int i = 0; i < s_midiInfo.numDevices; i++ ) for ( i = 0; i < s_midiInfo.numDevices; i++ )
{ {
if ( i == Cvar_VariableValue( "in_mididevice" ) ) if ( i == Cvar_VariableValue( "in_mididevice" ) )
Com_Printf( "***" ); Com_Printf( "***" );
@ -1012,6 +740,8 @@ static void MidiInfo_f( void )
static void IN_StartupMIDI() static void IN_StartupMIDI()
{ {
int i;
if ( !Cvar_VariableValue( "in_midi" ) ) if ( !Cvar_VariableValue( "in_midi" ) )
return; return;
@ -1020,7 +750,7 @@ static void IN_StartupMIDI()
// //
s_midiInfo.numDevices = midiInGetNumDevs(); s_midiInfo.numDevices = midiInGetNumDevs();
for (int i = 0; i < s_midiInfo.numDevices; i++ ) for ( i = 0; i < s_midiInfo.numDevices; i++ )
{ {
midiInGetDevCaps( i, &s_midiInfo.caps[i], sizeof( s_midiInfo.caps[i] ) ); midiInGetDevCaps( i, &s_midiInfo.caps[i], sizeof( s_midiInfo.caps[i] ) );
} }

View file

@ -21,7 +21,7 @@ Foundation, Inc., 51 Franklin St, Fifth Floor, Boston, MA 02110-1301 USA
*/ */
// win_local.h: Win32-specific Quake3 header file // win_local.h: Win32-specific Quake3 header file
#include <windows.h> #include "windows.h"
void Sys_QueEvent( int time, sysEventType_t type, int value, int value2, int ptrLength, void *ptr ); void Sys_QueEvent( int time, sysEventType_t type, int value, int value2, int ptrLength, void *ptr );
@ -34,29 +34,26 @@ void Conbuf_AppendText( const char *msg );
void IN_Init(); void IN_Init();
void IN_Activate( qbool active ); void IN_Activate( qbool active );
qbool IN_ProcessMessage( UINT msg, WPARAM wParam, LPARAM lParam ); // returns true if the event was handled
void IN_Frame(); void IN_Frame();
void IN_Shutdown(); void IN_Shutdown();
void IN_Move();
qbool IN_ProcessMessage( UINT msg, WPARAM wParam, LPARAM lParam );
void SNDDMA_Activate(); void SNDDMA_Activate();
void EnableKeyboardShortcuts(qbool enable);
LONG WINAPI MainWndProc( HWND hWnd, UINT uMsg, WPARAM wParam, LPARAM lParam ); LONG WINAPI MainWndProc( HWND hWnd, UINT uMsg, WPARAM wParam, LPARAM lParam );
typedef struct typedef struct
{ {
OSVERSIONINFO osversion;
HWND hWnd; HWND hWnd;
HINSTANCE hInstance; HINSTANCE hInstance;
qbool activeApp; qbool activeApp;
qbool isMinimized; qbool isMinimized;
OSVERSIONINFO osversion;
// when we get a windows message, we store off the time // when we get a windows message, we store the time off
// so keyboard processing can know the exact time of an event // so keyboard processing can know the exact time of an event
unsigned sysMsgTime; unsigned sysMsgTime;
} WinVars_t; } WinVars_t;
extern WinVars_t g_wv; extern WinVars_t g_wv;

View file

@ -30,8 +30,12 @@ Foundation, Inc., 51 Franklin St, Fifth Floor, Boston, MA 02110-1301 USA
#include <stdio.h> #include <stdio.h>
#include <direct.h> #include <direct.h>
#include <io.h> #include <io.h>
#include <conio.h> #include <conio.h>
#include <malloc.h> #include <malloc.h>
#include <VersionHelpers.h>
WinVars_t g_wv;
#define MEM_THRESHOLD 96*1024*1024 #define MEM_THRESHOLD 96*1024*1024
@ -68,7 +72,9 @@ void QDECL Sys_Error( const char *error, ... )
timeEndPeriod( 1 ); timeEndPeriod( 1 );
#ifndef DEDICATED
IN_Shutdown(); IN_Shutdown();
#endif
// wait for the user to quit // wait for the user to quit
while (1) { while (1) {
@ -88,7 +94,9 @@ void QDECL Sys_Error( const char *error, ... )
void Sys_Quit() void Sys_Quit()
{ {
timeEndPeriod( 1 ); timeEndPeriod( 1 );
#ifndef DEDICATED
IN_Shutdown(); IN_Shutdown();
#endif
Sys_DestroyConsole(); Sys_DestroyConsole();
exit(0); exit(0);
} }
@ -275,11 +283,13 @@ char **Sys_ListFiles( const char *directory, const char *extension, const char *
void Sys_FreeFileList( char **list ) void Sys_FreeFileList( char **list )
{ {
int i;
if ( !list ) { if ( !list ) {
return; return;
} }
for (int i = 0 ; list[i] ; i++ ) { for ( i = 0 ; list[i] ; i++ ) {
Z_Free( list[i] ); Z_Free( list[i] );
} }
@ -290,13 +300,13 @@ void Sys_FreeFileList( char **list )
char *Sys_GetClipboardData( void ) char *Sys_GetClipboardData( void )
{ {
char *data = NULL; char *data = NULL;
char *cliptext;
if ( OpenClipboard( NULL ) ) { if ( OpenClipboard( NULL ) ) {
HANDLE hClipboardData; HANDLE hClipboardData;
if ( ( hClipboardData = GetClipboardData( CF_TEXT ) ) != 0 ) { if ( ( hClipboardData = GetClipboardData( CF_TEXT ) ) != 0 ) {
char *cliptext; if ( ( cliptext = (char*)GlobalLock( hClipboardData ) ) != 0 ) {
if ( (cliptext = (char*)GlobalLock( hClipboardData ) ) != 0 ) {
data = (char*)Z_Malloc( GlobalSize( hClipboardData ) + 1 ); data = (char*)Z_Malloc( GlobalSize( hClipboardData ) + 1 );
Q_strncpyz( data, cliptext, GlobalSize( hClipboardData ) ); Q_strncpyz( data, cliptext, GlobalSize( hClipboardData ) );
GlobalUnlock( hClipboardData ); GlobalUnlock( hClipboardData );
@ -320,13 +330,13 @@ LOAD/UNLOAD DLL
*/ */
void Sys_UnloadDll( void* dllHandle ) void Sys_UnloadDll( void *dllHandle )
{ {
if ( !dllHandle ) { if ( !dllHandle ) {
return; return;
} }
if ( !FreeLibrary( (HMODULE)dllHandle ) ) { if ( !FreeLibrary( (HMODULE)dllHandle ) ) {
Com_Error( ERR_FATAL, "Sys_UnloadDll FreeLibrary failed" ); Com_Error (ERR_FATAL, "Sys_UnloadDll FreeLibrary failed");
} }
} }
@ -372,14 +382,14 @@ void* QDECL Sys_LoadDll( const char* name,
return NULL; return NULL;
void (QDECL *dllEntry)( intptr_t (QDECL *syscallptr)(intptr_t, ...) ); void (QDECL *dllEntry)( intptr_t (QDECL *syscallptr)(intptr_t, ...) );
dllEntry = (void (QDECL *)(intptr_t (QDECL *)( intptr_t, ... ) ) )GetProcAddress( libHandle, "dllEntry" ); dllEntry = ( void (QDECL *)(intptr_t (QDECL *)( intptr_t, ... ) ) )GetProcAddress( libHandle, "dllEntry" );
*entryPoint = (intptr_t (QDECL *)(intptr_t,...))GetProcAddress( libHandle, "vmMain" ); *entryPoint = (intptr_t (QDECL *)(intptr_t,...))GetProcAddress( libHandle, "vmMain" );
if ( !*entryPoint || !dllEntry ) { if ( !*entryPoint || !dllEntry ) {
FreeLibrary( libHandle ); FreeLibrary( libHandle );
return NULL; return NULL;
} }
dllEntry( systemcalls ); dllEntry( systemcalls );
return libHandle; return libHandle;
} }
@ -392,7 +402,7 @@ EVENT LOOP
======================================================================== ========================================================================
*/ */
#define MAX_QUED_EVENTS 1024 #define MAX_QUED_EVENTS 512
#define MASK_QUED_EVENTS ( MAX_QUED_EVENTS - 1 ) #define MASK_QUED_EVENTS ( MAX_QUED_EVENTS - 1 )
static sysEvent_t eventQue[MAX_QUED_EVENTS]; static sysEvent_t eventQue[MAX_QUED_EVENTS];
@ -404,45 +414,22 @@ static int eventHead, eventTail;
void Sys_QueEvent( int time, sysEventType_t type, int value, int value2, int ptrLength, void *ptr ) void Sys_QueEvent( int time, sysEventType_t type, int value, int value2, int ptrLength, void *ptr )
{ {
sysEvent_t* ev; sysEvent_t* ev = &eventQue[ eventHead & MASK_QUED_EVENTS ];
// try to combine all sequential mouse moves in one event
if ( type == SE_MOUSE ) {
// get previous event from queue
ev = &eventQue[ ( eventHead + MAX_QUED_EVENTS - 1 ) & MASK_QUED_EVENTS ];
if ( ev->evType == SE_MOUSE ) {
if ( eventTail == eventHead && eventTail )
{
ev->evValue = 0;
ev->evValue2 = 0;
eventTail--;
}
if ( time == 0 ) {
time = Sys_Milliseconds();
}
ev->evValue += value;
ev->evValue2 += value2;
ev->evTime = time;
return;
}
}
ev = &eventQue[ eventHead & MASK_QUED_EVENTS ];
if ( eventHead - eventTail >= MAX_QUED_EVENTS ) { if ( eventHead - eventTail >= MAX_QUED_EVENTS ) {
Com_Printf("Sys_QueEvent: overflow\n"); Com_Printf("Sys_QueEvent: overflow\n");
// we are discarding an event, but don't leak memory // we are discarding an event, but don't leak memory
if ( ev->evPtr ) if ( ev->evPtr ) {
Z_Free( ev->evPtr ); Z_Free( ev->evPtr );
++eventTail; }
eventTail++;
} }
++eventHead; eventHead++;
if ( time == 0 ) if ( time == 0 ) {
time = Sys_Milliseconds(); time = Sys_Milliseconds();
}
ev->evTime = time; ev->evTime = time;
ev->evType = type; ev->evType = type;
@ -457,7 +444,7 @@ sysEvent_t Sys_GetEvent()
{ {
// return if we have data // return if we have data
if ( eventHead > eventTail ) { if ( eventHead > eventTail ) {
++eventTail; eventTail++;
return eventQue[ ( eventTail - 1 ) & MASK_QUED_EVENTS ]; return eventQue[ ( eventTail - 1 ) & MASK_QUED_EVENTS ];
} }
@ -490,7 +477,7 @@ sysEvent_t Sys_GetEvent()
static byte sys_packetReceived[MAX_MSGLEN]; // static or it'll blow half the stack static byte sys_packetReceived[MAX_MSGLEN]; // static or it'll blow half the stack
MSG_Init( &netmsg, sys_packetReceived, sizeof( sys_packetReceived ) ); MSG_Init( &netmsg, sys_packetReceived, sizeof( sys_packetReceived ) );
if ( Sys_GetPacket( &adr, &netmsg ) ) { if ( Sys_GetPacket( &adr, &netmsg ) ) {
// copy out to a separate buffer for queuing // copy out to a seperate buffer for qeueing
// the readcount stepahead is for SOCKS support // the readcount stepahead is for SOCKS support
int len = sizeof( netadr_t ) + netmsg.cursize - netmsg.readcount; int len = sizeof( netadr_t ) + netmsg.cursize - netmsg.readcount;
netadr_t* buf = (netadr_t*)Z_Malloc( len ); netadr_t* buf = (netadr_t*)Z_Malloc( len );
@ -501,7 +488,7 @@ sysEvent_t Sys_GetEvent()
// return if we have data // return if we have data
if ( eventHead > eventTail ) { if ( eventHead > eventTail ) {
++eventTail; eventTail++;
return eventQue[ ( eventTail - 1 ) & MASK_QUED_EVENTS ]; return eventQue[ ( eventTail - 1 ) & MASK_QUED_EVENTS ];
} }
@ -516,11 +503,13 @@ sysEvent_t Sys_GetEvent()
/////////////////////////////////////////////////////////////// ///////////////////////////////////////////////////////////////
#ifndef DEDICATED
static void Sys_In_Restart_f( void ) static void Sys_In_Restart_f( void )
{ {
IN_Shutdown(); IN_Shutdown();
IN_Init(); IN_Init();
} }
#endif
static void Sys_Net_Restart_f( void ) static void Sys_Net_Restart_f( void )
@ -530,51 +519,20 @@ static void Sys_Net_Restart_f( void )
// called after the common systems (cvars, files, etc) are initialized // called after the common systems (cvars, files, etc) are initialized
#define OSR2_BUILD_NUMBER 1111
#define WIN98_BUILD_NUMBER 1998
void Sys_Init() void Sys_Init()
{ {
// make sure the timer is high precision, otherwise NT gets 18ms resolution // make sure the timer is high precision, otherwise NT gets 18ms resolution
timeBeginPeriod( 1 ); timeBeginPeriod( 1 );
#ifndef DEDICATED
Cmd_AddCommand( "in_restart", Sys_In_Restart_f ); Cmd_AddCommand( "in_restart", Sys_In_Restart_f );
#endif
Cmd_AddCommand( "net_restart", Sys_Net_Restart_f ); Cmd_AddCommand( "net_restart", Sys_Net_Restart_f );
g_wv.osversion.dwOSVersionInfoSize = sizeof( g_wv.osversion ); if ( !IsWindowsVistaOrGreater() )
Sys_Error( "%s requires Windows Vista or later", Q3_VERSION );
if (!GetVersionEx (&g_wv.osversion)) Cvar_Set( "arch", "winnt" );
Sys_Error ("Couldn't get OS info");
if (g_wv.osversion.dwMajorVersion < 4)
Sys_Error ("Quake3 requires Windows version 4 or greater");
if (g_wv.osversion.dwPlatformId == VER_PLATFORM_WIN32s)
Sys_Error ("Quake3 doesn't run on Win32s");
if ( g_wv.osversion.dwPlatformId == VER_PLATFORM_WIN32_NT )
{
Cvar_Set( "arch", "winnt" );
}
else if ( g_wv.osversion.dwPlatformId == VER_PLATFORM_WIN32_WINDOWS )
{
if ( LOWORD( g_wv.osversion.dwBuildNumber ) >= WIN98_BUILD_NUMBER )
{
Cvar_Set( "arch", "win98" );
}
else if ( LOWORD( g_wv.osversion.dwBuildNumber ) >= OSR2_BUILD_NUMBER )
{
Cvar_Set( "arch", "win95 osr2.x" );
}
else
{
Cvar_Set( "arch", "win95" );
}
}
else
{
Cvar_Set( "arch", "unknown Windows variant" );
}
// save out a couple things in rom cvars for the renderer to access // save out a couple things in rom cvars for the renderer to access
Cvar_Get( "win_hinstance", va("%i", (int)g_wv.hInstance), CVAR_ROM ); Cvar_Get( "win_hinstance", va("%i", (int)g_wv.hInstance), CVAR_ROM );
@ -601,47 +559,11 @@ void Sys_Init()
break; break;
} }
} }
Com_DPrintf( "CPU: %s\n", Cvar_VariableString( "sys_cpustring" ) ); Com_Printf( "CPU: %s\n", Cvar_VariableString( "sys_cpustring" ) );
//Cvar_Set( "username", Sys_GetCurrentUser() ); //Cvar_Set( "username", Sys_GetCurrentUser() );
} }
static int CheckPrivs()
{
HANDLE hToken;
// Get a token for this process.
if (!OpenProcessToken(GetCurrentProcess(), TOKEN_ADJUST_PRIVILEGES | TOKEN_QUERY, &hToken))
return 0;
OSVERSIONINFO vinfo;
vinfo.dwOSVersionInfoSize = sizeof(vinfo);
GetVersionEx( &vinfo );
PRIVILEGE_SET priv;
// Get the LUID for the shutdown privilege.
if ( vinfo.dwMajorVersion == 5 && vinfo.dwPlatformId == VER_PLATFORM_WIN32_NT ) {
LookupPrivilegeValue(NULL, SE_INC_BASE_PRIORITY_NAME, &priv.Privilege[0].Luid); // W2K or XP
}
else if ( vinfo.dwMajorVersion == 6 && vinfo.dwPlatformId == VER_PLATFORM_WIN32_NT ){
LookupPrivilegeValue(NULL, SE_INC_WORKING_SET_NAME, &priv.Privilege[0].Luid); // Vista
}
else {
//TODO: what SE_* for Win7 ?
return 0;
}
priv.PrivilegeCount = 1; // one privilege to set
priv.Privilege[0].Attributes = 0;
BOOL res;
if (!PrivilegeCheck(hToken, &priv, &res)){
return 0;
}
return priv.Privilege[0].Attributes == SE_PRIVILEGE_USED_FOR_ACCESS;
}
/////////////////////////////////////////////////////////////// ///////////////////////////////////////////////////////////////
@ -654,12 +576,6 @@ int WINAPI WinMain( HINSTANCE hInstance, HINSTANCE hPrevInstance, LPSTR lpCmdLin
g_wv.hInstance = hInstance; g_wv.hInstance = hInstance;
#ifndef USE_R_SMP
SYSTEM_INFO sysInfo;
GetSystemInfo( &sysInfo );
SetProcessAffinityMask( GetCurrentProcess(), sysInfo.dwActiveProcessorMask );
#endif
// done before Com/Sys_Init since we need this for error output // done before Com/Sys_Init since we need this for error output
Sys_CreateConsole(); Sys_CreateConsole();
@ -675,25 +591,20 @@ int WINAPI WinMain( HINSTANCE hInstance, HINSTANCE hPrevInstance, LPSTR lpCmdLin
NET_Init(); NET_Init();
char cwd[MAX_OSPATH];
_getcwd( cwd, sizeof(cwd) );
Com_Printf( "Working directory: %s\n", cwd );
// hide the early console since we've reached the point where we // hide the early console since we've reached the point where we
// have a working graphics subsystem // have a working graphics subsystem
if ( !com_dedicated->integer && !com_viewlog->integer ) { if ( !com_dedicated->integer && !com_viewlog->integer ) {
Sys_ShowConsole( 0, qfalse ); Sys_ShowConsole( 0, qfalse );
} }
#ifndef DEDICATED
if (!com_dedicated->integer) if (!com_dedicated->integer)
IN_Init(); IN_Init();
#endif
// in some cases (XP SP2, Vista UAC), this can supposedly help trim the working set / VM usage of Q3
// but it requires admin rights and makes no difference here, so I'm disabling it by default
if (CheckPrivs())
{
typedef BOOL (WINAPI *SetPWSS)( HANDLE, SIZE_T, SIZE_T );
SetPWSS spwss = (SetPWSS)GetProcAddress( GetModuleHandle("kernel32"), "SetProcessWorkingSetSize" );
if (spwss) {
spwss( GetCurrentProcess(), (SIZE_T)-1, (SIZE_T)-1 );
}
}
int totalMsec = 0, countMsec = 0; int totalMsec = 0, countMsec = 0;
@ -701,24 +612,21 @@ int WINAPI WinMain( HINSTANCE hInstance, HINSTANCE hPrevInstance, LPSTR lpCmdLin
while (qtrue) { while (qtrue) {
// if running as a client but not focused, sleep a bit // if running as a client but not focused, sleep a bit
// (servers have their own sleep path) // (servers have their own sleep path)
if ( com_dedicated && !com_dedicated->integer ) if ( !g_wv.activeApp && com_dedicated && !com_dedicated->integer )
{ Sleep( 5 );
if( g_wv.isMinimized || !g_wv.activeApp ) {
Sleep( 200 ); // 5 fps, free CPU
}
//SwitchToThread();
}
int startTime = Sys_Milliseconds(); int startTime = Sys_Milliseconds();
#ifndef DEDICATED
// make sure mouse and joystick are only called once a frame // make sure mouse and joystick are only called once a frame
IN_Frame(); IN_Frame();
#endif
// run the game // run the game
Com_Frame(); Com_Frame();
totalMsec += Sys_Milliseconds() - startTime; totalMsec += Sys_Milliseconds() - startTime;
++countMsec; countMsec++;
} }
// never gets here // never gets here

View file

@ -33,7 +33,7 @@ Foundation, Inc., 51 Franklin St, Fifth Floor, Boston, MA 02110-1301 USA
#include "../qcommon/q_shared.h" #include "../qcommon/q_shared.h"
#define WIN32_LEAN_AND_MEAN #define WIN32_LEAN_AND_MEAN
#include <windows.h> #include "../win32/windows.h"
#include <GL/gl.h> #include <GL/gl.h>
#include "glext.h" #include "glext.h"

View file

@ -26,9 +26,12 @@ Foundation, Inc., 51 Franklin St, Fifth Floor, Boston, MA 02110-1301 USA
#include <dsound.h> #include <dsound.h>
#pragma comment( lib, "dxguid" ) #pragma comment( lib, "dxguid" )
HRESULT (WINAPI *pDirectSoundCreate)(GUID FAR *lpGUID, LPDIRECTSOUND FAR *lplpDS, IUnknown FAR *pUnkOuter);
#define iDirectSoundCreate(a,b,c) pDirectSoundCreate(a,b,c)
#define SECONDARY_BUFFER_SIZE 0x10000 #define SECONDARY_BUFFER_SIZE 0x10000
static int sample16; static int sample16;
static DWORD gSndBufSize; static DWORD gSndBufSize;
static DWORD locksize; static DWORD locksize;
@ -37,8 +40,7 @@ static LPDIRECTSOUNDBUFFER pDSBuf, pDSPBuf;
static HINSTANCE hInstDS; static HINSTANCE hInstDS;
static const char* DSoundError( int error ) static const char *DSoundError( int error ) {
{
switch ( error ) { switch ( error ) {
case DSERR_BUFFERLOST: case DSERR_BUFFERLOST:
return "DSERR_BUFFERLOST"; return "DSERR_BUFFERLOST";
@ -53,9 +55,12 @@ static const char* DSoundError( int error )
return "unknown"; return "unknown";
} }
/*
void SNDDMA_Shutdown() ==================
{ SNDDMA_Shutdown
==================
*/
void SNDDMA_Shutdown( void ) {
Com_DPrintf( "Shutting down sound system\n" ); Com_DPrintf( "Shutting down sound system\n" );
if ( pDS ) { if ( pDS ) {
@ -97,38 +102,50 @@ void SNDDMA_Shutdown()
pDS = NULL; pDS = NULL;
pDSBuf = NULL; pDSBuf = NULL;
pDSPBuf = NULL; pDSPBuf = NULL;
memset( &dma, 0, sizeof(dma) ); memset ((void *)&dma, 0, sizeof (dma));
CoUninitialize(); CoUninitialize( );
} }
#define DS_INIT_ABORT_ON_ERROR( DSFN, MSG ) \
if (DSFN != DS_OK) { Com_Printf( "DirectSound: " MSG " FAILED" ); SNDDMA_Shutdown(); return qfalse; }
static qbool SNDDMA_InitDS() static qbool SNDDMA_InitDS()
{ {
HRESULT hresult; HRESULT hresult;
DSBUFFERDESC dsbuf;
DSBCAPS dsbcaps;
WAVEFORMATEX format;
Com_Printf( "Initializing DirectSound\n" );
if (SUCCEEDED( hresult = CoCreateInstance( CLSID_DirectSound8, NULL, CLSCTX_INPROC_SERVER, IID_IDirectSound8, (void **)&pDS))) { if (SUCCEEDED( hresult = CoCreateInstance( CLSID_DirectSound8, NULL, CLSCTX_INPROC_SERVER, IID_IDirectSound8, (void **)&pDS))) {
Com_DPrintf( "Using DS8\n" ); Com_DPrintf( "Using DS8\n" );
} }
else if (SUCCEEDED( hresult = CoCreateInstance( CLSID_DirectSound, NULL, CLSCTX_INPROC_SERVER, IID_IDirectSound, (void **)&pDS))) { else if (SUCCEEDED( hresult = CoCreateInstance( CLSID_DirectSound, NULL, CLSCTX_INPROC_SERVER, IID_IDirectSound, (void **)&pDS))) {
Com_DPrintf( "Using Legacy DS\n" ); Com_DPrintf( "Using legacy DS\n" );
} }
else { else {
DS_INIT_ABORT_ON_ERROR( !DS_OK, "Create" ); Com_Printf("failed\n");
SNDDMA_Shutdown();
return qfalse;
} }
DS_INIT_ABORT_ON_ERROR( pDS->Initialize(NULL), "Init" ); hresult = pDS->Initialize( NULL );
DS_INIT_ABORT_ON_ERROR( pDS->SetCooperativeLevel( g_wv.hWnd, DSSCL_PRIORITY ), "SetCL" );
Com_DPrintf("...setting DSSCL_PRIORITY coop level: " );
if ( DS_OK != pDS->SetCooperativeLevel( g_wv.hWnd, DSSCL_PRIORITY ) ) {
Com_Printf ("failed\n");
SNDDMA_Shutdown();
return qfalse;
}
Com_DPrintf("ok\n" );
// create the secondary buffer we'll actually work with // create the secondary buffer we'll actually work with
dma.channels = 2; dma.channels = 2;
dma.samplebits = 16; dma.samplebits = 16;
dma.speed = 22050; dma.speed = 22050;
WAVEFORMATEX format; memset (&format, 0, sizeof(format));
memset( &format, 0, sizeof(format) );
format.wFormatTag = WAVE_FORMAT_PCM; format.wFormatTag = WAVE_FORMAT_PCM;
format.nChannels = dma.channels; format.nChannels = dma.channels;
format.wBitsPerSample = dma.samplebits; format.wBitsPerSample = dma.samplebits;
@ -137,25 +154,44 @@ static qbool SNDDMA_InitDS()
format.cbSize = 0; format.cbSize = 0;
format.nAvgBytesPerSec = format.nSamplesPerSec*format.nBlockAlign; format.nAvgBytesPerSec = format.nSamplesPerSec*format.nBlockAlign;
DSBUFFERDESC dsbuf; memset (&dsbuf, 0, sizeof(dsbuf));
memset( &dsbuf, 0, sizeof(dsbuf) );
dsbuf.dwSize = sizeof(DSBUFFERDESC); dsbuf.dwSize = sizeof(DSBUFFERDESC);
dsbuf.dwBufferBytes = SECONDARY_BUFFER_SIZE; dsbuf.dwBufferBytes = SECONDARY_BUFFER_SIZE;
dsbuf.lpwfxFormat = &format; dsbuf.lpwfxFormat = &format;
memset(&dsbcaps, 0, sizeof(dsbcaps));
dsbcaps.dwSize = sizeof(dsbcaps);
Com_DPrintf( "...creating secondary buffer: " );
dsbuf.dwFlags = DSBCAPS_LOCHARDWARE | DSBCAPS_GETCURRENTPOSITION2; dsbuf.dwFlags = DSBCAPS_LOCHARDWARE | DSBCAPS_GETCURRENTPOSITION2;
if (DS_OK != pDS->CreateSoundBuffer( &dsbuf, &pDSBuf, NULL )) { if (DS_OK == pDS->CreateSoundBuffer( &dsbuf, &pDSBuf, NULL )) {
Com_Printf( "locked hardware. ok\n" );
}
else {
// Couldn't get hardware, fallback to software.
dsbuf.dwFlags = DSBCAPS_LOCSOFTWARE | DSBCAPS_GETCURRENTPOSITION2; dsbuf.dwFlags = DSBCAPS_LOCSOFTWARE | DSBCAPS_GETCURRENTPOSITION2;
DS_INIT_ABORT_ON_ERROR( pDS->CreateSoundBuffer( &dsbuf, &pDSBuf, NULL ), "SW" ); if (DS_OK != pDS->CreateSoundBuffer( &dsbuf, &pDSBuf, NULL )) {
Com_Printf( "DirectSound: Using SW Buffers" ); Com_Printf( "failed\n" );
SNDDMA_Shutdown();
return qfalse;
}
Com_DPrintf( "forced to software. ok\n" );
} }
DS_INIT_ABORT_ON_ERROR( pDSBuf->Play( 0, 0, DSBPLAY_LOOPING ), "Play" ); // Make sure mixer is active
if ( DS_OK != pDSBuf->Play( 0, 0, DSBPLAY_LOOPING ) ) {
Com_Printf ("*** Looped sound play failed ***\n");
SNDDMA_Shutdown ();
return qfalse;
}
DSBCAPS dsbcaps; // get the returned buffer size
memset( &dsbcaps, 0, sizeof(dsbcaps) ); if ( DS_OK != pDSBuf->GetCaps(&dsbcaps) ) {
dsbcaps.dwSize = sizeof(dsbcaps); Com_Printf ("*** GetCaps failed ***\n");
DS_INIT_ABORT_ON_ERROR( pDSBuf->GetCaps(&dsbcaps), "GetCaps" ); SNDDMA_Shutdown ();
return qfalse;
}
gSndBufSize = dsbcaps.dwBufferBytes; gSndBufSize = dsbcaps.dwBufferBytes;
@ -170,64 +206,78 @@ static qbool SNDDMA_InitDS()
SNDDMA_BeginPainting(); SNDDMA_BeginPainting();
if (dma.buffer) if (dma.buffer)
memset( dma.buffer, 0, dma.samples * dma.samplebits/8 ); memset(dma.buffer, 0, dma.samples * dma.samplebits/8);
SNDDMA_Submit(); SNDDMA_Submit();
return qtrue; return qtrue;
} }
#undef DS_INIT_ABORT_ON_ERROR
qbool SNDDMA_Init(void)
qbool SNDDMA_Init()
{ {
memset( &dma, 0, sizeof(dma) );
CoInitialize(NULL); CoInitialize(NULL);
memset ((void *)&dma, 0, sizeof (dma));
if (!SNDDMA_InitDS()) { if (!SNDDMA_InitDS()) {
assert(!pDSBuf); assert(!pDSBuf);
return qfalse; return qfalse;
} }
assert(pDSBuf); assert(pDSBuf);
Com_DPrintf("Completed successfully\n" );
return qtrue; return qtrue;
} }
/* /*
==============
SNDDMA_GetDMAPos
return the current sample position (in mono samples read) return the current sample position (in mono samples read)
inside the recirculating dma buffer, so the mixing code will know inside the recirculating dma buffer, so the mixing code will know
how many sample are required to fill it up. how many sample are required to fill it up.
===============
*/ */
int SNDDMA_GetDMAPos() int SNDDMA_GetDMAPos( void ) {
{
MMTIME mmtime; MMTIME mmtime;
int s;
DWORD dwWrite; DWORD dwWrite;
mmtime.wType = TIME_SAMPLES; mmtime.wType = TIME_SAMPLES;
pDSBuf->GetCurrentPosition( &mmtime.u.sample, &dwWrite ); pDSBuf->GetCurrentPosition( &mmtime.u.sample, &dwWrite );
int s = mmtime.u.sample >> sample16; s = mmtime.u.sample;
return (s & (dma.samples-1));
s >>= sample16;
s &= (dma.samples-1);
return s;
} }
/*
==============
SNDDMA_BeginPainting
// makes sure dma.buffer is valid Makes sure dma.buffer is valid
===============
void SNDDMA_BeginPainting() */
{ void SNDDMA_BeginPainting( void ) {
int reps; int reps;
DWORD dwSize2; DWORD dwSize2;
DWORD *pbuf, *pbuf2; DWORD *pbuf, *pbuf2;
HRESULT hresult; HRESULT hresult;
DWORD dwStatus; DWORD dwStatus;
if ( !pDSBuf ) if ( !pDSBuf ) {
return; return;
}
// if the buffer was lost or stopped, restore it and/or restart it // if the buffer was lost or stopped, restore it and/or restart it
pDSBuf->GetStatus(&dwStatus); if ( pDSBuf->GetStatus(&dwStatus) != DS_OK ) {
Com_Printf ("Couldn't get sound buffer status\n");
}
if (dwStatus & DSBSTATUS_BUFFERLOST) if (dwStatus & DSBSTATUS_BUFFERLOST)
pDSBuf->Restore(); pDSBuf->Restore();
@ -245,7 +295,7 @@ void SNDDMA_BeginPainting()
if (hresult != DSERR_BUFFERLOST) if (hresult != DSERR_BUFFERLOST)
{ {
Com_Printf( "SNDDMA_BeginPainting: Lock failed with error '%s'\n", DSoundError( hresult ) ); Com_Printf( "SNDDMA_BeginPainting: Lock failed with error '%s'\n", DSoundError( hresult ) );
S_Shutdown(); S_Shutdown ();
return; return;
} }
else else
@ -259,11 +309,15 @@ void SNDDMA_BeginPainting()
dma.buffer = (unsigned char *)pbuf; dma.buffer = (unsigned char *)pbuf;
} }
/*
==============
SNDDMA_Submit
// send sound to the device if our buffer isn't really the dma buffer Send sound to device if buffer isn't really the dma buffer
// for DS, that just means signalling it with an unlock Also unlocks the dsound buffer
===============
void SNDDMA_Submit() */
void SNDDMA_Submit( void )
{ {
if ( pDSBuf ) { if ( pDSBuf ) {
pDSBuf->Unlock( dma.buffer, locksize, NULL, 0 ); pDSBuf->Unlock( dma.buffer, locksize, NULL, 0 );
@ -271,15 +325,21 @@ void SNDDMA_Submit()
} }
// reset the DS coop level if we lost focus but have now regained it /*
=================
SNDDMA_Activate
When we change windows we need to do this
=================
*/
void SNDDMA_Activate() void SNDDMA_Activate()
{ {
if ( !pDS ) if ( !pDS ) {
return; return;
}
if ( DS_OK != pDS->SetCooperativeLevel( g_wv.hWnd, DSSCL_PRIORITY ) ) { if ( DS_OK != pDS->SetCooperativeLevel( g_wv.hWnd, DSSCL_PRIORITY ) ) {
Com_Printf( "DirectSound SetCL FAILED\n" ); Com_Printf ("sound SetCooperativeLevel failed\n");
SNDDMA_Shutdown(); SNDDMA_Shutdown();
} }
} }

View file

@ -23,8 +23,6 @@ Foundation, Inc., 51 Franklin St, Fifth Floor, Boston, MA 02110-1301 USA
#include "../client/client.h" #include "../client/client.h"
#include "win_local.h" #include "win_local.h"
WinVars_t g_wv;
// Console variables that we need to access from this module // Console variables that we need to access from this module
cvar_t *vid_xpos; // X coordinate of window position cvar_t *vid_xpos; // X coordinate of window position
@ -38,7 +36,7 @@ static qbool s_alttab_disabled;
static void WIN_DisableAltTab() static void WIN_DisableAltTab()
{ {
if ( s_alttab_disabled ) //if ( s_alttab_disabled )
return; return;
if ( !Q_stricmp( Cvar_VariableString( "arch" ), "winnt" ) ) if ( !Q_stricmp( Cvar_VariableString( "arch" ), "winnt" ) )
@ -57,17 +55,17 @@ static void WIN_DisableAltTab()
static void WIN_EnableAltTab() static void WIN_EnableAltTab()
{ {
if ( s_alttab_disabled ) if ( !s_alttab_disabled )
return;
if ( !Q_stricmp( Cvar_VariableString( "arch" ), "winnt" ) )
{ {
if ( !Q_stricmp( Cvar_VariableString( "arch" ), "winnt" ) ) UnregisterHotKey( 0, 0 );
{ }
UnregisterHotKey( 0, 0 ); else
} {
else BOOL old;
{ SystemParametersInfo( SPI_SCREENSAVERRUNNING, 0, &old, 0 );
BOOL old;
SystemParametersInfo( SPI_SCREENSAVERRUNNING, 0, &old, 0 );
}
} }
s_alttab_disabled = qfalse; s_alttab_disabled = qfalse;
@ -81,7 +79,7 @@ static void VID_AppActivate( BOOL fActive, BOOL minimize )
g_wv.isMinimized = (minimize == TRUE); g_wv.isMinimized = (minimize == TRUE);
Com_DPrintf( "VID_AppActivate: %i\n", fActive ); Com_DPrintf("VID_AppActivate: %i\n", fActive );
Key_ClearStates(); // FIXME!!! Key_ClearStates(); // FIXME!!!
@ -89,34 +87,33 @@ static void VID_AppActivate( BOOL fActive, BOOL minimize )
g_wv.activeApp = (fActive && !g_wv.isMinimized); g_wv.activeApp = (fActive && !g_wv.isMinimized);
// minimize/restore mouse-capture on demand // minimize/restore mouse-capture on demand
if (!g_wv.activeApp) IN_Activate( g_wv.activeApp );
IN_Activate( qfalse );
} }
/////////////////////////////////////////////////////////////// ///////////////////////////////////////////////////////////////
static const byte s_scantokey[128] = static byte s_scantokey[128] =
{ {
// 0 1 2 3 4 5 6 7 // 0 1 2 3 4 5 6 7
// 8 9 A B C D E F // 8 9 A B C D E F
0, 27, '1', '2', '3', '4', '5', '6', 0 , 27, '1', '2', '3', '4', '5', '6',
'7', '8', '9', '0', '-', '=', K_BACKSPACE, 9, // 0 '7', '8', '9', '0', '-', '=', K_BACKSPACE, 9, // 0
'q', 'w', 'e', 'r', 't', 'y', 'u', 'i', 'q', 'w', 'e', 'r', 't', 'y', 'u', 'i',
'o', 'p', '[', ']', 13 , K_CTRL, 'a', 's', // 1 'o', 'p', '[', ']', 13 , K_CTRL,'a', 's', // 1
'd', 'f', 'g', 'h', 'j', 'k', 'l', ';', 'd', 'f', 'g', 'h', 'j', 'k', 'l', ';',
'\'', '`', K_SHIFT, '\\', 'z', 'x', 'c', 'v', // 2 '\'' , '`', K_SHIFT,'\\', 'z', 'x', 'c', 'v', // 2
'b', 'n', 'm', ',', '.', '/', K_SHIFT, '*', 'b', 'n', 'm', ',', '.', '/', K_SHIFT,'*',
K_ALT, ' ', K_CAPSLOCK, K_F1, K_F2, K_F3, K_F4, K_F5, // 3 K_ALT,' ', K_CAPSLOCK , K_F1, K_F2, K_F3, K_F4, K_F5, // 3
K_F6, K_F7, K_F8, K_F9, K_F10, K_PAUSE, 0, K_HOME, K_F6, K_F7, K_F8, K_F9, K_F10, K_PAUSE, 0 , K_HOME,
K_UPARROW,K_PGUP, K_KP_MINUS,K_LEFTARROW,K_KP_5,K_RIGHTARROW,K_KP_PLUS,K_END, //4 K_UPARROW,K_PGUP,K_KP_MINUS,K_LEFTARROW,K_KP_5,K_RIGHTARROW, K_KP_PLUS,K_END, //4
K_DOWNARROW,K_PGDN, K_INS, K_DEL, 0, 0, 0, K_F11, K_DOWNARROW,K_PGDN,K_INS,K_DEL,0,0, 0, K_F11,
K_F12,0 , 0 , 0 , 0 , K_MENU , 0 , 0, // 5 K_F12,0 , 0 , 0 , 0 , 0 , 0 , 0, // 5
0, 0, 0, 0, 0, 0, 0, 0, 0 , 0 , 0 , 0 , 0 , 0 , 0 , 0,
0, 0, 0, 0, 0, 0, 0, 0, // 6 0 , 0 , 0 , 0 , 0 , 0 , 0 , 0, // 6
0, 0, 0, 0, 0, 0, 0, 0, 0 , 0 , 0 , 0 , 0 , 0 , 0 , 0,
0, 0, 0, 0, 0, 0, 0, 0, // 7 0 , 0 , 0 , 0 , 0 , 0 , 0 , 0 // 7
}; };
/* /*
@ -193,170 +190,104 @@ static int MapKey (int key)
} }
return result; return result;
} }
if( result >= ' ' && result < 128 ) { // drakkar - do not use extended keys as normal chars
return 0;
}
} }
// drakkar
// http://support.microsoft.com/kb/226359
LRESULT CALLBACK LowLevelKeyboardProc(int nCode, WPARAM wParam, LPARAM lParam)
{
int vkCode, isDown;
if( nCode == HC_ACTION ) /*
{ ====================
vkCode = ((KBDLLHOOKSTRUCT *)lParam)->vkCode; MainWndProc
isDown = ( wParam == WM_SYSKEYDOWN || wParam == WM_KEYDOWN );
switch( vkCode ) main window procedure
{ ====================
// Disable Windows key */
case VK_LWIN:
case VK_RWIN:
Sys_QueEvent( g_wv.sysMsgTime, SE_KEY, K_WIN, isDown, 0, NULL );
return 1;
break;
// Disable XXX+TAB : ALT+TAB, SHIFT+TAB LONG WINAPI MainWndProc (
case VK_TAB: HWND hWnd,
Sys_QueEvent( g_wv.sysMsgTime, SE_KEY, K_TAB, isDown, 0, NULL ); UINT uMsg,
return 1; WPARAM wParam,
break; LPARAM lParam)
// Disable ALT+XXX : ALT+F4, ALT+TAB
case VK_LMENU:
Sys_QueEvent( g_wv.sysMsgTime, SE_KEY, K_ALT, isDown, 0, NULL );
return 1;
break;
// Disable XXX+ESC : CTRL+ESC, ALT+ESC, SHIFT+ESC
case VK_ESCAPE:
Sys_QueEvent( g_wv.sysMsgTime, SE_KEY, K_ESCAPE, isDown, 0, NULL );
return 1;
break;
}
}
return CallNextHookEx( 0, nCode, wParam, lParam );
}
// !drakkar
// drakkar
static HHOOK hHook = NULL;
void EnableLowLevelKeyboard(qbool enable)
{
if( enable )
{
if( !hHook )
{
// WH_KEYBOARD_LL -> Windows NT/2000/XP
hHook = SetWindowsHookEx( WH_KEYBOARD_LL, LowLevelKeyboardProc, g_wv.hInstance, 0 );
if( !hHook )
{
Com_Printf("Could not create key hook ( LowLevelKeyboard )\n");
}
}
}
else
{
if( hHook )
{
UnhookWindowsHookEx( hHook );
hHook = NULL;
}
}
}
// !drakkar
// drakkar
void EnableKeyboardShortcuts(qbool enable)
{
if( !g_wv.hWnd || !g_wv.activeApp )
enable = qtrue; // prevent possible bug
if( enable )
{
EnableLowLevelKeyboard( qfalse );
WIN_EnableAltTab();
}
else
{
EnableLowLevelKeyboard( qtrue );
WIN_DisableAltTab();
}
}
// !drakkar
LONG WINAPI MainWndProc( HWND hWnd, UINT uMsg, WPARAM wParam, LPARAM lParam )
{ {
switch (uMsg) switch (uMsg)
{ {
case WM_MOUSEWHEEL:
{
int i = (short)HIWORD(wParam);
// note: apparently the vista mouse driver often returns < WHEEL_DELTA
// but anyone running vista is a moron anyway, so fkit :P
if (i > 0) {
while (i >= WHEEL_DELTA) {
Sys_QueEvent( g_wv.sysMsgTime, SE_KEY, K_MWHEELUP, qtrue, 0, NULL );
Sys_QueEvent( g_wv.sysMsgTime, SE_KEY, K_MWHEELUP, qfalse, 0, NULL );
i -= WHEEL_DELTA;
}
} else {
while (i <= -WHEEL_DELTA) {
Sys_QueEvent( g_wv.sysMsgTime, SE_KEY, K_MWHEELDOWN, qtrue, 0, NULL );
Sys_QueEvent( g_wv.sysMsgTime, SE_KEY, K_MWHEELDOWN, qfalse, 0, NULL );
i += WHEEL_DELTA;
}
}
// when an application processes the WM_MOUSEWHEEL message, it must return zero
return 0;
}
break;
case WM_CREATE: case WM_CREATE:
g_wv.hWnd = hWnd; g_wv.hWnd = hWnd;
vid_xpos = Cvar_Get( "vid_xpos", "3", CVAR_ARCHIVE ); vid_xpos = Cvar_Get( "vid_xpos", "3", CVAR_ARCHIVE );
vid_ypos = Cvar_Get( "vid_ypos", "22", CVAR_ARCHIVE ); vid_ypos = Cvar_Get( "vid_ypos", "22", CVAR_ARCHIVE );
r_fullscreen = Cvar_Get( "r_fullscreen", "1", CVAR_ARCHIVE | CVAR_LATCH ); r_fullscreen = Cvar_Get( "r_fullscreen", "1", CVAR_ARCHIVE | CVAR_LATCH );
if ( r_fullscreen->integer ) if ( r_fullscreen->integer )
WIN_DisableAltTab(); WIN_DisableAltTab();
else else
WIN_EnableAltTab(); WIN_EnableAltTab();
break; break;
case WM_DESTROY: case WM_DESTROY:
// let sound and input know about this? // let sound and input know about this?
g_wv.hWnd = NULL; g_wv.hWnd = NULL;
// drakkar
EnableKeyboardShortcuts( qtrue );
// !drakkar
if ( r_fullscreen->integer ) if ( r_fullscreen->integer )
WIN_EnableAltTab(); WIN_EnableAltTab();
break; break;
// drakkar case WM_CLOSE:
case WM_SETFOCUS: Cbuf_AddText( "quit\n" );
Key_ClearStates();
re.WindowFocus( qtrue );
SNDDMA_Activate();
break; break;
case WM_KILLFOCUS:
Key_ClearStates();
re.WindowFocus( qfalse );
SNDDMA_Activate();
break;
case WM_SIZE:
if( wParam == SIZE_MINIMIZED ) Cmd_ExecuteString( "windowMode minimized\n" );
if( wParam == SIZE_MAXIMIZED ) Cmd_ExecuteString( "windowMode fullscreen\n" );
if( wParam == SIZE_RESTORED ) Cmd_ExecuteString( "windowMode windowed\n" );
break;
// !drakkar
case WM_ACTIVATE: case WM_ACTIVATE:
VID_AppActivate( (LOWORD(wParam) != WA_INACTIVE), (BOOL)HIWORD(wParam) ); VID_AppActivate( (LOWORD(wParam) != WA_INACTIVE), (BOOL)HIWORD(wParam) );
SNDDMA_Activate(); SNDDMA_Activate();
break; break;
case WM_CLOSE:
Cbuf_AddText( "quit\n" );
//break;
case WM_MOVE: case WM_MOVE:
if (!r_fullscreen->integer)
{ {
RECT rc; if (!r_fullscreen->integer )
SetRectEmpty( &rc ); {
AdjustWindowRect( &rc, GetWindowLong( hWnd, GWL_STYLE ), FALSE ); int xPos = (short)LOWORD(lParam); // horizontal position
Cvar_SetValue( "vid_xpos", (short)LOWORD(lParam) + rc.left ); int yPos = (short)HIWORD(lParam); // vertical position
Cvar_SetValue( "vid_ypos", (short)HIWORD(lParam) + rc.top );
vid_xpos->modified = qfalse; RECT r;
vid_ypos->modified = qfalse; r.left = 0;
IN_Move(); r.top = 0;
r.right = 1;
r.bottom = 1;
AdjustWindowRect( &r, GetWindowLong( hWnd, GWL_STYLE ), FALSE );
Cvar_SetValue( "vid_xpos", xPos + r.left );
Cvar_SetValue( "vid_ypos", yPos + r.top );
vid_xpos->modified = qfalse;
vid_ypos->modified = qfalse;
if ( g_wv.activeApp )
{
IN_Activate (qtrue);
}
}
} }
break; break;
@ -390,11 +321,11 @@ LONG WINAPI MainWndProc( HWND hWnd, UINT uMsg, WPARAM wParam, LPARAM lParam )
break; break;
default: default:
if (uMsg == WM_INPUT || (uMsg>=WM_MOUSEFIRST && uMsg<=WM_MOUSELAST)) // this is complicated because Win32 seems to pack multiple mouse events into
IN_Activate( g_wv.activeApp ); // one update sometimes, so we always check all states and look for events
if ( uMsg == WM_INPUT || (uMsg >= WM_MOUSEFIRST && uMsg <= WM_MOUSELAST) )
if (IN_ProcessMessage( uMsg, wParam, lParam )) if ( IN_ProcessMessage(uMsg, wParam, lParam) )
return 0; return 0;
break; break;
} }

20
code/win32/windows.h Normal file
View file

@ -0,0 +1,20 @@
#pragma once
#if defined(WINVER)
#undef WINVER
#endif
#if defined(_WIN32_WINNT)
#undef _WIN32_WINNT
#endif
#define WINVER _WIN32_WINNT_VISTA
#define _WIN32_WINNT _WIN32_WINNT_VISTA
#if defined(UNICODE)
#undef UNICODE
#endif
#if defined(_UNICODE)
#undef _UNICODE
#endif
#include <Windows.h>

531
sys/premake5.lua Normal file
View file

@ -0,0 +1,531 @@
--[[
There are only 2 build toolchains supported:
- Visual C++ on Windows
- GCC on Linux
@TODO: prevent UNICODE and _UNICODE from being #define'd with premake
@TODO: enable Minimal Rebuild from premake (instead of adding /Gm)
--]]
newoption
{
trigger = "quake3dir",
description = "Quake 3 directory path, used for copying the binaries and running the debugger"
}
if not _OPTIONS["quake3dir"] then
error "quake3dir must be specified on the command-line"
end
path_root = "../.."
path_src = path_root.."/cnq3/code"
path_build = path_root.."/.build"
path_bin = path_root.."/.bin"
os.mkdir(path_bin)
abs_path_cnq3_repo = os.realpath(path_root.."/cnq3")
abs_path_git_scripts = os.realpath(path_root.."/cnq3tools/git")
abs_path_git_header = path.getabsolute(path_root.."/cnq3/code/qcommon/git.h") -- may not exist yet
abs_path_q3 = os.realpath(_OPTIONS["quake3dir"])
abs_path_bin = os.realpath(path_bin)
local function LIN_CreateGitPreBuildCommand()
-- os.realpath is problematic on Linux
local abs_path_script = path.getabsolute(string.format("%s/create_git_header.sh", abs_path_git_scripts))
return string.format("cd \"%s\" && \"%s\" \"%s\"", abs_path_cnq3_repo, abs_path_script, abs_path_git_header)
end
local function WIN_CreateGitPreBuildCommand()
local abs_path_script = os.realpath(string.format("%s/create_git_header.cmd", abs_path_git_scripts))
return string.format("cd \"%s\" && \"%s\" \"%s\"", abs_path_cnq3_repo, abs_path_script, abs_path_git_header)
end
local function LIN_CreateExeCopyPostBuildCommand(exeName)
-- os.realpath fails on Linux due to the %{cfg.buildcfg} token
local abs_path_exe = path.getabsolute(string.format("%s/%s/%s", abs_path_bin, "%{cfg.buildcfg}", exeName))
return string.format("cp \"%s\" \"%s\"", abs_path_exe, abs_path_q3)
end
local function WIN_CreateExeCopyPostBuildCommand(exeName)
local abs_path_exe = os.realpath(string.format("%s/%s/%s.exe", abs_path_bin, "%{cfg.buildcfg}", exeName))
return string.format("copy \"%s\" \"%s\"", abs_path_exe, abs_path_q3)
end
local function WIN_CreatePdbCopyPostBuildCommand(exeName)
local abs_path_pdb = string.format("%s\\%s\\%s.pdb", abs_path_bin, "%{cfg.buildcfg}", exeName)
return string.format("copy \"%s\" \"%s\"", abs_path_pdb, abs_path_q3)
end
local function SetTargetAndLink(dirPath)
targetdir(dirPath)
libdirs(dirPath)
end
local function AddSourcesAndHeaders(dirPath)
files
{
path_src.."/"..dirPath.."/*.cpp",
path_src.."/"..dirPath.."/*.c",
path_src.."/"..dirPath.."/*.h",
}
end
local function AddSources(dirPath)
files
{
path_src.."/"..dirPath.."/*.cpp",
path_src.."/"..dirPath.."/*.c"
}
end
local function AddHeaders(dirPath)
files { path_src.."/"..dirPath.."/*.h" }
end
local function AddSourcesFromArray(sourceFiles)
for idx,path in pairs(sourceFiles) do
files { string.format("%s/%s", path_src, path) }
end
end
local function ApplyProjectSettings()
--
-- General
--
filter { }
location ( path_build.."/".._ACTION )
rtti "Off"
exceptionhandling "Off"
flags { "NoPCH", "StaticRuntime", "NoManifest", "NoNativeWChar" }
filter "configurations:debug"
defines { "DEBUG", "_DEBUG" }
flags { }
filter "configurations:release"
defines { "NDEBUG" }
flags -- others: NoIncrementalLink NoCopyLocal NoImplicitLink NoBufferSecurityChecks
{
"NoMinimalRebuild",
"OptimizeSize",
"NoFramePointer",
"EnableSSE2",
"FloatFast",
"MultiProcessorCompile",
"NoRuntimeChecks"
}
-- Build directories
filter "configurations:debug"
SetTargetAndLink ( path_bin.."/debug" )
filter "configurations:release"
SetTargetAndLink ( path_bin.."/release" )
--
-- Visual C++
--
-- Some build options:
-- /GT => Support Fiber-Safe Thread-Local Storage
-- /GS- => Buffer Security Check disabled
-- /GL => Whole Program Optimization
-- /Zi => Debug info, but not for edit and continue
-- /Os => Favor size over speed
-- /Gm => Enable Minimal Rebuild
filter "action:vs*"
symbols "On"
editandcontinue "Off"
defines { "_CRT_SECURE_NO_WARNINGS", "WIN32", "_WIN32" }
flags { "ExtraWarnings" }
filter { "action:vs*", "kind:WindowedApp" }
flags { "WinMain" }
filter { "action:vs*", "configurations:debug" }
buildoptions { "/Gm" }
linkoptions { "" }
filter { "action:vs*", "configurations:release" }
flags { "LinkTimeOptimization" } -- I had no success with GCC's -flto
buildoptions { "/GL" }
linkoptions { "" }
--
-- GCC
--
-- "-g1" is the minimum amount of debug information
-- it should be just enough to get a symbolic stack trace
filter "action:gmake"
symbols "On"
buildoptions { "-Wno-unused-parameter -Wno-write-strings" }
linkoptions { "" }
filter { "action:gmake", "configurations:rebug" }
buildoptions { "" }
linkoptions { "" }
filter { "action:gmake", "configurations:release" }
buildoptions { "-g1" }
linkoptions { "" }
end
local function ApplyLibProjectSettings()
ApplyProjectSettings()
end
local function ApplyExeProjectSettings(exeName, server)
ApplyProjectSettings()
filter { }
local server_sources =
{
"qcommon/cmd.cpp",
"qcommon/cm_load.cpp",
"qcommon/cm_patch.cpp",
"qcommon/cm_polylib.cpp",
"qcommon/cm_test.cpp",
"qcommon/cm_trace.cpp",
"qcommon/common.cpp",
"qcommon/cvar.cpp",
"qcommon/files.cpp",
"qcommon/huffman.cpp",
"qcommon/md4.cpp",
"qcommon/md5.cpp",
"qcommon/msg.cpp",
"qcommon/net_chan.cpp",
"qcommon/net_ip.cpp",
"qcommon/q_math.c",
"qcommon/q_shared.c",
"qcommon/unzip.cpp",
"qcommon/vm.cpp",
"qcommon/vm_interpreted.cpp",
"qcommon/vm_x86.cpp",
"server/sv_bot.cpp",
"server/sv_ccmds.cpp",
"server/sv_client.cpp",
"server/sv_game.cpp",
"server/sv_init.cpp",
"server/sv_main.cpp",
"server/sv_net_chan.cpp",
"server/sv_snapshot.cpp",
"server/sv_world.cpp"
}
local server_sources_windows =
{
"win32/win_main.cpp",
"win32/win_shared.cpp",
"win32/win_syscon.cpp"
}
local server_sources_unix =
{
"unix/unix_main.cpp",
"unix/unix_shared.cpp",
"unix/linux_signals.cpp"
}
local client_sources =
{
"client/cl_avi.cpp",
"client/cl_browser.cpp",
"client/cl_cgame.cpp",
"client/cl_cin.cpp",
"client/cl_console.cpp",
"client/cl_curl.cpp",
"client/cl_input.cpp",
"client/cl_keys.cpp",
"client/cl_main.cpp",
"client/cl_net_chan.cpp",
"client/cl_parse.cpp",
"client/cl_scrn.cpp",
"client/cl_ui.cpp",
"client/snd_codec.cpp",
"client/snd_codec_wav.cpp",
"client/snd_dma.cpp",
"client/snd_main.cpp",
"client/snd_mem.cpp",
"client/snd_mix.cpp",
"qcommon/cmd.cpp",
"qcommon/cm_load.cpp",
"qcommon/cm_patch.cpp",
"qcommon/cm_polylib.cpp",
"qcommon/cm_test.cpp",
"qcommon/cm_trace.cpp",
"qcommon/common.cpp",
"qcommon/cvar.cpp",
"qcommon/files.cpp",
"qcommon/huffman.cpp",
"qcommon/md4.cpp",
"qcommon/md5.cpp",
"qcommon/msg.cpp",
"qcommon/net_chan.cpp",
"qcommon/net_ip.cpp",
"qcommon/q_math.c",
"qcommon/q_shared.c",
"qcommon/unzip.cpp",
"qcommon/vm.cpp",
"qcommon/vm_interpreted.cpp",
"qcommon/vm_x86.cpp",
"server/sv_bot.cpp",
"server/sv_ccmds.cpp",
"server/sv_client.cpp",
"server/sv_game.cpp",
"server/sv_init.cpp",
"server/sv_main.cpp",
"server/sv_net_chan.cpp",
"server/sv_snapshot.cpp",
"server/sv_world.cpp"
}
local client_sources_windows =
{
"win32/win_input.cpp",
"win32/win_main.cpp",
"win32/win_shared.cpp",
"win32/win_snd.cpp",
"win32/win_syscon.cpp",
"win32/win_wndproc.cpp",
"win32/win_glimp.cpp",
"win32/win_qgl.c"
}
local client_sources_unix =
{
"unix/unix_main.cpp",
"unix/unix_shared.cpp",
"unix/linux_joystick.c",
"unix/linux_signals.cpp",
"unix/linux_qgl.c",
"unix/linux_snd.c",
"unix/linux_glimp.c"
}
AddHeaders("botlib")
AddHeaders("qcommon")
AddHeaders("server")
AddHeaders("client")
AddHeaders("cgame")
AddHeaders("game")
AddHeaders("ui")
links { "botlib" }
if (server == 1) then
AddSourcesFromArray(server_sources)
else
AddSourcesFromArray(client_sources)
includedirs { path_src.."/freetype/include" }
AddHeaders("renderer")
AddHeaders("jpeg-6")
links { "renderer", "freetype" }
end
filter { "system:windows" }
if (server == 1) then
AddSourcesFromArray(server_sources_windows)
else
AddSourcesFromArray(client_sources_windows)
end
filter { "system:not windows" }
if (server == 1) then
AddSourcesFromArray(server_sources_unix)
else
AddSourcesFromArray(client_sources_unix)
end
-- create git info header
-- copy the binaries over to the test q3 install
-- it seems that "filter" doesn't work with "prebuildcommands", "postbuildcommands"
filter { }
if os.is("windows") then
postbuildcommands { WIN_CreateExeCopyPostBuildCommand(exeName) }
postbuildcommands { WIN_CreatePdbCopyPostBuildCommand(exeName) }
prebuildcommands { WIN_CreateGitPreBuildCommand() }
else
postbuildcommands { LIN_CreateExeCopyPostBuildCommand(exeName) }
prebuildcommands { LIN_CreateGitPreBuildCommand() }
end
-- create VC++ debug settings
filter "action:vs*"
local abs_path_exe = string.format("%s\\%s.exe", abs_path_q3, exeName)
debugcommand(abs_path_exe)
if (server == 1) then
debugargs { "+set sv_pure 2 +set r_fullscreen 0" }
else
debugargs { "+set sv_pure 0 +set r_fullscreen 0" }
end
debugdir(abs_path_q3)
filter "system:windows"
links { "Winmm", "ws2_32" }
if (server == 0) then
links { "opengl32" }
end
filter "system:not windows"
buildoptions { "-pthread" }
links { "dl", "m", "pthread" }
if (server == 0) then
--links { "X11", "Xxf86dga", "Xxf86vm" }
links { "X11" }
end
-- RC will compile the .rc into a .res
-- LINK accepts .res files directly
filter "action:vs*"
linkoptions { path_src.."/win32/winquake.res", "/STACK:8388608" }
filter { "action:vs*", "configurations:release" }
linkoptions { "/OPT:REF", "/OPT:ICF" }
-- force everything to be compiled as C++ for now
-- otherwise, we run into problems (that should really be fixed)
filter "action:gmake"
buildoptions { "-x c++" }
end
solution "cnq3"
location ( path_build.."/".._ACTION )
platforms { "x32" }
configurations { "debug", "release" }
project "cnq3"
kind "WindowedApp"
language "C++"
ApplyExeProjectSettings("cnq3", 0)
project "cnq3-server"
kind "WindowedApp"
language "C++"
defines { "DEDICATED" }
ApplyExeProjectSettings("cnq3-server", 1)
project "botlib"
kind "StaticLib"
language "C++"
defines { "BOTLIB" }
AddSourcesAndHeaders("botlib")
ApplyLibProjectSettings()
project "renderer"
local jpeg_sources =
{
"jpeg-6/jcapimin.c",
"jpeg-6/jccoefct.c",
"jpeg-6/jccolor.c",
"jpeg-6/jcdctmgr.c",
"jpeg-6/jchuff.c",
"jpeg-6/jcinit.c",
"jpeg-6/jcmainct.c",
"jpeg-6/jcmarker.c",
"jpeg-6/jcmaster.c",
"jpeg-6/jcomapi.c",
"jpeg-6/jcparam.c",
"jpeg-6/jcphuff.c",
"jpeg-6/jcprepct.c",
"jpeg-6/jcsample.c",
"jpeg-6/jctrans.c",
"jpeg-6/jdapimin.c",
"jpeg-6/jdapistd.c",
"jpeg-6/jdatadst.c",
"jpeg-6/jdatasrc.c",
"jpeg-6/jdcoefct.c",
"jpeg-6/jdcolor.c",
"jpeg-6/jddctmgr.c",
"jpeg-6/jdhuff.c",
"jpeg-6/jdinput.c",
"jpeg-6/jdmainct.c",
"jpeg-6/jdmarker.c",
"jpeg-6/jdmaster.c",
"jpeg-6/jdpostct.c",
"jpeg-6/jdsample.c",
"jpeg-6/jdtrans.c",
"jpeg-6/jerror.c",
"jpeg-6/jfdctflt.c",
"jpeg-6/jidctflt.c",
"jpeg-6/jmemmgr.c",
"jpeg-6/jmemnobs.c",
"jpeg-6/jutils.c"
}
kind "StaticLib"
language "C++"
AddSourcesAndHeaders("renderer")
AddSourcesFromArray(jpeg_sources)
includedirs { path_src.."/freetype/include" }
ApplyLibProjectSettings()
filter "action:gmake"
-- We force libjpeg files to be compiled as C++.
buildoptions { "-x c++" }
project "freetype"
local ft_sources =
{
"freetype/src/base/ftbbox.c",
"freetype/src/base/ftsynth.c",
"freetype/src/base/ftbase.c",
"freetype/src/base/ftglyph.c",
"freetype/src/base/ftinit.c",
"freetype/src/base/ftstroke.c",
"freetype/src/base/ftsystem.c",
"freetype/src/sfnt/sfnt.c",
"freetype/src/smooth/smooth.c",
"freetype/src/truetype/truetype.c"
}
kind "StaticLib"
language "C"
AddSourcesFromArray(ft_sources)
includedirs { path_src.."/freetype/include" }
defines { "_LIB", "FT2_BUILD_LIBRARY", "_BIND_TO_CURRENT_VCLIBS_VERSION=1" }
ApplyLibProjectSettings()