346 lines
8.5 KiB
C++
346 lines
8.5 KiB
C++
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//macscreen.cpp
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//mac-specific code to access the screen device
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#include <QuickTime/QuickTime.h>
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#include <AGL/AGL.h>
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#include "screen.h"
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#include "config.h"
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#include "error.h"
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#include "textures.h"
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AGLContext gOpenGLContext=NULL;
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AGLContext SetupAGL( AGLDrawable window,GLint *attrib,int width, int height)
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{
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AGLPixelFormat format;
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AGLContext context;
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GLboolean ok;
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GLint attrib2[256];
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GDHandle screen;
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if(window)
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screen=GetGWorldDevice((GWorldPtr)window);
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else
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screen=DMGetFirstScreenDevice(true);
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if(window==NULL)
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{
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int i=0;
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while(attrib[i]!=AGL_NONE)
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attrib2[i++]=attrib[i];
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attrib2[i++]=AGL_FULLSCREEN;
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//attrib2[i++]=AGL_NO_RECOVERY;
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attrib2[i++]=AGL_NONE;
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attrib=attrib2;
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}
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// Choose an rgb pixel format
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format = aglChoosePixelFormat( &screen, 1, attrib );
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if ( format == NULL )
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{
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printf("aglChoosePixelFormat: %s\n",aglErrorString(aglGetError()));
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return NULL;
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}
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// Create an AGL context
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context = aglCreateContext( format, gOpenGLContext );
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if ( context == NULL )
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{
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printf("aglCreateContext: %s\n",aglErrorString(aglGetError()));
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return NULL;
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}
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if(window){
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ok = aglSetDrawable(context,window);
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if ( !ok )
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{
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printf("aglSetDrawable: %s\n",aglErrorString(aglGetError()));
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return NULL;
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}
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}
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else{
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ok = aglSetFullScreen (context,width,height,75,0);
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if ( !ok )
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{
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ok = aglSetFullScreen (context,640,480,75,0);
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if ( !ok )
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{
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printf("aglSetFullScreen: %s\n",aglErrorString(aglGetError()));
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return NULL;
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}
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}
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}
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// Make the context the current context
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ok = aglSetCurrentContext( context );
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if ( !ok )
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{
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printf("aglSetCurrentContext: %s\n",aglErrorString(aglGetError()));
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return NULL;
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}
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// The pixel format is no longer needed so get rid of it
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aglDestroyPixelFormat( format );
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return context;
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}
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//Initialize an OpenGL context using AGL
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void InitGLContext()
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{
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CGrafPtr theScreen=NULL;
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//is fullscreen mode enabled?
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if(gConfig->fullscreen)
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theScreen=NULL;
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else
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{
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//get a Window Context
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Rect boundsRect;
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if(gConfig->windowY<40)
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gConfig->windowY=40;
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SetRect(&boundsRect,gConfig->windowX,gConfig->windowY,gConfig->windowX+gConfig->screenXSize,gConfig->windowY+gConfig->screenYSize);
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WindowRef win=NewCWindow(0,&boundsRect,"\pRedline",true,0,(WindowRef)-1L,false,0);
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if(!RectInRgn(&boundsRect,GetGrayRgn()))
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MoveWindow(win,40,40,true);
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theScreen=GetWindowPort(win);
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SetPort(theScreen);
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GetPortBounds(theScreen,&boundsRect);
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Pattern black;
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GetQDGlobalsBlack(&black);
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FillRect(&boundsRect,&black);
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HIWindowFlush(FrontWindow());
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}
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// Setup the OpenGL context
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AGLContext ctx;
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if(gConfig->fsaa)
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{
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GLint attrib[] = { AGL_RGBA, AGL_PIXEL_SIZE, gConfig->color32Bit?32:16,AGL_NO_RECOVERY,AGL_DOUBLEBUFFER, AGL_STENCIL_SIZE, 8,AGL_SAMPLE_BUFFERS_ARB,1,AGL_SAMPLES_ARB,gConfig->fsaa, AGL_NONE};
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// GLint attrib[] = { AGL_RGBA, AGL_PIXEL_SIZE, gConfig->color32Bit?32:16,AGL_DOUBLEBUFFER, AGL_STENCIL_SIZE, 8,AGL_SAMPLE_BUFFERS_ARB,1,AGL_SAMPLES_ARB,gConfig->fsaa, AGL_NONE};
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ctx=SetupAGL((AGLDrawable)theScreen,attrib,gConfig->screenXSize,gConfig->screenYSize);
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}
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else
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{
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GLint attrib[] = { AGL_RGBA, AGL_PIXEL_SIZE, gConfig->color32Bit?32:16,AGL_NO_RECOVERY,AGL_DOUBLEBUFFER, AGL_STENCIL_SIZE, 8, AGL_NONE};
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// GLint attrib[] = { AGL_RGBA, AGL_PIXEL_SIZE, gConfig->color32Bit?32:16,AGL_DOUBLEBUFFER, AGL_STENCIL_SIZE, 8, AGL_NONE};
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ctx=SetupAGL((AGLDrawable)theScreen,attrib,gConfig->screenXSize,gConfig->screenYSize);
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}
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if(!ctx)
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{
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if(gConfig->fullscreen)
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{
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gConfig->fullscreen=false;
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InitGLContext();
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}
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else
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FailWithErrorString("Couldn't Create Screen");
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}
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else
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{
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if(gOpenGLContext)
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aglDestroyContext(gOpenGLContext);
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gOpenGLContext=ctx;
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}
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}
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static int numberForKey( CFDictionaryRef desc, CFStringRef key )
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{
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CFNumberRef value;
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int num = 0;
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if ( (value = (CFNumberRef)CFDictionaryGetValue(desc, key)) == NULL )
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return 0;
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CFNumberGetValue(value, kCFNumberIntType, &num);
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return num;
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}
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void ScreenGetModes()
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{
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CFArrayRef modeList;
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CFIndex i, cnt;
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gVideoNumModes=0;
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modeList = CGDisplayAvailableModes(kCGDirectMainDisplay);
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if ( modeList == NULL )
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{
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printf( "Display is invalid\n" );
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exit(1);
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}
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cnt = CFArrayGetCount(modeList);
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for ( i = 0; i < cnt; ++i )
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{
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CFDictionaryRef desc = (CFDictionaryRef)CFArrayGetValueAtIndex(modeList, i);
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int depth=numberForKey(desc, kCGDisplayBitsPerPixel);
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if(depth==32&&gVideoNumModes<kMaxModes)
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{
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int height=numberForKey(desc, kCGDisplayHeight);
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int width=numberForKey(desc, kCGDisplayWidth);
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int freq=numberForKey(desc, kCGDisplayRefreshRate);
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int exists=false;
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for(int j=0;j<gVideoNumModes;j++)
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if(gVideoModes[j].height==height&&gVideoModes[j].width==width)
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{
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if(freq<gVideoModes[j].freq&&freq>=60)
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gVideoModes[j].freq=freq;
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exists=true;
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}
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if(!exists)
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{
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gVideoModes[gVideoNumModes].height=height;
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gVideoModes[gVideoNumModes].width=width;
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gVideoModes[gVideoNumModes].freq=freq;
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gVideoNumModes++;
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}
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}
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}
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for(int i=0;i<gVideoNumModes;i++)
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for(int j=0;j<gVideoNumModes-1-i;j++)
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if(gVideoModes[j].width<gVideoModes[j+1].width||(gVideoModes[j].width==gVideoModes[j+1].width&&gVideoModes[j].height<gVideoModes[j+1].height))
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{
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tVideoMode tmp=gVideoModes[j];
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gVideoModes[j]=gVideoModes[j+1];
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gVideoModes[j+1]=tmp;
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}
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}
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void ScreenExit()
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{
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#ifndef __TARGET_TOOLAPP
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aglSetDrawable(gOpenGLContext,NULL);
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if(FrontWindow())
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DisposeWindow(FrontWindow());
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InitCursor();
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#endif
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}
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//Swap front- and backbuffer
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void ScreenBlit()
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{
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aglSwapBuffers(gOpenGLContext);
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}
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int GetVRAMSize()
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{
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char str[256];
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AGLRendererInfo info, head_info;
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GLint inum;
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GLint dAccel = 0;
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GLint dVRAM = 0, dMaxVRAM = 0;
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AGLDevice gd=GetMainDevice();
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head_info = aglQueryRendererInfo(&gd, 1);
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if(!head_info)
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return 0;
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info = head_info;
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inum = 0;
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// see if we have an accelerated renderer, if so ignore non-accelerated ones
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// this prevents returning info on software renderer when actually we'll get the hardware one
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while (info)
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{
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aglDescribeRenderer (info, AGL_ACCELERATED, &dAccel);
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// if we can accel then we will choose the accelerated renderer
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// how about compliant renderers???
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if (dAccel)
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{
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aglDescribeRenderer (info, AGL_VIDEO_MEMORY, &dVRAM); // we assume that VRAM returned is total thus add texture and VRAM required
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if (dVRAM >= dMaxVRAM) // find card with max VRAM
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dMaxVRAM = dVRAM; // store max
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}
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info = aglNextRendererInfo(info);
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inum++;
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}
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// aglDestroyRendererInfo(head_info);
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return dVRAM;
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}
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int ScreenSupportsTextureCompression()
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{
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static int result=-1;
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if(result==-1)
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{
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char* extensions=(char*)glGetString(GL_EXTENSIONS);
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result=strstr(extensions,"GL_EXT_texture_compression_s3tc")?true:false;
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long resp;
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Gestalt(gestaltSystemVersion,&resp);
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if(resp<0x00001030)
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{
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//GeForce Texture compression seems buggy in 10.2.8
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char* renderer=(char*)glGetString(GL_RENDERER);
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if (strstr(renderer,"GeForce"))
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result=false;
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}
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}
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return result;
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}
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int ScreenSupportsAnisotropicFiltering()
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{
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static int result=-1;
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if(result==-1)
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{
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char* extensions=(char*)glGetString(GL_EXTENSIONS);
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result=strstr(extensions,"GL_EXT_texture_filter_anisotropic")?true:false;
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char* renderer=(char*)glGetString(GL_RENDERER);
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//GeForce 5200 bug
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if (strstr (renderer, "NV34MAP") || (strstr (renderer , "GeForce") && strstr (renderer, "5200")))
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result=false;
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}
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return result;
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}
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int ScreenSupports3DTextures()
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{
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static int result=-1;
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if(result==-1)
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{
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/*
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char* extensions=(char*)glGetString(GL_EXTENSIONS);
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result=strstr(extensions,"GL_EXT_texture3D")?true:false;
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*/
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result=true; //built-in in GL 1.2 or higher.
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char* renderer=(char*)glGetString(GL_RENDERER);
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printf("Renderer: %s\n",renderer);
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//GeForce 2 only has software 3d textures (? - according to unity)
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if (strstr (renderer, "GeForce") && !(strstr (renderer , "TI") || strstr (renderer, "FX")))
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result=false;
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//same with Rage128
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if (strstr (renderer, "Rage") && strstr (renderer, "128"))
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result=false;
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}
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return result;
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}
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int ScreenSupportsBlendColor()
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{
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static int result=-1;
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if(result==-1)
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{
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char* extensions=(char*)glGetString(GL_EXTENSIONS);
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result=strstr(extensions,"GL_ARB_imaging")?true:false;
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}
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return result;
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}
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int ScreenNoBigTextures()
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{
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static int result=-1;
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if(result==-1)
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result=GetVRAMSize()<=1024*1024*8;
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return result;
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}
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int ScreenNoWindow()
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{
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static int result=-1;
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if(result==-1)
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{
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long resp;
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Gestalt(gestaltSystemVersion,&resp);
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result=(resp<0x00001030);
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}
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return result;
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}
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