mirror of
https://git.code.sf.net/p/quake/quake2forge
synced 2024-12-12 21:51:58 +00:00
580 lines
12 KiB
Objective-C
580 lines
12 KiB
Objective-C
#import <AppKit/AppKit.h>
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#import <Interceptor/NSDirectScreen.h>
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#import <AppKit/NSColor.h>
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#include "../ref_soft/r_local.h"
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@interface QuakeView : NSView
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@end
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NSWindow *vid_window_i;
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QuakeView *vid_view_i;
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NSDirectScreen *vid_screen;
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byte *vid_buffer; // real framebuffer
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int vid_rowbytes; // framebuffer rowbytes
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unsigned *buffernative; // 24 bit off-screen back buffer for window
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unsigned swimp_palette[256];
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typedef enum {
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rhap_shutdown,
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rhap_windowed,
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rhap_fullscreen
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} rhapMode_t;
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rhapMode_t rhap_mode;
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/*
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=======================================================================
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FULLSCREEN
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=======================================================================
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*/
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/*
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** InitFullscreen
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*/
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rserr_t InitFullscreen (int width, int height)
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{
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NSDictionary *mode, *bestMode;
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int modeWidth, bestWidth;
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int modeHeight, bestHeight;
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NSArray *modes;
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int i;
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NSString *string;
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vid_screen = [[NSDirectScreen alloc] initWithScreen:[NSScreen mainScreen]];
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// search for an apropriate mode
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modes = [vid_screen availableDisplayModes];
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bestMode = NULL;
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bestWidth = 99999;
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bestHeight = 99999;
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for (i=0 ; i<[modes count] ; i++) {
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mode = [modes objectAtIndex: i];
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string = [mode objectForKey: @"NSDirectScreenPixelEncoding"];
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if ( ![string isEqualToString: @"PPPPPPPP"] )
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continue; // only look at paletted modes
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modeWidth = [[mode objectForKey: @"NSDirectScreenWidth"] intValue];
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modeHeight = [[mode objectForKey: @"NSDirectScreenHeight"] intValue];
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if (modeWidth < width || modeHeight < height)
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continue;
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if (modeWidth < bestWidth) {
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bestWidth = modeWidth;
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bestHeight = modeHeight;
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bestMode = mode;
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}
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}
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// if there wasn't any paletted mode of that res or greater, fail
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if (!bestMode)
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return rserr_invalid_fullscreen;
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ri.Con_Printf (PRINT_ALL, "SheildDisplay\n");
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[vid_screen shieldDisplay];
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// hide the cursor in all fullscreen modes
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[NSCursor hide];
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vid_window_i = [vid_screen shieldingWindow];
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ri.Con_Printf (PRINT_ALL, "switchToDisplayMode\n");
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[vid_screen switchToDisplayMode:bestMode];
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// [vid_screen fadeDisplayOutToColor:[NSColor blackColor]];
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// [vid_screen fadeDisplayInFromColor:[NSColor blackColor]];
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vid_buffer = [vid_screen data];
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vid_rowbytes = [vid_screen bytesPerRow];
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return rserr_ok;
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}
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void ShutdownFullscreen (void)
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{
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[vid_screen dealloc];
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[NSCursor unhide];
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}
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void SetPaletteFullscreen (const unsigned char *palette) {
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#if 0
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byte *p;
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int i;
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NSDirectPalette *pal;
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pal = [NSDirectPalette init];
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for (i=0 ; i<256 ; i++)
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[pal setRed: palette[0]*(1.0/255)
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green: palette[1]*(1.0/255)
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blue: palette[2]*(1.0/255)
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atIndex: i];
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[vid_screen setPalette: pal];
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[pal release];
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#endif
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}
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void BlitFullscreen (void)
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{
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int i, j;
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int w;
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int *dest, *source;
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w = vid.width>>2;
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source = (int *)vid.buffer; // off-screen buffer
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dest = (int *)vid_buffer; // directly on screen
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for (j=0 ; j<vid.height ; j++
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, source += (vid.rowbytes>>2), dest += (vid_rowbytes>>2) ) {
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for (i=0 ; i<w ; i++ ) {
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dest[i] = source[i];
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}
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}
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}
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/*
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=======================================================================
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WINDOWED
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=======================================================================
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*/
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/*
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** InitWindowed
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*/
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rserr_t InitWindowed (int width, int height)
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{
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rserr_t retval = rserr_ok;
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NSRect content;
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cvar_t *vid_xpos;
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cvar_t *vid_ypos;
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//
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// open a window
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//
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vid_xpos = ri.Cvar_Get ("vid_xpos", "0", 0);
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vid_ypos = ri.Cvar_Get ("vid_ypos", "0", 0);
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content = NSMakeRect (vid_xpos->value,vid_ypos->value, width, height);
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vid_window_i = [[NSWindow alloc]
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initWithContentRect: content
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styleMask: NSTitledWindowMask
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backing: NSBackingStoreRetained
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defer: NO
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];
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// [vid_window_i addToEventMask: NS_FLAGSCHANGEDMASK];
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[vid_window_i setTitle: @"Quake2"];
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buffernative = malloc(width * height * 4);
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return retval;
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}
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void ShutdownWindowed (void)
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{
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if (vid_window_i)
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{
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[vid_window_i release];
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vid_window_i = NULL;
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}
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if (buffernative)
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{
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free (buffernative);
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buffernative = NULL;
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}
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}
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void SetPaletteWindowed (const unsigned char *palette) {
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byte *p;
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int i;
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p = (byte *)swimp_palette;
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for (i=0 ; i<256 ; i++, p+=4, palette+=4)
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{
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p[0] = palette[0];
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p[1] = palette[1];
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p[2] = palette[2];
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p[3] = 0xff;
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}
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}
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void BlitWindowed (void)
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{
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int i, c;
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int bps, spp, bpp, bpr;
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unsigned char *planes[5];
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NSRect bounds;
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if (!vid_view_i)
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return;
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// translate to 24 bit color
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c = vid.width*vid.height;
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for (i=0 ; i<c ; i++)
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buffernative[i] = swimp_palette[vid.buffer[i]];
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bps = 8;
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spp = 3;
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bpp = 32;
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bpr = vid.width * 4;
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planes[0] = (unsigned char *)buffernative;
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bounds = [vid_view_i bounds];
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[vid_view_i lockFocus];
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NSDrawBitmap(
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bounds,
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vid.width,
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vid.height,
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bps,
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spp,
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bpp,
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bpr,
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NO,
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NO,
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@"NSDeviceRGBColorSpace",
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planes
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);
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[vid_view_i unlockFocus];
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PSWait ();
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}
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//======================================================================
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/*
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** RW_IMP.C
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**
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** This file contains ALL Win32 specific stuff having to do with the
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** software refresh. When a port is being made the following functions
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** must be implemented by the port:
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**
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** SWimp_EndFrame
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** SWimp_Init
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** SWimp_SetPalette
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** SWimp_Shutdown
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*/
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/*
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** SWimp_Init
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**
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** This routine is responsible for initializing the implementation
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** specific stuff in a software rendering subsystem.
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*/
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int SWimp_Init( void *hInstance, void *wndProc )
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{
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if (!NSApp)
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{
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[NSApplication sharedApplication];
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[NSApp finishLaunching];
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}
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return true;
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}
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/*
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** SWimp_SetMode
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*/
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rserr_t SWimp_SetMode( int *pwidth, int *pheight, int mode, qboolean fullscreen)
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{
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const char *win_fs[] = { "W", "FS" };
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NSRect content;
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rserr_t ret;
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// free resources in use
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SWimp_Shutdown ();
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ri.Con_Printf (PRINT_ALL, "setting mode %d:", mode );
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if ( !ri.Vid_GetModeInfo( pwidth, pheight, mode ) )
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{
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ri.Con_Printf( PRINT_ALL, " invalid mode\n" );
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return rserr_invalid_mode;
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}
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ri.Con_Printf( PRINT_ALL, " %d %d %s\n", *pwidth, *pheight, win_fs[fullscreen] );
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vid.buffer = malloc(*pwidth * *pheight);
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vid.rowbytes = *pwidth;
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if (fullscreen) {
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rhap_mode = rhap_fullscreen;
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ret = InitFullscreen (*pwidth, *pheight);
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} else {
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rhap_mode = rhap_windowed;
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ret = InitWindowed (*pwidth, *pheight);
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}
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if (ret != rserr_ok) {
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SWimp_Shutdown ();
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return ret;
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}
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/*
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** the view is identical in windowed and fullscreen modes
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*/
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content.origin.x = content.origin.y = 0;
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content.size.width = *pwidth;
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content.size.height = *pheight;
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vid_view_i = [[QuakeView alloc] initWithFrame: content];
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[vid_window_i setContentView: vid_view_i];
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[vid_window_i makeFirstResponder: vid_view_i];
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[vid_window_i setDelegate: vid_view_i];
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[NSApp activateIgnoringOtherApps: YES];
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[vid_window_i makeKeyAndOrderFront: nil];
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[vid_window_i display];
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return ret;
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}
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/*
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** SWimp_Shutdown
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**
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** System specific graphics subsystem shutdown routine
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*/
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void SWimp_Shutdown( void )
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{
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if (rhap_mode == rhap_windowed)
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ShutdownWindowed ();
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else if (rhap_mode == rhap_fullscreen)
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ShutdownFullscreen ();
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rhap_mode = rhap_shutdown;
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if (vid.buffer)
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{
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free (vid.buffer);
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vid.buffer = NULL;
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}
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}
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/*
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** SWimp_SetPalette
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**
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** System specific palette setting routine. A NULL palette means
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** to use the existing palette. The palette is expected to be in
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** a padded 4-byte xRGB format.
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*/
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void SWimp_SetPalette( const unsigned char *palette )
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{
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if (rhap_mode == rhap_windowed)
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SetPaletteWindowed (palette);
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else if (rhap_mode == rhap_fullscreen)
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SetPaletteFullscreen (palette);
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}
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/*
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** SWimp_EndFrame
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**
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** This does an implementation specific copy from the backbuffer to the
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** front buffer. In the Win32 case it uses BitBlt or BltFast depending
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** on whether we're using DIB sections/GDI or DDRAW.
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*/
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void SWimp_EndFrame (void)
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{
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if (rhap_mode == rhap_windowed)
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BlitWindowed ();
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else if (rhap_mode == rhap_fullscreen)
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BlitFullscreen ();
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}
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/*
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** SWimp_AppActivate
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*/
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void SWimp_AppActivate( qboolean active )
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{
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}
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/*
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==========================================================================
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NEXTSTEP VIEW CLASS
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==========================================================================
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*/
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#include "../client/keys.h"
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void IN_ActivateMouse (void);
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void IN_DeactivateMouse (void);
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@implementation QuakeView
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-(BOOL) acceptsFirstResponder
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{
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return YES;
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}
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- (void)windowDidMove: (NSNotification *)note
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{
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NSRect r;
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r = [vid_window_i frame];
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ri.Cmd_ExecuteText (EXEC_NOW, va("vid_xpos %i", (int)r.origin.x+1));
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ri.Cmd_ExecuteText (EXEC_NOW, va("vid_ypos %i", (int)r.origin.y+1));
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}
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- (void)becomeKeyWindow
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{
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IN_ActivateMouse ();
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}
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- (void)resignKeyWindow
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{
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IN_DeactivateMouse ();
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}
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typedef struct
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{
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int source, dest;
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} keymap_t;
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keymap_t keymaps[] =
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{
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{0xf703, K_RIGHTARROW},
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{0xf702, K_LEFTARROW},
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{0xf700, K_UPARROW},
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{0xf701, K_DOWNARROW},
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{0xf704, K_F1},
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{0xf705, K_F2},
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{0xf706, K_F3},
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{0xf707, K_F4},
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{0xf708, K_F5},
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{0xf709, K_F6},
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{0xf70a, K_F7},
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{0xf70b, K_F8},
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{0xf70c, K_F9},
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{0xf70d, K_F10},
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{0xf70e, K_F11},
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{0xf70f, K_F12},
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{-1,-1}
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};
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keymap_t flagmaps[] =
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{
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{NSShiftKeyMask, K_SHIFT},
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{NSControlKeyMask, K_CTRL},
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{NSAlternateKeyMask, K_ALT},
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{NSCommandKeyMask, K_ALT},
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{-1,-1}
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};
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- (void)mouseDown:(NSEvent *)theEvent
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{
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Key_Event (K_MOUSE1, true, 0);
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}
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- (void)mouseUp:(NSEvent *)theEvent
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{
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Key_Event (K_MOUSE1, false, 0);
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}
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- (void)rightMouseDown:(NSEvent *)theEvent
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{
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Key_Event (K_MOUSE2, true, 0);
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}
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- (void)rightMouseUp:(NSEvent *)theEvent
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{
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Key_Event (K_MOUSE2, false, 0);
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}
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/*
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===================
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keyboard methods
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===================
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*/
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- (void)keyDown:(NSEvent *)theEvent
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{
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int ch;
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keymap_t *km;
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// PSobscurecursor ();
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ch = [[theEvent charactersIgnoringModifiers] characterAtIndex:0];
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// check for non-ascii first
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for (km=keymaps;km->source!=-1;km++)
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if (ch == km->source)
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{
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Key_Event (km->dest, true, 0);
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return;
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}
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if (ch >= 'A' && ch <= 'Z')
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ch += 'a' - 'A';
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if (ch>=256)
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return;
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Key_Event (ch, true, 0);
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}
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- (void)flagsChanged:(NSEvent *)theEvent
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{
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static int oldflags;
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int newflags;
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int delta;
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keymap_t *km;
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int i;
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// PSobscurecursor ();
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newflags = [theEvent modifierFlags];
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delta = newflags ^ oldflags;
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for (i=0 ; i<32 ; i++)
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{
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if ( !(delta & (1<<i)))
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continue;
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// changed
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for (km=flagmaps;km->source!=-1;km++)
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if ( (1<<i) == km->source)
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{
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if (newflags & (1<<i))
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Key_Event (km->dest, true, 0);
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else
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Key_Event (km->dest, false, 0);
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}
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}
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oldflags = newflags;
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}
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- (void)keyUp:(NSEvent *)theEvent
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{
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int ch;
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keymap_t *km;
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ch = [[theEvent charactersIgnoringModifiers] characterAtIndex:0];
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// check for non-ascii first
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for (km=keymaps;km->source!=-1;km++)
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if (ch == km->source)
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{
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Key_Event (km->dest, false, 0);
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return;
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}
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if (ch >= 'A' && ch <= 'Z')
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ch += 'a' - 'A';
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if (ch>=256)
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return;
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Key_Event (ch, false, 0);
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}
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@end
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