mirror of
https://git.code.sf.net/p/quake/quakeforge
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bc1b483525
It's pretty useless in git.
812 lines
18 KiB
C
812 lines
18 KiB
C
/*
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vid_x11.c
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General X11 video driver
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Copyright (C) 1996-1997 Id Software, Inc.
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Copyright (C) 1999-2000 contributors of the QuakeForge project
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Copyright (C) 2000 Marcus Sundberg [mackan@stacken.kth.se]
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Copyright (C) 1999,2000 contributors of the QuakeForge project
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Please see the file "AUTHORS" for a list of contributors
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This program is free software; you can redistribute it and/or
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modify it under the terms of the GNU General Public License
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as published by the Free Software Foundation; either version 2
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of the License, or (at your option) any later version.
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This program is distributed in the hope that it will be useful,
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but WITHOUT ANY WARRANTY; without even the implied warranty of
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MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.
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See the GNU General Public License for more details.
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You should have received a copy of the GNU General Public License
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along with this program; if not, write to:
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Free Software Foundation, Inc.
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59 Temple Place - Suite 330
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Boston, MA 02111-1307, USA
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*/
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#define _BSD
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#ifdef HAVE_CONFIG_H
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# include "config.h"
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#endif
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#ifdef HAVE_STRING_H
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# include <string.h>
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#endif
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#ifdef HAVE_STRINGS_H
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# include <strings.h>
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#endif
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#ifdef HAVE_UNISTD_H
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# include <unistd.h>
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#endif
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#include <ctype.h>
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#include <dlfcn.h>
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#include <errno.h>
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#include <limits.h>
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#include <stdio.h>
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#include <stdlib.h>
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#include <sys/ipc.h>
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#include <sys/shm.h>
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#include <sys/time.h>
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#include <sys/types.h>
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#include <X11/Xatom.h>
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#include <X11/Xlib.h>
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#include <X11/Xutil.h>
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#include <X11/keysym.h>
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#include <X11/extensions/XShm.h>
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#ifdef HAVE_VIDMODE
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# include <X11/extensions/xf86vmode.h>
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#endif
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#include "QF/cmd.h"
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#include "QF/console.h"
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#include "QF/cvar.h"
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#include "QF/qargs.h"
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#include "QF/qendian.h"
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#include "QF/screen.h"
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#include "QF/sys.h"
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#include "QF/va.h"
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#include "compat.h"
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#include "context_x11.h"
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#include "d_iface.h"
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#include "dga_check.h"
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#include "vid_internal.h"
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int XShmGetEventBase (Display *x); // for broken X11 headers
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static GC x_gc;
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static qboolean doShm;
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static XShmSegmentInfo x_shminfo[2];
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static int current_framebuffer;
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static XImage *x_framebuffer[2] = { 0, 0 };
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int VID_options_items = 1;
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static byte current_palette[768];
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typedef unsigned char PIXEL8;
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typedef unsigned short PIXEL16;
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typedef unsigned int PIXEL24;
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static PIXEL16 st2d_8to16table[256];
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static PIXEL24 st2d_8to24table[256];
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static int shiftmask_fl = 0;
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static long r_shift, g_shift, b_shift;
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static unsigned long r_mask, g_mask, b_mask;
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#define GLX_RGBA 4 // true if RGBA mode
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#define GLX_DOUBLEBUFFER 5 // double buffering supported
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#define GLX_RED_SIZE 8 // number of red component bits
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#define GLX_GREEN_SIZE 9 // number of green component bits
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#define GLX_BLUE_SIZE 10 // number of blue component bits
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#define GLX_DEPTH_SIZE 12 // number of depth bits
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// GLXContext is a pointer to opaque data
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typedef struct __GLXcontextRec *GLXContext;
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typedef XID GLXDrawable;
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// Define GLAPIENTRY to a useful value
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#ifndef GLAPIENTRY
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# ifdef _WIN32
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# include <windows.h>
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# define GLAPIENTRY WINAPI
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# undef LoadImage
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# else
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# ifdef APIENTRY
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# define GLAPIENTRY APIENTRY
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# else
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# define GLAPIENTRY
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# endif
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# endif
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#endif
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static GLXContext ctx = NULL;
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static void *libgl_handle;
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static void (*qfglXSwapBuffers) (Display *dpy, GLXDrawable drawable);
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static XVisualInfo* (*qfglXChooseVisual) (Display *dpy, int screen,
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int *attribList);
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static GLXContext (*qfglXCreateContext) (Display *dpy, XVisualInfo *vis,
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GLXContext shareList, Bool direct);
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static Bool (*qfglXMakeCurrent) (Display *dpy, GLXDrawable drawable,
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GLXContext ctx);
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static void (GLAPIENTRY *qfglFinish) (void);
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static void *(*glGetProcAddress) (const char *symbol) = NULL;
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static int use_gl_procaddress = 0;
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static cvar_t *gl_driver;
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static void (*choose_visual) (void);
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static void (*create_context) (void);
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static void *
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QFGL_GetProcAddress (void *handle, const char *name)
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{
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void *glfunc = NULL;
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if (use_gl_procaddress && glGetProcAddress)
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glfunc = glGetProcAddress (name);
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if (!glfunc)
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glfunc = dlsym (handle, name);
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return glfunc;
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}
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static void *
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QFGL_ProcAddress (const char *name, qboolean crit)
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{
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void *glfunc = NULL;
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Sys_MaskPrintf (SYS_VID, "DEBUG: Finding symbol %s ... ", name);
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glfunc = QFGL_GetProcAddress (libgl_handle, name);
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if (glfunc) {
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Sys_MaskPrintf (SYS_VID, "found [%p]\n", glfunc);
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return glfunc;
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}
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Sys_MaskPrintf (SYS_VID, "not found\n");
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if (crit) {
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if (strncmp ("fxMesa", name, 6) == 0) {
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Sys_Printf ("This target requires a special version of Mesa with "
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"support for Glide and SVGAlib.\n");
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Sys_Printf ("If you are in X, try using a GLX or SGL target.\n");
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}
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Sys_Error ("Couldn't load critical OpenGL function %s, exiting...",
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name);
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}
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return NULL;
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}
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static void
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glx_choose_visual (void)
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{
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int attrib[] = {
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GLX_RGBA,
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GLX_RED_SIZE, 1,
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GLX_GREEN_SIZE, 1,
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GLX_BLUE_SIZE, 1,
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GLX_DOUBLEBUFFER,
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GLX_DEPTH_SIZE, 1,
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None
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};
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x_visinfo = qfglXChooseVisual (x_disp, x_screen, attrib);
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if (!x_visinfo) {
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Sys_Error ("Error couldn't get an RGB, Double-buffered, Depth visual");
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}
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x_vis = x_visinfo->visual;
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}
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static void
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glx_create_context (void)
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{
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XSync (x_disp, 0);
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ctx = qfglXCreateContext (x_disp, x_visinfo, NULL, True);
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qfglXMakeCurrent (x_disp, x_win, ctx);
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viddef.init_gl ();
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}
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static void
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glx_end_rendering (void)
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{
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qfglFinish ();
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qfglXSwapBuffers (x_disp, x_win);
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}
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static void
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glx_load_gl (void)
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{
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int flags = RTLD_NOW;
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choose_visual = glx_choose_visual;
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create_context = glx_create_context;
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viddef.get_proc_address = QFGL_ProcAddress;
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viddef.end_rendering = glx_end_rendering;
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#ifdef RTLD_GLOBAL
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flags |= RTLD_GLOBAL;
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#endif
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if (!(libgl_handle = dlopen (gl_driver->string, flags))) {
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Sys_Error ("Couldn't load OpenGL library %s: %s", gl_driver->string,
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dlerror ());
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}
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glGetProcAddress = dlsym (libgl_handle, "glXGetProcAddress");
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if (!glGetProcAddress)
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glGetProcAddress = dlsym (libgl_handle, "glXGetProcAddressARB");
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qfglXSwapBuffers = QFGL_ProcAddress ("glXSwapBuffers", true);
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qfglXChooseVisual = QFGL_ProcAddress ("glXChooseVisual", true);
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qfglXCreateContext = QFGL_ProcAddress ("glXCreateContext", true);
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qfglXMakeCurrent = QFGL_ProcAddress ("glXMakeCurrent", true);
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use_gl_procaddress = 1;
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qfglFinish = QFGL_ProcAddress ("glFinish", true);
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}
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static void
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shiftmask_init (void)
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{
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unsigned long long x;
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r_mask = x_vis->red_mask;
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g_mask = x_vis->green_mask;
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b_mask = x_vis->blue_mask;
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for (r_shift = -8, x = 1; x < r_mask; x <<= 1)
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r_shift++;
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for (g_shift = -8, x = 1; x < g_mask; x <<= 1)
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g_shift++;
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for (b_shift = -8, x = 1; x < b_mask; x <<= 1)
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b_shift++;
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shiftmask_fl = 1;
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}
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static PIXEL16
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xlib_rgb16 (int r, int g, int b)
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{
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PIXEL16 p = 0;
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if (!shiftmask_fl)
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shiftmask_init ();
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if (r_shift > 0) {
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p = (r << (r_shift)) & r_mask;
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} else {
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if (r_shift < 0) {
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p = (r >> (-r_shift)) & r_mask;
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} else {
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p |= (r & r_mask);
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}
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}
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if (g_shift > 0) {
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p |= (g << (g_shift)) & g_mask;
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} else {
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if (g_shift < 0) {
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p |= (g >> (-g_shift)) & g_mask;
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} else {
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p |= (g & g_mask);
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}
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}
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if (b_shift > 0) {
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p |= (b << (b_shift)) & b_mask;
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} else {
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if (b_shift < 0) {
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p |= (b >> (-b_shift)) & b_mask;
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} else {
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p |= (b & b_mask);
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}
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}
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return p;
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}
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static PIXEL24
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xlib_rgb24 (int r, int g, int b)
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{
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PIXEL24 p = 0;
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if (!shiftmask_fl)
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shiftmask_init ();
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if (r_shift > 0) {
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p = (r << (r_shift)) & r_mask;
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} else {
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if (r_shift < 0) {
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p = (r >> (-r_shift)) & r_mask;
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} else {
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p |= (r & r_mask);
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}
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}
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if (g_shift > 0) {
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p |= (g << (g_shift)) & g_mask;
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} else {
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if (g_shift < 0) {
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p |= (g >> (-g_shift)) & g_mask;
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} else {
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p |= (g & g_mask);
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}
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}
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if (b_shift > 0) {
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p |= (b << (b_shift)) & b_mask;
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} else {
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if (b_shift < 0) {
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p |= (b >> (-b_shift)) & b_mask;
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} else {
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p |= (b & b_mask);
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}
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}
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return p;
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}
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static void
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st2_fixup (XImage *framebuf, int x, int y, int width, int height)
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{
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int xi, yi;
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unsigned char *src;
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PIXEL16 *dest;
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if (x < 0 || y < 0)
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return;
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for (yi = y; yi < (y + height); yi++) {
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src = &((byte *)viddef.buffer)[yi * viddef.width];
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dest = (PIXEL16 *) &framebuf->data[yi * framebuf->bytes_per_line];
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for (xi = x; xi < x + width; xi++) {
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dest[xi] = st2d_8to16table[src[xi]];
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}
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}
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}
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static void
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st3_fixup (XImage * framebuf, int x, int y, int width, int height)
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{
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int yi;
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unsigned char *src;
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PIXEL24 *dest;
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register int count, n;
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if (x < 0 || y < 0)
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return;
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for (yi = y; yi < (y + height); yi++) {
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src = &((byte *)viddef.buffer)[yi * viddef.width + x];
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dest = (PIXEL24 *) &framebuf->data[yi * framebuf->bytes_per_line + x];
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// Duff's Device
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count = width;
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n = (count + 7) / 8;
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switch (count % 8) {
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case 0:
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do {
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*dest++ = st2d_8to24table[*src++];
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case 7:
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*dest++ = st2d_8to24table[*src++];
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case 6:
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*dest++ = st2d_8to24table[*src++];
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case 5:
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*dest++ = st2d_8to24table[*src++];
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case 4:
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*dest++ = st2d_8to24table[*src++];
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case 3:
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*dest++ = st2d_8to24table[*src++];
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case 2:
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*dest++ = st2d_8to24table[*src++];
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case 1:
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*dest++ = st2d_8to24table[*src++];
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} while (--n > 0);
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}
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}
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}
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void
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D_BeginDirectRect (int x, int y, byte *pbitmap, int width, int height)
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{
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// direct drawing of the "accessing disk" icon isn't supported
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}
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void
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D_EndDirectRect (int x, int y, int width, int height)
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{
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// direct drawing of the "accessing disk" icon isn't supported
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}
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static void
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ResetFrameBuffer (void)
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{
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int mem, pwidth;
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char *buf;
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if (x_framebuffer[0]) {
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XDestroyImage (x_framebuffer[0]);
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}
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pwidth = x_visinfo->depth / 8;
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if (pwidth == 3)
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pwidth = 4;
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mem = ((viddef.width * pwidth + 7) & ~7) * viddef.height;
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buf = malloc (mem);
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SYS_CHECKMEM (buf);
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// allocate new screen buffer
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x_framebuffer[0] = XCreateImage (x_disp, x_vis, x_visinfo->depth,
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ZPixmap, 0, buf, viddef.width,
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viddef.height, 32, 0);
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if (!x_framebuffer[0]) {
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Sys_Error ("VID: XCreateImage failed");
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}
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}
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static void
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ResetSharedFrameBuffers (void)
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{
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int size;
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int key;
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int minsize = getpagesize ();
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int frm;
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for (frm = 0; frm < 2; frm++) {
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// free up old frame buffer memory
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if (x_framebuffer[frm]) {
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XShmDetach (x_disp, &x_shminfo[frm]);
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free (x_framebuffer[frm]);
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shmdt (x_shminfo[frm].shmaddr);
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}
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// create the image
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x_framebuffer[frm] = XShmCreateImage (x_disp, x_vis, x_visinfo->depth,
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ZPixmap, 0, &x_shminfo[frm],
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viddef.width, viddef.height);
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// grab shared memory
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size = x_framebuffer[frm]->bytes_per_line * x_framebuffer[frm]->height;
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if (size < minsize)
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Sys_Error ("VID: Window must use at least %d bytes", minsize);
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key = random ();
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x_shminfo[frm].shmid = shmget ((key_t) key, size, IPC_CREAT | 0777);
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if (x_shminfo[frm].shmid == -1)
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Sys_Error ("VID: Could not get any shared memory (%s)",
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strerror (errno));
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// attach to the shared memory segment
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x_shminfo[frm].shmaddr = (void *) shmat (x_shminfo[frm].shmid, 0, 0);
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Sys_MaskPrintf (SYS_VID, "VID: shared memory id=%d, addr=0x%lx\n",
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x_shminfo[frm].shmid, (long) x_shminfo[frm].shmaddr);
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x_framebuffer[frm]->data = x_shminfo[frm].shmaddr;
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// get the X server to attach to it
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if (!XShmAttach (x_disp, &x_shminfo[frm]))
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Sys_Error ("VID: XShmAttach() failed");
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XSync (x_disp, 0);
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shmctl (x_shminfo[frm].shmid, IPC_RMID, 0);
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}
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}
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static void
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x11_init_buffers (void)
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{
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if (doShm)
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ResetSharedFrameBuffers ();
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else
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ResetFrameBuffer ();
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current_framebuffer = 0;
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viddef.direct = 0;
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viddef.rowbytes = viddef.width;
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if (x_visinfo->depth != 8) {
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if (viddef.buffer)
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free (viddef.buffer);
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viddef.buffer = calloc (viddef.width, viddef.height);
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if (!viddef.buffer)
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Sys_Error ("Not enough memory for video mode");
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} else {
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viddef.buffer = x_framebuffer[current_framebuffer]->data;
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}
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viddef.conbuffer = viddef.buffer;
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viddef.conrowbytes = viddef.rowbytes;
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}
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static void
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x11_choose_visual (void)
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{
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int pnum, i;
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XVisualInfo template;
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int num_visuals;
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int template_mask;
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template_mask = 0;
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// specify a visual id
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if ((pnum = COM_CheckParm ("-visualid"))) {
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if (pnum >= com_argc - 1)
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Sys_Error ("VID: -visualid <id#>");
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template.visualid = atoi (com_argv[pnum + 1]);
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template_mask = VisualIDMask;
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} else { // If not specified, use default
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// visual
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template.visualid =
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XVisualIDFromVisual (XDefaultVisual (x_disp, x_screen));
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template_mask = VisualIDMask;
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}
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// pick a visual -- warn if more than one was available
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x_visinfo = XGetVisualInfo (x_disp, template_mask, &template,
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&num_visuals);
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if (x_visinfo->depth == 8 && x_visinfo->class == PseudoColor)
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x_cmap = XCreateColormap (x_disp, x_win, x_vis, AllocAll);
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x_vis = x_visinfo->visual;
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if (num_visuals > 1) {
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Sys_MaskPrintf (SYS_VID,
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"Found more than one visual id at depth %d:\n",
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template.depth);
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for (i = 0; i < num_visuals; i++)
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Sys_MaskPrintf (SYS_VID, " -visualid %d\n",
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(int) x_visinfo[i].visualid);
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} else {
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if (num_visuals == 0) {
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if (template_mask == VisualIDMask) {
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Sys_Error ("VID: Bad visual ID %ld", template.visualid);
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} else {
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Sys_Error ("VID: No visuals at depth %d", template.depth);
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}
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}
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}
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Sys_MaskPrintf (SYS_VID, "Using visualid %d:\n",
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(int) x_visinfo->visualid);
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Sys_MaskPrintf (SYS_VID, " class %d\n", x_visinfo->class);
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Sys_MaskPrintf (SYS_VID, " screen %d\n", x_visinfo->screen);
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Sys_MaskPrintf (SYS_VID, " depth %d\n", x_visinfo->depth);
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Sys_MaskPrintf (SYS_VID, " red_mask 0x%x\n",
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(int) x_visinfo->red_mask);
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Sys_MaskPrintf (SYS_VID, " green_mask 0x%x\n",
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(int) x_visinfo->green_mask);
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Sys_MaskPrintf (SYS_VID, " blue_mask 0x%x\n",
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(int) x_visinfo->blue_mask);
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Sys_MaskPrintf (SYS_VID, " colormap_size %d\n",
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x_visinfo->colormap_size);
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Sys_MaskPrintf (SYS_VID, " bits_per_rgb %d\n",
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x_visinfo->bits_per_rgb);
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}
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static void
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x11_create_context (void)
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{
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// create the GC
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{
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XGCValues xgcvalues;
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int valuemask = GCGraphicsExposures;
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xgcvalues.graphics_exposures = False;
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x_gc = XCreateGC (x_disp, x_win, valuemask, &xgcvalues);
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}
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// even if MITSHM is available, make sure it's a local connection
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if (XShmQueryExtension (x_disp)) {
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char *displayname;
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char *d;
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doShm = true;
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if ((displayname = XDisplayName (NULL))) {
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if ((d = strchr (displayname, ':')))
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*d = '\0';
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if (!(!strcasecmp (displayname, "unix") || !*displayname))
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doShm = false;
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}
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}
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if (doShm) {
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x_shmeventtype = XShmGetEventBase (x_disp) + ShmCompletion;
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}
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viddef.do_screen_buffer = x11_init_buffers;
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VID_InitBuffers ();
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// XSynchronize (x_disp, False);
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// X11_AddEvent (x_shmeventtype, event_shm);
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}
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static void
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VID_SetPalette (const byte *palette)
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{
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int i;
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XColor colors[256];
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for (i = 0; i < 256; i++) {
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st2d_8to16table[i] = xlib_rgb16 (palette[i * 3], palette[i * 3 + 1],
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palette[i * 3 + 2]);
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st2d_8to24table[i] = xlib_rgb24 (palette[i * 3], palette[i * 3 + 1],
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palette[i * 3 + 2]);
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}
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if (x_visinfo->class == PseudoColor && x_visinfo->depth == 8) {
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if (palette != current_palette) {
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memcpy (current_palette, palette, 768);
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}
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for (i = 0; i < 256; i++) {
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colors[i].pixel = i;
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colors[i].flags = DoRed | DoGreen | DoBlue;
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colors[i].red = palette[(i * 3)] << 8;
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colors[i].green = palette[(i * 3) + 1] << 8;
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colors[i].blue = palette[(i * 3) + 2] << 8;
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}
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XStoreColors (x_disp, x_cmap, colors, 256);
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}
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}
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/*
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Set up color translation tables and the window. Takes a 256-color 8-bit
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palette. Palette data will go away after the call, so copy it if you'll
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need it later.
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*/
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void
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VID_Init (byte *palette, byte *colormap)
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{
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choose_visual = x11_choose_visual;
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create_context = x11_create_context;
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viddef.load_gl = glx_load_gl;
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viddef.set_palette = VID_SetPalette;
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R_LoadModule ();
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viddef.numpages = 2;
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viddef.colormap8 = colormap;
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viddef.fullbright = 256 - viddef.colormap8[256 * VID_GRADES];
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srandom (getpid ());
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VID_GetWindowSize (320, 200);
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X11_OpenDisplay ();
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choose_visual ();
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X11_SetVidMode (viddef.width, viddef.height);
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X11_CreateWindow (viddef.width, viddef.height);
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X11_CreateNullCursor (); // hide mouse pointer
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create_context ();
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VID_InitGamma (palette);
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viddef.set_palette (viddef.palette);
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Sys_MaskPrintf (SYS_VID, "Video mode %dx%d initialized.\n",
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viddef.width, viddef.height);
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viddef.initialized = true;
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viddef.recalc_refdef = 1; // force a surface cache flush
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}
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void
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VID_Init_Cvars ()
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{
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X11_Init_Cvars ();
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gl_driver = Cvar_Get ("gl_driver", GL_DRIVER, CVAR_ROM, NULL,
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"The OpenGL library to use. (path optional)");
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}
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/*
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VID_Shutdown
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Restore video mode
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*/
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void
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VID_Shutdown (void)
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{
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Sys_MaskPrintf (SYS_VID, "VID_Shutdown\n");
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X11_CloseDisplay ();
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}
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static int config_notify = 0;
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static int config_notify_width;
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static int config_notify_height;
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/*
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VID_Update
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Flush the given rectangles from the view buffer to the screen.
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*/
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void
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VID_Update (vrect_t *rects)
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{
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/* If the window changes dimension, skip this frame. */
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if (config_notify) {
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fprintf (stderr, "config notify\n");
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config_notify = 0;
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viddef.width = config_notify_width & ~7;
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viddef.height = config_notify_height;
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VID_InitBuffers ();
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viddef.recalc_refdef = 1; /* force a surface cache flush */
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Con_CheckResize ();
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return;
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}
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while (rects) {
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switch (x_visinfo->depth) {
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case 16:
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st2_fixup (x_framebuffer[current_framebuffer],
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rects->x, rects->y, rects->width, rects->height);
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break;
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case 24:
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st3_fixup (x_framebuffer[current_framebuffer],
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rects->x, rects->y, rects->width, rects->height);
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break;
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}
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if (doShm) {
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if (!XShmPutImage (x_disp, x_win, x_gc,
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x_framebuffer[current_framebuffer],
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rects->x, rects->y, rects->x, rects->y,
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rects->width, rects->height, True)) {
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Sys_Error ("VID_Update: XShmPutImage failed");
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}
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oktodraw = false;
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while (!oktodraw)
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X11_ProcessEvent ();
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rects = rects->next;
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current_framebuffer = !current_framebuffer;
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} else {
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if (XPutImage (x_disp, x_win, x_gc, x_framebuffer[0],
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rects->x, rects->y, rects->x, rects->y,
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rects->width, rects->height)) {
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Sys_Error ("VID_Update: XPutImage failed");
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}
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rects = rects->next;
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}
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}
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XSync (x_disp, False);
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r_data->scr_fullupdate = 0;
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}
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void
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VID_LockBuffer (void)
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{
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}
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void
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VID_UnlockBuffer (void)
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{
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}
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void
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VID_SetCaption (const char *text)
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{
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if (text && *text) {
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char *temp = strdup (text);
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X11_SetCaption (va ("%s: %s", PACKAGE_STRING, temp));
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free (temp);
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} else {
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X11_SetCaption (va ("%s", PACKAGE_STRING));
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}
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}
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qboolean
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VID_SetGamma (double gamma)
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{
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return X11_SetGamma (gamma);
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}
|