quakeforge/libs/video/targets/context_x11.c
Ozkan Sezer 6e04fd5ff6 signed int viddef_t members
The attached patch (against quakeforge git) changes the [con]width,
[con]height, and most importantly the rowbytes members of viddef_t
from unsigned to signed int, like in q2.  This allows for a properly
negative vid.rowbytes which may be needed in, e.g. a DIB sections
windows driver if needed.  Along with it, I changed a few places
where unsigned int is used along with comparisons against the relevant
vid.* members.
One thing I am not 100% sure is the signedness requirements of
d_zrowbytes and d_zwidth: q2 has them as unsigned but I am not sure
whether that is because they are needed as unsigned or it was just an
oversight of the id developers. They do look like they should be OK
as signed int to me, though: comments?

==
Note from Bill Currie: I had to do some extra changes as many
signed/unsigned comparisons were somehow missed.
2012-10-21 09:00:50 +09:00

655 lines
14 KiB
C

/*
context_x11.c
general x11 context layer
Copyright (C) 1996-1997 Id Software, Inc.
Copyright (C) 2000 Zephaniah E. Hull <warp@whitestar.soark.net>
Copyright (C) 2000, 2001 Jeff Teunissen <deek@quakeforge.net>
This program is free software; you can redistribute it and/or
modify it under the terms of the GNU General Public License
as published by the Free Software Foundation; either version 2
of the License, or (at your option) any later version.
This program is distributed in the hope that it will be useful,
but WITHOUT ANY WARRANTY; without even the implied warranty of
MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.
See the GNU General Public License for more details.
You should have received a copy of the GNU General Public License
along with this program; if not, write to:
Free Software Foundation, Inc.
59 Temple Place - Suite 330
Boston, MA 02111-1307, USA
*/
#ifdef HAVE_CONFIG_H
# include "config.h"
#endif
#ifdef HAVE_STRING_H
# include <string.h>
#endif
#ifdef HAVE_STRINGS_H
# include <strings.h>
#endif
#include <ctype.h>
#include <sys/time.h>
#ifdef HAVE_UNISTD_H
# include <unistd.h>
#endif
#include <stdlib.h>
#include <sys/ipc.h>
#include <sys/shm.h>
#include <X11/Xlib.h>
#include <X11/Xutil.h>
#include <X11/Xatom.h>
#include <X11/keysym.h>
#include <X11/extensions/XShm.h>
#ifdef HAVE_VIDMODE
# include <X11/extensions/xf86vmode.h>
# ifdef DGA_OLD_HEADERS
# include <X11/extensions/xf86vmstr.h>
# else
# include <X11/extensions/xf86vmproto.h>
# endif
#endif
#include "QF/cmd.h"
#include "QF/cvar.h"
#include "QF/input.h"
#include "QF/qargs.h"
#include "QF/qtypes.h"
#include "QF/sys.h"
#include "QF/va.h"
#include "QF/vid.h"
#include "context_x11.h"
#include "dga_check.h"
#include "vid_internal.h"
static void (*event_handlers[LASTEvent]) (XEvent *);
qboolean oktodraw = false;
int x_shmeventtype;
static int x_disp_ref_count = 0;
static Cursor nullcursor = None;
Display *x_disp = NULL;
int x_screen;
Window x_root = None;
XVisualInfo *x_visinfo;
Visual *x_vis;
Window x_win;
Colormap x_cmap;
Time x_time;
Time x_mouse_time;
qboolean x_have_focus = false;
#ifdef HAVE_VIDMODE
static XF86VidModeModeInfo **vidmodes;
static int nummodes;
static int original_mode = 0;
static vec3_t x_gamma = {-1, -1, -1};
static qboolean vidmode_avail = false;
#endif
static qboolean vidmode_active = false;
static qboolean vid_context_created = false;
static int pos_x, pos_y;
#ifdef HAVE_VIDMODE
static int xss_timeout;
static int xss_interval;
static int xss_blanking;
static int xss_exposures;
#endif
static qboolean accel_saved = false;
static int accel_numerator;
static int accel_denominator;
static int accel_threshold;
#define _NET_WM_STATE_REMOVE 0
#define _NET_WM_STATE_ADD 1
#define _NET_WM_STATE_TOGGLE 2
static Atom x_net_state;
static Atom x_net_fullscreen;
static void
set_fullscreen (int full)
{
XEvent xev;
xev.xclient.type = ClientMessage;
xev.xclient.serial = 0;
xev.xclient.send_event = True;
xev.xclient.window = x_win;
xev.xclient.message_type = x_net_state;
xev.xclient.format = 32;
if (full)
xev.xclient.data.l[0] = _NET_WM_STATE_ADD;
else
xev.xclient.data.l[0] = _NET_WM_STATE_REMOVE;
xev.xclient.data.l[1] = x_net_fullscreen;
xev.xclient.data.l[2] = 0;
xev.xclient.data.l[3] = 0;
xev.xclient.data.l[4] = 0;
XSendEvent (x_disp, x_root, False,
SubstructureRedirectMask | SubstructureNotifyMask, &xev);
}
static void
configure_notify (XEvent *event)
{
XConfigureEvent *c = &event->xconfigure;
pos_x = c->x;
pos_y = c->y;
#ifdef HAVE_VIDMODE
if (vidmode_active)
X11_ForceViewPort ();
#endif
Sys_MaskPrintf (SYS_VID,
"ConfigureNotify: %ld %d %ld %ld %d,%d (%d,%d) "
"%d %ld %d\n",
c->serial, c->send_event, c->event, c->window, c->x, c->y,
c->width, c->height, c->border_width, c->above,
c->override_redirect);
}
qboolean
X11_AddEvent (int event, void (*event_handler) (XEvent *))
{
if (event >= LASTEvent) {
Sys_MaskPrintf (SYS_VID, "event: %d, LASTEvent: %d\n", event,
LASTEvent);
return false;
}
if (event_handlers[event])
return false;
event_handlers[event] = event_handler;
return true;
}
qboolean
X11_RemoveEvent (int event, void (*event_handler) (XEvent *))
{
if (event >= LASTEvent)
return false;
if (event_handlers[event] != event_handler)
return false;
event_handlers[event] = NULL;
return true;
}
static inline void
X11_ProcessEventProxy(XEvent *x_event)
{
if (x_event->type >= LASTEvent) {
if (x_event->type == x_shmeventtype)
oktodraw = 1;
return;
}
if (event_handlers[x_event->type])
event_handlers[x_event->type] (x_event);
}
static void
X11_WaitForEvent (int event)
{
XEvent ev;
int type;
while (1) {
XMaskEvent (x_disp, X11_WINDOW_MASK, &ev);
type = ev.type;
X11_ProcessEventProxy (&ev);
if (type == event)
break;
}
}
inline void
X11_ProcessEvent (void)
{
XEvent x_event;
XNextEvent (x_disp, &x_event);
X11_ProcessEventProxy (&x_event);
}
void
X11_ProcessEvents (void)
{
while (XPending (x_disp))
X11_ProcessEvent ();
}
#ifdef HAVE_VIDMODE
static void
X11_SetScreenSaver (void)
{
XGetScreenSaver (x_disp, &xss_timeout, &xss_interval, &xss_blanking,
&xss_exposures);
XSetScreenSaver (x_disp, 0, xss_interval, xss_blanking, xss_exposures);
}
static void
X11_RestoreScreenSaver (void)
{
XSetScreenSaver (x_disp, xss_timeout, xss_interval, xss_blanking,
xss_exposures);
}
#endif
void
X11_OpenDisplay (void)
{
if (!x_disp) {
x_disp = XOpenDisplay (NULL);
if (!x_disp) {
Sys_Error ("X11_OpenDisplay: Could not open display [%s]",
XDisplayName (NULL));
}
x_net_state = XInternAtom (x_disp, "_NET_WM_STATE", False);
x_net_fullscreen = XInternAtom (x_disp, "_NET_WM_STATE_FULLSCREEN",
False);
x_screen = DefaultScreen (x_disp);
x_root = RootWindow (x_disp, x_screen);
XSynchronize (x_disp, true); // only for debugging
x_disp_ref_count = 1;
} else {
x_disp_ref_count++;
}
}
void
X11_CloseDisplay (void)
{
if (!--x_disp_ref_count) {
X11_RestoreVidMode ();
X11_RestoreGamma ();
if (nullcursor != None) {
XFreeCursor (x_disp, nullcursor);
nullcursor = None;
}
XCloseDisplay (x_disp);
x_disp = 0;
}
}
/*
X11_CreateNullCursor
Create an empty cursor (in other words, make it disappear)
*/
void
X11_CreateNullCursor (void)
{
Pixmap cursormask;
XGCValues xgc;
GC gc;
XColor dummycolour;
if (nullcursor != None)
return;
cursormask = XCreatePixmap (x_disp, x_root, 1, 1, 1);
xgc.function = GXclear;
gc = XCreateGC (x_disp, cursormask, GCFunction, &xgc);
XFillRectangle (x_disp, cursormask, gc, 0, 0, 1, 1);
dummycolour.pixel = 0;
dummycolour.red = 0;
dummycolour.flags = 04;
nullcursor = XCreatePixmapCursor (x_disp, cursormask, cursormask,
&dummycolour, &dummycolour, 0, 0);
XFreePixmap (x_disp, cursormask);
XFreeGC (x_disp, gc);
XDefineCursor (x_disp, x_win, nullcursor);
}
static Bool
check_mouse_event (Display *disp, XEvent *ev, XPointer arg)
{
XMotionEvent *me = &ev->xmotion;
if (ev->type != MotionNotify)
return False;
if (me->x != viddef.width / 2 || me->y != viddef.height / 2)
return False;
return True;
}
static void
X11_SetMouse (void)
{
XEvent ev;
XWarpPointer (x_disp, None, x_win, 0, 0, 0, 0, 0, 0);
XWarpPointer (x_disp, None, x_win, 0, 0, 0, 0,
viddef.width / 2, viddef.height / 2);
XPeekIfEvent (x_disp, &ev, check_mouse_event, 0);
x_mouse_time = ev.xmotion.time;
}
#ifdef HAVE_VIDMODE
static vec3_t *
X11_GetGamma (void)
{
XF86VidModeGamma xgamma;
vec3_t *temp;
if (vid_gamma_avail && vid_system_gamma->int_val) {
if (XF86VidModeGetGamma (x_disp, x_screen, &xgamma)) {
if ((temp = malloc (sizeof (vec3_t)))) {
(*temp)[0] = xgamma.red;
(*temp)[1] = xgamma.green;
(*temp)[2] = xgamma.blue;
return temp;
}
return NULL;
}
}
vid_gamma_avail = false;
return NULL;
}
#endif
void
X11_SetVidMode (int width, int height)
{
const char *str = getenv ("MESA_GLX_FX");
if (vidmode_active)
return;
if (str && (tolower (*str) == 'f')) {
Cvar_Set (vid_fullscreen, "1");
}
#ifdef HAVE_VIDMODE
{
static int initialized = 0;
if (!vidmode_avail)
vidmode_avail = VID_CheckVMode (x_disp, NULL, NULL);
if (!initialized && vidmode_avail) {
vec3_t *temp;
initialized = 1;
vid_gamma_avail = true;
temp = X11_GetGamma ();
if (temp && temp[0] > 0) {
x_gamma[0] = (*temp)[0];
x_gamma[1] = (*temp)[1];
x_gamma[2] = (*temp)[2];
vid_gamma_avail = true;
free (temp);
}
}
if (vid_fullscreen->int_val && vidmode_avail) {
int i, dotclock;
int best_mode = 0;
qboolean found_mode = false;
XF86VidModeModeLine orig_data;
XF86VidModeGetAllModeLines (x_disp, x_screen, &nummodes,
&vidmodes);
XF86VidModeGetModeLine (x_disp, x_screen, &dotclock, &orig_data);
for (i = 0; i < nummodes; i++) {
if ((vidmodes[i]->hdisplay == orig_data.hdisplay) &&
(vidmodes[i]->vdisplay == orig_data.vdisplay)) {
original_mode = i;
break;
}
}
for (i = 0; i < nummodes; i++) {
if ((vidmodes[i]->hdisplay == viddef.width) &&
(vidmodes[i]->vdisplay == viddef.height)) {
found_mode = true;
best_mode = i;
break;
}
}
if (found_mode) {
Sys_MaskPrintf (SYS_VID, "VID: Chose video mode: %dx%d\n",
viddef.width, viddef.height);
XF86VidModeSwitchToMode (x_disp, x_screen,
vidmodes[best_mode]);
vidmode_active = true;
X11_SetScreenSaver ();
} else {
Sys_Printf ("VID: Mode %dx%d can't go fullscreen.\n",
viddef.width, viddef.height);
vidmode_avail = vidmode_active = false;
}
}
}
#endif
}
static void
X11_UpdateFullscreen (cvar_t *fullscreen)
{
if (!vid_context_created)
return;
if (!fullscreen->int_val) {
X11_RestoreVidMode ();
set_fullscreen (0);
IN_UpdateGrab (in_grab);
X11_SetMouse ();
return;
} else {
set_fullscreen (1);
X11_SetVidMode (viddef.width, viddef.height);
X11_SetMouse ();
IN_UpdateGrab (in_grab);
}
}
static void
VID_Center_f (void)
{
X11_ForceViewPort ();
}
void
X11_Init_Cvars (void)
{
Cmd_AddCommand ("vid_center", VID_Center_f, "Center the view port on the "
"quake window in a virtual desktop.\n");
vid_fullscreen = Cvar_Get ("vid_fullscreen", "0", CVAR_ARCHIVE,
&X11_UpdateFullscreen,
"Toggles fullscreen game mode");
vid_system_gamma = Cvar_Get ("vid_system_gamma", "1", CVAR_ARCHIVE, NULL,
"Use system gamma control if available");
}
void
X11_CreateWindow (int width, int height)
{
char *resname;
unsigned long mask;
XSetWindowAttributes attr;
XClassHint *ClassHint;
XSizeHints *SizeHints;
X11_AddEvent (ConfigureNotify, configure_notify);
// window attributes
attr.background_pixel = 0;
attr.border_pixel = 0;
attr.colormap = x_cmap;
if (!attr.colormap)
attr.colormap = XCreateColormap (x_disp, x_root, x_vis, AllocNone);
attr.event_mask = X11_MASK;
mask = CWBackPixel | CWBorderPixel | CWColormap | CWEventMask;
x_win = XCreateWindow (x_disp, x_root, 0, 0, width, height, 0,
x_visinfo->depth, InputOutput, x_vis, mask, &attr);
// Set window size hints
SizeHints = XAllocSizeHints ();
if (SizeHints) {
SizeHints->flags = (PMinSize | PMaxSize);
SizeHints->min_width = width;
SizeHints->min_height = height;
SizeHints->max_width = width;
SizeHints->max_height = height;
XSetWMNormalHints (x_disp, x_win, SizeHints);
XFree (SizeHints);
}
// Set window title
X11_SetCaption (va ("%s", PACKAGE_STRING));
// Set icon name
XSetIconName (x_disp, x_win, PACKAGE_NAME);
// Set window class
ClassHint = XAllocClassHint ();
if (ClassHint) {
resname = strrchr (com_argv[0], '/');
ClassHint->res_name = (char *)(resname ? resname + 1 : com_argv[0]);
ClassHint->res_class = (char *)PACKAGE;
XSetClassHint (x_disp, x_win, ClassHint);
XFree (ClassHint);
}
XMapWindow (x_disp, x_win);
X11_WaitForEvent (ConfigureNotify);
vid_context_created = true;
if (vid_fullscreen->int_val) {
X11_UpdateFullscreen (vid_fullscreen);
}
XRaiseWindow (x_disp, x_win);
}
void
X11_RestoreVidMode (void)
{
#ifdef HAVE_VIDMODE
if (vidmode_active) {
X11_RestoreScreenSaver ();
XF86VidModeSwitchToMode (x_disp, x_screen, vidmodes[original_mode]);
XFree (vidmodes);
vidmode_active = false;
}
#endif
}
void
X11_SetCaption (const char *text)
{
if (x_disp && x_win && text)
XStoreName (x_disp, x_win, text);
}
void
X11_ForceViewPort (void)
{
#ifdef HAVE_VIDMODE
if (!vidmode_avail || !vid_context_created)
return;
XF86VidModeSetViewPort (x_disp, x_screen, pos_x, pos_y);
#endif
}
qboolean
X11_SetGamma (double gamma)
{
#ifdef HAVE_VIDMODE
# ifdef X_XF86VidModeSetGamma
XF86VidModeGamma xgamma;
if (vid_gamma_avail && vid_system_gamma->int_val && x_have_focus) {
xgamma.red = xgamma.green = xgamma.blue = (float) gamma;
if (XF86VidModeSetGamma (x_disp, x_screen, &xgamma))
return true;
}
# endif
#endif
return false;
}
void
X11_RestoreGamma (void)
{
#ifdef HAVE_VIDMODE
# ifdef X_XF86VidModeSetGamma
XF86VidModeGamma xgamma;
if (vid_gamma_avail && x_gamma[0] > 0) {
xgamma.red = x_gamma[0];
xgamma.green = x_gamma[1];
xgamma.blue = x_gamma[2];
XF86VidModeSetGamma (x_disp, x_screen, &xgamma);
}
# endif
#endif
}
void
X11_SaveMouseAcceleration (void)
{
accel_saved = true;
XGetPointerControl(x_disp, &accel_numerator, &accel_denominator,
&accel_threshold);
}
void
X11_RemoveMouseAcceleration (void)
{
XChangePointerControl(x_disp, true, false, 0, 1, 0);
}
void
X11_RestoreMouseAcceleration (void)
{
if (!accel_saved)
return;
XChangePointerControl(x_disp, true, true, accel_numerator,
accel_denominator, accel_threshold);
accel_saved = false;
}