src/video/photon/SDL_ph_events.c
author Sam Lantinga <slouken@lokigames.com>
Thu, 10 May 2001 18:42:17 +0000
changeset 19 8cc4dbfab9ab
parent 0 74212992fb08
child 220 7861d904fb77
permissions -rw-r--r--
Date: Thu, 19 Apr 2001 08:36:54 +0300
From: "Mike Gorchak" <mike@malva.com.ua>
Subject: Patches for QNX RtP

Here my patch for QNX RtP/Photon for SDL-1.2.

Detailed description of my changes:

SDL/configure.in:
If Photon detected declare define ENABLE_PHOTON.

SDL/src/video/SDL_sysvideo.h:
Added extern to ph_bootstrap.

SDL/src/video/SDL_video.c:
Added ph_bootstrap to bootstrap array.

SDL/src/video/photon/SDL_ph_events.c:
Declare DISABLE_X11 if compiled for Photon.

SDL/src/video/photon/SDL_ph_image.c:
Fixed segment violation on exit. Please update BUGS file.

SDL/src/video/photon/SDL_ph_video.c:
1. Enabling window manager.
2. Added to device capabilities Photon Window Manager functions:
SetCaption and IconifyWindow.
3. Renamed X11_bootstrap to ph_bootstrap.
4. Removed SEGFAULT termination of programs if Photon not available.

SDL/src/video/photon/SDL_ph_wm.c:
1. Declare DISABLE_X11 if compiled for Photon.
2. Added ph_SetCaption and ph_IconifyWindow code. (Thanks to
'phearbear' for iconify window source).
3. Some stubers for other wm functions.

Thanks !

----------------------------
Mike Gorchak
CJSC Malva
System Programmer
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/*
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    SDL - Simple DirectMedia Layer
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    Copyright (C) 1997, 1998, 1999, 2000, 2001  Sam Lantinga
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    This library is free software; you can redistribute it and/or
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    modify it under the terms of the GNU Library General Public
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    License as published by the Free Software Foundation; either
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    version 2 of the License, or (at your option) any later version.
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    This library 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.  See the GNU
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    Library General Public License for more details.
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    You should have received a copy of the GNU Library General Public
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    License along with this library; if not, write to the Free
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    Foundation, Inc., 59 Temple Place, Suite 330, Boston, MA  02111-1307  USA
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    Sam Lantinga
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    slouken@devolution.com
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*/
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#ifdef SAVE_RCSID
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static char rcsid =
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 "@(#) $Id$";
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#endif
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/* Handle the event stream, converting photon events into SDL events */
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#define DISABLE_X11
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#include <Ph.h>
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#include <stdio.h>
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#include <setjmp.h>
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#include <photon/PkKeyDef.h>
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#include <sys/time.h>
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#include "SDL.h"
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#include "SDL_syswm.h"
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#include "SDL_sysevents.h"
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#include "SDL_sysvideo.h"
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#include "SDL_events_c.h"
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#include "SDL_ph_video.h"
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#include "SDL_ph_modes_c.h"
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#include "SDL_ph_image_c.h"
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#include "SDL_ph_events_c.h"
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/* The translation tables from a photon keysym to a SDL keysym */
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static SDLKey ODD_keymap[256];
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static SDLKey MISC_keymap[0xFF + 1];
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SDL_keysym *ph_TranslateKey(PhKeyEvent_t *key, SDL_keysym *keysym);
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/* Check to see if this is a repeated key.
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   (idea shamelessly lifted from GII -- thanks guys! :)
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 */
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static int ph_KeyRepeat(_THIS, PhKeyEvent_t* keyevent)
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{
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	PhEvent_t* peekevent;
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	PhKeyEvent_t* keyEvent;
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	int repeated;
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	repeated = 0;
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	switch (PhEventPeek( peekevent, EVENT_SIZE ))
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	{
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		case Ph_EVENT_MSG: {
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			if(peekevent->type == Ph_EV_KEY)
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			{
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				keyEvent = PhGetData( peekevent );
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				if ( !(Pk_KF_Key_Down & keyEvent->key_flags) &&
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					(keyEvent->key_cap == keyevent->key_cap) &&
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					(peekevent->timestamp == event->timestamp)	
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				) {
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					repeated = 1;
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					 //PhEventNext( peekevent, EVENT_SIZE );  
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				}				
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			}
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		}
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		break;
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		case -1: {
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			perror( "PhEventPeek failed" );
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		}
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		break;
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		default: /* no events pending */
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	}
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	return(repeated);
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}
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/* Note:  The X server buffers and accumulates mouse motion events, so
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   the motion event generated by the warp may not appear exactly as we
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   expect it to.  We work around this (and improve performance) by only
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   warping the pointer when it reaches the edge, and then wait for it.
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*/
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/*
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#define MOUSE_FUDGE_FACTOR	8
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static inline int X11_WarpedMotion(_THIS, XEvent *xevent)
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{
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	int w, h, i;
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	int deltax, deltay;
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	int posted;
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	w = SDL_VideoSurface->w;
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	h = SDL_VideoSurface->h;
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	deltax = xevent->xmotion.x - mouse_last.x;
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	deltay = xevent->xmotion.y - mouse_last.y;
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#ifdef DEBUG_MOTION
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  printf("Warped mouse motion: %d,%d\n", deltax, deltay);
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#endif
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	mouse_last.x = xevent->xmotion.x;
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	mouse_last.y = xevent->xmotion.y;
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	posted = SDL_PrivateMouseMotion(0, 1, deltax, deltay);
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	if ( (xevent->xmotion.x < MOUSE_FUDGE_FACTOR) ||
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	     (xevent->xmotion.x > (w-MOUSE_FUDGE_FACTOR)) ||
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	     (xevent->xmotion.y < MOUSE_FUDGE_FACTOR) ||
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	     (xevent->xmotion.y > (h-MOUSE_FUDGE_FACTOR)) ) {
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		/* Get the events that have accumulated */
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/*		while ( XCheckTypedEvent(SDL_Display, MotionNotify, xevent) ) {
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			deltax = xevent->xmotion.x - mouse_last.x;
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			deltay = xevent->xmotion.y - mouse_last.y;
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#ifdef DEBUG_MOTION
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  printf("Extra mouse motion: %d,%d\n", deltax, deltay);
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#endif
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			mouse_last.x = xevent->xmotion.x;
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			mouse_last.y = xevent->xmotion.y;
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			posted += SDL_PrivateMouseMotion(0, 1, deltax, deltay);
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		}
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		mouse_last.x = w/2;
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		mouse_last.y = h/2;
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		XWarpPointer(SDL_Display, None, SDL_Window, 0, 0, 0, 0,
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					mouse_last.x, mouse_last.y);
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		for ( i=0; i<10; ++i ) {
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        		XMaskEvent(SDL_Display, PointerMotionMask, xevent);
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			if ( (xevent->xmotion.x >
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			          (mouse_last.x-MOUSE_FUDGE_FACTOR)) &&
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			     (xevent->xmotion.x <
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			          (mouse_last.x+MOUSE_FUDGE_FACTOR)) &&
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			     (xevent->xmotion.y >
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			          (mouse_last.y-MOUSE_FUDGE_FACTOR)) &&
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			     (xevent->xmotion.y <
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			          (mouse_last.y+MOUSE_FUDGE_FACTOR)) ) {
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				break;
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			}
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#ifdef DEBUG_XEVENTS
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  printf("Lost mouse motion: %d,%d\n", xevent->xmotion.x, xevent->xmotion.y);
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#endif
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		}
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#ifdef DEBUG_XEVENTS
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		if ( i == 10 ) {
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			printf("Warning: didn't detect mouse warp motion\n");
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		}
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#endif
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	}
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	return(posted);
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}
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*/
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static int ph_DispatchEvent(_THIS)
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{
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	int posted;
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	PhRect_t* rect;
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	PhPointerEvent_t* pointerEvent;
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	PhKeyEvent_t* keyEvent;
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	PhWindowEvent_t* winEvent;
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	int i;
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	SDL_Rect sdlrects[50]; 
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	posted = 0;
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	switch (event->type) {
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		case Ph_EV_BOUNDARY:
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		{
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			if (event->subtype == Ph_EV_PTR_ENTER)
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				posted = SDL_PrivateAppActive(1, SDL_APPMOUSEFOCUS);
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			else if (event->subtype ==Ph_EV_PTR_LEAVE)
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				posted = SDL_PrivateAppActive(0, SDL_APPMOUSEFOCUS);	
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		}
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		break;
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		case Ph_EV_PTR_MOTION_BUTTON:
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		case Ph_EV_PTR_MOTION_NOBUTTON:
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		{
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			if ( SDL_VideoSurface ) {
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				pointerEvent = PhGetData( event );
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				rect = PhGetRects( event );
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				posted = SDL_PrivateMouseMotion(0, 1,
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                		pointerEvent->pos.x - rect[0].ul.x,
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                		pointerEvent->pos.y - rect[0].ul.y);		
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			}
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		}
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		break;
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		case Ph_EV_BUT_PRESS:
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		{
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			pointerEvent = PhGetData( event );
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			/* TODO: is 'buttons' the right mapping? */
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			posted = SDL_PrivateMouseButton(SDL_PRESSED,
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                        	pointerEvent->buttons, 0, 0);
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		}
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		break;
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		case Ph_EV_BUT_RELEASE:
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		{
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			pointerEvent = PhGetData( event );
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			 posted = SDL_PrivateMouseButton(SDL_RELEASED,
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         			pointerEvent->buttons, 0, 0);
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		}
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		break;
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		case Ph_EV_WM:
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		{
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			winEvent = PhGetData( event );
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			/* losing focus */
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			if ((winEvent->event_f==Ph_WM_FOCUS)&&
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				(winEvent->event_state==Ph_WM_EVSTATE_FOCUSLOST))
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			{
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				posted = SDL_PrivateAppActive(0, SDL_APPINPUTFOCUS);	
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				/* Queue leaving fullscreen mode */
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				switch_waiting = 0x01;
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				switch_time = SDL_GetTicks() + 200;
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			}
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			/* gaining focus */
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			else if ((winEvent->event_f==Ph_WM_FOCUS)&&
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					(winEvent->event_state==Ph_WM_EVSTATE_FOCUS))
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			{
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				posted = SDL_PrivateAppActive(1, SDL_APPINPUTFOCUS);
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				/* Queue entry into fullscreen mode */
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				switch_waiting = 0x01 | SDL_FULLSCREEN;
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				switch_time = SDL_GetTicks() + 1500;
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			}
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			/* request to quit */
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			else if (winEvent->event_f==Ph_WM_CLOSE)
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			{
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				posted = SDL_PrivateQuit();
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			}
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		}
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		break;
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		/* window has been resized, moved or removed */
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		case Ph_EV_EXPOSE:
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		{
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			if (SDL_VideoSurface)
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			{
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					rect = PhGetRects( event );
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				//PgSetClipping(1, rect );
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				 for(i=0;i<event->num_rects;i++)
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			   {
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			      sdlrects[i].x = rect[i].ul.x;
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			      sdlrects[i].y = rect[i].ul.y;
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			      sdlrects[i].w = rect[i].lr.x - rect[i].ul.x;
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			      sdlrects[i].h = rect[i].lr.y - rect[i].ul.y;
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				}
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					this->UpdateRects(this, event->num_rects, sdlrects);
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			}
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		}
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		break;
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		case Ph_EV_KEY:
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		{
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			SDL_keysym keysym;
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			posted = 0;
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			keyEvent = PhGetData( event );
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			if (Pk_KF_Key_Down & keyEvent->key_flags)
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			{
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				posted = SDL_PrivateKeyboard(SDL_PRESSED,
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                			ph_TranslateKey( keyEvent, &keysym));
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			}
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			else /* must be key release */
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 			{
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 				/* Ignore repeated key release events */
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				/*if (! Pk_KF_Key_Repeat & keyEvent->key_flags )*/
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					posted = SDL_PrivateKeyboard(SDL_RELEASED,
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        					ph_TranslateKey( keyEvent, &keysym));
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				/*}*/
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			}
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		}
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		break;
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	}
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	return(posted);
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}
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/* perform a blocking read if no events available */
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int ph_Pending(_THIS)
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{
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   316
	
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	/* Flush the display connection and look to see if events are queued */
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	PgFlush();
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   320
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     while( 1 )
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      {   //note this is a non-blocking call
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          switch( PhEventPeek( event, EVENT_SIZE ) )
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           {
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              case Ph_EVENT_MSG:
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   327
                 return 1;
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                 break;
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   329
              case -1:
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                 perror( "PhEventNext failed" );
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                 break;
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              default:
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                return 0;
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   335
       }
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   }
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   338
	/* Oh well, nothing is ready .. */
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	return(0);
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   340
}
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   341
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   342
/*
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SAMPLE EVENT PUMP
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=================
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   345
static void update( int block ){
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   346
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   347
    int ch,fl;
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   348
    PhKeyEvent_t *key;
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   349
slouken@0
   350
    for( ;; ){
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   351
slouken@0
   352
        if( block ){
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   353
            do{
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   354
                fl=PhEventNext( event,EVENT_SIZE );
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   355
            }while( fl!=Ph_EVENT_MSG );
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   356
            block=0;
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   357
        }else{
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   358
            do{
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   359
                fl=PhEventPeek( event,EVENT_SIZE );
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   360
                if( !fl ) return;
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   361
            }while( fl!=Ph_EVENT_MSG );
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   362
        }
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   363
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   364
        switch( event->type ){
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   365
        case Ph_EV_KEY:
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   366
            key=PhGetData( event );
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            ch=key->key_cap;    // & 127;
slouken@0
   368
            fl=key->key_flags;
slouken@0
   369
            if( ch<32 || ch>127 ) break;
slouken@0
   370
            if( fl & Pk_KF_Key_Down ){
slouken@0
   371
                if( !(fl & Pk_KF_Key_Repeat) ){
slouken@0
   372
                    if( queput-queget<QUE_SIZE ) keyque[ queput++ & QUE_MASK ]=ch;
slouken@0
   373
                    keyMatrix[ch]=1;
slouken@0
   374
                }
slouken@0
   375
            }else{
slouken@0
   376
                keyMatrix[ch]=0;
slouken@0
   377
            }
slouken@0
   378
            break;
slouken@0
   379
        default:
slouken@0
   380
            PtEventHandler( event );
slouken@0
   381
        }
slouken@0
   382
    }
slouken@0
   383
}
slouken@0
   384
*/
slouken@0
   385
slouken@0
   386
void ph_PumpEvents(_THIS)
slouken@0
   387
{
slouken@0
   388
	int pending;
slouken@0
   389
slouken@0
   390
	/* Keep processing pending events */
slouken@0
   391
	pending = 0;
slouken@0
   392
	while ( ph_Pending(this) ) {
slouken@0
   393
		ph_DispatchEvent(this);
slouken@0
   394
		++pending;
slouken@0
   395
	}
slouken@0
   396
	if ( switch_waiting ) {
slouken@0
   397
		Uint32 now;
slouken@0
   398
slouken@0
   399
		now  = SDL_GetTicks();
slouken@0
   400
		if ( pending || !SDL_VideoSurface ) {
slouken@0
   401
			/* Try again later... */
slouken@0
   402
			if ( switch_waiting & SDL_FULLSCREEN ) {
slouken@0
   403
				switch_time = now + 1500;
slouken@0
   404
			} else {
slouken@0
   405
				switch_time = now + 200;
slouken@0
   406
			}
slouken@0
   407
		} else if ( now >= switch_time ) {
slouken@0
   408
			Uint32 go_fullscreen;
slouken@0
   409
slouken@0
   410
			go_fullscreen = switch_waiting & SDL_FULLSCREEN;
slouken@0
   411
			switch_waiting = 0;
slouken@0
   412
			if ( SDL_VideoSurface->flags & SDL_FULLSCREEN ) {
slouken@0
   413
				if ( go_fullscreen ) {
slouken@0
   414
					ph_EnterFullScreen(this);
slouken@0
   415
				} else {
slouken@0
   416
					ph_LeaveFullScreen(this);
slouken@0
   417
				}
slouken@0
   418
			}
slouken@0
   419
			/* Handle focus in/out when grabbed */
slouken@0
   420
/*
slouken@0
   421
			if ( go_fullscreen ) {
slouken@0
   422
				ph_GrabInputNoLock(this, this->input_grab);
slouken@0
   423
			} else {
slouken@0
   424
				ph_GrabInputNoLock(this, SDL_GRAB_OFF);
slouken@0
   425
			}
slouken@0
   426
*/
slouken@0
   427
		}
slouken@0
   428
	}
slouken@0
   429
}
slouken@0
   430
slouken@0
   431
void ph_InitKeymap(void)
slouken@0
   432
{
slouken@0
   433
	int i;
slouken@0
   434
slouken@0
   435
	/* Odd keys used in international keyboards */
slouken@0
   436
	for ( i=0; i<SDL_TABLESIZE(ODD_keymap); ++i )
slouken@0
   437
		ODD_keymap[i] = SDLK_UNKNOWN;
slouken@0
   438
slouken@0
   439
	/* Map the miscellaneous keys */
slouken@0
   440
	for ( i=0; i<SDL_TABLESIZE(MISC_keymap); ++i )
slouken@0
   441
		MISC_keymap[i] = SDLK_UNKNOWN;
slouken@0
   442
slouken@0
   443
	MISC_keymap[Pk_BackSpace&0xFF] = SDLK_BACKSPACE;
slouken@0
   444
	MISC_keymap[Pk_Tab&0xFF] = SDLK_TAB;
slouken@0
   445
	MISC_keymap[Pk_Clear&0xFF] = SDLK_CLEAR;
slouken@0
   446
	MISC_keymap[Pk_Return&0xFF] = SDLK_RETURN;
slouken@0
   447
	MISC_keymap[Pk_Pause&0xFF] = SDLK_PAUSE;
slouken@0
   448
	MISC_keymap[Pk_Escape&0xFF] = SDLK_ESCAPE;
slouken@0
   449
	MISC_keymap[Pk_Delete&0xFF] = SDLK_DELETE;
slouken@0
   450
slouken@0
   451
	MISC_keymap[Pk_KP_0&0xFF] = SDLK_KP0;
slouken@0
   452
	MISC_keymap[Pk_KP_1&0xFF] = SDLK_KP1;
slouken@0
   453
	MISC_keymap[Pk_KP_2&0xFF] = SDLK_KP2;
slouken@0
   454
	MISC_keymap[Pk_KP_3&0xFF] = SDLK_KP3;
slouken@0
   455
	MISC_keymap[Pk_KP_4&0xFF] = SDLK_KP4;
slouken@0
   456
	MISC_keymap[Pk_KP_5&0xFF] = SDLK_KP5;
slouken@0
   457
	MISC_keymap[Pk_KP_6&0xFF] = SDLK_KP6;
slouken@0
   458
	MISC_keymap[Pk_KP_7&0xFF] = SDLK_KP7;
slouken@0
   459
	MISC_keymap[Pk_KP_8&0xFF] = SDLK_KP8;
slouken@0
   460
	MISC_keymap[Pk_KP_9&0xFF] = SDLK_KP9;
slouken@0
   461
slouken@0
   462
	MISC_keymap[Pk_KP_Decimal&0xFF] = SDLK_KP_PERIOD;
slouken@0
   463
	MISC_keymap[Pk_KP_Divide&0xFF] = SDLK_KP_DIVIDE;
slouken@0
   464
	MISC_keymap[Pk_KP_Multiply&0xFF] = SDLK_KP_MULTIPLY;
slouken@0
   465
	MISC_keymap[Pk_KP_Subtract&0xFF] = SDLK_KP_MINUS;
slouken@0
   466
	MISC_keymap[Pk_KP_Add&0xFF] = SDLK_KP_PLUS;
slouken@0
   467
	MISC_keymap[Pk_KP_Enter&0xFF] = SDLK_KP_ENTER;
slouken@0
   468
	MISC_keymap[Pk_KP_Equal&0xFF] = SDLK_KP_EQUALS;
slouken@0
   469
slouken@0
   470
	MISC_keymap[Pk_Up&0xFF] = SDLK_UP;
slouken@0
   471
	MISC_keymap[Pk_Down&0xFF] = SDLK_DOWN;
slouken@0
   472
	MISC_keymap[Pk_Right&0xFF] = SDLK_RIGHT;
slouken@0
   473
	MISC_keymap[Pk_Left&0xFF] = SDLK_LEFT;
slouken@0
   474
	MISC_keymap[Pk_Insert&0xFF] = SDLK_INSERT;
slouken@0
   475
	MISC_keymap[Pk_Home&0xFF] = SDLK_HOME;
slouken@0
   476
	MISC_keymap[Pk_End&0xFF] = SDLK_END;
slouken@0
   477
	MISC_keymap[Pk_Pg_Up&0xFF] = SDLK_PAGEUP;
slouken@0
   478
	MISC_keymap[Pk_Pg_Down&0xFF] = SDLK_PAGEDOWN;
slouken@0
   479
slouken@0
   480
	MISC_keymap[Pk_F1&0xFF] = SDLK_F1;
slouken@0
   481
	MISC_keymap[Pk_F2&0xFF] = SDLK_F2;
slouken@0
   482
	MISC_keymap[Pk_F3&0xFF] = SDLK_F3;
slouken@0
   483
	MISC_keymap[Pk_F4&0xFF] = SDLK_F4;
slouken@0
   484
	MISC_keymap[Pk_F5&0xFF] = SDLK_F5;
slouken@0
   485
	MISC_keymap[Pk_F6&0xFF] = SDLK_F6;
slouken@0
   486
	MISC_keymap[Pk_F7&0xFF] = SDLK_F7;
slouken@0
   487
	MISC_keymap[Pk_F8&0xFF] = SDLK_F8;
slouken@0
   488
	MISC_keymap[Pk_F9&0xFF] = SDLK_F9;
slouken@0
   489
	MISC_keymap[Pk_F10&0xFF] = SDLK_F10;
slouken@0
   490
	MISC_keymap[Pk_F11&0xFF] = SDLK_F11;
slouken@0
   491
	MISC_keymap[Pk_F12&0xFF] = SDLK_F12;
slouken@0
   492
	MISC_keymap[Pk_F13&0xFF] = SDLK_F13;
slouken@0
   493
	MISC_keymap[Pk_F14&0xFF] = SDLK_F14;
slouken@0
   494
	MISC_keymap[Pk_F15&0xFF] = SDLK_F15;
slouken@0
   495
slouken@0
   496
	MISC_keymap[Pk_Num_Lock&0xFF] = SDLK_NUMLOCK;
slouken@0
   497
	MISC_keymap[Pk_Caps_Lock&0xFF] = SDLK_CAPSLOCK;
slouken@0
   498
	MISC_keymap[Pk_Scroll_Lock&0xFF] = SDLK_SCROLLOCK;
slouken@0
   499
	MISC_keymap[Pk_Shift_R&0xFF] = SDLK_RSHIFT;
slouken@0
   500
	MISC_keymap[Pk_Shift_L&0xFF] = SDLK_LSHIFT;
slouken@0
   501
	MISC_keymap[Pk_Control_R&0xFF] = SDLK_RCTRL;
slouken@0
   502
	MISC_keymap[Pk_Control_L&0xFF] = SDLK_LCTRL;
slouken@0
   503
	MISC_keymap[Pk_Alt_R&0xFF] = SDLK_RALT;
slouken@0
   504
	MISC_keymap[Pk_Alt_L&0xFF] = SDLK_LALT;
slouken@0
   505
	MISC_keymap[Pk_Meta_R&0xFF] = SDLK_RMETA;
slouken@0
   506
	MISC_keymap[Pk_Meta_L&0xFF] = SDLK_LMETA;
slouken@0
   507
	MISC_keymap[Pk_Super_L&0xFF] = SDLK_LSUPER; /* Left "Windows" */
slouken@0
   508
	MISC_keymap[Pk_Super_R&0xFF] = SDLK_RSUPER; /* Right "Windows */
slouken@0
   509
	MISC_keymap[Pk_Mode_switch&0xFF] = SDLK_MODE; /* "Alt Gr" key */
slouken@0
   510
slouken@0
   511
	MISC_keymap[Pk_Help&0xFF] = SDLK_HELP;
slouken@0
   512
	MISC_keymap[Pk_Print&0xFF] = SDLK_PRINT;
slouken@0
   513
//	MISC_keymap[Pk_Sys_Req] = SDLK_SYSREQ;
slouken@0
   514
	MISC_keymap[Pk_Break&0xFF] = SDLK_BREAK;
slouken@0
   515
	MISC_keymap[Pk_Menu&0xFF] = SDLK_MENU;
slouken@0
   516
	MISC_keymap[Pk_Hyper_R&0xFF] = SDLK_MENU;   /* Windows "Menu" key */
slouken@0
   517
}
slouken@0
   518
slouken@0
   519
static unsigned long cap;
slouken@0
   520
slouken@0
   521
SDL_keysym *ph_TranslateKey(PhKeyEvent_t *key, SDL_keysym *keysym)
slouken@0
   522
{
slouken@0
   523
/*	
slouken@0
   524
	'sym' is set to the value of the key with modifiers applied to it. 
slouken@0
   525
	This member is valid only if Pk_KF_Sym_Valid is set in the key_flags.
slouken@0
   526
	We will assume it is valid.
slouken@0
   527
*/
slouken@0
   528
	cap = key->key_cap;
slouken@0
   529
    switch (cap>>8) {
slouken@0
   530
            case 0x00:  /* Latin 1 */
slouken@0
   531
            case 0x01:  /* Latin 2 */
slouken@0
   532
            case 0x02:  /* Latin 3 */
slouken@0
   533
            case 0x03:  /* Latin 4 */
slouken@0
   534
            case 0x04:  /* Katakana */
slouken@0
   535
            case 0x05:  /* Arabic */
slouken@0
   536
            case 0x06:  /* Cyrillic */
slouken@0
   537
            case 0x07:  /* Greek */
slouken@0
   538
            case 0x08:  /* Technical */
slouken@0
   539
            case 0x0A:  /* Publishing */
slouken@0
   540
            case 0x0C:  /* Hebrew */
slouken@0
   541
            case 0x0D:  /* Thai */
slouken@0
   542
                keysym->sym = (SDLKey)(cap&0xFF);
slouken@0
   543
                /* Map capital letter syms to lowercase */
slouken@0
   544
                if ((keysym->sym >= 'A')&&(keysym->sym <= 'Z'))
slouken@0
   545
                    keysym->sym += ('a'-'A');
slouken@0
   546
                break;
slouken@0
   547
//            case 0xFE:
slouken@0
   548
//                keysym->sym = ODD_keymap[sym&0xFF];
slouken@0
   549
//                break;
slouken@0
   550
            case 0xF0:
slouken@0
   551
                keysym->sym = MISC_keymap[cap&0xFF];
slouken@0
   552
                break;
slouken@0
   553
            default:
slouken@0
   554
                fprintf(stderr,"Photon: Unknown key_cap, cap = 0x%.4x\n", (unsigned int)cap);
slouken@0
   555
                break;
slouken@0
   556
    }	
slouken@0
   557
	return (keysym);
slouken@0
   558
}
slouken@0
   559
slouken@0
   560
void ph_InitOSKeymap(_THIS)
slouken@0
   561
{
slouken@0
   562
slouken@0
   563
	ph_InitKeymap();
slouken@0
   564
}
slouken@0
   565