shlwapi/tests: Move URL testing functions from path.c to url.c.
[wine/gsoc_dplay.git] / dlls / winex11.drv / mouse.c
blob6624c561741e0c8c705b2dccc9928bdf933f3f4f
1 /*
2 * X11 mouse driver
4 * Copyright 1998 Ulrich Weigand
5 * Copyright 2007 Henri Verbeet
7 * This library is free software; you can redistribute it and/or
8 * modify it under the terms of the GNU Lesser General Public
9 * License as published by the Free Software Foundation; either
10 * version 2.1 of the License, or (at your option) any later version.
12 * This library is distributed in the hope that it will be useful,
13 * but WITHOUT ANY WARRANTY; without even the implied warranty of
14 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
15 * Lesser General Public License for more details.
17 * You should have received a copy of the GNU Lesser General Public
18 * License along with this library; if not, write to the Free Software
19 * Foundation, Inc., 51 Franklin St, Fifth Floor, Boston, MA 02110-1301, USA
22 #include "config.h"
23 #include "wine/port.h"
25 #include <X11/Xlib.h>
26 #include <stdarg.h>
28 #ifdef SONAME_LIBXCURSOR
29 # include <X11/Xcursor/Xcursor.h>
30 static void *xcursor_handle;
31 # define MAKE_FUNCPTR(f) static typeof(f) * p##f
32 MAKE_FUNCPTR(XcursorImageCreate);
33 MAKE_FUNCPTR(XcursorImageDestroy);
34 MAKE_FUNCPTR(XcursorImageLoadCursor);
35 # undef MAKE_FUNCPTR
36 #endif /* SONAME_LIBXCURSOR */
38 #define NONAMELESSUNION
39 #define NONAMELESSSTRUCT
40 #include "windef.h"
41 #include "winbase.h"
42 #include "wine/winuser16.h"
44 #include "win.h"
45 #include "x11drv.h"
46 #include "wine/server.h"
47 #include "wine/library.h"
48 #include "wine/debug.h"
50 WINE_DEFAULT_DEBUG_CHANNEL(cursor);
52 /**********************************************************************/
54 #ifndef Button6Mask
55 #define Button6Mask (1<<13)
56 #endif
57 #ifndef Button7Mask
58 #define Button7Mask (1<<14)
59 #endif
61 #define NB_BUTTONS 7 /* Windows can handle 5 buttons and the wheel too */
63 static const UINT button_down_flags[NB_BUTTONS] =
65 MOUSEEVENTF_LEFTDOWN,
66 MOUSEEVENTF_MIDDLEDOWN,
67 MOUSEEVENTF_RIGHTDOWN,
68 MOUSEEVENTF_WHEEL,
69 MOUSEEVENTF_WHEEL,
70 MOUSEEVENTF_XDOWN,
71 MOUSEEVENTF_XDOWN
74 static const UINT button_up_flags[NB_BUTTONS] =
76 MOUSEEVENTF_LEFTUP,
77 MOUSEEVENTF_MIDDLEUP,
78 MOUSEEVENTF_RIGHTUP,
81 MOUSEEVENTF_XUP,
82 MOUSEEVENTF_XUP
85 POINT cursor_pos;
86 static DWORD last_time_modified;
87 static RECT cursor_clip; /* Cursor clipping rect */
89 BOOL X11DRV_SetCursorPos( INT x, INT y );
92 /***********************************************************************
93 * X11DRV_Xcursor_Init
95 * Load the Xcursor library for use.
97 void X11DRV_Xcursor_Init(void)
99 #ifdef SONAME_LIBXCURSOR
100 xcursor_handle = wine_dlopen(SONAME_LIBXCURSOR, RTLD_NOW, NULL, 0);
101 if (!xcursor_handle) /* wine_dlopen failed. */
103 WARN("Xcursor failed to load. Using fallback code.\n");
104 return;
106 #define LOAD_FUNCPTR(f) \
107 p##f = wine_dlsym(xcursor_handle, #f, NULL, 0)
109 LOAD_FUNCPTR(XcursorImageCreate);
110 LOAD_FUNCPTR(XcursorImageDestroy);
111 LOAD_FUNCPTR(XcursorImageLoadCursor);
112 #undef LOAD_FUNCPTR
113 #endif /* SONAME_LIBXCURSOR */
117 /***********************************************************************
118 * get_coords
120 * get the coordinates of a mouse event
122 static inline void get_coords( HWND hwnd, int x, int y, POINT *pt )
124 struct x11drv_win_data *data = X11DRV_get_win_data( hwnd );
126 if (!data) return;
128 pt->x = x + data->whole_rect.left;
129 pt->y = y + data->whole_rect.top;
132 /***********************************************************************
133 * clip_point_to_rect
135 * Clip point to the provided rectangle
137 static inline void clip_point_to_rect( LPCRECT rect, LPPOINT pt )
139 if (pt->x < rect->left) pt->x = rect->left;
140 else if (pt->x >= rect->right) pt->x = rect->right - 1;
141 if (pt->y < rect->top) pt->y = rect->top;
142 else if (pt->y >= rect->bottom) pt->y = rect->bottom - 1;
145 /***********************************************************************
146 * update_button_state
148 * Update the button state with what X provides us
150 static inline void update_button_state( unsigned int state )
152 key_state_table[VK_LBUTTON] = (state & Button1Mask ? 0x80 : 0);
153 key_state_table[VK_MBUTTON] = (state & Button2Mask ? 0x80 : 0);
154 key_state_table[VK_RBUTTON] = (state & Button3Mask ? 0x80 : 0);
155 /* X-buttons are not reported from XQueryPointer */
159 /***********************************************************************
160 * update_mouse_state
162 * Update the various window states on a mouse event.
164 static void update_mouse_state( HWND hwnd, Window window, int x, int y, unsigned int state, POINT *pt )
166 struct x11drv_thread_data *data = x11drv_thread_data();
168 if (window == root_window)
170 x += virtual_screen_rect.left;
171 y += virtual_screen_rect.top;
173 get_coords( hwnd, x, y, pt );
175 /* update the cursor */
177 if (data->cursor_window != window)
179 data->cursor_window = window;
180 wine_tsx11_lock();
181 if (data->cursor) XDefineCursor( data->display, window, data->cursor );
182 wine_tsx11_unlock();
185 /* update the wine server Z-order */
187 if (window != data->grab_window &&
188 /* ignore event if a button is pressed, since the mouse is then grabbed too */
189 !(state & (Button1Mask|Button2Mask|Button3Mask|Button4Mask|Button5Mask|Button6Mask|Button7Mask)))
191 SERVER_START_REQ( update_window_zorder )
193 req->window = hwnd;
194 req->rect.left = pt->x;
195 req->rect.top = pt->y;
196 req->rect.right = pt->x + 1;
197 req->rect.bottom = pt->y + 1;
198 wine_server_call( req );
200 SERVER_END_REQ;
205 /***********************************************************************
206 * get_key_state
208 static WORD get_key_state(void)
210 WORD ret = 0;
212 if (GetSystemMetrics( SM_SWAPBUTTON ))
214 if (key_state_table[VK_RBUTTON] & 0x80) ret |= MK_LBUTTON;
215 if (key_state_table[VK_LBUTTON] & 0x80) ret |= MK_RBUTTON;
217 else
219 if (key_state_table[VK_LBUTTON] & 0x80) ret |= MK_LBUTTON;
220 if (key_state_table[VK_RBUTTON] & 0x80) ret |= MK_RBUTTON;
222 if (key_state_table[VK_MBUTTON] & 0x80) ret |= MK_MBUTTON;
223 if (key_state_table[VK_SHIFT] & 0x80) ret |= MK_SHIFT;
224 if (key_state_table[VK_CONTROL] & 0x80) ret |= MK_CONTROL;
225 if (key_state_table[VK_XBUTTON1] & 0x80) ret |= MK_XBUTTON1;
226 if (key_state_table[VK_XBUTTON2] & 0x80) ret |= MK_XBUTTON2;
227 return ret;
231 /***********************************************************************
232 * queue_raw_mouse_message
234 static void queue_raw_mouse_message( UINT message, HWND hwnd, DWORD x, DWORD y,
235 DWORD data, DWORD time, DWORD extra_info, UINT injected_flags )
237 MSLLHOOKSTRUCT hook;
239 hook.pt.x = x;
240 hook.pt.y = y;
241 hook.mouseData = MAKELONG( 0, data );
242 hook.flags = injected_flags;
243 hook.time = time;
244 hook.dwExtraInfo = extra_info;
246 last_time_modified = GetTickCount();
247 if (HOOK_CallHooks( WH_MOUSE_LL, HC_ACTION, message, (LPARAM)&hook, TRUE )) return;
249 SERVER_START_REQ( send_hardware_message )
251 req->id = (injected_flags & LLMHF_INJECTED) ? 0 : GetCurrentThreadId();
252 req->win = hwnd;
253 req->msg = message;
254 req->wparam = MAKEWPARAM( get_key_state(), data );
255 req->lparam = 0;
256 req->x = x;
257 req->y = y;
258 req->time = time;
259 req->info = extra_info;
260 wine_server_call( req );
262 SERVER_END_REQ;
267 /***********************************************************************
268 * X11DRV_send_mouse_input
270 void X11DRV_send_mouse_input( HWND hwnd, DWORD flags, DWORD x, DWORD y,
271 DWORD data, DWORD time, DWORD extra_info, UINT injected_flags )
273 POINT pt;
275 if (flags & MOUSEEVENTF_MOVE && flags & MOUSEEVENTF_ABSOLUTE)
277 if (injected_flags & LLMHF_INJECTED)
279 pt.x = (x * screen_width) >> 16;
280 pt.y = (y * screen_height) >> 16;
282 else
284 pt.x = x;
285 pt.y = y;
286 wine_tsx11_lock();
287 if (cursor_pos.x == x && cursor_pos.y == y &&
288 (flags & ~(MOUSEEVENTF_MOVE | MOUSEEVENTF_ABSOLUTE)))
289 flags &= ~MOUSEEVENTF_MOVE;
290 wine_tsx11_unlock();
293 else if (flags & MOUSEEVENTF_MOVE)
295 int accel[3], xMult = 1, yMult = 1;
297 /* dx and dy can be negative numbers for relative movements */
298 SystemParametersInfoW(SPI_GETMOUSE, 0, accel, 0);
300 if (abs(x) > accel[0] && accel[2] != 0)
302 xMult = 2;
303 if ((abs(x) > accel[1]) && (accel[2] == 2)) xMult = 4;
305 if (abs(y) > accel[0] && accel[2] != 0)
307 yMult = 2;
308 if ((abs(y) > accel[1]) && (accel[2] == 2)) yMult = 4;
311 wine_tsx11_lock();
312 pt.x = cursor_pos.x + (long)x * xMult;
313 pt.y = cursor_pos.y + (long)y * yMult;
314 wine_tsx11_unlock();
316 else
318 wine_tsx11_lock();
319 pt = cursor_pos;
320 wine_tsx11_unlock();
323 if (flags & MOUSEEVENTF_MOVE)
325 queue_raw_mouse_message( WM_MOUSEMOVE, hwnd, pt.x, pt.y, data, time,
326 extra_info, injected_flags );
327 if ((injected_flags & LLMHF_INJECTED) &&
328 ((flags & MOUSEEVENTF_ABSOLUTE) || x || y)) /* we have to actually move the cursor */
330 X11DRV_SetCursorPos( pt.x, pt.y );
332 else
334 wine_tsx11_lock();
335 clip_point_to_rect( &cursor_clip, &pt);
336 cursor_pos = pt;
337 wine_tsx11_unlock();
340 if (flags & MOUSEEVENTF_LEFTDOWN)
342 key_state_table[VK_LBUTTON] |= 0xc0;
343 queue_raw_mouse_message( GetSystemMetrics(SM_SWAPBUTTON) ? WM_RBUTTONDOWN : WM_LBUTTONDOWN,
344 hwnd, pt.x, pt.y, data, time, extra_info, injected_flags );
346 if (flags & MOUSEEVENTF_LEFTUP)
348 key_state_table[VK_LBUTTON] &= ~0x80;
349 queue_raw_mouse_message( GetSystemMetrics(SM_SWAPBUTTON) ? WM_RBUTTONUP : WM_LBUTTONUP,
350 hwnd, pt.x, pt.y, data, time, extra_info, injected_flags );
352 if (flags & MOUSEEVENTF_RIGHTDOWN)
354 key_state_table[VK_RBUTTON] |= 0xc0;
355 queue_raw_mouse_message( GetSystemMetrics(SM_SWAPBUTTON) ? WM_LBUTTONDOWN : WM_RBUTTONDOWN,
356 hwnd, pt.x, pt.y, data, time, extra_info, injected_flags );
358 if (flags & MOUSEEVENTF_RIGHTUP)
360 key_state_table[VK_RBUTTON] &= ~0x80;
361 queue_raw_mouse_message( GetSystemMetrics(SM_SWAPBUTTON) ? WM_LBUTTONUP : WM_RBUTTONUP,
362 hwnd, pt.x, pt.y, data, time, extra_info, injected_flags );
364 if (flags & MOUSEEVENTF_MIDDLEDOWN)
366 key_state_table[VK_MBUTTON] |= 0xc0;
367 queue_raw_mouse_message( WM_MBUTTONDOWN, hwnd, pt.x, pt.y, data, time,
368 extra_info, injected_flags );
370 if (flags & MOUSEEVENTF_MIDDLEUP)
372 key_state_table[VK_MBUTTON] &= ~0x80;
373 queue_raw_mouse_message( WM_MBUTTONUP, hwnd, pt.x, pt.y, data, time,
374 extra_info, injected_flags );
376 if (flags & MOUSEEVENTF_WHEEL)
378 queue_raw_mouse_message( WM_MOUSEWHEEL, hwnd, pt.x, pt.y, data, time,
379 extra_info, injected_flags );
381 if (flags & MOUSEEVENTF_XDOWN)
383 key_state_table[VK_XBUTTON1 + data - 1] |= 0xc0;
384 queue_raw_mouse_message( WM_XBUTTONDOWN, hwnd, pt.x, pt.y, data, time,
385 extra_info, injected_flags );
387 if (flags & MOUSEEVENTF_XUP)
389 key_state_table[VK_XBUTTON1 + data - 1] &= ~0x80;
390 queue_raw_mouse_message( WM_XBUTTONUP, hwnd, pt.x, pt.y, data, time,
391 extra_info, injected_flags );
396 #ifdef SONAME_LIBXCURSOR
398 /***********************************************************************
399 * create_cursor_image
401 * Create an XcursorImage from a CURSORICONINFO
403 static XcursorImage *create_cursor_image( CURSORICONINFO *ptr )
405 int x, xmax;
406 int y, ymax;
407 int and_size, xor_size;
408 unsigned char *and_bits, *and_ptr, *xor_bits, *xor_ptr;
409 int and_width_bytes, xor_width_bytes;
410 XcursorPixel *pixel_ptr;
411 XcursorImage *image;
413 ymax = (ptr->nHeight > 32) ? 32 : ptr->nHeight;
414 xmax = (ptr->nWidth > 32) ? 32 : ptr->nWidth;
416 and_width_bytes = xmax / 8;
417 xor_width_bytes = and_width_bytes * ptr->bBitsPerPixel;
419 and_size = ptr->nWidth * ptr->nHeight / 8;
420 and_ptr = and_bits = (unsigned char *)(ptr + 1);
422 xor_size = xor_width_bytes * ptr->nHeight;
423 xor_ptr = xor_bits = and_ptr + and_size;
425 image = pXcursorImageCreate( xmax, ymax );
426 pixel_ptr = image->pixels;
428 /* On windows, to calculate the color for a pixel, first an AND is done
429 * with the background and the "and" bitmap, then an XOR with the "xor"
430 * bitmap. This means that when the data in the "and" bitmap is 0, the
431 * pixel will get the color as specified in the "xor" bitmap.
432 * However, if the data in the "and" bitmap is 1, the result will be the
433 * background XOR'ed with the value in the "xor" bitmap. In case the "xor"
434 * data is completely black (0x000000) the pixel will become transparent,
435 * in case it's white (0xffffff) the pixel will become the inverse of the
436 * background color.
438 * Since we can't support inverting colors, we map the grayscale value of
439 * the "xor" data to the alpha channel, and xor the the color with either
440 * black or white.
442 for (y = 0; y < ymax; ++y)
444 and_ptr = and_bits + (y * and_width_bytes);
445 xor_ptr = xor_bits + (y * xor_width_bytes);
447 for (x = 0; x < xmax; ++x)
449 /* Xcursor pixel data is in ARGB format, with A in the high byte */
450 switch (ptr->bBitsPerPixel)
452 case 32:
453 /* BGRA, 8 bits each */
454 *pixel_ptr = *xor_ptr++;
455 *pixel_ptr |= *xor_ptr++ << 8;
456 *pixel_ptr |= *xor_ptr++ << 16;
457 *pixel_ptr |= *xor_ptr++ << 24;
458 break;
460 case 24:
461 /* BGR, 8 bits each */
462 *pixel_ptr = *xor_ptr++;
463 *pixel_ptr |= *xor_ptr++ << 8;
464 *pixel_ptr |= *xor_ptr++ << 16;
465 break;
467 case 16:
468 /* BGR, 5 red, 6 green, 5 blue */
469 *pixel_ptr = *xor_ptr * 0x1f;
470 *pixel_ptr |= (*xor_ptr & 0xe0) << 3;
471 ++xor_ptr;
472 *pixel_ptr |= (*xor_ptr & 0x07) << 11;
473 *pixel_ptr |= (*xor_ptr & 0xf8) << 13;
474 break;
476 case 1:
477 if (*xor_ptr & (1 << (7 - (x & 7)))) *pixel_ptr = 0xffffff;
478 else *pixel_ptr = 0;
479 if ((x & 7) == 7) ++xor_ptr;
480 break;
482 default:
483 FIXME("Currently no support for cursors with %d bits per pixel\n", ptr->bBitsPerPixel);
484 return 0;
487 if (ptr->bBitsPerPixel != 32)
489 /* Alpha channel */
490 if (~*and_ptr & (1 << (7 - (x & 7)))) *pixel_ptr |= 0xff << 24;
491 else if (*pixel_ptr)
493 int alpha = (*pixel_ptr & 0xff) * 0.30f
494 + ((*pixel_ptr & 0xff00) >> 8) * 0.55f
495 + ((*pixel_ptr & 0xff0000) >> 16) * 0.15f;
496 *pixel_ptr ^= ((x + y) % 2) ? 0xffffff : 0x000000;
497 *pixel_ptr |= alpha << 24;
499 if ((x & 7) == 7) ++and_ptr;
501 ++pixel_ptr;
505 return image;
509 /***********************************************************************
510 * create_xcursor_cursor
512 * Use Xcursor to create an X cursor from a Windows one.
514 static Cursor create_xcursor_cursor( Display *display, CURSORICONINFO *ptr )
516 Cursor cursor;
517 XcursorImage *image;
519 if (!ptr) /* Create an empty cursor */
521 image = pXcursorImageCreate( 1, 1 );
522 image->xhot = 0;
523 image->yhot = 0;
524 *(image->pixels) = 0;
525 cursor = pXcursorImageLoadCursor( display, image );
526 pXcursorImageDestroy( image );
528 return cursor;
531 image = create_cursor_image( ptr );
532 if (!image) return 0;
534 /* Make sure hotspot is valid */
535 image->xhot = ptr->ptHotSpot.x;
536 image->yhot = ptr->ptHotSpot.y;
537 if (image->xhot < 0 || image->xhot >= image->width ||
538 image->yhot < 0 || image->yhot >= image->height)
540 image->xhot = image->width / 2;
541 image->yhot = image->height / 2;
544 image->delay = 0;
546 cursor = pXcursorImageLoadCursor( display, image );
547 pXcursorImageDestroy( image );
549 return cursor;
552 #endif /* SONAME_LIBXCURSOR */
555 /***********************************************************************
556 * create_cursor
558 * Create an X cursor from a Windows one.
560 static Cursor create_cursor( Display *display, CURSORICONINFO *ptr )
562 Pixmap pixmapBits, pixmapMask, pixmapMaskInv = 0, pixmapAll;
563 XColor fg, bg;
564 Cursor cursor = None;
565 POINT hotspot;
566 char *bitMask32 = NULL;
568 #ifdef SONAME_LIBXCURSOR
569 if (pXcursorImageLoadCursor) return create_xcursor_cursor( display, ptr );
570 #endif
572 if (!ptr) /* Create an empty cursor */
574 static const char data[] = { 0 };
576 bg.red = bg.green = bg.blue = 0x0000;
577 pixmapBits = XCreateBitmapFromData( display, root_window, data, 1, 1 );
578 if (pixmapBits)
580 cursor = XCreatePixmapCursor( display, pixmapBits, pixmapBits,
581 &bg, &bg, 0, 0 );
582 XFreePixmap( display, pixmapBits );
585 else /* Create the X cursor from the bits */
587 XImage *image;
588 GC gc;
590 TRACE("Bitmap %dx%d planes=%d bpp=%d bytesperline=%d\n",
591 ptr->nWidth, ptr->nHeight, ptr->bPlanes, ptr->bBitsPerPixel,
592 ptr->nWidthBytes);
594 /* Create a pixmap and transfer all the bits to it */
596 /* NOTE: Following hack works, but only because XFree depth
597 * 1 images really use 1 bit/pixel (and so the same layout
598 * as the Windows cursor data). Perhaps use a more generic
599 * algorithm here.
601 /* This pixmap will be written with two bitmaps. The first is
602 * the mask and the second is the image.
604 if (!(pixmapAll = XCreatePixmap( display, root_window,
605 ptr->nWidth, ptr->nHeight * 2, 1 )))
606 return 0;
607 if (!(image = XCreateImage( display, visual,
608 1, ZPixmap, 0, (char *)(ptr + 1), ptr->nWidth,
609 ptr->nHeight * 2, 16, ptr->nWidthBytes/ptr->bBitsPerPixel)))
611 XFreePixmap( display, pixmapAll );
612 return 0;
614 gc = XCreateGC( display, pixmapAll, 0, NULL );
615 XSetGraphicsExposures( display, gc, False );
616 image->byte_order = MSBFirst;
617 image->bitmap_bit_order = MSBFirst;
618 image->bitmap_unit = 16;
619 _XInitImageFuncPtrs(image);
620 if (ptr->bPlanes * ptr->bBitsPerPixel == 1)
622 /* A plain old white on black cursor. */
623 fg.red = fg.green = fg.blue = 0xffff;
624 bg.red = bg.green = bg.blue = 0x0000;
625 XPutImage( display, pixmapAll, gc, image,
626 0, 0, 0, 0, ptr->nWidth, ptr->nHeight * 2 );
628 else
630 int rbits, gbits, bbits, red, green, blue;
631 int rfg, gfg, bfg, rbg, gbg, bbg;
632 int rscale, gscale, bscale;
633 int x, y, xmax, ymax, bitIndex, byteIndex, xorIndex;
634 unsigned char *theMask, *theImage, theChar;
635 int threshold, fgBits, bgBits, bitShifted;
636 BYTE pXorBits[128]; /* Up to 32x32 icons */
638 switch (ptr->bBitsPerPixel)
640 case 32:
641 bitMask32 = HeapAlloc( GetProcessHeap(), HEAP_ZERO_MEMORY,
642 ptr->nWidth * ptr->nHeight / 8 );
643 /* Fallthrough */
644 case 24:
645 rbits = 8;
646 gbits = 8;
647 bbits = 8;
648 threshold = 0x40;
649 break;
650 case 16:
651 rbits = 5;
652 gbits = 6;
653 bbits = 5;
654 threshold = 0x40;
655 break;
656 default:
657 FIXME("Currently no support for cursors with %d bits per pixel\n",
658 ptr->bBitsPerPixel);
659 XFreePixmap( display, pixmapAll );
660 XFreeGC( display, gc );
661 image->data = NULL;
662 XDestroyImage( image );
663 return 0;
665 /* The location of the mask. */
666 theMask = (unsigned char *)(ptr + 1);
667 /* The mask should still be 1 bit per pixel. The color image
668 * should immediately follow the mask.
670 theImage = &theMask[ptr->nWidth/8 * ptr->nHeight];
671 rfg = gfg = bfg = rbg = gbg = bbg = 0;
672 bitIndex = 0;
673 byteIndex = 0;
674 xorIndex = 0;
675 fgBits = 0;
676 bitShifted = 0x01;
677 xmax = (ptr->nWidth > 32) ? 32 : ptr->nWidth;
678 if (ptr->nWidth > 32) {
679 ERR("Got a %dx%d cursor. Cannot handle larger than 32x32.\n",
680 ptr->nWidth, ptr->nHeight);
682 ymax = (ptr->nHeight > 32) ? 32 : ptr->nHeight;
684 memset(pXorBits, 0, 128);
685 for (y=0; y<ymax; y++)
687 for (x=0; x<xmax; x++)
689 red = green = blue = 0;
690 switch (ptr->bBitsPerPixel)
692 case 32:
693 theChar = theImage[byteIndex++];
694 blue = theChar;
695 theChar = theImage[byteIndex++];
696 green = theChar;
697 theChar = theImage[byteIndex++];
698 red = theChar;
699 theChar = theImage[byteIndex++];
700 /* If the alpha channel is >5% transparent,
701 * assume that we can add it to the bitMask32.
703 if (theChar > 0x0D)
704 *(bitMask32 + (y*xmax+x)/8) |= 1 << (x & 7);
705 break;
706 case 24:
707 theChar = theImage[byteIndex++];
708 blue = theChar;
709 theChar = theImage[byteIndex++];
710 green = theChar;
711 theChar = theImage[byteIndex++];
712 red = theChar;
713 break;
714 case 16:
715 theChar = theImage[byteIndex++];
716 blue = theChar & 0x1F;
717 green = (theChar & 0xE0) >> 5;
718 theChar = theImage[byteIndex++];
719 green |= (theChar & 0x07) << 3;
720 red = (theChar & 0xF8) >> 3;
721 break;
724 if (red+green+blue > threshold)
726 rfg += red;
727 gfg += green;
728 bfg += blue;
729 fgBits++;
730 pXorBits[xorIndex] |= bitShifted;
732 else
734 rbg += red;
735 gbg += green;
736 bbg += blue;
738 if (x%8 == 7)
740 bitShifted = 0x01;
741 xorIndex++;
743 else
744 bitShifted = bitShifted << 1;
747 rscale = 1 << (16 - rbits);
748 gscale = 1 << (16 - gbits);
749 bscale = 1 << (16 - bbits);
750 if (fgBits)
752 fg.red = rfg * rscale / fgBits;
753 fg.green = gfg * gscale / fgBits;
754 fg.blue = bfg * bscale / fgBits;
756 else fg.red = fg.green = fg.blue = 0;
757 bgBits = xmax * ymax - fgBits;
758 if (bgBits)
760 bg.red = rbg * rscale / bgBits;
761 bg.green = gbg * gscale / bgBits;
762 bg.blue = bbg * bscale / bgBits;
764 else bg.red = bg.green = bg.blue = 0;
765 pixmapBits = XCreateBitmapFromData( display, root_window, (char *)pXorBits, xmax, ymax );
766 if (!pixmapBits)
768 HeapFree( GetProcessHeap(), 0, bitMask32 );
769 XFreePixmap( display, pixmapAll );
770 XFreeGC( display, gc );
771 image->data = NULL;
772 XDestroyImage( image );
773 return 0;
776 /* Put the mask. */
777 XPutImage( display, pixmapAll, gc, image,
778 0, 0, 0, 0, ptr->nWidth, ptr->nHeight );
779 XSetFunction( display, gc, GXcopy );
780 /* Put the image */
781 XCopyArea( display, pixmapBits, pixmapAll, gc,
782 0, 0, xmax, ymax, 0, ptr->nHeight );
783 XFreePixmap( display, pixmapBits );
785 image->data = NULL;
786 XDestroyImage( image );
788 /* Now create the 2 pixmaps for bits and mask */
790 pixmapBits = XCreatePixmap( display, root_window, ptr->nWidth, ptr->nHeight, 1 );
791 if (ptr->bBitsPerPixel != 32)
793 pixmapMaskInv = XCreatePixmap( display, root_window, ptr->nWidth, ptr->nHeight, 1 );
794 pixmapMask = XCreatePixmap( display, root_window, ptr->nWidth, ptr->nHeight, 1 );
796 /* Make sure everything went OK so far */
797 if (pixmapBits && pixmapMask && pixmapMaskInv)
799 /* We have to do some magic here, as cursors are not fully
800 * compatible between Windows and X11. Under X11, there are
801 * only 3 possible color cursor: black, white and masked. So
802 * we map the 4th Windows color (invert the bits on the screen)
803 * to black and an additional white bit on an other place
804 * (+1,+1). This require some boolean arithmetic:
806 * Windows | X11
807 * And Xor Result | Bits Mask Result
808 * 0 0 black | 0 1 background
809 * 0 1 white | 1 1 foreground
810 * 1 0 no change | X 0 no change
811 * 1 1 inverted | 0 1 background
813 * which gives:
814 * Bits = not 'And' and 'Xor' or 'And2' and 'Xor2'
815 * Mask = not 'And' or 'Xor' or 'And2' and 'Xor2'
817 * FIXME: apparently some servers do support 'inverted' color.
818 * I don't know if it's correct per the X spec, but maybe we
819 * ought to take advantage of it. -- AJ
821 XSetFunction( display, gc, GXcopy );
822 XCopyArea( display, pixmapAll, pixmapBits, gc,
823 0, 0, ptr->nWidth, ptr->nHeight, 0, 0 );
824 XCopyArea( display, pixmapAll, pixmapMask, gc,
825 0, 0, ptr->nWidth, ptr->nHeight, 0, 0 );
826 XCopyArea( display, pixmapAll, pixmapMaskInv, gc,
827 0, 0, ptr->nWidth, ptr->nHeight, 0, 0 );
828 XSetFunction( display, gc, GXand );
829 XCopyArea( display, pixmapAll, pixmapMaskInv, gc,
830 0, ptr->nHeight, ptr->nWidth, ptr->nHeight, 0, 0 );
831 XSetFunction( display, gc, GXandReverse );
832 XCopyArea( display, pixmapAll, pixmapBits, gc,
833 0, ptr->nHeight, ptr->nWidth, ptr->nHeight, 0, 0 );
834 XSetFunction( display, gc, GXorReverse );
835 XCopyArea( display, pixmapAll, pixmapMask, gc,
836 0, ptr->nHeight, ptr->nWidth, ptr->nHeight, 0, 0 );
837 /* Additional white */
838 XSetFunction( display, gc, GXor );
839 XCopyArea( display, pixmapMaskInv, pixmapMask, gc,
840 0, 0, ptr->nWidth, ptr->nHeight, 1, 1 );
841 XCopyArea( display, pixmapMaskInv, pixmapBits, gc,
842 0, 0, ptr->nWidth, ptr->nHeight, 1, 1 );
843 XSetFunction( display, gc, GXcopy );
846 else
848 pixmapMask = XCreateBitmapFromData( display, root_window,
849 bitMask32, ptr->nWidth,
850 ptr->nHeight );
851 HeapFree( GetProcessHeap(), 0, bitMask32 );
854 /* Make sure hotspot is valid */
855 hotspot.x = ptr->ptHotSpot.x;
856 hotspot.y = ptr->ptHotSpot.y;
857 if (hotspot.x < 0 || hotspot.x >= ptr->nWidth ||
858 hotspot.y < 0 || hotspot.y >= ptr->nHeight)
860 hotspot.x = ptr->nWidth / 2;
861 hotspot.y = ptr->nHeight / 2;
864 if (pixmapBits && pixmapMask)
865 cursor = XCreatePixmapCursor( display, pixmapBits, pixmapMask,
866 &fg, &bg, hotspot.x, hotspot.y );
868 /* Now free everything */
870 if (pixmapAll) XFreePixmap( display, pixmapAll );
871 if (pixmapBits) XFreePixmap( display, pixmapBits );
872 if (pixmapMask) XFreePixmap( display, pixmapMask );
873 if (pixmapMaskInv) XFreePixmap( display, pixmapMaskInv );
874 XFreeGC( display, gc );
876 return cursor;
880 /***********************************************************************
881 * SetCursor (X11DRV.@)
883 void X11DRV_SetCursor( CURSORICONINFO *lpCursor )
885 struct x11drv_thread_data *data = x11drv_thread_data();
886 Cursor cursor;
888 if (lpCursor)
889 TRACE("%ux%u, planes %u, bpp %u\n",
890 lpCursor->nWidth, lpCursor->nHeight, lpCursor->bPlanes, lpCursor->bBitsPerPixel);
891 else
892 TRACE("NULL\n");
894 /* set the same cursor for all top-level windows of the current thread */
896 wine_tsx11_lock();
897 cursor = create_cursor( data->display, lpCursor );
898 if (cursor)
900 if (data->cursor) XFreeCursor( data->display, data->cursor );
901 data->cursor = cursor;
902 if (data->cursor_window)
904 XDefineCursor( data->display, data->cursor_window, cursor );
905 /* Make the change take effect immediately */
906 XFlush( data->display );
909 wine_tsx11_unlock();
912 /***********************************************************************
913 * SetCursorPos (X11DRV.@)
915 BOOL X11DRV_SetCursorPos( INT x, INT y )
917 Display *display = thread_display();
918 POINT pt;
920 TRACE( "warping to (%d,%d)\n", x, y );
922 wine_tsx11_lock();
923 if (cursor_pos.x == x && cursor_pos.y == y)
925 wine_tsx11_unlock();
926 /* We still need to generate WM_MOUSEMOVE */
927 queue_raw_mouse_message( WM_MOUSEMOVE, NULL, x, y, 0, GetCurrentTime(), 0, 0 );
928 return TRUE;
931 pt.x = x; pt.y = y;
932 clip_point_to_rect( &cursor_clip, &pt);
933 XWarpPointer( display, root_window, root_window, 0, 0, 0, 0,
934 pt.x - virtual_screen_rect.left, pt.y - virtual_screen_rect.top );
935 XFlush( display ); /* avoids bad mouse lag in games that do their own mouse warping */
936 cursor_pos = pt;
937 wine_tsx11_unlock();
938 return TRUE;
941 /***********************************************************************
942 * GetCursorPos (X11DRV.@)
944 BOOL X11DRV_GetCursorPos(LPPOINT pos)
946 Display *display = thread_display();
947 Window root, child;
948 int rootX, rootY, winX, winY;
949 unsigned int xstate;
951 wine_tsx11_lock();
952 if ((GetTickCount() - last_time_modified > 100) &&
953 XQueryPointer( display, root_window, &root, &child,
954 &rootX, &rootY, &winX, &winY, &xstate ))
956 update_button_state( xstate );
957 winX += virtual_screen_rect.left;
958 winY += virtual_screen_rect.top;
959 TRACE("pointer at (%d,%d)\n", winX, winY );
960 cursor_pos.x = winX;
961 cursor_pos.y = winY;
963 *pos = cursor_pos;
964 wine_tsx11_unlock();
965 return TRUE;
969 /***********************************************************************
970 * ClipCursor (X11DRV.@)
972 * Set the cursor clipping rectangle.
974 BOOL X11DRV_ClipCursor( LPCRECT clip )
976 if (!IntersectRect( &cursor_clip, &virtual_screen_rect, clip ))
977 cursor_clip = virtual_screen_rect;
979 return TRUE;
982 /***********************************************************************
983 * X11DRV_ButtonPress
985 void X11DRV_ButtonPress( HWND hwnd, XEvent *xev )
987 XButtonEvent *event = &xev->xbutton;
988 int buttonNum = event->button - 1;
989 WORD wData = 0;
990 POINT pt;
992 if (buttonNum >= NB_BUTTONS) return;
993 if (!hwnd) return;
995 switch (buttonNum)
997 case 3:
998 wData = WHEEL_DELTA;
999 break;
1000 case 4:
1001 wData = -WHEEL_DELTA;
1002 break;
1003 case 5:
1004 wData = XBUTTON1;
1005 break;
1006 case 6:
1007 wData = XBUTTON2;
1008 break;
1011 update_mouse_state( hwnd, event->window, event->x, event->y, event->state, &pt );
1013 X11DRV_send_mouse_input( hwnd, button_down_flags[buttonNum] | MOUSEEVENTF_ABSOLUTE | MOUSEEVENTF_MOVE,
1014 pt.x, pt.y, wData, EVENT_x11_time_to_win32_time(event->time), 0, 0 );
1018 /***********************************************************************
1019 * X11DRV_ButtonRelease
1021 void X11DRV_ButtonRelease( HWND hwnd, XEvent *xev )
1023 XButtonEvent *event = &xev->xbutton;
1024 int buttonNum = event->button - 1;
1025 WORD wData = 0;
1026 POINT pt;
1028 if (buttonNum >= NB_BUTTONS || !button_up_flags[buttonNum]) return;
1029 if (!hwnd) return;
1031 switch (buttonNum)
1033 case 5:
1034 wData = XBUTTON1;
1035 break;
1036 case 6:
1037 wData = XBUTTON2;
1038 break;
1041 update_mouse_state( hwnd, event->window, event->x, event->y, event->state, &pt );
1043 X11DRV_send_mouse_input( hwnd, button_up_flags[buttonNum] | MOUSEEVENTF_ABSOLUTE | MOUSEEVENTF_MOVE,
1044 pt.x, pt.y, wData, EVENT_x11_time_to_win32_time(event->time), 0, 0 );
1048 /***********************************************************************
1049 * X11DRV_MotionNotify
1051 void X11DRV_MotionNotify( HWND hwnd, XEvent *xev )
1053 XMotionEvent *event = &xev->xmotion;
1054 POINT pt;
1056 TRACE("hwnd %p, event->is_hint %d\n", hwnd, event->is_hint);
1058 if (!hwnd) return;
1060 update_mouse_state( hwnd, event->window, event->x, event->y, event->state, &pt );
1062 X11DRV_send_mouse_input( hwnd, MOUSEEVENTF_MOVE | MOUSEEVENTF_ABSOLUTE,
1063 pt.x, pt.y, 0, EVENT_x11_time_to_win32_time(event->time), 0, 0 );
1067 /***********************************************************************
1068 * X11DRV_EnterNotify
1070 void X11DRV_EnterNotify( HWND hwnd, XEvent *xev )
1072 XCrossingEvent *event = &xev->xcrossing;
1073 POINT pt;
1075 TRACE("hwnd %p, event->detail %d\n", hwnd, event->detail);
1077 if (!hwnd) return;
1078 if (event->detail == NotifyVirtual || event->detail == NotifyNonlinearVirtual) return;
1080 /* simulate a mouse motion event */
1081 update_mouse_state( hwnd, event->window, event->x, event->y, event->state, &pt );
1083 X11DRV_send_mouse_input( hwnd, MOUSEEVENTF_MOVE | MOUSEEVENTF_ABSOLUTE,
1084 pt.x, pt.y, 0, EVENT_x11_time_to_win32_time(event->time), 0, 0 );