push 3fbe09a897e9df6e6f0eb06b20d156a830394152
[wine/hacks.git] / server / window.c
blob95eae8777631e75acf7d06f201f34bf3b363351e
1 /*
2 * Server-side window handling
4 * Copyright (C) 2001 Alexandre Julliard
6 * This library is free software; you can redistribute it and/or
7 * modify it under the terms of the GNU Lesser General Public
8 * License as published by the Free Software Foundation; either
9 * version 2.1 of the License, or (at your option) any later version.
11 * This library is distributed in the hope that it will be useful,
12 * but WITHOUT ANY WARRANTY; without even the implied warranty of
13 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
14 * Lesser General Public License for more details.
16 * You should have received a copy of the GNU Lesser General Public
17 * License along with this library; if not, write to the Free Software
18 * Foundation, Inc., 51 Franklin St, Fifth Floor, Boston, MA 02110-1301, USA
21 #include "config.h"
22 #include "wine/port.h"
24 #include <assert.h>
25 #include <stdarg.h>
27 #include "ntstatus.h"
28 #define WIN32_NO_STATUS
29 #include "windef.h"
30 #include "winbase.h"
31 #include "wingdi.h"
32 #include "winuser.h"
33 #include "winternl.h"
35 #include "object.h"
36 #include "request.h"
37 #include "thread.h"
38 #include "process.h"
39 #include "user.h"
40 #include "unicode.h"
42 /* a window property */
43 struct property
45 unsigned short type; /* property type (see below) */
46 atom_t atom; /* property atom */
47 lparam_t data; /* property data (user-defined storage) */
50 enum property_type
52 PROP_TYPE_FREE, /* free entry */
53 PROP_TYPE_STRING, /* atom that was originally a string */
54 PROP_TYPE_ATOM /* plain atom */
58 struct window
60 struct window *parent; /* parent window */
61 user_handle_t owner; /* owner of this window */
62 struct list children; /* list of children in Z-order */
63 struct list unlinked; /* list of children not linked in the Z-order list */
64 struct list entry; /* entry in parent's children list */
65 user_handle_t handle; /* full handle for this window */
66 struct thread *thread; /* thread owning the window */
67 struct desktop *desktop; /* desktop that the window belongs to */
68 struct window_class *class; /* window class */
69 atom_t atom; /* class atom */
70 user_handle_t last_active; /* last active popup */
71 rectangle_t window_rect; /* window rectangle (relative to parent client area) */
72 rectangle_t visible_rect; /* visible part of window rect (relative to parent client area) */
73 rectangle_t client_rect; /* client rectangle (relative to parent client area) */
74 struct region *win_region; /* region for shaped windows (relative to window rect) */
75 struct region *update_region; /* update region (relative to window rect) */
76 unsigned int style; /* window style */
77 unsigned int ex_style; /* window extended style */
78 unsigned int id; /* window id */
79 mod_handle_t instance; /* creator instance */
80 unsigned int is_unicode : 1; /* ANSI or unicode */
81 unsigned int is_linked : 1; /* is it linked into the parent z-order list? */
82 unsigned int is_layered : 1; /* has layered info been set? */
83 unsigned int color_key; /* color key for a layered window */
84 unsigned int alpha; /* alpha value for a layered window */
85 unsigned int layered_flags; /* flags for a layered window */
86 lparam_t user_data; /* user-specific data */
87 WCHAR *text; /* window caption text */
88 unsigned int paint_flags; /* various painting flags */
89 int prop_inuse; /* number of in-use window properties */
90 int prop_alloc; /* number of allocated window properties */
91 struct property *properties; /* window properties array */
92 int nb_extra_bytes; /* number of extra bytes */
93 char extra_bytes[1]; /* extra bytes storage */
96 #define PAINT_INTERNAL 0x01 /* internal WM_PAINT pending */
97 #define PAINT_ERASE 0x02 /* needs WM_ERASEBKGND */
98 #define PAINT_NONCLIENT 0x04 /* needs WM_NCPAINT */
99 #define PAINT_DELAYED_ERASE 0x08 /* still needs erase after WM_ERASEBKGND */
101 /* growable array of user handles */
102 struct user_handle_array
104 user_handle_t *handles;
105 int count;
106 int total;
109 /* global window pointers */
110 static struct window *shell_window;
111 static struct window *shell_listview;
112 static struct window *progman_window;
113 static struct window *taskman_window;
115 /* magic HWND_TOP etc. pointers */
116 #define WINPTR_TOP ((struct window *)1L)
117 #define WINPTR_BOTTOM ((struct window *)2L)
118 #define WINPTR_TOPMOST ((struct window *)3L)
119 #define WINPTR_NOTOPMOST ((struct window *)4L)
121 /* retrieve a pointer to a window from its handle */
122 static inline struct window *get_window( user_handle_t handle )
124 struct window *ret = get_user_object( handle, USER_WINDOW );
125 if (!ret) set_win32_error( ERROR_INVALID_WINDOW_HANDLE );
126 return ret;
129 /* check if window is the desktop */
130 static inline int is_desktop_window( const struct window *win )
132 return !win->parent; /* only desktop windows have no parent */
135 /* get next window in Z-order list */
136 static inline struct window *get_next_window( struct window *win )
138 struct list *ptr = list_next( &win->parent->children, &win->entry );
139 return ptr ? LIST_ENTRY( ptr, struct window, entry ) : NULL;
142 /* get previous window in Z-order list */
143 static inline struct window *get_prev_window( struct window *win )
145 struct list *ptr = list_prev( &win->parent->children, &win->entry );
146 return ptr ? LIST_ENTRY( ptr, struct window, entry ) : NULL;
149 /* get first child in Z-order list */
150 static inline struct window *get_first_child( struct window *win )
152 struct list *ptr = list_head( &win->children );
153 return ptr ? LIST_ENTRY( ptr, struct window, entry ) : NULL;
156 /* get last child in Z-order list */
157 static inline struct window *get_last_child( struct window *win )
159 struct list *ptr = list_tail( &win->children );
160 return ptr ? LIST_ENTRY( ptr, struct window, entry ) : NULL;
163 /* link a window at the right place in the siblings list */
164 static void link_window( struct window *win, struct window *previous )
166 if (previous == WINPTR_NOTOPMOST)
168 if (!(win->ex_style & WS_EX_TOPMOST) && win->is_linked) return; /* nothing to do */
169 win->ex_style &= ~WS_EX_TOPMOST;
170 previous = WINPTR_TOP; /* fallback to the HWND_TOP case */
173 list_remove( &win->entry ); /* unlink it from the previous location */
175 if (previous == WINPTR_BOTTOM)
177 list_add_tail( &win->parent->children, &win->entry );
178 win->ex_style &= ~WS_EX_TOPMOST;
180 else if (previous == WINPTR_TOPMOST)
182 list_add_head( &win->parent->children, &win->entry );
183 win->ex_style |= WS_EX_TOPMOST;
185 else if (previous == WINPTR_TOP)
187 struct list *entry = win->parent->children.next;
188 if (!(win->ex_style & WS_EX_TOPMOST)) /* put it above the first non-topmost window */
190 while (entry != &win->parent->children &&
191 LIST_ENTRY( entry, struct window, entry )->ex_style & WS_EX_TOPMOST)
192 entry = entry->next;
194 list_add_before( entry, &win->entry );
196 else
198 list_add_after( &previous->entry, &win->entry );
199 if (!(previous->ex_style & WS_EX_TOPMOST)) win->ex_style &= ~WS_EX_TOPMOST;
200 else
202 struct window *next = get_next_window( win );
203 if (next && (next->ex_style & WS_EX_TOPMOST)) win->ex_style |= WS_EX_TOPMOST;
207 win->is_linked = 1;
210 /* change the parent of a window (or unlink the window if the new parent is NULL) */
211 static int set_parent_window( struct window *win, struct window *parent )
213 struct window *ptr;
215 /* make sure parent is not a child of window */
216 for (ptr = parent; ptr; ptr = ptr->parent)
218 if (ptr == win)
220 set_error( STATUS_INVALID_PARAMETER );
221 return 0;
225 if (parent)
227 win->parent = parent;
228 link_window( win, WINPTR_TOP );
230 /* if parent belongs to a different thread and the window isn't */
231 /* top-level, attach the two threads */
232 if (parent->thread && parent->thread != win->thread && !is_desktop_window(parent))
233 attach_thread_input( win->thread, parent->thread );
235 else /* move it to parent unlinked list */
237 list_remove( &win->entry ); /* unlink it from the previous location */
238 list_add_head( &win->parent->unlinked, &win->entry );
239 win->is_linked = 0;
241 return 1;
244 /* append a user handle to a handle array */
245 static int add_handle_to_array( struct user_handle_array *array, user_handle_t handle )
247 if (array->count >= array->total)
249 int new_total = max( array->total * 2, 32 );
250 user_handle_t *new_array = realloc( array->handles, new_total * sizeof(*new_array) );
251 if (!new_array)
253 free( array->handles );
254 set_error( STATUS_NO_MEMORY );
255 return 0;
257 array->handles = new_array;
258 array->total = new_total;
260 array->handles[array->count++] = handle;
261 return 1;
264 /* set a window property */
265 static void set_property( struct window *win, atom_t atom, lparam_t data, enum property_type type )
267 int i, free = -1;
268 struct property *new_props;
270 /* check if it exists already */
271 for (i = 0; i < win->prop_inuse; i++)
273 if (win->properties[i].type == PROP_TYPE_FREE)
275 free = i;
276 continue;
278 if (win->properties[i].atom == atom)
280 win->properties[i].type = type;
281 win->properties[i].data = data;
282 return;
286 /* need to add an entry */
287 if (!grab_global_atom( NULL, atom )) return;
288 if (free == -1)
290 /* no free entry */
291 if (win->prop_inuse >= win->prop_alloc)
293 /* need to grow the array */
294 if (!(new_props = realloc( win->properties,
295 sizeof(*new_props) * (win->prop_alloc + 16) )))
297 set_error( STATUS_NO_MEMORY );
298 release_global_atom( NULL, atom );
299 return;
301 win->prop_alloc += 16;
302 win->properties = new_props;
304 free = win->prop_inuse++;
306 win->properties[free].atom = atom;
307 win->properties[free].type = type;
308 win->properties[free].data = data;
311 /* remove a window property */
312 static lparam_t remove_property( struct window *win, atom_t atom )
314 int i;
316 for (i = 0; i < win->prop_inuse; i++)
318 if (win->properties[i].type == PROP_TYPE_FREE) continue;
319 if (win->properties[i].atom == atom)
321 release_global_atom( NULL, atom );
322 win->properties[i].type = PROP_TYPE_FREE;
323 return win->properties[i].data;
326 /* FIXME: last error? */
327 return 0;
330 /* find a window property */
331 static lparam_t get_property( struct window *win, atom_t atom )
333 int i;
335 for (i = 0; i < win->prop_inuse; i++)
337 if (win->properties[i].type == PROP_TYPE_FREE) continue;
338 if (win->properties[i].atom == atom) return win->properties[i].data;
340 /* FIXME: last error? */
341 return 0;
344 /* destroy all properties of a window */
345 static inline void destroy_properties( struct window *win )
347 int i;
349 if (!win->properties) return;
350 for (i = 0; i < win->prop_inuse; i++)
352 if (win->properties[i].type == PROP_TYPE_FREE) continue;
353 release_global_atom( NULL, win->properties[i].atom );
355 free( win->properties );
358 /* detach a window from its owner thread but keep the window around */
359 static void detach_window_thread( struct window *win )
361 struct thread *thread = win->thread;
363 if (!thread) return;
364 if (thread->queue)
366 if (win->update_region) inc_queue_paint_count( thread, -1 );
367 if (win->paint_flags & PAINT_INTERNAL) inc_queue_paint_count( thread, -1 );
368 queue_cleanup_window( thread, win->handle );
370 assert( thread->desktop_users > 0 );
371 thread->desktop_users--;
372 release_class( win->class );
373 win->class = NULL;
375 /* don't hold a reference to the desktop so that the desktop window can be */
376 /* destroyed when the desktop ref count reaches zero */
377 release_object( win->desktop );
378 win->thread = NULL;
381 /* destroy a window */
382 void destroy_window( struct window *win )
384 /* destroy all children */
385 while (!list_empty(&win->children))
386 destroy_window( LIST_ENTRY( list_head(&win->children), struct window, entry ));
387 while (!list_empty(&win->unlinked))
388 destroy_window( LIST_ENTRY( list_head(&win->unlinked), struct window, entry ));
390 /* reset global window pointers, if the corresponding window is destroyed */
391 if (win == shell_window) shell_window = NULL;
392 if (win == shell_listview) shell_listview = NULL;
393 if (win == progman_window) progman_window = NULL;
394 if (win == taskman_window) taskman_window = NULL;
395 free_user_handle( win->handle );
396 destroy_properties( win );
397 list_remove( &win->entry );
398 if (is_desktop_window(win))
400 struct desktop *desktop = win->desktop;
401 assert( desktop->top_window == win || desktop->msg_window == win );
402 if (desktop->top_window == win) desktop->top_window = NULL;
403 else desktop->msg_window = NULL;
405 detach_window_thread( win );
406 if (win->win_region) free_region( win->win_region );
407 if (win->update_region) free_region( win->update_region );
408 if (win->class) release_class( win->class );
409 free( win->text );
410 memset( win, 0x55, sizeof(*win) + win->nb_extra_bytes - 1 );
411 free( win );
414 /* get the process owning the top window of a given desktop */
415 struct process *get_top_window_owner( struct desktop *desktop )
417 struct window *win = desktop->top_window;
418 if (!win || !win->thread) return NULL;
419 return win->thread->process;
422 /* attempt to close the desktop window when the last process using it is gone */
423 void close_desktop_window( struct desktop *desktop )
425 struct window *win = desktop->top_window;
426 if (win && win->thread) post_message( win->handle, WM_CLOSE, 0, 0 );
429 /* create a new window structure (note: the window is not linked in the window tree) */
430 static struct window *create_window( struct window *parent, struct window *owner,
431 atom_t atom, mod_handle_t instance )
433 static const rectangle_t empty_rect;
434 int extra_bytes;
435 struct window *win = NULL;
436 struct desktop *desktop;
437 struct window_class *class;
439 if (!(desktop = get_thread_desktop( current, DESKTOP_CREATEWINDOW ))) return NULL;
441 if (!(class = grab_class( current->process, atom, instance, &extra_bytes )))
443 release_object( desktop );
444 return NULL;
447 if (!parent) /* null parent is only allowed for desktop or HWND_MESSAGE top window */
449 if (is_desktop_class( class ))
450 parent = desktop->top_window; /* use existing desktop if any */
451 else if (is_hwnd_message_class( class ))
452 /* use desktop window if message window is already created */
453 parent = desktop->msg_window ? desktop->top_window : NULL;
454 else if (!(parent = desktop->top_window)) /* must already have a desktop then */
456 set_error( STATUS_ACCESS_DENIED );
457 goto failed;
461 /* parent must be on the same desktop */
462 if (parent && parent->desktop != desktop)
464 set_error( STATUS_ACCESS_DENIED );
465 goto failed;
468 if (!(win = mem_alloc( sizeof(*win) + extra_bytes - 1 ))) goto failed;
469 if (!(win->handle = alloc_user_handle( win, USER_WINDOW ))) goto failed;
471 win->parent = parent;
472 win->owner = owner ? owner->handle : 0;
473 win->thread = current;
474 win->desktop = desktop;
475 win->class = class;
476 win->atom = atom;
477 win->last_active = win->handle;
478 win->win_region = NULL;
479 win->update_region = NULL;
480 win->style = 0;
481 win->ex_style = 0;
482 win->id = 0;
483 win->instance = 0;
484 win->is_unicode = 1;
485 win->is_linked = 0;
486 win->is_layered = 0;
487 win->user_data = 0;
488 win->text = NULL;
489 win->paint_flags = 0;
490 win->prop_inuse = 0;
491 win->prop_alloc = 0;
492 win->properties = NULL;
493 win->nb_extra_bytes = extra_bytes;
494 win->window_rect = win->visible_rect = win->client_rect = empty_rect;
495 memset( win->extra_bytes, 0, extra_bytes );
496 list_init( &win->children );
497 list_init( &win->unlinked );
499 /* if parent belongs to a different thread and the window isn't */
500 /* top-level, attach the two threads */
501 if (parent && parent->thread && parent->thread != current && !is_desktop_window(parent))
503 if (!attach_thread_input( current, parent->thread )) goto failed;
505 else /* otherwise just make sure that the thread has a message queue */
507 if (!current->queue && !init_thread_queue( current )) goto failed;
510 /* put it on parent unlinked list */
511 if (parent) list_add_head( &parent->unlinked, &win->entry );
512 else
514 list_init( &win->entry );
515 if (is_desktop_class( class ))
517 assert( !desktop->top_window );
518 desktop->top_window = win;
519 set_process_default_desktop( current->process, desktop, current->desktop );
521 else
523 assert( !desktop->msg_window );
524 desktop->msg_window = win;
528 current->desktop_users++;
529 return win;
531 failed:
532 if (win)
534 if (win->handle) free_user_handle( win->handle );
535 free( win );
537 release_object( desktop );
538 release_class( class );
539 return NULL;
542 /* destroy all windows belonging to a given thread */
543 void destroy_thread_windows( struct thread *thread )
545 user_handle_t handle = 0;
546 struct window *win;
548 while ((win = next_user_handle( &handle, USER_WINDOW )))
550 if (win->thread != thread) continue;
551 if (is_desktop_window( win )) detach_window_thread( win );
552 else destroy_window( win );
556 /* get the desktop window */
557 static struct window *get_desktop_window( struct thread *thread )
559 struct window *top_window;
560 struct desktop *desktop = get_thread_desktop( thread, 0 );
562 if (!desktop) return NULL;
563 top_window = desktop->top_window;
564 release_object( desktop );
565 return top_window;
568 /* check whether child is a descendant of parent */
569 int is_child_window( user_handle_t parent, user_handle_t child )
571 struct window *child_ptr = get_user_object( child, USER_WINDOW );
572 struct window *parent_ptr = get_user_object( parent, USER_WINDOW );
574 if (!child_ptr || !parent_ptr) return 0;
575 while (child_ptr->parent)
577 if (child_ptr->parent == parent_ptr) return 1;
578 child_ptr = child_ptr->parent;
580 return 0;
583 /* check whether window is a top-level window */
584 int is_top_level_window( user_handle_t window )
586 struct window *win = get_user_object( window, USER_WINDOW );
587 #ifndef NOFOCUSLOSS
588 /* set to 1 to not loose focus (e.g. when playing a game
589 * in virtual desktop mode) */
590 #define NOFOCUSLOSS 0
591 #endif
592 if(NOFOCUSLOSS)
593 return (win && win->parent && is_desktop_window(win->parent));
594 else
595 return (win && (is_desktop_window(win) || is_desktop_window(win->parent)));
598 /* make a window active if possible */
599 int make_window_active( user_handle_t window )
601 struct window *owner, *win = get_window( window );
603 if (!win) return 0;
605 /* set last active for window and its owner */
606 win->last_active = win->handle;
607 if ((owner = get_user_object( win->owner, USER_WINDOW ))) owner->last_active = win->handle;
608 return 1;
611 /* increment (or decrement) the window paint count */
612 static inline void inc_window_paint_count( struct window *win, int incr )
614 if (win->thread) inc_queue_paint_count( win->thread, incr );
617 /* check if window and all its ancestors are visible */
618 static int is_visible( const struct window *win )
620 while (win)
622 if (!(win->style & WS_VISIBLE)) return 0;
623 win = win->parent;
624 /* if parent is minimized children are not visible */
625 if (win && (win->style & WS_MINIMIZE)) return 0;
627 return 1;
630 /* same as is_visible but takes a window handle */
631 int is_window_visible( user_handle_t window )
633 struct window *win = get_user_object( window, USER_WINDOW );
634 if (!win) return 0;
635 return is_visible( win );
638 /* check if point is inside the window */
639 static inline int is_point_in_window( struct window *win, int x, int y )
641 if (!(win->style & WS_VISIBLE)) return 0; /* not visible */
642 if ((win->style & (WS_POPUP|WS_CHILD|WS_DISABLED)) == (WS_CHILD|WS_DISABLED))
643 return 0; /* disabled child */
644 if ((win->ex_style & (WS_EX_LAYERED|WS_EX_TRANSPARENT)) == (WS_EX_LAYERED|WS_EX_TRANSPARENT))
645 return 0; /* transparent */
646 if (x < win->visible_rect.left || x >= win->visible_rect.right ||
647 y < win->visible_rect.top || y >= win->visible_rect.bottom)
648 return 0; /* not in window */
649 if (win->win_region &&
650 !point_in_region( win->win_region, x - win->window_rect.left, y - win->window_rect.top ))
651 return 0; /* not in window region */
652 return 1;
655 /* fill an array with the handles of the children of a specified window */
656 static unsigned int get_children_windows( struct window *parent, atom_t atom, thread_id_t tid,
657 user_handle_t *handles, unsigned int max_count )
659 struct window *ptr;
660 unsigned int count = 0;
662 if (!parent) return 0;
664 LIST_FOR_EACH_ENTRY( ptr, &parent->children, struct window, entry )
666 if (atom && get_class_atom(ptr->class) != atom) continue;
667 if (tid && get_thread_id(ptr->thread) != tid) continue;
668 if (handles)
670 if (count >= max_count) break;
671 handles[count] = ptr->handle;
673 count++;
675 return count;
678 /* find child of 'parent' that contains the given point (in parent-relative coords) */
679 static struct window *child_window_from_point( struct window *parent, int x, int y )
681 struct window *ptr;
683 LIST_FOR_EACH_ENTRY( ptr, &parent->children, struct window, entry )
685 if (!is_point_in_window( ptr, x, y )) continue; /* skip it */
687 /* if window is minimized or disabled, return at once */
688 if (ptr->style & (WS_MINIMIZE|WS_DISABLED)) return ptr;
690 /* if point is not in client area, return at once */
691 if (x < ptr->client_rect.left || x >= ptr->client_rect.right ||
692 y < ptr->client_rect.top || y >= ptr->client_rect.bottom)
693 return ptr;
695 return child_window_from_point( ptr, x - ptr->client_rect.left, y - ptr->client_rect.top );
697 return parent; /* not found any child */
700 /* find all children of 'parent' that contain the given point */
701 static int get_window_children_from_point( struct window *parent, int x, int y,
702 struct user_handle_array *array )
704 struct window *ptr;
706 LIST_FOR_EACH_ENTRY( ptr, &parent->children, struct window, entry )
708 if (!is_point_in_window( ptr, x, y )) continue; /* skip it */
710 /* if point is in client area, and window is not minimized or disabled, check children */
711 if (!(ptr->style & (WS_MINIMIZE|WS_DISABLED)) &&
712 x >= ptr->client_rect.left && x < ptr->client_rect.right &&
713 y >= ptr->client_rect.top && y < ptr->client_rect.bottom)
715 if (!get_window_children_from_point( ptr, x - ptr->client_rect.left,
716 y - ptr->client_rect.top, array ))
717 return 0;
720 /* now add window to the array */
721 if (!add_handle_to_array( array, ptr->handle )) return 0;
723 return 1;
726 /* find window containing point (in absolute coords) */
727 user_handle_t window_from_point( struct desktop *desktop, int x, int y )
729 struct window *ret;
731 if (!desktop->top_window) return 0;
732 ret = child_window_from_point( desktop->top_window, x, y );
733 return ret->handle;
736 /* return list of all windows containing point (in absolute coords) */
737 static int all_windows_from_point( struct window *top, int x, int y, struct user_handle_array *array )
739 struct window *ptr;
741 /* make point relative to top window */
742 for (ptr = top->parent; ptr && !is_desktop_window(ptr); ptr = ptr->parent)
744 x -= ptr->client_rect.left;
745 y -= ptr->client_rect.top;
748 if (!is_point_in_window( top, x, y )) return 1;
750 /* if point is in client area, and window is not minimized or disabled, check children */
751 if (!(top->style & (WS_MINIMIZE|WS_DISABLED)) &&
752 x >= top->client_rect.left && x < top->client_rect.right &&
753 y >= top->client_rect.top && y < top->client_rect.bottom)
755 if (!is_desktop_window(top))
757 x -= top->client_rect.left;
758 y -= top->client_rect.top;
760 if (!get_window_children_from_point( top, x, y, array )) return 0;
762 /* now add window to the array */
763 if (!add_handle_to_array( array, top->handle )) return 0;
764 return 1;
768 /* return the thread owning a window */
769 struct thread *get_window_thread( user_handle_t handle )
771 struct window *win = get_user_object( handle, USER_WINDOW );
772 if (!win || !win->thread) return NULL;
773 return (struct thread *)grab_object( win->thread );
777 /* check if any area of a window needs repainting */
778 static inline int win_needs_repaint( struct window *win )
780 return win->update_region || (win->paint_flags & PAINT_INTERNAL);
784 /* find a child of the specified window that needs repainting */
785 static struct window *find_child_to_repaint( struct window *parent, struct thread *thread )
787 struct window *ptr, *ret = NULL;
789 LIST_FOR_EACH_ENTRY( ptr, &parent->children, struct window, entry )
791 if (!(ptr->style & WS_VISIBLE)) continue;
792 if (ptr->thread == thread && win_needs_repaint( ptr ))
793 ret = ptr;
794 else if (!(ptr->style & WS_MINIMIZE)) /* explore its children */
795 ret = find_child_to_repaint( ptr, thread );
796 if (ret) break;
799 if (ret && (ret->ex_style & WS_EX_TRANSPARENT))
801 /* transparent window, check for non-transparent sibling to paint first */
802 for (ptr = get_next_window(ret); ptr; ptr = get_next_window(ptr))
804 if (!(ptr->style & WS_VISIBLE)) continue;
805 if (ptr->ex_style & WS_EX_TRANSPARENT) continue;
806 if (ptr->thread != thread) continue;
807 if (win_needs_repaint( ptr )) return ptr;
810 return ret;
814 /* find a window that needs to receive a WM_PAINT; also clear its internal paint flag */
815 user_handle_t find_window_to_repaint( user_handle_t parent, struct thread *thread )
817 struct window *ptr, *win, *top_window = get_desktop_window( thread );
819 if (!top_window) return 0;
821 if (top_window->thread == thread && win_needs_repaint( top_window )) win = top_window;
822 else win = find_child_to_repaint( top_window, thread );
824 if (win && parent)
826 /* check that it is a child of the specified parent */
827 for (ptr = win; ptr; ptr = ptr->parent)
828 if (ptr->handle == parent) break;
829 /* otherwise don't return any window, we don't repaint a child before its parent */
830 if (!ptr) win = NULL;
832 if (!win) return 0;
833 win->paint_flags &= ~PAINT_INTERNAL;
834 return win->handle;
838 /* intersect the window region with the specified region, relative to the window parent */
839 static struct region *intersect_window_region( struct region *region, struct window *win )
841 /* make region relative to window rect */
842 offset_region( region, -win->window_rect.left, -win->window_rect.top );
843 if (!intersect_region( region, region, win->win_region )) return NULL;
844 /* make region relative to parent again */
845 offset_region( region, win->window_rect.left, win->window_rect.top );
846 return region;
850 /* convert coordinates from client to screen coords */
851 static inline void client_to_screen( struct window *win, int *x, int *y )
853 for ( ; win && !is_desktop_window(win); win = win->parent)
855 *x += win->client_rect.left;
856 *y += win->client_rect.top;
860 /* convert coordinates from client to screen coords */
861 static inline void client_to_screen_rect( struct window *win, rectangle_t *rect )
863 for ( ; win && !is_desktop_window(win); win = win->parent)
865 rect->left += win->client_rect.left;
866 rect->right += win->client_rect.left;
867 rect->top += win->client_rect.top;
868 rect->bottom += win->client_rect.top;
872 /* map the region from window to screen coordinates */
873 static inline void map_win_region_to_screen( struct window *win, struct region *region )
875 if (!is_desktop_window(win))
877 int x = win->window_rect.left;
878 int y = win->window_rect.top;
879 client_to_screen( win->parent, &x, &y );
880 offset_region( region, x, y );
885 /* clip all children of a given window out of the visible region */
886 static struct region *clip_children( struct window *parent, struct window *last,
887 struct region *region, int offset_x, int offset_y )
889 struct window *ptr;
890 struct region *tmp = create_empty_region();
892 if (!tmp) return NULL;
893 LIST_FOR_EACH_ENTRY( ptr, &parent->children, struct window, entry )
895 if (ptr == last) break;
896 if (!(ptr->style & WS_VISIBLE)) continue;
897 if (ptr->ex_style & WS_EX_TRANSPARENT) continue;
898 set_region_rect( tmp, &ptr->visible_rect );
899 if (ptr->win_region && !intersect_window_region( tmp, ptr ))
901 free_region( tmp );
902 return NULL;
904 offset_region( tmp, offset_x, offset_y );
905 if (!(region = subtract_region( region, region, tmp ))) break;
906 if (is_region_empty( region )) break;
908 free_region( tmp );
909 return region;
913 /* compute the intersection of two rectangles; return 0 if the result is empty */
914 static inline int intersect_rect( rectangle_t *dst, const rectangle_t *src1, const rectangle_t *src2 )
916 dst->left = max( src1->left, src2->left );
917 dst->top = max( src1->top, src2->top );
918 dst->right = min( src1->right, src2->right );
919 dst->bottom = min( src1->bottom, src2->bottom );
920 return (dst->left < dst->right && dst->top < dst->bottom);
924 /* offset the coordinates of a rectangle */
925 static inline void offset_rect( rectangle_t *rect, int offset_x, int offset_y )
927 rect->left += offset_x;
928 rect->top += offset_y;
929 rect->right += offset_x;
930 rect->bottom += offset_y;
934 /* set the region to the client rect clipped by the window rect, in parent-relative coordinates */
935 static void set_region_client_rect( struct region *region, struct window *win )
937 rectangle_t rect;
939 intersect_rect( &rect, &win->window_rect, &win->client_rect );
940 set_region_rect( region, &rect );
944 /* get the top-level window to clip against for a given window */
945 static inline struct window *get_top_clipping_window( struct window *win )
947 while (win->parent && !is_desktop_window(win->parent)) win = win->parent;
948 return win;
952 /* compute the visible region of a window, in window coordinates */
953 static struct region *get_visible_region( struct window *win, unsigned int flags )
955 struct region *tmp = NULL, *region;
956 int offset_x, offset_y;
958 if (!(region = create_empty_region())) return NULL;
960 /* first check if all ancestors are visible */
962 if (!is_visible( win )) return region; /* empty region */
964 /* create a region relative to the window itself */
966 if ((flags & DCX_PARENTCLIP) && win->parent && !is_desktop_window(win->parent))
968 set_region_client_rect( region, win->parent );
969 offset_region( region, -win->parent->client_rect.left, -win->parent->client_rect.top );
971 else if (flags & DCX_WINDOW)
973 set_region_rect( region, &win->visible_rect );
974 if (win->win_region && !intersect_window_region( region, win )) goto error;
976 else
978 set_region_client_rect( region, win );
979 if (win->win_region && !intersect_window_region( region, win )) goto error;
982 /* clip children */
984 if (flags & DCX_CLIPCHILDREN)
986 if (is_desktop_window(win)) offset_x = offset_y = 0;
987 else
989 offset_x = win->client_rect.left;
990 offset_y = win->client_rect.top;
992 if (!clip_children( win, NULL, region, offset_x, offset_y )) goto error;
995 /* clip siblings of ancestors */
997 if (is_desktop_window(win)) offset_x = offset_y = 0;
998 else
1000 offset_x = win->window_rect.left;
1001 offset_y = win->window_rect.top;
1004 if ((tmp = create_empty_region()) != NULL)
1006 while (win->parent)
1008 /* we don't clip out top-level siblings as that's up to the native windowing system */
1009 if ((win->style & WS_CLIPSIBLINGS) && !is_desktop_window( win->parent ))
1011 if (!clip_children( win->parent, win, region, 0, 0 )) goto error;
1012 if (is_region_empty( region )) break;
1014 /* clip to parent client area */
1015 win = win->parent;
1016 if (!is_desktop_window(win))
1018 offset_x += win->client_rect.left;
1019 offset_y += win->client_rect.top;
1020 offset_region( region, win->client_rect.left, win->client_rect.top );
1022 set_region_client_rect( tmp, win );
1023 if (win->win_region && !intersect_window_region( tmp, win )) goto error;
1024 if (!intersect_region( region, region, tmp )) goto error;
1025 if (is_region_empty( region )) break;
1027 free_region( tmp );
1029 offset_region( region, -offset_x, -offset_y ); /* make it relative to target window */
1030 return region;
1032 error:
1033 if (tmp) free_region( tmp );
1034 free_region( region );
1035 return NULL;
1039 /* get the window class of a window */
1040 struct window_class* get_window_class( user_handle_t window )
1042 struct window *win;
1043 if (!(win = get_window( window ))) return NULL;
1044 if (!win->class) set_error( STATUS_ACCESS_DENIED );
1045 return win->class;
1048 /* determine the window visible rectangle, i.e. window or client rect cropped by parent rects */
1049 /* the returned rectangle is in window coordinates; return 0 if rectangle is empty */
1050 static int get_window_visible_rect( struct window *win, rectangle_t *rect, int frame )
1052 int offset_x = 0, offset_y = 0;
1054 if (!(win->style & WS_VISIBLE)) return 0;
1056 *rect = frame ? win->window_rect : win->client_rect;
1057 if (!is_desktop_window(win))
1059 offset_x = win->window_rect.left;
1060 offset_y = win->window_rect.top;
1063 while (win->parent)
1065 win = win->parent;
1066 if (!(win->style & WS_VISIBLE) || win->style & WS_MINIMIZE) return 0;
1067 if (!is_desktop_window(win))
1069 offset_x += win->client_rect.left;
1070 offset_y += win->client_rect.top;
1071 offset_rect( rect, win->client_rect.left, win->client_rect.top );
1073 if (!intersect_rect( rect, rect, &win->client_rect )) return 0;
1074 if (!intersect_rect( rect, rect, &win->window_rect )) return 0;
1076 offset_rect( rect, -offset_x, -offset_y );
1077 return 1;
1080 /* return a copy of the specified region cropped to the window client or frame rectangle, */
1081 /* and converted from client to window coordinates. Helper for (in)validate_window. */
1082 static struct region *crop_region_to_win_rect( struct window *win, struct region *region, int frame )
1084 rectangle_t rect;
1085 struct region *tmp;
1087 if (!get_window_visible_rect( win, &rect, frame )) return NULL;
1088 if (!(tmp = create_empty_region())) return NULL;
1089 set_region_rect( tmp, &rect );
1091 if (region)
1093 /* map it to client coords */
1094 offset_region( tmp, win->window_rect.left - win->client_rect.left,
1095 win->window_rect.top - win->client_rect.top );
1097 /* intersect specified region with bounding rect */
1098 if (!intersect_region( tmp, region, tmp )) goto done;
1099 if (is_region_empty( tmp )) goto done;
1101 /* map it back to window coords */
1102 offset_region( tmp, win->client_rect.left - win->window_rect.left,
1103 win->client_rect.top - win->window_rect.top );
1105 return tmp;
1107 done:
1108 free_region( tmp );
1109 return NULL;
1113 /* set a region as new update region for the window */
1114 static void set_update_region( struct window *win, struct region *region )
1116 if (region && !is_region_empty( region ))
1118 if (!win->update_region) inc_window_paint_count( win, 1 );
1119 else free_region( win->update_region );
1120 win->update_region = region;
1122 else
1124 if (win->update_region)
1126 inc_window_paint_count( win, -1 );
1127 free_region( win->update_region );
1129 win->paint_flags &= ~(PAINT_ERASE | PAINT_DELAYED_ERASE | PAINT_NONCLIENT);
1130 win->update_region = NULL;
1131 if (region) free_region( region );
1136 /* add a region to the update region; the passed region is freed or reused */
1137 static int add_update_region( struct window *win, struct region *region )
1139 if (win->update_region && !union_region( region, win->update_region, region ))
1141 free_region( region );
1142 return 0;
1144 set_update_region( win, region );
1145 return 1;
1149 /* crop the update region of children to the specified rectangle, in client coords */
1150 static void crop_children_update_region( struct window *win, rectangle_t *rect )
1152 struct window *child;
1153 struct region *tmp;
1154 rectangle_t child_rect;
1156 LIST_FOR_EACH_ENTRY( child, &win->children, struct window, entry )
1158 if (!(child->style & WS_VISIBLE)) continue;
1159 if (!rect) /* crop everything out */
1161 crop_children_update_region( child, NULL );
1162 set_update_region( child, NULL );
1163 continue;
1166 /* nothing to do if child is completely inside rect */
1167 if (child->window_rect.left >= rect->left &&
1168 child->window_rect.top >= rect->top &&
1169 child->window_rect.right <= rect->right &&
1170 child->window_rect.bottom <= rect->bottom) continue;
1172 /* map to child client coords and crop grand-children */
1173 child_rect = *rect;
1174 offset_rect( &child_rect, -child->client_rect.left, -child->client_rect.top );
1175 crop_children_update_region( child, &child_rect );
1177 /* now crop the child itself */
1178 if (!child->update_region) continue;
1179 if (!(tmp = create_empty_region())) continue;
1180 set_region_rect( tmp, rect );
1181 offset_region( tmp, -child->window_rect.left, -child->window_rect.top );
1182 if (intersect_region( tmp, child->update_region, tmp )) set_update_region( child, tmp );
1183 else free_region( tmp );
1188 /* validate the non client area of a window */
1189 static void validate_non_client( struct window *win )
1191 struct region *tmp;
1192 rectangle_t rect;
1194 if (!win->update_region) return; /* nothing to do */
1196 /* get client rect in window coords */
1197 rect.left = win->client_rect.left - win->window_rect.left;
1198 rect.top = win->client_rect.top - win->window_rect.top;
1199 rect.right = win->client_rect.right - win->window_rect.left;
1200 rect.bottom = win->client_rect.bottom - win->window_rect.top;
1202 if ((tmp = create_empty_region()))
1204 set_region_rect( tmp, &rect );
1205 if (intersect_region( tmp, win->update_region, tmp ))
1206 set_update_region( win, tmp );
1207 else
1208 free_region( tmp );
1210 win->paint_flags &= ~PAINT_NONCLIENT;
1214 /* validate a window completely so that we don't get any further paint messages for it */
1215 static void validate_whole_window( struct window *win )
1217 set_update_region( win, NULL );
1219 if (win->paint_flags & PAINT_INTERNAL)
1221 win->paint_flags &= ~PAINT_INTERNAL;
1222 inc_window_paint_count( win, -1 );
1227 /* validate a window's children so that we don't get any further paint messages for it */
1228 static void validate_children( struct window *win )
1230 struct window *child;
1232 LIST_FOR_EACH_ENTRY( child, &win->children, struct window, entry )
1234 if (!(child->style & WS_VISIBLE)) continue;
1235 validate_children(child);
1236 validate_whole_window(child);
1241 /* validate the update region of a window on all parents; helper for get_update_region */
1242 static void validate_parents( struct window *child )
1244 int offset_x = 0, offset_y = 0;
1245 struct window *win = child;
1246 struct region *tmp = NULL;
1248 if (!child->update_region) return;
1250 while (win->parent)
1252 /* map to parent client coords */
1253 offset_x += win->window_rect.left;
1254 offset_y += win->window_rect.top;
1256 win = win->parent;
1258 /* and now map to window coords */
1259 offset_x += win->client_rect.left - win->window_rect.left;
1260 offset_y += win->client_rect.top - win->window_rect.top;
1262 if (win->update_region && !(win->style & WS_CLIPCHILDREN))
1264 if (!tmp && !(tmp = create_empty_region())) return;
1265 offset_region( child->update_region, offset_x, offset_y );
1266 if (subtract_region( tmp, win->update_region, child->update_region ))
1268 set_update_region( win, tmp );
1269 tmp = NULL;
1271 /* restore child coords */
1272 offset_region( child->update_region, -offset_x, -offset_y );
1275 if (tmp) free_region( tmp );
1279 /* add/subtract a region (in client coordinates) to the update region of the window */
1280 static void redraw_window( struct window *win, struct region *region, int frame, unsigned int flags )
1282 struct region *tmp;
1283 struct window *child;
1285 if (flags & RDW_INVALIDATE)
1287 if (!(tmp = crop_region_to_win_rect( win, region, frame ))) return;
1289 if (!add_update_region( win, tmp )) return;
1291 if (flags & RDW_FRAME) win->paint_flags |= PAINT_NONCLIENT;
1292 if (flags & RDW_ERASE) win->paint_flags |= PAINT_ERASE;
1294 else if (flags & RDW_VALIDATE)
1296 if (!region && (flags & RDW_NOFRAME)) /* shortcut: validate everything */
1298 set_update_region( win, NULL );
1300 else if (win->update_region)
1302 if ((tmp = crop_region_to_win_rect( win, region, frame )))
1304 if (!subtract_region( tmp, win->update_region, tmp ))
1306 free_region( tmp );
1307 return;
1309 set_update_region( win, tmp );
1311 if (flags & RDW_NOFRAME) validate_non_client( win );
1312 if (flags & RDW_NOERASE) win->paint_flags &= ~(PAINT_ERASE | PAINT_DELAYED_ERASE);
1316 if ((flags & RDW_INTERNALPAINT) && !(win->paint_flags & PAINT_INTERNAL))
1318 win->paint_flags |= PAINT_INTERNAL;
1319 inc_window_paint_count( win, 1 );
1321 else if ((flags & RDW_NOINTERNALPAINT) && (win->paint_flags & PAINT_INTERNAL))
1323 win->paint_flags &= ~PAINT_INTERNAL;
1324 inc_window_paint_count( win, -1 );
1327 /* now process children recursively */
1329 if (flags & RDW_NOCHILDREN) return;
1330 if (win->style & WS_MINIMIZE) return;
1331 if ((win->style & WS_CLIPCHILDREN) && !(flags & RDW_ALLCHILDREN)) return;
1333 if (!(tmp = crop_region_to_win_rect( win, region, 0 ))) return;
1335 /* map to client coordinates */
1336 offset_region( tmp, win->window_rect.left - win->client_rect.left,
1337 win->window_rect.top - win->client_rect.top );
1339 if (flags & RDW_INVALIDATE) flags |= RDW_FRAME | RDW_ERASE;
1341 LIST_FOR_EACH_ENTRY( child, &win->children, struct window, entry )
1343 if (!(child->style & WS_VISIBLE)) continue;
1344 if (!rect_in_region( tmp, &child->window_rect )) continue;
1345 offset_region( tmp, -child->client_rect.left, -child->client_rect.top );
1346 redraw_window( child, tmp, 1, flags );
1347 offset_region( tmp, child->client_rect.left, child->client_rect.top );
1349 free_region( tmp );
1353 /* retrieve the update flags for a window depending on the state of the update region */
1354 static unsigned int get_update_flags( struct window *win, unsigned int flags )
1356 unsigned int ret = 0;
1358 if (flags & UPDATE_NONCLIENT)
1360 if ((win->paint_flags & PAINT_NONCLIENT) && win->update_region) ret |= UPDATE_NONCLIENT;
1362 if (flags & UPDATE_ERASE)
1364 if ((win->paint_flags & PAINT_ERASE) && win->update_region) ret |= UPDATE_ERASE;
1366 if (flags & UPDATE_PAINT)
1368 if (win->update_region)
1370 if (win->paint_flags & PAINT_DELAYED_ERASE) ret |= UPDATE_DELAYED_ERASE;
1371 ret |= UPDATE_PAINT;
1374 if (flags & UPDATE_INTERNALPAINT)
1376 if (win->paint_flags & PAINT_INTERNAL)
1378 ret |= UPDATE_INTERNALPAINT;
1379 if (win->paint_flags & PAINT_DELAYED_ERASE) ret |= UPDATE_DELAYED_ERASE;
1382 return ret;
1386 /* iterate through the children of the given window until we find one with some update flags */
1387 static unsigned int get_child_update_flags( struct window *win, struct window *from_child,
1388 unsigned int flags, struct window **child )
1390 struct window *ptr;
1391 unsigned int ret = 0;
1393 /* first make sure we want to iterate children at all */
1395 if (win->style & WS_MINIMIZE) return 0;
1397 /* note: the WS_CLIPCHILDREN test is the opposite of the invalidation case,
1398 * here we only want to repaint children of windows that clip them, others
1399 * need to wait for WM_PAINT to be done in the parent first.
1401 if (!(flags & UPDATE_ALLCHILDREN) && !(win->style & WS_CLIPCHILDREN)) return 0;
1403 LIST_FOR_EACH_ENTRY( ptr, &win->children, struct window, entry )
1405 if (from_child) /* skip all children until from_child is found */
1407 if (ptr == from_child) from_child = NULL;
1408 continue;
1410 if (!(ptr->style & WS_VISIBLE)) continue;
1411 if ((ret = get_update_flags( ptr, flags )) != 0)
1413 *child = ptr;
1414 break;
1416 if ((ret = get_child_update_flags( ptr, NULL, flags, child ))) break;
1418 return ret;
1421 /* iterate through children and siblings of the given window until we find one with some update flags */
1422 static unsigned int get_window_update_flags( struct window *win, struct window *from_child,
1423 unsigned int flags, struct window **child )
1425 unsigned int ret;
1426 struct window *ptr, *from_sibling = NULL;
1428 /* if some parent is not visible start from the next sibling */
1430 if (!is_visible( win )) return 0;
1431 for (ptr = from_child; ptr; ptr = ptr->parent)
1433 if (!(ptr->style & WS_VISIBLE) || (ptr->style & WS_MINIMIZE)) from_sibling = ptr;
1434 if (ptr == win) break;
1437 /* non-client painting must be delayed if one of the parents is going to
1438 * be repainted and doesn't clip children */
1440 if ((flags & UPDATE_NONCLIENT) && !(flags & (UPDATE_PAINT|UPDATE_INTERNALPAINT)))
1442 for (ptr = win->parent; ptr; ptr = ptr->parent)
1444 if (!(ptr->style & WS_CLIPCHILDREN) && win_needs_repaint( ptr ))
1445 return 0;
1447 if (from_child && !(flags & UPDATE_ALLCHILDREN))
1449 for (ptr = from_sibling ? from_sibling : from_child; ptr; ptr = ptr->parent)
1451 if (!(ptr->style & WS_CLIPCHILDREN) && win_needs_repaint( ptr )) from_sibling = ptr;
1452 if (ptr == win) break;
1458 /* check window itself (only if not restarting from a child) */
1460 if (!from_child)
1462 if ((ret = get_update_flags( win, flags )))
1464 *child = win;
1465 return ret;
1467 from_child = win;
1470 /* now check children */
1472 if (flags & UPDATE_NOCHILDREN) return 0;
1473 if (!from_sibling)
1475 if ((ret = get_child_update_flags( from_child, NULL, flags, child ))) return ret;
1476 from_sibling = from_child;
1479 /* then check siblings and parent siblings */
1481 while (from_sibling->parent && from_sibling != win)
1483 if ((ret = get_child_update_flags( from_sibling->parent, from_sibling, flags, child )))
1484 return ret;
1485 from_sibling = from_sibling->parent;
1487 return 0;
1491 /* expose the areas revealed by a vis region change on the window parent */
1492 /* returns the region exposed on the window itself (in client coordinates) */
1493 static struct region *expose_window( struct window *win, const rectangle_t *old_window_rect,
1494 struct region *old_vis_rgn )
1496 struct region *new_vis_rgn, *exposed_rgn;
1498 if (!(new_vis_rgn = get_visible_region( win, DCX_WINDOW ))) return NULL;
1500 if ((exposed_rgn = create_empty_region()))
1502 if (subtract_region( exposed_rgn, new_vis_rgn, old_vis_rgn ) && !is_region_empty( exposed_rgn ))
1504 /* make it relative to the new client area */
1505 offset_region( exposed_rgn, win->window_rect.left - win->client_rect.left,
1506 win->window_rect.top - win->client_rect.top );
1508 else
1510 free_region( exposed_rgn );
1511 exposed_rgn = NULL;
1515 if (win->parent)
1517 /* make it relative to the old window pos for subtracting */
1518 offset_region( new_vis_rgn, win->window_rect.left - old_window_rect->left,
1519 win->window_rect.top - old_window_rect->top );
1521 if ((win->parent->style & WS_CLIPCHILDREN) ?
1522 subtract_region( new_vis_rgn, old_vis_rgn, new_vis_rgn ) :
1523 xor_region( new_vis_rgn, old_vis_rgn, new_vis_rgn ))
1525 if (!is_region_empty( new_vis_rgn ))
1527 /* make it relative to parent */
1528 offset_region( new_vis_rgn, old_window_rect->left, old_window_rect->top );
1529 redraw_window( win->parent, new_vis_rgn, 0, RDW_INVALIDATE | RDW_ERASE | RDW_ALLCHILDREN );
1533 free_region( new_vis_rgn );
1534 return exposed_rgn;
1538 /* set the window and client rectangles, updating the update region if necessary */
1539 static void set_window_pos( struct window *win, struct window *previous,
1540 unsigned int swp_flags, const rectangle_t *window_rect,
1541 const rectangle_t *client_rect, const rectangle_t *visible_rect,
1542 const rectangle_t *valid_rects )
1544 struct region *old_vis_rgn = NULL, *exposed_rgn = NULL;
1545 const rectangle_t old_window_rect = win->window_rect;
1546 const rectangle_t old_visible_rect = win->visible_rect;
1547 const rectangle_t old_client_rect = win->client_rect;
1548 rectangle_t rect;
1549 int client_changed, frame_changed;
1550 int visible = (win->style & WS_VISIBLE) || (swp_flags & SWP_SHOWWINDOW);
1552 if (win->parent && !is_visible( win->parent )) visible = 0;
1554 if (visible && !(old_vis_rgn = get_visible_region( win, DCX_WINDOW ))) return;
1556 /* set the new window info before invalidating anything */
1558 win->window_rect = *window_rect;
1559 win->visible_rect = *visible_rect;
1560 win->client_rect = *client_rect;
1561 if (!(swp_flags & SWP_NOZORDER) && win->parent) link_window( win, previous );
1562 if (swp_flags & SWP_SHOWWINDOW) win->style |= WS_VISIBLE;
1563 else if (swp_flags & SWP_HIDEWINDOW) win->style &= ~WS_VISIBLE;
1565 /* if the window is not visible, everything is easy */
1566 if (!visible) return;
1568 /* expose anything revealed by the change */
1570 if (!(swp_flags & SWP_NOREDRAW))
1571 exposed_rgn = expose_window( win, &old_window_rect, old_vis_rgn );
1573 if (!(win->style & WS_VISIBLE))
1575 /* clear the update region since the window is no longer visible */
1576 validate_whole_window( win );
1577 validate_children( win );
1578 goto done;
1581 /* crop update region to the new window rect */
1583 if (win->update_region)
1585 if (get_window_visible_rect( win, &rect, 1 ))
1587 struct region *tmp = create_empty_region();
1588 if (tmp)
1590 set_region_rect( tmp, &rect );
1591 if (intersect_region( tmp, win->update_region, tmp ))
1592 set_update_region( win, tmp );
1593 else
1594 free_region( tmp );
1597 else set_update_region( win, NULL ); /* visible rect is empty */
1600 /* crop children regions to the new window rect */
1602 if (get_window_visible_rect( win, &rect, 0 ))
1604 /* map to client coords */
1605 offset_rect( &rect, win->window_rect.left - win->client_rect.left,
1606 win->window_rect.top - win->client_rect.top );
1607 crop_children_update_region( win, &rect );
1609 else crop_children_update_region( win, NULL );
1611 if (swp_flags & SWP_NOREDRAW) goto done; /* do not repaint anything */
1613 /* expose the whole non-client area if it changed in any way */
1615 if (swp_flags & SWP_NOCOPYBITS)
1617 frame_changed = ((swp_flags & SWP_FRAMECHANGED) ||
1618 memcmp( window_rect, &old_window_rect, sizeof(old_window_rect) ) ||
1619 memcmp( visible_rect, &old_visible_rect, sizeof(old_visible_rect) ));
1620 client_changed = memcmp( client_rect, &old_client_rect, sizeof(old_client_rect) );
1622 else
1624 /* assume the bits have been moved to follow the window rect */
1625 int x_offset = window_rect->left - old_window_rect.left;
1626 int y_offset = window_rect->top - old_window_rect.top;
1627 frame_changed = ((swp_flags & SWP_FRAMECHANGED) ||
1628 window_rect->right - old_window_rect.right != x_offset ||
1629 window_rect->bottom - old_window_rect.bottom != y_offset ||
1630 visible_rect->left - old_visible_rect.left != x_offset ||
1631 visible_rect->right - old_visible_rect.right != x_offset ||
1632 visible_rect->top - old_visible_rect.top != y_offset ||
1633 visible_rect->bottom - old_visible_rect.bottom != y_offset);
1634 client_changed = (client_rect->left - old_client_rect.left != x_offset ||
1635 client_rect->right - old_client_rect.right != x_offset ||
1636 client_rect->top - old_client_rect.top != y_offset ||
1637 client_rect->bottom - old_client_rect.bottom != y_offset ||
1638 !valid_rects ||
1639 memcmp( &valid_rects[0], client_rect, sizeof(*client_rect) ));
1642 if (frame_changed || client_changed)
1644 struct region *win_rgn = old_vis_rgn; /* reuse previous region */
1646 set_region_rect( win_rgn, window_rect );
1647 if (valid_rects)
1649 /* subtract the valid portion of client rect from the total region */
1650 struct region *tmp = create_empty_region();
1651 if (tmp)
1653 set_region_rect( tmp, &valid_rects[0] );
1654 if (subtract_region( tmp, win_rgn, tmp )) win_rgn = tmp;
1655 else free_region( tmp );
1658 if (!is_desktop_window(win))
1659 offset_region( win_rgn, -client_rect->left, -client_rect->top );
1660 if (exposed_rgn)
1662 union_region( exposed_rgn, exposed_rgn, win_rgn );
1663 if (win_rgn != old_vis_rgn) free_region( win_rgn );
1665 else
1667 exposed_rgn = win_rgn;
1668 if (win_rgn == old_vis_rgn) old_vis_rgn = NULL;
1672 if (exposed_rgn)
1673 redraw_window( win, exposed_rgn, 1, RDW_INVALIDATE | RDW_ERASE | RDW_FRAME | RDW_ALLCHILDREN );
1675 done:
1676 if (old_vis_rgn) free_region( old_vis_rgn );
1677 if (exposed_rgn) free_region( exposed_rgn );
1678 clear_error(); /* we ignore out of memory errors once the new rects have been set */
1682 /* set the window region, updating the update region if necessary */
1683 static void set_window_region( struct window *win, struct region *region, int redraw )
1685 struct region *old_vis_rgn = NULL, *exposed_rgn;
1687 /* no need to redraw if window is not visible */
1688 if (redraw && !is_visible( win )) redraw = 0;
1690 if (redraw) old_vis_rgn = get_visible_region( win, DCX_WINDOW );
1692 if (win->win_region) free_region( win->win_region );
1693 win->win_region = region;
1695 /* expose anything revealed by the change */
1696 if (old_vis_rgn && ((exposed_rgn = expose_window( win, &win->window_rect, old_vis_rgn ))))
1698 redraw_window( win, exposed_rgn, 1, RDW_INVALIDATE | RDW_ERASE | RDW_FRAME | RDW_ALLCHILDREN );
1699 free_region( exposed_rgn );
1702 if (old_vis_rgn) free_region( old_vis_rgn );
1703 clear_error(); /* we ignore out of memory errors since the region has been set */
1707 /* create a window */
1708 DECL_HANDLER(create_window)
1710 struct window *win, *parent = NULL, *owner = NULL;
1711 struct unicode_str cls_name;
1712 atom_t atom;
1714 reply->handle = 0;
1715 if (req->parent && !(parent = get_window( req->parent ))) return;
1717 if (req->owner)
1719 if (!(owner = get_window( req->owner ))) return;
1720 if (is_desktop_window(owner)) owner = NULL;
1721 else if (parent && !is_desktop_window(parent))
1723 /* an owned window must be created as top-level */
1724 set_error( STATUS_ACCESS_DENIED );
1725 return;
1727 else /* owner must be a top-level window */
1728 while (!is_desktop_window(owner->parent)) owner = owner->parent;
1731 get_req_unicode_str( &cls_name );
1732 atom = cls_name.len ? find_global_atom( NULL, &cls_name ) : req->atom;
1734 if (!(win = create_window( parent, owner, atom, req->instance ))) return;
1736 reply->handle = win->handle;
1737 reply->parent = win->parent ? win->parent->handle : 0;
1738 reply->owner = win->owner;
1739 reply->extra = win->nb_extra_bytes;
1740 reply->class_ptr = get_class_client_ptr( win->class );
1744 /* set the parent of a window */
1745 DECL_HANDLER(set_parent)
1747 struct window *win, *parent = NULL;
1749 if (!(win = get_window( req->handle ))) return;
1750 if (req->parent && !(parent = get_window( req->parent ))) return;
1752 if (is_desktop_window(win))
1754 set_error( STATUS_INVALID_PARAMETER );
1755 return;
1757 reply->old_parent = win->parent->handle;
1758 reply->full_parent = parent ? parent->handle : 0;
1759 set_parent_window( win, parent );
1763 /* destroy a window */
1764 DECL_HANDLER(destroy_window)
1766 struct window *win = get_window( req->handle );
1767 if (win)
1769 if (!is_desktop_window(win)) destroy_window( win );
1770 else if (win->thread == current) detach_window_thread( win );
1771 else set_error( STATUS_ACCESS_DENIED );
1776 /* retrieve the desktop window for the current thread */
1777 DECL_HANDLER(get_desktop_window)
1779 struct desktop *desktop = get_thread_desktop( current, 0 );
1781 if (!desktop) return;
1783 if (!desktop->top_window && req->force) /* create it */
1785 if ((desktop->top_window = create_window( NULL, NULL, DESKTOP_ATOM, 0 )))
1787 detach_window_thread( desktop->top_window );
1788 desktop->top_window->style = WS_POPUP | WS_VISIBLE | WS_CLIPSIBLINGS | WS_CLIPCHILDREN;
1792 if (!desktop->msg_window && req->force) /* create it */
1794 static const WCHAR messageW[] = {'M','e','s','s','a','g','e'};
1795 static const struct unicode_str name = { messageW, sizeof(messageW) };
1796 atom_t atom = add_global_atom( NULL, &name );
1797 if (atom && (desktop->msg_window = create_window( NULL, NULL, atom, 0 )))
1799 detach_window_thread( desktop->msg_window );
1800 desktop->msg_window->style = WS_POPUP | WS_CLIPSIBLINGS | WS_CLIPCHILDREN;
1804 reply->top_window = desktop->top_window ? desktop->top_window->handle : 0;
1805 reply->msg_window = desktop->msg_window ? desktop->msg_window->handle : 0;
1806 release_object( desktop );
1810 /* set a window owner */
1811 DECL_HANDLER(set_window_owner)
1813 struct window *win = get_window( req->handle );
1814 struct window *owner = NULL;
1816 if (!win) return;
1817 if (req->owner && !(owner = get_window( req->owner ))) return;
1818 if (is_desktop_window(win))
1820 set_error( STATUS_ACCESS_DENIED );
1821 return;
1823 reply->prev_owner = win->owner;
1824 reply->full_owner = win->owner = owner ? owner->handle : 0;
1828 /* get information from a window handle */
1829 DECL_HANDLER(get_window_info)
1831 struct window *win = get_window( req->handle );
1833 reply->full_handle = 0;
1834 reply->tid = reply->pid = 0;
1835 if (win)
1837 reply->full_handle = win->handle;
1838 reply->last_active = win->handle;
1839 reply->is_unicode = win->is_unicode;
1840 if (get_user_object( win->last_active, USER_WINDOW )) reply->last_active = win->last_active;
1841 if (win->thread)
1843 reply->tid = get_thread_id( win->thread );
1844 reply->pid = get_process_id( win->thread->process );
1845 reply->atom = win->class ? get_class_atom( win->class ) : DESKTOP_ATOM;
1851 /* set some information in a window */
1852 DECL_HANDLER(set_window_info)
1854 struct window *win = get_window( req->handle );
1856 if (!win) return;
1857 if (req->flags && is_desktop_window(win) && win->thread != current)
1859 set_error( STATUS_ACCESS_DENIED );
1860 return;
1862 if (req->extra_size > sizeof(req->extra_value) ||
1863 req->extra_offset < -1 ||
1864 req->extra_offset > win->nb_extra_bytes - (int)req->extra_size)
1866 set_win32_error( ERROR_INVALID_INDEX );
1867 return;
1869 if (req->extra_offset != -1)
1871 memcpy( &reply->old_extra_value, win->extra_bytes + req->extra_offset, req->extra_size );
1873 else if (req->flags & SET_WIN_EXTRA)
1875 set_win32_error( ERROR_INVALID_INDEX );
1876 return;
1878 reply->old_style = win->style;
1879 reply->old_ex_style = win->ex_style;
1880 reply->old_id = win->id;
1881 reply->old_instance = win->instance;
1882 reply->old_user_data = win->user_data;
1883 if (req->flags & SET_WIN_STYLE) win->style = req->style;
1884 if (req->flags & SET_WIN_EXSTYLE)
1886 /* WS_EX_TOPMOST can only be changed for unlinked windows */
1887 if (!win->is_linked) win->ex_style = req->ex_style;
1888 else win->ex_style = (req->ex_style & ~WS_EX_TOPMOST) | (win->ex_style & WS_EX_TOPMOST);
1889 if (!(win->ex_style & WS_EX_LAYERED)) win->is_layered = 0;
1891 if (req->flags & SET_WIN_ID) win->id = req->id;
1892 if (req->flags & SET_WIN_INSTANCE) win->instance = req->instance;
1893 if (req->flags & SET_WIN_UNICODE) win->is_unicode = req->is_unicode;
1894 if (req->flags & SET_WIN_USERDATA) win->user_data = req->user_data;
1895 if (req->flags & SET_WIN_EXTRA) memcpy( win->extra_bytes + req->extra_offset,
1896 &req->extra_value, req->extra_size );
1898 /* changing window style triggers a non-client paint */
1899 if (req->flags & SET_WIN_STYLE) win->paint_flags |= PAINT_NONCLIENT;
1903 /* get a list of the window parents, up to the root of the tree */
1904 DECL_HANDLER(get_window_parents)
1906 struct window *ptr, *win = get_window( req->handle );
1907 int total = 0;
1908 user_handle_t *data;
1909 data_size_t len;
1911 if (win) for (ptr = win->parent; ptr; ptr = ptr->parent) total++;
1913 reply->count = total;
1914 len = min( get_reply_max_size(), total * sizeof(user_handle_t) );
1915 if (len && ((data = set_reply_data_size( len ))))
1917 for (ptr = win->parent; ptr && len; ptr = ptr->parent, len -= sizeof(*data))
1918 *data++ = ptr->handle;
1923 /* get a list of the window children */
1924 DECL_HANDLER(get_window_children)
1926 struct window *parent = NULL;
1927 unsigned int total;
1928 user_handle_t *data;
1929 data_size_t len;
1930 struct unicode_str cls_name;
1931 atom_t atom = req->atom;
1932 struct desktop *desktop = NULL;
1934 get_req_unicode_str( &cls_name );
1935 if (cls_name.len && !(atom = find_global_atom( NULL, &cls_name ))) return;
1937 if (req->desktop)
1939 if (!(desktop = get_desktop_obj( current->process, req->desktop, DESKTOP_ENUMERATE ))) return;
1940 parent = desktop->top_window;
1942 else
1944 if (req->parent && !(parent = get_window( req->parent ))) return;
1945 if (!parent && !(desktop = get_thread_desktop( current, 0 ))) return;
1948 if (parent)
1949 total = get_children_windows( parent, atom, req->tid, NULL, 0 );
1950 else
1951 total = get_children_windows( desktop->top_window, atom, req->tid, NULL, 0 ) +
1952 get_children_windows( desktop->msg_window, atom, req->tid, NULL, 0 );
1954 reply->count = total;
1955 len = min( get_reply_max_size(), total * sizeof(user_handle_t) );
1956 if (len && ((data = set_reply_data_size( len ))))
1958 if (parent) get_children_windows( parent, atom, req->tid, data, len / sizeof(user_handle_t) );
1959 else
1961 total = get_children_windows( desktop->top_window, atom, req->tid,
1962 data, len / sizeof(user_handle_t) );
1963 data += total;
1964 len -= total * sizeof(user_handle_t);
1965 if (len >= sizeof(user_handle_t))
1966 get_children_windows( desktop->msg_window, atom, req->tid,
1967 data, len / sizeof(user_handle_t) );
1970 if (desktop) release_object( desktop );
1974 /* get a list of the window children that contain a given point */
1975 DECL_HANDLER(get_window_children_from_point)
1977 struct user_handle_array array;
1978 struct window *parent = get_window( req->parent );
1979 data_size_t len;
1981 if (!parent) return;
1983 array.handles = NULL;
1984 array.count = 0;
1985 array.total = 0;
1986 if (!all_windows_from_point( parent, req->x, req->y, &array )) return;
1988 reply->count = array.count;
1989 len = min( get_reply_max_size(), array.count * sizeof(user_handle_t) );
1990 if (len) set_reply_data_ptr( array.handles, len );
1991 else free( array.handles );
1995 /* get window tree information from a window handle */
1996 DECL_HANDLER(get_window_tree)
1998 struct window *ptr, *win = get_window( req->handle );
2000 if (!win) return;
2002 reply->parent = 0;
2003 reply->owner = 0;
2004 reply->next_sibling = 0;
2005 reply->prev_sibling = 0;
2006 reply->first_sibling = 0;
2007 reply->last_sibling = 0;
2008 reply->first_child = 0;
2009 reply->last_child = 0;
2011 if (win->parent)
2013 struct window *parent = win->parent;
2014 reply->parent = parent->handle;
2015 reply->owner = win->owner;
2016 if (win->is_linked)
2018 if ((ptr = get_next_window( win ))) reply->next_sibling = ptr->handle;
2019 if ((ptr = get_prev_window( win ))) reply->prev_sibling = ptr->handle;
2021 if ((ptr = get_first_child( parent ))) reply->first_sibling = ptr->handle;
2022 if ((ptr = get_last_child( parent ))) reply->last_sibling = ptr->handle;
2024 if ((ptr = get_first_child( win ))) reply->first_child = ptr->handle;
2025 if ((ptr = get_last_child( win ))) reply->last_child = ptr->handle;
2029 /* set the position and Z order of a window */
2030 DECL_HANDLER(set_window_pos)
2032 const rectangle_t *visible_rect = NULL, *valid_rects = NULL;
2033 struct window *previous = NULL;
2034 struct window *win = get_window( req->handle );
2035 unsigned int flags = req->flags;
2037 if (!win) return;
2038 if (!win->parent) flags |= SWP_NOZORDER; /* no Z order for the desktop */
2040 if (!(flags & SWP_NOZORDER))
2042 switch ((int)req->previous)
2044 case 0: /* HWND_TOP */
2045 previous = WINPTR_TOP;
2046 break;
2047 case 1: /* HWND_BOTTOM */
2048 previous = WINPTR_BOTTOM;
2049 break;
2050 case -1: /* HWND_TOPMOST */
2051 previous = WINPTR_TOPMOST;
2052 break;
2053 case -2: /* HWND_NOTOPMOST */
2054 previous = WINPTR_NOTOPMOST;
2055 break;
2056 default:
2057 if (!(previous = get_window( req->previous ))) return;
2058 /* previous must be a sibling */
2059 if (previous->parent != win->parent)
2061 set_error( STATUS_INVALID_PARAMETER );
2062 return;
2064 break;
2066 if (previous == win) flags |= SWP_NOZORDER; /* nothing to do */
2069 /* window rectangle must be ordered properly */
2070 if (req->window.right < req->window.left || req->window.bottom < req->window.top)
2072 set_error( STATUS_INVALID_PARAMETER );
2073 return;
2076 if (get_req_data_size() >= sizeof(rectangle_t)) visible_rect = get_req_data();
2077 if (get_req_data_size() >= 3 * sizeof(rectangle_t)) valid_rects = visible_rect + 1;
2079 if (!visible_rect) visible_rect = &req->window;
2080 set_window_pos( win, previous, flags, &req->window, &req->client, visible_rect, valid_rects );
2081 reply->new_style = win->style;
2082 reply->new_ex_style = win->ex_style;
2086 /* get the window and client rectangles of a window */
2087 DECL_HANDLER(get_window_rectangles)
2089 struct window *win = get_window( req->handle );
2091 if (win)
2093 reply->window = win->window_rect;
2094 reply->visible = win->visible_rect;
2095 reply->client = win->client_rect;
2100 /* get the window text */
2101 DECL_HANDLER(get_window_text)
2103 struct window *win = get_window( req->handle );
2105 if (win && win->text)
2107 data_size_t len = strlenW( win->text ) * sizeof(WCHAR);
2108 if (len > get_reply_max_size()) len = get_reply_max_size();
2109 set_reply_data( win->text, len );
2114 /* set the window text */
2115 DECL_HANDLER(set_window_text)
2117 struct window *win = get_window( req->handle );
2119 if (win)
2121 WCHAR *text = NULL;
2122 data_size_t len = get_req_data_size() / sizeof(WCHAR);
2123 if (len)
2125 if (!(text = mem_alloc( (len+1) * sizeof(WCHAR) ))) return;
2126 memcpy( text, get_req_data(), len * sizeof(WCHAR) );
2127 text[len] = 0;
2129 free( win->text );
2130 win->text = text;
2135 /* get the coordinates offset between two windows */
2136 DECL_HANDLER(get_windows_offset)
2138 struct window *win;
2140 reply->x = reply->y = 0;
2141 if (req->from)
2143 if (!(win = get_window( req->from ))) return;
2144 while (win && !is_desktop_window(win))
2146 reply->x += win->client_rect.left;
2147 reply->y += win->client_rect.top;
2148 win = win->parent;
2151 if (req->to)
2153 if (!(win = get_window( req->to ))) return;
2154 while (win && !is_desktop_window(win))
2156 reply->x -= win->client_rect.left;
2157 reply->y -= win->client_rect.top;
2158 win = win->parent;
2164 /* get the visible region of a window */
2165 DECL_HANDLER(get_visible_region)
2167 struct region *region;
2168 struct window *top, *win = get_window( req->window );
2170 if (!win) return;
2172 top = get_top_clipping_window( win );
2173 if ((region = get_visible_region( win, req->flags )))
2175 rectangle_t *data;
2176 map_win_region_to_screen( win, region );
2177 data = get_region_data_and_free( region, get_reply_max_size(), &reply->total_size );
2178 if (data) set_reply_data_ptr( data, reply->total_size );
2180 reply->top_win = top->handle;
2181 reply->top_rect = (top == win && (req->flags & DCX_WINDOW)) ? top->visible_rect : top->client_rect;
2183 if (!is_desktop_window(win))
2185 reply->win_rect = (req->flags & DCX_WINDOW) ? win->window_rect : win->client_rect;
2186 client_to_screen_rect( top->parent, &reply->top_rect );
2187 client_to_screen_rect( win->parent, &reply->win_rect );
2189 else
2191 reply->win_rect.left = 0;
2192 reply->win_rect.top = 0;
2193 reply->win_rect.right = win->client_rect.right - win->client_rect.left;
2194 reply->win_rect.bottom = win->client_rect.bottom - win->client_rect.top;
2199 /* get the window region */
2200 DECL_HANDLER(get_window_region)
2202 struct window *win = get_window( req->window );
2204 if (!win) return;
2206 if (win->win_region)
2208 rectangle_t *data = get_region_data( win->win_region, get_reply_max_size(), &reply->total_size );
2209 if (data) set_reply_data_ptr( data, reply->total_size );
2214 /* set the window region */
2215 DECL_HANDLER(set_window_region)
2217 struct region *region = NULL;
2218 struct window *win = get_window( req->window );
2220 if (!win) return;
2222 if (get_req_data_size()) /* no data means remove the region completely */
2224 if (!(region = create_region_from_req_data( get_req_data(), get_req_data_size() )))
2225 return;
2227 set_window_region( win, region, req->redraw );
2231 /* get a window update region */
2232 DECL_HANDLER(get_update_region)
2234 rectangle_t *data;
2235 unsigned int flags = req->flags;
2236 struct window *from_child = NULL;
2237 struct window *win = get_window( req->window );
2239 reply->flags = 0;
2240 if (!win) return;
2242 if (req->from_child)
2244 struct window *ptr;
2246 if (!(from_child = get_window( req->from_child ))) return;
2248 /* make sure from_child is a child of win */
2249 ptr = from_child;
2250 while (ptr && ptr != win) ptr = ptr->parent;
2251 if (!ptr)
2253 set_error( STATUS_INVALID_PARAMETER );
2254 return;
2258 if (flags & UPDATE_DELAYED_ERASE) /* this means that the previous call didn't erase */
2260 if (from_child) from_child->paint_flags |= PAINT_DELAYED_ERASE;
2261 else win->paint_flags |= PAINT_DELAYED_ERASE;
2264 reply->flags = get_window_update_flags( win, from_child, flags, &win );
2265 reply->child = win->handle;
2267 if (flags & UPDATE_NOREGION) return;
2269 if (win->update_region)
2271 /* convert update region to screen coordinates */
2272 struct region *region = create_empty_region();
2274 if (!region) return;
2275 if (!copy_region( region, win->update_region ))
2277 free_region( region );
2278 return;
2280 map_win_region_to_screen( win, region );
2281 if (!(data = get_region_data_and_free( region, get_reply_max_size(),
2282 &reply->total_size ))) return;
2283 set_reply_data_ptr( data, reply->total_size );
2286 if (reply->flags & (UPDATE_PAINT|UPDATE_INTERNALPAINT)) /* validate everything */
2288 validate_parents( win );
2289 validate_whole_window( win );
2291 else
2293 if (reply->flags & UPDATE_NONCLIENT) validate_non_client( win );
2294 if (reply->flags & UPDATE_ERASE)
2296 win->paint_flags &= ~(PAINT_ERASE | PAINT_DELAYED_ERASE);
2297 /* desktop window only gets erased, not repainted */
2298 if (is_desktop_window(win)) validate_whole_window( win );
2304 /* update the z order of a window so that a given rectangle is fully visible */
2305 DECL_HANDLER(update_window_zorder)
2307 rectangle_t tmp;
2308 struct window *ptr, *win = get_window( req->window );
2310 if (!win || !win->parent || !is_visible( win )) return; /* nothing to do */
2312 LIST_FOR_EACH_ENTRY( ptr, &win->parent->children, struct window, entry )
2314 if (ptr == win) break;
2315 if (!(ptr->style & WS_VISIBLE)) continue;
2316 if (ptr->ex_style & WS_EX_TRANSPARENT) continue;
2317 if (!intersect_rect( &tmp, &ptr->visible_rect, &req->rect )) continue;
2318 if (ptr->win_region && !rect_in_region( ptr->win_region, &req->rect )) continue;
2319 /* found a window obscuring the rectangle, now move win above this one */
2320 /* making sure to not violate the topmost rule */
2321 if (!(ptr->ex_style & WS_EX_TOPMOST) || (win->ex_style & WS_EX_TOPMOST))
2323 list_remove( &win->entry );
2324 list_add_before( &ptr->entry, &win->entry );
2326 break;
2331 /* mark parts of a window as needing a redraw */
2332 DECL_HANDLER(redraw_window)
2334 struct region *region = NULL;
2335 struct window *win = get_window( req->window );
2337 if (!win) return;
2338 if (!is_visible( win )) return; /* nothing to do */
2340 if (req->flags & (RDW_VALIDATE|RDW_INVALIDATE))
2342 if (get_req_data_size()) /* no data means whole rectangle */
2344 if (!(region = create_region_from_req_data( get_req_data(), get_req_data_size() )))
2345 return;
2349 redraw_window( win, region, (req->flags & RDW_INVALIDATE) && (req->flags & RDW_FRAME),
2350 req->flags );
2351 if (region) free_region( region );
2355 /* set a window property */
2356 DECL_HANDLER(set_window_property)
2358 struct unicode_str name;
2359 struct window *win = get_window( req->window );
2361 if (!win) return;
2363 get_req_unicode_str( &name );
2364 if (name.len)
2366 atom_t atom = add_global_atom( NULL, &name );
2367 if (atom)
2369 set_property( win, atom, req->data, PROP_TYPE_STRING );
2370 release_global_atom( NULL, atom );
2373 else set_property( win, req->atom, req->data, PROP_TYPE_ATOM );
2377 /* remove a window property */
2378 DECL_HANDLER(remove_window_property)
2380 struct unicode_str name;
2381 struct window *win = get_window( req->window );
2383 get_req_unicode_str( &name );
2384 if (win)
2386 atom_t atom = name.len ? find_global_atom( NULL, &name ) : req->atom;
2387 if (atom) reply->data = remove_property( win, atom );
2392 /* get a window property */
2393 DECL_HANDLER(get_window_property)
2395 struct unicode_str name;
2396 struct window *win = get_window( req->window );
2398 get_req_unicode_str( &name );
2399 if (win)
2401 atom_t atom = name.len ? find_global_atom( NULL, &name ) : req->atom;
2402 if (atom) reply->data = get_property( win, atom );
2407 /* get the list of properties of a window */
2408 DECL_HANDLER(get_window_properties)
2410 property_data_t *data;
2411 int i, count, max = get_reply_max_size() / sizeof(*data);
2412 struct window *win = get_window( req->window );
2414 reply->total = 0;
2415 if (!win) return;
2417 for (i = count = 0; i < win->prop_inuse; i++)
2418 if (win->properties[i].type != PROP_TYPE_FREE) count++;
2419 reply->total = count;
2421 if (count > max) count = max;
2422 if (!count || !(data = set_reply_data_size( count * sizeof(*data) ))) return;
2424 for (i = 0; i < win->prop_inuse && count; i++)
2426 if (win->properties[i].type == PROP_TYPE_FREE) continue;
2427 data->atom = win->properties[i].atom;
2428 data->string = (win->properties[i].type == PROP_TYPE_STRING);
2429 data->data = win->properties[i].data;
2430 data++;
2431 count--;
2436 /* get the new window pointer for a global window, checking permissions */
2437 /* helper for set_global_windows request */
2438 static int get_new_global_window( struct window **win, user_handle_t handle )
2440 if (!handle)
2442 *win = NULL;
2443 return 1;
2445 else if (*win)
2447 set_error( STATUS_ACCESS_DENIED );
2448 return 0;
2450 *win = get_window( handle );
2451 return (*win != NULL);
2454 /* Set/get the global windows */
2455 DECL_HANDLER(set_global_windows)
2457 struct window *new_shell_window = shell_window;
2458 struct window *new_shell_listview = shell_listview;
2459 struct window *new_progman_window = progman_window;
2460 struct window *new_taskman_window = taskman_window;
2462 reply->old_shell_window = shell_window ? shell_window->handle : 0;
2463 reply->old_shell_listview = shell_listview ? shell_listview->handle : 0;
2464 reply->old_progman_window = progman_window ? progman_window->handle : 0;
2465 reply->old_taskman_window = taskman_window ? taskman_window->handle : 0;
2467 if (req->flags & SET_GLOBAL_SHELL_WINDOWS)
2469 if (!get_new_global_window( &new_shell_window, req->shell_window )) return;
2470 if (!get_new_global_window( &new_shell_listview, req->shell_listview )) return;
2472 if (req->flags & SET_GLOBAL_PROGMAN_WINDOW)
2474 if (!get_new_global_window( &new_progman_window, req->progman_window )) return;
2476 if (req->flags & SET_GLOBAL_TASKMAN_WINDOW)
2478 if (!get_new_global_window( &new_taskman_window, req->taskman_window )) return;
2480 shell_window = new_shell_window;
2481 shell_listview = new_shell_listview;
2482 progman_window = new_progman_window;
2483 taskman_window = new_taskman_window;
2486 /* retrieve layered info for a window */
2487 DECL_HANDLER(get_window_layered_info)
2489 struct window *win = get_window( req->handle );
2491 if (!win) return;
2493 if (win->is_layered)
2495 reply->color_key = win->color_key;
2496 reply->alpha = win->alpha;
2497 reply->flags = win->layered_flags;
2499 else set_win32_error( ERROR_INVALID_WINDOW_HANDLE );
2503 /* set layered info for a window */
2504 DECL_HANDLER(set_window_layered_info)
2506 struct window *win = get_window( req->handle );
2508 if (!win) return;
2510 if (win->ex_style & WS_EX_LAYERED)
2512 if (req->flags & LWA_ALPHA) win->alpha = req->alpha;
2513 else if (!win->is_layered) win->alpha = 0; /* alpha init value is 0 */
2515 win->color_key = req->color_key;
2516 win->layered_flags = req->flags;
2517 win->is_layered = 1;
2519 else set_win32_error( ERROR_INVALID_WINDOW_HANDLE );