Fix horizontal mouse wheel scrolling in wxGTK.
[wxWidgets.git] / src / gtk / window.cpp
1 /////////////////////////////////////////////////////////////////////////////
2 // Name: src/gtk/window.cpp
3 // Purpose: wxWindowGTK implementation
4 // Author: Robert Roebling
5 // Copyright: (c) 1998 Robert Roebling, Julian Smart
6 // Licence: wxWindows licence
7 /////////////////////////////////////////////////////////////////////////////
8
9 // For compilers that support precompilation, includes "wx.h".
10 #include "wx/wxprec.h"
11
12 #ifdef __VMS
13 #define XWarpPointer XWARPPOINTER
14 #endif
15
16 #include "wx/window.h"
17
18 #ifndef WX_PRECOMP
19 #include "wx/log.h"
20 #include "wx/app.h"
21 #include "wx/toplevel.h"
22 #include "wx/dcclient.h"
23 #include "wx/menu.h"
24 #include "wx/settings.h"
25 #include "wx/msgdlg.h"
26 #include "wx/math.h"
27 #endif
28
29 #include "wx/dnd.h"
30 #include "wx/tooltip.h"
31 #include "wx/caret.h"
32 #include "wx/fontutil.h"
33 #include "wx/sysopt.h"
34 #ifdef __WXGTK3__
35 #include "wx/gtk/dc.h"
36 #endif
37
38 #include <ctype.h>
39
40 #include <gtk/gtk.h>
41 #include "wx/gtk/private.h"
42 #include "wx/gtk/private/gtk2-compat.h"
43 #include "wx/gtk/private/event.h"
44 #include "wx/gtk/private/win_gtk.h"
45 #include "wx/private/textmeasure.h"
46 using namespace wxGTKImpl;
47
48 #ifdef GDK_WINDOWING_X11
49 #include <gdk/gdkx.h>
50 #include "wx/x11/private/wrapxkb.h"
51 #else
52 typedef guint KeySym;
53 #endif
54
55 #include <gdk/gdkkeysyms.h>
56 #ifdef __WXGTK3__
57 #include <gdk/gdkkeysyms-compat.h>
58 #endif
59
60 // gdk_window_set_composited() is only supported since 2.12
61 #define wxGTK_VERSION_REQUIRED_FOR_COMPOSITING 2,12,0
62 #define wxGTK_HAS_COMPOSITING_SUPPORT GTK_CHECK_VERSION(2,12,0)
63
64 //-----------------------------------------------------------------------------
65 // documentation on internals
66 //-----------------------------------------------------------------------------
67
68 /*
69 I have been asked several times about writing some documentation about
70 the GTK port of wxWidgets, especially its internal structures. Obviously,
71 you cannot understand wxGTK without knowing a little about the GTK, but
72 some more information about what the wxWindow, which is the base class
73 for all other window classes, does seems required as well.
74
75 I)
76
77 What does wxWindow do? It contains the common interface for the following
78 jobs of its descendants:
79
80 1) Define the rudimentary behaviour common to all window classes, such as
81 resizing, intercepting user input (so as to make it possible to use these
82 events for special purposes in a derived class), window names etc.
83
84 2) Provide the possibility to contain and manage children, if the derived
85 class is allowed to contain children, which holds true for those window
86 classes which do not display a native GTK widget. To name them, these
87 classes are wxPanel, wxScrolledWindow, wxDialog, wxFrame. The MDI frame-
88 work classes are a special case and are handled a bit differently from
89 the rest. The same holds true for the wxNotebook class.
90
91 3) Provide the possibility to draw into a client area of a window. This,
92 too, only holds true for classes that do not display a native GTK widget
93 as above.
94
95 4) Provide the entire mechanism for scrolling widgets. This actual inter-
96 face for this is usually in wxScrolledWindow, but the GTK implementation
97 is in this class.
98
99 5) A multitude of helper or extra methods for special purposes, such as
100 Drag'n'Drop, managing validators etc.
101
102 6) Display a border (sunken, raised, simple or none).
103
104 Normally one might expect, that one wxWidgets window would always correspond
105 to one GTK widget. Under GTK, there is no such all-round widget that has all
106 the functionality. Moreover, the GTK defines a client area as a different
107 widget from the actual widget you are handling. Last but not least some
108 special classes (e.g. wxFrame) handle different categories of widgets and
109 still have the possibility to draw something in the client area.
110 It was therefore required to write a special purpose GTK widget, that would
111 represent a client area in the sense of wxWidgets capable to do the jobs
112 2), 3) and 4). I have written this class and it resides in win_gtk.c of
113 this directory.
114
115 All windows must have a widget, with which they interact with other under-
116 lying GTK widgets. It is this widget, e.g. that has to be resized etc and
117 the wxWindow class has a member variable called m_widget which holds a
118 pointer to this widget. When the window class represents a GTK native widget,
119 this is (in most cases) the only GTK widget the class manages. E.g. the
120 wxStaticText class handles only a GtkLabel widget a pointer to which you
121 can find in m_widget (defined in wxWindow)
122
123 When the class has a client area for drawing into and for containing children
124 it has to handle the client area widget (of the type wxPizza, defined in
125 win_gtk.cpp), but there could be any number of widgets, handled by a class.
126 The common rule for all windows is only, that the widget that interacts with
127 the rest of GTK must be referenced in m_widget and all other widgets must be
128 children of this widget on the GTK level. The top-most widget, which also
129 represents the client area, must be in the m_wxwindow field and must be of
130 the type wxPizza.
131
132 As I said, the window classes that display a GTK native widget only have
133 one widget, so in the case of e.g. the wxButton class m_widget holds a
134 pointer to a GtkButton widget. But windows with client areas (for drawing
135 and children) have a m_widget field that is a pointer to a GtkScrolled-
136 Window and a m_wxwindow field that is pointer to a wxPizza and this
137 one is (in the GTK sense) a child of the GtkScrolledWindow.
138
139 If the m_wxwindow field is set, then all input to this widget is inter-
140 cepted and sent to the wxWidgets class. If not, all input to the widget
141 that gets pointed to by m_widget gets intercepted and sent to the class.
142
143 II)
144
145 The design of scrolling in wxWidgets is markedly different from that offered
146 by the GTK itself and therefore we cannot simply take it as it is. In GTK,
147 clicking on a scrollbar belonging to scrolled window will inevitably move
148 the window. In wxWidgets, the scrollbar will only emit an event, send this
149 to (normally) a wxScrolledWindow and that class will call ScrollWindow()
150 which actually moves the window and its sub-windows. Note that wxPizza
151 memorizes how much it has been scrolled but that wxWidgets forgets this
152 so that the two coordinates systems have to be kept in synch. This is done
153 in various places using the pizza->m_scroll_x and pizza->m_scroll_y values.
154
155 III)
156
157 Singularly the most broken code in GTK is the code that is supposed to
158 inform subwindows (child windows) about new positions. Very often, duplicate
159 events are sent without changes in size or position, equally often no
160 events are sent at all (All this is due to a bug in the GtkContainer code
161 which got fixed in GTK 1.2.6). For that reason, wxGTK completely ignores
162 GTK's own system and it simply waits for size events for toplevel windows
163 and then iterates down the respective size events to all window. This has
164 the disadvantage that windows might get size events before the GTK widget
165 actually has the reported size. This doesn't normally pose any problem, but
166 the OpenGL drawing routines rely on correct behaviour. Therefore, I have
167 added the m_nativeSizeEvents flag, which is true only for the OpenGL canvas,
168 i.e. the wxGLCanvas will emit a size event, when (and not before) the X11
169 window that is used for OpenGL output really has that size (as reported by
170 GTK).
171
172 IV)
173
174 If someone at some point of time feels the immense desire to have a look at,
175 change or attempt to optimise the Refresh() logic, this person will need an
176 intimate understanding of what "draw" and "expose" events are and what
177 they are used for, in particular when used in connection with GTK's
178 own windowless widgets. Beware.
179
180 V)
181
182 Cursors, too, have been a constant source of pleasure. The main difficulty
183 is that a GdkWindow inherits a cursor if the programmer sets a new cursor
184 for the parent. To prevent this from doing too much harm, SetCursor calls
185 GTKUpdateCursor, which will recursively re-set the cursors of all child windows.
186 Also don't forget that cursors (like much else) are connected to GdkWindows,
187 not GtkWidgets and that the "window" field of a GtkWidget might very well
188 point to the GdkWindow of the parent widget (-> "window-less widget") and
189 that the two obviously have very different meanings.
190 */
191
192 //-----------------------------------------------------------------------------
193 // data
194 //-----------------------------------------------------------------------------
195
196 // Don't allow event propagation during drag
197 bool g_blockEventsOnDrag;
198 // Don't allow mouse event propagation during scroll
199 bool g_blockEventsOnScroll;
200 extern wxCursor g_globalCursor;
201
202 // mouse capture state: the window which has it and if the mouse is currently
203 // inside it
204 static wxWindowGTK *g_captureWindow = NULL;
205 static bool g_captureWindowHasMouse = false;
206
207 // The window that currently has focus:
208 static wxWindowGTK *gs_currentFocus = NULL;
209 // The window that is scheduled to get focus in the next event loop iteration
210 // or NULL if there's no pending focus change:
211 static wxWindowGTK *gs_pendingFocus = NULL;
212
213 // the window that has deferred focus-out event pending, if any (see
214 // GTKAddDeferredFocusOut() for details)
215 static wxWindowGTK *gs_deferredFocusOut = NULL;
216
217 // global variables because GTK+ DnD want to have the
218 // mouse event that caused it
219 GdkEvent *g_lastMouseEvent = NULL;
220 int g_lastButtonNumber = 0;
221
222 //-----------------------------------------------------------------------------
223 // debug
224 //-----------------------------------------------------------------------------
225
226 // the trace mask used for the focus debugging messages
227 #define TRACE_FOCUS wxT("focus")
228
229 // A handy function to run from under gdb to show information about the given
230 // GtkWidget. Right now it only shows its type, we could enhance it to show
231 // more information later but this is already pretty useful.
232 const char* wxDumpGtkWidget(GtkWidget* w)
233 {
234 static wxString s;
235 s.Printf("GtkWidget %p, type \"%s\"", w, G_OBJECT_TYPE_NAME(w));
236
237 return s.c_str();
238 }
239
240 //-----------------------------------------------------------------------------
241 // "expose_event"/"draw" from m_wxwindow
242 //-----------------------------------------------------------------------------
243
244 extern "C" {
245 #ifdef __WXGTK3__
246 static gboolean draw(GtkWidget*, cairo_t* cr, wxWindow* win)
247 {
248 if (gtk_cairo_should_draw_window(cr, win->GTKGetDrawingWindow()))
249 win->GTKSendPaintEvents(cr);
250
251 return false;
252 }
253 #else // !__WXGTK3__
254 static gboolean expose_event(GtkWidget*, GdkEventExpose* gdk_event, wxWindow* win)
255 {
256 if (gdk_event->window == win->GTKGetDrawingWindow())
257 win->GTKSendPaintEvents(gdk_event->region);
258
259 return false;
260 }
261 #endif // !__WXGTK3__
262 }
263
264 #ifndef __WXUNIVERSAL__
265 //-----------------------------------------------------------------------------
266 // "expose_event"/"draw" from m_wxwindow->parent, for drawing border
267 //-----------------------------------------------------------------------------
268
269 extern "C" {
270 static gboolean
271 #ifdef __WXGTK3__
272 draw_border(GtkWidget*, cairo_t* cr, wxWindow* win)
273 #else
274 draw_border(GtkWidget* widget, GdkEventExpose* gdk_event, wxWindow* win)
275 #endif
276 {
277 #ifdef __WXGTK3__
278 if (!gtk_cairo_should_draw_window(cr, gtk_widget_get_parent_window(win->m_wxwindow)))
279 #else
280 if (gdk_event->window != gtk_widget_get_parent_window(win->m_wxwindow))
281 #endif
282 return false;
283
284 if (!win->IsShown())
285 return false;
286
287 GtkAllocation alloc;
288 gtk_widget_get_allocation(win->m_wxwindow, &alloc);
289 const int x = alloc.x;
290 const int y = alloc.y;
291 const int w = alloc.width;
292 const int h = alloc.height;
293
294 if (w <= 0 || h <= 0)
295 return false;
296
297 if (win->HasFlag(wxBORDER_SIMPLE))
298 {
299 #ifdef __WXGTK3__
300 GtkStyleContext* sc = gtk_widget_get_style_context(win->m_wxwindow);
301 GdkRGBA c;
302 gtk_style_context_get_border_color(sc, GTK_STATE_FLAG_NORMAL, &c);
303 gdk_cairo_set_source_rgba(cr, &c);
304 cairo_set_line_width(cr, 1);
305 cairo_rectangle(cr, x + 0.5, y + 0.5, w - 1, h - 1);
306 cairo_stroke(cr);
307 #else
308 gdk_draw_rectangle(gdk_event->window,
309 gtk_widget_get_style(widget)->black_gc, false, x, y, w - 1, h - 1);
310 #endif
311 }
312 else if (win->HasFlag(wxBORDER_RAISED | wxBORDER_SUNKEN | wxBORDER_THEME))
313 {
314 #ifdef __WXGTK3__
315 //TODO: wxBORDER_RAISED/wxBORDER_SUNKEN
316 GtkStyleContext* sc;
317 if (win->HasFlag(wxHSCROLL | wxVSCROLL))
318 sc = gtk_widget_get_style_context(wxGTKPrivate::GetTreeWidget());
319 else
320 sc = gtk_widget_get_style_context(wxGTKPrivate::GetEntryWidget());
321
322 gtk_render_frame(sc, cr, x, y, w, h);
323 #else // !__WXGTK3__
324 GtkShadowType shadow = GTK_SHADOW_IN;
325 if (win->HasFlag(wxBORDER_RAISED))
326 shadow = GTK_SHADOW_OUT;
327
328 GtkStyle* style;
329 const char* detail;
330 if (win->HasFlag(wxHSCROLL | wxVSCROLL))
331 {
332 style = gtk_widget_get_style(wxGTKPrivate::GetTreeWidget());
333 detail = "viewport";
334 }
335 else
336 {
337 style = gtk_widget_get_style(wxGTKPrivate::GetEntryWidget());
338 detail = "entry";
339 }
340
341 // clip rect is required to avoid painting background
342 // over upper left (w,h) of parent window
343 GdkRectangle clipRect = { x, y, w, h };
344 gtk_paint_shadow(
345 style, gdk_event->window, GTK_STATE_NORMAL,
346 shadow, &clipRect, widget, detail, x, y, w, h);
347 #endif // !__WXGTK3__
348 }
349 return false;
350 }
351 }
352
353 //-----------------------------------------------------------------------------
354 // "parent_set" from m_wxwindow
355 //-----------------------------------------------------------------------------
356
357 extern "C" {
358 static void
359 parent_set(GtkWidget* widget, GtkWidget* old_parent, wxWindow* win)
360 {
361 if (old_parent)
362 {
363 g_signal_handlers_disconnect_by_func(
364 old_parent, (void*)draw_border, win);
365 }
366 GtkWidget* parent = gtk_widget_get_parent(widget);
367 if (parent)
368 {
369 #ifdef __WXGTK3__
370 g_signal_connect_after(parent, "draw", G_CALLBACK(draw_border), win);
371 #else
372 g_signal_connect_after(parent, "expose_event", G_CALLBACK(draw_border), win);
373 #endif
374 }
375 }
376 }
377 #endif // !__WXUNIVERSAL__
378
379 //-----------------------------------------------------------------------------
380 // "key_press_event" from any window
381 //-----------------------------------------------------------------------------
382
383 // set WXTRACE to this to see the key event codes on the console
384 #define TRACE_KEYS wxT("keyevent")
385
386 // translates an X key symbol to WXK_XXX value
387 //
388 // if isChar is true it means that the value returned will be used for EVT_CHAR
389 // event and then we choose the logical WXK_XXX, i.e. '/' for GDK_KP_Divide,
390 // for example, while if it is false it means that the value is going to be
391 // used for KEY_DOWN/UP events and then we translate GDK_KP_Divide to
392 // WXK_NUMPAD_DIVIDE
393 static long wxTranslateKeySymToWXKey(KeySym keysym, bool isChar)
394 {
395 long key_code;
396
397 switch ( keysym )
398 {
399 // Shift, Control and Alt don't generate the CHAR events at all
400 case GDK_Shift_L:
401 case GDK_Shift_R:
402 key_code = isChar ? 0 : WXK_SHIFT;
403 break;
404 case GDK_Control_L:
405 case GDK_Control_R:
406 key_code = isChar ? 0 : WXK_CONTROL;
407 break;
408 case GDK_Meta_L:
409 case GDK_Meta_R:
410 case GDK_Alt_L:
411 case GDK_Alt_R:
412 case GDK_Super_L:
413 case GDK_Super_R:
414 key_code = isChar ? 0 : WXK_ALT;
415 break;
416
417 // neither do the toggle modifies
418 case GDK_Scroll_Lock:
419 key_code = isChar ? 0 : WXK_SCROLL;
420 break;
421
422 case GDK_Caps_Lock:
423 key_code = isChar ? 0 : WXK_CAPITAL;
424 break;
425
426 case GDK_Num_Lock:
427 key_code = isChar ? 0 : WXK_NUMLOCK;
428 break;
429
430
431 // various other special keys
432 case GDK_Menu:
433 key_code = WXK_MENU;
434 break;
435
436 case GDK_Help:
437 key_code = WXK_HELP;
438 break;
439
440 case GDK_BackSpace:
441 key_code = WXK_BACK;
442 break;
443
444 case GDK_ISO_Left_Tab:
445 case GDK_Tab:
446 key_code = WXK_TAB;
447 break;
448
449 case GDK_Linefeed:
450 case GDK_Return:
451 key_code = WXK_RETURN;
452 break;
453
454 case GDK_Clear:
455 key_code = WXK_CLEAR;
456 break;
457
458 case GDK_Pause:
459 key_code = WXK_PAUSE;
460 break;
461
462 case GDK_Select:
463 key_code = WXK_SELECT;
464 break;
465
466 case GDK_Print:
467 key_code = WXK_PRINT;
468 break;
469
470 case GDK_Execute:
471 key_code = WXK_EXECUTE;
472 break;
473
474 case GDK_Escape:
475 key_code = WXK_ESCAPE;
476 break;
477
478 // cursor and other extended keyboard keys
479 case GDK_Delete:
480 key_code = WXK_DELETE;
481 break;
482
483 case GDK_Home:
484 key_code = WXK_HOME;
485 break;
486
487 case GDK_Left:
488 key_code = WXK_LEFT;
489 break;
490
491 case GDK_Up:
492 key_code = WXK_UP;
493 break;
494
495 case GDK_Right:
496 key_code = WXK_RIGHT;
497 break;
498
499 case GDK_Down:
500 key_code = WXK_DOWN;
501 break;
502
503 case GDK_Prior: // == GDK_Page_Up
504 key_code = WXK_PAGEUP;
505 break;
506
507 case GDK_Next: // == GDK_Page_Down
508 key_code = WXK_PAGEDOWN;
509 break;
510
511 case GDK_End:
512 key_code = WXK_END;
513 break;
514
515 case GDK_Begin:
516 key_code = WXK_HOME;
517 break;
518
519 case GDK_Insert:
520 key_code = WXK_INSERT;
521 break;
522
523
524 // numpad keys
525 case GDK_KP_0:
526 case GDK_KP_1:
527 case GDK_KP_2:
528 case GDK_KP_3:
529 case GDK_KP_4:
530 case GDK_KP_5:
531 case GDK_KP_6:
532 case GDK_KP_7:
533 case GDK_KP_8:
534 case GDK_KP_9:
535 key_code = (isChar ? '0' : int(WXK_NUMPAD0)) + keysym - GDK_KP_0;
536 break;
537
538 case GDK_KP_Space:
539 key_code = isChar ? ' ' : int(WXK_NUMPAD_SPACE);
540 break;
541
542 case GDK_KP_Tab:
543 key_code = isChar ? WXK_TAB : WXK_NUMPAD_TAB;
544 break;
545
546 case GDK_KP_Enter:
547 key_code = isChar ? WXK_RETURN : WXK_NUMPAD_ENTER;
548 break;
549
550 case GDK_KP_F1:
551 key_code = isChar ? WXK_F1 : WXK_NUMPAD_F1;
552 break;
553
554 case GDK_KP_F2:
555 key_code = isChar ? WXK_F2 : WXK_NUMPAD_F2;
556 break;
557
558 case GDK_KP_F3:
559 key_code = isChar ? WXK_F3 : WXK_NUMPAD_F3;
560 break;
561
562 case GDK_KP_F4:
563 key_code = isChar ? WXK_F4 : WXK_NUMPAD_F4;
564 break;
565
566 case GDK_KP_Home:
567 key_code = isChar ? WXK_HOME : WXK_NUMPAD_HOME;
568 break;
569
570 case GDK_KP_Left:
571 key_code = isChar ? WXK_LEFT : WXK_NUMPAD_LEFT;
572 break;
573
574 case GDK_KP_Up:
575 key_code = isChar ? WXK_UP : WXK_NUMPAD_UP;
576 break;
577
578 case GDK_KP_Right:
579 key_code = isChar ? WXK_RIGHT : WXK_NUMPAD_RIGHT;
580 break;
581
582 case GDK_KP_Down:
583 key_code = isChar ? WXK_DOWN : WXK_NUMPAD_DOWN;
584 break;
585
586 case GDK_KP_Prior: // == GDK_KP_Page_Up
587 key_code = isChar ? WXK_PAGEUP : WXK_NUMPAD_PAGEUP;
588 break;
589
590 case GDK_KP_Next: // == GDK_KP_Page_Down
591 key_code = isChar ? WXK_PAGEDOWN : WXK_NUMPAD_PAGEDOWN;
592 break;
593
594 case GDK_KP_End:
595 key_code = isChar ? WXK_END : WXK_NUMPAD_END;
596 break;
597
598 case GDK_KP_Begin:
599 key_code = isChar ? WXK_HOME : WXK_NUMPAD_BEGIN;
600 break;
601
602 case GDK_KP_Insert:
603 key_code = isChar ? WXK_INSERT : WXK_NUMPAD_INSERT;
604 break;
605
606 case GDK_KP_Delete:
607 key_code = isChar ? WXK_DELETE : WXK_NUMPAD_DELETE;
608 break;
609
610 case GDK_KP_Equal:
611 key_code = isChar ? '=' : int(WXK_NUMPAD_EQUAL);
612 break;
613
614 case GDK_KP_Multiply:
615 key_code = isChar ? '*' : int(WXK_NUMPAD_MULTIPLY);
616 break;
617
618 case GDK_KP_Add:
619 key_code = isChar ? '+' : int(WXK_NUMPAD_ADD);
620 break;
621
622 case GDK_KP_Separator:
623 // FIXME: what is this?
624 key_code = isChar ? '.' : int(WXK_NUMPAD_SEPARATOR);
625 break;
626
627 case GDK_KP_Subtract:
628 key_code = isChar ? '-' : int(WXK_NUMPAD_SUBTRACT);
629 break;
630
631 case GDK_KP_Decimal:
632 key_code = isChar ? '.' : int(WXK_NUMPAD_DECIMAL);
633 break;
634
635 case GDK_KP_Divide:
636 key_code = isChar ? '/' : int(WXK_NUMPAD_DIVIDE);
637 break;
638
639
640 // function keys
641 case GDK_F1:
642 case GDK_F2:
643 case GDK_F3:
644 case GDK_F4:
645 case GDK_F5:
646 case GDK_F6:
647 case GDK_F7:
648 case GDK_F8:
649 case GDK_F9:
650 case GDK_F10:
651 case GDK_F11:
652 case GDK_F12:
653 key_code = WXK_F1 + keysym - GDK_F1;
654 break;
655
656 default:
657 key_code = 0;
658 }
659
660 return key_code;
661 }
662
663 static inline bool wxIsAsciiKeysym(KeySym ks)
664 {
665 return ks < 256;
666 }
667
668 static void wxFillOtherKeyEventFields(wxKeyEvent& event,
669 wxWindowGTK *win,
670 GdkEventKey *gdk_event)
671 {
672 event.SetTimestamp( gdk_event->time );
673 event.SetId(win->GetId());
674
675 event.m_shiftDown = (gdk_event->state & GDK_SHIFT_MASK) != 0;
676 event.m_controlDown = (gdk_event->state & GDK_CONTROL_MASK) != 0;
677 event.m_altDown = (gdk_event->state & GDK_MOD1_MASK) != 0;
678 event.m_metaDown = (gdk_event->state & GDK_META_MASK) != 0;
679
680 // At least with current Linux systems, MOD5 corresponds to AltGr key and
681 // we represent it, for consistency with Windows, which really allows to
682 // use Ctrl+Alt as a replacement for AltGr if this key is not present, as a
683 // combination of these two modifiers.
684 if ( gdk_event->state & GDK_MOD5_MASK )
685 {
686 event.m_controlDown =
687 event.m_altDown = true;
688 }
689
690 // Normally we take the state of modifiers directly from the low level GDK
691 // event but unfortunately GDK uses a different convention from MSW for the
692 // key events corresponding to the modifier keys themselves: in it, when
693 // e.g. Shift key is pressed, GDK_SHIFT_MASK is not set while it is set
694 // when Shift is released. Under MSW the situation is exactly reversed and
695 // the modifier corresponding to the key is set when it is pressed and
696 // unset when it is released. To ensure consistent behaviour between
697 // platforms (and because it seems to make slightly more sense, although
698 // arguably both behaviours are reasonable) we follow MSW here.
699 //
700 // Final notice: we set the flags to the desired value instead of just
701 // inverting them because they are not set correctly (i.e. in the same way
702 // as for the real events generated by the user) for wxUIActionSimulator-
703 // produced events and it seems better to keep that class code the same
704 // among all platforms and fix the discrepancy here instead of adding
705 // wxGTK-specific code to wxUIActionSimulator.
706 const bool isPress = gdk_event->type == GDK_KEY_PRESS;
707 switch ( gdk_event->keyval )
708 {
709 case GDK_Shift_L:
710 case GDK_Shift_R:
711 event.m_shiftDown = isPress;
712 break;
713
714 case GDK_Control_L:
715 case GDK_Control_R:
716 event.m_controlDown = isPress;
717 break;
718
719 case GDK_Alt_L:
720 case GDK_Alt_R:
721 event.m_altDown = isPress;
722 break;
723
724 case GDK_Meta_L:
725 case GDK_Meta_R:
726 case GDK_Super_L:
727 case GDK_Super_R:
728 event.m_metaDown = isPress;
729 break;
730 }
731
732 event.m_rawCode = (wxUint32) gdk_event->keyval;
733 event.m_rawFlags = gdk_event->hardware_keycode;
734
735 event.SetEventObject( win );
736 }
737
738
739 static bool
740 wxTranslateGTKKeyEventToWx(wxKeyEvent& event,
741 wxWindowGTK *win,
742 GdkEventKey *gdk_event)
743 {
744 // VZ: it seems that GDK_KEY_RELEASE event doesn't set event->string
745 // but only event->keyval which is quite useless to us, so remember
746 // the last character from GDK_KEY_PRESS and reuse it as last resort
747 //
748 // NB: should be MT-safe as we're always called from the main thread only
749 static struct
750 {
751 KeySym keysym;
752 long keycode;
753 } s_lastKeyPress = { 0, 0 };
754
755 KeySym keysym = gdk_event->keyval;
756
757 wxLogTrace(TRACE_KEYS, wxT("Key %s event: keysym = %lu"),
758 event.GetEventType() == wxEVT_KEY_UP ? wxT("release")
759 : wxT("press"),
760 static_cast<unsigned long>(keysym));
761
762 long key_code = wxTranslateKeySymToWXKey(keysym, false /* !isChar */);
763
764 if ( !key_code )
765 {
766 // do we have the translation or is it a plain ASCII character?
767 if ( (gdk_event->length == 1) || wxIsAsciiKeysym(keysym) )
768 {
769 // we should use keysym if it is ASCII as X does some translations
770 // like "I pressed while Control is down" => "Ctrl-I" == "TAB"
771 // which we don't want here (but which we do use for OnChar())
772 if ( !wxIsAsciiKeysym(keysym) )
773 {
774 keysym = (KeySym)gdk_event->string[0];
775 }
776
777 #ifdef GDK_WINDOWING_X11
778 // we want to always get the same key code when the same key is
779 // pressed regardless of the state of the modifiers, i.e. on a
780 // standard US keyboard pressing '5' or '%' ('5' key with
781 // Shift) should result in the same key code in OnKeyDown():
782 // '5' (although OnChar() will get either '5' or '%').
783 //
784 // to do it we first translate keysym to keycode (== scan code)
785 // and then back but always using the lower register
786 Display *dpy = (Display *)wxGetDisplay();
787 KeyCode keycode = XKeysymToKeycode(dpy, keysym);
788
789 wxLogTrace(TRACE_KEYS, wxT("\t-> keycode %d"), keycode);
790
791 #ifdef HAVE_X11_XKBLIB_H
792 KeySym keysymNormalized = XkbKeycodeToKeysym(dpy, keycode, 0, 0);
793 #else
794 KeySym keysymNormalized = XKeycodeToKeysym(dpy, keycode, 0);
795 #endif
796
797 // use the normalized, i.e. lower register, keysym if we've
798 // got one
799 key_code = keysymNormalized ? keysymNormalized : keysym;
800 #else
801 key_code = keysym;
802 #endif
803
804 // as explained above, we want to have lower register key codes
805 // normally but for the letter keys we want to have the upper ones
806 //
807 // NB: don't use XConvertCase() here, we want to do it for letters
808 // only
809 key_code = toupper(key_code);
810 }
811 else // non ASCII key, what to do?
812 {
813 // by default, ignore it
814 key_code = 0;
815
816 // but if we have cached information from the last KEY_PRESS
817 if ( gdk_event->type == GDK_KEY_RELEASE )
818 {
819 // then reuse it
820 if ( keysym == s_lastKeyPress.keysym )
821 {
822 key_code = s_lastKeyPress.keycode;
823 }
824 }
825 }
826
827 if ( gdk_event->type == GDK_KEY_PRESS )
828 {
829 // remember it to be reused for KEY_UP event later
830 s_lastKeyPress.keysym = keysym;
831 s_lastKeyPress.keycode = key_code;
832 }
833 }
834
835 wxLogTrace(TRACE_KEYS, wxT("\t-> wxKeyCode %ld"), key_code);
836
837 // sending unknown key events doesn't really make sense
838 if ( !key_code )
839 return false;
840
841 event.m_keyCode = key_code;
842
843 #if wxUSE_UNICODE
844 event.m_uniChar = gdk_keyval_to_unicode(key_code);
845 if ( !event.m_uniChar && event.m_keyCode <= WXK_DELETE )
846 {
847 // Set Unicode key code to the ASCII equivalent for compatibility. E.g.
848 // let RETURN generate the key event with both key and Unicode key
849 // codes of 13.
850 event.m_uniChar = event.m_keyCode;
851 }
852 #endif // wxUSE_UNICODE
853
854 // now fill all the other fields
855 wxFillOtherKeyEventFields(event, win, gdk_event);
856
857 return true;
858 }
859
860
861 namespace
862 {
863
864 // Send wxEVT_CHAR_HOOK event to the parent of the window and return true only
865 // if it was processed (and not skipped).
866 bool SendCharHookEvent(const wxKeyEvent& event, wxWindow *win)
867 {
868 // wxEVT_CHAR_HOOK must be sent to allow the parent windows (e.g. a dialog
869 // which typically closes when Esc key is pressed in any of its controls)
870 // to handle key events in all of its children unless the mouse is captured
871 // in which case we consider that the keyboard should be "captured" too.
872 if ( !g_captureWindow )
873 {
874 wxKeyEvent eventCharHook(wxEVT_CHAR_HOOK, event);
875 if ( win->HandleWindowEvent(eventCharHook)
876 && !event.IsNextEventAllowed() )
877 return true;
878 }
879
880 return false;
881 }
882
883 // Adjust wxEVT_CHAR event key code fields. This function takes care of two
884 // conventions:
885 // (a) Ctrl-letter key presses generate key codes in range 1..26
886 // (b) Unicode key codes are same as key codes for the codes in 1..255 range
887 void AdjustCharEventKeyCodes(wxKeyEvent& event)
888 {
889 const int code = event.m_keyCode;
890
891 // Check for (a) above.
892 if ( event.ControlDown() )
893 {
894 // We intentionally don't use isupper/lower() here, we really need
895 // ASCII letters only as it doesn't make sense to translate any other
896 // ones into this range which has only 26 slots.
897 if ( code >= 'a' && code <= 'z' )
898 event.m_keyCode = code - 'a' + 1;
899 else if ( code >= 'A' && code <= 'Z' )
900 event.m_keyCode = code - 'A' + 1;
901
902 #if wxUSE_UNICODE
903 // Adjust the Unicode equivalent in the same way too.
904 if ( event.m_keyCode != code )
905 event.m_uniChar = event.m_keyCode;
906 #endif // wxUSE_UNICODE
907 }
908
909 #if wxUSE_UNICODE
910 // Check for (b) from above.
911 //
912 // FIXME: Should we do it for key codes up to 255?
913 if ( !event.m_uniChar && code < WXK_DELETE )
914 event.m_uniChar = code;
915 #endif // wxUSE_UNICODE
916 }
917
918 } // anonymous namespace
919
920 // If a widget does not handle a key or mouse event, GTK+ sends it up the
921 // parent chain until it is handled. These events are not supposed to propagate
922 // in wxWidgets, so this code avoids handling them in any parent wxWindow,
923 // while still allowing the event to propagate so things like native keyboard
924 // navigation will work.
925 #define wxPROCESS_EVENT_ONCE(EventType, event) \
926 static EventType eventPrev; \
927 if (memcmp(&eventPrev, event, sizeof(EventType)) == 0) \
928 return false; \
929 eventPrev = *event
930
931 extern "C" {
932 static gboolean
933 gtk_window_key_press_callback( GtkWidget *WXUNUSED(widget),
934 GdkEventKey *gdk_event,
935 wxWindow *win )
936 {
937 if (g_blockEventsOnDrag)
938 return FALSE;
939
940 wxPROCESS_EVENT_ONCE(GdkEventKey, gdk_event);
941
942 wxKeyEvent event( wxEVT_KEY_DOWN );
943 bool ret = false;
944 bool return_after_IM = false;
945
946 if( wxTranslateGTKKeyEventToWx(event, win, gdk_event) )
947 {
948 // Send the CHAR_HOOK event first
949 if ( SendCharHookEvent(event, win) )
950 {
951 // Don't do anything at all with this event any more.
952 return TRUE;
953 }
954
955 // Next check for accelerators.
956 #if wxUSE_ACCEL
957 wxWindowGTK *ancestor = win;
958 while (ancestor)
959 {
960 int command = ancestor->GetAcceleratorTable()->GetCommand( event );
961 if (command != -1)
962 {
963 wxCommandEvent menu_event( wxEVT_MENU, command );
964 ret = ancestor->HandleWindowEvent( menu_event );
965
966 if ( !ret )
967 {
968 // if the accelerator wasn't handled as menu event, try
969 // it as button click (for compatibility with other
970 // platforms):
971 wxCommandEvent button_event( wxEVT_BUTTON, command );
972 ret = ancestor->HandleWindowEvent( button_event );
973 }
974
975 break;
976 }
977 if (ancestor->IsTopLevel())
978 break;
979 ancestor = ancestor->GetParent();
980 }
981 #endif // wxUSE_ACCEL
982
983 // If not an accelerator, then emit KEY_DOWN event
984 if ( !ret )
985 ret = win->HandleWindowEvent( event );
986 }
987 else
988 {
989 // Return after IM processing as we cannot do
990 // anything with it anyhow.
991 return_after_IM = true;
992 }
993
994 if ( !ret )
995 {
996 // Indicate that IM handling is in process by setting this pointer
997 // (which will remain valid for all the code called during IM key
998 // handling).
999 win->m_imKeyEvent = gdk_event;
1000
1001 // We should let GTK+ IM filter key event first. According to GTK+ 2.0 API
1002 // docs, if IM filter returns true, no further processing should be done.
1003 // we should send the key_down event anyway.
1004 const int intercepted_by_IM = win->GTKIMFilterKeypress(gdk_event);
1005
1006 win->m_imKeyEvent = NULL;
1007
1008 if ( intercepted_by_IM )
1009 {
1010 wxLogTrace(TRACE_KEYS, wxT("Key event intercepted by IM"));
1011 return TRUE;
1012 }
1013 }
1014
1015 if (return_after_IM)
1016 return FALSE;
1017
1018 // Only send wxEVT_CHAR event if not processed yet. Thus, ALT-x
1019 // will only be sent if it is not in an accelerator table.
1020 if (!ret)
1021 {
1022 KeySym keysym = gdk_event->keyval;
1023 // Find key code for EVT_CHAR and EVT_CHAR_HOOK events
1024 long key_code = wxTranslateKeySymToWXKey(keysym, true /* isChar */);
1025 if ( !key_code )
1026 {
1027 if ( wxIsAsciiKeysym(keysym) )
1028 {
1029 // ASCII key
1030 key_code = (unsigned char)keysym;
1031 }
1032 // gdk_event->string is actually deprecated
1033 else if ( gdk_event->length == 1 )
1034 {
1035 key_code = (unsigned char)gdk_event->string[0];
1036 }
1037 }
1038
1039 if ( key_code )
1040 {
1041 wxKeyEvent eventChar(wxEVT_CHAR, event);
1042
1043 wxLogTrace(TRACE_KEYS, wxT("Char event: %ld"), key_code);
1044
1045 eventChar.m_keyCode = key_code;
1046 #if wxUSE_UNICODE
1047 eventChar.m_uniChar = gdk_keyval_to_unicode(key_code);
1048 #endif // wxUSE_UNICODE
1049
1050 AdjustCharEventKeyCodes(eventChar);
1051
1052 ret = win->HandleWindowEvent(eventChar);
1053 }
1054 }
1055
1056 return ret;
1057 }
1058 }
1059
1060 int wxWindowGTK::GTKIMFilterKeypress(GdkEventKey* event) const
1061 {
1062 return m_imContext ? gtk_im_context_filter_keypress(m_imContext, event)
1063 : FALSE;
1064 }
1065
1066 extern "C" {
1067 static void
1068 gtk_wxwindow_commit_cb (GtkIMContext * WXUNUSED(context),
1069 const gchar *str,
1070 wxWindow *window)
1071 {
1072 // Ignore the return value here, it doesn't matter for the "commit" signal.
1073 window->GTKDoInsertTextFromIM(str);
1074 }
1075 }
1076
1077 bool wxWindowGTK::GTKDoInsertTextFromIM(const char* str)
1078 {
1079 wxKeyEvent event( wxEVT_CHAR );
1080
1081 // take modifiers, cursor position, timestamp etc. from the last
1082 // key_press_event that was fed into Input Method:
1083 if ( m_imKeyEvent )
1084 {
1085 wxFillOtherKeyEventFields(event, this, m_imKeyEvent);
1086 }
1087 else
1088 {
1089 event.SetEventObject(this);
1090 }
1091
1092 const wxString data(wxGTK_CONV_BACK_SYS(str));
1093 if( data.empty() )
1094 return false;
1095
1096 bool processed = false;
1097 for( wxString::const_iterator pstr = data.begin(); pstr != data.end(); ++pstr )
1098 {
1099 #if wxUSE_UNICODE
1100 event.m_uniChar = *pstr;
1101 // Backward compatible for ISO-8859-1
1102 event.m_keyCode = *pstr < 256 ? event.m_uniChar : 0;
1103 wxLogTrace(TRACE_KEYS, wxT("IM sent character '%c'"), event.m_uniChar);
1104 #else
1105 event.m_keyCode = (char)*pstr;
1106 #endif // wxUSE_UNICODE
1107
1108 AdjustCharEventKeyCodes(event);
1109
1110 if ( HandleWindowEvent(event) )
1111 processed = true;
1112 }
1113
1114 return processed;
1115 }
1116
1117 bool wxWindowGTK::GTKOnInsertText(const char* text)
1118 {
1119 if ( !m_imKeyEvent )
1120 {
1121 // We're not inside IM key handling at all.
1122 return false;
1123 }
1124
1125 return GTKDoInsertTextFromIM(text);
1126 }
1127
1128
1129 //-----------------------------------------------------------------------------
1130 // "key_release_event" from any window
1131 //-----------------------------------------------------------------------------
1132
1133 extern "C" {
1134 static gboolean
1135 gtk_window_key_release_callback( GtkWidget * WXUNUSED(widget),
1136 GdkEventKey *gdk_event,
1137 wxWindowGTK *win )
1138 {
1139 if (g_blockEventsOnDrag)
1140 return FALSE;
1141
1142 wxPROCESS_EVENT_ONCE(GdkEventKey, gdk_event);
1143
1144 wxKeyEvent event( wxEVT_KEY_UP );
1145 if ( !wxTranslateGTKKeyEventToWx(event, win, gdk_event) )
1146 {
1147 // unknown key pressed, ignore (the event would be useless anyhow)
1148 return FALSE;
1149 }
1150
1151 return win->GTKProcessEvent(event);
1152 }
1153 }
1154
1155 // ============================================================================
1156 // the mouse events
1157 // ============================================================================
1158
1159 // ----------------------------------------------------------------------------
1160 // mouse event processing helpers
1161 // ----------------------------------------------------------------------------
1162
1163 static void AdjustEventButtonState(wxMouseEvent& event)
1164 {
1165 // GDK reports the old state of the button for a button press event, but
1166 // for compatibility with MSW and common sense we want m_leftDown be TRUE
1167 // for a LEFT_DOWN event, not FALSE, so we will invert
1168 // left/right/middleDown for the corresponding click events
1169
1170 if ((event.GetEventType() == wxEVT_LEFT_DOWN) ||
1171 (event.GetEventType() == wxEVT_LEFT_DCLICK) ||
1172 (event.GetEventType() == wxEVT_LEFT_UP))
1173 {
1174 event.m_leftDown = !event.m_leftDown;
1175 return;
1176 }
1177
1178 if ((event.GetEventType() == wxEVT_MIDDLE_DOWN) ||
1179 (event.GetEventType() == wxEVT_MIDDLE_DCLICK) ||
1180 (event.GetEventType() == wxEVT_MIDDLE_UP))
1181 {
1182 event.m_middleDown = !event.m_middleDown;
1183 return;
1184 }
1185
1186 if ((event.GetEventType() == wxEVT_RIGHT_DOWN) ||
1187 (event.GetEventType() == wxEVT_RIGHT_DCLICK) ||
1188 (event.GetEventType() == wxEVT_RIGHT_UP))
1189 {
1190 event.m_rightDown = !event.m_rightDown;
1191 return;
1192 }
1193
1194 if ((event.GetEventType() == wxEVT_AUX1_DOWN) ||
1195 (event.GetEventType() == wxEVT_AUX1_DCLICK))
1196 {
1197 event.m_aux1Down = true;
1198 return;
1199 }
1200
1201 if ((event.GetEventType() == wxEVT_AUX2_DOWN) ||
1202 (event.GetEventType() == wxEVT_AUX2_DCLICK))
1203 {
1204 event.m_aux2Down = true;
1205 return;
1206 }
1207 }
1208
1209 // find the window to send the mouse event to
1210 static
1211 wxWindowGTK *FindWindowForMouseEvent(wxWindowGTK *win, wxCoord& x, wxCoord& y)
1212 {
1213 wxCoord xx = x;
1214 wxCoord yy = y;
1215
1216 if (win->m_wxwindow)
1217 {
1218 wxPizza* pizza = WX_PIZZA(win->m_wxwindow);
1219 xx += pizza->m_scroll_x;
1220 yy += pizza->m_scroll_y;
1221 }
1222
1223 wxWindowList::compatibility_iterator node = win->GetChildren().GetFirst();
1224 while (node)
1225 {
1226 wxWindow* child = static_cast<wxWindow*>(node->GetData());
1227
1228 node = node->GetNext();
1229 if (!child->IsShown())
1230 continue;
1231
1232 if (child->GTKIsTransparentForMouse())
1233 {
1234 // wxStaticBox is transparent in the box itself
1235 int xx1 = child->m_x;
1236 int yy1 = child->m_y;
1237 int xx2 = child->m_x + child->m_width;
1238 int yy2 = child->m_y + child->m_height;
1239
1240 // left
1241 if (((xx >= xx1) && (xx <= xx1+10) && (yy >= yy1) && (yy <= yy2)) ||
1242 // right
1243 ((xx >= xx2-10) && (xx <= xx2) && (yy >= yy1) && (yy <= yy2)) ||
1244 // top
1245 ((xx >= xx1) && (xx <= xx2) && (yy >= yy1) && (yy <= yy1+10)) ||
1246 // bottom
1247 ((xx >= xx1) && (xx <= xx2) && (yy >= yy2-1) && (yy <= yy2)))
1248 {
1249 win = child;
1250 x -= child->m_x;
1251 y -= child->m_y;
1252 break;
1253 }
1254
1255 }
1256 else
1257 {
1258 if ((child->m_wxwindow == NULL) &&
1259 win->IsClientAreaChild(child) &&
1260 (child->m_x <= xx) &&
1261 (child->m_y <= yy) &&
1262 (child->m_x+child->m_width >= xx) &&
1263 (child->m_y+child->m_height >= yy))
1264 {
1265 win = child;
1266 x -= child->m_x;
1267 y -= child->m_y;
1268 break;
1269 }
1270 }
1271 }
1272
1273 return win;
1274 }
1275
1276 // ----------------------------------------------------------------------------
1277 // common event handlers helpers
1278 // ----------------------------------------------------------------------------
1279
1280 bool wxWindowGTK::GTKProcessEvent(wxEvent& event) const
1281 {
1282 // nothing special at this level
1283 return HandleWindowEvent(event);
1284 }
1285
1286 bool wxWindowGTK::GTKShouldIgnoreEvent() const
1287 {
1288 return g_blockEventsOnDrag;
1289 }
1290
1291 int wxWindowGTK::GTKCallbackCommonPrologue(GdkEventAny *event) const
1292 {
1293 if (g_blockEventsOnDrag)
1294 return TRUE;
1295 if (g_blockEventsOnScroll)
1296 return TRUE;
1297
1298 if (!GTKIsOwnWindow(event->window))
1299 return FALSE;
1300
1301 return -1;
1302 }
1303
1304 // overloads for all GDK event types we use here: we need to have this as
1305 // GdkEventXXX can't be implicitly cast to GdkEventAny even if it, in fact,
1306 // derives from it in the sense that the structs have the same layout
1307 #define wxDEFINE_COMMON_PROLOGUE_OVERLOAD(T) \
1308 static int wxGtkCallbackCommonPrologue(T *event, wxWindowGTK *win) \
1309 { \
1310 return win->GTKCallbackCommonPrologue((GdkEventAny *)event); \
1311 }
1312
1313 wxDEFINE_COMMON_PROLOGUE_OVERLOAD(GdkEventButton)
1314 wxDEFINE_COMMON_PROLOGUE_OVERLOAD(GdkEventMotion)
1315 wxDEFINE_COMMON_PROLOGUE_OVERLOAD(GdkEventCrossing)
1316
1317 #undef wxDEFINE_COMMON_PROLOGUE_OVERLOAD
1318
1319 #define wxCOMMON_CALLBACK_PROLOGUE(event, win) \
1320 const int rc = wxGtkCallbackCommonPrologue(event, win); \
1321 if ( rc != -1 ) \
1322 return rc
1323
1324 // all event handlers must have C linkage as they're called from GTK+ C code
1325 extern "C"
1326 {
1327
1328 //-----------------------------------------------------------------------------
1329 // "button_press_event"
1330 //-----------------------------------------------------------------------------
1331
1332 static gboolean
1333 gtk_window_button_press_callback( GtkWidget* WXUNUSED_IN_GTK3(widget),
1334 GdkEventButton *gdk_event,
1335 wxWindowGTK *win )
1336 {
1337 wxPROCESS_EVENT_ONCE(GdkEventButton, gdk_event);
1338
1339 wxCOMMON_CALLBACK_PROLOGUE(gdk_event, win);
1340
1341 g_lastButtonNumber = gdk_event->button;
1342
1343 wxEventType event_type;
1344 wxEventType down;
1345 wxEventType dclick;
1346 switch (gdk_event->button)
1347 {
1348 case 1:
1349 down = wxEVT_LEFT_DOWN;
1350 dclick = wxEVT_LEFT_DCLICK;
1351 break;
1352 case 2:
1353 down = wxEVT_MIDDLE_DOWN;
1354 dclick = wxEVT_MIDDLE_DCLICK;
1355 break;
1356 case 3:
1357 down = wxEVT_RIGHT_DOWN;
1358 dclick = wxEVT_RIGHT_DCLICK;
1359 break;
1360 case 8:
1361 down = wxEVT_AUX1_DOWN;
1362 dclick = wxEVT_AUX1_DCLICK;
1363 break;
1364 case 9:
1365 down = wxEVT_AUX2_DOWN;
1366 dclick = wxEVT_AUX2_DCLICK;
1367 break;
1368 default:
1369 return false;
1370 }
1371 switch (gdk_event->type)
1372 {
1373 case GDK_BUTTON_PRESS:
1374 event_type = down;
1375 // GDK sends surplus button down events
1376 // before a double click event. We
1377 // need to filter these out.
1378 if (win->m_wxwindow)
1379 {
1380 GdkEvent* peek_event = gdk_event_peek();
1381 if (peek_event)
1382 {
1383 const GdkEventType peek_event_type = peek_event->type;
1384 gdk_event_free(peek_event);
1385 if (peek_event_type == GDK_2BUTTON_PRESS ||
1386 peek_event_type == GDK_3BUTTON_PRESS)
1387 {
1388 return true;
1389 }
1390 }
1391 }
1392 break;
1393 case GDK_2BUTTON_PRESS:
1394 event_type = dclick;
1395 #ifndef __WXGTK3__
1396 if (gdk_event->button >= 1 && gdk_event->button <= 3)
1397 {
1398 // Reset GDK internal timestamp variables in order to disable GDK
1399 // triple click events. GDK will then next time believe no button has
1400 // been clicked just before, and send a normal button click event.
1401 GdkDisplay* display = gtk_widget_get_display(widget);
1402 display->button_click_time[1] = 0;
1403 display->button_click_time[0] = 0;
1404 }
1405 #endif // !__WXGTK3__
1406 break;
1407 // we shouldn't get triple clicks at all for GTK2 because we
1408 // suppress them artificially using the code above but we still
1409 // should map them to something for GTK3 and not just ignore them
1410 // as this would lose clicks
1411 case GDK_3BUTTON_PRESS:
1412 event_type = down;
1413 break;
1414 default:
1415 return false;
1416 }
1417
1418 g_lastMouseEvent = (GdkEvent*) gdk_event;
1419
1420 wxMouseEvent event( event_type );
1421 InitMouseEvent( win, event, gdk_event );
1422
1423 AdjustEventButtonState(event);
1424
1425 // find the correct window to send the event to: it may be a different one
1426 // from the one which got it at GTK+ level because some controls don't have
1427 // their own X window and thus cannot get any events.
1428 if ( !g_captureWindow )
1429 win = FindWindowForMouseEvent(win, event.m_x, event.m_y);
1430
1431 // reset the event object and id in case win changed.
1432 event.SetEventObject( win );
1433 event.SetId( win->GetId() );
1434
1435 bool ret = win->GTKProcessEvent( event );
1436 g_lastMouseEvent = NULL;
1437 if ( ret )
1438 return TRUE;
1439
1440 if ((event_type == wxEVT_LEFT_DOWN) && !win->IsOfStandardClass() &&
1441 (gs_currentFocus != win) /* && win->IsFocusable() */)
1442 {
1443 win->SetFocus();
1444 }
1445
1446 if (event_type == wxEVT_RIGHT_DOWN)
1447 {
1448 // generate a "context menu" event: this is similar to right mouse
1449 // click under many GUIs except that it is generated differently
1450 // (right up under MSW, ctrl-click under Mac, right down here) and
1451 //
1452 // (a) it's a command event and so is propagated to the parent
1453 // (b) under some ports it can be generated from kbd too
1454 // (c) it uses screen coords (because of (a))
1455 wxContextMenuEvent evtCtx(
1456 wxEVT_CONTEXT_MENU,
1457 win->GetId(),
1458 win->ClientToScreen(event.GetPosition()));
1459 evtCtx.SetEventObject(win);
1460 return win->GTKProcessEvent(evtCtx);
1461 }
1462
1463 return FALSE;
1464 }
1465
1466 //-----------------------------------------------------------------------------
1467 // "button_release_event"
1468 //-----------------------------------------------------------------------------
1469
1470 static gboolean
1471 gtk_window_button_release_callback( GtkWidget *WXUNUSED(widget),
1472 GdkEventButton *gdk_event,
1473 wxWindowGTK *win )
1474 {
1475 wxPROCESS_EVENT_ONCE(GdkEventButton, gdk_event);
1476
1477 wxCOMMON_CALLBACK_PROLOGUE(gdk_event, win);
1478
1479 g_lastButtonNumber = 0;
1480
1481 wxEventType event_type = wxEVT_NULL;
1482
1483 switch (gdk_event->button)
1484 {
1485 case 1:
1486 event_type = wxEVT_LEFT_UP;
1487 break;
1488
1489 case 2:
1490 event_type = wxEVT_MIDDLE_UP;
1491 break;
1492
1493 case 3:
1494 event_type = wxEVT_RIGHT_UP;
1495 break;
1496
1497 case 8:
1498 event_type = wxEVT_AUX1_UP;
1499 break;
1500
1501 case 9:
1502 event_type = wxEVT_AUX2_UP;
1503 break;
1504
1505 default:
1506 // unknown button, don't process
1507 return FALSE;
1508 }
1509
1510 g_lastMouseEvent = (GdkEvent*) gdk_event;
1511
1512 wxMouseEvent event( event_type );
1513 InitMouseEvent( win, event, gdk_event );
1514
1515 AdjustEventButtonState(event);
1516
1517 if ( !g_captureWindow )
1518 win = FindWindowForMouseEvent(win, event.m_x, event.m_y);
1519
1520 // reset the event object and id in case win changed.
1521 event.SetEventObject( win );
1522 event.SetId( win->GetId() );
1523
1524 bool ret = win->GTKProcessEvent(event);
1525
1526 g_lastMouseEvent = NULL;
1527
1528 return ret;
1529 }
1530
1531 //-----------------------------------------------------------------------------
1532 // "motion_notify_event"
1533 //-----------------------------------------------------------------------------
1534
1535 static gboolean
1536 gtk_window_motion_notify_callback( GtkWidget * WXUNUSED(widget),
1537 GdkEventMotion *gdk_event,
1538 wxWindowGTK *win )
1539 {
1540 wxPROCESS_EVENT_ONCE(GdkEventMotion, gdk_event);
1541
1542 wxCOMMON_CALLBACK_PROLOGUE(gdk_event, win);
1543
1544 if (gdk_event->is_hint)
1545 {
1546 int x = 0;
1547 int y = 0;
1548 #ifdef __WXGTK3__
1549 gdk_window_get_device_position(gdk_event->window, gdk_event->device, &x, &y, NULL);
1550 #else
1551 gdk_window_get_pointer(gdk_event->window, &x, &y, NULL);
1552 #endif
1553 gdk_event->x = x;
1554 gdk_event->y = y;
1555 }
1556
1557 g_lastMouseEvent = (GdkEvent*) gdk_event;
1558
1559 wxMouseEvent event( wxEVT_MOTION );
1560 InitMouseEvent(win, event, gdk_event);
1561
1562 if ( g_captureWindow )
1563 {
1564 // synthesise a mouse enter or leave event if needed
1565 GdkWindow* winUnderMouse =
1566 #ifdef __WXGTK3__
1567 gdk_device_get_window_at_position(gdk_event->device, NULL, NULL);
1568 #else
1569 gdk_window_at_pointer(NULL, NULL);
1570 #endif
1571 // This seems to be necessary and actually been added to
1572 // GDK itself in version 2.0.X
1573 gdk_flush();
1574
1575 bool hasMouse = winUnderMouse == gdk_event->window;
1576 if ( hasMouse != g_captureWindowHasMouse )
1577 {
1578 // the mouse changed window
1579 g_captureWindowHasMouse = hasMouse;
1580
1581 wxMouseEvent eventM(g_captureWindowHasMouse ? wxEVT_ENTER_WINDOW
1582 : wxEVT_LEAVE_WINDOW);
1583 InitMouseEvent(win, eventM, gdk_event);
1584 eventM.SetEventObject(win);
1585 win->GTKProcessEvent(eventM);
1586 }
1587 }
1588 else // no capture
1589 {
1590 win = FindWindowForMouseEvent(win, event.m_x, event.m_y);
1591
1592 // reset the event object and id in case win changed.
1593 event.SetEventObject( win );
1594 event.SetId( win->GetId() );
1595 }
1596
1597 if ( !g_captureWindow )
1598 {
1599 wxSetCursorEvent cevent( event.m_x, event.m_y );
1600 if (win->GTKProcessEvent( cevent ))
1601 {
1602 win->SetCursor( cevent.GetCursor() );
1603 }
1604 }
1605
1606 bool ret = win->GTKProcessEvent(event);
1607
1608 g_lastMouseEvent = NULL;
1609
1610 return ret;
1611 }
1612
1613 //-----------------------------------------------------------------------------
1614 // "scroll_event" (mouse wheel event)
1615 //-----------------------------------------------------------------------------
1616
1617 static gboolean
1618 window_scroll_event_hscrollbar(GtkWidget*, GdkEventScroll* gdk_event, wxWindow* win)
1619 {
1620 if (gdk_event->direction != GDK_SCROLL_LEFT &&
1621 gdk_event->direction != GDK_SCROLL_RIGHT)
1622 {
1623 return false;
1624 }
1625
1626 GtkRange *range = win->m_scrollBar[wxWindow::ScrollDir_Horz];
1627
1628 if (range && gtk_widget_get_visible(GTK_WIDGET(range)))
1629 {
1630 GtkAdjustment* adj = gtk_range_get_adjustment(range);
1631 double delta = gtk_adjustment_get_step_increment(adj) * 3;
1632 if (gdk_event->direction == GDK_SCROLL_LEFT)
1633 delta = -delta;
1634
1635 gtk_range_set_value(range, gtk_adjustment_get_value(adj) + delta);
1636
1637 return TRUE;
1638 }
1639
1640 return FALSE;
1641 }
1642
1643 static gboolean
1644 window_scroll_event(GtkWidget*, GdkEventScroll* gdk_event, wxWindow* win)
1645 {
1646 wxMouseEvent event(wxEVT_MOUSEWHEEL);
1647 InitMouseEvent(win, event, gdk_event);
1648
1649 // FIXME: Get these values from GTK or GDK
1650 event.m_linesPerAction = 3;
1651 event.m_columnsPerAction = 3;
1652 event.m_wheelDelta = 120;
1653
1654 // Determine the scroll direction.
1655 switch (gdk_event->direction)
1656 {
1657 case GDK_SCROLL_UP:
1658 case GDK_SCROLL_RIGHT:
1659 event.m_wheelRotation = 120;
1660 break;
1661
1662 case GDK_SCROLL_DOWN:
1663 case GDK_SCROLL_LEFT:
1664 event.m_wheelRotation = -120;
1665 break;
1666 #if GTK_CHECK_VERSION(3,4,0)
1667 case GDK_SCROLL_SMOOTH:
1668 // TODO
1669 #endif
1670 default:
1671 return false; // Unknown/unhandled direction
1672 }
1673
1674 // And the scroll axis.
1675 switch (gdk_event->direction)
1676 {
1677 case GDK_SCROLL_UP:
1678 case GDK_SCROLL_DOWN:
1679 event.m_wheelAxis = wxMOUSE_WHEEL_VERTICAL;
1680 break;
1681
1682 case GDK_SCROLL_LEFT:
1683 case GDK_SCROLL_RIGHT:
1684 event.m_wheelAxis = wxMOUSE_WHEEL_HORIZONTAL;
1685 break;
1686 #if GTK_CHECK_VERSION(3,4,0)
1687 case GDK_SCROLL_SMOOTH:
1688 // TODO
1689 break;
1690 #endif
1691 }
1692
1693 if (win->GTKProcessEvent(event))
1694 return TRUE;
1695
1696 GtkRange *range;
1697 switch (gdk_event->direction)
1698 {
1699 case GDK_SCROLL_UP:
1700 case GDK_SCROLL_DOWN:
1701 range = win->m_scrollBar[wxWindow::ScrollDir_Vert];
1702 break;
1703
1704 case GDK_SCROLL_LEFT:
1705 case GDK_SCROLL_RIGHT:
1706 range = win->m_scrollBar[wxWindow::ScrollDir_Horz];
1707 break;
1708
1709 default:
1710 return false;
1711 }
1712
1713 if (range && gtk_widget_get_visible(GTK_WIDGET(range)))
1714 {
1715 GtkAdjustment* adj = gtk_range_get_adjustment(range);
1716 double delta = gtk_adjustment_get_step_increment(adj) * 3;
1717 if (gdk_event->direction == GDK_SCROLL_UP ||
1718 gdk_event->direction == GDK_SCROLL_LEFT)
1719 delta = -delta;
1720
1721 gtk_range_set_value(range, gtk_adjustment_get_value(adj) + delta);
1722
1723 return TRUE;
1724 }
1725
1726 return FALSE;
1727 }
1728
1729 //-----------------------------------------------------------------------------
1730 // "popup-menu"
1731 //-----------------------------------------------------------------------------
1732
1733 static gboolean wxgtk_window_popup_menu_callback(GtkWidget*, wxWindowGTK* win)
1734 {
1735 wxContextMenuEvent event(wxEVT_CONTEXT_MENU, win->GetId(), wxPoint(-1, -1));
1736 event.SetEventObject(win);
1737 return win->GTKProcessEvent(event);
1738 }
1739
1740 //-----------------------------------------------------------------------------
1741 // "focus_in_event"
1742 //-----------------------------------------------------------------------------
1743
1744 static gboolean
1745 gtk_window_focus_in_callback( GtkWidget * WXUNUSED(widget),
1746 GdkEventFocus *WXUNUSED(event),
1747 wxWindowGTK *win )
1748 {
1749 return win->GTKHandleFocusIn();
1750 }
1751
1752 //-----------------------------------------------------------------------------
1753 // "focus_out_event"
1754 //-----------------------------------------------------------------------------
1755
1756 static gboolean
1757 gtk_window_focus_out_callback( GtkWidget * WXUNUSED(widget),
1758 GdkEventFocus * WXUNUSED(gdk_event),
1759 wxWindowGTK *win )
1760 {
1761 return win->GTKHandleFocusOut();
1762 }
1763
1764 //-----------------------------------------------------------------------------
1765 // "focus"
1766 //-----------------------------------------------------------------------------
1767
1768 static gboolean
1769 wx_window_focus_callback(GtkWidget *widget,
1770 GtkDirectionType WXUNUSED(direction),
1771 wxWindowGTK *win)
1772 {
1773 // the default handler for focus signal in GtkScrolledWindow sets
1774 // focus to the window itself even if it doesn't accept focus, i.e. has no
1775 // GTK_CAN_FOCUS in its style -- work around this by forcibly preventing
1776 // the signal from reaching gtk_scrolled_window_focus() if we don't have
1777 // any children which might accept focus (we know we don't accept the focus
1778 // ourselves as this signal is only connected in this case)
1779 if ( win->GetChildren().empty() )
1780 g_signal_stop_emission_by_name(widget, "focus");
1781
1782 // we didn't change the focus
1783 return FALSE;
1784 }
1785
1786 //-----------------------------------------------------------------------------
1787 // "enter_notify_event"
1788 //-----------------------------------------------------------------------------
1789
1790 static gboolean
1791 gtk_window_enter_callback( GtkWidget*,
1792 GdkEventCrossing *gdk_event,
1793 wxWindowGTK *win )
1794 {
1795 wxCOMMON_CALLBACK_PROLOGUE(gdk_event, win);
1796
1797 // Event was emitted after a grab
1798 if (gdk_event->mode != GDK_CROSSING_NORMAL) return FALSE;
1799
1800 wxMouseEvent event( wxEVT_ENTER_WINDOW );
1801 InitMouseEvent(win, event, gdk_event);
1802
1803 if ( !g_captureWindow )
1804 {
1805 wxSetCursorEvent cevent( event.m_x, event.m_y );
1806 if (win->GTKProcessEvent( cevent ))
1807 {
1808 win->SetCursor( cevent.GetCursor() );
1809 }
1810 }
1811
1812 return win->GTKProcessEvent(event);
1813 }
1814
1815 //-----------------------------------------------------------------------------
1816 // "leave_notify_event"
1817 //-----------------------------------------------------------------------------
1818
1819 static gboolean
1820 gtk_window_leave_callback( GtkWidget*,
1821 GdkEventCrossing *gdk_event,
1822 wxWindowGTK *win )
1823 {
1824 wxCOMMON_CALLBACK_PROLOGUE(gdk_event, win);
1825
1826 // Event was emitted after an ungrab
1827 if (gdk_event->mode != GDK_CROSSING_NORMAL) return FALSE;
1828
1829 wxMouseEvent event( wxEVT_LEAVE_WINDOW );
1830 InitMouseEvent(win, event, gdk_event);
1831
1832 return win->GTKProcessEvent(event);
1833 }
1834
1835 //-----------------------------------------------------------------------------
1836 // "value_changed" from scrollbar
1837 //-----------------------------------------------------------------------------
1838
1839 static void
1840 gtk_scrollbar_value_changed(GtkRange* range, wxWindow* win)
1841 {
1842 wxEventType eventType = win->GTKGetScrollEventType(range);
1843 if (eventType != wxEVT_NULL)
1844 {
1845 // Convert scroll event type to scrollwin event type
1846 eventType += wxEVT_SCROLLWIN_TOP - wxEVT_SCROLL_TOP;
1847
1848 // find the scrollbar which generated the event
1849 wxWindowGTK::ScrollDir dir = win->ScrollDirFromRange(range);
1850
1851 // generate the corresponding wx event
1852 const int orient = wxWindow::OrientFromScrollDir(dir);
1853 wxScrollWinEvent event(eventType, win->GetScrollPos(orient), orient);
1854 event.SetEventObject(win);
1855
1856 win->GTKProcessEvent(event);
1857 }
1858 }
1859
1860 //-----------------------------------------------------------------------------
1861 // "button_press_event" from scrollbar
1862 //-----------------------------------------------------------------------------
1863
1864 static gboolean
1865 gtk_scrollbar_button_press_event(GtkRange*, GdkEventButton*, wxWindow* win)
1866 {
1867 g_blockEventsOnScroll = true;
1868 win->m_mouseButtonDown = true;
1869
1870 return false;
1871 }
1872
1873 //-----------------------------------------------------------------------------
1874 // "event_after" from scrollbar
1875 //-----------------------------------------------------------------------------
1876
1877 static void
1878 gtk_scrollbar_event_after(GtkRange* range, GdkEvent* event, wxWindow* win)
1879 {
1880 if (event->type == GDK_BUTTON_RELEASE)
1881 {
1882 g_signal_handlers_block_by_func(range, (void*)gtk_scrollbar_event_after, win);
1883
1884 const int orient = wxWindow::OrientFromScrollDir(
1885 win->ScrollDirFromRange(range));
1886 wxScrollWinEvent evt(wxEVT_SCROLLWIN_THUMBRELEASE,
1887 win->GetScrollPos(orient), orient);
1888 evt.SetEventObject(win);
1889 win->GTKProcessEvent(evt);
1890 }
1891 }
1892
1893 //-----------------------------------------------------------------------------
1894 // "button_release_event" from scrollbar
1895 //-----------------------------------------------------------------------------
1896
1897 static gboolean
1898 gtk_scrollbar_button_release_event(GtkRange* range, GdkEventButton*, wxWindow* win)
1899 {
1900 g_blockEventsOnScroll = false;
1901 win->m_mouseButtonDown = false;
1902 // If thumb tracking
1903 if (win->m_isScrolling)
1904 {
1905 win->m_isScrolling = false;
1906 // Hook up handler to send thumb release event after this emission is finished.
1907 // To allow setting scroll position from event handler, sending event must
1908 // be deferred until after the GtkRange handler for this signal has run
1909 g_signal_handlers_unblock_by_func(range, (void*)gtk_scrollbar_event_after, win);
1910 }
1911
1912 return false;
1913 }
1914
1915 //-----------------------------------------------------------------------------
1916 // "realize" from m_widget
1917 //-----------------------------------------------------------------------------
1918
1919 static void
1920 gtk_window_realized_callback(GtkWidget* WXUNUSED(widget), wxWindowGTK* win)
1921 {
1922 win->GTKHandleRealized();
1923 }
1924
1925 //-----------------------------------------------------------------------------
1926 // "size_allocate" from m_wxwindow or m_widget
1927 //-----------------------------------------------------------------------------
1928
1929 static void
1930 size_allocate(GtkWidget*, GtkAllocation* alloc, wxWindow* win)
1931 {
1932 int w = alloc->width;
1933 int h = alloc->height;
1934 if (win->m_wxwindow)
1935 {
1936 GtkBorder border;
1937 WX_PIZZA(win->m_wxwindow)->get_border(border);
1938 w -= border.left + border.right;
1939 h -= border.top + border.bottom;
1940 if (w < 0) w = 0;
1941 if (h < 0) h = 0;
1942 }
1943 GtkAllocation a;
1944 gtk_widget_get_allocation(win->m_widget, &a);
1945 // update position for widgets in native containers, such as wxToolBar
1946 if (!WX_IS_PIZZA(gtk_widget_get_parent(win->m_widget)))
1947 {
1948 win->m_x = a.x;
1949 win->m_y = a.y;
1950 }
1951 win->m_useCachedClientSize = true;
1952 if (win->m_clientWidth != w || win->m_clientHeight != h)
1953 {
1954 win->m_clientWidth = w;
1955 win->m_clientHeight = h;
1956 // this callback can be connected to m_wxwindow,
1957 // so always get size from m_widget->allocation
1958 win->m_width = a.width;
1959 win->m_height = a.height;
1960 if (!win->m_nativeSizeEvent)
1961 {
1962 wxSizeEvent event(win->GetSize(), win->GetId());
1963 event.SetEventObject(win);
1964 win->GTKProcessEvent(event);
1965 }
1966 }
1967 }
1968
1969 //-----------------------------------------------------------------------------
1970 // "grab_broken"
1971 //-----------------------------------------------------------------------------
1972
1973 #if GTK_CHECK_VERSION(2, 8, 0)
1974 static gboolean
1975 gtk_window_grab_broken( GtkWidget*,
1976 GdkEventGrabBroken *event,
1977 wxWindow *win )
1978 {
1979 // Mouse capture has been lost involuntarily, notify the application
1980 if(!event->keyboard && wxWindow::GetCapture() == win)
1981 {
1982 wxMouseCaptureLostEvent evt( win->GetId() );
1983 evt.SetEventObject( win );
1984 win->HandleWindowEvent( evt );
1985 }
1986 return false;
1987 }
1988 #endif
1989
1990 //-----------------------------------------------------------------------------
1991 // "style_set"/"style_updated"
1992 //-----------------------------------------------------------------------------
1993
1994 #ifdef __WXGTK3__
1995 static void style_updated(GtkWidget*, wxWindow* win)
1996 #else
1997 static void style_updated(GtkWidget*, GtkStyle*, wxWindow* win)
1998 #endif
1999 {
2000 wxSysColourChangedEvent event;
2001 event.SetEventObject(win);
2002 win->GTKProcessEvent(event);
2003 }
2004
2005 //-----------------------------------------------------------------------------
2006 // "unrealize"
2007 //-----------------------------------------------------------------------------
2008
2009 static void unrealize(GtkWidget*, wxWindow* win)
2010 {
2011 win->GTKHandleUnrealize();
2012 }
2013
2014 } // extern "C"
2015
2016 void wxWindowGTK::GTKHandleRealized()
2017 {
2018 if (IsFrozen())
2019 DoFreeze();
2020
2021 GdkWindow* const window = GTKGetDrawingWindow();
2022
2023 if (m_imContext)
2024 {
2025 gtk_im_context_set_client_window
2026 (
2027 m_imContext,
2028 window ? window
2029 : gtk_widget_get_window(m_widget)
2030 );
2031 }
2032
2033 // Use composited window if background is transparent, if supported.
2034 if (m_backgroundStyle == wxBG_STYLE_TRANSPARENT)
2035 {
2036 #if wxGTK_HAS_COMPOSITING_SUPPORT
2037 if (IsTransparentBackgroundSupported())
2038 {
2039 if (window)
2040 gdk_window_set_composited(window, true);
2041 }
2042 else
2043 #endif // wxGTK_HAS_COMPOSITING_SUPPORT
2044 {
2045 // We revert to erase mode if transparency is not supported
2046 m_backgroundStyle = wxBG_STYLE_ERASE;
2047 }
2048 }
2049
2050 #ifndef __WXGTK3__
2051 if (window && (
2052 m_backgroundStyle == wxBG_STYLE_PAINT ||
2053 m_backgroundStyle == wxBG_STYLE_TRANSPARENT))
2054 {
2055 gdk_window_set_back_pixmap(window, NULL, false);
2056 }
2057 #endif
2058
2059 wxWindowCreateEvent event(static_cast<wxWindow*>(this));
2060 event.SetEventObject( this );
2061 GTKProcessEvent( event );
2062
2063 GTKUpdateCursor(true, false);
2064
2065 if (m_wxwindow && IsTopLevel())
2066 {
2067 // attaching to style changed signal after realization avoids initial
2068 // changes we don't care about
2069 const gchar *detailed_signal =
2070 #ifdef __WXGTK3__
2071 "style_updated";
2072 #else
2073 "style_set";
2074 #endif
2075 g_signal_connect(m_wxwindow,
2076 detailed_signal,
2077 G_CALLBACK(style_updated), this);
2078 }
2079 }
2080
2081 void wxWindowGTK::GTKHandleUnrealize()
2082 {
2083 // unrealizing a frozen window seems to have some lingering effect
2084 // preventing updates to the affected area
2085 if (IsFrozen())
2086 DoThaw();
2087
2088 if (m_wxwindow)
2089 {
2090 if (m_imContext)
2091 gtk_im_context_set_client_window(m_imContext, NULL);
2092
2093 if (IsTopLevel())
2094 {
2095 g_signal_handlers_disconnect_by_func(
2096 m_wxwindow, (void*)style_updated, this);
2097 }
2098 }
2099 }
2100
2101 // ----------------------------------------------------------------------------
2102 // this wxWindowBase function is implemented here (in platform-specific file)
2103 // because it is static and so couldn't be made virtual
2104 // ----------------------------------------------------------------------------
2105
2106 wxWindow *wxWindowBase::DoFindFocus()
2107 {
2108 #if wxUSE_MENUS
2109 // For compatibility with wxMSW, pretend that showing a popup menu doesn't
2110 // change the focus and that it remains on the window showing it, even
2111 // though the real focus does change in GTK.
2112 extern wxMenu *wxCurrentPopupMenu;
2113 if ( wxCurrentPopupMenu )
2114 return wxCurrentPopupMenu->GetInvokingWindow();
2115 #endif // wxUSE_MENUS
2116
2117 wxWindowGTK *focus = gs_pendingFocus ? gs_pendingFocus : gs_currentFocus;
2118 // the cast is necessary when we compile in wxUniversal mode
2119 return static_cast<wxWindow*>(focus);
2120 }
2121
2122 void wxWindowGTK::AddChildGTK(wxWindowGTK* child)
2123 {
2124 wxASSERT_MSG(m_wxwindow, "Cannot add a child to a window without a client area");
2125
2126 // the window might have been scrolled already, we
2127 // have to adapt the position
2128 wxPizza* pizza = WX_PIZZA(m_wxwindow);
2129 child->m_x += pizza->m_scroll_x;
2130 child->m_y += pizza->m_scroll_y;
2131
2132 pizza->put(child->m_widget,
2133 child->m_x, child->m_y, child->m_width, child->m_height);
2134 }
2135
2136 //-----------------------------------------------------------------------------
2137 // global functions
2138 //-----------------------------------------------------------------------------
2139
2140 wxWindow *wxGetActiveWindow()
2141 {
2142 return wxWindow::FindFocus();
2143 }
2144
2145
2146 // Under Unix this is implemented using X11 functions in utilsx11.cpp but we
2147 // need to have this function under Windows too, so provide at least a stub.
2148 #ifndef GDK_WINDOWING_X11
2149 bool wxGetKeyState(wxKeyCode WXUNUSED(key))
2150 {
2151 wxFAIL_MSG(wxS("Not implemented under Windows"));
2152 return false;
2153 }
2154 #endif // __WINDOWS__
2155
2156 static GdkDisplay* GetDisplay()
2157 {
2158 wxWindow* tlw = NULL;
2159 if (!wxTopLevelWindows.empty())
2160 tlw = wxTopLevelWindows.front();
2161 GdkDisplay* display;
2162 if (tlw && tlw->m_widget)
2163 display = gtk_widget_get_display(tlw->m_widget);
2164 else
2165 display = gdk_display_get_default();
2166 return display;
2167 }
2168
2169 wxMouseState wxGetMouseState()
2170 {
2171 wxMouseState ms;
2172
2173 gint x;
2174 gint y;
2175 GdkModifierType mask;
2176
2177 GdkDisplay* display = GetDisplay();
2178 #ifdef __WXGTK3__
2179 GdkDeviceManager* manager = gdk_display_get_device_manager(display);
2180 GdkDevice* device = gdk_device_manager_get_client_pointer(manager);
2181 GdkScreen* screen;
2182 gdk_device_get_position(device, &screen, &x, &y);
2183 GdkWindow* window = gdk_screen_get_root_window(screen);
2184 gdk_device_get_state(device, window, NULL, &mask);
2185 #else
2186 gdk_display_get_pointer(display, NULL, &x, &y, &mask);
2187 #endif
2188
2189 ms.SetX(x);
2190 ms.SetY(y);
2191 ms.SetLeftDown((mask & GDK_BUTTON1_MASK) != 0);
2192 ms.SetMiddleDown((mask & GDK_BUTTON2_MASK) != 0);
2193 ms.SetRightDown((mask & GDK_BUTTON3_MASK) != 0);
2194 // see the comment in InitMouseEvent()
2195 ms.SetAux1Down((mask & GDK_BUTTON4_MASK) != 0);
2196 ms.SetAux2Down((mask & GDK_BUTTON5_MASK) != 0);
2197
2198 ms.SetControlDown((mask & GDK_CONTROL_MASK) != 0);
2199 ms.SetShiftDown((mask & GDK_SHIFT_MASK) != 0);
2200 ms.SetAltDown((mask & GDK_MOD1_MASK) != 0);
2201 ms.SetMetaDown((mask & GDK_META_MASK) != 0);
2202
2203 return ms;
2204 }
2205
2206 //-----------------------------------------------------------------------------
2207 // wxWindowGTK
2208 //-----------------------------------------------------------------------------
2209
2210 // in wxUniv/MSW this class is abstract because it doesn't have DoPopupMenu()
2211 // method
2212 #ifdef __WXUNIVERSAL__
2213 IMPLEMENT_ABSTRACT_CLASS(wxWindowGTK, wxWindowBase)
2214 #endif // __WXUNIVERSAL__
2215
2216 void wxWindowGTK::Init()
2217 {
2218 // GTK specific
2219 m_widget = NULL;
2220 m_wxwindow = NULL;
2221 m_focusWidget = NULL;
2222
2223 // position/size
2224 m_x = 0;
2225 m_y = 0;
2226 m_width = 0;
2227 m_height = 0;
2228
2229 m_showOnIdle = false;
2230
2231 m_noExpose = false;
2232 m_nativeSizeEvent = false;
2233 #ifdef __WXGTK3__
2234 m_paintContext = NULL;
2235 m_styleProvider = NULL;
2236 #endif
2237
2238 m_isScrolling = false;
2239 m_mouseButtonDown = false;
2240
2241 // initialize scrolling stuff
2242 for ( int dir = 0; dir < ScrollDir_Max; dir++ )
2243 {
2244 m_scrollBar[dir] = NULL;
2245 m_scrollPos[dir] = 0;
2246 }
2247
2248 m_clientWidth =
2249 m_clientHeight = 0;
2250 m_useCachedClientSize = false;
2251
2252 m_clipPaintRegion = false;
2253
2254 m_cursor = *wxSTANDARD_CURSOR;
2255
2256 m_imContext = NULL;
2257 m_imKeyEvent = NULL;
2258
2259 m_dirtyTabOrder = false;
2260 }
2261
2262 wxWindowGTK::wxWindowGTK()
2263 {
2264 Init();
2265 }
2266
2267 wxWindowGTK::wxWindowGTK( wxWindow *parent,
2268 wxWindowID id,
2269 const wxPoint &pos,
2270 const wxSize &size,
2271 long style,
2272 const wxString &name )
2273 {
2274 Init();
2275
2276 Create( parent, id, pos, size, style, name );
2277 }
2278
2279 void wxWindowGTK::GTKCreateScrolledWindowWith(GtkWidget* view)
2280 {
2281 wxASSERT_MSG( HasFlag(wxHSCROLL) || HasFlag(wxVSCROLL),
2282 wxS("Must not be called if scrolling is not needed.") );
2283
2284 m_widget = gtk_scrolled_window_new( NULL, NULL );
2285
2286 GtkScrolledWindow *scrolledWindow = GTK_SCROLLED_WINDOW(m_widget);
2287
2288 // There is a conflict with default bindings at GTK+
2289 // level between scrolled windows and notebooks both of which want to use
2290 // Ctrl-PageUp/Down: scrolled windows for scrolling in the horizontal
2291 // direction and notebooks for changing pages -- we decide that if we don't
2292 // have wxHSCROLL style we can safely sacrifice horizontal scrolling if it
2293 // means we can get working keyboard navigation in notebooks
2294 if ( !HasFlag(wxHSCROLL) )
2295 {
2296 GtkBindingSet *
2297 bindings = gtk_binding_set_by_class(G_OBJECT_GET_CLASS(m_widget));
2298 if ( bindings )
2299 {
2300 gtk_binding_entry_remove(bindings, GDK_Page_Up, GDK_CONTROL_MASK);
2301 gtk_binding_entry_remove(bindings, GDK_Page_Down, GDK_CONTROL_MASK);
2302 }
2303 }
2304
2305 // If wx[HV]SCROLL is not given, the corresponding scrollbar is not shown
2306 // at all. Otherwise it may be shown only on demand (default) or always, if
2307 // the wxALWAYS_SHOW_SB is specified.
2308 GtkPolicyType horzPolicy = HasFlag(wxHSCROLL)
2309 ? HasFlag(wxALWAYS_SHOW_SB)
2310 ? GTK_POLICY_ALWAYS
2311 : GTK_POLICY_AUTOMATIC
2312 : GTK_POLICY_NEVER;
2313 GtkPolicyType vertPolicy = HasFlag(wxVSCROLL)
2314 ? HasFlag(wxALWAYS_SHOW_SB)
2315 ? GTK_POLICY_ALWAYS
2316 : GTK_POLICY_AUTOMATIC
2317 : GTK_POLICY_NEVER;
2318 gtk_scrolled_window_set_policy( scrolledWindow, horzPolicy, vertPolicy );
2319
2320 m_scrollBar[ScrollDir_Horz] = GTK_RANGE(gtk_scrolled_window_get_hscrollbar(scrolledWindow));
2321 m_scrollBar[ScrollDir_Vert] = GTK_RANGE(gtk_scrolled_window_get_vscrollbar(scrolledWindow));
2322 if (GetLayoutDirection() == wxLayout_RightToLeft)
2323 gtk_range_set_inverted( m_scrollBar[ScrollDir_Horz], TRUE );
2324
2325 gtk_container_add( GTK_CONTAINER(m_widget), view );
2326
2327 // connect various scroll-related events
2328 for ( int dir = 0; dir < ScrollDir_Max; dir++ )
2329 {
2330 // these handlers block mouse events to any window during scrolling
2331 // such as motion events and prevent GTK and wxWidgets from fighting
2332 // over where the slider should be
2333 g_signal_connect(m_scrollBar[dir], "button_press_event",
2334 G_CALLBACK(gtk_scrollbar_button_press_event), this);
2335 g_signal_connect(m_scrollBar[dir], "button_release_event",
2336 G_CALLBACK(gtk_scrollbar_button_release_event), this);
2337
2338 gulong handler_id = g_signal_connect(m_scrollBar[dir], "event_after",
2339 G_CALLBACK(gtk_scrollbar_event_after), this);
2340 g_signal_handler_block(m_scrollBar[dir], handler_id);
2341
2342 // these handlers get notified when scrollbar slider moves
2343 g_signal_connect_after(m_scrollBar[dir], "value_changed",
2344 G_CALLBACK(gtk_scrollbar_value_changed), this);
2345 }
2346
2347 gtk_widget_show( view );
2348 }
2349
2350 bool wxWindowGTK::Create( wxWindow *parent,
2351 wxWindowID id,
2352 const wxPoint &pos,
2353 const wxSize &size,
2354 long style,
2355 const wxString &name )
2356 {
2357 // Get default border
2358 wxBorder border = GetBorder(style);
2359
2360 style &= ~wxBORDER_MASK;
2361 style |= border;
2362
2363 if (!PreCreation( parent, pos, size ) ||
2364 !CreateBase( parent, id, pos, size, style, wxDefaultValidator, name ))
2365 {
2366 wxFAIL_MSG( wxT("wxWindowGTK creation failed") );
2367 return false;
2368 }
2369
2370 // We should accept the native look
2371 #if 0
2372 GtkScrolledWindowClass *scroll_class = GTK_SCROLLED_WINDOW_CLASS( GTK_OBJECT_GET_CLASS(m_widget) );
2373 scroll_class->scrollbar_spacing = 0;
2374 #endif
2375
2376
2377 m_wxwindow = wxPizza::New(m_windowStyle);
2378 #ifndef __WXUNIVERSAL__
2379 if (HasFlag(wxPizza::BORDER_STYLES))
2380 {
2381 g_signal_connect(m_wxwindow, "parent_set",
2382 G_CALLBACK(parent_set), this);
2383 }
2384 #endif
2385 if (!HasFlag(wxHSCROLL) && !HasFlag(wxVSCROLL))
2386 m_widget = m_wxwindow;
2387 else
2388 GTKCreateScrolledWindowWith(m_wxwindow);
2389 g_object_ref(m_widget);
2390
2391 if (m_parent)
2392 m_parent->DoAddChild( this );
2393
2394 m_focusWidget = m_wxwindow;
2395
2396 SetCanFocus(AcceptsFocus());
2397
2398 PostCreation();
2399
2400 return true;
2401 }
2402
2403 void wxWindowGTK::GTKDisconnect(void* instance)
2404 {
2405 g_signal_handlers_disconnect_matched(instance,
2406 GSignalMatchType(G_SIGNAL_MATCH_DATA), 0, 0, NULL, NULL, this);
2407 }
2408
2409 wxWindowGTK::~wxWindowGTK()
2410 {
2411 SendDestroyEvent();
2412
2413 if (gs_currentFocus == this)
2414 gs_currentFocus = NULL;
2415 if (gs_pendingFocus == this)
2416 gs_pendingFocus = NULL;
2417
2418 if ( gs_deferredFocusOut == this )
2419 gs_deferredFocusOut = NULL;
2420
2421 // Unlike the above cases, which can happen in normal circumstances, a
2422 // window shouldn't be destroyed while it still has capture, so even though
2423 // we still reset the global pointer to avoid leaving it dangling and
2424 // crashing afterwards, also complain about it.
2425 if ( g_captureWindow == this )
2426 {
2427 wxFAIL_MSG( wxS("Destroying window with mouse capture") );
2428 g_captureWindow = NULL;
2429 }
2430
2431 if (m_wxwindow)
2432 {
2433 GTKDisconnect(m_wxwindow);
2434 GtkWidget* parent = gtk_widget_get_parent(m_wxwindow);
2435 if (parent)
2436 GTKDisconnect(parent);
2437 }
2438 if (m_widget && m_widget != m_wxwindow)
2439 GTKDisconnect(m_widget);
2440
2441 // destroy children before destroying this window itself
2442 DestroyChildren();
2443
2444 // delete before the widgets to avoid a crash on solaris
2445 if ( m_imContext )
2446 {
2447 g_object_unref(m_imContext);
2448 m_imContext = NULL;
2449 }
2450
2451 // avoid problem with GTK+ 2.18 where a frozen window causes the whole
2452 // TLW to be frozen, and if the window is then destroyed, nothing ever
2453 // gets painted again
2454 while (IsFrozen())
2455 Thaw();
2456
2457 #ifdef __WXGTK3__
2458 if (m_styleProvider)
2459 g_object_unref(m_styleProvider);
2460 #endif
2461
2462 if (m_widget)
2463 {
2464 // Note that gtk_widget_destroy() does not destroy the widget, it just
2465 // emits the "destroy" signal. The widget is not actually destroyed
2466 // until its reference count drops to zero.
2467 gtk_widget_destroy(m_widget);
2468 // Release our reference, should be the last one
2469 g_object_unref(m_widget);
2470 m_widget = NULL;
2471 }
2472 m_wxwindow = NULL;
2473 }
2474
2475 bool wxWindowGTK::PreCreation( wxWindowGTK *parent, const wxPoint &pos, const wxSize &size )
2476 {
2477 if ( GTKNeedsParent() )
2478 {
2479 wxCHECK_MSG( parent, false, wxT("Must have non-NULL parent") );
2480 }
2481
2482 // Use either the given size, or the default if -1 is given.
2483 // See wxWindowBase for these functions.
2484 m_width = WidthDefault(size.x) ;
2485 m_height = HeightDefault(size.y);
2486
2487 if (pos != wxDefaultPosition)
2488 {
2489 m_x = pos.x;
2490 m_y = pos.y;
2491 }
2492
2493 return true;
2494 }
2495
2496 void wxWindowGTK::PostCreation()
2497 {
2498 wxASSERT_MSG( (m_widget != NULL), wxT("invalid window") );
2499
2500 #if wxGTK_HAS_COMPOSITING_SUPPORT
2501 // Set RGBA visual as soon as possible to minimize the possibility that
2502 // somebody uses the wrong one.
2503 if ( m_backgroundStyle == wxBG_STYLE_TRANSPARENT &&
2504 IsTransparentBackgroundSupported() )
2505 {
2506 GdkScreen *screen = gtk_widget_get_screen (m_widget);
2507 #ifdef __WXGTK3__
2508 gtk_widget_set_visual(m_widget, gdk_screen_get_rgba_visual(screen));
2509 #else
2510 GdkColormap *rgba_colormap = gdk_screen_get_rgba_colormap (screen);
2511
2512 if (rgba_colormap)
2513 gtk_widget_set_colormap(m_widget, rgba_colormap);
2514 #endif
2515 }
2516 #endif // wxGTK_HAS_COMPOSITING_SUPPORT
2517
2518 if (m_wxwindow)
2519 {
2520 if (!m_noExpose)
2521 {
2522 // these get reported to wxWidgets -> wxPaintEvent
2523 #ifdef __WXGTK3__
2524 g_signal_connect(m_wxwindow, "draw", G_CALLBACK(draw), this);
2525 #else
2526 g_signal_connect(m_wxwindow, "expose_event", G_CALLBACK(expose_event), this);
2527 #endif
2528
2529 if (GetLayoutDirection() == wxLayout_LeftToRight)
2530 gtk_widget_set_redraw_on_allocate(m_wxwindow, HasFlag(wxFULL_REPAINT_ON_RESIZE));
2531 }
2532
2533 // Create input method handler
2534 m_imContext = gtk_im_multicontext_new();
2535
2536 // Cannot handle drawing preedited text yet
2537 gtk_im_context_set_use_preedit( m_imContext, FALSE );
2538
2539 g_signal_connect (m_imContext, "commit",
2540 G_CALLBACK (gtk_wxwindow_commit_cb), this);
2541 }
2542
2543 // focus handling
2544
2545 if (!GTK_IS_WINDOW(m_widget))
2546 {
2547 if (m_focusWidget == NULL)
2548 m_focusWidget = m_widget;
2549
2550 if (m_wxwindow)
2551 {
2552 g_signal_connect (m_focusWidget, "focus_in_event",
2553 G_CALLBACK (gtk_window_focus_in_callback), this);
2554 g_signal_connect (m_focusWidget, "focus_out_event",
2555 G_CALLBACK (gtk_window_focus_out_callback), this);
2556 }
2557 else
2558 {
2559 g_signal_connect_after (m_focusWidget, "focus_in_event",
2560 G_CALLBACK (gtk_window_focus_in_callback), this);
2561 g_signal_connect_after (m_focusWidget, "focus_out_event",
2562 G_CALLBACK (gtk_window_focus_out_callback), this);
2563 }
2564 }
2565
2566 if ( !AcceptsFocusFromKeyboard() )
2567 {
2568 SetCanFocus(false);
2569
2570 g_signal_connect(m_widget, "focus",
2571 G_CALLBACK(wx_window_focus_callback), this);
2572 }
2573
2574 // connect to the various key and mouse handlers
2575
2576 GtkWidget *connect_widget = GetConnectWidget();
2577
2578 ConnectWidget( connect_widget );
2579
2580 // We cannot set colours, fonts and cursors before the widget has been
2581 // realized, so we do this directly after realization -- unless the widget
2582 // was in fact realized already.
2583 if ( gtk_widget_get_realized(connect_widget) )
2584 {
2585 GTKHandleRealized();
2586 }
2587 else
2588 {
2589 g_signal_connect (connect_widget, "realize",
2590 G_CALLBACK (gtk_window_realized_callback), this);
2591 }
2592 g_signal_connect(connect_widget, "unrealize", G_CALLBACK(unrealize), this);
2593
2594 if (!IsTopLevel())
2595 {
2596 g_signal_connect(m_wxwindow ? m_wxwindow : m_widget, "size_allocate",
2597 G_CALLBACK(size_allocate), this);
2598 }
2599
2600 #if GTK_CHECK_VERSION(2, 8, 0)
2601 #ifndef __WXGTK3__
2602 if ( gtk_check_version(2,8,0) == NULL )
2603 #endif
2604 {
2605 // Make sure we can notify the app when mouse capture is lost
2606 if ( m_wxwindow )
2607 {
2608 g_signal_connect (m_wxwindow, "grab_broken_event",
2609 G_CALLBACK (gtk_window_grab_broken), this);
2610 }
2611
2612 if ( connect_widget != m_wxwindow )
2613 {
2614 g_signal_connect (connect_widget, "grab_broken_event",
2615 G_CALLBACK (gtk_window_grab_broken), this);
2616 }
2617 }
2618 #endif // GTK+ >= 2.8
2619
2620 if (!WX_IS_PIZZA(gtk_widget_get_parent(m_widget)) && !GTK_IS_WINDOW(m_widget))
2621 gtk_widget_set_size_request(m_widget, m_width, m_height);
2622
2623 // apply any font or color changes made before creation
2624 GTKApplyWidgetStyle();
2625
2626 InheritAttributes();
2627
2628 SetLayoutDirection(wxLayout_Default);
2629
2630 // unless the window was created initially hidden (i.e. Hide() had been
2631 // called before Create()), we should show it at GTK+ level as well
2632 if ( IsShown() )
2633 gtk_widget_show( m_widget );
2634 }
2635
2636 unsigned long
2637 wxWindowGTK::GTKConnectWidget(const char *signal, wxGTKCallback callback)
2638 {
2639 return g_signal_connect(m_widget, signal, callback, this);
2640 }
2641
2642 void wxWindowGTK::ConnectWidget( GtkWidget *widget )
2643 {
2644 g_signal_connect (widget, "key_press_event",
2645 G_CALLBACK (gtk_window_key_press_callback), this);
2646 g_signal_connect (widget, "key_release_event",
2647 G_CALLBACK (gtk_window_key_release_callback), this);
2648 g_signal_connect (widget, "button_press_event",
2649 G_CALLBACK (gtk_window_button_press_callback), this);
2650 g_signal_connect (widget, "button_release_event",
2651 G_CALLBACK (gtk_window_button_release_callback), this);
2652 g_signal_connect (widget, "motion_notify_event",
2653 G_CALLBACK (gtk_window_motion_notify_callback), this);
2654
2655 g_signal_connect (widget, "scroll_event",
2656 G_CALLBACK (window_scroll_event), this);
2657 if (m_scrollBar[ScrollDir_Horz])
2658 g_signal_connect (m_scrollBar[ScrollDir_Horz], "scroll_event",
2659 G_CALLBACK (window_scroll_event_hscrollbar), this);
2660 if (m_scrollBar[ScrollDir_Vert])
2661 g_signal_connect (m_scrollBar[ScrollDir_Vert], "scroll_event",
2662 G_CALLBACK (window_scroll_event), this);
2663
2664 g_signal_connect (widget, "popup_menu",
2665 G_CALLBACK (wxgtk_window_popup_menu_callback), this);
2666 g_signal_connect (widget, "enter_notify_event",
2667 G_CALLBACK (gtk_window_enter_callback), this);
2668 g_signal_connect (widget, "leave_notify_event",
2669 G_CALLBACK (gtk_window_leave_callback), this);
2670 }
2671
2672 static GSList* gs_queueResizeList;
2673
2674 extern "C" {
2675 static gboolean queue_resize(void*)
2676 {
2677 gdk_threads_enter();
2678 for (GSList* p = gs_queueResizeList; p; p = p->next)
2679 {
2680 if (p->data)
2681 {
2682 gtk_widget_queue_resize(GTK_WIDGET(p->data));
2683 g_object_remove_weak_pointer(G_OBJECT(p->data), &p->data);
2684 }
2685 }
2686 g_slist_free(gs_queueResizeList);
2687 gs_queueResizeList = NULL;
2688 gdk_threads_leave();
2689 return false;
2690 }
2691 }
2692
2693 void wxWindowGTK::DoMoveWindow(int x, int y, int width, int height)
2694 {
2695 gtk_widget_set_size_request(m_widget, width, height);
2696 GtkWidget* parent = gtk_widget_get_parent(m_widget);
2697 if (WX_IS_PIZZA(parent))
2698 WX_PIZZA(parent)->move(m_widget, x, y, width, height);
2699
2700 // With GTK3, gtk_widget_queue_resize() is ignored while a size-allocate
2701 // is in progress. This situation is common in wxWidgets, since
2702 // size-allocate can generate wxSizeEvent and size event handlers often
2703 // call SetSize(), directly or indirectly. Work around this by deferring
2704 // the queue-resize until after size-allocate processing is finished.
2705 if (g_slist_find(gs_queueResizeList, m_widget) == NULL)
2706 {
2707 if (gs_queueResizeList == NULL)
2708 g_idle_add_full(GTK_PRIORITY_RESIZE, queue_resize, NULL, NULL);
2709 gs_queueResizeList = g_slist_prepend(gs_queueResizeList, m_widget);
2710 g_object_add_weak_pointer(G_OBJECT(m_widget), &gs_queueResizeList->data);
2711 }
2712 }
2713
2714 void wxWindowGTK::ConstrainSize()
2715 {
2716 #ifdef __WXGPE__
2717 // GPE's window manager doesn't like size hints at all, esp. when the user
2718 // has to use the virtual keyboard, so don't constrain size there
2719 if (!IsTopLevel())
2720 #endif
2721 {
2722 const wxSize minSize = GetMinSize();
2723 const wxSize maxSize = GetMaxSize();
2724 if (minSize.x > 0 && m_width < minSize.x) m_width = minSize.x;
2725 if (minSize.y > 0 && m_height < minSize.y) m_height = minSize.y;
2726 if (maxSize.x > 0 && m_width > maxSize.x) m_width = maxSize.x;
2727 if (maxSize.y > 0 && m_height > maxSize.y) m_height = maxSize.y;
2728 }
2729 }
2730
2731 void wxWindowGTK::DoSetSize( int x, int y, int width, int height, int sizeFlags )
2732 {
2733 wxCHECK_RET(m_widget, "invalid window");
2734
2735 int scrollX = 0, scrollY = 0;
2736 GtkWidget* parent = gtk_widget_get_parent(m_widget);
2737 if (WX_IS_PIZZA(parent))
2738 {
2739 wxPizza* pizza = WX_PIZZA(parent);
2740 scrollX = pizza->m_scroll_x;
2741 scrollY = pizza->m_scroll_y;
2742 }
2743 if (x != -1 || (sizeFlags & wxSIZE_ALLOW_MINUS_ONE))
2744 x += scrollX;
2745 else
2746 x = m_x;
2747 if (y != -1 || (sizeFlags & wxSIZE_ALLOW_MINUS_ONE))
2748 y += scrollY;
2749 else
2750 y = m_y;
2751
2752 // calculate the best size if we should auto size the window
2753 if ( ((sizeFlags & wxSIZE_AUTO_WIDTH) && width == -1) ||
2754 ((sizeFlags & wxSIZE_AUTO_HEIGHT) && height == -1) )
2755 {
2756 const wxSize sizeBest = GetBestSize();
2757 if ( (sizeFlags & wxSIZE_AUTO_WIDTH) && width == -1 )
2758 width = sizeBest.x;
2759 if ( (sizeFlags & wxSIZE_AUTO_HEIGHT) && height == -1 )
2760 height = sizeBest.y;
2761 }
2762
2763 if (width == -1)
2764 width = m_width;
2765 if (height == -1)
2766 height = m_height;
2767
2768 const bool sizeChange = m_width != width || m_height != height;
2769
2770 if (sizeChange)
2771 m_useCachedClientSize = false;
2772
2773 if (sizeChange || m_x != x || m_y != y)
2774 {
2775 m_x = x;
2776 m_y = y;
2777 m_width = width;
2778 m_height = height;
2779
2780 /* the default button has a border around it */
2781 if (gtk_widget_get_can_default(m_widget))
2782 {
2783 GtkBorder *default_border = NULL;
2784 gtk_widget_style_get( m_widget, "default_border", &default_border, NULL );
2785 if (default_border)
2786 {
2787 x -= default_border->left;
2788 y -= default_border->top;
2789 width += default_border->left + default_border->right;
2790 height += default_border->top + default_border->bottom;
2791 gtk_border_free( default_border );
2792 }
2793 }
2794
2795 DoMoveWindow(x, y, width, height);
2796 }
2797
2798 if ((sizeChange && !m_nativeSizeEvent) || (sizeFlags & wxSIZE_FORCE_EVENT))
2799 {
2800 // update these variables to keep size_allocate handler
2801 // from sending another size event for this change
2802 DoGetClientSize(&m_clientWidth, &m_clientHeight);
2803
2804 wxSizeEvent event( wxSize(m_width,m_height), GetId() );
2805 event.SetEventObject( this );
2806 HandleWindowEvent( event );
2807 }
2808 }
2809
2810 bool wxWindowGTK::GTKShowFromOnIdle()
2811 {
2812 if (IsShown() && m_showOnIdle && !gtk_widget_get_visible (m_widget))
2813 {
2814 GtkAllocation alloc;
2815 alloc.x = m_x;
2816 alloc.y = m_y;
2817 alloc.width = m_width;
2818 alloc.height = m_height;
2819 gtk_widget_size_allocate( m_widget, &alloc );
2820 gtk_widget_show( m_widget );
2821 wxShowEvent eventShow(GetId(), true);
2822 eventShow.SetEventObject(this);
2823 HandleWindowEvent(eventShow);
2824 m_showOnIdle = false;
2825 return true;
2826 }
2827
2828 return false;
2829 }
2830
2831 void wxWindowGTK::OnInternalIdle()
2832 {
2833 if ( gs_deferredFocusOut )
2834 GTKHandleDeferredFocusOut();
2835
2836 // Check if we have to show window now
2837 if (GTKShowFromOnIdle()) return;
2838
2839 if ( m_dirtyTabOrder )
2840 {
2841 m_dirtyTabOrder = false;
2842 RealizeTabOrder();
2843 }
2844
2845 wxWindowBase::OnInternalIdle();
2846 }
2847
2848 void wxWindowGTK::DoGetSize( int *width, int *height ) const
2849 {
2850 if (width) (*width) = m_width;
2851 if (height) (*height) = m_height;
2852 }
2853
2854 void wxWindowGTK::DoSetClientSize( int width, int height )
2855 {
2856 wxCHECK_RET( (m_widget != NULL), wxT("invalid window") );
2857
2858 const wxSize size = GetSize();
2859 const wxSize clientSize = GetClientSize();
2860 SetSize(width + (size.x - clientSize.x), height + (size.y - clientSize.y));
2861 }
2862
2863 void wxWindowGTK::DoGetClientSize( int *width, int *height ) const
2864 {
2865 wxCHECK_RET( (m_widget != NULL), wxT("invalid window") );
2866
2867 if (m_useCachedClientSize)
2868 {
2869 if (width) *width = m_clientWidth;
2870 if (height) *height = m_clientHeight;
2871 return;
2872 }
2873
2874 int w = m_width;
2875 int h = m_height;
2876
2877 if ( m_wxwindow )
2878 {
2879 // if window is scrollable, account for scrollbars
2880 if ( GTK_IS_SCROLLED_WINDOW(m_widget) )
2881 {
2882 GtkPolicyType policy[ScrollDir_Max];
2883 gtk_scrolled_window_get_policy(GTK_SCROLLED_WINDOW(m_widget),
2884 &policy[ScrollDir_Horz],
2885 &policy[ScrollDir_Vert]);
2886
2887 // get scrollbar spacing the same way the GTK-private function
2888 // _gtk_scrolled_window_get_scrollbar_spacing() does it
2889 int scrollbar_spacing =
2890 GTK_SCROLLED_WINDOW_GET_CLASS(m_widget)->scrollbar_spacing;
2891 if (scrollbar_spacing < 0)
2892 {
2893 gtk_widget_style_get(
2894 m_widget, "scrollbar-spacing", &scrollbar_spacing, NULL);
2895 }
2896
2897 for ( int i = 0; i < ScrollDir_Max; i++ )
2898 {
2899 // don't account for the scrollbars we don't have
2900 GtkRange * const range = m_scrollBar[i];
2901 if ( !range )
2902 continue;
2903
2904 // nor for the ones we have but don't current show
2905 switch ( policy[i] )
2906 {
2907 case GTK_POLICY_NEVER:
2908 // never shown so doesn't take any place
2909 continue;
2910
2911 case GTK_POLICY_ALWAYS:
2912 // no checks necessary
2913 break;
2914
2915 case GTK_POLICY_AUTOMATIC:
2916 // may be shown or not, check
2917 GtkAdjustment *adj = gtk_range_get_adjustment(range);
2918 if (gtk_adjustment_get_upper(adj) <= gtk_adjustment_get_page_size(adj))
2919 continue;
2920 }
2921
2922 GtkRequisition req;
2923 #ifdef __WXGTK3__
2924 GtkWidget* widget = GTK_WIDGET(range);
2925 if (i == ScrollDir_Horz)
2926 {
2927 if (height)
2928 {
2929 gtk_widget_get_preferred_height(widget, NULL, &req.height);
2930 h -= req.height + scrollbar_spacing;
2931 }
2932 }
2933 else
2934 {
2935 if (width)
2936 {
2937 gtk_widget_get_preferred_width(widget, NULL, &req.width);
2938 w -= req.width + scrollbar_spacing;
2939 }
2940 }
2941 #else // !__WXGTK3__
2942 gtk_widget_size_request(GTK_WIDGET(range), &req);
2943 if (i == ScrollDir_Horz)
2944 h -= req.height + scrollbar_spacing;
2945 else
2946 w -= req.width + scrollbar_spacing;
2947 #endif // !__WXGTK3__
2948 }
2949 }
2950
2951 const wxSize sizeBorders = DoGetBorderSize();
2952 w -= sizeBorders.x;
2953 h -= sizeBorders.y;
2954
2955 if (w < 0)
2956 w = 0;
2957 if (h < 0)
2958 h = 0;
2959 }
2960
2961 if (width) *width = w;
2962 if (height) *height = h;
2963 }
2964
2965 wxSize wxWindowGTK::DoGetBorderSize() const
2966 {
2967 if ( !m_wxwindow )
2968 return wxWindowBase::DoGetBorderSize();
2969
2970 GtkBorder border;
2971 WX_PIZZA(m_wxwindow)->get_border(border);
2972 return wxSize(border.left + border.right, border.top + border.bottom);
2973 }
2974
2975 void wxWindowGTK::DoGetPosition( int *x, int *y ) const
2976 {
2977 int dx = 0;
2978 int dy = 0;
2979 GtkWidget* parent = NULL;
2980 if (m_widget)
2981 parent = gtk_widget_get_parent(m_widget);
2982 if (WX_IS_PIZZA(parent))
2983 {
2984 wxPizza* pizza = WX_PIZZA(parent);
2985 dx = pizza->m_scroll_x;
2986 dy = pizza->m_scroll_y;
2987 }
2988 if (x) (*x) = m_x - dx;
2989 if (y) (*y) = m_y - dy;
2990 }
2991
2992 void wxWindowGTK::DoClientToScreen( int *x, int *y ) const
2993 {
2994 wxCHECK_RET( (m_widget != NULL), wxT("invalid window") );
2995
2996 if (gtk_widget_get_window(m_widget) == NULL) return;
2997
2998 GdkWindow *source = NULL;
2999 if (m_wxwindow)
3000 source = gtk_widget_get_window(m_wxwindow);
3001 else
3002 source = gtk_widget_get_window(m_widget);
3003
3004 int org_x = 0;
3005 int org_y = 0;
3006 gdk_window_get_origin( source, &org_x, &org_y );
3007
3008 if (!m_wxwindow)
3009 {
3010 if (!gtk_widget_get_has_window(m_widget))
3011 {
3012 GtkAllocation a;
3013 gtk_widget_get_allocation(m_widget, &a);
3014 org_x += a.x;
3015 org_y += a.y;
3016 }
3017 }
3018
3019
3020 if (x)
3021 {
3022 if (GetLayoutDirection() == wxLayout_RightToLeft)
3023 *x = (GetClientSize().x - *x) + org_x;
3024 else
3025 *x += org_x;
3026 }
3027
3028 if (y) *y += org_y;
3029 }
3030
3031 void wxWindowGTK::DoScreenToClient( int *x, int *y ) const
3032 {
3033 wxCHECK_RET( (m_widget != NULL), wxT("invalid window") );
3034
3035 if (!gtk_widget_get_realized(m_widget)) return;
3036
3037 GdkWindow *source = NULL;
3038 if (m_wxwindow)
3039 source = gtk_widget_get_window(m_wxwindow);
3040 else
3041 source = gtk_widget_get_window(m_widget);
3042
3043 int org_x = 0;
3044 int org_y = 0;
3045 gdk_window_get_origin( source, &org_x, &org_y );
3046
3047 if (!m_wxwindow)
3048 {
3049 if (!gtk_widget_get_has_window(m_widget))
3050 {
3051 GtkAllocation a;
3052 gtk_widget_get_allocation(m_widget, &a);
3053 org_x += a.x;
3054 org_y += a.y;
3055 }
3056 }
3057
3058 if (x)
3059 {
3060 if (GetLayoutDirection() == wxLayout_RightToLeft)
3061 *x = (GetClientSize().x - *x) - org_x;
3062 else
3063 *x -= org_x;
3064 }
3065 if (y) *y -= org_y;
3066 }
3067
3068 bool wxWindowGTK::Show( bool show )
3069 {
3070 if ( !wxWindowBase::Show(show) )
3071 {
3072 // nothing to do
3073 return false;
3074 }
3075
3076 // notice that we may call Hide() before the window is created and this is
3077 // actually useful to create it hidden initially -- but we can't call
3078 // Show() before it is created
3079 if ( !m_widget )
3080 {
3081 wxASSERT_MSG( !show, "can't show invalid window" );
3082 return true;
3083 }
3084
3085 if ( show )
3086 {
3087 if ( m_showOnIdle )
3088 {
3089 // defer until later
3090 return true;
3091 }
3092
3093 gtk_widget_show(m_widget);
3094 }
3095 else // hide
3096 {
3097 gtk_widget_hide(m_widget);
3098 }
3099
3100 wxShowEvent eventShow(GetId(), show);
3101 eventShow.SetEventObject(this);
3102 HandleWindowEvent(eventShow);
3103
3104 return true;
3105 }
3106
3107 void wxWindowGTK::DoEnable( bool enable )
3108 {
3109 wxCHECK_RET( (m_widget != NULL), wxT("invalid window") );
3110
3111 gtk_widget_set_sensitive( m_widget, enable );
3112 if (m_wxwindow && (m_wxwindow != m_widget))
3113 gtk_widget_set_sensitive( m_wxwindow, enable );
3114 }
3115
3116 int wxWindowGTK::GetCharHeight() const
3117 {
3118 wxCHECK_MSG( (m_widget != NULL), 12, wxT("invalid window") );
3119
3120 wxFont font = GetFont();
3121 wxCHECK_MSG( font.IsOk(), 12, wxT("invalid font") );
3122
3123 PangoContext* context = gtk_widget_get_pango_context(m_widget);
3124
3125 if (!context)
3126 return 0;
3127
3128 PangoFontDescription *desc = font.GetNativeFontInfo()->description;
3129 PangoLayout *layout = pango_layout_new(context);
3130 pango_layout_set_font_description(layout, desc);
3131 pango_layout_set_text(layout, "H", 1);
3132 PangoLayoutLine *line = (PangoLayoutLine *)pango_layout_get_lines(layout)->data;
3133
3134 PangoRectangle rect;
3135 pango_layout_line_get_extents(line, NULL, &rect);
3136
3137 g_object_unref (layout);
3138
3139 return (int) PANGO_PIXELS(rect.height);
3140 }
3141
3142 int wxWindowGTK::GetCharWidth() const
3143 {
3144 wxCHECK_MSG( (m_widget != NULL), 8, wxT("invalid window") );
3145
3146 wxFont font = GetFont();
3147 wxCHECK_MSG( font.IsOk(), 8, wxT("invalid font") );
3148
3149 PangoContext* context = gtk_widget_get_pango_context(m_widget);
3150
3151 if (!context)
3152 return 0;
3153
3154 PangoFontDescription *desc = font.GetNativeFontInfo()->description;
3155 PangoLayout *layout = pango_layout_new(context);
3156 pango_layout_set_font_description(layout, desc);
3157 pango_layout_set_text(layout, "g", 1);
3158 PangoLayoutLine *line = (PangoLayoutLine *)pango_layout_get_lines(layout)->data;
3159
3160 PangoRectangle rect;
3161 pango_layout_line_get_extents(line, NULL, &rect);
3162
3163 g_object_unref (layout);
3164
3165 return (int) PANGO_PIXELS(rect.width);
3166 }
3167
3168 void wxWindowGTK::DoGetTextExtent( const wxString& string,
3169 int *x,
3170 int *y,
3171 int *descent,
3172 int *externalLeading,
3173 const wxFont *theFont ) const
3174 {
3175 // ensure we work with a valid font
3176 wxFont fontToUse;
3177 if ( !theFont || !theFont->IsOk() )
3178 fontToUse = GetFont();
3179 else
3180 fontToUse = *theFont;
3181
3182 wxCHECK_RET( fontToUse.IsOk(), wxT("invalid font") );
3183
3184 const wxWindow* win = static_cast<const wxWindow*>(this);
3185 wxTextMeasure txm(win, &fontToUse);
3186 txm.GetTextExtent(string, x, y, descent, externalLeading);
3187 }
3188
3189 void wxWindowGTK::GTKDisableFocusOutEvent()
3190 {
3191 g_signal_handlers_block_by_func( m_focusWidget,
3192 (gpointer) gtk_window_focus_out_callback, this);
3193 }
3194
3195 void wxWindowGTK::GTKEnableFocusOutEvent()
3196 {
3197 g_signal_handlers_unblock_by_func( m_focusWidget,
3198 (gpointer) gtk_window_focus_out_callback, this);
3199 }
3200
3201 bool wxWindowGTK::GTKHandleFocusIn()
3202 {
3203 // Disable default focus handling for custom windows since the default GTK+
3204 // handler issues a repaint
3205 const bool retval = m_wxwindow ? true : false;
3206
3207
3208 // NB: if there's still unprocessed deferred focus-out event (see
3209 // GTKHandleFocusOut() for explanation), we need to process it first so
3210 // that the order of focus events -- focus-out first, then focus-in
3211 // elsewhere -- is preserved
3212 if ( gs_deferredFocusOut )
3213 {
3214 if ( GTKNeedsToFilterSameWindowFocus() &&
3215 gs_deferredFocusOut == this )
3216 {
3217 // GTK+ focus changed from this wxWindow back to itself, so don't
3218 // emit any events at all
3219 wxLogTrace(TRACE_FOCUS,
3220 "filtered out spurious focus change within %s(%p, %s)",
3221 GetClassInfo()->GetClassName(), this, GetLabel());
3222 gs_deferredFocusOut = NULL;
3223 return retval;
3224 }
3225
3226 // otherwise we need to send focus-out first
3227 wxASSERT_MSG ( gs_deferredFocusOut != this,
3228 "GTKHandleFocusIn(GTKFocus_Normal) called even though focus changed back to itself - derived class should handle this" );
3229 GTKHandleDeferredFocusOut();
3230 }
3231
3232
3233 wxLogTrace(TRACE_FOCUS,
3234 "handling focus_in event for %s(%p, %s)",
3235 GetClassInfo()->GetClassName(), this, GetLabel());
3236
3237 if (m_imContext)
3238 gtk_im_context_focus_in(m_imContext);
3239
3240 gs_currentFocus = this;
3241 gs_pendingFocus = NULL;
3242
3243 #if wxUSE_CARET
3244 // caret needs to be informed about focus change
3245 wxCaret *caret = GetCaret();
3246 if ( caret )
3247 {
3248 caret->OnSetFocus();
3249 }
3250 #endif // wxUSE_CARET
3251
3252 // Notify the parent keeping track of focus for the kbd navigation
3253 // purposes that we got it.
3254 wxChildFocusEvent eventChildFocus(static_cast<wxWindow*>(this));
3255 GTKProcessEvent(eventChildFocus);
3256
3257 wxFocusEvent eventFocus(wxEVT_SET_FOCUS, GetId());
3258 eventFocus.SetEventObject(this);
3259 GTKProcessEvent(eventFocus);
3260
3261 return retval;
3262 }
3263
3264 bool wxWindowGTK::GTKHandleFocusOut()
3265 {
3266 // Disable default focus handling for custom windows since the default GTK+
3267 // handler issues a repaint
3268 const bool retval = m_wxwindow ? true : false;
3269
3270
3271 // NB: If a control is composed of several GtkWidgets and when focus
3272 // changes from one of them to another within the same wxWindow, we get
3273 // a focus-out event followed by focus-in for another GtkWidget owned
3274 // by the same wx control. We don't want to generate two spurious
3275 // wxEVT_SET_FOCUS events in this case, so we defer sending wx events
3276 // from GTKHandleFocusOut() until we know for sure it's not coming back
3277 // (i.e. in GTKHandleFocusIn() or at idle time).
3278 if ( GTKNeedsToFilterSameWindowFocus() )
3279 {
3280 wxASSERT_MSG( gs_deferredFocusOut == NULL,
3281 "deferred focus out event already pending" );
3282 wxLogTrace(TRACE_FOCUS,
3283 "deferring focus_out event for %s(%p, %s)",
3284 GetClassInfo()->GetClassName(), this, GetLabel());
3285 gs_deferredFocusOut = this;
3286 return retval;
3287 }
3288
3289 GTKHandleFocusOutNoDeferring();
3290
3291 return retval;
3292 }
3293
3294 void wxWindowGTK::GTKHandleFocusOutNoDeferring()
3295 {
3296 wxLogTrace(TRACE_FOCUS,
3297 "handling focus_out event for %s(%p, %s)",
3298 GetClassInfo()->GetClassName(), this, GetLabel());
3299
3300 if (m_imContext)
3301 gtk_im_context_focus_out(m_imContext);
3302
3303 if ( gs_currentFocus != this )
3304 {
3305 // Something is terribly wrong, gs_currentFocus is out of sync with the
3306 // real focus. We will reset it to NULL anyway, because after this
3307 // focus-out event is handled, one of the following with happen:
3308 //
3309 // * either focus will go out of the app altogether, in which case
3310 // gs_currentFocus _should_ be NULL
3311 //
3312 // * or it goes to another control, in which case focus-in event will
3313 // follow immediately and it will set gs_currentFocus to the right
3314 // value
3315 wxLogDebug("window %s(%p, %s) lost focus even though it didn't have it",
3316 GetClassInfo()->GetClassName(), this, GetLabel());
3317 }
3318 gs_currentFocus = NULL;
3319
3320 #if wxUSE_CARET
3321 // caret needs to be informed about focus change
3322 wxCaret *caret = GetCaret();
3323 if ( caret )
3324 {
3325 caret->OnKillFocus();
3326 }
3327 #endif // wxUSE_CARET
3328
3329 wxFocusEvent event( wxEVT_KILL_FOCUS, GetId() );
3330 event.SetEventObject( this );
3331 event.SetWindow( FindFocus() );
3332 GTKProcessEvent( event );
3333 }
3334
3335 /*static*/
3336 void wxWindowGTK::GTKHandleDeferredFocusOut()
3337 {
3338 // NB: See GTKHandleFocusOut() for explanation. This function is called
3339 // from either GTKHandleFocusIn() or OnInternalIdle() to process
3340 // deferred event.
3341 if ( gs_deferredFocusOut )
3342 {
3343 wxWindowGTK *win = gs_deferredFocusOut;
3344 gs_deferredFocusOut = NULL;
3345
3346 wxLogTrace(TRACE_FOCUS,
3347 "processing deferred focus_out event for %s(%p, %s)",
3348 win->GetClassInfo()->GetClassName(), win, win->GetLabel());
3349
3350 win->GTKHandleFocusOutNoDeferring();
3351 }
3352 }
3353
3354 void wxWindowGTK::SetFocus()
3355 {
3356 wxCHECK_RET( m_widget != NULL, wxT("invalid window") );
3357
3358 // Setting "physical" focus is not immediate in GTK+ and while
3359 // gtk_widget_is_focus ("determines if the widget is the focus widget
3360 // within its toplevel", i.e. returns true for one widget per TLW, not
3361 // globally) returns true immediately after grabbing focus,
3362 // GTK_WIDGET_HAS_FOCUS (which returns true only for the one widget that
3363 // has focus at the moment) takes effect only after the window is shown
3364 // (if it was hidden at the moment of the call) or at the next event loop
3365 // iteration.
3366 //
3367 // Because we want to FindFocus() call immediately following
3368 // foo->SetFocus() to return foo, we have to keep track of "pending" focus
3369 // ourselves.
3370 gs_pendingFocus = this;
3371
3372 GtkWidget *widget = m_wxwindow ? m_wxwindow : m_focusWidget;
3373
3374 if ( GTK_IS_CONTAINER(widget) &&
3375 !gtk_widget_get_can_focus(widget) )
3376 {
3377 wxLogTrace(TRACE_FOCUS,
3378 wxT("Setting focus to a child of %s(%p, %s)"),
3379 GetClassInfo()->GetClassName(), this, GetLabel().c_str());
3380 gtk_widget_child_focus(widget, GTK_DIR_TAB_FORWARD);
3381 }
3382 else
3383 {
3384 wxLogTrace(TRACE_FOCUS,
3385 wxT("Setting focus to %s(%p, %s)"),
3386 GetClassInfo()->GetClassName(), this, GetLabel().c_str());
3387 gtk_widget_grab_focus(widget);
3388 }
3389 }
3390
3391 void wxWindowGTK::SetCanFocus(bool canFocus)
3392 {
3393 wxCHECK_RET(m_widget, "invalid window");
3394
3395 gtk_widget_set_can_focus(m_widget, canFocus);
3396
3397 if ( m_wxwindow && (m_widget != m_wxwindow) )
3398 {
3399 gtk_widget_set_can_focus(m_wxwindow, canFocus);
3400 }
3401 }
3402
3403 bool wxWindowGTK::Reparent( wxWindowBase *newParentBase )
3404 {
3405 wxCHECK_MSG( (m_widget != NULL), false, wxT("invalid window") );
3406
3407 wxWindowGTK * const newParent = (wxWindowGTK *)newParentBase;
3408
3409 wxASSERT( GTK_IS_WIDGET(m_widget) );
3410
3411 if ( !wxWindowBase::Reparent(newParent) )
3412 return false;
3413
3414 wxASSERT( GTK_IS_WIDGET(m_widget) );
3415
3416 // Notice that old m_parent pointer might be non-NULL here but the widget
3417 // still not have any parent at GTK level if it's a notebook page that had
3418 // been removed from the notebook so test this at GTK level and not wx one.
3419 if ( GtkWidget *parentGTK = gtk_widget_get_parent(m_widget) )
3420 gtk_container_remove(GTK_CONTAINER(parentGTK), m_widget);
3421
3422 wxASSERT( GTK_IS_WIDGET(m_widget) );
3423
3424 if (newParent)
3425 {
3426 if (gtk_widget_get_visible (newParent->m_widget))
3427 {
3428 m_showOnIdle = true;
3429 gtk_widget_hide( m_widget );
3430 }
3431 /* insert GTK representation */
3432 newParent->AddChildGTK(this);
3433 }
3434
3435 SetLayoutDirection(wxLayout_Default);
3436
3437 return true;
3438 }
3439
3440 void wxWindowGTK::DoAddChild(wxWindowGTK *child)
3441 {
3442 wxASSERT_MSG( (m_widget != NULL), wxT("invalid window") );
3443 wxASSERT_MSG( (child != NULL), wxT("invalid child window") );
3444
3445 /* add to list */
3446 AddChild( child );
3447
3448 /* insert GTK representation */
3449 AddChildGTK(child);
3450 }
3451
3452 void wxWindowGTK::AddChild(wxWindowBase *child)
3453 {
3454 wxWindowBase::AddChild(child);
3455 m_dirtyTabOrder = true;
3456 wxTheApp->WakeUpIdle();
3457 }
3458
3459 void wxWindowGTK::RemoveChild(wxWindowBase *child)
3460 {
3461 wxWindowBase::RemoveChild(child);
3462 m_dirtyTabOrder = true;
3463 wxTheApp->WakeUpIdle();
3464 }
3465
3466 /* static */
3467 wxLayoutDirection wxWindowGTK::GTKGetLayout(GtkWidget *widget)
3468 {
3469 return gtk_widget_get_direction(widget) == GTK_TEXT_DIR_RTL
3470 ? wxLayout_RightToLeft
3471 : wxLayout_LeftToRight;
3472 }
3473
3474 /* static */
3475 void wxWindowGTK::GTKSetLayout(GtkWidget *widget, wxLayoutDirection dir)
3476 {
3477 wxASSERT_MSG( dir != wxLayout_Default, wxT("invalid layout direction") );
3478
3479 gtk_widget_set_direction(widget,
3480 dir == wxLayout_RightToLeft ? GTK_TEXT_DIR_RTL
3481 : GTK_TEXT_DIR_LTR);
3482 }
3483
3484 wxLayoutDirection wxWindowGTK::GetLayoutDirection() const
3485 {
3486 return GTKGetLayout(m_widget);
3487 }
3488
3489 void wxWindowGTK::SetLayoutDirection(wxLayoutDirection dir)
3490 {
3491 if ( dir == wxLayout_Default )
3492 {
3493 const wxWindow *const parent = GetParent();
3494 if ( parent )
3495 {
3496 // inherit layout from parent.
3497 dir = parent->GetLayoutDirection();
3498 }
3499 else // no parent, use global default layout
3500 {
3501 dir = wxTheApp->GetLayoutDirection();
3502 }
3503 }
3504
3505 if ( dir == wxLayout_Default )
3506 return;
3507
3508 GTKSetLayout(m_widget, dir);
3509
3510 if (m_wxwindow && (m_wxwindow != m_widget))
3511 GTKSetLayout(m_wxwindow, dir);
3512 }
3513
3514 wxCoord
3515 wxWindowGTK::AdjustForLayoutDirection(wxCoord x,
3516 wxCoord WXUNUSED(width),
3517 wxCoord WXUNUSED(widthTotal)) const
3518 {
3519 // We now mirror the coordinates of RTL windows in wxPizza
3520 return x;
3521 }
3522
3523 void wxWindowGTK::DoMoveInTabOrder(wxWindow *win, WindowOrder move)
3524 {
3525 wxWindowBase::DoMoveInTabOrder(win, move);
3526 m_dirtyTabOrder = true;
3527 wxTheApp->WakeUpIdle();
3528 }
3529
3530 bool wxWindowGTK::DoNavigateIn(int flags)
3531 {
3532 if ( flags & wxNavigationKeyEvent::WinChange )
3533 {
3534 wxFAIL_MSG( wxT("not implemented") );
3535
3536 return false;
3537 }
3538 else // navigate inside the container
3539 {
3540 wxWindow *parent = wxGetTopLevelParent((wxWindow *)this);
3541 wxCHECK_MSG( parent, false, wxT("every window must have a TLW parent") );
3542
3543 GtkDirectionType dir;
3544 dir = flags & wxNavigationKeyEvent::IsForward ? GTK_DIR_TAB_FORWARD
3545 : GTK_DIR_TAB_BACKWARD;
3546
3547 gboolean rc;
3548 g_signal_emit_by_name(parent->m_widget, "focus", dir, &rc);
3549
3550 return rc != 0;
3551 }
3552 }
3553
3554 bool wxWindowGTK::GTKWidgetNeedsMnemonic() const
3555 {
3556 // none needed by default
3557 return false;
3558 }
3559
3560 void wxWindowGTK::GTKWidgetDoSetMnemonic(GtkWidget* WXUNUSED(w))
3561 {
3562 // nothing to do by default since none is needed
3563 }
3564
3565 void wxWindowGTK::RealizeTabOrder()
3566 {
3567 if (m_wxwindow)
3568 {
3569 if ( !m_children.empty() )
3570 {
3571 // we don't only construct the correct focus chain but also use
3572 // this opportunity to update the mnemonic widgets for the widgets
3573 // that need them
3574
3575 GList *chain = NULL;
3576 wxWindowGTK* mnemonicWindow = NULL;
3577
3578 for ( wxWindowList::const_iterator i = m_children.begin();
3579 i != m_children.end();
3580 ++i )
3581 {
3582 wxWindowGTK *win = *i;
3583
3584 bool focusableFromKeyboard = win->AcceptsFocusFromKeyboard();
3585
3586 if ( mnemonicWindow )
3587 {
3588 if ( focusableFromKeyboard )
3589 {
3590 // wxComboBox et al. needs to focus on on a different
3591 // widget than m_widget, so if the main widget isn't
3592 // focusable try the connect widget
3593 GtkWidget* w = win->m_widget;
3594 if ( !gtk_widget_get_can_focus(w) )
3595 {
3596 w = win->GetConnectWidget();
3597 if ( !gtk_widget_get_can_focus(w) )
3598 w = NULL;
3599 }
3600
3601 if ( w )
3602 {
3603 mnemonicWindow->GTKWidgetDoSetMnemonic(w);
3604 mnemonicWindow = NULL;
3605 }
3606 }
3607 }
3608 else if ( win->GTKWidgetNeedsMnemonic() )
3609 {
3610 mnemonicWindow = win;
3611 }
3612
3613 if ( focusableFromKeyboard )
3614 chain = g_list_prepend(chain, win->m_widget);
3615 }
3616
3617 chain = g_list_reverse(chain);
3618
3619 gtk_container_set_focus_chain(GTK_CONTAINER(m_wxwindow), chain);
3620 g_list_free(chain);
3621 }
3622 else // no children
3623 {
3624 gtk_container_unset_focus_chain(GTK_CONTAINER(m_wxwindow));
3625 }
3626 }
3627 }
3628
3629 void wxWindowGTK::Raise()
3630 {
3631 wxCHECK_RET( (m_widget != NULL), wxT("invalid window") );
3632
3633 if (m_wxwindow && gtk_widget_get_window(m_wxwindow))
3634 {
3635 gdk_window_raise(gtk_widget_get_window(m_wxwindow));
3636 }
3637 else if (gtk_widget_get_window(m_widget))
3638 {
3639 gdk_window_raise(gtk_widget_get_window(m_widget));
3640 }
3641 }
3642
3643 void wxWindowGTK::Lower()
3644 {
3645 wxCHECK_RET( (m_widget != NULL), wxT("invalid window") );
3646
3647 if (m_wxwindow && gtk_widget_get_window(m_wxwindow))
3648 {
3649 gdk_window_lower(gtk_widget_get_window(m_wxwindow));
3650 }
3651 else if (gtk_widget_get_window(m_widget))
3652 {
3653 gdk_window_lower(gtk_widget_get_window(m_widget));
3654 }
3655 }
3656
3657 bool wxWindowGTK::SetCursor( const wxCursor &cursor )
3658 {
3659 if ( !wxWindowBase::SetCursor(cursor.IsOk() ? cursor : *wxSTANDARD_CURSOR) )
3660 return false;
3661
3662 GTKUpdateCursor();
3663
3664 return true;
3665 }
3666
3667 void wxWindowGTK::GTKUpdateCursor(bool update_self /*=true*/, bool recurse /*=true*/)
3668 {
3669 if (update_self)
3670 {
3671 wxCursor cursor(g_globalCursor.IsOk() ? g_globalCursor : GetCursor());
3672 if ( cursor.IsOk() )
3673 {
3674 wxArrayGdkWindows windowsThis;
3675 GdkWindow* window = GTKGetWindow(windowsThis);
3676 if (window)
3677 gdk_window_set_cursor( window, cursor.GetCursor() );
3678 else
3679 {
3680 const size_t count = windowsThis.size();
3681 for ( size_t n = 0; n < count; n++ )
3682 {
3683 GdkWindow *win = windowsThis[n];
3684 // It can be zero if the window has not been realized yet.
3685 if ( win )
3686 {
3687 gdk_window_set_cursor(win, cursor.GetCursor());
3688 }
3689 }
3690 }
3691 }
3692 }
3693
3694 if (recurse)
3695 {
3696 for (wxWindowList::iterator it = GetChildren().begin(); it != GetChildren().end(); ++it)
3697 {
3698 (*it)->GTKUpdateCursor( true );
3699 }
3700 }
3701 }
3702
3703 void wxWindowGTK::WarpPointer( int x, int y )
3704 {
3705 wxCHECK_RET( (m_widget != NULL), wxT("invalid window") );
3706
3707 ClientToScreen(&x, &y);
3708 GdkDisplay* display = gtk_widget_get_display(m_widget);
3709 GdkScreen* screen = gtk_widget_get_screen(m_widget);
3710 #ifdef __WXGTK3__
3711 GdkDeviceManager* manager = gdk_display_get_device_manager(display);
3712 gdk_device_warp(gdk_device_manager_get_client_pointer(manager), screen, x, y);
3713 #else
3714 #ifdef GDK_WINDOWING_X11
3715 XWarpPointer(GDK_DISPLAY_XDISPLAY(display),
3716 None,
3717 GDK_WINDOW_XID(gdk_screen_get_root_window(screen)),
3718 0, 0, 0, 0, x, y);
3719 #endif
3720 #endif
3721 }
3722
3723 wxWindowGTK::ScrollDir wxWindowGTK::ScrollDirFromRange(GtkRange *range) const
3724 {
3725 // find the scrollbar which generated the event
3726 for ( int dir = 0; dir < ScrollDir_Max; dir++ )
3727 {
3728 if ( range == m_scrollBar[dir] )
3729 return (ScrollDir)dir;
3730 }
3731
3732 wxFAIL_MSG( wxT("event from unknown scrollbar received") );
3733
3734 return ScrollDir_Max;
3735 }
3736
3737 bool wxWindowGTK::DoScrollByUnits(ScrollDir dir, ScrollUnit unit, int units)
3738 {
3739 bool changed = false;
3740 GtkRange* range = m_scrollBar[dir];
3741 if ( range && units )
3742 {
3743 GtkAdjustment* adj = gtk_range_get_adjustment(range);
3744 double inc = unit == ScrollUnit_Line ? gtk_adjustment_get_step_increment(adj)
3745 : gtk_adjustment_get_page_increment(adj);
3746
3747 const int posOld = wxRound(gtk_adjustment_get_value(adj));
3748 gtk_range_set_value(range, posOld + units*inc);
3749
3750 changed = wxRound(gtk_adjustment_get_value(adj)) != posOld;
3751 }
3752
3753 return changed;
3754 }
3755
3756 bool wxWindowGTK::ScrollLines(int lines)
3757 {
3758 return DoScrollByUnits(ScrollDir_Vert, ScrollUnit_Line, lines);
3759 }
3760
3761 bool wxWindowGTK::ScrollPages(int pages)
3762 {
3763 return DoScrollByUnits(ScrollDir_Vert, ScrollUnit_Page, pages);
3764 }
3765
3766 void wxWindowGTK::Refresh(bool WXUNUSED(eraseBackground),
3767 const wxRect *rect)
3768 {
3769 if (m_wxwindow)
3770 {
3771 if (gtk_widget_get_mapped(m_wxwindow))
3772 {
3773 GdkWindow* window = gtk_widget_get_window(m_wxwindow);
3774 if (rect)
3775 {
3776 GdkRectangle r = { rect->x, rect->y, rect->width, rect->height };
3777 if (GetLayoutDirection() == wxLayout_RightToLeft)
3778 r.x = gdk_window_get_width(window) - r.x - rect->width;
3779 gdk_window_invalidate_rect(window, &r, true);
3780 }
3781 else
3782 gdk_window_invalidate_rect(window, NULL, true);
3783 }
3784 }
3785 else if (m_widget)
3786 {
3787 if (gtk_widget_get_mapped(m_widget))
3788 {
3789 if (rect)
3790 gtk_widget_queue_draw_area(m_widget, rect->x, rect->y, rect->width, rect->height);
3791 else
3792 gtk_widget_queue_draw(m_widget);
3793 }
3794 }
3795 }
3796
3797 void wxWindowGTK::Update()
3798 {
3799 if (m_widget && gtk_widget_get_mapped(m_widget))
3800 {
3801 GdkDisplay* display = gtk_widget_get_display(m_widget);
3802 // Flush everything out to the server, and wait for it to finish.
3803 // This ensures nothing will overwrite the drawing we are about to do.
3804 gdk_display_sync(display);
3805
3806 GdkWindow* window = GTKGetDrawingWindow();
3807 if (window == NULL)
3808 window = gtk_widget_get_window(m_widget);
3809 gdk_window_process_updates(window, true);
3810
3811 // Flush again, but no need to wait for it to finish
3812 gdk_display_flush(display);
3813 }
3814 }
3815
3816 bool wxWindowGTK::DoIsExposed( int x, int y ) const
3817 {
3818 return m_updateRegion.Contains(x, y) != wxOutRegion;
3819 }
3820
3821 bool wxWindowGTK::DoIsExposed( int x, int y, int w, int h ) const
3822 {
3823 if (GetLayoutDirection() == wxLayout_RightToLeft)
3824 return m_updateRegion.Contains(x-w, y, w, h) != wxOutRegion;
3825 else
3826 return m_updateRegion.Contains(x, y, w, h) != wxOutRegion;
3827 }
3828
3829 #ifdef __WXGTK3__
3830 void wxWindowGTK::GTKSendPaintEvents(cairo_t* cr)
3831 #else
3832 void wxWindowGTK::GTKSendPaintEvents(const GdkRegion* region)
3833 #endif
3834 {
3835 #ifdef __WXGTK3__
3836 m_paintContext = cr;
3837 double x1, y1, x2, y2;
3838 cairo_clip_extents(cr, &x1, &y1, &x2, &y2);
3839 m_updateRegion = wxRegion(int(x1), int(y1), int(x2 - x1), int(y2 - y1));
3840 #else // !__WXGTK3__
3841 m_updateRegion = wxRegion(region);
3842 #if wxGTK_HAS_COMPOSITING_SUPPORT
3843 cairo_t* cr = NULL;
3844 #endif
3845 #endif // !__WXGTK3__
3846 // Clip to paint region in wxClientDC
3847 m_clipPaintRegion = true;
3848
3849 m_nativeUpdateRegion = m_updateRegion;
3850
3851 if (GetLayoutDirection() == wxLayout_RightToLeft)
3852 {
3853 // Transform m_updateRegion under RTL
3854 m_updateRegion.Clear();
3855
3856 const int width = gdk_window_get_width(GTKGetDrawingWindow());
3857
3858 wxRegionIterator upd( m_nativeUpdateRegion );
3859 while (upd)
3860 {
3861 wxRect rect;
3862 rect.x = upd.GetX();
3863 rect.y = upd.GetY();
3864 rect.width = upd.GetWidth();
3865 rect.height = upd.GetHeight();
3866
3867 rect.x = width - rect.x - rect.width;
3868 m_updateRegion.Union( rect );
3869
3870 ++upd;
3871 }
3872 }
3873
3874 switch ( GetBackgroundStyle() )
3875 {
3876 case wxBG_STYLE_TRANSPARENT:
3877 #if wxGTK_HAS_COMPOSITING_SUPPORT
3878 if (IsTransparentBackgroundSupported())
3879 {
3880 // Set a transparent background, so that overlaying in parent
3881 // might indeed let see through where this child did not
3882 // explicitly paint.
3883 // NB: it works also for top level windows (but this is the
3884 // windows manager which then does the compositing job)
3885 #ifndef __WXGTK3__
3886 cr = gdk_cairo_create(m_wxwindow->window);
3887 gdk_cairo_region(cr, m_nativeUpdateRegion.GetRegion());
3888 cairo_clip(cr);
3889 #endif
3890 cairo_set_operator(cr, CAIRO_OPERATOR_CLEAR);
3891 cairo_paint(cr);
3892 cairo_set_operator(cr, CAIRO_OPERATOR_OVER);
3893 #ifndef __WXGTK3__
3894 cairo_surface_flush(cairo_get_target(cr));
3895 #endif
3896 }
3897 #endif // wxGTK_HAS_COMPOSITING_SUPPORT
3898 break;
3899
3900 case wxBG_STYLE_ERASE:
3901 {
3902 #ifdef __WXGTK3__
3903 wxGTKCairoDC dc(cr);
3904 #else
3905 wxWindowDC dc( (wxWindow*)this );
3906 dc.SetDeviceClippingRegion( m_updateRegion );
3907
3908 // Work around gtk-qt <= 0.60 bug whereby the window colour
3909 // remains grey
3910 if ( UseBgCol() &&
3911 wxSystemOptions::
3912 GetOptionInt("gtk.window.force-background-colour") )
3913 {
3914 dc.SetBackground(GetBackgroundColour());
3915 dc.Clear();
3916 }
3917 #endif // !__WXGTK3__
3918 wxEraseEvent erase_event( GetId(), &dc );
3919 erase_event.SetEventObject( this );
3920
3921 if ( HandleWindowEvent(erase_event) )
3922 {
3923 // background erased, don't do it again
3924 break;
3925 }
3926 }
3927 // fall through
3928
3929 case wxBG_STYLE_SYSTEM:
3930 if ( GetThemeEnabled() )
3931 {
3932 GdkWindow* gdkWindow = GTKGetDrawingWindow();
3933 const int w = gdk_window_get_width(gdkWindow);
3934 const int h = gdk_window_get_height(gdkWindow);
3935 #ifdef __WXGTK3__
3936 GtkStyleContext* sc = gtk_widget_get_style_context(m_wxwindow);
3937 gtk_render_background(sc, cr, 0, 0, w, h);
3938 #else
3939 // find ancestor from which to steal background
3940 wxWindow *parent = wxGetTopLevelParent((wxWindow *)this);
3941 if (!parent)
3942 parent = (wxWindow*)this;
3943 GdkRectangle rect;
3944 m_nativeUpdateRegion.GetBox(rect.x, rect.y, rect.width, rect.height);
3945 gtk_paint_flat_box(gtk_widget_get_style(parent->m_widget),
3946 gdkWindow,
3947 gtk_widget_get_state(m_wxwindow),
3948 GTK_SHADOW_NONE,
3949 &rect,
3950 parent->m_widget,
3951 (char *)"base",
3952 0, 0, w, h);
3953 #endif // !__WXGTK3__
3954 }
3955 break;
3956
3957 case wxBG_STYLE_PAINT:
3958 // nothing to do: window will be painted over in EVT_PAINT
3959 break;
3960
3961 default:
3962 wxFAIL_MSG( "unsupported background style" );
3963 }
3964
3965 wxNcPaintEvent nc_paint_event( GetId() );
3966 nc_paint_event.SetEventObject( this );
3967 HandleWindowEvent( nc_paint_event );
3968
3969 wxPaintEvent paint_event( GetId() );
3970 paint_event.SetEventObject( this );
3971 HandleWindowEvent( paint_event );
3972
3973 #if wxGTK_HAS_COMPOSITING_SUPPORT
3974 if (IsTransparentBackgroundSupported())
3975 { // now composite children which need it
3976 // Overlay all our composite children on top of the painted area
3977 wxWindowList::compatibility_iterator node;
3978 for ( node = m_children.GetFirst(); node ; node = node->GetNext() )
3979 {
3980 wxWindow *compositeChild = node->GetData();
3981 if (compositeChild->GetBackgroundStyle() == wxBG_STYLE_TRANSPARENT)
3982 {
3983 #ifndef __WXGTK3__
3984 if (cr == NULL)
3985 {
3986 cr = gdk_cairo_create(m_wxwindow->window);
3987 gdk_cairo_region(cr, m_nativeUpdateRegion.GetRegion());
3988 cairo_clip(cr);
3989 }
3990 #endif // !__WXGTK3__
3991 GtkWidget *child = compositeChild->m_wxwindow;
3992 GtkAllocation alloc;
3993 gtk_widget_get_allocation(child, &alloc);
3994
3995 // The source data is the (composited) child
3996 gdk_cairo_set_source_window(
3997 cr, gtk_widget_get_window(child), alloc.x, alloc.y);
3998
3999 cairo_paint(cr);
4000 }
4001 }
4002 #ifndef __WXGTK3__
4003 if (cr)
4004 cairo_destroy(cr);
4005 #endif
4006 }
4007 #endif // wxGTK_HAS_COMPOSITING_SUPPORT
4008
4009 m_clipPaintRegion = false;
4010 #ifdef __WXGTK3__
4011 m_paintContext = NULL;
4012 #endif
4013 m_updateRegion.Clear();
4014 m_nativeUpdateRegion.Clear();
4015 }
4016
4017 void wxWindowGTK::SetDoubleBuffered( bool on )
4018 {
4019 wxCHECK_RET( (m_widget != NULL), wxT("invalid window") );
4020
4021 if ( m_wxwindow )
4022 gtk_widget_set_double_buffered( m_wxwindow, on );
4023 }
4024
4025 bool wxWindowGTK::IsDoubleBuffered() const
4026 {
4027 return gtk_widget_get_double_buffered( m_wxwindow ) != 0;
4028 }
4029
4030 void wxWindowGTK::ClearBackground()
4031 {
4032 wxCHECK_RET( m_widget != NULL, wxT("invalid window") );
4033 }
4034
4035 #if wxUSE_TOOLTIPS
4036 void wxWindowGTK::DoSetToolTip( wxToolTip *tip )
4037 {
4038 if (m_tooltip != tip)
4039 {
4040 wxWindowBase::DoSetToolTip(tip);
4041
4042 if (m_tooltip)
4043 m_tooltip->GTKSetWindow(static_cast<wxWindow*>(this));
4044 else
4045 GTKApplyToolTip(NULL);
4046 }
4047 }
4048
4049 void wxWindowGTK::GTKApplyToolTip(const char* tip)
4050 {
4051 wxToolTip::GTKApply(GetConnectWidget(), tip);
4052 }
4053 #endif // wxUSE_TOOLTIPS
4054
4055 bool wxWindowGTK::SetBackgroundColour( const wxColour &colour )
4056 {
4057 if (!wxWindowBase::SetBackgroundColour(colour))
4058 return false;
4059
4060 if (m_widget)
4061 {
4062 #ifndef __WXGTK3__
4063 if (colour.IsOk())
4064 {
4065 // We need the pixel value e.g. for background clearing.
4066 m_backgroundColour.CalcPixel(gtk_widget_get_colormap(m_widget));
4067 }
4068 #endif
4069
4070 // apply style change (forceStyle=true so that new style is applied
4071 // even if the bg colour changed from valid to wxNullColour)
4072 GTKApplyWidgetStyle(true);
4073 }
4074
4075 return true;
4076 }
4077
4078 bool wxWindowGTK::SetForegroundColour( const wxColour &colour )
4079 {
4080 if (!wxWindowBase::SetForegroundColour(colour))
4081 return false;
4082
4083 if (m_widget)
4084 {
4085 #ifndef __WXGTK3__
4086 if (colour.IsOk())
4087 {
4088 // We need the pixel value e.g. for background clearing.
4089 m_foregroundColour.CalcPixel(gtk_widget_get_colormap(m_widget));
4090 }
4091 #endif
4092
4093 // apply style change (forceStyle=true so that new style is applied
4094 // even if the bg colour changed from valid to wxNullColour):
4095 GTKApplyWidgetStyle(true);
4096 }
4097
4098 return true;
4099 }
4100
4101 PangoContext *wxWindowGTK::GTKGetPangoDefaultContext()
4102 {
4103 return gtk_widget_get_pango_context( m_widget );
4104 }
4105
4106 #ifndef __WXGTK3__
4107 GtkRcStyle* wxWindowGTK::GTKCreateWidgetStyle()
4108 {
4109 GtkRcStyle *style = gtk_rc_style_new();
4110
4111 if ( m_font.IsOk() )
4112 {
4113 style->font_desc =
4114 pango_font_description_copy( m_font.GetNativeFontInfo()->description );
4115 }
4116
4117 int flagsNormal = 0,
4118 flagsPrelight = 0,
4119 flagsActive = 0,
4120 flagsInsensitive = 0;
4121
4122 if ( m_foregroundColour.IsOk() )
4123 {
4124 const GdkColor *fg = m_foregroundColour.GetColor();
4125
4126 style->fg[GTK_STATE_NORMAL] =
4127 style->text[GTK_STATE_NORMAL] = *fg;
4128 flagsNormal |= GTK_RC_FG | GTK_RC_TEXT;
4129
4130 style->fg[GTK_STATE_PRELIGHT] =
4131 style->text[GTK_STATE_PRELIGHT] = *fg;
4132 flagsPrelight |= GTK_RC_FG | GTK_RC_TEXT;
4133
4134 style->fg[GTK_STATE_ACTIVE] =
4135 style->text[GTK_STATE_ACTIVE] = *fg;
4136 flagsActive |= GTK_RC_FG | GTK_RC_TEXT;
4137 }
4138
4139 if ( m_backgroundColour.IsOk() )
4140 {
4141 const GdkColor *bg = m_backgroundColour.GetColor();
4142
4143 style->bg[GTK_STATE_NORMAL] =
4144 style->base[GTK_STATE_NORMAL] = *bg;
4145 flagsNormal |= GTK_RC_BG | GTK_RC_BASE;
4146
4147 style->bg[GTK_STATE_PRELIGHT] =
4148 style->base[GTK_STATE_PRELIGHT] = *bg;
4149 flagsPrelight |= GTK_RC_BG | GTK_RC_BASE;
4150
4151 style->bg[GTK_STATE_ACTIVE] =
4152 style->base[GTK_STATE_ACTIVE] = *bg;
4153 flagsActive |= GTK_RC_BG | GTK_RC_BASE;
4154
4155 style->bg[GTK_STATE_INSENSITIVE] =
4156 style->base[GTK_STATE_INSENSITIVE] = *bg;
4157 flagsInsensitive |= GTK_RC_BG | GTK_RC_BASE;
4158 }
4159
4160 style->color_flags[GTK_STATE_NORMAL] = (GtkRcFlags)flagsNormal;
4161 style->color_flags[GTK_STATE_PRELIGHT] = (GtkRcFlags)flagsPrelight;
4162 style->color_flags[GTK_STATE_ACTIVE] = (GtkRcFlags)flagsActive;
4163 style->color_flags[GTK_STATE_INSENSITIVE] = (GtkRcFlags)flagsInsensitive;
4164
4165 return style;
4166 }
4167 #endif // !__WXGTK3__
4168
4169 void wxWindowGTK::GTKApplyWidgetStyle(bool forceStyle)
4170 {
4171 if (forceStyle || m_font.IsOk() ||
4172 m_foregroundColour.IsOk() || m_backgroundColour.IsOk())
4173 {
4174 #ifdef __WXGTK3__
4175 if (m_backgroundColour.IsOk())
4176 {
4177 // create a GtkStyleProvider to override "background-image"
4178 if (m_styleProvider == NULL)
4179 m_styleProvider = GTK_STYLE_PROVIDER(gtk_css_provider_new());
4180 const char css[] =
4181 "*{background-image:-gtk-gradient(linear,0 0,0 1,"
4182 "from(rgba(%u,%u,%u,%g)),to(rgba(%u,%u,%u,%g)))}";
4183 char buf[sizeof(css) + 20];
4184 const unsigned r = m_backgroundColour.Red();
4185 const unsigned g = m_backgroundColour.Green();
4186 const unsigned b = m_backgroundColour.Blue();
4187 const double a = m_backgroundColour.Alpha() / 255.0;
4188 g_snprintf(buf, sizeof(buf), css, r, g, b, a, r, g, b, a);
4189 gtk_css_provider_load_from_data(GTK_CSS_PROVIDER(m_styleProvider), buf, -1, NULL);
4190 }
4191 DoApplyWidgetStyle(NULL);
4192 #else
4193 GtkRcStyle* style = GTKCreateWidgetStyle();
4194 DoApplyWidgetStyle(style);
4195 g_object_unref(style);
4196 #endif
4197 }
4198
4199 // Style change may affect GTK+'s size calculation:
4200 InvalidateBestSize();
4201 }
4202
4203 void wxWindowGTK::DoApplyWidgetStyle(GtkRcStyle *style)
4204 {
4205 GtkWidget* widget = m_wxwindow ? m_wxwindow : m_widget;
4206
4207 // block the signal temporarily to avoid sending
4208 // wxSysColourChangedEvents when we change the colours ourselves
4209 bool unblock = false;
4210 if (m_wxwindow && IsTopLevel())
4211 {
4212 unblock = true;
4213 g_signal_handlers_block_by_func(
4214 m_wxwindow, (void*)style_updated, this);
4215 }
4216
4217 GTKApplyStyle(widget, style);
4218
4219 if (unblock)
4220 {
4221 g_signal_handlers_unblock_by_func(
4222 m_wxwindow, (void*)style_updated, this);
4223 }
4224 }
4225
4226 void wxWindowGTK::GTKApplyStyle(GtkWidget* widget, GtkRcStyle* WXUNUSED_IN_GTK3(style))
4227 {
4228 #ifdef __WXGTK3__
4229 const PangoFontDescription* pfd = NULL;
4230 if (m_font.IsOk())
4231 pfd = pango_font_description_copy(m_font.GetNativeFontInfo()->description);
4232 gtk_widget_override_font(widget, pfd);
4233 gtk_widget_override_color(widget, GTK_STATE_FLAG_NORMAL, m_foregroundColour);
4234 gtk_widget_override_background_color(widget, GTK_STATE_FLAG_NORMAL, m_backgroundColour);
4235
4236 // setting background color has no effect with some themes when the widget style
4237 // has a "background-image" property, so we need to override that as well
4238
4239 GtkStyleContext* context = gtk_widget_get_style_context(widget);
4240 if (m_styleProvider)
4241 gtk_style_context_remove_provider(context, m_styleProvider);
4242 cairo_pattern_t* pattern = NULL;
4243 if (m_backgroundColour.IsOk())
4244 {
4245 gtk_style_context_get(context,
4246 GTK_STATE_FLAG_NORMAL, "background-image", &pattern, NULL);
4247 }
4248 if (pattern)
4249 {
4250 cairo_pattern_destroy(pattern);
4251 gtk_style_context_add_provider(context,
4252 m_styleProvider, GTK_STYLE_PROVIDER_PRIORITY_APPLICATION);
4253 }
4254 #else
4255 gtk_widget_modify_style(widget, style);
4256 #endif
4257 }
4258
4259 bool wxWindowGTK::SetBackgroundStyle(wxBackgroundStyle style)
4260 {
4261 if (!wxWindowBase::SetBackgroundStyle(style))
4262 return false;
4263
4264 #ifndef __WXGTK3__
4265 GdkWindow *window;
4266 if ((style == wxBG_STYLE_PAINT || style == wxBG_STYLE_TRANSPARENT) &&
4267 (window = GTKGetDrawingWindow()))
4268 {
4269 gdk_window_set_back_pixmap(window, NULL, false);
4270 }
4271 #endif // !__WXGTK3__
4272
4273 return true;
4274 }
4275
4276 bool wxWindowGTK::IsTransparentBackgroundSupported(wxString* reason) const
4277 {
4278 #if wxGTK_HAS_COMPOSITING_SUPPORT
4279 #ifndef __WXGTK3__
4280 if (gtk_check_version(wxGTK_VERSION_REQUIRED_FOR_COMPOSITING) != NULL)
4281 {
4282 if (reason)
4283 {
4284 *reason = _("GTK+ installed on this machine is too old to "
4285 "support screen compositing, please install "
4286 "GTK+ 2.12 or later.");
4287 }
4288
4289 return false;
4290 }
4291 #endif // !__WXGTK3__
4292
4293 // NB: We don't check here if the particular kind of widget supports
4294 // transparency, we check only if it would be possible for a generic window
4295
4296 wxCHECK_MSG ( m_widget, false, "Window must be created first" );
4297
4298 if (!gdk_screen_is_composited(gtk_widget_get_screen(m_widget)))
4299 {
4300 if (reason)
4301 {
4302 *reason = _("Compositing not supported by this system, "
4303 "please enable it in your Window Manager.");
4304 }
4305
4306 return false;
4307 }
4308
4309 return true;
4310 #else
4311 if (reason)
4312 {
4313 *reason = _("This program was compiled with a too old version of GTK+, "
4314 "please rebuild with GTK+ 2.12 or newer.");
4315 }
4316
4317 return false;
4318 #endif // wxGTK_HAS_COMPOSITING_SUPPORT/!wxGTK_HAS_COMPOSITING_SUPPORT
4319 }
4320
4321 // ----------------------------------------------------------------------------
4322 // Pop-up menu stuff
4323 // ----------------------------------------------------------------------------
4324
4325 #if wxUSE_MENUS_NATIVE
4326
4327 extern "C" {
4328 static
4329 void wxPopupMenuPositionCallback( GtkMenu *menu,
4330 gint *x, gint *y,
4331 gboolean * WXUNUSED(whatever),
4332 gpointer user_data )
4333 {
4334 // ensure that the menu appears entirely on screen
4335 GtkRequisition req;
4336 #ifdef __WXGTK3__
4337 gtk_widget_get_preferred_size(GTK_WIDGET(menu), &req, NULL);
4338 #else
4339 gtk_widget_get_child_requisition(GTK_WIDGET(menu), &req);
4340 #endif
4341
4342 wxSize sizeScreen = wxGetDisplaySize();
4343 wxPoint *pos = (wxPoint*)user_data;
4344
4345 gint xmax = sizeScreen.x - req.width,
4346 ymax = sizeScreen.y - req.height;
4347
4348 *x = pos->x < xmax ? pos->x : xmax;
4349 *y = pos->y < ymax ? pos->y : ymax;
4350 }
4351 }
4352
4353 bool wxWindowGTK::DoPopupMenu( wxMenu *menu, int x, int y )
4354 {
4355 wxCHECK_MSG( m_widget != NULL, false, wxT("invalid window") );
4356
4357 menu->UpdateUI();
4358
4359 wxPoint pos;
4360 gpointer userdata;
4361 GtkMenuPositionFunc posfunc;
4362 if ( x == -1 && y == -1 )
4363 {
4364 // use GTK's default positioning algorithm
4365 userdata = NULL;
4366 posfunc = NULL;
4367 }
4368 else
4369 {
4370 pos = ClientToScreen(wxPoint(x, y));
4371 userdata = &pos;
4372 posfunc = wxPopupMenuPositionCallback;
4373 }
4374
4375 menu->m_popupShown = true;
4376 gtk_menu_popup(
4377 GTK_MENU(menu->m_menu),
4378 NULL, // parent menu shell
4379 NULL, // parent menu item
4380 posfunc, // function to position it
4381 userdata, // client data
4382 0, // button used to activate it
4383 gtk_get_current_event_time()
4384 );
4385
4386 // it is possible for gtk_menu_popup() to fail
4387 if (!gtk_widget_get_visible(GTK_WIDGET(menu->m_menu)))
4388 {
4389 menu->m_popupShown = false;
4390 return false;
4391 }
4392
4393 while (menu->m_popupShown)
4394 {
4395 gtk_main_iteration();
4396 }
4397
4398 return true;
4399 }
4400
4401 #endif // wxUSE_MENUS_NATIVE
4402
4403 #if wxUSE_DRAG_AND_DROP
4404
4405 void wxWindowGTK::SetDropTarget( wxDropTarget *dropTarget )
4406 {
4407 wxCHECK_RET( m_widget != NULL, wxT("invalid window") );
4408
4409 GtkWidget *dnd_widget = GetConnectWidget();
4410
4411 if (m_dropTarget) m_dropTarget->GtkUnregisterWidget( dnd_widget );
4412
4413 if (m_dropTarget) delete m_dropTarget;
4414 m_dropTarget = dropTarget;
4415
4416 if (m_dropTarget) m_dropTarget->GtkRegisterWidget( dnd_widget );
4417 }
4418
4419 #endif // wxUSE_DRAG_AND_DROP
4420
4421 GtkWidget* wxWindowGTK::GetConnectWidget()
4422 {
4423 GtkWidget *connect_widget = m_widget;
4424 if (m_wxwindow) connect_widget = m_wxwindow;
4425
4426 return connect_widget;
4427 }
4428
4429 bool wxWindowGTK::GTKIsOwnWindow(GdkWindow *window) const
4430 {
4431 wxArrayGdkWindows windowsThis;
4432 GdkWindow * const winThis = GTKGetWindow(windowsThis);
4433
4434 return winThis ? window == winThis
4435 : windowsThis.Index(window) != wxNOT_FOUND;
4436 }
4437
4438 GdkWindow *wxWindowGTK::GTKGetWindow(wxArrayGdkWindows& WXUNUSED(windows)) const
4439 {
4440 return m_wxwindow ? GTKGetDrawingWindow() : gtk_widget_get_window(m_widget);
4441 }
4442
4443 bool wxWindowGTK::SetFont( const wxFont &font )
4444 {
4445 if (!wxWindowBase::SetFont(font))
4446 return false;
4447
4448 if (m_widget)
4449 {
4450 // apply style change (forceStyle=true so that new style is applied
4451 // even if the font changed from valid to wxNullFont):
4452 GTKApplyWidgetStyle(true);
4453 }
4454
4455 return true;
4456 }
4457
4458 void wxWindowGTK::DoCaptureMouse()
4459 {
4460 wxCHECK_RET( m_widget != NULL, wxT("invalid window") );
4461
4462 GdkWindow *window = NULL;
4463 if (m_wxwindow)
4464 window = GTKGetDrawingWindow();
4465 else
4466 window = gtk_widget_get_window(GetConnectWidget());
4467
4468 wxCHECK_RET( window, wxT("CaptureMouse() failed") );
4469
4470 const wxCursor* cursor = &m_cursor;
4471 if (!cursor->IsOk())
4472 cursor = wxSTANDARD_CURSOR;
4473
4474 const GdkEventMask mask = GdkEventMask(
4475 GDK_BUTTON_PRESS_MASK |
4476 GDK_BUTTON_RELEASE_MASK |
4477 GDK_POINTER_MOTION_HINT_MASK |
4478 GDK_POINTER_MOTION_MASK);
4479 #ifdef __WXGTK3__
4480 GdkDisplay* display = gdk_window_get_display(window);
4481 GdkDeviceManager* manager = gdk_display_get_device_manager(display);
4482 GdkDevice* device = gdk_device_manager_get_client_pointer(manager);
4483 gdk_device_grab(
4484 device, window, GDK_OWNERSHIP_NONE, false, mask,
4485 cursor->GetCursor(), unsigned(GDK_CURRENT_TIME));
4486 #else
4487 gdk_pointer_grab( window, FALSE,
4488 mask,
4489 NULL,
4490 cursor->GetCursor(),
4491 (guint32)GDK_CURRENT_TIME );
4492 #endif
4493 g_captureWindow = this;
4494 g_captureWindowHasMouse = true;
4495 }
4496
4497 void wxWindowGTK::DoReleaseMouse()
4498 {
4499 wxCHECK_RET( m_widget != NULL, wxT("invalid window") );
4500
4501 wxCHECK_RET( g_captureWindow, wxT("can't release mouse - not captured") );
4502
4503 g_captureWindow = NULL;
4504
4505 GdkWindow *window = NULL;
4506 if (m_wxwindow)
4507 window = GTKGetDrawingWindow();
4508 else
4509 window = gtk_widget_get_window(GetConnectWidget());
4510
4511 if (!window)
4512 return;
4513
4514 #ifdef __WXGTK3__
4515 GdkDisplay* display = gdk_window_get_display(window);
4516 GdkDeviceManager* manager = gdk_display_get_device_manager(display);
4517 GdkDevice* device = gdk_device_manager_get_client_pointer(manager);
4518 gdk_device_ungrab(device, unsigned(GDK_CURRENT_TIME));
4519 #else
4520 gdk_pointer_ungrab ( (guint32)GDK_CURRENT_TIME );
4521 #endif
4522 }
4523
4524 void wxWindowGTK::GTKReleaseMouseAndNotify()
4525 {
4526 DoReleaseMouse();
4527 wxMouseCaptureLostEvent evt(GetId());
4528 evt.SetEventObject( this );
4529 HandleWindowEvent( evt );
4530 }
4531
4532 /* static */
4533 wxWindow *wxWindowBase::GetCapture()
4534 {
4535 return (wxWindow *)g_captureWindow;
4536 }
4537
4538 bool wxWindowGTK::IsRetained() const
4539 {
4540 return false;
4541 }
4542
4543 void wxWindowGTK::SetScrollbar(int orient,
4544 int pos,
4545 int thumbVisible,
4546 int range,
4547 bool WXUNUSED(update))
4548 {
4549 const int dir = ScrollDirFromOrient(orient);
4550 GtkRange* const sb = m_scrollBar[dir];
4551 wxCHECK_RET( sb, wxT("this window is not scrollable") );
4552
4553 if (range <= 0)
4554 {
4555 // GtkRange requires upper > lower
4556 range =
4557 thumbVisible = 1;
4558 }
4559
4560 g_signal_handlers_block_by_func(
4561 sb, (void*)gtk_scrollbar_value_changed, this);
4562
4563 gtk_range_set_increments(sb, 1, thumbVisible);
4564 gtk_adjustment_set_page_size(gtk_range_get_adjustment(sb), thumbVisible);
4565 gtk_range_set_range(sb, 0, range);
4566 gtk_range_set_value(sb, pos);
4567 m_scrollPos[dir] = gtk_range_get_value(sb);
4568
4569 g_signal_handlers_unblock_by_func(
4570 sb, (void*)gtk_scrollbar_value_changed, this);
4571 }
4572
4573 void wxWindowGTK::SetScrollPos(int orient, int pos, bool WXUNUSED(refresh))
4574 {
4575 const int dir = ScrollDirFromOrient(orient);
4576 GtkRange * const sb = m_scrollBar[dir];
4577 wxCHECK_RET( sb, wxT("this window is not scrollable") );
4578
4579 // This check is more than an optimization. Without it, the slider
4580 // will not move smoothly while tracking when using wxScrollHelper.
4581 if (GetScrollPos(orient) != pos)
4582 {
4583 g_signal_handlers_block_by_func(
4584 sb, (void*)gtk_scrollbar_value_changed, this);
4585
4586 gtk_range_set_value(sb, pos);
4587 m_scrollPos[dir] = gtk_range_get_value(sb);
4588
4589 g_signal_handlers_unblock_by_func(
4590 sb, (void*)gtk_scrollbar_value_changed, this);
4591 }
4592 }
4593
4594 int wxWindowGTK::GetScrollThumb(int orient) const
4595 {
4596 GtkRange * const sb = m_scrollBar[ScrollDirFromOrient(orient)];
4597 wxCHECK_MSG( sb, 0, wxT("this window is not scrollable") );
4598
4599 return wxRound(gtk_adjustment_get_page_size(gtk_range_get_adjustment(sb)));
4600 }
4601
4602 int wxWindowGTK::GetScrollPos( int orient ) const
4603 {
4604 GtkRange * const sb = m_scrollBar[ScrollDirFromOrient(orient)];
4605 wxCHECK_MSG( sb, 0, wxT("this window is not scrollable") );
4606
4607 return wxRound(gtk_range_get_value(sb));
4608 }
4609
4610 int wxWindowGTK::GetScrollRange( int orient ) const
4611 {
4612 GtkRange * const sb = m_scrollBar[ScrollDirFromOrient(orient)];
4613 wxCHECK_MSG( sb, 0, wxT("this window is not scrollable") );
4614
4615 return wxRound(gtk_adjustment_get_upper(gtk_range_get_adjustment(sb)));
4616 }
4617
4618 // Determine if increment is the same as +/-x, allowing for some small
4619 // difference due to possible inexactness in floating point arithmetic
4620 static inline bool IsScrollIncrement(double increment, double x)
4621 {
4622 wxASSERT(increment >= 0);
4623 if ( increment == 0. )
4624 return false;
4625 const double tolerance = 1.0 / 1024;
4626 return fabs(increment - fabs(x)) < tolerance;
4627 }
4628
4629 wxEventType wxWindowGTK::GTKGetScrollEventType(GtkRange* range)
4630 {
4631 wxASSERT(range == m_scrollBar[0] || range == m_scrollBar[1]);
4632
4633 const int barIndex = range == m_scrollBar[1];
4634
4635 const double value = gtk_range_get_value(range);
4636
4637 // save previous position
4638 const double oldPos = m_scrollPos[barIndex];
4639 // update current position
4640 m_scrollPos[barIndex] = value;
4641 // If event should be ignored, or integral position has not changed
4642 if (g_blockEventsOnDrag || wxRound(value) == wxRound(oldPos))
4643 {
4644 return wxEVT_NULL;
4645 }
4646
4647 wxEventType eventType = wxEVT_SCROLL_THUMBTRACK;
4648 if (!m_isScrolling)
4649 {
4650 // Difference from last change event
4651 const double diff = value - oldPos;
4652 const bool isDown = diff > 0;
4653
4654 GtkAdjustment* adj = gtk_range_get_adjustment(range);
4655 if (IsScrollIncrement(gtk_adjustment_get_step_increment(adj), diff))
4656 {
4657 eventType = isDown ? wxEVT_SCROLL_LINEDOWN : wxEVT_SCROLL_LINEUP;
4658 }
4659 else if (IsScrollIncrement(gtk_adjustment_get_page_increment(adj), diff))
4660 {
4661 eventType = isDown ? wxEVT_SCROLL_PAGEDOWN : wxEVT_SCROLL_PAGEUP;
4662 }
4663 else if (m_mouseButtonDown)
4664 {
4665 // Assume track event
4666 m_isScrolling = true;
4667 }
4668 }
4669 return eventType;
4670 }
4671
4672 void wxWindowGTK::ScrollWindow( int dx, int dy, const wxRect* WXUNUSED(rect) )
4673 {
4674 wxCHECK_RET( m_widget != NULL, wxT("invalid window") );
4675
4676 wxCHECK_RET( m_wxwindow != NULL, wxT("window needs client area for scrolling") );
4677
4678 // No scrolling requested.
4679 if ((dx == 0) && (dy == 0)) return;
4680
4681 m_clipPaintRegion = true;
4682
4683 WX_PIZZA(m_wxwindow)->scroll(dx, dy);
4684
4685 m_clipPaintRegion = false;
4686
4687 #if wxUSE_CARET
4688 bool restoreCaret = (GetCaret() != NULL && GetCaret()->IsVisible());
4689 if (restoreCaret)
4690 {
4691 wxRect caretRect(GetCaret()->GetPosition(), GetCaret()->GetSize());
4692 if (dx > 0)
4693 caretRect.width += dx;
4694 else
4695 {
4696 caretRect.x += dx; caretRect.width -= dx;
4697 }
4698 if (dy > 0)
4699 caretRect.height += dy;
4700 else
4701 {
4702 caretRect.y += dy; caretRect.height -= dy;
4703 }
4704
4705 RefreshRect(caretRect);
4706 }
4707 #endif // wxUSE_CARET
4708 }
4709
4710 void wxWindowGTK::GTKScrolledWindowSetBorder(GtkWidget* w, int wxstyle)
4711 {
4712 //RN: Note that static controls usually have no border on gtk, so maybe
4713 //it makes sense to treat that as simply no border at the wx level
4714 //as well...
4715 if (!(wxstyle & wxNO_BORDER) && !(wxstyle & wxBORDER_STATIC))
4716 {
4717 GtkShadowType gtkstyle;
4718
4719 if(wxstyle & wxBORDER_RAISED)
4720 gtkstyle = GTK_SHADOW_OUT;
4721 else if ((wxstyle & wxBORDER_SUNKEN) || (wxstyle & wxBORDER_THEME))
4722 gtkstyle = GTK_SHADOW_IN;
4723 #if 0
4724 // Now obsolete
4725 else if (wxstyle & wxBORDER_DOUBLE)
4726 gtkstyle = GTK_SHADOW_ETCHED_IN;
4727 #endif
4728 else //default
4729 gtkstyle = GTK_SHADOW_IN;
4730
4731 gtk_scrolled_window_set_shadow_type( GTK_SCROLLED_WINDOW(w),
4732 gtkstyle );
4733 }
4734 }
4735
4736 // Find the wxWindow at the current mouse position, also returning the mouse
4737 // position.
4738 wxWindow* wxFindWindowAtPointer(wxPoint& pt)
4739 {
4740 pt = wxGetMousePosition();
4741 wxWindow* found = wxFindWindowAtPoint(pt);
4742 return found;
4743 }
4744
4745 // Get the current mouse position.
4746 void wxGetMousePosition(int* x, int* y)
4747 {
4748 GdkDisplay* display = GetDisplay();
4749 #ifdef __WXGTK3__
4750 GdkDeviceManager* manager = gdk_display_get_device_manager(display);
4751 GdkDevice* device = gdk_device_manager_get_client_pointer(manager);
4752 gdk_device_get_position(device, NULL, x, y);
4753 #else
4754 gdk_display_get_pointer(display, NULL, x, y, NULL);
4755 #endif
4756 }
4757
4758 wxPoint wxGetMousePosition()
4759 {
4760 wxPoint pt;
4761 wxGetMousePosition(&pt.x, &pt.y);
4762 return pt;
4763 }
4764
4765 GdkWindow* wxWindowGTK::GTKGetDrawingWindow() const
4766 {
4767 GdkWindow* window = NULL;
4768 if (m_wxwindow)
4769 window = gtk_widget_get_window(m_wxwindow);
4770 return window;
4771 }
4772
4773 // ----------------------------------------------------------------------------
4774 // freeze/thaw
4775 // ----------------------------------------------------------------------------
4776
4777 void wxWindowGTK::GTKFreezeWidget(GtkWidget* widget)
4778 {
4779 if (widget && gtk_widget_get_has_window(widget))
4780 {
4781 GdkWindow* window = gtk_widget_get_window(widget);
4782 if (window)
4783 gdk_window_freeze_updates(window);
4784 }
4785 }
4786
4787 void wxWindowGTK::GTKThawWidget(GtkWidget* widget)
4788 {
4789 if (widget && gtk_widget_get_has_window(widget))
4790 {
4791 GdkWindow* window = gtk_widget_get_window(widget);
4792 if (window)
4793 gdk_window_thaw_updates(window);
4794 }
4795 }
4796
4797 void wxWindowGTK::DoFreeze()
4798 {
4799 GtkWidget* widget = m_wxwindow;
4800 if (widget == NULL)
4801 widget = m_widget;
4802 GTKFreezeWidget(widget);
4803 }
4804
4805 void wxWindowGTK::DoThaw()
4806 {
4807 GtkWidget* widget = m_wxwindow;
4808 if (widget == NULL)
4809 widget = m_widget;
4810 GTKThawWidget(widget);
4811 }