(iswitchb-global-map): Fix typo. Removed unwanted ###autoloads from
[bpt/emacs.git] / src / w32term.c
1 /* Implementation of GUI terminal on the Microsoft W32 API.
2 Copyright (C) 1989, 93, 94, 95, 96, 1997, 1998, 1999, 2000, 2001
3 Free Software Foundation, Inc.
4
5 This file is part of GNU Emacs.
6
7 GNU Emacs is free software; you can redistribute it and/or modify
8 it under the terms of the GNU General Public License as published by
9 the Free Software Foundation; either version 2, or (at your option)
10 any later version.
11
12 GNU Emacs is distributed in the hope that it will be useful,
13 but WITHOUT ANY WARRANTY; without even the implied warranty of
14 MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
15 GNU General Public License for more details.
16
17 You should have received a copy of the GNU General Public License
18 along with GNU Emacs; see the file COPYING. If not, write to
19 the Free Software Foundation, Inc., 59 Temple Place - Suite 330,
20 Boston, MA 02111-1307, USA. */
21
22 #include <config.h>
23 #include <signal.h>
24 #include <stdio.h>
25 #include <stdlib.h>
26 #include "lisp.h"
27 #include "charset.h"
28 #include "blockinput.h"
29
30 #include "w32heap.h"
31 #include "w32term.h"
32 #include "w32bdf.h"
33 #include <shellapi.h>
34
35 #include "systty.h"
36 #include "systime.h"
37 #include "atimer.h"
38 #include "keymap.h"
39
40 #include <ctype.h>
41 #include <errno.h>
42 #include <setjmp.h>
43 #include <sys/stat.h>
44
45 #include "keyboard.h"
46 #include "frame.h"
47 #include "dispextern.h"
48 #include "fontset.h"
49 #include "termhooks.h"
50 #include "termopts.h"
51 #include "termchar.h"
52 #include "gnu.h"
53 #include "disptab.h"
54 #include "buffer.h"
55 #include "window.h"
56 #include "intervals.h"
57 #include "composite.h"
58 #include "coding.h"
59
60 #define abs(x) ((x) < 0 ? -(x) : (x))
61
62 \f
63 /* Fringe bitmaps. */
64
65 static HBITMAP fringe_bmp[MAX_FRINGE_BITMAPS];
66
67 /* Non-nil means Emacs uses toolkit scroll bars. */
68
69 Lisp_Object Vx_toolkit_scroll_bars;
70
71 /* Temporary variables for w32_read_socket. */
72
73 static int last_mousemove_x = 0;
74 static int last_mousemove_y = 0;
75
76 /* Define GET_WHEEL_DELTA_WPARAM macro if system headers don't. */
77 #ifndef GET_WHEEL_DELTA_WPARAM
78 #define GET_WHEEL_DELTA_WPARAM(wparam) ((short)HIWORD (wparam))
79 #endif
80
81 /* Non-zero means that a HELP_EVENT has been generated since Emacs
82 start. */
83
84 static int any_help_event_p;
85
86 /* Last window where we saw the mouse. Used by mouse-autoselect-window. */
87 static Lisp_Object last_window;
88
89 extern unsigned int msh_mousewheel;
90
91 extern void free_frame_menubar ();
92
93 extern int w32_codepage_for_font (char *fontname);
94 extern Cursor w32_load_cursor (LPCTSTR name);
95
96 extern glyph_metric *w32_BDF_TextMetric(bdffont *fontp,
97 unsigned char *text, int dim);
98 extern Lisp_Object Vwindow_system;
99
100 #define x_any_window_to_frame x_window_to_frame
101 #define x_top_window_to_frame x_window_to_frame
102
103 \f
104 /* This is display since w32 does not support multiple ones. */
105 struct w32_display_info one_w32_display_info;
106 struct w32_display_info *x_display_list;
107
108 /* This is a list of cons cells, each of the form (NAME . FONT-LIST-CACHE),
109 one for each element of w32_display_list and in the same order.
110 NAME is the name of the frame.
111 FONT-LIST-CACHE records previous values returned by x-list-fonts. */
112 Lisp_Object w32_display_name_list;
113
114 /* Frame being updated by update_frame. This is declared in term.c.
115 This is set by update_begin and looked at by all the
116 w32 functions. It is zero while not inside an update.
117 In that case, the w32 functions assume that `SELECTED_FRAME ()'
118 is the frame to apply to. */
119 extern struct frame *updating_frame;
120
121 /* This is a frame waiting to be autoraised, within w32_read_socket. */
122 struct frame *pending_autoraise_frame;
123
124 /* The handle of the frame that currently owns the system caret. */
125 HWND w32_system_caret_hwnd;
126 int w32_system_caret_height;
127 int w32_system_caret_x;
128 int w32_system_caret_y;
129 int w32_use_visible_system_caret;
130
131 /* Flag to enable Unicode output in case users wish to use programs
132 like Twinbridge on '95 rather than installed system level support
133 for Far East languages. */
134 int w32_enable_unicode_output;
135
136 DWORD dwWindowsThreadId = 0;
137 HANDLE hWindowsThread = NULL;
138 DWORD dwMainThreadId = 0;
139 HANDLE hMainThread = NULL;
140
141 #ifndef SIF_ALL
142 /* These definitions are new with Windows 95. */
143 #define SIF_RANGE 0x0001
144 #define SIF_PAGE 0x0002
145 #define SIF_POS 0x0004
146 #define SIF_DISABLENOSCROLL 0x0008
147 #define SIF_TRACKPOS 0x0010
148 #define SIF_ALL (SIF_RANGE | SIF_PAGE | SIF_POS | SIF_TRACKPOS)
149
150 typedef struct tagSCROLLINFO
151 {
152 UINT cbSize;
153 UINT fMask;
154 int nMin;
155 int nMax;
156 UINT nPage;
157 int nPos;
158 int nTrackPos;
159 } SCROLLINFO, FAR *LPSCROLLINFO;
160 typedef SCROLLINFO CONST FAR *LPCSCROLLINFO;
161 #endif /* SIF_ALL */
162
163 /* Dynamic linking to new proportional scroll bar functions. */
164 int (PASCAL *pfnSetScrollInfo) (HWND hwnd, int fnBar, LPSCROLLINFO lpsi, BOOL fRedraw);
165 BOOL (PASCAL *pfnGetScrollInfo) (HWND hwnd, int fnBar, LPSCROLLINFO lpsi);
166
167 int vertical_scroll_bar_min_handle;
168 int vertical_scroll_bar_top_border;
169 int vertical_scroll_bar_bottom_border;
170
171 int last_scroll_bar_drag_pos;
172
173 /* Mouse movement. */
174
175 /* Where the mouse was last time we reported a mouse event. */
176
177 static RECT last_mouse_glyph;
178 static Lisp_Object last_mouse_press_frame;
179
180 Lisp_Object Vw32_num_mouse_buttons;
181
182 Lisp_Object Vw32_swap_mouse_buttons;
183
184 /* Control whether x_raise_frame also sets input focus. */
185 Lisp_Object Vw32_grab_focus_on_raise;
186
187 /* Control whether Caps Lock affects non-ascii characters. */
188 Lisp_Object Vw32_capslock_is_shiftlock;
189
190 /* Control whether right-alt and left-ctrl should be recognized as AltGr. */
191 Lisp_Object Vw32_recognize_altgr;
192
193 /* The scroll bar in which the last motion event occurred.
194
195 If the last motion event occurred in a scroll bar, we set this
196 so w32_mouse_position can know whether to report a scroll bar motion or
197 an ordinary motion.
198
199 If the last motion event didn't occur in a scroll bar, we set this
200 to Qnil, to tell w32_mouse_position to return an ordinary motion event. */
201 static Lisp_Object last_mouse_scroll_bar;
202 static int last_mouse_scroll_bar_pos;
203
204 /* This is a hack. We would really prefer that w32_mouse_position would
205 return the time associated with the position it returns, but there
206 doesn't seem to be any way to wrest the time-stamp from the server
207 along with the position query. So, we just keep track of the time
208 of the last movement we received, and return that in hopes that
209 it's somewhat accurate. */
210
211 static Time last_mouse_movement_time;
212
213 /* Incremented by w32_read_socket whenever it really tries to read
214 events. */
215
216 #ifdef __STDC__
217 static int volatile input_signal_count;
218 #else
219 static int input_signal_count;
220 #endif
221
222 extern Lisp_Object Vcommand_line_args, Vsystem_name;
223
224 #ifndef USE_CRT_DLL
225 extern int errno;
226 #endif
227
228 /* A mask of extra modifier bits to put into every keyboard char. */
229
230 extern EMACS_INT extra_keyboard_modifiers;
231
232 static void x_update_window_end P_ ((struct window *, int, int));
233 void w32_delete_display P_ ((struct w32_display_info *));
234 static void w32_handle_tool_bar_click P_ ((struct frame *,
235 struct input_event *));
236 void w32_define_cursor P_ ((Window, Cursor));
237
238 void x_lower_frame P_ ((struct frame *));
239 void x_scroll_bar_clear P_ ((struct frame *));
240 void x_wm_set_size_hint P_ ((struct frame *, long, int));
241 void x_raise_frame P_ ((struct frame *));
242 void x_set_window_size P_ ((struct frame *, int, int, int));
243 void x_wm_set_window_state P_ ((struct frame *, int));
244 void x_wm_set_icon_pixmap P_ ((struct frame *, int));
245 void w32_initialize P_ ((void));
246 static void x_font_min_bounds P_ ((XFontStruct *, int *, int *));
247 int x_compute_min_glyph_bounds P_ ((struct frame *));
248 static void x_update_end P_ ((struct frame *));
249 static void w32_frame_up_to_date P_ ((struct frame *));
250 static void w32_set_terminal_modes P_ ((void));
251 static void w32_reset_terminal_modes P_ ((void));
252 static void x_clear_frame P_ ((void));
253 static void frame_highlight P_ ((struct frame *));
254 static void frame_unhighlight P_ ((struct frame *));
255 static void x_new_focus_frame P_ ((struct w32_display_info *,
256 struct frame *));
257 static void w32_frame_rehighlight P_ ((struct frame *));
258 static void x_frame_rehighlight P_ ((struct w32_display_info *));
259 static void x_draw_hollow_cursor P_ ((struct window *, struct glyph_row *));
260 static void x_draw_bar_cursor P_ ((struct window *, struct glyph_row *, int,
261 enum text_cursor_kinds));
262 static void w32_clip_to_row P_ ((struct window *, struct glyph_row *, HDC));
263
264 static Lisp_Object Qvendor_specific_keysyms;
265
266 \f
267 /***********************************************************************
268 Debugging
269 ***********************************************************************/
270
271 #if 0
272
273 /* This is a function useful for recording debugging information about
274 the sequence of occurrences in this file. */
275
276 struct record
277 {
278 char *locus;
279 int type;
280 };
281
282 struct record event_record[100];
283
284 int event_record_index;
285
286 record_event (locus, type)
287 char *locus;
288 int type;
289 {
290 if (event_record_index == sizeof (event_record) / sizeof (struct record))
291 event_record_index = 0;
292
293 event_record[event_record_index].locus = locus;
294 event_record[event_record_index].type = type;
295 event_record_index++;
296 }
297
298 #endif /* 0 */
299 \f
300
301 void
302 XChangeGC (void * ignore, XGCValues* gc, unsigned long mask,
303 XGCValues *xgcv)
304 {
305 if (mask & GCForeground)
306 gc->foreground = xgcv->foreground;
307 if (mask & GCBackground)
308 gc->background = xgcv->background;
309 if (mask & GCFont)
310 gc->font = xgcv->font;
311 }
312
313 XGCValues *XCreateGC (void * ignore, Window window, unsigned long mask,
314 XGCValues *xgcv)
315 {
316 XGCValues *gc = (XGCValues *) xmalloc (sizeof (XGCValues));
317 bzero (gc, sizeof (XGCValues));
318
319 XChangeGC (ignore, gc, mask, xgcv);
320
321 return gc;
322 }
323
324 void
325 XGetGCValues (void* ignore, XGCValues *gc,
326 unsigned long mask, XGCValues *xgcv)
327 {
328 XChangeGC (ignore, xgcv, mask, gc);
329 }
330
331 static void
332 w32_set_clip_rectangle (HDC hdc, RECT *rect)
333 {
334 if (rect)
335 {
336 HRGN clip_region = CreateRectRgnIndirect (rect);
337 SelectClipRgn (hdc, clip_region);
338 DeleteObject (clip_region);
339 }
340 else
341 SelectClipRgn (hdc, NULL);
342 }
343
344
345 /* Draw a hollow rectangle at the specified position. */
346 void
347 w32_draw_rectangle (HDC hdc, XGCValues *gc, int x, int y,
348 int width, int height)
349 {
350 HBRUSH hb, oldhb;
351 HPEN hp, oldhp;
352
353 hb = CreateSolidBrush (gc->background);
354 hp = CreatePen (PS_SOLID, 0, gc->foreground);
355 oldhb = SelectObject (hdc, hb);
356 oldhp = SelectObject (hdc, hp);
357
358 Rectangle (hdc, x, y, x + width, y + height);
359
360 SelectObject (hdc, oldhb);
361 SelectObject (hdc, oldhp);
362 DeleteObject (hb);
363 DeleteObject (hp);
364 }
365
366 /* Draw a filled rectangle at the specified position. */
367 void
368 w32_fill_rect (f, hdc, pix, lprect)
369 FRAME_PTR f;
370 HDC hdc;
371 COLORREF pix;
372 RECT * lprect;
373 {
374 HBRUSH hb;
375
376 hb = CreateSolidBrush (pix);
377 FillRect (hdc, lprect, hb);
378 DeleteObject (hb);
379 }
380
381 void
382 w32_clear_window (f)
383 FRAME_PTR f;
384 {
385 RECT rect;
386 HDC hdc = get_frame_dc (f);
387
388 /* Under certain conditions, this can be called at startup with
389 a console frame pointer before the GUI frame is created. An HDC
390 of 0 indicates this. */
391 if (hdc)
392 {
393 GetClientRect (FRAME_W32_WINDOW (f), &rect);
394 w32_clear_rect (f, hdc, &rect);
395 }
396
397 release_frame_dc (f, hdc);
398 }
399
400 \f
401 /***********************************************************************
402 Starting and ending an update
403 ***********************************************************************/
404
405 /* Start an update of frame F. This function is installed as a hook
406 for update_begin, i.e. it is called when update_begin is called.
407 This function is called prior to calls to x_update_window_begin for
408 each window being updated. */
409
410 static void
411 x_update_begin (f)
412 struct frame *f;
413 {
414 struct w32_display_info *display_info = FRAME_W32_DISPLAY_INFO (f);
415
416 if (! FRAME_W32_P (f))
417 return;
418
419 /* Regenerate display palette before drawing if list of requested
420 colors has changed. */
421 if (display_info->regen_palette)
422 {
423 w32_regenerate_palette (f);
424 display_info->regen_palette = FALSE;
425 }
426 }
427
428
429 /* Start update of window W. Set the global variable updated_window
430 to the window being updated and set output_cursor to the cursor
431 position of W. */
432
433 static void
434 x_update_window_begin (w)
435 struct window *w;
436 {
437 struct frame *f = XFRAME (WINDOW_FRAME (w));
438 struct w32_display_info *display_info = FRAME_W32_DISPLAY_INFO (f);
439
440 /* Hide the system caret during an update. */
441 if (w32_use_visible_system_caret && w32_system_caret_hwnd)
442 {
443 SendMessage (w32_system_caret_hwnd, WM_EMACS_HIDE_CARET, 0, 0);
444 }
445
446 updated_window = w;
447 set_output_cursor (&w->cursor);
448
449 BLOCK_INPUT;
450
451 if (f == display_info->mouse_face_mouse_frame)
452 {
453 /* Don't do highlighting for mouse motion during the update. */
454 display_info->mouse_face_defer = 1;
455
456 /* If F needs to be redrawn, simply forget about any prior mouse
457 highlighting. */
458 if (FRAME_GARBAGED_P (f))
459 display_info->mouse_face_window = Qnil;
460
461 #if 0 /* Rows in a current matrix containing glyphs in mouse-face have
462 their mouse_face_p flag set, which means that they are always
463 unequal to rows in a desired matrix which never have that
464 flag set. So, rows containing mouse-face glyphs are never
465 scrolled, and we don't have to switch the mouse highlight off
466 here to prevent it from being scrolled. */
467
468 /* Can we tell that this update does not affect the window
469 where the mouse highlight is? If so, no need to turn off.
470 Likewise, don't do anything if the frame is garbaged;
471 in that case, the frame's current matrix that we would use
472 is all wrong, and we will redisplay that line anyway. */
473 if (!NILP (display_info->mouse_face_window)
474 && w == XWINDOW (display_info->mouse_face_window))
475 {
476 int i;
477
478 for (i = 0; i < w->desired_matrix->nrows; ++i)
479 if (MATRIX_ROW_ENABLED_P (w->desired_matrix, i))
480 break;
481
482 if (i < w->desired_matrix->nrows)
483 clear_mouse_face (display_info);
484 }
485 #endif /* 0 */
486 }
487
488 UNBLOCK_INPUT;
489 }
490
491 /* Draw a vertical window border from (x,y0) to (x,y1) */
492
493 static void
494 w32_draw_vertical_window_border (w, x, y0, y1)
495 struct window *w;
496 int x, y0, y1;
497 {
498 struct frame *f = XFRAME (WINDOW_FRAME (w));
499 RECT r;
500 HDC hdc;
501
502 r.left = x;
503 r.right = x + 1;
504 r.top = y0;
505 r.bottom = y1;
506
507 hdc = get_frame_dc (f);
508 w32_fill_rect (f, hdc, FRAME_FOREGROUND_PIXEL (f), &r);
509 release_frame_dc (f, hdc);
510 }
511
512
513 /* End update of window W (which is equal to updated_window).
514
515 Draw vertical borders between horizontally adjacent windows, and
516 display W's cursor if CURSOR_ON_P is non-zero.
517
518 MOUSE_FACE_OVERWRITTEN_P non-zero means that some row containing
519 glyphs in mouse-face were overwritten. In that case we have to
520 make sure that the mouse-highlight is properly redrawn.
521
522 W may be a menu bar pseudo-window in case we don't have X toolkit
523 support. Such windows don't have a cursor, so don't display it
524 here. */
525
526 static void
527 x_update_window_end (w, cursor_on_p, mouse_face_overwritten_p)
528 struct window *w;
529 int cursor_on_p, mouse_face_overwritten_p;
530 {
531 struct w32_display_info *dpyinfo = FRAME_W32_DISPLAY_INFO (XFRAME (w->frame));
532
533 if (!w->pseudo_window_p)
534 {
535 BLOCK_INPUT;
536
537 if (cursor_on_p)
538 display_and_set_cursor (w, 1, output_cursor.hpos,
539 output_cursor.vpos,
540 output_cursor.x, output_cursor.y);
541
542 x_draw_vertical_border (w);
543
544 draw_window_fringes (w);
545
546 UNBLOCK_INPUT;
547 }
548
549 /* If a row with mouse-face was overwritten, arrange for
550 XTframe_up_to_date to redisplay the mouse highlight. */
551 if (mouse_face_overwritten_p)
552 {
553 dpyinfo->mouse_face_beg_row = dpyinfo->mouse_face_beg_col = -1;
554 dpyinfo->mouse_face_end_row = dpyinfo->mouse_face_end_col = -1;
555 dpyinfo->mouse_face_window = Qnil;
556 }
557
558 /* Unhide the caret. This won't actually show the cursor, unless it
559 was visible before the corresponding call to HideCaret in
560 x_update_window_begin. */
561 if (w32_use_visible_system_caret && w32_system_caret_hwnd)
562 {
563 SendMessage (w32_system_caret_hwnd, WM_EMACS_SHOW_CARET, 0, 0);
564 }
565
566 updated_window = NULL;
567 }
568
569
570 /* End update of frame F. This function is installed as a hook in
571 update_end. */
572
573 static void
574 x_update_end (f)
575 struct frame *f;
576 {
577 if (! FRAME_W32_P (f))
578 return;
579
580 /* Mouse highlight may be displayed again. */
581 FRAME_W32_DISPLAY_INFO (f)->mouse_face_defer = 0;
582 }
583
584
585 /* This function is called from various places in xdisp.c whenever a
586 complete update has been performed. The global variable
587 updated_window is not available here. */
588
589 static void
590 w32_frame_up_to_date (f)
591 struct frame *f;
592 {
593 if (FRAME_W32_P (f))
594 {
595 struct w32_display_info *dpyinfo = FRAME_W32_DISPLAY_INFO (f);
596
597 if (dpyinfo->mouse_face_deferred_gc
598 || f == dpyinfo->mouse_face_mouse_frame)
599 {
600 BLOCK_INPUT;
601 if (dpyinfo->mouse_face_mouse_frame)
602 note_mouse_highlight (dpyinfo->mouse_face_mouse_frame,
603 dpyinfo->mouse_face_mouse_x,
604 dpyinfo->mouse_face_mouse_y);
605 dpyinfo->mouse_face_deferred_gc = 0;
606 UNBLOCK_INPUT;
607 }
608 }
609 }
610
611
612 /* Draw truncation mark bitmaps, continuation mark bitmaps, overlay
613 arrow bitmaps, or clear the fringes if no bitmaps are required
614 before DESIRED_ROW is made current. The window being updated is
615 found in updated_window. This function is called from
616 update_window_line only if it is known that there are differences
617 between bitmaps to be drawn between current row and DESIRED_ROW. */
618
619 static void
620 x_after_update_window_line (desired_row)
621 struct glyph_row *desired_row;
622 {
623 struct window *w = updated_window;
624 struct frame *f;
625 int width, height;
626
627 xassert (w);
628
629 if (!desired_row->mode_line_p && !w->pseudo_window_p)
630 desired_row->redraw_fringe_bitmaps_p = 1;
631
632 /* When a window has disappeared, make sure that no rest of
633 full-width rows stays visible in the internal border. Could
634 check here if updated_window is the leftmost/rightmost window,
635 but I guess it's not worth doing since vertically split windows
636 are almost never used, internal border is rarely set, and the
637 overhead is very small. */
638 if (windows_or_buffers_changed
639 && desired_row->full_width_p
640 && (f = XFRAME (w->frame),
641 width = FRAME_INTERNAL_BORDER_WIDTH (f),
642 width != 0)
643 && (height = desired_row->visible_height,
644 height > 0))
645 {
646 int y = WINDOW_TO_FRAME_PIXEL_Y (w, max (0, desired_row->y));
647
648 /* Internal border is drawn below the tool bar. */
649 if (WINDOWP (f->tool_bar_window)
650 && w == XWINDOW (f->tool_bar_window))
651 y -= width;
652
653 BLOCK_INPUT;
654 {
655 HDC hdc = get_frame_dc (f);
656 w32_clear_area (f, hdc, 0, y, width, height);
657 w32_clear_area (f, hdc, FRAME_PIXEL_WIDTH (f) - width,
658 y, width, height);
659 release_frame_dc (f, hdc);
660 }
661 UNBLOCK_INPUT;
662 }
663 }
664
665
666 /* Draw the bitmap WHICH in one of the left or right fringes of
667 window W. ROW is the glyph row for which to display the bitmap; it
668 determines the vertical position at which the bitmap has to be
669 drawn. */
670
671 static void
672 w32_draw_fringe_bitmap (w, row, p)
673 struct window *w;
674 struct glyph_row *row;
675 struct draw_fringe_bitmap_params *p;
676 {
677 struct frame *f = XFRAME (WINDOW_FRAME (w));
678 HDC hdc;
679 struct face *face = p->face;
680 int rowY;
681
682 hdc = get_frame_dc (f);
683
684 /* Must clip because of partially visible lines. */
685 rowY = WINDOW_TO_FRAME_PIXEL_Y (w, row->y);
686 if (p->y < rowY)
687 {
688 /* Adjust position of "bottom aligned" bitmap on partially
689 visible last row. */
690 int oldY = row->y;
691 int oldVH = row->visible_height;
692 row->visible_height = p->h;
693 row->y -= rowY - p->y;
694 w32_clip_to_row (w, row, hdc);
695 row->y = oldY;
696 row->visible_height = oldVH;
697 }
698 else
699 w32_clip_to_row (w, row, hdc);
700
701 if (p->bx >= 0 && !p->overlay_p)
702 {
703 w32_fill_area (f, hdc, face->background,
704 p->bx, p->by, p->nx, p->ny);
705 }
706
707 if (p->which)
708 {
709 HBITMAP pixmap = fringe_bmp[p->which];
710 HDC compat_hdc;
711 HANDLE horig_obj;
712
713 compat_hdc = CreateCompatibleDC (hdc);
714
715 SaveDC (hdc);
716
717 horig_obj = SelectObject (compat_hdc, pixmap);
718
719 /* Paint overlays transparently. */
720 if (p->overlay_p)
721 {
722 HBRUSH h_brush, h_orig_brush;
723
724 SetTextColor (hdc, BLACK_PIX_DEFAULT (f));
725 SetBkColor (hdc, WHITE_PIX_DEFAULT (f));
726 h_brush = CreateSolidBrush (face->foreground);
727 h_orig_brush = SelectObject (hdc, h_brush);
728
729 BitBlt (hdc, p->x, p->y, p->wd, p->h,
730 compat_hdc, 0, p->dh,
731 DSTINVERT);
732 BitBlt (hdc, p->x, p->y, p->wd, p->h,
733 compat_hdc, 0, p->dh,
734 0x2E064A);
735 BitBlt (hdc, p->x, p->y, p->wd, p->h,
736 compat_hdc, 0, p->dh,
737 DSTINVERT);
738
739 SelectObject (hdc, h_orig_brush);
740 DeleteObject (h_brush);
741 }
742 else
743 {
744 SetTextColor (hdc, face->background);
745 SetBkColor (hdc, (p->cursor_p
746 ? f->output_data.w32->cursor_pixel
747 : face->foreground));
748
749 BitBlt (hdc, p->x, p->y, p->wd, p->h,
750 compat_hdc, 0, p->dh,
751 SRCCOPY);
752 }
753
754 SelectObject (compat_hdc, horig_obj);
755 DeleteDC (compat_hdc);
756 RestoreDC (hdc, -1);
757 }
758
759 w32_set_clip_rectangle (hdc, NULL);
760
761 release_frame_dc (f, hdc);
762 }
763
764 static void
765 w32_define_fringe_bitmap (which, bits, h, wd)
766 int which;
767 unsigned short *bits;
768 int h, wd;
769 {
770 fringe_bmp[which] = CreateBitmap (wd, h, 1, 1, bits);
771 }
772
773 static void
774 w32_destroy_fringe_bitmap (which)
775 int which;
776 {
777 if (fringe_bmp[which])
778 DeleteObject (fringe_bmp[which]);
779 fringe_bmp[which] = 0;
780 }
781
782
783 \f
784 /* This is called when starting Emacs and when restarting after
785 suspend. When starting Emacs, no window is mapped. And nothing
786 must be done to Emacs's own window if it is suspended (though that
787 rarely happens). */
788
789 static void
790 w32_set_terminal_modes (void)
791 {
792 }
793
794 /* This is called when exiting or suspending Emacs. Exiting will make
795 the W32 windows go away, and suspending requires no action. */
796
797 static void
798 w32_reset_terminal_modes (void)
799 {
800 }
801
802
803 \f
804 /***********************************************************************
805 Display Iterator
806 ***********************************************************************/
807
808 /* Function prototypes of this page. */
809
810 static XCharStruct *w32_per_char_metric P_ ((XFontStruct *,
811 wchar_t *, int));
812 static int w32_encode_char P_ ((int, wchar_t *, struct font_info *, int *));
813
814
815 /* Get metrics of character CHAR2B in FONT. Value is always non-null.
816 If CHAR2B is not contained in FONT, the font's default character
817 metric is returned. */
818
819 static int
820 w32_bdf_per_char_metric (font, char2b, dim, pcm)
821 XFontStruct *font;
822 wchar_t *char2b;
823 int dim;
824 XCharStruct * pcm;
825 {
826 glyph_metric * bdf_metric;
827 char buf[2];
828
829 if (dim == 1)
830 buf[0] = (char)(*char2b);
831 else
832 {
833 buf[0] = XCHAR2B_BYTE1 (char2b);
834 buf[1] = XCHAR2B_BYTE2 (char2b);
835 }
836
837 bdf_metric = w32_BDF_TextMetric (font->bdf, buf, dim);
838
839 if (bdf_metric)
840 {
841 pcm->width = bdf_metric->dwidth;
842 pcm->lbearing = bdf_metric->bbox;
843 pcm->rbearing = bdf_metric->dwidth
844 - (bdf_metric->bbox + bdf_metric->bbw);
845 pcm->ascent = bdf_metric->bboy + bdf_metric->bbh;
846 pcm->descent = -bdf_metric->bboy;
847
848 return 1;
849 }
850 return 0;
851 }
852
853
854 static int
855 w32_native_per_char_metric (font, char2b, font_type, pcm)
856 XFontStruct *font;
857 wchar_t *char2b;
858 enum w32_char_font_type font_type;
859 XCharStruct * pcm;
860 {
861 HDC hdc = GetDC (NULL);
862 HFONT old_font;
863 BOOL retval = FALSE;
864
865 xassert (font && char2b);
866 xassert (font->hfont);
867 xassert (font_type == UNICODE_FONT || font_type == ANSI_FONT);
868
869 old_font = SelectObject (hdc, font->hfont);
870
871 if ((font->tm.tmPitchAndFamily & TMPF_TRUETYPE) != 0)
872 {
873 ABC char_widths;
874
875 if (font_type == UNICODE_FONT)
876 retval = GetCharABCWidthsW (hdc, *char2b, *char2b, &char_widths);
877 else
878 retval = GetCharABCWidthsA (hdc, *char2b, *char2b, &char_widths);
879
880 if (retval)
881 {
882 #if 0
883 /* Disabled until we can find a way to get the right results
884 on all versions of Windows. */
885
886 /* Don't trust the ABC widths. For synthesized fonts they are
887 wrong, and so is the result of GetCharWidth()! */
888 int real_width;
889 GetCharWidth (hdc, *char2b, *char2b, &real_width);
890 #endif
891 pcm->width = char_widths.abcA + char_widths.abcB + char_widths.abcC;
892 #if 0
893 /* As far as I can tell, this is the best way to determine what
894 ExtTextOut will do with the broken font. */
895 if (pcm->width != real_width)
896 pcm->width = (pcm->width + real_width) / 2;
897 #endif
898 pcm->lbearing = char_widths.abcA;
899 pcm->rbearing = char_widths.abcA + char_widths.abcB;
900 pcm->ascent = FONT_BASE (font);
901 pcm->descent = FONT_DESCENT (font);
902 }
903 }
904
905 if (!retval)
906 {
907 /* Either font is not a True-type font, or GetCharABCWidthsW
908 failed (it is not supported on Windows 9x for instance), so we
909 can't determine the full info we would like. All is not lost
910 though - we can call GetTextExtentPoint32 to get rbearing and
911 deduce width based on the font's per-string overhang. lbearing
912 is assumed to be zero. */
913
914 /* TODO: Some Thai characters (and other composites if Windows
915 supports them) do have lbearing, and report their total width
916 as zero. Need some way of handling them when
917 GetCharABCWidthsW fails. */
918 SIZE sz;
919
920 if (font_type == UNICODE_FONT)
921 retval = GetTextExtentPoint32W (hdc, char2b, 1, &sz);
922 else
923 retval = GetTextExtentPoint32A (hdc, (char*)char2b, 1, &sz);
924
925 if (retval)
926 {
927 pcm->width = sz.cx - font->tm.tmOverhang;
928 pcm->rbearing = sz.cx;
929 pcm->lbearing = 0;
930 pcm->ascent = FONT_BASE (font);
931 pcm->descent = FONT_DESCENT (font);
932 }
933 }
934
935
936 if (pcm->width == 0 && (pcm->rbearing - pcm->lbearing) == 0)
937 {
938 retval = FALSE;
939 }
940
941 SelectObject (hdc, old_font);
942 ReleaseDC (NULL, hdc);
943
944 return retval;
945 }
946
947
948 static XCharStruct *
949 w32_per_char_metric (font, char2b, font_type)
950 XFontStruct *font;
951 wchar_t *char2b;
952 int /* enum w32_char_font_type */ font_type;
953 {
954 /* The result metric information. */
955 XCharStruct *pcm;
956 BOOL retval;
957
958 xassert (font && char2b);
959
960 /* TODO: This function is currently called through the RIF, and in
961 some cases font_type is UNKNOWN_FONT. We currently allow the
962 cached metrics to be used, which seems to work, but in cases
963 where font_type is UNKNOWN_FONT, we probably haven't encoded
964 char2b appropriately. All callers need checking to see what they
965 are passing. This is most likely to affect variable width fonts
966 outside the Latin-1 range, particularly in languages like Thai
967 that rely on rbearing and lbearing to provide composition. I
968 don't think that is working currently anyway, but we don't seem
969 to have anyone testing such languages on Windows. */
970
971 /* Handle the common cases quickly. */
972 if (!font->bdf && font->per_char == NULL)
973 /* TODO: determine whether char2b exists in font? */
974 return &font->max_bounds;
975 else if (!font->bdf && *char2b < 128)
976 return &font->per_char[*char2b];
977
978 xassert (font_type != UNKNOWN_FONT);
979
980 pcm = &font->scratch;
981
982 if (font_type == BDF_1D_FONT)
983 retval = w32_bdf_per_char_metric (font, char2b, 1, pcm);
984 else if (font_type == BDF_2D_FONT)
985 retval = w32_bdf_per_char_metric (font, char2b, 2, pcm);
986 else
987 retval = w32_native_per_char_metric (font, char2b, font_type, pcm);
988
989 if (retval)
990 return pcm;
991
992 return NULL;
993 }
994
995 void
996 w32_cache_char_metrics (font)
997 XFontStruct *font;
998 {
999 wchar_t char2b = L'x';
1000
1001 /* Cache char metrics for the common cases. */
1002 if (font->bdf)
1003 {
1004 /* TODO: determine whether font is fixed-pitch. */
1005 if (!w32_bdf_per_char_metric (font, &char2b, 1, &font->max_bounds))
1006 {
1007 /* Use the font width and height as max bounds, as not all BDF
1008 fonts contain the letter 'x'. */
1009 font->max_bounds.width = FONT_MAX_WIDTH (font);
1010 font->max_bounds.lbearing = -font->bdf->llx;
1011 font->max_bounds.rbearing = FONT_MAX_WIDTH (font) - font->bdf->urx;
1012 font->max_bounds.ascent = FONT_BASE (font);
1013 font->max_bounds.descent = FONT_DESCENT (font);
1014 }
1015 }
1016 else
1017 {
1018 if (((font->tm.tmPitchAndFamily & TMPF_FIXED_PITCH) != 0)
1019 /* Some fonts (eg DBCS fonts) are marked as fixed width even
1020 though they contain characters of different widths. */
1021 || (font->tm.tmMaxCharWidth != font->tm.tmAveCharWidth))
1022 {
1023 /* Font is not fixed pitch, so cache per_char info for the
1024 ASCII characters. It would be much more work, and probably
1025 not worth it, to cache other chars, since we may change
1026 between using Unicode and ANSI text drawing functions at
1027 run-time. */
1028 int i;
1029
1030 font->per_char = xmalloc (128 * sizeof(XCharStruct));
1031 for (i = 0; i < 128; i++)
1032 {
1033 char2b = i;
1034 w32_native_per_char_metric (font, &char2b, ANSI_FONT,
1035 &font->per_char[i]);
1036 }
1037 }
1038 else
1039 w32_native_per_char_metric (font, &char2b, ANSI_FONT,
1040 &font->max_bounds);
1041 }
1042 }
1043
1044
1045 /* Determine if a font is double byte. */
1046 int w32_font_is_double_byte (XFontStruct *font)
1047 {
1048 return font->double_byte_p;
1049 }
1050
1051
1052 static BOOL
1053 w32_use_unicode_for_codepage (codepage)
1054 int codepage;
1055 {
1056 /* If the current codepage is supported, use Unicode for output. */
1057 return (w32_enable_unicode_output
1058 && codepage != CP_8BIT
1059 && (codepage == CP_UNICODE || IsValidCodePage (codepage)));
1060 }
1061
1062 /* Encode CHAR2B using encoding information from FONT_INFO. CHAR2B is
1063 the two-byte form of C. Encoding is returned in *CHAR2B. */
1064
1065 static int /* enum w32_char_font_type */
1066 w32_encode_char (c, char2b, font_info, two_byte_p)
1067 int c;
1068 wchar_t *char2b;
1069 struct font_info *font_info;
1070 int * two_byte_p;
1071 {
1072 int charset = CHAR_CHARSET (c);
1073 int codepage;
1074 int unicode_p = 0;
1075 int internal_two_byte_p = 0;
1076
1077 XFontStruct *font = font_info->font;
1078
1079 internal_two_byte_p = w32_font_is_double_byte (font);
1080
1081 /* FONT_INFO may define a scheme by which to encode byte1 and byte2.
1082 This may be either a program in a special encoder language or a
1083 fixed encoding. */
1084 if (font_info->font_encoder)
1085 {
1086 /* It's a program. */
1087 struct ccl_program *ccl = font_info->font_encoder;
1088
1089 if (CHARSET_DIMENSION (charset) == 1)
1090 {
1091 ccl->reg[0] = charset;
1092 ccl->reg[1] = XCHAR2B_BYTE2 (char2b);
1093 ccl->reg[2] = -1;
1094 }
1095 else
1096 {
1097 ccl->reg[0] = charset;
1098 ccl->reg[1] = XCHAR2B_BYTE1 (char2b);
1099 ccl->reg[2] = XCHAR2B_BYTE2 (char2b);
1100 }
1101
1102 ccl_driver (ccl, NULL, NULL, 0, 0, NULL);
1103
1104 /* We assume that MSBs are appropriately set/reset by CCL
1105 program. */
1106 if (!internal_two_byte_p) /* 1-byte font */
1107 STORE_XCHAR2B (char2b, 0, ccl->reg[1]);
1108 else
1109 STORE_XCHAR2B (char2b, ccl->reg[1], ccl->reg[2]);
1110 }
1111 else if (font_info->encoding[charset])
1112 {
1113 /* Fixed encoding scheme. See fontset.h for the meaning of the
1114 encoding numbers. */
1115 int enc = font_info->encoding[charset];
1116
1117 if ((enc == 1 || enc == 2)
1118 && CHARSET_DIMENSION (charset) == 2)
1119 STORE_XCHAR2B (char2b, XCHAR2B_BYTE1 (char2b) | 0x80, XCHAR2B_BYTE2 (char2b));
1120
1121 if (enc == 1 || enc == 3
1122 || (enc == 4 && CHARSET_DIMENSION (charset) == 1))
1123 STORE_XCHAR2B (char2b, XCHAR2B_BYTE1 (char2b), XCHAR2B_BYTE2 (char2b) | 0x80);
1124 else if (enc == 4)
1125 {
1126 int sjis1, sjis2;
1127
1128 ENCODE_SJIS (XCHAR2B_BYTE1 (char2b), XCHAR2B_BYTE2 (char2b),
1129 sjis1, sjis2);
1130 STORE_XCHAR2B (char2b, sjis1, sjis2);
1131 }
1132 }
1133 codepage = font_info->codepage;
1134
1135 /* If charset is not ASCII or Latin-1, may need to move it into
1136 Unicode space. */
1137 if ( font && !font->bdf && w32_use_unicode_for_codepage (codepage)
1138 && charset != CHARSET_ASCII && charset != charset_latin_iso8859_1
1139 && charset != CHARSET_8_BIT_CONTROL && charset != CHARSET_8_BIT_GRAPHIC)
1140 {
1141 char temp[3];
1142 temp[0] = XCHAR2B_BYTE1 (char2b);
1143 temp[1] = XCHAR2B_BYTE2 (char2b);
1144 temp[2] = '\0';
1145 if (codepage != CP_UNICODE)
1146 {
1147 if (temp[0])
1148 MultiByteToWideChar (codepage, 0, temp, 2, char2b, 1);
1149 else
1150 MultiByteToWideChar (codepage, 0, temp+1, 1, char2b, 1);
1151 }
1152 unicode_p = 1;
1153 internal_two_byte_p = 1;
1154 }
1155
1156 if (two_byte_p)
1157 *two_byte_p = internal_two_byte_p;
1158
1159 if (!font)
1160 return UNKNOWN_FONT;
1161 else if (font->bdf && CHARSET_DIMENSION (charset) == 1)
1162 return BDF_1D_FONT;
1163 else if (font->bdf)
1164 return BDF_2D_FONT;
1165 else if (unicode_p)
1166 return UNICODE_FONT;
1167 else
1168 return ANSI_FONT;
1169 }
1170
1171
1172 \f
1173 /***********************************************************************
1174 Glyph display
1175 ***********************************************************************/
1176
1177
1178 /* Encapsulate the different ways of displaying text under W32. */
1179
1180 static void
1181 w32_text_out (s, x, y,chars,nchars)
1182 struct glyph_string * s;
1183 int x, y;
1184 wchar_t * chars;
1185 int nchars;
1186 {
1187 int charset_dim = w32_font_is_double_byte (s->font) ? 2 : 1;
1188 if (s->font->bdf)
1189 w32_BDF_TextOut (s->font->bdf, s->hdc,
1190 x, y, (char *) chars, charset_dim,
1191 nchars * charset_dim, 0);
1192 else if (s->first_glyph->font_type == UNICODE_FONT)
1193 ExtTextOutW (s->hdc, x, y, 0, NULL, chars, nchars, NULL);
1194 else
1195 ExtTextOutA (s->hdc, x, y, 0, NULL, (char *) chars,
1196 nchars * charset_dim, NULL);
1197 }
1198
1199
1200
1201 static void x_set_glyph_string_clipping P_ ((struct glyph_string *));
1202 static void x_set_glyph_string_gc P_ ((struct glyph_string *));
1203 static void x_draw_glyph_string_background P_ ((struct glyph_string *,
1204 int));
1205 static void x_draw_glyph_string_foreground P_ ((struct glyph_string *));
1206 static void x_draw_composite_glyph_string_foreground P_ ((struct glyph_string *));
1207 static void x_draw_glyph_string_box P_ ((struct glyph_string *));
1208 static void x_draw_glyph_string P_ ((struct glyph_string *));
1209 static void x_set_cursor_gc P_ ((struct glyph_string *));
1210 static void x_set_mode_line_face_gc P_ ((struct glyph_string *));
1211 static void x_set_mouse_face_gc P_ ((struct glyph_string *));
1212 static int w32_alloc_lighter_color (struct frame *, COLORREF *, double, int);
1213 static void w32_setup_relief_color P_ ((struct frame *, struct relief *,
1214 double, int, COLORREF));
1215 static void x_setup_relief_colors P_ ((struct glyph_string *));
1216 static void x_draw_image_glyph_string P_ ((struct glyph_string *));
1217 static void x_draw_image_relief P_ ((struct glyph_string *));
1218 static void x_draw_image_foreground P_ ((struct glyph_string *));
1219 static void w32_draw_image_foreground_1 P_ ((struct glyph_string *, HBITMAP));
1220 static void x_clear_glyph_string_rect P_ ((struct glyph_string *, int,
1221 int, int, int));
1222 static void w32_draw_relief_rect P_ ((struct frame *, int, int, int, int,
1223 int, int, int, int, int, int,
1224 RECT *));
1225 static void w32_draw_box_rect P_ ((struct glyph_string *, int, int, int, int,
1226 int, int, int, RECT *));
1227
1228 #if GLYPH_DEBUG
1229 static void x_check_font P_ ((struct frame *, XFontStruct *));
1230 #endif
1231
1232
1233 /* Set S->gc to a suitable GC for drawing glyph string S in cursor
1234 face. */
1235
1236 static void
1237 x_set_cursor_gc (s)
1238 struct glyph_string *s;
1239 {
1240 if (s->font == FRAME_FONT (s->f)
1241 && s->face->background == FRAME_BACKGROUND_PIXEL (s->f)
1242 && s->face->foreground == FRAME_FOREGROUND_PIXEL (s->f)
1243 && !s->cmp)
1244 s->gc = s->f->output_data.w32->cursor_gc;
1245 else
1246 {
1247 /* Cursor on non-default face: must merge. */
1248 XGCValues xgcv;
1249 unsigned long mask;
1250
1251 xgcv.background = s->f->output_data.w32->cursor_pixel;
1252 xgcv.foreground = s->face->background;
1253
1254 /* If the glyph would be invisible, try a different foreground. */
1255 if (xgcv.foreground == xgcv.background)
1256 xgcv.foreground = s->face->foreground;
1257 if (xgcv.foreground == xgcv.background)
1258 xgcv.foreground = s->f->output_data.w32->cursor_foreground_pixel;
1259 if (xgcv.foreground == xgcv.background)
1260 xgcv.foreground = s->face->foreground;
1261
1262 /* Make sure the cursor is distinct from text in this face. */
1263 if (xgcv.background == s->face->background
1264 && xgcv.foreground == s->face->foreground)
1265 {
1266 xgcv.background = s->face->foreground;
1267 xgcv.foreground = s->face->background;
1268 }
1269
1270 IF_DEBUG (x_check_font (s->f, s->font));
1271 xgcv.font = s->font;
1272 mask = GCForeground | GCBackground | GCFont;
1273
1274 if (FRAME_W32_DISPLAY_INFO (s->f)->scratch_cursor_gc)
1275 XChangeGC (NULL, FRAME_W32_DISPLAY_INFO (s->f)->scratch_cursor_gc,
1276 mask, &xgcv);
1277 else
1278 FRAME_W32_DISPLAY_INFO (s->f)->scratch_cursor_gc
1279 = XCreateGC (NULL, s->window, mask, &xgcv);
1280
1281 s->gc = FRAME_W32_DISPLAY_INFO (s->f)->scratch_cursor_gc;
1282 }
1283 }
1284
1285
1286 /* Set up S->gc of glyph string S for drawing text in mouse face. */
1287
1288 static void
1289 x_set_mouse_face_gc (s)
1290 struct glyph_string *s;
1291 {
1292 int face_id;
1293 struct face *face;
1294
1295 /* What face has to be used last for the mouse face? */
1296 face_id = FRAME_W32_DISPLAY_INFO (s->f)->mouse_face_face_id;
1297 face = FACE_FROM_ID (s->f, face_id);
1298 if (face == NULL)
1299 face = FACE_FROM_ID (s->f, MOUSE_FACE_ID);
1300
1301 if (s->first_glyph->type == CHAR_GLYPH)
1302 face_id = FACE_FOR_CHAR (s->f, face, s->first_glyph->u.ch);
1303 else
1304 face_id = FACE_FOR_CHAR (s->f, face, 0);
1305 s->face = FACE_FROM_ID (s->f, face_id);
1306 PREPARE_FACE_FOR_DISPLAY (s->f, s->face);
1307
1308 /* If font in this face is same as S->font, use it. */
1309 if (s->font == s->face->font)
1310 s->gc = s->face->gc;
1311 else
1312 {
1313 /* Otherwise construct scratch_cursor_gc with values from FACE
1314 but font FONT. */
1315 XGCValues xgcv;
1316 unsigned long mask;
1317
1318 xgcv.background = s->face->background;
1319 xgcv.foreground = s->face->foreground;
1320 IF_DEBUG (x_check_font (s->f, s->font));
1321 xgcv.font = s->font;
1322 mask = GCForeground | GCBackground | GCFont;
1323
1324 if (FRAME_W32_DISPLAY_INFO (s->f)->scratch_cursor_gc)
1325 XChangeGC (NULL, FRAME_W32_DISPLAY_INFO (s->f)->scratch_cursor_gc,
1326 mask, &xgcv);
1327 else
1328 FRAME_W32_DISPLAY_INFO (s->f)->scratch_cursor_gc
1329 = XCreateGC (NULL, s->window, mask, &xgcv);
1330
1331 s->gc = FRAME_W32_DISPLAY_INFO (s->f)->scratch_cursor_gc;
1332 }
1333
1334 xassert (s->gc != 0);
1335 }
1336
1337
1338 /* Set S->gc of glyph string S to a GC suitable for drawing a mode line.
1339 Faces to use in the mode line have already been computed when the
1340 matrix was built, so there isn't much to do, here. */
1341
1342 static INLINE void
1343 x_set_mode_line_face_gc (s)
1344 struct glyph_string *s;
1345 {
1346 s->gc = s->face->gc;
1347 }
1348
1349
1350 /* Set S->gc of glyph string S for drawing that glyph string. Set
1351 S->stippled_p to a non-zero value if the face of S has a stipple
1352 pattern. */
1353
1354 static INLINE void
1355 x_set_glyph_string_gc (s)
1356 struct glyph_string *s;
1357 {
1358 PREPARE_FACE_FOR_DISPLAY (s->f, s->face);
1359
1360 if (s->hl == DRAW_NORMAL_TEXT)
1361 {
1362 s->gc = s->face->gc;
1363 s->stippled_p = s->face->stipple != 0;
1364 }
1365 else if (s->hl == DRAW_INVERSE_VIDEO)
1366 {
1367 x_set_mode_line_face_gc (s);
1368 s->stippled_p = s->face->stipple != 0;
1369 }
1370 else if (s->hl == DRAW_CURSOR)
1371 {
1372 x_set_cursor_gc (s);
1373 s->stippled_p = 0;
1374 }
1375 else if (s->hl == DRAW_MOUSE_FACE)
1376 {
1377 x_set_mouse_face_gc (s);
1378 s->stippled_p = s->face->stipple != 0;
1379 }
1380 else if (s->hl == DRAW_IMAGE_RAISED
1381 || s->hl == DRAW_IMAGE_SUNKEN)
1382 {
1383 s->gc = s->face->gc;
1384 s->stippled_p = s->face->stipple != 0;
1385 }
1386 else
1387 {
1388 s->gc = s->face->gc;
1389 s->stippled_p = s->face->stipple != 0;
1390 }
1391
1392 /* GC must have been set. */
1393 xassert (s->gc != 0);
1394 }
1395
1396
1397 /* Set clipping for output of glyph string S. S may be part of a mode
1398 line or menu if we don't have X toolkit support. */
1399
1400 static INLINE void
1401 x_set_glyph_string_clipping (s)
1402 struct glyph_string *s;
1403 {
1404 RECT r;
1405 get_glyph_string_clip_rect (s, &r);
1406 w32_set_clip_rectangle (s->hdc, &r);
1407 }
1408
1409
1410 /* RIF:
1411 Compute left and right overhang of glyph string S. If S is a glyph
1412 string for a composition, assume overhangs don't exist. */
1413
1414 static void
1415 w32_compute_glyph_string_overhangs (s)
1416 struct glyph_string *s;
1417 {
1418 /* TODO: Windows does not appear to have a method for
1419 getting this info without getting the ABC widths for each
1420 individual character and working it out manually. */
1421 }
1422
1423
1424 static void
1425 w32_get_glyph_overhangs (glyph, f, left, right)
1426 struct glyph *glyph;
1427 struct frame *f;
1428 int *left, *right;
1429 {
1430 HDC hdc = get_frame_dc (f);
1431 /* Convert to unicode! */
1432 x_get_glyph_overhangs (glyph, f, left, right);
1433 release_frame_dc (f, hdc);
1434 }
1435
1436
1437 /* Fill rectangle X, Y, W, H with background color of glyph string S. */
1438
1439 static INLINE void
1440 x_clear_glyph_string_rect (s, x, y, w, h)
1441 struct glyph_string *s;
1442 int x, y, w, h;
1443 {
1444 int real_x = x;
1445 int real_y = y;
1446 int real_w = w;
1447 int real_h = h;
1448 #if 0
1449 /* Take clipping into account. */
1450 if (s->gc->clip_mask == Rect)
1451 {
1452 real_x = max (real_x, s->gc->clip_rectangle.left);
1453 real_y = max (real_y, s->gc->clip_rectangle.top);
1454 real_w = min (real_w, s->gc->clip_rectangle.right
1455 - s->gc->clip_rectangle.left);
1456 real_h = min (real_h, s->gc->clip_rectangle.bottom
1457 - s->gc->clip_rectangle.top);
1458 }
1459 #endif
1460 w32_fill_area (s->f, s->hdc, s->gc->background, real_x, real_y,
1461 real_w, real_h);
1462 }
1463
1464
1465 /* Draw the background of glyph_string S. If S->background_filled_p
1466 is non-zero don't draw it. FORCE_P non-zero means draw the
1467 background even if it wouldn't be drawn normally. This is used
1468 when a string preceding S draws into the background of S, or S
1469 contains the first component of a composition. */
1470
1471 static void
1472 x_draw_glyph_string_background (s, force_p)
1473 struct glyph_string *s;
1474 int force_p;
1475 {
1476 /* Nothing to do if background has already been drawn or if it
1477 shouldn't be drawn in the first place. */
1478 if (!s->background_filled_p)
1479 {
1480 int box_line_width = max (s->face->box_line_width, 0);
1481
1482 #if 0 /* TODO: stipple */
1483 if (s->stippled_p)
1484 {
1485 /* Fill background with a stipple pattern. */
1486 XSetFillStyle (s->display, s->gc, FillOpaqueStippled);
1487 XFillRectangle (s->display, s->window, s->gc, s->x,
1488 s->y + box_line_width,
1489 s->background_width,
1490 s->height - 2 * box_line_width);
1491 XSetFillStyle (s->display, s->gc, FillSolid);
1492 s->background_filled_p = 1;
1493 }
1494 else
1495 #endif
1496 if (FONT_HEIGHT (s->font) < s->height - 2 * box_line_width
1497 || s->font_not_found_p
1498 || s->extends_to_end_of_line_p
1499 || s->font->bdf
1500 || force_p)
1501 {
1502 x_clear_glyph_string_rect (s, s->x, s->y + box_line_width,
1503 s->background_width,
1504 s->height - 2 * box_line_width);
1505 s->background_filled_p = 1;
1506 }
1507 }
1508 }
1509
1510
1511 /* Draw the foreground of glyph string S. */
1512
1513 static void
1514 x_draw_glyph_string_foreground (s)
1515 struct glyph_string *s;
1516 {
1517 int i, x;
1518 HFONT old_font;
1519
1520 /* If first glyph of S has a left box line, start drawing the text
1521 of S to the right of that box line. */
1522 if (s->face->box != FACE_NO_BOX
1523 && s->first_glyph->left_box_line_p)
1524 x = s->x + abs (s->face->box_line_width);
1525 else
1526 x = s->x;
1527
1528 if (s->for_overlaps_p || (s->background_filled_p && s->hl != DRAW_CURSOR))
1529 SetBkMode (s->hdc, TRANSPARENT);
1530 else
1531 SetBkMode (s->hdc, OPAQUE);
1532
1533 SetTextColor (s->hdc, s->gc->foreground);
1534 SetBkColor (s->hdc, s->gc->background);
1535 SetTextAlign (s->hdc, TA_BASELINE | TA_LEFT);
1536
1537 if (s->font && s->font->hfont)
1538 old_font = SelectObject (s->hdc, s->font->hfont);
1539
1540 /* Draw characters of S as rectangles if S's font could not be
1541 loaded. */
1542 if (s->font_not_found_p)
1543 {
1544 for (i = 0; i < s->nchars; ++i)
1545 {
1546 struct glyph *g = s->first_glyph + i;
1547
1548 w32_draw_rectangle (s->hdc, s->gc, x, s->y, g->pixel_width - 1,
1549 s->height - 1);
1550 x += g->pixel_width;
1551 }
1552 }
1553 else
1554 {
1555 char *char1b = (char *) s->char2b;
1556 int boff = s->font_info->baseline_offset;
1557
1558 if (s->font_info->vertical_centering)
1559 boff = VCENTER_BASELINE_OFFSET (s->font, s->f) - boff;
1560
1561 /* If we can use 8-bit functions, condense S->char2b. */
1562 if (!s->two_byte_p)
1563 for (i = 0; i < s->nchars; ++i)
1564 char1b[i] = XCHAR2B_BYTE2 (&s->char2b[i]);
1565
1566 /* Draw text with TextOut and friends. */
1567 w32_text_out (s, x, s->ybase - boff, s->char2b, s->nchars);
1568
1569 if (s->face->overstrike)
1570 {
1571 /* For overstriking (to simulate bold-face), draw the
1572 characters again shifted to the right by one pixel. */
1573 w32_text_out (s, x + 1, s->ybase - boff, s->char2b, s->nchars);
1574 }
1575 }
1576 if (s->font && s->font->hfont)
1577 SelectObject (s->hdc, old_font);
1578 }
1579
1580 /* Draw the foreground of composite glyph string S. */
1581
1582 static void
1583 x_draw_composite_glyph_string_foreground (s)
1584 struct glyph_string *s;
1585 {
1586 int i, x;
1587 HFONT old_font;
1588
1589 /* If first glyph of S has a left box line, start drawing the text
1590 of S to the right of that box line. */
1591 if (s->face->box != FACE_NO_BOX
1592 && s->first_glyph->left_box_line_p)
1593 x = s->x + abs (s->face->box_line_width);
1594 else
1595 x = s->x;
1596
1597 /* S is a glyph string for a composition. S->gidx is the index of
1598 the first character drawn for glyphs of this composition.
1599 S->gidx == 0 means we are drawing the very first character of
1600 this composition. */
1601
1602 SetTextColor (s->hdc, s->gc->foreground);
1603 SetBkColor (s->hdc, s->gc->background);
1604 SetBkMode (s->hdc, TRANSPARENT);
1605 SetTextAlign (s->hdc, TA_BASELINE | TA_LEFT);
1606
1607 if (s->font && s->font->hfont)
1608 old_font = SelectObject (s->hdc, s->font->hfont);
1609
1610 /* Draw a rectangle for the composition if the font for the very
1611 first character of the composition could not be loaded. */
1612 if (s->font_not_found_p)
1613 {
1614 if (s->gidx == 0)
1615 w32_draw_rectangle (s->hdc, s->gc, x, s->y, s->width - 1,
1616 s->height - 1);
1617 }
1618 else
1619 {
1620 for (i = 0; i < s->nchars; i++, ++s->gidx)
1621 {
1622 w32_text_out (s, x + s->cmp->offsets[s->gidx * 2],
1623 s->ybase - s->cmp->offsets[s->gidx * 2 + 1],
1624 s->char2b + i, 1);
1625 if (s->face->overstrike)
1626 w32_text_out (s, x + s->cmp->offsets[s->gidx * 2] + 1,
1627 s->ybase - s->cmp->offsets[s->gidx * 2 + 1],
1628 s->char2b + i, 1);
1629 }
1630 }
1631
1632 if (s->font && s->font->hfont)
1633 SelectObject (s->hdc, old_font);
1634 }
1635
1636
1637 /* Brightness beyond which a color won't have its highlight brightness
1638 boosted.
1639
1640 Nominally, highlight colors for `3d' faces are calculated by
1641 brightening an object's color by a constant scale factor, but this
1642 doesn't yield good results for dark colors, so for colors who's
1643 brightness is less than this value (on a scale of 0-255) have to
1644 use an additional additive factor.
1645
1646 The value here is set so that the default menu-bar/mode-line color
1647 (grey75) will not have its highlights changed at all. */
1648 #define HIGHLIGHT_COLOR_DARK_BOOST_LIMIT 187
1649
1650
1651 /* Allocate a color which is lighter or darker than *COLOR by FACTOR
1652 or DELTA. Try a color with RGB values multiplied by FACTOR first.
1653 If this produces the same color as COLOR, try a color where all RGB
1654 values have DELTA added. Return the allocated color in *COLOR.
1655 DISPLAY is the X display, CMAP is the colormap to operate on.
1656 Value is non-zero if successful. */
1657
1658 static int
1659 w32_alloc_lighter_color (f, color, factor, delta)
1660 struct frame *f;
1661 COLORREF *color;
1662 double factor;
1663 int delta;
1664 {
1665 COLORREF new;
1666 long bright;
1667
1668 /* On Windows, RGB values are 0-255, not 0-65535, so scale delta. */
1669 delta /= 256;
1670
1671 /* Change RGB values by specified FACTOR. Avoid overflow! */
1672 xassert (factor >= 0);
1673 new = PALETTERGB (min (0xff, factor * GetRValue (*color)),
1674 min (0xff, factor * GetGValue (*color)),
1675 min (0xff, factor * GetBValue (*color)));
1676
1677 /* Calculate brightness of COLOR. */
1678 bright = (2 * GetRValue (*color) + 3 * GetGValue (*color)
1679 + GetBValue (*color)) / 6;
1680
1681 /* We only boost colors that are darker than
1682 HIGHLIGHT_COLOR_DARK_BOOST_LIMIT. */
1683 if (bright < HIGHLIGHT_COLOR_DARK_BOOST_LIMIT)
1684 /* Make an additive adjustment to NEW, because it's dark enough so
1685 that scaling by FACTOR alone isn't enough. */
1686 {
1687 /* How far below the limit this color is (0 - 1, 1 being darker). */
1688 double dimness = 1 - (double)bright / HIGHLIGHT_COLOR_DARK_BOOST_LIMIT;
1689 /* The additive adjustment. */
1690 int min_delta = delta * dimness * factor / 2;
1691
1692 if (factor < 1)
1693 new = PALETTERGB (max (0, min (0xff, min_delta - GetRValue (*color))),
1694 max (0, min (0xff, min_delta - GetGValue (*color))),
1695 max (0, min (0xff, min_delta - GetBValue (*color))));
1696 else
1697 new = PALETTERGB (max (0, min (0xff, min_delta + GetRValue (*color))),
1698 max (0, min (0xff, min_delta + GetGValue (*color))),
1699 max (0, min (0xff, min_delta + GetBValue (*color))));
1700 }
1701
1702 if (new == *color)
1703 new = PALETTERGB (max (0, min (0xff, delta + GetRValue (*color))),
1704 max (0, min (0xff, delta + GetGValue (*color))),
1705 max (0, min (0xff, delta + GetBValue (*color))));
1706
1707 /* TODO: Map to palette and retry with delta if same? */
1708 /* TODO: Free colors (if using palette)? */
1709
1710 if (new == *color)
1711 return 0;
1712
1713 *color = new;
1714
1715 return 1;
1716 }
1717
1718
1719 /* Set up the foreground color for drawing relief lines of glyph
1720 string S. RELIEF is a pointer to a struct relief containing the GC
1721 with which lines will be drawn. Use a color that is FACTOR or
1722 DELTA lighter or darker than the relief's background which is found
1723 in S->f->output_data.x->relief_background. If such a color cannot
1724 be allocated, use DEFAULT_PIXEL, instead. */
1725
1726 static void
1727 w32_setup_relief_color (f, relief, factor, delta, default_pixel)
1728 struct frame *f;
1729 struct relief *relief;
1730 double factor;
1731 int delta;
1732 COLORREF default_pixel;
1733 {
1734 XGCValues xgcv;
1735 struct w32_output *di = f->output_data.w32;
1736 unsigned long mask = GCForeground;
1737 COLORREF pixel;
1738 COLORREF background = di->relief_background;
1739 struct w32_display_info *dpyinfo = FRAME_W32_DISPLAY_INFO (f);
1740
1741 /* TODO: Free colors (if using palette)? */
1742
1743 /* Allocate new color. */
1744 xgcv.foreground = default_pixel;
1745 pixel = background;
1746 if (w32_alloc_lighter_color (f, &pixel, factor, delta))
1747 {
1748 relief->allocated_p = 1;
1749 xgcv.foreground = relief->pixel = pixel;
1750 }
1751
1752 if (relief->gc == 0)
1753 {
1754 #if 0 /* TODO: stipple */
1755 xgcv.stipple = dpyinfo->gray;
1756 mask |= GCStipple;
1757 #endif
1758 relief->gc = XCreateGC (NULL, FRAME_W32_WINDOW (f), mask, &xgcv);
1759 }
1760 else
1761 XChangeGC (NULL, relief->gc, mask, &xgcv);
1762 }
1763
1764
1765 /* Set up colors for the relief lines around glyph string S. */
1766
1767 static void
1768 x_setup_relief_colors (s)
1769 struct glyph_string *s;
1770 {
1771 struct w32_output *di = s->f->output_data.w32;
1772 COLORREF color;
1773
1774 if (s->face->use_box_color_for_shadows_p)
1775 color = s->face->box_color;
1776 else if (s->first_glyph->type == IMAGE_GLYPH
1777 && s->img->pixmap
1778 && !IMAGE_BACKGROUND_TRANSPARENT (s->img, s->f, 0))
1779 color = IMAGE_BACKGROUND (s->img, s->f, 0);
1780 else
1781 color = s->gc->background;
1782
1783 if (di->white_relief.gc == 0
1784 || color != di->relief_background)
1785 {
1786 di->relief_background = color;
1787 w32_setup_relief_color (s->f, &di->white_relief, 1.2, 0x8000,
1788 WHITE_PIX_DEFAULT (s->f));
1789 w32_setup_relief_color (s->f, &di->black_relief, 0.6, 0x4000,
1790 BLACK_PIX_DEFAULT (s->f));
1791 }
1792 }
1793
1794
1795 /* Draw a relief on frame F inside the rectangle given by LEFT_X,
1796 TOP_Y, RIGHT_X, and BOTTOM_Y. WIDTH is the thickness of the relief
1797 to draw, it must be >= 0. RAISED_P non-zero means draw a raised
1798 relief. LEFT_P non-zero means draw a relief on the left side of
1799 the rectangle. RIGHT_P non-zero means draw a relief on the right
1800 side of the rectangle. CLIP_RECT is the clipping rectangle to use
1801 when drawing. */
1802
1803 static void
1804 w32_draw_relief_rect (f, left_x, top_y, right_x, bottom_y, width,
1805 raised_p, top_p, bot_p, left_p, right_p, clip_rect)
1806 struct frame *f;
1807 int left_x, top_y, right_x, bottom_y, width;
1808 int top_p, bot_p, left_p, right_p, raised_p;
1809 RECT *clip_rect;
1810 {
1811 int i;
1812 XGCValues gc;
1813 HDC hdc = get_frame_dc (f);
1814
1815 if (raised_p)
1816 gc.foreground = f->output_data.w32->white_relief.gc->foreground;
1817 else
1818 gc.foreground = f->output_data.w32->black_relief.gc->foreground;
1819
1820 w32_set_clip_rectangle (hdc, clip_rect);
1821
1822 /* Top. */
1823 if (top_p)
1824 for (i = 0; i < width; ++i)
1825 w32_fill_area (f, hdc, gc.foreground,
1826 left_x + i * left_p, top_y + i,
1827 right_x - left_x - i * (left_p + right_p ) + 1, 1);
1828
1829 /* Left. */
1830 if (left_p)
1831 for (i = 0; i < width; ++i)
1832 w32_fill_area (f, hdc, gc.foreground,
1833 left_x + i, top_y + i, 1,
1834 bottom_y - top_y - 2 * i + 1);
1835
1836 if (raised_p)
1837 gc.foreground = f->output_data.w32->black_relief.gc->foreground;
1838 else
1839 gc.foreground = f->output_data.w32->white_relief.gc->foreground;
1840
1841 /* Bottom. */
1842 if (bot_p)
1843 for (i = 0; i < width; ++i)
1844 w32_fill_area (f, hdc, gc.foreground,
1845 left_x + i * left_p, bottom_y - i,
1846 right_x - left_x - i * (left_p + right_p) + 1, 1);
1847
1848 /* Right. */
1849 if (right_p)
1850 for (i = 0; i < width; ++i)
1851 w32_fill_area (f, hdc, gc.foreground,
1852 right_x - i, top_y + i + 1, 1,
1853 bottom_y - top_y - 2 * i - 1);
1854
1855 w32_set_clip_rectangle (hdc, NULL);
1856
1857 release_frame_dc (f, hdc);
1858 }
1859
1860
1861 /* Draw a box on frame F inside the rectangle given by LEFT_X, TOP_Y,
1862 RIGHT_X, and BOTTOM_Y. WIDTH is the thickness of the lines to
1863 draw, it must be >= 0. LEFT_P non-zero means draw a line on the
1864 left side of the rectangle. RIGHT_P non-zero means draw a line
1865 on the right side of the rectangle. CLIP_RECT is the clipping
1866 rectangle to use when drawing. */
1867
1868 static void
1869 w32_draw_box_rect (s, left_x, top_y, right_x, bottom_y, width,
1870 left_p, right_p, clip_rect)
1871 struct glyph_string *s;
1872 int left_x, top_y, right_x, bottom_y, width, left_p, right_p;
1873 RECT *clip_rect;
1874 {
1875 w32_set_clip_rectangle (s->hdc, clip_rect);
1876
1877 /* Top. */
1878 w32_fill_area (s->f, s->hdc, s->face->box_color,
1879 left_x, top_y, right_x - left_x + 1, width);
1880
1881 /* Left. */
1882 if (left_p)
1883 {
1884 w32_fill_area (s->f, s->hdc, s->face->box_color,
1885 left_x, top_y, width, bottom_y - top_y + 1);
1886 }
1887
1888 /* Bottom. */
1889 w32_fill_area (s->f, s->hdc, s->face->box_color,
1890 left_x, bottom_y - width + 1, right_x - left_x + 1, width);
1891
1892 /* Right. */
1893 if (right_p)
1894 {
1895 w32_fill_area (s->f, s->hdc, s->face->box_color,
1896 right_x - width + 1, top_y, width, bottom_y - top_y + 1);
1897 }
1898
1899 w32_set_clip_rectangle (s->hdc, NULL);
1900 }
1901
1902
1903 /* Draw a box around glyph string S. */
1904
1905 static void
1906 x_draw_glyph_string_box (s)
1907 struct glyph_string *s;
1908 {
1909 int width, left_x, right_x, top_y, bottom_y, last_x, raised_p;
1910 int left_p, right_p;
1911 struct glyph *last_glyph;
1912 RECT clip_rect;
1913
1914 last_x = window_box_right (s->w, s->area);
1915 if (s->row->full_width_p
1916 && !s->w->pseudo_window_p)
1917 {
1918 last_x += WINDOW_RIGHT_SCROLL_BAR_AREA_WIDTH (s->w);
1919 if (s->area != RIGHT_MARGIN_AREA
1920 || WINDOW_HAS_FRINGES_OUTSIDE_MARGINS (s->w))
1921 last_x += WINDOW_RIGHT_FRINGE_WIDTH (s->w);
1922 }
1923
1924 /* The glyph that may have a right box line. */
1925 last_glyph = (s->cmp || s->img
1926 ? s->first_glyph
1927 : s->first_glyph + s->nchars - 1);
1928
1929 width = abs (s->face->box_line_width);
1930 raised_p = s->face->box == FACE_RAISED_BOX;
1931 left_x = s->x;
1932 right_x = ((s->row->full_width_p && s->extends_to_end_of_line_p
1933 ? last_x - 1
1934 : min (last_x, s->x + s->background_width) - 1));
1935 top_y = s->y;
1936 bottom_y = top_y + s->height - 1;
1937
1938 left_p = (s->first_glyph->left_box_line_p
1939 || (s->hl == DRAW_MOUSE_FACE
1940 && (s->prev == NULL
1941 || s->prev->hl != s->hl)));
1942 right_p = (last_glyph->right_box_line_p
1943 || (s->hl == DRAW_MOUSE_FACE
1944 && (s->next == NULL
1945 || s->next->hl != s->hl)));
1946
1947 get_glyph_string_clip_rect (s, &clip_rect);
1948
1949 if (s->face->box == FACE_SIMPLE_BOX)
1950 w32_draw_box_rect (s, left_x, top_y, right_x, bottom_y, width,
1951 left_p, right_p, &clip_rect);
1952 else
1953 {
1954 x_setup_relief_colors (s);
1955 w32_draw_relief_rect (s->f, left_x, top_y, right_x, bottom_y,
1956 width, raised_p, 1, 1, left_p, right_p, &clip_rect);
1957 }
1958 }
1959
1960
1961 /* Draw foreground of image glyph string S. */
1962
1963 static void
1964 x_draw_image_foreground (s)
1965 struct glyph_string *s;
1966 {
1967 int x = s->x;
1968 int y = s->ybase - image_ascent (s->img, s->face, &s->slice);
1969
1970 /* If first glyph of S has a left box line, start drawing it to the
1971 right of that line. */
1972 if (s->face->box != FACE_NO_BOX
1973 && s->first_glyph->left_box_line_p
1974 && s->slice.x == 0)
1975 x += abs (s->face->box_line_width);
1976
1977 /* If there is a margin around the image, adjust x- and y-position
1978 by that margin. */
1979 if (s->slice.x == 0)
1980 x += s->img->hmargin;
1981 if (s->slice.y == 0)
1982 y += s->img->vmargin;
1983
1984 SaveDC (s->hdc);
1985
1986 if (s->img->pixmap)
1987 {
1988 HDC compat_hdc = CreateCompatibleDC (s->hdc);
1989 HBRUSH fg_brush = CreateSolidBrush (s->gc->foreground);
1990 HBRUSH orig_brush = SelectObject (s->hdc, fg_brush);
1991 HGDIOBJ orig_obj = SelectObject (compat_hdc, s->img->pixmap);
1992 SetBkColor (compat_hdc, RGB (255, 255, 255));
1993 SetTextColor (s->hdc, RGB (0, 0, 0));
1994 x_set_glyph_string_clipping (s);
1995
1996 if (s->img->mask)
1997 {
1998 HDC mask_dc = CreateCompatibleDC (s->hdc);
1999 HGDIOBJ mask_orig_obj = SelectObject (mask_dc, s->img->mask);
2000
2001 SetTextColor (s->hdc, RGB (255, 255, 255));
2002 SetBkColor (s->hdc, RGB (0, 0, 0));
2003
2004 BitBlt (s->hdc, x, y, s->slice.width, s->slice.height,
2005 compat_hdc, s->slice.x, s->slice.y, SRCINVERT);
2006 BitBlt (s->hdc, x, y, s->slice.width, s->slice.height,
2007 mask_dc, s->slice.x, s->slice.y, SRCAND);
2008 BitBlt (s->hdc, x, y, s->slice.width, s->slice.height,
2009 compat_hdc, s->slice.x, s->slice.y, SRCINVERT);
2010
2011 SelectObject (mask_dc, mask_orig_obj);
2012 DeleteDC (mask_dc);
2013 }
2014 else
2015 {
2016 SetTextColor (s->hdc, s->gc->foreground);
2017 SetBkColor (s->hdc, s->gc->background);
2018
2019 BitBlt (s->hdc, x, y, s->slice.width, s->slice.height,
2020 compat_hdc, s->slice.x, s->slice.y, SRCCOPY);
2021
2022 /* When the image has a mask, we can expect that at
2023 least part of a mouse highlight or a block cursor will
2024 be visible. If the image doesn't have a mask, make
2025 a block cursor visible by drawing a rectangle around
2026 the image. I believe it's looking better if we do
2027 nothing here for mouse-face. */
2028 if (s->hl == DRAW_CURSOR)
2029 {
2030 int r = s->img->relief;
2031 if (r < 0) r = -r;
2032 w32_draw_rectangle (s->hdc, s->gc, x - r, y - r ,
2033 s->slice.width + r*2 - 1,
2034 s->slice.height + r*2 - 1);
2035 }
2036 }
2037
2038 w32_set_clip_rectangle (s->hdc, NULL);
2039 SelectObject (s->hdc, orig_brush);
2040 DeleteObject (fg_brush);
2041 SelectObject (compat_hdc, orig_obj);
2042 DeleteDC (compat_hdc);
2043 }
2044 else
2045 w32_draw_rectangle (s->hdc, s->gc, x, y,
2046 s->slice.width - 1, s->slice.height - 1);
2047
2048 RestoreDC (s->hdc ,-1);
2049 }
2050
2051
2052
2053 /* Draw a relief around the image glyph string S. */
2054
2055 static void
2056 x_draw_image_relief (s)
2057 struct glyph_string *s;
2058 {
2059 int x0, y0, x1, y1, thick, raised_p;
2060 RECT r;
2061 int x = s->x;
2062 int y = s->ybase - image_ascent (s->img, s->face, &s->slice);
2063
2064 /* If first glyph of S has a left box line, start drawing it to the
2065 right of that line. */
2066 if (s->face->box != FACE_NO_BOX
2067 && s->first_glyph->left_box_line_p
2068 && s->slice.x == 0)
2069 x += abs (s->face->box_line_width);
2070
2071 /* If there is a margin around the image, adjust x- and y-position
2072 by that margin. */
2073 if (s->slice.x == 0)
2074 x += s->img->hmargin;
2075 if (s->slice.y == 0)
2076 y += s->img->vmargin;
2077
2078 if (s->hl == DRAW_IMAGE_SUNKEN
2079 || s->hl == DRAW_IMAGE_RAISED)
2080 {
2081 thick = tool_bar_button_relief >= 0 ? tool_bar_button_relief : DEFAULT_TOOL_BAR_BUTTON_RELIEF;
2082 raised_p = s->hl == DRAW_IMAGE_RAISED;
2083 }
2084 else
2085 {
2086 thick = abs (s->img->relief);
2087 raised_p = s->img->relief > 0;
2088 }
2089
2090 x0 = x - thick;
2091 y0 = y - thick;
2092 x1 = x + s->slice.width + thick - 1;
2093 y1 = y + s->slice.height + thick - 1;
2094
2095 x_setup_relief_colors (s);
2096 get_glyph_string_clip_rect (s, &r);
2097 w32_draw_relief_rect (s->f, x0, y0, x1, y1, thick, raised_p,
2098 s->slice.y == 0,
2099 s->slice.y + s->slice.height == s->img->height,
2100 s->slice.x == 0,
2101 s->slice.x + s->slice.width == s->img->width,
2102 &r);
2103 }
2104
2105
2106 /* Draw the foreground of image glyph string S to PIXMAP. */
2107
2108 static void
2109 w32_draw_image_foreground_1 (s, pixmap)
2110 struct glyph_string *s;
2111 HBITMAP pixmap;
2112 {
2113 HDC hdc = CreateCompatibleDC (s->hdc);
2114 HGDIOBJ orig_hdc_obj = SelectObject (hdc, pixmap);
2115 int x = 0;
2116 int y = s->ybase - s->y - image_ascent (s->img, s->face, &s->slice);
2117
2118 /* If first glyph of S has a left box line, start drawing it to the
2119 right of that line. */
2120 if (s->face->box != FACE_NO_BOX
2121 && s->first_glyph->left_box_line_p
2122 && s->slice.x == 0)
2123 x += abs (s->face->box_line_width);
2124
2125 /* If there is a margin around the image, adjust x- and y-position
2126 by that margin. */
2127 if (s->slice.x == 0)
2128 x += s->img->hmargin;
2129 if (s->slice.y == 0)
2130 y += s->img->vmargin;
2131
2132 if (s->img->pixmap)
2133 {
2134 HDC compat_hdc = CreateCompatibleDC (hdc);
2135 HBRUSH fg_brush = CreateSolidBrush (s->gc->foreground);
2136 HBRUSH orig_brush = SelectObject (hdc, fg_brush);
2137 HGDIOBJ orig_obj = SelectObject (compat_hdc, s->img->pixmap);
2138
2139 if (s->img->mask)
2140 {
2141 HDC mask_dc = CreateCompatibleDC (hdc);
2142 HGDIOBJ mask_orig_obj = SelectObject (mask_dc, s->img->mask);
2143
2144 SetTextColor (hdc, RGB (0, 0, 0));
2145 SetBkColor (hdc, RGB (255, 255, 255));
2146 BitBlt (hdc, x, y, s->slice.width, s->slice.height,
2147 compat_hdc, s->slice.x, s->slice.y, SRCINVERT);
2148 BitBlt (hdc, x, y, s->slice.width, s->slice.height,
2149 mask_dc, s->slice.x, s->slice.y, SRCAND);
2150 BitBlt (hdc, x, y, s->slice.width, s->slice.height,
2151 compat_hdc, s->slice.x, s->slice.y, SRCINVERT);
2152
2153 SelectObject (mask_dc, mask_orig_obj);
2154 DeleteDC (mask_dc);
2155 }
2156 else
2157 {
2158 SetTextColor (hdc, s->gc->foreground);
2159 SetBkColor (hdc, s->gc->background);
2160
2161 BitBlt (hdc, x, y, s->slice.width, s->slice.height,
2162 compat_hdc, s->slice.x, s->slice.y, SRCCOPY);
2163
2164 /* When the image has a mask, we can expect that at
2165 least part of a mouse highlight or a block cursor will
2166 be visible. If the image doesn't have a mask, make
2167 a block cursor visible by drawing a rectangle around
2168 the image. I believe it's looking better if we do
2169 nothing here for mouse-face. */
2170 if (s->hl == DRAW_CURSOR)
2171 {
2172 int r = s->img->relief;
2173 if (r < 0) r = -r;
2174 w32_draw_rectangle (hdc, s->gc, x - r, y - r,
2175 s->slice.width + r*2 - 1,
2176 s->slice.height + r*2 - 1);
2177 }
2178 }
2179
2180 SelectObject (hdc, orig_brush);
2181 DeleteObject (fg_brush);
2182 SelectObject (compat_hdc, orig_obj);
2183 DeleteDC (compat_hdc);
2184 }
2185 else
2186 w32_draw_rectangle (hdc, s->gc, x, y,
2187 s->slice.width - 1, s->slice.height - 1);
2188
2189 SelectObject (hdc, orig_hdc_obj);
2190 DeleteDC (hdc);
2191 }
2192
2193
2194 /* Draw part of the background of glyph string S. X, Y, W, and H
2195 give the rectangle to draw. */
2196
2197 static void
2198 x_draw_glyph_string_bg_rect (s, x, y, w, h)
2199 struct glyph_string *s;
2200 int x, y, w, h;
2201 {
2202 #if 0 /* TODO: stipple */
2203 if (s->stippled_p)
2204 {
2205 /* Fill background with a stipple pattern. */
2206 XSetFillStyle (s->display, s->gc, FillOpaqueStippled);
2207 XFillRectangle (s->display, s->window, s->gc, x, y, w, h);
2208 XSetFillStyle (s->display, s->gc, FillSolid);
2209 }
2210 else
2211 #endif
2212 x_clear_glyph_string_rect (s, x, y, w, h);
2213 }
2214
2215
2216 /* Draw image glyph string S.
2217
2218 s->y
2219 s->x +-------------------------
2220 | s->face->box
2221 |
2222 | +-------------------------
2223 | | s->img->vmargin
2224 | |
2225 | | +-------------------
2226 | | | the image
2227
2228 */
2229
2230 static void
2231 x_draw_image_glyph_string (s)
2232 struct glyph_string *s;
2233 {
2234 int x, y;
2235 int box_line_hwidth = abs (s->face->box_line_width);
2236 int box_line_vwidth = max (s->face->box_line_width, 0);
2237 int height;
2238 HBITMAP pixmap = 0;
2239
2240 height = s->height - 2 * box_line_vwidth;
2241
2242 /* Fill background with face under the image. Do it only if row is
2243 taller than image or if image has a clip mask to reduce
2244 flickering. */
2245 s->stippled_p = s->face->stipple != 0;
2246 if (height > s->slice.height
2247 || s->img->hmargin
2248 || s->img->vmargin
2249 || s->img->mask
2250 || s->img->pixmap == 0
2251 || s->width != s->background_width)
2252 {
2253 x = s->x;
2254 if (s->first_glyph->left_box_line_p
2255 && s->slice.x == 0)
2256 x += box_line_hwidth;
2257
2258 y = s->y;
2259 if (s->slice.y == 0)
2260 y += box_line_vwidth;
2261
2262 #if 0 /* TODO: figure out if we need to do this on Windows. */
2263 if (s->img->mask)
2264 {
2265 /* Create a pixmap as large as the glyph string. Fill it
2266 with the background color. Copy the image to it, using
2267 its mask. Copy the temporary pixmap to the display. */
2268 Screen *screen = FRAME_X_SCREEN (s->f);
2269 int depth = DefaultDepthOfScreen (screen);
2270
2271 /* Create a pixmap as large as the glyph string. */
2272 pixmap = XCreatePixmap (s->display, s->window,
2273 s->background_width,
2274 s->height, depth);
2275
2276 /* Don't clip in the following because we're working on the
2277 pixmap. */
2278 XSetClipMask (s->display, s->gc, None);
2279
2280 /* Fill the pixmap with the background color/stipple. */
2281 if (s->stippled_p)
2282 {
2283 /* Fill background with a stipple pattern. */
2284 XSetFillStyle (s->display, s->gc, FillOpaqueStippled);
2285 XFillRectangle (s->display, pixmap, s->gc,
2286 0, 0, s->background_width, s->height);
2287 XSetFillStyle (s->display, s->gc, FillSolid);
2288 }
2289 else
2290 {
2291 XGCValues xgcv;
2292 XGetGCValues (s->display, s->gc, GCForeground | GCBackground,
2293 &xgcv);
2294 XSetForeground (s->display, s->gc, xgcv.background);
2295 XFillRectangle (s->display, pixmap, s->gc,
2296 0, 0, s->background_width, s->height);
2297 XSetForeground (s->display, s->gc, xgcv.foreground);
2298 }
2299 }
2300 else
2301 #endif
2302 x_draw_glyph_string_bg_rect (s, x, y, s->background_width, height);
2303
2304 s->background_filled_p = 1;
2305 }
2306
2307 /* Draw the foreground. */
2308 if (pixmap != 0)
2309 {
2310 w32_draw_image_foreground_1 (s, pixmap);
2311 x_set_glyph_string_clipping (s);
2312 {
2313 HDC compat_hdc = CreateCompatibleDC (s->hdc);
2314 HBRUSH fg_brush = CreateSolidBrush (s->gc->foreground);
2315 HBRUSH orig_brush = SelectObject (s->hdc, fg_brush);
2316 HGDIOBJ orig_obj = SelectObject (compat_hdc, pixmap);
2317
2318 SetTextColor (s->hdc, s->gc->foreground);
2319 SetBkColor (s->hdc, s->gc->background);
2320 BitBlt (s->hdc, s->x, s->y, s->background_width, s->height,
2321 compat_hdc, 0, 0, SRCCOPY);
2322
2323 SelectObject (s->hdc, orig_brush);
2324 DeleteObject (fg_brush);
2325 SelectObject (compat_hdc, orig_obj);
2326 DeleteDC (compat_hdc);
2327 }
2328 DeleteObject (pixmap);
2329 pixmap = 0;
2330 }
2331 else
2332 x_draw_image_foreground (s);
2333
2334 /* If we must draw a relief around the image, do it. */
2335 if (s->img->relief
2336 || s->hl == DRAW_IMAGE_RAISED
2337 || s->hl == DRAW_IMAGE_SUNKEN)
2338 x_draw_image_relief (s);
2339 }
2340
2341
2342 /* Draw stretch glyph string S. */
2343
2344 static void
2345 x_draw_stretch_glyph_string (s)
2346 struct glyph_string *s;
2347 {
2348 xassert (s->first_glyph->type == STRETCH_GLYPH);
2349 s->stippled_p = s->face->stipple != 0;
2350
2351 if (s->hl == DRAW_CURSOR
2352 && !x_stretch_cursor_p)
2353 {
2354 /* If `x-stretch-block-cursor' is nil, don't draw a block cursor
2355 as wide as the stretch glyph. */
2356 int width = min (FRAME_COLUMN_WIDTH (s->f), s->background_width);
2357
2358 /* Draw cursor. */
2359 x_draw_glyph_string_bg_rect (s, s->x, s->y, width, s->height);
2360
2361 /* Clear rest using the GC of the original non-cursor face. */
2362 if (width < s->background_width)
2363 {
2364 XGCValues *gc = s->face->gc;
2365 int x = s->x + width, y = s->y;
2366 int w = s->background_width - width, h = s->height;
2367 RECT r;
2368 HDC hdc = s->hdc;
2369
2370 if (s->row->mouse_face_p
2371 && cursor_in_mouse_face_p (s->w))
2372 {
2373 x_set_mouse_face_gc (s);
2374 gc = s->gc;
2375 }
2376 else
2377 gc = s->face->gc;
2378
2379 get_glyph_string_clip_rect (s, &r);
2380 w32_set_clip_rectangle (hdc, &r);
2381
2382 #if 0 /* TODO: stipple */
2383 if (s->face->stipple)
2384 {
2385 /* Fill background with a stipple pattern. */
2386 XSetFillStyle (s->display, gc, FillOpaqueStippled);
2387 XFillRectangle (s->display, s->window, gc, x, y, w, h);
2388 XSetFillStyle (s->display, gc, FillSolid);
2389 }
2390 else
2391 #endif
2392 {
2393 w32_fill_area (s->f, s->hdc, gc->background, x, y, w, h);
2394 }
2395 }
2396 }
2397 else if (!s->background_filled_p)
2398 x_draw_glyph_string_bg_rect (s, s->x, s->y, s->background_width,
2399 s->height);
2400
2401 s->background_filled_p = 1;
2402 }
2403
2404
2405 /* Draw glyph string S. */
2406
2407 static void
2408 x_draw_glyph_string (s)
2409 struct glyph_string *s;
2410 {
2411 int relief_drawn_p = 0;
2412
2413 /* If S draws into the background of its successor, draw the
2414 background of the successor first so that S can draw into it.
2415 This makes S->next use XDrawString instead of XDrawImageString. */
2416 if (s->next && s->right_overhang && !s->for_overlaps_p)
2417 {
2418 xassert (s->next->img == NULL);
2419 x_set_glyph_string_gc (s->next);
2420 x_set_glyph_string_clipping (s->next);
2421 x_draw_glyph_string_background (s->next, 1);
2422 }
2423
2424 /* Set up S->gc, set clipping and draw S. */
2425 x_set_glyph_string_gc (s);
2426
2427 /* Draw relief (if any) in advance for char/composition so that the
2428 glyph string can be drawn over it. */
2429 if (!s->for_overlaps_p
2430 && s->face->box != FACE_NO_BOX
2431 && (s->first_glyph->type == CHAR_GLYPH
2432 || s->first_glyph->type == COMPOSITE_GLYPH))
2433
2434 {
2435 x_set_glyph_string_clipping (s);
2436 x_draw_glyph_string_background (s, 1);
2437 x_draw_glyph_string_box (s);
2438 x_set_glyph_string_clipping (s);
2439 relief_drawn_p = 1;
2440 }
2441 else
2442 x_set_glyph_string_clipping (s);
2443
2444 switch (s->first_glyph->type)
2445 {
2446 case IMAGE_GLYPH:
2447 x_draw_image_glyph_string (s);
2448 break;
2449
2450 case STRETCH_GLYPH:
2451 x_draw_stretch_glyph_string (s);
2452 break;
2453
2454 case CHAR_GLYPH:
2455 if (s->for_overlaps_p)
2456 s->background_filled_p = 1;
2457 else
2458 x_draw_glyph_string_background (s, 0);
2459 x_draw_glyph_string_foreground (s);
2460 break;
2461
2462 case COMPOSITE_GLYPH:
2463 if (s->for_overlaps_p || s->gidx > 0)
2464 s->background_filled_p = 1;
2465 else
2466 x_draw_glyph_string_background (s, 1);
2467 x_draw_composite_glyph_string_foreground (s);
2468 break;
2469
2470 default:
2471 abort ();
2472 }
2473
2474 if (!s->for_overlaps_p)
2475 {
2476 /* Draw underline. */
2477 if (s->face->underline_p
2478 && (s->font->bdf || !s->font->tm.tmUnderlined))
2479 {
2480 unsigned long h = 1;
2481 unsigned long dy = s->height - h;
2482
2483 /* TODO: Use font information for positioning and thickness
2484 of underline. See OUTLINETEXTMETRIC, and xterm.c. */
2485 if (s->face->underline_defaulted_p)
2486 {
2487 w32_fill_area (s->f, s->hdc, s->gc->foreground, s->x,
2488 s->y + dy, s->width, 1);
2489 }
2490 else
2491 {
2492 w32_fill_area (s->f, s->hdc, s->face->underline_color, s->x,
2493 s->y + dy, s->width, 1);
2494 }
2495 }
2496
2497 /* Draw overline. */
2498 if (s->face->overline_p)
2499 {
2500 unsigned long dy = 0, h = 1;
2501
2502 if (s->face->overline_color_defaulted_p)
2503 {
2504 w32_fill_area (s->f, s->hdc, s->gc->foreground, s->x,
2505 s->y + dy, s->width, h);
2506 }
2507 else
2508 {
2509 w32_fill_area (s->f, s->hdc, s->face->underline_color, s->x,
2510 s->y + dy, s->width, h);
2511 }
2512 }
2513
2514 /* Draw strike-through. */
2515 if (s->face->strike_through_p
2516 && (s->font->bdf || !s->font->tm.tmStruckOut))
2517 {
2518 unsigned long h = 1;
2519 unsigned long dy = (s->height - h) / 2;
2520
2521 if (s->face->strike_through_color_defaulted_p)
2522 {
2523 w32_fill_area (s->f, s->hdc, s->gc->foreground, s->x, s->y + dy,
2524 s->width, h);
2525 }
2526 else
2527 {
2528 w32_fill_area (s->f, s->hdc, s->face->underline_color, s->x,
2529 s->y + dy, s->width, h);
2530 }
2531 }
2532
2533 /* Draw relief. */
2534 if (!relief_drawn_p && s->face->box != FACE_NO_BOX)
2535 x_draw_glyph_string_box (s);
2536 }
2537
2538 /* Reset clipping. */
2539 w32_set_clip_rectangle (s->hdc, NULL);
2540 }
2541
2542
2543 /* Shift display to make room for inserted glyphs. */
2544
2545 void
2546 w32_shift_glyphs_for_insert (f, x, y, width, height, shift_by)
2547 struct frame *f;
2548 int x, y, width, height, shift_by;
2549 {
2550 HDC hdc;
2551
2552 hdc = get_frame_dc (f);
2553 BitBlt (hdc, x + shift_by, y, width, height,
2554 hdc, x, y, SRCCOPY);
2555
2556 release_frame_dc (f, hdc);
2557 }
2558
2559
2560 /* Delete N glyphs at the nominal cursor position. Not implemented
2561 for X frames. */
2562
2563 static void
2564 x_delete_glyphs (n)
2565 register int n;
2566 {
2567 struct frame *f;
2568
2569 if (updating_frame)
2570 f = updating_frame;
2571 else
2572 f = SELECTED_FRAME ();
2573
2574 if (! FRAME_W32_P (f))
2575 return;
2576
2577 abort ();
2578 }
2579
2580
2581 /* Clear entire frame. If updating_frame is non-null, clear that
2582 frame. Otherwise clear the selected frame. */
2583
2584 static void
2585 x_clear_frame ()
2586 {
2587 struct frame *f;
2588
2589 if (updating_frame)
2590 f = updating_frame;
2591 else
2592 f = SELECTED_FRAME ();
2593
2594 if (! FRAME_W32_P (f))
2595 return;
2596
2597 /* Clearing the frame will erase any cursor, so mark them all as no
2598 longer visible. */
2599 mark_window_cursors_off (XWINDOW (FRAME_ROOT_WINDOW (f)));
2600 output_cursor.hpos = output_cursor.vpos = 0;
2601 output_cursor.x = -1;
2602
2603 /* We don't set the output cursor here because there will always
2604 follow an explicit cursor_to. */
2605 BLOCK_INPUT;
2606
2607 w32_clear_window (f);
2608
2609 /* We have to clear the scroll bars, too. If we have changed
2610 colors or something like that, then they should be notified. */
2611 x_scroll_bar_clear (f);
2612
2613 UNBLOCK_INPUT;
2614 }
2615
2616 \f
2617 /* Make audible bell. */
2618
2619 static void
2620 w32_ring_bell (void)
2621 {
2622 struct frame *f;
2623
2624 f = SELECTED_FRAME ();
2625
2626 BLOCK_INPUT;
2627
2628 if (FRAME_W32_P (f) && visible_bell)
2629 {
2630 int i;
2631 HWND hwnd = FRAME_W32_WINDOW (SELECTED_FRAME ());
2632
2633 for (i = 0; i < 5; i++)
2634 {
2635 FlashWindow (hwnd, TRUE);
2636 Sleep (10);
2637 }
2638 FlashWindow (hwnd, FALSE);
2639 }
2640 else
2641 w32_sys_ring_bell ();
2642
2643 UNBLOCK_INPUT;
2644 }
2645
2646 \f
2647 /* Specify how many text lines, from the top of the window,
2648 should be affected by insert-lines and delete-lines operations.
2649 This, and those operations, are used only within an update
2650 that is bounded by calls to x_update_begin and x_update_end. */
2651
2652 static void
2653 w32_set_terminal_window (n)
2654 register int n;
2655 {
2656 /* This function intentionally left blank. */
2657 }
2658
2659 \f
2660 /***********************************************************************
2661 Line Dance
2662 ***********************************************************************/
2663
2664 /* Perform an insert-lines or delete-lines operation, inserting N
2665 lines or deleting -N lines at vertical position VPOS. */
2666
2667 static void
2668 x_ins_del_lines (vpos, n)
2669 int vpos, n;
2670 {
2671 struct frame *f;
2672
2673 if (updating_frame)
2674 f = updating_frame;
2675 else
2676 f = SELECTED_FRAME ();
2677
2678 if (! FRAME_W32_P (f))
2679 return;
2680
2681 abort ();
2682 }
2683
2684
2685 /* Scroll part of the display as described by RUN. */
2686
2687 static void
2688 x_scroll_run (w, run)
2689 struct window *w;
2690 struct run *run;
2691 {
2692 struct frame *f = XFRAME (w->frame);
2693 int x, y, width, height, from_y, to_y, bottom_y;
2694 HWND hwnd = FRAME_W32_WINDOW (f);
2695 HRGN expect_dirty;
2696
2697 /* Get frame-relative bounding box of the text display area of W,
2698 without mode lines. Include in this box the left and right
2699 fringes of W. */
2700 window_box (w, -1, &x, &y, &width, &height);
2701
2702 from_y = WINDOW_TO_FRAME_PIXEL_Y (w, run->current_y);
2703 to_y = WINDOW_TO_FRAME_PIXEL_Y (w, run->desired_y);
2704 bottom_y = y + height;
2705
2706 if (to_y < from_y)
2707 {
2708 /* Scrolling up. Make sure we don't copy part of the mode
2709 line at the bottom. */
2710 if (from_y + run->height > bottom_y)
2711 height = bottom_y - from_y;
2712 else
2713 height = run->height;
2714 expect_dirty = CreateRectRgn (x, y + height, x + width, bottom_y);
2715 }
2716 else
2717 {
2718 /* Scolling down. Make sure we don't copy over the mode line.
2719 at the bottom. */
2720 if (to_y + run->height > bottom_y)
2721 height = bottom_y - to_y;
2722 else
2723 height = run->height;
2724 expect_dirty = CreateRectRgn (x, y, x + width, to_y);
2725 }
2726
2727 BLOCK_INPUT;
2728
2729 /* Cursor off. Will be switched on again in x_update_window_end. */
2730 updated_window = w;
2731 x_clear_cursor (w);
2732
2733 {
2734 RECT from;
2735 RECT to;
2736 HRGN dirty = CreateRectRgn (0, 0, 0, 0);
2737 HRGN combined = CreateRectRgn (0, 0, 0, 0);
2738
2739 from.left = to.left = x;
2740 from.right = to.right = x + width;
2741 from.top = from_y;
2742 from.bottom = from_y + height;
2743 to.top = y;
2744 to.bottom = bottom_y;
2745
2746 ScrollWindowEx (hwnd, 0, to_y - from_y, &from, &to, dirty,
2747 NULL, SW_INVALIDATE);
2748
2749 /* Combine this with what we expect to be dirty. This covers the
2750 case where not all of the region we expect is actually dirty. */
2751 CombineRgn (combined, dirty, expect_dirty, RGN_OR);
2752
2753 /* If the dirty region is not what we expected, redraw the entire frame. */
2754 if (!EqualRgn (combined, expect_dirty))
2755 SET_FRAME_GARBAGED (f);
2756 }
2757
2758 UNBLOCK_INPUT;
2759 }
2760
2761
2762 \f
2763 /***********************************************************************
2764 Exposure Events
2765 ***********************************************************************/
2766
2767 static void
2768 frame_highlight (f)
2769 struct frame *f;
2770 {
2771 x_update_cursor (f, 1);
2772 }
2773
2774 static void
2775 frame_unhighlight (f)
2776 struct frame *f;
2777 {
2778 x_update_cursor (f, 1);
2779 }
2780
2781 /* The focus has changed. Update the frames as necessary to reflect
2782 the new situation. Note that we can't change the selected frame
2783 here, because the Lisp code we are interrupting might become confused.
2784 Each event gets marked with the frame in which it occurred, so the
2785 Lisp code can tell when the switch took place by examining the events. */
2786
2787 static void
2788 x_new_focus_frame (dpyinfo, frame)
2789 struct w32_display_info *dpyinfo;
2790 struct frame *frame;
2791 {
2792 struct frame *old_focus = dpyinfo->w32_focus_frame;
2793
2794 if (frame != dpyinfo->w32_focus_frame)
2795 {
2796 /* Set this before calling other routines, so that they see
2797 the correct value of w32_focus_frame. */
2798 dpyinfo->w32_focus_frame = frame;
2799
2800 if (old_focus && old_focus->auto_lower)
2801 x_lower_frame (old_focus);
2802
2803
2804
2805
2806
2807
2808
2809
2810
2811 if (dpyinfo->w32_focus_frame && dpyinfo->w32_focus_frame->auto_raise)
2812 pending_autoraise_frame = dpyinfo->w32_focus_frame;
2813 else
2814 pending_autoraise_frame = 0;
2815 }
2816
2817 x_frame_rehighlight (dpyinfo);
2818 }
2819
2820 /* Handle an event saying the mouse has moved out of an Emacs frame. */
2821
2822 void
2823 x_mouse_leave (dpyinfo)
2824 struct w32_display_info *dpyinfo;
2825 {
2826 x_new_focus_frame (dpyinfo, dpyinfo->w32_focus_event_frame);
2827 }
2828
2829 /* The focus has changed, or we have redirected a frame's focus to
2830 another frame (this happens when a frame uses a surrogate
2831 mini-buffer frame). Shift the highlight as appropriate.
2832
2833 The FRAME argument doesn't necessarily have anything to do with which
2834 frame is being highlighted or un-highlighted; we only use it to find
2835 the appropriate X display info. */
2836
2837 static void
2838 w32_frame_rehighlight (frame)
2839 struct frame *frame;
2840 {
2841 if (! FRAME_W32_P (frame))
2842 return;
2843 x_frame_rehighlight (FRAME_W32_DISPLAY_INFO (frame));
2844 }
2845
2846 static void
2847 x_frame_rehighlight (dpyinfo)
2848 struct w32_display_info *dpyinfo;
2849 {
2850 struct frame *old_highlight = dpyinfo->x_highlight_frame;
2851
2852 if (dpyinfo->w32_focus_frame)
2853 {
2854 dpyinfo->x_highlight_frame
2855 = ((GC_FRAMEP (FRAME_FOCUS_FRAME (dpyinfo->w32_focus_frame)))
2856 ? XFRAME (FRAME_FOCUS_FRAME (dpyinfo->w32_focus_frame))
2857 : dpyinfo->w32_focus_frame);
2858 if (! FRAME_LIVE_P (dpyinfo->x_highlight_frame))
2859 {
2860 FRAME_FOCUS_FRAME (dpyinfo->w32_focus_frame) = Qnil;
2861 dpyinfo->x_highlight_frame = dpyinfo->w32_focus_frame;
2862 }
2863 }
2864 else
2865 dpyinfo->x_highlight_frame = 0;
2866
2867 if (dpyinfo->x_highlight_frame != old_highlight)
2868 {
2869 if (old_highlight)
2870 frame_unhighlight (old_highlight);
2871 if (dpyinfo->x_highlight_frame)
2872 frame_highlight (dpyinfo->x_highlight_frame);
2873 }
2874 }
2875 \f
2876 /* Keyboard processing - modifier keys, etc. */
2877
2878 /* Convert a keysym to its name. */
2879
2880 char *
2881 x_get_keysym_name (keysym)
2882 int keysym;
2883 {
2884 /* Make static so we can always return it */
2885 static char value[100];
2886
2887 BLOCK_INPUT;
2888 GetKeyNameText (keysym, value, 100);
2889 UNBLOCK_INPUT;
2890
2891 return value;
2892 }
2893
2894
2895 \f
2896 /* Mouse clicks and mouse movement. Rah. */
2897
2898 /* Parse a button MESSAGE. The button index is returned in PBUTTON, and
2899 the state in PUP. XBUTTON provides extra information for extended mouse
2900 button messages. Returns FALSE if unable to parse the message. */
2901 BOOL
2902 parse_button (message, xbutton, pbutton, pup)
2903 int message;
2904 int xbutton;
2905 int * pbutton;
2906 int * pup;
2907 {
2908 int button = 0;
2909 int up = 0;
2910
2911 switch (message)
2912 {
2913 case WM_LBUTTONDOWN:
2914 button = 0;
2915 up = 0;
2916 break;
2917 case WM_LBUTTONUP:
2918 button = 0;
2919 up = 1;
2920 break;
2921 case WM_MBUTTONDOWN:
2922 if (NILP (Vw32_swap_mouse_buttons))
2923 button = 1;
2924 else
2925 button = 2;
2926 up = 0;
2927 break;
2928 case WM_MBUTTONUP:
2929 if (NILP (Vw32_swap_mouse_buttons))
2930 button = 1;
2931 else
2932 button = 2;
2933 up = 1;
2934 break;
2935 case WM_RBUTTONDOWN:
2936 if (NILP (Vw32_swap_mouse_buttons))
2937 button = 2;
2938 else
2939 button = 1;
2940 up = 0;
2941 break;
2942 case WM_RBUTTONUP:
2943 if (NILP (Vw32_swap_mouse_buttons))
2944 button = 2;
2945 else
2946 button = 1;
2947 up = 1;
2948 break;
2949 case WM_XBUTTONDOWN:
2950 button = xbutton + 2;
2951 up = 0;
2952 break;
2953 case WM_XBUTTONUP:
2954 button = xbutton + 2;
2955 up = 1;
2956 break;
2957 default:
2958 return (FALSE);
2959 }
2960
2961 if (pup) *pup = up;
2962 if (pbutton) *pbutton = button;
2963
2964 return (TRUE);
2965 }
2966
2967
2968 /* Prepare a mouse-event in *RESULT for placement in the input queue.
2969
2970 If the event is a button press, then note that we have grabbed
2971 the mouse. */
2972
2973 static Lisp_Object
2974 construct_mouse_click (result, msg, f)
2975 struct input_event *result;
2976 W32Msg *msg;
2977 struct frame *f;
2978 {
2979 int button;
2980 int up;
2981
2982 parse_button (msg->msg.message, HIWORD (msg->msg.wParam),
2983 &button, &up);
2984
2985 /* Make the event type NO_EVENT; we'll change that when we decide
2986 otherwise. */
2987 result->kind = MOUSE_CLICK_EVENT;
2988 result->code = button;
2989 result->timestamp = msg->msg.time;
2990 result->modifiers = (msg->dwModifiers
2991 | (up
2992 ? up_modifier
2993 : down_modifier));
2994
2995 XSETINT (result->x, LOWORD (msg->msg.lParam));
2996 XSETINT (result->y, HIWORD (msg->msg.lParam));
2997 XSETFRAME (result->frame_or_window, f);
2998 result->arg = Qnil;
2999 return Qnil;
3000 }
3001
3002 static Lisp_Object
3003 construct_mouse_wheel (result, msg, f)
3004 struct input_event *result;
3005 W32Msg *msg;
3006 struct frame *f;
3007 {
3008 POINT p;
3009 int delta;
3010
3011 result->kind = WHEEL_EVENT;
3012 result->code = 0;
3013 result->timestamp = msg->msg.time;
3014
3015 /* A WHEEL_DELTA positive value indicates that the wheel was rotated
3016 forward, away from the user (up); a negative value indicates that
3017 the wheel was rotated backward, toward the user (down). */
3018 delta = GET_WHEEL_DELTA_WPARAM (msg->msg.wParam);
3019
3020 /* The up and down modifiers indicate if the wheel was rotated up or
3021 down based on WHEEL_DELTA value. */
3022 result->modifiers = (msg->dwModifiers
3023 | ((delta < 0 ) ? down_modifier : up_modifier));
3024
3025 p.x = LOWORD (msg->msg.lParam);
3026 p.y = HIWORD (msg->msg.lParam);
3027 ScreenToClient (msg->msg.hwnd, &p);
3028 XSETINT (result->x, p.x);
3029 XSETINT (result->y, p.y);
3030 XSETFRAME (result->frame_or_window, f);
3031 result->arg = Qnil;
3032 return Qnil;
3033 }
3034
3035 static Lisp_Object
3036 construct_drag_n_drop (result, msg, f)
3037 struct input_event *result;
3038 W32Msg *msg;
3039 struct frame *f;
3040 {
3041 Lisp_Object files;
3042 Lisp_Object frame;
3043 HDROP hdrop;
3044 POINT p;
3045 WORD num_files;
3046 char *name;
3047 int i, len;
3048
3049 result->kind = DRAG_N_DROP_EVENT;
3050 result->code = 0;
3051 result->timestamp = msg->msg.time;
3052 result->modifiers = msg->dwModifiers;
3053
3054 hdrop = (HDROP) msg->msg.wParam;
3055 DragQueryPoint (hdrop, &p);
3056
3057 #if 0
3058 p.x = LOWORD (msg->msg.lParam);
3059 p.y = HIWORD (msg->msg.lParam);
3060 ScreenToClient (msg->msg.hwnd, &p);
3061 #endif
3062
3063 XSETINT (result->x, p.x);
3064 XSETINT (result->y, p.y);
3065
3066 num_files = DragQueryFile (hdrop, 0xFFFFFFFF, NULL, 0);
3067 files = Qnil;
3068
3069 for (i = 0; i < num_files; i++)
3070 {
3071 len = DragQueryFile (hdrop, i, NULL, 0);
3072 if (len <= 0)
3073 continue;
3074 name = alloca (len + 1);
3075 DragQueryFile (hdrop, i, name, len + 1);
3076 files = Fcons (DECODE_FILE (build_string (name)), files);
3077 }
3078
3079 DragFinish (hdrop);
3080
3081 XSETFRAME (frame, f);
3082 result->frame_or_window = Fcons (frame, files);
3083 result->arg = Qnil;
3084 return Qnil;
3085 }
3086
3087 \f
3088 /* Function to report a mouse movement to the mainstream Emacs code.
3089 The input handler calls this.
3090
3091 We have received a mouse movement event, which is given in *event.
3092 If the mouse is over a different glyph than it was last time, tell
3093 the mainstream emacs code by setting mouse_moved. If not, ask for
3094 another motion event, so we can check again the next time it moves. */
3095
3096 static MSG last_mouse_motion_event;
3097 static Lisp_Object last_mouse_motion_frame;
3098
3099 static void remember_mouse_glyph P_ ((struct frame *, int, int));
3100
3101 static void
3102 note_mouse_movement (frame, msg)
3103 FRAME_PTR frame;
3104 MSG *msg;
3105 {
3106 int mouse_x = LOWORD (msg->lParam);
3107 int mouse_y = HIWORD (msg->lParam);
3108
3109 last_mouse_movement_time = msg->time;
3110 memcpy (&last_mouse_motion_event, msg, sizeof (last_mouse_motion_event));
3111 XSETFRAME (last_mouse_motion_frame, frame);
3112
3113 if (msg->hwnd != FRAME_W32_WINDOW (frame))
3114 {
3115 frame->mouse_moved = 1;
3116 last_mouse_scroll_bar = Qnil;
3117 note_mouse_highlight (frame, -1, -1);
3118 }
3119
3120 /* Has the mouse moved off the glyph it was on at the last sighting? */
3121 else if (mouse_x < last_mouse_glyph.left
3122 || mouse_x > last_mouse_glyph.right
3123 || mouse_y < last_mouse_glyph.top
3124 || mouse_y > last_mouse_glyph.bottom)
3125 {
3126 frame->mouse_moved = 1;
3127 last_mouse_scroll_bar = Qnil;
3128 note_mouse_highlight (frame, mouse_x, mouse_y);
3129 /* Remember the mouse position here, as w32_mouse_position only
3130 gets called when mouse tracking is enabled but we also need
3131 to keep track of the mouse for help_echo and highlighting at
3132 other times. */
3133 remember_mouse_glyph (frame, mouse_x, mouse_y);
3134 }
3135 }
3136
3137 \f
3138 /************************************************************************
3139 Mouse Face
3140 ************************************************************************/
3141
3142 static struct scroll_bar *x_window_to_scroll_bar ();
3143 static void x_scroll_bar_report_motion ();
3144 static void x_check_fullscreen P_ ((struct frame *));
3145 static int glyph_rect P_ ((struct frame *f, int, int, RECT *));
3146
3147
3148 static void
3149 redo_mouse_highlight ()
3150 {
3151 if (!NILP (last_mouse_motion_frame)
3152 && FRAME_LIVE_P (XFRAME (last_mouse_motion_frame)))
3153 note_mouse_highlight (XFRAME (last_mouse_motion_frame),
3154 LOWORD (last_mouse_motion_event.lParam),
3155 HIWORD (last_mouse_motion_event.lParam));
3156 }
3157
3158 void
3159 w32_define_cursor (window, cursor)
3160 Window window;
3161 Cursor cursor;
3162 {
3163 PostMessage (window, WM_EMACS_SETCURSOR, (WPARAM) cursor, 0);
3164 }
3165
3166 /* Try to determine frame pixel position and size of the glyph under
3167 frame pixel coordinates X/Y on frame F . Return the position and
3168 size in *RECT. Value is non-zero if we could compute these
3169 values. */
3170
3171 static int
3172 glyph_rect (f, x, y, rect)
3173 struct frame *f;
3174 int x, y;
3175 RECT *rect;
3176 {
3177 Lisp_Object window;
3178
3179 window = window_from_coordinates (f, x, y, 0, &x, &y, 0);
3180
3181 if (!NILP (window))
3182 {
3183 struct window *w = XWINDOW (window);
3184 struct glyph_row *r = MATRIX_FIRST_TEXT_ROW (w->current_matrix);
3185 struct glyph_row *end = r + w->current_matrix->nrows - 1;
3186
3187 for (; r < end && r->enabled_p; ++r)
3188 if (r->y <= y && r->y + r->height > y)
3189 {
3190 /* Found the row at y. */
3191 struct glyph *g = r->glyphs[TEXT_AREA];
3192 struct glyph *end = g + r->used[TEXT_AREA];
3193 int gx;
3194
3195 rect->top = WINDOW_TO_FRAME_PIXEL_Y (w, r->y);
3196 rect->bottom = rect->top + r->height;
3197
3198 if (x < r->x)
3199 {
3200 /* x is to the left of the first glyph in the row. */
3201 /* Shouldn't this be a pixel value?
3202 WINDOW_LEFT_EDGE_X (w) seems to be the right value.
3203 ++KFS */
3204 rect->left = WINDOW_LEFT_EDGE_COL (w);
3205 rect->right = WINDOW_TO_FRAME_PIXEL_X (w, r->x);
3206 return 1;
3207 }
3208
3209 for (gx = r->x; g < end; gx += g->pixel_width, ++g)
3210 if (gx <= x && gx + g->pixel_width > x)
3211 {
3212 /* x is on a glyph. */
3213 rect->left = WINDOW_TO_FRAME_PIXEL_X (w, gx);
3214 rect->right = rect->left + g->pixel_width;
3215 return 1;
3216 }
3217
3218 /* x is to the right of the last glyph in the row. */
3219 rect->left = WINDOW_TO_FRAME_PIXEL_X (w, gx);
3220 /* Shouldn't this be a pixel value?
3221 WINDOW_RIGHT_EDGE_X (w) seems to be the right value.
3222 ++KFS */
3223 rect->right = WINDOW_RIGHT_EDGE_COL (w);
3224 return 1;
3225 }
3226 }
3227
3228 /* The y is not on any row. */
3229 return 0;
3230 }
3231
3232 /* Record the position of the mouse in last_mouse_glyph. */
3233 static void
3234 remember_mouse_glyph (f1, gx, gy)
3235 struct frame * f1;
3236 int gx, gy;
3237 {
3238 if (!glyph_rect (f1, gx, gy, &last_mouse_glyph))
3239 {
3240 int width = FRAME_SMALLEST_CHAR_WIDTH (f1);
3241 int height = FRAME_SMALLEST_FONT_HEIGHT (f1);
3242
3243 /* Arrange for the division in FRAME_PIXEL_X_TO_COL etc. to
3244 round down even for negative values. */
3245 if (gx < 0)
3246 gx -= width - 1;
3247 if (gy < 0)
3248 gy -= height - 1;
3249 #if 0
3250 /* This was the original code from XTmouse_position, but it seems
3251 to give the position of the glyph diagonally next to the one
3252 the mouse is over. */
3253 gx = (gx + width - 1) / width * width;
3254 gy = (gy + height - 1) / height * height;
3255 #else
3256 gx = gx / width * width;
3257 gy = gy / height * height;
3258 #endif
3259
3260 last_mouse_glyph.left = gx;
3261 last_mouse_glyph.top = gy;
3262 last_mouse_glyph.right = gx + width;
3263 last_mouse_glyph.bottom = gy + height;
3264 }
3265 }
3266
3267 /* Return the current position of the mouse.
3268 *fp should be a frame which indicates which display to ask about.
3269
3270 If the mouse movement started in a scroll bar, set *fp, *bar_window,
3271 and *part to the frame, window, and scroll bar part that the mouse
3272 is over. Set *x and *y to the portion and whole of the mouse's
3273 position on the scroll bar.
3274
3275 If the mouse movement started elsewhere, set *fp to the frame the
3276 mouse is on, *bar_window to nil, and *x and *y to the character cell
3277 the mouse is over.
3278
3279 Set *time to the server time-stamp for the time at which the mouse
3280 was at this position.
3281
3282 Don't store anything if we don't have a valid set of values to report.
3283
3284 This clears the mouse_moved flag, so we can wait for the next mouse
3285 movement. */
3286
3287 static void
3288 w32_mouse_position (fp, insist, bar_window, part, x, y, time)
3289 FRAME_PTR *fp;
3290 int insist;
3291 Lisp_Object *bar_window;
3292 enum scroll_bar_part *part;
3293 Lisp_Object *x, *y;
3294 unsigned long *time;
3295 {
3296 FRAME_PTR f1;
3297
3298 BLOCK_INPUT;
3299
3300 if (! NILP (last_mouse_scroll_bar) && insist == 0)
3301 x_scroll_bar_report_motion (fp, bar_window, part, x, y, time);
3302 else
3303 {
3304 POINT pt;
3305
3306 Lisp_Object frame, tail;
3307
3308 /* Clear the mouse-moved flag for every frame on this display. */
3309 FOR_EACH_FRAME (tail, frame)
3310 XFRAME (frame)->mouse_moved = 0;
3311
3312 last_mouse_scroll_bar = Qnil;
3313
3314 GetCursorPos (&pt);
3315
3316 /* Now we have a position on the root; find the innermost window
3317 containing the pointer. */
3318 {
3319 if (FRAME_W32_DISPLAY_INFO (*fp)->grabbed && last_mouse_frame
3320 && FRAME_LIVE_P (last_mouse_frame))
3321 {
3322 /* If mouse was grabbed on a frame, give coords for that frame
3323 even if the mouse is now outside it. */
3324 f1 = last_mouse_frame;
3325 }
3326 else
3327 {
3328 /* Is window under mouse one of our frames? */
3329 f1 = x_any_window_to_frame (FRAME_W32_DISPLAY_INFO (*fp),
3330 WindowFromPoint (pt));
3331 }
3332
3333 /* If not, is it one of our scroll bars? */
3334 if (! f1)
3335 {
3336 struct scroll_bar *bar
3337 = x_window_to_scroll_bar (WindowFromPoint (pt));
3338
3339 if (bar)
3340 {
3341 f1 = XFRAME (WINDOW_FRAME (XWINDOW (bar->window)));
3342 }
3343 }
3344
3345 if (f1 == 0 && insist > 0)
3346 f1 = SELECTED_FRAME ();
3347
3348 if (f1)
3349 {
3350 /* Ok, we found a frame. Store all the values.
3351 last_mouse_glyph is a rectangle used to reduce the
3352 generation of mouse events. To not miss any motion
3353 events, we must divide the frame into rectangles of the
3354 size of the smallest character that could be displayed
3355 on it, i.e. into the same rectangles that matrices on
3356 the frame are divided into. */
3357
3358 #if OLD_REDISPLAY_CODE
3359 int ignore1, ignore2;
3360
3361 ScreenToClient (FRAME_W32_WINDOW (f1), &pt);
3362
3363 pixel_to_glyph_coords (f1, pt.x, pt.y, &ignore1, &ignore2,
3364 &last_mouse_glyph,
3365 FRAME_W32_DISPLAY_INFO (f1)->grabbed
3366 || insist);
3367 #else
3368 ScreenToClient (FRAME_W32_WINDOW (f1), &pt);
3369 remember_mouse_glyph (f1, pt.x, pt.y);
3370 #endif
3371
3372 *bar_window = Qnil;
3373 *part = 0;
3374 *fp = f1;
3375 XSETINT (*x, pt.x);
3376 XSETINT (*y, pt.y);
3377 *time = last_mouse_movement_time;
3378 }
3379 }
3380 }
3381
3382 UNBLOCK_INPUT;
3383 }
3384
3385 \f
3386 /***********************************************************************
3387 Tool-bars
3388 ***********************************************************************/
3389
3390 /* Handle mouse button event on the tool-bar of frame F, at
3391 frame-relative coordinates X/Y. EVENT_TYPE is either ButtionPress
3392 or ButtonRelase. */
3393
3394 static void
3395 w32_handle_tool_bar_click (f, button_event)
3396 struct frame *f;
3397 struct input_event *button_event;
3398 {
3399 int x = XFASTINT (button_event->x);
3400 int y = XFASTINT (button_event->y);
3401
3402 if (button_event->modifiers & down_modifier)
3403 handle_tool_bar_click (f, x, y, 1, 0);
3404 else
3405 handle_tool_bar_click (f, x, y, 0,
3406 button_event->modifiers & ~up_modifier);
3407 }
3408
3409
3410 \f
3411 /***********************************************************************
3412 Scroll bars
3413 ***********************************************************************/
3414
3415 /* Scroll bar support. */
3416
3417 /* Given a window ID, find the struct scroll_bar which manages it.
3418 This can be called in GC, so we have to make sure to strip off mark
3419 bits. */
3420
3421 static struct scroll_bar *
3422 x_window_to_scroll_bar (window_id)
3423 Window window_id;
3424 {
3425 Lisp_Object tail;
3426
3427 for (tail = Vframe_list;
3428 XGCTYPE (tail) == Lisp_Cons;
3429 tail = XCDR (tail))
3430 {
3431 Lisp_Object frame, bar, condemned;
3432
3433 frame = XCAR (tail);
3434 /* All elements of Vframe_list should be frames. */
3435 if (! GC_FRAMEP (frame))
3436 abort ();
3437
3438 /* Scan this frame's scroll bar list for a scroll bar with the
3439 right window ID. */
3440 condemned = FRAME_CONDEMNED_SCROLL_BARS (XFRAME (frame));
3441 for (bar = FRAME_SCROLL_BARS (XFRAME (frame));
3442 /* This trick allows us to search both the ordinary and
3443 condemned scroll bar lists with one loop. */
3444 ! GC_NILP (bar) || (bar = condemned,
3445 condemned = Qnil,
3446 ! GC_NILP (bar));
3447 bar = XSCROLL_BAR (bar)->next)
3448 if (SCROLL_BAR_W32_WINDOW (XSCROLL_BAR (bar)) == window_id)
3449 return XSCROLL_BAR (bar);
3450 }
3451
3452 return 0;
3453 }
3454
3455
3456 \f
3457 /* Set the thumb size and position of scroll bar BAR. We are currently
3458 displaying PORTION out of a whole WHOLE, and our position POSITION. */
3459
3460 static void
3461 w32_set_scroll_bar_thumb (bar, portion, position, whole)
3462 struct scroll_bar *bar;
3463 int portion, position, whole;
3464 {
3465 Window w = SCROLL_BAR_W32_WINDOW (bar);
3466 double range = VERTICAL_SCROLL_BAR_TOP_RANGE (f, XINT (bar->height));
3467 int sb_page, sb_pos;
3468 BOOL draggingp = !NILP (bar->dragging) ? TRUE : FALSE;
3469
3470 if (whole)
3471 {
3472 /* Position scroll bar at rock bottom if the bottom of the
3473 buffer is visible. This avoids shinking the thumb away
3474 to nothing if it is held at the bottom of the buffer. */
3475 if (position + portion >= whole)
3476 {
3477 sb_page = range * (whole - position) / whole
3478 + VERTICAL_SCROLL_BAR_MIN_HANDLE;
3479 sb_pos = range;
3480 }
3481
3482 sb_page = portion * range / whole + VERTICAL_SCROLL_BAR_MIN_HANDLE;
3483 sb_pos = position * range / whole;
3484 }
3485 else
3486 {
3487 sb_page = range;
3488 sb_pos = 0;
3489 }
3490
3491 BLOCK_INPUT;
3492
3493 if (pfnSetScrollInfo)
3494 {
3495 SCROLLINFO si;
3496
3497 si.cbSize = sizeof (si);
3498 /* Only update page size if currently dragging, to reduce
3499 flicker effects. */
3500 if (draggingp)
3501 si.fMask = SIF_PAGE;
3502 else
3503 si.fMask = SIF_PAGE | SIF_POS;
3504 si.nPage = sb_page;
3505 si.nPos = sb_pos;
3506
3507 pfnSetScrollInfo (w, SB_CTL, &si, !draggingp);
3508 }
3509 else
3510 SetScrollPos (w, SB_CTL, sb_pos, !draggingp);
3511
3512 UNBLOCK_INPUT;
3513 }
3514
3515 \f
3516 /************************************************************************
3517 Scroll bars, general
3518 ************************************************************************/
3519
3520 HWND
3521 my_create_scrollbar (f, bar)
3522 struct frame * f;
3523 struct scroll_bar * bar;
3524 {
3525 return (HWND) SendMessage (FRAME_W32_WINDOW (f),
3526 WM_EMACS_CREATESCROLLBAR, (WPARAM) f,
3527 (LPARAM) bar);
3528 }
3529
3530 /*#define ATTACH_THREADS*/
3531
3532 BOOL
3533 my_show_window (FRAME_PTR f, HWND hwnd, int how)
3534 {
3535 #ifndef ATTACH_THREADS
3536 return SendMessage (FRAME_W32_WINDOW (f), WM_EMACS_SHOWWINDOW,
3537 (WPARAM) hwnd, (LPARAM) how);
3538 #else
3539 return ShowWindow (hwnd, how);
3540 #endif
3541 }
3542
3543 void
3544 my_set_window_pos (HWND hwnd, HWND hwndAfter,
3545 int x, int y, int cx, int cy, UINT flags)
3546 {
3547 #ifndef ATTACH_THREADS
3548 WINDOWPOS pos;
3549 pos.hwndInsertAfter = hwndAfter;
3550 pos.x = x;
3551 pos.y = y;
3552 pos.cx = cx;
3553 pos.cy = cy;
3554 pos.flags = flags;
3555 SendMessage (hwnd, WM_EMACS_SETWINDOWPOS, (WPARAM) &pos, 0);
3556 #else
3557 SetWindowPos (hwnd, hwndAfter, x, y, cx, cy, flags);
3558 #endif
3559 }
3560
3561 void
3562 my_set_focus (f, hwnd)
3563 struct frame * f;
3564 HWND hwnd;
3565 {
3566 SendMessage (FRAME_W32_WINDOW (f), WM_EMACS_SETFOCUS,
3567 (WPARAM) hwnd, 0);
3568 }
3569
3570 void
3571 my_set_foreground_window (hwnd)
3572 HWND hwnd;
3573 {
3574 SendMessage (hwnd, WM_EMACS_SETFOREGROUND, (WPARAM) hwnd, 0);
3575 }
3576
3577 void
3578 my_destroy_window (f, hwnd)
3579 struct frame * f;
3580 HWND hwnd;
3581 {
3582 SendMessage (FRAME_W32_WINDOW (f), WM_EMACS_DESTROYWINDOW,
3583 (WPARAM) hwnd, 0);
3584 }
3585
3586 /* Create a scroll bar and return the scroll bar vector for it. W is
3587 the Emacs window on which to create the scroll bar. TOP, LEFT,
3588 WIDTH and HEIGHT are.the pixel coordinates and dimensions of the
3589 scroll bar. */
3590
3591 static struct scroll_bar *
3592 x_scroll_bar_create (w, top, left, width, height)
3593 struct window *w;
3594 int top, left, width, height;
3595 {
3596 struct frame *f = XFRAME (WINDOW_FRAME (w));
3597 HWND hwnd;
3598 struct scroll_bar *bar
3599 = XSCROLL_BAR (Fmake_vector (make_number (SCROLL_BAR_VEC_SIZE), Qnil));
3600
3601 BLOCK_INPUT;
3602
3603 XSETWINDOW (bar->window, w);
3604 XSETINT (bar->top, top);
3605 XSETINT (bar->left, left);
3606 XSETINT (bar->width, width);
3607 XSETINT (bar->height, height);
3608 XSETINT (bar->start, 0);
3609 XSETINT (bar->end, 0);
3610 bar->dragging = Qnil;
3611
3612 /* Requires geometry to be set before call to create the real window */
3613
3614 hwnd = my_create_scrollbar (f, bar);
3615
3616 if (pfnSetScrollInfo)
3617 {
3618 SCROLLINFO si;
3619
3620 si.cbSize = sizeof (si);
3621 si.fMask = SIF_ALL;
3622 si.nMin = 0;
3623 si.nMax = VERTICAL_SCROLL_BAR_TOP_RANGE (f, height)
3624 + VERTICAL_SCROLL_BAR_MIN_HANDLE;
3625 si.nPage = si.nMax;
3626 si.nPos = 0;
3627
3628 pfnSetScrollInfo (hwnd, SB_CTL, &si, FALSE);
3629 }
3630 else
3631 {
3632 SetScrollRange (hwnd, SB_CTL, 0,
3633 VERTICAL_SCROLL_BAR_TOP_RANGE (f, height), FALSE);
3634 SetScrollPos (hwnd, SB_CTL, 0, FALSE);
3635 }
3636
3637 SET_SCROLL_BAR_W32_WINDOW (bar, hwnd);
3638
3639 /* Add bar to its frame's list of scroll bars. */
3640 bar->next = FRAME_SCROLL_BARS (f);
3641 bar->prev = Qnil;
3642 XSETVECTOR (FRAME_SCROLL_BARS (f), bar);
3643 if (! NILP (bar->next))
3644 XSETVECTOR (XSCROLL_BAR (bar->next)->prev, bar);
3645
3646 UNBLOCK_INPUT;
3647
3648 return bar;
3649 }
3650
3651
3652 /* Destroy scroll bar BAR, and set its Emacs window's scroll bar to
3653 nil. */
3654
3655 static void
3656 x_scroll_bar_remove (bar)
3657 struct scroll_bar *bar;
3658 {
3659 FRAME_PTR f = XFRAME (WINDOW_FRAME (XWINDOW (bar->window)));
3660
3661 BLOCK_INPUT;
3662
3663 /* Destroy the window. */
3664 my_destroy_window (f, SCROLL_BAR_W32_WINDOW (bar));
3665
3666 /* Disassociate this scroll bar from its window. */
3667 XWINDOW (bar->window)->vertical_scroll_bar = Qnil;
3668
3669 UNBLOCK_INPUT;
3670 }
3671
3672 /* Set the handle of the vertical scroll bar for WINDOW to indicate
3673 that we are displaying PORTION characters out of a total of WHOLE
3674 characters, starting at POSITION. If WINDOW has no scroll bar,
3675 create one. */
3676 static void
3677 w32_set_vertical_scroll_bar (w, portion, whole, position)
3678 struct window *w;
3679 int portion, whole, position;
3680 {
3681 struct frame *f = XFRAME (w->frame);
3682 struct scroll_bar *bar;
3683 int top, height, left, sb_left, width, sb_width;
3684 int window_y, window_height;
3685
3686 /* Get window dimensions. */
3687 window_box (w, -1, 0, &window_y, 0, &window_height);
3688 top = window_y;
3689 width = WINDOW_CONFIG_SCROLL_BAR_COLS (w) * FRAME_COLUMN_WIDTH (f);
3690 height = window_height;
3691
3692 /* Compute the left edge of the scroll bar area. */
3693 left = WINDOW_SCROLL_BAR_AREA_X (w);
3694
3695 /* Compute the width of the scroll bar which might be less than
3696 the width of the area reserved for the scroll bar. */
3697 if (WINDOW_CONFIG_SCROLL_BAR_WIDTH (w) > 0)
3698 sb_width = WINDOW_CONFIG_SCROLL_BAR_WIDTH (w);
3699 else
3700 sb_width = width;
3701
3702 /* Compute the left edge of the scroll bar. */
3703 if (WINDOW_HAS_VERTICAL_SCROLL_BAR_ON_RIGHT (w))
3704 sb_left = left + width - sb_width - (width - sb_width) / 2;
3705 else
3706 sb_left = left + (width - sb_width) / 2;
3707
3708 /* Does the scroll bar exist yet? */
3709 if (NILP (w->vertical_scroll_bar))
3710 {
3711 HDC hdc;
3712 BLOCK_INPUT;
3713 if (width > 0 && height > 0)
3714 {
3715 hdc = get_frame_dc (f);
3716 w32_clear_area (f, hdc, left, top, width, height);
3717 release_frame_dc (f, hdc);
3718 }
3719 UNBLOCK_INPUT;
3720
3721 bar = x_scroll_bar_create (w, top, sb_left, sb_width, height);
3722 }
3723 else
3724 {
3725 /* It may just need to be moved and resized. */
3726 HWND hwnd;
3727
3728 bar = XSCROLL_BAR (w->vertical_scroll_bar);
3729 hwnd = SCROLL_BAR_W32_WINDOW (bar);
3730
3731 /* If already correctly positioned, do nothing. */
3732 if ( XINT (bar->left) == sb_left
3733 && XINT (bar->top) == top
3734 && XINT (bar->width) == sb_width
3735 && XINT (bar->height) == height )
3736 {
3737 /* Redraw after clear_frame. */
3738 if (!my_show_window (f, hwnd, SW_NORMAL))
3739 InvalidateRect (hwnd, NULL, FALSE);
3740 }
3741 else
3742 {
3743 HDC hdc;
3744 BLOCK_INPUT;
3745 if (width && height)
3746 {
3747 hdc = get_frame_dc (f);
3748 /* Since Windows scroll bars are smaller than the space reserved
3749 for them on the frame, we have to clear "under" them. */
3750 w32_clear_area (f, hdc,
3751 left,
3752 top,
3753 width,
3754 height);
3755 release_frame_dc (f, hdc);
3756 }
3757 /* Make sure scroll bar is "visible" before moving, to ensure the
3758 area of the parent window now exposed will be refreshed. */
3759 my_show_window (f, hwnd, SW_HIDE);
3760 MoveWindow (hwnd, sb_left + VERTICAL_SCROLL_BAR_WIDTH_TRIM,
3761 top, sb_width - VERTICAL_SCROLL_BAR_WIDTH_TRIM * 2,
3762 max (height, 1), TRUE);
3763 if (pfnSetScrollInfo)
3764 {
3765 SCROLLINFO si;
3766
3767 si.cbSize = sizeof (si);
3768 si.fMask = SIF_RANGE;
3769 si.nMin = 0;
3770 si.nMax = VERTICAL_SCROLL_BAR_TOP_RANGE (f, height)
3771 + VERTICAL_SCROLL_BAR_MIN_HANDLE;
3772
3773 pfnSetScrollInfo (hwnd, SB_CTL, &si, FALSE);
3774 }
3775 else
3776 SetScrollRange (hwnd, SB_CTL, 0,
3777 VERTICAL_SCROLL_BAR_TOP_RANGE (f, height), FALSE);
3778 my_show_window (f, hwnd, SW_NORMAL);
3779 /* InvalidateRect (w, NULL, FALSE); */
3780
3781 /* Remember new settings. */
3782 XSETINT (bar->left, sb_left);
3783 XSETINT (bar->top, top);
3784 XSETINT (bar->width, sb_width);
3785 XSETINT (bar->height, height);
3786
3787 UNBLOCK_INPUT;
3788 }
3789 }
3790 w32_set_scroll_bar_thumb (bar, portion, position, whole);
3791
3792 XSETVECTOR (w->vertical_scroll_bar, bar);
3793 }
3794
3795
3796 /* The following three hooks are used when we're doing a thorough
3797 redisplay of the frame. We don't explicitly know which scroll bars
3798 are going to be deleted, because keeping track of when windows go
3799 away is a real pain - "Can you say set-window-configuration, boys
3800 and girls?" Instead, we just assert at the beginning of redisplay
3801 that *all* scroll bars are to be removed, and then save a scroll bar
3802 from the fiery pit when we actually redisplay its window. */
3803
3804 /* Arrange for all scroll bars on FRAME to be removed at the next call
3805 to `*judge_scroll_bars_hook'. A scroll bar may be spared if
3806 `*redeem_scroll_bar_hook' is applied to its window before the judgment. */
3807
3808 static void
3809 w32_condemn_scroll_bars (frame)
3810 FRAME_PTR frame;
3811 {
3812 /* Transfer all the scroll bars to FRAME_CONDEMNED_SCROLL_BARS. */
3813 while (! NILP (FRAME_SCROLL_BARS (frame)))
3814 {
3815 Lisp_Object bar;
3816 bar = FRAME_SCROLL_BARS (frame);
3817 FRAME_SCROLL_BARS (frame) = XSCROLL_BAR (bar)->next;
3818 XSCROLL_BAR (bar)->next = FRAME_CONDEMNED_SCROLL_BARS (frame);
3819 XSCROLL_BAR (bar)->prev = Qnil;
3820 if (! NILP (FRAME_CONDEMNED_SCROLL_BARS (frame)))
3821 XSCROLL_BAR (FRAME_CONDEMNED_SCROLL_BARS (frame))->prev = bar;
3822 FRAME_CONDEMNED_SCROLL_BARS (frame) = bar;
3823 }
3824 }
3825
3826
3827 /* Un-mark WINDOW's scroll bar for deletion in this judgment cycle.
3828 Note that WINDOW isn't necessarily condemned at all. */
3829
3830 static void
3831 w32_redeem_scroll_bar (window)
3832 struct window *window;
3833 {
3834 struct scroll_bar *bar;
3835 struct frame *f;
3836
3837 /* We can't redeem this window's scroll bar if it doesn't have one. */
3838 if (NILP (window->vertical_scroll_bar))
3839 abort ();
3840
3841 bar = XSCROLL_BAR (window->vertical_scroll_bar);
3842
3843 /* Unlink it from the condemned list. */
3844 f = XFRAME (WINDOW_FRAME (window));
3845 if (NILP (bar->prev))
3846 {
3847 /* If the prev pointer is nil, it must be the first in one of
3848 the lists. */
3849 if (EQ (FRAME_SCROLL_BARS (f), window->vertical_scroll_bar))
3850 /* It's not condemned. Everything's fine. */
3851 return;
3852 else if (EQ (FRAME_CONDEMNED_SCROLL_BARS (f),
3853 window->vertical_scroll_bar))
3854 FRAME_CONDEMNED_SCROLL_BARS (f) = bar->next;
3855 else
3856 /* If its prev pointer is nil, it must be at the front of
3857 one or the other! */
3858 abort ();
3859 }
3860 else
3861 XSCROLL_BAR (bar->prev)->next = bar->next;
3862
3863 if (! NILP (bar->next))
3864 XSCROLL_BAR (bar->next)->prev = bar->prev;
3865
3866 bar->next = FRAME_SCROLL_BARS (f);
3867 bar->prev = Qnil;
3868 XSETVECTOR (FRAME_SCROLL_BARS (f), bar);
3869 if (! NILP (bar->next))
3870 XSETVECTOR (XSCROLL_BAR (bar->next)->prev, bar);
3871 }
3872
3873 /* Remove all scroll bars on FRAME that haven't been saved since the
3874 last call to `*condemn_scroll_bars_hook'. */
3875
3876 static void
3877 w32_judge_scroll_bars (f)
3878 FRAME_PTR f;
3879 {
3880 Lisp_Object bar, next;
3881
3882 bar = FRAME_CONDEMNED_SCROLL_BARS (f);
3883
3884 /* Clear out the condemned list now so we won't try to process any
3885 more events on the hapless scroll bars. */
3886 FRAME_CONDEMNED_SCROLL_BARS (f) = Qnil;
3887
3888 for (; ! NILP (bar); bar = next)
3889 {
3890 struct scroll_bar *b = XSCROLL_BAR (bar);
3891
3892 x_scroll_bar_remove (b);
3893
3894 next = b->next;
3895 b->next = b->prev = Qnil;
3896 }
3897
3898 /* Now there should be no references to the condemned scroll bars,
3899 and they should get garbage-collected. */
3900 }
3901
3902 /* Handle a mouse click on the scroll bar BAR. If *EMACS_EVENT's kind
3903 is set to something other than NO_EVENT, it is enqueued.
3904
3905 This may be called from a signal handler, so we have to ignore GC
3906 mark bits. */
3907
3908 static int
3909 w32_scroll_bar_handle_click (bar, msg, emacs_event)
3910 struct scroll_bar *bar;
3911 W32Msg *msg;
3912 struct input_event *emacs_event;
3913 {
3914 if (! GC_WINDOWP (bar->window))
3915 abort ();
3916
3917 emacs_event->kind = W32_SCROLL_BAR_CLICK_EVENT;
3918 emacs_event->code = 0;
3919 /* not really meaningful to distinguish up/down */
3920 emacs_event->modifiers = msg->dwModifiers;
3921 emacs_event->frame_or_window = bar->window;
3922 emacs_event->arg = Qnil;
3923 emacs_event->timestamp = msg->msg.time;
3924
3925 {
3926 int top_range = VERTICAL_SCROLL_BAR_TOP_RANGE (f, XINT (bar->height));
3927 int y;
3928 int dragging = !NILP (bar->dragging);
3929
3930 if (pfnGetScrollInfo)
3931 {
3932 SCROLLINFO si;
3933
3934 si.cbSize = sizeof (si);
3935 si.fMask = SIF_POS;
3936
3937 pfnGetScrollInfo ((HWND) msg->msg.lParam, SB_CTL, &si);
3938 y = si.nPos;
3939 }
3940 else
3941 y = GetScrollPos ((HWND) msg->msg.lParam, SB_CTL);
3942
3943 bar->dragging = Qnil;
3944
3945
3946 last_mouse_scroll_bar_pos = msg->msg.wParam;
3947
3948 switch (LOWORD (msg->msg.wParam))
3949 {
3950 case SB_LINEDOWN:
3951 emacs_event->part = scroll_bar_down_arrow;
3952 break;
3953 case SB_LINEUP:
3954 emacs_event->part = scroll_bar_up_arrow;
3955 break;
3956 case SB_PAGEUP:
3957 emacs_event->part = scroll_bar_above_handle;
3958 break;
3959 case SB_PAGEDOWN:
3960 emacs_event->part = scroll_bar_below_handle;
3961 break;
3962 case SB_TOP:
3963 emacs_event->part = scroll_bar_handle;
3964 y = 0;
3965 break;
3966 case SB_BOTTOM:
3967 emacs_event->part = scroll_bar_handle;
3968 y = top_range;
3969 break;
3970 case SB_THUMBTRACK:
3971 case SB_THUMBPOSITION:
3972 if (VERTICAL_SCROLL_BAR_TOP_RANGE (f, XINT (bar->height)) <= 0xffff)
3973 y = HIWORD (msg->msg.wParam);
3974 bar->dragging = Qt;
3975 emacs_event->part = scroll_bar_handle;
3976
3977 /* "Silently" update current position. */
3978 if (pfnSetScrollInfo)
3979 {
3980 SCROLLINFO si;
3981
3982 si.cbSize = sizeof (si);
3983 si.fMask = SIF_POS;
3984 si.nPos = y;
3985 /* Remember apparent position (we actually lag behind the real
3986 position, so don't set that directly. */
3987 last_scroll_bar_drag_pos = y;
3988
3989 pfnSetScrollInfo (SCROLL_BAR_W32_WINDOW (bar), SB_CTL, &si, FALSE);
3990 }
3991 else
3992 SetScrollPos (SCROLL_BAR_W32_WINDOW (bar), SB_CTL, y, FALSE);
3993 break;
3994 case SB_ENDSCROLL:
3995 /* If this is the end of a drag sequence, then reset the scroll
3996 handle size to normal and do a final redraw. Otherwise do
3997 nothing. */
3998 if (dragging)
3999 {
4000 if (pfnSetScrollInfo)
4001 {
4002 SCROLLINFO si;
4003 int start = XINT (bar->start);
4004 int end = XINT (bar->end);
4005
4006 si.cbSize = sizeof (si);
4007 si.fMask = SIF_PAGE | SIF_POS;
4008 si.nPage = end - start + VERTICAL_SCROLL_BAR_MIN_HANDLE;
4009 si.nPos = last_scroll_bar_drag_pos;
4010 pfnSetScrollInfo (SCROLL_BAR_W32_WINDOW (bar), SB_CTL, &si, TRUE);
4011 }
4012 else
4013 SetScrollPos (SCROLL_BAR_W32_WINDOW (bar), SB_CTL, y, TRUE);
4014 }
4015 /* fall through */
4016 default:
4017 emacs_event->kind = NO_EVENT;
4018 return FALSE;
4019 }
4020
4021 XSETINT (emacs_event->x, y);
4022 XSETINT (emacs_event->y, top_range);
4023
4024 return TRUE;
4025 }
4026 }
4027
4028 /* Return information to the user about the current position of the mouse
4029 on the scroll bar. */
4030
4031 static void
4032 x_scroll_bar_report_motion (fp, bar_window, part, x, y, time)
4033 FRAME_PTR *fp;
4034 Lisp_Object *bar_window;
4035 enum scroll_bar_part *part;
4036 Lisp_Object *x, *y;
4037 unsigned long *time;
4038 {
4039 struct scroll_bar *bar = XSCROLL_BAR (last_mouse_scroll_bar);
4040 Window w = SCROLL_BAR_W32_WINDOW (bar);
4041 FRAME_PTR f = XFRAME (WINDOW_FRAME (XWINDOW (bar->window)));
4042 int pos;
4043 int top_range = VERTICAL_SCROLL_BAR_TOP_RANGE (f, XINT (bar->height));
4044
4045 BLOCK_INPUT;
4046
4047 *fp = f;
4048 *bar_window = bar->window;
4049
4050 if (pfnGetScrollInfo)
4051 {
4052 SCROLLINFO si;
4053
4054 si.cbSize = sizeof (si);
4055 si.fMask = SIF_POS | SIF_PAGE | SIF_RANGE;
4056
4057 pfnGetScrollInfo (w, SB_CTL, &si);
4058 pos = si.nPos;
4059 top_range = si.nMax - si.nPage + 1;
4060 }
4061 else
4062 pos = GetScrollPos (w, SB_CTL);
4063
4064 switch (LOWORD (last_mouse_scroll_bar_pos))
4065 {
4066 case SB_THUMBPOSITION:
4067 case SB_THUMBTRACK:
4068 *part = scroll_bar_handle;
4069 if (VERTICAL_SCROLL_BAR_TOP_RANGE (f, XINT (bar->height)) <= 0xffff)
4070 pos = HIWORD (last_mouse_scroll_bar_pos);
4071 break;
4072 case SB_LINEDOWN:
4073 *part = scroll_bar_handle;
4074 pos++;
4075 break;
4076 default:
4077 *part = scroll_bar_handle;
4078 break;
4079 }
4080
4081 XSETINT (*x, pos);
4082 XSETINT (*y, top_range);
4083
4084 f->mouse_moved = 0;
4085 last_mouse_scroll_bar = Qnil;
4086
4087 *time = last_mouse_movement_time;
4088
4089 UNBLOCK_INPUT;
4090 }
4091
4092
4093 /* The screen has been cleared so we may have changed foreground or
4094 background colors, and the scroll bars may need to be redrawn.
4095 Clear out the scroll bars, and ask for expose events, so we can
4096 redraw them. */
4097
4098 void
4099 x_scroll_bar_clear (f)
4100 FRAME_PTR f;
4101 {
4102 Lisp_Object bar;
4103
4104 /* We can have scroll bars even if this is 0,
4105 if we just turned off scroll bar mode.
4106 But in that case we should not clear them. */
4107 if (FRAME_HAS_VERTICAL_SCROLL_BARS (f))
4108 for (bar = FRAME_SCROLL_BARS (f); VECTORP (bar);
4109 bar = XSCROLL_BAR (bar)->next)
4110 {
4111 HWND window = SCROLL_BAR_W32_WINDOW (XSCROLL_BAR (bar));
4112 HDC hdc = GetDC (window);
4113 RECT rect;
4114
4115 /* Hide scroll bar until ready to repaint. x_scroll_bar_move
4116 arranges to refresh the scroll bar if hidden. */
4117 my_show_window (f, window, SW_HIDE);
4118
4119 GetClientRect (window, &rect);
4120 select_palette (f, hdc);
4121 w32_clear_rect (f, hdc, &rect);
4122 deselect_palette (f, hdc);
4123
4124 ReleaseDC (window, hdc);
4125 }
4126 }
4127
4128 \f
4129 /* The main W32 event-reading loop - w32_read_socket. */
4130
4131 /* Record the last 100 characters stored
4132 to help debug the loss-of-chars-during-GC problem. */
4133
4134 static int temp_index;
4135 static short temp_buffer[100];
4136
4137
4138 /* Read events coming from the W32 shell.
4139 This routine is called by the SIGIO handler.
4140 We return as soon as there are no more events to be read.
4141
4142 We return the number of characters stored into the buffer,
4143 thus pretending to be `read'.
4144
4145 EXPECTED is nonzero if the caller knows input is available.
4146
4147 Some of these messages are reposted back to the message queue since the
4148 system calls the windows proc directly in a context where we cannot return
4149 the data nor can we guarantee the state we are in. So if we dispatch them
4150 we will get into an infinite loop. To prevent this from ever happening we
4151 will set a variable to indicate we are in the read_socket call and indicate
4152 which message we are processing since the windows proc gets called
4153 recursively with different messages by the system.
4154 */
4155
4156 int
4157 w32_read_socket (sd, expected, hold_quit)
4158 register int sd;
4159 int expected;
4160 struct input_event *hold_quit;
4161 {
4162 int count = 0;
4163 int check_visibility = 0;
4164 W32Msg msg;
4165 struct frame *f;
4166 struct w32_display_info *dpyinfo = &one_w32_display_info;
4167
4168 if (interrupt_input_blocked)
4169 {
4170 interrupt_input_pending = 1;
4171 return -1;
4172 }
4173
4174 interrupt_input_pending = 0;
4175 BLOCK_INPUT;
4176
4177 /* So people can tell when we have read the available input. */
4178 input_signal_count++;
4179
4180 /* TODO: ghostscript integration. */
4181 while (get_next_msg (&msg, FALSE))
4182 {
4183 struct input_event inev;
4184 int do_help = 0;
4185
4186 EVENT_INIT (inev);
4187 inev.kind = NO_EVENT;
4188 inev.arg = Qnil;
4189
4190 switch (msg.msg.message)
4191 {
4192 case WM_PAINT:
4193 f = x_window_to_frame (dpyinfo, msg.msg.hwnd);
4194
4195 if (f)
4196 {
4197 if (msg.rect.right == msg.rect.left ||
4198 msg.rect.bottom == msg.rect.top)
4199 {
4200 /* We may get paint messages even though the client
4201 area is clipped - these are not expose events. */
4202 DebPrint (("clipped frame %p (%s) got WM_PAINT - ignored\n", f,
4203 SDATA (f->name)));
4204 }
4205 else if (f->async_visible != 1)
4206 {
4207 /* Definitely not obscured, so mark as visible. */
4208 f->async_visible = 1;
4209 f->async_iconified = 0;
4210 SET_FRAME_GARBAGED (f);
4211 DebPrint (("frame %p (%s) reexposed by WM_PAINT\n", f,
4212 SDATA (f->name)));
4213
4214 /* WM_PAINT serves as MapNotify as well, so report
4215 visibility changes properly. */
4216 if (f->iconified)
4217 {
4218 inev.kind = DEICONIFY_EVENT;
4219 XSETFRAME (inev.frame_or_window, f);
4220 }
4221 else if (! NILP (Vframe_list)
4222 && ! NILP (XCDR (Vframe_list)))
4223 /* Force a redisplay sooner or later to update the
4224 frame titles in case this is the second frame. */
4225 record_asynch_buffer_change ();
4226 }
4227 else
4228 {
4229 HDC hdc = get_frame_dc (f);
4230
4231 /* Erase background again for safety. */
4232 w32_clear_rect (f, hdc, &msg.rect);
4233 release_frame_dc (f, hdc);
4234 expose_frame (f,
4235 msg.rect.left,
4236 msg.rect.top,
4237 msg.rect.right - msg.rect.left,
4238 msg.rect.bottom - msg.rect.top);
4239 }
4240 }
4241 break;
4242
4243 case WM_INPUTLANGCHANGE:
4244 /* Generate a language change event. */
4245 f = x_window_to_frame (dpyinfo, msg.msg.hwnd);
4246
4247 if (f)
4248 {
4249 inev.kind = LANGUAGE_CHANGE_EVENT;
4250 XSETFRAME (inev.frame_or_window, f);
4251 inev.code = msg.msg.wParam;
4252 inev.modifiers = msg.msg.lParam & 0xffff;
4253 }
4254 break;
4255
4256 case WM_KEYDOWN:
4257 case WM_SYSKEYDOWN:
4258 f = x_window_to_frame (dpyinfo, msg.msg.hwnd);
4259
4260 if (f && !f->iconified)
4261 {
4262 if (!dpyinfo->mouse_face_hidden && INTEGERP (Vmouse_highlight))
4263 {
4264 clear_mouse_face (dpyinfo);
4265 dpyinfo->mouse_face_hidden = 1;
4266 }
4267
4268 if (temp_index == sizeof temp_buffer / sizeof (short))
4269 temp_index = 0;
4270 temp_buffer[temp_index++] = msg.msg.wParam;
4271 inev.kind = NON_ASCII_KEYSTROKE_EVENT;
4272 inev.code = msg.msg.wParam;
4273 inev.modifiers = msg.dwModifiers;
4274 XSETFRAME (inev.frame_or_window, f);
4275 inev.timestamp = msg.msg.time;
4276 }
4277 break;
4278
4279 case WM_SYSCHAR:
4280 case WM_CHAR:
4281 f = x_window_to_frame (dpyinfo, msg.msg.hwnd);
4282
4283 if (f && !f->iconified)
4284 {
4285 if (!dpyinfo->mouse_face_hidden && INTEGERP (Vmouse_highlight))
4286 {
4287 clear_mouse_face (dpyinfo);
4288 dpyinfo->mouse_face_hidden = 1;
4289 }
4290
4291 if (temp_index == sizeof temp_buffer / sizeof (short))
4292 temp_index = 0;
4293 temp_buffer[temp_index++] = msg.msg.wParam;
4294 inev.kind = ASCII_KEYSTROKE_EVENT;
4295 inev.code = msg.msg.wParam;
4296 inev.modifiers = msg.dwModifiers;
4297 XSETFRAME (inev.frame_or_window, f);
4298 inev.timestamp = msg.msg.time;
4299 }
4300 break;
4301
4302 case WM_MOUSEMOVE:
4303 /* Ignore non-movement. */
4304 {
4305 int x = LOWORD (msg.msg.lParam);
4306 int y = HIWORD (msg.msg.lParam);
4307 if (x == last_mousemove_x && y == last_mousemove_y)
4308 break;
4309 last_mousemove_x = x;
4310 last_mousemove_y = y;
4311 }
4312
4313 previous_help_echo_string = help_echo_string;
4314
4315 if (dpyinfo->grabbed && last_mouse_frame
4316 && FRAME_LIVE_P (last_mouse_frame))
4317 f = last_mouse_frame;
4318 else
4319 f = x_window_to_frame (dpyinfo, msg.msg.hwnd);
4320
4321 if (dpyinfo->mouse_face_hidden)
4322 {
4323 dpyinfo->mouse_face_hidden = 0;
4324 clear_mouse_face (dpyinfo);
4325 }
4326
4327 if (f)
4328 {
4329 /* Generate SELECT_WINDOW_EVENTs when needed. */
4330 if (mouse_autoselect_window)
4331 {
4332 Lisp_Object window;
4333 int x = LOWORD (msg.msg.lParam);
4334 int y = HIWORD (msg.msg.lParam);
4335
4336 window = window_from_coordinates (f, x, y, 0, 0, 0, 0);
4337
4338 /* Window will be selected only when it is not
4339 selected now and last mouse movement event was
4340 not in it. Minibuffer window will be selected
4341 iff it is active. */
4342 if (WINDOWP(window)
4343 && !EQ (window, last_window)
4344 && !EQ (window, selected_window))
4345 {
4346 inev.kind = SELECT_WINDOW_EVENT;
4347 inev.frame_or_window = window;
4348 }
4349
4350 last_window=window;
4351 }
4352 note_mouse_movement (f, &msg.msg);
4353 }
4354 else
4355 {
4356 /* If we move outside the frame, then we're
4357 certainly no longer on any text in the frame. */
4358 clear_mouse_face (dpyinfo);
4359 }
4360
4361 /* If the contents of the global variable help_echo_string
4362 has changed, generate a HELP_EVENT. */
4363 if (help_echo_string != previous_help_echo_string ||
4364 (!NILP (help_echo_string) && !STRINGP (help_echo_string) && f->mouse_moved))
4365 do_help = 1;
4366
4367 break;
4368
4369 case WM_LBUTTONDOWN:
4370 case WM_LBUTTONUP:
4371 case WM_MBUTTONDOWN:
4372 case WM_MBUTTONUP:
4373 case WM_RBUTTONDOWN:
4374 case WM_RBUTTONUP:
4375 case WM_XBUTTONDOWN:
4376 case WM_XBUTTONUP:
4377 {
4378 /* If we decide we want to generate an event to be seen
4379 by the rest of Emacs, we put it here. */
4380 int tool_bar_p = 0;
4381 int button;
4382 int up;
4383
4384 if (dpyinfo->grabbed && last_mouse_frame
4385 && FRAME_LIVE_P (last_mouse_frame))
4386 f = last_mouse_frame;
4387 else
4388 f = x_window_to_frame (dpyinfo, msg.msg.hwnd);
4389
4390 if (f)
4391 {
4392 construct_mouse_click (&inev, &msg, f);
4393
4394 /* Is this in the tool-bar? */
4395 if (WINDOWP (f->tool_bar_window)
4396 && WINDOW_TOTAL_LINES (XWINDOW (f->tool_bar_window)))
4397 {
4398 Lisp_Object window;
4399 int x = XFASTINT (inev.x);
4400 int y = XFASTINT (inev.y);
4401
4402 window = window_from_coordinates (f, x, y, 0, 0, 0, 1);
4403
4404 if (EQ (window, f->tool_bar_window))
4405 {
4406 w32_handle_tool_bar_click (f, &inev);
4407 tool_bar_p = 1;
4408 }
4409 }
4410
4411 if (tool_bar_p
4412 || (dpyinfo->w32_focus_frame
4413 && f != dpyinfo->w32_focus_frame))
4414 inev.kind = NO_EVENT;
4415 }
4416
4417 parse_button (msg.msg.message, HIWORD (msg.msg.wParam),
4418 &button, &up);
4419
4420 if (up)
4421 {
4422 dpyinfo->grabbed &= ~ (1 << button);
4423 }
4424 else
4425 {
4426 dpyinfo->grabbed |= (1 << button);
4427 last_mouse_frame = f;
4428 /* Ignore any mouse motion that happened
4429 before this event; any subsequent mouse-movement
4430 Emacs events should reflect only motion after
4431 the ButtonPress. */
4432 if (f != 0)
4433 f->mouse_moved = 0;
4434
4435 if (!tool_bar_p)
4436 last_tool_bar_item = -1;
4437 }
4438 break;
4439 }
4440
4441 case WM_MOUSEWHEEL:
4442 {
4443 if (dpyinfo->grabbed && last_mouse_frame
4444 && FRAME_LIVE_P (last_mouse_frame))
4445 f = last_mouse_frame;
4446 else
4447 f = x_window_to_frame (dpyinfo, msg.msg.hwnd);
4448
4449 if (f)
4450 {
4451
4452 if (!dpyinfo->w32_focus_frame
4453 || f == dpyinfo->w32_focus_frame)
4454 {
4455 /* Emit an Emacs wheel-up/down event. */
4456 construct_mouse_wheel (&inev, &msg, f);
4457 }
4458 /* Ignore any mouse motion that happened before this
4459 event; any subsequent mouse-movement Emacs events
4460 should reflect only motion after the
4461 ButtonPress. */
4462 f->mouse_moved = 0;
4463 }
4464 last_mouse_frame = f;
4465 last_tool_bar_item = -1;
4466 }
4467 break;
4468
4469 case WM_DROPFILES:
4470 f = x_window_to_frame (dpyinfo, msg.msg.hwnd);
4471
4472 if (f)
4473 construct_drag_n_drop (&inev, &msg, f);
4474 break;
4475
4476 case WM_VSCROLL:
4477 {
4478 struct scroll_bar *bar =
4479 x_window_to_scroll_bar ((HWND)msg.msg.lParam);
4480
4481 if (bar)
4482 w32_scroll_bar_handle_click (bar, &msg, &inev);
4483 break;
4484 }
4485
4486 case WM_WINDOWPOSCHANGED:
4487 f = x_window_to_frame (dpyinfo, msg.msg.hwnd);
4488 if (f)
4489 {
4490 if (f->want_fullscreen & FULLSCREEN_WAIT)
4491 f->want_fullscreen &= ~(FULLSCREEN_WAIT|FULLSCREEN_BOTH);
4492 }
4493 check_visibility = 1;
4494 break;
4495
4496 case WM_ACTIVATE:
4497 case WM_ACTIVATEAPP:
4498 f = x_window_to_frame (dpyinfo, msg.msg.hwnd);
4499 if (f)
4500 x_check_fullscreen (f);
4501 check_visibility = 1;
4502 break;
4503
4504 case WM_MOVE:
4505 f = x_window_to_frame (dpyinfo, msg.msg.hwnd);
4506
4507 if (f && !f->async_iconified)
4508 {
4509 int x, y;
4510
4511 x_real_positions (f, &x, &y);
4512 f->left_pos = x;
4513 f->top_pos = y;
4514 }
4515
4516 check_visibility = 1;
4517 break;
4518
4519 case WM_SHOWWINDOW:
4520 /* wParam non-zero means Window is about to be shown, 0 means
4521 about to be hidden. */
4522 /* Redo the mouse-highlight after the tooltip has gone. */
4523 if (!msg.msg.wParam && msg.msg.hwnd == tip_window)
4524 {
4525 tip_window = NULL;
4526 redo_mouse_highlight ();
4527 }
4528
4529 /* If window has been obscured or exposed by another window
4530 being maximised or minimised/restored, then recheck
4531 visibility of all frames. Direct changes to our own
4532 windows get handled by WM_SIZE. */
4533 #if 0
4534 if (msg.msg.lParam != 0)
4535 check_visibility = 1;
4536 else
4537 {
4538 f = x_window_to_frame (dpyinfo, msg.msg.hwnd);
4539 f->async_visible = msg.msg.wParam;
4540 }
4541 #endif
4542
4543 check_visibility = 1;
4544 break;
4545
4546 case WM_SIZE:
4547 f = x_window_to_frame (dpyinfo, msg.msg.hwnd);
4548
4549 /* Inform lisp of whether frame has been iconified etc. */
4550 if (f)
4551 {
4552 switch (msg.msg.wParam)
4553 {
4554 case SIZE_MINIMIZED:
4555 f->async_visible = 0;
4556 f->async_iconified = 1;
4557
4558 inev.kind = ICONIFY_EVENT;
4559 XSETFRAME (inev.frame_or_window, f);
4560 break;
4561
4562 case SIZE_MAXIMIZED:
4563 case SIZE_RESTORED:
4564 f->async_visible = 1;
4565 f->async_iconified = 0;
4566
4567 /* wait_reading_process_input will notice this and update
4568 the frame's display structures. */
4569 SET_FRAME_GARBAGED (f);
4570
4571 if (f->iconified)
4572 {
4573 int x, y;
4574
4575 /* Reset top and left positions of the Window
4576 here since Windows sends a WM_MOVE message
4577 BEFORE telling us the Window is minimized
4578 when the Window is iconified, with 3000,3000
4579 as the co-ords. */
4580 x_real_positions (f, &x, &y);
4581 f->left_pos = x;
4582 f->top_pos = y;
4583
4584 inev.kind = DEICONIFY_EVENT;
4585 XSETFRAME (inev.frame_or_window, f);
4586 }
4587 else if (! NILP (Vframe_list)
4588 && ! NILP (XCDR (Vframe_list)))
4589 /* Force a redisplay sooner or later
4590 to update the frame titles
4591 in case this is the second frame. */
4592 record_asynch_buffer_change ();
4593 break;
4594 }
4595 }
4596
4597 if (f && !f->async_iconified && msg.msg.wParam != SIZE_MINIMIZED)
4598 {
4599 RECT rect;
4600 int rows;
4601 int columns;
4602 int width;
4603 int height;
4604
4605 GetClientRect (msg.msg.hwnd, &rect);
4606
4607 height = rect.bottom - rect.top;
4608 width = rect.right - rect.left;
4609
4610 rows = FRAME_PIXEL_HEIGHT_TO_TEXT_LINES (f, height);
4611 columns = FRAME_PIXEL_WIDTH_TO_TEXT_COLS (f, width);
4612
4613 /* TODO: Clip size to the screen dimensions. */
4614
4615 /* Even if the number of character rows and columns has
4616 not changed, the font size may have changed, so we need
4617 to check the pixel dimensions as well. */
4618
4619 if (columns != FRAME_COLS (f)
4620 || rows != FRAME_LINES (f)
4621 || width != FRAME_PIXEL_WIDTH (f)
4622 || height != FRAME_PIXEL_HEIGHT (f))
4623 {
4624 change_frame_size (f, rows, columns, 0, 1, 0);
4625 SET_FRAME_GARBAGED (f);
4626 cancel_mouse_face (f);
4627 FRAME_PIXEL_WIDTH (f) = width;
4628 FRAME_PIXEL_HEIGHT (f) = height;
4629 f->win_gravity = NorthWestGravity;
4630 }
4631 }
4632
4633 check_visibility = 1;
4634 break;
4635
4636 case WM_MOUSELEAVE:
4637 f = x_any_window_to_frame (dpyinfo, msg.msg.hwnd);
4638 if (f)
4639 {
4640 if (f == dpyinfo->mouse_face_mouse_frame)
4641 {
4642 /* If we move outside the frame, then we're
4643 certainly no longer on any text in the frame. */
4644 clear_mouse_face (dpyinfo);
4645 dpyinfo->mouse_face_mouse_frame = 0;
4646 }
4647
4648 /* Generate a nil HELP_EVENT to cancel a help-echo.
4649 Do it only if there's something to cancel.
4650 Otherwise, the startup message is cleared when
4651 the mouse leaves the frame. */
4652 if (any_help_event_p)
4653 do_help = -1;
4654 }
4655 break;
4656
4657 case WM_SETFOCUS:
4658 /* TODO: Port this change:
4659 2002-06-28 Jan D. <jan.h.d@swipnet.se>
4660 * xterm.h (struct x_output): Add focus_state.
4661 * xterm.c (x_focus_changed): New function.
4662 (x_detect_focus_change): New function.
4663 (XTread_socket): Call x_detect_focus_change for FocusIn/FocusOut
4664 EnterNotify and LeaveNotify to track X focus changes.
4665 */
4666 f = x_any_window_to_frame (dpyinfo, msg.msg.hwnd);
4667
4668 dpyinfo->w32_focus_event_frame = f;
4669
4670 if (f)
4671 x_new_focus_frame (dpyinfo, f);
4672
4673
4674 dpyinfo->grabbed = 0;
4675 check_visibility = 1;
4676 break;
4677
4678 case WM_KILLFOCUS:
4679 /* TODO: some of this belongs in MOUSE_LEAVE */
4680 f = x_top_window_to_frame (dpyinfo, msg.msg.hwnd);
4681
4682 if (f)
4683 {
4684 if (f == dpyinfo->w32_focus_event_frame)
4685 dpyinfo->w32_focus_event_frame = 0;
4686
4687 if (f == dpyinfo->w32_focus_frame)
4688 x_new_focus_frame (dpyinfo, 0);
4689
4690 if (f == dpyinfo->mouse_face_mouse_frame)
4691 {
4692 /* If we move outside the frame, then we're
4693 certainly no longer on any text in the frame. */
4694 clear_mouse_face (dpyinfo);
4695 dpyinfo->mouse_face_mouse_frame = 0;
4696 }
4697
4698 /* Generate a nil HELP_EVENT to cancel a help-echo.
4699 Do it only if there's something to cancel.
4700 Otherwise, the startup message is cleared when
4701 the mouse leaves the frame. */
4702 if (any_help_event_p)
4703 do_help = -1;
4704 }
4705
4706 dpyinfo->grabbed = 0;
4707 check_visibility = 1;
4708 break;
4709
4710 case WM_CLOSE:
4711 f = x_window_to_frame (dpyinfo, msg.msg.hwnd);
4712
4713 if (f)
4714 {
4715 inev.kind = DELETE_WINDOW_EVENT;
4716 XSETFRAME (inev.frame_or_window, f);
4717 }
4718 break;
4719
4720 case WM_INITMENU:
4721 f = x_window_to_frame (dpyinfo, msg.msg.hwnd);
4722
4723 if (f)
4724 {
4725 inev.kind = MENU_BAR_ACTIVATE_EVENT;
4726 XSETFRAME (inev.frame_or_window, f);
4727 }
4728 break;
4729
4730 case WM_COMMAND:
4731 f = x_window_to_frame (dpyinfo, msg.msg.hwnd);
4732
4733 if (f)
4734 {
4735 extern void menubar_selection_callback
4736 (FRAME_PTR f, void * client_data);
4737 menubar_selection_callback (f, (void *)msg.msg.wParam);
4738 }
4739
4740 check_visibility = 1;
4741 break;
4742
4743 case WM_DISPLAYCHANGE:
4744 f = x_window_to_frame (dpyinfo, msg.msg.hwnd);
4745
4746 if (f)
4747 {
4748 dpyinfo->width = (short) LOWORD (msg.msg.lParam);
4749 dpyinfo->height = (short) HIWORD (msg.msg.lParam);
4750 dpyinfo->n_cbits = msg.msg.wParam;
4751 DebPrint (("display change: %d %d\n", dpyinfo->width,
4752 dpyinfo->height));
4753 }
4754
4755 check_visibility = 1;
4756 break;
4757
4758 default:
4759 /* Check for messages registered at runtime. */
4760 if (msg.msg.message == msh_mousewheel)
4761 {
4762 /* Forward MSH_MOUSEWHEEL as WM_MOUSEWHEEL. */
4763 msg.msg.message = WM_MOUSEWHEEL;
4764 prepend_msg (&msg);
4765 }
4766 break;
4767 }
4768
4769 if (inev.kind != NO_EVENT)
4770 {
4771 kbd_buffer_store_event_hold (&inev, hold_quit);
4772 count++;
4773 }
4774
4775 if (do_help
4776 && !(hold_quit && hold_quit->kind != NO_EVENT))
4777 {
4778 Lisp_Object frame;
4779
4780 if (f)
4781 XSETFRAME (frame, f);
4782 else
4783 frame = Qnil;
4784
4785 if (do_help > 0)
4786 {
4787 if (help_echo_string == Qnil)
4788 {
4789 help_echo_object = help_echo_window = Qnil;
4790 help_echo_pos = -1;
4791 }
4792
4793 any_help_event_p = 1;
4794 gen_help_event (help_echo_string, frame, help_echo_window,
4795 help_echo_object, help_echo_pos);
4796 }
4797 else
4798 {
4799 help_echo_string = Qnil;
4800 gen_help_event (Qnil, frame, Qnil, Qnil, 0);
4801 }
4802 count++;
4803 }
4804 }
4805
4806 /* If the focus was just given to an autoraising frame,
4807 raise it now. */
4808 /* ??? This ought to be able to handle more than one such frame. */
4809 if (pending_autoraise_frame)
4810 {
4811 x_raise_frame (pending_autoraise_frame);
4812 pending_autoraise_frame = 0;
4813 }
4814
4815 /* Check which frames are still visisble, if we have enqueued any user
4816 events or been notified of events that may affect visibility. We
4817 do this here because there doesn't seem to be any direct
4818 notification from Windows that the visibility of a window has
4819 changed (at least, not in all cases). */
4820 if (count > 0 || check_visibility)
4821 {
4822 Lisp_Object tail, frame;
4823
4824 FOR_EACH_FRAME (tail, frame)
4825 {
4826 FRAME_PTR f = XFRAME (frame);
4827 /* The tooltip has been drawn already. Avoid the
4828 SET_FRAME_GARBAGED below. */
4829 if (EQ (frame, tip_frame))
4830 continue;
4831
4832 /* Check "visible" frames and mark each as obscured or not.
4833 Note that async_visible is nonzero for unobscured and
4834 obscured frames, but zero for hidden and iconified frames. */
4835 if (FRAME_W32_P (f) && f->async_visible)
4836 {
4837 RECT clipbox;
4838 HDC hdc;
4839
4840 enter_crit ();
4841 /* Query clipping rectangle for the entire window area
4842 (GetWindowDC), not just the client portion (GetDC).
4843 Otherwise, the scrollbars and menubar aren't counted as
4844 part of the visible area of the frame, and we may think
4845 the frame is obscured when really a scrollbar is still
4846 visible and gets WM_PAINT messages above. */
4847 hdc = GetWindowDC (FRAME_W32_WINDOW (f));
4848 GetClipBox (hdc, &clipbox);
4849 ReleaseDC (FRAME_W32_WINDOW (f), hdc);
4850 leave_crit ();
4851
4852 if (clipbox.right == clipbox.left
4853 || clipbox.bottom == clipbox.top)
4854 {
4855 /* Frame has become completely obscured so mark as
4856 such (we do this by setting async_visible to 2 so
4857 that FRAME_VISIBLE_P is still true, but redisplay
4858 will skip it). */
4859 f->async_visible = 2;
4860
4861 if (!FRAME_OBSCURED_P (f))
4862 {
4863 DebPrint (("frame %p (%s) obscured\n", f,
4864 SDATA (f->name)));
4865 }
4866 }
4867 else
4868 {
4869 /* Frame is not obscured, so mark it as such. */
4870 f->async_visible = 1;
4871
4872 if (FRAME_OBSCURED_P (f))
4873 {
4874 SET_FRAME_GARBAGED (f);
4875 DebPrint (("obscured frame %p (%s) found to be visible\n", f,
4876 SDATA (f->name)));
4877
4878 /* Force a redisplay sooner or later. */
4879 record_asynch_buffer_change ();
4880 }
4881 }
4882 }
4883 }
4884 }
4885
4886 UNBLOCK_INPUT;
4887 return count;
4888 }
4889
4890
4891
4892 \f
4893 /***********************************************************************
4894 Text Cursor
4895 ***********************************************************************/
4896
4897 /* Set clipping for output in glyph row ROW. W is the window in which
4898 we operate. GC is the graphics context to set clipping in.
4899
4900 ROW may be a text row or, e.g., a mode line. Text rows must be
4901 clipped to the interior of the window dedicated to text display,
4902 mode lines must be clipped to the whole window. */
4903
4904 static void
4905 w32_clip_to_row (w, row, hdc)
4906 struct window *w;
4907 struct glyph_row *row;
4908 HDC hdc;
4909 {
4910 struct frame *f = XFRAME (WINDOW_FRAME (w));
4911 RECT clip_rect;
4912 int window_y, window_width;
4913
4914 window_box (w, -1, 0, &window_y, &window_width, 0);
4915
4916 clip_rect.left = WINDOW_TO_FRAME_PIXEL_X (w, 0);
4917 clip_rect.top = WINDOW_TO_FRAME_PIXEL_Y (w, row->y);
4918 clip_rect.top = max (clip_rect.top, window_y);
4919 clip_rect.right = clip_rect.left + window_width;
4920 clip_rect.bottom = clip_rect.top + row->visible_height;
4921
4922 w32_set_clip_rectangle (hdc, &clip_rect);
4923 }
4924
4925
4926 /* Draw a hollow box cursor on window W in glyph row ROW. */
4927
4928 static void
4929 x_draw_hollow_cursor (w, row)
4930 struct window *w;
4931 struct glyph_row *row;
4932 {
4933 struct frame *f = XFRAME (WINDOW_FRAME (w));
4934 HDC hdc;
4935 RECT rect;
4936 int wd, h;
4937 struct glyph *cursor_glyph;
4938 HBRUSH hb = CreateSolidBrush (f->output_data.w32->cursor_pixel);
4939
4940 /* Get the glyph the cursor is on. If we can't tell because
4941 the current matrix is invalid or such, give up. */
4942 cursor_glyph = get_phys_cursor_glyph (w);
4943 if (cursor_glyph == NULL)
4944 return;
4945
4946 /* Compute frame-relative coordinates from window-relative
4947 coordinates. */
4948 rect.left = WINDOW_TEXT_TO_FRAME_PIXEL_X (w, w->phys_cursor.x);
4949 rect.top = (WINDOW_TO_FRAME_PIXEL_Y (w, w->phys_cursor.y)
4950 + row->ascent - w->phys_cursor_ascent);
4951
4952 /* Compute the proper height and ascent of the rectangle, based
4953 on the actual glyph. Using the full height of the row looks
4954 bad when there are tall images on that row. */
4955 h = max (min (FRAME_LINE_HEIGHT (f), row->height),
4956 cursor_glyph->ascent + cursor_glyph->descent);
4957 if (h < row->height)
4958 rect.top += row->ascent /* - w->phys_cursor_ascent */ + cursor_glyph->descent - h;
4959 h--;
4960
4961 rect.bottom = rect.top + h;
4962
4963 /* Compute the width of the rectangle to draw. If on a stretch
4964 glyph, and `x-stretch-block-cursor' is nil, don't draw a
4965 rectangle as wide as the glyph, but use a canonical character
4966 width instead. */
4967 wd = cursor_glyph->pixel_width; /* TODO: Why off by one compared with X? */
4968 if (cursor_glyph->type == STRETCH_GLYPH
4969 && !x_stretch_cursor_p)
4970 wd = min (FRAME_COLUMN_WIDTH (f), wd);
4971 w->phys_cursor_width = wd;
4972
4973 rect.right = rect.left + wd;
4974 hdc = get_frame_dc (f);
4975 /* Set clipping, draw the rectangle, and reset clipping again. */
4976 w32_clip_to_row (w, row, hdc);
4977 FrameRect (hdc, &rect, hb);
4978 DeleteObject (hb);
4979 w32_set_clip_rectangle (hdc, NULL);
4980 release_frame_dc (f, hdc);
4981 }
4982
4983
4984 /* Draw a bar cursor on window W in glyph row ROW.
4985
4986 Implementation note: One would like to draw a bar cursor with an
4987 angle equal to the one given by the font property XA_ITALIC_ANGLE.
4988 Unfortunately, I didn't find a font yet that has this property set.
4989 --gerd. */
4990
4991 static void
4992 x_draw_bar_cursor (w, row, width, kind)
4993 struct window *w;
4994 struct glyph_row *row;
4995 int width;
4996 enum text_cursor_kinds kind;
4997 {
4998 struct frame *f = XFRAME (w->frame);
4999 struct glyph *cursor_glyph;
5000 int x;
5001 HDC hdc;
5002
5003 /* If cursor is out of bounds, don't draw garbage. This can happen
5004 in mini-buffer windows when switching between echo area glyphs
5005 and mini-buffer. */
5006 cursor_glyph = get_phys_cursor_glyph (w);
5007 if (cursor_glyph == NULL)
5008 return;
5009
5010 /* If on an image, draw like a normal cursor. That's usually better
5011 visible than drawing a bar, esp. if the image is large so that
5012 the bar might not be in the window. */
5013 if (cursor_glyph->type == IMAGE_GLYPH)
5014 {
5015 struct glyph_row *row;
5016 row = MATRIX_ROW (w->current_matrix, w->phys_cursor.vpos);
5017 draw_phys_cursor_glyph (w, row, DRAW_CURSOR);
5018 }
5019 else
5020 {
5021 COLORREF cursor_color = f->output_data.w32->cursor_pixel;
5022 struct face *face = FACE_FROM_ID (f, cursor_glyph->face_id);
5023
5024 /* If the glyph's background equals the color we normally draw
5025 the bar cursor in, the bar cursor in its normal color is
5026 invisible. Use the glyph's foreground color instead in this
5027 case, on the assumption that the glyph's colors are chosen so
5028 that the glyph is legible. */
5029 if (face->background == cursor_color)
5030 cursor_color = face->foreground;
5031
5032 x = WINDOW_TEXT_TO_FRAME_PIXEL_X (w, w->phys_cursor.x);
5033
5034 if (width < 0)
5035 width = FRAME_CURSOR_WIDTH (f);
5036 width = min (cursor_glyph->pixel_width, width);
5037
5038 w->phys_cursor_width = width;
5039
5040
5041 hdc = get_frame_dc (f);
5042 w32_clip_to_row (w, row, hdc);
5043
5044 if (kind == BAR_CURSOR)
5045 {
5046 w32_fill_area (f, hdc, cursor_color, x,
5047 WINDOW_TO_FRAME_PIXEL_Y (w, w->phys_cursor.y),
5048 width, row->height);
5049 }
5050 else
5051 {
5052 w32_fill_area (f, hdc, cursor_color, x,
5053 WINDOW_TO_FRAME_PIXEL_Y (w, w->phys_cursor.y +
5054 row->height - width),
5055 cursor_glyph->pixel_width, width);
5056 }
5057
5058 w32_set_clip_rectangle (hdc, NULL);
5059 release_frame_dc (f, hdc);
5060 }
5061 }
5062
5063
5064 /* RIF: Define cursor CURSOR on frame F. */
5065
5066 static void
5067 w32_define_frame_cursor (f, cursor)
5068 struct frame *f;
5069 Cursor cursor;
5070 {
5071 w32_define_cursor (FRAME_W32_WINDOW (f), cursor);
5072 }
5073
5074
5075 /* RIF: Clear area on frame F. */
5076
5077 static void
5078 w32_clear_frame_area (f, x, y, width, height)
5079 struct frame *f;
5080 int x, y, width, height;
5081 {
5082 HDC hdc;
5083
5084 hdc = get_frame_dc (f);
5085 w32_clear_area (f, hdc, x, y, width, height);
5086 release_frame_dc (f, hdc);
5087 }
5088
5089 /* RIF: Draw or clear cursor on window W. */
5090
5091 static void
5092 w32_draw_window_cursor (w, glyph_row, x, y, cursor_type, cursor_width, on_p, active_p)
5093 struct window *w;
5094 struct glyph_row *glyph_row;
5095 int x, y;
5096 int cursor_type, cursor_width;
5097 int on_p, active_p;
5098 {
5099 if (on_p)
5100 {
5101 /* If the user wants to use the system caret, make sure our own
5102 cursor remains invisible. */
5103 if (w32_use_visible_system_caret)
5104 {
5105 /* Call to erase_phys_cursor here seems to use the
5106 wrong values of w->phys_cursor, as they have been
5107 overwritten before this function was called. */
5108 if (w->phys_cursor_type != NO_CURSOR)
5109 erase_phys_cursor (w);
5110
5111 cursor_type = w->phys_cursor_type = NO_CURSOR;
5112 w->phys_cursor_width = -1;
5113 }
5114 else
5115 {
5116 w->phys_cursor_type = cursor_type;
5117 }
5118
5119 w->phys_cursor_on_p = 1;
5120
5121 /* If this is the active cursor, we need to track it with the
5122 system caret, so third party software like screen magnifiers
5123 and speech synthesizers can follow the cursor. */
5124 if (active_p)
5125 {
5126 struct frame *f = XFRAME (WINDOW_FRAME (w));
5127 HWND hwnd = FRAME_W32_WINDOW (f);
5128
5129 w32_system_caret_x
5130 = WINDOW_TEXT_TO_FRAME_PIXEL_X (w, w->phys_cursor.x);
5131 w32_system_caret_y
5132 = (WINDOW_TO_FRAME_PIXEL_Y (w, w->phys_cursor.y)
5133 + glyph_row->ascent - w->phys_cursor_ascent);
5134
5135 /* If the size of the active cursor changed, destroy the old
5136 system caret. */
5137 if (w32_system_caret_hwnd
5138 && (w32_system_caret_height != w->phys_cursor_height))
5139 PostMessage (hwnd, WM_EMACS_DESTROY_CARET, 0, 0);
5140
5141 w32_system_caret_height = w->phys_cursor_height;
5142
5143 /* Move the system caret. */
5144 PostMessage (hwnd, WM_EMACS_TRACK_CARET, 0, 0);
5145 }
5146
5147 if (glyph_row->exact_window_width_line_p
5148 && w->phys_cursor.hpos >= glyph_row->used[TEXT_AREA])
5149 {
5150 glyph_row->cursor_in_fringe_p = 1;
5151 draw_fringe_bitmap (w, glyph_row, 0);
5152 return;
5153 }
5154
5155 switch (cursor_type)
5156 {
5157 case HOLLOW_BOX_CURSOR:
5158 x_draw_hollow_cursor (w, glyph_row);
5159 break;
5160
5161 case FILLED_BOX_CURSOR:
5162 draw_phys_cursor_glyph (w, glyph_row, DRAW_CURSOR);
5163 break;
5164
5165 case BAR_CURSOR:
5166 x_draw_bar_cursor (w, glyph_row, cursor_width, BAR_CURSOR);
5167 break;
5168
5169 case HBAR_CURSOR:
5170 x_draw_bar_cursor (w, glyph_row, cursor_width, HBAR_CURSOR);
5171 break;
5172
5173 case NO_CURSOR:
5174 w->phys_cursor_width = 0;
5175 break;
5176
5177 default:
5178 abort ();
5179 }
5180 }
5181 }
5182
5183
5184 \f
5185 /* Icons. */
5186
5187 int
5188 x_bitmap_icon (f, icon)
5189 struct frame *f;
5190 Lisp_Object icon;
5191 {
5192 HANDLE hicon;
5193
5194 if (FRAME_W32_WINDOW (f) == 0)
5195 return 1;
5196
5197 if (NILP (icon))
5198 hicon = LoadIcon (hinst, EMACS_CLASS);
5199 else if (STRINGP (icon))
5200 hicon = LoadImage (NULL, (LPCTSTR) SDATA (icon), IMAGE_ICON, 0, 0,
5201 LR_DEFAULTSIZE | LR_LOADFROMFILE);
5202 else if (SYMBOLP (icon))
5203 {
5204 LPCTSTR name;
5205
5206 if (EQ (icon, intern ("application")))
5207 name = (LPCTSTR) IDI_APPLICATION;
5208 else if (EQ (icon, intern ("hand")))
5209 name = (LPCTSTR) IDI_HAND;
5210 else if (EQ (icon, intern ("question")))
5211 name = (LPCTSTR) IDI_QUESTION;
5212 else if (EQ (icon, intern ("exclamation")))
5213 name = (LPCTSTR) IDI_EXCLAMATION;
5214 else if (EQ (icon, intern ("asterisk")))
5215 name = (LPCTSTR) IDI_ASTERISK;
5216 else if (EQ (icon, intern ("winlogo")))
5217 name = (LPCTSTR) IDI_WINLOGO;
5218 else
5219 return 1;
5220
5221 hicon = LoadIcon (NULL, name);
5222 }
5223 else
5224 return 1;
5225
5226 if (hicon == NULL)
5227 return 1;
5228
5229 PostMessage (FRAME_W32_WINDOW (f), WM_SETICON, (WPARAM) ICON_BIG,
5230 (LPARAM) hicon);
5231
5232 return 0;
5233 }
5234
5235 \f
5236 /************************************************************************
5237 Handling X errors
5238 ************************************************************************/
5239
5240 /* Display Error Handling functions not used on W32. Listing them here
5241 helps diff stay in step when comparing w32term.c with xterm.c.
5242
5243 x_error_catcher (display, error)
5244 x_catch_errors (dpy)
5245 x_catch_errors_unwind (old_val)
5246 x_check_errors (dpy, format)
5247 x_had_errors_p (dpy)
5248 x_clear_errors (dpy)
5249 x_uncatch_errors (dpy, count)
5250 x_trace_wire ()
5251 x_connection_signal (signalnum)
5252 x_connection_closed (dpy, error_message)
5253 x_error_quitter (display, error)
5254 x_error_handler (display, error)
5255 x_io_error_quitter (display)
5256
5257 */
5258
5259 \f
5260 /* Changing the font of the frame. */
5261
5262 /* Give frame F the font named FONTNAME as its default font, and
5263 return the full name of that font. FONTNAME may be a wildcard
5264 pattern; in that case, we choose some font that fits the pattern.
5265 The return value shows which font we chose. */
5266
5267 Lisp_Object
5268 x_new_font (f, fontname)
5269 struct frame *f;
5270 register char *fontname;
5271 {
5272 struct font_info *fontp
5273 = FS_LOAD_FONT (f, 0, fontname, -1);
5274
5275 if (!fontp)
5276 return Qnil;
5277
5278 FRAME_FONT (f) = (XFontStruct *) (fontp->font);
5279 FRAME_BASELINE_OFFSET (f) = fontp->baseline_offset;
5280 FRAME_FONTSET (f) = -1;
5281
5282 FRAME_COLUMN_WIDTH (f) = FONT_WIDTH (FRAME_FONT (f));
5283 FRAME_LINE_HEIGHT (f) = FONT_HEIGHT (FRAME_FONT (f));
5284
5285 compute_fringe_widths (f, 1);
5286
5287 /* Compute the scroll bar width in character columns. */
5288 if (FRAME_CONFIG_SCROLL_BAR_WIDTH (f) > 0)
5289 {
5290 int wid = FRAME_COLUMN_WIDTH (f);
5291 FRAME_CONFIG_SCROLL_BAR_COLS (f)
5292 = (FRAME_CONFIG_SCROLL_BAR_WIDTH (f) + wid-1) / wid;
5293 }
5294 else
5295 {
5296 int wid = FRAME_COLUMN_WIDTH (f);
5297 FRAME_CONFIG_SCROLL_BAR_COLS (f) = (14 + wid - 1) / wid;
5298 }
5299
5300 /* Now make the frame display the given font. */
5301 if (FRAME_W32_WINDOW (f) != 0)
5302 {
5303 if (NILP (tip_frame) || XFRAME (tip_frame) != f)
5304 x_set_window_size (f, 0, FRAME_COLS (f), FRAME_LINES (f));
5305 }
5306
5307 return build_string (fontp->full_name);
5308 }
5309 \f
5310 /* Give frame F the fontset named FONTSETNAME as its default font, and
5311 return the full name of that fontset. FONTSETNAME may be a wildcard
5312 pattern; in that case, we choose some fontset that fits the pattern.
5313 The return value shows which fontset we chose. */
5314
5315 Lisp_Object
5316 x_new_fontset (f, fontsetname)
5317 struct frame *f;
5318 char *fontsetname;
5319 {
5320 int fontset = fs_query_fontset (build_string (fontsetname), 0);
5321 Lisp_Object result;
5322
5323 if (fontset < 0)
5324 return Qnil;
5325
5326 if (FRAME_FONTSET (f) == fontset)
5327 /* This fontset is already set in frame F. There's nothing more
5328 to do. */
5329 return fontset_name (fontset);
5330
5331 result = x_new_font (f, (SDATA (fontset_ascii (fontset))));
5332
5333 if (!STRINGP (result))
5334 /* Can't load ASCII font. */
5335 return Qnil;
5336
5337 /* Since x_new_font doesn't update any fontset information, do it now. */
5338 FRAME_FONTSET(f) = fontset;
5339
5340 return build_string (fontsetname);
5341 }
5342
5343 \f
5344 /***********************************************************************
5345 TODO: W32 Input Methods
5346 ***********************************************************************/
5347 /* Listing missing functions from xterm.c helps diff stay in step.
5348
5349 xim_destroy_callback (xim, client_data, call_data)
5350 xim_open_dpy (dpyinfo, resource_name)
5351 struct xim_inst_t
5352 xim_instantiate_callback (display, client_data, call_data)
5353 xim_initialize (dpyinfo, resource_name)
5354 xim_close_dpy (dpyinfo)
5355
5356 */
5357
5358 \f
5359 /* Calculate the absolute position in frame F
5360 from its current recorded position values and gravity. */
5361
5362 void
5363 x_calc_absolute_position (f)
5364 struct frame *f;
5365 {
5366 POINT pt;
5367 int flags = f->size_hint_flags;
5368
5369 pt.x = pt.y = 0;
5370
5371 /* Find the position of the outside upper-left corner of
5372 the inner window, with respect to the outer window.
5373 But do this only if we will need the results. */
5374 if (f->output_data.w32->parent_desc != FRAME_W32_DISPLAY_INFO (f)->root_window)
5375 {
5376 BLOCK_INPUT;
5377 MapWindowPoints (FRAME_W32_WINDOW (f),
5378 f->output_data.w32->parent_desc,
5379 &pt, 1);
5380 UNBLOCK_INPUT;
5381 }
5382
5383 {
5384 RECT rt;
5385 rt.left = rt.right = rt.top = rt.bottom = 0;
5386
5387 BLOCK_INPUT;
5388 AdjustWindowRect(&rt, f->output_data.w32->dwStyle,
5389 FRAME_EXTERNAL_MENU_BAR (f));
5390 UNBLOCK_INPUT;
5391
5392 pt.x += (rt.right - rt.left);
5393 pt.y += (rt.bottom - rt.top);
5394 }
5395
5396 /* Treat negative positions as relative to the leftmost bottommost
5397 position that fits on the screen. */
5398 if (flags & XNegative)
5399 f->left_pos = (FRAME_W32_DISPLAY_INFO (f)->width
5400 - 2 * f->border_width - pt.x
5401 - FRAME_PIXEL_WIDTH (f)
5402 + f->left_pos);
5403
5404 if (flags & YNegative)
5405 f->top_pos = (FRAME_W32_DISPLAY_INFO (f)->height
5406 - 2 * f->border_width - pt.y
5407 - FRAME_PIXEL_HEIGHT (f)
5408 + f->top_pos);
5409 /* The left_pos and top_pos
5410 are now relative to the top and left screen edges,
5411 so the flags should correspond. */
5412 f->size_hint_flags &= ~ (XNegative | YNegative);
5413 }
5414
5415 /* CHANGE_GRAVITY is 1 when calling from Fset_frame_position,
5416 to really change the position, and 0 when calling from
5417 x_make_frame_visible (in that case, XOFF and YOFF are the current
5418 position values). It is -1 when calling from x_set_frame_parameters,
5419 which means, do adjust for borders but don't change the gravity. */
5420
5421 void
5422 x_set_offset (f, xoff, yoff, change_gravity)
5423 struct frame *f;
5424 register int xoff, yoff;
5425 int change_gravity;
5426 {
5427 int modified_top, modified_left;
5428
5429 if (change_gravity > 0)
5430 {
5431 f->top_pos = yoff;
5432 f->left_pos = xoff;
5433 f->size_hint_flags &= ~ (XNegative | YNegative);
5434 if (xoff < 0)
5435 f->size_hint_flags |= XNegative;
5436 if (yoff < 0)
5437 f->size_hint_flags |= YNegative;
5438 f->win_gravity = NorthWestGravity;
5439 }
5440 x_calc_absolute_position (f);
5441
5442 BLOCK_INPUT;
5443 x_wm_set_size_hint (f, (long) 0, 0);
5444
5445 modified_left = f->left_pos;
5446 modified_top = f->top_pos;
5447
5448 my_set_window_pos (FRAME_W32_WINDOW (f),
5449 NULL,
5450 modified_left, modified_top,
5451 0, 0,
5452 SWP_NOZORDER | SWP_NOSIZE | SWP_NOACTIVATE);
5453 UNBLOCK_INPUT;
5454 }
5455
5456
5457 /* Check if we need to resize the frame due to a fullscreen request.
5458 If so needed, resize the frame. */
5459 static void
5460 x_check_fullscreen (f)
5461 struct frame *f;
5462 {
5463 if (f->want_fullscreen & FULLSCREEN_BOTH)
5464 {
5465 int width, height, ign;
5466
5467 x_real_positions (f, &f->left_pos, &f->top_pos);
5468
5469 x_fullscreen_adjust (f, &width, &height, &ign, &ign);
5470
5471 /* We do not need to move the window, it shall be taken care of
5472 when setting WM manager hints. */
5473 if (FRAME_COLS (f) != width || FRAME_LINES (f) != height)
5474 {
5475 change_frame_size (f, height, width, 0, 1, 0);
5476 SET_FRAME_GARBAGED (f);
5477 cancel_mouse_face (f);
5478
5479 /* Wait for the change of frame size to occur */
5480 f->want_fullscreen |= FULLSCREEN_WAIT;
5481 }
5482 }
5483 }
5484
5485 /* Call this to change the size of frame F's x-window.
5486 If CHANGE_GRAVITY is 1, we change to top-left-corner window gravity
5487 for this size change and subsequent size changes.
5488 Otherwise we leave the window gravity unchanged. */
5489
5490 void
5491 x_set_window_size (f, change_gravity, cols, rows)
5492 struct frame *f;
5493 int change_gravity;
5494 int cols, rows;
5495 {
5496 int pixelwidth, pixelheight;
5497
5498 BLOCK_INPUT;
5499
5500 check_frame_size (f, &rows, &cols);
5501 f->scroll_bar_actual_width
5502 = FRAME_SCROLL_BAR_COLS (f) * FRAME_COLUMN_WIDTH (f);
5503
5504 compute_fringe_widths (f, 0);
5505
5506 pixelwidth = FRAME_TEXT_COLS_TO_PIXEL_WIDTH (f, cols);
5507 pixelheight = FRAME_TEXT_LINES_TO_PIXEL_HEIGHT (f, rows);
5508
5509 f->win_gravity = NorthWestGravity;
5510 x_wm_set_size_hint (f, (long) 0, 0);
5511
5512 {
5513 RECT rect;
5514
5515 rect.left = rect.top = 0;
5516 rect.right = pixelwidth;
5517 rect.bottom = pixelheight;
5518
5519 AdjustWindowRect(&rect, f->output_data.w32->dwStyle,
5520 FRAME_EXTERNAL_MENU_BAR (f));
5521
5522 my_set_window_pos (FRAME_W32_WINDOW (f),
5523 NULL,
5524 0, 0,
5525 rect.right - rect.left,
5526 rect.bottom - rect.top,
5527 SWP_NOZORDER | SWP_NOMOVE | SWP_NOACTIVATE);
5528 }
5529
5530 /* Now, strictly speaking, we can't be sure that this is accurate,
5531 but the window manager will get around to dealing with the size
5532 change request eventually, and we'll hear how it went when the
5533 ConfigureNotify event gets here.
5534
5535 We could just not bother storing any of this information here,
5536 and let the ConfigureNotify event set everything up, but that
5537 might be kind of confusing to the Lisp code, since size changes
5538 wouldn't be reported in the frame parameters until some random
5539 point in the future when the ConfigureNotify event arrives.
5540
5541 We pass 1 for DELAY since we can't run Lisp code inside of
5542 a BLOCK_INPUT. */
5543 change_frame_size (f, rows, cols, 0, 1, 0);
5544 FRAME_PIXEL_WIDTH (f) = pixelwidth;
5545 FRAME_PIXEL_HEIGHT (f) = pixelheight;
5546
5547 /* We've set {FRAME,PIXEL}_{WIDTH,HEIGHT} to the values we hope to
5548 receive in the ConfigureNotify event; if we get what we asked
5549 for, then the event won't cause the screen to become garbaged, so
5550 we have to make sure to do it here. */
5551 SET_FRAME_GARBAGED (f);
5552
5553 /* If cursor was outside the new size, mark it as off. */
5554 mark_window_cursors_off (XWINDOW (f->root_window));
5555
5556 /* Clear out any recollection of where the mouse highlighting was,
5557 since it might be in a place that's outside the new frame size.
5558 Actually checking whether it is outside is a pain in the neck,
5559 so don't try--just let the highlighting be done afresh with new size. */
5560 cancel_mouse_face (f);
5561
5562 UNBLOCK_INPUT;
5563 }
5564 \f
5565 /* Mouse warping. */
5566
5567 void x_set_mouse_pixel_position (struct frame *f, int pix_x, int pix_y);
5568
5569 void
5570 x_set_mouse_position (f, x, y)
5571 struct frame *f;
5572 int x, y;
5573 {
5574 int pix_x, pix_y;
5575
5576 pix_x = FRAME_COL_TO_PIXEL_X (f, x) + FRAME_COLUMN_WIDTH (f) / 2;
5577 pix_y = FRAME_LINE_TO_PIXEL_Y (f, y) + FRAME_LINE_HEIGHT (f) / 2;
5578
5579 if (pix_x < 0) pix_x = 0;
5580 if (pix_x > FRAME_PIXEL_WIDTH (f)) pix_x = FRAME_PIXEL_WIDTH (f);
5581
5582 if (pix_y < 0) pix_y = 0;
5583 if (pix_y > FRAME_PIXEL_HEIGHT (f)) pix_y = FRAME_PIXEL_HEIGHT (f);
5584
5585 x_set_mouse_pixel_position (f, pix_x, pix_y);
5586 }
5587
5588 void
5589 x_set_mouse_pixel_position (f, pix_x, pix_y)
5590 struct frame *f;
5591 int pix_x, pix_y;
5592 {
5593 RECT rect;
5594 POINT pt;
5595
5596 BLOCK_INPUT;
5597
5598 GetClientRect (FRAME_W32_WINDOW (f), &rect);
5599 pt.x = rect.left + pix_x;
5600 pt.y = rect.top + pix_y;
5601 ClientToScreen (FRAME_W32_WINDOW (f), &pt);
5602
5603 SetCursorPos (pt.x, pt.y);
5604
5605 UNBLOCK_INPUT;
5606 }
5607
5608 \f
5609 /* focus shifting, raising and lowering. */
5610
5611 void
5612 x_focus_on_frame (f)
5613 struct frame *f;
5614 {
5615 struct w32_display_info *dpyinfo = &one_w32_display_info;
5616
5617 /* Give input focus to frame. */
5618 BLOCK_INPUT;
5619 #if 0
5620 /* Try not to change its Z-order if possible. */
5621 if (x_window_to_frame (dpyinfo, GetForegroundWindow ()))
5622 my_set_focus (f, FRAME_W32_WINDOW (f));
5623 else
5624 #endif
5625 my_set_foreground_window (FRAME_W32_WINDOW (f));
5626 UNBLOCK_INPUT;
5627 }
5628
5629 void
5630 x_unfocus_frame (f)
5631 struct frame *f;
5632 {
5633 }
5634
5635 /* Raise frame F. */
5636 void
5637 x_raise_frame (f)
5638 struct frame *f;
5639 {
5640 BLOCK_INPUT;
5641
5642 /* Strictly speaking, raise-frame should only change the frame's Z
5643 order, leaving input focus unchanged. This is reasonable behaviour
5644 on X where the usual policy is point-to-focus. However, this
5645 behaviour would be very odd on Windows where the usual policy is
5646 click-to-focus.
5647
5648 On X, if the mouse happens to be over the raised frame, it gets
5649 input focus anyway (so the window with focus will never be
5650 completely obscured) - if not, then just moving the mouse over it
5651 is sufficient to give it focus. On Windows, the user must actually
5652 click on the frame (preferrably the title bar so as not to move
5653 point), which is more awkward. Also, no other Windows program
5654 raises a window to the top but leaves another window (possibly now
5655 completely obscured) with input focus.
5656
5657 Because there is a system setting on Windows that allows the user
5658 to choose the point to focus policy, we make the strict semantics
5659 optional, but by default we grab focus when raising. */
5660
5661 if (NILP (Vw32_grab_focus_on_raise))
5662 {
5663 /* The obvious call to my_set_window_pos doesn't work if Emacs is
5664 not already the foreground application: the frame is raised
5665 above all other frames belonging to us, but not above the
5666 current top window. To achieve that, we have to resort to this
5667 more cumbersome method. */
5668
5669 HDWP handle = BeginDeferWindowPos (2);
5670 if (handle)
5671 {
5672 DeferWindowPos (handle,
5673 FRAME_W32_WINDOW (f),
5674 HWND_TOP,
5675 0, 0, 0, 0,
5676 SWP_NOSIZE | SWP_NOMOVE | SWP_NOACTIVATE);
5677
5678 DeferWindowPos (handle,
5679 GetForegroundWindow (),
5680 FRAME_W32_WINDOW (f),
5681 0, 0, 0, 0,
5682 SWP_NOSIZE | SWP_NOMOVE | SWP_NOACTIVATE);
5683
5684 EndDeferWindowPos (handle);
5685 }
5686 }
5687 else
5688 {
5689 my_set_foreground_window (FRAME_W32_WINDOW (f));
5690 }
5691
5692 UNBLOCK_INPUT;
5693 }
5694
5695 /* Lower frame F. */
5696 void
5697 x_lower_frame (f)
5698 struct frame *f;
5699 {
5700 BLOCK_INPUT;
5701 my_set_window_pos (FRAME_W32_WINDOW (f),
5702 HWND_BOTTOM,
5703 0, 0, 0, 0,
5704 SWP_NOSIZE | SWP_NOMOVE | SWP_NOACTIVATE);
5705 UNBLOCK_INPUT;
5706 }
5707
5708 static void
5709 w32_frame_raise_lower (f, raise_flag)
5710 FRAME_PTR f;
5711 int raise_flag;
5712 {
5713 if (! FRAME_W32_P (f))
5714 return;
5715
5716 if (raise_flag)
5717 x_raise_frame (f);
5718 else
5719 x_lower_frame (f);
5720 }
5721 \f
5722 /* Change of visibility. */
5723
5724 /* This tries to wait until the frame is really visible.
5725 However, if the window manager asks the user where to position
5726 the frame, this will return before the user finishes doing that.
5727 The frame will not actually be visible at that time,
5728 but it will become visible later when the window manager
5729 finishes with it. */
5730
5731 void
5732 x_make_frame_visible (f)
5733 struct frame *f;
5734 {
5735 Lisp_Object type;
5736
5737 BLOCK_INPUT;
5738
5739 type = x_icon_type (f);
5740 if (!NILP (type))
5741 x_bitmap_icon (f, type);
5742
5743 if (! FRAME_VISIBLE_P (f))
5744 {
5745 /* We test FRAME_GARBAGED_P here to make sure we don't
5746 call x_set_offset a second time
5747 if we get to x_make_frame_visible a second time
5748 before the window gets really visible. */
5749 if (! FRAME_ICONIFIED_P (f)
5750 && ! f->output_data.w32->asked_for_visible)
5751 x_set_offset (f, f->left_pos, f->top_pos, 0);
5752
5753 f->output_data.w32->asked_for_visible = 1;
5754
5755 /* my_show_window (f, FRAME_W32_WINDOW (f), f->async_iconified ? SW_RESTORE : SW_SHOW); */
5756 my_show_window (f, FRAME_W32_WINDOW (f), SW_SHOWNORMAL);
5757 }
5758
5759 /* Synchronize to ensure Emacs knows the frame is visible
5760 before we do anything else. We do this loop with input not blocked
5761 so that incoming events are handled. */
5762 {
5763 Lisp_Object frame;
5764 int count;
5765
5766 /* This must come after we set COUNT. */
5767 UNBLOCK_INPUT;
5768
5769 XSETFRAME (frame, f);
5770
5771 /* Wait until the frame is visible. Process X events until a
5772 MapNotify event has been seen, or until we think we won't get a
5773 MapNotify at all.. */
5774 for (count = input_signal_count + 10;
5775 input_signal_count < count && !FRAME_VISIBLE_P (f);)
5776 {
5777 /* Force processing of queued events. */
5778 /* TODO: x_sync equivalent? */
5779
5780 /* Machines that do polling rather than SIGIO have been observed
5781 to go into a busy-wait here. So we'll fake an alarm signal
5782 to let the handler know that there's something to be read.
5783 We used to raise a real alarm, but it seems that the handler
5784 isn't always enabled here. This is probably a bug. */
5785 if (input_polling_used ())
5786 {
5787 /* It could be confusing if a real alarm arrives while processing
5788 the fake one. Turn it off and let the handler reset it. */
5789 int old_poll_suppress_count = poll_suppress_count;
5790 poll_suppress_count = 1;
5791 poll_for_input_1 ();
5792 poll_suppress_count = old_poll_suppress_count;
5793 }
5794 }
5795 FRAME_SAMPLE_VISIBILITY (f);
5796 }
5797 }
5798
5799 /* Change from mapped state to withdrawn state. */
5800
5801 /* Make the frame visible (mapped and not iconified). */
5802
5803 x_make_frame_invisible (f)
5804 struct frame *f;
5805 {
5806 /* Don't keep the highlight on an invisible frame. */
5807 if (FRAME_W32_DISPLAY_INFO (f)->x_highlight_frame == f)
5808 FRAME_W32_DISPLAY_INFO (f)->x_highlight_frame = 0;
5809
5810 BLOCK_INPUT;
5811
5812 my_show_window (f, FRAME_W32_WINDOW (f), SW_HIDE);
5813
5814 /* We can't distinguish this from iconification
5815 just by the event that we get from the server.
5816 So we can't win using the usual strategy of letting
5817 FRAME_SAMPLE_VISIBILITY set this. So do it by hand,
5818 and synchronize with the server to make sure we agree. */
5819 f->visible = 0;
5820 FRAME_ICONIFIED_P (f) = 0;
5821 f->async_visible = 0;
5822 f->async_iconified = 0;
5823
5824 UNBLOCK_INPUT;
5825 }
5826
5827 /* Change window state from mapped to iconified. */
5828
5829 void
5830 x_iconify_frame (f)
5831 struct frame *f;
5832 {
5833 Lisp_Object type;
5834
5835 /* Don't keep the highlight on an invisible frame. */
5836 if (FRAME_W32_DISPLAY_INFO (f)->x_highlight_frame == f)
5837 FRAME_W32_DISPLAY_INFO (f)->x_highlight_frame = 0;
5838
5839 if (f->async_iconified)
5840 return;
5841
5842 BLOCK_INPUT;
5843
5844 type = x_icon_type (f);
5845 if (!NILP (type))
5846 x_bitmap_icon (f, type);
5847
5848 /* Simulate the user minimizing the frame. */
5849 SendMessage (FRAME_W32_WINDOW (f), WM_SYSCOMMAND, SC_MINIMIZE, 0);
5850
5851 UNBLOCK_INPUT;
5852 }
5853
5854 \f
5855 /* Free X resources of frame F. */
5856
5857 void
5858 x_free_frame_resources (f)
5859 struct frame *f;
5860 {
5861 struct w32_display_info *dpyinfo = FRAME_W32_DISPLAY_INFO (f);
5862
5863 BLOCK_INPUT;
5864
5865 if (FRAME_W32_WINDOW (f))
5866 my_destroy_window (f, FRAME_W32_WINDOW (f));
5867
5868 free_frame_menubar (f);
5869
5870 unload_color (f, f->output_data.x->foreground_pixel);
5871 unload_color (f, f->output_data.x->background_pixel);
5872 unload_color (f, f->output_data.w32->cursor_pixel);
5873 unload_color (f, f->output_data.w32->cursor_foreground_pixel);
5874 unload_color (f, f->output_data.w32->border_pixel);
5875 unload_color (f, f->output_data.w32->mouse_pixel);
5876 if (f->output_data.w32->white_relief.allocated_p)
5877 unload_color (f, f->output_data.w32->white_relief.pixel);
5878 if (f->output_data.w32->black_relief.allocated_p)
5879 unload_color (f, f->output_data.w32->black_relief.pixel);
5880
5881 if (FRAME_FACE_CACHE (f))
5882 free_frame_faces (f);
5883
5884 xfree (f->output_data.w32);
5885 f->output_data.w32 = NULL;
5886
5887 if (f == dpyinfo->w32_focus_frame)
5888 dpyinfo->w32_focus_frame = 0;
5889 if (f == dpyinfo->w32_focus_event_frame)
5890 dpyinfo->w32_focus_event_frame = 0;
5891 if (f == dpyinfo->x_highlight_frame)
5892 dpyinfo->x_highlight_frame = 0;
5893
5894 if (f == dpyinfo->mouse_face_mouse_frame)
5895 {
5896 dpyinfo->mouse_face_beg_row
5897 = dpyinfo->mouse_face_beg_col = -1;
5898 dpyinfo->mouse_face_end_row
5899 = dpyinfo->mouse_face_end_col = -1;
5900 dpyinfo->mouse_face_window = Qnil;
5901 dpyinfo->mouse_face_deferred_gc = 0;
5902 dpyinfo->mouse_face_mouse_frame = 0;
5903 }
5904
5905 UNBLOCK_INPUT;
5906 }
5907
5908
5909 /* Destroy the window of frame F. */
5910
5911 x_destroy_window (f)
5912 struct frame *f;
5913 {
5914 struct w32_display_info *dpyinfo = FRAME_W32_DISPLAY_INFO (f);
5915
5916 x_free_frame_resources (f);
5917
5918 dpyinfo->reference_count--;
5919 }
5920
5921 \f
5922 /* Setting window manager hints. */
5923
5924 /* Set the normal size hints for the window manager, for frame F.
5925 FLAGS is the flags word to use--or 0 meaning preserve the flags
5926 that the window now has.
5927 If USER_POSITION is nonzero, we set the USPosition
5928 flag (this is useful when FLAGS is 0). */
5929 void
5930 x_wm_set_size_hint (f, flags, user_position)
5931 struct frame *f;
5932 long flags;
5933 int user_position;
5934 {
5935 Window window = FRAME_W32_WINDOW (f);
5936
5937 enter_crit ();
5938
5939 SetWindowLong (window, WND_FONTWIDTH_INDEX, FRAME_COLUMN_WIDTH (f));
5940 SetWindowLong (window, WND_LINEHEIGHT_INDEX, FRAME_LINE_HEIGHT (f));
5941 SetWindowLong (window, WND_BORDER_INDEX, FRAME_INTERNAL_BORDER_WIDTH (f));
5942 SetWindowLong (window, WND_SCROLLBAR_INDEX, f->scroll_bar_actual_width);
5943
5944 leave_crit ();
5945 }
5946
5947 /* Window manager things */
5948 void
5949 x_wm_set_icon_position (f, icon_x, icon_y)
5950 struct frame *f;
5951 int icon_x, icon_y;
5952 {
5953 #if 0
5954 Window window = FRAME_W32_WINDOW (f);
5955
5956 f->display.x->wm_hints.flags |= IconPositionHint;
5957 f->display.x->wm_hints.icon_x = icon_x;
5958 f->display.x->wm_hints.icon_y = icon_y;
5959
5960 XSetWMHints (FRAME_X_DISPLAY (f), window, &f->display.x->wm_hints);
5961 #endif
5962 }
5963
5964 \f
5965 /***********************************************************************
5966 Fonts
5967 ***********************************************************************/
5968
5969 /* The following functions are listed here to help diff stay in step
5970 with xterm.c. See w32fns.c for definitions.
5971
5972 x_get_font_info (f, font_idx)
5973 x_list_fonts (f, pattern, size, maxnames)
5974
5975 */
5976
5977 #if GLYPH_DEBUG
5978
5979 /* Check that FONT is valid on frame F. It is if it can be found in F's
5980 font table. */
5981
5982 static void
5983 x_check_font (f, font)
5984 struct frame *f;
5985 XFontStruct *font;
5986 {
5987 int i;
5988 struct w32_display_info *dpyinfo = FRAME_W32_DISPLAY_INFO (f);
5989
5990 xassert (font != NULL);
5991
5992 for (i = 0; i < dpyinfo->n_fonts; i++)
5993 if (dpyinfo->font_table[i].name
5994 && font == dpyinfo->font_table[i].font)
5995 break;
5996
5997 xassert (i < dpyinfo->n_fonts);
5998 }
5999
6000 #endif /* GLYPH_DEBUG != 0 */
6001
6002 /* Set *W to the minimum width, *H to the minimum font height of FONT.
6003 Note: There are (broken) X fonts out there with invalid XFontStruct
6004 min_bounds contents. For example, handa@etl.go.jp reports that
6005 "-adobe-courier-medium-r-normal--*-180-*-*-m-*-iso8859-1" fonts
6006 have font->min_bounds.width == 0. */
6007
6008 static INLINE void
6009 x_font_min_bounds (font, w, h)
6010 XFontStruct *font;
6011 int *w, *h;
6012 {
6013 /*
6014 * TODO: Windows does not appear to offer min bound, only
6015 * average and maximum width, and maximum height.
6016 */
6017 *h = FONT_HEIGHT (font);
6018 *w = FONT_WIDTH (font);
6019 }
6020
6021
6022 /* Compute the smallest character width and smallest font height over
6023 all fonts available on frame F. Set the members smallest_char_width
6024 and smallest_font_height in F's x_display_info structure to
6025 the values computed. Value is non-zero if smallest_font_height or
6026 smallest_char_width become smaller than they were before. */
6027
6028 int
6029 x_compute_min_glyph_bounds (f)
6030 struct frame *f;
6031 {
6032 int i;
6033 struct w32_display_info *dpyinfo = FRAME_W32_DISPLAY_INFO (f);
6034 XFontStruct *font;
6035 int old_width = dpyinfo->smallest_char_width;
6036 int old_height = dpyinfo->smallest_font_height;
6037
6038 dpyinfo->smallest_font_height = 100000;
6039 dpyinfo->smallest_char_width = 100000;
6040
6041 for (i = 0; i < dpyinfo->n_fonts; ++i)
6042 if (dpyinfo->font_table[i].name)
6043 {
6044 struct font_info *fontp = dpyinfo->font_table + i;
6045 int w, h;
6046
6047 font = (XFontStruct *) fontp->font;
6048 xassert (font != (XFontStruct *) ~0);
6049 x_font_min_bounds (font, &w, &h);
6050
6051 dpyinfo->smallest_font_height = min (dpyinfo->smallest_font_height, h);
6052 dpyinfo->smallest_char_width = min (dpyinfo->smallest_char_width, w);
6053 }
6054
6055 xassert (dpyinfo->smallest_char_width > 0
6056 && dpyinfo->smallest_font_height > 0);
6057
6058 return (dpyinfo->n_fonts == 1
6059 || dpyinfo->smallest_char_width < old_width
6060 || dpyinfo->smallest_font_height < old_height);
6061 }
6062
6063 /* The following functions are listed here to help diff stay in step
6064 with xterm.c. See w32fns.c for definitions.
6065
6066 x_load_font (f, fontname, size)
6067 x_query_font (f, fontname)
6068 x_find_ccl_program (fontp)
6069
6070 */
6071 \f
6072 /***********************************************************************
6073 Initialization
6074 ***********************************************************************/
6075
6076 static int w32_initialized = 0;
6077
6078 void
6079 w32_initialize_display_info (display_name)
6080 Lisp_Object display_name;
6081 {
6082 struct w32_display_info *dpyinfo = &one_w32_display_info;
6083
6084 bzero (dpyinfo, sizeof (*dpyinfo));
6085
6086 /* Put it on w32_display_name_list. */
6087 w32_display_name_list = Fcons (Fcons (display_name, Qnil),
6088 w32_display_name_list);
6089 dpyinfo->name_list_element = XCAR (w32_display_name_list);
6090
6091 dpyinfo->w32_id_name
6092 = (char *) xmalloc (SCHARS (Vinvocation_name)
6093 + SCHARS (Vsystem_name)
6094 + 2);
6095 sprintf (dpyinfo->w32_id_name, "%s@%s",
6096 SDATA (Vinvocation_name), SDATA (Vsystem_name));
6097
6098 /* Default Console mode values - overridden when running in GUI mode
6099 with values obtained from system metrics. */
6100 dpyinfo->resx = 1;
6101 dpyinfo->resy = 1;
6102 dpyinfo->height_in = 1;
6103 dpyinfo->width_in = 1;
6104 dpyinfo->n_planes = 1;
6105 dpyinfo->n_cbits = 4;
6106 dpyinfo->n_fonts = 0;
6107 dpyinfo->smallest_font_height = 1;
6108 dpyinfo->smallest_char_width = 1;
6109
6110 dpyinfo->mouse_face_beg_row = dpyinfo->mouse_face_beg_col = -1;
6111 dpyinfo->mouse_face_end_row = dpyinfo->mouse_face_end_col = -1;
6112 dpyinfo->mouse_face_face_id = DEFAULT_FACE_ID;
6113 dpyinfo->mouse_face_window = Qnil;
6114 dpyinfo->mouse_face_overlay = Qnil;
6115 dpyinfo->mouse_face_hidden = 0;
6116
6117 dpyinfo->vertical_scroll_bar_cursor = w32_load_cursor (IDC_ARROW);
6118 /* TODO: dpyinfo->gray */
6119
6120 }
6121
6122 /* Create an xrdb-style database of resources to supercede registry settings.
6123 The database is just a concatenation of C strings, finished by an additional
6124 \0. The string are submitted to some basic normalization, so
6125
6126 [ *]option[ *]:[ *]value...
6127
6128 becomes
6129
6130 option:value...
6131
6132 but any whitespace following value is not removed. */
6133
6134 static char *
6135 w32_make_rdb (xrm_option)
6136 char *xrm_option;
6137 {
6138 char *buffer = xmalloc (strlen (xrm_option) + 2);
6139 char *current = buffer;
6140 char ch;
6141 int in_option = 1;
6142 int before_value = 0;
6143
6144 do {
6145 ch = *xrm_option++;
6146
6147 if (ch == '\n')
6148 {
6149 *current++ = '\0';
6150 in_option = 1;
6151 before_value = 0;
6152 }
6153 else if (ch != ' ')
6154 {
6155 *current++ = ch;
6156 if (in_option && (ch == ':'))
6157 {
6158 in_option = 0;
6159 before_value = 1;
6160 }
6161 else if (before_value)
6162 {
6163 before_value = 0;
6164 }
6165 }
6166 else if (!(in_option || before_value))
6167 {
6168 *current++ = ch;
6169 }
6170 } while (ch);
6171
6172 *current = '\0';
6173
6174 return buffer;
6175 }
6176
6177 struct w32_display_info *
6178 w32_term_init (display_name, xrm_option, resource_name)
6179 Lisp_Object display_name;
6180 char *xrm_option;
6181 char *resource_name;
6182 {
6183 struct w32_display_info *dpyinfo;
6184 HDC hdc;
6185
6186 BLOCK_INPUT;
6187
6188 if (!w32_initialized)
6189 {
6190 w32_initialize ();
6191 w32_initialized = 1;
6192 }
6193
6194 w32_initialize_display_info (display_name);
6195
6196 dpyinfo = &one_w32_display_info;
6197
6198 dpyinfo->xrdb = xrm_option ? w32_make_rdb (xrm_option) : NULL;
6199
6200 /* Put this display on the chain. */
6201 dpyinfo->next = x_display_list;
6202 x_display_list = dpyinfo;
6203
6204 hdc = GetDC (GetDesktopWindow ());
6205
6206 dpyinfo->height = GetDeviceCaps (hdc, VERTRES);
6207 dpyinfo->width = GetDeviceCaps (hdc, HORZRES);
6208 dpyinfo->root_window = GetDesktopWindow ();
6209 dpyinfo->n_planes = GetDeviceCaps (hdc, PLANES);
6210 dpyinfo->n_cbits = GetDeviceCaps (hdc, BITSPIXEL);
6211 dpyinfo->resx = GetDeviceCaps (hdc, LOGPIXELSX);
6212 dpyinfo->resy = GetDeviceCaps (hdc, LOGPIXELSY);
6213 dpyinfo->has_palette = GetDeviceCaps (hdc, RASTERCAPS) & RC_PALETTE;
6214 dpyinfo->image_cache = make_image_cache ();
6215 dpyinfo->height_in = dpyinfo->height / dpyinfo->resx;
6216 dpyinfo->width_in = dpyinfo->width / dpyinfo->resy;
6217 ReleaseDC (GetDesktopWindow (), hdc);
6218
6219 /* initialise palette with white and black */
6220 {
6221 XColor color;
6222 w32_defined_color (0, "white", &color, 1);
6223 w32_defined_color (0, "black", &color, 1);
6224 }
6225
6226 /* Create Fringe Bitmaps and store them for later use.
6227
6228 On W32, bitmaps are all unsigned short, as Windows requires
6229 bitmap data to be Word aligned. For some reason they are
6230 horizontally reflected compared to how they appear on X, so we
6231 need to bitswap and convert to unsigned shorts before creating
6232 the bitmaps. */
6233 w32_init_fringe ();
6234
6235 #ifndef F_SETOWN_BUG
6236 #ifdef F_SETOWN
6237 #ifdef F_SETOWN_SOCK_NEG
6238 /* stdin is a socket here */
6239 fcntl (connection, F_SETOWN, -getpid ());
6240 #else /* ! defined (F_SETOWN_SOCK_NEG) */
6241 fcntl (connection, F_SETOWN, getpid ());
6242 #endif /* ! defined (F_SETOWN_SOCK_NEG) */
6243 #endif /* ! defined (F_SETOWN) */
6244 #endif /* F_SETOWN_BUG */
6245
6246 #ifdef SIGIO
6247 if (interrupt_input)
6248 init_sigio (connection);
6249 #endif /* ! defined (SIGIO) */
6250
6251 UNBLOCK_INPUT;
6252
6253 return dpyinfo;
6254 }
6255 \f
6256 /* Get rid of display DPYINFO, assuming all frames are already gone. */
6257
6258 void
6259 x_delete_display (dpyinfo)
6260 struct w32_display_info *dpyinfo;
6261 {
6262 /* Discard this display from w32_display_name_list and w32_display_list.
6263 We can't use Fdelq because that can quit. */
6264 if (! NILP (w32_display_name_list)
6265 && EQ (XCAR (w32_display_name_list), dpyinfo->name_list_element))
6266 w32_display_name_list = XCDR (w32_display_name_list);
6267 else
6268 {
6269 Lisp_Object tail;
6270
6271 tail = w32_display_name_list;
6272 while (CONSP (tail) && CONSP (XCDR (tail)))
6273 {
6274 if (EQ (XCAR (XCDR (tail)), dpyinfo->name_list_element))
6275 {
6276 XSETCDR (tail, XCDR (XCDR (tail)));
6277 break;
6278 }
6279 tail = XCDR (tail);
6280 }
6281 }
6282
6283 /* free palette table */
6284 {
6285 struct w32_palette_entry * plist;
6286
6287 plist = dpyinfo->color_list;
6288 while (plist)
6289 {
6290 struct w32_palette_entry * pentry = plist;
6291 plist = plist->next;
6292 xfree (pentry);
6293 }
6294 dpyinfo->color_list = NULL;
6295 if (dpyinfo->palette)
6296 DeleteObject(dpyinfo->palette);
6297 }
6298 xfree (dpyinfo->font_table);
6299 xfree (dpyinfo->w32_id_name);
6300
6301 w32_reset_fringes ();
6302 }
6303 \f
6304 /* Set up use of W32. */
6305
6306 DWORD w32_msg_worker ();
6307
6308 void
6309 x_flush (struct frame * f)
6310 { /* Nothing to do */ }
6311
6312 extern frame_parm_handler w32_frame_parm_handlers[];
6313
6314 static struct redisplay_interface w32_redisplay_interface =
6315 {
6316 w32_frame_parm_handlers,
6317 x_produce_glyphs,
6318 x_write_glyphs,
6319 x_insert_glyphs,
6320 x_clear_end_of_line,
6321 x_scroll_run,
6322 x_after_update_window_line,
6323 x_update_window_begin,
6324 x_update_window_end,
6325 x_cursor_to,
6326 x_flush,
6327 0, /* flush_display_optional */
6328 x_clear_window_mouse_face,
6329 w32_get_glyph_overhangs,
6330 x_fix_overlapping_area,
6331 w32_draw_fringe_bitmap,
6332 w32_define_fringe_bitmap,
6333 w32_destroy_fringe_bitmap,
6334 w32_per_char_metric,
6335 w32_encode_char,
6336 NULL, /* w32_compute_glyph_string_overhangs */
6337 x_draw_glyph_string,
6338 w32_define_frame_cursor,
6339 w32_clear_frame_area,
6340 w32_draw_window_cursor,
6341 w32_draw_vertical_window_border,
6342 w32_shift_glyphs_for_insert
6343 };
6344
6345 void
6346 w32_initialize ()
6347 {
6348 rif = &w32_redisplay_interface;
6349
6350 /* MSVC does not type K&R functions with no arguments correctly, and
6351 so we must explicitly cast them. */
6352 clear_frame_hook = (void (*)(void)) x_clear_frame;
6353 ring_bell_hook = (void (*)(void)) w32_ring_bell;
6354 update_begin_hook = x_update_begin;
6355 update_end_hook = x_update_end;
6356
6357 read_socket_hook = w32_read_socket;
6358
6359 frame_up_to_date_hook = w32_frame_up_to_date;
6360
6361 mouse_position_hook = w32_mouse_position;
6362 frame_rehighlight_hook = w32_frame_rehighlight;
6363 frame_raise_lower_hook = w32_frame_raise_lower;
6364 set_vertical_scroll_bar_hook = w32_set_vertical_scroll_bar;
6365 condemn_scroll_bars_hook = w32_condemn_scroll_bars;
6366 redeem_scroll_bar_hook = w32_redeem_scroll_bar;
6367 judge_scroll_bars_hook = w32_judge_scroll_bars;
6368
6369 scroll_region_ok = 1; /* we'll scroll partial frames */
6370 char_ins_del_ok = 1;
6371 line_ins_del_ok = 1; /* we'll just blt 'em */
6372 fast_clear_end_of_line = 1; /* X does this well */
6373 memory_below_frame = 0; /* we don't remember what scrolls
6374 off the bottom */
6375 baud_rate = 19200;
6376
6377 w32_system_caret_hwnd = NULL;
6378 w32_system_caret_height = 0;
6379 w32_system_caret_x = 0;
6380 w32_system_caret_y = 0;
6381
6382 last_tool_bar_item = -1;
6383 any_help_event_p = 0;
6384
6385 /* Initialize input mode: interrupt_input off, no flow control, allow
6386 8 bit character input, standard quit char. */
6387 Fset_input_mode (Qnil, Qnil, make_number (2), Qnil);
6388
6389 /* Create the window thread - it will terminate itself or when the app terminates */
6390
6391 init_crit ();
6392
6393 dwMainThreadId = GetCurrentThreadId ();
6394 DuplicateHandle (GetCurrentProcess (), GetCurrentThread (),
6395 GetCurrentProcess (), &hMainThread, 0, TRUE, DUPLICATE_SAME_ACCESS);
6396
6397 /* Wait for thread to start */
6398
6399 {
6400 MSG msg;
6401
6402 PeekMessage (&msg, NULL, 0, 0, PM_NOREMOVE);
6403
6404 hWindowsThread = CreateThread (NULL, 0,
6405 (LPTHREAD_START_ROUTINE) w32_msg_worker,
6406 0, 0, &dwWindowsThreadId);
6407
6408 GetMessage (&msg, NULL, WM_EMACS_DONE, WM_EMACS_DONE);
6409 }
6410
6411 /* It is desirable that mainThread should have the same notion of
6412 focus window and active window as windowsThread. Unfortunately, the
6413 following call to AttachThreadInput, which should do precisely what
6414 we need, causes major problems when Emacs is linked as a console
6415 program. Unfortunately, we have good reasons for doing that, so
6416 instead we need to send messages to windowsThread to make some API
6417 calls for us (ones that affect, or depend on, the active/focus
6418 window state. */
6419 #ifdef ATTACH_THREADS
6420 AttachThreadInput (dwMainThreadId, dwWindowsThreadId, TRUE);
6421 #endif
6422
6423 /* Dynamically link to optional system components. */
6424 {
6425 HANDLE user_lib = LoadLibrary ("user32.dll");
6426
6427 #define LOAD_PROC(fn) pfn##fn = (void *) GetProcAddress (user_lib, #fn)
6428
6429 /* New proportional scroll bar functions. */
6430 LOAD_PROC (SetScrollInfo);
6431 LOAD_PROC (GetScrollInfo);
6432
6433 #undef LOAD_PROC
6434
6435 FreeLibrary (user_lib);
6436
6437 /* If using proportional scroll bars, ensure handle is at least 5 pixels;
6438 otherwise use the fixed height. */
6439 vertical_scroll_bar_min_handle = (pfnSetScrollInfo != NULL) ? 5 :
6440 GetSystemMetrics (SM_CYVTHUMB);
6441
6442 /* For either kind of scroll bar, take account of the arrows; these
6443 effectively form the border of the main scroll bar range. */
6444 vertical_scroll_bar_top_border = vertical_scroll_bar_bottom_border
6445 = GetSystemMetrics (SM_CYVSCROLL);
6446 }
6447 }
6448
6449 void
6450 syms_of_w32term ()
6451 {
6452 staticpro (&w32_display_name_list);
6453 w32_display_name_list = Qnil;
6454
6455 staticpro (&last_mouse_scroll_bar);
6456 last_mouse_scroll_bar = Qnil;
6457
6458 staticpro (&Qvendor_specific_keysyms);
6459 Qvendor_specific_keysyms = intern ("vendor-specific-keysyms");
6460
6461 DEFVAR_INT ("w32-num-mouse-buttons",
6462 &Vw32_num_mouse_buttons,
6463 doc: /* Number of physical mouse buttons. */);
6464 Vw32_num_mouse_buttons = Qnil;
6465
6466 DEFVAR_LISP ("w32-swap-mouse-buttons",
6467 &Vw32_swap_mouse_buttons,
6468 doc: /* Swap the mapping of middle and right mouse buttons.
6469 When nil, middle button is mouse-2 and right button is mouse-3. */);
6470 Vw32_swap_mouse_buttons = Qnil;
6471
6472 DEFVAR_LISP ("w32-grab-focus-on-raise",
6473 &Vw32_grab_focus_on_raise,
6474 doc: /* Raised frame grabs input focus.
6475 When t, `raise-frame' grabs input focus as well. This fits well
6476 with the normal Windows click-to-focus policy, but might not be
6477 desirable when using a point-to-focus policy. */);
6478 Vw32_grab_focus_on_raise = Qt;
6479
6480 DEFVAR_LISP ("w32-capslock-is-shiftlock",
6481 &Vw32_capslock_is_shiftlock,
6482 doc: /* Apply CapsLock state to non character input keys.
6483 When nil, CapsLock only affects normal character input keys. */);
6484 Vw32_capslock_is_shiftlock = Qnil;
6485
6486 DEFVAR_LISP ("w32-recognize-altgr",
6487 &Vw32_recognize_altgr,
6488 doc: /* Recognize right-alt and left-ctrl as AltGr.
6489 When nil, the right-alt and left-ctrl key combination is
6490 interpreted normally. */);
6491 Vw32_recognize_altgr = Qt;
6492
6493 DEFVAR_BOOL ("w32-enable-unicode-output",
6494 &w32_enable_unicode_output,
6495 doc: /* Enable the use of Unicode for text output if non-nil.
6496 Unicode output may prevent some third party applications for displaying
6497 Far-East Languages on Windows 95/98 from working properly.
6498 NT uses Unicode internally anyway, so this flag will probably have no
6499 affect on NT machines. */);
6500 w32_enable_unicode_output = 1;
6501
6502 DEFVAR_BOOL ("w32-use-visible-system-caret",
6503 &w32_use_visible_system_caret,
6504 doc: /* Flag to make the system caret visible.
6505 When this is non-nil, Emacs will indicate the position of point by
6506 using the system caret instead of drawing its own cursor. Some screen
6507 reader software does not track the system cursor properly when it is
6508 invisible, and gets confused by Emacs drawing its own cursor, so this
6509 variable is initialized to t when Emacs detects that screen reader
6510 software is running as it starts up.
6511
6512 When this variable is set, other variables affecting the appearance of
6513 the cursor have no effect. */);
6514
6515 /* Initialize w32_use_visible_system_caret based on whether a screen
6516 reader is in use. */
6517 if (!SystemParametersInfo (SPI_GETSCREENREADER, 0,
6518 &w32_use_visible_system_caret, 0))
6519 w32_use_visible_system_caret = 0;
6520
6521 DEFVAR_LISP ("x-toolkit-scroll-bars", &Vx_toolkit_scroll_bars,
6522 doc: /* If not nil, Emacs uses toolkit scroll bars. */);
6523 Vx_toolkit_scroll_bars = Qt;
6524
6525 staticpro (&last_mouse_motion_frame);
6526 last_mouse_motion_frame = Qnil;
6527 }
6528
6529 /* arch-tag: 5fa70624-ab86-499c-8a85-473958ee4646
6530 (do not change this comment) */