Add online-help support to describe types
[emacs.git] / src / w32fns.c
blob6982eca84acbf137476196d77181c3be11dd3447
1 /* Graphical user interface functions for the Microsoft Windows API.
3 Copyright (C) 1989, 1992-2015 Free Software Foundation, Inc.
5 This file is part of GNU Emacs.
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 3 of the License, or
10 (at your option) any later version.
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.
17 You should have received a copy of the GNU General Public License
18 along with GNU Emacs. If not, see <http://www.gnu.org/licenses/>. */
20 /* Added by Kevin Gallo */
22 #include <config.h>
24 #include <signal.h>
25 #include <stdio.h>
26 #include <limits.h>
27 #include <errno.h>
28 #include <math.h>
29 #include <fcntl.h>
30 #include <unistd.h>
32 #include <c-ctype.h>
34 #include "lisp.h"
35 #include "w32term.h"
36 #include "frame.h"
37 #include "window.h"
38 #include "character.h"
39 #include "buffer.h"
40 #include "intervals.h"
41 #include "dispextern.h"
42 #include "keyboard.h"
43 #include "blockinput.h"
44 #include "epaths.h"
45 #include "charset.h"
46 #include "coding.h"
47 #include "ccl.h"
48 #include "fontset.h"
49 #include "systime.h"
50 #include "termhooks.h"
52 #include "w32common.h"
54 #ifdef WINDOWSNT
55 #include "w32heap.h"
56 #include <mbstring.h>
57 #endif /* WINDOWSNT */
59 #if CYGWIN
60 #include "cygw32.h"
61 #else
62 #include "w32.h"
63 #endif
65 #include "bitmaps/gray.xbm"
67 #include <commctrl.h>
68 #include <commdlg.h>
69 #include <shellapi.h>
70 #include <ctype.h>
71 #include <winspool.h>
72 #include <objbase.h>
74 #include <dlgs.h>
75 #include <imm.h>
76 #include <windowsx.h>
78 #include "font.h"
79 #include "w32font.h"
81 #ifndef FOF_NO_CONNECTED_ELEMENTS
82 #define FOF_NO_CONNECTED_ELEMENTS 0x2000
83 #endif
85 void syms_of_w32fns (void);
86 void globals_of_w32fns (void);
88 extern void free_frame_menubar (struct frame *);
89 extern int w32_console_toggle_lock_key (int, Lisp_Object);
90 extern void w32_menu_display_help (HWND, HMENU, UINT, UINT);
91 extern void w32_free_menu_strings (HWND);
92 extern const char *map_w32_filename (const char *, const char **);
93 extern char * w32_strerror (int error_no);
95 #ifndef IDC_HAND
96 #define IDC_HAND MAKEINTRESOURCE(32649)
97 #endif
99 /* Prefix for system colors. */
100 #define SYSTEM_COLOR_PREFIX "System"
101 #define SYSTEM_COLOR_PREFIX_LEN (sizeof (SYSTEM_COLOR_PREFIX) - 1)
103 /* State variables for emulating a three button mouse. */
104 #define LMOUSE 1
105 #define MMOUSE 2
106 #define RMOUSE 4
108 static int button_state = 0;
109 static W32Msg saved_mouse_button_msg;
110 static unsigned mouse_button_timer = 0; /* non-zero when timer is active */
111 static W32Msg saved_mouse_move_msg;
112 static unsigned mouse_move_timer = 0;
114 /* Window that is tracking the mouse. */
115 static HWND track_mouse_window;
117 /* Multi-monitor API definitions that are not pulled from the headers
118 since we are compiling for NT 4. */
119 #ifndef MONITOR_DEFAULT_TO_NEAREST
120 #define MONITOR_DEFAULT_TO_NEAREST 2
121 #endif
122 #ifndef MONITORINFOF_PRIMARY
123 #define MONITORINFOF_PRIMARY 1
124 #endif
125 #ifndef SM_XVIRTUALSCREEN
126 #define SM_XVIRTUALSCREEN 76
127 #endif
128 #ifndef SM_YVIRTUALSCREEN
129 #define SM_YVIRTUALSCREEN 77
130 #endif
131 /* MinGW headers define MONITORINFO unconditionally, but MSVC ones don't.
132 To avoid a compile error on one or the other, redefine with a new name. */
133 struct MONITOR_INFO
135 DWORD cbSize;
136 RECT rcMonitor;
137 RECT rcWork;
138 DWORD dwFlags;
141 #ifndef CCHDEVICENAME
142 #define CCHDEVICENAME 32
143 #endif
144 struct MONITOR_INFO_EX
146 DWORD cbSize;
147 RECT rcMonitor;
148 RECT rcWork;
149 DWORD dwFlags;
150 char szDevice[CCHDEVICENAME];
153 /* Reportedly, MSVC does not have this in its headers. */
154 #if defined (_MSC_VER) && _WIN32_WINNT < 0x0500
155 DECLARE_HANDLE(HMONITOR);
156 #endif
158 typedef BOOL (WINAPI * TrackMouseEvent_Proc)
159 (IN OUT LPTRACKMOUSEEVENT lpEventTrack);
160 typedef LONG (WINAPI * ImmGetCompositionString_Proc)
161 (IN HIMC context, IN DWORD index, OUT LPVOID buffer, IN DWORD bufLen);
162 typedef HIMC (WINAPI * ImmGetContext_Proc) (IN HWND window);
163 typedef BOOL (WINAPI * ImmReleaseContext_Proc) (IN HWND wnd, IN HIMC context);
164 typedef BOOL (WINAPI * ImmSetCompositionWindow_Proc) (IN HIMC context,
165 IN COMPOSITIONFORM *form);
166 typedef HMONITOR (WINAPI * MonitorFromPoint_Proc) (IN POINT pt, IN DWORD flags);
167 typedef BOOL (WINAPI * GetMonitorInfo_Proc)
168 (IN HMONITOR monitor, OUT struct MONITOR_INFO* info);
169 typedef HMONITOR (WINAPI * MonitorFromWindow_Proc)
170 (IN HWND hwnd, IN DWORD dwFlags);
171 typedef BOOL CALLBACK (* MonitorEnum_Proc)
172 (IN HMONITOR monitor, IN HDC hdc, IN RECT *rcMonitor, IN LPARAM dwData);
173 typedef BOOL (WINAPI * EnumDisplayMonitors_Proc)
174 (IN HDC hdc, IN RECT *rcClip, IN MonitorEnum_Proc fnEnum, IN LPARAM dwData);
176 TrackMouseEvent_Proc track_mouse_event_fn = NULL;
177 ImmGetCompositionString_Proc get_composition_string_fn = NULL;
178 ImmGetContext_Proc get_ime_context_fn = NULL;
179 ImmReleaseContext_Proc release_ime_context_fn = NULL;
180 ImmSetCompositionWindow_Proc set_ime_composition_window_fn = NULL;
181 MonitorFromPoint_Proc monitor_from_point_fn = NULL;
182 GetMonitorInfo_Proc get_monitor_info_fn = NULL;
183 MonitorFromWindow_Proc monitor_from_window_fn = NULL;
184 EnumDisplayMonitors_Proc enum_display_monitors_fn = NULL;
186 #ifdef NTGUI_UNICODE
187 #define unicode_append_menu AppendMenuW
188 #else /* !NTGUI_UNICODE */
189 extern AppendMenuW_Proc unicode_append_menu;
190 #endif /* NTGUI_UNICODE */
192 /* Flag to selectively ignore WM_IME_CHAR messages. */
193 static int ignore_ime_char = 0;
195 /* W95 mousewheel handler */
196 unsigned int msh_mousewheel = 0;
198 /* Timers */
199 #define MOUSE_BUTTON_ID 1
200 #define MOUSE_MOVE_ID 2
201 #define MENU_FREE_ID 3
202 /* The delay (milliseconds) before a menu is freed after WM_EXITMENULOOP
203 is received. */
204 #define MENU_FREE_DELAY 1000
205 static unsigned menu_free_timer = 0;
207 #ifdef GLYPH_DEBUG
208 static ptrdiff_t image_cache_refcount;
209 static int dpyinfo_refcount;
210 #endif
212 static HWND w32_visible_system_caret_hwnd;
214 static int w32_unicode_gui;
216 /* From w32menu.c */
217 extern HMENU current_popup_menu;
218 int menubar_in_use = 0;
220 /* From w32uniscribe.c */
221 extern void syms_of_w32uniscribe (void);
222 extern int uniscribe_available;
224 #ifdef WINDOWSNT
225 /* From w32inevt.c */
226 extern int faked_key;
227 #endif /* WINDOWSNT */
229 /* This gives us the page size and the size of the allocation unit on NT. */
230 SYSTEM_INFO sysinfo_cache;
232 /* This gives us version, build, and platform identification. */
233 OSVERSIONINFO osinfo_cache;
235 DWORD_PTR syspage_mask = 0;
237 /* The major and minor versions of NT. */
238 int w32_major_version;
239 int w32_minor_version;
240 int w32_build_number;
242 /* Distinguish between Windows NT and Windows 95. */
243 int os_subtype;
245 #ifdef HAVE_NTGUI
246 HINSTANCE hinst = NULL;
247 #endif
249 static unsigned int sound_type = 0xFFFFFFFF;
250 #define MB_EMACS_SILENT (0xFFFFFFFF - 1)
252 /* Let the user specify a display with a frame.
253 nil stands for the selected frame--or, if that is not a w32 frame,
254 the first display on the list. */
256 struct w32_display_info *
257 check_x_display_info (Lisp_Object object)
259 if (NILP (object))
261 struct frame *sf = XFRAME (selected_frame);
263 if (FRAME_W32_P (sf) && FRAME_LIVE_P (sf))
264 return FRAME_DISPLAY_INFO (sf);
265 else
266 return &one_w32_display_info;
268 else if (TERMINALP (object))
270 struct terminal *t = decode_live_terminal (object);
272 if (t->type != output_w32)
273 error ("Terminal %d is not a W32 display", t->id);
275 return t->display_info.w32;
277 else if (STRINGP (object))
278 return x_display_info_for_name (object);
279 else
281 struct frame *f;
283 CHECK_LIVE_FRAME (object);
284 f = XFRAME (object);
285 if (! FRAME_W32_P (f))
286 error ("Non-W32 frame used");
287 return FRAME_DISPLAY_INFO (f);
291 /* Return the Emacs frame-object corresponding to an w32 window.
292 It could be the frame's main window or an icon window. */
294 struct frame *
295 x_window_to_frame (struct w32_display_info *dpyinfo, HWND wdesc)
297 Lisp_Object tail, frame;
298 struct frame *f;
300 FOR_EACH_FRAME (tail, frame)
302 f = XFRAME (frame);
303 if (!FRAME_W32_P (f) || FRAME_DISPLAY_INFO (f) != dpyinfo)
304 continue;
306 if (FRAME_W32_WINDOW (f) == wdesc)
307 return f;
309 return 0;
313 static Lisp_Object unwind_create_frame (Lisp_Object);
314 static void unwind_create_tip_frame (Lisp_Object);
315 static void my_create_window (struct frame *);
316 static void my_create_tip_window (struct frame *);
318 /* TODO: Native Input Method support; see x_create_im. */
319 void x_set_foreground_color (struct frame *, Lisp_Object, Lisp_Object);
320 void x_set_background_color (struct frame *, Lisp_Object, Lisp_Object);
321 void x_set_mouse_color (struct frame *, Lisp_Object, Lisp_Object);
322 void x_set_cursor_color (struct frame *, Lisp_Object, Lisp_Object);
323 void x_set_border_color (struct frame *, Lisp_Object, Lisp_Object);
324 void x_set_cursor_type (struct frame *, Lisp_Object, Lisp_Object);
325 void x_set_icon_type (struct frame *, Lisp_Object, Lisp_Object);
326 void x_set_icon_name (struct frame *, Lisp_Object, Lisp_Object);
327 void x_explicitly_set_name (struct frame *, Lisp_Object, Lisp_Object);
328 void x_set_menu_bar_lines (struct frame *, Lisp_Object, Lisp_Object);
329 void x_set_title (struct frame *, Lisp_Object, Lisp_Object);
330 void x_set_tool_bar_lines (struct frame *, Lisp_Object, Lisp_Object);
331 void x_set_internal_border_width (struct frame *f, Lisp_Object, Lisp_Object);
334 /* Store the screen positions of frame F into XPTR and YPTR.
335 These are the positions of the containing window manager window,
336 not Emacs's own window. */
338 void
339 x_real_positions (struct frame *f, int *xptr, int *yptr)
341 POINT pt;
342 RECT rect;
344 /* Get the bounds of the WM window. */
345 GetWindowRect (FRAME_W32_WINDOW (f), &rect);
347 pt.x = 0;
348 pt.y = 0;
350 /* Convert (0, 0) in the client area to screen co-ordinates. */
351 ClientToScreen (FRAME_W32_WINDOW (f), &pt);
353 *xptr = rect.left;
354 *yptr = rect.top;
357 /* Returns the window rectangle appropriate for the given fullscreen mode.
358 The normal rect parameter was the window's rectangle prior to entering
359 fullscreen mode. If multiple monitor support is available, the nearest
360 monitor to the window is chosen. */
362 void
363 w32_fullscreen_rect (HWND hwnd, int fsmode, RECT normal, RECT *rect)
365 struct MONITOR_INFO mi = { sizeof(mi) };
366 if (monitor_from_window_fn && get_monitor_info_fn)
368 HMONITOR monitor =
369 monitor_from_window_fn (hwnd, MONITOR_DEFAULT_TO_NEAREST);
370 get_monitor_info_fn (monitor, &mi);
372 else
374 mi.rcMonitor.left = 0;
375 mi.rcMonitor.top = 0;
376 mi.rcMonitor.right = GetSystemMetrics (SM_CXSCREEN);
377 mi.rcMonitor.bottom = GetSystemMetrics (SM_CYSCREEN);
378 mi.rcWork.left = 0;
379 mi.rcWork.top = 0;
380 mi.rcWork.right = GetSystemMetrics (SM_CXMAXIMIZED);
381 mi.rcWork.bottom = GetSystemMetrics (SM_CYMAXIMIZED);
384 switch (fsmode)
386 case FULLSCREEN_BOTH:
387 rect->left = mi.rcMonitor.left;
388 rect->top = mi.rcMonitor.top;
389 rect->right = mi.rcMonitor.right;
390 rect->bottom = mi.rcMonitor.bottom;
391 break;
392 case FULLSCREEN_WIDTH:
393 rect->left = mi.rcWork.left;
394 rect->top = normal.top;
395 rect->right = mi.rcWork.right;
396 rect->bottom = normal.bottom;
397 break;
398 case FULLSCREEN_HEIGHT:
399 rect->left = normal.left;
400 rect->top = mi.rcWork.top;
401 rect->right = normal.right;
402 rect->bottom = mi.rcWork.bottom;
403 break;
404 default:
405 *rect = normal;
406 break;
412 DEFUN ("w32-define-rgb-color", Fw32_define_rgb_color,
413 Sw32_define_rgb_color, 4, 4, 0,
414 doc: /* Convert RGB numbers to a Windows color reference and associate with NAME.
415 This adds or updates a named color to `w32-color-map', making it
416 available for use. The original entry's RGB ref is returned, or nil
417 if the entry is new. */)
418 (Lisp_Object red, Lisp_Object green, Lisp_Object blue, Lisp_Object name)
420 Lisp_Object rgb;
421 Lisp_Object oldrgb = Qnil;
422 Lisp_Object entry;
424 CHECK_NUMBER (red);
425 CHECK_NUMBER (green);
426 CHECK_NUMBER (blue);
427 CHECK_STRING (name);
429 XSETINT (rgb, RGB (XUINT (red), XUINT (green), XUINT (blue)));
431 block_input ();
433 /* replace existing entry in w32-color-map or add new entry. */
434 entry = Fassoc (name, Vw32_color_map);
435 if (NILP (entry))
437 entry = Fcons (name, rgb);
438 Vw32_color_map = Fcons (entry, Vw32_color_map);
440 else
442 oldrgb = Fcdr (entry);
443 Fsetcdr (entry, rgb);
446 unblock_input ();
448 return (oldrgb);
451 /* The default colors for the w32 color map */
452 typedef struct colormap_t
454 char *name;
455 COLORREF colorref;
456 } colormap_t;
458 colormap_t w32_color_map[] =
460 {"snow" , PALETTERGB (255,250,250)},
461 {"ghost white" , PALETTERGB (248,248,255)},
462 {"GhostWhite" , PALETTERGB (248,248,255)},
463 {"white smoke" , PALETTERGB (245,245,245)},
464 {"WhiteSmoke" , PALETTERGB (245,245,245)},
465 {"gainsboro" , PALETTERGB (220,220,220)},
466 {"floral white" , PALETTERGB (255,250,240)},
467 {"FloralWhite" , PALETTERGB (255,250,240)},
468 {"old lace" , PALETTERGB (253,245,230)},
469 {"OldLace" , PALETTERGB (253,245,230)},
470 {"linen" , PALETTERGB (250,240,230)},
471 {"antique white" , PALETTERGB (250,235,215)},
472 {"AntiqueWhite" , PALETTERGB (250,235,215)},
473 {"papaya whip" , PALETTERGB (255,239,213)},
474 {"PapayaWhip" , PALETTERGB (255,239,213)},
475 {"blanched almond" , PALETTERGB (255,235,205)},
476 {"BlanchedAlmond" , PALETTERGB (255,235,205)},
477 {"bisque" , PALETTERGB (255,228,196)},
478 {"peach puff" , PALETTERGB (255,218,185)},
479 {"PeachPuff" , PALETTERGB (255,218,185)},
480 {"navajo white" , PALETTERGB (255,222,173)},
481 {"NavajoWhite" , PALETTERGB (255,222,173)},
482 {"moccasin" , PALETTERGB (255,228,181)},
483 {"cornsilk" , PALETTERGB (255,248,220)},
484 {"ivory" , PALETTERGB (255,255,240)},
485 {"lemon chiffon" , PALETTERGB (255,250,205)},
486 {"LemonChiffon" , PALETTERGB (255,250,205)},
487 {"seashell" , PALETTERGB (255,245,238)},
488 {"honeydew" , PALETTERGB (240,255,240)},
489 {"mint cream" , PALETTERGB (245,255,250)},
490 {"MintCream" , PALETTERGB (245,255,250)},
491 {"azure" , PALETTERGB (240,255,255)},
492 {"alice blue" , PALETTERGB (240,248,255)},
493 {"AliceBlue" , PALETTERGB (240,248,255)},
494 {"lavender" , PALETTERGB (230,230,250)},
495 {"lavender blush" , PALETTERGB (255,240,245)},
496 {"LavenderBlush" , PALETTERGB (255,240,245)},
497 {"misty rose" , PALETTERGB (255,228,225)},
498 {"MistyRose" , PALETTERGB (255,228,225)},
499 {"white" , PALETTERGB (255,255,255)},
500 {"black" , PALETTERGB ( 0, 0, 0)},
501 {"dark slate gray" , PALETTERGB ( 47, 79, 79)},
502 {"DarkSlateGray" , PALETTERGB ( 47, 79, 79)},
503 {"dark slate grey" , PALETTERGB ( 47, 79, 79)},
504 {"DarkSlateGrey" , PALETTERGB ( 47, 79, 79)},
505 {"dim gray" , PALETTERGB (105,105,105)},
506 {"DimGray" , PALETTERGB (105,105,105)},
507 {"dim grey" , PALETTERGB (105,105,105)},
508 {"DimGrey" , PALETTERGB (105,105,105)},
509 {"slate gray" , PALETTERGB (112,128,144)},
510 {"SlateGray" , PALETTERGB (112,128,144)},
511 {"slate grey" , PALETTERGB (112,128,144)},
512 {"SlateGrey" , PALETTERGB (112,128,144)},
513 {"light slate gray" , PALETTERGB (119,136,153)},
514 {"LightSlateGray" , PALETTERGB (119,136,153)},
515 {"light slate grey" , PALETTERGB (119,136,153)},
516 {"LightSlateGrey" , PALETTERGB (119,136,153)},
517 {"gray" , PALETTERGB (190,190,190)},
518 {"grey" , PALETTERGB (190,190,190)},
519 {"light grey" , PALETTERGB (211,211,211)},
520 {"LightGrey" , PALETTERGB (211,211,211)},
521 {"light gray" , PALETTERGB (211,211,211)},
522 {"LightGray" , PALETTERGB (211,211,211)},
523 {"midnight blue" , PALETTERGB ( 25, 25,112)},
524 {"MidnightBlue" , PALETTERGB ( 25, 25,112)},
525 {"navy" , PALETTERGB ( 0, 0,128)},
526 {"navy blue" , PALETTERGB ( 0, 0,128)},
527 {"NavyBlue" , PALETTERGB ( 0, 0,128)},
528 {"cornflower blue" , PALETTERGB (100,149,237)},
529 {"CornflowerBlue" , PALETTERGB (100,149,237)},
530 {"dark slate blue" , PALETTERGB ( 72, 61,139)},
531 {"DarkSlateBlue" , PALETTERGB ( 72, 61,139)},
532 {"slate blue" , PALETTERGB (106, 90,205)},
533 {"SlateBlue" , PALETTERGB (106, 90,205)},
534 {"medium slate blue" , PALETTERGB (123,104,238)},
535 {"MediumSlateBlue" , PALETTERGB (123,104,238)},
536 {"light slate blue" , PALETTERGB (132,112,255)},
537 {"LightSlateBlue" , PALETTERGB (132,112,255)},
538 {"medium blue" , PALETTERGB ( 0, 0,205)},
539 {"MediumBlue" , PALETTERGB ( 0, 0,205)},
540 {"royal blue" , PALETTERGB ( 65,105,225)},
541 {"RoyalBlue" , PALETTERGB ( 65,105,225)},
542 {"blue" , PALETTERGB ( 0, 0,255)},
543 {"dodger blue" , PALETTERGB ( 30,144,255)},
544 {"DodgerBlue" , PALETTERGB ( 30,144,255)},
545 {"deep sky blue" , PALETTERGB ( 0,191,255)},
546 {"DeepSkyBlue" , PALETTERGB ( 0,191,255)},
547 {"sky blue" , PALETTERGB (135,206,235)},
548 {"SkyBlue" , PALETTERGB (135,206,235)},
549 {"light sky blue" , PALETTERGB (135,206,250)},
550 {"LightSkyBlue" , PALETTERGB (135,206,250)},
551 {"steel blue" , PALETTERGB ( 70,130,180)},
552 {"SteelBlue" , PALETTERGB ( 70,130,180)},
553 {"light steel blue" , PALETTERGB (176,196,222)},
554 {"LightSteelBlue" , PALETTERGB (176,196,222)},
555 {"light blue" , PALETTERGB (173,216,230)},
556 {"LightBlue" , PALETTERGB (173,216,230)},
557 {"powder blue" , PALETTERGB (176,224,230)},
558 {"PowderBlue" , PALETTERGB (176,224,230)},
559 {"pale turquoise" , PALETTERGB (175,238,238)},
560 {"PaleTurquoise" , PALETTERGB (175,238,238)},
561 {"dark turquoise" , PALETTERGB ( 0,206,209)},
562 {"DarkTurquoise" , PALETTERGB ( 0,206,209)},
563 {"medium turquoise" , PALETTERGB ( 72,209,204)},
564 {"MediumTurquoise" , PALETTERGB ( 72,209,204)},
565 {"turquoise" , PALETTERGB ( 64,224,208)},
566 {"cyan" , PALETTERGB ( 0,255,255)},
567 {"light cyan" , PALETTERGB (224,255,255)},
568 {"LightCyan" , PALETTERGB (224,255,255)},
569 {"cadet blue" , PALETTERGB ( 95,158,160)},
570 {"CadetBlue" , PALETTERGB ( 95,158,160)},
571 {"medium aquamarine" , PALETTERGB (102,205,170)},
572 {"MediumAquamarine" , PALETTERGB (102,205,170)},
573 {"aquamarine" , PALETTERGB (127,255,212)},
574 {"dark green" , PALETTERGB ( 0,100, 0)},
575 {"DarkGreen" , PALETTERGB ( 0,100, 0)},
576 {"dark olive green" , PALETTERGB ( 85,107, 47)},
577 {"DarkOliveGreen" , PALETTERGB ( 85,107, 47)},
578 {"dark sea green" , PALETTERGB (143,188,143)},
579 {"DarkSeaGreen" , PALETTERGB (143,188,143)},
580 {"sea green" , PALETTERGB ( 46,139, 87)},
581 {"SeaGreen" , PALETTERGB ( 46,139, 87)},
582 {"medium sea green" , PALETTERGB ( 60,179,113)},
583 {"MediumSeaGreen" , PALETTERGB ( 60,179,113)},
584 {"light sea green" , PALETTERGB ( 32,178,170)},
585 {"LightSeaGreen" , PALETTERGB ( 32,178,170)},
586 {"pale green" , PALETTERGB (152,251,152)},
587 {"PaleGreen" , PALETTERGB (152,251,152)},
588 {"spring green" , PALETTERGB ( 0,255,127)},
589 {"SpringGreen" , PALETTERGB ( 0,255,127)},
590 {"lawn green" , PALETTERGB (124,252, 0)},
591 {"LawnGreen" , PALETTERGB (124,252, 0)},
592 {"green" , PALETTERGB ( 0,255, 0)},
593 {"chartreuse" , PALETTERGB (127,255, 0)},
594 {"medium spring green" , PALETTERGB ( 0,250,154)},
595 {"MediumSpringGreen" , PALETTERGB ( 0,250,154)},
596 {"green yellow" , PALETTERGB (173,255, 47)},
597 {"GreenYellow" , PALETTERGB (173,255, 47)},
598 {"lime green" , PALETTERGB ( 50,205, 50)},
599 {"LimeGreen" , PALETTERGB ( 50,205, 50)},
600 {"yellow green" , PALETTERGB (154,205, 50)},
601 {"YellowGreen" , PALETTERGB (154,205, 50)},
602 {"forest green" , PALETTERGB ( 34,139, 34)},
603 {"ForestGreen" , PALETTERGB ( 34,139, 34)},
604 {"olive drab" , PALETTERGB (107,142, 35)},
605 {"OliveDrab" , PALETTERGB (107,142, 35)},
606 {"dark khaki" , PALETTERGB (189,183,107)},
607 {"DarkKhaki" , PALETTERGB (189,183,107)},
608 {"khaki" , PALETTERGB (240,230,140)},
609 {"pale goldenrod" , PALETTERGB (238,232,170)},
610 {"PaleGoldenrod" , PALETTERGB (238,232,170)},
611 {"light goldenrod yellow" , PALETTERGB (250,250,210)},
612 {"LightGoldenrodYellow" , PALETTERGB (250,250,210)},
613 {"light yellow" , PALETTERGB (255,255,224)},
614 {"LightYellow" , PALETTERGB (255,255,224)},
615 {"yellow" , PALETTERGB (255,255, 0)},
616 {"gold" , PALETTERGB (255,215, 0)},
617 {"light goldenrod" , PALETTERGB (238,221,130)},
618 {"LightGoldenrod" , PALETTERGB (238,221,130)},
619 {"goldenrod" , PALETTERGB (218,165, 32)},
620 {"dark goldenrod" , PALETTERGB (184,134, 11)},
621 {"DarkGoldenrod" , PALETTERGB (184,134, 11)},
622 {"rosy brown" , PALETTERGB (188,143,143)},
623 {"RosyBrown" , PALETTERGB (188,143,143)},
624 {"indian red" , PALETTERGB (205, 92, 92)},
625 {"IndianRed" , PALETTERGB (205, 92, 92)},
626 {"saddle brown" , PALETTERGB (139, 69, 19)},
627 {"SaddleBrown" , PALETTERGB (139, 69, 19)},
628 {"sienna" , PALETTERGB (160, 82, 45)},
629 {"peru" , PALETTERGB (205,133, 63)},
630 {"burlywood" , PALETTERGB (222,184,135)},
631 {"beige" , PALETTERGB (245,245,220)},
632 {"wheat" , PALETTERGB (245,222,179)},
633 {"sandy brown" , PALETTERGB (244,164, 96)},
634 {"SandyBrown" , PALETTERGB (244,164, 96)},
635 {"tan" , PALETTERGB (210,180,140)},
636 {"chocolate" , PALETTERGB (210,105, 30)},
637 {"firebrick" , PALETTERGB (178,34, 34)},
638 {"brown" , PALETTERGB (165,42, 42)},
639 {"dark salmon" , PALETTERGB (233,150,122)},
640 {"DarkSalmon" , PALETTERGB (233,150,122)},
641 {"salmon" , PALETTERGB (250,128,114)},
642 {"light salmon" , PALETTERGB (255,160,122)},
643 {"LightSalmon" , PALETTERGB (255,160,122)},
644 {"orange" , PALETTERGB (255,165, 0)},
645 {"dark orange" , PALETTERGB (255,140, 0)},
646 {"DarkOrange" , PALETTERGB (255,140, 0)},
647 {"coral" , PALETTERGB (255,127, 80)},
648 {"light coral" , PALETTERGB (240,128,128)},
649 {"LightCoral" , PALETTERGB (240,128,128)},
650 {"tomato" , PALETTERGB (255, 99, 71)},
651 {"orange red" , PALETTERGB (255, 69, 0)},
652 {"OrangeRed" , PALETTERGB (255, 69, 0)},
653 {"red" , PALETTERGB (255, 0, 0)},
654 {"hot pink" , PALETTERGB (255,105,180)},
655 {"HotPink" , PALETTERGB (255,105,180)},
656 {"deep pink" , PALETTERGB (255, 20,147)},
657 {"DeepPink" , PALETTERGB (255, 20,147)},
658 {"pink" , PALETTERGB (255,192,203)},
659 {"light pink" , PALETTERGB (255,182,193)},
660 {"LightPink" , PALETTERGB (255,182,193)},
661 {"pale violet red" , PALETTERGB (219,112,147)},
662 {"PaleVioletRed" , PALETTERGB (219,112,147)},
663 {"maroon" , PALETTERGB (176, 48, 96)},
664 {"medium violet red" , PALETTERGB (199, 21,133)},
665 {"MediumVioletRed" , PALETTERGB (199, 21,133)},
666 {"violet red" , PALETTERGB (208, 32,144)},
667 {"VioletRed" , PALETTERGB (208, 32,144)},
668 {"magenta" , PALETTERGB (255, 0,255)},
669 {"violet" , PALETTERGB (238,130,238)},
670 {"plum" , PALETTERGB (221,160,221)},
671 {"orchid" , PALETTERGB (218,112,214)},
672 {"medium orchid" , PALETTERGB (186, 85,211)},
673 {"MediumOrchid" , PALETTERGB (186, 85,211)},
674 {"dark orchid" , PALETTERGB (153, 50,204)},
675 {"DarkOrchid" , PALETTERGB (153, 50,204)},
676 {"dark violet" , PALETTERGB (148, 0,211)},
677 {"DarkViolet" , PALETTERGB (148, 0,211)},
678 {"blue violet" , PALETTERGB (138, 43,226)},
679 {"BlueViolet" , PALETTERGB (138, 43,226)},
680 {"purple" , PALETTERGB (160, 32,240)},
681 {"medium purple" , PALETTERGB (147,112,219)},
682 {"MediumPurple" , PALETTERGB (147,112,219)},
683 {"thistle" , PALETTERGB (216,191,216)},
684 {"gray0" , PALETTERGB ( 0, 0, 0)},
685 {"grey0" , PALETTERGB ( 0, 0, 0)},
686 {"dark grey" , PALETTERGB (169,169,169)},
687 {"DarkGrey" , PALETTERGB (169,169,169)},
688 {"dark gray" , PALETTERGB (169,169,169)},
689 {"DarkGray" , PALETTERGB (169,169,169)},
690 {"dark blue" , PALETTERGB ( 0, 0,139)},
691 {"DarkBlue" , PALETTERGB ( 0, 0,139)},
692 {"dark cyan" , PALETTERGB ( 0,139,139)},
693 {"DarkCyan" , PALETTERGB ( 0,139,139)},
694 {"dark magenta" , PALETTERGB (139, 0,139)},
695 {"DarkMagenta" , PALETTERGB (139, 0,139)},
696 {"dark red" , PALETTERGB (139, 0, 0)},
697 {"DarkRed" , PALETTERGB (139, 0, 0)},
698 {"light green" , PALETTERGB (144,238,144)},
699 {"LightGreen" , PALETTERGB (144,238,144)},
702 static Lisp_Object
703 w32_default_color_map (void)
705 int i;
706 colormap_t *pc = w32_color_map;
707 Lisp_Object cmap;
709 block_input ();
711 cmap = Qnil;
713 for (i = 0; i < ARRAYELTS (w32_color_map); pc++, i++)
714 cmap = Fcons (Fcons (build_string (pc->name),
715 make_number (pc->colorref)),
716 cmap);
718 unblock_input ();
720 return (cmap);
723 DEFUN ("w32-default-color-map", Fw32_default_color_map, Sw32_default_color_map,
724 0, 0, 0, doc: /* Return the default color map. */)
725 (void)
727 return w32_default_color_map ();
730 static Lisp_Object
731 w32_color_map_lookup (const char *colorname)
733 Lisp_Object tail, ret = Qnil;
735 block_input ();
737 for (tail = Vw32_color_map; CONSP (tail); tail = XCDR (tail))
739 register Lisp_Object elt, tem;
741 elt = XCAR (tail);
742 if (!CONSP (elt)) continue;
744 tem = XCAR (elt);
746 if (lstrcmpi (SDATA (tem), colorname) == 0)
748 ret = Fcdr (elt);
749 break;
752 QUIT;
755 unblock_input ();
757 return ret;
761 static void
762 add_system_logical_colors_to_map (Lisp_Object *system_colors)
764 HKEY colors_key;
766 /* Other registry operations are done with input blocked. */
767 block_input ();
769 /* Look for "Control Panel/Colors" under User and Machine registry
770 settings. */
771 if (RegOpenKeyEx (HKEY_CURRENT_USER, "Control Panel\\Colors", 0,
772 KEY_READ, &colors_key) == ERROR_SUCCESS
773 || RegOpenKeyEx (HKEY_LOCAL_MACHINE, "Control Panel\\Colors", 0,
774 KEY_READ, &colors_key) == ERROR_SUCCESS)
776 /* List all keys. */
777 char color_buffer[64];
778 char full_name_buffer[MAX_PATH + SYSTEM_COLOR_PREFIX_LEN];
779 int index = 0;
780 DWORD name_size, color_size;
781 char *name_buffer = full_name_buffer + SYSTEM_COLOR_PREFIX_LEN;
783 name_size = sizeof (full_name_buffer) - SYSTEM_COLOR_PREFIX_LEN;
784 color_size = sizeof (color_buffer);
786 strcpy (full_name_buffer, SYSTEM_COLOR_PREFIX);
788 while (RegEnumValueA (colors_key, index, name_buffer, &name_size,
789 NULL, NULL, color_buffer, &color_size)
790 == ERROR_SUCCESS)
792 int r, g, b;
793 if (sscanf (color_buffer, " %u %u %u", &r, &g, &b) == 3)
794 *system_colors = Fcons (Fcons (build_string (full_name_buffer),
795 make_number (RGB (r, g, b))),
796 *system_colors);
798 name_size = sizeof (full_name_buffer) - SYSTEM_COLOR_PREFIX_LEN;
799 color_size = sizeof (color_buffer);
800 index++;
802 RegCloseKey (colors_key);
805 unblock_input ();
809 static Lisp_Object
810 x_to_w32_color (const char * colorname)
812 register Lisp_Object ret = Qnil;
814 block_input ();
816 if (colorname[0] == '#')
818 /* Could be an old-style RGB Device specification. */
819 int size = strlen (colorname + 1);
820 char *color = alloca (size + 1);
822 strcpy (color, colorname + 1);
823 if (size == 3 || size == 6 || size == 9 || size == 12)
825 UINT colorval;
826 int i, pos;
827 pos = 0;
828 size /= 3;
829 colorval = 0;
831 for (i = 0; i < 3; i++)
833 char *end;
834 char t;
835 unsigned long value;
837 /* The check for 'x' in the following conditional takes into
838 account the fact that strtol allows a "0x" in front of
839 our numbers, and we don't. */
840 if (!isxdigit (color[0]) || color[1] == 'x')
841 break;
842 t = color[size];
843 color[size] = '\0';
844 value = strtoul (color, &end, 16);
845 color[size] = t;
846 if (errno == ERANGE || end - color != size)
847 break;
848 switch (size)
850 case 1:
851 value = value * 0x10;
852 break;
853 case 2:
854 break;
855 case 3:
856 value /= 0x10;
857 break;
858 case 4:
859 value /= 0x100;
860 break;
862 colorval |= (value << pos);
863 pos += 0x8;
864 if (i == 2)
866 unblock_input ();
867 XSETINT (ret, colorval);
868 return ret;
870 color = end;
874 else if (strnicmp (colorname, "rgb:", 4) == 0)
876 const char *color;
877 UINT colorval;
878 int i, pos;
879 pos = 0;
881 colorval = 0;
882 color = colorname + 4;
883 for (i = 0; i < 3; i++)
885 char *end;
886 unsigned long value;
888 /* The check for 'x' in the following conditional takes into
889 account the fact that strtol allows a "0x" in front of
890 our numbers, and we don't. */
891 if (!isxdigit (color[0]) || color[1] == 'x')
892 break;
893 value = strtoul (color, &end, 16);
894 if (errno == ERANGE)
895 break;
896 switch (end - color)
898 case 1:
899 value = value * 0x10 + value;
900 break;
901 case 2:
902 break;
903 case 3:
904 value /= 0x10;
905 break;
906 case 4:
907 value /= 0x100;
908 break;
909 default:
910 value = ULONG_MAX;
912 if (value == ULONG_MAX)
913 break;
914 colorval |= (value << pos);
915 pos += 0x8;
916 if (i == 2)
918 if (*end != '\0')
919 break;
920 unblock_input ();
921 XSETINT (ret, colorval);
922 return ret;
924 if (*end != '/')
925 break;
926 color = end + 1;
929 else if (strnicmp (colorname, "rgbi:", 5) == 0)
931 /* This is an RGB Intensity specification. */
932 const char *color;
933 UINT colorval;
934 int i, pos;
935 pos = 0;
937 colorval = 0;
938 color = colorname + 5;
939 for (i = 0; i < 3; i++)
941 char *end;
942 double value;
943 UINT val;
945 value = strtod (color, &end);
946 if (errno == ERANGE)
947 break;
948 if (value < 0.0 || value > 1.0)
949 break;
950 val = (UINT)(0x100 * value);
951 /* We used 0x100 instead of 0xFF to give a continuous
952 range between 0.0 and 1.0 inclusive. The next statement
953 fixes the 1.0 case. */
954 if (val == 0x100)
955 val = 0xFF;
956 colorval |= (val << pos);
957 pos += 0x8;
958 if (i == 2)
960 if (*end != '\0')
961 break;
962 unblock_input ();
963 XSETINT (ret, colorval);
964 return ret;
966 if (*end != '/')
967 break;
968 color = end + 1;
971 /* I am not going to attempt to handle any of the CIE color schemes
972 or TekHVC, since I don't know the algorithms for conversion to
973 RGB. */
975 /* If we fail to lookup the color name in w32_color_map, then check the
976 colorname to see if it can be crudely approximated: If the X color
977 ends in a number (e.g., "darkseagreen2"), strip the number and
978 return the result of looking up the base color name. */
979 ret = w32_color_map_lookup (colorname);
980 if (NILP (ret))
982 int len = strlen (colorname);
984 if (isdigit (colorname[len - 1]))
986 char *ptr, *approx = alloca (len + 1);
988 strcpy (approx, colorname);
989 ptr = &approx[len - 1];
990 while (ptr > approx && isdigit (*ptr))
991 *ptr-- = '\0';
993 ret = w32_color_map_lookup (approx);
997 unblock_input ();
998 return ret;
1001 void
1002 w32_regenerate_palette (struct frame *f)
1004 struct w32_palette_entry * list;
1005 LOGPALETTE * log_palette;
1006 HPALETTE new_palette;
1007 int i;
1009 /* don't bother trying to create palette if not supported */
1010 if (! FRAME_DISPLAY_INFO (f)->has_palette)
1011 return;
1013 log_palette = (LOGPALETTE *)
1014 alloca (sizeof (LOGPALETTE) +
1015 FRAME_DISPLAY_INFO (f)->num_colors * sizeof (PALETTEENTRY));
1016 log_palette->palVersion = 0x300;
1017 log_palette->palNumEntries = FRAME_DISPLAY_INFO (f)->num_colors;
1019 list = FRAME_DISPLAY_INFO (f)->color_list;
1020 for (i = 0;
1021 i < FRAME_DISPLAY_INFO (f)->num_colors;
1022 i++, list = list->next)
1023 log_palette->palPalEntry[i] = list->entry;
1025 new_palette = CreatePalette (log_palette);
1027 enter_crit ();
1029 if (FRAME_DISPLAY_INFO (f)->palette)
1030 DeleteObject (FRAME_DISPLAY_INFO (f)->palette);
1031 FRAME_DISPLAY_INFO (f)->palette = new_palette;
1033 /* Realize display palette and garbage all frames. */
1034 release_frame_dc (f, get_frame_dc (f));
1036 leave_crit ();
1039 #define W32_COLOR(pe) RGB (pe.peRed, pe.peGreen, pe.peBlue)
1040 #define SET_W32_COLOR(pe, color) \
1041 do \
1043 pe.peRed = GetRValue (color); \
1044 pe.peGreen = GetGValue (color); \
1045 pe.peBlue = GetBValue (color); \
1046 pe.peFlags = 0; \
1047 } while (0)
1049 #if 0
1050 /* Keep these around in case we ever want to track color usage. */
1051 void
1052 w32_map_color (struct frame *f, COLORREF color)
1054 struct w32_palette_entry * list = FRAME_DISPLAY_INFO (f)->color_list;
1056 if (NILP (Vw32_enable_palette))
1057 return;
1059 /* check if color is already mapped */
1060 while (list)
1062 if (W32_COLOR (list->entry) == color)
1064 ++list->refcount;
1065 return;
1067 list = list->next;
1070 /* not already mapped, so add to list and recreate Windows palette */
1071 list = xmalloc (sizeof (struct w32_palette_entry));
1072 SET_W32_COLOR (list->entry, color);
1073 list->refcount = 1;
1074 list->next = FRAME_DISPLAY_INFO (f)->color_list;
1075 FRAME_DISPLAY_INFO (f)->color_list = list;
1076 FRAME_DISPLAY_INFO (f)->num_colors++;
1078 /* set flag that palette must be regenerated */
1079 FRAME_DISPLAY_INFO (f)->regen_palette = TRUE;
1082 void
1083 w32_unmap_color (struct frame *f, COLORREF color)
1085 struct w32_palette_entry * list = FRAME_DISPLAY_INFO (f)->color_list;
1086 struct w32_palette_entry **prev = &FRAME_DISPLAY_INFO (f)->color_list;
1088 if (NILP (Vw32_enable_palette))
1089 return;
1091 /* check if color is already mapped */
1092 while (list)
1094 if (W32_COLOR (list->entry) == color)
1096 if (--list->refcount == 0)
1098 *prev = list->next;
1099 xfree (list);
1100 FRAME_DISPLAY_INFO (f)->num_colors--;
1101 break;
1103 else
1104 return;
1106 prev = &list->next;
1107 list = list->next;
1110 /* set flag that palette must be regenerated */
1111 FRAME_DISPLAY_INFO (f)->regen_palette = TRUE;
1113 #endif
1116 /* Gamma-correct COLOR on frame F. */
1118 void
1119 gamma_correct (struct frame *f, COLORREF *color)
1121 if (f->gamma)
1123 *color = PALETTERGB (
1124 pow (GetRValue (*color) / 255.0, f->gamma) * 255.0 + 0.5,
1125 pow (GetGValue (*color) / 255.0, f->gamma) * 255.0 + 0.5,
1126 pow (GetBValue (*color) / 255.0, f->gamma) * 255.0 + 0.5);
1131 /* Decide if color named COLOR is valid for the display associated with
1132 the selected frame; if so, return the rgb values in COLOR_DEF.
1133 If ALLOC is nonzero, allocate a new colormap cell. */
1136 w32_defined_color (struct frame *f, const char *color, XColor *color_def,
1137 bool alloc_p)
1139 register Lisp_Object tem;
1140 COLORREF w32_color_ref;
1142 tem = x_to_w32_color (color);
1144 if (!NILP (tem))
1146 if (f)
1148 /* Apply gamma correction. */
1149 w32_color_ref = XUINT (tem);
1150 gamma_correct (f, &w32_color_ref);
1151 XSETINT (tem, w32_color_ref);
1154 /* Map this color to the palette if it is enabled. */
1155 if (!NILP (Vw32_enable_palette))
1157 struct w32_palette_entry * entry =
1158 one_w32_display_info.color_list;
1159 struct w32_palette_entry ** prev =
1160 &one_w32_display_info.color_list;
1162 /* check if color is already mapped */
1163 while (entry)
1165 if (W32_COLOR (entry->entry) == XUINT (tem))
1166 break;
1167 prev = &entry->next;
1168 entry = entry->next;
1171 if (entry == NULL && alloc_p)
1173 /* not already mapped, so add to list */
1174 entry = xmalloc (sizeof (struct w32_palette_entry));
1175 SET_W32_COLOR (entry->entry, XUINT (tem));
1176 entry->next = NULL;
1177 *prev = entry;
1178 one_w32_display_info.num_colors++;
1180 /* set flag that palette must be regenerated */
1181 one_w32_display_info.regen_palette = TRUE;
1184 /* Ensure COLORREF value is snapped to nearest color in (default)
1185 palette by simulating the PALETTERGB macro. This works whether
1186 or not the display device has a palette. */
1187 w32_color_ref = XUINT (tem) | 0x2000000;
1189 color_def->pixel = w32_color_ref;
1190 color_def->red = GetRValue (w32_color_ref) * 256;
1191 color_def->green = GetGValue (w32_color_ref) * 256;
1192 color_def->blue = GetBValue (w32_color_ref) * 256;
1194 return 1;
1196 else
1198 return 0;
1202 /* Given a string ARG naming a color, compute a pixel value from it
1203 suitable for screen F.
1204 If F is not a color screen, return DEF (default) regardless of what
1205 ARG says. */
1208 x_decode_color (struct frame *f, Lisp_Object arg, int def)
1210 XColor cdef;
1212 CHECK_STRING (arg);
1214 if (strcmp (SDATA (arg), "black") == 0)
1215 return BLACK_PIX_DEFAULT (f);
1216 else if (strcmp (SDATA (arg), "white") == 0)
1217 return WHITE_PIX_DEFAULT (f);
1219 if ((FRAME_DISPLAY_INFO (f)->n_planes * FRAME_DISPLAY_INFO (f)->n_cbits) == 1)
1220 return def;
1222 /* w32_defined_color is responsible for coping with failures
1223 by looking for a near-miss. */
1224 if (w32_defined_color (f, SDATA (arg), &cdef, true))
1225 return cdef.pixel;
1227 /* defined_color failed; return an ultimate default. */
1228 return def;
1233 /* Functions called only from `x_set_frame_param'
1234 to set individual parameters.
1236 If FRAME_W32_WINDOW (f) is 0,
1237 the frame is being created and its window does not exist yet.
1238 In that case, just record the parameter's new value
1239 in the standard place; do not attempt to change the window. */
1241 void
1242 x_set_foreground_color (struct frame *f, Lisp_Object arg, Lisp_Object oldval)
1244 struct w32_output *x = f->output_data.w32;
1245 PIX_TYPE fg, old_fg;
1247 fg = x_decode_color (f, arg, BLACK_PIX_DEFAULT (f));
1248 old_fg = FRAME_FOREGROUND_PIXEL (f);
1249 FRAME_FOREGROUND_PIXEL (f) = fg;
1251 if (FRAME_W32_WINDOW (f) != 0)
1253 if (x->cursor_pixel == old_fg)
1255 x->cursor_pixel = fg;
1256 x->cursor_gc->background = fg;
1259 update_face_from_frame_parameter (f, Qforeground_color, arg);
1260 if (FRAME_VISIBLE_P (f))
1261 redraw_frame (f);
1265 void
1266 x_set_background_color (struct frame *f, Lisp_Object arg, Lisp_Object oldval)
1268 FRAME_BACKGROUND_PIXEL (f)
1269 = x_decode_color (f, arg, WHITE_PIX_DEFAULT (f));
1271 if (FRAME_W32_WINDOW (f) != 0)
1273 SetWindowLong (FRAME_W32_WINDOW (f), WND_BACKGROUND_INDEX,
1274 FRAME_BACKGROUND_PIXEL (f));
1276 update_face_from_frame_parameter (f, Qbackground_color, arg);
1278 if (FRAME_VISIBLE_P (f))
1279 redraw_frame (f);
1283 void
1284 x_set_mouse_color (struct frame *f, Lisp_Object arg, Lisp_Object oldval)
1286 Cursor cursor, nontext_cursor, mode_cursor, hand_cursor;
1287 int count;
1288 int mask_color;
1290 if (!EQ (Qnil, arg))
1291 f->output_data.w32->mouse_pixel
1292 = x_decode_color (f, arg, BLACK_PIX_DEFAULT (f));
1293 mask_color = FRAME_BACKGROUND_PIXEL (f);
1295 /* Don't let pointers be invisible. */
1296 if (mask_color == f->output_data.w32->mouse_pixel
1297 && mask_color == FRAME_BACKGROUND_PIXEL (f))
1298 f->output_data.w32->mouse_pixel = FRAME_FOREGROUND_PIXEL (f);
1300 #if 0 /* TODO : Mouse cursor customization. */
1301 block_input ();
1303 /* It's not okay to crash if the user selects a screwy cursor. */
1304 count = x_catch_errors (FRAME_W32_DISPLAY (f));
1306 if (!EQ (Qnil, Vx_pointer_shape))
1308 CHECK_NUMBER (Vx_pointer_shape);
1309 cursor = XCreateFontCursor (FRAME_W32_DISPLAY (f), XINT (Vx_pointer_shape));
1311 else
1312 cursor = XCreateFontCursor (FRAME_W32_DISPLAY (f), XC_xterm);
1313 x_check_errors (FRAME_W32_DISPLAY (f), "bad text pointer cursor: %s");
1315 if (!EQ (Qnil, Vx_nontext_pointer_shape))
1317 CHECK_NUMBER (Vx_nontext_pointer_shape);
1318 nontext_cursor = XCreateFontCursor (FRAME_W32_DISPLAY (f),
1319 XINT (Vx_nontext_pointer_shape));
1321 else
1322 nontext_cursor = XCreateFontCursor (FRAME_W32_DISPLAY (f), XC_left_ptr);
1323 x_check_errors (FRAME_W32_DISPLAY (f), "bad nontext pointer cursor: %s");
1325 if (!EQ (Qnil, Vx_hourglass_pointer_shape))
1327 CHECK_NUMBER (Vx_hourglass_pointer_shape);
1328 hourglass_cursor = XCreateFontCursor (FRAME_W32_DISPLAY (f),
1329 XINT (Vx_hourglass_pointer_shape));
1331 else
1332 hourglass_cursor = XCreateFontCursor (FRAME_W32_DISPLAY (f), XC_watch);
1333 x_check_errors (FRAME_W32_DISPLAY (f), "bad busy pointer cursor: %s");
1335 x_check_errors (FRAME_W32_DISPLAY (f), "bad nontext pointer cursor: %s");
1336 if (!EQ (Qnil, Vx_mode_pointer_shape))
1338 CHECK_NUMBER (Vx_mode_pointer_shape);
1339 mode_cursor = XCreateFontCursor (FRAME_W32_DISPLAY (f),
1340 XINT (Vx_mode_pointer_shape));
1342 else
1343 mode_cursor = XCreateFontCursor (FRAME_W32_DISPLAY (f), XC_xterm);
1344 x_check_errors (FRAME_W32_DISPLAY (f), "bad modeline pointer cursor: %s");
1346 if (!EQ (Qnil, Vx_sensitive_text_pointer_shape))
1348 CHECK_NUMBER (Vx_sensitive_text_pointer_shape);
1349 hand_cursor
1350 = XCreateFontCursor (FRAME_W32_DISPLAY (f),
1351 XINT (Vx_sensitive_text_pointer_shape));
1353 else
1354 hand_cursor = XCreateFontCursor (FRAME_W32_DISPLAY (f), XC_crosshair);
1356 if (!NILP (Vx_window_horizontal_drag_shape))
1358 CHECK_NUMBER (Vx_window_horizontal_drag_shape);
1359 horizontal_drag_cursor
1360 = XCreateFontCursor (FRAME_W32_DISPLAY (f),
1361 XINT (Vx_window_horizontal_drag_shape));
1363 else
1364 horizontal_drag_cursor
1365 = XCreateFontCursor (FRAME_W32_DISPLAY (f), XC_sb_h_double_arrow);
1367 if (!NILP (Vx_window_vertical_drag_shape))
1369 CHECK_NUMBER (Vx_window_vertical_drag_shape);
1370 vertical_drag_cursor
1371 = XCreateFontCursor (FRAME_W32_DISPLAY (f),
1372 XINT (Vx_window_vertical_drag_shape));
1374 else
1375 vertical_drag_cursor
1376 = XCreateFontCursor (FRAME_W32_DISPLAY (f), XC_sb_v_double_arrow);
1378 /* Check and report errors with the above calls. */
1379 x_check_errors (FRAME_W32_DISPLAY (f), "can't set cursor shape: %s");
1380 x_uncatch_errors (FRAME_W32_DISPLAY (f), count);
1383 XColor fore_color, back_color;
1385 fore_color.pixel = f->output_data.w32->mouse_pixel;
1386 back_color.pixel = mask_color;
1387 XQueryColor (FRAME_W32_DISPLAY (f),
1388 DefaultColormap (FRAME_W32_DISPLAY (f),
1389 DefaultScreen (FRAME_W32_DISPLAY (f))),
1390 &fore_color);
1391 XQueryColor (FRAME_W32_DISPLAY (f),
1392 DefaultColormap (FRAME_W32_DISPLAY (f),
1393 DefaultScreen (FRAME_W32_DISPLAY (f))),
1394 &back_color);
1395 XRecolorCursor (FRAME_W32_DISPLAY (f), cursor,
1396 &fore_color, &back_color);
1397 XRecolorCursor (FRAME_W32_DISPLAY (f), nontext_cursor,
1398 &fore_color, &back_color);
1399 XRecolorCursor (FRAME_W32_DISPLAY (f), mode_cursor,
1400 &fore_color, &back_color);
1401 XRecolorCursor (FRAME_W32_DISPLAY (f), hand_cursor,
1402 &fore_color, &back_color);
1403 XRecolorCursor (FRAME_W32_DISPLAY (f), hourglass_cursor,
1404 &fore_color, &back_color);
1407 if (FRAME_W32_WINDOW (f) != 0)
1408 XDefineCursor (FRAME_W32_DISPLAY (f), FRAME_W32_WINDOW (f), cursor);
1410 if (cursor != f->output_data.w32->text_cursor && f->output_data.w32->text_cursor != 0)
1411 XFreeCursor (FRAME_W32_DISPLAY (f), f->output_data.w32->text_cursor);
1412 f->output_data.w32->text_cursor = cursor;
1414 if (nontext_cursor != f->output_data.w32->nontext_cursor
1415 && f->output_data.w32->nontext_cursor != 0)
1416 XFreeCursor (FRAME_W32_DISPLAY (f), f->output_data.w32->nontext_cursor);
1417 f->output_data.w32->nontext_cursor = nontext_cursor;
1419 if (hourglass_cursor != f->output_data.w32->hourglass_cursor
1420 && f->output_data.w32->hourglass_cursor != 0)
1421 XFreeCursor (FRAME_W32_DISPLAY (f), f->output_data.w32->hourglass_cursor);
1422 f->output_data.w32->hourglass_cursor = hourglass_cursor;
1424 if (mode_cursor != f->output_data.w32->modeline_cursor
1425 && f->output_data.w32->modeline_cursor != 0)
1426 XFreeCursor (FRAME_W32_DISPLAY (f), f->output_data.w32->modeline_cursor);
1427 f->output_data.w32->modeline_cursor = mode_cursor;
1429 if (hand_cursor != f->output_data.w32->hand_cursor
1430 && f->output_data.w32->hand_cursor != 0)
1431 XFreeCursor (FRAME_W32_DISPLAY (f), f->output_data.w32->hand_cursor);
1432 f->output_data.w32->hand_cursor = hand_cursor;
1434 XFlush (FRAME_W32_DISPLAY (f));
1435 unblock_input ();
1437 update_face_from_frame_parameter (f, Qmouse_color, arg);
1438 #endif /* TODO */
1441 void
1442 x_set_cursor_color (struct frame *f, Lisp_Object arg, Lisp_Object oldval)
1444 unsigned long fore_pixel, pixel;
1446 if (!NILP (Vx_cursor_fore_pixel))
1447 fore_pixel = x_decode_color (f, Vx_cursor_fore_pixel,
1448 WHITE_PIX_DEFAULT (f));
1449 else
1450 fore_pixel = FRAME_BACKGROUND_PIXEL (f);
1452 pixel = x_decode_color (f, arg, BLACK_PIX_DEFAULT (f));
1454 /* Make sure that the cursor color differs from the background color. */
1455 if (pixel == FRAME_BACKGROUND_PIXEL (f))
1457 pixel = f->output_data.w32->mouse_pixel;
1458 if (pixel == fore_pixel)
1459 fore_pixel = FRAME_BACKGROUND_PIXEL (f);
1462 f->output_data.w32->cursor_foreground_pixel = fore_pixel;
1463 f->output_data.w32->cursor_pixel = pixel;
1465 if (FRAME_W32_WINDOW (f) != 0)
1467 block_input ();
1468 /* Update frame's cursor_gc. */
1469 f->output_data.w32->cursor_gc->foreground = fore_pixel;
1470 f->output_data.w32->cursor_gc->background = pixel;
1472 unblock_input ();
1474 if (FRAME_VISIBLE_P (f))
1476 x_update_cursor (f, 0);
1477 x_update_cursor (f, 1);
1481 update_face_from_frame_parameter (f, Qcursor_color, arg);
1484 /* Set the border-color of frame F to pixel value PIX.
1485 Note that this does not fully take effect if done before
1486 F has a window. */
1488 void
1489 x_set_border_pixel (struct frame *f, int pix)
1492 f->output_data.w32->border_pixel = pix;
1494 if (FRAME_W32_WINDOW (f) != 0 && f->border_width > 0)
1496 if (FRAME_VISIBLE_P (f))
1497 redraw_frame (f);
1501 /* Set the border-color of frame F to value described by ARG.
1502 ARG can be a string naming a color.
1503 The border-color is used for the border that is drawn by the server.
1504 Note that this does not fully take effect if done before
1505 F has a window; it must be redone when the window is created. */
1507 void
1508 x_set_border_color (struct frame *f, Lisp_Object arg, Lisp_Object oldval)
1510 int pix;
1512 CHECK_STRING (arg);
1513 pix = x_decode_color (f, arg, BLACK_PIX_DEFAULT (f));
1514 x_set_border_pixel (f, pix);
1515 update_face_from_frame_parameter (f, Qborder_color, arg);
1519 void
1520 x_set_cursor_type (struct frame *f, Lisp_Object arg, Lisp_Object oldval)
1522 set_frame_cursor_types (f, arg);
1525 void
1526 x_set_icon_type (struct frame *f, Lisp_Object arg, Lisp_Object oldval)
1528 bool result;
1530 if (NILP (arg) && NILP (oldval))
1531 return;
1533 if (STRINGP (arg) && STRINGP (oldval)
1534 && EQ (Fstring_equal (oldval, arg), Qt))
1535 return;
1537 if (SYMBOLP (arg) && SYMBOLP (oldval) && EQ (arg, oldval))
1538 return;
1540 block_input ();
1542 result = x_bitmap_icon (f, arg);
1543 if (result)
1545 unblock_input ();
1546 error ("No icon window available");
1549 unblock_input ();
1552 void
1553 x_set_icon_name (struct frame *f, Lisp_Object arg, Lisp_Object oldval)
1555 if (STRINGP (arg))
1557 if (STRINGP (oldval) && EQ (Fstring_equal (oldval, arg), Qt))
1558 return;
1560 else if (!NILP (arg) || NILP (oldval))
1561 return;
1563 fset_icon_name (f, arg);
1565 #if 0
1566 if (f->output_data.w32->icon_bitmap != 0)
1567 return;
1569 block_input ();
1571 result = x_text_icon (f,
1572 SSDATA ((!NILP (f->icon_name)
1573 ? f->icon_name
1574 : !NILP (f->title)
1575 ? f->title
1576 : f->name)));
1578 if (result)
1580 unblock_input ();
1581 error ("No icon window available");
1584 /* If the window was unmapped (and its icon was mapped),
1585 the new icon is not mapped, so map the window in its stead. */
1586 if (FRAME_VISIBLE_P (f))
1588 #ifdef USE_X_TOOLKIT
1589 XtPopup (f->output_data.w32->widget, XtGrabNone);
1590 #endif
1591 XMapWindow (FRAME_W32_DISPLAY (f), FRAME_W32_WINDOW (f));
1594 XFlush (FRAME_W32_DISPLAY (f));
1595 unblock_input ();
1596 #endif
1599 void
1600 x_clear_under_internal_border (struct frame *f)
1602 int border = FRAME_INTERNAL_BORDER_WIDTH (f);
1604 /* Clear border if it's larger than before. */
1605 if (border != 0)
1607 HDC hdc = get_frame_dc (f);
1608 int width = FRAME_PIXEL_WIDTH (f);
1609 int height = FRAME_PIXEL_HEIGHT (f);
1611 block_input ();
1612 w32_clear_area (f, hdc, 0, FRAME_TOP_MARGIN_HEIGHT (f), width, border);
1613 w32_clear_area (f, hdc, 0, 0, border, height);
1614 w32_clear_area (f, hdc, width - border, 0, border, height);
1615 w32_clear_area (f, hdc, 0, height - border, width, border);
1616 release_frame_dc (f, hdc);
1617 unblock_input ();
1622 void
1623 x_set_internal_border_width (struct frame *f, Lisp_Object arg, Lisp_Object oldval)
1625 int border;
1627 CHECK_TYPE_RANGED_INTEGER (int, arg);
1628 border = max (XINT (arg), 0);
1630 if (border != FRAME_INTERNAL_BORDER_WIDTH (f))
1632 FRAME_INTERNAL_BORDER_WIDTH (f) = border;
1634 if (FRAME_X_WINDOW (f) != 0)
1636 adjust_frame_size (f, -1, -1, 3, false, Qinternal_border_width);
1638 if (FRAME_VISIBLE_P (f))
1639 x_clear_under_internal_border (f);
1645 void
1646 x_set_menu_bar_lines (struct frame *f, Lisp_Object value, Lisp_Object oldval)
1648 int nlines;
1650 /* Right now, menu bars don't work properly in minibuf-only frames;
1651 most of the commands try to apply themselves to the minibuffer
1652 frame itself, and get an error because you can't switch buffers
1653 in or split the minibuffer window. */
1654 if (FRAME_MINIBUF_ONLY_P (f))
1655 return;
1657 if (INTEGERP (value))
1658 nlines = XINT (value);
1659 else
1660 nlines = 0;
1662 FRAME_MENU_BAR_LINES (f) = 0;
1663 FRAME_MENU_BAR_HEIGHT (f) = 0;
1664 if (nlines)
1666 FRAME_EXTERNAL_MENU_BAR (f) = 1;
1667 windows_or_buffers_changed = 23;
1669 else
1671 if (FRAME_EXTERNAL_MENU_BAR (f) == 1)
1672 free_frame_menubar (f);
1673 FRAME_EXTERNAL_MENU_BAR (f) = 0;
1675 /* Adjust the frame size so that the client (text) dimensions
1676 remain the same. This depends on FRAME_EXTERNAL_MENU_BAR being
1677 set correctly. Note that we resize twice: The first time upon
1678 a request from the window manager who wants to keep the height
1679 of the outer rectangle (including decorations) unchanged, and a
1680 second time because we want to keep the height of the inner
1681 rectangle (without the decorations unchanged). */
1682 adjust_frame_size (f, -1, -1, 2, true, Qmenu_bar_lines);
1684 /* Not sure whether this is needed. */
1685 x_clear_under_internal_border (f);
1690 /* Set the number of lines used for the tool bar of frame F to VALUE.
1691 VALUE not an integer, or < 0 means set the lines to zero. OLDVAL is
1692 the old number of tool bar lines (and is unused). This function may
1693 change the height of all windows on frame F to match the new tool bar
1694 height. By design, the frame's height doesn't change (but maybe it
1695 should if we don't get enough space otherwise). */
1697 void
1698 x_set_tool_bar_lines (struct frame *f, Lisp_Object value, Lisp_Object oldval)
1700 int nlines;
1702 /* Treat tool bars like menu bars. */
1703 if (FRAME_MINIBUF_ONLY_P (f))
1704 return;
1706 /* Use VALUE only if an integer >= 0. */
1707 if (INTEGERP (value) && XINT (value) >= 0)
1708 nlines = XFASTINT (value);
1709 else
1710 nlines = 0;
1712 x_change_tool_bar_height (f, nlines * FRAME_LINE_HEIGHT (f));
1716 /* Set the pixel height of the tool bar of frame F to HEIGHT. */
1717 void
1718 x_change_tool_bar_height (struct frame *f, int height)
1720 Lisp_Object frame;
1721 int unit = FRAME_LINE_HEIGHT (f);
1722 int old_height = FRAME_TOOL_BAR_HEIGHT (f);
1723 int lines = (height + unit - 1) / unit;
1724 int old_text_height = FRAME_TEXT_HEIGHT (f);
1725 Lisp_Object fullscreen;
1727 /* Make sure we redisplay all windows in this frame. */
1728 windows_or_buffers_changed = 23;
1730 /* Recalculate tool bar and frame text sizes. */
1731 FRAME_TOOL_BAR_HEIGHT (f) = height;
1732 FRAME_TOOL_BAR_LINES (f) = lines;
1733 /* Store `tool-bar-lines' and `height' frame parameters. */
1734 store_frame_param (f, Qtool_bar_lines, make_number (lines));
1735 store_frame_param (f, Qheight, make_number (FRAME_LINES (f)));
1737 if (FRAME_W32_WINDOW (f) && FRAME_TOOL_BAR_HEIGHT (f) == 0)
1739 clear_frame (f);
1740 clear_current_matrices (f);
1743 if ((height < old_height) && WINDOWP (f->tool_bar_window))
1744 clear_glyph_matrix (XWINDOW (f->tool_bar_window)->current_matrix);
1746 /* Recalculate toolbar height. */
1747 f->n_tool_bar_rows = 0;
1749 adjust_frame_size (f, -1, -1,
1750 ((!f->tool_bar_redisplayed_once
1751 && (NILP (fullscreen =
1752 get_frame_param (f, Qfullscreen))
1753 || EQ (fullscreen, Qfullwidth))) ? 1
1754 : (old_height == 0 || height == 0) ? 2
1755 : 4),
1756 false, Qtool_bar_lines);
1758 /* adjust_frame_size might not have done anything, garbage frame
1759 here. */
1760 adjust_frame_glyphs (f);
1761 SET_FRAME_GARBAGED (f);
1762 if (FRAME_X_WINDOW (f))
1763 x_clear_under_internal_border (f);
1766 static void
1767 w32_set_title_bar_text (struct frame *f, Lisp_Object name)
1769 if (FRAME_W32_WINDOW (f))
1771 block_input ();
1772 #ifdef __CYGWIN__
1773 GUI_FN (SetWindowText) (FRAME_W32_WINDOW (f),
1774 GUI_SDATA (GUI_ENCODE_SYSTEM (name)));
1775 #else
1776 /* The frame's title many times shows the name of the file
1777 visited in the selected window's buffer, so it makes sense to
1778 support non-ASCII characters outside of the current system
1779 codepage in the title. */
1780 if (w32_unicode_filenames)
1782 Lisp_Object encoded_title = ENCODE_UTF_8 (name);
1783 wchar_t *title_w;
1784 int tlen = pMultiByteToWideChar (CP_UTF8, 0, SSDATA (encoded_title),
1785 -1, NULL, 0);
1787 if (tlen > 0)
1789 /* Windows truncates the title text beyond what fits on
1790 a single line, so we can limit the length to some
1791 reasonably large value, and use alloca. */
1792 if (tlen > 10000)
1793 tlen = 10000;
1794 title_w = alloca ((tlen + 1) * sizeof (wchar_t));
1795 pMultiByteToWideChar (CP_UTF8, 0, SSDATA (encoded_title), -1,
1796 title_w, tlen);
1797 title_w[tlen] = L'\0';
1798 SetWindowTextW (FRAME_W32_WINDOW (f), title_w);
1800 else /* Conversion to UTF-16 failed, so we punt. */
1801 SetWindowTextA (FRAME_W32_WINDOW (f),
1802 SSDATA (ENCODE_SYSTEM (name)));
1804 else
1805 SetWindowTextA (FRAME_W32_WINDOW (f), SSDATA (ENCODE_SYSTEM (name)));
1806 #endif
1807 unblock_input ();
1811 /* Change the name of frame F to NAME. If NAME is nil, set F's name to
1812 w32_id_name.
1814 If EXPLICIT is non-zero, that indicates that lisp code is setting the
1815 name; if NAME is a string, set F's name to NAME and set
1816 F->explicit_name; if NAME is Qnil, then clear F->explicit_name.
1818 If EXPLICIT is zero, that indicates that Emacs redisplay code is
1819 suggesting a new name, which lisp code should override; if
1820 F->explicit_name is set, ignore the new name; otherwise, set it. */
1822 void
1823 x_set_name (struct frame *f, Lisp_Object name, bool explicit)
1825 /* Make sure that requests from lisp code override requests from
1826 Emacs redisplay code. */
1827 if (explicit)
1829 /* If we're switching from explicit to implicit, we had better
1830 update the mode lines and thereby update the title. */
1831 if (f->explicit_name && NILP (name))
1832 update_mode_lines = 25;
1834 f->explicit_name = ! NILP (name);
1836 else if (f->explicit_name)
1837 return;
1839 /* If NAME is nil, set the name to the w32_id_name. */
1840 if (NILP (name))
1842 /* Check for no change needed in this very common case
1843 before we do any consing. */
1844 if (!strcmp (FRAME_DISPLAY_INFO (f)->w32_id_name,
1845 SDATA (f->name)))
1846 return;
1847 name = build_string (FRAME_DISPLAY_INFO (f)->w32_id_name);
1849 else
1850 CHECK_STRING (name);
1852 /* Don't change the name if it's already NAME. */
1853 if (! NILP (Fstring_equal (name, f->name)))
1854 return;
1856 fset_name (f, name);
1858 /* For setting the frame title, the title parameter should override
1859 the name parameter. */
1860 if (! NILP (f->title))
1861 name = f->title;
1863 w32_set_title_bar_text (f, name);
1866 /* This function should be called when the user's lisp code has
1867 specified a name for the frame; the name will override any set by the
1868 redisplay code. */
1869 void
1870 x_explicitly_set_name (struct frame *f, Lisp_Object arg, Lisp_Object oldval)
1872 x_set_name (f, arg, true);
1875 /* This function should be called by Emacs redisplay code to set the
1876 name; names set this way will never override names set by the user's
1877 lisp code. */
1878 void
1879 x_implicitly_set_name (struct frame *f, Lisp_Object arg, Lisp_Object oldval)
1881 x_set_name (f, arg, false);
1884 /* Change the title of frame F to NAME.
1885 If NAME is nil, use the frame name as the title. */
1887 void
1888 x_set_title (struct frame *f, Lisp_Object name, Lisp_Object old_name)
1890 /* Don't change the title if it's already NAME. */
1891 if (EQ (name, f->title))
1892 return;
1894 update_mode_lines = 26;
1896 fset_title (f, name);
1898 if (NILP (name))
1899 name = f->name;
1901 w32_set_title_bar_text (f, name);
1904 void
1905 x_set_scroll_bar_default_width (struct frame *f)
1907 int unit = FRAME_COLUMN_WIDTH (f);
1909 FRAME_CONFIG_SCROLL_BAR_WIDTH (f) = GetSystemMetrics (SM_CXVSCROLL);
1910 FRAME_CONFIG_SCROLL_BAR_COLS (f)
1911 = (FRAME_CONFIG_SCROLL_BAR_WIDTH (f) + unit - 1) / unit;
1915 void
1916 x_set_scroll_bar_default_height (struct frame *f)
1918 int unit = FRAME_LINE_HEIGHT (f);
1920 FRAME_CONFIG_SCROLL_BAR_HEIGHT (f) = GetSystemMetrics (SM_CXHSCROLL);
1921 FRAME_CONFIG_SCROLL_BAR_LINES (f)
1922 = (FRAME_CONFIG_SCROLL_BAR_HEIGHT (f) + unit - 1) / unit;
1925 /* Subroutines for creating a frame. */
1927 Cursor
1928 w32_load_cursor (LPCTSTR name)
1930 /* Try first to load cursor from application resource. */
1931 Cursor cursor = LoadImage ((HINSTANCE) GetModuleHandle (NULL),
1932 name, IMAGE_CURSOR, 0, 0,
1933 LR_DEFAULTCOLOR | LR_DEFAULTSIZE | LR_SHARED);
1934 if (!cursor)
1936 /* Then try to load a shared predefined cursor. */
1937 cursor = LoadImage (NULL, name, IMAGE_CURSOR, 0, 0,
1938 LR_DEFAULTCOLOR | LR_DEFAULTSIZE | LR_SHARED);
1940 return cursor;
1943 static LRESULT CALLBACK w32_wnd_proc (HWND, UINT, WPARAM, LPARAM);
1945 #define INIT_WINDOW_CLASS(WC) \
1946 (WC).style = CS_HREDRAW | CS_VREDRAW; \
1947 (WC).lpfnWndProc = (WNDPROC) w32_wnd_proc; \
1948 (WC).cbClsExtra = 0; \
1949 (WC).cbWndExtra = WND_EXTRA_BYTES; \
1950 (WC).hInstance = hinst; \
1951 (WC).hIcon = LoadIcon (hinst, EMACS_CLASS); \
1952 (WC).hCursor = w32_load_cursor (IDC_ARROW); \
1953 (WC).hbrBackground = NULL; \
1954 (WC).lpszMenuName = NULL; \
1956 static BOOL
1957 w32_init_class (HINSTANCE hinst)
1959 if (w32_unicode_gui)
1961 WNDCLASSW uwc;
1962 INIT_WINDOW_CLASS(uwc);
1963 uwc.lpszClassName = L"Emacs";
1965 return RegisterClassW (&uwc);
1967 else
1969 WNDCLASS wc;
1970 INIT_WINDOW_CLASS(wc);
1971 wc.lpszClassName = EMACS_CLASS;
1973 return RegisterClassA (&wc);
1977 static HWND
1978 w32_createvscrollbar (struct frame *f, struct scroll_bar * bar)
1980 return CreateWindow ("SCROLLBAR", "", SBS_VERT | WS_CHILD | WS_VISIBLE,
1981 /* Position and size of scroll bar. */
1982 bar->left, bar->top, bar->width, bar->height,
1983 FRAME_W32_WINDOW (f), NULL, hinst, NULL);
1986 static HWND
1987 w32_createhscrollbar (struct frame *f, struct scroll_bar * bar)
1989 return CreateWindow ("SCROLLBAR", "", SBS_HORZ | WS_CHILD | WS_VISIBLE,
1990 /* Position and size of scroll bar. */
1991 bar->left, bar->top, bar->width, bar->height,
1992 FRAME_W32_WINDOW (f), NULL, hinst, NULL);
1995 static void
1996 w32_createwindow (struct frame *f, int *coords)
1998 HWND hwnd;
1999 RECT rect;
2000 int top;
2001 int left;
2003 rect.left = rect.top = 0;
2004 rect.right = FRAME_PIXEL_WIDTH (f);
2005 rect.bottom = FRAME_PIXEL_HEIGHT (f);
2007 AdjustWindowRect (&rect, f->output_data.w32->dwStyle,
2008 FRAME_EXTERNAL_MENU_BAR (f));
2010 /* Do first time app init */
2012 w32_init_class (hinst);
2014 if (f->size_hint_flags & USPosition || f->size_hint_flags & PPosition)
2016 left = f->left_pos;
2017 top = f->top_pos;
2019 else
2021 left = coords[0];
2022 top = coords[1];
2025 FRAME_W32_WINDOW (f) = hwnd
2026 = CreateWindow (EMACS_CLASS,
2027 f->namebuf,
2028 f->output_data.w32->dwStyle | WS_CLIPCHILDREN,
2029 left, top,
2030 rect.right - rect.left, rect.bottom - rect.top,
2031 NULL,
2032 NULL,
2033 hinst,
2034 NULL);
2036 if (hwnd)
2038 SetWindowLong (hwnd, WND_FONTWIDTH_INDEX, FRAME_COLUMN_WIDTH (f));
2039 SetWindowLong (hwnd, WND_LINEHEIGHT_INDEX, FRAME_LINE_HEIGHT (f));
2040 SetWindowLong (hwnd, WND_BORDER_INDEX, FRAME_INTERNAL_BORDER_WIDTH (f));
2041 SetWindowLong (hwnd, WND_VSCROLLBAR_INDEX, FRAME_SCROLL_BAR_AREA_WIDTH (f));
2042 SetWindowLong (hwnd, WND_HSCROLLBAR_INDEX, FRAME_SCROLL_BAR_AREA_HEIGHT (f));
2043 SetWindowLong (hwnd, WND_BACKGROUND_INDEX, FRAME_BACKGROUND_PIXEL (f));
2045 /* Enable drag-n-drop. */
2046 DragAcceptFiles (hwnd, TRUE);
2048 /* Do this to discard the default setting specified by our parent. */
2049 ShowWindow (hwnd, SW_HIDE);
2051 /* Update frame positions. */
2052 GetWindowRect (hwnd, &rect);
2053 f->left_pos = rect.left;
2054 f->top_pos = rect.top;
2058 static void
2059 my_post_msg (W32Msg * wmsg, HWND hwnd, UINT msg, WPARAM wParam, LPARAM lParam)
2061 wmsg->msg.hwnd = hwnd;
2062 wmsg->msg.message = msg;
2063 wmsg->msg.wParam = wParam;
2064 wmsg->msg.lParam = lParam;
2065 wmsg->msg.time = GetMessageTime ();
2067 post_msg (wmsg);
2070 /* GetKeyState and MapVirtualKey on Windows 95 do not actually distinguish
2071 between left and right keys as advertised. We test for this
2072 support dynamically, and set a flag when the support is absent. If
2073 absent, we keep track of the left and right control and alt keys
2074 ourselves. This is particularly necessary on keyboards that rely
2075 upon the AltGr key, which is represented as having the left control
2076 and right alt keys pressed. For these keyboards, we need to know
2077 when the left alt key has been pressed in addition to the AltGr key
2078 so that we can properly support M-AltGr-key sequences (such as M-@
2079 on Swedish keyboards). */
2081 #define EMACS_LCONTROL 0
2082 #define EMACS_RCONTROL 1
2083 #define EMACS_LMENU 2
2084 #define EMACS_RMENU 3
2086 static int modifiers[4];
2087 static int modifiers_recorded;
2088 static int modifier_key_support_tested;
2090 static void
2091 test_modifier_support (unsigned int wparam)
2093 unsigned int l, r;
2095 if (wparam != VK_CONTROL && wparam != VK_MENU)
2096 return;
2097 if (wparam == VK_CONTROL)
2099 l = VK_LCONTROL;
2100 r = VK_RCONTROL;
2102 else
2104 l = VK_LMENU;
2105 r = VK_RMENU;
2107 if (!(GetKeyState (l) & 0x8000) && !(GetKeyState (r) & 0x8000))
2108 modifiers_recorded = 1;
2109 else
2110 modifiers_recorded = 0;
2111 modifier_key_support_tested = 1;
2114 static void
2115 record_keydown (unsigned int wparam, unsigned int lparam)
2117 int i;
2119 if (!modifier_key_support_tested)
2120 test_modifier_support (wparam);
2122 if ((wparam != VK_CONTROL && wparam != VK_MENU) || !modifiers_recorded)
2123 return;
2125 if (wparam == VK_CONTROL)
2126 i = (lparam & 0x1000000) ? EMACS_RCONTROL : EMACS_LCONTROL;
2127 else
2128 i = (lparam & 0x1000000) ? EMACS_RMENU : EMACS_LMENU;
2130 modifiers[i] = 1;
2133 static void
2134 record_keyup (unsigned int wparam, unsigned int lparam)
2136 int i;
2138 if ((wparam != VK_CONTROL && wparam != VK_MENU) || !modifiers_recorded)
2139 return;
2141 if (wparam == VK_CONTROL)
2142 i = (lparam & 0x1000000) ? EMACS_RCONTROL : EMACS_LCONTROL;
2143 else
2144 i = (lparam & 0x1000000) ? EMACS_RMENU : EMACS_LMENU;
2146 modifiers[i] = 0;
2149 /* Emacs can lose focus while a modifier key has been pressed. When
2150 it regains focus, be conservative and clear all modifiers since
2151 we cannot reconstruct the left and right modifier state. */
2152 static void
2153 reset_modifiers (void)
2155 SHORT ctrl, alt;
2157 if (GetFocus () == NULL)
2158 /* Emacs doesn't have keyboard focus. Do nothing. */
2159 return;
2161 ctrl = GetAsyncKeyState (VK_CONTROL);
2162 alt = GetAsyncKeyState (VK_MENU);
2164 if (!(ctrl & 0x08000))
2165 /* Clear any recorded control modifier state. */
2166 modifiers[EMACS_RCONTROL] = modifiers[EMACS_LCONTROL] = 0;
2168 if (!(alt & 0x08000))
2169 /* Clear any recorded alt modifier state. */
2170 modifiers[EMACS_RMENU] = modifiers[EMACS_LMENU] = 0;
2172 /* Update the state of all modifier keys, because modifiers used in
2173 hot-key combinations can get stuck on if Emacs loses focus as a
2174 result of a hot-key being pressed. */
2176 BYTE keystate[256];
2178 #define CURRENT_STATE(key) ((GetAsyncKeyState (key) & 0x8000) >> 8)
2180 memset (keystate, 0, sizeof (keystate));
2181 GetKeyboardState (keystate);
2182 keystate[VK_SHIFT] = CURRENT_STATE (VK_SHIFT);
2183 keystate[VK_CONTROL] = CURRENT_STATE (VK_CONTROL);
2184 keystate[VK_LCONTROL] = CURRENT_STATE (VK_LCONTROL);
2185 keystate[VK_RCONTROL] = CURRENT_STATE (VK_RCONTROL);
2186 keystate[VK_MENU] = CURRENT_STATE (VK_MENU);
2187 keystate[VK_LMENU] = CURRENT_STATE (VK_LMENU);
2188 keystate[VK_RMENU] = CURRENT_STATE (VK_RMENU);
2189 keystate[VK_LWIN] = CURRENT_STATE (VK_LWIN);
2190 keystate[VK_RWIN] = CURRENT_STATE (VK_RWIN);
2191 keystate[VK_APPS] = CURRENT_STATE (VK_APPS);
2192 SetKeyboardState (keystate);
2196 /* Synchronize modifier state with what is reported with the current
2197 keystroke. Even if we cannot distinguish between left and right
2198 modifier keys, we know that, if no modifiers are set, then neither
2199 the left or right modifier should be set. */
2200 static void
2201 sync_modifiers (void)
2203 if (!modifiers_recorded)
2204 return;
2206 if (!(GetKeyState (VK_CONTROL) & 0x8000))
2207 modifiers[EMACS_RCONTROL] = modifiers[EMACS_LCONTROL] = 0;
2209 if (!(GetKeyState (VK_MENU) & 0x8000))
2210 modifiers[EMACS_RMENU] = modifiers[EMACS_LMENU] = 0;
2213 static int
2214 modifier_set (int vkey)
2216 /* Warning: The fact that VK_NUMLOCK is not treated as the other 2
2217 toggle keys is not an omission! If you want to add it, you will
2218 have to make changes in the default sub-case of the WM_KEYDOWN
2219 switch, because if the NUMLOCK modifier is set, the code there
2220 will directly convert any key that looks like an ASCII letter,
2221 and also downcase those that look like upper-case ASCII. */
2222 if (vkey == VK_CAPITAL)
2224 if (NILP (Vw32_enable_caps_lock))
2225 return 0;
2226 else
2227 return (GetKeyState (vkey) & 0x1);
2229 if (vkey == VK_SCROLL)
2231 if (NILP (Vw32_scroll_lock_modifier)
2232 /* w32-scroll-lock-modifier can be any non-nil value that is
2233 not one of the modifiers, in which case it shall be ignored. */
2234 || !( EQ (Vw32_scroll_lock_modifier, Qhyper)
2235 || EQ (Vw32_scroll_lock_modifier, Qsuper)
2236 || EQ (Vw32_scroll_lock_modifier, Qmeta)
2237 || EQ (Vw32_scroll_lock_modifier, Qalt)
2238 || EQ (Vw32_scroll_lock_modifier, Qcontrol)
2239 || EQ (Vw32_scroll_lock_modifier, Qshift)))
2240 return 0;
2241 else
2242 return (GetKeyState (vkey) & 0x1);
2245 if (!modifiers_recorded)
2246 return (GetKeyState (vkey) & 0x8000);
2248 switch (vkey)
2250 case VK_LCONTROL:
2251 return modifiers[EMACS_LCONTROL];
2252 case VK_RCONTROL:
2253 return modifiers[EMACS_RCONTROL];
2254 case VK_LMENU:
2255 return modifiers[EMACS_LMENU];
2256 case VK_RMENU:
2257 return modifiers[EMACS_RMENU];
2259 return (GetKeyState (vkey) & 0x8000);
2262 /* Convert between the modifier bits W32 uses and the modifier bits
2263 Emacs uses. */
2265 unsigned int
2266 w32_key_to_modifier (int key)
2268 Lisp_Object key_mapping;
2270 switch (key)
2272 case VK_LWIN:
2273 key_mapping = Vw32_lwindow_modifier;
2274 break;
2275 case VK_RWIN:
2276 key_mapping = Vw32_rwindow_modifier;
2277 break;
2278 case VK_APPS:
2279 key_mapping = Vw32_apps_modifier;
2280 break;
2281 case VK_SCROLL:
2282 key_mapping = Vw32_scroll_lock_modifier;
2283 break;
2284 default:
2285 key_mapping = Qnil;
2288 /* NB. This code runs in the input thread, asynchronously to the lisp
2289 thread, so we must be careful to ensure access to lisp data is
2290 thread-safe. The following code is safe because the modifier
2291 variable values are updated atomically from lisp and symbols are
2292 not relocated by GC. Also, we don't have to worry about seeing GC
2293 markbits here. */
2294 if (EQ (key_mapping, Qhyper))
2295 return hyper_modifier;
2296 if (EQ (key_mapping, Qsuper))
2297 return super_modifier;
2298 if (EQ (key_mapping, Qmeta))
2299 return meta_modifier;
2300 if (EQ (key_mapping, Qalt))
2301 return alt_modifier;
2302 if (EQ (key_mapping, Qctrl))
2303 return ctrl_modifier;
2304 if (EQ (key_mapping, Qcontrol)) /* synonym for ctrl */
2305 return ctrl_modifier;
2306 if (EQ (key_mapping, Qshift))
2307 return shift_modifier;
2309 /* Don't generate any modifier if not explicitly requested. */
2310 return 0;
2313 static unsigned int
2314 w32_get_modifiers (void)
2316 return ((modifier_set (VK_SHIFT) ? shift_modifier : 0) |
2317 (modifier_set (VK_CONTROL) ? ctrl_modifier : 0) |
2318 (modifier_set (VK_LWIN) ? w32_key_to_modifier (VK_LWIN) : 0) |
2319 (modifier_set (VK_RWIN) ? w32_key_to_modifier (VK_RWIN) : 0) |
2320 (modifier_set (VK_APPS) ? w32_key_to_modifier (VK_APPS) : 0) |
2321 (modifier_set (VK_SCROLL) ? w32_key_to_modifier (VK_SCROLL) : 0) |
2322 (modifier_set (VK_MENU) ?
2323 ((NILP (Vw32_alt_is_meta)) ? alt_modifier : meta_modifier) : 0));
2326 /* We map the VK_* modifiers into console modifier constants
2327 so that we can use the same routines to handle both console
2328 and window input. */
2330 static int
2331 construct_console_modifiers (void)
2333 int mods;
2335 mods = 0;
2336 mods |= (modifier_set (VK_SHIFT)) ? SHIFT_PRESSED : 0;
2337 mods |= (modifier_set (VK_CAPITAL)) ? CAPSLOCK_ON : 0;
2338 mods |= (modifier_set (VK_SCROLL)) ? SCROLLLOCK_ON : 0;
2339 mods |= (modifier_set (VK_NUMLOCK)) ? NUMLOCK_ON : 0;
2340 mods |= (modifier_set (VK_LCONTROL)) ? LEFT_CTRL_PRESSED : 0;
2341 mods |= (modifier_set (VK_RCONTROL)) ? RIGHT_CTRL_PRESSED : 0;
2342 mods |= (modifier_set (VK_LMENU)) ? LEFT_ALT_PRESSED : 0;
2343 mods |= (modifier_set (VK_RMENU)) ? RIGHT_ALT_PRESSED : 0;
2344 mods |= (modifier_set (VK_LWIN)) ? LEFT_WIN_PRESSED : 0;
2345 mods |= (modifier_set (VK_RWIN)) ? RIGHT_WIN_PRESSED : 0;
2346 mods |= (modifier_set (VK_APPS)) ? APPS_PRESSED : 0;
2348 return mods;
2351 static int
2352 w32_get_key_modifiers (unsigned int wparam, unsigned int lparam)
2354 int mods;
2356 /* Convert to emacs modifiers. */
2357 mods = w32_kbd_mods_to_emacs (construct_console_modifiers (), wparam);
2359 return mods;
2362 unsigned int
2363 map_keypad_keys (unsigned int virt_key, unsigned int extended)
2365 if (virt_key < VK_CLEAR || virt_key > VK_DELETE)
2366 return virt_key;
2368 if (virt_key == VK_RETURN)
2369 return (extended ? VK_NUMPAD_ENTER : VK_RETURN);
2371 if (virt_key >= VK_PRIOR && virt_key <= VK_DOWN)
2372 return (!extended ? (VK_NUMPAD_PRIOR + (virt_key - VK_PRIOR)) : virt_key);
2374 if (virt_key == VK_INSERT || virt_key == VK_DELETE)
2375 return (!extended ? (VK_NUMPAD_INSERT + (virt_key - VK_INSERT)) : virt_key);
2377 if (virt_key == VK_CLEAR)
2378 return (!extended ? VK_NUMPAD_CLEAR : virt_key);
2380 return virt_key;
2383 /* List of special key combinations which w32 would normally capture,
2384 but Emacs should grab instead. Not directly visible to lisp, to
2385 simplify synchronization. Each item is an integer encoding a virtual
2386 key code and modifier combination to capture. */
2387 static Lisp_Object w32_grabbed_keys;
2389 #define HOTKEY(vk, mods) make_number (((vk) & 255) | ((mods) << 8))
2390 #define HOTKEY_ID(k) (XFASTINT (k) & 0xbfff)
2391 #define HOTKEY_VK_CODE(k) (XFASTINT (k) & 255)
2392 #define HOTKEY_MODIFIERS(k) (XFASTINT (k) >> 8)
2394 #define RAW_HOTKEY_ID(k) ((k) & 0xbfff)
2395 #define RAW_HOTKEY_VK_CODE(k) ((k) & 255)
2396 #define RAW_HOTKEY_MODIFIERS(k) ((k) >> 8)
2398 /* Register hot-keys for reserved key combinations when Emacs has
2399 keyboard focus, since this is the only way Emacs can receive key
2400 combinations like Alt-Tab which are used by the system. */
2402 static void
2403 register_hot_keys (HWND hwnd)
2405 Lisp_Object keylist;
2407 /* Use CONSP, since we are called asynchronously. */
2408 for (keylist = w32_grabbed_keys; CONSP (keylist); keylist = XCDR (keylist))
2410 Lisp_Object key = XCAR (keylist);
2412 /* Deleted entries get set to nil. */
2413 if (!INTEGERP (key))
2414 continue;
2416 RegisterHotKey (hwnd, HOTKEY_ID (key),
2417 HOTKEY_MODIFIERS (key), HOTKEY_VK_CODE (key));
2421 static void
2422 unregister_hot_keys (HWND hwnd)
2424 Lisp_Object keylist;
2426 for (keylist = w32_grabbed_keys; CONSP (keylist); keylist = XCDR (keylist))
2428 Lisp_Object key = XCAR (keylist);
2430 if (!INTEGERP (key))
2431 continue;
2433 UnregisterHotKey (hwnd, HOTKEY_ID (key));
2437 #if EMACSDEBUG
2438 const char*
2439 w32_name_of_message (UINT msg)
2441 unsigned i;
2442 static char buf[64];
2443 static const struct {
2444 UINT msg;
2445 const char* name;
2446 } msgnames[] = {
2447 #define M(msg) { msg, # msg }
2448 M (WM_PAINT),
2449 M (WM_TIMER),
2450 M (WM_USER),
2451 M (WM_MOUSEMOVE),
2452 M (WM_LBUTTONUP),
2453 M (WM_KEYDOWN),
2454 M (WM_EMACS_KILL),
2455 M (WM_EMACS_CREATEWINDOW),
2456 M (WM_EMACS_DONE),
2457 M (WM_EMACS_CREATEVSCROLLBAR),
2458 M (WM_EMACS_CREATEHSCROLLBAR),
2459 M (WM_EMACS_SHOWWINDOW),
2460 M (WM_EMACS_SETWINDOWPOS),
2461 M (WM_EMACS_DESTROYWINDOW),
2462 M (WM_EMACS_TRACKPOPUPMENU),
2463 M (WM_EMACS_SETFOCUS),
2464 M (WM_EMACS_SETFOREGROUND),
2465 M (WM_EMACS_SETLOCALE),
2466 M (WM_EMACS_SETKEYBOARDLAYOUT),
2467 M (WM_EMACS_REGISTER_HOT_KEY),
2468 M (WM_EMACS_UNREGISTER_HOT_KEY),
2469 M (WM_EMACS_TOGGLE_LOCK_KEY),
2470 M (WM_EMACS_TRACK_CARET),
2471 M (WM_EMACS_DESTROY_CARET),
2472 M (WM_EMACS_SHOW_CARET),
2473 M (WM_EMACS_HIDE_CARET),
2474 M (WM_EMACS_SETCURSOR),
2475 M (WM_EMACS_SHOWCURSOR),
2476 M (WM_EMACS_PAINT),
2477 M (WM_CHAR),
2478 #undef M
2479 { 0, 0 }
2482 for (i = 0; msgnames[i].name; ++i)
2483 if (msgnames[i].msg == msg)
2484 return msgnames[i].name;
2486 sprintf (buf, "message 0x%04x", (unsigned)msg);
2487 return buf;
2489 #endif /* EMACSDEBUG */
2491 /* Here's an overview of how Emacs input works in GUI sessions on
2492 MS-Windows. (For description of non-GUI input, see the commentary
2493 before w32_console_read_socket in w32inevt.c.)
2495 System messages are read and processed by w32_msg_pump below. This
2496 function runs in a separate thread. It handles a small number of
2497 custom WM_EMACS_* messages (posted by the main thread, look for
2498 PostMessage calls), and dispatches the rest to w32_wnd_proc, which
2499 is the main window procedure for the entire Emacs application.
2501 w32_wnd_proc also runs in the same separate input thread. It
2502 handles some messages, mostly those that need GDI calls, by itself.
2503 For the others, it calls my_post_msg, which inserts the messages
2504 into the input queue serviced by w32_read_socket.
2506 w32_read_socket runs in the main (a.k.a. "Lisp") thread, and is
2507 called synchronously from keyboard.c when it is known or suspected
2508 that some input is available. w32_read_socket either handles
2509 messages immediately, or converts them into Emacs input events and
2510 stuffs them into kbd_buffer, where kbd_buffer_get_event can get at
2511 them and process them when read_char and its callers require
2512 input.
2514 Under Cygwin with the W32 toolkit, the use of /dev/windows with
2515 select(2) takes the place of w32_read_socket.
2519 /* Main message dispatch loop. */
2521 static void
2522 w32_msg_pump (deferred_msg * msg_buf)
2524 MSG msg;
2525 WPARAM result;
2526 HWND focus_window;
2528 msh_mousewheel = RegisterWindowMessage (MSH_MOUSEWHEEL);
2530 while ((w32_unicode_gui ? GetMessageW : GetMessageA) (&msg, NULL, 0, 0))
2533 /* DebPrint (("w32_msg_pump: %s time:%u\n", */
2534 /* w32_name_of_message (msg.message), msg.time)); */
2536 if (msg.hwnd == NULL)
2538 switch (msg.message)
2540 case WM_NULL:
2541 /* Produced by complete_deferred_msg; just ignore. */
2542 break;
2543 case WM_EMACS_CREATEWINDOW:
2544 /* Initialize COM for this window. Even though we don't use it,
2545 some third party shell extensions can cause it to be used in
2546 system dialogs, which causes a crash if it is not initialized.
2547 This is a known bug in Windows, which was fixed long ago, but
2548 the patch for XP is not publicly available until XP SP3,
2549 and older versions will never be patched. */
2550 CoInitialize (NULL);
2551 w32_createwindow ((struct frame *) msg.wParam,
2552 (int *) msg.lParam);
2553 if (!PostThreadMessage (dwMainThreadId, WM_EMACS_DONE, 0, 0))
2554 emacs_abort ();
2555 break;
2556 case WM_EMACS_SETLOCALE:
2557 SetThreadLocale (msg.wParam);
2558 /* Reply is not expected. */
2559 break;
2560 case WM_EMACS_SETKEYBOARDLAYOUT:
2561 result = (WPARAM) ActivateKeyboardLayout ((HKL) msg.wParam, 0);
2562 if (!PostThreadMessage (dwMainThreadId, WM_EMACS_DONE,
2563 result, 0))
2564 emacs_abort ();
2565 break;
2566 case WM_EMACS_REGISTER_HOT_KEY:
2567 focus_window = GetFocus ();
2568 if (focus_window != NULL)
2569 RegisterHotKey (focus_window,
2570 RAW_HOTKEY_ID (msg.wParam),
2571 RAW_HOTKEY_MODIFIERS (msg.wParam),
2572 RAW_HOTKEY_VK_CODE (msg.wParam));
2573 /* Reply is not expected. */
2574 break;
2575 case WM_EMACS_UNREGISTER_HOT_KEY:
2576 focus_window = GetFocus ();
2577 if (focus_window != NULL)
2578 UnregisterHotKey (focus_window, RAW_HOTKEY_ID (msg.wParam));
2579 /* Mark item as erased. NB: this code must be
2580 thread-safe. The next line is okay because the cons
2581 cell is never made into garbage and is not relocated by
2582 GC. */
2583 XSETCAR (make_lisp_ptr ((void *)msg.lParam, Lisp_Cons), Qnil);
2584 if (!PostThreadMessage (dwMainThreadId, WM_EMACS_DONE, 0, 0))
2585 emacs_abort ();
2586 break;
2587 case WM_EMACS_TOGGLE_LOCK_KEY:
2589 int vk_code = (int) msg.wParam;
2590 int cur_state = (GetKeyState (vk_code) & 1);
2591 int new_state = msg.lParam;
2593 if (new_state == -1
2594 || ((new_state & 1) != cur_state))
2596 one_w32_display_info.faked_key = vk_code;
2598 keybd_event ((BYTE) vk_code,
2599 (BYTE) MapVirtualKey (vk_code, 0),
2600 KEYEVENTF_EXTENDEDKEY | KEYEVENTF_KEYUP, 0);
2601 keybd_event ((BYTE) vk_code,
2602 (BYTE) MapVirtualKey (vk_code, 0),
2603 KEYEVENTF_EXTENDEDKEY | 0, 0);
2604 keybd_event ((BYTE) vk_code,
2605 (BYTE) MapVirtualKey (vk_code, 0),
2606 KEYEVENTF_EXTENDEDKEY | KEYEVENTF_KEYUP, 0);
2607 cur_state = !cur_state;
2609 if (!PostThreadMessage (dwMainThreadId, WM_EMACS_DONE,
2610 cur_state, 0))
2611 emacs_abort ();
2613 break;
2614 #ifdef MSG_DEBUG
2615 /* Broadcast messages make it here, so you need to be looking
2616 for something in particular for this to be useful. */
2617 default:
2618 DebPrint (("msg %x not expected by w32_msg_pump\n", msg.message));
2619 #endif
2622 else
2624 if (w32_unicode_gui)
2625 DispatchMessageW (&msg);
2626 else
2627 DispatchMessageA (&msg);
2630 /* Exit nested loop when our deferred message has completed. */
2631 if (msg_buf->completed)
2632 break;
2636 deferred_msg * deferred_msg_head;
2638 static deferred_msg *
2639 find_deferred_msg (HWND hwnd, UINT msg)
2641 deferred_msg * item;
2643 /* Don't actually need synchronization for read access, since
2644 modification of single pointer is always atomic. */
2645 /* enter_crit (); */
2647 for (item = deferred_msg_head; item != NULL; item = item->next)
2648 if (item->w32msg.msg.hwnd == hwnd
2649 && item->w32msg.msg.message == msg)
2650 break;
2652 /* leave_crit (); */
2654 return item;
2657 static LRESULT
2658 send_deferred_msg (deferred_msg * msg_buf,
2659 HWND hwnd,
2660 UINT msg,
2661 WPARAM wParam,
2662 LPARAM lParam)
2664 /* Only input thread can send deferred messages. */
2665 if (GetCurrentThreadId () != dwWindowsThreadId)
2666 emacs_abort ();
2668 /* It is an error to send a message that is already deferred. */
2669 if (find_deferred_msg (hwnd, msg) != NULL)
2670 emacs_abort ();
2672 /* Enforced synchronization is not needed because this is the only
2673 function that alters deferred_msg_head, and the following critical
2674 section is guaranteed to only be serially reentered (since only the
2675 input thread can call us). */
2677 /* enter_crit (); */
2679 msg_buf->completed = 0;
2680 msg_buf->next = deferred_msg_head;
2681 deferred_msg_head = msg_buf;
2682 my_post_msg (&msg_buf->w32msg, hwnd, msg, wParam, lParam);
2684 /* leave_crit (); */
2686 /* Start a new nested message loop to process other messages until
2687 this one is completed. */
2688 w32_msg_pump (msg_buf);
2690 deferred_msg_head = msg_buf->next;
2692 return msg_buf->result;
2695 void
2696 complete_deferred_msg (HWND hwnd, UINT msg, LRESULT result)
2698 deferred_msg * msg_buf = find_deferred_msg (hwnd, msg);
2700 if (msg_buf == NULL)
2701 /* Message may have been canceled, so don't abort. */
2702 return;
2704 msg_buf->result = result;
2705 msg_buf->completed = 1;
2707 /* Ensure input thread is woken so it notices the completion. */
2708 PostThreadMessage (dwWindowsThreadId, WM_NULL, 0, 0);
2711 static void
2712 cancel_all_deferred_msgs (void)
2714 deferred_msg * item;
2716 /* Don't actually need synchronization for read access, since
2717 modification of single pointer is always atomic. */
2718 /* enter_crit (); */
2720 for (item = deferred_msg_head; item != NULL; item = item->next)
2722 item->result = 0;
2723 item->completed = 1;
2726 /* leave_crit (); */
2728 /* Ensure input thread is woken so it notices the completion. */
2729 PostThreadMessage (dwWindowsThreadId, WM_NULL, 0, 0);
2732 DWORD WINAPI
2733 w32_msg_worker (void *arg)
2735 MSG msg;
2736 deferred_msg dummy_buf;
2738 /* Ensure our message queue is created */
2740 PeekMessage (&msg, NULL, 0, 0, PM_NOREMOVE);
2742 if (!PostThreadMessage (dwMainThreadId, WM_EMACS_DONE, 0, 0))
2743 emacs_abort ();
2745 memset (&dummy_buf, 0, sizeof (dummy_buf));
2746 dummy_buf.w32msg.msg.hwnd = NULL;
2747 dummy_buf.w32msg.msg.message = WM_NULL;
2749 /* This is the initial message loop which should only exit when the
2750 application quits. */
2751 w32_msg_pump (&dummy_buf);
2753 return 0;
2756 static void
2757 signal_user_input (void)
2759 /* Interrupt any lisp that wants to be interrupted by input. */
2760 if (!NILP (Vthrow_on_input))
2762 Vquit_flag = Vthrow_on_input;
2763 /* Doing a QUIT from this thread is a bad idea, since this
2764 unwinds the stack of the Lisp thread, and the Windows runtime
2765 rightfully barfs. Disabled. */
2766 #if 0
2767 /* If we're inside a function that wants immediate quits,
2768 do it now. */
2769 if (immediate_quit && NILP (Vinhibit_quit))
2771 immediate_quit = 0;
2772 QUIT;
2774 #endif
2779 static void
2780 post_character_message (HWND hwnd, UINT msg,
2781 WPARAM wParam, LPARAM lParam,
2782 DWORD modifiers)
2784 W32Msg wmsg;
2786 wmsg.dwModifiers = modifiers;
2788 /* Detect quit_char and set quit-flag directly. Note that we
2789 still need to post a message to ensure the main thread will be
2790 woken up if blocked in sys_select, but we do NOT want to post
2791 the quit_char message itself (because it will usually be as if
2792 the user had typed quit_char twice). Instead, we post a dummy
2793 message that has no particular effect. */
2795 int c = wParam;
2796 if (isalpha (c) && wmsg.dwModifiers == ctrl_modifier)
2797 c = make_ctrl_char (c) & 0377;
2798 if (c == quit_char
2799 || (wmsg.dwModifiers == 0
2800 && w32_quit_key && wParam == w32_quit_key))
2802 Vquit_flag = Qt;
2804 /* The choice of message is somewhat arbitrary, as long as
2805 the main thread handler just ignores it. */
2806 msg = WM_NULL;
2808 /* Interrupt any blocking system calls. */
2809 signal_quit ();
2811 /* As a safety precaution, forcibly complete any deferred
2812 messages. This is a kludge, but I don't see any particularly
2813 clean way to handle the situation where a deferred message is
2814 "dropped" in the lisp thread, and will thus never be
2815 completed, eg. by the user trying to activate the menubar
2816 when the lisp thread is busy, and then typing C-g when the
2817 menubar doesn't open promptly (with the result that the
2818 menubar never responds at all because the deferred
2819 WM_INITMENU message is never completed). Another problem
2820 situation is when the lisp thread calls SendMessage (to send
2821 a window manager command) when a message has been deferred;
2822 the lisp thread gets blocked indefinitely waiting for the
2823 deferred message to be completed, which itself is waiting for
2824 the lisp thread to respond.
2826 Note that we don't want to block the input thread waiting for
2827 a response from the lisp thread (although that would at least
2828 solve the deadlock problem above), because we want to be able
2829 to receive C-g to interrupt the lisp thread. */
2830 cancel_all_deferred_msgs ();
2832 else
2833 signal_user_input ();
2836 my_post_msg (&wmsg, hwnd, msg, wParam, lParam);
2839 /* Main window procedure */
2841 static LRESULT CALLBACK
2842 w32_wnd_proc (HWND hwnd, UINT msg, WPARAM wParam, LPARAM lParam)
2844 struct frame *f;
2845 struct w32_display_info *dpyinfo = &one_w32_display_info;
2846 W32Msg wmsg;
2847 int windows_translate;
2848 int key;
2850 /* Note that it is okay to call x_window_to_frame, even though we are
2851 not running in the main lisp thread, because frame deletion
2852 requires the lisp thread to synchronize with this thread. Thus, if
2853 a frame struct is returned, it can be used without concern that the
2854 lisp thread might make it disappear while we are using it.
2856 NB. Walking the frame list in this thread is safe (as long as
2857 writes of Lisp_Object slots are atomic, which they are on Windows).
2858 Although delete-frame can destructively modify the frame list while
2859 we are walking it, a garbage collection cannot occur until after
2860 delete-frame has synchronized with this thread.
2862 It is also safe to use functions that make GDI calls, such as
2863 w32_clear_rect, because these functions must obtain a DC handle
2864 from the frame struct using get_frame_dc which is thread-aware. */
2866 switch (msg)
2868 case WM_ERASEBKGND:
2869 f = x_window_to_frame (dpyinfo, hwnd);
2870 if (f)
2872 HDC hdc = get_frame_dc (f);
2873 GetUpdateRect (hwnd, &wmsg.rect, FALSE);
2874 w32_clear_rect (f, hdc, &wmsg.rect);
2875 release_frame_dc (f, hdc);
2877 #if defined (W32_DEBUG_DISPLAY)
2878 DebPrint (("WM_ERASEBKGND (frame %p): erasing %d,%d-%d,%d\n",
2880 wmsg.rect.left, wmsg.rect.top,
2881 wmsg.rect.right, wmsg.rect.bottom));
2882 #endif /* W32_DEBUG_DISPLAY */
2884 return 1;
2885 case WM_PALETTECHANGED:
2886 /* ignore our own changes */
2887 if ((HWND)wParam != hwnd)
2889 f = x_window_to_frame (dpyinfo, hwnd);
2890 if (f)
2891 /* get_frame_dc will realize our palette and force all
2892 frames to be redrawn if needed. */
2893 release_frame_dc (f, get_frame_dc (f));
2895 return 0;
2896 case WM_PAINT:
2898 PAINTSTRUCT paintStruct;
2899 RECT update_rect;
2900 memset (&update_rect, 0, sizeof (update_rect));
2902 f = x_window_to_frame (dpyinfo, hwnd);
2903 if (f == 0)
2905 DebPrint (("WM_PAINT received for unknown window %p\n", hwnd));
2906 return 0;
2909 /* MSDN Docs say not to call BeginPaint if GetUpdateRect
2910 fails. Apparently this can happen under some
2911 circumstances. */
2912 if (GetUpdateRect (hwnd, &update_rect, FALSE) || !w32_strict_painting)
2914 enter_crit ();
2915 BeginPaint (hwnd, &paintStruct);
2917 /* The rectangles returned by GetUpdateRect and BeginPaint
2918 do not always match. Play it safe by assuming both areas
2919 are invalid. */
2920 UnionRect (&(wmsg.rect), &update_rect, &(paintStruct.rcPaint));
2922 #if defined (W32_DEBUG_DISPLAY)
2923 DebPrint (("WM_PAINT (frame %p): painting %d,%d-%d,%d\n",
2925 wmsg.rect.left, wmsg.rect.top,
2926 wmsg.rect.right, wmsg.rect.bottom));
2927 DebPrint ((" [update region is %d,%d-%d,%d]\n",
2928 update_rect.left, update_rect.top,
2929 update_rect.right, update_rect.bottom));
2930 #endif
2931 EndPaint (hwnd, &paintStruct);
2932 leave_crit ();
2934 /* Change the message type to prevent Windows from
2935 combining WM_PAINT messages in the Lisp thread's queue,
2936 since Windows assumes that each message queue is
2937 dedicated to one frame and does not bother checking
2938 that hwnd matches before combining them. */
2939 my_post_msg (&wmsg, hwnd, WM_EMACS_PAINT, wParam, lParam);
2941 return 0;
2944 /* If GetUpdateRect returns 0 (meaning there is no update
2945 region), assume the whole window needs to be repainted. */
2946 GetClientRect (hwnd, &wmsg.rect);
2947 my_post_msg (&wmsg, hwnd, msg, wParam, lParam);
2948 return 0;
2951 case WM_INPUTLANGCHANGE:
2952 /* Inform lisp thread of keyboard layout changes. */
2953 my_post_msg (&wmsg, hwnd, msg, wParam, lParam);
2955 /* Clear dead keys in the keyboard state; for simplicity only
2956 preserve modifier key states. */
2958 int i;
2959 BYTE keystate[256];
2961 GetKeyboardState (keystate);
2962 for (i = 0; i < 256; i++)
2963 if (1
2964 && i != VK_SHIFT
2965 && i != VK_LSHIFT
2966 && i != VK_RSHIFT
2967 && i != VK_CAPITAL
2968 && i != VK_NUMLOCK
2969 && i != VK_SCROLL
2970 && i != VK_CONTROL
2971 && i != VK_LCONTROL
2972 && i != VK_RCONTROL
2973 && i != VK_MENU
2974 && i != VK_LMENU
2975 && i != VK_RMENU
2976 && i != VK_LWIN
2977 && i != VK_RWIN)
2978 keystate[i] = 0;
2979 SetKeyboardState (keystate);
2981 goto dflt;
2983 case WM_HOTKEY:
2984 /* Synchronize hot keys with normal input. */
2985 PostMessage (hwnd, WM_KEYDOWN, HIWORD (lParam), 0);
2986 return (0);
2988 case WM_KEYUP:
2989 case WM_SYSKEYUP:
2990 record_keyup (wParam, lParam);
2991 goto dflt;
2993 case WM_KEYDOWN:
2994 case WM_SYSKEYDOWN:
2995 /* Ignore keystrokes we fake ourself; see below. */
2996 if (dpyinfo->faked_key == wParam)
2998 dpyinfo->faked_key = 0;
2999 /* Make sure TranslateMessage sees them though (as long as
3000 they don't produce WM_CHAR messages). This ensures that
3001 indicator lights are toggled promptly on Windows 9x, for
3002 example. */
3003 if (wParam < 256 && lispy_function_keys[wParam])
3005 windows_translate = 1;
3006 goto translate;
3008 return 0;
3011 /* Synchronize modifiers with current keystroke. */
3012 sync_modifiers ();
3013 record_keydown (wParam, lParam);
3014 wParam = map_keypad_keys (wParam, (lParam & 0x1000000L) != 0);
3016 windows_translate = 0;
3018 switch (wParam)
3020 case VK_LWIN:
3021 if (NILP (Vw32_pass_lwindow_to_system))
3023 /* Prevent system from acting on keyup (which opens the
3024 Start menu if no other key was pressed) by simulating a
3025 press of Space which we will ignore. */
3026 if (GetAsyncKeyState (wParam) & 1)
3028 if (NUMBERP (Vw32_phantom_key_code))
3029 key = XUINT (Vw32_phantom_key_code) & 255;
3030 else
3031 key = VK_SPACE;
3032 dpyinfo->faked_key = key;
3033 keybd_event (key, (BYTE) MapVirtualKey (key, 0), 0, 0);
3036 if (!NILP (Vw32_lwindow_modifier))
3037 return 0;
3038 break;
3039 case VK_RWIN:
3040 if (NILP (Vw32_pass_rwindow_to_system))
3042 if (GetAsyncKeyState (wParam) & 1)
3044 if (NUMBERP (Vw32_phantom_key_code))
3045 key = XUINT (Vw32_phantom_key_code) & 255;
3046 else
3047 key = VK_SPACE;
3048 dpyinfo->faked_key = key;
3049 keybd_event (key, (BYTE) MapVirtualKey (key, 0), 0, 0);
3052 if (!NILP (Vw32_rwindow_modifier))
3053 return 0;
3054 break;
3055 case VK_APPS:
3056 if (!NILP (Vw32_apps_modifier))
3057 return 0;
3058 break;
3059 case VK_MENU:
3060 if (NILP (Vw32_pass_alt_to_system))
3061 /* Prevent DefWindowProc from activating the menu bar if an
3062 Alt key is pressed and released by itself. */
3063 return 0;
3064 windows_translate = 1;
3065 break;
3066 case VK_CAPITAL:
3067 /* Decide whether to treat as modifier or function key. */
3068 if (NILP (Vw32_enable_caps_lock))
3069 goto disable_lock_key;
3070 windows_translate = 1;
3071 break;
3072 case VK_NUMLOCK:
3073 /* Decide whether to treat as modifier or function key. */
3074 if (NILP (Vw32_enable_num_lock))
3075 goto disable_lock_key;
3076 windows_translate = 1;
3077 break;
3078 case VK_SCROLL:
3079 /* Decide whether to treat as modifier or function key. */
3080 if (NILP (Vw32_scroll_lock_modifier))
3081 goto disable_lock_key;
3082 windows_translate = 1;
3083 break;
3084 disable_lock_key:
3085 /* Ensure the appropriate lock key state (and indicator light)
3086 remains in the same state. We do this by faking another
3087 press of the relevant key. Apparently, this really is the
3088 only way to toggle the state of the indicator lights. */
3089 dpyinfo->faked_key = wParam;
3090 keybd_event ((BYTE) wParam, (BYTE) MapVirtualKey (wParam, 0),
3091 KEYEVENTF_EXTENDEDKEY | KEYEVENTF_KEYUP, 0);
3092 keybd_event ((BYTE) wParam, (BYTE) MapVirtualKey (wParam, 0),
3093 KEYEVENTF_EXTENDEDKEY | 0, 0);
3094 keybd_event ((BYTE) wParam, (BYTE) MapVirtualKey (wParam, 0),
3095 KEYEVENTF_EXTENDEDKEY | KEYEVENTF_KEYUP, 0);
3096 /* Ensure indicator lights are updated promptly on Windows 9x
3097 (TranslateMessage apparently does this), after forwarding
3098 input event. */
3099 post_character_message (hwnd, msg, wParam, lParam,
3100 w32_get_key_modifiers (wParam, lParam));
3101 windows_translate = 1;
3102 break;
3103 case VK_CONTROL:
3104 case VK_SHIFT:
3105 case VK_PROCESSKEY: /* Generated by IME. */
3106 windows_translate = 1;
3107 break;
3108 case VK_CANCEL:
3109 /* Windows maps Ctrl-Pause (aka Ctrl-Break) into VK_CANCEL,
3110 which is confusing for purposes of key binding; convert
3111 VK_CANCEL events into VK_PAUSE events. */
3112 wParam = VK_PAUSE;
3113 break;
3114 case VK_PAUSE:
3115 /* Windows maps Ctrl-NumLock into VK_PAUSE, which is confusing
3116 for purposes of key binding; convert these back into
3117 VK_NUMLOCK events, at least when we want to see NumLock key
3118 presses. (Note that there is never any possibility that
3119 VK_PAUSE with Ctrl really is C-Pause as per above.) */
3120 if (NILP (Vw32_enable_num_lock) && modifier_set (VK_CONTROL))
3121 wParam = VK_NUMLOCK;
3122 break;
3123 default:
3124 /* If not defined as a function key, change it to a WM_CHAR message. */
3125 if (wParam > 255 || !lispy_function_keys[wParam])
3127 DWORD modifiers = construct_console_modifiers ();
3129 if (!NILP (Vw32_recognize_altgr)
3130 && modifier_set (VK_LCONTROL) && modifier_set (VK_RMENU))
3132 /* Always let TranslateMessage handle AltGr key chords;
3133 for some reason, ToAscii doesn't always process AltGr
3134 chords correctly. */
3135 windows_translate = 1;
3137 else if ((modifiers & (~SHIFT_PRESSED & ~CAPSLOCK_ON)) != 0)
3139 /* Handle key chords including any modifiers other
3140 than shift directly, in order to preserve as much
3141 modifier information as possible. */
3142 if ('A' <= wParam && wParam <= 'Z')
3144 /* Don't translate modified alphabetic keystrokes,
3145 so the user doesn't need to constantly switch
3146 layout to type control or meta keystrokes when
3147 the normal layout translates alphabetic
3148 characters to non-ascii characters. */
3149 if (!modifier_set (VK_SHIFT))
3150 wParam += ('a' - 'A');
3151 msg = WM_CHAR;
3153 else
3155 /* Try to handle other keystrokes by determining the
3156 base character (ie. translating the base key plus
3157 shift modifier). */
3158 int add;
3159 KEY_EVENT_RECORD key;
3161 key.bKeyDown = TRUE;
3162 key.wRepeatCount = 1;
3163 key.wVirtualKeyCode = wParam;
3164 key.wVirtualScanCode = (lParam & 0xFF0000) >> 16;
3165 key.uChar.AsciiChar = 0;
3166 key.dwControlKeyState = modifiers;
3168 add = w32_kbd_patch_key (&key, w32_keyboard_codepage);
3169 /* 0 means an unrecognized keycode, negative means
3170 dead key. Ignore both. */
3171 while (--add >= 0)
3173 /* Forward asciified character sequence. */
3174 post_character_message
3175 (hwnd, WM_CHAR,
3176 (unsigned char) key.uChar.AsciiChar, lParam,
3177 w32_get_key_modifiers (wParam, lParam));
3178 w32_kbd_patch_key (&key, w32_keyboard_codepage);
3180 return 0;
3183 else
3185 /* Let TranslateMessage handle everything else. */
3186 windows_translate = 1;
3191 translate:
3192 if (windows_translate)
3194 MSG windows_msg = { hwnd, msg, wParam, lParam, 0, {0,0} };
3195 windows_msg.time = GetMessageTime ();
3196 TranslateMessage (&windows_msg);
3197 goto dflt;
3200 /* Fall through */
3202 case WM_SYSCHAR:
3203 case WM_CHAR:
3204 if (wParam > 255 )
3206 W32Msg wmsg;
3208 wmsg.dwModifiers = w32_get_key_modifiers (wParam, lParam);
3209 signal_user_input ();
3210 my_post_msg (&wmsg, hwnd, WM_UNICHAR, wParam, lParam);
3213 else
3214 post_character_message (hwnd, msg, wParam, lParam,
3215 w32_get_key_modifiers (wParam, lParam));
3216 break;
3218 case WM_UNICHAR:
3219 /* WM_UNICHAR looks promising from the docs, but the exact
3220 circumstances in which TranslateMessage sends it is one of those
3221 Microsoft secret API things that EU and US courts are supposed
3222 to have put a stop to already. Spy++ shows it being sent to Notepad
3223 and other MS apps, but never to Emacs.
3225 Some third party IMEs send it in accordance with the official
3226 documentation though, so handle it here.
3228 UNICODE_NOCHAR is used to test for support for this message.
3229 TRUE indicates that the message is supported. */
3230 if (wParam == UNICODE_NOCHAR)
3231 return TRUE;
3234 W32Msg wmsg;
3235 wmsg.dwModifiers = w32_get_key_modifiers (wParam, lParam);
3236 signal_user_input ();
3237 my_post_msg (&wmsg, hwnd, msg, wParam, lParam);
3239 break;
3241 case WM_IME_CHAR:
3242 /* If we can't get the IME result as Unicode, use default processing,
3243 which will at least allow characters decodable in the system locale
3244 get through. */
3245 if (!get_composition_string_fn)
3246 goto dflt;
3248 else if (!ignore_ime_char)
3250 wchar_t * buffer;
3251 int size, i;
3252 W32Msg wmsg;
3253 HIMC context = get_ime_context_fn (hwnd);
3254 wmsg.dwModifiers = w32_get_key_modifiers (wParam, lParam);
3255 /* Get buffer size. */
3256 size = get_composition_string_fn (context, GCS_RESULTSTR, NULL, 0);
3257 buffer = alloca (size);
3258 size = get_composition_string_fn (context, GCS_RESULTSTR,
3259 buffer, size);
3260 release_ime_context_fn (hwnd, context);
3262 signal_user_input ();
3263 for (i = 0; i < size / sizeof (wchar_t); i++)
3265 my_post_msg (&wmsg, hwnd, WM_UNICHAR, (WPARAM) buffer[i],
3266 lParam);
3268 /* Ignore the messages for the rest of the
3269 characters in the string that was output above. */
3270 ignore_ime_char = (size / sizeof (wchar_t)) - 1;
3272 else
3273 ignore_ime_char--;
3275 break;
3277 case WM_IME_STARTCOMPOSITION:
3278 if (!set_ime_composition_window_fn)
3279 goto dflt;
3280 else
3282 COMPOSITIONFORM form;
3283 HIMC context;
3284 struct window *w;
3286 /* Implementation note: The code below does something that
3287 one shouldn't do: it accesses the window object from a
3288 separate thread, while the main (a.k.a. "Lisp") thread
3289 runs and can legitimately delete and even GC it. That is
3290 why we are extra careful not to futz with a window that
3291 is different from the one recorded when the system caret
3292 coordinates were last modified. That is also why we are
3293 careful not to move the IME window if the window
3294 described by W was deleted, as indicated by its buffer
3295 field being reset to nil. */
3296 f = x_window_to_frame (dpyinfo, hwnd);
3297 if (!(f && FRAME_LIVE_P (f)))
3298 goto dflt;
3299 w = XWINDOW (FRAME_SELECTED_WINDOW (f));
3300 /* Punt if someone changed the frame's selected window
3301 behind our back. */
3302 if (w != w32_system_caret_window)
3303 goto dflt;
3305 form.dwStyle = CFS_RECT;
3306 form.ptCurrentPos.x = w32_system_caret_x;
3307 form.ptCurrentPos.y = w32_system_caret_y;
3309 form.rcArea.left = WINDOW_TEXT_TO_FRAME_PIXEL_X (w, 0);
3310 form.rcArea.top = (WINDOW_TOP_EDGE_Y (w)
3311 + w32_system_caret_hdr_height);
3312 form.rcArea.right = (WINDOW_BOX_RIGHT_EDGE_X (w)
3313 - WINDOW_RIGHT_MARGIN_WIDTH (w)
3314 - WINDOW_RIGHT_FRINGE_WIDTH (w));
3315 form.rcArea.bottom = (WINDOW_BOTTOM_EDGE_Y (w)
3316 - WINDOW_BOTTOM_DIVIDER_WIDTH (w)
3317 - w32_system_caret_mode_height);
3319 /* Punt if the window was deleted behind our back. */
3320 if (!BUFFERP (w->contents))
3321 goto dflt;
3323 context = get_ime_context_fn (hwnd);
3325 if (!context)
3326 goto dflt;
3328 set_ime_composition_window_fn (context, &form);
3329 release_ime_context_fn (hwnd, context);
3331 /* We should "goto dflt" here to pass WM_IME_STARTCOMPOSITION to
3332 DefWindowProc, so that the composition window will actually
3333 be displayed. But doing so causes trouble with displaying
3334 dialog boxes, such as the file selection dialog or font
3335 selection dialog. So something else is needed to fix the
3336 former without breaking the latter. See bug#11732. */
3337 break;
3339 case WM_IME_ENDCOMPOSITION:
3340 ignore_ime_char = 0;
3341 goto dflt;
3343 /* Simulate middle mouse button events when left and right buttons
3344 are used together, but only if user has two button mouse. */
3345 case WM_LBUTTONDOWN:
3346 case WM_RBUTTONDOWN:
3347 if (w32_num_mouse_buttons > 2)
3348 goto handle_plain_button;
3351 int this = (msg == WM_LBUTTONDOWN) ? LMOUSE : RMOUSE;
3352 int other = (msg == WM_LBUTTONDOWN) ? RMOUSE : LMOUSE;
3354 if (button_state & this)
3355 return 0;
3357 if (button_state == 0)
3358 SetCapture (hwnd);
3360 button_state |= this;
3362 if (button_state & other)
3364 if (mouse_button_timer)
3366 KillTimer (hwnd, mouse_button_timer);
3367 mouse_button_timer = 0;
3369 /* Generate middle mouse event instead. */
3370 msg = WM_MBUTTONDOWN;
3371 button_state |= MMOUSE;
3373 else if (button_state & MMOUSE)
3375 /* Ignore button event if we've already generated a
3376 middle mouse down event. This happens if the
3377 user releases and press one of the two buttons
3378 after we've faked a middle mouse event. */
3379 return 0;
3381 else
3383 /* Flush out saved message. */
3384 post_msg (&saved_mouse_button_msg);
3386 wmsg.dwModifiers = w32_get_modifiers ();
3387 my_post_msg (&wmsg, hwnd, msg, wParam, lParam);
3388 signal_user_input ();
3390 /* Clear message buffer. */
3391 saved_mouse_button_msg.msg.hwnd = 0;
3393 else
3395 /* Hold onto message for now. */
3396 mouse_button_timer =
3397 SetTimer (hwnd, MOUSE_BUTTON_ID,
3398 w32_mouse_button_tolerance, NULL);
3399 saved_mouse_button_msg.msg.hwnd = hwnd;
3400 saved_mouse_button_msg.msg.message = msg;
3401 saved_mouse_button_msg.msg.wParam = wParam;
3402 saved_mouse_button_msg.msg.lParam = lParam;
3403 saved_mouse_button_msg.msg.time = GetMessageTime ();
3404 saved_mouse_button_msg.dwModifiers = w32_get_modifiers ();
3407 return 0;
3409 case WM_LBUTTONUP:
3410 case WM_RBUTTONUP:
3411 if (w32_num_mouse_buttons > 2)
3412 goto handle_plain_button;
3415 int this = (msg == WM_LBUTTONUP) ? LMOUSE : RMOUSE;
3416 int other = (msg == WM_LBUTTONUP) ? RMOUSE : LMOUSE;
3418 if ((button_state & this) == 0)
3419 return 0;
3421 button_state &= ~this;
3423 if (button_state & MMOUSE)
3425 /* Only generate event when second button is released. */
3426 if ((button_state & other) == 0)
3428 msg = WM_MBUTTONUP;
3429 button_state &= ~MMOUSE;
3431 if (button_state) emacs_abort ();
3433 else
3434 return 0;
3436 else
3438 /* Flush out saved message if necessary. */
3439 if (saved_mouse_button_msg.msg.hwnd)
3441 post_msg (&saved_mouse_button_msg);
3444 wmsg.dwModifiers = w32_get_modifiers ();
3445 my_post_msg (&wmsg, hwnd, msg, wParam, lParam);
3446 signal_user_input ();
3448 /* Always clear message buffer and cancel timer. */
3449 saved_mouse_button_msg.msg.hwnd = 0;
3450 KillTimer (hwnd, mouse_button_timer);
3451 mouse_button_timer = 0;
3453 if (button_state == 0)
3454 ReleaseCapture ();
3456 return 0;
3458 case WM_XBUTTONDOWN:
3459 case WM_XBUTTONUP:
3460 if (w32_pass_extra_mouse_buttons_to_system)
3461 goto dflt;
3462 /* else fall through and process them. */
3463 case WM_MBUTTONDOWN:
3464 case WM_MBUTTONUP:
3465 handle_plain_button:
3467 BOOL up;
3468 int button;
3470 /* Ignore middle and extra buttons as long as the menu is active. */
3471 f = x_window_to_frame (dpyinfo, hwnd);
3472 if (f && f->output_data.w32->menubar_active)
3473 return 0;
3475 if (parse_button (msg, HIWORD (wParam), &button, &up))
3477 if (up) ReleaseCapture ();
3478 else SetCapture (hwnd);
3479 button = (button == 0) ? LMOUSE :
3480 ((button == 1) ? MMOUSE : RMOUSE);
3481 if (up)
3482 button_state &= ~button;
3483 else
3484 button_state |= button;
3488 wmsg.dwModifiers = w32_get_modifiers ();
3489 my_post_msg (&wmsg, hwnd, msg, wParam, lParam);
3490 signal_user_input ();
3492 /* Need to return true for XBUTTON messages, false for others,
3493 to indicate that we processed the message. */
3494 return (msg == WM_XBUTTONDOWN || msg == WM_XBUTTONUP);
3496 case WM_MOUSEMOVE:
3497 f = x_window_to_frame (dpyinfo, hwnd);
3498 if (f)
3500 /* Ignore mouse movements as long as the menu is active.
3501 These movements are processed by the window manager
3502 anyway, and it's wrong to handle them as if they happened
3503 on the underlying frame. */
3504 if (f->output_data.w32->menubar_active)
3505 return 0;
3507 /* If the mouse moved, and the mouse pointer is invisible,
3508 make it visible again. We do this here so as to be able
3509 to show the mouse pointer even when the main
3510 (a.k.a. "Lisp") thread is busy doing something. */
3511 static int last_x, last_y;
3512 int x = GET_X_LPARAM (lParam);
3513 int y = GET_Y_LPARAM (lParam);
3515 if (f->pointer_invisible
3516 && (x != last_x || y != last_y))
3517 f->pointer_invisible = false;
3519 last_x = x;
3520 last_y = y;
3523 /* If the mouse has just moved into the frame, start tracking
3524 it, so we will be notified when it leaves the frame. Mouse
3525 tracking only works under W98 and NT4 and later. On earlier
3526 versions, there is no way of telling when the mouse leaves the
3527 frame, so we just have to put up with help-echo and mouse
3528 highlighting remaining while the frame is not active. */
3529 if (track_mouse_event_fn && !track_mouse_window
3530 /* If the menu bar is active, turning on tracking of mouse
3531 movement events might send these events to the tooltip
3532 frame, if the user happens to move the mouse pointer over
3533 the tooltip. But since we don't process events for
3534 tooltip frames, this causes Windows to present a
3535 hourglass cursor, which is ugly and unexpected. So don't
3536 enable tracking mouse events in this case; they will be
3537 restarted when the menu pops down. (Confusingly, the
3538 menubar_active member of f->output_data.w32, tested
3539 above, is only set when a menu was popped up _not_ from
3540 the frame's menu bar, but via x-popup-menu.) */
3541 && !menubar_in_use)
3543 TRACKMOUSEEVENT tme;
3544 tme.cbSize = sizeof (tme);
3545 tme.dwFlags = TME_LEAVE;
3546 tme.hwndTrack = hwnd;
3547 tme.dwHoverTime = HOVER_DEFAULT;
3549 track_mouse_event_fn (&tme);
3550 track_mouse_window = hwnd;
3552 case WM_HSCROLL:
3553 case WM_VSCROLL:
3554 if (w32_mouse_move_interval <= 0
3555 || (msg == WM_MOUSEMOVE && button_state == 0))
3557 wmsg.dwModifiers = w32_get_modifiers ();
3558 my_post_msg (&wmsg, hwnd, msg, wParam, lParam);
3559 return 0;
3562 /* Hang onto mouse move and scroll messages for a bit, to avoid
3563 sending such events to Emacs faster than it can process them.
3564 If we get more events before the timer from the first message
3565 expires, we just replace the first message. */
3567 if (saved_mouse_move_msg.msg.hwnd == 0)
3568 mouse_move_timer =
3569 SetTimer (hwnd, MOUSE_MOVE_ID,
3570 w32_mouse_move_interval, NULL);
3572 /* Hold onto message for now. */
3573 saved_mouse_move_msg.msg.hwnd = hwnd;
3574 saved_mouse_move_msg.msg.message = msg;
3575 saved_mouse_move_msg.msg.wParam = wParam;
3576 saved_mouse_move_msg.msg.lParam = lParam;
3577 saved_mouse_move_msg.msg.time = GetMessageTime ();
3578 saved_mouse_move_msg.dwModifiers = w32_get_modifiers ();
3580 return 0;
3582 case WM_MOUSEWHEEL:
3583 case WM_DROPFILES:
3584 wmsg.dwModifiers = w32_get_modifiers ();
3585 my_post_msg (&wmsg, hwnd, msg, wParam, lParam);
3586 signal_user_input ();
3587 return 0;
3589 case WM_APPCOMMAND:
3590 if (w32_pass_multimedia_buttons_to_system)
3591 goto dflt;
3592 /* Otherwise, pass to lisp, the same way we do with mousehwheel. */
3593 case WM_MOUSEHWHEEL:
3594 wmsg.dwModifiers = w32_get_modifiers ();
3595 my_post_msg (&wmsg, hwnd, msg, wParam, lParam);
3596 signal_user_input ();
3597 /* Non-zero must be returned when WM_MOUSEHWHEEL messages are
3598 handled, to prevent the system trying to handle it by faking
3599 scroll bar events. */
3600 return 1;
3602 case WM_TIMER:
3603 /* Flush out saved messages if necessary. */
3604 if (wParam == mouse_button_timer)
3606 if (saved_mouse_button_msg.msg.hwnd)
3608 post_msg (&saved_mouse_button_msg);
3609 signal_user_input ();
3610 saved_mouse_button_msg.msg.hwnd = 0;
3612 KillTimer (hwnd, mouse_button_timer);
3613 mouse_button_timer = 0;
3615 else if (wParam == mouse_move_timer)
3617 if (saved_mouse_move_msg.msg.hwnd)
3619 post_msg (&saved_mouse_move_msg);
3620 saved_mouse_move_msg.msg.hwnd = 0;
3622 KillTimer (hwnd, mouse_move_timer);
3623 mouse_move_timer = 0;
3625 else if (wParam == menu_free_timer)
3627 KillTimer (hwnd, menu_free_timer);
3628 menu_free_timer = 0;
3629 f = x_window_to_frame (dpyinfo, hwnd);
3630 /* If a popup menu is active, don't wipe its strings. */
3631 if (menubar_in_use
3632 && current_popup_menu == NULL)
3634 /* Free memory used by owner-drawn and help-echo strings. */
3635 w32_free_menu_strings (hwnd);
3636 if (f)
3637 f->output_data.w32->menubar_active = 0;
3638 menubar_in_use = 0;
3641 return 0;
3643 case WM_NCACTIVATE:
3644 /* Windows doesn't send us focus messages when putting up and
3645 taking down a system popup dialog as for Ctrl-Alt-Del on Windows 95.
3646 The only indication we get that something happened is receiving
3647 this message afterwards. So this is a good time to reset our
3648 keyboard modifiers' state. */
3649 reset_modifiers ();
3650 goto dflt;
3652 case WM_INITMENU:
3653 button_state = 0;
3654 ReleaseCapture ();
3655 /* We must ensure menu bar is fully constructed and up to date
3656 before allowing user interaction with it. To achieve this
3657 we send this message to the lisp thread and wait for a
3658 reply (whose value is not actually needed) to indicate that
3659 the menu bar is now ready for use, so we can now return.
3661 To remain responsive in the meantime, we enter a nested message
3662 loop that can process all other messages.
3664 However, we skip all this if the message results from calling
3665 TrackPopupMenu - in fact, we must NOT attempt to send the lisp
3666 thread a message because it is blocked on us at this point. We
3667 set menubar_active before calling TrackPopupMenu to indicate
3668 this (there is no possibility of confusion with real menubar
3669 being active). */
3671 f = x_window_to_frame (dpyinfo, hwnd);
3672 if (f
3673 && (f->output_data.w32->menubar_active
3674 /* We can receive this message even in the absence of a
3675 menubar (ie. when the system menu is activated) - in this
3676 case we do NOT want to forward the message, otherwise it
3677 will cause the menubar to suddenly appear when the user
3678 had requested it to be turned off! */
3679 || f->output_data.w32->menubar_widget == NULL))
3680 return 0;
3683 deferred_msg msg_buf;
3685 /* Detect if message has already been deferred; in this case
3686 we cannot return any sensible value to ignore this. */
3687 if (find_deferred_msg (hwnd, msg) != NULL)
3688 emacs_abort ();
3690 menubar_in_use = 1;
3692 return send_deferred_msg (&msg_buf, hwnd, msg, wParam, lParam);
3695 case WM_EXITMENULOOP:
3696 f = x_window_to_frame (dpyinfo, hwnd);
3698 /* If a menu is still active, check again after a short delay,
3699 since Windows often (always?) sends the WM_EXITMENULOOP
3700 before the corresponding WM_COMMAND message.
3701 Don't do this if a popup menu is active, since it is only
3702 menubar menus that require cleaning up in this way.
3704 if (f && menubar_in_use && current_popup_menu == NULL)
3705 menu_free_timer = SetTimer (hwnd, MENU_FREE_ID, MENU_FREE_DELAY, NULL);
3707 /* If hourglass cursor should be displayed, display it now. */
3708 if (f && f->output_data.w32->hourglass_p)
3709 SetCursor (f->output_data.w32->hourglass_cursor);
3711 goto dflt;
3713 case WM_MENUSELECT:
3714 /* Direct handling of help_echo in menus. Should be safe now
3715 that we generate the help_echo by placing a help event in the
3716 keyboard buffer. */
3718 HMENU menu = (HMENU) lParam;
3719 UINT menu_item = (UINT) LOWORD (wParam);
3720 UINT flags = (UINT) HIWORD (wParam);
3722 w32_menu_display_help (hwnd, menu, menu_item, flags);
3724 return 0;
3726 case WM_MEASUREITEM:
3727 f = x_window_to_frame (dpyinfo, hwnd);
3728 if (f)
3730 MEASUREITEMSTRUCT * pMis = (MEASUREITEMSTRUCT *) lParam;
3732 if (pMis->CtlType == ODT_MENU)
3734 /* Work out dimensions for popup menu titles. */
3735 char * title = (char *) pMis->itemData;
3736 HDC hdc = GetDC (hwnd);
3737 HFONT menu_font = GetCurrentObject (hdc, OBJ_FONT);
3738 LOGFONT menu_logfont;
3739 HFONT old_font;
3740 SIZE size;
3742 GetObject (menu_font, sizeof (menu_logfont), &menu_logfont);
3743 menu_logfont.lfWeight = FW_BOLD;
3744 menu_font = CreateFontIndirect (&menu_logfont);
3745 old_font = SelectObject (hdc, menu_font);
3747 pMis->itemHeight = GetSystemMetrics (SM_CYMENUSIZE);
3748 if (title)
3750 if (unicode_append_menu)
3751 GetTextExtentPoint32W (hdc, (WCHAR *) title,
3752 wcslen ((WCHAR *) title),
3753 &size);
3754 else
3755 GetTextExtentPoint32 (hdc, title, strlen (title), &size);
3757 pMis->itemWidth = size.cx;
3758 if (pMis->itemHeight < size.cy)
3759 pMis->itemHeight = size.cy;
3761 else
3762 pMis->itemWidth = 0;
3764 SelectObject (hdc, old_font);
3765 DeleteObject (menu_font);
3766 ReleaseDC (hwnd, hdc);
3767 return TRUE;
3770 return 0;
3772 case WM_DRAWITEM:
3773 f = x_window_to_frame (dpyinfo, hwnd);
3774 if (f)
3776 DRAWITEMSTRUCT * pDis = (DRAWITEMSTRUCT *) lParam;
3778 if (pDis->CtlType == ODT_MENU)
3780 /* Draw popup menu title. */
3781 char * title = (char *) pDis->itemData;
3782 if (title)
3784 HDC hdc = pDis->hDC;
3785 HFONT menu_font = GetCurrentObject (hdc, OBJ_FONT);
3786 LOGFONT menu_logfont;
3787 HFONT old_font;
3789 GetObject (menu_font, sizeof (menu_logfont), &menu_logfont);
3790 menu_logfont.lfWeight = FW_BOLD;
3791 menu_font = CreateFontIndirect (&menu_logfont);
3792 old_font = SelectObject (hdc, menu_font);
3794 /* Always draw title as if not selected. */
3795 if (unicode_append_menu)
3796 ExtTextOutW (hdc,
3797 pDis->rcItem.left
3798 + GetSystemMetrics (SM_CXMENUCHECK),
3799 pDis->rcItem.top,
3800 ETO_OPAQUE, &pDis->rcItem,
3801 (WCHAR *) title,
3802 wcslen ((WCHAR *) title), NULL);
3803 else
3804 ExtTextOut (hdc,
3805 pDis->rcItem.left
3806 + GetSystemMetrics (SM_CXMENUCHECK),
3807 pDis->rcItem.top,
3808 ETO_OPAQUE, &pDis->rcItem,
3809 title, strlen (title), NULL);
3811 SelectObject (hdc, old_font);
3812 DeleteObject (menu_font);
3814 return TRUE;
3817 return 0;
3819 #if 0
3820 /* Still not right - can't distinguish between clicks in the
3821 client area of the frame from clicks forwarded from the scroll
3822 bars - may have to hook WM_NCHITTEST to remember the mouse
3823 position and then check if it is in the client area ourselves. */
3824 case WM_MOUSEACTIVATE:
3825 /* Discard the mouse click that activates a frame, allowing the
3826 user to click anywhere without changing point (or worse!).
3827 Don't eat mouse clicks on scrollbars though!! */
3828 if (LOWORD (lParam) == HTCLIENT )
3829 return MA_ACTIVATEANDEAT;
3830 goto dflt;
3831 #endif
3833 case WM_MOUSELEAVE:
3834 /* No longer tracking mouse. */
3835 track_mouse_window = NULL;
3837 case WM_ACTIVATEAPP:
3838 case WM_ACTIVATE:
3839 case WM_WINDOWPOSCHANGED:
3840 case WM_SHOWWINDOW:
3841 /* Inform lisp thread that a frame might have just been obscured
3842 or exposed, so should recheck visibility of all frames. */
3843 my_post_msg (&wmsg, hwnd, msg, wParam, lParam);
3844 goto dflt;
3846 case WM_SETFOCUS:
3847 dpyinfo->faked_key = 0;
3848 reset_modifiers ();
3849 register_hot_keys (hwnd);
3850 goto command;
3851 case WM_KILLFOCUS:
3852 unregister_hot_keys (hwnd);
3853 button_state = 0;
3854 ReleaseCapture ();
3855 /* Relinquish the system caret. */
3856 if (w32_system_caret_hwnd)
3858 w32_visible_system_caret_hwnd = NULL;
3859 w32_system_caret_hwnd = NULL;
3860 DestroyCaret ();
3862 goto command;
3863 case WM_COMMAND:
3864 menubar_in_use = 0;
3865 f = x_window_to_frame (dpyinfo, hwnd);
3866 if (f && HIWORD (wParam) == 0)
3868 if (menu_free_timer)
3870 KillTimer (hwnd, menu_free_timer);
3871 menu_free_timer = 0;
3874 case WM_MOVE:
3875 case WM_SIZE:
3876 command:
3877 wmsg.dwModifiers = w32_get_modifiers ();
3878 my_post_msg (&wmsg, hwnd, msg, wParam, lParam);
3879 goto dflt;
3881 case WM_DESTROY:
3882 CoUninitialize ();
3883 return 0;
3885 case WM_CLOSE:
3886 wmsg.dwModifiers = w32_get_modifiers ();
3887 my_post_msg (&wmsg, hwnd, msg, wParam, lParam);
3888 return 0;
3890 case WM_WINDOWPOSCHANGING:
3891 /* Don't restrict the sizing of any kind of frames. If the window
3892 manager doesn't, there's no reason to do it ourselves. */
3893 #if 0
3894 if (frame_resize_pixelwise || hwnd == tip_window)
3895 #endif
3896 return 0;
3898 #if 0
3899 /* Don't restrict the sizing of fullscreened frames, allowing them to be
3900 flush with the sides of the screen. */
3901 f = x_window_to_frame (dpyinfo, hwnd);
3902 if (f && FRAME_PREV_FSMODE (f) != FULLSCREEN_NONE)
3903 return 0;
3906 WINDOWPLACEMENT wp;
3907 LPWINDOWPOS lppos = (WINDOWPOS *) lParam;
3909 wp.length = sizeof (WINDOWPLACEMENT);
3910 GetWindowPlacement (hwnd, &wp);
3912 if (wp.showCmd != SW_SHOWMAXIMIZED && wp.showCmd != SW_SHOWMINIMIZED
3913 && (lppos->flags & SWP_NOSIZE) == 0)
3915 RECT rect;
3916 int wdiff;
3917 int hdiff;
3918 DWORD font_width;
3919 DWORD line_height;
3920 DWORD internal_border;
3921 DWORD vscrollbar_extra;
3922 DWORD hscrollbar_extra;
3923 RECT wr;
3925 wp.length = sizeof (wp);
3926 GetWindowRect (hwnd, &wr);
3928 enter_crit ();
3930 font_width = GetWindowLong (hwnd, WND_FONTWIDTH_INDEX);
3931 line_height = GetWindowLong (hwnd, WND_LINEHEIGHT_INDEX);
3932 internal_border = GetWindowLong (hwnd, WND_BORDER_INDEX);
3933 vscrollbar_extra = GetWindowLong (hwnd, WND_VSCROLLBAR_INDEX);
3934 hscrollbar_extra = GetWindowLong (hwnd, WND_HSCROLLBAR_INDEX);
3936 leave_crit ();
3938 memset (&rect, 0, sizeof (rect));
3939 AdjustWindowRect (&rect, GetWindowLong (hwnd, GWL_STYLE),
3940 GetMenu (hwnd) != NULL);
3942 /* Force width and height of client area to be exact
3943 multiples of the character cell dimensions. */
3944 wdiff = (lppos->cx - (rect.right - rect.left)
3945 - 2 * internal_border - vscrollbar_extra)
3946 % font_width;
3947 hdiff = (lppos->cy - (rect.bottom - rect.top)
3948 - 2 * internal_border - hscrollbar_extra)
3949 % line_height;
3951 if (wdiff || hdiff)
3953 /* For right/bottom sizing we can just fix the sizes.
3954 However for top/left sizing we will need to fix the X
3955 and Y positions as well. */
3957 int cx_mintrack = GetSystemMetrics (SM_CXMINTRACK);
3958 int cy_mintrack = GetSystemMetrics (SM_CYMINTRACK);
3960 lppos->cx = max (lppos->cx - wdiff, cx_mintrack);
3961 lppos->cy = max (lppos->cy - hdiff, cy_mintrack);
3963 if (wp.showCmd != SW_SHOWMAXIMIZED
3964 && (lppos->flags & SWP_NOMOVE) == 0)
3966 if (lppos->x != wr.left || lppos->y != wr.top)
3968 lppos->x += wdiff;
3969 lppos->y += hdiff;
3971 else
3973 lppos->flags |= SWP_NOMOVE;
3977 return 0;
3982 goto dflt;
3983 #endif
3985 case WM_GETMINMAXINFO:
3986 /* Hack to allow resizing the Emacs frame above the screen size.
3987 Note that Windows 9x limits coordinates to 16-bits. */
3988 ((LPMINMAXINFO) lParam)->ptMaxTrackSize.x = 32767;
3989 ((LPMINMAXINFO) lParam)->ptMaxTrackSize.y = 32767;
3990 return 0;
3992 case WM_SETCURSOR:
3993 if (LOWORD (lParam) == HTCLIENT)
3995 f = x_window_to_frame (dpyinfo, hwnd);
3996 if (f)
3998 if (f->output_data.w32->hourglass_p
3999 && !menubar_in_use && !current_popup_menu)
4000 SetCursor (f->output_data.w32->hourglass_cursor);
4001 else if (f->pointer_invisible)
4002 SetCursor (NULL);
4003 else
4004 SetCursor (f->output_data.w32->current_cursor);
4007 return 0;
4009 goto dflt;
4011 case WM_EMACS_SETCURSOR:
4013 Cursor cursor = (Cursor) wParam;
4014 f = x_window_to_frame (dpyinfo, hwnd);
4015 if (f && cursor)
4017 f->output_data.w32->current_cursor = cursor;
4018 /* Don't change the cursor while menu-bar menu is in use. */
4019 if (!f->output_data.w32->menubar_active
4020 && !f->output_data.w32->hourglass_p)
4022 if (f->pointer_invisible)
4023 SetCursor (NULL);
4024 else
4025 SetCursor (cursor);
4028 return 0;
4031 case WM_EMACS_SHOWCURSOR:
4033 ShowCursor ((BOOL) wParam);
4035 return 0;
4038 case WM_EMACS_CREATEVSCROLLBAR:
4039 return (LRESULT) w32_createvscrollbar ((struct frame *) wParam,
4040 (struct scroll_bar *) lParam);
4042 case WM_EMACS_CREATEHSCROLLBAR:
4043 return (LRESULT) w32_createhscrollbar ((struct frame *) wParam,
4044 (struct scroll_bar *) lParam);
4046 case WM_EMACS_SHOWWINDOW:
4047 return ShowWindow ((HWND) wParam, (WPARAM) lParam);
4049 case WM_EMACS_BRINGTOTOP:
4050 case WM_EMACS_SETFOREGROUND:
4052 HWND foreground_window;
4053 DWORD foreground_thread, retval;
4055 /* On NT 5.0, and apparently Windows 98, it is necessary to
4056 attach to the thread that currently has focus in order to
4057 pull the focus away from it. */
4058 foreground_window = GetForegroundWindow ();
4059 foreground_thread = GetWindowThreadProcessId (foreground_window, NULL);
4060 if (!foreground_window
4061 || foreground_thread == GetCurrentThreadId ()
4062 || !AttachThreadInput (GetCurrentThreadId (),
4063 foreground_thread, TRUE))
4064 foreground_thread = 0;
4066 retval = SetForegroundWindow ((HWND) wParam);
4067 if (msg == WM_EMACS_BRINGTOTOP)
4068 retval = BringWindowToTop ((HWND) wParam);
4070 /* Detach from the previous foreground thread. */
4071 if (foreground_thread)
4072 AttachThreadInput (GetCurrentThreadId (),
4073 foreground_thread, FALSE);
4075 return retval;
4078 case WM_EMACS_SETWINDOWPOS:
4080 WINDOWPOS * pos = (WINDOWPOS *) wParam;
4081 return SetWindowPos (hwnd, pos->hwndInsertAfter,
4082 pos->x, pos->y, pos->cx, pos->cy, pos->flags);
4085 case WM_EMACS_DESTROYWINDOW:
4086 DragAcceptFiles ((HWND) wParam, FALSE);
4087 return DestroyWindow ((HWND) wParam);
4089 case WM_EMACS_HIDE_CARET:
4090 return HideCaret (hwnd);
4092 case WM_EMACS_SHOW_CARET:
4093 return ShowCaret (hwnd);
4095 case WM_EMACS_DESTROY_CARET:
4096 w32_system_caret_hwnd = NULL;
4097 w32_visible_system_caret_hwnd = NULL;
4098 return DestroyCaret ();
4100 case WM_EMACS_TRACK_CARET:
4101 /* If there is currently no system caret, create one. */
4102 if (w32_system_caret_hwnd == NULL)
4104 /* Use the default caret width, and avoid changing it
4105 unnecessarily, as it confuses screen reader software. */
4106 w32_system_caret_hwnd = hwnd;
4107 CreateCaret (hwnd, NULL, 0,
4108 w32_system_caret_height);
4111 if (!SetCaretPos (w32_system_caret_x, w32_system_caret_y))
4112 return 0;
4113 /* Ensure visible caret gets turned on when requested. */
4114 else if (w32_use_visible_system_caret
4115 && w32_visible_system_caret_hwnd != hwnd)
4117 w32_visible_system_caret_hwnd = hwnd;
4118 return ShowCaret (hwnd);
4120 /* Ensure visible caret gets turned off when requested. */
4121 else if (!w32_use_visible_system_caret
4122 && w32_visible_system_caret_hwnd)
4124 w32_visible_system_caret_hwnd = NULL;
4125 return HideCaret (hwnd);
4127 else
4128 return 1;
4130 case WM_EMACS_TRACKPOPUPMENU:
4132 UINT flags;
4133 POINT *pos;
4134 int retval;
4135 pos = (POINT *)lParam;
4136 flags = TPM_CENTERALIGN;
4137 if (button_state & LMOUSE)
4138 flags |= TPM_LEFTBUTTON;
4139 else if (button_state & RMOUSE)
4140 flags |= TPM_RIGHTBUTTON;
4142 /* Remember we did a SetCapture on the initial mouse down event,
4143 so for safety, we make sure the capture is canceled now. */
4144 ReleaseCapture ();
4145 button_state = 0;
4147 /* Use menubar_active to indicate that WM_INITMENU is from
4148 TrackPopupMenu below, and should be ignored. */
4149 f = x_window_to_frame (dpyinfo, hwnd);
4150 if (f)
4151 f->output_data.w32->menubar_active = 1;
4153 if (TrackPopupMenu ((HMENU)wParam, flags, pos->x, pos->y,
4154 0, hwnd, NULL))
4156 MSG amsg;
4157 /* Eat any mouse messages during popupmenu */
4158 while (PeekMessage (&amsg, hwnd, WM_MOUSEFIRST, WM_MOUSELAST,
4159 PM_REMOVE));
4160 /* Get the menu selection, if any */
4161 if (PeekMessage (&amsg, hwnd, WM_COMMAND, WM_COMMAND, PM_REMOVE))
4163 retval = LOWORD (amsg.wParam);
4165 else
4167 retval = 0;
4170 else
4172 retval = -1;
4175 return retval;
4177 case WM_EMACS_FILENOTIFY:
4178 my_post_msg (&wmsg, hwnd, msg, wParam, lParam);
4179 return 1;
4181 default:
4182 /* Check for messages registered at runtime. */
4183 if (msg == msh_mousewheel)
4185 wmsg.dwModifiers = w32_get_modifiers ();
4186 my_post_msg (&wmsg, hwnd, msg, wParam, lParam);
4187 signal_user_input ();
4188 return 0;
4191 dflt:
4192 return (w32_unicode_gui ? DefWindowProcW : DefWindowProcA) (hwnd, msg, wParam, lParam);
4195 /* The most common default return code for handled messages is 0. */
4196 return 0;
4199 static void
4200 my_create_window (struct frame * f)
4202 MSG msg;
4203 static int coords[2];
4204 Lisp_Object left, top;
4205 struct w32_display_info *dpyinfo = &one_w32_display_info;
4207 /* When called with RES_TYPE_NUMBER, x_get_arg will return zero for
4208 anything that is not a number and is not Qunbound. */
4209 left = x_get_arg (dpyinfo, Qnil, Qleft, "left", "Left", RES_TYPE_NUMBER);
4210 top = x_get_arg (dpyinfo, Qnil, Qtop, "top", "Top", RES_TYPE_NUMBER);
4211 if (EQ (left, Qunbound))
4212 coords[0] = CW_USEDEFAULT;
4213 else
4214 coords[0] = XINT (left);
4215 if (EQ (top, Qunbound))
4216 coords[1] = CW_USEDEFAULT;
4217 else
4218 coords[1] = XINT (top);
4220 if (!PostThreadMessage (dwWindowsThreadId, WM_EMACS_CREATEWINDOW,
4221 (WPARAM)f, (LPARAM)coords))
4222 emacs_abort ();
4223 GetMessage (&msg, NULL, WM_EMACS_DONE, WM_EMACS_DONE);
4227 /* Create a tooltip window. Unlike my_create_window, we do not do this
4228 indirectly via the Window thread, as we do not need to process Window
4229 messages for the tooltip. Creating tooltips indirectly also creates
4230 deadlocks when tooltips are created for menu items. */
4231 static void
4232 my_create_tip_window (struct frame *f)
4234 RECT rect;
4236 rect.left = rect.top = 0;
4237 rect.right = FRAME_PIXEL_WIDTH (f);
4238 rect.bottom = FRAME_PIXEL_HEIGHT (f);
4240 AdjustWindowRect (&rect, f->output_data.w32->dwStyle,
4241 FRAME_EXTERNAL_MENU_BAR (f));
4243 tip_window = FRAME_W32_WINDOW (f)
4244 = CreateWindow (EMACS_CLASS,
4245 f->namebuf,
4246 f->output_data.w32->dwStyle,
4247 f->left_pos,
4248 f->top_pos,
4249 rect.right - rect.left,
4250 rect.bottom - rect.top,
4251 FRAME_W32_WINDOW (SELECTED_FRAME ()), /* owner */
4252 NULL,
4253 hinst,
4254 NULL);
4256 if (tip_window)
4258 SetWindowLong (tip_window, WND_FONTWIDTH_INDEX, FRAME_COLUMN_WIDTH (f));
4259 SetWindowLong (tip_window, WND_LINEHEIGHT_INDEX, FRAME_LINE_HEIGHT (f));
4260 SetWindowLong (tip_window, WND_BORDER_INDEX, FRAME_INTERNAL_BORDER_WIDTH (f));
4261 SetWindowLong (tip_window, WND_BACKGROUND_INDEX, FRAME_BACKGROUND_PIXEL (f));
4263 /* Tip frames have no scrollbars. */
4264 SetWindowLong (tip_window, WND_VSCROLLBAR_INDEX, 0);
4265 SetWindowLong (tip_window, WND_HSCROLLBAR_INDEX, 0);
4267 /* Do this to discard the default setting specified by our parent. */
4268 ShowWindow (tip_window, SW_HIDE);
4273 /* Create and set up the w32 window for frame F. */
4275 static void
4276 w32_window (struct frame *f, long window_prompting, bool minibuffer_only)
4278 block_input ();
4280 /* Use the resource name as the top-level window name
4281 for looking up resources. Make a non-Lisp copy
4282 for the window manager, so GC relocation won't bother it.
4284 Elsewhere we specify the window name for the window manager. */
4285 f->namebuf = xlispstrdup (Vx_resource_name);
4287 my_create_window (f);
4289 validate_x_resource_name ();
4291 /* x_set_name normally ignores requests to set the name if the
4292 requested name is the same as the current name. This is the one
4293 place where that assumption isn't correct; f->name is set, but
4294 the server hasn't been told. */
4296 Lisp_Object name;
4297 int explicit = f->explicit_name;
4299 f->explicit_name = 0;
4300 name = f->name;
4301 fset_name (f, Qnil);
4302 x_set_name (f, name, explicit);
4305 unblock_input ();
4307 if (!minibuffer_only && FRAME_EXTERNAL_MENU_BAR (f))
4308 initialize_frame_menubar (f);
4310 if (FRAME_W32_WINDOW (f) == 0)
4311 error ("Unable to create window");
4314 /* Handle the icon stuff for this window. Perhaps later we might
4315 want an x_set_icon_position which can be called interactively as
4316 well. */
4318 static void
4319 x_icon (struct frame *f, Lisp_Object parms)
4321 Lisp_Object icon_x, icon_y;
4322 struct w32_display_info *dpyinfo = &one_w32_display_info;
4324 /* Set the position of the icon. Note that Windows 95 groups all
4325 icons in the tray. */
4326 icon_x = x_get_arg (dpyinfo, parms, Qicon_left, 0, 0, RES_TYPE_NUMBER);
4327 icon_y = x_get_arg (dpyinfo, parms, Qicon_top, 0, 0, RES_TYPE_NUMBER);
4328 if (!EQ (icon_x, Qunbound) && !EQ (icon_y, Qunbound))
4330 CHECK_NUMBER (icon_x);
4331 CHECK_NUMBER (icon_y);
4333 else if (!EQ (icon_x, Qunbound) || !EQ (icon_y, Qunbound))
4334 error ("Both left and top icon corners of icon must be specified");
4336 block_input ();
4338 #if 0 /* TODO */
4339 /* Start up iconic or window? */
4340 x_wm_set_window_state
4341 (f, (EQ (x_get_arg (dpyinfo, parms, Qvisibility, 0, 0, RES_TYPE_SYMBOL), Qicon)
4342 ? IconicState
4343 : NormalState));
4345 x_text_icon (f, SSDATA ((!NILP (f->icon_name)
4346 ? f->icon_name
4347 : f->name)));
4348 #endif
4350 unblock_input ();
4354 static void
4355 x_make_gc (struct frame *f)
4357 XGCValues gc_values;
4359 block_input ();
4361 /* Create the GC's of this frame.
4362 Note that many default values are used. */
4364 /* Normal video */
4365 gc_values.font = FRAME_FONT (f);
4367 /* Cursor has cursor-color background, background-color foreground. */
4368 gc_values.foreground = FRAME_BACKGROUND_PIXEL (f);
4369 gc_values.background = f->output_data.w32->cursor_pixel;
4370 f->output_data.w32->cursor_gc
4371 = XCreateGC (NULL, FRAME_W32_WINDOW (f),
4372 (GCFont | GCForeground | GCBackground),
4373 &gc_values);
4375 /* Reliefs. */
4376 f->output_data.w32->white_relief.gc = 0;
4377 f->output_data.w32->black_relief.gc = 0;
4379 unblock_input ();
4383 /* Handler for signals raised during x_create_frame and
4384 x_create_tip_frame. FRAME is the frame which is partially
4385 constructed. */
4387 static Lisp_Object
4388 unwind_create_frame (Lisp_Object frame)
4390 struct frame *f = XFRAME (frame);
4392 /* If frame is ``official'', nothing to do. */
4393 if (NILP (Fmemq (frame, Vframe_list)))
4395 #ifdef GLYPH_DEBUG
4396 struct w32_display_info *dpyinfo = FRAME_DISPLAY_INFO (f);
4398 /* If the frame's image cache refcount is still the same as our
4399 private shadow variable, it means we are unwinding a frame
4400 for which we didn't yet call init_frame_faces, where the
4401 refcount is incremented. Therefore, we increment it here, so
4402 that free_frame_faces, called in x_free_frame_resources
4403 below, will not mistakenly decrement the counter that was not
4404 incremented yet to account for this new frame. */
4405 if (FRAME_IMAGE_CACHE (f) != NULL
4406 && FRAME_IMAGE_CACHE (f)->refcount == image_cache_refcount)
4407 FRAME_IMAGE_CACHE (f)->refcount++;
4408 #endif
4410 x_free_frame_resources (f);
4411 free_glyphs (f);
4413 #ifdef GLYPH_DEBUG
4414 /* Check that reference counts are indeed correct. */
4415 eassert (dpyinfo->reference_count == dpyinfo_refcount);
4416 eassert ((dpyinfo->terminal->image_cache == NULL
4417 && image_cache_refcount == 0)
4418 || (dpyinfo->terminal->image_cache != NULL
4419 && dpyinfo->terminal->image_cache->refcount == image_cache_refcount));
4420 #endif
4421 return Qt;
4424 return Qnil;
4427 static void
4428 do_unwind_create_frame (Lisp_Object frame)
4430 unwind_create_frame (frame);
4433 static void
4434 unwind_create_frame_1 (Lisp_Object val)
4436 inhibit_lisp_code = val;
4439 static void
4440 x_default_font_parameter (struct frame *f, Lisp_Object parms)
4442 struct w32_display_info *dpyinfo = FRAME_DISPLAY_INFO (f);
4443 Lisp_Object font_param = x_get_arg (dpyinfo, parms, Qfont, NULL, NULL,
4444 RES_TYPE_STRING);
4445 Lisp_Object font;
4446 if (EQ (font_param, Qunbound))
4447 font_param = Qnil;
4448 font = !NILP (font_param) ? font_param
4449 : x_get_arg (dpyinfo, parms, Qfont, "font", "Font", RES_TYPE_STRING);
4451 if (!STRINGP (font))
4453 int i;
4454 static char *names[]
4455 = { "Courier New-10",
4456 "-*-Courier-normal-r-*-*-13-*-*-*-c-*-iso8859-1",
4457 "-*-Fixedsys-normal-r-*-*-12-*-*-*-c-*-iso8859-1",
4458 "Fixedsys",
4459 NULL };
4461 for (i = 0; names[i]; i++)
4463 font = font_open_by_name (f, build_unibyte_string (names[i]));
4464 if (! NILP (font))
4465 break;
4467 if (NILP (font))
4468 error ("No suitable font was found");
4470 else if (!NILP (font_param))
4472 /* Remember the explicit font parameter, so we can re-apply it after
4473 we've applied the `default' face settings. */
4474 x_set_frame_parameters (f, Fcons (Fcons (Qfont_param, font_param), Qnil));
4476 x_default_parameter (f, parms, Qfont, font, "font", "Font", RES_TYPE_STRING);
4479 DEFUN ("x-create-frame", Fx_create_frame, Sx_create_frame,
4480 1, 1, 0,
4481 doc: /* Make a new window, which is called a \"frame\" in Emacs terms.
4482 Return an Emacs frame object.
4483 PARAMETERS is an alist of frame parameters.
4484 If the parameters specify that the frame should not have a minibuffer,
4485 and do not specify a specific minibuffer window to use,
4486 then `default-minibuffer-frame' must be a frame whose minibuffer can
4487 be shared by the new frame.
4489 This function is an internal primitive--use `make-frame' instead. */)
4490 (Lisp_Object parameters)
4492 struct frame *f;
4493 Lisp_Object frame, tem;
4494 Lisp_Object name;
4495 bool minibuffer_only = false;
4496 long window_prompting = 0;
4497 ptrdiff_t count = SPECPDL_INDEX ();
4498 struct gcpro gcpro1, gcpro2, gcpro3, gcpro4;
4499 Lisp_Object display;
4500 struct w32_display_info *dpyinfo = NULL;
4501 Lisp_Object parent;
4502 struct kboard *kb;
4504 if (!FRAME_W32_P (SELECTED_FRAME ())
4505 && !FRAME_INITIAL_P (SELECTED_FRAME ()))
4506 error ("Cannot create a GUI frame in a -nw session");
4508 /* Make copy of frame parameters because the original is in pure
4509 storage now. */
4510 parameters = Fcopy_alist (parameters);
4512 /* Use this general default value to start with
4513 until we know if this frame has a specified name. */
4514 Vx_resource_name = Vinvocation_name;
4516 display = x_get_arg (dpyinfo, parameters, Qterminal, 0, 0, RES_TYPE_NUMBER);
4517 if (EQ (display, Qunbound))
4518 display = x_get_arg (dpyinfo, parameters, Qdisplay, 0, 0, RES_TYPE_STRING);
4519 if (EQ (display, Qunbound))
4520 display = Qnil;
4521 dpyinfo = check_x_display_info (display);
4522 kb = dpyinfo->terminal->kboard;
4524 if (!dpyinfo->terminal->name)
4525 error ("Terminal is not live, can't create new frames on it");
4527 name = x_get_arg (dpyinfo, parameters, Qname, "name", "Name", RES_TYPE_STRING);
4528 if (!STRINGP (name)
4529 && ! EQ (name, Qunbound)
4530 && ! NILP (name))
4531 error ("Invalid frame name--not a string or nil");
4533 if (STRINGP (name))
4534 Vx_resource_name = name;
4536 /* See if parent window is specified. */
4537 parent = x_get_arg (dpyinfo, parameters, Qparent_id, NULL, NULL, RES_TYPE_NUMBER);
4538 if (EQ (parent, Qunbound))
4539 parent = Qnil;
4540 if (! NILP (parent))
4541 CHECK_NUMBER (parent);
4543 /* make_frame_without_minibuffer can run Lisp code and garbage collect. */
4544 /* No need to protect DISPLAY because that's not used after passing
4545 it to make_frame_without_minibuffer. */
4546 frame = Qnil;
4547 GCPRO4 (parameters, parent, name, frame);
4548 tem = x_get_arg (dpyinfo, parameters, Qminibuffer, "minibuffer", "Minibuffer",
4549 RES_TYPE_SYMBOL);
4550 if (EQ (tem, Qnone) || NILP (tem))
4551 f = make_frame_without_minibuffer (Qnil, kb, display);
4552 else if (EQ (tem, Qonly))
4554 f = make_minibuffer_frame ();
4555 minibuffer_only = true;
4557 else if (WINDOWP (tem))
4558 f = make_frame_without_minibuffer (tem, kb, display);
4559 else
4560 f = make_frame (true);
4562 XSETFRAME (frame, f);
4564 /* By default, make scrollbars the system standard width and height. */
4565 FRAME_CONFIG_SCROLL_BAR_WIDTH (f) = GetSystemMetrics (SM_CXVSCROLL);
4566 FRAME_CONFIG_SCROLL_BAR_HEIGHT (f) = GetSystemMetrics (SM_CXHSCROLL);
4568 f->terminal = dpyinfo->terminal;
4570 f->output_method = output_w32;
4571 f->output_data.w32 = xzalloc (sizeof (struct w32_output));
4572 FRAME_FONTSET (f) = -1;
4574 fset_icon_name
4575 (f, x_get_arg (dpyinfo, parameters, Qicon_name, "iconName", "Title",
4576 RES_TYPE_STRING));
4577 if (! STRINGP (f->icon_name))
4578 fset_icon_name (f, Qnil);
4580 /* FRAME_DISPLAY_INFO (f) = dpyinfo; */
4582 /* With FRAME_DISPLAY_INFO set up, this unwind-protect is safe. */
4583 record_unwind_protect (do_unwind_create_frame, frame);
4585 #ifdef GLYPH_DEBUG
4586 image_cache_refcount =
4587 FRAME_IMAGE_CACHE (f) ? FRAME_IMAGE_CACHE (f)->refcount : 0;
4588 dpyinfo_refcount = dpyinfo->reference_count;
4589 #endif /* GLYPH_DEBUG */
4591 /* Specify the parent under which to make this window. */
4592 if (!NILP (parent))
4594 /* Cast to UINT_PTR shuts up compiler warnings about cast to
4595 pointer from integer of different size. */
4596 f->output_data.w32->parent_desc = (Window) (UINT_PTR) XFASTINT (parent);
4597 f->output_data.w32->explicit_parent = true;
4599 else
4601 f->output_data.w32->parent_desc = FRAME_DISPLAY_INFO (f)->root_window;
4602 f->output_data.w32->explicit_parent = false;
4605 /* Set the name; the functions to which we pass f expect the name to
4606 be set. */
4607 if (EQ (name, Qunbound) || NILP (name))
4609 fset_name (f, build_string (dpyinfo->w32_id_name));
4610 f->explicit_name = false;
4612 else
4614 fset_name (f, name);
4615 f->explicit_name = true;
4616 /* Use the frame's title when getting resources for this frame. */
4617 specbind (Qx_resource_name, name);
4620 if (uniscribe_available)
4621 register_font_driver (&uniscribe_font_driver, f);
4622 register_font_driver (&w32font_driver, f);
4624 x_default_parameter (f, parameters, Qfont_backend, Qnil,
4625 "fontBackend", "FontBackend", RES_TYPE_STRING);
4627 /* Extract the window parameters from the supplied values
4628 that are needed to determine window geometry. */
4629 x_default_font_parameter (f, parameters);
4631 x_default_parameter (f, parameters, Qborder_width, make_number (2),
4632 "borderWidth", "BorderWidth", RES_TYPE_NUMBER);
4634 /* We recognize either internalBorderWidth or internalBorder
4635 (which is what xterm calls it). */
4636 if (NILP (Fassq (Qinternal_border_width, parameters)))
4638 Lisp_Object value;
4640 value = x_get_arg (dpyinfo, parameters, Qinternal_border_width,
4641 "internalBorder", "InternalBorder", RES_TYPE_NUMBER);
4642 if (! EQ (value, Qunbound))
4643 parameters = Fcons (Fcons (Qinternal_border_width, value),
4644 parameters);
4646 /* Default internalBorderWidth to 0 on Windows to match other programs. */
4647 x_default_parameter (f, parameters, Qinternal_border_width, make_number (0),
4648 "internalBorderWidth", "InternalBorder", RES_TYPE_NUMBER);
4649 x_default_parameter (f, parameters, Qright_divider_width, make_number (0),
4650 NULL, NULL, RES_TYPE_NUMBER);
4651 x_default_parameter (f, parameters, Qbottom_divider_width, make_number (0),
4652 NULL, NULL, RES_TYPE_NUMBER);
4653 x_default_parameter (f, parameters, Qvertical_scroll_bars, Qright,
4654 "verticalScrollBars", "ScrollBars", RES_TYPE_SYMBOL);
4655 x_default_parameter (f, parameters, Qhorizontal_scroll_bars, Qnil,
4656 "horizontalScrollBars", "ScrollBars", RES_TYPE_SYMBOL);
4658 /* Also do the stuff which must be set before the window exists. */
4659 x_default_parameter (f, parameters, Qforeground_color, build_string ("black"),
4660 "foreground", "Foreground", RES_TYPE_STRING);
4661 x_default_parameter (f, parameters, Qbackground_color, build_string ("white"),
4662 "background", "Background", RES_TYPE_STRING);
4663 x_default_parameter (f, parameters, Qmouse_color, build_string ("black"),
4664 "pointerColor", "Foreground", RES_TYPE_STRING);
4665 x_default_parameter (f, parameters, Qborder_color, build_string ("black"),
4666 "borderColor", "BorderColor", RES_TYPE_STRING);
4667 x_default_parameter (f, parameters, Qscreen_gamma, Qnil,
4668 "screenGamma", "ScreenGamma", RES_TYPE_FLOAT);
4669 x_default_parameter (f, parameters, Qline_spacing, Qnil,
4670 "lineSpacing", "LineSpacing", RES_TYPE_NUMBER);
4671 x_default_parameter (f, parameters, Qleft_fringe, Qnil,
4672 "leftFringe", "LeftFringe", RES_TYPE_NUMBER);
4673 x_default_parameter (f, parameters, Qright_fringe, Qnil,
4674 "rightFringe", "RightFringe", RES_TYPE_NUMBER);
4675 /* Process alpha here (Bug#16619). */
4676 x_default_parameter (f, parameters, Qalpha, Qnil,
4677 "alpha", "Alpha", RES_TYPE_NUMBER);
4679 /* Init faces first since we need the frame's column width/line
4680 height in various occasions. */
4681 init_frame_faces (f);
4683 /* The following call of change_frame_size is needed since otherwise
4684 x_set_tool_bar_lines will already work with the character sizes
4685 installed by init_frame_faces while the frame's pixel size is
4686 still calculated from a character size of 1 and we subsequently
4687 hit the (height >= 0) assertion in window_box_height.
4689 The non-pixelwise code apparently worked around this because it
4690 had one frame line vs one toolbar line which left us with a zero
4691 root window height which was obviously wrong as well ... */
4692 adjust_frame_size (f, FRAME_COLS (f) * FRAME_COLUMN_WIDTH (f),
4693 FRAME_LINES (f) * FRAME_LINE_HEIGHT (f), 5, true,
4694 Qx_create_frame_1);
4696 /* The X resources controlling the menu-bar and tool-bar are
4697 processed specially at startup, and reflected in the mode
4698 variables; ignore them here. */
4699 x_default_parameter (f, parameters, Qmenu_bar_lines,
4700 NILP (Vmenu_bar_mode)
4701 ? make_number (0) : make_number (1),
4702 NULL, NULL, RES_TYPE_NUMBER);
4703 x_default_parameter (f, parameters, Qtool_bar_lines,
4704 NILP (Vtool_bar_mode)
4705 ? make_number (0) : make_number (1),
4706 NULL, NULL, RES_TYPE_NUMBER);
4708 x_default_parameter (f, parameters, Qbuffer_predicate, Qnil,
4709 "bufferPredicate", "BufferPredicate", RES_TYPE_SYMBOL);
4710 x_default_parameter (f, parameters, Qtitle, Qnil,
4711 "title", "Title", RES_TYPE_STRING);
4713 f->output_data.w32->dwStyle = WS_OVERLAPPEDWINDOW;
4714 f->output_data.w32->parent_desc = FRAME_DISPLAY_INFO (f)->root_window;
4716 f->output_data.w32->text_cursor = w32_load_cursor (IDC_IBEAM);
4717 f->output_data.w32->nontext_cursor = w32_load_cursor (IDC_ARROW);
4718 f->output_data.w32->modeline_cursor = w32_load_cursor (IDC_ARROW);
4719 f->output_data.w32->hand_cursor = w32_load_cursor (IDC_HAND);
4720 f->output_data.w32->hourglass_cursor = w32_load_cursor (IDC_WAIT);
4721 f->output_data.w32->horizontal_drag_cursor = w32_load_cursor (IDC_SIZEWE);
4722 f->output_data.w32->vertical_drag_cursor = w32_load_cursor (IDC_SIZENS);
4724 f->output_data.w32->current_cursor = f->output_data.w32->nontext_cursor;
4726 window_prompting = x_figure_window_size (f, parameters, true);
4728 tem = x_get_arg (dpyinfo, parameters, Qunsplittable, 0, 0, RES_TYPE_BOOLEAN);
4729 f->no_split = minibuffer_only || EQ (tem, Qt);
4731 w32_window (f, window_prompting, minibuffer_only);
4732 x_icon (f, parameters);
4734 x_make_gc (f);
4736 /* Now consider the frame official. */
4737 f->terminal->reference_count++;
4738 FRAME_DISPLAY_INFO (f)->reference_count++;
4739 Vframe_list = Fcons (frame, Vframe_list);
4741 /* We need to do this after creating the window, so that the
4742 icon-creation functions can say whose icon they're describing. */
4743 x_default_parameter (f, parameters, Qicon_type, Qnil,
4744 "bitmapIcon", "BitmapIcon", RES_TYPE_SYMBOL);
4746 x_default_parameter (f, parameters, Qauto_raise, Qnil,
4747 "autoRaise", "AutoRaiseLower", RES_TYPE_BOOLEAN);
4748 x_default_parameter (f, parameters, Qauto_lower, Qnil,
4749 "autoLower", "AutoRaiseLower", RES_TYPE_BOOLEAN);
4750 x_default_parameter (f, parameters, Qcursor_type, Qbox,
4751 "cursorType", "CursorType", RES_TYPE_SYMBOL);
4752 x_default_parameter (f, parameters, Qscroll_bar_width, Qnil,
4753 "scrollBarWidth", "ScrollBarWidth", RES_TYPE_NUMBER);
4754 x_default_parameter (f, parameters, Qscroll_bar_height, Qnil,
4755 "scrollBarHeight", "ScrollBarHeight", RES_TYPE_NUMBER);
4757 /* Allow x_set_window_size, now. */
4758 f->can_x_set_window_size = true;
4760 adjust_frame_size (f, FRAME_TEXT_WIDTH (f), FRAME_TEXT_HEIGHT (f), 0, true,
4761 Qx_create_frame_2);
4763 /* Tell the server what size and position, etc, we want, and how
4764 badly we want them. This should be done after we have the menu
4765 bar so that its size can be taken into account. */
4766 block_input ();
4767 x_wm_set_size_hint (f, window_prompting, false);
4768 unblock_input ();
4770 /* Process fullscreen parameter here in the hope that normalizing a
4771 fullheight/fullwidth frame will produce the size set by the last
4772 adjust_frame_size call. */
4773 x_default_parameter (f, parameters, Qfullscreen, Qnil,
4774 "fullscreen", "Fullscreen", RES_TYPE_SYMBOL);
4776 /* Make the window appear on the frame and enable display, unless
4777 the caller says not to. However, with explicit parent, Emacs
4778 cannot control visibility, so don't try. */
4779 if (! f->output_data.w32->explicit_parent)
4781 Lisp_Object visibility;
4783 visibility = x_get_arg (dpyinfo, parameters, Qvisibility, 0, 0, RES_TYPE_SYMBOL);
4784 if (EQ (visibility, Qunbound))
4785 visibility = Qt;
4787 if (EQ (visibility, Qicon))
4788 x_iconify_frame (f);
4789 else if (! NILP (visibility))
4790 x_make_frame_visible (f);
4791 else
4792 /* Must have been Qnil. */
4796 /* Initialize `default-minibuffer-frame' in case this is the first
4797 frame on this terminal. */
4798 if (FRAME_HAS_MINIBUF_P (f)
4799 && (!FRAMEP (KVAR (kb, Vdefault_minibuffer_frame))
4800 || !FRAME_LIVE_P (XFRAME (KVAR (kb, Vdefault_minibuffer_frame)))))
4801 kset_default_minibuffer_frame (kb, frame);
4803 /* All remaining specified parameters, which have not been "used"
4804 by x_get_arg and friends, now go in the misc. alist of the frame. */
4805 for (tem = parameters; CONSP (tem); tem = XCDR (tem))
4806 if (CONSP (XCAR (tem)) && !NILP (XCAR (XCAR (tem))))
4807 fset_param_alist (f, Fcons (XCAR (tem), f->param_alist));
4809 UNGCPRO;
4811 /* Make sure windows on this frame appear in calls to next-window
4812 and similar functions. */
4813 Vwindow_list = Qnil;
4815 return unbind_to (count, frame);
4818 /* FRAME is used only to get a handle on the X display. We don't pass the
4819 display info directly because we're called from frame.c, which doesn't
4820 know about that structure. */
4821 Lisp_Object
4822 x_get_focus_frame (struct frame *frame)
4824 struct w32_display_info *dpyinfo = FRAME_DISPLAY_INFO (frame);
4825 Lisp_Object xfocus;
4826 if (! dpyinfo->w32_focus_frame)
4827 return Qnil;
4829 XSETFRAME (xfocus, dpyinfo->w32_focus_frame);
4830 return xfocus;
4833 DEFUN ("xw-color-defined-p", Fxw_color_defined_p, Sxw_color_defined_p, 1, 2, 0,
4834 doc: /* Internal function called by `color-defined-p', which see.
4835 \(Note that the Nextstep version of this function ignores FRAME.) */)
4836 (Lisp_Object color, Lisp_Object frame)
4838 XColor foo;
4839 struct frame *f = decode_window_system_frame (frame);
4841 CHECK_STRING (color);
4843 if (w32_defined_color (f, SDATA (color), &foo, false))
4844 return Qt;
4845 else
4846 return Qnil;
4849 DEFUN ("xw-color-values", Fxw_color_values, Sxw_color_values, 1, 2, 0,
4850 doc: /* Internal function called by `color-values', which see. */)
4851 (Lisp_Object color, Lisp_Object frame)
4853 XColor foo;
4854 struct frame *f = decode_window_system_frame (frame);
4856 CHECK_STRING (color);
4858 if (w32_defined_color (f, SDATA (color), &foo, false))
4859 return list3i ((GetRValue (foo.pixel) << 8) | GetRValue (foo.pixel),
4860 (GetGValue (foo.pixel) << 8) | GetGValue (foo.pixel),
4861 (GetBValue (foo.pixel) << 8) | GetBValue (foo.pixel));
4862 else
4863 return Qnil;
4866 DEFUN ("xw-display-color-p", Fxw_display_color_p, Sxw_display_color_p, 0, 1, 0,
4867 doc: /* Internal function called by `display-color-p', which see. */)
4868 (Lisp_Object display)
4870 struct w32_display_info *dpyinfo = check_x_display_info (display);
4872 if ((dpyinfo->n_planes * dpyinfo->n_cbits) <= 2)
4873 return Qnil;
4875 return Qt;
4878 DEFUN ("x-display-grayscale-p", Fx_display_grayscale_p,
4879 Sx_display_grayscale_p, 0, 1, 0,
4880 doc: /* Return t if DISPLAY supports shades of gray.
4881 Note that color displays do support shades of gray.
4882 The optional argument DISPLAY specifies which display to ask about.
4883 DISPLAY should be either a frame or a display name (a string).
4884 If omitted or nil, that stands for the selected frame's display. */)
4885 (Lisp_Object display)
4887 struct w32_display_info *dpyinfo = check_x_display_info (display);
4889 if ((dpyinfo->n_planes * dpyinfo->n_cbits) <= 1)
4890 return Qnil;
4892 return Qt;
4895 DEFUN ("x-display-pixel-width", Fx_display_pixel_width,
4896 Sx_display_pixel_width, 0, 1, 0,
4897 doc: /* Return the width in pixels of DISPLAY.
4898 The optional argument DISPLAY specifies which display to ask about.
4899 DISPLAY should be either a frame or a display name (a string).
4900 If omitted or nil, that stands for the selected frame's display.
4902 On \"multi-monitor\" setups this refers to the pixel width for all
4903 physical monitors associated with DISPLAY. To get information for
4904 each physical monitor, use `display-monitor-attributes-list'. */)
4905 (Lisp_Object display)
4907 struct w32_display_info *dpyinfo = check_x_display_info (display);
4909 return make_number (x_display_pixel_width (dpyinfo));
4912 DEFUN ("x-display-pixel-height", Fx_display_pixel_height,
4913 Sx_display_pixel_height, 0, 1, 0,
4914 doc: /* Return the height in pixels of DISPLAY.
4915 The optional argument DISPLAY specifies which display to ask about.
4916 DISPLAY should be either a frame or a display name (a string).
4917 If omitted or nil, that stands for the selected frame's display.
4919 On \"multi-monitor\" setups this refers to the pixel height for all
4920 physical monitors associated with DISPLAY. To get information for
4921 each physical monitor, use `display-monitor-attributes-list'. */)
4922 (Lisp_Object display)
4924 struct w32_display_info *dpyinfo = check_x_display_info (display);
4926 return make_number (x_display_pixel_height (dpyinfo));
4929 DEFUN ("x-display-planes", Fx_display_planes, Sx_display_planes,
4930 0, 1, 0,
4931 doc: /* Return the number of bitplanes of DISPLAY.
4932 The optional argument DISPLAY specifies which display to ask about.
4933 DISPLAY should be either a frame or a display name (a string).
4934 If omitted or nil, that stands for the selected frame's display. */)
4935 (Lisp_Object display)
4937 struct w32_display_info *dpyinfo = check_x_display_info (display);
4939 return make_number (dpyinfo->n_planes * dpyinfo->n_cbits);
4942 DEFUN ("x-display-color-cells", Fx_display_color_cells, Sx_display_color_cells,
4943 0, 1, 0,
4944 doc: /* Return the number of color cells of DISPLAY.
4945 The optional argument DISPLAY specifies which display to ask about.
4946 DISPLAY should be either a frame or a display name (a string).
4947 If omitted or nil, that stands for the selected frame's display. */)
4948 (Lisp_Object display)
4950 struct w32_display_info *dpyinfo = check_x_display_info (display);
4951 int cap;
4953 /* Don't use NCOLORS: it returns incorrect results under remote
4954 * desktop. We force 24+ bit depths to 24-bit, both to prevent an
4955 * overflow and because probably is more meaningful on Windows
4956 * anyway. */
4958 cap = 1 << min (dpyinfo->n_planes * dpyinfo->n_cbits, 24);
4959 return make_number (cap);
4962 DEFUN ("x-server-max-request-size", Fx_server_max_request_size,
4963 Sx_server_max_request_size,
4964 0, 1, 0,
4965 doc: /* Return the maximum request size of the server of DISPLAY.
4966 The optional argument DISPLAY specifies which display to ask about.
4967 DISPLAY should be either a frame or a display name (a string).
4968 If omitted or nil, that stands for the selected frame's display. */)
4969 (Lisp_Object display)
4971 return make_number (1);
4974 DEFUN ("x-server-vendor", Fx_server_vendor, Sx_server_vendor, 0, 1, 0,
4975 doc: /* Return the "vendor ID" string of the GUI software on TERMINAL.
4977 \(Labeling every distributor as a "vendor" embodies the false assumption
4978 that operating systems cannot be developed and distributed noncommercially.)
4980 For GNU and Unix systems, this queries the X server software; for
4981 MS-Windows, this queries the OS.
4983 The optional argument TERMINAL specifies which display to ask about.
4984 TERMINAL should be a terminal object, a frame or a display name (a string).
4985 If omitted or nil, that stands for the selected frame's display. */)
4986 (Lisp_Object terminal)
4988 return build_string ("Microsoft Corp.");
4991 DEFUN ("x-server-version", Fx_server_version, Sx_server_version, 0, 1, 0,
4992 doc: /* Return the version numbers of the GUI software on TERMINAL.
4993 The value is a list of three integers specifying the version of the GUI
4994 software in use.
4996 For GNU and Unix system, the first 2 numbers are the version of the X
4997 Protocol used on TERMINAL and the 3rd number is the distributor-specific
4998 release number. For MS-Windows, the 3 numbers report the version and
4999 the build number of the OS.
5001 See also the function `x-server-vendor'.
5003 The optional argument TERMINAL specifies which display to ask about.
5004 TERMINAL should be a terminal object, a frame or a display name (a string).
5005 If omitted or nil, that stands for the selected frame's display. */)
5006 (Lisp_Object terminal)
5008 return list3i (w32_major_version, w32_minor_version, w32_build_number);
5011 DEFUN ("x-display-screens", Fx_display_screens, Sx_display_screens, 0, 1, 0,
5012 doc: /* Return the number of screens on the server of DISPLAY.
5013 The optional argument DISPLAY specifies which display to ask about.
5014 DISPLAY should be either a frame or a display name (a string).
5015 If omitted or nil, that stands for the selected frame's display. */)
5016 (Lisp_Object display)
5018 return make_number (1);
5021 DEFUN ("x-display-mm-height", Fx_display_mm_height,
5022 Sx_display_mm_height, 0, 1, 0,
5023 doc: /* Return the height in millimeters of DISPLAY.
5024 The optional argument DISPLAY specifies which display to ask about.
5025 DISPLAY should be either a frame or a display name (a string).
5026 If omitted or nil, that stands for the selected frame's display.
5028 On \"multi-monitor\" setups this refers to the height in millimeters for
5029 all physical monitors associated with DISPLAY. To get information
5030 for each physical monitor, use `display-monitor-attributes-list'. */)
5031 (Lisp_Object display)
5033 struct w32_display_info *dpyinfo = check_x_display_info (display);
5034 HDC hdc;
5035 double mm_per_pixel;
5037 hdc = GetDC (NULL);
5038 mm_per_pixel = ((double) GetDeviceCaps (hdc, VERTSIZE)
5039 / GetDeviceCaps (hdc, VERTRES));
5040 ReleaseDC (NULL, hdc);
5042 return make_number (x_display_pixel_height (dpyinfo) * mm_per_pixel + 0.5);
5045 DEFUN ("x-display-mm-width", Fx_display_mm_width, Sx_display_mm_width, 0, 1, 0,
5046 doc: /* Return the width in millimeters of DISPLAY.
5047 The optional argument DISPLAY specifies which display to ask about.
5048 DISPLAY should be either a frame or a display name (a string).
5049 If omitted or nil, that stands for the selected frame's display.
5051 On \"multi-monitor\" setups this refers to the width in millimeters for
5052 all physical monitors associated with TERMINAL. To get information
5053 for each physical monitor, use `display-monitor-attributes-list'. */)
5054 (Lisp_Object display)
5056 struct w32_display_info *dpyinfo = check_x_display_info (display);
5057 HDC hdc;
5058 double mm_per_pixel;
5060 hdc = GetDC (NULL);
5061 mm_per_pixel = ((double) GetDeviceCaps (hdc, HORZSIZE)
5062 / GetDeviceCaps (hdc, HORZRES));
5063 ReleaseDC (NULL, hdc);
5065 return make_number (x_display_pixel_width (dpyinfo) * mm_per_pixel + 0.5);
5068 DEFUN ("x-display-backing-store", Fx_display_backing_store,
5069 Sx_display_backing_store, 0, 1, 0,
5070 doc: /* Return an indication of whether DISPLAY does backing store.
5071 The value may be `always', `when-mapped', or `not-useful'.
5072 The optional argument DISPLAY specifies which display to ask about.
5073 DISPLAY should be either a frame or a display name (a string).
5074 If omitted or nil, that stands for the selected frame's display. */)
5075 (Lisp_Object display)
5077 return intern ("not-useful");
5080 DEFUN ("x-display-visual-class", Fx_display_visual_class,
5081 Sx_display_visual_class, 0, 1, 0,
5082 doc: /* Return the visual class of DISPLAY.
5083 The value is one of the symbols `static-gray', `gray-scale',
5084 `static-color', `pseudo-color', `true-color', or `direct-color'.
5086 The optional argument DISPLAY specifies which display to ask about.
5087 DISPLAY should be either a frame or a display name (a string).
5088 If omitted or nil, that stands for the selected frame's display. */)
5089 (Lisp_Object display)
5091 struct w32_display_info *dpyinfo = check_x_display_info (display);
5092 Lisp_Object result = Qnil;
5094 if (dpyinfo->has_palette)
5095 result = intern ("pseudo-color");
5096 else if (dpyinfo->n_planes * dpyinfo->n_cbits == 1)
5097 result = intern ("static-grey");
5098 else if (dpyinfo->n_planes * dpyinfo->n_cbits == 4)
5099 result = intern ("static-color");
5100 else if (dpyinfo->n_planes * dpyinfo->n_cbits > 8)
5101 result = intern ("true-color");
5103 return result;
5106 DEFUN ("x-display-save-under", Fx_display_save_under,
5107 Sx_display_save_under, 0, 1, 0,
5108 doc: /* Return t if DISPLAY supports the save-under feature.
5109 The optional argument DISPLAY specifies which display to ask about.
5110 DISPLAY should be either a frame or a display name (a string).
5111 If omitted or nil, that stands for the selected frame's display. */)
5112 (Lisp_Object display)
5114 return Qnil;
5117 static BOOL CALLBACK ALIGN_STACK
5118 w32_monitor_enum (HMONITOR monitor, HDC hdc, RECT *rcMonitor, LPARAM dwData)
5120 Lisp_Object *monitor_list = (Lisp_Object *) dwData;
5122 *monitor_list = Fcons (make_save_ptr (monitor), *monitor_list);
5124 return TRUE;
5127 static Lisp_Object
5128 w32_display_monitor_attributes_list (void)
5130 Lisp_Object attributes_list = Qnil, primary_monitor_attributes = Qnil;
5131 Lisp_Object monitor_list = Qnil, monitor_frames, rest, frame;
5132 int i, n_monitors;
5133 HMONITOR *monitors;
5134 struct gcpro gcpro1, gcpro2, gcpro3;
5136 if (!(enum_display_monitors_fn && get_monitor_info_fn
5137 && monitor_from_window_fn))
5138 return Qnil;
5140 if (!enum_display_monitors_fn (NULL, NULL, w32_monitor_enum,
5141 (LPARAM) &monitor_list)
5142 || NILP (monitor_list))
5143 return Qnil;
5145 n_monitors = 0;
5146 for (rest = monitor_list; CONSP (rest); rest = XCDR (rest))
5147 n_monitors++;
5149 monitors = xmalloc (n_monitors * sizeof (*monitors));
5150 for (i = 0; i < n_monitors; i++)
5152 monitors[i] = XSAVE_POINTER (XCAR (monitor_list), 0);
5153 monitor_list = XCDR (monitor_list);
5156 monitor_frames = Fmake_vector (make_number (n_monitors), Qnil);
5157 FOR_EACH_FRAME (rest, frame)
5159 struct frame *f = XFRAME (frame);
5161 if (FRAME_W32_P (f) && !EQ (frame, tip_frame))
5163 HMONITOR monitor =
5164 monitor_from_window_fn (FRAME_W32_WINDOW (f),
5165 MONITOR_DEFAULT_TO_NEAREST);
5167 for (i = 0; i < n_monitors; i++)
5168 if (monitors[i] == monitor)
5169 break;
5171 if (i < n_monitors)
5172 ASET (monitor_frames, i, Fcons (frame, AREF (monitor_frames, i)));
5176 GCPRO3 (attributes_list, primary_monitor_attributes, monitor_frames);
5178 for (i = 0; i < n_monitors; i++)
5180 Lisp_Object geometry, workarea, name, attributes = Qnil;
5181 HDC hdc;
5182 int width_mm, height_mm;
5183 struct MONITOR_INFO_EX mi;
5185 mi.cbSize = sizeof (mi);
5186 if (!get_monitor_info_fn (monitors[i], (struct MONITOR_INFO *) &mi))
5187 continue;
5189 hdc = CreateDCA ("DISPLAY", mi.szDevice, NULL, NULL);
5190 if (hdc == NULL)
5191 continue;
5192 width_mm = GetDeviceCaps (hdc, HORZSIZE);
5193 height_mm = GetDeviceCaps (hdc, VERTSIZE);
5194 DeleteDC (hdc);
5196 attributes = Fcons (Fcons (Qframes, AREF (monitor_frames, i)),
5197 attributes);
5199 name = DECODE_SYSTEM (build_unibyte_string (mi.szDevice));
5201 attributes = Fcons (Fcons (Qname, name), attributes);
5203 attributes = Fcons (Fcons (Qmm_size, list2i (width_mm, height_mm)),
5204 attributes);
5206 workarea = list4i (mi.rcWork.left, mi.rcWork.top,
5207 mi.rcWork.right - mi.rcWork.left,
5208 mi.rcWork.bottom - mi.rcWork.top);
5209 attributes = Fcons (Fcons (Qworkarea, workarea), attributes);
5211 geometry = list4i (mi.rcMonitor.left, mi.rcMonitor.top,
5212 mi.rcMonitor.right - mi.rcMonitor.left,
5213 mi.rcMonitor.bottom - mi.rcMonitor.top);
5214 attributes = Fcons (Fcons (Qgeometry, geometry), attributes);
5216 if (mi.dwFlags & MONITORINFOF_PRIMARY)
5217 primary_monitor_attributes = attributes;
5218 else
5219 attributes_list = Fcons (attributes, attributes_list);
5222 if (!NILP (primary_monitor_attributes))
5223 attributes_list = Fcons (primary_monitor_attributes, attributes_list);
5225 UNGCPRO;
5227 xfree (monitors);
5229 return attributes_list;
5232 static Lisp_Object
5233 w32_display_monitor_attributes_list_fallback (struct w32_display_info *dpyinfo)
5235 Lisp_Object geometry, workarea, frames, rest, frame, attributes = Qnil;
5236 HDC hdc;
5237 double mm_per_pixel;
5238 int pixel_width, pixel_height, width_mm, height_mm;
5239 RECT workarea_rect;
5241 /* Fallback: treat (possibly) multiple physical monitors as if they
5242 formed a single monitor as a whole. This should provide a
5243 consistent result at least on single monitor environments. */
5244 attributes = Fcons (Fcons (Qname, build_string ("combined screen")),
5245 attributes);
5247 frames = Qnil;
5248 FOR_EACH_FRAME (rest, frame)
5250 struct frame *f = XFRAME (frame);
5252 if (FRAME_W32_P (f) && !EQ (frame, tip_frame))
5253 frames = Fcons (frame, frames);
5255 attributes = Fcons (Fcons (Qframes, frames), attributes);
5257 pixel_width = x_display_pixel_width (dpyinfo);
5258 pixel_height = x_display_pixel_height (dpyinfo);
5260 hdc = GetDC (NULL);
5261 mm_per_pixel = ((double) GetDeviceCaps (hdc, HORZSIZE)
5262 / GetDeviceCaps (hdc, HORZRES));
5263 width_mm = pixel_width * mm_per_pixel + 0.5;
5264 mm_per_pixel = ((double) GetDeviceCaps (hdc, VERTSIZE)
5265 / GetDeviceCaps (hdc, VERTRES));
5266 height_mm = pixel_height * mm_per_pixel + 0.5;
5267 ReleaseDC (NULL, hdc);
5268 attributes = Fcons (Fcons (Qmm_size, list2i (width_mm, height_mm)),
5269 attributes);
5271 /* GetSystemMetrics below may return 0 for Windows 95 or NT 4.0, but
5272 we don't care. */
5273 geometry = list4i (GetSystemMetrics (SM_XVIRTUALSCREEN),
5274 GetSystemMetrics (SM_YVIRTUALSCREEN),
5275 pixel_width, pixel_height);
5276 if (SystemParametersInfo (SPI_GETWORKAREA, 0, &workarea_rect, 0))
5277 workarea = list4i (workarea_rect.left, workarea_rect.top,
5278 workarea_rect.right - workarea_rect.left,
5279 workarea_rect.bottom - workarea_rect.top);
5280 else
5281 workarea = geometry;
5282 attributes = Fcons (Fcons (Qworkarea, workarea), attributes);
5284 attributes = Fcons (Fcons (Qgeometry, geometry), attributes);
5286 return list1 (attributes);
5289 DEFUN ("w32-display-monitor-attributes-list", Fw32_display_monitor_attributes_list,
5290 Sw32_display_monitor_attributes_list,
5291 0, 1, 0,
5292 doc: /* Return a list of physical monitor attributes on the W32 display DISPLAY.
5294 The optional argument DISPLAY specifies which display to ask about.
5295 DISPLAY should be either a frame or a display name (a string).
5296 If omitted or nil, that stands for the selected frame's display.
5298 Internal use only, use `display-monitor-attributes-list' instead. */)
5299 (Lisp_Object display)
5301 struct w32_display_info *dpyinfo = check_x_display_info (display);
5302 Lisp_Object attributes_list;
5304 block_input ();
5305 attributes_list = w32_display_monitor_attributes_list ();
5306 if (NILP (attributes_list))
5307 attributes_list = w32_display_monitor_attributes_list_fallback (dpyinfo);
5308 unblock_input ();
5310 return attributes_list;
5313 DEFUN ("set-message-beep", Fset_message_beep, Sset_message_beep, 1, 1, 0,
5314 doc: /* Set the sound generated when the bell is rung.
5315 SOUND is 'asterisk, 'exclamation, 'hand, 'question, 'ok, or 'silent
5316 to use the corresponding system sound for the bell. The 'silent sound
5317 prevents Emacs from making any sound at all.
5318 SOUND is nil to use the normal beep. */)
5319 (Lisp_Object sound)
5321 CHECK_SYMBOL (sound);
5323 if (NILP (sound))
5324 sound_type = 0xFFFFFFFF;
5325 else if (EQ (sound, intern ("asterisk")))
5326 sound_type = MB_ICONASTERISK;
5327 else if (EQ (sound, intern ("exclamation")))
5328 sound_type = MB_ICONEXCLAMATION;
5329 else if (EQ (sound, intern ("hand")))
5330 sound_type = MB_ICONHAND;
5331 else if (EQ (sound, intern ("question")))
5332 sound_type = MB_ICONQUESTION;
5333 else if (EQ (sound, intern ("ok")))
5334 sound_type = MB_OK;
5335 else if (EQ (sound, intern ("silent")))
5336 sound_type = MB_EMACS_SILENT;
5337 else
5338 sound_type = 0xFFFFFFFF;
5340 return sound;
5344 x_screen_planes (register struct frame *f)
5346 return FRAME_DISPLAY_INFO (f)->n_planes;
5349 /* Return the display structure for the display named NAME.
5350 Open a new connection if necessary. */
5352 struct w32_display_info *
5353 x_display_info_for_name (Lisp_Object name)
5355 struct w32_display_info *dpyinfo;
5357 CHECK_STRING (name);
5359 for (dpyinfo = &one_w32_display_info; dpyinfo; dpyinfo = dpyinfo->next)
5360 if (!NILP (Fstring_equal (XCAR (dpyinfo->name_list_element), name)))
5361 return dpyinfo;
5363 /* Use this general default value to start with. */
5364 Vx_resource_name = Vinvocation_name;
5366 validate_x_resource_name ();
5368 dpyinfo = w32_term_init (name, (unsigned char *)0,
5369 SSDATA (Vx_resource_name));
5371 if (dpyinfo == 0)
5372 error ("Cannot connect to server %s", SDATA (name));
5374 XSETFASTINT (Vwindow_system_version, w32_major_version);
5376 return dpyinfo;
5379 DEFUN ("x-open-connection", Fx_open_connection, Sx_open_connection,
5380 1, 3, 0, doc: /* Open a connection to a display server.
5381 DISPLAY is the name of the display to connect to.
5382 Optional second arg XRM-STRING is a string of resources in xrdb format.
5383 If the optional third arg MUST-SUCCEED is non-nil,
5384 terminate Emacs if we can't open the connection.
5385 \(In the Nextstep version, the last two arguments are currently ignored.) */)
5386 (Lisp_Object display, Lisp_Object xrm_string, Lisp_Object must_succeed)
5388 unsigned char *xrm_option;
5389 struct w32_display_info *dpyinfo;
5391 CHECK_STRING (display);
5393 /* Signal an error in order to encourage correct use from callers.
5394 * If we ever support multiple window systems in the same Emacs,
5395 * we'll need callers to be precise about what window system they
5396 * want. */
5398 if (strcmp (SSDATA (display), "w32") != 0)
5399 error ("The name of the display in this Emacs must be \"w32\"");
5401 /* If initialization has already been done, return now to avoid
5402 overwriting critical parts of one_w32_display_info. */
5403 if (window_system_available (NULL))
5404 return Qnil;
5406 if (! NILP (xrm_string))
5407 CHECK_STRING (xrm_string);
5409 /* Allow color mapping to be defined externally; first look in user's
5410 HOME directory, then in Emacs etc dir for a file called rgb.txt. */
5412 Lisp_Object color_file;
5413 struct gcpro gcpro1;
5415 color_file = build_string ("~/rgb.txt");
5417 GCPRO1 (color_file);
5419 if (NILP (Ffile_readable_p (color_file)))
5420 color_file =
5421 Fexpand_file_name (build_string ("rgb.txt"),
5422 Fsymbol_value (intern ("data-directory")));
5424 Vw32_color_map = Fx_load_color_file (color_file);
5426 UNGCPRO;
5428 if (NILP (Vw32_color_map))
5429 Vw32_color_map = w32_default_color_map ();
5431 /* Merge in system logical colors. */
5432 add_system_logical_colors_to_map (&Vw32_color_map);
5434 if (! NILP (xrm_string))
5435 xrm_option = SDATA (xrm_string);
5436 else
5437 xrm_option = (unsigned char *) 0;
5439 /* Use this general default value to start with. */
5440 /* First remove .exe suffix from invocation-name - it looks ugly. */
5442 char basename[ MAX_PATH ], *str;
5444 lispstpcpy (basename, Vinvocation_name);
5445 str = strrchr (basename, '.');
5446 if (str) *str = 0;
5447 Vinvocation_name = build_string (basename);
5449 Vx_resource_name = Vinvocation_name;
5451 validate_x_resource_name ();
5453 /* This is what opens the connection and sets x_current_display.
5454 This also initializes many symbols, such as those used for input. */
5455 dpyinfo = w32_term_init (display, xrm_option,
5456 SSDATA (Vx_resource_name));
5458 if (dpyinfo == 0)
5460 if (!NILP (must_succeed))
5461 fatal ("Cannot connect to server %s.\n",
5462 SDATA (display));
5463 else
5464 error ("Cannot connect to server %s", SDATA (display));
5467 XSETFASTINT (Vwindow_system_version, w32_major_version);
5468 return Qnil;
5471 DEFUN ("x-close-connection", Fx_close_connection,
5472 Sx_close_connection, 1, 1, 0,
5473 doc: /* Close the connection to DISPLAY's server.
5474 For DISPLAY, specify either a frame or a display name (a string).
5475 If DISPLAY is nil, that stands for the selected frame's display. */)
5476 (Lisp_Object display)
5478 struct w32_display_info *dpyinfo = check_x_display_info (display);
5480 if (dpyinfo->reference_count > 0)
5481 error ("Display still has frames on it");
5483 block_input ();
5484 x_destroy_all_bitmaps (dpyinfo);
5486 x_delete_display (dpyinfo);
5487 unblock_input ();
5489 return Qnil;
5492 DEFUN ("x-display-list", Fx_display_list, Sx_display_list, 0, 0, 0,
5493 doc: /* Return the list of display names that Emacs has connections to. */)
5494 (void)
5496 Lisp_Object result = Qnil;
5497 struct w32_display_info *wdi;
5499 for (wdi = x_display_list; wdi; wdi = wdi->next)
5500 result = Fcons (XCAR (wdi->name_list_element), result);
5502 return result;
5505 DEFUN ("x-synchronize", Fx_synchronize, Sx_synchronize, 1, 2, 0,
5506 doc: /* If ON is non-nil, report X errors as soon as the erring request is made.
5507 This function only has an effect on X Windows. With MS Windows, it is
5508 defined but does nothing.
5510 If ON is nil, allow buffering of requests.
5511 Turning on synchronization prohibits the Xlib routines from buffering
5512 requests and seriously degrades performance, but makes debugging much
5513 easier.
5514 The optional second argument TERMINAL specifies which display to act on.
5515 TERMINAL should be a terminal object, a frame or a display name (a string).
5516 If TERMINAL is omitted or nil, that stands for the selected frame's display. */)
5517 (Lisp_Object on, Lisp_Object display)
5519 return Qnil;
5524 /***********************************************************************
5525 Window properties
5526 ***********************************************************************/
5528 #if 0 /* TODO : port window properties to W32 */
5530 DEFUN ("x-change-window-property", Fx_change_window_property,
5531 Sx_change_window_property, 2, 6, 0,
5532 doc: /* Change window property PROP to VALUE on the X window of FRAME.
5533 PROP must be a string. VALUE may be a string or a list of conses,
5534 numbers and/or strings. If an element in the list is a string, it is
5535 converted to an atom and the value of the Atom is used. If an element
5536 is a cons, it is converted to a 32 bit number where the car is the 16
5537 top bits and the cdr is the lower 16 bits.
5539 FRAME nil or omitted means use the selected frame.
5540 If TYPE is given and non-nil, it is the name of the type of VALUE.
5541 If TYPE is not given or nil, the type is STRING.
5542 FORMAT gives the size in bits of each element if VALUE is a list.
5543 It must be one of 8, 16 or 32.
5544 If VALUE is a string or FORMAT is nil or not given, FORMAT defaults to 8.
5545 If OUTER-P is non-nil, the property is changed for the outer X window of
5546 FRAME. Default is to change on the edit X window. */)
5547 (Lisp_Object prop, Lisp_Object value, Lisp_Object frame,
5548 Lisp_Object type, Lisp_Object format, Lisp_Object outer_p)
5550 struct frame *f = decode_window_system_frame (frame);
5551 Atom prop_atom;
5553 CHECK_STRING (prop);
5554 CHECK_STRING (value);
5556 block_input ();
5557 prop_atom = XInternAtom (FRAME_W32_DISPLAY (f), SDATA (prop), False);
5558 XChangeProperty (FRAME_W32_DISPLAY (f), FRAME_W32_WINDOW (f),
5559 prop_atom, XA_STRING, 8, PropModeReplace,
5560 SDATA (value), SCHARS (value));
5562 /* Make sure the property is set when we return. */
5563 XFlush (FRAME_W32_DISPLAY (f));
5564 unblock_input ();
5566 return value;
5570 DEFUN ("x-delete-window-property", Fx_delete_window_property,
5571 Sx_delete_window_property, 1, 2, 0,
5572 doc: /* Remove window property PROP from X window of FRAME.
5573 FRAME nil or omitted means use the selected frame. Value is PROP. */)
5574 (Lisp_Object prop, Lisp_Object frame)
5576 struct frame *f = decode_window_system_frame (frame);
5577 Atom prop_atom;
5579 CHECK_STRING (prop);
5580 block_input ();
5581 prop_atom = XInternAtom (FRAME_W32_DISPLAY (f), SDATA (prop), False);
5582 XDeleteProperty (FRAME_W32_DISPLAY (f), FRAME_W32_WINDOW (f), prop_atom);
5584 /* Make sure the property is removed when we return. */
5585 XFlush (FRAME_W32_DISPLAY (f));
5586 unblock_input ();
5588 return prop;
5592 DEFUN ("x-window-property", Fx_window_property, Sx_window_property,
5593 1, 6, 0,
5594 doc: /* Value is the value of window property PROP on FRAME.
5595 If FRAME is nil or omitted, use the selected frame.
5597 On X Windows, the following optional arguments are also accepted:
5598 If TYPE is nil or omitted, get the property as a string.
5599 Otherwise TYPE is the name of the atom that denotes the type expected.
5600 If SOURCE is non-nil, get the property on that window instead of from
5601 FRAME. The number 0 denotes the root window.
5602 If DELETE-P is non-nil, delete the property after retrieving it.
5603 If VECTOR-RET-P is non-nil, don't return a string but a vector of values.
5605 On MS Windows, this function accepts but ignores those optional arguments.
5607 Value is nil if FRAME hasn't a property with name PROP or if PROP has
5608 no value of TYPE (always string in the MS Windows case). */)
5609 (Lisp_Object prop, Lisp_Object frame, Lisp_Object type,
5610 Lisp_Object source, Lisp_Object delete_p, Lisp_Object vector_ret_p)
5612 struct frame *f = decode_window_system_frame (frame);
5613 Atom prop_atom;
5614 int rc;
5615 Lisp_Object prop_value = Qnil;
5616 char *tmp_data = NULL;
5617 Atom actual_type;
5618 int actual_format;
5619 unsigned long actual_size, bytes_remaining;
5621 CHECK_STRING (prop);
5622 block_input ();
5623 prop_atom = XInternAtom (FRAME_W32_DISPLAY (f), SDATA (prop), False);
5624 rc = XGetWindowProperty (FRAME_W32_DISPLAY (f), FRAME_W32_WINDOW (f),
5625 prop_atom, 0, 0, False, XA_STRING,
5626 &actual_type, &actual_format, &actual_size,
5627 &bytes_remaining, (unsigned char **) &tmp_data);
5628 if (rc == Success)
5630 int size = bytes_remaining;
5632 XFree (tmp_data);
5633 tmp_data = NULL;
5635 rc = XGetWindowProperty (FRAME_W32_DISPLAY (f), FRAME_W32_WINDOW (f),
5636 prop_atom, 0, bytes_remaining,
5637 False, XA_STRING,
5638 &actual_type, &actual_format,
5639 &actual_size, &bytes_remaining,
5640 (unsigned char **) &tmp_data);
5641 if (rc == Success)
5642 prop_value = make_string (tmp_data, size);
5644 XFree (tmp_data);
5647 unblock_input ();
5649 return prop_value;
5651 return Qnil;
5654 #endif /* TODO */
5656 /***********************************************************************
5657 Tool tips
5658 ***********************************************************************/
5660 static Lisp_Object x_create_tip_frame (struct w32_display_info *,
5661 Lisp_Object, Lisp_Object);
5662 static void compute_tip_xy (struct frame *, Lisp_Object, Lisp_Object,
5663 Lisp_Object, int, int, int *, int *);
5665 /* The frame of a currently visible tooltip. */
5667 Lisp_Object tip_frame;
5669 /* If non-nil, a timer started that hides the last tooltip when it
5670 fires. */
5672 Lisp_Object tip_timer;
5673 Window tip_window;
5675 /* If non-nil, a vector of 3 elements containing the last args
5676 with which x-show-tip was called. See there. */
5678 Lisp_Object last_show_tip_args;
5681 static void
5682 unwind_create_tip_frame (Lisp_Object frame)
5684 Lisp_Object deleted;
5686 deleted = unwind_create_frame (frame);
5687 if (EQ (deleted, Qt))
5689 tip_window = NULL;
5690 tip_frame = Qnil;
5695 /* Create a frame for a tooltip on the display described by DPYINFO.
5696 PARMS is a list of frame parameters. TEXT is the string to
5697 display in the tip frame. Value is the frame.
5699 Note that functions called here, esp. x_default_parameter can
5700 signal errors, for instance when a specified color name is
5701 undefined. We have to make sure that we're in a consistent state
5702 when this happens. */
5704 static Lisp_Object
5705 x_create_tip_frame (struct w32_display_info *dpyinfo,
5706 Lisp_Object parms, Lisp_Object text)
5708 struct frame *f;
5709 Lisp_Object frame;
5710 Lisp_Object name;
5711 long window_prompting = 0;
5712 int width, height;
5713 ptrdiff_t count = SPECPDL_INDEX ();
5714 struct gcpro gcpro1, gcpro2, gcpro3;
5715 struct kboard *kb;
5716 bool face_change_before = face_change;
5717 Lisp_Object buffer;
5718 struct buffer *old_buffer;
5720 /* Use this general default value to start with until we know if
5721 this frame has a specified name. */
5722 Vx_resource_name = Vinvocation_name;
5724 kb = dpyinfo->terminal->kboard;
5726 /* The calls to x_get_arg remove elements from PARMS, so copy it to
5727 avoid destructive changes behind our caller's back. */
5728 parms = Fcopy_alist (parms);
5730 /* Get the name of the frame to use for resource lookup. */
5731 name = x_get_arg (dpyinfo, parms, Qname, "name", "Name", RES_TYPE_STRING);
5732 if (!STRINGP (name)
5733 && !EQ (name, Qunbound)
5734 && !NILP (name))
5735 error ("Invalid frame name--not a string or nil");
5736 Vx_resource_name = name;
5738 frame = Qnil;
5739 GCPRO3 (parms, name, frame);
5740 /* Make a frame without minibuffer nor mode-line. */
5741 f = make_frame (false);
5742 f->wants_modeline = 0;
5743 XSETFRAME (frame, f);
5745 AUTO_STRING (tip, " *tip*");
5746 buffer = Fget_buffer_create (tip);
5747 /* Use set_window_buffer instead of Fset_window_buffer (see
5748 discussion of bug#11984, bug#12025, bug#12026). */
5749 set_window_buffer (FRAME_ROOT_WINDOW (f), buffer, false, false);
5750 old_buffer = current_buffer;
5751 set_buffer_internal_1 (XBUFFER (buffer));
5752 bset_truncate_lines (current_buffer, Qnil);
5753 specbind (Qinhibit_read_only, Qt);
5754 specbind (Qinhibit_modification_hooks, Qt);
5755 Ferase_buffer ();
5756 Finsert (1, &text);
5757 set_buffer_internal_1 (old_buffer);
5759 record_unwind_protect (unwind_create_tip_frame, frame);
5761 /* By setting the output method, we're essentially saying that
5762 the frame is live, as per FRAME_LIVE_P. If we get a signal
5763 from this point on, x_destroy_window might screw up reference
5764 counts etc. */
5765 f->terminal = dpyinfo->terminal;
5766 f->output_method = output_w32;
5767 f->output_data.w32 = xzalloc (sizeof (struct w32_output));
5769 FRAME_FONTSET (f) = -1;
5770 fset_icon_name (f, Qnil);
5772 #ifdef GLYPH_DEBUG
5773 image_cache_refcount =
5774 FRAME_IMAGE_CACHE (f) ? FRAME_IMAGE_CACHE (f)->refcount : 0;
5775 dpyinfo_refcount = dpyinfo->reference_count;
5776 #endif /* GLYPH_DEBUG */
5777 FRAME_KBOARD (f) = kb;
5778 f->output_data.w32->parent_desc = FRAME_DISPLAY_INFO (f)->root_window;
5779 f->output_data.w32->explicit_parent = false;
5781 /* Set the name; the functions to which we pass f expect the name to
5782 be set. */
5783 if (EQ (name, Qunbound) || NILP (name))
5785 fset_name (f, build_string (dpyinfo->w32_id_name));
5786 f->explicit_name = false;
5788 else
5790 fset_name (f, name);
5791 f->explicit_name = true;
5792 /* use the frame's title when getting resources for this frame. */
5793 specbind (Qx_resource_name, name);
5796 if (uniscribe_available)
5797 register_font_driver (&uniscribe_font_driver, f);
5798 register_font_driver (&w32font_driver, f);
5800 x_default_parameter (f, parms, Qfont_backend, Qnil,
5801 "fontBackend", "FontBackend", RES_TYPE_STRING);
5803 /* Extract the window parameters from the supplied values
5804 that are needed to determine window geometry. */
5805 x_default_font_parameter (f, parms);
5807 x_default_parameter (f, parms, Qborder_width, make_number (2),
5808 "borderWidth", "BorderWidth", RES_TYPE_NUMBER);
5809 /* This defaults to 2 in order to match xterm. We recognize either
5810 internalBorderWidth or internalBorder (which is what xterm calls
5811 it). */
5812 if (NILP (Fassq (Qinternal_border_width, parms)))
5814 Lisp_Object value;
5816 value = x_get_arg (dpyinfo, parms, Qinternal_border_width,
5817 "internalBorder", "internalBorder", RES_TYPE_NUMBER);
5818 if (! EQ (value, Qunbound))
5819 parms = Fcons (Fcons (Qinternal_border_width, value),
5820 parms);
5822 x_default_parameter (f, parms, Qinternal_border_width, make_number (1),
5823 "internalBorderWidth", "internalBorderWidth",
5824 RES_TYPE_NUMBER);
5825 x_default_parameter (f, parms, Qright_divider_width, make_number (0),
5826 NULL, NULL, RES_TYPE_NUMBER);
5827 x_default_parameter (f, parms, Qbottom_divider_width, make_number (0),
5828 NULL, NULL, RES_TYPE_NUMBER);
5830 /* Also do the stuff which must be set before the window exists. */
5831 x_default_parameter (f, parms, Qforeground_color, build_string ("black"),
5832 "foreground", "Foreground", RES_TYPE_STRING);
5833 x_default_parameter (f, parms, Qbackground_color, build_string ("white"),
5834 "background", "Background", RES_TYPE_STRING);
5835 x_default_parameter (f, parms, Qmouse_color, build_string ("black"),
5836 "pointerColor", "Foreground", RES_TYPE_STRING);
5837 x_default_parameter (f, parms, Qcursor_color, build_string ("black"),
5838 "cursorColor", "Foreground", RES_TYPE_STRING);
5839 x_default_parameter (f, parms, Qborder_color, build_string ("black"),
5840 "borderColor", "BorderColor", RES_TYPE_STRING);
5842 /* Init faces before x_default_parameter is called for the
5843 scroll-bar-width parameter because otherwise we end up in
5844 init_iterator with a null face cache, which should not happen. */
5845 init_frame_faces (f);
5847 f->output_data.w32->dwStyle = WS_BORDER | WS_POPUP | WS_DISABLED;
5848 f->output_data.w32->parent_desc = FRAME_DISPLAY_INFO (f)->root_window;
5850 window_prompting = x_figure_window_size (f, parms, false);
5852 /* No fringes on tip frame. */
5853 f->fringe_cols = 0;
5854 f->left_fringe_width = 0;
5855 f->right_fringe_width = 0;
5857 block_input ();
5858 my_create_tip_window (f);
5859 unblock_input ();
5861 x_make_gc (f);
5863 x_default_parameter (f, parms, Qauto_raise, Qnil,
5864 "autoRaise", "AutoRaiseLower", RES_TYPE_BOOLEAN);
5865 x_default_parameter (f, parms, Qauto_lower, Qnil,
5866 "autoLower", "AutoRaiseLower", RES_TYPE_BOOLEAN);
5867 x_default_parameter (f, parms, Qcursor_type, Qbox,
5868 "cursorType", "CursorType", RES_TYPE_SYMBOL);
5869 /* Process alpha here (Bug#17344). */
5870 x_default_parameter (f, parms, Qalpha, Qnil,
5871 "alpha", "Alpha", RES_TYPE_NUMBER);
5873 /* Dimensions, especially FRAME_LINES (f), must be done via
5874 change_frame_size. Change will not be effected unless different
5875 from the current FRAME_LINES (f). */
5876 width = FRAME_COLS (f);
5877 height = FRAME_LINES (f);
5878 SET_FRAME_COLS (f, 0);
5879 SET_FRAME_LINES (f, 0);
5880 adjust_frame_size (f, width * FRAME_COLUMN_WIDTH (f),
5881 height * FRAME_LINE_HEIGHT (f), 0, true, Qtip_frame);
5883 /* Add `tooltip' frame parameter's default value. */
5884 if (NILP (Fframe_parameter (frame, Qtooltip)))
5885 Fmodify_frame_parameters (frame, Fcons (Fcons (Qtooltip, Qt), Qnil));
5887 /* Set up faces after all frame parameters are known. This call
5888 also merges in face attributes specified for new frames.
5890 Frame parameters may be changed if .Xdefaults contains
5891 specifications for the default font. For example, if there is an
5892 `Emacs.default.attributeBackground: pink', the `background-color'
5893 attribute of the frame get's set, which let's the internal border
5894 of the tooltip frame appear in pink. Prevent this. */
5896 Lisp_Object bg = Fframe_parameter (frame, Qbackground_color);
5897 Lisp_Object fg = Fframe_parameter (frame, Qforeground_color);
5898 Lisp_Object colors = Qnil;
5900 /* Set tip_frame here, so that */
5901 tip_frame = frame;
5902 call2 (Qface_set_after_frame_default, frame, Qnil);
5904 if (!EQ (bg, Fframe_parameter (frame, Qbackground_color)))
5905 colors = Fcons (Fcons (Qbackground_color, bg), colors);
5906 if (!EQ (fg, Fframe_parameter (frame, Qforeground_color)))
5907 colors = Fcons (Fcons (Qforeground_color, fg), colors);
5909 if (!NILP (colors))
5910 Fmodify_frame_parameters (frame, colors);
5913 f->no_split = true;
5915 UNGCPRO;
5917 /* Now that the frame is official, it counts as a reference to
5918 its display. */
5919 FRAME_DISPLAY_INFO (f)->reference_count++;
5920 f->terminal->reference_count++;
5922 /* It is now ok to make the frame official even if we get an error
5923 below. And the frame needs to be on Vframe_list or making it
5924 visible won't work. */
5925 Vframe_list = Fcons (frame, Vframe_list);
5926 f->can_x_set_window_size = true;
5928 /* Setting attributes of faces of the tooltip frame from resources
5929 and similar will set face_change, which leads to the
5930 clearing of all current matrices. Since this isn't necessary
5931 here, avoid it by resetting face_change to the value it
5932 had before we created the tip frame. */
5933 face_change = face_change_before;
5935 /* Discard the unwind_protect. */
5936 return unbind_to (count, frame);
5940 /* Compute where to display tip frame F. PARMS is the list of frame
5941 parameters for F. DX and DY are specified offsets from the current
5942 location of the mouse. WIDTH and HEIGHT are the width and height
5943 of the tooltip. Return coordinates relative to the root window of
5944 the display in *ROOT_X, and *ROOT_Y. */
5946 static void
5947 compute_tip_xy (struct frame *f,
5948 Lisp_Object parms, Lisp_Object dx, Lisp_Object dy,
5949 int width, int height, int *root_x, int *root_y)
5951 Lisp_Object left, top;
5952 int min_x, min_y, max_x, max_y;
5954 /* User-specified position? */
5955 left = Fcdr (Fassq (Qleft, parms));
5956 top = Fcdr (Fassq (Qtop, parms));
5958 /* Move the tooltip window where the mouse pointer is. Resize and
5959 show it. */
5960 if (!INTEGERP (left) || !INTEGERP (top))
5962 POINT pt;
5964 /* Default min and max values. */
5965 min_x = 0;
5966 min_y = 0;
5967 max_x = x_display_pixel_width (FRAME_DISPLAY_INFO (f));
5968 max_y = x_display_pixel_height (FRAME_DISPLAY_INFO (f));
5970 block_input ();
5971 GetCursorPos (&pt);
5972 *root_x = pt.x;
5973 *root_y = pt.y;
5974 unblock_input ();
5976 /* If multiple monitor support is available, constrain the tip onto
5977 the current monitor. This improves the above by allowing negative
5978 co-ordinates if monitor positions are such that they are valid, and
5979 snaps a tooltip onto a single monitor if we are close to the edge
5980 where it would otherwise flow onto the other monitor (or into
5981 nothingness if there is a gap in the overlap). */
5982 if (monitor_from_point_fn && get_monitor_info_fn)
5984 struct MONITOR_INFO info;
5985 HMONITOR monitor
5986 = monitor_from_point_fn (pt, MONITOR_DEFAULT_TO_NEAREST);
5987 info.cbSize = sizeof (info);
5989 if (get_monitor_info_fn (monitor, &info))
5991 min_x = info.rcWork.left;
5992 min_y = info.rcWork.top;
5993 max_x = info.rcWork.right;
5994 max_y = info.rcWork.bottom;
5999 if (INTEGERP (top))
6000 *root_y = XINT (top);
6001 else if (*root_y + XINT (dy) <= min_y)
6002 *root_y = min_y; /* Can happen for negative dy */
6003 else if (*root_y + XINT (dy) + height <= max_y)
6004 /* It fits below the pointer */
6005 *root_y += XINT (dy);
6006 else if (height + XINT (dy) + min_y <= *root_y)
6007 /* It fits above the pointer. */
6008 *root_y -= height + XINT (dy);
6009 else
6010 /* Put it on the top. */
6011 *root_y = min_y;
6013 if (INTEGERP (left))
6014 *root_x = XINT (left);
6015 else if (*root_x + XINT (dx) <= min_x)
6016 *root_x = 0; /* Can happen for negative dx */
6017 else if (*root_x + XINT (dx) + width <= max_x)
6018 /* It fits to the right of the pointer. */
6019 *root_x += XINT (dx);
6020 else if (width + XINT (dx) + min_x <= *root_x)
6021 /* It fits to the left of the pointer. */
6022 *root_x -= width + XINT (dx);
6023 else
6024 /* Put it left justified on the screen -- it ought to fit that way. */
6025 *root_x = min_x;
6029 DEFUN ("x-show-tip", Fx_show_tip, Sx_show_tip, 1, 6, 0,
6030 doc: /* Show STRING in a \"tooltip\" window on frame FRAME.
6031 A tooltip window is a small window displaying a string.
6033 This is an internal function; Lisp code should call `tooltip-show'.
6035 FRAME nil or omitted means use the selected frame.
6037 PARMS is an optional list of frame parameters which can be
6038 used to change the tooltip's appearance.
6040 Automatically hide the tooltip after TIMEOUT seconds. TIMEOUT nil
6041 means use the default timeout of 5 seconds.
6043 If the list of frame parameters PARMS contains a `left' parameter,
6044 the tooltip is displayed at that x-position. Otherwise it is
6045 displayed at the mouse position, with offset DX added (default is 5 if
6046 DX isn't specified). Likewise for the y-position; if a `top' frame
6047 parameter is specified, it determines the y-position of the tooltip
6048 window, otherwise it is displayed at the mouse position, with offset
6049 DY added (default is -10).
6051 A tooltip's maximum size is specified by `x-max-tooltip-size'.
6052 Text larger than the specified size is clipped. */)
6053 (Lisp_Object string, Lisp_Object frame, Lisp_Object parms, Lisp_Object timeout, Lisp_Object dx, Lisp_Object dy)
6055 struct frame *f;
6056 struct window *w;
6057 int root_x, root_y;
6058 struct buffer *old_buffer;
6059 struct text_pos pos;
6060 int i, width, height;
6061 bool seen_reversed_p;
6062 struct gcpro gcpro1, gcpro2, gcpro3, gcpro4;
6063 int old_windows_or_buffers_changed = windows_or_buffers_changed;
6064 ptrdiff_t count = SPECPDL_INDEX ();
6066 specbind (Qinhibit_redisplay, Qt);
6068 GCPRO4 (string, parms, frame, timeout);
6070 CHECK_STRING (string);
6071 f = decode_window_system_frame (frame);
6072 if (NILP (timeout))
6073 timeout = make_number (5);
6074 else
6075 CHECK_NATNUM (timeout);
6077 if (NILP (dx))
6078 dx = make_number (5);
6079 else
6080 CHECK_NUMBER (dx);
6082 if (NILP (dy))
6083 dy = make_number (-10);
6084 else
6085 CHECK_NUMBER (dy);
6087 if (NILP (last_show_tip_args))
6088 last_show_tip_args = Fmake_vector (make_number (3), Qnil);
6090 if (!NILP (tip_frame))
6092 Lisp_Object last_string = AREF (last_show_tip_args, 0);
6093 Lisp_Object last_frame = AREF (last_show_tip_args, 1);
6094 Lisp_Object last_parms = AREF (last_show_tip_args, 2);
6096 if (EQ (frame, last_frame)
6097 && !NILP (Fequal (last_string, string))
6098 && !NILP (Fequal (last_parms, parms)))
6100 struct frame *f = XFRAME (tip_frame);
6102 /* Only DX and DY have changed. */
6103 if (!NILP (tip_timer))
6105 Lisp_Object timer = tip_timer;
6106 tip_timer = Qnil;
6107 call1 (Qcancel_timer, timer);
6110 block_input ();
6111 compute_tip_xy (f, parms, dx, dy, FRAME_PIXEL_WIDTH (f),
6112 FRAME_PIXEL_HEIGHT (f), &root_x, &root_y);
6114 /* Put tooltip in topmost group and in position. */
6115 SetWindowPos (FRAME_W32_WINDOW (f), HWND_TOPMOST,
6116 root_x, root_y, 0, 0,
6117 SWP_NOSIZE | SWP_NOACTIVATE | SWP_NOOWNERZORDER);
6119 /* Ensure tooltip is on top of other topmost windows (eg menus). */
6120 SetWindowPos (FRAME_W32_WINDOW (f), HWND_TOP,
6121 0, 0, 0, 0,
6122 SWP_NOMOVE | SWP_NOSIZE
6123 | SWP_NOACTIVATE | SWP_NOOWNERZORDER);
6125 unblock_input ();
6126 goto start_timer;
6130 /* Hide a previous tip, if any. */
6131 Fx_hide_tip ();
6133 ASET (last_show_tip_args, 0, string);
6134 ASET (last_show_tip_args, 1, frame);
6135 ASET (last_show_tip_args, 2, parms);
6137 /* Add default values to frame parameters. */
6138 if (NILP (Fassq (Qname, parms)))
6139 parms = Fcons (Fcons (Qname, build_string ("tooltip")), parms);
6140 if (NILP (Fassq (Qinternal_border_width, parms)))
6141 parms = Fcons (Fcons (Qinternal_border_width, make_number (3)), parms);
6142 if (NILP (Fassq (Qright_divider_width, parms)))
6143 parms = Fcons (Fcons (Qright_divider_width, make_number (0)), parms);
6144 if (NILP (Fassq (Qbottom_divider_width, parms)))
6145 parms = Fcons (Fcons (Qbottom_divider_width, make_number (0)), parms);
6146 if (NILP (Fassq (Qborder_width, parms)))
6147 parms = Fcons (Fcons (Qborder_width, make_number (1)), parms);
6148 if (NILP (Fassq (Qborder_color, parms)))
6149 parms = Fcons (Fcons (Qborder_color, build_string ("lightyellow")), parms);
6150 if (NILP (Fassq (Qbackground_color, parms)))
6151 parms = Fcons (Fcons (Qbackground_color, build_string ("lightyellow")),
6152 parms);
6154 /* Block input until the tip has been fully drawn, to avoid crashes
6155 when drawing tips in menus. */
6156 block_input ();
6158 /* Create a frame for the tooltip, and record it in the global
6159 variable tip_frame. */
6160 frame = x_create_tip_frame (FRAME_DISPLAY_INFO (f), parms, string);
6161 f = XFRAME (frame);
6163 /* Set up the frame's root window. */
6164 w = XWINDOW (FRAME_ROOT_WINDOW (f));
6165 w->left_col = 0;
6166 w->top_line = 0;
6167 w->pixel_left = 0;
6168 w->pixel_top = 0;
6170 if (CONSP (Vx_max_tooltip_size)
6171 && INTEGERP (XCAR (Vx_max_tooltip_size))
6172 && XINT (XCAR (Vx_max_tooltip_size)) > 0
6173 && INTEGERP (XCDR (Vx_max_tooltip_size))
6174 && XINT (XCDR (Vx_max_tooltip_size)) > 0)
6176 w->total_cols = XFASTINT (XCAR (Vx_max_tooltip_size));
6177 w->total_lines = XFASTINT (XCDR (Vx_max_tooltip_size));
6179 else
6181 w->total_cols = 80;
6182 w->total_lines = 40;
6185 w->pixel_width = w->total_cols * FRAME_COLUMN_WIDTH (f);
6186 w->pixel_height = w->total_lines * FRAME_LINE_HEIGHT (f);
6188 FRAME_TOTAL_COLS (f) = WINDOW_TOTAL_COLS (w);
6189 adjust_frame_glyphs (f);
6190 w->pseudo_window_p = true;
6192 /* Display the tooltip text in a temporary buffer. */
6193 old_buffer = current_buffer;
6194 set_buffer_internal_1 (XBUFFER (XWINDOW (FRAME_ROOT_WINDOW (f))->contents));
6195 bset_truncate_lines (current_buffer, Qnil);
6196 clear_glyph_matrix (w->desired_matrix);
6197 clear_glyph_matrix (w->current_matrix);
6198 SET_TEXT_POS (pos, BEGV, BEGV_BYTE);
6199 try_window (FRAME_ROOT_WINDOW (f), pos, TRY_WINDOW_IGNORE_FONTS_CHANGE);
6201 /* Compute width and height of the tooltip. */
6202 width = height = 0;
6203 seen_reversed_p = false;
6204 for (i = 0; i < w->desired_matrix->nrows; ++i)
6206 struct glyph_row *row = &w->desired_matrix->rows[i];
6207 struct glyph *last;
6208 int row_width;
6210 /* Stop at the first empty row at the end. */
6211 if (!row->enabled_p || !MATRIX_ROW_DISPLAYS_TEXT_P (row))
6212 break;
6214 /* Let the row go over the full width of the frame. */
6215 row->full_width_p = true;
6217 row_width = row->pixel_width;
6218 if (row->used[TEXT_AREA])
6220 if (!row->reversed_p)
6222 /* There's a glyph at the end of rows that is used to
6223 place the cursor there. Don't include the width of
6224 this glyph. */
6225 last = &row->glyphs[TEXT_AREA][row->used[TEXT_AREA] - 1];
6226 if (NILP (last->object))
6227 row_width -= last->pixel_width;
6229 else
6231 /* There could be a stretch glyph at the beginning of R2L
6232 rows that is produced by extend_face_to_end_of_line.
6233 Don't count that glyph. */
6234 struct glyph *g = row->glyphs[TEXT_AREA];
6236 if (g->type == STRETCH_GLYPH && NILP (g->object))
6238 row_width -= g->pixel_width;
6239 seen_reversed_p = true;
6244 height += row->height;
6245 width = max (width, row_width);
6248 /* If we've seen partial-length R2L rows, we need to re-adjust the
6249 tool-tip frame width and redisplay it again, to avoid over-wide
6250 tips due to the stretch glyph that extends R2L lines to full
6251 width of the frame. */
6252 if (seen_reversed_p)
6254 /* PXW: Why do we do the pixel-to-cols conversion only if
6255 seen_reversed_p holds? Don't we have to set other fields of
6256 the window/frame structure?
6258 w->total_cols and FRAME_TOTAL_COLS want the width in columns,
6259 not in pixels. */
6260 w->pixel_width = width;
6261 width /= WINDOW_FRAME_COLUMN_WIDTH (w);
6262 w->total_cols = width;
6263 FRAME_TOTAL_COLS (f) = width;
6264 SET_FRAME_WIDTH (f, width);
6265 adjust_frame_glyphs (f);
6266 w->pseudo_window_p = 1;
6267 clear_glyph_matrix (w->desired_matrix);
6268 clear_glyph_matrix (w->current_matrix);
6269 try_window (FRAME_ROOT_WINDOW (f), pos, TRY_WINDOW_IGNORE_FONTS_CHANGE);
6270 width = height = 0;
6271 /* Recompute width and height of the tooltip. */
6272 for (i = 0; i < w->desired_matrix->nrows; ++i)
6274 struct glyph_row *row = &w->desired_matrix->rows[i];
6275 struct glyph *last;
6276 int row_width;
6278 if (!row->enabled_p || !MATRIX_ROW_DISPLAYS_TEXT_P (row))
6279 break;
6280 row->full_width_p = true;
6281 row_width = row->pixel_width;
6282 if (row->used[TEXT_AREA] && !row->reversed_p)
6284 last = &row->glyphs[TEXT_AREA][row->used[TEXT_AREA] - 1];
6285 if (NILP (last->object))
6286 row_width -= last->pixel_width;
6289 height += row->height;
6290 width = max (width, row_width);
6294 /* Add the frame's internal border to the width and height the w32
6295 window should have. */
6296 height += 2 * FRAME_INTERNAL_BORDER_WIDTH (f);
6297 width += 2 * FRAME_INTERNAL_BORDER_WIDTH (f);
6299 /* Move the tooltip window where the mouse pointer is. Resize and
6300 show it.
6302 PXW: This should use the frame's pixel coordinates. */
6303 compute_tip_xy (f, parms, dx, dy, width, height, &root_x, &root_y);
6306 /* Adjust Window size to take border into account. */
6307 RECT rect;
6308 rect.left = rect.top = 0;
6309 rect.right = width;
6310 rect.bottom = height;
6311 AdjustWindowRect (&rect, f->output_data.w32->dwStyle,
6312 FRAME_EXTERNAL_MENU_BAR (f));
6314 /* Position and size tooltip, and put it in the topmost group.
6315 The add-on of FRAME_COLUMN_WIDTH to the 5th argument is a
6316 peculiarity of w32 display: without it, some fonts cause the
6317 last character of the tip to be truncated or wrapped around to
6318 the next line. */
6319 SetWindowPos (FRAME_W32_WINDOW (f), HWND_TOPMOST,
6320 root_x, root_y,
6321 rect.right - rect.left + FRAME_COLUMN_WIDTH (f),
6322 rect.bottom - rect.top, SWP_NOACTIVATE | SWP_NOOWNERZORDER);
6324 /* Ensure tooltip is on top of other topmost windows (eg menus). */
6325 SetWindowPos (FRAME_W32_WINDOW (f), HWND_TOP,
6326 0, 0, 0, 0,
6327 SWP_NOMOVE | SWP_NOSIZE
6328 | SWP_NOACTIVATE | SWP_NOOWNERZORDER);
6330 /* Let redisplay know that we have made the frame visible already. */
6331 SET_FRAME_VISIBLE (f, 1);
6333 ShowWindow (FRAME_W32_WINDOW (f), SW_SHOWNOACTIVATE);
6336 /* Draw into the window. */
6337 w->must_be_updated_p = true;
6338 update_single_window (w);
6340 unblock_input ();
6342 /* Restore original current buffer. */
6343 set_buffer_internal_1 (old_buffer);
6344 windows_or_buffers_changed = old_windows_or_buffers_changed;
6346 start_timer:
6347 /* Let the tip disappear after timeout seconds. */
6348 tip_timer = call3 (intern ("run-at-time"), timeout, Qnil,
6349 intern ("x-hide-tip"));
6351 UNGCPRO;
6352 return unbind_to (count, Qnil);
6356 DEFUN ("x-hide-tip", Fx_hide_tip, Sx_hide_tip, 0, 0, 0,
6357 doc: /* Hide the current tooltip window, if there is any.
6358 Value is t if tooltip was open, nil otherwise. */)
6359 (void)
6361 ptrdiff_t count;
6362 Lisp_Object deleted, frame, timer;
6363 struct gcpro gcpro1, gcpro2;
6365 /* Return quickly if nothing to do. */
6366 if (NILP (tip_timer) && NILP (tip_frame))
6367 return Qnil;
6369 frame = tip_frame;
6370 timer = tip_timer;
6371 GCPRO2 (frame, timer);
6372 tip_frame = tip_timer = deleted = Qnil;
6374 count = SPECPDL_INDEX ();
6375 specbind (Qinhibit_redisplay, Qt);
6376 specbind (Qinhibit_quit, Qt);
6378 if (!NILP (timer))
6379 call1 (Qcancel_timer, timer);
6381 if (FRAMEP (frame))
6383 delete_frame (frame, Qnil);
6384 deleted = Qt;
6387 UNGCPRO;
6388 return unbind_to (count, deleted);
6391 /***********************************************************************
6392 File selection dialog
6393 ***********************************************************************/
6395 #define FILE_NAME_TEXT_FIELD edt1
6396 #define FILE_NAME_COMBO_BOX cmb13
6397 #define FILE_NAME_LIST lst1
6399 /* Callback for altering the behavior of the Open File dialog.
6400 Makes the Filename text field contain "Current Directory" and be
6401 read-only when "Directories" is selected in the filter. This
6402 allows us to work around the fact that the standard Open File
6403 dialog does not support directories. */
6404 static UINT_PTR CALLBACK
6405 file_dialog_callback (HWND hwnd, UINT msg, WPARAM wParam, LPARAM lParam)
6407 if (msg == WM_NOTIFY)
6409 OFNOTIFYW * notify_w = (OFNOTIFYW *)lParam;
6410 OFNOTIFYA * notify_a = (OFNOTIFYA *)lParam;
6411 int dropdown_changed;
6412 int dir_index;
6413 #ifdef NTGUI_UNICODE
6414 const int use_unicode = 1;
6415 #else /* !NTGUI_UNICODE */
6416 int use_unicode = w32_unicode_filenames;
6417 #endif /* NTGUI_UNICODE */
6419 /* Detect when the Filter dropdown is changed. */
6420 if (use_unicode)
6421 dropdown_changed =
6422 notify_w->hdr.code == CDN_TYPECHANGE
6423 || notify_w->hdr.code == CDN_INITDONE;
6424 else
6425 dropdown_changed =
6426 notify_a->hdr.code == CDN_TYPECHANGE
6427 || notify_a->hdr.code == CDN_INITDONE;
6428 if (dropdown_changed)
6430 HWND dialog = GetParent (hwnd);
6431 HWND edit_control = GetDlgItem (dialog, FILE_NAME_TEXT_FIELD);
6432 HWND list = GetDlgItem (dialog, FILE_NAME_LIST);
6433 int hdr_code;
6435 /* At least on Windows 7, the above attempt to get the window handle
6436 to the File Name Text Field fails. The following code does the
6437 job though. Note that this code is based on my examination of the
6438 window hierarchy using Microsoft Spy++. bk */
6439 if (edit_control == NULL)
6441 HWND tmp = GetDlgItem (dialog, FILE_NAME_COMBO_BOX);
6442 if (tmp)
6444 tmp = GetWindow (tmp, GW_CHILD);
6445 if (tmp)
6446 edit_control = GetWindow (tmp, GW_CHILD);
6450 /* Directories is in index 2. */
6451 if (use_unicode)
6453 dir_index = notify_w->lpOFN->nFilterIndex;
6454 hdr_code = notify_w->hdr.code;
6456 else
6458 dir_index = notify_a->lpOFN->nFilterIndex;
6459 hdr_code = notify_a->hdr.code;
6461 if (dir_index == 2)
6463 if (use_unicode)
6464 SendMessageW (dialog, CDM_SETCONTROLTEXT, FILE_NAME_TEXT_FIELD,
6465 (LPARAM)L"Current Directory");
6466 else
6467 SendMessageA (dialog, CDM_SETCONTROLTEXT, FILE_NAME_TEXT_FIELD,
6468 (LPARAM)"Current Directory");
6469 EnableWindow (edit_control, FALSE);
6470 /* Note that at least on Windows 7, the above call to EnableWindow
6471 disables the window that would ordinarily have focus. If we
6472 do not set focus to some other window here, focus will land in
6473 no man's land and the user will be unable to tab through the
6474 dialog box (pressing tab will only result in a beep).
6475 Avoid that problem by setting focus to the list here. */
6476 if (hdr_code == CDN_INITDONE)
6477 SetFocus (list);
6479 else
6481 /* Don't override default filename on init done. */
6482 if (hdr_code == CDN_TYPECHANGE)
6484 if (use_unicode)
6485 SendMessageW (dialog, CDM_SETCONTROLTEXT,
6486 FILE_NAME_TEXT_FIELD, (LPARAM)L"");
6487 else
6488 SendMessageA (dialog, CDM_SETCONTROLTEXT,
6489 FILE_NAME_TEXT_FIELD, (LPARAM)"");
6491 EnableWindow (edit_control, TRUE);
6495 return 0;
6498 DEFUN ("x-file-dialog", Fx_file_dialog, Sx_file_dialog, 2, 5, 0,
6499 doc: /* Read file name, prompting with PROMPT in directory DIR.
6500 Use a file selection dialog. Select DEFAULT-FILENAME in the dialog's file
6501 selection box, if specified. If MUSTMATCH is non-nil, the returned file
6502 or directory must exist.
6504 This function is only defined on NS, MS Windows, and X Windows with the
6505 Motif or Gtk toolkits. With the Motif toolkit, ONLY-DIR-P is ignored.
6506 Otherwise, if ONLY-DIR-P is non-nil, the user can only select directories.
6507 On Windows 7 and later, the file selection dialog "remembers" the last
6508 directory where the user selected a file, and will open that directory
6509 instead of DIR on subsequent invocations of this function with the same
6510 value of DIR as in previous invocations; this is standard Windows behavior. */)
6511 (Lisp_Object prompt, Lisp_Object dir, Lisp_Object default_filename, Lisp_Object mustmatch, Lisp_Object only_dir_p)
6513 /* Filter index: 1: All Files, 2: Directories only */
6514 static const wchar_t filter_w[] = L"All Files (*.*)\0*.*\0Directories\0*|*\0";
6515 static const char filter_a[] = "All Files (*.*)\0*.*\0Directories\0*|*\0";
6517 Lisp_Object filename = default_filename;
6518 struct frame *f = SELECTED_FRAME ();
6519 BOOL file_opened = FALSE;
6520 Lisp_Object orig_dir = dir;
6521 Lisp_Object orig_prompt = prompt;
6523 /* If we compile with _WIN32_WINNT set to 0x0400 (for NT4
6524 compatibility) we end up with the old file dialogs. Define a big
6525 enough struct for the new dialog to trick GetOpenFileName into
6526 giving us the new dialogs on newer versions of Windows. */
6527 struct {
6528 OPENFILENAMEW details;
6529 #if _WIN32_WINNT < 0x500 /* < win2k */
6530 PVOID pvReserved;
6531 DWORD dwReserved;
6532 DWORD FlagsEx;
6533 #endif /* < win2k */
6534 } new_file_details_w;
6536 #ifdef NTGUI_UNICODE
6537 wchar_t filename_buf_w[32*1024 + 1]; // NT kernel maximum
6538 OPENFILENAMEW * file_details_w = &new_file_details_w.details;
6539 const int use_unicode = 1;
6540 #else /* not NTGUI_UNICODE */
6541 struct {
6542 OPENFILENAMEA details;
6543 #if _WIN32_WINNT < 0x500 /* < win2k */
6544 PVOID pvReserved;
6545 DWORD dwReserved;
6546 DWORD FlagsEx;
6547 #endif /* < win2k */
6548 } new_file_details_a;
6549 wchar_t filename_buf_w[MAX_PATH + 1], dir_w[MAX_PATH];
6550 char filename_buf_a[MAX_PATH + 1], dir_a[MAX_PATH];
6551 OPENFILENAMEW * file_details_w = &new_file_details_w.details;
6552 OPENFILENAMEA * file_details_a = &new_file_details_a.details;
6553 int use_unicode = w32_unicode_filenames;
6554 wchar_t *prompt_w;
6555 char *prompt_a;
6556 int len;
6557 char fname_ret[MAX_UTF8_PATH];
6558 #endif /* NTGUI_UNICODE */
6560 struct gcpro gcpro1, gcpro2, gcpro3, gcpro4, gcpro5, gcpro6;
6561 GCPRO6 (prompt, dir, default_filename, mustmatch, only_dir_p, filename);
6564 struct gcpro gcpro1, gcpro2;
6565 GCPRO2 (orig_dir, orig_prompt); /* There is no GCPRON, N>6. */
6567 /* Note: under NTGUI_UNICODE, we do _NOT_ use ENCODE_FILE: the
6568 system file encoding expected by the platform APIs (e.g. Cygwin's
6569 POSIX implementation) may not be the same as the encoding expected
6570 by the Windows "ANSI" APIs! */
6572 CHECK_STRING (prompt);
6573 CHECK_STRING (dir);
6575 dir = Fexpand_file_name (dir, Qnil);
6577 if (STRINGP (filename))
6578 filename = Ffile_name_nondirectory (filename);
6579 else
6580 filename = empty_unibyte_string;
6582 #ifdef CYGWIN
6583 dir = Fcygwin_convert_file_name_to_windows (dir, Qt);
6584 if (SCHARS (filename) > 0)
6585 filename = Fcygwin_convert_file_name_to_windows (filename, Qnil);
6586 #endif
6588 CHECK_STRING (dir);
6589 CHECK_STRING (filename);
6591 /* The code in file_dialog_callback that attempts to set the text
6592 of the file name edit window when handling the CDN_INITDONE
6593 WM_NOTIFY message does not work. Setting filename to "Current
6594 Directory" in the only_dir_p case here does work however. */
6595 if (SCHARS (filename) == 0 && ! NILP (only_dir_p))
6596 filename = build_string ("Current Directory");
6598 /* Convert the values we've computed so far to system form. */
6599 #ifdef NTGUI_UNICODE
6600 to_unicode (prompt, &prompt);
6601 to_unicode (dir, &dir);
6602 to_unicode (filename, &filename);
6603 if (SBYTES (filename) + 1 > sizeof (filename_buf_w))
6604 report_file_error ("filename too long", default_filename);
6606 memcpy (filename_buf_w, SDATA (filename), SBYTES (filename) + 1);
6607 #else /* !NTGUI_UNICODE */
6608 prompt = ENCODE_FILE (prompt);
6609 dir = ENCODE_FILE (dir);
6610 filename = ENCODE_FILE (filename);
6612 /* We modify these in-place, so make copies for safety. */
6613 dir = Fcopy_sequence (dir);
6614 unixtodos_filename (SDATA (dir));
6615 filename = Fcopy_sequence (filename);
6616 unixtodos_filename (SDATA (filename));
6617 if (SBYTES (filename) >= MAX_UTF8_PATH)
6618 report_file_error ("filename too long", default_filename);
6619 if (w32_unicode_filenames)
6621 filename_to_utf16 (SSDATA (dir), dir_w);
6622 if (filename_to_utf16 (SSDATA (filename), filename_buf_w) != 0)
6624 /* filename_to_utf16 sets errno to ENOENT when the file
6625 name is too long or cannot be converted to UTF-16. */
6626 if (errno == ENOENT && filename_buf_w[MAX_PATH - 1] != 0)
6627 report_file_error ("filename too long", default_filename);
6629 len = pMultiByteToWideChar (CP_UTF8, MB_ERR_INVALID_CHARS,
6630 SSDATA (prompt), -1, NULL, 0);
6631 if (len > 32768)
6632 len = 32768;
6633 prompt_w = alloca (len * sizeof (wchar_t));
6634 pMultiByteToWideChar (CP_UTF8, MB_ERR_INVALID_CHARS,
6635 SSDATA (prompt), -1, prompt_w, len);
6637 else
6639 filename_to_ansi (SSDATA (dir), dir_a);
6640 if (filename_to_ansi (SSDATA (filename), filename_buf_a) != '\0')
6642 /* filename_to_ansi sets errno to ENOENT when the file
6643 name is too long or cannot be converted to UTF-16. */
6644 if (errno == ENOENT && filename_buf_a[MAX_PATH - 1] != 0)
6645 report_file_error ("filename too long", default_filename);
6647 len = pMultiByteToWideChar (CP_UTF8, MB_ERR_INVALID_CHARS,
6648 SSDATA (prompt), -1, NULL, 0);
6649 if (len > 32768)
6650 len = 32768;
6651 prompt_w = alloca (len * sizeof (wchar_t));
6652 pMultiByteToWideChar (CP_UTF8, MB_ERR_INVALID_CHARS,
6653 SSDATA (prompt), -1, prompt_w, len);
6654 len = pWideCharToMultiByte (CP_ACP, 0, prompt_w, -1, NULL, 0, NULL, NULL);
6655 if (len > 32768)
6656 len = 32768;
6657 prompt_a = alloca (len);
6658 pWideCharToMultiByte (CP_ACP, 0, prompt_w, -1, prompt_a, len, NULL, NULL);
6660 #endif /* NTGUI_UNICODE */
6662 /* Fill in the structure for the call to GetOpenFileName below.
6663 For NTGUI_UNICODE builds (which run only on NT), we just use
6664 the actual size of the structure. For non-NTGUI_UNICODE
6665 builds, we tell the OS we're using an old version of the
6666 structure if the OS isn't new enough to support the newer
6667 version. */
6668 if (use_unicode)
6670 memset (&new_file_details_w, 0, sizeof (new_file_details_w));
6671 if (w32_major_version > 4 && w32_major_version < 95)
6672 file_details_w->lStructSize = sizeof (new_file_details_w);
6673 else
6674 file_details_w->lStructSize = sizeof (*file_details_w);
6675 /* Set up the inout parameter for the selected file name. */
6676 file_details_w->lpstrFile = filename_buf_w;
6677 file_details_w->nMaxFile =
6678 sizeof (filename_buf_w) / sizeof (*filename_buf_w);
6679 file_details_w->hwndOwner = FRAME_W32_WINDOW (f);
6680 /* Undocumented Bug in Common File Dialog:
6681 If a filter is not specified, shell links are not resolved. */
6682 file_details_w->lpstrFilter = filter_w;
6683 #ifdef NTGUI_UNICODE
6684 file_details_w->lpstrInitialDir = (wchar_t*) SDATA (dir);
6685 file_details_w->lpstrTitle = (guichar_t*) SDATA (prompt);
6686 #else
6687 file_details_w->lpstrInitialDir = dir_w;
6688 file_details_w->lpstrTitle = prompt_w;
6689 #endif
6690 file_details_w->nFilterIndex = NILP (only_dir_p) ? 1 : 2;
6691 file_details_w->Flags = (OFN_HIDEREADONLY | OFN_NOCHANGEDIR
6692 | OFN_EXPLORER | OFN_ENABLEHOOK);
6693 if (!NILP (mustmatch))
6695 /* Require that the path to the parent directory exists. */
6696 file_details_w->Flags |= OFN_PATHMUSTEXIST;
6697 /* If we are looking for a file, require that it exists. */
6698 if (NILP (only_dir_p))
6699 file_details_w->Flags |= OFN_FILEMUSTEXIST;
6702 #ifndef NTGUI_UNICODE
6703 else
6705 memset (&new_file_details_a, 0, sizeof (new_file_details_a));
6706 if (w32_major_version > 4 && w32_major_version < 95)
6707 file_details_a->lStructSize = sizeof (new_file_details_a);
6708 else
6709 file_details_a->lStructSize = sizeof (*file_details_a);
6710 file_details_a->lpstrFile = filename_buf_a;
6711 file_details_a->nMaxFile =
6712 sizeof (filename_buf_a) / sizeof (*filename_buf_a);
6713 file_details_a->hwndOwner = FRAME_W32_WINDOW (f);
6714 file_details_a->lpstrFilter = filter_a;
6715 file_details_a->lpstrInitialDir = dir_a;
6716 file_details_a->lpstrTitle = prompt_a;
6717 file_details_a->nFilterIndex = NILP (only_dir_p) ? 1 : 2;
6718 file_details_a->Flags = (OFN_HIDEREADONLY | OFN_NOCHANGEDIR
6719 | OFN_EXPLORER | OFN_ENABLEHOOK);
6720 if (!NILP (mustmatch))
6722 /* Require that the path to the parent directory exists. */
6723 file_details_a->Flags |= OFN_PATHMUSTEXIST;
6724 /* If we are looking for a file, require that it exists. */
6725 if (NILP (only_dir_p))
6726 file_details_a->Flags |= OFN_FILEMUSTEXIST;
6729 #endif /* !NTGUI_UNICODE */
6732 int count = SPECPDL_INDEX ();
6733 /* Prevent redisplay. */
6734 specbind (Qinhibit_redisplay, Qt);
6735 block_input ();
6736 if (use_unicode)
6738 file_details_w->lpfnHook = file_dialog_callback;
6740 file_opened = GetOpenFileNameW (file_details_w);
6742 #ifndef NTGUI_UNICODE
6743 else
6745 file_details_a->lpfnHook = file_dialog_callback;
6747 file_opened = GetOpenFileNameA (file_details_a);
6749 #endif /* !NTGUI_UNICODE */
6750 unblock_input ();
6751 unbind_to (count, Qnil);
6754 if (file_opened)
6756 /* Get an Emacs string from the value Windows gave us. */
6757 #ifdef NTGUI_UNICODE
6758 filename = from_unicode_buffer (filename_buf_w);
6759 #else /* !NTGUI_UNICODE */
6760 if (use_unicode)
6761 filename_from_utf16 (filename_buf_w, fname_ret);
6762 else
6763 filename_from_ansi (filename_buf_a, fname_ret);
6764 dostounix_filename (fname_ret);
6765 filename = DECODE_FILE (build_unibyte_string (fname_ret));
6766 #endif /* NTGUI_UNICODE */
6768 #ifdef CYGWIN
6769 filename = Fcygwin_convert_file_name_from_windows (filename, Qt);
6770 #endif /* CYGWIN */
6772 /* Strip the dummy filename off the end of the string if we
6773 added it to select a directory. */
6774 if ((use_unicode && file_details_w->nFilterIndex == 2)
6775 #ifndef NTGUI_UNICODE
6776 || (!use_unicode && file_details_a->nFilterIndex == 2)
6777 #endif
6779 filename = Ffile_name_directory (filename);
6781 /* User canceled the dialog without making a selection. */
6782 else if (!CommDlgExtendedError ())
6783 filename = Qnil;
6784 /* An error occurred, fallback on reading from the mini-buffer. */
6785 else
6786 filename = Fcompleting_read (
6787 orig_prompt,
6788 intern ("read-file-name-internal"),
6789 orig_dir,
6790 mustmatch,
6791 orig_dir,
6792 Qfile_name_history,
6793 default_filename,
6794 Qnil);
6796 UNGCPRO;
6799 /* Make "Cancel" equivalent to C-g. */
6800 if (NILP (filename))
6801 Fsignal (Qquit, Qnil);
6803 RETURN_UNGCPRO (filename);
6807 #ifdef WINDOWSNT
6808 /* Moving files to the system recycle bin.
6809 Used by `move-file-to-trash' instead of the default moving to ~/.Trash */
6810 DEFUN ("system-move-file-to-trash", Fsystem_move_file_to_trash,
6811 Ssystem_move_file_to_trash, 1, 1, 0,
6812 doc: /* Move file or directory named FILENAME to the recycle bin. */)
6813 (Lisp_Object filename)
6815 Lisp_Object handler;
6816 Lisp_Object encoded_file;
6817 Lisp_Object operation;
6819 operation = Qdelete_file;
6820 if (!NILP (Ffile_directory_p (filename))
6821 && NILP (Ffile_symlink_p (filename)))
6823 operation = intern ("delete-directory");
6824 filename = Fdirectory_file_name (filename);
6827 /* Must have fully qualified file names for moving files to Recycle
6828 Bin. */
6829 filename = Fexpand_file_name (filename, Qnil);
6831 handler = Ffind_file_name_handler (filename, operation);
6832 if (!NILP (handler))
6833 return call2 (handler, operation, filename);
6834 else
6836 const char * path;
6837 int result;
6839 encoded_file = ENCODE_FILE (filename);
6841 path = map_w32_filename (SDATA (encoded_file), NULL);
6843 /* The Unicode version of SHFileOperation is not supported on
6844 Windows 9X. */
6845 if (w32_unicode_filenames && os_subtype != OS_9X)
6847 SHFILEOPSTRUCTW file_op_w;
6848 /* We need one more element beyond MAX_PATH because this is
6849 a list of file names, with the last element double-null
6850 terminated. */
6851 wchar_t tmp_path_w[MAX_PATH + 1];
6853 memset (tmp_path_w, 0, sizeof (tmp_path_w));
6854 filename_to_utf16 (path, tmp_path_w);
6856 /* On Windows, write permission is required to delete/move files. */
6857 _wchmod (tmp_path_w, 0666);
6859 memset (&file_op_w, 0, sizeof (file_op_w));
6860 file_op_w.hwnd = HWND_DESKTOP;
6861 file_op_w.wFunc = FO_DELETE;
6862 file_op_w.pFrom = tmp_path_w;
6863 file_op_w.fFlags = FOF_SILENT | FOF_NOCONFIRMATION | FOF_ALLOWUNDO
6864 | FOF_NOERRORUI | FOF_NO_CONNECTED_ELEMENTS;
6865 file_op_w.fAnyOperationsAborted = FALSE;
6867 result = SHFileOperationW (&file_op_w);
6869 else
6871 SHFILEOPSTRUCTA file_op_a;
6872 char tmp_path_a[MAX_PATH + 1];
6874 memset (tmp_path_a, 0, sizeof (tmp_path_a));
6875 filename_to_ansi (path, tmp_path_a);
6877 /* If a file cannot be represented in ANSI codepage, don't
6878 let them inadvertently delete other files because some
6879 characters are interpreted as a wildcards. */
6880 if (_mbspbrk (tmp_path_a, "?*"))
6881 result = ERROR_FILE_NOT_FOUND;
6882 else
6884 _chmod (tmp_path_a, 0666);
6886 memset (&file_op_a, 0, sizeof (file_op_a));
6887 file_op_a.hwnd = HWND_DESKTOP;
6888 file_op_a.wFunc = FO_DELETE;
6889 file_op_a.pFrom = tmp_path_a;
6890 file_op_a.fFlags = FOF_SILENT | FOF_NOCONFIRMATION | FOF_ALLOWUNDO
6891 | FOF_NOERRORUI | FOF_NO_CONNECTED_ELEMENTS;
6892 file_op_a.fAnyOperationsAborted = FALSE;
6894 result = SHFileOperationA (&file_op_a);
6897 if (result != 0)
6898 report_file_error ("Removing old name", list1 (filename));
6900 return Qnil;
6903 #endif /* WINDOWSNT */
6906 /***********************************************************************
6907 w32 specialized functions
6908 ***********************************************************************/
6910 DEFUN ("w32-send-sys-command", Fw32_send_sys_command,
6911 Sw32_send_sys_command, 1, 2, 0,
6912 doc: /* Send frame a Windows WM_SYSCOMMAND message of type COMMAND.
6913 Some useful values for COMMAND are #xf030 to maximize frame (#xf020
6914 to minimize), #xf120 to restore frame to original size, and #xf100
6915 to activate the menubar for keyboard access. #xf140 activates the
6916 screen saver if defined.
6918 If optional parameter FRAME is not specified, use selected frame. */)
6919 (Lisp_Object command, Lisp_Object frame)
6921 struct frame *f = decode_window_system_frame (frame);
6923 CHECK_NUMBER (command);
6925 PostMessage (FRAME_W32_WINDOW (f), WM_SYSCOMMAND, XINT (command), 0);
6927 return Qnil;
6930 DEFUN ("w32-shell-execute", Fw32_shell_execute, Sw32_shell_execute, 2, 4, 0,
6931 doc: /* Get Windows to perform OPERATION on DOCUMENT.
6932 This is a wrapper around the ShellExecute system function, which
6933 invokes the application registered to handle OPERATION for DOCUMENT.
6935 OPERATION is either nil or a string that names a supported operation.
6936 What operations can be used depends on the particular DOCUMENT and its
6937 handler application, but typically it is one of the following common
6938 operations:
6940 \"open\" - open DOCUMENT, which could be a file, a directory, or an
6941 executable program (application). If it is an application,
6942 that application is launched in the current buffer's default
6943 directory. Otherwise, the application associated with
6944 DOCUMENT is launched in the buffer's default directory.
6945 \"opennew\" - like \"open\", but instruct the application to open
6946 DOCUMENT in a new window.
6947 \"openas\" - open the \"Open With\" dialog for DOCUMENT.
6948 \"print\" - print DOCUMENT, which must be a file.
6949 \"printto\" - print DOCUMENT, which must be a file, to a specified printer.
6950 The printer should be provided in PARAMETERS, see below.
6951 \"explore\" - start the Windows Explorer on DOCUMENT.
6952 \"edit\" - launch an editor and open DOCUMENT for editing; which
6953 editor is launched depends on the association for the
6954 specified DOCUMENT.
6955 \"find\" - initiate search starting from DOCUMENT, which must specify
6956 a directory.
6957 \"delete\" - move DOCUMENT, a file or a directory, to Recycle Bin.
6958 \"copy\" - copy DOCUMENT, which must be a file or a directory, into
6959 the clipboard.
6960 \"cut\" - move DOCUMENT, a file or a directory, into the clipboard.
6961 \"paste\" - paste the file whose name is in the clipboard into DOCUMENT,
6962 which must be a directory.
6963 \"pastelink\"
6964 - create a shortcut in DOCUMENT (which must be a directory)
6965 the file or directory whose name is in the clipboard.
6966 \"runas\" - run DOCUMENT, which must be an excutable file, with
6967 elevated privileges (a.k.a. \"as Administrator\").
6968 \"properties\"
6969 - open the property sheet dialog for DOCUMENT.
6970 nil - invoke the default OPERATION, or \"open\" if default is
6971 not defined or unavailable.
6973 DOCUMENT is typically the name of a document file or a URL, but can
6974 also be an executable program to run, or a directory to open in the
6975 Windows Explorer. If it is a file or a directory, it must be a local
6976 one; this function does not support remote file names.
6978 If DOCUMENT is an executable program, the optional third arg PARAMETERS
6979 can be a string containing command line parameters, separated by blanks,
6980 that will be passed to the program. Some values of OPERATION also require
6981 parameters (e.g., \"printto\" requires the printer address). Otherwise,
6982 PARAMETERS should be nil or unspecified. Note that double quote characters
6983 in PARAMETERS must each be enclosed in 2 additional quotes, as in \"\"\".
6985 Optional fourth argument SHOW-FLAG can be used to control how the
6986 application will be displayed when it is invoked. If SHOW-FLAG is nil
6987 or unspecified, the application is displayed as if SHOW-FLAG of 10 was
6988 specified, otherwise it is an integer between 0 and 11 representing
6989 a ShowWindow flag:
6991 0 - start hidden
6992 1 - start as normal-size window
6993 3 - start in a maximized window
6994 6 - start in a minimized window
6995 10 - start as the application itself specifies; this is the default. */)
6996 (Lisp_Object operation, Lisp_Object document, Lisp_Object parameters, Lisp_Object show_flag)
6998 char *errstr;
6999 Lisp_Object current_dir = BVAR (current_buffer, directory);;
7000 wchar_t *doc_w = NULL, *params_w = NULL, *ops_w = NULL;
7001 #ifdef CYGWIN
7002 intptr_t result;
7003 #else
7004 int use_unicode = w32_unicode_filenames;
7005 char *doc_a = NULL, *params_a = NULL, *ops_a = NULL;
7006 Lisp_Object absdoc, handler;
7007 BOOL success;
7008 struct gcpro gcpro1;
7009 #endif
7011 CHECK_STRING (document);
7013 #ifdef CYGWIN
7014 current_dir = Fcygwin_convert_file_name_to_windows (current_dir, Qt);
7015 document = Fcygwin_convert_file_name_to_windows (document, Qt);
7017 /* Encode filename, current directory and parameters. */
7018 current_dir = GUI_ENCODE_FILE (current_dir);
7019 document = GUI_ENCODE_FILE (document);
7020 doc_w = GUI_SDATA (document);
7021 if (STRINGP (parameters))
7023 parameters = GUI_ENCODE_SYSTEM (parameters);
7024 params_w = GUI_SDATA (parameters);
7026 if (STRINGP (operation))
7028 operation = GUI_ENCODE_SYSTEM (operation);
7029 ops_w = GUI_SDATA (operation);
7031 result = (intptr_t) ShellExecuteW (NULL, ops_w, doc_w, params_w,
7032 GUI_SDATA (current_dir),
7033 (INTEGERP (show_flag)
7034 ? XINT (show_flag) : SW_SHOWDEFAULT));
7036 if (result > 32)
7037 return Qt;
7039 switch (result)
7041 case SE_ERR_ACCESSDENIED:
7042 errstr = w32_strerror (ERROR_ACCESS_DENIED);
7043 break;
7044 case SE_ERR_ASSOCINCOMPLETE:
7045 case SE_ERR_NOASSOC:
7046 errstr = w32_strerror (ERROR_NO_ASSOCIATION);
7047 break;
7048 case SE_ERR_DDEBUSY:
7049 case SE_ERR_DDEFAIL:
7050 errstr = w32_strerror (ERROR_DDE_FAIL);
7051 break;
7052 case SE_ERR_DDETIMEOUT:
7053 errstr = w32_strerror (ERROR_TIMEOUT);
7054 break;
7055 case SE_ERR_DLLNOTFOUND:
7056 errstr = w32_strerror (ERROR_DLL_NOT_FOUND);
7057 break;
7058 case SE_ERR_FNF:
7059 errstr = w32_strerror (ERROR_FILE_NOT_FOUND);
7060 break;
7061 case SE_ERR_OOM:
7062 errstr = w32_strerror (ERROR_NOT_ENOUGH_MEMORY);
7063 break;
7064 case SE_ERR_PNF:
7065 errstr = w32_strerror (ERROR_PATH_NOT_FOUND);
7066 break;
7067 case SE_ERR_SHARE:
7068 errstr = w32_strerror (ERROR_SHARING_VIOLATION);
7069 break;
7070 default:
7071 errstr = w32_strerror (0);
7072 break;
7075 #else /* !CYGWIN */
7077 const char file_url_str[] = "file:///";
7078 const int file_url_len = sizeof (file_url_str) - 1;
7079 if (strncmp (SSDATA (document), file_url_str, file_url_len) == 0)
7081 /* Passing "file:///" URLs to ShellExecute causes shlwapi.dll to
7082 start a thread in some rare system configurations, for
7083 unknown reasons. That thread is started in the context of
7084 the Emacs process, but out of control of our code, and seems
7085 to never exit afterwards. Each such thread reserves 8MB of
7086 stack space (because that's the value recorded in the Emacs
7087 executable at link time: Emacs needs a large stack). So a
7088 large enough number of invocations of w32-shell-execute can
7089 potentially cause the Emacs process to run out of available
7090 address space, which is nasty. To work around this, we
7091 convert such URLs to local file names, which seems to prevent
7092 those threads from starting. See bug #20220. */
7093 char *p = SSDATA (document) + file_url_len;
7095 if (c_isalpha (*p) && p[1] == ':' && IS_DIRECTORY_SEP (p[2]))
7096 document = Fsubstring_no_properties (document,
7097 make_number (file_url_len), Qnil);
7099 /* We have a situation here. If DOCUMENT is a relative file name,
7100 but its name includes leading directories, i.e. it lives not in
7101 CURRENT_DIR, but in its subdirectory, then ShellExecute below
7102 will fail to find it. So we need to make the file name is
7103 absolute. But DOCUMENT does not have to be a file, it can be a
7104 URL, for example. So we make it absolute only if it is an
7105 existing file; if it is a file that does not exist, tough. */
7106 GCPRO1 (absdoc);
7107 absdoc = Fexpand_file_name (document, Qnil);
7108 /* Don't call file handlers for file-exists-p, since they might
7109 attempt to access the file, which could fail or produce undesired
7110 consequences, see bug#16558 for an example. */
7111 handler = Ffind_file_name_handler (absdoc, Qfile_exists_p);
7112 if (NILP (handler))
7114 Lisp_Object absdoc_encoded = ENCODE_FILE (absdoc);
7116 if (faccessat (AT_FDCWD, SSDATA (absdoc_encoded), F_OK, AT_EACCESS) == 0)
7118 /* ShellExecute fails if DOCUMENT is a UNC with forward
7119 slashes (expand-file-name above converts all backslashes
7120 to forward slashes). Now that we know DOCUMENT is a
7121 file, we can mirror all forward slashes into backslashes. */
7122 unixtodos_filename (SSDATA (absdoc_encoded));
7123 document = absdoc_encoded;
7125 else
7126 document = ENCODE_FILE (document);
7128 else
7129 document = ENCODE_FILE (document);
7130 UNGCPRO;
7132 current_dir = ENCODE_FILE (current_dir);
7133 if (use_unicode)
7135 wchar_t document_w[MAX_PATH], current_dir_w[MAX_PATH];
7136 SHELLEXECUTEINFOW shexinfo_w;
7138 /* Encode filename, current directory and parameters, and
7139 convert operation to UTF-16. */
7140 filename_to_utf16 (SSDATA (current_dir), current_dir_w);
7141 filename_to_utf16 (SSDATA (document), document_w);
7142 doc_w = document_w;
7143 if (STRINGP (parameters))
7145 int len;
7147 parameters = ENCODE_SYSTEM (parameters);
7148 len = pMultiByteToWideChar (CP_ACP, MB_ERR_INVALID_CHARS,
7149 SSDATA (parameters), -1, NULL, 0);
7150 if (len > 32768)
7151 len = 32768;
7152 params_w = alloca (len * sizeof (wchar_t));
7153 pMultiByteToWideChar (CP_ACP, MB_ERR_INVALID_CHARS,
7154 SSDATA (parameters), -1, params_w, len);
7156 if (STRINGP (operation))
7158 /* Assume OPERATION is pure ASCII. */
7159 const char *s = SSDATA (operation);
7160 wchar_t *d;
7161 int len = SBYTES (operation) + 1;
7163 if (len > 32768)
7164 len = 32768;
7165 d = ops_w = alloca (len * sizeof (wchar_t));
7166 while (d < ops_w + len - 1)
7167 *d++ = *s++;
7168 *d = 0;
7171 /* Using ShellExecuteEx and setting the SEE_MASK_INVOKEIDLIST
7172 flag succeeds with more OPERATIONs (a.k.a. "verbs"), as it is
7173 able to invoke verbs from shortcut menu extensions, not just
7174 static verbs listed in the Registry. */
7175 memset (&shexinfo_w, 0, sizeof (shexinfo_w));
7176 shexinfo_w.cbSize = sizeof (shexinfo_w);
7177 shexinfo_w.fMask =
7178 SEE_MASK_INVOKEIDLIST | SEE_MASK_FLAG_DDEWAIT | SEE_MASK_FLAG_NO_UI;
7179 shexinfo_w.hwnd = NULL;
7180 shexinfo_w.lpVerb = ops_w;
7181 shexinfo_w.lpFile = doc_w;
7182 shexinfo_w.lpParameters = params_w;
7183 shexinfo_w.lpDirectory = current_dir_w;
7184 shexinfo_w.nShow =
7185 (INTEGERP (show_flag) ? XINT (show_flag) : SW_SHOWDEFAULT);
7186 success = ShellExecuteExW (&shexinfo_w);
7188 else
7190 char document_a[MAX_PATH], current_dir_a[MAX_PATH];
7191 SHELLEXECUTEINFOA shexinfo_a;
7193 filename_to_ansi (SSDATA (current_dir), current_dir_a);
7194 filename_to_ansi (SSDATA (document), document_a);
7195 doc_a = document_a;
7196 if (STRINGP (parameters))
7198 parameters = ENCODE_SYSTEM (parameters);
7199 params_a = SSDATA (parameters);
7201 if (STRINGP (operation))
7203 /* Assume OPERATION is pure ASCII. */
7204 ops_a = SSDATA (operation);
7206 memset (&shexinfo_a, 0, sizeof (shexinfo_a));
7207 shexinfo_a.cbSize = sizeof (shexinfo_a);
7208 shexinfo_a.fMask =
7209 SEE_MASK_INVOKEIDLIST | SEE_MASK_FLAG_DDEWAIT | SEE_MASK_FLAG_NO_UI;
7210 shexinfo_a.hwnd = NULL;
7211 shexinfo_a.lpVerb = ops_a;
7212 shexinfo_a.lpFile = doc_a;
7213 shexinfo_a.lpParameters = params_a;
7214 shexinfo_a.lpDirectory = current_dir_a;
7215 shexinfo_a.nShow =
7216 (INTEGERP (show_flag) ? XINT (show_flag) : SW_SHOWDEFAULT);
7217 success = ShellExecuteExA (&shexinfo_a);
7220 if (success)
7221 return Qt;
7223 errstr = w32_strerror (0);
7225 #endif /* !CYGWIN */
7227 /* The error string might be encoded in the locale's encoding. */
7228 if (!NILP (Vlocale_coding_system))
7230 Lisp_Object decoded =
7231 code_convert_string_norecord (build_unibyte_string (errstr),
7232 Vlocale_coding_system, 0);
7233 errstr = SSDATA (decoded);
7235 error ("ShellExecute failed: %s", errstr);
7238 /* Lookup virtual keycode from string representing the name of a
7239 non-ascii keystroke into the corresponding virtual key, using
7240 lispy_function_keys. */
7241 static int
7242 lookup_vk_code (char *key)
7244 int i;
7246 for (i = 0; i < 256; i++)
7247 if (lispy_function_keys[i]
7248 && strcmp (lispy_function_keys[i], key) == 0)
7249 return i;
7251 return -1;
7254 /* Convert a one-element vector style key sequence to a hot key
7255 definition. */
7256 static Lisp_Object
7257 w32_parse_hot_key (Lisp_Object key)
7259 /* Copied from Fdefine_key and store_in_keymap. */
7260 register Lisp_Object c;
7261 int vk_code;
7262 int lisp_modifiers;
7263 int w32_modifiers;
7264 struct gcpro gcpro1;
7266 CHECK_VECTOR (key);
7268 if (ASIZE (key) != 1)
7269 return Qnil;
7271 GCPRO1 (key);
7273 c = AREF (key, 0);
7275 if (CONSP (c) && lucid_event_type_list_p (c))
7276 c = Fevent_convert_list (c);
7278 UNGCPRO;
7280 if (! INTEGERP (c) && ! SYMBOLP (c))
7281 error ("Key definition is invalid");
7283 /* Work out the base key and the modifiers. */
7284 if (SYMBOLP (c))
7286 c = parse_modifiers (c);
7287 lisp_modifiers = XINT (Fcar (Fcdr (c)));
7288 c = Fcar (c);
7289 if (!SYMBOLP (c))
7290 emacs_abort ();
7291 vk_code = lookup_vk_code (SDATA (SYMBOL_NAME (c)));
7293 else if (INTEGERP (c))
7295 lisp_modifiers = XINT (c) & ~CHARACTERBITS;
7296 /* Many ascii characters are their own virtual key code. */
7297 vk_code = XINT (c) & CHARACTERBITS;
7300 if (vk_code < 0 || vk_code > 255)
7301 return Qnil;
7303 if ((lisp_modifiers & meta_modifier) != 0
7304 && !NILP (Vw32_alt_is_meta))
7305 lisp_modifiers |= alt_modifier;
7307 /* Supply defs missing from mingw32. */
7308 #ifndef MOD_ALT
7309 #define MOD_ALT 0x0001
7310 #define MOD_CONTROL 0x0002
7311 #define MOD_SHIFT 0x0004
7312 #define MOD_WIN 0x0008
7313 #endif
7315 /* Convert lisp modifiers to Windows hot-key form. */
7316 w32_modifiers = (lisp_modifiers & hyper_modifier) ? MOD_WIN : 0;
7317 w32_modifiers |= (lisp_modifiers & alt_modifier) ? MOD_ALT : 0;
7318 w32_modifiers |= (lisp_modifiers & ctrl_modifier) ? MOD_CONTROL : 0;
7319 w32_modifiers |= (lisp_modifiers & shift_modifier) ? MOD_SHIFT : 0;
7321 return HOTKEY (vk_code, w32_modifiers);
7324 DEFUN ("w32-register-hot-key", Fw32_register_hot_key,
7325 Sw32_register_hot_key, 1, 1, 0,
7326 doc: /* Register KEY as a hot-key combination.
7327 Certain key combinations like Alt-Tab are reserved for system use on
7328 Windows, and therefore are normally intercepted by the system. However,
7329 most of these key combinations can be received by registering them as
7330 hot-keys, overriding their special meaning.
7332 KEY must be a one element key definition in vector form that would be
7333 acceptable to `define-key' (e.g. [A-tab] for Alt-Tab). The meta
7334 modifier is interpreted as Alt if `w32-alt-is-meta' is t, and hyper
7335 is always interpreted as the Windows modifier keys.
7337 The return value is the hotkey-id if registered, otherwise nil. */)
7338 (Lisp_Object key)
7340 key = w32_parse_hot_key (key);
7342 if (!NILP (key) && NILP (Fmemq (key, w32_grabbed_keys)))
7344 /* Reuse an empty slot if possible. */
7345 Lisp_Object item = Fmemq (Qnil, w32_grabbed_keys);
7347 /* Safe to add new key to list, even if we have focus. */
7348 if (NILP (item))
7349 w32_grabbed_keys = Fcons (key, w32_grabbed_keys);
7350 else
7351 XSETCAR (item, key);
7353 /* Notify input thread about new hot-key definition, so that it
7354 takes effect without needing to switch focus. */
7355 PostThreadMessage (dwWindowsThreadId, WM_EMACS_REGISTER_HOT_KEY,
7356 (WPARAM) XINT (key), 0);
7359 return key;
7362 DEFUN ("w32-unregister-hot-key", Fw32_unregister_hot_key,
7363 Sw32_unregister_hot_key, 1, 1, 0,
7364 doc: /* Unregister KEY as a hot-key combination. */)
7365 (Lisp_Object key)
7367 Lisp_Object item;
7369 if (!INTEGERP (key))
7370 key = w32_parse_hot_key (key);
7372 item = Fmemq (key, w32_grabbed_keys);
7374 if (!NILP (item))
7376 LPARAM lparam;
7378 eassert (CONSP (item));
7379 /* Pass the tail of the list as a pointer to a Lisp_Cons cell,
7380 so that it works in a --with-wide-int build as well. */
7381 lparam = (LPARAM) XUNTAG (item, Lisp_Cons);
7383 /* Notify input thread about hot-key definition being removed, so
7384 that it takes effect without needing focus switch. */
7385 if (PostThreadMessage (dwWindowsThreadId, WM_EMACS_UNREGISTER_HOT_KEY,
7386 (WPARAM) XINT (XCAR (item)), lparam))
7388 MSG msg;
7389 GetMessage (&msg, NULL, WM_EMACS_DONE, WM_EMACS_DONE);
7391 return Qt;
7393 return Qnil;
7396 DEFUN ("w32-registered-hot-keys", Fw32_registered_hot_keys,
7397 Sw32_registered_hot_keys, 0, 0, 0,
7398 doc: /* Return list of registered hot-key IDs. */)
7399 (void)
7401 return Fdelq (Qnil, Fcopy_sequence (w32_grabbed_keys));
7404 DEFUN ("w32-reconstruct-hot-key", Fw32_reconstruct_hot_key,
7405 Sw32_reconstruct_hot_key, 1, 1, 0,
7406 doc: /* Convert hot-key ID to a lisp key combination.
7407 usage: (w32-reconstruct-hot-key ID) */)
7408 (Lisp_Object hotkeyid)
7410 int vk_code, w32_modifiers;
7411 Lisp_Object key;
7413 CHECK_NUMBER (hotkeyid);
7415 vk_code = HOTKEY_VK_CODE (hotkeyid);
7416 w32_modifiers = HOTKEY_MODIFIERS (hotkeyid);
7418 if (vk_code < 256 && lispy_function_keys[vk_code])
7419 key = intern (lispy_function_keys[vk_code]);
7420 else
7421 key = make_number (vk_code);
7423 key = Fcons (key, Qnil);
7424 if (w32_modifiers & MOD_SHIFT)
7425 key = Fcons (Qshift, key);
7426 if (w32_modifiers & MOD_CONTROL)
7427 key = Fcons (Qctrl, key);
7428 if (w32_modifiers & MOD_ALT)
7429 key = Fcons (NILP (Vw32_alt_is_meta) ? Qalt : Qmeta, key);
7430 if (w32_modifiers & MOD_WIN)
7431 key = Fcons (Qhyper, key);
7433 return key;
7436 DEFUN ("w32-toggle-lock-key", Fw32_toggle_lock_key,
7437 Sw32_toggle_lock_key, 1, 2, 0,
7438 doc: /* Toggle the state of the lock key KEY.
7439 KEY can be `capslock', `kp-numlock', or `scroll'.
7440 If the optional parameter NEW-STATE is a number, then the state of KEY
7441 is set to off if the low bit of NEW-STATE is zero, otherwise on.
7442 If NEW-STATE is omitted or nil, the function toggles the state,
7444 Value is the new state of the key, or nil if the function failed
7445 to change the state. */)
7446 (Lisp_Object key, Lisp_Object new_state)
7448 int vk_code;
7449 LPARAM lparam;
7451 if (EQ (key, intern ("capslock")))
7452 vk_code = VK_CAPITAL;
7453 else if (EQ (key, intern ("kp-numlock")))
7454 vk_code = VK_NUMLOCK;
7455 else if (EQ (key, intern ("scroll")))
7456 vk_code = VK_SCROLL;
7457 else
7458 return Qnil;
7460 if (!dwWindowsThreadId)
7461 return make_number (w32_console_toggle_lock_key (vk_code, new_state));
7463 if (NILP (new_state))
7464 lparam = -1;
7465 else
7466 lparam = (XUINT (new_state)) & 1;
7467 if (PostThreadMessage (dwWindowsThreadId, WM_EMACS_TOGGLE_LOCK_KEY,
7468 (WPARAM) vk_code, lparam))
7470 MSG msg;
7471 GetMessage (&msg, NULL, WM_EMACS_DONE, WM_EMACS_DONE);
7472 return make_number (msg.wParam);
7474 return Qnil;
7477 DEFUN ("w32-window-exists-p", Fw32_window_exists_p, Sw32_window_exists_p,
7478 2, 2, 0,
7479 doc: /* Return non-nil if a window exists with the specified CLASS and NAME.
7481 This is a direct interface to the Windows API FindWindow function. */)
7482 (Lisp_Object class, Lisp_Object name)
7484 HWND hnd;
7486 if (!NILP (class))
7487 CHECK_STRING (class);
7488 if (!NILP (name))
7489 CHECK_STRING (name);
7491 hnd = FindWindow (STRINGP (class) ? ((LPCTSTR) SDATA (class)) : NULL,
7492 STRINGP (name) ? ((LPCTSTR) SDATA (name)) : NULL);
7493 if (!hnd)
7494 return Qnil;
7495 return Qt;
7498 DEFUN ("w32-frame-menu-bar-size", Fw32_frame_menu_bar_size, Sw32_frame_menu_bar_size, 0, 1, 0,
7499 doc: /* Return sizes of menu bar on frame FRAME.
7500 The return value is a list of four elements: The current width and
7501 height of FRAME's menu bar in pixels, the height of one menu bar line in
7502 a wrapped menu bar in pixels, and the height of a single line menu bar
7503 in pixels.
7505 If FRAME is omitted or nil, the selected frame is used. */)
7506 (Lisp_Object frame)
7508 struct frame *f = decode_any_frame (frame);
7509 MENUBARINFO menu_bar;
7510 int width, height, single_height, wrapped_height;
7512 block_input ();
7514 single_height = GetSystemMetrics (SM_CYMENU);
7515 wrapped_height = GetSystemMetrics (SM_CYMENUSIZE);
7516 menu_bar.cbSize = sizeof (menu_bar);
7517 menu_bar.rcBar.right = menu_bar.rcBar.left = 0;
7518 menu_bar.rcBar.top = menu_bar.rcBar.bottom = 0;
7519 GetMenuBarInfo (FRAME_W32_WINDOW (f), 0xFFFFFFFD, 0, &menu_bar);
7520 width = menu_bar.rcBar.right - menu_bar.rcBar.left;
7521 height = menu_bar.rcBar.bottom - menu_bar.rcBar.top;
7523 unblock_input ();
7525 return list4 (make_number (width), make_number (height),
7526 make_number (wrapped_height), make_number (single_height));
7529 DEFUN ("w32-frame-rect", Fw32_frame_rect, Sw32_frame_rect, 0, 2, 0,
7530 doc: /* Return boundary rectangle of FRAME in screen coordinates.
7531 FRAME must be a live frame and defaults to the selected one.
7533 The boundary rectangle is a list of four elements, specifying the left,
7534 top, right and bottom screen coordinates of FRAME including menu and
7535 title bar and decorations. Optional argument CLIENT non-nil means to
7536 return the boundaries of the client rectangle which excludes menu and
7537 title bar and decorations. */)
7538 (Lisp_Object frame, Lisp_Object client)
7540 struct frame *f = decode_live_frame (frame);
7541 RECT rect;
7543 block_input ();
7545 if (!NILP (client))
7546 GetClientRect (FRAME_W32_WINDOW (f), &rect);
7547 else
7548 GetWindowRect (FRAME_W32_WINDOW (f), &rect);
7550 unblock_input ();
7552 return list4 (make_number (rect.left), make_number (rect.top),
7553 make_number (rect.right), make_number (rect.bottom));
7556 DEFUN ("x-frame-geometry", Fx_frame_geometry, Sx_frame_geometry, 0, 1, 0,
7557 doc: /* Return geometric attributes of frame FRAME.
7558 FRAME must be a live frame and defaults to the selected one.
7560 The return value is an association list containing the following
7561 elements (all size values are in pixels).
7563 - `frame-outer-size' is a cons of the outer width and height of FRAME.
7564 The outer size includes the title bar and the external borders as well
7565 as any menu and/or tool bar of frame.
7567 - `border' is a cons of the horizontal and vertical width of FRAME's
7568 external borders.
7570 - `title-bar-height' is the height of the title bar of FRAME.
7572 - `menu-bar-external' if t means the menu bar is by default external
7573 (not included in the inner size of FRAME).
7575 - `menu-bar-size' is a cons of the width and height of the menu bar of
7576 FRAME.
7578 - `tool-bar-external' if t means the tool bar is by default external
7579 (not included in the inner size of FRAME).
7581 - `tool-bar-side' tells tells on which side the tool bar on FRAME is by
7582 default and can be one of `left', `top', `right' or `bottom'.
7584 - `tool-bar-size' is a cons of the width and height of the tool bar of
7585 FRAME.
7587 - `frame-inner-size' is a cons of the inner width and height of FRAME.
7588 This excludes FRAME's title bar and external border as well as any
7589 external menu and/or tool bar. */)
7590 (Lisp_Object frame)
7592 struct frame *f = decode_live_frame (frame);
7593 Lisp_Object geometry = Qnil;
7594 RECT frame_outer_edges, frame_inner_edges;
7595 MENUBARINFO menu_bar;
7596 int border_width, border_height, title_height;
7597 int single_bar_height, wrapped_bar_height, menu_bar_height;
7598 Lisp_Object fullscreen = Fframe_parameter (frame, Qfullscreen);
7600 block_input ();
7602 /* Outer frame rectangle, including outer borders and title bar. */
7603 GetWindowRect (FRAME_W32_WINDOW (f), &frame_outer_edges);
7604 /* Inner frame rectangle, excluding borders and title bar. */
7605 GetClientRect (FRAME_W32_WINDOW (f), &frame_inner_edges);
7606 /* Outer border. */
7607 border_width = GetSystemMetrics (SM_CXFRAME);
7608 border_height = GetSystemMetrics (SM_CYFRAME);
7609 /* Title bar. */
7610 title_height = GetSystemMetrics (SM_CYCAPTION);
7611 /* Menu bar. */
7612 menu_bar.cbSize = sizeof (menu_bar);
7613 menu_bar.rcBar.right = menu_bar.rcBar.left = 0;
7614 menu_bar.rcBar.top = menu_bar.rcBar.bottom = 0;
7615 GetMenuBarInfo (FRAME_W32_WINDOW (f), 0xFFFFFFFD, 0, &menu_bar);
7616 single_bar_height = GetSystemMetrics (SM_CYMENU);
7617 wrapped_bar_height = GetSystemMetrics (SM_CYMENUSIZE);
7618 unblock_input ();
7620 menu_bar_height = menu_bar.rcBar.bottom - menu_bar.rcBar.top;
7621 /* Fix menu bar height reported by GetMenuBarInfo. */
7622 if (menu_bar_height > single_bar_height)
7623 /* A wrapped menu bar. */
7624 menu_bar_height += single_bar_height - wrapped_bar_height;
7625 else if (menu_bar_height > 0)
7626 /* A single line menu bar. */
7627 menu_bar_height = single_bar_height;
7629 return
7630 listn (CONSTYPE_HEAP, 10,
7631 Fcons (Qframe_position,
7632 Fcons (make_number (frame_outer_edges.left),
7633 make_number (frame_outer_edges.top))),
7634 Fcons (Qframe_outer_size,
7635 Fcons (make_number
7636 (frame_outer_edges.right - frame_outer_edges.left),
7637 make_number
7638 (frame_outer_edges.bottom - frame_outer_edges.top))),
7639 Fcons (Qexternal_border_size,
7640 ((EQ (fullscreen, Qfullboth) || EQ (fullscreen, Qfullscreen))
7641 ? Fcons (make_number (0), make_number (0))
7642 : Fcons (make_number (border_width),
7643 make_number (border_height)))),
7644 Fcons (Qtitle_height,
7645 ((EQ (fullscreen, Qfullboth) || EQ (fullscreen, Qfullscreen))
7646 ? make_number (0)
7647 : make_number (title_height))),
7648 Fcons (Qmenu_bar_external, Qt),
7649 Fcons (Qmenu_bar_size,
7650 Fcons (make_number
7651 (menu_bar.rcBar.right - menu_bar.rcBar.left),
7652 make_number (menu_bar_height))),
7653 Fcons (Qtool_bar_external, Qnil),
7654 Fcons (Qtool_bar_position, Qtop),
7655 Fcons (Qtool_bar_size,
7656 Fcons (make_number (FRAME_TOOL_BAR_LINES (f)
7657 ? (FRAME_PIXEL_WIDTH (f)
7658 - 2 * FRAME_INTERNAL_BORDER_WIDTH (f))
7659 : 0),
7660 make_number (FRAME_TOOL_BAR_HEIGHT (f)))),
7661 Fcons (Qframe_inner_size,
7662 Fcons (make_number
7663 (frame_inner_edges.right - frame_inner_edges.left),
7664 make_number
7665 (frame_inner_edges.bottom - frame_inner_edges.top))));
7668 DEFUN ("w32-battery-status", Fw32_battery_status, Sw32_battery_status, 0, 0, 0,
7669 doc: /* Get power status information from Windows system.
7671 The following %-sequences are provided:
7672 %L AC line status (verbose)
7673 %B Battery status (verbose)
7674 %b Battery status, empty means high, `-' means low,
7675 `!' means critical, and `+' means charging
7676 %p Battery load percentage
7677 %s Remaining time (to charge or discharge) in seconds
7678 %m Remaining time (to charge or discharge) in minutes
7679 %h Remaining time (to charge or discharge) in hours
7680 %t Remaining time (to charge or discharge) in the form `h:min' */)
7681 (void)
7683 Lisp_Object status = Qnil;
7685 SYSTEM_POWER_STATUS system_status;
7686 if (GetSystemPowerStatus (&system_status))
7688 Lisp_Object line_status, battery_status, battery_status_symbol;
7689 Lisp_Object load_percentage, seconds, minutes, hours, remain;
7691 long seconds_left = (long) system_status.BatteryLifeTime;
7693 if (system_status.ACLineStatus == 0)
7694 line_status = build_string ("off-line");
7695 else if (system_status.ACLineStatus == 1)
7696 line_status = build_string ("on-line");
7697 else
7698 line_status = build_string ("N/A");
7700 if (system_status.BatteryFlag & 128)
7702 battery_status = build_string ("N/A");
7703 battery_status_symbol = empty_unibyte_string;
7705 else if (system_status.BatteryFlag & 8)
7707 battery_status = build_string ("charging");
7708 battery_status_symbol = build_string ("+");
7709 if (system_status.BatteryFullLifeTime != -1L)
7710 seconds_left = system_status.BatteryFullLifeTime - seconds_left;
7712 else if (system_status.BatteryFlag & 4)
7714 battery_status = build_string ("critical");
7715 battery_status_symbol = build_string ("!");
7717 else if (system_status.BatteryFlag & 2)
7719 battery_status = build_string ("low");
7720 battery_status_symbol = build_string ("-");
7722 else if (system_status.BatteryFlag & 1)
7724 battery_status = build_string ("high");
7725 battery_status_symbol = empty_unibyte_string;
7727 else
7729 battery_status = build_string ("medium");
7730 battery_status_symbol = empty_unibyte_string;
7733 if (system_status.BatteryLifePercent > 100)
7734 load_percentage = build_string ("N/A");
7735 else
7737 char buffer[16];
7738 snprintf (buffer, 16, "%d", system_status.BatteryLifePercent);
7739 load_percentage = build_string (buffer);
7742 if (seconds_left < 0)
7743 seconds = minutes = hours = remain = build_string ("N/A");
7744 else
7746 long m;
7747 float h;
7748 char buffer[16];
7749 snprintf (buffer, 16, "%ld", seconds_left);
7750 seconds = build_string (buffer);
7752 m = seconds_left / 60;
7753 snprintf (buffer, 16, "%ld", m);
7754 minutes = build_string (buffer);
7756 h = seconds_left / 3600.0;
7757 snprintf (buffer, 16, "%3.1f", h);
7758 hours = build_string (buffer);
7760 snprintf (buffer, 16, "%ld:%02ld", m / 60, m % 60);
7761 remain = build_string (buffer);
7764 status = listn (CONSTYPE_HEAP, 8,
7765 Fcons (make_number ('L'), line_status),
7766 Fcons (make_number ('B'), battery_status),
7767 Fcons (make_number ('b'), battery_status_symbol),
7768 Fcons (make_number ('p'), load_percentage),
7769 Fcons (make_number ('s'), seconds),
7770 Fcons (make_number ('m'), minutes),
7771 Fcons (make_number ('h'), hours),
7772 Fcons (make_number ('t'), remain));
7774 return status;
7778 #ifdef WINDOWSNT
7779 DEFUN ("file-system-info", Ffile_system_info, Sfile_system_info, 1, 1, 0,
7780 doc: /* Return storage information about the file system FILENAME is on.
7781 Value is a list of floats (TOTAL FREE AVAIL), where TOTAL is the total
7782 storage of the file system, FREE is the free storage, and AVAIL is the
7783 storage available to a non-superuser. All 3 numbers are in bytes.
7784 If the underlying system call fails, value is nil. */)
7785 (Lisp_Object filename)
7787 Lisp_Object encoded, value;
7789 CHECK_STRING (filename);
7790 filename = Fexpand_file_name (filename, Qnil);
7791 encoded = ENCODE_FILE (filename);
7793 value = Qnil;
7795 /* Determining the required information on Windows turns out, sadly,
7796 to be more involved than one would hope. The original Windows API
7797 call for this will return bogus information on some systems, but we
7798 must dynamically probe for the replacement api, since that was
7799 added rather late on. */
7801 HMODULE hKernel = GetModuleHandle ("kernel32");
7802 BOOL (WINAPI *pfn_GetDiskFreeSpaceExW)
7803 (wchar_t *, PULARGE_INTEGER, PULARGE_INTEGER, PULARGE_INTEGER)
7804 = GetProcAddress (hKernel, "GetDiskFreeSpaceExW");
7805 BOOL (WINAPI *pfn_GetDiskFreeSpaceExA)
7806 (char *, PULARGE_INTEGER, PULARGE_INTEGER, PULARGE_INTEGER)
7807 = GetProcAddress (hKernel, "GetDiskFreeSpaceExA");
7808 bool have_pfn_GetDiskFreeSpaceEx =
7809 ((w32_unicode_filenames && pfn_GetDiskFreeSpaceExW)
7810 || (!w32_unicode_filenames && pfn_GetDiskFreeSpaceExA));
7812 /* On Windows, we may need to specify the root directory of the
7813 volume holding FILENAME. */
7814 char rootname[MAX_UTF8_PATH];
7815 wchar_t rootname_w[MAX_PATH];
7816 char rootname_a[MAX_PATH];
7817 char *name = SDATA (encoded);
7818 BOOL result;
7820 /* find the root name of the volume if given */
7821 if (isalpha (name[0]) && name[1] == ':')
7823 rootname[0] = name[0];
7824 rootname[1] = name[1];
7825 rootname[2] = '\\';
7826 rootname[3] = 0;
7828 else if (IS_DIRECTORY_SEP (name[0]) && IS_DIRECTORY_SEP (name[1]))
7830 char *str = rootname;
7831 int slashes = 4;
7834 if (IS_DIRECTORY_SEP (*name) && --slashes == 0)
7835 break;
7836 *str++ = *name++;
7838 while ( *name );
7840 *str++ = '\\';
7841 *str = 0;
7844 if (w32_unicode_filenames)
7845 filename_to_utf16 (rootname, rootname_w);
7846 else
7847 filename_to_ansi (rootname, rootname_a);
7849 if (have_pfn_GetDiskFreeSpaceEx)
7851 /* Unsigned large integers cannot be cast to double, so
7852 use signed ones instead. */
7853 LARGE_INTEGER availbytes;
7854 LARGE_INTEGER freebytes;
7855 LARGE_INTEGER totalbytes;
7857 if (w32_unicode_filenames)
7858 result = pfn_GetDiskFreeSpaceExW (rootname_w,
7859 (ULARGE_INTEGER *)&availbytes,
7860 (ULARGE_INTEGER *)&totalbytes,
7861 (ULARGE_INTEGER *)&freebytes);
7862 else
7863 result = pfn_GetDiskFreeSpaceExA (rootname_a,
7864 (ULARGE_INTEGER *)&availbytes,
7865 (ULARGE_INTEGER *)&totalbytes,
7866 (ULARGE_INTEGER *)&freebytes);
7867 if (result)
7868 value = list3 (make_float ((double) totalbytes.QuadPart),
7869 make_float ((double) freebytes.QuadPart),
7870 make_float ((double) availbytes.QuadPart));
7872 else
7874 DWORD sectors_per_cluster;
7875 DWORD bytes_per_sector;
7876 DWORD free_clusters;
7877 DWORD total_clusters;
7879 if (w32_unicode_filenames)
7880 result = GetDiskFreeSpaceW (rootname_w,
7881 &sectors_per_cluster,
7882 &bytes_per_sector,
7883 &free_clusters,
7884 &total_clusters);
7885 else
7886 result = GetDiskFreeSpaceA (rootname_a,
7887 &sectors_per_cluster,
7888 &bytes_per_sector,
7889 &free_clusters,
7890 &total_clusters);
7891 if (result)
7892 value = list3 (make_float ((double) total_clusters
7893 * sectors_per_cluster * bytes_per_sector),
7894 make_float ((double) free_clusters
7895 * sectors_per_cluster * bytes_per_sector),
7896 make_float ((double) free_clusters
7897 * sectors_per_cluster * bytes_per_sector));
7901 return value;
7903 #endif /* WINDOWSNT */
7906 #ifdef WINDOWSNT
7907 DEFUN ("default-printer-name", Fdefault_printer_name, Sdefault_printer_name,
7908 0, 0, 0, doc: /* Return the name of Windows default printer device. */)
7909 (void)
7911 static char pname_buf[256];
7912 int err;
7913 HANDLE hPrn;
7914 PRINTER_INFO_2W *ppi2w = NULL;
7915 PRINTER_INFO_2A *ppi2a = NULL;
7916 DWORD dwNeeded = 0, dwReturned = 0;
7917 char server_name[MAX_UTF8_PATH], share_name[MAX_UTF8_PATH];
7918 char port_name[MAX_UTF8_PATH];
7920 /* Retrieve the default string from Win.ini (the registry).
7921 * String will be in form "printername,drivername,portname".
7922 * This is the most portable way to get the default printer. */
7923 if (GetProfileString ("windows", "device", ",,", pname_buf, sizeof (pname_buf)) <= 0)
7924 return Qnil;
7925 /* printername precedes first "," character */
7926 strtok (pname_buf, ",");
7927 /* We want to know more than the printer name */
7928 if (!OpenPrinter (pname_buf, &hPrn, NULL))
7929 return Qnil;
7930 /* GetPrinterW is not supported by unicows.dll. */
7931 if (w32_unicode_filenames && os_subtype != OS_9X)
7932 GetPrinterW (hPrn, 2, NULL, 0, &dwNeeded);
7933 else
7934 GetPrinterA (hPrn, 2, NULL, 0, &dwNeeded);
7935 if (dwNeeded == 0)
7937 ClosePrinter (hPrn);
7938 return Qnil;
7940 /* Call GetPrinter again with big enough memory block. */
7941 if (w32_unicode_filenames && os_subtype != OS_9X)
7943 /* Allocate memory for the PRINTER_INFO_2 struct. */
7944 ppi2w = xmalloc (dwNeeded);
7945 err = GetPrinterW (hPrn, 2, (LPBYTE)ppi2w, dwNeeded, &dwReturned);
7946 ClosePrinter (hPrn);
7947 if (!err)
7949 xfree (ppi2w);
7950 return Qnil;
7953 if ((ppi2w->Attributes & PRINTER_ATTRIBUTE_SHARED)
7954 && ppi2w->pServerName)
7956 filename_from_utf16 (ppi2w->pServerName, server_name);
7957 filename_from_utf16 (ppi2w->pShareName, share_name);
7959 else
7961 server_name[0] = '\0';
7962 filename_from_utf16 (ppi2w->pPortName, port_name);
7965 else
7967 ppi2a = xmalloc (dwNeeded);
7968 err = GetPrinterA (hPrn, 2, (LPBYTE)ppi2a, dwNeeded, &dwReturned);
7969 ClosePrinter (hPrn);
7970 if (!err)
7972 xfree (ppi2a);
7973 return Qnil;
7976 if ((ppi2a->Attributes & PRINTER_ATTRIBUTE_SHARED)
7977 && ppi2a->pServerName)
7979 filename_from_ansi (ppi2a->pServerName, server_name);
7980 filename_from_ansi (ppi2a->pShareName, share_name);
7982 else
7984 server_name[0] = '\0';
7985 filename_from_ansi (ppi2a->pPortName, port_name);
7989 if (server_name[0])
7991 /* a remote printer */
7992 if (server_name[0] == '\\')
7993 snprintf (pname_buf, sizeof (pname_buf), "%s\\%s", server_name,
7994 share_name);
7995 else
7996 snprintf (pname_buf, sizeof (pname_buf), "\\\\%s\\%s", server_name,
7997 share_name);
7998 pname_buf[sizeof (pname_buf) - 1] = '\0';
8000 else
8002 /* a local printer */
8003 strncpy (pname_buf, port_name, sizeof (pname_buf));
8004 pname_buf[sizeof (pname_buf) - 1] = '\0';
8005 /* `pPortName' can include several ports, delimited by ','.
8006 * we only use the first one. */
8007 strtok (pname_buf, ",");
8010 return DECODE_FILE (build_unibyte_string (pname_buf));
8012 #endif /* WINDOWSNT */
8015 /* Equivalent of strerror for W32 error codes. */
8016 char *
8017 w32_strerror (int error_no)
8019 static char buf[500];
8020 DWORD ret;
8022 if (error_no == 0)
8023 error_no = GetLastError ();
8025 ret = FormatMessage (FORMAT_MESSAGE_FROM_SYSTEM |
8026 FORMAT_MESSAGE_IGNORE_INSERTS,
8027 NULL,
8028 error_no,
8029 0, /* choose most suitable language */
8030 buf, sizeof (buf), NULL);
8032 while (ret > 0 && (buf[ret - 1] == '\n' ||
8033 buf[ret - 1] == '\r' ))
8034 --ret;
8035 buf[ret] = '\0';
8036 if (!ret)
8037 sprintf (buf, "w32 error %u", error_no);
8039 return buf;
8042 /* For convenience when debugging. (You cannot call GetLastError
8043 directly from GDB: it will crash, because it uses the __stdcall
8044 calling convention, not the _cdecl convention assumed by GDB.) */
8045 DWORD
8046 w32_last_error (void)
8048 return GetLastError ();
8051 /* Cache information describing the NT system for later use. */
8052 void
8053 cache_system_info (void)
8055 union
8057 struct info
8059 char major;
8060 char minor;
8061 short platform;
8062 } info;
8063 DWORD data;
8064 } version;
8066 /* Cache the module handle of Emacs itself. */
8067 hinst = GetModuleHandle (NULL);
8069 /* Cache the version of the operating system. */
8070 version.data = GetVersion ();
8071 w32_major_version = version.info.major;
8072 w32_minor_version = version.info.minor;
8074 if (version.info.platform & 0x8000)
8075 os_subtype = OS_9X;
8076 else
8077 os_subtype = OS_NT;
8079 /* Cache page size, allocation unit, processor type, etc. */
8080 GetSystemInfo (&sysinfo_cache);
8081 syspage_mask = (DWORD_PTR)sysinfo_cache.dwPageSize - 1;
8083 /* Cache os info. */
8084 osinfo_cache.dwOSVersionInfoSize = sizeof (OSVERSIONINFO);
8085 GetVersionEx (&osinfo_cache);
8087 w32_build_number = osinfo_cache.dwBuildNumber;
8088 if (os_subtype == OS_9X)
8089 w32_build_number &= 0xffff;
8091 w32_num_mouse_buttons = GetSystemMetrics (SM_CMOUSEBUTTONS);
8094 #ifdef EMACSDEBUG
8095 void
8096 _DebPrint (const char *fmt, ...)
8098 char buf[1024];
8099 va_list args;
8101 va_start (args, fmt);
8102 vsprintf (buf, fmt, args);
8103 va_end (args);
8104 #if CYGWIN
8105 fprintf (stderr, "%s", buf);
8106 #endif
8107 OutputDebugString (buf);
8109 #endif
8112 w32_console_toggle_lock_key (int vk_code, Lisp_Object new_state)
8114 int cur_state = (GetKeyState (vk_code) & 1);
8116 if (NILP (new_state)
8117 || (NUMBERP (new_state)
8118 && ((XUINT (new_state)) & 1) != cur_state))
8120 #ifdef WINDOWSNT
8121 faked_key = vk_code;
8122 #endif /* WINDOWSNT */
8124 keybd_event ((BYTE) vk_code,
8125 (BYTE) MapVirtualKey (vk_code, 0),
8126 KEYEVENTF_EXTENDEDKEY | KEYEVENTF_KEYUP, 0);
8127 keybd_event ((BYTE) vk_code,
8128 (BYTE) MapVirtualKey (vk_code, 0),
8129 KEYEVENTF_EXTENDEDKEY | 0, 0);
8130 keybd_event ((BYTE) vk_code,
8131 (BYTE) MapVirtualKey (vk_code, 0),
8132 KEYEVENTF_EXTENDEDKEY | KEYEVENTF_KEYUP, 0);
8133 cur_state = !cur_state;
8136 return cur_state;
8139 /* Translate console modifiers to emacs modifiers.
8140 German keyboard support (Kai Morgan Zeise 2/18/95). */
8142 w32_kbd_mods_to_emacs (DWORD mods, WORD key)
8144 int retval = 0;
8146 /* If we recognize right-alt and left-ctrl as AltGr, and it has been
8147 pressed, first remove those modifiers. */
8148 if (!NILP (Vw32_recognize_altgr)
8149 && (mods & (RIGHT_ALT_PRESSED | LEFT_CTRL_PRESSED))
8150 == (RIGHT_ALT_PRESSED | LEFT_CTRL_PRESSED))
8151 mods &= ~ (RIGHT_ALT_PRESSED | LEFT_CTRL_PRESSED);
8153 if (mods & (RIGHT_ALT_PRESSED | LEFT_ALT_PRESSED))
8154 retval = ((NILP (Vw32_alt_is_meta)) ? alt_modifier : meta_modifier);
8156 if (mods & (RIGHT_CTRL_PRESSED | LEFT_CTRL_PRESSED))
8158 retval |= ctrl_modifier;
8159 if ((mods & (RIGHT_CTRL_PRESSED | LEFT_CTRL_PRESSED))
8160 == (RIGHT_CTRL_PRESSED | LEFT_CTRL_PRESSED))
8161 retval |= meta_modifier;
8164 if (mods & LEFT_WIN_PRESSED)
8165 retval |= w32_key_to_modifier (VK_LWIN);
8166 if (mods & RIGHT_WIN_PRESSED)
8167 retval |= w32_key_to_modifier (VK_RWIN);
8168 if (mods & APPS_PRESSED)
8169 retval |= w32_key_to_modifier (VK_APPS);
8170 if (mods & SCROLLLOCK_ON)
8171 retval |= w32_key_to_modifier (VK_SCROLL);
8173 /* Just in case someone wanted the original behavior, make it
8174 optional by setting w32-capslock-is-shiftlock to t. */
8175 if (NILP (Vw32_capslock_is_shiftlock)
8176 /* Keys that should _not_ be affected by CapsLock. */
8177 && ( (key == VK_BACK)
8178 || (key == VK_TAB)
8179 || (key == VK_CLEAR)
8180 || (key == VK_RETURN)
8181 || (key == VK_ESCAPE)
8182 || ((key >= VK_SPACE) && (key <= VK_HELP))
8183 || ((key >= VK_NUMPAD0) && (key <= VK_F24))
8184 || ((key >= VK_NUMPAD_CLEAR) && (key <= VK_NUMPAD_DELETE))
8187 /* Only consider shift state. */
8188 if ((mods & SHIFT_PRESSED) != 0)
8189 retval |= shift_modifier;
8191 else
8193 /* Ignore CapsLock state if not enabled. */
8194 if (NILP (Vw32_enable_caps_lock))
8195 mods &= ~CAPSLOCK_ON;
8196 if ((mods & (SHIFT_PRESSED | CAPSLOCK_ON)) != 0)
8197 retval |= shift_modifier;
8200 return retval;
8203 /* The return code indicates key code size. cpID is the codepage to
8204 use for translation to Unicode; -1 means use the current console
8205 input codepage. */
8207 w32_kbd_patch_key (KEY_EVENT_RECORD *event, int cpId)
8209 unsigned int key_code = event->wVirtualKeyCode;
8210 unsigned int mods = event->dwControlKeyState;
8211 BYTE keystate[256];
8212 static BYTE ansi_code[4];
8213 static int isdead = 0;
8215 if (isdead == 2)
8217 event->uChar.AsciiChar = ansi_code[2];
8218 isdead = 0;
8219 return 1;
8221 if (event->uChar.AsciiChar != 0)
8222 return 1;
8224 memset (keystate, 0, sizeof (keystate));
8225 keystate[key_code] = 0x80;
8226 if (mods & SHIFT_PRESSED)
8227 keystate[VK_SHIFT] = 0x80;
8228 if (mods & CAPSLOCK_ON)
8229 keystate[VK_CAPITAL] = 1;
8230 /* If we recognize right-alt and left-ctrl as AltGr, set the key
8231 states accordingly before invoking ToAscii. */
8232 if (!NILP (Vw32_recognize_altgr)
8233 && (mods & LEFT_CTRL_PRESSED) && (mods & RIGHT_ALT_PRESSED))
8235 keystate[VK_CONTROL] = 0x80;
8236 keystate[VK_LCONTROL] = 0x80;
8237 keystate[VK_MENU] = 0x80;
8238 keystate[VK_RMENU] = 0x80;
8241 #if 0
8242 /* Because of an OS bug, ToAscii corrupts the stack when called to
8243 convert a dead key in console mode on NT4. Unfortunately, trying
8244 to check for dead keys using MapVirtualKey doesn't work either -
8245 these functions apparently use internal information about keyboard
8246 layout which doesn't get properly updated in console programs when
8247 changing layout (though apparently it gets partly updated,
8248 otherwise ToAscii wouldn't crash). */
8249 if (is_dead_key (event->wVirtualKeyCode))
8250 return 0;
8251 #endif
8253 /* On NT, call ToUnicode instead and then convert to the current
8254 console input codepage. */
8255 if (os_subtype == OS_NT)
8257 WCHAR buf[128];
8259 isdead = ToUnicode (event->wVirtualKeyCode, event->wVirtualScanCode,
8260 keystate, buf, 128, 0);
8261 if (isdead > 0)
8263 /* When we are called from the GUI message processing code,
8264 we are passed the current keyboard codepage, a positive
8265 number, to use below. */
8266 if (cpId == -1)
8267 cpId = GetConsoleCP ();
8269 event->uChar.UnicodeChar = buf[isdead - 1];
8270 isdead = WideCharToMultiByte (cpId, 0, buf, isdead,
8271 ansi_code, 4, NULL, NULL);
8273 else
8274 isdead = 0;
8276 else
8278 isdead = ToAscii (event->wVirtualKeyCode, event->wVirtualScanCode,
8279 keystate, (LPWORD) ansi_code, 0);
8282 if (isdead == 0)
8283 return 0;
8284 event->uChar.AsciiChar = ansi_code[0];
8285 return isdead;
8289 void
8290 w32_sys_ring_bell (struct frame *f)
8292 if (sound_type == 0xFFFFFFFF)
8294 Beep (666, 100);
8296 else if (sound_type == MB_EMACS_SILENT)
8298 /* Do nothing. */
8300 else
8301 MessageBeep (sound_type);
8304 DEFUN ("w32--menu-bar-in-use", Fw32__menu_bar_in_use, Sw32__menu_bar_in_use,
8305 0, 0, 0,
8306 doc: /* Return non-nil when a menu-bar menu is being used.
8307 Internal use only. */)
8308 (void)
8310 return menubar_in_use ? Qt : Qnil;
8314 /***********************************************************************
8315 Initialization
8316 ***********************************************************************/
8318 /* Keep this list in the same order as frame_parms in frame.c.
8319 Use 0 for unsupported frame parameters. */
8321 frame_parm_handler w32_frame_parm_handlers[] =
8323 x_set_autoraise,
8324 x_set_autolower,
8325 x_set_background_color,
8326 x_set_border_color,
8327 x_set_border_width,
8328 x_set_cursor_color,
8329 x_set_cursor_type,
8330 x_set_font,
8331 x_set_foreground_color,
8332 x_set_icon_name,
8333 x_set_icon_type,
8334 x_set_internal_border_width,
8335 x_set_right_divider_width,
8336 x_set_bottom_divider_width,
8337 x_set_menu_bar_lines,
8338 x_set_mouse_color,
8339 x_explicitly_set_name,
8340 x_set_scroll_bar_width,
8341 x_set_scroll_bar_height,
8342 x_set_title,
8343 x_set_unsplittable,
8344 x_set_vertical_scroll_bars,
8345 x_set_horizontal_scroll_bars,
8346 x_set_visibility,
8347 x_set_tool_bar_lines,
8348 0, /* x_set_scroll_bar_foreground, */
8349 0, /* x_set_scroll_bar_background, */
8350 x_set_screen_gamma,
8351 x_set_line_spacing,
8352 x_set_left_fringe,
8353 x_set_right_fringe,
8354 0, /* x_set_wait_for_wm, */
8355 x_set_fullscreen,
8356 x_set_font_backend,
8357 x_set_alpha,
8358 0, /* x_set_sticky */
8359 0, /* x_set_tool_bar_position */
8362 void
8363 syms_of_w32fns (void)
8365 globals_of_w32fns ();
8366 track_mouse_window = NULL;
8368 w32_visible_system_caret_hwnd = NULL;
8370 DEFSYM (Qundefined_color, "undefined-color");
8371 DEFSYM (Qcancel_timer, "cancel-timer");
8372 DEFSYM (Qhyper, "hyper");
8373 DEFSYM (Qsuper, "super");
8374 DEFSYM (Qmeta, "meta");
8375 DEFSYM (Qalt, "alt");
8376 DEFSYM (Qctrl, "ctrl");
8377 DEFSYM (Qcontrol, "control");
8378 DEFSYM (Qshift, "shift");
8379 DEFSYM (Qfont_param, "font-parameter");
8380 DEFSYM (Qgeometry, "geometry");
8381 DEFSYM (Qworkarea, "workarea");
8382 DEFSYM (Qmm_size, "mm-size");
8383 DEFSYM (Qframes, "frames");
8384 DEFSYM (Qtip_frame, "tip-frame");
8385 DEFSYM (Qunicode_sip, "unicode-sip");
8387 /* Symbols used elsewhere, but only in MS-Windows-specific code. */
8388 DEFSYM (Qgnutls_dll, "gnutls");
8389 DEFSYM (Qlibxml2_dll, "libxml2");
8390 DEFSYM (Qserif, "serif");
8391 DEFSYM (Qzlib_dll, "zlib");
8393 Fput (Qundefined_color, Qerror_conditions,
8394 listn (CONSTYPE_PURE, 2, Qundefined_color, Qerror));
8395 Fput (Qundefined_color, Qerror_message,
8396 build_pure_c_string ("Undefined color"));
8398 staticpro (&w32_grabbed_keys);
8399 w32_grabbed_keys = Qnil;
8401 DEFVAR_LISP ("w32-color-map", Vw32_color_map,
8402 doc: /* An array of color name mappings for Windows. */);
8403 Vw32_color_map = Qnil;
8405 DEFVAR_LISP ("w32-pass-alt-to-system", Vw32_pass_alt_to_system,
8406 doc: /* Non-nil if Alt key presses are passed on to Windows.
8407 When non-nil, for example, Alt pressed and released and then space will
8408 open the System menu. When nil, Emacs processes the Alt key events, and
8409 then silently swallows them. */);
8410 Vw32_pass_alt_to_system = Qnil;
8412 DEFVAR_LISP ("w32-alt-is-meta", Vw32_alt_is_meta,
8413 doc: /* Non-nil if the Alt key is to be considered the same as the META key.
8414 When nil, Emacs will translate the Alt key to the ALT modifier, not to META. */);
8415 Vw32_alt_is_meta = Qt;
8417 DEFVAR_INT ("w32-quit-key", w32_quit_key,
8418 doc: /* If non-zero, the virtual key code for an alternative quit key. */);
8419 w32_quit_key = 0;
8421 DEFVAR_LISP ("w32-pass-lwindow-to-system",
8422 Vw32_pass_lwindow_to_system,
8423 doc: /* If non-nil, the left \"Windows\" key is passed on to Windows.
8425 When non-nil, the Start menu is opened by tapping the key.
8426 If you set this to nil, the left \"Windows\" key is processed by Emacs
8427 according to the value of `w32-lwindow-modifier', which see.
8429 Note that some combinations of the left \"Windows\" key with other keys are
8430 caught by Windows at low level, and so binding them in Emacs will have no
8431 effect. For example, <lwindow>-r always pops up the Windows Run dialog,
8432 <lwindow>-<Pause> pops up the "System Properties" dialog, etc. However, see
8433 the doc string of `w32-phantom-key-code'. */);
8434 Vw32_pass_lwindow_to_system = Qt;
8436 DEFVAR_LISP ("w32-pass-rwindow-to-system",
8437 Vw32_pass_rwindow_to_system,
8438 doc: /* If non-nil, the right \"Windows\" key is passed on to Windows.
8440 When non-nil, the Start menu is opened by tapping the key.
8441 If you set this to nil, the right \"Windows\" key is processed by Emacs
8442 according to the value of `w32-rwindow-modifier', which see.
8444 Note that some combinations of the right \"Windows\" key with other keys are
8445 caught by Windows at low level, and so binding them in Emacs will have no
8446 effect. For example, <rwindow>-r always pops up the Windows Run dialog,
8447 <rwindow>-<Pause> pops up the "System Properties" dialog, etc. However, see
8448 the doc string of `w32-phantom-key-code'. */);
8449 Vw32_pass_rwindow_to_system = Qt;
8451 DEFVAR_LISP ("w32-phantom-key-code",
8452 Vw32_phantom_key_code,
8453 doc: /* Virtual key code used to generate \"phantom\" key presses.
8454 Value is a number between 0 and 255.
8456 Phantom key presses are generated in order to stop the system from
8457 acting on \"Windows\" key events when `w32-pass-lwindow-to-system' or
8458 `w32-pass-rwindow-to-system' is nil. */);
8459 /* Although 255 is technically not a valid key code, it works and
8460 means that this hack won't interfere with any real key code. */
8461 XSETINT (Vw32_phantom_key_code, 255);
8463 DEFVAR_LISP ("w32-enable-num-lock",
8464 Vw32_enable_num_lock,
8465 doc: /* If non-nil, the Num Lock key acts normally.
8466 Set to nil to handle Num Lock as the `kp-numlock' key. */);
8467 Vw32_enable_num_lock = Qt;
8469 DEFVAR_LISP ("w32-enable-caps-lock",
8470 Vw32_enable_caps_lock,
8471 doc: /* If non-nil, the Caps Lock key acts normally.
8472 Set to nil to handle Caps Lock as the `capslock' key. */);
8473 Vw32_enable_caps_lock = Qt;
8475 DEFVAR_LISP ("w32-scroll-lock-modifier",
8476 Vw32_scroll_lock_modifier,
8477 doc: /* Modifier to use for the Scroll Lock ON state.
8478 The value can be hyper, super, meta, alt, control or shift for the
8479 respective modifier, or nil to handle Scroll Lock as the `scroll' key.
8480 Any other value will cause the Scroll Lock key to be ignored. */);
8481 Vw32_scroll_lock_modifier = Qnil;
8483 DEFVAR_LISP ("w32-lwindow-modifier",
8484 Vw32_lwindow_modifier,
8485 doc: /* Modifier to use for the left \"Windows\" key.
8486 The value can be hyper, super, meta, alt, control or shift for the
8487 respective modifier, or nil to appear as the `lwindow' key.
8488 Any other value will cause the key to be ignored. */);
8489 Vw32_lwindow_modifier = Qnil;
8491 DEFVAR_LISP ("w32-rwindow-modifier",
8492 Vw32_rwindow_modifier,
8493 doc: /* Modifier to use for the right \"Windows\" key.
8494 The value can be hyper, super, meta, alt, control or shift for the
8495 respective modifier, or nil to appear as the `rwindow' key.
8496 Any other value will cause the key to be ignored. */);
8497 Vw32_rwindow_modifier = Qnil;
8499 DEFVAR_LISP ("w32-apps-modifier",
8500 Vw32_apps_modifier,
8501 doc: /* Modifier to use for the \"Apps\" key.
8502 The value can be hyper, super, meta, alt, control or shift for the
8503 respective modifier, or nil to appear as the `apps' key.
8504 Any other value will cause the key to be ignored. */);
8505 Vw32_apps_modifier = Qnil;
8507 DEFVAR_BOOL ("w32-enable-synthesized-fonts", w32_enable_synthesized_fonts,
8508 doc: /* Non-nil enables selection of artificially italicized and bold fonts. */);
8509 w32_enable_synthesized_fonts = 0;
8511 DEFVAR_LISP ("w32-enable-palette", Vw32_enable_palette,
8512 doc: /* Non-nil enables Windows palette management to map colors exactly. */);
8513 Vw32_enable_palette = Qt;
8515 DEFVAR_INT ("w32-mouse-button-tolerance",
8516 w32_mouse_button_tolerance,
8517 doc: /* Analogue of double click interval for faking middle mouse events.
8518 The value is the minimum time in milliseconds that must elapse between
8519 left and right button down events before they are considered distinct events.
8520 If both mouse buttons are depressed within this interval, a middle mouse
8521 button down event is generated instead. */);
8522 w32_mouse_button_tolerance = GetDoubleClickTime () / 2;
8524 DEFVAR_INT ("w32-mouse-move-interval",
8525 w32_mouse_move_interval,
8526 doc: /* Minimum interval between mouse move events.
8527 The value is the minimum time in milliseconds that must elapse between
8528 successive mouse move (or scroll bar drag) events before they are
8529 reported as lisp events. */);
8530 w32_mouse_move_interval = 0;
8532 DEFVAR_BOOL ("w32-pass-extra-mouse-buttons-to-system",
8533 w32_pass_extra_mouse_buttons_to_system,
8534 doc: /* If non-nil, the fourth and fifth mouse buttons are passed to Windows.
8535 Recent versions of Windows support mice with up to five buttons.
8536 Since most applications don't support these extra buttons, most mouse
8537 drivers will allow you to map them to functions at the system level.
8538 If this variable is non-nil, Emacs will pass them on, allowing the
8539 system to handle them. */);
8540 w32_pass_extra_mouse_buttons_to_system = 0;
8542 DEFVAR_BOOL ("w32-pass-multimedia-buttons-to-system",
8543 w32_pass_multimedia_buttons_to_system,
8544 doc: /* If non-nil, media buttons are passed to Windows.
8545 Some modern keyboards contain buttons for controlling media players, web
8546 browsers and other applications. Generally these buttons are handled on a
8547 system wide basis, but by setting this to nil they are made available
8548 to Emacs for binding. Depending on your keyboard, additional keys that
8549 may be available are:
8551 browser-back, browser-forward, browser-refresh, browser-stop,
8552 browser-search, browser-favorites, browser-home,
8553 mail, mail-reply, mail-forward, mail-send,
8554 app-1, app-2,
8555 help, find, new, open, close, save, print, undo, redo, copy, cut, paste,
8556 spell-check, correction-list, toggle-dictate-command,
8557 media-next, media-previous, media-stop, media-play-pause, media-select,
8558 media-play, media-pause, media-record, media-fast-forward, media-rewind,
8559 media-channel-up, media-channel-down,
8560 volume-mute, volume-up, volume-down,
8561 mic-volume-mute, mic-volume-down, mic-volume-up, mic-toggle,
8562 bass-down, bass-boost, bass-up, treble-down, treble-up */);
8563 w32_pass_multimedia_buttons_to_system = 1;
8565 #if 0 /* TODO: Mouse cursor customization. */
8566 DEFVAR_LISP ("x-pointer-shape", Vx_pointer_shape,
8567 doc: /* The shape of the pointer when over text.
8568 Changing the value does not affect existing frames
8569 unless you set the mouse color. */);
8570 Vx_pointer_shape = Qnil;
8572 Vx_nontext_pointer_shape = Qnil;
8574 Vx_mode_pointer_shape = Qnil;
8576 DEFVAR_LISP ("x-hourglass-pointer-shape", Vx_hourglass_pointer_shape,
8577 doc: /* The shape of the pointer when Emacs is busy.
8578 This variable takes effect when you create a new frame
8579 or when you set the mouse color. */);
8580 Vx_hourglass_pointer_shape = Qnil;
8582 DEFVAR_LISP ("x-sensitive-text-pointer-shape",
8583 Vx_sensitive_text_pointer_shape,
8584 doc: /* The shape of the pointer when over mouse-sensitive text.
8585 This variable takes effect when you create a new frame
8586 or when you set the mouse color. */);
8587 Vx_sensitive_text_pointer_shape = Qnil;
8589 DEFVAR_LISP ("x-window-horizontal-drag-cursor",
8590 Vx_window_horizontal_drag_shape,
8591 doc: /* Pointer shape to use for indicating a window can be dragged horizontally.
8592 This variable takes effect when you create a new frame
8593 or when you set the mouse color. */);
8594 Vx_window_horizontal_drag_shape = Qnil;
8596 DEFVAR_LISP ("x-window-vertical-drag-cursor",
8597 Vx_window_vertical_drag_shape,
8598 doc: /* Pointer shape to use for indicating a window can be dragged vertically.
8599 This variable takes effect when you create a new frame
8600 or when you set the mouse color. */);
8601 Vx_window_vertical_drag_shape = Qnil;
8602 #endif
8604 DEFVAR_LISP ("x-cursor-fore-pixel", Vx_cursor_fore_pixel,
8605 doc: /* A string indicating the foreground color of the cursor box. */);
8606 Vx_cursor_fore_pixel = Qnil;
8608 DEFVAR_LISP ("x-max-tooltip-size", Vx_max_tooltip_size,
8609 doc: /* Maximum size for tooltips.
8610 Value is a pair (COLUMNS . ROWS). Text larger than this is clipped. */);
8611 Vx_max_tooltip_size = Fcons (make_number (80), make_number (40));
8613 DEFVAR_LISP ("x-no-window-manager", Vx_no_window_manager,
8614 doc: /* Non-nil if no window manager is in use.
8615 Emacs doesn't try to figure this out; this is always nil
8616 unless you set it to something else. */);
8617 /* We don't have any way to find this out, so set it to nil
8618 and maybe the user would like to set it to t. */
8619 Vx_no_window_manager = Qnil;
8621 DEFVAR_LISP ("x-pixel-size-width-font-regexp",
8622 Vx_pixel_size_width_font_regexp,
8623 doc: /* Regexp matching a font name whose width is the same as `PIXEL_SIZE'.
8625 Since Emacs gets width of a font matching with this regexp from
8626 PIXEL_SIZE field of the name, font finding mechanism gets faster for
8627 such a font. This is especially effective for such large fonts as
8628 Chinese, Japanese, and Korean. */);
8629 Vx_pixel_size_width_font_regexp = Qnil;
8631 DEFVAR_LISP ("w32-bdf-filename-alist",
8632 Vw32_bdf_filename_alist,
8633 doc: /* List of bdf fonts and their corresponding filenames. */);
8634 Vw32_bdf_filename_alist = Qnil;
8636 DEFVAR_BOOL ("w32-strict-fontnames",
8637 w32_strict_fontnames,
8638 doc: /* Non-nil means only use fonts that are exact matches for those requested.
8639 Default is nil, which allows old fontnames that are not XLFD compliant,
8640 and allows third-party CJK display to work by specifying false charset
8641 fields to trick Emacs into translating to Big5, SJIS etc.
8642 Setting this to t will prevent wrong fonts being selected when
8643 fontsets are automatically created. */);
8644 w32_strict_fontnames = 0;
8646 DEFVAR_BOOL ("w32-strict-painting",
8647 w32_strict_painting,
8648 doc: /* Non-nil means use strict rules for repainting frames.
8649 Set this to nil to get the old behavior for repainting; this should
8650 only be necessary if the default setting causes problems. */);
8651 w32_strict_painting = 1;
8653 #if 0 /* TODO: Port to W32 */
8654 defsubr (&Sx_change_window_property);
8655 defsubr (&Sx_delete_window_property);
8656 defsubr (&Sx_window_property);
8657 #endif
8658 defsubr (&Sxw_display_color_p);
8659 defsubr (&Sx_display_grayscale_p);
8660 defsubr (&Sxw_color_defined_p);
8661 defsubr (&Sxw_color_values);
8662 defsubr (&Sx_server_max_request_size);
8663 defsubr (&Sx_server_vendor);
8664 defsubr (&Sx_server_version);
8665 defsubr (&Sx_display_pixel_width);
8666 defsubr (&Sx_display_pixel_height);
8667 defsubr (&Sx_display_mm_width);
8668 defsubr (&Sx_display_mm_height);
8669 defsubr (&Sx_display_screens);
8670 defsubr (&Sx_display_planes);
8671 defsubr (&Sx_display_color_cells);
8672 defsubr (&Sx_display_visual_class);
8673 defsubr (&Sx_display_backing_store);
8674 defsubr (&Sx_display_save_under);
8675 defsubr (&Sx_create_frame);
8676 defsubr (&Sx_open_connection);
8677 defsubr (&Sx_close_connection);
8678 defsubr (&Sx_display_list);
8679 defsubr (&Sx_frame_geometry);
8680 defsubr (&Sx_synchronize);
8682 /* W32 specific functions */
8684 defsubr (&Sw32_define_rgb_color);
8685 defsubr (&Sw32_default_color_map);
8686 defsubr (&Sw32_display_monitor_attributes_list);
8687 defsubr (&Sw32_send_sys_command);
8688 defsubr (&Sw32_shell_execute);
8689 defsubr (&Sw32_register_hot_key);
8690 defsubr (&Sw32_unregister_hot_key);
8691 defsubr (&Sw32_registered_hot_keys);
8692 defsubr (&Sw32_reconstruct_hot_key);
8693 defsubr (&Sw32_toggle_lock_key);
8694 defsubr (&Sw32_window_exists_p);
8695 defsubr (&Sw32_frame_rect);
8696 defsubr (&Sw32_frame_menu_bar_size);
8697 defsubr (&Sw32_battery_status);
8698 defsubr (&Sw32__menu_bar_in_use);
8700 #ifdef WINDOWSNT
8701 defsubr (&Sfile_system_info);
8702 defsubr (&Sdefault_printer_name);
8703 #endif
8705 defsubr (&Sset_message_beep);
8706 defsubr (&Sx_show_tip);
8707 defsubr (&Sx_hide_tip);
8708 tip_timer = Qnil;
8709 staticpro (&tip_timer);
8710 tip_frame = Qnil;
8711 staticpro (&tip_frame);
8713 last_show_tip_args = Qnil;
8714 staticpro (&last_show_tip_args);
8716 defsubr (&Sx_file_dialog);
8717 #ifdef WINDOWSNT
8718 defsubr (&Ssystem_move_file_to_trash);
8719 #endif
8724 /* Crashing and reporting backtrace. */
8726 #ifndef CYGWIN
8727 static LONG CALLBACK my_exception_handler (EXCEPTION_POINTERS *);
8728 static LPTOP_LEVEL_EXCEPTION_FILTER prev_exception_handler;
8729 #endif
8730 static DWORD except_code;
8731 static PVOID except_addr;
8733 #ifndef CYGWIN
8734 /* This handler records the exception code and the address where it
8735 was triggered so that this info could be included in the backtrace.
8736 Without that, the backtrace in some cases has no information
8737 whatsoever about the offending code, and looks as if the top-level
8738 exception handler in the MinGW startup code di the one that
8739 crashed. */
8740 static LONG CALLBACK
8741 my_exception_handler (EXCEPTION_POINTERS * exception_data)
8743 except_code = exception_data->ExceptionRecord->ExceptionCode;
8744 except_addr = exception_data->ExceptionRecord->ExceptionAddress;
8746 if (prev_exception_handler)
8747 return prev_exception_handler (exception_data);
8748 return EXCEPTION_EXECUTE_HANDLER;
8750 #endif
8752 typedef USHORT (WINAPI * CaptureStackBackTrace_proc) (ULONG, ULONG, PVOID *,
8753 PULONG);
8755 #define BACKTRACE_LIMIT_MAX 62
8758 w32_backtrace (void **buffer, int limit)
8760 static CaptureStackBackTrace_proc s_pfn_CaptureStackBackTrace = NULL;
8761 HMODULE hm_kernel32 = NULL;
8763 if (!s_pfn_CaptureStackBackTrace)
8765 hm_kernel32 = LoadLibrary ("Kernel32.dll");
8766 s_pfn_CaptureStackBackTrace =
8767 (CaptureStackBackTrace_proc) GetProcAddress (hm_kernel32,
8768 "RtlCaptureStackBackTrace");
8770 if (s_pfn_CaptureStackBackTrace)
8771 return s_pfn_CaptureStackBackTrace (0, min (BACKTRACE_LIMIT_MAX, limit),
8772 buffer, NULL);
8773 return 0;
8776 void
8777 emacs_abort (void)
8779 int button;
8780 button = MessageBox (NULL,
8781 "A fatal error has occurred!\n\n"
8782 "Would you like to attach a debugger?\n\n"
8783 "Select:\n"
8784 "YES -- to debug Emacs, or\n"
8785 "NO -- to abort Emacs and produce a backtrace\n"
8786 " (emacs_backtrace.txt in current directory)."
8787 #if __GNUC__
8788 "\n\n(type \"gdb -p <emacs-PID>\" and\n"
8789 "\"continue\" inside GDB before clicking YES.)"
8790 #endif
8791 , "Emacs Abort Dialog",
8792 MB_ICONEXCLAMATION | MB_TASKMODAL
8793 | MB_SETFOREGROUND | MB_YESNO);
8794 switch (button)
8796 case IDYES:
8797 DebugBreak ();
8798 exit (2); /* tell the compiler we will never return */
8799 case IDNO:
8800 default:
8802 void *stack[BACKTRACE_LIMIT_MAX + 1];
8803 int i = w32_backtrace (stack, BACKTRACE_LIMIT_MAX + 1);
8805 if (i)
8807 int errfile_fd = -1;
8808 int j;
8809 char buf[sizeof ("\r\nException at this address:\r\n\r\n")
8810 /* The type below should really be 'void *', but
8811 INT_BUFSIZE_BOUND cannot handle that without
8812 triggering compiler warnings (under certain
8813 pedantic warning switches), it wants an
8814 integer type. */
8815 + 2 * INT_BUFSIZE_BOUND (intptr_t)];
8816 #ifdef CYGWIN
8817 int stderr_fd = 2;
8818 #else
8819 HANDLE errout = GetStdHandle (STD_ERROR_HANDLE);
8820 int stderr_fd = -1;
8822 if (errout && errout != INVALID_HANDLE_VALUE)
8823 stderr_fd = _open_osfhandle ((intptr_t)errout, O_APPEND | O_BINARY);
8824 #endif
8826 /* We use %p, not 0x%p, as %p produces a leading "0x" on XP,
8827 but not on Windows 7. addr2line doesn't mind a missing
8828 "0x", but will be confused by an extra one. */
8829 if (except_addr)
8830 sprintf (buf, "\r\nException 0x%lx at this address:\r\n%p\r\n",
8831 except_code, except_addr);
8832 if (stderr_fd >= 0)
8834 if (except_addr)
8835 write (stderr_fd, buf, strlen (buf));
8836 write (stderr_fd, "\r\nBacktrace:\r\n", 14);
8838 #ifdef CYGWIN
8839 #define _open open
8840 #endif
8841 errfile_fd = _open ("emacs_backtrace.txt", O_RDWR | O_CREAT | O_BINARY, S_IREAD | S_IWRITE);
8842 if (errfile_fd >= 0)
8844 lseek (errfile_fd, 0L, SEEK_END);
8845 if (except_addr)
8846 write (errfile_fd, buf, strlen (buf));
8847 write (errfile_fd, "\r\nBacktrace:\r\n", 14);
8850 for (j = 0; j < i; j++)
8852 /* stack[] gives the return addresses, whereas we want
8853 the address of the call, so decrease each address
8854 by approximate size of 1 CALL instruction. */
8855 sprintf (buf, "%p\r\n", (char *)stack[j] - sizeof(void *));
8856 if (stderr_fd >= 0)
8857 write (stderr_fd, buf, strlen (buf));
8858 if (errfile_fd >= 0)
8859 write (errfile_fd, buf, strlen (buf));
8861 if (i == BACKTRACE_LIMIT_MAX)
8863 if (stderr_fd >= 0)
8864 write (stderr_fd, "...\r\n", 5);
8865 if (errfile_fd >= 0)
8866 write (errfile_fd, "...\r\n", 5);
8868 if (errfile_fd >= 0)
8869 close (errfile_fd);
8871 abort ();
8872 break;
8879 /* Initialization. */
8882 globals_of_w32fns is used to initialize those global variables that
8883 must always be initialized on startup even when the global variable
8884 initialized is non zero (see the function main in emacs.c).
8885 globals_of_w32fns is called from syms_of_w32fns when the global
8886 variable initialized is 0 and directly from main when initialized
8887 is non zero.
8889 void
8890 globals_of_w32fns (void)
8892 HMODULE user32_lib = GetModuleHandle ("user32.dll");
8894 TrackMouseEvent not available in all versions of Windows, so must load
8895 it dynamically. Do it once, here, instead of every time it is used.
8897 track_mouse_event_fn = (TrackMouseEvent_Proc)
8898 GetProcAddress (user32_lib, "TrackMouseEvent");
8900 monitor_from_point_fn = (MonitorFromPoint_Proc)
8901 GetProcAddress (user32_lib, "MonitorFromPoint");
8902 get_monitor_info_fn = (GetMonitorInfo_Proc)
8903 GetProcAddress (user32_lib, "GetMonitorInfoA");
8904 monitor_from_window_fn = (MonitorFromWindow_Proc)
8905 GetProcAddress (user32_lib, "MonitorFromWindow");
8906 enum_display_monitors_fn = (EnumDisplayMonitors_Proc)
8907 GetProcAddress (user32_lib, "EnumDisplayMonitors");
8910 HMODULE imm32_lib = GetModuleHandle ("imm32.dll");
8911 get_composition_string_fn = (ImmGetCompositionString_Proc)
8912 GetProcAddress (imm32_lib, "ImmGetCompositionStringW");
8913 get_ime_context_fn = (ImmGetContext_Proc)
8914 GetProcAddress (imm32_lib, "ImmGetContext");
8915 release_ime_context_fn = (ImmReleaseContext_Proc)
8916 GetProcAddress (imm32_lib, "ImmReleaseContext");
8917 set_ime_composition_window_fn = (ImmSetCompositionWindow_Proc)
8918 GetProcAddress (imm32_lib, "ImmSetCompositionWindow");
8921 except_code = 0;
8922 except_addr = 0;
8923 #ifndef CYGWIN
8924 prev_exception_handler = SetUnhandledExceptionFilter (my_exception_handler);
8925 #endif
8927 DEFVAR_INT ("w32-ansi-code-page",
8928 w32_ansi_code_page,
8929 doc: /* The ANSI code page used by the system. */);
8930 w32_ansi_code_page = GetACP ();
8932 if (os_subtype == OS_NT)
8933 w32_unicode_gui = 1;
8934 else
8935 w32_unicode_gui = 0;
8937 /* MessageBox does not work without this when linked to comctl32.dll 6.0. */
8938 InitCommonControls ();
8940 syms_of_w32uniscribe ();
8943 #ifdef NTGUI_UNICODE
8945 Lisp_Object
8946 ntgui_encode_system (Lisp_Object str)
8948 Lisp_Object encoded;
8949 to_unicode (str, &encoded);
8950 return encoded;
8953 #endif /* NTGUI_UNICODE */