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1 /* X Communication module for terminals which understand the X protocol.
2
3 Copyright (C) 1989, 1993, 1994, 1995, 1996, 1997, 1998, 1999, 2000,
4 2001, 2002, 2003, 2004, 2005, 2006, 2007, 2008, 2009, 2010
5 Free Software Foundation, Inc.
6
7 This file is part of GNU Emacs.
8
9 GNU Emacs is free software: you can redistribute it and/or modify
10 it under the terms of the GNU General Public License as published by
11 the Free Software Foundation, either version 3 of the License, or
12 (at your option) any later version.
13
14 GNU Emacs is distributed in the hope that it will be useful,
15 but WITHOUT ANY WARRANTY; without even the implied warranty of
16 MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
17 GNU General Public License for more details.
18
19 You should have received a copy of the GNU General Public License
20 along with GNU Emacs. If not, see <http://www.gnu.org/licenses/>. */
21
22 /* New display code by Gerd Moellmann <gerd@gnu.org>. */
23 /* Xt features made by Fred Pierresteguy. */
24
25 #include <config.h>
26 #include <signal.h>
27 #include <stdio.h>
28 #include <setjmp.h>
29
30 #ifdef HAVE_X_WINDOWS
31
32 #include "lisp.h"
33 #include "blockinput.h"
34
35 /* Need syssignal.h for various externs and definitions that may be required
36 by some configurations for calls to signal later in this source file. */
37 #include "syssignal.h"
38
39 /* This may include sys/types.h, and that somehow loses
40 if this is not done before the other system files. */
41 #include "xterm.h"
42 #include <X11/cursorfont.h>
43
44 /* Load sys/types.h if not already loaded.
45 In some systems loading it twice is suicidal. */
46 #ifndef makedev
47 #include <sys/types.h>
48 #endif /* makedev */
49
50 #ifdef HAVE_SYS_IOCTL_H
51 #include <sys/ioctl.h>
52 #endif /* ! defined (HAVE_SYS_IOCTL_H) */
53
54 #include "systime.h"
55
56 #include <fcntl.h>
57 #include <ctype.h>
58 #include <errno.h>
59 #include <setjmp.h>
60 #include <sys/stat.h>
61 /* Caused redefinition of DBL_DIG on Netbsd; seems not to be needed. */
62 /* #include <sys/param.h> */
63
64 #include "charset.h"
65 #include "character.h"
66 #include "coding.h"
67 #include "frame.h"
68 #include "dispextern.h"
69 #include "fontset.h"
70 #include "termhooks.h"
71 #include "termopts.h"
72 #include "termchar.h"
73 #include "emacs-icon.h"
74 #include "disptab.h"
75 #include "buffer.h"
76 #include "window.h"
77 #include "keyboard.h"
78 #include "intervals.h"
79 #include "process.h"
80 #include "atimer.h"
81 #include "keymap.h"
82 #include "font.h"
83 #include "fontset.h"
84 #include "xsettings.h"
85 #include "xgselect.h"
86 #include "sysselect.h"
87
88 #ifdef USE_X_TOOLKIT
89 #include <X11/Shell.h>
90 #endif
91
92 #ifdef HAVE_SYS_TIME_H
93 #include <sys/time.h>
94 #endif
95 #ifdef HAVE_UNISTD_H
96 #include <unistd.h>
97 #endif
98
99 #ifdef USE_GTK
100 #include "gtkutil.h"
101 #endif
102
103 #ifdef USE_LUCID
104 #include "../lwlib/xlwmenu.h"
105 #endif
106
107 #ifdef USE_X_TOOLKIT
108 #if !defined(NO_EDITRES)
109 #define HACK_EDITRES
110 extern void _XEditResCheckMessages ();
111 #endif /* not NO_EDITRES */
112
113 /* Include toolkit specific headers for the scroll bar widget. */
114
115 #ifdef USE_TOOLKIT_SCROLL_BARS
116 #if defined USE_MOTIF
117 #include <Xm/Xm.h> /* for LESSTIF_VERSION */
118 #include <Xm/ScrollBar.h>
119 #else /* !USE_MOTIF i.e. use Xaw */
120
121 #ifdef HAVE_XAW3D
122 #include <X11/Xaw3d/Simple.h>
123 #include <X11/Xaw3d/Scrollbar.h>
124 #include <X11/Xaw3d/ThreeD.h>
125 #else /* !HAVE_XAW3D */
126 #include <X11/Xaw/Simple.h>
127 #include <X11/Xaw/Scrollbar.h>
128 #endif /* !HAVE_XAW3D */
129 #ifndef XtNpickTop
130 #define XtNpickTop "pickTop"
131 #endif /* !XtNpickTop */
132 #endif /* !USE_MOTIF */
133 #endif /* USE_TOOLKIT_SCROLL_BARS */
134
135 #endif /* USE_X_TOOLKIT */
136
137 #ifdef USE_X_TOOLKIT
138 #include "widget.h"
139 #ifndef XtNinitialState
140 #define XtNinitialState "initialState"
141 #endif
142 #endif
143
144 /* Default to using XIM if available. */
145 #ifdef USE_XIM
146 int use_xim = 1;
147 #else
148 int use_xim = 0; /* configure --without-xim */
149 #endif
150
151 \f
152
153 /* Non-nil means Emacs uses toolkit scroll bars. */
154
155 Lisp_Object Vx_toolkit_scroll_bars;
156
157 /* Non-zero means that a HELP_EVENT has been generated since Emacs
158 start. */
159
160 static int any_help_event_p;
161
162 /* Last window where we saw the mouse. Used by mouse-autoselect-window. */
163 static Lisp_Object last_window;
164
165 /* Non-zero means make use of UNDERLINE_POSITION font properties. */
166
167 int x_use_underline_position_properties;
168
169 /* Non-zero means to draw the underline at the same place as the descent line. */
170
171 int x_underline_at_descent_line;
172
173 /* This is a chain of structures for all the X displays currently in
174 use. */
175
176 struct x_display_info *x_display_list;
177
178 /* This is a list of cons cells, each of the form (NAME
179 . FONT-LIST-CACHE), one for each element of x_display_list and in
180 the same order. NAME is the name of the frame. FONT-LIST-CACHE
181 records previous values returned by x-list-fonts. */
182
183 Lisp_Object x_display_name_list;
184
185 /* Frame being updated by update_frame. This is declared in term.c.
186 This is set by update_begin and looked at by all the XT functions.
187 It is zero while not inside an update. In that case, the XT
188 functions assume that `selected_frame' is the frame to apply to. */
189
190 extern struct frame *updating_frame;
191
192 /* This is a frame waiting to be auto-raised, within XTread_socket. */
193
194 static struct frame *pending_autoraise_frame;
195
196 /* This is a frame waiting for an event matching mask, within XTread_socket. */
197
198 static struct {
199 struct frame *f;
200 int eventtype;
201 } pending_event_wait;
202
203 #ifdef USE_X_TOOLKIT
204 /* The application context for Xt use. */
205 XtAppContext Xt_app_con;
206 static String Xt_default_resources[] = {0};
207 #endif /* USE_X_TOOLKIT */
208
209 /* Non-zero means user is interacting with a toolkit scroll bar. */
210
211 static int toolkit_scroll_bar_interaction;
212
213 /* Non-zero means to not move point as a result of clicking on a
214 frame to focus it (when focus-follows-mouse is nil). */
215
216 int x_mouse_click_focus_ignore_position;
217
218 /* Non-zero timeout value means ignore next mouse click if it arrives
219 before that timeout elapses (i.e. as part of the same sequence of
220 events resulting from clicking on a frame to select it). */
221
222 static unsigned long ignore_next_mouse_click_timeout;
223
224 /* Mouse movement.
225
226 Formerly, we used PointerMotionHintMask (in standard_event_mask)
227 so that we would have to call XQueryPointer after each MotionNotify
228 event to ask for another such event. However, this made mouse tracking
229 slow, and there was a bug that made it eventually stop.
230
231 Simply asking for MotionNotify all the time seems to work better.
232
233 In order to avoid asking for motion events and then throwing most
234 of them away or busy-polling the server for mouse positions, we ask
235 the server for pointer motion hints. This means that we get only
236 one event per group of mouse movements. "Groups" are delimited by
237 other kinds of events (focus changes and button clicks, for
238 example), or by XQueryPointer calls; when one of these happens, we
239 get another MotionNotify event the next time the mouse moves. This
240 is at least as efficient as getting motion events when mouse
241 tracking is on, and I suspect only negligibly worse when tracking
242 is off. */
243
244 /* Where the mouse was last time we reported a mouse event. */
245
246 static XRectangle last_mouse_glyph;
247 static FRAME_PTR last_mouse_glyph_frame;
248 static Lisp_Object last_mouse_press_frame;
249
250 /* The scroll bar in which the last X motion event occurred.
251
252 If the last X motion event occurred in a scroll bar, we set this so
253 XTmouse_position can know whether to report a scroll bar motion or
254 an ordinary motion.
255
256 If the last X motion event didn't occur in a scroll bar, we set
257 this to Qnil, to tell XTmouse_position to return an ordinary motion
258 event. */
259
260 static Lisp_Object last_mouse_scroll_bar;
261
262 /* This is a hack. We would really prefer that XTmouse_position would
263 return the time associated with the position it returns, but there
264 doesn't seem to be any way to wrest the time-stamp from the server
265 along with the position query. So, we just keep track of the time
266 of the last movement we received, and return that in hopes that
267 it's somewhat accurate. */
268
269 static Time last_mouse_movement_time;
270
271 /* Time for last user interaction as returned in X events. */
272
273 static Time last_user_time;
274
275 /* Incremented by XTread_socket whenever it really tries to read
276 events. */
277
278 #ifdef __STDC__
279 static int volatile input_signal_count;
280 #else
281 static int input_signal_count;
282 #endif
283
284 /* Used locally within XTread_socket. */
285
286 static int x_noop_count;
287
288 /* The keysyms to use for the various modifiers. */
289
290 Lisp_Object Vx_alt_keysym, Vx_hyper_keysym, Vx_meta_keysym, Vx_super_keysym;
291 Lisp_Object Vx_keysym_table;
292 static Lisp_Object Qalt, Qhyper, Qmeta, Qsuper, Qmodifier_value;
293
294 static Lisp_Object Qvendor_specific_keysyms;
295 static Lisp_Object Qlatin_1;
296
297 #ifdef USE_GTK
298 /* The name of the Emacs icon file. */
299 static Lisp_Object xg_default_icon_file;
300
301 /* Used in gtkutil.c. */
302 Lisp_Object Qx_gtk_map_stock;
303 #endif
304
305 /* Some functions take this as char *, not const char *. */
306 static char emacs_class[] = EMACS_CLASS;
307
308 /* Used in x_flush. */
309
310 extern XrmDatabase x_load_resources (Display *, const char *, const char *,
311 const char *);
312 extern int x_bitmap_mask (FRAME_PTR, int);
313
314 static int x_alloc_nearest_color_1 (Display *, Colormap, XColor *);
315 static void x_set_window_size_1 (struct frame *, int, int, int);
316 static const XColor *x_color_cells (Display *, int *);
317 static void x_update_window_end (struct window *, int, int);
318
319 static int x_io_error_quitter (Display *);
320 static struct terminal *x_create_terminal (struct x_display_info *);
321 void x_delete_terminal (struct terminal *);
322 static void x_update_end (struct frame *);
323 static void XTframe_up_to_date (struct frame *);
324 static void XTset_terminal_modes (struct terminal *);
325 static void XTreset_terminal_modes (struct terminal *);
326 static void x_clear_frame (struct frame *);
327 static void frame_highlight (struct frame *);
328 static void frame_unhighlight (struct frame *);
329 static void x_new_focus_frame (struct x_display_info *, struct frame *);
330 static void x_focus_changed (int, int, struct x_display_info *,
331 struct frame *, struct input_event *);
332 static void x_detect_focus_change (struct x_display_info *,
333 XEvent *, struct input_event *);
334 static void XTframe_rehighlight (struct frame *);
335 static void x_frame_rehighlight (struct x_display_info *);
336 static void x_draw_hollow_cursor (struct window *, struct glyph_row *);
337 static void x_draw_bar_cursor (struct window *, struct glyph_row *, int,
338 enum text_cursor_kinds);
339
340 static void x_clip_to_row (struct window *, struct glyph_row *, int, GC);
341 static void x_flush (struct frame *f);
342 static void x_update_begin (struct frame *);
343 static void x_update_window_begin (struct window *);
344 static void x_after_update_window_line (struct glyph_row *);
345 static struct scroll_bar *x_window_to_scroll_bar (Display *, Window);
346 static void x_scroll_bar_report_motion (struct frame **, Lisp_Object *,
347 enum scroll_bar_part *,
348 Lisp_Object *, Lisp_Object *,
349 unsigned long *);
350 static void x_handle_net_wm_state (struct frame *, XPropertyEvent *);
351 static void x_check_fullscreen (struct frame *);
352 static void x_check_expected_move (struct frame *, int, int);
353 static void x_sync_with_move (struct frame *, int, int, int);
354 static int handle_one_xevent (struct x_display_info *, XEvent *,
355 int *, struct input_event *);
356 /* Don't declare this NO_RETURN because we want no
357 interference with debugging failing X calls. */
358 static SIGTYPE x_connection_closed (Display *, const char *);
359
360
361 /* Flush display of frame F, or of all frames if F is null. */
362
363 static void
364 x_flush (struct frame *f)
365 {
366 /* Don't call XFlush when it is not safe to redisplay; the X
367 connection may be broken. */
368 if (!NILP (Vinhibit_redisplay))
369 return;
370
371 BLOCK_INPUT;
372 if (f == NULL)
373 {
374 Lisp_Object rest, frame;
375 FOR_EACH_FRAME (rest, frame)
376 if (FRAME_X_P (XFRAME (frame)))
377 x_flush (XFRAME (frame));
378 }
379 else if (FRAME_X_P (f))
380 XFlush (FRAME_X_DISPLAY (f));
381 UNBLOCK_INPUT;
382 }
383
384
385 /* Remove calls to XFlush by defining XFlush to an empty replacement.
386 Calls to XFlush should be unnecessary because the X output buffer
387 is flushed automatically as needed by calls to XPending,
388 XNextEvent, or XWindowEvent according to the XFlush man page.
389 XTread_socket calls XPending. Removing XFlush improves
390 performance. */
391
392 #define XFlush(DISPLAY) (void) 0
393
394 \f
395 /***********************************************************************
396 Debugging
397 ***********************************************************************/
398
399 #if 0
400
401 /* This is a function useful for recording debugging information about
402 the sequence of occurrences in this file. */
403
404 struct record
405 {
406 char *locus;
407 int type;
408 };
409
410 struct record event_record[100];
411
412 int event_record_index;
413
414 record_event (locus, type)
415 char *locus;
416 int type;
417 {
418 if (event_record_index == sizeof (event_record) / sizeof (struct record))
419 event_record_index = 0;
420
421 event_record[event_record_index].locus = locus;
422 event_record[event_record_index].type = type;
423 event_record_index++;
424 }
425
426 #endif /* 0 */
427
428
429 \f
430 /* Return the struct x_display_info corresponding to DPY. */
431
432 struct x_display_info *
433 x_display_info_for_display (Display *dpy)
434 {
435 struct x_display_info *dpyinfo;
436
437 for (dpyinfo = x_display_list; dpyinfo; dpyinfo = dpyinfo->next)
438 if (dpyinfo->display == dpy)
439 return dpyinfo;
440
441 return 0;
442 }
443
444 #define OPAQUE 0xffffffff
445 #define OPACITY "_NET_WM_WINDOW_OPACITY"
446
447 void
448 x_set_frame_alpha (struct frame *f)
449 {
450 struct x_display_info *dpyinfo = FRAME_X_DISPLAY_INFO (f);
451 Display *dpy = FRAME_X_DISPLAY (f);
452 Window win = FRAME_OUTER_WINDOW (f);
453 double alpha = 1.0;
454 double alpha_min = 1.0;
455 unsigned long opac;
456
457 if (FRAME_X_DISPLAY_INFO (f)->root_window != FRAME_X_OUTPUT (f)->parent_desc)
458 /* Since the WM decoration lies under the FRAME_OUTER_WINDOW,
459 we must treat the former instead of the latter. */
460 win = FRAME_X_OUTPUT (f)->parent_desc;
461
462 if (dpyinfo->x_highlight_frame == f)
463 alpha = f->alpha[0];
464 else
465 alpha = f->alpha[1];
466
467 if (FLOATP (Vframe_alpha_lower_limit))
468 alpha_min = XFLOAT_DATA (Vframe_alpha_lower_limit);
469 else if (INTEGERP (Vframe_alpha_lower_limit))
470 alpha_min = (XINT (Vframe_alpha_lower_limit)) / 100.0;
471
472 if (alpha < 0.0)
473 return;
474 else if (alpha > 1.0)
475 alpha = 1.0;
476 else if (0.0 <= alpha && alpha < alpha_min && alpha_min <= 1.0)
477 alpha = alpha_min;
478
479 opac = alpha * OPAQUE;
480
481 /* return unless necessary */
482 {
483 unsigned char *data;
484 Atom actual;
485 int rc, format;
486 unsigned long n, left;
487
488 x_catch_errors (dpy);
489 rc = XGetWindowProperty (dpy, win, XInternAtom(dpy, OPACITY, False),
490 0L, 1L, False, XA_CARDINAL,
491 &actual, &format, &n, &left,
492 &data);
493
494 if (rc == Success && actual != None)
495 if (*(unsigned long *)data == opac)
496 {
497 XFree ((void *) data);
498 x_uncatch_errors ();
499 return;
500 }
501 else
502 XFree ((void *) data);
503 x_uncatch_errors ();
504 }
505
506 x_catch_errors (dpy);
507 XChangeProperty (dpy, win, XInternAtom (dpy, OPACITY, False),
508 XA_CARDINAL, 32, PropModeReplace,
509 (unsigned char *) &opac, 1L);
510 x_uncatch_errors ();
511 }
512
513 int
514 x_display_pixel_height (struct x_display_info *dpyinfo)
515 {
516 return HeightOfScreen (dpyinfo->screen);
517 }
518
519 int
520 x_display_pixel_width (struct x_display_info *dpyinfo)
521 {
522 return WidthOfScreen (dpyinfo->screen);
523 }
524
525 \f
526 /***********************************************************************
527 Starting and ending an update
528 ***********************************************************************/
529
530 /* Start an update of frame F. This function is installed as a hook
531 for update_begin, i.e. it is called when update_begin is called.
532 This function is called prior to calls to x_update_window_begin for
533 each window being updated. Currently, there is nothing to do here
534 because all interesting stuff is done on a window basis. */
535
536 static void
537 x_update_begin (struct frame *f)
538 {
539 /* Nothing to do. */
540 }
541
542
543 /* Start update of window W. Set the global variable updated_window
544 to the window being updated and set output_cursor to the cursor
545 position of W. */
546
547 static void
548 x_update_window_begin (struct window *w)
549 {
550 struct frame *f = XFRAME (WINDOW_FRAME (w));
551 struct x_display_info *display_info = FRAME_X_DISPLAY_INFO (f);
552
553 updated_window = w;
554 set_output_cursor (&w->cursor);
555
556 BLOCK_INPUT;
557
558 if (f == display_info->mouse_face_mouse_frame)
559 {
560 /* Don't do highlighting for mouse motion during the update. */
561 display_info->mouse_face_defer = 1;
562
563 /* If F needs to be redrawn, simply forget about any prior mouse
564 highlighting. */
565 if (FRAME_GARBAGED_P (f))
566 display_info->mouse_face_window = Qnil;
567 }
568
569 UNBLOCK_INPUT;
570 }
571
572
573 /* Draw a vertical window border from (x,y0) to (x,y1) */
574
575 static void
576 x_draw_vertical_window_border (struct window *w, int x, int y0, int y1)
577 {
578 struct frame *f = XFRAME (WINDOW_FRAME (w));
579 struct face *face;
580
581 face = FACE_FROM_ID (f, VERTICAL_BORDER_FACE_ID);
582 if (face)
583 XSetForeground (FRAME_X_DISPLAY (f), f->output_data.x->normal_gc,
584 face->foreground);
585
586 XDrawLine (FRAME_X_DISPLAY (f), FRAME_X_WINDOW (f),
587 f->output_data.x->normal_gc, x, y0, x, y1);
588 }
589
590 /* End update of window W (which is equal to updated_window).
591
592 Draw vertical borders between horizontally adjacent windows, and
593 display W's cursor if CURSOR_ON_P is non-zero.
594
595 MOUSE_FACE_OVERWRITTEN_P non-zero means that some row containing
596 glyphs in mouse-face were overwritten. In that case we have to
597 make sure that the mouse-highlight is properly redrawn.
598
599 W may be a menu bar pseudo-window in case we don't have X toolkit
600 support. Such windows don't have a cursor, so don't display it
601 here. */
602
603 static void
604 x_update_window_end (struct window *w, int cursor_on_p, int mouse_face_overwritten_p)
605 {
606 struct x_display_info *dpyinfo = FRAME_X_DISPLAY_INFO (XFRAME (w->frame));
607
608 if (!w->pseudo_window_p)
609 {
610 BLOCK_INPUT;
611
612 if (cursor_on_p)
613 display_and_set_cursor (w, 1, output_cursor.hpos,
614 output_cursor.vpos,
615 output_cursor.x, output_cursor.y);
616
617 if (draw_window_fringes (w, 1))
618 x_draw_vertical_border (w);
619
620 UNBLOCK_INPUT;
621 }
622
623 /* If a row with mouse-face was overwritten, arrange for
624 XTframe_up_to_date to redisplay the mouse highlight. */
625 if (mouse_face_overwritten_p)
626 {
627 dpyinfo->mouse_face_beg_row = dpyinfo->mouse_face_beg_col = -1;
628 dpyinfo->mouse_face_end_row = dpyinfo->mouse_face_end_col = -1;
629 dpyinfo->mouse_face_window = Qnil;
630 }
631
632 updated_window = NULL;
633 }
634
635
636 /* End update of frame F. This function is installed as a hook in
637 update_end. */
638
639 static void
640 x_update_end (struct frame *f)
641 {
642 /* Mouse highlight may be displayed again. */
643 FRAME_X_DISPLAY_INFO (f)->mouse_face_defer = 0;
644
645 #ifndef XFlush
646 BLOCK_INPUT;
647 XFlush (FRAME_X_DISPLAY (f));
648 UNBLOCK_INPUT;
649 #endif
650 }
651
652
653 /* This function is called from various places in xdisp.c whenever a
654 complete update has been performed. The global variable
655 updated_window is not available here. */
656
657 static void
658 XTframe_up_to_date (struct frame *f)
659 {
660 if (FRAME_X_P (f))
661 {
662 struct x_display_info *dpyinfo = FRAME_X_DISPLAY_INFO (f);
663
664 if (dpyinfo->mouse_face_deferred_gc
665 || f == dpyinfo->mouse_face_mouse_frame)
666 {
667 BLOCK_INPUT;
668 if (dpyinfo->mouse_face_mouse_frame)
669 note_mouse_highlight (dpyinfo->mouse_face_mouse_frame,
670 dpyinfo->mouse_face_mouse_x,
671 dpyinfo->mouse_face_mouse_y);
672 dpyinfo->mouse_face_deferred_gc = 0;
673 UNBLOCK_INPUT;
674 }
675 }
676 }
677
678
679 /* Draw truncation mark bitmaps, continuation mark bitmaps, overlay
680 arrow bitmaps, or clear the fringes if no bitmaps are required
681 before DESIRED_ROW is made current. The window being updated is
682 found in updated_window. This function It is called from
683 update_window_line only if it is known that there are differences
684 between bitmaps to be drawn between current row and DESIRED_ROW. */
685
686 static void
687 x_after_update_window_line (struct glyph_row *desired_row)
688 {
689 struct window *w = updated_window;
690 struct frame *f;
691 int width, height;
692
693 xassert (w);
694
695 if (!desired_row->mode_line_p && !w->pseudo_window_p)
696 desired_row->redraw_fringe_bitmaps_p = 1;
697
698 /* When a window has disappeared, make sure that no rest of
699 full-width rows stays visible in the internal border. Could
700 check here if updated_window is the leftmost/rightmost window,
701 but I guess it's not worth doing since vertically split windows
702 are almost never used, internal border is rarely set, and the
703 overhead is very small. */
704 if (windows_or_buffers_changed
705 && desired_row->full_width_p
706 && (f = XFRAME (w->frame),
707 width = FRAME_INTERNAL_BORDER_WIDTH (f),
708 width != 0)
709 && (height = desired_row->visible_height,
710 height > 0))
711 {
712 int y = WINDOW_TO_FRAME_PIXEL_Y (w, max (0, desired_row->y));
713
714 BLOCK_INPUT;
715 x_clear_area (FRAME_X_DISPLAY (f), FRAME_X_WINDOW (f),
716 0, y, width, height, False);
717 x_clear_area (FRAME_X_DISPLAY (f), FRAME_X_WINDOW (f),
718 FRAME_PIXEL_WIDTH (f) - width,
719 y, width, height, False);
720 UNBLOCK_INPUT;
721 }
722 }
723
724 static void
725 x_draw_fringe_bitmap (struct window *w, struct glyph_row *row, struct draw_fringe_bitmap_params *p)
726 {
727 struct frame *f = XFRAME (WINDOW_FRAME (w));
728 Display *display = FRAME_X_DISPLAY (f);
729 Window window = FRAME_X_WINDOW (f);
730 GC gc = f->output_data.x->normal_gc;
731 struct face *face = p->face;
732
733 /* Must clip because of partially visible lines. */
734 x_clip_to_row (w, row, -1, gc);
735
736 if (!p->overlay_p)
737 {
738 int bx = p->bx, by = p->by, nx = p->nx, ny = p->ny;
739
740 /* In case the same realized face is used for fringes and
741 for something displayed in the text (e.g. face `region' on
742 mono-displays, the fill style may have been changed to
743 FillSolid in x_draw_glyph_string_background. */
744 if (face->stipple)
745 XSetFillStyle (display, face->gc, FillOpaqueStippled);
746 else
747 XSetForeground (display, face->gc, face->background);
748
749 #ifdef USE_TOOLKIT_SCROLL_BARS
750 /* If the fringe is adjacent to the left (right) scroll bar of a
751 leftmost (rightmost, respectively) window, then extend its
752 background to the gap between the fringe and the bar. */
753 if ((WINDOW_LEFTMOST_P (w)
754 && WINDOW_HAS_VERTICAL_SCROLL_BAR_ON_LEFT (w))
755 || (WINDOW_RIGHTMOST_P (w)
756 && WINDOW_HAS_VERTICAL_SCROLL_BAR_ON_RIGHT (w)))
757 {
758 int sb_width = WINDOW_CONFIG_SCROLL_BAR_WIDTH (w);
759
760 if (sb_width > 0)
761 {
762 int left = WINDOW_SCROLL_BAR_AREA_X (w);
763 int width = (WINDOW_CONFIG_SCROLL_BAR_COLS (w)
764 * FRAME_COLUMN_WIDTH (f));
765
766 if (bx < 0)
767 {
768 /* Bitmap fills the fringe. */
769 if (left + width == p->x)
770 bx = left + sb_width;
771 else if (p->x + p->wd == left)
772 bx = left;
773 if (bx >= 0)
774 {
775 int header_line_height = WINDOW_HEADER_LINE_HEIGHT (w);
776
777 nx = width - sb_width;
778 by = WINDOW_TO_FRAME_PIXEL_Y (w, max (header_line_height,
779 row->y));
780 ny = row->visible_height;
781 }
782 }
783 else
784 {
785 if (left + width == bx)
786 {
787 bx = left + sb_width;
788 nx += width - sb_width;
789 }
790 else if (bx + nx == left)
791 nx += width - sb_width;
792 }
793 }
794 }
795 #endif
796 if (bx >= 0 && nx > 0)
797 XFillRectangle (display, window, face->gc, bx, by, nx, ny);
798
799 if (!face->stipple)
800 XSetForeground (display, face->gc, face->foreground);
801 }
802
803 if (p->which)
804 {
805 unsigned char *bits;
806 Pixmap pixmap, clipmask = (Pixmap) 0;
807 int depth = DefaultDepthOfScreen (FRAME_X_SCREEN (f));
808 XGCValues gcv;
809
810 if (p->wd > 8)
811 bits = (unsigned char *)(p->bits + p->dh);
812 else
813 bits = (unsigned char *)p->bits + p->dh;
814
815 /* Draw the bitmap. I believe these small pixmaps can be cached
816 by the server. */
817 pixmap = XCreatePixmapFromBitmapData (display, window, bits, p->wd, p->h,
818 (p->cursor_p
819 ? (p->overlay_p ? face->background
820 : f->output_data.x->cursor_pixel)
821 : face->foreground),
822 face->background, depth);
823
824 if (p->overlay_p)
825 {
826 clipmask = XCreatePixmapFromBitmapData (display,
827 FRAME_X_DISPLAY_INFO (f)->root_window,
828 bits, p->wd, p->h,
829 1, 0, 1);
830 gcv.clip_mask = clipmask;
831 gcv.clip_x_origin = p->x;
832 gcv.clip_y_origin = p->y;
833 XChangeGC (display, gc, GCClipMask | GCClipXOrigin | GCClipYOrigin, &gcv);
834 }
835
836 XCopyArea (display, pixmap, window, gc, 0, 0,
837 p->wd, p->h, p->x, p->y);
838 XFreePixmap (display, pixmap);
839
840 if (p->overlay_p)
841 {
842 gcv.clip_mask = (Pixmap) 0;
843 XChangeGC (display, gc, GCClipMask, &gcv);
844 XFreePixmap (display, clipmask);
845 }
846 }
847
848 XSetClipMask (display, gc, None);
849 }
850
851 \f
852
853 /* This is called when starting Emacs and when restarting after
854 suspend. When starting Emacs, no X window is mapped. And nothing
855 must be done to Emacs's own window if it is suspended (though that
856 rarely happens). */
857
858 static void
859 XTset_terminal_modes (struct terminal *terminal)
860 {
861 }
862
863 /* This is called when exiting or suspending Emacs. Exiting will make
864 the X-windows go away, and suspending requires no action. */
865
866 static void
867 XTreset_terminal_modes (struct terminal *terminal)
868 {
869 }
870
871 \f
872 /***********************************************************************
873 Glyph display
874 ***********************************************************************/
875
876
877
878 static void x_set_glyph_string_clipping (struct glyph_string *);
879 static void x_set_glyph_string_gc (struct glyph_string *);
880 static void x_draw_glyph_string_background (struct glyph_string *,
881 int);
882 static void x_draw_glyph_string_foreground (struct glyph_string *);
883 static void x_draw_composite_glyph_string_foreground (struct glyph_string *);
884 static void x_draw_glyph_string_box (struct glyph_string *);
885 static void x_draw_glyph_string (struct glyph_string *);
886 static void x_compute_glyph_string_overhangs (struct glyph_string *);
887 static void x_set_cursor_gc (struct glyph_string *);
888 static void x_set_mode_line_face_gc (struct glyph_string *);
889 static void x_set_mouse_face_gc (struct glyph_string *);
890 static int x_alloc_lighter_color (struct frame *, Display *, Colormap,
891 unsigned long *, double, int);
892 static void x_setup_relief_color (struct frame *, struct relief *,
893 double, int, unsigned long);
894 static void x_setup_relief_colors (struct glyph_string *);
895 static void x_draw_image_glyph_string (struct glyph_string *);
896 static void x_draw_image_relief (struct glyph_string *);
897 static void x_draw_image_foreground (struct glyph_string *);
898 static void x_draw_image_foreground_1 (struct glyph_string *, Pixmap);
899 static void x_clear_glyph_string_rect (struct glyph_string *, int,
900 int, int, int);
901 static void x_draw_relief_rect (struct frame *, int, int, int, int,
902 int, int, int, int, int, int,
903 XRectangle *);
904 static void x_draw_box_rect (struct glyph_string *, int, int, int, int,
905 int, int, int, XRectangle *);
906
907 #if GLYPH_DEBUG
908 static void x_check_font (struct frame *, struct font *);
909 #endif
910
911
912 /* Set S->gc to a suitable GC for drawing glyph string S in cursor
913 face. */
914
915 static void
916 x_set_cursor_gc (struct glyph_string *s)
917 {
918 if (s->font == FRAME_FONT (s->f)
919 && s->face->background == FRAME_BACKGROUND_PIXEL (s->f)
920 && s->face->foreground == FRAME_FOREGROUND_PIXEL (s->f)
921 && !s->cmp)
922 s->gc = s->f->output_data.x->cursor_gc;
923 else
924 {
925 /* Cursor on non-default face: must merge. */
926 XGCValues xgcv;
927 unsigned long mask;
928
929 xgcv.background = s->f->output_data.x->cursor_pixel;
930 xgcv.foreground = s->face->background;
931
932 /* If the glyph would be invisible, try a different foreground. */
933 if (xgcv.foreground == xgcv.background)
934 xgcv.foreground = s->face->foreground;
935 if (xgcv.foreground == xgcv.background)
936 xgcv.foreground = s->f->output_data.x->cursor_foreground_pixel;
937 if (xgcv.foreground == xgcv.background)
938 xgcv.foreground = s->face->foreground;
939
940 /* Make sure the cursor is distinct from text in this face. */
941 if (xgcv.background == s->face->background
942 && xgcv.foreground == s->face->foreground)
943 {
944 xgcv.background = s->face->foreground;
945 xgcv.foreground = s->face->background;
946 }
947
948 IF_DEBUG (x_check_font (s->f, s->font));
949 xgcv.graphics_exposures = False;
950 mask = GCForeground | GCBackground | GCGraphicsExposures;
951
952 if (FRAME_X_DISPLAY_INFO (s->f)->scratch_cursor_gc)
953 XChangeGC (s->display, FRAME_X_DISPLAY_INFO (s->f)->scratch_cursor_gc,
954 mask, &xgcv);
955 else
956 FRAME_X_DISPLAY_INFO (s->f)->scratch_cursor_gc
957 = XCreateGC (s->display, s->window, mask, &xgcv);
958
959 s->gc = FRAME_X_DISPLAY_INFO (s->f)->scratch_cursor_gc;
960 }
961 }
962
963
964 /* Set up S->gc of glyph string S for drawing text in mouse face. */
965
966 static void
967 x_set_mouse_face_gc (struct glyph_string *s)
968 {
969 int face_id;
970 struct face *face;
971
972 /* What face has to be used last for the mouse face? */
973 face_id = FRAME_X_DISPLAY_INFO (s->f)->mouse_face_face_id;
974 face = FACE_FROM_ID (s->f, face_id);
975 if (face == NULL)
976 face = FACE_FROM_ID (s->f, MOUSE_FACE_ID);
977
978 if (s->first_glyph->type == CHAR_GLYPH)
979 face_id = FACE_FOR_CHAR (s->f, face, s->first_glyph->u.ch, -1, Qnil);
980 else
981 face_id = FACE_FOR_CHAR (s->f, face, 0, -1, Qnil);
982 s->face = FACE_FROM_ID (s->f, face_id);
983 PREPARE_FACE_FOR_DISPLAY (s->f, s->face);
984
985 if (s->font == s->face->font)
986 s->gc = s->face->gc;
987 else
988 {
989 /* Otherwise construct scratch_cursor_gc with values from FACE
990 except for FONT. */
991 XGCValues xgcv;
992 unsigned long mask;
993
994 xgcv.background = s->face->background;
995 xgcv.foreground = s->face->foreground;
996 xgcv.graphics_exposures = False;
997 mask = GCForeground | GCBackground | GCGraphicsExposures;
998
999 if (FRAME_X_DISPLAY_INFO (s->f)->scratch_cursor_gc)
1000 XChangeGC (s->display, FRAME_X_DISPLAY_INFO (s->f)->scratch_cursor_gc,
1001 mask, &xgcv);
1002 else
1003 FRAME_X_DISPLAY_INFO (s->f)->scratch_cursor_gc
1004 = XCreateGC (s->display, s->window, mask, &xgcv);
1005
1006 s->gc = FRAME_X_DISPLAY_INFO (s->f)->scratch_cursor_gc;
1007
1008 }
1009 xassert (s->gc != 0);
1010 }
1011
1012
1013 /* Set S->gc of glyph string S to a GC suitable for drawing a mode line.
1014 Faces to use in the mode line have already been computed when the
1015 matrix was built, so there isn't much to do, here. */
1016
1017 static INLINE void
1018 x_set_mode_line_face_gc (struct glyph_string *s)
1019 {
1020 s->gc = s->face->gc;
1021 }
1022
1023
1024 /* Set S->gc of glyph string S for drawing that glyph string. Set
1025 S->stippled_p to a non-zero value if the face of S has a stipple
1026 pattern. */
1027
1028 static INLINE void
1029 x_set_glyph_string_gc (struct glyph_string *s)
1030 {
1031 PREPARE_FACE_FOR_DISPLAY (s->f, s->face);
1032
1033 if (s->hl == DRAW_NORMAL_TEXT)
1034 {
1035 s->gc = s->face->gc;
1036 s->stippled_p = s->face->stipple != 0;
1037 }
1038 else if (s->hl == DRAW_INVERSE_VIDEO)
1039 {
1040 x_set_mode_line_face_gc (s);
1041 s->stippled_p = s->face->stipple != 0;
1042 }
1043 else if (s->hl == DRAW_CURSOR)
1044 {
1045 x_set_cursor_gc (s);
1046 s->stippled_p = 0;
1047 }
1048 else if (s->hl == DRAW_MOUSE_FACE)
1049 {
1050 x_set_mouse_face_gc (s);
1051 s->stippled_p = s->face->stipple != 0;
1052 }
1053 else if (s->hl == DRAW_IMAGE_RAISED
1054 || s->hl == DRAW_IMAGE_SUNKEN)
1055 {
1056 s->gc = s->face->gc;
1057 s->stippled_p = s->face->stipple != 0;
1058 }
1059 else
1060 {
1061 s->gc = s->face->gc;
1062 s->stippled_p = s->face->stipple != 0;
1063 }
1064
1065 /* GC must have been set. */
1066 xassert (s->gc != 0);
1067 }
1068
1069
1070 /* Set clipping for output of glyph string S. S may be part of a mode
1071 line or menu if we don't have X toolkit support. */
1072
1073 static INLINE void
1074 x_set_glyph_string_clipping (struct glyph_string *s)
1075 {
1076 XRectangle *r = s->clip;
1077 int n = get_glyph_string_clip_rects (s, r, 2);
1078
1079 if (n > 0)
1080 XSetClipRectangles (s->display, s->gc, 0, 0, r, n, Unsorted);
1081 s->num_clips = n;
1082 }
1083
1084
1085 /* Set SRC's clipping for output of glyph string DST. This is called
1086 when we are drawing DST's left_overhang or right_overhang only in
1087 the area of SRC. */
1088
1089 static void
1090 x_set_glyph_string_clipping_exactly (struct glyph_string *src, struct glyph_string *dst)
1091 {
1092 XRectangle r;
1093
1094 r.x = src->x;
1095 r.width = src->width;
1096 r.y = src->y;
1097 r.height = src->height;
1098 dst->clip[0] = r;
1099 dst->num_clips = 1;
1100 XSetClipRectangles (dst->display, dst->gc, 0, 0, &r, 1, Unsorted);
1101 }
1102
1103
1104 /* RIF:
1105 Compute left and right overhang of glyph string S. */
1106
1107 static void
1108 x_compute_glyph_string_overhangs (struct glyph_string *s)
1109 {
1110 if (s->cmp == NULL
1111 && (s->first_glyph->type == CHAR_GLYPH
1112 || s->first_glyph->type == COMPOSITE_GLYPH))
1113 {
1114 struct font_metrics metrics;
1115
1116 if (s->first_glyph->type == CHAR_GLYPH)
1117 {
1118 unsigned *code = alloca (sizeof (unsigned) * s->nchars);
1119 struct font *font = s->font;
1120 int i;
1121
1122 for (i = 0; i < s->nchars; i++)
1123 code[i] = (s->char2b[i].byte1 << 8) | s->char2b[i].byte2;
1124 font->driver->text_extents (font, code, s->nchars, &metrics);
1125 }
1126 else
1127 {
1128 Lisp_Object gstring = composition_gstring_from_id (s->cmp_id);
1129
1130 composition_gstring_width (gstring, s->cmp_from, s->cmp_to, &metrics);
1131 }
1132 s->right_overhang = (metrics.rbearing > metrics.width
1133 ? metrics.rbearing - metrics.width : 0);
1134 s->left_overhang = metrics.lbearing < 0 ? - metrics.lbearing : 0;
1135 }
1136 else if (s->cmp)
1137 {
1138 s->right_overhang = s->cmp->rbearing - s->cmp->pixel_width;
1139 s->left_overhang = - s->cmp->lbearing;
1140 }
1141 }
1142
1143
1144 /* Fill rectangle X, Y, W, H with background color of glyph string S. */
1145
1146 static INLINE void
1147 x_clear_glyph_string_rect (struct glyph_string *s, int x, int y, int w, int h)
1148 {
1149 XGCValues xgcv;
1150 XGetGCValues (s->display, s->gc, GCForeground | GCBackground, &xgcv);
1151 XSetForeground (s->display, s->gc, xgcv.background);
1152 XFillRectangle (s->display, s->window, s->gc, x, y, w, h);
1153 XSetForeground (s->display, s->gc, xgcv.foreground);
1154 }
1155
1156
1157 /* Draw the background of glyph_string S. If S->background_filled_p
1158 is non-zero don't draw it. FORCE_P non-zero means draw the
1159 background even if it wouldn't be drawn normally. This is used
1160 when a string preceding S draws into the background of S, or S
1161 contains the first component of a composition. */
1162
1163 static void
1164 x_draw_glyph_string_background (struct glyph_string *s, int force_p)
1165 {
1166 /* Nothing to do if background has already been drawn or if it
1167 shouldn't be drawn in the first place. */
1168 if (!s->background_filled_p)
1169 {
1170 int box_line_width = max (s->face->box_line_width, 0);
1171
1172 if (s->stippled_p)
1173 {
1174 /* Fill background with a stipple pattern. */
1175 XSetFillStyle (s->display, s->gc, FillOpaqueStippled);
1176 XFillRectangle (s->display, s->window, s->gc, s->x,
1177 s->y + box_line_width,
1178 s->background_width,
1179 s->height - 2 * box_line_width);
1180 XSetFillStyle (s->display, s->gc, FillSolid);
1181 s->background_filled_p = 1;
1182 }
1183 else if (FONT_HEIGHT (s->font) < s->height - 2 * box_line_width
1184 || s->font_not_found_p
1185 || s->extends_to_end_of_line_p
1186 || force_p)
1187 {
1188 x_clear_glyph_string_rect (s, s->x, s->y + box_line_width,
1189 s->background_width,
1190 s->height - 2 * box_line_width);
1191 s->background_filled_p = 1;
1192 }
1193 }
1194 }
1195
1196
1197 /* Draw the foreground of glyph string S. */
1198
1199 static void
1200 x_draw_glyph_string_foreground (struct glyph_string *s)
1201 {
1202 int i, x;
1203
1204 /* If first glyph of S has a left box line, start drawing the text
1205 of S to the right of that box line. */
1206 if (s->face->box != FACE_NO_BOX
1207 && s->first_glyph->left_box_line_p)
1208 x = s->x + eabs (s->face->box_line_width);
1209 else
1210 x = s->x;
1211
1212 /* Draw characters of S as rectangles if S's font could not be
1213 loaded. */
1214 if (s->font_not_found_p)
1215 {
1216 for (i = 0; i < s->nchars; ++i)
1217 {
1218 struct glyph *g = s->first_glyph + i;
1219 XDrawRectangle (s->display, s->window,
1220 s->gc, x, s->y, g->pixel_width - 1,
1221 s->height - 1);
1222 x += g->pixel_width;
1223 }
1224 }
1225 else
1226 {
1227 struct font *font = s->font;
1228 int boff = font->baseline_offset;
1229 int y;
1230
1231 if (font->vertical_centering)
1232 boff = VCENTER_BASELINE_OFFSET (font, s->f) - boff;
1233
1234 y = s->ybase - boff;
1235 if (s->for_overlaps
1236 || (s->background_filled_p && s->hl != DRAW_CURSOR))
1237 font->driver->draw (s, 0, s->nchars, x, y, 0);
1238 else
1239 font->driver->draw (s, 0, s->nchars, x, y, 1);
1240 if (s->face->overstrike)
1241 font->driver->draw (s, 0, s->nchars, x + 1, y, 0);
1242 }
1243 }
1244
1245 /* Draw the foreground of composite glyph string S. */
1246
1247 static void
1248 x_draw_composite_glyph_string_foreground (struct glyph_string *s)
1249 {
1250 int i, j, x;
1251 struct font *font = s->font;
1252
1253 /* If first glyph of S has a left box line, start drawing the text
1254 of S to the right of that box line. */
1255 if (s->face && s->face->box != FACE_NO_BOX
1256 && s->first_glyph->left_box_line_p)
1257 x = s->x + eabs (s->face->box_line_width);
1258 else
1259 x = s->x;
1260
1261 /* S is a glyph string for a composition. S->cmp_from is the index
1262 of the first character drawn for glyphs of this composition.
1263 S->cmp_from == 0 means we are drawing the very first character of
1264 this composition. */
1265
1266 /* Draw a rectangle for the composition if the font for the very
1267 first character of the composition could not be loaded. */
1268 if (s->font_not_found_p)
1269 {
1270 if (s->cmp_from == 0)
1271 XDrawRectangle (s->display, s->window, s->gc, x, s->y,
1272 s->width - 1, s->height - 1);
1273 }
1274 else if (! s->first_glyph->u.cmp.automatic)
1275 {
1276 int y = s->ybase;
1277
1278 for (i = 0, j = s->cmp_from; i < s->nchars; i++, j++)
1279 if (COMPOSITION_GLYPH (s->cmp, j) != '\t')
1280 {
1281 int xx = x + s->cmp->offsets[j * 2];
1282 int yy = y - s->cmp->offsets[j * 2 + 1];
1283
1284 font->driver->draw (s, j, j + 1, xx, yy, 0);
1285 if (s->face->overstrike)
1286 font->driver->draw (s, j, j + 1, xx + 1, yy, 0);
1287 }
1288 }
1289 else
1290 {
1291 Lisp_Object gstring = composition_gstring_from_id (s->cmp_id);
1292 Lisp_Object glyph;
1293 int y = s->ybase;
1294 int width = 0;
1295
1296 for (i = j = s->cmp_from; i < s->cmp_to; i++)
1297 {
1298 glyph = LGSTRING_GLYPH (gstring, i);
1299 if (NILP (LGLYPH_ADJUSTMENT (glyph)))
1300 width += LGLYPH_WIDTH (glyph);
1301 else
1302 {
1303 int xoff, yoff, wadjust;
1304
1305 if (j < i)
1306 {
1307 font->driver->draw (s, j, i, x, y, 0);
1308 if (s->face->overstrike)
1309 font->driver->draw (s, j, i, x + 1, y, 0);
1310 x += width;
1311 }
1312 xoff = LGLYPH_XOFF (glyph);
1313 yoff = LGLYPH_YOFF (glyph);
1314 wadjust = LGLYPH_WADJUST (glyph);
1315 font->driver->draw (s, i, i + 1, x + xoff, y + yoff, 0);
1316 if (s->face->overstrike)
1317 font->driver->draw (s, i, i + 1, x + xoff + 1, y + yoff, 0);
1318 x += wadjust;
1319 j = i + 1;
1320 width = 0;
1321 }
1322 }
1323 if (j < i)
1324 {
1325 font->driver->draw (s, j, i, x, y, 0);
1326 if (s->face->overstrike)
1327 font->driver->draw (s, j, i, x + 1, y, 0);
1328 }
1329 }
1330 }
1331
1332
1333 /* Draw the foreground of glyph string S for glyphless characters. */
1334
1335 static void
1336 x_draw_glyphless_glyph_string_foreground (struct glyph_string *s)
1337 {
1338 struct glyph *glyph = s->first_glyph;
1339 XChar2b char2b[8];
1340 int x, i, j;
1341
1342 /* If first glyph of S has a left box line, start drawing the text
1343 of S to the right of that box line. */
1344 if (s->face && s->face->box != FACE_NO_BOX
1345 && s->first_glyph->left_box_line_p)
1346 x = s->x + eabs (s->face->box_line_width);
1347 else
1348 x = s->x;
1349
1350 s->char2b = char2b;
1351
1352 for (i = 0; i < s->nchars; i++, glyph++)
1353 {
1354 char buf[7], *str = NULL;
1355 int len = glyph->u.glyphless.len;
1356
1357 if (glyph->u.glyphless.method == GLYPHLESS_DISPLAY_ACRONYM)
1358 {
1359 if (len > 0
1360 && CHAR_TABLE_P (Vglyphless_char_display)
1361 && (CHAR_TABLE_EXTRA_SLOTS (XCHAR_TABLE (Vglyphless_char_display))
1362 >= 1))
1363 {
1364 Lisp_Object acronym
1365 = (! glyph->u.glyphless.for_no_font
1366 ? CHAR_TABLE_REF (Vglyphless_char_display,
1367 glyph->u.glyphless.ch)
1368 : XCHAR_TABLE (Vglyphless_char_display)->extras[0]);
1369 if (STRINGP (acronym))
1370 str = (char *) SDATA (acronym);
1371 }
1372 }
1373 else if (glyph->u.glyphless.method == GLYPHLESS_DISPLAY_HEXA_CODE)
1374 {
1375 sprintf ((char *) buf, "%0*X",
1376 glyph->u.glyphless.ch < 0x10000 ? 4 : 6,
1377 glyph->u.glyphless.ch);
1378 str = buf;
1379 }
1380
1381 if (str)
1382 {
1383 int upper_len = (len + 1) / 2;
1384 unsigned code;
1385
1386 /* It is assured that all LEN characters in STR is ASCII. */
1387 for (j = 0; j < len; j++)
1388 {
1389 code = s->font->driver->encode_char (s->font, str[j]);
1390 STORE_XCHAR2B (char2b + j, code >> 8, code & 0xFF);
1391 }
1392 s->font->driver->draw (s, 0, upper_len,
1393 x + glyph->slice.glyphless.upper_xoff,
1394 s->ybase + glyph->slice.glyphless.upper_yoff,
1395 0);
1396 s->font->driver->draw (s, upper_len, len,
1397 x + glyph->slice.glyphless.lower_xoff,
1398 s->ybase + glyph->slice.glyphless.lower_yoff,
1399 0);
1400 }
1401 if (glyph->u.glyphless.method != GLYPHLESS_DISPLAY_THIN_SPACE)
1402 XDrawRectangle (s->display, s->window, s->gc,
1403 x, s->ybase - glyph->ascent,
1404 glyph->pixel_width - 1,
1405 glyph->ascent + glyph->descent - 1);
1406 x += glyph->pixel_width;
1407 }
1408 }
1409
1410 #ifdef USE_X_TOOLKIT
1411
1412 static struct frame *x_frame_of_widget (Widget);
1413 static Boolean cvt_string_to_pixel (Display *, XrmValue *, Cardinal *,
1414 XrmValue *, XrmValue *, XtPointer *);
1415 static void cvt_pixel_dtor (XtAppContext, XrmValue *, XtPointer,
1416 XrmValue *, Cardinal *);
1417
1418
1419 /* Return the frame on which widget WIDGET is used.. Abort if frame
1420 cannot be determined. */
1421
1422 static struct frame *
1423 x_frame_of_widget (Widget widget)
1424 {
1425 struct x_display_info *dpyinfo;
1426 Lisp_Object tail;
1427 struct frame *f;
1428
1429 dpyinfo = x_display_info_for_display (XtDisplay (widget));
1430
1431 /* Find the top-level shell of the widget. Note that this function
1432 can be called when the widget is not yet realized, so XtWindow
1433 (widget) == 0. That's the reason we can't simply use
1434 x_any_window_to_frame. */
1435 while (!XtIsTopLevelShell (widget))
1436 widget = XtParent (widget);
1437
1438 /* Look for a frame with that top-level widget. Allocate the color
1439 on that frame to get the right gamma correction value. */
1440 for (tail = Vframe_list; CONSP (tail); tail = XCDR (tail))
1441 if (FRAMEP (XCAR (tail))
1442 && (f = XFRAME (XCAR (tail)),
1443 (FRAME_X_P (f)
1444 && f->output_data.nothing != 1
1445 && FRAME_X_DISPLAY_INFO (f) == dpyinfo))
1446 && f->output_data.x->widget == widget)
1447 return f;
1448
1449 abort ();
1450 }
1451
1452
1453 /* Allocate the color COLOR->pixel on the screen and display of
1454 widget WIDGET in colormap CMAP. If an exact match cannot be
1455 allocated, try the nearest color available. Value is non-zero
1456 if successful. This is called from lwlib. */
1457
1458 int
1459 x_alloc_nearest_color_for_widget (Widget widget, Colormap cmap, XColor *color)
1460 {
1461 struct frame *f = x_frame_of_widget (widget);
1462 return x_alloc_nearest_color (f, cmap, color);
1463 }
1464
1465
1466 /* Allocate a color which is lighter or darker than *PIXEL by FACTOR
1467 or DELTA. Try a color with RGB values multiplied by FACTOR first.
1468 If this produces the same color as PIXEL, try a color where all RGB
1469 values have DELTA added. Return the allocated color in *PIXEL.
1470 DISPLAY is the X display, CMAP is the colormap to operate on.
1471 Value is non-zero if successful. */
1472
1473 int
1474 x_alloc_lighter_color_for_widget (Widget widget, Display *display, Colormap cmap,
1475 unsigned long *pixel, double factor, int delta)
1476 {
1477 struct frame *f = x_frame_of_widget (widget);
1478 return x_alloc_lighter_color (f, display, cmap, pixel, factor, delta);
1479 }
1480
1481
1482 /* Structure specifying which arguments should be passed by Xt to
1483 cvt_string_to_pixel. We want the widget's screen and colormap. */
1484
1485 static XtConvertArgRec cvt_string_to_pixel_args[] =
1486 {
1487 {XtWidgetBaseOffset, (XtPointer) XtOffset (Widget, core.screen),
1488 sizeof (Screen *)},
1489 {XtWidgetBaseOffset, (XtPointer) XtOffset (Widget, core.colormap),
1490 sizeof (Colormap)}
1491 };
1492
1493
1494 /* The address of this variable is returned by
1495 cvt_string_to_pixel. */
1496
1497 static Pixel cvt_string_to_pixel_value;
1498
1499
1500 /* Convert a color name to a pixel color.
1501
1502 DPY is the display we are working on.
1503
1504 ARGS is an array of *NARGS XrmValue structures holding additional
1505 information about the widget for which the conversion takes place.
1506 The contents of this array are determined by the specification
1507 in cvt_string_to_pixel_args.
1508
1509 FROM is a pointer to an XrmValue which points to the color name to
1510 convert. TO is an XrmValue in which to return the pixel color.
1511
1512 CLOSURE_RET is a pointer to user-data, in which we record if
1513 we allocated the color or not.
1514
1515 Value is True if successful, False otherwise. */
1516
1517 static Boolean
1518 cvt_string_to_pixel (Display *dpy, XrmValue *args, Cardinal *nargs,
1519 XrmValue *from, XrmValue *to,
1520 XtPointer *closure_ret)
1521 {
1522 Screen *screen;
1523 Colormap cmap;
1524 Pixel pixel;
1525 String color_name;
1526 XColor color;
1527
1528 if (*nargs != 2)
1529 {
1530 XtAppWarningMsg (XtDisplayToApplicationContext (dpy),
1531 "wrongParameters", "cvt_string_to_pixel",
1532 "XtToolkitError",
1533 "Screen and colormap args required", NULL, NULL);
1534 return False;
1535 }
1536
1537 screen = *(Screen **) args[0].addr;
1538 cmap = *(Colormap *) args[1].addr;
1539 color_name = (String) from->addr;
1540
1541 if (strcmp (color_name, XtDefaultBackground) == 0)
1542 {
1543 *closure_ret = (XtPointer) False;
1544 pixel = WhitePixelOfScreen (screen);
1545 }
1546 else if (strcmp (color_name, XtDefaultForeground) == 0)
1547 {
1548 *closure_ret = (XtPointer) False;
1549 pixel = BlackPixelOfScreen (screen);
1550 }
1551 else if (XParseColor (dpy, cmap, color_name, &color)
1552 && x_alloc_nearest_color_1 (dpy, cmap, &color))
1553 {
1554 pixel = color.pixel;
1555 *closure_ret = (XtPointer) True;
1556 }
1557 else
1558 {
1559 String params[1];
1560 Cardinal nparams = 1;
1561
1562 params[0] = color_name;
1563 XtAppWarningMsg (XtDisplayToApplicationContext (dpy),
1564 "badValue", "cvt_string_to_pixel",
1565 "XtToolkitError", "Invalid color `%s'",
1566 params, &nparams);
1567 return False;
1568 }
1569
1570 if (to->addr != NULL)
1571 {
1572 if (to->size < sizeof (Pixel))
1573 {
1574 to->size = sizeof (Pixel);
1575 return False;
1576 }
1577
1578 *(Pixel *) to->addr = pixel;
1579 }
1580 else
1581 {
1582 cvt_string_to_pixel_value = pixel;
1583 to->addr = (XtPointer) &cvt_string_to_pixel_value;
1584 }
1585
1586 to->size = sizeof (Pixel);
1587 return True;
1588 }
1589
1590
1591 /* Free a pixel color which was previously allocated via
1592 cvt_string_to_pixel. This is registered as the destructor
1593 for this type of resource via XtSetTypeConverter.
1594
1595 APP is the application context in which we work.
1596
1597 TO is a pointer to an XrmValue holding the color to free.
1598 CLOSURE is the value we stored in CLOSURE_RET for this color
1599 in cvt_string_to_pixel.
1600
1601 ARGS and NARGS are like for cvt_string_to_pixel. */
1602
1603 static void
1604 cvt_pixel_dtor (XtAppContext app, XrmValuePtr to, XtPointer closure, XrmValuePtr args,
1605 Cardinal *nargs)
1606 {
1607 if (*nargs != 2)
1608 {
1609 XtAppWarningMsg (app, "wrongParameters", "cvt_pixel_dtor",
1610 "XtToolkitError",
1611 "Screen and colormap arguments required",
1612 NULL, NULL);
1613 }
1614 else if (closure != NULL)
1615 {
1616 /* We did allocate the pixel, so free it. */
1617 Screen *screen = *(Screen **) args[0].addr;
1618 Colormap cmap = *(Colormap *) args[1].addr;
1619 x_free_dpy_colors (DisplayOfScreen (screen), screen, cmap,
1620 (Pixel *) to->addr, 1);
1621 }
1622 }
1623
1624
1625 #endif /* USE_X_TOOLKIT */
1626
1627
1628 /* Value is an array of XColor structures for the contents of the
1629 color map of display DPY. Set *NCELLS to the size of the array.
1630 Note that this probably shouldn't be called for large color maps,
1631 say a 24-bit TrueColor map. */
1632
1633 static const XColor *
1634 x_color_cells (Display *dpy, int *ncells)
1635 {
1636 struct x_display_info *dpyinfo = x_display_info_for_display (dpy);
1637
1638 if (dpyinfo->color_cells == NULL)
1639 {
1640 Screen *screen = dpyinfo->screen;
1641 int i;
1642
1643 dpyinfo->ncolor_cells
1644 = XDisplayCells (dpy, XScreenNumberOfScreen (screen));
1645 dpyinfo->color_cells
1646 = (XColor *) xmalloc (dpyinfo->ncolor_cells
1647 * sizeof *dpyinfo->color_cells);
1648
1649 for (i = 0; i < dpyinfo->ncolor_cells; ++i)
1650 dpyinfo->color_cells[i].pixel = i;
1651
1652 XQueryColors (dpy, dpyinfo->cmap,
1653 dpyinfo->color_cells, dpyinfo->ncolor_cells);
1654 }
1655
1656 *ncells = dpyinfo->ncolor_cells;
1657 return dpyinfo->color_cells;
1658 }
1659
1660
1661 /* On frame F, translate pixel colors to RGB values for the NCOLORS
1662 colors in COLORS. Use cached information, if available. */
1663
1664 void
1665 x_query_colors (struct frame *f, XColor *colors, int ncolors)
1666 {
1667 struct x_display_info *dpyinfo = FRAME_X_DISPLAY_INFO (f);
1668
1669 if (dpyinfo->color_cells)
1670 {
1671 int i;
1672 for (i = 0; i < ncolors; ++i)
1673 {
1674 unsigned long pixel = colors[i].pixel;
1675 xassert (pixel < dpyinfo->ncolor_cells);
1676 xassert (dpyinfo->color_cells[pixel].pixel == pixel);
1677 colors[i] = dpyinfo->color_cells[pixel];
1678 }
1679 }
1680 else
1681 XQueryColors (FRAME_X_DISPLAY (f), FRAME_X_COLORMAP (f), colors, ncolors);
1682 }
1683
1684
1685 /* On frame F, translate pixel color to RGB values for the color in
1686 COLOR. Use cached information, if available. */
1687
1688 void
1689 x_query_color (struct frame *f, XColor *color)
1690 {
1691 x_query_colors (f, color, 1);
1692 }
1693
1694
1695 /* Allocate the color COLOR->pixel on DISPLAY, colormap CMAP. If an
1696 exact match can't be allocated, try the nearest color available.
1697 Value is non-zero if successful. Set *COLOR to the color
1698 allocated. */
1699
1700 static int
1701 x_alloc_nearest_color_1 (Display *dpy, Colormap cmap, XColor *color)
1702 {
1703 int rc;
1704
1705 rc = XAllocColor (dpy, cmap, color);
1706 if (rc == 0)
1707 {
1708 /* If we got to this point, the colormap is full, so we're going
1709 to try to get the next closest color. The algorithm used is
1710 a least-squares matching, which is what X uses for closest
1711 color matching with StaticColor visuals. */
1712 int nearest, i;
1713 unsigned long nearest_delta = ~0;
1714 int ncells;
1715 const XColor *cells = x_color_cells (dpy, &ncells);
1716
1717 for (nearest = i = 0; i < ncells; ++i)
1718 {
1719 long dred = (color->red >> 8) - (cells[i].red >> 8);
1720 long dgreen = (color->green >> 8) - (cells[i].green >> 8);
1721 long dblue = (color->blue >> 8) - (cells[i].blue >> 8);
1722 unsigned long delta = dred * dred + dgreen * dgreen + dblue * dblue;
1723
1724 if (delta < nearest_delta)
1725 {
1726 nearest = i;
1727 nearest_delta = delta;
1728 }
1729 }
1730
1731 color->red = cells[nearest].red;
1732 color->green = cells[nearest].green;
1733 color->blue = cells[nearest].blue;
1734 rc = XAllocColor (dpy, cmap, color);
1735 }
1736 else
1737 {
1738 /* If allocation succeeded, and the allocated pixel color is not
1739 equal to a cached pixel color recorded earlier, there was a
1740 change in the colormap, so clear the color cache. */
1741 struct x_display_info *dpyinfo = x_display_info_for_display (dpy);
1742 XColor *cached_color;
1743
1744 if (dpyinfo->color_cells
1745 && (cached_color = &dpyinfo->color_cells[color->pixel],
1746 (cached_color->red != color->red
1747 || cached_color->blue != color->blue
1748 || cached_color->green != color->green)))
1749 {
1750 xfree (dpyinfo->color_cells);
1751 dpyinfo->color_cells = NULL;
1752 dpyinfo->ncolor_cells = 0;
1753 }
1754 }
1755
1756 #ifdef DEBUG_X_COLORS
1757 if (rc)
1758 register_color (color->pixel);
1759 #endif /* DEBUG_X_COLORS */
1760
1761 return rc;
1762 }
1763
1764
1765 /* Allocate the color COLOR->pixel on frame F, colormap CMAP. If an
1766 exact match can't be allocated, try the nearest color available.
1767 Value is non-zero if successful. Set *COLOR to the color
1768 allocated. */
1769
1770 int
1771 x_alloc_nearest_color (struct frame *f, Colormap cmap, XColor *color)
1772 {
1773 gamma_correct (f, color);
1774 return x_alloc_nearest_color_1 (FRAME_X_DISPLAY (f), cmap, color);
1775 }
1776
1777
1778 /* Allocate color PIXEL on frame F. PIXEL must already be allocated.
1779 It's necessary to do this instead of just using PIXEL directly to
1780 get color reference counts right. */
1781
1782 unsigned long
1783 x_copy_color (struct frame *f, long unsigned int pixel)
1784 {
1785 XColor color;
1786
1787 color.pixel = pixel;
1788 BLOCK_INPUT;
1789 x_query_color (f, &color);
1790 XAllocColor (FRAME_X_DISPLAY (f), FRAME_X_COLORMAP (f), &color);
1791 UNBLOCK_INPUT;
1792 #ifdef DEBUG_X_COLORS
1793 register_color (pixel);
1794 #endif
1795 return color.pixel;
1796 }
1797
1798
1799 /* Allocate color PIXEL on display DPY. PIXEL must already be allocated.
1800 It's necessary to do this instead of just using PIXEL directly to
1801 get color reference counts right. */
1802
1803 unsigned long
1804 x_copy_dpy_color (Display *dpy, Colormap cmap, long unsigned int pixel)
1805 {
1806 XColor color;
1807
1808 color.pixel = pixel;
1809 BLOCK_INPUT;
1810 XQueryColor (dpy, cmap, &color);
1811 XAllocColor (dpy, cmap, &color);
1812 UNBLOCK_INPUT;
1813 #ifdef DEBUG_X_COLORS
1814 register_color (pixel);
1815 #endif
1816 return color.pixel;
1817 }
1818
1819
1820 /* Brightness beyond which a color won't have its highlight brightness
1821 boosted.
1822
1823 Nominally, highlight colors for `3d' faces are calculated by
1824 brightening an object's color by a constant scale factor, but this
1825 doesn't yield good results for dark colors, so for colors who's
1826 brightness is less than this value (on a scale of 0-65535) have an
1827 use an additional additive factor.
1828
1829 The value here is set so that the default menu-bar/mode-line color
1830 (grey75) will not have its highlights changed at all. */
1831 #define HIGHLIGHT_COLOR_DARK_BOOST_LIMIT 48000
1832
1833
1834 /* Allocate a color which is lighter or darker than *PIXEL by FACTOR
1835 or DELTA. Try a color with RGB values multiplied by FACTOR first.
1836 If this produces the same color as PIXEL, try a color where all RGB
1837 values have DELTA added. Return the allocated color in *PIXEL.
1838 DISPLAY is the X display, CMAP is the colormap to operate on.
1839 Value is non-zero if successful. */
1840
1841 static int
1842 x_alloc_lighter_color (struct frame *f, Display *display, Colormap cmap, long unsigned int *pixel, double factor, int delta)
1843 {
1844 XColor color, new;
1845 long bright;
1846 int success_p;
1847
1848 /* Get RGB color values. */
1849 color.pixel = *pixel;
1850 x_query_color (f, &color);
1851
1852 /* Change RGB values by specified FACTOR. Avoid overflow! */
1853 xassert (factor >= 0);
1854 new.red = min (0xffff, factor * color.red);
1855 new.green = min (0xffff, factor * color.green);
1856 new.blue = min (0xffff, factor * color.blue);
1857
1858 /* Calculate brightness of COLOR. */
1859 bright = (2 * color.red + 3 * color.green + color.blue) / 6;
1860
1861 /* We only boost colors that are darker than
1862 HIGHLIGHT_COLOR_DARK_BOOST_LIMIT. */
1863 if (bright < HIGHLIGHT_COLOR_DARK_BOOST_LIMIT)
1864 /* Make an additive adjustment to NEW, because it's dark enough so
1865 that scaling by FACTOR alone isn't enough. */
1866 {
1867 /* How far below the limit this color is (0 - 1, 1 being darker). */
1868 double dimness = 1 - (double)bright / HIGHLIGHT_COLOR_DARK_BOOST_LIMIT;
1869 /* The additive adjustment. */
1870 int min_delta = delta * dimness * factor / 2;
1871
1872 if (factor < 1)
1873 {
1874 new.red = max (0, new.red - min_delta);
1875 new.green = max (0, new.green - min_delta);
1876 new.blue = max (0, new.blue - min_delta);
1877 }
1878 else
1879 {
1880 new.red = min (0xffff, min_delta + new.red);
1881 new.green = min (0xffff, min_delta + new.green);
1882 new.blue = min (0xffff, min_delta + new.blue);
1883 }
1884 }
1885
1886 /* Try to allocate the color. */
1887 success_p = x_alloc_nearest_color (f, cmap, &new);
1888 if (success_p)
1889 {
1890 if (new.pixel == *pixel)
1891 {
1892 /* If we end up with the same color as before, try adding
1893 delta to the RGB values. */
1894 x_free_colors (f, &new.pixel, 1);
1895
1896 new.red = min (0xffff, delta + color.red);
1897 new.green = min (0xffff, delta + color.green);
1898 new.blue = min (0xffff, delta + color.blue);
1899 success_p = x_alloc_nearest_color (f, cmap, &new);
1900 }
1901 else
1902 success_p = 1;
1903 *pixel = new.pixel;
1904 }
1905
1906 return success_p;
1907 }
1908
1909
1910 /* Set up the foreground color for drawing relief lines of glyph
1911 string S. RELIEF is a pointer to a struct relief containing the GC
1912 with which lines will be drawn. Use a color that is FACTOR or
1913 DELTA lighter or darker than the relief's background which is found
1914 in S->f->output_data.x->relief_background. If such a color cannot
1915 be allocated, use DEFAULT_PIXEL, instead. */
1916
1917 static void
1918 x_setup_relief_color (struct frame *f, struct relief *relief, double factor, int delta, long unsigned int default_pixel)
1919 {
1920 XGCValues xgcv;
1921 struct x_output *di = f->output_data.x;
1922 unsigned long mask = GCForeground | GCLineWidth | GCGraphicsExposures;
1923 unsigned long pixel;
1924 unsigned long background = di->relief_background;
1925 Colormap cmap = FRAME_X_COLORMAP (f);
1926 struct x_display_info *dpyinfo = FRAME_X_DISPLAY_INFO (f);
1927 Display *dpy = FRAME_X_DISPLAY (f);
1928
1929 xgcv.graphics_exposures = False;
1930 xgcv.line_width = 1;
1931
1932 /* Free previously allocated color. The color cell will be reused
1933 when it has been freed as many times as it was allocated, so this
1934 doesn't affect faces using the same colors. */
1935 if (relief->gc
1936 && relief->allocated_p)
1937 {
1938 x_free_colors (f, &relief->pixel, 1);
1939 relief->allocated_p = 0;
1940 }
1941
1942 /* Allocate new color. */
1943 xgcv.foreground = default_pixel;
1944 pixel = background;
1945 if (dpyinfo->n_planes != 1
1946 && x_alloc_lighter_color (f, dpy, cmap, &pixel, factor, delta))
1947 {
1948 relief->allocated_p = 1;
1949 xgcv.foreground = relief->pixel = pixel;
1950 }
1951
1952 if (relief->gc == 0)
1953 {
1954 xgcv.stipple = dpyinfo->gray;
1955 mask |= GCStipple;
1956 relief->gc = XCreateGC (dpy, FRAME_X_WINDOW (f), mask, &xgcv);
1957 }
1958 else
1959 XChangeGC (dpy, relief->gc, mask, &xgcv);
1960 }
1961
1962
1963 /* Set up colors for the relief lines around glyph string S. */
1964
1965 static void
1966 x_setup_relief_colors (struct glyph_string *s)
1967 {
1968 struct x_output *di = s->f->output_data.x;
1969 unsigned long color;
1970
1971 if (s->face->use_box_color_for_shadows_p)
1972 color = s->face->box_color;
1973 else if (s->first_glyph->type == IMAGE_GLYPH
1974 && s->img->pixmap
1975 && !IMAGE_BACKGROUND_TRANSPARENT (s->img, s->f, 0))
1976 color = IMAGE_BACKGROUND (s->img, s->f, 0);
1977 else
1978 {
1979 XGCValues xgcv;
1980
1981 /* Get the background color of the face. */
1982 XGetGCValues (s->display, s->gc, GCBackground, &xgcv);
1983 color = xgcv.background;
1984 }
1985
1986 if (di->white_relief.gc == 0
1987 || color != di->relief_background)
1988 {
1989 di->relief_background = color;
1990 x_setup_relief_color (s->f, &di->white_relief, 1.2, 0x8000,
1991 WHITE_PIX_DEFAULT (s->f));
1992 x_setup_relief_color (s->f, &di->black_relief, 0.6, 0x4000,
1993 BLACK_PIX_DEFAULT (s->f));
1994 }
1995 }
1996
1997
1998 /* Draw a relief on frame F inside the rectangle given by LEFT_X,
1999 TOP_Y, RIGHT_X, and BOTTOM_Y. WIDTH is the thickness of the relief
2000 to draw, it must be >= 0. RAISED_P non-zero means draw a raised
2001 relief. LEFT_P non-zero means draw a relief on the left side of
2002 the rectangle. RIGHT_P non-zero means draw a relief on the right
2003 side of the rectangle. CLIP_RECT is the clipping rectangle to use
2004 when drawing. */
2005
2006 static void
2007 x_draw_relief_rect (struct frame *f,
2008 int left_x, int top_y, int right_x, int bottom_y, int width,
2009 int raised_p, int top_p, int bot_p, int left_p, int right_p,
2010 XRectangle *clip_rect)
2011 {
2012 Display *dpy = FRAME_X_DISPLAY (f);
2013 Window window = FRAME_X_WINDOW (f);
2014 int i;
2015 GC gc;
2016
2017 if (raised_p)
2018 gc = f->output_data.x->white_relief.gc;
2019 else
2020 gc = f->output_data.x->black_relief.gc;
2021 XSetClipRectangles (dpy, gc, 0, 0, clip_rect, 1, Unsorted);
2022
2023 /* This code is more complicated than it has to be, because of two
2024 minor hacks to make the boxes look nicer: (i) if width > 1, draw
2025 the outermost line using the black relief. (ii) Omit the four
2026 corner pixels. */
2027
2028 /* Top. */
2029 if (top_p)
2030 {
2031 if (width == 1)
2032 XDrawLine (dpy, window, gc,
2033 left_x + (left_p ? 1 : 0), top_y,
2034 right_x + (right_p ? 0 : 1), top_y);
2035
2036 for (i = 1; i < width; ++i)
2037 XDrawLine (dpy, window, gc,
2038 left_x + i * left_p, top_y + i,
2039 right_x + 1 - i * right_p, top_y + i);
2040 }
2041
2042 /* Left. */
2043 if (left_p)
2044 {
2045 if (width == 1)
2046 XDrawLine (dpy, window, gc, left_x, top_y + 1, left_x, bottom_y);
2047
2048 XClearArea (dpy, window, left_x, top_y, 1, 1, False);
2049 XClearArea (dpy, window, left_x, bottom_y, 1, 1, False);
2050
2051 for (i = (width > 1 ? 1 : 0); i < width; ++i)
2052 XDrawLine (dpy, window, gc,
2053 left_x + i, top_y + i, left_x + i, bottom_y - i + 1);
2054 }
2055
2056 XSetClipMask (dpy, gc, None);
2057 if (raised_p)
2058 gc = f->output_data.x->black_relief.gc;
2059 else
2060 gc = f->output_data.x->white_relief.gc;
2061 XSetClipRectangles (dpy, gc, 0, 0, clip_rect, 1, Unsorted);
2062
2063 if (width > 1)
2064 {
2065 /* Outermost top line. */
2066 if (top_p)
2067 XDrawLine (dpy, window, gc,
2068 left_x + (left_p ? 1 : 0), top_y,
2069 right_x + (right_p ? 0 : 1), top_y);
2070
2071 /* Outermost left line. */
2072 if (left_p)
2073 XDrawLine (dpy, window, gc, left_x, top_y + 1, left_x, bottom_y);
2074 }
2075
2076 /* Bottom. */
2077 if (bot_p)
2078 {
2079 XDrawLine (dpy, window, gc,
2080 left_x + (left_p ? 1 : 0), bottom_y,
2081 right_x + (right_p ? 0 : 1), bottom_y);
2082 for (i = 1; i < width; ++i)
2083 XDrawLine (dpy, window, gc,
2084 left_x + i * left_p, bottom_y - i,
2085 right_x + 1 - i * right_p, bottom_y - i);
2086 }
2087
2088 /* Right. */
2089 if (right_p)
2090 {
2091 XClearArea (dpy, window, right_x, top_y, 1, 1, False);
2092 XClearArea (dpy, window, right_x, bottom_y, 1, 1, False);
2093 for (i = 0; i < width; ++i)
2094 XDrawLine (dpy, window, gc,
2095 right_x - i, top_y + i + 1, right_x - i, bottom_y - i);
2096 }
2097
2098 XSetClipMask (dpy, gc, None);
2099 }
2100
2101
2102 /* Draw a box on frame F inside the rectangle given by LEFT_X, TOP_Y,
2103 RIGHT_X, and BOTTOM_Y. WIDTH is the thickness of the lines to
2104 draw, it must be >= 0. LEFT_P non-zero means draw a line on the
2105 left side of the rectangle. RIGHT_P non-zero means draw a line
2106 on the right side of the rectangle. CLIP_RECT is the clipping
2107 rectangle to use when drawing. */
2108
2109 static void
2110 x_draw_box_rect (struct glyph_string *s,
2111 int left_x, int top_y, int right_x, int bottom_y, int width,
2112 int left_p, int right_p, XRectangle *clip_rect)
2113 {
2114 XGCValues xgcv;
2115
2116 XGetGCValues (s->display, s->gc, GCForeground, &xgcv);
2117 XSetForeground (s->display, s->gc, s->face->box_color);
2118 XSetClipRectangles (s->display, s->gc, 0, 0, clip_rect, 1, Unsorted);
2119
2120 /* Top. */
2121 XFillRectangle (s->display, s->window, s->gc,
2122 left_x, top_y, right_x - left_x + 1, width);
2123
2124 /* Left. */
2125 if (left_p)
2126 XFillRectangle (s->display, s->window, s->gc,
2127 left_x, top_y, width, bottom_y - top_y + 1);
2128
2129 /* Bottom. */
2130 XFillRectangle (s->display, s->window, s->gc,
2131 left_x, bottom_y - width + 1, right_x - left_x + 1, width);
2132
2133 /* Right. */
2134 if (right_p)
2135 XFillRectangle (s->display, s->window, s->gc,
2136 right_x - width + 1, top_y, width, bottom_y - top_y + 1);
2137
2138 XSetForeground (s->display, s->gc, xgcv.foreground);
2139 XSetClipMask (s->display, s->gc, None);
2140 }
2141
2142
2143 /* Draw a box around glyph string S. */
2144
2145 static void
2146 x_draw_glyph_string_box (struct glyph_string *s)
2147 {
2148 int width, left_x, right_x, top_y, bottom_y, last_x, raised_p;
2149 int left_p, right_p;
2150 struct glyph *last_glyph;
2151 XRectangle clip_rect;
2152
2153 last_x = ((s->row->full_width_p && !s->w->pseudo_window_p)
2154 ? WINDOW_RIGHT_EDGE_X (s->w)
2155 : window_box_right (s->w, s->area));
2156
2157 /* The glyph that may have a right box line. */
2158 last_glyph = (s->cmp || s->img
2159 ? s->first_glyph
2160 : s->first_glyph + s->nchars - 1);
2161
2162 width = eabs (s->face->box_line_width);
2163 raised_p = s->face->box == FACE_RAISED_BOX;
2164 left_x = s->x;
2165 right_x = (s->row->full_width_p && s->extends_to_end_of_line_p
2166 ? last_x - 1
2167 : min (last_x, s->x + s->background_width) - 1);
2168 top_y = s->y;
2169 bottom_y = top_y + s->height - 1;
2170
2171 left_p = (s->first_glyph->left_box_line_p
2172 || (s->hl == DRAW_MOUSE_FACE
2173 && (s->prev == NULL
2174 || s->prev->hl != s->hl)));
2175 right_p = (last_glyph->right_box_line_p
2176 || (s->hl == DRAW_MOUSE_FACE
2177 && (s->next == NULL
2178 || s->next->hl != s->hl)));
2179
2180 get_glyph_string_clip_rect (s, &clip_rect);
2181
2182 if (s->face->box == FACE_SIMPLE_BOX)
2183 x_draw_box_rect (s, left_x, top_y, right_x, bottom_y, width,
2184 left_p, right_p, &clip_rect);
2185 else
2186 {
2187 x_setup_relief_colors (s);
2188 x_draw_relief_rect (s->f, left_x, top_y, right_x, bottom_y,
2189 width, raised_p, 1, 1, left_p, right_p, &clip_rect);
2190 }
2191 }
2192
2193
2194 /* Draw foreground of image glyph string S. */
2195
2196 static void
2197 x_draw_image_foreground (struct glyph_string *s)
2198 {
2199 int x = s->x;
2200 int y = s->ybase - image_ascent (s->img, s->face, &s->slice);
2201
2202 /* If first glyph of S has a left box line, start drawing it to the
2203 right of that line. */
2204 if (s->face->box != FACE_NO_BOX
2205 && s->first_glyph->left_box_line_p
2206 && s->slice.x == 0)
2207 x += eabs (s->face->box_line_width);
2208
2209 /* If there is a margin around the image, adjust x- and y-position
2210 by that margin. */
2211 if (s->slice.x == 0)
2212 x += s->img->hmargin;
2213 if (s->slice.y == 0)
2214 y += s->img->vmargin;
2215
2216 if (s->img->pixmap)
2217 {
2218 if (s->img->mask)
2219 {
2220 /* We can't set both a clip mask and use XSetClipRectangles
2221 because the latter also sets a clip mask. We also can't
2222 trust on the shape extension to be available
2223 (XShapeCombineRegion). So, compute the rectangle to draw
2224 manually. */
2225 unsigned long mask = (GCClipMask | GCClipXOrigin | GCClipYOrigin
2226 | GCFunction);
2227 XGCValues xgcv;
2228 XRectangle clip_rect, image_rect, r;
2229
2230 xgcv.clip_mask = s->img->mask;
2231 xgcv.clip_x_origin = x;
2232 xgcv.clip_y_origin = y;
2233 xgcv.function = GXcopy;
2234 XChangeGC (s->display, s->gc, mask, &xgcv);
2235
2236 get_glyph_string_clip_rect (s, &clip_rect);
2237 image_rect.x = x;
2238 image_rect.y = y;
2239 image_rect.width = s->slice.width;
2240 image_rect.height = s->slice.height;
2241 if (x_intersect_rectangles (&clip_rect, &image_rect, &r))
2242 XCopyArea (s->display, s->img->pixmap, s->window, s->gc,
2243 s->slice.x + r.x - x, s->slice.y + r.y - y,
2244 r.width, r.height, r.x, r.y);
2245 }
2246 else
2247 {
2248 XRectangle clip_rect, image_rect, r;
2249
2250 get_glyph_string_clip_rect (s, &clip_rect);
2251 image_rect.x = x;
2252 image_rect.y = y;
2253 image_rect.width = s->slice.width;
2254 image_rect.height = s->slice.height;
2255 if (x_intersect_rectangles (&clip_rect, &image_rect, &r))
2256 XCopyArea (s->display, s->img->pixmap, s->window, s->gc,
2257 s->slice.x + r.x - x, s->slice.y + r.y - y,
2258 r.width, r.height, r.x, r.y);
2259
2260 /* When the image has a mask, we can expect that at
2261 least part of a mouse highlight or a block cursor will
2262 be visible. If the image doesn't have a mask, make
2263 a block cursor visible by drawing a rectangle around
2264 the image. I believe it's looking better if we do
2265 nothing here for mouse-face. */
2266 if (s->hl == DRAW_CURSOR)
2267 {
2268 int r = s->img->relief;
2269 if (r < 0) r = -r;
2270 XDrawRectangle (s->display, s->window, s->gc,
2271 x - r, y - r,
2272 s->slice.width + r*2 - 1,
2273 s->slice.height + r*2 - 1);
2274 }
2275 }
2276 }
2277 else
2278 /* Draw a rectangle if image could not be loaded. */
2279 XDrawRectangle (s->display, s->window, s->gc, x, y,
2280 s->slice.width - 1, s->slice.height - 1);
2281 }
2282
2283
2284 /* Draw a relief around the image glyph string S. */
2285
2286 static void
2287 x_draw_image_relief (struct glyph_string *s)
2288 {
2289 int x0, y0, x1, y1, thick, raised_p, extra;
2290 XRectangle r;
2291 int x = s->x;
2292 int y = s->ybase - image_ascent (s->img, s->face, &s->slice);
2293
2294 /* If first glyph of S has a left box line, start drawing it to the
2295 right of that line. */
2296 if (s->face->box != FACE_NO_BOX
2297 && s->first_glyph->left_box_line_p
2298 && s->slice.x == 0)
2299 x += eabs (s->face->box_line_width);
2300
2301 /* If there is a margin around the image, adjust x- and y-position
2302 by that margin. */
2303 if (s->slice.x == 0)
2304 x += s->img->hmargin;
2305 if (s->slice.y == 0)
2306 y += s->img->vmargin;
2307
2308 if (s->hl == DRAW_IMAGE_SUNKEN
2309 || s->hl == DRAW_IMAGE_RAISED)
2310 {
2311 thick = tool_bar_button_relief >= 0 ? tool_bar_button_relief : DEFAULT_TOOL_BAR_BUTTON_RELIEF;
2312 raised_p = s->hl == DRAW_IMAGE_RAISED;
2313 }
2314 else
2315 {
2316 thick = eabs (s->img->relief);
2317 raised_p = s->img->relief > 0;
2318 }
2319
2320 extra = s->face->id == TOOL_BAR_FACE_ID
2321 ? XINT (Vtool_bar_button_margin) : 0;
2322
2323 x0 = x - thick - extra;
2324 y0 = y - thick - extra;
2325 x1 = x + s->slice.width + thick - 1 + extra;
2326 y1 = y + s->slice.height + thick - 1 + extra;
2327
2328 x_setup_relief_colors (s);
2329 get_glyph_string_clip_rect (s, &r);
2330 x_draw_relief_rect (s->f, x0, y0, x1, y1, thick, raised_p,
2331 s->slice.y == 0,
2332 s->slice.y + s->slice.height == s->img->height,
2333 s->slice.x == 0,
2334 s->slice.x + s->slice.width == s->img->width,
2335 &r);
2336 }
2337
2338
2339 /* Draw the foreground of image glyph string S to PIXMAP. */
2340
2341 static void
2342 x_draw_image_foreground_1 (struct glyph_string *s, Pixmap pixmap)
2343 {
2344 int x = 0;
2345 int y = s->ybase - s->y - image_ascent (s->img, s->face, &s->slice);
2346
2347 /* If first glyph of S has a left box line, start drawing it to the
2348 right of that line. */
2349 if (s->face->box != FACE_NO_BOX
2350 && s->first_glyph->left_box_line_p
2351 && s->slice.x == 0)
2352 x += eabs (s->face->box_line_width);
2353
2354 /* If there is a margin around the image, adjust x- and y-position
2355 by that margin. */
2356 if (s->slice.x == 0)
2357 x += s->img->hmargin;
2358 if (s->slice.y == 0)
2359 y += s->img->vmargin;
2360
2361 if (s->img->pixmap)
2362 {
2363 if (s->img->mask)
2364 {
2365 /* We can't set both a clip mask and use XSetClipRectangles
2366 because the latter also sets a clip mask. We also can't
2367 trust on the shape extension to be available
2368 (XShapeCombineRegion). So, compute the rectangle to draw
2369 manually. */
2370 unsigned long mask = (GCClipMask | GCClipXOrigin | GCClipYOrigin
2371 | GCFunction);
2372 XGCValues xgcv;
2373
2374 xgcv.clip_mask = s->img->mask;
2375 xgcv.clip_x_origin = x - s->slice.x;
2376 xgcv.clip_y_origin = y - s->slice.y;
2377 xgcv.function = GXcopy;
2378 XChangeGC (s->display, s->gc, mask, &xgcv);
2379
2380 XCopyArea (s->display, s->img->pixmap, pixmap, s->gc,
2381 s->slice.x, s->slice.y,
2382 s->slice.width, s->slice.height, x, y);
2383 XSetClipMask (s->display, s->gc, None);
2384 }
2385 else
2386 {
2387 XCopyArea (s->display, s->img->pixmap, pixmap, s->gc,
2388 s->slice.x, s->slice.y,
2389 s->slice.width, s->slice.height, x, y);
2390
2391 /* When the image has a mask, we can expect that at
2392 least part of a mouse highlight or a block cursor will
2393 be visible. If the image doesn't have a mask, make
2394 a block cursor visible by drawing a rectangle around
2395 the image. I believe it's looking better if we do
2396 nothing here for mouse-face. */
2397 if (s->hl == DRAW_CURSOR)
2398 {
2399 int r = s->img->relief;
2400 if (r < 0) r = -r;
2401 XDrawRectangle (s->display, s->window, s->gc, x - r, y - r,
2402 s->slice.width + r*2 - 1,
2403 s->slice.height + r*2 - 1);
2404 }
2405 }
2406 }
2407 else
2408 /* Draw a rectangle if image could not be loaded. */
2409 XDrawRectangle (s->display, pixmap, s->gc, x, y,
2410 s->slice.width - 1, s->slice.height - 1);
2411 }
2412
2413
2414 /* Draw part of the background of glyph string S. X, Y, W, and H
2415 give the rectangle to draw. */
2416
2417 static void
2418 x_draw_glyph_string_bg_rect (struct glyph_string *s, int x, int y, int w, int h)
2419 {
2420 if (s->stippled_p)
2421 {
2422 /* Fill background with a stipple pattern. */
2423 XSetFillStyle (s->display, s->gc, FillOpaqueStippled);
2424 XFillRectangle (s->display, s->window, s->gc, x, y, w, h);
2425 XSetFillStyle (s->display, s->gc, FillSolid);
2426 }
2427 else
2428 x_clear_glyph_string_rect (s, x, y, w, h);
2429 }
2430
2431
2432 /* Draw image glyph string S.
2433
2434 s->y
2435 s->x +-------------------------
2436 | s->face->box
2437 |
2438 | +-------------------------
2439 | | s->img->margin
2440 | |
2441 | | +-------------------
2442 | | | the image
2443
2444 */
2445
2446 static void
2447 x_draw_image_glyph_string (struct glyph_string *s)
2448 {
2449 int box_line_hwidth = eabs (s->face->box_line_width);
2450 int box_line_vwidth = max (s->face->box_line_width, 0);
2451 int height;
2452 Pixmap pixmap = None;
2453
2454 height = s->height;
2455 if (s->slice.y == 0)
2456 height -= box_line_vwidth;
2457 if (s->slice.y + s->slice.height >= s->img->height)
2458 height -= box_line_vwidth;
2459
2460 /* Fill background with face under the image. Do it only if row is
2461 taller than image or if image has a clip mask to reduce
2462 flickering. */
2463 s->stippled_p = s->face->stipple != 0;
2464 if (height > s->slice.height
2465 || s->img->hmargin
2466 || s->img->vmargin
2467 || s->img->mask
2468 || s->img->pixmap == 0
2469 || s->width != s->background_width)
2470 {
2471 if (s->img->mask)
2472 {
2473 /* Create a pixmap as large as the glyph string. Fill it
2474 with the background color. Copy the image to it, using
2475 its mask. Copy the temporary pixmap to the display. */
2476 Screen *screen = FRAME_X_SCREEN (s->f);
2477 int depth = DefaultDepthOfScreen (screen);
2478
2479 /* Create a pixmap as large as the glyph string. */
2480 pixmap = XCreatePixmap (s->display, s->window,
2481 s->background_width,
2482 s->height, depth);
2483
2484 /* Don't clip in the following because we're working on the
2485 pixmap. */
2486 XSetClipMask (s->display, s->gc, None);
2487
2488 /* Fill the pixmap with the background color/stipple. */
2489 if (s->stippled_p)
2490 {
2491 /* Fill background with a stipple pattern. */
2492 XSetFillStyle (s->display, s->gc, FillOpaqueStippled);
2493 XSetTSOrigin (s->display, s->gc, - s->x, - s->y);
2494 XFillRectangle (s->display, pixmap, s->gc,
2495 0, 0, s->background_width, s->height);
2496 XSetFillStyle (s->display, s->gc, FillSolid);
2497 XSetTSOrigin (s->display, s->gc, 0, 0);
2498 }
2499 else
2500 {
2501 XGCValues xgcv;
2502 XGetGCValues (s->display, s->gc, GCForeground | GCBackground,
2503 &xgcv);
2504 XSetForeground (s->display, s->gc, xgcv.background);
2505 XFillRectangle (s->display, pixmap, s->gc,
2506 0, 0, s->background_width, s->height);
2507 XSetForeground (s->display, s->gc, xgcv.foreground);
2508 }
2509 }
2510 else
2511 {
2512 int x = s->x;
2513 int y = s->y;
2514
2515 if (s->first_glyph->left_box_line_p
2516 && s->slice.x == 0)
2517 x += box_line_hwidth;
2518
2519 if (s->slice.y == 0)
2520 y += box_line_vwidth;
2521
2522 x_draw_glyph_string_bg_rect (s, x, y, s->background_width, height);
2523 }
2524
2525 s->background_filled_p = 1;
2526 }
2527
2528 /* Draw the foreground. */
2529 if (pixmap != None)
2530 {
2531 x_draw_image_foreground_1 (s, pixmap);
2532 x_set_glyph_string_clipping (s);
2533 XCopyArea (s->display, pixmap, s->window, s->gc,
2534 0, 0, s->background_width, s->height, s->x, s->y);
2535 XFreePixmap (s->display, pixmap);
2536 }
2537 else
2538 x_draw_image_foreground (s);
2539
2540 /* If we must draw a relief around the image, do it. */
2541 if (s->img->relief
2542 || s->hl == DRAW_IMAGE_RAISED
2543 || s->hl == DRAW_IMAGE_SUNKEN)
2544 x_draw_image_relief (s);
2545 }
2546
2547
2548 /* Draw stretch glyph string S. */
2549
2550 static void
2551 x_draw_stretch_glyph_string (struct glyph_string *s)
2552 {
2553 xassert (s->first_glyph->type == STRETCH_GLYPH);
2554
2555 if (s->hl == DRAW_CURSOR
2556 && !x_stretch_cursor_p)
2557 {
2558 /* If `x-stretch-cursor' is nil, don't draw a block cursor as
2559 wide as the stretch glyph. */
2560 int width, background_width = s->background_width;
2561 int x = s->x;
2562
2563 if (!s->row->reversed_p)
2564 {
2565 int left_x = window_box_left_offset (s->w, TEXT_AREA);
2566
2567 if (x < left_x)
2568 {
2569 background_width -= left_x - x;
2570 x = left_x;
2571 }
2572 }
2573 else
2574 {
2575 /* In R2L rows, draw the cursor on the right edge of the
2576 stretch glyph. */
2577 int right_x = window_box_right_offset (s->w, TEXT_AREA);
2578
2579 if (x + background_width > right_x)
2580 background_width -= x - right_x;
2581 x += background_width;
2582 }
2583 width = min (FRAME_COLUMN_WIDTH (s->f), background_width);
2584 if (s->row->reversed_p)
2585 x -= width;
2586
2587 /* Draw cursor. */
2588 x_draw_glyph_string_bg_rect (s, x, s->y, width, s->height);
2589
2590 /* Clear rest using the GC of the original non-cursor face. */
2591 if (width < background_width)
2592 {
2593 int y = s->y;
2594 int w = background_width - width, h = s->height;
2595 XRectangle r;
2596 GC gc;
2597
2598 if (!s->row->reversed_p)
2599 x += width;
2600 else
2601 x = s->x;
2602 if (s->row->mouse_face_p
2603 && cursor_in_mouse_face_p (s->w))
2604 {
2605 x_set_mouse_face_gc (s);
2606 gc = s->gc;
2607 }
2608 else
2609 gc = s->face->gc;
2610
2611 get_glyph_string_clip_rect (s, &r);
2612 XSetClipRectangles (s->display, gc, 0, 0, &r, 1, Unsorted);
2613
2614 if (s->face->stipple)
2615 {
2616 /* Fill background with a stipple pattern. */
2617 XSetFillStyle (s->display, gc, FillOpaqueStippled);
2618 XFillRectangle (s->display, s->window, gc, x, y, w, h);
2619 XSetFillStyle (s->display, gc, FillSolid);
2620 }
2621 else
2622 {
2623 XGCValues xgcv;
2624 XGetGCValues (s->display, gc, GCForeground | GCBackground, &xgcv);
2625 XSetForeground (s->display, gc, xgcv.background);
2626 XFillRectangle (s->display, s->window, gc, x, y, w, h);
2627 XSetForeground (s->display, gc, xgcv.foreground);
2628 }
2629 }
2630 }
2631 else if (!s->background_filled_p)
2632 {
2633 int background_width = s->background_width;
2634 int x = s->x, left_x = window_box_left_offset (s->w, TEXT_AREA);
2635
2636 /* Don't draw into left margin, fringe or scrollbar area
2637 except for header line and mode line. */
2638 if (x < left_x && !s->row->mode_line_p)
2639 {
2640 background_width -= left_x - x;
2641 x = left_x;
2642 }
2643 if (background_width > 0)
2644 x_draw_glyph_string_bg_rect (s, x, s->y, background_width, s->height);
2645 }
2646
2647 s->background_filled_p = 1;
2648 }
2649
2650
2651 /* Draw glyph string S. */
2652
2653 static void
2654 x_draw_glyph_string (struct glyph_string *s)
2655 {
2656 int relief_drawn_p = 0;
2657
2658 /* If S draws into the background of its successors, draw the
2659 background of the successors first so that S can draw into it.
2660 This makes S->next use XDrawString instead of XDrawImageString. */
2661 if (s->next && s->right_overhang && !s->for_overlaps)
2662 {
2663 int width;
2664 struct glyph_string *next;
2665
2666 for (width = 0, next = s->next;
2667 next && width < s->right_overhang;
2668 width += next->width, next = next->next)
2669 if (next->first_glyph->type != IMAGE_GLYPH)
2670 {
2671 x_set_glyph_string_gc (next);
2672 x_set_glyph_string_clipping (next);
2673 if (next->first_glyph->type == STRETCH_GLYPH)
2674 x_draw_stretch_glyph_string (next);
2675 else
2676 x_draw_glyph_string_background (next, 1);
2677 next->num_clips = 0;
2678 }
2679 }
2680
2681 /* Set up S->gc, set clipping and draw S. */
2682 x_set_glyph_string_gc (s);
2683
2684 /* Draw relief (if any) in advance for char/composition so that the
2685 glyph string can be drawn over it. */
2686 if (!s->for_overlaps
2687 && s->face->box != FACE_NO_BOX
2688 && (s->first_glyph->type == CHAR_GLYPH
2689 || s->first_glyph->type == COMPOSITE_GLYPH))
2690
2691 {
2692 x_set_glyph_string_clipping (s);
2693 x_draw_glyph_string_background (s, 1);
2694 x_draw_glyph_string_box (s);
2695 x_set_glyph_string_clipping (s);
2696 relief_drawn_p = 1;
2697 }
2698 else if (!s->clip_head /* draw_glyphs didn't specify a clip mask. */
2699 && !s->clip_tail
2700 && ((s->prev && s->prev->hl != s->hl && s->left_overhang)
2701 || (s->next && s->next->hl != s->hl && s->right_overhang)))
2702 /* We must clip just this glyph. left_overhang part has already
2703 drawn when s->prev was drawn, and right_overhang part will be
2704 drawn later when s->next is drawn. */
2705 x_set_glyph_string_clipping_exactly (s, s);
2706 else
2707 x_set_glyph_string_clipping (s);
2708
2709 switch (s->first_glyph->type)
2710 {
2711 case IMAGE_GLYPH:
2712 x_draw_image_glyph_string (s);
2713 break;
2714
2715 case STRETCH_GLYPH:
2716 x_draw_stretch_glyph_string (s);
2717 break;
2718
2719 case CHAR_GLYPH:
2720 if (s->for_overlaps)
2721 s->background_filled_p = 1;
2722 else
2723 x_draw_glyph_string_background (s, 0);
2724 x_draw_glyph_string_foreground (s);
2725 break;
2726
2727 case COMPOSITE_GLYPH:
2728 if (s->for_overlaps || (s->cmp_from > 0
2729 && ! s->first_glyph->u.cmp.automatic))
2730 s->background_filled_p = 1;
2731 else
2732 x_draw_glyph_string_background (s, 1);
2733 x_draw_composite_glyph_string_foreground (s);
2734 break;
2735
2736 case GLYPHLESS_GLYPH:
2737 if (s->for_overlaps)
2738 s->background_filled_p = 1;
2739 else
2740 x_draw_glyph_string_background (s, 1);
2741 x_draw_glyphless_glyph_string_foreground (s);
2742 break;
2743
2744 default:
2745 abort ();
2746 }
2747
2748 if (!s->for_overlaps)
2749 {
2750 /* Draw underline. */
2751 if (s->face->underline_p)
2752 {
2753 unsigned long thickness, position;
2754 int y;
2755
2756 if (s->prev && s->prev->face->underline_p)
2757 {
2758 /* We use the same underline style as the previous one. */
2759 thickness = s->prev->underline_thickness;
2760 position = s->prev->underline_position;
2761 }
2762 else
2763 {
2764 /* Get the underline thickness. Default is 1 pixel. */
2765 if (s->font && s->font->underline_thickness > 0)
2766 thickness = s->font->underline_thickness;
2767 else
2768 thickness = 1;
2769 if (x_underline_at_descent_line)
2770 position = (s->height - thickness) - (s->ybase - s->y);
2771 else
2772 {
2773 /* Get the underline position. This is the recommended
2774 vertical offset in pixels from the baseline to the top of
2775 the underline. This is a signed value according to the
2776 specs, and its default is
2777
2778 ROUND ((maximum descent) / 2), with
2779 ROUND(x) = floor (x + 0.5) */
2780
2781 if (x_use_underline_position_properties
2782 && s->font && s->font->underline_position >= 0)
2783 position = s->font->underline_position;
2784 else if (s->font)
2785 position = (s->font->descent + 1) / 2;
2786 else
2787 position = underline_minimum_offset;
2788 }
2789 position = max (position, underline_minimum_offset);
2790 }
2791 /* Check the sanity of thickness and position. We should
2792 avoid drawing underline out of the current line area. */
2793 if (s->y + s->height <= s->ybase + position)
2794 position = (s->height - 1) - (s->ybase - s->y);
2795 if (s->y + s->height < s->ybase + position + thickness)
2796 thickness = (s->y + s->height) - (s->ybase + position);
2797 s->underline_thickness = thickness;
2798 s->underline_position = position;
2799 y = s->ybase + position;
2800 if (s->face->underline_defaulted_p)
2801 XFillRectangle (s->display, s->window, s->gc,
2802 s->x, y, s->width, thickness);
2803 else
2804 {
2805 XGCValues xgcv;
2806 XGetGCValues (s->display, s->gc, GCForeground, &xgcv);
2807 XSetForeground (s->display, s->gc, s->face->underline_color);
2808 XFillRectangle (s->display, s->window, s->gc,
2809 s->x, y, s->width, thickness);
2810 XSetForeground (s->display, s->gc, xgcv.foreground);
2811 }
2812 }
2813
2814 /* Draw overline. */
2815 if (s->face->overline_p)
2816 {
2817 unsigned long dy = 0, h = 1;
2818
2819 if (s->face->overline_color_defaulted_p)
2820 XFillRectangle (s->display, s->window, s->gc, s->x, s->y + dy,
2821 s->width, h);
2822 else
2823 {
2824 XGCValues xgcv;
2825 XGetGCValues (s->display, s->gc, GCForeground, &xgcv);
2826 XSetForeground (s->display, s->gc, s->face->overline_color);
2827 XFillRectangle (s->display, s->window, s->gc, s->x, s->y + dy,
2828 s->width, h);
2829 XSetForeground (s->display, s->gc, xgcv.foreground);
2830 }
2831 }
2832
2833 /* Draw strike-through. */
2834 if (s->face->strike_through_p)
2835 {
2836 unsigned long h = 1;
2837 unsigned long dy = (s->height - h) / 2;
2838
2839 if (s->face->strike_through_color_defaulted_p)
2840 XFillRectangle (s->display, s->window, s->gc, s->x, s->y + dy,
2841 s->width, h);
2842 else
2843 {
2844 XGCValues xgcv;
2845 XGetGCValues (s->display, s->gc, GCForeground, &xgcv);
2846 XSetForeground (s->display, s->gc, s->face->strike_through_color);
2847 XFillRectangle (s->display, s->window, s->gc, s->x, s->y + dy,
2848 s->width, h);
2849 XSetForeground (s->display, s->gc, xgcv.foreground);
2850 }
2851 }
2852
2853 /* Draw relief if not yet drawn. */
2854 if (!relief_drawn_p && s->face->box != FACE_NO_BOX)
2855 x_draw_glyph_string_box (s);
2856
2857 if (s->prev)
2858 {
2859 struct glyph_string *prev;
2860
2861 for (prev = s->prev; prev; prev = prev->prev)
2862 if (prev->hl != s->hl
2863 && prev->x + prev->width + prev->right_overhang > s->x)
2864 {
2865 /* As prev was drawn while clipped to its own area, we
2866 must draw the right_overhang part using s->hl now. */
2867 enum draw_glyphs_face save = prev->hl;
2868
2869 prev->hl = s->hl;
2870 x_set_glyph_string_gc (prev);
2871 x_set_glyph_string_clipping_exactly (s, prev);
2872 if (prev->first_glyph->type == CHAR_GLYPH)
2873 x_draw_glyph_string_foreground (prev);
2874 else
2875 x_draw_composite_glyph_string_foreground (prev);
2876 XSetClipMask (prev->display, prev->gc, None);
2877 prev->hl = save;
2878 prev->num_clips = 0;
2879 }
2880 }
2881
2882 if (s->next)
2883 {
2884 struct glyph_string *next;
2885
2886 for (next = s->next; next; next = next->next)
2887 if (next->hl != s->hl
2888 && next->x - next->left_overhang < s->x + s->width)
2889 {
2890 /* As next will be drawn while clipped to its own area,
2891 we must draw the left_overhang part using s->hl now. */
2892 enum draw_glyphs_face save = next->hl;
2893
2894 next->hl = s->hl;
2895 x_set_glyph_string_gc (next);
2896 x_set_glyph_string_clipping_exactly (s, next);
2897 if (next->first_glyph->type == CHAR_GLYPH)
2898 x_draw_glyph_string_foreground (next);
2899 else
2900 x_draw_composite_glyph_string_foreground (next);
2901 XSetClipMask (next->display, next->gc, None);
2902 next->hl = save;
2903 next->num_clips = 0;
2904 }
2905 }
2906 }
2907
2908 /* Reset clipping. */
2909 XSetClipMask (s->display, s->gc, None);
2910 s->num_clips = 0;
2911 }
2912
2913 /* Shift display to make room for inserted glyphs. */
2914
2915 void
2916 x_shift_glyphs_for_insert (struct frame *f, int x, int y, int width, int height, int shift_by)
2917 {
2918 XCopyArea (FRAME_X_DISPLAY (f), FRAME_X_WINDOW (f), FRAME_X_WINDOW (f),
2919 f->output_data.x->normal_gc,
2920 x, y, width, height,
2921 x + shift_by, y);
2922 }
2923
2924 /* Delete N glyphs at the nominal cursor position. Not implemented
2925 for X frames. */
2926
2927 static void
2928 x_delete_glyphs (struct frame *f, register int n)
2929 {
2930 abort ();
2931 }
2932
2933
2934 /* Like XClearArea, but check that WIDTH and HEIGHT are reasonable.
2935 If they are <= 0, this is probably an error. */
2936
2937 void
2938 x_clear_area (Display *dpy, Window window, int x, int y, int width, int height, int exposures)
2939 {
2940 xassert (width > 0 && height > 0);
2941 XClearArea (dpy, window, x, y, width, height, exposures);
2942 }
2943
2944
2945 /* Clear an entire frame. */
2946
2947 static void
2948 x_clear_frame (struct frame *f)
2949 {
2950 /* Clearing the frame will erase any cursor, so mark them all as no
2951 longer visible. */
2952 mark_window_cursors_off (XWINDOW (FRAME_ROOT_WINDOW (f)));
2953 output_cursor.hpos = output_cursor.vpos = 0;
2954 output_cursor.x = -1;
2955
2956 /* We don't set the output cursor here because there will always
2957 follow an explicit cursor_to. */
2958 BLOCK_INPUT;
2959 XClearWindow (FRAME_X_DISPLAY (f), FRAME_X_WINDOW (f));
2960
2961 /* We have to clear the scroll bars, too. If we have changed
2962 colors or something like that, then they should be notified. */
2963 x_scroll_bar_clear (f);
2964
2965 #if defined (USE_GTK) && defined (USE_TOOLKIT_SCROLL_BARS)
2966 /* Make sure scroll bars are redrawn. As they aren't redrawn by
2967 redisplay, do it here. */
2968 if (FRAME_GTK_WIDGET (f))
2969 gtk_widget_queue_draw (FRAME_GTK_WIDGET (f));
2970 #endif
2971
2972 XFlush (FRAME_X_DISPLAY (f));
2973
2974 UNBLOCK_INPUT;
2975 }
2976
2977
2978 \f
2979 /* Invert the middle quarter of the frame for .15 sec. */
2980
2981 /* We use the select system call to do the waiting, so we have to make
2982 sure it's available. If it isn't, we just won't do visual bells. */
2983
2984 #if defined (HAVE_TIMEVAL) && defined (HAVE_SELECT)
2985
2986
2987 /* Subtract the `struct timeval' values X and Y, storing the result in
2988 *RESULT. Return 1 if the difference is negative, otherwise 0. */
2989
2990 static int
2991 timeval_subtract (struct timeval *result, struct timeval x, struct timeval y)
2992 {
2993 /* Perform the carry for the later subtraction by updating y. This
2994 is safer because on some systems the tv_sec member is unsigned. */
2995 if (x.tv_usec < y.tv_usec)
2996 {
2997 int nsec = (y.tv_usec - x.tv_usec) / 1000000 + 1;
2998 y.tv_usec -= 1000000 * nsec;
2999 y.tv_sec += nsec;
3000 }
3001
3002 if (x.tv_usec - y.tv_usec > 1000000)
3003 {
3004 int nsec = (y.tv_usec - x.tv_usec) / 1000000;
3005 y.tv_usec += 1000000 * nsec;
3006 y.tv_sec -= nsec;
3007 }
3008
3009 /* Compute the time remaining to wait. tv_usec is certainly
3010 positive. */
3011 result->tv_sec = x.tv_sec - y.tv_sec;
3012 result->tv_usec = x.tv_usec - y.tv_usec;
3013
3014 /* Return indication of whether the result should be considered
3015 negative. */
3016 return x.tv_sec < y.tv_sec;
3017 }
3018
3019 void
3020 XTflash (struct frame *f)
3021 {
3022 BLOCK_INPUT;
3023
3024 {
3025 #ifdef USE_GTK
3026 /* Use Gdk routines to draw. This way, we won't draw over scroll bars
3027 when the scroll bars and the edit widget share the same X window. */
3028 GdkWindow *window = gtk_widget_get_window (FRAME_GTK_WIDGET (f));
3029 GdkGCValues vals;
3030 GdkGC *gc;
3031 vals.foreground.pixel = (FRAME_FOREGROUND_PIXEL (f)
3032 ^ FRAME_BACKGROUND_PIXEL (f));
3033 vals.function = GDK_XOR;
3034 gc = gdk_gc_new_with_values (window,
3035 &vals, GDK_GC_FUNCTION | GDK_GC_FOREGROUND);
3036 #define XFillRectangle(d, win, gc, x, y, w, h) \
3037 gdk_draw_rectangle (window, gc, TRUE, x, y, w, h)
3038 #else
3039 GC gc;
3040
3041 /* Create a GC that will use the GXxor function to flip foreground
3042 pixels into background pixels. */
3043 {
3044 XGCValues values;
3045
3046 values.function = GXxor;
3047 values.foreground = (FRAME_FOREGROUND_PIXEL (f)
3048 ^ FRAME_BACKGROUND_PIXEL (f));
3049
3050 gc = XCreateGC (FRAME_X_DISPLAY (f), FRAME_X_WINDOW (f),
3051 GCFunction | GCForeground, &values);
3052 }
3053 #endif
3054 {
3055 /* Get the height not including a menu bar widget. */
3056 int height = FRAME_TEXT_LINES_TO_PIXEL_HEIGHT (f, FRAME_LINES (f));
3057 /* Height of each line to flash. */
3058 int flash_height = FRAME_LINE_HEIGHT (f);
3059 /* These will be the left and right margins of the rectangles. */
3060 int flash_left = FRAME_INTERNAL_BORDER_WIDTH (f);
3061 int flash_right = FRAME_PIXEL_WIDTH (f) - FRAME_INTERNAL_BORDER_WIDTH (f);
3062
3063 int width;
3064
3065 /* Don't flash the area between a scroll bar and the frame
3066 edge it is next to. */
3067 switch (FRAME_VERTICAL_SCROLL_BAR_TYPE (f))
3068 {
3069 case vertical_scroll_bar_left:
3070 flash_left += VERTICAL_SCROLL_BAR_WIDTH_TRIM;
3071 break;
3072
3073 case vertical_scroll_bar_right:
3074 flash_right -= VERTICAL_SCROLL_BAR_WIDTH_TRIM;
3075 break;
3076
3077 default:
3078 break;
3079 }
3080
3081 width = flash_right - flash_left;
3082
3083 /* If window is tall, flash top and bottom line. */
3084 if (height > 3 * FRAME_LINE_HEIGHT (f))
3085 {
3086 XFillRectangle (FRAME_X_DISPLAY (f), FRAME_X_WINDOW (f), gc,
3087 flash_left,
3088 (FRAME_INTERNAL_BORDER_WIDTH (f)
3089 + FRAME_TOP_MARGIN_HEIGHT (f)),
3090 width, flash_height);
3091 XFillRectangle (FRAME_X_DISPLAY (f), FRAME_X_WINDOW (f), gc,
3092 flash_left,
3093 (height - flash_height
3094 - FRAME_INTERNAL_BORDER_WIDTH (f)),
3095 width, flash_height);
3096
3097 }
3098 else
3099 /* If it is short, flash it all. */
3100 XFillRectangle (FRAME_X_DISPLAY (f), FRAME_X_WINDOW (f), gc,
3101 flash_left, FRAME_INTERNAL_BORDER_WIDTH (f),
3102 width, height - 2 * FRAME_INTERNAL_BORDER_WIDTH (f));
3103
3104 x_flush (f);
3105
3106 {
3107 struct timeval wakeup;
3108
3109 EMACS_GET_TIME (wakeup);
3110
3111 /* Compute time to wait until, propagating carry from usecs. */
3112 wakeup.tv_usec += 150000;
3113 wakeup.tv_sec += (wakeup.tv_usec / 1000000);
3114 wakeup.tv_usec %= 1000000;
3115
3116 /* Keep waiting until past the time wakeup or any input gets
3117 available. */
3118 while (! detect_input_pending ())
3119 {
3120 struct timeval current;
3121 struct timeval timeout;
3122
3123 EMACS_GET_TIME (current);
3124
3125 /* Break if result would be negative. */
3126 if (timeval_subtract (&current, wakeup, current))
3127 break;
3128
3129 /* How long `select' should wait. */
3130 timeout.tv_sec = 0;
3131 timeout.tv_usec = 10000;
3132
3133 /* Try to wait that long--but we might wake up sooner. */
3134 select (0, NULL, NULL, NULL, &timeout);
3135 }
3136 }
3137
3138 /* If window is tall, flash top and bottom line. */
3139 if (height > 3 * FRAME_LINE_HEIGHT (f))
3140 {
3141 XFillRectangle (FRAME_X_DISPLAY (f), FRAME_X_WINDOW (f), gc,
3142 flash_left,
3143 (FRAME_INTERNAL_BORDER_WIDTH (f)
3144 + FRAME_TOP_MARGIN_HEIGHT (f)),
3145 width, flash_height);
3146 XFillRectangle (FRAME_X_DISPLAY (f), FRAME_X_WINDOW (f), gc,
3147 flash_left,
3148 (height - flash_height
3149 - FRAME_INTERNAL_BORDER_WIDTH (f)),
3150 width, flash_height);
3151 }
3152 else
3153 /* If it is short, flash it all. */
3154 XFillRectangle (FRAME_X_DISPLAY (f), FRAME_X_WINDOW (f), gc,
3155 flash_left, FRAME_INTERNAL_BORDER_WIDTH (f),
3156 width, height - 2 * FRAME_INTERNAL_BORDER_WIDTH (f));
3157
3158 #ifdef USE_GTK
3159 g_object_unref (G_OBJECT (gc));
3160 #undef XFillRectangle
3161 #else
3162 XFreeGC (FRAME_X_DISPLAY (f), gc);
3163 #endif
3164 x_flush (f);
3165 }
3166 }
3167
3168 UNBLOCK_INPUT;
3169 }
3170
3171 #endif /* defined (HAVE_TIMEVAL) && defined (HAVE_SELECT) */
3172
3173
3174 static void
3175 XTtoggle_invisible_pointer (FRAME_PTR f, int invisible)
3176 {
3177 BLOCK_INPUT;
3178 if (invisible)
3179 {
3180 if (FRAME_X_DISPLAY_INFO (f)->invisible_cursor != 0)
3181 XDefineCursor (FRAME_X_DISPLAY (f), FRAME_X_WINDOW (f),
3182 FRAME_X_DISPLAY_INFO (f)->invisible_cursor);
3183 }
3184 else
3185 XDefineCursor (FRAME_X_DISPLAY (f), FRAME_X_WINDOW (f),
3186 f->output_data.x->current_cursor);
3187 f->pointer_invisible = invisible;
3188 UNBLOCK_INPUT;
3189 }
3190
3191
3192 /* Make audible bell. */
3193
3194 void
3195 XTring_bell (struct frame *f)
3196 {
3197 if (FRAME_X_DISPLAY (f))
3198 {
3199 #if defined (HAVE_TIMEVAL) && defined (HAVE_SELECT)
3200 if (visible_bell)
3201 XTflash (f);
3202 else
3203 #endif
3204 {
3205 BLOCK_INPUT;
3206 XBell (FRAME_X_DISPLAY (f), 0);
3207 XFlush (FRAME_X_DISPLAY (f));
3208 UNBLOCK_INPUT;
3209 }
3210 }
3211 }
3212
3213 \f
3214 /* Specify how many text lines, from the top of the window,
3215 should be affected by insert-lines and delete-lines operations.
3216 This, and those operations, are used only within an update
3217 that is bounded by calls to x_update_begin and x_update_end. */
3218
3219 static void
3220 XTset_terminal_window (struct frame *f, int n)
3221 {
3222 /* This function intentionally left blank. */
3223 }
3224
3225
3226 \f
3227 /***********************************************************************
3228 Line Dance
3229 ***********************************************************************/
3230
3231 /* Perform an insert-lines or delete-lines operation, inserting N
3232 lines or deleting -N lines at vertical position VPOS. */
3233
3234 static void
3235 x_ins_del_lines (struct frame *f, int vpos, int n)
3236 {
3237 abort ();
3238 }
3239
3240
3241 /* Scroll part of the display as described by RUN. */
3242
3243 static void
3244 x_scroll_run (struct window *w, struct run *run)
3245 {
3246 struct frame *f = XFRAME (w->frame);
3247 int x, y, width, height, from_y, to_y, bottom_y;
3248
3249 /* Get frame-relative bounding box of the text display area of W,
3250 without mode lines. Include in this box the left and right
3251 fringe of W. */
3252 window_box (w, -1, &x, &y, &width, &height);
3253
3254 from_y = WINDOW_TO_FRAME_PIXEL_Y (w, run->current_y);
3255 to_y = WINDOW_TO_FRAME_PIXEL_Y (w, run->desired_y);
3256 bottom_y = y + height;
3257
3258 if (to_y < from_y)
3259 {
3260 /* Scrolling up. Make sure we don't copy part of the mode
3261 line at the bottom. */
3262 if (from_y + run->height > bottom_y)
3263 height = bottom_y - from_y;
3264 else
3265 height = run->height;
3266 }
3267 else
3268 {
3269 /* Scolling down. Make sure we don't copy over the mode line.
3270 at the bottom. */
3271 if (to_y + run->height > bottom_y)
3272 height = bottom_y - to_y;
3273 else
3274 height = run->height;
3275 }
3276
3277 BLOCK_INPUT;
3278
3279 /* Cursor off. Will be switched on again in x_update_window_end. */
3280 updated_window = w;
3281 x_clear_cursor (w);
3282
3283 XCopyArea (FRAME_X_DISPLAY (f),
3284 FRAME_X_WINDOW (f), FRAME_X_WINDOW (f),
3285 f->output_data.x->normal_gc,
3286 x, from_y,
3287 width, height,
3288 x, to_y);
3289
3290 UNBLOCK_INPUT;
3291 }
3292
3293
3294 \f
3295 /***********************************************************************
3296 Exposure Events
3297 ***********************************************************************/
3298
3299 \f
3300 static void
3301 frame_highlight (struct frame *f)
3302 {
3303 /* We used to only do this if Vx_no_window_manager was non-nil, but
3304 the ICCCM (section 4.1.6) says that the window's border pixmap
3305 and border pixel are window attributes which are "private to the
3306 client", so we can always change it to whatever we want. */
3307 BLOCK_INPUT;
3308 XSetWindowBorder (FRAME_X_DISPLAY (f), FRAME_X_WINDOW (f),
3309 f->output_data.x->border_pixel);
3310 UNBLOCK_INPUT;
3311 x_update_cursor (f, 1);
3312 x_set_frame_alpha (f);
3313 }
3314
3315 static void
3316 frame_unhighlight (struct frame *f)
3317 {
3318 /* We used to only do this if Vx_no_window_manager was non-nil, but
3319 the ICCCM (section 4.1.6) says that the window's border pixmap
3320 and border pixel are window attributes which are "private to the
3321 client", so we can always change it to whatever we want. */
3322 BLOCK_INPUT;
3323 XSetWindowBorderPixmap (FRAME_X_DISPLAY (f), FRAME_X_WINDOW (f),
3324 f->output_data.x->border_tile);
3325 UNBLOCK_INPUT;
3326 x_update_cursor (f, 1);
3327 x_set_frame_alpha (f);
3328 }
3329
3330 /* The focus has changed. Update the frames as necessary to reflect
3331 the new situation. Note that we can't change the selected frame
3332 here, because the Lisp code we are interrupting might become confused.
3333 Each event gets marked with the frame in which it occurred, so the
3334 Lisp code can tell when the switch took place by examining the events. */
3335
3336 static void
3337 x_new_focus_frame (struct x_display_info *dpyinfo, struct frame *frame)
3338 {
3339 struct frame *old_focus = dpyinfo->x_focus_frame;
3340
3341 if (frame != dpyinfo->x_focus_frame)
3342 {
3343 /* Set this before calling other routines, so that they see
3344 the correct value of x_focus_frame. */
3345 dpyinfo->x_focus_frame = frame;
3346
3347 if (old_focus && old_focus->auto_lower)
3348 x_lower_frame (old_focus);
3349
3350 if (dpyinfo->x_focus_frame && dpyinfo->x_focus_frame->auto_raise)
3351 pending_autoraise_frame = dpyinfo->x_focus_frame;
3352 else
3353 pending_autoraise_frame = 0;
3354 }
3355
3356 x_frame_rehighlight (dpyinfo);
3357 }
3358
3359 /* Handle FocusIn and FocusOut state changes for FRAME.
3360 If FRAME has focus and there exists more than one frame, puts
3361 a FOCUS_IN_EVENT into *BUFP. */
3362
3363 static void
3364 x_focus_changed (int type, int state, struct x_display_info *dpyinfo, struct frame *frame, struct input_event *bufp)
3365 {
3366 if (type == FocusIn)
3367 {
3368 if (dpyinfo->x_focus_event_frame != frame)
3369 {
3370 x_new_focus_frame (dpyinfo, frame);
3371 dpyinfo->x_focus_event_frame = frame;
3372
3373 /* Don't stop displaying the initial startup message
3374 for a switch-frame event we don't need. */
3375 if (NILP (Vterminal_frame)
3376 && CONSP (Vframe_list)
3377 && !NILP (XCDR (Vframe_list)))
3378 {
3379 bufp->kind = FOCUS_IN_EVENT;
3380 XSETFRAME (bufp->frame_or_window, frame);
3381 }
3382 }
3383
3384 frame->output_data.x->focus_state |= state;
3385
3386 #ifdef HAVE_X_I18N
3387 if (FRAME_XIC (frame))
3388 XSetICFocus (FRAME_XIC (frame));
3389 #endif
3390 }
3391 else if (type == FocusOut)
3392 {
3393 frame->output_data.x->focus_state &= ~state;
3394
3395 if (dpyinfo->x_focus_event_frame == frame)
3396 {
3397 dpyinfo->x_focus_event_frame = 0;
3398 x_new_focus_frame (dpyinfo, 0);
3399 }
3400
3401 #ifdef HAVE_X_I18N
3402 if (FRAME_XIC (frame))
3403 XUnsetICFocus (FRAME_XIC (frame));
3404 #endif
3405 if (frame->pointer_invisible)
3406 XTtoggle_invisible_pointer (frame, 0);
3407 }
3408 }
3409
3410 /* The focus may have changed. Figure out if it is a real focus change,
3411 by checking both FocusIn/Out and Enter/LeaveNotify events.
3412
3413 Returns FOCUS_IN_EVENT event in *BUFP. */
3414
3415 static void
3416 x_detect_focus_change (struct x_display_info *dpyinfo, XEvent *event, struct input_event *bufp)
3417 {
3418 struct frame *frame;
3419
3420 frame = x_any_window_to_frame (dpyinfo, event->xany.window);
3421 if (! frame)
3422 return;
3423
3424 switch (event->type)
3425 {
3426 case EnterNotify:
3427 case LeaveNotify:
3428 {
3429 struct frame *focus_frame = dpyinfo->x_focus_event_frame;
3430 int focus_state
3431 = focus_frame ? focus_frame->output_data.x->focus_state : 0;
3432
3433 if (event->xcrossing.detail != NotifyInferior
3434 && event->xcrossing.focus
3435 && ! (focus_state & FOCUS_EXPLICIT))
3436 x_focus_changed ((event->type == EnterNotify ? FocusIn : FocusOut),
3437 FOCUS_IMPLICIT,
3438 dpyinfo, frame, bufp);
3439 }
3440 break;
3441
3442 case FocusIn:
3443 case FocusOut:
3444 x_focus_changed (event->type,
3445 (event->xfocus.detail == NotifyPointer ?
3446 FOCUS_IMPLICIT : FOCUS_EXPLICIT),
3447 dpyinfo, frame, bufp);
3448 break;
3449
3450 case ClientMessage:
3451 if (event->xclient.message_type == dpyinfo->Xatom_XEMBED)
3452 {
3453 enum xembed_message msg = event->xclient.data.l[1];
3454 x_focus_changed ((msg == XEMBED_FOCUS_IN ? FocusIn : FocusOut),
3455 FOCUS_EXPLICIT, dpyinfo, frame, bufp);
3456 }
3457 break;
3458 }
3459 }
3460
3461
3462 /* Handle an event saying the mouse has moved out of an Emacs frame. */
3463
3464 void
3465 x_mouse_leave (struct x_display_info *dpyinfo)
3466 {
3467 x_new_focus_frame (dpyinfo, dpyinfo->x_focus_event_frame);
3468 }
3469
3470 /* The focus has changed, or we have redirected a frame's focus to
3471 another frame (this happens when a frame uses a surrogate
3472 mini-buffer frame). Shift the highlight as appropriate.
3473
3474 The FRAME argument doesn't necessarily have anything to do with which
3475 frame is being highlighted or un-highlighted; we only use it to find
3476 the appropriate X display info. */
3477
3478 static void
3479 XTframe_rehighlight (struct frame *frame)
3480 {
3481 x_frame_rehighlight (FRAME_X_DISPLAY_INFO (frame));
3482 }
3483
3484 static void
3485 x_frame_rehighlight (struct x_display_info *dpyinfo)
3486 {
3487 struct frame *old_highlight = dpyinfo->x_highlight_frame;
3488
3489 if (dpyinfo->x_focus_frame)
3490 {
3491 dpyinfo->x_highlight_frame
3492 = ((FRAMEP (FRAME_FOCUS_FRAME (dpyinfo->x_focus_frame)))
3493 ? XFRAME (FRAME_FOCUS_FRAME (dpyinfo->x_focus_frame))
3494 : dpyinfo->x_focus_frame);
3495 if (! FRAME_LIVE_P (dpyinfo->x_highlight_frame))
3496 {
3497 FRAME_FOCUS_FRAME (dpyinfo->x_focus_frame) = Qnil;
3498 dpyinfo->x_highlight_frame = dpyinfo->x_focus_frame;
3499 }
3500 }
3501 else
3502 dpyinfo->x_highlight_frame = 0;
3503
3504 if (dpyinfo->x_highlight_frame != old_highlight)
3505 {
3506 if (old_highlight)
3507 frame_unhighlight (old_highlight);
3508 if (dpyinfo->x_highlight_frame)
3509 frame_highlight (dpyinfo->x_highlight_frame);
3510 }
3511 }
3512
3513
3514 \f
3515 /* Keyboard processing - modifier keys, vendor-specific keysyms, etc. */
3516
3517 /* Initialize mode_switch_bit and modifier_meaning. */
3518 static void
3519 x_find_modifier_meanings (struct x_display_info *dpyinfo)
3520 {
3521 int min_code, max_code;
3522 KeySym *syms;
3523 int syms_per_code;
3524 XModifierKeymap *mods;
3525
3526 dpyinfo->meta_mod_mask = 0;
3527 dpyinfo->shift_lock_mask = 0;
3528 dpyinfo->alt_mod_mask = 0;
3529 dpyinfo->super_mod_mask = 0;
3530 dpyinfo->hyper_mod_mask = 0;
3531
3532 XDisplayKeycodes (dpyinfo->display, &min_code, &max_code);
3533
3534 syms = XGetKeyboardMapping (dpyinfo->display,
3535 min_code, max_code - min_code + 1,
3536 &syms_per_code);
3537 mods = XGetModifierMapping (dpyinfo->display);
3538
3539 /* Scan the modifier table to see which modifier bits the Meta and
3540 Alt keysyms are on. */
3541 {
3542 int row, col; /* The row and column in the modifier table. */
3543 int found_alt_or_meta;
3544
3545 for (row = 3; row < 8; row++)
3546 {
3547 found_alt_or_meta = 0;
3548 for (col = 0; col < mods->max_keypermod; col++)
3549 {
3550 KeyCode code = mods->modifiermap[(row * mods->max_keypermod) + col];
3551
3552 /* Zeroes are used for filler. Skip them. */
3553 if (code == 0)
3554 continue;
3555
3556 /* Are any of this keycode's keysyms a meta key? */
3557 {
3558 int code_col;
3559
3560 for (code_col = 0; code_col < syms_per_code; code_col++)
3561 {
3562 int sym = syms[((code - min_code) * syms_per_code) + code_col];
3563
3564 switch (sym)
3565 {
3566 case XK_Meta_L:
3567 case XK_Meta_R:
3568 found_alt_or_meta = 1;
3569 dpyinfo->meta_mod_mask |= (1 << row);
3570 break;
3571
3572 case XK_Alt_L:
3573 case XK_Alt_R:
3574 found_alt_or_meta = 1;
3575 dpyinfo->alt_mod_mask |= (1 << row);
3576 break;
3577
3578 case XK_Hyper_L:
3579 case XK_Hyper_R:
3580 if (!found_alt_or_meta)
3581 dpyinfo->hyper_mod_mask |= (1 << row);
3582 code_col = syms_per_code;
3583 col = mods->max_keypermod;
3584 break;
3585
3586 case XK_Super_L:
3587 case XK_Super_R:
3588 if (!found_alt_or_meta)
3589 dpyinfo->super_mod_mask |= (1 << row);
3590 code_col = syms_per_code;
3591 col = mods->max_keypermod;
3592 break;
3593
3594 case XK_Shift_Lock:
3595 /* Ignore this if it's not on the lock modifier. */
3596 if (!found_alt_or_meta && ((1 << row) == LockMask))
3597 dpyinfo->shift_lock_mask = LockMask;
3598 code_col = syms_per_code;
3599 col = mods->max_keypermod;
3600 break;
3601 }
3602 }
3603 }
3604 }
3605 }
3606 }
3607
3608 /* If we couldn't find any meta keys, accept any alt keys as meta keys. */
3609 if (! dpyinfo->meta_mod_mask)
3610 {
3611 dpyinfo->meta_mod_mask = dpyinfo->alt_mod_mask;
3612 dpyinfo->alt_mod_mask = 0;
3613 }
3614
3615 /* If some keys are both alt and meta,
3616 make them just meta, not alt. */
3617 if (dpyinfo->alt_mod_mask & dpyinfo->meta_mod_mask)
3618 {
3619 dpyinfo->alt_mod_mask &= ~dpyinfo->meta_mod_mask;
3620 }
3621
3622 XFree ((char *) syms);
3623 XFreeModifiermap (mods);
3624 }
3625
3626 /* Convert between the modifier bits X uses and the modifier bits
3627 Emacs uses. */
3628
3629 unsigned int
3630 x_x_to_emacs_modifiers (struct x_display_info *dpyinfo, unsigned int state)
3631 {
3632 EMACS_UINT mod_meta = meta_modifier;
3633 EMACS_UINT mod_alt = alt_modifier;
3634 EMACS_UINT mod_hyper = hyper_modifier;
3635 EMACS_UINT mod_super = super_modifier;
3636 Lisp_Object tem;
3637
3638 tem = Fget (Vx_alt_keysym, Qmodifier_value);
3639 if (! EQ (tem, Qnil)) mod_alt = XUINT (tem);
3640 tem = Fget (Vx_meta_keysym, Qmodifier_value);
3641 if (! EQ (tem, Qnil)) mod_meta = XUINT (tem);
3642 tem = Fget (Vx_hyper_keysym, Qmodifier_value);
3643 if (! EQ (tem, Qnil)) mod_hyper = XUINT (tem);
3644 tem = Fget (Vx_super_keysym, Qmodifier_value);
3645 if (! EQ (tem, Qnil)) mod_super = XUINT (tem);
3646
3647
3648 return ( ((state & (ShiftMask | dpyinfo->shift_lock_mask)) ? shift_modifier : 0)
3649 | ((state & ControlMask) ? ctrl_modifier : 0)
3650 | ((state & dpyinfo->meta_mod_mask) ? mod_meta : 0)
3651 | ((state & dpyinfo->alt_mod_mask) ? mod_alt : 0)
3652 | ((state & dpyinfo->super_mod_mask) ? mod_super : 0)
3653 | ((state & dpyinfo->hyper_mod_mask) ? mod_hyper : 0));
3654 }
3655
3656 static unsigned int
3657 x_emacs_to_x_modifiers (struct x_display_info *dpyinfo, unsigned int state)
3658 {
3659 EMACS_UINT mod_meta = meta_modifier;
3660 EMACS_UINT mod_alt = alt_modifier;
3661 EMACS_UINT mod_hyper = hyper_modifier;
3662 EMACS_UINT mod_super = super_modifier;
3663
3664 Lisp_Object tem;
3665
3666 tem = Fget (Vx_alt_keysym, Qmodifier_value);
3667 if (! EQ (tem, Qnil)) mod_alt = XUINT (tem);
3668 tem = Fget (Vx_meta_keysym, Qmodifier_value);
3669 if (! EQ (tem, Qnil)) mod_meta = XUINT (tem);
3670 tem = Fget (Vx_hyper_keysym, Qmodifier_value);
3671 if (! EQ (tem, Qnil)) mod_hyper = XUINT (tem);
3672 tem = Fget (Vx_super_keysym, Qmodifier_value);
3673 if (! EQ (tem, Qnil)) mod_super = XUINT (tem);
3674
3675
3676 return ( ((state & mod_alt) ? dpyinfo->alt_mod_mask : 0)
3677 | ((state & mod_super) ? dpyinfo->super_mod_mask : 0)
3678 | ((state & mod_hyper) ? dpyinfo->hyper_mod_mask : 0)
3679 | ((state & shift_modifier) ? ShiftMask : 0)
3680 | ((state & ctrl_modifier) ? ControlMask : 0)
3681 | ((state & mod_meta) ? dpyinfo->meta_mod_mask : 0));
3682 }
3683
3684 /* Convert a keysym to its name. */
3685
3686 char *
3687 x_get_keysym_name (int keysym)
3688 {
3689 char *value;
3690
3691 BLOCK_INPUT;
3692 value = XKeysymToString (keysym);
3693 UNBLOCK_INPUT;
3694
3695 return value;
3696 }
3697
3698
3699 \f
3700 /* Mouse clicks and mouse movement. Rah. */
3701
3702 /* Prepare a mouse-event in *RESULT for placement in the input queue.
3703
3704 If the event is a button press, then note that we have grabbed
3705 the mouse. */
3706
3707 static Lisp_Object
3708 construct_mouse_click (struct input_event *result, XButtonEvent *event, struct frame *f)
3709 {
3710 /* Make the event type NO_EVENT; we'll change that when we decide
3711 otherwise. */
3712 result->kind = MOUSE_CLICK_EVENT;
3713 result->code = event->button - Button1;
3714 result->timestamp = event->time;
3715 result->modifiers = (x_x_to_emacs_modifiers (FRAME_X_DISPLAY_INFO (f),
3716 event->state)
3717 | (event->type == ButtonRelease
3718 ? up_modifier
3719 : down_modifier));
3720
3721 XSETINT (result->x, event->x);
3722 XSETINT (result->y, event->y);
3723 XSETFRAME (result->frame_or_window, f);
3724 result->arg = Qnil;
3725 return Qnil;
3726 }
3727
3728 \f
3729 /* Function to report a mouse movement to the mainstream Emacs code.
3730 The input handler calls this.
3731
3732 We have received a mouse movement event, which is given in *event.
3733 If the mouse is over a different glyph than it was last time, tell
3734 the mainstream emacs code by setting mouse_moved. If not, ask for
3735 another motion event, so we can check again the next time it moves. */
3736
3737 static XMotionEvent last_mouse_motion_event;
3738 static Lisp_Object last_mouse_motion_frame;
3739
3740 static int
3741 note_mouse_movement (FRAME_PTR frame, XMotionEvent *event)
3742 {
3743 last_mouse_movement_time = event->time;
3744 last_mouse_motion_event = *event;
3745 XSETFRAME (last_mouse_motion_frame, frame);
3746
3747 if (!FRAME_X_OUTPUT (frame))
3748 return 0;
3749
3750 if (event->window != FRAME_X_WINDOW (frame))
3751 {
3752 frame->mouse_moved = 1;
3753 last_mouse_scroll_bar = Qnil;
3754 note_mouse_highlight (frame, -1, -1);
3755 last_mouse_glyph_frame = 0;
3756 return 1;
3757 }
3758
3759
3760 /* Has the mouse moved off the glyph it was on at the last sighting? */
3761 if (frame != last_mouse_glyph_frame
3762 || event->x < last_mouse_glyph.x
3763 || event->x >= last_mouse_glyph.x + last_mouse_glyph.width
3764 || event->y < last_mouse_glyph.y
3765 || event->y >= last_mouse_glyph.y + last_mouse_glyph.height)
3766 {
3767 frame->mouse_moved = 1;
3768 last_mouse_scroll_bar = Qnil;
3769 note_mouse_highlight (frame, event->x, event->y);
3770 /* Remember which glyph we're now on. */
3771 remember_mouse_glyph (frame, event->x, event->y, &last_mouse_glyph);
3772 last_mouse_glyph_frame = frame;
3773 return 1;
3774 }
3775
3776 return 0;
3777 }
3778
3779 \f
3780 /************************************************************************
3781 Mouse Face
3782 ************************************************************************/
3783
3784 static void
3785 redo_mouse_highlight (void)
3786 {
3787 if (!NILP (last_mouse_motion_frame)
3788 && FRAME_LIVE_P (XFRAME (last_mouse_motion_frame)))
3789 note_mouse_highlight (XFRAME (last_mouse_motion_frame),
3790 last_mouse_motion_event.x,
3791 last_mouse_motion_event.y);
3792 }
3793
3794
3795
3796 /* Return the current position of the mouse.
3797 *FP should be a frame which indicates which display to ask about.
3798
3799 If the mouse movement started in a scroll bar, set *FP, *BAR_WINDOW,
3800 and *PART to the frame, window, and scroll bar part that the mouse
3801 is over. Set *X and *Y to the portion and whole of the mouse's
3802 position on the scroll bar.
3803
3804 If the mouse movement started elsewhere, set *FP to the frame the
3805 mouse is on, *BAR_WINDOW to nil, and *X and *Y to the character cell
3806 the mouse is over.
3807
3808 Set *TIME to the server time-stamp for the time at which the mouse
3809 was at this position.
3810
3811 Don't store anything if we don't have a valid set of values to report.
3812
3813 This clears the mouse_moved flag, so we can wait for the next mouse
3814 movement. */
3815
3816 static void
3817 XTmouse_position (FRAME_PTR *fp, int insist, Lisp_Object *bar_window, enum scroll_bar_part *part, Lisp_Object *x, Lisp_Object *y, long unsigned int *time)
3818 {
3819 FRAME_PTR f1;
3820
3821 BLOCK_INPUT;
3822
3823 if (! NILP (last_mouse_scroll_bar) && insist == 0)
3824 x_scroll_bar_report_motion (fp, bar_window, part, x, y, time);
3825 else
3826 {
3827 Window root;
3828 int root_x, root_y;
3829
3830 Window dummy_window;
3831 int dummy;
3832
3833 Lisp_Object frame, tail;
3834
3835 /* Clear the mouse-moved flag for every frame on this display. */
3836 FOR_EACH_FRAME (tail, frame)
3837 if (FRAME_X_P (XFRAME (frame))
3838 && FRAME_X_DISPLAY (XFRAME (frame)) == FRAME_X_DISPLAY (*fp))
3839 XFRAME (frame)->mouse_moved = 0;
3840
3841 last_mouse_scroll_bar = Qnil;
3842
3843 /* Figure out which root window we're on. */
3844 XQueryPointer (FRAME_X_DISPLAY (*fp),
3845 DefaultRootWindow (FRAME_X_DISPLAY (*fp)),
3846
3847 /* The root window which contains the pointer. */
3848 &root,
3849
3850 /* Trash which we can't trust if the pointer is on
3851 a different screen. */
3852 &dummy_window,
3853
3854 /* The position on that root window. */
3855 &root_x, &root_y,
3856
3857 /* More trash we can't trust. */
3858 &dummy, &dummy,
3859
3860 /* Modifier keys and pointer buttons, about which
3861 we don't care. */
3862 (unsigned int *) &dummy);
3863
3864 /* Now we have a position on the root; find the innermost window
3865 containing the pointer. */
3866 {
3867 Window win, child;
3868 int win_x, win_y;
3869 int parent_x = 0, parent_y = 0;
3870
3871 win = root;
3872
3873 /* XTranslateCoordinates can get errors if the window
3874 structure is changing at the same time this function
3875 is running. So at least we must not crash from them. */
3876
3877 x_catch_errors (FRAME_X_DISPLAY (*fp));
3878
3879 if (FRAME_X_DISPLAY_INFO (*fp)->grabbed && last_mouse_frame
3880 && FRAME_LIVE_P (last_mouse_frame))
3881 {
3882 /* If mouse was grabbed on a frame, give coords for that frame
3883 even if the mouse is now outside it. */
3884 XTranslateCoordinates (FRAME_X_DISPLAY (*fp),
3885
3886 /* From-window, to-window. */
3887 root, FRAME_X_WINDOW (last_mouse_frame),
3888
3889 /* From-position, to-position. */
3890 root_x, root_y, &win_x, &win_y,
3891
3892 /* Child of win. */
3893 &child);
3894 f1 = last_mouse_frame;
3895 }
3896 else
3897 {
3898 while (1)
3899 {
3900 XTranslateCoordinates (FRAME_X_DISPLAY (*fp),
3901
3902 /* From-window, to-window. */
3903 root, win,
3904
3905 /* From-position, to-position. */
3906 root_x, root_y, &win_x, &win_y,
3907
3908 /* Child of win. */
3909 &child);
3910
3911 if (child == None || child == win)
3912 break;
3913 #ifdef USE_GTK
3914 /* We don't wan't to know the innermost window. We
3915 want the edit window. For non-Gtk+ the innermost
3916 window is the edit window. For Gtk+ it might not
3917 be. It might be the tool bar for example. */
3918 if (x_window_to_frame (FRAME_X_DISPLAY_INFO (*fp), win))
3919 break;
3920 #endif
3921 win = child;
3922 parent_x = win_x;
3923 parent_y = win_y;
3924 }
3925
3926 /* Now we know that:
3927 win is the innermost window containing the pointer
3928 (XTC says it has no child containing the pointer),
3929 win_x and win_y are the pointer's position in it
3930 (XTC did this the last time through), and
3931 parent_x and parent_y are the pointer's position in win's parent.
3932 (They are what win_x and win_y were when win was child.
3933 If win is the root window, it has no parent, and
3934 parent_{x,y} are invalid, but that's okay, because we'll
3935 never use them in that case.) */
3936
3937 #ifdef USE_GTK
3938 /* We don't wan't to know the innermost window. We
3939 want the edit window. */
3940 f1 = x_window_to_frame (FRAME_X_DISPLAY_INFO (*fp), win);
3941 #else
3942 /* Is win one of our frames? */
3943 f1 = x_any_window_to_frame (FRAME_X_DISPLAY_INFO (*fp), win);
3944 #endif
3945
3946 #ifdef USE_X_TOOLKIT
3947 /* If we end up with the menu bar window, say it's not
3948 on the frame. */
3949 if (f1 != NULL
3950 && f1->output_data.x->menubar_widget
3951 && win == XtWindow (f1->output_data.x->menubar_widget))
3952 f1 = NULL;
3953 #endif /* USE_X_TOOLKIT */
3954 }
3955
3956 if (x_had_errors_p (FRAME_X_DISPLAY (*fp)))
3957 f1 = 0;
3958
3959 x_uncatch_errors ();
3960
3961 /* If not, is it one of our scroll bars? */
3962 if (! f1)
3963 {
3964 struct scroll_bar *bar;
3965
3966 bar = x_window_to_scroll_bar (FRAME_X_DISPLAY (*fp), win);
3967
3968 if (bar)
3969 {
3970 f1 = XFRAME (WINDOW_FRAME (XWINDOW (bar->window)));
3971 win_x = parent_x;
3972 win_y = parent_y;
3973 }
3974 }
3975
3976 if (f1 == 0 && insist > 0)
3977 f1 = SELECTED_FRAME ();
3978
3979 if (f1)
3980 {
3981 /* Ok, we found a frame. Store all the values.
3982 last_mouse_glyph is a rectangle used to reduce the
3983 generation of mouse events. To not miss any motion
3984 events, we must divide the frame into rectangles of the
3985 size of the smallest character that could be displayed
3986 on it, i.e. into the same rectangles that matrices on
3987 the frame are divided into. */
3988
3989 remember_mouse_glyph (f1, win_x, win_y, &last_mouse_glyph);
3990 last_mouse_glyph_frame = f1;
3991
3992 *bar_window = Qnil;
3993 *part = 0;
3994 *fp = f1;
3995 XSETINT (*x, win_x);
3996 XSETINT (*y, win_y);
3997 *time = last_mouse_movement_time;
3998 }
3999 }
4000 }
4001
4002 UNBLOCK_INPUT;
4003 }
4004
4005
4006 \f
4007 /***********************************************************************
4008 Scroll bars
4009 ***********************************************************************/
4010
4011 /* Scroll bar support. */
4012
4013 /* Given an X window ID and a DISPLAY, find the struct scroll_bar which
4014 manages it.
4015 This can be called in GC, so we have to make sure to strip off mark
4016 bits. */
4017
4018 static struct scroll_bar *
4019 x_window_to_scroll_bar (Display *display, Window window_id)
4020 {
4021 Lisp_Object tail;
4022
4023 #if defined (USE_GTK) && defined (USE_TOOLKIT_SCROLL_BARS)
4024 window_id = (Window) xg_get_scroll_id_for_window (display, window_id);
4025 #endif /* USE_GTK && USE_TOOLKIT_SCROLL_BARS */
4026
4027 for (tail = Vframe_list; CONSP (tail); tail = XCDR (tail))
4028 {
4029 Lisp_Object frame, bar, condemned;
4030
4031 frame = XCAR (tail);
4032 /* All elements of Vframe_list should be frames. */
4033 if (! FRAMEP (frame))
4034 abort ();
4035
4036 if (! FRAME_X_P (XFRAME (frame)))
4037 continue;
4038
4039 /* Scan this frame's scroll bar list for a scroll bar with the
4040 right window ID. */
4041 condemned = FRAME_CONDEMNED_SCROLL_BARS (XFRAME (frame));
4042 for (bar = FRAME_SCROLL_BARS (XFRAME (frame));
4043 /* This trick allows us to search both the ordinary and
4044 condemned scroll bar lists with one loop. */
4045 ! NILP (bar) || (bar = condemned,
4046 condemned = Qnil,
4047 ! NILP (bar));
4048 bar = XSCROLL_BAR (bar)->next)
4049 if (XSCROLL_BAR (bar)->x_window == window_id &&
4050 FRAME_X_DISPLAY (XFRAME (frame)) == display)
4051 return XSCROLL_BAR (bar);
4052 }
4053
4054 return 0;
4055 }
4056
4057
4058 #if defined USE_LUCID
4059
4060 /* Return the Lucid menu bar WINDOW is part of. Return null
4061 if WINDOW is not part of a menu bar. */
4062
4063 static Widget
4064 x_window_to_menu_bar (Window window)
4065 {
4066 Lisp_Object tail;
4067
4068 for (tail = Vframe_list; CONSP (tail); tail = XCDR (tail))
4069 {
4070 if (FRAME_X_P (XFRAME (XCAR (tail))))
4071 {
4072 Lisp_Object frame = XCAR (tail);
4073 Widget menu_bar = XFRAME (frame)->output_data.x->menubar_widget;
4074
4075 if (menu_bar && xlwmenu_window_p (menu_bar, window))
4076 return menu_bar;
4077 }
4078 }
4079
4080 return NULL;
4081 }
4082
4083 #endif /* USE_LUCID */
4084
4085 \f
4086 /************************************************************************
4087 Toolkit scroll bars
4088 ************************************************************************/
4089
4090 #ifdef USE_TOOLKIT_SCROLL_BARS
4091
4092 static void x_scroll_bar_to_input_event (XEvent *, struct input_event *);
4093 static void x_send_scroll_bar_event (Lisp_Object, int, int, int);
4094 static void x_create_toolkit_scroll_bar (struct frame *,
4095 struct scroll_bar *);
4096 static void x_set_toolkit_scroll_bar_thumb (struct scroll_bar *,
4097 int, int, int);
4098
4099
4100 /* Lisp window being scrolled. Set when starting to interact with
4101 a toolkit scroll bar, reset to nil when ending the interaction. */
4102
4103 static Lisp_Object window_being_scrolled;
4104
4105 /* Last scroll bar part sent in xm_scroll_callback. */
4106
4107 static int last_scroll_bar_part;
4108
4109 /* Whether this is an Xaw with arrow-scrollbars. This should imply
4110 that movements of 1/20 of the screen size are mapped to up/down. */
4111
4112 #ifndef USE_GTK
4113 /* Id of action hook installed for scroll bars. */
4114
4115 static XtActionHookId action_hook_id;
4116
4117 static Boolean xaw3d_arrow_scroll;
4118
4119 /* Whether the drag scrolling maintains the mouse at the top of the
4120 thumb. If not, resizing the thumb needs to be done more carefully
4121 to avoid jerkyness. */
4122
4123 static Boolean xaw3d_pick_top;
4124
4125 /* Action hook installed via XtAppAddActionHook when toolkit scroll
4126 bars are used.. The hook is responsible for detecting when
4127 the user ends an interaction with the scroll bar, and generates
4128 a `end-scroll' SCROLL_BAR_CLICK_EVENT' event if so. */
4129
4130 static void
4131 xt_action_hook (Widget widget, XtPointer client_data, String action_name,
4132 XEvent *event, String *params, Cardinal *num_params)
4133 {
4134 int scroll_bar_p;
4135 const char *end_action;
4136
4137 #ifdef USE_MOTIF
4138 scroll_bar_p = XmIsScrollBar (widget);
4139 end_action = "Release";
4140 #else /* !USE_MOTIF i.e. use Xaw */
4141 scroll_bar_p = XtIsSubclass (widget, scrollbarWidgetClass);
4142 end_action = "EndScroll";
4143 #endif /* USE_MOTIF */
4144
4145 if (scroll_bar_p
4146 && strcmp (action_name, end_action) == 0
4147 && WINDOWP (window_being_scrolled))
4148 {
4149 struct window *w;
4150
4151 x_send_scroll_bar_event (window_being_scrolled,
4152 scroll_bar_end_scroll, 0, 0);
4153 w = XWINDOW (window_being_scrolled);
4154
4155 if (!NILP (XSCROLL_BAR (w->vertical_scroll_bar)->dragging))
4156 {
4157 XSCROLL_BAR (w->vertical_scroll_bar)->dragging = Qnil;
4158 /* The thumb size is incorrect while dragging: fix it. */
4159 set_vertical_scroll_bar (w);
4160 }
4161 window_being_scrolled = Qnil;
4162 last_scroll_bar_part = -1;
4163
4164 /* Xt timeouts no longer needed. */
4165 toolkit_scroll_bar_interaction = 0;
4166 }
4167 }
4168 #endif /* not USE_GTK */
4169
4170 /* A vector of windows used for communication between
4171 x_send_scroll_bar_event and x_scroll_bar_to_input_event. */
4172
4173 static struct window **scroll_bar_windows;
4174 static int scroll_bar_windows_size;
4175
4176
4177 /* Send a client message with message type Xatom_Scrollbar for a
4178 scroll action to the frame of WINDOW. PART is a value identifying
4179 the part of the scroll bar that was clicked on. PORTION is the
4180 amount to scroll of a whole of WHOLE. */
4181
4182 static void
4183 x_send_scroll_bar_event (Lisp_Object window, int part, int portion, int whole)
4184 {
4185 XEvent event;
4186 XClientMessageEvent *ev = (XClientMessageEvent *) &event;
4187 struct window *w = XWINDOW (window);
4188 struct frame *f = XFRAME (w->frame);
4189 int i;
4190
4191 BLOCK_INPUT;
4192
4193 /* Construct a ClientMessage event to send to the frame. */
4194 ev->type = ClientMessage;
4195 ev->message_type = FRAME_X_DISPLAY_INFO (f)->Xatom_Scrollbar;
4196 ev->display = FRAME_X_DISPLAY (f);
4197 ev->window = FRAME_X_WINDOW (f);
4198 ev->format = 32;
4199
4200 /* We can only transfer 32 bits in the XClientMessageEvent, which is
4201 not enough to store a pointer or Lisp_Object on a 64 bit system.
4202 So, store the window in scroll_bar_windows and pass the index
4203 into that array in the event. */
4204 for (i = 0; i < scroll_bar_windows_size; ++i)
4205 if (scroll_bar_windows[i] == NULL)
4206 break;
4207
4208 if (i == scroll_bar_windows_size)
4209 {
4210 int new_size = max (10, 2 * scroll_bar_windows_size);
4211 size_t nbytes = new_size * sizeof *scroll_bar_windows;
4212 size_t old_nbytes = scroll_bar_windows_size * sizeof *scroll_bar_windows;
4213
4214 scroll_bar_windows = (struct window **) xrealloc (scroll_bar_windows,
4215 nbytes);
4216 memset (&scroll_bar_windows[i], 0, nbytes - old_nbytes);
4217 scroll_bar_windows_size = new_size;
4218 }
4219
4220 scroll_bar_windows[i] = w;
4221 ev->data.l[0] = (long) i;
4222 ev->data.l[1] = (long) part;
4223 ev->data.l[2] = (long) 0;
4224 ev->data.l[3] = (long) portion;
4225 ev->data.l[4] = (long) whole;
4226
4227 /* Make Xt timeouts work while the scroll bar is active. */
4228 toolkit_scroll_bar_interaction = 1;
4229 #ifdef USE_X_TOOLKIT
4230 x_activate_timeout_atimer ();
4231 #endif
4232
4233 /* Setting the event mask to zero means that the message will
4234 be sent to the client that created the window, and if that
4235 window no longer exists, no event will be sent. */
4236 XSendEvent (FRAME_X_DISPLAY (f), FRAME_X_WINDOW (f), False, 0, &event);
4237 UNBLOCK_INPUT;
4238 }
4239
4240
4241 /* Transform a scroll bar ClientMessage EVENT to an Emacs input event
4242 in *IEVENT. */
4243
4244 static void
4245 x_scroll_bar_to_input_event (XEvent *event, struct input_event *ievent)
4246 {
4247 XClientMessageEvent *ev = (XClientMessageEvent *) event;
4248 Lisp_Object window;
4249 struct frame *f;
4250 struct window *w;
4251
4252 w = scroll_bar_windows[ev->data.l[0]];
4253 scroll_bar_windows[ev->data.l[0]] = NULL;
4254
4255 XSETWINDOW (window, w);
4256 f = XFRAME (w->frame);
4257
4258 ievent->kind = SCROLL_BAR_CLICK_EVENT;
4259 ievent->frame_or_window = window;
4260 ievent->arg = Qnil;
4261 #ifdef USE_GTK
4262 ievent->timestamp = CurrentTime;
4263 #else
4264 ievent->timestamp = XtLastTimestampProcessed (FRAME_X_DISPLAY (f));
4265 #endif
4266 ievent->part = ev->data.l[1];
4267 ievent->code = ev->data.l[2];
4268 ievent->x = make_number ((int) ev->data.l[3]);
4269 ievent->y = make_number ((int) ev->data.l[4]);
4270 ievent->modifiers = 0;
4271 }
4272
4273
4274 #ifdef USE_MOTIF
4275
4276 /* Minimum and maximum values used for Motif scroll bars. */
4277
4278 #define XM_SB_MAX 10000000
4279
4280
4281 /* Scroll bar callback for Motif scroll bars. WIDGET is the scroll
4282 bar widget. CLIENT_DATA is a pointer to the scroll_bar structure.
4283 CALL_DATA is a pointer to a XmScrollBarCallbackStruct. */
4284
4285 static void
4286 xm_scroll_callback (Widget widget, XtPointer client_data, XtPointer call_data)
4287 {
4288 struct scroll_bar *bar = (struct scroll_bar *) client_data;
4289 XmScrollBarCallbackStruct *cs = (XmScrollBarCallbackStruct *) call_data;
4290 int part = -1, whole = 0, portion = 0;
4291
4292 switch (cs->reason)
4293 {
4294 case XmCR_DECREMENT:
4295 bar->dragging = Qnil;
4296 part = scroll_bar_up_arrow;
4297 break;
4298
4299 case XmCR_INCREMENT:
4300 bar->dragging = Qnil;
4301 part = scroll_bar_down_arrow;
4302 break;
4303
4304 case XmCR_PAGE_DECREMENT:
4305 bar->dragging = Qnil;
4306 part = scroll_bar_above_handle;
4307 break;
4308
4309 case XmCR_PAGE_INCREMENT:
4310 bar->dragging = Qnil;
4311 part = scroll_bar_below_handle;
4312 break;
4313
4314 case XmCR_TO_TOP:
4315 bar->dragging = Qnil;
4316 part = scroll_bar_to_top;
4317 break;
4318
4319 case XmCR_TO_BOTTOM:
4320 bar->dragging = Qnil;
4321 part = scroll_bar_to_bottom;
4322 break;
4323
4324 case XmCR_DRAG:
4325 {
4326 int slider_size;
4327
4328 /* Get the slider size. */
4329 BLOCK_INPUT;
4330 XtVaGetValues (widget, XmNsliderSize, &slider_size, NULL);
4331 UNBLOCK_INPUT;
4332
4333 whole = XM_SB_MAX - slider_size;
4334 portion = min (cs->value, whole);
4335 part = scroll_bar_handle;
4336 bar->dragging = make_number (cs->value);
4337 }
4338 break;
4339
4340 case XmCR_VALUE_CHANGED:
4341 break;
4342 };
4343
4344 if (part >= 0)
4345 {
4346 window_being_scrolled = bar->window;
4347 last_scroll_bar_part = part;
4348 x_send_scroll_bar_event (bar->window, part, portion, whole);
4349 }
4350 }
4351
4352 #elif defined USE_GTK
4353
4354 /* Scroll bar callback for GTK scroll bars. WIDGET is the scroll
4355 bar widget. DATA is a pointer to the scroll_bar structure. */
4356
4357 static gboolean
4358 xg_scroll_callback (GtkRange *range,
4359 GtkScrollType scroll,
4360 gdouble value,
4361 gpointer user_data)
4362 {
4363 struct scroll_bar *bar = (struct scroll_bar *) user_data;
4364 gdouble position;
4365 int part = -1, whole = 0, portion = 0;
4366 GtkAdjustment *adj = GTK_ADJUSTMENT (gtk_range_get_adjustment (range));
4367 FRAME_PTR f = (FRAME_PTR) g_object_get_data (G_OBJECT (range), XG_FRAME_DATA);
4368
4369 if (xg_ignore_gtk_scrollbar) return FALSE;
4370 position = gtk_adjustment_get_value (adj);
4371
4372
4373 switch (scroll)
4374 {
4375 case GTK_SCROLL_JUMP:
4376 /* Buttons 1 2 or 3 must be grabbed. */
4377 if (FRAME_X_DISPLAY_INFO (f)->grabbed != 0
4378 && FRAME_X_DISPLAY_INFO (f)->grabbed < (1 << 4))
4379 {
4380 part = scroll_bar_handle;
4381 whole = gtk_adjustment_get_upper (adj) -
4382 gtk_adjustment_get_page_size (adj);
4383 portion = min ((int)position, whole);
4384 bar->dragging = make_number ((int)portion);
4385 }
4386 break;
4387 case GTK_SCROLL_STEP_BACKWARD:
4388 part = scroll_bar_up_arrow;
4389 bar->dragging = Qnil;
4390 break;
4391 case GTK_SCROLL_STEP_FORWARD:
4392 part = scroll_bar_down_arrow;
4393 bar->dragging = Qnil;
4394 break;
4395 case GTK_SCROLL_PAGE_BACKWARD:
4396 part = scroll_bar_above_handle;
4397 bar->dragging = Qnil;
4398 break;
4399 case GTK_SCROLL_PAGE_FORWARD:
4400 part = scroll_bar_below_handle;
4401 bar->dragging = Qnil;
4402 break;
4403 }
4404
4405 if (part >= 0)
4406 {
4407 window_being_scrolled = bar->window;
4408 last_scroll_bar_part = part;
4409 x_send_scroll_bar_event (bar->window, part, portion, whole);
4410 }
4411
4412 return FALSE;
4413 }
4414
4415 /* Callback for button release. Sets dragging to Qnil when dragging is done. */
4416
4417 static gboolean
4418 xg_end_scroll_callback (GtkWidget *widget,
4419 GdkEventButton *event,
4420 gpointer user_data)
4421 {
4422 struct scroll_bar *bar = (struct scroll_bar *) user_data;
4423 bar->dragging = Qnil;
4424 if (WINDOWP (window_being_scrolled))
4425 {
4426 x_send_scroll_bar_event (window_being_scrolled,
4427 scroll_bar_end_scroll, 0, 0);
4428 window_being_scrolled = Qnil;
4429 }
4430
4431 return FALSE;
4432 }
4433
4434
4435 #else /* not USE_GTK and not USE_MOTIF */
4436
4437 /* Xaw scroll bar callback. Invoked when the thumb is dragged.
4438 WIDGET is the scroll bar widget. CLIENT_DATA is a pointer to the
4439 scroll bar struct. CALL_DATA is a pointer to a float saying where
4440 the thumb is. */
4441
4442 static void
4443 xaw_jump_callback (Widget widget, XtPointer client_data, XtPointer call_data)
4444 {
4445 struct scroll_bar *bar = (struct scroll_bar *) client_data;
4446 float top = *(float *) call_data;
4447 float shown;
4448 int whole, portion, height;
4449 int part;
4450
4451 /* Get the size of the thumb, a value between 0 and 1. */
4452 BLOCK_INPUT;
4453 XtVaGetValues (widget, XtNshown, &shown, XtNheight, &height, NULL);
4454 UNBLOCK_INPUT;
4455
4456 whole = 10000000;
4457 portion = shown < 1 ? top * whole : 0;
4458
4459 if (shown < 1 && (eabs (top + shown - 1) < 1.0/height))
4460 /* Some derivatives of Xaw refuse to shrink the thumb when you reach
4461 the bottom, so we force the scrolling whenever we see that we're
4462 too close to the bottom (in x_set_toolkit_scroll_bar_thumb
4463 we try to ensure that we always stay two pixels away from the
4464 bottom). */
4465 part = scroll_bar_down_arrow;
4466 else
4467 part = scroll_bar_handle;
4468
4469 window_being_scrolled = bar->window;
4470 bar->dragging = make_number (portion);
4471 last_scroll_bar_part = part;
4472 x_send_scroll_bar_event (bar->window, part, portion, whole);
4473 }
4474
4475
4476 /* Xaw scroll bar callback. Invoked for incremental scrolling.,
4477 i.e. line or page up or down. WIDGET is the Xaw scroll bar
4478 widget. CLIENT_DATA is a pointer to the scroll_bar structure for
4479 the scroll bar. CALL_DATA is an integer specifying the action that
4480 has taken place. Its magnitude is in the range 0..height of the
4481 scroll bar. Negative values mean scroll towards buffer start.
4482 Values < height of scroll bar mean line-wise movement. */
4483
4484 static void
4485 xaw_scroll_callback (Widget widget, XtPointer client_data, XtPointer call_data)
4486 {
4487 struct scroll_bar *bar = (struct scroll_bar *) client_data;
4488 /* The position really is stored cast to a pointer. */
4489 int position = (long) call_data;
4490 Dimension height;
4491 int part;
4492
4493 /* Get the height of the scroll bar. */
4494 BLOCK_INPUT;
4495 XtVaGetValues (widget, XtNheight, &height, NULL);
4496 UNBLOCK_INPUT;
4497
4498 if (eabs (position) >= height)
4499 part = (position < 0) ? scroll_bar_above_handle : scroll_bar_below_handle;
4500
4501 /* If Xaw3d was compiled with ARROW_SCROLLBAR,
4502 it maps line-movement to call_data = max(5, height/20). */
4503 else if (xaw3d_arrow_scroll && eabs (position) <= max (5, height / 20))
4504 part = (position < 0) ? scroll_bar_up_arrow : scroll_bar_down_arrow;
4505 else
4506 part = scroll_bar_move_ratio;
4507
4508 window_being_scrolled = bar->window;
4509 bar->dragging = Qnil;
4510 last_scroll_bar_part = part;
4511 x_send_scroll_bar_event (bar->window, part, position, height);
4512 }
4513
4514 #endif /* not USE_GTK and not USE_MOTIF */
4515
4516 #define SCROLL_BAR_NAME "verticalScrollBar"
4517
4518 /* Create the widget for scroll bar BAR on frame F. Record the widget
4519 and X window of the scroll bar in BAR. */
4520
4521 #ifdef USE_GTK
4522 static void
4523 x_create_toolkit_scroll_bar (struct frame *f, struct scroll_bar *bar)
4524 {
4525 const char *scroll_bar_name = SCROLL_BAR_NAME;
4526
4527 BLOCK_INPUT;
4528 xg_create_scroll_bar (f, bar, G_CALLBACK (xg_scroll_callback),
4529 G_CALLBACK (xg_end_scroll_callback),
4530 scroll_bar_name);
4531 UNBLOCK_INPUT;
4532 }
4533
4534 #else /* not USE_GTK */
4535
4536 static void
4537 x_create_toolkit_scroll_bar (struct frame *f, struct scroll_bar *bar)
4538 {
4539 Window xwindow;
4540 Widget widget;
4541 Arg av[20];
4542 int ac = 0;
4543 char *scroll_bar_name = SCROLL_BAR_NAME;
4544 unsigned long pixel;
4545
4546 BLOCK_INPUT;
4547
4548 #ifdef USE_MOTIF
4549 /* Set resources. Create the widget. */
4550 XtSetArg (av[ac], XtNmappedWhenManaged, False); ++ac;
4551 XtSetArg (av[ac], XmNminimum, 0); ++ac;
4552 XtSetArg (av[ac], XmNmaximum, XM_SB_MAX); ++ac;
4553 XtSetArg (av[ac], XmNorientation, XmVERTICAL); ++ac;
4554 XtSetArg (av[ac], XmNprocessingDirection, XmMAX_ON_BOTTOM), ++ac;
4555 XtSetArg (av[ac], XmNincrement, 1); ++ac;
4556 XtSetArg (av[ac], XmNpageIncrement, 1); ++ac;
4557
4558 pixel = f->output_data.x->scroll_bar_foreground_pixel;
4559 if (pixel != -1)
4560 {
4561 XtSetArg (av[ac], XmNforeground, pixel);
4562 ++ac;
4563 }
4564
4565 pixel = f->output_data.x->scroll_bar_background_pixel;
4566 if (pixel != -1)
4567 {
4568 XtSetArg (av[ac], XmNbackground, pixel);
4569 ++ac;
4570 }
4571
4572 widget = XmCreateScrollBar (f->output_data.x->edit_widget,
4573 scroll_bar_name, av, ac);
4574
4575 /* Add one callback for everything that can happen. */
4576 XtAddCallback (widget, XmNdecrementCallback, xm_scroll_callback,
4577 (XtPointer) bar);
4578 XtAddCallback (widget, XmNdragCallback, xm_scroll_callback,
4579 (XtPointer) bar);
4580 XtAddCallback (widget, XmNincrementCallback, xm_scroll_callback,
4581 (XtPointer) bar);
4582 XtAddCallback (widget, XmNpageDecrementCallback, xm_scroll_callback,
4583 (XtPointer) bar);
4584 XtAddCallback (widget, XmNpageIncrementCallback, xm_scroll_callback,
4585 (XtPointer) bar);
4586 XtAddCallback (widget, XmNtoBottomCallback, xm_scroll_callback,
4587 (XtPointer) bar);
4588 XtAddCallback (widget, XmNtoTopCallback, xm_scroll_callback,
4589 (XtPointer) bar);
4590
4591 /* Realize the widget. Only after that is the X window created. */
4592 XtRealizeWidget (widget);
4593
4594 /* Set the cursor to an arrow. I didn't find a resource to do that.
4595 And I'm wondering why it hasn't an arrow cursor by default. */
4596 XDefineCursor (XtDisplay (widget), XtWindow (widget),
4597 f->output_data.x->nontext_cursor);
4598
4599 #else /* !USE_MOTIF i.e. use Xaw */
4600
4601 /* Set resources. Create the widget. The background of the
4602 Xaw3d scroll bar widget is a little bit light for my taste.
4603 We don't alter it here to let users change it according
4604 to their taste with `emacs*verticalScrollBar.background: xxx'. */
4605 XtSetArg (av[ac], XtNmappedWhenManaged, False); ++ac;
4606 XtSetArg (av[ac], XtNorientation, XtorientVertical); ++ac;
4607 /* For smoother scrolling with Xaw3d -sm */
4608 /* XtSetArg (av[ac], XtNpickTop, True); ++ac; */
4609
4610 pixel = f->output_data.x->scroll_bar_foreground_pixel;
4611 if (pixel != -1)
4612 {
4613 XtSetArg (av[ac], XtNforeground, pixel);
4614 ++ac;
4615 }
4616
4617 pixel = f->output_data.x->scroll_bar_background_pixel;
4618 if (pixel != -1)
4619 {
4620 XtSetArg (av[ac], XtNbackground, pixel);
4621 ++ac;
4622 }
4623
4624 /* Top/bottom shadow colors. */
4625
4626 /* Allocate them, if necessary. */
4627 if (f->output_data.x->scroll_bar_top_shadow_pixel == -1)
4628 {
4629 pixel = f->output_data.x->scroll_bar_background_pixel;
4630 if (pixel != -1)
4631 {
4632 if (!x_alloc_lighter_color (f, FRAME_X_DISPLAY (f),
4633 FRAME_X_COLORMAP (f),
4634 &pixel, 1.2, 0x8000))
4635 pixel = -1;
4636 f->output_data.x->scroll_bar_top_shadow_pixel = pixel;
4637 }
4638 }
4639 if (f->output_data.x->scroll_bar_bottom_shadow_pixel == -1)
4640 {
4641 pixel = f->output_data.x->scroll_bar_background_pixel;
4642 if (pixel != -1)
4643 {
4644 if (!x_alloc_lighter_color (f, FRAME_X_DISPLAY (f),
4645 FRAME_X_COLORMAP (f),
4646 &pixel, 0.6, 0x4000))
4647 pixel = -1;
4648 f->output_data.x->scroll_bar_bottom_shadow_pixel = pixel;
4649 }
4650 }
4651
4652 #ifdef XtNbeNiceToColormap
4653 /* Tell the toolkit about them. */
4654 if (f->output_data.x->scroll_bar_top_shadow_pixel == -1
4655 || f->output_data.x->scroll_bar_bottom_shadow_pixel == -1)
4656 /* We tried to allocate a color for the top/bottom shadow, and
4657 failed, so tell Xaw3d to use dithering instead. */
4658 /* But only if we have a small colormap. Xaw3d can allocate nice
4659 colors itself. */
4660 {
4661 XtSetArg (av[ac], XtNbeNiceToColormap,
4662 DefaultDepthOfScreen (FRAME_X_SCREEN (f)) < 16);
4663 ++ac;
4664 }
4665 else
4666 /* Tell what colors Xaw3d should use for the top/bottom shadow, to
4667 be more consistent with other emacs 3d colors, and since Xaw3d is
4668 not good at dealing with allocation failure. */
4669 {
4670 /* This tells Xaw3d to use real colors instead of dithering for
4671 the shadows. */
4672 XtSetArg (av[ac], XtNbeNiceToColormap, False);
4673 ++ac;
4674
4675 /* Specify the colors. */
4676 pixel = f->output_data.x->scroll_bar_top_shadow_pixel;
4677 if (pixel != -1)
4678 {
4679 XtSetArg (av[ac], XtNtopShadowPixel, pixel);
4680 ++ac;
4681 }
4682 pixel = f->output_data.x->scroll_bar_bottom_shadow_pixel;
4683 if (pixel != -1)
4684 {
4685 XtSetArg (av[ac], XtNbottomShadowPixel, pixel);
4686 ++ac;
4687 }
4688 }
4689 #endif
4690
4691 widget = XtCreateWidget (scroll_bar_name, scrollbarWidgetClass,
4692 f->output_data.x->edit_widget, av, ac);
4693
4694 {
4695 char *initial = "";
4696 char *val = initial;
4697 XtVaGetValues (widget, XtNscrollVCursor, (XtPointer) &val,
4698 #ifdef XtNarrowScrollbars
4699 XtNarrowScrollbars, (XtPointer) &xaw3d_arrow_scroll,
4700 #endif
4701 XtNpickTop, (XtPointer) &xaw3d_pick_top, NULL);
4702 if (xaw3d_arrow_scroll || val == initial)
4703 { /* ARROW_SCROLL */
4704 xaw3d_arrow_scroll = True;
4705 /* Isn't that just a personal preference ? --Stef */
4706 XtVaSetValues (widget, XtNcursorName, "top_left_arrow", NULL);
4707 }
4708 }
4709
4710 /* Define callbacks. */
4711 XtAddCallback (widget, XtNjumpProc, xaw_jump_callback, (XtPointer) bar);
4712 XtAddCallback (widget, XtNscrollProc, xaw_scroll_callback,
4713 (XtPointer) bar);
4714
4715 /* Realize the widget. Only after that is the X window created. */
4716 XtRealizeWidget (widget);
4717
4718 #endif /* !USE_MOTIF */
4719
4720 /* Install an action hook that lets us detect when the user
4721 finishes interacting with a scroll bar. */
4722 if (action_hook_id == 0)
4723 action_hook_id = XtAppAddActionHook (Xt_app_con, xt_action_hook, 0);
4724
4725 /* Remember X window and widget in the scroll bar vector. */
4726 SET_SCROLL_BAR_X_WIDGET (bar, widget);
4727 xwindow = XtWindow (widget);
4728 bar->x_window = xwindow;
4729
4730 UNBLOCK_INPUT;
4731 }
4732 #endif /* not USE_GTK */
4733
4734
4735 /* Set the thumb size and position of scroll bar BAR. We are currently
4736 displaying PORTION out of a whole WHOLE, and our position POSITION. */
4737
4738 #ifdef USE_GTK
4739 static void
4740 x_set_toolkit_scroll_bar_thumb (struct scroll_bar *bar, int portion, int position, int whole)
4741 {
4742 xg_set_toolkit_scroll_bar_thumb (bar, portion, position, whole);
4743 }
4744
4745 #else /* not USE_GTK */
4746 static void
4747 x_set_toolkit_scroll_bar_thumb (struct scroll_bar *bar, int portion, int position,
4748 int whole)
4749 {
4750 struct frame *f = XFRAME (WINDOW_FRAME (XWINDOW (bar->window)));
4751 Widget widget = SCROLL_BAR_X_WIDGET (FRAME_X_DISPLAY (f), bar);
4752 float top, shown;
4753
4754 BLOCK_INPUT;
4755
4756 #ifdef USE_MOTIF
4757
4758 /* We use an estimate of 30 chars per line rather than the real
4759 `portion' value. This has the disadvantage that the thumb size
4760 is not very representative, but it makes our life a lot easier.
4761 Otherwise, we have to constantly adjust the thumb size, which
4762 we can't always do quickly enough: while dragging, the size of
4763 the thumb might prevent the user from dragging the thumb all the
4764 way to the end. but Motif and some versions of Xaw3d don't allow
4765 updating the thumb size while dragging. Also, even if we can update
4766 its size, the update will often happen too late.
4767 If you don't believe it, check out revision 1.650 of xterm.c to see
4768 what hoops we were going through and the still poor behavior we got. */
4769 portion = WINDOW_TOTAL_LINES (XWINDOW (bar->window)) * 30;
4770 /* When the thumb is at the bottom, position == whole.
4771 So we need to increase `whole' to make space for the thumb. */
4772 whole += portion;
4773
4774 if (whole <= 0)
4775 top = 0, shown = 1;
4776 else
4777 {
4778 top = (float) position / whole;
4779 shown = (float) portion / whole;
4780 }
4781
4782 if (NILP (bar->dragging))
4783 {
4784 int size, value;
4785
4786 /* Slider size. Must be in the range [1 .. MAX - MIN] where MAX
4787 is the scroll bar's maximum and MIN is the scroll bar's minimum
4788 value. */
4789 size = shown * XM_SB_MAX;
4790 size = min (size, XM_SB_MAX);
4791 size = max (size, 1);
4792
4793 /* Position. Must be in the range [MIN .. MAX - SLIDER_SIZE]. */
4794 value = top * XM_SB_MAX;
4795 value = min (value, XM_SB_MAX - size);
4796
4797 XmScrollBarSetValues (widget, value, size, 0, 0, False);
4798 }
4799 #else /* !USE_MOTIF i.e. use Xaw */
4800
4801 if (whole == 0)
4802 top = 0, shown = 1;
4803 else
4804 {
4805 top = (float) position / whole;
4806 shown = (float) portion / whole;
4807 }
4808
4809 {
4810 float old_top, old_shown;
4811 Dimension height;
4812 XtVaGetValues (widget,
4813 XtNtopOfThumb, &old_top,
4814 XtNshown, &old_shown,
4815 XtNheight, &height,
4816 NULL);
4817
4818 /* Massage the top+shown values. */
4819 if (NILP (bar->dragging) || last_scroll_bar_part == scroll_bar_down_arrow)
4820 top = max (0, min (1, top));
4821 else
4822 top = old_top;
4823 /* Keep two pixels available for moving the thumb down. */
4824 shown = max (0, min (1 - top - (2.0 / height), shown));
4825
4826 /* If the call to XawScrollbarSetThumb below doesn't seem to work,
4827 check that your system's configuration file contains a define
4828 for `NARROWPROTO'. See s/freebsd.h for an example. */
4829 if (top != old_top || shown != old_shown)
4830 {
4831 if (NILP (bar->dragging))
4832 XawScrollbarSetThumb (widget, top, shown);
4833 else
4834 {
4835 /* Try to make the scrolling a tad smoother. */
4836 if (!xaw3d_pick_top)
4837 shown = min (shown, old_shown);
4838
4839 XawScrollbarSetThumb (widget, top, shown);
4840 }
4841 }
4842 }
4843 #endif /* !USE_MOTIF */
4844
4845 UNBLOCK_INPUT;
4846 }
4847 #endif /* not USE_GTK */
4848
4849 #endif /* USE_TOOLKIT_SCROLL_BARS */
4850
4851
4852 \f
4853 /************************************************************************
4854 Scroll bars, general
4855 ************************************************************************/
4856
4857 /* Create a scroll bar and return the scroll bar vector for it. W is
4858 the Emacs window on which to create the scroll bar. TOP, LEFT,
4859 WIDTH and HEIGHT are the pixel coordinates and dimensions of the
4860 scroll bar. */
4861
4862 static struct scroll_bar *
4863 x_scroll_bar_create (struct window *w, int top, int left, int width, int height)
4864 {
4865 struct frame *f = XFRAME (w->frame);
4866 struct scroll_bar *bar
4867 = ALLOCATE_PSEUDOVECTOR (struct scroll_bar, x_window, PVEC_OTHER);
4868
4869 BLOCK_INPUT;
4870
4871 #ifdef USE_TOOLKIT_SCROLL_BARS
4872 x_create_toolkit_scroll_bar (f, bar);
4873 #else /* not USE_TOOLKIT_SCROLL_BARS */
4874 {
4875 XSetWindowAttributes a;
4876 unsigned long mask;
4877 Window window;
4878
4879 a.background_pixel = f->output_data.x->scroll_bar_background_pixel;
4880 if (a.background_pixel == -1)
4881 a.background_pixel = FRAME_BACKGROUND_PIXEL (f);
4882
4883 a.event_mask = (ButtonPressMask | ButtonReleaseMask
4884 | ButtonMotionMask | PointerMotionHintMask
4885 | ExposureMask);
4886 a.cursor = FRAME_X_DISPLAY_INFO (f)->vertical_scroll_bar_cursor;
4887
4888 mask = (CWBackPixel | CWEventMask | CWCursor);
4889
4890 /* Clear the area of W that will serve as a scroll bar. This is
4891 for the case that a window has been split horizontally. In
4892 this case, no clear_frame is generated to reduce flickering. */
4893 if (width > 0 && height > 0)
4894 x_clear_area (FRAME_X_DISPLAY (f), FRAME_X_WINDOW (f),
4895 left, top, width,
4896 window_box_height (w), False);
4897
4898 window = XCreateWindow (FRAME_X_DISPLAY (f), FRAME_X_WINDOW (f),
4899 /* Position and size of scroll bar. */
4900 left + VERTICAL_SCROLL_BAR_WIDTH_TRIM,
4901 top,
4902 width - VERTICAL_SCROLL_BAR_WIDTH_TRIM * 2,
4903 height,
4904 /* Border width, depth, class, and visual. */
4905 0,
4906 CopyFromParent,
4907 CopyFromParent,
4908 CopyFromParent,
4909 /* Attributes. */
4910 mask, &a);
4911 bar->x_window = window;
4912 }
4913 #endif /* not USE_TOOLKIT_SCROLL_BARS */
4914
4915 XSETWINDOW (bar->window, w);
4916 bar->top = top;
4917 bar->left = left;
4918 bar->width = width;
4919 bar->height = height;
4920 bar->start = 0;
4921 bar->end = 0;
4922 bar->dragging = Qnil;
4923 bar->fringe_extended_p = 0;
4924
4925 /* Add bar to its frame's list of scroll bars. */
4926 bar->next = FRAME_SCROLL_BARS (f);
4927 bar->prev = Qnil;
4928 XSETVECTOR (FRAME_SCROLL_BARS (f), bar);
4929 if (!NILP (bar->next))
4930 XSETVECTOR (XSCROLL_BAR (bar->next)->prev, bar);
4931
4932 /* Map the window/widget. */
4933 #ifdef USE_TOOLKIT_SCROLL_BARS
4934 {
4935 #ifdef USE_GTK
4936 xg_update_scrollbar_pos (f,
4937 bar->x_window,
4938 top,
4939 left + VERTICAL_SCROLL_BAR_WIDTH_TRIM,
4940 width - VERTICAL_SCROLL_BAR_WIDTH_TRIM * 2,
4941 max (height, 1));
4942 #else /* not USE_GTK */
4943 Widget scroll_bar = SCROLL_BAR_X_WIDGET (FRAME_X_DISPLAY (f), bar);
4944 XtConfigureWidget (scroll_bar,
4945 left + VERTICAL_SCROLL_BAR_WIDTH_TRIM,
4946 top,
4947 width - VERTICAL_SCROLL_BAR_WIDTH_TRIM * 2,
4948 max (height, 1), 0);
4949 XtMapWidget (scroll_bar);
4950 #endif /* not USE_GTK */
4951 }
4952 #else /* not USE_TOOLKIT_SCROLL_BARS */
4953 XMapRaised (FRAME_X_DISPLAY (f), bar->x_window);
4954 #endif /* not USE_TOOLKIT_SCROLL_BARS */
4955
4956 UNBLOCK_INPUT;
4957 return bar;
4958 }
4959
4960
4961 #ifndef USE_TOOLKIT_SCROLL_BARS
4962
4963 /* Draw BAR's handle in the proper position.
4964
4965 If the handle is already drawn from START to END, don't bother
4966 redrawing it, unless REBUILD is non-zero; in that case, always
4967 redraw it. (REBUILD is handy for drawing the handle after expose
4968 events.)
4969
4970 Normally, we want to constrain the start and end of the handle to
4971 fit inside its rectangle, but if the user is dragging the scroll
4972 bar handle, we want to let them drag it down all the way, so that
4973 the bar's top is as far down as it goes; otherwise, there's no way
4974 to move to the very end of the buffer. */
4975
4976 static void
4977 x_scroll_bar_set_handle (struct scroll_bar *bar, int start, int end, int rebuild)
4978 {
4979 int dragging = ! NILP (bar->dragging);
4980 Window w = bar->x_window;
4981 FRAME_PTR f = XFRAME (WINDOW_FRAME (XWINDOW (bar->window)));
4982 GC gc = f->output_data.x->normal_gc;
4983
4984 /* If the display is already accurate, do nothing. */
4985 if (! rebuild
4986 && start == bar->start
4987 && end == bar->end)
4988 return;
4989
4990 BLOCK_INPUT;
4991
4992 {
4993 int inside_width = VERTICAL_SCROLL_BAR_INSIDE_WIDTH (f, bar->width);
4994 int inside_height = VERTICAL_SCROLL_BAR_INSIDE_HEIGHT (f, bar->height);
4995 int top_range = VERTICAL_SCROLL_BAR_TOP_RANGE (f, bar->height);
4996
4997 /* Make sure the values are reasonable, and try to preserve
4998 the distance between start and end. */
4999 {
5000 int length = end - start;
5001
5002 if (start < 0)
5003 start = 0;
5004 else if (start > top_range)
5005 start = top_range;
5006 end = start + length;
5007
5008 if (end < start)
5009 end = start;
5010 else if (end > top_range && ! dragging)
5011 end = top_range;
5012 }
5013
5014 /* Store the adjusted setting in the scroll bar. */
5015 bar->start = start;
5016 bar->end = end;
5017
5018 /* Clip the end position, just for display. */
5019 if (end > top_range)
5020 end = top_range;
5021
5022 /* Draw bottom positions VERTICAL_SCROLL_BAR_MIN_HANDLE pixels
5023 below top positions, to make sure the handle is always at least
5024 that many pixels tall. */
5025 end += VERTICAL_SCROLL_BAR_MIN_HANDLE;
5026
5027 /* Draw the empty space above the handle. Note that we can't clear
5028 zero-height areas; that means "clear to end of window." */
5029 if (0 < start)
5030 x_clear_area (FRAME_X_DISPLAY (f), w,
5031 /* x, y, width, height, and exposures. */
5032 VERTICAL_SCROLL_BAR_LEFT_BORDER,
5033 VERTICAL_SCROLL_BAR_TOP_BORDER,
5034 inside_width, start,
5035 False);
5036
5037 /* Change to proper foreground color if one is specified. */
5038 if (f->output_data.x->scroll_bar_foreground_pixel != -1)
5039 XSetForeground (FRAME_X_DISPLAY (f), gc,
5040 f->output_data.x->scroll_bar_foreground_pixel);
5041
5042 /* Draw the handle itself. */
5043 XFillRectangle (FRAME_X_DISPLAY (f), w, gc,
5044 /* x, y, width, height */
5045 VERTICAL_SCROLL_BAR_LEFT_BORDER,
5046 VERTICAL_SCROLL_BAR_TOP_BORDER + start,
5047 inside_width, end - start);
5048
5049 /* Restore the foreground color of the GC if we changed it above. */
5050 if (f->output_data.x->scroll_bar_foreground_pixel != -1)
5051 XSetForeground (FRAME_X_DISPLAY (f), gc,
5052 FRAME_FOREGROUND_PIXEL (f));
5053
5054 /* Draw the empty space below the handle. Note that we can't
5055 clear zero-height areas; that means "clear to end of window." */
5056 if (end < inside_height)
5057 x_clear_area (FRAME_X_DISPLAY (f), w,
5058 /* x, y, width, height, and exposures. */
5059 VERTICAL_SCROLL_BAR_LEFT_BORDER,
5060 VERTICAL_SCROLL_BAR_TOP_BORDER + end,
5061 inside_width, inside_height - end,
5062 False);
5063
5064 }
5065
5066 UNBLOCK_INPUT;
5067 }
5068
5069 #endif /* !USE_TOOLKIT_SCROLL_BARS */
5070
5071 /* Destroy scroll bar BAR, and set its Emacs window's scroll bar to
5072 nil. */
5073
5074 static void
5075 x_scroll_bar_remove (struct scroll_bar *bar)
5076 {
5077 struct frame *f = XFRAME (WINDOW_FRAME (XWINDOW (bar->window)));
5078 BLOCK_INPUT;
5079
5080 #ifdef USE_TOOLKIT_SCROLL_BARS
5081 #ifdef USE_GTK
5082 xg_remove_scroll_bar (f, bar->x_window);
5083 #else /* not USE_GTK */
5084 XtDestroyWidget (SCROLL_BAR_X_WIDGET (FRAME_X_DISPLAY (f), bar));
5085 #endif /* not USE_GTK */
5086 #else
5087 XDestroyWindow (FRAME_X_DISPLAY (f), bar->x_window);
5088 #endif
5089
5090 /* Disassociate this scroll bar from its window. */
5091 XWINDOW (bar->window)->vertical_scroll_bar = Qnil;
5092
5093 UNBLOCK_INPUT;
5094 }
5095
5096
5097 /* Set the handle of the vertical scroll bar for WINDOW to indicate
5098 that we are displaying PORTION characters out of a total of WHOLE
5099 characters, starting at POSITION. If WINDOW has no scroll bar,
5100 create one. */
5101
5102 static void
5103 XTset_vertical_scroll_bar (struct window *w, int portion, int whole, int position)
5104 {
5105 struct frame *f = XFRAME (w->frame);
5106 struct scroll_bar *bar;
5107 int top, height, left, sb_left, width, sb_width;
5108 int window_y, window_height;
5109 #ifdef USE_TOOLKIT_SCROLL_BARS
5110 int fringe_extended_p;
5111 #endif
5112
5113 /* Get window dimensions. */
5114 window_box (w, -1, 0, &window_y, 0, &window_height);
5115 top = window_y;
5116 width = WINDOW_CONFIG_SCROLL_BAR_COLS (w) * FRAME_COLUMN_WIDTH (f);
5117 height = window_height;
5118
5119 /* Compute the left edge of the scroll bar area. */
5120 left = WINDOW_SCROLL_BAR_AREA_X (w);
5121
5122 /* Compute the width of the scroll bar which might be less than
5123 the width of the area reserved for the scroll bar. */
5124 if (WINDOW_CONFIG_SCROLL_BAR_WIDTH (w) > 0)
5125 sb_width = WINDOW_CONFIG_SCROLL_BAR_WIDTH (w);
5126 else
5127 sb_width = width;
5128
5129 /* Compute the left edge of the scroll bar. */
5130 #ifdef USE_TOOLKIT_SCROLL_BARS
5131 if (WINDOW_HAS_VERTICAL_SCROLL_BAR_ON_RIGHT (w))
5132 sb_left = left + (WINDOW_RIGHTMOST_P (w) ? width - sb_width : 0);
5133 else
5134 sb_left = left + (WINDOW_LEFTMOST_P (w) ? 0 : width - sb_width);
5135 #else
5136 if (WINDOW_HAS_VERTICAL_SCROLL_BAR_ON_RIGHT (w))
5137 sb_left = left + width - sb_width;
5138 else
5139 sb_left = left;
5140 #endif
5141
5142 #ifdef USE_TOOLKIT_SCROLL_BARS
5143 if (WINDOW_HAS_VERTICAL_SCROLL_BAR_ON_LEFT (w))
5144 fringe_extended_p = (WINDOW_LEFTMOST_P (w)
5145 && WINDOW_LEFT_FRINGE_WIDTH (w)
5146 && (WINDOW_HAS_FRINGES_OUTSIDE_MARGINS (w)
5147 || WINDOW_LEFT_MARGIN_COLS (w) == 0));
5148 else
5149 fringe_extended_p = (WINDOW_RIGHTMOST_P (w)
5150 && WINDOW_RIGHT_FRINGE_WIDTH (w)
5151 && (WINDOW_HAS_FRINGES_OUTSIDE_MARGINS (w)
5152 || WINDOW_RIGHT_MARGIN_COLS (w) == 0));
5153 #endif
5154
5155 /* Does the scroll bar exist yet? */
5156 if (NILP (w->vertical_scroll_bar))
5157 {
5158 if (width > 0 && height > 0)
5159 {
5160 BLOCK_INPUT;
5161 #ifdef USE_TOOLKIT_SCROLL_BARS
5162 if (fringe_extended_p)
5163 x_clear_area (FRAME_X_DISPLAY (f), FRAME_X_WINDOW (f),
5164 sb_left, top, sb_width, height, False);
5165 else
5166 #endif
5167 x_clear_area (FRAME_X_DISPLAY (f), FRAME_X_WINDOW (f),
5168 left, top, width, height, False);
5169 UNBLOCK_INPUT;
5170 }
5171
5172 bar = x_scroll_bar_create (w, top, sb_left, sb_width, height);
5173 }
5174 else
5175 {
5176 /* It may just need to be moved and resized. */
5177 unsigned int mask = 0;
5178
5179 bar = XSCROLL_BAR (w->vertical_scroll_bar);
5180
5181 BLOCK_INPUT;
5182
5183 if (sb_left != bar->left)
5184 mask |= CWX;
5185 if (top != bar->top)
5186 mask |= CWY;
5187 if (sb_width != bar->width)
5188 mask |= CWWidth;
5189 if (height != bar->height)
5190 mask |= CWHeight;
5191
5192 #ifdef USE_TOOLKIT_SCROLL_BARS
5193
5194 /* Move/size the scroll bar widget. */
5195 if (mask || bar->fringe_extended_p != fringe_extended_p)
5196 {
5197 /* Since toolkit scroll bars are smaller than the space reserved
5198 for them on the frame, we have to clear "under" them. */
5199 if (width > 0 && height > 0)
5200 {
5201 if (fringe_extended_p)
5202 x_clear_area (FRAME_X_DISPLAY (f), FRAME_X_WINDOW (f),
5203 sb_left, top, sb_width, height, False);
5204 else
5205 x_clear_area (FRAME_X_DISPLAY (f), FRAME_X_WINDOW (f),
5206 left, top, width, height, False);
5207 }
5208 #ifdef USE_GTK
5209 xg_update_scrollbar_pos (f,
5210 bar->x_window,
5211 top,
5212 sb_left + VERTICAL_SCROLL_BAR_WIDTH_TRIM,
5213 sb_width - VERTICAL_SCROLL_BAR_WIDTH_TRIM *2,
5214 max (height, 1));
5215 #else /* not USE_GTK */
5216 XtConfigureWidget (SCROLL_BAR_X_WIDGET (FRAME_X_DISPLAY (f), bar),
5217 sb_left + VERTICAL_SCROLL_BAR_WIDTH_TRIM,
5218 top,
5219 sb_width - VERTICAL_SCROLL_BAR_WIDTH_TRIM * 2,
5220 max (height, 1), 0);
5221 #endif /* not USE_GTK */
5222 }
5223 #else /* not USE_TOOLKIT_SCROLL_BARS */
5224
5225 /* Clear areas not covered by the scroll bar because of
5226 VERTICAL_SCROLL_BAR_WIDTH_TRIM. */
5227 if (VERTICAL_SCROLL_BAR_WIDTH_TRIM)
5228 {
5229 x_clear_area (FRAME_X_DISPLAY (f), FRAME_X_WINDOW (f),
5230 left, top, VERTICAL_SCROLL_BAR_WIDTH_TRIM,
5231 height, False);
5232 x_clear_area (FRAME_X_DISPLAY (f), FRAME_X_WINDOW (f),
5233 left + width - VERTICAL_SCROLL_BAR_WIDTH_TRIM,
5234 top, VERTICAL_SCROLL_BAR_WIDTH_TRIM,
5235 height, False);
5236 }
5237
5238 /* Clear areas not covered by the scroll bar because it's not as
5239 wide as the area reserved for it. This makes sure a
5240 previous mode line display is cleared after C-x 2 C-x 1, for
5241 example. */
5242 {
5243 int area_width = WINDOW_CONFIG_SCROLL_BAR_COLS (w) * FRAME_COLUMN_WIDTH (f);
5244 int rest = area_width - sb_width;
5245 if (rest > 0 && height > 0)
5246 {
5247 if (WINDOW_HAS_VERTICAL_SCROLL_BAR_ON_LEFT (w))
5248 x_clear_area (FRAME_X_DISPLAY (f), FRAME_X_WINDOW (f),
5249 left + area_width - rest, top,
5250 rest, height, False);
5251 else
5252 x_clear_area (FRAME_X_DISPLAY (f), FRAME_X_WINDOW (f),
5253 left, top, rest, height, False);
5254 }
5255 }
5256
5257 /* Move/size the scroll bar window. */
5258 if (mask)
5259 {
5260 XWindowChanges wc;
5261
5262 wc.x = sb_left + VERTICAL_SCROLL_BAR_WIDTH_TRIM;
5263 wc.y = top;
5264 wc.width = sb_width - VERTICAL_SCROLL_BAR_WIDTH_TRIM * 2;
5265 wc.height = height;
5266 XConfigureWindow (FRAME_X_DISPLAY (f), bar->x_window,
5267 mask, &wc);
5268 }
5269
5270 #endif /* not USE_TOOLKIT_SCROLL_BARS */
5271
5272 /* Remember new settings. */
5273 bar->left = sb_left;
5274 bar->top = top;
5275 bar->width = sb_width;
5276 bar->height = height;
5277
5278 UNBLOCK_INPUT;
5279 }
5280
5281 #ifdef USE_TOOLKIT_SCROLL_BARS
5282 bar->fringe_extended_p = fringe_extended_p;
5283
5284 x_set_toolkit_scroll_bar_thumb (bar, portion, position, whole);
5285 #else /* not USE_TOOLKIT_SCROLL_BARS */
5286 /* Set the scroll bar's current state, unless we're currently being
5287 dragged. */
5288 if (NILP (bar->dragging))
5289 {
5290 int top_range = VERTICAL_SCROLL_BAR_TOP_RANGE (f, height);
5291
5292 if (whole == 0)
5293 x_scroll_bar_set_handle (bar, 0, top_range, 0);
5294 else
5295 {
5296 int start = ((double) position * top_range) / whole;
5297 int end = ((double) (position + portion) * top_range) / whole;
5298 x_scroll_bar_set_handle (bar, start, end, 0);
5299 }
5300 }
5301 #endif /* not USE_TOOLKIT_SCROLL_BARS */
5302
5303 XSETVECTOR (w->vertical_scroll_bar, bar);
5304 }
5305
5306
5307 /* The following three hooks are used when we're doing a thorough
5308 redisplay of the frame. We don't explicitly know which scroll bars
5309 are going to be deleted, because keeping track of when windows go
5310 away is a real pain - "Can you say set-window-configuration, boys
5311 and girls?" Instead, we just assert at the beginning of redisplay
5312 that *all* scroll bars are to be removed, and then save a scroll bar
5313 from the fiery pit when we actually redisplay its window. */
5314
5315 /* Arrange for all scroll bars on FRAME to be removed at the next call
5316 to `*judge_scroll_bars_hook'. A scroll bar may be spared if
5317 `*redeem_scroll_bar_hook' is applied to its window before the judgment. */
5318
5319 static void
5320 XTcondemn_scroll_bars (FRAME_PTR frame)
5321 {
5322 /* Transfer all the scroll bars to FRAME_CONDEMNED_SCROLL_BARS. */
5323 while (! NILP (FRAME_SCROLL_BARS (frame)))
5324 {
5325 Lisp_Object bar;
5326 bar = FRAME_SCROLL_BARS (frame);
5327 FRAME_SCROLL_BARS (frame) = XSCROLL_BAR (bar)->next;
5328 XSCROLL_BAR (bar)->next = FRAME_CONDEMNED_SCROLL_BARS (frame);
5329 XSCROLL_BAR (bar)->prev = Qnil;
5330 if (! NILP (FRAME_CONDEMNED_SCROLL_BARS (frame)))
5331 XSCROLL_BAR (FRAME_CONDEMNED_SCROLL_BARS (frame))->prev = bar;
5332 FRAME_CONDEMNED_SCROLL_BARS (frame) = bar;
5333 }
5334 }
5335
5336
5337 /* Un-mark WINDOW's scroll bar for deletion in this judgment cycle.
5338 Note that WINDOW isn't necessarily condemned at all. */
5339
5340 static void
5341 XTredeem_scroll_bar (struct window *window)
5342 {
5343 struct scroll_bar *bar;
5344 struct frame *f;
5345
5346 /* We can't redeem this window's scroll bar if it doesn't have one. */
5347 if (NILP (window->vertical_scroll_bar))
5348 abort ();
5349
5350 bar = XSCROLL_BAR (window->vertical_scroll_bar);
5351
5352 /* Unlink it from the condemned list. */
5353 f = XFRAME (WINDOW_FRAME (window));
5354 if (NILP (bar->prev))
5355 {
5356 /* If the prev pointer is nil, it must be the first in one of
5357 the lists. */
5358 if (EQ (FRAME_SCROLL_BARS (f), window->vertical_scroll_bar))
5359 /* It's not condemned. Everything's fine. */
5360 return;
5361 else if (EQ (FRAME_CONDEMNED_SCROLL_BARS (f),
5362 window->vertical_scroll_bar))
5363 FRAME_CONDEMNED_SCROLL_BARS (f) = bar->next;
5364 else
5365 /* If its prev pointer is nil, it must be at the front of
5366 one or the other! */
5367 abort ();
5368 }
5369 else
5370 XSCROLL_BAR (bar->prev)->next = bar->next;
5371
5372 if (! NILP (bar->next))
5373 XSCROLL_BAR (bar->next)->prev = bar->prev;
5374
5375 bar->next = FRAME_SCROLL_BARS (f);
5376 bar->prev = Qnil;
5377 XSETVECTOR (FRAME_SCROLL_BARS (f), bar);
5378 if (! NILP (bar->next))
5379 XSETVECTOR (XSCROLL_BAR (bar->next)->prev, bar);
5380 }
5381
5382 /* Remove all scroll bars on FRAME that haven't been saved since the
5383 last call to `*condemn_scroll_bars_hook'. */
5384
5385 static void
5386 XTjudge_scroll_bars (FRAME_PTR f)
5387 {
5388 Lisp_Object bar, next;
5389
5390 bar = FRAME_CONDEMNED_SCROLL_BARS (f);
5391
5392 /* Clear out the condemned list now so we won't try to process any
5393 more events on the hapless scroll bars. */
5394 FRAME_CONDEMNED_SCROLL_BARS (f) = Qnil;
5395
5396 for (; ! NILP (bar); bar = next)
5397 {
5398 struct scroll_bar *b = XSCROLL_BAR (bar);
5399
5400 x_scroll_bar_remove (b);
5401
5402 next = b->next;
5403 b->next = b->prev = Qnil;
5404 }
5405
5406 /* Now there should be no references to the condemned scroll bars,
5407 and they should get garbage-collected. */
5408 }
5409
5410
5411 #ifndef USE_TOOLKIT_SCROLL_BARS
5412 /* Handle an Expose or GraphicsExpose event on a scroll bar. This
5413 is a no-op when using toolkit scroll bars.
5414
5415 This may be called from a signal handler, so we have to ignore GC
5416 mark bits. */
5417
5418 static void
5419 x_scroll_bar_expose (struct scroll_bar *bar, XEvent *event)
5420 {
5421 Window w = bar->x_window;
5422 FRAME_PTR f = XFRAME (WINDOW_FRAME (XWINDOW (bar->window)));
5423 GC gc = f->output_data.x->normal_gc;
5424 int width_trim = VERTICAL_SCROLL_BAR_WIDTH_TRIM;
5425
5426 BLOCK_INPUT;
5427
5428 x_scroll_bar_set_handle (bar, bar->start, bar->end, 1);
5429
5430 /* Switch to scroll bar foreground color. */
5431 if (f->output_data.x->scroll_bar_foreground_pixel != -1)
5432 XSetForeground (FRAME_X_DISPLAY (f), gc,
5433 f->output_data.x->scroll_bar_foreground_pixel);
5434
5435 /* Draw a one-pixel border just inside the edges of the scroll bar. */
5436 XDrawRectangle (FRAME_X_DISPLAY (f), w, gc,
5437
5438 /* x, y, width, height */
5439 0, 0,
5440 bar->width - 1 - width_trim - width_trim,
5441 bar->height - 1);
5442
5443 /* Restore the foreground color of the GC if we changed it above. */
5444 if (f->output_data.x->scroll_bar_foreground_pixel != -1)
5445 XSetForeground (FRAME_X_DISPLAY (f), gc,
5446 FRAME_FOREGROUND_PIXEL (f));
5447
5448 UNBLOCK_INPUT;
5449
5450 }
5451 #endif /* not USE_TOOLKIT_SCROLL_BARS */
5452
5453 /* Handle a mouse click on the scroll bar BAR. If *EMACS_EVENT's kind
5454 is set to something other than NO_EVENT, it is enqueued.
5455
5456 This may be called from a signal handler, so we have to ignore GC
5457 mark bits. */
5458
5459
5460 static void
5461 x_scroll_bar_handle_click (struct scroll_bar *bar, XEvent *event, struct input_event *emacs_event)
5462 {
5463 if (! WINDOWP (bar->window))
5464 abort ();
5465
5466 emacs_event->kind = SCROLL_BAR_CLICK_EVENT;
5467 emacs_event->code = event->xbutton.button - Button1;
5468 emacs_event->modifiers
5469 = (x_x_to_emacs_modifiers (FRAME_X_DISPLAY_INFO
5470 (XFRAME (WINDOW_FRAME (XWINDOW (bar->window)))),
5471 event->xbutton.state)
5472 | (event->type == ButtonRelease
5473 ? up_modifier
5474 : down_modifier));
5475 emacs_event->frame_or_window = bar->window;
5476 emacs_event->arg = Qnil;
5477 emacs_event->timestamp = event->xbutton.time;
5478 {
5479 int top_range
5480 = VERTICAL_SCROLL_BAR_TOP_RANGE (f, bar->height);
5481 int y = event->xbutton.y - VERTICAL_SCROLL_BAR_TOP_BORDER;
5482
5483 if (y < 0) y = 0;
5484 if (y > top_range) y = top_range;
5485
5486 if (y < bar->start)
5487 emacs_event->part = scroll_bar_above_handle;
5488 else if (y < bar->end + VERTICAL_SCROLL_BAR_MIN_HANDLE)
5489 emacs_event->part = scroll_bar_handle;
5490 else
5491 emacs_event->part = scroll_bar_below_handle;
5492
5493 #ifndef USE_TOOLKIT_SCROLL_BARS
5494 /* If the user has released the handle, set it to its final position. */
5495 if (event->type == ButtonRelease
5496 && ! NILP (bar->dragging))
5497 {
5498 int new_start = y - XINT (bar->dragging);
5499 int new_end = new_start + bar->end - bar->start;
5500
5501 x_scroll_bar_set_handle (bar, new_start, new_end, 0);
5502 bar->dragging = Qnil;
5503 }
5504 #endif
5505
5506 XSETINT (emacs_event->x, y);
5507 XSETINT (emacs_event->y, top_range);
5508 }
5509 }
5510
5511 #ifndef USE_TOOLKIT_SCROLL_BARS
5512
5513 /* Handle some mouse motion while someone is dragging the scroll bar.
5514
5515 This may be called from a signal handler, so we have to ignore GC
5516 mark bits. */
5517
5518 static void
5519 x_scroll_bar_note_movement (struct scroll_bar *bar, XEvent *event)
5520 {
5521 FRAME_PTR f = XFRAME (XWINDOW (bar->window)->frame);
5522
5523 last_mouse_movement_time = event->xmotion.time;
5524
5525 f->mouse_moved = 1;
5526 XSETVECTOR (last_mouse_scroll_bar, bar);
5527
5528 /* If we're dragging the bar, display it. */
5529 if (! NILP (bar->dragging))
5530 {
5531 /* Where should the handle be now? */
5532 int new_start = event->xmotion.y - XINT (bar->dragging);
5533
5534 if (new_start != bar->start)
5535 {
5536 int new_end = new_start + bar->end - bar->start;
5537
5538 x_scroll_bar_set_handle (bar, new_start, new_end, 0);
5539 }
5540 }
5541 }
5542
5543 #endif /* !USE_TOOLKIT_SCROLL_BARS */
5544
5545 /* Return information to the user about the current position of the mouse
5546 on the scroll bar. */
5547
5548 static void
5549 x_scroll_bar_report_motion (FRAME_PTR *fp, Lisp_Object *bar_window, enum scroll_bar_part *part, Lisp_Object *x, Lisp_Object *y, long unsigned int *time)
5550 {
5551 struct scroll_bar *bar = XSCROLL_BAR (last_mouse_scroll_bar);
5552 Window w = bar->x_window;
5553 FRAME_PTR f = XFRAME (WINDOW_FRAME (XWINDOW (bar->window)));
5554 int win_x, win_y;
5555 Window dummy_window;
5556 int dummy_coord;
5557 unsigned int dummy_mask;
5558
5559 BLOCK_INPUT;
5560
5561 /* Get the mouse's position relative to the scroll bar window, and
5562 report that. */
5563 if (! XQueryPointer (FRAME_X_DISPLAY (f), w,
5564
5565 /* Root, child, root x and root y. */
5566 &dummy_window, &dummy_window,
5567 &dummy_coord, &dummy_coord,
5568
5569 /* Position relative to scroll bar. */
5570 &win_x, &win_y,
5571
5572 /* Mouse buttons and modifier keys. */
5573 &dummy_mask))
5574 ;
5575 else
5576 {
5577 int top_range
5578 = VERTICAL_SCROLL_BAR_TOP_RANGE (f, bar->height);
5579
5580 win_y -= VERTICAL_SCROLL_BAR_TOP_BORDER;
5581
5582 if (! NILP (bar->dragging))
5583 win_y -= XINT (bar->dragging);
5584
5585 if (win_y < 0)
5586 win_y = 0;
5587 if (win_y > top_range)
5588 win_y = top_range;
5589
5590 *fp = f;
5591 *bar_window = bar->window;
5592
5593 if (! NILP (bar->dragging))
5594 *part = scroll_bar_handle;
5595 else if (win_y < bar->start)
5596 *part = scroll_bar_above_handle;
5597 else if (win_y < bar->end + VERTICAL_SCROLL_BAR_MIN_HANDLE)
5598 *part = scroll_bar_handle;
5599 else
5600 *part = scroll_bar_below_handle;
5601
5602 XSETINT (*x, win_y);
5603 XSETINT (*y, top_range);
5604
5605 f->mouse_moved = 0;
5606 last_mouse_scroll_bar = Qnil;
5607 }
5608
5609 *time = last_mouse_movement_time;
5610
5611 UNBLOCK_INPUT;
5612 }
5613
5614
5615 /* The screen has been cleared so we may have changed foreground or
5616 background colors, and the scroll bars may need to be redrawn.
5617 Clear out the scroll bars, and ask for expose events, so we can
5618 redraw them. */
5619
5620 void
5621 x_scroll_bar_clear (FRAME_PTR f)
5622 {
5623 #ifndef USE_TOOLKIT_SCROLL_BARS
5624 Lisp_Object bar;
5625
5626 /* We can have scroll bars even if this is 0,
5627 if we just turned off scroll bar mode.
5628 But in that case we should not clear them. */
5629 if (FRAME_HAS_VERTICAL_SCROLL_BARS (f))
5630 for (bar = FRAME_SCROLL_BARS (f); VECTORP (bar);
5631 bar = XSCROLL_BAR (bar)->next)
5632 XClearArea (FRAME_X_DISPLAY (f),
5633 XSCROLL_BAR (bar)->x_window,
5634 0, 0, 0, 0, True);
5635 #endif /* not USE_TOOLKIT_SCROLL_BARS */
5636 }
5637
5638 \f
5639 /* The main X event-reading loop - XTread_socket. */
5640
5641 /* This holds the state XLookupString needs to implement dead keys
5642 and other tricks known as "compose processing". _X Window System_
5643 says that a portable program can't use this, but Stephen Gildea assures
5644 me that letting the compiler initialize it to zeros will work okay.
5645
5646 This must be defined outside of XTread_socket, for the same reasons
5647 given for enter_timestamp, above. */
5648
5649 static XComposeStatus compose_status;
5650
5651 /* Record the last 100 characters stored
5652 to help debug the loss-of-chars-during-GC problem. */
5653
5654 static int temp_index;
5655 static short temp_buffer[100];
5656
5657 #define STORE_KEYSYM_FOR_DEBUG(keysym) \
5658 if (temp_index == sizeof temp_buffer / sizeof (short)) \
5659 temp_index = 0; \
5660 temp_buffer[temp_index++] = (keysym)
5661
5662 /* Set this to nonzero to fake an "X I/O error"
5663 on a particular display. */
5664
5665 struct x_display_info *XTread_socket_fake_io_error;
5666
5667 /* When we find no input here, we occasionally do a no-op command
5668 to verify that the X server is still running and we can still talk with it.
5669 We try all the open displays, one by one.
5670 This variable is used for cycling thru the displays. */
5671
5672 static struct x_display_info *next_noop_dpyinfo;
5673
5674 #define SET_SAVED_BUTTON_EVENT \
5675 do \
5676 { \
5677 if (f->output_data.x->saved_menu_event == 0) \
5678 f->output_data.x->saved_menu_event \
5679 = (XEvent *) xmalloc (sizeof (XEvent)); \
5680 *f->output_data.x->saved_menu_event = event; \
5681 inev.ie.kind = MENU_BAR_ACTIVATE_EVENT; \
5682 XSETFRAME (inev.ie.frame_or_window, f); \
5683 } \
5684 while (0)
5685
5686 enum
5687 {
5688 X_EVENT_NORMAL,
5689 X_EVENT_GOTO_OUT,
5690 X_EVENT_DROP
5691 };
5692
5693 /* Filter events for the current X input method.
5694 DPYINFO is the display this event is for.
5695 EVENT is the X event to filter.
5696
5697 Returns non-zero if the event was filtered, caller shall not process
5698 this event further.
5699 Returns zero if event is wasn't filtered. */
5700
5701 #ifdef HAVE_X_I18N
5702 static int
5703 x_filter_event (struct x_display_info *dpyinfo, XEvent *event)
5704 {
5705 /* XFilterEvent returns non-zero if the input method has
5706 consumed the event. We pass the frame's X window to
5707 XFilterEvent because that's the one for which the IC
5708 was created. */
5709
5710 struct frame *f1 = x_any_window_to_frame (dpyinfo,
5711 event->xclient.window);
5712
5713 return XFilterEvent (event, f1 ? FRAME_X_WINDOW (f1) : None);
5714 }
5715 #endif
5716
5717 #ifdef USE_GTK
5718 static int current_count;
5719 static int current_finish;
5720 static struct input_event *current_hold_quit;
5721
5722 /* This is the filter function invoked by the GTK event loop.
5723 It is invoked before the XEvent is translated to a GdkEvent,
5724 so we have a chance to act on the event before GTK. */
5725 static GdkFilterReturn
5726 event_handler_gdk (GdkXEvent *gxev, GdkEvent *ev, gpointer data)
5727 {
5728 XEvent *xev = (XEvent *) gxev;
5729
5730 BLOCK_INPUT;
5731 if (current_count >= 0)
5732 {
5733 struct x_display_info *dpyinfo;
5734
5735 dpyinfo = x_display_info_for_display (xev->xany.display);
5736
5737 #ifdef HAVE_X_I18N
5738 /* Filter events for the current X input method.
5739 GTK calls XFilterEvent but not for key press and release,
5740 so we do it here. */
5741 if ((xev->type == KeyPress || xev->type == KeyRelease)
5742 && dpyinfo
5743 && x_filter_event (dpyinfo, xev))
5744 {
5745 UNBLOCK_INPUT;
5746 return GDK_FILTER_REMOVE;
5747 }
5748 #endif
5749
5750 if (! dpyinfo)
5751 current_finish = X_EVENT_NORMAL;
5752 else
5753 current_count +=
5754 handle_one_xevent (dpyinfo, xev, &current_finish,
5755 current_hold_quit);
5756 }
5757 else
5758 current_finish = x_dispatch_event (xev, xev->xany.display);
5759
5760 UNBLOCK_INPUT;
5761
5762 if (current_finish == X_EVENT_GOTO_OUT || current_finish == X_EVENT_DROP)
5763 return GDK_FILTER_REMOVE;
5764
5765 return GDK_FILTER_CONTINUE;
5766 }
5767 #endif /* USE_GTK */
5768
5769
5770 /* Handles the XEvent EVENT on display DPYINFO.
5771
5772 *FINISH is X_EVENT_GOTO_OUT if caller should stop reading events.
5773 *FINISH is zero if caller should continue reading events.
5774 *FINISH is X_EVENT_DROP if event should not be passed to the toolkit.
5775
5776 We return the number of characters stored into the buffer. */
5777
5778 static int
5779 handle_one_xevent (struct x_display_info *dpyinfo, XEvent *eventp, int *finish, struct input_event *hold_quit)
5780 {
5781 union {
5782 struct input_event ie;
5783 struct selection_input_event sie;
5784 } inev;
5785 int count = 0;
5786 int do_help = 0;
5787 int nbytes = 0;
5788 struct frame *f = NULL;
5789 struct coding_system coding;
5790 XEvent event = *eventp;
5791
5792 *finish = X_EVENT_NORMAL;
5793
5794 EVENT_INIT (inev.ie);
5795 inev.ie.kind = NO_EVENT;
5796 inev.ie.arg = Qnil;
5797
5798 if (pending_event_wait.eventtype == event.type)
5799 pending_event_wait.eventtype = 0; /* Indicates we got it. */
5800
5801 switch (event.type)
5802 {
5803 case ClientMessage:
5804 {
5805 if (event.xclient.message_type
5806 == dpyinfo->Xatom_wm_protocols
5807 && event.xclient.format == 32)
5808 {
5809 if (event.xclient.data.l[0]
5810 == dpyinfo->Xatom_wm_take_focus)
5811 {
5812 /* Use x_any_window_to_frame because this
5813 could be the shell widget window
5814 if the frame has no title bar. */
5815 f = x_any_window_to_frame (dpyinfo, event.xclient.window);
5816 #ifdef HAVE_X_I18N
5817 /* Not quite sure this is needed -pd */
5818 if (f && FRAME_XIC (f))
5819 XSetICFocus (FRAME_XIC (f));
5820 #endif
5821 #if 0 /* Emacs sets WM hints whose `input' field is `true'. This
5822 instructs the WM to set the input focus automatically for
5823 Emacs with a call to XSetInputFocus. Setting WM_TAKE_FOCUS
5824 tells the WM to send us a ClientMessage WM_TAKE_FOCUS after
5825 it has set the focus. So, XSetInputFocus below is not
5826 needed.
5827
5828 The call to XSetInputFocus below has also caused trouble. In
5829 cases where the XSetInputFocus done by the WM and the one
5830 below are temporally close (on a fast machine), the call
5831 below can generate additional FocusIn events which confuse
5832 Emacs. */
5833
5834 /* Since we set WM_TAKE_FOCUS, we must call
5835 XSetInputFocus explicitly. But not if f is null,
5836 since that might be an event for a deleted frame. */
5837 if (f)
5838 {
5839 Display *d = event.xclient.display;
5840 /* Catch and ignore errors, in case window has been
5841 iconified by a window manager such as GWM. */
5842 x_catch_errors (d);
5843 XSetInputFocus (d, event.xclient.window,
5844 /* The ICCCM says this is
5845 the only valid choice. */
5846 RevertToParent,
5847 event.xclient.data.l[1]);
5848 /* This is needed to detect the error
5849 if there is an error. */
5850 XSync (d, False);
5851 x_uncatch_errors ();
5852 }
5853 /* Not certain about handling scroll bars here */
5854 #endif /* 0 */
5855 goto done;
5856 }
5857
5858 if (event.xclient.data.l[0]
5859 == dpyinfo->Xatom_wm_save_yourself)
5860 {
5861 /* Save state modify the WM_COMMAND property to
5862 something which can reinstate us. This notifies
5863 the session manager, who's looking for such a
5864 PropertyNotify. Can restart processing when
5865 a keyboard or mouse event arrives. */
5866 /* If we have a session manager, don't set this.
5867 KDE will then start two Emacsen, one for the
5868 session manager and one for this. */
5869 #ifdef HAVE_X_SM
5870 if (! x_session_have_connection ())
5871 #endif
5872 {
5873 f = x_top_window_to_frame (dpyinfo,
5874 event.xclient.window);
5875 /* This is just so we only give real data once
5876 for a single Emacs process. */
5877 if (f == SELECTED_FRAME ())
5878 XSetCommand (FRAME_X_DISPLAY (f),
5879 event.xclient.window,
5880 initial_argv, initial_argc);
5881 else if (f)
5882 XSetCommand (FRAME_X_DISPLAY (f),
5883 event.xclient.window,
5884 0, 0);
5885 }
5886 goto done;
5887 }
5888
5889 if (event.xclient.data.l[0]
5890 == dpyinfo->Xatom_wm_delete_window)
5891 {
5892 f = x_any_window_to_frame (dpyinfo,
5893 event.xclient.window);
5894 if (!f)
5895 goto OTHER; /* May be a dialog that is to be removed */
5896
5897 inev.ie.kind = DELETE_WINDOW_EVENT;
5898 XSETFRAME (inev.ie.frame_or_window, f);
5899 goto done;
5900 }
5901
5902 goto done;
5903 }
5904
5905 if (event.xclient.message_type
5906 == dpyinfo->Xatom_wm_configure_denied)
5907 {
5908 goto done;
5909 }
5910
5911 if (event.xclient.message_type
5912 == dpyinfo->Xatom_wm_window_moved)
5913 {
5914 int new_x, new_y;
5915 f = x_window_to_frame (dpyinfo, event.xclient.window);
5916
5917 new_x = event.xclient.data.s[0];
5918 new_y = event.xclient.data.s[1];
5919
5920 if (f)
5921 {
5922 f->left_pos = new_x;
5923 f->top_pos = new_y;
5924 }
5925 goto done;
5926 }
5927
5928 #ifdef HACK_EDITRES
5929 if (event.xclient.message_type
5930 == dpyinfo->Xatom_editres)
5931 {
5932 f = x_any_window_to_frame (dpyinfo, event.xclient.window);
5933 if (f)
5934 _XEditResCheckMessages (f->output_data.x->widget, NULL,
5935 &event, NULL);
5936 goto done;
5937 }
5938 #endif /* HACK_EDITRES */
5939
5940 if ((event.xclient.message_type
5941 == dpyinfo->Xatom_DONE)
5942 || (event.xclient.message_type
5943 == dpyinfo->Xatom_PAGE))
5944 {
5945 /* Ghostview job completed. Kill it. We could
5946 reply with "Next" if we received "Page", but we
5947 currently never do because we are interested in
5948 images, only, which should have 1 page. */
5949 Pixmap pixmap = (Pixmap) event.xclient.data.l[1];
5950 f = x_window_to_frame (dpyinfo, event.xclient.window);
5951 if (!f)
5952 goto OTHER;
5953 x_kill_gs_process (pixmap, f);
5954 expose_frame (f, 0, 0, 0, 0);
5955 goto done;
5956 }
5957
5958 #ifdef USE_TOOLKIT_SCROLL_BARS
5959 /* Scroll bar callbacks send a ClientMessage from which
5960 we construct an input_event. */
5961 if (event.xclient.message_type
5962 == dpyinfo->Xatom_Scrollbar)
5963 {
5964 x_scroll_bar_to_input_event (&event, &inev.ie);
5965 *finish = X_EVENT_GOTO_OUT;
5966 goto done;
5967 }
5968 #endif /* USE_TOOLKIT_SCROLL_BARS */
5969
5970 /* XEmbed messages from the embedder (if any). */
5971 if (event.xclient.message_type
5972 == dpyinfo->Xatom_XEMBED)
5973 {
5974 enum xembed_message msg = event.xclient.data.l[1];
5975 if (msg == XEMBED_FOCUS_IN || msg == XEMBED_FOCUS_OUT)
5976 x_detect_focus_change (dpyinfo, &event, &inev.ie);
5977
5978 *finish = X_EVENT_GOTO_OUT;
5979 goto done;
5980 }
5981
5982 xft_settings_event (dpyinfo, &event);
5983
5984 f = x_any_window_to_frame (dpyinfo, event.xclient.window);
5985 if (!f)
5986 goto OTHER;
5987 if (x_handle_dnd_message (f, &event.xclient, dpyinfo, &inev.ie))
5988 *finish = X_EVENT_DROP;
5989 }
5990 break;
5991
5992 case SelectionNotify:
5993 last_user_time = event.xselection.time;
5994 #ifdef USE_X_TOOLKIT
5995 if (! x_window_to_frame (dpyinfo, event.xselection.requestor))
5996 goto OTHER;
5997 #endif /* not USE_X_TOOLKIT */
5998 x_handle_selection_notify (&event.xselection);
5999 break;
6000
6001 case SelectionClear: /* Someone has grabbed ownership. */
6002 last_user_time = event.xselectionclear.time;
6003 #ifdef USE_X_TOOLKIT
6004 if (! x_window_to_frame (dpyinfo, event.xselectionclear.window))
6005 goto OTHER;
6006 #endif /* USE_X_TOOLKIT */
6007 {
6008 XSelectionClearEvent *eventp = (XSelectionClearEvent *) &event;
6009
6010 inev.ie.kind = SELECTION_CLEAR_EVENT;
6011 SELECTION_EVENT_DISPLAY (&inev.sie) = eventp->display;
6012 SELECTION_EVENT_SELECTION (&inev.sie) = eventp->selection;
6013 SELECTION_EVENT_TIME (&inev.sie) = eventp->time;
6014 inev.ie.frame_or_window = Qnil;
6015 }
6016 break;
6017
6018 case SelectionRequest: /* Someone wants our selection. */
6019 last_user_time = event.xselectionrequest.time;
6020 #ifdef USE_X_TOOLKIT
6021 if (!x_window_to_frame (dpyinfo, event.xselectionrequest.owner))
6022 goto OTHER;
6023 #endif /* USE_X_TOOLKIT */
6024 {
6025 XSelectionRequestEvent *eventp
6026 = (XSelectionRequestEvent *) &event;
6027
6028 inev.ie.kind = SELECTION_REQUEST_EVENT;
6029 SELECTION_EVENT_DISPLAY (&inev.sie) = eventp->display;
6030 SELECTION_EVENT_REQUESTOR (&inev.sie) = eventp->requestor;
6031 SELECTION_EVENT_SELECTION (&inev.sie) = eventp->selection;
6032 SELECTION_EVENT_TARGET (&inev.sie) = eventp->target;
6033 SELECTION_EVENT_PROPERTY (&inev.sie) = eventp->property;
6034 SELECTION_EVENT_TIME (&inev.sie) = eventp->time;
6035 inev.ie.frame_or_window = Qnil;
6036 }
6037 break;
6038
6039 case PropertyNotify:
6040 last_user_time = event.xproperty.time;
6041 f = x_top_window_to_frame (dpyinfo, event.xproperty.window);
6042 if (f && event.xproperty.atom == dpyinfo->Xatom_net_wm_state)
6043 x_handle_net_wm_state (f, &event.xproperty);
6044
6045 x_handle_property_notify (&event.xproperty);
6046 xft_settings_event (dpyinfo, &event);
6047 goto OTHER;
6048
6049 case ReparentNotify:
6050 f = x_top_window_to_frame (dpyinfo, event.xreparent.window);
6051 if (f)
6052 {
6053 int x, y;
6054 f->output_data.x->parent_desc = event.xreparent.parent;
6055 x_real_positions (f, &x, &y);
6056 f->left_pos = x;
6057 f->top_pos = y;
6058
6059 /* Perhaps reparented due to a WM restart. Reset this. */
6060 FRAME_X_DISPLAY_INFO (f)->wm_type = X_WMTYPE_UNKNOWN;
6061 FRAME_X_DISPLAY_INFO (f)->net_supported_window = 0;
6062 }
6063 goto OTHER;
6064
6065 case Expose:
6066 f = x_window_to_frame (dpyinfo, event.xexpose.window);
6067 if (f)
6068 {
6069 #ifdef USE_GTK
6070 /* This seems to be needed for GTK 2.6. */
6071 x_clear_area (event.xexpose.display,
6072 event.xexpose.window,
6073 event.xexpose.x, event.xexpose.y,
6074 event.xexpose.width, event.xexpose.height,
6075 FALSE);
6076 #endif
6077 if (f->async_visible == 0)
6078 {
6079 f->async_visible = 1;
6080 f->async_iconified = 0;
6081 f->output_data.x->has_been_visible = 1;
6082 SET_FRAME_GARBAGED (f);
6083 }
6084 else
6085 expose_frame (f,
6086 event.xexpose.x, event.xexpose.y,
6087 event.xexpose.width, event.xexpose.height);
6088 }
6089 else
6090 {
6091 #ifndef USE_TOOLKIT_SCROLL_BARS
6092 struct scroll_bar *bar;
6093 #endif
6094 #if defined USE_LUCID
6095 /* Submenus of the Lucid menu bar aren't widgets
6096 themselves, so there's no way to dispatch events
6097 to them. Recognize this case separately. */
6098 {
6099 Widget widget
6100 = x_window_to_menu_bar (event.xexpose.window);
6101 if (widget)
6102 xlwmenu_redisplay (widget);
6103 }
6104 #endif /* USE_LUCID */
6105
6106 #ifdef USE_TOOLKIT_SCROLL_BARS
6107 /* Dispatch event to the widget. */
6108 goto OTHER;
6109 #else /* not USE_TOOLKIT_SCROLL_BARS */
6110 bar = x_window_to_scroll_bar (event.xexpose.display,
6111 event.xexpose.window);
6112
6113 if (bar)
6114 x_scroll_bar_expose (bar, &event);
6115 #ifdef USE_X_TOOLKIT
6116 else
6117 goto OTHER;
6118 #endif /* USE_X_TOOLKIT */
6119 #endif /* not USE_TOOLKIT_SCROLL_BARS */
6120 }
6121 break;
6122
6123 case GraphicsExpose: /* This occurs when an XCopyArea's
6124 source area was obscured or not
6125 available. */
6126 f = x_window_to_frame (dpyinfo, event.xgraphicsexpose.drawable);
6127 if (f)
6128 {
6129 expose_frame (f,
6130 event.xgraphicsexpose.x, event.xgraphicsexpose.y,
6131 event.xgraphicsexpose.width,
6132 event.xgraphicsexpose.height);
6133 }
6134 #ifdef USE_X_TOOLKIT
6135 else
6136 goto OTHER;
6137 #endif /* USE_X_TOOLKIT */
6138 break;
6139
6140 case NoExpose: /* This occurs when an XCopyArea's
6141 source area was completely
6142 available. */
6143 break;
6144
6145 case UnmapNotify:
6146 /* Redo the mouse-highlight after the tooltip has gone. */
6147 if (event.xmap.window == tip_window)
6148 {
6149 tip_window = 0;
6150 redo_mouse_highlight ();
6151 }
6152
6153 f = x_top_window_to_frame (dpyinfo, event.xunmap.window);
6154 if (f) /* F may no longer exist if
6155 the frame was deleted. */
6156 {
6157 /* While a frame is unmapped, display generation is
6158 disabled; you don't want to spend time updating a
6159 display that won't ever be seen. */
6160 f->async_visible = 0;
6161 /* We can't distinguish, from the event, whether the window
6162 has become iconified or invisible. So assume, if it
6163 was previously visible, than now it is iconified.
6164 But x_make_frame_invisible clears both
6165 the visible flag and the iconified flag;
6166 and that way, we know the window is not iconified now. */
6167 if (FRAME_VISIBLE_P (f) || FRAME_ICONIFIED_P (f))
6168 {
6169 f->async_iconified = 1;
6170
6171 inev.ie.kind = ICONIFY_EVENT;
6172 XSETFRAME (inev.ie.frame_or_window, f);
6173 }
6174 }
6175 goto OTHER;
6176
6177 case MapNotify:
6178 if (event.xmap.window == tip_window)
6179 /* The tooltip has been drawn already. Avoid
6180 the SET_FRAME_GARBAGED below. */
6181 goto OTHER;
6182
6183 /* We use x_top_window_to_frame because map events can
6184 come for sub-windows and they don't mean that the
6185 frame is visible. */
6186 f = x_top_window_to_frame (dpyinfo, event.xmap.window);
6187 if (f)
6188 {
6189 /* wait_reading_process_output will notice this and update
6190 the frame's display structures.
6191 If we where iconified, we should not set garbaged,
6192 because that stops redrawing on Expose events. This looks
6193 bad if we are called from a recursive event loop
6194 (x_dispatch_event), for example when a dialog is up. */
6195 if (! f->async_iconified)
6196 SET_FRAME_GARBAGED (f);
6197
6198 /* Check if fullscreen was specified before we where mapped the
6199 first time, i.e. from the command line. */
6200 if (!f->output_data.x->has_been_visible)
6201 x_check_fullscreen (f);
6202
6203 f->async_visible = 1;
6204 f->async_iconified = 0;
6205 f->output_data.x->has_been_visible = 1;
6206
6207 if (f->iconified)
6208 {
6209 inev.ie.kind = DEICONIFY_EVENT;
6210 XSETFRAME (inev.ie.frame_or_window, f);
6211 }
6212 else if (! NILP (Vframe_list)
6213 && ! NILP (XCDR (Vframe_list)))
6214 /* Force a redisplay sooner or later
6215 to update the frame titles
6216 in case this is the second frame. */
6217 record_asynch_buffer_change ();
6218
6219 #ifdef USE_GTK
6220 xg_frame_resized (f, -1, -1);
6221 #endif
6222 }
6223 goto OTHER;
6224
6225 case KeyPress:
6226
6227 last_user_time = event.xkey.time;
6228 ignore_next_mouse_click_timeout = 0;
6229
6230 #if defined (USE_X_TOOLKIT) || defined (USE_GTK)
6231 /* Dispatch KeyPress events when in menu. */
6232 if (popup_activated ())
6233 goto OTHER;
6234 #endif
6235
6236 f = x_any_window_to_frame (dpyinfo, event.xkey.window);
6237
6238 /* If mouse-highlight is an integer, input clears out
6239 mouse highlighting. */
6240 if (!dpyinfo->mouse_face_hidden && INTEGERP (Vmouse_highlight)
6241 && (f == 0
6242 || !EQ (f->tool_bar_window, dpyinfo->mouse_face_window)))
6243 {
6244 clear_mouse_face (dpyinfo);
6245 dpyinfo->mouse_face_hidden = 1;
6246 }
6247
6248 #if defined USE_MOTIF && defined USE_TOOLKIT_SCROLL_BARS
6249 if (f == 0)
6250 {
6251 /* Scroll bars consume key events, but we want
6252 the keys to go to the scroll bar's frame. */
6253 Widget widget = XtWindowToWidget (dpyinfo->display,
6254 event.xkey.window);
6255 if (widget && XmIsScrollBar (widget))
6256 {
6257 widget = XtParent (widget);
6258 f = x_any_window_to_frame (dpyinfo, XtWindow (widget));
6259 }
6260 }
6261 #endif /* USE_MOTIF and USE_TOOLKIT_SCROLL_BARS */
6262
6263 if (f != 0)
6264 {
6265 KeySym keysym, orig_keysym;
6266 /* al%imercury@uunet.uu.net says that making this 81
6267 instead of 80 fixed a bug whereby meta chars made
6268 his Emacs hang.
6269
6270 It seems that some version of XmbLookupString has
6271 a bug of not returning XBufferOverflow in
6272 status_return even if the input is too long to
6273 fit in 81 bytes. So, we must prepare sufficient
6274 bytes for copy_buffer. 513 bytes (256 chars for
6275 two-byte character set) seems to be a fairly good
6276 approximation. -- 2000.8.10 handa@etl.go.jp */
6277 unsigned char copy_buffer[513];
6278 unsigned char *copy_bufptr = copy_buffer;
6279 int copy_bufsiz = sizeof (copy_buffer);
6280 int modifiers;
6281 Lisp_Object coding_system = Qlatin_1;
6282 Lisp_Object c;
6283
6284 #ifdef USE_GTK
6285 /* Don't pass keys to GTK. A Tab will shift focus to the
6286 tool bar in GTK 2.4. Keys will still go to menus and
6287 dialogs because in that case popup_activated is TRUE
6288 (see above). */
6289 *finish = X_EVENT_DROP;
6290 #endif
6291
6292 event.xkey.state
6293 |= x_emacs_to_x_modifiers (FRAME_X_DISPLAY_INFO (f),
6294 extra_keyboard_modifiers);
6295 modifiers = event.xkey.state;
6296
6297 /* This will have to go some day... */
6298
6299 /* make_lispy_event turns chars into control chars.
6300 Don't do it here because XLookupString is too eager. */
6301 event.xkey.state &= ~ControlMask;
6302 event.xkey.state &= ~(dpyinfo->meta_mod_mask
6303 | dpyinfo->super_mod_mask
6304 | dpyinfo->hyper_mod_mask
6305 | dpyinfo->alt_mod_mask);
6306
6307 /* In case Meta is ComposeCharacter,
6308 clear its status. According to Markus Ehrnsperger
6309 Markus.Ehrnsperger@lehrstuhl-bross.physik.uni-muenchen.de
6310 this enables ComposeCharacter to work whether or
6311 not it is combined with Meta. */
6312 if (modifiers & dpyinfo->meta_mod_mask)
6313 memset (&compose_status, 0, sizeof (compose_status));
6314
6315 #ifdef HAVE_X_I18N
6316 if (FRAME_XIC (f))
6317 {
6318 Status status_return;
6319
6320 coding_system = Vlocale_coding_system;
6321 nbytes = XmbLookupString (FRAME_XIC (f),
6322 &event.xkey, copy_bufptr,
6323 copy_bufsiz, &keysym,
6324 &status_return);
6325 if (status_return == XBufferOverflow)
6326 {
6327 copy_bufsiz = nbytes + 1;
6328 copy_bufptr = (unsigned char *) alloca (copy_bufsiz);
6329 nbytes = XmbLookupString (FRAME_XIC (f),
6330 &event.xkey, copy_bufptr,
6331 copy_bufsiz, &keysym,
6332 &status_return);
6333 }
6334 /* Xutf8LookupString is a new but already deprecated interface. -stef */
6335 if (status_return == XLookupNone)
6336 break;
6337 else if (status_return == XLookupChars)
6338 {
6339 keysym = NoSymbol;
6340 modifiers = 0;
6341 }
6342 else if (status_return != XLookupKeySym
6343 && status_return != XLookupBoth)
6344 abort ();
6345 }
6346 else
6347 nbytes = XLookupString (&event.xkey, copy_bufptr,
6348 copy_bufsiz, &keysym,
6349 &compose_status);
6350 #else
6351 nbytes = XLookupString (&event.xkey, copy_bufptr,
6352 copy_bufsiz, &keysym,
6353 &compose_status);
6354 #endif
6355
6356 /* If not using XIM/XIC, and a compose sequence is in progress,
6357 we break here. Otherwise, chars_matched is always 0. */
6358 if (compose_status.chars_matched > 0 && nbytes == 0)
6359 break;
6360
6361 memset (&compose_status, 0, sizeof (compose_status));
6362 orig_keysym = keysym;
6363
6364 /* Common for all keysym input events. */
6365 XSETFRAME (inev.ie.frame_or_window, f);
6366 inev.ie.modifiers
6367 = x_x_to_emacs_modifiers (FRAME_X_DISPLAY_INFO (f), modifiers);
6368 inev.ie.timestamp = event.xkey.time;
6369
6370 /* First deal with keysyms which have defined
6371 translations to characters. */
6372 if (keysym >= 32 && keysym < 128)
6373 /* Avoid explicitly decoding each ASCII character. */
6374 {
6375 inev.ie.kind = ASCII_KEYSTROKE_EVENT;
6376 inev.ie.code = keysym;
6377 goto done_keysym;
6378 }
6379
6380 /* Keysyms directly mapped to Unicode characters. */
6381 if (keysym >= 0x01000000 && keysym <= 0x0110FFFF)
6382 {
6383 if (keysym < 0x01000080)
6384 inev.ie.kind = ASCII_KEYSTROKE_EVENT;
6385 else
6386 inev.ie.kind = MULTIBYTE_CHAR_KEYSTROKE_EVENT;
6387 inev.ie.code = keysym & 0xFFFFFF;
6388 goto done_keysym;
6389 }
6390
6391 /* Now non-ASCII. */
6392 if (HASH_TABLE_P (Vx_keysym_table)
6393 && (NATNUMP (c = Fgethash (make_number (keysym),
6394 Vx_keysym_table,
6395 Qnil))))
6396 {
6397 inev.ie.kind = (SINGLE_BYTE_CHAR_P (XFASTINT (c))
6398 ? ASCII_KEYSTROKE_EVENT
6399 : MULTIBYTE_CHAR_KEYSTROKE_EVENT);
6400 inev.ie.code = XFASTINT (c);
6401 goto done_keysym;
6402 }
6403
6404 /* Random non-modifier sorts of keysyms. */
6405 if (((keysym >= XK_BackSpace && keysym <= XK_Escape)
6406 || keysym == XK_Delete
6407 #ifdef XK_ISO_Left_Tab
6408 || (keysym >= XK_ISO_Left_Tab
6409 && keysym <= XK_ISO_Enter)
6410 #endif
6411 || IsCursorKey (keysym) /* 0xff50 <= x < 0xff60 */
6412 || IsMiscFunctionKey (keysym) /* 0xff60 <= x < VARIES */
6413 #ifdef HPUX
6414 /* This recognizes the "extended function
6415 keys". It seems there's no cleaner way.
6416 Test IsModifierKey to avoid handling
6417 mode_switch incorrectly. */
6418 || ((unsigned) (keysym) >= XK_Select
6419 && (unsigned)(keysym) < XK_KP_Space)
6420 #endif
6421 #ifdef XK_dead_circumflex
6422 || orig_keysym == XK_dead_circumflex
6423 #endif
6424 #ifdef XK_dead_grave
6425 || orig_keysym == XK_dead_grave
6426 #endif
6427 #ifdef XK_dead_tilde
6428 || orig_keysym == XK_dead_tilde
6429 #endif
6430 #ifdef XK_dead_diaeresis
6431 || orig_keysym == XK_dead_diaeresis
6432 #endif
6433 #ifdef XK_dead_macron
6434 || orig_keysym == XK_dead_macron
6435 #endif
6436 #ifdef XK_dead_degree
6437 || orig_keysym == XK_dead_degree
6438 #endif
6439 #ifdef XK_dead_acute
6440 || orig_keysym == XK_dead_acute
6441 #endif
6442 #ifdef XK_dead_cedilla
6443 || orig_keysym == XK_dead_cedilla
6444 #endif
6445 #ifdef XK_dead_breve
6446 || orig_keysym == XK_dead_breve
6447 #endif
6448 #ifdef XK_dead_ogonek
6449 || orig_keysym == XK_dead_ogonek
6450 #endif
6451 #ifdef XK_dead_caron
6452 || orig_keysym == XK_dead_caron
6453 #endif
6454 #ifdef XK_dead_doubleacute
6455 || orig_keysym == XK_dead_doubleacute
6456 #endif
6457 #ifdef XK_dead_abovedot
6458 || orig_keysym == XK_dead_abovedot
6459 #endif
6460 || IsKeypadKey (keysym) /* 0xff80 <= x < 0xffbe */
6461 || IsFunctionKey (keysym) /* 0xffbe <= x < 0xffe1 */
6462 /* Any "vendor-specific" key is ok. */
6463 || (orig_keysym & (1 << 28))
6464 || (keysym != NoSymbol && nbytes == 0))
6465 && ! (IsModifierKey (orig_keysym)
6466 /* The symbols from XK_ISO_Lock
6467 to XK_ISO_Last_Group_Lock
6468 don't have real modifiers but
6469 should be treated similarly to
6470 Mode_switch by Emacs. */
6471 #if defined XK_ISO_Lock && defined XK_ISO_Last_Group_Lock
6472 || ((unsigned)(orig_keysym)
6473 >= XK_ISO_Lock
6474 && (unsigned)(orig_keysym)
6475 <= XK_ISO_Last_Group_Lock)
6476 #endif
6477 ))
6478 {
6479 STORE_KEYSYM_FOR_DEBUG (keysym);
6480 /* make_lispy_event will convert this to a symbolic
6481 key. */
6482 inev.ie.kind = NON_ASCII_KEYSTROKE_EVENT;
6483 inev.ie.code = keysym;
6484 goto done_keysym;
6485 }
6486
6487 { /* Raw bytes, not keysym. */
6488 register int i;
6489 register int c;
6490 int nchars, len;
6491
6492 for (i = 0, nchars = 0; i < nbytes; i++)
6493 {
6494 if (ASCII_BYTE_P (copy_bufptr[i]))
6495 nchars++;
6496 STORE_KEYSYM_FOR_DEBUG (copy_bufptr[i]);
6497 }
6498
6499 if (nchars < nbytes)
6500 {
6501 /* Decode the input data. */
6502 int require;
6503 unsigned char *p;
6504
6505 /* The input should be decoded with `coding_system'
6506 which depends on which X*LookupString function
6507 we used just above and the locale. */
6508 setup_coding_system (coding_system, &coding);
6509 coding.src_multibyte = 0;
6510 coding.dst_multibyte = 1;
6511 /* The input is converted to events, thus we can't
6512 handle composition. Anyway, there's no XIM that
6513 gives us composition information. */
6514 coding.common_flags &= ~CODING_ANNOTATION_MASK;
6515
6516 require = MAX_MULTIBYTE_LENGTH * nbytes;
6517 coding.destination = alloca (require);
6518 coding.dst_bytes = require;
6519 coding.mode |= CODING_MODE_LAST_BLOCK;
6520 decode_coding_c_string (&coding, copy_bufptr, nbytes, Qnil);
6521 nbytes = coding.produced;
6522 nchars = coding.produced_char;
6523 copy_bufptr = coding.destination;
6524 }
6525
6526 /* Convert the input data to a sequence of
6527 character events. */
6528 for (i = 0; i < nbytes; i += len)
6529 {
6530 if (nchars == nbytes)
6531 c = copy_bufptr[i], len = 1;
6532 else
6533 c = STRING_CHAR_AND_LENGTH (copy_bufptr + i, len);
6534 inev.ie.kind = (SINGLE_BYTE_CHAR_P (c)
6535 ? ASCII_KEYSTROKE_EVENT
6536 : MULTIBYTE_CHAR_KEYSTROKE_EVENT);
6537 inev.ie.code = c;
6538 kbd_buffer_store_event_hold (&inev.ie, hold_quit);
6539 }
6540
6541 count += nchars;
6542
6543 inev.ie.kind = NO_EVENT; /* Already stored above. */
6544
6545 if (keysym == NoSymbol)
6546 break;
6547 }
6548 }
6549 done_keysym:
6550 #ifdef HAVE_X_I18N
6551 /* Don't dispatch this event since XtDispatchEvent calls
6552 XFilterEvent, and two calls in a row may freeze the
6553 client. */
6554 break;
6555 #else
6556 goto OTHER;
6557 #endif
6558
6559 case KeyRelease:
6560 last_user_time = event.xkey.time;
6561 #ifdef HAVE_X_I18N
6562 /* Don't dispatch this event since XtDispatchEvent calls
6563 XFilterEvent, and two calls in a row may freeze the
6564 client. */
6565 break;
6566 #else
6567 goto OTHER;
6568 #endif
6569
6570 case EnterNotify:
6571 last_user_time = event.xcrossing.time;
6572 x_detect_focus_change (dpyinfo, &event, &inev.ie);
6573
6574 f = x_any_window_to_frame (dpyinfo, event.xcrossing.window);
6575
6576 if (f && x_mouse_click_focus_ignore_position)
6577 ignore_next_mouse_click_timeout = event.xmotion.time + 200;
6578
6579 /* EnterNotify counts as mouse movement,
6580 so update things that depend on mouse position. */
6581 if (f && !f->output_data.x->hourglass_p)
6582 note_mouse_movement (f, &event.xmotion);
6583 #ifdef USE_GTK
6584 /* We may get an EnterNotify on the buttons in the toolbar. In that
6585 case we moved out of any highlighted area and need to note this. */
6586 if (!f && last_mouse_glyph_frame)
6587 note_mouse_movement (last_mouse_glyph_frame, &event.xmotion);
6588 #endif
6589 goto OTHER;
6590
6591 case FocusIn:
6592 x_detect_focus_change (dpyinfo, &event, &inev.ie);
6593 goto OTHER;
6594
6595 case LeaveNotify:
6596 last_user_time = event.xcrossing.time;
6597 x_detect_focus_change (dpyinfo, &event, &inev.ie);
6598
6599 f = x_top_window_to_frame (dpyinfo, event.xcrossing.window);
6600 if (f)
6601 {
6602 if (f == dpyinfo->mouse_face_mouse_frame)
6603 {
6604 /* If we move outside the frame, then we're
6605 certainly no longer on any text in the frame. */
6606 clear_mouse_face (dpyinfo);
6607 dpyinfo->mouse_face_mouse_frame = 0;
6608 }
6609
6610 /* Generate a nil HELP_EVENT to cancel a help-echo.
6611 Do it only if there's something to cancel.
6612 Otherwise, the startup message is cleared when
6613 the mouse leaves the frame. */
6614 if (any_help_event_p)
6615 do_help = -1;
6616 }
6617 #ifdef USE_GTK
6618 /* See comment in EnterNotify above */
6619 else if (last_mouse_glyph_frame)
6620 note_mouse_movement (last_mouse_glyph_frame, &event.xmotion);
6621 #endif
6622 goto OTHER;
6623
6624 case FocusOut:
6625 x_detect_focus_change (dpyinfo, &event, &inev.ie);
6626 goto OTHER;
6627
6628 case MotionNotify:
6629 {
6630 last_user_time = event.xmotion.time;
6631 previous_help_echo_string = help_echo_string;
6632 help_echo_string = Qnil;
6633
6634 if (dpyinfo->grabbed && last_mouse_frame
6635 && FRAME_LIVE_P (last_mouse_frame))
6636 f = last_mouse_frame;
6637 else
6638 f = x_window_to_frame (dpyinfo, event.xmotion.window);
6639
6640 if (dpyinfo->mouse_face_hidden)
6641 {
6642 dpyinfo->mouse_face_hidden = 0;
6643 clear_mouse_face (dpyinfo);
6644 }
6645
6646 #ifdef USE_GTK
6647 if (f && xg_event_is_for_scrollbar (f, &event))
6648 f = 0;
6649 #endif
6650 if (f)
6651 {
6652
6653 /* Generate SELECT_WINDOW_EVENTs when needed.
6654 Don't let popup menus influence things (bug#1261). */
6655 if (!NILP (Vmouse_autoselect_window) && !popup_activated ())
6656 {
6657 Lisp_Object window;
6658
6659 window = window_from_coordinates (f,
6660 event.xmotion.x, event.xmotion.y,
6661 0, 0, 0, 0);
6662
6663 /* Window will be selected only when it is not selected now and
6664 last mouse movement event was not in it. Minibuffer window
6665 will be selected only when it is active. */
6666 if (WINDOWP (window)
6667 && !EQ (window, last_window)
6668 && !EQ (window, selected_window)
6669 /* For click-to-focus window managers
6670 create event iff we don't leave the
6671 selected frame. */
6672 && (focus_follows_mouse
6673 || (EQ (XWINDOW (window)->frame,
6674 XWINDOW (selected_window)->frame))))
6675 {
6676 inev.ie.kind = SELECT_WINDOW_EVENT;
6677 inev.ie.frame_or_window = window;
6678 }
6679
6680 last_window=window;
6681 }
6682 if (!note_mouse_movement (f, &event.xmotion))
6683 help_echo_string = previous_help_echo_string;
6684 }
6685 else
6686 {
6687 #ifndef USE_TOOLKIT_SCROLL_BARS
6688 struct scroll_bar *bar
6689 = x_window_to_scroll_bar (event.xmotion.display,
6690 event.xmotion.window);
6691
6692 if (bar)
6693 x_scroll_bar_note_movement (bar, &event);
6694 #endif /* USE_TOOLKIT_SCROLL_BARS */
6695
6696 /* If we move outside the frame, then we're
6697 certainly no longer on any text in the frame. */
6698 clear_mouse_face (dpyinfo);
6699 }
6700
6701 /* If the contents of the global variable help_echo_string
6702 has changed, generate a HELP_EVENT. */
6703 if (!NILP (help_echo_string)
6704 || !NILP (previous_help_echo_string))
6705 do_help = 1;
6706 goto OTHER;
6707 }
6708
6709 case ConfigureNotify:
6710 f = x_top_window_to_frame (dpyinfo, event.xconfigure.window);
6711 #ifdef USE_GTK
6712 if (!f
6713 && (f = x_any_window_to_frame (dpyinfo, event.xconfigure.window))
6714 && event.xconfigure.window == FRAME_X_WINDOW (f))
6715 {
6716 xg_frame_resized (f, event.xconfigure.width,
6717 event.xconfigure.height);
6718 f = 0;
6719 }
6720 #endif
6721 if (f)
6722 {
6723 #ifndef USE_X_TOOLKIT
6724 #ifndef USE_GTK
6725 int rows = FRAME_PIXEL_HEIGHT_TO_TEXT_LINES (f, event.xconfigure.height);
6726 int columns = FRAME_PIXEL_WIDTH_TO_TEXT_COLS (f, event.xconfigure.width);
6727
6728 /* In the toolkit version, change_frame_size
6729 is called by the code that handles resizing
6730 of the EmacsFrame widget. */
6731
6732 /* Even if the number of character rows and columns has
6733 not changed, the font size may have changed, so we need
6734 to check the pixel dimensions as well. */
6735 if (columns != FRAME_COLS (f)
6736 || rows != FRAME_LINES (f)
6737 || event.xconfigure.width != FRAME_PIXEL_WIDTH (f)
6738 || event.xconfigure.height != FRAME_PIXEL_HEIGHT (f))
6739 {
6740 change_frame_size (f, rows, columns, 0, 1, 0);
6741 SET_FRAME_GARBAGED (f);
6742 cancel_mouse_face (f);
6743 }
6744
6745 FRAME_PIXEL_WIDTH (f) = event.xconfigure.width;
6746 FRAME_PIXEL_HEIGHT (f) = event.xconfigure.height;
6747 #endif /* not USE_GTK */
6748 #endif
6749
6750 #ifdef USE_GTK
6751 /* GTK creates windows but doesn't map them.
6752 Only get real positions when mapped. */
6753 if (FRAME_GTK_OUTER_WIDGET (f)
6754 && gtk_widget_get_mapped (FRAME_GTK_OUTER_WIDGET (f)))
6755 #endif
6756 {
6757 x_real_positions (f, &f->left_pos, &f->top_pos);
6758 }
6759
6760 #ifdef HAVE_X_I18N
6761 if (FRAME_XIC (f) && (FRAME_XIC_STYLE (f) & XIMStatusArea))
6762 xic_set_statusarea (f);
6763 #endif
6764
6765 }
6766 goto OTHER;
6767
6768 case ButtonRelease:
6769 case ButtonPress:
6770 {
6771 /* If we decide we want to generate an event to be seen
6772 by the rest of Emacs, we put it here. */
6773 int tool_bar_p = 0;
6774
6775 memset (&compose_status, 0, sizeof (compose_status));
6776 last_mouse_glyph_frame = 0;
6777 last_user_time = event.xbutton.time;
6778
6779 if (dpyinfo->grabbed
6780 && last_mouse_frame
6781 && FRAME_LIVE_P (last_mouse_frame))
6782 f = last_mouse_frame;
6783 else
6784 f = x_window_to_frame (dpyinfo, event.xbutton.window);
6785
6786 #ifdef USE_GTK
6787 if (f && xg_event_is_for_scrollbar (f, &event))
6788 f = 0;
6789 #endif
6790 if (f)
6791 {
6792 /* Is this in the tool-bar? */
6793 if (WINDOWP (f->tool_bar_window)
6794 && WINDOW_TOTAL_LINES (XWINDOW (f->tool_bar_window)))
6795 {
6796 Lisp_Object window;
6797 int x = event.xbutton.x;
6798 int y = event.xbutton.y;
6799
6800 window = window_from_coordinates (f, x, y, 0, 0, 0, 1);
6801 tool_bar_p = EQ (window, f->tool_bar_window);
6802
6803 if (tool_bar_p && event.xbutton.button < 4)
6804 {
6805 handle_tool_bar_click (f, x, y,
6806 event.xbutton.type == ButtonPress,
6807 x_x_to_emacs_modifiers (dpyinfo,
6808 event.xbutton.state));
6809 }
6810 }
6811
6812 if (!tool_bar_p)
6813 #if defined (USE_X_TOOLKIT) || defined (USE_GTK)
6814 if (! popup_activated ())
6815 #endif
6816 {
6817 if (ignore_next_mouse_click_timeout)
6818 {
6819 if (event.type == ButtonPress
6820 && (int)(event.xbutton.time - ignore_next_mouse_click_timeout) > 0)
6821 {
6822 ignore_next_mouse_click_timeout = 0;
6823 construct_mouse_click (&inev.ie, &event.xbutton, f);
6824 }
6825 if (event.type == ButtonRelease)
6826 ignore_next_mouse_click_timeout = 0;
6827 }
6828 else
6829 construct_mouse_click (&inev.ie, &event.xbutton, f);
6830 }
6831 if (FRAME_X_EMBEDDED_P (f))
6832 xembed_send_message (f, event.xbutton.time,
6833 XEMBED_REQUEST_FOCUS, 0, 0, 0);
6834 }
6835 else
6836 {
6837 struct scroll_bar *bar
6838 = x_window_to_scroll_bar (event.xbutton.display,
6839 event.xbutton.window);
6840
6841 #ifdef USE_TOOLKIT_SCROLL_BARS
6842 /* Make the "Ctrl-Mouse-2 splits window" work for toolkit
6843 scroll bars. */
6844 if (bar && event.xbutton.state & ControlMask)
6845 {
6846 x_scroll_bar_handle_click (bar, &event, &inev.ie);
6847 *finish = X_EVENT_DROP;
6848 }
6849 #else /* not USE_TOOLKIT_SCROLL_BARS */
6850 if (bar)
6851 x_scroll_bar_handle_click (bar, &event, &inev.ie);
6852 #endif /* not USE_TOOLKIT_SCROLL_BARS */
6853 }
6854
6855 if (event.type == ButtonPress)
6856 {
6857 dpyinfo->grabbed |= (1 << event.xbutton.button);
6858 last_mouse_frame = f;
6859
6860 if (!tool_bar_p)
6861 last_tool_bar_item = -1;
6862 }
6863 else
6864 dpyinfo->grabbed &= ~(1 << event.xbutton.button);
6865
6866 /* Ignore any mouse motion that happened before this event;
6867 any subsequent mouse-movement Emacs events should reflect
6868 only motion after the ButtonPress/Release. */
6869 if (f != 0)
6870 f->mouse_moved = 0;
6871
6872 #if defined (USE_X_TOOLKIT) || defined (USE_GTK)
6873 f = x_menubar_window_to_frame (dpyinfo, &event);
6874 /* For a down-event in the menu bar,
6875 don't pass it to Xt right now.
6876 Instead, save it away
6877 and we will pass it to Xt from kbd_buffer_get_event.
6878 That way, we can run some Lisp code first. */
6879 if (! popup_activated ()
6880 #ifdef USE_GTK
6881 /* Gtk+ menus only react to the first three buttons. */
6882 && event.xbutton.button < 3
6883 #endif
6884 && f && event.type == ButtonPress
6885 /* Verify the event is really within the menu bar
6886 and not just sent to it due to grabbing. */
6887 && event.xbutton.x >= 0
6888 && event.xbutton.x < FRAME_PIXEL_WIDTH (f)
6889 && event.xbutton.y >= 0
6890 && event.xbutton.y < f->output_data.x->menubar_height
6891 && event.xbutton.same_screen)
6892 {
6893 SET_SAVED_BUTTON_EVENT;
6894 XSETFRAME (last_mouse_press_frame, f);
6895 *finish = X_EVENT_DROP;
6896 }
6897 else if (event.type == ButtonPress)
6898 {
6899 last_mouse_press_frame = Qnil;
6900 goto OTHER;
6901 }
6902 else
6903 goto OTHER;
6904 #endif /* USE_X_TOOLKIT || USE_GTK */
6905 }
6906 break;
6907
6908 case CirculateNotify:
6909 goto OTHER;
6910
6911 case CirculateRequest:
6912 goto OTHER;
6913
6914 case VisibilityNotify:
6915 goto OTHER;
6916
6917 case MappingNotify:
6918 /* Someone has changed the keyboard mapping - update the
6919 local cache. */
6920 switch (event.xmapping.request)
6921 {
6922 case MappingModifier:
6923 x_find_modifier_meanings (dpyinfo);
6924 /* This is meant to fall through. */
6925 case MappingKeyboard:
6926 XRefreshKeyboardMapping (&event.xmapping);
6927 }
6928 goto OTHER;
6929
6930 case DestroyNotify:
6931 xft_settings_event (dpyinfo, &event);
6932 break;
6933
6934 default:
6935 OTHER:
6936 #ifdef USE_X_TOOLKIT
6937 BLOCK_INPUT;
6938 if (*finish != X_EVENT_DROP)
6939 XtDispatchEvent (&event);
6940 UNBLOCK_INPUT;
6941 #endif /* USE_X_TOOLKIT */
6942 break;
6943 }
6944
6945 done:
6946 if (inev.ie.kind != NO_EVENT)
6947 {
6948 kbd_buffer_store_event_hold (&inev.ie, hold_quit);
6949 count++;
6950 }
6951
6952 if (do_help
6953 && !(hold_quit && hold_quit->kind != NO_EVENT))
6954 {
6955 Lisp_Object frame;
6956
6957 if (f)
6958 XSETFRAME (frame, f);
6959 else
6960 frame = Qnil;
6961
6962 if (do_help > 0)
6963 {
6964 any_help_event_p = 1;
6965 gen_help_event (help_echo_string, frame, help_echo_window,
6966 help_echo_object, help_echo_pos);
6967 }
6968 else
6969 {
6970 help_echo_string = Qnil;
6971 gen_help_event (Qnil, frame, Qnil, Qnil, 0);
6972 }
6973 count++;
6974 }
6975
6976 *eventp = event;
6977 return count;
6978 }
6979
6980
6981 /* Handles the XEvent EVENT on display DISPLAY.
6982 This is used for event loops outside the normal event handling,
6983 i.e. looping while a popup menu or a dialog is posted.
6984
6985 Returns the value handle_one_xevent sets in the finish argument. */
6986 int
6987 x_dispatch_event (XEvent *event, Display *display)
6988 {
6989 struct x_display_info *dpyinfo;
6990 int finish = X_EVENT_NORMAL;
6991
6992 dpyinfo = x_display_info_for_display (display);
6993
6994 if (dpyinfo)
6995 handle_one_xevent (dpyinfo, event, &finish, 0);
6996
6997 return finish;
6998 }
6999
7000
7001 /* Read events coming from the X server.
7002 This routine is called by the SIGIO handler.
7003 We return as soon as there are no more events to be read.
7004
7005 We return the number of characters stored into the buffer,
7006 thus pretending to be `read' (except the characters we store
7007 in the keyboard buffer can be multibyte, so are not necessarily
7008 C chars).
7009
7010 EXPECTED is nonzero if the caller knows input is available. */
7011
7012 static int
7013 XTread_socket (struct terminal *terminal, int expected, struct input_event *hold_quit)
7014 {
7015 int count = 0;
7016 XEvent event;
7017 int event_found = 0;
7018
7019 if (interrupt_input_blocked)
7020 {
7021 interrupt_input_pending = 1;
7022 #ifdef SYNC_INPUT
7023 pending_signals = 1;
7024 #endif
7025 return -1;
7026 }
7027
7028 interrupt_input_pending = 0;
7029 #ifdef SYNC_INPUT
7030 pending_signals = pending_atimers;
7031 #endif
7032 BLOCK_INPUT;
7033
7034 /* So people can tell when we have read the available input. */
7035 input_signal_count++;
7036
7037 ++handling_signal;
7038
7039 #ifdef HAVE_X_SM
7040 /* Only check session manager input for the primary display. */
7041 if (terminal->id == 1 && x_session_have_connection ())
7042 {
7043 struct input_event inev;
7044 BLOCK_INPUT;
7045 /* We don't need to EVENT_INIT (inev) here, as
7046 x_session_check_input copies an entire input_event. */
7047 if (x_session_check_input (&inev))
7048 {
7049 kbd_buffer_store_event_hold (&inev, hold_quit);
7050 count++;
7051 }
7052 UNBLOCK_INPUT;
7053 }
7054 #endif
7055
7056 /* For debugging, this gives a way to fake an I/O error. */
7057 if (terminal->display_info.x == XTread_socket_fake_io_error)
7058 {
7059 XTread_socket_fake_io_error = 0;
7060 x_io_error_quitter (terminal->display_info.x->display);
7061 }
7062
7063 #ifndef USE_GTK
7064 while (XPending (terminal->display_info.x->display))
7065 {
7066 int finish;
7067
7068 XNextEvent (terminal->display_info.x->display, &event);
7069
7070 #ifdef HAVE_X_I18N
7071 /* Filter events for the current X input method. */
7072 if (x_filter_event (terminal->display_info.x, &event))
7073 continue;
7074 #endif
7075 event_found = 1;
7076
7077 count += handle_one_xevent (terminal->display_info.x,
7078 &event, &finish, hold_quit);
7079
7080 if (finish == X_EVENT_GOTO_OUT)
7081 goto out;
7082 }
7083
7084 #else /* USE_GTK */
7085
7086 /* For GTK we must use the GTK event loop. But XEvents gets passed
7087 to our filter function above, and then to the big event switch.
7088 We use a bunch of globals to communicate with our filter function,
7089 that is kind of ugly, but it works.
7090
7091 There is no way to do one display at the time, GTK just does events
7092 from all displays. */
7093
7094 while (gtk_events_pending ())
7095 {
7096 current_count = count;
7097 current_hold_quit = hold_quit;
7098
7099 gtk_main_iteration ();
7100
7101 count = current_count;
7102 current_count = -1;
7103 current_hold_quit = 0;
7104
7105 if (current_finish == X_EVENT_GOTO_OUT)
7106 break;
7107 }
7108 #endif /* USE_GTK */
7109
7110 out:;
7111
7112 /* On some systems, an X bug causes Emacs to get no more events
7113 when the window is destroyed. Detect that. (1994.) */
7114 if (! event_found)
7115 {
7116 /* Emacs and the X Server eats up CPU time if XNoOp is done every time.
7117 One XNOOP in 100 loops will make Emacs terminate.
7118 B. Bretthauer, 1994 */
7119 x_noop_count++;
7120 if (x_noop_count >= 100)
7121 {
7122 x_noop_count=0;
7123
7124 if (next_noop_dpyinfo == 0)
7125 next_noop_dpyinfo = x_display_list;
7126
7127 XNoOp (next_noop_dpyinfo->display);
7128
7129 /* Each time we get here, cycle through the displays now open. */
7130 next_noop_dpyinfo = next_noop_dpyinfo->next;
7131 }
7132 }
7133
7134 /* If the focus was just given to an auto-raising frame,
7135 raise it now. */
7136 /* ??? This ought to be able to handle more than one such frame. */
7137 if (pending_autoraise_frame)
7138 {
7139 x_raise_frame (pending_autoraise_frame);
7140 pending_autoraise_frame = 0;
7141 }
7142
7143 --handling_signal;
7144 UNBLOCK_INPUT;
7145
7146 return count;
7147 }
7148
7149
7150
7151 \f
7152 /***********************************************************************
7153 Text Cursor
7154 ***********************************************************************/
7155
7156 /* Set clipping for output in glyph row ROW. W is the window in which
7157 we operate. GC is the graphics context to set clipping in.
7158
7159 ROW may be a text row or, e.g., a mode line. Text rows must be
7160 clipped to the interior of the window dedicated to text display,
7161 mode lines must be clipped to the whole window. */
7162
7163 static void
7164 x_clip_to_row (struct window *w, struct glyph_row *row, int area, GC gc)
7165 {
7166 struct frame *f = XFRAME (WINDOW_FRAME (w));
7167 XRectangle clip_rect;
7168 int window_x, window_y, window_width;
7169
7170 window_box (w, area, &window_x, &window_y, &window_width, 0);
7171
7172 clip_rect.x = window_x;
7173 clip_rect.y = WINDOW_TO_FRAME_PIXEL_Y (w, max (0, row->y));
7174 clip_rect.y = max (clip_rect.y, window_y);
7175 clip_rect.width = window_width;
7176 clip_rect.height = row->visible_height;
7177
7178 XSetClipRectangles (FRAME_X_DISPLAY (f), gc, 0, 0, &clip_rect, 1, Unsorted);
7179 }
7180
7181
7182 /* Draw a hollow box cursor on window W in glyph row ROW. */
7183
7184 static void
7185 x_draw_hollow_cursor (struct window *w, struct glyph_row *row)
7186 {
7187 struct frame *f = XFRAME (WINDOW_FRAME (w));
7188 struct x_display_info *dpyinfo = FRAME_X_DISPLAY_INFO (f);
7189 Display *dpy = FRAME_X_DISPLAY (f);
7190 int x, y, wd, h;
7191 XGCValues xgcv;
7192 struct glyph *cursor_glyph;
7193 GC gc;
7194
7195 /* Get the glyph the cursor is on. If we can't tell because
7196 the current matrix is invalid or such, give up. */
7197 cursor_glyph = get_phys_cursor_glyph (w);
7198 if (cursor_glyph == NULL)
7199 return;
7200
7201 /* Compute frame-relative coordinates for phys cursor. */
7202 get_phys_cursor_geometry (w, row, cursor_glyph, &x, &y, &h);
7203 wd = w->phys_cursor_width;
7204
7205 /* The foreground of cursor_gc is typically the same as the normal
7206 background color, which can cause the cursor box to be invisible. */
7207 xgcv.foreground = f->output_data.x->cursor_pixel;
7208 if (dpyinfo->scratch_cursor_gc)
7209 XChangeGC (dpy, dpyinfo->scratch_cursor_gc, GCForeground, &xgcv);
7210 else
7211 dpyinfo->scratch_cursor_gc = XCreateGC (dpy, FRAME_X_WINDOW (f),
7212 GCForeground, &xgcv);
7213 gc = dpyinfo->scratch_cursor_gc;
7214
7215 /* Set clipping, draw the rectangle, and reset clipping again. */
7216 x_clip_to_row (w, row, TEXT_AREA, gc);
7217 XDrawRectangle (dpy, FRAME_X_WINDOW (f), gc, x, y, wd, h - 1);
7218 XSetClipMask (dpy, gc, None);
7219 }
7220
7221
7222 /* Draw a bar cursor on window W in glyph row ROW.
7223
7224 Implementation note: One would like to draw a bar cursor with an
7225 angle equal to the one given by the font property XA_ITALIC_ANGLE.
7226 Unfortunately, I didn't find a font yet that has this property set.
7227 --gerd. */
7228
7229 static void
7230 x_draw_bar_cursor (struct window *w, struct glyph_row *row, int width, enum text_cursor_kinds kind)
7231 {
7232 struct frame *f = XFRAME (w->frame);
7233 struct glyph *cursor_glyph;
7234
7235 /* If cursor is out of bounds, don't draw garbage. This can happen
7236 in mini-buffer windows when switching between echo area glyphs
7237 and mini-buffer. */
7238 cursor_glyph = get_phys_cursor_glyph (w);
7239 if (cursor_glyph == NULL)
7240 return;
7241
7242 /* If on an image, draw like a normal cursor. That's usually better
7243 visible than drawing a bar, esp. if the image is large so that
7244 the bar might not be in the window. */
7245 if (cursor_glyph->type == IMAGE_GLYPH)
7246 {
7247 struct glyph_row *row;
7248 row = MATRIX_ROW (w->current_matrix, w->phys_cursor.vpos);
7249 draw_phys_cursor_glyph (w, row, DRAW_CURSOR);
7250 }
7251 else
7252 {
7253 Display *dpy = FRAME_X_DISPLAY (f);
7254 Window window = FRAME_X_WINDOW (f);
7255 GC gc = FRAME_X_DISPLAY_INFO (f)->scratch_cursor_gc;
7256 unsigned long mask = GCForeground | GCBackground | GCGraphicsExposures;
7257 struct face *face = FACE_FROM_ID (f, cursor_glyph->face_id);
7258 XGCValues xgcv;
7259
7260 /* If the glyph's background equals the color we normally draw
7261 the bars cursor in, the bar cursor in its normal color is
7262 invisible. Use the glyph's foreground color instead in this
7263 case, on the assumption that the glyph's colors are chosen so
7264 that the glyph is legible. */
7265 if (face->background == f->output_data.x->cursor_pixel)
7266 xgcv.background = xgcv.foreground = face->foreground;
7267 else
7268 xgcv.background = xgcv.foreground = f->output_data.x->cursor_pixel;
7269 xgcv.graphics_exposures = 0;
7270
7271 if (gc)
7272 XChangeGC (dpy, gc, mask, &xgcv);
7273 else
7274 {
7275 gc = XCreateGC (dpy, window, mask, &xgcv);
7276 FRAME_X_DISPLAY_INFO (f)->scratch_cursor_gc = gc;
7277 }
7278
7279 x_clip_to_row (w, row, TEXT_AREA, gc);
7280
7281 if (kind == BAR_CURSOR)
7282 {
7283 int x = WINDOW_TEXT_TO_FRAME_PIXEL_X (w, w->phys_cursor.x);
7284
7285 if (width < 0)
7286 width = FRAME_CURSOR_WIDTH (f);
7287 width = min (cursor_glyph->pixel_width, width);
7288
7289 w->phys_cursor_width = width;
7290
7291 /* If the character under cursor is R2L, draw the bar cursor
7292 on the right of its glyph, rather than on the left. */
7293 if ((cursor_glyph->resolved_level & 1) != 0)
7294 x += cursor_glyph->pixel_width - width;
7295
7296 XFillRectangle (dpy, window, gc, x,
7297 WINDOW_TO_FRAME_PIXEL_Y (w, w->phys_cursor.y),
7298 width, row->height);
7299 }
7300 else
7301 {
7302 int dummy_x, dummy_y, dummy_h;
7303
7304 if (width < 0)
7305 width = row->height;
7306
7307 width = min (row->height, width);
7308
7309 get_phys_cursor_geometry (w, row, cursor_glyph, &dummy_x,
7310 &dummy_y, &dummy_h);
7311
7312 XFillRectangle (dpy, window, gc,
7313 WINDOW_TEXT_TO_FRAME_PIXEL_X (w, w->phys_cursor.x),
7314 WINDOW_TO_FRAME_PIXEL_Y (w, w->phys_cursor.y +
7315 row->height - width),
7316 w->phys_cursor_width, width);
7317 }
7318
7319 XSetClipMask (dpy, gc, None);
7320 }
7321 }
7322
7323
7324 /* RIF: Define cursor CURSOR on frame F. */
7325
7326 static void
7327 x_define_frame_cursor (struct frame *f, Cursor cursor)
7328 {
7329 if (!f->pointer_invisible
7330 && f->output_data.x->current_cursor != cursor)
7331 XDefineCursor (FRAME_X_DISPLAY (f), FRAME_X_WINDOW (f), cursor);
7332 f->output_data.x->current_cursor = cursor;
7333 }
7334
7335
7336 /* RIF: Clear area on frame F. */
7337
7338 static void
7339 x_clear_frame_area (struct frame *f, int x, int y, int width, int height)
7340 {
7341 x_clear_area (FRAME_X_DISPLAY (f), FRAME_X_WINDOW (f),
7342 x, y, width, height, False);
7343 #ifdef USE_GTK
7344 /* Must queue a redraw, because scroll bars might have been cleared. */
7345 if (FRAME_GTK_WIDGET (f))
7346 gtk_widget_queue_draw (FRAME_GTK_WIDGET (f));
7347 #endif
7348 }
7349
7350
7351 /* RIF: Draw cursor on window W. */
7352
7353 static void
7354 x_draw_window_cursor (struct window *w, struct glyph_row *glyph_row, int x, int y, int cursor_type, int cursor_width, int on_p, int active_p)
7355 {
7356 struct frame *f = XFRAME (WINDOW_FRAME (w));
7357
7358 if (on_p)
7359 {
7360 w->phys_cursor_type = cursor_type;
7361 w->phys_cursor_on_p = 1;
7362
7363 if (glyph_row->exact_window_width_line_p
7364 && (glyph_row->reversed_p
7365 ? (w->phys_cursor.hpos < 0)
7366 : (w->phys_cursor.hpos >= glyph_row->used[TEXT_AREA])))
7367 {
7368 glyph_row->cursor_in_fringe_p = 1;
7369 draw_fringe_bitmap (w, glyph_row, glyph_row->reversed_p);
7370 }
7371 else
7372 {
7373 switch (cursor_type)
7374 {
7375 case HOLLOW_BOX_CURSOR:
7376 x_draw_hollow_cursor (w, glyph_row);
7377 break;
7378
7379 case FILLED_BOX_CURSOR:
7380 draw_phys_cursor_glyph (w, glyph_row, DRAW_CURSOR);
7381 break;
7382
7383 case BAR_CURSOR:
7384 x_draw_bar_cursor (w, glyph_row, cursor_width, BAR_CURSOR);
7385 break;
7386
7387 case HBAR_CURSOR:
7388 x_draw_bar_cursor (w, glyph_row, cursor_width, HBAR_CURSOR);
7389 break;
7390
7391 case NO_CURSOR:
7392 w->phys_cursor_width = 0;
7393 break;
7394
7395 default:
7396 abort ();
7397 }
7398 }
7399
7400 #ifdef HAVE_X_I18N
7401 if (w == XWINDOW (f->selected_window))
7402 if (FRAME_XIC (f) && (FRAME_XIC_STYLE (f) & XIMPreeditPosition))
7403 xic_set_preeditarea (w, x, y);
7404 #endif
7405 }
7406
7407 #ifndef XFlush
7408 XFlush (FRAME_X_DISPLAY (f));
7409 #endif
7410 }
7411
7412 \f
7413 /* Icons. */
7414
7415 /* Make the x-window of frame F use the gnu icon bitmap. */
7416
7417 int
7418 x_bitmap_icon (struct frame *f, Lisp_Object file)
7419 {
7420 int bitmap_id;
7421
7422 if (FRAME_X_WINDOW (f) == 0)
7423 return 1;
7424
7425 /* Free up our existing icon bitmap and mask if any. */
7426 if (f->output_data.x->icon_bitmap > 0)
7427 x_destroy_bitmap (f, f->output_data.x->icon_bitmap);
7428 f->output_data.x->icon_bitmap = 0;
7429
7430 if (STRINGP (file))
7431 {
7432 #ifdef USE_GTK
7433 /* Use gtk_window_set_icon_from_file () if available,
7434 It's not restricted to bitmaps */
7435 if (xg_set_icon (f, file))
7436 return 0;
7437 #endif /* USE_GTK */
7438 bitmap_id = x_create_bitmap_from_file (f, file);
7439 x_create_bitmap_mask (f, bitmap_id);
7440 }
7441 else
7442 {
7443 /* Create the GNU bitmap and mask if necessary. */
7444 if (FRAME_X_DISPLAY_INFO (f)->icon_bitmap_id < 0)
7445 {
7446 int rc = -1;
7447
7448 #ifdef USE_GTK
7449
7450 if (xg_set_icon (f, xg_default_icon_file)
7451 || xg_set_icon_from_xpm_data (f, gnu_xpm_bits))
7452 return 0;
7453
7454 #elif defined (HAVE_XPM) && defined (HAVE_X_WINDOWS)
7455
7456 rc = x_create_bitmap_from_xpm_data (f, gnu_xpm_bits);
7457 if (rc != -1)
7458 FRAME_X_DISPLAY_INFO (f)->icon_bitmap_id = rc;
7459
7460 #endif
7461
7462 /* If all else fails, use the (black and white) xbm image. */
7463 if (rc == -1)
7464 {
7465 rc = x_create_bitmap_from_data (f, gnu_xbm_bits,
7466 gnu_xbm_width, gnu_xbm_height);
7467 if (rc == -1)
7468 return 1;
7469
7470 FRAME_X_DISPLAY_INFO (f)->icon_bitmap_id = rc;
7471 x_create_bitmap_mask (f, FRAME_X_DISPLAY_INFO (f)->icon_bitmap_id);
7472 }
7473 }
7474
7475 /* The first time we create the GNU bitmap and mask,
7476 this increments the ref-count one extra time.
7477 As a result, the GNU bitmap and mask are never freed.
7478 That way, we don't have to worry about allocating it again. */
7479 x_reference_bitmap (f, FRAME_X_DISPLAY_INFO (f)->icon_bitmap_id);
7480
7481 bitmap_id = FRAME_X_DISPLAY_INFO (f)->icon_bitmap_id;
7482 }
7483
7484 x_wm_set_icon_pixmap (f, bitmap_id);
7485 f->output_data.x->icon_bitmap = bitmap_id;
7486
7487 return 0;
7488 }
7489
7490
7491 /* Make the x-window of frame F use a rectangle with text.
7492 Use ICON_NAME as the text. */
7493
7494 int
7495 x_text_icon (struct frame *f, const char *icon_name)
7496 {
7497 if (FRAME_X_WINDOW (f) == 0)
7498 return 1;
7499
7500 {
7501 XTextProperty text;
7502 text.value = (unsigned char *) icon_name;
7503 text.encoding = XA_STRING;
7504 text.format = 8;
7505 text.nitems = strlen (icon_name);
7506 XSetWMIconName (FRAME_X_DISPLAY (f), FRAME_OUTER_WINDOW (f), &text);
7507 }
7508
7509 if (f->output_data.x->icon_bitmap > 0)
7510 x_destroy_bitmap (f, f->output_data.x->icon_bitmap);
7511 f->output_data.x->icon_bitmap = 0;
7512 x_wm_set_icon_pixmap (f, 0);
7513
7514 return 0;
7515 }
7516 \f
7517 #define X_ERROR_MESSAGE_SIZE 200
7518
7519 /* If non-nil, this should be a string.
7520 It means catch X errors and store the error message in this string.
7521
7522 The reason we use a stack is that x_catch_error/x_uncatch_error can
7523 be called from a signal handler.
7524 */
7525
7526 struct x_error_message_stack {
7527 char string[X_ERROR_MESSAGE_SIZE];
7528 Display *dpy;
7529 struct x_error_message_stack *prev;
7530 };
7531 static struct x_error_message_stack *x_error_message;
7532
7533 /* An X error handler which stores the error message in
7534 *x_error_message. This is called from x_error_handler if
7535 x_catch_errors is in effect. */
7536
7537 static void
7538 x_error_catcher (Display *display, XErrorEvent *error)
7539 {
7540 XGetErrorText (display, error->error_code,
7541 x_error_message->string,
7542 X_ERROR_MESSAGE_SIZE);
7543 }
7544
7545 /* Begin trapping X errors for display DPY. Actually we trap X errors
7546 for all displays, but DPY should be the display you are actually
7547 operating on.
7548
7549 After calling this function, X protocol errors no longer cause
7550 Emacs to exit; instead, they are recorded in the string
7551 stored in *x_error_message.
7552
7553 Calling x_check_errors signals an Emacs error if an X error has
7554 occurred since the last call to x_catch_errors or x_check_errors.
7555
7556 Calling x_uncatch_errors resumes the normal error handling. */
7557
7558 void x_check_errors (Display *dpy, const char *format);
7559
7560 void
7561 x_catch_errors (Display *dpy)
7562 {
7563 struct x_error_message_stack *data = xmalloc (sizeof (*data));
7564
7565 /* Make sure any errors from previous requests have been dealt with. */
7566 XSync (dpy, False);
7567
7568 data->dpy = dpy;
7569 data->string[0] = 0;
7570 data->prev = x_error_message;
7571 x_error_message = data;
7572 }
7573
7574 /* Undo the last x_catch_errors call.
7575 DPY should be the display that was passed to x_catch_errors. */
7576
7577 void
7578 x_uncatch_errors (void)
7579 {
7580 struct x_error_message_stack *tmp;
7581
7582 BLOCK_INPUT;
7583
7584 /* The display may have been closed before this function is called.
7585 Check if it is still open before calling XSync. */
7586 if (x_display_info_for_display (x_error_message->dpy) != 0)
7587 XSync (x_error_message->dpy, False);
7588
7589 tmp = x_error_message;
7590 x_error_message = x_error_message->prev;
7591 xfree (tmp);
7592 UNBLOCK_INPUT;
7593 }
7594
7595 /* If any X protocol errors have arrived since the last call to
7596 x_catch_errors or x_check_errors, signal an Emacs error using
7597 sprintf (a buffer, FORMAT, the x error message text) as the text. */
7598
7599 void
7600 x_check_errors (Display *dpy, const char *format)
7601 {
7602 /* Make sure to catch any errors incurred so far. */
7603 XSync (dpy, False);
7604
7605 if (x_error_message->string[0])
7606 {
7607 char string[X_ERROR_MESSAGE_SIZE];
7608 memcpy (string, x_error_message->string, X_ERROR_MESSAGE_SIZE);
7609 x_uncatch_errors ();
7610 error (format, string);
7611 }
7612 }
7613
7614 /* Nonzero if we had any X protocol errors
7615 since we did x_catch_errors on DPY. */
7616
7617 int
7618 x_had_errors_p (Display *dpy)
7619 {
7620 /* Make sure to catch any errors incurred so far. */
7621 XSync (dpy, False);
7622
7623 return x_error_message->string[0] != 0;
7624 }
7625
7626 /* Forget about any errors we have had, since we did x_catch_errors on DPY. */
7627
7628 void
7629 x_clear_errors (Display *dpy)
7630 {
7631 x_error_message->string[0] = 0;
7632 }
7633
7634 #if 0 /* See comment in unwind_to_catch why calling this is a bad
7635 * idea. --lorentey */
7636 /* Close off all unclosed x_catch_errors calls. */
7637
7638 void
7639 x_fully_uncatch_errors (void)
7640 {
7641 while (x_error_message)
7642 x_uncatch_errors ();
7643 }
7644 #endif
7645
7646 /* Nonzero if x_catch_errors has been done and not yet canceled. */
7647
7648 int
7649 x_catching_errors (void)
7650 {
7651 return x_error_message != 0;
7652 }
7653
7654 #if 0
7655 static unsigned int x_wire_count;
7656 x_trace_wire (void)
7657 {
7658 fprintf (stderr, "Lib call: %d\n", ++x_wire_count);
7659 }
7660 #endif /* ! 0 */
7661
7662 \f
7663 /* Handle SIGPIPE, which can happen when the connection to a server
7664 simply goes away. SIGPIPE is handled by x_connection_signal.
7665 Don't need to do anything, because the write which caused the
7666 SIGPIPE will fail, causing Xlib to invoke the X IO error handler,
7667 which will do the appropriate cleanup for us. */
7668
7669 static SIGTYPE
7670 x_connection_signal (int signalnum) /* If we don't have an argument, */
7671 /* some compilers complain in signal calls. */
7672 {
7673 #ifdef USG
7674 /* USG systems forget handlers when they are used;
7675 must reestablish each time */
7676 signal (signalnum, x_connection_signal);
7677 #endif /* USG */
7678 }
7679
7680 \f
7681 /************************************************************************
7682 Handling X errors
7683 ************************************************************************/
7684
7685 /* Error message passed to x_connection_closed. */
7686
7687 static char *error_msg;
7688
7689 /* Function installed as fatal_error_signal_hook in
7690 x_connection_closed. Print the X error message, and exit normally,
7691 instead of dumping core when XtCloseDisplay fails. */
7692
7693 static void
7694 x_fatal_error_signal (void)
7695 {
7696 fprintf (stderr, "%s\n", error_msg);
7697 exit (70);
7698 }
7699
7700 /* Handle the loss of connection to display DPY. ERROR_MESSAGE is
7701 the text of an error message that lead to the connection loss. */
7702
7703 static SIGTYPE
7704 x_connection_closed (Display *dpy, const char *error_message)
7705 {
7706 struct x_display_info *dpyinfo = x_display_info_for_display (dpy);
7707 Lisp_Object frame, tail;
7708 int index = SPECPDL_INDEX ();
7709
7710 error_msg = (char *) alloca (strlen (error_message) + 1);
7711 strcpy (error_msg, error_message);
7712 handling_signal = 0;
7713
7714 /* Prevent being called recursively because of an error condition
7715 below. Otherwise, we might end up with printing ``can't find per
7716 display information'' in the recursive call instead of printing
7717 the original message here. */
7718 x_catch_errors (dpy);
7719
7720 /* Inhibit redisplay while frames are being deleted. */
7721 specbind (Qinhibit_redisplay, Qt);
7722
7723 if (dpyinfo)
7724 {
7725 /* Protect display from being closed when we delete the last
7726 frame on it. */
7727 dpyinfo->reference_count++;
7728 dpyinfo->terminal->reference_count++;
7729 }
7730
7731 /* First delete frames whose mini-buffers are on frames
7732 that are on the dead display. */
7733 FOR_EACH_FRAME (tail, frame)
7734 {
7735 Lisp_Object minibuf_frame;
7736 minibuf_frame
7737 = WINDOW_FRAME (XWINDOW (FRAME_MINIBUF_WINDOW (XFRAME (frame))));
7738 if (FRAME_X_P (XFRAME (frame))
7739 && FRAME_X_P (XFRAME (minibuf_frame))
7740 && ! EQ (frame, minibuf_frame)
7741 && FRAME_X_DISPLAY_INFO (XFRAME (minibuf_frame)) == dpyinfo)
7742 delete_frame (frame, Qnoelisp);
7743 }
7744
7745 /* Now delete all remaining frames on the dead display.
7746 We are now sure none of these is used as the mini-buffer
7747 for another frame that we need to delete. */
7748 FOR_EACH_FRAME (tail, frame)
7749 if (FRAME_X_P (XFRAME (frame))
7750 && FRAME_X_DISPLAY_INFO (XFRAME (frame)) == dpyinfo)
7751 {
7752 /* Set this to t so that delete_frame won't get confused
7753 trying to find a replacement. */
7754 FRAME_KBOARD (XFRAME (frame))->Vdefault_minibuffer_frame = Qt;
7755 delete_frame (frame, Qnoelisp);
7756 }
7757
7758 /* If DPYINFO is null, this means we didn't open the display in the
7759 first place, so don't try to close it. */
7760 if (dpyinfo)
7761 {
7762 #ifdef USE_X_TOOLKIT
7763 /* We have to close the display to inform Xt that it doesn't
7764 exist anymore. If we don't, Xt will continue to wait for
7765 events from the display. As a consequence, a sequence of
7766
7767 M-x make-frame-on-display RET :1 RET
7768 ...kill the new frame, so that we get an IO error...
7769 M-x make-frame-on-display RET :1 RET
7770
7771 will indefinitely wait in Xt for events for display `:1',
7772 opened in the first call to make-frame-on-display.
7773
7774 Closing the display is reported to lead to a bus error on
7775 OpenWindows in certain situations. I suspect that is a bug
7776 in OpenWindows. I don't know how to circumvent it here. */
7777 fatal_error_signal_hook = x_fatal_error_signal;
7778 XtCloseDisplay (dpy);
7779 fatal_error_signal_hook = NULL;
7780 #endif /* USE_X_TOOLKIT */
7781
7782 #ifdef USE_GTK
7783 /* A long-standing GTK bug prevents proper disconnect handling
7784 (https://bugzilla.gnome.org/show_bug.cgi?id=85715). Once,
7785 the resulting Glib error message loop filled a user's disk.
7786 To avoid this, kill Emacs unconditionally on disconnect. */
7787 shut_down_emacs (0, 0, Qnil);
7788 fprintf (stderr, "%s\n\
7789 When compiled with GTK, Emacs cannot recover from X disconnects.\n\
7790 This is a GTK bug: https://bugzilla.gnome.org/show_bug.cgi?id=85715\n\
7791 For details, see etc/PROBLEMS.\n",
7792 error_msg);
7793 abort ();
7794 #endif /* USE_GTK */
7795
7796 /* Indicate that this display is dead. */
7797 dpyinfo->display = 0;
7798
7799 dpyinfo->reference_count--;
7800 dpyinfo->terminal->reference_count--;
7801 if (dpyinfo->reference_count != 0)
7802 /* We have just closed all frames on this display. */
7803 abort ();
7804
7805 {
7806 Lisp_Object tmp;
7807 XSETTERMINAL (tmp, dpyinfo->terminal);
7808 Fdelete_terminal (tmp, Qnoelisp);
7809 }
7810 }
7811
7812 x_uncatch_errors ();
7813
7814 if (terminal_list == 0)
7815 {
7816 fprintf (stderr, "%s\n", error_msg);
7817 Fkill_emacs (make_number (70));
7818 /* NOTREACHED */
7819 }
7820
7821 /* Ordinary stack unwind doesn't deal with these. */
7822 #ifdef SIGIO
7823 sigunblock (sigmask (SIGIO));
7824 #endif
7825 sigunblock (sigmask (SIGALRM));
7826 TOTALLY_UNBLOCK_INPUT;
7827
7828 unbind_to (index, Qnil);
7829 clear_waiting_for_input ();
7830 /* Here, we absolutely have to use a non-local exit (e.g. signal, throw,
7831 longjmp), because returning from this function would get us back into
7832 Xlib's code which will directly call `exit'. */
7833 error ("%s", error_msg);
7834 }
7835
7836 /* We specifically use it before defining it, so that gcc doesn't inline it,
7837 otherwise gdb doesn't know how to properly put a breakpoint on it. */
7838 static void x_error_quitter (Display *, XErrorEvent *);
7839
7840 /* This is the first-level handler for X protocol errors.
7841 It calls x_error_quitter or x_error_catcher. */
7842
7843 static int
7844 x_error_handler (Display *display, XErrorEvent *error)
7845 {
7846 if (x_error_message)
7847 x_error_catcher (display, error);
7848 else
7849 x_error_quitter (display, error);
7850 return 0;
7851 }
7852
7853 /* This is the usual handler for X protocol errors.
7854 It kills all frames on the display that we got the error for.
7855 If that was the only one, it prints an error message and kills Emacs. */
7856
7857 /* .gdbinit puts a breakpoint here, so make sure it is not inlined. */
7858
7859 /* On older GCC versions, just putting x_error_quitter
7860 after x_error_handler prevents inlining into the former. */
7861
7862 static void NO_INLINE
7863 x_error_quitter (Display *display, XErrorEvent *error)
7864 {
7865 char buf[256], buf1[356];
7866
7867 /* Ignore BadName errors. They can happen because of fonts
7868 or colors that are not defined. */
7869
7870 if (error->error_code == BadName)
7871 return;
7872
7873 /* Note that there is no real way portable across R3/R4 to get the
7874 original error handler. */
7875
7876 XGetErrorText (display, error->error_code, buf, sizeof (buf));
7877 sprintf (buf1, "X protocol error: %s on protocol request %d",
7878 buf, error->request_code);
7879 x_connection_closed (display, buf1);
7880 }
7881
7882
7883 /* This is the handler for X IO errors, always.
7884 It kills all frames on the display that we lost touch with.
7885 If that was the only one, it prints an error message and kills Emacs. */
7886
7887 static int
7888 x_io_error_quitter (Display *display)
7889 {
7890 char buf[256];
7891
7892 sprintf (buf, "Connection lost to X server `%s'", DisplayString (display));
7893 x_connection_closed (display, buf);
7894 return 0;
7895 }
7896 \f
7897 /* Changing the font of the frame. */
7898
7899 /* Give frame F the font FONT-OBJECT as its default font. The return
7900 value is FONT-OBJECT. FONTSET is an ID of the fontset for the
7901 frame. If it is negative, generate a new fontset from
7902 FONT-OBJECT. */
7903
7904 Lisp_Object
7905 x_new_font (struct frame *f, Lisp_Object font_object, int fontset)
7906 {
7907 struct font *font = XFONT_OBJECT (font_object);
7908
7909 if (fontset < 0)
7910 fontset = fontset_from_font (font_object);
7911 FRAME_FONTSET (f) = fontset;
7912 if (FRAME_FONT (f) == font)
7913 /* This font is already set in frame F. There's nothing more to
7914 do. */
7915 return font_object;
7916
7917 FRAME_FONT (f) = font;
7918 FRAME_BASELINE_OFFSET (f) = font->baseline_offset;
7919 FRAME_COLUMN_WIDTH (f) = font->average_width;
7920 FRAME_SPACE_WIDTH (f) = font->space_width;
7921 FRAME_LINE_HEIGHT (f) = FONT_HEIGHT (font);
7922
7923 compute_fringe_widths (f, 1);
7924
7925 /* Compute the scroll bar width in character columns. */
7926 if (FRAME_CONFIG_SCROLL_BAR_WIDTH (f) > 0)
7927 {
7928 int wid = FRAME_COLUMN_WIDTH (f);
7929 FRAME_CONFIG_SCROLL_BAR_COLS (f)
7930 = (FRAME_CONFIG_SCROLL_BAR_WIDTH (f) + wid-1) / wid;
7931 }
7932 else
7933 {
7934 int wid = FRAME_COLUMN_WIDTH (f);
7935 FRAME_CONFIG_SCROLL_BAR_COLS (f) = (14 + wid - 1) / wid;
7936 }
7937
7938 if (FRAME_X_WINDOW (f) != 0)
7939 {
7940 /* Don't change the size of a tip frame; there's no point in
7941 doing it because it's done in Fx_show_tip, and it leads to
7942 problems because the tip frame has no widget. */
7943 if (NILP (tip_frame) || XFRAME (tip_frame) != f)
7944 x_set_window_size (f, 0, FRAME_COLS (f), FRAME_LINES (f));
7945 }
7946
7947 #ifdef HAVE_X_I18N
7948 if (FRAME_XIC (f)
7949 && (FRAME_XIC_STYLE (f) & (XIMPreeditPosition | XIMStatusArea)))
7950 {
7951 BLOCK_INPUT;
7952 xic_set_xfontset (f, SDATA (fontset_ascii (fontset)));
7953 UNBLOCK_INPUT;
7954 }
7955 #endif
7956
7957 return font_object;
7958 }
7959
7960 \f
7961 /***********************************************************************
7962 X Input Methods
7963 ***********************************************************************/
7964
7965 #ifdef HAVE_X_I18N
7966
7967 #ifdef HAVE_X11R6
7968
7969 /* XIM destroy callback function, which is called whenever the
7970 connection to input method XIM dies. CLIENT_DATA contains a
7971 pointer to the x_display_info structure corresponding to XIM. */
7972
7973 static void
7974 xim_destroy_callback (XIM xim, XPointer client_data, XPointer call_data)
7975 {
7976 struct x_display_info *dpyinfo = (struct x_display_info *) client_data;
7977 Lisp_Object frame, tail;
7978
7979 BLOCK_INPUT;
7980
7981 /* No need to call XDestroyIC.. */
7982 FOR_EACH_FRAME (tail, frame)
7983 {
7984 struct frame *f = XFRAME (frame);
7985 if (FRAME_X_P (f) && FRAME_X_DISPLAY_INFO (f) == dpyinfo)
7986 {
7987 FRAME_XIC (f) = NULL;
7988 xic_free_xfontset (f);
7989 }
7990 }
7991
7992 /* No need to call XCloseIM. */
7993 dpyinfo->xim = NULL;
7994 XFree (dpyinfo->xim_styles);
7995 UNBLOCK_INPUT;
7996 }
7997
7998 #endif /* HAVE_X11R6 */
7999
8000 #ifdef HAVE_X11R6
8001 /* This isn't prototyped in OSF 5.0 or 5.1a. */
8002 extern char *XSetIMValues (XIM, ...);
8003 #endif
8004
8005 /* Open the connection to the XIM server on display DPYINFO.
8006 RESOURCE_NAME is the resource name Emacs uses. */
8007
8008 static void
8009 xim_open_dpy (struct x_display_info *dpyinfo, char *resource_name)
8010 {
8011 XIM xim;
8012
8013 #ifdef HAVE_XIM
8014 if (use_xim)
8015 {
8016 if (dpyinfo->xim)
8017 XCloseIM (dpyinfo->xim);
8018 xim = XOpenIM (dpyinfo->display, dpyinfo->xrdb, resource_name,
8019 emacs_class);
8020 dpyinfo->xim = xim;
8021
8022 if (xim)
8023 {
8024 #ifdef HAVE_X11R6
8025 XIMCallback destroy;
8026 #endif
8027
8028 /* Get supported styles and XIM values. */
8029 XGetIMValues (xim, XNQueryInputStyle, &dpyinfo->xim_styles, NULL);
8030
8031 #ifdef HAVE_X11R6
8032 destroy.callback = xim_destroy_callback;
8033 destroy.client_data = (XPointer)dpyinfo;
8034 XSetIMValues (xim, XNDestroyCallback, &destroy, NULL);
8035 #endif
8036 }
8037 }
8038
8039 else
8040 #endif /* HAVE_XIM */
8041 dpyinfo->xim = NULL;
8042 }
8043
8044
8045 #ifdef HAVE_X11R6_XIM
8046
8047 /* XIM instantiate callback function, which is called whenever an XIM
8048 server is available. DISPLAY is the display of the XIM.
8049 CLIENT_DATA contains a pointer to an xim_inst_t structure created
8050 when the callback was registered. */
8051
8052 static void
8053 xim_instantiate_callback (Display *display, XPointer client_data, XPointer call_data)
8054 {
8055 struct xim_inst_t *xim_inst = (struct xim_inst_t *) client_data;
8056 struct x_display_info *dpyinfo = xim_inst->dpyinfo;
8057
8058 /* We don't support multiple XIM connections. */
8059 if (dpyinfo->xim)
8060 return;
8061
8062 xim_open_dpy (dpyinfo, xim_inst->resource_name);
8063
8064 /* Create XIC for the existing frames on the same display, as long
8065 as they have no XIC. */
8066 if (dpyinfo->xim && dpyinfo->reference_count > 0)
8067 {
8068 Lisp_Object tail, frame;
8069
8070 BLOCK_INPUT;
8071 FOR_EACH_FRAME (tail, frame)
8072 {
8073 struct frame *f = XFRAME (frame);
8074
8075 if (FRAME_X_P (f)
8076 && FRAME_X_DISPLAY_INFO (f) == xim_inst->dpyinfo)
8077 if (FRAME_XIC (f) == NULL)
8078 {
8079 create_frame_xic (f);
8080 if (FRAME_XIC_STYLE (f) & XIMStatusArea)
8081 xic_set_statusarea (f);
8082 if (FRAME_XIC_STYLE (f) & XIMPreeditPosition)
8083 {
8084 struct window *w = XWINDOW (f->selected_window);
8085 xic_set_preeditarea (w, w->cursor.x, w->cursor.y);
8086 }
8087 }
8088 }
8089
8090 UNBLOCK_INPUT;
8091 }
8092 }
8093
8094 #endif /* HAVE_X11R6_XIM */
8095
8096
8097 /* Open a connection to the XIM server on display DPYINFO.
8098 RESOURCE_NAME is the resource name for Emacs. On X11R5, open the
8099 connection only at the first time. On X11R6, open the connection
8100 in the XIM instantiate callback function. */
8101
8102 static void
8103 xim_initialize (struct x_display_info *dpyinfo, char *resource_name)
8104 {
8105 dpyinfo->xim = NULL;
8106 #ifdef HAVE_XIM
8107 if (use_xim)
8108 {
8109 #ifdef HAVE_X11R6_XIM
8110 struct xim_inst_t *xim_inst;
8111 int len;
8112
8113 xim_inst = (struct xim_inst_t *) xmalloc (sizeof (struct xim_inst_t));
8114 dpyinfo->xim_callback_data = xim_inst;
8115 xim_inst->dpyinfo = dpyinfo;
8116 len = strlen (resource_name);
8117 xim_inst->resource_name = (char *) xmalloc (len + 1);
8118 memcpy (xim_inst->resource_name, resource_name, len + 1);
8119 XRegisterIMInstantiateCallback (dpyinfo->display, dpyinfo->xrdb,
8120 resource_name, emacs_class,
8121 xim_instantiate_callback,
8122 /* This is XPointer in XFree86
8123 but (XPointer *) on Tru64, at
8124 least, hence the configure test. */
8125 (XRegisterIMInstantiateCallback_arg6) xim_inst);
8126 #else /* not HAVE_X11R6_XIM */
8127 xim_open_dpy (dpyinfo, resource_name);
8128 #endif /* not HAVE_X11R6_XIM */
8129 }
8130 #endif /* HAVE_XIM */
8131 }
8132
8133
8134 /* Close the connection to the XIM server on display DPYINFO. */
8135
8136 static void
8137 xim_close_dpy (struct x_display_info *dpyinfo)
8138 {
8139 #ifdef HAVE_XIM
8140 if (use_xim)
8141 {
8142 #ifdef HAVE_X11R6_XIM
8143 if (dpyinfo->display)
8144 XUnregisterIMInstantiateCallback (dpyinfo->display, dpyinfo->xrdb,
8145 NULL, emacs_class,
8146 xim_instantiate_callback, NULL);
8147 xfree (dpyinfo->xim_callback_data->resource_name);
8148 xfree (dpyinfo->xim_callback_data);
8149 #endif /* HAVE_X11R6_XIM */
8150 if (dpyinfo->display)
8151 XCloseIM (dpyinfo->xim);
8152 dpyinfo->xim = NULL;
8153 XFree (dpyinfo->xim_styles);
8154 }
8155 #endif /* HAVE_XIM */
8156 }
8157
8158 #endif /* not HAVE_X11R6_XIM */
8159
8160
8161 \f
8162 /* Calculate the absolute position in frame F
8163 from its current recorded position values and gravity. */
8164
8165 void
8166 x_calc_absolute_position (struct frame *f)
8167 {
8168 int flags = f->size_hint_flags;
8169
8170 /* We have nothing to do if the current position
8171 is already for the top-left corner. */
8172 if (! ((flags & XNegative) || (flags & YNegative)))
8173 return;
8174
8175 /* Treat negative positions as relative to the leftmost bottommost
8176 position that fits on the screen. */
8177 if (flags & XNegative)
8178 f->left_pos = x_display_pixel_width (FRAME_X_DISPLAY_INFO (f))
8179 - FRAME_PIXEL_WIDTH (f) + f->left_pos;
8180
8181 {
8182 int height = FRAME_PIXEL_HEIGHT (f);
8183
8184 #if defined USE_X_TOOLKIT && defined USE_MOTIF
8185 /* Something is fishy here. When using Motif, starting Emacs with
8186 `-g -0-0', the frame appears too low by a few pixels.
8187
8188 This seems to be so because initially, while Emacs is starting,
8189 the column widget's height and the frame's pixel height are
8190 different. The column widget's height is the right one. In
8191 later invocations, when Emacs is up, the frame's pixel height
8192 is right, though.
8193
8194 It's not obvious where the initial small difference comes from.
8195 2000-12-01, gerd. */
8196
8197 XtVaGetValues (f->output_data.x->column_widget, XtNheight, &height, NULL);
8198 #endif
8199
8200 if (flags & YNegative)
8201 f->top_pos = x_display_pixel_height (FRAME_X_DISPLAY_INFO (f))
8202 - height + f->top_pos;
8203 }
8204
8205 /* The left_pos and top_pos
8206 are now relative to the top and left screen edges,
8207 so the flags should correspond. */
8208 f->size_hint_flags &= ~ (XNegative | YNegative);
8209 }
8210
8211 /* CHANGE_GRAVITY is 1 when calling from Fset_frame_position,
8212 to really change the position, and 0 when calling from
8213 x_make_frame_visible (in that case, XOFF and YOFF are the current
8214 position values). It is -1 when calling from x_set_frame_parameters,
8215 which means, do adjust for borders but don't change the gravity. */
8216
8217 void
8218 x_set_offset (struct frame *f, register int xoff, register int yoff, int change_gravity)
8219 {
8220 int modified_top, modified_left;
8221
8222 if (change_gravity > 0)
8223 {
8224 FRAME_X_OUTPUT (f)->left_before_move = f->left_pos;
8225 FRAME_X_OUTPUT (f)->top_before_move = f->top_pos;
8226
8227 f->top_pos = yoff;
8228 f->left_pos = xoff;
8229 f->size_hint_flags &= ~ (XNegative | YNegative);
8230 if (xoff < 0)
8231 f->size_hint_flags |= XNegative;
8232 if (yoff < 0)
8233 f->size_hint_flags |= YNegative;
8234 f->win_gravity = NorthWestGravity;
8235 }
8236 x_calc_absolute_position (f);
8237
8238 BLOCK_INPUT;
8239 x_wm_set_size_hint (f, (long) 0, 0);
8240
8241 modified_left = f->left_pos;
8242 modified_top = f->top_pos;
8243
8244 if (change_gravity != 0 && FRAME_X_DISPLAY_INFO (f)->wm_type == X_WMTYPE_A)
8245 {
8246 /* Some WMs (twm, wmaker at least) has an offset that is smaller
8247 than the WM decorations. So we use the calculated offset instead
8248 of the WM decoration sizes here (x/y_pixels_outer_diff). */
8249 modified_left += FRAME_X_OUTPUT (f)->move_offset_left;
8250 modified_top += FRAME_X_OUTPUT (f)->move_offset_top;
8251 }
8252
8253 XMoveWindow (FRAME_X_DISPLAY (f), FRAME_OUTER_WINDOW (f),
8254 modified_left, modified_top);
8255
8256 x_sync_with_move (f, f->left_pos, f->top_pos,
8257 FRAME_X_DISPLAY_INFO (f)->wm_type == X_WMTYPE_UNKNOWN
8258 ? 1 : 0);
8259
8260 /* change_gravity is non-zero when this function is called from Lisp to
8261 programmatically move a frame. In that case, we call
8262 x_check_expected_move to discover if we have a "Type A" or "Type B"
8263 window manager, and, for a "Type A" window manager, adjust the position
8264 of the frame.
8265
8266 We call x_check_expected_move if a programmatic move occurred, and
8267 either the window manager type (A/B) is unknown or it is Type A but we
8268 need to compute the top/left offset adjustment for this frame. */
8269
8270 if (change_gravity != 0 &&
8271 (FRAME_X_DISPLAY_INFO (f)->wm_type == X_WMTYPE_UNKNOWN
8272 || (FRAME_X_DISPLAY_INFO (f)->wm_type == X_WMTYPE_A
8273 && (FRAME_X_OUTPUT (f)->move_offset_left == 0
8274 && FRAME_X_OUTPUT (f)->move_offset_top == 0))))
8275 x_check_expected_move (f, modified_left, modified_top);
8276
8277 UNBLOCK_INPUT;
8278 }
8279
8280 /* Return non-zero if _NET_SUPPORTING_WM_CHECK window exists and _NET_SUPPORTED
8281 on the root window for frame F contains ATOMNAME.
8282 This is how a WM check shall be done according to the Window Manager
8283 Specification/Extended Window Manager Hints at
8284 http://freedesktop.org/wiki/Specifications/wm-spec. */
8285
8286 static int
8287 wm_supports (struct frame *f, const char *atomname)
8288 {
8289 Atom actual_type;
8290 unsigned long actual_size, bytes_remaining;
8291 int i, rc, actual_format;
8292 Atom prop_atom;
8293 Window wmcheck_window;
8294 struct x_display_info *dpyinfo = FRAME_X_DISPLAY_INFO (f);
8295 Window target_window = dpyinfo->root_window;
8296 long max_len = 65536;
8297 Display *dpy = FRAME_X_DISPLAY (f);
8298 unsigned char *tmp_data = NULL;
8299 Atom target_type = XA_WINDOW;
8300 Atom want_atom;
8301
8302 BLOCK_INPUT;
8303
8304 prop_atom = XInternAtom (dpy, "_NET_SUPPORTING_WM_CHECK", False);
8305
8306 x_catch_errors (dpy);
8307 rc = XGetWindowProperty (dpy, target_window,
8308 prop_atom, 0, max_len, False, target_type,
8309 &actual_type, &actual_format, &actual_size,
8310 &bytes_remaining, &tmp_data);
8311
8312 if (rc != Success || actual_type != XA_WINDOW || x_had_errors_p (dpy))
8313 {
8314 if (tmp_data) XFree (tmp_data);
8315 x_uncatch_errors ();
8316 UNBLOCK_INPUT;
8317 return 0;
8318 }
8319
8320 wmcheck_window = *(Window *) tmp_data;
8321 XFree (tmp_data);
8322
8323 /* Check if window exists. */
8324 XSelectInput (dpy, wmcheck_window, StructureNotifyMask);
8325 x_sync (f);
8326 if (x_had_errors_p (dpy))
8327 {
8328 x_uncatch_errors ();
8329 UNBLOCK_INPUT;
8330 return 0;
8331 }
8332
8333 if (dpyinfo->net_supported_window != wmcheck_window)
8334 {
8335 /* Window changed, reload atoms */
8336 if (dpyinfo->net_supported_atoms != NULL)
8337 XFree (dpyinfo->net_supported_atoms);
8338 dpyinfo->net_supported_atoms = NULL;
8339 dpyinfo->nr_net_supported_atoms = 0;
8340 dpyinfo->net_supported_window = 0;
8341
8342 target_type = XA_ATOM;
8343 prop_atom = XInternAtom (dpy, "_NET_SUPPORTED", False);
8344 tmp_data = NULL;
8345 rc = XGetWindowProperty (dpy, target_window,
8346 prop_atom, 0, max_len, False, target_type,
8347 &actual_type, &actual_format, &actual_size,
8348 &bytes_remaining, &tmp_data);
8349
8350 if (rc != Success || actual_type != XA_ATOM || x_had_errors_p (dpy))
8351 {
8352 if (tmp_data) XFree (tmp_data);
8353 x_uncatch_errors ();
8354 UNBLOCK_INPUT;
8355 return 0;
8356 }
8357
8358 dpyinfo->net_supported_atoms = (Atom *)tmp_data;
8359 dpyinfo->nr_net_supported_atoms = actual_size;
8360 dpyinfo->net_supported_window = wmcheck_window;
8361 }
8362
8363 rc = 0;
8364 want_atom = XInternAtom (dpy, atomname, False);
8365
8366 for (i = 0; rc == 0 && i < dpyinfo->nr_net_supported_atoms; ++i)
8367 rc = dpyinfo->net_supported_atoms[i] == want_atom;
8368
8369 x_uncatch_errors ();
8370 UNBLOCK_INPUT;
8371
8372 return rc;
8373 }
8374
8375 static void
8376 set_wm_state (Lisp_Object frame, int add, const char *what, const char *what2)
8377 {
8378 const char *atom = "_NET_WM_STATE";
8379 Fx_send_client_event (frame, make_number (0), frame,
8380 make_unibyte_string (atom, strlen (atom)),
8381 make_number (32),
8382 /* 1 = add, 0 = remove */
8383 Fcons
8384 (make_number (add ? 1 : 0),
8385 Fcons
8386 (make_unibyte_string (what, strlen (what)),
8387 what2 != 0
8388 ? Fcons (make_unibyte_string (what2, strlen (what2)),
8389 Qnil)
8390 : Qnil)));
8391 }
8392
8393 void
8394 x_set_sticky (struct frame *f, Lisp_Object new_value, Lisp_Object old_value)
8395 {
8396 Lisp_Object frame;
8397
8398 XSETFRAME (frame, f);
8399 set_wm_state (frame, NILP (new_value) ? 0 : 1,
8400 "_NET_WM_STATE_STICKY", NULL);
8401 }
8402
8403 /* Return the current _NET_WM_STATE.
8404 SIZE_STATE is set to one of the FULLSCREEN_* values.
8405 STICKY is set to 1 if the sticky state is set, 0 if not. */
8406
8407 static void
8408 get_current_vm_state (struct frame *f,
8409 Window window,
8410 int *size_state,
8411 int *sticky)
8412 {
8413 Atom actual_type;
8414 unsigned long actual_size, bytes_remaining;
8415 int i, rc, actual_format;
8416 struct x_display_info *dpyinfo = FRAME_X_DISPLAY_INFO (f);
8417 long max_len = 65536;
8418 Display *dpy = FRAME_X_DISPLAY (f);
8419 unsigned char *tmp_data = NULL;
8420 Atom target_type = XA_ATOM;
8421
8422 *sticky = 0;
8423 *size_state = FULLSCREEN_NONE;
8424
8425 BLOCK_INPUT;
8426 x_catch_errors (dpy);
8427 rc = XGetWindowProperty (dpy, window, dpyinfo->Xatom_net_wm_state,
8428 0, max_len, False, target_type,
8429 &actual_type, &actual_format, &actual_size,
8430 &bytes_remaining, &tmp_data);
8431
8432 if (rc != Success || actual_type != target_type || x_had_errors_p (dpy))
8433 {
8434 if (tmp_data) XFree (tmp_data);
8435 x_uncatch_errors ();
8436 UNBLOCK_INPUT;
8437 return;
8438 }
8439
8440 x_uncatch_errors ();
8441
8442 for (i = 0; i < actual_size; ++i)
8443 {
8444 Atom a = ((Atom*)tmp_data)[i];
8445 if (a == dpyinfo->Xatom_net_wm_state_maximized_horz)
8446 {
8447 if (*size_state == FULLSCREEN_HEIGHT)
8448 *size_state = FULLSCREEN_MAXIMIZED;
8449 else
8450 *size_state = FULLSCREEN_WIDTH;
8451 }
8452 else if (a == dpyinfo->Xatom_net_wm_state_maximized_vert)
8453 {
8454 if (*size_state == FULLSCREEN_WIDTH)
8455 *size_state = FULLSCREEN_MAXIMIZED;
8456 else
8457 *size_state = FULLSCREEN_HEIGHT;
8458 }
8459 else if (a == dpyinfo->Xatom_net_wm_state_fullscreen_atom)
8460 *size_state = FULLSCREEN_BOTH;
8461 else if (a == dpyinfo->Xatom_net_wm_state_sticky)
8462 *sticky = 1;
8463 }
8464
8465 if (tmp_data) XFree (tmp_data);
8466 UNBLOCK_INPUT;
8467 }
8468
8469 /* Do fullscreen as specified in extended window manager hints */
8470
8471 static int
8472 do_ewmh_fullscreen (struct frame *f)
8473 {
8474 int have_net_atom = wm_supports (f, "_NET_WM_STATE");
8475 Lisp_Object lval = get_frame_param (f, Qfullscreen);
8476 int cur, dummy;
8477
8478 get_current_vm_state (f, FRAME_OUTER_WINDOW (f), &cur, &dummy);
8479
8480 /* Some window managers don't say they support _NET_WM_STATE, but they do say
8481 they support _NET_WM_STATE_FULLSCREEN. Try that also. */
8482 if (!have_net_atom)
8483 have_net_atom = wm_supports (f, "_NET_WM_STATE_FULLSCREEN");
8484
8485 if (have_net_atom && cur != f->want_fullscreen)
8486 {
8487 Lisp_Object frame;
8488 const char *fs = "_NET_WM_STATE_FULLSCREEN";
8489 const char *fw = "_NET_WM_STATE_MAXIMIZED_HORZ";
8490 const char *fh = "_NET_WM_STATE_MAXIMIZED_VERT";
8491
8492 XSETFRAME (frame, f);
8493
8494 /* Keep number of calls to set_wm_state as low as possible.
8495 Some window managers, or possible Gtk+, hangs when too many
8496 are sent at once. */
8497 switch (f->want_fullscreen)
8498 {
8499 case FULLSCREEN_BOTH:
8500 if (cur == FULLSCREEN_WIDTH || cur == FULLSCREEN_MAXIMIZED
8501 || cur == FULLSCREEN_HEIGHT)
8502 set_wm_state (frame, 0, fw, fh);
8503 set_wm_state (frame, 1, fs, NULL);
8504 break;
8505 case FULLSCREEN_WIDTH:
8506 if (cur == FULLSCREEN_BOTH || cur == FULLSCREEN_HEIGHT
8507 || cur == FULLSCREEN_MAXIMIZED)
8508 set_wm_state (frame, 0, fs, fh);
8509 if (cur != FULLSCREEN_MAXIMIZED)
8510 set_wm_state (frame, 1, fw, NULL);
8511 break;
8512 case FULLSCREEN_HEIGHT:
8513 if (cur == FULLSCREEN_BOTH || cur == FULLSCREEN_WIDTH
8514 || cur == FULLSCREEN_MAXIMIZED)
8515 set_wm_state (frame, 0, fs, fw);
8516 if (cur != FULLSCREEN_MAXIMIZED)
8517 set_wm_state (frame, 1, fh, NULL);
8518 break;
8519 case FULLSCREEN_MAXIMIZED:
8520 if (cur == FULLSCREEN_BOTH)
8521 set_wm_state (frame, 0, fs, NULL);
8522 set_wm_state (frame, 1, fw, fh);
8523 break;
8524 case FULLSCREEN_NONE:
8525 if (cur == FULLSCREEN_BOTH)
8526 set_wm_state (frame, 0, fs, NULL);
8527 else
8528 set_wm_state (frame, 0, fw, fh);
8529 }
8530
8531 f->want_fullscreen = FULLSCREEN_NONE;
8532
8533 }
8534
8535 return have_net_atom;
8536 }
8537
8538 static void
8539 XTfullscreen_hook (FRAME_PTR f)
8540 {
8541 if (f->async_visible)
8542 {
8543 BLOCK_INPUT;
8544 x_check_fullscreen (f);
8545 x_sync (f);
8546 UNBLOCK_INPUT;
8547 }
8548 }
8549
8550
8551 static void
8552 x_handle_net_wm_state (struct frame *f, XPropertyEvent *event)
8553 {
8554 int value = FULLSCREEN_NONE;
8555 Lisp_Object lval;
8556 int sticky = 0;
8557
8558 get_current_vm_state (f, event->window, &value, &sticky);
8559 lval = Qnil;
8560 switch (value)
8561 {
8562 case FULLSCREEN_WIDTH:
8563 lval = Qfullwidth;
8564 break;
8565 case FULLSCREEN_HEIGHT:
8566 lval = Qfullheight;
8567 break;
8568 case FULLSCREEN_BOTH:
8569 lval = Qfullboth;
8570 break;
8571 case FULLSCREEN_MAXIMIZED:
8572 lval = Qmaximized;
8573 break;
8574 }
8575
8576 store_frame_param (f, Qfullscreen, lval);
8577 store_frame_param (f, Qsticky, sticky ? Qt : Qnil);
8578 }
8579
8580 /* Check if we need to resize the frame due to a fullscreen request.
8581 If so needed, resize the frame. */
8582 static void
8583 x_check_fullscreen (struct frame *f)
8584 {
8585 if (do_ewmh_fullscreen (f))
8586 return;
8587
8588 if (f->output_data.x->parent_desc != FRAME_X_DISPLAY_INFO (f)->root_window)
8589 return; /* Only fullscreen without WM or with EWM hints (above). */
8590
8591 if (f->want_fullscreen != FULLSCREEN_NONE)
8592 {
8593 int width = FRAME_COLS (f), height = FRAME_LINES (f);
8594 struct x_display_info *dpyinfo = FRAME_X_DISPLAY_INFO (f);
8595
8596 switch (f->want_fullscreen)
8597 {
8598 /* No difference between these two when there is no WM */
8599 case FULLSCREEN_BOTH:
8600 case FULLSCREEN_MAXIMIZED:
8601 width = x_display_pixel_width (dpyinfo);
8602 height = x_display_pixel_height (dpyinfo);
8603 break;
8604 case FULLSCREEN_WIDTH:
8605 width = x_display_pixel_width (dpyinfo);
8606 break;
8607 case FULLSCREEN_HEIGHT:
8608 height = x_display_pixel_height (dpyinfo);
8609 }
8610
8611 if (FRAME_COLS (f) != width || FRAME_LINES (f) != height)
8612 {
8613 change_frame_size (f, height, width, 0, 1, 0);
8614 SET_FRAME_GARBAGED (f);
8615 cancel_mouse_face (f);
8616 }
8617 }
8618 }
8619
8620 /* This function is called by x_set_offset to determine whether the window
8621 manager interfered with the positioning of the frame. Type A window
8622 managers position the surrounding window manager decorations a small
8623 amount above and left of the user-supplied position. Type B window
8624 managers position the surrounding window manager decorations at the
8625 user-specified position. If we detect a Type A window manager, we
8626 compensate by moving the window right and down by the proper amount. */
8627
8628 static void
8629 x_check_expected_move (struct frame *f, int expected_left, int expected_top)
8630 {
8631 int current_left = 0, current_top = 0;
8632
8633 /* x_real_positions returns the left and top offsets of the outermost
8634 window manager window around the frame. */
8635
8636 x_real_positions (f, &current_left, &current_top);
8637
8638 if (current_left != expected_left || current_top != expected_top)
8639 {
8640 /* It's a "Type A" window manager. */
8641
8642 int adjusted_left;
8643 int adjusted_top;
8644
8645 FRAME_X_DISPLAY_INFO (f)->wm_type = X_WMTYPE_A;
8646 FRAME_X_OUTPUT (f)->move_offset_left = expected_left - current_left;
8647 FRAME_X_OUTPUT (f)->move_offset_top = expected_top - current_top;
8648
8649 /* Now fix the mispositioned frame's location. */
8650
8651 adjusted_left = expected_left + FRAME_X_OUTPUT (f)->move_offset_left;
8652 adjusted_top = expected_top + FRAME_X_OUTPUT (f)->move_offset_top;
8653
8654 XMoveWindow (FRAME_X_DISPLAY (f), FRAME_OUTER_WINDOW (f),
8655 adjusted_left, adjusted_top);
8656
8657 x_sync_with_move (f, expected_left, expected_top, 0);
8658 }
8659 else
8660 /* It's a "Type B" window manager. We don't have to adjust the
8661 frame's position. */
8662
8663 FRAME_X_DISPLAY_INFO (f)->wm_type = X_WMTYPE_B;
8664 }
8665
8666
8667 /* Wait for XGetGeometry to return up-to-date position information for a
8668 recently-moved frame. Call this immediately after calling XMoveWindow.
8669 If FUZZY is non-zero, then LEFT and TOP are just estimates of where the
8670 frame has been moved to, so we use a fuzzy position comparison instead
8671 of an exact comparison. */
8672
8673 static void
8674 x_sync_with_move (struct frame *f, int left, int top, int fuzzy)
8675 {
8676 int count = 0;
8677
8678 while (count++ < 50)
8679 {
8680 int current_left = 0, current_top = 0;
8681
8682 /* In theory, this call to XSync only needs to happen once, but in
8683 practice, it doesn't seem to work, hence the need for the surrounding
8684 loop. */
8685
8686 XSync (FRAME_X_DISPLAY (f), False);
8687 x_real_positions (f, &current_left, &current_top);
8688
8689 if (fuzzy)
8690 {
8691 /* The left fuzz-factor is 10 pixels. The top fuzz-factor is 40
8692 pixels. */
8693
8694 if (eabs (current_left - left) <= 10
8695 && eabs (current_top - top) <= 40)
8696 return;
8697 }
8698 else if (current_left == left && current_top == top)
8699 return;
8700 }
8701
8702 /* As a last resort, just wait 0.5 seconds and hope that XGetGeometry
8703 will then return up-to-date position info. */
8704
8705 wait_reading_process_output (0, 500000, 0, 0, Qnil, NULL, 0);
8706 }
8707
8708
8709 /* Wait for an event on frame F matching EVENTTYPE. */
8710 void
8711 x_wait_for_event (struct frame *f, int eventtype)
8712 {
8713 int level = interrupt_input_blocked;
8714
8715 SELECT_TYPE fds;
8716 EMACS_TIME tmo, tmo_at, time_now;
8717 int fd = ConnectionNumber (FRAME_X_DISPLAY (f));
8718
8719 pending_event_wait.f = f;
8720 pending_event_wait.eventtype = eventtype;
8721
8722 /* Set timeout to 0.1 second. Hopefully not noticable.
8723 Maybe it should be configurable. */
8724 EMACS_SET_SECS_USECS (tmo, 0, 100000);
8725 EMACS_GET_TIME (tmo_at);
8726 EMACS_ADD_TIME (tmo_at, tmo_at, tmo);
8727
8728 while (pending_event_wait.eventtype)
8729 {
8730 interrupt_input_pending = 1;
8731 TOTALLY_UNBLOCK_INPUT;
8732 /* XTread_socket is called after unblock. */
8733 BLOCK_INPUT;
8734 interrupt_input_blocked = level;
8735
8736 FD_ZERO (&fds);
8737 FD_SET (fd, &fds);
8738
8739 EMACS_GET_TIME (time_now);
8740 EMACS_SUB_TIME (tmo, tmo_at, time_now);
8741
8742 if (EMACS_TIME_NEG_P (tmo) || select (fd+1, &fds, NULL, NULL, &tmo) == 0)
8743 break; /* Timeout */
8744 }
8745 pending_event_wait.f = 0;
8746 pending_event_wait.eventtype = 0;
8747 }
8748
8749
8750 /* Change the size of frame F's X window to COLS/ROWS in the case F
8751 doesn't have a widget. If CHANGE_GRAVITY is 1, we change to
8752 top-left-corner window gravity for this size change and subsequent
8753 size changes. Otherwise we leave the window gravity unchanged. */
8754
8755 static void
8756 x_set_window_size_1 (struct frame *f, int change_gravity, int cols, int rows)
8757 {
8758 int pixelwidth, pixelheight;
8759
8760 check_frame_size (f, &rows, &cols);
8761 f->scroll_bar_actual_width
8762 = (!FRAME_HAS_VERTICAL_SCROLL_BARS (f)
8763 ? 0
8764 : FRAME_CONFIG_SCROLL_BAR_COLS (f) * FRAME_COLUMN_WIDTH (f));
8765
8766 compute_fringe_widths (f, 0);
8767
8768 pixelwidth = FRAME_TEXT_COLS_TO_PIXEL_WIDTH (f, cols)
8769 + FRAME_TOOLBAR_WIDTH (f);
8770 pixelheight = FRAME_TEXT_LINES_TO_PIXEL_HEIGHT (f, rows)
8771 + FRAME_MENUBAR_HEIGHT (f) + FRAME_TOOLBAR_HEIGHT (f);
8772
8773 if (change_gravity) f->win_gravity = NorthWestGravity;
8774 x_wm_set_size_hint (f, (long) 0, 0);
8775 XResizeWindow (FRAME_X_DISPLAY (f), FRAME_OUTER_WINDOW (f),
8776 pixelwidth, pixelheight);
8777
8778
8779 /* We've set {FRAME,PIXEL}_{WIDTH,HEIGHT} to the values we hope to
8780 receive in the ConfigureNotify event; if we get what we asked
8781 for, then the event won't cause the screen to become garbaged, so
8782 we have to make sure to do it here. */
8783 SET_FRAME_GARBAGED (f);
8784
8785 /* Now, strictly speaking, we can't be sure that this is accurate,
8786 but the window manager will get around to dealing with the size
8787 change request eventually, and we'll hear how it went when the
8788 ConfigureNotify event gets here.
8789
8790 We could just not bother storing any of this information here,
8791 and let the ConfigureNotify event set everything up, but that
8792 might be kind of confusing to the Lisp code, since size changes
8793 wouldn't be reported in the frame parameters until some random
8794 point in the future when the ConfigureNotify event arrives.
8795
8796 We pass 1 for DELAY since we can't run Lisp code inside of
8797 a BLOCK_INPUT. */
8798
8799 /* But the ConfigureNotify may in fact never arrive, and then this is
8800 not right if the frame is visible. Instead wait (with timeout)
8801 for the ConfigureNotify. */
8802 if (f->async_visible)
8803 x_wait_for_event (f, ConfigureNotify);
8804 else
8805 {
8806 change_frame_size (f, rows, cols, 0, 1, 0);
8807 FRAME_PIXEL_WIDTH (f) = pixelwidth;
8808 FRAME_PIXEL_HEIGHT (f) = pixelheight;
8809 x_sync (f);
8810 }
8811 }
8812
8813
8814 /* Call this to change the size of frame F's x-window.
8815 If CHANGE_GRAVITY is 1, we change to top-left-corner window gravity
8816 for this size change and subsequent size changes.
8817 Otherwise we leave the window gravity unchanged. */
8818
8819 void
8820 x_set_window_size (struct frame *f, int change_gravity, int cols, int rows)
8821 {
8822 BLOCK_INPUT;
8823
8824 if (NILP (tip_frame) || XFRAME (tip_frame) != f)
8825 {
8826 int r, c;
8827
8828 /* When the frame is maximized/fullscreen or running under for
8829 example Xmonad, x_set_window_size_1 will be a no-op.
8830 In that case, the right thing to do is extend rows/cols to
8831 the current frame size. We do that first if x_set_window_size_1
8832 turns out to not be a no-op (there is no way to know).
8833 The size will be adjusted again if the frame gets a
8834 ConfigureNotify event as a result of x_set_window_size. */
8835 int pixelh = FRAME_PIXEL_HEIGHT (f);
8836 #ifdef USE_X_TOOLKIT
8837 /* The menu bar is not part of text lines. The tool bar
8838 is however. */
8839 pixelh -= FRAME_MENUBAR_HEIGHT (f);
8840 #endif
8841 r = FRAME_PIXEL_HEIGHT_TO_TEXT_LINES (f, pixelh);
8842 /* Update f->scroll_bar_actual_width because it is used in
8843 FRAME_PIXEL_WIDTH_TO_TEXT_COLS. */
8844 f->scroll_bar_actual_width
8845 = FRAME_SCROLL_BAR_COLS (f) * FRAME_COLUMN_WIDTH (f);
8846 c = FRAME_PIXEL_WIDTH_TO_TEXT_COLS (f, FRAME_PIXEL_WIDTH (f));
8847 change_frame_size (f, r, c, 0, 1, 0);
8848 }
8849
8850 #ifdef USE_GTK
8851 if (FRAME_GTK_WIDGET (f))
8852 xg_frame_set_char_size (f, cols, rows);
8853 else
8854 x_set_window_size_1 (f, change_gravity, cols, rows);
8855 #else /* not USE_GTK */
8856
8857 x_set_window_size_1 (f, change_gravity, cols, rows);
8858
8859 #endif /* not USE_GTK */
8860
8861 /* If cursor was outside the new size, mark it as off. */
8862 mark_window_cursors_off (XWINDOW (f->root_window));
8863
8864 /* Clear out any recollection of where the mouse highlighting was,
8865 since it might be in a place that's outside the new frame size.
8866 Actually checking whether it is outside is a pain in the neck,
8867 so don't try--just let the highlighting be done afresh with new size. */
8868 cancel_mouse_face (f);
8869
8870 UNBLOCK_INPUT;
8871 }
8872 \f
8873 /* Mouse warping. */
8874
8875 void
8876 x_set_mouse_position (struct frame *f, int x, int y)
8877 {
8878 int pix_x, pix_y;
8879
8880 pix_x = FRAME_COL_TO_PIXEL_X (f, x) + FRAME_COLUMN_WIDTH (f) / 2;
8881 pix_y = FRAME_LINE_TO_PIXEL_Y (f, y) + FRAME_LINE_HEIGHT (f) / 2;
8882
8883 if (pix_x < 0) pix_x = 0;
8884 if (pix_x > FRAME_PIXEL_WIDTH (f)) pix_x = FRAME_PIXEL_WIDTH (f);
8885
8886 if (pix_y < 0) pix_y = 0;
8887 if (pix_y > FRAME_PIXEL_HEIGHT (f)) pix_y = FRAME_PIXEL_HEIGHT (f);
8888
8889 BLOCK_INPUT;
8890
8891 XWarpPointer (FRAME_X_DISPLAY (f), None, FRAME_X_WINDOW (f),
8892 0, 0, 0, 0, pix_x, pix_y);
8893 UNBLOCK_INPUT;
8894 }
8895
8896 /* Move the mouse to position pixel PIX_X, PIX_Y relative to frame F. */
8897
8898 void
8899 x_set_mouse_pixel_position (struct frame *f, int pix_x, int pix_y)
8900 {
8901 BLOCK_INPUT;
8902
8903 XWarpPointer (FRAME_X_DISPLAY (f), None, FRAME_X_WINDOW (f),
8904 0, 0, 0, 0, pix_x, pix_y);
8905 UNBLOCK_INPUT;
8906 }
8907 \f
8908 /* focus shifting, raising and lowering. */
8909
8910 void
8911 x_focus_on_frame (struct frame *f)
8912 {
8913 #if 0
8914 /* I don't think that the ICCCM allows programs to do things like this
8915 without the interaction of the window manager. Whatever you end up
8916 doing with this code, do it to x_unfocus_frame too. */
8917 XSetInputFocus (FRAME_X_DISPLAY (f), FRAME_X_WINDOW (f),
8918 RevertToPointerRoot, CurrentTime);
8919 #endif /* ! 0 */
8920 }
8921
8922 void
8923 x_unfocus_frame (struct frame *f)
8924 {
8925 #if 0
8926 /* Look at the remarks in x_focus_on_frame. */
8927 if (FRAME_X_DISPLAY_INFO (f)->x_focus_frame == f)
8928 XSetInputFocus (FRAME_X_DISPLAY (f), PointerRoot,
8929 RevertToPointerRoot, CurrentTime);
8930 #endif /* ! 0 */
8931 }
8932
8933 /* Raise frame F. */
8934
8935 void
8936 x_raise_frame (struct frame *f)
8937 {
8938 BLOCK_INPUT;
8939 if (f->async_visible)
8940 XRaiseWindow (FRAME_X_DISPLAY (f), FRAME_OUTER_WINDOW (f));
8941
8942 XFlush (FRAME_X_DISPLAY (f));
8943 UNBLOCK_INPUT;
8944 }
8945
8946 /* Lower frame F. */
8947
8948 void
8949 x_lower_frame (struct frame *f)
8950 {
8951 if (f->async_visible)
8952 {
8953 BLOCK_INPUT;
8954 XLowerWindow (FRAME_X_DISPLAY (f), FRAME_OUTER_WINDOW (f));
8955 XFlush (FRAME_X_DISPLAY (f));
8956 UNBLOCK_INPUT;
8957 }
8958 }
8959
8960 /* Activate frame with Extended Window Manager Hints */
8961
8962 void
8963 x_ewmh_activate_frame (FRAME_PTR f)
8964 {
8965 /* See Window Manager Specification/Extended Window Manager Hints at
8966 http://freedesktop.org/wiki/Specifications/wm-spec */
8967
8968 const char *atom = "_NET_ACTIVE_WINDOW";
8969 if (f->async_visible && wm_supports (f, atom))
8970 {
8971 Lisp_Object frame;
8972 XSETFRAME (frame, f);
8973 Fx_send_client_event (frame, make_number (0), frame,
8974 make_unibyte_string (atom, strlen (atom)),
8975 make_number (32),
8976 Fcons (make_number (1),
8977 Fcons (make_number (last_user_time),
8978 Qnil)));
8979 }
8980 }
8981
8982 static void
8983 XTframe_raise_lower (FRAME_PTR f, int raise_flag)
8984 {
8985 if (raise_flag)
8986 x_raise_frame (f);
8987 else
8988 x_lower_frame (f);
8989 }
8990 \f
8991 /* XEmbed implementation. */
8992
8993 void
8994 xembed_set_info (struct frame *f, enum xembed_info flags)
8995 {
8996 Atom atom;
8997 unsigned long data[2];
8998
8999 atom = XInternAtom (FRAME_X_DISPLAY (f), "_XEMBED_INFO", False);
9000
9001 data[0] = XEMBED_VERSION;
9002 data[1] = flags;
9003
9004 XChangeProperty (FRAME_X_DISPLAY (f), FRAME_OUTER_WINDOW (f), atom, atom,
9005 32, PropModeReplace, (unsigned char *) data, 2);
9006 }
9007
9008 void
9009 xembed_send_message (struct frame *f, Time time, enum xembed_message message, long int detail, long int data1, long int data2)
9010 {
9011 XEvent event;
9012
9013 event.xclient.type = ClientMessage;
9014 event.xclient.window = FRAME_X_OUTPUT (f)->parent_desc;
9015 event.xclient.message_type = FRAME_X_DISPLAY_INFO (f)->Xatom_XEMBED;
9016 event.xclient.format = 32;
9017 event.xclient.data.l[0] = time;
9018 event.xclient.data.l[1] = message;
9019 event.xclient.data.l[2] = detail;
9020 event.xclient.data.l[3] = data1;
9021 event.xclient.data.l[4] = data2;
9022
9023 XSendEvent (FRAME_X_DISPLAY (f), FRAME_X_OUTPUT (f)->parent_desc,
9024 False, NoEventMask, &event);
9025 XSync (FRAME_X_DISPLAY (f), False);
9026 }
9027 \f
9028 /* Change of visibility. */
9029
9030 /* This tries to wait until the frame is really visible.
9031 However, if the window manager asks the user where to position
9032 the frame, this will return before the user finishes doing that.
9033 The frame will not actually be visible at that time,
9034 but it will become visible later when the window manager
9035 finishes with it. */
9036
9037 void
9038 x_make_frame_visible (struct frame *f)
9039 {
9040 Lisp_Object type;
9041 int original_top, original_left;
9042 int retry_count = 2;
9043
9044 retry:
9045
9046 BLOCK_INPUT;
9047
9048 type = x_icon_type (f);
9049 if (!NILP (type))
9050 x_bitmap_icon (f, type);
9051
9052 if (! FRAME_VISIBLE_P (f))
9053 {
9054 /* We test FRAME_GARBAGED_P here to make sure we don't
9055 call x_set_offset a second time
9056 if we get to x_make_frame_visible a second time
9057 before the window gets really visible. */
9058 if (! FRAME_ICONIFIED_P (f)
9059 && ! FRAME_X_EMBEDDED_P (f)
9060 && ! f->output_data.x->asked_for_visible)
9061 x_set_offset (f, f->left_pos, f->top_pos, 0);
9062
9063 f->output_data.x->asked_for_visible = 1;
9064
9065 if (! EQ (Vx_no_window_manager, Qt))
9066 x_wm_set_window_state (f, NormalState);
9067 #ifdef USE_X_TOOLKIT
9068 if (FRAME_X_EMBEDDED_P (f))
9069 xembed_set_info (f, XEMBED_MAPPED);
9070 else
9071 {
9072 /* This was XtPopup, but that did nothing for an iconified frame. */
9073 XtMapWidget (f->output_data.x->widget);
9074 }
9075 #else /* not USE_X_TOOLKIT */
9076 #ifdef USE_GTK
9077 gtk_widget_show_all (FRAME_GTK_OUTER_WIDGET (f));
9078 gtk_window_deiconify (GTK_WINDOW (FRAME_GTK_OUTER_WIDGET (f)));
9079 #else
9080 if (FRAME_X_EMBEDDED_P (f))
9081 xembed_set_info (f, XEMBED_MAPPED);
9082 else
9083 XMapRaised (FRAME_X_DISPLAY (f), FRAME_X_WINDOW (f));
9084 #endif /* not USE_GTK */
9085 #endif /* not USE_X_TOOLKIT */
9086 }
9087
9088 XFlush (FRAME_X_DISPLAY (f));
9089
9090 /* Synchronize to ensure Emacs knows the frame is visible
9091 before we do anything else. We do this loop with input not blocked
9092 so that incoming events are handled. */
9093 {
9094 Lisp_Object frame;
9095 int count;
9096 /* This must be before UNBLOCK_INPUT
9097 since events that arrive in response to the actions above
9098 will set it when they are handled. */
9099 int previously_visible = f->output_data.x->has_been_visible;
9100
9101 original_left = f->left_pos;
9102 original_top = f->top_pos;
9103
9104 /* This must come after we set COUNT. */
9105 UNBLOCK_INPUT;
9106
9107 /* We unblock here so that arriving X events are processed. */
9108
9109 /* Now move the window back to where it was "supposed to be".
9110 But don't do it if the gravity is negative.
9111 When the gravity is negative, this uses a position
9112 that is 3 pixels too low. Perhaps that's really the border width.
9113
9114 Don't do this if the window has never been visible before,
9115 because the window manager may choose the position
9116 and we don't want to override it. */
9117
9118 if (! FRAME_VISIBLE_P (f)
9119 && ! FRAME_ICONIFIED_P (f)
9120 && ! FRAME_X_EMBEDDED_P (f)
9121 && f->win_gravity == NorthWestGravity
9122 && previously_visible)
9123 {
9124 Drawable rootw;
9125 int x, y;
9126 unsigned int width, height, border, depth;
9127
9128 BLOCK_INPUT;
9129
9130 /* On some window managers (such as FVWM) moving an existing
9131 window, even to the same place, causes the window manager
9132 to introduce an offset. This can cause the window to move
9133 to an unexpected location. Check the geometry (a little
9134 slow here) and then verify that the window is in the right
9135 place. If the window is not in the right place, move it
9136 there, and take the potential window manager hit. */
9137 XGetGeometry (FRAME_X_DISPLAY (f), FRAME_OUTER_WINDOW (f),
9138 &rootw, &x, &y, &width, &height, &border, &depth);
9139
9140 if (original_left != x || original_top != y)
9141 XMoveWindow (FRAME_X_DISPLAY (f), FRAME_OUTER_WINDOW (f),
9142 original_left, original_top);
9143
9144 UNBLOCK_INPUT;
9145 }
9146
9147 XSETFRAME (frame, f);
9148
9149 /* Wait until the frame is visible. Process X events until a
9150 MapNotify event has been seen, or until we think we won't get a
9151 MapNotify at all.. */
9152 for (count = input_signal_count + 10;
9153 input_signal_count < count && !FRAME_VISIBLE_P (f);)
9154 {
9155 /* Force processing of queued events. */
9156 x_sync (f);
9157
9158 /* Machines that do polling rather than SIGIO have been
9159 observed to go into a busy-wait here. So we'll fake an
9160 alarm signal to let the handler know that there's something
9161 to be read. We used to raise a real alarm, but it seems
9162 that the handler isn't always enabled here. This is
9163 probably a bug. */
9164 if (input_polling_used ())
9165 {
9166 /* It could be confusing if a real alarm arrives while
9167 processing the fake one. Turn it off and let the
9168 handler reset it. */
9169 int old_poll_suppress_count = poll_suppress_count;
9170 poll_suppress_count = 1;
9171 poll_for_input_1 ();
9172 poll_suppress_count = old_poll_suppress_count;
9173 }
9174
9175 /* See if a MapNotify event has been processed. */
9176 FRAME_SAMPLE_VISIBILITY (f);
9177 }
9178
9179 /* 2000-09-28: In
9180
9181 (let ((f (selected-frame)))
9182 (iconify-frame f)
9183 (raise-frame f))
9184
9185 the frame is not raised with various window managers on
9186 FreeBSD, GNU/Linux and Solaris. It turns out that, for some
9187 unknown reason, the call to XtMapWidget is completely ignored.
9188 Mapping the widget a second time works. */
9189
9190 if (!FRAME_VISIBLE_P (f) && --retry_count > 0)
9191 goto retry;
9192 }
9193 }
9194
9195 /* Change from mapped state to withdrawn state. */
9196
9197 /* Make the frame visible (mapped and not iconified). */
9198
9199 void
9200 x_make_frame_invisible (struct frame *f)
9201 {
9202 Window window;
9203
9204 /* Use the frame's outermost window, not the one we normally draw on. */
9205 window = FRAME_OUTER_WINDOW (f);
9206
9207 /* Don't keep the highlight on an invisible frame. */
9208 if (FRAME_X_DISPLAY_INFO (f)->x_highlight_frame == f)
9209 FRAME_X_DISPLAY_INFO (f)->x_highlight_frame = 0;
9210
9211 BLOCK_INPUT;
9212
9213 /* Before unmapping the window, update the WM_SIZE_HINTS property to claim
9214 that the current position of the window is user-specified, rather than
9215 program-specified, so that when the window is mapped again, it will be
9216 placed at the same location, without forcing the user to position it
9217 by hand again (they have already done that once for this window.) */
9218 x_wm_set_size_hint (f, (long) 0, 1);
9219
9220 #ifdef USE_GTK
9221 if (FRAME_GTK_OUTER_WIDGET (f))
9222 gtk_widget_hide (FRAME_GTK_OUTER_WIDGET (f));
9223 else
9224 #else
9225 if (FRAME_X_EMBEDDED_P (f))
9226 xembed_set_info (f, 0);
9227 else
9228 #endif
9229 {
9230
9231 if (! XWithdrawWindow (FRAME_X_DISPLAY (f), window,
9232 DefaultScreen (FRAME_X_DISPLAY (f))))
9233 {
9234 UNBLOCK_INPUT_RESIGNAL;
9235 error ("Can't notify window manager of window withdrawal");
9236 }
9237 }
9238
9239 /* We can't distinguish this from iconification
9240 just by the event that we get from the server.
9241 So we can't win using the usual strategy of letting
9242 FRAME_SAMPLE_VISIBILITY set this. So do it by hand,
9243 and synchronize with the server to make sure we agree. */
9244 f->visible = 0;
9245 FRAME_ICONIFIED_P (f) = 0;
9246 f->async_visible = 0;
9247 f->async_iconified = 0;
9248
9249 x_sync (f);
9250
9251 UNBLOCK_INPUT;
9252 }
9253
9254 /* Change window state from mapped to iconified. */
9255
9256 void
9257 x_iconify_frame (struct frame *f)
9258 {
9259 int result;
9260 Lisp_Object type;
9261
9262 /* Don't keep the highlight on an invisible frame. */
9263 if (FRAME_X_DISPLAY_INFO (f)->x_highlight_frame == f)
9264 FRAME_X_DISPLAY_INFO (f)->x_highlight_frame = 0;
9265
9266 if (f->async_iconified)
9267 return;
9268
9269 BLOCK_INPUT;
9270
9271 FRAME_SAMPLE_VISIBILITY (f);
9272
9273 type = x_icon_type (f);
9274 if (!NILP (type))
9275 x_bitmap_icon (f, type);
9276
9277 #ifdef USE_GTK
9278 if (FRAME_GTK_OUTER_WIDGET (f))
9279 {
9280 if (! FRAME_VISIBLE_P (f))
9281 gtk_widget_show_all (FRAME_GTK_OUTER_WIDGET (f));
9282
9283 gtk_window_iconify (GTK_WINDOW (FRAME_GTK_OUTER_WIDGET (f)));
9284 f->iconified = 1;
9285 f->visible = 1;
9286 f->async_iconified = 1;
9287 f->async_visible = 0;
9288 UNBLOCK_INPUT;
9289 return;
9290 }
9291 #endif
9292
9293 #ifdef USE_X_TOOLKIT
9294
9295 if (! FRAME_VISIBLE_P (f))
9296 {
9297 if (! EQ (Vx_no_window_manager, Qt))
9298 x_wm_set_window_state (f, IconicState);
9299 /* This was XtPopup, but that did nothing for an iconified frame. */
9300 XtMapWidget (f->output_data.x->widget);
9301 /* The server won't give us any event to indicate
9302 that an invisible frame was changed to an icon,
9303 so we have to record it here. */
9304 f->iconified = 1;
9305 f->visible = 1;
9306 f->async_iconified = 1;
9307 f->async_visible = 0;
9308 UNBLOCK_INPUT;
9309 return;
9310 }
9311
9312 result = XIconifyWindow (FRAME_X_DISPLAY (f),
9313 XtWindow (f->output_data.x->widget),
9314 DefaultScreen (FRAME_X_DISPLAY (f)));
9315 UNBLOCK_INPUT;
9316
9317 if (!result)
9318 error ("Can't notify window manager of iconification");
9319
9320 f->async_iconified = 1;
9321 f->async_visible = 0;
9322
9323
9324 BLOCK_INPUT;
9325 XFlush (FRAME_X_DISPLAY (f));
9326 UNBLOCK_INPUT;
9327 #else /* not USE_X_TOOLKIT */
9328
9329 /* Make sure the X server knows where the window should be positioned,
9330 in case the user deiconifies with the window manager. */
9331 if (! FRAME_VISIBLE_P (f)
9332 && ! FRAME_ICONIFIED_P (f)
9333 && ! FRAME_X_EMBEDDED_P (f))
9334 x_set_offset (f, f->left_pos, f->top_pos, 0);
9335
9336 /* Since we don't know which revision of X we're running, we'll use both
9337 the X11R3 and X11R4 techniques. I don't know if this is a good idea. */
9338
9339 /* X11R4: send a ClientMessage to the window manager using the
9340 WM_CHANGE_STATE type. */
9341 {
9342 XEvent message;
9343
9344 message.xclient.window = FRAME_X_WINDOW (f);
9345 message.xclient.type = ClientMessage;
9346 message.xclient.message_type = FRAME_X_DISPLAY_INFO (f)->Xatom_wm_change_state;
9347 message.xclient.format = 32;
9348 message.xclient.data.l[0] = IconicState;
9349
9350 if (! XSendEvent (FRAME_X_DISPLAY (f),
9351 DefaultRootWindow (FRAME_X_DISPLAY (f)),
9352 False,
9353 SubstructureRedirectMask | SubstructureNotifyMask,
9354 &message))
9355 {
9356 UNBLOCK_INPUT_RESIGNAL;
9357 error ("Can't notify window manager of iconification");
9358 }
9359 }
9360
9361 /* X11R3: set the initial_state field of the window manager hints to
9362 IconicState. */
9363 x_wm_set_window_state (f, IconicState);
9364
9365 if (!FRAME_VISIBLE_P (f))
9366 {
9367 /* If the frame was withdrawn, before, we must map it. */
9368 XMapRaised (FRAME_X_DISPLAY (f), FRAME_X_WINDOW (f));
9369 }
9370
9371 f->async_iconified = 1;
9372 f->async_visible = 0;
9373
9374 XFlush (FRAME_X_DISPLAY (f));
9375 UNBLOCK_INPUT;
9376 #endif /* not USE_X_TOOLKIT */
9377 }
9378
9379 \f
9380 /* Free X resources of frame F. */
9381
9382 void
9383 x_free_frame_resources (struct frame *f)
9384 {
9385 struct x_display_info *dpyinfo = FRAME_X_DISPLAY_INFO (f);
9386 Lisp_Object bar;
9387 struct scroll_bar *b;
9388
9389 BLOCK_INPUT;
9390
9391 /* If a display connection is dead, don't try sending more
9392 commands to the X server. */
9393 if (dpyinfo->display)
9394 {
9395 /* We must free faces before destroying windows because some
9396 font-driver (e.g. xft) access a window while finishing a
9397 face. */
9398 if (FRAME_FACE_CACHE (f))
9399 free_frame_faces (f);
9400
9401 if (f->output_data.x->icon_desc)
9402 XDestroyWindow (FRAME_X_DISPLAY (f), f->output_data.x->icon_desc);
9403
9404 #ifdef USE_X_TOOLKIT
9405 /* Explicitly destroy the scroll bars of the frame. Without
9406 this, we get "BadDrawable" errors from the toolkit later on,
9407 presumably from expose events generated for the disappearing
9408 toolkit scroll bars. */
9409 for (bar = FRAME_SCROLL_BARS (f); !NILP (bar); bar = b->next)
9410 {
9411 b = XSCROLL_BAR (bar);
9412 x_scroll_bar_remove (b);
9413 }
9414 #endif
9415
9416 #ifdef HAVE_X_I18N
9417 if (FRAME_XIC (f))
9418 free_frame_xic (f);
9419 #endif
9420
9421 #ifdef USE_X_TOOLKIT
9422 if (f->output_data.x->widget)
9423 {
9424 XtDestroyWidget (f->output_data.x->widget);
9425 f->output_data.x->widget = NULL;
9426 }
9427 /* Tooltips don't have widgets, only a simple X window, even if
9428 we are using a toolkit. */
9429 else if (FRAME_X_WINDOW (f))
9430 XDestroyWindow (FRAME_X_DISPLAY (f), FRAME_X_WINDOW (f));
9431
9432 free_frame_menubar (f);
9433 #else /* !USE_X_TOOLKIT */
9434
9435 #ifdef USE_GTK
9436 xg_free_frame_widgets (f);
9437 #endif /* USE_GTK */
9438
9439 if (FRAME_X_WINDOW (f))
9440 XDestroyWindow (FRAME_X_DISPLAY (f), FRAME_X_WINDOW (f));
9441 #endif /* !USE_X_TOOLKIT */
9442
9443 unload_color (f, FRAME_FOREGROUND_PIXEL (f));
9444 unload_color (f, FRAME_BACKGROUND_PIXEL (f));
9445 unload_color (f, f->output_data.x->cursor_pixel);
9446 unload_color (f, f->output_data.x->cursor_foreground_pixel);
9447 unload_color (f, f->output_data.x->border_pixel);
9448 unload_color (f, f->output_data.x->mouse_pixel);
9449
9450 if (f->output_data.x->scroll_bar_background_pixel != -1)
9451 unload_color (f, f->output_data.x->scroll_bar_background_pixel);
9452 if (f->output_data.x->scroll_bar_foreground_pixel != -1)
9453 unload_color (f, f->output_data.x->scroll_bar_foreground_pixel);
9454 #ifdef USE_TOOLKIT_SCROLL_BARS
9455 /* Scrollbar shadow colors. */
9456 if (f->output_data.x->scroll_bar_top_shadow_pixel != -1)
9457 unload_color (f, f->output_data.x->scroll_bar_top_shadow_pixel);
9458 if (f->output_data.x->scroll_bar_bottom_shadow_pixel != -1)
9459 unload_color (f, f->output_data.x->scroll_bar_bottom_shadow_pixel);
9460 #endif /* USE_TOOLKIT_SCROLL_BARS */
9461 if (f->output_data.x->white_relief.allocated_p)
9462 unload_color (f, f->output_data.x->white_relief.pixel);
9463 if (f->output_data.x->black_relief.allocated_p)
9464 unload_color (f, f->output_data.x->black_relief.pixel);
9465
9466 x_free_gcs (f);
9467 XFlush (FRAME_X_DISPLAY (f));
9468 }
9469
9470 xfree (f->output_data.x->saved_menu_event);
9471 xfree (f->output_data.x);
9472 f->output_data.x = NULL;
9473
9474 if (f == dpyinfo->x_focus_frame)
9475 dpyinfo->x_focus_frame = 0;
9476 if (f == dpyinfo->x_focus_event_frame)
9477 dpyinfo->x_focus_event_frame = 0;
9478 if (f == dpyinfo->x_highlight_frame)
9479 dpyinfo->x_highlight_frame = 0;
9480
9481 if (f == dpyinfo->mouse_face_mouse_frame)
9482 {
9483 dpyinfo->mouse_face_beg_row
9484 = dpyinfo->mouse_face_beg_col = -1;
9485 dpyinfo->mouse_face_end_row
9486 = dpyinfo->mouse_face_end_col = -1;
9487 dpyinfo->mouse_face_window = Qnil;
9488 dpyinfo->mouse_face_deferred_gc = 0;
9489 dpyinfo->mouse_face_mouse_frame = 0;
9490 }
9491
9492 UNBLOCK_INPUT;
9493 }
9494
9495
9496 /* Destroy the X window of frame F. */
9497
9498 void
9499 x_destroy_window (struct frame *f)
9500 {
9501 struct x_display_info *dpyinfo = FRAME_X_DISPLAY_INFO (f);
9502
9503 /* If a display connection is dead, don't try sending more
9504 commands to the X server. */
9505 if (dpyinfo->display != 0)
9506 x_free_frame_resources (f);
9507
9508 dpyinfo->reference_count--;
9509 }
9510
9511 \f
9512 /* Setting window manager hints. */
9513
9514 /* Set the normal size hints for the window manager, for frame F.
9515 FLAGS is the flags word to use--or 0 meaning preserve the flags
9516 that the window now has.
9517 If USER_POSITION is nonzero, we set the USPosition
9518 flag (this is useful when FLAGS is 0).
9519 The GTK version is in gtkutils.c */
9520
9521 #ifndef USE_GTK
9522 void
9523 x_wm_set_size_hint (struct frame *f, long flags, int user_position)
9524 {
9525 XSizeHints size_hints;
9526 Window window = FRAME_OUTER_WINDOW (f);
9527
9528 /* Setting PMaxSize caused various problems. */
9529 size_hints.flags = PResizeInc | PMinSize /* | PMaxSize */;
9530
9531 size_hints.x = f->left_pos;
9532 size_hints.y = f->top_pos;
9533
9534 size_hints.height = FRAME_PIXEL_HEIGHT (f);
9535 size_hints.width = FRAME_PIXEL_WIDTH (f);
9536
9537 size_hints.width_inc = FRAME_COLUMN_WIDTH (f);
9538 size_hints.height_inc = FRAME_LINE_HEIGHT (f);
9539 size_hints.max_width = x_display_pixel_width (FRAME_X_DISPLAY_INFO (f))
9540 - FRAME_TEXT_COLS_TO_PIXEL_WIDTH (f, 0);
9541 size_hints.max_height = x_display_pixel_height (FRAME_X_DISPLAY_INFO (f))
9542 - FRAME_TEXT_LINES_TO_PIXEL_HEIGHT (f, 0);
9543
9544 /* Calculate the base and minimum sizes. */
9545 {
9546 int base_width, base_height;
9547 int min_rows = 0, min_cols = 0;
9548
9549 base_width = FRAME_TEXT_COLS_TO_PIXEL_WIDTH (f, 0);
9550 base_height = FRAME_TEXT_LINES_TO_PIXEL_HEIGHT (f, 0);
9551
9552 check_frame_size (f, &min_rows, &min_cols);
9553
9554 /* The window manager uses the base width hints to calculate the
9555 current number of rows and columns in the frame while
9556 resizing; min_width and min_height aren't useful for this
9557 purpose, since they might not give the dimensions for a
9558 zero-row, zero-column frame.
9559
9560 We use the base_width and base_height members if we have
9561 them; otherwise, we set the min_width and min_height members
9562 to the size for a zero x zero frame. */
9563
9564 size_hints.flags |= PBaseSize;
9565 size_hints.base_width = base_width;
9566 size_hints.base_height = base_height + FRAME_MENUBAR_HEIGHT (f);
9567 size_hints.min_width = base_width + min_cols * size_hints.width_inc;
9568 size_hints.min_height = base_height + min_rows * size_hints.height_inc;
9569 }
9570
9571 /* If we don't need the old flags, we don't need the old hint at all. */
9572 if (flags)
9573 {
9574 size_hints.flags |= flags;
9575 goto no_read;
9576 }
9577
9578 {
9579 XSizeHints hints; /* Sometimes I hate X Windows... */
9580 long supplied_return;
9581 int value;
9582
9583 value = XGetWMNormalHints (FRAME_X_DISPLAY (f), window, &hints,
9584 &supplied_return);
9585
9586 if (flags)
9587 size_hints.flags |= flags;
9588 else
9589 {
9590 if (value == 0)
9591 hints.flags = 0;
9592 if (hints.flags & PSize)
9593 size_hints.flags |= PSize;
9594 if (hints.flags & PPosition)
9595 size_hints.flags |= PPosition;
9596 if (hints.flags & USPosition)
9597 size_hints.flags |= USPosition;
9598 if (hints.flags & USSize)
9599 size_hints.flags |= USSize;
9600 }
9601 }
9602
9603 no_read:
9604
9605 #ifdef PWinGravity
9606 size_hints.win_gravity = f->win_gravity;
9607 size_hints.flags |= PWinGravity;
9608
9609 if (user_position)
9610 {
9611 size_hints.flags &= ~ PPosition;
9612 size_hints.flags |= USPosition;
9613 }
9614 #endif /* PWinGravity */
9615
9616 XSetWMNormalHints (FRAME_X_DISPLAY (f), window, &size_hints);
9617 }
9618 #endif /* not USE_GTK */
9619
9620 /* Used for IconicState or NormalState */
9621
9622 void
9623 x_wm_set_window_state (struct frame *f, int state)
9624 {
9625 #ifdef USE_X_TOOLKIT
9626 Arg al[1];
9627
9628 XtSetArg (al[0], XtNinitialState, state);
9629 XtSetValues (f->output_data.x->widget, al, 1);
9630 #else /* not USE_X_TOOLKIT */
9631 Window window = FRAME_X_WINDOW (f);
9632
9633 f->output_data.x->wm_hints.flags |= StateHint;
9634 f->output_data.x->wm_hints.initial_state = state;
9635
9636 XSetWMHints (FRAME_X_DISPLAY (f), window, &f->output_data.x->wm_hints);
9637 #endif /* not USE_X_TOOLKIT */
9638 }
9639
9640 void
9641 x_wm_set_icon_pixmap (struct frame *f, int pixmap_id)
9642 {
9643 Pixmap icon_pixmap, icon_mask;
9644
9645 #if !defined USE_X_TOOLKIT && !defined USE_GTK
9646 Window window = FRAME_OUTER_WINDOW (f);
9647 #endif
9648
9649 if (pixmap_id > 0)
9650 {
9651 icon_pixmap = x_bitmap_pixmap (f, pixmap_id);
9652 f->output_data.x->wm_hints.icon_pixmap = icon_pixmap;
9653 icon_mask = x_bitmap_mask (f, pixmap_id);
9654 f->output_data.x->wm_hints.icon_mask = icon_mask;
9655 }
9656 else
9657 {
9658 /* It seems there is no way to turn off use of an icon
9659 pixmap. */
9660 return;
9661 }
9662
9663
9664 #ifdef USE_GTK
9665 {
9666 xg_set_frame_icon (f, icon_pixmap, icon_mask);
9667 return;
9668 }
9669
9670 #elif defined (USE_X_TOOLKIT) /* same as in x_wm_set_window_state. */
9671
9672 {
9673 Arg al[1];
9674 XtSetArg (al[0], XtNiconPixmap, icon_pixmap);
9675 XtSetValues (f->output_data.x->widget, al, 1);
9676 XtSetArg (al[0], XtNiconMask, icon_mask);
9677 XtSetValues (f->output_data.x->widget, al, 1);
9678 }
9679
9680 #else /* not USE_X_TOOLKIT && not USE_GTK */
9681
9682 f->output_data.x->wm_hints.flags |= (IconPixmapHint | IconMaskHint);
9683 XSetWMHints (FRAME_X_DISPLAY (f), window, &f->output_data.x->wm_hints);
9684
9685 #endif /* not USE_X_TOOLKIT && not USE_GTK */
9686 }
9687
9688 void
9689 x_wm_set_icon_position (struct frame *f, int icon_x, int icon_y)
9690 {
9691 Window window = FRAME_OUTER_WINDOW (f);
9692
9693 f->output_data.x->wm_hints.flags |= IconPositionHint;
9694 f->output_data.x->wm_hints.icon_x = icon_x;
9695 f->output_data.x->wm_hints.icon_y = icon_y;
9696
9697 XSetWMHints (FRAME_X_DISPLAY (f), window, &f->output_data.x->wm_hints);
9698 }
9699
9700 \f
9701 /***********************************************************************
9702 Fonts
9703 ***********************************************************************/
9704
9705 #if GLYPH_DEBUG
9706
9707 /* Check that FONT is valid on frame F. It is if it can be found in F's
9708 font table. */
9709
9710 static void
9711 x_check_font (struct frame *f, struct font *font)
9712 {
9713 Lisp_Object frame;
9714
9715 xassert (font != NULL && ! NILP (font->props[FONT_TYPE_INDEX]));
9716 if (font->driver->check)
9717 xassert (font->driver->check (f, font) == 0);
9718 }
9719
9720 #endif /* GLYPH_DEBUG != 0 */
9721
9722 \f
9723 /***********************************************************************
9724 Initialization
9725 ***********************************************************************/
9726
9727 #ifdef USE_X_TOOLKIT
9728 static XrmOptionDescRec emacs_options[] = {
9729 {"-geometry", ".geometry", XrmoptionSepArg, NULL},
9730 {"-iconic", ".iconic", XrmoptionNoArg, (XtPointer) "yes"},
9731
9732 {"-internal-border-width", "*EmacsScreen.internalBorderWidth",
9733 XrmoptionSepArg, NULL},
9734 {"-ib", "*EmacsScreen.internalBorderWidth", XrmoptionSepArg, NULL},
9735
9736 {"-T", "*EmacsShell.title", XrmoptionSepArg, (XtPointer) NULL},
9737 {"-wn", "*EmacsShell.title", XrmoptionSepArg, (XtPointer) NULL},
9738 {"-title", "*EmacsShell.title", XrmoptionSepArg, (XtPointer) NULL},
9739 {"-iconname", "*EmacsShell.iconName", XrmoptionSepArg, (XtPointer) NULL},
9740 {"-in", "*EmacsShell.iconName", XrmoptionSepArg, (XtPointer) NULL},
9741 {"-mc", "*pointerColor", XrmoptionSepArg, (XtPointer) NULL},
9742 {"-cr", "*cursorColor", XrmoptionSepArg, (XtPointer) NULL}
9743 };
9744
9745 /* Whether atimer for Xt timeouts is activated or not. */
9746
9747 static int x_timeout_atimer_activated_flag;
9748
9749 #endif /* USE_X_TOOLKIT */
9750
9751 static int x_initialized;
9752
9753 #ifdef HAVE_X_SM
9754 static int x_session_initialized;
9755 #endif
9756
9757 /* Test whether two display-name strings agree up to the dot that separates
9758 the screen number from the server number. */
9759 static int
9760 same_x_server (const char *name1, const char *name2)
9761 {
9762 int seen_colon = 0;
9763 const unsigned char *system_name = SDATA (Vsystem_name);
9764 int system_name_length = strlen (system_name);
9765 int length_until_period = 0;
9766
9767 while (system_name[length_until_period] != 0
9768 && system_name[length_until_period] != '.')
9769 length_until_period++;
9770
9771 /* Treat `unix' like an empty host name. */
9772 if (! strncmp (name1, "unix:", 5))
9773 name1 += 4;
9774 if (! strncmp (name2, "unix:", 5))
9775 name2 += 4;
9776 /* Treat this host's name like an empty host name. */
9777 if (! strncmp (name1, system_name, system_name_length)
9778 && name1[system_name_length] == ':')
9779 name1 += system_name_length;
9780 if (! strncmp (name2, system_name, system_name_length)
9781 && name2[system_name_length] == ':')
9782 name2 += system_name_length;
9783 /* Treat this host's domainless name like an empty host name. */
9784 if (! strncmp (name1, system_name, length_until_period)
9785 && name1[length_until_period] == ':')
9786 name1 += length_until_period;
9787 if (! strncmp (name2, system_name, length_until_period)
9788 && name2[length_until_period] == ':')
9789 name2 += length_until_period;
9790
9791 for (; *name1 != '\0' && *name1 == *name2; name1++, name2++)
9792 {
9793 if (*name1 == ':')
9794 seen_colon++;
9795 if (seen_colon && *name1 == '.')
9796 return 1;
9797 }
9798 return (seen_colon
9799 && (*name1 == '.' || *name1 == '\0')
9800 && (*name2 == '.' || *name2 == '\0'));
9801 }
9802
9803 /* Count number of set bits in mask and number of bits to shift to
9804 get to the first bit. With MASK 0x7e0, *BITS is set to 6, and *OFFSET
9805 to 5. */
9806 static void
9807 get_bits_and_offset (long unsigned int mask, int *bits, int *offset)
9808 {
9809 int nr = 0;
9810 int off = 0;
9811
9812 while (!(mask & 1))
9813 {
9814 off++;
9815 mask >>= 1;
9816 }
9817
9818 while (mask & 1)
9819 {
9820 nr++;
9821 mask >>= 1;
9822 }
9823
9824 *offset = off;
9825 *bits = nr;
9826 }
9827
9828 /* Return 1 if display DISPLAY is available for use, 0 otherwise.
9829 But don't permanently open it, just test its availability. */
9830
9831 int
9832 x_display_ok (const char *display)
9833 {
9834 int dpy_ok = 1;
9835 Display *dpy;
9836
9837 dpy = XOpenDisplay (display);
9838 if (dpy)
9839 XCloseDisplay (dpy);
9840 else
9841 dpy_ok = 0;
9842 return dpy_ok;
9843 }
9844
9845 #ifdef USE_GTK
9846 static void
9847 my_log_handler (const gchar *log_domain, GLogLevelFlags log_level, const gchar *message, gpointer user_data)
9848 {
9849 if (!strstr (message, "g_set_prgname"))
9850 fprintf (stderr, "%s-WARNING **: %s\n", log_domain, message);
9851 }
9852 #endif
9853
9854 /* Open a connection to X display DISPLAY_NAME, and return
9855 the structure that describes the open display.
9856 If we cannot contact the display, return null. */
9857
9858 struct x_display_info *
9859 x_term_init (Lisp_Object display_name, char *xrm_option, char *resource_name)
9860 {
9861 int connection;
9862 Display *dpy;
9863 struct terminal *terminal;
9864 struct x_display_info *dpyinfo;
9865 XrmDatabase xrdb;
9866
9867 BLOCK_INPUT;
9868
9869 if (!x_initialized)
9870 {
9871 x_initialize ();
9872 ++x_initialized;
9873 }
9874
9875 if (! x_display_ok (SDATA (display_name)))
9876 error ("Display %s can't be opened", SDATA (display_name));
9877
9878 #ifdef USE_GTK
9879 {
9880 #define NUM_ARGV 10
9881 int argc;
9882 char *argv[NUM_ARGV];
9883 char **argv2 = argv;
9884 guint id;
9885
9886 if (x_initialized++ > 1)
9887 {
9888 xg_display_open (SDATA (display_name), &dpy);
9889 }
9890 else
9891 {
9892 static char display_opt[] = "--display";
9893 static char name_opt[] = "--name";
9894
9895 for (argc = 0; argc < NUM_ARGV; ++argc)
9896 argv[argc] = 0;
9897
9898 argc = 0;
9899 argv[argc++] = initial_argv[0];
9900
9901 if (! NILP (display_name))
9902 {
9903 argv[argc++] = display_opt;
9904 argv[argc++] = SDATA (display_name);
9905 }
9906
9907 argv[argc++] = name_opt;
9908 argv[argc++] = resource_name;
9909
9910 XSetLocaleModifiers ("");
9911
9912 /* Work around GLib bug that outputs a faulty warning. See
9913 https://bugzilla.gnome.org/show_bug.cgi?id=563627. */
9914 id = g_log_set_handler ("GLib", G_LOG_LEVEL_WARNING | G_LOG_FLAG_FATAL
9915 | G_LOG_FLAG_RECURSION, my_log_handler, NULL);
9916 gtk_init (&argc, &argv2);
9917 g_log_remove_handler ("GLib", id);
9918
9919 /* gtk_init does set_locale. We must fix locale after calling it. */
9920 fixup_locale ();
9921 xg_initialize ();
9922
9923 dpy = GDK_DISPLAY ();
9924
9925 /* NULL window -> events for all windows go to our function */
9926 gdk_window_add_filter (NULL, event_handler_gdk, NULL);
9927
9928 /* Load our own gtkrc if it exists. */
9929 {
9930 const char *file = "~/.emacs.d/gtkrc";
9931 Lisp_Object s, abs_file;
9932
9933 s = make_string (file, strlen (file));
9934 abs_file = Fexpand_file_name (s, Qnil);
9935
9936 if (! NILP (abs_file) && !NILP (Ffile_readable_p (abs_file)))
9937 gtk_rc_parse (SDATA (abs_file));
9938 }
9939
9940 XSetErrorHandler (x_error_handler);
9941 XSetIOErrorHandler (x_io_error_quitter);
9942 }
9943 }
9944 #else /* not USE_GTK */
9945 #ifdef USE_X_TOOLKIT
9946 /* weiner@footloose.sps.mot.com reports that this causes
9947 errors with X11R5:
9948 X protocol error: BadAtom (invalid Atom parameter)
9949 on protocol request 18skiloaf.
9950 So let's not use it until R6. */
9951 #ifdef HAVE_X11XTR6
9952 XtSetLanguageProc (NULL, NULL, NULL);
9953 #endif
9954
9955 {
9956 int argc = 0;
9957 char *argv[3];
9958
9959 argv[0] = "";
9960 argc = 1;
9961 if (xrm_option)
9962 {
9963 argv[argc++] = "-xrm";
9964 argv[argc++] = xrm_option;
9965 }
9966 turn_on_atimers (0);
9967 dpy = XtOpenDisplay (Xt_app_con, SDATA (display_name),
9968 resource_name, EMACS_CLASS,
9969 emacs_options, XtNumber (emacs_options),
9970 &argc, argv);
9971 turn_on_atimers (1);
9972
9973 #ifdef HAVE_X11XTR6
9974 /* I think this is to compensate for XtSetLanguageProc. */
9975 fixup_locale ();
9976 #endif
9977 }
9978
9979 #else /* not USE_X_TOOLKIT */
9980 XSetLocaleModifiers ("");
9981 dpy = XOpenDisplay (SDATA (display_name));
9982 #endif /* not USE_X_TOOLKIT */
9983 #endif /* not USE_GTK*/
9984
9985 /* Detect failure. */
9986 if (dpy == 0)
9987 {
9988 UNBLOCK_INPUT;
9989 return 0;
9990 }
9991
9992 /* We have definitely succeeded. Record the new connection. */
9993
9994 dpyinfo = (struct x_display_info *) xmalloc (sizeof (struct x_display_info));
9995 memset (dpyinfo, 0, sizeof *dpyinfo);
9996
9997 terminal = x_create_terminal (dpyinfo);
9998
9999 {
10000 struct x_display_info *share;
10001 Lisp_Object tail;
10002
10003 for (share = x_display_list, tail = x_display_name_list; share;
10004 share = share->next, tail = XCDR (tail))
10005 if (same_x_server (SDATA (XCAR (XCAR (tail))),
10006 SDATA (display_name)))
10007 break;
10008 if (share)
10009 terminal->kboard = share->terminal->kboard;
10010 else
10011 {
10012 terminal->kboard = (KBOARD *) xmalloc (sizeof (KBOARD));
10013 init_kboard (terminal->kboard);
10014 terminal->kboard->Vwindow_system = Qx;
10015
10016 /* Add the keyboard to the list before running Lisp code (via
10017 Qvendor_specific_keysyms below), since these are not traced
10018 via terminals but only through all_kboards. */
10019 terminal->kboard->next_kboard = all_kboards;
10020 all_kboards = terminal->kboard;
10021
10022 if (!EQ (XSYMBOL (Qvendor_specific_keysyms)->function, Qunbound))
10023 {
10024 char *vendor = ServerVendor (dpy);
10025
10026 /* Protect terminal from GC before removing it from the
10027 list of terminals. */
10028 struct gcpro gcpro1;
10029 Lisp_Object gcpro_term;
10030 XSETTERMINAL (gcpro_term, terminal);
10031 GCPRO1 (gcpro_term);
10032
10033 /* Temporarily hide the partially initialized terminal. */
10034 terminal_list = terminal->next_terminal;
10035 UNBLOCK_INPUT;
10036 terminal->kboard->Vsystem_key_alist
10037 = call1 (Qvendor_specific_keysyms,
10038 vendor ? build_string (vendor) : empty_unibyte_string);
10039 BLOCK_INPUT;
10040 terminal->next_terminal = terminal_list;
10041 terminal_list = terminal;
10042 UNGCPRO;
10043 }
10044
10045 /* Don't let the initial kboard remain current longer than necessary.
10046 That would cause problems if a file loaded on startup tries to
10047 prompt in the mini-buffer. */
10048 if (current_kboard == initial_kboard)
10049 current_kboard = terminal->kboard;
10050 }
10051 terminal->kboard->reference_count++;
10052 }
10053
10054 /* Put this display on the chain. */
10055 dpyinfo->next = x_display_list;
10056 x_display_list = dpyinfo;
10057
10058 /* Put it on x_display_name_list as well, to keep them parallel. */
10059 x_display_name_list = Fcons (Fcons (display_name, Qnil),
10060 x_display_name_list);
10061 dpyinfo->name_list_element = XCAR (x_display_name_list);
10062
10063 dpyinfo->display = dpy;
10064
10065 /* Set the name of the terminal. */
10066 terminal->name = (char *) xmalloc (SBYTES (display_name) + 1);
10067 strncpy (terminal->name, SDATA (display_name), SBYTES (display_name));
10068 terminal->name[SBYTES (display_name)] = 0;
10069
10070 #if 0
10071 XSetAfterFunction (x_current_display, x_trace_wire);
10072 #endif /* ! 0 */
10073
10074 dpyinfo->x_id_name
10075 = (char *) xmalloc (SBYTES (Vinvocation_name)
10076 + SBYTES (Vsystem_name)
10077 + 2);
10078 sprintf (dpyinfo->x_id_name, "%s@%s",
10079 SDATA (Vinvocation_name), SDATA (Vsystem_name));
10080
10081 /* Figure out which modifier bits mean what. */
10082 x_find_modifier_meanings (dpyinfo);
10083
10084 /* Get the scroll bar cursor. */
10085 #ifdef USE_GTK
10086 /* We must create a GTK cursor, it is required for GTK widgets. */
10087 dpyinfo->xg_cursor = xg_create_default_cursor (dpyinfo->display);
10088 #endif /* USE_GTK */
10089
10090 dpyinfo->vertical_scroll_bar_cursor
10091 = XCreateFontCursor (dpyinfo->display, XC_sb_v_double_arrow);
10092
10093 xrdb = x_load_resources (dpyinfo->display, xrm_option,
10094 resource_name, EMACS_CLASS);
10095 #ifdef HAVE_XRMSETDATABASE
10096 XrmSetDatabase (dpyinfo->display, xrdb);
10097 #else
10098 dpyinfo->display->db = xrdb;
10099 #endif
10100 /* Put the rdb where we can find it in a way that works on
10101 all versions. */
10102 dpyinfo->xrdb = xrdb;
10103
10104 dpyinfo->screen = ScreenOfDisplay (dpyinfo->display,
10105 DefaultScreen (dpyinfo->display));
10106 select_visual (dpyinfo);
10107 dpyinfo->cmap = DefaultColormapOfScreen (dpyinfo->screen);
10108 dpyinfo->root_window = RootWindowOfScreen (dpyinfo->screen);
10109 dpyinfo->client_leader_window = 0;
10110 dpyinfo->grabbed = 0;
10111 dpyinfo->reference_count = 0;
10112 dpyinfo->icon_bitmap_id = -1;
10113 dpyinfo->n_fonts = 0;
10114 dpyinfo->bitmaps = 0;
10115 dpyinfo->bitmaps_size = 0;
10116 dpyinfo->bitmaps_last = 0;
10117 dpyinfo->scratch_cursor_gc = 0;
10118 dpyinfo->mouse_face_mouse_frame = 0;
10119 dpyinfo->mouse_face_deferred_gc = 0;
10120 dpyinfo->mouse_face_beg_row = dpyinfo->mouse_face_beg_col = -1;
10121 dpyinfo->mouse_face_end_row = dpyinfo->mouse_face_end_col = -1;
10122 dpyinfo->mouse_face_face_id = DEFAULT_FACE_ID;
10123 dpyinfo->mouse_face_window = Qnil;
10124 dpyinfo->mouse_face_overlay = Qnil;
10125 dpyinfo->mouse_face_mouse_x = dpyinfo->mouse_face_mouse_y = 0;
10126 dpyinfo->mouse_face_defer = 0;
10127 dpyinfo->mouse_face_hidden = 0;
10128 dpyinfo->x_focus_frame = 0;
10129 dpyinfo->x_focus_event_frame = 0;
10130 dpyinfo->x_highlight_frame = 0;
10131 dpyinfo->wm_type = X_WMTYPE_UNKNOWN;
10132
10133 /* See if we can construct pixel values from RGB values. */
10134 dpyinfo->red_bits = dpyinfo->blue_bits = dpyinfo->green_bits = 0;
10135 dpyinfo->red_offset = dpyinfo->blue_offset = dpyinfo->green_offset = 0;
10136
10137 if (dpyinfo->visual->class == TrueColor)
10138 {
10139 get_bits_and_offset (dpyinfo->visual->red_mask,
10140 &dpyinfo->red_bits, &dpyinfo->red_offset);
10141 get_bits_and_offset (dpyinfo->visual->blue_mask,
10142 &dpyinfo->blue_bits, &dpyinfo->blue_offset);
10143 get_bits_and_offset (dpyinfo->visual->green_mask,
10144 &dpyinfo->green_bits, &dpyinfo->green_offset);
10145 }
10146
10147 /* See if a private colormap is requested. */
10148 if (dpyinfo->visual == DefaultVisualOfScreen (dpyinfo->screen))
10149 {
10150 if (dpyinfo->visual->class == PseudoColor)
10151 {
10152 Lisp_Object value;
10153 value = display_x_get_resource (dpyinfo,
10154 build_string ("privateColormap"),
10155 build_string ("PrivateColormap"),
10156 Qnil, Qnil);
10157 if (STRINGP (value)
10158 && (!strcmp (SDATA (value), "true")
10159 || !strcmp (SDATA (value), "on")))
10160 dpyinfo->cmap = XCopyColormapAndFree (dpyinfo->display, dpyinfo->cmap);
10161 }
10162 }
10163 else
10164 dpyinfo->cmap = XCreateColormap (dpyinfo->display, dpyinfo->root_window,
10165 dpyinfo->visual, AllocNone);
10166
10167 #ifdef HAVE_XFT
10168 {
10169 /* If we are using Xft, check dpi value in X resources.
10170 It is better we use it as well, since Xft will use it, as will all
10171 Gnome applications. If our real DPI is smaller or larger than the
10172 one Xft uses, our font will look smaller or larger than other
10173 for other applications, even if it is the same font name (monospace-10
10174 for example). */
10175 char *v = XGetDefault (dpyinfo->display, "Xft", "dpi");
10176 double d;
10177 if (v != NULL && sscanf (v, "%lf", &d) == 1)
10178 dpyinfo->resy = dpyinfo->resx = d;
10179 }
10180 #endif
10181
10182 if (dpyinfo->resy < 1)
10183 {
10184 int screen_number = XScreenNumberOfScreen (dpyinfo->screen);
10185 double pixels = DisplayHeight (dpyinfo->display, screen_number);
10186 double mm = DisplayHeightMM (dpyinfo->display, screen_number);
10187 /* Mac OS X 10.3's Xserver sometimes reports 0.0mm. */
10188 dpyinfo->resy = (mm < 1) ? 100 : pixels * 25.4 / mm;
10189 pixels = DisplayWidth (dpyinfo->display, screen_number);
10190 mm = DisplayWidthMM (dpyinfo->display, screen_number);
10191 /* Mac OS X 10.3's Xserver sometimes reports 0.0mm. */
10192 dpyinfo->resx = (mm < 1) ? 100 : pixels * 25.4 / mm;
10193 }
10194
10195 dpyinfo->Xatom_wm_protocols
10196 = XInternAtom (dpyinfo->display, "WM_PROTOCOLS", False);
10197 dpyinfo->Xatom_wm_take_focus
10198 = XInternAtom (dpyinfo->display, "WM_TAKE_FOCUS", False);
10199 dpyinfo->Xatom_wm_save_yourself
10200 = XInternAtom (dpyinfo->display, "WM_SAVE_YOURSELF", False);
10201 dpyinfo->Xatom_wm_delete_window
10202 = XInternAtom (dpyinfo->display, "WM_DELETE_WINDOW", False);
10203 dpyinfo->Xatom_wm_change_state
10204 = XInternAtom (dpyinfo->display, "WM_CHANGE_STATE", False);
10205 dpyinfo->Xatom_wm_configure_denied
10206 = XInternAtom (dpyinfo->display, "WM_CONFIGURE_DENIED", False);
10207 dpyinfo->Xatom_wm_window_moved
10208 = XInternAtom (dpyinfo->display, "WM_MOVED", False);
10209 dpyinfo->Xatom_wm_client_leader
10210 = XInternAtom (dpyinfo->display, "WM_CLIENT_LEADER", False);
10211 dpyinfo->Xatom_editres
10212 = XInternAtom (dpyinfo->display, "Editres", False);
10213 dpyinfo->Xatom_CLIPBOARD
10214 = XInternAtom (dpyinfo->display, "CLIPBOARD", False);
10215 dpyinfo->Xatom_TIMESTAMP
10216 = XInternAtom (dpyinfo->display, "TIMESTAMP", False);
10217 dpyinfo->Xatom_TEXT
10218 = XInternAtom (dpyinfo->display, "TEXT", False);
10219 dpyinfo->Xatom_COMPOUND_TEXT
10220 = XInternAtom (dpyinfo->display, "COMPOUND_TEXT", False);
10221 dpyinfo->Xatom_UTF8_STRING
10222 = XInternAtom (dpyinfo->display, "UTF8_STRING", False);
10223 dpyinfo->Xatom_DELETE
10224 = XInternAtom (dpyinfo->display, "DELETE", False);
10225 dpyinfo->Xatom_MULTIPLE
10226 = XInternAtom (dpyinfo->display, "MULTIPLE", False);
10227 dpyinfo->Xatom_INCR
10228 = XInternAtom (dpyinfo->display, "INCR", False);
10229 dpyinfo->Xatom_EMACS_TMP
10230 = XInternAtom (dpyinfo->display, "_EMACS_TMP_", False);
10231 dpyinfo->Xatom_TARGETS
10232 = XInternAtom (dpyinfo->display, "TARGETS", False);
10233 dpyinfo->Xatom_NULL
10234 = XInternAtom (dpyinfo->display, "NULL", False);
10235 dpyinfo->Xatom_ATOM_PAIR
10236 = XInternAtom (dpyinfo->display, "ATOM_PAIR", False);
10237 /* For properties of font. */
10238 dpyinfo->Xatom_PIXEL_SIZE
10239 = XInternAtom (dpyinfo->display, "PIXEL_SIZE", False);
10240 dpyinfo->Xatom_AVERAGE_WIDTH
10241 = XInternAtom (dpyinfo->display, "AVERAGE_WIDTH", False);
10242 dpyinfo->Xatom_MULE_BASELINE_OFFSET
10243 = XInternAtom (dpyinfo->display, "_MULE_BASELINE_OFFSET", False);
10244 dpyinfo->Xatom_MULE_RELATIVE_COMPOSE
10245 = XInternAtom (dpyinfo->display, "_MULE_RELATIVE_COMPOSE", False);
10246 dpyinfo->Xatom_MULE_DEFAULT_ASCENT
10247 = XInternAtom (dpyinfo->display, "_MULE_DEFAULT_ASCENT", False);
10248
10249 /* Ghostscript support. */
10250 dpyinfo->Xatom_PAGE = XInternAtom (dpyinfo->display, "PAGE", False);
10251 dpyinfo->Xatom_DONE = XInternAtom (dpyinfo->display, "DONE", False);
10252
10253 dpyinfo->Xatom_Scrollbar = XInternAtom (dpyinfo->display, "SCROLLBAR",
10254 False);
10255
10256 dpyinfo->Xatom_XEMBED = XInternAtom (dpyinfo->display, "_XEMBED",
10257 False);
10258
10259 dpyinfo->Xatom_net_wm_state
10260 = XInternAtom (dpyinfo->display, "_NET_WM_STATE", False);
10261 dpyinfo->Xatom_net_wm_state_fullscreen_atom
10262 = XInternAtom (dpyinfo->display, "_NET_WM_STATE_FULLSCREEN", False);
10263 dpyinfo->Xatom_net_wm_state_maximized_horz
10264 = XInternAtom (dpyinfo->display, "_NET_WM_STATE_MAXIMIZED_HORZ", False);
10265 dpyinfo->Xatom_net_wm_state_maximized_vert
10266 = XInternAtom (dpyinfo->display, "_NET_WM_STATE_MAXIMIZED_VERT", False);
10267 dpyinfo->Xatom_net_wm_state_sticky
10268 = XInternAtom (dpyinfo->display, "_NET_WM_STATE_STICKY", False);
10269 dpyinfo->Xatom_net_window_type
10270 = XInternAtom (dpyinfo->display, "_NET_WM_WINDOW_TYPE", False);
10271 dpyinfo->Xatom_net_window_type_tooltip
10272 = XInternAtom (dpyinfo->display, "_NET_WM_WINDOW_TYPE_TOOLTIP", False);
10273 dpyinfo->Xatom_net_wm_icon_name
10274 = XInternAtom (dpyinfo->display, "_NET_WM_ICON_NAME", False);
10275 dpyinfo->Xatom_net_wm_name
10276 = XInternAtom (dpyinfo->display, "_NET_WM_NAME", False);
10277
10278 dpyinfo->x_dnd_atoms_size = 8;
10279 dpyinfo->x_dnd_atoms_length = 0;
10280 dpyinfo->x_dnd_atoms = xmalloc (sizeof (*dpyinfo->x_dnd_atoms)
10281 * dpyinfo->x_dnd_atoms_size);
10282
10283 dpyinfo->net_supported_atoms = NULL;
10284 dpyinfo->nr_net_supported_atoms = 0;
10285 dpyinfo->net_supported_window = 0;
10286
10287 connection = ConnectionNumber (dpyinfo->display);
10288 dpyinfo->connection = connection;
10289
10290 {
10291 dpyinfo->gray
10292 = XCreatePixmapFromBitmapData (dpyinfo->display, dpyinfo->root_window,
10293 gray_bitmap_bits,
10294 gray_bitmap_width, gray_bitmap_height,
10295 (unsigned long) 1, (unsigned long) 0, 1);
10296 }
10297
10298 #ifdef HAVE_X_I18N
10299 xim_initialize (dpyinfo, resource_name);
10300 #endif
10301
10302 xsettings_initialize (dpyinfo);
10303
10304 /* This is only needed for distinguishing keyboard and process input. */
10305 if (connection != 0)
10306 add_keyboard_wait_descriptor (connection);
10307
10308 #ifdef F_SETOWN
10309 fcntl (connection, F_SETOWN, getpid ());
10310 #endif /* ! defined (F_SETOWN) */
10311
10312 #ifdef SIGIO
10313 if (interrupt_input)
10314 init_sigio (connection);
10315 #endif /* ! defined (SIGIO) */
10316
10317 #ifdef USE_LUCID
10318 {
10319 Display *dpy = dpyinfo->display;
10320 XrmValue d, fr, to;
10321 Font font;
10322
10323 d.addr = (XPointer)&dpy;
10324 d.size = sizeof (Display *);
10325 fr.addr = XtDefaultFont;
10326 fr.size = sizeof (XtDefaultFont);
10327 to.size = sizeof (Font *);
10328 to.addr = (XPointer)&font;
10329 x_catch_errors (dpy);
10330 if (!XtCallConverter (dpy, XtCvtStringToFont, &d, 1, &fr, &to, NULL))
10331 abort ();
10332 if (x_had_errors_p (dpy) || !XQueryFont (dpy, font))
10333 XrmPutLineResource (&xrdb, "Emacs.dialog.*.font: 9x15");
10334 x_uncatch_errors ();
10335 }
10336 #endif
10337
10338 /* See if we should run in synchronous mode. This is useful
10339 for debugging X code. */
10340 {
10341 Lisp_Object value;
10342 value = display_x_get_resource (dpyinfo,
10343 build_string ("synchronous"),
10344 build_string ("Synchronous"),
10345 Qnil, Qnil);
10346 if (STRINGP (value)
10347 && (!strcmp (SDATA (value), "true")
10348 || !strcmp (SDATA (value), "on")))
10349 XSynchronize (dpyinfo->display, True);
10350 }
10351
10352 {
10353 Lisp_Object value;
10354 value = display_x_get_resource (dpyinfo,
10355 build_string ("useXIM"),
10356 build_string ("UseXIM"),
10357 Qnil, Qnil);
10358 #ifdef USE_XIM
10359 if (STRINGP (value)
10360 && (!strcmp (SDATA (value), "false")
10361 || !strcmp (SDATA (value), "off")))
10362 use_xim = 0;
10363 #else
10364 if (STRINGP (value)
10365 && (!strcmp (SDATA (value), "true")
10366 || !strcmp (SDATA (value), "on")))
10367 use_xim = 1;
10368 #endif
10369 }
10370
10371 #ifdef HAVE_X_SM
10372 /* Only do this for the very first display in the Emacs session.
10373 Ignore X session management when Emacs was first started on a
10374 tty. */
10375 if (terminal->id == 1)
10376 x_session_initialize (dpyinfo);
10377 #endif
10378
10379 UNBLOCK_INPUT;
10380
10381 return dpyinfo;
10382 }
10383 \f
10384 /* Get rid of display DPYINFO, deleting all frames on it,
10385 and without sending any more commands to the X server. */
10386
10387 void
10388 x_delete_display (struct x_display_info *dpyinfo)
10389 {
10390 struct terminal *t;
10391
10392 /* Close all frames and delete the generic struct terminal for this
10393 X display. */
10394 for (t = terminal_list; t; t = t->next_terminal)
10395 if (t->type == output_x_window && t->display_info.x == dpyinfo)
10396 {
10397 #ifdef HAVE_X_SM
10398 /* Close X session management when we close its display. */
10399 if (t->id == 1 && x_session_have_connection ())
10400 x_session_close ();
10401 #endif
10402 delete_terminal (t);
10403 break;
10404 }
10405
10406 delete_keyboard_wait_descriptor (dpyinfo->connection);
10407
10408 /* Discard this display from x_display_name_list and x_display_list.
10409 We can't use Fdelq because that can quit. */
10410 if (! NILP (x_display_name_list)
10411 && EQ (XCAR (x_display_name_list), dpyinfo->name_list_element))
10412 x_display_name_list = XCDR (x_display_name_list);
10413 else
10414 {
10415 Lisp_Object tail;
10416
10417 tail = x_display_name_list;
10418 while (CONSP (tail) && CONSP (XCDR (tail)))
10419 {
10420 if (EQ (XCAR (XCDR (tail)), dpyinfo->name_list_element))
10421 {
10422 XSETCDR (tail, XCDR (XCDR (tail)));
10423 break;
10424 }
10425 tail = XCDR (tail);
10426 }
10427 }
10428
10429 if (next_noop_dpyinfo == dpyinfo)
10430 next_noop_dpyinfo = dpyinfo->next;
10431
10432 if (x_display_list == dpyinfo)
10433 x_display_list = dpyinfo->next;
10434 else
10435 {
10436 struct x_display_info *tail;
10437
10438 for (tail = x_display_list; tail; tail = tail->next)
10439 if (tail->next == dpyinfo)
10440 tail->next = tail->next->next;
10441 }
10442
10443 xfree (dpyinfo->x_id_name);
10444 xfree (dpyinfo->x_dnd_atoms);
10445 xfree (dpyinfo->color_cells);
10446 xfree (dpyinfo);
10447 }
10448
10449 #ifdef USE_X_TOOLKIT
10450
10451 /* Atimer callback function for TIMER. Called every 0.1s to process
10452 Xt timeouts, if needed. We must avoid calling XtAppPending as
10453 much as possible because that function does an implicit XFlush
10454 that slows us down. */
10455
10456 static void
10457 x_process_timeouts (struct atimer *timer)
10458 {
10459 BLOCK_INPUT;
10460 x_timeout_atimer_activated_flag = 0;
10461 if (toolkit_scroll_bar_interaction || popup_activated ())
10462 {
10463 while (XtAppPending (Xt_app_con) & XtIMTimer)
10464 XtAppProcessEvent (Xt_app_con, XtIMTimer);
10465 /* Reactivate the atimer for next time. */
10466 x_activate_timeout_atimer ();
10467 }
10468 UNBLOCK_INPUT;
10469 }
10470
10471 /* Install an asynchronous timer that processes Xt timeout events
10472 every 0.1s as long as either `toolkit_scroll_bar_interaction' or
10473 `popup_activated_flag' (in xmenu.c) is set. Make sure to call this
10474 function whenever these variables are set. This is necessary
10475 because some widget sets use timeouts internally, for example the
10476 LessTif menu bar, or the Xaw3d scroll bar. When Xt timeouts aren't
10477 processed, these widgets don't behave normally. */
10478
10479 void
10480 x_activate_timeout_atimer (void)
10481 {
10482 BLOCK_INPUT;
10483 if (!x_timeout_atimer_activated_flag)
10484 {
10485 EMACS_TIME interval;
10486
10487 EMACS_SET_SECS_USECS (interval, 0, 100000);
10488 start_atimer (ATIMER_RELATIVE, interval, x_process_timeouts, 0);
10489 x_timeout_atimer_activated_flag = 1;
10490 }
10491 UNBLOCK_INPUT;
10492 }
10493
10494 #endif /* USE_X_TOOLKIT */
10495
10496 \f
10497 /* Set up use of X before we make the first connection. */
10498
10499 extern frame_parm_handler x_frame_parm_handlers[];
10500
10501 static struct redisplay_interface x_redisplay_interface =
10502 {
10503 x_frame_parm_handlers,
10504 x_produce_glyphs,
10505 x_write_glyphs,
10506 x_insert_glyphs,
10507 x_clear_end_of_line,
10508 x_scroll_run,
10509 x_after_update_window_line,
10510 x_update_window_begin,
10511 x_update_window_end,
10512 x_cursor_to,
10513 x_flush,
10514 #ifdef XFlush
10515 x_flush,
10516 #else
10517 0, /* flush_display_optional */
10518 #endif
10519 x_clear_window_mouse_face,
10520 x_get_glyph_overhangs,
10521 x_fix_overlapping_area,
10522 x_draw_fringe_bitmap,
10523 0, /* define_fringe_bitmap */
10524 0, /* destroy_fringe_bitmap */
10525 x_compute_glyph_string_overhangs,
10526 x_draw_glyph_string,
10527 x_define_frame_cursor,
10528 x_clear_frame_area,
10529 x_draw_window_cursor,
10530 x_draw_vertical_window_border,
10531 x_shift_glyphs_for_insert
10532 };
10533
10534
10535 /* This function is called when the last frame on a display is deleted. */
10536 void
10537 x_delete_terminal (struct terminal *terminal)
10538 {
10539 struct x_display_info *dpyinfo = terminal->display_info.x;
10540
10541 /* Protect against recursive calls. delete_frame in
10542 delete_terminal calls us back when it deletes our last frame. */
10543 if (!terminal->name)
10544 return;
10545
10546 BLOCK_INPUT;
10547 #ifdef HAVE_X_I18N
10548 /* We must close our connection to the XIM server before closing the
10549 X display. */
10550 if (dpyinfo->xim)
10551 xim_close_dpy (dpyinfo);
10552 #endif
10553
10554 /* If called from x_connection_closed, the display may already be closed
10555 and dpyinfo->display was set to 0 to indicate that. */
10556 if (dpyinfo->display)
10557 {
10558 x_destroy_all_bitmaps (dpyinfo);
10559 XSetCloseDownMode (dpyinfo->display, DestroyAll);
10560
10561 /* Whether or not XCloseDisplay destroys the associated resource
10562 database depends on the version of libX11. To avoid both
10563 crash and memory leak, we dissociate the database from the
10564 display and then destroy dpyinfo->xrdb ourselves.
10565
10566 Unfortunately, the above strategy does not work in some
10567 situations due to a bug in newer versions of libX11: because
10568 XrmSetDatabase doesn't clear the flag XlibDisplayDfltRMDB if
10569 dpy->db is NULL, XCloseDisplay destroys the associated
10570 database whereas it has not been created by XGetDefault
10571 (Bug#21974 in freedesktop.org Bugzilla). As a workaround, we
10572 don't destroy the database here in order to avoid the crash
10573 in the above situations for now, though that may cause memory
10574 leaks in other situations. */
10575 #if 0
10576 #ifdef HAVE_XRMSETDATABASE
10577 XrmSetDatabase (dpyinfo->display, NULL);
10578 #else
10579 dpyinfo->display->db = NULL;
10580 #endif
10581 /* We used to call XrmDestroyDatabase from x_delete_display, but
10582 some older versions of libX11 crash if we call it after
10583 closing all the displays. */
10584 XrmDestroyDatabase (dpyinfo->xrdb);
10585 #endif
10586
10587 #ifdef USE_GTK
10588 xg_display_close (dpyinfo->display);
10589 #else
10590 #ifdef USE_X_TOOLKIT
10591 XtCloseDisplay (dpyinfo->display);
10592 #else
10593 XCloseDisplay (dpyinfo->display);
10594 #endif
10595 #endif /* ! USE_GTK */
10596 }
10597
10598 /* Mark as dead. */
10599 dpyinfo->display = NULL;
10600 x_delete_display (dpyinfo);
10601 UNBLOCK_INPUT;
10602 }
10603
10604 /* Create a struct terminal, initialize it with the X11 specific
10605 functions and make DISPLAY->TERMINAL point to it. */
10606
10607 static struct terminal *
10608 x_create_terminal (struct x_display_info *dpyinfo)
10609 {
10610 struct terminal *terminal;
10611
10612 terminal = create_terminal ();
10613
10614 terminal->type = output_x_window;
10615 terminal->display_info.x = dpyinfo;
10616 dpyinfo->terminal = terminal;
10617
10618 /* kboard is initialized in x_term_init. */
10619
10620 terminal->clear_frame_hook = x_clear_frame;
10621 terminal->ins_del_lines_hook = x_ins_del_lines;
10622 terminal->delete_glyphs_hook = x_delete_glyphs;
10623 terminal->ring_bell_hook = XTring_bell;
10624 terminal->toggle_invisible_pointer_hook = XTtoggle_invisible_pointer;
10625 terminal->reset_terminal_modes_hook = XTreset_terminal_modes;
10626 terminal->set_terminal_modes_hook = XTset_terminal_modes;
10627 terminal->update_begin_hook = x_update_begin;
10628 terminal->update_end_hook = x_update_end;
10629 terminal->set_terminal_window_hook = XTset_terminal_window;
10630 terminal->read_socket_hook = XTread_socket;
10631 terminal->frame_up_to_date_hook = XTframe_up_to_date;
10632 terminal->mouse_position_hook = XTmouse_position;
10633 terminal->frame_rehighlight_hook = XTframe_rehighlight;
10634 terminal->frame_raise_lower_hook = XTframe_raise_lower;
10635 terminal->fullscreen_hook = XTfullscreen_hook;
10636 terminal->set_vertical_scroll_bar_hook = XTset_vertical_scroll_bar;
10637 terminal->condemn_scroll_bars_hook = XTcondemn_scroll_bars;
10638 terminal->redeem_scroll_bar_hook = XTredeem_scroll_bar;
10639 terminal->judge_scroll_bars_hook = XTjudge_scroll_bars;
10640
10641 terminal->delete_frame_hook = x_destroy_window;
10642 terminal->delete_terminal_hook = x_delete_terminal;
10643
10644 terminal->rif = &x_redisplay_interface;
10645 terminal->scroll_region_ok = 1; /* We'll scroll partial frames. */
10646 terminal->char_ins_del_ok = 1;
10647 terminal->line_ins_del_ok = 1; /* We'll just blt 'em. */
10648 terminal->fast_clear_end_of_line = 1; /* X does this well. */
10649 terminal->memory_below_frame = 0; /* We don't remember what scrolls
10650 off the bottom. */
10651
10652 return terminal;
10653 }
10654
10655 void
10656 x_initialize (void)
10657 {
10658 baud_rate = 19200;
10659
10660 x_noop_count = 0;
10661 last_tool_bar_item = -1;
10662 any_help_event_p = 0;
10663 ignore_next_mouse_click_timeout = 0;
10664 #ifdef HAVE_X_SM
10665 x_session_initialized = 0;
10666 #endif
10667
10668 #ifdef USE_GTK
10669 current_count = -1;
10670 #endif
10671
10672 /* Try to use interrupt input; if we can't, then start polling. */
10673 Fset_input_interrupt_mode (Qt);
10674
10675 #ifdef USE_X_TOOLKIT
10676 XtToolkitInitialize ();
10677
10678 Xt_app_con = XtCreateApplicationContext ();
10679
10680 /* Register a converter from strings to pixels, which uses
10681 Emacs' color allocation infrastructure. */
10682 XtAppSetTypeConverter (Xt_app_con,
10683 XtRString, XtRPixel, cvt_string_to_pixel,
10684 cvt_string_to_pixel_args,
10685 XtNumber (cvt_string_to_pixel_args),
10686 XtCacheByDisplay, cvt_pixel_dtor);
10687
10688 XtAppSetFallbackResources (Xt_app_con, Xt_default_resources);
10689 #endif
10690
10691 #ifdef USE_TOOLKIT_SCROLL_BARS
10692 #ifndef USE_GTK
10693 xaw3d_arrow_scroll = False;
10694 xaw3d_pick_top = True;
10695 #endif
10696 #endif
10697
10698 pending_autoraise_frame = 0;
10699 pending_event_wait.f = 0;
10700 pending_event_wait.eventtype = 0;
10701
10702 /* Note that there is no real way portable across R3/R4 to get the
10703 original error handler. */
10704 XSetErrorHandler (x_error_handler);
10705 XSetIOErrorHandler (x_io_error_quitter);
10706
10707 signal (SIGPIPE, x_connection_signal);
10708
10709 xgselect_initialize ();
10710 }
10711
10712
10713 void
10714 syms_of_xterm (void)
10715 {
10716 x_error_message = NULL;
10717
10718 staticpro (&x_display_name_list);
10719 x_display_name_list = Qnil;
10720
10721 staticpro (&last_mouse_scroll_bar);
10722 last_mouse_scroll_bar = Qnil;
10723
10724 staticpro (&Qvendor_specific_keysyms);
10725 Qvendor_specific_keysyms = intern_c_string ("vendor-specific-keysyms");
10726
10727 staticpro (&Qlatin_1);
10728 Qlatin_1 = intern_c_string ("latin-1");
10729
10730 staticpro (&last_mouse_press_frame);
10731 last_mouse_press_frame = Qnil;
10732
10733 #ifdef USE_GTK
10734 xg_default_icon_file = make_pure_c_string ("icons/hicolor/scalable/apps/emacs.svg");
10735 staticpro (&xg_default_icon_file);
10736
10737 Qx_gtk_map_stock = intern_c_string ("x-gtk-map-stock");
10738 staticpro (&Qx_gtk_map_stock);
10739 #endif
10740
10741 DEFVAR_BOOL ("x-use-underline-position-properties",
10742 &x_use_underline_position_properties,
10743 doc: /* *Non-nil means make use of UNDERLINE_POSITION font properties.
10744 A value of nil means ignore them. If you encounter fonts with bogus
10745 UNDERLINE_POSITION font properties, for example 7x13 on XFree prior
10746 to 4.1, set this to nil. You can also use `underline-minimum-offset'
10747 to override the font's UNDERLINE_POSITION for small font display
10748 sizes. */);
10749 x_use_underline_position_properties = 1;
10750
10751 DEFVAR_BOOL ("x-underline-at-descent-line",
10752 &x_underline_at_descent_line,
10753 doc: /* *Non-nil means to draw the underline at the same place as the descent line.
10754 A value of nil means to draw the underline according to the value of the
10755 variable `x-use-underline-position-properties', which is usually at the
10756 baseline level. The default value is nil. */);
10757 x_underline_at_descent_line = 0;
10758
10759 DEFVAR_BOOL ("x-mouse-click-focus-ignore-position",
10760 &x_mouse_click_focus_ignore_position,
10761 doc: /* Non-nil means that a mouse click to focus a frame does not move point.
10762 This variable is only used when the window manager requires that you
10763 click on a frame to select it (give it focus). In that case, a value
10764 of nil, means that the selected window and cursor position changes to
10765 reflect the mouse click position, while a non-nil value means that the
10766 selected window or cursor position is preserved. */);
10767 x_mouse_click_focus_ignore_position = 0;
10768
10769 DEFVAR_LISP ("x-toolkit-scroll-bars", &Vx_toolkit_scroll_bars,
10770 doc: /* Which toolkit scroll bars Emacs uses, if any.
10771 A value of nil means Emacs doesn't use toolkit scroll bars.
10772 With the X Window system, the value is a symbol describing the
10773 X toolkit. Possible values are: gtk, motif, xaw, or xaw3d.
10774 With MS Windows, the value is t. */);
10775 #ifdef USE_TOOLKIT_SCROLL_BARS
10776 #ifdef USE_MOTIF
10777 Vx_toolkit_scroll_bars = intern_c_string ("motif");
10778 #elif defined HAVE_XAW3D
10779 Vx_toolkit_scroll_bars = intern_c_string ("xaw3d");
10780 #elif USE_GTK
10781 Vx_toolkit_scroll_bars = intern_c_string ("gtk");
10782 #else
10783 Vx_toolkit_scroll_bars = intern_c_string ("xaw");
10784 #endif
10785 #else
10786 Vx_toolkit_scroll_bars = Qnil;
10787 #endif
10788
10789 staticpro (&last_mouse_motion_frame);
10790 last_mouse_motion_frame = Qnil;
10791
10792 Qmodifier_value = intern_c_string ("modifier-value");
10793 Qalt = intern_c_string ("alt");
10794 Fput (Qalt, Qmodifier_value, make_number (alt_modifier));
10795 Qhyper = intern_c_string ("hyper");
10796 Fput (Qhyper, Qmodifier_value, make_number (hyper_modifier));
10797 Qmeta = intern_c_string ("meta");
10798 Fput (Qmeta, Qmodifier_value, make_number (meta_modifier));
10799 Qsuper = intern_c_string ("super");
10800 Fput (Qsuper, Qmodifier_value, make_number (super_modifier));
10801
10802 DEFVAR_LISP ("x-alt-keysym", &Vx_alt_keysym,
10803 doc: /* Which keys Emacs uses for the alt modifier.
10804 This should be one of the symbols `alt', `hyper', `meta', `super'.
10805 For example, `alt' means use the Alt_L and Alt_R keysyms. The default
10806 is nil, which is the same as `alt'. */);
10807 Vx_alt_keysym = Qnil;
10808
10809 DEFVAR_LISP ("x-hyper-keysym", &Vx_hyper_keysym,
10810 doc: /* Which keys Emacs uses for the hyper modifier.
10811 This should be one of the symbols `alt', `hyper', `meta', `super'.
10812 For example, `hyper' means use the Hyper_L and Hyper_R keysyms. The
10813 default is nil, which is the same as `hyper'. */);
10814 Vx_hyper_keysym = Qnil;
10815
10816 DEFVAR_LISP ("x-meta-keysym", &Vx_meta_keysym,
10817 doc: /* Which keys Emacs uses for the meta modifier.
10818 This should be one of the symbols `alt', `hyper', `meta', `super'.
10819 For example, `meta' means use the Meta_L and Meta_R keysyms. The
10820 default is nil, which is the same as `meta'. */);
10821 Vx_meta_keysym = Qnil;
10822
10823 DEFVAR_LISP ("x-super-keysym", &Vx_super_keysym,
10824 doc: /* Which keys Emacs uses for the super modifier.
10825 This should be one of the symbols `alt', `hyper', `meta', `super'.
10826 For example, `super' means use the Super_L and Super_R keysyms. The
10827 default is nil, which is the same as `super'. */);
10828 Vx_super_keysym = Qnil;
10829
10830 DEFVAR_LISP ("x-keysym-table", &Vx_keysym_table,
10831 doc: /* Hash table of character codes indexed by X keysym codes. */);
10832 Vx_keysym_table = make_hash_table (Qeql, make_number (900),
10833 make_float (DEFAULT_REHASH_SIZE),
10834 make_float (DEFAULT_REHASH_THRESHOLD),
10835 Qnil, Qnil, Qnil);
10836 }
10837
10838 #endif /* HAVE_X_WINDOWS */
10839