comparison src/event-Xt.c @ 428:3ecd8885ac67 r21-2-22

Import from CVS: tag r21-2-22
author cvs
date Mon, 13 Aug 2007 11:28:15 +0200
parents
children 84b14dcb0985
comparison
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427:0a0253eac470 428:3ecd8885ac67
1 /* The event_stream interface for X11 with Xt, and/or tty frames.
2 Copyright (C) 1991-5, 1997 Free Software Foundation, Inc.
3 Copyright (C) 1995 Sun Microsystems, Inc.
4 Copyright (C) 1996 Ben Wing.
5
6 This file is part of XEmacs.
7
8 XEmacs is free software; you can redistribute it and/or modify it
9 under the terms of the GNU General Public License as published by the
10 Free Software Foundation; either version 2, or (at your option) any
11 later version.
12
13 XEmacs is distributed in the hope that it will be useful, but WITHOUT
14 ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or
15 FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License
16 for more details.
17
18 You should have received a copy of the GNU General Public License
19 along with XEmacs; see the file COPYING. If not, write to
20 the Free Software Foundation, Inc., 59 Temple Place - Suite 330,
21 Boston, MA 02111-1307, USA. */
22
23 /* Synched up with: Not in FSF. */
24
25 #include <config.h>
26 #include "lisp.h"
27
28 #include "console-x.h"
29 #include "../lwlib/lwlib.h"
30 #include "EmacsFrame.h"
31
32 #include "blocktype.h"
33 #include "buffer.h"
34 #include "console.h"
35 #include "console-tty.h"
36 #include "events.h"
37 #include "frame.h"
38 #include "objects-x.h"
39 #include "process.h"
40 #include "redisplay.h"
41 #include "elhash.h"
42
43 #include "systime.h"
44 #include "sysproc.h" /* for MAXDESC */
45
46 #include "xintrinsicp.h" /* CoreP.h needs this */
47 #include <X11/CoreP.h> /* Numerous places access the fields of
48 a core widget directly. We could
49 use XtGetValues(), but ... */
50 #include <X11/ShellP.h>
51
52 #ifdef HAVE_XIM
53 #ifdef XIM_MOTIF
54 #include <Xm/Xm.h>
55 #endif
56 #include "lstream.h"
57 #include "file-coding.h"
58 #endif
59
60 #ifdef HAVE_DRAGNDROP
61 #include "dragdrop.h"
62 #endif
63
64 #if defined (HAVE_OFFIX_DND)
65 #include "offix.h"
66 #endif
67
68 #ifdef WINDOWSNT
69 /* Hmm, under unix we want X modifiers, under NT we want X modifiers if
70 we are running X and Windows modifiers otherwise.
71 gak. This is a kludge until we support multiple native GUIs!
72 */
73 #undef MOD_ALT
74 #undef MOD_CONTROL
75 #undef MOD_SHIFT
76 #endif
77
78 #include "events-mod.h"
79
80 static void enqueue_Xt_dispatch_event (Lisp_Object event);
81 static void handle_focus_event_1 (struct frame *f, int in_p);
82
83 static struct event_stream *Xt_event_stream;
84
85 /* With the new event model, all events go through XtDispatchEvent()
86 and are picked up by an event handler that is added to each frame
87 widget. (This is how it's supposed to be.) In the old method,
88 Emacs sucks out events directly from XtNextEvent() and only
89 dispatches the events that it doesn't need to deal with. This
90 old way has lots of corresponding junk that is no longer
91 necessary: lwlib extensions, synthetic XAnyEvents, unnecessary
92 magic events, etc. */
93
94 /* The one and only one application context that Emacs uses. */
95 XtAppContext Xt_app_con;
96
97 /* Do we accept events sent by other clients? */
98 int x_allow_sendevents;
99
100 int modifier_keys_are_sticky;
101
102 #ifdef DEBUG_XEMACS
103 int x_debug_events;
104 #endif
105
106 static int process_events_occurred;
107 static int tty_events_occurred;
108
109 /* Mask of bits indicating the descriptors that we wait for input on */
110 extern SELECT_TYPE input_wait_mask, process_only_mask, tty_only_mask;
111
112 static CONST String x_fallback_resources[] =
113 {
114 /* This file is automatically generated from the app-defaults file
115 in ../etc/Emacs.ad. These resources are consulted only if no
116 app-defaults file is found at all.
117 */
118 #include <Emacs.ad.h>
119 0
120 };
121
122 static Lisp_Object x_keysym_to_emacs_keysym (KeySym keysym, int simple_p);
123 void emacs_Xt_mapping_action (Widget w, XEvent *event);
124 void debug_process_finalization (struct Lisp_Process *p);
125 void emacs_Xt_event_handler (Widget wid, XtPointer closure, XEvent *event,
126 Boolean *continue_to_dispatch);
127
128 static int last_quit_check_signal_tick_count;
129
130 Lisp_Object Qkey_mapping;
131 Lisp_Object Qsans_modifiers;
132
133
134 /************************************************************************/
135 /* keymap handling */
136 /************************************************************************/
137
138 /* X bogusly doesn't define the interpretations of any bits besides
139 ModControl, ModShift, and ModLock; so the Interclient Communication
140 Conventions Manual says that we have to bend over backwards to figure
141 out what the other modifier bits mean. According to ICCCM:
142
143 - Any keycode which is assigned ModControl is a "control" key.
144
145 - Any modifier bit which is assigned to a keycode which generates Meta_L
146 or Meta_R is the modifier bit meaning "meta". Likewise for Super, Hyper,
147 etc.
148
149 - Any keypress event which contains ModControl in its state should be
150 interpreted as a "control" character.
151
152 - Any keypress event which contains a modifier bit in its state which is
153 generated by a keycode whose corresponding keysym is Meta_L or Meta_R
154 should be interpreted as a "meta" character. Likewise for Super, Hyper,
155 etc.
156
157 - It is illegal for a keysym to be associated with more than one modifier
158 bit.
159
160 This means that the only thing that emacs can reasonably interpret as a
161 "meta" key is a key whose keysym is Meta_L or Meta_R, and which generates
162 one of the modifier bits Mod1-Mod5.
163
164 Unfortunately, many keyboards don't have Meta keys in their default
165 configuration. So, if there are no Meta keys, but there are "Alt" keys,
166 emacs will interpret Alt as Meta. If there are both Meta and Alt keys,
167 then the Meta keys mean "Meta", and the Alt keys mean "Alt" (it used to
168 mean "Symbol," but that just confused the hell out of way too many people).
169
170 This works with the default configurations of the 19 keyboard-types I've
171 checked.
172
173 Emacs detects keyboard configurations which violate the above rules, and
174 prints an error message on the standard-error-output. (Perhaps it should
175 use a pop-up-window instead.)
176 */
177
178 static void
179 x_reset_key_mapping (struct device *d)
180 {
181 Display *display = DEVICE_X_DISPLAY (d);
182 struct x_device *xd = DEVICE_X_DATA (d);
183 KeySym *keysym, *keysym_end;
184 Lisp_Object hash_table;
185 int key_code_count, keysyms_per_code;
186
187 if (xd->x_keysym_map)
188 XFree ((char *) xd->x_keysym_map);
189 XDisplayKeycodes (display,
190 &xd->x_keysym_map_min_code,
191 &xd->x_keysym_map_max_code);
192 key_code_count = xd->x_keysym_map_max_code - xd->x_keysym_map_min_code + 1;
193 xd->x_keysym_map =
194 XGetKeyboardMapping (display, xd->x_keysym_map_min_code, key_code_count,
195 &xd->x_keysym_map_keysyms_per_code);
196
197 hash_table = xd->x_keysym_map_hash_table;
198 if (HASH_TABLEP (hash_table))
199 Fclrhash (hash_table);
200 else
201 xd->x_keysym_map_hash_table = hash_table =
202 make_lisp_hash_table (128, HASH_TABLE_NON_WEAK, HASH_TABLE_EQUAL);
203
204 for (keysym = xd->x_keysym_map,
205 keysyms_per_code = xd->x_keysym_map_keysyms_per_code,
206 keysym_end = keysym + (key_code_count * keysyms_per_code);
207 keysym < keysym_end;
208 keysym += keysyms_per_code)
209 {
210 int j;
211
212 if (keysym[0] == NoSymbol)
213 continue;
214
215 {
216 char *name = XKeysymToString (keysym[0]);
217 Lisp_Object sym = x_keysym_to_emacs_keysym (keysym[0], 0);
218 if (name)
219 {
220 Fputhash (build_string (name), Qsans_modifiers, hash_table);
221 Fputhash (sym, Qsans_modifiers, hash_table);
222 }
223 }
224
225 for (j = 1; j < keysyms_per_code; j++)
226 {
227 if (keysym[j] != keysym[0] &&
228 keysym[j] != NoSymbol)
229 {
230 char *name = XKeysymToString (keysym[j]);
231 Lisp_Object sym = x_keysym_to_emacs_keysym (keysym[j], 0);
232 if (name && NILP (Fgethash (sym, hash_table, Qnil)))
233 {
234 Fputhash (build_string (name), Qt, hash_table);
235 Fputhash (sym, Qt, hash_table);
236 }
237 }
238 }
239 }
240 }
241
242 static CONST char *
243 index_to_name (int indice)
244 {
245 switch (indice)
246 {
247 case ShiftMapIndex: return "ModShift";
248 case LockMapIndex: return "ModLock";
249 case ControlMapIndex: return "ModControl";
250 case Mod1MapIndex: return "Mod1";
251 case Mod2MapIndex: return "Mod2";
252 case Mod3MapIndex: return "Mod3";
253 case Mod4MapIndex: return "Mod4";
254 case Mod5MapIndex: return "Mod5";
255 default: return "???";
256 }
257 }
258
259 /* Boy, I really wish C had local functions... */
260 struct c_doesnt_have_closures /* #### not yet used */
261 {
262 int warned_about_overlapping_modifiers;
263 int warned_about_predefined_modifiers;
264 int warned_about_duplicate_modifiers;
265 int meta_bit;
266 int hyper_bit;
267 int super_bit;
268 int alt_bit;
269 int mode_bit;
270 };
271
272 static void
273 x_reset_modifier_mapping (struct device *d)
274 {
275 Display *display = DEVICE_X_DISPLAY (d);
276 struct x_device *xd = DEVICE_X_DATA (d);
277 int modifier_index, modifier_key, column, mkpm;
278 int warned_about_overlapping_modifiers = 0;
279 int warned_about_predefined_modifiers = 0;
280 int warned_about_duplicate_modifiers = 0;
281 int meta_bit = 0;
282 int hyper_bit = 0;
283 int super_bit = 0;
284 int alt_bit = 0;
285 int mode_bit = 0;
286
287 xd->lock_interpretation = 0;
288
289 if (xd->x_modifier_keymap)
290 XFreeModifiermap (xd->x_modifier_keymap);
291
292 x_reset_key_mapping (d);
293
294 xd->x_modifier_keymap = XGetModifierMapping (display);
295
296 /* Boy, I really wish C had local functions...
297 */
298
299 /* The call to warn_when_safe must be on the same line as the string or
300 make-msgfile won't pick it up properly (the newline doesn't confuse
301 it, but the backslash does). */
302
303 #define modwarn(name,old,other) \
304 warn_when_safe (Qkey_mapping, Qwarning, "XEmacs: %s (0x%x) generates %s, which is generated by %s.", \
305 name, code, index_to_name (old), other), \
306 warned_about_overlapping_modifiers = 1
307
308 #define modbarf(name,other) \
309 warn_when_safe (Qkey_mapping, Qwarning, "XEmacs: %s (0x%x) generates %s, which is nonsensical.", \
310 name, code, other), \
311 warned_about_predefined_modifiers = 1
312
313 #define check_modifier(name,mask) \
314 if ((1<<modifier_index) != mask) \
315 warn_when_safe (Qkey_mapping, Qwarning, "XEmacs: %s (0x%x) generates %s, which is nonsensical.", \
316 name, code, index_to_name (modifier_index)), \
317 warned_about_predefined_modifiers = 1
318
319 #define store_modifier(name,old) \
320 if (old && old != modifier_index) \
321 warn_when_safe (Qkey_mapping, Qwarning, "XEmacs: %s (0x%x) generates both %s and %s, which is nonsensical.",\
322 name, code, index_to_name (old), \
323 index_to_name (modifier_index)), \
324 warned_about_duplicate_modifiers = 1; \
325 if (modifier_index == ShiftMapIndex) modbarf (name,"ModShift"); \
326 else if (modifier_index == LockMapIndex) modbarf (name,"ModLock"); \
327 else if (modifier_index == ControlMapIndex) modbarf (name,"ModControl"); \
328 else if (sym == XK_Mode_switch) \
329 mode_bit = modifier_index; /* Mode_switch is special, see below... */ \
330 else if (modifier_index == meta_bit && old != meta_bit) \
331 modwarn (name, meta_bit, "Meta"); \
332 else if (modifier_index == super_bit && old != super_bit) \
333 modwarn (name, super_bit, "Super"); \
334 else if (modifier_index == hyper_bit && old != hyper_bit) \
335 modwarn (name, hyper_bit, "Hyper"); \
336 else if (modifier_index == alt_bit && old != alt_bit) \
337 modwarn (name, alt_bit, "Alt"); \
338 else \
339 old = modifier_index;
340
341 mkpm = xd->x_modifier_keymap->max_keypermod;
342 for (modifier_index = 0; modifier_index < 8; modifier_index++)
343 for (modifier_key = 0; modifier_key < mkpm; modifier_key++) {
344 KeySym last_sym = 0;
345 for (column = 0; column < 4; column += 2) {
346 KeyCode code = xd->x_modifier_keymap->modifiermap[modifier_index * mkpm
347 + modifier_key];
348 KeySym sym = (code ? XKeycodeToKeysym (display, code, column) : 0);
349 if (sym == last_sym) continue;
350 last_sym = sym;
351 switch (sym) {
352 case XK_Mode_switch:store_modifier ("Mode_switch", mode_bit); break;
353 case XK_Meta_L: store_modifier ("Meta_L", meta_bit); break;
354 case XK_Meta_R: store_modifier ("Meta_R", meta_bit); break;
355 case XK_Super_L: store_modifier ("Super_L", super_bit); break;
356 case XK_Super_R: store_modifier ("Super_R", super_bit); break;
357 case XK_Hyper_L: store_modifier ("Hyper_L", hyper_bit); break;
358 case XK_Hyper_R: store_modifier ("Hyper_R", hyper_bit); break;
359 case XK_Alt_L: store_modifier ("Alt_L", alt_bit); break;
360 case XK_Alt_R: store_modifier ("Alt_R", alt_bit); break;
361 case XK_Control_L: check_modifier ("Control_L", ControlMask); break;
362 case XK_Control_R: check_modifier ("Control_R", ControlMask); break;
363 case XK_Shift_L: check_modifier ("Shift_L", ShiftMask); break;
364 case XK_Shift_R: check_modifier ("Shift_R", ShiftMask); break;
365 case XK_Shift_Lock: check_modifier ("Shift_Lock", LockMask);
366 xd->lock_interpretation = XK_Shift_Lock; break;
367 case XK_Caps_Lock: check_modifier ("Caps_Lock", LockMask);
368 xd->lock_interpretation = XK_Caps_Lock; break;
369
370 /* It probably doesn't make any sense for a modifier bit to be
371 assigned to a key that is not one of the above, but OpenWindows
372 assigns modifier bits to a couple of random function keys for
373 no reason that I can discern, so printing a warning here would
374 be annoying. */
375 }
376 }
377 }
378 #undef store_modifier
379 #undef check_modifier
380 #undef modwarn
381 #undef modbarf
382
383 /* If there was no Meta key, then try using the Alt key instead.
384 If there is both a Meta key and an Alt key, then the Alt key
385 is not disturbed and remains an Alt key. */
386 if (! meta_bit && alt_bit)
387 meta_bit = alt_bit, alt_bit = 0;
388
389 /* mode_bit overrides everything, since it's processed down inside of
390 XLookupString() instead of by us. If Meta and Mode_switch both
391 generate the same modifier bit (which is an error), then we don't
392 interpret that bit as Meta, because we can't make XLookupString()
393 not interpret it as Mode_switch; and interpreting it as both would
394 be totally wrong. */
395 if (mode_bit)
396 {
397 CONST char *warn = 0;
398 if (mode_bit == meta_bit) warn = "Meta", meta_bit = 0;
399 else if (mode_bit == hyper_bit) warn = "Hyper", hyper_bit = 0;
400 else if (mode_bit == super_bit) warn = "Super", super_bit = 0;
401 else if (mode_bit == alt_bit) warn = "Alt", alt_bit = 0;
402 if (warn)
403 {
404 warn_when_safe
405 (Qkey_mapping, Qwarning,
406 "XEmacs: %s is being used for both Mode_switch and %s.",
407 index_to_name (mode_bit), warn),
408 warned_about_overlapping_modifiers = 1;
409 }
410 }
411 #undef index_to_name
412
413 xd->MetaMask = (meta_bit ? (1 << meta_bit) : 0);
414 xd->HyperMask = (hyper_bit ? (1 << hyper_bit) : 0);
415 xd->SuperMask = (super_bit ? (1 << super_bit) : 0);
416 xd->AltMask = (alt_bit ? (1 << alt_bit) : 0);
417 xd->ModeMask = (mode_bit ? (1 << mode_bit) : 0); /* unused */
418
419
420 if (warned_about_overlapping_modifiers)
421 warn_when_safe (Qkey_mapping, Qwarning, "\n"
422 " Two distinct modifier keys (such as Meta and Hyper) cannot generate\n"
423 " the same modifier bit, because Emacs won't be able to tell which\n"
424 " modifier was actually held down when some other key is pressed. It\n"
425 " won't be able to tell Meta-x and Hyper-x apart, for example. Change\n"
426 " one of these keys to use some other modifier bit. If you intend for\n"
427 " these keys to have the same behavior, then change them to have the\n"
428 " same keysym as well as the same modifier bit.");
429
430 if (warned_about_predefined_modifiers)
431 warn_when_safe (Qkey_mapping, Qwarning, "\n"
432 " The semantics of the modifier bits ModShift, ModLock, and ModControl\n"
433 " are predefined. It does not make sense to assign ModControl to any\n"
434 " keysym other than Control_L or Control_R, or to assign any modifier\n"
435 " bits to the \"control\" keysyms other than ModControl. You can't\n"
436 " turn a \"control\" key into a \"meta\" key (or vice versa) by simply\n"
437 " assigning the key a different modifier bit. You must also make that\n"
438 " key generate an appropriate keysym (Control_L, Meta_L, etc).");
439
440 /* No need to say anything more for warned_about_duplicate_modifiers. */
441
442 if (warned_about_overlapping_modifiers || warned_about_predefined_modifiers)
443 warn_when_safe (Qkey_mapping, Qwarning, "\n"
444 " The meanings of the modifier bits Mod1 through Mod5 are determined\n"
445 " by the keysyms used to control those bits. Mod1 does NOT always\n"
446 " mean Meta, although some non-ICCCM-compliant programs assume that.");
447 }
448
449 void
450 x_init_modifier_mapping (struct device *d)
451 {
452 struct x_device *xd = DEVICE_X_DATA (d);
453 xd->x_keysym_map_hash_table = Qnil;
454 xd->x_keysym_map = NULL;
455 xd->x_modifier_keymap = NULL;
456 x_reset_modifier_mapping (d);
457 }
458
459 static int
460 x_key_is_modifier_p (KeyCode keycode, struct device *d)
461 {
462 struct x_device *xd = DEVICE_X_DATA (d);
463 KeySym *syms;
464 int i;
465
466 if (keycode < xd->x_keysym_map_min_code ||
467 keycode > xd->x_keysym_map_max_code)
468 return 0;
469
470 syms = &xd->x_keysym_map [(keycode - xd->x_keysym_map_min_code) *
471 xd->x_keysym_map_keysyms_per_code];
472 for (i = 0; i < xd->x_keysym_map_keysyms_per_code; i++)
473 if (IsModifierKey (syms [i]) ||
474 syms [i] == XK_Mode_switch) /* why doesn't IsModifierKey count this? */
475 return 1;
476 return 0;
477 }
478
479 /* key-handling code is always ugly. It just ends up working out
480 that way.
481
482 Here are some pointers:
483
484 -- DOWN_MASK indicates which modifiers should be treated as "down"
485 when the corresponding upstroke happens. It gets reset for
486 a particular modifier when that modifier goes up, and reset
487 for all modifiers when a non-modifier key is pressed. Example:
488
489 I press Control-A-Shift and then release Control-A-Shift.
490 I want the Shift key to be sticky but not the Control key.
491
492 -- LAST_DOWNKEY and RELEASE_TIME are used to keep track of
493 auto-repeat -- see below.
494
495 -- If a modifier key is sticky, I can unstick it by pressing
496 the modifier key again. */
497
498 static void
499 x_handle_sticky_modifiers (XEvent *ev, struct device *d)
500 {
501 struct x_device *xd;
502 KeyCode keycode;
503 int type;
504
505 if (!modifier_keys_are_sticky) /* Optimize for non-sticky modifiers */
506 return;
507
508 xd = DEVICE_X_DATA (d);
509 keycode = ev->xkey.keycode;
510 type = ev->type;
511
512 if (keycode < xd->x_keysym_map_min_code ||
513 keycode > xd->x_keysym_map_max_code)
514 return;
515
516 if (! ((type == KeyPress || type == KeyRelease) &&
517 x_key_is_modifier_p (keycode, d)))
518 { /* Not a modifier key */
519 Bool key_event_p = (type == KeyPress || type == KeyRelease);
520
521 if (type == KeyPress && !xd->last_downkey)
522 xd->last_downkey = keycode;
523 else if (type == ButtonPress ||
524 (type == KeyPress && xd->last_downkey &&
525 (keycode != xd->last_downkey ||
526 ev->xkey.time != xd->release_time)))
527 {
528 xd->need_to_add_mask = 0;
529 xd->last_downkey = 0;
530 }
531 if (type == KeyPress)
532 xd->release_time = 0;
533 if (type == KeyPress || type == ButtonPress)
534 xd->down_mask = 0;
535
536 if (key_event_p)
537 ev->xkey.state |= xd->need_to_add_mask;
538 else
539 ev->xbutton.state |= xd->need_to_add_mask;
540
541 if (type == KeyRelease && keycode == xd->last_downkey)
542 /* If I hold press-and-release the Control key and then press
543 and hold down the right arrow, I want it to auto-repeat
544 Control-Right. On the other hand, if I do the same but
545 manually press the Right arrow a bunch of times, I want
546 to see one Control-Right and then a bunch of Rights.
547 This means that we need to distinguish between an
548 auto-repeated key and a key pressed and released a bunch
549 of times.
550
551 Naturally, the designers of the X spec didn't see fit
552 to provide an obvious way to distinguish these cases.
553 So we assume that if the release and the next press
554 occur at the same time, the key was actually auto-
555 repeated. Under Open-Windows, at least, this works. */
556 xd->release_time = key_event_p ? ev->xkey.time : ev->xbutton.time;
557 }
558 else /* Modifier key pressed */
559 {
560 int i;
561 KeySym *syms = &xd->x_keysym_map [(keycode - xd->x_keysym_map_min_code) *
562 xd->x_keysym_map_keysyms_per_code];
563
564 /* If a non-modifier key was pressed in the middle of a bunch
565 of modifiers, then it unsticks all the modifiers that were
566 previously pressed. We cannot unstick the modifiers until
567 now because we want to check for auto-repeat of the
568 non-modifier key. */
569
570 if (xd->last_downkey)
571 {
572 xd->last_downkey = 0;
573 xd->need_to_add_mask = 0;
574 }
575
576 #define FROB(mask) \
577 do { \
578 if (type == KeyPress) \
579 { \
580 /* If modifier key is already sticky, \
581 then unstick it. Note that we do \
582 not test down_mask to deal with the \
583 unlikely but possible case that the \
584 modifier key auto-repeats. */ \
585 if (xd->need_to_add_mask & mask) \
586 { \
587 xd->need_to_add_mask &= ~mask; \
588 xd->down_mask &= ~mask; \
589 } \
590 else \
591 xd->down_mask |= mask; \
592 } \
593 else \
594 { \
595 if (xd->down_mask & mask) \
596 { \
597 xd->down_mask &= ~mask; \
598 xd->need_to_add_mask |= mask; \
599 } \
600 } \
601 } while (0)
602
603 for (i = 0; i < xd->x_keysym_map_keysyms_per_code; i++)
604 switch (syms[i])
605 {
606 case XK_Control_L: case XK_Control_R: FROB (ControlMask); break;
607 case XK_Shift_L: case XK_Shift_R: FROB (ShiftMask); break;
608 case XK_Meta_L: case XK_Meta_R: FROB (xd->MetaMask); break;
609 case XK_Super_L: case XK_Super_R: FROB (xd->SuperMask); break;
610 case XK_Hyper_L: case XK_Hyper_R: FROB (xd->HyperMask); break;
611 case XK_Alt_L: case XK_Alt_R: FROB (xd->AltMask); break;
612 }
613 }
614 #undef FROB
615 }
616
617 static void
618 clear_sticky_modifiers (struct device *d)
619 {
620 struct x_device *xd = DEVICE_X_DATA (d);
621
622 xd->need_to_add_mask = 0;
623 xd->last_downkey = 0;
624 xd->release_time = 0;
625 xd->down_mask = 0;
626 }
627
628 static int
629 keysym_obeys_caps_lock_p (KeySym sym, struct device *d)
630 {
631 struct x_device *xd = DEVICE_X_DATA (d);
632 /* Eeeeevil hack. Don't apply Caps_Lock to things that aren't alphabetic
633 characters, where "alphabetic" means something more than simply A-Z.
634 That is, if Caps_Lock is down, typing ESC doesn't produce Shift-ESC.
635 But if shift-lock is down, then it does. */
636 if (xd->lock_interpretation == XK_Shift_Lock)
637 return 1;
638
639 return
640 ((sym >= XK_A) && (sym <= XK_Z)) ||
641 ((sym >= XK_a) && (sym <= XK_z)) ||
642 ((sym >= XK_Agrave) && (sym <= XK_Odiaeresis)) ||
643 ((sym >= XK_agrave) && (sym <= XK_odiaeresis)) ||
644 ((sym >= XK_Ooblique) && (sym <= XK_Thorn)) ||
645 ((sym >= XK_oslash) && (sym <= XK_thorn));
646 }
647
648 /* called from EmacsFrame.c (actually from Xt itself) when a
649 MappingNotify event is received. In its infinite wisdom, Xt
650 decided that Xt event handlers never get MappingNotify events.
651 O'Reilly Xt Programming Manual 9.1.2 says:
652
653 MappingNotify is automatically handled by Xt, so it isn't passed
654 to event handlers and you don't need to worry about it.
655
656 Of course, we DO worry about it, so we need a special translation. */
657 void
658 emacs_Xt_mapping_action (Widget w, XEvent* event)
659 {
660 struct device *d = get_device_from_display (event->xany.display);
661
662 if (DEVICE_X_BEING_DELETED (d))
663 return;
664 #if 0
665 /* nyet. Now this is handled by Xt. */
666 XRefreshKeyboardMapping (&event->xmapping);
667 #endif
668 /* xmodmap generates about a billion MappingKeyboard events, followed
669 by a single MappingModifier event, so it might be worthwhile to
670 take extra MappingKeyboard events out of the queue before requesting
671 the current keymap from the server. */
672 switch (event->xmapping.request)
673 {
674 case MappingKeyboard: x_reset_key_mapping (d); break;
675 case MappingModifier: x_reset_modifier_mapping (d); break;
676 case MappingPointer: /* Do something here? */ break;
677 default: abort();
678 }
679 }
680
681
682 /************************************************************************/
683 /* X to Emacs event conversion */
684 /************************************************************************/
685
686 static Lisp_Object
687 x_keysym_to_emacs_keysym (KeySym keysym, int simple_p)
688 {
689 char *name;
690 if (keysym >= XK_exclam && keysym <= XK_asciitilde)
691 /* We must assume that the X keysym numbers for the ASCII graphic
692 characters are the same as their ASCII codes. */
693 return make_char (keysym);
694
695 switch (keysym)
696 {
697 /* These would be handled correctly by the default case, but by
698 special-casing them here we don't garbage a string or call
699 intern(). */
700 case XK_BackSpace: return QKbackspace;
701 case XK_Tab: return QKtab;
702 case XK_Linefeed: return QKlinefeed;
703 case XK_Return: return QKreturn;
704 case XK_Escape: return QKescape;
705 case XK_space: return QKspace;
706 case XK_Delete: return QKdelete;
707 case 0: return Qnil;
708 default:
709 if (simple_p) return Qnil;
710 /* !!#### not Mule-ized */
711 name = XKeysymToString (keysym);
712 if (!name || !name[0])
713 /* This happens if there is a mismatch between the Xlib of
714 XEmacs and the Xlib of the X server...
715
716 Let's hard-code in some knowledge of common keysyms introduced
717 in recent X11 releases. Snarfed from X11/keysymdef.h
718
719 Probably we should add some stuff here for X11R6. */
720 switch (keysym)
721 {
722 case 0xFF95: return KEYSYM ("kp-home");
723 case 0xFF96: return KEYSYM ("kp-left");
724 case 0xFF97: return KEYSYM ("kp-up");
725 case 0xFF98: return KEYSYM ("kp-right");
726 case 0xFF99: return KEYSYM ("kp-down");
727 case 0xFF9A: return KEYSYM ("kp-prior");
728 case 0xFF9B: return KEYSYM ("kp-next");
729 case 0xFF9C: return KEYSYM ("kp-end");
730 case 0xFF9D: return KEYSYM ("kp-begin");
731 case 0xFF9E: return KEYSYM ("kp-insert");
732 case 0xFF9F: return KEYSYM ("kp-delete");
733
734 case 0x1005FF10: return KEYSYM ("SunF36"); /* labeled F11 */
735 case 0x1005FF11: return KEYSYM ("SunF37"); /* labeled F12 */
736 default:
737 {
738 char buf [64];
739 sprintf (buf, "unknown-keysym-0x%X", (int) keysym);
740 return KEYSYM (buf);
741 }
742 }
743 /* If it's got a one-character name, that's good enough. */
744 if (!name[1])
745 return make_char (name[0]);
746
747 /* If it's in the "Keyboard" character set, downcase it.
748 The case of those keysyms is too totally random for us to
749 force anyone to remember them.
750 The case of the other character sets is significant, however.
751 */
752 if ((((unsigned int) keysym) & (~0x1FF)) == ((unsigned int) 0xFE00))
753 {
754 char buf [255];
755 char *s1, *s2;
756 for (s1 = name, s2 = buf; *s1; s1++, s2++) {
757 if (*s1 == '_') {
758 *s2 = '-';
759 } else {
760 *s2 = tolower (* (unsigned char *) s1);
761 }
762 }
763 *s2 = 0;
764 return KEYSYM (buf);
765 }
766 return KEYSYM (name);
767 }
768 }
769
770 static Lisp_Object
771 x_to_emacs_keysym (XKeyPressedEvent *event, int simple_p)
772 /* simple_p means don't try too hard (ASCII only) */
773 {
774 KeySym keysym = 0;
775
776 #ifdef HAVE_XIM
777 int len;
778 char buffer[64];
779 char *bufptr = buffer;
780 int bufsiz = sizeof (buffer);
781 Status status;
782 #ifdef XIM_XLIB
783 XIC xic = FRAME_X_XIC (x_any_window_to_frame
784 (get_device_from_display (event->display),
785 event->window));
786 #endif /* XIM_XLIB */
787 #endif /* HAVE_XIM */
788
789 /* We use XLookupString if we're not using XIM, or are using
790 XIM_XLIB but input context creation failed. */
791 #if ! (defined (HAVE_XIM) && defined (XIM_MOTIF))
792 #if defined (HAVE_XIM) && defined (XIM_XLIB)
793 if (!xic)
794 #endif /* XIM_XLIB */
795 {
796 /* Apparently it's necessary to specify a dummy here (rather
797 than passing in 0) to avoid crashes on German IRIX */
798 char dummy[256];
799 XLookupString (event, dummy, 200, &keysym, 0);
800 return (IsModifierKey (keysym) || keysym == XK_Mode_switch )
801 ? Qnil : x_keysym_to_emacs_keysym (keysym, simple_p);
802 }
803 #endif /* ! XIM_MOTIF */
804
805 #ifdef HAVE_XIM
806 Lookup_String: /* Come-From XBufferOverflow */
807 #ifdef XIM_MOTIF
808 len = XmImMbLookupString (XtWindowToWidget (event->display, event->window),
809 event, bufptr, bufsiz, &keysym, &status);
810 #else /* XIM_XLIB */
811 if (xic)
812 len = XmbLookupString (xic, event, bufptr, bufsiz, &keysym, &status);
813 #endif /* HAVE_XIM */
814
815 #ifdef DEBUG_XEMACS
816 if (x_debug_events > 0)
817 {
818 stderr_out (" status=");
819 #define print_status_when(S) if (status == S) stderr_out (#S)
820 print_status_when (XLookupKeySym);
821 print_status_when (XLookupBoth);
822 print_status_when (XLookupChars);
823 print_status_when (XLookupNone);
824 print_status_when (XBufferOverflow);
825
826 if (status == XLookupKeySym || status == XLookupBoth)
827 stderr_out (" keysym=%s", XKeysymToString (keysym));
828 if (status == XLookupChars || status == XLookupBoth)
829 {
830 if (len != 1)
831 {
832 int j;
833 stderr_out (" chars=\"");
834 for (j=0; j<len; j++)
835 stderr_out ("%c", bufptr[j]);
836 stderr_out ("\"");
837 }
838 else if (bufptr[0] <= 32 || bufptr[0] >= 127)
839 stderr_out (" char=0x%x", bufptr[0]);
840 else
841 stderr_out (" char=%c", bufptr[0]);
842 }
843 stderr_out ("\n");
844 }
845 #endif /* DEBUG_XEMACS */
846
847 switch (status)
848 {
849 case XLookupKeySym:
850 case XLookupBoth:
851 return (IsModifierKey (keysym) || keysym == XK_Mode_switch )
852 ? Qnil : x_keysym_to_emacs_keysym (keysym, simple_p);
853
854 case XLookupChars:
855 {
856 /* Generate multiple emacs events */
857 struct device *d = get_device_from_display (event->display);
858 Emchar ch;
859 Lisp_Object instream, fb_instream;
860 Lstream *istr;
861 struct gcpro gcpro1, gcpro2;
862
863 fb_instream =
864 make_fixed_buffer_input_stream ((unsigned char *) bufptr, len);
865
866 /* ### Use Fget_coding_system (Vcomposed_input_coding_system) */
867 instream =
868 make_decoding_input_stream (XLSTREAM (fb_instream),
869 Fget_coding_system (Qundecided));
870
871 istr = XLSTREAM (instream);
872
873 GCPRO2 (instream, fb_instream);
874 while ((ch = Lstream_get_emchar (istr)) != EOF)
875 {
876 Lisp_Object emacs_event = Fmake_event (Qnil, Qnil);
877 struct Lisp_Event *ev = XEVENT (emacs_event);
878 ev->channel = DEVICE_CONSOLE (d);
879 ev->event_type = key_press_event;
880 ev->timestamp = event->time;
881 ev->event.key.modifiers = 0;
882 ev->event.key.keysym = make_char (ch);
883 enqueue_Xt_dispatch_event (emacs_event);
884 }
885 Lstream_close (istr);
886 UNGCPRO;
887 Lstream_delete (istr);
888 Lstream_delete (XLSTREAM (fb_instream));
889 return Qnil;
890 }
891 case XLookupNone: return Qnil;
892 case XBufferOverflow:
893 bufptr = (char *) alloca (len+1);
894 bufsiz = len+1;
895 goto Lookup_String;
896 }
897 return Qnil; /* not reached */
898 #endif /* HAVE_XIM */
899 }
900
901 static void
902 set_last_server_timestamp (struct device *d, XEvent *x_event)
903 {
904 Time t;
905 switch (x_event->type)
906 {
907 case KeyPress:
908 case KeyRelease: t = x_event->xkey.time; break;
909 case ButtonPress:
910 case ButtonRelease: t = x_event->xbutton.time; break;
911 case EnterNotify:
912 case LeaveNotify: t = x_event->xcrossing.time; break;
913 case MotionNotify: t = x_event->xmotion.time; break;
914 case PropertyNotify: t = x_event->xproperty.time; break;
915 case SelectionClear: t = x_event->xselectionclear.time; break;
916 case SelectionRequest: t = x_event->xselectionrequest.time; break;
917 case SelectionNotify: t = x_event->xselection.time; break;
918 default: return;
919 }
920 DEVICE_X_LAST_SERVER_TIMESTAMP (d) = t;
921 }
922
923 static int
924 x_event_to_emacs_event (XEvent *x_event, struct Lisp_Event *emacs_event)
925 {
926 Display *display = x_event->xany.display;
927 struct device *d = get_device_from_display (display);
928 struct x_device *xd = DEVICE_X_DATA (d);
929
930 if (DEVICE_X_BEING_DELETED (d))
931 /* #### Uh, is this 0 correct? */
932 return 0;
933
934 set_last_server_timestamp (d, x_event);
935
936 switch (x_event->type)
937 {
938 case KeyRelease:
939 x_handle_sticky_modifiers (x_event, d);
940 return 0;
941
942 case KeyPress:
943 case ButtonPress:
944 case ButtonRelease:
945 {
946 unsigned int modifiers = 0;
947 int shift_p, lock_p;
948 Bool key_event_p = (x_event->type == KeyPress);
949 unsigned int *state =
950 key_event_p ? &x_event->xkey.state : &x_event->xbutton.state;
951
952 /* If this is a synthetic KeyPress or Button event, and the user
953 has expressed a disinterest in this security hole, then drop
954 it on the floor. */
955 if ((key_event_p
956 ? x_event->xkey.send_event
957 : x_event->xbutton.send_event)
958 #ifdef EXTERNAL_WIDGET
959 /* ben: events get sent to an ExternalShell using XSendEvent.
960 This is not a perfect solution. */
961 && !FRAME_X_EXTERNAL_WINDOW_P
962 (x_any_window_to_frame (d, x_event->xany.window))
963 #endif
964 && !x_allow_sendevents)
965 return 0;
966
967 DEVICE_X_MOUSE_TIMESTAMP (d) =
968 DEVICE_X_GLOBAL_MOUSE_TIMESTAMP (d) =
969 key_event_p ? x_event->xkey.time : x_event->xbutton.time;
970
971 x_handle_sticky_modifiers (x_event, d);
972
973 if (*state & ControlMask) modifiers |= MOD_CONTROL;
974 if (*state & xd->MetaMask) modifiers |= MOD_META;
975 if (*state & xd->SuperMask) modifiers |= MOD_SUPER;
976 if (*state & xd->HyperMask) modifiers |= MOD_HYPER;
977 if (*state & xd->AltMask) modifiers |= MOD_ALT;
978
979 /* Ignore the Caps_Lock key if:
980 - any other modifiers are down, so that Caps_Lock doesn't
981 turn C-x into C-X, which would suck.
982 - the event was a mouse event. */
983 if (modifiers || ! key_event_p)
984 *state &= (~LockMask);
985
986 shift_p = *state & ShiftMask;
987 lock_p = *state & LockMask;
988
989 if (shift_p || lock_p)
990 modifiers |= MOD_SHIFT;
991
992 if (key_event_p)
993 {
994 Lisp_Object keysym;
995 XKeyEvent *ev = &x_event->xkey;
996 /* This used to compute the frame from the given X window and
997 store it here, but we really don't care about the frame. */
998 emacs_event->channel = DEVICE_CONSOLE (d);
999 keysym = x_to_emacs_keysym (&x_event->xkey, 0);
1000
1001 /* If the emacs keysym is nil, then that means that the X
1002 keysym was either a Modifier or NoSymbol, which
1003 probably means that we're in the midst of reading a
1004 Multi_key sequence, or a "dead" key prefix, or XIM
1005 input. Ignore it. */
1006 if (NILP (keysym))
1007 return 0;
1008
1009 /* More Caps_Lock garbage: Caps_Lock should *only* add the
1010 shift modifier to two-case keys (that is, A-Z and
1011 related characters). So at this point (after looking up
1012 the keysym) if the keysym isn't a dual-case alphabetic,
1013 and if the caps lock key was down but the shift key
1014 wasn't, then turn off the shift modifier. Gag barf */
1015 /* #### type lossage: assuming equivalence of emacs and
1016 X keysyms */
1017 /* !!#### maybe fix for Mule */
1018 if (lock_p && !shift_p &&
1019 ! (CHAR_OR_CHAR_INTP (keysym)
1020 && keysym_obeys_caps_lock_p
1021 ((KeySym) XCHAR_OR_CHAR_INT (keysym), d)))
1022 modifiers &= (~MOD_SHIFT);
1023
1024 /* If this key contains two distinct keysyms, that is,
1025 "shift" generates a different keysym than the
1026 non-shifted key, then don't apply the shift modifier
1027 bit: it's implicit. Otherwise, if there would be no
1028 other way to tell the difference between the shifted
1029 and unshifted version of this key, apply the shift bit.
1030 Non-graphics, like Backspace and F1 get the shift bit
1031 in the modifiers slot. Neither the characters "a",
1032 "A", "2", nor "@" normally have the shift bit set.
1033 However, "F1" normally does. */
1034 if (modifiers & MOD_SHIFT)
1035 {
1036 int Mode_switch_p = *state & xd->ModeMask;
1037 KeySym bot = XLookupKeysym (ev, Mode_switch_p ? 2 : 0);
1038 KeySym top = XLookupKeysym (ev, Mode_switch_p ? 3 : 1);
1039 if (top && bot && top != bot)
1040 modifiers &= ~MOD_SHIFT;
1041 }
1042 emacs_event->event_type = key_press_event;
1043 emacs_event->timestamp = ev->time;
1044 emacs_event->event.key.modifiers = modifiers;
1045 emacs_event->event.key.keysym = keysym;
1046 }
1047 else /* Mouse press/release event */
1048 {
1049 XButtonEvent *ev = &x_event->xbutton;
1050 struct frame *frame = x_window_to_frame (d, ev->window);
1051
1052 if (! frame)
1053 return 0; /* not for us */
1054 XSETFRAME (emacs_event->channel, frame);
1055
1056 emacs_event->event_type = (x_event->type == ButtonPress) ?
1057 button_press_event : button_release_event;
1058
1059 emacs_event->event.button.modifiers = modifiers;
1060 emacs_event->timestamp = ev->time;
1061 emacs_event->event.button.button = ev->button;
1062 emacs_event->event.button.x = ev->x;
1063 emacs_event->event.button.y = ev->y;
1064 /* because we don't seem to get a FocusIn event for button clicks
1065 when a widget-glyph is selected we will assume that we want the
1066 focus if a button gets pressed. */
1067 if (x_event->type == ButtonPress)
1068 handle_focus_event_1 (frame, 1);
1069 }
1070 }
1071 break;
1072
1073 case MotionNotify:
1074 {
1075 XMotionEvent *ev = &x_event->xmotion;
1076 struct frame *frame = x_window_to_frame (d, ev->window);
1077 unsigned int modifiers = 0;
1078 XMotionEvent event2;
1079
1080 if (! frame)
1081 return 0; /* not for us */
1082
1083 /* We use MotionHintMask, so we will get only one motion event
1084 until the next time we call XQueryPointer or the user
1085 clicks the mouse. So call XQueryPointer now (meaning that
1086 the event will be in sync with the server just before
1087 Fnext_event() returns). If the mouse is still in motion,
1088 then the server will immediately generate exactly one more
1089 motion event, which will be on the queue waiting for us
1090 next time around. */
1091 event2 = *ev;
1092 if (XQueryPointer (event2.display, event2.window,
1093 &event2.root, &event2.subwindow,
1094 &event2.x_root, &event2.y_root,
1095 &event2.x, &event2.y,
1096 &event2.state))
1097 ev = &event2; /* only one structure copy */
1098
1099 DEVICE_X_MOUSE_TIMESTAMP (d) = ev->time;
1100
1101 XSETFRAME (emacs_event->channel, frame);
1102 emacs_event->event_type = pointer_motion_event;
1103 emacs_event->timestamp = ev->time;
1104 emacs_event->event.motion.x = ev->x;
1105 emacs_event->event.motion.y = ev->y;
1106 if (ev->state & ShiftMask) modifiers |= MOD_SHIFT;
1107 if (ev->state & ControlMask) modifiers |= MOD_CONTROL;
1108 if (ev->state & xd->MetaMask) modifiers |= MOD_META;
1109 if (ev->state & xd->SuperMask) modifiers |= MOD_SUPER;
1110 if (ev->state & xd->HyperMask) modifiers |= MOD_HYPER;
1111 if (ev->state & xd->AltMask) modifiers |= MOD_ALT;
1112 /* Currently ignores Shift_Lock but probably shouldn't
1113 (but it definitely should ignore Caps_Lock). */
1114 emacs_event->event.motion.modifiers = modifiers;
1115 }
1116 break;
1117
1118 case ClientMessage:
1119 {
1120 /* Patch bogus TAKE_FOCUS messages from MWM; CurrentTime is
1121 passed as the timestamp of the TAKE_FOCUS, which the ICCCM
1122 explicitly prohibits. */
1123 XClientMessageEvent *ev = &x_event->xclient;
1124 #ifdef HAVE_OFFIX_DND
1125 if (DndIsDropMessage(x_event))
1126 {
1127 unsigned int state, modifiers = 0, button=0;
1128 struct frame *frame = x_any_window_to_frame (d, ev->window);
1129 Extbyte *data;
1130 unsigned long size, dtype;
1131 Lisp_Object l_type = Qnil, l_data = Qnil;
1132 Lisp_Object l_dndlist = Qnil, l_item = Qnil;
1133 struct gcpro gcpro1, gcpro2, gcpro3, gcpro4;
1134
1135 GCPRO4 (l_type, l_data, l_dndlist, l_item);
1136
1137 if (! frame)
1138 return 0; /* not for us */
1139 XSETFRAME (emacs_event->channel, frame);
1140
1141 emacs_event->event_type = misc_user_event;
1142 emacs_event->timestamp = DEVICE_X_LAST_SERVER_TIMESTAMP (d);
1143
1144 state=DndDragButtons(x_event);
1145
1146 if (state & ShiftMask) modifiers |= MOD_SHIFT;
1147 if (state & ControlMask) modifiers |= MOD_CONTROL;
1148 if (state & xd->MetaMask) modifiers |= MOD_META;
1149 if (state & xd->SuperMask) modifiers |= MOD_SUPER;
1150 if (state & xd->HyperMask) modifiers |= MOD_HYPER;
1151 if (state & xd->AltMask) modifiers |= MOD_ALT;
1152
1153 if (state & Button5Mask) button = Button5;
1154 if (state & Button4Mask) button = Button4;
1155 if (state & Button3Mask) button = Button3;
1156 if (state & Button2Mask) button = Button2;
1157 if (state & Button1Mask) button = Button1;
1158
1159 emacs_event->event.misc.modifiers = modifiers;
1160 emacs_event->event.misc.button = button;
1161
1162 DndDropCoordinates(FRAME_X_TEXT_WIDGET(frame), x_event,
1163 &(emacs_event->event.misc.x),
1164 &(emacs_event->event.misc.y) );
1165
1166 DndGetData(x_event,&data,&size);
1167
1168 dtype=DndDataType(x_event);
1169 switch (dtype)
1170 {
1171 case DndFiles: /* null terminated strings, end null */
1172 {
1173 int len;
1174 char *hurl = NULL;
1175
1176 while (*data)
1177 {
1178 len = strlen ((char*)data);
1179 hurl = dnd_url_hexify_string ((char *)data, "file:");
1180 l_item = make_string ((Bufbyte *)hurl, strlen (hurl));
1181 l_dndlist = Fcons (l_item, l_dndlist);
1182 data += len + 1;
1183 xfree (hurl);
1184 }
1185 l_type = Qdragdrop_URL;
1186 }
1187 break;
1188 case DndText:
1189 l_type = Qdragdrop_MIME;
1190 l_dndlist = list1 ( list3 ( list1 ( make_string ((Bufbyte *)"text/plain", 10) ),
1191 make_string ((Bufbyte *)"8bit", 4),
1192 make_ext_string ((Extbyte *)data,
1193 strlen((char *)data),
1194 FORMAT_CTEXT) ) );
1195 break;
1196 case DndMIME:
1197 /* we have to parse this in some way to extract
1198 content-type and params (in the tm way) and
1199 content encoding.
1200 OR: if data is string, let tm do the job
1201 if data is list[2], give the first two
1202 to tm...
1203 */
1204 l_type = Qdragdrop_MIME;
1205 l_dndlist = list1 ( make_ext_string ((Extbyte *)data,
1206 strlen((char *)data),
1207 FORMAT_BINARY) );
1208 break;
1209 case DndFile:
1210 case DndDir:
1211 case DndLink:
1212 case DndExe:
1213 {
1214 char *hurl = dnd_url_hexify_string ((char *) data, "file:");
1215
1216 l_dndlist = list1 ( make_string ((Bufbyte *)hurl,
1217 strlen (hurl)) );
1218 l_type = Qdragdrop_URL;
1219
1220 xfree (hurl);
1221 }
1222 break;
1223 case DndURL:
1224 /* as it is a real URL it should already be escaped
1225 and escaping again will break them (cause % is unsave) */
1226 l_dndlist = list1 ( make_ext_string ((Extbyte *)data,
1227 strlen ((char *)data),
1228 FORMAT_FILENAME) );
1229 l_type = Qdragdrop_URL;
1230 break;
1231 default: /* Unknown, RawData and any other type */
1232 l_dndlist = list1 ( list3 ( list1 ( make_string ((Bufbyte *)"application/octet-stream", 24) ),
1233 make_string ((Bufbyte *)"8bit", 4),
1234 make_ext_string ((Extbyte *)data,
1235 size,
1236 FORMAT_BINARY) ) );
1237 l_type = Qdragdrop_MIME;
1238 break;
1239 }
1240
1241 emacs_event->event.misc.function = Qdragdrop_drop_dispatch;
1242 emacs_event->event.misc.object = Fcons (l_type, l_dndlist);
1243
1244 UNGCPRO;
1245
1246 break;
1247 }
1248 #endif /* HAVE_OFFIX_DND */
1249 if (ev->message_type == DEVICE_XATOM_WM_PROTOCOLS (d)
1250 && (Atom) (ev->data.l[0]) == DEVICE_XATOM_WM_TAKE_FOCUS (d)
1251 && (Atom) (ev->data.l[1]) == 0)
1252 {
1253 ev->data.l[1] = DEVICE_X_LAST_SERVER_TIMESTAMP (d);
1254 }
1255 }
1256 /* fall through */
1257
1258 default: /* it's a magic event */
1259 {
1260 struct frame *frame;
1261 Window w;
1262 XEvent *x_event_copy = &emacs_event->event.magic.underlying_x_event;
1263
1264 #define FROB(event_member, window_member) \
1265 x_event_copy->event_member = x_event->event_member; \
1266 w = x_event->event_member.window_member
1267
1268 switch (x_event->type)
1269 {
1270 case SelectionRequest: FROB(xselectionrequest, owner); break;
1271 case SelectionClear: FROB(xselectionclear, window); break;
1272 case SelectionNotify: FROB(xselection, requestor); break;
1273 case PropertyNotify: FROB(xproperty, window); break;
1274 case ClientMessage: FROB(xclient, window); break;
1275 case ConfigureNotify: FROB(xconfigure, window); break;
1276 case Expose:
1277 case GraphicsExpose: FROB(xexpose, window); break;
1278 case MapNotify:
1279 case UnmapNotify: FROB(xmap, window); break;
1280 case EnterNotify:
1281 case LeaveNotify: FROB(xcrossing, window); break;
1282 case FocusIn:
1283 case FocusOut: FROB(xfocus, window); break;
1284 case VisibilityNotify: FROB(xvisibility, window); break;
1285 default:
1286 w = x_event->xany.window;
1287 *x_event_copy = *x_event;
1288 break;
1289 }
1290 #undef FROB
1291 frame = x_any_window_to_frame (d, w);
1292
1293 if (!frame)
1294 return 0;
1295
1296 emacs_event->event_type = magic_event;
1297 XSETFRAME (emacs_event->channel, frame);
1298
1299 break;
1300 }
1301 }
1302 return 1;
1303 }
1304
1305
1306
1307 /************************************************************************/
1308 /* magic-event handling */
1309 /************************************************************************/
1310
1311 static void
1312 handle_focus_event_1 (struct frame *f, int in_p)
1313 {
1314 #if XtSpecificationRelease > 5
1315 Widget focus_widget = XtGetKeyboardFocusWidget (FRAME_X_TEXT_WIDGET (f));
1316 #endif
1317 #ifdef HAVE_XIM
1318 XIM_focus_event (f, in_p);
1319 #endif /* HAVE_XIM */
1320
1321 /* On focus change, clear all memory of sticky modifiers
1322 to avoid non-intuitive behavior. */
1323 clear_sticky_modifiers (XDEVICE (FRAME_DEVICE (f)));
1324
1325 /* We don't want to handle the focus change now, because we might
1326 be in an accept-process-output, sleep-for, or sit-for. So
1327 we enqueue it.
1328
1329 Actually, we half handle it: we handle it as far as changing the
1330 box cursor for redisplay, but we don't call any hooks or do any
1331 select-frame stuff until after the sit-for.
1332
1333 Unfortunately native widgets break the model because they grab
1334 the keyboard focus and nothing sets it back again. I cannot find
1335 any reasonable way to do this elsewhere so we assert here that
1336 the keyboard focus is on the emacs text widget. Menus and dialogs
1337 do this in their selection callback, but we don't want that since
1338 a button having focus is legitimate. An edit field having focus
1339 is mandatory. Weirdly you get a FocusOut event when you click in
1340 a widget-glyph but you don't get a correspondng FocusIn when you
1341 click in the frame. Why is this? */
1342 if (in_p
1343 #if XtSpecificationRelease > 5
1344 && FRAME_X_TEXT_WIDGET (f) != focus_widget
1345 #endif
1346 )
1347 {
1348 lw_set_keyboard_focus (FRAME_X_SHELL_WIDGET (f),
1349 FRAME_X_TEXT_WIDGET (f));
1350 }
1351 /* do the generic event-stream stuff. */
1352 {
1353 Lisp_Object frm;
1354 Lisp_Object conser;
1355 struct gcpro gcpro1;
1356
1357 XSETFRAME (frm, f);
1358 conser = Fcons (frm, Fcons (FRAME_DEVICE (f), in_p ? Qt : Qnil));
1359 GCPRO1 (conser);
1360 emacs_handle_focus_change_preliminary (conser);
1361 enqueue_magic_eval_event (emacs_handle_focus_change_final,
1362 conser);
1363 UNGCPRO;
1364 }
1365 }
1366
1367 /* This is called from the external-widget code */
1368
1369 void emacs_Xt_handle_focus_event (XEvent *event);
1370 void
1371 emacs_Xt_handle_focus_event (XEvent *event)
1372 {
1373 struct device *d = get_device_from_display (event->xany.display);
1374 struct frame *f;
1375
1376 if (DEVICE_X_BEING_DELETED (d))
1377 return;
1378
1379 /*
1380 * It's curious that we're using x_any_window_to_frame() instead
1381 * of x_window_to_frame(). I don't know what the impact of this is.
1382 */
1383 f = x_any_window_to_frame (d, event->xfocus.window);
1384 if (!f)
1385 /* focus events are sometimes generated just before
1386 a frame is destroyed. */
1387 return;
1388 handle_focus_event_1 (f, event->type == FocusIn);
1389 }
1390
1391 /* both MapNotify and VisibilityNotify can cause this
1392 JV is_visible has the same semantics as f->visible*/
1393 static void
1394 change_frame_visibility (struct frame *f, int is_visible)
1395 {
1396 Lisp_Object frame;
1397
1398 XSETFRAME (frame, f);
1399
1400 if (!FRAME_VISIBLE_P (f) && is_visible)
1401 {
1402 FRAME_VISIBLE_P (f) = is_visible;
1403 /* This improves the double flicker when uniconifying a frame
1404 some. A lot of it is not showing a buffer which has changed
1405 while the frame was iconified. To fix it further requires
1406 the good 'ol double redisplay structure. */
1407 MARK_FRAME_WINDOWS_STRUCTURE_CHANGED (f);
1408 va_run_hook_with_args (Qmap_frame_hook, 1, frame);
1409 }
1410 else if (FRAME_VISIBLE_P (f) && !is_visible)
1411 {
1412 FRAME_VISIBLE_P (f) = 0;
1413 va_run_hook_with_args (Qunmap_frame_hook, 1, frame);
1414 }
1415 else if (FRAME_VISIBLE_P (f) * is_visible < 0)
1416 {
1417 FRAME_VISIBLE_P(f) = - FRAME_VISIBLE_P(f);
1418 if (FRAME_REPAINT_P(f))
1419 MARK_FRAME_WINDOWS_STRUCTURE_CHANGED (f);
1420 va_run_hook_with_args (Qmap_frame_hook, 1, frame);
1421 }
1422 }
1423
1424 static void
1425 handle_map_event (struct frame *f, XEvent *event)
1426 {
1427 Lisp_Object frame;
1428
1429 XSETFRAME (frame, f);
1430 if (event->type == MapNotify)
1431 {
1432 XWindowAttributes xwa;
1433
1434 /* Bleagh!!!!!! Apparently some window managers (e.g. MWM)
1435 send synthetic MapNotify events when a window is first
1436 created, EVEN IF IT'S CREATED ICONIFIED OR INVISIBLE.
1437 Or something like that. We initially tried a different
1438 solution below, but that ran into a different window-
1439 manager bug.
1440
1441 It seems that the only reliable way is to treat a
1442 MapNotify event as a "hint" that the window might or
1443 might not be visible, and check explicitly. */
1444
1445 XGetWindowAttributes (event->xany.display, event->xmap.window,
1446 &xwa);
1447 if (xwa.map_state != IsViewable)
1448 {
1449 /* Calling Fframe_iconified_p is the only way we have to
1450 correctly update FRAME_ICONIFIED_P */
1451 Fframe_iconified_p (frame);
1452 return;
1453 }
1454
1455 FRAME_X_TOTALLY_VISIBLE_P (f) = 1;
1456 #if 0
1457 /* Bleagh again!!!! We initially tried the following hack
1458 around the MWM problem, but it turns out that TWM
1459 has a race condition when you un-iconify, where it maps
1460 the window and then tells the server that the window
1461 is un-iconified. Usually, XEmacs wakes up between
1462 those two occurrences, and thus thinks that un-iconified
1463 windows are still iconified.
1464
1465 Ah, the joys of X. */
1466
1467 /* By Emacs definition, a frame that is iconified is not
1468 visible. Marking a frame as visible will automatically cause
1469 frame-iconified-p to return nil, regardless of whether the
1470 frame is actually iconified. Therefore, we have to ignore
1471 MapNotify events on iconified frames. (It's not obvious
1472 to me why these are being sent, but it happens at startup
1473 with frames that are initially iconified; perhaps they are
1474 synthetic MapNotify events coming from the window manager.)
1475 Note that `frame-iconified-p' queries the server
1476 to determine whether the frame is currently iconified,
1477 rather than consulting some internal (and likely
1478 inaccurate) state flag. Therefore, ignoring the MapNotify
1479 is correct. */
1480 if (!FRAME_VISIBLE_P (f) && NILP (Fframe_iconified_p (frame)))
1481 #endif /* 0 */
1482 change_frame_visibility (f, 1);
1483 }
1484 else
1485 {
1486 FRAME_X_TOTALLY_VISIBLE_P (f) = 0;
1487 change_frame_visibility (f, 0);
1488 /* Calling Fframe_iconified_p is the only way we have to
1489 correctly update FRAME_ICONIFIED_P */
1490 Fframe_iconified_p (frame);
1491 }
1492 }
1493
1494 static void
1495 handle_client_message (struct frame *f, XEvent *event)
1496 {
1497 struct device *d = XDEVICE (FRAME_DEVICE (f));
1498 Lisp_Object frame;
1499
1500 XSETFRAME (frame, f);
1501
1502 if (event->xclient.message_type == DEVICE_XATOM_WM_PROTOCOLS (d) &&
1503 (Atom) (event->xclient.data.l[0]) == DEVICE_XATOM_WM_DELETE_WINDOW (d))
1504 {
1505 /* WM_DELETE_WINDOW is a misc-user event, but other ClientMessages,
1506 such as WM_TAKE_FOCUS, are eval events. That's because delete-window
1507 was probably executed with a mouse click, while the others could
1508 have been sent as a result of mouse motion or some other implicit
1509 action. (Call this a "heuristic"...) The reason for caring about
1510 this is so that clicking on the close-box will make emacs prompt
1511 using a dialog box instead of the minibuffer if there are unsaved
1512 buffers.
1513 */
1514 enqueue_misc_user_event (frame, Qeval,
1515 list3 (Qdelete_frame, frame, Qt));
1516 }
1517 else if (event->xclient.message_type == DEVICE_XATOM_WM_PROTOCOLS (d) &&
1518 (Atom) event->xclient.data.l[0] == DEVICE_XATOM_WM_TAKE_FOCUS (d))
1519 {
1520 handle_focus_event_1 (f, 1);
1521 #if 0
1522 /* If there is a dialog box up, focus on it.
1523
1524 #### Actually, we're raising it too, which is wrong. We should
1525 #### just focus on it, but lwlib doesn't currently give us an
1526 #### easy way to do that. This should be fixed.
1527 */
1528 unsigned long take_focus_timestamp = event->xclient.data.l[1];
1529 Widget widget = lw_raise_all_pop_up_widgets ();
1530 if (widget)
1531 {
1532 /* kludge: raise_all returns bottommost widget, but we really
1533 want the topmost. So just raise it for now. */
1534 XMapRaised (XtDisplay (widget), XtWindow (widget));
1535 /* Grab the focus with the timestamp of the TAKE_FOCUS. */
1536 XSetInputFocus (XtDisplay (widget), XtWindow (widget),
1537 RevertToParent, take_focus_timestamp);
1538 }
1539 #endif
1540 }
1541 }
1542
1543 static void
1544 emacs_Xt_handle_magic_event (struct Lisp_Event *emacs_event)
1545 {
1546 /* This function can GC */
1547 XEvent *event = &emacs_event->event.magic.underlying_x_event;
1548 struct frame *f = XFRAME (EVENT_CHANNEL (emacs_event));
1549
1550 if (!FRAME_LIVE_P (f) || DEVICE_X_BEING_DELETED (XDEVICE (FRAME_DEVICE (f))))
1551 return;
1552
1553 switch (event->type)
1554 {
1555 case SelectionRequest:
1556 x_handle_selection_request (&event->xselectionrequest);
1557 break;
1558
1559 case SelectionClear:
1560 x_handle_selection_clear (&event->xselectionclear);
1561 break;
1562
1563 case SelectionNotify:
1564 x_handle_selection_notify (&event->xselection);
1565 break;
1566
1567 case PropertyNotify:
1568 x_handle_property_notify (&event->xproperty);
1569 break;
1570
1571 case Expose:
1572 if (!check_for_ignored_expose (f, event->xexpose.x, event->xexpose.y,
1573 event->xexpose.width, event->xexpose.height)
1574 &&
1575 !find_matching_subwindow (f, event->xexpose.x, event->xexpose.y,
1576 event->xexpose.width, event->xexpose.height))
1577 x_redraw_exposed_area (f, event->xexpose.x, event->xexpose.y,
1578 event->xexpose.width, event->xexpose.height);
1579 break;
1580
1581 case GraphicsExpose: /* This occurs when an XCopyArea's source area was
1582 obscured or not available. */
1583 x_redraw_exposed_area (f, event->xexpose.x, event->xexpose.y,
1584 event->xexpose.width, event->xexpose.height);
1585 break;
1586
1587 case MapNotify:
1588 case UnmapNotify:
1589 handle_map_event (f, event);
1590 break;
1591
1592 case EnterNotify:
1593 if (event->xcrossing.detail != NotifyInferior)
1594 {
1595 Lisp_Object frame;
1596
1597 XSETFRAME (frame, f);
1598 /* FRAME_X_MOUSE_P (f) = 1; */
1599 va_run_hook_with_args (Qmouse_enter_frame_hook, 1, frame);
1600 }
1601 break;
1602
1603 case LeaveNotify:
1604 if (event->xcrossing.detail != NotifyInferior)
1605 {
1606 Lisp_Object frame;
1607
1608 XSETFRAME (frame, f);
1609 /* FRAME_X_MOUSE_P (f) = 0; */
1610 va_run_hook_with_args (Qmouse_leave_frame_hook, 1, frame);
1611 }
1612 break;
1613
1614 case FocusIn:
1615 case FocusOut:
1616
1617 #ifdef EXTERNAL_WIDGET
1618 /* External widget lossage: Ben said:
1619 YUCK. The only way to make focus changes work properly is to
1620 completely ignore all FocusIn/FocusOut events and depend only
1621 on notifications from the ExternalClient widget. */
1622 if (FRAME_X_EXTERNAL_WINDOW_P (f))
1623 break;
1624 #endif
1625 handle_focus_event_1 (f, event->type == FocusIn);
1626 break;
1627
1628 case ClientMessage:
1629 handle_client_message (f, event);
1630 break;
1631
1632 case VisibilityNotify: /* window visibility has changed */
1633 if (event->xvisibility.window == XtWindow (FRAME_X_SHELL_WIDGET (f)))
1634 {
1635 FRAME_X_TOTALLY_VISIBLE_P (f) =
1636 (event->xvisibility.state == VisibilityUnobscured);
1637 /* Note that the fvwm pager only sends VisibilityNotify when
1638 changing pages. Is this all we need to do ? JV */
1639 /* Nope. We must at least trigger a redisplay here.
1640 Since this case seems similar to MapNotify, I've
1641 factored out some code to change_frame_visibility().
1642 This triggers the necessary redisplay and runs
1643 (un)map-frame-hook. - dkindred@cs.cmu.edu */
1644 /* Changed it again to support the tristate visibility flag */
1645 change_frame_visibility (f, (event->xvisibility.state
1646 != VisibilityFullyObscured) ? 1 : -1);
1647 }
1648 break;
1649
1650 case ConfigureNotify:
1651 #ifdef HAVE_XIM
1652 XIM_SetGeometry (f);
1653 #endif
1654 break;
1655
1656 default:
1657 break;
1658 }
1659 }
1660
1661
1662 /************************************************************************/
1663 /* timeout events */
1664 /************************************************************************/
1665
1666 static int timeout_id_tick;
1667
1668 /* Xt interval id's might not fit into an int (they're pointers, as it
1669 happens), so we need to provide a conversion list. */
1670
1671 static struct Xt_timeout
1672 {
1673 int id;
1674 XtIntervalId interval_id;
1675 struct Xt_timeout *next;
1676 } *pending_timeouts, *completed_timeouts;
1677
1678 static struct Xt_timeout_blocktype
1679 {
1680 Blocktype_declare (struct Xt_timeout);
1681 } *the_Xt_timeout_blocktype;
1682
1683 /* called by XtAppNextEvent() */
1684 static void
1685 Xt_timeout_callback (XtPointer closure, XtIntervalId *id)
1686 {
1687 struct Xt_timeout *timeout = (struct Xt_timeout *) closure;
1688 struct Xt_timeout *t2 = pending_timeouts;
1689 /* Remove this one from the list of pending timeouts */
1690 if (t2 == timeout)
1691 pending_timeouts = pending_timeouts->next;
1692 else
1693 {
1694 while (t2->next && t2->next != timeout) t2 = t2->next;
1695 assert (t2->next);
1696 t2->next = t2->next->next;
1697 }
1698 /* Add this one to the list of completed timeouts */
1699 timeout->next = completed_timeouts;
1700 completed_timeouts = timeout;
1701 }
1702
1703 static int
1704 emacs_Xt_add_timeout (EMACS_TIME thyme)
1705 {
1706 struct Xt_timeout *timeout = Blocktype_alloc (the_Xt_timeout_blocktype);
1707 EMACS_TIME current_time;
1708 int milliseconds;
1709
1710 timeout->id = timeout_id_tick++;
1711 timeout->next = pending_timeouts;
1712 pending_timeouts = timeout;
1713 EMACS_GET_TIME (current_time);
1714 EMACS_SUB_TIME (thyme, thyme, current_time);
1715 milliseconds = EMACS_SECS (thyme) * 1000 +
1716 EMACS_USECS (thyme) / 1000;
1717 if (milliseconds < 1)
1718 milliseconds = 1;
1719 timeout->interval_id = XtAppAddTimeOut (Xt_app_con, milliseconds,
1720 Xt_timeout_callback,
1721 (XtPointer) timeout);
1722 return timeout->id;
1723 }
1724
1725 static void
1726 emacs_Xt_remove_timeout (int id)
1727 {
1728 struct Xt_timeout *timeout, *t2;
1729
1730 timeout = NULL;
1731
1732 /* Find the timeout on the list of pending ones, if it's still there. */
1733 if (pending_timeouts)
1734 {
1735 if (id == pending_timeouts->id)
1736 {
1737 timeout = pending_timeouts;
1738 pending_timeouts = pending_timeouts->next;
1739 }
1740 else
1741 {
1742 t2 = pending_timeouts;
1743 while (t2->next && t2->next->id != id) t2 = t2->next;
1744 if ( t2->next) /*found it */
1745 {
1746 timeout = t2->next;
1747 t2->next = t2->next->next;
1748 }
1749 }
1750 /* if it was pending, we have removed it from the list */
1751 if (timeout)
1752 XtRemoveTimeOut (timeout->interval_id);
1753 }
1754
1755 /* It could be that the Xt call back was already called but we didn't convert
1756 into an Emacs event yet */
1757 if (!timeout && completed_timeouts)
1758 {
1759 /* Code duplication! */
1760 if (id == completed_timeouts->id)
1761 {
1762 timeout = completed_timeouts;
1763 completed_timeouts = completed_timeouts->next;
1764 }
1765 else
1766 {
1767 t2 = completed_timeouts;
1768 while (t2->next && t2->next->id != id) t2 = t2->next;
1769 if ( t2->next) /*found it */
1770 {
1771 timeout = t2->next;
1772 t2->next = t2->next->next;
1773 }
1774 }
1775 }
1776
1777 /* If we found the thing on the lists of timeouts,
1778 and removed it, deallocate
1779 */
1780 if (timeout)
1781 Blocktype_free (the_Xt_timeout_blocktype, timeout);
1782 }
1783
1784 static void
1785 Xt_timeout_to_emacs_event (struct Lisp_Event *emacs_event)
1786 {
1787 struct Xt_timeout *timeout = completed_timeouts;
1788 assert (timeout);
1789 completed_timeouts = completed_timeouts->next;
1790 emacs_event->event_type = timeout_event;
1791 /* timeout events have nil as channel */
1792 emacs_event->timestamp = 0; /* #### wrong!! */
1793 emacs_event->event.timeout.interval_id = timeout->id;
1794 emacs_event->event.timeout.function = Qnil;
1795 emacs_event->event.timeout.object = Qnil;
1796 Blocktype_free (the_Xt_timeout_blocktype, timeout);
1797 }
1798
1799
1800 /************************************************************************/
1801 /* process and tty events */
1802 /************************************************************************/
1803
1804 struct what_is_ready_closure
1805 {
1806 int fd;
1807 Lisp_Object what;
1808 XtInputId id;
1809 };
1810
1811 static Lisp_Object *filedesc_with_input;
1812 static struct what_is_ready_closure **filedesc_to_what_closure;
1813
1814 static void
1815 init_what_input_once (void)
1816 {
1817 int i;
1818
1819 filedesc_with_input = xnew_array (Lisp_Object, MAXDESC);
1820 filedesc_to_what_closure =
1821 xnew_array (struct what_is_ready_closure *, MAXDESC);
1822
1823 for (i = 0; i < MAXDESC; i++)
1824 {
1825 filedesc_to_what_closure[i] = 0;
1826 filedesc_with_input[i] = Qnil;
1827 }
1828
1829 process_events_occurred = 0;
1830 tty_events_occurred = 0;
1831 }
1832
1833 static void
1834 mark_what_as_being_ready (struct what_is_ready_closure *closure)
1835 {
1836 if (NILP (filedesc_with_input[closure->fd]))
1837 {
1838 SELECT_TYPE temp_mask;
1839 FD_ZERO (&temp_mask);
1840 FD_SET (closure->fd, &temp_mask);
1841 /* Check to make sure there's *really* input available.
1842 Sometimes things seem to get confused and this gets called
1843 for the tty fd when there's really only input available
1844 on some process's fd. (It will subsequently get called
1845 for that process's fd, so returning without setting any
1846 flags will take care of it.) To see the problem, uncomment
1847 the stderr_out below, turn NORMAL_QUIT_CHECK_TIMEOUT_MSECS
1848 down to 25, do sh -c 'xemacs -nw -q -f shell 2>/tmp/log'
1849 and press return repeatedly. (Seen under AIX & Linux.)
1850 -dkindred@cs.cmu.edu */
1851 if (!poll_fds_for_input (temp_mask))
1852 {
1853 #if 0
1854 stderr_out ("mark_what_as_being_ready: no input available (fd=%d)\n",
1855 closure->fd);
1856 #endif
1857 return;
1858 }
1859 filedesc_with_input[closure->fd] = closure->what;
1860 if (PROCESSP (closure->what))
1861 /* Don't increment this if the current process is already marked
1862 * as having input. */
1863 process_events_occurred++;
1864 else
1865 tty_events_occurred++;
1866 }
1867 }
1868
1869 static void
1870 Xt_what_callback (void *closure, int *source, XtInputId *id)
1871 {
1872 /* If closure is 0, then we got a fake event from a signal handler.
1873 The only purpose of this is to make XtAppProcessEvent() stop
1874 blocking. */
1875 if (closure)
1876 mark_what_as_being_ready ((struct what_is_ready_closure *) closure);
1877 else
1878 {
1879 fake_event_occurred++;
1880 drain_signal_event_pipe ();
1881 }
1882 }
1883
1884 static void
1885 select_filedesc (int fd, Lisp_Object what)
1886 {
1887 struct what_is_ready_closure *closure;
1888
1889 /* If somebody is trying to select something that's already selected
1890 for, then something went wrong. The generic routines ought to
1891 detect this and error before here. */
1892 assert (!filedesc_to_what_closure[fd]);
1893
1894 closure = xnew (struct what_is_ready_closure);
1895 closure->fd = fd;
1896 closure->what = what;
1897 closure->id =
1898 XtAppAddInput (Xt_app_con, fd,
1899 (XtPointer) (XtInputReadMask /* | XtInputExceptMask */),
1900 Xt_what_callback, closure);
1901 filedesc_to_what_closure[fd] = closure;
1902 }
1903
1904 static void
1905 unselect_filedesc (int fd)
1906 {
1907 struct what_is_ready_closure *closure = filedesc_to_what_closure[fd];
1908
1909 assert (closure);
1910 if (!NILP (filedesc_with_input[fd]))
1911 {
1912 /* We are unselecting this process before we have drained the rest of
1913 the input from it, probably from status_notify() in the command loop.
1914 This can happen like so:
1915
1916 - We are waiting in XtAppNextEvent()
1917 - Process generates output
1918 - Process is marked as being ready
1919 - Process dies, SIGCHLD gets generated before we return (!?)
1920 It could happen I guess.
1921 - sigchld_handler() marks process as dead
1922 - Somehow we end up getting a new KeyPress event on the queue
1923 at the same time (I'm really so sure how that happens but I'm
1924 not sure it can't either so let's assume it can...).
1925 - Key events have priority so we return that instead of the proc.
1926 - Before dispatching the lisp key event we call status_notify()
1927 - Which deselects the process that SIGCHLD marked as dead.
1928
1929 Thus we never remove it from _with_input and turn it into a lisp
1930 event, so we need to do it here. But this does not mean that we're
1931 throwing away the last block of output - status_notify() has already
1932 taken care of running the proc filter or whatever.
1933 */
1934 filedesc_with_input[fd] = Qnil;
1935 if (PROCESSP (closure->what))
1936 {
1937 assert (process_events_occurred > 0);
1938 process_events_occurred--;
1939 }
1940 else
1941 {
1942 assert (tty_events_occurred > 0);
1943 tty_events_occurred--;
1944 }
1945 }
1946 XtRemoveInput (closure->id);
1947 xfree (closure);
1948 filedesc_to_what_closure[fd] = 0;
1949 }
1950
1951 static void
1952 emacs_Xt_select_process (struct Lisp_Process *p)
1953 {
1954 Lisp_Object process;
1955 int infd = event_stream_unixoid_select_process (p);
1956
1957 XSETPROCESS (process, p);
1958 select_filedesc (infd, process);
1959 }
1960
1961 static void
1962 emacs_Xt_unselect_process (struct Lisp_Process *p)
1963 {
1964 int infd = event_stream_unixoid_unselect_process (p);
1965
1966 unselect_filedesc (infd);
1967 }
1968
1969 static USID
1970 emacs_Xt_create_stream_pair (void* inhandle, void* outhandle,
1971 Lisp_Object* instream, Lisp_Object* outstream, int flags)
1972 {
1973 USID u = event_stream_unixoid_create_stream_pair
1974 (inhandle, outhandle, instream, outstream, flags);
1975 if (u != USID_ERROR)
1976 u = USID_DONTHASH;
1977 return u;
1978 }
1979
1980 static USID
1981 emacs_Xt_delete_stream_pair (Lisp_Object instream, Lisp_Object outstream)
1982 {
1983 event_stream_unixoid_delete_stream_pair (instream, outstream);
1984 return USID_DONTHASH;
1985 }
1986
1987 /* This is called from GC when a process object is about to be freed.
1988 If we've still got pointers to it in this file, we're gonna lose hard.
1989 */
1990 void
1991 debug_process_finalization (struct Lisp_Process *p)
1992 {
1993 #if 0 /* #### */
1994 int i;
1995 Lisp_Object instr, outstr;
1996
1997 get_process_streams (p, &instr, &outstr);
1998 /* if it still has fds, then it hasn't been killed yet. */
1999 assert (NILP(instr));
2000 assert (NILP(outstr));
2001 /* Better not still be in the "with input" table; we know it's got no fds. */
2002 for (i = 0; i < MAXDESC; i++)
2003 {
2004 Lisp_Object process = filedesc_fds_with_input [i];
2005 assert (!PROCESSP (process) || XPROCESS (process) != p);
2006 }
2007 #endif
2008 }
2009
2010 static void
2011 Xt_process_to_emacs_event (struct Lisp_Event *emacs_event)
2012 {
2013 int i;
2014 Lisp_Object process;
2015
2016 assert (process_events_occurred > 0);
2017 for (i = 0; i < MAXDESC; i++)
2018 {
2019 process = filedesc_with_input[i];
2020 if (PROCESSP (process))
2021 break;
2022 }
2023 assert (i < MAXDESC);
2024 filedesc_with_input[i] = Qnil;
2025 process_events_occurred--;
2026 /* process events have nil as channel */
2027 emacs_event->event_type = process_event;
2028 emacs_event->timestamp = 0; /* #### */
2029 emacs_event->event.process.process = process;
2030 }
2031
2032 static void
2033 emacs_Xt_select_console (struct console *con)
2034 {
2035 Lisp_Object console;
2036 int infd;
2037
2038 if (CONSOLE_X_P (con))
2039 return; /* X consoles are automatically selected for when we
2040 initialize them in Xt */
2041 infd = event_stream_unixoid_select_console (con);
2042 XSETCONSOLE (console, con);
2043 select_filedesc (infd, console);
2044 }
2045
2046 static void
2047 emacs_Xt_unselect_console (struct console *con)
2048 {
2049 Lisp_Object console;
2050 int infd;
2051
2052 if (CONSOLE_X_P (con))
2053 return; /* X consoles are automatically selected for when we
2054 initialize them in Xt */
2055 infd = event_stream_unixoid_unselect_console (con);
2056 XSETCONSOLE (console, con);
2057 unselect_filedesc (infd);
2058 }
2059
2060 /* read an event from a tty, if one is available. Returns non-zero
2061 if an event was available. Note that when this function is
2062 called, there should always be a tty marked as ready for input.
2063 However, the input condition might actually be EOF, so there
2064 may not really be any input available. (In this case,
2065 read_event_from_tty_or_stream_desc() will arrange for the TTY device
2066 to be deleted.) */
2067
2068 static int
2069 Xt_tty_to_emacs_event (struct Lisp_Event *emacs_event)
2070 {
2071 int i;
2072
2073 assert (tty_events_occurred > 0);
2074 for (i = 0; i < MAXDESC; i++)
2075 {
2076 Lisp_Object console = filedesc_with_input[i];
2077 if (CONSOLEP (console))
2078 {
2079 assert (tty_events_occurred > 0);
2080 tty_events_occurred--;
2081 filedesc_with_input[i] = Qnil;
2082 if (read_event_from_tty_or_stream_desc
2083 (emacs_event, XCONSOLE (console), i))
2084 return 1;
2085 }
2086 }
2087
2088 return 0;
2089 }
2090
2091
2092 /************************************************************************/
2093 /* debugging functions to decipher an event */
2094 /************************************************************************/
2095
2096 #ifdef DEBUG_XEMACS
2097 #include "xintrinsicp.h" /* only describe_event() needs this */
2098 #include <X11/Xproto.h> /* only describe_event() needs this */
2099
2100 static void
2101 describe_event_window (Window window, Display *display)
2102 {
2103 struct frame *f;
2104 Widget w;
2105 stderr_out (" window: 0x%lx", (unsigned long) window);
2106 w = XtWindowToWidget (display, window);
2107 if (w)
2108 stderr_out (" %s", w->core.widget_class->core_class.class_name);
2109 f = x_any_window_to_frame (get_device_from_display (display), window);
2110 if (f)
2111 {
2112 char *buf = alloca_array (char, XSTRING_LENGTH (f->name) + 4);
2113 sprintf (buf, " \"%s\"", XSTRING_DATA (f->name));
2114 write_string_to_stdio_stream (stderr, 0, (Bufbyte *) buf, 0,
2115 strlen (buf), FORMAT_TERMINAL);
2116 }
2117 stderr_out ("\n");
2118 }
2119
2120 static CONST char *
2121 XEvent_mode_to_string (int mode)
2122 {
2123 switch (mode)
2124 {
2125 case NotifyNormal: return "Normal";
2126 case NotifyGrab: return "Grab";
2127 case NotifyUngrab: return "Ungrab";
2128 case NotifyWhileGrabbed: return "WhileGrabbed";
2129 default: return "???";
2130 }
2131 }
2132
2133 static CONST char *
2134 XEvent_detail_to_string (int detail)
2135 {
2136 switch (detail)
2137 {
2138 case NotifyAncestor: return "Ancestor";
2139 case NotifyInferior: return "Inferior";
2140 case NotifyNonlinear: return "Nonlinear";
2141 case NotifyNonlinearVirtual: return "NonlinearVirtual";
2142 case NotifyPointer: return "Pointer";
2143 case NotifyPointerRoot: return "PointerRoot";
2144 case NotifyDetailNone: return "DetailNone";
2145 default: return "???";
2146 }
2147 }
2148
2149 static CONST char *
2150 XEvent_visibility_to_string (int state)
2151 {
2152 switch (state)
2153 {
2154 case VisibilityFullyObscured: return "FullyObscured";
2155 case VisibilityPartiallyObscured: return "PartiallyObscured";
2156 case VisibilityUnobscured: return "Unobscured";
2157 default: return "???";
2158 }
2159 }
2160
2161 static void
2162 describe_event (XEvent *event)
2163 {
2164 char buf[100];
2165 struct device *d = get_device_from_display (event->xany.display);
2166
2167 sprintf (buf, "%s%s", x_event_name (event->type),
2168 event->xany.send_event ? " (send)" : "");
2169 stderr_out ("%-30s", buf);
2170 switch (event->type)
2171 {
2172 case FocusIn:
2173 case FocusOut:
2174 {
2175 XFocusChangeEvent *ev = &event->xfocus;
2176 describe_event_window (ev->window, ev->display);
2177 stderr_out (" mode: %s\n", XEvent_mode_to_string (ev->mode));
2178 stderr_out (" detail: %s\n", XEvent_detail_to_string(ev->detail));
2179 break;
2180 }
2181
2182 case KeyPress:
2183 {
2184 XKeyEvent *ev = &event->xkey;
2185 unsigned int state = ev->state;
2186
2187 describe_event_window (ev->window, ev->display);
2188 stderr_out (" subwindow: %ld\n", ev->subwindow);
2189 stderr_out (" state: ");
2190 /* Complete list of modifier key masks */
2191 if (state & ShiftMask) stderr_out ("Shift ");
2192 if (state & LockMask) stderr_out ("Lock ");
2193 if (state & ControlMask) stderr_out ("Control ");
2194 if (state & Mod1Mask) stderr_out ("Mod1 ");
2195 if (state & Mod2Mask) stderr_out ("Mod2 ");
2196 if (state & Mod3Mask) stderr_out ("Mod3 ");
2197 if (state & Mod4Mask) stderr_out ("Mod4 ");
2198 if (state & Mod5Mask) stderr_out ("Mod5 ");
2199
2200 if (! state)
2201 stderr_out ("vanilla\n");
2202 else
2203 stderr_out ("\n");
2204 if (x_key_is_modifier_p (ev->keycode, d))
2205 stderr_out (" Modifier key");
2206 stderr_out (" keycode: 0x%x\n", ev->keycode);
2207 }
2208 break;
2209
2210 case Expose:
2211 if (x_debug_events > 1)
2212 {
2213 XExposeEvent *ev = &event->xexpose;
2214 describe_event_window (ev->window, ev->display);
2215 stderr_out (" region: x=%d y=%d width=%d height=%d\n",
2216 ev->x, ev->y, ev->width, ev->height);
2217 stderr_out (" count: %d\n", ev->count);
2218 }
2219 else
2220 stderr_out ("\n");
2221 break;
2222
2223 case GraphicsExpose:
2224 if (x_debug_events > 1)
2225 {
2226 XGraphicsExposeEvent *ev = &event->xgraphicsexpose;
2227 describe_event_window (ev->drawable, ev->display);
2228 stderr_out (" major: %s\n",
2229 (ev ->major_code == X_CopyArea ? "CopyArea" :
2230 (ev->major_code == X_CopyPlane ? "CopyPlane" : "?")));
2231 stderr_out (" region: x=%d y=%d width=%d height=%d\n",
2232 ev->x, ev->y, ev->width, ev->height);
2233 stderr_out (" count: %d\n", ev->count);
2234 }
2235 else
2236 stderr_out ("\n");
2237 break;
2238
2239 case EnterNotify:
2240 case LeaveNotify:
2241 if (x_debug_events > 1)
2242 {
2243 XCrossingEvent *ev = &event->xcrossing;
2244 describe_event_window (ev->window, ev->display);
2245 #if 0
2246 stderr_out(" subwindow: 0x%x\n", ev->subwindow);
2247 stderr_out(" pos: %d %d\n", ev->x, ev->y);
2248 stderr_out(" root pos: %d %d\n", ev->x_root, ev->y_root);
2249 #endif
2250 stderr_out(" mode: %s\n", XEvent_mode_to_string(ev->mode));
2251 stderr_out(" detail: %s\n", XEvent_detail_to_string(ev->detail));
2252 stderr_out(" focus: %d\n", ev->focus);
2253 #if 0
2254 stderr_out(" state: 0x%x\n", ev->state);
2255 #endif
2256 }
2257 else
2258 stderr_out("\n");
2259 break;
2260
2261 case ConfigureNotify:
2262 if (x_debug_events > 1)
2263 {
2264 XConfigureEvent *ev = &event->xconfigure;
2265 describe_event_window (ev->window, ev->display);
2266 stderr_out(" above: 0x%lx\n", ev->above);
2267 stderr_out(" size: %d %d %d %d\n", ev->x, ev->y,
2268 ev->width, ev->height);
2269 stderr_out(" redirect: %d\n", ev->override_redirect);
2270 }
2271 else
2272 stderr_out("\n");
2273 break;
2274
2275 case VisibilityNotify:
2276 if (x_debug_events > 1)
2277 {
2278 XVisibilityEvent *ev = &event->xvisibility;
2279 describe_event_window (ev->window, ev->display);
2280 stderr_out(" state: %s\n", XEvent_visibility_to_string(ev->state));
2281 }
2282 else
2283 stderr_out ("\n");
2284 break;
2285
2286 case ClientMessage:
2287 {
2288 XClientMessageEvent *ev = &event->xclient;
2289 char *name = XGetAtomName (ev->display, ev->message_type);
2290 stderr_out ("%s", name);
2291 if (!strcmp (name, "WM_PROTOCOLS")) {
2292 char *protname = XGetAtomName (ev->display, ev->data.l[0]);
2293 stderr_out ("(%s)", protname);
2294 XFree (protname);
2295 }
2296 XFree (name);
2297 stderr_out ("\n");
2298 break;
2299 }
2300
2301 default:
2302 stderr_out ("\n");
2303 break;
2304 }
2305
2306 fflush (stdout);
2307 }
2308
2309 #endif /* include describe_event definition */
2310
2311
2312 /************************************************************************/
2313 /* get the next event from Xt */
2314 /************************************************************************/
2315
2316 static Lisp_Object dispatch_event_queue, dispatch_event_queue_tail;
2317
2318 static void
2319 enqueue_Xt_dispatch_event (Lisp_Object event)
2320 {
2321 enqueue_event (event, &dispatch_event_queue, &dispatch_event_queue_tail);
2322 }
2323
2324 static Lisp_Object
2325 dequeue_Xt_dispatch_event (void)
2326 {
2327 return dequeue_event (&dispatch_event_queue, &dispatch_event_queue_tail);
2328 }
2329
2330 /* This business exists because menu events "happen" when
2331 menubar_selection_callback() is called from somewhere deep
2332 within XtAppProcessEvent in emacs_Xt_next_event(). The
2333 callback needs to terminate the modal loop in that function
2334 or else it will continue waiting until another event is
2335 received.
2336
2337 Same business applies to scrollbar events. */
2338
2339 void
2340 signal_special_Xt_user_event (Lisp_Object channel, Lisp_Object function,
2341 Lisp_Object object)
2342 {
2343 Lisp_Object event = Fmake_event (Qnil, Qnil);
2344
2345 XEVENT (event)->event_type = misc_user_event;
2346 XEVENT (event)->channel = channel;
2347 XEVENT (event)->event.eval.function = function;
2348 XEVENT (event)->event.eval.object = object;
2349
2350 enqueue_Xt_dispatch_event (event);
2351 }
2352
2353 static void
2354 emacs_Xt_next_event (struct Lisp_Event *emacs_event)
2355 {
2356 we_didnt_get_an_event:
2357
2358 while (NILP (dispatch_event_queue) &&
2359 !completed_timeouts &&
2360 !fake_event_occurred &&
2361 !process_events_occurred &&
2362 !tty_events_occurred)
2363 {
2364
2365 /* Stupid logic in XtAppProcessEvent() dictates that, if process
2366 events and X events are both available, the process event gets
2367 taken first. This will cause an infinite loop if we're being
2368 called from Fdiscard_input().
2369 */
2370 if (XtAppPending (Xt_app_con) & XtIMXEvent)
2371 XtAppProcessEvent (Xt_app_con, XtIMXEvent);
2372 else
2373 {
2374 Lisp_Object devcons, concons;
2375
2376 /* We're about to block. Xt has a bug in it (big surprise,
2377 there) in that it blocks using select() and doesn't
2378 flush the Xlib output buffers (XNextEvent() does this
2379 automatically before blocking). So it's necessary
2380 for us to do this ourselves. If we don't do it, then
2381 display output may not be seen until the next time
2382 an X event is received. (This happens esp. with
2383 subprocess output that gets sent to a visible buffer.)
2384
2385 #### The above comment may not have any validity. */
2386
2387 DEVICE_LOOP_NO_BREAK (devcons, concons)
2388 {
2389 struct device *d;
2390 d = XDEVICE (XCAR (devcons));
2391
2392 if (DEVICE_X_P (d) && DEVICE_X_DISPLAY (d))
2393 /* emacs may be exiting */
2394 XFlush (DEVICE_X_DISPLAY (d));
2395 }
2396 XtAppProcessEvent (Xt_app_con, XtIMAll);
2397 }
2398 }
2399
2400 if (!NILP (dispatch_event_queue))
2401 {
2402 Lisp_Object event, event2;
2403 XSETEVENT (event2, emacs_event);
2404 event = dequeue_Xt_dispatch_event ();
2405 Fcopy_event (event, event2);
2406 Fdeallocate_event (event);
2407 }
2408 else if (tty_events_occurred)
2409 {
2410 if (!Xt_tty_to_emacs_event (emacs_event))
2411 goto we_didnt_get_an_event;
2412 }
2413 else if (completed_timeouts)
2414 Xt_timeout_to_emacs_event (emacs_event);
2415 else if (fake_event_occurred)
2416 {
2417 /* A dummy event, so that a cycle of the command loop will occur. */
2418 fake_event_occurred = 0;
2419 /* eval events have nil as channel */
2420 emacs_event->event_type = eval_event;
2421 emacs_event->event.eval.function = Qidentity;
2422 emacs_event->event.eval.object = Qnil;
2423 }
2424 else /* if (process_events_occurred) */
2425 Xt_process_to_emacs_event (emacs_event);
2426
2427 /* No need to call XFilterEvent; Xt does it for us */
2428 }
2429
2430 void
2431 emacs_Xt_event_handler (Widget wid /* unused */,
2432 XtPointer closure /* unused */,
2433 XEvent *event,
2434 Boolean *continue_to_dispatch /* unused */)
2435 {
2436 Lisp_Object emacs_event = Fmake_event (Qnil, Qnil);
2437
2438 #ifdef DEBUG_XEMACS
2439 if (x_debug_events > 0)
2440 {
2441 describe_event (event);
2442 }
2443 #endif /* DEBUG_XEMACS */
2444 if (x_event_to_emacs_event (event, XEVENT (emacs_event)))
2445 enqueue_Xt_dispatch_event (emacs_event);
2446 else
2447 Fdeallocate_event (emacs_event);
2448 }
2449
2450
2451 /************************************************************************/
2452 /* input pending / C-g checking */
2453 /************************************************************************/
2454
2455 static Bool
2456 quit_char_predicate (Display *display, XEvent *event, XPointer data)
2457 {
2458 struct device *d = get_device_from_display (display);
2459 struct x_device *xd = DEVICE_X_DATA (d);
2460 char c, quit_char;
2461 Bool *critical = (Bool *) data;
2462 Lisp_Object keysym;
2463
2464 if (critical)
2465 *critical = False;
2466 if ((event->type != KeyPress) ||
2467 (! x_any_window_to_frame (d, event->xany.window)) ||
2468 (event->xkey.state
2469 & (xd->MetaMask | xd->HyperMask | xd->SuperMask | xd->AltMask)))
2470 return 0;
2471
2472 /* This duplicates some code that exists elsewhere, but it's relatively
2473 fast and doesn't cons. */
2474 keysym = x_to_emacs_keysym (&event->xkey, 1);
2475 if (NILP (keysym)) return 0;
2476 if (CHAR_OR_CHAR_INTP (keysym))
2477 c = XCHAR_OR_CHAR_INT (keysym);
2478 /* Highly doubtful that these are the quit character, but... */
2479 else if (EQ (keysym, QKbackspace)) c = '\b';
2480 else if (EQ (keysym, QKtab)) c = '\t';
2481 else if (EQ (keysym, QKlinefeed)) c = '\n';
2482 else if (EQ (keysym, QKreturn)) c = '\r';
2483 else if (EQ (keysym, QKescape)) c = 27;
2484 else if (EQ (keysym, QKspace)) c = ' ';
2485 else if (EQ (keysym, QKdelete)) c = 127;
2486 else return 0;
2487
2488 if (event->xkey.state & xd->MetaMask) c |= 0x80;
2489 if ((event->xkey.state & ControlMask) && !(c >= 'A' && c <= 'Z'))
2490 c &= 0x1F; /* unshifted control characters */
2491 quit_char = CONSOLE_QUIT_CHAR (XCONSOLE (DEVICE_CONSOLE (d)));
2492 if (c == quit_char)
2493 return True;
2494 /* If we've got Control-Shift-G instead of Control-G, that means
2495 we have a critical_quit. Caps_Lock is its own modifier, so it
2496 won't cause ^G to act differently than before. */
2497 if (event->xkey.state & ControlMask) c &= 0x1F;
2498 if (c == quit_char)
2499 {
2500 if (critical) *critical = True;
2501 return True;
2502 }
2503 return False;
2504 }
2505
2506 /* This scans the X input queue for a KeyPress event that matches the
2507 quit character, and sets Vquit_flag. This is called from the
2508 QUIT macro to determine whether we should quit.
2509
2510 In a SIGIO world, this won't be called unless a SIGIO has happened
2511 since the last time we checked.
2512
2513 In a non-SIGIO world, this is called from emacs_Xt_event_pending_p
2514 (which is called from input_pending_p).
2515 */
2516 static void
2517 x_check_for_quit_char (Display *display)
2518 {
2519 XEvent event;
2520 int queued;
2521 Bool critical_quit = False;
2522 XEventsQueued (display, QueuedAfterReading);
2523 queued = XCheckIfEvent (display, &event,
2524 quit_char_predicate,
2525 (char *) &critical_quit);
2526 if (queued)
2527 {
2528 Vquit_flag = (critical_quit ? Qcritical : Qt);
2529 /* don't put the event back onto the queue. Those functions that
2530 wanted to read a ^G directly have arranged to do this. */
2531 }
2532 }
2533
2534 static void
2535 check_for_tty_quit_char (struct device *d)
2536 {
2537 SELECT_TYPE temp_mask;
2538 int infd = DEVICE_INFD (d);
2539 struct console *con = XCONSOLE (DEVICE_CONSOLE (d));
2540 Emchar quit_char = CONSOLE_QUIT_CHAR (con);
2541
2542 FD_ZERO (&temp_mask);
2543 FD_SET (infd, &temp_mask);
2544
2545 while (1)
2546 {
2547 Lisp_Object event;
2548 Emchar the_char;
2549
2550 if (!poll_fds_for_input (temp_mask))
2551 return;
2552
2553 event = Fmake_event (Qnil, Qnil);
2554 if (!read_event_from_tty_or_stream_desc (XEVENT (event), con, infd))
2555 /* EOF, or something ... */
2556 return;
2557 /* #### bogus. quit-char should be allowed to be any sort
2558 of event. */
2559 the_char = event_to_character (XEVENT (event), 1, 0, 0);
2560 if (the_char >= 0 && the_char == quit_char)
2561 {
2562 Vquit_flag = Qt;
2563 /* do not queue the C-g. See above. */
2564 return;
2565 }
2566
2567 /* queue the read event to be read for real later. */
2568 enqueue_Xt_dispatch_event (event);
2569 }
2570 }
2571
2572 static void
2573 emacs_Xt_quit_p (void)
2574 {
2575 Lisp_Object devcons, concons;
2576 CONSOLE_LOOP (concons)
2577 {
2578 struct console *con = XCONSOLE (XCAR (concons));
2579 if (!con->input_enabled)
2580 continue;
2581
2582 CONSOLE_DEVICE_LOOP (devcons, con)
2583 {
2584 struct device *d;
2585 d = XDEVICE (XCAR (devcons));
2586
2587 if (DEVICE_X_P (d) && DEVICE_X_DISPLAY (d))
2588 /* emacs may be exiting */
2589 x_check_for_quit_char (DEVICE_X_DISPLAY (d));
2590 else if (DEVICE_TTY_P (d))
2591 check_for_tty_quit_char (d);
2592 }
2593 }
2594 }
2595
2596 static void
2597 drain_X_queue (void)
2598 {
2599 while (XtAppPending (Xt_app_con) & XtIMXEvent)
2600 XtAppProcessEvent (Xt_app_con, XtIMXEvent);
2601 }
2602
2603 static int
2604 emacs_Xt_event_pending_p (int user_p)
2605 {
2606 Lisp_Object event;
2607 int tick_count_val;
2608
2609 /* If `user_p' is false, then this function returns whether there are any
2610 X, timeout, or fd events pending (that is, whether emacs_Xt_next_event()
2611 would return immediately without blocking).
2612
2613 if `user_p' is true, then this function returns whether there are any
2614 *user generated* events available (that is, whether there are keyboard
2615 or mouse-click events ready to be read). This also implies that
2616 emacs_Xt_next_event() would not block.
2617
2618 In a non-SIGIO world, this also checks whether the user has typed ^G,
2619 since this is a convenient place to do so. We don't need to do this
2620 in a SIGIO world, since input causes an interrupt.
2621 */
2622
2623 #if 0
2624 /* I don't think there's any point to this and it will nullify
2625 the speed gains achieved by the sigio_happened checking below.
2626 Its only advantage is that it may possibly make C-g response
2627 a bit faster. The C-g will be noticed within 0.25 second, anyway,
2628 even without this. */
2629 #ifndef SIGIO
2630 /* First check for C-g if necessary */
2631 emacs_Xt_quit_p ();
2632 #endif
2633 #endif
2634
2635 /* This function used to simply check whether there were any X
2636 events (or if user_p was 1, it iterated over all the pending
2637 X events using XCheckIfEvent(), looking for keystrokes and
2638 button events). That worked in the old cheesoid event loop,
2639 which didn't go through XtAppDispatchEvent(), but it doesn't
2640 work any more -- X events may not result in anything. For
2641 example, a button press in a blank part of the menubar appears
2642 as an X event but will not result in any Emacs events (a
2643 button press that activates the menubar results in an Emacs
2644 event through the stop_next_event mechanism).
2645
2646 The only accurate way of determining whether these X events
2647 translate into Emacs events is to go ahead and dispatch them
2648 until there's something on the dispatch queue. */
2649
2650 /* See if there are any user events already on the queue. */
2651 EVENT_CHAIN_LOOP (event, dispatch_event_queue)
2652 if (!user_p || command_event_p (event))
2653 return 1;
2654
2655 /* See if there's any TTY input available.
2656 */
2657 if (poll_fds_for_input (tty_only_mask))
2658 return 1;
2659
2660 if (!user_p)
2661 {
2662 /* If not user_p and there are any timer or file-desc events
2663 pending, we know there will be an event so we're through. */
2664 XtInputMask pending_value;
2665
2666 /* Note that formerly we just checked the value of XtAppPending()
2667 to determine if there was file-desc input. This doesn't
2668 work any more with the signal_event_pipe; XtAppPending()
2669 will says "yes" in this case but there isn't really any
2670 input. Another way of fixing this problem is for the
2671 signal_event_pipe to generate actual input in the form
2672 of an identity eval event or something. (#### maybe this
2673 actually happens?) */
2674
2675 if (poll_fds_for_input (process_only_mask))
2676 return 1;
2677
2678 pending_value = XtAppPending (Xt_app_con);
2679
2680 if (pending_value & XtIMTimer)
2681 return 1;
2682 }
2683
2684 /* XtAppPending() can be super-slow, esp. over a network connection.
2685 Quantify results have indicated that in some cases the
2686 call to detect_input_pending() completely dominates the
2687 running time of redisplay(). Fortunately, in a SIGIO world
2688 we can more quickly determine whether there are any X events:
2689 if an event has happened since the last time we checked, then
2690 a SIGIO will have happened. On a machine with broken SIGIO,
2691 we'll still be in an OK state -- the sigio_happened flag
2692 will get set at least once a second, so we'll be no more than
2693 one second behind reality. (In general it's OK if we
2694 erroneously report no input pending when input is actually
2695 pending() -- preemption is just a bit less efficient, that's
2696 all. It's bad bad bad if you err the other way -- you've
2697 promised that `next-event' won't block but it actually will,
2698 and some action might get delayed until the next time you
2699 hit a key.)
2700 */
2701
2702 /* quit_check_signal_tick_count is volatile so try to avoid race conditions
2703 by using a temporary variable */
2704 tick_count_val = quit_check_signal_tick_count;
2705 if (last_quit_check_signal_tick_count != tick_count_val)
2706 {
2707 last_quit_check_signal_tick_count = tick_count_val;
2708
2709 /* We need to drain the entire queue now -- if we only
2710 drain part of it, we may later on end up with events
2711 actually pending but detect_input_pending() returning
2712 false because there wasn't another SIGIO. */
2713 drain_X_queue ();
2714
2715 EVENT_CHAIN_LOOP (event, dispatch_event_queue)
2716 if (!user_p || command_event_p (event))
2717 return 1;
2718 }
2719
2720 return 0;
2721 }
2722
2723
2724 /************************************************************************/
2725 /* replacement for standard string-to-pixel converter */
2726 /************************************************************************/
2727
2728 /* This was constructed by ripping off the standard string-to-pixel
2729 converter from Converters.c in the Xt source code and modifying
2730 appropriately. */
2731
2732 #if 0
2733
2734 /* This is exported by the Xt library (at least by mine). If this
2735 isn't the case somewhere, rename this appropriately and remove
2736 the '#if 0'. Note, however, that I got "unknown structure"
2737 errors when I tried this. */
2738 XtConvertArgRec Const colorConvertArgs[] = {
2739 {XtWidgetBaseOffset, (XtPointer)XtOffsetOf(WidgetRec, core.screen),
2740 sizeof(Screen *)},
2741 {XtWidgetBaseOffset, (XtPointer)XtOffsetOf(WidgetRec, core.colormap),
2742 sizeof(Colormap)}
2743 };
2744
2745 #endif
2746
2747 #define done(type, value) \
2748 if (toVal->addr != NULL) { \
2749 if (toVal->size < sizeof(type)) { \
2750 toVal->size = sizeof(type); \
2751 return False; \
2752 } \
2753 *(type*)(toVal->addr) = (value); \
2754 } else { \
2755 static type static_val; \
2756 static_val = (value); \
2757 toVal->addr = (XPointer)&static_val; \
2758 } \
2759 toVal->size = sizeof(type); \
2760 return True /* Caller supplies `;' */
2761
2762 /* JH: We use this because I think there's a possibility this
2763 is called before the device is properly set up, in which case
2764 I don't want to abort. */
2765 extern struct device *get_device_from_display_1 (Display *dpy);
2766
2767 static
2768 Boolean EmacsXtCvtStringToPixel (
2769 Display *dpy,
2770 XrmValuePtr args,
2771 Cardinal *num_args,
2772 XrmValuePtr fromVal,
2773 XrmValuePtr toVal,
2774 XtPointer *closure_ret)
2775 {
2776 String str = (String)fromVal->addr;
2777 XColor screenColor;
2778 XColor exactColor;
2779 Screen *screen;
2780 Colormap colormap;
2781 Visual *visual;
2782 struct device *d;
2783 Status status;
2784 String params[1];
2785 Cardinal num_params = 1;
2786 XtAppContext the_app_con = XtDisplayToApplicationContext (dpy);
2787
2788 if (*num_args != 2) {
2789 XtAppWarningMsg(the_app_con, "wrongParameters", "cvtStringToPixel",
2790 "XtToolkitError",
2791 "String to pixel conversion needs screen and colormap arguments",
2792 (String *)NULL, (Cardinal *)NULL);
2793 return False;
2794 }
2795
2796 screen = *((Screen **) args[0].addr);
2797 colormap = *((Colormap *) args[1].addr);
2798
2799 /* The original uses the private function CompareISOLatin1().
2800 Use XmuCompareISOLatin1() if you want, but I don't think it
2801 makes any difference here. */
2802 if (strcmp(str, XtDefaultBackground) == 0) {
2803 *closure_ret = False;
2804 /* This refers to the display's "*reverseVideo" resource.
2805 These display resources aren't documented anywhere that
2806 I can find, so I'm going to ignore this. */
2807 /* if (pd->rv) done(Pixel, BlackPixelOfScreen(screen)) else */
2808 done(Pixel, WhitePixelOfScreen(screen));
2809 }
2810 if (strcmp(str, XtDefaultForeground) == 0) {
2811 *closure_ret = False;
2812 /* if (pd->rv) done(Pixel, WhitePixelOfScreen(screen)) else */
2813 done(Pixel, BlackPixelOfScreen(screen));
2814 }
2815
2816 /* Originally called XAllocNamedColor() here. */
2817 if ((d = get_device_from_display_1(dpy))) {
2818 visual = DEVICE_X_VISUAL(d);
2819 if (colormap != DEVICE_X_COLORMAP(d)) {
2820 XtAppWarningMsg(the_app_con, "wierdColormap", "cvtStringToPixel",
2821 "XtToolkitWarning",
2822 "The colormap passed to cvtStringToPixel doesn't match the one registerd to the device.\n",
2823 NULL, 0);
2824 status = XAllocNamedColor(dpy, colormap, (char*)str, &screenColor, &exactColor);
2825 } else {
2826 status = XParseColor (dpy, colormap, (char*)str, &screenColor);
2827 if (status) {
2828 status = allocate_nearest_color (dpy, colormap, visual, &screenColor);
2829 }
2830 }
2831 } else {
2832 /* We haven't set up this device totally yet, so just punt */
2833 status = XAllocNamedColor(dpy, colormap, (char*)str, &screenColor, &exactColor);
2834 }
2835 if (status == 0) {
2836 params[0] = str;
2837 /* Server returns a specific error code but Xlib discards it. Ugh */
2838 if (XLookupColor(DisplayOfScreen(screen), colormap, (char*) str,
2839 &exactColor, &screenColor)) {
2840 XtAppWarningMsg(the_app_con, "noColormap", "cvtStringToPixel",
2841 "XtToolkitError",
2842 "Cannot allocate colormap entry for \"%s\"",
2843 params, &num_params);
2844
2845 } else {
2846 XtAppWarningMsg(the_app_con, "badValue", "cvtStringToPixel",
2847 "XtToolkitError",
2848 "Color name \"%s\" is not defined", params, &num_params);
2849 }
2850
2851 *closure_ret = False;
2852 return False;
2853 } else {
2854 *closure_ret = (char*)True;
2855 done(Pixel, screenColor.pixel);
2856 }
2857 }
2858
2859 /* ARGSUSED */
2860 static void EmacsFreePixel (
2861 XtAppContext app,
2862 XrmValuePtr toVal,
2863 XtPointer closure,
2864 XrmValuePtr args,
2865 Cardinal *num_args)
2866 {
2867 if (*num_args != 2) {
2868 XtAppWarningMsg(app, "wrongParameters","freePixel","XtToolkitError",
2869 "Freeing a pixel requires screen and colormap arguments",
2870 (String *)NULL, (Cardinal *)NULL);
2871 return;
2872 }
2873
2874 if (closure) {
2875 Screen *screen = *((Screen **) args[0].addr);
2876 Colormap colormap = *((Colormap *) args[1].addr);
2877 XFreeColors(DisplayOfScreen(screen), colormap,
2878 (unsigned long*)toVal->addr, 1, (unsigned long)0);
2879 }
2880 }
2881
2882
2883 /************************************************************************/
2884 /* initialization */
2885 /************************************************************************/
2886
2887 void
2888 syms_of_event_Xt (void)
2889 {
2890 defsymbol (&Qkey_mapping, "key-mapping");
2891 defsymbol (&Qsans_modifiers, "sans-modifiers");
2892 }
2893
2894 void
2895 reinit_vars_of_event_Xt (void)
2896 {
2897 Xt_event_stream = xnew (struct event_stream);
2898 Xt_event_stream->event_pending_p = emacs_Xt_event_pending_p;
2899 Xt_event_stream->next_event_cb = emacs_Xt_next_event;
2900 Xt_event_stream->handle_magic_event_cb = emacs_Xt_handle_magic_event;
2901 Xt_event_stream->add_timeout_cb = emacs_Xt_add_timeout;
2902 Xt_event_stream->remove_timeout_cb = emacs_Xt_remove_timeout;
2903 Xt_event_stream->select_console_cb = emacs_Xt_select_console;
2904 Xt_event_stream->unselect_console_cb = emacs_Xt_unselect_console;
2905 Xt_event_stream->select_process_cb = emacs_Xt_select_process;
2906 Xt_event_stream->unselect_process_cb = emacs_Xt_unselect_process;
2907 Xt_event_stream->quit_p_cb = emacs_Xt_quit_p;
2908 Xt_event_stream->create_stream_pair_cb = emacs_Xt_create_stream_pair;
2909 Xt_event_stream->delete_stream_pair_cb = emacs_Xt_delete_stream_pair;
2910
2911 the_Xt_timeout_blocktype = Blocktype_new (struct Xt_timeout_blocktype);
2912
2913 last_quit_check_signal_tick_count = 0;
2914
2915 /* this function only makes safe calls */
2916 init_what_input_once ();
2917 }
2918
2919 void
2920 vars_of_event_Xt (void)
2921 {
2922 reinit_vars_of_event_Xt ();
2923
2924 dispatch_event_queue = Qnil;
2925 staticpro (&dispatch_event_queue);
2926 dispatch_event_queue_tail = Qnil;
2927 pdump_wire (&dispatch_event_queue_tail);
2928
2929 DEFVAR_BOOL ("modifier-keys-are-sticky", &modifier_keys_are_sticky /*
2930 *Non-nil makes modifier keys sticky.
2931 This means that you can release the modifier key before pressing down
2932 the key that you wish to be modified. Although this is non-standard
2933 behavior, it is recommended because it reduces the strain on your hand,
2934 thus reducing the incidence of the dreaded Emacs-pinky syndrome.
2935 */ );
2936 modifier_keys_are_sticky = 0;
2937
2938 DEFVAR_BOOL ("x-allow-sendevents", &x_allow_sendevents /*
2939 *Non-nil means to allow synthetic events. Nil means they are ignored.
2940 Beware: allowing emacs to process SendEvents opens a big security hole.
2941 */ );
2942 x_allow_sendevents = 0;
2943
2944 #ifdef DEBUG_XEMACS
2945 DEFVAR_INT ("x-debug-events", &x_debug_events /*
2946 If non-zero, display debug information about X events that XEmacs sees.
2947 Information is displayed on stderr. Currently defined values are:
2948
2949 1 == non-verbose output
2950 2 == verbose output
2951 */ );
2952 x_debug_events = 0;
2953 #endif
2954 }
2955
2956 /* This mess is a hack that patches the shell widget to treat visual inheritance
2957 the same as colormap and depth inheritance */
2958
2959 static XtInitProc orig_shell_init_proc;
2960
2961 static void ShellVisualPatch(Widget wanted, Widget new,
2962 ArgList args, Cardinal *num_args)
2963 {
2964 Widget p;
2965 ShellWidget w = (ShellWidget) new;
2966
2967 /* first, call the original setup */
2968 (*orig_shell_init_proc)(wanted, new, args, num_args);
2969
2970 /* if the visual isn't explicitly set, grab it from the nearest shell ancestor */
2971 if (w->shell.visual == CopyFromParent) {
2972 p = XtParent(w);
2973 while (p && !XtIsShell(p)) p = XtParent(p);
2974 if (p) w->shell.visual = ((ShellWidget)p)->shell.visual;
2975 }
2976 }
2977
2978 void
2979 init_event_Xt_late (void) /* called when already initialized */
2980 {
2981 timeout_id_tick = 1;
2982 pending_timeouts = 0;
2983 completed_timeouts = 0;
2984
2985 event_stream = Xt_event_stream;
2986
2987 #if defined(HAVE_XIM) || defined(USE_XFONTSET)
2988 Initialize_Locale();
2989 #endif /* HAVE_XIM || USE_XFONTSET */
2990
2991 XtToolkitInitialize ();
2992 Xt_app_con = XtCreateApplicationContext ();
2993 XtAppSetFallbackResources (Xt_app_con, (String *) x_fallback_resources);
2994
2995 /* In xselect.c */
2996 x_selection_timeout = (XtAppGetSelectionTimeout (Xt_app_con) / 1000);
2997 XSetErrorHandler (x_error_handler);
2998 XSetIOErrorHandler (x_IO_error_handler);
2999
3000 #ifndef WINDOWSNT
3001 XtAppAddInput (Xt_app_con, signal_event_pipe[0],
3002 (XtPointer) (XtInputReadMask /* | XtInputExceptMask */),
3003 Xt_what_callback, 0);
3004 #endif
3005
3006 XtAppSetTypeConverter (Xt_app_con, XtRString, XtRPixel,
3007 EmacsXtCvtStringToPixel,
3008 (XtConvertArgList) colorConvertArgs,
3009 2, XtCacheByDisplay, EmacsFreePixel);
3010
3011 #ifdef XIM_XLIB
3012 XtAppSetTypeConverter (Xt_app_con, XtRString, XtRXimStyles,
3013 EmacsXtCvtStringToXIMStyles,
3014 NULL, 0,
3015 XtCacheByDisplay, EmacsFreeXIMStyles);
3016 #endif /* XIM_XLIB */
3017
3018 /* insert the visual inheritance patch/hack described above */
3019 orig_shell_init_proc = shellClassRec.core_class.initialize;
3020 shellClassRec.core_class.initialize = ShellVisualPatch;
3021
3022 }