* keyboard.c (access_keymap_keyremap): Print func name, not garbage.
[bpt/emacs.git] / src / keyboard.c
1 /* Keyboard and mouse input; editor command loop.
2
3 Copyright (C) 1985-1989, 1993-1997, 1999-2011 Free Software Foundation, Inc.
4
5 This file is part of GNU Emacs.
6
7 GNU Emacs is free software: you can redistribute it and/or modify
8 it under the terms of the GNU General Public License as published by
9 the Free Software Foundation, either version 3 of the License, or
10 (at your option) any later version.
11
12 GNU Emacs is distributed in the hope that it will be useful,
13 but WITHOUT ANY WARRANTY; without even the implied warranty of
14 MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
15 GNU General Public License for more details.
16
17 You should have received a copy of the GNU General Public License
18 along with GNU Emacs. If not, see <http://www.gnu.org/licenses/>. */
19
20 #include <config.h>
21 #include <signal.h>
22 #include <stdio.h>
23 #include <setjmp.h>
24 #include "lisp.h"
25 #include "termchar.h"
26 #include "termopts.h"
27 #include "frame.h"
28 #include "termhooks.h"
29 #include "macros.h"
30 #include "keyboard.h"
31 #include "window.h"
32 #include "commands.h"
33 #include "buffer.h"
34 #include "character.h"
35 #include "disptab.h"
36 #include "dispextern.h"
37 #include "syntax.h"
38 #include "intervals.h"
39 #include "keymap.h"
40 #include "blockinput.h"
41 #include "puresize.h"
42 #include "systime.h"
43 #include "atimer.h"
44 #include "process.h"
45 #include <errno.h>
46
47 #ifdef HAVE_GTK_AND_PTHREAD
48 #include <pthread.h>
49 #endif
50 #ifdef MSDOS
51 #include "msdos.h"
52 #include <time.h>
53 #else /* not MSDOS */
54 #include <sys/ioctl.h>
55 #endif /* not MSDOS */
56
57 #include "syssignal.h"
58
59 #include <sys/types.h>
60 #include <unistd.h>
61 #include <fcntl.h>
62
63 /* This is to get the definitions of the XK_ symbols. */
64 #ifdef HAVE_X_WINDOWS
65 #include "xterm.h"
66 #endif
67
68 #ifdef HAVE_NTGUI
69 #include "w32term.h"
70 #endif /* HAVE_NTGUI */
71
72 #ifdef HAVE_NS
73 #include "nsterm.h"
74 #endif
75
76 /* Variables for blockinput.h: */
77
78 /* Non-zero if interrupt input is blocked right now. */
79 volatile int interrupt_input_blocked;
80
81 /* Nonzero means an input interrupt has arrived
82 during the current critical section. */
83 int interrupt_input_pending;
84
85 /* This var should be (interrupt_input_pending || pending_atimers).
86 The QUIT macro checks this instead of interrupt_input_pending and
87 pending_atimers separately, to reduce code size. So, any code that
88 changes interrupt_input_pending or pending_atimers should update
89 this too. */
90 #ifdef SYNC_INPUT
91 int pending_signals;
92 #endif
93
94 #define KBD_BUFFER_SIZE 4096
95
96 KBOARD *initial_kboard;
97 KBOARD *current_kboard;
98 KBOARD *all_kboards;
99 int single_kboard;
100
101 /* Non-nil disable property on a command means
102 do not execute it; call disabled-command-function's value instead. */
103 Lisp_Object Qdisabled, Qdisabled_command_function;
104
105 #define NUM_RECENT_KEYS (300)
106 int recent_keys_index; /* Index for storing next element into recent_keys */
107 int total_keys; /* Total number of elements stored into recent_keys */
108 Lisp_Object recent_keys; /* Vector holds the last NUM_RECENT_KEYS keystrokes */
109
110 /* Vector holding the key sequence that invoked the current command.
111 It is reused for each command, and it may be longer than the current
112 sequence; this_command_key_count indicates how many elements
113 actually mean something.
114 It's easier to staticpro a single Lisp_Object than an array. */
115 Lisp_Object this_command_keys;
116 int this_command_key_count;
117
118 /* 1 after calling Freset_this_command_lengths.
119 Usually it is 0. */
120 int this_command_key_count_reset;
121
122 /* This vector is used as a buffer to record the events that were actually read
123 by read_key_sequence. */
124 Lisp_Object raw_keybuf;
125 int raw_keybuf_count;
126
127 #define GROW_RAW_KEYBUF \
128 if (raw_keybuf_count == XVECTOR (raw_keybuf)->size) \
129 raw_keybuf = larger_vector (raw_keybuf, raw_keybuf_count * 2, Qnil) \
130
131 /* Number of elements of this_command_keys
132 that precede this key sequence. */
133 int this_single_command_key_start;
134
135 /* Record values of this_command_key_count and echo_length ()
136 before this command was read. */
137 static int before_command_key_count;
138 static int before_command_echo_length;
139
140 /* For longjmp to where kbd input is being done. */
141
142 static jmp_buf getcjmp;
143
144 /* True while doing kbd input. */
145 int waiting_for_input;
146
147 /* True while displaying for echoing. Delays C-g throwing. */
148
149 int echoing;
150
151 /* Non-null means we can start echoing at the next input pause even
152 though there is something in the echo area. */
153
154 static struct kboard *ok_to_echo_at_next_pause;
155
156 /* The kboard last echoing, or null for none. Reset to 0 in
157 cancel_echoing. If non-null, and a current echo area message
158 exists, and echo_message_buffer is eq to the current message
159 buffer, we know that the message comes from echo_kboard. */
160
161 struct kboard *echo_kboard;
162
163 /* The buffer used for echoing. Set in echo_now, reset in
164 cancel_echoing. */
165
166 Lisp_Object echo_message_buffer;
167
168 /* Nonzero means C-g should cause immediate error-signal. */
169 int immediate_quit;
170
171 /* Character that causes a quit. Normally C-g.
172
173 If we are running on an ordinary terminal, this must be an ordinary
174 ASCII char, since we want to make it our interrupt character.
175
176 If we are not running on an ordinary terminal, it still needs to be
177 an ordinary ASCII char. This character needs to be recognized in
178 the input interrupt handler. At this point, the keystroke is
179 represented as a struct input_event, while the desired quit
180 character is specified as a lispy event. The mapping from struct
181 input_events to lispy events cannot run in an interrupt handler,
182 and the reverse mapping is difficult for anything but ASCII
183 keystrokes.
184
185 FOR THESE ELABORATE AND UNSATISFYING REASONS, quit_char must be an
186 ASCII character. */
187 int quit_char;
188
189 /* Current depth in recursive edits. */
190 int command_loop_level;
191
192 /* If not Qnil, this is a switch-frame event which we decided to put
193 off until the end of a key sequence. This should be read as the
194 next command input, after any unread_command_events.
195
196 read_key_sequence uses this to delay switch-frame events until the
197 end of the key sequence; Fread_char uses it to put off switch-frame
198 events until a non-ASCII event is acceptable as input. */
199 Lisp_Object unread_switch_frame;
200
201 /* Last size recorded for a current buffer which is not a minibuffer. */
202 static EMACS_INT last_non_minibuf_size;
203
204 /* Total number of times read_char has returned, modulo SIZE_MAX + 1. */
205 size_t num_input_events;
206
207 /* Value of num_nonmacro_input_events as of last auto save. */
208
209 int last_auto_save;
210
211 /* This is like Vthis_command, except that commands never set it. */
212 Lisp_Object real_this_command;
213
214 /* The value of point when the last command was started. */
215 EMACS_INT last_point_position;
216
217 /* The buffer that was current when the last command was started. */
218 Lisp_Object last_point_position_buffer;
219
220 /* The window that was selected when the last command was started. */
221 Lisp_Object last_point_position_window;
222
223 /* The frame in which the last input event occurred, or Qmacro if the
224 last event came from a macro. We use this to determine when to
225 generate switch-frame events. This may be cleared by functions
226 like Fselect_frame, to make sure that a switch-frame event is
227 generated by the next character. */
228 Lisp_Object internal_last_event_frame;
229
230 /* The timestamp of the last input event we received from the X server.
231 X Windows wants this for selection ownership. */
232 unsigned long last_event_timestamp;
233
234 Lisp_Object Qx_set_selection, QPRIMARY, Qhandle_switch_frame;
235
236 Lisp_Object Qself_insert_command;
237 Lisp_Object Qforward_char;
238 Lisp_Object Qbackward_char;
239 Lisp_Object Qundefined;
240 Lisp_Object Qtimer_event_handler;
241
242 /* read_key_sequence stores here the command definition of the
243 key sequence that it reads. */
244 Lisp_Object read_key_sequence_cmd;
245
246 Lisp_Object Qinput_method_function;
247
248 Lisp_Object Qdeactivate_mark;
249
250 Lisp_Object Qrecompute_lucid_menubar, Qactivate_menubar_hook;
251
252 Lisp_Object Qecho_area_clear_hook;
253
254 /* Hooks to run before and after each command. */
255 Lisp_Object Qpre_command_hook;
256 Lisp_Object Qpost_command_hook;
257
258 Lisp_Object Qdeferred_action_function;
259
260 Lisp_Object Qinput_method_exit_on_first_char;
261 Lisp_Object Qinput_method_use_echo_area;
262
263 /* File in which we write all commands we read. */
264 FILE *dribble;
265
266 /* Nonzero if input is available. */
267 int input_pending;
268
269 /* Circular buffer for pre-read keyboard input. */
270
271 static struct input_event kbd_buffer[KBD_BUFFER_SIZE];
272
273 /* Pointer to next available character in kbd_buffer.
274 If kbd_fetch_ptr == kbd_store_ptr, the buffer is empty.
275 This may be kbd_buffer + KBD_BUFFER_SIZE, meaning that the
276 next available char is in kbd_buffer[0]. */
277 static struct input_event *kbd_fetch_ptr;
278
279 /* Pointer to next place to store character in kbd_buffer. This
280 may be kbd_buffer + KBD_BUFFER_SIZE, meaning that the next
281 character should go in kbd_buffer[0]. */
282 static struct input_event * volatile kbd_store_ptr;
283
284 /* The above pair of variables forms a "queue empty" flag. When we
285 enqueue a non-hook event, we increment kbd_store_ptr. When we
286 dequeue a non-hook event, we increment kbd_fetch_ptr. We say that
287 there is input available if the two pointers are not equal.
288
289 Why not just have a flag set and cleared by the enqueuing and
290 dequeuing functions? Such a flag could be screwed up by interrupts
291 at inopportune times. */
292
293 /* Symbols to head events. */
294 Lisp_Object Qmouse_movement;
295 Lisp_Object Qscroll_bar_movement;
296 Lisp_Object Qswitch_frame;
297 Lisp_Object Qdelete_frame;
298 Lisp_Object Qiconify_frame;
299 Lisp_Object Qmake_frame_visible;
300 Lisp_Object Qselect_window;
301 Lisp_Object Qhelp_echo;
302
303 #if defined (HAVE_MOUSE) || defined (HAVE_GPM)
304 Lisp_Object Qmouse_fixup_help_message;
305 #endif
306
307 /* Symbols to denote kinds of events. */
308 Lisp_Object Qfunction_key;
309 Lisp_Object Qmouse_click;
310 #if defined (WINDOWSNT)
311 Lisp_Object Qlanguage_change;
312 #endif
313 Lisp_Object Qdrag_n_drop;
314 Lisp_Object Qsave_session;
315 #ifdef HAVE_DBUS
316 Lisp_Object Qdbus_event;
317 #endif
318 Lisp_Object Qconfig_changed_event;
319
320 /* Lisp_Object Qmouse_movement; - also an event header */
321
322 /* Properties of event headers. */
323 Lisp_Object Qevent_kind;
324 Lisp_Object Qevent_symbol_elements;
325
326 /* menu and tool bar item parts */
327 Lisp_Object Qmenu_enable;
328 Lisp_Object QCenable, QCvisible, QChelp, QCfilter, QCkeys, QCkey_sequence;
329 Lisp_Object QCbutton, QCtoggle, QCradio, QClabel, QCvert_only;
330
331 /* An event header symbol HEAD may have a property named
332 Qevent_symbol_element_mask, which is of the form (BASE MODIFIERS);
333 BASE is the base, unmodified version of HEAD, and MODIFIERS is the
334 mask of modifiers applied to it. If present, this is used to help
335 speed up parse_modifiers. */
336 Lisp_Object Qevent_symbol_element_mask;
337
338 /* An unmodified event header BASE may have a property named
339 Qmodifier_cache, which is an alist mapping modifier masks onto
340 modified versions of BASE. If present, this helps speed up
341 apply_modifiers. */
342 Lisp_Object Qmodifier_cache;
343
344 /* Symbols to use for parts of windows. */
345 Lisp_Object Qmode_line;
346 Lisp_Object Qvertical_line;
347 Lisp_Object Qvertical_scroll_bar;
348 Lisp_Object Qmenu_bar;
349
350 Lisp_Object recursive_edit_unwind (Lisp_Object buffer), command_loop (void);
351 Lisp_Object Fthis_command_keys (void);
352 Lisp_Object Qextended_command_history;
353 EMACS_TIME timer_check (void);
354
355 static void record_menu_key (Lisp_Object c);
356 static int echo_length (void);
357
358 Lisp_Object Qpolling_period;
359
360 /* Incremented whenever a timer is run. */
361 int timers_run;
362
363 /* Address (if not 0) of EMACS_TIME to zero out if a SIGIO interrupt
364 happens. */
365 EMACS_TIME *input_available_clear_time;
366
367 /* Nonzero means use SIGIO interrupts; zero means use CBREAK mode.
368 Default is 1 if INTERRUPT_INPUT is defined. */
369 int interrupt_input;
370
371 /* Nonzero while interrupts are temporarily deferred during redisplay. */
372 int interrupts_deferred;
373
374 /* Allow m- file to inhibit use of FIONREAD. */
375 #ifdef BROKEN_FIONREAD
376 #undef FIONREAD
377 #endif
378
379 /* We are unable to use interrupts if FIONREAD is not available,
380 so flush SIGIO so we won't try. */
381 #if !defined (FIONREAD)
382 #ifdef SIGIO
383 #undef SIGIO
384 #endif
385 #endif
386
387 /* If we support a window system, turn on the code to poll periodically
388 to detect C-g. It isn't actually used when doing interrupt input. */
389 #if defined(HAVE_WINDOW_SYSTEM) && !defined(USE_ASYNC_EVENTS)
390 #define POLL_FOR_INPUT
391 #endif
392
393 /* The time when Emacs started being idle. */
394
395 static EMACS_TIME timer_idleness_start_time;
396
397 /* After Emacs stops being idle, this saves the last value
398 of timer_idleness_start_time from when it was idle. */
399
400 static EMACS_TIME timer_last_idleness_start_time;
401
402 \f
403 /* Global variable declarations. */
404
405 /* Flags for readable_events. */
406 #define READABLE_EVENTS_DO_TIMERS_NOW (1 << 0)
407 #define READABLE_EVENTS_FILTER_EVENTS (1 << 1)
408 #define READABLE_EVENTS_IGNORE_SQUEEZABLES (1 << 2)
409
410 /* Function for init_keyboard to call with no args (if nonzero). */
411 void (*keyboard_init_hook) (void);
412
413 static int read_avail_input (int);
414 static void get_input_pending (int *, int);
415 static int readable_events (int);
416 static Lisp_Object read_char_x_menu_prompt (int, Lisp_Object *,
417 Lisp_Object, int *);
418 static Lisp_Object read_char_minibuf_menu_prompt (int, int,
419 Lisp_Object *);
420 static Lisp_Object make_lispy_event (struct input_event *);
421 #if defined (HAVE_MOUSE) || defined (HAVE_GPM)
422 static Lisp_Object make_lispy_movement (struct frame *, Lisp_Object,
423 enum scroll_bar_part,
424 Lisp_Object, Lisp_Object,
425 unsigned long);
426 #endif
427 static Lisp_Object modify_event_symbol (EMACS_INT, unsigned, Lisp_Object,
428 Lisp_Object, const char *const *,
429 Lisp_Object *, unsigned);
430 static Lisp_Object make_lispy_switch_frame (Lisp_Object);
431 static void save_getcjmp (jmp_buf);
432 static void restore_getcjmp (jmp_buf);
433 static Lisp_Object apply_modifiers (int, Lisp_Object);
434 static void clear_event (struct input_event *);
435 static Lisp_Object restore_kboard_configuration (Lisp_Object);
436 static void interrupt_signal (int signalnum);
437 #ifdef SIGIO
438 static void input_available_signal (int signo);
439 #endif
440 static void handle_interrupt (void);
441 static void timer_start_idle (void);
442 static void timer_stop_idle (void);
443 static void timer_resume_idle (void);
444 static void handle_user_signal (int);
445 static char *find_user_signal_name (int);
446 static int store_user_signal_events (void);
447
448 \f
449 /* Add C to the echo string, if echoing is going on.
450 C can be a character, which is printed prettily ("M-C-x" and all that
451 jazz), or a symbol, whose name is printed. */
452
453 static void
454 echo_char (Lisp_Object c)
455 {
456 if (current_kboard->immediate_echo)
457 {
458 int size = KEY_DESCRIPTION_SIZE + 100;
459 char *buffer = (char *) alloca (size);
460 char *ptr = buffer;
461 Lisp_Object echo_string;
462
463 echo_string = KVAR (current_kboard, echo_string);
464
465 /* If someone has passed us a composite event, use its head symbol. */
466 c = EVENT_HEAD (c);
467
468 if (INTEGERP (c))
469 {
470 ptr = push_key_description (XINT (c), ptr, 1);
471 }
472 else if (SYMBOLP (c))
473 {
474 Lisp_Object name = SYMBOL_NAME (c);
475 int nbytes = SBYTES (name);
476
477 if (size - (ptr - buffer) < nbytes)
478 {
479 int offset = ptr - buffer;
480 size = max (2 * size, size + nbytes);
481 buffer = (char *) alloca (size);
482 ptr = buffer + offset;
483 }
484
485 ptr += copy_text (SDATA (name), (unsigned char *) ptr, nbytes,
486 STRING_MULTIBYTE (name), 1);
487 }
488
489 if ((NILP (echo_string) || SCHARS (echo_string) == 0)
490 && help_char_p (c))
491 {
492 const char *text = " (Type ? for further options)";
493 int len = strlen (text);
494
495 if (size - (ptr - buffer) < len)
496 {
497 int offset = ptr - buffer;
498 size += len;
499 buffer = (char *) alloca (size);
500 ptr = buffer + offset;
501 }
502
503 memcpy (ptr, text, len);
504 ptr += len;
505 }
506
507 /* Replace a dash from echo_dash with a space, otherwise
508 add a space at the end as a separator between keys. */
509 if (STRINGP (echo_string)
510 && SCHARS (echo_string) > 1)
511 {
512 Lisp_Object last_char, prev_char, idx;
513
514 idx = make_number (SCHARS (echo_string) - 2);
515 prev_char = Faref (echo_string, idx);
516
517 idx = make_number (SCHARS (echo_string) - 1);
518 last_char = Faref (echo_string, idx);
519
520 /* We test PREV_CHAR to make sure this isn't the echoing
521 of a minus-sign. */
522 if (XINT (last_char) == '-' && XINT (prev_char) != ' ')
523 Faset (echo_string, idx, make_number (' '));
524 else
525 echo_string = concat2 (echo_string, build_string (" "));
526 }
527 else if (STRINGP (echo_string))
528 echo_string = concat2 (echo_string, build_string (" "));
529
530 KVAR (current_kboard, echo_string)
531 = concat2 (echo_string, make_string (buffer, ptr - buffer));
532
533 echo_now ();
534 }
535 }
536
537 /* Temporarily add a dash to the end of the echo string if it's not
538 empty, so that it serves as a mini-prompt for the very next character. */
539
540 static void
541 echo_dash (void)
542 {
543 /* Do nothing if not echoing at all. */
544 if (NILP (KVAR (current_kboard, echo_string)))
545 return;
546
547 if (this_command_key_count == 0)
548 return;
549
550 if (!current_kboard->immediate_echo
551 && SCHARS (KVAR (current_kboard, echo_string)) == 0)
552 return;
553
554 /* Do nothing if we just printed a prompt. */
555 if (current_kboard->echo_after_prompt
556 == SCHARS (KVAR (current_kboard, echo_string)))
557 return;
558
559 /* Do nothing if we have already put a dash at the end. */
560 if (SCHARS (KVAR (current_kboard, echo_string)) > 1)
561 {
562 Lisp_Object last_char, prev_char, idx;
563
564 idx = make_number (SCHARS (KVAR (current_kboard, echo_string)) - 2);
565 prev_char = Faref (KVAR (current_kboard, echo_string), idx);
566
567 idx = make_number (SCHARS (KVAR (current_kboard, echo_string)) - 1);
568 last_char = Faref (KVAR (current_kboard, echo_string), idx);
569
570 if (XINT (last_char) == '-' && XINT (prev_char) != ' ')
571 return;
572 }
573
574 /* Put a dash at the end of the buffer temporarily,
575 but make it go away when the next character is added. */
576 KVAR (current_kboard, echo_string) = concat2 (KVAR (current_kboard, echo_string),
577 build_string ("-"));
578 echo_now ();
579 }
580
581 /* Display the current echo string, and begin echoing if not already
582 doing so. */
583
584 void
585 echo_now (void)
586 {
587 if (!current_kboard->immediate_echo)
588 {
589 int i;
590 current_kboard->immediate_echo = 1;
591
592 for (i = 0; i < this_command_key_count; i++)
593 {
594 Lisp_Object c;
595
596 /* Set before_command_echo_length to the value that would
597 have been saved before the start of this subcommand in
598 command_loop_1, if we had already been echoing then. */
599 if (i == this_single_command_key_start)
600 before_command_echo_length = echo_length ();
601
602 c = XVECTOR (this_command_keys)->contents[i];
603 if (! (EVENT_HAS_PARAMETERS (c)
604 && EQ (EVENT_HEAD_KIND (EVENT_HEAD (c)), Qmouse_movement)))
605 echo_char (c);
606 }
607
608 /* Set before_command_echo_length to the value that would
609 have been saved before the start of this subcommand in
610 command_loop_1, if we had already been echoing then. */
611 if (this_command_key_count == this_single_command_key_start)
612 before_command_echo_length = echo_length ();
613
614 /* Put a dash at the end to invite the user to type more. */
615 echo_dash ();
616 }
617
618 echoing = 1;
619 message3_nolog (KVAR (current_kboard, echo_string),
620 SBYTES (KVAR (current_kboard, echo_string)),
621 STRING_MULTIBYTE (KVAR (current_kboard, echo_string)));
622 echoing = 0;
623
624 /* Record in what buffer we echoed, and from which kboard. */
625 echo_message_buffer = echo_area_buffer[0];
626 echo_kboard = current_kboard;
627
628 if (waiting_for_input && !NILP (Vquit_flag))
629 quit_throw_to_read_char ();
630 }
631
632 /* Turn off echoing, for the start of a new command. */
633
634 void
635 cancel_echoing (void)
636 {
637 current_kboard->immediate_echo = 0;
638 current_kboard->echo_after_prompt = -1;
639 KVAR (current_kboard, echo_string) = Qnil;
640 ok_to_echo_at_next_pause = NULL;
641 echo_kboard = NULL;
642 echo_message_buffer = Qnil;
643 }
644
645 /* Return the length of the current echo string. */
646
647 static int
648 echo_length (void)
649 {
650 return (STRINGP (KVAR (current_kboard, echo_string))
651 ? SCHARS (KVAR (current_kboard, echo_string))
652 : 0);
653 }
654
655 /* Truncate the current echo message to its first LEN chars.
656 This and echo_char get used by read_key_sequence when the user
657 switches frames while entering a key sequence. */
658
659 static void
660 echo_truncate (EMACS_INT nchars)
661 {
662 if (STRINGP (KVAR (current_kboard, echo_string)))
663 KVAR (current_kboard, echo_string)
664 = Fsubstring (KVAR (current_kboard, echo_string),
665 make_number (0), make_number (nchars));
666 truncate_echo_area (nchars);
667 }
668
669 \f
670 /* Functions for manipulating this_command_keys. */
671 static void
672 add_command_key (Lisp_Object key)
673 {
674 #if 0 /* Not needed after we made Freset_this_command_lengths
675 do the job immediately. */
676 /* If reset-this-command-length was called recently, obey it now.
677 See the doc string of that function for an explanation of why. */
678 if (before_command_restore_flag)
679 {
680 this_command_key_count = before_command_key_count_1;
681 if (this_command_key_count < this_single_command_key_start)
682 this_single_command_key_start = this_command_key_count;
683 echo_truncate (before_command_echo_length_1);
684 before_command_restore_flag = 0;
685 }
686 #endif
687
688 if (this_command_key_count >= ASIZE (this_command_keys))
689 this_command_keys = larger_vector (this_command_keys,
690 2 * ASIZE (this_command_keys),
691 Qnil);
692
693 ASET (this_command_keys, this_command_key_count, key);
694 ++this_command_key_count;
695 }
696
697 \f
698 Lisp_Object
699 recursive_edit_1 (void)
700 {
701 int count = SPECPDL_INDEX ();
702 Lisp_Object val;
703
704 if (command_loop_level > 0)
705 {
706 specbind (Qstandard_output, Qt);
707 specbind (Qstandard_input, Qt);
708 }
709
710 #ifdef HAVE_WINDOW_SYSTEM
711 /* The command loop has started an hourglass timer, so we have to
712 cancel it here, otherwise it will fire because the recursive edit
713 can take some time. Do not check for display_hourglass_p here,
714 because it could already be nil. */
715 cancel_hourglass ();
716 #endif
717
718 /* This function may have been called from a debugger called from
719 within redisplay, for instance by Edebugging a function called
720 from fontification-functions. We want to allow redisplay in
721 the debugging session.
722
723 The recursive edit is left with a `(throw exit ...)'. The `exit'
724 tag is not caught anywhere in redisplay, i.e. when we leave the
725 recursive edit, the original redisplay leading to the recursive
726 edit will be unwound. The outcome should therefore be safe. */
727 specbind (Qinhibit_redisplay, Qnil);
728 redisplaying_p = 0;
729
730 val = command_loop ();
731 if (EQ (val, Qt))
732 Fsignal (Qquit, Qnil);
733 /* Handle throw from read_minibuf when using minibuffer
734 while it's active but we're in another window. */
735 if (STRINGP (val))
736 xsignal1 (Qerror, val);
737
738 return unbind_to (count, Qnil);
739 }
740
741 /* When an auto-save happens, record the "time", and don't do again soon. */
742
743 void
744 record_auto_save (void)
745 {
746 last_auto_save = num_nonmacro_input_events;
747 }
748
749 /* Make an auto save happen as soon as possible at command level. */
750
751 void
752 force_auto_save_soon (void)
753 {
754 last_auto_save = - auto_save_interval - 1;
755
756 record_asynch_buffer_change ();
757 }
758 \f
759 DEFUN ("recursive-edit", Frecursive_edit, Srecursive_edit, 0, 0, "",
760 doc: /* Invoke the editor command loop recursively.
761 To get out of the recursive edit, a command can do `(throw 'exit nil)';
762 that tells this function to return.
763 Alternatively, `(throw 'exit t)' makes this function signal an error.
764 This function is called by the editor initialization to begin editing. */)
765 (void)
766 {
767 int count = SPECPDL_INDEX ();
768 Lisp_Object buffer;
769
770 /* If we enter while input is blocked, don't lock up here.
771 This may happen through the debugger during redisplay. */
772 if (INPUT_BLOCKED_P)
773 return Qnil;
774
775 command_loop_level++;
776 update_mode_lines = 1;
777
778 if (command_loop_level
779 && current_buffer != XBUFFER (XWINDOW (selected_window)->buffer))
780 buffer = Fcurrent_buffer ();
781 else
782 buffer = Qnil;
783
784 /* If we leave recursive_edit_1 below with a `throw' for instance,
785 like it is done in the splash screen display, we have to
786 make sure that we restore single_kboard as command_loop_1
787 would have done if it were left normally. */
788 if (command_loop_level > 0)
789 temporarily_switch_to_single_kboard (SELECTED_FRAME ());
790 record_unwind_protect (recursive_edit_unwind, buffer);
791
792 recursive_edit_1 ();
793 return unbind_to (count, Qnil);
794 }
795
796 Lisp_Object
797 recursive_edit_unwind (Lisp_Object buffer)
798 {
799 if (BUFFERP (buffer))
800 Fset_buffer (buffer);
801
802 command_loop_level--;
803 update_mode_lines = 1;
804 return Qnil;
805 }
806
807 \f
808 #if 0 /* These two functions are now replaced with
809 temporarily_switch_to_single_kboard. */
810 static void
811 any_kboard_state ()
812 {
813 #if 0 /* Theory: if there's anything in Vunread_command_events,
814 it will right away be read by read_key_sequence,
815 and then if we do switch KBOARDS, it will go into the side
816 queue then. So we don't need to do anything special here -- rms. */
817 if (CONSP (Vunread_command_events))
818 {
819 current_kboard->kbd_queue
820 = nconc2 (Vunread_command_events, current_kboard->kbd_queue);
821 current_kboard->kbd_queue_has_data = 1;
822 }
823 Vunread_command_events = Qnil;
824 #endif
825 single_kboard = 0;
826 }
827
828 /* Switch to the single-kboard state, making current_kboard
829 the only KBOARD from which further input is accepted. */
830
831 void
832 single_kboard_state ()
833 {
834 single_kboard = 1;
835 }
836 #endif
837
838 /* If we're in single_kboard state for kboard KBOARD,
839 get out of it. */
840
841 void
842 not_single_kboard_state (KBOARD *kboard)
843 {
844 if (kboard == current_kboard)
845 single_kboard = 0;
846 }
847
848 /* Maintain a stack of kboards, so other parts of Emacs
849 can switch temporarily to the kboard of a given frame
850 and then revert to the previous status. */
851
852 struct kboard_stack
853 {
854 KBOARD *kboard;
855 struct kboard_stack *next;
856 };
857
858 static struct kboard_stack *kboard_stack;
859
860 void
861 push_kboard (struct kboard *k)
862 {
863 struct kboard_stack *p
864 = (struct kboard_stack *) xmalloc (sizeof (struct kboard_stack));
865
866 p->next = kboard_stack;
867 p->kboard = current_kboard;
868 kboard_stack = p;
869
870 current_kboard = k;
871 }
872
873 void
874 pop_kboard (void)
875 {
876 struct terminal *t;
877 struct kboard_stack *p = kboard_stack;
878 int found = 0;
879 for (t = terminal_list; t; t = t->next_terminal)
880 {
881 if (t->kboard == p->kboard)
882 {
883 current_kboard = p->kboard;
884 found = 1;
885 break;
886 }
887 }
888 if (!found)
889 {
890 /* The terminal we remembered has been deleted. */
891 current_kboard = FRAME_KBOARD (SELECTED_FRAME ());
892 single_kboard = 0;
893 }
894 kboard_stack = p->next;
895 xfree (p);
896 }
897
898 /* Switch to single_kboard mode, making current_kboard the only KBOARD
899 from which further input is accepted. If F is non-nil, set its
900 KBOARD as the current keyboard.
901
902 This function uses record_unwind_protect to return to the previous
903 state later.
904
905 If Emacs is already in single_kboard mode, and F's keyboard is
906 locked, then this function will throw an errow. */
907
908 void
909 temporarily_switch_to_single_kboard (struct frame *f)
910 {
911 int was_locked = single_kboard;
912 if (was_locked)
913 {
914 if (f != NULL && FRAME_KBOARD (f) != current_kboard)
915 /* We can not switch keyboards while in single_kboard mode.
916 In rare cases, Lisp code may call `recursive-edit' (or
917 `read-minibuffer' or `y-or-n-p') after it switched to a
918 locked frame. For example, this is likely to happen
919 when server.el connects to a new terminal while Emacs is in
920 single_kboard mode. It is best to throw an error instead
921 of presenting the user with a frozen screen. */
922 error ("Terminal %d is locked, cannot read from it",
923 FRAME_TERMINAL (f)->id);
924 else
925 /* This call is unnecessary, but helps
926 `restore_kboard_configuration' discover if somebody changed
927 `current_kboard' behind our back. */
928 push_kboard (current_kboard);
929 }
930 else if (f != NULL)
931 current_kboard = FRAME_KBOARD (f);
932 single_kboard = 1;
933 record_unwind_protect (restore_kboard_configuration,
934 (was_locked ? Qt : Qnil));
935 }
936
937 #if 0 /* This function is not needed anymore. */
938 void
939 record_single_kboard_state ()
940 {
941 if (single_kboard)
942 push_kboard (current_kboard);
943 record_unwind_protect (restore_kboard_configuration,
944 (single_kboard ? Qt : Qnil));
945 }
946 #endif
947
948 static Lisp_Object
949 restore_kboard_configuration (Lisp_Object was_locked)
950 {
951 if (NILP (was_locked))
952 single_kboard = 0;
953 else
954 {
955 struct kboard *prev = current_kboard;
956 single_kboard = 1;
957 pop_kboard ();
958 /* The pop should not change the kboard. */
959 if (single_kboard && current_kboard != prev)
960 abort ();
961 }
962 return Qnil;
963 }
964
965 \f
966 /* Handle errors that are not handled at inner levels
967 by printing an error message and returning to the editor command loop. */
968
969 static Lisp_Object
970 cmd_error (Lisp_Object data)
971 {
972 Lisp_Object old_level, old_length;
973 char macroerror[50];
974
975 #ifdef HAVE_WINDOW_SYSTEM
976 if (display_hourglass_p)
977 cancel_hourglass ();
978 #endif
979
980 if (!NILP (executing_kbd_macro))
981 {
982 if (executing_kbd_macro_iterations == 1)
983 sprintf (macroerror, "After 1 kbd macro iteration: ");
984 else
985 sprintf (macroerror, "After %d kbd macro iterations: ",
986 executing_kbd_macro_iterations);
987 }
988 else
989 *macroerror = 0;
990
991 Vstandard_output = Qt;
992 Vstandard_input = Qt;
993 Vexecuting_kbd_macro = Qnil;
994 executing_kbd_macro = Qnil;
995 KVAR (current_kboard, Vprefix_arg) = Qnil;
996 KVAR (current_kboard, Vlast_prefix_arg) = Qnil;
997 cancel_echoing ();
998
999 /* Avoid unquittable loop if data contains a circular list. */
1000 old_level = Vprint_level;
1001 old_length = Vprint_length;
1002 XSETFASTINT (Vprint_level, 10);
1003 XSETFASTINT (Vprint_length, 10);
1004 cmd_error_internal (data, macroerror);
1005 Vprint_level = old_level;
1006 Vprint_length = old_length;
1007
1008 Vquit_flag = Qnil;
1009
1010 Vinhibit_quit = Qnil;
1011 #if 0 /* This shouldn't be necessary anymore. --lorentey */
1012 if (command_loop_level == 0 && minibuf_level == 0)
1013 any_kboard_state ();
1014 #endif
1015
1016 return make_number (0);
1017 }
1018
1019 /* Take actions on handling an error. DATA is the data that describes
1020 the error.
1021
1022 CONTEXT is a C-string containing ASCII characters only which
1023 describes the context in which the error happened. If we need to
1024 generalize CONTEXT to allow multibyte characters, make it a Lisp
1025 string. */
1026
1027 void
1028 cmd_error_internal (Lisp_Object data, const char *context)
1029 {
1030 struct frame *sf = SELECTED_FRAME ();
1031
1032 /* The immediate context is not interesting for Quits,
1033 since they are asyncronous. */
1034 if (EQ (XCAR (data), Qquit))
1035 Vsignaling_function = Qnil;
1036
1037 Vquit_flag = Qnil;
1038 Vinhibit_quit = Qt;
1039
1040 /* Use user's specified output function if any. */
1041 if (!NILP (Vcommand_error_function))
1042 call3 (Vcommand_error_function, data,
1043 context ? build_string (context) : empty_unibyte_string,
1044 Vsignaling_function);
1045 /* If the window system or terminal frame hasn't been initialized
1046 yet, or we're not interactive, write the message to stderr and exit. */
1047 else if (!sf->glyphs_initialized_p
1048 /* The initial frame is a special non-displaying frame. It
1049 will be current in daemon mode when there are no frames
1050 to display, and in non-daemon mode before the real frame
1051 has finished initializing. If an error is thrown in the
1052 latter case while creating the frame, then the frame
1053 will never be displayed, so the safest thing to do is
1054 write to stderr and quit. In daemon mode, there are
1055 many other potential errors that do not prevent frames
1056 from being created, so continuing as normal is better in
1057 that case. */
1058 || (!IS_DAEMON && FRAME_INITIAL_P (sf))
1059 || noninteractive)
1060 {
1061 print_error_message (data, Qexternal_debugging_output,
1062 context, Vsignaling_function);
1063 Fterpri (Qexternal_debugging_output);
1064 Fkill_emacs (make_number (-1));
1065 }
1066 else
1067 {
1068 clear_message (1, 0);
1069 Fdiscard_input ();
1070 message_log_maybe_newline ();
1071 bitch_at_user ();
1072
1073 print_error_message (data, Qt, context, Vsignaling_function);
1074 }
1075
1076 Vsignaling_function = Qnil;
1077 }
1078 \f
1079 Lisp_Object command_loop_1 (void);
1080 Lisp_Object command_loop_2 (Lisp_Object);
1081 Lisp_Object top_level_1 (Lisp_Object);
1082
1083 /* Entry to editor-command-loop.
1084 This level has the catches for exiting/returning to editor command loop.
1085 It returns nil to exit recursive edit, t to abort it. */
1086
1087 Lisp_Object
1088 command_loop (void)
1089 {
1090 if (command_loop_level > 0 || minibuf_level > 0)
1091 {
1092 Lisp_Object val;
1093 val = internal_catch (Qexit, command_loop_2, Qnil);
1094 executing_kbd_macro = Qnil;
1095 return val;
1096 }
1097 else
1098 while (1)
1099 {
1100 internal_catch (Qtop_level, top_level_1, Qnil);
1101 #if 0 /* This shouldn't be necessary anymore. --lorentey */
1102 /* Reset single_kboard in case top-level set it while
1103 evaluating an -f option, or we are stuck there for some
1104 other reason. */
1105 any_kboard_state ();
1106 #endif
1107 internal_catch (Qtop_level, command_loop_2, Qnil);
1108 executing_kbd_macro = Qnil;
1109
1110 /* End of file in -batch run causes exit here. */
1111 if (noninteractive)
1112 Fkill_emacs (Qt);
1113 }
1114 }
1115
1116 /* Here we catch errors in execution of commands within the
1117 editing loop, and reenter the editing loop.
1118 When there is an error, cmd_error runs and returns a non-nil
1119 value to us. A value of nil means that command_loop_1 itself
1120 returned due to end of file (or end of kbd macro). */
1121
1122 Lisp_Object
1123 command_loop_2 (Lisp_Object ignore)
1124 {
1125 register Lisp_Object val;
1126
1127 do
1128 val = internal_condition_case (command_loop_1, Qerror, cmd_error);
1129 while (!NILP (val));
1130
1131 return Qnil;
1132 }
1133
1134 static Lisp_Object
1135 top_level_2 (void)
1136 {
1137 return Feval (Vtop_level, Qnil);
1138 }
1139
1140 Lisp_Object
1141 top_level_1 (Lisp_Object ignore)
1142 {
1143 /* On entry to the outer level, run the startup file */
1144 if (!NILP (Vtop_level))
1145 internal_condition_case (top_level_2, Qerror, cmd_error);
1146 else if (!NILP (Vpurify_flag))
1147 message ("Bare impure Emacs (standard Lisp code not loaded)");
1148 else
1149 message ("Bare Emacs (standard Lisp code not loaded)");
1150 return Qnil;
1151 }
1152
1153 DEFUN ("top-level", Ftop_level, Stop_level, 0, 0, "",
1154 doc: /* Exit all recursive editing levels.
1155 This also exits all active minibuffers. */)
1156 (void)
1157 {
1158 #ifdef HAVE_WINDOW_SYSTEM
1159 if (display_hourglass_p)
1160 cancel_hourglass ();
1161 #endif
1162
1163 /* Unblock input if we enter with input blocked. This may happen if
1164 redisplay traps e.g. during tool-bar update with input blocked. */
1165 while (INPUT_BLOCKED_P)
1166 UNBLOCK_INPUT;
1167
1168 Fthrow (Qtop_level, Qnil);
1169 }
1170
1171 Lisp_Object Fexit_recursive_edit (void) NO_RETURN;
1172 DEFUN ("exit-recursive-edit", Fexit_recursive_edit, Sexit_recursive_edit, 0, 0, "",
1173 doc: /* Exit from the innermost recursive edit or minibuffer. */)
1174 (void)
1175 {
1176 if (command_loop_level > 0 || minibuf_level > 0)
1177 Fthrow (Qexit, Qnil);
1178
1179 error ("No recursive edit is in progress");
1180 }
1181
1182 Lisp_Object Fabort_recursive_edit (void) NO_RETURN;
1183 DEFUN ("abort-recursive-edit", Fabort_recursive_edit, Sabort_recursive_edit, 0, 0, "",
1184 doc: /* Abort the command that requested this recursive edit or minibuffer input. */)
1185 (void)
1186 {
1187 if (command_loop_level > 0 || minibuf_level > 0)
1188 Fthrow (Qexit, Qt);
1189
1190 error ("No recursive edit is in progress");
1191 }
1192 \f
1193 #if defined (HAVE_MOUSE) || defined (HAVE_GPM)
1194
1195 /* Restore mouse tracking enablement. See Ftrack_mouse for the only use
1196 of this function. */
1197
1198 static Lisp_Object
1199 tracking_off (Lisp_Object old_value)
1200 {
1201 do_mouse_tracking = old_value;
1202 if (NILP (old_value))
1203 {
1204 /* Redisplay may have been preempted because there was input
1205 available, and it assumes it will be called again after the
1206 input has been processed. If the only input available was
1207 the sort that we have just disabled, then we need to call
1208 redisplay. */
1209 if (!readable_events (READABLE_EVENTS_DO_TIMERS_NOW))
1210 {
1211 redisplay_preserve_echo_area (6);
1212 get_input_pending (&input_pending,
1213 READABLE_EVENTS_DO_TIMERS_NOW);
1214 }
1215 }
1216 return Qnil;
1217 }
1218
1219 DEFUN ("track-mouse", Ftrack_mouse, Strack_mouse, 0, UNEVALLED, 0,
1220 doc: /* Evaluate BODY with mouse movement events enabled.
1221 Within a `track-mouse' form, mouse motion generates input events that
1222 you can read with `read-event'.
1223 Normally, mouse motion is ignored.
1224 usage: (track-mouse BODY...) */)
1225 (Lisp_Object args)
1226 {
1227 int count = SPECPDL_INDEX ();
1228 Lisp_Object val;
1229
1230 record_unwind_protect (tracking_off, do_mouse_tracking);
1231
1232 do_mouse_tracking = Qt;
1233
1234 val = Fprogn (args);
1235 return unbind_to (count, val);
1236 }
1237
1238 /* If mouse has moved on some frame, return one of those frames.
1239
1240 Return 0 otherwise.
1241
1242 If ignore_mouse_drag_p is non-zero, ignore (implicit) mouse movement
1243 after resizing the tool-bar window. */
1244
1245 int ignore_mouse_drag_p;
1246
1247 static FRAME_PTR
1248 some_mouse_moved (void)
1249 {
1250 Lisp_Object tail, frame;
1251
1252 if (ignore_mouse_drag_p)
1253 {
1254 /* ignore_mouse_drag_p = 0; */
1255 return 0;
1256 }
1257
1258 FOR_EACH_FRAME (tail, frame)
1259 {
1260 if (XFRAME (frame)->mouse_moved)
1261 return XFRAME (frame);
1262 }
1263
1264 return 0;
1265 }
1266
1267 #endif /* HAVE_MOUSE || HAVE_GPM */
1268 \f
1269 /* This is the actual command reading loop,
1270 sans error-handling encapsulation. */
1271
1272 static int read_key_sequence (Lisp_Object *, size_t, Lisp_Object,
1273 int, int, int);
1274 void safe_run_hooks (Lisp_Object);
1275 static void adjust_point_for_property (EMACS_INT, int);
1276
1277 /* Cancel hourglass from protect_unwind.
1278 ARG is not used. */
1279 #ifdef HAVE_WINDOW_SYSTEM
1280 static Lisp_Object
1281 cancel_hourglass_unwind (Lisp_Object arg)
1282 {
1283 cancel_hourglass ();
1284 return Qnil;
1285 }
1286 #endif
1287
1288 /* FIXME: This is wrong rather than test window-system, we should call
1289 a new set-selection, which will then dispatch to x-set-selection, or
1290 tty-set-selection, or w32-set-selection, ... */
1291 EXFUN (Fwindow_system, 1);
1292
1293 Lisp_Object
1294 command_loop_1 (void)
1295 {
1296 Lisp_Object cmd;
1297 Lisp_Object keybuf[30];
1298 int i;
1299 int prev_modiff = 0;
1300 struct buffer *prev_buffer = NULL;
1301 #if 0 /* This shouldn't be necessary anymore. --lorentey */
1302 int was_locked = single_kboard;
1303 #endif
1304 int already_adjusted = 0;
1305
1306 KVAR (current_kboard, Vprefix_arg) = Qnil;
1307 KVAR (current_kboard, Vlast_prefix_arg) = Qnil;
1308 Vdeactivate_mark = Qnil;
1309 waiting_for_input = 0;
1310 cancel_echoing ();
1311
1312 this_command_key_count = 0;
1313 this_command_key_count_reset = 0;
1314 this_single_command_key_start = 0;
1315
1316 if (NILP (Vmemory_full))
1317 {
1318 /* Make sure this hook runs after commands that get errors and
1319 throw to top level. */
1320 /* Note that the value cell will never directly contain nil
1321 if the symbol is a local variable. */
1322 if (!NILP (Vpost_command_hook) && !NILP (Vrun_hooks))
1323 safe_run_hooks (Qpost_command_hook);
1324
1325 /* If displaying a message, resize the echo area window to fit
1326 that message's size exactly. */
1327 if (!NILP (echo_area_buffer[0]))
1328 resize_echo_area_exactly ();
1329
1330 if (!NILP (Vdeferred_action_list))
1331 safe_run_hooks (Qdeferred_action_function);
1332 }
1333
1334 /* Do this after running Vpost_command_hook, for consistency. */
1335 KVAR (current_kboard, Vlast_command) = Vthis_command;
1336 KVAR (current_kboard, Vreal_last_command) = real_this_command;
1337 if (!CONSP (last_command_event))
1338 KVAR (current_kboard, Vlast_repeatable_command) = real_this_command;
1339
1340 while (1)
1341 {
1342 if (! FRAME_LIVE_P (XFRAME (selected_frame)))
1343 Fkill_emacs (Qnil);
1344
1345 /* Make sure the current window's buffer is selected. */
1346 if (XBUFFER (XWINDOW (selected_window)->buffer) != current_buffer)
1347 set_buffer_internal (XBUFFER (XWINDOW (selected_window)->buffer));
1348
1349 /* Display any malloc warning that just came out. Use while because
1350 displaying one warning can cause another. */
1351
1352 while (pending_malloc_warning)
1353 display_malloc_warning ();
1354
1355 Vdeactivate_mark = Qnil;
1356
1357 /* If minibuffer on and echo area in use,
1358 wait a short time and redraw minibuffer. */
1359
1360 if (minibuf_level
1361 && !NILP (echo_area_buffer[0])
1362 && EQ (minibuf_window, echo_area_window)
1363 && NUMBERP (Vminibuffer_message_timeout))
1364 {
1365 /* Bind inhibit-quit to t so that C-g gets read in
1366 rather than quitting back to the minibuffer. */
1367 int count = SPECPDL_INDEX ();
1368 specbind (Qinhibit_quit, Qt);
1369
1370 sit_for (Vminibuffer_message_timeout, 0, 2);
1371
1372 /* Clear the echo area. */
1373 message2 (0, 0, 0);
1374 safe_run_hooks (Qecho_area_clear_hook);
1375
1376 unbind_to (count, Qnil);
1377
1378 /* If a C-g came in before, treat it as input now. */
1379 if (!NILP (Vquit_flag))
1380 {
1381 Vquit_flag = Qnil;
1382 Vunread_command_events = Fcons (make_number (quit_char), Qnil);
1383 }
1384 }
1385
1386 #if 0
1387 /* Select the frame that the last event came from. Usually,
1388 switch-frame events will take care of this, but if some lisp
1389 code swallows a switch-frame event, we'll fix things up here.
1390 Is this a good idea? */
1391 if (FRAMEP (internal_last_event_frame)
1392 && !EQ (internal_last_event_frame, selected_frame))
1393 Fselect_frame (internal_last_event_frame, Qnil);
1394 #endif
1395 /* If it has changed current-menubar from previous value,
1396 really recompute the menubar from the value. */
1397 if (! NILP (Vlucid_menu_bar_dirty_flag)
1398 && !NILP (Ffboundp (Qrecompute_lucid_menubar)))
1399 call0 (Qrecompute_lucid_menubar);
1400
1401 before_command_key_count = this_command_key_count;
1402 before_command_echo_length = echo_length ();
1403
1404 Vthis_command = Qnil;
1405 real_this_command = Qnil;
1406 Vthis_original_command = Qnil;
1407 Vthis_command_keys_shift_translated = Qnil;
1408
1409 /* Read next key sequence; i gets its length. */
1410 i = read_key_sequence (keybuf, sizeof keybuf / sizeof keybuf[0],
1411 Qnil, 0, 1, 1);
1412
1413 /* A filter may have run while we were reading the input. */
1414 if (! FRAME_LIVE_P (XFRAME (selected_frame)))
1415 Fkill_emacs (Qnil);
1416 if (XBUFFER (XWINDOW (selected_window)->buffer) != current_buffer)
1417 set_buffer_internal (XBUFFER (XWINDOW (selected_window)->buffer));
1418
1419 ++num_input_keys;
1420
1421 /* Now we have read a key sequence of length I,
1422 or else I is 0 and we found end of file. */
1423
1424 if (i == 0) /* End of file -- happens only in */
1425 return Qnil; /* a kbd macro, at the end. */
1426 /* -1 means read_key_sequence got a menu that was rejected.
1427 Just loop around and read another command. */
1428 if (i == -1)
1429 {
1430 cancel_echoing ();
1431 this_command_key_count = 0;
1432 this_command_key_count_reset = 0;
1433 this_single_command_key_start = 0;
1434 goto finalize;
1435 }
1436
1437 last_command_event = keybuf[i - 1];
1438
1439 /* If the previous command tried to force a specific window-start,
1440 forget about that, in case this command moves point far away
1441 from that position. But also throw away beg_unchanged and
1442 end_unchanged information in that case, so that redisplay will
1443 update the whole window properly. */
1444 if (!NILP (XWINDOW (selected_window)->force_start))
1445 {
1446 struct buffer *b;
1447 XWINDOW (selected_window)->force_start = Qnil;
1448 b = XBUFFER (XWINDOW (selected_window)->buffer);
1449 BUF_BEG_UNCHANGED (b) = BUF_END_UNCHANGED (b) = 0;
1450 }
1451
1452 cmd = read_key_sequence_cmd;
1453 if (!NILP (Vexecuting_kbd_macro))
1454 {
1455 if (!NILP (Vquit_flag))
1456 {
1457 Vexecuting_kbd_macro = Qt;
1458 QUIT; /* Make some noise. */
1459 /* Will return since macro now empty. */
1460 }
1461 }
1462
1463 /* Do redisplay processing after this command except in special
1464 cases identified below. */
1465 prev_buffer = current_buffer;
1466 prev_modiff = MODIFF;
1467 last_point_position = PT;
1468 last_point_position_window = selected_window;
1469 XSETBUFFER (last_point_position_buffer, prev_buffer);
1470
1471 /* By default, we adjust point to a boundary of a region that
1472 has such a property that should be treated intangible
1473 (e.g. composition, display). But, some commands will set
1474 this variable differently. */
1475 Vdisable_point_adjustment = Qnil;
1476
1477 /* Process filters and timers may have messed with deactivate-mark.
1478 reset it before we execute the command. */
1479 Vdeactivate_mark = Qnil;
1480
1481 /* Remap command through active keymaps */
1482 Vthis_original_command = cmd;
1483 if (SYMBOLP (cmd))
1484 {
1485 Lisp_Object cmd1;
1486 if (cmd1 = Fcommand_remapping (cmd, Qnil, Qnil), !NILP (cmd1))
1487 cmd = cmd1;
1488 }
1489
1490 /* Execute the command. */
1491
1492 Vthis_command = cmd;
1493 real_this_command = cmd;
1494 safe_run_hooks (Qpre_command_hook);
1495
1496 already_adjusted = 0;
1497
1498 if (NILP (Vthis_command))
1499 {
1500 /* nil means key is undefined. */
1501 Lisp_Object keys = Fvector (i, keybuf);
1502 keys = Fkey_description (keys, Qnil);
1503 bitch_at_user ();
1504 message_with_string ("%s is undefined", keys, 0);
1505 KVAR (current_kboard, defining_kbd_macro) = Qnil;
1506 update_mode_lines = 1;
1507 KVAR (current_kboard, Vprefix_arg) = Qnil;
1508 }
1509 else
1510 {
1511 /* Here for a command that isn't executed directly */
1512
1513 #ifdef HAVE_WINDOW_SYSTEM
1514 int scount = SPECPDL_INDEX ();
1515
1516 if (display_hourglass_p
1517 && NILP (Vexecuting_kbd_macro))
1518 {
1519 record_unwind_protect (cancel_hourglass_unwind, Qnil);
1520 start_hourglass ();
1521 }
1522 #endif
1523
1524 if (NILP (KVAR (current_kboard, Vprefix_arg))) /* FIXME: Why? --Stef */
1525 Fundo_boundary ();
1526 Fcommand_execute (Vthis_command, Qnil, Qnil, Qnil);
1527
1528 #ifdef HAVE_WINDOW_SYSTEM
1529 /* Do not check display_hourglass_p here, because
1530 Fcommand_execute could change it, but we should cancel
1531 hourglass cursor anyway.
1532 But don't cancel the hourglass within a macro
1533 just because a command in the macro finishes. */
1534 if (NILP (Vexecuting_kbd_macro))
1535 unbind_to (scount, Qnil);
1536 #endif
1537 }
1538 KVAR (current_kboard, Vlast_prefix_arg) = Vcurrent_prefix_arg;
1539
1540 safe_run_hooks (Qpost_command_hook);
1541
1542 /* If displaying a message, resize the echo area window to fit
1543 that message's size exactly. */
1544 if (!NILP (echo_area_buffer[0]))
1545 resize_echo_area_exactly ();
1546
1547 safe_run_hooks (Qdeferred_action_function);
1548
1549 /* If there is a prefix argument,
1550 1) We don't want Vlast_command to be ``universal-argument''
1551 (that would be dumb), so don't set Vlast_command,
1552 2) we want to leave echoing on so that the prefix will be
1553 echoed as part of this key sequence, so don't call
1554 cancel_echoing, and
1555 3) we want to leave this_command_key_count non-zero, so that
1556 read_char will realize that it is re-reading a character, and
1557 not echo it a second time.
1558
1559 If the command didn't actually create a prefix arg,
1560 but is merely a frame event that is transparent to prefix args,
1561 then the above doesn't apply. */
1562 if (NILP (KVAR (current_kboard, Vprefix_arg)) || CONSP (last_command_event))
1563 {
1564 KVAR (current_kboard, Vlast_command) = Vthis_command;
1565 KVAR (current_kboard, Vreal_last_command) = real_this_command;
1566 if (!CONSP (last_command_event))
1567 KVAR (current_kboard, Vlast_repeatable_command) = real_this_command;
1568 cancel_echoing ();
1569 this_command_key_count = 0;
1570 this_command_key_count_reset = 0;
1571 this_single_command_key_start = 0;
1572 }
1573
1574 if (!NILP (BVAR (current_buffer, mark_active))
1575 && !NILP (Vrun_hooks))
1576 {
1577 /* In Emacs 22, setting transient-mark-mode to `only' was a
1578 way of turning it on for just one command. This usage is
1579 obsolete, but support it anyway. */
1580 if (EQ (Vtransient_mark_mode, Qidentity))
1581 Vtransient_mark_mode = Qnil;
1582 else if (EQ (Vtransient_mark_mode, Qonly))
1583 Vtransient_mark_mode = Qidentity;
1584
1585 if (!NILP (Vdeactivate_mark))
1586 /* If `select-active-regions' is non-nil, this call to
1587 `deactivate-mark' also sets the PRIMARY selection. */
1588 call0 (Qdeactivate_mark);
1589 else
1590 {
1591 /* Even if not deactivating the mark, set PRIMARY if
1592 `select-active-regions' is non-nil. */
1593 if (!NILP (Fwindow_system (Qnil))
1594 /* Even if mark_active is non-nil, the actual buffer
1595 marker may not have been set yet (Bug#7044). */
1596 && XMARKER (BVAR (current_buffer, mark))->buffer
1597 && (EQ (Vselect_active_regions, Qonly)
1598 ? EQ (CAR_SAFE (Vtransient_mark_mode), Qonly)
1599 : (!NILP (Vselect_active_regions)
1600 && !NILP (Vtransient_mark_mode)))
1601 && !EQ (Vthis_command, Qhandle_switch_frame))
1602 {
1603 EMACS_INT beg =
1604 XINT (Fmarker_position (BVAR (current_buffer, mark)));
1605 EMACS_INT end = PT;
1606 if (beg < end)
1607 call2 (Qx_set_selection, QPRIMARY,
1608 make_buffer_string (beg, end, 0));
1609 else if (beg > end)
1610 call2 (Qx_set_selection, QPRIMARY,
1611 make_buffer_string (end, beg, 0));
1612 /* Don't set empty selections. */
1613 }
1614
1615 if (current_buffer != prev_buffer || MODIFF != prev_modiff)
1616 {
1617 Lisp_Object hook = intern ("activate-mark-hook");
1618 Frun_hooks (1, &hook);
1619 }
1620 }
1621
1622 Vsaved_region_selection = Qnil;
1623 }
1624
1625 finalize:
1626
1627 if (current_buffer == prev_buffer
1628 && last_point_position != PT
1629 && NILP (Vdisable_point_adjustment)
1630 && NILP (Vglobal_disable_point_adjustment))
1631 {
1632 if (last_point_position > BEGV
1633 && last_point_position < ZV
1634 && (composition_adjust_point (last_point_position,
1635 last_point_position)
1636 != last_point_position))
1637 /* The last point was temporarily set within a grapheme
1638 cluster to prevent automatic composition. To recover
1639 the automatic composition, we must update the
1640 display. */
1641 windows_or_buffers_changed++;
1642 if (!already_adjusted)
1643 adjust_point_for_property (last_point_position,
1644 MODIFF != prev_modiff);
1645 }
1646
1647 /* Install chars successfully executed in kbd macro. */
1648
1649 if (!NILP (KVAR (current_kboard, defining_kbd_macro))
1650 && NILP (KVAR (current_kboard, Vprefix_arg)))
1651 finalize_kbd_macro_chars ();
1652 #if 0 /* This shouldn't be necessary anymore. --lorentey */
1653 if (!was_locked)
1654 any_kboard_state ();
1655 #endif
1656 }
1657 }
1658
1659 /* Adjust point to a boundary of a region that has such a property
1660 that should be treated intangible. For the moment, we check
1661 `composition', `display' and `invisible' properties.
1662 LAST_PT is the last position of point. */
1663
1664 static void
1665 adjust_point_for_property (EMACS_INT last_pt, int modified)
1666 {
1667 EMACS_INT beg, end;
1668 Lisp_Object val, overlay, tmp;
1669 /* When called after buffer modification, we should temporarily
1670 suppress the point adjustment for automatic composition so that a
1671 user can keep inserting another character at point or keep
1672 deleting characters around point. */
1673 int check_composition = ! modified, check_display = 1, check_invisible = 1;
1674 EMACS_INT orig_pt = PT;
1675
1676 /* FIXME: cycling is probably not necessary because these properties
1677 can't be usefully combined anyway. */
1678 while (check_composition || check_display || check_invisible)
1679 {
1680 /* FIXME: check `intangible'. */
1681 if (check_composition
1682 && PT > BEGV && PT < ZV
1683 && (beg = composition_adjust_point (last_pt, PT)) != PT)
1684 {
1685 SET_PT (beg);
1686 check_display = check_invisible = 1;
1687 }
1688 check_composition = 0;
1689 if (check_display
1690 && PT > BEGV && PT < ZV
1691 && !NILP (val = get_char_property_and_overlay
1692 (make_number (PT), Qdisplay, Qnil, &overlay))
1693 && display_prop_intangible_p (val)
1694 && (!OVERLAYP (overlay)
1695 ? get_property_and_range (PT, Qdisplay, &val, &beg, &end, Qnil)
1696 : (beg = OVERLAY_POSITION (OVERLAY_START (overlay)),
1697 end = OVERLAY_POSITION (OVERLAY_END (overlay))))
1698 && (beg < PT /* && end > PT <- It's always the case. */
1699 || (beg <= PT && STRINGP (val) && SCHARS (val) == 0)))
1700 {
1701 xassert (end > PT);
1702 SET_PT (PT < last_pt
1703 ? (STRINGP (val) && SCHARS (val) == 0 ? beg - 1 : beg)
1704 : end);
1705 check_composition = check_invisible = 1;
1706 }
1707 check_display = 0;
1708 if (check_invisible && PT > BEGV && PT < ZV)
1709 {
1710 int inv, ellipsis = 0;
1711 beg = end = PT;
1712
1713 /* Find boundaries `beg' and `end' of the invisible area, if any. */
1714 while (end < ZV
1715 #if 0
1716 /* FIXME: We should stop if we find a spot between
1717 two runs of `invisible' where inserted text would
1718 be visible. This is important when we have two
1719 invisible boundaries that enclose an area: if the
1720 area is empty, we need this test in order to make
1721 it possible to place point in the middle rather
1722 than skip both boundaries. However, this code
1723 also stops anywhere in a non-sticky text-property,
1724 which breaks (e.g.) Org mode. */
1725 && (val = get_pos_property (make_number (end),
1726 Qinvisible, Qnil),
1727 TEXT_PROP_MEANS_INVISIBLE (val))
1728 #endif
1729 && !NILP (val = get_char_property_and_overlay
1730 (make_number (end), Qinvisible, Qnil, &overlay))
1731 && (inv = TEXT_PROP_MEANS_INVISIBLE (val)))
1732 {
1733 ellipsis = ellipsis || inv > 1
1734 || (OVERLAYP (overlay)
1735 && (!NILP (Foverlay_get (overlay, Qafter_string))
1736 || !NILP (Foverlay_get (overlay, Qbefore_string))));
1737 tmp = Fnext_single_char_property_change
1738 (make_number (end), Qinvisible, Qnil, Qnil);
1739 end = NATNUMP (tmp) ? XFASTINT (tmp) : ZV;
1740 }
1741 while (beg > BEGV
1742 #if 0
1743 && (val = get_pos_property (make_number (beg),
1744 Qinvisible, Qnil),
1745 TEXT_PROP_MEANS_INVISIBLE (val))
1746 #endif
1747 && !NILP (val = get_char_property_and_overlay
1748 (make_number (beg - 1), Qinvisible, Qnil, &overlay))
1749 && (inv = TEXT_PROP_MEANS_INVISIBLE (val)))
1750 {
1751 ellipsis = ellipsis || inv > 1
1752 || (OVERLAYP (overlay)
1753 && (!NILP (Foverlay_get (overlay, Qafter_string))
1754 || !NILP (Foverlay_get (overlay, Qbefore_string))));
1755 tmp = Fprevious_single_char_property_change
1756 (make_number (beg), Qinvisible, Qnil, Qnil);
1757 beg = NATNUMP (tmp) ? XFASTINT (tmp) : BEGV;
1758 }
1759
1760 /* Move away from the inside area. */
1761 if (beg < PT && end > PT)
1762 {
1763 SET_PT ((orig_pt == PT && (last_pt < beg || last_pt > end))
1764 /* We haven't moved yet (so we don't need to fear
1765 infinite-looping) and we were outside the range
1766 before (so either end of the range still corresponds
1767 to a move in the right direction): pretend we moved
1768 less than we actually did, so that we still have
1769 more freedom below in choosing which end of the range
1770 to go to. */
1771 ? (orig_pt = -1, PT < last_pt ? end : beg)
1772 /* We either have moved already or the last point
1773 was already in the range: we don't get to choose
1774 which end of the range we have to go to. */
1775 : (PT < last_pt ? beg : end));
1776 check_composition = check_display = 1;
1777 }
1778 #if 0 /* This assertion isn't correct, because SET_PT may end up setting
1779 the point to something other than its argument, due to
1780 point-motion hooks, intangibility, etc. */
1781 xassert (PT == beg || PT == end);
1782 #endif
1783
1784 /* Pretend the area doesn't exist if the buffer is not
1785 modified. */
1786 if (!modified && !ellipsis && beg < end)
1787 {
1788 if (last_pt == beg && PT == end && end < ZV)
1789 (check_composition = check_display = 1, SET_PT (end + 1));
1790 else if (last_pt == end && PT == beg && beg > BEGV)
1791 (check_composition = check_display = 1, SET_PT (beg - 1));
1792 else if (PT == ((PT < last_pt) ? beg : end))
1793 /* We've already moved as far as we can. Trying to go
1794 to the other end would mean moving backwards and thus
1795 could lead to an infinite loop. */
1796 ;
1797 else if (val = get_pos_property (make_number (PT),
1798 Qinvisible, Qnil),
1799 TEXT_PROP_MEANS_INVISIBLE (val)
1800 && (val = get_pos_property
1801 (make_number (PT == beg ? end : beg),
1802 Qinvisible, Qnil),
1803 !TEXT_PROP_MEANS_INVISIBLE (val)))
1804 (check_composition = check_display = 1,
1805 SET_PT (PT == beg ? end : beg));
1806 }
1807 }
1808 check_invisible = 0;
1809 }
1810 }
1811
1812 /* Subroutine for safe_run_hooks: run the hook HOOK. */
1813
1814 static Lisp_Object
1815 safe_run_hooks_1 (void)
1816 {
1817 eassert (CONSP (Vinhibit_quit));
1818 return call0 (XCDR (Vinhibit_quit));
1819 }
1820
1821 /* Subroutine for safe_run_hooks: handle an error by clearing out the function
1822 from the hook. */
1823
1824 static Lisp_Object
1825 safe_run_hooks_error (Lisp_Object error_data)
1826 {
1827 Lisp_Object hook
1828 = CONSP (Vinhibit_quit) ? XCAR (Vinhibit_quit) : Vinhibit_quit;
1829 Lisp_Object fun = CONSP (Vinhibit_quit) ? XCDR (Vinhibit_quit) : Qnil;
1830 Lisp_Object args[4];
1831 args[0] = build_string ("Error in %s (%s): %s");
1832 args[1] = hook;
1833 args[2] = fun;
1834 args[3] = error_data;
1835 Fmessage (4, args);
1836 if (SYMBOLP (hook))
1837 {
1838 Lisp_Object val;
1839 int found = 0;
1840 Lisp_Object newval = Qnil;
1841 for (val = find_symbol_value (hook); CONSP (val); val = XCDR (val))
1842 if (EQ (fun, XCAR (val)))
1843 found = 1;
1844 else
1845 newval = Fcons (XCAR (val), newval);
1846 if (found)
1847 return Fset (hook, Fnreverse (newval));
1848 /* Not found in the local part of the hook. Let's look at the global
1849 part. */
1850 newval = Qnil;
1851 for (val = (NILP (Fdefault_boundp (hook)) ? Qnil
1852 : Fdefault_value (hook));
1853 CONSP (val); val = XCDR (val))
1854 if (EQ (fun, XCAR (val)))
1855 found = 1;
1856 else
1857 newval = Fcons (XCAR (val), newval);
1858 if (found)
1859 return Fset_default (hook, Fnreverse (newval));
1860 }
1861 return Qnil;
1862 }
1863
1864 static Lisp_Object
1865 safe_run_hook_funcall (size_t nargs, Lisp_Object *args)
1866 {
1867 eassert (nargs == 1);
1868 if (CONSP (Vinhibit_quit))
1869 XSETCDR (Vinhibit_quit, args[0]);
1870 else
1871 Vinhibit_quit = Fcons (Vinhibit_quit, args[0]);
1872
1873 internal_condition_case (safe_run_hooks_1, Qt, safe_run_hooks_error);
1874 return Qnil;
1875 }
1876
1877 /* If we get an error while running the hook, cause the hook variable
1878 to be nil. Also inhibit quits, so that C-g won't cause the hook
1879 to mysteriously evaporate. */
1880
1881 void
1882 safe_run_hooks (Lisp_Object hook)
1883 {
1884 /* FIXME: our `internal_condition_case' does not provide any way to pass data
1885 to its body or to its handlers other than via globals such as
1886 dynamically-bound variables ;-) */
1887 int count = SPECPDL_INDEX ();
1888 specbind (Qinhibit_quit, hook);
1889
1890 run_hook_with_args (1, &hook, safe_run_hook_funcall);
1891
1892 unbind_to (count, Qnil);
1893 }
1894
1895 \f
1896 /* Nonzero means polling for input is temporarily suppressed. */
1897
1898 int poll_suppress_count;
1899
1900 /* Asynchronous timer for polling. */
1901
1902 struct atimer *poll_timer;
1903
1904
1905 #ifdef POLL_FOR_INPUT
1906
1907 /* Poll for input, so that we catch a C-g if it comes in. This
1908 function is called from x_make_frame_visible, see comment
1909 there. */
1910
1911 void
1912 poll_for_input_1 (void)
1913 {
1914 /* Tell ns_read_socket() it is being called asynchronously so it can avoid
1915 doing anything dangerous. */
1916 #ifdef HAVE_NS
1917 ++handling_signal;
1918 #endif
1919 if (interrupt_input_blocked == 0
1920 && !waiting_for_input)
1921 read_avail_input (0);
1922 #ifdef HAVE_NS
1923 --handling_signal;
1924 #endif
1925 }
1926
1927 /* Timer callback function for poll_timer. TIMER is equal to
1928 poll_timer. */
1929
1930 static void
1931 poll_for_input (struct atimer *timer)
1932 {
1933 if (poll_suppress_count == 0)
1934 {
1935 #ifdef SYNC_INPUT
1936 interrupt_input_pending = 1;
1937 pending_signals = 1;
1938 #else
1939 poll_for_input_1 ();
1940 #endif
1941 }
1942 }
1943
1944 #endif /* POLL_FOR_INPUT */
1945
1946 /* Begin signals to poll for input, if they are appropriate.
1947 This function is called unconditionally from various places. */
1948
1949 void
1950 start_polling (void)
1951 {
1952 #ifdef POLL_FOR_INPUT
1953 /* XXX This condition was (read_socket_hook && !interrupt_input),
1954 but read_socket_hook is not global anymore. Let's pretend that
1955 it's always set. */
1956 if (!interrupt_input)
1957 {
1958 /* Turn alarm handling on unconditionally. It might have
1959 been turned off in process.c. */
1960 turn_on_atimers (1);
1961
1962 /* If poll timer doesn't exist, are we need one with
1963 a different interval, start a new one. */
1964 if (poll_timer == NULL
1965 || EMACS_SECS (poll_timer->interval) != polling_period)
1966 {
1967 EMACS_TIME interval;
1968
1969 if (poll_timer)
1970 cancel_atimer (poll_timer);
1971
1972 EMACS_SET_SECS_USECS (interval, polling_period, 0);
1973 poll_timer = start_atimer (ATIMER_CONTINUOUS, interval,
1974 poll_for_input, NULL);
1975 }
1976
1977 /* Let the timer's callback function poll for input
1978 if this becomes zero. */
1979 --poll_suppress_count;
1980 }
1981 #endif
1982 }
1983
1984 /* Nonzero if we are using polling to handle input asynchronously. */
1985
1986 int
1987 input_polling_used (void)
1988 {
1989 #ifdef POLL_FOR_INPUT
1990 /* XXX This condition was (read_socket_hook && !interrupt_input),
1991 but read_socket_hook is not global anymore. Let's pretend that
1992 it's always set. */
1993 return !interrupt_input;
1994 #else
1995 return 0;
1996 #endif
1997 }
1998
1999 /* Turn off polling. */
2000
2001 void
2002 stop_polling (void)
2003 {
2004 #ifdef POLL_FOR_INPUT
2005 /* XXX This condition was (read_socket_hook && !interrupt_input),
2006 but read_socket_hook is not global anymore. Let's pretend that
2007 it's always set. */
2008 if (!interrupt_input)
2009 ++poll_suppress_count;
2010 #endif
2011 }
2012
2013 /* Set the value of poll_suppress_count to COUNT
2014 and start or stop polling accordingly. */
2015
2016 void
2017 set_poll_suppress_count (int count)
2018 {
2019 #ifdef POLL_FOR_INPUT
2020 if (count == 0 && poll_suppress_count != 0)
2021 {
2022 poll_suppress_count = 1;
2023 start_polling ();
2024 }
2025 else if (count != 0 && poll_suppress_count == 0)
2026 {
2027 stop_polling ();
2028 }
2029 poll_suppress_count = count;
2030 #endif
2031 }
2032
2033 /* Bind polling_period to a value at least N.
2034 But don't decrease it. */
2035
2036 void
2037 bind_polling_period (int n)
2038 {
2039 #ifdef POLL_FOR_INPUT
2040 int new = polling_period;
2041
2042 if (n > new)
2043 new = n;
2044
2045 stop_other_atimers (poll_timer);
2046 stop_polling ();
2047 specbind (Qpolling_period, make_number (new));
2048 /* Start a new alarm with the new period. */
2049 start_polling ();
2050 #endif
2051 }
2052 \f
2053 /* Apply the control modifier to CHARACTER. */
2054
2055 int
2056 make_ctrl_char (int c)
2057 {
2058 /* Save the upper bits here. */
2059 int upper = c & ~0177;
2060
2061 if (! ASCII_BYTE_P (c))
2062 return c |= ctrl_modifier;
2063
2064 c &= 0177;
2065
2066 /* Everything in the columns containing the upper-case letters
2067 denotes a control character. */
2068 if (c >= 0100 && c < 0140)
2069 {
2070 int oc = c;
2071 c &= ~0140;
2072 /* Set the shift modifier for a control char
2073 made from a shifted letter. But only for letters! */
2074 if (oc >= 'A' && oc <= 'Z')
2075 c |= shift_modifier;
2076 }
2077
2078 /* The lower-case letters denote control characters too. */
2079 else if (c >= 'a' && c <= 'z')
2080 c &= ~0140;
2081
2082 /* Include the bits for control and shift
2083 only if the basic ASCII code can't indicate them. */
2084 else if (c >= ' ')
2085 c |= ctrl_modifier;
2086
2087 /* Replace the high bits. */
2088 c |= (upper & ~ctrl_modifier);
2089
2090 return c;
2091 }
2092
2093 /* Display the help-echo property of the character after the mouse pointer.
2094 Either show it in the echo area, or call show-help-function to display
2095 it by other means (maybe in a tooltip).
2096
2097 If HELP is nil, that means clear the previous help echo.
2098
2099 If HELP is a string, display that string. If HELP is a function,
2100 call it with OBJECT and POS as arguments; the function should
2101 return a help string or nil for none. For all other types of HELP,
2102 evaluate it to obtain a string.
2103
2104 WINDOW is the window in which the help was generated, if any.
2105 It is nil if not in a window.
2106
2107 If OBJECT is a buffer, POS is the position in the buffer where the
2108 `help-echo' text property was found.
2109
2110 If OBJECT is an overlay, that overlay has a `help-echo' property,
2111 and POS is the position in the overlay's buffer under the mouse.
2112
2113 If OBJECT is a string (an overlay string or a string displayed with
2114 the `display' property). POS is the position in that string under
2115 the mouse.
2116
2117 Note: this function may only be called with HELP nil or a string
2118 from X code running asynchronously. */
2119
2120 void
2121 show_help_echo (Lisp_Object help, Lisp_Object window, Lisp_Object object,
2122 Lisp_Object pos)
2123 {
2124 if (!NILP (help) && !STRINGP (help))
2125 {
2126 if (FUNCTIONP (help))
2127 {
2128 Lisp_Object args[4];
2129 args[0] = help;
2130 args[1] = window;
2131 args[2] = object;
2132 args[3] = pos;
2133 help = safe_call (4, args);
2134 }
2135 else
2136 help = safe_eval (help);
2137
2138 if (!STRINGP (help))
2139 return;
2140 }
2141
2142 #if defined (HAVE_MOUSE) || defined (HAVE_GPM)
2143 if (!noninteractive && STRINGP (help))
2144 {
2145 /* The mouse-fixup-help-message Lisp function can call
2146 mouse_position_hook, which resets the mouse_moved flags.
2147 This causes trouble if we are trying to read a mouse motion
2148 event (i.e., if we are inside a `track-mouse' form), so we
2149 restore the mouse_moved flag. */
2150 FRAME_PTR f = NILP (do_mouse_tracking) ? NULL : some_mouse_moved ();
2151 help = call1 (Qmouse_fixup_help_message, help);
2152 if (f)
2153 f->mouse_moved = 1;
2154 }
2155 #endif
2156
2157 if (STRINGP (help) || NILP (help))
2158 {
2159 if (!NILP (Vshow_help_function))
2160 call1 (Vshow_help_function, help);
2161 help_echo_showing_p = STRINGP (help);
2162 }
2163 }
2164
2165
2166 \f
2167 /* Input of single characters from keyboard */
2168
2169 Lisp_Object print_help (Lisp_Object object);
2170 static Lisp_Object kbd_buffer_get_event (KBOARD **kbp, int *used_mouse_menu,
2171 struct timeval *end_time);
2172 static void record_char (Lisp_Object c);
2173
2174 static Lisp_Object help_form_saved_window_configs;
2175 static Lisp_Object
2176 read_char_help_form_unwind (Lisp_Object arg)
2177 {
2178 Lisp_Object window_config = XCAR (help_form_saved_window_configs);
2179 help_form_saved_window_configs = XCDR (help_form_saved_window_configs);
2180 if (!NILP (window_config))
2181 Fset_window_configuration (window_config);
2182 return Qnil;
2183 }
2184
2185 #define STOP_POLLING \
2186 do { if (! polling_stopped_here) stop_polling (); \
2187 polling_stopped_here = 1; } while (0)
2188
2189 #define RESUME_POLLING \
2190 do { if (polling_stopped_here) start_polling (); \
2191 polling_stopped_here = 0; } while (0)
2192
2193 /* read a character from the keyboard; call the redisplay if needed */
2194 /* commandflag 0 means do not do auto-saving, but do do redisplay.
2195 -1 means do not do redisplay, but do do autosaving.
2196 1 means do both. */
2197
2198 /* The arguments MAPS and NMAPS are for menu prompting.
2199 MAPS is an array of keymaps; NMAPS is the length of MAPS.
2200
2201 PREV_EVENT is the previous input event, or nil if we are reading
2202 the first event of a key sequence (or not reading a key sequence).
2203 If PREV_EVENT is t, that is a "magic" value that says
2204 not to run input methods, but in other respects to act as if
2205 not reading a key sequence.
2206
2207 If USED_MOUSE_MENU is non-null, then we set *USED_MOUSE_MENU to 1
2208 if we used a mouse menu to read the input, or zero otherwise. If
2209 USED_MOUSE_MENU is null, we don't dereference it.
2210
2211 Value is -2 when we find input on another keyboard. A second call
2212 to read_char will read it.
2213
2214 If END_TIME is non-null, it is a pointer to an EMACS_TIME
2215 specifying the maximum time to wait until. If no input arrives by
2216 that time, stop waiting and return nil.
2217
2218 Value is t if we showed a menu and the user rejected it. */
2219
2220 Lisp_Object
2221 read_char (int commandflag, int nmaps, Lisp_Object *maps, Lisp_Object prev_event,
2222 int *used_mouse_menu, struct timeval *end_time)
2223 {
2224 volatile Lisp_Object c;
2225 int jmpcount;
2226 jmp_buf local_getcjmp;
2227 jmp_buf save_jump;
2228 volatile int key_already_recorded = 0;
2229 Lisp_Object tem, save;
2230 volatile Lisp_Object previous_echo_area_message;
2231 volatile Lisp_Object also_record;
2232 volatile int reread;
2233 struct gcpro gcpro1, gcpro2;
2234 int polling_stopped_here = 0;
2235 struct kboard *orig_kboard = current_kboard;
2236
2237 also_record = Qnil;
2238
2239 #if 0 /* This was commented out as part of fixing echo for C-u left. */
2240 before_command_key_count = this_command_key_count;
2241 before_command_echo_length = echo_length ();
2242 #endif
2243 c = Qnil;
2244 previous_echo_area_message = Qnil;
2245
2246 GCPRO2 (c, previous_echo_area_message);
2247
2248 retry:
2249
2250 reread = 0;
2251 if (CONSP (Vunread_post_input_method_events))
2252 {
2253 c = XCAR (Vunread_post_input_method_events);
2254 Vunread_post_input_method_events
2255 = XCDR (Vunread_post_input_method_events);
2256
2257 /* Undo what read_char_x_menu_prompt did when it unread
2258 additional keys returned by Fx_popup_menu. */
2259 if (CONSP (c)
2260 && (SYMBOLP (XCAR (c)) || INTEGERP (XCAR (c)))
2261 && NILP (XCDR (c)))
2262 c = XCAR (c);
2263
2264 reread = 1;
2265 goto reread_first;
2266 }
2267
2268 if (unread_command_char != -1)
2269 {
2270 XSETINT (c, unread_command_char);
2271 unread_command_char = -1;
2272
2273 reread = 1;
2274 goto reread_first;
2275 }
2276
2277 if (CONSP (Vunread_command_events))
2278 {
2279 int was_disabled = 0;
2280
2281 c = XCAR (Vunread_command_events);
2282 Vunread_command_events = XCDR (Vunread_command_events);
2283
2284 reread = 1;
2285
2286 /* Undo what sit-for did when it unread additional keys
2287 inside universal-argument. */
2288
2289 if (CONSP (c)
2290 && EQ (XCAR (c), Qt))
2291 {
2292 reread = 0;
2293 c = XCDR (c);
2294 }
2295
2296 /* Undo what read_char_x_menu_prompt did when it unread
2297 additional keys returned by Fx_popup_menu. */
2298 if (CONSP (c)
2299 && EQ (XCDR (c), Qdisabled)
2300 && (SYMBOLP (XCAR (c)) || INTEGERP (XCAR (c))))
2301 {
2302 was_disabled = 1;
2303 c = XCAR (c);
2304 }
2305
2306 /* If the queued event is something that used the mouse,
2307 set used_mouse_menu accordingly. */
2308 if (used_mouse_menu
2309 /* Also check was_disabled so last-nonmenu-event won't return
2310 a bad value when submenus are involved. (Bug#447) */
2311 && (EQ (c, Qtool_bar) || EQ (c, Qmenu_bar) || was_disabled))
2312 *used_mouse_menu = 1;
2313
2314 goto reread_for_input_method;
2315 }
2316
2317 if (CONSP (Vunread_input_method_events))
2318 {
2319 c = XCAR (Vunread_input_method_events);
2320 Vunread_input_method_events = XCDR (Vunread_input_method_events);
2321
2322 /* Undo what read_char_x_menu_prompt did when it unread
2323 additional keys returned by Fx_popup_menu. */
2324 if (CONSP (c)
2325 && (SYMBOLP (XCAR (c)) || INTEGERP (XCAR (c)))
2326 && NILP (XCDR (c)))
2327 c = XCAR (c);
2328 reread = 1;
2329 goto reread_for_input_method;
2330 }
2331
2332 this_command_key_count_reset = 0;
2333
2334 if (!NILP (Vexecuting_kbd_macro))
2335 {
2336 /* We set this to Qmacro; since that's not a frame, nobody will
2337 try to switch frames on us, and the selected window will
2338 remain unchanged.
2339
2340 Since this event came from a macro, it would be misleading to
2341 leave internal_last_event_frame set to wherever the last
2342 real event came from. Normally, a switch-frame event selects
2343 internal_last_event_frame after each command is read, but
2344 events read from a macro should never cause a new frame to be
2345 selected. */
2346 Vlast_event_frame = internal_last_event_frame = Qmacro;
2347
2348 /* Exit the macro if we are at the end.
2349 Also, some things replace the macro with t
2350 to force an early exit. */
2351 if (EQ (Vexecuting_kbd_macro, Qt)
2352 || executing_kbd_macro_index >= XFASTINT (Flength (Vexecuting_kbd_macro)))
2353 {
2354 XSETINT (c, -1);
2355 goto exit;
2356 }
2357
2358 c = Faref (Vexecuting_kbd_macro, make_number (executing_kbd_macro_index));
2359 if (STRINGP (Vexecuting_kbd_macro)
2360 && (XINT (c) & 0x80) && (XUINT (c) <= 0xff))
2361 XSETFASTINT (c, CHAR_META | (XINT (c) & ~0x80));
2362
2363 executing_kbd_macro_index++;
2364
2365 goto from_macro;
2366 }
2367
2368 if (!NILP (unread_switch_frame))
2369 {
2370 c = unread_switch_frame;
2371 unread_switch_frame = Qnil;
2372
2373 /* This event should make it into this_command_keys, and get echoed
2374 again, so we do not set `reread'. */
2375 goto reread_first;
2376 }
2377
2378 /* if redisplay was requested */
2379 if (commandflag >= 0)
2380 {
2381 int echo_current = EQ (echo_message_buffer, echo_area_buffer[0]);
2382
2383 /* If there is pending input, process any events which are not
2384 user-visible, such as X selection_request events. */
2385 if (input_pending
2386 || detect_input_pending_run_timers (0))
2387 swallow_events (0); /* may clear input_pending */
2388
2389 /* Redisplay if no pending input. */
2390 while (!input_pending)
2391 {
2392 if (help_echo_showing_p && !EQ (selected_window, minibuf_window))
2393 redisplay_preserve_echo_area (5);
2394 else
2395 redisplay ();
2396
2397 if (!input_pending)
2398 /* Normal case: no input arrived during redisplay. */
2399 break;
2400
2401 /* Input arrived and pre-empted redisplay.
2402 Process any events which are not user-visible. */
2403 swallow_events (0);
2404 /* If that cleared input_pending, try again to redisplay. */
2405 }
2406
2407 /* Prevent the redisplay we just did
2408 from messing up echoing of the input after the prompt. */
2409 if (commandflag == 0 && echo_current)
2410 echo_message_buffer = echo_area_buffer[0];
2411
2412 }
2413
2414 /* Message turns off echoing unless more keystrokes turn it on again.
2415
2416 The code in 20.x for the condition was
2417
2418 1. echo_area_glyphs && *echo_area_glyphs
2419 2. && echo_area_glyphs != current_kboard->echobuf
2420 3. && ok_to_echo_at_next_pause != echo_area_glyphs
2421
2422 (1) means there's a current message displayed
2423
2424 (2) means it's not the message from echoing from the current
2425 kboard.
2426
2427 (3) There's only one place in 20.x where ok_to_echo_at_next_pause
2428 is set to a non-null value. This is done in read_char and it is
2429 set to echo_area_glyphs after a call to echo_char. That means
2430 ok_to_echo_at_next_pause is either null or
2431 current_kboard->echobuf with the appropriate current_kboard at
2432 that time.
2433
2434 So, condition (3) means in clear text ok_to_echo_at_next_pause
2435 must be either null, or the current message isn't from echoing at
2436 all, or it's from echoing from a different kboard than the
2437 current one. */
2438
2439 if (/* There currently is something in the echo area. */
2440 !NILP (echo_area_buffer[0])
2441 && (/* And it's either not from echoing. */
2442 !EQ (echo_area_buffer[0], echo_message_buffer)
2443 /* Or it's an echo from a different kboard. */
2444 || echo_kboard != current_kboard
2445 /* Or we explicitly allow overwriting whatever there is. */
2446 || ok_to_echo_at_next_pause == NULL))
2447 cancel_echoing ();
2448 else
2449 echo_dash ();
2450
2451 /* Try reading a character via menu prompting in the minibuf.
2452 Try this before the sit-for, because the sit-for
2453 would do the wrong thing if we are supposed to do
2454 menu prompting. If EVENT_HAS_PARAMETERS then we are reading
2455 after a mouse event so don't try a minibuf menu. */
2456 c = Qnil;
2457 if (nmaps > 0 && INTERACTIVE
2458 && !NILP (prev_event) && ! EVENT_HAS_PARAMETERS (prev_event)
2459 /* Don't bring up a menu if we already have another event. */
2460 && NILP (Vunread_command_events)
2461 && unread_command_char < 0
2462 && !detect_input_pending_run_timers (0))
2463 {
2464 c = read_char_minibuf_menu_prompt (commandflag, nmaps, maps);
2465
2466 if (INTEGERP (c) && XINT (c) == -2)
2467 return c; /* wrong_kboard_jmpbuf */
2468
2469 if (! NILP (c))
2470 {
2471 key_already_recorded = 1;
2472 goto non_reread_1;
2473 }
2474 }
2475
2476 /* Make a longjmp point for quits to use, but don't alter getcjmp just yet.
2477 We will do that below, temporarily for short sections of code,
2478 when appropriate. local_getcjmp must be in effect
2479 around any call to sit_for or kbd_buffer_get_event;
2480 it *must not* be in effect when we call redisplay. */
2481
2482 jmpcount = SPECPDL_INDEX ();
2483 if (_setjmp (local_getcjmp))
2484 {
2485 /* Handle quits while reading the keyboard. */
2486 /* We must have saved the outer value of getcjmp here,
2487 so restore it now. */
2488 restore_getcjmp (save_jump);
2489 unbind_to (jmpcount, Qnil);
2490 XSETINT (c, quit_char);
2491 internal_last_event_frame = selected_frame;
2492 Vlast_event_frame = internal_last_event_frame;
2493 /* If we report the quit char as an event,
2494 don't do so more than once. */
2495 if (!NILP (Vinhibit_quit))
2496 Vquit_flag = Qnil;
2497
2498 {
2499 KBOARD *kb = FRAME_KBOARD (XFRAME (selected_frame));
2500 if (kb != current_kboard)
2501 {
2502 Lisp_Object last = KVAR (kb, kbd_queue);
2503 /* We shouldn't get here if we were in single-kboard mode! */
2504 if (single_kboard)
2505 abort ();
2506 if (CONSP (last))
2507 {
2508 while (CONSP (XCDR (last)))
2509 last = XCDR (last);
2510 if (!NILP (XCDR (last)))
2511 abort ();
2512 }
2513 if (!CONSP (last))
2514 KVAR (kb, kbd_queue) = Fcons (c, Qnil);
2515 else
2516 XSETCDR (last, Fcons (c, Qnil));
2517 kb->kbd_queue_has_data = 1;
2518 current_kboard = kb;
2519 /* This is going to exit from read_char
2520 so we had better get rid of this frame's stuff. */
2521 UNGCPRO;
2522 return make_number (-2); /* wrong_kboard_jmpbuf */
2523 }
2524 }
2525 goto non_reread;
2526 }
2527
2528 /* Start idle timers if no time limit is supplied. We don't do it
2529 if a time limit is supplied to avoid an infinite recursion in the
2530 situation where an idle timer calls `sit-for'. */
2531
2532 if (!end_time)
2533 timer_start_idle ();
2534
2535 /* If in middle of key sequence and minibuffer not active,
2536 start echoing if enough time elapses. */
2537
2538 if (minibuf_level == 0
2539 && !end_time
2540 && !current_kboard->immediate_echo
2541 && this_command_key_count > 0
2542 && ! noninteractive
2543 && (FLOATP (Vecho_keystrokes) || INTEGERP (Vecho_keystrokes))
2544 && NILP (Fzerop (Vecho_keystrokes))
2545 && (/* No message. */
2546 NILP (echo_area_buffer[0])
2547 /* Or empty message. */
2548 || (BUF_BEG (XBUFFER (echo_area_buffer[0]))
2549 == BUF_Z (XBUFFER (echo_area_buffer[0])))
2550 /* Or already echoing from same kboard. */
2551 || (echo_kboard && ok_to_echo_at_next_pause == echo_kboard)
2552 /* Or not echoing before and echoing allowed. */
2553 || (!echo_kboard && ok_to_echo_at_next_pause)))
2554 {
2555 /* After a mouse event, start echoing right away.
2556 This is because we are probably about to display a menu,
2557 and we don't want to delay before doing so. */
2558 if (EVENT_HAS_PARAMETERS (prev_event))
2559 echo_now ();
2560 else
2561 {
2562 Lisp_Object tem0;
2563
2564 save_getcjmp (save_jump);
2565 restore_getcjmp (local_getcjmp);
2566 tem0 = sit_for (Vecho_keystrokes, 1, 1);
2567 restore_getcjmp (save_jump);
2568 if (EQ (tem0, Qt)
2569 && ! CONSP (Vunread_command_events))
2570 echo_now ();
2571 }
2572 }
2573
2574 /* Maybe auto save due to number of keystrokes. */
2575
2576 if (commandflag != 0
2577 && auto_save_interval > 0
2578 && num_nonmacro_input_events - last_auto_save > max (auto_save_interval, 20)
2579 && !detect_input_pending_run_timers (0))
2580 {
2581 Fdo_auto_save (Qnil, Qnil);
2582 /* Hooks can actually change some buffers in auto save. */
2583 redisplay ();
2584 }
2585
2586 /* Try reading using an X menu.
2587 This is never confused with reading using the minibuf
2588 because the recursive call of read_char in read_char_minibuf_menu_prompt
2589 does not pass on any keymaps. */
2590
2591 if (nmaps > 0 && INTERACTIVE
2592 && !NILP (prev_event)
2593 && EVENT_HAS_PARAMETERS (prev_event)
2594 && !EQ (XCAR (prev_event), Qmenu_bar)
2595 && !EQ (XCAR (prev_event), Qtool_bar)
2596 /* Don't bring up a menu if we already have another event. */
2597 && NILP (Vunread_command_events)
2598 && unread_command_char < 0)
2599 {
2600 c = read_char_x_menu_prompt (nmaps, maps, prev_event, used_mouse_menu);
2601
2602 /* Now that we have read an event, Emacs is not idle. */
2603 if (!end_time)
2604 timer_stop_idle ();
2605
2606 goto exit;
2607 }
2608
2609 /* Maybe autosave and/or garbage collect due to idleness. */
2610
2611 if (INTERACTIVE && NILP (c))
2612 {
2613 int delay_level;
2614 EMACS_INT buffer_size;
2615
2616 /* Slow down auto saves logarithmically in size of current buffer,
2617 and garbage collect while we're at it. */
2618 if (! MINI_WINDOW_P (XWINDOW (selected_window)))
2619 last_non_minibuf_size = Z - BEG;
2620 buffer_size = (last_non_minibuf_size >> 8) + 1;
2621 delay_level = 0;
2622 while (buffer_size > 64)
2623 delay_level++, buffer_size -= buffer_size >> 2;
2624 if (delay_level < 4) delay_level = 4;
2625 /* delay_level is 4 for files under around 50k, 7 at 100k,
2626 9 at 200k, 11 at 300k, and 12 at 500k. It is 15 at 1 meg. */
2627
2628 /* Auto save if enough time goes by without input. */
2629 if (commandflag != 0
2630 && num_nonmacro_input_events > last_auto_save
2631 && INTEGERP (Vauto_save_timeout)
2632 && XINT (Vauto_save_timeout) > 0)
2633 {
2634 Lisp_Object tem0;
2635 int timeout = delay_level * XFASTINT (Vauto_save_timeout) / 4;
2636
2637 save_getcjmp (save_jump);
2638 restore_getcjmp (local_getcjmp);
2639 tem0 = sit_for (make_number (timeout), 1, 1);
2640 restore_getcjmp (save_jump);
2641
2642 if (EQ (tem0, Qt)
2643 && ! CONSP (Vunread_command_events))
2644 {
2645 Fdo_auto_save (Qnil, Qnil);
2646
2647 /* If we have auto-saved and there is still no input
2648 available, garbage collect if there has been enough
2649 consing going on to make it worthwhile. */
2650 if (!detect_input_pending_run_timers (0)
2651 && consing_since_gc > gc_cons_threshold / 2)
2652 Fgarbage_collect ();
2653
2654 redisplay ();
2655 }
2656 }
2657 }
2658
2659 /* Notify the caller if an autosave hook, or a timer, sentinel or
2660 filter in the sit_for calls above have changed the current
2661 kboard. This could happen if they use the minibuffer or start a
2662 recursive edit, like the fancy splash screen in server.el's
2663 filter. If this longjmp wasn't here, read_key_sequence would
2664 interpret the next key sequence using the wrong translation
2665 tables and function keymaps. */
2666 if (NILP (c) && current_kboard != orig_kboard)
2667 {
2668 UNGCPRO;
2669 return make_number (-2); /* wrong_kboard_jmpbuf */
2670 }
2671
2672 /* If this has become non-nil here, it has been set by a timer
2673 or sentinel or filter. */
2674 if (CONSP (Vunread_command_events))
2675 {
2676 c = XCAR (Vunread_command_events);
2677 Vunread_command_events = XCDR (Vunread_command_events);
2678 }
2679
2680 /* Read something from current KBOARD's side queue, if possible. */
2681
2682 if (NILP (c))
2683 {
2684 if (current_kboard->kbd_queue_has_data)
2685 {
2686 if (!CONSP (KVAR (current_kboard, kbd_queue)))
2687 abort ();
2688 c = XCAR (KVAR (current_kboard, kbd_queue));
2689 KVAR (current_kboard, kbd_queue)
2690 = XCDR (KVAR (current_kboard, kbd_queue));
2691 if (NILP (KVAR (current_kboard, kbd_queue)))
2692 current_kboard->kbd_queue_has_data = 0;
2693 input_pending = readable_events (0);
2694 if (EVENT_HAS_PARAMETERS (c)
2695 && EQ (EVENT_HEAD_KIND (EVENT_HEAD (c)), Qswitch_frame))
2696 internal_last_event_frame = XCAR (XCDR (c));
2697 Vlast_event_frame = internal_last_event_frame;
2698 }
2699 }
2700
2701 /* If current_kboard's side queue is empty check the other kboards.
2702 If one of them has data that we have not yet seen here,
2703 switch to it and process the data waiting for it.
2704
2705 Note: if the events queued up for another kboard
2706 have already been seen here, and therefore are not a complete command,
2707 the kbd_queue_has_data field is 0, so we skip that kboard here.
2708 That's to avoid an infinite loop switching between kboards here. */
2709 if (NILP (c) && !single_kboard)
2710 {
2711 KBOARD *kb;
2712 for (kb = all_kboards; kb; kb = kb->next_kboard)
2713 if (kb->kbd_queue_has_data)
2714 {
2715 current_kboard = kb;
2716 /* This is going to exit from read_char
2717 so we had better get rid of this frame's stuff. */
2718 UNGCPRO;
2719 return make_number (-2); /* wrong_kboard_jmpbuf */
2720 }
2721 }
2722
2723 wrong_kboard:
2724
2725 STOP_POLLING;
2726
2727 /* Finally, we read from the main queue,
2728 and if that gives us something we can't use yet, we put it on the
2729 appropriate side queue and try again. */
2730
2731 if (NILP (c))
2732 {
2733 KBOARD *kb IF_LINT (= NULL);
2734
2735 if (end_time)
2736 {
2737 EMACS_TIME now;
2738 EMACS_GET_TIME (now);
2739 if (EMACS_TIME_GE (now, *end_time))
2740 goto exit;
2741 }
2742
2743 /* Actually read a character, waiting if necessary. */
2744 save_getcjmp (save_jump);
2745 restore_getcjmp (local_getcjmp);
2746 if (!end_time)
2747 timer_start_idle ();
2748 c = kbd_buffer_get_event (&kb, used_mouse_menu, end_time);
2749 restore_getcjmp (save_jump);
2750
2751 if (! NILP (c) && (kb != current_kboard))
2752 {
2753 Lisp_Object last = KVAR (kb, kbd_queue);
2754 if (CONSP (last))
2755 {
2756 while (CONSP (XCDR (last)))
2757 last = XCDR (last);
2758 if (!NILP (XCDR (last)))
2759 abort ();
2760 }
2761 if (!CONSP (last))
2762 KVAR (kb, kbd_queue) = Fcons (c, Qnil);
2763 else
2764 XSETCDR (last, Fcons (c, Qnil));
2765 kb->kbd_queue_has_data = 1;
2766 c = Qnil;
2767 if (single_kboard)
2768 goto wrong_kboard;
2769 current_kboard = kb;
2770 /* This is going to exit from read_char
2771 so we had better get rid of this frame's stuff. */
2772 UNGCPRO;
2773 return make_number (-2);
2774 }
2775 }
2776
2777 /* Terminate Emacs in batch mode if at eof. */
2778 if (noninteractive && INTEGERP (c) && XINT (c) < 0)
2779 Fkill_emacs (make_number (1));
2780
2781 if (INTEGERP (c))
2782 {
2783 /* Add in any extra modifiers, where appropriate. */
2784 if ((extra_keyboard_modifiers & CHAR_CTL)
2785 || ((extra_keyboard_modifiers & 0177) < ' '
2786 && (extra_keyboard_modifiers & 0177) != 0))
2787 XSETINT (c, make_ctrl_char (XINT (c)));
2788
2789 /* Transfer any other modifier bits directly from
2790 extra_keyboard_modifiers to c. Ignore the actual character code
2791 in the low 16 bits of extra_keyboard_modifiers. */
2792 XSETINT (c, XINT (c) | (extra_keyboard_modifiers & ~0xff7f & ~CHAR_CTL));
2793 }
2794
2795 non_reread:
2796
2797 if (!end_time)
2798 timer_stop_idle ();
2799 RESUME_POLLING;
2800
2801 if (NILP (c))
2802 {
2803 if (commandflag >= 0
2804 && !input_pending && !detect_input_pending_run_timers (0))
2805 redisplay ();
2806
2807 goto wrong_kboard;
2808 }
2809
2810 non_reread_1:
2811
2812 /* Buffer switch events are only for internal wakeups
2813 so don't show them to the user.
2814 Also, don't record a key if we already did. */
2815 if (BUFFERP (c) || key_already_recorded)
2816 goto exit;
2817
2818 /* Process special events within read_char
2819 and loop around to read another event. */
2820 save = Vquit_flag;
2821 Vquit_flag = Qnil;
2822 tem = access_keymap (get_keymap (Vspecial_event_map, 0, 1), c, 0, 0, 1);
2823 Vquit_flag = save;
2824
2825 if (!NILP (tem))
2826 {
2827 struct buffer *prev_buffer = current_buffer;
2828 #if 0 /* This shouldn't be necessary anymore. --lorentey */
2829 int was_locked = single_kboard;
2830 int count = SPECPDL_INDEX ();
2831 record_single_kboard_state ();
2832 #endif
2833
2834 last_input_event = c;
2835 Fcommand_execute (tem, Qnil, Fvector (1, &last_input_event), Qt);
2836
2837 if (CONSP (c) && EQ (XCAR (c), Qselect_window) && !end_time)
2838 /* We stopped being idle for this event; undo that. This
2839 prevents automatic window selection (under
2840 mouse_autoselect_window from acting as a real input event, for
2841 example banishing the mouse under mouse-avoidance-mode. */
2842 timer_resume_idle ();
2843
2844 #if 0 /* This shouldn't be necessary anymore. --lorentey */
2845 /* Resume allowing input from any kboard, if that was true before. */
2846 if (!was_locked)
2847 any_kboard_state ();
2848 unbind_to (count, Qnil);
2849 #endif
2850
2851 if (current_buffer != prev_buffer)
2852 {
2853 /* The command may have changed the keymaps. Pretend there
2854 is input in another keyboard and return. This will
2855 recalculate keymaps. */
2856 c = make_number (-2);
2857 goto exit;
2858 }
2859 else
2860 goto retry;
2861 }
2862
2863 /* Handle things that only apply to characters. */
2864 if (INTEGERP (c))
2865 {
2866 /* If kbd_buffer_get_event gave us an EOF, return that. */
2867 if (XINT (c) == -1)
2868 goto exit;
2869
2870 if ((STRINGP (KVAR (current_kboard, Vkeyboard_translate_table))
2871 && SCHARS (KVAR (current_kboard, Vkeyboard_translate_table)) > (unsigned) XFASTINT (c))
2872 || (VECTORP (KVAR (current_kboard, Vkeyboard_translate_table))
2873 && XVECTOR (KVAR (current_kboard, Vkeyboard_translate_table))->size > (unsigned) XFASTINT (c))
2874 || (CHAR_TABLE_P (KVAR (current_kboard, Vkeyboard_translate_table))
2875 && CHARACTERP (c)))
2876 {
2877 Lisp_Object d;
2878 d = Faref (KVAR (current_kboard, Vkeyboard_translate_table), c);
2879 /* nil in keyboard-translate-table means no translation. */
2880 if (!NILP (d))
2881 c = d;
2882 }
2883 }
2884
2885 /* If this event is a mouse click in the menu bar,
2886 return just menu-bar for now. Modify the mouse click event
2887 so we won't do this twice, then queue it up. */
2888 if (EVENT_HAS_PARAMETERS (c)
2889 && CONSP (XCDR (c))
2890 && CONSP (EVENT_START (c))
2891 && CONSP (XCDR (EVENT_START (c))))
2892 {
2893 Lisp_Object posn;
2894
2895 posn = POSN_POSN (EVENT_START (c));
2896 /* Handle menu-bar events:
2897 insert the dummy prefix event `menu-bar'. */
2898 if (EQ (posn, Qmenu_bar) || EQ (posn, Qtool_bar))
2899 {
2900 /* Change menu-bar to (menu-bar) as the event "position". */
2901 POSN_SET_POSN (EVENT_START (c), Fcons (posn, Qnil));
2902
2903 also_record = c;
2904 Vunread_command_events = Fcons (c, Vunread_command_events);
2905 c = posn;
2906 }
2907 }
2908
2909 /* Store these characters into recent_keys, the dribble file if any,
2910 and the keyboard macro being defined, if any. */
2911 record_char (c);
2912 if (! NILP (also_record))
2913 record_char (also_record);
2914
2915 /* Wipe the echo area.
2916 But first, if we are about to use an input method,
2917 save the echo area contents for it to refer to. */
2918 if (INTEGERP (c)
2919 && ! NILP (Vinput_method_function)
2920 && (unsigned) XINT (c) >= ' '
2921 && (unsigned) XINT (c) != 127
2922 && (unsigned) XINT (c) < 256)
2923 {
2924 previous_echo_area_message = Fcurrent_message ();
2925 Vinput_method_previous_message = previous_echo_area_message;
2926 }
2927
2928 /* Now wipe the echo area, except for help events which do their
2929 own stuff with the echo area. */
2930 if (!CONSP (c)
2931 || (!(EQ (Qhelp_echo, XCAR (c)))
2932 && !(EQ (Qswitch_frame, XCAR (c)))))
2933 {
2934 if (!NILP (echo_area_buffer[0]))
2935 safe_run_hooks (Qecho_area_clear_hook);
2936 clear_message (1, 0);
2937 }
2938
2939 reread_for_input_method:
2940 from_macro:
2941 /* Pass this to the input method, if appropriate. */
2942 if (INTEGERP (c)
2943 && ! NILP (Vinput_method_function)
2944 /* Don't run the input method within a key sequence,
2945 after the first event of the key sequence. */
2946 && NILP (prev_event)
2947 && (unsigned) XINT (c) >= ' '
2948 && (unsigned) XINT (c) != 127
2949 && (unsigned) XINT (c) < 256)
2950 {
2951 Lisp_Object keys;
2952 int key_count, key_count_reset;
2953 struct gcpro inner_gcpro1;
2954 int count = SPECPDL_INDEX ();
2955
2956 /* Save the echo status. */
2957 int saved_immediate_echo = current_kboard->immediate_echo;
2958 struct kboard *saved_ok_to_echo = ok_to_echo_at_next_pause;
2959 Lisp_Object saved_echo_string = KVAR (current_kboard, echo_string);
2960 int saved_echo_after_prompt = current_kboard->echo_after_prompt;
2961
2962 #if 0
2963 if (before_command_restore_flag)
2964 {
2965 this_command_key_count = before_command_key_count_1;
2966 if (this_command_key_count < this_single_command_key_start)
2967 this_single_command_key_start = this_command_key_count;
2968 echo_truncate (before_command_echo_length_1);
2969 before_command_restore_flag = 0;
2970 }
2971 #endif
2972
2973 /* Save the this_command_keys status. */
2974 key_count = this_command_key_count;
2975 key_count_reset = this_command_key_count_reset;
2976
2977 if (key_count > 0)
2978 keys = Fcopy_sequence (this_command_keys);
2979 else
2980 keys = Qnil;
2981 GCPRO1_VAR (keys, inner_gcpro);
2982
2983 /* Clear out this_command_keys. */
2984 this_command_key_count = 0;
2985 this_command_key_count_reset = 0;
2986
2987 /* Now wipe the echo area. */
2988 if (!NILP (echo_area_buffer[0]))
2989 safe_run_hooks (Qecho_area_clear_hook);
2990 clear_message (1, 0);
2991 echo_truncate (0);
2992
2993 /* If we are not reading a key sequence,
2994 never use the echo area. */
2995 if (maps == 0)
2996 {
2997 specbind (Qinput_method_use_echo_area, Qt);
2998 }
2999
3000 /* Call the input method. */
3001 tem = call1 (Vinput_method_function, c);
3002
3003 tem = unbind_to (count, tem);
3004
3005 /* Restore the saved echoing state
3006 and this_command_keys state. */
3007 this_command_key_count = key_count;
3008 this_command_key_count_reset = key_count_reset;
3009 if (key_count > 0)
3010 this_command_keys = keys;
3011
3012 cancel_echoing ();
3013 ok_to_echo_at_next_pause = saved_ok_to_echo;
3014 KVAR (current_kboard, echo_string) = saved_echo_string;
3015 current_kboard->echo_after_prompt = saved_echo_after_prompt;
3016 if (saved_immediate_echo)
3017 echo_now ();
3018
3019 UNGCPRO_VAR (inner_gcpro);
3020
3021 /* The input method can return no events. */
3022 if (! CONSP (tem))
3023 {
3024 /* Bring back the previous message, if any. */
3025 if (! NILP (previous_echo_area_message))
3026 message_with_string ("%s", previous_echo_area_message, 0);
3027 goto retry;
3028 }
3029 /* It returned one event or more. */
3030 c = XCAR (tem);
3031 Vunread_post_input_method_events
3032 = nconc2 (XCDR (tem), Vunread_post_input_method_events);
3033 }
3034
3035 reread_first:
3036
3037 /* Display help if not echoing. */
3038 if (CONSP (c) && EQ (XCAR (c), Qhelp_echo))
3039 {
3040 /* (help-echo FRAME HELP WINDOW OBJECT POS). */
3041 Lisp_Object help, object, position, window, htem;
3042
3043 htem = Fcdr (XCDR (c));
3044 help = Fcar (htem);
3045 htem = Fcdr (htem);
3046 window = Fcar (htem);
3047 htem = Fcdr (htem);
3048 object = Fcar (htem);
3049 htem = Fcdr (htem);
3050 position = Fcar (htem);
3051
3052 show_help_echo (help, window, object, position);
3053
3054 /* We stopped being idle for this event; undo that. */
3055 if (!end_time)
3056 timer_resume_idle ();
3057 goto retry;
3058 }
3059
3060 if ((! reread || this_command_key_count == 0
3061 || this_command_key_count_reset)
3062 && !end_time)
3063 {
3064
3065 /* Don't echo mouse motion events. */
3066 if ((FLOATP (Vecho_keystrokes) || INTEGERP (Vecho_keystrokes))
3067 && NILP (Fzerop (Vecho_keystrokes))
3068 && ! (EVENT_HAS_PARAMETERS (c)
3069 && EQ (EVENT_HEAD_KIND (EVENT_HEAD (c)), Qmouse_movement)))
3070 {
3071 echo_char (c);
3072 if (! NILP (also_record))
3073 echo_char (also_record);
3074 /* Once we reread a character, echoing can happen
3075 the next time we pause to read a new one. */
3076 ok_to_echo_at_next_pause = current_kboard;
3077 }
3078
3079 /* Record this character as part of the current key. */
3080 add_command_key (c);
3081 if (! NILP (also_record))
3082 add_command_key (also_record);
3083 }
3084
3085 last_input_event = c;
3086 num_input_events++;
3087
3088 /* Process the help character specially if enabled */
3089 if (!NILP (Vhelp_form) && help_char_p (c))
3090 {
3091 Lisp_Object tem0;
3092 int count = SPECPDL_INDEX ();
3093
3094 help_form_saved_window_configs
3095 = Fcons (Fcurrent_window_configuration (Qnil),
3096 help_form_saved_window_configs);
3097 record_unwind_protect (read_char_help_form_unwind, Qnil);
3098
3099 tem0 = Feval (Vhelp_form, Qnil);
3100 if (STRINGP (tem0))
3101 internal_with_output_to_temp_buffer ("*Help*", print_help, tem0);
3102
3103 cancel_echoing ();
3104 do
3105 {
3106 c = read_char (0, 0, 0, Qnil, 0, NULL);
3107 if (EVENT_HAS_PARAMETERS (c)
3108 && EQ (EVENT_HEAD_KIND (EVENT_HEAD (c)), Qmouse_click))
3109 XSETCAR (help_form_saved_window_configs, Qnil);
3110 }
3111 while (BUFFERP (c));
3112 /* Remove the help from the frame */
3113 unbind_to (count, Qnil);
3114
3115 redisplay ();
3116 if (EQ (c, make_number (040)))
3117 {
3118 cancel_echoing ();
3119 do
3120 c = read_char (0, 0, 0, Qnil, 0, NULL);
3121 while (BUFFERP (c));
3122 }
3123 }
3124
3125 exit:
3126 RESUME_POLLING;
3127 RETURN_UNGCPRO (c);
3128 }
3129
3130 /* Record a key that came from a mouse menu.
3131 Record it for echoing, for this-command-keys, and so on. */
3132
3133 static void
3134 record_menu_key (Lisp_Object c)
3135 {
3136 /* Wipe the echo area. */
3137 clear_message (1, 0);
3138
3139 record_char (c);
3140
3141 #if 0
3142 before_command_key_count = this_command_key_count;
3143 before_command_echo_length = echo_length ();
3144 #endif
3145
3146 /* Don't echo mouse motion events. */
3147 if ((FLOATP (Vecho_keystrokes) || INTEGERP (Vecho_keystrokes))
3148 && NILP (Fzerop (Vecho_keystrokes)))
3149 {
3150 echo_char (c);
3151
3152 /* Once we reread a character, echoing can happen
3153 the next time we pause to read a new one. */
3154 ok_to_echo_at_next_pause = 0;
3155 }
3156
3157 /* Record this character as part of the current key. */
3158 add_command_key (c);
3159
3160 /* Re-reading in the middle of a command */
3161 last_input_event = c;
3162 num_input_events++;
3163 }
3164
3165 /* Return 1 if should recognize C as "the help character". */
3166
3167 int
3168 help_char_p (Lisp_Object c)
3169 {
3170 Lisp_Object tail;
3171
3172 if (EQ (c, Vhelp_char))
3173 return 1;
3174 for (tail = Vhelp_event_list; CONSP (tail); tail = XCDR (tail))
3175 if (EQ (c, XCAR (tail)))
3176 return 1;
3177 return 0;
3178 }
3179
3180 /* Record the input event C in various ways. */
3181
3182 static void
3183 record_char (Lisp_Object c)
3184 {
3185 int recorded = 0;
3186
3187 if (CONSP (c) && (EQ (XCAR (c), Qhelp_echo) || EQ (XCAR (c), Qmouse_movement)))
3188 {
3189 /* To avoid filling recent_keys with help-echo and mouse-movement
3190 events, we filter out repeated help-echo events, only store the
3191 first and last in a series of mouse-movement events, and don't
3192 store repeated help-echo events which are only separated by
3193 mouse-movement events. */
3194
3195 Lisp_Object ev1, ev2, ev3;
3196 int ix1, ix2, ix3;
3197
3198 if ((ix1 = recent_keys_index - 1) < 0)
3199 ix1 = NUM_RECENT_KEYS - 1;
3200 ev1 = AREF (recent_keys, ix1);
3201
3202 if ((ix2 = ix1 - 1) < 0)
3203 ix2 = NUM_RECENT_KEYS - 1;
3204 ev2 = AREF (recent_keys, ix2);
3205
3206 if ((ix3 = ix2 - 1) < 0)
3207 ix3 = NUM_RECENT_KEYS - 1;
3208 ev3 = AREF (recent_keys, ix3);
3209
3210 if (EQ (XCAR (c), Qhelp_echo))
3211 {
3212 /* Don't record `help-echo' in recent_keys unless it shows some help
3213 message, and a different help than the previously recorded
3214 event. */
3215 Lisp_Object help, last_help;
3216
3217 help = Fcar_safe (Fcdr_safe (XCDR (c)));
3218 if (!STRINGP (help))
3219 recorded = 1;
3220 else if (CONSP (ev1) && EQ (XCAR (ev1), Qhelp_echo)
3221 && (last_help = Fcar_safe (Fcdr_safe (XCDR (ev1))), EQ (last_help, help)))
3222 recorded = 1;
3223 else if (CONSP (ev1) && EQ (XCAR (ev1), Qmouse_movement)
3224 && CONSP (ev2) && EQ (XCAR (ev2), Qhelp_echo)
3225 && (last_help = Fcar_safe (Fcdr_safe (XCDR (ev2))), EQ (last_help, help)))
3226 recorded = -1;
3227 else if (CONSP (ev1) && EQ (XCAR (ev1), Qmouse_movement)
3228 && CONSP (ev2) && EQ (XCAR (ev2), Qmouse_movement)
3229 && CONSP (ev3) && EQ (XCAR (ev3), Qhelp_echo)
3230 && (last_help = Fcar_safe (Fcdr_safe (XCDR (ev3))), EQ (last_help, help)))
3231 recorded = -2;
3232 }
3233 else if (EQ (XCAR (c), Qmouse_movement))
3234 {
3235 /* Only record one pair of `mouse-movement' on a window in recent_keys.
3236 So additional mouse movement events replace the last element. */
3237 Lisp_Object last_window, window;
3238
3239 window = Fcar_safe (Fcar_safe (XCDR (c)));
3240 if (CONSP (ev1) && EQ (XCAR (ev1), Qmouse_movement)
3241 && (last_window = Fcar_safe (Fcar_safe (XCDR (ev1))), EQ (last_window, window))
3242 && CONSP (ev2) && EQ (XCAR (ev2), Qmouse_movement)
3243 && (last_window = Fcar_safe (Fcar_safe (XCDR (ev2))), EQ (last_window, window)))
3244 {
3245 ASET (recent_keys, ix1, c);
3246 recorded = 1;
3247 }
3248 }
3249 }
3250 else
3251 store_kbd_macro_char (c);
3252
3253 if (!recorded)
3254 {
3255 total_keys++;
3256 ASET (recent_keys, recent_keys_index, c);
3257 if (++recent_keys_index >= NUM_RECENT_KEYS)
3258 recent_keys_index = 0;
3259 }
3260 else if (recorded < 0)
3261 {
3262 /* We need to remove one or two events from recent_keys.
3263 To do this, we simply put nil at those events and move the
3264 recent_keys_index backwards over those events. Usually,
3265 users will never see those nil events, as they will be
3266 overwritten by the command keys entered to see recent_keys
3267 (e.g. C-h l). */
3268
3269 while (recorded++ < 0 && total_keys > 0)
3270 {
3271 if (total_keys < NUM_RECENT_KEYS)
3272 total_keys--;
3273 if (--recent_keys_index < 0)
3274 recent_keys_index = NUM_RECENT_KEYS - 1;
3275 ASET (recent_keys, recent_keys_index, Qnil);
3276 }
3277 }
3278
3279 num_nonmacro_input_events++;
3280
3281 /* Write c to the dribble file. If c is a lispy event, write
3282 the event's symbol to the dribble file, in <brackets>. Bleaugh.
3283 If you, dear reader, have a better idea, you've got the source. :-) */
3284 if (dribble)
3285 {
3286 BLOCK_INPUT;
3287 if (INTEGERP (c))
3288 {
3289 if (XUINT (c) < 0x100)
3290 putc (XINT (c), dribble);
3291 else
3292 fprintf (dribble, " 0x%x", (int) XUINT (c));
3293 }
3294 else
3295 {
3296 Lisp_Object dribblee;
3297
3298 /* If it's a structured event, take the event header. */
3299 dribblee = EVENT_HEAD (c);
3300
3301 if (SYMBOLP (dribblee))
3302 {
3303 putc ('<', dribble);
3304 fwrite (SDATA (SYMBOL_NAME (dribblee)), sizeof (char),
3305 SBYTES (SYMBOL_NAME (dribblee)),
3306 dribble);
3307 putc ('>', dribble);
3308 }
3309 }
3310
3311 fflush (dribble);
3312 UNBLOCK_INPUT;
3313 }
3314 }
3315
3316 Lisp_Object
3317 print_help (Lisp_Object object)
3318 {
3319 struct buffer *old = current_buffer;
3320 Fprinc (object, Qnil);
3321 set_buffer_internal (XBUFFER (Vstandard_output));
3322 call0 (intern ("help-mode"));
3323 set_buffer_internal (old);
3324 return Qnil;
3325 }
3326
3327 /* Copy out or in the info on where C-g should throw to.
3328 This is used when running Lisp code from within get_char,
3329 in case get_char is called recursively.
3330 See read_process_output. */
3331
3332 static void
3333 save_getcjmp (jmp_buf temp)
3334 {
3335 memcpy (temp, getcjmp, sizeof getcjmp);
3336 }
3337
3338 static void
3339 restore_getcjmp (jmp_buf temp)
3340 {
3341 memcpy (getcjmp, temp, sizeof getcjmp);
3342 }
3343 \f
3344 /* Low level keyboard/mouse input.
3345 kbd_buffer_store_event places events in kbd_buffer, and
3346 kbd_buffer_get_event retrieves them. */
3347
3348 /* Return true if there are any events in the queue that read-char
3349 would return. If this returns false, a read-char would block. */
3350 static int
3351 readable_events (int flags)
3352 {
3353 if (flags & READABLE_EVENTS_DO_TIMERS_NOW)
3354 timer_check ();
3355
3356 /* If the buffer contains only FOCUS_IN_EVENT events, and
3357 READABLE_EVENTS_FILTER_EVENTS is set, report it as empty. */
3358 if (kbd_fetch_ptr != kbd_store_ptr)
3359 {
3360 if (flags & (READABLE_EVENTS_FILTER_EVENTS
3361 #ifdef USE_TOOLKIT_SCROLL_BARS
3362 | READABLE_EVENTS_IGNORE_SQUEEZABLES
3363 #endif
3364 ))
3365 {
3366 struct input_event *event;
3367
3368 event = ((kbd_fetch_ptr < kbd_buffer + KBD_BUFFER_SIZE)
3369 ? kbd_fetch_ptr
3370 : kbd_buffer);
3371
3372 do
3373 {
3374 if (!(
3375 #ifdef USE_TOOLKIT_SCROLL_BARS
3376 (flags & READABLE_EVENTS_FILTER_EVENTS) &&
3377 #endif
3378 event->kind == FOCUS_IN_EVENT)
3379 #ifdef USE_TOOLKIT_SCROLL_BARS
3380 && !((flags & READABLE_EVENTS_IGNORE_SQUEEZABLES)
3381 && event->kind == SCROLL_BAR_CLICK_EVENT
3382 && event->part == scroll_bar_handle
3383 && event->modifiers == 0)
3384 #endif
3385 )
3386 return 1;
3387 event++;
3388 if (event == kbd_buffer + KBD_BUFFER_SIZE)
3389 event = kbd_buffer;
3390 }
3391 while (event != kbd_store_ptr);
3392 }
3393 else
3394 return 1;
3395 }
3396
3397 #if defined (HAVE_MOUSE) || defined (HAVE_GPM)
3398 if (!(flags & READABLE_EVENTS_IGNORE_SQUEEZABLES)
3399 && !NILP (do_mouse_tracking) && some_mouse_moved ())
3400 return 1;
3401 #endif
3402 if (single_kboard)
3403 {
3404 if (current_kboard->kbd_queue_has_data)
3405 return 1;
3406 }
3407 else
3408 {
3409 KBOARD *kb;
3410 for (kb = all_kboards; kb; kb = kb->next_kboard)
3411 if (kb->kbd_queue_has_data)
3412 return 1;
3413 }
3414 return 0;
3415 }
3416
3417 /* Set this for debugging, to have a way to get out */
3418 int stop_character;
3419
3420 static KBOARD *
3421 event_to_kboard (struct input_event *event)
3422 {
3423 Lisp_Object frame;
3424 frame = event->frame_or_window;
3425 if (CONSP (frame))
3426 frame = XCAR (frame);
3427 else if (WINDOWP (frame))
3428 frame = WINDOW_FRAME (XWINDOW (frame));
3429
3430 /* There are still some events that don't set this field.
3431 For now, just ignore the problem.
3432 Also ignore dead frames here. */
3433 if (!FRAMEP (frame) || !FRAME_LIVE_P (XFRAME (frame)))
3434 return 0;
3435 else
3436 return FRAME_KBOARD (XFRAME (frame));
3437 }
3438
3439 #ifdef subprocesses
3440 /* Return the number of slots occupied in kbd_buffer. */
3441
3442 static int
3443 kbd_buffer_nr_stored (void)
3444 {
3445 return kbd_fetch_ptr == kbd_store_ptr
3446 ? 0
3447 : (kbd_fetch_ptr < kbd_store_ptr
3448 ? kbd_store_ptr - kbd_fetch_ptr
3449 : ((kbd_buffer + KBD_BUFFER_SIZE) - kbd_fetch_ptr
3450 + (kbd_store_ptr - kbd_buffer)));
3451 }
3452 #endif /* Store an event obtained at interrupt level into kbd_buffer, fifo */
3453
3454 void
3455 kbd_buffer_store_event (register struct input_event *event)
3456 {
3457 kbd_buffer_store_event_hold (event, 0);
3458 }
3459
3460 /* Store EVENT obtained at interrupt level into kbd_buffer, fifo.
3461
3462 If HOLD_QUIT is 0, just stuff EVENT into the fifo.
3463 Else, if HOLD_QUIT.kind != NO_EVENT, discard EVENT.
3464 Else, if EVENT is a quit event, store the quit event
3465 in HOLD_QUIT, and return (thus ignoring further events).
3466
3467 This is used in read_avail_input to postpone the processing
3468 of the quit event until all subsequent input events have been
3469 parsed (and discarded).
3470 */
3471
3472 void
3473 kbd_buffer_store_event_hold (register struct input_event *event,
3474 struct input_event *hold_quit)
3475 {
3476 if (event->kind == NO_EVENT)
3477 abort ();
3478
3479 if (hold_quit && hold_quit->kind != NO_EVENT)
3480 return;
3481
3482 if (event->kind == ASCII_KEYSTROKE_EVENT)
3483 {
3484 register int c = event->code & 0377;
3485
3486 if (event->modifiers & ctrl_modifier)
3487 c = make_ctrl_char (c);
3488
3489 c |= (event->modifiers
3490 & (meta_modifier | alt_modifier
3491 | hyper_modifier | super_modifier));
3492
3493 if (c == quit_char)
3494 {
3495 KBOARD *kb = FRAME_KBOARD (XFRAME (event->frame_or_window));
3496 struct input_event *sp;
3497
3498 if (single_kboard && kb != current_kboard)
3499 {
3500 KVAR (kb, kbd_queue)
3501 = Fcons (make_lispy_switch_frame (event->frame_or_window),
3502 Fcons (make_number (c), Qnil));
3503 kb->kbd_queue_has_data = 1;
3504 for (sp = kbd_fetch_ptr; sp != kbd_store_ptr; sp++)
3505 {
3506 if (sp == kbd_buffer + KBD_BUFFER_SIZE)
3507 sp = kbd_buffer;
3508
3509 if (event_to_kboard (sp) == kb)
3510 {
3511 sp->kind = NO_EVENT;
3512 sp->frame_or_window = Qnil;
3513 sp->arg = Qnil;
3514 }
3515 }
3516 return;
3517 }
3518
3519 if (hold_quit)
3520 {
3521 memcpy (hold_quit, event, sizeof (*event));
3522 return;
3523 }
3524
3525 /* If this results in a quit_char being returned to Emacs as
3526 input, set Vlast_event_frame properly. If this doesn't
3527 get returned to Emacs as an event, the next event read
3528 will set Vlast_event_frame again, so this is safe to do. */
3529 {
3530 Lisp_Object focus;
3531
3532 focus = FRAME_FOCUS_FRAME (XFRAME (event->frame_or_window));
3533 if (NILP (focus))
3534 focus = event->frame_or_window;
3535 internal_last_event_frame = focus;
3536 Vlast_event_frame = focus;
3537 }
3538
3539 last_event_timestamp = event->timestamp;
3540 handle_interrupt ();
3541 return;
3542 }
3543
3544 if (c && c == stop_character)
3545 {
3546 sys_suspend ();
3547 return;
3548 }
3549 }
3550 /* Don't insert two BUFFER_SWITCH_EVENT's in a row.
3551 Just ignore the second one. */
3552 else if (event->kind == BUFFER_SWITCH_EVENT
3553 && kbd_fetch_ptr != kbd_store_ptr
3554 && ((kbd_store_ptr == kbd_buffer
3555 ? kbd_buffer + KBD_BUFFER_SIZE - 1
3556 : kbd_store_ptr - 1)->kind) == BUFFER_SWITCH_EVENT)
3557 return;
3558
3559 if (kbd_store_ptr - kbd_buffer == KBD_BUFFER_SIZE)
3560 kbd_store_ptr = kbd_buffer;
3561
3562 /* Don't let the very last slot in the buffer become full,
3563 since that would make the two pointers equal,
3564 and that is indistinguishable from an empty buffer.
3565 Discard the event if it would fill the last slot. */
3566 if (kbd_fetch_ptr - 1 != kbd_store_ptr)
3567 {
3568 *kbd_store_ptr = *event;
3569 ++kbd_store_ptr;
3570 #ifdef subprocesses
3571 if (kbd_buffer_nr_stored () > KBD_BUFFER_SIZE/2 && ! kbd_on_hold_p ())
3572 {
3573 /* Don't read keyboard input until we have processed kbd_buffer.
3574 This happens when pasting text longer than KBD_BUFFER_SIZE/2. */
3575 hold_keyboard_input ();
3576 #ifdef SIGIO
3577 if (!noninteractive)
3578 signal (SIGIO, SIG_IGN);
3579 #endif
3580 stop_polling ();
3581 }
3582 #endif /* subprocesses */
3583 }
3584
3585 /* If we're inside while-no-input, and this event qualifies
3586 as input, set quit-flag to cause an interrupt. */
3587 if (!NILP (Vthrow_on_input)
3588 && event->kind != FOCUS_IN_EVENT
3589 && event->kind != HELP_EVENT
3590 && event->kind != DEICONIFY_EVENT)
3591 {
3592 Vquit_flag = Vthrow_on_input;
3593 /* If we're inside a function that wants immediate quits,
3594 do it now. */
3595 if (immediate_quit && NILP (Vinhibit_quit))
3596 {
3597 immediate_quit = 0;
3598 sigfree ();
3599 QUIT;
3600 }
3601 }
3602 }
3603
3604
3605 /* Put an input event back in the head of the event queue. */
3606
3607 void
3608 kbd_buffer_unget_event (register struct input_event *event)
3609 {
3610 if (kbd_fetch_ptr == kbd_buffer)
3611 kbd_fetch_ptr = kbd_buffer + KBD_BUFFER_SIZE;
3612
3613 /* Don't let the very last slot in the buffer become full, */
3614 if (kbd_fetch_ptr - 1 != kbd_store_ptr)
3615 {
3616 --kbd_fetch_ptr;
3617 *kbd_fetch_ptr = *event;
3618 }
3619 }
3620
3621
3622 /* Generate a HELP_EVENT input_event and store it in the keyboard
3623 buffer.
3624
3625 HELP is the help form.
3626
3627 FRAME and WINDOW are the frame and window where the help is
3628 generated. OBJECT is the Lisp object where the help was found (a
3629 buffer, a string, an overlay, or nil if neither from a string nor
3630 from a buffer). POS is the position within OBJECT where the help
3631 was found. */
3632
3633 void
3634 gen_help_event (Lisp_Object help, Lisp_Object frame, Lisp_Object window,
3635 Lisp_Object object, EMACS_INT pos)
3636 {
3637 struct input_event event;
3638
3639 EVENT_INIT (event);
3640
3641 event.kind = HELP_EVENT;
3642 event.frame_or_window = frame;
3643 event.arg = object;
3644 event.x = WINDOWP (window) ? window : frame;
3645 event.y = help;
3646 event.code = pos;
3647 kbd_buffer_store_event (&event);
3648 }
3649
3650
3651 /* Store HELP_EVENTs for HELP on FRAME in the input queue. */
3652
3653 void
3654 kbd_buffer_store_help_event (Lisp_Object frame, Lisp_Object help)
3655 {
3656 struct input_event event;
3657
3658 event.kind = HELP_EVENT;
3659 event.frame_or_window = frame;
3660 event.arg = Qnil;
3661 event.x = Qnil;
3662 event.y = help;
3663 event.code = 0;
3664 kbd_buffer_store_event (&event);
3665 }
3666
3667 \f
3668 /* Discard any mouse events in the event buffer by setting them to
3669 NO_EVENT. */
3670 void
3671 discard_mouse_events (void)
3672 {
3673 struct input_event *sp;
3674 for (sp = kbd_fetch_ptr; sp != kbd_store_ptr; sp++)
3675 {
3676 if (sp == kbd_buffer + KBD_BUFFER_SIZE)
3677 sp = kbd_buffer;
3678
3679 if (sp->kind == MOUSE_CLICK_EVENT
3680 || sp->kind == WHEEL_EVENT
3681 || sp->kind == HORIZ_WHEEL_EVENT
3682 #ifdef HAVE_GPM
3683 || sp->kind == GPM_CLICK_EVENT
3684 #endif
3685 || sp->kind == SCROLL_BAR_CLICK_EVENT)
3686 {
3687 sp->kind = NO_EVENT;
3688 }
3689 }
3690 }
3691
3692
3693 /* Return non-zero if there are any real events waiting in the event
3694 buffer, not counting `NO_EVENT's.
3695
3696 If DISCARD is non-zero, discard NO_EVENT events at the front of
3697 the input queue, possibly leaving the input queue empty if there
3698 are no real input events. */
3699
3700 int
3701 kbd_buffer_events_waiting (int discard)
3702 {
3703 struct input_event *sp;
3704
3705 for (sp = kbd_fetch_ptr;
3706 sp != kbd_store_ptr && sp->kind == NO_EVENT;
3707 ++sp)
3708 {
3709 if (sp == kbd_buffer + KBD_BUFFER_SIZE)
3710 sp = kbd_buffer;
3711 }
3712
3713 if (discard)
3714 kbd_fetch_ptr = sp;
3715
3716 return sp != kbd_store_ptr && sp->kind != NO_EVENT;
3717 }
3718
3719 \f
3720 /* Clear input event EVENT. */
3721
3722 static INLINE void
3723 clear_event (struct input_event *event)
3724 {
3725 event->kind = NO_EVENT;
3726 }
3727
3728
3729 /* Read one event from the event buffer, waiting if necessary.
3730 The value is a Lisp object representing the event.
3731 The value is nil for an event that should be ignored,
3732 or that was handled here.
3733 We always read and discard one event. */
3734
3735 static Lisp_Object
3736 kbd_buffer_get_event (KBOARD **kbp,
3737 int *used_mouse_menu,
3738 struct timeval *end_time)
3739 {
3740 register int c;
3741 Lisp_Object obj;
3742
3743 #ifdef subprocesses
3744 if (kbd_on_hold_p () && kbd_buffer_nr_stored () < KBD_BUFFER_SIZE/4)
3745 {
3746 /* Start reading input again, we have processed enough so we can
3747 accept new events again. */
3748 unhold_keyboard_input ();
3749 #ifdef SIGIO
3750 if (!noninteractive)
3751 signal (SIGIO, input_available_signal);
3752 #endif /* SIGIO */
3753 start_polling ();
3754 }
3755 #endif /* subprocesses */
3756
3757 if (noninteractive
3758 /* In case we are running as a daemon, only do this before
3759 detaching from the terminal. */
3760 || (IS_DAEMON && daemon_pipe[1] >= 0))
3761 {
3762 c = getchar ();
3763 XSETINT (obj, c);
3764 *kbp = current_kboard;
3765 return obj;
3766 }
3767
3768 /* Wait until there is input available. */
3769 for (;;)
3770 {
3771 /* Break loop if there's an unread command event. Needed in
3772 moused window autoselection which uses a timer to insert such
3773 events. */
3774 if (CONSP (Vunread_command_events))
3775 break;
3776
3777 if (kbd_fetch_ptr != kbd_store_ptr)
3778 break;
3779 #if defined (HAVE_MOUSE) || defined (HAVE_GPM)
3780 if (!NILP (do_mouse_tracking) && some_mouse_moved ())
3781 break;
3782 #endif
3783
3784 /* If the quit flag is set, then read_char will return
3785 quit_char, so that counts as "available input." */
3786 if (!NILP (Vquit_flag))
3787 quit_throw_to_read_char ();
3788
3789 /* One way or another, wait until input is available; then, if
3790 interrupt handlers have not read it, read it now. */
3791
3792 /* Note SIGIO has been undef'd if FIONREAD is missing. */
3793 #ifdef SIGIO
3794 gobble_input (0);
3795 #endif /* SIGIO */
3796 if (kbd_fetch_ptr != kbd_store_ptr)
3797 break;
3798 #if defined (HAVE_MOUSE) || defined (HAVE_GPM)
3799 if (!NILP (do_mouse_tracking) && some_mouse_moved ())
3800 break;
3801 #endif
3802 if (end_time)
3803 {
3804 EMACS_TIME duration;
3805 EMACS_GET_TIME (duration);
3806 if (EMACS_TIME_GE (duration, *end_time))
3807 return Qnil; /* finished waiting */
3808 else
3809 {
3810 EMACS_SUB_TIME (duration, *end_time, duration);
3811 wait_reading_process_output (EMACS_SECS (duration),
3812 EMACS_USECS (duration),
3813 -1, 1, Qnil, NULL, 0);
3814 }
3815 }
3816 else
3817 wait_reading_process_output (0, 0, -1, 1, Qnil, NULL, 0);
3818
3819 if (!interrupt_input && kbd_fetch_ptr == kbd_store_ptr)
3820 /* Pass 1 for EXPECT since we just waited to have input. */
3821 read_avail_input (1);
3822 }
3823
3824 if (CONSP (Vunread_command_events))
3825 {
3826 Lisp_Object first;
3827 first = XCAR (Vunread_command_events);
3828 Vunread_command_events = XCDR (Vunread_command_events);
3829 *kbp = current_kboard;
3830 return first;
3831 }
3832
3833 /* At this point, we know that there is a readable event available
3834 somewhere. If the event queue is empty, then there must be a
3835 mouse movement enabled and available. */
3836 if (kbd_fetch_ptr != kbd_store_ptr)
3837 {
3838 struct input_event *event;
3839
3840 event = ((kbd_fetch_ptr < kbd_buffer + KBD_BUFFER_SIZE)
3841 ? kbd_fetch_ptr
3842 : kbd_buffer);
3843
3844 last_event_timestamp = event->timestamp;
3845
3846 *kbp = event_to_kboard (event);
3847 if (*kbp == 0)
3848 *kbp = current_kboard; /* Better than returning null ptr? */
3849
3850 obj = Qnil;
3851
3852 /* These two kinds of events get special handling
3853 and don't actually appear to the command loop.
3854 We return nil for them. */
3855 if (event->kind == SELECTION_REQUEST_EVENT
3856 || event->kind == SELECTION_CLEAR_EVENT)
3857 {
3858 #ifdef HAVE_X11
3859 struct input_event copy;
3860
3861 /* Remove it from the buffer before processing it,
3862 since otherwise swallow_events will see it
3863 and process it again. */
3864 copy = *event;
3865 kbd_fetch_ptr = event + 1;
3866 input_pending = readable_events (0);
3867 x_handle_selection_event (&copy);
3868 #else
3869 /* We're getting selection request events, but we don't have
3870 a window system. */
3871 abort ();
3872 #endif
3873 }
3874
3875 #if defined (HAVE_NS)
3876 else if (event->kind == NS_TEXT_EVENT)
3877 {
3878 if (event->code == KEY_NS_PUT_WORKING_TEXT)
3879 obj = Fcons (intern ("ns-put-working-text"), Qnil);
3880 else
3881 obj = Fcons (intern ("ns-unput-working-text"), Qnil);
3882 kbd_fetch_ptr = event + 1;
3883 if (used_mouse_menu)
3884 *used_mouse_menu = 1;
3885 }
3886 #endif
3887
3888 #if defined (HAVE_X11) || defined (HAVE_NTGUI) \
3889 || defined (HAVE_NS)
3890 else if (event->kind == DELETE_WINDOW_EVENT)
3891 {
3892 /* Make an event (delete-frame (FRAME)). */
3893 obj = Fcons (event->frame_or_window, Qnil);
3894 obj = Fcons (Qdelete_frame, Fcons (obj, Qnil));
3895 kbd_fetch_ptr = event + 1;
3896 }
3897 #endif
3898 #if defined (HAVE_X11) || defined (HAVE_NTGUI) \
3899 || defined (HAVE_NS)
3900 else if (event->kind == ICONIFY_EVENT)
3901 {
3902 /* Make an event (iconify-frame (FRAME)). */
3903 obj = Fcons (event->frame_or_window, Qnil);
3904 obj = Fcons (Qiconify_frame, Fcons (obj, Qnil));
3905 kbd_fetch_ptr = event + 1;
3906 }
3907 else if (event->kind == DEICONIFY_EVENT)
3908 {
3909 /* Make an event (make-frame-visible (FRAME)). */
3910 obj = Fcons (event->frame_or_window, Qnil);
3911 obj = Fcons (Qmake_frame_visible, Fcons (obj, Qnil));
3912 kbd_fetch_ptr = event + 1;
3913 }
3914 #endif
3915 else if (event->kind == BUFFER_SWITCH_EVENT)
3916 {
3917 /* The value doesn't matter here; only the type is tested. */
3918 XSETBUFFER (obj, current_buffer);
3919 kbd_fetch_ptr = event + 1;
3920 }
3921 #if defined (USE_X_TOOLKIT) || defined (HAVE_NTGUI) \
3922 || defined(HAVE_NS) || defined (USE_GTK)
3923 else if (event->kind == MENU_BAR_ACTIVATE_EVENT)
3924 {
3925 kbd_fetch_ptr = event + 1;
3926 input_pending = readable_events (0);
3927 if (FRAME_LIVE_P (XFRAME (event->frame_or_window)))
3928 x_activate_menubar (XFRAME (event->frame_or_window));
3929 }
3930 #endif
3931 #if defined (WINDOWSNT)
3932 else if (event->kind == LANGUAGE_CHANGE_EVENT)
3933 {
3934 /* Make an event (language-change (FRAME CHARSET LCID)). */
3935 obj = Fcons (event->frame_or_window, Qnil);
3936 obj = Fcons (Qlanguage_change, Fcons (obj, Qnil));
3937 kbd_fetch_ptr = event + 1;
3938 }
3939 #endif
3940 else if (event->kind == SAVE_SESSION_EVENT)
3941 {
3942 obj = Fcons (Qsave_session, Fcons (event->arg, Qnil));
3943 kbd_fetch_ptr = event + 1;
3944 }
3945 /* Just discard these, by returning nil.
3946 With MULTI_KBOARD, these events are used as placeholders
3947 when we need to randomly delete events from the queue.
3948 (They shouldn't otherwise be found in the buffer,
3949 but on some machines it appears they do show up
3950 even without MULTI_KBOARD.) */
3951 /* On Windows NT/9X, NO_EVENT is used to delete extraneous
3952 mouse events during a popup-menu call. */
3953 else if (event->kind == NO_EVENT)
3954 kbd_fetch_ptr = event + 1;
3955 else if (event->kind == HELP_EVENT)
3956 {
3957 Lisp_Object object, position, help, frame, window;
3958
3959 frame = event->frame_or_window;
3960 object = event->arg;
3961 position = make_number (event->code);
3962 window = event->x;
3963 help = event->y;
3964 clear_event (event);
3965
3966 kbd_fetch_ptr = event + 1;
3967 if (!WINDOWP (window))
3968 window = Qnil;
3969 obj = Fcons (Qhelp_echo,
3970 list5 (frame, help, window, object, position));
3971 }
3972 else if (event->kind == FOCUS_IN_EVENT)
3973 {
3974 /* Notification of a FocusIn event. The frame receiving the
3975 focus is in event->frame_or_window. Generate a
3976 switch-frame event if necessary. */
3977 Lisp_Object frame, focus;
3978
3979 frame = event->frame_or_window;
3980 focus = FRAME_FOCUS_FRAME (XFRAME (frame));
3981 if (FRAMEP (focus))
3982 frame = focus;
3983
3984 if (!EQ (frame, internal_last_event_frame)
3985 && !EQ (frame, selected_frame))
3986 obj = make_lispy_switch_frame (frame);
3987 internal_last_event_frame = frame;
3988 kbd_fetch_ptr = event + 1;
3989 }
3990 #ifdef HAVE_DBUS
3991 else if (event->kind == DBUS_EVENT)
3992 {
3993 obj = make_lispy_event (event);
3994 kbd_fetch_ptr = event + 1;
3995 }
3996 #endif
3997 else if (event->kind == CONFIG_CHANGED_EVENT)
3998 {
3999 obj = make_lispy_event (event);
4000 kbd_fetch_ptr = event + 1;
4001 }
4002 else
4003 {
4004 /* If this event is on a different frame, return a switch-frame this
4005 time, and leave the event in the queue for next time. */
4006 Lisp_Object frame;
4007 Lisp_Object focus;
4008
4009 frame = event->frame_or_window;
4010 if (CONSP (frame))
4011 frame = XCAR (frame);
4012 else if (WINDOWP (frame))
4013 frame = WINDOW_FRAME (XWINDOW (frame));
4014
4015 focus = FRAME_FOCUS_FRAME (XFRAME (frame));
4016 if (! NILP (focus))
4017 frame = focus;
4018
4019 if (! EQ (frame, internal_last_event_frame)
4020 && !EQ (frame, selected_frame))
4021 obj = make_lispy_switch_frame (frame);
4022 internal_last_event_frame = frame;
4023
4024 /* If we didn't decide to make a switch-frame event, go ahead
4025 and build a real event from the queue entry. */
4026
4027 if (NILP (obj))
4028 {
4029 obj = make_lispy_event (event);
4030
4031 #if defined (USE_X_TOOLKIT) || defined (HAVE_NTGUI) \
4032 || defined(HAVE_NS) || defined (USE_GTK)
4033 /* If this was a menu selection, then set the flag to inhibit
4034 writing to last_nonmenu_event. Don't do this if the event
4035 we're returning is (menu-bar), though; that indicates the
4036 beginning of the menu sequence, and we might as well leave
4037 that as the `event with parameters' for this selection. */
4038 if (used_mouse_menu
4039 && !EQ (event->frame_or_window, event->arg)
4040 && (event->kind == MENU_BAR_EVENT
4041 || event->kind == TOOL_BAR_EVENT))
4042 *used_mouse_menu = 1;
4043 #endif
4044 #ifdef HAVE_NS
4045 /* certain system events are non-key events */
4046 if (used_mouse_menu
4047 && event->kind == NS_NONKEY_EVENT)
4048 *used_mouse_menu = 1;
4049 #endif
4050
4051 /* Wipe out this event, to catch bugs. */
4052 clear_event (event);
4053 kbd_fetch_ptr = event + 1;
4054 }
4055 }
4056 }
4057 #if defined (HAVE_MOUSE) || defined (HAVE_GPM)
4058 /* Try generating a mouse motion event. */
4059 else if (!NILP (do_mouse_tracking) && some_mouse_moved ())
4060 {
4061 FRAME_PTR f = some_mouse_moved ();
4062 Lisp_Object bar_window;
4063 enum scroll_bar_part part;
4064 Lisp_Object x, y;
4065 unsigned long t;
4066
4067 *kbp = current_kboard;
4068 /* Note that this uses F to determine which terminal to look at.
4069 If there is no valid info, it does not store anything
4070 so x remains nil. */
4071 x = Qnil;
4072
4073 /* XXX Can f or mouse_position_hook be NULL here? */
4074 if (f && FRAME_TERMINAL (f)->mouse_position_hook)
4075 (*FRAME_TERMINAL (f)->mouse_position_hook) (&f, 0, &bar_window,
4076 &part, &x, &y, &t);
4077
4078 obj = Qnil;
4079
4080 /* Decide if we should generate a switch-frame event. Don't
4081 generate switch-frame events for motion outside of all Emacs
4082 frames. */
4083 if (!NILP (x) && f)
4084 {
4085 Lisp_Object frame;
4086
4087 frame = FRAME_FOCUS_FRAME (f);
4088 if (NILP (frame))
4089 XSETFRAME (frame, f);
4090
4091 if (! EQ (frame, internal_last_event_frame)
4092 && !EQ (frame, selected_frame))
4093 obj = make_lispy_switch_frame (frame);
4094 internal_last_event_frame = frame;
4095 }
4096
4097 /* If we didn't decide to make a switch-frame event, go ahead and
4098 return a mouse-motion event. */
4099 if (!NILP (x) && NILP (obj))
4100 obj = make_lispy_movement (f, bar_window, part, x, y, t);
4101 }
4102 #endif /* HAVE_MOUSE || HAVE GPM */
4103 else
4104 /* We were promised by the above while loop that there was
4105 something for us to read! */
4106 abort ();
4107
4108 input_pending = readable_events (0);
4109
4110 Vlast_event_frame = internal_last_event_frame;
4111
4112 return (obj);
4113 }
4114 \f
4115 /* Process any events that are not user-visible,
4116 then return, without reading any user-visible events. */
4117
4118 void
4119 swallow_events (int do_display)
4120 {
4121 int old_timers_run;
4122
4123 while (kbd_fetch_ptr != kbd_store_ptr)
4124 {
4125 struct input_event *event;
4126
4127 event = ((kbd_fetch_ptr < kbd_buffer + KBD_BUFFER_SIZE)
4128 ? kbd_fetch_ptr
4129 : kbd_buffer);
4130
4131 last_event_timestamp = event->timestamp;
4132
4133 /* These two kinds of events get special handling
4134 and don't actually appear to the command loop. */
4135 if (event->kind == SELECTION_REQUEST_EVENT
4136 || event->kind == SELECTION_CLEAR_EVENT)
4137 {
4138 #ifdef HAVE_X11
4139 struct input_event copy;
4140
4141 /* Remove it from the buffer before processing it,
4142 since otherwise swallow_events called recursively could see it
4143 and process it again. */
4144 copy = *event;
4145 kbd_fetch_ptr = event + 1;
4146 input_pending = readable_events (0);
4147 x_handle_selection_event (&copy);
4148 #else
4149 /* We're getting selection request events, but we don't have
4150 a window system. */
4151 abort ();
4152 #endif
4153 }
4154 else
4155 break;
4156 }
4157
4158 old_timers_run = timers_run;
4159 get_input_pending (&input_pending, READABLE_EVENTS_DO_TIMERS_NOW);
4160
4161 if (timers_run != old_timers_run && do_display)
4162 redisplay_preserve_echo_area (7);
4163 }
4164 \f
4165 /* Record the start of when Emacs is idle,
4166 for the sake of running idle-time timers. */
4167
4168 static void
4169 timer_start_idle (void)
4170 {
4171 Lisp_Object timers;
4172
4173 /* If we are already in the idle state, do nothing. */
4174 if (! EMACS_TIME_NEG_P (timer_idleness_start_time))
4175 return;
4176
4177 EMACS_GET_TIME (timer_idleness_start_time);
4178
4179 timer_last_idleness_start_time = timer_idleness_start_time;
4180
4181 /* Mark all idle-time timers as once again candidates for running. */
4182 for (timers = Vtimer_idle_list; CONSP (timers); timers = XCDR (timers))
4183 {
4184 Lisp_Object timer;
4185
4186 timer = XCAR (timers);
4187
4188 if (!VECTORP (timer) || XVECTOR (timer)->size != 8)
4189 continue;
4190 XVECTOR (timer)->contents[0] = Qnil;
4191 }
4192 }
4193
4194 /* Record that Emacs is no longer idle, so stop running idle-time timers. */
4195
4196 static void
4197 timer_stop_idle (void)
4198 {
4199 EMACS_SET_SECS_USECS (timer_idleness_start_time, -1, -1);
4200 }
4201
4202 /* Resume idle timer from last idle start time. */
4203
4204 static void
4205 timer_resume_idle (void)
4206 {
4207 if (! EMACS_TIME_NEG_P (timer_idleness_start_time))
4208 return;
4209
4210 timer_idleness_start_time = timer_last_idleness_start_time;
4211 }
4212
4213 /* This is only for debugging. */
4214 struct input_event last_timer_event;
4215
4216 /* List of elisp functions to call, delayed because they were generated in
4217 a context where Elisp could not be safely run (e.g. redisplay, signal,
4218 ...). Each element has the form (FUN . ARGS). */
4219 Lisp_Object pending_funcalls;
4220
4221 /* Check whether a timer has fired. To prevent larger problems we simply
4222 disregard elements that are not proper timers. Do not make a circular
4223 timer list for the time being.
4224
4225 Returns the time to wait until the next timer fires. If a
4226 timer is triggering now, return zero.
4227 If no timer is active, return -1.
4228
4229 If a timer is ripe, we run it, with quitting turned off.
4230 In that case we return 0 to indicate that a new timer_check_2 call
4231 should be done. */
4232
4233 static EMACS_TIME
4234 timer_check_2 (void)
4235 {
4236 EMACS_TIME nexttime;
4237 EMACS_TIME now;
4238 EMACS_TIME idleness_now IF_LINT (= {0});
4239 Lisp_Object timers, idle_timers, chosen_timer;
4240 struct gcpro gcpro1, gcpro2, gcpro3;
4241
4242 EMACS_SET_SECS (nexttime, -1);
4243 EMACS_SET_USECS (nexttime, -1);
4244
4245 /* Always consider the ordinary timers. */
4246 timers = Vtimer_list;
4247 /* Consider the idle timers only if Emacs is idle. */
4248 if (! EMACS_TIME_NEG_P (timer_idleness_start_time))
4249 idle_timers = Vtimer_idle_list;
4250 else
4251 idle_timers = Qnil;
4252 chosen_timer = Qnil;
4253 GCPRO3 (timers, idle_timers, chosen_timer);
4254
4255 /* First run the code that was delayed. */
4256 while (CONSP (pending_funcalls))
4257 {
4258 Lisp_Object funcall = XCAR (pending_funcalls);
4259 pending_funcalls = XCDR (pending_funcalls);
4260 safe_call2 (Qapply, XCAR (funcall), XCDR (funcall));
4261 }
4262
4263 if (CONSP (timers) || CONSP (idle_timers))
4264 {
4265 EMACS_GET_TIME (now);
4266 if (! EMACS_TIME_NEG_P (timer_idleness_start_time))
4267 EMACS_SUB_TIME (idleness_now, now, timer_idleness_start_time);
4268 }
4269
4270 while (CONSP (timers) || CONSP (idle_timers))
4271 {
4272 Lisp_Object *vector;
4273 Lisp_Object timer = Qnil, idle_timer = Qnil;
4274 EMACS_TIME timer_time, idle_timer_time;
4275 EMACS_TIME difference;
4276 EMACS_TIME timer_difference IF_LINT (= {0});
4277 EMACS_TIME idle_timer_difference IF_LINT (= {0});
4278
4279 /* Skip past invalid timers and timers already handled. */
4280 if (CONSP (timers))
4281 {
4282 timer = XCAR (timers);
4283 if (!VECTORP (timer) || XVECTOR (timer)->size != 8)
4284 {
4285 timers = XCDR (timers);
4286 continue;
4287 }
4288 vector = XVECTOR (timer)->contents;
4289
4290 if (!INTEGERP (vector[1]) || !INTEGERP (vector[2])
4291 || !INTEGERP (vector[3])
4292 || ! NILP (vector[0]))
4293 {
4294 timers = XCDR (timers);
4295 continue;
4296 }
4297 }
4298 if (CONSP (idle_timers))
4299 {
4300 timer = XCAR (idle_timers);
4301 if (!VECTORP (timer) || XVECTOR (timer)->size != 8)
4302 {
4303 idle_timers = XCDR (idle_timers);
4304 continue;
4305 }
4306 vector = XVECTOR (timer)->contents;
4307
4308 if (!INTEGERP (vector[1]) || !INTEGERP (vector[2])
4309 || !INTEGERP (vector[3])
4310 || ! NILP (vector[0]))
4311 {
4312 idle_timers = XCDR (idle_timers);
4313 continue;
4314 }
4315 }
4316
4317 /* Set TIMER, TIMER_TIME and TIMER_DIFFERENCE
4318 based on the next ordinary timer.
4319 TIMER_DIFFERENCE is the distance in time from NOW to when
4320 this timer becomes ripe (negative if it's already ripe). */
4321 if (CONSP (timers))
4322 {
4323 timer = XCAR (timers);
4324 vector = XVECTOR (timer)->contents;
4325 EMACS_SET_SECS (timer_time,
4326 (XINT (vector[1]) << 16) | (XINT (vector[2])));
4327 EMACS_SET_USECS (timer_time, XINT (vector[3]));
4328 EMACS_SUB_TIME (timer_difference, timer_time, now);
4329 }
4330
4331 /* Set IDLE_TIMER, IDLE_TIMER_TIME and IDLE_TIMER_DIFFERENCE
4332 based on the next idle timer. */
4333 if (CONSP (idle_timers))
4334 {
4335 idle_timer = XCAR (idle_timers);
4336 vector = XVECTOR (idle_timer)->contents;
4337 EMACS_SET_SECS (idle_timer_time,
4338 (XINT (vector[1]) << 16) | (XINT (vector[2])));
4339 EMACS_SET_USECS (idle_timer_time, XINT (vector[3]));
4340 EMACS_SUB_TIME (idle_timer_difference, idle_timer_time, idleness_now);
4341 }
4342
4343 /* Decide which timer is the next timer,
4344 and set CHOSEN_TIMER, VECTOR and DIFFERENCE accordingly.
4345 Also step down the list where we found that timer. */
4346
4347 if (CONSP (timers) && CONSP (idle_timers))
4348 {
4349 EMACS_TIME temp;
4350 EMACS_SUB_TIME (temp, timer_difference, idle_timer_difference);
4351 if (EMACS_TIME_NEG_P (temp))
4352 {
4353 chosen_timer = timer;
4354 timers = XCDR (timers);
4355 difference = timer_difference;
4356 }
4357 else
4358 {
4359 chosen_timer = idle_timer;
4360 idle_timers = XCDR (idle_timers);
4361 difference = idle_timer_difference;
4362 }
4363 }
4364 else if (CONSP (timers))
4365 {
4366 chosen_timer = timer;
4367 timers = XCDR (timers);
4368 difference = timer_difference;
4369 }
4370 else
4371 {
4372 chosen_timer = idle_timer;
4373 idle_timers = XCDR (idle_timers);
4374 difference = idle_timer_difference;
4375 }
4376 vector = XVECTOR (chosen_timer)->contents;
4377
4378 /* If timer is ripe, run it if it hasn't been run. */
4379 if (EMACS_TIME_NEG_P (difference)
4380 || (EMACS_SECS (difference) == 0
4381 && EMACS_USECS (difference) == 0))
4382 {
4383 if (NILP (vector[0]))
4384 {
4385 int count = SPECPDL_INDEX ();
4386 Lisp_Object old_deactivate_mark = Vdeactivate_mark;
4387
4388 /* Mark the timer as triggered to prevent problems if the lisp
4389 code fails to reschedule it right. */
4390 vector[0] = Qt;
4391
4392 specbind (Qinhibit_quit, Qt);
4393
4394 call1 (Qtimer_event_handler, chosen_timer);
4395 Vdeactivate_mark = old_deactivate_mark;
4396 timers_run++;
4397 unbind_to (count, Qnil);
4398
4399 /* Since we have handled the event,
4400 we don't need to tell the caller to wake up and do it. */
4401 /* But the caller must still wait for the next timer, so
4402 return 0 to indicate that. */
4403 }
4404
4405 EMACS_SET_SECS (nexttime, 0);
4406 EMACS_SET_USECS (nexttime, 0);
4407 }
4408 else
4409 /* When we encounter a timer that is still waiting,
4410 return the amount of time to wait before it is ripe. */
4411 {
4412 UNGCPRO;
4413 return difference;
4414 }
4415 }
4416
4417 /* No timers are pending in the future. */
4418 /* Return 0 if we generated an event, and -1 if not. */
4419 UNGCPRO;
4420 return nexttime;
4421 }
4422
4423
4424 /* Check whether a timer has fired. To prevent larger problems we simply
4425 disregard elements that are not proper timers. Do not make a circular
4426 timer list for the time being.
4427
4428 Returns the time to wait until the next timer fires.
4429 If no timer is active, return -1.
4430
4431 As long as any timer is ripe, we run it. */
4432
4433 EMACS_TIME
4434 timer_check (void)
4435 {
4436 EMACS_TIME nexttime;
4437
4438 do
4439 {
4440 nexttime = timer_check_2 ();
4441 }
4442 while (EMACS_SECS (nexttime) == 0 && EMACS_USECS (nexttime) == 0);
4443
4444 return nexttime;
4445 }
4446
4447 DEFUN ("current-idle-time", Fcurrent_idle_time, Scurrent_idle_time, 0, 0, 0,
4448 doc: /* Return the current length of Emacs idleness, or nil.
4449 The value when Emacs is idle is a list of three integers. The first has
4450 the most significant 16 bits of the seconds, while the second has the least
4451 significant 16 bits. The third integer gives the microsecond count.
4452
4453 The value when Emacs is not idle is nil.
4454
4455 The microsecond count is zero on systems that do not provide
4456 resolution finer than a second. */)
4457 (void)
4458 {
4459 if (! EMACS_TIME_NEG_P (timer_idleness_start_time))
4460 {
4461 EMACS_TIME now, idleness_now;
4462
4463 EMACS_GET_TIME (now);
4464 EMACS_SUB_TIME (idleness_now, now, timer_idleness_start_time);
4465
4466 return list3 (make_number ((EMACS_SECS (idleness_now) >> 16) & 0xffff),
4467 make_number ((EMACS_SECS (idleness_now) >> 0) & 0xffff),
4468 make_number (EMACS_USECS (idleness_now)));
4469 }
4470
4471 return Qnil;
4472 }
4473 \f
4474 /* Caches for modify_event_symbol. */
4475 static Lisp_Object accent_key_syms;
4476 static Lisp_Object func_key_syms;
4477 static Lisp_Object mouse_syms;
4478 static Lisp_Object wheel_syms;
4479 static Lisp_Object drag_n_drop_syms;
4480
4481 /* This is a list of keysym codes for special "accent" characters.
4482 It parallels lispy_accent_keys. */
4483
4484 static const int lispy_accent_codes[] =
4485 {
4486 #ifdef XK_dead_circumflex
4487 XK_dead_circumflex,
4488 #else
4489 0,
4490 #endif
4491 #ifdef XK_dead_grave
4492 XK_dead_grave,
4493 #else
4494 0,
4495 #endif
4496 #ifdef XK_dead_tilde
4497 XK_dead_tilde,
4498 #else
4499 0,
4500 #endif
4501 #ifdef XK_dead_diaeresis
4502 XK_dead_diaeresis,
4503 #else
4504 0,
4505 #endif
4506 #ifdef XK_dead_macron
4507 XK_dead_macron,
4508 #else
4509 0,
4510 #endif
4511 #ifdef XK_dead_degree
4512 XK_dead_degree,
4513 #else
4514 0,
4515 #endif
4516 #ifdef XK_dead_acute
4517 XK_dead_acute,
4518 #else
4519 0,
4520 #endif
4521 #ifdef XK_dead_cedilla
4522 XK_dead_cedilla,
4523 #else
4524 0,
4525 #endif
4526 #ifdef XK_dead_breve
4527 XK_dead_breve,
4528 #else
4529 0,
4530 #endif
4531 #ifdef XK_dead_ogonek
4532 XK_dead_ogonek,
4533 #else
4534 0,
4535 #endif
4536 #ifdef XK_dead_caron
4537 XK_dead_caron,
4538 #else
4539 0,
4540 #endif
4541 #ifdef XK_dead_doubleacute
4542 XK_dead_doubleacute,
4543 #else
4544 0,
4545 #endif
4546 #ifdef XK_dead_abovedot
4547 XK_dead_abovedot,
4548 #else
4549 0,
4550 #endif
4551 #ifdef XK_dead_abovering
4552 XK_dead_abovering,
4553 #else
4554 0,
4555 #endif
4556 #ifdef XK_dead_iota
4557 XK_dead_iota,
4558 #else
4559 0,
4560 #endif
4561 #ifdef XK_dead_belowdot
4562 XK_dead_belowdot,
4563 #else
4564 0,
4565 #endif
4566 #ifdef XK_dead_voiced_sound
4567 XK_dead_voiced_sound,
4568 #else
4569 0,
4570 #endif
4571 #ifdef XK_dead_semivoiced_sound
4572 XK_dead_semivoiced_sound,
4573 #else
4574 0,
4575 #endif
4576 #ifdef XK_dead_hook
4577 XK_dead_hook,
4578 #else
4579 0,
4580 #endif
4581 #ifdef XK_dead_horn
4582 XK_dead_horn,
4583 #else
4584 0,
4585 #endif
4586 };
4587
4588 /* This is a list of Lisp names for special "accent" characters.
4589 It parallels lispy_accent_codes. */
4590
4591 static const char *const lispy_accent_keys[] =
4592 {
4593 "dead-circumflex",
4594 "dead-grave",
4595 "dead-tilde",
4596 "dead-diaeresis",
4597 "dead-macron",
4598 "dead-degree",
4599 "dead-acute",
4600 "dead-cedilla",
4601 "dead-breve",
4602 "dead-ogonek",
4603 "dead-caron",
4604 "dead-doubleacute",
4605 "dead-abovedot",
4606 "dead-abovering",
4607 "dead-iota",
4608 "dead-belowdot",
4609 "dead-voiced-sound",
4610 "dead-semivoiced-sound",
4611 "dead-hook",
4612 "dead-horn",
4613 };
4614
4615 #ifdef HAVE_NTGUI
4616 #define FUNCTION_KEY_OFFSET 0x0
4617
4618 const char *const lispy_function_keys[] =
4619 {
4620 0, /* 0 */
4621
4622 0, /* VK_LBUTTON 0x01 */
4623 0, /* VK_RBUTTON 0x02 */
4624 "cancel", /* VK_CANCEL 0x03 */
4625 0, /* VK_MBUTTON 0x04 */
4626
4627 0, 0, 0, /* 0x05 .. 0x07 */
4628
4629 "backspace", /* VK_BACK 0x08 */
4630 "tab", /* VK_TAB 0x09 */
4631
4632 0, 0, /* 0x0A .. 0x0B */
4633
4634 "clear", /* VK_CLEAR 0x0C */
4635 "return", /* VK_RETURN 0x0D */
4636
4637 0, 0, /* 0x0E .. 0x0F */
4638
4639 0, /* VK_SHIFT 0x10 */
4640 0, /* VK_CONTROL 0x11 */
4641 0, /* VK_MENU 0x12 */
4642 "pause", /* VK_PAUSE 0x13 */
4643 "capslock", /* VK_CAPITAL 0x14 */
4644 "kana", /* VK_KANA/VK_HANGUL 0x15 */
4645 0, /* 0x16 */
4646 "junja", /* VK_JUNJA 0x17 */
4647 "final", /* VK_FINAL 0x18 */
4648 "kanji", /* VK_KANJI/VK_HANJA 0x19 */
4649 0, /* 0x1A */
4650 "escape", /* VK_ESCAPE 0x1B */
4651 "convert", /* VK_CONVERT 0x1C */
4652 "non-convert", /* VK_NONCONVERT 0x1D */
4653 "accept", /* VK_ACCEPT 0x1E */
4654 "mode-change", /* VK_MODECHANGE 0x1F */
4655 0, /* VK_SPACE 0x20 */
4656 "prior", /* VK_PRIOR 0x21 */
4657 "next", /* VK_NEXT 0x22 */
4658 "end", /* VK_END 0x23 */
4659 "home", /* VK_HOME 0x24 */
4660 "left", /* VK_LEFT 0x25 */
4661 "up", /* VK_UP 0x26 */
4662 "right", /* VK_RIGHT 0x27 */
4663 "down", /* VK_DOWN 0x28 */
4664 "select", /* VK_SELECT 0x29 */
4665 "print", /* VK_PRINT 0x2A */
4666 "execute", /* VK_EXECUTE 0x2B */
4667 "snapshot", /* VK_SNAPSHOT 0x2C */
4668 "insert", /* VK_INSERT 0x2D */
4669 "delete", /* VK_DELETE 0x2E */
4670 "help", /* VK_HELP 0x2F */
4671
4672 /* VK_0 thru VK_9 are the same as ASCII '0' thru '9' (0x30 - 0x39) */
4673
4674 0, 0, 0, 0, 0, 0, 0, 0, 0, 0,
4675
4676 0, 0, 0, 0, 0, 0, 0, /* 0x3A .. 0x40 */
4677
4678 /* VK_A thru VK_Z are the same as ASCII 'A' thru 'Z' (0x41 - 0x5A) */
4679
4680 0, 0, 0, 0, 0, 0, 0, 0, 0,
4681 0, 0, 0, 0, 0, 0, 0, 0, 0,
4682 0, 0, 0, 0, 0, 0, 0, 0,
4683
4684 "lwindow", /* VK_LWIN 0x5B */
4685 "rwindow", /* VK_RWIN 0x5C */
4686 "apps", /* VK_APPS 0x5D */
4687 0, /* 0x5E */
4688 "sleep",
4689 "kp-0", /* VK_NUMPAD0 0x60 */
4690 "kp-1", /* VK_NUMPAD1 0x61 */
4691 "kp-2", /* VK_NUMPAD2 0x62 */
4692 "kp-3", /* VK_NUMPAD3 0x63 */
4693 "kp-4", /* VK_NUMPAD4 0x64 */
4694 "kp-5", /* VK_NUMPAD5 0x65 */
4695 "kp-6", /* VK_NUMPAD6 0x66 */
4696 "kp-7", /* VK_NUMPAD7 0x67 */
4697 "kp-8", /* VK_NUMPAD8 0x68 */
4698 "kp-9", /* VK_NUMPAD9 0x69 */
4699 "kp-multiply", /* VK_MULTIPLY 0x6A */
4700 "kp-add", /* VK_ADD 0x6B */
4701 "kp-separator", /* VK_SEPARATOR 0x6C */
4702 "kp-subtract", /* VK_SUBTRACT 0x6D */
4703 "kp-decimal", /* VK_DECIMAL 0x6E */
4704 "kp-divide", /* VK_DIVIDE 0x6F */
4705 "f1", /* VK_F1 0x70 */
4706 "f2", /* VK_F2 0x71 */
4707 "f3", /* VK_F3 0x72 */
4708 "f4", /* VK_F4 0x73 */
4709 "f5", /* VK_F5 0x74 */
4710 "f6", /* VK_F6 0x75 */
4711 "f7", /* VK_F7 0x76 */
4712 "f8", /* VK_F8 0x77 */
4713 "f9", /* VK_F9 0x78 */
4714 "f10", /* VK_F10 0x79 */
4715 "f11", /* VK_F11 0x7A */
4716 "f12", /* VK_F12 0x7B */
4717 "f13", /* VK_F13 0x7C */
4718 "f14", /* VK_F14 0x7D */
4719 "f15", /* VK_F15 0x7E */
4720 "f16", /* VK_F16 0x7F */
4721 "f17", /* VK_F17 0x80 */
4722 "f18", /* VK_F18 0x81 */
4723 "f19", /* VK_F19 0x82 */
4724 "f20", /* VK_F20 0x83 */
4725 "f21", /* VK_F21 0x84 */
4726 "f22", /* VK_F22 0x85 */
4727 "f23", /* VK_F23 0x86 */
4728 "f24", /* VK_F24 0x87 */
4729
4730 0, 0, 0, 0, /* 0x88 .. 0x8B */
4731 0, 0, 0, 0, /* 0x8C .. 0x8F */
4732
4733 "kp-numlock", /* VK_NUMLOCK 0x90 */
4734 "scroll", /* VK_SCROLL 0x91 */
4735 /* Not sure where the following block comes from.
4736 Windows headers have NEC and Fujitsu specific keys in
4737 this block, but nothing generic. */
4738 "kp-space", /* VK_NUMPAD_CLEAR 0x92 */
4739 "kp-enter", /* VK_NUMPAD_ENTER 0x93 */
4740 "kp-prior", /* VK_NUMPAD_PRIOR 0x94 */
4741 "kp-next", /* VK_NUMPAD_NEXT 0x95 */
4742 "kp-end", /* VK_NUMPAD_END 0x96 */
4743 "kp-home", /* VK_NUMPAD_HOME 0x97 */
4744 "kp-left", /* VK_NUMPAD_LEFT 0x98 */
4745 "kp-up", /* VK_NUMPAD_UP 0x99 */
4746 "kp-right", /* VK_NUMPAD_RIGHT 0x9A */
4747 "kp-down", /* VK_NUMPAD_DOWN 0x9B */
4748 "kp-insert", /* VK_NUMPAD_INSERT 0x9C */
4749 "kp-delete", /* VK_NUMPAD_DELETE 0x9D */
4750
4751 0, 0, /* 0x9E .. 0x9F */
4752
4753 /*
4754 * VK_L* & VK_R* - left and right Alt, Ctrl and Shift virtual keys.
4755 * Used only as parameters to GetAsyncKeyState and GetKeyState.
4756 * No other API or message will distinguish left and right keys this way.
4757 * 0xA0 .. 0xA5
4758 */
4759 0, 0, 0, 0, 0, 0,
4760
4761 /* Multimedia keys. These are handled as WM_APPCOMMAND, which allows us
4762 to enable them selectively, and gives access to a few more functions.
4763 See lispy_multimedia_keys below. */
4764 0, 0, 0, 0, 0, 0, 0, /* 0xA6 .. 0xAC Browser */
4765 0, 0, 0, /* 0xAD .. 0xAF Volume */
4766 0, 0, 0, 0, /* 0xB0 .. 0xB3 Media */
4767 0, 0, 0, 0, /* 0xB4 .. 0xB7 Apps */
4768
4769 /* 0xB8 .. 0xC0 "OEM" keys - all seem to be punctuation. */
4770 0, 0, 0, 0, 0, 0, 0, 0, 0,
4771
4772 /* 0xC1 - 0xDA unallocated, 0xDB-0xDF more OEM keys */
4773 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0,
4774 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0,
4775
4776 0, /* 0xE0 */
4777 "ax", /* VK_OEM_AX 0xE1 */
4778 0, /* VK_OEM_102 0xE2 */
4779 "ico-help", /* VK_ICO_HELP 0xE3 */
4780 "ico-00", /* VK_ICO_00 0xE4 */
4781 0, /* VK_PROCESSKEY 0xE5 - used by IME */
4782 "ico-clear", /* VK_ICO_CLEAR 0xE6 */
4783 0, /* VK_PACKET 0xE7 - used to pass unicode chars */
4784 0, /* 0xE8 */
4785 "reset", /* VK_OEM_RESET 0xE9 */
4786 "jump", /* VK_OEM_JUMP 0xEA */
4787 "oem-pa1", /* VK_OEM_PA1 0xEB */
4788 "oem-pa2", /* VK_OEM_PA2 0xEC */
4789 "oem-pa3", /* VK_OEM_PA3 0xED */
4790 "wsctrl", /* VK_OEM_WSCTRL 0xEE */
4791 "cusel", /* VK_OEM_CUSEL 0xEF */
4792 "oem-attn", /* VK_OEM_ATTN 0xF0 */
4793 "finish", /* VK_OEM_FINISH 0xF1 */
4794 "copy", /* VK_OEM_COPY 0xF2 */
4795 "auto", /* VK_OEM_AUTO 0xF3 */
4796 "enlw", /* VK_OEM_ENLW 0xF4 */
4797 "backtab", /* VK_OEM_BACKTAB 0xF5 */
4798 "attn", /* VK_ATTN 0xF6 */
4799 "crsel", /* VK_CRSEL 0xF7 */
4800 "exsel", /* VK_EXSEL 0xF8 */
4801 "ereof", /* VK_EREOF 0xF9 */
4802 "play", /* VK_PLAY 0xFA */
4803 "zoom", /* VK_ZOOM 0xFB */
4804 "noname", /* VK_NONAME 0xFC */
4805 "pa1", /* VK_PA1 0xFD */
4806 "oem_clear", /* VK_OEM_CLEAR 0xFE */
4807 0 /* 0xFF */
4808 };
4809
4810 /* Some of these duplicate the "Media keys" on newer keyboards,
4811 but they are delivered to the application in a different way. */
4812 static const char *const lispy_multimedia_keys[] =
4813 {
4814 0,
4815 "browser-back",
4816 "browser-forward",
4817 "browser-refresh",
4818 "browser-stop",
4819 "browser-search",
4820 "browser-favorites",
4821 "browser-home",
4822 "volume-mute",
4823 "volume-down",
4824 "volume-up",
4825 "media-next",
4826 "media-previous",
4827 "media-stop",
4828 "media-play-pause",
4829 "mail",
4830 "media-select",
4831 "app-1",
4832 "app-2",
4833 "bass-down",
4834 "bass-boost",
4835 "bass-up",
4836 "treble-down",
4837 "treble-up",
4838 "mic-volume-mute",
4839 "mic-volume-down",
4840 "mic-volume-up",
4841 "help",
4842 "find",
4843 "new",
4844 "open",
4845 "close",
4846 "save",
4847 "print",
4848 "undo",
4849 "redo",
4850 "copy",
4851 "cut",
4852 "paste",
4853 "mail-reply",
4854 "mail-forward",
4855 "mail-send",
4856 "spell-check",
4857 "toggle-dictate-command",
4858 "mic-toggle",
4859 "correction-list",
4860 "media-play",
4861 "media-pause",
4862 "media-record",
4863 "media-fast-forward",
4864 "media-rewind",
4865 "media-channel-up",
4866 "media-channel-down"
4867 };
4868
4869 #else /* not HAVE_NTGUI */
4870
4871 /* This should be dealt with in XTread_socket now, and that doesn't
4872 depend on the client system having the Kana syms defined. See also
4873 the XK_kana_A case below. */
4874 #if 0
4875 #ifdef XK_kana_A
4876 static const char *const lispy_kana_keys[] =
4877 {
4878 /* X Keysym value */
4879 0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0, /* 0x400 .. 0x40f */
4880 0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0, /* 0x410 .. 0x41f */
4881 0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0, /* 0x420 .. 0x42f */
4882 0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0, /* 0x430 .. 0x43f */
4883 0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0, /* 0x440 .. 0x44f */
4884 0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0, /* 0x450 .. 0x45f */
4885 0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0, /* 0x460 .. 0x46f */
4886 0,0,0,0,0,0,0,0,0,0,0,0,0,0,"overline",0,
4887 0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0, /* 0x480 .. 0x48f */
4888 0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0, /* 0x490 .. 0x49f */
4889 0, "kana-fullstop", "kana-openingbracket", "kana-closingbracket",
4890 "kana-comma", "kana-conjunctive", "kana-WO", "kana-a",
4891 "kana-i", "kana-u", "kana-e", "kana-o",
4892 "kana-ya", "kana-yu", "kana-yo", "kana-tsu",
4893 "prolongedsound", "kana-A", "kana-I", "kana-U",
4894 "kana-E", "kana-O", "kana-KA", "kana-KI",
4895 "kana-KU", "kana-KE", "kana-KO", "kana-SA",
4896 "kana-SHI", "kana-SU", "kana-SE", "kana-SO",
4897 "kana-TA", "kana-CHI", "kana-TSU", "kana-TE",
4898 "kana-TO", "kana-NA", "kana-NI", "kana-NU",
4899 "kana-NE", "kana-NO", "kana-HA", "kana-HI",
4900 "kana-FU", "kana-HE", "kana-HO", "kana-MA",
4901 "kana-MI", "kana-MU", "kana-ME", "kana-MO",
4902 "kana-YA", "kana-YU", "kana-YO", "kana-RA",
4903 "kana-RI", "kana-RU", "kana-RE", "kana-RO",
4904 "kana-WA", "kana-N", "voicedsound", "semivoicedsound",
4905 0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0, /* 0x4e0 .. 0x4ef */
4906 0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0, /* 0x4f0 .. 0x4ff */
4907 };
4908 #endif /* XK_kana_A */
4909 #endif /* 0 */
4910
4911 #define FUNCTION_KEY_OFFSET 0xff00
4912
4913 /* You'll notice that this table is arranged to be conveniently
4914 indexed by X Windows keysym values. */
4915 static const char *const lispy_function_keys[] =
4916 {
4917 /* X Keysym value */
4918
4919 0, 0, 0, 0, 0, 0, 0, 0, /* 0xff00...0f */
4920 "backspace", "tab", "linefeed", "clear",
4921 0, "return", 0, 0,
4922 0, 0, 0, "pause", /* 0xff10...1f */
4923 0, 0, 0, 0, 0, 0, 0, "escape",
4924 0, 0, 0, 0,
4925 0, "kanji", "muhenkan", "henkan", /* 0xff20...2f */
4926 "romaji", "hiragana", "katakana", "hiragana-katakana",
4927 "zenkaku", "hankaku", "zenkaku-hankaku", "touroku",
4928 "massyo", "kana-lock", "kana-shift", "eisu-shift",
4929 "eisu-toggle", /* 0xff30...3f */
4930 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0,
4931 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, /* 0xff40...4f */
4932
4933 "home", "left", "up", "right", /* 0xff50 */ /* IsCursorKey */
4934 "down", "prior", "next", "end",
4935 "begin", 0, 0, 0, 0, 0, 0, 0,
4936 "select", /* 0xff60 */ /* IsMiscFunctionKey */
4937 "print",
4938 "execute",
4939 "insert",
4940 0, /* 0xff64 */
4941 "undo",
4942 "redo",
4943 "menu",
4944 "find",
4945 "cancel",
4946 "help",
4947 "break", /* 0xff6b */
4948
4949 0, 0, 0, 0,
4950 0, 0, 0, 0, "backtab", 0, 0, 0, /* 0xff70... */
4951 0, 0, 0, 0, 0, 0, 0, "kp-numlock", /* 0xff78... */
4952 "kp-space", /* 0xff80 */ /* IsKeypadKey */
4953 0, 0, 0, 0, 0, 0, 0, 0,
4954 "kp-tab", /* 0xff89 */
4955 0, 0, 0,
4956 "kp-enter", /* 0xff8d */
4957 0, 0, 0,
4958 "kp-f1", /* 0xff91 */
4959 "kp-f2",
4960 "kp-f3",
4961 "kp-f4",
4962 "kp-home", /* 0xff95 */
4963 "kp-left",
4964 "kp-up",
4965 "kp-right",
4966 "kp-down",
4967 "kp-prior", /* kp-page-up */
4968 "kp-next", /* kp-page-down */
4969 "kp-end",
4970 "kp-begin",
4971 "kp-insert",
4972 "kp-delete",
4973 0, /* 0xffa0 */
4974 0, 0, 0, 0, 0, 0, 0, 0, 0,
4975 "kp-multiply", /* 0xffaa */
4976 "kp-add",
4977 "kp-separator",
4978 "kp-subtract",
4979 "kp-decimal",
4980 "kp-divide", /* 0xffaf */
4981 "kp-0", /* 0xffb0 */
4982 "kp-1", "kp-2", "kp-3", "kp-4", "kp-5", "kp-6", "kp-7", "kp-8", "kp-9",
4983 0, /* 0xffba */
4984 0, 0,
4985 "kp-equal", /* 0xffbd */
4986 "f1", /* 0xffbe */ /* IsFunctionKey */
4987 "f2",
4988 "f3", "f4", "f5", "f6", "f7", "f8", "f9", "f10", /* 0xffc0 */
4989 "f11", "f12", "f13", "f14", "f15", "f16", "f17", "f18",
4990 "f19", "f20", "f21", "f22", "f23", "f24", "f25", "f26", /* 0xffd0 */
4991 "f27", "f28", "f29", "f30", "f31", "f32", "f33", "f34",
4992 "f35", 0, 0, 0, 0, 0, 0, 0, /* 0xffe0 */
4993 0, 0, 0, 0, 0, 0, 0, 0,
4994 0, 0, 0, 0, 0, 0, 0, 0, /* 0xfff0 */
4995 0, 0, 0, 0, 0, 0, 0, "delete"
4996 };
4997
4998 /* ISO 9995 Function and Modifier Keys; the first byte is 0xFE. */
4999 #define ISO_FUNCTION_KEY_OFFSET 0xfe00
5000
5001 static const char *const iso_lispy_function_keys[] =
5002 {
5003 0, 0, 0, 0, 0, 0, 0, 0, /* 0xfe00 */
5004 0, 0, 0, 0, 0, 0, 0, 0, /* 0xfe08 */
5005 0, 0, 0, 0, 0, 0, 0, 0, /* 0xfe10 */
5006 0, 0, 0, 0, 0, 0, 0, 0, /* 0xfe18 */
5007 "iso-lefttab", /* 0xfe20 */
5008 "iso-move-line-up", "iso-move-line-down",
5009 "iso-partial-line-up", "iso-partial-line-down",
5010 "iso-partial-space-left", "iso-partial-space-right",
5011 "iso-set-margin-left", "iso-set-margin-right", /* 0xffe27, 28 */
5012 "iso-release-margin-left", "iso-release-margin-right",
5013 "iso-release-both-margins",
5014 "iso-fast-cursor-left", "iso-fast-cursor-right",
5015 "iso-fast-cursor-up", "iso-fast-cursor-down",
5016 "iso-continuous-underline", "iso-discontinuous-underline", /* 0xfe30, 31 */
5017 "iso-emphasize", "iso-center-object", "iso-enter", /* ... 0xfe34 */
5018 };
5019
5020 #endif /* not HAVE_NTGUI */
5021
5022 Lisp_Object Vlispy_mouse_stem;
5023
5024 static const char *const lispy_wheel_names[] =
5025 {
5026 "wheel-up", "wheel-down", "wheel-left", "wheel-right"
5027 };
5028
5029 /* drag-n-drop events are generated when a set of selected files are
5030 dragged from another application and dropped onto an Emacs window. */
5031 static const char *const lispy_drag_n_drop_names[] =
5032 {
5033 "drag-n-drop"
5034 };
5035
5036 /* Scroll bar parts. */
5037 Lisp_Object Qabove_handle, Qhandle, Qbelow_handle;
5038 Lisp_Object Qup, Qdown, Qbottom, Qend_scroll;
5039 Lisp_Object Qtop, Qratio;
5040
5041 /* An array of scroll bar parts, indexed by an enum scroll_bar_part value. */
5042 static Lisp_Object *const scroll_bar_parts[] = {
5043 &Qabove_handle, &Qhandle, &Qbelow_handle,
5044 &Qup, &Qdown, &Qtop, &Qbottom, &Qend_scroll, &Qratio
5045 };
5046
5047 /* A vector, indexed by button number, giving the down-going location
5048 of currently depressed buttons, both scroll bar and non-scroll bar.
5049
5050 The elements have the form
5051 (BUTTON-NUMBER MODIFIER-MASK . REST)
5052 where REST is the cdr of a position as it would be reported in the event.
5053
5054 The make_lispy_event function stores positions here to tell the
5055 difference between click and drag events, and to store the starting
5056 location to be included in drag events. */
5057
5058 static Lisp_Object button_down_location;
5059
5060 /* Information about the most recent up-going button event: Which
5061 button, what location, and what time. */
5062
5063 static int last_mouse_button;
5064 static int last_mouse_x;
5065 static int last_mouse_y;
5066 static unsigned long button_down_time;
5067
5068 /* The number of clicks in this multiple-click. */
5069
5070 int double_click_count;
5071
5072 /* X and Y are frame-relative coordinates for a click or wheel event.
5073 Return a Lisp-style event list. */
5074
5075 static Lisp_Object
5076 make_lispy_position (struct frame *f, Lisp_Object x, Lisp_Object y,
5077 unsigned long t)
5078 {
5079 enum window_part part;
5080 Lisp_Object posn = Qnil;
5081 Lisp_Object extra_info = Qnil;
5082 /* Coordinate pixel positions to return. */
5083 int xret = 0, yret = 0;
5084 /* The window under frame pixel coordinates (x,y) */
5085 Lisp_Object window = f
5086 ? window_from_coordinates (f, XINT (x), XINT (y), &part, 0)
5087 : Qnil;
5088
5089 if (WINDOWP (window))
5090 {
5091 /* It's a click in window window at frame coordinates (x,y) */
5092 struct window *w = XWINDOW (window);
5093 Lisp_Object string_info = Qnil;
5094 EMACS_INT textpos = -1;
5095 int col = -1, row = -1;
5096 int dx = -1, dy = -1;
5097 int width = -1, height = -1;
5098 Lisp_Object object = Qnil;
5099
5100 /* Pixel coordinates relative to the window corner. */
5101 int wx = XINT (x) - WINDOW_LEFT_EDGE_X (w);
5102 int wy = XINT (y) - WINDOW_TOP_EDGE_Y (w);
5103
5104 /* For text area clicks, return X, Y relative to the corner of
5105 this text area. Note that dX, dY etc are set below, by
5106 buffer_posn_from_coords. */
5107 if (part == ON_TEXT)
5108 {
5109 xret = XINT (x) - window_box_left (w, TEXT_AREA);
5110 yret = wy - WINDOW_HEADER_LINE_HEIGHT (w);
5111 }
5112 /* For mode line and header line clicks, return X, Y relative to
5113 the left window edge. Use mode_line_string to look for a
5114 string on the click position. */
5115 else if (part == ON_MODE_LINE || part == ON_HEADER_LINE)
5116 {
5117 Lisp_Object string;
5118 EMACS_INT charpos;
5119
5120 posn = (part == ON_MODE_LINE) ? Qmode_line : Qheader_line;
5121 /* Note that mode_line_string takes COL, ROW as pixels and
5122 converts them to characters. */
5123 col = wx;
5124 row = wy;
5125 string = mode_line_string (w, part, &col, &row, &charpos,
5126 &object, &dx, &dy, &width, &height);
5127 if (STRINGP (string))
5128 string_info = Fcons (string, make_number (charpos));
5129 textpos = (w == XWINDOW (selected_window)
5130 && current_buffer == XBUFFER (w->buffer))
5131 ? PT : XMARKER (w->pointm)->charpos;
5132
5133 xret = wx;
5134 yret = wy;
5135 }
5136 /* For fringes and margins, Y is relative to the area's (and the
5137 window's) top edge, while X is meaningless. */
5138 else if (part == ON_LEFT_MARGIN || part == ON_RIGHT_MARGIN)
5139 {
5140 Lisp_Object string;
5141 EMACS_INT charpos;
5142
5143 posn = (part == ON_LEFT_MARGIN) ? Qleft_margin : Qright_margin;
5144 col = wx;
5145 row = wy;
5146 string = marginal_area_string (w, part, &col, &row, &charpos,
5147 &object, &dx, &dy, &width, &height);
5148 if (STRINGP (string))
5149 string_info = Fcons (string, make_number (charpos));
5150 yret = wy - WINDOW_HEADER_LINE_HEIGHT (w);
5151 }
5152 else if (part == ON_LEFT_FRINGE)
5153 {
5154 posn = Qleft_fringe;
5155 col = 0;
5156 dx = wx
5157 - (WINDOW_HAS_FRINGES_OUTSIDE_MARGINS (w)
5158 ? 0 : window_box_width (w, LEFT_MARGIN_AREA));
5159 dy = yret = wy - WINDOW_HEADER_LINE_HEIGHT (w);
5160 }
5161 else if (part == ON_RIGHT_FRINGE)
5162 {
5163 posn = Qright_fringe;
5164 col = 0;
5165 dx = wx
5166 - window_box_width (w, LEFT_MARGIN_AREA)
5167 - window_box_width (w, TEXT_AREA)
5168 - (WINDOW_HAS_FRINGES_OUTSIDE_MARGINS (w)
5169 ? window_box_width (w, RIGHT_MARGIN_AREA)
5170 : 0);
5171 dy = yret = wy - WINDOW_HEADER_LINE_HEIGHT (w);
5172 }
5173 else if (part == ON_VERTICAL_BORDER)
5174 {
5175 posn = Qvertical_line;
5176 width = 1;
5177 dx = 0;
5178 dy = yret = wy;
5179 }
5180 /* Nothing special for part == ON_SCROLL_BAR. */
5181
5182 /* For clicks in the text area, fringes, or margins, call
5183 buffer_posn_from_coords to extract TEXTPOS, the buffer
5184 position nearest to the click. */
5185 if (textpos < 0)
5186 {
5187 Lisp_Object string2, object2 = Qnil;
5188 struct display_pos p;
5189 int dx2, dy2;
5190 int width2, height2;
5191 /* The pixel X coordinate passed to buffer_posn_from_coords
5192 is the X coordinate relative to the text area for
5193 text-area and right-margin clicks, zero otherwise. */
5194 int x2
5195 = (part == ON_TEXT) ? xret
5196 : (part == ON_RIGHT_FRINGE || part == ON_RIGHT_MARGIN)
5197 ? (XINT (x) - window_box_left (w, TEXT_AREA))
5198 : 0;
5199 int y2 = wy;
5200
5201 string2 = buffer_posn_from_coords (w, &x2, &y2, &p,
5202 &object2, &dx2, &dy2,
5203 &width2, &height2);
5204 textpos = CHARPOS (p.pos);
5205 if (col < 0) col = x2;
5206 if (row < 0) row = y2;
5207 if (dx < 0) dx = dx2;
5208 if (dy < 0) dy = dy2;
5209 if (width < 0) width = width2;
5210 if (height < 0) height = height2;
5211
5212 if (NILP (posn))
5213 {
5214 posn = make_number (textpos);
5215 if (STRINGP (string2))
5216 string_info = Fcons (string2,
5217 make_number (CHARPOS (p.string_pos)));
5218 }
5219 if (NILP (object))
5220 object = object2;
5221 }
5222
5223 #ifdef HAVE_WINDOW_SYSTEM
5224 if (IMAGEP (object))
5225 {
5226 Lisp_Object image_map, hotspot;
5227 if ((image_map = Fplist_get (XCDR (object), QCmap),
5228 !NILP (image_map))
5229 && (hotspot = find_hot_spot (image_map, dx, dy),
5230 CONSP (hotspot))
5231 && (hotspot = XCDR (hotspot), CONSP (hotspot)))
5232 posn = XCAR (hotspot);
5233 }
5234 #endif
5235
5236 /* Object info */
5237 extra_info
5238 = list3 (object,
5239 Fcons (make_number (dx), make_number (dy)),
5240 Fcons (make_number (width), make_number (height)));
5241
5242 /* String info */
5243 extra_info = Fcons (string_info,
5244 Fcons (make_number (textpos),
5245 Fcons (Fcons (make_number (col),
5246 make_number (row)),
5247 extra_info)));
5248 }
5249 else if (f != 0)
5250 XSETFRAME (window, f);
5251 else
5252 window = Qnil;
5253
5254 return Fcons (window,
5255 Fcons (posn,
5256 Fcons (Fcons (make_number (xret),
5257 make_number (yret)),
5258 Fcons (make_number (t),
5259 extra_info))));
5260 }
5261
5262 /* Given a struct input_event, build the lisp event which represents
5263 it. If EVENT is 0, build a mouse movement event from the mouse
5264 movement buffer, which should have a movement event in it.
5265
5266 Note that events must be passed to this function in the order they
5267 are received; this function stores the location of button presses
5268 in order to build drag events when the button is released. */
5269
5270 static Lisp_Object
5271 make_lispy_event (struct input_event *event)
5272 {
5273 int i;
5274
5275 switch (SWITCH_ENUM_CAST (event->kind))
5276 {
5277 /* A simple keystroke. */
5278 case ASCII_KEYSTROKE_EVENT:
5279 case MULTIBYTE_CHAR_KEYSTROKE_EVENT:
5280 {
5281 Lisp_Object lispy_c;
5282 EMACS_INT c = event->code;
5283 if (event->kind == ASCII_KEYSTROKE_EVENT)
5284 {
5285 c &= 0377;
5286 eassert (c == event->code);
5287 /* Turn ASCII characters into control characters
5288 when proper. */
5289 if (event->modifiers & ctrl_modifier)
5290 {
5291 c = make_ctrl_char (c);
5292 event->modifiers &= ~ctrl_modifier;
5293 }
5294 }
5295
5296 /* Add in the other modifier bits. The shift key was taken care
5297 of by the X code. */
5298 c |= (event->modifiers
5299 & (meta_modifier | alt_modifier
5300 | hyper_modifier | super_modifier | ctrl_modifier));
5301 /* Distinguish Shift-SPC from SPC. */
5302 if ((event->code) == 040
5303 && event->modifiers & shift_modifier)
5304 c |= shift_modifier;
5305 button_down_time = 0;
5306 XSETFASTINT (lispy_c, c);
5307 return lispy_c;
5308 }
5309
5310 #ifdef HAVE_NS
5311 /* NS_NONKEY_EVENTs are just like NON_ASCII_KEYSTROKE_EVENTs,
5312 except that they are non-key events (last-nonmenu-event is nil). */
5313 case NS_NONKEY_EVENT:
5314 #endif
5315
5316 /* A function key. The symbol may need to have modifier prefixes
5317 tacked onto it. */
5318 case NON_ASCII_KEYSTROKE_EVENT:
5319 button_down_time = 0;
5320
5321 for (i = 0; i < sizeof (lispy_accent_codes) / sizeof (int); i++)
5322 if (event->code == lispy_accent_codes[i])
5323 return modify_event_symbol (i,
5324 event->modifiers,
5325 Qfunction_key, Qnil,
5326 lispy_accent_keys, &accent_key_syms,
5327 (sizeof (lispy_accent_keys)
5328 / sizeof (lispy_accent_keys[0])));
5329
5330 #if 0
5331 #ifdef XK_kana_A
5332 if (event->code >= 0x400 && event->code < 0x500)
5333 return modify_event_symbol (event->code - 0x400,
5334 event->modifiers & ~shift_modifier,
5335 Qfunction_key, Qnil,
5336 lispy_kana_keys, &func_key_syms,
5337 (sizeof (lispy_kana_keys)
5338 / sizeof (lispy_kana_keys[0])));
5339 #endif /* XK_kana_A */
5340 #endif /* 0 */
5341
5342 #ifdef ISO_FUNCTION_KEY_OFFSET
5343 if (event->code < FUNCTION_KEY_OFFSET
5344 && event->code >= ISO_FUNCTION_KEY_OFFSET)
5345 return modify_event_symbol (event->code - ISO_FUNCTION_KEY_OFFSET,
5346 event->modifiers,
5347 Qfunction_key, Qnil,
5348 iso_lispy_function_keys, &func_key_syms,
5349 (sizeof (iso_lispy_function_keys)
5350 / sizeof (iso_lispy_function_keys[0])));
5351 #endif
5352
5353 /* Handle system-specific or unknown keysyms. */
5354 if (event->code & (1 << 28)
5355 || event->code - FUNCTION_KEY_OFFSET < 0
5356 || (event->code - FUNCTION_KEY_OFFSET
5357 >= sizeof lispy_function_keys / sizeof *lispy_function_keys)
5358 || !lispy_function_keys[event->code - FUNCTION_KEY_OFFSET])
5359 {
5360 /* We need to use an alist rather than a vector as the cache
5361 since we can't make a vector long enuf. */
5362 if (NILP (KVAR (current_kboard, system_key_syms)))
5363 KVAR (current_kboard, system_key_syms) = Fcons (Qnil, Qnil);
5364 return modify_event_symbol (event->code,
5365 event->modifiers,
5366 Qfunction_key,
5367 KVAR (current_kboard, Vsystem_key_alist),
5368 0, &KVAR (current_kboard, system_key_syms),
5369 (unsigned) -1);
5370 }
5371
5372 return modify_event_symbol (event->code - FUNCTION_KEY_OFFSET,
5373 event->modifiers,
5374 Qfunction_key, Qnil,
5375 lispy_function_keys, &func_key_syms,
5376 (sizeof (lispy_function_keys)
5377 / sizeof (lispy_function_keys[0])));
5378
5379 #ifdef WINDOWSNT
5380 case MULTIMEDIA_KEY_EVENT:
5381 if (event->code < (sizeof (lispy_multimedia_keys)
5382 / sizeof (lispy_multimedia_keys[0]))
5383 && event->code > 0 && lispy_multimedia_keys[event->code])
5384 {
5385 return modify_event_symbol (event->code, event->modifiers,
5386 Qfunction_key, Qnil,
5387 lispy_multimedia_keys, &func_key_syms,
5388 (sizeof (lispy_multimedia_keys)
5389 / sizeof (lispy_multimedia_keys[0])));
5390 }
5391 return Qnil;
5392 #endif
5393
5394 #ifdef HAVE_MOUSE
5395 /* A mouse click. Figure out where it is, decide whether it's
5396 a press, click or drag, and build the appropriate structure. */
5397 case MOUSE_CLICK_EVENT:
5398 #ifndef USE_TOOLKIT_SCROLL_BARS
5399 case SCROLL_BAR_CLICK_EVENT:
5400 #endif
5401 {
5402 int button = event->code;
5403 int is_double;
5404 Lisp_Object position;
5405 Lisp_Object *start_pos_ptr;
5406 Lisp_Object start_pos;
5407
5408 position = Qnil;
5409
5410 /* Build the position as appropriate for this mouse click. */
5411 if (event->kind == MOUSE_CLICK_EVENT)
5412 {
5413 struct frame *f = XFRAME (event->frame_or_window);
5414 #if ! defined (USE_X_TOOLKIT) && ! defined (USE_GTK) && ! defined (HAVE_NS)
5415 int row, column;
5416 #endif
5417
5418 /* Ignore mouse events that were made on frame that
5419 have been deleted. */
5420 if (! FRAME_LIVE_P (f))
5421 return Qnil;
5422
5423 #if ! defined (USE_X_TOOLKIT) && ! defined (USE_GTK) && ! defined (HAVE_NS)
5424 /* EVENT->x and EVENT->y are frame-relative pixel
5425 coordinates at this place. Under old redisplay, COLUMN
5426 and ROW are set to frame relative glyph coordinates
5427 which are then used to determine whether this click is
5428 in a menu (non-toolkit version). */
5429 pixel_to_glyph_coords (f, XINT (event->x), XINT (event->y),
5430 &column, &row, NULL, 1);
5431
5432 /* In the non-toolkit version, clicks on the menu bar
5433 are ordinary button events in the event buffer.
5434 Distinguish them, and invoke the menu.
5435
5436 (In the toolkit version, the toolkit handles the menu bar
5437 and Emacs doesn't know about it until after the user
5438 makes a selection.) */
5439 if (row >= 0 && row < FRAME_MENU_BAR_LINES (f)
5440 && (event->modifiers & down_modifier))
5441 {
5442 Lisp_Object items, item;
5443 int i;
5444
5445 /* Find the menu bar item under `column'. */
5446 item = Qnil;
5447 items = FRAME_MENU_BAR_ITEMS (f);
5448 for (i = 0; i < XVECTOR (items)->size; i += 4)
5449 {
5450 Lisp_Object pos, string;
5451 string = AREF (items, i + 1);
5452 pos = AREF (items, i + 3);
5453 if (NILP (string))
5454 break;
5455 if (column >= XINT (pos)
5456 && column < XINT (pos) + SCHARS (string))
5457 {
5458 item = AREF (items, i);
5459 break;
5460 }
5461 }
5462
5463 /* ELisp manual 2.4b says (x y) are window relative but
5464 code says they are frame-relative. */
5465 position
5466 = Fcons (event->frame_or_window,
5467 Fcons (Qmenu_bar,
5468 Fcons (Fcons (event->x, event->y),
5469 Fcons (make_number (event->timestamp),
5470 Qnil))));
5471
5472 return Fcons (item, Fcons (position, Qnil));
5473 }
5474 #endif /* not USE_X_TOOLKIT && not USE_GTK && not HAVE_NS */
5475
5476 position = make_lispy_position (f, event->x, event->y,
5477 event->timestamp);
5478 }
5479 #ifndef USE_TOOLKIT_SCROLL_BARS
5480 else
5481 {
5482 /* It's a scrollbar click. */
5483 Lisp_Object window;
5484 Lisp_Object portion_whole;
5485 Lisp_Object part;
5486
5487 window = event->frame_or_window;
5488 portion_whole = Fcons (event->x, event->y);
5489 part = *scroll_bar_parts[(int) event->part];
5490
5491 position
5492 = Fcons (window,
5493 Fcons (Qvertical_scroll_bar,
5494 Fcons (portion_whole,
5495 Fcons (make_number (event->timestamp),
5496 Fcons (part, Qnil)))));
5497 }
5498 #endif /* not USE_TOOLKIT_SCROLL_BARS */
5499
5500 if (button >= ASIZE (button_down_location))
5501 {
5502 button_down_location = larger_vector (button_down_location,
5503 button + 1, Qnil);
5504 mouse_syms = larger_vector (mouse_syms, button + 1, Qnil);
5505 }
5506
5507 start_pos_ptr = &AREF (button_down_location, button);
5508 start_pos = *start_pos_ptr;
5509 *start_pos_ptr = Qnil;
5510
5511 {
5512 /* On window-system frames, use the value of
5513 double-click-fuzz as is. On other frames, interpret it
5514 as a multiple of 1/8 characters. */
5515 struct frame *f;
5516 int fuzz;
5517
5518 if (WINDOWP (event->frame_or_window))
5519 f = XFRAME (XWINDOW (event->frame_or_window)->frame);
5520 else if (FRAMEP (event->frame_or_window))
5521 f = XFRAME (event->frame_or_window);
5522 else
5523 abort ();
5524
5525 if (FRAME_WINDOW_P (f))
5526 fuzz = double_click_fuzz;
5527 else
5528 fuzz = double_click_fuzz / 8;
5529
5530 is_double = (button == last_mouse_button
5531 && (eabs (XINT (event->x) - last_mouse_x) <= fuzz)
5532 && (eabs (XINT (event->y) - last_mouse_y) <= fuzz)
5533 && button_down_time != 0
5534 && (EQ (Vdouble_click_time, Qt)
5535 || (INTEGERP (Vdouble_click_time)
5536 && ((int)(event->timestamp - button_down_time)
5537 < XINT (Vdouble_click_time)))));
5538 }
5539
5540 last_mouse_button = button;
5541 last_mouse_x = XINT (event->x);
5542 last_mouse_y = XINT (event->y);
5543
5544 /* If this is a button press, squirrel away the location, so
5545 we can decide later whether it was a click or a drag. */
5546 if (event->modifiers & down_modifier)
5547 {
5548 if (is_double)
5549 {
5550 double_click_count++;
5551 event->modifiers |= ((double_click_count > 2)
5552 ? triple_modifier
5553 : double_modifier);
5554 }
5555 else
5556 double_click_count = 1;
5557 button_down_time = event->timestamp;
5558 *start_pos_ptr = Fcopy_alist (position);
5559 ignore_mouse_drag_p = 0;
5560 }
5561
5562 /* Now we're releasing a button - check the co-ordinates to
5563 see if this was a click or a drag. */
5564 else if (event->modifiers & up_modifier)
5565 {
5566 /* If we did not see a down before this up, ignore the up.
5567 Probably this happened because the down event chose a
5568 menu item. It would be an annoyance to treat the
5569 release of the button that chose the menu item as a
5570 separate event. */
5571
5572 if (!CONSP (start_pos))
5573 return Qnil;
5574
5575 event->modifiers &= ~up_modifier;
5576
5577 {
5578 Lisp_Object new_down, down;
5579 EMACS_INT xdiff = double_click_fuzz, ydiff = double_click_fuzz;
5580
5581 /* The third element of every position
5582 should be the (x,y) pair. */
5583 down = Fcar (Fcdr (Fcdr (start_pos)));
5584 new_down = Fcar (Fcdr (Fcdr (position)));
5585
5586 if (CONSP (down)
5587 && INTEGERP (XCAR (down)) && INTEGERP (XCDR (down)))
5588 {
5589 xdiff = XINT (XCAR (new_down)) - XINT (XCAR (down));
5590 ydiff = XINT (XCDR (new_down)) - XINT (XCDR (down));
5591 }
5592
5593 if (ignore_mouse_drag_p)
5594 {
5595 event->modifiers |= click_modifier;
5596 ignore_mouse_drag_p = 0;
5597 }
5598 else if (xdiff < double_click_fuzz && xdiff > - double_click_fuzz
5599 && ydiff < double_click_fuzz && ydiff > - double_click_fuzz
5600 /* Maybe the mouse has moved a lot, caused scrolling, and
5601 eventually ended up at the same screen position (but
5602 not buffer position) in which case it is a drag, not
5603 a click. */
5604 /* FIXME: OTOH if the buffer position has changed
5605 because of a timer or process filter rather than
5606 because of mouse movement, it should be considered as
5607 a click. But mouse-drag-region completely ignores
5608 this case and it hasn't caused any real problem, so
5609 it's probably OK to ignore it as well. */
5610 && EQ (Fcar (Fcdr (start_pos)), Fcar (Fcdr (position))))
5611 /* Mouse hasn't moved (much). */
5612 event->modifiers |= click_modifier;
5613 else
5614 {
5615 button_down_time = 0;
5616 event->modifiers |= drag_modifier;
5617 }
5618
5619 /* Don't check is_double; treat this as multiple
5620 if the down-event was multiple. */
5621 if (double_click_count > 1)
5622 event->modifiers |= ((double_click_count > 2)
5623 ? triple_modifier
5624 : double_modifier);
5625 }
5626 }
5627 else
5628 /* Every mouse event should either have the down_modifier or
5629 the up_modifier set. */
5630 abort ();
5631
5632 {
5633 /* Get the symbol we should use for the mouse click. */
5634 Lisp_Object head;
5635
5636 head = modify_event_symbol (button,
5637 event->modifiers,
5638 Qmouse_click, Vlispy_mouse_stem,
5639 NULL,
5640 &mouse_syms,
5641 XVECTOR (mouse_syms)->size);
5642 if (event->modifiers & drag_modifier)
5643 return Fcons (head,
5644 Fcons (start_pos,
5645 Fcons (position,
5646 Qnil)));
5647 else if (event->modifiers & (double_modifier | triple_modifier))
5648 return Fcons (head,
5649 Fcons (position,
5650 Fcons (make_number (double_click_count),
5651 Qnil)));
5652 else
5653 return Fcons (head,
5654 Fcons (position,
5655 Qnil));
5656 }
5657 }
5658
5659 case WHEEL_EVENT:
5660 case HORIZ_WHEEL_EVENT:
5661 {
5662 Lisp_Object position;
5663 Lisp_Object head;
5664
5665 /* Build the position as appropriate for this mouse click. */
5666 struct frame *f = XFRAME (event->frame_or_window);
5667
5668 /* Ignore wheel events that were made on frame that have been
5669 deleted. */
5670 if (! FRAME_LIVE_P (f))
5671 return Qnil;
5672
5673 position = make_lispy_position (f, event->x, event->y,
5674 event->timestamp);
5675
5676 /* Set double or triple modifiers to indicate the wheel speed. */
5677 {
5678 /* On window-system frames, use the value of
5679 double-click-fuzz as is. On other frames, interpret it
5680 as a multiple of 1/8 characters. */
5681 struct frame *fr;
5682 int fuzz;
5683 int symbol_num;
5684 int is_double;
5685
5686 if (WINDOWP (event->frame_or_window))
5687 fr = XFRAME (XWINDOW (event->frame_or_window)->frame);
5688 else if (FRAMEP (event->frame_or_window))
5689 fr = XFRAME (event->frame_or_window);
5690 else
5691 abort ();
5692
5693 fuzz = FRAME_WINDOW_P (fr)
5694 ? double_click_fuzz : double_click_fuzz / 8;
5695
5696 if (event->modifiers & up_modifier)
5697 {
5698 /* Emit a wheel-up event. */
5699 event->modifiers &= ~up_modifier;
5700 symbol_num = 0;
5701 }
5702 else if (event->modifiers & down_modifier)
5703 {
5704 /* Emit a wheel-down event. */
5705 event->modifiers &= ~down_modifier;
5706 symbol_num = 1;
5707 }
5708 else
5709 /* Every wheel event should either have the down_modifier or
5710 the up_modifier set. */
5711 abort ();
5712
5713 if (event->kind == HORIZ_WHEEL_EVENT)
5714 symbol_num += 2;
5715
5716 is_double = (last_mouse_button == - (1 + symbol_num)
5717 && (eabs (XINT (event->x) - last_mouse_x) <= fuzz)
5718 && (eabs (XINT (event->y) - last_mouse_y) <= fuzz)
5719 && button_down_time != 0
5720 && (EQ (Vdouble_click_time, Qt)
5721 || (INTEGERP (Vdouble_click_time)
5722 && ((int)(event->timestamp - button_down_time)
5723 < XINT (Vdouble_click_time)))));
5724 if (is_double)
5725 {
5726 double_click_count++;
5727 event->modifiers |= ((double_click_count > 2)
5728 ? triple_modifier
5729 : double_modifier);
5730 }
5731 else
5732 {
5733 double_click_count = 1;
5734 event->modifiers |= click_modifier;
5735 }
5736
5737 button_down_time = event->timestamp;
5738 /* Use a negative value to distinguish wheel from mouse button. */
5739 last_mouse_button = - (1 + symbol_num);
5740 last_mouse_x = XINT (event->x);
5741 last_mouse_y = XINT (event->y);
5742
5743 /* Get the symbol we should use for the wheel event. */
5744 head = modify_event_symbol (symbol_num,
5745 event->modifiers,
5746 Qmouse_click,
5747 Qnil,
5748 lispy_wheel_names,
5749 &wheel_syms,
5750 ASIZE (wheel_syms));
5751 }
5752
5753 if (event->modifiers & (double_modifier | triple_modifier))
5754 return Fcons (head,
5755 Fcons (position,
5756 Fcons (make_number (double_click_count),
5757 Qnil)));
5758 else
5759 return Fcons (head,
5760 Fcons (position,
5761 Qnil));
5762 }
5763
5764
5765 #ifdef USE_TOOLKIT_SCROLL_BARS
5766
5767 /* We don't have down and up events if using toolkit scroll bars,
5768 so make this always a click event. Store in the `part' of
5769 the Lisp event a symbol which maps to the following actions:
5770
5771 `above_handle' page up
5772 `below_handle' page down
5773 `up' line up
5774 `down' line down
5775 `top' top of buffer
5776 `bottom' bottom of buffer
5777 `handle' thumb has been dragged.
5778 `end-scroll' end of interaction with scroll bar
5779
5780 The incoming input_event contains in its `part' member an
5781 index of type `enum scroll_bar_part' which we can use as an
5782 index in scroll_bar_parts to get the appropriate symbol. */
5783
5784 case SCROLL_BAR_CLICK_EVENT:
5785 {
5786 Lisp_Object position, head, window, portion_whole, part;
5787
5788 window = event->frame_or_window;
5789 portion_whole = Fcons (event->x, event->y);
5790 part = *scroll_bar_parts[(int) event->part];
5791
5792 position
5793 = Fcons (window,
5794 Fcons (Qvertical_scroll_bar,
5795 Fcons (portion_whole,
5796 Fcons (make_number (event->timestamp),
5797 Fcons (part, Qnil)))));
5798
5799 /* Always treat scroll bar events as clicks. */
5800 event->modifiers |= click_modifier;
5801 event->modifiers &= ~up_modifier;
5802
5803 if (event->code >= ASIZE (mouse_syms))
5804 mouse_syms = larger_vector (mouse_syms, event->code + 1, Qnil);
5805
5806 /* Get the symbol we should use for the mouse click. */
5807 head = modify_event_symbol (event->code,
5808 event->modifiers,
5809 Qmouse_click,
5810 Vlispy_mouse_stem,
5811 NULL, &mouse_syms,
5812 XVECTOR (mouse_syms)->size);
5813 return Fcons (head, Fcons (position, Qnil));
5814 }
5815
5816 #endif /* USE_TOOLKIT_SCROLL_BARS */
5817
5818 case DRAG_N_DROP_EVENT:
5819 {
5820 FRAME_PTR f;
5821 Lisp_Object head, position;
5822 Lisp_Object files;
5823
5824 f = XFRAME (event->frame_or_window);
5825 files = event->arg;
5826
5827 /* Ignore mouse events that were made on frames that
5828 have been deleted. */
5829 if (! FRAME_LIVE_P (f))
5830 return Qnil;
5831
5832 position = make_lispy_position (f, event->x, event->y,
5833 event->timestamp);
5834
5835 head = modify_event_symbol (0, event->modifiers,
5836 Qdrag_n_drop, Qnil,
5837 lispy_drag_n_drop_names,
5838 &drag_n_drop_syms, 1);
5839 return Fcons (head,
5840 Fcons (position,
5841 Fcons (files,
5842 Qnil)));
5843 }
5844 #endif /* HAVE_MOUSE */
5845
5846 #if defined (USE_X_TOOLKIT) || defined (HAVE_NTGUI) \
5847 || defined(HAVE_NS) || defined (USE_GTK)
5848 case MENU_BAR_EVENT:
5849 if (EQ (event->arg, event->frame_or_window))
5850 /* This is the prefix key. We translate this to
5851 `(menu_bar)' because the code in keyboard.c for menu
5852 events, which we use, relies on this. */
5853 return Fcons (Qmenu_bar, Qnil);
5854 return event->arg;
5855 #endif
5856
5857 case SELECT_WINDOW_EVENT:
5858 /* Make an event (select-window (WINDOW)). */
5859 return Fcons (Qselect_window,
5860 Fcons (Fcons (event->frame_or_window, Qnil),
5861 Qnil));
5862
5863 case TOOL_BAR_EVENT:
5864 if (EQ (event->arg, event->frame_or_window))
5865 /* This is the prefix key. We translate this to
5866 `(tool_bar)' because the code in keyboard.c for tool bar
5867 events, which we use, relies on this. */
5868 return Fcons (Qtool_bar, Qnil);
5869 else if (SYMBOLP (event->arg))
5870 return apply_modifiers (event->modifiers, event->arg);
5871 return event->arg;
5872
5873 case USER_SIGNAL_EVENT:
5874 /* A user signal. */
5875 {
5876 char *name = find_user_signal_name (event->code);
5877 if (!name)
5878 abort ();
5879 return intern (name);
5880 }
5881
5882 case SAVE_SESSION_EVENT:
5883 return Qsave_session;
5884
5885 #ifdef HAVE_DBUS
5886 case DBUS_EVENT:
5887 {
5888 return Fcons (Qdbus_event, event->arg);
5889 }
5890 #endif /* HAVE_DBUS */
5891
5892 case CONFIG_CHANGED_EVENT:
5893 return Fcons (Qconfig_changed_event,
5894 Fcons (event->arg,
5895 Fcons (event->frame_or_window, Qnil)));
5896 #ifdef HAVE_GPM
5897 case GPM_CLICK_EVENT:
5898 {
5899 FRAME_PTR f = XFRAME (event->frame_or_window);
5900 Lisp_Object head, position;
5901 Lisp_Object *start_pos_ptr;
5902 Lisp_Object start_pos;
5903 int button = event->code;
5904
5905 if (button >= ASIZE (button_down_location))
5906 {
5907 button_down_location = larger_vector (button_down_location,
5908 button + 1, Qnil);
5909 mouse_syms = larger_vector (mouse_syms, button + 1, Qnil);
5910 }
5911
5912 start_pos_ptr = &AREF (button_down_location, button);
5913 start_pos = *start_pos_ptr;
5914
5915 position = make_lispy_position (f, event->x, event->y,
5916 event->timestamp);
5917
5918 if (event->modifiers & down_modifier)
5919 *start_pos_ptr = Fcopy_alist (position);
5920 else if (event->modifiers & (up_modifier | drag_modifier))
5921 {
5922 if (!CONSP (start_pos))
5923 return Qnil;
5924 event->modifiers &= ~up_modifier;
5925 }
5926
5927 head = modify_event_symbol (button,
5928 event->modifiers,
5929 Qmouse_click, Vlispy_mouse_stem,
5930 NULL,
5931 &mouse_syms,
5932 XVECTOR (mouse_syms)->size);
5933
5934 if (event->modifiers & drag_modifier)
5935 return Fcons (head,
5936 Fcons (start_pos,
5937 Fcons (position,
5938 Qnil)));
5939 else if (event->modifiers & double_modifier)
5940 return Fcons (head,
5941 Fcons (position,
5942 Fcons (make_number (2),
5943 Qnil)));
5944 else if (event->modifiers & triple_modifier)
5945 return Fcons (head,
5946 Fcons (position,
5947 Fcons (make_number (3),
5948 Qnil)));
5949 else
5950 return Fcons (head,
5951 Fcons (position,
5952 Qnil));
5953 }
5954 #endif /* HAVE_GPM */
5955
5956 /* The 'kind' field of the event is something we don't recognize. */
5957 default:
5958 abort ();
5959 }
5960 }
5961
5962 #if defined(HAVE_MOUSE) || defined(HAVE_GPM)
5963
5964 static Lisp_Object
5965 make_lispy_movement (FRAME_PTR frame, Lisp_Object bar_window, enum scroll_bar_part part,
5966 Lisp_Object x, Lisp_Object y, unsigned long t)
5967 {
5968 /* Is it a scroll bar movement? */
5969 if (frame && ! NILP (bar_window))
5970 {
5971 Lisp_Object part_sym;
5972
5973 part_sym = *scroll_bar_parts[(int) part];
5974 return Fcons (Qscroll_bar_movement,
5975 Fcons (list5 (bar_window,
5976 Qvertical_scroll_bar,
5977 Fcons (x, y),
5978 make_number (t),
5979 part_sym),
5980 Qnil));
5981 }
5982 /* Or is it an ordinary mouse movement? */
5983 else
5984 {
5985 Lisp_Object position;
5986 position = make_lispy_position (frame, x, y, t);
5987 return list2 (Qmouse_movement, position);
5988 }
5989 }
5990
5991 #endif /* HAVE_MOUSE || HAVE GPM */
5992
5993 /* Construct a switch frame event. */
5994 static Lisp_Object
5995 make_lispy_switch_frame (Lisp_Object frame)
5996 {
5997 return Fcons (Qswitch_frame, Fcons (frame, Qnil));
5998 }
5999 \f
6000 /* Manipulating modifiers. */
6001
6002 /* Parse the name of SYMBOL, and return the set of modifiers it contains.
6003
6004 If MODIFIER_END is non-zero, set *MODIFIER_END to the position in
6005 SYMBOL's name of the end of the modifiers; the string from this
6006 position is the unmodified symbol name.
6007
6008 This doesn't use any caches. */
6009
6010 static int
6011 parse_modifiers_uncached (Lisp_Object symbol, EMACS_INT *modifier_end)
6012 {
6013 Lisp_Object name;
6014 EMACS_INT i;
6015 int modifiers;
6016
6017 CHECK_SYMBOL (symbol);
6018
6019 modifiers = 0;
6020 name = SYMBOL_NAME (symbol);
6021
6022 for (i = 0; i+2 <= SBYTES (name); )
6023 {
6024 EMACS_INT this_mod_end = 0;
6025 int this_mod = 0;
6026
6027 /* See if the name continues with a modifier word.
6028 Check that the word appears, but don't check what follows it.
6029 Set this_mod and this_mod_end to record what we find. */
6030
6031 switch (SREF (name, i))
6032 {
6033 #define SINGLE_LETTER_MOD(BIT) \
6034 (this_mod_end = i + 1, this_mod = BIT)
6035
6036 case 'A':
6037 SINGLE_LETTER_MOD (alt_modifier);
6038 break;
6039
6040 case 'C':
6041 SINGLE_LETTER_MOD (ctrl_modifier);
6042 break;
6043
6044 case 'H':
6045 SINGLE_LETTER_MOD (hyper_modifier);
6046 break;
6047
6048 case 'M':
6049 SINGLE_LETTER_MOD (meta_modifier);
6050 break;
6051
6052 case 'S':
6053 SINGLE_LETTER_MOD (shift_modifier);
6054 break;
6055
6056 case 's':
6057 SINGLE_LETTER_MOD (super_modifier);
6058 break;
6059
6060 #undef SINGLE_LETTER_MOD
6061
6062 #define MULTI_LETTER_MOD(BIT, NAME, LEN) \
6063 if (i + LEN + 1 <= SBYTES (name) \
6064 && ! strncmp (SSDATA (name) + i, NAME, LEN)) \
6065 { \
6066 this_mod_end = i + LEN; \
6067 this_mod = BIT; \
6068 }
6069
6070 case 'd':
6071 MULTI_LETTER_MOD (drag_modifier, "drag", 4);
6072 MULTI_LETTER_MOD (down_modifier, "down", 4);
6073 MULTI_LETTER_MOD (double_modifier, "double", 6);
6074 break;
6075
6076 case 't':
6077 MULTI_LETTER_MOD (triple_modifier, "triple", 6);
6078 break;
6079 #undef MULTI_LETTER_MOD
6080
6081 }
6082
6083 /* If we found no modifier, stop looking for them. */
6084 if (this_mod_end == 0)
6085 break;
6086
6087 /* Check there is a dash after the modifier, so that it
6088 really is a modifier. */
6089 if (this_mod_end >= SBYTES (name)
6090 || SREF (name, this_mod_end) != '-')
6091 break;
6092
6093 /* This modifier is real; look for another. */
6094 modifiers |= this_mod;
6095 i = this_mod_end + 1;
6096 }
6097
6098 /* Should we include the `click' modifier? */
6099 if (! (modifiers & (down_modifier | drag_modifier
6100 | double_modifier | triple_modifier))
6101 && i + 7 == SBYTES (name)
6102 && strncmp (SSDATA (name) + i, "mouse-", 6) == 0
6103 && ('0' <= SREF (name, i + 6) && SREF (name, i + 6) <= '9'))
6104 modifiers |= click_modifier;
6105
6106 if (! (modifiers & (double_modifier | triple_modifier))
6107 && i + 6 < SBYTES (name)
6108 && strncmp (SSDATA (name) + i, "wheel-", 6) == 0)
6109 modifiers |= click_modifier;
6110
6111 if (modifier_end)
6112 *modifier_end = i;
6113
6114 return modifiers;
6115 }
6116
6117 /* Return a symbol whose name is the modifier prefixes for MODIFIERS
6118 prepended to the string BASE[0..BASE_LEN-1].
6119 This doesn't use any caches. */
6120 static Lisp_Object
6121 apply_modifiers_uncached (int modifiers, char *base, int base_len, int base_len_byte)
6122 {
6123 /* Since BASE could contain nulls, we can't use intern here; we have
6124 to use Fintern, which expects a genuine Lisp_String, and keeps a
6125 reference to it. */
6126 char *new_mods
6127 = (char *) alloca (sizeof ("A-C-H-M-S-s-down-drag-double-triple-"));
6128 int mod_len;
6129
6130 {
6131 char *p = new_mods;
6132
6133 /* Only the event queue may use the `up' modifier; it should always
6134 be turned into a click or drag event before presented to lisp code. */
6135 if (modifiers & up_modifier)
6136 abort ();
6137
6138 if (modifiers & alt_modifier) { *p++ = 'A'; *p++ = '-'; }
6139 if (modifiers & ctrl_modifier) { *p++ = 'C'; *p++ = '-'; }
6140 if (modifiers & hyper_modifier) { *p++ = 'H'; *p++ = '-'; }
6141 if (modifiers & meta_modifier) { *p++ = 'M'; *p++ = '-'; }
6142 if (modifiers & shift_modifier) { *p++ = 'S'; *p++ = '-'; }
6143 if (modifiers & super_modifier) { *p++ = 's'; *p++ = '-'; }
6144 if (modifiers & double_modifier) { strcpy (p, "double-"); p += 7; }
6145 if (modifiers & triple_modifier) { strcpy (p, "triple-"); p += 7; }
6146 if (modifiers & down_modifier) { strcpy (p, "down-"); p += 5; }
6147 if (modifiers & drag_modifier) { strcpy (p, "drag-"); p += 5; }
6148 /* The click modifier is denoted by the absence of other modifiers. */
6149
6150 *p = '\0';
6151
6152 mod_len = p - new_mods;
6153 }
6154
6155 {
6156 Lisp_Object new_name;
6157
6158 new_name = make_uninit_multibyte_string (mod_len + base_len,
6159 mod_len + base_len_byte);
6160 memcpy (SDATA (new_name), new_mods, mod_len);
6161 memcpy (SDATA (new_name) + mod_len, base, base_len_byte);
6162
6163 return Fintern (new_name, Qnil);
6164 }
6165 }
6166
6167
6168 static const char *const modifier_names[] =
6169 {
6170 "up", "down", "drag", "click", "double", "triple", 0, 0,
6171 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0,
6172 0, 0, "alt", "super", "hyper", "shift", "control", "meta"
6173 };
6174 #define NUM_MOD_NAMES (sizeof (modifier_names) / sizeof (modifier_names[0]))
6175
6176 static Lisp_Object modifier_symbols;
6177
6178 /* Return the list of modifier symbols corresponding to the mask MODIFIERS. */
6179 static Lisp_Object
6180 lispy_modifier_list (int modifiers)
6181 {
6182 Lisp_Object modifier_list;
6183 int i;
6184
6185 modifier_list = Qnil;
6186 for (i = 0; (1<<i) <= modifiers && i < NUM_MOD_NAMES; i++)
6187 if (modifiers & (1<<i))
6188 modifier_list = Fcons (XVECTOR (modifier_symbols)->contents[i],
6189 modifier_list);
6190
6191 return modifier_list;
6192 }
6193
6194
6195 /* Parse the modifiers on SYMBOL, and return a list like (UNMODIFIED MASK),
6196 where UNMODIFIED is the unmodified form of SYMBOL,
6197 MASK is the set of modifiers present in SYMBOL's name.
6198 This is similar to parse_modifiers_uncached, but uses the cache in
6199 SYMBOL's Qevent_symbol_element_mask property, and maintains the
6200 Qevent_symbol_elements property. */
6201
6202 #define KEY_TO_CHAR(k) (XINT (k) & ((1 << CHARACTERBITS) - 1))
6203
6204 Lisp_Object
6205 parse_modifiers (Lisp_Object symbol)
6206 {
6207 Lisp_Object elements;
6208
6209 if (INTEGERP (symbol))
6210 return (Fcons (make_number (KEY_TO_CHAR (symbol)),
6211 Fcons (make_number (XINT (symbol) & CHAR_MODIFIER_MASK),
6212 Qnil)));
6213 else if (!SYMBOLP (symbol))
6214 return Qnil;
6215
6216 elements = Fget (symbol, Qevent_symbol_element_mask);
6217 if (CONSP (elements))
6218 return elements;
6219 else
6220 {
6221 EMACS_INT end;
6222 int modifiers = parse_modifiers_uncached (symbol, &end);
6223 Lisp_Object unmodified;
6224 Lisp_Object mask;
6225
6226 unmodified = Fintern (make_string (SSDATA (SYMBOL_NAME (symbol)) + end,
6227 SBYTES (SYMBOL_NAME (symbol)) - end),
6228 Qnil);
6229
6230 if (modifiers & ~INTMASK)
6231 abort ();
6232 XSETFASTINT (mask, modifiers);
6233 elements = Fcons (unmodified, Fcons (mask, Qnil));
6234
6235 /* Cache the parsing results on SYMBOL. */
6236 Fput (symbol, Qevent_symbol_element_mask,
6237 elements);
6238 Fput (symbol, Qevent_symbol_elements,
6239 Fcons (unmodified, lispy_modifier_list (modifiers)));
6240
6241 /* Since we know that SYMBOL is modifiers applied to unmodified,
6242 it would be nice to put that in unmodified's cache.
6243 But we can't, since we're not sure that parse_modifiers is
6244 canonical. */
6245
6246 return elements;
6247 }
6248 }
6249
6250 DEFUN ("internal-event-symbol-parse-modifiers", Fevent_symbol_parse_modifiers,
6251 Sevent_symbol_parse_modifiers, 1, 1, 0,
6252 doc: /* Parse the event symbol. For internal use. */)
6253 (Lisp_Object symbol)
6254 {
6255 /* Fill the cache if needed. */
6256 parse_modifiers (symbol);
6257 /* Ignore the result (which is stored on Qevent_symbol_element_mask)
6258 and use the Lispier representation stored on Qevent_symbol_elements
6259 instead. */
6260 return Fget (symbol, Qevent_symbol_elements);
6261 }
6262
6263 /* Apply the modifiers MODIFIERS to the symbol BASE.
6264 BASE must be unmodified.
6265
6266 This is like apply_modifiers_uncached, but uses BASE's
6267 Qmodifier_cache property, if present. It also builds
6268 Qevent_symbol_elements properties, since it has that info anyway.
6269
6270 apply_modifiers copies the value of BASE's Qevent_kind property to
6271 the modified symbol. */
6272 static Lisp_Object
6273 apply_modifiers (int modifiers, Lisp_Object base)
6274 {
6275 Lisp_Object cache, idx, entry, new_symbol;
6276
6277 /* Mask out upper bits. We don't know where this value's been. */
6278 modifiers &= INTMASK;
6279
6280 if (INTEGERP (base))
6281 return make_number (XINT (base) | modifiers);
6282
6283 /* The click modifier never figures into cache indices. */
6284 cache = Fget (base, Qmodifier_cache);
6285 XSETFASTINT (idx, (modifiers & ~click_modifier));
6286 entry = assq_no_quit (idx, cache);
6287
6288 if (CONSP (entry))
6289 new_symbol = XCDR (entry);
6290 else
6291 {
6292 /* We have to create the symbol ourselves. */
6293 new_symbol = apply_modifiers_uncached (modifiers,
6294 SSDATA (SYMBOL_NAME (base)),
6295 SCHARS (SYMBOL_NAME (base)),
6296 SBYTES (SYMBOL_NAME (base)));
6297
6298 /* Add the new symbol to the base's cache. */
6299 entry = Fcons (idx, new_symbol);
6300 Fput (base, Qmodifier_cache, Fcons (entry, cache));
6301
6302 /* We have the parsing info now for free, so we could add it to
6303 the caches:
6304 XSETFASTINT (idx, modifiers);
6305 Fput (new_symbol, Qevent_symbol_element_mask,
6306 Fcons (base, Fcons (idx, Qnil)));
6307 Fput (new_symbol, Qevent_symbol_elements,
6308 Fcons (base, lispy_modifier_list (modifiers)));
6309 Sadly, this is only correct if `base' is indeed a base event,
6310 which is not necessarily the case. -stef */
6311 }
6312
6313 /* Make sure this symbol is of the same kind as BASE.
6314
6315 You'd think we could just set this once and for all when we
6316 intern the symbol above, but reorder_modifiers may call us when
6317 BASE's property isn't set right; we can't assume that just
6318 because it has a Qmodifier_cache property it must have its
6319 Qevent_kind set right as well. */
6320 if (NILP (Fget (new_symbol, Qevent_kind)))
6321 {
6322 Lisp_Object kind;
6323
6324 kind = Fget (base, Qevent_kind);
6325 if (! NILP (kind))
6326 Fput (new_symbol, Qevent_kind, kind);
6327 }
6328
6329 return new_symbol;
6330 }
6331
6332
6333 /* Given a symbol whose name begins with modifiers ("C-", "M-", etc),
6334 return a symbol with the modifiers placed in the canonical order.
6335 Canonical order is alphabetical, except for down and drag, which
6336 always come last. The 'click' modifier is never written out.
6337
6338 Fdefine_key calls this to make sure that (for example) C-M-foo
6339 and M-C-foo end up being equivalent in the keymap. */
6340
6341 Lisp_Object
6342 reorder_modifiers (Lisp_Object symbol)
6343 {
6344 /* It's hopefully okay to write the code this way, since everything
6345 will soon be in caches, and no consing will be done at all. */
6346 Lisp_Object parsed;
6347
6348 parsed = parse_modifiers (symbol);
6349 return apply_modifiers ((int) XINT (XCAR (XCDR (parsed))),
6350 XCAR (parsed));
6351 }
6352
6353
6354 /* For handling events, we often want to produce a symbol whose name
6355 is a series of modifier key prefixes ("M-", "C-", etcetera) attached
6356 to some base, like the name of a function key or mouse button.
6357 modify_event_symbol produces symbols of this sort.
6358
6359 NAME_TABLE should point to an array of strings, such that NAME_TABLE[i]
6360 is the name of the i'th symbol. TABLE_SIZE is the number of elements
6361 in the table.
6362
6363 Alternatively, NAME_ALIST_OR_STEM is either an alist mapping codes
6364 into symbol names, or a string specifying a name stem used to
6365 construct a symbol name or the form `STEM-N', where N is the decimal
6366 representation of SYMBOL_NUM. NAME_ALIST_OR_STEM is used if it is
6367 non-nil; otherwise NAME_TABLE is used.
6368
6369 SYMBOL_TABLE should be a pointer to a Lisp_Object whose value will
6370 persist between calls to modify_event_symbol that it can use to
6371 store a cache of the symbols it's generated for this NAME_TABLE
6372 before. The object stored there may be a vector or an alist.
6373
6374 SYMBOL_NUM is the number of the base name we want from NAME_TABLE.
6375
6376 MODIFIERS is a set of modifier bits (as given in struct input_events)
6377 whose prefixes should be applied to the symbol name.
6378
6379 SYMBOL_KIND is the value to be placed in the event_kind property of
6380 the returned symbol.
6381
6382 The symbols we create are supposed to have an
6383 `event-symbol-elements' property, which lists the modifiers present
6384 in the symbol's name. */
6385
6386 static Lisp_Object
6387 modify_event_symbol (EMACS_INT symbol_num, unsigned int modifiers, Lisp_Object symbol_kind,
6388 Lisp_Object name_alist_or_stem, const char *const *name_table,
6389 Lisp_Object *symbol_table, unsigned int table_size)
6390 {
6391 Lisp_Object value;
6392 Lisp_Object symbol_int;
6393
6394 /* Get rid of the "vendor-specific" bit here. */
6395 XSETINT (symbol_int, symbol_num & 0xffffff);
6396
6397 /* Is this a request for a valid symbol? */
6398 if (symbol_num < 0 || symbol_num >= table_size)
6399 return Qnil;
6400
6401 if (CONSP (*symbol_table))
6402 value = Fcdr (assq_no_quit (symbol_int, *symbol_table));
6403
6404 /* If *symbol_table doesn't seem to be initialized properly, fix that.
6405 *symbol_table should be a lisp vector TABLE_SIZE elements long,
6406 where the Nth element is the symbol for NAME_TABLE[N], or nil if
6407 we've never used that symbol before. */
6408 else
6409 {
6410 if (! VECTORP (*symbol_table)
6411 || XVECTOR (*symbol_table)->size != table_size)
6412 {
6413 Lisp_Object size;
6414
6415 XSETFASTINT (size, table_size);
6416 *symbol_table = Fmake_vector (size, Qnil);
6417 }
6418
6419 value = XVECTOR (*symbol_table)->contents[symbol_num];
6420 }
6421
6422 /* Have we already used this symbol before? */
6423 if (NILP (value))
6424 {
6425 /* No; let's create it. */
6426 if (CONSP (name_alist_or_stem))
6427 value = Fcdr_safe (Fassq (symbol_int, name_alist_or_stem));
6428 else if (STRINGP (name_alist_or_stem))
6429 {
6430 int len = SBYTES (name_alist_or_stem);
6431 char *buf = (char *) alloca (len + 50);
6432 sprintf (buf, "%s-%ld", SDATA (name_alist_or_stem),
6433 (long) XINT (symbol_int) + 1);
6434 value = intern (buf);
6435 }
6436 else if (name_table != 0 && name_table[symbol_num])
6437 value = intern (name_table[symbol_num]);
6438
6439 #ifdef HAVE_WINDOW_SYSTEM
6440 if (NILP (value))
6441 {
6442 char *name = x_get_keysym_name (symbol_num);
6443 if (name)
6444 value = intern (name);
6445 }
6446 #endif
6447
6448 if (NILP (value))
6449 {
6450 char buf[20];
6451 sprintf (buf, "key-%ld", (long)symbol_num);
6452 value = intern (buf);
6453 }
6454
6455 if (CONSP (*symbol_table))
6456 *symbol_table = Fcons (Fcons (symbol_int, value), *symbol_table);
6457 else
6458 XVECTOR (*symbol_table)->contents[symbol_num] = value;
6459
6460 /* Fill in the cache entries for this symbol; this also
6461 builds the Qevent_symbol_elements property, which the user
6462 cares about. */
6463 apply_modifiers (modifiers & click_modifier, value);
6464 Fput (value, Qevent_kind, symbol_kind);
6465 }
6466
6467 /* Apply modifiers to that symbol. */
6468 return apply_modifiers (modifiers, value);
6469 }
6470 \f
6471 /* Convert a list that represents an event type,
6472 such as (ctrl meta backspace), into the usual representation of that
6473 event type as a number or a symbol. */
6474
6475 DEFUN ("event-convert-list", Fevent_convert_list, Sevent_convert_list, 1, 1, 0,
6476 doc: /* Convert the event description list EVENT-DESC to an event type.
6477 EVENT-DESC should contain one base event type (a character or symbol)
6478 and zero or more modifier names (control, meta, hyper, super, shift, alt,
6479 drag, down, double or triple). The base must be last.
6480 The return value is an event type (a character or symbol) which
6481 has the same base event type and all the specified modifiers. */)
6482 (Lisp_Object event_desc)
6483 {
6484 Lisp_Object base;
6485 int modifiers = 0;
6486 Lisp_Object rest;
6487
6488 base = Qnil;
6489 rest = event_desc;
6490 while (CONSP (rest))
6491 {
6492 Lisp_Object elt;
6493 int this = 0;
6494
6495 elt = XCAR (rest);
6496 rest = XCDR (rest);
6497
6498 /* Given a symbol, see if it is a modifier name. */
6499 if (SYMBOLP (elt) && CONSP (rest))
6500 this = parse_solitary_modifier (elt);
6501
6502 if (this != 0)
6503 modifiers |= this;
6504 else if (!NILP (base))
6505 error ("Two bases given in one event");
6506 else
6507 base = elt;
6508
6509 }
6510
6511 /* Let the symbol A refer to the character A. */
6512 if (SYMBOLP (base) && SCHARS (SYMBOL_NAME (base)) == 1)
6513 XSETINT (base, SREF (SYMBOL_NAME (base), 0));
6514
6515 if (INTEGERP (base))
6516 {
6517 /* Turn (shift a) into A. */
6518 if ((modifiers & shift_modifier) != 0
6519 && (XINT (base) >= 'a' && XINT (base) <= 'z'))
6520 {
6521 XSETINT (base, XINT (base) - ('a' - 'A'));
6522 modifiers &= ~shift_modifier;
6523 }
6524
6525 /* Turn (control a) into C-a. */
6526 if (modifiers & ctrl_modifier)
6527 return make_number ((modifiers & ~ctrl_modifier)
6528 | make_ctrl_char (XINT (base)));
6529 else
6530 return make_number (modifiers | XINT (base));
6531 }
6532 else if (SYMBOLP (base))
6533 return apply_modifiers (modifiers, base);
6534 else
6535 {
6536 error ("Invalid base event");
6537 return Qnil;
6538 }
6539 }
6540
6541 /* Try to recognize SYMBOL as a modifier name.
6542 Return the modifier flag bit, or 0 if not recognized. */
6543
6544 int
6545 parse_solitary_modifier (Lisp_Object symbol)
6546 {
6547 Lisp_Object name = SYMBOL_NAME (symbol);
6548
6549 switch (SREF (name, 0))
6550 {
6551 #define SINGLE_LETTER_MOD(BIT) \
6552 if (SBYTES (name) == 1) \
6553 return BIT;
6554
6555 #define MULTI_LETTER_MOD(BIT, NAME, LEN) \
6556 if (LEN == SBYTES (name) \
6557 && ! strncmp (SSDATA (name), NAME, LEN)) \
6558 return BIT;
6559
6560 case 'A':
6561 SINGLE_LETTER_MOD (alt_modifier);
6562 break;
6563
6564 case 'a':
6565 MULTI_LETTER_MOD (alt_modifier, "alt", 3);
6566 break;
6567
6568 case 'C':
6569 SINGLE_LETTER_MOD (ctrl_modifier);
6570 break;
6571
6572 case 'c':
6573 MULTI_LETTER_MOD (ctrl_modifier, "ctrl", 4);
6574 MULTI_LETTER_MOD (ctrl_modifier, "control", 7);
6575 break;
6576
6577 case 'H':
6578 SINGLE_LETTER_MOD (hyper_modifier);
6579 break;
6580
6581 case 'h':
6582 MULTI_LETTER_MOD (hyper_modifier, "hyper", 5);
6583 break;
6584
6585 case 'M':
6586 SINGLE_LETTER_MOD (meta_modifier);
6587 break;
6588
6589 case 'm':
6590 MULTI_LETTER_MOD (meta_modifier, "meta", 4);
6591 break;
6592
6593 case 'S':
6594 SINGLE_LETTER_MOD (shift_modifier);
6595 break;
6596
6597 case 's':
6598 MULTI_LETTER_MOD (shift_modifier, "shift", 5);
6599 MULTI_LETTER_MOD (super_modifier, "super", 5);
6600 SINGLE_LETTER_MOD (super_modifier);
6601 break;
6602
6603 case 'd':
6604 MULTI_LETTER_MOD (drag_modifier, "drag", 4);
6605 MULTI_LETTER_MOD (down_modifier, "down", 4);
6606 MULTI_LETTER_MOD (double_modifier, "double", 6);
6607 break;
6608
6609 case 't':
6610 MULTI_LETTER_MOD (triple_modifier, "triple", 6);
6611 break;
6612
6613 #undef SINGLE_LETTER_MOD
6614 #undef MULTI_LETTER_MOD
6615 }
6616
6617 return 0;
6618 }
6619
6620 /* Return 1 if EVENT is a list whose elements are all integers or symbols.
6621 Such a list is not valid as an event,
6622 but it can be a Lucid-style event type list. */
6623
6624 int
6625 lucid_event_type_list_p (Lisp_Object object)
6626 {
6627 Lisp_Object tail;
6628
6629 if (! CONSP (object))
6630 return 0;
6631
6632 if (EQ (XCAR (object), Qhelp_echo)
6633 || EQ (XCAR (object), Qvertical_line)
6634 || EQ (XCAR (object), Qmode_line)
6635 || EQ (XCAR (object), Qheader_line))
6636 return 0;
6637
6638 for (tail = object; CONSP (tail); tail = XCDR (tail))
6639 {
6640 Lisp_Object elt;
6641 elt = XCAR (tail);
6642 if (! (INTEGERP (elt) || SYMBOLP (elt)))
6643 return 0;
6644 }
6645
6646 return NILP (tail);
6647 }
6648 \f
6649 /* Store into *addr a value nonzero if terminal input chars are available.
6650 Serves the purpose of ioctl (0, FIONREAD, addr)
6651 but works even if FIONREAD does not exist.
6652 (In fact, this may actually read some input.)
6653
6654 If READABLE_EVENTS_DO_TIMERS_NOW is set in FLAGS, actually run
6655 timer events that are ripe.
6656 If READABLE_EVENTS_FILTER_EVENTS is set in FLAGS, ignore internal
6657 events (FOCUS_IN_EVENT).
6658 If READABLE_EVENTS_IGNORE_SQUEEZABLES is set in FLAGS, ignore mouse
6659 movements and toolkit scroll bar thumb drags. */
6660
6661 static void
6662 get_input_pending (int *addr, int flags)
6663 {
6664 /* First of all, have we already counted some input? */
6665 *addr = (!NILP (Vquit_flag) || readable_events (flags));
6666
6667 /* If input is being read as it arrives, and we have none, there is none. */
6668 if (*addr > 0 || (interrupt_input && ! interrupts_deferred))
6669 return;
6670
6671 /* Try to read some input and see how much we get. */
6672 gobble_input (0);
6673 *addr = (!NILP (Vquit_flag) || readable_events (flags));
6674 }
6675
6676 /* Interface to read_avail_input, blocking SIGIO or SIGALRM if necessary. */
6677
6678 void
6679 gobble_input (int expected)
6680 {
6681 #ifdef SIGIO
6682 if (interrupt_input)
6683 {
6684 SIGMASKTYPE mask;
6685 mask = sigblock (sigmask (SIGIO));
6686 read_avail_input (expected);
6687 sigsetmask (mask);
6688 }
6689 else
6690 #ifdef POLL_FOR_INPUT
6691 /* XXX This condition was (read_socket_hook && !interrupt_input),
6692 but read_socket_hook is not global anymore. Let's pretend that
6693 it's always set. */
6694 if (!interrupt_input && poll_suppress_count == 0)
6695 {
6696 SIGMASKTYPE mask;
6697 mask = sigblock (sigmask (SIGALRM));
6698 read_avail_input (expected);
6699 sigsetmask (mask);
6700 }
6701 else
6702 #endif
6703 #endif
6704 read_avail_input (expected);
6705 }
6706
6707 /* Put a BUFFER_SWITCH_EVENT in the buffer
6708 so that read_key_sequence will notice the new current buffer. */
6709
6710 void
6711 record_asynch_buffer_change (void)
6712 {
6713 struct input_event event;
6714 Lisp_Object tem;
6715 EVENT_INIT (event);
6716
6717 event.kind = BUFFER_SWITCH_EVENT;
6718 event.frame_or_window = Qnil;
6719 event.arg = Qnil;
6720
6721 /* We don't need a buffer-switch event unless Emacs is waiting for input.
6722 The purpose of the event is to make read_key_sequence look up the
6723 keymaps again. If we aren't in read_key_sequence, we don't need one,
6724 and the event could cause trouble by messing up (input-pending-p).
6725 Note: Fwaiting_for_user_input_p always returns nil when async
6726 subprocesses aren't supported. */
6727 tem = Fwaiting_for_user_input_p ();
6728 if (NILP (tem))
6729 return;
6730
6731 /* Make sure no interrupt happens while storing the event. */
6732 #ifdef SIGIO
6733 if (interrupt_input)
6734 {
6735 SIGMASKTYPE mask;
6736 mask = sigblock (sigmask (SIGIO));
6737 kbd_buffer_store_event (&event);
6738 sigsetmask (mask);
6739 }
6740 else
6741 #endif
6742 {
6743 stop_polling ();
6744 kbd_buffer_store_event (&event);
6745 start_polling ();
6746 }
6747 }
6748 \f
6749 /* Read any terminal input already buffered up by the system
6750 into the kbd_buffer, but do not wait.
6751
6752 EXPECTED should be nonzero if the caller knows there is some input.
6753
6754 Returns the number of keyboard chars read, or -1 meaning
6755 this is a bad time to try to read input. */
6756
6757 static int
6758 read_avail_input (int expected)
6759 {
6760 int nread = 0;
6761 int err = 0;
6762 struct terminal *t;
6763
6764 /* Store pending user signal events, if any. */
6765 if (store_user_signal_events ())
6766 expected = 0;
6767
6768 /* Loop through the available terminals, and call their input hooks. */
6769 t = terminal_list;
6770 while (t)
6771 {
6772 struct terminal *next = t->next_terminal;
6773
6774 if (t->read_socket_hook)
6775 {
6776 int nr;
6777 struct input_event hold_quit;
6778
6779 EVENT_INIT (hold_quit);
6780 hold_quit.kind = NO_EVENT;
6781
6782 /* No need for FIONREAD or fcntl; just say don't wait. */
6783 while (nr = (*t->read_socket_hook) (t, expected, &hold_quit), nr > 0)
6784 {
6785 nread += nr;
6786 expected = 0;
6787 }
6788
6789 if (nr == -1) /* Not OK to read input now. */
6790 {
6791 err = 1;
6792 }
6793 else if (nr == -2) /* Non-transient error. */
6794 {
6795 /* The terminal device terminated; it should be closed. */
6796
6797 /* Kill Emacs if this was our last terminal. */
6798 if (!terminal_list->next_terminal)
6799 /* Formerly simply reported no input, but that
6800 sometimes led to a failure of Emacs to terminate.
6801 SIGHUP seems appropriate if we can't reach the
6802 terminal. */
6803 /* ??? Is it really right to send the signal just to
6804 this process rather than to the whole process
6805 group? Perhaps on systems with FIONREAD Emacs is
6806 alone in its group. */
6807 kill (getpid (), SIGHUP);
6808
6809 /* XXX Is calling delete_terminal safe here? It calls delete_frame. */
6810 {
6811 Lisp_Object tmp;
6812 XSETTERMINAL (tmp, t);
6813 Fdelete_terminal (tmp, Qnoelisp);
6814 }
6815 }
6816
6817 if (hold_quit.kind != NO_EVENT)
6818 kbd_buffer_store_event (&hold_quit);
6819 }
6820
6821 t = next;
6822 }
6823
6824 if (err && !nread)
6825 nread = -1;
6826
6827 frame_make_pointer_visible ();
6828
6829 return nread;
6830 }
6831
6832 static void
6833 decode_keyboard_code (struct tty_display_info *tty,
6834 struct coding_system *coding,
6835 unsigned char *buf, int nbytes)
6836 {
6837 unsigned char *src = buf;
6838 const unsigned char *p;
6839 int i;
6840
6841 if (nbytes == 0)
6842 return;
6843 if (tty->meta_key != 2)
6844 for (i = 0; i < nbytes; i++)
6845 buf[i] &= ~0x80;
6846 if (coding->carryover_bytes > 0)
6847 {
6848 src = alloca (coding->carryover_bytes + nbytes);
6849 memcpy (src, coding->carryover, coding->carryover_bytes);
6850 memcpy (src + coding->carryover_bytes, buf, nbytes);
6851 nbytes += coding->carryover_bytes;
6852 }
6853 coding->destination = alloca (nbytes * 4);
6854 coding->dst_bytes = nbytes * 4;
6855 decode_coding_c_string (coding, src, nbytes, Qnil);
6856 if (coding->produced_char == 0)
6857 return;
6858 for (i = 0, p = coding->destination; i < coding->produced_char; i++)
6859 {
6860 struct input_event event_buf;
6861
6862 EVENT_INIT (event_buf);
6863 event_buf.code = STRING_CHAR_ADVANCE (p);
6864 event_buf.kind =
6865 (ASCII_CHAR_P (event_buf.code)
6866 ? ASCII_KEYSTROKE_EVENT : MULTIBYTE_CHAR_KEYSTROKE_EVENT);
6867 /* See the comment in tty_read_avail_input. */
6868 event_buf.frame_or_window = tty->top_frame;
6869 event_buf.arg = Qnil;
6870 kbd_buffer_store_event (&event_buf);
6871 }
6872 }
6873
6874 /* This is the tty way of reading available input.
6875
6876 Note that each terminal device has its own `struct terminal' object,
6877 and so this function is called once for each individual termcap
6878 terminal. The first parameter indicates which terminal to read from. */
6879
6880 int
6881 tty_read_avail_input (struct terminal *terminal,
6882 int expected,
6883 struct input_event *hold_quit)
6884 {
6885 /* Using KBD_BUFFER_SIZE - 1 here avoids reading more than
6886 the kbd_buffer can really hold. That may prevent loss
6887 of characters on some systems when input is stuffed at us. */
6888 unsigned char cbuf[KBD_BUFFER_SIZE - 1];
6889 int n_to_read, i;
6890 struct tty_display_info *tty = terminal->display_info.tty;
6891 int nread = 0;
6892 #ifdef subprocesses
6893 int buffer_free = KBD_BUFFER_SIZE - kbd_buffer_nr_stored () - 1;
6894
6895 if (kbd_on_hold_p () || buffer_free <= 0)
6896 return 0;
6897 #endif /* subprocesses */
6898
6899 if (!terminal->name) /* Don't read from a dead terminal. */
6900 return 0;
6901
6902 if (terminal->type != output_termcap
6903 && terminal->type != output_msdos_raw)
6904 abort ();
6905
6906 /* XXX I think the following code should be moved to separate hook
6907 functions in system-dependent files. */
6908 #ifdef WINDOWSNT
6909 return 0;
6910 #else /* not WINDOWSNT */
6911 if (! tty->term_initted) /* In case we get called during bootstrap. */
6912 return 0;
6913
6914 if (! tty->input)
6915 return 0; /* The terminal is suspended. */
6916
6917 #ifdef MSDOS
6918 n_to_read = dos_keysns ();
6919 if (n_to_read == 0)
6920 return 0;
6921
6922 cbuf[0] = dos_keyread ();
6923 nread = 1;
6924
6925 #else /* not MSDOS */
6926 #ifdef HAVE_GPM
6927 if (gpm_tty == tty)
6928 {
6929 Gpm_Event event;
6930 struct input_event gpm_hold_quit;
6931 int gpm, fd = gpm_fd;
6932
6933 EVENT_INIT (gpm_hold_quit);
6934 gpm_hold_quit.kind = NO_EVENT;
6935
6936 /* gpm==1 if event received.
6937 gpm==0 if the GPM daemon has closed the connection, in which case
6938 Gpm_GetEvent closes gpm_fd and clears it to -1, which is why
6939 we save it in `fd' so close_gpm can remove it from the
6940 select masks.
6941 gpm==-1 if a protocol error or EWOULDBLOCK; the latter is normal. */
6942 while (gpm = Gpm_GetEvent (&event), gpm == 1) {
6943 nread += handle_one_term_event (tty, &event, &gpm_hold_quit);
6944 }
6945 if (gpm == 0)
6946 /* Presumably the GPM daemon has closed the connection. */
6947 close_gpm (fd);
6948 if (gpm_hold_quit.kind != NO_EVENT)
6949 kbd_buffer_store_event (&gpm_hold_quit);
6950 if (nread)
6951 return nread;
6952 }
6953 #endif /* HAVE_GPM */
6954
6955 /* Determine how many characters we should *try* to read. */
6956 #ifdef FIONREAD
6957 /* Find out how much input is available. */
6958 if (ioctl (fileno (tty->input), FIONREAD, &n_to_read) < 0)
6959 {
6960 if (! noninteractive)
6961 return -2; /* Close this terminal. */
6962 else
6963 n_to_read = 0;
6964 }
6965 if (n_to_read == 0)
6966 return 0;
6967 if (n_to_read > sizeof cbuf)
6968 n_to_read = sizeof cbuf;
6969 #else /* no FIONREAD */
6970 #if defined (USG) || defined(CYGWIN)
6971 /* Read some input if available, but don't wait. */
6972 n_to_read = sizeof cbuf;
6973 fcntl (fileno (tty->input), F_SETFL, O_NDELAY);
6974 #else
6975 you lose;
6976 #endif
6977 #endif
6978
6979 #ifdef subprocesses
6980 /* Don't read more than we can store. */
6981 if (n_to_read > buffer_free)
6982 n_to_read = buffer_free;
6983 #endif /* subprocesses */
6984
6985 /* Now read; for one reason or another, this will not block.
6986 NREAD is set to the number of chars read. */
6987 do
6988 {
6989 nread = emacs_read (fileno (tty->input), (char *) cbuf, n_to_read);
6990 /* POSIX infers that processes which are not in the session leader's
6991 process group won't get SIGHUP's at logout time. BSDI adheres to
6992 this part standard and returns -1 from read (0) with errno==EIO
6993 when the control tty is taken away.
6994 Jeffrey Honig <jch@bsdi.com> says this is generally safe. */
6995 if (nread == -1 && errno == EIO)
6996 return -2; /* Close this terminal. */
6997 #if defined (AIX) && defined (_BSD)
6998 /* The kernel sometimes fails to deliver SIGHUP for ptys.
6999 This looks incorrect, but it isn't, because _BSD causes
7000 O_NDELAY to be defined in fcntl.h as O_NONBLOCK,
7001 and that causes a value other than 0 when there is no input. */
7002 if (nread == 0)
7003 return -2; /* Close this terminal. */
7004 #endif
7005 }
7006 while (
7007 /* We used to retry the read if it was interrupted.
7008 But this does the wrong thing when O_NDELAY causes
7009 an EAGAIN error. Does anybody know of a situation
7010 where a retry is actually needed? */
7011 #if 0
7012 nread < 0 && (errno == EAGAIN
7013 #ifdef EFAULT
7014 || errno == EFAULT
7015 #endif
7016 #ifdef EBADSLT
7017 || errno == EBADSLT
7018 #endif
7019 )
7020 #else
7021 0
7022 #endif
7023 );
7024
7025 #ifndef FIONREAD
7026 #if defined (USG) || defined (CYGWIN)
7027 fcntl (fileno (tty->input), F_SETFL, 0);
7028 #endif /* USG or CYGWIN */
7029 #endif /* no FIONREAD */
7030
7031 if (nread <= 0)
7032 return nread;
7033
7034 #endif /* not MSDOS */
7035 #endif /* not WINDOWSNT */
7036
7037 if (TERMINAL_KEYBOARD_CODING (terminal)->common_flags
7038 & CODING_REQUIRE_DECODING_MASK)
7039 {
7040 struct coding_system *coding = TERMINAL_KEYBOARD_CODING (terminal);
7041 int from;
7042
7043 /* Decode the key sequence except for those with meta
7044 modifiers. */
7045 for (i = from = 0; ; i++)
7046 if (i == nread || (tty->meta_key == 1 && (cbuf[i] & 0x80)))
7047 {
7048 struct input_event buf;
7049
7050 decode_keyboard_code (tty, coding, cbuf + from, i - from);
7051 if (i == nread)
7052 break;
7053
7054 EVENT_INIT (buf);
7055 buf.kind = ASCII_KEYSTROKE_EVENT;
7056 buf.modifiers = meta_modifier;
7057 buf.code = cbuf[i] & ~0x80;
7058 /* See the comment below. */
7059 buf.frame_or_window = tty->top_frame;
7060 buf.arg = Qnil;
7061 kbd_buffer_store_event (&buf);
7062 from = i + 1;
7063 }
7064 return nread;
7065 }
7066
7067 for (i = 0; i < nread; i++)
7068 {
7069 struct input_event buf;
7070 EVENT_INIT (buf);
7071 buf.kind = ASCII_KEYSTROKE_EVENT;
7072 buf.modifiers = 0;
7073 if (tty->meta_key == 1 && (cbuf[i] & 0x80))
7074 buf.modifiers = meta_modifier;
7075 if (tty->meta_key != 2)
7076 cbuf[i] &= ~0x80;
7077
7078 buf.code = cbuf[i];
7079 /* Set the frame corresponding to the active tty. Note that the
7080 value of selected_frame is not reliable here, redisplay tends
7081 to temporarily change it. */
7082 buf.frame_or_window = tty->top_frame;
7083 buf.arg = Qnil;
7084
7085 kbd_buffer_store_event (&buf);
7086 /* Don't look at input that follows a C-g too closely.
7087 This reduces lossage due to autorepeat on C-g. */
7088 if (buf.kind == ASCII_KEYSTROKE_EVENT
7089 && buf.code == quit_char)
7090 break;
7091 }
7092
7093 return nread;
7094 }
7095 \f
7096 static void
7097 handle_async_input (void)
7098 {
7099 interrupt_input_pending = 0;
7100 #ifdef SYNC_INPUT
7101 pending_signals = pending_atimers;
7102 #endif
7103 /* Tell ns_read_socket() it is being called asynchronously so it can avoid
7104 doing anything dangerous. */
7105 #ifdef HAVE_NS
7106 ++handling_signal;
7107 #endif
7108 while (1)
7109 {
7110 int nread;
7111 nread = read_avail_input (1);
7112 /* -1 means it's not ok to read the input now.
7113 UNBLOCK_INPUT will read it later; now, avoid infinite loop.
7114 0 means there was no keyboard input available. */
7115 if (nread <= 0)
7116 break;
7117 }
7118 #ifdef HAVE_NS
7119 --handling_signal;
7120 #endif
7121 }
7122
7123 void
7124 process_pending_signals (void)
7125 {
7126 if (interrupt_input_pending)
7127 handle_async_input ();
7128 do_pending_atimers ();
7129 }
7130
7131 #ifdef SIGIO /* for entire page */
7132 /* Note SIGIO has been undef'd if FIONREAD is missing. */
7133
7134 static void
7135 input_available_signal (int signo)
7136 {
7137 /* Must preserve main program's value of errno. */
7138 int old_errno = errno;
7139 SIGNAL_THREAD_CHECK (signo);
7140
7141 #ifdef SYNC_INPUT
7142 interrupt_input_pending = 1;
7143 pending_signals = 1;
7144 #endif
7145
7146 if (input_available_clear_time)
7147 EMACS_SET_SECS_USECS (*input_available_clear_time, 0, 0);
7148
7149 #ifndef SYNC_INPUT
7150 handle_async_input ();
7151 #endif
7152
7153 errno = old_errno;
7154 }
7155 #endif /* SIGIO */
7156
7157 /* Send ourselves a SIGIO.
7158
7159 This function exists so that the UNBLOCK_INPUT macro in
7160 blockinput.h can have some way to take care of input we put off
7161 dealing with, without assuming that every file which uses
7162 UNBLOCK_INPUT also has #included the files necessary to get SIGIO. */
7163 void
7164 reinvoke_input_signal (void)
7165 {
7166 #ifdef SIGIO
7167 handle_async_input ();
7168 #endif
7169 }
7170
7171
7172 \f
7173 /* User signal events. */
7174
7175 struct user_signal_info
7176 {
7177 /* Signal number. */
7178 int sig;
7179
7180 /* Name of the signal. */
7181 char *name;
7182
7183 /* Number of pending signals. */
7184 int npending;
7185
7186 struct user_signal_info *next;
7187 };
7188
7189 /* List of user signals. */
7190 static struct user_signal_info *user_signals = NULL;
7191
7192 void
7193 add_user_signal (int sig, const char *name)
7194 {
7195 struct user_signal_info *p;
7196
7197 for (p = user_signals; p; p = p->next)
7198 if (p->sig == sig)
7199 /* Already added. */
7200 return;
7201
7202 p = xmalloc (sizeof (struct user_signal_info));
7203 p->sig = sig;
7204 p->name = xstrdup (name);
7205 p->npending = 0;
7206 p->next = user_signals;
7207 user_signals = p;
7208
7209 signal (sig, handle_user_signal);
7210 }
7211
7212 static void
7213 handle_user_signal (int sig)
7214 {
7215 int old_errno = errno;
7216 struct user_signal_info *p;
7217
7218 SIGNAL_THREAD_CHECK (sig);
7219
7220 for (p = user_signals; p; p = p->next)
7221 if (p->sig == sig)
7222 {
7223 p->npending++;
7224 #ifdef SIGIO
7225 if (interrupt_input)
7226 kill (getpid (), SIGIO);
7227 else
7228 #endif
7229 {
7230 /* Tell wait_reading_process_output that it needs to wake
7231 up and look around. */
7232 if (input_available_clear_time)
7233 EMACS_SET_SECS_USECS (*input_available_clear_time, 0, 0);
7234 }
7235 break;
7236 }
7237
7238 errno = old_errno;
7239 }
7240
7241 static char *
7242 find_user_signal_name (int sig)
7243 {
7244 struct user_signal_info *p;
7245
7246 for (p = user_signals; p; p = p->next)
7247 if (p->sig == sig)
7248 return p->name;
7249
7250 return NULL;
7251 }
7252
7253 static int
7254 store_user_signal_events (void)
7255 {
7256 struct user_signal_info *p;
7257 struct input_event buf;
7258 int nstored = 0;
7259
7260 for (p = user_signals; p; p = p->next)
7261 if (p->npending > 0)
7262 {
7263 SIGMASKTYPE mask;
7264
7265 if (nstored == 0)
7266 {
7267 memset (&buf, 0, sizeof buf);
7268 buf.kind = USER_SIGNAL_EVENT;
7269 buf.frame_or_window = selected_frame;
7270 }
7271 nstored += p->npending;
7272
7273 mask = sigblock (sigmask (p->sig));
7274 do
7275 {
7276 buf.code = p->sig;
7277 kbd_buffer_store_event (&buf);
7278 p->npending--;
7279 }
7280 while (p->npending > 0);
7281 sigsetmask (mask);
7282 }
7283
7284 return nstored;
7285 }
7286
7287 \f
7288 static void menu_bar_item (Lisp_Object, Lisp_Object, Lisp_Object, void*);
7289 static Lisp_Object menu_bar_one_keymap_changed_items;
7290
7291 /* These variables hold the vector under construction within
7292 menu_bar_items and its subroutines, and the current index
7293 for storing into that vector. */
7294 static Lisp_Object menu_bar_items_vector;
7295 static int menu_bar_items_index;
7296
7297
7298 static const char* separator_names[] = {
7299 "space",
7300 "no-line",
7301 "single-line",
7302 "double-line",
7303 "single-dashed-line",
7304 "double-dashed-line",
7305 "shadow-etched-in",
7306 "shadow-etched-out",
7307 "shadow-etched-in-dash",
7308 "shadow-etched-out-dash",
7309 "shadow-double-etched-in",
7310 "shadow-double-etched-out",
7311 "shadow-double-etched-in-dash",
7312 "shadow-double-etched-out-dash",
7313 0,
7314 };
7315
7316 /* Return non-zero if LABEL specifies a separator. */
7317
7318 int
7319 menu_separator_name_p (const char *label)
7320 {
7321 if (!label)
7322 return 0;
7323 else if (strlen (label) > 3
7324 && strncmp (label, "--", 2) == 0
7325 && label[2] != '-')
7326 {
7327 int i;
7328 label += 2;
7329 for (i = 0; separator_names[i]; ++i)
7330 if (strcmp (label, separator_names[i]) == 0)
7331 return 1;
7332 }
7333 else
7334 {
7335 /* It's a separator if it contains only dashes. */
7336 while (*label == '-')
7337 ++label;
7338 return (*label == 0);
7339 }
7340
7341 return 0;
7342 }
7343
7344
7345 /* Return a vector of menu items for a menu bar, appropriate
7346 to the current buffer. Each item has three elements in the vector:
7347 KEY STRING MAPLIST.
7348
7349 OLD is an old vector we can optionally reuse, or nil. */
7350
7351 Lisp_Object
7352 menu_bar_items (Lisp_Object old)
7353 {
7354 /* The number of keymaps we're scanning right now, and the number of
7355 keymaps we have allocated space for. */
7356 int nmaps;
7357
7358 /* maps[0..nmaps-1] are the prefix definitions of KEYBUF[0..t-1]
7359 in the current keymaps, or nil where it is not a prefix. */
7360 Lisp_Object *maps;
7361
7362 Lisp_Object def, tail;
7363
7364 int mapno;
7365 Lisp_Object oquit;
7366
7367 /* In order to build the menus, we need to call the keymap
7368 accessors. They all call QUIT. But this function is called
7369 during redisplay, during which a quit is fatal. So inhibit
7370 quitting while building the menus.
7371 We do this instead of specbind because (1) errors will clear it anyway
7372 and (2) this avoids risk of specpdl overflow. */
7373 oquit = Vinhibit_quit;
7374 Vinhibit_quit = Qt;
7375
7376 if (!NILP (old))
7377 menu_bar_items_vector = old;
7378 else
7379 menu_bar_items_vector = Fmake_vector (make_number (24), Qnil);
7380 menu_bar_items_index = 0;
7381
7382 /* Build our list of keymaps.
7383 If we recognize a function key and replace its escape sequence in
7384 keybuf with its symbol, or if the sequence starts with a mouse
7385 click and we need to switch buffers, we jump back here to rebuild
7386 the initial keymaps from the current buffer. */
7387 {
7388 Lisp_Object *tmaps;
7389
7390 /* Should overriding-terminal-local-map and overriding-local-map apply? */
7391 if (!NILP (Voverriding_local_map_menu_flag))
7392 {
7393 /* Yes, use them (if non-nil) as well as the global map. */
7394 maps = (Lisp_Object *) alloca (3 * sizeof (maps[0]));
7395 nmaps = 0;
7396 if (!NILP (KVAR (current_kboard, Voverriding_terminal_local_map)))
7397 maps[nmaps++] = KVAR (current_kboard, Voverriding_terminal_local_map);
7398 if (!NILP (Voverriding_local_map))
7399 maps[nmaps++] = Voverriding_local_map;
7400 }
7401 else
7402 {
7403 /* No, so use major and minor mode keymaps and keymap property.
7404 Note that menu-bar bindings in the local-map and keymap
7405 properties may not work reliable, as they are only
7406 recognized when the menu-bar (or mode-line) is updated,
7407 which does not normally happen after every command. */
7408 Lisp_Object tem;
7409 int nminor;
7410 nminor = current_minor_maps (NULL, &tmaps);
7411 maps = (Lisp_Object *) alloca ((nminor + 3) * sizeof (maps[0]));
7412 nmaps = 0;
7413 if (tem = get_local_map (PT, current_buffer, Qkeymap), !NILP (tem))
7414 maps[nmaps++] = tem;
7415 memcpy (maps + nmaps, tmaps, nminor * sizeof (maps[0]));
7416 nmaps += nminor;
7417 maps[nmaps++] = get_local_map (PT, current_buffer, Qlocal_map);
7418 }
7419 maps[nmaps++] = current_global_map;
7420 }
7421
7422 /* Look up in each map the dummy prefix key `menu-bar'. */
7423
7424 for (mapno = nmaps - 1; mapno >= 0; mapno--)
7425 if (!NILP (maps[mapno]))
7426 {
7427 def = get_keymap (access_keymap (maps[mapno], Qmenu_bar, 1, 0, 1),
7428 0, 1);
7429 if (CONSP (def))
7430 {
7431 menu_bar_one_keymap_changed_items = Qnil;
7432 map_keymap (def, menu_bar_item, Qnil, NULL, 1);
7433 }
7434 }
7435
7436 /* Move to the end those items that should be at the end. */
7437
7438 for (tail = Vmenu_bar_final_items; CONSP (tail); tail = XCDR (tail))
7439 {
7440 int i;
7441 int end = menu_bar_items_index;
7442
7443 for (i = 0; i < end; i += 4)
7444 if (EQ (XCAR (tail), XVECTOR (menu_bar_items_vector)->contents[i]))
7445 {
7446 Lisp_Object tem0, tem1, tem2, tem3;
7447 /* Move the item at index I to the end,
7448 shifting all the others forward. */
7449 tem0 = XVECTOR (menu_bar_items_vector)->contents[i + 0];
7450 tem1 = XVECTOR (menu_bar_items_vector)->contents[i + 1];
7451 tem2 = XVECTOR (menu_bar_items_vector)->contents[i + 2];
7452 tem3 = XVECTOR (menu_bar_items_vector)->contents[i + 3];
7453 if (end > i + 4)
7454 memmove (&XVECTOR (menu_bar_items_vector)->contents[i],
7455 &XVECTOR (menu_bar_items_vector)->contents[i + 4],
7456 (end - i - 4) * sizeof (Lisp_Object));
7457 XVECTOR (menu_bar_items_vector)->contents[end - 4] = tem0;
7458 XVECTOR (menu_bar_items_vector)->contents[end - 3] = tem1;
7459 XVECTOR (menu_bar_items_vector)->contents[end - 2] = tem2;
7460 XVECTOR (menu_bar_items_vector)->contents[end - 1] = tem3;
7461 break;
7462 }
7463 }
7464
7465 /* Add nil, nil, nil, nil at the end. */
7466 {
7467 int i = menu_bar_items_index;
7468 if (i + 4 > XVECTOR (menu_bar_items_vector)->size)
7469 menu_bar_items_vector =
7470 larger_vector (menu_bar_items_vector, 2 * i, Qnil);
7471 /* Add this item. */
7472 XVECTOR (menu_bar_items_vector)->contents[i++] = Qnil;
7473 XVECTOR (menu_bar_items_vector)->contents[i++] = Qnil;
7474 XVECTOR (menu_bar_items_vector)->contents[i++] = Qnil;
7475 XVECTOR (menu_bar_items_vector)->contents[i++] = Qnil;
7476 menu_bar_items_index = i;
7477 }
7478
7479 Vinhibit_quit = oquit;
7480 return menu_bar_items_vector;
7481 }
7482 \f
7483 /* Add one item to menu_bar_items_vector, for KEY, ITEM_STRING and DEF.
7484 If there's already an item for KEY, add this DEF to it. */
7485
7486 Lisp_Object item_properties;
7487
7488 static void
7489 menu_bar_item (Lisp_Object key, Lisp_Object item, Lisp_Object dummy1, void *dummy2)
7490 {
7491 struct gcpro gcpro1;
7492 int i;
7493 Lisp_Object tem;
7494
7495 if (EQ (item, Qundefined))
7496 {
7497 /* If a map has an explicit `undefined' as definition,
7498 discard any previously made menu bar item. */
7499
7500 for (i = 0; i < menu_bar_items_index; i += 4)
7501 if (EQ (key, XVECTOR (menu_bar_items_vector)->contents[i]))
7502 {
7503 if (menu_bar_items_index > i + 4)
7504 memmove (&XVECTOR (menu_bar_items_vector)->contents[i],
7505 &XVECTOR (menu_bar_items_vector)->contents[i + 4],
7506 (menu_bar_items_index - i - 4) * sizeof (Lisp_Object));
7507 menu_bar_items_index -= 4;
7508 }
7509 }
7510
7511 /* If this keymap has already contributed to this KEY,
7512 don't contribute to it a second time. */
7513 tem = Fmemq (key, menu_bar_one_keymap_changed_items);
7514 if (!NILP (tem) || NILP (item))
7515 return;
7516
7517 menu_bar_one_keymap_changed_items
7518 = Fcons (key, menu_bar_one_keymap_changed_items);
7519
7520 /* We add to menu_bar_one_keymap_changed_items before doing the
7521 parse_menu_item, so that if it turns out it wasn't a menu item,
7522 it still correctly hides any further menu item. */
7523 GCPRO1 (key);
7524 i = parse_menu_item (item, 1);
7525 UNGCPRO;
7526 if (!i)
7527 return;
7528
7529 item = XVECTOR (item_properties)->contents[ITEM_PROPERTY_DEF];
7530
7531 /* Find any existing item for this KEY. */
7532 for (i = 0; i < menu_bar_items_index; i += 4)
7533 if (EQ (key, XVECTOR (menu_bar_items_vector)->contents[i]))
7534 break;
7535
7536 /* If we did not find this KEY, add it at the end. */
7537 if (i == menu_bar_items_index)
7538 {
7539 /* If vector is too small, get a bigger one. */
7540 if (i + 4 > XVECTOR (menu_bar_items_vector)->size)
7541 menu_bar_items_vector = larger_vector (menu_bar_items_vector, 2 * i, Qnil);
7542 /* Add this item. */
7543 XVECTOR (menu_bar_items_vector)->contents[i++] = key;
7544 XVECTOR (menu_bar_items_vector)->contents[i++]
7545 = XVECTOR (item_properties)->contents[ITEM_PROPERTY_NAME];
7546 XVECTOR (menu_bar_items_vector)->contents[i++] = Fcons (item, Qnil);
7547 XVECTOR (menu_bar_items_vector)->contents[i++] = make_number (0);
7548 menu_bar_items_index = i;
7549 }
7550 /* We did find an item for this KEY. Add ITEM to its list of maps. */
7551 else
7552 {
7553 Lisp_Object old;
7554 old = XVECTOR (menu_bar_items_vector)->contents[i + 2];
7555 /* If the new and the old items are not both keymaps,
7556 the lookup will only find `item'. */
7557 item = Fcons (item, KEYMAPP (item) && KEYMAPP (XCAR (old)) ? old : Qnil);
7558 XVECTOR (menu_bar_items_vector)->contents[i + 2] = item;
7559 }
7560 }
7561 \f
7562 /* This is used as the handler when calling menu_item_eval_property. */
7563 static Lisp_Object
7564 menu_item_eval_property_1 (Lisp_Object arg)
7565 {
7566 /* If we got a quit from within the menu computation,
7567 quit all the way out of it. This takes care of C-] in the debugger. */
7568 if (CONSP (arg) && EQ (XCAR (arg), Qquit))
7569 Fsignal (Qquit, Qnil);
7570
7571 return Qnil;
7572 }
7573
7574 static Lisp_Object
7575 eval_dyn (Lisp_Object form)
7576 {
7577 return Feval (form, Qnil);
7578 }
7579
7580 /* Evaluate an expression and return the result (or nil if something
7581 went wrong). Used to evaluate dynamic parts of menu items. */
7582 Lisp_Object
7583 menu_item_eval_property (Lisp_Object sexpr)
7584 {
7585 int count = SPECPDL_INDEX ();
7586 Lisp_Object val;
7587 specbind (Qinhibit_redisplay, Qt);
7588 val = internal_condition_case_1 (eval_dyn, sexpr, Qerror,
7589 menu_item_eval_property_1);
7590 return unbind_to (count, val);
7591 }
7592
7593 /* This function parses a menu item and leaves the result in the
7594 vector item_properties.
7595 ITEM is a key binding, a possible menu item.
7596 INMENUBAR is > 0 when this is considered for an entry in a menu bar
7597 top level.
7598 INMENUBAR is < 0 when this is considered for an entry in a keyboard menu.
7599 parse_menu_item returns true if the item is a menu item and false
7600 otherwise. */
7601
7602 int
7603 parse_menu_item (Lisp_Object item, int inmenubar)
7604 {
7605 Lisp_Object def, tem, item_string, start;
7606 Lisp_Object filter;
7607 Lisp_Object keyhint;
7608 int i;
7609
7610 filter = Qnil;
7611 keyhint = Qnil;
7612
7613 if (!CONSP (item))
7614 return 0;
7615
7616 /* Create item_properties vector if necessary. */
7617 if (NILP (item_properties))
7618 item_properties
7619 = Fmake_vector (make_number (ITEM_PROPERTY_ENABLE + 1), Qnil);
7620
7621 /* Initialize optional entries. */
7622 for (i = ITEM_PROPERTY_DEF; i < ITEM_PROPERTY_ENABLE; i++)
7623 ASET (item_properties, i, Qnil);
7624 ASET (item_properties, ITEM_PROPERTY_ENABLE, Qt);
7625
7626 /* Save the item here to protect it from GC. */
7627 ASET (item_properties, ITEM_PROPERTY_ITEM, item);
7628
7629 item_string = XCAR (item);
7630
7631 start = item;
7632 item = XCDR (item);
7633 if (STRINGP (item_string))
7634 {
7635 /* Old format menu item. */
7636 ASET (item_properties, ITEM_PROPERTY_NAME, item_string);
7637
7638 /* Maybe help string. */
7639 if (CONSP (item) && STRINGP (XCAR (item)))
7640 {
7641 ASET (item_properties, ITEM_PROPERTY_HELP, XCAR (item));
7642 start = item;
7643 item = XCDR (item);
7644 }
7645
7646 /* Maybe an obsolete key binding cache. */
7647 if (CONSP (item) && CONSP (XCAR (item))
7648 && (NILP (XCAR (XCAR (item)))
7649 || VECTORP (XCAR (XCAR (item)))))
7650 item = XCDR (item);
7651
7652 /* This is the real definition--the function to run. */
7653 ASET (item_properties, ITEM_PROPERTY_DEF, item);
7654
7655 /* Get enable property, if any. */
7656 if (SYMBOLP (item))
7657 {
7658 tem = Fget (item, Qmenu_enable);
7659 if (!NILP (Venable_disabled_menus_and_buttons))
7660 ASET (item_properties, ITEM_PROPERTY_ENABLE, Qt);
7661 else if (!NILP (tem))
7662 ASET (item_properties, ITEM_PROPERTY_ENABLE, tem);
7663 }
7664 }
7665 else if (EQ (item_string, Qmenu_item) && CONSP (item))
7666 {
7667 /* New format menu item. */
7668 ASET (item_properties, ITEM_PROPERTY_NAME, XCAR (item));
7669 start = XCDR (item);
7670 if (CONSP (start))
7671 {
7672 /* We have a real binding. */
7673 ASET (item_properties, ITEM_PROPERTY_DEF, XCAR (start));
7674
7675 item = XCDR (start);
7676 /* Is there an obsolete cache list with key equivalences. */
7677 if (CONSP (item) && CONSP (XCAR (item)))
7678 item = XCDR (item);
7679
7680 /* Parse properties. */
7681 while (CONSP (item) && CONSP (XCDR (item)))
7682 {
7683 tem = XCAR (item);
7684 item = XCDR (item);
7685
7686 if (EQ (tem, QCenable))
7687 {
7688 if (!NILP (Venable_disabled_menus_and_buttons))
7689 ASET (item_properties, ITEM_PROPERTY_ENABLE, Qt);
7690 else
7691 ASET (item_properties, ITEM_PROPERTY_ENABLE, XCAR (item));
7692 }
7693 else if (EQ (tem, QCvisible))
7694 {
7695 /* If got a visible property and that evaluates to nil
7696 then ignore this item. */
7697 tem = menu_item_eval_property (XCAR (item));
7698 if (NILP (tem))
7699 return 0;
7700 }
7701 else if (EQ (tem, QChelp))
7702 ASET (item_properties, ITEM_PROPERTY_HELP, XCAR (item));
7703 else if (EQ (tem, QCfilter))
7704 filter = item;
7705 else if (EQ (tem, QCkey_sequence))
7706 {
7707 tem = XCAR (item);
7708 if (SYMBOLP (tem) || STRINGP (tem) || VECTORP (tem))
7709 /* Be GC protected. Set keyhint to item instead of tem. */
7710 keyhint = item;
7711 }
7712 else if (EQ (tem, QCkeys))
7713 {
7714 tem = XCAR (item);
7715 if (CONSP (tem) || STRINGP (tem))
7716 ASET (item_properties, ITEM_PROPERTY_KEYEQ, tem);
7717 }
7718 else if (EQ (tem, QCbutton) && CONSP (XCAR (item)))
7719 {
7720 Lisp_Object type;
7721 tem = XCAR (item);
7722 type = XCAR (tem);
7723 if (EQ (type, QCtoggle) || EQ (type, QCradio))
7724 {
7725 ASET (item_properties, ITEM_PROPERTY_SELECTED,
7726 XCDR (tem));
7727 ASET (item_properties, ITEM_PROPERTY_TYPE, type);
7728 }
7729 }
7730 item = XCDR (item);
7731 }
7732 }
7733 else if (inmenubar || !NILP (start))
7734 return 0;
7735 }
7736 else
7737 return 0; /* not a menu item */
7738
7739 /* If item string is not a string, evaluate it to get string.
7740 If we don't get a string, skip this item. */
7741 item_string = AREF (item_properties, ITEM_PROPERTY_NAME);
7742 if (!(STRINGP (item_string)))
7743 {
7744 item_string = menu_item_eval_property (item_string);
7745 if (!STRINGP (item_string))
7746 return 0;
7747 ASET (item_properties, ITEM_PROPERTY_NAME, item_string);
7748 }
7749
7750 /* If got a filter apply it on definition. */
7751 def = AREF (item_properties, ITEM_PROPERTY_DEF);
7752 if (!NILP (filter))
7753 {
7754 def = menu_item_eval_property (list2 (XCAR (filter),
7755 list2 (Qquote, def)));
7756
7757 ASET (item_properties, ITEM_PROPERTY_DEF, def);
7758 }
7759
7760 /* Enable or disable selection of item. */
7761 tem = AREF (item_properties, ITEM_PROPERTY_ENABLE);
7762 if (!EQ (tem, Qt))
7763 {
7764 tem = menu_item_eval_property (tem);
7765 if (inmenubar && NILP (tem))
7766 return 0; /* Ignore disabled items in menu bar. */
7767 ASET (item_properties, ITEM_PROPERTY_ENABLE, tem);
7768 }
7769
7770 /* If we got no definition, this item is just unselectable text which
7771 is OK in a submenu but not in the menubar. */
7772 if (NILP (def))
7773 return (inmenubar ? 0 : 1);
7774
7775 /* See if this is a separate pane or a submenu. */
7776 def = AREF (item_properties, ITEM_PROPERTY_DEF);
7777 tem = get_keymap (def, 0, 1);
7778 /* For a subkeymap, just record its details and exit. */
7779 if (CONSP (tem))
7780 {
7781 ASET (item_properties, ITEM_PROPERTY_MAP, tem);
7782 ASET (item_properties, ITEM_PROPERTY_DEF, tem);
7783 return 1;
7784 }
7785
7786 /* At the top level in the menu bar, do likewise for commands also.
7787 The menu bar does not display equivalent key bindings anyway.
7788 ITEM_PROPERTY_DEF is already set up properly. */
7789 if (inmenubar > 0)
7790 return 1;
7791
7792 { /* This is a command. See if there is an equivalent key binding. */
7793 Lisp_Object keyeq = AREF (item_properties, ITEM_PROPERTY_KEYEQ);
7794
7795 /* The previous code preferred :key-sequence to :keys, so we
7796 preserve this behavior. */
7797 if (STRINGP (keyeq) && !CONSP (keyhint))
7798 keyeq = concat2 (build_string (" "), Fsubstitute_command_keys (keyeq));
7799 else
7800 {
7801 Lisp_Object prefix = keyeq;
7802 Lisp_Object keys = Qnil;
7803
7804 if (CONSP (prefix))
7805 {
7806 def = XCAR (prefix);
7807 prefix = XCDR (prefix);
7808 }
7809 else
7810 def = AREF (item_properties, ITEM_PROPERTY_DEF);
7811
7812 if (CONSP (keyhint) && !NILP (XCAR (keyhint)))
7813 {
7814 keys = XCAR (keyhint);
7815 tem = Fkey_binding (keys, Qnil, Qnil, Qnil);
7816
7817 /* We have a suggested key. Is it bound to the command? */
7818 if (NILP (tem)
7819 || (!EQ (tem, def)
7820 /* If the command is an alias for another
7821 (such as lmenu.el set it up), check if the
7822 original command matches the cached command. */
7823 && !(SYMBOLP (def) && EQ (tem, XSYMBOL (def)->function))))
7824 keys = Qnil;
7825 }
7826
7827 if (NILP (keys))
7828 keys = Fwhere_is_internal (def, Qnil, Qt, Qnil, Qnil);
7829
7830 if (!NILP (keys))
7831 {
7832 tem = Fkey_description (keys, Qnil);
7833 if (CONSP (prefix))
7834 {
7835 if (STRINGP (XCAR (prefix)))
7836 tem = concat2 (XCAR (prefix), tem);
7837 if (STRINGP (XCDR (prefix)))
7838 tem = concat2 (tem, XCDR (prefix));
7839 }
7840 keyeq = concat2 (build_string (" "), tem);
7841 /* keyeq = concat3(build_string(" ("),tem,build_string(")")); */
7842 }
7843 else
7844 keyeq = Qnil;
7845 }
7846
7847 /* If we have an equivalent key binding, use that. */
7848 ASET (item_properties, ITEM_PROPERTY_KEYEQ, keyeq);
7849 }
7850
7851 /* Include this when menu help is implemented.
7852 tem = XVECTOR (item_properties)->contents[ITEM_PROPERTY_HELP];
7853 if (!(NILP (tem) || STRINGP (tem)))
7854 {
7855 tem = menu_item_eval_property (tem);
7856 if (!STRINGP (tem))
7857 tem = Qnil;
7858 XVECTOR (item_properties)->contents[ITEM_PROPERTY_HELP] = tem;
7859 }
7860 */
7861
7862 /* Handle radio buttons or toggle boxes. */
7863 tem = AREF (item_properties, ITEM_PROPERTY_SELECTED);
7864 if (!NILP (tem))
7865 ASET (item_properties, ITEM_PROPERTY_SELECTED,
7866 menu_item_eval_property (tem));
7867
7868 return 1;
7869 }
7870
7871
7872 \f
7873 /***********************************************************************
7874 Tool-bars
7875 ***********************************************************************/
7876
7877 /* A vector holding tool bar items while they are parsed in function
7878 tool_bar_items. Each item occupies TOOL_BAR_ITEM_NSCLOTS elements
7879 in the vector. */
7880
7881 static Lisp_Object tool_bar_items_vector;
7882
7883 /* A vector holding the result of parse_tool_bar_item. Layout is like
7884 the one for a single item in tool_bar_items_vector. */
7885
7886 static Lisp_Object tool_bar_item_properties;
7887
7888 /* Next free index in tool_bar_items_vector. */
7889
7890 static int ntool_bar_items;
7891
7892 /* The symbols `:image' and `:rtl'. */
7893
7894 Lisp_Object QCimage;
7895 Lisp_Object Qrtl;
7896
7897 /* Function prototypes. */
7898
7899 static void init_tool_bar_items (Lisp_Object);
7900 static void process_tool_bar_item (Lisp_Object, Lisp_Object, Lisp_Object, void*);
7901 static int parse_tool_bar_item (Lisp_Object, Lisp_Object);
7902 static void append_tool_bar_item (void);
7903
7904
7905 /* Return a vector of tool bar items for keymaps currently in effect.
7906 Reuse vector REUSE if non-nil. Return in *NITEMS the number of
7907 tool bar items found. */
7908
7909 Lisp_Object
7910 tool_bar_items (Lisp_Object reuse, int *nitems)
7911 {
7912 Lisp_Object *maps;
7913 int nmaps, i;
7914 Lisp_Object oquit;
7915 Lisp_Object *tmaps;
7916
7917 *nitems = 0;
7918
7919 /* In order to build the menus, we need to call the keymap
7920 accessors. They all call QUIT. But this function is called
7921 during redisplay, during which a quit is fatal. So inhibit
7922 quitting while building the menus. We do this instead of
7923 specbind because (1) errors will clear it anyway and (2) this
7924 avoids risk of specpdl overflow. */
7925 oquit = Vinhibit_quit;
7926 Vinhibit_quit = Qt;
7927
7928 /* Initialize tool_bar_items_vector and protect it from GC. */
7929 init_tool_bar_items (reuse);
7930
7931 /* Build list of keymaps in maps. Set nmaps to the number of maps
7932 to process. */
7933
7934 /* Should overriding-terminal-local-map and overriding-local-map apply? */
7935 if (!NILP (Voverriding_local_map_menu_flag))
7936 {
7937 /* Yes, use them (if non-nil) as well as the global map. */
7938 maps = (Lisp_Object *) alloca (3 * sizeof (maps[0]));
7939 nmaps = 0;
7940 if (!NILP (KVAR (current_kboard, Voverriding_terminal_local_map)))
7941 maps[nmaps++] = KVAR (current_kboard, Voverriding_terminal_local_map);
7942 if (!NILP (Voverriding_local_map))
7943 maps[nmaps++] = Voverriding_local_map;
7944 }
7945 else
7946 {
7947 /* No, so use major and minor mode keymaps and keymap property.
7948 Note that tool-bar bindings in the local-map and keymap
7949 properties may not work reliable, as they are only
7950 recognized when the tool-bar (or mode-line) is updated,
7951 which does not normally happen after every command. */
7952 Lisp_Object tem;
7953 int nminor;
7954 nminor = current_minor_maps (NULL, &tmaps);
7955 maps = (Lisp_Object *) alloca ((nminor + 3) * sizeof (maps[0]));
7956 nmaps = 0;
7957 if (tem = get_local_map (PT, current_buffer, Qkeymap), !NILP (tem))
7958 maps[nmaps++] = tem;
7959 memcpy (maps + nmaps, tmaps, nminor * sizeof (maps[0]));
7960 nmaps += nminor;
7961 maps[nmaps++] = get_local_map (PT, current_buffer, Qlocal_map);
7962 }
7963
7964 /* Add global keymap at the end. */
7965 maps[nmaps++] = current_global_map;
7966
7967 /* Process maps in reverse order and look up in each map the prefix
7968 key `tool-bar'. */
7969 for (i = nmaps - 1; i >= 0; --i)
7970 if (!NILP (maps[i]))
7971 {
7972 Lisp_Object keymap;
7973
7974 keymap = get_keymap (access_keymap (maps[i], Qtool_bar, 1, 0, 1), 0, 1);
7975 if (CONSP (keymap))
7976 map_keymap (keymap, process_tool_bar_item, Qnil, NULL, 1);
7977 }
7978
7979 Vinhibit_quit = oquit;
7980 *nitems = ntool_bar_items / TOOL_BAR_ITEM_NSLOTS;
7981 return tool_bar_items_vector;
7982 }
7983
7984
7985 /* Process the definition of KEY which is DEF. */
7986
7987 static void
7988 process_tool_bar_item (Lisp_Object key, Lisp_Object def, Lisp_Object data, void *args)
7989 {
7990 int i;
7991 struct gcpro gcpro1, gcpro2;
7992
7993 /* Protect KEY and DEF from GC because parse_tool_bar_item may call
7994 eval. */
7995 GCPRO2 (key, def);
7996
7997 if (EQ (def, Qundefined))
7998 {
7999 /* If a map has an explicit `undefined' as definition,
8000 discard any previously made item. */
8001 for (i = 0; i < ntool_bar_items; i += TOOL_BAR_ITEM_NSLOTS)
8002 {
8003 Lisp_Object *v = XVECTOR (tool_bar_items_vector)->contents + i;
8004
8005 if (EQ (key, v[TOOL_BAR_ITEM_KEY]))
8006 {
8007 if (ntool_bar_items > i + TOOL_BAR_ITEM_NSLOTS)
8008 memmove (v, v + TOOL_BAR_ITEM_NSLOTS,
8009 ((ntool_bar_items - i - TOOL_BAR_ITEM_NSLOTS)
8010 * sizeof (Lisp_Object)));
8011 ntool_bar_items -= TOOL_BAR_ITEM_NSLOTS;
8012 break;
8013 }
8014 }
8015 }
8016 else if (parse_tool_bar_item (key, def))
8017 /* Append a new tool bar item to tool_bar_items_vector. Accept
8018 more than one definition for the same key. */
8019 append_tool_bar_item ();
8020
8021 UNGCPRO;
8022 }
8023
8024
8025 /* Parse a tool bar item specification ITEM for key KEY and return the
8026 result in tool_bar_item_properties. Value is zero if ITEM is
8027 invalid.
8028
8029 ITEM is a list `(menu-item CAPTION BINDING PROPS...)'.
8030
8031 CAPTION is the caption of the item, If it's not a string, it is
8032 evaluated to get a string.
8033
8034 BINDING is the tool bar item's binding. Tool-bar items with keymaps
8035 as binding are currently ignored.
8036
8037 The following properties are recognized:
8038
8039 - `:enable FORM'.
8040
8041 FORM is evaluated and specifies whether the tool bar item is
8042 enabled or disabled.
8043
8044 - `:visible FORM'
8045
8046 FORM is evaluated and specifies whether the tool bar item is visible.
8047
8048 - `:filter FUNCTION'
8049
8050 FUNCTION is invoked with one parameter `(quote BINDING)'. Its
8051 result is stored as the new binding.
8052
8053 - `:button (TYPE SELECTED)'
8054
8055 TYPE must be one of `:radio' or `:toggle'. SELECTED is evaluated
8056 and specifies whether the button is selected (pressed) or not.
8057
8058 - `:image IMAGES'
8059
8060 IMAGES is either a single image specification or a vector of four
8061 image specifications. See enum tool_bar_item_images.
8062
8063 - `:help HELP-STRING'.
8064
8065 Gives a help string to display for the tool bar item.
8066
8067 - `:label LABEL-STRING'.
8068
8069 A text label to show with the tool bar button if labels are enabled. */
8070
8071 static int
8072 parse_tool_bar_item (Lisp_Object key, Lisp_Object item)
8073 {
8074 /* Access slot with index IDX of vector tool_bar_item_properties. */
8075 #define PROP(IDX) XVECTOR (tool_bar_item_properties)->contents[IDX]
8076
8077 Lisp_Object filter = Qnil;
8078 Lisp_Object caption;
8079 int i, have_label = 0;
8080
8081 /* Defininition looks like `(menu-item CAPTION BINDING PROPS...)'.
8082 Rule out items that aren't lists, don't start with
8083 `menu-item' or whose rest following `tool-bar-item' is not a
8084 list. */
8085 if (!CONSP (item))
8086 return 0;
8087
8088 /* As an exception, allow old-style menu separators. */
8089 if (STRINGP (XCAR (item)))
8090 item = Fcons (XCAR (item), Qnil);
8091 else if (!EQ (XCAR (item), Qmenu_item)
8092 || (item = XCDR (item), !CONSP (item)))
8093 return 0;
8094
8095 /* Create tool_bar_item_properties vector if necessary. Reset it to
8096 defaults. */
8097 if (VECTORP (tool_bar_item_properties))
8098 {
8099 for (i = 0; i < TOOL_BAR_ITEM_NSLOTS; ++i)
8100 PROP (i) = Qnil;
8101 }
8102 else
8103 tool_bar_item_properties
8104 = Fmake_vector (make_number (TOOL_BAR_ITEM_NSLOTS), Qnil);
8105
8106 /* Set defaults. */
8107 PROP (TOOL_BAR_ITEM_KEY) = key;
8108 PROP (TOOL_BAR_ITEM_ENABLED_P) = Qt;
8109
8110 /* Get the caption of the item. If the caption is not a string,
8111 evaluate it to get a string. If we don't get a string, skip this
8112 item. */
8113 caption = XCAR (item);
8114 if (!STRINGP (caption))
8115 {
8116 caption = menu_item_eval_property (caption);
8117 if (!STRINGP (caption))
8118 return 0;
8119 }
8120 PROP (TOOL_BAR_ITEM_CAPTION) = caption;
8121
8122 /* If the rest following the caption is not a list, the menu item is
8123 either a separator, or invalid. */
8124 item = XCDR (item);
8125 if (!CONSP (item))
8126 {
8127 if (menu_separator_name_p (SSDATA (caption)))
8128 {
8129 PROP (TOOL_BAR_ITEM_TYPE) = Qt;
8130 #if !defined (USE_GTK) && !defined (HAVE_NS)
8131 /* If we use build_desired_tool_bar_string to render the
8132 tool bar, the separator is rendered as an image. */
8133 PROP (TOOL_BAR_ITEM_IMAGES)
8134 = menu_item_eval_property (Vtool_bar_separator_image_expression);
8135 PROP (TOOL_BAR_ITEM_ENABLED_P) = Qnil;
8136 PROP (TOOL_BAR_ITEM_SELECTED_P) = Qnil;
8137 PROP (TOOL_BAR_ITEM_CAPTION) = Qnil;
8138 #endif
8139 return 1;
8140 }
8141 return 0;
8142 }
8143
8144 /* Store the binding. */
8145 PROP (TOOL_BAR_ITEM_BINDING) = XCAR (item);
8146 item = XCDR (item);
8147
8148 /* Ignore cached key binding, if any. */
8149 if (CONSP (item) && CONSP (XCAR (item)))
8150 item = XCDR (item);
8151
8152 /* Process the rest of the properties. */
8153 for (; CONSP (item) && CONSP (XCDR (item)); item = XCDR (XCDR (item)))
8154 {
8155 Lisp_Object ikey, value;
8156
8157 ikey = XCAR (item);
8158 value = XCAR (XCDR (item));
8159
8160 if (EQ (ikey, QCenable))
8161 {
8162 /* `:enable FORM'. */
8163 if (!NILP (Venable_disabled_menus_and_buttons))
8164 PROP (TOOL_BAR_ITEM_ENABLED_P) = Qt;
8165 else
8166 PROP (TOOL_BAR_ITEM_ENABLED_P) = value;
8167 }
8168 else if (EQ (ikey, QCvisible))
8169 {
8170 /* `:visible FORM'. If got a visible property and that
8171 evaluates to nil then ignore this item. */
8172 if (NILP (menu_item_eval_property (value)))
8173 return 0;
8174 }
8175 else if (EQ (ikey, QChelp))
8176 /* `:help HELP-STRING'. */
8177 PROP (TOOL_BAR_ITEM_HELP) = value;
8178 else if (EQ (ikey, QCvert_only))
8179 /* `:vert-only t/nil'. */
8180 PROP (TOOL_BAR_ITEM_VERT_ONLY) = value;
8181 else if (EQ (ikey, QClabel))
8182 {
8183 const char *bad_label = "!!?GARBLED ITEM?!!";
8184 /* `:label LABEL-STRING'. */
8185 PROP (TOOL_BAR_ITEM_LABEL) = STRINGP (value)
8186 ? value
8187 : make_string (bad_label, strlen (bad_label));
8188 have_label = 1;
8189 }
8190 else if (EQ (ikey, QCfilter))
8191 /* ':filter FORM'. */
8192 filter = value;
8193 else if (EQ (ikey, QCbutton) && CONSP (value))
8194 {
8195 /* `:button (TYPE . SELECTED)'. */
8196 Lisp_Object type, selected;
8197
8198 type = XCAR (value);
8199 selected = XCDR (value);
8200 if (EQ (type, QCtoggle) || EQ (type, QCradio))
8201 {
8202 PROP (TOOL_BAR_ITEM_SELECTED_P) = selected;
8203 PROP (TOOL_BAR_ITEM_TYPE) = type;
8204 }
8205 }
8206 else if (EQ (ikey, QCimage)
8207 && (CONSP (value)
8208 || (VECTORP (value) && XVECTOR (value)->size == 4)))
8209 /* Value is either a single image specification or a vector
8210 of 4 such specifications for the different button states. */
8211 PROP (TOOL_BAR_ITEM_IMAGES) = value;
8212 else if (EQ (ikey, Qrtl))
8213 /* ':rtl STRING' */
8214 PROP (TOOL_BAR_ITEM_RTL_IMAGE) = value;
8215 }
8216
8217
8218 if (!have_label)
8219 {
8220 /* Try to make one from caption and key. */
8221 Lisp_Object tkey = PROP (TOOL_BAR_ITEM_KEY);
8222 Lisp_Object tcapt = PROP (TOOL_BAR_ITEM_CAPTION);
8223 const char *label = SYMBOLP (tkey) ? SSDATA (SYMBOL_NAME (tkey)) : "";
8224 const char *capt = STRINGP (tcapt) ? SSDATA (tcapt) : "";
8225 EMACS_INT max_lbl = 2 * tool_bar_max_label_size;
8226 char *buf = (char *) xmalloc (max_lbl + 1);
8227 Lisp_Object new_lbl;
8228 size_t caption_len = strlen (capt);
8229
8230 if (caption_len <= max_lbl && capt[0] != '\0')
8231 {
8232 strcpy (buf, capt);
8233 while (caption_len > 0 && buf[caption_len - 1] == '.')
8234 caption_len--;
8235 buf[caption_len] = '\0';
8236 label = capt = buf;
8237 }
8238
8239 if (strlen (label) <= max_lbl && label[0] != '\0')
8240 {
8241 int j;
8242 if (label != buf)
8243 strcpy (buf, label);
8244
8245 for (j = 0; buf[j] != '\0'; ++j)
8246 if (buf[j] == '-')
8247 buf[j] = ' ';
8248 label = buf;
8249 }
8250 else
8251 label = "";
8252
8253 new_lbl = Fupcase_initials (make_string (label, strlen (label)));
8254 if (SCHARS (new_lbl) <= tool_bar_max_label_size)
8255 PROP (TOOL_BAR_ITEM_LABEL) = new_lbl;
8256 else
8257 PROP (TOOL_BAR_ITEM_LABEL) = make_string ("", 0);
8258 free (buf);
8259 }
8260
8261 /* If got a filter apply it on binding. */
8262 if (!NILP (filter))
8263 PROP (TOOL_BAR_ITEM_BINDING)
8264 = menu_item_eval_property (list2 (filter,
8265 list2 (Qquote,
8266 PROP (TOOL_BAR_ITEM_BINDING))));
8267
8268 /* See if the binding is a keymap. Give up if it is. */
8269 if (CONSP (get_keymap (PROP (TOOL_BAR_ITEM_BINDING), 0, 1)))
8270 return 0;
8271
8272 /* Enable or disable selection of item. */
8273 if (!EQ (PROP (TOOL_BAR_ITEM_ENABLED_P), Qt))
8274 PROP (TOOL_BAR_ITEM_ENABLED_P)
8275 = menu_item_eval_property (PROP (TOOL_BAR_ITEM_ENABLED_P));
8276
8277 /* Handle radio buttons or toggle boxes. */
8278 if (!NILP (PROP (TOOL_BAR_ITEM_SELECTED_P)))
8279 PROP (TOOL_BAR_ITEM_SELECTED_P)
8280 = menu_item_eval_property (PROP (TOOL_BAR_ITEM_SELECTED_P));
8281
8282 return 1;
8283
8284 #undef PROP
8285 }
8286
8287
8288 /* Initialize tool_bar_items_vector. REUSE, if non-nil, is a vector
8289 that can be reused. */
8290
8291 static void
8292 init_tool_bar_items (Lisp_Object reuse)
8293 {
8294 if (VECTORP (reuse))
8295 tool_bar_items_vector = reuse;
8296 else
8297 tool_bar_items_vector = Fmake_vector (make_number (64), Qnil);
8298 ntool_bar_items = 0;
8299 }
8300
8301
8302 /* Append parsed tool bar item properties from
8303 tool_bar_item_properties */
8304
8305 static void
8306 append_tool_bar_item (void)
8307 {
8308 Lisp_Object *to, *from;
8309
8310 /* Enlarge tool_bar_items_vector if necessary. */
8311 if (ntool_bar_items + TOOL_BAR_ITEM_NSLOTS
8312 >= XVECTOR (tool_bar_items_vector)->size)
8313 tool_bar_items_vector
8314 = larger_vector (tool_bar_items_vector,
8315 2 * XVECTOR (tool_bar_items_vector)->size, Qnil);
8316
8317 /* Append entries from tool_bar_item_properties to the end of
8318 tool_bar_items_vector. */
8319 to = XVECTOR (tool_bar_items_vector)->contents + ntool_bar_items;
8320 from = XVECTOR (tool_bar_item_properties)->contents;
8321 memcpy (to, from, TOOL_BAR_ITEM_NSLOTS * sizeof *to);
8322 ntool_bar_items += TOOL_BAR_ITEM_NSLOTS;
8323 }
8324
8325
8326
8327
8328 \f
8329 /* Read a character using menus based on maps in the array MAPS.
8330 NMAPS is the length of MAPS. Return nil if there are no menus in the maps.
8331 Return t if we displayed a menu but the user rejected it.
8332
8333 PREV_EVENT is the previous input event, or nil if we are reading
8334 the first event of a key sequence.
8335
8336 If USED_MOUSE_MENU is non-null, then we set *USED_MOUSE_MENU to 1
8337 if we used a mouse menu to read the input, or zero otherwise. If
8338 USED_MOUSE_MENU is null, we don't dereference it.
8339
8340 The prompting is done based on the prompt-string of the map
8341 and the strings associated with various map elements.
8342
8343 This can be done with X menus or with menus put in the minibuf.
8344 These are done in different ways, depending on how the input will be read.
8345 Menus using X are done after auto-saving in read-char, getting the input
8346 event from Fx_popup_menu; menus using the minibuf use read_char recursively
8347 and do auto-saving in the inner call of read_char. */
8348
8349 static Lisp_Object
8350 read_char_x_menu_prompt (int nmaps, Lisp_Object *maps, Lisp_Object prev_event,
8351 int *used_mouse_menu)
8352 {
8353 int mapno;
8354
8355 if (used_mouse_menu)
8356 *used_mouse_menu = 0;
8357
8358 /* Use local over global Menu maps */
8359
8360 if (! menu_prompting)
8361 return Qnil;
8362
8363 /* Optionally disregard all but the global map. */
8364 if (inhibit_local_menu_bar_menus)
8365 {
8366 maps += (nmaps - 1);
8367 nmaps = 1;
8368 }
8369
8370 #ifdef HAVE_MENUS
8371 /* If we got to this point via a mouse click,
8372 use a real menu for mouse selection. */
8373 if (EVENT_HAS_PARAMETERS (prev_event)
8374 && !EQ (XCAR (prev_event), Qmenu_bar)
8375 && !EQ (XCAR (prev_event), Qtool_bar))
8376 {
8377 /* Display the menu and get the selection. */
8378 Lisp_Object *realmaps
8379 = (Lisp_Object *) alloca (nmaps * sizeof (Lisp_Object));
8380 Lisp_Object value;
8381 int nmaps1 = 0;
8382
8383 /* Use the maps that are not nil. */
8384 for (mapno = 0; mapno < nmaps; mapno++)
8385 if (!NILP (maps[mapno]))
8386 realmaps[nmaps1++] = maps[mapno];
8387
8388 value = Fx_popup_menu (prev_event, Flist (nmaps1, realmaps));
8389 if (CONSP (value))
8390 {
8391 Lisp_Object tem;
8392
8393 record_menu_key (XCAR (value));
8394
8395 /* If we got multiple events, unread all but
8396 the first.
8397 There is no way to prevent those unread events
8398 from showing up later in last_nonmenu_event.
8399 So turn symbol and integer events into lists,
8400 to indicate that they came from a mouse menu,
8401 so that when present in last_nonmenu_event
8402 they won't confuse things. */
8403 for (tem = XCDR (value); CONSP (tem); tem = XCDR (tem))
8404 {
8405 record_menu_key (XCAR (tem));
8406 if (SYMBOLP (XCAR (tem))
8407 || INTEGERP (XCAR (tem)))
8408 XSETCAR (tem, Fcons (XCAR (tem), Qdisabled));
8409 }
8410
8411 /* If we got more than one event, put all but the first
8412 onto this list to be read later.
8413 Return just the first event now. */
8414 Vunread_command_events
8415 = nconc2 (XCDR (value), Vunread_command_events);
8416 value = XCAR (value);
8417 }
8418 else if (NILP (value))
8419 value = Qt;
8420 if (used_mouse_menu)
8421 *used_mouse_menu = 1;
8422 return value;
8423 }
8424 #endif /* HAVE_MENUS */
8425 return Qnil ;
8426 }
8427
8428 /* Buffer in use so far for the minibuf prompts for menu keymaps.
8429 We make this bigger when necessary, and never free it. */
8430 static char *read_char_minibuf_menu_text;
8431 /* Size of that buffer. */
8432 static int read_char_minibuf_menu_width;
8433
8434 static Lisp_Object
8435 read_char_minibuf_menu_prompt (int commandflag, int nmaps, Lisp_Object *maps)
8436 {
8437 int mapno;
8438 register Lisp_Object name;
8439 int nlength;
8440 /* FIXME: Use the minibuffer's frame width. */
8441 int width = FRAME_COLS (SELECTED_FRAME ()) - 4;
8442 int idx = -1;
8443 int nobindings = 1;
8444 Lisp_Object rest, vector;
8445 char *menu;
8446
8447 vector = Qnil;
8448 name = Qnil;
8449
8450 if (! menu_prompting)
8451 return Qnil;
8452
8453 /* Get the menu name from the first map that has one (a prompt string). */
8454 for (mapno = 0; mapno < nmaps; mapno++)
8455 {
8456 name = Fkeymap_prompt (maps[mapno]);
8457 if (!NILP (name))
8458 break;
8459 }
8460
8461 /* If we don't have any menus, just read a character normally. */
8462 if (!STRINGP (name))
8463 return Qnil;
8464
8465 /* Make sure we have a big enough buffer for the menu text. */
8466 width = max (width, SBYTES (name));
8467 if (read_char_minibuf_menu_text == 0)
8468 {
8469 read_char_minibuf_menu_width = width + 4;
8470 read_char_minibuf_menu_text = (char *) xmalloc (width + 4);
8471 }
8472 else if (width + 4 > read_char_minibuf_menu_width)
8473 {
8474 read_char_minibuf_menu_width = width + 4;
8475 read_char_minibuf_menu_text
8476 = (char *) xrealloc (read_char_minibuf_menu_text, width + 4);
8477 }
8478 menu = read_char_minibuf_menu_text;
8479
8480 /* Prompt string always starts with map's prompt, and a space. */
8481 strcpy (menu, SSDATA (name));
8482 nlength = SBYTES (name);
8483 menu[nlength++] = ':';
8484 menu[nlength++] = ' ';
8485 menu[nlength] = 0;
8486
8487 /* Start prompting at start of first map. */
8488 mapno = 0;
8489 rest = maps[mapno];
8490
8491 /* Present the documented bindings, a line at a time. */
8492 while (1)
8493 {
8494 int notfirst = 0;
8495 int i = nlength;
8496 Lisp_Object obj;
8497 Lisp_Object orig_defn_macro;
8498
8499 /* Loop over elements of map. */
8500 while (i < width)
8501 {
8502 Lisp_Object elt;
8503
8504 /* If reached end of map, start at beginning of next map. */
8505 if (NILP (rest))
8506 {
8507 mapno++;
8508 /* At end of last map, wrap around to first map if just starting,
8509 or end this line if already have something on it. */
8510 if (mapno == nmaps)
8511 {
8512 mapno = 0;
8513 if (notfirst || nobindings) break;
8514 }
8515 rest = maps[mapno];
8516 }
8517
8518 /* Look at the next element of the map. */
8519 if (idx >= 0)
8520 elt = XVECTOR (vector)->contents[idx];
8521 else
8522 elt = Fcar_safe (rest);
8523
8524 if (idx < 0 && VECTORP (elt))
8525 {
8526 /* If we found a dense table in the keymap,
8527 advanced past it, but start scanning its contents. */
8528 rest = Fcdr_safe (rest);
8529 vector = elt;
8530 idx = 0;
8531 }
8532 else
8533 {
8534 /* An ordinary element. */
8535 Lisp_Object event, tem;
8536
8537 if (idx < 0)
8538 {
8539 event = Fcar_safe (elt); /* alist */
8540 elt = Fcdr_safe (elt);
8541 }
8542 else
8543 {
8544 XSETINT (event, idx); /* vector */
8545 }
8546
8547 /* Ignore the element if it has no prompt string. */
8548 if (INTEGERP (event) && parse_menu_item (elt, -1))
8549 {
8550 /* 1 if the char to type matches the string. */
8551 int char_matches;
8552 Lisp_Object upcased_event, downcased_event;
8553 Lisp_Object desc = Qnil;
8554 Lisp_Object s
8555 = XVECTOR (item_properties)->contents[ITEM_PROPERTY_NAME];
8556
8557 upcased_event = Fupcase (event);
8558 downcased_event = Fdowncase (event);
8559 char_matches = (XINT (upcased_event) == SREF (s, 0)
8560 || XINT (downcased_event) == SREF (s, 0));
8561 if (! char_matches)
8562 desc = Fsingle_key_description (event, Qnil);
8563
8564 #if 0 /* It is redundant to list the equivalent key bindings because
8565 the prefix is what the user has already typed. */
8566 tem
8567 = XVECTOR (item_properties)->contents[ITEM_PROPERTY_KEYEQ];
8568 if (!NILP (tem))
8569 /* Insert equivalent keybinding. */
8570 s = concat2 (s, tem);
8571 #endif
8572 tem
8573 = XVECTOR (item_properties)->contents[ITEM_PROPERTY_TYPE];
8574 if (EQ (tem, QCradio) || EQ (tem, QCtoggle))
8575 {
8576 /* Insert button prefix. */
8577 Lisp_Object selected
8578 = XVECTOR (item_properties)->contents[ITEM_PROPERTY_SELECTED];
8579 if (EQ (tem, QCradio))
8580 tem = build_string (NILP (selected) ? "(*) " : "( ) ");
8581 else
8582 tem = build_string (NILP (selected) ? "[X] " : "[ ] ");
8583 s = concat2 (tem, s);
8584 }
8585
8586
8587 /* If we have room for the prompt string, add it to this line.
8588 If this is the first on the line, always add it. */
8589 if ((SCHARS (s) + i + 2
8590 + (char_matches ? 0 : SCHARS (desc) + 3))
8591 < width
8592 || !notfirst)
8593 {
8594 int thiswidth;
8595
8596 /* Punctuate between strings. */
8597 if (notfirst)
8598 {
8599 strcpy (menu + i, ", ");
8600 i += 2;
8601 }
8602 notfirst = 1;
8603 nobindings = 0 ;
8604
8605 /* If the char to type doesn't match the string's
8606 first char, explicitly show what char to type. */
8607 if (! char_matches)
8608 {
8609 /* Add as much of string as fits. */
8610 thiswidth = SCHARS (desc);
8611 if (thiswidth + i > width)
8612 thiswidth = width - i;
8613 memcpy (menu + i, SDATA (desc), thiswidth);
8614 i += thiswidth;
8615 strcpy (menu + i, " = ");
8616 i += 3;
8617 }
8618
8619 /* Add as much of string as fits. */
8620 thiswidth = SCHARS (s);
8621 if (thiswidth + i > width)
8622 thiswidth = width - i;
8623 memcpy (menu + i, SDATA (s), thiswidth);
8624 i += thiswidth;
8625 menu[i] = 0;
8626 }
8627 else
8628 {
8629 /* If this element does not fit, end the line now,
8630 and save the element for the next line. */
8631 strcpy (menu + i, "...");
8632 break;
8633 }
8634 }
8635
8636 /* Move past this element. */
8637 if (idx >= 0 && idx + 1 >= XVECTOR (vector)->size)
8638 /* Handle reaching end of dense table. */
8639 idx = -1;
8640 if (idx >= 0)
8641 idx++;
8642 else
8643 rest = Fcdr_safe (rest);
8644 }
8645 }
8646
8647 /* Prompt with that and read response. */
8648 message2_nolog (menu, strlen (menu),
8649 ! NILP (BVAR (current_buffer, enable_multibyte_characters)));
8650
8651 /* Make believe its not a keyboard macro in case the help char
8652 is pressed. Help characters are not recorded because menu prompting
8653 is not used on replay.
8654 */
8655 orig_defn_macro = KVAR (current_kboard, defining_kbd_macro);
8656 KVAR (current_kboard, defining_kbd_macro) = Qnil;
8657 do
8658 obj = read_char (commandflag, 0, 0, Qt, 0, NULL);
8659 while (BUFFERP (obj));
8660 KVAR (current_kboard, defining_kbd_macro) = orig_defn_macro;
8661
8662 if (!INTEGERP (obj))
8663 return obj;
8664 else if (XINT (obj) == -2)
8665 return obj;
8666
8667 if (! EQ (obj, menu_prompt_more_char)
8668 && (!INTEGERP (menu_prompt_more_char)
8669 || ! EQ (obj, make_number (Ctl (XINT (menu_prompt_more_char))))))
8670 {
8671 if (!NILP (KVAR (current_kboard, defining_kbd_macro)))
8672 store_kbd_macro_char (obj);
8673 return obj;
8674 }
8675 /* Help char - go round again */
8676 }
8677 }
8678 \f
8679 /* Reading key sequences. */
8680
8681 /* Follow KEY in the maps in CURRENT[0..NMAPS-1], placing its bindings
8682 in DEFS[0..NMAPS-1]. Set NEXT[i] to DEFS[i] if DEFS[i] is a
8683 keymap, or nil otherwise. Return the index of the first keymap in
8684 which KEY has any binding, or NMAPS if no map has a binding.
8685
8686 If KEY is a meta ASCII character, treat it like meta-prefix-char
8687 followed by the corresponding non-meta character. Keymaps in
8688 CURRENT with non-prefix bindings for meta-prefix-char become nil in
8689 NEXT.
8690
8691 If KEY has no bindings in any of the CURRENT maps, NEXT is left
8692 unmodified.
8693
8694 NEXT may be the same array as CURRENT. */
8695
8696 static int
8697 follow_key (Lisp_Object key, int nmaps, Lisp_Object *current, Lisp_Object *defs,
8698 Lisp_Object *next)
8699 {
8700 int i, first_binding;
8701
8702 first_binding = nmaps;
8703 for (i = nmaps - 1; i >= 0; i--)
8704 {
8705 if (! NILP (current[i]))
8706 {
8707 defs[i] = access_keymap (current[i], key, 1, 0, 1);
8708 if (! NILP (defs[i]))
8709 first_binding = i;
8710 }
8711 else
8712 defs[i] = Qnil;
8713 }
8714
8715 /* Given the set of bindings we've found, produce the next set of maps. */
8716 if (first_binding < nmaps)
8717 for (i = 0; i < nmaps; i++)
8718 next[i] = NILP (defs[i]) ? Qnil : get_keymap (defs[i], 0, 1);
8719
8720 return first_binding;
8721 }
8722
8723 /* Structure used to keep track of partial application of key remapping
8724 such as Vfunction_key_map and Vkey_translation_map. */
8725 typedef struct keyremap
8726 {
8727 /* This is the map originally specified for this use. */
8728 Lisp_Object parent;
8729 /* This is a submap reached by looking up, in PARENT,
8730 the events from START to END. */
8731 Lisp_Object map;
8732 /* Positions [START, END) in the key sequence buffer
8733 are the key that we have scanned so far.
8734 Those events are the ones that we will replace
8735 if PAREHT maps them into a key sequence. */
8736 int start, end;
8737 } keyremap;
8738
8739 /* Lookup KEY in MAP.
8740 MAP is a keymap mapping keys to key vectors or functions.
8741 If the mapping is a function and DO_FUNCTION is non-zero, then
8742 the function is called with PROMPT as parameter and its return
8743 value is used as the return value of this function (after checking
8744 that it is indeed a vector). */
8745
8746 static Lisp_Object
8747 access_keymap_keyremap (Lisp_Object map, Lisp_Object key, Lisp_Object prompt,
8748 int do_funcall)
8749 {
8750 Lisp_Object next;
8751
8752 next = access_keymap (map, key, 1, 0, 1);
8753
8754 /* Handle symbol with autoload definition. */
8755 if (SYMBOLP (next) && !NILP (Ffboundp (next))
8756 && CONSP (XSYMBOL (next)->function)
8757 && EQ (XCAR (XSYMBOL (next)->function), Qautoload))
8758 do_autoload (XSYMBOL (next)->function, next);
8759
8760 /* Handle a symbol whose function definition is a keymap
8761 or an array. */
8762 if (SYMBOLP (next) && !NILP (Ffboundp (next))
8763 && (ARRAYP (XSYMBOL (next)->function)
8764 || KEYMAPP (XSYMBOL (next)->function)))
8765 next = XSYMBOL (next)->function;
8766
8767 /* If the keymap gives a function, not an
8768 array, then call the function with one arg and use
8769 its value instead. */
8770 if (SYMBOLP (next) && !NILP (Ffboundp (next)) && do_funcall)
8771 {
8772 Lisp_Object tem;
8773 tem = next;
8774
8775 next = call1 (next, prompt);
8776 /* If the function returned something invalid,
8777 barf--don't ignore it.
8778 (To ignore it safely, we would need to gcpro a bunch of
8779 other variables.) */
8780 if (! (VECTORP (next) || STRINGP (next)))
8781 error ("Function %s returns invalid key sequence",
8782 SSDATA (SYMBOL_NAME (tem)));
8783 }
8784 return next;
8785 }
8786
8787 /* Do one step of the key remapping used for function-key-map and
8788 key-translation-map:
8789 KEYBUF is the buffer holding the input events.
8790 BUFSIZE is its maximum size.
8791 FKEY is a pointer to the keyremap structure to use.
8792 INPUT is the index of the last element in KEYBUF.
8793 DOIT if non-zero says that the remapping can actually take place.
8794 DIFF is used to return the number of keys added/removed by the remapping.
8795 PARENT is the root of the keymap.
8796 PROMPT is the prompt to use if the remapping happens through a function.
8797 The return value is non-zero if the remapping actually took place. */
8798
8799 static int
8800 keyremap_step (Lisp_Object *keybuf, size_t bufsize, volatile keyremap *fkey,
8801 int input, int doit, int *diff, Lisp_Object prompt)
8802 {
8803 Lisp_Object next, key;
8804
8805 key = keybuf[fkey->end++];
8806
8807 if (KEYMAPP (fkey->parent))
8808 next = access_keymap_keyremap (fkey->map, key, prompt, doit);
8809 else
8810 next = Qnil;
8811
8812 /* If keybuf[fkey->start..fkey->end] is bound in the
8813 map and we're in a position to do the key remapping, replace it with
8814 the binding and restart with fkey->start at the end. */
8815 if ((VECTORP (next) || STRINGP (next)) && doit)
8816 {
8817 int len = XFASTINT (Flength (next));
8818 int i;
8819
8820 *diff = len - (fkey->end - fkey->start);
8821
8822 if (input + *diff >= bufsize)
8823 error ("Key sequence too long");
8824
8825 /* Shift the keys that follow fkey->end. */
8826 if (*diff < 0)
8827 for (i = fkey->end; i < input; i++)
8828 keybuf[i + *diff] = keybuf[i];
8829 else if (*diff > 0)
8830 for (i = input - 1; i >= fkey->end; i--)
8831 keybuf[i + *diff] = keybuf[i];
8832 /* Overwrite the old keys with the new ones. */
8833 for (i = 0; i < len; i++)
8834 keybuf[fkey->start + i]
8835 = Faref (next, make_number (i));
8836
8837 fkey->start = fkey->end += *diff;
8838 fkey->map = fkey->parent;
8839
8840 return 1;
8841 }
8842
8843 fkey->map = get_keymap (next, 0, 1);
8844
8845 /* If we no longer have a bound suffix, try a new position for
8846 fkey->start. */
8847 if (!CONSP (fkey->map))
8848 {
8849 fkey->end = ++fkey->start;
8850 fkey->map = fkey->parent;
8851 }
8852 return 0;
8853 }
8854
8855 /* Read a sequence of keys that ends with a non prefix character,
8856 storing it in KEYBUF, a buffer of size BUFSIZE.
8857 Prompt with PROMPT.
8858 Return the length of the key sequence stored.
8859 Return -1 if the user rejected a command menu.
8860
8861 Echo starting immediately unless `prompt' is 0.
8862
8863 Where a key sequence ends depends on the currently active keymaps.
8864 These include any minor mode keymaps active in the current buffer,
8865 the current buffer's local map, and the global map.
8866
8867 If a key sequence has no other bindings, we check Vfunction_key_map
8868 to see if some trailing subsequence might be the beginning of a
8869 function key's sequence. If so, we try to read the whole function
8870 key, and substitute its symbolic name into the key sequence.
8871
8872 We ignore unbound `down-' mouse clicks. We turn unbound `drag-' and
8873 `double-' events into similar click events, if that would make them
8874 bound. We try to turn `triple-' events first into `double-' events,
8875 then into clicks.
8876
8877 If we get a mouse click in a mode line, vertical divider, or other
8878 non-text area, we treat the click as if it were prefixed by the
8879 symbol denoting that area - `mode-line', `vertical-line', or
8880 whatever.
8881
8882 If the sequence starts with a mouse click, we read the key sequence
8883 with respect to the buffer clicked on, not the current buffer.
8884
8885 If the user switches frames in the midst of a key sequence, we put
8886 off the switch-frame event until later; the next call to
8887 read_char will return it.
8888
8889 If FIX_CURRENT_BUFFER is nonzero, we restore current_buffer
8890 from the selected window's buffer. */
8891
8892 static int
8893 read_key_sequence (Lisp_Object *keybuf, size_t bufsize, Lisp_Object prompt,
8894 int dont_downcase_last, int can_return_switch_frame,
8895 int fix_current_buffer)
8896 {
8897 Lisp_Object from_string;
8898 int count = SPECPDL_INDEX ();
8899
8900 /* How many keys there are in the current key sequence. */
8901 int t;
8902
8903 /* The length of the echo buffer when we started reading, and
8904 the length of this_command_keys when we started reading. */
8905 int echo_start IF_LINT (= 0);
8906 int keys_start;
8907
8908 /* The number of keymaps we're scanning right now, and the number of
8909 keymaps we have allocated space for. */
8910 int nmaps;
8911 int nmaps_allocated = 0;
8912
8913 /* defs[0..nmaps-1] are the definitions of KEYBUF[0..t-1] in
8914 the current keymaps. */
8915 Lisp_Object *defs = NULL;
8916
8917 /* submaps[0..nmaps-1] are the prefix definitions of KEYBUF[0..t-1]
8918 in the current keymaps, or nil where it is not a prefix. */
8919 Lisp_Object *submaps = NULL;
8920
8921 /* The local map to start out with at start of key sequence. */
8922 Lisp_Object orig_local_map;
8923
8924 /* The map from the `keymap' property to start out with at start of
8925 key sequence. */
8926 Lisp_Object orig_keymap;
8927
8928 /* 1 if we have already considered switching to the local-map property
8929 of the place where a mouse click occurred. */
8930 int localized_local_map = 0;
8931
8932 /* The index in submaps[] of the first keymap that has a binding for
8933 this key sequence. In other words, the lowest i such that
8934 submaps[i] is non-nil. */
8935 int first_binding;
8936 /* Index of the first key that has no binding.
8937 It is useless to try fkey.start larger than that. */
8938 int first_unbound;
8939
8940 /* If t < mock_input, then KEYBUF[t] should be read as the next
8941 input key.
8942
8943 We use this to recover after recognizing a function key. Once we
8944 realize that a suffix of the current key sequence is actually a
8945 function key's escape sequence, we replace the suffix with the
8946 function key's binding from Vfunction_key_map. Now keybuf
8947 contains a new and different key sequence, so the echo area,
8948 this_command_keys, and the submaps and defs arrays are wrong. In
8949 this situation, we set mock_input to t, set t to 0, and jump to
8950 restart_sequence; the loop will read keys from keybuf up until
8951 mock_input, thus rebuilding the state; and then it will resume
8952 reading characters from the keyboard. */
8953 int mock_input = 0;
8954
8955 /* If the sequence is unbound in submaps[], then
8956 keybuf[fkey.start..fkey.end-1] is a prefix in Vfunction_key_map,
8957 and fkey.map is its binding.
8958
8959 These might be > t, indicating that all function key scanning
8960 should hold off until t reaches them. We do this when we've just
8961 recognized a function key, to avoid searching for the function
8962 key's again in Vfunction_key_map. */
8963 keyremap fkey;
8964
8965 /* Likewise, for key_translation_map and input-decode-map. */
8966 keyremap keytran, indec;
8967
8968 /* Non-zero if we are trying to map a key by changing an upper-case
8969 letter to lower case, or a shifted function key to an unshifted
8970 one. */
8971 int shift_translated = 0;
8972
8973 /* If we receive a `switch-frame' or `select-window' event in the middle of
8974 a key sequence, we put it off for later.
8975 While we're reading, we keep the event here. */
8976 Lisp_Object delayed_switch_frame;
8977
8978 /* See the comment below... */
8979 #if defined (GOBBLE_FIRST_EVENT)
8980 Lisp_Object first_event;
8981 #endif
8982
8983 Lisp_Object original_uppercase IF_LINT (= Qnil);
8984 int original_uppercase_position = -1;
8985
8986 /* Gets around Microsoft compiler limitations. */
8987 int dummyflag = 0;
8988
8989 struct buffer *starting_buffer;
8990
8991 /* List of events for which a fake prefix key has been generated. */
8992 Lisp_Object fake_prefixed_keys = Qnil;
8993
8994 #if defined (GOBBLE_FIRST_EVENT)
8995 int junk;
8996 #endif
8997
8998 struct gcpro outer_gcpro1;
8999
9000 GCPRO1_VAR (fake_prefixed_keys, outer_gcpro);
9001 raw_keybuf_count = 0;
9002
9003 last_nonmenu_event = Qnil;
9004
9005 delayed_switch_frame = Qnil;
9006
9007 if (INTERACTIVE)
9008 {
9009 if (!NILP (prompt))
9010 {
9011 /* Install the string STR as the beginning of the string of
9012 echoing, so that it serves as a prompt for the next
9013 character. */
9014 KVAR (current_kboard, echo_string) = prompt;
9015 current_kboard->echo_after_prompt = SCHARS (prompt);
9016 echo_now ();
9017 }
9018 else if (cursor_in_echo_area
9019 && (FLOATP (Vecho_keystrokes) || INTEGERP (Vecho_keystrokes))
9020 && NILP (Fzerop (Vecho_keystrokes)))
9021 /* This doesn't put in a dash if the echo buffer is empty, so
9022 you don't always see a dash hanging out in the minibuffer. */
9023 echo_dash ();
9024 }
9025
9026 /* Record the initial state of the echo area and this_command_keys;
9027 we will need to restore them if we replay a key sequence. */
9028 if (INTERACTIVE)
9029 echo_start = echo_length ();
9030 keys_start = this_command_key_count;
9031 this_single_command_key_start = keys_start;
9032
9033 #if defined (GOBBLE_FIRST_EVENT)
9034 /* This doesn't quite work, because some of the things that read_char
9035 does cannot safely be bypassed. It seems too risky to try to make
9036 this work right. */
9037
9038 /* Read the first char of the sequence specially, before setting
9039 up any keymaps, in case a filter runs and switches buffers on us. */
9040 first_event = read_char (NILP (prompt), 0, submaps, last_nonmenu_event,
9041 &junk, NULL);
9042 #endif /* GOBBLE_FIRST_EVENT */
9043
9044 orig_local_map = get_local_map (PT, current_buffer, Qlocal_map);
9045 orig_keymap = get_local_map (PT, current_buffer, Qkeymap);
9046 from_string = Qnil;
9047
9048 /* We jump here when we need to reinitialize fkey and keytran; this
9049 happens if we switch keyboards between rescans. */
9050 replay_entire_sequence:
9051
9052 indec.map = indec.parent = KVAR (current_kboard, Vinput_decode_map);
9053 fkey.map = fkey.parent = KVAR (current_kboard, Vlocal_function_key_map);
9054 keytran.map = keytran.parent = Vkey_translation_map;
9055 indec.start = indec.end = 0;
9056 fkey.start = fkey.end = 0;
9057 keytran.start = keytran.end = 0;
9058
9059 /* We jump here when the key sequence has been thoroughly changed, and
9060 we need to rescan it starting from the beginning. When we jump here,
9061 keybuf[0..mock_input] holds the sequence we should reread. */
9062 replay_sequence:
9063
9064 starting_buffer = current_buffer;
9065 first_unbound = bufsize + 1;
9066
9067 /* Build our list of keymaps.
9068 If we recognize a function key and replace its escape sequence in
9069 keybuf with its symbol, or if the sequence starts with a mouse
9070 click and we need to switch buffers, we jump back here to rebuild
9071 the initial keymaps from the current buffer. */
9072 nmaps = 0;
9073
9074 if (!NILP (KVAR (current_kboard, Voverriding_terminal_local_map)))
9075 {
9076 if (2 > nmaps_allocated)
9077 {
9078 submaps = (Lisp_Object *) alloca (2 * sizeof (submaps[0]));
9079 defs = (Lisp_Object *) alloca (2 * sizeof (defs[0]));
9080 nmaps_allocated = 2;
9081 }
9082 submaps[nmaps++] = KVAR (current_kboard, Voverriding_terminal_local_map);
9083 }
9084 else if (!NILP (Voverriding_local_map))
9085 {
9086 if (2 > nmaps_allocated)
9087 {
9088 submaps = (Lisp_Object *) alloca (2 * sizeof (submaps[0]));
9089 defs = (Lisp_Object *) alloca (2 * sizeof (defs[0]));
9090 nmaps_allocated = 2;
9091 }
9092 submaps[nmaps++] = Voverriding_local_map;
9093 }
9094 else
9095 {
9096 int nminor;
9097 int total;
9098 Lisp_Object *maps;
9099
9100 nminor = current_minor_maps (0, &maps);
9101 total = nminor + (!NILP (orig_keymap) ? 3 : 2);
9102
9103 if (total > nmaps_allocated)
9104 {
9105 submaps = (Lisp_Object *) alloca (total * sizeof (submaps[0]));
9106 defs = (Lisp_Object *) alloca (total * sizeof (defs[0]));
9107 nmaps_allocated = total;
9108 }
9109
9110 if (!NILP (orig_keymap))
9111 submaps[nmaps++] = orig_keymap;
9112
9113 memcpy (submaps + nmaps, maps, nminor * sizeof (submaps[0]));
9114
9115 nmaps += nminor;
9116
9117 submaps[nmaps++] = orig_local_map;
9118 }
9119 submaps[nmaps++] = current_global_map;
9120
9121 /* Find an accurate initial value for first_binding. */
9122 for (first_binding = 0; first_binding < nmaps; first_binding++)
9123 if (! NILP (submaps[first_binding]))
9124 break;
9125
9126 /* Start from the beginning in keybuf. */
9127 t = 0;
9128
9129 /* These are no-ops the first time through, but if we restart, they
9130 revert the echo area and this_command_keys to their original state. */
9131 this_command_key_count = keys_start;
9132 if (INTERACTIVE && t < mock_input)
9133 echo_truncate (echo_start);
9134
9135 /* If the best binding for the current key sequence is a keymap, or
9136 we may be looking at a function key's escape sequence, keep on
9137 reading. */
9138 while (first_binding < nmaps
9139 /* Keep reading as long as there's a prefix binding. */
9140 ? !NILP (submaps[first_binding])
9141 /* Don't return in the middle of a possible function key sequence,
9142 if the only bindings we found were via case conversion.
9143 Thus, if ESC O a has a function-key-map translation
9144 and ESC o has a binding, don't return after ESC O,
9145 so that we can translate ESC O plus the next character. */
9146 : (/* indec.start < t || fkey.start < t || */ keytran.start < t))
9147 {
9148 Lisp_Object key;
9149 int used_mouse_menu = 0;
9150
9151 /* Where the last real key started. If we need to throw away a
9152 key that has expanded into more than one element of keybuf
9153 (say, a mouse click on the mode line which is being treated
9154 as [mode-line (mouse-...)], then we backtrack to this point
9155 of keybuf. */
9156 int last_real_key_start;
9157
9158 /* These variables are analogous to echo_start and keys_start;
9159 while those allow us to restart the entire key sequence,
9160 echo_local_start and keys_local_start allow us to throw away
9161 just one key. */
9162 int echo_local_start IF_LINT (= 0);
9163 int keys_local_start, local_first_binding;
9164
9165 eassert (indec.end == t || (indec.end > t && indec.end <= mock_input));
9166 eassert (indec.start <= indec.end);
9167 eassert (fkey.start <= fkey.end);
9168 eassert (keytran.start <= keytran.end);
9169 /* key-translation-map is applied *after* function-key-map
9170 which is itself applied *after* input-decode-map. */
9171 eassert (fkey.end <= indec.start);
9172 eassert (keytran.end <= fkey.start);
9173
9174 if (/* first_unbound < indec.start && first_unbound < fkey.start && */
9175 first_unbound < keytran.start)
9176 { /* The prefix upto first_unbound has no binding and has
9177 no translation left to do either, so we know it's unbound.
9178 If we don't stop now, we risk staying here indefinitely
9179 (if the user keeps entering fkey or keytran prefixes
9180 like C-c ESC ESC ESC ESC ...) */
9181 int i;
9182 for (i = first_unbound + 1; i < t; i++)
9183 keybuf[i - first_unbound - 1] = keybuf[i];
9184 mock_input = t - first_unbound - 1;
9185 indec.end = indec.start -= first_unbound + 1;
9186 indec.map = indec.parent;
9187 fkey.end = fkey.start -= first_unbound + 1;
9188 fkey.map = fkey.parent;
9189 keytran.end = keytran.start -= first_unbound + 1;
9190 keytran.map = keytran.parent;
9191 goto replay_sequence;
9192 }
9193
9194 if (t >= bufsize)
9195 error ("Key sequence too long");
9196
9197 if (INTERACTIVE)
9198 echo_local_start = echo_length ();
9199 keys_local_start = this_command_key_count;
9200 local_first_binding = first_binding;
9201
9202 replay_key:
9203 /* These are no-ops, unless we throw away a keystroke below and
9204 jumped back up to replay_key; in that case, these restore the
9205 variables to their original state, allowing us to replay the
9206 loop. */
9207 if (INTERACTIVE && t < mock_input)
9208 echo_truncate (echo_local_start);
9209 this_command_key_count = keys_local_start;
9210 first_binding = local_first_binding;
9211
9212 /* By default, assume each event is "real". */
9213 last_real_key_start = t;
9214
9215 /* Does mock_input indicate that we are re-reading a key sequence? */
9216 if (t < mock_input)
9217 {
9218 key = keybuf[t];
9219 add_command_key (key);
9220 if ((FLOATP (Vecho_keystrokes) || INTEGERP (Vecho_keystrokes))
9221 && NILP (Fzerop (Vecho_keystrokes)))
9222 echo_char (key);
9223 }
9224
9225 /* If not, we should actually read a character. */
9226 else
9227 {
9228 {
9229 KBOARD *interrupted_kboard = current_kboard;
9230 struct frame *interrupted_frame = SELECTED_FRAME ();
9231 key = read_char (NILP (prompt), nmaps,
9232 (Lisp_Object *) submaps, last_nonmenu_event,
9233 &used_mouse_menu, NULL);
9234 if ((INTEGERP (key) && XINT (key) == -2) /* wrong_kboard_jmpbuf */
9235 /* When switching to a new tty (with a new keyboard),
9236 read_char returns the new buffer, rather than -2
9237 (Bug#5095). This is because `terminal-init-xterm'
9238 calls read-char, which eats the wrong_kboard_jmpbuf
9239 return. Any better way to fix this? -- cyd */
9240 || (interrupted_kboard != current_kboard))
9241 {
9242 int found = 0;
9243 struct kboard *k;
9244
9245 for (k = all_kboards; k; k = k->next_kboard)
9246 if (k == interrupted_kboard)
9247 found = 1;
9248
9249 if (!found)
9250 {
9251 /* Don't touch interrupted_kboard when it's been
9252 deleted. */
9253 delayed_switch_frame = Qnil;
9254 goto replay_entire_sequence;
9255 }
9256
9257 if (!NILP (delayed_switch_frame))
9258 {
9259 KVAR (interrupted_kboard, kbd_queue)
9260 = Fcons (delayed_switch_frame,
9261 KVAR (interrupted_kboard, kbd_queue));
9262 delayed_switch_frame = Qnil;
9263 }
9264
9265 while (t > 0)
9266 KVAR (interrupted_kboard, kbd_queue)
9267 = Fcons (keybuf[--t], KVAR (interrupted_kboard, kbd_queue));
9268
9269 /* If the side queue is non-empty, ensure it begins with a
9270 switch-frame, so we'll replay it in the right context. */
9271 if (CONSP (KVAR (interrupted_kboard, kbd_queue))
9272 && (key = XCAR (KVAR (interrupted_kboard, kbd_queue)),
9273 !(EVENT_HAS_PARAMETERS (key)
9274 && EQ (EVENT_HEAD_KIND (EVENT_HEAD (key)),
9275 Qswitch_frame))))
9276 {
9277 Lisp_Object frame;
9278 XSETFRAME (frame, interrupted_frame);
9279 KVAR (interrupted_kboard, kbd_queue)
9280 = Fcons (make_lispy_switch_frame (frame),
9281 KVAR (interrupted_kboard, kbd_queue));
9282 }
9283 mock_input = 0;
9284 orig_local_map = get_local_map (PT, current_buffer, Qlocal_map);
9285 orig_keymap = get_local_map (PT, current_buffer, Qkeymap);
9286 goto replay_entire_sequence;
9287 }
9288 }
9289
9290 /* read_char returns t when it shows a menu and the user rejects it.
9291 Just return -1. */
9292 if (EQ (key, Qt))
9293 {
9294 unbind_to (count, Qnil);
9295 UNGCPRO_VAR (outer_gcpro);
9296 return -1;
9297 }
9298
9299 /* read_char returns -1 at the end of a macro.
9300 Emacs 18 handles this by returning immediately with a
9301 zero, so that's what we'll do. */
9302 if (INTEGERP (key) && XINT (key) == -1)
9303 {
9304 t = 0;
9305 /* The Microsoft C compiler can't handle the goto that
9306 would go here. */
9307 dummyflag = 1;
9308 break;
9309 }
9310
9311 /* If the current buffer has been changed from under us, the
9312 keymap may have changed, so replay the sequence. */
9313 if (BUFFERP (key))
9314 {
9315 timer_resume_idle ();
9316
9317 mock_input = t;
9318 /* Reset the current buffer from the selected window
9319 in case something changed the former and not the latter.
9320 This is to be more consistent with the behavior
9321 of the command_loop_1. */
9322 if (fix_current_buffer)
9323 {
9324 if (! FRAME_LIVE_P (XFRAME (selected_frame)))
9325 Fkill_emacs (Qnil);
9326 if (XBUFFER (XWINDOW (selected_window)->buffer) != current_buffer)
9327 Fset_buffer (XWINDOW (selected_window)->buffer);
9328 }
9329
9330 orig_local_map = get_local_map (PT, current_buffer, Qlocal_map);
9331 orig_keymap = get_local_map (PT, current_buffer, Qkeymap);
9332 goto replay_sequence;
9333 }
9334
9335 /* If we have a quit that was typed in another frame, and
9336 quit_throw_to_read_char switched buffers,
9337 replay to get the right keymap. */
9338 if (INTEGERP (key)
9339 && XINT (key) == quit_char
9340 && current_buffer != starting_buffer)
9341 {
9342 GROW_RAW_KEYBUF;
9343 XVECTOR (raw_keybuf)->contents[raw_keybuf_count++] = key;
9344 keybuf[t++] = key;
9345 mock_input = t;
9346 Vquit_flag = Qnil;
9347 orig_local_map = get_local_map (PT, current_buffer, Qlocal_map);
9348 orig_keymap = get_local_map (PT, current_buffer, Qkeymap);
9349 goto replay_sequence;
9350 }
9351
9352 Vquit_flag = Qnil;
9353
9354 if (EVENT_HAS_PARAMETERS (key)
9355 /* Either a `switch-frame' or a `select-window' event. */
9356 && EQ (EVENT_HEAD_KIND (EVENT_HEAD (key)), Qswitch_frame))
9357 {
9358 /* If we're at the beginning of a key sequence, and the caller
9359 says it's okay, go ahead and return this event. If we're
9360 in the midst of a key sequence, delay it until the end. */
9361 if (t > 0 || !can_return_switch_frame)
9362 {
9363 delayed_switch_frame = key;
9364 goto replay_key;
9365 }
9366 }
9367
9368 GROW_RAW_KEYBUF;
9369 ASET (raw_keybuf, raw_keybuf_count, key);
9370 raw_keybuf_count++;
9371 }
9372
9373 /* Clicks in non-text areas get prefixed by the symbol
9374 in their CHAR-ADDRESS field. For example, a click on
9375 the mode line is prefixed by the symbol `mode-line'.
9376
9377 Furthermore, key sequences beginning with mouse clicks
9378 are read using the keymaps of the buffer clicked on, not
9379 the current buffer. So we may have to switch the buffer
9380 here.
9381
9382 When we turn one event into two events, we must make sure
9383 that neither of the two looks like the original--so that,
9384 if we replay the events, they won't be expanded again.
9385 If not for this, such reexpansion could happen either here
9386 or when user programs play with this-command-keys. */
9387 if (EVENT_HAS_PARAMETERS (key))
9388 {
9389 Lisp_Object kind;
9390 Lisp_Object string;
9391
9392 kind = EVENT_HEAD_KIND (EVENT_HEAD (key));
9393 if (EQ (kind, Qmouse_click))
9394 {
9395 Lisp_Object window, posn;
9396
9397 window = POSN_WINDOW (EVENT_START (key));
9398 posn = POSN_POSN (EVENT_START (key));
9399
9400 if (CONSP (posn)
9401 || (!NILP (fake_prefixed_keys)
9402 && !NILP (Fmemq (key, fake_prefixed_keys))))
9403 {
9404 /* We're looking a second time at an event for which
9405 we generated a fake prefix key. Set
9406 last_real_key_start appropriately. */
9407 if (t > 0)
9408 last_real_key_start = t - 1;
9409 }
9410
9411 if (last_real_key_start == 0)
9412 {
9413 /* Key sequences beginning with mouse clicks are
9414 read using the keymaps in the buffer clicked on,
9415 not the current buffer. If we're at the
9416 beginning of a key sequence, switch buffers. */
9417 if (WINDOWP (window)
9418 && BUFFERP (XWINDOW (window)->buffer)
9419 && XBUFFER (XWINDOW (window)->buffer) != current_buffer)
9420 {
9421 XVECTOR (raw_keybuf)->contents[raw_keybuf_count++] = key;
9422 keybuf[t] = key;
9423 mock_input = t + 1;
9424
9425 /* Arrange to go back to the original buffer once we're
9426 done reading the key sequence. Note that we can't
9427 use save_excursion_{save,restore} here, because they
9428 save point as well as the current buffer; we don't
9429 want to save point, because redisplay may change it,
9430 to accommodate a Fset_window_start or something. We
9431 don't want to do this at the top of the function,
9432 because we may get input from a subprocess which
9433 wants to change the selected window and stuff (say,
9434 emacsclient). */
9435 record_unwind_protect (Fset_buffer, Fcurrent_buffer ());
9436
9437 if (! FRAME_LIVE_P (XFRAME (selected_frame)))
9438 Fkill_emacs (Qnil);
9439 set_buffer_internal (XBUFFER (XWINDOW (window)->buffer));
9440 orig_local_map = get_local_map (PT, current_buffer,
9441 Qlocal_map);
9442 orig_keymap = get_local_map (PT, current_buffer,
9443 Qkeymap);
9444 goto replay_sequence;
9445 }
9446
9447 /* For a mouse click, get the local text-property keymap
9448 of the place clicked on, rather than point. */
9449 if (CONSP (XCDR (key))
9450 && ! localized_local_map)
9451 {
9452 Lisp_Object map_here, start, pos;
9453
9454 localized_local_map = 1;
9455 start = EVENT_START (key);
9456
9457 if (CONSP (start) && POSN_INBUFFER_P (start))
9458 {
9459 pos = POSN_BUFFER_POSN (start);
9460 if (INTEGERP (pos)
9461 && XINT (pos) >= BEGV
9462 && XINT (pos) <= ZV)
9463 {
9464 map_here = get_local_map (XINT (pos),
9465 current_buffer,
9466 Qlocal_map);
9467 if (!EQ (map_here, orig_local_map))
9468 {
9469 orig_local_map = map_here;
9470 ++localized_local_map;
9471 }
9472
9473 map_here = get_local_map (XINT (pos),
9474 current_buffer,
9475 Qkeymap);
9476 if (!EQ (map_here, orig_keymap))
9477 {
9478 orig_keymap = map_here;
9479 ++localized_local_map;
9480 }
9481
9482 if (localized_local_map > 1)
9483 {
9484 keybuf[t] = key;
9485 mock_input = t + 1;
9486
9487 goto replay_sequence;
9488 }
9489 }
9490 }
9491 }
9492 }
9493
9494 /* Expand mode-line and scroll-bar events into two events:
9495 use posn as a fake prefix key. */
9496 if (SYMBOLP (posn)
9497 && (NILP (fake_prefixed_keys)
9498 || NILP (Fmemq (key, fake_prefixed_keys))))
9499 {
9500 if (t + 1 >= bufsize)
9501 error ("Key sequence too long");
9502
9503 keybuf[t] = posn;
9504 keybuf[t + 1] = key;
9505 mock_input = t + 2;
9506
9507 /* Record that a fake prefix key has been generated
9508 for KEY. Don't modify the event; this would
9509 prevent proper action when the event is pushed
9510 back into unread-command-events. */
9511 fake_prefixed_keys = Fcons (key, fake_prefixed_keys);
9512
9513 /* If on a mode line string with a local keymap,
9514 reconsider the key sequence with that keymap. */
9515 if (string = POSN_STRING (EVENT_START (key)),
9516 (CONSP (string) && STRINGP (XCAR (string))))
9517 {
9518 Lisp_Object pos, map, map2;
9519
9520 pos = XCDR (string);
9521 string = XCAR (string);
9522 if (XINT (pos) >= 0
9523 && XINT (pos) < SCHARS (string))
9524 {
9525 map = Fget_text_property (pos, Qlocal_map, string);
9526 if (!NILP (map))
9527 orig_local_map = map;
9528 map2 = Fget_text_property (pos, Qkeymap, string);
9529 if (!NILP (map2))
9530 orig_keymap = map2;
9531 if (!NILP (map) || !NILP (map2))
9532 goto replay_sequence;
9533 }
9534 }
9535
9536 goto replay_key;
9537 }
9538 else if (NILP (from_string)
9539 && (string = POSN_STRING (EVENT_START (key)),
9540 (CONSP (string) && STRINGP (XCAR (string)))))
9541 {
9542 /* For a click on a string, i.e. overlay string or a
9543 string displayed via the `display' property,
9544 consider `local-map' and `keymap' properties of
9545 that string. */
9546 Lisp_Object pos, map, map2;
9547
9548 pos = XCDR (string);
9549 string = XCAR (string);
9550 if (XINT (pos) >= 0
9551 && XINT (pos) < SCHARS (string))
9552 {
9553 map = Fget_text_property (pos, Qlocal_map, string);
9554 if (!NILP (map))
9555 orig_local_map = map;
9556 map2 = Fget_text_property (pos, Qkeymap, string);
9557 if (!NILP (map2))
9558 orig_keymap = map2;
9559
9560 if (!NILP (map) || !NILP (map2))
9561 {
9562 from_string = string;
9563 keybuf[t++] = key;
9564 mock_input = t;
9565 goto replay_sequence;
9566 }
9567 }
9568 }
9569 }
9570 else if (CONSP (XCDR (key))
9571 && CONSP (EVENT_START (key))
9572 && CONSP (XCDR (EVENT_START (key))))
9573 {
9574 Lisp_Object posn;
9575
9576 posn = POSN_POSN (EVENT_START (key));
9577 /* Handle menu-bar events:
9578 insert the dummy prefix event `menu-bar'. */
9579 if (EQ (posn, Qmenu_bar) || EQ (posn, Qtool_bar))
9580 {
9581 if (t + 1 >= bufsize)
9582 error ("Key sequence too long");
9583 keybuf[t] = posn;
9584 keybuf[t+1] = key;
9585
9586 /* Zap the position in key, so we know that we've
9587 expanded it, and don't try to do so again. */
9588 POSN_SET_POSN (EVENT_START (key),
9589 Fcons (posn, Qnil));
9590
9591 mock_input = t + 2;
9592 goto replay_sequence;
9593 }
9594 else if (CONSP (posn))
9595 {
9596 /* We're looking at the second event of a
9597 sequence which we expanded before. Set
9598 last_real_key_start appropriately. */
9599 if (last_real_key_start == t && t > 0)
9600 last_real_key_start = t - 1;
9601 }
9602 }
9603 }
9604
9605 /* We have finally decided that KEY is something we might want
9606 to look up. */
9607 first_binding = (follow_key (key,
9608 nmaps - first_binding,
9609 submaps + first_binding,
9610 defs + first_binding,
9611 submaps + first_binding)
9612 + first_binding);
9613
9614 /* If KEY wasn't bound, we'll try some fallbacks. */
9615 if (first_binding < nmaps)
9616 /* This is needed for the following scenario:
9617 event 0: a down-event that gets dropped by calling replay_key.
9618 event 1: some normal prefix like C-h.
9619 After event 0, first_unbound is 0, after event 1 indec.start,
9620 fkey.start, and keytran.start are all 1, so when we see that
9621 C-h is bound, we need to update first_unbound. */
9622 first_unbound = max (t + 1, first_unbound);
9623 else
9624 {
9625 Lisp_Object head;
9626
9627 /* Remember the position to put an upper bound on indec.start. */
9628 first_unbound = min (t, first_unbound);
9629
9630 head = EVENT_HEAD (key);
9631 if (help_char_p (head) && t > 0)
9632 {
9633 read_key_sequence_cmd = Vprefix_help_command;
9634 keybuf[t++] = key;
9635 last_nonmenu_event = key;
9636 /* The Microsoft C compiler can't handle the goto that
9637 would go here. */
9638 dummyflag = 1;
9639 break;
9640 }
9641
9642 if (SYMBOLP (head))
9643 {
9644 Lisp_Object breakdown;
9645 int modifiers;
9646
9647 breakdown = parse_modifiers (head);
9648 modifiers = XINT (XCAR (XCDR (breakdown)));
9649 /* Attempt to reduce an unbound mouse event to a simpler
9650 event that is bound:
9651 Drags reduce to clicks.
9652 Double-clicks reduce to clicks.
9653 Triple-clicks reduce to double-clicks, then to clicks.
9654 Down-clicks are eliminated.
9655 Double-downs reduce to downs, then are eliminated.
9656 Triple-downs reduce to double-downs, then to downs,
9657 then are eliminated. */
9658 if (modifiers & (down_modifier | drag_modifier
9659 | double_modifier | triple_modifier))
9660 {
9661 while (modifiers & (down_modifier | drag_modifier
9662 | double_modifier | triple_modifier))
9663 {
9664 Lisp_Object new_head, new_click;
9665 if (modifiers & triple_modifier)
9666 modifiers ^= (double_modifier | triple_modifier);
9667 else if (modifiers & double_modifier)
9668 modifiers &= ~double_modifier;
9669 else if (modifiers & drag_modifier)
9670 modifiers &= ~drag_modifier;
9671 else
9672 {
9673 /* Dispose of this `down' event by simply jumping
9674 back to replay_key, to get another event.
9675
9676 Note that if this event came from mock input,
9677 then just jumping back to replay_key will just
9678 hand it to us again. So we have to wipe out any
9679 mock input.
9680
9681 We could delete keybuf[t] and shift everything
9682 after that to the left by one spot, but we'd also
9683 have to fix up any variable that points into
9684 keybuf, and shifting isn't really necessary
9685 anyway.
9686
9687 Adding prefixes for non-textual mouse clicks
9688 creates two characters of mock input, and both
9689 must be thrown away. If we're only looking at
9690 the prefix now, we can just jump back to
9691 replay_key. On the other hand, if we've already
9692 processed the prefix, and now the actual click
9693 itself is giving us trouble, then we've lost the
9694 state of the keymaps we want to backtrack to, and
9695 we need to replay the whole sequence to rebuild
9696 it.
9697
9698 Beyond that, only function key expansion could
9699 create more than two keys, but that should never
9700 generate mouse events, so it's okay to zero
9701 mock_input in that case too.
9702
9703 FIXME: The above paragraph seems just plain
9704 wrong, if you consider things like
9705 xterm-mouse-mode. -stef
9706
9707 Isn't this just the most wonderful code ever? */
9708
9709 /* If mock_input > t + 1, the above simplification
9710 will actually end up dropping keys on the floor.
9711 This is probably OK for now, but even
9712 if mock_input <= t + 1, we need to adjust indec,
9713 fkey, and keytran.
9714 Typical case [header-line down-mouse-N]:
9715 mock_input = 2, t = 1, fkey.end = 1,
9716 last_real_key_start = 0. */
9717 if (indec.end > last_real_key_start)
9718 {
9719 indec.end = indec.start
9720 = min (last_real_key_start, indec.start);
9721 indec.map = indec.parent;
9722 if (fkey.end > last_real_key_start)
9723 {
9724 fkey.end = fkey.start
9725 = min (last_real_key_start, fkey.start);
9726 fkey.map = fkey.parent;
9727 if (keytran.end > last_real_key_start)
9728 {
9729 keytran.end = keytran.start
9730 = min (last_real_key_start, keytran.start);
9731 keytran.map = keytran.parent;
9732 }
9733 }
9734 }
9735 if (t == last_real_key_start)
9736 {
9737 mock_input = 0;
9738 goto replay_key;
9739 }
9740 else
9741 {
9742 mock_input = last_real_key_start;
9743 goto replay_sequence;
9744 }
9745 }
9746
9747 new_head
9748 = apply_modifiers (modifiers, XCAR (breakdown));
9749 new_click
9750 = Fcons (new_head, Fcons (EVENT_START (key), Qnil));
9751
9752 /* Look for a binding for this new key. follow_key
9753 promises that it didn't munge submaps the
9754 last time we called it, since key was unbound. */
9755 first_binding
9756 = (follow_key (new_click,
9757 nmaps - local_first_binding,
9758 submaps + local_first_binding,
9759 defs + local_first_binding,
9760 submaps + local_first_binding)
9761 + local_first_binding);
9762
9763 /* If that click is bound, go for it. */
9764 if (first_binding < nmaps)
9765 {
9766 key = new_click;
9767 break;
9768 }
9769 /* Otherwise, we'll leave key set to the drag event. */
9770 }
9771 }
9772 }
9773 }
9774
9775 keybuf[t++] = key;
9776 /* Normally, last_nonmenu_event gets the previous key we read.
9777 But when a mouse popup menu is being used,
9778 we don't update last_nonmenu_event; it continues to hold the mouse
9779 event that preceded the first level of menu. */
9780 if (!used_mouse_menu)
9781 last_nonmenu_event = key;
9782
9783 /* Record what part of this_command_keys is the current key sequence. */
9784 this_single_command_key_start = this_command_key_count - t;
9785
9786 /* Look for this sequence in input-decode-map.
9787 Scan from indec.end until we find a bound suffix. */
9788 while (indec.end < t)
9789 {
9790 struct gcpro gcpro1, gcpro2, gcpro3, gcpro4;
9791 int done, diff;
9792
9793 GCPRO4 (indec.map, fkey.map, keytran.map, delayed_switch_frame);
9794 done = keyremap_step (keybuf, bufsize, &indec, max (t, mock_input),
9795 1, &diff, prompt);
9796 UNGCPRO;
9797 if (done)
9798 {
9799 mock_input = diff + max (t, mock_input);
9800 goto replay_sequence;
9801 }
9802 }
9803
9804 if (first_binding < nmaps && NILP (submaps[first_binding])
9805 && indec.start >= t)
9806 /* There is a binding and it's not a prefix.
9807 (and it doesn't have any input-decode-map translation pending).
9808 There is thus no function-key in this sequence.
9809 Moving fkey.start is important in this case to allow keytran.start
9810 to go over the sequence before we return (since we keep the
9811 invariant that keytran.end <= fkey.start). */
9812 {
9813 if (fkey.start < t)
9814 (fkey.start = fkey.end = t, fkey.map = fkey.parent);
9815 }
9816 else
9817 /* If the sequence is unbound, see if we can hang a function key
9818 off the end of it. */
9819 /* Continue scan from fkey.end until we find a bound suffix. */
9820 while (fkey.end < indec.start)
9821 {
9822 struct gcpro gcpro1, gcpro2, gcpro3, gcpro4;
9823 int done, diff;
9824
9825 GCPRO4 (indec.map, fkey.map, keytran.map, delayed_switch_frame);
9826 done = keyremap_step (keybuf, bufsize, &fkey,
9827 max (t, mock_input),
9828 /* If there's a binding (i.e.
9829 first_binding >= nmaps) we don't want
9830 to apply this function-key-mapping. */
9831 fkey.end + 1 == t && first_binding >= nmaps,
9832 &diff, prompt);
9833 UNGCPRO;
9834 if (done)
9835 {
9836 mock_input = diff + max (t, mock_input);
9837 /* Adjust the input-decode-map counters. */
9838 indec.end += diff;
9839 indec.start += diff;
9840
9841 goto replay_sequence;
9842 }
9843 }
9844
9845 /* Look for this sequence in key-translation-map.
9846 Scan from keytran.end until we find a bound suffix. */
9847 while (keytran.end < fkey.start)
9848 {
9849 struct gcpro gcpro1, gcpro2, gcpro3, gcpro4;
9850 int done, diff;
9851
9852 GCPRO4 (indec.map, fkey.map, keytran.map, delayed_switch_frame);
9853 done = keyremap_step (keybuf, bufsize, &keytran, max (t, mock_input),
9854 1, &diff, prompt);
9855 UNGCPRO;
9856 if (done)
9857 {
9858 mock_input = diff + max (t, mock_input);
9859 /* Adjust the function-key-map and input-decode-map counters. */
9860 indec.end += diff;
9861 indec.start += diff;
9862 fkey.end += diff;
9863 fkey.start += diff;
9864
9865 goto replay_sequence;
9866 }
9867 }
9868
9869 /* If KEY is not defined in any of the keymaps,
9870 and cannot be part of a function key or translation,
9871 and is an upper case letter
9872 use the corresponding lower-case letter instead. */
9873 if (first_binding >= nmaps
9874 && /* indec.start >= t && fkey.start >= t && */ keytran.start >= t
9875 && INTEGERP (key)
9876 && ((CHARACTERP (make_number (XINT (key) & ~CHAR_MODIFIER_MASK))
9877 && uppercasep (XINT (key) & ~CHAR_MODIFIER_MASK))
9878 || (XINT (key) & shift_modifier)))
9879 {
9880 Lisp_Object new_key;
9881
9882 original_uppercase = key;
9883 original_uppercase_position = t - 1;
9884
9885 if (XINT (key) & shift_modifier)
9886 XSETINT (new_key, XINT (key) & ~shift_modifier);
9887 else
9888 XSETINT (new_key, (downcase (XINT (key) & ~CHAR_MODIFIER_MASK)
9889 | (XINT (key) & CHAR_MODIFIER_MASK)));
9890
9891 /* We have to do this unconditionally, regardless of whether
9892 the lower-case char is defined in the keymaps, because they
9893 might get translated through function-key-map. */
9894 keybuf[t - 1] = new_key;
9895 mock_input = max (t, mock_input);
9896 shift_translated = 1;
9897
9898 goto replay_sequence;
9899 }
9900 /* If KEY is not defined in any of the keymaps,
9901 and cannot be part of a function key or translation,
9902 and is a shifted function key,
9903 use the corresponding unshifted function key instead. */
9904 if (first_binding >= nmaps
9905 && /* indec.start >= t && fkey.start >= t && */ keytran.start >= t)
9906 {
9907 Lisp_Object breakdown = parse_modifiers (key);
9908 int modifiers
9909 = CONSP (breakdown) ? (XINT (XCAR (XCDR (breakdown)))) : 0;
9910
9911 if (modifiers & shift_modifier
9912 /* Treat uppercase keys as shifted. */
9913 || (INTEGERP (key)
9914 && (KEY_TO_CHAR (key)
9915 < XCHAR_TABLE (BVAR (current_buffer, downcase_table))->size)
9916 && uppercasep (KEY_TO_CHAR (key))))
9917 {
9918 Lisp_Object new_key
9919 = (modifiers & shift_modifier
9920 ? apply_modifiers (modifiers & ~shift_modifier,
9921 XCAR (breakdown))
9922 : make_number (downcase (KEY_TO_CHAR (key)) | modifiers));
9923
9924 original_uppercase = key;
9925 original_uppercase_position = t - 1;
9926
9927 /* We have to do this unconditionally, regardless of whether
9928 the lower-case char is defined in the keymaps, because they
9929 might get translated through function-key-map. */
9930 keybuf[t - 1] = new_key;
9931 mock_input = max (t, mock_input);
9932 /* Reset fkey (and consequently keytran) to apply
9933 function-key-map on the result, so that S-backspace is
9934 correctly mapped to DEL (via backspace). OTOH,
9935 input-decode-map doesn't need to go through it again. */
9936 fkey.start = fkey.end = 0;
9937 keytran.start = keytran.end = 0;
9938 shift_translated = 1;
9939
9940 goto replay_sequence;
9941 }
9942 }
9943 }
9944 if (!dummyflag)
9945 read_key_sequence_cmd = (first_binding < nmaps
9946 ? defs[first_binding]
9947 : Qnil);
9948
9949 unread_switch_frame = delayed_switch_frame;
9950 unbind_to (count, Qnil);
9951
9952 /* Don't downcase the last character if the caller says don't.
9953 Don't downcase it if the result is undefined, either. */
9954 if ((dont_downcase_last || first_binding >= nmaps)
9955 && t > 0
9956 && t - 1 == original_uppercase_position)
9957 {
9958 keybuf[t - 1] = original_uppercase;
9959 shift_translated = 0;
9960 }
9961
9962 if (shift_translated)
9963 Vthis_command_keys_shift_translated = Qt;
9964
9965 /* Occasionally we fabricate events, perhaps by expanding something
9966 according to function-key-map, or by adding a prefix symbol to a
9967 mouse click in the scroll bar or modeline. In this cases, return
9968 the entire generated key sequence, even if we hit an unbound
9969 prefix or a definition before the end. This means that you will
9970 be able to push back the event properly, and also means that
9971 read-key-sequence will always return a logical unit.
9972
9973 Better ideas? */
9974 for (; t < mock_input; t++)
9975 {
9976 if ((FLOATP (Vecho_keystrokes) || INTEGERP (Vecho_keystrokes))
9977 && NILP (Fzerop (Vecho_keystrokes)))
9978 echo_char (keybuf[t]);
9979 add_command_key (keybuf[t]);
9980 }
9981
9982 UNGCPRO_VAR (outer_gcpro);
9983 return t;
9984 }
9985
9986 DEFUN ("read-key-sequence", Fread_key_sequence, Sread_key_sequence, 1, 5, 0,
9987 doc: /* Read a sequence of keystrokes and return as a string or vector.
9988 The sequence is sufficient to specify a non-prefix command in the
9989 current local and global maps.
9990
9991 First arg PROMPT is a prompt string. If nil, do not prompt specially.
9992 Second (optional) arg CONTINUE-ECHO, if non-nil, means this key echos
9993 as a continuation of the previous key.
9994
9995 The third (optional) arg DONT-DOWNCASE-LAST, if non-nil, means do not
9996 convert the last event to lower case. (Normally any upper case event
9997 is converted to lower case if the original event is undefined and the lower
9998 case equivalent is defined.) A non-nil value is appropriate for reading
9999 a key sequence to be defined.
10000
10001 A C-g typed while in this function is treated like any other character,
10002 and `quit-flag' is not set.
10003
10004 If the key sequence starts with a mouse click, then the sequence is read
10005 using the keymaps of the buffer of the window clicked in, not the buffer
10006 of the selected window as normal.
10007
10008 `read-key-sequence' drops unbound button-down events, since you normally
10009 only care about the click or drag events which follow them. If a drag
10010 or multi-click event is unbound, but the corresponding click event would
10011 be bound, `read-key-sequence' turns the event into a click event at the
10012 drag's starting position. This means that you don't have to distinguish
10013 between click and drag, double, or triple events unless you want to.
10014
10015 `read-key-sequence' prefixes mouse events on mode lines, the vertical
10016 lines separating windows, and scroll bars with imaginary keys
10017 `mode-line', `vertical-line', and `vertical-scroll-bar'.
10018
10019 Optional fourth argument CAN-RETURN-SWITCH-FRAME non-nil means that this
10020 function will process a switch-frame event if the user switches frames
10021 before typing anything. If the user switches frames in the middle of a
10022 key sequence, or at the start of the sequence but CAN-RETURN-SWITCH-FRAME
10023 is nil, then the event will be put off until after the current key sequence.
10024
10025 `read-key-sequence' checks `function-key-map' for function key
10026 sequences, where they wouldn't conflict with ordinary bindings. See
10027 `function-key-map' for more details.
10028
10029 The optional fifth argument CMD-LOOP, if non-nil, means
10030 that this key sequence is being read by something that will
10031 read commands one after another. It should be nil if the caller
10032 will read just one key sequence. */)
10033 (Lisp_Object prompt, Lisp_Object continue_echo, Lisp_Object dont_downcase_last, Lisp_Object can_return_switch_frame, Lisp_Object cmd_loop)
10034 {
10035 Lisp_Object keybuf[30];
10036 register int i;
10037 struct gcpro gcpro1;
10038 int count = SPECPDL_INDEX ();
10039
10040 if (!NILP (prompt))
10041 CHECK_STRING (prompt);
10042 QUIT;
10043
10044 specbind (Qinput_method_exit_on_first_char,
10045 (NILP (cmd_loop) ? Qt : Qnil));
10046 specbind (Qinput_method_use_echo_area,
10047 (NILP (cmd_loop) ? Qt : Qnil));
10048
10049 memset (keybuf, 0, sizeof keybuf);
10050 GCPRO1 (keybuf[0]);
10051 gcpro1.nvars = (sizeof keybuf/sizeof (keybuf[0]));
10052
10053 if (NILP (continue_echo))
10054 {
10055 this_command_key_count = 0;
10056 this_command_key_count_reset = 0;
10057 this_single_command_key_start = 0;
10058 }
10059
10060 #ifdef HAVE_WINDOW_SYSTEM
10061 if (display_hourglass_p)
10062 cancel_hourglass ();
10063 #endif
10064
10065 i = read_key_sequence (keybuf, (sizeof keybuf/sizeof (keybuf[0])),
10066 prompt, ! NILP (dont_downcase_last),
10067 ! NILP (can_return_switch_frame), 0);
10068
10069 #if 0 /* The following is fine for code reading a key sequence and
10070 then proceeding with a lenghty computation, but it's not good
10071 for code reading keys in a loop, like an input method. */
10072 #ifdef HAVE_WINDOW_SYSTEM
10073 if (display_hourglass_p)
10074 start_hourglass ();
10075 #endif
10076 #endif
10077
10078 if (i == -1)
10079 {
10080 Vquit_flag = Qt;
10081 QUIT;
10082 }
10083 UNGCPRO;
10084 return unbind_to (count, make_event_array (i, keybuf));
10085 }
10086
10087 DEFUN ("read-key-sequence-vector", Fread_key_sequence_vector,
10088 Sread_key_sequence_vector, 1, 5, 0,
10089 doc: /* Like `read-key-sequence' but always return a vector. */)
10090 (Lisp_Object prompt, Lisp_Object continue_echo, Lisp_Object dont_downcase_last, Lisp_Object can_return_switch_frame, Lisp_Object cmd_loop)
10091 {
10092 Lisp_Object keybuf[30];
10093 register int i;
10094 struct gcpro gcpro1;
10095 int count = SPECPDL_INDEX ();
10096
10097 if (!NILP (prompt))
10098 CHECK_STRING (prompt);
10099 QUIT;
10100
10101 specbind (Qinput_method_exit_on_first_char,
10102 (NILP (cmd_loop) ? Qt : Qnil));
10103 specbind (Qinput_method_use_echo_area,
10104 (NILP (cmd_loop) ? Qt : Qnil));
10105
10106 memset (keybuf, 0, sizeof keybuf);
10107 GCPRO1 (keybuf[0]);
10108 gcpro1.nvars = (sizeof keybuf/sizeof (keybuf[0]));
10109
10110 if (NILP (continue_echo))
10111 {
10112 this_command_key_count = 0;
10113 this_command_key_count_reset = 0;
10114 this_single_command_key_start = 0;
10115 }
10116
10117 #ifdef HAVE_WINDOW_SYSTEM
10118 if (display_hourglass_p)
10119 cancel_hourglass ();
10120 #endif
10121
10122 i = read_key_sequence (keybuf, (sizeof keybuf/sizeof (keybuf[0])),
10123 prompt, ! NILP (dont_downcase_last),
10124 ! NILP (can_return_switch_frame), 0);
10125
10126 #ifdef HAVE_WINDOW_SYSTEM
10127 if (display_hourglass_p)
10128 start_hourglass ();
10129 #endif
10130
10131 if (i == -1)
10132 {
10133 Vquit_flag = Qt;
10134 QUIT;
10135 }
10136 UNGCPRO;
10137 return unbind_to (count, Fvector (i, keybuf));
10138 }
10139 \f
10140 DEFUN ("command-execute", Fcommand_execute, Scommand_execute, 1, 4, 0,
10141 doc: /* Execute CMD as an editor command.
10142 CMD must be a symbol that satisfies the `commandp' predicate.
10143 Optional second arg RECORD-FLAG non-nil
10144 means unconditionally put this command in `command-history'.
10145 Otherwise, that is done only if an arg is read using the minibuffer.
10146 The argument KEYS specifies the value to use instead of (this-command-keys)
10147 when reading the arguments; if it is nil, (this-command-keys) is used.
10148 The argument SPECIAL, if non-nil, means that this command is executing
10149 a special event, so ignore the prefix argument and don't clear it. */)
10150 (Lisp_Object cmd, Lisp_Object record_flag, Lisp_Object keys, Lisp_Object special)
10151 {
10152 register Lisp_Object final;
10153 register Lisp_Object tem;
10154 Lisp_Object prefixarg;
10155
10156 debug_on_next_call = 0;
10157
10158 if (NILP (special))
10159 {
10160 prefixarg = KVAR (current_kboard, Vprefix_arg);
10161 Vcurrent_prefix_arg = prefixarg;
10162 KVAR (current_kboard, Vprefix_arg) = Qnil;
10163 }
10164 else
10165 prefixarg = Qnil;
10166
10167 if (SYMBOLP (cmd))
10168 {
10169 tem = Fget (cmd, Qdisabled);
10170 if (!NILP (tem))
10171 {
10172 tem = Fsymbol_value (Qdisabled_command_function);
10173 if (!NILP (tem))
10174 return Frun_hooks (1, &Qdisabled_command_function);
10175 }
10176 }
10177
10178 while (1)
10179 {
10180 final = Findirect_function (cmd, Qnil);
10181
10182 if (CONSP (final) && (tem = Fcar (final), EQ (tem, Qautoload)))
10183 {
10184 struct gcpro gcpro1, gcpro2;
10185
10186 GCPRO2 (cmd, prefixarg);
10187 do_autoload (final, cmd);
10188 UNGCPRO;
10189 }
10190 else
10191 break;
10192 }
10193
10194 if (STRINGP (final) || VECTORP (final))
10195 {
10196 /* If requested, place the macro in the command history. For
10197 other sorts of commands, call-interactively takes care of
10198 this. */
10199 if (!NILP (record_flag))
10200 {
10201 Vcommand_history
10202 = Fcons (Fcons (Qexecute_kbd_macro,
10203 Fcons (final, Fcons (prefixarg, Qnil))),
10204 Vcommand_history);
10205
10206 /* Don't keep command history around forever. */
10207 if (NUMBERP (Vhistory_length) && XINT (Vhistory_length) > 0)
10208 {
10209 tem = Fnthcdr (Vhistory_length, Vcommand_history);
10210 if (CONSP (tem))
10211 XSETCDR (tem, Qnil);
10212 }
10213 }
10214
10215 return Fexecute_kbd_macro (final, prefixarg, Qnil);
10216 }
10217
10218 if (CONSP (final) || SUBRP (final) || COMPILEDP (final))
10219 /* Don't call Fcall_interactively directly because we want to make
10220 sure the backtrace has an entry for `call-interactively'.
10221 For the same reason, pass `cmd' rather than `final'. */
10222 return call3 (Qcall_interactively, cmd, record_flag, keys);
10223
10224 return Qnil;
10225 }
10226
10227
10228 \f
10229 DEFUN ("execute-extended-command", Fexecute_extended_command, Sexecute_extended_command,
10230 1, 1, "P",
10231 doc: /* Read function name, then read its arguments and call it.
10232
10233 To pass a numeric argument to the command you are invoking with, specify
10234 the numeric argument to this command.
10235
10236 Noninteractively, the argument PREFIXARG is the prefix argument to
10237 give to the command you invoke, if it asks for an argument. */)
10238 (Lisp_Object prefixarg)
10239 {
10240 Lisp_Object function;
10241 EMACS_INT saved_last_point_position;
10242 Lisp_Object saved_keys, saved_last_point_position_buffer;
10243 Lisp_Object bindings, value;
10244 struct gcpro gcpro1, gcpro2, gcpro3;
10245 #ifdef HAVE_WINDOW_SYSTEM
10246 /* The call to Fcompleting_read will start and cancel the hourglass,
10247 but if the hourglass was already scheduled, this means that no
10248 hourglass will be shown for the actual M-x command itself.
10249 So we restart it if it is already scheduled. Note that checking
10250 hourglass_shown_p is not enough, normally the hourglass is not shown,
10251 just scheduled to be shown. */
10252 int hstarted = hourglass_started ();
10253 #endif
10254
10255 saved_keys = Fvector (this_command_key_count,
10256 XVECTOR (this_command_keys)->contents);
10257 saved_last_point_position_buffer = last_point_position_buffer;
10258 saved_last_point_position = last_point_position;
10259 GCPRO3 (saved_keys, prefixarg, saved_last_point_position_buffer);
10260
10261 function = call0 (intern ("read-extended-command"));
10262
10263 #ifdef HAVE_WINDOW_SYSTEM
10264 if (hstarted) start_hourglass ();
10265 #endif
10266
10267 if (STRINGP (function) && SCHARS (function) == 0)
10268 error ("No command name given");
10269
10270 /* Set this_command_keys to the concatenation of saved_keys and
10271 function, followed by a RET. */
10272 {
10273 Lisp_Object *keys;
10274 int i;
10275
10276 this_command_key_count = 0;
10277 this_command_key_count_reset = 0;
10278 this_single_command_key_start = 0;
10279
10280 keys = XVECTOR (saved_keys)->contents;
10281 for (i = 0; i < XVECTOR (saved_keys)->size; i++)
10282 add_command_key (keys[i]);
10283
10284 for (i = 0; i < SCHARS (function); i++)
10285 add_command_key (Faref (function, make_number (i)));
10286
10287 add_command_key (make_number ('\015'));
10288 }
10289
10290 last_point_position = saved_last_point_position;
10291 last_point_position_buffer = saved_last_point_position_buffer;
10292
10293 UNGCPRO;
10294
10295 function = Fintern (function, Qnil);
10296 KVAR (current_kboard, Vprefix_arg) = prefixarg;
10297 Vthis_command = function;
10298 real_this_command = function;
10299
10300 /* If enabled, show which key runs this command. */
10301 if (!NILP (Vsuggest_key_bindings)
10302 && NILP (Vexecuting_kbd_macro)
10303 && SYMBOLP (function))
10304 bindings = Fwhere_is_internal (function, Voverriding_local_map,
10305 Qt, Qnil, Qnil);
10306 else
10307 bindings = Qnil;
10308
10309 value = Qnil;
10310 GCPRO3 (bindings, value, function);
10311 value = Fcommand_execute (function, Qt, Qnil, Qnil);
10312
10313 /* If the command has a key binding, print it now. */
10314 if (!NILP (bindings)
10315 && ! (VECTORP (bindings) && EQ (Faref (bindings, make_number (0)),
10316 Qmouse_movement)))
10317 {
10318 /* But first wait, and skip the message if there is input. */
10319 Lisp_Object waited;
10320
10321 /* If this command displayed something in the echo area;
10322 wait a few seconds, then display our suggestion message. */
10323 if (NILP (echo_area_buffer[0]))
10324 waited = sit_for (make_number (0), 0, 2);
10325 else if (NUMBERP (Vsuggest_key_bindings))
10326 waited = sit_for (Vsuggest_key_bindings, 0, 2);
10327 else
10328 waited = sit_for (make_number (2), 0, 2);
10329
10330 if (!NILP (waited) && ! CONSP (Vunread_command_events))
10331 {
10332 Lisp_Object binding;
10333 char *newmessage;
10334 int message_p = push_message ();
10335 int count = SPECPDL_INDEX ();
10336
10337 record_unwind_protect (pop_message_unwind, Qnil);
10338 binding = Fkey_description (bindings, Qnil);
10339
10340 newmessage
10341 = (char *) alloca (SCHARS (SYMBOL_NAME (function))
10342 + SBYTES (binding)
10343 + 100);
10344 sprintf (newmessage, "You can run the command `%s' with %s",
10345 SDATA (SYMBOL_NAME (function)),
10346 SDATA (binding));
10347 message2 (newmessage,
10348 strlen (newmessage),
10349 STRING_MULTIBYTE (binding));
10350 if (NUMBERP (Vsuggest_key_bindings))
10351 waited = sit_for (Vsuggest_key_bindings, 0, 2);
10352 else
10353 waited = sit_for (make_number (2), 0, 2);
10354
10355 if (!NILP (waited) && message_p)
10356 restore_message ();
10357
10358 unbind_to (count, Qnil);
10359 }
10360 }
10361
10362 RETURN_UNGCPRO (value);
10363 }
10364
10365 \f
10366 /* Return nonzero if input events are pending. */
10367
10368 int
10369 detect_input_pending (void)
10370 {
10371 if (!input_pending)
10372 get_input_pending (&input_pending, 0);
10373
10374 return input_pending;
10375 }
10376
10377 /* Return nonzero if input events other than mouse movements are
10378 pending. */
10379
10380 int
10381 detect_input_pending_ignore_squeezables (void)
10382 {
10383 if (!input_pending)
10384 get_input_pending (&input_pending, READABLE_EVENTS_IGNORE_SQUEEZABLES);
10385
10386 return input_pending;
10387 }
10388
10389 /* Return nonzero if input events are pending, and run any pending timers. */
10390
10391 int
10392 detect_input_pending_run_timers (int do_display)
10393 {
10394 int old_timers_run = timers_run;
10395
10396 if (!input_pending)
10397 get_input_pending (&input_pending, READABLE_EVENTS_DO_TIMERS_NOW);
10398
10399 if (old_timers_run != timers_run && do_display)
10400 {
10401 redisplay_preserve_echo_area (8);
10402 /* The following fixes a bug when using lazy-lock with
10403 lazy-lock-defer-on-the-fly set to t, i.e. when fontifying
10404 from an idle timer function. The symptom of the bug is that
10405 the cursor sometimes doesn't become visible until the next X
10406 event is processed. --gerd. */
10407 {
10408 Lisp_Object tail, frame;
10409 FOR_EACH_FRAME (tail, frame)
10410 if (FRAME_RIF (XFRAME (frame)))
10411 FRAME_RIF (XFRAME (frame))->flush_display (XFRAME (frame));
10412 }
10413 }
10414
10415 return input_pending;
10416 }
10417
10418 /* This is called in some cases before a possible quit.
10419 It cases the next call to detect_input_pending to recompute input_pending.
10420 So calling this function unnecessarily can't do any harm. */
10421
10422 void
10423 clear_input_pending (void)
10424 {
10425 input_pending = 0;
10426 }
10427
10428 /* Return nonzero if there are pending requeued events.
10429 This isn't used yet. The hope is to make wait_reading_process_output
10430 call it, and return if it runs Lisp code that unreads something.
10431 The problem is, kbd_buffer_get_event needs to be fixed to know what
10432 to do in that case. It isn't trivial. */
10433
10434 int
10435 requeued_events_pending_p (void)
10436 {
10437 return (!NILP (Vunread_command_events) || unread_command_char != -1);
10438 }
10439
10440
10441 DEFUN ("input-pending-p", Finput_pending_p, Sinput_pending_p, 0, 0, 0,
10442 doc: /* Return t if command input is currently available with no wait.
10443 Actually, the value is nil only if we can be sure that no input is available;
10444 if there is a doubt, the value is t. */)
10445 (void)
10446 {
10447 if (!NILP (Vunread_command_events) || unread_command_char != -1
10448 || !NILP (Vunread_post_input_method_events)
10449 || !NILP (Vunread_input_method_events))
10450 return (Qt);
10451
10452 get_input_pending (&input_pending,
10453 READABLE_EVENTS_DO_TIMERS_NOW
10454 | READABLE_EVENTS_FILTER_EVENTS);
10455 return input_pending > 0 ? Qt : Qnil;
10456 }
10457
10458 DEFUN ("recent-keys", Frecent_keys, Srecent_keys, 0, 0, 0,
10459 doc: /* Return vector of last 300 events, not counting those from keyboard macros. */)
10460 (void)
10461 {
10462 Lisp_Object *keys = XVECTOR (recent_keys)->contents;
10463 Lisp_Object val;
10464
10465 if (total_keys < NUM_RECENT_KEYS)
10466 return Fvector (total_keys, keys);
10467 else
10468 {
10469 val = Fvector (NUM_RECENT_KEYS, keys);
10470 memcpy (XVECTOR (val)->contents, keys + recent_keys_index,
10471 (NUM_RECENT_KEYS - recent_keys_index) * sizeof (Lisp_Object));
10472 memcpy (XVECTOR (val)->contents + NUM_RECENT_KEYS - recent_keys_index,
10473 keys, recent_keys_index * sizeof (Lisp_Object));
10474 return val;
10475 }
10476 }
10477
10478 DEFUN ("this-command-keys", Fthis_command_keys, Sthis_command_keys, 0, 0, 0,
10479 doc: /* Return the key sequence that invoked this command.
10480 However, if the command has called `read-key-sequence', it returns
10481 the last key sequence that has been read.
10482 The value is a string or a vector.
10483
10484 See also `this-command-keys-vector'. */)
10485 (void)
10486 {
10487 return make_event_array (this_command_key_count,
10488 XVECTOR (this_command_keys)->contents);
10489 }
10490
10491 DEFUN ("this-command-keys-vector", Fthis_command_keys_vector, Sthis_command_keys_vector, 0, 0, 0,
10492 doc: /* Return the key sequence that invoked this command, as a vector.
10493 However, if the command has called `read-key-sequence', it returns
10494 the last key sequence that has been read.
10495
10496 See also `this-command-keys'. */)
10497 (void)
10498 {
10499 return Fvector (this_command_key_count,
10500 XVECTOR (this_command_keys)->contents);
10501 }
10502
10503 DEFUN ("this-single-command-keys", Fthis_single_command_keys,
10504 Sthis_single_command_keys, 0, 0, 0,
10505 doc: /* Return the key sequence that invoked this command.
10506 More generally, it returns the last key sequence read, either by
10507 the command loop or by `read-key-sequence'.
10508 Unlike `this-command-keys', this function's value
10509 does not include prefix arguments.
10510 The value is always a vector. */)
10511 (void)
10512 {
10513 return Fvector (this_command_key_count
10514 - this_single_command_key_start,
10515 (XVECTOR (this_command_keys)->contents
10516 + this_single_command_key_start));
10517 }
10518
10519 DEFUN ("this-single-command-raw-keys", Fthis_single_command_raw_keys,
10520 Sthis_single_command_raw_keys, 0, 0, 0,
10521 doc: /* Return the raw events that were read for this command.
10522 More generally, it returns the last key sequence read, either by
10523 the command loop or by `read-key-sequence'.
10524 Unlike `this-single-command-keys', this function's value
10525 shows the events before all translations (except for input methods).
10526 The value is always a vector. */)
10527 (void)
10528 {
10529 return Fvector (raw_keybuf_count,
10530 (XVECTOR (raw_keybuf)->contents));
10531 }
10532
10533 DEFUN ("reset-this-command-lengths", Freset_this_command_lengths,
10534 Sreset_this_command_lengths, 0, 0, 0,
10535 doc: /* Make the unread events replace the last command and echo.
10536 Used in `universal-argument-other-key'.
10537
10538 `universal-argument-other-key' rereads the event just typed.
10539 It then gets translated through `function-key-map'.
10540 The translated event has to replace the real events,
10541 both in the value of (this-command-keys) and in echoing.
10542 To achieve this, `universal-argument-other-key' calls
10543 `reset-this-command-lengths', which discards the record of reading
10544 these events the first time. */)
10545 (void)
10546 {
10547 this_command_key_count = before_command_key_count;
10548 if (this_command_key_count < this_single_command_key_start)
10549 this_single_command_key_start = this_command_key_count;
10550
10551 echo_truncate (before_command_echo_length);
10552
10553 /* Cause whatever we put into unread-command-events
10554 to echo as if it were being freshly read from the keyboard. */
10555 this_command_key_count_reset = 1;
10556
10557 return Qnil;
10558 }
10559
10560 DEFUN ("clear-this-command-keys", Fclear_this_command_keys,
10561 Sclear_this_command_keys, 0, 1, 0,
10562 doc: /* Clear out the vector that `this-command-keys' returns.
10563 Also clear the record of the last 100 events, unless optional arg
10564 KEEP-RECORD is non-nil. */)
10565 (Lisp_Object keep_record)
10566 {
10567 int i;
10568
10569 this_command_key_count = 0;
10570 this_command_key_count_reset = 0;
10571
10572 if (NILP (keep_record))
10573 {
10574 for (i = 0; i < XVECTOR (recent_keys)->size; ++i)
10575 XVECTOR (recent_keys)->contents[i] = Qnil;
10576 total_keys = 0;
10577 recent_keys_index = 0;
10578 }
10579 return Qnil;
10580 }
10581
10582 DEFUN ("recursion-depth", Frecursion_depth, Srecursion_depth, 0, 0, 0,
10583 doc: /* Return the current depth in recursive edits. */)
10584 (void)
10585 {
10586 Lisp_Object temp;
10587 XSETFASTINT (temp, command_loop_level + minibuf_level);
10588 return temp;
10589 }
10590
10591 DEFUN ("open-dribble-file", Fopen_dribble_file, Sopen_dribble_file, 1, 1,
10592 "FOpen dribble file: ",
10593 doc: /* Start writing all keyboard characters to a dribble file called FILE.
10594 If FILE is nil, close any open dribble file. */)
10595 (Lisp_Object file)
10596 {
10597 if (dribble)
10598 {
10599 BLOCK_INPUT;
10600 fclose (dribble);
10601 UNBLOCK_INPUT;
10602 dribble = 0;
10603 }
10604 if (!NILP (file))
10605 {
10606 file = Fexpand_file_name (file, Qnil);
10607 dribble = fopen (SSDATA (file), "w");
10608 if (dribble == 0)
10609 report_file_error ("Opening dribble", Fcons (file, Qnil));
10610 }
10611 return Qnil;
10612 }
10613
10614 DEFUN ("discard-input", Fdiscard_input, Sdiscard_input, 0, 0, 0,
10615 doc: /* Discard the contents of the terminal input buffer.
10616 Also end any kbd macro being defined. */)
10617 (void)
10618 {
10619 if (!NILP (KVAR (current_kboard, defining_kbd_macro)))
10620 {
10621 /* Discard the last command from the macro. */
10622 Fcancel_kbd_macro_events ();
10623 end_kbd_macro ();
10624 }
10625
10626 update_mode_lines++;
10627
10628 Vunread_command_events = Qnil;
10629 unread_command_char = -1;
10630
10631 discard_tty_input ();
10632
10633 kbd_fetch_ptr = kbd_store_ptr;
10634 input_pending = 0;
10635
10636 return Qnil;
10637 }
10638 \f
10639 DEFUN ("suspend-emacs", Fsuspend_emacs, Ssuspend_emacs, 0, 1, "",
10640 doc: /* Stop Emacs and return to superior process. You can resume later.
10641 If `cannot-suspend' is non-nil, or if the system doesn't support job
10642 control, run a subshell instead.
10643
10644 If optional arg STUFFSTRING is non-nil, its characters are stuffed
10645 to be read as terminal input by Emacs's parent, after suspension.
10646
10647 Before suspending, run the normal hook `suspend-hook'.
10648 After resumption run the normal hook `suspend-resume-hook'.
10649
10650 Some operating systems cannot stop the Emacs process and resume it later.
10651 On such systems, Emacs starts a subshell instead of suspending. */)
10652 (Lisp_Object stuffstring)
10653 {
10654 int count = SPECPDL_INDEX ();
10655 int old_height, old_width;
10656 int width, height;
10657 struct gcpro gcpro1;
10658 Lisp_Object hook;
10659
10660 if (tty_list && tty_list->next)
10661 error ("There are other tty frames open; close them before suspending Emacs");
10662
10663 if (!NILP (stuffstring))
10664 CHECK_STRING (stuffstring);
10665
10666 /* Run the functions in suspend-hook. */
10667 hook = intern ("suspend-hook");
10668 Frun_hooks (1, &hook);
10669
10670 GCPRO1 (stuffstring);
10671 get_tty_size (fileno (CURTTY ()->input), &old_width, &old_height);
10672 reset_all_sys_modes ();
10673 /* sys_suspend can get an error if it tries to fork a subshell
10674 and the system resources aren't available for that. */
10675 record_unwind_protect ((Lisp_Object (*) (Lisp_Object)) init_all_sys_modes,
10676 Qnil);
10677 stuff_buffered_input (stuffstring);
10678 if (cannot_suspend)
10679 sys_subshell ();
10680 else
10681 sys_suspend ();
10682 unbind_to (count, Qnil);
10683
10684 /* Check if terminal/window size has changed.
10685 Note that this is not useful when we are running directly
10686 with a window system; but suspend should be disabled in that case. */
10687 get_tty_size (fileno (CURTTY ()->input), &width, &height);
10688 if (width != old_width || height != old_height)
10689 change_frame_size (SELECTED_FRAME (), height, width, 0, 0, 0);
10690
10691 /* Run suspend-resume-hook. */
10692 hook = intern ("suspend-resume-hook");
10693 Frun_hooks (1, &hook);
10694
10695 UNGCPRO;
10696 return Qnil;
10697 }
10698
10699 /* If STUFFSTRING is a string, stuff its contents as pending terminal input.
10700 Then in any case stuff anything Emacs has read ahead and not used. */
10701
10702 void
10703 stuff_buffered_input (Lisp_Object stuffstring)
10704 {
10705 #ifdef SIGTSTP /* stuff_char is defined if SIGTSTP. */
10706 register unsigned char *p;
10707
10708 if (STRINGP (stuffstring))
10709 {
10710 register EMACS_INT count;
10711
10712 p = SDATA (stuffstring);
10713 count = SBYTES (stuffstring);
10714 while (count-- > 0)
10715 stuff_char (*p++);
10716 stuff_char ('\n');
10717 }
10718
10719 /* Anything we have read ahead, put back for the shell to read. */
10720 /* ?? What should this do when we have multiple keyboards??
10721 Should we ignore anything that was typed in at the "wrong" kboard?
10722
10723 rms: we should stuff everything back into the kboard
10724 it came from. */
10725 for (; kbd_fetch_ptr != kbd_store_ptr; kbd_fetch_ptr++)
10726 {
10727
10728 if (kbd_fetch_ptr == kbd_buffer + KBD_BUFFER_SIZE)
10729 kbd_fetch_ptr = kbd_buffer;
10730 if (kbd_fetch_ptr->kind == ASCII_KEYSTROKE_EVENT)
10731 stuff_char (kbd_fetch_ptr->code);
10732
10733 clear_event (kbd_fetch_ptr);
10734 }
10735
10736 input_pending = 0;
10737 #endif /* SIGTSTP */
10738 }
10739 \f
10740 void
10741 set_waiting_for_input (struct timeval *time_to_clear)
10742 {
10743 input_available_clear_time = time_to_clear;
10744
10745 /* Tell handle_interrupt to throw back to read_char, */
10746 waiting_for_input = 1;
10747
10748 /* If handle_interrupt was called before and buffered a C-g,
10749 make it run again now, to avoid timing error. */
10750 if (!NILP (Vquit_flag))
10751 quit_throw_to_read_char ();
10752 }
10753
10754 void
10755 clear_waiting_for_input (void)
10756 {
10757 /* Tell handle_interrupt not to throw back to read_char, */
10758 waiting_for_input = 0;
10759 input_available_clear_time = 0;
10760 }
10761
10762 /* The SIGINT handler.
10763
10764 If we have a frame on the controlling tty, we assume that the
10765 SIGINT was generated by C-g, so we call handle_interrupt.
10766 Otherwise, the handler kills Emacs. */
10767
10768 static void
10769 interrupt_signal (int signalnum) /* If we don't have an argument, some */
10770 /* compilers complain in signal calls. */
10771 {
10772 /* Must preserve main program's value of errno. */
10773 int old_errno = errno;
10774 struct terminal *terminal;
10775
10776 SIGNAL_THREAD_CHECK (signalnum);
10777
10778 /* See if we have an active terminal on our controlling tty. */
10779 terminal = get_named_tty ("/dev/tty");
10780 if (!terminal)
10781 {
10782 /* If there are no frames there, let's pretend that we are a
10783 well-behaving UN*X program and quit. */
10784 Fkill_emacs (Qnil);
10785 }
10786 else
10787 {
10788 /* Otherwise, the SIGINT was probably generated by C-g. */
10789
10790 /* Set internal_last_event_frame to the top frame of the
10791 controlling tty, if we have a frame there. We disable the
10792 interrupt key on secondary ttys, so the SIGINT must have come
10793 from the controlling tty. */
10794 internal_last_event_frame = terminal->display_info.tty->top_frame;
10795
10796 handle_interrupt ();
10797 }
10798
10799 errno = old_errno;
10800 }
10801
10802 /* This routine is called at interrupt level in response to C-g.
10803
10804 It is called from the SIGINT handler or kbd_buffer_store_event.
10805
10806 If `waiting_for_input' is non zero, then unless `echoing' is
10807 nonzero, immediately throw back to read_char.
10808
10809 Otherwise it sets the Lisp variable quit-flag not-nil. This causes
10810 eval to throw, when it gets a chance. If quit-flag is already
10811 non-nil, it stops the job right away. */
10812
10813 static void
10814 handle_interrupt (void)
10815 {
10816 char c;
10817
10818 cancel_echoing ();
10819
10820 /* XXX This code needs to be revised for multi-tty support. */
10821 if (!NILP (Vquit_flag) && get_named_tty ("/dev/tty"))
10822 {
10823 /* If SIGINT isn't blocked, don't let us be interrupted by
10824 another SIGINT, it might be harmful due to non-reentrancy
10825 in I/O functions. */
10826 sigblock (sigmask (SIGINT));
10827
10828 fflush (stdout);
10829 reset_all_sys_modes ();
10830
10831 #ifdef SIGTSTP /* Support possible in later USG versions */
10832 /*
10833 * On systems which can suspend the current process and return to the original
10834 * shell, this command causes the user to end up back at the shell.
10835 * The "Auto-save" and "Abort" questions are not asked until
10836 * the user elects to return to emacs, at which point he can save the current
10837 * job and either dump core or continue.
10838 */
10839 sys_suspend ();
10840 #else
10841 /* Perhaps should really fork an inferior shell?
10842 But that would not provide any way to get back
10843 to the original shell, ever. */
10844 printf ("No support for stopping a process on this operating system;\n");
10845 printf ("you can continue or abort.\n");
10846 #endif /* not SIGTSTP */
10847 #ifdef MSDOS
10848 /* We must remain inside the screen area when the internal terminal
10849 is used. Note that [Enter] is not echoed by dos. */
10850 cursor_to (SELECTED_FRAME (), 0, 0);
10851 #endif
10852 /* It doesn't work to autosave while GC is in progress;
10853 the code used for auto-saving doesn't cope with the mark bit. */
10854 if (!gc_in_progress)
10855 {
10856 printf ("Auto-save? (y or n) ");
10857 fflush (stdout);
10858 if (((c = getchar ()) & ~040) == 'Y')
10859 {
10860 Fdo_auto_save (Qt, Qnil);
10861 #ifdef MSDOS
10862 printf ("\r\nAuto-save done");
10863 #else /* not MSDOS */
10864 printf ("Auto-save done\n");
10865 #endif /* not MSDOS */
10866 }
10867 while (c != '\n') c = getchar ();
10868 }
10869 else
10870 {
10871 /* During GC, it must be safe to reenable quitting again. */
10872 Vinhibit_quit = Qnil;
10873 #ifdef MSDOS
10874 printf ("\r\n");
10875 #endif /* not MSDOS */
10876 printf ("Garbage collection in progress; cannot auto-save now\r\n");
10877 printf ("but will instead do a real quit after garbage collection ends\r\n");
10878 fflush (stdout);
10879 }
10880
10881 #ifdef MSDOS
10882 printf ("\r\nAbort? (y or n) ");
10883 #else /* not MSDOS */
10884 printf ("Abort (and dump core)? (y or n) ");
10885 #endif /* not MSDOS */
10886 fflush (stdout);
10887 if (((c = getchar ()) & ~040) == 'Y')
10888 abort ();
10889 while (c != '\n') c = getchar ();
10890 #ifdef MSDOS
10891 printf ("\r\nContinuing...\r\n");
10892 #else /* not MSDOS */
10893 printf ("Continuing...\n");
10894 #endif /* not MSDOS */
10895 fflush (stdout);
10896 init_all_sys_modes ();
10897 sigfree ();
10898 }
10899 else
10900 {
10901 /* If executing a function that wants to be interrupted out of
10902 and the user has not deferred quitting by binding `inhibit-quit'
10903 then quit right away. */
10904 if (immediate_quit && NILP (Vinhibit_quit))
10905 {
10906 struct gl_state_s saved;
10907 struct gcpro gcpro1, gcpro2, gcpro3, gcpro4;
10908
10909 immediate_quit = 0;
10910 sigfree ();
10911 saved = gl_state;
10912 GCPRO4 (saved.object, saved.global_code,
10913 saved.current_syntax_table, saved.old_prop);
10914 Fsignal (Qquit, Qnil);
10915 /* FIXME: AFAIK, `quit' can never return, so this code is dead! */
10916 gl_state = saved;
10917 UNGCPRO;
10918 }
10919 else
10920 /* Else request quit when it's safe */
10921 Vquit_flag = Qt;
10922 }
10923
10924 /* TODO: The longjmp in this call throws the NS event loop integration off,
10925 and it seems to do fine without this. Probably some attention
10926 needs to be paid to the setting of waiting_for_input in
10927 wait_reading_process_output() under HAVE_NS because of the call
10928 to ns_select there (needed because otherwise events aren't picked up
10929 outside of polling since we don't get SIGIO like X and we don't have a
10930 separate event loop thread like W32. */
10931 #ifndef HAVE_NS
10932 if (waiting_for_input && !echoing)
10933 quit_throw_to_read_char ();
10934 #endif
10935 }
10936
10937 /* Handle a C-g by making read_char return C-g. */
10938
10939 void
10940 quit_throw_to_read_char (void)
10941 {
10942 sigfree ();
10943 /* Prevent another signal from doing this before we finish. */
10944 clear_waiting_for_input ();
10945 input_pending = 0;
10946
10947 Vunread_command_events = Qnil;
10948 unread_command_char = -1;
10949
10950 #if 0 /* Currently, sit_for is called from read_char without turning
10951 off polling. And that can call set_waiting_for_input.
10952 It seems to be harmless. */
10953 #ifdef POLL_FOR_INPUT
10954 /* May be > 1 if in recursive minibuffer. */
10955 if (poll_suppress_count == 0)
10956 abort ();
10957 #endif
10958 #endif
10959 if (FRAMEP (internal_last_event_frame)
10960 && !EQ (internal_last_event_frame, selected_frame))
10961 do_switch_frame (make_lispy_switch_frame (internal_last_event_frame),
10962 0, 0, Qnil);
10963
10964 _longjmp (getcjmp, 1);
10965 }
10966 \f
10967 DEFUN ("set-input-interrupt-mode", Fset_input_interrupt_mode, Sset_input_interrupt_mode, 1, 1, 0,
10968 doc: /* Set interrupt mode of reading keyboard input.
10969 If INTERRUPT is non-nil, Emacs will use input interrupts;
10970 otherwise Emacs uses CBREAK mode.
10971
10972 See also `current-input-mode'. */)
10973 (Lisp_Object interrupt)
10974 {
10975 int new_interrupt_input;
10976 #ifdef SIGIO
10977 /* Note SIGIO has been undef'd if FIONREAD is missing. */
10978 #ifdef HAVE_X_WINDOWS
10979 if (x_display_list != NULL)
10980 {
10981 /* When using X, don't give the user a real choice,
10982 because we haven't implemented the mechanisms to support it. */
10983 new_interrupt_input = 1;
10984 }
10985 else
10986 #endif /* HAVE_X_WINDOWS */
10987 new_interrupt_input = !NILP (interrupt);
10988 #else /* not SIGIO */
10989 new_interrupt_input = 0;
10990 #endif /* not SIGIO */
10991
10992 if (new_interrupt_input != interrupt_input)
10993 {
10994 #ifdef POLL_FOR_INPUT
10995 stop_polling ();
10996 #endif
10997 #ifndef DOS_NT
10998 /* this causes startup screen to be restored and messes with the mouse */
10999 reset_all_sys_modes ();
11000 interrupt_input = new_interrupt_input;
11001 init_all_sys_modes ();
11002 #else
11003 interrupt_input = new_interrupt_input;
11004 #endif
11005
11006 #ifdef POLL_FOR_INPUT
11007 poll_suppress_count = 1;
11008 start_polling ();
11009 #endif
11010 }
11011 return Qnil;
11012 }
11013
11014 DEFUN ("set-output-flow-control", Fset_output_flow_control, Sset_output_flow_control, 1, 2, 0,
11015 doc: /* Enable or disable ^S/^Q flow control for output to TERMINAL.
11016 If FLOW is non-nil, flow control is enabled and you cannot use C-s or
11017 C-q in key sequences.
11018
11019 This setting only has an effect on tty terminals and only when
11020 Emacs reads input in CBREAK mode; see `set-input-interrupt-mode'.
11021
11022 See also `current-input-mode'. */)
11023 (Lisp_Object flow, Lisp_Object terminal)
11024 {
11025 struct terminal *t = get_terminal (terminal, 1);
11026 struct tty_display_info *tty;
11027 if (t == NULL || (t->type != output_termcap && t->type != output_msdos_raw))
11028 return Qnil;
11029 tty = t->display_info.tty;
11030
11031 if (tty->flow_control != !NILP (flow))
11032 {
11033 #ifndef DOS_NT
11034 /* this causes startup screen to be restored and messes with the mouse */
11035 reset_sys_modes (tty);
11036 #endif
11037
11038 tty->flow_control = !NILP (flow);
11039
11040 #ifndef DOS_NT
11041 init_sys_modes (tty);
11042 #endif
11043 }
11044 return Qnil;
11045 }
11046
11047 DEFUN ("set-input-meta-mode", Fset_input_meta_mode, Sset_input_meta_mode, 1, 2, 0,
11048 doc: /* Enable or disable 8-bit input on TERMINAL.
11049 If META is t, Emacs will accept 8-bit input, and interpret the 8th
11050 bit as the Meta modifier.
11051
11052 If META is nil, Emacs will ignore the top bit, on the assumption it is
11053 parity.
11054
11055 Otherwise, Emacs will accept and pass through 8-bit input without
11056 specially interpreting the top bit.
11057
11058 This setting only has an effect on tty terminal devices.
11059
11060 Optional parameter TERMINAL specifies the tty terminal device to use.
11061 It may be a terminal object, a frame, or nil for the terminal used by
11062 the currently selected frame.
11063
11064 See also `current-input-mode'. */)
11065 (Lisp_Object meta, Lisp_Object terminal)
11066 {
11067 struct terminal *t = get_terminal (terminal, 1);
11068 struct tty_display_info *tty;
11069 int new_meta;
11070
11071 if (t == NULL || (t->type != output_termcap && t->type != output_msdos_raw))
11072 return Qnil;
11073 tty = t->display_info.tty;
11074
11075 if (NILP (meta))
11076 new_meta = 0;
11077 else if (EQ (meta, Qt))
11078 new_meta = 1;
11079 else
11080 new_meta = 2;
11081
11082 if (tty->meta_key != new_meta)
11083 {
11084 #ifndef DOS_NT
11085 /* this causes startup screen to be restored and messes with the mouse */
11086 reset_sys_modes (tty);
11087 #endif
11088
11089 tty->meta_key = new_meta;
11090
11091 #ifndef DOS_NT
11092 init_sys_modes (tty);
11093 #endif
11094 }
11095 return Qnil;
11096 }
11097
11098 DEFUN ("set-quit-char", Fset_quit_char, Sset_quit_char, 1, 1, 0,
11099 doc: /* Specify character used for quitting.
11100 QUIT must be an ASCII character.
11101
11102 This function only has an effect on the controlling tty of the Emacs
11103 process.
11104
11105 See also `current-input-mode'. */)
11106 (Lisp_Object quit)
11107 {
11108 struct terminal *t = get_named_tty ("/dev/tty");
11109 struct tty_display_info *tty;
11110 if (t == NULL || (t->type != output_termcap && t->type != output_msdos_raw))
11111 return Qnil;
11112 tty = t->display_info.tty;
11113
11114 if (NILP (quit) || !INTEGERP (quit) || XINT (quit) < 0 || XINT (quit) > 0400)
11115 error ("QUIT must be an ASCII character");
11116
11117 #ifndef DOS_NT
11118 /* this causes startup screen to be restored and messes with the mouse */
11119 reset_sys_modes (tty);
11120 #endif
11121
11122 /* Don't let this value be out of range. */
11123 quit_char = XINT (quit) & (tty->meta_key == 0 ? 0177 : 0377);
11124
11125 #ifndef DOS_NT
11126 init_sys_modes (tty);
11127 #endif
11128
11129 return Qnil;
11130 }
11131
11132 DEFUN ("set-input-mode", Fset_input_mode, Sset_input_mode, 3, 4, 0,
11133 doc: /* Set mode of reading keyboard input.
11134 First arg INTERRUPT non-nil means use input interrupts;
11135 nil means use CBREAK mode.
11136 Second arg FLOW non-nil means use ^S/^Q flow control for output to terminal
11137 (no effect except in CBREAK mode).
11138 Third arg META t means accept 8-bit input (for a Meta key).
11139 META nil means ignore the top bit, on the assumption it is parity.
11140 Otherwise, accept 8-bit input and don't use the top bit for Meta.
11141 Optional fourth arg QUIT if non-nil specifies character to use for quitting.
11142 See also `current-input-mode'. */)
11143 (Lisp_Object interrupt, Lisp_Object flow, Lisp_Object meta, Lisp_Object quit)
11144 {
11145 Fset_input_interrupt_mode (interrupt);
11146 Fset_output_flow_control (flow, Qnil);
11147 Fset_input_meta_mode (meta, Qnil);
11148 if (!NILP (quit))
11149 Fset_quit_char (quit);
11150 return Qnil;
11151 }
11152
11153 DEFUN ("current-input-mode", Fcurrent_input_mode, Scurrent_input_mode, 0, 0, 0,
11154 doc: /* Return information about the way Emacs currently reads keyboard input.
11155 The value is a list of the form (INTERRUPT FLOW META QUIT), where
11156 INTERRUPT is non-nil if Emacs is using interrupt-driven input; if
11157 nil, Emacs is using CBREAK mode.
11158 FLOW is non-nil if Emacs uses ^S/^Q flow control for output to the
11159 terminal; this does not apply if Emacs uses interrupt-driven input.
11160 META is t if accepting 8-bit input with 8th bit as Meta flag.
11161 META nil means ignoring the top bit, on the assumption it is parity.
11162 META is neither t nor nil if accepting 8-bit input and using
11163 all 8 bits as the character code.
11164 QUIT is the character Emacs currently uses to quit.
11165 The elements of this list correspond to the arguments of
11166 `set-input-mode'. */)
11167 (void)
11168 {
11169 Lisp_Object val[4];
11170 struct frame *sf = XFRAME (selected_frame);
11171
11172 val[0] = interrupt_input ? Qt : Qnil;
11173 if (FRAME_TERMCAP_P (sf) || FRAME_MSDOS_P (sf))
11174 {
11175 val[1] = FRAME_TTY (sf)->flow_control ? Qt : Qnil;
11176 val[2] = (FRAME_TTY (sf)->meta_key == 2
11177 ? make_number (0)
11178 : (CURTTY ()->meta_key == 1 ? Qt : Qnil));
11179 }
11180 else
11181 {
11182 val[1] = Qnil;
11183 val[2] = Qt;
11184 }
11185 XSETFASTINT (val[3], quit_char);
11186
11187 return Flist (sizeof (val) / sizeof (val[0]), val);
11188 }
11189
11190 DEFUN ("posn-at-x-y", Fposn_at_x_y, Sposn_at_x_y, 2, 4, 0,
11191 doc: /* Return position information for pixel coordinates X and Y.
11192 By default, X and Y are relative to text area of the selected window.
11193 Optional third arg FRAME-OR-WINDOW non-nil specifies frame or window.
11194 If optional fourth arg WHOLE is non-nil, X is relative to the left
11195 edge of the window.
11196
11197 The return value is similar to a mouse click position:
11198 (WINDOW AREA-OR-POS (X . Y) TIMESTAMP OBJECT POS (COL . ROW)
11199 IMAGE (DX . DY) (WIDTH . HEIGHT))
11200 The `posn-' functions access elements of such lists. */)
11201 (Lisp_Object x, Lisp_Object y, Lisp_Object frame_or_window, Lisp_Object whole)
11202 {
11203 CHECK_NATNUM (x);
11204 CHECK_NATNUM (y);
11205
11206 if (NILP (frame_or_window))
11207 frame_or_window = selected_window;
11208
11209 if (WINDOWP (frame_or_window))
11210 {
11211 struct window *w;
11212
11213 CHECK_LIVE_WINDOW (frame_or_window);
11214
11215 w = XWINDOW (frame_or_window);
11216 XSETINT (x, (XINT (x)
11217 + WINDOW_LEFT_EDGE_X (w)
11218 + (NILP (whole)
11219 ? window_box_left_offset (w, TEXT_AREA)
11220 : 0)));
11221 XSETINT (y, WINDOW_TO_FRAME_PIXEL_Y (w, XINT (y)));
11222 frame_or_window = w->frame;
11223 }
11224
11225 CHECK_LIVE_FRAME (frame_or_window);
11226
11227 return make_lispy_position (XFRAME (frame_or_window), x, y, 0);
11228 }
11229
11230 DEFUN ("posn-at-point", Fposn_at_point, Sposn_at_point, 0, 2, 0,
11231 doc: /* Return position information for buffer POS in WINDOW.
11232 POS defaults to point in WINDOW; WINDOW defaults to the selected window.
11233
11234 Return nil if position is not visible in window. Otherwise,
11235 the return value is similar to that returned by `event-start' for
11236 a mouse click at the upper left corner of the glyph corresponding
11237 to the given buffer position:
11238 (WINDOW AREA-OR-POS (X . Y) TIMESTAMP OBJECT POS (COL . ROW)
11239 IMAGE (DX . DY) (WIDTH . HEIGHT))
11240 The `posn-' functions access elements of such lists. */)
11241 (Lisp_Object pos, Lisp_Object window)
11242 {
11243 Lisp_Object tem;
11244
11245 if (NILP (window))
11246 window = selected_window;
11247
11248 tem = Fpos_visible_in_window_p (pos, window, Qt);
11249 if (!NILP (tem))
11250 {
11251 Lisp_Object x = XCAR (tem);
11252 Lisp_Object y = XCAR (XCDR (tem));
11253
11254 /* Point invisible due to hscrolling? */
11255 if (XINT (x) < 0)
11256 return Qnil;
11257 tem = Fposn_at_x_y (x, y, window, Qnil);
11258 }
11259
11260 return tem;
11261 }
11262
11263 \f
11264 /*
11265 * Set up a new kboard object with reasonable initial values.
11266 */
11267 void
11268 init_kboard (KBOARD *kb)
11269 {
11270 KVAR (kb, Voverriding_terminal_local_map) = Qnil;
11271 KVAR (kb, Vlast_command) = Qnil;
11272 KVAR (kb, Vreal_last_command) = Qnil;
11273 KVAR (kb, Vkeyboard_translate_table) = Qnil;
11274 KVAR (kb, Vlast_repeatable_command) = Qnil;
11275 KVAR (kb, Vprefix_arg) = Qnil;
11276 KVAR (kb, Vlast_prefix_arg) = Qnil;
11277 KVAR (kb, kbd_queue) = Qnil;
11278 kb->kbd_queue_has_data = 0;
11279 kb->immediate_echo = 0;
11280 KVAR (kb, echo_string) = Qnil;
11281 kb->echo_after_prompt = -1;
11282 kb->kbd_macro_buffer = 0;
11283 kb->kbd_macro_bufsize = 0;
11284 KVAR (kb, defining_kbd_macro) = Qnil;
11285 KVAR (kb, Vlast_kbd_macro) = Qnil;
11286 kb->reference_count = 0;
11287 KVAR (kb, Vsystem_key_alist) = Qnil;
11288 KVAR (kb, system_key_syms) = Qnil;
11289 KVAR (kb, Vwindow_system) = Qt; /* Unset. */
11290 KVAR (kb, Vinput_decode_map) = Fmake_sparse_keymap (Qnil);
11291 KVAR (kb, Vlocal_function_key_map) = Fmake_sparse_keymap (Qnil);
11292 Fset_keymap_parent (KVAR (kb, Vlocal_function_key_map), Vfunction_key_map);
11293 KVAR (kb, Vdefault_minibuffer_frame) = Qnil;
11294 }
11295
11296 /*
11297 * Destroy the contents of a kboard object, but not the object itself.
11298 * We use this just before deleting it, or if we're going to initialize
11299 * it a second time.
11300 */
11301 static void
11302 wipe_kboard (KBOARD *kb)
11303 {
11304 xfree (kb->kbd_macro_buffer);
11305 }
11306
11307 /* Free KB and memory referenced from it. */
11308
11309 void
11310 delete_kboard (KBOARD *kb)
11311 {
11312 KBOARD **kbp;
11313
11314 for (kbp = &all_kboards; *kbp != kb; kbp = &(*kbp)->next_kboard)
11315 if (*kbp == NULL)
11316 abort ();
11317 *kbp = kb->next_kboard;
11318
11319 /* Prevent a dangling reference to KB. */
11320 if (kb == current_kboard
11321 && FRAMEP (selected_frame)
11322 && FRAME_LIVE_P (XFRAME (selected_frame)))
11323 {
11324 current_kboard = FRAME_KBOARD (XFRAME (selected_frame));
11325 single_kboard = 0;
11326 if (current_kboard == kb)
11327 abort ();
11328 }
11329
11330 wipe_kboard (kb);
11331 xfree (kb);
11332 }
11333
11334 void
11335 init_keyboard (void)
11336 {
11337 /* This is correct before outermost invocation of the editor loop */
11338 command_loop_level = -1;
11339 immediate_quit = 0;
11340 quit_char = Ctl ('g');
11341 Vunread_command_events = Qnil;
11342 unread_command_char = -1;
11343 EMACS_SET_SECS_USECS (timer_idleness_start_time, -1, -1);
11344 total_keys = 0;
11345 recent_keys_index = 0;
11346 kbd_fetch_ptr = kbd_buffer;
11347 kbd_store_ptr = kbd_buffer;
11348 #if defined (HAVE_MOUSE) || defined (HAVE_GPM)
11349 do_mouse_tracking = Qnil;
11350 #endif
11351 input_pending = 0;
11352 interrupt_input_blocked = 0;
11353 interrupt_input_pending = 0;
11354 #ifdef SYNC_INPUT
11355 pending_signals = 0;
11356 #endif
11357
11358 /* This means that command_loop_1 won't try to select anything the first
11359 time through. */
11360 internal_last_event_frame = Qnil;
11361 Vlast_event_frame = internal_last_event_frame;
11362
11363 current_kboard = initial_kboard;
11364 /* Re-initialize the keyboard again. */
11365 wipe_kboard (current_kboard);
11366 init_kboard (current_kboard);
11367 /* A value of nil for Vwindow_system normally means a tty, but we also use
11368 it for the initial terminal since there is no window system there. */
11369 KVAR (current_kboard, Vwindow_system) = Qnil;
11370
11371 if (!noninteractive)
11372 {
11373 /* Before multi-tty support, these handlers used to be installed
11374 only if the current session was a tty session. Now an Emacs
11375 session may have multiple display types, so we always handle
11376 SIGINT. There is special code in interrupt_signal to exit
11377 Emacs on SIGINT when there are no termcap frames on the
11378 controlling terminal. */
11379 signal (SIGINT, interrupt_signal);
11380 #ifndef DOS_NT
11381 /* For systems with SysV TERMIO, C-g is set up for both SIGINT and
11382 SIGQUIT and we can't tell which one it will give us. */
11383 signal (SIGQUIT, interrupt_signal);
11384 #endif /* not DOS_NT */
11385 }
11386 /* Note SIGIO has been undef'd if FIONREAD is missing. */
11387 #ifdef SIGIO
11388 if (!noninteractive)
11389 signal (SIGIO, input_available_signal);
11390 #endif /* SIGIO */
11391
11392 /* Use interrupt input by default, if it works and noninterrupt input
11393 has deficiencies. */
11394
11395 #ifdef INTERRUPT_INPUT
11396 interrupt_input = 1;
11397 #else
11398 interrupt_input = 0;
11399 #endif
11400
11401 sigfree ();
11402 dribble = 0;
11403
11404 if (keyboard_init_hook)
11405 (*keyboard_init_hook) ();
11406
11407 #ifdef POLL_FOR_INPUT
11408 poll_timer = NULL;
11409 poll_suppress_count = 1;
11410 start_polling ();
11411 #endif
11412 }
11413
11414 /* This type's only use is in syms_of_keyboard, to initialize the
11415 event header symbols and put properties on them. */
11416 struct event_head {
11417 Lisp_Object *var;
11418 const char *name;
11419 Lisp_Object *kind;
11420 };
11421
11422 static const struct event_head head_table[] = {
11423 {&Qmouse_movement, "mouse-movement", &Qmouse_movement},
11424 {&Qscroll_bar_movement, "scroll-bar-movement", &Qmouse_movement},
11425 {&Qswitch_frame, "switch-frame", &Qswitch_frame},
11426 {&Qdelete_frame, "delete-frame", &Qdelete_frame},
11427 {&Qiconify_frame, "iconify-frame", &Qiconify_frame},
11428 {&Qmake_frame_visible, "make-frame-visible", &Qmake_frame_visible},
11429 /* `select-window' should be handled just like `switch-frame'
11430 in read_key_sequence. */
11431 {&Qselect_window, "select-window", &Qswitch_frame}
11432 };
11433
11434 void
11435 syms_of_keyboard (void)
11436 {
11437 pending_funcalls = Qnil;
11438 staticpro (&pending_funcalls);
11439
11440 Vlispy_mouse_stem = make_pure_c_string ("mouse");
11441 staticpro (&Vlispy_mouse_stem);
11442
11443 /* Tool-bars. */
11444 QCimage = intern_c_string (":image");
11445 staticpro (&QCimage);
11446
11447 staticpro (&Qhelp_echo);
11448 Qhelp_echo = intern_c_string ("help-echo");
11449
11450 staticpro (&Qrtl);
11451 Qrtl = intern_c_string (":rtl");
11452
11453 staticpro (&item_properties);
11454 item_properties = Qnil;
11455
11456 staticpro (&tool_bar_item_properties);
11457 tool_bar_item_properties = Qnil;
11458 staticpro (&tool_bar_items_vector);
11459 tool_bar_items_vector = Qnil;
11460
11461 staticpro (&real_this_command);
11462 real_this_command = Qnil;
11463
11464 Qtimer_event_handler = intern_c_string ("timer-event-handler");
11465 staticpro (&Qtimer_event_handler);
11466
11467 Qdisabled_command_function = intern_c_string ("disabled-command-function");
11468 staticpro (&Qdisabled_command_function);
11469
11470 Qself_insert_command = intern_c_string ("self-insert-command");
11471 staticpro (&Qself_insert_command);
11472
11473 Qforward_char = intern_c_string ("forward-char");
11474 staticpro (&Qforward_char);
11475
11476 Qbackward_char = intern_c_string ("backward-char");
11477 staticpro (&Qbackward_char);
11478
11479 Qdisabled = intern_c_string ("disabled");
11480 staticpro (&Qdisabled);
11481
11482 Qundefined = intern_c_string ("undefined");
11483 staticpro (&Qundefined);
11484
11485 Qpre_command_hook = intern_c_string ("pre-command-hook");
11486 staticpro (&Qpre_command_hook);
11487
11488 Qpost_command_hook = intern_c_string ("post-command-hook");
11489 staticpro (&Qpost_command_hook);
11490
11491 Qdeferred_action_function = intern_c_string ("deferred-action-function");
11492 staticpro (&Qdeferred_action_function);
11493
11494 Qfunction_key = intern_c_string ("function-key");
11495 staticpro (&Qfunction_key);
11496 Qmouse_click = intern_c_string ("mouse-click");
11497 staticpro (&Qmouse_click);
11498 #if defined (WINDOWSNT)
11499 Qlanguage_change = intern_c_string ("language-change");
11500 staticpro (&Qlanguage_change);
11501 #endif
11502 Qdrag_n_drop = intern_c_string ("drag-n-drop");
11503 staticpro (&Qdrag_n_drop);
11504
11505 Qsave_session = intern_c_string ("save-session");
11506 staticpro (&Qsave_session);
11507
11508 #ifdef HAVE_DBUS
11509 Qdbus_event = intern_c_string ("dbus-event");
11510 staticpro (&Qdbus_event);
11511 #endif
11512
11513 Qconfig_changed_event = intern_c_string ("config-changed-event");
11514 staticpro (&Qconfig_changed_event);
11515
11516 Qmenu_enable = intern_c_string ("menu-enable");
11517 staticpro (&Qmenu_enable);
11518 QCenable = intern_c_string (":enable");
11519 staticpro (&QCenable);
11520 QCvisible = intern_c_string (":visible");
11521 staticpro (&QCvisible);
11522 QChelp = intern_c_string (":help");
11523 staticpro (&QChelp);
11524 QCfilter = intern_c_string (":filter");
11525 staticpro (&QCfilter);
11526 QCbutton = intern_c_string (":button");
11527 staticpro (&QCbutton);
11528 QCkeys = intern_c_string (":keys");
11529 staticpro (&QCkeys);
11530 QCkey_sequence = intern_c_string (":key-sequence");
11531 staticpro (&QCkey_sequence);
11532 QCtoggle = intern_c_string (":toggle");
11533 staticpro (&QCtoggle);
11534 QCradio = intern_c_string (":radio");
11535 staticpro (&QCradio);
11536 QClabel = intern_c_string (":label");
11537 staticpro (&QClabel);
11538 QCvert_only = intern_c_string (":vert-only");
11539 staticpro (&QCvert_only);
11540
11541 Qmode_line = intern_c_string ("mode-line");
11542 staticpro (&Qmode_line);
11543 Qvertical_line = intern_c_string ("vertical-line");
11544 staticpro (&Qvertical_line);
11545 Qvertical_scroll_bar = intern_c_string ("vertical-scroll-bar");
11546 staticpro (&Qvertical_scroll_bar);
11547 Qmenu_bar = intern_c_string ("menu-bar");
11548 staticpro (&Qmenu_bar);
11549
11550 #if defined (HAVE_MOUSE) || defined (HAVE_GPM)
11551 Qmouse_fixup_help_message = intern_c_string ("mouse-fixup-help-message");
11552 staticpro (&Qmouse_fixup_help_message);
11553 #endif
11554
11555 Qabove_handle = intern_c_string ("above-handle");
11556 staticpro (&Qabove_handle);
11557 Qhandle = intern_c_string ("handle");
11558 staticpro (&Qhandle);
11559 Qbelow_handle = intern_c_string ("below-handle");
11560 staticpro (&Qbelow_handle);
11561 Qup = intern_c_string ("up");
11562 staticpro (&Qup);
11563 Qdown = intern_c_string ("down");
11564 staticpro (&Qdown);
11565 Qtop = intern_c_string ("top");
11566 staticpro (&Qtop);
11567 Qbottom = intern_c_string ("bottom");
11568 staticpro (&Qbottom);
11569 Qend_scroll = intern_c_string ("end-scroll");
11570 staticpro (&Qend_scroll);
11571 Qratio = intern_c_string ("ratio");
11572 staticpro (&Qratio);
11573
11574 Qevent_kind = intern_c_string ("event-kind");
11575 staticpro (&Qevent_kind);
11576 Qevent_symbol_elements = intern_c_string ("event-symbol-elements");
11577 staticpro (&Qevent_symbol_elements);
11578 Qevent_symbol_element_mask = intern_c_string ("event-symbol-element-mask");
11579 staticpro (&Qevent_symbol_element_mask);
11580 Qmodifier_cache = intern_c_string ("modifier-cache");
11581 staticpro (&Qmodifier_cache);
11582
11583 Qrecompute_lucid_menubar = intern_c_string ("recompute-lucid-menubar");
11584 staticpro (&Qrecompute_lucid_menubar);
11585 Qactivate_menubar_hook = intern_c_string ("activate-menubar-hook");
11586 staticpro (&Qactivate_menubar_hook);
11587
11588 Qpolling_period = intern_c_string ("polling-period");
11589 staticpro (&Qpolling_period);
11590
11591 Qinput_method_function = intern_c_string ("input-method-function");
11592 staticpro (&Qinput_method_function);
11593
11594 Qx_set_selection = intern_c_string ("x-set-selection");
11595 staticpro (&Qx_set_selection);
11596 QPRIMARY = intern_c_string ("PRIMARY");
11597 staticpro (&QPRIMARY);
11598 Qhandle_switch_frame = intern_c_string ("handle-switch-frame");
11599 staticpro (&Qhandle_switch_frame);
11600
11601 Qinput_method_exit_on_first_char = intern_c_string ("input-method-exit-on-first-char");
11602 staticpro (&Qinput_method_exit_on_first_char);
11603 Qinput_method_use_echo_area = intern_c_string ("input-method-use-echo-area");
11604 staticpro (&Qinput_method_use_echo_area);
11605
11606 Fset (Qinput_method_exit_on_first_char, Qnil);
11607 Fset (Qinput_method_use_echo_area, Qnil);
11608
11609 last_point_position_buffer = Qnil;
11610 last_point_position_window = Qnil;
11611
11612 {
11613 int i;
11614 int len = sizeof (head_table) / sizeof (head_table[0]);
11615
11616 for (i = 0; i < len; i++)
11617 {
11618 const struct event_head *p = &head_table[i];
11619 *p->var = intern_c_string (p->name);
11620 staticpro (p->var);
11621 Fput (*p->var, Qevent_kind, *p->kind);
11622 Fput (*p->var, Qevent_symbol_elements, Fcons (*p->var, Qnil));
11623 }
11624 }
11625
11626 button_down_location = Fmake_vector (make_number (5), Qnil);
11627 staticpro (&button_down_location);
11628 mouse_syms = Fmake_vector (make_number (5), Qnil);
11629 staticpro (&mouse_syms);
11630 wheel_syms = Fmake_vector (make_number (sizeof (lispy_wheel_names)
11631 / sizeof (lispy_wheel_names[0])),
11632 Qnil);
11633 staticpro (&wheel_syms);
11634
11635 {
11636 int i;
11637 int len = sizeof (modifier_names) / sizeof (modifier_names[0]);
11638
11639 modifier_symbols = Fmake_vector (make_number (len), Qnil);
11640 for (i = 0; i < len; i++)
11641 if (modifier_names[i])
11642 XVECTOR (modifier_symbols)->contents[i] = intern_c_string (modifier_names[i]);
11643 staticpro (&modifier_symbols);
11644 }
11645
11646 recent_keys = Fmake_vector (make_number (NUM_RECENT_KEYS), Qnil);
11647 staticpro (&recent_keys);
11648
11649 this_command_keys = Fmake_vector (make_number (40), Qnil);
11650 staticpro (&this_command_keys);
11651
11652 raw_keybuf = Fmake_vector (make_number (30), Qnil);
11653 staticpro (&raw_keybuf);
11654
11655 Qextended_command_history = intern_c_string ("extended-command-history");
11656 Fset (Qextended_command_history, Qnil);
11657 staticpro (&Qextended_command_history);
11658
11659 accent_key_syms = Qnil;
11660 staticpro (&accent_key_syms);
11661
11662 func_key_syms = Qnil;
11663 staticpro (&func_key_syms);
11664
11665 drag_n_drop_syms = Qnil;
11666 staticpro (&drag_n_drop_syms);
11667
11668 unread_switch_frame = Qnil;
11669 staticpro (&unread_switch_frame);
11670
11671 internal_last_event_frame = Qnil;
11672 staticpro (&internal_last_event_frame);
11673
11674 read_key_sequence_cmd = Qnil;
11675 staticpro (&read_key_sequence_cmd);
11676
11677 menu_bar_one_keymap_changed_items = Qnil;
11678 staticpro (&menu_bar_one_keymap_changed_items);
11679
11680 menu_bar_items_vector = Qnil;
11681 staticpro (&menu_bar_items_vector);
11682
11683 help_form_saved_window_configs = Qnil;
11684 staticpro (&help_form_saved_window_configs);
11685
11686 defsubr (&Scurrent_idle_time);
11687 defsubr (&Sevent_symbol_parse_modifiers);
11688 defsubr (&Sevent_convert_list);
11689 defsubr (&Sread_key_sequence);
11690 defsubr (&Sread_key_sequence_vector);
11691 defsubr (&Srecursive_edit);
11692 #if defined (HAVE_MOUSE) || defined (HAVE_GPM)
11693 defsubr (&Strack_mouse);
11694 #endif
11695 defsubr (&Sinput_pending_p);
11696 defsubr (&Scommand_execute);
11697 defsubr (&Srecent_keys);
11698 defsubr (&Sthis_command_keys);
11699 defsubr (&Sthis_command_keys_vector);
11700 defsubr (&Sthis_single_command_keys);
11701 defsubr (&Sthis_single_command_raw_keys);
11702 defsubr (&Sreset_this_command_lengths);
11703 defsubr (&Sclear_this_command_keys);
11704 defsubr (&Ssuspend_emacs);
11705 defsubr (&Sabort_recursive_edit);
11706 defsubr (&Sexit_recursive_edit);
11707 defsubr (&Srecursion_depth);
11708 defsubr (&Stop_level);
11709 defsubr (&Sdiscard_input);
11710 defsubr (&Sopen_dribble_file);
11711 defsubr (&Sset_input_interrupt_mode);
11712 defsubr (&Sset_output_flow_control);
11713 defsubr (&Sset_input_meta_mode);
11714 defsubr (&Sset_quit_char);
11715 defsubr (&Sset_input_mode);
11716 defsubr (&Scurrent_input_mode);
11717 defsubr (&Sexecute_extended_command);
11718 defsubr (&Sposn_at_point);
11719 defsubr (&Sposn_at_x_y);
11720
11721 DEFVAR_LISP ("last-command-event", last_command_event,
11722 doc: /* Last input event that was part of a command. */);
11723
11724 DEFVAR_LISP ("last-nonmenu-event", last_nonmenu_event,
11725 doc: /* Last input event in a command, except for mouse menu events.
11726 Mouse menus give back keys that don't look like mouse events;
11727 this variable holds the actual mouse event that led to the menu,
11728 so that you can determine whether the command was run by mouse or not. */);
11729
11730 DEFVAR_LISP ("last-input-event", last_input_event,
11731 doc: /* Last input event. */);
11732
11733 DEFVAR_LISP ("unread-command-events", Vunread_command_events,
11734 doc: /* List of events to be read as the command input.
11735 These events are processed first, before actual keyboard input.
11736 Events read from this list are not normally added to `this-command-keys',
11737 as they will already have been added once as they were read for the first time.
11738 An element of the form (t . EVENT) forces EVENT to be added to that list. */);
11739 Vunread_command_events = Qnil;
11740
11741 DEFVAR_INT ("unread-command-char", unread_command_char,
11742 doc: /* If not -1, an object to be read as next command input event. */);
11743
11744 DEFVAR_LISP ("unread-post-input-method-events", Vunread_post_input_method_events,
11745 doc: /* List of events to be processed as input by input methods.
11746 These events are processed before `unread-command-events'
11747 and actual keyboard input, but are not given to `input-method-function'. */);
11748 Vunread_post_input_method_events = Qnil;
11749
11750 DEFVAR_LISP ("unread-input-method-events", Vunread_input_method_events,
11751 doc: /* List of events to be processed as input by input methods.
11752 These events are processed after `unread-command-events', but
11753 before actual keyboard input.
11754 If there's an active input method, the events are given to
11755 `input-method-function'. */);
11756 Vunread_input_method_events = Qnil;
11757
11758 DEFVAR_LISP ("meta-prefix-char", meta_prefix_char,
11759 doc: /* Meta-prefix character code.
11760 Meta-foo as command input turns into this character followed by foo. */);
11761 XSETINT (meta_prefix_char, 033);
11762
11763 DEFVAR_KBOARD ("last-command", Vlast_command,
11764 doc: /* The last command executed.
11765 Normally a symbol with a function definition, but can be whatever was found
11766 in the keymap, or whatever the variable `this-command' was set to by that
11767 command.
11768
11769 The value `mode-exit' is special; it means that the previous command
11770 read an event that told it to exit, and it did so and unread that event.
11771 In other words, the present command is the event that made the previous
11772 command exit.
11773
11774 The value `kill-region' is special; it means that the previous command
11775 was a kill command.
11776
11777 `last-command' has a separate binding for each terminal device.
11778 See Info node `(elisp)Multiple Terminals'. */);
11779
11780 DEFVAR_KBOARD ("real-last-command", Vreal_last_command,
11781 doc: /* Same as `last-command', but never altered by Lisp code. */);
11782
11783 DEFVAR_KBOARD ("last-repeatable-command", Vlast_repeatable_command,
11784 doc: /* Last command that may be repeated.
11785 The last command executed that was not bound to an input event.
11786 This is the command `repeat' will try to repeat. */);
11787
11788 DEFVAR_LISP ("this-command", Vthis_command,
11789 doc: /* The command now being executed.
11790 The command can set this variable; whatever is put here
11791 will be in `last-command' during the following command. */);
11792 Vthis_command = Qnil;
11793
11794 DEFVAR_LISP ("this-command-keys-shift-translated",
11795 Vthis_command_keys_shift_translated,
11796 doc: /* Non-nil if the key sequence activating this command was shift-translated.
11797 Shift-translation occurs when there is no binding for the key sequence
11798 as entered, but a binding was found by changing an upper-case letter
11799 to lower-case, or a shifted function key to an unshifted one. */);
11800 Vthis_command_keys_shift_translated = Qnil;
11801
11802 DEFVAR_LISP ("this-original-command", Vthis_original_command,
11803 doc: /* The command bound to the current key sequence before remapping.
11804 It equals `this-command' if the original command was not remapped through
11805 any of the active keymaps. Otherwise, the value of `this-command' is the
11806 result of looking up the original command in the active keymaps. */);
11807 Vthis_original_command = Qnil;
11808
11809 DEFVAR_INT ("auto-save-interval", auto_save_interval,
11810 doc: /* *Number of input events between auto-saves.
11811 Zero means disable autosaving due to number of characters typed. */);
11812 auto_save_interval = 300;
11813
11814 DEFVAR_LISP ("auto-save-timeout", Vauto_save_timeout,
11815 doc: /* *Number of seconds idle time before auto-save.
11816 Zero or nil means disable auto-saving due to idleness.
11817 After auto-saving due to this many seconds of idle time,
11818 Emacs also does a garbage collection if that seems to be warranted. */);
11819 XSETFASTINT (Vauto_save_timeout, 30);
11820
11821 DEFVAR_LISP ("echo-keystrokes", Vecho_keystrokes,
11822 doc: /* *Nonzero means echo unfinished commands after this many seconds of pause.
11823 The value may be integer or floating point. */);
11824 Vecho_keystrokes = make_number (1);
11825
11826 DEFVAR_INT ("polling-period", polling_period,
11827 doc: /* *Interval between polling for input during Lisp execution.
11828 The reason for polling is to make C-g work to stop a running program.
11829 Polling is needed only when using X windows and SIGIO does not work.
11830 Polling is automatically disabled in all other cases. */);
11831 polling_period = 2;
11832
11833 DEFVAR_LISP ("double-click-time", Vdouble_click_time,
11834 doc: /* *Maximum time between mouse clicks to make a double-click.
11835 Measured in milliseconds. The value nil means disable double-click
11836 recognition; t means double-clicks have no time limit and are detected
11837 by position only. */);
11838 Vdouble_click_time = make_number (500);
11839
11840 DEFVAR_INT ("double-click-fuzz", double_click_fuzz,
11841 doc: /* *Maximum mouse movement between clicks to make a double-click.
11842 On window-system frames, value is the number of pixels the mouse may have
11843 moved horizontally or vertically between two clicks to make a double-click.
11844 On non window-system frames, value is interpreted in units of 1/8 characters
11845 instead of pixels.
11846
11847 This variable is also the threshold for motion of the mouse
11848 to count as a drag. */);
11849 double_click_fuzz = 3;
11850
11851 DEFVAR_BOOL ("inhibit-local-menu-bar-menus", inhibit_local_menu_bar_menus,
11852 doc: /* *Non-nil means inhibit local map menu bar menus. */);
11853 inhibit_local_menu_bar_menus = 0;
11854
11855 DEFVAR_INT ("num-input-keys", num_input_keys,
11856 doc: /* Number of complete key sequences read as input so far.
11857 This includes key sequences read from keyboard macros.
11858 The number is effectively the number of interactive command invocations. */);
11859 num_input_keys = 0;
11860
11861 DEFVAR_INT ("num-nonmacro-input-events", num_nonmacro_input_events,
11862 doc: /* Number of input events read from the keyboard so far.
11863 This does not include events generated by keyboard macros. */);
11864 num_nonmacro_input_events = 0;
11865
11866 DEFVAR_LISP ("last-event-frame", Vlast_event_frame,
11867 doc: /* The frame in which the most recently read event occurred.
11868 If the last event came from a keyboard macro, this is set to `macro'. */);
11869 Vlast_event_frame = Qnil;
11870
11871 /* This variable is set up in sysdep.c. */
11872 DEFVAR_LISP ("tty-erase-char", Vtty_erase_char,
11873 doc: /* The ERASE character as set by the user with stty. */);
11874
11875 DEFVAR_LISP ("help-char", Vhelp_char,
11876 doc: /* Character to recognize as meaning Help.
11877 When it is read, do `(eval help-form)', and display result if it's a string.
11878 If the value of `help-form' is nil, this char can be read normally. */);
11879 XSETINT (Vhelp_char, Ctl ('H'));
11880
11881 DEFVAR_LISP ("help-event-list", Vhelp_event_list,
11882 doc: /* List of input events to recognize as meaning Help.
11883 These work just like the value of `help-char' (see that). */);
11884 Vhelp_event_list = Qnil;
11885
11886 DEFVAR_LISP ("help-form", Vhelp_form,
11887 doc: /* Form to execute when character `help-char' is read.
11888 If the form returns a string, that string is displayed.
11889 If `help-form' is nil, the help char is not recognized. */);
11890 Vhelp_form = Qnil;
11891
11892 DEFVAR_LISP ("prefix-help-command", Vprefix_help_command,
11893 doc: /* Command to run when `help-char' character follows a prefix key.
11894 This command is used only when there is no actual binding
11895 for that character after that prefix key. */);
11896 Vprefix_help_command = Qnil;
11897
11898 DEFVAR_LISP ("top-level", Vtop_level,
11899 doc: /* Form to evaluate when Emacs starts up.
11900 Useful to set before you dump a modified Emacs. */);
11901 Vtop_level = Qnil;
11902
11903 DEFVAR_KBOARD ("keyboard-translate-table", Vkeyboard_translate_table,
11904 doc: /* Translate table for local keyboard input, or nil.
11905 If non-nil, the value should be a char-table. Each character read
11906 from the keyboard is looked up in this char-table. If the value found
11907 there is non-nil, then it is used instead of the actual input character.
11908
11909 The value can also be a string or vector, but this is considered obsolete.
11910 If it is a string or vector of length N, character codes N and up are left
11911 untranslated. In a vector, an element which is nil means "no translation".
11912
11913 This is applied to the characters supplied to input methods, not their
11914 output. See also `translation-table-for-input'.
11915
11916 This variable has a separate binding for each terminal.
11917 See Info node `(elisp)Multiple Terminals'. */);
11918
11919 DEFVAR_BOOL ("cannot-suspend", cannot_suspend,
11920 doc: /* Non-nil means to always spawn a subshell instead of suspending.
11921 \(Even if the operating system has support for stopping a process.\) */);
11922 cannot_suspend = 0;
11923
11924 DEFVAR_BOOL ("menu-prompting", menu_prompting,
11925 doc: /* Non-nil means prompt with menus when appropriate.
11926 This is done when reading from a keymap that has a prompt string,
11927 for elements that have prompt strings.
11928 The menu is displayed on the screen
11929 if X menus were enabled at configuration
11930 time and the previous event was a mouse click prefix key.
11931 Otherwise, menu prompting uses the echo area. */);
11932 menu_prompting = 1;
11933
11934 DEFVAR_LISP ("menu-prompt-more-char", menu_prompt_more_char,
11935 doc: /* Character to see next line of menu prompt.
11936 Type this character while in a menu prompt to rotate around the lines of it. */);
11937 XSETINT (menu_prompt_more_char, ' ');
11938
11939 DEFVAR_INT ("extra-keyboard-modifiers", extra_keyboard_modifiers,
11940 doc: /* A mask of additional modifier keys to use with every keyboard character.
11941 Emacs applies the modifiers of the character stored here to each keyboard
11942 character it reads. For example, after evaluating the expression
11943 (setq extra-keyboard-modifiers ?\\C-x)
11944 all input characters will have the control modifier applied to them.
11945
11946 Note that the character ?\\C-@, equivalent to the integer zero, does
11947 not count as a control character; rather, it counts as a character
11948 with no modifiers; thus, setting `extra-keyboard-modifiers' to zero
11949 cancels any modification. */);
11950 extra_keyboard_modifiers = 0;
11951
11952 DEFVAR_LISP ("deactivate-mark", Vdeactivate_mark,
11953 doc: /* If an editing command sets this to t, deactivate the mark afterward.
11954 The command loop sets this to nil before each command,
11955 and tests the value when the command returns.
11956 Buffer modification stores t in this variable. */);
11957 Vdeactivate_mark = Qnil;
11958 Qdeactivate_mark = intern_c_string ("deactivate-mark");
11959 staticpro (&Qdeactivate_mark);
11960
11961 DEFVAR_LISP ("pre-command-hook", Vpre_command_hook,
11962 doc: /* Normal hook run before each command is executed.
11963 If an unhandled error happens in running this hook,
11964 the function in which the error occurred is unconditionally removed, since
11965 otherwise the error might happen repeatedly and make Emacs nonfunctional. */);
11966 Vpre_command_hook = Qnil;
11967
11968 DEFVAR_LISP ("post-command-hook", Vpost_command_hook,
11969 doc: /* Normal hook run after each command is executed.
11970 If an unhandled error happens in running this hook,
11971 the function in which the error occurred is unconditionally removed, since
11972 otherwise the error might happen repeatedly and make Emacs nonfunctional. */);
11973 Vpost_command_hook = Qnil;
11974
11975 #if 0
11976 DEFVAR_LISP ("echo-area-clear-hook", ...,
11977 doc: /* Normal hook run when clearing the echo area. */);
11978 #endif
11979 Qecho_area_clear_hook = intern_c_string ("echo-area-clear-hook");
11980 staticpro (&Qecho_area_clear_hook);
11981 Fset (Qecho_area_clear_hook, Qnil);
11982
11983 DEFVAR_LISP ("lucid-menu-bar-dirty-flag", Vlucid_menu_bar_dirty_flag,
11984 doc: /* Non-nil means menu bar, specified Lucid style, needs to be recomputed. */);
11985 Vlucid_menu_bar_dirty_flag = Qnil;
11986
11987 DEFVAR_LISP ("menu-bar-final-items", Vmenu_bar_final_items,
11988 doc: /* List of menu bar items to move to the end of the menu bar.
11989 The elements of the list are event types that may have menu bar bindings. */);
11990 Vmenu_bar_final_items = Qnil;
11991
11992 DEFVAR_LISP ("tool-bar-separator-image-expression", Vtool_bar_separator_image_expression,
11993 doc: /* Expression evaluating to the image spec for a tool-bar separator.
11994 This is used internally by graphical displays that do not render
11995 tool-bar separators natively. Otherwise it is unused (e.g. on GTK). */);
11996 Vtool_bar_separator_image_expression = Qnil;
11997
11998 DEFVAR_KBOARD ("overriding-terminal-local-map",
11999 Voverriding_terminal_local_map,
12000 doc: /* Per-terminal keymap that overrides all other local keymaps.
12001 If this variable is non-nil, it is used as a keymap instead of the
12002 buffer's local map, and the minor mode keymaps and text property keymaps.
12003 It also replaces `overriding-local-map'.
12004
12005 This variable is intended to let commands such as `universal-argument'
12006 set up a different keymap for reading the next command.
12007
12008 `overriding-terminal-local-map' has a separate binding for each
12009 terminal device.
12010 See Info node `(elisp)Multiple Terminals'. */);
12011
12012 DEFVAR_LISP ("overriding-local-map", Voverriding_local_map,
12013 doc: /* Keymap that overrides all other local keymaps.
12014 If this variable is non-nil, it is used as a keymap--replacing the
12015 buffer's local map, the minor mode keymaps, and char property keymaps. */);
12016 Voverriding_local_map = Qnil;
12017
12018 DEFVAR_LISP ("overriding-local-map-menu-flag", Voverriding_local_map_menu_flag,
12019 doc: /* Non-nil means `overriding-local-map' applies to the menu bar.
12020 Otherwise, the menu bar continues to reflect the buffer's local map
12021 and the minor mode maps regardless of `overriding-local-map'. */);
12022 Voverriding_local_map_menu_flag = Qnil;
12023
12024 DEFVAR_LISP ("special-event-map", Vspecial_event_map,
12025 doc: /* Keymap defining bindings for special events to execute at low level. */);
12026 Vspecial_event_map = Fcons (intern_c_string ("keymap"), Qnil);
12027
12028 DEFVAR_LISP ("track-mouse", do_mouse_tracking,
12029 doc: /* *Non-nil means generate motion events for mouse motion. */);
12030
12031 DEFVAR_KBOARD ("system-key-alist", Vsystem_key_alist,
12032 doc: /* Alist of system-specific X windows key symbols.
12033 Each element should have the form (N . SYMBOL) where N is the
12034 numeric keysym code (sans the \"system-specific\" bit 1<<28)
12035 and SYMBOL is its name.
12036
12037 `system-key-alist' has a separate binding for each terminal device.
12038 See Info node `(elisp)Multiple Terminals'. */);
12039
12040 DEFVAR_KBOARD ("local-function-key-map", Vlocal_function_key_map,
12041 doc: /* Keymap that translates key sequences to key sequences during input.
12042 This is used mainly for mapping key sequences into some preferred
12043 key events (symbols).
12044
12045 The `read-key-sequence' function replaces any subsequence bound by
12046 `local-function-key-map' with its binding. More precisely, when the
12047 active keymaps have no binding for the current key sequence but
12048 `local-function-key-map' binds a suffix of the sequence to a vector or
12049 string, `read-key-sequence' replaces the matching suffix with its
12050 binding, and continues with the new sequence.
12051
12052 If the binding is a function, it is called with one argument (the prompt)
12053 and its return value (a key sequence) is used.
12054
12055 The events that come from bindings in `local-function-key-map' are not
12056 themselves looked up in `local-function-key-map'.
12057
12058 For example, suppose `local-function-key-map' binds `ESC O P' to [f1].
12059 Typing `ESC O P' to `read-key-sequence' would return [f1]. Typing
12060 `C-x ESC O P' would return [?\\C-x f1]. If [f1] were a prefix key,
12061 typing `ESC O P x' would return [f1 x].
12062
12063 `local-function-key-map' has a separate binding for each terminal
12064 device. See Info node `(elisp)Multiple Terminals'. If you need to
12065 define a binding on all terminals, change `function-key-map'
12066 instead. Initially, `local-function-key-map' is an empty keymap that
12067 has `function-key-map' as its parent on all terminal devices. */);
12068
12069 DEFVAR_KBOARD ("input-decode-map", Vinput_decode_map,
12070 doc: /* Keymap that decodes input escape sequences.
12071 This is used mainly for mapping ASCII function key sequences into
12072 real Emacs function key events (symbols).
12073
12074 The `read-key-sequence' function replaces any subsequence bound by
12075 `input-decode-map' with its binding. Contrary to `function-key-map',
12076 this map applies its rebinding regardless of the presence of an ordinary
12077 binding. So it is more like `key-translation-map' except that it applies
12078 before `function-key-map' rather than after.
12079
12080 If the binding is a function, it is called with one argument (the prompt)
12081 and its return value (a key sequence) is used.
12082
12083 The events that come from bindings in `input-decode-map' are not
12084 themselves looked up in `input-decode-map'.
12085
12086 This variable is keyboard-local. */);
12087
12088 DEFVAR_LISP ("function-key-map", Vfunction_key_map,
12089 doc: /* The parent keymap of all `local-function-key-map' instances.
12090 Function key definitions that apply to all terminal devices should go
12091 here. If a mapping is defined in both the current
12092 `local-function-key-map' binding and this variable, then the local
12093 definition will take precendence. */);
12094 Vfunction_key_map = Fmake_sparse_keymap (Qnil);
12095
12096 DEFVAR_LISP ("key-translation-map", Vkey_translation_map,
12097 doc: /* Keymap of key translations that can override keymaps.
12098 This keymap works like `function-key-map', but comes after that,
12099 and its non-prefix bindings override ordinary bindings.
12100 Another difference is that it is global rather than keyboard-local. */);
12101 Vkey_translation_map = Fmake_sparse_keymap (Qnil);
12102
12103 DEFVAR_LISP ("deferred-action-list", Vdeferred_action_list,
12104 doc: /* List of deferred actions to be performed at a later time.
12105 The precise format isn't relevant here; we just check whether it is nil. */);
12106 Vdeferred_action_list = Qnil;
12107
12108 DEFVAR_LISP ("deferred-action-function", Vdeferred_action_function,
12109 doc: /* Function to call to handle deferred actions, after each command.
12110 This function is called with no arguments after each command
12111 whenever `deferred-action-list' is non-nil. */);
12112 Vdeferred_action_function = Qnil;
12113
12114 DEFVAR_LISP ("suggest-key-bindings", Vsuggest_key_bindings,
12115 doc: /* *Non-nil means show the equivalent key-binding when M-x command has one.
12116 The value can be a length of time to show the message for.
12117 If the value is non-nil and not a number, we wait 2 seconds. */);
12118 Vsuggest_key_bindings = Qt;
12119
12120 DEFVAR_LISP ("timer-list", Vtimer_list,
12121 doc: /* List of active absolute time timers in order of increasing time. */);
12122 Vtimer_list = Qnil;
12123
12124 DEFVAR_LISP ("timer-idle-list", Vtimer_idle_list,
12125 doc: /* List of active idle-time timers in order of increasing time. */);
12126 Vtimer_idle_list = Qnil;
12127
12128 DEFVAR_LISP ("input-method-function", Vinput_method_function,
12129 doc: /* If non-nil, the function that implements the current input method.
12130 It's called with one argument, a printing character that was just read.
12131 \(That means a character with code 040...0176.)
12132 Typically this function uses `read-event' to read additional events.
12133 When it does so, it should first bind `input-method-function' to nil
12134 so it will not be called recursively.
12135
12136 The function should return a list of zero or more events
12137 to be used as input. If it wants to put back some events
12138 to be reconsidered, separately, by the input method,
12139 it can add them to the beginning of `unread-command-events'.
12140
12141 The input method function can find in `input-method-previous-message'
12142 the previous echo area message.
12143
12144 The input method function should refer to the variables
12145 `input-method-use-echo-area' and `input-method-exit-on-first-char'
12146 for guidance on what to do. */);
12147 Vinput_method_function = Qnil;
12148
12149 DEFVAR_LISP ("input-method-previous-message",
12150 Vinput_method_previous_message,
12151 doc: /* When `input-method-function' is called, hold the previous echo area message.
12152 This variable exists because `read-event' clears the echo area
12153 before running the input method. It is nil if there was no message. */);
12154 Vinput_method_previous_message = Qnil;
12155
12156 DEFVAR_LISP ("show-help-function", Vshow_help_function,
12157 doc: /* If non-nil, the function that implements the display of help.
12158 It's called with one argument, the help string to display. */);
12159 Vshow_help_function = Qnil;
12160
12161 DEFVAR_LISP ("disable-point-adjustment", Vdisable_point_adjustment,
12162 doc: /* If non-nil, suppress point adjustment after executing a command.
12163
12164 After a command is executed, if point is moved into a region that has
12165 special properties (e.g. composition, display), we adjust point to
12166 the boundary of the region. But, when a command sets this variable to
12167 non-nil, we suppress the point adjustment.
12168
12169 This variable is set to nil before reading a command, and is checked
12170 just after executing the command. */);
12171 Vdisable_point_adjustment = Qnil;
12172
12173 DEFVAR_LISP ("global-disable-point-adjustment",
12174 Vglobal_disable_point_adjustment,
12175 doc: /* *If non-nil, always suppress point adjustment.
12176
12177 The default value is nil, in which case, point adjustment are
12178 suppressed only after special commands that set
12179 `disable-point-adjustment' (which see) to non-nil. */);
12180 Vglobal_disable_point_adjustment = Qnil;
12181
12182 DEFVAR_LISP ("minibuffer-message-timeout", Vminibuffer_message_timeout,
12183 doc: /* *How long to display an echo-area message when the minibuffer is active.
12184 If the value is not a number, such messages don't time out. */);
12185 Vminibuffer_message_timeout = make_number (2);
12186
12187 DEFVAR_LISP ("throw-on-input", Vthrow_on_input,
12188 doc: /* If non-nil, any keyboard input throws to this symbol.
12189 The value of that variable is passed to `quit-flag' and later causes a
12190 peculiar kind of quitting. */);
12191 Vthrow_on_input = Qnil;
12192
12193 DEFVAR_LISP ("command-error-function", Vcommand_error_function,
12194 doc: /* If non-nil, function to output error messages.
12195 The arguments are the error data, a list of the form
12196 (SIGNALED-CONDITIONS . SIGNAL-DATA)
12197 such as just as `condition-case' would bind its variable to,
12198 the context (a string which normally goes at the start of the message),
12199 and the Lisp function within which the error was signaled. */);
12200 Vcommand_error_function = Qnil;
12201
12202 DEFVAR_LISP ("enable-disabled-menus-and-buttons",
12203 Venable_disabled_menus_and_buttons,
12204 doc: /* If non-nil, don't ignore events produced by disabled menu items and tool-bar.
12205
12206 Help functions bind this to allow help on disabled menu items
12207 and tool-bar buttons. */);
12208 Venable_disabled_menus_and_buttons = Qnil;
12209
12210 DEFVAR_LISP ("select-active-regions",
12211 Vselect_active_regions,
12212 doc: /* If non-nil, an active region automatically sets the primary selection.
12213 If the value is `only', only temporarily active regions (usually made
12214 by mouse-dragging or shift-selection) set the window selection.
12215
12216 This takes effect only when Transient Mark mode is enabled. */);
12217 Vselect_active_regions = Qt;
12218
12219 DEFVAR_LISP ("saved-region-selection",
12220 Vsaved_region_selection,
12221 doc: /* Contents of active region prior to buffer modification.
12222 If `select-active-regions' is non-nil, Emacs sets this to the
12223 text in the region before modifying the buffer. The next
12224 `deactivate-mark' call uses this to set the window selection. */);
12225 Vsaved_region_selection = Qnil;
12226
12227 /* Create the initial keyboard. */
12228 initial_kboard = (KBOARD *) xmalloc (sizeof (KBOARD));
12229 init_kboard (initial_kboard);
12230 /* Vwindow_system is left at t for now. */
12231 initial_kboard->next_kboard = all_kboards;
12232 all_kboards = initial_kboard;
12233 }
12234
12235 void
12236 keys_of_keyboard (void)
12237 {
12238 initial_define_key (global_map, Ctl ('Z'), "suspend-emacs");
12239 initial_define_key (control_x_map, Ctl ('Z'), "suspend-emacs");
12240 initial_define_key (meta_map, Ctl ('C'), "exit-recursive-edit");
12241 initial_define_key (global_map, Ctl (']'), "abort-recursive-edit");
12242 initial_define_key (meta_map, 'x', "execute-extended-command");
12243
12244 initial_define_lispy_key (Vspecial_event_map, "delete-frame",
12245 "handle-delete-frame");
12246 initial_define_lispy_key (Vspecial_event_map, "ns-put-working-text",
12247 "ns-put-working-text");
12248 initial_define_lispy_key (Vspecial_event_map, "ns-unput-working-text",
12249 "ns-unput-working-text");
12250 /* Here we used to use `ignore-event' which would simple set prefix-arg to
12251 current-prefix-arg, as is done in `handle-switch-frame'.
12252 But `handle-switch-frame is not run from the special-map.
12253 Commands from that map are run in a special way that automatically
12254 preserves the prefix-arg. Restoring the prefix arg here is not just
12255 redundant but harmful:
12256 - C-u C-x v =
12257 - current-prefix-arg is set to non-nil, prefix-arg is set to nil.
12258 - after the first prompt, the exit-minibuffer-hook is run which may
12259 iconify a frame and thus push a `iconify-frame' event.
12260 - after running exit-minibuffer-hook, current-prefix-arg is
12261 restored to the non-nil value it had before the prompt.
12262 - we enter the second prompt.
12263 current-prefix-arg is non-nil, prefix-arg is nil.
12264 - before running the first real event, we run the special iconify-frame
12265 event, but we pass the `special' arg to execute-command so
12266 current-prefix-arg and prefix-arg are left untouched.
12267 - here we foolishly copy the non-nil current-prefix-arg to prefix-arg.
12268 - the next key event will have a spuriously non-nil current-prefix-arg. */
12269 initial_define_lispy_key (Vspecial_event_map, "iconify-frame",
12270 "ignore");
12271 initial_define_lispy_key (Vspecial_event_map, "make-frame-visible",
12272 "ignore");
12273 /* Handling it at such a low-level causes read_key_sequence to get
12274 * confused because it doesn't realize that the current_buffer was
12275 * changed by read_char.
12276 *
12277 * initial_define_lispy_key (Vspecial_event_map, "select-window",
12278 * "handle-select-window"); */
12279 initial_define_lispy_key (Vspecial_event_map, "save-session",
12280 "handle-save-session");
12281
12282 #ifdef HAVE_DBUS
12283 /* Define a special event which is raised for dbus callback
12284 functions. */
12285 initial_define_lispy_key (Vspecial_event_map, "dbus-event",
12286 "dbus-handle-event");
12287 #endif
12288
12289 initial_define_lispy_key (Vspecial_event_map, "config-changed-event",
12290 "ignore");
12291 }
12292
12293 /* Mark the pointers in the kboard objects.
12294 Called by the Fgarbage_collector. */
12295 void
12296 mark_kboards (void)
12297 {
12298 KBOARD *kb;
12299 Lisp_Object *p;
12300 for (kb = all_kboards; kb; kb = kb->next_kboard)
12301 {
12302 if (kb->kbd_macro_buffer)
12303 for (p = kb->kbd_macro_buffer; p < kb->kbd_macro_ptr; p++)
12304 mark_object (*p);
12305 mark_object (KVAR (kb, Voverriding_terminal_local_map));
12306 mark_object (KVAR (kb, Vlast_command));
12307 mark_object (KVAR (kb, Vreal_last_command));
12308 mark_object (KVAR (kb, Vkeyboard_translate_table));
12309 mark_object (KVAR (kb, Vlast_repeatable_command));
12310 mark_object (KVAR (kb, Vprefix_arg));
12311 mark_object (KVAR (kb, Vlast_prefix_arg));
12312 mark_object (KVAR (kb, kbd_queue));
12313 mark_object (KVAR (kb, defining_kbd_macro));
12314 mark_object (KVAR (kb, Vlast_kbd_macro));
12315 mark_object (KVAR (kb, Vsystem_key_alist));
12316 mark_object (KVAR (kb, system_key_syms));
12317 mark_object (KVAR (kb, Vwindow_system));
12318 mark_object (KVAR (kb, Vinput_decode_map));
12319 mark_object (KVAR (kb, Vlocal_function_key_map));
12320 mark_object (KVAR (kb, Vdefault_minibuffer_frame));
12321 mark_object (KVAR (kb, echo_string));
12322 }
12323 {
12324 struct input_event *event;
12325 for (event = kbd_fetch_ptr; event != kbd_store_ptr; event++)
12326 {
12327 if (event == kbd_buffer + KBD_BUFFER_SIZE)
12328 event = kbd_buffer;
12329 if (event->kind != SELECTION_REQUEST_EVENT
12330 && event->kind != SELECTION_CLEAR_EVENT)
12331 {
12332 mark_object (event->x);
12333 mark_object (event->y);
12334 }
12335 mark_object (event->frame_or_window);
12336 mark_object (event->arg);
12337 }
12338 }
12339 }