* alloc.c (pure_bytes_used_lisp, pure_bytes_used_non_lisp):
[bpt/emacs.git] / src / keymap.c
CommitLineData
2c6f1a39 1/* Manipulation of keymaps
73b0cd50 2 Copyright (C) 1985-1988, 1993-1995, 1998-2011 Free Software Foundation, Inc.
2c6f1a39
JB
3
4This file is part of GNU Emacs.
5
9ec0b715 6GNU Emacs is free software: you can redistribute it and/or modify
2c6f1a39 7it under the terms of the GNU General Public License as published by
9ec0b715
GM
8the Free Software Foundation, either version 3 of the License, or
9(at your option) any later version.
2c6f1a39
JB
10
11GNU Emacs is distributed in the hope that it will be useful,
12but WITHOUT ANY WARRANTY; without even the implied warranty of
13MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
14GNU General Public License for more details.
15
16You should have received a copy of the GNU General Public License
9ec0b715 17along with GNU Emacs. If not, see <http://www.gnu.org/licenses/>. */
2c6f1a39 18
3349e122
SM
19/* Old BUGS:
20 - [M-C-a] != [?\M-\C-a]
21 - [M-f2] != [?\e f2].
22 - (define-key map [menu-bar foo] <bla>) does not always place <bla>
23 at the head of the menu (if `foo' was already bound earlier and
24 then unbound, for example).
25 TODO:
26 - allow many more Meta -> ESC mappings (like Hyper -> C-e for Emacspeak)
27 - Think about the various defaulting that's currently hard-coded in
28 keyboard.c (uppercase->lowercase, char->charset, button-events, ...)
29 and make it more generic. Maybe we should allow mappings of the
30 form (PREDICATE . BINDING) as generalization of the default binding,
31 tho probably a cleaner way to attack this is to allow functional
32 keymaps (i.e. keymaps that are implemented as functions that implement
33 a few different methods like `lookup', `map', ...).
34 - Make [a] equivalent to [?a].
35 BEWARE:
36 - map-keymap should work meaningfully even if entries are added/removed
37 to the keymap while iterating through it:
38 start - removed <= visited <= start + added
39 */
2c6f1a39 40
18160b98 41#include <config.h>
2c6f1a39 42#include <stdio.h>
d7306fe6 43#include <setjmp.h>
2c6f1a39
JB
44#include "lisp.h"
45#include "commands.h"
46#include "buffer.h"
e1e36e6e 47#include "character.h"
a98f1d1d 48#include "charset.h"
6bbbd9b0 49#include "keyboard.h"
428a555e 50#include "frame.h"
6ba6e250 51#include "termhooks.h"
9ac0d9e0 52#include "blockinput.h"
d964248c 53#include "puresize.h"
93d2aa1c 54#include "intervals.h"
8feddab4 55#include "keymap.h"
b74e16a3 56#include "window.h"
2c6f1a39 57
2c6f1a39
JB
58/* Actually allocate storage for these variables */
59
60Lisp_Object current_global_map; /* Current global keymap */
61
62Lisp_Object global_map; /* default global key bindings */
63
64Lisp_Object meta_map; /* The keymap used for globally bound
65 ESC-prefixed default commands */
66
67Lisp_Object control_x_map; /* The keymap used for globally bound
68 C-x-prefixed default commands */
69
2c6f1a39
JB
70 /* The keymap used by the minibuf for local
71 bindings when spaces are allowed in the
72 minibuf */
73
2c6f1a39
JB
74 /* The keymap used by the minibuf for local
75 bindings when spaces are not encouraged
76 in the minibuf */
77
78/* keymap used for minibuffers when doing completion */
2c6f1a39 79/* keymap used for minibuffers when doing completion and require a match */
955cbe7b
PE
80static Lisp_Object Qkeymapp, Qnon_ascii;
81Lisp_Object Qkeymap, Qmenu_item, Qremap;
82static Lisp_Object QCadvertised_binding;
2c6f1a39 83
ade19cac
RS
84/* Alist of elements like (DEL . "\d"). */
85static Lisp_Object exclude_keys;
86
023b93f6
KS
87/* Pre-allocated 2-element vector for Fcommand_remapping to use. */
88static Lisp_Object command_remapping_vector;
a1df473f 89
1e7d1ab0
SM
90/* Hash table used to cache a reverse-map to speed up calls to where-is. */
91static Lisp_Object where_is_cache;
92/* Which keymaps are reverse-stored in the cache. */
93static Lisp_Object where_is_cache_keymaps;
94
cd64ea1d 95static Lisp_Object Flookup_key (Lisp_Object, Lisp_Object, Lisp_Object);
f57e2426 96static Lisp_Object store_in_keymap (Lisp_Object, Lisp_Object, Lisp_Object);
f57e2426
J
97
98static Lisp_Object define_as_prefix (Lisp_Object, Lisp_Object);
99static void describe_command (Lisp_Object, Lisp_Object);
100static void describe_translation (Lisp_Object, Lisp_Object);
101static void describe_map (Lisp_Object, Lisp_Object,
102 void (*) (Lisp_Object, Lisp_Object),
103 int, Lisp_Object, Lisp_Object*, int, int);
104static void describe_vector (Lisp_Object, Lisp_Object, Lisp_Object,
105 void (*) (Lisp_Object, Lisp_Object), int,
59eb0929 106 Lisp_Object, Lisp_Object, int, int);
f57e2426 107static void silly_event_symbol_error (Lisp_Object);
2f7c71a1 108static Lisp_Object get_keyelt (Lisp_Object, int);
2c6f1a39 109\f
cc0a8174
JB
110/* Keymap object support - constructors and predicates. */
111
ce6e5d0b 112DEFUN ("make-keymap", Fmake_keymap, Smake_keymap, 0, 1, 0,
335c5470 113 doc: /* Construct and return a new keymap, of the form (keymap CHARTABLE . ALIST).
2c0a0e38
LT
114CHARTABLE is a char-table that holds the bindings for all characters
115without modifiers. All entries in it are initially nil, meaning
116"command undefined". ALIST is an assoc-list which holds bindings for
117function keys, mouse events, and any other things that appear in the
118input stream. Initially, ALIST is nil.
335c5470
PJ
119
120The optional arg STRING supplies a menu name for the keymap
121in case you use it as a menu with `x-popup-menu'. */)
5842a27b 122 (Lisp_Object string)
2c6f1a39 123{
ce6e5d0b
RS
124 Lisp_Object tail;
125 if (!NILP (string))
126 tail = Fcons (string, Qnil);
127 else
128 tail = Qnil;
2c6f1a39 129 return Fcons (Qkeymap,
0403641f 130 Fcons (Fmake_char_table (Qkeymap, Qnil), tail));
2c6f1a39
JB
131}
132
a7ca3326 133DEFUN ("make-sparse-keymap", Fmake_sparse_keymap, Smake_sparse_keymap, 0, 1, 0,
335c5470
PJ
134 doc: /* Construct and return a new sparse keymap.
135Its car is `keymap' and its cdr is an alist of (CHAR . DEFINITION),
136which binds the character CHAR to DEFINITION, or (SYMBOL . DEFINITION),
137which binds the function key or mouse event SYMBOL to DEFINITION.
138Initially the alist is nil.
139
140The optional arg STRING supplies a menu name for the keymap
141in case you use it as a menu with `x-popup-menu'. */)
5842a27b 142 (Lisp_Object string)
2c6f1a39 143{
ce6e5d0b 144 if (!NILP (string))
905a9ed3
DN
145 {
146 if (!NILP (Vpurify_flag))
147 string = Fpurecopy (string);
148 return Fcons (Qkeymap, Fcons (string, Qnil));
149 }
2c6f1a39
JB
150 return Fcons (Qkeymap, Qnil);
151}
152
153/* This function is used for installing the standard key bindings
154 at initialization time.
155
156 For example:
157
e25c4e44 158 initial_define_key (control_x_map, Ctl('X'), "exchange-point-and-mark"); */
2c6f1a39
JB
159
160void
675e2c69 161initial_define_key (Lisp_Object keymap, int key, const char *defname)
2c6f1a39 162{
d67b4f80 163 store_in_keymap (keymap, make_number (key), intern_c_string (defname));
2c6f1a39
JB
164}
165
e25c4e44 166void
675e2c69 167initial_define_lispy_key (Lisp_Object keymap, const char *keyname, const char *defname)
e25c4e44 168{
d67b4f80 169 store_in_keymap (keymap, intern_c_string (keyname), intern_c_string (defname));
e25c4e44
JB
170}
171
2c6f1a39 172DEFUN ("keymapp", Fkeymapp, Skeymapp, 1, 1, 0,
335c5470
PJ
173 doc: /* Return t if OBJECT is a keymap.
174
175A keymap is a list (keymap . ALIST),
176or a symbol whose function definition is itself a keymap.
177ALIST elements look like (CHAR . DEFN) or (SYMBOL . DEFN);
178a vector of densely packed bindings for small character codes
179is also allowed as an element. */)
5842a27b 180 (Lisp_Object object)
2c6f1a39 181{
02067692 182 return (KEYMAPP (object) ? Qt : Qnil);
2c6f1a39
JB
183}
184
a7ca3326 185DEFUN ("keymap-prompt", Fkeymap_prompt, Skeymap_prompt, 1, 1, 0,
335c5470
PJ
186 doc: /* Return the prompt-string of a keymap MAP.
187If non-nil, the prompt is shown in the echo-area
188when reading a key-sequence to be looked-up in this keymap. */)
5842a27b 189 (Lisp_Object map)
54cbc3d4 190{
32e2fb04 191 map = get_keymap (map, 0, 0);
54cbc3d4
SM
192 while (CONSP (map))
193 {
32e2fb04 194 Lisp_Object tem = XCAR (map);
54cbc3d4
SM
195 if (STRINGP (tem))
196 return tem;
3349e122
SM
197 else if (KEYMAPP (tem))
198 {
199 tem = Fkeymap_prompt (tem);
200 if (!NILP (tem))
201 return tem;
202 }
32e2fb04 203 map = XCDR (map);
54cbc3d4
SM
204 }
205 return Qnil;
206}
207
2c6f1a39 208/* Check that OBJECT is a keymap (after dereferencing through any
d09b2024
JB
209 symbols). If it is, return it.
210
211 If AUTOLOAD is non-zero and OBJECT is a symbol whose function value
212 is an autoload form, do the autoload and try again.
21a0d7a0 213 If AUTOLOAD is nonzero, callers must assume GC is possible.
d09b2024 214
02067692
SM
215 If the map needs to be autoloaded, but AUTOLOAD is zero (and ERROR
216 is zero as well), return Qt.
217
c1141155
PE
218 ERROR_IF_NOT_KEYMAP controls how we respond if OBJECT isn't a keymap.
219 If ERROR_IF_NOT_KEYMAP is non-zero, signal an error; otherwise,
220 just return Qnil.
d09b2024
JB
221
222 Note that most of the time, we don't want to pursue autoloads.
223 Functions like Faccessible_keymaps which scan entire keymap trees
224 shouldn't load every autoloaded keymap. I'm not sure about this,
225 but it seems to me that only read_key_sequence, Flookup_key, and
df75b1a3
GM
226 Fdefine_key should cause keymaps to be autoloaded.
227
228 This function can GC when AUTOLOAD is non-zero, because it calls
229 do_autoload which can GC. */
d09b2024 230
2c6f1a39 231Lisp_Object
c1141155 232get_keymap (Lisp_Object object, int error_if_not_keymap, int autoload)
2c6f1a39 233{
d09b2024 234 Lisp_Object tem;
2c6f1a39 235
d09b2024 236 autoload_retry:
b1314e15
KH
237 if (NILP (object))
238 goto end;
239 if (CONSP (object) && EQ (XCAR (object), Qkeymap))
240 return object;
f5b79c1c 241
02067692
SM
242 tem = indirect_function (object);
243 if (CONSP (tem))
d09b2024 244 {
02067692
SM
245 if (EQ (XCAR (tem), Qkeymap))
246 return tem;
d09b2024 247
02067692
SM
248 /* Should we do an autoload? Autoload forms for keymaps have
249 Qkeymap as their fifth element. */
c1141155 250 if ((autoload || !error_if_not_keymap) && EQ (XCAR (tem), Qautoload)
9ce78f7c 251 && SYMBOLP (object))
8e4dfd54 252 {
02067692 253 Lisp_Object tail;
d09b2024 254
02067692
SM
255 tail = Fnth (make_number (4), tem);
256 if (EQ (tail, Qkeymap))
257 {
258 if (autoload)
259 {
260 struct gcpro gcpro1, gcpro2;
31bea176 261
02067692
SM
262 GCPRO2 (tem, object);
263 do_autoload (tem, object);
264 UNGCPRO;
31bea176 265
02067692
SM
266 goto autoload_retry;
267 }
268 else
66d77eda 269 return object;
02067692 270 }
8e4dfd54 271 }
d09b2024
JB
272 }
273
b1314e15 274 end:
c1141155 275 if (error_if_not_keymap)
2c6f1a39 276 wrong_type_argument (Qkeymapp, object);
6bbd7a29 277 return Qnil;
2c6f1a39 278}
7d58ed99 279\f
31bea176
SM
280/* Return the parent map of KEYMAP, or nil if it has none.
281 We assume that KEYMAP is a valid keymap. */
7d58ed99 282
38fc62d9 283static Lisp_Object
971de7fb 284keymap_parent (Lisp_Object keymap, int autoload)
7d58ed99
RS
285{
286 Lisp_Object list;
287
31bea176 288 keymap = get_keymap (keymap, 1, autoload);
7d58ed99
RS
289
290 /* Skip past the initial element `keymap'. */
03699b14
KR
291 list = XCDR (keymap);
292 for (; CONSP (list); list = XCDR (list))
7d58ed99
RS
293 {
294 /* See if there is another `keymap'. */
57495396 295 if (KEYMAPP (list))
7d58ed99
RS
296 return list;
297 }
298
31bea176 299 return get_keymap (list, 0, autoload);
7d58ed99
RS
300}
301
31bea176 302DEFUN ("keymap-parent", Fkeymap_parent, Skeymap_parent, 1, 1, 0,
293acc4a
CY
303 doc: /* Return the parent keymap of KEYMAP.
304If KEYMAP has no parent, return nil. */)
5842a27b 305 (Lisp_Object keymap)
31bea176
SM
306{
307 return keymap_parent (keymap, 1);
308}
3015eec0 309
b1904cd9 310/* Check whether MAP is one of MAPS parents. */
38fc62d9 311static int
971de7fb 312keymap_memberp (Lisp_Object map, Lisp_Object maps)
b1904cd9 313{
7e05cdaf 314 if (NILP (map)) return 0;
b1904cd9 315 while (KEYMAPP (maps) && !EQ (map, maps))
31bea176 316 maps = keymap_parent (maps, 0);
b1904cd9
SM
317 return (EQ (map, maps));
318}
319
7d58ed99
RS
320/* Set the parent keymap of MAP to PARENT. */
321
a7ca3326 322DEFUN ("set-keymap-parent", Fset_keymap_parent, Sset_keymap_parent, 2, 2, 0,
335c5470 323 doc: /* Modify KEYMAP to set its parent map to PARENT.
14923440 324Return PARENT. PARENT should be nil or another keymap. */)
5842a27b 325 (Lisp_Object keymap, Lisp_Object parent)
7d58ed99
RS
326{
327 Lisp_Object list, prev;
31bea176 328 struct gcpro gcpro1, gcpro2;
2c6f1a39 329
3349e122
SM
330 /* Flush any reverse-map cache. */
331 where_is_cache = Qnil; where_is_cache_keymaps = Qt;
1e7d1ab0 332
31bea176 333 GCPRO2 (keymap, parent);
02067692 334 keymap = get_keymap (keymap, 1, 1);
31bea176 335
7d58ed99 336 if (!NILP (parent))
3015eec0 337 {
3349e122 338 parent = get_keymap (parent, 1, 0);
3015eec0
GM
339
340 /* Check for cycles. */
b1904cd9 341 if (keymap_memberp (keymap, parent))
3015eec0
GM
342 error ("Cyclic keymap inheritance");
343 }
2c6f1a39 344
7d58ed99
RS
345 /* Skip past the initial element `keymap'. */
346 prev = keymap;
347 while (1)
348 {
03699b14 349 list = XCDR (prev);
7d58ed99
RS
350 /* If there is a parent keymap here, replace it.
351 If we came to the end, add the parent in PREV. */
54cbc3d4 352 if (!CONSP (list) || KEYMAPP (list))
7d58ed99 353 {
49daa5b1 354 CHECK_IMPURE (prev);
f3fbd155 355 XSETCDR (prev, parent);
3349e122 356 RETURN_UNGCPRO (parent);
7d58ed99
RS
357 }
358 prev = list;
359 }
7d58ed99
RS
360}
361\f
3349e122 362
2c6f1a39 363/* Look up IDX in MAP. IDX may be any sort of event.
f5b79c1c 364 Note that this does only one level of lookup; IDX must be a single
744cd66b 365 event, not a sequence.
e25c4e44 366
3349e122
SM
367 MAP must be a keymap or a list of keymaps.
368
e25c4e44
JB
369 If T_OK is non-zero, bindings for Qt are treated as default
370 bindings; any key left unmentioned by other tables and bindings is
744cd66b 371 given the binding of Qt.
e25c4e44 372
c07aec97
RS
373 If T_OK is zero, bindings for Qt are not treated specially.
374
3349e122
SM
375 If NOINHERIT, don't accept a subkeymap found in an inherited keymap.
376
377 Returns Qunbound if no binding was found (and returns Qnil if a nil
378 binding was found). */
2c6f1a39 379
cf7cff57 380static Lisp_Object
3349e122 381access_keymap_1 (Lisp_Object map, Lisp_Object idx, int t_ok, int noinherit, int autoload)
2c6f1a39
JB
382{
383 /* If idx is a list (some sort of mouse click, perhaps?),
384 the index we want to use is the car of the list, which
385 ought to be a symbol. */
cebd887d 386 idx = EVENT_HEAD (idx);
2c6f1a39 387
f5b79c1c
JB
388 /* If idx is a symbol, it might have modifiers, which need to
389 be put in the canonical order. */
47684cd9 390 if (SYMBOLP (idx))
f5b79c1c 391 idx = reorder_modifiers (idx);
2732bdbb
RS
392 else if (INTEGERP (idx))
393 /* Clobber the high bits that can be present on a machine
394 with more than 24 bits of integer. */
6e344130 395 XSETFASTINT (idx, XINT (idx) & (CHAR_META | (CHAR_META - 1)));
2c6f1a39 396
3349e122 397 /* Handle the special meta -> esc mapping. */
ccd9a01a 398 if (INTEGERP (idx) && XFASTINT (idx) & meta_modifier)
db785038 399 {
7396a36c
GM
400 /* See if there is a meta-map. If there's none, there is
401 no binding for IDX, unless a default binding exists in MAP. */
31bea176 402 struct gcpro gcpro1;
3349e122 403 Lisp_Object event_meta_binding, event_meta_map;
31bea176 404 GCPRO1 (map);
7f3e8859
RS
405 /* A strange value in which Meta is set would cause
406 infinite recursion. Protect against that. */
996f9cde 407 if (XINT (meta_prefix_char) & CHAR_META)
7f3e8859 408 meta_prefix_char = make_number (27);
3349e122
SM
409 event_meta_binding = access_keymap_1 (map, meta_prefix_char, t_ok,
410 noinherit, autoload);
411 event_meta_map = get_keymap (event_meta_binding, 0, autoload);
31bea176 412 UNGCPRO;
c1141155 413 if (CONSP (event_meta_map))
7396a36c 414 {
c1141155 415 map = event_meta_map;
ccd9a01a 416 idx = make_number (XFASTINT (idx) & ~meta_modifier);
7396a36c
GM
417 }
418 else if (t_ok)
419 /* Set IDX to t, so that we only find a default binding. */
420 idx = Qt;
421 else
3349e122
SM
422 /* An explicit nil binding, or no binding at all. */
423 return NILP (event_meta_binding) ? Qnil : Qunbound;
db785038
SM
424 }
425
31bea176
SM
426 /* t_binding is where we put a default binding that applies,
427 to use in case we do not find a binding specifically
428 for this key sequence. */
f5b79c1c
JB
429 {
430 Lisp_Object tail;
3349e122
SM
431 Lisp_Object t_binding = Qunbound;
432 Lisp_Object retval = Qunbound;
433 Lisp_Object retval_tail = Qnil;
31bea176 434 struct gcpro gcpro1, gcpro2, gcpro3, gcpro4;
efb91645 435
3349e122 436 GCPRO4 (tail, idx, t_binding, retval);
845e4cf4 437
3349e122 438 for (tail = (CONSP (map) && EQ (Qkeymap, XCAR (map))) ? XCDR (map) : map;
7396a36c 439 (CONSP (tail)
02067692 440 || (tail = get_keymap (tail, 0, autoload), CONSP (tail)));
db785038 441 tail = XCDR (tail))
2c6f1a39 442 {
3349e122
SM
443 /* Qunbound in VAL means we have found no binding. */
444 Lisp_Object val = Qunbound;
445 Lisp_Object binding = XCAR (tail);
446 Lisp_Object submap = get_keymap (binding, 0, autoload);
f5b79c1c 447
3349e122 448 if (EQ (binding, Qkeymap))
f5b79c1c 449 {
3349e122
SM
450 if (noinherit || NILP (retval))
451 /* If NOINHERIT, stop here, the rest is inherited. */
452 break;
453 else if (!EQ (retval, Qunbound))
454 {
455 Lisp_Object parent_entry;
456 eassert (KEYMAPP (retval));
457 parent_entry
458 = get_keymap (access_keymap_1 (tail, idx,
459 t_ok, 0, autoload),
460 0, autoload);
461 if (KEYMAPP (parent_entry))
462 {
463 if (CONSP (retval_tail))
464 XSETCDR (retval_tail, parent_entry);
465 else
466 {
467 retval_tail = Fcons (retval, parent_entry);
468 retval = Fcons (Qkeymap, retval_tail);
469 }
470 }
471 break;
472 }
473 }
474 else if (CONSP (submap))
475 {
476 val = access_keymap_1 (submap, idx, t_ok, noinherit, autoload);
783a2838
KH
477 }
478 else if (CONSP (binding))
479 {
859ea4b8 480 Lisp_Object key = XCAR (binding);
744cd66b 481
859ea4b8 482 if (EQ (key, idx))
845e4cf4 483 val = XCDR (binding);
84cb7b45 484 else if (t_ok && EQ (key, Qt))
845e4cf4
SM
485 {
486 t_binding = XCDR (binding);
84cb7b45 487 t_ok = 0;
859ea4b8 488 }
783a2838
KH
489 }
490 else if (VECTORP (binding))
491 {
ccd9a01a 492 if (INTEGERP (idx) && XFASTINT (idx) < ASIZE (binding))
845e4cf4 493 val = AREF (binding, XFASTINT (idx));
f5b79c1c 494 }
0403641f
RS
495 else if (CHAR_TABLE_P (binding))
496 {
6418ea16
RS
497 /* Character codes with modifiers
498 are not included in a char-table.
499 All character codes without modifiers are included. */
ccd9a01a 500 if (INTEGERP (idx) && (XFASTINT (idx) & CHAR_MODIFIER_MASK) == 0)
4dc3eb25
SM
501 {
502 val = Faref (binding, idx);
503 /* `nil' has a special meaning for char-tables, so
504 we use something else to record an explicitly
505 unbound entry. */
506 if (NILP (val))
507 val = Qunbound;
508 }
0403641f 509 }
20218e2f 510
845e4cf4
SM
511 /* If we found a binding, clean it up and return it. */
512 if (!EQ (val, Qunbound))
513 {
4dc3eb25
SM
514 if (EQ (val, Qt))
515 /* A Qt binding is just like an explicit nil binding
516 (i.e. it shadows any parent binding but not bindings in
517 keymaps of lower precedence). */
518 val = Qnil;
3349e122 519
845e4cf4 520 val = get_keyelt (val, autoload);
3349e122
SM
521
522 if (!KEYMAPP (val))
523 {
524 if (NILP (retval) || EQ (retval, Qunbound))
525 retval = val;
526 if (!NILP (val))
527 break; /* Shadows everything that follows. */
528 }
529 else if (NILP (retval) || EQ (retval, Qunbound))
530 retval = val;
531 else if (CONSP (retval_tail))
532 {
533 XSETCDR (retval_tail, Fcons (val, Qnil));
534 retval_tail = XCDR (retval_tail);
535 }
536 else
537 {
538 retval_tail = Fcons (val, Qnil);
539 retval = Fcons (Qkeymap, Fcons (retval, retval_tail));
540 }
845e4cf4 541 }
20218e2f 542 QUIT;
2c6f1a39 543 }
31bea176 544 UNGCPRO;
3349e122 545 return EQ (Qunbound, retval) ? get_keyelt (t_binding, autoload) : retval;
e25c4e44 546 }
2c6f1a39
JB
547}
548
3349e122
SM
549Lisp_Object
550access_keymap (Lisp_Object map, Lisp_Object idx,
551 int t_ok, int noinherit, int autoload)
552{
553 Lisp_Object val = access_keymap_1 (map, idx, t_ok, noinherit, autoload);
554 return EQ (val, Qunbound) ? Qnil : val;
555}
556
9d3153eb 557static void
971de7fb 558map_keymap_item (map_keymap_function_t fun, Lisp_Object args, Lisp_Object key, Lisp_Object val, void *data)
9d3153eb 559{
9d3153eb
SM
560 if (EQ (val, Qt))
561 val = Qnil;
562 (*fun) (key, val, args, data);
563}
564
565static void
971de7fb 566map_keymap_char_table_item (Lisp_Object args, Lisp_Object key, Lisp_Object val)
9d3153eb
SM
567{
568 if (!NILP (val))
569 {
3349e122
SM
570 map_keymap_function_t fun
571 = (map_keymap_function_t) XSAVE_VALUE (XCAR (args))->pointer;
9d3153eb 572 args = XCDR (args);
d704470f
AS
573 /* If the key is a range, make a copy since map_char_table modifies
574 it in place. */
575 if (CONSP (key))
576 key = Fcons (XCAR (key), XCDR (key));
9d3153eb
SM
577 map_keymap_item (fun, XCDR (args), key, val,
578 XSAVE_VALUE (XCAR (args))->pointer);
579 }
580}
581
12270607
SM
582/* Call FUN for every binding in MAP and stop at (and return) the parent.
583 FUN is called with 4 arguments: FUN (KEY, BINDING, ARGS, DATA). */
38fc62d9 584static Lisp_Object
12270607
SM
585map_keymap_internal (Lisp_Object map,
586 map_keymap_function_t fun,
587 Lisp_Object args,
588 void *data)
9d3153eb
SM
589{
590 struct gcpro gcpro1, gcpro2, gcpro3;
12270607
SM
591 Lisp_Object tail
592 = (CONSP (map) && EQ (Qkeymap, XCAR (map))) ? XCDR (map) : map;
9d3153eb
SM
593
594 GCPRO3 (map, args, tail);
12270607 595 for (; CONSP (tail) && !EQ (Qkeymap, XCAR (tail)); tail = XCDR (tail))
9d3153eb
SM
596 {
597 Lisp_Object binding = XCAR (tail);
8f924df7 598
3349e122
SM
599 if (KEYMAPP (binding)) /* An embedded parent. */
600 break;
601 else if (CONSP (binding))
9d3153eb
SM
602 map_keymap_item (fun, args, XCAR (binding), XCDR (binding), data);
603 else if (VECTORP (binding))
604 {
605 /* Loop over the char values represented in the vector. */
606 int len = ASIZE (binding);
607 int c;
9d3153eb
SM
608 for (c = 0; c < len; c++)
609 {
610 Lisp_Object character;
611 XSETFASTINT (character, c);
612 map_keymap_item (fun, args, character, AREF (binding, c), data);
613 }
614 }
615 else if (CHAR_TABLE_P (binding))
616 {
8f924df7 617 map_char_table (map_keymap_char_table_item, Qnil, binding,
01c9aa3a 618 Fcons (make_save_value ((void *) fun, 0),
9d3153eb 619 Fcons (make_save_value (data, 0),
8f924df7 620 args)));
9d3153eb
SM
621 }
622 }
623 UNGCPRO;
12270607 624 return tail;
9d3153eb
SM
625}
626
627static void
971de7fb 628map_keymap_call (Lisp_Object key, Lisp_Object val, Lisp_Object fun, void *dummy)
9d3153eb
SM
629{
630 call2 (fun, key, val);
631}
632
3349e122 633/* Same as map_keymap_internal, but traverses parent keymaps as well.
12270607
SM
634 A non-zero AUTOLOAD indicates that autoloaded keymaps should be loaded. */
635void
971de7fb 636map_keymap (Lisp_Object map, map_keymap_function_t fun, Lisp_Object args, void *data, int autoload)
12270607
SM
637{
638 struct gcpro gcpro1;
639 GCPRO1 (args);
640 map = get_keymap (map, 1, autoload);
641 while (CONSP (map))
642 {
3349e122
SM
643 if (KEYMAPP (XCAR (map)))
644 {
645 map_keymap (XCAR (map), fun, args, data, autoload);
646 map = XCDR (map);
647 }
648 else
649 map = map_keymap_internal (map, fun, args, data);
650 if (!CONSP (map))
651 map = get_keymap (map, 0, autoload);
12270607
SM
652 }
653 UNGCPRO;
654}
655
955cbe7b 656static Lisp_Object Qkeymap_canonicalize;
00f7c5ed
SM
657
658/* Same as map_keymap, but does it right, properly eliminating duplicate
659 bindings due to inheritance. */
660void
971de7fb 661map_keymap_canonical (Lisp_Object map, map_keymap_function_t fun, Lisp_Object args, void *data)
00f7c5ed
SM
662{
663 struct gcpro gcpro1;
664 GCPRO1 (args);
665 /* map_keymap_canonical may be used from redisplay (e.g. when building menus)
666 so be careful to ignore errors and to inhibit redisplay. */
667 map = safe_call1 (Qkeymap_canonicalize, map);
668 /* No need to use `map_keymap' here because canonical map has no parent. */
669 map_keymap_internal (map, fun, args, data);
670 UNGCPRO;
671}
672
12270607
SM
673DEFUN ("map-keymap-internal", Fmap_keymap_internal, Smap_keymap_internal, 2, 2, 0,
674 doc: /* Call FUNCTION once for each event binding in KEYMAP.
675FUNCTION is called with two arguments: the event that is bound, and
676the definition it is bound to. The event may be a character range.
677If KEYMAP has a parent, this function returns it without processing it. */)
5842a27b 678 (Lisp_Object function, Lisp_Object keymap)
12270607
SM
679{
680 struct gcpro gcpro1;
681 GCPRO1 (function);
682 keymap = get_keymap (keymap, 1, 1);
683 keymap = map_keymap_internal (keymap, map_keymap_call, function, NULL);
684 UNGCPRO;
685 return keymap;
686}
687
0ea6ae0a 688DEFUN ("map-keymap", Fmap_keymap, Smap_keymap, 2, 3, 0,
bb9c8a99 689 doc: /* Call FUNCTION once for each event binding in KEYMAP.
05f5847b 690FUNCTION is called with two arguments: the event that is bound, and
12270607 691the definition it is bound to. The event may be a character range.
05f5847b 692
2c0a0e38
LT
693If KEYMAP has a parent, the parent's bindings are included as well.
694This works recursively: if the parent has itself a parent, then the
0ea6ae0a
RS
695grandparent's bindings are also included and so on.
696usage: (map-keymap FUNCTION KEYMAP) */)
5842a27b 697 (Lisp_Object function, Lisp_Object keymap, Lisp_Object sort_first)
9d3153eb 698{
0ea6ae0a 699 if (! NILP (sort_first))
a10cca6c 700 return call2 (intern ("map-keymap-sorted"), function, keymap);
d6a31e9f 701
9d3153eb
SM
702 map_keymap (keymap, map_keymap_call, function, NULL, 1);
703 return Qnil;
704}
705
2c6f1a39
JB
706/* Given OBJECT which was found in a slot in a keymap,
707 trace indirect definitions to get the actual definition of that slot.
708 An indirect definition is a list of the form
709 (KEYMAP . INDEX), where KEYMAP is a keymap or a symbol defined as one
710 and INDEX is the object to look up in KEYMAP to yield the definition.
711
712 Also if OBJECT has a menu string as the first element,
224a16e8
RS
713 remove that. Also remove a menu help string as second element.
714
715 If AUTOLOAD is nonzero, load autoloadable keymaps
18e2d91f
RS
716 that are referred to with indirection.
717
718 This can GC because menu_item_eval_property calls Feval. */
2c6f1a39 719
2f7c71a1 720static Lisp_Object
971de7fb 721get_keyelt (Lisp_Object object, int autoload)
2c6f1a39
JB
722{
723 while (1)
724 {
b1314e15
KH
725 if (!(CONSP (object)))
726 /* This is really the value. */
727 return object;
2c6f1a39 728
b1314e15
KH
729 /* If the keymap contents looks like (keymap ...) or (lambda ...)
730 then use itself. */
731 else if (EQ (XCAR (object), Qkeymap) || EQ (XCAR (object), Qlambda))
732 return object;
733
734 /* If the keymap contents looks like (menu-item name . DEFN)
735 or (menu-item name DEFN ...) then use DEFN.
3fc720e4 736 This is a new format menu item. */
b1314e15 737 else if (EQ (XCAR (object), Qmenu_item))
0403641f 738 {
b1314e15 739 if (CONSP (XCDR (object)))
0403641f 740 {
3fc720e4
GM
741 Lisp_Object tem;
742
b1314e15 743 object = XCDR (XCDR (object));
3fc720e4 744 tem = object;
b1314e15
KH
745 if (CONSP (object))
746 object = XCAR (object);
3fc720e4
GM
747
748 /* If there's a `:filter FILTER', apply FILTER to the
749 menu-item's definition to get the real definition to
d5b3eb1b 750 use. */
3fc720e4 751 for (; CONSP (tem) && CONSP (XCDR (tem)); tem = XCDR (tem))
d5b3eb1b 752 if (EQ (XCAR (tem), QCfilter) && autoload)
3fc720e4
GM
753 {
754 Lisp_Object filter;
755 filter = XCAR (XCDR (tem));
756 filter = list2 (filter, list2 (Qquote, object));
757 object = menu_item_eval_property (filter);
758 break;
759 }
0403641f
RS
760 }
761 else
31bea176 762 /* Invalid keymap. */
b1314e15 763 return object;
0403641f
RS
764 }
765
b1314e15 766 /* If the keymap contents looks like (STRING . DEFN), use DEFN.
2c6f1a39
JB
767 Keymap alist elements like (CHAR MENUSTRING . DEFN)
768 will be used by HierarKey menus. */
b1314e15 769 else if (STRINGP (XCAR (object)))
1a8c3f10 770 {
b1314e15 771 object = XCDR (object);
1a8c3f10
RS
772 /* Also remove a menu help string, if any,
773 following the menu item name. */
b1314e15
KH
774 if (CONSP (object) && STRINGP (XCAR (object)))
775 object = XCDR (object);
c6ec9f6e 776 /* Also remove the sublist that caches key equivalences, if any. */
b1314e15 777 if (CONSP (object) && CONSP (XCAR (object)))
ffab2bd6 778 {
c6ec9f6e 779 Lisp_Object carcar;
b1314e15 780 carcar = XCAR (XCAR (object));
c6ec9f6e 781 if (NILP (carcar) || VECTORP (carcar))
b1314e15 782 object = XCDR (object);
ffab2bd6 783 }
1a8c3f10 784 }
2c6f1a39 785
b1314e15 786 /* If the contents are (KEYMAP . ELEMENT), go indirect. */
3349e122
SM
787 else if (KEYMAPP (XCAR (object)))
788 error ("Wow, indirect keymap entry!!");
b1314e15 789 else
3349e122 790 return object;
2c6f1a39
JB
791 }
792}
793
2d929694 794static Lisp_Object
971de7fb 795store_in_keymap (Lisp_Object keymap, register Lisp_Object idx, Lisp_Object def)
2c6f1a39 796{
1e7d1ab0
SM
797 /* Flush any reverse-map cache. */
798 where_is_cache = Qnil;
799 where_is_cache_keymaps = Qt;
800
3349e122
SM
801 if (EQ (idx, Qkeymap))
802 error ("`keymap' is reserved for embedded parent maps");
803
dce4372a 804 /* If we are preparing to dump, and DEF is a menu element
a3fc8840
RS
805 with a menu item indicator, copy it to ensure it is not pure. */
806 if (CONSP (def) && PURE_P (def)
03699b14
KR
807 && (EQ (XCAR (def), Qmenu_item) || STRINGP (XCAR (def))))
808 def = Fcons (XCAR (def), XCDR (def));
32ce36ad 809
54cbc3d4 810 if (!CONSP (keymap) || !EQ (XCAR (keymap), Qkeymap))
f5b79c1c
JB
811 error ("attempt to define a key in a non-keymap");
812
939f0e96
KH
813 /* If idx is a cons, and the car part is a character, idx must be of
814 the form (FROM-CHAR . TO-CHAR). */
815 if (CONSP (idx) && CHARACTERP (XCAR (idx)))
816 CHECK_CHARACTER_CDR (idx);
817 else
818 /* If idx is a list (some sort of mouse click, perhaps?),
819 the index we want to use is the car of the list, which
820 ought to be a symbol. */
821 idx = EVENT_HEAD (idx);
2c6f1a39 822
f5b79c1c
JB
823 /* If idx is a symbol, it might have modifiers, which need to
824 be put in the canonical order. */
416349ec 825 if (SYMBOLP (idx))
f5b79c1c 826 idx = reorder_modifiers (idx);
2732bdbb
RS
827 else if (INTEGERP (idx))
828 /* Clobber the high bits that can be present on a machine
829 with more than 24 bits of integer. */
6e344130 830 XSETFASTINT (idx, XINT (idx) & (CHAR_META | (CHAR_META - 1)));
f5b79c1c
JB
831
832 /* Scan the keymap for a binding of idx. */
2c6f1a39 833 {
f5b79c1c 834 Lisp_Object tail;
2c6f1a39 835
f5b79c1c
JB
836 /* The cons after which we should insert new bindings. If the
837 keymap has a table element, we record its position here, so new
838 bindings will go after it; this way, the table will stay
839 towards the front of the alist and character lookups in dense
840 keymaps will remain fast. Otherwise, this just points at the
841 front of the keymap. */
e9b6dfb0 842 Lisp_Object insertion_point;
2c6f1a39 843
e9b6dfb0 844 insertion_point = keymap;
03699b14 845 for (tail = XCDR (keymap); CONSP (tail); tail = XCDR (tail))
2c6f1a39 846 {
e9b6dfb0 847 Lisp_Object elt;
f5b79c1c 848
03699b14 849 elt = XCAR (tail);
783a2838 850 if (VECTORP (elt))
f5b79c1c 851 {
49801145 852 if (NATNUMP (idx) && XFASTINT (idx) < ASIZE (elt))
f5b79c1c 853 {
49daa5b1 854 CHECK_IMPURE (elt);
49801145 855 ASET (elt, XFASTINT (idx), def);
f5b79c1c
JB
856 return def;
857 }
afc9166a
KH
858 else if (CONSP (idx) && CHARACTERP (XCAR (idx)))
859 {
860 int from = XFASTINT (XCAR (idx));
861 int to = XFASTINT (XCDR (idx));
862
863 if (to >= ASIZE (elt))
864 to = ASIZE (elt) - 1;
865 for (; from <= to; from++)
866 ASET (elt, from, def);
867 if (to == XFASTINT (XCDR (idx)))
868 /* We have defined all keys in IDX. */
869 return def;
870 }
f5b79c1c 871 insertion_point = tail;
783a2838 872 }
0403641f
RS
873 else if (CHAR_TABLE_P (elt))
874 {
6418ea16
RS
875 /* Character codes with modifiers
876 are not included in a char-table.
877 All character codes without modifiers are included. */
4dc3eb25 878 if (NATNUMP (idx) && !(XFASTINT (idx) & CHAR_MODIFIER_MASK))
0403641f 879 {
4dc3eb25
SM
880 Faset (elt, idx,
881 /* `nil' has a special meaning for char-tables, so
882 we use something else to record an explicitly
883 unbound entry. */
884 NILP (def) ? Qt : def);
0403641f
RS
885 return def;
886 }
e1e36e6e
KH
887 else if (CONSP (idx) && CHARACTERP (XCAR (idx)))
888 {
889 Fset_char_table_range (elt, idx, NILP (def) ? Qt : def);
890 return def;
891 }
0403641f
RS
892 insertion_point = tail;
893 }
783a2838
KH
894 else if (CONSP (elt))
895 {
3349e122
SM
896 if (EQ (Qkeymap, XCAR (elt)))
897 { /* A sub keymap. This might be due to a lookup that found
898 two matching bindings (maybe because of a sub keymap).
899 It almost never happens (since the second binding normally
900 only happens in the inherited part of the keymap), but
901 if it does, we want to update the sub-keymap since the
902 main one might be temporary (built by access_keymap). */
903 tail = insertion_point = elt;
904 }
905 else if (EQ (idx, XCAR (elt)))
f5b79c1c 906 {
49daa5b1 907 CHECK_IMPURE (elt);
f3fbd155 908 XSETCDR (elt, def);
f5b79c1c
JB
909 return def;
910 }
afc9166a
KH
911 else if (CONSP (idx) && CHARACTERP (XCAR (idx)))
912 {
913 int from = XFASTINT (XCAR (idx));
914 int to = XFASTINT (XCDR (idx));
915
916 if (from <= XFASTINT (XCAR (elt))
917 && to >= XFASTINT (XCAR (elt)))
918 {
919 XSETCDR (elt, def);
920 if (from == to)
921 return def;
922 }
923 }
783a2838 924 }
49801145
SM
925 else if (EQ (elt, Qkeymap))
926 /* If we find a 'keymap' symbol in the spine of KEYMAP,
927 then we must have found the start of a second keymap
928 being used as the tail of KEYMAP, and a binding for IDX
929 should be inserted before it. */
930 goto keymap_end;
0188441d
JB
931
932 QUIT;
2c6f1a39 933 }
2c6f1a39 934
f5b79c1c
JB
935 keymap_end:
936 /* We have scanned the entire keymap, and not found a binding for
937 IDX. Let's add one. */
afc9166a
KH
938 {
939 Lisp_Object elt;
940
941 if (CONSP (idx) && CHARACTERP (XCAR (idx)))
942 {
943 /* IDX specifies a range of characters, and not all of them
944 were handled yet, which means this keymap doesn't have a
945 char-table. So, we insert a char-table now. */
946 elt = Fmake_char_table (Qkeymap, Qnil);
947 Fset_char_table_range (elt, idx, NILP (def) ? Qt : def);
948 }
949 else
950 elt = Fcons (idx, def);
41882805 951 CHECK_IMPURE (insertion_point);
afc9166a
KH
952 XSETCDR (insertion_point, Fcons (elt, XCDR (insertion_point)));
953 }
f5b79c1c 954 }
31bea176 955
2c6f1a39
JB
956 return def;
957}
958
cd64ea1d 959static Lisp_Object Fcopy_keymap (Lisp_Object);
2b6748c0 960
38fc62d9 961static Lisp_Object
971de7fb 962copy_keymap_item (Lisp_Object elt)
31bea176
SM
963{
964 Lisp_Object res, tem;
965
966 if (!CONSP (elt))
967 return elt;
968
969 res = tem = elt;
970
971 /* Is this a new format menu item. */
972 if (EQ (XCAR (tem), Qmenu_item))
973 {
974 /* Copy cell with menu-item marker. */
975 res = elt = Fcons (XCAR (tem), XCDR (tem));
976 tem = XCDR (elt);
977 if (CONSP (tem))
978 {
979 /* Copy cell with menu-item name. */
980 XSETCDR (elt, Fcons (XCAR (tem), XCDR (tem)));
981 elt = XCDR (elt);
982 tem = XCDR (elt);
983 }
984 if (CONSP (tem))
985 {
986 /* Copy cell with binding and if the binding is a keymap,
987 copy that. */
988 XSETCDR (elt, Fcons (XCAR (tem), XCDR (tem)));
989 elt = XCDR (elt);
990 tem = XCAR (elt);
991 if (CONSP (tem) && EQ (XCAR (tem), Qkeymap))
992 XSETCAR (elt, Fcopy_keymap (tem));
993 tem = XCDR (elt);
994 if (CONSP (tem) && CONSP (XCAR (tem)))
995 /* Delete cache for key equivalences. */
996 XSETCDR (elt, XCDR (tem));
997 }
998 }
999 else
1000 {
1001 /* It may be an old fomat menu item.
1002 Skip the optional menu string. */
1003 if (STRINGP (XCAR (tem)))
1004 {
1005 /* Copy the cell, since copy-alist didn't go this deep. */
1006 res = elt = Fcons (XCAR (tem), XCDR (tem));
1007 tem = XCDR (elt);
1008 /* Also skip the optional menu help string. */
1009 if (CONSP (tem) && STRINGP (XCAR (tem)))
1010 {
1011 XSETCDR (elt, Fcons (XCAR (tem), XCDR (tem)));
1012 elt = XCDR (elt);
1013 tem = XCDR (elt);
1014 }
1015 /* There may also be a list that caches key equivalences.
1016 Just delete it for the new keymap. */
1017 if (CONSP (tem)
1018 && CONSP (XCAR (tem))
1019 && (NILP (XCAR (XCAR (tem)))
1020 || VECTORP (XCAR (XCAR (tem)))))
1021 {
1022 XSETCDR (elt, XCDR (tem));
1023 tem = XCDR (tem);
1024 }
1025 if (CONSP (tem) && EQ (XCAR (tem), Qkeymap))
1026 XSETCDR (elt, Fcopy_keymap (tem));
1027 }
1028 else if (EQ (XCAR (tem), Qkeymap))
1029 res = Fcopy_keymap (elt);
1030 }
1031 return res;
1032}
1033
80951487 1034static void
971de7fb 1035copy_keymap_1 (Lisp_Object chartable, Lisp_Object idx, Lisp_Object elt)
0403641f 1036{
8f924df7 1037 Fset_char_table_range (chartable, idx, copy_keymap_item (elt));
0403641f 1038}
f5b79c1c 1039
2c6f1a39 1040DEFUN ("copy-keymap", Fcopy_keymap, Scopy_keymap, 1, 1, 0,
335c5470
PJ
1041 doc: /* Return a copy of the keymap KEYMAP.
1042The copy starts out with the same definitions of KEYMAP,
1043but changing either the copy or KEYMAP does not affect the other.
1044Any key definitions that are subkeymaps are recursively copied.
1045However, a key definition which is a symbol whose definition is a keymap
1046is not copied. */)
5842a27b 1047 (Lisp_Object keymap)
2c6f1a39
JB
1048{
1049 register Lisp_Object copy, tail;
31bea176
SM
1050 keymap = get_keymap (keymap, 1, 0);
1051 copy = tail = Fcons (Qkeymap, Qnil);
1052 keymap = XCDR (keymap); /* Skip the `keymap' symbol. */
2c6f1a39 1053
31bea176 1054 while (CONSP (keymap) && !EQ (XCAR (keymap), Qkeymap))
2c6f1a39 1055 {
31bea176 1056 Lisp_Object elt = XCAR (keymap);
0403641f
RS
1057 if (CHAR_TABLE_P (elt))
1058 {
0403641f 1059 elt = Fcopy_sequence (elt);
8f924df7 1060 map_char_table (copy_keymap_1, Qnil, elt, elt);
0403641f
RS
1061 }
1062 else if (VECTORP (elt))
2c6f1a39 1063 {
f5b79c1c 1064 int i;
f5b79c1c 1065 elt = Fcopy_sequence (elt);
49801145 1066 for (i = 0; i < ASIZE (elt); i++)
31bea176 1067 ASET (elt, i, copy_keymap_item (AREF (elt, i)));
d65a13c5 1068 }
31bea176 1069 else if (CONSP (elt))
3349e122
SM
1070 {
1071 if (EQ (XCAR (elt), Qkeymap))
1072 /* This is a sub keymap. */
1073 elt = Fcopy_keymap (elt);
1074 else
1075 elt = Fcons (XCAR (elt), copy_keymap_item (XCDR (elt)));
1076 }
31bea176
SM
1077 XSETCDR (tail, Fcons (elt, Qnil));
1078 tail = XCDR (tail);
1079 keymap = XCDR (keymap);
2c6f1a39 1080 }
31bea176 1081 XSETCDR (tail, keymap);
2c6f1a39
JB
1082 return copy;
1083}
1084\f
cc0a8174
JB
1085/* Simple Keymap mutators and accessors. */
1086
21a0d7a0
RS
1087/* GC is possible in this function if it autoloads a keymap. */
1088
a7ca3326 1089DEFUN ("define-key", Fdefine_key, Sdefine_key, 3, 3, 0,
2d772f45 1090 doc: /* In KEYMAP, define key sequence KEY as DEF.
0c412762
KS
1091KEYMAP is a keymap.
1092
277c5f18 1093KEY is a string or a vector of symbols and characters, representing a
0c412762 1094sequence of keystrokes and events. Non-ASCII characters with codes
277c5f18
CY
1095above 127 (such as ISO Latin-1) can be represented by vectors.
1096Two types of vector have special meanings:
2ec1b5ee 1097 [remap COMMAND] remaps any key binding for COMMAND.
277c5f18
CY
1098 [t] creates a default definition, which applies to any event with no
1099 other definition in KEYMAP.
0c412762 1100
335c5470
PJ
1101DEF is anything that can be a key's definition:
1102 nil (means key is undefined in this keymap),
f63fd14e 1103 a command (a Lisp function suitable for interactive calling),
335c5470
PJ
1104 a string (treated as a keyboard macro),
1105 a keymap (to define a prefix key),
f63fd14e 1106 a symbol (when the key is looked up, the symbol will stand for its
335c5470 1107 function definition, which should at that time be one of the above,
f63fd14e 1108 or another symbol whose function definition is used, etc.),
335c5470
PJ
1109 a cons (STRING . DEFN), meaning that DEFN is the definition
1110 (DEFN should be a valid definition in its own right),
b23916e7 1111 or a cons (MAP . CHAR), meaning use definition of CHAR in keymap MAP,
00b7c149
RS
1112 or an extended menu item definition.
1113 (See info node `(elisp)Extended Menu Items'.)
335c5470 1114
3abeca61
KG
1115If KEYMAP is a sparse keymap with a binding for KEY, the existing
1116binding is altered. If there is no binding for KEY, the new pair
1117binding KEY to DEF is added at the front of KEYMAP. */)
5842a27b 1118 (Lisp_Object keymap, Lisp_Object key, Lisp_Object def)
2c6f1a39 1119{
d311d28c 1120 register ptrdiff_t idx;
2c6f1a39 1121 register Lisp_Object c;
2c6f1a39
JB
1122 register Lisp_Object cmd;
1123 int metized = 0;
6ba6e250 1124 int meta_bit;
d311d28c 1125 ptrdiff_t length;
d09b2024 1126 struct gcpro gcpro1, gcpro2, gcpro3;
2c6f1a39 1127
31bea176 1128 GCPRO3 (keymap, key, def);
02067692 1129 keymap = get_keymap (keymap, 1, 1);
2c6f1a39 1130
ce5a29a1 1131 CHECK_VECTOR_OR_STRING (key);
2c6f1a39 1132
d09b2024 1133 length = XFASTINT (Flength (key));
2c6f1a39 1134 if (length == 0)
31bea176 1135 RETURN_UNGCPRO (Qnil);
a1df473f 1136
107fd03d
RS
1137 if (SYMBOLP (def) && !EQ (Vdefine_key_rebound_commands, Qt))
1138 Vdefine_key_rebound_commands = Fcons (def, Vdefine_key_rebound_commands);
1139
fab84e3c 1140 meta_bit = (VECTORP (key) || (STRINGP (key) && STRING_MULTIBYTE (key))
5df39998 1141 ? meta_modifier : 0x80);
6ba6e250 1142
7ae8428d 1143 if (VECTORP (def) && ASIZE (def) > 0 && CONSP (AREF (def, 0)))
2db8f173
SM
1144 { /* DEF is apparently an XEmacs-style keyboard macro. */
1145 Lisp_Object tmp = Fmake_vector (make_number (ASIZE (def)), Qnil);
1146 int i = ASIZE (def);
1147 while (--i >= 0)
1148 {
c1141155
PE
1149 Lisp_Object defi = AREF (def, i);
1150 if (CONSP (defi) && lucid_event_type_list_p (defi))
1151 defi = Fevent_convert_list (defi);
1152 ASET (tmp, i, defi);
2db8f173
SM
1153 }
1154 def = tmp;
1155 }
1156
2c6f1a39
JB
1157 idx = 0;
1158 while (1)
1159 {
1160 c = Faref (key, make_number (idx));
1161
e1e36e6e
KH
1162 if (CONSP (c))
1163 {
9a10f36d
KH
1164 /* C may be a Lucid style event type list or a cons (FROM .
1165 TO) specifying a range of characters. */
1166 if (lucid_event_type_list_p (c))
e1e36e6e 1167 c = Fevent_convert_list (c);
9a10f36d
KH
1168 else if (CHARACTERP (XCAR (c)))
1169 CHECK_CHARACTER_CDR (c);
e1e36e6e 1170 }
f09bc924 1171
15fff01d
RS
1172 if (SYMBOLP (c))
1173 silly_event_symbol_error (c);
2fae9111 1174
416349ec 1175 if (INTEGERP (c)
6ba6e250 1176 && (XINT (c) & meta_bit)
2c6f1a39
JB
1177 && !metized)
1178 {
1179 c = meta_prefix_char;
1180 metized = 1;
1181 }
1182 else
1183 {
416349ec 1184 if (INTEGERP (c))
0b8fc2d4 1185 XSETINT (c, XINT (c) & ~meta_bit);
2c6f1a39
JB
1186
1187 metized = 0;
1188 idx++;
1189 }
1190
e1e36e6e
KH
1191 if (!INTEGERP (c) && !SYMBOLP (c)
1192 && (!CONSP (c)
1193 /* If C is a range, it must be a leaf. */
1194 || (INTEGERP (XCAR (c)) && idx != length)))
76417ef4 1195 message_with_string ("Key sequence contains invalid event %s", c, 1);
5907b863 1196
2c6f1a39 1197 if (idx == length)
d09b2024 1198 RETURN_UNGCPRO (store_in_keymap (keymap, c, def));
2c6f1a39 1199
db785038 1200 cmd = access_keymap (keymap, c, 0, 1, 1);
2c6f1a39 1201
c07aec97 1202 /* If this key is undefined, make it a prefix. */
265a9e55 1203 if (NILP (cmd))
c07aec97 1204 cmd = define_as_prefix (keymap, c);
2c6f1a39 1205
02067692
SM
1206 keymap = get_keymap (cmd, 0, 1);
1207 if (!CONSP (keymap))
b099e063 1208 {
fb33fa43
SM
1209 const char *trailing_esc = ((EQ (c, meta_prefix_char) && metized)
1210 ? (idx == 0 ? "ESC" : " ESC")
1211 : "");
b099e063
DM
1212
1213 /* We must use Fkey_description rather than just passing key to
1214 error; key might be a vector, not a string. */
1215 error ("Key sequence %s starts with non-prefix key %s%s",
1216 SDATA (Fkey_description (key, Qnil)),
1217 SDATA (Fkey_description (Fsubstring (key, make_number (0),
1218 make_number (idx)),
1219 Qnil)),
1220 trailing_esc);
1221 }
2c6f1a39
JB
1222 }
1223}
1224
a1df473f
KS
1225/* This function may GC (it calls Fkey_binding). */
1226
a7ca3326 1227DEFUN ("command-remapping", Fcommand_remapping, Scommand_remapping, 1, 3, 0,
55665fe7 1228 doc: /* Return the remapping for command COMMAND.
b74e16a3
DK
1229Returns nil if COMMAND is not remapped (or not a symbol).
1230
1231If the optional argument POSITION is non-nil, it specifies a mouse
1232position as returned by `event-start' and `event-end', and the
1233remapping occurs in the keymaps associated with it. It can also be a
1234number or marker, in which case the keymap properties at the specified
55665fe7
CY
1235buffer position instead of point are used. The KEYMAPS argument is
1236ignored if POSITION is non-nil.
1237
1238If the optional argument KEYMAPS is non-nil, it should be a list of
1239keymaps to search for command remapping. Otherwise, search for the
1240remapping in all currently active keymaps. */)
5842a27b 1241 (Lisp_Object command, Lisp_Object position, Lisp_Object keymaps)
a1df473f 1242{
078d0f38
KS
1243 if (!SYMBOLP (command))
1244 return Qnil;
1245
023b93f6 1246 ASET (command_remapping_vector, 1, command);
55665fe7
CY
1247
1248 if (NILP (keymaps))
3349e122 1249 command = Fkey_binding (command_remapping_vector, Qnil, Qt, position);
55665fe7 1250 else
3349e122
SM
1251 command = Flookup_key (Fcons (Qkeymap, keymaps),
1252 command_remapping_vector, Qnil);
1253 return INTEGERP (command) ? Qnil : command;
a1df473f
KS
1254}
1255
f0529b5b 1256/* Value is number if KEY is too long; nil if valid but has no definition. */
3349e122 1257/* GC is possible in this function. */
2c6f1a39 1258
7c140252 1259DEFUN ("lookup-key", Flookup_key, Slookup_key, 2, 3, 0,
335c5470 1260 doc: /* In keymap KEYMAP, look up key sequence KEY. Return the definition.
64b2caa5
JB
1261A value of nil means undefined. See doc of `define-key'
1262for kinds of definitions.
335c5470
PJ
1263
1264A number as value means KEY is "too long";
1265that is, characters or symbols in it except for the last one
1266fail to be a valid sequence of prefix characters in KEYMAP.
1267The number is how many characters at the front of KEY
49daa5b1 1268it takes to reach a non-prefix key.
335c5470
PJ
1269
1270Normally, `lookup-key' ignores bindings for t, which act as default
1271bindings, used when nothing else in the keymap applies; this makes it
1272usable as a general function for probing keymaps. However, if the
1273third optional argument ACCEPT-DEFAULT is non-nil, `lookup-key' will
1274recognize the default bindings, just as `read-key-sequence' does. */)
5842a27b 1275 (Lisp_Object keymap, Lisp_Object key, Lisp_Object accept_default)
2c6f1a39 1276{
d311d28c 1277 register ptrdiff_t idx;
2c6f1a39
JB
1278 register Lisp_Object cmd;
1279 register Lisp_Object c;
d311d28c 1280 ptrdiff_t length;
54cbc3d4 1281 int t_ok = !NILP (accept_default);
31bea176 1282 struct gcpro gcpro1, gcpro2;
2c6f1a39 1283
31bea176 1284 GCPRO2 (keymap, key);
02067692 1285 keymap = get_keymap (keymap, 1, 1);
2c6f1a39 1286
ce5a29a1 1287 CHECK_VECTOR_OR_STRING (key);
2c6f1a39 1288
d09b2024 1289 length = XFASTINT (Flength (key));
2c6f1a39 1290 if (length == 0)
31bea176 1291 RETURN_UNGCPRO (keymap);
21a0d7a0 1292
2c6f1a39
JB
1293 idx = 0;
1294 while (1)
1295 {
db785038 1296 c = Faref (key, make_number (idx++));
2c6f1a39 1297
f09bc924 1298 if (CONSP (c) && lucid_event_type_list_p (c))
41015a19 1299 c = Fevent_convert_list (c);
f09bc924 1300
db785038 1301 /* Turn the 8th bit of string chars into a meta modifier. */
d6d8548d 1302 if (STRINGP (key) && XINT (c) & 0x80 && !STRING_MULTIBYTE (key))
db785038 1303 XSETINT (c, (XINT (c) | meta_modifier) & ~0x80);
2c6f1a39 1304
5f245371
KS
1305 /* Allow string since binding for `menu-bar-select-buffer'
1306 includes the buffer name in the key sequence. */
1307 if (!INTEGERP (c) && !SYMBOLP (c) && !CONSP (c) && !STRINGP (c))
76417ef4 1308 message_with_string ("Key sequence contains invalid event %s", c, 1);
2fae9111 1309
db785038 1310 cmd = access_keymap (keymap, c, t_ok, 0, 1);
2c6f1a39 1311 if (idx == length)
21a0d7a0 1312 RETURN_UNGCPRO (cmd);
2c6f1a39 1313
02067692
SM
1314 keymap = get_keymap (cmd, 0, 1);
1315 if (!CONSP (keymap))
21a0d7a0 1316 RETURN_UNGCPRO (make_number (idx));
2c6f1a39 1317
2c6f1a39
JB
1318 QUIT;
1319 }
1320}
1321
c07aec97
RS
1322/* Make KEYMAP define event C as a keymap (i.e., as a prefix).
1323 Assume that currently it does not define C at all.
1324 Return the keymap. */
1325
1326static Lisp_Object
971de7fb 1327define_as_prefix (Lisp_Object keymap, Lisp_Object c)
c07aec97 1328{
db785038 1329 Lisp_Object cmd;
c07aec97
RS
1330
1331 cmd = Fmake_sparse_keymap (Qnil);
c07aec97
RS
1332 store_in_keymap (keymap, c, cmd);
1333
1334 return cmd;
1335}
1336
0b8fc2d4
RS
1337/* Append a key to the end of a key sequence. We always make a vector. */
1338
38fc62d9 1339static Lisp_Object
971de7fb 1340append_key (Lisp_Object key_sequence, Lisp_Object key)
2c6f1a39
JB
1341{
1342 Lisp_Object args[2];
1343
1344 args[0] = key_sequence;
1345
0b8fc2d4
RS
1346 args[1] = Fcons (key, Qnil);
1347 return Fvconcat (2, args);
2c6f1a39
JB
1348}
1349
15fff01d
RS
1350/* Given a event type C which is a symbol,
1351 signal an error if is a mistake such as RET or M-RET or C-DEL, etc. */
1352
1353static void
971de7fb 1354silly_event_symbol_error (Lisp_Object c)
15fff01d
RS
1355{
1356 Lisp_Object parsed, base, name, assoc;
1357 int modifiers;
744cd66b 1358
15fff01d 1359 parsed = parse_modifiers (c);
ccd9a01a 1360 modifiers = XFASTINT (XCAR (XCDR (parsed)));
15fff01d
RS
1361 base = XCAR (parsed);
1362 name = Fsymbol_name (base);
1363 /* This alist includes elements such as ("RET" . "\\r"). */
1364 assoc = Fassoc (name, exclude_keys);
1365
1366 if (! NILP (assoc))
1367 {
1368 char new_mods[sizeof ("\\A-\\C-\\H-\\M-\\S-\\s-")];
1369 char *p = new_mods;
1370 Lisp_Object keystring;
1371 if (modifiers & alt_modifier)
1372 { *p++ = '\\'; *p++ = 'A'; *p++ = '-'; }
1373 if (modifiers & ctrl_modifier)
1374 { *p++ = '\\'; *p++ = 'C'; *p++ = '-'; }
1375 if (modifiers & hyper_modifier)
1376 { *p++ = '\\'; *p++ = 'H'; *p++ = '-'; }
1377 if (modifiers & meta_modifier)
1378 { *p++ = '\\'; *p++ = 'M'; *p++ = '-'; }
1379 if (modifiers & shift_modifier)
1380 { *p++ = '\\'; *p++ = 'S'; *p++ = '-'; }
1381 if (modifiers & super_modifier)
1382 { *p++ = '\\'; *p++ = 's'; *p++ = '-'; }
1383 *p = 0;
1384
1385 c = reorder_modifiers (c);
1386 keystring = concat2 (build_string (new_mods), XCDR (assoc));
744cd66b 1387
15fff01d
RS
1388 error ((modifiers & ~meta_modifier
1389 ? "To bind the key %s, use [?%s], not [%s]"
1390 : "To bind the key %s, use \"%s\", not [%s]"),
d5db4077
KR
1391 SDATA (SYMBOL_NAME (c)), SDATA (keystring),
1392 SDATA (SYMBOL_NAME (c)));
15fff01d
RS
1393 }
1394}
2c6f1a39 1395\f
cc0a8174
JB
1396/* Global, local, and minor mode keymap stuff. */
1397
265a9e55 1398/* We can't put these variables inside current_minor_maps, since under
6bbbd9b0
JB
1399 some systems, static gets macro-defined to be the empty string.
1400 Ickypoo. */
cd6db61a 1401static Lisp_Object *cmm_modes = NULL, *cmm_maps = NULL;
dbe2216b 1402static ptrdiff_t cmm_size = 0;
265a9e55 1403
f6f11d1c
EZ
1404/* Store a pointer to an array of the currently active minor modes in
1405 *modeptr, a pointer to an array of the keymaps of the currently
1406 active minor modes in *mapptr, and return the number of maps
1407 *mapptr contains.
cc0a8174
JB
1408
1409 This function always returns a pointer to the same buffer, and may
1410 free or reallocate it, so if you want to keep it for a long time or
1411 hand it out to lisp code, copy it. This procedure will be called
1412 for every key sequence read, so the nice lispy approach (return a
1413 new assoclist, list, what have you) for each invocation would
1414 result in a lot of consing over time.
1415
1416 If we used xrealloc/xmalloc and ran out of memory, they would throw
1417 back to the command loop, which would try to read a key sequence,
1418 which would call this function again, resulting in an infinite
1419 loop. Instead, we'll use realloc/malloc and silently truncate the
1420 list, let the key sequence be read, and hope some other piece of
1421 code signals the error. */
dbe2216b 1422ptrdiff_t
971de7fb 1423current_minor_maps (Lisp_Object **modeptr, Lisp_Object **mapptr)
cc0a8174 1424{
dbe2216b 1425 ptrdiff_t i = 0;
dd9cda06 1426 int list_number = 0;
6bbbd9b0 1427 Lisp_Object alist, assoc, var, val;
99cbcaca 1428 Lisp_Object emulation_alists;
dd9cda06
RS
1429 Lisp_Object lists[2];
1430
99cbcaca 1431 emulation_alists = Vemulation_mode_map_alists;
dd9cda06
RS
1432 lists[0] = Vminor_mode_overriding_map_alist;
1433 lists[1] = Vminor_mode_map_alist;
1434
1435 for (list_number = 0; list_number < 2; list_number++)
99cbcaca
KS
1436 {
1437 if (CONSP (emulation_alists))
dd9cda06 1438 {
99cbcaca
KS
1439 alist = XCAR (emulation_alists);
1440 emulation_alists = XCDR (emulation_alists);
1441 if (SYMBOLP (alist))
1442 alist = find_symbol_value (alist);
1443 list_number = -1;
1444 }
1445 else
1446 alist = lists[list_number];
cc0a8174 1447
99cbcaca
KS
1448 for ( ; CONSP (alist); alist = XCDR (alist))
1449 if ((assoc = XCAR (alist), CONSP (assoc))
1450 && (var = XCAR (assoc), SYMBOLP (var))
1451 && (val = find_symbol_value (var), !EQ (val, Qunbound))
1452 && !NILP (val))
1453 {
1454 Lisp_Object temp;
64dd3629 1455
99cbcaca
KS
1456 /* If a variable has an entry in Vminor_mode_overriding_map_alist,
1457 and also an entry in Vminor_mode_map_alist,
1458 ignore the latter. */
1459 if (list_number == 1)
1460 {
1461 val = assq_no_quit (var, lists[0]);
1462 if (!NILP (val))
1463 continue;
1464 }
cc0a8174 1465
99cbcaca
KS
1466 if (i >= cmm_size)
1467 {
dbe2216b 1468 ptrdiff_t newsize, allocsize;
99cbcaca 1469 Lisp_Object *newmodes, *newmaps;
cc0a8174 1470
dbe2216b
PE
1471 /* Check for size calculation overflow. Other code
1472 (e.g., read_key_sequence) adds 3 to the count
1473 later, so subtract 3 from the limit here. */
1474 if (min (PTRDIFF_MAX, SIZE_MAX) / (2 * sizeof *newmodes) - 3
1475 < cmm_size)
1476 break;
1477
cd6db61a
KS
1478 newsize = cmm_size == 0 ? 30 : cmm_size * 2;
1479 allocsize = newsize * sizeof *newmodes;
1480
744cd66b 1481 /* Use malloc here. See the comment above this function.
cd6db61a
KS
1482 Avoid realloc here; it causes spurious traps on GNU/Linux [KFS] */
1483 BLOCK_INPUT;
1484 newmodes = (Lisp_Object *) malloc (allocsize);
1485 if (newmodes)
99cbcaca 1486 {
cd6db61a
KS
1487 if (cmm_modes)
1488 {
72af86bd
AS
1489 memcpy (newmodes, cmm_modes,
1490 cmm_size * sizeof cmm_modes[0]);
cd6db61a
KS
1491 free (cmm_modes);
1492 }
1493 cmm_modes = newmodes;
99cbcaca
KS
1494 }
1495
cd6db61a 1496 newmaps = (Lisp_Object *) malloc (allocsize);
99cbcaca 1497 if (newmaps)
cd6db61a
KS
1498 {
1499 if (cmm_maps)
1500 {
72af86bd
AS
1501 memcpy (newmaps, cmm_maps,
1502 cmm_size * sizeof cmm_maps[0]);
cd6db61a
KS
1503 free (cmm_maps);
1504 }
1505 cmm_maps = newmaps;
1506 }
1507 UNBLOCK_INPUT;
744cd66b 1508
99cbcaca
KS
1509 if (newmodes == NULL || newmaps == NULL)
1510 break;
cd6db61a 1511 cmm_size = newsize;
99cbcaca 1512 }
fbb90829 1513
99cbcaca 1514 /* Get the keymap definition--or nil if it is not defined. */
a7f96a35 1515 temp = Findirect_function (XCDR (assoc), Qt);
99cbcaca
KS
1516 if (!NILP (temp))
1517 {
1518 cmm_modes[i] = var;
1519 cmm_maps [i] = temp;
1520 i++;
1521 }
1522 }
1523 }
cc0a8174 1524
265a9e55
JB
1525 if (modeptr) *modeptr = cmm_modes;
1526 if (mapptr) *mapptr = cmm_maps;
cc0a8174
JB
1527 return i;
1528}
1529
d311d28c
PE
1530/* Return the offset of POSITION, a click position, in the style of
1531 the respective argument of Fkey_binding. */
1532static ptrdiff_t
1533click_position (Lisp_Object position)
1534{
1535 EMACS_INT pos = (INTEGERP (position) ? XINT (position)
1536 : MARKERP (position) ? marker_position (position)
1537 : PT);
1538 if (! (BEGV <= pos && pos <= ZV))
1539 args_out_of_range (Fcurrent_buffer (), position);
1540 return pos;
1541}
1542
a7ca3326 1543DEFUN ("current-active-maps", Fcurrent_active_maps, Scurrent_active_maps,
9a51747b 1544 0, 2, 0,
335c5470
PJ
1545 doc: /* Return a list of the currently active keymaps.
1546OLP if non-nil indicates that we should obey `overriding-local-map' and
9a51747b
DK
1547`overriding-terminal-local-map'. POSITION can specify a click position
1548like in the respective argument of `key-binding'. */)
5842a27b 1549 (Lisp_Object olp, Lisp_Object position)
54cbc3d4 1550{
d311d28c 1551 ptrdiff_t count = SPECPDL_INDEX ();
9a51747b 1552
3349e122 1553 Lisp_Object keymaps = Fcons (current_global_map, Qnil);
9a51747b
DK
1554
1555 /* If a mouse click position is given, our variables are based on
1556 the buffer clicked on, not the current buffer. So we may have to
1557 switch the buffer here. */
233f0c9f 1558
9a51747b
DK
1559 if (CONSP (position))
1560 {
1561 Lisp_Object window;
233f0c9f 1562
9a51747b 1563 window = POSN_WINDOW (position);
233f0c9f 1564
9a51747b
DK
1565 if (WINDOWP (window)
1566 && BUFFERP (XWINDOW (window)->buffer)
1567 && XBUFFER (XWINDOW (window)->buffer) != current_buffer)
1568 {
1569 /* Arrange to go back to the original buffer once we're done
1570 processing the key sequence. We don't use
1571 save_excursion_{save,restore} here, in analogy to
1572 `read-key-sequence' to avoid saving point. Maybe this
1573 would not be a problem here, but it is easier to keep
1574 things the same.
1575 */
233f0c9f 1576
9a51747b 1577 record_unwind_protect (Fset_buffer, Fcurrent_buffer ());
233f0c9f 1578
9a51747b
DK
1579 set_buffer_internal (XBUFFER (XWINDOW (window)->buffer));
1580 }
1581 }
1582
54cbc3d4
SM
1583 if (!NILP (olp))
1584 {
1344aad4 1585 if (!NILP (KVAR (current_kboard, Voverriding_terminal_local_map)))
3349e122
SM
1586 keymaps = Fcons (KVAR (current_kboard, Voverriding_terminal_local_map),
1587 keymaps);
d64cdc59
RS
1588 /* The doc said that overriding-terminal-local-map should
1589 override overriding-local-map. The code used them both,
1590 but it seems clearer to use just one. rms, jan 2005. */
1591 else if (!NILP (Voverriding_local_map))
1592 keymaps = Fcons (Voverriding_local_map, keymaps);
54cbc3d4
SM
1593 }
1594 if (NILP (XCDR (keymaps)))
1595 {
54cbc3d4
SM
1596 Lisp_Object *maps;
1597 int nmaps, i;
d311d28c 1598 ptrdiff_t pt = click_position (position);
3349e122
SM
1599 /* This usually returns the buffer's local map,
1600 but that can be overridden by a `local-map' property. */
1601 Lisp_Object local_map = get_local_map (pt, current_buffer, Qlocal_map);
1602 /* This returns nil unless there is a `keymap' property. */
1603 Lisp_Object keymap = get_local_map (pt, current_buffer, Qkeymap);
9a51747b
DK
1604
1605 if (CONSP (position))
1606 {
3349e122 1607 Lisp_Object string = POSN_STRING (position);
9a51747b
DK
1608
1609 /* For a mouse click, get the local text-property keymap
1610 of the place clicked on, rather than point. */
233f0c9f 1611
9a51747b
DK
1612 if (POSN_INBUFFER_P (position))
1613 {
1614 Lisp_Object pos;
1615
1616 pos = POSN_BUFFER_POSN (position);
1617 if (INTEGERP (pos)
1618 && XINT (pos) >= BEG && XINT (pos) <= Z)
1619 {
1620 local_map = get_local_map (XINT (pos),
1621 current_buffer, Qlocal_map);
233f0c9f 1622
9a51747b
DK
1623 keymap = get_local_map (XINT (pos),
1624 current_buffer, Qkeymap);
1625 }
1626 }
1627
1628 /* If on a mode line string with a local keymap,
1629 or for a click on a string, i.e. overlay string or a
1630 string displayed via the `display' property,
1631 consider `local-map' and `keymap' properties of
1632 that string. */
233f0c9f 1633
3349e122 1634 if (CONSP (string) && STRINGP (XCAR (string)))
9a51747b
DK
1635 {
1636 Lisp_Object pos, map;
233f0c9f 1637
9a51747b
DK
1638 pos = XCDR (string);
1639 string = XCAR (string);
1640 if (INTEGERP (pos)
1641 && XINT (pos) >= 0
1642 && XINT (pos) < SCHARS (string))
1643 {
1644 map = Fget_text_property (pos, Qlocal_map, string);
1645 if (!NILP (map))
1646 local_map = map;
1647
1648 map = Fget_text_property (pos, Qkeymap, string);
1649 if (!NILP (map))
1650 keymap = map;
1651 }
1652 }
233f0c9f 1653
9a51747b
DK
1654 }
1655
1656 if (!NILP (local_map))
1657 keymaps = Fcons (local_map, keymaps);
54cbc3d4 1658
d64cdc59 1659 /* Now put all the minor mode keymaps on the list. */
54cbc3d4
SM
1660 nmaps = current_minor_maps (0, &maps);
1661
1662 for (i = --nmaps; i >= 0; i--)
1663 if (!NILP (maps[i]))
1664 keymaps = Fcons (maps[i], keymaps);
d1d070e3 1665
9a51747b
DK
1666 if (!NILP (keymap))
1667 keymaps = Fcons (keymap, keymaps);
54cbc3d4 1668 }
31bea176 1669
9a51747b
DK
1670 unbind_to (count, Qnil);
1671
54cbc3d4
SM
1672 return keymaps;
1673}
1674
21a0d7a0
RS
1675/* GC is possible in this function if it autoloads a keymap. */
1676
a7ca3326 1677DEFUN ("key-binding", Fkey_binding, Skey_binding, 1, 4, 0,
335c5470
PJ
1678 doc: /* Return the binding for command KEY in current keymaps.
1679KEY is a string or vector, a sequence of keystrokes.
1680The binding is probably a symbol with a function definition.
1681
1682Normally, `key-binding' ignores bindings for t, which act as default
1683bindings, used when nothing else in the keymap applies; this makes it
1684usable as a general function for probing keymaps. However, if the
1685optional second argument ACCEPT-DEFAULT is non-nil, `key-binding' does
0c412762
KS
1686recognize the default bindings, just as `read-key-sequence' does.
1687
1688Like the normal command loop, `key-binding' will remap the command
1689resulting from looking up KEY by looking up the command in the
35936c5c 1690current keymaps. However, if the optional third argument NO-REMAP
b74e16a3
DK
1691is non-nil, `key-binding' returns the unmapped command.
1692
1693If KEY is a key sequence initiated with the mouse, the used keymaps
1694will depend on the clicked mouse position with regard to the buffer
1695and possible local keymaps on strings.
1696
1697If the optional argument POSITION is non-nil, it specifies a mouse
1698position as returned by `event-start' and `event-end', and the lookup
1699occurs in the keymaps associated with it instead of KEY. It can also
1700be a number or marker, in which case the keymap properties at the
1701specified buffer position instead of point are used.
1702 */)
5842a27b 1703 (Lisp_Object key, Lisp_Object accept_default, Lisp_Object no_remap, Lisp_Object position)
2c6f1a39 1704{
3349e122 1705 Lisp_Object value;
cc0a8174 1706
08e26e8b 1707 if (NILP (position) && VECTORP (key))
b067ddb6 1708 {
08e26e8b
SM
1709 Lisp_Object event
1710 /* mouse events may have a symbolic prefix indicating the
1711 scrollbar or mode line */
1712 = AREF (key, SYMBOLP (AREF (key, 0)) && ASIZE (key) > 1 ? 1 : 0);
91197db4 1713
b74e16a3 1714 /* We are not interested in locations without event data */
91197db4 1715
b9b26387 1716 if (EVENT_HAS_PARAMETERS (event) && CONSP (XCDR (event)))
eae637ec
CY
1717 {
1718 Lisp_Object kind = EVENT_HEAD_KIND (EVENT_HEAD (event));
b9b26387 1719 if (EQ (kind, Qmouse_click))
eae637ec
CY
1720 position = EVENT_START (event);
1721 }
b067ddb6 1722 }
b067ddb6 1723
3349e122
SM
1724 value = Flookup_key (Fcons (Qkeymap, Fcurrent_active_maps (Qt, position)),
1725 key, accept_default);
64b2caa5 1726
0c412762
KS
1727 if (NILP (value) || INTEGERP (value))
1728 return Qnil;
1729
1730 /* If the result of the ordinary keymap lookup is an interactive
1731 command, look for a key binding (ie. remapping) for that command. */
744cd66b 1732
a1df473f 1733 if (NILP (no_remap) && SYMBOLP (value))
0c412762
KS
1734 {
1735 Lisp_Object value1;
55665fe7 1736 if (value1 = Fcommand_remapping (value, position, Qnil), !NILP (value1))
0c412762
KS
1737 value = value1;
1738 }
744cd66b 1739
0c412762 1740 return value;
2c6f1a39
JB
1741}
1742
21a0d7a0
RS
1743/* GC is possible in this function if it autoloads a keymap. */
1744
7c140252 1745DEFUN ("local-key-binding", Flocal_key_binding, Slocal_key_binding, 1, 2, 0,
335c5470 1746 doc: /* Return the binding for command KEYS in current local keymap only.
7a093e87 1747KEYS is a string or vector, a sequence of keystrokes.
335c5470
PJ
1748The binding is probably a symbol with a function definition.
1749
1750If optional argument ACCEPT-DEFAULT is non-nil, recognize default
1751bindings; see the description of `lookup-key' for more details about this. */)
5842a27b 1752 (Lisp_Object keys, Lisp_Object accept_default)
2c6f1a39
JB
1753{
1754 register Lisp_Object map;
4b4deea2 1755 map = BVAR (current_buffer, keymap);
265a9e55 1756 if (NILP (map))
2c6f1a39 1757 return Qnil;
7c140252 1758 return Flookup_key (map, keys, accept_default);
2c6f1a39
JB
1759}
1760
21a0d7a0
RS
1761/* GC is possible in this function if it autoloads a keymap. */
1762
7c140252 1763DEFUN ("global-key-binding", Fglobal_key_binding, Sglobal_key_binding, 1, 2, 0,
335c5470 1764 doc: /* Return the binding for command KEYS in current global keymap only.
7a093e87 1765KEYS is a string or vector, a sequence of keystrokes.
335c5470 1766The binding is probably a symbol with a function definition.
23715ea6 1767This function's return values are the same as those of `lookup-key'
335c5470
PJ
1768\(which see).
1769
1770If optional argument ACCEPT-DEFAULT is non-nil, recognize default
1771bindings; see the description of `lookup-key' for more details about this. */)
5842a27b 1772 (Lisp_Object keys, Lisp_Object accept_default)
2c6f1a39 1773{
7c140252 1774 return Flookup_key (current_global_map, keys, accept_default);
2c6f1a39
JB
1775}
1776
21a0d7a0
RS
1777/* GC is possible in this function if it autoloads a keymap. */
1778
7c140252 1779DEFUN ("minor-mode-key-binding", Fminor_mode_key_binding, Sminor_mode_key_binding, 1, 2, 0,
335c5470 1780 doc: /* Find the visible minor mode bindings of KEY.
15fbe81f 1781Return an alist of pairs (MODENAME . BINDING), where MODENAME is
335c5470
PJ
1782the symbol which names the minor mode binding KEY, and BINDING is
1783KEY's definition in that mode. In particular, if KEY has no
1784minor-mode bindings, return nil. If the first binding is a
1785non-prefix, all subsequent bindings will be omitted, since they would
1786be ignored. Similarly, the list doesn't include non-prefix bindings
1787that come after prefix bindings.
1788
1789If optional argument ACCEPT-DEFAULT is non-nil, recognize default
1790bindings; see the description of `lookup-key' for more details about this. */)
5842a27b 1791 (Lisp_Object key, Lisp_Object accept_default)
cc0a8174
JB
1792{
1793 Lisp_Object *modes, *maps;
1794 int nmaps;
1795 Lisp_Object binding;
1796 int i, j;
21a0d7a0 1797 struct gcpro gcpro1, gcpro2;
cc0a8174
JB
1798
1799 nmaps = current_minor_maps (&modes, &maps);
21a0d7a0
RS
1800 /* Note that all these maps are GCPRO'd
1801 in the places where we found them. */
1802
1803 binding = Qnil;
1804 GCPRO2 (key, binding);
cc0a8174
JB
1805
1806 for (i = j = 0; i < nmaps; i++)
02067692
SM
1807 if (!NILP (maps[i])
1808 && !NILP (binding = Flookup_key (maps[i], key, accept_default))
416349ec 1809 && !INTEGERP (binding))
cc0a8174 1810 {
02067692 1811 if (KEYMAPP (binding))
cc0a8174
JB
1812 maps[j++] = Fcons (modes[i], binding);
1813 else if (j == 0)
21a0d7a0 1814 RETURN_UNGCPRO (Fcons (Fcons (modes[i], binding), Qnil));
cc0a8174
JB
1815 }
1816
21a0d7a0 1817 UNGCPRO;
cc0a8174
JB
1818 return Flist (j, maps);
1819}
1820
7f8f0e67 1821DEFUN ("define-prefix-command", Fdefine_prefix_command, Sdefine_prefix_command, 1, 3, 0,
335c5470
PJ
1822 doc: /* Define COMMAND as a prefix command. COMMAND should be a symbol.
1823A new sparse keymap is stored as COMMAND's function definition and its value.
1824If a second optional argument MAPVAR is given, the map is stored as
1825its value instead of as COMMAND's value; but COMMAND is still defined
1826as a function.
1827The third optional argument NAME, if given, supplies a menu name
a523ade4
LT
1828string for the map. This is required to use the keymap as a menu.
1829This function returns COMMAND. */)
5842a27b 1830 (Lisp_Object command, Lisp_Object mapvar, Lisp_Object name)
2c6f1a39
JB
1831{
1832 Lisp_Object map;
7f8f0e67 1833 map = Fmake_sparse_keymap (name);
88539837 1834 Ffset (command, map);
265a9e55 1835 if (!NILP (mapvar))
2c6f1a39
JB
1836 Fset (mapvar, map);
1837 else
88539837
EN
1838 Fset (command, map);
1839 return command;
2c6f1a39
JB
1840}
1841
1842DEFUN ("use-global-map", Fuse_global_map, Suse_global_map, 1, 1, 0,
335c5470 1843 doc: /* Select KEYMAP as the global keymap. */)
5842a27b 1844 (Lisp_Object keymap)
2c6f1a39 1845{
02067692 1846 keymap = get_keymap (keymap, 1, 1);
2c6f1a39 1847 current_global_map = keymap;
6f27e7a2 1848
2c6f1a39
JB
1849 return Qnil;
1850}
1851
1852DEFUN ("use-local-map", Fuse_local_map, Suse_local_map, 1, 1, 0,
335c5470
PJ
1853 doc: /* Select KEYMAP as the local keymap.
1854If KEYMAP is nil, that means no local keymap. */)
5842a27b 1855 (Lisp_Object keymap)
2c6f1a39 1856{
265a9e55 1857 if (!NILP (keymap))
02067692 1858 keymap = get_keymap (keymap, 1, 1);
2c6f1a39 1859
4b4deea2 1860 BVAR (current_buffer, keymap) = keymap;
2c6f1a39
JB
1861
1862 return Qnil;
1863}
1864
1865DEFUN ("current-local-map", Fcurrent_local_map, Scurrent_local_map, 0, 0, 0,
4bb6c266
RS
1866 doc: /* Return current buffer's local keymap, or nil if it has none.
1867Normally the local keymap is set by the major mode with `use-local-map'. */)
5842a27b 1868 (void)
2c6f1a39 1869{
4b4deea2 1870 return BVAR (current_buffer, keymap);
2c6f1a39
JB
1871}
1872
1873DEFUN ("current-global-map", Fcurrent_global_map, Scurrent_global_map, 0, 0, 0,
335c5470 1874 doc: /* Return the current global keymap. */)
5842a27b 1875 (void)
2c6f1a39
JB
1876{
1877 return current_global_map;
1878}
cc0a8174
JB
1879
1880DEFUN ("current-minor-mode-maps", Fcurrent_minor_mode_maps, Scurrent_minor_mode_maps, 0, 0, 0,
335c5470 1881 doc: /* Return a list of keymaps for the minor modes of the current buffer. */)
5842a27b 1882 (void)
cc0a8174
JB
1883{
1884 Lisp_Object *maps;
1885 int nmaps = current_minor_maps (0, &maps);
1886
1887 return Flist (nmaps, maps);
1888}
2c6f1a39 1889\f
cc0a8174
JB
1890/* Help functions for describing and documenting keymaps. */
1891
fab84e3c
SM
1892struct accessible_keymaps_data {
1893 Lisp_Object maps, tail, thisseq;
1894 /* Does the current sequence end in the meta-prefix-char? */
1895 int is_metized;
1896};
54cbc3d4
SM
1897
1898static void
971de7fb 1899accessible_keymaps_1 (Lisp_Object key, Lisp_Object cmd, Lisp_Object args, void *data)
b8ce688b 1900/* Use void* data to be compatible with map_keymap_function_t. */
54cbc3d4 1901{
fab84e3c
SM
1902 struct accessible_keymaps_data *d = data; /* Cast! */
1903 Lisp_Object maps = d->maps;
1904 Lisp_Object tail = d->tail;
1905 Lisp_Object thisseq = d->thisseq;
1906 int is_metized = d->is_metized && INTEGERP (key);
54cbc3d4
SM
1907 Lisp_Object tem;
1908
73a4675c 1909 cmd = get_keymap (get_keyelt (cmd, 0), 0, 0);
54cbc3d4
SM
1910 if (NILP (cmd))
1911 return;
1912
73a4675c
SM
1913 /* Look for and break cycles. */
1914 while (!NILP (tem = Frassq (cmd, maps)))
54cbc3d4 1915 {
73a4675c 1916 Lisp_Object prefix = XCAR (tem);
d311d28c 1917 ptrdiff_t lim = XINT (Flength (XCAR (tem)));
73a4675c
SM
1918 if (lim <= XINT (Flength (thisseq)))
1919 { /* This keymap was already seen with a smaller prefix. */
d311d28c 1920 ptrdiff_t i = 0;
73a4675c
SM
1921 while (i < lim && EQ (Faref (prefix, make_number (i)),
1922 Faref (thisseq, make_number (i))))
1923 i++;
1924 if (i >= lim)
1925 /* `prefix' is a prefix of `thisseq' => there's a cycle. */
1926 return;
54cbc3d4 1927 }
73a4675c
SM
1928 /* This occurrence of `cmd' in `maps' does not correspond to a cycle,
1929 but maybe `cmd' occurs again further down in `maps', so keep
1930 looking. */
1931 maps = XCDR (Fmemq (tem, maps));
1932 }
1933
1934 /* If the last key in thisseq is meta-prefix-char,
1935 turn it into a meta-ized keystroke. We know
1936 that the event we're about to append is an
1937 ascii keystroke since we're processing a
1938 keymap table. */
1939 if (is_metized)
1940 {
1941 int meta_bit = meta_modifier;
1942 Lisp_Object last = make_number (XINT (Flength (thisseq)) - 1);
1943 tem = Fcopy_sequence (thisseq);
8f924df7 1944
73a4675c 1945 Faset (tem, last, make_number (XINT (key) | meta_bit));
8f924df7 1946
73a4675c
SM
1947 /* This new sequence is the same length as
1948 thisseq, so stick it in the list right
1949 after this one. */
1950 XSETCDR (tail,
1951 Fcons (Fcons (tem, cmd), XCDR (tail)));
1952 }
1953 else
1954 {
1955 tem = append_key (thisseq, key);
1956 nconc2 (tail, Fcons (Fcons (tem, cmd), Qnil));
54cbc3d4
SM
1957 }
1958}
1959
21a0d7a0
RS
1960/* This function cannot GC. */
1961
2c6f1a39 1962DEFUN ("accessible-keymaps", Faccessible_keymaps, Saccessible_keymaps,
335c5470
PJ
1963 1, 2, 0,
1964 doc: /* Find all keymaps accessible via prefix characters from KEYMAP.
1965Returns a list of elements of the form (KEYS . MAP), where the sequence
1966KEYS starting from KEYMAP gets you to MAP. These elements are ordered
1967so that the KEYS increase in length. The first element is ([] . KEYMAP).
1968An optional argument PREFIX, if non-nil, should be a key sequence;
1969then the value includes only maps for prefixes that start with PREFIX. */)
5842a27b 1970 (Lisp_Object keymap, Lisp_Object prefix)
2c6f1a39 1971{
fad865a3 1972 Lisp_Object maps, tail;
d311d28c 1973 EMACS_INT prefixlen = XFASTINT (Flength (prefix));
53c8f9fa 1974
21a0d7a0
RS
1975 /* no need for gcpro because we don't autoload any keymaps. */
1976
44a4a59b
RS
1977 if (!NILP (prefix))
1978 {
1979 /* If a prefix was specified, start with the keymap (if any) for
1980 that prefix, so we don't waste time considering other prefixes. */
1981 Lisp_Object tem;
88539837 1982 tem = Flookup_key (keymap, prefix, Qt);
1ae2097f
RS
1983 /* Flookup_key may give us nil, or a number,
1984 if the prefix is not defined in this particular map.
1985 It might even give us a list that isn't a keymap. */
02067692 1986 tem = get_keymap (tem, 0, 0);
fab84e3c
SM
1987 /* If the keymap is autoloaded `tem' is not a cons-cell, but we still
1988 want to return it. */
1989 if (!NILP (tem))
67fc16a3
RS
1990 {
1991 /* Convert PREFIX to a vector now, so that later on
1992 we don't have to deal with the possibility of a string. */
1993 if (STRINGP (prefix))
1994 {
f3ba5409 1995 int i, i_byte, c;
67fc16a3
RS
1996 Lisp_Object copy;
1997
d5db4077
KR
1998 copy = Fmake_vector (make_number (SCHARS (prefix)), Qnil);
1999 for (i = 0, i_byte = 0; i < SCHARS (prefix);)
67fc16a3 2000 {
f3ba5409 2001 int i_before = i;
54e03a4a
KH
2002
2003 FETCH_STRING_CHAR_ADVANCE (c, prefix, i, i_byte);
2004 if (SINGLE_BYTE_CHAR_P (c) && (c & 0200))
2005 c ^= 0200 | meta_modifier;
49801145 2006 ASET (copy, i_before, make_number (c));
67fc16a3
RS
2007 }
2008 prefix = copy;
2009 }
2010 maps = Fcons (Fcons (prefix, tem), Qnil);
2011 }
44a4a59b
RS
2012 else
2013 return Qnil;
2014 }
2015 else
2016 maps = Fcons (Fcons (Fmake_vector (make_number (0), Qnil),
02067692 2017 get_keymap (keymap, 1, 0)),
44a4a59b 2018 Qnil);
2c6f1a39
JB
2019
2020 /* For each map in the list maps,
2021 look at any other maps it points to,
2022 and stick them at the end if they are not already in the list.
2023
2024 This is a breadth-first traversal, where tail is the queue of
2025 nodes, and maps accumulates a list of all nodes visited. */
2026
03699b14 2027 for (tail = maps; CONSP (tail); tail = XCDR (tail))
2c6f1a39 2028 {
4bb99e3a
SM
2029 struct accessible_keymaps_data data;
2030 register Lisp_Object thismap = Fcdr (XCAR (tail));
e9b6dfb0 2031 Lisp_Object last;
e9b6dfb0 2032
4bb99e3a
SM
2033 data.thisseq = Fcar (XCAR (tail));
2034 data.maps = maps;
2035 data.tail = tail;
2036 last = make_number (XINT (Flength (data.thisseq)) - 1);
2037 /* Does the current sequence end in the meta-prefix-char? */
2038 data.is_metized = (XINT (last) >= 0
97ae4b89
RS
2039 /* Don't metize the last char of PREFIX. */
2040 && XINT (last) >= prefixlen
4bb99e3a 2041 && EQ (Faref (data.thisseq, last), meta_prefix_char));
2c6f1a39 2042
4bb99e3a
SM
2043 /* Since we can't run lisp code, we can't scan autoloaded maps. */
2044 if (CONSP (thismap))
2045 map_keymap (thismap, accessible_keymaps_1, Qnil, &data, 0);
2c6f1a39 2046 }
73a4675c 2047 return maps;
2c6f1a39 2048}
955cbe7b 2049static Lisp_Object Qsingle_key_description, Qkey_description;
2c6f1a39 2050
21a0d7a0
RS
2051/* This function cannot GC. */
2052
a7ca3326 2053DEFUN ("key-description", Fkey_description, Skey_description, 1, 2, 0,
335c5470 2054 doc: /* Return a pretty description of key-sequence KEYS.
f8d8ba40 2055Optional arg PREFIX is the sequence of keys leading up to KEYS.
23715ea6 2056Control characters turn into "C-foo" sequences, meta into "M-foo",
335c5470 2057spaces are put between sequence elements, etc. */)
5842a27b 2058 (Lisp_Object keys, Lisp_Object prefix)
2c6f1a39 2059{
d311d28c
PE
2060 ptrdiff_t len = 0;
2061 EMACS_INT i;
2062 ptrdiff_t i_byte;
f8d8ba40 2063 Lisp_Object *args;
d311d28c 2064 EMACS_INT size = XINT (Flength (keys));
f8d8ba40
KS
2065 Lisp_Object list;
2066 Lisp_Object sep = build_string (" ");
2067 Lisp_Object key;
d311d28c 2068 Lisp_Object result;
f8d8ba40 2069 int add_meta = 0;
d311d28c 2070 USE_SAFE_ALLOCA;
f8d8ba40
KS
2071
2072 if (!NILP (prefix))
07f60146 2073 size += XINT (Flength (prefix));
f8d8ba40
KS
2074
2075 /* This has one extra element at the end that we don't pass to Fconcat. */
d311d28c
PE
2076 if (min (PTRDIFF_MAX, SIZE_MAX) / sizeof (Lisp_Object) / 4 < size)
2077 memory_full (SIZE_MAX);
2078 SAFE_ALLOCA_LISP (args, size * 4);
4c7d5f13 2079
f8d8ba40
KS
2080 /* In effect, this computes
2081 (mapconcat 'single-key-description keys " ")
2082 but we shouldn't use mapconcat because it can do GC. */
4c7d5f13 2083
f8d8ba40
KS
2084 next_list:
2085 if (!NILP (prefix))
2086 list = prefix, prefix = Qnil;
2087 else if (!NILP (keys))
2088 list = keys, keys = Qnil;
2089 else
6ba6e250 2090 {
f8d8ba40 2091 if (add_meta)
6ba6e250 2092 {
f8d8ba40
KS
2093 args[len] = Fsingle_key_description (meta_prefix_char, Qnil);
2094 len += 2;
6ba6e250 2095 }
d311d28c
PE
2096 result = len == 0 ? empty_unibyte_string : Fconcat (len - 1, args);
2097 SAFE_FREE ();
2098 return result;
6ba6e250 2099 }
4c7d5f13 2100
f8d8ba40
KS
2101 if (STRINGP (list))
2102 size = SCHARS (list);
2103 else if (VECTORP (list))
77b37c05 2104 size = ASIZE (list);
f8d8ba40 2105 else if (CONSP (list))
07f60146 2106 size = XINT (Flength (list));
f8d8ba40
KS
2107 else
2108 wrong_type_argument (Qarrayp, list);
4c7d5f13 2109
f8d8ba40 2110 i = i_byte = 0;
4c7d5f13 2111
f8d8ba40
KS
2112 while (i < size)
2113 {
2114 if (STRINGP (list))
5c9c2c3f 2115 {
f8d8ba40
KS
2116 int c;
2117 FETCH_STRING_CHAR_ADVANCE (c, list, i, i_byte);
2118 if (SINGLE_BYTE_CHAR_P (c) && (c & 0200))
2119 c ^= 0200 | meta_modifier;
2120 XSETFASTINT (key, c);
2121 }
2122 else if (VECTORP (list))
2123 {
9141ca5e 2124 key = AREF (list, i); i++;
f8d8ba40
KS
2125 }
2126 else
2127 {
2128 key = XCAR (list);
2129 list = XCDR (list);
2130 i++;
5c9c2c3f 2131 }
5c9c2c3f 2132
f8d8ba40
KS
2133 if (add_meta)
2134 {
2135 if (!INTEGERP (key)
2136 || EQ (key, meta_prefix_char)
2137 || (XINT (key) & meta_modifier))
2138 {
2139 args[len++] = Fsingle_key_description (meta_prefix_char, Qnil);
2140 args[len++] = sep;
2141 if (EQ (key, meta_prefix_char))
2142 continue;
2143 }
2144 else
2145 XSETINT (key, (XINT (key) | meta_modifier) & ~0x80);
2146 add_meta = 0;
2147 }
2148 else if (EQ (key, meta_prefix_char))
5c9c2c3f 2149 {
f8d8ba40
KS
2150 add_meta = 1;
2151 continue;
5c9c2c3f 2152 }
f8d8ba40
KS
2153 args[len++] = Fsingle_key_description (key, Qnil);
2154 args[len++] = sep;
4c7d5f13 2155 }
f8d8ba40 2156 goto next_list;
2c6f1a39
JB
2157}
2158
f8d8ba40 2159
2c6f1a39 2160char *
62f19c19 2161push_key_description (EMACS_INT ch, char *p, int force_multibyte)
2c6f1a39 2162{
62f19c19 2163 int c, c2;
31bea176 2164
71ac885b 2165 /* Clear all the meaningless bits above the meta bit. */
62f19c19 2166 c = ch & (meta_modifier | ~ - meta_modifier);
bc89c609
GM
2167 c2 = c & ~(alt_modifier | ctrl_modifier | hyper_modifier
2168 | meta_modifier | shift_modifier | super_modifier);
71ac885b 2169
f0c4d038 2170 if (! CHARACTERP (make_number (c2)))
f39a0b43
KH
2171 {
2172 /* KEY_DESCRIPTION_SIZE is large enough for this. */
2173 p += sprintf (p, "[%d]", c);
2174 return p;
2175 }
2176
6ba6e250
RS
2177 if (c & alt_modifier)
2178 {
2179 *p++ = 'A';
2180 *p++ = '-';
2181 c -= alt_modifier;
2182 }
bc89c609
GM
2183 if ((c & ctrl_modifier) != 0
2184 || (c2 < ' ' && c2 != 27 && c2 != '\t' && c2 != Ctl ('M')))
6ba6e250
RS
2185 {
2186 *p++ = 'C';
2187 *p++ = '-';
bc89c609 2188 c &= ~ctrl_modifier;
6ba6e250
RS
2189 }
2190 if (c & hyper_modifier)
2191 {
2192 *p++ = 'H';
2193 *p++ = '-';
2194 c -= hyper_modifier;
2195 }
2196 if (c & meta_modifier)
2c6f1a39
JB
2197 {
2198 *p++ = 'M';
2199 *p++ = '-';
6ba6e250
RS
2200 c -= meta_modifier;
2201 }
2202 if (c & shift_modifier)
2203 {
2204 *p++ = 'S';
2205 *p++ = '-';
2206 c -= shift_modifier;
2207 }
2208 if (c & super_modifier)
2209 {
2210 *p++ = 's';
2211 *p++ = '-';
2212 c -= super_modifier;
2c6f1a39
JB
2213 }
2214 if (c < 040)
2215 {
2216 if (c == 033)
2217 {
2218 *p++ = 'E';
2219 *p++ = 'S';
2220 *p++ = 'C';
2221 }
6ba6e250 2222 else if (c == '\t')
2c6f1a39
JB
2223 {
2224 *p++ = 'T';
2225 *p++ = 'A';
2226 *p++ = 'B';
2227 }
b8cab006 2228 else if (c == Ctl ('M'))
2c6f1a39
JB
2229 {
2230 *p++ = 'R';
2231 *p++ = 'E';
2232 *p++ = 'T';
2233 }
2234 else
2235 {
bc89c609 2236 /* `C-' already added above. */
2c6f1a39
JB
2237 if (c > 0 && c <= Ctl ('Z'))
2238 *p++ = c + 0140;
2239 else
2240 *p++ = c + 0100;
2241 }
2242 }
2243 else if (c == 0177)
2244 {
2245 *p++ = 'D';
2246 *p++ = 'E';
2247 *p++ = 'L';
2248 }
2249 else if (c == ' ')
9fb71293 2250 {
2c6f1a39
JB
2251 *p++ = 'S';
2252 *p++ = 'P';
2253 *p++ = 'C';
2254 }
d3c00496 2255 else if (c < 128
4b4deea2 2256 || (NILP (BVAR (current_buffer, enable_multibyte_characters))
f1cb0a25
GM
2257 && SINGLE_BYTE_CHAR_P (c)
2258 && !force_multibyte))
2259 {
2260 *p++ = c;
2261 }
f0c4d038 2262 else
e1e36e6e 2263 {
f0c4d038 2264 /* Now we are sure that C is a valid character code. */
4b4deea2 2265 if (NILP (BVAR (current_buffer, enable_multibyte_characters))
c01bb36f 2266 && ! force_multibyte)
461c2ab9 2267 *p++ = multibyte_char_to_unibyte (c);
e1e36e6e
KH
2268 else
2269 p += CHAR_STRING (c, (unsigned char *) p);
2270 }
2c6f1a39 2271
d55627cc 2272 return p;
2c6f1a39
JB
2273}
2274
21a0d7a0
RS
2275/* This function cannot GC. */
2276
a7ca3326 2277DEFUN ("single-key-description", Fsingle_key_description,
c1848a97 2278 Ssingle_key_description, 1, 2, 0,
335c5470
PJ
2279 doc: /* Return a pretty description of command character KEY.
2280Control characters turn into C-whatever, etc.
2281Optional argument NO-ANGLES non-nil means don't put angle brackets
2282around function keys and event symbols. */)
5842a27b 2283 (Lisp_Object key, Lisp_Object no_angles)
2c6f1a39 2284{
5c9c2c3f
RS
2285 if (CONSP (key) && lucid_event_type_list_p (key))
2286 key = Fevent_convert_list (key);
2287
cebd887d 2288 key = EVENT_HEAD (key);
6bbbd9b0 2289
e958fd9a 2290 if (INTEGERP (key)) /* Normal character */
2c6f1a39 2291 {
e1e36e6e 2292 char tem[KEY_DESCRIPTION_SIZE];
47a18cef 2293
ccd9a01a 2294 *push_key_description (XINT (key), tem, 1) = 0;
e1e36e6e 2295 return build_string (tem);
2c6f1a39 2296 }
e958fd9a 2297 else if (SYMBOLP (key)) /* Function key or event-symbol */
c7edb960 2298 {
c1848a97
GM
2299 if (NILP (no_angles))
2300 {
62f19c19
PE
2301 char *buffer;
2302 Lisp_Object result;
2303 USE_SAFE_ALLOCA;
2304 SAFE_ALLOCA (buffer, char *,
2305 sizeof "<>" + SBYTES (SYMBOL_NAME (key)));
2306 esprintf (buffer, "<%s>", SDATA (SYMBOL_NAME (key)));
2307 result = build_string (buffer);
2308 SAFE_FREE ();
2309 return result;
c1848a97
GM
2310 }
2311 else
2312 return Fsymbol_name (key);
c7edb960 2313 }
e958fd9a
KH
2314 else if (STRINGP (key)) /* Buffer names in the menubar. */
2315 return Fcopy_sequence (key);
2316 else
2317 error ("KEY must be an integer, cons, symbol, or string");
6bbd7a29 2318 return Qnil;
2c6f1a39
JB
2319}
2320
38fc62d9 2321static char *
971de7fb 2322push_text_char_description (register unsigned int c, register char *p)
2c6f1a39
JB
2323{
2324 if (c >= 0200)
2325 {
2326 *p++ = 'M';
2327 *p++ = '-';
2328 c -= 0200;
2329 }
2330 if (c < 040)
2331 {
2332 *p++ = '^';
2333 *p++ = c + 64; /* 'A' - 1 */
2334 }
2335 else if (c == 0177)
2336 {
2337 *p++ = '^';
2338 *p++ = '?';
2339 }
2340 else
2341 *p++ = c;
d55627cc 2342 return p;
2c6f1a39
JB
2343}
2344
21a0d7a0
RS
2345/* This function cannot GC. */
2346
2c6f1a39 2347DEFUN ("text-char-description", Ftext_char_description, Stext_char_description, 1, 1, 0,
335c5470 2348 doc: /* Return a pretty description of file-character CHARACTER.
bda67d96
LT
2349Control characters turn into "^char", etc. This differs from
2350`single-key-description' which turns them into "C-char".
2351Also, this function recognizes the 2**7 bit as the Meta character,
2352whereas `single-key-description' uses the 2**27 bit for Meta.
2353See Info node `(elisp)Describing Characters' for examples. */)
5842a27b 2354 (Lisp_Object character)
2c6f1a39 2355{
0a16479f 2356 /* Currently MAX_MULTIBYTE_LENGTH is 4 (< 6). */
01c9aa3a 2357 char str[6];
0a16479f 2358 int c;
2c6f1a39 2359
d311d28c 2360 CHECK_CHARACTER (character);
2c6f1a39 2361
0a16479f 2362 c = XINT (character);
c3d1e503 2363 if (!ASCII_CHAR_P (c))
a98f1d1d 2364 {
01c9aa3a 2365 int len = CHAR_STRING (c, (unsigned char *) str);
a98f1d1d 2366
f3ba5409 2367 return make_multibyte_string (str, 1, len);
a98f1d1d
KH
2368 }
2369
0a16479f 2370 *push_text_char_description (c & 0377, str) = 0;
2c6f1a39 2371
0a16479f 2372 return build_string (str);
2c6f1a39 2373}
2fc66973 2374
0bcfd7d7
SM
2375static int where_is_preferred_modifier;
2376
2377/* Return 0 if SEQ uses non-preferred modifiers or non-char events.
2378 Else, return 2 if SEQ uses the where_is_preferred_modifier,
2379 and 1 otherwise. */
2fc66973 2380static int
971de7fb 2381preferred_sequence_p (Lisp_Object seq)
2fc66973 2382{
d311d28c
PE
2383 EMACS_INT i;
2384 EMACS_INT len = XFASTINT (Flength (seq));
0bcfd7d7 2385 int result = 1;
ffab2bd6 2386
6e344130 2387 for (i = 0; i < len; i++)
2fc66973 2388 {
6e344130 2389 Lisp_Object ii, elt;
ffab2bd6 2390
6e344130
KH
2391 XSETFASTINT (ii, i);
2392 elt = Faref (seq, ii);
2fc66973 2393
0bcfd7d7 2394 if (!INTEGERP (elt))
2fc66973 2395 return 0;
0bcfd7d7
SM
2396 else
2397 {
ccd9a01a 2398 int modifiers = XINT (elt) & (CHAR_MODIFIER_MASK & ~CHAR_META);
0bcfd7d7
SM
2399 if (modifiers == where_is_preferred_modifier)
2400 result = 2;
2401 else if (modifiers)
2402 return 0;
2403 }
2fc66973
JB
2404 }
2405
0bcfd7d7 2406 return result;
edfda783
AR
2407}
2408
2c6f1a39 2409\f
cc0a8174
JB
2410/* where-is - finding a command in a set of keymaps. */
2411
f57e2426
J
2412static void where_is_internal_1 (Lisp_Object key, Lisp_Object binding,
2413 Lisp_Object args, void *data);
0403641f 2414
49801145 2415/* Like Flookup_key, but uses a list of keymaps SHADOW instead of a single map.
bd4b5750
SM
2416 Returns the first non-nil binding found in any of those maps.
2417 If REMAP is true, pass the result of the lookup through command
2418 remapping before returning it. */
49801145
SM
2419
2420static Lisp_Object
bd4b5750
SM
2421shadow_lookup (Lisp_Object shadow, Lisp_Object key, Lisp_Object flag,
2422 int remap)
49801145
SM
2423{
2424 Lisp_Object tail, value;
2425
2426 for (tail = shadow; CONSP (tail); tail = XCDR (tail))
2427 {
2428 value = Flookup_key (XCAR (tail), key, flag);
d35f78c9
JL
2429 if (NATNUMP (value))
2430 {
d7c0be75
KR
2431 value = Flookup_key (XCAR (tail),
2432 Fsubstring (key, make_number (0), value), flag);
d35f78c9
JL
2433 if (!NILP (value))
2434 return Qnil;
2435 }
2436 else if (!NILP (value))
bd4b5750
SM
2437 {
2438 Lisp_Object remapping;
2439 if (remap && SYMBOLP (value)
2440 && (remapping = Fcommand_remapping (value, Qnil, shadow),
2441 !NILP (remapping)))
2442 return remapping;
2443 else
2444 return value;
2445 }
49801145
SM
2446 }
2447 return Qnil;
2448}
2449
6b61353c 2450static Lisp_Object Vmouse_events;
d378869e 2451
fab84e3c 2452struct where_is_internal_data {
a88a5372
SM
2453 Lisp_Object definition, this, last;
2454 int last_is_meta, noindirect;
fab84e3c
SM
2455 Lisp_Object sequences;
2456};
2457
a88a5372
SM
2458/* This function can't GC, AFAIK. */
2459/* Return the list of bindings found. This list is ordered "longest
2460 to shortest". It may include bindings that are actually shadowed
2461 by others, as well as duplicate bindings and remapping bindings.
2462 The list returned is potentially shared with where_is_cache, so
2463 be careful not to modify it via side-effects. */
49801145 2464
1e7d1ab0 2465static Lisp_Object
a88a5372
SM
2466where_is_internal (Lisp_Object definition, Lisp_Object keymaps,
2467 int noindirect, int nomenus)
2c6f1a39 2468{
49801145 2469 Lisp_Object maps = Qnil;
a88a5372
SM
2470 Lisp_Object found;
2471 struct where_is_internal_data data;
2472
2473 /* Only important use of caching is for the menubar
2474 (i.e. where-is-internal called with (def nil t nil nil)). */
2475 if (nomenus && !noindirect)
2476 {
2477 /* Check heuristic-consistency of the cache. */
2478 if (NILP (Fequal (keymaps, where_is_cache_keymaps)))
2479 where_is_cache = Qnil;
2480
2481 if (NILP (where_is_cache))
2482 {
2483 /* We need to create the cache. */
2484 Lisp_Object args[2];
2485 where_is_cache = Fmake_hash_table (0, args);
2486 where_is_cache_keymaps = Qt;
2487 }
2488 else
2489 /* We can reuse the cache. */
2490 return Fgethash (definition, where_is_cache, Qnil);
2491 }
2492 else
2493 /* Kill the cache so that where_is_internal_1 doesn't think
2494 we're filling it up. */
2495 where_is_cache = Qnil;
2c6f1a39 2496
49801145
SM
2497 found = keymaps;
2498 while (CONSP (found))
93d2aa1c 2499 {
49801145 2500 maps =
02067692
SM
2501 nconc2 (maps,
2502 Faccessible_keymaps (get_keymap (XCAR (found), 1, 0), Qnil));
49801145 2503 found = XCDR (found);
93d2aa1c 2504 }
31bea176 2505
a88a5372 2506 data.sequences = Qnil;
99784d63 2507 for (; CONSP (maps); maps = XCDR (maps))
2c6f1a39 2508 {
e9b6dfb0 2509 /* Key sequence to reach map, and the map that it reaches */
d378869e 2510 register Lisp_Object this, map, tem;
f5b79c1c 2511
2c6f1a39
JB
2512 /* In order to fold [META-PREFIX-CHAR CHAR] sequences into
2513 [M-CHAR] sequences, check if last character of the sequence
2514 is the meta-prefix char. */
e9b6dfb0
KH
2515 Lisp_Object last;
2516 int last_is_meta;
2517
99784d63
SM
2518 this = Fcar (XCAR (maps));
2519 map = Fcdr (XCAR (maps));
e9b6dfb0
KH
2520 last = make_number (XINT (Flength (this)) - 1);
2521 last_is_meta = (XINT (last) >= 0
2522 && EQ (Faref (this, last), meta_prefix_char));
2c6f1a39 2523
0bcfd7d7 2524 /* if (nomenus && !preferred_sequence_p (this)) */
f58c6494 2525 if (nomenus && XINT (last) >= 0
d378869e 2526 && SYMBOLP (tem = Faref (this, make_number (0)))
6b61353c 2527 && !NILP (Fmemq (XCAR (parse_modifiers (tem)), Vmouse_events)))
88416888
SM
2528 /* If no menu entries should be returned, skip over the
2529 keymaps bound to `menu-bar' and `tool-bar' and other
2ba11bbd 2530 non-ascii prefixes like `C-down-mouse-2'. */
88416888 2531 continue;
31bea176 2532
fde3a52f
JB
2533 QUIT;
2534
4bb99e3a
SM
2535 data.definition = definition;
2536 data.noindirect = noindirect;
2537 data.this = this;
2538 data.last = last;
2539 data.last_is_meta = last_is_meta;
0403641f 2540
4bb99e3a
SM
2541 if (CONSP (map))
2542 map_keymap (map, where_is_internal_1, Qnil, &data, 0);
2c6f1a39 2543 }
2fc66973 2544
a88a5372 2545 if (nomenus && !noindirect)
9d889332
SM
2546 { /* Remember for which keymaps this cache was built.
2547 We do it here (late) because we want to keep where_is_cache_keymaps
2548 set to t while the cache isn't fully filled. */
2549 where_is_cache_keymaps = keymaps;
2550 /* During cache-filling, data.sequences is not filled by
2551 where_is_internal_1. */
2552 return Fgethash (definition, where_is_cache, Qnil);
2553 }
2554 else
2555 return data.sequences;
2c6f1a39 2556}
0403641f 2557
a88a5372
SM
2558/* This function can GC if Flookup_key autoloads any keymaps. */
2559
a7ca3326 2560DEFUN ("where-is-internal", Fwhere_is_internal, Swhere_is_internal, 1, 5, 0,
335c5470 2561 doc: /* Return list of keys that invoke DEFINITION.
2c0a0e38 2562If KEYMAP is a keymap, search only KEYMAP and the global keymap.
335c5470
PJ
2563If KEYMAP is nil, search all the currently active keymaps.
2564If KEYMAP is a list of keymaps, search only those keymaps.
2565
2566If optional 3rd arg FIRSTONLY is non-nil, return the first key sequence found,
2567rather than a list of all possible key sequences.
2568If FIRSTONLY is the symbol `non-ascii', return the first binding found,
2569no matter what it is.
0bcfd7d7
SM
2570If FIRSTONLY has another non-nil value, prefer bindings
2571that use the modifier key specified in `where-is-preferred-modifier'
2c0a0e38 2572\(or their meta variants) and entirely reject menu bindings.
335c5470
PJ
2573
2574If optional 4th arg NOINDIRECT is non-nil, don't follow indirections
2575to other keymaps or slots. This makes it possible to search for an
0c412762
KS
2576indirect definition itself.
2577
2578If optional 5th arg NO-REMAP is non-nil, don't search for key sequences
2579that invoke a command which is remapped to DEFINITION, but include the
2580remapped command in the returned list. */)
5842a27b 2581 (Lisp_Object definition, Lisp_Object keymap, Lisp_Object firstonly, Lisp_Object noindirect, Lisp_Object no_remap)
1e7d1ab0 2582{
a88a5372
SM
2583 /* The keymaps in which to search. */
2584 Lisp_Object keymaps;
2585 /* Potentially relevant bindings in "shortest to longest" order. */
deeb21d4 2586 Lisp_Object sequences = Qnil;
a88a5372
SM
2587 /* Actually relevant bindings. */
2588 Lisp_Object found = Qnil;
1e7d1ab0
SM
2589 /* 1 means ignore all menu bindings entirely. */
2590 int nomenus = !NILP (firstonly) && !EQ (firstonly, Qnon_ascii);
1ab8293c 2591 struct gcpro gcpro1, gcpro2, gcpro3, gcpro4, gcpro5, gcpro6;
a88a5372
SM
2592 /* List of sequences found via remapping. Keep them in a separate
2593 variable, so as to push them later, since we prefer
2594 non-remapped binding. */
2595 Lisp_Object remapped_sequences = Qnil;
2596 /* Whether or not we're handling remapped sequences. This is needed
2597 because remapping is not done recursively by Fcommand_remapping: you
1ab8293c 2598 can't remap a remapped command. */
a88a5372 2599 int remapped = 0;
1ab8293c 2600 Lisp_Object tem = Qnil;
1e7d1ab0 2601
0bcfd7d7
SM
2602 /* Refresh the C version of the modifier preference. */
2603 where_is_preferred_modifier
2604 = parse_solitary_modifier (Vwhere_is_preferred_modifier);
2605
1e7d1ab0 2606 /* Find the relevant keymaps. */
4956d1ef
GM
2607 if (CONSP (keymap) && KEYMAPP (XCAR (keymap)))
2608 keymaps = keymap;
54cbc3d4 2609 else if (!NILP (keymap))
4956d1ef 2610 keymaps = Fcons (keymap, Fcons (current_global_map, Qnil));
1e7d1ab0 2611 else
9a51747b 2612 keymaps = Fcurrent_active_maps (Qnil, Qnil);
1e7d1ab0 2613
1ab8293c
SM
2614 GCPRO6 (definition, keymaps, found, sequences, remapped_sequences, tem);
2615
2616 tem = Fcommand_remapping (definition, Qnil, keymaps);
2617 /* If `definition' is remapped to tem', then OT1H no key will run
2618 that command (since they will run `tem' instead), so we should
2619 return nil; but OTOH all keys bound to `definition' (or to `tem')
2620 will run the same command.
2621 So for menu-shortcut purposes, we want to find all the keys bound (maybe
2622 via remapping) to `tem'. But for the purpose of finding the keys that
2623 run `definition', then we'd want to just return nil.
2624 We choose to make it work right for menu-shortcuts, since it's the most
2625 common use.
2626 Known bugs: if you remap switch-to-buffer to toto, C-h f switch-to-buffer
2627 will tell you that switch-to-buffer is bound to C-x b even though C-x b
2628 will run toto instead. And if `toto' is itself remapped to forward-char,
2629 then C-h f toto will tell you that it's bound to C-f even though C-f does
2630 not run toto and it won't tell you that C-x b does run toto. */
2631 if (NILP (no_remap) && !NILP (tem))
2632 definition = tem;
1e7d1ab0 2633
8cb95edf
SM
2634 if (SYMBOLP (definition)
2635 && !NILP (firstonly)
2636 && !NILP (tem = Fget (definition, QCadvertised_binding)))
2637 {
e8b5c6a2 2638 /* We have a list of advertised bindings. */
8cb95edf 2639 while (CONSP (tem))
bd4b5750 2640 if (EQ (shadow_lookup (keymaps, XCAR (tem), Qnil, 0), definition))
8cb95edf
SM
2641 return XCAR (tem);
2642 else
2643 tem = XCDR (tem);
bd4b5750 2644 if (EQ (shadow_lookup (keymaps, tem, Qnil, 0), definition))
8cb95edf
SM
2645 return tem;
2646 }
2647
a88a5372
SM
2648 sequences = Freverse (where_is_internal (definition, keymaps,
2649 !NILP (noindirect), nomenus));
2650
bd4b5750
SM
2651 while (CONSP (sequences)
2652 /* If we're at the end of the `sequences' list and we haven't
2653 considered remapped sequences yet, copy them over and
2654 process them. */
2655 || (!remapped && (sequences = remapped_sequences,
1004a21a
PE
2656 remapped = 1,
2657 CONSP (sequences))))
a88a5372
SM
2658 {
2659 Lisp_Object sequence, function;
233f0c9f 2660
a88a5372
SM
2661 sequence = XCAR (sequences);
2662 sequences = XCDR (sequences);
2663
a88a5372
SM
2664 /* Verify that this key binding is not shadowed by another
2665 binding for the same key, before we say it exists.
2666
2667 Mechanism: look for local definition of this key and if
2668 it is defined and does not match what we found then
2669 ignore this key.
2670
2671 Either nil or number as value from Flookup_key
2672 means undefined. */
233f0c9f
CY
2673 if (NILP (Fequal (shadow_lookup (keymaps, sequence, Qnil, remapped),
2674 definition)))
a88a5372 2675 continue;
1e7d1ab0 2676
a88a5372
SM
2677 /* If the current sequence is a command remapping with
2678 format [remap COMMAND], find the key sequences
2679 which run COMMAND, and use those sequences instead. */
2680 if (NILP (no_remap) && !remapped
2681 && VECTORP (sequence) && ASIZE (sequence) == 2
2682 && EQ (AREF (sequence, 0), Qremap)
2683 && (function = AREF (sequence, 1), SYMBOLP (function)))
2684 {
2685 Lisp_Object seqs = where_is_internal (function, keymaps,
2686 !NILP (noindirect), nomenus);
bc5e75b6 2687 remapped_sequences = nconc2 (Freverse (seqs), remapped_sequences);
a88a5372 2688 continue;
1e7d1ab0
SM
2689 }
2690
a88a5372
SM
2691 /* Don't annoy user with strings from a menu such as the
2692 entries from the "Edit => Paste from Kill Menu".
2693 Change them all to "(any string)", so that there
2694 seems to be only one menu item to report. */
2695 if (! NILP (sequence))
2696 {
c1141155
PE
2697 Lisp_Object tem1;
2698 tem1 = Faref (sequence, make_number (ASIZE (sequence) - 1));
2699 if (STRINGP (tem1))
a88a5372
SM
2700 Faset (sequence, make_number (ASIZE (sequence) - 1),
2701 build_string ("(any string)"));
2702 }
233f0c9f 2703
a88a5372
SM
2704 /* It is a true unshadowed match. Record it, unless it's already
2705 been seen (as could happen when inheriting keymaps). */
2706 if (NILP (Fmember (sequence, found)))
2707 found = Fcons (sequence, found);
233f0c9f 2708
a88a5372
SM
2709 /* If firstonly is Qnon_ascii, then we can return the first
2710 binding we find. If firstonly is not Qnon_ascii but not
2711 nil, then we should return the first ascii-only binding
2712 we find. */
2713 if (EQ (firstonly, Qnon_ascii))
2714 RETURN_UNGCPRO (sequence);
2715 else if (!NILP (firstonly)
2716 && 2 == preferred_sequence_p (sequence))
2717 RETURN_UNGCPRO (sequence);
1e7d1ab0 2718 }
a88a5372
SM
2719
2720 UNGCPRO;
2721
2722 found = Fnreverse (found);
2723
2724 /* firstonly may have been t, but we may have gone all the way through
2725 the keymaps without finding an all-ASCII key sequence. So just
2726 return the best we could find. */
2727 if (NILP (firstonly))
2728 return found;
2729 else if (where_is_preferred_modifier == 0)
2730 return Fcar (found);
1e7d1ab0 2731 else
a88a5372
SM
2732 { /* Maybe we did not find a preferred_modifier binding, but we did find
2733 some ASCII binding. */
2734 Lisp_Object bindings = found;
2735 while (CONSP (bindings))
2736 if (preferred_sequence_p (XCAR (bindings)))
2737 return XCAR (bindings);
2738 else
2739 bindings = XCDR (bindings);
2740 return Fcar (found);
1e7d1ab0
SM
2741 }
2742}
2743
18e2d91f 2744/* This function can GC because get_keyelt can. */
df75b1a3 2745
4bb99e3a 2746static void
971de7fb 2747where_is_internal_1 (Lisp_Object key, Lisp_Object binding, Lisp_Object args, void *data)
0403641f 2748{
4bb99e3a
SM
2749 struct where_is_internal_data *d = data; /* Cast! */
2750 Lisp_Object definition = d->definition;
a88a5372 2751 int noindirect = d->noindirect;
4bb99e3a
SM
2752 Lisp_Object this = d->this;
2753 Lisp_Object last = d->last;
2754 int last_is_meta = d->last_is_meta;
0403641f 2755 Lisp_Object sequence;
0403641f
RS
2756
2757 /* Search through indirections unless that's not wanted. */
9d889332 2758 if (!noindirect)
35810b6f 2759 binding = get_keyelt (binding, 0);
0403641f
RS
2760
2761 /* End this iteration if this element does not match
2762 the target. */
2763
1e7d1ab0
SM
2764 if (!(!NILP (where_is_cache) /* everything "matches" during cache-fill. */
2765 || EQ (binding, definition)
2766 || (CONSP (definition) && !NILP (Fequal (binding, definition)))))
2767 /* Doesn't match. */
fab84e3c 2768 return;
0403641f 2769
1e7d1ab0 2770 /* We have found a match. Construct the key sequence where we found it. */
0403641f
RS
2771 if (INTEGERP (key) && last_is_meta)
2772 {
2773 sequence = Fcopy_sequence (this);
2774 Faset (sequence, last, make_number (XINT (key) | meta_modifier));
2775 }
2776 else
43dfda2b
KH
2777 {
2778 if (CONSP (key))
2779 key = Fcons (XCAR (key), XCDR (key));
2780 sequence = append_key (this, key);
2781 }
0403641f 2782
1e7d1ab0
SM
2783 if (!NILP (where_is_cache))
2784 {
2785 Lisp_Object sequences = Fgethash (binding, where_is_cache, Qnil);
2786 Fputhash (binding, Fcons (sequence, sequences), where_is_cache);
1e7d1ab0
SM
2787 }
2788 else
fab84e3c 2789 d->sequences = Fcons (sequence, d->sequences);
0403641f 2790}
2c6f1a39 2791\f
cc0a8174
JB
2792/* describe-bindings - summarizing all the bindings in a set of keymaps. */
2793
54cbc3d4 2794DEFUN ("describe-buffer-bindings", Fdescribe_buffer_bindings, Sdescribe_buffer_bindings, 1, 3, 0,
335c5470
PJ
2795 doc: /* Insert the list of all defined keys and their definitions.
2796The list is inserted in the current buffer, while the bindings are
2797looked up in BUFFER.
2798The optional argument PREFIX, if non-nil, should be a key sequence;
2799then we display only bindings that start with that prefix.
2800The optional argument MENUS, if non-nil, says to mention menu bindings.
2801\(Ordinarily these are omitted from the output.) */)
5842a27b 2802 (Lisp_Object buffer, Lisp_Object prefix, Lisp_Object menus)
2c6f1a39 2803{
54cbc3d4
SM
2804 Lisp_Object outbuf, shadow;
2805 int nomenu = NILP (menus);
d7ab90a9
KH
2806 register Lisp_Object start1;
2807 struct gcpro gcpro1;
2c6f1a39 2808
8ea90aa3 2809 const char *alternate_heading
4726a9f1 2810 = "\
6cec169a
RS
2811Keyboard translations:\n\n\
2812You type Translation\n\
2813-------- -----------\n";
2c6f1a39 2814
2fa7d369
JB
2815 CHECK_BUFFER (buffer);
2816
a588e041 2817 shadow = Qnil;
d7ab90a9 2818 GCPRO1 (shadow);
53c8f9fa 2819
36ca6189 2820 outbuf = Fcurrent_buffer ();
2c6f1a39 2821
4726a9f1 2822 /* Report on alternates for keys. */
1344aad4 2823 if (STRINGP (KVAR (current_kboard, Vkeyboard_translate_table)) && !NILP (prefix))
4726a9f1
JB
2824 {
2825 int c;
1344aad4
TT
2826 const unsigned char *translate = SDATA (KVAR (current_kboard, Vkeyboard_translate_table));
2827 int translate_len = SCHARS (KVAR (current_kboard, Vkeyboard_translate_table));
4726a9f1
JB
2828
2829 for (c = 0; c < translate_len; c++)
2830 if (translate[c] != c)
2831 {
d2d9586a 2832 char buf[KEY_DESCRIPTION_SIZE];
4726a9f1
JB
2833 char *bufend;
2834
2835 if (alternate_heading)
2836 {
2837 insert_string (alternate_heading);
2838 alternate_heading = 0;
2839 }
2840
f1cb0a25 2841 bufend = push_key_description (translate[c], buf, 1);
4726a9f1
JB
2842 insert (buf, bufend - buf);
2843 Findent_to (make_number (16), make_number (1));
f1cb0a25 2844 bufend = push_key_description (c, buf, 1);
4726a9f1
JB
2845 insert (buf, bufend - buf);
2846
2847 insert ("\n", 1);
d6a31e9f
KS
2848
2849 /* Insert calls signal_after_change which may GC. */
1344aad4 2850 translate = SDATA (KVAR (current_kboard, Vkeyboard_translate_table));
4726a9f1
JB
2851 }
2852
2853 insert ("\n", 1);
2854 }
2855
d7bf9bf5
RS
2856 if (!NILP (Vkey_translation_map))
2857 describe_map_tree (Vkey_translation_map, 0, Qnil, prefix,
b88e82fd 2858 "Key translations", nomenu, 1, 0, 0);
d7bf9bf5 2859
cc0a8174 2860
53c8f9fa 2861 /* Print the (major mode) local map. */
36ca6189 2862 start1 = Qnil;
1344aad4
TT
2863 if (!NILP (KVAR (current_kboard, Voverriding_terminal_local_map)))
2864 start1 = KVAR (current_kboard, Voverriding_terminal_local_map);
e784236d 2865 else if (!NILP (Voverriding_local_map))
7d92e329 2866 start1 = Voverriding_local_map;
7d92e329 2867
265a9e55 2868 if (!NILP (start1))
2c6f1a39 2869 {
91f64ec2 2870 describe_map_tree (start1, 1, shadow, prefix,
b88e82fd 2871 "\f\nOverriding Bindings", nomenu, 0, 0, 0);
53c8f9fa 2872 shadow = Fcons (start1, shadow);
2c6f1a39 2873 }
36ca6189
RS
2874 else
2875 {
2876 /* Print the minor mode and major mode keymaps. */
2877 int i, nmaps;
2878 Lisp_Object *modes, *maps;
2879
2880 /* Temporarily switch to `buffer', so that we can get that buffer's
2881 minor modes correctly. */
2882 Fset_buffer (buffer);
2883
2884 nmaps = current_minor_maps (&modes, &maps);
2885 Fset_buffer (outbuf);
2886
d1d070e3
RS
2887 start1 = get_local_map (BUF_PT (XBUFFER (buffer)),
2888 XBUFFER (buffer), Qkeymap);
2889 if (!NILP (start1))
2890 {
2891 describe_map_tree (start1, 1, shadow, prefix,
b88e82fd
RS
2892 "\f\n`keymap' Property Bindings", nomenu,
2893 0, 0, 0);
d1d070e3
RS
2894 shadow = Fcons (start1, shadow);
2895 }
2896
36ca6189
RS
2897 /* Print the minor mode maps. */
2898 for (i = 0; i < nmaps; i++)
2899 {
2900 /* The title for a minor mode keymap
2901 is constructed at run time.
2902 We let describe_map_tree do the actual insertion
2903 because it takes care of other features when doing so. */
2904 char *title, *p;
2905
2906 if (!SYMBOLP (modes[i]))
0bcfd7d7 2907 abort ();
36ca6189 2908
d5db4077 2909 p = title = (char *) alloca (42 + SCHARS (SYMBOL_NAME (modes[i])));
36ca6189
RS
2910 *p++ = '\f';
2911 *p++ = '\n';
2912 *p++ = '`';
72af86bd
AS
2913 memcpy (p, SDATA (SYMBOL_NAME (modes[i])),
2914 SCHARS (SYMBOL_NAME (modes[i])));
d5db4077 2915 p += SCHARS (SYMBOL_NAME (modes[i]));
36ca6189 2916 *p++ = '\'';
72af86bd
AS
2917 memcpy (p, " Minor Mode Bindings", strlen (" Minor Mode Bindings"));
2918 p += strlen (" Minor Mode Bindings");
36ca6189
RS
2919 *p = 0;
2920
b88e82fd
RS
2921 describe_map_tree (maps[i], 1, shadow, prefix,
2922 title, nomenu, 0, 0, 0);
36ca6189
RS
2923 shadow = Fcons (maps[i], shadow);
2924 }
2925
36ca6189
RS
2926 start1 = get_local_map (BUF_PT (XBUFFER (buffer)),
2927 XBUFFER (buffer), Qlocal_map);
2928 if (!NILP (start1))
2929 {
4b4deea2 2930 if (EQ (start1, BVAR (XBUFFER (buffer), keymap)))
36ca6189 2931 describe_map_tree (start1, 1, shadow, prefix,
b88e82fd 2932 "\f\nMajor Mode Bindings", nomenu, 0, 0, 0);
36ca6189
RS
2933 else
2934 describe_map_tree (start1, 1, shadow, prefix,
d1d070e3 2935 "\f\n`local-map' Property Bindings",
b88e82fd 2936 nomenu, 0, 0, 0);
36ca6189
RS
2937
2938 shadow = Fcons (start1, shadow);
2939 }
2940 }
2c6f1a39 2941
91f64ec2 2942 describe_map_tree (current_global_map, 1, shadow, prefix,
b88e82fd 2943 "\f\nGlobal Bindings", nomenu, 0, 1, 0);
d7bf9bf5
RS
2944
2945 /* Print the function-key-map translations under this prefix. */
1344aad4
TT
2946 if (!NILP (KVAR (current_kboard, Vlocal_function_key_map)))
2947 describe_map_tree (KVAR (current_kboard, Vlocal_function_key_map), 0, Qnil, prefix,
b88e82fd 2948 "\f\nFunction key map translations", nomenu, 1, 0, 0);
2c6f1a39 2949
4f4a84ec 2950 /* Print the input-decode-map translations under this prefix. */
1344aad4
TT
2951 if (!NILP (KVAR (current_kboard, Vinput_decode_map)))
2952 describe_map_tree (KVAR (current_kboard, Vinput_decode_map), 0, Qnil, prefix,
4f4a84ec
SM
2953 "\f\nInput decoding map translations", nomenu, 1, 0, 0);
2954
d7ab90a9 2955 UNGCPRO;
2c6f1a39
JB
2956 return Qnil;
2957}
2958
b31a4218 2959/* Insert a description of the key bindings in STARTMAP,
2c6f1a39
JB
2960 followed by those of all maps reachable through STARTMAP.
2961 If PARTIAL is nonzero, omit certain "uninteresting" commands
2962 (such as `undefined').
53c8f9fa
RS
2963 If SHADOW is non-nil, it is a list of maps;
2964 don't mention keys which would be shadowed by any of them.
2965 PREFIX, if non-nil, says mention only keys that start with PREFIX.
07f15dfd 2966 TITLE, if not 0, is a string to insert at the beginning.
af1d6f09 2967 TITLE should not end with a colon or a newline; we supply that.
d7bf9bf5
RS
2968 If NOMENU is not 0, then omit menu-bar commands.
2969
2970 If TRANSL is nonzero, the definitions are actually key translations
c2b714de
RS
2971 so print strings and vectors differently.
2972
2973 If ALWAYS_TITLE is nonzero, print the title even if there are no maps
b88e82fd
RS
2974 to look through.
2975
2976 If MENTION_SHADOW is nonzero, then when something is shadowed by SHADOW,
9888ff71 2977 don't omit it; instead, mention it but say it is shadowed.
2c6f1a39 2978
9888ff71
LMI
2979 Return whether something was inserted or not. */
2980
2981int
d5a3eaaf 2982describe_map_tree (Lisp_Object startmap, int partial, Lisp_Object shadow,
8ea90aa3 2983 Lisp_Object prefix, const char *title, int nomenu, int transl,
d5a3eaaf 2984 int always_title, int mention_shadow)
2c6f1a39 2985{
e4b6f8e3 2986 Lisp_Object maps, orig_maps, seen, sub_shadows;
e3dfcd4e 2987 struct gcpro gcpro1, gcpro2, gcpro3;
07f15dfd 2988 int something = 0;
8ea90aa3 2989 const char *key_heading
53c8f9fa
RS
2990 = "\
2991key binding\n\
2992--- -------\n";
2c6f1a39 2993
e4b6f8e3 2994 orig_maps = maps = Faccessible_keymaps (startmap, prefix);
925083d1 2995 seen = Qnil;
e3dfcd4e
KH
2996 sub_shadows = Qnil;
2997 GCPRO3 (maps, seen, sub_shadows);
2c6f1a39 2998
af1d6f09
RS
2999 if (nomenu)
3000 {
3001 Lisp_Object list;
3002
3003 /* Delete from MAPS each element that is for the menu bar. */
99784d63 3004 for (list = maps; CONSP (list); list = XCDR (list))
af1d6f09 3005 {
c1141155 3006 Lisp_Object elt, elt_prefix, tem;
af1d6f09 3007
99784d63 3008 elt = XCAR (list);
c1141155 3009 elt_prefix = Fcar (elt);
77b37c05 3010 if (ASIZE (elt_prefix) >= 1)
af1d6f09 3011 {
c1141155 3012 tem = Faref (elt_prefix, make_number (0));
af1d6f09
RS
3013 if (EQ (tem, Qmenu_bar))
3014 maps = Fdelq (elt, maps);
3015 }
3016 }
3017 }
3018
c2b714de 3019 if (!NILP (maps) || always_title)
53c8f9fa
RS
3020 {
3021 if (title)
07f15dfd
RS
3022 {
3023 insert_string (title);
3024 if (!NILP (prefix))
3025 {
3026 insert_string (" Starting With ");
f8d8ba40 3027 insert1 (Fkey_description (prefix, Qnil));
07f15dfd
RS
3028 }
3029 insert_string (":\n");
3030 }
53c8f9fa 3031 insert_string (key_heading);
07f15dfd 3032 something = 1;
53c8f9fa
RS
3033 }
3034
99784d63 3035 for (; CONSP (maps); maps = XCDR (maps))
2c6f1a39 3036 {
c1141155 3037 register Lisp_Object elt, elt_prefix, tail;
53c8f9fa 3038
99784d63 3039 elt = XCAR (maps);
c1141155 3040 elt_prefix = Fcar (elt);
53c8f9fa
RS
3041
3042 sub_shadows = Qnil;
3043
03699b14 3044 for (tail = shadow; CONSP (tail); tail = XCDR (tail))
2c6f1a39 3045 {
53c8f9fa
RS
3046 Lisp_Object shmap;
3047
03699b14 3048 shmap = XCAR (tail);
53c8f9fa
RS
3049
3050 /* If the sequence by which we reach this keymap is zero-length,
3051 then the shadow map for this keymap is just SHADOW. */
c1141155 3052 if ((STRINGP (elt_prefix) && SCHARS (elt_prefix) == 0)
77b37c05 3053 || (VECTORP (elt_prefix) && ASIZE (elt_prefix) == 0))
53c8f9fa
RS
3054 ;
3055 /* If the sequence by which we reach this keymap actually has
3056 some elements, then the sequence's definition in SHADOW is
3057 what we should use. */
3058 else
3059 {
98234407 3060 shmap = Flookup_key (shmap, Fcar (elt), Qt);
416349ec 3061 if (INTEGERP (shmap))
53c8f9fa
RS
3062 shmap = Qnil;
3063 }
3064
3065 /* If shmap is not nil and not a keymap,
3066 it completely shadows this map, so don't
3067 describe this map at all. */
02067692 3068 if (!NILP (shmap) && !KEYMAPP (shmap))
53c8f9fa
RS
3069 goto skip;
3070
3071 if (!NILP (shmap))
3072 sub_shadows = Fcons (shmap, sub_shadows);
2c6f1a39
JB
3073 }
3074
e4b6f8e3 3075 /* Maps we have already listed in this loop shadow this map. */
54cbc3d4 3076 for (tail = orig_maps; !EQ (tail, maps); tail = XCDR (tail))
e4b6f8e3
RS
3077 {
3078 Lisp_Object tem;
c1141155 3079 tem = Fequal (Fcar (XCAR (tail)), elt_prefix);
54cbc3d4 3080 if (!NILP (tem))
e4b6f8e3
RS
3081 sub_shadows = Fcons (XCDR (XCAR (tail)), sub_shadows);
3082 }
3083
c1141155 3084 describe_map (Fcdr (elt), elt_prefix,
d7bf9bf5 3085 transl ? describe_translation : describe_command,
b88e82fd 3086 partial, sub_shadows, &seen, nomenu, mention_shadow);
53c8f9fa
RS
3087
3088 skip: ;
2c6f1a39
JB
3089 }
3090
3091 UNGCPRO;
9888ff71 3092 return something;
2c6f1a39
JB
3093}
3094
c3f27064
KH
3095static int previous_description_column;
3096
2c6f1a39 3097static void
971de7fb 3098describe_command (Lisp_Object definition, Lisp_Object args)
2c6f1a39
JB
3099{
3100 register Lisp_Object tem1;
d311d28c 3101 ptrdiff_t column = current_column ();
c3f27064 3102 int description_column;
2c6f1a39 3103
c3f27064
KH
3104 /* If column 16 is no good, go to col 32;
3105 but don't push beyond that--go to next line instead. */
3106 if (column > 30)
3107 {
3108 insert_char ('\n');
3109 description_column = 32;
3110 }
3111 else if (column > 14 || (column > 10 && previous_description_column == 32))
3112 description_column = 32;
3113 else
3114 description_column = 16;
3115
3116 Findent_to (make_number (description_column), make_number (1));
3117 previous_description_column = description_column;
2c6f1a39 3118
416349ec 3119 if (SYMBOLP (definition))
2c6f1a39 3120 {
c85d524c 3121 tem1 = SYMBOL_NAME (definition);
2c6f1a39 3122 insert1 (tem1);
055234ef 3123 insert_string ("\n");
2c6f1a39 3124 }
d7bf9bf5 3125 else if (STRINGP (definition) || VECTORP (definition))
24065b9c 3126 insert_string ("Keyboard Macro\n");
02067692
SM
3127 else if (KEYMAPP (definition))
3128 insert_string ("Prefix Command\n");
2c6f1a39 3129 else
02067692 3130 insert_string ("??\n");
2c6f1a39
JB
3131}
3132
d7bf9bf5 3133static void
971de7fb 3134describe_translation (Lisp_Object definition, Lisp_Object args)
d7bf9bf5
RS
3135{
3136 register Lisp_Object tem1;
3137
3138 Findent_to (make_number (16), make_number (1));
3139
3140 if (SYMBOLP (definition))
3141 {
c85d524c 3142 tem1 = SYMBOL_NAME (definition);
d7bf9bf5
RS
3143 insert1 (tem1);
3144 insert_string ("\n");
3145 }
3146 else if (STRINGP (definition) || VECTORP (definition))
b902ac28 3147 {
f8d8ba40 3148 insert1 (Fkey_description (definition, Qnil));
b902ac28
RS
3149 insert_string ("\n");
3150 }
02067692
SM
3151 else if (KEYMAPP (definition))
3152 insert_string ("Prefix Command\n");
d7bf9bf5 3153 else
02067692 3154 insert_string ("??\n");
d7bf9bf5
RS
3155}
3156
c36238ee
RS
3157/* describe_map puts all the usable elements of a sparse keymap
3158 into an array of `struct describe_map_elt',
3159 then sorts them by the events. */
3160
3161struct describe_map_elt { Lisp_Object event; Lisp_Object definition; int shadowed; };
3162
3163/* qsort comparison function for sorting `struct describe_map_elt' by
3164 the event field. */
3165
3166static int
971de7fb 3167describe_map_compare (const void *aa, const void *bb)
c36238ee
RS
3168{
3169 const struct describe_map_elt *a = aa, *b = bb;
3170 if (INTEGERP (a->event) && INTEGERP (b->event))
3171 return ((XINT (a->event) > XINT (b->event))
3172 - (XINT (a->event) < XINT (b->event)));
3173 if (!INTEGERP (a->event) && INTEGERP (b->event))
3174 return 1;
3175 if (INTEGERP (a->event) && !INTEGERP (b->event))
3176 return -1;
3177 if (SYMBOLP (a->event) && SYMBOLP (b->event))
ccf0250b
SM
3178 return (!NILP (Fstring_lessp (a->event, b->event)) ? -1
3179 : !NILP (Fstring_lessp (b->event, a->event)) ? 1
c36238ee
RS
3180 : 0);
3181 return 0;
3182}
3183
c3c0ee93 3184/* Describe the contents of map MAP, assuming that this map itself is
f8d8ba40 3185 reached by the sequence of prefix keys PREFIX (a string or vector).
279a482a 3186 PARTIAL, SHADOW, NOMENU are as in `describe_map_tree' above. */
2c6f1a39
JB
3187
3188static void
d5a3eaaf
AS
3189describe_map (Lisp_Object map, Lisp_Object prefix,
3190 void (*elt_describer) (Lisp_Object, Lisp_Object),
3191 int partial, Lisp_Object shadow,
3192 Lisp_Object *seen, int nomenu, int mention_shadow)
2c6f1a39 3193{
53c8f9fa 3194 Lisp_Object tail, definition, event;
99a225a9 3195 Lisp_Object tem;
2c6f1a39
JB
3196 Lisp_Object suppress;
3197 Lisp_Object kludge;
3198 int first = 1;
3199 struct gcpro gcpro1, gcpro2, gcpro3;
3200
c36238ee
RS
3201 /* These accumulate the values from sparse keymap bindings,
3202 so we can sort them and handle them in order. */
3203 int length_needed = 0;
3204 struct describe_map_elt *vect;
3205 int slots_used = 0;
3206 int i;
3207
6bbd7a29
GM
3208 suppress = Qnil;
3209
2c6f1a39
JB
3210 if (partial)
3211 suppress = intern ("suppress-keymap");
3212
3213 /* This vector gets used to present single keys to Flookup_key. Since
f5b79c1c 3214 that is done once per keymap element, we don't want to cons up a
2c6f1a39
JB
3215 fresh vector every time. */
3216 kludge = Fmake_vector (make_number (1), Qnil);
99a225a9 3217 definition = Qnil;
2c6f1a39 3218
00f7c5ed
SM
3219 GCPRO3 (prefix, definition, kludge);
3220
3221 map = call1 (Qkeymap_canonicalize, map);
3222
c36238ee
RS
3223 for (tail = map; CONSP (tail); tail = XCDR (tail))
3224 length_needed++;
3225
3226 vect = ((struct describe_map_elt *)
3227 alloca (sizeof (struct describe_map_elt) * length_needed));
3228
03699b14 3229 for (tail = map; CONSP (tail); tail = XCDR (tail))
2c6f1a39
JB
3230 {
3231 QUIT;
2c6f1a39 3232
03699b14
KR
3233 if (VECTORP (XCAR (tail))
3234 || CHAR_TABLE_P (XCAR (tail)))
3235 describe_vector (XCAR (tail),
f8d8ba40 3236 prefix, Qnil, elt_describer, partial, shadow, map,
59eb0929 3237 1, mention_shadow);
03699b14 3238 else if (CONSP (XCAR (tail)))
2c6f1a39 3239 {
b88e82fd 3240 int this_shadowed = 0;
c36238ee 3241
03699b14 3242 event = XCAR (XCAR (tail));
2c3b35b0 3243
f8d8ba40 3244 /* Ignore bindings whose "prefix" are not really valid events.
2c3b35b0 3245 (We get these in the frames and buffers menu.) */
54cbc3d4 3246 if (!(SYMBOLP (event) || INTEGERP (event)))
c96dcc01 3247 continue;
2c3b35b0 3248
279a482a
KH
3249 if (nomenu && EQ (event, Qmenu_bar))
3250 continue;
3251
03699b14 3252 definition = get_keyelt (XCDR (XCAR (tail)), 0);
2c6f1a39 3253
f5b79c1c 3254 /* Don't show undefined commands or suppressed commands. */
99a225a9 3255 if (NILP (definition)) continue;
416349ec 3256 if (SYMBOLP (definition) && partial)
f5b79c1c 3257 {
99a225a9
RS
3258 tem = Fget (definition, suppress);
3259 if (!NILP (tem))
f5b79c1c
JB
3260 continue;
3261 }
2c6f1a39 3262
f5b79c1c
JB
3263 /* Don't show a command that isn't really visible
3264 because a local definition of the same key shadows it. */
2c6f1a39 3265
49801145 3266 ASET (kludge, 0, event);
f5b79c1c
JB
3267 if (!NILP (shadow))
3268 {
bd4b5750 3269 tem = shadow_lookup (shadow, kludge, Qt, 0);
b88e82fd
RS
3270 if (!NILP (tem))
3271 {
0af14516
KS
3272 /* If both bindings are keymaps, this key is a prefix key,
3273 so don't say it is shadowed. */
3274 if (KEYMAPP (definition) && KEYMAPP (tem))
3275 ;
d3ee989e 3276 /* Avoid generating duplicate entries if the
0af14516
KS
3277 shadowed binding has the same definition. */
3278 else if (mention_shadow && !EQ (tem, definition))
b88e82fd
RS
3279 this_shadowed = 1;
3280 else
3281 continue;
3282 }
f5b79c1c
JB
3283 }
3284
c3c0ee93 3285 tem = Flookup_key (map, kludge, Qt);
54cbc3d4 3286 if (!EQ (tem, definition)) continue;
99a225a9 3287
c36238ee
RS
3288 vect[slots_used].event = event;
3289 vect[slots_used].definition = definition;
3290 vect[slots_used].shadowed = this_shadowed;
3291 slots_used++;
f5b79c1c 3292 }
03699b14 3293 else if (EQ (XCAR (tail), Qkeymap))
925083d1
KH
3294 {
3295 /* The same keymap might be in the structure twice, if we're
3296 using an inherited keymap. So skip anything we've already
3297 encountered. */
3298 tem = Fassq (tail, *seen);
f8d8ba40 3299 if (CONSP (tem) && !NILP (Fequal (XCAR (tem), prefix)))
925083d1 3300 break;
f8d8ba40 3301 *seen = Fcons (Fcons (tail, prefix), *seen);
925083d1 3302 }
2c6f1a39
JB
3303 }
3304
c36238ee
RS
3305 /* If we found some sparse map events, sort them. */
3306
3307 qsort (vect, slots_used, sizeof (struct describe_map_elt),
3308 describe_map_compare);
3309
3310 /* Now output them in sorted order. */
3311
3312 for (i = 0; i < slots_used; i++)
3313 {
3314 Lisp_Object start, end;
3315
3316 if (first)
3317 {
3318 previous_description_column = 0;
3319 insert ("\n", 1);
3320 first = 0;
3321 }
3322
3323 ASET (kludge, 0, vect[i].event);
3324 start = vect[i].event;
3325 end = start;
3326
3327 definition = vect[i].definition;
3328
3329 /* Find consecutive chars that are identically defined. */
3330 if (INTEGERP (vect[i].event))
3331 {
3332 while (i + 1 < slots_used
15fdcac7 3333 && EQ (vect[i+1].event, make_number (XINT (vect[i].event) + 1))
c36238ee
RS
3334 && !NILP (Fequal (vect[i + 1].definition, definition))
3335 && vect[i].shadowed == vect[i + 1].shadowed)
3336 i++;
3337 end = vect[i].event;
3338 }
3339
3340 /* Now START .. END is the range to describe next. */
3341
3342 /* Insert the string to describe the event START. */
3343 insert1 (Fkey_description (kludge, prefix));
3344
3345 if (!EQ (start, end))
3346 {
3347 insert (" .. ", 4);
3348
3349 ASET (kludge, 0, end);
3350 /* Insert the string to describe the character END. */
3351 insert1 (Fkey_description (kludge, prefix));
3352 }
3353
3354 /* Print a description of the definition of this character.
3355 elt_describer will take care of spacing out far enough
3356 for alignment purposes. */
3357 (*elt_describer) (vect[i].definition, Qnil);
3358
3359 if (vect[i].shadowed)
3360 {
3361 SET_PT (PT - 1);
5615dcc0 3362 insert_string ("\n (that binding is currently shadowed by another mode)");
c36238ee
RS
3363 SET_PT (PT + 1);
3364 }
3365 }
3366
2c6f1a39
JB
3367 UNGCPRO;
3368}
3369
69248761 3370static void
971de7fb 3371describe_vector_princ (Lisp_Object elt, Lisp_Object fun)
2c6f1a39 3372{
81fa9e2f 3373 Findent_to (make_number (16), make_number (1));
d55627cc 3374 call1 (fun, elt);
ad4ec84a 3375 Fterpri (Qnil);
2c6f1a39
JB
3376}
3377
d55627cc 3378DEFUN ("describe-vector", Fdescribe_vector, Sdescribe_vector, 1, 2, 0,
335c5470 3379 doc: /* Insert a description of contents of VECTOR.
23715ea6
JB
3380This is text showing the elements of vector matched against indices.
3381DESCRIBER is the output function used; nil means use `princ'. */)
5842a27b 3382 (Lisp_Object vector, Lisp_Object describer)
2c6f1a39 3383{
d311d28c 3384 ptrdiff_t count = SPECPDL_INDEX ();
d55627cc
SM
3385 if (NILP (describer))
3386 describer = intern ("princ");
ad4ec84a 3387 specbind (Qstandard_output, Fcurrent_buffer ());
b7826503 3388 CHECK_VECTOR_OR_CHAR_TABLE (vector);
d55627cc 3389 describe_vector (vector, Qnil, describer, describe_vector_princ, 0,
59eb0929 3390 Qnil, Qnil, 0, 0);
ad4ec84a
RS
3391
3392 return unbind_to (count, Qnil);
2c6f1a39
JB
3393}
3394
352e5dea
RS
3395/* Insert in the current buffer a description of the contents of VECTOR.
3396 We call ELT_DESCRIBER to insert the description of one value found
3397 in VECTOR.
3398
3399 ELT_PREFIX describes what "comes before" the keys or indices defined
0403641f
RS
3400 by this vector. This is a human-readable string whose size
3401 is not necessarily related to the situation.
352e5dea
RS
3402
3403 If the vector is in a keymap, ELT_PREFIX is a prefix key which
3404 leads to this keymap.
3405
3406 If the vector is a chartable, ELT_PREFIX is the vector
3407 of bytes that lead to the character set or portion of a character
3408 set described by this chartable.
3409
3410 If PARTIAL is nonzero, it means do not mention suppressed commands
3411 (that assumes the vector is in a keymap).
3412
3413 SHADOW is a list of keymaps that shadow this map.
3414 If it is non-nil, then we look up the key in those maps
3415 and we don't mention it now if it is defined by any of them.
3416
3417 ENTIRE_MAP is the keymap in which this vector appears.
3418 If the definition in effect in the whole map does not match
0403641f
RS
3419 the one in this vector, we ignore this one.
3420
e1e36e6e 3421 ARGS is simply passed as the second argument to ELT_DESCRIBER.
d55627cc 3422
f8d8ba40
KS
3423 KEYMAP_P is 1 if vector is known to be a keymap, so map ESC to M-.
3424
d55627cc 3425 ARGS is simply passed as the second argument to ELT_DESCRIBER. */
352e5dea 3426
f8d8ba40 3427static void
d5a3eaaf
AS
3428describe_vector (Lisp_Object vector, Lisp_Object prefix, Lisp_Object args,
3429 void (*elt_describer) (Lisp_Object, Lisp_Object),
3430 int partial, Lisp_Object shadow, Lisp_Object entire_map,
59eb0929 3431 int keymap_p, int mention_shadow)
2c6f1a39 3432{
32bfcae1
KH
3433 Lisp_Object definition;
3434 Lisp_Object tem2;
f8d8ba40 3435 Lisp_Object elt_prefix = Qnil;
cda1ce8d 3436 int i;
2c6f1a39
JB
3437 Lisp_Object suppress;
3438 Lisp_Object kludge;
3439 int first = 1;
f8d8ba40 3440 struct gcpro gcpro1, gcpro2, gcpro3, gcpro4;
a98f1d1d 3441 /* Range of elements to be handled. */
bed6185f 3442 int from, to, stop;
e1e36e6e 3443 Lisp_Object character;
0403641f
RS
3444 int starting_i;
3445
6bbd7a29
GM
3446 suppress = Qnil;
3447
32bfcae1 3448 definition = Qnil;
2c6f1a39 3449
f8d8ba40
KS
3450 if (!keymap_p)
3451 {
3452 /* Call Fkey_description first, to avoid GC bug for the other string. */
3453 if (!NILP (prefix) && XFASTINT (Flength (prefix)) > 0)
3454 {
3455 Lisp_Object tem;
3456 tem = Fkey_description (prefix, Qnil);
3457 elt_prefix = concat2 (tem, build_string (" "));
3458 }
3459 prefix = Qnil;
3460 }
3461
2c6f1a39
JB
3462 /* This vector gets used to present single keys to Flookup_key. Since
3463 that is done once per vector element, we don't want to cons up a
3464 fresh vector every time. */
3465 kludge = Fmake_vector (make_number (1), Qnil);
f8d8ba40 3466 GCPRO4 (elt_prefix, prefix, definition, kludge);
2c6f1a39
JB
3467
3468 if (partial)
3469 suppress = intern ("suppress-keymap");
3470
e1e36e6e 3471 from = 0;
bed6185f
KH
3472 if (CHAR_TABLE_P (vector))
3473 stop = MAX_5_BYTE_CHAR + 1, to = MAX_CHAR + 1;
3474 else
77b37c05 3475 stop = to = ASIZE (vector);
b5585f5c 3476
bed6185f 3477 for (i = from; ; i++)
2c6f1a39 3478 {
b88e82fd 3479 int this_shadowed = 0;
cda1ce8d
KH
3480 int range_beg, range_end;
3481 Lisp_Object val;
2c6f1a39 3482
2c6f1a39 3483 QUIT;
0403641f 3484
bed6185f
KH
3485 if (i == stop)
3486 {
3487 if (i == to)
3488 break;
3489 stop = to;
3490 }
3491
cda1ce8d 3492 starting_i = i;
0403641f 3493
cda1ce8d 3494 if (CHAR_TABLE_P (vector))
bed6185f
KH
3495 {
3496 range_beg = i;
3497 i = stop - 1;
3498 val = char_table_ref_and_range (vector, range_beg, &range_beg, &i);
3499 }
a1942d88 3500 else
cda1ce8d
KH
3501 val = AREF (vector, i);
3502 definition = get_keyelt (val, 0);
2c6f1a39 3503
d55627cc 3504 if (NILP (definition)) continue;
cc3e6465 3505
2c6f1a39 3506 /* Don't mention suppressed commands. */
32bfcae1 3507 if (SYMBOLP (definition) && partial)
2c6f1a39 3508 {
a98f1d1d
KH
3509 Lisp_Object tem;
3510
3511 tem = Fget (definition, suppress);
3512
3513 if (!NILP (tem)) continue;
2c6f1a39
JB
3514 }
3515
cda1ce8d 3516 character = make_number (starting_i);
327719ee 3517 ASET (kludge, 0, character);
0403641f 3518
32bfcae1 3519 /* If this binding is shadowed by some other map, ignore it. */
e1e36e6e 3520 if (!NILP (shadow))
2c6f1a39
JB
3521 {
3522 Lisp_Object tem;
31bea176 3523
bd4b5750 3524 tem = shadow_lookup (shadow, kludge, Qt, 0);
2c6f1a39 3525
b88e82fd
RS
3526 if (!NILP (tem))
3527 {
3528 if (mention_shadow)
3529 this_shadowed = 1;
3530 else
3531 continue;
3532 }
2c6f1a39
JB
3533 }
3534
32bfcae1
KH
3535 /* Ignore this definition if it is shadowed by an earlier
3536 one in the same keymap. */
e1e36e6e 3537 if (!NILP (entire_map))
32bfcae1
KH
3538 {
3539 Lisp_Object tem;
3540
32bfcae1
KH
3541 tem = Flookup_key (entire_map, kludge, Qt);
3542
54cbc3d4 3543 if (!EQ (tem, definition))
32bfcae1
KH
3544 continue;
3545 }
3546
2c6f1a39
JB
3547 if (first)
3548 {
cda1ce8d 3549 insert ("\n", 1);
2c6f1a39
JB
3550 first = 0;
3551 }
3552
0403641f
RS
3553 /* Output the prefix that applies to every entry in this map. */
3554 if (!NILP (elt_prefix))
3555 insert1 (elt_prefix);
a98f1d1d 3556
327719ee 3557 insert1 (Fkey_description (kludge, prefix));
0403641f 3558
542d7fd2 3559 /* Find all consecutive characters or rows that have the same
bed6185f
KH
3560 definition. But, VECTOR is a char-table, we had better put a
3561 boundary between normal characters (-#x3FFF7F) and 8-bit
3562 characters (#x3FFF80-). */
a1942d88 3563 if (CHAR_TABLE_P (vector))
bed6185f
KH
3564 {
3565 while (i + 1 < stop
3566 && (range_beg = i + 1, range_end = stop - 1,
3567 val = char_table_ref_and_range (vector, range_beg,
cda1ce8d
KH
3568 &range_beg, &range_end),
3569 tem2 = get_keyelt (val, 0),
3570 !NILP (tem2))
bed6185f
KH
3571 && !NILP (Fequal (tem2, definition)))
3572 i = range_end;
3573 }
a1942d88 3574 else
bed6185f 3575 while (i + 1 < stop
49801145 3576 && (tem2 = get_keyelt (AREF (vector, i + 1), 0),
a1942d88
KH
3577 !NILP (tem2))
3578 && !NILP (Fequal (tem2, definition)))
3579 i++;
31bea176 3580
2c6f1a39
JB
3581 /* If we have a range of more than one character,
3582 print where the range reaches to. */
3583
0403641f 3584 if (i != starting_i)
2c6f1a39
JB
3585 {
3586 insert (" .. ", 4);
0403641f 3587
f8d8ba40
KS
3588 ASET (kludge, 0, make_number (i));
3589
0403641f
RS
3590 if (!NILP (elt_prefix))
3591 insert1 (elt_prefix);
3592
327719ee 3593 insert1 (Fkey_description (kludge, prefix));
2c6f1a39
JB
3594 }
3595
3596 /* Print a description of the definition of this character.
3597 elt_describer will take care of spacing out far enough
3598 for alignment purposes. */
d55627cc 3599 (*elt_describer) (definition, args);
b88e82fd
RS
3600
3601 if (this_shadowed)
3602 {
3603 SET_PT (PT - 1);
3604 insert_string (" (binding currently shadowed)");
3605 SET_PT (PT + 1);
3606 }
2c6f1a39
JB
3607 }
3608
0f4d7511
KH
3609 if (CHAR_TABLE_P (vector) && ! NILP (XCHAR_TABLE (vector)->defalt))
3610 {
3611 if (!NILP (elt_prefix))
3612 insert1 (elt_prefix);
3613 insert ("default", 7);
3614 (*elt_describer) (XCHAR_TABLE (vector)->defalt, args);
3615 }
3616
2c6f1a39
JB
3617 UNGCPRO;
3618}
3619\f
cc0a8174 3620/* Apropos - finding all symbols whose names match a regexp. */
5d55ffd0
RS
3621static Lisp_Object apropos_predicate;
3622static Lisp_Object apropos_accumulate;
2c6f1a39
JB
3623
3624static void
971de7fb 3625apropos_accum (Lisp_Object symbol, Lisp_Object string)
2c6f1a39
JB
3626{
3627 register Lisp_Object tem;
3628
3629 tem = Fstring_match (string, Fsymbol_name (symbol), Qnil);
265a9e55 3630 if (!NILP (tem) && !NILP (apropos_predicate))
2c6f1a39 3631 tem = call1 (apropos_predicate, symbol);
265a9e55 3632 if (!NILP (tem))
2c6f1a39
JB
3633 apropos_accumulate = Fcons (symbol, apropos_accumulate);
3634}
3635
744cd66b 3636DEFUN ("apropos-internal", Fapropos_internal, Sapropos_internal, 1, 2, 0,
335c5470
PJ
3637 doc: /* Show all symbols whose names contain match for REGEXP.
3638If optional 2nd arg PREDICATE is non-nil, (funcall PREDICATE SYMBOL) is done
3639for each symbol and a symbol is mentioned only if that returns non-nil.
3640Return list of symbols found. */)
5842a27b 3641 (Lisp_Object regexp, Lisp_Object predicate)
2c6f1a39 3642{
5d55ffd0 3643 Lisp_Object tem;
b7826503 3644 CHECK_STRING (regexp);
88539837 3645 apropos_predicate = predicate;
2c6f1a39 3646 apropos_accumulate = Qnil;
88539837 3647 map_obarray (Vobarray, apropos_accum, regexp);
5d55ffd0
RS
3648 tem = Fsort (apropos_accumulate, Qstring_lessp);
3649 apropos_accumulate = Qnil;
3650 apropos_predicate = Qnil;
3651 return tem;
2c6f1a39
JB
3652}
3653\f
dfcf069d 3654void
971de7fb 3655syms_of_keymap (void)
2c6f1a39 3656{
cd3520a4 3657 DEFSYM (Qkeymap, "keymap");
5d55ffd0
RS
3658 staticpro (&apropos_predicate);
3659 staticpro (&apropos_accumulate);
3660 apropos_predicate = Qnil;
3661 apropos_accumulate = Qnil;
2c6f1a39 3662
cd3520a4 3663 DEFSYM (Qkeymap_canonicalize, "keymap-canonicalize");
00f7c5ed 3664
0403641f
RS
3665 /* Now we are ready to set up this property, so we can
3666 create char tables. */
3667 Fput (Qkeymap, Qchar_table_extra_slots, make_number (0));
3668
3669 /* Initialize the keymaps standardly used.
3670 Each one is the value of a Lisp variable, and is also
3671 pointed to by a C variable */
2c6f1a39 3672
0403641f 3673 global_map = Fmake_keymap (Qnil);
d67b4f80 3674 Fset (intern_c_string ("global-map"), global_map);
2c6f1a39 3675
44bff953 3676 current_global_map = global_map;
a3e99933 3677 staticpro (&global_map);
44bff953
RS
3678 staticpro (&current_global_map);
3679
ce6e5d0b 3680 meta_map = Fmake_keymap (Qnil);
d67b4f80
DN
3681 Fset (intern_c_string ("esc-map"), meta_map);
3682 Ffset (intern_c_string ("ESC-prefix"), meta_map);
2c6f1a39 3683
ce6e5d0b 3684 control_x_map = Fmake_keymap (Qnil);
d67b4f80
DN
3685 Fset (intern_c_string ("ctl-x-map"), control_x_map);
3686 Ffset (intern_c_string ("Control-X-prefix"), control_x_map);
2c6f1a39 3687
2fae9111 3688 exclude_keys
5adc433e
DN
3689 = pure_cons (pure_cons (make_pure_c_string ("DEL"), make_pure_c_string ("\\d")),
3690 pure_cons (pure_cons (make_pure_c_string ("TAB"), make_pure_c_string ("\\t")),
3691 pure_cons (pure_cons (make_pure_c_string ("RET"), make_pure_c_string ("\\r")),
3692 pure_cons (pure_cons (make_pure_c_string ("ESC"), make_pure_c_string ("\\e")),
3693 pure_cons (pure_cons (make_pure_c_string ("SPC"), make_pure_c_string (" ")),
2fae9111
RS
3694 Qnil)))));
3695 staticpro (&exclude_keys);
3696
29208e82 3697 DEFVAR_LISP ("define-key-rebound-commands", Vdefine_key_rebound_commands,
335c5470
PJ
3698 doc: /* List of commands given new key bindings recently.
3699This is used for internal purposes during Emacs startup;
3700don't alter it yourself. */);
107fd03d
RS
3701 Vdefine_key_rebound_commands = Qt;
3702
29208e82 3703 DEFVAR_LISP ("minibuffer-local-map", Vminibuffer_local_map,
335c5470 3704 doc: /* Default keymap to use when reading from the minibuffer. */);
ce6e5d0b 3705 Vminibuffer_local_map = Fmake_sparse_keymap (Qnil);
2c6f1a39 3706
29208e82 3707 DEFVAR_LISP ("minibuffer-local-ns-map", Vminibuffer_local_ns_map,
335c5470 3708 doc: /* Local keymap for the minibuffer when spaces are not allowed. */);
ce6e5d0b 3709 Vminibuffer_local_ns_map = Fmake_sparse_keymap (Qnil);
2b6748c0 3710 Fset_keymap_parent (Vminibuffer_local_ns_map, Vminibuffer_local_map);
2c6f1a39 3711
3d866ceb 3712
29208e82 3713 DEFVAR_LISP ("minor-mode-map-alist", Vminor_mode_map_alist,
335c5470
PJ
3714 doc: /* Alist of keymaps to use for minor modes.
3715Each element looks like (VARIABLE . KEYMAP); KEYMAP is used to read
e0f24100 3716key sequences and look up bindings if VARIABLE's value is non-nil.
335c5470
PJ
3717If two active keymaps bind the same key, the keymap appearing earlier
3718in the list takes precedence. */);
cc0a8174
JB
3719 Vminor_mode_map_alist = Qnil;
3720
29208e82 3721 DEFVAR_LISP ("minor-mode-overriding-map-alist", Vminor_mode_overriding_map_alist,
335c5470 3722 doc: /* Alist of keymaps to use for minor modes, in current major mode.
95296eac 3723This variable is an alist just like `minor-mode-map-alist', and it is
335c5470
PJ
3724used the same way (and before `minor-mode-map-alist'); however,
3725it is provided for major modes to bind locally. */);
dd9cda06
RS
3726 Vminor_mode_overriding_map_alist = Qnil;
3727
29208e82 3728 DEFVAR_LISP ("emulation-mode-map-alists", Vemulation_mode_map_alists,
99cbcaca
KS
3729 doc: /* List of keymap alists to use for emulations modes.
3730It is intended for modes or packages using multiple minor-mode keymaps.
3731Each element is a keymap alist just like `minor-mode-map-alist', or a
3732symbol with a variable binding which is a keymap alist, and it is used
3733the same way. The "active" keymaps in each alist are used before
744cd66b 3734`minor-mode-map-alist' and `minor-mode-overriding-map-alist'. */);
99cbcaca
KS
3735 Vemulation_mode_map_alists = Qnil;
3736
29208e82 3737 DEFVAR_LISP ("where-is-preferred-modifier", Vwhere_is_preferred_modifier,
b3dadd76 3738 doc: /* Preferred modifier key to use for `where-is'.
0bcfd7d7 3739When a single binding is requested, `where-is' will return one that
b3dadd76
LMI
3740uses this modifier key if possible. If nil, or if no such binding
3741exists, bindings using keys without modifiers (or only with meta) will
3742be preferred. */);
0bcfd7d7
SM
3743 Vwhere_is_preferred_modifier = Qnil;
3744 where_is_preferred_modifier = 0;
3745
6b61353c 3746 staticpro (&Vmouse_events);
d67b4f80
DN
3747 Vmouse_events = pure_cons (intern_c_string ("menu-bar"),
3748 pure_cons (intern_c_string ("tool-bar"),
3749 pure_cons (intern_c_string ("header-line"),
3750 pure_cons (intern_c_string ("mode-line"),
3751 pure_cons (intern_c_string ("mouse-1"),
3752 pure_cons (intern_c_string ("mouse-2"),
3753 pure_cons (intern_c_string ("mouse-3"),
3754 pure_cons (intern_c_string ("mouse-4"),
3755 pure_cons (intern_c_string ("mouse-5"),
3756 Qnil)))))))));
3757
cd3520a4
JB
3758 DEFSYM (Qsingle_key_description, "single-key-description");
3759 DEFSYM (Qkey_description, "key-description");
3760 DEFSYM (Qkeymapp, "keymapp");
3761 DEFSYM (Qnon_ascii, "non-ascii");
3762 DEFSYM (Qmenu_item, "menu-item");
3763 DEFSYM (Qremap, "remap");
3764 DEFSYM (QCadvertised_binding, ":advertised-binding");
8cb95edf 3765
023b93f6
KS
3766 command_remapping_vector = Fmake_vector (make_number (2), Qremap);
3767 staticpro (&command_remapping_vector);
a1df473f 3768
1e7d1ab0
SM
3769 where_is_cache_keymaps = Qt;
3770 where_is_cache = Qnil;
3771 staticpro (&where_is_cache);
3772 staticpro (&where_is_cache_keymaps);
3773
2c6f1a39 3774 defsubr (&Skeymapp);
7d58ed99 3775 defsubr (&Skeymap_parent);
54cbc3d4 3776 defsubr (&Skeymap_prompt);
7d58ed99 3777 defsubr (&Sset_keymap_parent);
2c6f1a39
JB
3778 defsubr (&Smake_keymap);
3779 defsubr (&Smake_sparse_keymap);
12270607 3780 defsubr (&Smap_keymap_internal);
9d3153eb 3781 defsubr (&Smap_keymap);
2c6f1a39 3782 defsubr (&Scopy_keymap);
023b93f6 3783 defsubr (&Scommand_remapping);
2c6f1a39
JB
3784 defsubr (&Skey_binding);
3785 defsubr (&Slocal_key_binding);
3786 defsubr (&Sglobal_key_binding);
cc0a8174 3787 defsubr (&Sminor_mode_key_binding);
2c6f1a39
JB
3788 defsubr (&Sdefine_key);
3789 defsubr (&Slookup_key);
2c6f1a39
JB
3790 defsubr (&Sdefine_prefix_command);
3791 defsubr (&Suse_global_map);
3792 defsubr (&Suse_local_map);
3793 defsubr (&Scurrent_local_map);
3794 defsubr (&Scurrent_global_map);
cc0a8174 3795 defsubr (&Scurrent_minor_mode_maps);
54cbc3d4 3796 defsubr (&Scurrent_active_maps);
2c6f1a39
JB
3797 defsubr (&Saccessible_keymaps);
3798 defsubr (&Skey_description);
3799 defsubr (&Sdescribe_vector);
3800 defsubr (&Ssingle_key_description);
3801 defsubr (&Stext_char_description);
3802 defsubr (&Swhere_is_internal);
54cbc3d4 3803 defsubr (&Sdescribe_buffer_bindings);
2c6f1a39
JB
3804 defsubr (&Sapropos_internal);
3805}
3806
dfcf069d 3807void
971de7fb 3808keys_of_keymap (void)
2c6f1a39 3809{
2c6f1a39 3810 initial_define_key (global_map, 033, "ESC-prefix");
0bcfd7d7 3811 initial_define_key (global_map, Ctl ('X'), "Control-X-prefix");
2c6f1a39 3812}