Fixes: debbugs:17865
[bpt/emacs.git] / src / data.c
CommitLineData
7921925c 1/* Primitive operations on Lisp data types for GNU Emacs Lisp interpreter.
ba318903 2 Copyright (C) 1985-1986, 1988, 1993-1995, 1997-2014 Free Software
ab422c4d 3 Foundation, Inc.
7921925c
JB
4
5This file is part of GNU Emacs.
6
9ec0b715 7GNU Emacs is free software: you can redistribute it and/or modify
7921925c 8it under the terms of the GNU General Public License as published by
9ec0b715
GM
9the Free Software Foundation, either version 3 of the License, or
10(at your option) any later version.
7921925c
JB
11
12GNU Emacs is distributed in the hope that it will be useful,
13but WITHOUT ANY WARRANTY; without even the implied warranty of
14MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
15GNU General Public License for more details.
16
17You should have received a copy of the GNU General Public License
9ec0b715 18along with GNU Emacs. If not, see <http://www.gnu.org/licenses/>. */
7921925c
JB
19
20
18160b98 21#include <config.h>
dd8daec5 22#include <stdio.h>
0ae6bdee 23
4eed3157 24#include <byteswap.h>
595e113b
PE
25#include <count-one-bits.h>
26#include <count-trailing-zeros.h>
0ae6bdee
PE
27#include <intprops.h>
28
7921925c 29#include "lisp.h"
29eab336 30#include "puresize.h"
e6e1f521 31#include "character.h"
7921925c 32#include "buffer.h"
077d751f 33#include "keyboard.h"
b0c2d1c6 34#include "frame.h"
a44804c2 35#include "syssignal.h"
620c53a6 36#include "termhooks.h" /* For FRAME_KBOARD reference in y-or-n-p. */
4e6f2626 37#include "font.h"
61b108cc 38#include "keymap.h"
fb8e9847 39
955cbe7b
PE
40Lisp_Object Qnil, Qt, Qquote, Qlambda, Qunbound;
41static Lisp_Object Qsubr;
7921925c 42Lisp_Object Qerror_conditions, Qerror_message, Qtop_level;
71873e2b 43Lisp_Object Qerror, Quser_error, Qquit, Qargs_out_of_range;
454e2fb9 44static Lisp_Object Qwrong_length_argument;
955cbe7b
PE
45static Lisp_Object Qwrong_type_argument;
46Lisp_Object Qvoid_variable, Qvoid_function;
47static Lisp_Object Qcyclic_function_indirection;
48static Lisp_Object Qcyclic_variable_indirection;
49Lisp_Object Qcircular_list;
50static Lisp_Object Qsetting_constant;
51Lisp_Object Qinvalid_read_syntax;
7921925c 52Lisp_Object Qinvalid_function, Qwrong_number_of_arguments, Qno_catch;
3b8819d6 53Lisp_Object Qend_of_file, Qarith_error, Qmark_inactive;
7921925c 54Lisp_Object Qbeginning_of_buffer, Qend_of_buffer, Qbuffer_read_only;
8f9f49d7 55Lisp_Object Qtext_read_only;
6b61353c 56
955cbe7b
PE
57Lisp_Object Qintegerp, Qwholenump, Qsymbolp, Qlistp, Qconsp;
58static Lisp_Object Qnatnump;
7921925c
JB
59Lisp_Object Qstringp, Qarrayp, Qsequencep, Qbufferp;
60Lisp_Object Qchar_or_string_p, Qmarkerp, Qinteger_or_marker_p, Qvectorp;
3e0b94e7 61Lisp_Object Qbool_vector_p;
955cbe7b
PE
62Lisp_Object Qbuffer_or_string_p;
63static Lisp_Object Qkeywordp, Qboundp;
64Lisp_Object Qfboundp;
7f0edce7 65Lisp_Object Qchar_table_p, Qvector_or_char_table_p;
39bcc759 66
7921925c 67Lisp_Object Qcdr;
955cbe7b 68static Lisp_Object Qad_advice_info, Qad_activate_internal;
7921925c 69
c990426a
PE
70static Lisp_Object Qdomain_error, Qsingularity_error, Qunderflow_error;
71Lisp_Object Qrange_error, Qoverflow_error;
6315e761 72
464f8898 73Lisp_Object Qfloatp;
7921925c 74Lisp_Object Qnumberp, Qnumber_or_marker_p;
7921925c 75
b52d6985
PE
76Lisp_Object Qinteger, Qsymbol;
77static Lisp_Object Qcons, Qfloat, Qmisc, Qstring, Qvector;
e6cba650 78Lisp_Object Qwindow;
3ab6e069
DA
79static Lisp_Object Qoverlay, Qwindow_configuration;
80static Lisp_Object Qprocess, Qmarker;
81static Lisp_Object Qcompiled_function, Qframe;
4b66faf3 82Lisp_Object Qbuffer;
81dc5de5 83static Lisp_Object Qchar_table, Qbool_vector, Qhash_table;
84575e67
PE
84static Lisp_Object Qsubrp;
85static Lisp_Object Qmany, Qunevalled;
4e6f2626 86Lisp_Object Qfont_spec, Qfont_entity, Qfont_object;
61b108cc 87static Lisp_Object Qdefun;
39bcc759 88
12cc4337
PE
89Lisp_Object Qinteractive_form;
90static Lisp_Object Qdefalias_fset_function;
3860280a 91
ce5b453a 92static void swap_in_symval_forwarding (struct Lisp_Symbol *, struct Lisp_Buffer_Local_Value *);
d02eeab3 93
84575e67
PE
94static bool
95BOOLFWDP (union Lisp_Fwd *a)
96{
97 return XFWDTYPE (a) == Lisp_Fwd_Bool;
98}
99static bool
100INTFWDP (union Lisp_Fwd *a)
101{
102 return XFWDTYPE (a) == Lisp_Fwd_Int;
103}
104static bool
105KBOARD_OBJFWDP (union Lisp_Fwd *a)
106{
107 return XFWDTYPE (a) == Lisp_Fwd_Kboard_Obj;
108}
109static bool
110OBJFWDP (union Lisp_Fwd *a)
111{
112 return XFWDTYPE (a) == Lisp_Fwd_Obj;
113}
114
115static struct Lisp_Boolfwd *
116XBOOLFWD (union Lisp_Fwd *a)
117{
118 eassert (BOOLFWDP (a));
119 return &a->u_boolfwd;
120}
121static struct Lisp_Kboard_Objfwd *
122XKBOARD_OBJFWD (union Lisp_Fwd *a)
123{
124 eassert (KBOARD_OBJFWDP (a));
125 return &a->u_kboard_objfwd;
126}
127static struct Lisp_Intfwd *
128XINTFWD (union Lisp_Fwd *a)
129{
130 eassert (INTFWDP (a));
131 return &a->u_intfwd;
132}
133static struct Lisp_Objfwd *
134XOBJFWD (union Lisp_Fwd *a)
135{
136 eassert (OBJFWDP (a));
137 return &a->u_objfwd;
138}
139
140static void
141CHECK_SUBR (Lisp_Object x)
142{
143 CHECK_TYPE (SUBRP (x), Qsubrp, x);
144}
145
146static void
147set_blv_found (struct Lisp_Buffer_Local_Value *blv, int found)
148{
149 eassert (found == !EQ (blv->defcell, blv->valcell));
150 blv->found = found;
151}
152
153static Lisp_Object
154blv_value (struct Lisp_Buffer_Local_Value *blv)
155{
156 return XCDR (blv->valcell);
157}
158
159static void
160set_blv_value (struct Lisp_Buffer_Local_Value *blv, Lisp_Object val)
161{
162 XSETCDR (blv->valcell, val);
163}
164
165static void
166set_blv_where (struct Lisp_Buffer_Local_Value *blv, Lisp_Object val)
167{
168 blv->where = val;
169}
170
171static void
172set_blv_defcell (struct Lisp_Buffer_Local_Value *blv, Lisp_Object val)
173{
174 blv->defcell = val;
175}
176
177static void
178set_blv_valcell (struct Lisp_Buffer_Local_Value *blv, Lisp_Object val)
179{
180 blv->valcell = val;
181}
13d95cc0 182
454e2fb9
PE
183static _Noreturn void
184wrong_length_argument (Lisp_Object a1, Lisp_Object a2, Lisp_Object a3)
185{
186 Lisp_Object size1 = make_number (bool_vector_size (a1));
187 Lisp_Object size2 = make_number (bool_vector_size (a2));
188 if (NILP (a3))
189 xsignal2 (Qwrong_length_argument, size1, size2);
190 else
191 xsignal3 (Qwrong_length_argument, size1, size2,
192 make_number (bool_vector_size (a3)));
193}
194
7921925c 195Lisp_Object
971de7fb 196wrong_type_argument (register Lisp_Object predicate, register Lisp_Object value)
7921925c 197{
2de9f71c
SM
198 /* If VALUE is not even a valid Lisp object, we'd want to abort here
199 where we can get a backtrace showing where it came from. We used
200 to try and do that by checking the tagbits, but nowadays all
201 tagbits are potentially valid. */
202 /* if ((unsigned int) XTYPE (value) >= Lisp_Type_Limit)
1088b922 203 * emacs_abort (); */
e1351ff7 204
740ef0b5 205 xsignal2 (Qwrong_type_argument, predicate, value);
7921925c
JB
206}
207
dfcf069d 208void
a8a7c5f6 209pure_write_error (Lisp_Object obj)
7921925c 210{
3d5ee10a 211 xsignal2 (Qerror, build_string ("Attempt to modify read-only object"), obj);
7921925c
JB
212}
213
214void
971de7fb 215args_out_of_range (Lisp_Object a1, Lisp_Object a2)
7921925c 216{
740ef0b5 217 xsignal2 (Qargs_out_of_range, a1, a2);
7921925c
JB
218}
219
220void
971de7fb 221args_out_of_range_3 (Lisp_Object a1, Lisp_Object a2, Lisp_Object a3)
7921925c 222{
740ef0b5 223 xsignal3 (Qargs_out_of_range, a1, a2, a3);
7921925c
JB
224}
225
7921925c 226\f
61b108cc 227/* Data type predicates. */
7921925c
JB
228
229DEFUN ("eq", Feq, Seq, 2, 2, 0,
8c1a1077 230 doc: /* Return t if the two args are the same Lisp object. */)
5842a27b 231 (Lisp_Object obj1, Lisp_Object obj2)
7921925c
JB
232{
233 if (EQ (obj1, obj2))
234 return Qt;
235 return Qnil;
236}
237
8c1a1077
PJ
238DEFUN ("null", Fnull, Snull, 1, 1, 0,
239 doc: /* Return t if OBJECT is nil. */)
5842a27b 240 (Lisp_Object object)
7921925c 241{
39bcc759 242 if (NILP (object))
7921925c
JB
243 return Qt;
244 return Qnil;
245}
246
39bcc759 247DEFUN ("type-of", Ftype_of, Stype_of, 1, 1, 0,
8c1a1077
PJ
248 doc: /* Return a symbol representing the type of OBJECT.
249The symbol returned names the object's basic type;
250for example, (type-of 1) returns `integer'. */)
5842a27b 251 (Lisp_Object object)
39bcc759 252{
8e50cc2d 253 switch (XTYPE (object))
39bcc759 254 {
2de9f71c 255 case_Lisp_Int:
39bcc759
RS
256 return Qinteger;
257
258 case Lisp_Symbol:
259 return Qsymbol;
260
261 case Lisp_String:
262 return Qstring;
263
264 case Lisp_Cons:
265 return Qcons;
266
267 case Lisp_Misc:
324a6eef 268 switch (XMISCTYPE (object))
39bcc759
RS
269 {
270 case Lisp_Misc_Marker:
271 return Qmarker;
272 case Lisp_Misc_Overlay:
273 return Qoverlay;
274 case Lisp_Misc_Float:
275 return Qfloat;
276 }
1088b922 277 emacs_abort ();
39bcc759
RS
278
279 case Lisp_Vectorlike:
8e50cc2d 280 if (WINDOW_CONFIGURATIONP (object))
39bcc759 281 return Qwindow_configuration;
8e50cc2d 282 if (PROCESSP (object))
39bcc759 283 return Qprocess;
8e50cc2d 284 if (WINDOWP (object))
39bcc759 285 return Qwindow;
8e50cc2d 286 if (SUBRP (object))
39bcc759 287 return Qsubr;
876c194c
SM
288 if (COMPILEDP (object))
289 return Qcompiled_function;
8e50cc2d 290 if (BUFFERP (object))
39bcc759 291 return Qbuffer;
8e50cc2d 292 if (CHAR_TABLE_P (object))
fc67d5be 293 return Qchar_table;
8e50cc2d 294 if (BOOL_VECTOR_P (object))
fc67d5be 295 return Qbool_vector;
8e50cc2d 296 if (FRAMEP (object))
39bcc759 297 return Qframe;
8e50cc2d 298 if (HASH_TABLE_P (object))
81dc5de5 299 return Qhash_table;
4e6f2626
CY
300 if (FONT_SPEC_P (object))
301 return Qfont_spec;
302 if (FONT_ENTITY_P (object))
303 return Qfont_entity;
304 if (FONT_OBJECT_P (object))
305 return Qfont_object;
39bcc759
RS
306 return Qvector;
307
39bcc759
RS
308 case Lisp_Float:
309 return Qfloat;
39bcc759
RS
310
311 default:
1088b922 312 emacs_abort ();
39bcc759
RS
313 }
314}
315
8c1a1077
PJ
316DEFUN ("consp", Fconsp, Sconsp, 1, 1, 0,
317 doc: /* Return t if OBJECT is a cons cell. */)
5842a27b 318 (Lisp_Object object)
7921925c 319{
39bcc759 320 if (CONSP (object))
7921925c
JB
321 return Qt;
322 return Qnil;
323}
324
25638b07 325DEFUN ("atom", Fatom, Satom, 1, 1, 0,
8c1a1077 326 doc: /* Return t if OBJECT is not a cons cell. This includes nil. */)
5842a27b 327 (Lisp_Object object)
7921925c 328{
39bcc759 329 if (CONSP (object))
7921925c
JB
330 return Qnil;
331 return Qt;
332}
333
25638b07 334DEFUN ("listp", Flistp, Slistp, 1, 1, 0,
4cdcdcc9
LT
335 doc: /* Return t if OBJECT is a list, that is, a cons cell or nil.
336Otherwise, return nil. */)
5842a27b 337 (Lisp_Object object)
7921925c 338{
39bcc759 339 if (CONSP (object) || NILP (object))
7921925c
JB
340 return Qt;
341 return Qnil;
342}
343
25638b07 344DEFUN ("nlistp", Fnlistp, Snlistp, 1, 1, 0,
8c1a1077 345 doc: /* Return t if OBJECT is not a list. Lists include nil. */)
5842a27b 346 (Lisp_Object object)
7921925c 347{
39bcc759 348 if (CONSP (object) || NILP (object))
7921925c
JB
349 return Qnil;
350 return Qt;
351}
352\f
25638b07 353DEFUN ("symbolp", Fsymbolp, Ssymbolp, 1, 1, 0,
8c1a1077 354 doc: /* Return t if OBJECT is a symbol. */)
5842a27b 355 (Lisp_Object object)
7921925c 356{
39bcc759 357 if (SYMBOLP (object))
7921925c
JB
358 return Qt;
359 return Qnil;
360}
361
cda9b832
DL
362/* Define this in C to avoid unnecessarily consing up the symbol
363 name. */
364DEFUN ("keywordp", Fkeywordp, Skeywordp, 1, 1, 0,
8c1a1077
PJ
365 doc: /* Return t if OBJECT is a keyword.
366This means that it is a symbol with a print name beginning with `:'
367interned in the initial obarray. */)
5842a27b 368 (Lisp_Object object)
cda9b832
DL
369{
370 if (SYMBOLP (object)
d5db4077 371 && SREF (SYMBOL_NAME (object), 0) == ':'
f35d5bad 372 && SYMBOL_INTERNED_IN_INITIAL_OBARRAY_P (object))
cda9b832
DL
373 return Qt;
374 return Qnil;
375}
376
25638b07 377DEFUN ("vectorp", Fvectorp, Svectorp, 1, 1, 0,
8c1a1077 378 doc: /* Return t if OBJECT is a vector. */)
5842a27b 379 (Lisp_Object object)
7921925c 380{
39bcc759 381 if (VECTORP (object))
7921925c
JB
382 return Qt;
383 return Qnil;
384}
385
25638b07 386DEFUN ("stringp", Fstringp, Sstringp, 1, 1, 0,
8c1a1077 387 doc: /* Return t if OBJECT is a string. */)
5842a27b 388 (Lisp_Object object)
7921925c 389{
39bcc759 390 if (STRINGP (object))
7921925c
JB
391 return Qt;
392 return Qnil;
393}
394
25638b07 395DEFUN ("multibyte-string-p", Fmultibyte_string_p, Smultibyte_string_p,
8c1a1077 396 1, 1, 0,
3323c263
EZ
397 doc: /* Return t if OBJECT is a multibyte string.
398Return nil if OBJECT is either a unibyte string, or not a string. */)
5842a27b 399 (Lisp_Object object)
25638b07
RS
400{
401 if (STRINGP (object) && STRING_MULTIBYTE (object))
402 return Qt;
403 return Qnil;
404}
405
406DEFUN ("char-table-p", Fchar_table_p, Schar_table_p, 1, 1, 0,
8c1a1077 407 doc: /* Return t if OBJECT is a char-table. */)
5842a27b 408 (Lisp_Object object)
4d276982
RS
409{
410 if (CHAR_TABLE_P (object))
411 return Qt;
412 return Qnil;
413}
414
7f0edce7
RS
415DEFUN ("vector-or-char-table-p", Fvector_or_char_table_p,
416 Svector_or_char_table_p, 1, 1, 0,
8c1a1077 417 doc: /* Return t if OBJECT is a char-table or vector. */)
5842a27b 418 (Lisp_Object object)
7f0edce7
RS
419{
420 if (VECTORP (object) || CHAR_TABLE_P (object))
421 return Qt;
422 return Qnil;
423}
424
8c1a1077
PJ
425DEFUN ("bool-vector-p", Fbool_vector_p, Sbool_vector_p, 1, 1, 0,
426 doc: /* Return t if OBJECT is a bool-vector. */)
5842a27b 427 (Lisp_Object object)
4d276982
RS
428{
429 if (BOOL_VECTOR_P (object))
430 return Qt;
431 return Qnil;
432}
433
8c1a1077
PJ
434DEFUN ("arrayp", Farrayp, Sarrayp, 1, 1, 0,
435 doc: /* Return t if OBJECT is an array (string or vector). */)
5842a27b 436 (Lisp_Object object)
7921925c 437{
0c64a8cd 438 if (ARRAYP (object))
7921925c
JB
439 return Qt;
440 return Qnil;
441}
442
443DEFUN ("sequencep", Fsequencep, Ssequencep, 1, 1, 0,
8c1a1077 444 doc: /* Return t if OBJECT is a sequence (list or array). */)
5842a27b 445 (register Lisp_Object object)
7921925c 446{
0c64a8cd 447 if (CONSP (object) || NILP (object) || ARRAYP (object))
7921925c
JB
448 return Qt;
449 return Qnil;
450}
451
8c1a1077
PJ
452DEFUN ("bufferp", Fbufferp, Sbufferp, 1, 1, 0,
453 doc: /* Return t if OBJECT is an editor buffer. */)
5842a27b 454 (Lisp_Object object)
7921925c 455{
39bcc759 456 if (BUFFERP (object))
7921925c
JB
457 return Qt;
458 return Qnil;
459}
460
8c1a1077
PJ
461DEFUN ("markerp", Fmarkerp, Smarkerp, 1, 1, 0,
462 doc: /* Return t if OBJECT is a marker (editor pointer). */)
5842a27b 463 (Lisp_Object object)
7921925c 464{
39bcc759 465 if (MARKERP (object))
7921925c
JB
466 return Qt;
467 return Qnil;
468}
469
8c1a1077
PJ
470DEFUN ("subrp", Fsubrp, Ssubrp, 1, 1, 0,
471 doc: /* Return t if OBJECT is a built-in function. */)
5842a27b 472 (Lisp_Object object)
7921925c 473{
39bcc759 474 if (SUBRP (object))
7921925c
JB
475 return Qt;
476 return Qnil;
477}
478
dbc4e1c1 479DEFUN ("byte-code-function-p", Fbyte_code_function_p, Sbyte_code_function_p,
8c1a1077
PJ
480 1, 1, 0,
481 doc: /* Return t if OBJECT is a byte-compiled function object. */)
5842a27b 482 (Lisp_Object object)
7921925c 483{
39bcc759 484 if (COMPILEDP (object))
7921925c
JB
485 return Qt;
486 return Qnil;
487}
488
0321d75c 489DEFUN ("char-or-string-p", Fchar_or_string_p, Schar_or_string_p, 1, 1, 0,
8637f5ee 490 doc: /* Return t if OBJECT is a character or a string. */)
5842a27b 491 (register Lisp_Object object)
7921925c 492{
cfd70f33 493 if (CHARACTERP (object) || STRINGP (object))
7921925c
JB
494 return Qt;
495 return Qnil;
496}
497\f
8c1a1077
PJ
498DEFUN ("integerp", Fintegerp, Sintegerp, 1, 1, 0,
499 doc: /* Return t if OBJECT is an integer. */)
5842a27b 500 (Lisp_Object object)
7921925c 501{
39bcc759 502 if (INTEGERP (object))
7921925c
JB
503 return Qt;
504 return Qnil;
505}
506
464f8898 507DEFUN ("integer-or-marker-p", Finteger_or_marker_p, Sinteger_or_marker_p, 1, 1, 0,
8c1a1077 508 doc: /* Return t if OBJECT is an integer or a marker (editor pointer). */)
5842a27b 509 (register Lisp_Object object)
7921925c 510{
39bcc759 511 if (MARKERP (object) || INTEGERP (object))
7921925c
JB
512 return Qt;
513 return Qnil;
514}
515
0321d75c 516DEFUN ("natnump", Fnatnump, Snatnump, 1, 1, 0,
8c1a1077 517 doc: /* Return t if OBJECT is a nonnegative integer. */)
5842a27b 518 (Lisp_Object object)
7921925c 519{
39bcc759 520 if (NATNUMP (object))
7921925c
JB
521 return Qt;
522 return Qnil;
523}
524
525DEFUN ("numberp", Fnumberp, Snumberp, 1, 1, 0,
8c1a1077 526 doc: /* Return t if OBJECT is a number (floating point or integer). */)
5842a27b 527 (Lisp_Object object)
7921925c 528{
39bcc759 529 if (NUMBERP (object))
7921925c 530 return Qt;
dbc4e1c1
JB
531 else
532 return Qnil;
7921925c
JB
533}
534
535DEFUN ("number-or-marker-p", Fnumber_or_marker_p,
536 Snumber_or_marker_p, 1, 1, 0,
8c1a1077 537 doc: /* Return t if OBJECT is a number or a marker. */)
5842a27b 538 (Lisp_Object object)
7921925c 539{
39bcc759 540 if (NUMBERP (object) || MARKERP (object))
7921925c
JB
541 return Qt;
542 return Qnil;
543}
464f8898 544
464f8898 545DEFUN ("floatp", Ffloatp, Sfloatp, 1, 1, 0,
8c1a1077 546 doc: /* Return t if OBJECT is a floating point number. */)
5842a27b 547 (Lisp_Object object)
464f8898 548{
39bcc759 549 if (FLOATP (object))
464f8898
RS
550 return Qt;
551 return Qnil;
552}
cc94f3b2 553
7921925c 554\f
32e5c58c 555/* Extract and set components of lists. */
7921925c 556
a7ca3326 557DEFUN ("car", Fcar, Scar, 1, 1, 0,
8c1a1077 558 doc: /* Return the car of LIST. If arg is nil, return nil.
9701c742
LT
559Error if arg is not nil and not a cons cell. See also `car-safe'.
560
da46c5be
LT
561See Info node `(elisp)Cons Cells' for a discussion of related basic
562Lisp concepts such as car, cdr, cons cell and list. */)
5842a27b 563 (register Lisp_Object list)
7921925c 564{
0c64a8cd 565 return CAR (list);
7921925c
JB
566}
567
a7ca3326 568DEFUN ("car-safe", Fcar_safe, Scar_safe, 1, 1, 0,
8c1a1077 569 doc: /* Return the car of OBJECT if it is a cons cell, or else nil. */)
5842a27b 570 (Lisp_Object object)
7921925c 571{
0c64a8cd 572 return CAR_SAFE (object);
7921925c
JB
573}
574
a7ca3326 575DEFUN ("cdr", Fcdr, Scdr, 1, 1, 0,
8c1a1077 576 doc: /* Return the cdr of LIST. If arg is nil, return nil.
9701c742
LT
577Error if arg is not nil and not a cons cell. See also `cdr-safe'.
578
da46c5be
LT
579See Info node `(elisp)Cons Cells' for a discussion of related basic
580Lisp concepts such as cdr, car, cons cell and list. */)
5842a27b 581 (register Lisp_Object list)
7921925c 582{
0c64a8cd 583 return CDR (list);
7921925c
JB
584}
585
a7ca3326 586DEFUN ("cdr-safe", Fcdr_safe, Scdr_safe, 1, 1, 0,
8c1a1077 587 doc: /* Return the cdr of OBJECT if it is a cons cell, or else nil. */)
5842a27b 588 (Lisp_Object object)
7921925c 589{
0c64a8cd 590 return CDR_SAFE (object);
7921925c
JB
591}
592
a7ca3326 593DEFUN ("setcar", Fsetcar, Ssetcar, 2, 2, 0,
8c1a1077 594 doc: /* Set the car of CELL to be NEWCAR. Returns NEWCAR. */)
5842a27b 595 (register Lisp_Object cell, Lisp_Object newcar)
7921925c 596{
0c64a8cd 597 CHECK_CONS (cell);
7921925c 598 CHECK_IMPURE (cell);
f3fbd155 599 XSETCAR (cell, newcar);
7921925c
JB
600 return newcar;
601}
602
a7ca3326 603DEFUN ("setcdr", Fsetcdr, Ssetcdr, 2, 2, 0,
8c1a1077 604 doc: /* Set the cdr of CELL to be NEWCDR. Returns NEWCDR. */)
5842a27b 605 (register Lisp_Object cell, Lisp_Object newcdr)
7921925c 606{
0c64a8cd 607 CHECK_CONS (cell);
7921925c 608 CHECK_IMPURE (cell);
f3fbd155 609 XSETCDR (cell, newcdr);
7921925c
JB
610 return newcdr;
611}
612\f
1ec4b7b2 613/* Extract and set components of symbols. */
7921925c 614
a7ca3326 615DEFUN ("boundp", Fboundp, Sboundp, 1, 1, 0,
a9de9f0c
GM
616 doc: /* Return t if SYMBOL's value is not void.
617Note that if `lexical-binding' is in effect, this refers to the
618global value outside of any lexical scope. */)
5842a27b 619 (register Lisp_Object symbol)
7921925c
JB
620{
621 Lisp_Object valcontents;
ce5b453a 622 struct Lisp_Symbol *sym;
b7826503 623 CHECK_SYMBOL (symbol);
ce5b453a 624 sym = XSYMBOL (symbol);
7921925c 625
ce5b453a
SM
626 start:
627 switch (sym->redirect)
628 {
629 case SYMBOL_PLAINVAL: valcontents = SYMBOL_VAL (sym); break;
630 case SYMBOL_VARALIAS: sym = indirect_variable (sym); goto start;
631 case SYMBOL_LOCALIZED:
632 {
633 struct Lisp_Buffer_Local_Value *blv = SYMBOL_BLV (sym);
634 if (blv->fwd)
635 /* In set_internal, we un-forward vars when their value is
7be68de5 636 set to Qunbound. */
ce5b453a
SM
637 return Qt;
638 else
639 {
640 swap_in_symval_forwarding (sym, blv);
a04e2c62 641 valcontents = blv_value (blv);
ce5b453a
SM
642 }
643 break;
644 }
645 case SYMBOL_FORWARDED:
646 /* In set_internal, we un-forward vars when their value is
7be68de5 647 set to Qunbound. */
ce5b453a 648 return Qt;
1088b922 649 default: emacs_abort ();
ce5b453a 650 }
7921925c 651
1bfcade3 652 return (EQ (valcontents, Qunbound) ? Qnil : Qt);
7921925c
JB
653}
654
eadf1faa 655/* FIXME: Make it an alias for function-symbol! */
a7ca3326 656DEFUN ("fboundp", Ffboundp, Sfboundp, 1, 1, 0,
8c1a1077 657 doc: /* Return t if SYMBOL's function definition is not void. */)
5842a27b 658 (register Lisp_Object symbol)
7921925c 659{
b7826503 660 CHECK_SYMBOL (symbol);
eadf1faa 661 return NILP (XSYMBOL (symbol)->function) ? Qnil : Qt;
7921925c
JB
662}
663
8c1a1077 664DEFUN ("makunbound", Fmakunbound, Smakunbound, 1, 1, 0,
bfb96cb7
FP
665 doc: /* Make SYMBOL's value be void.
666Return SYMBOL. */)
5842a27b 667 (register Lisp_Object symbol)
7921925c 668{
b7826503 669 CHECK_SYMBOL (symbol);
64ec26d6 670 if (SYMBOL_CONSTANT_P (symbol))
740ef0b5 671 xsignal1 (Qsetting_constant, symbol);
d9c2a0f2
EN
672 Fset (symbol, Qunbound);
673 return symbol;
7921925c
JB
674}
675
8c1a1077 676DEFUN ("fmakunbound", Ffmakunbound, Sfmakunbound, 1, 1, 0,
eadf1faa 677 doc: /* Make SYMBOL's function definition be nil.
bfb96cb7 678Return SYMBOL. */)
5842a27b 679 (register Lisp_Object symbol)
7921925c 680{
b7826503 681 CHECK_SYMBOL (symbol);
d9c2a0f2 682 if (NILP (symbol) || EQ (symbol, Qt))
740ef0b5 683 xsignal1 (Qsetting_constant, symbol);
eadf1faa 684 set_symbol_function (symbol, Qnil);
d9c2a0f2 685 return symbol;
7921925c
JB
686}
687
a7ca3326 688DEFUN ("symbol-function", Fsymbol_function, Ssymbol_function, 1, 1, 0,
0f1d2934 689 doc: /* Return SYMBOL's function definition, or nil if that is void. */)
5842a27b 690 (register Lisp_Object symbol)
7921925c 691{
b7826503 692 CHECK_SYMBOL (symbol);
39a035e8 693 return XSYMBOL (symbol)->function;
7921925c
JB
694}
695
8c1a1077
PJ
696DEFUN ("symbol-plist", Fsymbol_plist, Ssymbol_plist, 1, 1, 0,
697 doc: /* Return SYMBOL's property list. */)
5842a27b 698 (register Lisp_Object symbol)
7921925c 699{
b7826503 700 CHECK_SYMBOL (symbol);
c644523b 701 return XSYMBOL (symbol)->plist;
7921925c
JB
702}
703
a7ca3326 704DEFUN ("symbol-name", Fsymbol_name, Ssymbol_name, 1, 1, 0,
8c1a1077 705 doc: /* Return SYMBOL's name, a string. */)
5842a27b 706 (register Lisp_Object symbol)
7921925c
JB
707{
708 register Lisp_Object name;
709
b7826503 710 CHECK_SYMBOL (symbol);
84023177 711 name = SYMBOL_NAME (symbol);
7921925c
JB
712 return name;
713}
714
a7ca3326 715DEFUN ("fset", Ffset, Sfset, 2, 2, 0,
8c1a1077 716 doc: /* Set SYMBOL's function definition to DEFINITION, and return DEFINITION. */)
5842a27b 717 (register Lisp_Object symbol, Lisp_Object definition)
d9c2a0f2 718{
764ea377 719 register Lisp_Object function;
b7826503 720 CHECK_SYMBOL (symbol);
764ea377 721
c644523b 722 function = XSYMBOL (symbol)->function;
764ea377 723
eadf1faa 724 if (!NILP (Vautoload_queue) && !NILP (function))
764ea377
JB
725 Vautoload_queue = Fcons (Fcons (symbol, function), Vautoload_queue);
726
32e5c58c 727 if (AUTOLOADP (function))
764ea377
JB
728 Fput (symbol, Qautoload, XCDR (function));
729
c644523b 730 set_symbol_function (symbol, definition);
32e5c58c 731
8c0b5540 732 return definition;
7921925c
JB
733}
734
d2fde41d 735DEFUN ("defalias", Fdefalias, Sdefalias, 2, 3, 0,
1053a871 736 doc: /* Set SYMBOL's function definition to DEFINITION.
96143227
RS
737Associates the function with the current load file, if any.
738The optional third argument DOCSTRING specifies the documentation string
739for SYMBOL; if it is omitted or nil, SYMBOL uses the documentation string
1053a871 740determined by DEFINITION.
189e7007
GM
741
742Internally, this normally uses `fset', but if SYMBOL has a
743`defalias-fset-function' property, the associated value is used instead.
744
1053a871 745The return value is undefined. */)
5842a27b 746 (register Lisp_Object symbol, Lisp_Object definition, Lisp_Object docstring)
fc08c367 747{
8a658a52 748 CHECK_SYMBOL (symbol);
61b108cc
SM
749 if (!NILP (Vpurify_flag)
750 /* If `definition' is a keymap, immutable (and copying) is wrong. */
751 && !KEYMAPP (definition))
752 definition = Fpurecopy (definition);
32e5c58c
SM
753
754 {
755 bool autoload = AUTOLOADP (definition);
756 if (NILP (Vpurify_flag) || !autoload)
757 { /* Only add autoload entries after dumping, because the ones before are
758 not useful and else we get loads of them from the loaddefs.el. */
759
760 if (AUTOLOADP (XSYMBOL (symbol)->function))
761 /* Remember that the function was already an autoload. */
762 LOADHIST_ATTACH (Fcons (Qt, symbol));
763 LOADHIST_ATTACH (Fcons (autoload ? Qautoload : Qdefun, symbol));
764 }
765 }
766
767 { /* Handle automatic advice activation. */
768 Lisp_Object hook = Fget (symbol, Qdefalias_fset_function);
769 if (!NILP (hook))
770 call2 (hook, symbol, definition);
771 else
772 Ffset (symbol, definition);
773 }
774
d2fde41d
SM
775 if (!NILP (docstring))
776 Fput (symbol, Qfunction_documentation, docstring);
1053a871
SM
777 /* We used to return `definition', but now that `defun' and `defmacro' expand
778 to a call to `defalias', we return `symbol' for backward compatibility
779 (bug#11686). */
780 return symbol;
fc08c367
RS
781}
782
7921925c 783DEFUN ("setplist", Fsetplist, Ssetplist, 2, 2, 0,
6b61353c 784 doc: /* Set SYMBOL's property list to NEWPLIST, and return NEWPLIST. */)
5842a27b 785 (register Lisp_Object symbol, Lisp_Object newplist)
7921925c 786{
b7826503 787 CHECK_SYMBOL (symbol);
c644523b 788 set_symbol_plist (symbol, newplist);
7921925c
JB
789 return newplist;
790}
ffd56f97 791
6f0e897f 792DEFUN ("subr-arity", Fsubr_arity, Ssubr_arity, 1, 1, 0,
8c1a1077
PJ
793 doc: /* Return minimum and maximum number of args allowed for SUBR.
794SUBR must be a built-in function.
795The returned value is a pair (MIN . MAX). MIN is the minimum number
796of args. MAX is the maximum number or the symbol `many', for a
797function with `&rest' args, or `unevalled' for a special form. */)
5842a27b 798 (Lisp_Object subr)
6f0e897f
DL
799{
800 short minargs, maxargs;
0c64a8cd 801 CHECK_SUBR (subr);
6f0e897f
DL
802 minargs = XSUBR (subr)->min_args;
803 maxargs = XSUBR (subr)->max_args;
32e5c58c
SM
804 return Fcons (make_number (minargs),
805 maxargs == MANY ? Qmany
806 : maxargs == UNEVALLED ? Qunevalled
807 : make_number (maxargs));
6f0e897f
DL
808}
809
0fddae66
SM
810DEFUN ("subr-name", Fsubr_name, Ssubr_name, 1, 1, 0,
811 doc: /* Return name of subroutine SUBR.
812SUBR must be a built-in function. */)
5842a27b 813 (Lisp_Object subr)
0fddae66
SM
814{
815 const char *name;
0c64a8cd 816 CHECK_SUBR (subr);
0fddae66 817 name = XSUBR (subr)->symbol_name;
f3e92b69 818 return build_string (name);
0fddae66
SM
819}
820
a7ca3326 821DEFUN ("interactive-form", Finteractive_form, Sinteractive_form, 1, 1, 0,
6b61353c 822 doc: /* Return the interactive form of CMD or nil if none.
df133612
LT
823If CMD is not a command, the return value is nil.
824Value, if non-nil, is a list \(interactive SPEC). */)
5842a27b 825 (Lisp_Object cmd)
cc515226 826{
c4f46926 827 Lisp_Object fun = indirect_function (cmd); /* Check cycles. */
764ea377 828
eadf1faa 829 if (NILP (fun))
c4f46926
SM
830 return Qnil;
831
832 /* Use an `interactive-form' property if present, analogous to the
32e5c58c 833 function-documentation property. */
c4f46926
SM
834 fun = cmd;
835 while (SYMBOLP (fun))
836 {
3860280a 837 Lisp_Object tmp = Fget (fun, Qinteractive_form);
c4f46926
SM
838 if (!NILP (tmp))
839 return tmp;
840 else
841 fun = Fsymbol_function (fun);
842 }
6b61353c
KH
843
844 if (SUBRP (fun))
845 {
eec47d6b 846 const char *spec = XSUBR (fun)->intspec;
8a6d230a
MC
847 if (spec)
848 return list2 (Qinteractive,
849 (*spec != '(') ? build_string (spec) :
850 Fcar (Fread_from_string (build_string (spec), Qnil, Qnil)));
6b61353c
KH
851 }
852 else if (COMPILEDP (fun))
853 {
854 if ((ASIZE (fun) & PSEUDOVECTOR_SIZE_MASK) > COMPILED_INTERACTIVE)
855 return list2 (Qinteractive, AREF (fun, COMPILED_INTERACTIVE));
856 }
32e5c58c
SM
857 else if (AUTOLOADP (fun))
858 return Finteractive_form (Fautoload_do_load (fun, cmd, Qnil));
6b61353c
KH
859 else if (CONSP (fun))
860 {
861 Lisp_Object funcar = XCAR (fun);
b38b1ec0 862 if (EQ (funcar, Qclosure))
23aba0ea
SM
863 return Fassq (Qinteractive, Fcdr (Fcdr (XCDR (fun))));
864 else if (EQ (funcar, Qlambda))
6b61353c 865 return Fassq (Qinteractive, Fcdr (XCDR (fun)));
6b61353c 866 }
cc515226
GM
867 return Qnil;
868}
869
7921925c 870\f
f35d5bad
GM
871/***********************************************************************
872 Getting and Setting Values of Symbols
873 ***********************************************************************/
874
875/* Return the symbol holding SYMBOL's value. Signal
876 `cyclic-variable-indirection' if SYMBOL's chain of variable
877 indirections contains a loop. */
878
ad97b375 879struct Lisp_Symbol *
971de7fb 880indirect_variable (struct Lisp_Symbol *symbol)
f35d5bad 881{
ad97b375 882 struct Lisp_Symbol *tortoise, *hare;
f35d5bad
GM
883
884 hare = tortoise = symbol;
885
ce5b453a 886 while (hare->redirect == SYMBOL_VARALIAS)
f35d5bad 887 {
ce5b453a
SM
888 hare = SYMBOL_ALIAS (hare);
889 if (hare->redirect != SYMBOL_VARALIAS)
f35d5bad 890 break;
bfb96cb7 891
ce5b453a
SM
892 hare = SYMBOL_ALIAS (hare);
893 tortoise = SYMBOL_ALIAS (tortoise);
f35d5bad 894
ad97b375
SM
895 if (hare == tortoise)
896 {
897 Lisp_Object tem;
898 XSETSYMBOL (tem, symbol);
899 xsignal1 (Qcyclic_variable_indirection, tem);
900 }
f35d5bad
GM
901 }
902
903 return hare;
904}
905
906
907DEFUN ("indirect-variable", Findirect_variable, Sindirect_variable, 1, 1, 0,
8c1a1077 908 doc: /* Return the variable at the end of OBJECT's variable chain.
4abcdac8
CY
909If OBJECT is a symbol, follow its variable indirections (if any), and
910return the variable at the end of the chain of aliases. See Info node
911`(elisp)Variable Aliases'.
912
913If OBJECT is not a symbol, just return it. If there is a loop in the
914chain of aliases, signal a `cyclic-variable-indirection' error. */)
5842a27b 915 (Lisp_Object object)
f35d5bad
GM
916{
917 if (SYMBOLP (object))
946f9a5b
PE
918 {
919 struct Lisp_Symbol *sym = indirect_variable (XSYMBOL (object));
920 XSETSYMBOL (object, sym);
921 }
f35d5bad
GM
922 return object;
923}
924
7921925c
JB
925
926/* Given the raw contents of a symbol value cell,
927 return the Lisp value of the symbol.
928 This does not handle buffer-local variables; use
929 swap_in_symval_forwarding for that. */
930
931Lisp_Object
971de7fb 932do_symval_forwarding (register union Lisp_Fwd *valcontents)
7921925c
JB
933{
934 register Lisp_Object val;
ce5b453a
SM
935 switch (XFWDTYPE (valcontents))
936 {
937 case Lisp_Fwd_Int:
938 XSETINT (val, *XINTFWD (valcontents)->intvar);
939 return val;
940
941 case Lisp_Fwd_Bool:
942 return (*XBOOLFWD (valcontents)->boolvar ? Qt : Qnil);
943
944 case Lisp_Fwd_Obj:
945 return *XOBJFWD (valcontents)->objvar;
946
947 case Lisp_Fwd_Buffer_Obj:
4ce60d2e 948 return per_buffer_value (current_buffer,
ce5b453a
SM
949 XBUFFER_OBJFWD (valcontents)->offset);
950
951 case Lisp_Fwd_Kboard_Obj:
952 /* We used to simply use current_kboard here, but from Lisp
a98edce9 953 code, its value is often unexpected. It seems nicer to
ce5b453a
SM
954 allow constructions like this to work as intuitively expected:
955
956 (with-selected-frame frame
957 (define-key local-function-map "\eOP" [f1]))
958
959 On the other hand, this affects the semantics of
960 last-command and real-last-command, and people may rely on
961 that. I took a quick look at the Lisp codebase, and I
962 don't think anything will break. --lorentey */
963 return *(Lisp_Object *)(XKBOARD_OBJFWD (valcontents)->offset
964 + (char *)FRAME_KBOARD (SELECTED_FRAME ()));
1088b922 965 default: emacs_abort ();
ce5b453a 966 }
7921925c
JB
967}
968
d9c2a0f2
EN
969/* Store NEWVAL into SYMBOL, where VALCONTENTS is found in the value cell
970 of SYMBOL. If SYMBOL is buffer-local, VALCONTENTS should be the
7921925c 971 buffer-independent contents of the value cell: forwarded just one
7a283f36
GM
972 step past the buffer-localness.
973
974 BUF non-zero means set the value in buffer BUF instead of the
975 current buffer. This only plays a role for per-buffer variables. */
7921925c 976
ce5b453a 977static void
971de7fb 978store_symval_forwarding (union Lisp_Fwd *valcontents, register Lisp_Object newval, struct buffer *buf)
7921925c 979{
ce5b453a 980 switch (XFWDTYPE (valcontents))
7921925c 981 {
ce5b453a
SM
982 case Lisp_Fwd_Int:
983 CHECK_NUMBER (newval);
984 *XINTFWD (valcontents)->intvar = XINT (newval);
985 break;
aa3830c4 986
ce5b453a
SM
987 case Lisp_Fwd_Bool:
988 *XBOOLFWD (valcontents)->boolvar = !NILP (newval);
989 break;
aa3830c4 990
ce5b453a
SM
991 case Lisp_Fwd_Obj:
992 *XOBJFWD (valcontents)->objvar = newval;
aa3830c4 993
ce5b453a
SM
994 /* If this variable is a default for something stored
995 in the buffer itself, such as default-fill-column,
996 find the buffers that don't have local values for it
997 and update them. */
998 if (XOBJFWD (valcontents)->objvar > (Lisp_Object *) &buffer_defaults
999 && XOBJFWD (valcontents)->objvar < (Lisp_Object *) (&buffer_defaults + 1))
46b2ac21 1000 {
ce5b453a
SM
1001 int offset = ((char *) XOBJFWD (valcontents)->objvar
1002 - (char *) &buffer_defaults);
1003 int idx = PER_BUFFER_IDX (offset);
aa3830c4 1004
8f3a2c26 1005 Lisp_Object tail, buf;
aa3830c4 1006
ce5b453a
SM
1007 if (idx <= 0)
1008 break;
aa3830c4 1009
8f3a2c26 1010 FOR_EACH_LIVE_BUFFER (tail, buf)
6b61353c 1011 {
8f3a2c26 1012 struct buffer *b = XBUFFER (buf);
6b61353c 1013
ce5b453a 1014 if (! PER_BUFFER_VALUE_P (b, idx))
4ce60d2e 1015 set_per_buffer_value (b, offset, newval);
6b61353c 1016 }
ce5b453a
SM
1017 }
1018 break;
7403b5c8 1019
ce5b453a
SM
1020 case Lisp_Fwd_Buffer_Obj:
1021 {
1022 int offset = XBUFFER_OBJFWD (valcontents)->offset;
58cc0a01 1023 Lisp_Object predicate = XBUFFER_OBJFWD (valcontents)->predicate;
ce5b453a 1024
58cc0a01
DA
1025 if (!NILP (predicate) && !NILP (newval)
1026 && NILP (call1 (predicate, newval)))
1027 wrong_type_argument (predicate, newval);
ce5b453a
SM
1028
1029 if (buf == NULL)
1030 buf = current_buffer;
4ce60d2e 1031 set_per_buffer_value (buf, offset, newval);
ce5b453a
SM
1032 }
1033 break;
7403b5c8 1034
ce5b453a
SM
1035 case Lisp_Fwd_Kboard_Obj:
1036 {
1037 char *base = (char *) FRAME_KBOARD (SELECTED_FRAME ());
1038 char *p = base + XKBOARD_OBJFWD (valcontents)->offset;
1039 *(Lisp_Object *) p = newval;
1040 }
7921925c
JB
1041 break;
1042
7921925c 1043 default:
1088b922 1044 emacs_abort (); /* goto def; */
7921925c
JB
1045 }
1046}
1047
d73e321c
DA
1048/* Set up SYMBOL to refer to its global binding. This makes it safe
1049 to alter the status of other bindings. BEWARE: this may be called
1050 during the mark phase of GC, where we assume that Lisp_Object slots
1051 of BLV are marked after this function has changed them. */
b0d53add
GM
1052
1053void
971de7fb 1054swap_in_global_binding (struct Lisp_Symbol *symbol)
b0d53add 1055{
ce5b453a 1056 struct Lisp_Buffer_Local_Value *blv = SYMBOL_BLV (symbol);
b0d53add
GM
1057
1058 /* Unload the previously loaded binding. */
ce5b453a 1059 if (blv->fwd)
a04e2c62 1060 set_blv_value (blv, do_symval_forwarding (blv->fwd));
bfb96cb7 1061
b0d53add 1062 /* Select the global binding in the symbol. */
a04e2c62 1063 set_blv_valcell (blv, blv->defcell);
ce5b453a
SM
1064 if (blv->fwd)
1065 store_symval_forwarding (blv->fwd, XCDR (blv->defcell), NULL);
b0d53add
GM
1066
1067 /* Indicate that the global binding is set up now. */
a04e2c62
DA
1068 set_blv_where (blv, Qnil);
1069 set_blv_found (blv, 0);
b0d53add
GM
1070}
1071
2829d05f 1072/* Set up the buffer-local symbol SYMBOL for validity in the current buffer.
42e975f0
RS
1073 VALCONTENTS is the contents of its value cell,
1074 which points to a struct Lisp_Buffer_Local_Value.
1075
1076 Return the value forwarded one step past the buffer-local stage.
1077 This could be another forwarding pointer. */
7921925c 1078
ce5b453a 1079static void
971de7fb 1080swap_in_symval_forwarding (struct Lisp_Symbol *symbol, struct Lisp_Buffer_Local_Value *blv)
7921925c 1081{
7921925c 1082 register Lisp_Object tem1;
bfb96cb7 1083
ce5b453a
SM
1084 eassert (blv == SYMBOL_BLV (symbol));
1085
1086 tem1 = blv->where;
7921925c 1087
42e975f0 1088 if (NILP (tem1)
ce5b453a
SM
1089 || (blv->frame_local
1090 ? !EQ (selected_frame, tem1)
1091 : current_buffer != XBUFFER (tem1)))
7921925c 1092 {
bfb96cb7 1093
42e975f0 1094 /* Unload the previously loaded binding. */
ce5b453a
SM
1095 tem1 = blv->valcell;
1096 if (blv->fwd)
a04e2c62 1097 set_blv_value (blv, do_symval_forwarding (blv->fwd));
42e975f0 1098 /* Choose the new binding. */
ce5b453a
SM
1099 {
1100 Lisp_Object var;
1101 XSETSYMBOL (var, symbol);
1102 if (blv->frame_local)
1103 {
e69b0960 1104 tem1 = assq_no_quit (var, XFRAME (selected_frame)->param_alist);
a04e2c62 1105 set_blv_where (blv, selected_frame);
ce5b453a
SM
1106 }
1107 else
1108 {
4b4deea2 1109 tem1 = assq_no_quit (var, BVAR (current_buffer, local_var_alist));
d73e321c 1110 set_blv_where (blv, Fcurrent_buffer ());
ce5b453a
SM
1111 }
1112 }
1113 if (!(blv->found = !NILP (tem1)))
1114 tem1 = blv->defcell;
b0c2d1c6 1115
42e975f0 1116 /* Load the new binding. */
a04e2c62 1117 set_blv_valcell (blv, tem1);
ce5b453a 1118 if (blv->fwd)
a04e2c62 1119 store_symval_forwarding (blv->fwd, blv_value (blv), NULL);
7921925c 1120 }
7921925c
JB
1121}
1122\f
14e76af9
JB
1123/* Find the value of a symbol, returning Qunbound if it's not bound.
1124 This is helpful for code which just wants to get a variable's value
8e6208c5 1125 if it has one, without signaling an error.
14e76af9
JB
1126 Note that it must not be possible to quit
1127 within this function. Great care is required for this. */
7921925c 1128
14e76af9 1129Lisp_Object
971de7fb 1130find_symbol_value (Lisp_Object symbol)
7921925c 1131{
ce5b453a 1132 struct Lisp_Symbol *sym;
bfb96cb7 1133
b7826503 1134 CHECK_SYMBOL (symbol);
ce5b453a 1135 sym = XSYMBOL (symbol);
7921925c 1136
ce5b453a
SM
1137 start:
1138 switch (sym->redirect)
1139 {
1140 case SYMBOL_VARALIAS: sym = indirect_variable (sym); goto start;
1141 case SYMBOL_PLAINVAL: return SYMBOL_VAL (sym);
1142 case SYMBOL_LOCALIZED:
1143 {
1144 struct Lisp_Buffer_Local_Value *blv = SYMBOL_BLV (sym);
1145 swap_in_symval_forwarding (sym, blv);
a04e2c62 1146 return blv->fwd ? do_symval_forwarding (blv->fwd) : blv_value (blv);
ce5b453a
SM
1147 }
1148 /* FALLTHROUGH */
1149 case SYMBOL_FORWARDED:
1150 return do_symval_forwarding (SYMBOL_FWD (sym));
1088b922 1151 default: emacs_abort ();
ce5b453a 1152 }
7921925c
JB
1153}
1154
a7ca3326 1155DEFUN ("symbol-value", Fsymbol_value, Ssymbol_value, 1, 1, 0,
14d27346
GM
1156 doc: /* Return SYMBOL's value. Error if that is void.
1157Note that if `lexical-binding' is in effect, this returns the
1158global value outside of any lexical scope. */)
5842a27b 1159 (Lisp_Object symbol)
14e76af9 1160{
0671d7c0 1161 Lisp_Object val;
14e76af9 1162
d9c2a0f2 1163 val = find_symbol_value (symbol);
740ef0b5 1164 if (!EQ (val, Qunbound))
14e76af9 1165 return val;
740ef0b5
KS
1166
1167 xsignal1 (Qvoid_variable, symbol);
14e76af9
JB
1168}
1169
a7ca3326 1170DEFUN ("set", Fset, Sset, 2, 2, 0,
8c1a1077 1171 doc: /* Set SYMBOL's value to NEWVAL, and return NEWVAL. */)
5842a27b 1172 (register Lisp_Object symbol, Lisp_Object newval)
05ef7169 1173{
94b612ad 1174 set_internal (symbol, newval, Qnil, 0);
ce5b453a 1175 return newval;
05ef7169
RS
1176}
1177
25638b07 1178/* Store the value NEWVAL into SYMBOL.
94b612ad
SM
1179 If buffer/frame-locality is an issue, WHERE specifies which context to use.
1180 (nil stands for the current buffer/frame).
2829d05f 1181
de1339b0 1182 If BINDFLAG is false, then if this symbol is supposed to become
05ef7169 1183 local in every buffer where it is set, then we make it local.
de1339b0 1184 If BINDFLAG is true, we don't do that. */
05ef7169 1185
ce5b453a 1186void
de1339b0
PE
1187set_internal (Lisp_Object symbol, Lisp_Object newval, Lisp_Object where,
1188 bool bindflag)
7921925c 1189{
de1339b0 1190 bool voide = EQ (newval, Qunbound);
ce5b453a
SM
1191 struct Lisp_Symbol *sym;
1192 Lisp_Object tem1;
7921925c 1193
2829d05f 1194 /* If restoring in a dead buffer, do nothing. */
94b612ad
SM
1195 /* if (BUFFERP (where) && NILP (XBUFFER (where)->name))
1196 return; */
2829d05f 1197
b7826503 1198 CHECK_SYMBOL (symbol);
ce5b453a 1199 if (SYMBOL_CONSTANT_P (symbol))
7921925c 1200 {
ce5b453a
SM
1201 if (NILP (Fkeywordp (symbol))
1202 || !EQ (newval, Fsymbol_value (symbol)))
1203 xsignal1 (Qsetting_constant, symbol);
1204 else
1205 /* Allow setting keywords to their own value. */
1206 return;
7921925c 1207 }
42e975f0 1208
ce5b453a 1209 sym = XSYMBOL (symbol);
7921925c 1210
ce5b453a
SM
1211 start:
1212 switch (sym->redirect)
1213 {
1214 case SYMBOL_VARALIAS: sym = indirect_variable (sym); goto start;
1215 case SYMBOL_PLAINVAL: SET_SYMBOL_VAL (sym , newval); return;
1216 case SYMBOL_LOCALIZED:
1217 {
1218 struct Lisp_Buffer_Local_Value *blv = SYMBOL_BLV (sym);
94b612ad
SM
1219 if (NILP (where))
1220 {
1221 if (blv->frame_local)
1222 where = selected_frame;
1223 else
1224 XSETBUFFER (where, current_buffer);
1225 }
ce5b453a
SM
1226 /* If the current buffer is not the buffer whose binding is
1227 loaded, or if there may be frame-local bindings and the frame
1228 isn't the right one, or if it's a Lisp_Buffer_Local_Value and
1229 the default binding is loaded, the loaded binding may be the
1230 wrong one. */
94b612ad 1231 if (!EQ (blv->where, where)
bfeae2cf 1232 /* Also unload a global binding (if the var is local_if_set). */
ce5b453a
SM
1233 || (EQ (blv->valcell, blv->defcell)))
1234 {
1235 /* The currently loaded binding is not necessarily valid.
1236 We need to unload it, and choose a new binding. */
1237
1238 /* Write out `realvalue' to the old loaded binding. */
1239 if (blv->fwd)
a04e2c62 1240 set_blv_value (blv, do_symval_forwarding (blv->fwd));
b0c2d1c6 1241
ce5b453a 1242 /* Find the new binding. */
94b612ad
SM
1243 XSETSYMBOL (symbol, sym); /* May have changed via aliasing. */
1244 tem1 = Fassq (symbol,
1245 (blv->frame_local
e69b0960 1246 ? XFRAME (where)->param_alist
4b4deea2 1247 : BVAR (XBUFFER (where), local_var_alist)));
a04e2c62 1248 set_blv_where (blv, where);
9e677988 1249 blv->found = 1;
ce5b453a
SM
1250
1251 if (NILP (tem1))
1252 {
1253 /* This buffer still sees the default value. */
1254
1255 /* If the variable is a Lisp_Some_Buffer_Local_Value,
1256 or if this is `let' rather than `set',
1257 make CURRENT-ALIST-ELEMENT point to itself,
1258 indicating that we're seeing the default value.
1259 Likewise if the variable has been let-bound
1260 in the current buffer. */
1261 if (bindflag || !blv->local_if_set
1262 || let_shadows_buffer_binding_p (sym))
1263 {
9e677988 1264 blv->found = 0;
ce5b453a
SM
1265 tem1 = blv->defcell;
1266 }
1267 /* If it's a local_if_set, being set not bound,
1268 and we're not within a let that was made for this buffer,
1269 create a new buffer-local binding for the variable.
1270 That means, give this buffer a new assoc for a local value
1271 and load that binding. */
1272 else
1273 {
1274 /* local_if_set is only supported for buffer-local
1275 bindings, not for frame-local bindings. */
1276 eassert (!blv->frame_local);
1277 tem1 = Fcons (symbol, XCDR (blv->defcell));
39eb03f1
PE
1278 bset_local_var_alist
1279 (XBUFFER (where),
1280 Fcons (tem1, BVAR (XBUFFER (where), local_var_alist)));
ce5b453a
SM
1281 }
1282 }
1283
1284 /* Record which binding is now loaded. */
a04e2c62 1285 set_blv_valcell (blv, tem1);
ce5b453a 1286 }
b0c2d1c6 1287
ce5b453a 1288 /* Store the new value in the cons cell. */
a04e2c62 1289 set_blv_value (blv, newval);
d8cafeb5 1290
ce5b453a
SM
1291 if (blv->fwd)
1292 {
1293 if (voide)
1294 /* If storing void (making the symbol void), forward only through
1295 buffer-local indicator, not through Lisp_Objfwd, etc. */
1296 blv->fwd = NULL;
1297 else
94b612ad
SM
1298 store_symval_forwarding (blv->fwd, newval,
1299 BUFFERP (where)
1300 ? XBUFFER (where) : current_buffer);
ce5b453a
SM
1301 }
1302 break;
1303 }
1304 case SYMBOL_FORWARDED:
1305 {
94b612ad
SM
1306 struct buffer *buf
1307 = BUFFERP (where) ? XBUFFER (where) : current_buffer;
ce5b453a
SM
1308 union Lisp_Fwd *innercontents = SYMBOL_FWD (sym);
1309 if (BUFFER_OBJFWDP (innercontents))
1310 {
1311 int offset = XBUFFER_OBJFWD (innercontents)->offset;
1312 int idx = PER_BUFFER_IDX (offset);
1313 if (idx > 0
1314 && !bindflag
1315 && !let_shadows_buffer_binding_p (sym))
1316 SET_PER_BUFFER_VALUE_P (buf, idx, 1);
1317 }
569c11e3 1318
ce5b453a
SM
1319 if (voide)
1320 { /* If storing void (making the symbol void), forward only through
1321 buffer-local indicator, not through Lisp_Objfwd, etc. */
1322 sym->redirect = SYMBOL_PLAINVAL;
1323 SET_SYMBOL_VAL (sym, newval);
1324 }
1325 else
1326 store_symval_forwarding (/* sym, */ innercontents, newval, buf);
1327 break;
1328 }
1088b922 1329 default: emacs_abort ();
7921925c 1330 }
ce5b453a 1331 return;
7921925c
JB
1332}
1333\f
1334/* Access or set a buffer-local symbol's default value. */
1335
d9c2a0f2 1336/* Return the default value of SYMBOL, but don't check for voidness.
1bfcade3 1337 Return Qunbound if it is void. */
7921925c 1338
112396d6 1339static Lisp_Object
971de7fb 1340default_value (Lisp_Object symbol)
7921925c 1341{
ce5b453a 1342 struct Lisp_Symbol *sym;
7921925c 1343
b7826503 1344 CHECK_SYMBOL (symbol);
ce5b453a 1345 sym = XSYMBOL (symbol);
7921925c 1346
ce5b453a
SM
1347 start:
1348 switch (sym->redirect)
7921925c 1349 {
ce5b453a
SM
1350 case SYMBOL_VARALIAS: sym = indirect_variable (sym); goto start;
1351 case SYMBOL_PLAINVAL: return SYMBOL_VAL (sym);
1352 case SYMBOL_LOCALIZED:
1353 {
1354 /* If var is set up for a buffer that lacks a local value for it,
1355 the current value is nominally the default value.
1356 But the `realvalue' slot may be more up to date, since
1357 ordinary setq stores just that slot. So use that. */
1358 struct Lisp_Buffer_Local_Value *blv = SYMBOL_BLV (sym);
1359 if (blv->fwd && EQ (blv->valcell, blv->defcell))
1360 return do_symval_forwarding (blv->fwd);
1361 else
1362 return XCDR (blv->defcell);
1363 }
1364 case SYMBOL_FORWARDED:
1365 {
1366 union Lisp_Fwd *valcontents = SYMBOL_FWD (sym);
7921925c 1367
ce5b453a
SM
1368 /* For a built-in buffer-local variable, get the default value
1369 rather than letting do_symval_forwarding get the current value. */
1370 if (BUFFER_OBJFWDP (valcontents))
1371 {
1372 int offset = XBUFFER_OBJFWD (valcontents)->offset;
1373 if (PER_BUFFER_IDX (offset) != 0)
4ce60d2e 1374 return per_buffer_default (offset);
ce5b453a
SM
1375 }
1376
1377 /* For other variables, get the current value. */
1378 return do_symval_forwarding (valcontents);
1379 }
1088b922 1380 default: emacs_abort ();
7921925c 1381 }
7921925c
JB
1382}
1383
a7ca3326 1384DEFUN ("default-boundp", Fdefault_boundp, Sdefault_boundp, 1, 1, 0,
8c1a1077
PJ
1385 doc: /* Return t if SYMBOL has a non-void default value.
1386This is the value that is seen in buffers that do not have their own values
1387for this variable. */)
5842a27b 1388 (Lisp_Object symbol)
7921925c
JB
1389{
1390 register Lisp_Object value;
1391
d9c2a0f2 1392 value = default_value (symbol);
1bfcade3 1393 return (EQ (value, Qunbound) ? Qnil : Qt);
7921925c
JB
1394}
1395
a7ca3326 1396DEFUN ("default-value", Fdefault_value, Sdefault_value, 1, 1, 0,
8c1a1077
PJ
1397 doc: /* Return SYMBOL's default value.
1398This is the value that is seen in buffers that do not have their own values
1399for this variable. The default value is meaningful for variables with
1400local bindings in certain buffers. */)
5842a27b 1401 (Lisp_Object symbol)
7921925c 1402{
a104f656 1403 Lisp_Object value = default_value (symbol);
740ef0b5
KS
1404 if (!EQ (value, Qunbound))
1405 return value;
1406
1407 xsignal1 (Qvoid_variable, symbol);
7921925c
JB
1408}
1409
a7ca3326 1410DEFUN ("set-default", Fset_default, Sset_default, 2, 2, 0,
6e86a75d 1411 doc: /* Set SYMBOL's default value to VALUE. SYMBOL and VALUE are evaluated.
8c1a1077
PJ
1412The default value is seen in buffers that do not have their own values
1413for this variable. */)
5842a27b 1414 (Lisp_Object symbol, Lisp_Object value)
7921925c 1415{
ce5b453a 1416 struct Lisp_Symbol *sym;
7921925c 1417
b7826503 1418 CHECK_SYMBOL (symbol);
ce5b453a 1419 if (SYMBOL_CONSTANT_P (symbol))
7921925c 1420 {
ce5b453a
SM
1421 if (NILP (Fkeywordp (symbol))
1422 || !EQ (value, Fdefault_value (symbol)))
1423 xsignal1 (Qsetting_constant, symbol);
1424 else
1425 /* Allow setting keywords to their own value. */
1426 return value;
1427 }
1428 sym = XSYMBOL (symbol);
7921925c 1429
ce5b453a
SM
1430 start:
1431 switch (sym->redirect)
1432 {
1433 case SYMBOL_VARALIAS: sym = indirect_variable (sym); goto start;
1434 case SYMBOL_PLAINVAL: return Fset (symbol, value);
1435 case SYMBOL_LOCALIZED:
1436 {
1437 struct Lisp_Buffer_Local_Value *blv = SYMBOL_BLV (sym);
984ef137 1438
ce5b453a
SM
1439 /* Store new value into the DEFAULT-VALUE slot. */
1440 XSETCDR (blv->defcell, value);
bfb96cb7 1441
ce5b453a
SM
1442 /* If the default binding is now loaded, set the REALVALUE slot too. */
1443 if (blv->fwd && EQ (blv->defcell, blv->valcell))
1444 store_symval_forwarding (blv->fwd, value, NULL);
1445 return value;
1446 }
1447 case SYMBOL_FORWARDED:
1448 {
1449 union Lisp_Fwd *valcontents = SYMBOL_FWD (sym);
7921925c 1450
ce5b453a
SM
1451 /* Handle variables like case-fold-search that have special slots
1452 in the buffer.
1453 Make them work apparently like Lisp_Buffer_Local_Value variables. */
1454 if (BUFFER_OBJFWDP (valcontents))
1455 {
1456 int offset = XBUFFER_OBJFWD (valcontents)->offset;
1457 int idx = PER_BUFFER_IDX (offset);
7921925c 1458
4ce60d2e 1459 set_per_buffer_default (offset, value);
7921925c 1460
ce5b453a
SM
1461 /* If this variable is not always local in all buffers,
1462 set it in the buffers that don't nominally have a local value. */
1463 if (idx > 0)
1464 {
1465 struct buffer *b;
7921925c 1466
52b852c7 1467 FOR_EACH_BUFFER (b)
ce5b453a 1468 if (!PER_BUFFER_VALUE_P (b, idx))
4ce60d2e 1469 set_per_buffer_value (b, offset, value);
ce5b453a
SM
1470 }
1471 return value;
1472 }
1473 else
1474 return Fset (symbol, value);
1475 }
1088b922 1476 default: emacs_abort ();
ce5b453a 1477 }
7921925c
JB
1478}
1479
7a7df7ac 1480DEFUN ("setq-default", Fsetq_default, Ssetq_default, 0, UNEVALLED, 0,
8c1a1077
PJ
1481 doc: /* Set the default value of variable VAR to VALUE.
1482VAR, the variable name, is literal (not evaluated);
bfb96cb7 1483VALUE is an expression: it is evaluated and its value returned.
8c1a1077
PJ
1484The default value of a variable is seen in buffers
1485that do not have their own values for the variable.
1486
1487More generally, you can use multiple variables and values, as in
948d2995
JB
1488 (setq-default VAR VALUE VAR VALUE...)
1489This sets each VAR's default value to the corresponding VALUE.
1490The VALUE for the Nth VAR can refer to the new default values
1491of previous VARs.
70e9f399 1492usage: (setq-default [VAR VALUE]...) */)
5842a27b 1493 (Lisp_Object args)
7921925c 1494{
16b0520a 1495 Lisp_Object args_left, symbol, val;
7921925c
JB
1496 struct gcpro gcpro1;
1497
16b0520a 1498 args_left = val = args;
7921925c
JB
1499 GCPRO1 (args);
1500
16b0520a 1501 while (CONSP (args_left))
7921925c 1502 {
16b0520a 1503 val = eval_sub (Fcar (XCDR (args_left)));
d2fde41d 1504 symbol = XCAR (args_left);
d9c2a0f2 1505 Fset_default (symbol, val);
d2fde41d 1506 args_left = Fcdr (XCDR (args_left));
7921925c 1507 }
7921925c
JB
1508
1509 UNGCPRO;
1510 return val;
1511}
1512\f
a5ca2b75
JB
1513/* Lisp functions for creating and removing buffer-local variables. */
1514
ce5b453a
SM
1515union Lisp_Val_Fwd
1516 {
1517 Lisp_Object value;
1518 union Lisp_Fwd *fwd;
1519 };
1520
1521static struct Lisp_Buffer_Local_Value *
de1339b0
PE
1522make_blv (struct Lisp_Symbol *sym, bool forwarded,
1523 union Lisp_Val_Fwd valcontents)
ce5b453a 1524{
38182d90 1525 struct Lisp_Buffer_Local_Value *blv = xmalloc (sizeof *blv);
c632dfda
JD
1526 Lisp_Object symbol;
1527 Lisp_Object tem;
1528
1529 XSETSYMBOL (symbol, sym);
1530 tem = Fcons (symbol, (forwarded
1531 ? do_symval_forwarding (valcontents.fwd)
1532 : valcontents.value));
1533
ce5b453a
SM
1534 /* Buffer_Local_Values cannot have as realval a buffer-local
1535 or keyboard-local forwarding. */
1536 eassert (!(forwarded && BUFFER_OBJFWDP (valcontents.fwd)));
1537 eassert (!(forwarded && KBOARD_OBJFWDP (valcontents.fwd)));
1538 blv->fwd = forwarded ? valcontents.fwd : NULL;
a04e2c62 1539 set_blv_where (blv, Qnil);
ce5b453a
SM
1540 blv->frame_local = 0;
1541 blv->local_if_set = 0;
a04e2c62
DA
1542 set_blv_defcell (blv, tem);
1543 set_blv_valcell (blv, tem);
1544 set_blv_found (blv, 0);
ce5b453a
SM
1545 return blv;
1546}
1547
a7ca3326 1548DEFUN ("make-variable-buffer-local", Fmake_variable_buffer_local,
16a97296 1549 Smake_variable_buffer_local, 1, 1, "vMake Variable Buffer Local: ",
8c1a1077
PJ
1550 doc: /* Make VARIABLE become buffer-local whenever it is set.
1551At any time, the value for the current buffer is in effect,
1552unless the variable has never been set in this buffer,
1553in which case the default value is in effect.
1554Note that binding the variable with `let', or setting it while
1555a `let'-style binding made in this buffer is in effect,
bfb96cb7 1556does not make the variable buffer-local. Return VARIABLE.
8c1a1077 1557
450533b0
SM
1558This globally affects all uses of this variable, so it belongs together with
1559the variable declaration, rather than with its uses (if you just want to make
1560a variable local to the current buffer for one particular use, use
1561`make-local-variable'). Buffer-local bindings are normally cleared
1562while setting up a new major mode, unless they have a `permanent-local'
1563property.
a9908653 1564
8c1a1077 1565The function `default-value' gets the default value and `set-default' sets it. */)
5842a27b 1566 (register Lisp_Object variable)
7921925c 1567{
ad97b375 1568 struct Lisp_Symbol *sym;
ce5b453a 1569 struct Lisp_Buffer_Local_Value *blv = NULL;
bfe3e0a2 1570 union Lisp_Val_Fwd valcontents IF_LINT (= {LISP_INITIALLY_ZERO});
de1339b0 1571 bool forwarded IF_LINT (= 0);
7921925c 1572
b7826503 1573 CHECK_SYMBOL (variable);
ce5b453a 1574 sym = XSYMBOL (variable);
7921925c 1575
ce5b453a
SM
1576 start:
1577 switch (sym->redirect)
fd9440c5 1578 {
ce5b453a
SM
1579 case SYMBOL_VARALIAS: sym = indirect_variable (sym); goto start;
1580 case SYMBOL_PLAINVAL:
1581 forwarded = 0; valcontents.value = SYMBOL_VAL (sym);
1582 if (EQ (valcontents.value, Qunbound))
1583 valcontents.value = Qnil;
1584 break;
1585 case SYMBOL_LOCALIZED:
1586 blv = SYMBOL_BLV (sym);
1587 if (blv->frame_local)
1588 error ("Symbol %s may not be buffer-local",
1589 SDATA (SYMBOL_NAME (variable)));
1590 break;
1591 case SYMBOL_FORWARDED:
1592 forwarded = 1; valcontents.fwd = SYMBOL_FWD (sym);
1593 if (KBOARD_OBJFWDP (valcontents.fwd))
1594 error ("Symbol %s may not be buffer-local",
1595 SDATA (SYMBOL_NAME (variable)));
1596 else if (BUFFER_OBJFWDP (valcontents.fwd))
1597 return variable;
1598 break;
1088b922 1599 default: emacs_abort ();
fd9440c5 1600 }
ce5b453a
SM
1601
1602 if (sym->constant)
1603 error ("Symbol %s may not be buffer-local", SDATA (SYMBOL_NAME (variable)));
1604
1605 if (!blv)
7921925c 1606 {
ce5b453a
SM
1607 blv = make_blv (sym, forwarded, valcontents);
1608 sym->redirect = SYMBOL_LOCALIZED;
1609 SET_SYMBOL_BLV (sym, blv);
1610 {
1611 Lisp_Object symbol;
1612 XSETSYMBOL (symbol, sym); /* In case `variable' is aliased. */
1613 if (let_shadows_global_binding_p (symbol))
8b1e1112
SM
1614 message ("Making %s buffer-local while let-bound!",
1615 SDATA (SYMBOL_NAME (variable)));
ce5b453a 1616 }
7921925c 1617 }
ce5b453a
SM
1618
1619 blv->local_if_set = 1;
d9c2a0f2 1620 return variable;
7921925c
JB
1621}
1622
a7ca3326 1623DEFUN ("make-local-variable", Fmake_local_variable, Smake_local_variable,
8c1a1077
PJ
1624 1, 1, "vMake Local Variable: ",
1625 doc: /* Make VARIABLE have a separate value in the current buffer.
1626Other buffers will continue to share a common default value.
1627\(The buffer-local value of VARIABLE starts out as the same value
1628VARIABLE previously had. If VARIABLE was void, it remains void.\)
a9908653 1629Return VARIABLE.
8c1a1077
PJ
1630
1631If the variable is already arranged to become local when set,
1632this function causes a local value to exist for this buffer,
1633just as setting the variable would do.
1634
1635This function returns VARIABLE, and therefore
1636 (set (make-local-variable 'VARIABLE) VALUE-EXP)
1637works.
1638
a9908653
RS
1639See also `make-variable-buffer-local'.
1640
8c1a1077 1641Do not use `make-local-variable' to make a hook variable buffer-local.
515f3f25 1642Instead, use `add-hook' and specify t for the LOCAL argument. */)
de1339b0 1643 (Lisp_Object variable)
7921925c 1644{
de1339b0
PE
1645 Lisp_Object tem;
1646 bool forwarded IF_LINT (= 0);
bfe3e0a2 1647 union Lisp_Val_Fwd valcontents IF_LINT (= {LISP_INITIALLY_ZERO});
ad97b375 1648 struct Lisp_Symbol *sym;
ce5b453a 1649 struct Lisp_Buffer_Local_Value *blv = NULL;
7921925c 1650
b7826503 1651 CHECK_SYMBOL (variable);
ce5b453a 1652 sym = XSYMBOL (variable);
7921925c 1653
ce5b453a
SM
1654 start:
1655 switch (sym->redirect)
1656 {
1657 case SYMBOL_VARALIAS: sym = indirect_variable (sym); goto start;
1658 case SYMBOL_PLAINVAL:
1659 forwarded = 0; valcontents.value = SYMBOL_VAL (sym); break;
1660 case SYMBOL_LOCALIZED:
1661 blv = SYMBOL_BLV (sym);
1662 if (blv->frame_local)
1663 error ("Symbol %s may not be buffer-local",
1664 SDATA (SYMBOL_NAME (variable)));
1665 break;
1666 case SYMBOL_FORWARDED:
1667 forwarded = 1; valcontents.fwd = SYMBOL_FWD (sym);
1668 if (KBOARD_OBJFWDP (valcontents.fwd))
1669 error ("Symbol %s may not be buffer-local",
1670 SDATA (SYMBOL_NAME (variable)));
1671 break;
1088b922 1672 default: emacs_abort ();
ce5b453a
SM
1673 }
1674
1675 if (sym->constant)
8b1e1112
SM
1676 error ("Symbol %s may not be buffer-local",
1677 SDATA (SYMBOL_NAME (variable)));
7921925c 1678
ce5b453a
SM
1679 if (blv ? blv->local_if_set
1680 : (forwarded && BUFFER_OBJFWDP (valcontents.fwd)))
7921925c 1681 {
d9c2a0f2 1682 tem = Fboundp (variable);
7921925c
JB
1683 /* Make sure the symbol has a local value in this particular buffer,
1684 by setting it to the same value it already has. */
d9c2a0f2
EN
1685 Fset (variable, (EQ (tem, Qt) ? Fsymbol_value (variable) : Qunbound));
1686 return variable;
7921925c 1687 }
ce5b453a 1688 if (!blv)
7921925c 1689 {
ce5b453a
SM
1690 blv = make_blv (sym, forwarded, valcontents);
1691 sym->redirect = SYMBOL_LOCALIZED;
1692 SET_SYMBOL_BLV (sym, blv);
1693 {
1694 Lisp_Object symbol;
1695 XSETSYMBOL (symbol, sym); /* In case `variable' is aliased. */
1696 if (let_shadows_global_binding_p (symbol))
8b1e1112
SM
1697 message ("Making %s local to %s while let-bound!",
1698 SDATA (SYMBOL_NAME (variable)),
4b4deea2 1699 SDATA (BVAR (current_buffer, name)));
ce5b453a 1700 }
7921925c 1701 }
ce5b453a 1702
42e975f0 1703 /* Make sure this buffer has its own value of symbol. */
ce5b453a 1704 XSETSYMBOL (variable, sym); /* Update in case of aliasing. */
4b4deea2 1705 tem = Fassq (variable, BVAR (current_buffer, local_var_alist));
a33ef3ab 1706 if (NILP (tem))
7921925c 1707 {
ce5b453a
SM
1708 if (let_shadows_buffer_binding_p (sym))
1709 message ("Making %s buffer-local while locally let-bound!",
1710 SDATA (SYMBOL_NAME (variable)));
1711
a5d004a1
RS
1712 /* Swap out any local binding for some other buffer, and make
1713 sure the current value is permanently recorded, if it's the
1714 default value. */
d9c2a0f2 1715 find_symbol_value (variable);
a5d004a1 1716
39eb03f1
PE
1717 bset_local_var_alist
1718 (current_buffer,
1719 Fcons (Fcons (variable, XCDR (blv->defcell)),
1720 BVAR (current_buffer, local_var_alist)));
7921925c
JB
1721
1722 /* Make sure symbol does not think it is set up for this buffer;
42e975f0 1723 force it to look once again for this buffer's value. */
ce5b453a 1724 if (current_buffer == XBUFFER (blv->where))
a04e2c62
DA
1725 set_blv_where (blv, Qnil);
1726 set_blv_found (blv, 0);
7921925c 1727 }
a5ca2b75 1728
42e975f0
RS
1729 /* If the symbol forwards into a C variable, then load the binding
1730 for this buffer now. If C code modifies the variable before we
1731 load the binding in, then that new value will clobber the default
1732 binding the next time we unload it. */
ce5b453a
SM
1733 if (blv->fwd)
1734 swap_in_symval_forwarding (sym, blv);
a5ca2b75 1735
d9c2a0f2 1736 return variable;
7921925c
JB
1737}
1738
1739DEFUN ("kill-local-variable", Fkill_local_variable, Skill_local_variable,
8c1a1077
PJ
1740 1, 1, "vKill Local Variable: ",
1741 doc: /* Make VARIABLE no longer have a separate value in the current buffer.
bfb96cb7 1742From now on the default value will apply in this buffer. Return VARIABLE. */)
5842a27b 1743 (register Lisp_Object variable)
7921925c 1744{
ce5b453a
SM
1745 register Lisp_Object tem;
1746 struct Lisp_Buffer_Local_Value *blv;
ad97b375 1747 struct Lisp_Symbol *sym;
7921925c 1748
b7826503 1749 CHECK_SYMBOL (variable);
ce5b453a 1750 sym = XSYMBOL (variable);
7921925c 1751
ce5b453a
SM
1752 start:
1753 switch (sym->redirect)
7921925c 1754 {
ce5b453a
SM
1755 case SYMBOL_VARALIAS: sym = indirect_variable (sym); goto start;
1756 case SYMBOL_PLAINVAL: return variable;
1757 case SYMBOL_FORWARDED:
1758 {
1759 union Lisp_Fwd *valcontents = SYMBOL_FWD (sym);
1760 if (BUFFER_OBJFWDP (valcontents))
1761 {
1762 int offset = XBUFFER_OBJFWD (valcontents)->offset;
1763 int idx = PER_BUFFER_IDX (offset);
1764
1765 if (idx > 0)
1766 {
1767 SET_PER_BUFFER_VALUE_P (current_buffer, idx, 0);
4ce60d2e
DA
1768 set_per_buffer_value (current_buffer, offset,
1769 per_buffer_default (offset));
ce5b453a
SM
1770 }
1771 }
1772 return variable;
1773 }
1774 case SYMBOL_LOCALIZED:
1775 blv = SYMBOL_BLV (sym);
1776 if (blv->frame_local)
1777 return variable;
1778 break;
1088b922 1779 default: emacs_abort ();
7921925c
JB
1780 }
1781
42e975f0 1782 /* Get rid of this buffer's alist element, if any. */
ad97b375 1783 XSETSYMBOL (variable, sym); /* Propagate variable indirection. */
4b4deea2 1784 tem = Fassq (variable, BVAR (current_buffer, local_var_alist));
a33ef3ab 1785 if (!NILP (tem))
39eb03f1
PE
1786 bset_local_var_alist
1787 (current_buffer,
1788 Fdelq (tem, BVAR (current_buffer, local_var_alist)));
7921925c 1789
42e975f0
RS
1790 /* If the symbol is set up with the current buffer's binding
1791 loaded, recompute its value. We have to do it now, or else
1792 forwarded objects won't work right. */
7921925c 1793 {
ce5b453a
SM
1794 Lisp_Object buf; XSETBUFFER (buf, current_buffer);
1795 if (EQ (buf, blv->where))
79c83e03 1796 {
a04e2c62 1797 set_blv_where (blv, Qnil);
9e677988 1798 blv->found = 0;
978dd578 1799 find_symbol_value (variable);
79c83e03 1800 }
7921925c
JB
1801 }
1802
d9c2a0f2 1803 return variable;
7921925c 1804}
62476adc 1805
b0c2d1c6
RS
1806/* Lisp functions for creating and removing buffer-local variables. */
1807
ab795c65
GM
1808/* Obsolete since 22.2. NB adjust doc of modify-frame-parameters
1809 when/if this is removed. */
1810
b0c2d1c6 1811DEFUN ("make-variable-frame-local", Fmake_variable_frame_local, Smake_variable_frame_local,
8c1a1077
PJ
1812 1, 1, "vMake Variable Frame Local: ",
1813 doc: /* Enable VARIABLE to have frame-local bindings.
4d4d36b1
RS
1814This does not create any frame-local bindings for VARIABLE,
1815it just makes them possible.
1816
1817A frame-local binding is actually a frame parameter value.
1818If a frame F has a value for the frame parameter named VARIABLE,
1819that also acts as a frame-local binding for VARIABLE in F--
1820provided this function has been called to enable VARIABLE
1821to have frame-local bindings at all.
1822
1823The only way to create a frame-local binding for VARIABLE in a frame
1824is to set the VARIABLE frame parameter of that frame. See
1825`modify-frame-parameters' for how to set frame parameters.
1826
a02a1384
GM
1827Note that since Emacs 23.1, variables cannot be both buffer-local and
1828frame-local any more (buffer-local bindings used to take precedence over
1829frame-local bindings). */)
de1339b0 1830 (Lisp_Object variable)
b0c2d1c6 1831{
de1339b0 1832 bool forwarded;
ce5b453a 1833 union Lisp_Val_Fwd valcontents;
ad97b375 1834 struct Lisp_Symbol *sym;
ce5b453a 1835 struct Lisp_Buffer_Local_Value *blv = NULL;
b0c2d1c6 1836
b7826503 1837 CHECK_SYMBOL (variable);
ce5b453a 1838 sym = XSYMBOL (variable);
b0c2d1c6 1839
ce5b453a
SM
1840 start:
1841 switch (sym->redirect)
42e975f0 1842 {
ce5b453a
SM
1843 case SYMBOL_VARALIAS: sym = indirect_variable (sym); goto start;
1844 case SYMBOL_PLAINVAL:
1845 forwarded = 0; valcontents.value = SYMBOL_VAL (sym);
1846 if (EQ (valcontents.value, Qunbound))
1847 valcontents.value = Qnil;
1848 break;
1849 case SYMBOL_LOCALIZED:
1850 if (SYMBOL_BLV (sym)->frame_local)
1851 return variable;
1852 else
1853 error ("Symbol %s may not be frame-local",
1854 SDATA (SYMBOL_NAME (variable)));
1855 case SYMBOL_FORWARDED:
1856 forwarded = 1; valcontents.fwd = SYMBOL_FWD (sym);
1857 if (KBOARD_OBJFWDP (valcontents.fwd) || BUFFER_OBJFWDP (valcontents.fwd))
1858 error ("Symbol %s may not be frame-local",
1859 SDATA (SYMBOL_NAME (variable)));
1860 break;
1088b922 1861 default: emacs_abort ();
42e975f0 1862 }
b0c2d1c6 1863
ce5b453a
SM
1864 if (sym->constant)
1865 error ("Symbol %s may not be frame-local", SDATA (SYMBOL_NAME (variable)));
1866
1867 blv = make_blv (sym, forwarded, valcontents);
1868 blv->frame_local = 1;
1869 sym->redirect = SYMBOL_LOCALIZED;
1870 SET_SYMBOL_BLV (sym, blv);
8b1e1112
SM
1871 {
1872 Lisp_Object symbol;
1873 XSETSYMBOL (symbol, sym); /* In case `variable' is aliased. */
1874 if (let_shadows_global_binding_p (symbol))
1875 message ("Making %s frame-local while let-bound!",
1876 SDATA (SYMBOL_NAME (variable)));
1877 }
b0c2d1c6
RS
1878 return variable;
1879}
1880
a7ca3326 1881DEFUN ("local-variable-p", Flocal_variable_p, Slocal_variable_p,
8c1a1077
PJ
1882 1, 2, 0,
1883 doc: /* Non-nil if VARIABLE has a local binding in buffer BUFFER.
1884BUFFER defaults to the current buffer. */)
5842a27b 1885 (register Lisp_Object variable, Lisp_Object buffer)
62476adc 1886{
c48ead86 1887 register struct buffer *buf;
ad97b375 1888 struct Lisp_Symbol *sym;
c48ead86
KH
1889
1890 if (NILP (buffer))
1891 buf = current_buffer;
1892 else
1893 {
b7826503 1894 CHECK_BUFFER (buffer);
c48ead86
KH
1895 buf = XBUFFER (buffer);
1896 }
62476adc 1897
b7826503 1898 CHECK_SYMBOL (variable);
ce5b453a 1899 sym = XSYMBOL (variable);
be95bee9 1900
ce5b453a
SM
1901 start:
1902 switch (sym->redirect)
c48ead86 1903 {
ce5b453a
SM
1904 case SYMBOL_VARALIAS: sym = indirect_variable (sym); goto start;
1905 case SYMBOL_PLAINVAL: return Qnil;
1906 case SYMBOL_LOCALIZED:
1907 {
1908 Lisp_Object tail, elt, tmp;
1909 struct Lisp_Buffer_Local_Value *blv = SYMBOL_BLV (sym);
1910 XSETBUFFER (tmp, buf);
8d1d9587 1911 XSETSYMBOL (variable, sym); /* Update in case of aliasing. */
aa3830c4 1912
2f592f95
SM
1913 if (EQ (blv->where, tmp)) /* The binding is already loaded. */
1914 return blv_found (blv) ? Qt : Qnil;
1915 else
1916 for (tail = BVAR (buf, local_var_alist); CONSP (tail); tail = XCDR (tail))
1917 {
1918 elt = XCAR (tail);
1919 if (EQ (variable, XCAR (elt)))
1920 {
1921 eassert (!blv->frame_local);
1922 return Qt;
1923 }
1924 }
ce5b453a
SM
1925 return Qnil;
1926 }
1927 case SYMBOL_FORWARDED:
1928 {
1929 union Lisp_Fwd *valcontents = SYMBOL_FWD (sym);
1930 if (BUFFER_OBJFWDP (valcontents))
1931 {
1932 int offset = XBUFFER_OBJFWD (valcontents)->offset;
1933 int idx = PER_BUFFER_IDX (offset);
1934 if (idx == -1 || PER_BUFFER_VALUE_P (buf, idx))
1935 return Qt;
1936 }
1937 return Qnil;
1938 }
1088b922 1939 default: emacs_abort ();
c48ead86 1940 }
62476adc 1941}
f4f04cee
RS
1942
1943DEFUN ("local-variable-if-set-p", Flocal_variable_if_set_p, Slocal_variable_if_set_p,
8c1a1077 1944 1, 2, 0,
1a5432bc
CY
1945 doc: /* Non-nil if VARIABLE is local in buffer BUFFER when set there.
1946BUFFER defaults to the current buffer.
1947
1948More precisely, return non-nil if either VARIABLE already has a local
1949value in BUFFER, or if VARIABLE is automatically buffer-local (see
1950`make-variable-buffer-local'). */)
5842a27b 1951 (register Lisp_Object variable, Lisp_Object buffer)
f4f04cee 1952{
ad97b375 1953 struct Lisp_Symbol *sym;
f4f04cee 1954
b7826503 1955 CHECK_SYMBOL (variable);
ce5b453a 1956 sym = XSYMBOL (variable);
f4f04cee 1957
ce5b453a
SM
1958 start:
1959 switch (sym->redirect)
f4f04cee 1960 {
ce5b453a
SM
1961 case SYMBOL_VARALIAS: sym = indirect_variable (sym); goto start;
1962 case SYMBOL_PLAINVAL: return Qnil;
1963 case SYMBOL_LOCALIZED:
1964 {
1965 struct Lisp_Buffer_Local_Value *blv = SYMBOL_BLV (sym);
1966 if (blv->local_if_set)
1967 return Qt;
1968 XSETSYMBOL (variable, sym); /* Update in case of aliasing. */
1969 return Flocal_variable_p (variable, buffer);
1970 }
1971 case SYMBOL_FORWARDED:
1972 /* All BUFFER_OBJFWD slots become local if they are set. */
1973 return (BUFFER_OBJFWDP (SYMBOL_FWD (sym)) ? Qt : Qnil);
1088b922 1974 default: emacs_abort ();
f4f04cee 1975 }
f4f04cee 1976}
6b61353c
KH
1977
1978DEFUN ("variable-binding-locus", Fvariable_binding_locus, Svariable_binding_locus,
1979 1, 1, 0,
1980 doc: /* Return a value indicating where VARIABLE's current binding comes from.
1981If the current binding is buffer-local, the value is the current buffer.
1982If the current binding is frame-local, the value is the selected frame.
1983If the current binding is global (the default), the value is nil. */)
5842a27b 1984 (register Lisp_Object variable)
6b61353c 1985{
ad97b375 1986 struct Lisp_Symbol *sym;
6b61353c
KH
1987
1988 CHECK_SYMBOL (variable);
ce5b453a 1989 sym = XSYMBOL (variable);
6b61353c
KH
1990
1991 /* Make sure the current binding is actually swapped in. */
1992 find_symbol_value (variable);
1993
ce5b453a
SM
1994 start:
1995 switch (sym->redirect)
6b61353c 1996 {
ce5b453a
SM
1997 case SYMBOL_VARALIAS: sym = indirect_variable (sym); goto start;
1998 case SYMBOL_PLAINVAL: return Qnil;
1999 case SYMBOL_FORWARDED:
2000 {
2001 union Lisp_Fwd *valcontents = SYMBOL_FWD (sym);
2002 if (KBOARD_OBJFWDP (valcontents))
d2a95ffb 2003 return Fframe_terminal (selected_frame);
ce5b453a
SM
2004 else if (!BUFFER_OBJFWDP (valcontents))
2005 return Qnil;
2006 }
2007 /* FALLTHROUGH */
2008 case SYMBOL_LOCALIZED:
6b61353c
KH
2009 /* For a local variable, record both the symbol and which
2010 buffer's or frame's value we are saving. */
2011 if (!NILP (Flocal_variable_p (variable, Qnil)))
2012 return Fcurrent_buffer ();
ce5b453a 2013 else if (sym->redirect == SYMBOL_LOCALIZED
a04e2c62 2014 && blv_found (SYMBOL_BLV (sym)))
ce5b453a
SM
2015 return SYMBOL_BLV (sym)->where;
2016 else
2017 return Qnil;
1088b922 2018 default: emacs_abort ();
6b61353c 2019 }
6b61353c 2020}
2a42d440 2021
c40bb1ba 2022/* This code is disabled now that we use the selected frame to return
7be68de5 2023 keyboard-local-values. */
c40bb1ba 2024#if 0
f57e2426 2025extern struct terminal *get_terminal (Lisp_Object display, int);
2a42d440 2026
a7ca3326 2027DEFUN ("terminal-local-value", Fterminal_local_value,
16a97296 2028 Sterminal_local_value, 2, 2, 0,
6ed8eeff 2029 doc: /* Return the terminal-local value of SYMBOL on TERMINAL.
2a42d440
KL
2030If SYMBOL is not a terminal-local variable, then return its normal
2031value, like `symbol-value'.
2032
708e05dc 2033TERMINAL may be a terminal object, a frame, or nil (meaning the
6ed8eeff 2034selected frame's terminal device). */)
5842a27b 2035 (Lisp_Object symbol, Lisp_Object terminal)
2a42d440
KL
2036{
2037 Lisp_Object result;
6ed8eeff
KL
2038 struct terminal *t = get_terminal (terminal, 1);
2039 push_kboard (t->kboard);
2a42d440 2040 result = Fsymbol_value (symbol);
256c9c3a 2041 pop_kboard ();
2a42d440
KL
2042 return result;
2043}
2044
a7ca3326 2045DEFUN ("set-terminal-local-value", Fset_terminal_local_value,
16a97296 2046 Sset_terminal_local_value, 3, 3, 0,
6ed8eeff 2047 doc: /* Set the terminal-local binding of SYMBOL on TERMINAL to VALUE.
2a42d440 2048If VARIABLE is not a terminal-local variable, then set its normal
7e59217d
KL
2049binding, like `set'.
2050
708e05dc 2051TERMINAL may be a terminal object, a frame, or nil (meaning the
6ed8eeff 2052selected frame's terminal device). */)
5842a27b 2053 (Lisp_Object symbol, Lisp_Object terminal, Lisp_Object value)
2a42d440
KL
2054{
2055 Lisp_Object result;
6ed8eeff 2056 struct terminal *t = get_terminal (terminal, 1);
256c9c3a 2057 push_kboard (d->kboard);
2a42d440 2058 result = Fset (symbol, value);
256c9c3a 2059 pop_kboard ();
2a42d440
KL
2060 return result;
2061}
c40bb1ba 2062#endif
7921925c 2063\f
ffd56f97
JB
2064/* Find the function at the end of a chain of symbol function indirections. */
2065
2066/* If OBJECT is a symbol, find the end of its function chain and
2067 return the value found there. If OBJECT is not a symbol, just
2068 return it. If there is a cycle in the function chain, signal a
2069 cyclic-function-indirection error.
2070
2071 This is like Findirect_function, except that it doesn't signal an
2072 error if the chain ends up unbound. */
2073Lisp_Object
971de7fb 2074indirect_function (register Lisp_Object object)
ffd56f97 2075{
eb8c3be9 2076 Lisp_Object tortoise, hare;
ffd56f97 2077
eb8c3be9 2078 hare = tortoise = object;
ffd56f97
JB
2079
2080 for (;;)
2081 {
eadf1faa 2082 if (!SYMBOLP (hare) || NILP (hare))
ffd56f97 2083 break;
c644523b 2084 hare = XSYMBOL (hare)->function;
eadf1faa 2085 if (!SYMBOLP (hare) || NILP (hare))
ffd56f97 2086 break;
c644523b 2087 hare = XSYMBOL (hare)->function;
ffd56f97 2088
c644523b 2089 tortoise = XSYMBOL (tortoise)->function;
ffd56f97 2090
eb8c3be9 2091 if (EQ (hare, tortoise))
740ef0b5 2092 xsignal1 (Qcyclic_function_indirection, object);
ffd56f97
JB
2093 }
2094
2095 return hare;
2096}
2097
a7ca3326 2098DEFUN ("indirect-function", Findirect_function, Sindirect_function, 1, 2, 0,
8c1a1077 2099 doc: /* Return the function at the end of OBJECT's function chain.
0ddb0ae8
TTN
2100If OBJECT is not a symbol, just return it. Otherwise, follow all
2101function indirections to find the final function binding and return it.
2102If the final symbol in the chain is unbound, signal a void-function error.
8350f087 2103Optional arg NOERROR non-nil means to return nil instead of signaling.
8c1a1077
PJ
2104Signal a cyclic-function-indirection error if there is a loop in the
2105function chain of symbols. */)
5842a27b 2106 (register Lisp_Object object, Lisp_Object noerror)
ffd56f97
JB
2107{
2108 Lisp_Object result;
2109
64de53d8
KS
2110 /* Optimize for no indirection. */
2111 result = object;
eadf1faa 2112 if (SYMBOLP (result) && !NILP (result)
c644523b 2113 && (result = XSYMBOL (result)->function, SYMBOLP (result)))
64de53d8 2114 result = indirect_function (result);
eadf1faa 2115 if (!NILP (result))
64de53d8 2116 return result;
ffd56f97 2117
64de53d8 2118 if (NILP (noerror))
740ef0b5 2119 xsignal1 (Qvoid_function, object);
ffd56f97 2120
64de53d8 2121 return Qnil;
ffd56f97
JB
2122}
2123\f
7abaf5cc 2124/* Extract and set vector and string elements. */
7921925c 2125
a7ca3326 2126DEFUN ("aref", Faref, Saref, 2, 2, 0,
8c1a1077
PJ
2127 doc: /* Return the element of ARRAY at index IDX.
2128ARRAY may be a vector, a string, a char-table, a bool-vector,
2129or a byte-code object. IDX starts at 0. */)
5842a27b 2130 (register Lisp_Object array, Lisp_Object idx)
7921925c 2131{
ace1712c 2132 register EMACS_INT idxval;
7921925c 2133
b7826503 2134 CHECK_NUMBER (idx);
7921925c 2135 idxval = XINT (idx);
e9ebc175 2136 if (STRINGP (array))
7921925c 2137 {
ace1712c 2138 int c;
d311d28c 2139 ptrdiff_t idxval_byte;
25638b07 2140
d5db4077 2141 if (idxval < 0 || idxval >= SCHARS (array))
c24e4efe 2142 args_out_of_range (array, idx);
25638b07 2143 if (! STRING_MULTIBYTE (array))
d5db4077 2144 return make_number ((unsigned char) SREF (array, idxval));
25638b07
RS
2145 idxval_byte = string_char_to_byte (array, idxval);
2146
62a6e103 2147 c = STRING_CHAR (SDATA (array) + idxval_byte);
25638b07 2148 return make_number (c);
7921925c 2149 }
4d276982
RS
2150 else if (BOOL_VECTOR_P (array))
2151 {
1c0a7493 2152 if (idxval < 0 || idxval >= bool_vector_size (array))
4d276982 2153 args_out_of_range (array, idx);
df5b4930 2154 return bool_vector_ref (array, idxval);
4d276982
RS
2155 }
2156 else if (CHAR_TABLE_P (array))
2157 {
e6e1f521
KH
2158 CHECK_CHARACTER (idx);
2159 return CHAR_TABLE_REF (array, idxval);
4d276982 2160 }
7921925c 2161 else
c24e4efe 2162 {
90d8445b 2163 ptrdiff_t size = 0;
7f358972 2164 if (VECTORP (array))
77b37c05 2165 size = ASIZE (array);
876c194c 2166 else if (COMPILEDP (array))
77b37c05 2167 size = ASIZE (array) & PSEUDOVECTOR_SIZE_MASK;
7f358972
RS
2168 else
2169 wrong_type_argument (Qarrayp, array);
2170
2171 if (idxval < 0 || idxval >= size)
c24e4efe 2172 args_out_of_range (array, idx);
b9598260 2173 return AREF (array, idxval);
c24e4efe 2174 }
7921925c
JB
2175}
2176
a7ca3326 2177DEFUN ("aset", Faset, Saset, 3, 3, 0,
8c1a1077 2178 doc: /* Store into the element of ARRAY at index IDX the value NEWELT.
bfb96cb7
FP
2179Return NEWELT. ARRAY may be a vector, a string, a char-table or a
2180bool-vector. IDX starts at 0. */)
5842a27b 2181 (register Lisp_Object array, Lisp_Object idx, Lisp_Object newelt)
7921925c 2182{
ace1712c 2183 register EMACS_INT idxval;
7921925c 2184
b7826503 2185 CHECK_NUMBER (idx);
7921925c 2186 idxval = XINT (idx);
0c64a8cd 2187 CHECK_ARRAY (array, Qarrayp);
7921925c
JB
2188 CHECK_IMPURE (array);
2189
e9ebc175 2190 if (VECTORP (array))
c24e4efe 2191 {
77b37c05 2192 if (idxval < 0 || idxval >= ASIZE (array))
c24e4efe 2193 args_out_of_range (array, idx);
28be1ada 2194 ASET (array, idxval, newelt);
c24e4efe 2195 }
4d276982
RS
2196 else if (BOOL_VECTOR_P (array))
2197 {
1c0a7493 2198 if (idxval < 0 || idxval >= bool_vector_size (array))
4d276982 2199 args_out_of_range (array, idx);
df5b4930 2200 bool_vector_set (array, idxval, !NILP (newelt));
4d276982
RS
2201 }
2202 else if (CHAR_TABLE_P (array))
2203 {
e6e1f521
KH
2204 CHECK_CHARACTER (idx);
2205 CHAR_TABLE_SET (array, idxval, newelt);
4d276982 2206 }
0fed43f3 2207 else
25638b07 2208 {
13bdea59 2209 int c;
25638b07 2210
d5db4077 2211 if (idxval < 0 || idxval >= SCHARS (array))
25638b07 2212 args_out_of_range (array, idx);
d9130605 2213 CHECK_CHARACTER (newelt);
13bdea59 2214 c = XFASTINT (newelt);
25638b07 2215
0fed43f3 2216 if (STRING_MULTIBYTE (array))
3c9de1af 2217 {
d311d28c
PE
2218 ptrdiff_t idxval_byte, nbytes;
2219 int prev_bytes, new_bytes;
0fed43f3
PE
2220 unsigned char workbuf[MAX_MULTIBYTE_LENGTH], *p0 = workbuf, *p1;
2221
2222 nbytes = SBYTES (array);
2223 idxval_byte = string_char_to_byte (array, idxval);
d5db4077 2224 p1 = SDATA (array) + idxval_byte;
0fed43f3
PE
2225 prev_bytes = BYTES_BY_CHAR_HEAD (*p1);
2226 new_bytes = CHAR_STRING (c, p0);
2227 if (prev_bytes != new_bytes)
2228 {
2229 /* We must relocate the string data. */
d311d28c 2230 ptrdiff_t nchars = SCHARS (array);
0fed43f3 2231 USE_SAFE_ALLOCA;
98c6f1e3 2232 unsigned char *str = SAFE_ALLOCA (nbytes);
0fed43f3 2233
0fed43f3
PE
2234 memcpy (str, SDATA (array), nbytes);
2235 allocate_string_data (XSTRING (array), nchars,
2236 nbytes + new_bytes - prev_bytes);
2237 memcpy (SDATA (array), str, idxval_byte);
2238 p1 = SDATA (array) + idxval_byte;
2239 memcpy (p1 + new_bytes, str + idxval_byte + prev_bytes,
2240 nbytes - (idxval_byte + prev_bytes));
2241 SAFE_FREE ();
2242 clear_string_char_byte_cache ();
2243 }
2244 while (new_bytes--)
2245 *p1++ = *p0++;
3c9de1af 2246 }
0fed43f3 2247 else
5dff5999 2248 {
0fed43f3
PE
2249 if (! SINGLE_BYTE_CHAR_P (c))
2250 {
2251 int i;
2252
2253 for (i = SBYTES (array) - 1; i >= 0; i--)
2254 if (SREF (array, i) >= 0x80)
2255 args_out_of_range (array, newelt);
2256 /* ARRAY is an ASCII string. Convert it to a multibyte
2257 string, and try `aset' again. */
2258 STRING_SET_MULTIBYTE (array);
2259 return Faset (array, idx, newelt);
2260 }
2261 SSET (array, idxval, c);
5dff5999 2262 }
7921925c
JB
2263 }
2264
2265 return newelt;
2266}
7921925c
JB
2267\f
2268/* Arithmetic functions */
2269
ebb99847
BR
2270Lisp_Object
2271arithcompare (Lisp_Object num1, Lisp_Object num2, enum Arith_Comparison comparison)
7921925c 2272{
6bbd7a29 2273 double f1 = 0, f2 = 0;
de1339b0 2274 bool floatp = 0;
7921925c 2275
b7826503
PJ
2276 CHECK_NUMBER_OR_FLOAT_COERCE_MARKER (num1);
2277 CHECK_NUMBER_OR_FLOAT_COERCE_MARKER (num2);
7921925c 2278
e9ebc175 2279 if (FLOATP (num1) || FLOATP (num2))
7921925c
JB
2280 {
2281 floatp = 1;
7539e11f
KR
2282 f1 = (FLOATP (num1)) ? XFLOAT_DATA (num1) : XINT (num1);
2283 f2 = (FLOATP (num2)) ? XFLOAT_DATA (num2) : XINT (num2);
7921925c 2284 }
7921925c
JB
2285
2286 switch (comparison)
2287 {
ebb99847 2288 case ARITH_EQUAL:
7921925c
JB
2289 if (floatp ? f1 == f2 : XINT (num1) == XINT (num2))
2290 return Qt;
2291 return Qnil;
2292
ebb99847 2293 case ARITH_NOTEQUAL:
7921925c
JB
2294 if (floatp ? f1 != f2 : XINT (num1) != XINT (num2))
2295 return Qt;
2296 return Qnil;
2297
ebb99847 2298 case ARITH_LESS:
7921925c
JB
2299 if (floatp ? f1 < f2 : XINT (num1) < XINT (num2))
2300 return Qt;
2301 return Qnil;
2302
ebb99847 2303 case ARITH_LESS_OR_EQUAL:
7921925c
JB
2304 if (floatp ? f1 <= f2 : XINT (num1) <= XINT (num2))
2305 return Qt;
2306 return Qnil;
2307
ebb99847 2308 case ARITH_GRTR:
7921925c
JB
2309 if (floatp ? f1 > f2 : XINT (num1) > XINT (num2))
2310 return Qt;
2311 return Qnil;
2312
ebb99847 2313 case ARITH_GRTR_OR_EQUAL:
7921925c
JB
2314 if (floatp ? f1 >= f2 : XINT (num1) >= XINT (num2))
2315 return Qt;
2316 return Qnil;
25e40a4b
JB
2317
2318 default:
1088b922 2319 emacs_abort ();
7921925c
JB
2320 }
2321}
2322
ebb99847
BR
2323static Lisp_Object
2324arithcompare_driver (ptrdiff_t nargs, Lisp_Object *args,
2325 enum Arith_Comparison comparison)
7921925c 2326{
56a0e352
PE
2327 ptrdiff_t argnum;
2328 for (argnum = 1; argnum < nargs; ++argnum)
ebb99847
BR
2329 {
2330 if (EQ (Qnil, arithcompare (args[argnum-1], args[argnum], comparison)))
2331 return Qnil;
2332 }
2333 return Qt;
7921925c
JB
2334}
2335
ebb99847 2336DEFUN ("=", Feqlsign, Seqlsign, 1, MANY, 0,
53482f41
DA
2337 doc: /* Return t if args, all numbers or markers, are equal.
2338usage: (= NUMBER-OR-MARKER &rest NUMBERS-OR-MARKERS) */)
ebb99847 2339 (ptrdiff_t nargs, Lisp_Object *args)
7921925c 2340{
ebb99847 2341 return arithcompare_driver (nargs, args, ARITH_EQUAL);
7921925c
JB
2342}
2343
ebb99847 2344DEFUN ("<", Flss, Slss, 1, MANY, 0,
7b385b02 2345 doc: /* Return t if each arg (a number or marker), is less than the next arg.
53482f41 2346usage: (< NUMBER-OR-MARKER &rest NUMBERS-OR-MARKERS) */)
ebb99847 2347 (ptrdiff_t nargs, Lisp_Object *args)
7921925c 2348{
ebb99847 2349 return arithcompare_driver (nargs, args, ARITH_LESS);
7921925c
JB
2350}
2351
ebb99847 2352DEFUN (">", Fgtr, Sgtr, 1, MANY, 0,
7b385b02 2353 doc: /* Return t if each arg (a number or marker) is greater than the next arg.
53482f41 2354usage: (> NUMBER-OR-MARKER &rest NUMBERS-OR-MARKERS) */)
ebb99847 2355 (ptrdiff_t nargs, Lisp_Object *args)
7921925c 2356{
ebb99847 2357 return arithcompare_driver (nargs, args, ARITH_GRTR);
7921925c
JB
2358}
2359
ebb99847 2360DEFUN ("<=", Fleq, Sleq, 1, MANY, 0,
7b385b02 2361 doc: /* Return t if each arg (a number or marker) is less than or equal to the next.
53482f41 2362usage: (<= NUMBER-OR-MARKER &rest NUMBERS-OR-MARKERS) */)
ebb99847
BR
2363 (ptrdiff_t nargs, Lisp_Object *args)
2364{
2365 return arithcompare_driver (nargs, args, ARITH_LESS_OR_EQUAL);
2366}
2367
2368DEFUN (">=", Fgeq, Sgeq, 1, MANY, 0,
7b385b02 2369 doc: /* Return t if each arg (a number or marker) is greater than or equal to the next.
bd21bf41 2370usage: (>= NUMBER-OR-MARKER &rest NUMBERS-OR-MARKERS) */)
ebb99847 2371 (ptrdiff_t nargs, Lisp_Object *args)
7921925c 2372{
ebb99847 2373 return arithcompare_driver (nargs, args, ARITH_GRTR_OR_EQUAL);
7921925c
JB
2374}
2375
2376DEFUN ("/=", Fneq, Sneq, 2, 2, 0,
8c1a1077 2377 doc: /* Return t if first arg is not equal to second arg. Both must be numbers or markers. */)
5842a27b 2378 (register Lisp_Object num1, Lisp_Object num2)
7921925c 2379{
ebb99847 2380 return arithcompare (num1, num2, ARITH_NOTEQUAL);
7921925c
JB
2381}
2382
a7ca3326 2383DEFUN ("zerop", Fzerop, Szerop, 1, 1, 0,
8c1a1077 2384 doc: /* Return t if NUMBER is zero. */)
5842a27b 2385 (register Lisp_Object number)
7921925c 2386{
b7826503 2387 CHECK_NUMBER_OR_FLOAT (number);
7921925c 2388
d9c2a0f2 2389 if (FLOATP (number))
7921925c 2390 {
7539e11f 2391 if (XFLOAT_DATA (number) == 0.0)
7921925c
JB
2392 return Qt;
2393 return Qnil;
2394 }
7921925c 2395
d9c2a0f2 2396 if (!XINT (number))
7921925c
JB
2397 return Qt;
2398 return Qnil;
2399}
2400\f
be44ca6c
PE
2401/* Convert the cons-of-integers, integer, or float value C to an
2402 unsigned value with maximum value MAX. Signal an error if C does not
2403 have a valid format or is out of range. */
2404uintmax_t
2405cons_to_unsigned (Lisp_Object c, uintmax_t max)
2406{
de1339b0 2407 bool valid = 0;
be44ca6c
PE
2408 uintmax_t val IF_LINT (= 0);
2409 if (INTEGERP (c))
2410 {
2411 valid = 0 <= XINT (c);
2412 val = XINT (c);
2413 }
2414 else if (FLOATP (c))
2415 {
2416 double d = XFLOAT_DATA (c);
2417 if (0 <= d
2418 && d < (max == UINTMAX_MAX ? (double) UINTMAX_MAX + 1 : max + 1))
2419 {
2420 val = d;
2421 valid = 1;
2422 }
2423 }
2424 else if (CONSP (c) && NATNUMP (XCAR (c)))
2425 {
2426 uintmax_t top = XFASTINT (XCAR (c));
2427 Lisp_Object rest = XCDR (c);
2428 if (top <= UINTMAX_MAX >> 24 >> 16
2429 && CONSP (rest)
2430 && NATNUMP (XCAR (rest)) && XFASTINT (XCAR (rest)) < 1 << 24
2431 && NATNUMP (XCDR (rest)) && XFASTINT (XCDR (rest)) < 1 << 16)
2432 {
2433 uintmax_t mid = XFASTINT (XCAR (rest));
2434 val = top << 24 << 16 | mid << 16 | XFASTINT (XCDR (rest));
2435 valid = 1;
2436 }
2437 else if (top <= UINTMAX_MAX >> 16)
2438 {
2439 if (CONSP (rest))
2440 rest = XCAR (rest);
2441 if (NATNUMP (rest) && XFASTINT (rest) < 1 << 16)
2442 {
2443 val = top << 16 | XFASTINT (rest);
2444 valid = 1;
2445 }
2446 }
2447 }
51cf3e31 2448
be44ca6c
PE
2449 if (! (valid && val <= max))
2450 error ("Not an in-range integer, float, or cons of integers");
2451 return val;
51cf3e31
JB
2452}
2453
be44ca6c
PE
2454/* Convert the cons-of-integers, integer, or float value C to a signed
2455 value with extrema MIN and MAX. Signal an error if C does not have
2456 a valid format or is out of range. */
2457intmax_t
2458cons_to_signed (Lisp_Object c, intmax_t min, intmax_t max)
51cf3e31 2459{
de1339b0 2460 bool valid = 0;
be44ca6c 2461 intmax_t val IF_LINT (= 0);
51cf3e31 2462 if (INTEGERP (c))
be44ca6c
PE
2463 {
2464 val = XINT (c);
2465 valid = 1;
2466 }
2467 else if (FLOATP (c))
2468 {
2469 double d = XFLOAT_DATA (c);
2470 if (min <= d
2471 && d < (max == INTMAX_MAX ? (double) INTMAX_MAX + 1 : max + 1))
2472 {
2473 val = d;
2474 valid = 1;
2475 }
2476 }
2477 else if (CONSP (c) && INTEGERP (XCAR (c)))
2478 {
2479 intmax_t top = XINT (XCAR (c));
2480 Lisp_Object rest = XCDR (c);
2481 if (INTMAX_MIN >> 24 >> 16 <= top && top <= INTMAX_MAX >> 24 >> 16
2482 && CONSP (rest)
2483 && NATNUMP (XCAR (rest)) && XFASTINT (XCAR (rest)) < 1 << 24
2484 && NATNUMP (XCDR (rest)) && XFASTINT (XCDR (rest)) < 1 << 16)
2485 {
2486 intmax_t mid = XFASTINT (XCAR (rest));
2487 val = top << 24 << 16 | mid << 16 | XFASTINT (XCDR (rest));
2488 valid = 1;
2489 }
2490 else if (INTMAX_MIN >> 16 <= top && top <= INTMAX_MAX >> 16)
2491 {
2492 if (CONSP (rest))
2493 rest = XCAR (rest);
2494 if (NATNUMP (rest) && XFASTINT (rest) < 1 << 16)
2495 {
2496 val = top << 16 | XFASTINT (rest);
2497 valid = 1;
2498 }
2499 }
2500 }
2501
2502 if (! (valid && min <= val && val <= max))
2503 error ("Not an in-range integer, float, or cons of integers");
2504 return val;
51cf3e31
JB
2505}
2506\f
a7ca3326 2507DEFUN ("number-to-string", Fnumber_to_string, Snumber_to_string, 1, 1, 0,
bfb96cb7 2508 doc: /* Return the decimal representation of NUMBER as a string.
8c1a1077
PJ
2509Uses a minus sign if negative.
2510NUMBER may be an integer or a floating point number. */)
5842a27b 2511 (Lisp_Object number)
7921925c 2512{
99027bdd
PE
2513 char buffer[max (FLOAT_TO_STRING_BUFSIZE, INT_BUFSIZE_BOUND (EMACS_INT))];
2514 int len;
7921925c 2515
b7826503 2516 CHECK_NUMBER_OR_FLOAT (number);
7921925c 2517
d9c2a0f2 2518 if (FLOATP (number))
99027bdd
PE
2519 len = float_to_string (buffer, XFLOAT_DATA (number));
2520 else
2521 len = sprintf (buffer, "%"pI"d", XINT (number));
7921925c 2522
99027bdd 2523 return make_unibyte_string (buffer, len);
7921925c
JB
2524}
2525
a7ca3326 2526DEFUN ("string-to-number", Fstring_to_number, Sstring_to_number, 1, 2, 0,
558ee900 2527 doc: /* Parse STRING as a decimal number and return the number.
12cb2b06
PE
2528Ignore leading spaces and tabs, and all trailing chars. Return 0 if
2529STRING cannot be parsed as an integer or floating point number.
8c1a1077
PJ
2530
2531If BASE, interpret STRING as a number in that base. If BASE isn't
2532present, base 10 is used. BASE must be between 2 and 16 (inclusive).
12cb2b06 2533If the base used is not 10, STRING is always parsed as an integer. */)
5842a27b 2534 (register Lisp_Object string, Lisp_Object base)
7921925c 2535{
57ace6d0 2536 register char *p;
342858a5 2537 register int b;
452f4150 2538 Lisp_Object val;
25e40a4b 2539
b7826503 2540 CHECK_STRING (string);
7921925c 2541
3883fbeb
RS
2542 if (NILP (base))
2543 b = 10;
2544 else
2545 {
b7826503 2546 CHECK_NUMBER (base);
d311d28c 2547 if (! (2 <= XINT (base) && XINT (base) <= 16))
740ef0b5 2548 xsignal1 (Qargs_out_of_range, base);
d311d28c 2549 b = XINT (base);
3883fbeb
RS
2550 }
2551
57ace6d0 2552 p = SSDATA (string);
0a3e4d65 2553 while (*p == ' ' || *p == '\t')
25e40a4b
JB
2554 p++;
2555
452f4150
PE
2556 val = string_to_number (p, b, 1);
2557 return NILP (val) ? make_number (0) : val;
7921925c 2558}
7403b5c8 2559\f
7921925c 2560enum arithop
7a283f36
GM
2561 {
2562 Aadd,
2563 Asub,
2564 Amult,
2565 Adiv,
2566 Alogand,
2567 Alogior,
2568 Alogxor,
2569 Amax,
2570 Amin
2571 };
2572
f66c7cf8
PE
2573static Lisp_Object float_arith_driver (double, ptrdiff_t, enum arithop,
2574 ptrdiff_t, Lisp_Object *);
112396d6 2575static Lisp_Object
f66c7cf8 2576arith_driver (enum arithop code, ptrdiff_t nargs, Lisp_Object *args)
7921925c 2577{
de1339b0
PE
2578 Lisp_Object val;
2579 ptrdiff_t argnum, ok_args;
2580 EMACS_INT accum = 0;
2581 EMACS_INT next, ok_accum;
2582 bool overflow = 0;
0ae6bdee 2583
7393bcbb 2584 switch (code)
7921925c
JB
2585 {
2586 case Alogior:
2587 case Alogxor:
2588 case Aadd:
2589 case Asub:
7a283f36
GM
2590 accum = 0;
2591 break;
7921925c 2592 case Amult:
7a283f36
GM
2593 accum = 1;
2594 break;
7921925c 2595 case Alogand:
7a283f36
GM
2596 accum = -1;
2597 break;
2598 default:
2599 break;
7921925c
JB
2600 }
2601
2602 for (argnum = 0; argnum < nargs; argnum++)
2603 {
0ae6bdee
PE
2604 if (! overflow)
2605 {
2606 ok_args = argnum;
2607 ok_accum = accum;
2608 }
2609
7a283f36
GM
2610 /* Using args[argnum] as argument to CHECK_NUMBER_... */
2611 val = args[argnum];
b7826503 2612 CHECK_NUMBER_OR_FLOAT_COERCE_MARKER (val);
7921925c 2613
7a283f36 2614 if (FLOATP (val))
0ae6bdee 2615 return float_arith_driver (ok_accum, ok_args, code,
7a283f36
GM
2616 nargs, args);
2617 args[argnum] = val;
7921925c 2618 next = XINT (args[argnum]);
7393bcbb 2619 switch (code)
7921925c 2620 {
7a283f36 2621 case Aadd:
0ae6bdee
PE
2622 if (INT_ADD_OVERFLOW (accum, next))
2623 {
2624 overflow = 1;
2625 accum &= INTMASK;
2626 }
7a283f36
GM
2627 accum += next;
2628 break;
7921925c 2629 case Asub:
0ae6bdee
PE
2630 if (INT_SUBTRACT_OVERFLOW (accum, next))
2631 {
2632 overflow = 1;
2633 accum &= INTMASK;
2634 }
e64981da 2635 accum = argnum ? accum - next : nargs == 1 ? - next : next;
7921925c 2636 break;
7a283f36 2637 case Amult:
0ae6bdee
PE
2638 if (INT_MULTIPLY_OVERFLOW (accum, next))
2639 {
c8a9ca5a 2640 EMACS_UINT a = accum, b = next, ab = a * b;
0ae6bdee 2641 overflow = 1;
c8a9ca5a 2642 accum = ab & INTMASK;
0ae6bdee
PE
2643 }
2644 else
2645 accum *= next;
7a283f36 2646 break;
7921925c 2647 case Adiv:
7a283f36
GM
2648 if (!argnum)
2649 accum = next;
87fbf902
RS
2650 else
2651 {
2652 if (next == 0)
740ef0b5 2653 xsignal0 (Qarith_error);
87fbf902
RS
2654 accum /= next;
2655 }
7921925c 2656 break;
7a283f36
GM
2657 case Alogand:
2658 accum &= next;
2659 break;
2660 case Alogior:
2661 accum |= next;
2662 break;
2663 case Alogxor:
2664 accum ^= next;
2665 break;
2666 case Amax:
2667 if (!argnum || next > accum)
2668 accum = next;
2669 break;
2670 case Amin:
2671 if (!argnum || next < accum)
2672 accum = next;
2673 break;
7921925c
JB
2674 }
2675 }
2676
f187f1f7 2677 XSETINT (val, accum);
7921925c
JB
2678 return val;
2679}
2680
1a2f2d33
KH
2681#undef isnan
2682#define isnan(x) ((x) != (x))
2683
7a283f36 2684static Lisp_Object
f66c7cf8
PE
2685float_arith_driver (double accum, ptrdiff_t argnum, enum arithop code,
2686 ptrdiff_t nargs, Lisp_Object *args)
7921925c
JB
2687{
2688 register Lisp_Object val;
2689 double next;
7403b5c8 2690
7921925c
JB
2691 for (; argnum < nargs; argnum++)
2692 {
2693 val = args[argnum]; /* using args[argnum] as argument to CHECK_NUMBER_... */
b7826503 2694 CHECK_NUMBER_OR_FLOAT_COERCE_MARKER (val);
7921925c 2695
e9ebc175 2696 if (FLOATP (val))
7921925c 2697 {
7539e11f 2698 next = XFLOAT_DATA (val);
7921925c
JB
2699 }
2700 else
2701 {
2702 args[argnum] = val; /* runs into a compiler bug. */
2703 next = XINT (args[argnum]);
2704 }
7393bcbb 2705 switch (code)
7921925c
JB
2706 {
2707 case Aadd:
2708 accum += next;
2709 break;
2710 case Asub:
e64981da 2711 accum = argnum ? accum - next : nargs == 1 ? - next : next;
7921925c
JB
2712 break;
2713 case Amult:
2714 accum *= next;
2715 break;
2716 case Adiv:
2717 if (!argnum)
2718 accum = next;
2719 else
87fbf902 2720 {
ad8d56b9 2721 if (! IEEE_FLOATING_POINT && next == 0)
740ef0b5 2722 xsignal0 (Qarith_error);
87fbf902
RS
2723 accum /= next;
2724 }
7921925c
JB
2725 break;
2726 case Alogand:
2727 case Alogior:
2728 case Alogxor:
2729 return wrong_type_argument (Qinteger_or_marker_p, val);
2730 case Amax:
1a2f2d33 2731 if (!argnum || isnan (next) || next > accum)
7921925c
JB
2732 accum = next;
2733 break;
2734 case Amin:
1a2f2d33 2735 if (!argnum || isnan (next) || next < accum)
7921925c
JB
2736 accum = next;
2737 break;
2738 }
2739 }
2740
2741 return make_float (accum);
2742}
cc94f3b2 2743
7921925c 2744
a7ca3326 2745DEFUN ("+", Fplus, Splus, 0, MANY, 0,
8c1a1077
PJ
2746 doc: /* Return sum of any number of arguments, which are numbers or markers.
2747usage: (+ &rest NUMBERS-OR-MARKERS) */)
f66c7cf8 2748 (ptrdiff_t nargs, Lisp_Object *args)
7921925c
JB
2749{
2750 return arith_driver (Aadd, nargs, args);
2751}
2752
a7ca3326 2753DEFUN ("-", Fminus, Sminus, 0, MANY, 0,
558ee900 2754 doc: /* Negate number or subtract numbers or markers and return the result.
8c1a1077 2755With one arg, negates it. With more than one arg,
f44fba9e 2756subtracts all but the first from the first.
8c1a1077 2757usage: (- &optional NUMBER-OR-MARKER &rest MORE-NUMBERS-OR-MARKERS) */)
f66c7cf8 2758 (ptrdiff_t nargs, Lisp_Object *args)
7921925c
JB
2759{
2760 return arith_driver (Asub, nargs, args);
2761}
2762
a7ca3326 2763DEFUN ("*", Ftimes, Stimes, 0, MANY, 0,
be24eadf 2764 doc: /* Return product of any number of arguments, which are numbers or markers.
8c1a1077 2765usage: (* &rest NUMBERS-OR-MARKERS) */)
f66c7cf8 2766 (ptrdiff_t nargs, Lisp_Object *args)
7921925c
JB
2767{
2768 return arith_driver (Amult, nargs, args);
2769}
2770
32e5c58c 2771DEFUN ("/", Fquo, Squo, 1, MANY, 0,
be24eadf 2772 doc: /* Return first argument divided by all the remaining arguments.
f44fba9e 2773The arguments must be numbers or markers.
32e5c58c 2774usage: (/ DIVIDEND &rest DIVISORS) */)
f66c7cf8 2775 (ptrdiff_t nargs, Lisp_Object *args)
7921925c 2776{
f66c7cf8 2777 ptrdiff_t argnum;
7ef98053 2778 for (argnum = 2; argnum < nargs; argnum++)
28712a21
JB
2779 if (FLOATP (args[argnum]))
2780 return float_arith_driver (0, 0, Adiv, nargs, args);
7921925c
JB
2781 return arith_driver (Adiv, nargs, args);
2782}
2783
a7ca3326 2784DEFUN ("%", Frem, Srem, 2, 2, 0,
be24eadf 2785 doc: /* Return remainder of X divided by Y.
8c1a1077 2786Both must be integers or markers. */)
5842a27b 2787 (register Lisp_Object x, Lisp_Object y)
7921925c
JB
2788{
2789 Lisp_Object val;
2790
b7826503
PJ
2791 CHECK_NUMBER_COERCE_MARKER (x);
2792 CHECK_NUMBER_COERCE_MARKER (y);
7921925c 2793
d311d28c 2794 if (XINT (y) == 0)
740ef0b5 2795 xsignal0 (Qarith_error);
87fbf902 2796
d9c2a0f2 2797 XSETINT (val, XINT (x) % XINT (y));
7921925c
JB
2798 return val;
2799}
2800
44fa9da5 2801DEFUN ("mod", Fmod, Smod, 2, 2, 0,
be24eadf 2802 doc: /* Return X modulo Y.
8c1a1077
PJ
2803The result falls between zero (inclusive) and Y (exclusive).
2804Both X and Y must be numbers or markers. */)
5842a27b 2805 (register Lisp_Object x, Lisp_Object y)
44fa9da5
PE
2806{
2807 Lisp_Object val;
5260234d 2808 EMACS_INT i1, i2;
44fa9da5 2809
b7826503
PJ
2810 CHECK_NUMBER_OR_FLOAT_COERCE_MARKER (x);
2811 CHECK_NUMBER_OR_FLOAT_COERCE_MARKER (y);
44fa9da5 2812
d9c2a0f2 2813 if (FLOATP (x) || FLOATP (y))
ad8d56b9
PE
2814 return fmod_float (x, y);
2815
d9c2a0f2
EN
2816 i1 = XINT (x);
2817 i2 = XINT (y);
44fa9da5
PE
2818
2819 if (i2 == 0)
740ef0b5 2820 xsignal0 (Qarith_error);
7403b5c8 2821
44fa9da5
PE
2822 i1 %= i2;
2823
2824 /* If the "remainder" comes out with the wrong sign, fix it. */
04f7ec69 2825 if (i2 < 0 ? i1 > 0 : i1 < 0)
44fa9da5
PE
2826 i1 += i2;
2827
f187f1f7 2828 XSETINT (val, i1);
44fa9da5
PE
2829 return val;
2830}
2831
a7ca3326 2832DEFUN ("max", Fmax, Smax, 1, MANY, 0,
8c1a1077 2833 doc: /* Return largest of all the arguments (which must be numbers or markers).
f44fba9e 2834The value is always a number; markers are converted to numbers.
8c1a1077 2835usage: (max NUMBER-OR-MARKER &rest NUMBERS-OR-MARKERS) */)
f66c7cf8 2836 (ptrdiff_t nargs, Lisp_Object *args)
7921925c
JB
2837{
2838 return arith_driver (Amax, nargs, args);
2839}
2840
a7ca3326 2841DEFUN ("min", Fmin, Smin, 1, MANY, 0,
8c1a1077 2842 doc: /* Return smallest of all the arguments (which must be numbers or markers).
f44fba9e 2843The value is always a number; markers are converted to numbers.
8c1a1077 2844usage: (min NUMBER-OR-MARKER &rest NUMBERS-OR-MARKERS) */)
f66c7cf8 2845 (ptrdiff_t nargs, Lisp_Object *args)
7921925c
JB
2846{
2847 return arith_driver (Amin, nargs, args);
2848}
2849
2850DEFUN ("logand", Flogand, Slogand, 0, MANY, 0,
8c1a1077 2851 doc: /* Return bitwise-and of all the arguments.
f44fba9e 2852Arguments may be integers, or markers converted to integers.
8c1a1077 2853usage: (logand &rest INTS-OR-MARKERS) */)
f66c7cf8 2854 (ptrdiff_t nargs, Lisp_Object *args)
7921925c
JB
2855{
2856 return arith_driver (Alogand, nargs, args);
2857}
2858
2859DEFUN ("logior", Flogior, Slogior, 0, MANY, 0,
8c1a1077 2860 doc: /* Return bitwise-or of all the arguments.
f44fba9e 2861Arguments may be integers, or markers converted to integers.
8c1a1077 2862usage: (logior &rest INTS-OR-MARKERS) */)
f66c7cf8 2863 (ptrdiff_t nargs, Lisp_Object *args)
7921925c
JB
2864{
2865 return arith_driver (Alogior, nargs, args);
2866}
2867
2868DEFUN ("logxor", Flogxor, Slogxor, 0, MANY, 0,
8c1a1077 2869 doc: /* Return bitwise-exclusive-or of all the arguments.
f44fba9e 2870Arguments may be integers, or markers converted to integers.
31fb1b2c 2871usage: (logxor &rest INTS-OR-MARKERS) */)
f66c7cf8 2872 (ptrdiff_t nargs, Lisp_Object *args)
7921925c
JB
2873{
2874 return arith_driver (Alogxor, nargs, args);
2875}
2876
2877DEFUN ("ash", Fash, Sash, 2, 2, 0,
8c1a1077
PJ
2878 doc: /* Return VALUE with its bits shifted left by COUNT.
2879If COUNT is negative, shifting is actually to the right.
2880In this case, the sign bit is duplicated. */)
5842a27b 2881 (register Lisp_Object value, Lisp_Object count)
7921925c
JB
2882{
2883 register Lisp_Object val;
2884
b7826503
PJ
2885 CHECK_NUMBER (value);
2886 CHECK_NUMBER (count);
7921925c 2887
81d70626
RS
2888 if (XINT (count) >= BITS_PER_EMACS_INT)
2889 XSETINT (val, 0);
2890 else if (XINT (count) > 0)
3d9652eb 2891 XSETINT (val, XINT (value) << XFASTINT (count));
81d70626
RS
2892 else if (XINT (count) <= -BITS_PER_EMACS_INT)
2893 XSETINT (val, XINT (value) < 0 ? -1 : 0);
7921925c 2894 else
3d9652eb 2895 XSETINT (val, XINT (value) >> -XINT (count));
7921925c
JB
2896 return val;
2897}
2898
2899DEFUN ("lsh", Flsh, Slsh, 2, 2, 0,
8c1a1077
PJ
2900 doc: /* Return VALUE with its bits shifted left by COUNT.
2901If COUNT is negative, shifting is actually to the right.
3a9b1297 2902In this case, zeros are shifted in on the left. */)
5842a27b 2903 (register Lisp_Object value, Lisp_Object count)
7921925c
JB
2904{
2905 register Lisp_Object val;
2906
b7826503
PJ
2907 CHECK_NUMBER (value);
2908 CHECK_NUMBER (count);
7921925c 2909
81d70626
RS
2910 if (XINT (count) >= BITS_PER_EMACS_INT)
2911 XSETINT (val, 0);
2912 else if (XINT (count) > 0)
c8a9ca5a 2913 XSETINT (val, XUINT (value) << XFASTINT (count));
81d70626
RS
2914 else if (XINT (count) <= -BITS_PER_EMACS_INT)
2915 XSETINT (val, 0);
7921925c 2916 else
c8a9ca5a 2917 XSETINT (val, XUINT (value) >> -XINT (count));
7921925c
JB
2918 return val;
2919}
2920
a7ca3326 2921DEFUN ("1+", Fadd1, Sadd1, 1, 1, 0,
8c1a1077
PJ
2922 doc: /* Return NUMBER plus one. NUMBER may be a number or a marker.
2923Markers are converted to integers. */)
5842a27b 2924 (register Lisp_Object number)
7921925c 2925{
b7826503 2926 CHECK_NUMBER_OR_FLOAT_COERCE_MARKER (number);
7921925c 2927
d9c2a0f2 2928 if (FLOATP (number))
7539e11f 2929 return (make_float (1.0 + XFLOAT_DATA (number)));
7921925c 2930
d9c2a0f2
EN
2931 XSETINT (number, XINT (number) + 1);
2932 return number;
7921925c
JB
2933}
2934
a7ca3326 2935DEFUN ("1-", Fsub1, Ssub1, 1, 1, 0,
8c1a1077
PJ
2936 doc: /* Return NUMBER minus one. NUMBER may be a number or a marker.
2937Markers are converted to integers. */)
5842a27b 2938 (register Lisp_Object number)
7921925c 2939{
b7826503 2940 CHECK_NUMBER_OR_FLOAT_COERCE_MARKER (number);
7921925c 2941
d9c2a0f2 2942 if (FLOATP (number))
7539e11f 2943 return (make_float (-1.0 + XFLOAT_DATA (number)));
7921925c 2944
d9c2a0f2
EN
2945 XSETINT (number, XINT (number) - 1);
2946 return number;
7921925c
JB
2947}
2948
2949DEFUN ("lognot", Flognot, Slognot, 1, 1, 0,
8c1a1077 2950 doc: /* Return the bitwise complement of NUMBER. NUMBER must be an integer. */)
5842a27b 2951 (register Lisp_Object number)
7921925c 2952{
b7826503 2953 CHECK_NUMBER (number);
53924017 2954 XSETINT (number, ~XINT (number));
d9c2a0f2 2955 return number;
7921925c 2956}
6b61353c 2957
a7ca3326 2958DEFUN ("byteorder", Fbyteorder, Sbyteorder, 0, 0, 0,
6b61353c
KH
2959 doc: /* Return the byteorder for the machine.
2960Returns 66 (ASCII uppercase B) for big endian machines or 108 (ASCII
2961lowercase l) for small endian machines. */)
5842a27b 2962 (void)
6b61353c
KH
2963{
2964 unsigned i = 0x04030201;
2965 int order = *(char *)&i == 1 ? 108 : 66;
2966
2967 return make_number (order);
2968}
2969
3e0b94e7
DC
2970/* Because we round up the bool vector allocate size to word_size
2971 units, we can safely read past the "end" of the vector in the
2cf00efc 2972 operations below. These extra bits are always zero. */
3e0b94e7 2973
87c4314d 2974static bits_word
f2752e01 2975bool_vector_spare_mask (EMACS_INT nr_bits)
3e0b94e7 2976{
87c4314d 2977 return (((bits_word) 1) << (nr_bits % BITS_PER_BITS_WORD)) - 1;
3e0b94e7
DC
2978}
2979
2cf00efc
PE
2980/* Info about unsigned long long, falling back on unsigned long
2981 if unsigned long long is not available. */
2982
13a5993b 2983#if HAVE_UNSIGNED_LONG_LONG_INT && defined ULLONG_MAX
2cf00efc 2984enum { BITS_PER_ULL = CHAR_BIT * sizeof (unsigned long long) };
56a0e352 2985# define ULL_MAX ULLONG_MAX
3e0b94e7 2986#else
2cf00efc 2987enum { BITS_PER_ULL = CHAR_BIT * sizeof (unsigned long) };
56a0e352 2988# define ULL_MAX ULONG_MAX
2cf00efc 2989# define count_one_bits_ll count_one_bits_l
56a0e352 2990# define count_trailing_zeros_ll count_trailing_zeros_l
3e0b94e7
DC
2991#endif
2992
2cf00efc
PE
2993/* Shift VAL right by the width of an unsigned long long.
2994 BITS_PER_ULL must be less than BITS_PER_BITS_WORD. */
2995
2996static bits_word
2997shift_right_ull (bits_word w)
2998{
2999 /* Pacify bogus GCC warning about shift count exceeding type width. */
3000 int shift = BITS_PER_ULL - BITS_PER_BITS_WORD < 0 ? BITS_PER_ULL : 0;
3001 return w >> shift;
3002}
3003
3004/* Return the number of 1 bits in W. */
3005
3006static int
3007count_one_bits_word (bits_word w)
3008{
3009 if (BITS_WORD_MAX <= UINT_MAX)
3010 return count_one_bits (w);
3011 else if (BITS_WORD_MAX <= ULONG_MAX)
3012 return count_one_bits_l (w);
3013 else
3014 {
3015 int i = 0, count = 0;
3016 while (count += count_one_bits_ll (w),
0fadc0b0 3017 (i += BITS_PER_ULL) < BITS_PER_BITS_WORD)
2cf00efc
PE
3018 w = shift_right_ull (w);
3019 return count;
3020 }
3021}
3022
3e0b94e7
DC
3023enum bool_vector_op { bool_vector_exclusive_or,
3024 bool_vector_union,
3025 bool_vector_intersection,
3026 bool_vector_set_difference,
3027 bool_vector_subsetp };
3028
7be68de5 3029static Lisp_Object
23e79746
PE
3030bool_vector_binop_driver (Lisp_Object a,
3031 Lisp_Object b,
3e0b94e7
DC
3032 Lisp_Object dest,
3033 enum bool_vector_op op)
3034{
3035 EMACS_INT nr_bits;
23e79746 3036 bits_word *adata, *bdata, *destdata;
87d86601 3037 ptrdiff_t i = 0;
3e0b94e7
DC
3038 ptrdiff_t nr_words;
3039
23e79746
PE
3040 CHECK_BOOL_VECTOR (a);
3041 CHECK_BOOL_VECTOR (b);
3e0b94e7 3042
23e79746
PE
3043 nr_bits = bool_vector_size (a);
3044 if (bool_vector_size (b) != nr_bits)
3045 wrong_length_argument (a, b, dest);
3e0b94e7 3046
87d86601 3047 nr_words = bool_vector_words (nr_bits);
23e79746
PE
3048 adata = bool_vector_data (a);
3049 bdata = bool_vector_data (b);
87d86601 3050
3e0b94e7
DC
3051 if (NILP (dest))
3052 {
2cf00efc 3053 dest = make_uninit_bool_vector (nr_bits);
23e79746 3054 destdata = bool_vector_data (dest);
3e0b94e7
DC
3055 }
3056 else
3057 {
3058 CHECK_BOOL_VECTOR (dest);
23e79746 3059 destdata = bool_vector_data (dest);
454e2fb9 3060 if (bool_vector_size (dest) != nr_bits)
23e79746 3061 wrong_length_argument (a, b, dest);
3e0b94e7 3062
87d86601
PE
3063 switch (op)
3064 {
3065 case bool_vector_exclusive_or:
75360f19
PE
3066 for (; i < nr_words; i++)
3067 if (destdata[i] != (adata[i] ^ bdata[i]))
3068 goto set_dest;
87d86601 3069 break;
7be68de5 3070
87d86601 3071 case bool_vector_subsetp:
75360f19
PE
3072 for (; i < nr_words; i++)
3073 if (adata[i] &~ bdata[i])
87d86601 3074 return Qnil;
75360f19
PE
3075 return Qt;
3076
3077 case bool_vector_union:
3078 for (; i < nr_words; i++)
3079 if (destdata[i] != (adata[i] | bdata[i]))
3080 goto set_dest;
87d86601
PE
3081 break;
3082
3083 case bool_vector_intersection:
75360f19
PE
3084 for (; i < nr_words; i++)
3085 if (destdata[i] != (adata[i] & bdata[i]))
3086 goto set_dest;
87d86601 3087 break;
2cf00efc 3088
87d86601 3089 case bool_vector_set_difference:
75360f19
PE
3090 for (; i < nr_words; i++)
3091 if (destdata[i] != (adata[i] &~ bdata[i]))
3092 goto set_dest;
87d86601
PE
3093 break;
3094 }
75360f19
PE
3095
3096 return Qnil;
87d86601
PE
3097 }
3098
75360f19 3099 set_dest:
87d86601 3100 switch (op)
3e0b94e7 3101 {
87d86601 3102 case bool_vector_exclusive_or:
75360f19 3103 for (; i < nr_words; i++)
23e79746 3104 destdata[i] = adata[i] ^ bdata[i];
87d86601
PE
3105 break;
3106
3107 case bool_vector_union:
75360f19 3108 for (; i < nr_words; i++)
23e79746 3109 destdata[i] = adata[i] | bdata[i];
87d86601 3110 break;
3e0b94e7 3111
87d86601 3112 case bool_vector_intersection:
75360f19 3113 for (; i < nr_words; i++)
23e79746 3114 destdata[i] = adata[i] & bdata[i];
87d86601 3115 break;
3e0b94e7 3116
87d86601 3117 case bool_vector_set_difference:
75360f19 3118 for (; i < nr_words; i++)
23e79746 3119 destdata[i] = adata[i] &~ bdata[i];
87d86601 3120 break;
75360f19
PE
3121
3122 default:
3123 eassume (0);
3e0b94e7 3124 }
7be68de5 3125
87d86601 3126 return dest;
3e0b94e7
DC
3127}
3128
2fcc742f
PE
3129/* PRECONDITION must be true. Return VALUE. This odd construction
3130 works around a bogus GCC diagnostic "shift count >= width of type". */
3131
3132static int
3133pre_value (bool precondition, int value)
3134{
3135 eassume (precondition);
3136 return precondition ? value : 0;
3137}
3138
3e0b94e7
DC
3139/* Compute the number of trailing zero bits in val. If val is zero,
3140 return the number of bits in val. */
595e113b 3141static int
87c4314d 3142count_trailing_zero_bits (bits_word val)
3e0b94e7 3143{
87c4314d 3144 if (BITS_WORD_MAX == UINT_MAX)
595e113b 3145 return count_trailing_zeros (val);
87c4314d 3146 if (BITS_WORD_MAX == ULONG_MAX)
595e113b 3147 return count_trailing_zeros_l (val);
56a0e352 3148 if (BITS_WORD_MAX == ULL_MAX)
595e113b 3149 return count_trailing_zeros_ll (val);
595e113b 3150
87c4314d 3151 /* The rest of this code is for the unlikely platform where bits_word differs
595e113b 3152 in width from unsigned int, unsigned long, and unsigned long long. */
2cf00efc 3153 val |= ~ BITS_WORD_MAX;
87c4314d 3154 if (BITS_WORD_MAX <= UINT_MAX)
595e113b 3155 return count_trailing_zeros (val);
87c4314d 3156 if (BITS_WORD_MAX <= ULONG_MAX)
595e113b 3157 return count_trailing_zeros_l (val);
2cf00efc
PE
3158 else
3159 {
3160 int count;
3161 for (count = 0;
3162 count < BITS_PER_BITS_WORD - BITS_PER_ULL;
3163 count += BITS_PER_ULL)
3164 {
56a0e352 3165 if (val & ULL_MAX)
2cf00efc
PE
3166 return count + count_trailing_zeros_ll (val);
3167 val = shift_right_ull (val);
3168 }
3169
3170 if (BITS_PER_BITS_WORD % BITS_PER_ULL != 0
3171 && BITS_WORD_MAX == (bits_word) -1)
2fcc742f
PE
3172 val |= (bits_word) 1 << pre_value (ULONG_MAX < BITS_WORD_MAX,
3173 BITS_PER_BITS_WORD % BITS_PER_ULL);
2cf00efc
PE
3174 return count + count_trailing_zeros_ll (val);
3175 }
3e0b94e7
DC
3176}
3177
87c4314d
PE
3178static bits_word
3179bits_word_to_host_endian (bits_word val)
3e0b94e7 3180{
595e113b
PE
3181#ifndef WORDS_BIGENDIAN
3182 return val;
3e0b94e7 3183#else
2cf00efc
PE
3184 if (BITS_WORD_MAX >> 31 == 1)
3185 return bswap_32 (val);
3186# if HAVE_UNSIGNED_LONG_LONG
3187 if (BITS_WORD_MAX >> 31 >> 31 >> 1 == 1)
3188 return bswap_64 (val);
3189# endif
3190 {
3191 int i;
3192 bits_word r = 0;
3193 for (i = 0; i < sizeof val; i++)
3194 {
3195 r = ((r << 1 << (CHAR_BIT - 1))
3196 | (val & ((1u << 1 << (CHAR_BIT - 1)) - 1)));
3197 val = val >> 1 >> (CHAR_BIT - 1);
3198 }
3199 return r;
3200 }
3e0b94e7
DC
3201#endif
3202}
3203
3204DEFUN ("bool-vector-exclusive-or", Fbool_vector_exclusive_or,
3205 Sbool_vector_exclusive_or, 2, 3, 0,
454e2fb9
PE
3206 doc: /* Return A ^ B, bitwise exclusive or.
3207If optional third argument C is given, store result into C.
3208A, B, and C must be bool vectors of the same length.
3209Return the destination vector if it changed or nil otherwise. */)
3e0b94e7
DC
3210 (Lisp_Object a, Lisp_Object b, Lisp_Object c)
3211{
3212 return bool_vector_binop_driver (a, b, c, bool_vector_exclusive_or);
3213}
3214
3215DEFUN ("bool-vector-union", Fbool_vector_union,
3216 Sbool_vector_union, 2, 3, 0,
454e2fb9
PE
3217 doc: /* Return A | B, bitwise or.
3218If optional third argument C is given, store result into C.
3219A, B, and C must be bool vectors of the same length.
3220Return the destination vector if it changed or nil otherwise. */)
3e0b94e7
DC
3221 (Lisp_Object a, Lisp_Object b, Lisp_Object c)
3222{
3223 return bool_vector_binop_driver (a, b, c, bool_vector_union);
3224}
3225
3226DEFUN ("bool-vector-intersection", Fbool_vector_intersection,
3227 Sbool_vector_intersection, 2, 3, 0,
454e2fb9
PE
3228 doc: /* Return A & B, bitwise and.
3229If optional third argument C is given, store result into C.
3230A, B, and C must be bool vectors of the same length.
3231Return the destination vector if it changed or nil otherwise. */)
3e0b94e7
DC
3232 (Lisp_Object a, Lisp_Object b, Lisp_Object c)
3233{
3234 return bool_vector_binop_driver (a, b, c, bool_vector_intersection);
3235}
3236
3237DEFUN ("bool-vector-set-difference", Fbool_vector_set_difference,
3238 Sbool_vector_set_difference, 2, 3, 0,
454e2fb9
PE
3239 doc: /* Return A &~ B, set difference.
3240If optional third argument C is given, store result into C.
3241A, B, and C must be bool vectors of the same length.
3242Return the destination vector if it changed or nil otherwise. */)
3e0b94e7
DC
3243 (Lisp_Object a, Lisp_Object b, Lisp_Object c)
3244{
3245 return bool_vector_binop_driver (a, b, c, bool_vector_set_difference);
3246}
3247
3248DEFUN ("bool-vector-subsetp", Fbool_vector_subsetp,
3249 Sbool_vector_subsetp, 2, 2, 0,
3f73284a
PE
3250 doc: /* Return t if every t value in A is also t in B, nil otherwise.
3251A and B must be bool vectors of the same length. */)
3e0b94e7
DC
3252 (Lisp_Object a, Lisp_Object b)
3253{
3f73284a 3254 return bool_vector_binop_driver (a, b, b, bool_vector_subsetp);
3e0b94e7
DC
3255}
3256
3257DEFUN ("bool-vector-not", Fbool_vector_not,
3258 Sbool_vector_not, 1, 2, 0,
454e2fb9
PE
3259 doc: /* Compute ~A, set complement.
3260If optional second argument B is given, store result into B.
3261A and B must be bool vectors of the same length.
3e0b94e7
DC
3262Return the destination vector. */)
3263 (Lisp_Object a, Lisp_Object b)
3264{
3265 EMACS_INT nr_bits;
87c4314d 3266 bits_word *bdata, *adata;
3e0b94e7 3267 ptrdiff_t i;
3e0b94e7
DC
3268
3269 CHECK_BOOL_VECTOR (a);
1c0a7493 3270 nr_bits = bool_vector_size (a);
3e0b94e7
DC
3271
3272 if (NILP (b))
2cf00efc 3273 b = make_uninit_bool_vector (nr_bits);
3e0b94e7
DC
3274 else
3275 {
3276 CHECK_BOOL_VECTOR (b);
454e2fb9
PE
3277 if (bool_vector_size (b) != nr_bits)
3278 wrong_length_argument (a, b, Qnil);
3e0b94e7
DC
3279 }
3280
df5b4930
PE
3281 bdata = bool_vector_data (b);
3282 adata = bool_vector_data (a);
3e0b94e7 3283
87c4314d 3284 for (i = 0; i < nr_bits / BITS_PER_BITS_WORD; i++)
df5b4930 3285 bdata[i] = BITS_WORD_MAX & ~adata[i];
3e0b94e7 3286
87c4314d 3287 if (nr_bits % BITS_PER_BITS_WORD)
3e0b94e7 3288 {
df5b4930 3289 bits_word mword = bits_word_to_host_endian (adata[i]);
3e0b94e7
DC
3290 mword = ~mword;
3291 mword &= bool_vector_spare_mask (nr_bits);
87c4314d 3292 bdata[i] = bits_word_to_host_endian (mword);
3e0b94e7
DC
3293 }
3294
3295 return b;
3296}
3297
ec2c4ee6
PE
3298DEFUN ("bool-vector-count-population", Fbool_vector_count_population,
3299 Sbool_vector_count_population, 1, 1, 0,
3300 doc: /* Count how many elements in A are t.
3301A is a bool vector. To count A's nil elements, subtract the return
3302value from A's length. */)
3303 (Lisp_Object a)
3e0b94e7 3304{
f2752e01 3305 EMACS_INT count;
3e0b94e7 3306 EMACS_INT nr_bits;
87c4314d 3307 bits_word *adata;
2cf00efc 3308 ptrdiff_t i, nwords;
3e0b94e7
DC
3309
3310 CHECK_BOOL_VECTOR (a);
3311
1c0a7493 3312 nr_bits = bool_vector_size (a);
2cf00efc 3313 nwords = bool_vector_words (nr_bits);
3e0b94e7 3314 count = 0;
df5b4930 3315 adata = bool_vector_data (a);
3e0b94e7 3316
2cf00efc
PE
3317 for (i = 0; i < nwords; i++)
3318 count += count_one_bits_word (adata[i]);
3e0b94e7
DC
3319
3320 return make_number (count);
3321}
3322
ec2c4ee6
PE
3323DEFUN ("bool-vector-count-consecutive", Fbool_vector_count_consecutive,
3324 Sbool_vector_count_consecutive, 3, 3, 0,
3325 doc: /* Count how many consecutive elements in A equal B starting at I.
3326A is a bool vector, B is t or nil, and I is an index into A. */)
3e0b94e7
DC
3327 (Lisp_Object a, Lisp_Object b, Lisp_Object i)
3328{
f2752e01 3329 EMACS_INT count;
3e0b94e7 3330 EMACS_INT nr_bits;
f2752e01 3331 int offset;
87c4314d
PE
3332 bits_word *adata;
3333 bits_word twiddle;
3334 bits_word mword; /* Machine word. */
2cf00efc 3335 ptrdiff_t pos, pos0;
3e0b94e7
DC
3336 ptrdiff_t nr_words;
3337
3338 CHECK_BOOL_VECTOR (a);
3339 CHECK_NATNUM (i);
3340
1c0a7493 3341 nr_bits = bool_vector_size (a);
3e0b94e7
DC
3342 if (XFASTINT (i) > nr_bits) /* Allow one past the end for convenience */
3343 args_out_of_range (a, i);
3344
df5b4930
PE
3345 adata = bool_vector_data (a);
3346 nr_words = bool_vector_words (nr_bits);
87c4314d
PE
3347 pos = XFASTINT (i) / BITS_PER_BITS_WORD;
3348 offset = XFASTINT (i) % BITS_PER_BITS_WORD;
3e0b94e7
DC
3349 count = 0;
3350
3351 /* By XORing with twiddle, we transform the problem of "count
3352 consecutive equal values" into "count the zero bits". The latter
3353 operation usually has hardware support. */
df5b4930 3354 twiddle = NILP (b) ? 0 : BITS_WORD_MAX;
3e0b94e7
DC
3355
3356 /* Scan the remainder of the mword at the current offset. */
3357 if (pos < nr_words && offset != 0)
3358 {
87c4314d 3359 mword = bits_word_to_host_endian (adata[pos]);
3e0b94e7
DC
3360 mword ^= twiddle;
3361 mword >>= offset;
87d86601
PE
3362
3363 /* Do not count the pad bits. */
2cf00efc 3364 mword |= (bits_word) 1 << (BITS_PER_BITS_WORD - offset);
87d86601 3365
3e0b94e7 3366 count = count_trailing_zero_bits (mword);
7be68de5 3367 pos++;
87c4314d 3368 if (count + offset < BITS_PER_BITS_WORD)
3e0b94e7
DC
3369 return make_number (count);
3370 }
3371
3372 /* Scan whole words until we either reach the end of the vector or
3373 find an mword that doesn't completely match. twiddle is
3374 endian-independent. */
2cf00efc 3375 pos0 = pos;
3e0b94e7 3376 while (pos < nr_words && adata[pos] == twiddle)
2cf00efc
PE
3377 pos++;
3378 count += (pos - pos0) * BITS_PER_BITS_WORD;
3e0b94e7
DC
3379
3380 if (pos < nr_words)
3381 {
3382 /* If we stopped because of a mismatch, see how many bits match
3383 in the current mword. */
87c4314d 3384 mword = bits_word_to_host_endian (adata[pos]);
3e0b94e7
DC
3385 mword ^= twiddle;
3386 count += count_trailing_zero_bits (mword);
3387 }
87c4314d 3388 else if (nr_bits % BITS_PER_BITS_WORD != 0)
3e0b94e7
DC
3389 {
3390 /* If we hit the end, we might have overshot our count. Reduce
3391 the total by the number of spare bits at the end of the
3392 vector. */
87c4314d 3393 count -= BITS_PER_BITS_WORD - nr_bits % BITS_PER_BITS_WORD;
3e0b94e7
DC
3394 }
3395
3396 return make_number (count);
3397}
6b61353c 3398
7921925c
JB
3399\f
3400void
971de7fb 3401syms_of_data (void)
7921925c 3402{
6315e761
RS
3403 Lisp_Object error_tail, arith_tail;
3404
620c53a6
SM
3405 DEFSYM (Qquote, "quote");
3406 DEFSYM (Qlambda, "lambda");
3407 DEFSYM (Qsubr, "subr");
3408 DEFSYM (Qerror_conditions, "error-conditions");
3409 DEFSYM (Qerror_message, "error-message");
3410 DEFSYM (Qtop_level, "top-level");
3411
3412 DEFSYM (Qerror, "error");
71873e2b 3413 DEFSYM (Quser_error, "user-error");
620c53a6 3414 DEFSYM (Qquit, "quit");
454e2fb9 3415 DEFSYM (Qwrong_length_argument, "wrong-length-argument");
620c53a6
SM
3416 DEFSYM (Qwrong_type_argument, "wrong-type-argument");
3417 DEFSYM (Qargs_out_of_range, "args-out-of-range");
3418 DEFSYM (Qvoid_function, "void-function");
3419 DEFSYM (Qcyclic_function_indirection, "cyclic-function-indirection");
3420 DEFSYM (Qcyclic_variable_indirection, "cyclic-variable-indirection");
3421 DEFSYM (Qvoid_variable, "void-variable");
3422 DEFSYM (Qsetting_constant, "setting-constant");
3423 DEFSYM (Qinvalid_read_syntax, "invalid-read-syntax");
3424
3425 DEFSYM (Qinvalid_function, "invalid-function");
3426 DEFSYM (Qwrong_number_of_arguments, "wrong-number-of-arguments");
3427 DEFSYM (Qno_catch, "no-catch");
3428 DEFSYM (Qend_of_file, "end-of-file");
3429 DEFSYM (Qarith_error, "arith-error");
3430 DEFSYM (Qbeginning_of_buffer, "beginning-of-buffer");
3431 DEFSYM (Qend_of_buffer, "end-of-buffer");
3432 DEFSYM (Qbuffer_read_only, "buffer-read-only");
3433 DEFSYM (Qtext_read_only, "text-read-only");
3434 DEFSYM (Qmark_inactive, "mark-inactive");
3435
3436 DEFSYM (Qlistp, "listp");
3437 DEFSYM (Qconsp, "consp");
3438 DEFSYM (Qsymbolp, "symbolp");
3439 DEFSYM (Qkeywordp, "keywordp");
3440 DEFSYM (Qintegerp, "integerp");
3441 DEFSYM (Qnatnump, "natnump");
3442 DEFSYM (Qwholenump, "wholenump");
3443 DEFSYM (Qstringp, "stringp");
3444 DEFSYM (Qarrayp, "arrayp");
3445 DEFSYM (Qsequencep, "sequencep");
3446 DEFSYM (Qbufferp, "bufferp");
3447 DEFSYM (Qvectorp, "vectorp");
3e0b94e7 3448 DEFSYM (Qbool_vector_p, "bool-vector-p");
620c53a6
SM
3449 DEFSYM (Qchar_or_string_p, "char-or-string-p");
3450 DEFSYM (Qmarkerp, "markerp");
3451 DEFSYM (Qbuffer_or_string_p, "buffer-or-string-p");
3452 DEFSYM (Qinteger_or_marker_p, "integer-or-marker-p");
3453 DEFSYM (Qboundp, "boundp");
3454 DEFSYM (Qfboundp, "fboundp");
3455
3456 DEFSYM (Qfloatp, "floatp");
3457 DEFSYM (Qnumberp, "numberp");
3458 DEFSYM (Qnumber_or_marker_p, "number-or-marker-p");
3459
3460 DEFSYM (Qchar_table_p, "char-table-p");
3461 DEFSYM (Qvector_or_char_table_p, "vector-or-char-table-p");
3462
3463 DEFSYM (Qsubrp, "subrp");
3464 DEFSYM (Qunevalled, "unevalled");
3465 DEFSYM (Qmany, "many");
3466
3467 DEFSYM (Qcdr, "cdr");
3468
3469 /* Handle automatic advice activation. */
3470 DEFSYM (Qad_advice_info, "ad-advice-info");
3471 DEFSYM (Qad_activate_internal, "ad-activate-internal");
f845f2c9 3472
d67b4f80 3473 error_tail = pure_cons (Qerror, Qnil);
6315e761 3474
620c53a6
SM
3475 /* ERROR is used as a signaler for random errors for which nothing else is
3476 right. */
7921925c
JB
3477
3478 Fput (Qerror, Qerror_conditions,
6315e761 3479 error_tail);
7921925c 3480 Fput (Qerror, Qerror_message,
2a0213a6 3481 build_pure_c_string ("error"));
7921925c 3482
71873e2b
SM
3483#define PUT_ERROR(sym, tail, msg) \
3484 Fput (sym, Qerror_conditions, pure_cons (sym, tail)); \
2a0213a6 3485 Fput (sym, Qerror_message, build_pure_c_string (msg))
71873e2b
SM
3486
3487 PUT_ERROR (Qquit, Qnil, "Quit");
3488
3489 PUT_ERROR (Quser_error, error_tail, "");
454e2fb9 3490 PUT_ERROR (Qwrong_length_argument, error_tail, "Wrong length argument");
71873e2b
SM
3491 PUT_ERROR (Qwrong_type_argument, error_tail, "Wrong type argument");
3492 PUT_ERROR (Qargs_out_of_range, error_tail, "Args out of range");
3493 PUT_ERROR (Qvoid_function, error_tail,
3494 "Symbol's function definition is void");
3495 PUT_ERROR (Qcyclic_function_indirection, error_tail,
3496 "Symbol's chain of function indirections contains a loop");
3497 PUT_ERROR (Qcyclic_variable_indirection, error_tail,
3498 "Symbol's chain of variable indirections contains a loop");
620c53a6 3499 DEFSYM (Qcircular_list, "circular-list");
71873e2b
SM
3500 PUT_ERROR (Qcircular_list, error_tail, "List contains a loop");
3501 PUT_ERROR (Qvoid_variable, error_tail, "Symbol's value as variable is void");
3502 PUT_ERROR (Qsetting_constant, error_tail,
3503 "Attempt to set a constant symbol");
3504 PUT_ERROR (Qinvalid_read_syntax, error_tail, "Invalid read syntax");
3505 PUT_ERROR (Qinvalid_function, error_tail, "Invalid function");
3506 PUT_ERROR (Qwrong_number_of_arguments, error_tail,
3507 "Wrong number of arguments");
3508 PUT_ERROR (Qno_catch, error_tail, "No catch for tag");
3509 PUT_ERROR (Qend_of_file, error_tail, "End of file during parsing");
7921925c 3510
d67b4f80 3511 arith_tail = pure_cons (Qarith_error, error_tail);
71873e2b 3512 Fput (Qarith_error, Qerror_conditions, arith_tail);
2a0213a6 3513 Fput (Qarith_error, Qerror_message, build_pure_c_string ("Arithmetic error"));
71873e2b
SM
3514
3515 PUT_ERROR (Qbeginning_of_buffer, error_tail, "Beginning of buffer");
3516 PUT_ERROR (Qend_of_buffer, error_tail, "End of buffer");
3517 PUT_ERROR (Qbuffer_read_only, error_tail, "Buffer is read-only");
3518 PUT_ERROR (Qtext_read_only, pure_cons (Qbuffer_read_only, error_tail),
3519 "Text is read-only");
8f9f49d7 3520
620c53a6
SM
3521 DEFSYM (Qrange_error, "range-error");
3522 DEFSYM (Qdomain_error, "domain-error");
3523 DEFSYM (Qsingularity_error, "singularity-error");
3524 DEFSYM (Qoverflow_error, "overflow-error");
3525 DEFSYM (Qunderflow_error, "underflow-error");
6315e761 3526
71873e2b
SM
3527 PUT_ERROR (Qdomain_error, arith_tail, "Arithmetic domain error");
3528
3529 PUT_ERROR (Qrange_error, arith_tail, "Arithmetic range error");
3530
3531 PUT_ERROR (Qsingularity_error, Fcons (Qdomain_error, arith_tail),
3532 "Arithmetic singularity error");
3533
3534 PUT_ERROR (Qoverflow_error, Fcons (Qdomain_error, arith_tail),
3535 "Arithmetic overflow error");
3536 PUT_ERROR (Qunderflow_error, Fcons (Qdomain_error, arith_tail),
3537 "Arithmetic underflow error");
6315e761 3538
7921925c
JB
3539 staticpro (&Qnil);
3540 staticpro (&Qt);
7921925c 3541 staticpro (&Qunbound);
7921925c 3542
39bcc759 3543 /* Types that type-of returns. */
620c53a6
SM
3544 DEFSYM (Qinteger, "integer");
3545 DEFSYM (Qsymbol, "symbol");
3546 DEFSYM (Qstring, "string");
3547 DEFSYM (Qcons, "cons");
3548 DEFSYM (Qmarker, "marker");
3549 DEFSYM (Qoverlay, "overlay");
3550 DEFSYM (Qfloat, "float");
3551 DEFSYM (Qwindow_configuration, "window-configuration");
3552 DEFSYM (Qprocess, "process");
3553 DEFSYM (Qwindow, "window");
620c53a6
SM
3554 DEFSYM (Qcompiled_function, "compiled-function");
3555 DEFSYM (Qbuffer, "buffer");
3556 DEFSYM (Qframe, "frame");
3557 DEFSYM (Qvector, "vector");
3558 DEFSYM (Qchar_table, "char-table");
3559 DEFSYM (Qbool_vector, "bool-vector");
3560 DEFSYM (Qhash_table, "hash-table");
3ab6e069 3561 DEFSYM (Qmisc, "misc");
39bcc759 3562
61b108cc
SM
3563 DEFSYM (Qdefun, "defun");
3564
4e6f2626
CY
3565 DEFSYM (Qfont_spec, "font-spec");
3566 DEFSYM (Qfont_entity, "font-entity");
3567 DEFSYM (Qfont_object, "font-object");
3568
3860280a 3569 DEFSYM (Qinteractive_form, "interactive-form");
32e5c58c 3570 DEFSYM (Qdefalias_fset_function, "defalias-fset-function");
3860280a 3571
f35d5bad 3572 defsubr (&Sindirect_variable);
6b61353c 3573 defsubr (&Sinteractive_form);
7921925c
JB
3574 defsubr (&Seq);
3575 defsubr (&Snull);
39bcc759 3576 defsubr (&Stype_of);
7921925c
JB
3577 defsubr (&Slistp);
3578 defsubr (&Snlistp);
3579 defsubr (&Sconsp);
3580 defsubr (&Satom);
3581 defsubr (&Sintegerp);
464f8898 3582 defsubr (&Sinteger_or_marker_p);
7921925c
JB
3583 defsubr (&Snumberp);
3584 defsubr (&Snumber_or_marker_p);
464f8898 3585 defsubr (&Sfloatp);
7921925c
JB
3586 defsubr (&Snatnump);
3587 defsubr (&Ssymbolp);
cda9b832 3588 defsubr (&Skeywordp);
7921925c 3589 defsubr (&Sstringp);
0f56470d 3590 defsubr (&Smultibyte_string_p);
7921925c 3591 defsubr (&Svectorp);
4d276982 3592 defsubr (&Schar_table_p);
7f0edce7 3593 defsubr (&Svector_or_char_table_p);
4d276982 3594 defsubr (&Sbool_vector_p);
7921925c
JB
3595 defsubr (&Sarrayp);
3596 defsubr (&Ssequencep);
3597 defsubr (&Sbufferp);
3598 defsubr (&Smarkerp);
7921925c 3599 defsubr (&Ssubrp);
dbc4e1c1 3600 defsubr (&Sbyte_code_function_p);
7921925c
JB
3601 defsubr (&Schar_or_string_p);
3602 defsubr (&Scar);
3603 defsubr (&Scdr);
3604 defsubr (&Scar_safe);
3605 defsubr (&Scdr_safe);
3606 defsubr (&Ssetcar);
3607 defsubr (&Ssetcdr);
3608 defsubr (&Ssymbol_function);
ffd56f97 3609 defsubr (&Sindirect_function);
7921925c
JB
3610 defsubr (&Ssymbol_plist);
3611 defsubr (&Ssymbol_name);
3612 defsubr (&Smakunbound);
3613 defsubr (&Sfmakunbound);
3614 defsubr (&Sboundp);
3615 defsubr (&Sfboundp);
3616 defsubr (&Sfset);
80df38a2 3617 defsubr (&Sdefalias);
7921925c
JB
3618 defsubr (&Ssetplist);
3619 defsubr (&Ssymbol_value);
3620 defsubr (&Sset);
3621 defsubr (&Sdefault_boundp);
3622 defsubr (&Sdefault_value);
3623 defsubr (&Sset_default);
3624 defsubr (&Ssetq_default);
3625 defsubr (&Smake_variable_buffer_local);
3626 defsubr (&Smake_local_variable);
3627 defsubr (&Skill_local_variable);
b0c2d1c6 3628 defsubr (&Smake_variable_frame_local);
62476adc 3629 defsubr (&Slocal_variable_p);
f4f04cee 3630 defsubr (&Slocal_variable_if_set_p);
6b61353c 3631 defsubr (&Svariable_binding_locus);
c40bb1ba 3632#if 0 /* XXX Remove this. --lorentey */
2a42d440
KL
3633 defsubr (&Sterminal_local_value);
3634 defsubr (&Sset_terminal_local_value);
c40bb1ba 3635#endif
7921925c
JB
3636 defsubr (&Saref);
3637 defsubr (&Saset);
f2980264 3638 defsubr (&Snumber_to_string);
25e40a4b 3639 defsubr (&Sstring_to_number);
7921925c
JB
3640 defsubr (&Seqlsign);
3641 defsubr (&Slss);
3642 defsubr (&Sgtr);
3643 defsubr (&Sleq);
3644 defsubr (&Sgeq);
3645 defsubr (&Sneq);
3646 defsubr (&Szerop);
3647 defsubr (&Splus);
3648 defsubr (&Sminus);
3649 defsubr (&Stimes);
3650 defsubr (&Squo);
3651 defsubr (&Srem);
44fa9da5 3652 defsubr (&Smod);
7921925c
JB
3653 defsubr (&Smax);
3654 defsubr (&Smin);
3655 defsubr (&Slogand);
3656 defsubr (&Slogior);
3657 defsubr (&Slogxor);
3658 defsubr (&Slsh);
3659 defsubr (&Sash);
3660 defsubr (&Sadd1);
3661 defsubr (&Ssub1);
3662 defsubr (&Slognot);
6b61353c 3663 defsubr (&Sbyteorder);
6f0e897f 3664 defsubr (&Ssubr_arity);
0fddae66 3665 defsubr (&Ssubr_name);
8e86942b 3666
3e0b94e7
DC
3667 defsubr (&Sbool_vector_exclusive_or);
3668 defsubr (&Sbool_vector_union);
3669 defsubr (&Sbool_vector_intersection);
3670 defsubr (&Sbool_vector_set_difference);
3671 defsubr (&Sbool_vector_not);
3672 defsubr (&Sbool_vector_subsetp);
ec2c4ee6
PE
3673 defsubr (&Sbool_vector_count_consecutive);
3674 defsubr (&Sbool_vector_count_population);
3e0b94e7 3675
c644523b 3676 set_symbol_function (Qwholenump, XSYMBOL (Qnatnump)->function);
e6190b11 3677
29208e82 3678 DEFVAR_LISP ("most-positive-fixnum", Vmost_positive_fixnum,
9d113d9d
AS
3679 doc: /* The largest value that is representable in a Lisp integer. */);
3680 Vmost_positive_fixnum = make_number (MOST_POSITIVE_FIXNUM);
d67b4f80 3681 XSYMBOL (intern_c_string ("most-positive-fixnum"))->constant = 1;
bfb96cb7 3682
29208e82 3683 DEFVAR_LISP ("most-negative-fixnum", Vmost_negative_fixnum,
9d113d9d
AS
3684 doc: /* The smallest value that is representable in a Lisp integer. */);
3685 Vmost_negative_fixnum = make_number (MOST_NEGATIVE_FIXNUM);
d67b4f80 3686 XSYMBOL (intern_c_string ("most-negative-fixnum"))->constant = 1;
7921925c 3687}