Update years in copyright notice; nfc.
[bpt/emacs.git] / src / data.c
CommitLineData
7921925c 1/* Primitive operations on Lisp data types for GNU Emacs Lisp interpreter.
0b5538bd 2 Copyright (C) 1985, 1986, 1988, 1993, 1994, 1995, 1997, 1998, 1999, 2000,
aaef169d 3 2001, 2002, 2003, 2004, 2005, 2006 Free Software Foundation, Inc.
7921925c
JB
4
5This file is part of GNU Emacs.
6
7GNU Emacs is free software; you can redistribute it and/or modify
8it under the terms of the GNU General Public License as published by
7c938215 9the Free Software Foundation; either version 2, or (at your option)
7921925c
JB
10any later version.
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
18along with GNU Emacs; see the file COPYING. If not, write to
4fc5845f
LK
19the Free Software Foundation, Inc., 51 Franklin Street, Fifth Floor,
20Boston, MA 02110-1301, USA. */
7921925c
JB
21
22
18160b98 23#include <config.h>
68c45bf0 24#include <signal.h>
dd8daec5 25#include <stdio.h>
7921925c 26#include "lisp.h"
29eab336 27#include "puresize.h"
8313c4e7 28#include "charset.h"
7921925c 29#include "buffer.h"
077d751f 30#include "keyboard.h"
b0c2d1c6 31#include "frame.h"
a44804c2 32#include "syssignal.h"
fb8e9847 33
93b91208 34#ifdef STDC_HEADERS
2f261542 35#include <float.h>
93b91208 36#endif
defa77b5 37
ad8d56b9
PE
38/* If IEEE_FLOATING_POINT isn't defined, default it from FLT_*. */
39#ifndef IEEE_FLOATING_POINT
40#if (FLT_RADIX == 2 && FLT_MANT_DIG == 24 \
41 && FLT_MIN_EXP == -125 && FLT_MAX_EXP == 128)
42#define IEEE_FLOATING_POINT 1
43#else
44#define IEEE_FLOATING_POINT 0
45#endif
46#endif
47
defa77b5
RS
48/* Work around a problem that happens because math.h on hpux 7
49 defines two static variables--which, in Emacs, are not really static,
50 because `static' is defined as nothing. The problem is that they are
51 here, in floatfns.c, and in lread.c.
52 These macros prevent the name conflict. */
53#if defined (HPUX) && !defined (HPUX8)
54#define _MAXLDBL data_c_maxldbl
55#define _NMAXLDBL data_c_nmaxldbl
56#endif
57
7921925c 58#include <math.h>
7921925c 59
024ec58f
BF
60#if !defined (atof)
61extern double atof ();
62#endif /* !atof */
63
7921925c
JB
64Lisp_Object Qnil, Qt, Qquote, Qlambda, Qsubr, Qunbound;
65Lisp_Object Qerror_conditions, Qerror_message, Qtop_level;
66Lisp_Object Qerror, Qquit, Qwrong_type_argument, Qargs_out_of_range;
ffd56f97 67Lisp_Object Qvoid_variable, Qvoid_function, Qcyclic_function_indirection;
13d95cc0 68Lisp_Object Qcyclic_variable_indirection, Qcircular_list;
7921925c
JB
69Lisp_Object Qsetting_constant, Qinvalid_read_syntax;
70Lisp_Object Qinvalid_function, Qwrong_number_of_arguments, Qno_catch;
3b8819d6 71Lisp_Object Qend_of_file, Qarith_error, Qmark_inactive;
7921925c 72Lisp_Object Qbeginning_of_buffer, Qend_of_buffer, Qbuffer_read_only;
8f9f49d7 73Lisp_Object Qtext_read_only;
aae13d36 74
8e86942b 75Lisp_Object Qintegerp, Qnatnump, Qwholenump, Qsymbolp, Qlistp, Qconsp;
7921925c
JB
76Lisp_Object Qstringp, Qarrayp, Qsequencep, Qbufferp;
77Lisp_Object Qchar_or_string_p, Qmarkerp, Qinteger_or_marker_p, Qvectorp;
cda9b832 78Lisp_Object Qbuffer_or_string_p, Qkeywordp;
7921925c 79Lisp_Object Qboundp, Qfboundp;
7f0edce7 80Lisp_Object Qchar_table_p, Qvector_or_char_table_p;
39bcc759 81
7921925c 82Lisp_Object Qcdr;
c1307a23 83Lisp_Object Qad_advice_info, Qad_activate_internal;
7921925c 84
6315e761
RS
85Lisp_Object Qrange_error, Qdomain_error, Qsingularity_error;
86Lisp_Object Qoverflow_error, Qunderflow_error;
87
464f8898 88Lisp_Object Qfloatp;
7921925c 89Lisp_Object Qnumberp, Qnumber_or_marker_p;
7921925c 90
aae13d36
LH
91Lisp_Object Qinteger;
92static Lisp_Object Qsymbol, Qstring, Qcons, Qmarker, Qoverlay;
8313c4e7
KH
93static Lisp_Object Qfloat, Qwindow_configuration, Qwindow;
94Lisp_Object Qprocess;
39bcc759 95static Lisp_Object Qcompiled_function, Qbuffer, Qframe, Qvector;
81dc5de5 96static Lisp_Object Qchar_table, Qbool_vector, Qhash_table;
6f0e897f 97static Lisp_Object Qsubrp, Qmany, Qunevalled;
39bcc759 98
7a283f36 99static Lisp_Object swap_in_symval_forwarding P_ ((Lisp_Object, Lisp_Object));
d02eeab3 100
9d113d9d 101Lisp_Object Vmost_positive_fixnum, Vmost_negative_fixnum;
e6190b11 102
13d95cc0
GM
103
104void
105circular_list_error (list)
106 Lisp_Object list;
107{
108 Fsignal (Qcircular_list, list);
109}
110
111
7921925c
JB
112Lisp_Object
113wrong_type_argument (predicate, value)
114 register Lisp_Object predicate, value;
115{
116 register Lisp_Object tem;
117 do
118 {
e1351ff7
RS
119 /* If VALUE is not even a valid Lisp object, abort here
120 where we can get a backtrace showing where it came from. */
04be3993 121 if ((unsigned int) XGCTYPE (value) >= Lisp_Type_Limit)
e1351ff7
RS
122 abort ();
123
7921925c
JB
124 value = Fsignal (Qwrong_type_argument, Fcons (predicate, Fcons (value, Qnil)));
125 tem = call1 (predicate, value);
126 }
a33ef3ab 127 while (NILP (tem));
7921925c
JB
128 return value;
129}
130
dfcf069d 131void
7921925c
JB
132pure_write_error ()
133{
134 error ("Attempt to modify read-only object");
135}
136
137void
138args_out_of_range (a1, a2)
139 Lisp_Object a1, a2;
140{
141 while (1)
142 Fsignal (Qargs_out_of_range, Fcons (a1, Fcons (a2, Qnil)));
143}
144
145void
146args_out_of_range_3 (a1, a2, a3)
147 Lisp_Object a1, a2, a3;
148{
149 while (1)
150 Fsignal (Qargs_out_of_range, Fcons (a1, Fcons (a2, Fcons (a3, Qnil))));
151}
152
7921925c
JB
153/* On some machines, XINT needs a temporary location.
154 Here it is, in case it is needed. */
155
156int sign_extend_temp;
157
158/* On a few machines, XINT can only be done by calling this. */
159
160int
161sign_extend_lisp_int (num)
a0ed95ea 162 EMACS_INT num;
7921925c 163{
a0ed95ea
RS
164 if (num & (((EMACS_INT) 1) << (VALBITS - 1)))
165 return num | (((EMACS_INT) (-1)) << VALBITS);
7921925c 166 else
a0ed95ea 167 return num & ((((EMACS_INT) 1) << VALBITS) - 1);
7921925c
JB
168}
169\f
170/* Data type predicates */
171
172DEFUN ("eq", Feq, Seq, 2, 2, 0,
8c1a1077
PJ
173 doc: /* Return t if the two args are the same Lisp object. */)
174 (obj1, obj2)
7921925c
JB
175 Lisp_Object obj1, obj2;
176{
177 if (EQ (obj1, obj2))
178 return Qt;
179 return Qnil;
180}
181
8c1a1077
PJ
182DEFUN ("null", Fnull, Snull, 1, 1, 0,
183 doc: /* Return t if OBJECT is nil. */)
184 (object)
39bcc759 185 Lisp_Object object;
7921925c 186{
39bcc759 187 if (NILP (object))
7921925c
JB
188 return Qt;
189 return Qnil;
190}
191
39bcc759 192DEFUN ("type-of", Ftype_of, Stype_of, 1, 1, 0,
8c1a1077
PJ
193 doc: /* Return a symbol representing the type of OBJECT.
194The symbol returned names the object's basic type;
195for example, (type-of 1) returns `integer'. */)
196 (object)
39bcc759
RS
197 Lisp_Object object;
198{
199 switch (XGCTYPE (object))
200 {
201 case Lisp_Int:
202 return Qinteger;
203
204 case Lisp_Symbol:
205 return Qsymbol;
206
207 case Lisp_String:
208 return Qstring;
209
210 case Lisp_Cons:
211 return Qcons;
212
213 case Lisp_Misc:
324a6eef 214 switch (XMISCTYPE (object))
39bcc759
RS
215 {
216 case Lisp_Misc_Marker:
217 return Qmarker;
218 case Lisp_Misc_Overlay:
219 return Qoverlay;
220 case Lisp_Misc_Float:
221 return Qfloat;
222 }
223 abort ();
224
225 case Lisp_Vectorlike:
226 if (GC_WINDOW_CONFIGURATIONP (object))
227 return Qwindow_configuration;
228 if (GC_PROCESSP (object))
229 return Qprocess;
230 if (GC_WINDOWP (object))
231 return Qwindow;
232 if (GC_SUBRP (object))
233 return Qsubr;
234 if (GC_COMPILEDP (object))
235 return Qcompiled_function;
236 if (GC_BUFFERP (object))
237 return Qbuffer;
fc67d5be
KH
238 if (GC_CHAR_TABLE_P (object))
239 return Qchar_table;
240 if (GC_BOOL_VECTOR_P (object))
241 return Qbool_vector;
39bcc759
RS
242 if (GC_FRAMEP (object))
243 return Qframe;
81dc5de5
GM
244 if (GC_HASH_TABLE_P (object))
245 return Qhash_table;
39bcc759
RS
246 return Qvector;
247
39bcc759
RS
248 case Lisp_Float:
249 return Qfloat;
39bcc759
RS
250
251 default:
252 abort ();
253 }
254}
255
8c1a1077
PJ
256DEFUN ("consp", Fconsp, Sconsp, 1, 1, 0,
257 doc: /* Return t if OBJECT is a cons cell. */)
258 (object)
39bcc759 259 Lisp_Object object;
7921925c 260{
39bcc759 261 if (CONSP (object))
7921925c
JB
262 return Qt;
263 return Qnil;
264}
265
25638b07 266DEFUN ("atom", Fatom, Satom, 1, 1, 0,
8c1a1077
PJ
267 doc: /* Return t if OBJECT is not a cons cell. This includes nil. */)
268 (object)
39bcc759 269 Lisp_Object object;
7921925c 270{
39bcc759 271 if (CONSP (object))
7921925c
JB
272 return Qnil;
273 return Qt;
274}
275
25638b07 276DEFUN ("listp", Flistp, Slistp, 1, 1, 0,
4cdcdcc9
LT
277 doc: /* Return t if OBJECT is a list, that is, a cons cell or nil.
278Otherwise, return nil. */)
8c1a1077 279 (object)
39bcc759 280 Lisp_Object object;
7921925c 281{
39bcc759 282 if (CONSP (object) || NILP (object))
7921925c
JB
283 return Qt;
284 return Qnil;
285}
286
25638b07 287DEFUN ("nlistp", Fnlistp, Snlistp, 1, 1, 0,
8c1a1077
PJ
288 doc: /* Return t if OBJECT is not a list. Lists include nil. */)
289 (object)
39bcc759 290 Lisp_Object object;
7921925c 291{
39bcc759 292 if (CONSP (object) || NILP (object))
7921925c
JB
293 return Qnil;
294 return Qt;
295}
296\f
25638b07 297DEFUN ("symbolp", Fsymbolp, Ssymbolp, 1, 1, 0,
8c1a1077
PJ
298 doc: /* Return t if OBJECT is a symbol. */)
299 (object)
39bcc759 300 Lisp_Object object;
7921925c 301{
39bcc759 302 if (SYMBOLP (object))
7921925c
JB
303 return Qt;
304 return Qnil;
305}
306
cda9b832
DL
307/* Define this in C to avoid unnecessarily consing up the symbol
308 name. */
309DEFUN ("keywordp", Fkeywordp, Skeywordp, 1, 1, 0,
8c1a1077
PJ
310 doc: /* Return t if OBJECT is a keyword.
311This means that it is a symbol with a print name beginning with `:'
312interned in the initial obarray. */)
313 (object)
cda9b832
DL
314 Lisp_Object object;
315{
316 if (SYMBOLP (object)
d5db4077 317 && SREF (SYMBOL_NAME (object), 0) == ':'
f35d5bad 318 && SYMBOL_INTERNED_IN_INITIAL_OBARRAY_P (object))
cda9b832
DL
319 return Qt;
320 return Qnil;
321}
322
25638b07 323DEFUN ("vectorp", Fvectorp, Svectorp, 1, 1, 0,
8c1a1077
PJ
324 doc: /* Return t if OBJECT is a vector. */)
325 (object)
39bcc759 326 Lisp_Object object;
7921925c 327{
39bcc759 328 if (VECTORP (object))
7921925c
JB
329 return Qt;
330 return Qnil;
331}
332
25638b07 333DEFUN ("stringp", Fstringp, Sstringp, 1, 1, 0,
8c1a1077
PJ
334 doc: /* Return t if OBJECT is a string. */)
335 (object)
39bcc759 336 Lisp_Object object;
7921925c 337{
39bcc759 338 if (STRINGP (object))
7921925c
JB
339 return Qt;
340 return Qnil;
341}
342
25638b07 343DEFUN ("multibyte-string-p", Fmultibyte_string_p, Smultibyte_string_p,
8c1a1077
PJ
344 1, 1, 0,
345 doc: /* Return t if OBJECT is a multibyte string. */)
346 (object)
25638b07
RS
347 Lisp_Object object;
348{
349 if (STRINGP (object) && STRING_MULTIBYTE (object))
350 return Qt;
351 return Qnil;
352}
353
354DEFUN ("char-table-p", Fchar_table_p, Schar_table_p, 1, 1, 0,
8c1a1077
PJ
355 doc: /* Return t if OBJECT is a char-table. */)
356 (object)
4d276982
RS
357 Lisp_Object object;
358{
359 if (CHAR_TABLE_P (object))
360 return Qt;
361 return Qnil;
362}
363
7f0edce7
RS
364DEFUN ("vector-or-char-table-p", Fvector_or_char_table_p,
365 Svector_or_char_table_p, 1, 1, 0,
8c1a1077
PJ
366 doc: /* Return t if OBJECT is a char-table or vector. */)
367 (object)
7f0edce7
RS
368 Lisp_Object object;
369{
370 if (VECTORP (object) || CHAR_TABLE_P (object))
371 return Qt;
372 return Qnil;
373}
374
8c1a1077
PJ
375DEFUN ("bool-vector-p", Fbool_vector_p, Sbool_vector_p, 1, 1, 0,
376 doc: /* Return t if OBJECT is a bool-vector. */)
377 (object)
4d276982
RS
378 Lisp_Object object;
379{
380 if (BOOL_VECTOR_P (object))
381 return Qt;
382 return Qnil;
383}
384
8c1a1077
PJ
385DEFUN ("arrayp", Farrayp, Sarrayp, 1, 1, 0,
386 doc: /* Return t if OBJECT is an array (string or vector). */)
387 (object)
39bcc759 388 Lisp_Object object;
7921925c 389{
a9729926
RS
390 if (VECTORP (object) || STRINGP (object)
391 || CHAR_TABLE_P (object) || BOOL_VECTOR_P (object))
7921925c
JB
392 return Qt;
393 return Qnil;
394}
395
396DEFUN ("sequencep", Fsequencep, Ssequencep, 1, 1, 0,
8c1a1077
PJ
397 doc: /* Return t if OBJECT is a sequence (list or array). */)
398 (object)
39bcc759 399 register Lisp_Object object;
7921925c 400{
4d276982
RS
401 if (CONSP (object) || NILP (object) || VECTORP (object) || STRINGP (object)
402 || CHAR_TABLE_P (object) || BOOL_VECTOR_P (object))
7921925c
JB
403 return Qt;
404 return Qnil;
405}
406
8c1a1077
PJ
407DEFUN ("bufferp", Fbufferp, Sbufferp, 1, 1, 0,
408 doc: /* Return t if OBJECT is an editor buffer. */)
409 (object)
39bcc759 410 Lisp_Object object;
7921925c 411{
39bcc759 412 if (BUFFERP (object))
7921925c
JB
413 return Qt;
414 return Qnil;
415}
416
8c1a1077
PJ
417DEFUN ("markerp", Fmarkerp, Smarkerp, 1, 1, 0,
418 doc: /* Return t if OBJECT is a marker (editor pointer). */)
419 (object)
39bcc759 420 Lisp_Object object;
7921925c 421{
39bcc759 422 if (MARKERP (object))
7921925c
JB
423 return Qt;
424 return Qnil;
425}
426
8c1a1077
PJ
427DEFUN ("subrp", Fsubrp, Ssubrp, 1, 1, 0,
428 doc: /* Return t if OBJECT is a built-in function. */)
429 (object)
39bcc759 430 Lisp_Object object;
7921925c 431{
39bcc759 432 if (SUBRP (object))
7921925c
JB
433 return Qt;
434 return Qnil;
435}
436
dbc4e1c1 437DEFUN ("byte-code-function-p", Fbyte_code_function_p, Sbyte_code_function_p,
8c1a1077
PJ
438 1, 1, 0,
439 doc: /* Return t if OBJECT is a byte-compiled function object. */)
440 (object)
39bcc759 441 Lisp_Object object;
7921925c 442{
39bcc759 443 if (COMPILEDP (object))
7921925c
JB
444 return Qt;
445 return Qnil;
446}
447
0321d75c 448DEFUN ("char-or-string-p", Fchar_or_string_p, Schar_or_string_p, 1, 1, 0,
8c1a1077
PJ
449 doc: /* Return t if OBJECT is a character (an integer) or a string. */)
450 (object)
39bcc759 451 register Lisp_Object object;
7921925c 452{
39bcc759 453 if (INTEGERP (object) || STRINGP (object))
7921925c
JB
454 return Qt;
455 return Qnil;
456}
457\f
8c1a1077
PJ
458DEFUN ("integerp", Fintegerp, Sintegerp, 1, 1, 0,
459 doc: /* Return t if OBJECT is an integer. */)
460 (object)
39bcc759 461 Lisp_Object object;
7921925c 462{
39bcc759 463 if (INTEGERP (object))
7921925c
JB
464 return Qt;
465 return Qnil;
466}
467
464f8898 468DEFUN ("integer-or-marker-p", Finteger_or_marker_p, Sinteger_or_marker_p, 1, 1, 0,
8c1a1077
PJ
469 doc: /* Return t if OBJECT is an integer or a marker (editor pointer). */)
470 (object)
39bcc759 471 register Lisp_Object object;
7921925c 472{
39bcc759 473 if (MARKERP (object) || INTEGERP (object))
7921925c
JB
474 return Qt;
475 return Qnil;
476}
477
0321d75c 478DEFUN ("natnump", Fnatnump, Snatnump, 1, 1, 0,
8c1a1077
PJ
479 doc: /* Return t if OBJECT is a nonnegative integer. */)
480 (object)
39bcc759 481 Lisp_Object object;
7921925c 482{
39bcc759 483 if (NATNUMP (object))
7921925c
JB
484 return Qt;
485 return Qnil;
486}
487
488DEFUN ("numberp", Fnumberp, Snumberp, 1, 1, 0,
8c1a1077
PJ
489 doc: /* Return t if OBJECT is a number (floating point or integer). */)
490 (object)
39bcc759 491 Lisp_Object object;
7921925c 492{
39bcc759 493 if (NUMBERP (object))
7921925c 494 return Qt;
dbc4e1c1
JB
495 else
496 return Qnil;
7921925c
JB
497}
498
499DEFUN ("number-or-marker-p", Fnumber_or_marker_p,
500 Snumber_or_marker_p, 1, 1, 0,
8c1a1077
PJ
501 doc: /* Return t if OBJECT is a number or a marker. */)
502 (object)
39bcc759 503 Lisp_Object object;
7921925c 504{
39bcc759 505 if (NUMBERP (object) || MARKERP (object))
7921925c
JB
506 return Qt;
507 return Qnil;
508}
464f8898 509
464f8898 510DEFUN ("floatp", Ffloatp, Sfloatp, 1, 1, 0,
8c1a1077
PJ
511 doc: /* Return t if OBJECT is a floating point number. */)
512 (object)
39bcc759 513 Lisp_Object object;
464f8898 514{
39bcc759 515 if (FLOATP (object))
464f8898
RS
516 return Qt;
517 return Qnil;
518}
cc94f3b2 519
7921925c
JB
520\f
521/* Extract and set components of lists */
522
523DEFUN ("car", Fcar, Scar, 1, 1, 0,
8c1a1077 524 doc: /* Return the car of LIST. If arg is nil, return nil.
9701c742
LT
525Error if arg is not nil and not a cons cell. See also `car-safe'.
526
da46c5be
LT
527See Info node `(elisp)Cons Cells' for a discussion of related basic
528Lisp concepts such as car, cdr, cons cell and list. */)
8c1a1077 529 (list)
7921925c
JB
530 register Lisp_Object list;
531{
532 while (1)
533 {
e9ebc175 534 if (CONSP (list))
7539e11f 535 return XCAR (list);
7921925c
JB
536 else if (EQ (list, Qnil))
537 return Qnil;
538 else
539 list = wrong_type_argument (Qlistp, list);
540 }
541}
542
543DEFUN ("car-safe", Fcar_safe, Scar_safe, 1, 1, 0,
8c1a1077
PJ
544 doc: /* Return the car of OBJECT if it is a cons cell, or else nil. */)
545 (object)
7921925c
JB
546 Lisp_Object object;
547{
e9ebc175 548 if (CONSP (object))
7539e11f 549 return XCAR (object);
7921925c
JB
550 else
551 return Qnil;
552}
553
554DEFUN ("cdr", Fcdr, Scdr, 1, 1, 0,
8c1a1077 555 doc: /* Return the cdr of LIST. If arg is nil, return nil.
9701c742
LT
556Error if arg is not nil and not a cons cell. See also `cdr-safe'.
557
da46c5be
LT
558See Info node `(elisp)Cons Cells' for a discussion of related basic
559Lisp concepts such as cdr, car, cons cell and list. */)
8c1a1077 560 (list)
7921925c
JB
561 register Lisp_Object list;
562{
563 while (1)
564 {
e9ebc175 565 if (CONSP (list))
7539e11f 566 return XCDR (list);
7921925c
JB
567 else if (EQ (list, Qnil))
568 return Qnil;
569 else
570 list = wrong_type_argument (Qlistp, list);
571 }
572}
573
574DEFUN ("cdr-safe", Fcdr_safe, Scdr_safe, 1, 1, 0,
8c1a1077
PJ
575 doc: /* Return the cdr of OBJECT if it is a cons cell, or else nil. */)
576 (object)
7921925c
JB
577 Lisp_Object object;
578{
e9ebc175 579 if (CONSP (object))
7539e11f 580 return XCDR (object);
7921925c
JB
581 else
582 return Qnil;
583}
584
585DEFUN ("setcar", Fsetcar, Ssetcar, 2, 2, 0,
8c1a1077
PJ
586 doc: /* Set the car of CELL to be NEWCAR. Returns NEWCAR. */)
587 (cell, newcar)
7921925c
JB
588 register Lisp_Object cell, newcar;
589{
e9ebc175 590 if (!CONSP (cell))
7921925c
JB
591 cell = wrong_type_argument (Qconsp, cell);
592
593 CHECK_IMPURE (cell);
f3fbd155 594 XSETCAR (cell, newcar);
7921925c
JB
595 return newcar;
596}
597
598DEFUN ("setcdr", Fsetcdr, Ssetcdr, 2, 2, 0,
8c1a1077
PJ
599 doc: /* Set the cdr of CELL to be NEWCDR. Returns NEWCDR. */)
600 (cell, newcdr)
7921925c
JB
601 register Lisp_Object cell, newcdr;
602{
e9ebc175 603 if (!CONSP (cell))
7921925c
JB
604 cell = wrong_type_argument (Qconsp, cell);
605
606 CHECK_IMPURE (cell);
f3fbd155 607 XSETCDR (cell, newcdr);
7921925c
JB
608 return newcdr;
609}
610\f
611/* Extract and set components of symbols */
612
8c1a1077
PJ
613DEFUN ("boundp", Fboundp, Sboundp, 1, 1, 0,
614 doc: /* Return t if SYMBOL's value is not void. */)
615 (symbol)
d9c2a0f2 616 register Lisp_Object symbol;
7921925c
JB
617{
618 Lisp_Object valcontents;
b7826503 619 CHECK_SYMBOL (symbol);
7921925c 620
f35d5bad 621 valcontents = SYMBOL_VALUE (symbol);
7921925c 622
aabf6bec
KH
623 if (BUFFER_LOCAL_VALUEP (valcontents)
624 || SOME_BUFFER_LOCAL_VALUEP (valcontents))
d9c2a0f2 625 valcontents = swap_in_symval_forwarding (symbol, valcontents);
7921925c 626
1bfcade3 627 return (EQ (valcontents, Qunbound) ? Qnil : Qt);
7921925c
JB
628}
629
8c1a1077
PJ
630DEFUN ("fboundp", Ffboundp, Sfboundp, 1, 1, 0,
631 doc: /* Return t if SYMBOL's function definition is not void. */)
632 (symbol)
d9c2a0f2 633 register Lisp_Object symbol;
7921925c 634{
b7826503 635 CHECK_SYMBOL (symbol);
d9c2a0f2 636 return (EQ (XSYMBOL (symbol)->function, Qunbound) ? Qnil : Qt);
7921925c
JB
637}
638
8c1a1077 639DEFUN ("makunbound", Fmakunbound, Smakunbound, 1, 1, 0,
bfb96cb7
FP
640 doc: /* Make SYMBOL's value be void.
641Return SYMBOL. */)
8c1a1077 642 (symbol)
d9c2a0f2 643 register Lisp_Object symbol;
7921925c 644{
b7826503 645 CHECK_SYMBOL (symbol);
f35d5bad 646 if (XSYMBOL (symbol)->constant)
d9c2a0f2
EN
647 return Fsignal (Qsetting_constant, Fcons (symbol, Qnil));
648 Fset (symbol, Qunbound);
649 return symbol;
7921925c
JB
650}
651
8c1a1077 652DEFUN ("fmakunbound", Ffmakunbound, Sfmakunbound, 1, 1, 0,
bfb96cb7
FP
653 doc: /* Make SYMBOL's function definition be void.
654Return SYMBOL. */)
8c1a1077 655 (symbol)
d9c2a0f2 656 register Lisp_Object symbol;
7921925c 657{
b7826503 658 CHECK_SYMBOL (symbol);
d9c2a0f2
EN
659 if (NILP (symbol) || EQ (symbol, Qt))
660 return Fsignal (Qsetting_constant, Fcons (symbol, Qnil));
661 XSYMBOL (symbol)->function = Qunbound;
662 return symbol;
7921925c
JB
663}
664
665DEFUN ("symbol-function", Fsymbol_function, Ssymbol_function, 1, 1, 0,
8c1a1077
PJ
666 doc: /* Return SYMBOL's function definition. Error if that is void. */)
667 (symbol)
ffd56f97 668 register Lisp_Object symbol;
7921925c 669{
b7826503 670 CHECK_SYMBOL (symbol);
ffd56f97
JB
671 if (EQ (XSYMBOL (symbol)->function, Qunbound))
672 return Fsignal (Qvoid_function, Fcons (symbol, Qnil));
673 return XSYMBOL (symbol)->function;
7921925c
JB
674}
675
8c1a1077
PJ
676DEFUN ("symbol-plist", Fsymbol_plist, Ssymbol_plist, 1, 1, 0,
677 doc: /* Return SYMBOL's property list. */)
678 (symbol)
d9c2a0f2 679 register Lisp_Object symbol;
7921925c 680{
b7826503 681 CHECK_SYMBOL (symbol);
d9c2a0f2 682 return XSYMBOL (symbol)->plist;
7921925c
JB
683}
684
8c1a1077
PJ
685DEFUN ("symbol-name", Fsymbol_name, Ssymbol_name, 1, 1, 0,
686 doc: /* Return SYMBOL's name, a string. */)
687 (symbol)
d9c2a0f2 688 register Lisp_Object symbol;
7921925c
JB
689{
690 register Lisp_Object name;
691
b7826503 692 CHECK_SYMBOL (symbol);
84023177 693 name = SYMBOL_NAME (symbol);
7921925c
JB
694 return name;
695}
696
697DEFUN ("fset", Ffset, Sfset, 2, 2, 0,
8c1a1077
PJ
698 doc: /* Set SYMBOL's function definition to DEFINITION, and return DEFINITION. */)
699 (symbol, definition)
8c0b5540 700 register Lisp_Object symbol, definition;
d9c2a0f2 701{
b7826503 702 CHECK_SYMBOL (symbol);
d9c2a0f2
EN
703 if (NILP (symbol) || EQ (symbol, Qt))
704 return Fsignal (Qsetting_constant, Fcons (symbol, Qnil));
705 if (!NILP (Vautoload_queue) && !EQ (XSYMBOL (symbol)->function, Qunbound))
706 Vautoload_queue = Fcons (Fcons (symbol, XSYMBOL (symbol)->function),
7921925c 707 Vautoload_queue);
8c0b5540 708 XSYMBOL (symbol)->function = definition;
f845f2c9 709 /* Handle automatic advice activation */
d9c2a0f2 710 if (CONSP (XSYMBOL (symbol)->plist) && !NILP (Fget (symbol, Qad_advice_info)))
f845f2c9 711 {
c1307a23 712 call2 (Qad_activate_internal, symbol, Qnil);
8c0b5540 713 definition = XSYMBOL (symbol)->function;
f845f2c9 714 }
8c0b5540 715 return definition;
7921925c
JB
716}
717
d2fde41d
SM
718extern Lisp_Object Qfunction_documentation;
719
720DEFUN ("defalias", Fdefalias, Sdefalias, 2, 3, 0,
8c1a1077 721 doc: /* Set SYMBOL's function definition to DEFINITION, and return DEFINITION.
96143227
RS
722Associates the function with the current load file, if any.
723The optional third argument DOCSTRING specifies the documentation string
724for SYMBOL; if it is omitted or nil, SYMBOL uses the documentation string
725determined by DEFINITION. */)
d2fde41d
SM
726 (symbol, definition, docstring)
727 register Lisp_Object symbol, definition, docstring;
fc08c367 728{
8a658a52 729 CHECK_SYMBOL (symbol);
894f6538
RS
730 if (CONSP (XSYMBOL (symbol)->function)
731 && EQ (XCAR (XSYMBOL (symbol)->function), Qautoload))
732 LOADHIST_ATTACH (Fcons (Qt, symbol));
32f532b7 733 definition = Ffset (symbol, definition);
62a29071 734 LOADHIST_ATTACH (Fcons (Qdefun, symbol));
d2fde41d
SM
735 if (!NILP (docstring))
736 Fput (symbol, Qfunction_documentation, docstring);
73e0d965 737 return definition;
fc08c367
RS
738}
739
7921925c 740DEFUN ("setplist", Fsetplist, Ssetplist, 2, 2, 0,
29802b85 741 doc: /* Set SYMBOL's property list to NEWPLIST, and return NEWPLIST. */)
8c1a1077 742 (symbol, newplist)
d9c2a0f2 743 register Lisp_Object symbol, newplist;
7921925c 744{
b7826503 745 CHECK_SYMBOL (symbol);
d9c2a0f2 746 XSYMBOL (symbol)->plist = newplist;
7921925c
JB
747 return newplist;
748}
ffd56f97 749
6f0e897f 750DEFUN ("subr-arity", Fsubr_arity, Ssubr_arity, 1, 1, 0,
8c1a1077
PJ
751 doc: /* Return minimum and maximum number of args allowed for SUBR.
752SUBR must be a built-in function.
753The returned value is a pair (MIN . MAX). MIN is the minimum number
754of args. MAX is the maximum number or the symbol `many', for a
755function with `&rest' args, or `unevalled' for a special form. */)
756 (subr)
6f0e897f
DL
757 Lisp_Object subr;
758{
759 short minargs, maxargs;
760 if (!SUBRP (subr))
761 wrong_type_argument (Qsubrp, subr);
762 minargs = XSUBR (subr)->min_args;
763 maxargs = XSUBR (subr)->max_args;
764 if (maxargs == MANY)
765 return Fcons (make_number (minargs), Qmany);
766 else if (maxargs == UNEVALLED)
767 return Fcons (make_number (minargs), Qunevalled);
768 else
769 return Fcons (make_number (minargs), make_number (maxargs));
770}
771
0fddae66
SM
772DEFUN ("subr-name", Fsubr_name, Ssubr_name, 1, 1, 0,
773 doc: /* Return name of subroutine SUBR.
774SUBR must be a built-in function. */)
775 (subr)
776 Lisp_Object subr;
777{
778 const char *name;
779 if (!SUBRP (subr))
780 wrong_type_argument (Qsubrp, subr);
781 name = XSUBR (subr)->symbol_name;
782 return make_string (name, strlen (name));
783}
784
f52a3ca3
SM
785DEFUN ("interactive-form", Finteractive_form, Sinteractive_form, 1, 1, 0,
786 doc: /* Return the interactive form of CMD or nil if none.
df133612
LT
787If CMD is not a command, the return value is nil.
788Value, if non-nil, is a list \(interactive SPEC). */)
f52a3ca3
SM
789 (cmd)
790 Lisp_Object cmd;
cc515226 791{
f52a3ca3
SM
792 Lisp_Object fun = indirect_function (cmd);
793
794 if (SUBRP (fun))
795 {
796 if (XSUBR (fun)->prompt)
797 return list2 (Qinteractive, build_string (XSUBR (fun)->prompt));
798 }
799 else if (COMPILEDP (fun))
800 {
801 if ((ASIZE (fun) & PSEUDOVECTOR_SIZE_MASK) > COMPILED_INTERACTIVE)
802 return list2 (Qinteractive, AREF (fun, COMPILED_INTERACTIVE));
803 }
804 else if (CONSP (fun))
805 {
806 Lisp_Object funcar = XCAR (fun);
807 if (EQ (funcar, Qlambda))
808 return Fassq (Qinteractive, Fcdr (XCDR (fun)));
809 else if (EQ (funcar, Qautoload))
810 {
811 struct gcpro gcpro1;
812 GCPRO1 (cmd);
813 do_autoload (fun, cmd);
814 UNGCPRO;
815 return Finteractive_form (cmd);
816 }
817 }
cc515226
GM
818 return Qnil;
819}
820
7921925c 821\f
f35d5bad
GM
822/***********************************************************************
823 Getting and Setting Values of Symbols
824 ***********************************************************************/
825
826/* Return the symbol holding SYMBOL's value. Signal
827 `cyclic-variable-indirection' if SYMBOL's chain of variable
828 indirections contains a loop. */
829
830Lisp_Object
831indirect_variable (symbol)
832 Lisp_Object symbol;
833{
834 Lisp_Object tortoise, hare;
835
836 hare = tortoise = symbol;
837
838 while (XSYMBOL (hare)->indirect_variable)
839 {
840 hare = XSYMBOL (hare)->value;
841 if (!XSYMBOL (hare)->indirect_variable)
842 break;
bfb96cb7 843
f35d5bad
GM
844 hare = XSYMBOL (hare)->value;
845 tortoise = XSYMBOL (tortoise)->value;
846
847 if (EQ (hare, tortoise))
848 Fsignal (Qcyclic_variable_indirection, Fcons (symbol, Qnil));
849 }
850
851 return hare;
852}
853
854
855DEFUN ("indirect-variable", Findirect_variable, Sindirect_variable, 1, 1, 0,
8c1a1077
PJ
856 doc: /* Return the variable at the end of OBJECT's variable chain.
857If OBJECT is a symbol, follow all variable indirections and return the final
858variable. If OBJECT is not a symbol, just return it.
859Signal a cyclic-variable-indirection error if there is a loop in the
860variable chain of symbols. */)
861 (object)
f35d5bad
GM
862 Lisp_Object object;
863{
864 if (SYMBOLP (object))
865 object = indirect_variable (object);
866 return object;
867}
868
7921925c
JB
869
870/* Given the raw contents of a symbol value cell,
871 return the Lisp value of the symbol.
872 This does not handle buffer-local variables; use
873 swap_in_symval_forwarding for that. */
874
875Lisp_Object
876do_symval_forwarding (valcontents)
877 register Lisp_Object valcontents;
878{
879 register Lisp_Object val;
46b2ac21
KH
880 int offset;
881 if (MISCP (valcontents))
324a6eef 882 switch (XMISCTYPE (valcontents))
46b2ac21
KH
883 {
884 case Lisp_Misc_Intfwd:
885 XSETINT (val, *XINTFWD (valcontents)->intvar);
886 return val;
7921925c 887
46b2ac21
KH
888 case Lisp_Misc_Boolfwd:
889 return (*XBOOLFWD (valcontents)->boolvar ? Qt : Qnil);
7921925c 890
46b2ac21
KH
891 case Lisp_Misc_Objfwd:
892 return *XOBJFWD (valcontents)->objvar;
7921925c 893
46b2ac21
KH
894 case Lisp_Misc_Buffer_Objfwd:
895 offset = XBUFFER_OBJFWD (valcontents)->offset;
f6cd0527 896 return PER_BUFFER_VALUE (current_buffer, offset);
7403b5c8 897
e5f8af9e
KH
898 case Lisp_Misc_Kboard_Objfwd:
899 offset = XKBOARD_OBJFWD (valcontents)->offset;
900 return *(Lisp_Object *)(offset + (char *)current_kboard);
46b2ac21 901 }
7921925c
JB
902 return valcontents;
903}
904
d9c2a0f2
EN
905/* Store NEWVAL into SYMBOL, where VALCONTENTS is found in the value cell
906 of SYMBOL. If SYMBOL is buffer-local, VALCONTENTS should be the
7921925c 907 buffer-independent contents of the value cell: forwarded just one
7a283f36
GM
908 step past the buffer-localness.
909
910 BUF non-zero means set the value in buffer BUF instead of the
911 current buffer. This only plays a role for per-buffer variables. */
7921925c
JB
912
913void
7a283f36 914store_symval_forwarding (symbol, valcontents, newval, buf)
d9c2a0f2 915 Lisp_Object symbol;
7921925c 916 register Lisp_Object valcontents, newval;
7a283f36 917 struct buffer *buf;
7921925c 918{
0220c518 919 switch (SWITCH_ENUM_CAST (XTYPE (valcontents)))
7921925c 920 {
46b2ac21 921 case Lisp_Misc:
324a6eef 922 switch (XMISCTYPE (valcontents))
46b2ac21
KH
923 {
924 case Lisp_Misc_Intfwd:
b7826503 925 CHECK_NUMBER (newval);
46b2ac21 926 *XINTFWD (valcontents)->intvar = XINT (newval);
e6c82a8d
RS
927 if (*XINTFWD (valcontents)->intvar != XINT (newval))
928 error ("Value out of range for variable `%s'",
d5db4077 929 SDATA (SYMBOL_NAME (symbol)));
46b2ac21
KH
930 break;
931
932 case Lisp_Misc_Boolfwd:
933 *XBOOLFWD (valcontents)->boolvar = NILP (newval) ? 0 : 1;
934 break;
935
936 case Lisp_Misc_Objfwd:
937 *XOBJFWD (valcontents)->objvar = newval;
7abd90ea
RS
938
939 /* If this variable is a default for something stored
940 in the buffer itself, such as default-fill-column,
941 find the buffers that don't have local values for it
942 and update them. */
943 if (XOBJFWD (valcontents)->objvar > (Lisp_Object *) &buffer_defaults
944 && XOBJFWD (valcontents)->objvar < (Lisp_Object *) (&buffer_defaults + 1))
945 {
946 int offset = ((char *) XOBJFWD (valcontents)->objvar
947 - (char *) &buffer_defaults);
948 int idx = PER_BUFFER_IDX (offset);
949
43e50e40 950 Lisp_Object tail;
7abd90ea
RS
951
952 if (idx <= 0)
953 break;
954
955 for (tail = Vbuffer_alist; CONSP (tail); tail = XCDR (tail))
956 {
957 Lisp_Object buf;
958 struct buffer *b;
959
960 buf = Fcdr (XCAR (tail));
961 if (!BUFFERP (buf)) continue;
962 b = XBUFFER (buf);
963
964 if (! PER_BUFFER_VALUE_P (b, idx))
965 PER_BUFFER_VALUE (b, offset) = newval;
966 }
967 }
46b2ac21
KH
968 break;
969
970 case Lisp_Misc_Buffer_Objfwd:
971 {
972 int offset = XBUFFER_OBJFWD (valcontents)->offset;
973 Lisp_Object type;
974
d9b36d19 975 type = PER_BUFFER_TYPE (offset);
46b2ac21
KH
976 if (! NILP (type) && ! NILP (newval)
977 && XTYPE (newval) != XINT (type))
978 buffer_slot_type_mismatch (offset);
979
7a283f36
GM
980 if (buf == NULL)
981 buf = current_buffer;
982 PER_BUFFER_VALUE (buf, offset) = newval;
46b2ac21 983 }
7403b5c8
KH
984 break;
985
e5f8af9e 986 case Lisp_Misc_Kboard_Objfwd:
7a283f36
GM
987 {
988 char *base = (char *) current_kboard;
989 char *p = base + XKBOARD_OBJFWD (valcontents)->offset;
990 *(Lisp_Object *) p = newval;
991 }
7403b5c8
KH
992 break;
993
46b2ac21
KH
994 default:
995 goto def;
996 }
7921925c
JB
997 break;
998
7921925c 999 default:
46b2ac21 1000 def:
f35d5bad 1001 valcontents = SYMBOL_VALUE (symbol);
e9ebc175
KH
1002 if (BUFFER_LOCAL_VALUEP (valcontents)
1003 || SOME_BUFFER_LOCAL_VALUEP (valcontents))
b0c2d1c6 1004 XBUFFER_LOCAL_VALUE (valcontents)->realvalue = newval;
7921925c 1005 else
f35d5bad 1006 SET_SYMBOL_VALUE (symbol, newval);
7921925c
JB
1007 }
1008}
1009
b0d53add
GM
1010/* Set up SYMBOL to refer to its global binding.
1011 This makes it safe to alter the status of other bindings. */
1012
1013void
1014swap_in_global_binding (symbol)
1015 Lisp_Object symbol;
1016{
1017 Lisp_Object valcontents, cdr;
bfb96cb7 1018
f35d5bad 1019 valcontents = SYMBOL_VALUE (symbol);
b0d53add
GM
1020 if (!BUFFER_LOCAL_VALUEP (valcontents)
1021 && !SOME_BUFFER_LOCAL_VALUEP (valcontents))
1022 abort ();
1023 cdr = XBUFFER_LOCAL_VALUE (valcontents)->cdr;
1024
1025 /* Unload the previously loaded binding. */
1026 Fsetcdr (XCAR (cdr),
1027 do_symval_forwarding (XBUFFER_LOCAL_VALUE (valcontents)->realvalue));
bfb96cb7 1028
b0d53add 1029 /* Select the global binding in the symbol. */
f3fbd155 1030 XSETCAR (cdr, cdr);
7a283f36 1031 store_symval_forwarding (symbol, valcontents, XCDR (cdr), NULL);
b0d53add
GM
1032
1033 /* Indicate that the global binding is set up now. */
1034 XBUFFER_LOCAL_VALUE (valcontents)->frame = Qnil;
1035 XBUFFER_LOCAL_VALUE (valcontents)->buffer = Qnil;
1036 XBUFFER_LOCAL_VALUE (valcontents)->found_for_frame = 0;
1037 XBUFFER_LOCAL_VALUE (valcontents)->found_for_buffer = 0;
1038}
1039
2829d05f 1040/* Set up the buffer-local symbol SYMBOL for validity in the current buffer.
42e975f0
RS
1041 VALCONTENTS is the contents of its value cell,
1042 which points to a struct Lisp_Buffer_Local_Value.
1043
1044 Return the value forwarded one step past the buffer-local stage.
1045 This could be another forwarding pointer. */
7921925c
JB
1046
1047static Lisp_Object
d9c2a0f2
EN
1048swap_in_symval_forwarding (symbol, valcontents)
1049 Lisp_Object symbol, valcontents;
7921925c 1050{
7921925c 1051 register Lisp_Object tem1;
bfb96cb7 1052
b0c2d1c6 1053 tem1 = XBUFFER_LOCAL_VALUE (valcontents)->buffer;
7921925c 1054
42e975f0
RS
1055 if (NILP (tem1)
1056 || current_buffer != XBUFFER (tem1)
1057 || (XBUFFER_LOCAL_VALUE (valcontents)->check_frame
1058 && ! EQ (selected_frame, XBUFFER_LOCAL_VALUE (valcontents)->frame)))
7921925c 1059 {
f35d5bad
GM
1060 if (XSYMBOL (symbol)->indirect_variable)
1061 symbol = indirect_variable (symbol);
bfb96cb7 1062
42e975f0 1063 /* Unload the previously loaded binding. */
7539e11f 1064 tem1 = XCAR (XBUFFER_LOCAL_VALUE (valcontents)->cdr);
8d4afcac 1065 Fsetcdr (tem1,
b0c2d1c6 1066 do_symval_forwarding (XBUFFER_LOCAL_VALUE (valcontents)->realvalue));
42e975f0 1067 /* Choose the new binding. */
d9c2a0f2 1068 tem1 = assq_no_quit (symbol, current_buffer->local_var_alist);
b0c2d1c6
RS
1069 XBUFFER_LOCAL_VALUE (valcontents)->found_for_frame = 0;
1070 XBUFFER_LOCAL_VALUE (valcontents)->found_for_buffer = 0;
a33ef3ab 1071 if (NILP (tem1))
b0c2d1c6
RS
1072 {
1073 if (XBUFFER_LOCAL_VALUE (valcontents)->check_frame)
1cc04aed 1074 tem1 = assq_no_quit (symbol, XFRAME (selected_frame)->param_alist);
b0c2d1c6
RS
1075 if (! NILP (tem1))
1076 XBUFFER_LOCAL_VALUE (valcontents)->found_for_frame = 1;
1077 else
1078 tem1 = XBUFFER_LOCAL_VALUE (valcontents)->cdr;
1079 }
1080 else
1081 XBUFFER_LOCAL_VALUE (valcontents)->found_for_buffer = 1;
1082
42e975f0 1083 /* Load the new binding. */
f3fbd155 1084 XSETCAR (XBUFFER_LOCAL_VALUE (valcontents)->cdr, tem1);
b0c2d1c6 1085 XSETBUFFER (XBUFFER_LOCAL_VALUE (valcontents)->buffer, current_buffer);
1cc04aed 1086 XBUFFER_LOCAL_VALUE (valcontents)->frame = selected_frame;
b0c2d1c6
RS
1087 store_symval_forwarding (symbol,
1088 XBUFFER_LOCAL_VALUE (valcontents)->realvalue,
7a283f36 1089 Fcdr (tem1), NULL);
7921925c 1090 }
b0c2d1c6 1091 return XBUFFER_LOCAL_VALUE (valcontents)->realvalue;
7921925c
JB
1092}
1093\f
14e76af9
JB
1094/* Find the value of a symbol, returning Qunbound if it's not bound.
1095 This is helpful for code which just wants to get a variable's value
8e6208c5 1096 if it has one, without signaling an error.
14e76af9
JB
1097 Note that it must not be possible to quit
1098 within this function. Great care is required for this. */
7921925c 1099
14e76af9 1100Lisp_Object
d9c2a0f2
EN
1101find_symbol_value (symbol)
1102 Lisp_Object symbol;
7921925c 1103{
dd8daec5 1104 register Lisp_Object valcontents;
7921925c 1105 register Lisp_Object val;
bfb96cb7 1106
b7826503 1107 CHECK_SYMBOL (symbol);
f35d5bad 1108 valcontents = SYMBOL_VALUE (symbol);
7921925c 1109
aabf6bec
KH
1110 if (BUFFER_LOCAL_VALUEP (valcontents)
1111 || SOME_BUFFER_LOCAL_VALUEP (valcontents))
2a359158 1112 valcontents = swap_in_symval_forwarding (symbol, valcontents);
7921925c 1113
536b772a
KH
1114 if (MISCP (valcontents))
1115 {
324a6eef 1116 switch (XMISCTYPE (valcontents))
46b2ac21
KH
1117 {
1118 case Lisp_Misc_Intfwd:
1119 XSETINT (val, *XINTFWD (valcontents)->intvar);
1120 return val;
7921925c 1121
46b2ac21
KH
1122 case Lisp_Misc_Boolfwd:
1123 return (*XBOOLFWD (valcontents)->boolvar ? Qt : Qnil);
7921925c 1124
46b2ac21
KH
1125 case Lisp_Misc_Objfwd:
1126 return *XOBJFWD (valcontents)->objvar;
7921925c 1127
46b2ac21 1128 case Lisp_Misc_Buffer_Objfwd:
f6cd0527 1129 return PER_BUFFER_VALUE (current_buffer,
999b32fd 1130 XBUFFER_OBJFWD (valcontents)->offset);
7403b5c8 1131
e5f8af9e
KH
1132 case Lisp_Misc_Kboard_Objfwd:
1133 return *(Lisp_Object *)(XKBOARD_OBJFWD (valcontents)->offset
1134 + (char *)current_kboard);
46b2ac21 1135 }
7921925c
JB
1136 }
1137
1138 return valcontents;
1139}
1140
14e76af9 1141DEFUN ("symbol-value", Fsymbol_value, Ssymbol_value, 1, 1, 0,
8c1a1077
PJ
1142 doc: /* Return SYMBOL's value. Error if that is void. */)
1143 (symbol)
d9c2a0f2 1144 Lisp_Object symbol;
14e76af9 1145{
0671d7c0 1146 Lisp_Object val;
14e76af9 1147
d9c2a0f2 1148 val = find_symbol_value (symbol);
14e76af9 1149 if (EQ (val, Qunbound))
d9c2a0f2 1150 return Fsignal (Qvoid_variable, Fcons (symbol, Qnil));
14e76af9
JB
1151 else
1152 return val;
1153}
1154
7921925c 1155DEFUN ("set", Fset, Sset, 2, 2, 0,
8c1a1077
PJ
1156 doc: /* Set SYMBOL's value to NEWVAL, and return NEWVAL. */)
1157 (symbol, newval)
d9c2a0f2 1158 register Lisp_Object symbol, newval;
05ef7169 1159{
2829d05f 1160 return set_internal (symbol, newval, current_buffer, 0);
05ef7169
RS
1161}
1162
1f35ce36
RS
1163/* Return 1 if SYMBOL currently has a let-binding
1164 which was made in the buffer that is now current. */
1165
1166static int
1167let_shadows_buffer_binding_p (symbol)
1168 Lisp_Object symbol;
1169{
92426155 1170 volatile struct specbinding *p;
1f35ce36
RS
1171
1172 for (p = specpdl_ptr - 1; p >= specpdl; p--)
f35d5bad
GM
1173 if (p->func == NULL
1174 && CONSP (p->symbol))
1175 {
1176 Lisp_Object let_bound_symbol = XCAR (p->symbol);
1177 if ((EQ (symbol, let_bound_symbol)
1178 || (XSYMBOL (let_bound_symbol)->indirect_variable
1179 && EQ (symbol, indirect_variable (let_bound_symbol))))
1180 && XBUFFER (XCDR (XCDR (p->symbol))) == current_buffer)
1181 break;
1182 }
1f35ce36 1183
f35d5bad 1184 return p >= specpdl;
1f35ce36
RS
1185}
1186
25638b07 1187/* Store the value NEWVAL into SYMBOL.
2829d05f
RS
1188 If buffer-locality is an issue, BUF specifies which buffer to use.
1189 (0 stands for the current buffer.)
1190
05ef7169
RS
1191 If BINDFLAG is zero, then if this symbol is supposed to become
1192 local in every buffer where it is set, then we make it local.
1193 If BINDFLAG is nonzero, we don't do that. */
1194
1195Lisp_Object
2829d05f 1196set_internal (symbol, newval, buf, bindflag)
05ef7169 1197 register Lisp_Object symbol, newval;
2829d05f 1198 struct buffer *buf;
05ef7169 1199 int bindflag;
7921925c 1200{
1bfcade3 1201 int voide = EQ (newval, Qunbound);
7921925c 1202
4c47c973 1203 register Lisp_Object valcontents, innercontents, tem1, current_alist_element;
7921925c 1204
2829d05f
RS
1205 if (buf == 0)
1206 buf = current_buffer;
1207
1208 /* If restoring in a dead buffer, do nothing. */
1209 if (NILP (buf->name))
1210 return newval;
1211
b7826503 1212 CHECK_SYMBOL (symbol);
f35d5bad
GM
1213 if (SYMBOL_CONSTANT_P (symbol)
1214 && (NILP (Fkeywordp (symbol))
1215 || !EQ (newval, SYMBOL_VALUE (symbol))))
d9c2a0f2 1216 return Fsignal (Qsetting_constant, Fcons (symbol, Qnil));
4c47c973 1217
f35d5bad 1218 innercontents = valcontents = SYMBOL_VALUE (symbol);
bfb96cb7 1219
e9ebc175 1220 if (BUFFER_OBJFWDP (valcontents))
7921925c 1221 {
999b32fd 1222 int offset = XBUFFER_OBJFWD (valcontents)->offset;
f6cd0527 1223 int idx = PER_BUFFER_IDX (offset);
999b32fd
GM
1224 if (idx > 0
1225 && !bindflag
1226 && !let_shadows_buffer_binding_p (symbol))
f6cd0527 1227 SET_PER_BUFFER_VALUE_P (buf, idx, 1);
7921925c 1228 }
e9ebc175
KH
1229 else if (BUFFER_LOCAL_VALUEP (valcontents)
1230 || SOME_BUFFER_LOCAL_VALUEP (valcontents))
7921925c 1231 {
42e975f0 1232 /* valcontents is a struct Lisp_Buffer_Local_Value. */
f35d5bad
GM
1233 if (XSYMBOL (symbol)->indirect_variable)
1234 symbol = indirect_variable (symbol);
42e975f0
RS
1235
1236 /* What binding is loaded right now? */
b0c2d1c6 1237 current_alist_element
7539e11f 1238 = XCAR (XBUFFER_LOCAL_VALUE (valcontents)->cdr);
d8cafeb5
JB
1239
1240 /* If the current buffer is not the buffer whose binding is
42e975f0
RS
1241 loaded, or if there may be frame-local bindings and the frame
1242 isn't the right one, or if it's a Lisp_Buffer_Local_Value and
1243 the default binding is loaded, the loaded binding may be the
1244 wrong one. */
8801a864
KR
1245 if (!BUFFERP (XBUFFER_LOCAL_VALUE (valcontents)->buffer)
1246 || buf != XBUFFER (XBUFFER_LOCAL_VALUE (valcontents)->buffer)
42e975f0
RS
1247 || (XBUFFER_LOCAL_VALUE (valcontents)->check_frame
1248 && !EQ (selected_frame, XBUFFER_LOCAL_VALUE (valcontents)->frame))
1249 || (BUFFER_LOCAL_VALUEP (valcontents)
1250 && EQ (XCAR (current_alist_element),
1251 current_alist_element)))
7921925c 1252 {
42e975f0
RS
1253 /* The currently loaded binding is not necessarily valid.
1254 We need to unload it, and choose a new binding. */
1255
1256 /* Write out `realvalue' to the old loaded binding. */
d8cafeb5 1257 Fsetcdr (current_alist_element,
b0c2d1c6 1258 do_symval_forwarding (XBUFFER_LOCAL_VALUE (valcontents)->realvalue));
7921925c 1259
42e975f0 1260 /* Find the new binding. */
2829d05f 1261 tem1 = Fassq (symbol, buf->local_var_alist);
b0c2d1c6
RS
1262 XBUFFER_LOCAL_VALUE (valcontents)->found_for_buffer = 1;
1263 XBUFFER_LOCAL_VALUE (valcontents)->found_for_frame = 0;
1264
a33ef3ab 1265 if (NILP (tem1))
d8cafeb5
JB
1266 {
1267 /* This buffer still sees the default value. */
1268
1269 /* If the variable is a Lisp_Some_Buffer_Local_Value,
05ef7169 1270 or if this is `let' rather than `set',
d8cafeb5 1271 make CURRENT-ALIST-ELEMENT point to itself,
1f35ce36
RS
1272 indicating that we're seeing the default value.
1273 Likewise if the variable has been let-bound
1274 in the current buffer. */
1275 if (bindflag || SOME_BUFFER_LOCAL_VALUEP (valcontents)
1276 || let_shadows_buffer_binding_p (symbol))
b0c2d1c6
RS
1277 {
1278 XBUFFER_LOCAL_VALUE (valcontents)->found_for_buffer = 0;
1279
1280 if (XBUFFER_LOCAL_VALUE (valcontents)->check_frame)
1cc04aed
GM
1281 tem1 = Fassq (symbol,
1282 XFRAME (selected_frame)->param_alist);
d8cafeb5 1283
b0c2d1c6
RS
1284 if (! NILP (tem1))
1285 XBUFFER_LOCAL_VALUE (valcontents)->found_for_frame = 1;
1286 else
1287 tem1 = XBUFFER_LOCAL_VALUE (valcontents)->cdr;
1288 }
05ef7169 1289 /* If it's a Lisp_Buffer_Local_Value, being set not bound,
1f35ce36
RS
1290 and we're not within a let that was made for this buffer,
1291 create a new buffer-local binding for the variable.
1292 That means, give this buffer a new assoc for a local value
42e975f0 1293 and load that binding. */
d8cafeb5
JB
1294 else
1295 {
d2fde41d 1296 tem1 = Fcons (symbol, XCDR (current_alist_element));
2829d05f
RS
1297 buf->local_var_alist
1298 = Fcons (tem1, buf->local_var_alist);
d8cafeb5
JB
1299 }
1300 }
b0c2d1c6 1301
42e975f0 1302 /* Record which binding is now loaded. */
f3fbd155
KR
1303 XSETCAR (XBUFFER_LOCAL_VALUE (valcontents)->cdr,
1304 tem1);
d8cafeb5 1305
42e975f0 1306 /* Set `buffer' and `frame' slots for thebinding now loaded. */
2829d05f 1307 XSETBUFFER (XBUFFER_LOCAL_VALUE (valcontents)->buffer, buf);
1cc04aed 1308 XBUFFER_LOCAL_VALUE (valcontents)->frame = selected_frame;
7921925c 1309 }
4c47c973 1310 innercontents = XBUFFER_LOCAL_VALUE (valcontents)->realvalue;
7921925c 1311 }
d8cafeb5 1312
7921925c
JB
1313 /* If storing void (making the symbol void), forward only through
1314 buffer-local indicator, not through Lisp_Objfwd, etc. */
1315 if (voide)
7a283f36 1316 store_symval_forwarding (symbol, Qnil, newval, buf);
7921925c 1317 else
7a283f36 1318 store_symval_forwarding (symbol, innercontents, newval, buf);
4c47c973
GM
1319
1320 /* If we just set a variable whose current binding is frame-local,
1321 store the new value in the frame parameter too. */
1322
1323 if (BUFFER_LOCAL_VALUEP (valcontents)
1324 || SOME_BUFFER_LOCAL_VALUEP (valcontents))
1325 {
1326 /* What binding is loaded right now? */
1327 current_alist_element
1328 = XCAR (XBUFFER_LOCAL_VALUE (valcontents)->cdr);
1329
1330 /* If the current buffer is not the buffer whose binding is
1331 loaded, or if there may be frame-local bindings and the frame
1332 isn't the right one, or if it's a Lisp_Buffer_Local_Value and
1333 the default binding is loaded, the loaded binding may be the
1334 wrong one. */
1335 if (XBUFFER_LOCAL_VALUE (valcontents)->found_for_frame)
f3fbd155 1336 XSETCDR (current_alist_element, newval);
4c47c973 1337 }
d8cafeb5 1338
7921925c
JB
1339 return newval;
1340}
1341\f
1342/* Access or set a buffer-local symbol's default value. */
1343
d9c2a0f2 1344/* Return the default value of SYMBOL, but don't check for voidness.
1bfcade3 1345 Return Qunbound if it is void. */
7921925c
JB
1346
1347Lisp_Object
d9c2a0f2
EN
1348default_value (symbol)
1349 Lisp_Object symbol;
7921925c
JB
1350{
1351 register Lisp_Object valcontents;
1352
b7826503 1353 CHECK_SYMBOL (symbol);
f35d5bad 1354 valcontents = SYMBOL_VALUE (symbol);
7921925c
JB
1355
1356 /* For a built-in buffer-local variable, get the default value
1357 rather than letting do_symval_forwarding get the current value. */
e9ebc175 1358 if (BUFFER_OBJFWDP (valcontents))
7921925c 1359 {
999b32fd 1360 int offset = XBUFFER_OBJFWD (valcontents)->offset;
f6cd0527
GM
1361 if (PER_BUFFER_IDX (offset) != 0)
1362 return PER_BUFFER_DEFAULT (offset);
7921925c
JB
1363 }
1364
1365 /* Handle user-created local variables. */
e9ebc175
KH
1366 if (BUFFER_LOCAL_VALUEP (valcontents)
1367 || SOME_BUFFER_LOCAL_VALUEP (valcontents))
7921925c
JB
1368 {
1369 /* If var is set up for a buffer that lacks a local value for it,
1370 the current value is nominally the default value.
42e975f0 1371 But the `realvalue' slot may be more up to date, since
7921925c
JB
1372 ordinary setq stores just that slot. So use that. */
1373 Lisp_Object current_alist_element, alist_element_car;
1374 current_alist_element
7539e11f
KR
1375 = XCAR (XBUFFER_LOCAL_VALUE (valcontents)->cdr);
1376 alist_element_car = XCAR (current_alist_element);
7921925c 1377 if (EQ (alist_element_car, current_alist_element))
b0c2d1c6 1378 return do_symval_forwarding (XBUFFER_LOCAL_VALUE (valcontents)->realvalue);
7921925c 1379 else
7539e11f 1380 return XCDR (XBUFFER_LOCAL_VALUE (valcontents)->cdr);
7921925c
JB
1381 }
1382 /* For other variables, get the current value. */
1383 return do_symval_forwarding (valcontents);
1384}
1385
1386DEFUN ("default-boundp", Fdefault_boundp, Sdefault_boundp, 1, 1, 0,
8c1a1077
PJ
1387 doc: /* Return t if SYMBOL has a non-void default value.
1388This is the value that is seen in buffers that do not have their own values
1389for this variable. */)
1390 (symbol)
d9c2a0f2 1391 Lisp_Object symbol;
7921925c
JB
1392{
1393 register Lisp_Object value;
1394
d9c2a0f2 1395 value = default_value (symbol);
1bfcade3 1396 return (EQ (value, Qunbound) ? Qnil : Qt);
7921925c
JB
1397}
1398
1399DEFUN ("default-value", Fdefault_value, Sdefault_value, 1, 1, 0,
8c1a1077
PJ
1400 doc: /* Return SYMBOL's default value.
1401This is the value that is seen in buffers that do not have their own values
1402for this variable. The default value is meaningful for variables with
1403local bindings in certain buffers. */)
1404 (symbol)
d9c2a0f2 1405 Lisp_Object symbol;
7921925c
JB
1406{
1407 register Lisp_Object value;
1408
d9c2a0f2 1409 value = default_value (symbol);
1bfcade3 1410 if (EQ (value, Qunbound))
d9c2a0f2 1411 return Fsignal (Qvoid_variable, Fcons (symbol, Qnil));
7921925c
JB
1412 return value;
1413}
1414
1415DEFUN ("set-default", Fset_default, Sset_default, 2, 2, 0,
6e86a75d 1416 doc: /* Set SYMBOL's default value to VALUE. SYMBOL and VALUE are evaluated.
8c1a1077
PJ
1417The default value is seen in buffers that do not have their own values
1418for this variable. */)
1419 (symbol, value)
d9c2a0f2 1420 Lisp_Object symbol, value;
7921925c
JB
1421{
1422 register Lisp_Object valcontents, current_alist_element, alist_element_buffer;
1423
b7826503 1424 CHECK_SYMBOL (symbol);
f35d5bad 1425 valcontents = SYMBOL_VALUE (symbol);
7921925c
JB
1426
1427 /* Handle variables like case-fold-search that have special slots
1428 in the buffer. Make them work apparently like Lisp_Buffer_Local_Value
1429 variables. */
e9ebc175 1430 if (BUFFER_OBJFWDP (valcontents))
7921925c 1431 {
999b32fd 1432 int offset = XBUFFER_OBJFWD (valcontents)->offset;
f6cd0527 1433 int idx = PER_BUFFER_IDX (offset);
7921925c 1434
f6cd0527 1435 PER_BUFFER_DEFAULT (offset) = value;
984ef137
KH
1436
1437 /* If this variable is not always local in all buffers,
1438 set it in the buffers that don't nominally have a local value. */
999b32fd 1439 if (idx > 0)
7921925c 1440 {
999b32fd 1441 struct buffer *b;
bfb96cb7 1442
7921925c 1443 for (b = all_buffers; b; b = b->next)
f6cd0527
GM
1444 if (!PER_BUFFER_VALUE_P (b, idx))
1445 PER_BUFFER_VALUE (b, offset) = value;
7921925c
JB
1446 }
1447 return value;
1448 }
1449
e9ebc175
KH
1450 if (!BUFFER_LOCAL_VALUEP (valcontents)
1451 && !SOME_BUFFER_LOCAL_VALUEP (valcontents))
d9c2a0f2 1452 return Fset (symbol, value);
7921925c 1453
42e975f0 1454 /* Store new value into the DEFAULT-VALUE slot. */
f3fbd155 1455 XSETCDR (XBUFFER_LOCAL_VALUE (valcontents)->cdr, value);
7921925c 1456
42e975f0 1457 /* If the default binding is now loaded, set the REALVALUE slot too. */
8d4afcac 1458 current_alist_element
7539e11f 1459 = XCAR (XBUFFER_LOCAL_VALUE (valcontents)->cdr);
7921925c
JB
1460 alist_element_buffer = Fcar (current_alist_element);
1461 if (EQ (alist_element_buffer, current_alist_element))
7a283f36
GM
1462 store_symval_forwarding (symbol,
1463 XBUFFER_LOCAL_VALUE (valcontents)->realvalue,
1464 value, NULL);
7921925c
JB
1465
1466 return value;
1467}
1468
7a7df7ac 1469DEFUN ("setq-default", Fsetq_default, Ssetq_default, 0, UNEVALLED, 0,
8c1a1077
PJ
1470 doc: /* Set the default value of variable VAR to VALUE.
1471VAR, the variable name, is literal (not evaluated);
bfb96cb7 1472VALUE is an expression: it is evaluated and its value returned.
8c1a1077
PJ
1473The default value of a variable is seen in buffers
1474that do not have their own values for the variable.
1475
1476More generally, you can use multiple variables and values, as in
948d2995
JB
1477 (setq-default VAR VALUE VAR VALUE...)
1478This sets each VAR's default value to the corresponding VALUE.
1479The VALUE for the Nth VAR can refer to the new default values
1480of previous VARs.
7a7df7ac 1481usage: (setq-default [VAR VALUE...]) */)
8c1a1077 1482 (args)
7921925c
JB
1483 Lisp_Object args;
1484{
1485 register Lisp_Object args_left;
d9c2a0f2 1486 register Lisp_Object val, symbol;
7921925c
JB
1487 struct gcpro gcpro1;
1488
a33ef3ab 1489 if (NILP (args))
7921925c
JB
1490 return Qnil;
1491
1492 args_left = args;
1493 GCPRO1 (args);
1494
1495 do
1496 {
1497 val = Feval (Fcar (Fcdr (args_left)));
d2fde41d 1498 symbol = XCAR (args_left);
d9c2a0f2 1499 Fset_default (symbol, val);
d2fde41d 1500 args_left = Fcdr (XCDR (args_left));
7921925c 1501 }
a33ef3ab 1502 while (!NILP (args_left));
7921925c
JB
1503
1504 UNGCPRO;
1505 return val;
1506}
1507\f
a5ca2b75
JB
1508/* Lisp functions for creating and removing buffer-local variables. */
1509
7921925c 1510DEFUN ("make-variable-buffer-local", Fmake_variable_buffer_local, Smake_variable_buffer_local,
8c1a1077
PJ
1511 1, 1, "vMake Variable Buffer Local: ",
1512 doc: /* Make VARIABLE become buffer-local whenever it is set.
1513At any time, the value for the current buffer is in effect,
1514unless the variable has never been set in this buffer,
1515in which case the default value is in effect.
1516Note that binding the variable with `let', or setting it while
1517a `let'-style binding made in this buffer is in effect,
bfb96cb7 1518does not make the variable buffer-local. Return VARIABLE.
8c1a1077 1519
a9908653
RS
1520In most cases it is better to use `make-local-variable',
1521which makes a variable local in just one buffer.
1522
8c1a1077
PJ
1523The function `default-value' gets the default value and `set-default' sets it. */)
1524 (variable)
d9c2a0f2 1525 register Lisp_Object variable;
7921925c 1526{
8d4afcac 1527 register Lisp_Object tem, valcontents, newval;
7921925c 1528
b7826503 1529 CHECK_SYMBOL (variable);
14970b45 1530 variable = indirect_variable (variable);
7921925c 1531
f35d5bad 1532 valcontents = SYMBOL_VALUE (variable);
d9c2a0f2 1533 if (EQ (variable, Qnil) || EQ (variable, Qt) || KBOARD_OBJFWDP (valcontents))
d5db4077 1534 error ("Symbol %s may not be buffer-local", SDATA (SYMBOL_NAME (variable)));
7921925c 1535
e9ebc175 1536 if (BUFFER_LOCAL_VALUEP (valcontents) || BUFFER_OBJFWDP (valcontents))
d9c2a0f2 1537 return variable;
e9ebc175 1538 if (SOME_BUFFER_LOCAL_VALUEP (valcontents))
7921925c 1539 {
f35d5bad 1540 XMISCTYPE (SYMBOL_VALUE (variable)) = Lisp_Misc_Buffer_Local_Value;
d9c2a0f2 1541 return variable;
7921925c
JB
1542 }
1543 if (EQ (valcontents, Qunbound))
f35d5bad 1544 SET_SYMBOL_VALUE (variable, Qnil);
d9c2a0f2 1545 tem = Fcons (Qnil, Fsymbol_value (variable));
f3fbd155 1546 XSETCAR (tem, tem);
8d4afcac 1547 newval = allocate_misc ();
324a6eef 1548 XMISCTYPE (newval) = Lisp_Misc_Buffer_Local_Value;
f35d5bad 1549 XBUFFER_LOCAL_VALUE (newval)->realvalue = SYMBOL_VALUE (variable);
b0c2d1c6
RS
1550 XBUFFER_LOCAL_VALUE (newval)->buffer = Fcurrent_buffer ();
1551 XBUFFER_LOCAL_VALUE (newval)->frame = Qnil;
42e975f0 1552 XBUFFER_LOCAL_VALUE (newval)->found_for_buffer = 0;
b0c2d1c6
RS
1553 XBUFFER_LOCAL_VALUE (newval)->found_for_frame = 0;
1554 XBUFFER_LOCAL_VALUE (newval)->check_frame = 0;
1555 XBUFFER_LOCAL_VALUE (newval)->cdr = tem;
f35d5bad 1556 SET_SYMBOL_VALUE (variable, newval);
d9c2a0f2 1557 return variable;
7921925c
JB
1558}
1559
1560DEFUN ("make-local-variable", Fmake_local_variable, Smake_local_variable,
8c1a1077
PJ
1561 1, 1, "vMake Local Variable: ",
1562 doc: /* Make VARIABLE have a separate value in the current buffer.
1563Other buffers will continue to share a common default value.
1564\(The buffer-local value of VARIABLE starts out as the same value
1565VARIABLE previously had. If VARIABLE was void, it remains void.\)
a9908653 1566Return VARIABLE.
8c1a1077
PJ
1567
1568If the variable is already arranged to become local when set,
1569this function causes a local value to exist for this buffer,
1570just as setting the variable would do.
1571
1572This function returns VARIABLE, and therefore
1573 (set (make-local-variable 'VARIABLE) VALUE-EXP)
1574works.
1575
a9908653
RS
1576See also `make-variable-buffer-local'.
1577
8c1a1077 1578Do not use `make-local-variable' to make a hook variable buffer-local.
515f3f25 1579Instead, use `add-hook' and specify t for the LOCAL argument. */)
8c1a1077 1580 (variable)
d9c2a0f2 1581 register Lisp_Object variable;
7921925c
JB
1582{
1583 register Lisp_Object tem, valcontents;
1584
b7826503 1585 CHECK_SYMBOL (variable);
14970b45 1586 variable = indirect_variable (variable);
7921925c 1587
f35d5bad 1588 valcontents = SYMBOL_VALUE (variable);
d9c2a0f2 1589 if (EQ (variable, Qnil) || EQ (variable, Qt) || KBOARD_OBJFWDP (valcontents))
d5db4077 1590 error ("Symbol %s may not be buffer-local", SDATA (SYMBOL_NAME (variable)));
7921925c 1591
e9ebc175 1592 if (BUFFER_LOCAL_VALUEP (valcontents) || BUFFER_OBJFWDP (valcontents))
7921925c 1593 {
d9c2a0f2 1594 tem = Fboundp (variable);
7403b5c8 1595
7921925c
JB
1596 /* Make sure the symbol has a local value in this particular buffer,
1597 by setting it to the same value it already has. */
d9c2a0f2
EN
1598 Fset (variable, (EQ (tem, Qt) ? Fsymbol_value (variable) : Qunbound));
1599 return variable;
7921925c 1600 }
42e975f0 1601 /* Make sure symbol is set up to hold per-buffer values. */
e9ebc175 1602 if (!SOME_BUFFER_LOCAL_VALUEP (valcontents))
7921925c 1603 {
8d4afcac 1604 Lisp_Object newval;
7921925c 1605 tem = Fcons (Qnil, do_symval_forwarding (valcontents));
f3fbd155 1606 XSETCAR (tem, tem);
8d4afcac 1607 newval = allocate_misc ();
324a6eef 1608 XMISCTYPE (newval) = Lisp_Misc_Some_Buffer_Local_Value;
f35d5bad 1609 XBUFFER_LOCAL_VALUE (newval)->realvalue = SYMBOL_VALUE (variable);
b0c2d1c6
RS
1610 XBUFFER_LOCAL_VALUE (newval)->buffer = Qnil;
1611 XBUFFER_LOCAL_VALUE (newval)->frame = Qnil;
1612 XBUFFER_LOCAL_VALUE (newval)->found_for_buffer = 0;
1613 XBUFFER_LOCAL_VALUE (newval)->found_for_frame = 0;
1614 XBUFFER_LOCAL_VALUE (newval)->check_frame = 0;
1615 XBUFFER_LOCAL_VALUE (newval)->cdr = tem;
f35d5bad 1616 SET_SYMBOL_VALUE (variable, newval);;
7921925c 1617 }
42e975f0 1618 /* Make sure this buffer has its own value of symbol. */
d9c2a0f2 1619 tem = Fassq (variable, current_buffer->local_var_alist);
a33ef3ab 1620 if (NILP (tem))
7921925c 1621 {
a5d004a1
RS
1622 /* Swap out any local binding for some other buffer, and make
1623 sure the current value is permanently recorded, if it's the
1624 default value. */
d9c2a0f2 1625 find_symbol_value (variable);
a5d004a1 1626
7921925c 1627 current_buffer->local_var_alist
f35d5bad 1628 = Fcons (Fcons (variable, XCDR (XBUFFER_LOCAL_VALUE (SYMBOL_VALUE (variable))->cdr)),
7921925c
JB
1629 current_buffer->local_var_alist);
1630
1631 /* Make sure symbol does not think it is set up for this buffer;
42e975f0 1632 force it to look once again for this buffer's value. */
7921925c 1633 {
8d4afcac 1634 Lisp_Object *pvalbuf;
a5d004a1 1635
f35d5bad 1636 valcontents = SYMBOL_VALUE (variable);
a5d004a1 1637
b0c2d1c6 1638 pvalbuf = &XBUFFER_LOCAL_VALUE (valcontents)->buffer;
8d4afcac
KH
1639 if (current_buffer == XBUFFER (*pvalbuf))
1640 *pvalbuf = Qnil;
b0c2d1c6 1641 XBUFFER_LOCAL_VALUE (valcontents)->found_for_buffer = 0;
7921925c 1642 }
7921925c 1643 }
a5ca2b75 1644
42e975f0
RS
1645 /* If the symbol forwards into a C variable, then load the binding
1646 for this buffer now. If C code modifies the variable before we
1647 load the binding in, then that new value will clobber the default
1648 binding the next time we unload it. */
f35d5bad 1649 valcontents = XBUFFER_LOCAL_VALUE (SYMBOL_VALUE (variable))->realvalue;
e9ebc175 1650 if (INTFWDP (valcontents) || BOOLFWDP (valcontents) || OBJFWDP (valcontents))
f35d5bad 1651 swap_in_symval_forwarding (variable, SYMBOL_VALUE (variable));
a5ca2b75 1652
d9c2a0f2 1653 return variable;
7921925c
JB
1654}
1655
1656DEFUN ("kill-local-variable", Fkill_local_variable, Skill_local_variable,
8c1a1077
PJ
1657 1, 1, "vKill Local Variable: ",
1658 doc: /* Make VARIABLE no longer have a separate value in the current buffer.
bfb96cb7 1659From now on the default value will apply in this buffer. Return VARIABLE. */)
8c1a1077 1660 (variable)
d9c2a0f2 1661 register Lisp_Object variable;
7921925c
JB
1662{
1663 register Lisp_Object tem, valcontents;
1664
b7826503 1665 CHECK_SYMBOL (variable);
14970b45 1666 variable = indirect_variable (variable);
7921925c 1667
f35d5bad 1668 valcontents = SYMBOL_VALUE (variable);
7921925c 1669
e9ebc175 1670 if (BUFFER_OBJFWDP (valcontents))
7921925c 1671 {
999b32fd 1672 int offset = XBUFFER_OBJFWD (valcontents)->offset;
f6cd0527 1673 int idx = PER_BUFFER_IDX (offset);
7921925c 1674
999b32fd 1675 if (idx > 0)
7921925c 1676 {
f6cd0527
GM
1677 SET_PER_BUFFER_VALUE_P (current_buffer, idx, 0);
1678 PER_BUFFER_VALUE (current_buffer, offset)
1679 = PER_BUFFER_DEFAULT (offset);
7921925c 1680 }
d9c2a0f2 1681 return variable;
7921925c
JB
1682 }
1683
e9ebc175
KH
1684 if (!BUFFER_LOCAL_VALUEP (valcontents)
1685 && !SOME_BUFFER_LOCAL_VALUEP (valcontents))
d9c2a0f2 1686 return variable;
7921925c 1687
42e975f0 1688 /* Get rid of this buffer's alist element, if any. */
7921925c 1689
d9c2a0f2 1690 tem = Fassq (variable, current_buffer->local_var_alist);
a33ef3ab 1691 if (!NILP (tem))
8d4afcac
KH
1692 current_buffer->local_var_alist
1693 = Fdelq (tem, current_buffer->local_var_alist);
7921925c 1694
42e975f0
RS
1695 /* If the symbol is set up with the current buffer's binding
1696 loaded, recompute its value. We have to do it now, or else
1697 forwarded objects won't work right. */
7921925c 1698 {
999e6484 1699 Lisp_Object *pvalbuf, buf;
f35d5bad 1700 valcontents = SYMBOL_VALUE (variable);
b0c2d1c6 1701 pvalbuf = &XBUFFER_LOCAL_VALUE (valcontents)->buffer;
999e6484
SM
1702 XSETBUFFER (buf, current_buffer);
1703 if (EQ (buf, *pvalbuf))
79c83e03
KH
1704 {
1705 *pvalbuf = Qnil;
b0c2d1c6 1706 XBUFFER_LOCAL_VALUE (valcontents)->found_for_buffer = 0;
978dd578 1707 find_symbol_value (variable);
79c83e03 1708 }
7921925c
JB
1709 }
1710
d9c2a0f2 1711 return variable;
7921925c 1712}
62476adc 1713
b0c2d1c6
RS
1714/* Lisp functions for creating and removing buffer-local variables. */
1715
1716DEFUN ("make-variable-frame-local", Fmake_variable_frame_local, Smake_variable_frame_local,
8c1a1077
PJ
1717 1, 1, "vMake Variable Frame Local: ",
1718 doc: /* Enable VARIABLE to have frame-local bindings.
4d4d36b1
RS
1719This does not create any frame-local bindings for VARIABLE,
1720it just makes them possible.
1721
1722A frame-local binding is actually a frame parameter value.
1723If a frame F has a value for the frame parameter named VARIABLE,
1724that also acts as a frame-local binding for VARIABLE in F--
1725provided this function has been called to enable VARIABLE
1726to have frame-local bindings at all.
1727
1728The only way to create a frame-local binding for VARIABLE in a frame
1729is to set the VARIABLE frame parameter of that frame. See
1730`modify-frame-parameters' for how to set frame parameters.
1731
1732Buffer-local bindings take precedence over frame-local bindings. */)
8c1a1077 1733 (variable)
b0c2d1c6
RS
1734 register Lisp_Object variable;
1735{
1736 register Lisp_Object tem, valcontents, newval;
1737
b7826503 1738 CHECK_SYMBOL (variable);
14970b45 1739 variable = indirect_variable (variable);
b0c2d1c6 1740
f35d5bad 1741 valcontents = SYMBOL_VALUE (variable);
b0c2d1c6
RS
1742 if (EQ (variable, Qnil) || EQ (variable, Qt) || KBOARD_OBJFWDP (valcontents)
1743 || BUFFER_OBJFWDP (valcontents))
d5db4077 1744 error ("Symbol %s may not be frame-local", SDATA (SYMBOL_NAME (variable)));
b0c2d1c6
RS
1745
1746 if (BUFFER_LOCAL_VALUEP (valcontents)
1747 || SOME_BUFFER_LOCAL_VALUEP (valcontents))
42e975f0
RS
1748 {
1749 XBUFFER_LOCAL_VALUE (valcontents)->check_frame = 1;
1750 return variable;
1751 }
b0c2d1c6
RS
1752
1753 if (EQ (valcontents, Qunbound))
f35d5bad 1754 SET_SYMBOL_VALUE (variable, Qnil);
b0c2d1c6 1755 tem = Fcons (Qnil, Fsymbol_value (variable));
f3fbd155 1756 XSETCAR (tem, tem);
b0c2d1c6
RS
1757 newval = allocate_misc ();
1758 XMISCTYPE (newval) = Lisp_Misc_Some_Buffer_Local_Value;
f35d5bad 1759 XBUFFER_LOCAL_VALUE (newval)->realvalue = SYMBOL_VALUE (variable);
b0c2d1c6
RS
1760 XBUFFER_LOCAL_VALUE (newval)->buffer = Qnil;
1761 XBUFFER_LOCAL_VALUE (newval)->frame = Qnil;
1762 XBUFFER_LOCAL_VALUE (newval)->found_for_buffer = 0;
1763 XBUFFER_LOCAL_VALUE (newval)->found_for_frame = 0;
1764 XBUFFER_LOCAL_VALUE (newval)->check_frame = 1;
1765 XBUFFER_LOCAL_VALUE (newval)->cdr = tem;
f35d5bad 1766 SET_SYMBOL_VALUE (variable, newval);
b0c2d1c6
RS
1767 return variable;
1768}
1769
62476adc 1770DEFUN ("local-variable-p", Flocal_variable_p, Slocal_variable_p,
8c1a1077
PJ
1771 1, 2, 0,
1772 doc: /* Non-nil if VARIABLE has a local binding in buffer BUFFER.
1773BUFFER defaults to the current buffer. */)
1774 (variable, buffer)
d9c2a0f2 1775 register Lisp_Object variable, buffer;
62476adc
RS
1776{
1777 Lisp_Object valcontents;
c48ead86
KH
1778 register struct buffer *buf;
1779
1780 if (NILP (buffer))
1781 buf = current_buffer;
1782 else
1783 {
b7826503 1784 CHECK_BUFFER (buffer);
c48ead86
KH
1785 buf = XBUFFER (buffer);
1786 }
62476adc 1787
b7826503 1788 CHECK_SYMBOL (variable);
14970b45 1789 variable = indirect_variable (variable);
62476adc 1790
f35d5bad 1791 valcontents = SYMBOL_VALUE (variable);
c48ead86 1792 if (BUFFER_LOCAL_VALUEP (valcontents)
1e5f16fa 1793 || SOME_BUFFER_LOCAL_VALUEP (valcontents))
c48ead86
KH
1794 {
1795 Lisp_Object tail, elt;
f35d5bad 1796
7539e11f 1797 for (tail = buf->local_var_alist; CONSP (tail); tail = XCDR (tail))
c48ead86 1798 {
7539e11f
KR
1799 elt = XCAR (tail);
1800 if (EQ (variable, XCAR (elt)))
c48ead86
KH
1801 return Qt;
1802 }
1803 }
1804 if (BUFFER_OBJFWDP (valcontents))
1805 {
1806 int offset = XBUFFER_OBJFWD (valcontents)->offset;
f6cd0527
GM
1807 int idx = PER_BUFFER_IDX (offset);
1808 if (idx == -1 || PER_BUFFER_VALUE_P (buf, idx))
c48ead86
KH
1809 return Qt;
1810 }
1811 return Qnil;
62476adc 1812}
f4f04cee
RS
1813
1814DEFUN ("local-variable-if-set-p", Flocal_variable_if_set_p, Slocal_variable_if_set_p,
8c1a1077 1815 1, 2, 0,
1dc5ba01
LT
1816 doc: /* Non-nil if VARIABLE will be local in buffer BUFFER when set there.
1817More precisely, this means that setting the variable \(with `set' or`setq'),
1818while it does not have a `let'-style binding that was made in BUFFER,
1819will produce a buffer local binding. See Info node
1820`(elisp)Creating Buffer-Local'.
8c1a1077
PJ
1821BUFFER defaults to the current buffer. */)
1822 (variable, buffer)
d9c2a0f2 1823 register Lisp_Object variable, buffer;
f4f04cee
RS
1824{
1825 Lisp_Object valcontents;
1826 register struct buffer *buf;
1827
1828 if (NILP (buffer))
1829 buf = current_buffer;
1830 else
1831 {
b7826503 1832 CHECK_BUFFER (buffer);
f4f04cee
RS
1833 buf = XBUFFER (buffer);
1834 }
1835
b7826503 1836 CHECK_SYMBOL (variable);
14970b45 1837 variable = indirect_variable (variable);
f4f04cee 1838
f35d5bad 1839 valcontents = SYMBOL_VALUE (variable);
f4f04cee
RS
1840
1841 /* This means that make-variable-buffer-local was done. */
1842 if (BUFFER_LOCAL_VALUEP (valcontents))
1843 return Qt;
1844 /* All these slots become local if they are set. */
1845 if (BUFFER_OBJFWDP (valcontents))
1846 return Qt;
1847 if (SOME_BUFFER_LOCAL_VALUEP (valcontents))
1848 {
1849 Lisp_Object tail, elt;
7539e11f 1850 for (tail = buf->local_var_alist; CONSP (tail); tail = XCDR (tail))
f4f04cee 1851 {
7539e11f
KR
1852 elt = XCAR (tail);
1853 if (EQ (variable, XCAR (elt)))
f4f04cee
RS
1854 return Qt;
1855 }
1856 }
1857 return Qnil;
1858}
0a2546d4
RS
1859
1860DEFUN ("variable-binding-locus", Fvariable_binding_locus, Svariable_binding_locus,
1861 1, 1, 0,
1862 doc: /* Return a value indicating where VARIABLE's current binding comes from.
1863If the current binding is buffer-local, the value is the current buffer.
1864If the current binding is frame-local, the value is the selected frame.
1865If the current binding is global (the default), the value is nil. */)
1866 (variable)
1867 register Lisp_Object variable;
1868{
1869 Lisp_Object valcontents;
1870
1871 CHECK_SYMBOL (variable);
1872 variable = indirect_variable (variable);
1873
1874 /* Make sure the current binding is actually swapped in. */
1875 find_symbol_value (variable);
1876
1877 valcontents = XSYMBOL (variable)->value;
1878
1879 if (BUFFER_LOCAL_VALUEP (valcontents)
1880 || SOME_BUFFER_LOCAL_VALUEP (valcontents)
1881 || BUFFER_OBJFWDP (valcontents))
1882 {
1883 /* For a local variable, record both the symbol and which
1884 buffer's or frame's value we are saving. */
1885 if (!NILP (Flocal_variable_p (variable, Qnil)))
1886 return Fcurrent_buffer ();
1887 else if (!BUFFER_OBJFWDP (valcontents)
1888 && XBUFFER_LOCAL_VALUE (valcontents)->found_for_frame)
1889 return XBUFFER_LOCAL_VALUE (valcontents)->frame;
1890 }
1891
1892 return Qnil;
1893}
7921925c 1894\f
ffd56f97
JB
1895/* Find the function at the end of a chain of symbol function indirections. */
1896
1897/* If OBJECT is a symbol, find the end of its function chain and
1898 return the value found there. If OBJECT is not a symbol, just
1899 return it. If there is a cycle in the function chain, signal a
1900 cyclic-function-indirection error.
1901
1902 This is like Findirect_function, except that it doesn't signal an
1903 error if the chain ends up unbound. */
1904Lisp_Object
a2932990 1905indirect_function (object)
62476adc 1906 register Lisp_Object object;
ffd56f97 1907{
eb8c3be9 1908 Lisp_Object tortoise, hare;
ffd56f97 1909
eb8c3be9 1910 hare = tortoise = object;
ffd56f97
JB
1911
1912 for (;;)
1913 {
e9ebc175 1914 if (!SYMBOLP (hare) || EQ (hare, Qunbound))
ffd56f97
JB
1915 break;
1916 hare = XSYMBOL (hare)->function;
e9ebc175 1917 if (!SYMBOLP (hare) || EQ (hare, Qunbound))
ffd56f97
JB
1918 break;
1919 hare = XSYMBOL (hare)->function;
1920
eb8c3be9 1921 tortoise = XSYMBOL (tortoise)->function;
ffd56f97 1922
eb8c3be9 1923 if (EQ (hare, tortoise))
ffd56f97
JB
1924 Fsignal (Qcyclic_function_indirection, Fcons (object, Qnil));
1925 }
1926
1927 return hare;
1928}
1929
1930DEFUN ("indirect-function", Findirect_function, Sindirect_function, 1, 1, 0,
8c1a1077
PJ
1931 doc: /* Return the function at the end of OBJECT's function chain.
1932If OBJECT is a symbol, follow all function indirections and return the final
1933function binding.
1934If OBJECT is not a symbol, just return it.
1935Signal a void-function error if the final symbol is unbound.
1936Signal a cyclic-function-indirection error if there is a loop in the
1937function chain of symbols. */)
1938 (object)
1939 register Lisp_Object object;
ffd56f97
JB
1940{
1941 Lisp_Object result;
1942
1943 result = indirect_function (object);
1944
1945 if (EQ (result, Qunbound))
1946 return Fsignal (Qvoid_function, Fcons (object, Qnil));
1947 return result;
1948}
1949\f
7921925c
JB
1950/* Extract and set vector and string elements */
1951
1952DEFUN ("aref", Faref, Saref, 2, 2, 0,
8c1a1077
PJ
1953 doc: /* Return the element of ARRAY at index IDX.
1954ARRAY may be a vector, a string, a char-table, a bool-vector,
1955or a byte-code object. IDX starts at 0. */)
1956 (array, idx)
7921925c
JB
1957 register Lisp_Object array;
1958 Lisp_Object idx;
1959{
1960 register int idxval;
1961
b7826503 1962 CHECK_NUMBER (idx);
7921925c 1963 idxval = XINT (idx);
e9ebc175 1964 if (STRINGP (array))
7921925c 1965 {
25638b07
RS
1966 int c, idxval_byte;
1967
d5db4077 1968 if (idxval < 0 || idxval >= SCHARS (array))
c24e4efe 1969 args_out_of_range (array, idx);
25638b07 1970 if (! STRING_MULTIBYTE (array))
d5db4077 1971 return make_number ((unsigned char) SREF (array, idxval));
25638b07
RS
1972 idxval_byte = string_char_to_byte (array, idxval);
1973
29f44a37 1974 c = STRING_CHAR (SDATA (array) + idxval_byte,
d5db4077 1975 SBYTES (array) - idxval_byte);
25638b07 1976 return make_number (c);
7921925c 1977 }
4d276982
RS
1978 else if (BOOL_VECTOR_P (array))
1979 {
1980 int val;
4d276982
RS
1981
1982 if (idxval < 0 || idxval >= XBOOL_VECTOR (array)->size)
1983 args_out_of_range (array, idx);
1984
b9ed2177
AS
1985 val = (unsigned char) XBOOL_VECTOR (array)->data[idxval / BOOL_VECTOR_BITS_PER_CHAR];
1986 return (val & (1 << (idxval % BOOL_VECTOR_BITS_PER_CHAR)) ? Qt : Qnil);
4d276982
RS
1987 }
1988 else if (CHAR_TABLE_P (array))
1989 {
1990 Lisp_Object val;
1991
6bbd7a29
GM
1992 val = Qnil;
1993
4d276982
RS
1994 if (idxval < 0)
1995 args_out_of_range (array, idx);
ab5c3f93 1996 if (idxval < CHAR_TABLE_ORDINARY_SLOTS)
8313c4e7 1997 {
256d566c
KH
1998 if (! SINGLE_BYTE_CHAR_P (idxval))
1999 args_out_of_range (array, idx);
39e16e51 2000 /* For ASCII and 8-bit European characters, the element is
3a6cf6bd 2001 stored in the top table. */
8313c4e7 2002 val = XCHAR_TABLE (array)->contents[idxval];
256d566c
KH
2003 if (NILP (val))
2004 {
2005 int default_slot
2006 = (idxval < 0x80 ? CHAR_TABLE_DEFAULT_SLOT_ASCII
2007 : idxval < 0xA0 ? CHAR_TABLE_DEFAULT_SLOT_8_BIT_CONTROL
2008 : CHAR_TABLE_DEFAULT_SLOT_8_BIT_GRAPHIC);
2009 val = XCHAR_TABLE (array)->contents[default_slot];
2010 }
8313c4e7
KH
2011 if (NILP (val))
2012 val = XCHAR_TABLE (array)->defalt;
2013 while (NILP (val)) /* Follow parents until we find some value. */
2014 {
2015 array = XCHAR_TABLE (array)->parent;
2016 if (NILP (array))
2017 return Qnil;
2018 val = XCHAR_TABLE (array)->contents[idxval];
2019 if (NILP (val))
2020 val = XCHAR_TABLE (array)->defalt;
2021 }
2022 return val;
2023 }
4d276982
RS
2024 else
2025 {
39e16e51
KH
2026 int code[4], i;
2027 Lisp_Object sub_table;
256d566c 2028 Lisp_Object current_default;
8313c4e7 2029
37309c9d 2030 SPLIT_CHAR (idxval, code[0], code[1], code[2]);
e19c1eb4
KH
2031 if (code[1] < 32) code[1] = -1;
2032 else if (code[2] < 32) code[2] = -1;
2033
39e16e51
KH
2034 /* Here, the possible range of CODE[0] (== charset ID) is
2035 128..MAX_CHARSET. Since the top level char table contains
2036 data for multibyte characters after 256th element, we must
2037 increment CODE[0] by 128 to get a correct index. */
2038 code[0] += 128;
2039 code[3] = -1; /* anchor */
4d276982
RS
2040
2041 try_parent_char_table:
256d566c 2042 current_default = XCHAR_TABLE (array)->defalt;
39e16e51
KH
2043 sub_table = array;
2044 for (i = 0; code[i] >= 0; i++)
4d276982 2045 {
39e16e51
KH
2046 val = XCHAR_TABLE (sub_table)->contents[code[i]];
2047 if (SUB_CHAR_TABLE_P (val))
256d566c
KH
2048 {
2049 sub_table = val;
2050 if (! NILP (XCHAR_TABLE (sub_table)->defalt))
2051 current_default = XCHAR_TABLE (sub_table)->defalt;
2052 }
39e16e51 2053 else
8313c4e7 2054 {
39e16e51 2055 if (NILP (val))
256d566c 2056 val = current_default;
39e16e51
KH
2057 if (NILP (val))
2058 {
2059 array = XCHAR_TABLE (array)->parent;
2060 if (!NILP (array))
2061 goto try_parent_char_table;
2062 }
2063 return val;
8313c4e7 2064 }
4d276982 2065 }
256d566c
KH
2066 /* Reaching here means IDXVAL is a generic character in
2067 which each character or a group has independent value.
2068 Essentially it's nonsense to get a value for such a
2069 generic character, but for backward compatibility, we try
2070 the default value and parent. */
2071 val = current_default;
8313c4e7 2072 if (NILP (val))
4d276982
RS
2073 {
2074 array = XCHAR_TABLE (array)->parent;
39e16e51
KH
2075 if (!NILP (array))
2076 goto try_parent_char_table;
4d276982 2077 }
4d276982
RS
2078 return val;
2079 }
4d276982 2080 }
7921925c 2081 else
c24e4efe 2082 {
6bbd7a29 2083 int size = 0;
7f358972
RS
2084 if (VECTORP (array))
2085 size = XVECTOR (array)->size;
2086 else if (COMPILEDP (array))
2087 size = XVECTOR (array)->size & PSEUDOVECTOR_SIZE_MASK;
2088 else
2089 wrong_type_argument (Qarrayp, array);
2090
2091 if (idxval < 0 || idxval >= size)
c24e4efe
KH
2092 args_out_of_range (array, idx);
2093 return XVECTOR (array)->contents[idxval];
2094 }
7921925c
JB
2095}
2096
2097DEFUN ("aset", Faset, Saset, 3, 3, 0,
8c1a1077 2098 doc: /* Store into the element of ARRAY at index IDX the value NEWELT.
bfb96cb7
FP
2099Return NEWELT. ARRAY may be a vector, a string, a char-table or a
2100bool-vector. IDX starts at 0. */)
8c1a1077 2101 (array, idx, newelt)
7921925c
JB
2102 register Lisp_Object array;
2103 Lisp_Object idx, newelt;
2104{
2105 register int idxval;
2106
b7826503 2107 CHECK_NUMBER (idx);
7921925c 2108 idxval = XINT (idx);
4d276982
RS
2109 if (!VECTORP (array) && !STRINGP (array) && !BOOL_VECTOR_P (array)
2110 && ! CHAR_TABLE_P (array))
7921925c 2111 array = wrong_type_argument (Qarrayp, array);
7921925c
JB
2112 CHECK_IMPURE (array);
2113
e9ebc175 2114 if (VECTORP (array))
c24e4efe
KH
2115 {
2116 if (idxval < 0 || idxval >= XVECTOR (array)->size)
2117 args_out_of_range (array, idx);
2118 XVECTOR (array)->contents[idxval] = newelt;
2119 }
4d276982
RS
2120 else if (BOOL_VECTOR_P (array))
2121 {
2122 int val;
4d276982
RS
2123
2124 if (idxval < 0 || idxval >= XBOOL_VECTOR (array)->size)
2125 args_out_of_range (array, idx);
2126
b9ed2177 2127 val = (unsigned char) XBOOL_VECTOR (array)->data[idxval / BOOL_VECTOR_BITS_PER_CHAR];
4d276982
RS
2128
2129 if (! NILP (newelt))
b9ed2177 2130 val |= 1 << (idxval % BOOL_VECTOR_BITS_PER_CHAR);
4d276982 2131 else
b9ed2177
AS
2132 val &= ~(1 << (idxval % BOOL_VECTOR_BITS_PER_CHAR));
2133 XBOOL_VECTOR (array)->data[idxval / BOOL_VECTOR_BITS_PER_CHAR] = val;
4d276982
RS
2134 }
2135 else if (CHAR_TABLE_P (array))
2136 {
4d276982
RS
2137 if (idxval < 0)
2138 args_out_of_range (array, idx);
ab5c3f93 2139 if (idxval < CHAR_TABLE_ORDINARY_SLOTS)
256d566c
KH
2140 {
2141 if (! SINGLE_BYTE_CHAR_P (idxval))
2142 args_out_of_range (array, idx);
2143 XCHAR_TABLE (array)->contents[idxval] = newelt;
2144 }
4d276982
RS
2145 else
2146 {
39e16e51 2147 int code[4], i;
8313c4e7 2148 Lisp_Object val;
4d276982 2149
37309c9d 2150 SPLIT_CHAR (idxval, code[0], code[1], code[2]);
e19c1eb4
KH
2151 if (code[1] < 32) code[1] = -1;
2152 else if (code[2] < 32) code[2] = -1;
2153
39e16e51
KH
2154 /* See the comment of the corresponding part in Faref. */
2155 code[0] += 128;
2156 code[3] = -1; /* anchor */
2157 for (i = 0; code[i + 1] >= 0; i++)
8313c4e7 2158 {
39e16e51
KH
2159 val = XCHAR_TABLE (array)->contents[code[i]];
2160 if (SUB_CHAR_TABLE_P (val))
8313c4e7
KH
2161 array = val;
2162 else
3c8fccc3
RS
2163 {
2164 Lisp_Object temp;
2165
2166 /* VAL is a leaf. Create a sub char table with the
256d566c 2167 initial value VAL and look into it. */
3c8fccc3 2168
256d566c 2169 temp = make_sub_char_table (val);
3c8fccc3
RS
2170 XCHAR_TABLE (array)->contents[code[i]] = temp;
2171 array = temp;
2172 }
8313c4e7 2173 }
39e16e51 2174 XCHAR_TABLE (array)->contents[code[i]] = newelt;
4d276982 2175 }
4d276982 2176 }
25638b07
RS
2177 else if (STRING_MULTIBYTE (array))
2178 {
c6464167 2179 int idxval_byte, prev_bytes, new_bytes, nbytes;
3c9de1af 2180 unsigned char workbuf[MAX_MULTIBYTE_LENGTH], *p0 = workbuf, *p1;
25638b07 2181
d5db4077 2182 if (idxval < 0 || idxval >= SCHARS (array))
25638b07 2183 args_out_of_range (array, idx);
b7826503 2184 CHECK_NUMBER (newelt);
25638b07 2185
c6464167
MB
2186 nbytes = SBYTES (array);
2187
25638b07 2188 idxval_byte = string_char_to_byte (array, idxval);
29f44a37 2189 p1 = SDATA (array) + idxval_byte;
3c9de1af
KH
2190 PARSE_MULTIBYTE_SEQ (p1, nbytes - idxval_byte, prev_bytes);
2191 new_bytes = CHAR_STRING (XINT (newelt), p0);
2192 if (prev_bytes != new_bytes)
2193 {
2194 /* We must relocate the string data. */
d5db4077 2195 int nchars = SCHARS (array);
3c9de1af 2196 unsigned char *str;
f1a87317 2197 USE_SAFE_ALLOCA;
3c9de1af 2198
f1a87317 2199 SAFE_ALLOCA (str, unsigned char *, nbytes);
d5db4077 2200 bcopy (SDATA (array), str, nbytes);
3c9de1af
KH
2201 allocate_string_data (XSTRING (array), nchars,
2202 nbytes + new_bytes - prev_bytes);
d5db4077
KR
2203 bcopy (str, SDATA (array), idxval_byte);
2204 p1 = SDATA (array) + idxval_byte;
3c9de1af
KH
2205 bcopy (str + idxval_byte + prev_bytes, p1 + new_bytes,
2206 nbytes - (idxval_byte + prev_bytes));
233f3db6 2207 SAFE_FREE ();
3c9de1af
KH
2208 clear_string_char_byte_cache ();
2209 }
2210 while (new_bytes--)
2211 *p1++ = *p0++;
25638b07 2212 }
7921925c
JB
2213 else
2214 {
d5db4077 2215 if (idxval < 0 || idxval >= SCHARS (array))
c24e4efe 2216 args_out_of_range (array, idx);
b7826503 2217 CHECK_NUMBER (newelt);
3c9de1af
KH
2218
2219 if (XINT (newelt) < 0 || SINGLE_BYTE_CHAR_P (XINT (newelt)))
29f44a37 2220 SSET (array, idxval, XINT (newelt));
3c9de1af
KH
2221 else
2222 {
2223 /* We must relocate the string data while converting it to
2224 multibyte. */
2225 int idxval_byte, prev_bytes, new_bytes;
2226 unsigned char workbuf[MAX_MULTIBYTE_LENGTH], *p0 = workbuf, *p1;
d5db4077 2227 unsigned char *origstr = SDATA (array), *str;
3c9de1af 2228 int nchars, nbytes;
f1a87317 2229 USE_SAFE_ALLOCA;
3c9de1af 2230
d5db4077 2231 nchars = SCHARS (array);
3c9de1af
KH
2232 nbytes = idxval_byte = count_size_as_multibyte (origstr, idxval);
2233 nbytes += count_size_as_multibyte (origstr + idxval,
2234 nchars - idxval);
f1a87317 2235 SAFE_ALLOCA (str, unsigned char *, nbytes);
d5db4077 2236 copy_text (SDATA (array), str, nchars, 0, 1);
3c9de1af
KH
2237 PARSE_MULTIBYTE_SEQ (str + idxval_byte, nbytes - idxval_byte,
2238 prev_bytes);
2239 new_bytes = CHAR_STRING (XINT (newelt), p0);
2240 allocate_string_data (XSTRING (array), nchars,
2241 nbytes + new_bytes - prev_bytes);
d5db4077
KR
2242 bcopy (str, SDATA (array), idxval_byte);
2243 p1 = SDATA (array) + idxval_byte;
3c9de1af
KH
2244 while (new_bytes--)
2245 *p1++ = *p0++;
2246 bcopy (str + idxval_byte + prev_bytes, p1,
2247 nbytes - (idxval_byte + prev_bytes));
233f3db6 2248 SAFE_FREE ();
3c9de1af
KH
2249 clear_string_char_byte_cache ();
2250 }
7921925c
JB
2251 }
2252
2253 return newelt;
2254}
7921925c
JB
2255\f
2256/* Arithmetic functions */
2257
2258enum comparison { equal, notequal, less, grtr, less_or_equal, grtr_or_equal };
2259
2260Lisp_Object
2261arithcompare (num1, num2, comparison)
2262 Lisp_Object num1, num2;
2263 enum comparison comparison;
2264{
6bbd7a29 2265 double f1 = 0, f2 = 0;
7921925c
JB
2266 int floatp = 0;
2267
b7826503
PJ
2268 CHECK_NUMBER_OR_FLOAT_COERCE_MARKER (num1);
2269 CHECK_NUMBER_OR_FLOAT_COERCE_MARKER (num2);
7921925c 2270
e9ebc175 2271 if (FLOATP (num1) || FLOATP (num2))
7921925c
JB
2272 {
2273 floatp = 1;
7539e11f
KR
2274 f1 = (FLOATP (num1)) ? XFLOAT_DATA (num1) : XINT (num1);
2275 f2 = (FLOATP (num2)) ? XFLOAT_DATA (num2) : XINT (num2);
7921925c 2276 }
7921925c
JB
2277
2278 switch (comparison)
2279 {
2280 case equal:
2281 if (floatp ? f1 == f2 : XINT (num1) == XINT (num2))
2282 return Qt;
2283 return Qnil;
2284
2285 case notequal:
2286 if (floatp ? f1 != f2 : XINT (num1) != XINT (num2))
2287 return Qt;
2288 return Qnil;
2289
2290 case less:
2291 if (floatp ? f1 < f2 : XINT (num1) < XINT (num2))
2292 return Qt;
2293 return Qnil;
2294
2295 case less_or_equal:
2296 if (floatp ? f1 <= f2 : XINT (num1) <= XINT (num2))
2297 return Qt;
2298 return Qnil;
2299
2300 case grtr:
2301 if (floatp ? f1 > f2 : XINT (num1) > XINT (num2))
2302 return Qt;
2303 return Qnil;
2304
2305 case grtr_or_equal:
2306 if (floatp ? f1 >= f2 : XINT (num1) >= XINT (num2))
2307 return Qt;
2308 return Qnil;
25e40a4b
JB
2309
2310 default:
2311 abort ();
7921925c
JB
2312 }
2313}
2314
2315DEFUN ("=", Feqlsign, Seqlsign, 2, 2, 0,
8c1a1077
PJ
2316 doc: /* Return t if two args, both numbers or markers, are equal. */)
2317 (num1, num2)
7921925c
JB
2318 register Lisp_Object num1, num2;
2319{
2320 return arithcompare (num1, num2, equal);
2321}
2322
2323DEFUN ("<", Flss, Slss, 2, 2, 0,
8c1a1077
PJ
2324 doc: /* Return t if first arg is less than second arg. Both must be numbers or markers. */)
2325 (num1, num2)
7921925c
JB
2326 register Lisp_Object num1, num2;
2327{
2328 return arithcompare (num1, num2, less);
2329}
2330
2331DEFUN (">", Fgtr, Sgtr, 2, 2, 0,
8c1a1077
PJ
2332 doc: /* Return t if first arg is greater than second arg. Both must be numbers or markers. */)
2333 (num1, num2)
7921925c
JB
2334 register Lisp_Object num1, num2;
2335{
2336 return arithcompare (num1, num2, grtr);
2337}
2338
2339DEFUN ("<=", Fleq, Sleq, 2, 2, 0,
8c1a1077
PJ
2340 doc: /* Return t if first arg is less than or equal to second arg.
2341Both must be numbers or markers. */)
2342 (num1, num2)
7921925c
JB
2343 register Lisp_Object num1, num2;
2344{
2345 return arithcompare (num1, num2, less_or_equal);
2346}
2347
2348DEFUN (">=", Fgeq, Sgeq, 2, 2, 0,
8c1a1077
PJ
2349 doc: /* Return t if first arg is greater than or equal to second arg.
2350Both must be numbers or markers. */)
2351 (num1, num2)
7921925c
JB
2352 register Lisp_Object num1, num2;
2353{
2354 return arithcompare (num1, num2, grtr_or_equal);
2355}
2356
2357DEFUN ("/=", Fneq, Sneq, 2, 2, 0,
8c1a1077
PJ
2358 doc: /* Return t if first arg is not equal to second arg. Both must be numbers or markers. */)
2359 (num1, num2)
7921925c
JB
2360 register Lisp_Object num1, num2;
2361{
2362 return arithcompare (num1, num2, notequal);
2363}
2364
8c1a1077
PJ
2365DEFUN ("zerop", Fzerop, Szerop, 1, 1, 0,
2366 doc: /* Return t if NUMBER is zero. */)
2367 (number)
d9c2a0f2 2368 register Lisp_Object number;
7921925c 2369{
b7826503 2370 CHECK_NUMBER_OR_FLOAT (number);
7921925c 2371
d9c2a0f2 2372 if (FLOATP (number))
7921925c 2373 {
7539e11f 2374 if (XFLOAT_DATA (number) == 0.0)
7921925c
JB
2375 return Qt;
2376 return Qnil;
2377 }
7921925c 2378
d9c2a0f2 2379 if (!XINT (number))
7921925c
JB
2380 return Qt;
2381 return Qnil;
2382}
2383\f
34f4f6c6 2384/* Convert between long values and pairs of Lisp integers. */
51cf3e31
JB
2385
2386Lisp_Object
2387long_to_cons (i)
2388 unsigned long i;
2389{
9bc7166b 2390 unsigned long top = i >> 16;
51cf3e31
JB
2391 unsigned int bot = i & 0xFFFF;
2392 if (top == 0)
2393 return make_number (bot);
b42cfa11 2394 if (top == (unsigned long)-1 >> 16)
51cf3e31
JB
2395 return Fcons (make_number (-1), make_number (bot));
2396 return Fcons (make_number (top), make_number (bot));
2397}
2398
2399unsigned long
2400cons_to_long (c)
2401 Lisp_Object c;
2402{
878a80cc 2403 Lisp_Object top, bot;
51cf3e31
JB
2404 if (INTEGERP (c))
2405 return XINT (c);
7539e11f
KR
2406 top = XCAR (c);
2407 bot = XCDR (c);
51cf3e31 2408 if (CONSP (bot))
7539e11f 2409 bot = XCAR (bot);
51cf3e31
JB
2410 return ((XINT (top) << 16) | XINT (bot));
2411}
2412\f
f2980264 2413DEFUN ("number-to-string", Fnumber_to_string, Snumber_to_string, 1, 1, 0,
bfb96cb7 2414 doc: /* Return the decimal representation of NUMBER as a string.
8c1a1077
PJ
2415Uses a minus sign if negative.
2416NUMBER may be an integer or a floating point number. */)
2417 (number)
d9c2a0f2 2418 Lisp_Object number;
7921925c 2419{
6030ce64 2420 char buffer[VALBITS];
7921925c 2421
b7826503 2422 CHECK_NUMBER_OR_FLOAT (number);
7921925c 2423
d9c2a0f2 2424 if (FLOATP (number))
7921925c
JB
2425 {
2426 char pigbuf[350]; /* see comments in float_to_string */
2427
7539e11f 2428 float_to_string (pigbuf, XFLOAT_DATA (number));
7403b5c8 2429 return build_string (pigbuf);
7921925c 2430 }
7921925c 2431
e6c82a8d 2432 if (sizeof (int) == sizeof (EMACS_INT))
d9c2a0f2 2433 sprintf (buffer, "%d", XINT (number));
e6c82a8d 2434 else if (sizeof (long) == sizeof (EMACS_INT))
dd8daec5 2435 sprintf (buffer, "%ld", (long) XINT (number));
e6c82a8d
RS
2436 else
2437 abort ();
7921925c
JB
2438 return build_string (buffer);
2439}
2440
3883fbeb
RS
2441INLINE static int
2442digit_to_number (character, base)
2443 int character, base;
2444{
2445 int digit;
2446
2447 if (character >= '0' && character <= '9')
2448 digit = character - '0';
2449 else if (character >= 'a' && character <= 'z')
2450 digit = character - 'a' + 10;
2451 else if (character >= 'A' && character <= 'Z')
2452 digit = character - 'A' + 10;
2453 else
2454 return -1;
2455
2456 if (digit >= base)
2457 return -1;
2458 else
2459 return digit;
bfb96cb7 2460}
3883fbeb
RS
2461
2462DEFUN ("string-to-number", Fstring_to_number, Sstring_to_number, 1, 2, 0,
558ee900 2463 doc: /* Parse STRING as a decimal number and return the number.
8c1a1077
PJ
2464This parses both integers and floating point numbers.
2465It ignores leading spaces and tabs.
2466
2467If BASE, interpret STRING as a number in that base. If BASE isn't
2468present, base 10 is used. BASE must be between 2 and 16 (inclusive).
2469If the base used is not 10, floating point is not recognized. */)
2470 (string, base)
3883fbeb 2471 register Lisp_Object string, base;
7921925c 2472{
3883fbeb 2473 register unsigned char *p;
342858a5
GM
2474 register int b;
2475 int sign = 1;
2476 Lisp_Object val;
25e40a4b 2477
b7826503 2478 CHECK_STRING (string);
7921925c 2479
3883fbeb
RS
2480 if (NILP (base))
2481 b = 10;
2482 else
2483 {
b7826503 2484 CHECK_NUMBER (base);
3883fbeb
RS
2485 b = XINT (base);
2486 if (b < 2 || b > 16)
2487 Fsignal (Qargs_out_of_range, Fcons (base, Qnil));
2488 }
2489
25e40a4b
JB
2490 /* Skip any whitespace at the front of the number. Some versions of
2491 atoi do this anyway, so we might as well make Emacs lisp consistent. */
d5db4077 2492 p = SDATA (string);
0a3e4d65 2493 while (*p == ' ' || *p == '\t')
25e40a4b
JB
2494 p++;
2495
3883fbeb
RS
2496 if (*p == '-')
2497 {
342858a5 2498 sign = -1;
3883fbeb
RS
2499 p++;
2500 }
2501 else if (*p == '+')
2502 p++;
bfb96cb7 2503
8e36ae7f 2504 if (isfloat_string (p) && b == 10)
342858a5
GM
2505 val = make_float (sign * atof (p));
2506 else
3883fbeb 2507 {
342858a5
GM
2508 double v = 0;
2509
2510 while (1)
2511 {
2512 int digit = digit_to_number (*p++, b);
2513 if (digit < 0)
2514 break;
2515 v = v * b + digit;
2516 }
2517
cb938d46 2518 val = make_fixnum_or_float (sign * v);
3883fbeb 2519 }
342858a5
GM
2520
2521 return val;
7921925c 2522}
3883fbeb 2523
7403b5c8 2524\f
7921925c 2525enum arithop
7a283f36
GM
2526 {
2527 Aadd,
2528 Asub,
2529 Amult,
2530 Adiv,
2531 Alogand,
2532 Alogior,
2533 Alogxor,
2534 Amax,
2535 Amin
2536 };
2537
2538static Lisp_Object float_arith_driver P_ ((double, int, enum arithop,
2539 int, Lisp_Object *));
ad8d56b9 2540extern Lisp_Object fmod_float ();
b06faa91 2541
7921925c 2542Lisp_Object
87fbf902 2543arith_driver (code, nargs, args)
7921925c
JB
2544 enum arithop code;
2545 int nargs;
2546 register Lisp_Object *args;
2547{
2548 register Lisp_Object val;
2549 register int argnum;
7a283f36 2550 register EMACS_INT accum = 0;
5260234d 2551 register EMACS_INT next;
7921925c 2552
0220c518 2553 switch (SWITCH_ENUM_CAST (code))
7921925c
JB
2554 {
2555 case Alogior:
2556 case Alogxor:
2557 case Aadd:
2558 case Asub:
7a283f36
GM
2559 accum = 0;
2560 break;
7921925c 2561 case Amult:
7a283f36
GM
2562 accum = 1;
2563 break;
7921925c 2564 case Alogand:
7a283f36
GM
2565 accum = -1;
2566 break;
2567 default:
2568 break;
7921925c
JB
2569 }
2570
2571 for (argnum = 0; argnum < nargs; argnum++)
2572 {
7a283f36
GM
2573 /* Using args[argnum] as argument to CHECK_NUMBER_... */
2574 val = args[argnum];
b7826503 2575 CHECK_NUMBER_OR_FLOAT_COERCE_MARKER (val);
7921925c 2576
7a283f36
GM
2577 if (FLOATP (val))
2578 return float_arith_driver ((double) accum, argnum, code,
2579 nargs, args);
2580 args[argnum] = val;
7921925c 2581 next = XINT (args[argnum]);
0220c518 2582 switch (SWITCH_ENUM_CAST (code))
7921925c 2583 {
7a283f36
GM
2584 case Aadd:
2585 accum += next;
2586 break;
7921925c 2587 case Asub:
e64981da 2588 accum = argnum ? accum - next : nargs == 1 ? - next : next;
7921925c 2589 break;
7a283f36
GM
2590 case Amult:
2591 accum *= next;
2592 break;
7921925c 2593 case Adiv:
7a283f36
GM
2594 if (!argnum)
2595 accum = next;
87fbf902
RS
2596 else
2597 {
2598 if (next == 0)
2599 Fsignal (Qarith_error, Qnil);
2600 accum /= next;
2601 }
7921925c 2602 break;
7a283f36
GM
2603 case Alogand:
2604 accum &= next;
2605 break;
2606 case Alogior:
2607 accum |= next;
2608 break;
2609 case Alogxor:
2610 accum ^= next;
2611 break;
2612 case Amax:
2613 if (!argnum || next > accum)
2614 accum = next;
2615 break;
2616 case Amin:
2617 if (!argnum || next < accum)
2618 accum = next;
2619 break;
7921925c
JB
2620 }
2621 }
2622
f187f1f7 2623 XSETINT (val, accum);
7921925c
JB
2624 return val;
2625}
2626
1a2f2d33
KH
2627#undef isnan
2628#define isnan(x) ((x) != (x))
2629
7a283f36 2630static Lisp_Object
7921925c
JB
2631float_arith_driver (accum, argnum, code, nargs, args)
2632 double accum;
2633 register int argnum;
2634 enum arithop code;
2635 int nargs;
2636 register Lisp_Object *args;
2637{
2638 register Lisp_Object val;
2639 double next;
7403b5c8 2640
7921925c
JB
2641 for (; argnum < nargs; argnum++)
2642 {
2643 val = args[argnum]; /* using args[argnum] as argument to CHECK_NUMBER_... */
b7826503 2644 CHECK_NUMBER_OR_FLOAT_COERCE_MARKER (val);
7921925c 2645
e9ebc175 2646 if (FLOATP (val))
7921925c 2647 {
7539e11f 2648 next = XFLOAT_DATA (val);
7921925c
JB
2649 }
2650 else
2651 {
2652 args[argnum] = val; /* runs into a compiler bug. */
2653 next = XINT (args[argnum]);
2654 }
0220c518 2655 switch (SWITCH_ENUM_CAST (code))
7921925c
JB
2656 {
2657 case Aadd:
2658 accum += next;
2659 break;
2660 case Asub:
e64981da 2661 accum = argnum ? accum - next : nargs == 1 ? - next : next;
7921925c
JB
2662 break;
2663 case Amult:
2664 accum *= next;
2665 break;
2666 case Adiv:
2667 if (!argnum)
2668 accum = next;
2669 else
87fbf902 2670 {
ad8d56b9 2671 if (! IEEE_FLOATING_POINT && next == 0)
87fbf902
RS
2672 Fsignal (Qarith_error, Qnil);
2673 accum /= next;
2674 }
7921925c
JB
2675 break;
2676 case Alogand:
2677 case Alogior:
2678 case Alogxor:
2679 return wrong_type_argument (Qinteger_or_marker_p, val);
2680 case Amax:
1a2f2d33 2681 if (!argnum || isnan (next) || next > accum)
7921925c
JB
2682 accum = next;
2683 break;
2684 case Amin:
1a2f2d33 2685 if (!argnum || isnan (next) || next < accum)
7921925c
JB
2686 accum = next;
2687 break;
2688 }
2689 }
2690
2691 return make_float (accum);
2692}
cc94f3b2 2693
7921925c
JB
2694
2695DEFUN ("+", Fplus, Splus, 0, MANY, 0,
8c1a1077
PJ
2696 doc: /* Return sum of any number of arguments, which are numbers or markers.
2697usage: (+ &rest NUMBERS-OR-MARKERS) */)
2698 (nargs, args)
7921925c
JB
2699 int nargs;
2700 Lisp_Object *args;
2701{
2702 return arith_driver (Aadd, nargs, args);
2703}
2704
2705DEFUN ("-", Fminus, Sminus, 0, MANY, 0,
558ee900 2706 doc: /* Negate number or subtract numbers or markers and return the result.
8c1a1077 2707With one arg, negates it. With more than one arg,
f44fba9e 2708subtracts all but the first from the first.
8c1a1077
PJ
2709usage: (- &optional NUMBER-OR-MARKER &rest MORE-NUMBERS-OR-MARKERS) */)
2710 (nargs, args)
7921925c
JB
2711 int nargs;
2712 Lisp_Object *args;
2713{
2714 return arith_driver (Asub, nargs, args);
2715}
2716
2717DEFUN ("*", Ftimes, Stimes, 0, MANY, 0,
be24eadf 2718 doc: /* Return product of any number of arguments, which are numbers or markers.
8c1a1077
PJ
2719usage: (* &rest NUMBERS-OR-MARKERS) */)
2720 (nargs, args)
7921925c
JB
2721 int nargs;
2722 Lisp_Object *args;
2723{
2724 return arith_driver (Amult, nargs, args);
2725}
2726
2727DEFUN ("/", Fquo, Squo, 2, MANY, 0,
be24eadf 2728 doc: /* Return first argument divided by all the remaining arguments.
f44fba9e 2729The arguments must be numbers or markers.
8c1a1077
PJ
2730usage: (/ DIVIDEND DIVISOR &rest DIVISORS) */)
2731 (nargs, args)
7921925c
JB
2732 int nargs;
2733 Lisp_Object *args;
2734{
28712a21 2735 int argnum;
7ef98053 2736 for (argnum = 2; argnum < nargs; argnum++)
28712a21
JB
2737 if (FLOATP (args[argnum]))
2738 return float_arith_driver (0, 0, Adiv, nargs, args);
7921925c
JB
2739 return arith_driver (Adiv, nargs, args);
2740}
2741
2742DEFUN ("%", Frem, Srem, 2, 2, 0,
be24eadf 2743 doc: /* Return remainder of X divided by Y.
8c1a1077
PJ
2744Both must be integers or markers. */)
2745 (x, y)
d9c2a0f2 2746 register Lisp_Object x, y;
7921925c
JB
2747{
2748 Lisp_Object val;
2749
b7826503
PJ
2750 CHECK_NUMBER_COERCE_MARKER (x);
2751 CHECK_NUMBER_COERCE_MARKER (y);
7921925c 2752
d9c2a0f2 2753 if (XFASTINT (y) == 0)
87fbf902
RS
2754 Fsignal (Qarith_error, Qnil);
2755
d9c2a0f2 2756 XSETINT (val, XINT (x) % XINT (y));
7921925c
JB
2757 return val;
2758}
2759
1d66a5fa
KH
2760#ifndef HAVE_FMOD
2761double
2762fmod (f1, f2)
2763 double f1, f2;
2764{
bc1c9d7e
PE
2765 double r = f1;
2766
fa43b1e8
KH
2767 if (f2 < 0.0)
2768 f2 = -f2;
bc1c9d7e
PE
2769
2770 /* If the magnitude of the result exceeds that of the divisor, or
2771 the sign of the result does not agree with that of the dividend,
2772 iterate with the reduced value. This does not yield a
2773 particularly accurate result, but at least it will be in the
2774 range promised by fmod. */
2775 do
2776 r -= f2 * floor (r / f2);
2777 while (f2 <= (r < 0 ? -r : r) || ((r < 0) != (f1 < 0) && ! isnan (r)));
2778
2779 return r;
1d66a5fa
KH
2780}
2781#endif /* ! HAVE_FMOD */
2782
44fa9da5 2783DEFUN ("mod", Fmod, Smod, 2, 2, 0,
be24eadf 2784 doc: /* Return X modulo Y.
8c1a1077
PJ
2785The result falls between zero (inclusive) and Y (exclusive).
2786Both X and Y must be numbers or markers. */)
2787 (x, y)
d9c2a0f2 2788 register Lisp_Object x, y;
44fa9da5
PE
2789{
2790 Lisp_Object val;
5260234d 2791 EMACS_INT i1, i2;
44fa9da5 2792
b7826503
PJ
2793 CHECK_NUMBER_OR_FLOAT_COERCE_MARKER (x);
2794 CHECK_NUMBER_OR_FLOAT_COERCE_MARKER (y);
44fa9da5 2795
d9c2a0f2 2796 if (FLOATP (x) || FLOATP (y))
ad8d56b9
PE
2797 return fmod_float (x, y);
2798
d9c2a0f2
EN
2799 i1 = XINT (x);
2800 i2 = XINT (y);
44fa9da5
PE
2801
2802 if (i2 == 0)
2803 Fsignal (Qarith_error, Qnil);
7403b5c8 2804
44fa9da5
PE
2805 i1 %= i2;
2806
2807 /* If the "remainder" comes out with the wrong sign, fix it. */
04f7ec69 2808 if (i2 < 0 ? i1 > 0 : i1 < 0)
44fa9da5
PE
2809 i1 += i2;
2810
f187f1f7 2811 XSETINT (val, i1);
44fa9da5
PE
2812 return val;
2813}
2814
7921925c 2815DEFUN ("max", Fmax, Smax, 1, MANY, 0,
8c1a1077 2816 doc: /* Return largest of all the arguments (which must be numbers or markers).
f44fba9e 2817The value is always a number; markers are converted to numbers.
8c1a1077
PJ
2818usage: (max NUMBER-OR-MARKER &rest NUMBERS-OR-MARKERS) */)
2819 (nargs, args)
7921925c
JB
2820 int nargs;
2821 Lisp_Object *args;
2822{
2823 return arith_driver (Amax, nargs, args);
2824}
2825
2826DEFUN ("min", Fmin, Smin, 1, MANY, 0,
8c1a1077 2827 doc: /* Return smallest of all the arguments (which must be numbers or markers).
f44fba9e 2828The value is always a number; markers are converted to numbers.
8c1a1077
PJ
2829usage: (min NUMBER-OR-MARKER &rest NUMBERS-OR-MARKERS) */)
2830 (nargs, args)
7921925c
JB
2831 int nargs;
2832 Lisp_Object *args;
2833{
2834 return arith_driver (Amin, nargs, args);
2835}
2836
2837DEFUN ("logand", Flogand, Slogand, 0, MANY, 0,
8c1a1077 2838 doc: /* Return bitwise-and of all the arguments.
f44fba9e 2839Arguments may be integers, or markers converted to integers.
8c1a1077
PJ
2840usage: (logand &rest INTS-OR-MARKERS) */)
2841 (nargs, args)
7921925c
JB
2842 int nargs;
2843 Lisp_Object *args;
2844{
2845 return arith_driver (Alogand, nargs, args);
2846}
2847
2848DEFUN ("logior", Flogior, Slogior, 0, MANY, 0,
8c1a1077 2849 doc: /* Return bitwise-or of all the arguments.
f44fba9e 2850Arguments may be integers, or markers converted to integers.
8c1a1077
PJ
2851usage: (logior &rest INTS-OR-MARKERS) */)
2852 (nargs, args)
7921925c
JB
2853 int nargs;
2854 Lisp_Object *args;
2855{
2856 return arith_driver (Alogior, nargs, args);
2857}
2858
2859DEFUN ("logxor", Flogxor, Slogxor, 0, MANY, 0,
8c1a1077 2860 doc: /* Return bitwise-exclusive-or of all the arguments.
f44fba9e 2861Arguments may be integers, or markers converted to integers.
8c1a1077
PJ
2862usage: (logxor &rest INTS-OR-MARKERS) */)
2863 (nargs, args)
7921925c
JB
2864 int nargs;
2865 Lisp_Object *args;
2866{
2867 return arith_driver (Alogxor, nargs, args);
2868}
2869
2870DEFUN ("ash", Fash, Sash, 2, 2, 0,
8c1a1077
PJ
2871 doc: /* Return VALUE with its bits shifted left by COUNT.
2872If COUNT is negative, shifting is actually to the right.
2873In this case, the sign bit is duplicated. */)
2874 (value, count)
3b9f7964 2875 register Lisp_Object value, count;
7921925c
JB
2876{
2877 register Lisp_Object val;
2878
b7826503
PJ
2879 CHECK_NUMBER (value);
2880 CHECK_NUMBER (count);
7921925c 2881
81d70626
RS
2882 if (XINT (count) >= BITS_PER_EMACS_INT)
2883 XSETINT (val, 0);
2884 else if (XINT (count) > 0)
3d9652eb 2885 XSETINT (val, XINT (value) << XFASTINT (count));
81d70626
RS
2886 else if (XINT (count) <= -BITS_PER_EMACS_INT)
2887 XSETINT (val, XINT (value) < 0 ? -1 : 0);
7921925c 2888 else
3d9652eb 2889 XSETINT (val, XINT (value) >> -XINT (count));
7921925c
JB
2890 return val;
2891}
2892
2893DEFUN ("lsh", Flsh, Slsh, 2, 2, 0,
8c1a1077
PJ
2894 doc: /* Return VALUE with its bits shifted left by COUNT.
2895If COUNT is negative, shifting is actually to the right.
3a9b1297 2896In this case, zeros are shifted in on the left. */)
8c1a1077 2897 (value, count)
3d9652eb 2898 register Lisp_Object value, count;
7921925c
JB
2899{
2900 register Lisp_Object val;
2901
b7826503
PJ
2902 CHECK_NUMBER (value);
2903 CHECK_NUMBER (count);
7921925c 2904
81d70626
RS
2905 if (XINT (count) >= BITS_PER_EMACS_INT)
2906 XSETINT (val, 0);
2907 else if (XINT (count) > 0)
3d9652eb 2908 XSETINT (val, (EMACS_UINT) XUINT (value) << XFASTINT (count));
81d70626
RS
2909 else if (XINT (count) <= -BITS_PER_EMACS_INT)
2910 XSETINT (val, 0);
7921925c 2911 else
3d9652eb 2912 XSETINT (val, (EMACS_UINT) XUINT (value) >> -XINT (count));
7921925c
JB
2913 return val;
2914}
2915
2916DEFUN ("1+", Fadd1, Sadd1, 1, 1, 0,
8c1a1077
PJ
2917 doc: /* Return NUMBER plus one. NUMBER may be a number or a marker.
2918Markers are converted to integers. */)
2919 (number)
d9c2a0f2 2920 register Lisp_Object number;
7921925c 2921{
b7826503 2922 CHECK_NUMBER_OR_FLOAT_COERCE_MARKER (number);
7921925c 2923
d9c2a0f2 2924 if (FLOATP (number))
7539e11f 2925 return (make_float (1.0 + XFLOAT_DATA (number)));
7921925c 2926
d9c2a0f2
EN
2927 XSETINT (number, XINT (number) + 1);
2928 return number;
7921925c
JB
2929}
2930
2931DEFUN ("1-", Fsub1, Ssub1, 1, 1, 0,
8c1a1077
PJ
2932 doc: /* Return NUMBER minus one. NUMBER may be a number or a marker.
2933Markers are converted to integers. */)
2934 (number)
d9c2a0f2 2935 register Lisp_Object number;
7921925c 2936{
b7826503 2937 CHECK_NUMBER_OR_FLOAT_COERCE_MARKER (number);
7921925c 2938
d9c2a0f2 2939 if (FLOATP (number))
7539e11f 2940 return (make_float (-1.0 + XFLOAT_DATA (number)));
7921925c 2941
d9c2a0f2
EN
2942 XSETINT (number, XINT (number) - 1);
2943 return number;
7921925c
JB
2944}
2945
2946DEFUN ("lognot", Flognot, Slognot, 1, 1, 0,
8c1a1077
PJ
2947 doc: /* Return the bitwise complement of NUMBER. NUMBER must be an integer. */)
2948 (number)
d9c2a0f2 2949 register Lisp_Object number;
7921925c 2950{
b7826503 2951 CHECK_NUMBER (number);
53924017 2952 XSETINT (number, ~XINT (number));
d9c2a0f2 2953 return number;
7921925c 2954}
d4be0d31
JD
2955
2956DEFUN ("byteorder", Fbyteorder, Sbyteorder, 0, 0, 0,
2957 doc: /* Return the byteorder for the machine.
2958Returns 66 (ASCII uppercase B) for big endian machines or 108 (ASCII
2959lowercase l) for small endian machines. */)
2960 ()
2961{
2962 unsigned i = 0x04030201;
7a8560d7 2963 int order = *(char *)&i == 1 ? 108 : 66;
d4be0d31 2964
d2f14999 2965 return make_number (order);
d4be0d31
JD
2966}
2967
2968
7921925c
JB
2969\f
2970void
2971syms_of_data ()
2972{
6315e761
RS
2973 Lisp_Object error_tail, arith_tail;
2974
7921925c
JB
2975 Qquote = intern ("quote");
2976 Qlambda = intern ("lambda");
2977 Qsubr = intern ("subr");
2978 Qerror_conditions = intern ("error-conditions");
2979 Qerror_message = intern ("error-message");
2980 Qtop_level = intern ("top-level");
2981
2982 Qerror = intern ("error");
2983 Qquit = intern ("quit");
2984 Qwrong_type_argument = intern ("wrong-type-argument");
2985 Qargs_out_of_range = intern ("args-out-of-range");
2986 Qvoid_function = intern ("void-function");
ffd56f97 2987 Qcyclic_function_indirection = intern ("cyclic-function-indirection");
f35d5bad 2988 Qcyclic_variable_indirection = intern ("cyclic-variable-indirection");
7921925c
JB
2989 Qvoid_variable = intern ("void-variable");
2990 Qsetting_constant = intern ("setting-constant");
2991 Qinvalid_read_syntax = intern ("invalid-read-syntax");
2992
2993 Qinvalid_function = intern ("invalid-function");
2994 Qwrong_number_of_arguments = intern ("wrong-number-of-arguments");
2995 Qno_catch = intern ("no-catch");
2996 Qend_of_file = intern ("end-of-file");
2997 Qarith_error = intern ("arith-error");
2998 Qbeginning_of_buffer = intern ("beginning-of-buffer");
2999 Qend_of_buffer = intern ("end-of-buffer");
3000 Qbuffer_read_only = intern ("buffer-read-only");
8f9f49d7 3001 Qtext_read_only = intern ("text-read-only");
3b8819d6 3002 Qmark_inactive = intern ("mark-inactive");
7921925c
JB
3003
3004 Qlistp = intern ("listp");
3005 Qconsp = intern ("consp");
3006 Qsymbolp = intern ("symbolp");
cda9b832 3007 Qkeywordp = intern ("keywordp");
7921925c
JB
3008 Qintegerp = intern ("integerp");
3009 Qnatnump = intern ("natnump");
8e86942b 3010 Qwholenump = intern ("wholenump");
7921925c
JB
3011 Qstringp = intern ("stringp");
3012 Qarrayp = intern ("arrayp");
3013 Qsequencep = intern ("sequencep");
3014 Qbufferp = intern ("bufferp");
3015 Qvectorp = intern ("vectorp");
3016 Qchar_or_string_p = intern ("char-or-string-p");
3017 Qmarkerp = intern ("markerp");
07bd8472 3018 Qbuffer_or_string_p = intern ("buffer-or-string-p");
7921925c
JB
3019 Qinteger_or_marker_p = intern ("integer-or-marker-p");
3020 Qboundp = intern ("boundp");
3021 Qfboundp = intern ("fboundp");
3022
7921925c
JB
3023 Qfloatp = intern ("floatp");
3024 Qnumberp = intern ("numberp");
3025 Qnumber_or_marker_p = intern ("number-or-marker-p");
7921925c 3026
4d276982 3027 Qchar_table_p = intern ("char-table-p");
7f0edce7 3028 Qvector_or_char_table_p = intern ("vector-or-char-table-p");
4d276982 3029
6f0e897f
DL
3030 Qsubrp = intern ("subrp");
3031 Qunevalled = intern ("unevalled");
3032 Qmany = intern ("many");
3033
7921925c
JB
3034 Qcdr = intern ("cdr");
3035
f845f2c9 3036 /* Handle automatic advice activation */
ab297811 3037 Qad_advice_info = intern ("ad-advice-info");
c1307a23 3038 Qad_activate_internal = intern ("ad-activate-internal");
f845f2c9 3039
6315e761
RS
3040 error_tail = Fcons (Qerror, Qnil);
3041
7921925c
JB
3042 /* ERROR is used as a signaler for random errors for which nothing else is right */
3043
3044 Fput (Qerror, Qerror_conditions,
6315e761 3045 error_tail);
7921925c
JB
3046 Fput (Qerror, Qerror_message,
3047 build_string ("error"));
3048
3049 Fput (Qquit, Qerror_conditions,
3050 Fcons (Qquit, Qnil));
3051 Fput (Qquit, Qerror_message,
3052 build_string ("Quit"));
3053
3054 Fput (Qwrong_type_argument, Qerror_conditions,
6315e761 3055 Fcons (Qwrong_type_argument, error_tail));
7921925c
JB
3056 Fput (Qwrong_type_argument, Qerror_message,
3057 build_string ("Wrong type argument"));
3058
3059 Fput (Qargs_out_of_range, Qerror_conditions,
6315e761 3060 Fcons (Qargs_out_of_range, error_tail));
7921925c
JB
3061 Fput (Qargs_out_of_range, Qerror_message,
3062 build_string ("Args out of range"));
3063
3064 Fput (Qvoid_function, Qerror_conditions,
6315e761 3065 Fcons (Qvoid_function, error_tail));
7921925c
JB
3066 Fput (Qvoid_function, Qerror_message,
3067 build_string ("Symbol's function definition is void"));
3068
ffd56f97 3069 Fput (Qcyclic_function_indirection, Qerror_conditions,
6315e761 3070 Fcons (Qcyclic_function_indirection, error_tail));
ffd56f97
JB
3071 Fput (Qcyclic_function_indirection, Qerror_message,
3072 build_string ("Symbol's chain of function indirections contains a loop"));
3073
f35d5bad
GM
3074 Fput (Qcyclic_variable_indirection, Qerror_conditions,
3075 Fcons (Qcyclic_variable_indirection, error_tail));
3076 Fput (Qcyclic_variable_indirection, Qerror_message,
3077 build_string ("Symbol's chain of variable indirections contains a loop"));
3078
13d95cc0
GM
3079 Qcircular_list = intern ("circular-list");
3080 staticpro (&Qcircular_list);
3081 Fput (Qcircular_list, Qerror_conditions,
3082 Fcons (Qcircular_list, error_tail));
3083 Fput (Qcircular_list, Qerror_message,
3084 build_string ("List contains a loop"));
3085
7921925c 3086 Fput (Qvoid_variable, Qerror_conditions,
6315e761 3087 Fcons (Qvoid_variable, error_tail));
7921925c
JB
3088 Fput (Qvoid_variable, Qerror_message,
3089 build_string ("Symbol's value as variable is void"));
3090
3091 Fput (Qsetting_constant, Qerror_conditions,
6315e761 3092 Fcons (Qsetting_constant, error_tail));
7921925c
JB
3093 Fput (Qsetting_constant, Qerror_message,
3094 build_string ("Attempt to set a constant symbol"));
3095
3096 Fput (Qinvalid_read_syntax, Qerror_conditions,
6315e761 3097 Fcons (Qinvalid_read_syntax, error_tail));
7921925c
JB
3098 Fput (Qinvalid_read_syntax, Qerror_message,
3099 build_string ("Invalid read syntax"));
3100
3101 Fput (Qinvalid_function, Qerror_conditions,
6315e761 3102 Fcons (Qinvalid_function, error_tail));
7921925c
JB
3103 Fput (Qinvalid_function, Qerror_message,
3104 build_string ("Invalid function"));
3105
3106 Fput (Qwrong_number_of_arguments, Qerror_conditions,
6315e761 3107 Fcons (Qwrong_number_of_arguments, error_tail));
7921925c
JB
3108 Fput (Qwrong_number_of_arguments, Qerror_message,
3109 build_string ("Wrong number of arguments"));
3110
3111 Fput (Qno_catch, Qerror_conditions,
6315e761 3112 Fcons (Qno_catch, error_tail));
7921925c
JB
3113 Fput (Qno_catch, Qerror_message,
3114 build_string ("No catch for tag"));
3115
3116 Fput (Qend_of_file, Qerror_conditions,
6315e761 3117 Fcons (Qend_of_file, error_tail));
7921925c
JB
3118 Fput (Qend_of_file, Qerror_message,
3119 build_string ("End of file during parsing"));
3120
6315e761 3121 arith_tail = Fcons (Qarith_error, error_tail);
7921925c 3122 Fput (Qarith_error, Qerror_conditions,
6315e761 3123 arith_tail);
7921925c
JB
3124 Fput (Qarith_error, Qerror_message,
3125 build_string ("Arithmetic error"));
3126
3127 Fput (Qbeginning_of_buffer, Qerror_conditions,
6315e761 3128 Fcons (Qbeginning_of_buffer, error_tail));
7921925c
JB
3129 Fput (Qbeginning_of_buffer, Qerror_message,
3130 build_string ("Beginning of buffer"));
3131
3132 Fput (Qend_of_buffer, Qerror_conditions,
6315e761 3133 Fcons (Qend_of_buffer, error_tail));
7921925c
JB
3134 Fput (Qend_of_buffer, Qerror_message,
3135 build_string ("End of buffer"));
3136
3137 Fput (Qbuffer_read_only, Qerror_conditions,
6315e761 3138 Fcons (Qbuffer_read_only, error_tail));
7921925c
JB
3139 Fput (Qbuffer_read_only, Qerror_message,
3140 build_string ("Buffer is read-only"));
3141
8f9f49d7
GM
3142 Fput (Qtext_read_only, Qerror_conditions,
3143 Fcons (Qtext_read_only, error_tail));
3144 Fput (Qtext_read_only, Qerror_message,
3145 build_string ("Text is read-only"));
3146
6315e761
RS
3147 Qrange_error = intern ("range-error");
3148 Qdomain_error = intern ("domain-error");
3149 Qsingularity_error = intern ("singularity-error");
3150 Qoverflow_error = intern ("overflow-error");
3151 Qunderflow_error = intern ("underflow-error");
3152
3153 Fput (Qdomain_error, Qerror_conditions,
3154 Fcons (Qdomain_error, arith_tail));
3155 Fput (Qdomain_error, Qerror_message,
3156 build_string ("Arithmetic domain error"));
3157
3158 Fput (Qrange_error, Qerror_conditions,
3159 Fcons (Qrange_error, arith_tail));
3160 Fput (Qrange_error, Qerror_message,
3161 build_string ("Arithmetic range error"));
3162
3163 Fput (Qsingularity_error, Qerror_conditions,
3164 Fcons (Qsingularity_error, Fcons (Qdomain_error, arith_tail)));
3165 Fput (Qsingularity_error, Qerror_message,
3166 build_string ("Arithmetic singularity error"));
3167
3168 Fput (Qoverflow_error, Qerror_conditions,
3169 Fcons (Qoverflow_error, Fcons (Qdomain_error, arith_tail)));
3170 Fput (Qoverflow_error, Qerror_message,
3171 build_string ("Arithmetic overflow error"));
3172
3173 Fput (Qunderflow_error, Qerror_conditions,
3174 Fcons (Qunderflow_error, Fcons (Qdomain_error, arith_tail)));
3175 Fput (Qunderflow_error, Qerror_message,
3176 build_string ("Arithmetic underflow error"));
3177
3178 staticpro (&Qrange_error);
3179 staticpro (&Qdomain_error);
3180 staticpro (&Qsingularity_error);
3181 staticpro (&Qoverflow_error);
3182 staticpro (&Qunderflow_error);
6315e761 3183
7921925c
JB
3184 staticpro (&Qnil);
3185 staticpro (&Qt);
3186 staticpro (&Qquote);
3187 staticpro (&Qlambda);
3188 staticpro (&Qsubr);
3189 staticpro (&Qunbound);
3190 staticpro (&Qerror_conditions);
3191 staticpro (&Qerror_message);
3192 staticpro (&Qtop_level);
3193
3194 staticpro (&Qerror);
3195 staticpro (&Qquit);
3196 staticpro (&Qwrong_type_argument);
3197 staticpro (&Qargs_out_of_range);
3198 staticpro (&Qvoid_function);
ffd56f97 3199 staticpro (&Qcyclic_function_indirection);
dfad0b34 3200 staticpro (&Qcyclic_variable_indirection);
7921925c
JB
3201 staticpro (&Qvoid_variable);
3202 staticpro (&Qsetting_constant);
3203 staticpro (&Qinvalid_read_syntax);
3204 staticpro (&Qwrong_number_of_arguments);
3205 staticpro (&Qinvalid_function);
3206 staticpro (&Qno_catch);
3207 staticpro (&Qend_of_file);
3208 staticpro (&Qarith_error);
3209 staticpro (&Qbeginning_of_buffer);
3210 staticpro (&Qend_of_buffer);
3211 staticpro (&Qbuffer_read_only);
8f9f49d7 3212 staticpro (&Qtext_read_only);
638b77e6 3213 staticpro (&Qmark_inactive);
7921925c
JB
3214
3215 staticpro (&Qlistp);
3216 staticpro (&Qconsp);
3217 staticpro (&Qsymbolp);
cda9b832 3218 staticpro (&Qkeywordp);
7921925c
JB
3219 staticpro (&Qintegerp);
3220 staticpro (&Qnatnump);
8e86942b 3221 staticpro (&Qwholenump);
7921925c
JB
3222 staticpro (&Qstringp);
3223 staticpro (&Qarrayp);
3224 staticpro (&Qsequencep);
3225 staticpro (&Qbufferp);
3226 staticpro (&Qvectorp);
3227 staticpro (&Qchar_or_string_p);
3228 staticpro (&Qmarkerp);
07bd8472 3229 staticpro (&Qbuffer_or_string_p);
7921925c 3230 staticpro (&Qinteger_or_marker_p);
7921925c 3231 staticpro (&Qfloatp);
464f8898
RS
3232 staticpro (&Qnumberp);
3233 staticpro (&Qnumber_or_marker_p);
4d276982 3234 staticpro (&Qchar_table_p);
7f0edce7 3235 staticpro (&Qvector_or_char_table_p);
6f0e897f
DL
3236 staticpro (&Qsubrp);
3237 staticpro (&Qmany);
3238 staticpro (&Qunevalled);
7921925c
JB
3239
3240 staticpro (&Qboundp);
3241 staticpro (&Qfboundp);
3242 staticpro (&Qcdr);
ab297811 3243 staticpro (&Qad_advice_info);
c1307a23 3244 staticpro (&Qad_activate_internal);
7921925c 3245
39bcc759
RS
3246 /* Types that type-of returns. */
3247 Qinteger = intern ("integer");
3248 Qsymbol = intern ("symbol");
3249 Qstring = intern ("string");
3250 Qcons = intern ("cons");
3251 Qmarker = intern ("marker");
3252 Qoverlay = intern ("overlay");
3253 Qfloat = intern ("float");
3254 Qwindow_configuration = intern ("window-configuration");
3255 Qprocess = intern ("process");
3256 Qwindow = intern ("window");
3257 /* Qsubr = intern ("subr"); */
3258 Qcompiled_function = intern ("compiled-function");
3259 Qbuffer = intern ("buffer");
3260 Qframe = intern ("frame");
3261 Qvector = intern ("vector");
fc67d5be
KH
3262 Qchar_table = intern ("char-table");
3263 Qbool_vector = intern ("bool-vector");
81dc5de5 3264 Qhash_table = intern ("hash-table");
39bcc759
RS
3265
3266 staticpro (&Qinteger);
3267 staticpro (&Qsymbol);
3268 staticpro (&Qstring);
3269 staticpro (&Qcons);
3270 staticpro (&Qmarker);
3271 staticpro (&Qoverlay);
3272 staticpro (&Qfloat);
3273 staticpro (&Qwindow_configuration);
3274 staticpro (&Qprocess);
3275 staticpro (&Qwindow);
3276 /* staticpro (&Qsubr); */
3277 staticpro (&Qcompiled_function);
3278 staticpro (&Qbuffer);
3279 staticpro (&Qframe);
3280 staticpro (&Qvector);
fc67d5be
KH
3281 staticpro (&Qchar_table);
3282 staticpro (&Qbool_vector);
81dc5de5 3283 staticpro (&Qhash_table);
39bcc759 3284
f35d5bad 3285 defsubr (&Sindirect_variable);
f52a3ca3 3286 defsubr (&Sinteractive_form);
7921925c
JB
3287 defsubr (&Seq);
3288 defsubr (&Snull);
39bcc759 3289 defsubr (&Stype_of);
7921925c
JB
3290 defsubr (&Slistp);
3291 defsubr (&Snlistp);
3292 defsubr (&Sconsp);
3293 defsubr (&Satom);
3294 defsubr (&Sintegerp);
464f8898 3295 defsubr (&Sinteger_or_marker_p);
7921925c
JB
3296 defsubr (&Snumberp);
3297 defsubr (&Snumber_or_marker_p);
464f8898 3298 defsubr (&Sfloatp);
7921925c
JB
3299 defsubr (&Snatnump);
3300 defsubr (&Ssymbolp);
cda9b832 3301 defsubr (&Skeywordp);
7921925c 3302 defsubr (&Sstringp);
0f56470d 3303 defsubr (&Smultibyte_string_p);
7921925c 3304 defsubr (&Svectorp);
4d276982 3305 defsubr (&Schar_table_p);
7f0edce7 3306 defsubr (&Svector_or_char_table_p);
4d276982 3307 defsubr (&Sbool_vector_p);
7921925c
JB
3308 defsubr (&Sarrayp);
3309 defsubr (&Ssequencep);
3310 defsubr (&Sbufferp);
3311 defsubr (&Smarkerp);
7921925c 3312 defsubr (&Ssubrp);
dbc4e1c1 3313 defsubr (&Sbyte_code_function_p);
7921925c
JB
3314 defsubr (&Schar_or_string_p);
3315 defsubr (&Scar);
3316 defsubr (&Scdr);
3317 defsubr (&Scar_safe);
3318 defsubr (&Scdr_safe);
3319 defsubr (&Ssetcar);
3320 defsubr (&Ssetcdr);
3321 defsubr (&Ssymbol_function);
ffd56f97 3322 defsubr (&Sindirect_function);
7921925c
JB
3323 defsubr (&Ssymbol_plist);
3324 defsubr (&Ssymbol_name);
3325 defsubr (&Smakunbound);
3326 defsubr (&Sfmakunbound);
3327 defsubr (&Sboundp);
3328 defsubr (&Sfboundp);
3329 defsubr (&Sfset);
80df38a2 3330 defsubr (&Sdefalias);
7921925c
JB
3331 defsubr (&Ssetplist);
3332 defsubr (&Ssymbol_value);
3333 defsubr (&Sset);
3334 defsubr (&Sdefault_boundp);
3335 defsubr (&Sdefault_value);
3336 defsubr (&Sset_default);
3337 defsubr (&Ssetq_default);
3338 defsubr (&Smake_variable_buffer_local);
3339 defsubr (&Smake_local_variable);
3340 defsubr (&Skill_local_variable);
b0c2d1c6 3341 defsubr (&Smake_variable_frame_local);
62476adc 3342 defsubr (&Slocal_variable_p);
f4f04cee 3343 defsubr (&Slocal_variable_if_set_p);
0a2546d4 3344 defsubr (&Svariable_binding_locus);
7921925c
JB
3345 defsubr (&Saref);
3346 defsubr (&Saset);
f2980264 3347 defsubr (&Snumber_to_string);
25e40a4b 3348 defsubr (&Sstring_to_number);
7921925c
JB
3349 defsubr (&Seqlsign);
3350 defsubr (&Slss);
3351 defsubr (&Sgtr);
3352 defsubr (&Sleq);
3353 defsubr (&Sgeq);
3354 defsubr (&Sneq);
3355 defsubr (&Szerop);
3356 defsubr (&Splus);
3357 defsubr (&Sminus);
3358 defsubr (&Stimes);
3359 defsubr (&Squo);
3360 defsubr (&Srem);
44fa9da5 3361 defsubr (&Smod);
7921925c
JB
3362 defsubr (&Smax);
3363 defsubr (&Smin);
3364 defsubr (&Slogand);
3365 defsubr (&Slogior);
3366 defsubr (&Slogxor);
3367 defsubr (&Slsh);
3368 defsubr (&Sash);
3369 defsubr (&Sadd1);
3370 defsubr (&Ssub1);
3371 defsubr (&Slognot);
d4be0d31 3372 defsubr (&Sbyteorder);
6f0e897f 3373 defsubr (&Ssubr_arity);
0fddae66 3374 defsubr (&Ssubr_name);
8e86942b 3375
c80bd143 3376 XSYMBOL (Qwholenump)->function = XSYMBOL (Qnatnump)->function;
e6190b11 3377
9d113d9d
AS
3378 DEFVAR_LISP ("most-positive-fixnum", &Vmost_positive_fixnum,
3379 doc: /* The largest value that is representable in a Lisp integer. */);
3380 Vmost_positive_fixnum = make_number (MOST_POSITIVE_FIXNUM);
bfb96cb7 3381
9d113d9d
AS
3382 DEFVAR_LISP ("most-negative-fixnum", &Vmost_negative_fixnum,
3383 doc: /* The smallest value that is representable in a Lisp integer. */);
3384 Vmost_negative_fixnum = make_number (MOST_NEGATIVE_FIXNUM);
7921925c
JB
3385}
3386
a33ef3ab 3387SIGTYPE
7921925c
JB
3388arith_error (signo)
3389 int signo;
3390{
fe42a920 3391#if defined(USG) && !defined(POSIX_SIGNALS)
7921925c
JB
3392 /* USG systems forget handlers when they are used;
3393 must reestablish each time */
3394 signal (signo, arith_error);
3395#endif /* USG */
3396#ifdef VMS
3397 /* VMS systems are like USG. */
3398 signal (signo, arith_error);
3399#endif /* VMS */
3400#ifdef BSD4_1
3401 sigrelse (SIGFPE);
3402#else /* not BSD4_1 */
e065a56e 3403 sigsetmask (SIGEMPTYMASK);
7921925c
JB
3404#endif /* not BSD4_1 */
3405
333f1b6f 3406 SIGNAL_THREAD_CHECK (signo);
7921925c
JB
3407 Fsignal (Qarith_error, Qnil);
3408}
3409
dfcf069d 3410void
7921925c
JB
3411init_data ()
3412{
3413 /* Don't do this if just dumping out.
3414 We don't want to call `signal' in this case
3415 so that we don't have trouble with dumping
3416 signal-delivering routines in an inconsistent state. */
3417#ifndef CANNOT_DUMP
3418 if (!initialized)
3419 return;
3420#endif /* CANNOT_DUMP */
3421 signal (SIGFPE, arith_error);
7403b5c8 3422
7921925c
JB
3423#ifdef uts
3424 signal (SIGEMT, arith_error);
3425#endif /* uts */
3426}
ab5796a9
MB
3427
3428/* arch-tag: 25879798-b84d-479a-9c89-7d148e2109f7
3429 (do not change this comment) */