(Fbyte_code): For Beqlsign, if both args are ints,
[bpt/emacs.git] / src / data.c
CommitLineData
7921925c 1/* Primitive operations on Lisp data types for GNU Emacs Lisp interpreter.
0220c518 2 Copyright (C) 1985, 86, 88, 93, 94, 95 Free Software Foundation, Inc.
7921925c
JB
3
4This file is part of GNU Emacs.
5
6GNU Emacs is free software; you can redistribute it and/or modify
7it under the terms of the GNU General Public License as published by
7c938215 8the Free Software Foundation; either version 2, or (at your option)
7921925c
JB
9any later version.
10
11GNU Emacs is distributed in the hope that it will be useful,
12but WITHOUT ANY WARRANTY; without even the implied warranty of
13MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
14GNU General Public License for more details.
15
16You should have received a copy of the GNU General Public License
17along with GNU Emacs; see the file COPYING. If not, write to
18the Free Software Foundation, 675 Mass Ave, Cambridge, MA 02139, USA. */
19
20
21#include <signal.h>
22
18160b98 23#include <config.h>
7921925c 24#include "lisp.h"
29eab336 25#include "puresize.h"
7921925c
JB
26
27#ifndef standalone
28#include "buffer.h"
077d751f 29#include "keyboard.h"
7921925c
JB
30#endif
31
a44804c2 32#include "syssignal.h"
fb8e9847 33
aaf45c7b 34#ifdef MSDOS
6ba93f9d 35/* These are redefined (correctly, but differently) in values.h. */
aaf45c7b
RS
36#undef INTBITS
37#undef LONGBITS
38#undef SHORTBITS
39#endif
aaf45c7b 40
7921925c 41#ifdef LISP_FLOAT_TYPE
defa77b5 42
93b91208
JB
43#ifdef STDC_HEADERS
44#include <stdlib.h>
45#endif
defa77b5
RS
46
47/* Work around a problem that happens because math.h on hpux 7
48 defines two static variables--which, in Emacs, are not really static,
49 because `static' is defined as nothing. The problem is that they are
50 here, in floatfns.c, and in lread.c.
51 These macros prevent the name conflict. */
52#if defined (HPUX) && !defined (HPUX8)
53#define _MAXLDBL data_c_maxldbl
54#define _NMAXLDBL data_c_nmaxldbl
55#endif
56
7921925c
JB
57#include <math.h>
58#endif /* LISP_FLOAT_TYPE */
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;
7921925c
JB
68Lisp_Object Qsetting_constant, Qinvalid_read_syntax;
69Lisp_Object Qinvalid_function, Qwrong_number_of_arguments, Qno_catch;
3b8819d6 70Lisp_Object Qend_of_file, Qarith_error, Qmark_inactive;
7921925c 71Lisp_Object Qbeginning_of_buffer, Qend_of_buffer, Qbuffer_read_only;
8e86942b 72Lisp_Object Qintegerp, Qnatnump, Qwholenump, Qsymbolp, Qlistp, Qconsp;
7921925c
JB
73Lisp_Object Qstringp, Qarrayp, Qsequencep, Qbufferp;
74Lisp_Object Qchar_or_string_p, Qmarkerp, Qinteger_or_marker_p, Qvectorp;
07bd8472 75Lisp_Object Qbuffer_or_string_p;
7921925c 76Lisp_Object Qboundp, Qfboundp;
39bcc759 77
7921925c 78Lisp_Object Qcdr;
ab297811 79Lisp_Object Qad_advice_info, Qad_activate;
7921925c 80
6315e761
RS
81Lisp_Object Qrange_error, Qdomain_error, Qsingularity_error;
82Lisp_Object Qoverflow_error, Qunderflow_error;
83
7921925c 84#ifdef LISP_FLOAT_TYPE
464f8898 85Lisp_Object Qfloatp;
7921925c
JB
86Lisp_Object Qnumberp, Qnumber_or_marker_p;
87#endif
88
39bcc759
RS
89static Lisp_Object Qinteger, Qsymbol, Qstring, Qcons, Qmarker, Qoverlay;
90static Lisp_Object Qfloat, Qwindow_configuration, Qprocess, Qwindow;
91static Lisp_Object Qcompiled_function, Qbuffer, Qframe, Qvector;
92
7921925c
JB
93static Lisp_Object swap_in_symval_forwarding ();
94
95Lisp_Object
96wrong_type_argument (predicate, value)
97 register Lisp_Object predicate, value;
98{
99 register Lisp_Object tem;
100 do
101 {
102 if (!EQ (Vmocklisp_arguments, Qt))
103 {
e9ebc175 104 if (STRINGP (value) &&
7921925c 105 (EQ (predicate, Qintegerp) || EQ (predicate, Qinteger_or_marker_p)))
25e40a4b 106 return Fstring_to_number (value);
e9ebc175 107 if (INTEGERP (value) && EQ (predicate, Qstringp))
f2980264 108 return Fnumber_to_string (value);
7921925c 109 }
e1351ff7
RS
110
111 /* If VALUE is not even a valid Lisp object, abort here
112 where we can get a backtrace showing where it came from. */
04be3993 113 if ((unsigned int) XGCTYPE (value) >= Lisp_Type_Limit)
e1351ff7
RS
114 abort ();
115
7921925c
JB
116 value = Fsignal (Qwrong_type_argument, Fcons (predicate, Fcons (value, Qnil)));
117 tem = call1 (predicate, value);
118 }
a33ef3ab 119 while (NILP (tem));
7921925c
JB
120 return value;
121}
122
123pure_write_error ()
124{
125 error ("Attempt to modify read-only object");
126}
127
128void
129args_out_of_range (a1, a2)
130 Lisp_Object a1, a2;
131{
132 while (1)
133 Fsignal (Qargs_out_of_range, Fcons (a1, Fcons (a2, Qnil)));
134}
135
136void
137args_out_of_range_3 (a1, a2, a3)
138 Lisp_Object a1, a2, a3;
139{
140 while (1)
141 Fsignal (Qargs_out_of_range, Fcons (a1, Fcons (a2, Fcons (a3, Qnil))));
142}
143
144Lisp_Object
145make_number (num)
146 int num;
147{
148 register Lisp_Object val;
f187f1f7 149 XSETINT (val, num);
7921925c
JB
150 return val;
151}
152
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,
173 "T if the two args are the same Lisp object.")
174 (obj1, obj2)
175 Lisp_Object obj1, obj2;
176{
177 if (EQ (obj1, obj2))
178 return Qt;
179 return Qnil;
180}
181
182DEFUN ("null", Fnull, Snull, 1, 1, 0, "T if OBJECT is nil.")
39bcc759
RS
183 (object)
184 Lisp_Object object;
7921925c 185{
39bcc759 186 if (NILP (object))
7921925c
JB
187 return Qt;
188 return Qnil;
189}
190
39bcc759
RS
191DEFUN ("type-of", Ftype_of, Stype_of, 1, 1, 0,
192 "Return a symbol representing the type of OBJECT.\n\
193The symbol returned names the object's basic type;\n\
194for example, (type-of 1) returns `integer'.")
195 (object)
196 Lisp_Object object;
197{
198 switch (XGCTYPE (object))
199 {
200 case Lisp_Int:
201 return Qinteger;
202
203 case Lisp_Symbol:
204 return Qsymbol;
205
206 case Lisp_String:
207 return Qstring;
208
209 case Lisp_Cons:
210 return Qcons;
211
212 case Lisp_Misc:
324a6eef 213 switch (XMISCTYPE (object))
39bcc759
RS
214 {
215 case Lisp_Misc_Marker:
216 return Qmarker;
217 case Lisp_Misc_Overlay:
218 return Qoverlay;
219 case Lisp_Misc_Float:
220 return Qfloat;
221 }
222 abort ();
223
224 case Lisp_Vectorlike:
225 if (GC_WINDOW_CONFIGURATIONP (object))
226 return Qwindow_configuration;
227 if (GC_PROCESSP (object))
228 return Qprocess;
229 if (GC_WINDOWP (object))
230 return Qwindow;
231 if (GC_SUBRP (object))
232 return Qsubr;
233 if (GC_COMPILEDP (object))
234 return Qcompiled_function;
235 if (GC_BUFFERP (object))
236 return Qbuffer;
237
238#ifdef MULTI_FRAME
239 if (GC_FRAMEP (object))
240 return Qframe;
241#endif
242 return Qvector;
243
244#ifdef LISP_FLOAT_TYPE
245 case Lisp_Float:
246 return Qfloat;
247#endif
248
249 default:
250 abort ();
251 }
252}
253
7921925c 254DEFUN ("consp", Fconsp, Sconsp, 1, 1, 0, "T if OBJECT is a cons cell.")
39bcc759
RS
255 (object)
256 Lisp_Object object;
7921925c 257{
39bcc759 258 if (CONSP (object))
7921925c
JB
259 return Qt;
260 return Qnil;
261}
262
263DEFUN ("atom", Fatom, Satom, 1, 1, 0, "T if OBJECT is not a cons cell. This includes nil.")
39bcc759
RS
264 (object)
265 Lisp_Object object;
7921925c 266{
39bcc759 267 if (CONSP (object))
7921925c
JB
268 return Qnil;
269 return Qt;
270}
271
272DEFUN ("listp", Flistp, Slistp, 1, 1, 0, "T if OBJECT is a list. This includes nil.")
39bcc759
RS
273 (object)
274 Lisp_Object object;
7921925c 275{
39bcc759 276 if (CONSP (object) || NILP (object))
7921925c
JB
277 return Qt;
278 return Qnil;
279}
280
281DEFUN ("nlistp", Fnlistp, Snlistp, 1, 1, 0, "T if OBJECT is not a list. Lists include nil.")
39bcc759
RS
282 (object)
283 Lisp_Object object;
7921925c 284{
39bcc759 285 if (CONSP (object) || NILP (object))
7921925c
JB
286 return Qnil;
287 return Qt;
288}
289\f
290DEFUN ("symbolp", Fsymbolp, Ssymbolp, 1, 1, 0, "T if OBJECT is a symbol.")
39bcc759
RS
291 (object)
292 Lisp_Object object;
7921925c 293{
39bcc759 294 if (SYMBOLP (object))
7921925c
JB
295 return Qt;
296 return Qnil;
297}
298
299DEFUN ("vectorp", Fvectorp, Svectorp, 1, 1, 0, "T if OBJECT is a vector.")
39bcc759
RS
300 (object)
301 Lisp_Object object;
7921925c 302{
39bcc759 303 if (VECTORP (object))
7921925c
JB
304 return Qt;
305 return Qnil;
306}
307
308DEFUN ("stringp", Fstringp, Sstringp, 1, 1, 0, "T if OBJECT is a string.")
39bcc759
RS
309 (object)
310 Lisp_Object object;
7921925c 311{
39bcc759 312 if (STRINGP (object))
7921925c
JB
313 return Qt;
314 return Qnil;
315}
316
317DEFUN ("arrayp", Farrayp, Sarrayp, 1, 1, 0, "T if OBJECT is an array (string or vector).")
39bcc759
RS
318 (object)
319 Lisp_Object object;
7921925c 320{
39bcc759 321 if (VECTORP (object) || STRINGP (object))
7921925c
JB
322 return Qt;
323 return Qnil;
324}
325
326DEFUN ("sequencep", Fsequencep, Ssequencep, 1, 1, 0,
327 "T if OBJECT is a sequence (list or array).")
39bcc759
RS
328 (object)
329 register Lisp_Object object;
7921925c 330{
39bcc759 331 if (CONSP (object) || NILP (object) || VECTORP (object) || STRINGP (object))
7921925c
JB
332 return Qt;
333 return Qnil;
334}
335
336DEFUN ("bufferp", Fbufferp, Sbufferp, 1, 1, 0, "T if OBJECT is an editor buffer.")
39bcc759
RS
337 (object)
338 Lisp_Object object;
7921925c 339{
39bcc759 340 if (BUFFERP (object))
7921925c
JB
341 return Qt;
342 return Qnil;
343}
344
345DEFUN ("markerp", Fmarkerp, Smarkerp, 1, 1, 0, "T if OBJECT is a marker (editor pointer).")
39bcc759
RS
346 (object)
347 Lisp_Object object;
7921925c 348{
39bcc759 349 if (MARKERP (object))
7921925c
JB
350 return Qt;
351 return Qnil;
352}
353
7921925c 354DEFUN ("subrp", Fsubrp, Ssubrp, 1, 1, 0, "T if OBJECT is a built-in function.")
39bcc759
RS
355 (object)
356 Lisp_Object object;
7921925c 357{
39bcc759 358 if (SUBRP (object))
7921925c
JB
359 return Qt;
360 return Qnil;
361}
362
dbc4e1c1
JB
363DEFUN ("byte-code-function-p", Fbyte_code_function_p, Sbyte_code_function_p,
364 1, 1, 0, "T if OBJECT is a byte-compiled function object.")
39bcc759
RS
365 (object)
366 Lisp_Object object;
7921925c 367{
39bcc759 368 if (COMPILEDP (object))
7921925c
JB
369 return Qt;
370 return Qnil;
371}
372
0321d75c
KH
373DEFUN ("char-or-string-p", Fchar_or_string_p, Schar_or_string_p, 1, 1, 0,
374 "T if OBJECT is a character (an integer) or a string.")
39bcc759
RS
375 (object)
376 register Lisp_Object object;
7921925c 377{
39bcc759 378 if (INTEGERP (object) || STRINGP (object))
7921925c
JB
379 return Qt;
380 return Qnil;
381}
382\f
0321d75c 383DEFUN ("integerp", Fintegerp, Sintegerp, 1, 1, 0, "T if OBJECT is an integer.")
39bcc759
RS
384 (object)
385 Lisp_Object object;
7921925c 386{
39bcc759 387 if (INTEGERP (object))
7921925c
JB
388 return Qt;
389 return Qnil;
390}
391
464f8898
RS
392DEFUN ("integer-or-marker-p", Finteger_or_marker_p, Sinteger_or_marker_p, 1, 1, 0,
393 "T if OBJECT is an integer or a marker (editor pointer).")
39bcc759
RS
394 (object)
395 register Lisp_Object object;
7921925c 396{
39bcc759 397 if (MARKERP (object) || INTEGERP (object))
7921925c
JB
398 return Qt;
399 return Qnil;
400}
401
0321d75c
KH
402DEFUN ("natnump", Fnatnump, Snatnump, 1, 1, 0,
403 "T if OBJECT is a nonnegative integer.")
39bcc759
RS
404 (object)
405 Lisp_Object object;
7921925c 406{
39bcc759 407 if (NATNUMP (object))
7921925c
JB
408 return Qt;
409 return Qnil;
410}
411
412DEFUN ("numberp", Fnumberp, Snumberp, 1, 1, 0,
413 "T if OBJECT is a number (floating point or integer).")
39bcc759
RS
414 (object)
415 Lisp_Object object;
7921925c 416{
39bcc759 417 if (NUMBERP (object))
7921925c 418 return Qt;
dbc4e1c1
JB
419 else
420 return Qnil;
7921925c
JB
421}
422
423DEFUN ("number-or-marker-p", Fnumber_or_marker_p,
424 Snumber_or_marker_p, 1, 1, 0,
425 "T if OBJECT is a number or a marker.")
39bcc759
RS
426 (object)
427 Lisp_Object object;
7921925c 428{
39bcc759 429 if (NUMBERP (object) || MARKERP (object))
7921925c
JB
430 return Qt;
431 return Qnil;
432}
464f8898
RS
433
434#ifdef LISP_FLOAT_TYPE
435DEFUN ("floatp", Ffloatp, Sfloatp, 1, 1, 0,
436 "T if OBJECT is a floating point number.")
39bcc759
RS
437 (object)
438 Lisp_Object object;
464f8898 439{
39bcc759 440 if (FLOATP (object))
464f8898
RS
441 return Qt;
442 return Qnil;
443}
7921925c
JB
444#endif /* LISP_FLOAT_TYPE */
445\f
446/* Extract and set components of lists */
447
448DEFUN ("car", Fcar, Scar, 1, 1, 0,
e1960a18 449 "Return the car of LIST. If arg is nil, return nil.\n\
7921925c
JB
450Error if arg is not nil and not a cons cell. See also `car-safe'.")
451 (list)
452 register Lisp_Object list;
453{
454 while (1)
455 {
e9ebc175 456 if (CONSP (list))
7921925c
JB
457 return XCONS (list)->car;
458 else if (EQ (list, Qnil))
459 return Qnil;
460 else
461 list = wrong_type_argument (Qlistp, list);
462 }
463}
464
465DEFUN ("car-safe", Fcar_safe, Scar_safe, 1, 1, 0,
466 "Return the car of OBJECT if it is a cons cell, or else nil.")
467 (object)
468 Lisp_Object object;
469{
e9ebc175 470 if (CONSP (object))
7921925c
JB
471 return XCONS (object)->car;
472 else
473 return Qnil;
474}
475
476DEFUN ("cdr", Fcdr, Scdr, 1, 1, 0,
e1960a18 477 "Return the cdr of LIST. If arg is nil, return nil.\n\
7921925c
JB
478Error if arg is not nil and not a cons cell. See also `cdr-safe'.")
479
480 (list)
481 register Lisp_Object list;
482{
483 while (1)
484 {
e9ebc175 485 if (CONSP (list))
7921925c
JB
486 return XCONS (list)->cdr;
487 else if (EQ (list, Qnil))
488 return Qnil;
489 else
490 list = wrong_type_argument (Qlistp, list);
491 }
492}
493
494DEFUN ("cdr-safe", Fcdr_safe, Scdr_safe, 1, 1, 0,
b7abc8fa 495 "Return the cdr of OBJECT if it is a cons cell, or else nil.")
7921925c
JB
496 (object)
497 Lisp_Object object;
498{
e9ebc175 499 if (CONSP (object))
7921925c
JB
500 return XCONS (object)->cdr;
501 else
502 return Qnil;
503}
504
505DEFUN ("setcar", Fsetcar, Ssetcar, 2, 2, 0,
e1960a18 506 "Set the car of CELL to be NEWCAR. Returns NEWCAR.")
7921925c
JB
507 (cell, newcar)
508 register Lisp_Object cell, newcar;
509{
e9ebc175 510 if (!CONSP (cell))
7921925c
JB
511 cell = wrong_type_argument (Qconsp, cell);
512
513 CHECK_IMPURE (cell);
514 XCONS (cell)->car = newcar;
515 return newcar;
516}
517
518DEFUN ("setcdr", Fsetcdr, Ssetcdr, 2, 2, 0,
e1960a18 519 "Set the cdr of CELL to be NEWCDR. Returns NEWCDR.")
7921925c
JB
520 (cell, newcdr)
521 register Lisp_Object cell, newcdr;
522{
e9ebc175 523 if (!CONSP (cell))
7921925c
JB
524 cell = wrong_type_argument (Qconsp, cell);
525
526 CHECK_IMPURE (cell);
527 XCONS (cell)->cdr = newcdr;
528 return newcdr;
529}
530\f
531/* Extract and set components of symbols */
532
533DEFUN ("boundp", Fboundp, Sboundp, 1, 1, 0, "T if SYMBOL's value is not void.")
534 (sym)
535 register Lisp_Object sym;
536{
537 Lisp_Object valcontents;
538 CHECK_SYMBOL (sym, 0);
539
540 valcontents = XSYMBOL (sym)->value;
541
aabf6bec
KH
542 if (BUFFER_LOCAL_VALUEP (valcontents)
543 || SOME_BUFFER_LOCAL_VALUEP (valcontents))
536b772a 544 valcontents = swap_in_symval_forwarding (sym, valcontents);
7921925c 545
1bfcade3 546 return (EQ (valcontents, Qunbound) ? Qnil : Qt);
7921925c
JB
547}
548
549DEFUN ("fboundp", Ffboundp, Sfboundp, 1, 1, 0, "T if SYMBOL's function definition is not void.")
550 (sym)
551 register Lisp_Object sym;
552{
553 CHECK_SYMBOL (sym, 0);
1bfcade3 554 return (EQ (XSYMBOL (sym)->function, Qunbound) ? Qnil : Qt);
7921925c
JB
555}
556
557DEFUN ("makunbound", Fmakunbound, Smakunbound, 1, 1, 0, "Make SYMBOL's value be void.")
558 (sym)
559 register Lisp_Object sym;
560{
561 CHECK_SYMBOL (sym, 0);
a33ef3ab 562 if (NILP (sym) || EQ (sym, Qt))
7921925c
JB
563 return Fsignal (Qsetting_constant, Fcons (sym, Qnil));
564 Fset (sym, Qunbound);
565 return sym;
566}
567
568DEFUN ("fmakunbound", Ffmakunbound, Sfmakunbound, 1, 1, 0, "Make SYMBOL's function definition be void.")
569 (sym)
570 register Lisp_Object sym;
571{
572 CHECK_SYMBOL (sym, 0);
c15c5d40
KH
573 if (NILP (sym) || EQ (sym, Qt))
574 return Fsignal (Qsetting_constant, Fcons (sym, Qnil));
7921925c
JB
575 XSYMBOL (sym)->function = Qunbound;
576 return sym;
577}
578
579DEFUN ("symbol-function", Fsymbol_function, Ssymbol_function, 1, 1, 0,
580 "Return SYMBOL's function definition. Error if that is void.")
ffd56f97
JB
581 (symbol)
582 register Lisp_Object symbol;
7921925c 583{
ffd56f97
JB
584 CHECK_SYMBOL (symbol, 0);
585 if (EQ (XSYMBOL (symbol)->function, Qunbound))
586 return Fsignal (Qvoid_function, Fcons (symbol, Qnil));
587 return XSYMBOL (symbol)->function;
7921925c
JB
588}
589
590DEFUN ("symbol-plist", Fsymbol_plist, Ssymbol_plist, 1, 1, 0, "Return SYMBOL's property list.")
591 (sym)
592 register Lisp_Object sym;
593{
594 CHECK_SYMBOL (sym, 0);
595 return XSYMBOL (sym)->plist;
596}
597
598DEFUN ("symbol-name", Fsymbol_name, Ssymbol_name, 1, 1, 0, "Return SYMBOL's name, a string.")
599 (sym)
600 register Lisp_Object sym;
601{
602 register Lisp_Object name;
603
604 CHECK_SYMBOL (sym, 0);
f187f1f7 605 XSETSTRING (name, XSYMBOL (sym)->name);
7921925c
JB
606 return name;
607}
608
609DEFUN ("fset", Ffset, Sfset, 2, 2, 0,
610 "Set SYMBOL's function definition to NEWVAL, and return NEWVAL.")
611 (sym, newdef)
612 register Lisp_Object sym, newdef;
613{
614 CHECK_SYMBOL (sym, 0);
c15c5d40
KH
615 if (NILP (sym) || EQ (sym, Qt))
616 return Fsignal (Qsetting_constant, Fcons (sym, Qnil));
a33ef3ab 617 if (!NILP (Vautoload_queue) && !EQ (XSYMBOL (sym)->function, Qunbound))
7921925c
JB
618 Vautoload_queue = Fcons (Fcons (sym, XSYMBOL (sym)->function),
619 Vautoload_queue);
620 XSYMBOL (sym)->function = newdef;
f845f2c9 621 /* Handle automatic advice activation */
ab297811 622 if (CONSP (XSYMBOL (sym)->plist) && !NILP (Fget (sym, Qad_advice_info)))
f845f2c9 623 {
ab297811 624 call2 (Qad_activate, sym, Qnil);
f845f2c9
RS
625 newdef = XSYMBOL (sym)->function;
626 }
7921925c
JB
627 return newdef;
628}
629
d9bcdb34
RS
630/* This name should be removed once it is eliminated from elsewhere. */
631
80df38a2 632DEFUN ("defalias", Fdefalias, Sdefalias, 2, 2, 0,
fc08c367
RS
633 "Set SYMBOL's function definition to NEWVAL, and return NEWVAL.\n\
634Associates the function with the current load file, if any.")
635 (sym, newdef)
636 register Lisp_Object sym, newdef;
637{
638 CHECK_SYMBOL (sym, 0);
639 if (!NILP (Vautoload_queue) && !EQ (XSYMBOL (sym)->function, Qunbound))
640 Vautoload_queue = Fcons (Fcons (sym, XSYMBOL (sym)->function),
641 Vautoload_queue);
642 XSYMBOL (sym)->function = newdef;
ab297811
RS
643 /* Handle automatic advice activation */
644 if (CONSP (XSYMBOL (sym)->plist) && !NILP (Fget (sym, Qad_advice_info)))
645 {
646 call2 (Qad_activate, sym, Qnil);
647 newdef = XSYMBOL (sym)->function;
648 }
fc08c367
RS
649 LOADHIST_ATTACH (sym);
650 return newdef;
651}
652
d9bcdb34
RS
653DEFUN ("define-function", Fdefine_function, Sdefine_function, 2, 2, 0,
654 "Set SYMBOL's function definition to NEWVAL, and return NEWVAL.\n\
655Associates the function with the current load file, if any.")
656 (sym, newdef)
657 register Lisp_Object sym, newdef;
658{
659 CHECK_SYMBOL (sym, 0);
660 if (!NILP (Vautoload_queue) && !EQ (XSYMBOL (sym)->function, Qunbound))
661 Vautoload_queue = Fcons (Fcons (sym, XSYMBOL (sym)->function),
662 Vautoload_queue);
663 XSYMBOL (sym)->function = newdef;
ab297811
RS
664 /* Handle automatic advice activation */
665 if (CONSP (XSYMBOL (sym)->plist) && !NILP (Fget (sym, Qad_advice_info)))
666 {
667 call2 (Qad_activate, sym, Qnil);
668 newdef = XSYMBOL (sym)->function;
669 }
d9bcdb34
RS
670 LOADHIST_ATTACH (sym);
671 return newdef;
672}
673
7921925c
JB
674DEFUN ("setplist", Fsetplist, Ssetplist, 2, 2, 0,
675 "Set SYMBOL's property list to NEWVAL, and return NEWVAL.")
676 (sym, newplist)
677 register Lisp_Object sym, newplist;
678{
679 CHECK_SYMBOL (sym, 0);
680 XSYMBOL (sym)->plist = newplist;
681 return newplist;
682}
ffd56f97 683
7921925c
JB
684\f
685/* Getting and setting values of symbols */
686
687/* Given the raw contents of a symbol value cell,
688 return the Lisp value of the symbol.
689 This does not handle buffer-local variables; use
690 swap_in_symval_forwarding for that. */
691
692Lisp_Object
693do_symval_forwarding (valcontents)
694 register Lisp_Object valcontents;
695{
696 register Lisp_Object val;
46b2ac21
KH
697 int offset;
698 if (MISCP (valcontents))
324a6eef 699 switch (XMISCTYPE (valcontents))
46b2ac21
KH
700 {
701 case Lisp_Misc_Intfwd:
702 XSETINT (val, *XINTFWD (valcontents)->intvar);
703 return val;
7921925c 704
46b2ac21
KH
705 case Lisp_Misc_Boolfwd:
706 return (*XBOOLFWD (valcontents)->boolvar ? Qt : Qnil);
7921925c 707
46b2ac21
KH
708 case Lisp_Misc_Objfwd:
709 return *XOBJFWD (valcontents)->objvar;
7921925c 710
46b2ac21
KH
711 case Lisp_Misc_Buffer_Objfwd:
712 offset = XBUFFER_OBJFWD (valcontents)->offset;
713 return *(Lisp_Object *)(offset + (char *)current_buffer);
7403b5c8 714
e5f8af9e
KH
715 case Lisp_Misc_Kboard_Objfwd:
716 offset = XKBOARD_OBJFWD (valcontents)->offset;
717 return *(Lisp_Object *)(offset + (char *)current_kboard);
46b2ac21 718 }
7921925c
JB
719 return valcontents;
720}
721
722/* Store NEWVAL into SYM, where VALCONTENTS is found in the value cell
723 of SYM. If SYM is buffer-local, VALCONTENTS should be the
724 buffer-independent contents of the value cell: forwarded just one
725 step past the buffer-localness. */
726
727void
728store_symval_forwarding (sym, valcontents, newval)
729 Lisp_Object sym;
730 register Lisp_Object valcontents, newval;
731{
0220c518 732 switch (SWITCH_ENUM_CAST (XTYPE (valcontents)))
7921925c 733 {
46b2ac21 734 case Lisp_Misc:
324a6eef 735 switch (XMISCTYPE (valcontents))
46b2ac21
KH
736 {
737 case Lisp_Misc_Intfwd:
738 CHECK_NUMBER (newval, 1);
739 *XINTFWD (valcontents)->intvar = XINT (newval);
e6c82a8d
RS
740 if (*XINTFWD (valcontents)->intvar != XINT (newval))
741 error ("Value out of range for variable `%s'",
742 XSYMBOL (sym)->name->data);
46b2ac21
KH
743 break;
744
745 case Lisp_Misc_Boolfwd:
746 *XBOOLFWD (valcontents)->boolvar = NILP (newval) ? 0 : 1;
747 break;
748
749 case Lisp_Misc_Objfwd:
750 *XOBJFWD (valcontents)->objvar = newval;
751 break;
752
753 case Lisp_Misc_Buffer_Objfwd:
754 {
755 int offset = XBUFFER_OBJFWD (valcontents)->offset;
756 Lisp_Object type;
757
758 type = *(Lisp_Object *)(offset + (char *)&buffer_local_types);
759 if (! NILP (type) && ! NILP (newval)
760 && XTYPE (newval) != XINT (type))
761 buffer_slot_type_mismatch (offset);
762
763 *(Lisp_Object *)(offset + (char *)current_buffer) = newval;
46b2ac21 764 }
7403b5c8
KH
765 break;
766
e5f8af9e
KH
767 case Lisp_Misc_Kboard_Objfwd:
768 (*(Lisp_Object *)((char *)current_kboard
769 + XKBOARD_OBJFWD (valcontents)->offset))
7403b5c8
KH
770 = newval;
771 break;
772
46b2ac21
KH
773 default:
774 goto def;
775 }
7921925c
JB
776 break;
777
7921925c 778 default:
46b2ac21 779 def:
7921925c 780 valcontents = XSYMBOL (sym)->value;
e9ebc175
KH
781 if (BUFFER_LOCAL_VALUEP (valcontents)
782 || SOME_BUFFER_LOCAL_VALUEP (valcontents))
8d4afcac 783 XBUFFER_LOCAL_VALUE (valcontents)->car = newval;
7921925c
JB
784 else
785 XSYMBOL (sym)->value = newval;
786 }
787}
788
789/* Set up the buffer-local symbol SYM for validity in the current
790 buffer. VALCONTENTS is the contents of its value cell.
791 Return the value forwarded one step past the buffer-local indicator. */
792
793static Lisp_Object
794swap_in_symval_forwarding (sym, valcontents)
795 Lisp_Object sym, valcontents;
796{
7403b5c8 797 /* valcontents is a pointer to a struct resembling the cons
7921925c 798 (REALVALUE BUFFER CURRENT-ALIST-ELEMENT . DEFAULT-VALUE)).
7403b5c8 799
7921925c 800 CURRENT-ALIST-ELEMENT is a pointer to an element of BUFFER's
533984a8
JB
801 local_var_alist, that being the element whose car is this
802 variable. Or it can be a pointer to the
803 (CURRENT-ALIST-ELEMENT . DEFAULT-VALUE), if BUFFER does not have
804 an element in its alist for this variable.
805
806 If the current buffer is not BUFFER, we store the current
807 REALVALUE value into CURRENT-ALIST-ELEMENT, then find the
808 appropriate alist element for the buffer now current and set up
809 CURRENT-ALIST-ELEMENT. Then we set REALVALUE out of that
810 element, and store into BUFFER.
811
7921925c
JB
812 Note that REALVALUE can be a forwarding pointer. */
813
814 register Lisp_Object tem1;
8d4afcac 815 tem1 = XCONS (XBUFFER_LOCAL_VALUE (valcontents)->cdr)->car;
7921925c 816
a33ef3ab 817 if (NILP (tem1) || current_buffer != XBUFFER (tem1))
7921925c 818 {
8d4afcac
KH
819 tem1 = XCONS (XCONS (XBUFFER_LOCAL_VALUE (valcontents)->cdr)->cdr)->car;
820 Fsetcdr (tem1,
821 do_symval_forwarding (XBUFFER_LOCAL_VALUE (valcontents)->car));
7921925c 822 tem1 = assq_no_quit (sym, current_buffer->local_var_alist);
a33ef3ab 823 if (NILP (tem1))
8d4afcac
KH
824 tem1 = XCONS (XBUFFER_LOCAL_VALUE (valcontents)->cdr)->cdr;
825 XCONS (XCONS (XBUFFER_LOCAL_VALUE (valcontents)->cdr)->cdr)->car = tem1;
826 XSETBUFFER (XCONS (XBUFFER_LOCAL_VALUE (valcontents)->cdr)->car,
827 current_buffer);
828 store_symval_forwarding (sym, XBUFFER_LOCAL_VALUE (valcontents)->car,
829 Fcdr (tem1));
7921925c 830 }
8d4afcac 831 return XBUFFER_LOCAL_VALUE (valcontents)->car;
7921925c
JB
832}
833\f
14e76af9
JB
834/* Find the value of a symbol, returning Qunbound if it's not bound.
835 This is helpful for code which just wants to get a variable's value
836 if it has one, without signalling an error.
837 Note that it must not be possible to quit
838 within this function. Great care is required for this. */
7921925c 839
14e76af9
JB
840Lisp_Object
841find_symbol_value (sym)
7921925c
JB
842 Lisp_Object sym;
843{
844 register Lisp_Object valcontents, tem1;
845 register Lisp_Object val;
846 CHECK_SYMBOL (sym, 0);
847 valcontents = XSYMBOL (sym)->value;
848
aabf6bec
KH
849 if (BUFFER_LOCAL_VALUEP (valcontents)
850 || SOME_BUFFER_LOCAL_VALUEP (valcontents))
536b772a 851 valcontents = swap_in_symval_forwarding (sym, valcontents);
7921925c 852
536b772a
KH
853 if (MISCP (valcontents))
854 {
324a6eef 855 switch (XMISCTYPE (valcontents))
46b2ac21
KH
856 {
857 case Lisp_Misc_Intfwd:
858 XSETINT (val, *XINTFWD (valcontents)->intvar);
859 return val;
7921925c 860
46b2ac21
KH
861 case Lisp_Misc_Boolfwd:
862 return (*XBOOLFWD (valcontents)->boolvar ? Qt : Qnil);
7921925c 863
46b2ac21
KH
864 case Lisp_Misc_Objfwd:
865 return *XOBJFWD (valcontents)->objvar;
7921925c 866
46b2ac21
KH
867 case Lisp_Misc_Buffer_Objfwd:
868 return *(Lisp_Object *)(XBUFFER_OBJFWD (valcontents)->offset
869 + (char *)current_buffer);
7403b5c8 870
e5f8af9e
KH
871 case Lisp_Misc_Kboard_Objfwd:
872 return *(Lisp_Object *)(XKBOARD_OBJFWD (valcontents)->offset
873 + (char *)current_kboard);
46b2ac21 874 }
7921925c
JB
875 }
876
877 return valcontents;
878}
879
14e76af9
JB
880DEFUN ("symbol-value", Fsymbol_value, Ssymbol_value, 1, 1, 0,
881 "Return SYMBOL's value. Error if that is void.")
882 (sym)
883 Lisp_Object sym;
884{
0671d7c0 885 Lisp_Object val;
14e76af9 886
0671d7c0 887 val = find_symbol_value (sym);
14e76af9
JB
888 if (EQ (val, Qunbound))
889 return Fsignal (Qvoid_variable, Fcons (sym, Qnil));
890 else
891 return val;
892}
893
7921925c
JB
894DEFUN ("set", Fset, Sset, 2, 2, 0,
895 "Set SYMBOL's value to NEWVAL, and return NEWVAL.")
896 (sym, newval)
897 register Lisp_Object sym, newval;
898{
1bfcade3 899 int voide = EQ (newval, Qunbound);
7921925c 900
7921925c 901 register Lisp_Object valcontents, tem1, current_alist_element;
7921925c
JB
902
903 CHECK_SYMBOL (sym, 0);
a33ef3ab 904 if (NILP (sym) || EQ (sym, Qt))
7921925c
JB
905 return Fsignal (Qsetting_constant, Fcons (sym, Qnil));
906 valcontents = XSYMBOL (sym)->value;
907
e9ebc175 908 if (BUFFER_OBJFWDP (valcontents))
7921925c 909 {
46b2ac21 910 register int idx = XBUFFER_OBJFWD (valcontents)->offset;
865c050f
KH
911 register int mask = XINT (*((Lisp_Object *)
912 (idx + (char *)&buffer_local_flags)));
7921925c
JB
913 if (mask > 0)
914 current_buffer->local_var_flags |= mask;
915 }
916
e9ebc175
KH
917 else if (BUFFER_LOCAL_VALUEP (valcontents)
918 || SOME_BUFFER_LOCAL_VALUEP (valcontents))
7921925c 919 {
8d4afcac
KH
920 /* valcontents is actually a pointer to a struct resembling a cons,
921 with contents something like:
d8cafeb5
JB
922 (REALVALUE BUFFER CURRENT-ALIST-ELEMENT . DEFAULT-VALUE).
923
924 BUFFER is the last buffer for which this symbol's value was
925 made up to date.
926
927 CURRENT-ALIST-ELEMENT is a pointer to an element of BUFFER's
928 local_var_alist, that being the element whose car is this
929 variable. Or it can be a pointer to the
930 (CURRENT-ALIST-ELEMENT . DEFAULT-VALUE), if BUFFER does not
931 have an element in its alist for this variable (that is, if
932 BUFFER sees the default value of this variable).
933
934 If we want to examine or set the value and BUFFER is current,
935 we just examine or set REALVALUE. If BUFFER is not current, we
936 store the current REALVALUE value into CURRENT-ALIST-ELEMENT,
937 then find the appropriate alist element for the buffer now
938 current and set up CURRENT-ALIST-ELEMENT. Then we set
939 REALVALUE out of that element, and store into BUFFER.
940
941 If we are setting the variable and the current buffer does
942 not have an alist entry for this variable, an alist entry is
943 created.
944
945 Note that REALVALUE can be a forwarding pointer. Each time
946 it is examined or set, forwarding must be done. */
947
948 /* What value are we caching right now? */
949 current_alist_element =
8d4afcac 950 XCONS (XCONS (XBUFFER_LOCAL_VALUE (valcontents)->cdr)->cdr)->car;
d8cafeb5
JB
951
952 /* If the current buffer is not the buffer whose binding is
953 currently cached, or if it's a Lisp_Buffer_Local_Value and
954 we're looking at the default value, the cache is invalid; we
955 need to write it out, and find the new CURRENT-ALIST-ELEMENT. */
956 if ((current_buffer
8d4afcac 957 != XBUFFER (XCONS (XBUFFER_LOCAL_VALUE (valcontents)->cdr)->car))
e9ebc175 958 || (BUFFER_LOCAL_VALUEP (valcontents)
b06faa91
JB
959 && EQ (XCONS (current_alist_element)->car,
960 current_alist_element)))
7921925c 961 {
d8cafeb5
JB
962 /* Write out the cached value for the old buffer; copy it
963 back to its alist element. This works if the current
964 buffer only sees the default value, too. */
965 Fsetcdr (current_alist_element,
8d4afcac 966 do_symval_forwarding (XBUFFER_LOCAL_VALUE (valcontents)->car));
7921925c 967
d8cafeb5 968 /* Find the new value for CURRENT-ALIST-ELEMENT. */
7921925c 969 tem1 = Fassq (sym, current_buffer->local_var_alist);
a33ef3ab 970 if (NILP (tem1))
d8cafeb5
JB
971 {
972 /* This buffer still sees the default value. */
973
974 /* If the variable is a Lisp_Some_Buffer_Local_Value,
975 make CURRENT-ALIST-ELEMENT point to itself,
976 indicating that we're seeing the default value. */
e9ebc175 977 if (SOME_BUFFER_LOCAL_VALUEP (valcontents))
8d4afcac 978 tem1 = XCONS (XBUFFER_LOCAL_VALUE (valcontents)->cdr)->cdr;
d8cafeb5
JB
979
980 /* If it's a Lisp_Buffer_Local_Value, give this buffer a
981 new assoc for a local value and set
982 CURRENT-ALIST-ELEMENT to point to that. */
983 else
984 {
985 tem1 = Fcons (sym, Fcdr (current_alist_element));
986 current_buffer->local_var_alist =
987 Fcons (tem1, current_buffer->local_var_alist);
988 }
989 }
990 /* Cache the new buffer's assoc in CURRENT-ALIST-ELEMENT. */
8d4afcac
KH
991 XCONS (XCONS (XBUFFER_LOCAL_VALUE (valcontents)->cdr)->cdr)->car
992 = tem1;
d8cafeb5
JB
993
994 /* Set BUFFER, now that CURRENT-ALIST-ELEMENT is accurate. */
8d4afcac
KH
995 XSETBUFFER (XCONS (XBUFFER_LOCAL_VALUE (valcontents)->cdr)->car,
996 current_buffer);
7921925c 997 }
8d4afcac 998 valcontents = XBUFFER_LOCAL_VALUE (valcontents)->car;
7921925c 999 }
d8cafeb5 1000
7921925c
JB
1001 /* If storing void (making the symbol void), forward only through
1002 buffer-local indicator, not through Lisp_Objfwd, etc. */
1003 if (voide)
1004 store_symval_forwarding (sym, Qnil, newval);
1005 else
1006 store_symval_forwarding (sym, valcontents, newval);
d8cafeb5 1007
7921925c
JB
1008 return newval;
1009}
1010\f
1011/* Access or set a buffer-local symbol's default value. */
1012
1013/* Return the default value of SYM, but don't check for voidness.
1bfcade3 1014 Return Qunbound if it is void. */
7921925c
JB
1015
1016Lisp_Object
1017default_value (sym)
1018 Lisp_Object sym;
1019{
1020 register Lisp_Object valcontents;
1021
1022 CHECK_SYMBOL (sym, 0);
1023 valcontents = XSYMBOL (sym)->value;
1024
1025 /* For a built-in buffer-local variable, get the default value
1026 rather than letting do_symval_forwarding get the current value. */
e9ebc175 1027 if (BUFFER_OBJFWDP (valcontents))
7921925c 1028 {
46b2ac21 1029 register int idx = XBUFFER_OBJFWD (valcontents)->offset;
7921925c 1030
865c050f 1031 if (XINT (*(Lisp_Object *) (idx + (char *) &buffer_local_flags)) != 0)
7921925c
JB
1032 return *(Lisp_Object *)(idx + (char *) &buffer_defaults);
1033 }
1034
1035 /* Handle user-created local variables. */
e9ebc175
KH
1036 if (BUFFER_LOCAL_VALUEP (valcontents)
1037 || SOME_BUFFER_LOCAL_VALUEP (valcontents))
7921925c
JB
1038 {
1039 /* If var is set up for a buffer that lacks a local value for it,
1040 the current value is nominally the default value.
1041 But the current value slot may be more up to date, since
1042 ordinary setq stores just that slot. So use that. */
1043 Lisp_Object current_alist_element, alist_element_car;
1044 current_alist_element
8d4afcac 1045 = XCONS (XCONS (XBUFFER_LOCAL_VALUE (valcontents)->cdr)->cdr)->car;
7921925c
JB
1046 alist_element_car = XCONS (current_alist_element)->car;
1047 if (EQ (alist_element_car, current_alist_element))
8d4afcac 1048 return do_symval_forwarding (XBUFFER_LOCAL_VALUE (valcontents)->car);
7921925c 1049 else
8d4afcac 1050 return XCONS (XCONS (XBUFFER_LOCAL_VALUE (valcontents)->cdr)->cdr)->cdr;
7921925c
JB
1051 }
1052 /* For other variables, get the current value. */
1053 return do_symval_forwarding (valcontents);
1054}
1055
1056DEFUN ("default-boundp", Fdefault_boundp, Sdefault_boundp, 1, 1, 0,
1057 "Return T if SYMBOL has a non-void default value.\n\
1058This is the value that is seen in buffers that do not have their own values\n\
1059for this variable.")
1060 (sym)
1061 Lisp_Object sym;
1062{
1063 register Lisp_Object value;
1064
1065 value = default_value (sym);
1bfcade3 1066 return (EQ (value, Qunbound) ? Qnil : Qt);
7921925c
JB
1067}
1068
1069DEFUN ("default-value", Fdefault_value, Sdefault_value, 1, 1, 0,
1070 "Return SYMBOL's default value.\n\
1071This is the value that is seen in buffers that do not have their own values\n\
1072for this variable. The default value is meaningful for variables with\n\
1073local bindings in certain buffers.")
1074 (sym)
1075 Lisp_Object sym;
1076{
1077 register Lisp_Object value;
1078
1079 value = default_value (sym);
1bfcade3 1080 if (EQ (value, Qunbound))
7921925c
JB
1081 return Fsignal (Qvoid_variable, Fcons (sym, Qnil));
1082 return value;
1083}
1084
1085DEFUN ("set-default", Fset_default, Sset_default, 2, 2, 0,
1086 "Set SYMBOL's default value to VAL. SYMBOL and VAL are evaluated.\n\
1087The default value is seen in buffers that do not have their own values\n\
1088for this variable.")
1089 (sym, value)
1090 Lisp_Object sym, value;
1091{
1092 register Lisp_Object valcontents, current_alist_element, alist_element_buffer;
1093
1094 CHECK_SYMBOL (sym, 0);
1095 valcontents = XSYMBOL (sym)->value;
1096
1097 /* Handle variables like case-fold-search that have special slots
1098 in the buffer. Make them work apparently like Lisp_Buffer_Local_Value
1099 variables. */
e9ebc175 1100 if (BUFFER_OBJFWDP (valcontents))
7921925c 1101 {
46b2ac21 1102 register int idx = XBUFFER_OBJFWD (valcontents)->offset;
7921925c 1103 register struct buffer *b;
865c050f
KH
1104 register int mask = XINT (*((Lisp_Object *)
1105 (idx + (char *)&buffer_local_flags)));
7921925c
JB
1106
1107 if (mask > 0)
1108 {
1109 *(Lisp_Object *)(idx + (char *) &buffer_defaults) = value;
1110 for (b = all_buffers; b; b = b->next)
1111 if (!(b->local_var_flags & mask))
1112 *(Lisp_Object *)(idx + (char *) b) = value;
1113 }
1114 return value;
1115 }
1116
e9ebc175
KH
1117 if (!BUFFER_LOCAL_VALUEP (valcontents)
1118 && !SOME_BUFFER_LOCAL_VALUEP (valcontents))
7921925c
JB
1119 return Fset (sym, value);
1120
1121 /* Store new value into the DEFAULT-VALUE slot */
8d4afcac 1122 XCONS (XCONS (XBUFFER_LOCAL_VALUE (valcontents)->cdr)->cdr)->cdr = value;
7921925c
JB
1123
1124 /* If that slot is current, we must set the REALVALUE slot too */
8d4afcac
KH
1125 current_alist_element
1126 = XCONS (XCONS (XBUFFER_LOCAL_VALUE (valcontents)->cdr)->cdr)->car;
7921925c
JB
1127 alist_element_buffer = Fcar (current_alist_element);
1128 if (EQ (alist_element_buffer, current_alist_element))
8d4afcac
KH
1129 store_symval_forwarding (sym, XBUFFER_LOCAL_VALUE (valcontents)->car,
1130 value);
7921925c
JB
1131
1132 return value;
1133}
1134
1135DEFUN ("setq-default", Fsetq_default, Ssetq_default, 2, UNEVALLED, 0,
0412bf67
RS
1136 "Set the default value of variable VAR to VALUE.\n\
1137VAR, the variable name, is literal (not evaluated);\n\
1138VALUE is an expression and it is evaluated.\n\
1139The default value of a variable is seen in buffers\n\
1140that do not have their own values for the variable.\n\
1141\n\
1142More generally, you can use multiple variables and values, as in\n\
1143 (setq-default SYM VALUE SYM VALUE...)\n\
1144This sets each SYM's default value to the corresponding VALUE.\n\
1145The VALUE for the Nth SYM can refer to the new default values\n\
1146of previous SYMs.")
7921925c
JB
1147 (args)
1148 Lisp_Object args;
1149{
1150 register Lisp_Object args_left;
1151 register Lisp_Object val, sym;
1152 struct gcpro gcpro1;
1153
a33ef3ab 1154 if (NILP (args))
7921925c
JB
1155 return Qnil;
1156
1157 args_left = args;
1158 GCPRO1 (args);
1159
1160 do
1161 {
1162 val = Feval (Fcar (Fcdr (args_left)));
1163 sym = Fcar (args_left);
1164 Fset_default (sym, val);
1165 args_left = Fcdr (Fcdr (args_left));
1166 }
a33ef3ab 1167 while (!NILP (args_left));
7921925c
JB
1168
1169 UNGCPRO;
1170 return val;
1171}
1172\f
a5ca2b75
JB
1173/* Lisp functions for creating and removing buffer-local variables. */
1174
7921925c
JB
1175DEFUN ("make-variable-buffer-local", Fmake_variable_buffer_local, Smake_variable_buffer_local,
1176 1, 1, "vMake Variable Buffer Local: ",
1177 "Make VARIABLE have a separate value for each buffer.\n\
1178At any time, the value for the current buffer is in effect.\n\
1179There is also a default value which is seen in any buffer which has not yet\n\
1180set its own value.\n\
1181Using `set' or `setq' to set the variable causes it to have a separate value\n\
1182for the current buffer if it was previously using the default value.\n\
1183The function `default-value' gets the default value and `set-default' sets it.")
1184 (sym)
1185 register Lisp_Object sym;
1186{
8d4afcac 1187 register Lisp_Object tem, valcontents, newval;
7921925c
JB
1188
1189 CHECK_SYMBOL (sym, 0);
1190
7403b5c8 1191 valcontents = XSYMBOL (sym)->value;
e5f8af9e 1192 if (EQ (sym, Qnil) || EQ (sym, Qt) || KBOARD_OBJFWDP (valcontents))
7921925c
JB
1193 error ("Symbol %s may not be buffer-local", XSYMBOL (sym)->name->data);
1194
e9ebc175 1195 if (BUFFER_LOCAL_VALUEP (valcontents) || BUFFER_OBJFWDP (valcontents))
7921925c 1196 return sym;
e9ebc175 1197 if (SOME_BUFFER_LOCAL_VALUEP (valcontents))
7921925c 1198 {
324a6eef 1199 XMISCTYPE (XSYMBOL (sym)->value) = Lisp_Misc_Buffer_Local_Value;
7921925c
JB
1200 return sym;
1201 }
1202 if (EQ (valcontents, Qunbound))
1203 XSYMBOL (sym)->value = Qnil;
1204 tem = Fcons (Qnil, Fsymbol_value (sym));
1205 XCONS (tem)->car = tem;
8d4afcac 1206 newval = allocate_misc ();
324a6eef 1207 XMISCTYPE (newval) = Lisp_Misc_Buffer_Local_Value;
8d4afcac
KH
1208 XBUFFER_LOCAL_VALUE (newval)->car = XSYMBOL (sym)->value;
1209 XBUFFER_LOCAL_VALUE (newval)->cdr = Fcons (Fcurrent_buffer (), tem);
1210 XSYMBOL (sym)->value = newval;
7921925c
JB
1211 return sym;
1212}
1213
1214DEFUN ("make-local-variable", Fmake_local_variable, Smake_local_variable,
1215 1, 1, "vMake Local Variable: ",
1216 "Make VARIABLE have a separate value in the current buffer.\n\
1217Other buffers will continue to share a common default value.\n\
a782f0d5
RS
1218\(The buffer-local value of VARIABLE starts out as the same value\n\
1219VARIABLE previously had. If VARIABLE was void, it remains void.\)\n\
7921925c
JB
1220See also `make-variable-buffer-local'.\n\n\
1221If the variable is already arranged to become local when set,\n\
1222this function causes a local value to exist for this buffer,\n\
62476adc
RS
1223just as setting the variable would do.\n\
1224\n\
1225Do not use `make-local-variable' to make a hook variable buffer-local.\n\
1226Use `make-local-hook' instead.")
7921925c
JB
1227 (sym)
1228 register Lisp_Object sym;
1229{
1230 register Lisp_Object tem, valcontents;
1231
1232 CHECK_SYMBOL (sym, 0);
1233
7403b5c8 1234 valcontents = XSYMBOL (sym)->value;
e5f8af9e 1235 if (EQ (sym, Qnil) || EQ (sym, Qt) || KBOARD_OBJFWDP (valcontents))
7921925c
JB
1236 error ("Symbol %s may not be buffer-local", XSYMBOL (sym)->name->data);
1237
e9ebc175 1238 if (BUFFER_LOCAL_VALUEP (valcontents) || BUFFER_OBJFWDP (valcontents))
7921925c
JB
1239 {
1240 tem = Fboundp (sym);
7403b5c8 1241
7921925c
JB
1242 /* Make sure the symbol has a local value in this particular buffer,
1243 by setting it to the same value it already has. */
1244 Fset (sym, (EQ (tem, Qt) ? Fsymbol_value (sym) : Qunbound));
1245 return sym;
1246 }
1247 /* Make sure sym is set up to hold per-buffer values */
e9ebc175 1248 if (!SOME_BUFFER_LOCAL_VALUEP (valcontents))
7921925c 1249 {
8d4afcac 1250 Lisp_Object newval;
7921925c
JB
1251 tem = Fcons (Qnil, do_symval_forwarding (valcontents));
1252 XCONS (tem)->car = tem;
8d4afcac 1253 newval = allocate_misc ();
324a6eef 1254 XMISCTYPE (newval) = Lisp_Misc_Some_Buffer_Local_Value;
8d4afcac
KH
1255 XBUFFER_LOCAL_VALUE (newval)->car = XSYMBOL (sym)->value;
1256 XBUFFER_LOCAL_VALUE (newval)->cdr = Fcons (Qnil, tem);
1257 XSYMBOL (sym)->value = newval;
7921925c
JB
1258 }
1259 /* Make sure this buffer has its own value of sym */
1260 tem = Fassq (sym, current_buffer->local_var_alist);
a33ef3ab 1261 if (NILP (tem))
7921925c
JB
1262 {
1263 current_buffer->local_var_alist
8d4afcac 1264 = Fcons (Fcons (sym, XCONS (XCONS (XBUFFER_LOCAL_VALUE (XSYMBOL (sym)->value)->cdr)->cdr)->cdr),
7921925c
JB
1265 current_buffer->local_var_alist);
1266
1267 /* Make sure symbol does not think it is set up for this buffer;
1268 force it to look once again for this buffer's value */
1269 {
8d4afcac
KH
1270 Lisp_Object *pvalbuf;
1271 valcontents = XSYMBOL (sym)->value;
1272 pvalbuf = &XCONS (XBUFFER_LOCAL_VALUE (valcontents)->cdr)->car;
1273 if (current_buffer == XBUFFER (*pvalbuf))
1274 *pvalbuf = Qnil;
7921925c 1275 }
7921925c 1276 }
a5ca2b75
JB
1277
1278 /* If the symbol forwards into a C variable, then swap in the
1279 variable for this buffer immediately. If C code modifies the
1280 variable before we swap in, then that new value will clobber the
1281 default value the next time we swap. */
8d4afcac 1282 valcontents = XBUFFER_LOCAL_VALUE (XSYMBOL (sym)->value)->car;
e9ebc175 1283 if (INTFWDP (valcontents) || BOOLFWDP (valcontents) || OBJFWDP (valcontents))
a5ca2b75
JB
1284 swap_in_symval_forwarding (sym, XSYMBOL (sym)->value);
1285
7921925c
JB
1286 return sym;
1287}
1288
1289DEFUN ("kill-local-variable", Fkill_local_variable, Skill_local_variable,
1290 1, 1, "vKill Local Variable: ",
1291 "Make VARIABLE no longer have a separate value in the current buffer.\n\
1292From now on the default value will apply in this buffer.")
1293 (sym)
1294 register Lisp_Object sym;
1295{
1296 register Lisp_Object tem, valcontents;
1297
1298 CHECK_SYMBOL (sym, 0);
1299
1300 valcontents = XSYMBOL (sym)->value;
1301
e9ebc175 1302 if (BUFFER_OBJFWDP (valcontents))
7921925c 1303 {
46b2ac21 1304 register int idx = XBUFFER_OBJFWD (valcontents)->offset;
865c050f
KH
1305 register int mask = XINT (*((Lisp_Object*)
1306 (idx + (char *)&buffer_local_flags)));
7921925c
JB
1307
1308 if (mask > 0)
1309 {
1310 *(Lisp_Object *)(idx + (char *) current_buffer)
1311 = *(Lisp_Object *)(idx + (char *) &buffer_defaults);
1312 current_buffer->local_var_flags &= ~mask;
1313 }
1314 return sym;
1315 }
1316
e9ebc175
KH
1317 if (!BUFFER_LOCAL_VALUEP (valcontents)
1318 && !SOME_BUFFER_LOCAL_VALUEP (valcontents))
7921925c
JB
1319 return sym;
1320
1321 /* Get rid of this buffer's alist element, if any */
1322
1323 tem = Fassq (sym, current_buffer->local_var_alist);
a33ef3ab 1324 if (!NILP (tem))
8d4afcac
KH
1325 current_buffer->local_var_alist
1326 = Fdelq (tem, current_buffer->local_var_alist);
7921925c
JB
1327
1328 /* Make sure symbol does not think it is set up for this buffer;
1329 force it to look once again for this buffer's value */
1330 {
8d4afcac
KH
1331 Lisp_Object *pvalbuf;
1332 valcontents = XSYMBOL (sym)->value;
1333 pvalbuf = &XCONS (XBUFFER_LOCAL_VALUE (valcontents)->cdr)->car;
1334 if (current_buffer == XBUFFER (*pvalbuf))
1335 *pvalbuf = Qnil;
7921925c
JB
1336 }
1337
1338 return sym;
1339}
62476adc
RS
1340
1341DEFUN ("local-variable-p", Flocal_variable_p, Slocal_variable_p,
c48ead86
KH
1342 1, 2, 0,
1343 "Non-nil if VARIABLE has a local binding in buffer BUFFER.\n\
1344BUFFER defaults to the current buffer.")
1345 (sym, buffer)
1346 register Lisp_Object sym, buffer;
62476adc
RS
1347{
1348 Lisp_Object valcontents;
c48ead86
KH
1349 register struct buffer *buf;
1350
1351 if (NILP (buffer))
1352 buf = current_buffer;
1353 else
1354 {
1355 CHECK_BUFFER (buffer, 0);
1356 buf = XBUFFER (buffer);
1357 }
62476adc
RS
1358
1359 CHECK_SYMBOL (sym, 0);
1360
1361 valcontents = XSYMBOL (sym)->value;
c48ead86 1362 if (BUFFER_LOCAL_VALUEP (valcontents)
1e5f16fa 1363 || SOME_BUFFER_LOCAL_VALUEP (valcontents))
c48ead86
KH
1364 {
1365 Lisp_Object tail, elt;
1366 for (tail = buf->local_var_alist; CONSP (tail); tail = XCONS (tail)->cdr)
1367 {
1368 elt = XCONS (tail)->car;
1369 if (EQ (sym, XCONS (elt)->car))
1370 return Qt;
1371 }
1372 }
1373 if (BUFFER_OBJFWDP (valcontents))
1374 {
1375 int offset = XBUFFER_OBJFWD (valcontents)->offset;
1376 int mask = XINT (*(Lisp_Object *)(offset + (char *)&buffer_local_flags));
1377 if (mask == -1 || (buf->local_var_flags & mask))
1378 return Qt;
1379 }
1380 return Qnil;
62476adc 1381}
f4f04cee
RS
1382
1383DEFUN ("local-variable-if-set-p", Flocal_variable_if_set_p, Slocal_variable_if_set_p,
1384 1, 2, 0,
1385 "Non-nil if VARIABLE will be local in buffer BUFFER if it is set there.\n\
1386BUFFER defaults to the current buffer.")
1387 (sym, buffer)
1388 register Lisp_Object sym, buffer;
1389{
1390 Lisp_Object valcontents;
1391 register struct buffer *buf;
1392
1393 if (NILP (buffer))
1394 buf = current_buffer;
1395 else
1396 {
1397 CHECK_BUFFER (buffer, 0);
1398 buf = XBUFFER (buffer);
1399 }
1400
1401 CHECK_SYMBOL (sym, 0);
1402
1403 valcontents = XSYMBOL (sym)->value;
1404
1405 /* This means that make-variable-buffer-local was done. */
1406 if (BUFFER_LOCAL_VALUEP (valcontents))
1407 return Qt;
1408 /* All these slots become local if they are set. */
1409 if (BUFFER_OBJFWDP (valcontents))
1410 return Qt;
1411 if (SOME_BUFFER_LOCAL_VALUEP (valcontents))
1412 {
1413 Lisp_Object tail, elt;
1414 for (tail = buf->local_var_alist; CONSP (tail); tail = XCONS (tail)->cdr)
1415 {
1416 elt = XCONS (tail)->car;
1417 if (EQ (sym, XCONS (elt)->car))
1418 return Qt;
1419 }
1420 }
1421 return Qnil;
1422}
7921925c 1423\f
ffd56f97
JB
1424/* Find the function at the end of a chain of symbol function indirections. */
1425
1426/* If OBJECT is a symbol, find the end of its function chain and
1427 return the value found there. If OBJECT is not a symbol, just
1428 return it. If there is a cycle in the function chain, signal a
1429 cyclic-function-indirection error.
1430
1431 This is like Findirect_function, except that it doesn't signal an
1432 error if the chain ends up unbound. */
1433Lisp_Object
a2932990 1434indirect_function (object)
62476adc 1435 register Lisp_Object object;
ffd56f97 1436{
eb8c3be9 1437 Lisp_Object tortoise, hare;
ffd56f97 1438
eb8c3be9 1439 hare = tortoise = object;
ffd56f97
JB
1440
1441 for (;;)
1442 {
e9ebc175 1443 if (!SYMBOLP (hare) || EQ (hare, Qunbound))
ffd56f97
JB
1444 break;
1445 hare = XSYMBOL (hare)->function;
e9ebc175 1446 if (!SYMBOLP (hare) || EQ (hare, Qunbound))
ffd56f97
JB
1447 break;
1448 hare = XSYMBOL (hare)->function;
1449
eb8c3be9 1450 tortoise = XSYMBOL (tortoise)->function;
ffd56f97 1451
eb8c3be9 1452 if (EQ (hare, tortoise))
ffd56f97
JB
1453 Fsignal (Qcyclic_function_indirection, Fcons (object, Qnil));
1454 }
1455
1456 return hare;
1457}
1458
1459DEFUN ("indirect-function", Findirect_function, Sindirect_function, 1, 1, 0,
1460 "Return the function at the end of OBJECT's function chain.\n\
1461If OBJECT is a symbol, follow all function indirections and return the final\n\
1462function binding.\n\
1463If OBJECT is not a symbol, just return it.\n\
1464Signal a void-function error if the final symbol is unbound.\n\
1465Signal a cyclic-function-indirection error if there is a loop in the\n\
1466function chain of symbols.")
1467 (object)
1468 register Lisp_Object object;
1469{
1470 Lisp_Object result;
1471
1472 result = indirect_function (object);
1473
1474 if (EQ (result, Qunbound))
1475 return Fsignal (Qvoid_function, Fcons (object, Qnil));
1476 return result;
1477}
1478\f
7921925c
JB
1479/* Extract and set vector and string elements */
1480
1481DEFUN ("aref", Faref, Saref, 2, 2, 0,
1482 "Return the element of ARRAY at index INDEX.\n\
1483ARRAY may be a vector or a string, or a byte-code object. INDEX starts at 0.")
1484 (array, idx)
1485 register Lisp_Object array;
1486 Lisp_Object idx;
1487{
1488 register int idxval;
1489
1490 CHECK_NUMBER (idx, 1);
1491 idxval = XINT (idx);
e9ebc175 1492 if (STRINGP (array))
7921925c
JB
1493 {
1494 Lisp_Object val;
c24e4efe
KH
1495 if (idxval < 0 || idxval >= XSTRING (array)->size)
1496 args_out_of_range (array, idx);
1b42cf2e 1497 XSETFASTINT (val, (unsigned char) XSTRING (array)->data[idxval]);
7921925c
JB
1498 return val;
1499 }
1500 else
c24e4efe 1501 {
7f358972
RS
1502 int size;
1503 if (VECTORP (array))
1504 size = XVECTOR (array)->size;
1505 else if (COMPILEDP (array))
1506 size = XVECTOR (array)->size & PSEUDOVECTOR_SIZE_MASK;
1507 else
1508 wrong_type_argument (Qarrayp, array);
1509
1510 if (idxval < 0 || idxval >= size)
c24e4efe
KH
1511 args_out_of_range (array, idx);
1512 return XVECTOR (array)->contents[idxval];
1513 }
7921925c
JB
1514}
1515
1516DEFUN ("aset", Faset, Saset, 3, 3, 0,
73d40355
RS
1517 "Store into the element of ARRAY at index IDX the value NEWELT.\n\
1518ARRAY may be a vector or a string. IDX starts at 0.")
7921925c
JB
1519 (array, idx, newelt)
1520 register Lisp_Object array;
1521 Lisp_Object idx, newelt;
1522{
1523 register int idxval;
1524
1525 CHECK_NUMBER (idx, 1);
1526 idxval = XINT (idx);
e9ebc175 1527 if (!VECTORP (array) && !STRINGP (array))
7921925c 1528 array = wrong_type_argument (Qarrayp, array);
7921925c
JB
1529 CHECK_IMPURE (array);
1530
e9ebc175 1531 if (VECTORP (array))
c24e4efe
KH
1532 {
1533 if (idxval < 0 || idxval >= XVECTOR (array)->size)
1534 args_out_of_range (array, idx);
1535 XVECTOR (array)->contents[idxval] = newelt;
1536 }
7921925c
JB
1537 else
1538 {
c24e4efe
KH
1539 if (idxval < 0 || idxval >= XSTRING (array)->size)
1540 args_out_of_range (array, idx);
7921925c
JB
1541 CHECK_NUMBER (newelt, 2);
1542 XSTRING (array)->data[idxval] = XINT (newelt);
1543 }
1544
1545 return newelt;
1546}
7921925c
JB
1547\f
1548/* Arithmetic functions */
1549
1550enum comparison { equal, notequal, less, grtr, less_or_equal, grtr_or_equal };
1551
1552Lisp_Object
1553arithcompare (num1, num2, comparison)
1554 Lisp_Object num1, num2;
1555 enum comparison comparison;
1556{
1557 double f1, f2;
1558 int floatp = 0;
1559
1560#ifdef LISP_FLOAT_TYPE
1561 CHECK_NUMBER_OR_FLOAT_COERCE_MARKER (num1, 0);
1562 CHECK_NUMBER_OR_FLOAT_COERCE_MARKER (num2, 0);
1563
e9ebc175 1564 if (FLOATP (num1) || FLOATP (num2))
7921925c
JB
1565 {
1566 floatp = 1;
e9ebc175
KH
1567 f1 = (FLOATP (num1)) ? XFLOAT (num1)->data : XINT (num1);
1568 f2 = (FLOATP (num2)) ? XFLOAT (num2)->data : XINT (num2);
7921925c
JB
1569 }
1570#else
1571 CHECK_NUMBER_COERCE_MARKER (num1, 0);
1572 CHECK_NUMBER_COERCE_MARKER (num2, 0);
1573#endif /* LISP_FLOAT_TYPE */
1574
1575 switch (comparison)
1576 {
1577 case equal:
1578 if (floatp ? f1 == f2 : XINT (num1) == XINT (num2))
1579 return Qt;
1580 return Qnil;
1581
1582 case notequal:
1583 if (floatp ? f1 != f2 : XINT (num1) != XINT (num2))
1584 return Qt;
1585 return Qnil;
1586
1587 case less:
1588 if (floatp ? f1 < f2 : XINT (num1) < XINT (num2))
1589 return Qt;
1590 return Qnil;
1591
1592 case less_or_equal:
1593 if (floatp ? f1 <= f2 : XINT (num1) <= XINT (num2))
1594 return Qt;
1595 return Qnil;
1596
1597 case grtr:
1598 if (floatp ? f1 > f2 : XINT (num1) > XINT (num2))
1599 return Qt;
1600 return Qnil;
1601
1602 case grtr_or_equal:
1603 if (floatp ? f1 >= f2 : XINT (num1) >= XINT (num2))
1604 return Qt;
1605 return Qnil;
25e40a4b
JB
1606
1607 default:
1608 abort ();
7921925c
JB
1609 }
1610}
1611
1612DEFUN ("=", Feqlsign, Seqlsign, 2, 2, 0,
1613 "T if two args, both numbers or markers, are equal.")
1614 (num1, num2)
1615 register Lisp_Object num1, num2;
1616{
1617 return arithcompare (num1, num2, equal);
1618}
1619
1620DEFUN ("<", Flss, Slss, 2, 2, 0,
1621 "T if first arg is less than second arg. Both must be numbers or markers.")
1622 (num1, num2)
1623 register Lisp_Object num1, num2;
1624{
1625 return arithcompare (num1, num2, less);
1626}
1627
1628DEFUN (">", Fgtr, Sgtr, 2, 2, 0,
1629 "T if first arg is greater than second arg. Both must be numbers or markers.")
1630 (num1, num2)
1631 register Lisp_Object num1, num2;
1632{
1633 return arithcompare (num1, num2, grtr);
1634}
1635
1636DEFUN ("<=", Fleq, Sleq, 2, 2, 0,
1637 "T if first arg is less than or equal to second arg.\n\
1638Both must be numbers or markers.")
1639 (num1, num2)
1640 register Lisp_Object num1, num2;
1641{
1642 return arithcompare (num1, num2, less_or_equal);
1643}
1644
1645DEFUN (">=", Fgeq, Sgeq, 2, 2, 0,
1646 "T if first arg is greater than or equal to second arg.\n\
1647Both must be numbers or markers.")
1648 (num1, num2)
1649 register Lisp_Object num1, num2;
1650{
1651 return arithcompare (num1, num2, grtr_or_equal);
1652}
1653
1654DEFUN ("/=", Fneq, Sneq, 2, 2, 0,
1655 "T if first arg is not equal to second arg. Both must be numbers or markers.")
1656 (num1, num2)
1657 register Lisp_Object num1, num2;
1658{
1659 return arithcompare (num1, num2, notequal);
1660}
1661
1662DEFUN ("zerop", Fzerop, Szerop, 1, 1, 0, "T if NUMBER is zero.")
1663 (num)
1664 register Lisp_Object num;
1665{
1666#ifdef LISP_FLOAT_TYPE
1667 CHECK_NUMBER_OR_FLOAT (num, 0);
1668
e9ebc175 1669 if (FLOATP (num))
7921925c
JB
1670 {
1671 if (XFLOAT(num)->data == 0.0)
1672 return Qt;
1673 return Qnil;
1674 }
1675#else
1676 CHECK_NUMBER (num, 0);
1677#endif /* LISP_FLOAT_TYPE */
1678
1679 if (!XINT (num))
1680 return Qt;
1681 return Qnil;
1682}
1683\f
34f4f6c6 1684/* Convert between long values and pairs of Lisp integers. */
51cf3e31
JB
1685
1686Lisp_Object
1687long_to_cons (i)
1688 unsigned long i;
1689{
1690 unsigned int top = i >> 16;
1691 unsigned int bot = i & 0xFFFF;
1692 if (top == 0)
1693 return make_number (bot);
b42cfa11 1694 if (top == (unsigned long)-1 >> 16)
51cf3e31
JB
1695 return Fcons (make_number (-1), make_number (bot));
1696 return Fcons (make_number (top), make_number (bot));
1697}
1698
1699unsigned long
1700cons_to_long (c)
1701 Lisp_Object c;
1702{
878a80cc 1703 Lisp_Object top, bot;
51cf3e31
JB
1704 if (INTEGERP (c))
1705 return XINT (c);
1706 top = XCONS (c)->car;
1707 bot = XCONS (c)->cdr;
1708 if (CONSP (bot))
1709 bot = XCONS (bot)->car;
1710 return ((XINT (top) << 16) | XINT (bot));
1711}
1712\f
f2980264 1713DEFUN ("number-to-string", Fnumber_to_string, Snumber_to_string, 1, 1, 0,
25e40a4b
JB
1714 "Convert NUM to a string by printing it in decimal.\n\
1715Uses a minus sign if negative.\n\
1716NUM may be an integer or a floating point number.")
7921925c
JB
1717 (num)
1718 Lisp_Object num;
1719{
1720 char buffer[20];
1721
1722#ifndef LISP_FLOAT_TYPE
1723 CHECK_NUMBER (num, 0);
1724#else
1725 CHECK_NUMBER_OR_FLOAT (num, 0);
1726
e9ebc175 1727 if (FLOATP (num))
7921925c
JB
1728 {
1729 char pigbuf[350]; /* see comments in float_to_string */
1730
1731 float_to_string (pigbuf, XFLOAT(num)->data);
7403b5c8 1732 return build_string (pigbuf);
7921925c
JB
1733 }
1734#endif /* LISP_FLOAT_TYPE */
1735
e6c82a8d
RS
1736 if (sizeof (int) == sizeof (EMACS_INT))
1737 sprintf (buffer, "%d", XINT (num));
1738 else if (sizeof (long) == sizeof (EMACS_INT))
1739 sprintf (buffer, "%ld", XINT (num));
1740 else
1741 abort ();
7921925c
JB
1742 return build_string (buffer);
1743}
1744
25e40a4b
JB
1745DEFUN ("string-to-number", Fstring_to_number, Sstring_to_number, 1, 1, 0,
1746 "Convert STRING to a number by parsing it as a decimal number.\n\
1c1c17eb
RS
1747This parses both integers and floating point numbers.\n\
1748It ignores leading spaces and tabs.")
7921925c
JB
1749 (str)
1750 register Lisp_Object str;
1751{
e6c82a8d 1752 Lisp_Object value;
0a3e4d65 1753 unsigned char *p;
25e40a4b 1754
7921925c
JB
1755 CHECK_STRING (str, 0);
1756
25e40a4b
JB
1757 p = XSTRING (str)->data;
1758
1759 /* Skip any whitespace at the front of the number. Some versions of
1760 atoi do this anyway, so we might as well make Emacs lisp consistent. */
0a3e4d65 1761 while (*p == ' ' || *p == '\t')
25e40a4b
JB
1762 p++;
1763
7921925c 1764#ifdef LISP_FLOAT_TYPE
25e40a4b
JB
1765 if (isfloat_string (p))
1766 return make_float (atof (p));
7921925c
JB
1767#endif /* LISP_FLOAT_TYPE */
1768
e6c82a8d
RS
1769 if (sizeof (int) == sizeof (EMACS_INT))
1770 XSETINT (value, atoi (p));
1771 else if (sizeof (long) == sizeof (EMACS_INT))
1772 XSETINT (value, atol (p));
1773 else
1774 abort ();
1775 return value;
7921925c 1776}
7403b5c8 1777\f
7921925c
JB
1778enum arithop
1779 { Aadd, Asub, Amult, Adiv, Alogand, Alogior, Alogxor, Amax, Amin };
1780
b06faa91
JB
1781extern Lisp_Object float_arith_driver ();
1782
7921925c 1783Lisp_Object
87fbf902 1784arith_driver (code, nargs, args)
7921925c
JB
1785 enum arithop code;
1786 int nargs;
1787 register Lisp_Object *args;
1788{
1789 register Lisp_Object val;
1790 register int argnum;
5260234d
RS
1791 register EMACS_INT accum;
1792 register EMACS_INT next;
7921925c 1793
0220c518 1794 switch (SWITCH_ENUM_CAST (code))
7921925c
JB
1795 {
1796 case Alogior:
1797 case Alogxor:
1798 case Aadd:
1799 case Asub:
1800 accum = 0; break;
1801 case Amult:
1802 accum = 1; break;
1803 case Alogand:
1804 accum = -1; break;
1805 }
1806
1807 for (argnum = 0; argnum < nargs; argnum++)
1808 {
1809 val = args[argnum]; /* using args[argnum] as argument to CHECK_NUMBER_... */
1810#ifdef LISP_FLOAT_TYPE
1811 CHECK_NUMBER_OR_FLOAT_COERCE_MARKER (val, argnum);
1812
e9ebc175 1813 if (FLOATP (val)) /* time to do serious math */
7921925c
JB
1814 return (float_arith_driver ((double) accum, argnum, code,
1815 nargs, args));
1816#else
1817 CHECK_NUMBER_COERCE_MARKER (val, argnum);
1818#endif /* LISP_FLOAT_TYPE */
1819 args[argnum] = val; /* runs into a compiler bug. */
1820 next = XINT (args[argnum]);
0220c518 1821 switch (SWITCH_ENUM_CAST (code))
7921925c
JB
1822 {
1823 case Aadd: accum += next; break;
1824 case Asub:
1825 if (!argnum && nargs != 1)
1826 next = - next;
1827 accum -= next;
1828 break;
1829 case Amult: accum *= next; break;
1830 case Adiv:
1831 if (!argnum) accum = next;
87fbf902
RS
1832 else
1833 {
1834 if (next == 0)
1835 Fsignal (Qarith_error, Qnil);
1836 accum /= next;
1837 }
7921925c
JB
1838 break;
1839 case Alogand: accum &= next; break;
1840 case Alogior: accum |= next; break;
1841 case Alogxor: accum ^= next; break;
1842 case Amax: if (!argnum || next > accum) accum = next; break;
1843 case Amin: if (!argnum || next < accum) accum = next; break;
1844 }
1845 }
1846
f187f1f7 1847 XSETINT (val, accum);
7921925c
JB
1848 return val;
1849}
1850
1851#ifdef LISP_FLOAT_TYPE
1a2f2d33
KH
1852
1853#undef isnan
1854#define isnan(x) ((x) != (x))
1855
7921925c
JB
1856Lisp_Object
1857float_arith_driver (accum, argnum, code, nargs, args)
1858 double accum;
1859 register int argnum;
1860 enum arithop code;
1861 int nargs;
1862 register Lisp_Object *args;
1863{
1864 register Lisp_Object val;
1865 double next;
7403b5c8 1866
7921925c
JB
1867 for (; argnum < nargs; argnum++)
1868 {
1869 val = args[argnum]; /* using args[argnum] as argument to CHECK_NUMBER_... */
1870 CHECK_NUMBER_OR_FLOAT_COERCE_MARKER (val, argnum);
1871
e9ebc175 1872 if (FLOATP (val))
7921925c
JB
1873 {
1874 next = XFLOAT (val)->data;
1875 }
1876 else
1877 {
1878 args[argnum] = val; /* runs into a compiler bug. */
1879 next = XINT (args[argnum]);
1880 }
0220c518 1881 switch (SWITCH_ENUM_CAST (code))
7921925c
JB
1882 {
1883 case Aadd:
1884 accum += next;
1885 break;
1886 case Asub:
1887 if (!argnum && nargs != 1)
1888 next = - next;
1889 accum -= next;
1890 break;
1891 case Amult:
1892 accum *= next;
1893 break;
1894 case Adiv:
1895 if (!argnum)
1896 accum = next;
1897 else
87fbf902
RS
1898 {
1899 if (next == 0)
1900 Fsignal (Qarith_error, Qnil);
1901 accum /= next;
1902 }
7921925c
JB
1903 break;
1904 case Alogand:
1905 case Alogior:
1906 case Alogxor:
1907 return wrong_type_argument (Qinteger_or_marker_p, val);
1908 case Amax:
1a2f2d33 1909 if (!argnum || isnan (next) || next > accum)
7921925c
JB
1910 accum = next;
1911 break;
1912 case Amin:
1a2f2d33 1913 if (!argnum || isnan (next) || next < accum)
7921925c
JB
1914 accum = next;
1915 break;
1916 }
1917 }
1918
1919 return make_float (accum);
1920}
1921#endif /* LISP_FLOAT_TYPE */
1922
1923DEFUN ("+", Fplus, Splus, 0, MANY, 0,
1924 "Return sum of any number of arguments, which are numbers or markers.")
1925 (nargs, args)
1926 int nargs;
1927 Lisp_Object *args;
1928{
1929 return arith_driver (Aadd, nargs, args);
1930}
1931
1932DEFUN ("-", Fminus, Sminus, 0, MANY, 0,
1933 "Negate number or subtract numbers or markers.\n\
1934With one arg, negates it. With more than one arg,\n\
1935subtracts all but the first from the first.")
1936 (nargs, args)
1937 int nargs;
1938 Lisp_Object *args;
1939{
1940 return arith_driver (Asub, nargs, args);
1941}
1942
1943DEFUN ("*", Ftimes, Stimes, 0, MANY, 0,
1944 "Returns product of any number of arguments, which are numbers or markers.")
1945 (nargs, args)
1946 int nargs;
1947 Lisp_Object *args;
1948{
1949 return arith_driver (Amult, nargs, args);
1950}
1951
1952DEFUN ("/", Fquo, Squo, 2, MANY, 0,
1953 "Returns first argument divided by all the remaining arguments.\n\
1954The arguments must be numbers or markers.")
1955 (nargs, args)
1956 int nargs;
1957 Lisp_Object *args;
1958{
1959 return arith_driver (Adiv, nargs, args);
1960}
1961
1962DEFUN ("%", Frem, Srem, 2, 2, 0,
1963 "Returns remainder of first arg divided by second.\n\
aa29f9b9 1964Both must be integers or markers.")
7921925c
JB
1965 (num1, num2)
1966 register Lisp_Object num1, num2;
1967{
1968 Lisp_Object val;
1969
7921925c
JB
1970 CHECK_NUMBER_COERCE_MARKER (num1, 0);
1971 CHECK_NUMBER_COERCE_MARKER (num2, 1);
7921925c 1972
87fbf902
RS
1973 if (XFASTINT (num2) == 0)
1974 Fsignal (Qarith_error, Qnil);
1975
f187f1f7 1976 XSETINT (val, XINT (num1) % XINT (num2));
7921925c
JB
1977 return val;
1978}
1979
1d66a5fa
KH
1980#ifndef HAVE_FMOD
1981double
1982fmod (f1, f2)
1983 double f1, f2;
1984{
1985#ifdef HAVE_DREM /* Some systems use this non-standard name. */
1986 return (drem (f1, f2));
1987#else /* Other systems don't seem to have it at all. */
1988 return (f1 - f2 * floor (f1/f2));
1989#endif
1990}
1991#endif /* ! HAVE_FMOD */
1992
44fa9da5
PE
1993DEFUN ("mod", Fmod, Smod, 2, 2, 0,
1994 "Returns X modulo Y.\n\
1995The result falls between zero (inclusive) and Y (exclusive).\n\
1996Both X and Y must be numbers or markers.")
1997 (num1, num2)
1998 register Lisp_Object num1, num2;
1999{
2000 Lisp_Object val;
5260234d 2001 EMACS_INT i1, i2;
44fa9da5
PE
2002
2003#ifdef LISP_FLOAT_TYPE
2004 CHECK_NUMBER_OR_FLOAT_COERCE_MARKER (num1, 0);
2005 CHECK_NUMBER_OR_FLOAT_COERCE_MARKER (num2, 1);
2006
e9ebc175 2007 if (FLOATP (num1) || FLOATP (num2))
44fa9da5
PE
2008 {
2009 double f1, f2;
2010
e9ebc175
KH
2011 f1 = FLOATP (num1) ? XFLOAT (num1)->data : XINT (num1);
2012 f2 = FLOATP (num2) ? XFLOAT (num2)->data : XINT (num2);
44fa9da5
PE
2013 if (f2 == 0)
2014 Fsignal (Qarith_error, Qnil);
2015
44fa9da5 2016 f1 = fmod (f1, f2);
44fa9da5 2017 /* If the "remainder" comes out with the wrong sign, fix it. */
e856a264 2018 if (f2 < 0 ? f1 > 0 : f1 < 0)
44fa9da5
PE
2019 f1 += f2;
2020 return (make_float (f1));
2021 }
2022#else /* not LISP_FLOAT_TYPE */
2023 CHECK_NUMBER_COERCE_MARKER (num1, 0);
2024 CHECK_NUMBER_COERCE_MARKER (num2, 1);
2025#endif /* not LISP_FLOAT_TYPE */
2026
2027 i1 = XINT (num1);
2028 i2 = XINT (num2);
2029
2030 if (i2 == 0)
2031 Fsignal (Qarith_error, Qnil);
7403b5c8 2032
44fa9da5
PE
2033 i1 %= i2;
2034
2035 /* If the "remainder" comes out with the wrong sign, fix it. */
04f7ec69 2036 if (i2 < 0 ? i1 > 0 : i1 < 0)
44fa9da5
PE
2037 i1 += i2;
2038
f187f1f7 2039 XSETINT (val, i1);
44fa9da5
PE
2040 return val;
2041}
2042
7921925c
JB
2043DEFUN ("max", Fmax, Smax, 1, MANY, 0,
2044 "Return largest of all the arguments (which must be numbers or markers).\n\
2045The value is always a number; markers are converted to numbers.")
2046 (nargs, args)
2047 int nargs;
2048 Lisp_Object *args;
2049{
2050 return arith_driver (Amax, nargs, args);
2051}
2052
2053DEFUN ("min", Fmin, Smin, 1, MANY, 0,
2054 "Return smallest of all the arguments (which must be numbers or markers).\n\
2055The value is always a number; markers are converted to numbers.")
2056 (nargs, args)
2057 int nargs;
2058 Lisp_Object *args;
2059{
2060 return arith_driver (Amin, nargs, args);
2061}
2062
2063DEFUN ("logand", Flogand, Slogand, 0, MANY, 0,
2064 "Return bitwise-and of all the arguments.\n\
2065Arguments may be integers, or markers converted to integers.")
2066 (nargs, args)
2067 int nargs;
2068 Lisp_Object *args;
2069{
2070 return arith_driver (Alogand, nargs, args);
2071}
2072
2073DEFUN ("logior", Flogior, Slogior, 0, MANY, 0,
2074 "Return bitwise-or of all the arguments.\n\
2075Arguments may be integers, or markers converted to integers.")
2076 (nargs, args)
2077 int nargs;
2078 Lisp_Object *args;
2079{
2080 return arith_driver (Alogior, nargs, args);
2081}
2082
2083DEFUN ("logxor", Flogxor, Slogxor, 0, MANY, 0,
2084 "Return bitwise-exclusive-or of all the arguments.\n\
2085Arguments may be integers, or markers converted to integers.")
2086 (nargs, args)
2087 int nargs;
2088 Lisp_Object *args;
2089{
2090 return arith_driver (Alogxor, nargs, args);
2091}
2092
2093DEFUN ("ash", Fash, Sash, 2, 2, 0,
2094 "Return VALUE with its bits shifted left by COUNT.\n\
2095If COUNT is negative, shifting is actually to the right.\n\
2096In this case, the sign bit is duplicated.")
3b9f7964
RS
2097 (value, count)
2098 register Lisp_Object value, count;
7921925c
JB
2099{
2100 register Lisp_Object val;
2101
3d9652eb
RS
2102 CHECK_NUMBER (value, 0);
2103 CHECK_NUMBER (count, 1);
7921925c 2104
3d9652eb
RS
2105 if (XINT (count) > 0)
2106 XSETINT (val, XINT (value) << XFASTINT (count));
7921925c 2107 else
3d9652eb 2108 XSETINT (val, XINT (value) >> -XINT (count));
7921925c
JB
2109 return val;
2110}
2111
2112DEFUN ("lsh", Flsh, Slsh, 2, 2, 0,
2113 "Return VALUE with its bits shifted left by COUNT.\n\
2114If COUNT is negative, shifting is actually to the right.\n\
2115In this case, zeros are shifted in on the left.")
3d9652eb
RS
2116 (value, count)
2117 register Lisp_Object value, count;
7921925c
JB
2118{
2119 register Lisp_Object val;
2120
3d9652eb
RS
2121 CHECK_NUMBER (value, 0);
2122 CHECK_NUMBER (count, 1);
7921925c 2123
3d9652eb
RS
2124 if (XINT (count) > 0)
2125 XSETINT (val, (EMACS_UINT) XUINT (value) << XFASTINT (count));
7921925c 2126 else
3d9652eb 2127 XSETINT (val, (EMACS_UINT) XUINT (value) >> -XINT (count));
7921925c
JB
2128 return val;
2129}
2130
2131DEFUN ("1+", Fadd1, Sadd1, 1, 1, 0,
2132 "Return NUMBER plus one. NUMBER may be a number or a marker.\n\
2133Markers are converted to integers.")
2134 (num)
2135 register Lisp_Object num;
2136{
2137#ifdef LISP_FLOAT_TYPE
2138 CHECK_NUMBER_OR_FLOAT_COERCE_MARKER (num, 0);
2139
e9ebc175 2140 if (FLOATP (num))
7921925c
JB
2141 return (make_float (1.0 + XFLOAT (num)->data));
2142#else
2143 CHECK_NUMBER_COERCE_MARKER (num, 0);
2144#endif /* LISP_FLOAT_TYPE */
2145
702672da 2146 XSETINT (num, XINT (num) + 1);
7921925c
JB
2147 return num;
2148}
2149
2150DEFUN ("1-", Fsub1, Ssub1, 1, 1, 0,
2151 "Return NUMBER minus one. NUMBER may be a number or a marker.\n\
2152Markers are converted to integers.")
2153 (num)
2154 register Lisp_Object num;
2155{
2156#ifdef LISP_FLOAT_TYPE
2157 CHECK_NUMBER_OR_FLOAT_COERCE_MARKER (num, 0);
2158
e9ebc175 2159 if (FLOATP (num))
7921925c
JB
2160 return (make_float (-1.0 + XFLOAT (num)->data));
2161#else
2162 CHECK_NUMBER_COERCE_MARKER (num, 0);
2163#endif /* LISP_FLOAT_TYPE */
2164
702672da 2165 XSETINT (num, XINT (num) - 1);
7921925c
JB
2166 return num;
2167}
2168
2169DEFUN ("lognot", Flognot, Slognot, 1, 1, 0,
2170 "Return the bitwise complement of ARG. ARG must be an integer.")
2171 (num)
2172 register Lisp_Object num;
2173{
2174 CHECK_NUMBER (num, 0);
702672da 2175 XSETINT (num, ~XINT (num));
7921925c
JB
2176 return num;
2177}
2178\f
2179void
2180syms_of_data ()
2181{
6315e761
RS
2182 Lisp_Object error_tail, arith_tail;
2183
7921925c
JB
2184 Qquote = intern ("quote");
2185 Qlambda = intern ("lambda");
2186 Qsubr = intern ("subr");
2187 Qerror_conditions = intern ("error-conditions");
2188 Qerror_message = intern ("error-message");
2189 Qtop_level = intern ("top-level");
2190
2191 Qerror = intern ("error");
2192 Qquit = intern ("quit");
2193 Qwrong_type_argument = intern ("wrong-type-argument");
2194 Qargs_out_of_range = intern ("args-out-of-range");
2195 Qvoid_function = intern ("void-function");
ffd56f97 2196 Qcyclic_function_indirection = intern ("cyclic-function-indirection");
7921925c
JB
2197 Qvoid_variable = intern ("void-variable");
2198 Qsetting_constant = intern ("setting-constant");
2199 Qinvalid_read_syntax = intern ("invalid-read-syntax");
2200
2201 Qinvalid_function = intern ("invalid-function");
2202 Qwrong_number_of_arguments = intern ("wrong-number-of-arguments");
2203 Qno_catch = intern ("no-catch");
2204 Qend_of_file = intern ("end-of-file");
2205 Qarith_error = intern ("arith-error");
2206 Qbeginning_of_buffer = intern ("beginning-of-buffer");
2207 Qend_of_buffer = intern ("end-of-buffer");
2208 Qbuffer_read_only = intern ("buffer-read-only");
3b8819d6 2209 Qmark_inactive = intern ("mark-inactive");
7921925c
JB
2210
2211 Qlistp = intern ("listp");
2212 Qconsp = intern ("consp");
2213 Qsymbolp = intern ("symbolp");
2214 Qintegerp = intern ("integerp");
2215 Qnatnump = intern ("natnump");
8e86942b 2216 Qwholenump = intern ("wholenump");
7921925c
JB
2217 Qstringp = intern ("stringp");
2218 Qarrayp = intern ("arrayp");
2219 Qsequencep = intern ("sequencep");
2220 Qbufferp = intern ("bufferp");
2221 Qvectorp = intern ("vectorp");
2222 Qchar_or_string_p = intern ("char-or-string-p");
2223 Qmarkerp = intern ("markerp");
07bd8472 2224 Qbuffer_or_string_p = intern ("buffer-or-string-p");
7921925c
JB
2225 Qinteger_or_marker_p = intern ("integer-or-marker-p");
2226 Qboundp = intern ("boundp");
2227 Qfboundp = intern ("fboundp");
2228
2229#ifdef LISP_FLOAT_TYPE
2230 Qfloatp = intern ("floatp");
2231 Qnumberp = intern ("numberp");
2232 Qnumber_or_marker_p = intern ("number-or-marker-p");
2233#endif /* LISP_FLOAT_TYPE */
2234
2235 Qcdr = intern ("cdr");
2236
f845f2c9 2237 /* Handle automatic advice activation */
ab297811
RS
2238 Qad_advice_info = intern ("ad-advice-info");
2239 Qad_activate = intern ("ad-activate");
f845f2c9 2240
6315e761
RS
2241 error_tail = Fcons (Qerror, Qnil);
2242
7921925c
JB
2243 /* ERROR is used as a signaler for random errors for which nothing else is right */
2244
2245 Fput (Qerror, Qerror_conditions,
6315e761 2246 error_tail);
7921925c
JB
2247 Fput (Qerror, Qerror_message,
2248 build_string ("error"));
2249
2250 Fput (Qquit, Qerror_conditions,
2251 Fcons (Qquit, Qnil));
2252 Fput (Qquit, Qerror_message,
2253 build_string ("Quit"));
2254
2255 Fput (Qwrong_type_argument, Qerror_conditions,
6315e761 2256 Fcons (Qwrong_type_argument, error_tail));
7921925c
JB
2257 Fput (Qwrong_type_argument, Qerror_message,
2258 build_string ("Wrong type argument"));
2259
2260 Fput (Qargs_out_of_range, Qerror_conditions,
6315e761 2261 Fcons (Qargs_out_of_range, error_tail));
7921925c
JB
2262 Fput (Qargs_out_of_range, Qerror_message,
2263 build_string ("Args out of range"));
2264
2265 Fput (Qvoid_function, Qerror_conditions,
6315e761 2266 Fcons (Qvoid_function, error_tail));
7921925c
JB
2267 Fput (Qvoid_function, Qerror_message,
2268 build_string ("Symbol's function definition is void"));
2269
ffd56f97 2270 Fput (Qcyclic_function_indirection, Qerror_conditions,
6315e761 2271 Fcons (Qcyclic_function_indirection, error_tail));
ffd56f97
JB
2272 Fput (Qcyclic_function_indirection, Qerror_message,
2273 build_string ("Symbol's chain of function indirections contains a loop"));
2274
7921925c 2275 Fput (Qvoid_variable, Qerror_conditions,
6315e761 2276 Fcons (Qvoid_variable, error_tail));
7921925c
JB
2277 Fput (Qvoid_variable, Qerror_message,
2278 build_string ("Symbol's value as variable is void"));
2279
2280 Fput (Qsetting_constant, Qerror_conditions,
6315e761 2281 Fcons (Qsetting_constant, error_tail));
7921925c
JB
2282 Fput (Qsetting_constant, Qerror_message,
2283 build_string ("Attempt to set a constant symbol"));
2284
2285 Fput (Qinvalid_read_syntax, Qerror_conditions,
6315e761 2286 Fcons (Qinvalid_read_syntax, error_tail));
7921925c
JB
2287 Fput (Qinvalid_read_syntax, Qerror_message,
2288 build_string ("Invalid read syntax"));
2289
2290 Fput (Qinvalid_function, Qerror_conditions,
6315e761 2291 Fcons (Qinvalid_function, error_tail));
7921925c
JB
2292 Fput (Qinvalid_function, Qerror_message,
2293 build_string ("Invalid function"));
2294
2295 Fput (Qwrong_number_of_arguments, Qerror_conditions,
6315e761 2296 Fcons (Qwrong_number_of_arguments, error_tail));
7921925c
JB
2297 Fput (Qwrong_number_of_arguments, Qerror_message,
2298 build_string ("Wrong number of arguments"));
2299
2300 Fput (Qno_catch, Qerror_conditions,
6315e761 2301 Fcons (Qno_catch, error_tail));
7921925c
JB
2302 Fput (Qno_catch, Qerror_message,
2303 build_string ("No catch for tag"));
2304
2305 Fput (Qend_of_file, Qerror_conditions,
6315e761 2306 Fcons (Qend_of_file, error_tail));
7921925c
JB
2307 Fput (Qend_of_file, Qerror_message,
2308 build_string ("End of file during parsing"));
2309
6315e761 2310 arith_tail = Fcons (Qarith_error, error_tail);
7921925c 2311 Fput (Qarith_error, Qerror_conditions,
6315e761 2312 arith_tail);
7921925c
JB
2313 Fput (Qarith_error, Qerror_message,
2314 build_string ("Arithmetic error"));
2315
2316 Fput (Qbeginning_of_buffer, Qerror_conditions,
6315e761 2317 Fcons (Qbeginning_of_buffer, error_tail));
7921925c
JB
2318 Fput (Qbeginning_of_buffer, Qerror_message,
2319 build_string ("Beginning of buffer"));
2320
2321 Fput (Qend_of_buffer, Qerror_conditions,
6315e761 2322 Fcons (Qend_of_buffer, error_tail));
7921925c
JB
2323 Fput (Qend_of_buffer, Qerror_message,
2324 build_string ("End of buffer"));
2325
2326 Fput (Qbuffer_read_only, Qerror_conditions,
6315e761 2327 Fcons (Qbuffer_read_only, error_tail));
7921925c
JB
2328 Fput (Qbuffer_read_only, Qerror_message,
2329 build_string ("Buffer is read-only"));
2330
6315e761
RS
2331#ifdef LISP_FLOAT_TYPE
2332 Qrange_error = intern ("range-error");
2333 Qdomain_error = intern ("domain-error");
2334 Qsingularity_error = intern ("singularity-error");
2335 Qoverflow_error = intern ("overflow-error");
2336 Qunderflow_error = intern ("underflow-error");
2337
2338 Fput (Qdomain_error, Qerror_conditions,
2339 Fcons (Qdomain_error, arith_tail));
2340 Fput (Qdomain_error, Qerror_message,
2341 build_string ("Arithmetic domain error"));
2342
2343 Fput (Qrange_error, Qerror_conditions,
2344 Fcons (Qrange_error, arith_tail));
2345 Fput (Qrange_error, Qerror_message,
2346 build_string ("Arithmetic range error"));
2347
2348 Fput (Qsingularity_error, Qerror_conditions,
2349 Fcons (Qsingularity_error, Fcons (Qdomain_error, arith_tail)));
2350 Fput (Qsingularity_error, Qerror_message,
2351 build_string ("Arithmetic singularity error"));
2352
2353 Fput (Qoverflow_error, Qerror_conditions,
2354 Fcons (Qoverflow_error, Fcons (Qdomain_error, arith_tail)));
2355 Fput (Qoverflow_error, Qerror_message,
2356 build_string ("Arithmetic overflow error"));
2357
2358 Fput (Qunderflow_error, Qerror_conditions,
2359 Fcons (Qunderflow_error, Fcons (Qdomain_error, arith_tail)));
2360 Fput (Qunderflow_error, Qerror_message,
2361 build_string ("Arithmetic underflow error"));
2362
2363 staticpro (&Qrange_error);
2364 staticpro (&Qdomain_error);
2365 staticpro (&Qsingularity_error);
2366 staticpro (&Qoverflow_error);
2367 staticpro (&Qunderflow_error);
2368#endif /* LISP_FLOAT_TYPE */
2369
7921925c
JB
2370 staticpro (&Qnil);
2371 staticpro (&Qt);
2372 staticpro (&Qquote);
2373 staticpro (&Qlambda);
2374 staticpro (&Qsubr);
2375 staticpro (&Qunbound);
2376 staticpro (&Qerror_conditions);
2377 staticpro (&Qerror_message);
2378 staticpro (&Qtop_level);
2379
2380 staticpro (&Qerror);
2381 staticpro (&Qquit);
2382 staticpro (&Qwrong_type_argument);
2383 staticpro (&Qargs_out_of_range);
2384 staticpro (&Qvoid_function);
ffd56f97 2385 staticpro (&Qcyclic_function_indirection);
7921925c
JB
2386 staticpro (&Qvoid_variable);
2387 staticpro (&Qsetting_constant);
2388 staticpro (&Qinvalid_read_syntax);
2389 staticpro (&Qwrong_number_of_arguments);
2390 staticpro (&Qinvalid_function);
2391 staticpro (&Qno_catch);
2392 staticpro (&Qend_of_file);
2393 staticpro (&Qarith_error);
2394 staticpro (&Qbeginning_of_buffer);
2395 staticpro (&Qend_of_buffer);
2396 staticpro (&Qbuffer_read_only);
638b77e6 2397 staticpro (&Qmark_inactive);
7921925c
JB
2398
2399 staticpro (&Qlistp);
2400 staticpro (&Qconsp);
2401 staticpro (&Qsymbolp);
2402 staticpro (&Qintegerp);
2403 staticpro (&Qnatnump);
8e86942b 2404 staticpro (&Qwholenump);
7921925c
JB
2405 staticpro (&Qstringp);
2406 staticpro (&Qarrayp);
2407 staticpro (&Qsequencep);
2408 staticpro (&Qbufferp);
2409 staticpro (&Qvectorp);
2410 staticpro (&Qchar_or_string_p);
2411 staticpro (&Qmarkerp);
07bd8472 2412 staticpro (&Qbuffer_or_string_p);
7921925c
JB
2413 staticpro (&Qinteger_or_marker_p);
2414#ifdef LISP_FLOAT_TYPE
2415 staticpro (&Qfloatp);
464f8898
RS
2416 staticpro (&Qnumberp);
2417 staticpro (&Qnumber_or_marker_p);
7921925c
JB
2418#endif /* LISP_FLOAT_TYPE */
2419
2420 staticpro (&Qboundp);
2421 staticpro (&Qfboundp);
2422 staticpro (&Qcdr);
ab297811
RS
2423 staticpro (&Qad_advice_info);
2424 staticpro (&Qad_activate);
7921925c 2425
39bcc759
RS
2426 /* Types that type-of returns. */
2427 Qinteger = intern ("integer");
2428 Qsymbol = intern ("symbol");
2429 Qstring = intern ("string");
2430 Qcons = intern ("cons");
2431 Qmarker = intern ("marker");
2432 Qoverlay = intern ("overlay");
2433 Qfloat = intern ("float");
2434 Qwindow_configuration = intern ("window-configuration");
2435 Qprocess = intern ("process");
2436 Qwindow = intern ("window");
2437 /* Qsubr = intern ("subr"); */
2438 Qcompiled_function = intern ("compiled-function");
2439 Qbuffer = intern ("buffer");
2440 Qframe = intern ("frame");
2441 Qvector = intern ("vector");
2442
2443 staticpro (&Qinteger);
2444 staticpro (&Qsymbol);
2445 staticpro (&Qstring);
2446 staticpro (&Qcons);
2447 staticpro (&Qmarker);
2448 staticpro (&Qoverlay);
2449 staticpro (&Qfloat);
2450 staticpro (&Qwindow_configuration);
2451 staticpro (&Qprocess);
2452 staticpro (&Qwindow);
2453 /* staticpro (&Qsubr); */
2454 staticpro (&Qcompiled_function);
2455 staticpro (&Qbuffer);
2456 staticpro (&Qframe);
2457 staticpro (&Qvector);
2458
7921925c
JB
2459 defsubr (&Seq);
2460 defsubr (&Snull);
39bcc759 2461 defsubr (&Stype_of);
7921925c
JB
2462 defsubr (&Slistp);
2463 defsubr (&Snlistp);
2464 defsubr (&Sconsp);
2465 defsubr (&Satom);
2466 defsubr (&Sintegerp);
464f8898 2467 defsubr (&Sinteger_or_marker_p);
7921925c
JB
2468 defsubr (&Snumberp);
2469 defsubr (&Snumber_or_marker_p);
464f8898
RS
2470#ifdef LISP_FLOAT_TYPE
2471 defsubr (&Sfloatp);
7921925c
JB
2472#endif /* LISP_FLOAT_TYPE */
2473 defsubr (&Snatnump);
2474 defsubr (&Ssymbolp);
2475 defsubr (&Sstringp);
2476 defsubr (&Svectorp);
2477 defsubr (&Sarrayp);
2478 defsubr (&Ssequencep);
2479 defsubr (&Sbufferp);
2480 defsubr (&Smarkerp);
7921925c 2481 defsubr (&Ssubrp);
dbc4e1c1 2482 defsubr (&Sbyte_code_function_p);
7921925c
JB
2483 defsubr (&Schar_or_string_p);
2484 defsubr (&Scar);
2485 defsubr (&Scdr);
2486 defsubr (&Scar_safe);
2487 defsubr (&Scdr_safe);
2488 defsubr (&Ssetcar);
2489 defsubr (&Ssetcdr);
2490 defsubr (&Ssymbol_function);
ffd56f97 2491 defsubr (&Sindirect_function);
7921925c
JB
2492 defsubr (&Ssymbol_plist);
2493 defsubr (&Ssymbol_name);
2494 defsubr (&Smakunbound);
2495 defsubr (&Sfmakunbound);
2496 defsubr (&Sboundp);
2497 defsubr (&Sfboundp);
2498 defsubr (&Sfset);
80df38a2 2499 defsubr (&Sdefalias);
d9bcdb34 2500 defsubr (&Sdefine_function);
7921925c
JB
2501 defsubr (&Ssetplist);
2502 defsubr (&Ssymbol_value);
2503 defsubr (&Sset);
2504 defsubr (&Sdefault_boundp);
2505 defsubr (&Sdefault_value);
2506 defsubr (&Sset_default);
2507 defsubr (&Ssetq_default);
2508 defsubr (&Smake_variable_buffer_local);
2509 defsubr (&Smake_local_variable);
2510 defsubr (&Skill_local_variable);
62476adc 2511 defsubr (&Slocal_variable_p);
f4f04cee 2512 defsubr (&Slocal_variable_if_set_p);
7921925c
JB
2513 defsubr (&Saref);
2514 defsubr (&Saset);
f2980264 2515 defsubr (&Snumber_to_string);
25e40a4b 2516 defsubr (&Sstring_to_number);
7921925c
JB
2517 defsubr (&Seqlsign);
2518 defsubr (&Slss);
2519 defsubr (&Sgtr);
2520 defsubr (&Sleq);
2521 defsubr (&Sgeq);
2522 defsubr (&Sneq);
2523 defsubr (&Szerop);
2524 defsubr (&Splus);
2525 defsubr (&Sminus);
2526 defsubr (&Stimes);
2527 defsubr (&Squo);
2528 defsubr (&Srem);
44fa9da5 2529 defsubr (&Smod);
7921925c
JB
2530 defsubr (&Smax);
2531 defsubr (&Smin);
2532 defsubr (&Slogand);
2533 defsubr (&Slogior);
2534 defsubr (&Slogxor);
2535 defsubr (&Slsh);
2536 defsubr (&Sash);
2537 defsubr (&Sadd1);
2538 defsubr (&Ssub1);
2539 defsubr (&Slognot);
8e86942b 2540
c80bd143 2541 XSYMBOL (Qwholenump)->function = XSYMBOL (Qnatnump)->function;
7921925c
JB
2542}
2543
a33ef3ab 2544SIGTYPE
7921925c
JB
2545arith_error (signo)
2546 int signo;
2547{
2548#ifdef USG
2549 /* USG systems forget handlers when they are used;
2550 must reestablish each time */
2551 signal (signo, arith_error);
2552#endif /* USG */
2553#ifdef VMS
2554 /* VMS systems are like USG. */
2555 signal (signo, arith_error);
2556#endif /* VMS */
2557#ifdef BSD4_1
2558 sigrelse (SIGFPE);
2559#else /* not BSD4_1 */
e065a56e 2560 sigsetmask (SIGEMPTYMASK);
7921925c
JB
2561#endif /* not BSD4_1 */
2562
2563 Fsignal (Qarith_error, Qnil);
2564}
2565
2566init_data ()
2567{
2568 /* Don't do this if just dumping out.
2569 We don't want to call `signal' in this case
2570 so that we don't have trouble with dumping
2571 signal-delivering routines in an inconsistent state. */
2572#ifndef CANNOT_DUMP
2573 if (!initialized)
2574 return;
2575#endif /* CANNOT_DUMP */
2576 signal (SIGFPE, arith_error);
7403b5c8 2577
7921925c
JB
2578#ifdef uts
2579 signal (SIGEMT, arith_error);
2580#endif /* uts */
2581}