Simplify, document, and port floating-point.
[bpt/emacs.git] / src / data.c
1 /* Primitive operations on Lisp data types for GNU Emacs Lisp interpreter.
2 Copyright (C) 1985-1986, 1988, 1993-1995, 1997-2012
3 Free Software Foundation, Inc.
4
5 This file is part of GNU Emacs.
6
7 GNU Emacs is free software: you can redistribute it and/or modify
8 it under the terms of the GNU General Public License as published by
9 the Free Software Foundation, either version 3 of the License, or
10 (at your option) any later version.
11
12 GNU Emacs is distributed in the hope that it will be useful,
13 but WITHOUT ANY WARRANTY; without even the implied warranty of
14 MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
15 GNU General Public License for more details.
16
17 You should have received a copy of the GNU General Public License
18 along with GNU Emacs. If not, see <http://www.gnu.org/licenses/>. */
19
20
21 #include <config.h>
22 #include <stdio.h>
23 #include <setjmp.h>
24
25 #include <intprops.h>
26
27 #include "lisp.h"
28 #include "puresize.h"
29 #include "character.h"
30 #include "buffer.h"
31 #include "keyboard.h"
32 #include "frame.h"
33 #include "syssignal.h"
34 #include "termhooks.h" /* For FRAME_KBOARD reference in y-or-n-p. */
35 #include "font.h"
36 #include "keymap.h"
37
38 #include <float.h>
39 #if (FLT_RADIX == 2 && FLT_MANT_DIG == 24 \
40 && FLT_MIN_EXP == -125 && FLT_MAX_EXP == 128)
41 #define IEEE_FLOATING_POINT 1
42 #else
43 #define IEEE_FLOATING_POINT 0
44 #endif
45
46 Lisp_Object Qnil, Qt, Qquote, Qlambda, Qunbound;
47 static Lisp_Object Qsubr;
48 Lisp_Object Qerror_conditions, Qerror_message, Qtop_level;
49 Lisp_Object Qerror, Quser_error, Qquit, Qargs_out_of_range;
50 static Lisp_Object Qwrong_type_argument;
51 Lisp_Object Qvoid_variable, Qvoid_function;
52 static Lisp_Object Qcyclic_function_indirection;
53 static Lisp_Object Qcyclic_variable_indirection;
54 Lisp_Object Qcircular_list;
55 static Lisp_Object Qsetting_constant;
56 Lisp_Object Qinvalid_read_syntax;
57 Lisp_Object Qinvalid_function, Qwrong_number_of_arguments, Qno_catch;
58 Lisp_Object Qend_of_file, Qarith_error, Qmark_inactive;
59 Lisp_Object Qbeginning_of_buffer, Qend_of_buffer, Qbuffer_read_only;
60 Lisp_Object Qtext_read_only;
61
62 Lisp_Object Qintegerp, Qwholenump, Qsymbolp, Qlistp, Qconsp;
63 static Lisp_Object Qnatnump;
64 Lisp_Object Qstringp, Qarrayp, Qsequencep, Qbufferp;
65 Lisp_Object Qchar_or_string_p, Qmarkerp, Qinteger_or_marker_p, Qvectorp;
66 Lisp_Object Qbuffer_or_string_p;
67 static Lisp_Object Qkeywordp, Qboundp;
68 Lisp_Object Qfboundp;
69 Lisp_Object Qchar_table_p, Qvector_or_char_table_p;
70
71 Lisp_Object Qcdr;
72 static Lisp_Object Qad_advice_info, Qad_activate_internal;
73
74 static Lisp_Object Qdomain_error, Qsingularity_error, Qunderflow_error;
75 Lisp_Object Qrange_error, Qoverflow_error;
76
77 Lisp_Object Qfloatp;
78 Lisp_Object Qnumberp, Qnumber_or_marker_p;
79
80 Lisp_Object Qinteger, Qsymbol;
81 static Lisp_Object Qcons, Qfloat, Qmisc, Qstring, Qvector;
82 Lisp_Object Qwindow;
83 static Lisp_Object Qoverlay, Qwindow_configuration;
84 static Lisp_Object Qprocess, Qmarker;
85 static Lisp_Object Qcompiled_function, Qframe;
86 Lisp_Object Qbuffer;
87 static Lisp_Object Qchar_table, Qbool_vector, Qhash_table;
88 static Lisp_Object Qsubrp, Qmany, Qunevalled;
89 Lisp_Object Qfont_spec, Qfont_entity, Qfont_object;
90 static Lisp_Object Qdefun;
91
92 Lisp_Object Qinteractive_form;
93
94 static void swap_in_symval_forwarding (struct Lisp_Symbol *, struct Lisp_Buffer_Local_Value *);
95
96
97 Lisp_Object
98 wrong_type_argument (register Lisp_Object predicate, register Lisp_Object value)
99 {
100 /* If VALUE is not even a valid Lisp object, we'd want to abort here
101 where we can get a backtrace showing where it came from. We used
102 to try and do that by checking the tagbits, but nowadays all
103 tagbits are potentially valid. */
104 /* if ((unsigned int) XTYPE (value) >= Lisp_Type_Limit)
105 * emacs_abort (); */
106
107 xsignal2 (Qwrong_type_argument, predicate, value);
108 }
109
110 void
111 pure_write_error (void)
112 {
113 error ("Attempt to modify read-only object");
114 }
115
116 void
117 args_out_of_range (Lisp_Object a1, Lisp_Object a2)
118 {
119 xsignal2 (Qargs_out_of_range, a1, a2);
120 }
121
122 void
123 args_out_of_range_3 (Lisp_Object a1, Lisp_Object a2, Lisp_Object a3)
124 {
125 xsignal3 (Qargs_out_of_range, a1, a2, a3);
126 }
127
128 \f
129 /* Data type predicates. */
130
131 DEFUN ("eq", Feq, Seq, 2, 2, 0,
132 doc: /* Return t if the two args are the same Lisp object. */)
133 (Lisp_Object obj1, Lisp_Object obj2)
134 {
135 if (EQ (obj1, obj2))
136 return Qt;
137 return Qnil;
138 }
139
140 DEFUN ("null", Fnull, Snull, 1, 1, 0,
141 doc: /* Return t if OBJECT is nil. */)
142 (Lisp_Object object)
143 {
144 if (NILP (object))
145 return Qt;
146 return Qnil;
147 }
148
149 DEFUN ("type-of", Ftype_of, Stype_of, 1, 1, 0,
150 doc: /* Return a symbol representing the type of OBJECT.
151 The symbol returned names the object's basic type;
152 for example, (type-of 1) returns `integer'. */)
153 (Lisp_Object object)
154 {
155 switch (XTYPE (object))
156 {
157 case_Lisp_Int:
158 return Qinteger;
159
160 case Lisp_Symbol:
161 return Qsymbol;
162
163 case Lisp_String:
164 return Qstring;
165
166 case Lisp_Cons:
167 return Qcons;
168
169 case Lisp_Misc:
170 switch (XMISCTYPE (object))
171 {
172 case Lisp_Misc_Marker:
173 return Qmarker;
174 case Lisp_Misc_Overlay:
175 return Qoverlay;
176 case Lisp_Misc_Float:
177 return Qfloat;
178 }
179 emacs_abort ();
180
181 case Lisp_Vectorlike:
182 if (WINDOW_CONFIGURATIONP (object))
183 return Qwindow_configuration;
184 if (PROCESSP (object))
185 return Qprocess;
186 if (WINDOWP (object))
187 return Qwindow;
188 if (SUBRP (object))
189 return Qsubr;
190 if (COMPILEDP (object))
191 return Qcompiled_function;
192 if (BUFFERP (object))
193 return Qbuffer;
194 if (CHAR_TABLE_P (object))
195 return Qchar_table;
196 if (BOOL_VECTOR_P (object))
197 return Qbool_vector;
198 if (FRAMEP (object))
199 return Qframe;
200 if (HASH_TABLE_P (object))
201 return Qhash_table;
202 if (FONT_SPEC_P (object))
203 return Qfont_spec;
204 if (FONT_ENTITY_P (object))
205 return Qfont_entity;
206 if (FONT_OBJECT_P (object))
207 return Qfont_object;
208 return Qvector;
209
210 case Lisp_Float:
211 return Qfloat;
212
213 default:
214 emacs_abort ();
215 }
216 }
217
218 DEFUN ("consp", Fconsp, Sconsp, 1, 1, 0,
219 doc: /* Return t if OBJECT is a cons cell. */)
220 (Lisp_Object object)
221 {
222 if (CONSP (object))
223 return Qt;
224 return Qnil;
225 }
226
227 DEFUN ("atom", Fatom, Satom, 1, 1, 0,
228 doc: /* Return t if OBJECT is not a cons cell. This includes nil. */)
229 (Lisp_Object object)
230 {
231 if (CONSP (object))
232 return Qnil;
233 return Qt;
234 }
235
236 DEFUN ("listp", Flistp, Slistp, 1, 1, 0,
237 doc: /* Return t if OBJECT is a list, that is, a cons cell or nil.
238 Otherwise, return nil. */)
239 (Lisp_Object object)
240 {
241 if (CONSP (object) || NILP (object))
242 return Qt;
243 return Qnil;
244 }
245
246 DEFUN ("nlistp", Fnlistp, Snlistp, 1, 1, 0,
247 doc: /* Return t if OBJECT is not a list. Lists include nil. */)
248 (Lisp_Object object)
249 {
250 if (CONSP (object) || NILP (object))
251 return Qnil;
252 return Qt;
253 }
254 \f
255 DEFUN ("symbolp", Fsymbolp, Ssymbolp, 1, 1, 0,
256 doc: /* Return t if OBJECT is a symbol. */)
257 (Lisp_Object object)
258 {
259 if (SYMBOLP (object))
260 return Qt;
261 return Qnil;
262 }
263
264 /* Define this in C to avoid unnecessarily consing up the symbol
265 name. */
266 DEFUN ("keywordp", Fkeywordp, Skeywordp, 1, 1, 0,
267 doc: /* Return t if OBJECT is a keyword.
268 This means that it is a symbol with a print name beginning with `:'
269 interned in the initial obarray. */)
270 (Lisp_Object object)
271 {
272 if (SYMBOLP (object)
273 && SREF (SYMBOL_NAME (object), 0) == ':'
274 && SYMBOL_INTERNED_IN_INITIAL_OBARRAY_P (object))
275 return Qt;
276 return Qnil;
277 }
278
279 DEFUN ("vectorp", Fvectorp, Svectorp, 1, 1, 0,
280 doc: /* Return t if OBJECT is a vector. */)
281 (Lisp_Object object)
282 {
283 if (VECTORP (object))
284 return Qt;
285 return Qnil;
286 }
287
288 DEFUN ("stringp", Fstringp, Sstringp, 1, 1, 0,
289 doc: /* Return t if OBJECT is a string. */)
290 (Lisp_Object object)
291 {
292 if (STRINGP (object))
293 return Qt;
294 return Qnil;
295 }
296
297 DEFUN ("multibyte-string-p", Fmultibyte_string_p, Smultibyte_string_p,
298 1, 1, 0,
299 doc: /* Return t if OBJECT is a multibyte string. */)
300 (Lisp_Object object)
301 {
302 if (STRINGP (object) && STRING_MULTIBYTE (object))
303 return Qt;
304 return Qnil;
305 }
306
307 DEFUN ("char-table-p", Fchar_table_p, Schar_table_p, 1, 1, 0,
308 doc: /* Return t if OBJECT is a char-table. */)
309 (Lisp_Object object)
310 {
311 if (CHAR_TABLE_P (object))
312 return Qt;
313 return Qnil;
314 }
315
316 DEFUN ("vector-or-char-table-p", Fvector_or_char_table_p,
317 Svector_or_char_table_p, 1, 1, 0,
318 doc: /* Return t if OBJECT is a char-table or vector. */)
319 (Lisp_Object object)
320 {
321 if (VECTORP (object) || CHAR_TABLE_P (object))
322 return Qt;
323 return Qnil;
324 }
325
326 DEFUN ("bool-vector-p", Fbool_vector_p, Sbool_vector_p, 1, 1, 0,
327 doc: /* Return t if OBJECT is a bool-vector. */)
328 (Lisp_Object object)
329 {
330 if (BOOL_VECTOR_P (object))
331 return Qt;
332 return Qnil;
333 }
334
335 DEFUN ("arrayp", Farrayp, Sarrayp, 1, 1, 0,
336 doc: /* Return t if OBJECT is an array (string or vector). */)
337 (Lisp_Object object)
338 {
339 if (ARRAYP (object))
340 return Qt;
341 return Qnil;
342 }
343
344 DEFUN ("sequencep", Fsequencep, Ssequencep, 1, 1, 0,
345 doc: /* Return t if OBJECT is a sequence (list or array). */)
346 (register Lisp_Object object)
347 {
348 if (CONSP (object) || NILP (object) || ARRAYP (object))
349 return Qt;
350 return Qnil;
351 }
352
353 DEFUN ("bufferp", Fbufferp, Sbufferp, 1, 1, 0,
354 doc: /* Return t if OBJECT is an editor buffer. */)
355 (Lisp_Object object)
356 {
357 if (BUFFERP (object))
358 return Qt;
359 return Qnil;
360 }
361
362 DEFUN ("markerp", Fmarkerp, Smarkerp, 1, 1, 0,
363 doc: /* Return t if OBJECT is a marker (editor pointer). */)
364 (Lisp_Object object)
365 {
366 if (MARKERP (object))
367 return Qt;
368 return Qnil;
369 }
370
371 DEFUN ("subrp", Fsubrp, Ssubrp, 1, 1, 0,
372 doc: /* Return t if OBJECT is a built-in function. */)
373 (Lisp_Object object)
374 {
375 if (SUBRP (object))
376 return Qt;
377 return Qnil;
378 }
379
380 DEFUN ("byte-code-function-p", Fbyte_code_function_p, Sbyte_code_function_p,
381 1, 1, 0,
382 doc: /* Return t if OBJECT is a byte-compiled function object. */)
383 (Lisp_Object object)
384 {
385 if (COMPILEDP (object))
386 return Qt;
387 return Qnil;
388 }
389
390 DEFUN ("char-or-string-p", Fchar_or_string_p, Schar_or_string_p, 1, 1, 0,
391 doc: /* Return t if OBJECT is a character or a string. */)
392 (register Lisp_Object object)
393 {
394 if (CHARACTERP (object) || STRINGP (object))
395 return Qt;
396 return Qnil;
397 }
398 \f
399 DEFUN ("integerp", Fintegerp, Sintegerp, 1, 1, 0,
400 doc: /* Return t if OBJECT is an integer. */)
401 (Lisp_Object object)
402 {
403 if (INTEGERP (object))
404 return Qt;
405 return Qnil;
406 }
407
408 DEFUN ("integer-or-marker-p", Finteger_or_marker_p, Sinteger_or_marker_p, 1, 1, 0,
409 doc: /* Return t if OBJECT is an integer or a marker (editor pointer). */)
410 (register Lisp_Object object)
411 {
412 if (MARKERP (object) || INTEGERP (object))
413 return Qt;
414 return Qnil;
415 }
416
417 DEFUN ("natnump", Fnatnump, Snatnump, 1, 1, 0,
418 doc: /* Return t if OBJECT is a nonnegative integer. */)
419 (Lisp_Object object)
420 {
421 if (NATNUMP (object))
422 return Qt;
423 return Qnil;
424 }
425
426 DEFUN ("numberp", Fnumberp, Snumberp, 1, 1, 0,
427 doc: /* Return t if OBJECT is a number (floating point or integer). */)
428 (Lisp_Object object)
429 {
430 if (NUMBERP (object))
431 return Qt;
432 else
433 return Qnil;
434 }
435
436 DEFUN ("number-or-marker-p", Fnumber_or_marker_p,
437 Snumber_or_marker_p, 1, 1, 0,
438 doc: /* Return t if OBJECT is a number or a marker. */)
439 (Lisp_Object object)
440 {
441 if (NUMBERP (object) || MARKERP (object))
442 return Qt;
443 return Qnil;
444 }
445
446 DEFUN ("floatp", Ffloatp, Sfloatp, 1, 1, 0,
447 doc: /* Return t if OBJECT is a floating point number. */)
448 (Lisp_Object object)
449 {
450 if (FLOATP (object))
451 return Qt;
452 return Qnil;
453 }
454
455 \f
456 /* Extract and set components of lists */
457
458 DEFUN ("car", Fcar, Scar, 1, 1, 0,
459 doc: /* Return the car of LIST. If arg is nil, return nil.
460 Error if arg is not nil and not a cons cell. See also `car-safe'.
461
462 See Info node `(elisp)Cons Cells' for a discussion of related basic
463 Lisp concepts such as car, cdr, cons cell and list. */)
464 (register Lisp_Object list)
465 {
466 return CAR (list);
467 }
468
469 DEFUN ("car-safe", Fcar_safe, Scar_safe, 1, 1, 0,
470 doc: /* Return the car of OBJECT if it is a cons cell, or else nil. */)
471 (Lisp_Object object)
472 {
473 return CAR_SAFE (object);
474 }
475
476 DEFUN ("cdr", Fcdr, Scdr, 1, 1, 0,
477 doc: /* Return the cdr of LIST. If arg is nil, return nil.
478 Error if arg is not nil and not a cons cell. See also `cdr-safe'.
479
480 See Info node `(elisp)Cons Cells' for a discussion of related basic
481 Lisp concepts such as cdr, car, cons cell and list. */)
482 (register Lisp_Object list)
483 {
484 return CDR (list);
485 }
486
487 DEFUN ("cdr-safe", Fcdr_safe, Scdr_safe, 1, 1, 0,
488 doc: /* Return the cdr of OBJECT if it is a cons cell, or else nil. */)
489 (Lisp_Object object)
490 {
491 return CDR_SAFE (object);
492 }
493
494 DEFUN ("setcar", Fsetcar, Ssetcar, 2, 2, 0,
495 doc: /* Set the car of CELL to be NEWCAR. Returns NEWCAR. */)
496 (register Lisp_Object cell, Lisp_Object newcar)
497 {
498 CHECK_CONS (cell);
499 CHECK_IMPURE (cell);
500 XSETCAR (cell, newcar);
501 return newcar;
502 }
503
504 DEFUN ("setcdr", Fsetcdr, Ssetcdr, 2, 2, 0,
505 doc: /* Set the cdr of CELL to be NEWCDR. Returns NEWCDR. */)
506 (register Lisp_Object cell, Lisp_Object newcdr)
507 {
508 CHECK_CONS (cell);
509 CHECK_IMPURE (cell);
510 XSETCDR (cell, newcdr);
511 return newcdr;
512 }
513 \f
514 /* Extract and set components of symbols. */
515
516 DEFUN ("boundp", Fboundp, Sboundp, 1, 1, 0,
517 doc: /* Return t if SYMBOL's value is not void. */)
518 (register Lisp_Object symbol)
519 {
520 Lisp_Object valcontents;
521 struct Lisp_Symbol *sym;
522 CHECK_SYMBOL (symbol);
523 sym = XSYMBOL (symbol);
524
525 start:
526 switch (sym->redirect)
527 {
528 case SYMBOL_PLAINVAL: valcontents = SYMBOL_VAL (sym); break;
529 case SYMBOL_VARALIAS: sym = indirect_variable (sym); goto start;
530 case SYMBOL_LOCALIZED:
531 {
532 struct Lisp_Buffer_Local_Value *blv = SYMBOL_BLV (sym);
533 if (blv->fwd)
534 /* In set_internal, we un-forward vars when their value is
535 set to Qunbound. */
536 return Qt;
537 else
538 {
539 swap_in_symval_forwarding (sym, blv);
540 valcontents = blv_value (blv);
541 }
542 break;
543 }
544 case SYMBOL_FORWARDED:
545 /* In set_internal, we un-forward vars when their value is
546 set to Qunbound. */
547 return Qt;
548 default: emacs_abort ();
549 }
550
551 return (EQ (valcontents, Qunbound) ? Qnil : Qt);
552 }
553
554 DEFUN ("fboundp", Ffboundp, Sfboundp, 1, 1, 0,
555 doc: /* Return t if SYMBOL's function definition is not void. */)
556 (register Lisp_Object symbol)
557 {
558 CHECK_SYMBOL (symbol);
559 return EQ (XSYMBOL (symbol)->function, Qunbound) ? Qnil : Qt;
560 }
561
562 DEFUN ("makunbound", Fmakunbound, Smakunbound, 1, 1, 0,
563 doc: /* Make SYMBOL's value be void.
564 Return SYMBOL. */)
565 (register Lisp_Object symbol)
566 {
567 CHECK_SYMBOL (symbol);
568 if (SYMBOL_CONSTANT_P (symbol))
569 xsignal1 (Qsetting_constant, symbol);
570 Fset (symbol, Qunbound);
571 return symbol;
572 }
573
574 DEFUN ("fmakunbound", Ffmakunbound, Sfmakunbound, 1, 1, 0,
575 doc: /* Make SYMBOL's function definition be void.
576 Return SYMBOL. */)
577 (register Lisp_Object symbol)
578 {
579 CHECK_SYMBOL (symbol);
580 if (NILP (symbol) || EQ (symbol, Qt))
581 xsignal1 (Qsetting_constant, symbol);
582 set_symbol_function (symbol, Qunbound);
583 return symbol;
584 }
585
586 DEFUN ("symbol-function", Fsymbol_function, Ssymbol_function, 1, 1, 0,
587 doc: /* Return SYMBOL's function definition. Error if that is void. */)
588 (register Lisp_Object symbol)
589 {
590 CHECK_SYMBOL (symbol);
591 if (!EQ (XSYMBOL (symbol)->function, Qunbound))
592 return XSYMBOL (symbol)->function;
593 xsignal1 (Qvoid_function, symbol);
594 }
595
596 DEFUN ("symbol-plist", Fsymbol_plist, Ssymbol_plist, 1, 1, 0,
597 doc: /* Return SYMBOL's property list. */)
598 (register Lisp_Object symbol)
599 {
600 CHECK_SYMBOL (symbol);
601 return XSYMBOL (symbol)->plist;
602 }
603
604 DEFUN ("symbol-name", Fsymbol_name, Ssymbol_name, 1, 1, 0,
605 doc: /* Return SYMBOL's name, a string. */)
606 (register Lisp_Object symbol)
607 {
608 register Lisp_Object name;
609
610 CHECK_SYMBOL (symbol);
611 name = SYMBOL_NAME (symbol);
612 return name;
613 }
614
615 DEFUN ("fset", Ffset, Sfset, 2, 2, 0,
616 doc: /* Set SYMBOL's function definition to DEFINITION, and return DEFINITION. */)
617 (register Lisp_Object symbol, Lisp_Object definition)
618 {
619 register Lisp_Object function;
620
621 CHECK_SYMBOL (symbol);
622 if (NILP (symbol) || EQ (symbol, Qt))
623 xsignal1 (Qsetting_constant, symbol);
624
625 function = XSYMBOL (symbol)->function;
626
627 if (!NILP (Vautoload_queue) && !EQ (function, Qunbound))
628 Vautoload_queue = Fcons (Fcons (symbol, function), Vautoload_queue);
629
630 if (CONSP (function) && EQ (XCAR (function), Qautoload))
631 Fput (symbol, Qautoload, XCDR (function));
632
633 set_symbol_function (symbol, definition);
634 /* Handle automatic advice activation. */
635 if (CONSP (XSYMBOL (symbol)->plist)
636 && !NILP (Fget (symbol, Qad_advice_info)))
637 {
638 call2 (Qad_activate_internal, symbol, Qnil);
639 definition = XSYMBOL (symbol)->function;
640 }
641 return definition;
642 }
643
644 DEFUN ("defalias", Fdefalias, Sdefalias, 2, 3, 0,
645 doc: /* Set SYMBOL's function definition to DEFINITION.
646 Associates the function with the current load file, if any.
647 The optional third argument DOCSTRING specifies the documentation string
648 for SYMBOL; if it is omitted or nil, SYMBOL uses the documentation string
649 determined by DEFINITION.
650 The return value is undefined. */)
651 (register Lisp_Object symbol, Lisp_Object definition, Lisp_Object docstring)
652 {
653 CHECK_SYMBOL (symbol);
654 if (CONSP (XSYMBOL (symbol)->function)
655 && EQ (XCAR (XSYMBOL (symbol)->function), Qautoload))
656 LOADHIST_ATTACH (Fcons (Qt, symbol));
657 if (!NILP (Vpurify_flag)
658 /* If `definition' is a keymap, immutable (and copying) is wrong. */
659 && !KEYMAPP (definition))
660 definition = Fpurecopy (definition);
661 definition = Ffset (symbol, definition);
662 LOADHIST_ATTACH (Fcons (Qdefun, symbol));
663 if (!NILP (docstring))
664 Fput (symbol, Qfunction_documentation, docstring);
665 /* We used to return `definition', but now that `defun' and `defmacro' expand
666 to a call to `defalias', we return `symbol' for backward compatibility
667 (bug#11686). */
668 return symbol;
669 }
670
671 DEFUN ("setplist", Fsetplist, Ssetplist, 2, 2, 0,
672 doc: /* Set SYMBOL's property list to NEWPLIST, and return NEWPLIST. */)
673 (register Lisp_Object symbol, Lisp_Object newplist)
674 {
675 CHECK_SYMBOL (symbol);
676 set_symbol_plist (symbol, newplist);
677 return newplist;
678 }
679
680 DEFUN ("subr-arity", Fsubr_arity, Ssubr_arity, 1, 1, 0,
681 doc: /* Return minimum and maximum number of args allowed for SUBR.
682 SUBR must be a built-in function.
683 The returned value is a pair (MIN . MAX). MIN is the minimum number
684 of args. MAX is the maximum number or the symbol `many', for a
685 function with `&rest' args, or `unevalled' for a special form. */)
686 (Lisp_Object subr)
687 {
688 short minargs, maxargs;
689 CHECK_SUBR (subr);
690 minargs = XSUBR (subr)->min_args;
691 maxargs = XSUBR (subr)->max_args;
692 if (maxargs == MANY)
693 return Fcons (make_number (minargs), Qmany);
694 else if (maxargs == UNEVALLED)
695 return Fcons (make_number (minargs), Qunevalled);
696 else
697 return Fcons (make_number (minargs), make_number (maxargs));
698 }
699
700 DEFUN ("subr-name", Fsubr_name, Ssubr_name, 1, 1, 0,
701 doc: /* Return name of subroutine SUBR.
702 SUBR must be a built-in function. */)
703 (Lisp_Object subr)
704 {
705 const char *name;
706 CHECK_SUBR (subr);
707 name = XSUBR (subr)->symbol_name;
708 return build_string (name);
709 }
710
711 DEFUN ("interactive-form", Finteractive_form, Sinteractive_form, 1, 1, 0,
712 doc: /* Return the interactive form of CMD or nil if none.
713 If CMD is not a command, the return value is nil.
714 Value, if non-nil, is a list \(interactive SPEC). */)
715 (Lisp_Object cmd)
716 {
717 Lisp_Object fun = indirect_function (cmd); /* Check cycles. */
718
719 if (NILP (fun) || EQ (fun, Qunbound))
720 return Qnil;
721
722 /* Use an `interactive-form' property if present, analogous to the
723 function-documentation property. */
724 fun = cmd;
725 while (SYMBOLP (fun))
726 {
727 Lisp_Object tmp = Fget (fun, Qinteractive_form);
728 if (!NILP (tmp))
729 return tmp;
730 else
731 fun = Fsymbol_function (fun);
732 }
733
734 if (SUBRP (fun))
735 {
736 const char *spec = XSUBR (fun)->intspec;
737 if (spec)
738 return list2 (Qinteractive,
739 (*spec != '(') ? build_string (spec) :
740 Fcar (Fread_from_string (build_string (spec), Qnil, Qnil)));
741 }
742 else if (COMPILEDP (fun))
743 {
744 if ((ASIZE (fun) & PSEUDOVECTOR_SIZE_MASK) > COMPILED_INTERACTIVE)
745 return list2 (Qinteractive, AREF (fun, COMPILED_INTERACTIVE));
746 }
747 else if (CONSP (fun))
748 {
749 Lisp_Object funcar = XCAR (fun);
750 if (EQ (funcar, Qclosure))
751 return Fassq (Qinteractive, Fcdr (Fcdr (XCDR (fun))));
752 else if (EQ (funcar, Qlambda))
753 return Fassq (Qinteractive, Fcdr (XCDR (fun)));
754 else if (EQ (funcar, Qautoload))
755 {
756 struct gcpro gcpro1;
757 GCPRO1 (cmd);
758 Fautoload_do_load (fun, cmd, Qnil);
759 UNGCPRO;
760 return Finteractive_form (cmd);
761 }
762 }
763 return Qnil;
764 }
765
766 \f
767 /***********************************************************************
768 Getting and Setting Values of Symbols
769 ***********************************************************************/
770
771 /* Return the symbol holding SYMBOL's value. Signal
772 `cyclic-variable-indirection' if SYMBOL's chain of variable
773 indirections contains a loop. */
774
775 struct Lisp_Symbol *
776 indirect_variable (struct Lisp_Symbol *symbol)
777 {
778 struct Lisp_Symbol *tortoise, *hare;
779
780 hare = tortoise = symbol;
781
782 while (hare->redirect == SYMBOL_VARALIAS)
783 {
784 hare = SYMBOL_ALIAS (hare);
785 if (hare->redirect != SYMBOL_VARALIAS)
786 break;
787
788 hare = SYMBOL_ALIAS (hare);
789 tortoise = SYMBOL_ALIAS (tortoise);
790
791 if (hare == tortoise)
792 {
793 Lisp_Object tem;
794 XSETSYMBOL (tem, symbol);
795 xsignal1 (Qcyclic_variable_indirection, tem);
796 }
797 }
798
799 return hare;
800 }
801
802
803 DEFUN ("indirect-variable", Findirect_variable, Sindirect_variable, 1, 1, 0,
804 doc: /* Return the variable at the end of OBJECT's variable chain.
805 If OBJECT is a symbol, follow its variable indirections (if any), and
806 return the variable at the end of the chain of aliases. See Info node
807 `(elisp)Variable Aliases'.
808
809 If OBJECT is not a symbol, just return it. If there is a loop in the
810 chain of aliases, signal a `cyclic-variable-indirection' error. */)
811 (Lisp_Object object)
812 {
813 if (SYMBOLP (object))
814 {
815 struct Lisp_Symbol *sym = indirect_variable (XSYMBOL (object));
816 XSETSYMBOL (object, sym);
817 }
818 return object;
819 }
820
821
822 /* Given the raw contents of a symbol value cell,
823 return the Lisp value of the symbol.
824 This does not handle buffer-local variables; use
825 swap_in_symval_forwarding for that. */
826
827 Lisp_Object
828 do_symval_forwarding (register union Lisp_Fwd *valcontents)
829 {
830 register Lisp_Object val;
831 switch (XFWDTYPE (valcontents))
832 {
833 case Lisp_Fwd_Int:
834 XSETINT (val, *XINTFWD (valcontents)->intvar);
835 return val;
836
837 case Lisp_Fwd_Bool:
838 return (*XBOOLFWD (valcontents)->boolvar ? Qt : Qnil);
839
840 case Lisp_Fwd_Obj:
841 return *XOBJFWD (valcontents)->objvar;
842
843 case Lisp_Fwd_Buffer_Obj:
844 return per_buffer_value (current_buffer,
845 XBUFFER_OBJFWD (valcontents)->offset);
846
847 case Lisp_Fwd_Kboard_Obj:
848 /* We used to simply use current_kboard here, but from Lisp
849 code, its value is often unexpected. It seems nicer to
850 allow constructions like this to work as intuitively expected:
851
852 (with-selected-frame frame
853 (define-key local-function-map "\eOP" [f1]))
854
855 On the other hand, this affects the semantics of
856 last-command and real-last-command, and people may rely on
857 that. I took a quick look at the Lisp codebase, and I
858 don't think anything will break. --lorentey */
859 return *(Lisp_Object *)(XKBOARD_OBJFWD (valcontents)->offset
860 + (char *)FRAME_KBOARD (SELECTED_FRAME ()));
861 default: emacs_abort ();
862 }
863 }
864
865 /* Store NEWVAL into SYMBOL, where VALCONTENTS is found in the value cell
866 of SYMBOL. If SYMBOL is buffer-local, VALCONTENTS should be the
867 buffer-independent contents of the value cell: forwarded just one
868 step past the buffer-localness.
869
870 BUF non-zero means set the value in buffer BUF instead of the
871 current buffer. This only plays a role for per-buffer variables. */
872
873 static void
874 store_symval_forwarding (union Lisp_Fwd *valcontents, register Lisp_Object newval, struct buffer *buf)
875 {
876 switch (XFWDTYPE (valcontents))
877 {
878 case Lisp_Fwd_Int:
879 CHECK_NUMBER (newval);
880 *XINTFWD (valcontents)->intvar = XINT (newval);
881 break;
882
883 case Lisp_Fwd_Bool:
884 *XBOOLFWD (valcontents)->boolvar = !NILP (newval);
885 break;
886
887 case Lisp_Fwd_Obj:
888 *XOBJFWD (valcontents)->objvar = newval;
889
890 /* If this variable is a default for something stored
891 in the buffer itself, such as default-fill-column,
892 find the buffers that don't have local values for it
893 and update them. */
894 if (XOBJFWD (valcontents)->objvar > (Lisp_Object *) &buffer_defaults
895 && XOBJFWD (valcontents)->objvar < (Lisp_Object *) (&buffer_defaults + 1))
896 {
897 int offset = ((char *) XOBJFWD (valcontents)->objvar
898 - (char *) &buffer_defaults);
899 int idx = PER_BUFFER_IDX (offset);
900
901 Lisp_Object tail;
902
903 if (idx <= 0)
904 break;
905
906 for (tail = Vbuffer_alist; CONSP (tail); tail = XCDR (tail))
907 {
908 Lisp_Object lbuf;
909 struct buffer *b;
910
911 lbuf = Fcdr (XCAR (tail));
912 if (!BUFFERP (lbuf)) continue;
913 b = XBUFFER (lbuf);
914
915 if (! PER_BUFFER_VALUE_P (b, idx))
916 set_per_buffer_value (b, offset, newval);
917 }
918 }
919 break;
920
921 case Lisp_Fwd_Buffer_Obj:
922 {
923 int offset = XBUFFER_OBJFWD (valcontents)->offset;
924 Lisp_Object type = XBUFFER_OBJFWD (valcontents)->slottype;
925
926 if (!(NILP (type) || NILP (newval)
927 || (XINT (type) == Lisp_Int0
928 ? INTEGERP (newval)
929 : XTYPE (newval) == XINT (type))))
930 buffer_slot_type_mismatch (newval, XINT (type));
931
932 if (buf == NULL)
933 buf = current_buffer;
934 set_per_buffer_value (buf, offset, newval);
935 }
936 break;
937
938 case Lisp_Fwd_Kboard_Obj:
939 {
940 char *base = (char *) FRAME_KBOARD (SELECTED_FRAME ());
941 char *p = base + XKBOARD_OBJFWD (valcontents)->offset;
942 *(Lisp_Object *) p = newval;
943 }
944 break;
945
946 default:
947 emacs_abort (); /* goto def; */
948 }
949 }
950
951 /* Set up SYMBOL to refer to its global binding.
952 This makes it safe to alter the status of other bindings. */
953
954 void
955 swap_in_global_binding (struct Lisp_Symbol *symbol)
956 {
957 struct Lisp_Buffer_Local_Value *blv = SYMBOL_BLV (symbol);
958
959 /* Unload the previously loaded binding. */
960 if (blv->fwd)
961 set_blv_value (blv, do_symval_forwarding (blv->fwd));
962
963 /* Select the global binding in the symbol. */
964 set_blv_valcell (blv, blv->defcell);
965 if (blv->fwd)
966 store_symval_forwarding (blv->fwd, XCDR (blv->defcell), NULL);
967
968 /* Indicate that the global binding is set up now. */
969 set_blv_where (blv, Qnil);
970 set_blv_found (blv, 0);
971 }
972
973 /* Set up the buffer-local symbol SYMBOL for validity in the current buffer.
974 VALCONTENTS is the contents of its value cell,
975 which points to a struct Lisp_Buffer_Local_Value.
976
977 Return the value forwarded one step past the buffer-local stage.
978 This could be another forwarding pointer. */
979
980 static void
981 swap_in_symval_forwarding (struct Lisp_Symbol *symbol, struct Lisp_Buffer_Local_Value *blv)
982 {
983 register Lisp_Object tem1;
984
985 eassert (blv == SYMBOL_BLV (symbol));
986
987 tem1 = blv->where;
988
989 if (NILP (tem1)
990 || (blv->frame_local
991 ? !EQ (selected_frame, tem1)
992 : current_buffer != XBUFFER (tem1)))
993 {
994
995 /* Unload the previously loaded binding. */
996 tem1 = blv->valcell;
997 if (blv->fwd)
998 set_blv_value (blv, do_symval_forwarding (blv->fwd));
999 /* Choose the new binding. */
1000 {
1001 Lisp_Object var;
1002 XSETSYMBOL (var, symbol);
1003 if (blv->frame_local)
1004 {
1005 tem1 = assq_no_quit (var, XFRAME (selected_frame)->param_alist);
1006 set_blv_where (blv, selected_frame);
1007 }
1008 else
1009 {
1010 tem1 = assq_no_quit (var, BVAR (current_buffer, local_var_alist));
1011 XSETBUFFER (blv->where, current_buffer);
1012 }
1013 }
1014 if (!(blv->found = !NILP (tem1)))
1015 tem1 = blv->defcell;
1016
1017 /* Load the new binding. */
1018 set_blv_valcell (blv, tem1);
1019 if (blv->fwd)
1020 store_symval_forwarding (blv->fwd, blv_value (blv), NULL);
1021 }
1022 }
1023 \f
1024 /* Find the value of a symbol, returning Qunbound if it's not bound.
1025 This is helpful for code which just wants to get a variable's value
1026 if it has one, without signaling an error.
1027 Note that it must not be possible to quit
1028 within this function. Great care is required for this. */
1029
1030 Lisp_Object
1031 find_symbol_value (Lisp_Object symbol)
1032 {
1033 struct Lisp_Symbol *sym;
1034
1035 CHECK_SYMBOL (symbol);
1036 sym = XSYMBOL (symbol);
1037
1038 start:
1039 switch (sym->redirect)
1040 {
1041 case SYMBOL_VARALIAS: sym = indirect_variable (sym); goto start;
1042 case SYMBOL_PLAINVAL: return SYMBOL_VAL (sym);
1043 case SYMBOL_LOCALIZED:
1044 {
1045 struct Lisp_Buffer_Local_Value *blv = SYMBOL_BLV (sym);
1046 swap_in_symval_forwarding (sym, blv);
1047 return blv->fwd ? do_symval_forwarding (blv->fwd) : blv_value (blv);
1048 }
1049 /* FALLTHROUGH */
1050 case SYMBOL_FORWARDED:
1051 return do_symval_forwarding (SYMBOL_FWD (sym));
1052 default: emacs_abort ();
1053 }
1054 }
1055
1056 DEFUN ("symbol-value", Fsymbol_value, Ssymbol_value, 1, 1, 0,
1057 doc: /* Return SYMBOL's value. Error if that is void. */)
1058 (Lisp_Object symbol)
1059 {
1060 Lisp_Object val;
1061
1062 val = find_symbol_value (symbol);
1063 if (!EQ (val, Qunbound))
1064 return val;
1065
1066 xsignal1 (Qvoid_variable, symbol);
1067 }
1068
1069 DEFUN ("set", Fset, Sset, 2, 2, 0,
1070 doc: /* Set SYMBOL's value to NEWVAL, and return NEWVAL. */)
1071 (register Lisp_Object symbol, Lisp_Object newval)
1072 {
1073 set_internal (symbol, newval, Qnil, 0);
1074 return newval;
1075 }
1076
1077 /* Return true if SYMBOL currently has a let-binding
1078 which was made in the buffer that is now current. */
1079
1080 static bool
1081 let_shadows_buffer_binding_p (struct Lisp_Symbol *symbol)
1082 {
1083 struct specbinding *p;
1084
1085 for (p = specpdl_ptr; p > specpdl; )
1086 if ((--p)->func == NULL
1087 && CONSP (p->symbol))
1088 {
1089 struct Lisp_Symbol *let_bound_symbol = XSYMBOL (XCAR (p->symbol));
1090 eassert (let_bound_symbol->redirect != SYMBOL_VARALIAS);
1091 if (symbol == let_bound_symbol
1092 && XBUFFER (XCDR (XCDR (p->symbol))) == current_buffer)
1093 return 1;
1094 }
1095
1096 return 0;
1097 }
1098
1099 static bool
1100 let_shadows_global_binding_p (Lisp_Object symbol)
1101 {
1102 struct specbinding *p;
1103
1104 for (p = specpdl_ptr; p > specpdl; )
1105 if ((--p)->func == NULL && EQ (p->symbol, symbol))
1106 return 1;
1107
1108 return 0;
1109 }
1110
1111 /* Store the value NEWVAL into SYMBOL.
1112 If buffer/frame-locality is an issue, WHERE specifies which context to use.
1113 (nil stands for the current buffer/frame).
1114
1115 If BINDFLAG is false, then if this symbol is supposed to become
1116 local in every buffer where it is set, then we make it local.
1117 If BINDFLAG is true, we don't do that. */
1118
1119 void
1120 set_internal (Lisp_Object symbol, Lisp_Object newval, Lisp_Object where,
1121 bool bindflag)
1122 {
1123 bool voide = EQ (newval, Qunbound);
1124 struct Lisp_Symbol *sym;
1125 Lisp_Object tem1;
1126
1127 /* If restoring in a dead buffer, do nothing. */
1128 /* if (BUFFERP (where) && NILP (XBUFFER (where)->name))
1129 return; */
1130
1131 CHECK_SYMBOL (symbol);
1132 if (SYMBOL_CONSTANT_P (symbol))
1133 {
1134 if (NILP (Fkeywordp (symbol))
1135 || !EQ (newval, Fsymbol_value (symbol)))
1136 xsignal1 (Qsetting_constant, symbol);
1137 else
1138 /* Allow setting keywords to their own value. */
1139 return;
1140 }
1141
1142 sym = XSYMBOL (symbol);
1143
1144 start:
1145 switch (sym->redirect)
1146 {
1147 case SYMBOL_VARALIAS: sym = indirect_variable (sym); goto start;
1148 case SYMBOL_PLAINVAL: SET_SYMBOL_VAL (sym , newval); return;
1149 case SYMBOL_LOCALIZED:
1150 {
1151 struct Lisp_Buffer_Local_Value *blv = SYMBOL_BLV (sym);
1152 if (NILP (where))
1153 {
1154 if (blv->frame_local)
1155 where = selected_frame;
1156 else
1157 XSETBUFFER (where, current_buffer);
1158 }
1159 /* If the current buffer is not the buffer whose binding is
1160 loaded, or if there may be frame-local bindings and the frame
1161 isn't the right one, or if it's a Lisp_Buffer_Local_Value and
1162 the default binding is loaded, the loaded binding may be the
1163 wrong one. */
1164 if (!EQ (blv->where, where)
1165 /* Also unload a global binding (if the var is local_if_set). */
1166 || (EQ (blv->valcell, blv->defcell)))
1167 {
1168 /* The currently loaded binding is not necessarily valid.
1169 We need to unload it, and choose a new binding. */
1170
1171 /* Write out `realvalue' to the old loaded binding. */
1172 if (blv->fwd)
1173 set_blv_value (blv, do_symval_forwarding (blv->fwd));
1174
1175 /* Find the new binding. */
1176 XSETSYMBOL (symbol, sym); /* May have changed via aliasing. */
1177 tem1 = Fassq (symbol,
1178 (blv->frame_local
1179 ? XFRAME (where)->param_alist
1180 : BVAR (XBUFFER (where), local_var_alist)));
1181 set_blv_where (blv, where);
1182 blv->found = 1;
1183
1184 if (NILP (tem1))
1185 {
1186 /* This buffer still sees the default value. */
1187
1188 /* If the variable is a Lisp_Some_Buffer_Local_Value,
1189 or if this is `let' rather than `set',
1190 make CURRENT-ALIST-ELEMENT point to itself,
1191 indicating that we're seeing the default value.
1192 Likewise if the variable has been let-bound
1193 in the current buffer. */
1194 if (bindflag || !blv->local_if_set
1195 || let_shadows_buffer_binding_p (sym))
1196 {
1197 blv->found = 0;
1198 tem1 = blv->defcell;
1199 }
1200 /* If it's a local_if_set, being set not bound,
1201 and we're not within a let that was made for this buffer,
1202 create a new buffer-local binding for the variable.
1203 That means, give this buffer a new assoc for a local value
1204 and load that binding. */
1205 else
1206 {
1207 /* local_if_set is only supported for buffer-local
1208 bindings, not for frame-local bindings. */
1209 eassert (!blv->frame_local);
1210 tem1 = Fcons (symbol, XCDR (blv->defcell));
1211 bset_local_var_alist
1212 (XBUFFER (where),
1213 Fcons (tem1, BVAR (XBUFFER (where), local_var_alist)));
1214 }
1215 }
1216
1217 /* Record which binding is now loaded. */
1218 set_blv_valcell (blv, tem1);
1219 }
1220
1221 /* Store the new value in the cons cell. */
1222 set_blv_value (blv, newval);
1223
1224 if (blv->fwd)
1225 {
1226 if (voide)
1227 /* If storing void (making the symbol void), forward only through
1228 buffer-local indicator, not through Lisp_Objfwd, etc. */
1229 blv->fwd = NULL;
1230 else
1231 store_symval_forwarding (blv->fwd, newval,
1232 BUFFERP (where)
1233 ? XBUFFER (where) : current_buffer);
1234 }
1235 break;
1236 }
1237 case SYMBOL_FORWARDED:
1238 {
1239 struct buffer *buf
1240 = BUFFERP (where) ? XBUFFER (where) : current_buffer;
1241 union Lisp_Fwd *innercontents = SYMBOL_FWD (sym);
1242 if (BUFFER_OBJFWDP (innercontents))
1243 {
1244 int offset = XBUFFER_OBJFWD (innercontents)->offset;
1245 int idx = PER_BUFFER_IDX (offset);
1246 if (idx > 0
1247 && !bindflag
1248 && !let_shadows_buffer_binding_p (sym))
1249 SET_PER_BUFFER_VALUE_P (buf, idx, 1);
1250 }
1251
1252 if (voide)
1253 { /* If storing void (making the symbol void), forward only through
1254 buffer-local indicator, not through Lisp_Objfwd, etc. */
1255 sym->redirect = SYMBOL_PLAINVAL;
1256 SET_SYMBOL_VAL (sym, newval);
1257 }
1258 else
1259 store_symval_forwarding (/* sym, */ innercontents, newval, buf);
1260 break;
1261 }
1262 default: emacs_abort ();
1263 }
1264 return;
1265 }
1266 \f
1267 /* Access or set a buffer-local symbol's default value. */
1268
1269 /* Return the default value of SYMBOL, but don't check for voidness.
1270 Return Qunbound if it is void. */
1271
1272 static Lisp_Object
1273 default_value (Lisp_Object symbol)
1274 {
1275 struct Lisp_Symbol *sym;
1276
1277 CHECK_SYMBOL (symbol);
1278 sym = XSYMBOL (symbol);
1279
1280 start:
1281 switch (sym->redirect)
1282 {
1283 case SYMBOL_VARALIAS: sym = indirect_variable (sym); goto start;
1284 case SYMBOL_PLAINVAL: return SYMBOL_VAL (sym);
1285 case SYMBOL_LOCALIZED:
1286 {
1287 /* If var is set up for a buffer that lacks a local value for it,
1288 the current value is nominally the default value.
1289 But the `realvalue' slot may be more up to date, since
1290 ordinary setq stores just that slot. So use that. */
1291 struct Lisp_Buffer_Local_Value *blv = SYMBOL_BLV (sym);
1292 if (blv->fwd && EQ (blv->valcell, blv->defcell))
1293 return do_symval_forwarding (blv->fwd);
1294 else
1295 return XCDR (blv->defcell);
1296 }
1297 case SYMBOL_FORWARDED:
1298 {
1299 union Lisp_Fwd *valcontents = SYMBOL_FWD (sym);
1300
1301 /* For a built-in buffer-local variable, get the default value
1302 rather than letting do_symval_forwarding get the current value. */
1303 if (BUFFER_OBJFWDP (valcontents))
1304 {
1305 int offset = XBUFFER_OBJFWD (valcontents)->offset;
1306 if (PER_BUFFER_IDX (offset) != 0)
1307 return per_buffer_default (offset);
1308 }
1309
1310 /* For other variables, get the current value. */
1311 return do_symval_forwarding (valcontents);
1312 }
1313 default: emacs_abort ();
1314 }
1315 }
1316
1317 DEFUN ("default-boundp", Fdefault_boundp, Sdefault_boundp, 1, 1, 0,
1318 doc: /* Return t if SYMBOL has a non-void default value.
1319 This is the value that is seen in buffers that do not have their own values
1320 for this variable. */)
1321 (Lisp_Object symbol)
1322 {
1323 register Lisp_Object value;
1324
1325 value = default_value (symbol);
1326 return (EQ (value, Qunbound) ? Qnil : Qt);
1327 }
1328
1329 DEFUN ("default-value", Fdefault_value, Sdefault_value, 1, 1, 0,
1330 doc: /* Return SYMBOL's default value.
1331 This is the value that is seen in buffers that do not have their own values
1332 for this variable. The default value is meaningful for variables with
1333 local bindings in certain buffers. */)
1334 (Lisp_Object symbol)
1335 {
1336 register Lisp_Object value;
1337
1338 value = default_value (symbol);
1339 if (!EQ (value, Qunbound))
1340 return value;
1341
1342 xsignal1 (Qvoid_variable, symbol);
1343 }
1344
1345 DEFUN ("set-default", Fset_default, Sset_default, 2, 2, 0,
1346 doc: /* Set SYMBOL's default value to VALUE. SYMBOL and VALUE are evaluated.
1347 The default value is seen in buffers that do not have their own values
1348 for this variable. */)
1349 (Lisp_Object symbol, Lisp_Object value)
1350 {
1351 struct Lisp_Symbol *sym;
1352
1353 CHECK_SYMBOL (symbol);
1354 if (SYMBOL_CONSTANT_P (symbol))
1355 {
1356 if (NILP (Fkeywordp (symbol))
1357 || !EQ (value, Fdefault_value (symbol)))
1358 xsignal1 (Qsetting_constant, symbol);
1359 else
1360 /* Allow setting keywords to their own value. */
1361 return value;
1362 }
1363 sym = XSYMBOL (symbol);
1364
1365 start:
1366 switch (sym->redirect)
1367 {
1368 case SYMBOL_VARALIAS: sym = indirect_variable (sym); goto start;
1369 case SYMBOL_PLAINVAL: return Fset (symbol, value);
1370 case SYMBOL_LOCALIZED:
1371 {
1372 struct Lisp_Buffer_Local_Value *blv = SYMBOL_BLV (sym);
1373
1374 /* Store new value into the DEFAULT-VALUE slot. */
1375 XSETCDR (blv->defcell, value);
1376
1377 /* If the default binding is now loaded, set the REALVALUE slot too. */
1378 if (blv->fwd && EQ (blv->defcell, blv->valcell))
1379 store_symval_forwarding (blv->fwd, value, NULL);
1380 return value;
1381 }
1382 case SYMBOL_FORWARDED:
1383 {
1384 union Lisp_Fwd *valcontents = SYMBOL_FWD (sym);
1385
1386 /* Handle variables like case-fold-search that have special slots
1387 in the buffer.
1388 Make them work apparently like Lisp_Buffer_Local_Value variables. */
1389 if (BUFFER_OBJFWDP (valcontents))
1390 {
1391 int offset = XBUFFER_OBJFWD (valcontents)->offset;
1392 int idx = PER_BUFFER_IDX (offset);
1393
1394 set_per_buffer_default (offset, value);
1395
1396 /* If this variable is not always local in all buffers,
1397 set it in the buffers that don't nominally have a local value. */
1398 if (idx > 0)
1399 {
1400 struct buffer *b;
1401
1402 FOR_EACH_BUFFER (b)
1403 if (!PER_BUFFER_VALUE_P (b, idx))
1404 set_per_buffer_value (b, offset, value);
1405 }
1406 return value;
1407 }
1408 else
1409 return Fset (symbol, value);
1410 }
1411 default: emacs_abort ();
1412 }
1413 }
1414
1415 DEFUN ("setq-default", Fsetq_default, Ssetq_default, 0, UNEVALLED, 0,
1416 doc: /* Set the default value of variable VAR to VALUE.
1417 VAR, the variable name, is literal (not evaluated);
1418 VALUE is an expression: it is evaluated and its value returned.
1419 The default value of a variable is seen in buffers
1420 that do not have their own values for the variable.
1421
1422 More generally, you can use multiple variables and values, as in
1423 (setq-default VAR VALUE VAR VALUE...)
1424 This sets each VAR's default value to the corresponding VALUE.
1425 The VALUE for the Nth VAR can refer to the new default values
1426 of previous VARs.
1427 usage: (setq-default [VAR VALUE]...) */)
1428 (Lisp_Object args)
1429 {
1430 register Lisp_Object args_left;
1431 register Lisp_Object val, symbol;
1432 struct gcpro gcpro1;
1433
1434 if (NILP (args))
1435 return Qnil;
1436
1437 args_left = args;
1438 GCPRO1 (args);
1439
1440 do
1441 {
1442 val = eval_sub (Fcar (Fcdr (args_left)));
1443 symbol = XCAR (args_left);
1444 Fset_default (symbol, val);
1445 args_left = Fcdr (XCDR (args_left));
1446 }
1447 while (!NILP (args_left));
1448
1449 UNGCPRO;
1450 return val;
1451 }
1452 \f
1453 /* Lisp functions for creating and removing buffer-local variables. */
1454
1455 union Lisp_Val_Fwd
1456 {
1457 Lisp_Object value;
1458 union Lisp_Fwd *fwd;
1459 };
1460
1461 static struct Lisp_Buffer_Local_Value *
1462 make_blv (struct Lisp_Symbol *sym, bool forwarded,
1463 union Lisp_Val_Fwd valcontents)
1464 {
1465 struct Lisp_Buffer_Local_Value *blv = xmalloc (sizeof *blv);
1466 Lisp_Object symbol;
1467 Lisp_Object tem;
1468
1469 XSETSYMBOL (symbol, sym);
1470 tem = Fcons (symbol, (forwarded
1471 ? do_symval_forwarding (valcontents.fwd)
1472 : valcontents.value));
1473
1474 /* Buffer_Local_Values cannot have as realval a buffer-local
1475 or keyboard-local forwarding. */
1476 eassert (!(forwarded && BUFFER_OBJFWDP (valcontents.fwd)));
1477 eassert (!(forwarded && KBOARD_OBJFWDP (valcontents.fwd)));
1478 blv->fwd = forwarded ? valcontents.fwd : NULL;
1479 set_blv_where (blv, Qnil);
1480 blv->frame_local = 0;
1481 blv->local_if_set = 0;
1482 set_blv_defcell (blv, tem);
1483 set_blv_valcell (blv, tem);
1484 set_blv_found (blv, 0);
1485 return blv;
1486 }
1487
1488 DEFUN ("make-variable-buffer-local", Fmake_variable_buffer_local,
1489 Smake_variable_buffer_local, 1, 1, "vMake Variable Buffer Local: ",
1490 doc: /* Make VARIABLE become buffer-local whenever it is set.
1491 At any time, the value for the current buffer is in effect,
1492 unless the variable has never been set in this buffer,
1493 in which case the default value is in effect.
1494 Note that binding the variable with `let', or setting it while
1495 a `let'-style binding made in this buffer is in effect,
1496 does not make the variable buffer-local. Return VARIABLE.
1497
1498 In most cases it is better to use `make-local-variable',
1499 which makes a variable local in just one buffer.
1500
1501 The function `default-value' gets the default value and `set-default' sets it. */)
1502 (register Lisp_Object variable)
1503 {
1504 struct Lisp_Symbol *sym;
1505 struct Lisp_Buffer_Local_Value *blv = NULL;
1506 union Lisp_Val_Fwd valcontents IF_LINT (= {LISP_INITIALLY_ZERO});
1507 bool forwarded IF_LINT (= 0);
1508
1509 CHECK_SYMBOL (variable);
1510 sym = XSYMBOL (variable);
1511
1512 start:
1513 switch (sym->redirect)
1514 {
1515 case SYMBOL_VARALIAS: sym = indirect_variable (sym); goto start;
1516 case SYMBOL_PLAINVAL:
1517 forwarded = 0; valcontents.value = SYMBOL_VAL (sym);
1518 if (EQ (valcontents.value, Qunbound))
1519 valcontents.value = Qnil;
1520 break;
1521 case SYMBOL_LOCALIZED:
1522 blv = SYMBOL_BLV (sym);
1523 if (blv->frame_local)
1524 error ("Symbol %s may not be buffer-local",
1525 SDATA (SYMBOL_NAME (variable)));
1526 break;
1527 case SYMBOL_FORWARDED:
1528 forwarded = 1; valcontents.fwd = SYMBOL_FWD (sym);
1529 if (KBOARD_OBJFWDP (valcontents.fwd))
1530 error ("Symbol %s may not be buffer-local",
1531 SDATA (SYMBOL_NAME (variable)));
1532 else if (BUFFER_OBJFWDP (valcontents.fwd))
1533 return variable;
1534 break;
1535 default: emacs_abort ();
1536 }
1537
1538 if (sym->constant)
1539 error ("Symbol %s may not be buffer-local", SDATA (SYMBOL_NAME (variable)));
1540
1541 if (!blv)
1542 {
1543 blv = make_blv (sym, forwarded, valcontents);
1544 sym->redirect = SYMBOL_LOCALIZED;
1545 SET_SYMBOL_BLV (sym, blv);
1546 {
1547 Lisp_Object symbol;
1548 XSETSYMBOL (symbol, sym); /* In case `variable' is aliased. */
1549 if (let_shadows_global_binding_p (symbol))
1550 message ("Making %s buffer-local while let-bound!",
1551 SDATA (SYMBOL_NAME (variable)));
1552 }
1553 }
1554
1555 blv->local_if_set = 1;
1556 return variable;
1557 }
1558
1559 DEFUN ("make-local-variable", Fmake_local_variable, Smake_local_variable,
1560 1, 1, "vMake Local Variable: ",
1561 doc: /* Make VARIABLE have a separate value in the current buffer.
1562 Other buffers will continue to share a common default value.
1563 \(The buffer-local value of VARIABLE starts out as the same value
1564 VARIABLE previously had. If VARIABLE was void, it remains void.\)
1565 Return VARIABLE.
1566
1567 If the variable is already arranged to become local when set,
1568 this function causes a local value to exist for this buffer,
1569 just as setting the variable would do.
1570
1571 This function returns VARIABLE, and therefore
1572 (set (make-local-variable 'VARIABLE) VALUE-EXP)
1573 works.
1574
1575 See also `make-variable-buffer-local'.
1576
1577 Do not use `make-local-variable' to make a hook variable buffer-local.
1578 Instead, use `add-hook' and specify t for the LOCAL argument. */)
1579 (Lisp_Object variable)
1580 {
1581 Lisp_Object tem;
1582 bool forwarded IF_LINT (= 0);
1583 union Lisp_Val_Fwd valcontents IF_LINT (= {LISP_INITIALLY_ZERO});
1584 struct Lisp_Symbol *sym;
1585 struct Lisp_Buffer_Local_Value *blv = NULL;
1586
1587 CHECK_SYMBOL (variable);
1588 sym = XSYMBOL (variable);
1589
1590 start:
1591 switch (sym->redirect)
1592 {
1593 case SYMBOL_VARALIAS: sym = indirect_variable (sym); goto start;
1594 case SYMBOL_PLAINVAL:
1595 forwarded = 0; valcontents.value = SYMBOL_VAL (sym); break;
1596 case SYMBOL_LOCALIZED:
1597 blv = SYMBOL_BLV (sym);
1598 if (blv->frame_local)
1599 error ("Symbol %s may not be buffer-local",
1600 SDATA (SYMBOL_NAME (variable)));
1601 break;
1602 case SYMBOL_FORWARDED:
1603 forwarded = 1; valcontents.fwd = SYMBOL_FWD (sym);
1604 if (KBOARD_OBJFWDP (valcontents.fwd))
1605 error ("Symbol %s may not be buffer-local",
1606 SDATA (SYMBOL_NAME (variable)));
1607 break;
1608 default: emacs_abort ();
1609 }
1610
1611 if (sym->constant)
1612 error ("Symbol %s may not be buffer-local",
1613 SDATA (SYMBOL_NAME (variable)));
1614
1615 if (blv ? blv->local_if_set
1616 : (forwarded && BUFFER_OBJFWDP (valcontents.fwd)))
1617 {
1618 tem = Fboundp (variable);
1619 /* Make sure the symbol has a local value in this particular buffer,
1620 by setting it to the same value it already has. */
1621 Fset (variable, (EQ (tem, Qt) ? Fsymbol_value (variable) : Qunbound));
1622 return variable;
1623 }
1624 if (!blv)
1625 {
1626 blv = make_blv (sym, forwarded, valcontents);
1627 sym->redirect = SYMBOL_LOCALIZED;
1628 SET_SYMBOL_BLV (sym, blv);
1629 {
1630 Lisp_Object symbol;
1631 XSETSYMBOL (symbol, sym); /* In case `variable' is aliased. */
1632 if (let_shadows_global_binding_p (symbol))
1633 message ("Making %s local to %s while let-bound!",
1634 SDATA (SYMBOL_NAME (variable)),
1635 SDATA (BVAR (current_buffer, name)));
1636 }
1637 }
1638
1639 /* Make sure this buffer has its own value of symbol. */
1640 XSETSYMBOL (variable, sym); /* Update in case of aliasing. */
1641 tem = Fassq (variable, BVAR (current_buffer, local_var_alist));
1642 if (NILP (tem))
1643 {
1644 if (let_shadows_buffer_binding_p (sym))
1645 message ("Making %s buffer-local while locally let-bound!",
1646 SDATA (SYMBOL_NAME (variable)));
1647
1648 /* Swap out any local binding for some other buffer, and make
1649 sure the current value is permanently recorded, if it's the
1650 default value. */
1651 find_symbol_value (variable);
1652
1653 bset_local_var_alist
1654 (current_buffer,
1655 Fcons (Fcons (variable, XCDR (blv->defcell)),
1656 BVAR (current_buffer, local_var_alist)));
1657
1658 /* Make sure symbol does not think it is set up for this buffer;
1659 force it to look once again for this buffer's value. */
1660 if (current_buffer == XBUFFER (blv->where))
1661 set_blv_where (blv, Qnil);
1662 set_blv_found (blv, 0);
1663 }
1664
1665 /* If the symbol forwards into a C variable, then load the binding
1666 for this buffer now. If C code modifies the variable before we
1667 load the binding in, then that new value will clobber the default
1668 binding the next time we unload it. */
1669 if (blv->fwd)
1670 swap_in_symval_forwarding (sym, blv);
1671
1672 return variable;
1673 }
1674
1675 DEFUN ("kill-local-variable", Fkill_local_variable, Skill_local_variable,
1676 1, 1, "vKill Local Variable: ",
1677 doc: /* Make VARIABLE no longer have a separate value in the current buffer.
1678 From now on the default value will apply in this buffer. Return VARIABLE. */)
1679 (register Lisp_Object variable)
1680 {
1681 register Lisp_Object tem;
1682 struct Lisp_Buffer_Local_Value *blv;
1683 struct Lisp_Symbol *sym;
1684
1685 CHECK_SYMBOL (variable);
1686 sym = XSYMBOL (variable);
1687
1688 start:
1689 switch (sym->redirect)
1690 {
1691 case SYMBOL_VARALIAS: sym = indirect_variable (sym); goto start;
1692 case SYMBOL_PLAINVAL: return variable;
1693 case SYMBOL_FORWARDED:
1694 {
1695 union Lisp_Fwd *valcontents = SYMBOL_FWD (sym);
1696 if (BUFFER_OBJFWDP (valcontents))
1697 {
1698 int offset = XBUFFER_OBJFWD (valcontents)->offset;
1699 int idx = PER_BUFFER_IDX (offset);
1700
1701 if (idx > 0)
1702 {
1703 SET_PER_BUFFER_VALUE_P (current_buffer, idx, 0);
1704 set_per_buffer_value (current_buffer, offset,
1705 per_buffer_default (offset));
1706 }
1707 }
1708 return variable;
1709 }
1710 case SYMBOL_LOCALIZED:
1711 blv = SYMBOL_BLV (sym);
1712 if (blv->frame_local)
1713 return variable;
1714 break;
1715 default: emacs_abort ();
1716 }
1717
1718 /* Get rid of this buffer's alist element, if any. */
1719 XSETSYMBOL (variable, sym); /* Propagate variable indirection. */
1720 tem = Fassq (variable, BVAR (current_buffer, local_var_alist));
1721 if (!NILP (tem))
1722 bset_local_var_alist
1723 (current_buffer,
1724 Fdelq (tem, BVAR (current_buffer, local_var_alist)));
1725
1726 /* If the symbol is set up with the current buffer's binding
1727 loaded, recompute its value. We have to do it now, or else
1728 forwarded objects won't work right. */
1729 {
1730 Lisp_Object buf; XSETBUFFER (buf, current_buffer);
1731 if (EQ (buf, blv->where))
1732 {
1733 set_blv_where (blv, Qnil);
1734 blv->found = 0;
1735 find_symbol_value (variable);
1736 }
1737 }
1738
1739 return variable;
1740 }
1741
1742 /* Lisp functions for creating and removing buffer-local variables. */
1743
1744 /* Obsolete since 22.2. NB adjust doc of modify-frame-parameters
1745 when/if this is removed. */
1746
1747 DEFUN ("make-variable-frame-local", Fmake_variable_frame_local, Smake_variable_frame_local,
1748 1, 1, "vMake Variable Frame Local: ",
1749 doc: /* Enable VARIABLE to have frame-local bindings.
1750 This does not create any frame-local bindings for VARIABLE,
1751 it just makes them possible.
1752
1753 A frame-local binding is actually a frame parameter value.
1754 If a frame F has a value for the frame parameter named VARIABLE,
1755 that also acts as a frame-local binding for VARIABLE in F--
1756 provided this function has been called to enable VARIABLE
1757 to have frame-local bindings at all.
1758
1759 The only way to create a frame-local binding for VARIABLE in a frame
1760 is to set the VARIABLE frame parameter of that frame. See
1761 `modify-frame-parameters' for how to set frame parameters.
1762
1763 Note that since Emacs 23.1, variables cannot be both buffer-local and
1764 frame-local any more (buffer-local bindings used to take precedence over
1765 frame-local bindings). */)
1766 (Lisp_Object variable)
1767 {
1768 bool forwarded;
1769 union Lisp_Val_Fwd valcontents;
1770 struct Lisp_Symbol *sym;
1771 struct Lisp_Buffer_Local_Value *blv = NULL;
1772
1773 CHECK_SYMBOL (variable);
1774 sym = XSYMBOL (variable);
1775
1776 start:
1777 switch (sym->redirect)
1778 {
1779 case SYMBOL_VARALIAS: sym = indirect_variable (sym); goto start;
1780 case SYMBOL_PLAINVAL:
1781 forwarded = 0; valcontents.value = SYMBOL_VAL (sym);
1782 if (EQ (valcontents.value, Qunbound))
1783 valcontents.value = Qnil;
1784 break;
1785 case SYMBOL_LOCALIZED:
1786 if (SYMBOL_BLV (sym)->frame_local)
1787 return variable;
1788 else
1789 error ("Symbol %s may not be frame-local",
1790 SDATA (SYMBOL_NAME (variable)));
1791 case SYMBOL_FORWARDED:
1792 forwarded = 1; valcontents.fwd = SYMBOL_FWD (sym);
1793 if (KBOARD_OBJFWDP (valcontents.fwd) || BUFFER_OBJFWDP (valcontents.fwd))
1794 error ("Symbol %s may not be frame-local",
1795 SDATA (SYMBOL_NAME (variable)));
1796 break;
1797 default: emacs_abort ();
1798 }
1799
1800 if (sym->constant)
1801 error ("Symbol %s may not be frame-local", SDATA (SYMBOL_NAME (variable)));
1802
1803 blv = make_blv (sym, forwarded, valcontents);
1804 blv->frame_local = 1;
1805 sym->redirect = SYMBOL_LOCALIZED;
1806 SET_SYMBOL_BLV (sym, blv);
1807 {
1808 Lisp_Object symbol;
1809 XSETSYMBOL (symbol, sym); /* In case `variable' is aliased. */
1810 if (let_shadows_global_binding_p (symbol))
1811 message ("Making %s frame-local while let-bound!",
1812 SDATA (SYMBOL_NAME (variable)));
1813 }
1814 return variable;
1815 }
1816
1817 DEFUN ("local-variable-p", Flocal_variable_p, Slocal_variable_p,
1818 1, 2, 0,
1819 doc: /* Non-nil if VARIABLE has a local binding in buffer BUFFER.
1820 BUFFER defaults to the current buffer. */)
1821 (register Lisp_Object variable, Lisp_Object buffer)
1822 {
1823 register struct buffer *buf;
1824 struct Lisp_Symbol *sym;
1825
1826 if (NILP (buffer))
1827 buf = current_buffer;
1828 else
1829 {
1830 CHECK_BUFFER (buffer);
1831 buf = XBUFFER (buffer);
1832 }
1833
1834 CHECK_SYMBOL (variable);
1835 sym = XSYMBOL (variable);
1836
1837 start:
1838 switch (sym->redirect)
1839 {
1840 case SYMBOL_VARALIAS: sym = indirect_variable (sym); goto start;
1841 case SYMBOL_PLAINVAL: return Qnil;
1842 case SYMBOL_LOCALIZED:
1843 {
1844 Lisp_Object tail, elt, tmp;
1845 struct Lisp_Buffer_Local_Value *blv = SYMBOL_BLV (sym);
1846 XSETBUFFER (tmp, buf);
1847 XSETSYMBOL (variable, sym); /* Update in case of aliasing. */
1848
1849 for (tail = BVAR (buf, local_var_alist); CONSP (tail); tail = XCDR (tail))
1850 {
1851 elt = XCAR (tail);
1852 if (EQ (variable, XCAR (elt)))
1853 {
1854 eassert (!blv->frame_local);
1855 eassert (blv_found (blv) || !EQ (blv->where, tmp));
1856 return Qt;
1857 }
1858 }
1859 eassert (!blv_found (blv) || !EQ (blv->where, tmp));
1860 return Qnil;
1861 }
1862 case SYMBOL_FORWARDED:
1863 {
1864 union Lisp_Fwd *valcontents = SYMBOL_FWD (sym);
1865 if (BUFFER_OBJFWDP (valcontents))
1866 {
1867 int offset = XBUFFER_OBJFWD (valcontents)->offset;
1868 int idx = PER_BUFFER_IDX (offset);
1869 if (idx == -1 || PER_BUFFER_VALUE_P (buf, idx))
1870 return Qt;
1871 }
1872 return Qnil;
1873 }
1874 default: emacs_abort ();
1875 }
1876 }
1877
1878 DEFUN ("local-variable-if-set-p", Flocal_variable_if_set_p, Slocal_variable_if_set_p,
1879 1, 2, 0,
1880 doc: /* Non-nil if VARIABLE is local in buffer BUFFER when set there.
1881 BUFFER defaults to the current buffer.
1882
1883 More precisely, return non-nil if either VARIABLE already has a local
1884 value in BUFFER, or if VARIABLE is automatically buffer-local (see
1885 `make-variable-buffer-local'). */)
1886 (register Lisp_Object variable, Lisp_Object buffer)
1887 {
1888 struct Lisp_Symbol *sym;
1889
1890 CHECK_SYMBOL (variable);
1891 sym = XSYMBOL (variable);
1892
1893 start:
1894 switch (sym->redirect)
1895 {
1896 case SYMBOL_VARALIAS: sym = indirect_variable (sym); goto start;
1897 case SYMBOL_PLAINVAL: return Qnil;
1898 case SYMBOL_LOCALIZED:
1899 {
1900 struct Lisp_Buffer_Local_Value *blv = SYMBOL_BLV (sym);
1901 if (blv->local_if_set)
1902 return Qt;
1903 XSETSYMBOL (variable, sym); /* Update in case of aliasing. */
1904 return Flocal_variable_p (variable, buffer);
1905 }
1906 case SYMBOL_FORWARDED:
1907 /* All BUFFER_OBJFWD slots become local if they are set. */
1908 return (BUFFER_OBJFWDP (SYMBOL_FWD (sym)) ? Qt : Qnil);
1909 default: emacs_abort ();
1910 }
1911 }
1912
1913 DEFUN ("variable-binding-locus", Fvariable_binding_locus, Svariable_binding_locus,
1914 1, 1, 0,
1915 doc: /* Return a value indicating where VARIABLE's current binding comes from.
1916 If the current binding is buffer-local, the value is the current buffer.
1917 If the current binding is frame-local, the value is the selected frame.
1918 If the current binding is global (the default), the value is nil. */)
1919 (register Lisp_Object variable)
1920 {
1921 struct Lisp_Symbol *sym;
1922
1923 CHECK_SYMBOL (variable);
1924 sym = XSYMBOL (variable);
1925
1926 /* Make sure the current binding is actually swapped in. */
1927 find_symbol_value (variable);
1928
1929 start:
1930 switch (sym->redirect)
1931 {
1932 case SYMBOL_VARALIAS: sym = indirect_variable (sym); goto start;
1933 case SYMBOL_PLAINVAL: return Qnil;
1934 case SYMBOL_FORWARDED:
1935 {
1936 union Lisp_Fwd *valcontents = SYMBOL_FWD (sym);
1937 if (KBOARD_OBJFWDP (valcontents))
1938 return Fframe_terminal (Fselected_frame ());
1939 else if (!BUFFER_OBJFWDP (valcontents))
1940 return Qnil;
1941 }
1942 /* FALLTHROUGH */
1943 case SYMBOL_LOCALIZED:
1944 /* For a local variable, record both the symbol and which
1945 buffer's or frame's value we are saving. */
1946 if (!NILP (Flocal_variable_p (variable, Qnil)))
1947 return Fcurrent_buffer ();
1948 else if (sym->redirect == SYMBOL_LOCALIZED
1949 && blv_found (SYMBOL_BLV (sym)))
1950 return SYMBOL_BLV (sym)->where;
1951 else
1952 return Qnil;
1953 default: emacs_abort ();
1954 }
1955 }
1956
1957 /* This code is disabled now that we use the selected frame to return
1958 keyboard-local-values. */
1959 #if 0
1960 extern struct terminal *get_terminal (Lisp_Object display, int);
1961
1962 DEFUN ("terminal-local-value", Fterminal_local_value,
1963 Sterminal_local_value, 2, 2, 0,
1964 doc: /* Return the terminal-local value of SYMBOL on TERMINAL.
1965 If SYMBOL is not a terminal-local variable, then return its normal
1966 value, like `symbol-value'.
1967
1968 TERMINAL may be a terminal object, a frame, or nil (meaning the
1969 selected frame's terminal device). */)
1970 (Lisp_Object symbol, Lisp_Object terminal)
1971 {
1972 Lisp_Object result;
1973 struct terminal *t = get_terminal (terminal, 1);
1974 push_kboard (t->kboard);
1975 result = Fsymbol_value (symbol);
1976 pop_kboard ();
1977 return result;
1978 }
1979
1980 DEFUN ("set-terminal-local-value", Fset_terminal_local_value,
1981 Sset_terminal_local_value, 3, 3, 0,
1982 doc: /* Set the terminal-local binding of SYMBOL on TERMINAL to VALUE.
1983 If VARIABLE is not a terminal-local variable, then set its normal
1984 binding, like `set'.
1985
1986 TERMINAL may be a terminal object, a frame, or nil (meaning the
1987 selected frame's terminal device). */)
1988 (Lisp_Object symbol, Lisp_Object terminal, Lisp_Object value)
1989 {
1990 Lisp_Object result;
1991 struct terminal *t = get_terminal (terminal, 1);
1992 push_kboard (d->kboard);
1993 result = Fset (symbol, value);
1994 pop_kboard ();
1995 return result;
1996 }
1997 #endif
1998 \f
1999 /* Find the function at the end of a chain of symbol function indirections. */
2000
2001 /* If OBJECT is a symbol, find the end of its function chain and
2002 return the value found there. If OBJECT is not a symbol, just
2003 return it. If there is a cycle in the function chain, signal a
2004 cyclic-function-indirection error.
2005
2006 This is like Findirect_function, except that it doesn't signal an
2007 error if the chain ends up unbound. */
2008 Lisp_Object
2009 indirect_function (register Lisp_Object object)
2010 {
2011 Lisp_Object tortoise, hare;
2012
2013 hare = tortoise = object;
2014
2015 for (;;)
2016 {
2017 if (!SYMBOLP (hare) || EQ (hare, Qunbound))
2018 break;
2019 hare = XSYMBOL (hare)->function;
2020 if (!SYMBOLP (hare) || EQ (hare, Qunbound))
2021 break;
2022 hare = XSYMBOL (hare)->function;
2023
2024 tortoise = XSYMBOL (tortoise)->function;
2025
2026 if (EQ (hare, tortoise))
2027 xsignal1 (Qcyclic_function_indirection, object);
2028 }
2029
2030 return hare;
2031 }
2032
2033 DEFUN ("indirect-function", Findirect_function, Sindirect_function, 1, 2, 0,
2034 doc: /* Return the function at the end of OBJECT's function chain.
2035 If OBJECT is not a symbol, just return it. Otherwise, follow all
2036 function indirections to find the final function binding and return it.
2037 If the final symbol in the chain is unbound, signal a void-function error.
2038 Optional arg NOERROR non-nil means to return nil instead of signaling.
2039 Signal a cyclic-function-indirection error if there is a loop in the
2040 function chain of symbols. */)
2041 (register Lisp_Object object, Lisp_Object noerror)
2042 {
2043 Lisp_Object result;
2044
2045 /* Optimize for no indirection. */
2046 result = object;
2047 if (SYMBOLP (result) && !EQ (result, Qunbound)
2048 && (result = XSYMBOL (result)->function, SYMBOLP (result)))
2049 result = indirect_function (result);
2050 if (!EQ (result, Qunbound))
2051 return result;
2052
2053 if (NILP (noerror))
2054 xsignal1 (Qvoid_function, object);
2055
2056 return Qnil;
2057 }
2058 \f
2059 /* Extract and set vector and string elements. */
2060
2061 DEFUN ("aref", Faref, Saref, 2, 2, 0,
2062 doc: /* Return the element of ARRAY at index IDX.
2063 ARRAY may be a vector, a string, a char-table, a bool-vector,
2064 or a byte-code object. IDX starts at 0. */)
2065 (register Lisp_Object array, Lisp_Object idx)
2066 {
2067 register EMACS_INT idxval;
2068
2069 CHECK_NUMBER (idx);
2070 idxval = XINT (idx);
2071 if (STRINGP (array))
2072 {
2073 int c;
2074 ptrdiff_t idxval_byte;
2075
2076 if (idxval < 0 || idxval >= SCHARS (array))
2077 args_out_of_range (array, idx);
2078 if (! STRING_MULTIBYTE (array))
2079 return make_number ((unsigned char) SREF (array, idxval));
2080 idxval_byte = string_char_to_byte (array, idxval);
2081
2082 c = STRING_CHAR (SDATA (array) + idxval_byte);
2083 return make_number (c);
2084 }
2085 else if (BOOL_VECTOR_P (array))
2086 {
2087 int val;
2088
2089 if (idxval < 0 || idxval >= XBOOL_VECTOR (array)->size)
2090 args_out_of_range (array, idx);
2091
2092 val = (unsigned char) XBOOL_VECTOR (array)->data[idxval / BOOL_VECTOR_BITS_PER_CHAR];
2093 return (val & (1 << (idxval % BOOL_VECTOR_BITS_PER_CHAR)) ? Qt : Qnil);
2094 }
2095 else if (CHAR_TABLE_P (array))
2096 {
2097 CHECK_CHARACTER (idx);
2098 return CHAR_TABLE_REF (array, idxval);
2099 }
2100 else
2101 {
2102 ptrdiff_t size = 0;
2103 if (VECTORP (array))
2104 size = ASIZE (array);
2105 else if (COMPILEDP (array))
2106 size = ASIZE (array) & PSEUDOVECTOR_SIZE_MASK;
2107 else
2108 wrong_type_argument (Qarrayp, array);
2109
2110 if (idxval < 0 || idxval >= size)
2111 args_out_of_range (array, idx);
2112 return AREF (array, idxval);
2113 }
2114 }
2115
2116 DEFUN ("aset", Faset, Saset, 3, 3, 0,
2117 doc: /* Store into the element of ARRAY at index IDX the value NEWELT.
2118 Return NEWELT. ARRAY may be a vector, a string, a char-table or a
2119 bool-vector. IDX starts at 0. */)
2120 (register Lisp_Object array, Lisp_Object idx, Lisp_Object newelt)
2121 {
2122 register EMACS_INT idxval;
2123
2124 CHECK_NUMBER (idx);
2125 idxval = XINT (idx);
2126 CHECK_ARRAY (array, Qarrayp);
2127 CHECK_IMPURE (array);
2128
2129 if (VECTORP (array))
2130 {
2131 if (idxval < 0 || idxval >= ASIZE (array))
2132 args_out_of_range (array, idx);
2133 ASET (array, idxval, newelt);
2134 }
2135 else if (BOOL_VECTOR_P (array))
2136 {
2137 int val;
2138
2139 if (idxval < 0 || idxval >= XBOOL_VECTOR (array)->size)
2140 args_out_of_range (array, idx);
2141
2142 val = (unsigned char) XBOOL_VECTOR (array)->data[idxval / BOOL_VECTOR_BITS_PER_CHAR];
2143
2144 if (! NILP (newelt))
2145 val |= 1 << (idxval % BOOL_VECTOR_BITS_PER_CHAR);
2146 else
2147 val &= ~(1 << (idxval % BOOL_VECTOR_BITS_PER_CHAR));
2148 XBOOL_VECTOR (array)->data[idxval / BOOL_VECTOR_BITS_PER_CHAR] = val;
2149 }
2150 else if (CHAR_TABLE_P (array))
2151 {
2152 CHECK_CHARACTER (idx);
2153 CHAR_TABLE_SET (array, idxval, newelt);
2154 }
2155 else
2156 {
2157 int c;
2158
2159 if (idxval < 0 || idxval >= SCHARS (array))
2160 args_out_of_range (array, idx);
2161 CHECK_CHARACTER (newelt);
2162 c = XFASTINT (newelt);
2163
2164 if (STRING_MULTIBYTE (array))
2165 {
2166 ptrdiff_t idxval_byte, nbytes;
2167 int prev_bytes, new_bytes;
2168 unsigned char workbuf[MAX_MULTIBYTE_LENGTH], *p0 = workbuf, *p1;
2169
2170 nbytes = SBYTES (array);
2171 idxval_byte = string_char_to_byte (array, idxval);
2172 p1 = SDATA (array) + idxval_byte;
2173 prev_bytes = BYTES_BY_CHAR_HEAD (*p1);
2174 new_bytes = CHAR_STRING (c, p0);
2175 if (prev_bytes != new_bytes)
2176 {
2177 /* We must relocate the string data. */
2178 ptrdiff_t nchars = SCHARS (array);
2179 USE_SAFE_ALLOCA;
2180 unsigned char *str = SAFE_ALLOCA (nbytes);
2181
2182 memcpy (str, SDATA (array), nbytes);
2183 allocate_string_data (XSTRING (array), nchars,
2184 nbytes + new_bytes - prev_bytes);
2185 memcpy (SDATA (array), str, idxval_byte);
2186 p1 = SDATA (array) + idxval_byte;
2187 memcpy (p1 + new_bytes, str + idxval_byte + prev_bytes,
2188 nbytes - (idxval_byte + prev_bytes));
2189 SAFE_FREE ();
2190 clear_string_char_byte_cache ();
2191 }
2192 while (new_bytes--)
2193 *p1++ = *p0++;
2194 }
2195 else
2196 {
2197 if (! SINGLE_BYTE_CHAR_P (c))
2198 {
2199 int i;
2200
2201 for (i = SBYTES (array) - 1; i >= 0; i--)
2202 if (SREF (array, i) >= 0x80)
2203 args_out_of_range (array, newelt);
2204 /* ARRAY is an ASCII string. Convert it to a multibyte
2205 string, and try `aset' again. */
2206 STRING_SET_MULTIBYTE (array);
2207 return Faset (array, idx, newelt);
2208 }
2209 SSET (array, idxval, c);
2210 }
2211 }
2212
2213 return newelt;
2214 }
2215 \f
2216 /* Arithmetic functions */
2217
2218 enum comparison { equal, notequal, less, grtr, less_or_equal, grtr_or_equal };
2219
2220 static Lisp_Object
2221 arithcompare (Lisp_Object num1, Lisp_Object num2, enum comparison comparison)
2222 {
2223 double f1 = 0, f2 = 0;
2224 bool floatp = 0;
2225
2226 CHECK_NUMBER_OR_FLOAT_COERCE_MARKER (num1);
2227 CHECK_NUMBER_OR_FLOAT_COERCE_MARKER (num2);
2228
2229 if (FLOATP (num1) || FLOATP (num2))
2230 {
2231 floatp = 1;
2232 f1 = (FLOATP (num1)) ? XFLOAT_DATA (num1) : XINT (num1);
2233 f2 = (FLOATP (num2)) ? XFLOAT_DATA (num2) : XINT (num2);
2234 }
2235
2236 switch (comparison)
2237 {
2238 case equal:
2239 if (floatp ? f1 == f2 : XINT (num1) == XINT (num2))
2240 return Qt;
2241 return Qnil;
2242
2243 case notequal:
2244 if (floatp ? f1 != f2 : XINT (num1) != XINT (num2))
2245 return Qt;
2246 return Qnil;
2247
2248 case less:
2249 if (floatp ? f1 < f2 : XINT (num1) < XINT (num2))
2250 return Qt;
2251 return Qnil;
2252
2253 case less_or_equal:
2254 if (floatp ? f1 <= f2 : XINT (num1) <= XINT (num2))
2255 return Qt;
2256 return Qnil;
2257
2258 case grtr:
2259 if (floatp ? f1 > f2 : XINT (num1) > XINT (num2))
2260 return Qt;
2261 return Qnil;
2262
2263 case grtr_or_equal:
2264 if (floatp ? f1 >= f2 : XINT (num1) >= XINT (num2))
2265 return Qt;
2266 return Qnil;
2267
2268 default:
2269 emacs_abort ();
2270 }
2271 }
2272
2273 DEFUN ("=", Feqlsign, Seqlsign, 2, 2, 0,
2274 doc: /* Return t if two args, both numbers or markers, are equal. */)
2275 (register Lisp_Object num1, Lisp_Object num2)
2276 {
2277 return arithcompare (num1, num2, equal);
2278 }
2279
2280 DEFUN ("<", Flss, Slss, 2, 2, 0,
2281 doc: /* Return t if first arg is less than second arg. Both must be numbers or markers. */)
2282 (register Lisp_Object num1, Lisp_Object num2)
2283 {
2284 return arithcompare (num1, num2, less);
2285 }
2286
2287 DEFUN (">", Fgtr, Sgtr, 2, 2, 0,
2288 doc: /* Return t if first arg is greater than second arg. Both must be numbers or markers. */)
2289 (register Lisp_Object num1, Lisp_Object num2)
2290 {
2291 return arithcompare (num1, num2, grtr);
2292 }
2293
2294 DEFUN ("<=", Fleq, Sleq, 2, 2, 0,
2295 doc: /* Return t if first arg is less than or equal to second arg.
2296 Both must be numbers or markers. */)
2297 (register Lisp_Object num1, Lisp_Object num2)
2298 {
2299 return arithcompare (num1, num2, less_or_equal);
2300 }
2301
2302 DEFUN (">=", Fgeq, Sgeq, 2, 2, 0,
2303 doc: /* Return t if first arg is greater than or equal to second arg.
2304 Both must be numbers or markers. */)
2305 (register Lisp_Object num1, Lisp_Object num2)
2306 {
2307 return arithcompare (num1, num2, grtr_or_equal);
2308 }
2309
2310 DEFUN ("/=", Fneq, Sneq, 2, 2, 0,
2311 doc: /* Return t if first arg is not equal to second arg. Both must be numbers or markers. */)
2312 (register Lisp_Object num1, Lisp_Object num2)
2313 {
2314 return arithcompare (num1, num2, notequal);
2315 }
2316
2317 DEFUN ("zerop", Fzerop, Szerop, 1, 1, 0,
2318 doc: /* Return t if NUMBER is zero. */)
2319 (register Lisp_Object number)
2320 {
2321 CHECK_NUMBER_OR_FLOAT (number);
2322
2323 if (FLOATP (number))
2324 {
2325 if (XFLOAT_DATA (number) == 0.0)
2326 return Qt;
2327 return Qnil;
2328 }
2329
2330 if (!XINT (number))
2331 return Qt;
2332 return Qnil;
2333 }
2334 \f
2335 /* Convert the cons-of-integers, integer, or float value C to an
2336 unsigned value with maximum value MAX. Signal an error if C does not
2337 have a valid format or is out of range. */
2338 uintmax_t
2339 cons_to_unsigned (Lisp_Object c, uintmax_t max)
2340 {
2341 bool valid = 0;
2342 uintmax_t val IF_LINT (= 0);
2343 if (INTEGERP (c))
2344 {
2345 valid = 0 <= XINT (c);
2346 val = XINT (c);
2347 }
2348 else if (FLOATP (c))
2349 {
2350 double d = XFLOAT_DATA (c);
2351 if (0 <= d
2352 && d < (max == UINTMAX_MAX ? (double) UINTMAX_MAX + 1 : max + 1))
2353 {
2354 val = d;
2355 valid = 1;
2356 }
2357 }
2358 else if (CONSP (c) && NATNUMP (XCAR (c)))
2359 {
2360 uintmax_t top = XFASTINT (XCAR (c));
2361 Lisp_Object rest = XCDR (c);
2362 if (top <= UINTMAX_MAX >> 24 >> 16
2363 && CONSP (rest)
2364 && NATNUMP (XCAR (rest)) && XFASTINT (XCAR (rest)) < 1 << 24
2365 && NATNUMP (XCDR (rest)) && XFASTINT (XCDR (rest)) < 1 << 16)
2366 {
2367 uintmax_t mid = XFASTINT (XCAR (rest));
2368 val = top << 24 << 16 | mid << 16 | XFASTINT (XCDR (rest));
2369 valid = 1;
2370 }
2371 else if (top <= UINTMAX_MAX >> 16)
2372 {
2373 if (CONSP (rest))
2374 rest = XCAR (rest);
2375 if (NATNUMP (rest) && XFASTINT (rest) < 1 << 16)
2376 {
2377 val = top << 16 | XFASTINT (rest);
2378 valid = 1;
2379 }
2380 }
2381 }
2382
2383 if (! (valid && val <= max))
2384 error ("Not an in-range integer, float, or cons of integers");
2385 return val;
2386 }
2387
2388 /* Convert the cons-of-integers, integer, or float value C to a signed
2389 value with extrema MIN and MAX. Signal an error if C does not have
2390 a valid format or is out of range. */
2391 intmax_t
2392 cons_to_signed (Lisp_Object c, intmax_t min, intmax_t max)
2393 {
2394 bool valid = 0;
2395 intmax_t val IF_LINT (= 0);
2396 if (INTEGERP (c))
2397 {
2398 val = XINT (c);
2399 valid = 1;
2400 }
2401 else if (FLOATP (c))
2402 {
2403 double d = XFLOAT_DATA (c);
2404 if (min <= d
2405 && d < (max == INTMAX_MAX ? (double) INTMAX_MAX + 1 : max + 1))
2406 {
2407 val = d;
2408 valid = 1;
2409 }
2410 }
2411 else if (CONSP (c) && INTEGERP (XCAR (c)))
2412 {
2413 intmax_t top = XINT (XCAR (c));
2414 Lisp_Object rest = XCDR (c);
2415 if (INTMAX_MIN >> 24 >> 16 <= top && top <= INTMAX_MAX >> 24 >> 16
2416 && CONSP (rest)
2417 && NATNUMP (XCAR (rest)) && XFASTINT (XCAR (rest)) < 1 << 24
2418 && NATNUMP (XCDR (rest)) && XFASTINT (XCDR (rest)) < 1 << 16)
2419 {
2420 intmax_t mid = XFASTINT (XCAR (rest));
2421 val = top << 24 << 16 | mid << 16 | XFASTINT (XCDR (rest));
2422 valid = 1;
2423 }
2424 else if (INTMAX_MIN >> 16 <= top && top <= INTMAX_MAX >> 16)
2425 {
2426 if (CONSP (rest))
2427 rest = XCAR (rest);
2428 if (NATNUMP (rest) && XFASTINT (rest) < 1 << 16)
2429 {
2430 val = top << 16 | XFASTINT (rest);
2431 valid = 1;
2432 }
2433 }
2434 }
2435
2436 if (! (valid && min <= val && val <= max))
2437 error ("Not an in-range integer, float, or cons of integers");
2438 return val;
2439 }
2440 \f
2441 DEFUN ("number-to-string", Fnumber_to_string, Snumber_to_string, 1, 1, 0,
2442 doc: /* Return the decimal representation of NUMBER as a string.
2443 Uses a minus sign if negative.
2444 NUMBER may be an integer or a floating point number. */)
2445 (Lisp_Object number)
2446 {
2447 char buffer[max (FLOAT_TO_STRING_BUFSIZE, INT_BUFSIZE_BOUND (EMACS_INT))];
2448 int len;
2449
2450 CHECK_NUMBER_OR_FLOAT (number);
2451
2452 if (FLOATP (number))
2453 len = float_to_string (buffer, XFLOAT_DATA (number));
2454 else
2455 len = sprintf (buffer, "%"pI"d", XINT (number));
2456
2457 return make_unibyte_string (buffer, len);
2458 }
2459
2460 DEFUN ("string-to-number", Fstring_to_number, Sstring_to_number, 1, 2, 0,
2461 doc: /* Parse STRING as a decimal number and return the number.
2462 This parses both integers and floating point numbers.
2463 It ignores leading spaces and tabs, and all trailing chars.
2464
2465 If BASE, interpret STRING as a number in that base. If BASE isn't
2466 present, base 10 is used. BASE must be between 2 and 16 (inclusive).
2467 If the base used is not 10, STRING is always parsed as integer. */)
2468 (register Lisp_Object string, Lisp_Object base)
2469 {
2470 register char *p;
2471 register int b;
2472 Lisp_Object val;
2473
2474 CHECK_STRING (string);
2475
2476 if (NILP (base))
2477 b = 10;
2478 else
2479 {
2480 CHECK_NUMBER (base);
2481 if (! (2 <= XINT (base) && XINT (base) <= 16))
2482 xsignal1 (Qargs_out_of_range, base);
2483 b = XINT (base);
2484 }
2485
2486 p = SSDATA (string);
2487 while (*p == ' ' || *p == '\t')
2488 p++;
2489
2490 val = string_to_number (p, b, 1);
2491 return NILP (val) ? make_number (0) : val;
2492 }
2493 \f
2494 enum arithop
2495 {
2496 Aadd,
2497 Asub,
2498 Amult,
2499 Adiv,
2500 Alogand,
2501 Alogior,
2502 Alogxor,
2503 Amax,
2504 Amin
2505 };
2506
2507 static Lisp_Object float_arith_driver (double, ptrdiff_t, enum arithop,
2508 ptrdiff_t, Lisp_Object *);
2509 static Lisp_Object
2510 arith_driver (enum arithop code, ptrdiff_t nargs, Lisp_Object *args)
2511 {
2512 Lisp_Object val;
2513 ptrdiff_t argnum, ok_args;
2514 EMACS_INT accum = 0;
2515 EMACS_INT next, ok_accum;
2516 bool overflow = 0;
2517
2518 switch (code)
2519 {
2520 case Alogior:
2521 case Alogxor:
2522 case Aadd:
2523 case Asub:
2524 accum = 0;
2525 break;
2526 case Amult:
2527 accum = 1;
2528 break;
2529 case Alogand:
2530 accum = -1;
2531 break;
2532 default:
2533 break;
2534 }
2535
2536 for (argnum = 0; argnum < nargs; argnum++)
2537 {
2538 if (! overflow)
2539 {
2540 ok_args = argnum;
2541 ok_accum = accum;
2542 }
2543
2544 /* Using args[argnum] as argument to CHECK_NUMBER_... */
2545 val = args[argnum];
2546 CHECK_NUMBER_OR_FLOAT_COERCE_MARKER (val);
2547
2548 if (FLOATP (val))
2549 return float_arith_driver (ok_accum, ok_args, code,
2550 nargs, args);
2551 args[argnum] = val;
2552 next = XINT (args[argnum]);
2553 switch (code)
2554 {
2555 case Aadd:
2556 if (INT_ADD_OVERFLOW (accum, next))
2557 {
2558 overflow = 1;
2559 accum &= INTMASK;
2560 }
2561 accum += next;
2562 break;
2563 case Asub:
2564 if (INT_SUBTRACT_OVERFLOW (accum, next))
2565 {
2566 overflow = 1;
2567 accum &= INTMASK;
2568 }
2569 accum = argnum ? accum - next : nargs == 1 ? - next : next;
2570 break;
2571 case Amult:
2572 if (INT_MULTIPLY_OVERFLOW (accum, next))
2573 {
2574 EMACS_UINT a = accum, b = next, ab = a * b;
2575 overflow = 1;
2576 accum = ab & INTMASK;
2577 }
2578 else
2579 accum *= next;
2580 break;
2581 case Adiv:
2582 if (!argnum)
2583 accum = next;
2584 else
2585 {
2586 if (next == 0)
2587 xsignal0 (Qarith_error);
2588 accum /= next;
2589 }
2590 break;
2591 case Alogand:
2592 accum &= next;
2593 break;
2594 case Alogior:
2595 accum |= next;
2596 break;
2597 case Alogxor:
2598 accum ^= next;
2599 break;
2600 case Amax:
2601 if (!argnum || next > accum)
2602 accum = next;
2603 break;
2604 case Amin:
2605 if (!argnum || next < accum)
2606 accum = next;
2607 break;
2608 }
2609 }
2610
2611 XSETINT (val, accum);
2612 return val;
2613 }
2614
2615 #undef isnan
2616 #define isnan(x) ((x) != (x))
2617
2618 static Lisp_Object
2619 float_arith_driver (double accum, ptrdiff_t argnum, enum arithop code,
2620 ptrdiff_t nargs, Lisp_Object *args)
2621 {
2622 register Lisp_Object val;
2623 double next;
2624
2625 for (; argnum < nargs; argnum++)
2626 {
2627 val = args[argnum]; /* using args[argnum] as argument to CHECK_NUMBER_... */
2628 CHECK_NUMBER_OR_FLOAT_COERCE_MARKER (val);
2629
2630 if (FLOATP (val))
2631 {
2632 next = XFLOAT_DATA (val);
2633 }
2634 else
2635 {
2636 args[argnum] = val; /* runs into a compiler bug. */
2637 next = XINT (args[argnum]);
2638 }
2639 switch (code)
2640 {
2641 case Aadd:
2642 accum += next;
2643 break;
2644 case Asub:
2645 accum = argnum ? accum - next : nargs == 1 ? - next : next;
2646 break;
2647 case Amult:
2648 accum *= next;
2649 break;
2650 case Adiv:
2651 if (!argnum)
2652 accum = next;
2653 else
2654 {
2655 if (! IEEE_FLOATING_POINT && next == 0)
2656 xsignal0 (Qarith_error);
2657 accum /= next;
2658 }
2659 break;
2660 case Alogand:
2661 case Alogior:
2662 case Alogxor:
2663 return wrong_type_argument (Qinteger_or_marker_p, val);
2664 case Amax:
2665 if (!argnum || isnan (next) || next > accum)
2666 accum = next;
2667 break;
2668 case Amin:
2669 if (!argnum || isnan (next) || next < accum)
2670 accum = next;
2671 break;
2672 }
2673 }
2674
2675 return make_float (accum);
2676 }
2677
2678
2679 DEFUN ("+", Fplus, Splus, 0, MANY, 0,
2680 doc: /* Return sum of any number of arguments, which are numbers or markers.
2681 usage: (+ &rest NUMBERS-OR-MARKERS) */)
2682 (ptrdiff_t nargs, Lisp_Object *args)
2683 {
2684 return arith_driver (Aadd, nargs, args);
2685 }
2686
2687 DEFUN ("-", Fminus, Sminus, 0, MANY, 0,
2688 doc: /* Negate number or subtract numbers or markers and return the result.
2689 With one arg, negates it. With more than one arg,
2690 subtracts all but the first from the first.
2691 usage: (- &optional NUMBER-OR-MARKER &rest MORE-NUMBERS-OR-MARKERS) */)
2692 (ptrdiff_t nargs, Lisp_Object *args)
2693 {
2694 return arith_driver (Asub, nargs, args);
2695 }
2696
2697 DEFUN ("*", Ftimes, Stimes, 0, MANY, 0,
2698 doc: /* Return product of any number of arguments, which are numbers or markers.
2699 usage: (* &rest NUMBERS-OR-MARKERS) */)
2700 (ptrdiff_t nargs, Lisp_Object *args)
2701 {
2702 return arith_driver (Amult, nargs, args);
2703 }
2704
2705 DEFUN ("/", Fquo, Squo, 2, MANY, 0,
2706 doc: /* Return first argument divided by all the remaining arguments.
2707 The arguments must be numbers or markers.
2708 usage: (/ DIVIDEND DIVISOR &rest DIVISORS) */)
2709 (ptrdiff_t nargs, Lisp_Object *args)
2710 {
2711 ptrdiff_t argnum;
2712 for (argnum = 2; argnum < nargs; argnum++)
2713 if (FLOATP (args[argnum]))
2714 return float_arith_driver (0, 0, Adiv, nargs, args);
2715 return arith_driver (Adiv, nargs, args);
2716 }
2717
2718 DEFUN ("%", Frem, Srem, 2, 2, 0,
2719 doc: /* Return remainder of X divided by Y.
2720 Both must be integers or markers. */)
2721 (register Lisp_Object x, Lisp_Object y)
2722 {
2723 Lisp_Object val;
2724
2725 CHECK_NUMBER_COERCE_MARKER (x);
2726 CHECK_NUMBER_COERCE_MARKER (y);
2727
2728 if (XINT (y) == 0)
2729 xsignal0 (Qarith_error);
2730
2731 XSETINT (val, XINT (x) % XINT (y));
2732 return val;
2733 }
2734
2735 DEFUN ("mod", Fmod, Smod, 2, 2, 0,
2736 doc: /* Return X modulo Y.
2737 The result falls between zero (inclusive) and Y (exclusive).
2738 Both X and Y must be numbers or markers. */)
2739 (register Lisp_Object x, Lisp_Object y)
2740 {
2741 Lisp_Object val;
2742 EMACS_INT i1, i2;
2743
2744 CHECK_NUMBER_OR_FLOAT_COERCE_MARKER (x);
2745 CHECK_NUMBER_OR_FLOAT_COERCE_MARKER (y);
2746
2747 if (FLOATP (x) || FLOATP (y))
2748 return fmod_float (x, y);
2749
2750 i1 = XINT (x);
2751 i2 = XINT (y);
2752
2753 if (i2 == 0)
2754 xsignal0 (Qarith_error);
2755
2756 i1 %= i2;
2757
2758 /* If the "remainder" comes out with the wrong sign, fix it. */
2759 if (i2 < 0 ? i1 > 0 : i1 < 0)
2760 i1 += i2;
2761
2762 XSETINT (val, i1);
2763 return val;
2764 }
2765
2766 DEFUN ("max", Fmax, Smax, 1, MANY, 0,
2767 doc: /* Return largest of all the arguments (which must be numbers or markers).
2768 The value is always a number; markers are converted to numbers.
2769 usage: (max NUMBER-OR-MARKER &rest NUMBERS-OR-MARKERS) */)
2770 (ptrdiff_t nargs, Lisp_Object *args)
2771 {
2772 return arith_driver (Amax, nargs, args);
2773 }
2774
2775 DEFUN ("min", Fmin, Smin, 1, MANY, 0,
2776 doc: /* Return smallest of all the arguments (which must be numbers or markers).
2777 The value is always a number; markers are converted to numbers.
2778 usage: (min NUMBER-OR-MARKER &rest NUMBERS-OR-MARKERS) */)
2779 (ptrdiff_t nargs, Lisp_Object *args)
2780 {
2781 return arith_driver (Amin, nargs, args);
2782 }
2783
2784 DEFUN ("logand", Flogand, Slogand, 0, MANY, 0,
2785 doc: /* Return bitwise-and of all the arguments.
2786 Arguments may be integers, or markers converted to integers.
2787 usage: (logand &rest INTS-OR-MARKERS) */)
2788 (ptrdiff_t nargs, Lisp_Object *args)
2789 {
2790 return arith_driver (Alogand, nargs, args);
2791 }
2792
2793 DEFUN ("logior", Flogior, Slogior, 0, MANY, 0,
2794 doc: /* Return bitwise-or of all the arguments.
2795 Arguments may be integers, or markers converted to integers.
2796 usage: (logior &rest INTS-OR-MARKERS) */)
2797 (ptrdiff_t nargs, Lisp_Object *args)
2798 {
2799 return arith_driver (Alogior, nargs, args);
2800 }
2801
2802 DEFUN ("logxor", Flogxor, Slogxor, 0, MANY, 0,
2803 doc: /* Return bitwise-exclusive-or of all the arguments.
2804 Arguments may be integers, or markers converted to integers.
2805 usage: (logxor &rest INTS-OR-MARKERS) */)
2806 (ptrdiff_t nargs, Lisp_Object *args)
2807 {
2808 return arith_driver (Alogxor, nargs, args);
2809 }
2810
2811 DEFUN ("ash", Fash, Sash, 2, 2, 0,
2812 doc: /* Return VALUE with its bits shifted left by COUNT.
2813 If COUNT is negative, shifting is actually to the right.
2814 In this case, the sign bit is duplicated. */)
2815 (register Lisp_Object value, Lisp_Object count)
2816 {
2817 register Lisp_Object val;
2818
2819 CHECK_NUMBER (value);
2820 CHECK_NUMBER (count);
2821
2822 if (XINT (count) >= BITS_PER_EMACS_INT)
2823 XSETINT (val, 0);
2824 else if (XINT (count) > 0)
2825 XSETINT (val, XINT (value) << XFASTINT (count));
2826 else if (XINT (count) <= -BITS_PER_EMACS_INT)
2827 XSETINT (val, XINT (value) < 0 ? -1 : 0);
2828 else
2829 XSETINT (val, XINT (value) >> -XINT (count));
2830 return val;
2831 }
2832
2833 DEFUN ("lsh", Flsh, Slsh, 2, 2, 0,
2834 doc: /* Return VALUE with its bits shifted left by COUNT.
2835 If COUNT is negative, shifting is actually to the right.
2836 In this case, zeros are shifted in on the left. */)
2837 (register Lisp_Object value, Lisp_Object count)
2838 {
2839 register Lisp_Object val;
2840
2841 CHECK_NUMBER (value);
2842 CHECK_NUMBER (count);
2843
2844 if (XINT (count) >= BITS_PER_EMACS_INT)
2845 XSETINT (val, 0);
2846 else if (XINT (count) > 0)
2847 XSETINT (val, XUINT (value) << XFASTINT (count));
2848 else if (XINT (count) <= -BITS_PER_EMACS_INT)
2849 XSETINT (val, 0);
2850 else
2851 XSETINT (val, XUINT (value) >> -XINT (count));
2852 return val;
2853 }
2854
2855 DEFUN ("1+", Fadd1, Sadd1, 1, 1, 0,
2856 doc: /* Return NUMBER plus one. NUMBER may be a number or a marker.
2857 Markers are converted to integers. */)
2858 (register Lisp_Object number)
2859 {
2860 CHECK_NUMBER_OR_FLOAT_COERCE_MARKER (number);
2861
2862 if (FLOATP (number))
2863 return (make_float (1.0 + XFLOAT_DATA (number)));
2864
2865 XSETINT (number, XINT (number) + 1);
2866 return number;
2867 }
2868
2869 DEFUN ("1-", Fsub1, Ssub1, 1, 1, 0,
2870 doc: /* Return NUMBER minus one. NUMBER may be a number or a marker.
2871 Markers are converted to integers. */)
2872 (register Lisp_Object number)
2873 {
2874 CHECK_NUMBER_OR_FLOAT_COERCE_MARKER (number);
2875
2876 if (FLOATP (number))
2877 return (make_float (-1.0 + XFLOAT_DATA (number)));
2878
2879 XSETINT (number, XINT (number) - 1);
2880 return number;
2881 }
2882
2883 DEFUN ("lognot", Flognot, Slognot, 1, 1, 0,
2884 doc: /* Return the bitwise complement of NUMBER. NUMBER must be an integer. */)
2885 (register Lisp_Object number)
2886 {
2887 CHECK_NUMBER (number);
2888 XSETINT (number, ~XINT (number));
2889 return number;
2890 }
2891
2892 DEFUN ("byteorder", Fbyteorder, Sbyteorder, 0, 0, 0,
2893 doc: /* Return the byteorder for the machine.
2894 Returns 66 (ASCII uppercase B) for big endian machines or 108 (ASCII
2895 lowercase l) for small endian machines. */)
2896 (void)
2897 {
2898 unsigned i = 0x04030201;
2899 int order = *(char *)&i == 1 ? 108 : 66;
2900
2901 return make_number (order);
2902 }
2903
2904
2905 \f
2906 void
2907 syms_of_data (void)
2908 {
2909 Lisp_Object error_tail, arith_tail;
2910
2911 DEFSYM (Qquote, "quote");
2912 DEFSYM (Qlambda, "lambda");
2913 DEFSYM (Qsubr, "subr");
2914 DEFSYM (Qerror_conditions, "error-conditions");
2915 DEFSYM (Qerror_message, "error-message");
2916 DEFSYM (Qtop_level, "top-level");
2917
2918 DEFSYM (Qerror, "error");
2919 DEFSYM (Quser_error, "user-error");
2920 DEFSYM (Qquit, "quit");
2921 DEFSYM (Qwrong_type_argument, "wrong-type-argument");
2922 DEFSYM (Qargs_out_of_range, "args-out-of-range");
2923 DEFSYM (Qvoid_function, "void-function");
2924 DEFSYM (Qcyclic_function_indirection, "cyclic-function-indirection");
2925 DEFSYM (Qcyclic_variable_indirection, "cyclic-variable-indirection");
2926 DEFSYM (Qvoid_variable, "void-variable");
2927 DEFSYM (Qsetting_constant, "setting-constant");
2928 DEFSYM (Qinvalid_read_syntax, "invalid-read-syntax");
2929
2930 DEFSYM (Qinvalid_function, "invalid-function");
2931 DEFSYM (Qwrong_number_of_arguments, "wrong-number-of-arguments");
2932 DEFSYM (Qno_catch, "no-catch");
2933 DEFSYM (Qend_of_file, "end-of-file");
2934 DEFSYM (Qarith_error, "arith-error");
2935 DEFSYM (Qbeginning_of_buffer, "beginning-of-buffer");
2936 DEFSYM (Qend_of_buffer, "end-of-buffer");
2937 DEFSYM (Qbuffer_read_only, "buffer-read-only");
2938 DEFSYM (Qtext_read_only, "text-read-only");
2939 DEFSYM (Qmark_inactive, "mark-inactive");
2940
2941 DEFSYM (Qlistp, "listp");
2942 DEFSYM (Qconsp, "consp");
2943 DEFSYM (Qsymbolp, "symbolp");
2944 DEFSYM (Qkeywordp, "keywordp");
2945 DEFSYM (Qintegerp, "integerp");
2946 DEFSYM (Qnatnump, "natnump");
2947 DEFSYM (Qwholenump, "wholenump");
2948 DEFSYM (Qstringp, "stringp");
2949 DEFSYM (Qarrayp, "arrayp");
2950 DEFSYM (Qsequencep, "sequencep");
2951 DEFSYM (Qbufferp, "bufferp");
2952 DEFSYM (Qvectorp, "vectorp");
2953 DEFSYM (Qchar_or_string_p, "char-or-string-p");
2954 DEFSYM (Qmarkerp, "markerp");
2955 DEFSYM (Qbuffer_or_string_p, "buffer-or-string-p");
2956 DEFSYM (Qinteger_or_marker_p, "integer-or-marker-p");
2957 DEFSYM (Qboundp, "boundp");
2958 DEFSYM (Qfboundp, "fboundp");
2959
2960 DEFSYM (Qfloatp, "floatp");
2961 DEFSYM (Qnumberp, "numberp");
2962 DEFSYM (Qnumber_or_marker_p, "number-or-marker-p");
2963
2964 DEFSYM (Qchar_table_p, "char-table-p");
2965 DEFSYM (Qvector_or_char_table_p, "vector-or-char-table-p");
2966
2967 DEFSYM (Qsubrp, "subrp");
2968 DEFSYM (Qunevalled, "unevalled");
2969 DEFSYM (Qmany, "many");
2970
2971 DEFSYM (Qcdr, "cdr");
2972
2973 /* Handle automatic advice activation. */
2974 DEFSYM (Qad_advice_info, "ad-advice-info");
2975 DEFSYM (Qad_activate_internal, "ad-activate-internal");
2976
2977 error_tail = pure_cons (Qerror, Qnil);
2978
2979 /* ERROR is used as a signaler for random errors for which nothing else is
2980 right. */
2981
2982 Fput (Qerror, Qerror_conditions,
2983 error_tail);
2984 Fput (Qerror, Qerror_message,
2985 build_pure_c_string ("error"));
2986
2987 #define PUT_ERROR(sym, tail, msg) \
2988 Fput (sym, Qerror_conditions, pure_cons (sym, tail)); \
2989 Fput (sym, Qerror_message, build_pure_c_string (msg))
2990
2991 PUT_ERROR (Qquit, Qnil, "Quit");
2992
2993 PUT_ERROR (Quser_error, error_tail, "");
2994 PUT_ERROR (Qwrong_type_argument, error_tail, "Wrong type argument");
2995 PUT_ERROR (Qargs_out_of_range, error_tail, "Args out of range");
2996 PUT_ERROR (Qvoid_function, error_tail,
2997 "Symbol's function definition is void");
2998 PUT_ERROR (Qcyclic_function_indirection, error_tail,
2999 "Symbol's chain of function indirections contains a loop");
3000 PUT_ERROR (Qcyclic_variable_indirection, error_tail,
3001 "Symbol's chain of variable indirections contains a loop");
3002 DEFSYM (Qcircular_list, "circular-list");
3003 PUT_ERROR (Qcircular_list, error_tail, "List contains a loop");
3004 PUT_ERROR (Qvoid_variable, error_tail, "Symbol's value as variable is void");
3005 PUT_ERROR (Qsetting_constant, error_tail,
3006 "Attempt to set a constant symbol");
3007 PUT_ERROR (Qinvalid_read_syntax, error_tail, "Invalid read syntax");
3008 PUT_ERROR (Qinvalid_function, error_tail, "Invalid function");
3009 PUT_ERROR (Qwrong_number_of_arguments, error_tail,
3010 "Wrong number of arguments");
3011 PUT_ERROR (Qno_catch, error_tail, "No catch for tag");
3012 PUT_ERROR (Qend_of_file, error_tail, "End of file during parsing");
3013
3014 arith_tail = pure_cons (Qarith_error, error_tail);
3015 Fput (Qarith_error, Qerror_conditions, arith_tail);
3016 Fput (Qarith_error, Qerror_message, build_pure_c_string ("Arithmetic error"));
3017
3018 PUT_ERROR (Qbeginning_of_buffer, error_tail, "Beginning of buffer");
3019 PUT_ERROR (Qend_of_buffer, error_tail, "End of buffer");
3020 PUT_ERROR (Qbuffer_read_only, error_tail, "Buffer is read-only");
3021 PUT_ERROR (Qtext_read_only, pure_cons (Qbuffer_read_only, error_tail),
3022 "Text is read-only");
3023
3024 DEFSYM (Qrange_error, "range-error");
3025 DEFSYM (Qdomain_error, "domain-error");
3026 DEFSYM (Qsingularity_error, "singularity-error");
3027 DEFSYM (Qoverflow_error, "overflow-error");
3028 DEFSYM (Qunderflow_error, "underflow-error");
3029
3030 PUT_ERROR (Qdomain_error, arith_tail, "Arithmetic domain error");
3031
3032 PUT_ERROR (Qrange_error, arith_tail, "Arithmetic range error");
3033
3034 PUT_ERROR (Qsingularity_error, Fcons (Qdomain_error, arith_tail),
3035 "Arithmetic singularity error");
3036
3037 PUT_ERROR (Qoverflow_error, Fcons (Qdomain_error, arith_tail),
3038 "Arithmetic overflow error");
3039 PUT_ERROR (Qunderflow_error, Fcons (Qdomain_error, arith_tail),
3040 "Arithmetic underflow error");
3041
3042 staticpro (&Qnil);
3043 staticpro (&Qt);
3044 staticpro (&Qunbound);
3045
3046 /* Types that type-of returns. */
3047 DEFSYM (Qinteger, "integer");
3048 DEFSYM (Qsymbol, "symbol");
3049 DEFSYM (Qstring, "string");
3050 DEFSYM (Qcons, "cons");
3051 DEFSYM (Qmarker, "marker");
3052 DEFSYM (Qoverlay, "overlay");
3053 DEFSYM (Qfloat, "float");
3054 DEFSYM (Qwindow_configuration, "window-configuration");
3055 DEFSYM (Qprocess, "process");
3056 DEFSYM (Qwindow, "window");
3057 DEFSYM (Qcompiled_function, "compiled-function");
3058 DEFSYM (Qbuffer, "buffer");
3059 DEFSYM (Qframe, "frame");
3060 DEFSYM (Qvector, "vector");
3061 DEFSYM (Qchar_table, "char-table");
3062 DEFSYM (Qbool_vector, "bool-vector");
3063 DEFSYM (Qhash_table, "hash-table");
3064 DEFSYM (Qmisc, "misc");
3065
3066 DEFSYM (Qdefun, "defun");
3067
3068 DEFSYM (Qfont_spec, "font-spec");
3069 DEFSYM (Qfont_entity, "font-entity");
3070 DEFSYM (Qfont_object, "font-object");
3071
3072 DEFSYM (Qinteractive_form, "interactive-form");
3073
3074 defsubr (&Sindirect_variable);
3075 defsubr (&Sinteractive_form);
3076 defsubr (&Seq);
3077 defsubr (&Snull);
3078 defsubr (&Stype_of);
3079 defsubr (&Slistp);
3080 defsubr (&Snlistp);
3081 defsubr (&Sconsp);
3082 defsubr (&Satom);
3083 defsubr (&Sintegerp);
3084 defsubr (&Sinteger_or_marker_p);
3085 defsubr (&Snumberp);
3086 defsubr (&Snumber_or_marker_p);
3087 defsubr (&Sfloatp);
3088 defsubr (&Snatnump);
3089 defsubr (&Ssymbolp);
3090 defsubr (&Skeywordp);
3091 defsubr (&Sstringp);
3092 defsubr (&Smultibyte_string_p);
3093 defsubr (&Svectorp);
3094 defsubr (&Schar_table_p);
3095 defsubr (&Svector_or_char_table_p);
3096 defsubr (&Sbool_vector_p);
3097 defsubr (&Sarrayp);
3098 defsubr (&Ssequencep);
3099 defsubr (&Sbufferp);
3100 defsubr (&Smarkerp);
3101 defsubr (&Ssubrp);
3102 defsubr (&Sbyte_code_function_p);
3103 defsubr (&Schar_or_string_p);
3104 defsubr (&Scar);
3105 defsubr (&Scdr);
3106 defsubr (&Scar_safe);
3107 defsubr (&Scdr_safe);
3108 defsubr (&Ssetcar);
3109 defsubr (&Ssetcdr);
3110 defsubr (&Ssymbol_function);
3111 defsubr (&Sindirect_function);
3112 defsubr (&Ssymbol_plist);
3113 defsubr (&Ssymbol_name);
3114 defsubr (&Smakunbound);
3115 defsubr (&Sfmakunbound);
3116 defsubr (&Sboundp);
3117 defsubr (&Sfboundp);
3118 defsubr (&Sfset);
3119 defsubr (&Sdefalias);
3120 defsubr (&Ssetplist);
3121 defsubr (&Ssymbol_value);
3122 defsubr (&Sset);
3123 defsubr (&Sdefault_boundp);
3124 defsubr (&Sdefault_value);
3125 defsubr (&Sset_default);
3126 defsubr (&Ssetq_default);
3127 defsubr (&Smake_variable_buffer_local);
3128 defsubr (&Smake_local_variable);
3129 defsubr (&Skill_local_variable);
3130 defsubr (&Smake_variable_frame_local);
3131 defsubr (&Slocal_variable_p);
3132 defsubr (&Slocal_variable_if_set_p);
3133 defsubr (&Svariable_binding_locus);
3134 #if 0 /* XXX Remove this. --lorentey */
3135 defsubr (&Sterminal_local_value);
3136 defsubr (&Sset_terminal_local_value);
3137 #endif
3138 defsubr (&Saref);
3139 defsubr (&Saset);
3140 defsubr (&Snumber_to_string);
3141 defsubr (&Sstring_to_number);
3142 defsubr (&Seqlsign);
3143 defsubr (&Slss);
3144 defsubr (&Sgtr);
3145 defsubr (&Sleq);
3146 defsubr (&Sgeq);
3147 defsubr (&Sneq);
3148 defsubr (&Szerop);
3149 defsubr (&Splus);
3150 defsubr (&Sminus);
3151 defsubr (&Stimes);
3152 defsubr (&Squo);
3153 defsubr (&Srem);
3154 defsubr (&Smod);
3155 defsubr (&Smax);
3156 defsubr (&Smin);
3157 defsubr (&Slogand);
3158 defsubr (&Slogior);
3159 defsubr (&Slogxor);
3160 defsubr (&Slsh);
3161 defsubr (&Sash);
3162 defsubr (&Sadd1);
3163 defsubr (&Ssub1);
3164 defsubr (&Slognot);
3165 defsubr (&Sbyteorder);
3166 defsubr (&Ssubr_arity);
3167 defsubr (&Ssubr_name);
3168
3169 set_symbol_function (Qwholenump, XSYMBOL (Qnatnump)->function);
3170
3171 DEFVAR_LISP ("most-positive-fixnum", Vmost_positive_fixnum,
3172 doc: /* The largest value that is representable in a Lisp integer. */);
3173 Vmost_positive_fixnum = make_number (MOST_POSITIVE_FIXNUM);
3174 XSYMBOL (intern_c_string ("most-positive-fixnum"))->constant = 1;
3175
3176 DEFVAR_LISP ("most-negative-fixnum", Vmost_negative_fixnum,
3177 doc: /* The smallest value that is representable in a Lisp integer. */);
3178 Vmost_negative_fixnum = make_number (MOST_NEGATIVE_FIXNUM);
3179 XSYMBOL (intern_c_string ("most-negative-fixnum"))->constant = 1;
3180 }
3181
3182 static _Noreturn void
3183 handle_arith_signal (int sig)
3184 {
3185 pthread_sigmask (SIG_SETMASK, &empty_mask, 0);
3186 xsignal0 (Qarith_error);
3187 }
3188
3189 static void
3190 deliver_arith_signal (int sig)
3191 {
3192 handle_on_main_thread (sig, handle_arith_signal);
3193 }
3194
3195 void
3196 init_data (void)
3197 {
3198 struct sigaction action;
3199 /* Don't do this if just dumping out.
3200 We don't want to call `signal' in this case
3201 so that we don't have trouble with dumping
3202 signal-delivering routines in an inconsistent state. */
3203 #ifndef CANNOT_DUMP
3204 if (!initialized)
3205 return;
3206 #endif /* CANNOT_DUMP */
3207 emacs_sigaction_init (&action, deliver_arith_signal);
3208 sigaction (SIGFPE, &action, 0);
3209 }