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[bpt/emacs.git] / src / eval.c
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db9f0278 1/* Evaluator for GNU Emacs Lisp interpreter.
96277b2d 2 Copyright (C) 1985, 1986, 1987, 1993, 1994, 1995 Free Software Foundation, Inc.
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3
4This file is part of GNU Emacs.
5
6GNU Emacs is free software; you can redistribute it and/or modify
7it under the terms of the GNU General Public License as published by
96277b2d 8the Free Software Foundation; either version 2, or (at your option)
db9f0278
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9any later version.
10
11GNU Emacs is distributed in the hope that it will be useful,
12but WITHOUT ANY WARRANTY; without even the implied warranty of
13MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
14GNU General Public License for more details.
15
16You should have received a copy of the GNU General Public License
17along with GNU Emacs; see the file COPYING. If not, write to
3b7ad313
EN
18the Free Software Foundation, Inc., 59 Temple Place - Suite 330,
19Boston, MA 02111-1307, USA. */
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20
21
18160b98 22#include <config.h>
db9f0278 23#include "lisp.h"
9ac0d9e0 24#include "blockinput.h"
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25
26#ifndef standalone
27#include "commands.h"
1f98fa48 28#include "keyboard.h"
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29#else
30#define INTERACTIVE 1
31#endif
32
33#include <setjmp.h>
34
35/* This definition is duplicated in alloc.c and keyboard.c */
36/* Putting it in lisp.h makes cc bomb out! */
37
38struct backtrace
39 {
40 struct backtrace *next;
41 Lisp_Object *function;
42 Lisp_Object *args; /* Points to vector of args. */
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43 int nargs; /* Length of vector.
44 If nargs is UNEVALLED, args points to slot holding
45 list of unevalled args */
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46 char evalargs;
47 /* Nonzero means call value of debugger when done with this operation. */
48 char debug_on_exit;
49 };
50
51struct backtrace *backtrace_list;
52
82da7701
JB
53/* This structure helps implement the `catch' and `throw' control
54 structure. A struct catchtag contains all the information needed
55 to restore the state of the interpreter after a non-local jump.
56
57 Handlers for error conditions (represented by `struct handler'
58 structures) just point to a catch tag to do the cleanup required
59 for their jumps.
60
61 catchtag structures are chained together in the C calling stack;
62 the `next' member points to the next outer catchtag.
63
64 A call like (throw TAG VAL) searches for a catchtag whose `tag'
65 member is TAG, and then unbinds to it. The `val' member is used to
66 hold VAL while the stack is unwound; `val' is returned as the value
67 of the catch form.
68
69 All the other members are concerned with restoring the interpreter
70 state. */
db9f0278
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71struct catchtag
72 {
73 Lisp_Object tag;
74 Lisp_Object val;
75 struct catchtag *next;
76 struct gcpro *gcpro;
77 jmp_buf jmp;
78 struct backtrace *backlist;
79 struct handler *handlerlist;
80 int lisp_eval_depth;
81 int pdlcount;
82 int poll_suppress_count;
83 };
84
85struct catchtag *catchlist;
86
87Lisp_Object Qautoload, Qmacro, Qexit, Qinteractive, Qcommandp, Qdefun;
ad236261 88Lisp_Object Qinhibit_quit, Vinhibit_quit, Vquit_flag;
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89Lisp_Object Qmocklisp_arguments, Vmocklisp_arguments, Qmocklisp;
90Lisp_Object Qand_rest, Qand_optional;
91Lisp_Object Qdebug_on_error;
92
6e6e9f08
RS
93/* This holds either the symbol `run-hooks' or nil.
94 It is nil at an early stage of startup, and when Emacs
95 is shutting down. */
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JB
96Lisp_Object Vrun_hooks;
97
98/* Non-nil means record all fset's and provide's, to be undone
99 if the file being autoloaded is not fully loaded.
100 They are recorded by being consed onto the front of Vautoload_queue:
101 (FUN . ODEF) for a defun, (OFEATURES . nil) for a provide. */
102
103Lisp_Object Vautoload_queue;
104
105/* Current number of specbindings allocated in specpdl. */
106int specpdl_size;
107
108/* Pointer to beginning of specpdl. */
109struct specbinding *specpdl;
110
111/* Pointer to first unused element in specpdl. */
112struct specbinding *specpdl_ptr;
113
114/* Maximum size allowed for specpdl allocation */
115int max_specpdl_size;
116
117/* Depth in Lisp evaluations and function calls. */
118int lisp_eval_depth;
119
120/* Maximum allowed depth in Lisp evaluations and function calls. */
121int max_lisp_eval_depth;
122
123/* Nonzero means enter debugger before next function call */
124int debug_on_next_call;
125
128c0f66 126/* List of conditions (non-nil atom means all) which cause a backtrace
4de86b16 127 if an error is handled by the command loop's error handler. */
128c0f66 128Lisp_Object Vstack_trace_on_error;
db9f0278 129
128c0f66 130/* List of conditions (non-nil atom means all) which enter the debugger
4de86b16 131 if an error is handled by the command loop's error handler. */
128c0f66 132Lisp_Object Vdebug_on_error;
db9f0278 133
fc950e09
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134/* List of conditions and regexps specifying error messages which
135 do not enter the debugger even if Vdebug_on_errors says they should. */
136Lisp_Object Vdebug_ignored_errors;
137
61ede770 138/* Non-nil means call the debugger even if the error will be handled. */
57a6e758 139Lisp_Object Vdebug_on_signal;
61ede770
RS
140
141/* Hook for edebug to use. */
142Lisp_Object Vsignal_hook_function;
143
db9f0278 144/* Nonzero means enter debugger if a quit signal
128c0f66 145 is handled by the command loop's error handler. */
db9f0278
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146int debug_on_quit;
147
be857679 148/* The value of num_nonmacro_input_events as of the last time we
82da7701 149 started to enter the debugger. If we decide to enter the debugger
be857679 150 again when this is still equal to num_nonmacro_input_events, then we
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151 know that the debugger itself has an error, and we should just
152 signal the error instead of entering an infinite loop of debugger
153 invocations. */
154int when_entered_debugger;
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155
156Lisp_Object Vdebugger;
157
158void specbind (), record_unwind_protect ();
159
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RS
160Lisp_Object run_hook_with_args ();
161
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162Lisp_Object funcall_lambda ();
163extern Lisp_Object ml_apply (); /* Apply a mocklisp function to unevaluated argument list */
164
165init_eval_once ()
166{
167 specpdl_size = 50;
716acfce 168 specpdl = (struct specbinding *) xmalloc (specpdl_size * sizeof (struct specbinding));
270e8074 169 specpdl_ptr = specpdl;
db9f0278 170 max_specpdl_size = 600;
969f5145 171 max_lisp_eval_depth = 300;
34d470ba
RS
172
173 Vrun_hooks = Qnil;
db9f0278
JB
174}
175
176init_eval ()
177{
178 specpdl_ptr = specpdl;
179 catchlist = 0;
180 handlerlist = 0;
181 backtrace_list = 0;
182 Vquit_flag = Qnil;
183 debug_on_next_call = 0;
184 lisp_eval_depth = 0;
be857679 185 /* This is less than the initial value of num_nonmacro_input_events. */
b5b911f9 186 when_entered_debugger = -1;
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187}
188
189Lisp_Object
190call_debugger (arg)
191 Lisp_Object arg;
192{
193 if (lisp_eval_depth + 20 > max_lisp_eval_depth)
194 max_lisp_eval_depth = lisp_eval_depth + 20;
195 if (specpdl_size + 40 > max_specpdl_size)
196 max_specpdl_size = specpdl_size + 40;
197 debug_on_next_call = 0;
be857679 198 when_entered_debugger = num_nonmacro_input_events;
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199 return apply1 (Vdebugger, arg);
200}
201
202do_debug_on_call (code)
203 Lisp_Object code;
204{
205 debug_on_next_call = 0;
206 backtrace_list->debug_on_exit = 1;
207 call_debugger (Fcons (code, Qnil));
208}
209\f
210/* NOTE!!! Every function that can call EVAL must protect its args
211 and temporaries from garbage collection while it needs them.
212 The definition of `For' shows what you have to do. */
213
214DEFUN ("or", For, Sor, 0, UNEVALLED, 0,
215 "Eval args until one of them yields non-nil, then return that value.\n\
216The remaining args are not evalled at all.\n\
217If all args return nil, return nil.")
218 (args)
219 Lisp_Object args;
220{
221 register Lisp_Object val;
222 Lisp_Object args_left;
223 struct gcpro gcpro1;
224
265a9e55 225 if (NILP(args))
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226 return Qnil;
227
228 args_left = args;
229 GCPRO1 (args_left);
230
231 do
232 {
233 val = Feval (Fcar (args_left));
265a9e55 234 if (!NILP (val))
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235 break;
236 args_left = Fcdr (args_left);
237 }
265a9e55 238 while (!NILP(args_left));
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239
240 UNGCPRO;
241 return val;
242}
243
244DEFUN ("and", Fand, Sand, 0, UNEVALLED, 0,
245 "Eval args until one of them yields nil, then return nil.\n\
246The remaining args are not evalled at all.\n\
247If no arg yields nil, return the last arg's value.")
248 (args)
249 Lisp_Object args;
250{
251 register Lisp_Object val;
252 Lisp_Object args_left;
253 struct gcpro gcpro1;
254
265a9e55 255 if (NILP(args))
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256 return Qt;
257
258 args_left = args;
259 GCPRO1 (args_left);
260
261 do
262 {
263 val = Feval (Fcar (args_left));
265a9e55 264 if (NILP (val))
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265 break;
266 args_left = Fcdr (args_left);
267 }
265a9e55 268 while (!NILP(args_left));
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269
270 UNGCPRO;
271 return val;
272}
273
274DEFUN ("if", Fif, Sif, 2, UNEVALLED, 0,
275 "(if COND THEN ELSE...): if COND yields non-nil, do THEN, else do ELSE...\n\
276Returns the value of THEN or the value of the last of the ELSE's.\n\
277THEN must be one expression, but ELSE... can be zero or more expressions.\n\
278If COND yields nil, and there are no ELSE's, the value is nil.")
279 (args)
280 Lisp_Object args;
281{
282 register Lisp_Object cond;
283 struct gcpro gcpro1;
284
285 GCPRO1 (args);
286 cond = Feval (Fcar (args));
287 UNGCPRO;
288
265a9e55 289 if (!NILP (cond))
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290 return Feval (Fcar (Fcdr (args)));
291 return Fprogn (Fcdr (Fcdr (args)));
292}
293
294DEFUN ("cond", Fcond, Scond, 0, UNEVALLED, 0,
295 "(cond CLAUSES...): try each clause until one succeeds.\n\
296Each clause looks like (CONDITION BODY...). CONDITION is evaluated\n\
297and, if the value is non-nil, this clause succeeds:\n\
298then the expressions in BODY are evaluated and the last one's\n\
299value is the value of the cond-form.\n\
300If no clause succeeds, cond returns nil.\n\
301If a clause has one element, as in (CONDITION),\n\
302CONDITION's value if non-nil is returned from the cond-form.")
303 (args)
304 Lisp_Object args;
305{
306 register Lisp_Object clause, val;
307 struct gcpro gcpro1;
308
309 val = Qnil;
310 GCPRO1 (args);
265a9e55 311 while (!NILP (args))
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312 {
313 clause = Fcar (args);
314 val = Feval (Fcar (clause));
265a9e55 315 if (!NILP (val))
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316 {
317 if (!EQ (XCONS (clause)->cdr, Qnil))
318 val = Fprogn (XCONS (clause)->cdr);
319 break;
320 }
321 args = XCONS (args)->cdr;
322 }
323 UNGCPRO;
324
325 return val;
326}
327
328DEFUN ("progn", Fprogn, Sprogn, 0, UNEVALLED, 0,
329 "(progn BODY...): eval BODY forms sequentially and return value of last one.")
330 (args)
331 Lisp_Object args;
332{
333 register Lisp_Object val, tem;
334 Lisp_Object args_left;
335 struct gcpro gcpro1;
336
337 /* In Mocklisp code, symbols at the front of the progn arglist
338 are to be bound to zero. */
339 if (!EQ (Vmocklisp_arguments, Qt))
340 {
341 val = make_number (0);
90165123 342 while (!NILP (args) && (tem = Fcar (args), SYMBOLP (tem)))
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343 {
344 QUIT;
345 specbind (tem, val), args = Fcdr (args);
346 }
347 }
348
265a9e55 349 if (NILP(args))
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350 return Qnil;
351
352 args_left = args;
353 GCPRO1 (args_left);
354
355 do
356 {
357 val = Feval (Fcar (args_left));
358 args_left = Fcdr (args_left);
359 }
265a9e55 360 while (!NILP(args_left));
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361
362 UNGCPRO;
363 return val;
364}
365
366DEFUN ("prog1", Fprog1, Sprog1, 1, UNEVALLED, 0,
367 "(prog1 FIRST BODY...): eval FIRST and BODY sequentially; value from FIRST.\n\
368The value of FIRST is saved during the evaluation of the remaining args,\n\
369whose values are discarded.")
370 (args)
371 Lisp_Object args;
372{
373 Lisp_Object val;
374 register Lisp_Object args_left;
375 struct gcpro gcpro1, gcpro2;
376 register int argnum = 0;
377
265a9e55 378 if (NILP(args))
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379 return Qnil;
380
381 args_left = args;
382 val = Qnil;
383 GCPRO2 (args, val);
384
385 do
386 {
387 if (!(argnum++))
388 val = Feval (Fcar (args_left));
389 else
390 Feval (Fcar (args_left));
391 args_left = Fcdr (args_left);
392 }
265a9e55 393 while (!NILP(args_left));
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394
395 UNGCPRO;
396 return val;
397}
398
399DEFUN ("prog2", Fprog2, Sprog2, 2, UNEVALLED, 0,
877b578f 400 "(prog2 X Y BODY...): eval X, Y and BODY sequentially; value from Y.\n\
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401The value of Y is saved during the evaluation of the remaining args,\n\
402whose values are discarded.")
403 (args)
404 Lisp_Object args;
405{
406 Lisp_Object val;
407 register Lisp_Object args_left;
408 struct gcpro gcpro1, gcpro2;
409 register int argnum = -1;
410
411 val = Qnil;
412
87d238ba 413 if (NILP (args))
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414 return Qnil;
415
416 args_left = args;
417 val = Qnil;
418 GCPRO2 (args, val);
419
420 do
421 {
422 if (!(argnum++))
423 val = Feval (Fcar (args_left));
424 else
425 Feval (Fcar (args_left));
426 args_left = Fcdr (args_left);
427 }
87d238ba 428 while (!NILP (args_left));
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429
430 UNGCPRO;
431 return val;
432}
433
434DEFUN ("setq", Fsetq, Ssetq, 0, UNEVALLED, 0,
435 "(setq SYM VAL SYM VAL ...): set each SYM to the value of its VAL.\n\
b0d75191
RS
436The symbols SYM are variables; they are literal (not evaluated).\n\
437The values VAL are expressions; they are evaluated.\n\
438Thus, (setq x (1+ y)) sets `x' to the value of `(1+ y)'.\n\
439The second VAL is not computed until after the first SYM is set, and so on;\n\
440each VAL can use the new value of variables set earlier in the `setq'.\n\
196e7d3f 441The return value of the `setq' form is the value of the last VAL.")
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442 (args)
443 Lisp_Object args;
444{
445 register Lisp_Object args_left;
446 register Lisp_Object val, sym;
447 struct gcpro gcpro1;
448
265a9e55 449 if (NILP(args))
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450 return Qnil;
451
452 args_left = args;
453 GCPRO1 (args);
454
455 do
456 {
457 val = Feval (Fcar (Fcdr (args_left)));
458 sym = Fcar (args_left);
459 Fset (sym, val);
460 args_left = Fcdr (Fcdr (args_left));
461 }
265a9e55 462 while (!NILP(args_left));
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463
464 UNGCPRO;
465 return val;
466}
467
468DEFUN ("quote", Fquote, Squote, 1, UNEVALLED, 0,
469 "Return the argument, without evaluating it. `(quote x)' yields `x'.")
470 (args)
471 Lisp_Object args;
472{
473 return Fcar (args);
474}
475
476DEFUN ("function", Ffunction, Sfunction, 1, UNEVALLED, 0,
477 "Like `quote', but preferred for objects which are functions.\n\
478In byte compilation, `function' causes its argument to be compiled.\n\
479`quote' cannot do that.")
480 (args)
481 Lisp_Object args;
482{
483 return Fcar (args);
484}
485
486DEFUN ("interactive-p", Finteractive_p, Sinteractive_p, 0, 0, 0,
487 "Return t if function in which this appears was called interactively.\n\
488This means that the function was called with call-interactively (which\n\
489includes being called as the binding of a key)\n\
490and input is currently coming from the keyboard (not in keyboard macro).")
491 ()
492{
493 register struct backtrace *btp;
494 register Lisp_Object fun;
495
496 if (!INTERACTIVE)
497 return Qnil;
498
db9f0278 499 btp = backtrace_list;
daa37602
JB
500
501 /* If this isn't a byte-compiled function, there may be a frame at
502 the top for Finteractive_p itself. If so, skip it. */
503 fun = Findirect_function (*btp->function);
0598f773 504 if (SUBRP (fun) && XSUBR (fun) == &Sinteractive_p)
db9f0278 505 btp = btp->next;
daa37602
JB
506
507 /* If we're running an Emacs 18-style byte-compiled function, there
508 may be a frame for Fbytecode. Now, given the strictest
509 definition, this function isn't really being called
510 interactively, but because that's the way Emacs 18 always builds
511 byte-compiled functions, we'll accept it for now. */
512 if (EQ (*btp->function, Qbytecode))
513 btp = btp->next;
514
515 /* If this isn't a byte-compiled function, then we may now be
516 looking at several frames for special forms. Skip past them. */
517 while (btp &&
518 btp->nargs == UNEVALLED)
a6e3fa71
JB
519 btp = btp->next;
520
daa37602
JB
521 /* btp now points at the frame of the innermost function that isn't
522 a special form, ignoring frames for Finteractive_p and/or
523 Fbytecode at the top. If this frame is for a built-in function
524 (such as load or eval-region) return nil. */
ffd56f97 525 fun = Findirect_function (*btp->function);
90165123 526 if (SUBRP (fun))
db9f0278
JB
527 return Qnil;
528 /* btp points to the frame of a Lisp function that called interactive-p.
529 Return t if that function was called interactively. */
530 if (btp && btp->next && EQ (*btp->next->function, Qcall_interactively))
531 return Qt;
532 return Qnil;
533}
534
535DEFUN ("defun", Fdefun, Sdefun, 2, UNEVALLED, 0,
536 "(defun NAME ARGLIST [DOCSTRING] BODY...): define NAME as a function.\n\
537The definition is (lambda ARGLIST [DOCSTRING] BODY...).\n\
538See also the function `interactive'.")
539 (args)
540 Lisp_Object args;
541{
542 register Lisp_Object fn_name;
543 register Lisp_Object defn;
544
545 fn_name = Fcar (args);
546 defn = Fcons (Qlambda, Fcdr (args));
265a9e55 547 if (!NILP (Vpurify_flag))
db9f0278
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548 defn = Fpurecopy (defn);
549 Ffset (fn_name, defn);
2a49b6e5 550 LOADHIST_ATTACH (fn_name);
db9f0278
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551 return fn_name;
552}
553
554DEFUN ("defmacro", Fdefmacro, Sdefmacro, 2, UNEVALLED, 0,
555 "(defmacro NAME ARGLIST [DOCSTRING] BODY...): define NAME as a macro.\n\
556The definition is (macro lambda ARGLIST [DOCSTRING] BODY...).\n\
557When the macro is called, as in (NAME ARGS...),\n\
558the function (lambda ARGLIST BODY...) is applied to\n\
559the list ARGS... as it appears in the expression,\n\
560and the result should be a form to be evaluated instead of the original.")
561 (args)
562 Lisp_Object args;
563{
564 register Lisp_Object fn_name;
565 register Lisp_Object defn;
566
567 fn_name = Fcar (args);
568 defn = Fcons (Qmacro, Fcons (Qlambda, Fcdr (args)));
265a9e55 569 if (!NILP (Vpurify_flag))
db9f0278
JB
570 defn = Fpurecopy (defn);
571 Ffset (fn_name, defn);
2a49b6e5 572 LOADHIST_ATTACH (fn_name);
db9f0278
JB
573 return fn_name;
574}
575
576DEFUN ("defvar", Fdefvar, Sdefvar, 1, UNEVALLED, 0,
577 "(defvar SYMBOL INITVALUE DOCSTRING): define SYMBOL as a variable.\n\
578You are not required to define a variable in order to use it,\n\
579but the definition can supply documentation and an initial value\n\
580in a way that tags can recognize.\n\n\
581INITVALUE is evaluated, and used to set SYMBOL, only if SYMBOL's value is void.\n\
06ef7355
RS
582If SYMBOL is buffer-local, its default value is what is set;\n\
583 buffer-local values are not affected.\n\
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JB
584INITVALUE and DOCSTRING are optional.\n\
585If DOCSTRING starts with *, this variable is identified as a user option.\n\
586 This means that M-x set-variable and M-x edit-options recognize it.\n\
587If INITVALUE is missing, SYMBOL's value is not set.")
588 (args)
589 Lisp_Object args;
590{
a42ba017 591 register Lisp_Object sym, tem, tail;
db9f0278
JB
592
593 sym = Fcar (args);
a42ba017
RS
594 tail = Fcdr (args);
595 if (!NILP (Fcdr (Fcdr (tail))))
596 error ("too many arguments");
597
598 if (!NILP (tail))
db9f0278
JB
599 {
600 tem = Fdefault_boundp (sym);
265a9e55 601 if (NILP (tem))
db9f0278
JB
602 Fset_default (sym, Feval (Fcar (Fcdr (args))));
603 }
a42ba017
RS
604 tail = Fcdr (Fcdr (args));
605 if (!NILP (Fcar (tail)))
db9f0278 606 {
ca248607 607 tem = Fcar (tail);
265a9e55 608 if (!NILP (Vpurify_flag))
db9f0278
JB
609 tem = Fpurecopy (tem);
610 Fput (sym, Qvariable_documentation, tem);
611 }
2a49b6e5 612 LOADHIST_ATTACH (sym);
db9f0278
JB
613 return sym;
614}
615
616DEFUN ("defconst", Fdefconst, Sdefconst, 2, UNEVALLED, 0,
617 "(defconst SYMBOL INITVALUE DOCSTRING): define SYMBOL as a constant variable.\n\
618The intent is that programs do not change this value, but users may.\n\
619Always sets the value of SYMBOL to the result of evalling INITVALUE.\n\
06ef7355
RS
620If SYMBOL is buffer-local, its default value is what is set;\n\
621 buffer-local values are not affected.\n\
db9f0278
JB
622DOCSTRING is optional.\n\
623If DOCSTRING starts with *, this variable is identified as a user option.\n\
624 This means that M-x set-variable and M-x edit-options recognize it.\n\n\
625Note: do not use `defconst' for user options in libraries that are not\n\
626normally loaded, since it is useful for users to be able to specify\n\
627their own values for such variables before loading the library.\n\
628Since `defconst' unconditionally assigns the variable,\n\
629it would override the user's choice.")
630 (args)
631 Lisp_Object args;
632{
633 register Lisp_Object sym, tem;
634
635 sym = Fcar (args);
a42ba017
RS
636 if (!NILP (Fcdr (Fcdr (Fcdr (args)))))
637 error ("too many arguments");
638
db9f0278
JB
639 Fset_default (sym, Feval (Fcar (Fcdr (args))));
640 tem = Fcar (Fcdr (Fcdr (args)));
265a9e55 641 if (!NILP (tem))
db9f0278 642 {
265a9e55 643 if (!NILP (Vpurify_flag))
db9f0278
JB
644 tem = Fpurecopy (tem);
645 Fput (sym, Qvariable_documentation, tem);
646 }
2a49b6e5 647 LOADHIST_ATTACH (sym);
db9f0278
JB
648 return sym;
649}
650
651DEFUN ("user-variable-p", Fuser_variable_p, Suser_variable_p, 1, 1, 0,
652 "Returns t if VARIABLE is intended to be set and modified by users.\n\
653\(The alternative is a variable used internally in a Lisp program.)\n\
654Determined by whether the first character of the documentation\n\
65411977 655for the variable is `*'.")
db9f0278
JB
656 (variable)
657 Lisp_Object variable;
658{
659 Lisp_Object documentation;
660
5e78e475
RS
661 if (!SYMBOLP (variable))
662 return Qnil;
663
db9f0278 664 documentation = Fget (variable, Qvariable_documentation);
90165123 665 if (INTEGERP (documentation) && XINT (documentation) < 0)
db9f0278 666 return Qt;
65411977
RS
667 if (STRINGP (documentation)
668 && ((unsigned char) XSTRING (documentation)->data[0] == '*'))
669 return Qt;
670 /* If it is (STRING . INTEGER), a negative integer means a user variable. */
671 if (CONSP (documentation)
672 && STRINGP (XCONS (documentation)->car)
673 && INTEGERP (XCONS (documentation)->cdr)
674 && XINT (XCONS (documentation)->cdr) < 0)
db9f0278
JB
675 return Qt;
676 return Qnil;
677}
678\f
679DEFUN ("let*", FletX, SletX, 1, UNEVALLED, 0,
680 "(let* VARLIST BODY...): bind variables according to VARLIST then eval BODY.\n\
681The value of the last form in BODY is returned.\n\
682Each element of VARLIST is a symbol (which is bound to nil)\n\
683or a list (SYMBOL VALUEFORM) (which binds SYMBOL to the value of VALUEFORM).\n\
684Each VALUEFORM can refer to the symbols already bound by this VARLIST.")
685 (args)
686 Lisp_Object args;
687{
688 Lisp_Object varlist, val, elt;
689 int count = specpdl_ptr - specpdl;
690 struct gcpro gcpro1, gcpro2, gcpro3;
691
692 GCPRO3 (args, elt, varlist);
693
694 varlist = Fcar (args);
265a9e55 695 while (!NILP (varlist))
db9f0278
JB
696 {
697 QUIT;
698 elt = Fcar (varlist);
90165123 699 if (SYMBOLP (elt))
db9f0278 700 specbind (elt, Qnil);
08564963
JB
701 else if (! NILP (Fcdr (Fcdr (elt))))
702 Fsignal (Qerror,
703 Fcons (build_string ("`let' bindings can have only one value-form"),
704 elt));
db9f0278
JB
705 else
706 {
707 val = Feval (Fcar (Fcdr (elt)));
708 specbind (Fcar (elt), val);
709 }
710 varlist = Fcdr (varlist);
711 }
712 UNGCPRO;
713 val = Fprogn (Fcdr (args));
714 return unbind_to (count, val);
715}
716
717DEFUN ("let", Flet, Slet, 1, UNEVALLED, 0,
718 "(let VARLIST BODY...): bind variables according to VARLIST then eval BODY.\n\
719The value of the last form in BODY is returned.\n\
720Each element of VARLIST is a symbol (which is bound to nil)\n\
721or a list (SYMBOL VALUEFORM) (which binds SYMBOL to the value of VALUEFORM).\n\
722All the VALUEFORMs are evalled before any symbols are bound.")
723 (args)
724 Lisp_Object args;
725{
726 Lisp_Object *temps, tem;
727 register Lisp_Object elt, varlist;
728 int count = specpdl_ptr - specpdl;
729 register int argnum;
730 struct gcpro gcpro1, gcpro2;
731
732 varlist = Fcar (args);
733
734 /* Make space to hold the values to give the bound variables */
735 elt = Flength (varlist);
736 temps = (Lisp_Object *) alloca (XFASTINT (elt) * sizeof (Lisp_Object));
737
738 /* Compute the values and store them in `temps' */
739
740 GCPRO2 (args, *temps);
741 gcpro2.nvars = 0;
742
265a9e55 743 for (argnum = 0; !NILP (varlist); varlist = Fcdr (varlist))
db9f0278
JB
744 {
745 QUIT;
746 elt = Fcar (varlist);
90165123 747 if (SYMBOLP (elt))
db9f0278 748 temps [argnum++] = Qnil;
08564963
JB
749 else if (! NILP (Fcdr (Fcdr (elt))))
750 Fsignal (Qerror,
751 Fcons (build_string ("`let' bindings can have only one value-form"),
752 elt));
db9f0278
JB
753 else
754 temps [argnum++] = Feval (Fcar (Fcdr (elt)));
755 gcpro2.nvars = argnum;
756 }
757 UNGCPRO;
758
759 varlist = Fcar (args);
265a9e55 760 for (argnum = 0; !NILP (varlist); varlist = Fcdr (varlist))
db9f0278
JB
761 {
762 elt = Fcar (varlist);
763 tem = temps[argnum++];
90165123 764 if (SYMBOLP (elt))
db9f0278
JB
765 specbind (elt, tem);
766 else
767 specbind (Fcar (elt), tem);
768 }
769
770 elt = Fprogn (Fcdr (args));
771 return unbind_to (count, elt);
772}
773
774DEFUN ("while", Fwhile, Swhile, 1, UNEVALLED, 0,
775 "(while TEST BODY...): if TEST yields non-nil, eval BODY... and repeat.\n\
776The order of execution is thus TEST, BODY, TEST, BODY and so on\n\
777until TEST returns nil.")
778 (args)
779 Lisp_Object args;
780{
781 Lisp_Object test, body, tem;
782 struct gcpro gcpro1, gcpro2;
783
784 GCPRO2 (test, body);
785
786 test = Fcar (args);
787 body = Fcdr (args);
e3c24a74
RS
788 while (tem = Feval (test),
789 (!EQ (Vmocklisp_arguments, Qt) ? XINT (tem) : !NILP (tem)))
db9f0278
JB
790 {
791 QUIT;
792 Fprogn (body);
793 }
794
795 UNGCPRO;
796 return Qnil;
797}
798
799DEFUN ("macroexpand", Fmacroexpand, Smacroexpand, 1, 2, 0,
800 "Return result of expanding macros at top level of FORM.\n\
801If FORM is not a macro call, it is returned unchanged.\n\
802Otherwise, the macro is expanded and the expansion is considered\n\
803in place of FORM. When a non-macro-call results, it is returned.\n\n\
804The second optional arg ENVIRONMENT species an environment of macro\n\
805definitions to shadow the loaded ones for use in file byte-compilation.")
79e8bfbf 806 (form, environment)
2e267a2e 807 Lisp_Object form;
79e8bfbf 808 Lisp_Object environment;
db9f0278 809{
23d6b5a6 810 /* With cleanups from Hallvard Furuseth. */
db9f0278
JB
811 register Lisp_Object expander, sym, def, tem;
812
813 while (1)
814 {
815 /* Come back here each time we expand a macro call,
816 in case it expands into another macro call. */
90165123 817 if (!CONSP (form))
db9f0278 818 break;
23d6b5a6
JB
819 /* Set SYM, give DEF and TEM right values in case SYM is not a symbol. */
820 def = sym = XCONS (form)->car;
821 tem = Qnil;
db9f0278
JB
822 /* Trace symbols aliases to other symbols
823 until we get a symbol that is not an alias. */
90165123 824 while (SYMBOLP (def))
db9f0278
JB
825 {
826 QUIT;
23d6b5a6 827 sym = def;
79e8bfbf 828 tem = Fassq (sym, environment);
265a9e55 829 if (NILP (tem))
db9f0278
JB
830 {
831 def = XSYMBOL (sym)->function;
23d6b5a6
JB
832 if (!EQ (def, Qunbound))
833 continue;
db9f0278 834 }
23d6b5a6 835 break;
db9f0278 836 }
79e8bfbf 837 /* Right now TEM is the result from SYM in ENVIRONMENT,
db9f0278 838 and if TEM is nil then DEF is SYM's function definition. */
265a9e55 839 if (NILP (tem))
db9f0278 840 {
79e8bfbf 841 /* SYM is not mentioned in ENVIRONMENT.
db9f0278 842 Look at its function definition. */
90165123 843 if (EQ (def, Qunbound) || !CONSP (def))
db9f0278
JB
844 /* Not defined or definition not suitable */
845 break;
846 if (EQ (XCONS (def)->car, Qautoload))
847 {
848 /* Autoloading function: will it be a macro when loaded? */
ee9ee63c 849 tem = Fnth (make_number (4), def);
47ccd8b6 850 if (EQ (tem, Qt) || EQ (tem, Qmacro))
ee9ee63c
JB
851 /* Yes, load it and try again. */
852 {
ca20916b
RS
853 struct gcpro gcpro1;
854 GCPRO1 (form);
ee9ee63c 855 do_autoload (def, sym);
ca20916b 856 UNGCPRO;
ee9ee63c
JB
857 continue;
858 }
859 else
db9f0278 860 break;
db9f0278
JB
861 }
862 else if (!EQ (XCONS (def)->car, Qmacro))
863 break;
864 else expander = XCONS (def)->cdr;
865 }
866 else
867 {
868 expander = XCONS (tem)->cdr;
265a9e55 869 if (NILP (expander))
db9f0278
JB
870 break;
871 }
db9f0278
JB
872 form = apply1 (expander, XCONS (form)->cdr);
873 }
874 return form;
875}
876\f
877DEFUN ("catch", Fcatch, Scatch, 1, UNEVALLED, 0,
878 "(catch TAG BODY...): eval BODY allowing nonlocal exits using `throw'.\n\
879TAG is evalled to get the tag to use. Then the BODY is executed.\n\
880Within BODY, (throw TAG) with same tag exits BODY and exits this `catch'.\n\
881If no throw happens, `catch' returns the value of the last BODY form.\n\
882If a throw happens, it specifies the value to return from `catch'.")
883 (args)
884 Lisp_Object args;
885{
886 register Lisp_Object tag;
887 struct gcpro gcpro1;
888
889 GCPRO1 (args);
890 tag = Feval (Fcar (args));
891 UNGCPRO;
892 return internal_catch (tag, Fprogn, Fcdr (args));
893}
894
895/* Set up a catch, then call C function FUNC on argument ARG.
896 FUNC should return a Lisp_Object.
897 This is how catches are done from within C code. */
898
899Lisp_Object
900internal_catch (tag, func, arg)
901 Lisp_Object tag;
902 Lisp_Object (*func) ();
903 Lisp_Object arg;
904{
905 /* This structure is made part of the chain `catchlist'. */
906 struct catchtag c;
907
908 /* Fill in the components of c, and put it on the list. */
909 c.next = catchlist;
910 c.tag = tag;
911 c.val = Qnil;
912 c.backlist = backtrace_list;
913 c.handlerlist = handlerlist;
914 c.lisp_eval_depth = lisp_eval_depth;
915 c.pdlcount = specpdl_ptr - specpdl;
916 c.poll_suppress_count = poll_suppress_count;
917 c.gcpro = gcprolist;
918 catchlist = &c;
919
920 /* Call FUNC. */
921 if (! _setjmp (c.jmp))
922 c.val = (*func) (arg);
923
924 /* Throw works by a longjmp that comes right here. */
925 catchlist = c.next;
926 return c.val;
927}
928
ba410f40
JB
929/* Unwind the specbind, catch, and handler stacks back to CATCH, and
930 jump to that CATCH, returning VALUE as the value of that catch.
db9f0278 931
ba410f40
JB
932 This is the guts Fthrow and Fsignal; they differ only in the way
933 they choose the catch tag to throw to. A catch tag for a
934 condition-case form has a TAG of Qnil.
db9f0278 935
ba410f40
JB
936 Before each catch is discarded, unbind all special bindings and
937 execute all unwind-protect clauses made above that catch. Unwind
938 the handler stack as we go, so that the proper handlers are in
939 effect for each unwind-protect clause we run. At the end, restore
940 some static info saved in CATCH, and longjmp to the location
941 specified in the
942
943 This is used for correct unwinding in Fthrow and Fsignal. */
db9f0278
JB
944
945static void
ba410f40 946unwind_to_catch (catch, value)
db9f0278 947 struct catchtag *catch;
ba410f40 948 Lisp_Object value;
db9f0278
JB
949{
950 register int last_time;
951
ba410f40
JB
952 /* Save the value in the tag. */
953 catch->val = value;
954
82da7701 955 /* Restore the polling-suppression count. */
1cdc3155 956 set_poll_suppress_count (catch->poll_suppress_count);
82da7701 957
db9f0278
JB
958 do
959 {
960 last_time = catchlist == catch;
82da7701
JB
961
962 /* Unwind the specpdl stack, and then restore the proper set of
963 handlers. */
db9f0278
JB
964 unbind_to (catchlist->pdlcount, Qnil);
965 handlerlist = catchlist->handlerlist;
966 catchlist = catchlist->next;
967 }
968 while (! last_time);
969
970 gcprolist = catch->gcpro;
971 backtrace_list = catch->backlist;
972 lisp_eval_depth = catch->lisp_eval_depth;
ba410f40
JB
973
974 _longjmp (catch->jmp, 1);
db9f0278
JB
975}
976
977DEFUN ("throw", Fthrow, Sthrow, 2, 2, 0,
978 "(throw TAG VALUE): throw to the catch for TAG and return VALUE from it.\n\
979Both TAG and VALUE are evalled.")
79e8bfbf
EN
980 (tag, value)
981 register Lisp_Object tag, value;
db9f0278
JB
982{
983 register struct catchtag *c;
984
985 while (1)
986 {
265a9e55 987 if (!NILP (tag))
db9f0278
JB
988 for (c = catchlist; c; c = c->next)
989 {
990 if (EQ (c->tag, tag))
79e8bfbf 991 unwind_to_catch (c, value);
db9f0278 992 }
79e8bfbf 993 tag = Fsignal (Qno_catch, Fcons (tag, Fcons (value, Qnil)));
db9f0278
JB
994 }
995}
996
997
998DEFUN ("unwind-protect", Funwind_protect, Sunwind_protect, 1, UNEVALLED, 0,
999 "Do BODYFORM, protecting with UNWINDFORMS.\n\
1000Usage looks like (unwind-protect BODYFORM UNWINDFORMS...).\n\
1001If BODYFORM completes normally, its value is returned\n\
1002after executing the UNWINDFORMS.\n\
1003If BODYFORM exits nonlocally, the UNWINDFORMS are executed anyway.")
1004 (args)
1005 Lisp_Object args;
1006{
1007 Lisp_Object val;
1008 int count = specpdl_ptr - specpdl;
1009
1010 record_unwind_protect (0, Fcdr (args));
1011 val = Feval (Fcar (args));
1012 return unbind_to (count, val);
1013}
1014\f
1015/* Chain of condition handlers currently in effect.
1016 The elements of this chain are contained in the stack frames
1017 of Fcondition_case and internal_condition_case.
1018 When an error is signaled (by calling Fsignal, below),
1019 this chain is searched for an element that applies. */
1020
1021struct handler *handlerlist;
1022
1023DEFUN ("condition-case", Fcondition_case, Scondition_case, 2, UNEVALLED, 0,
1024 "Regain control when an error is signaled.\n\
1025Usage looks like (condition-case VAR BODYFORM HANDLERS...).\n\
1026executes BODYFORM and returns its value if no error happens.\n\
1027Each element of HANDLERS looks like (CONDITION-NAME BODY...)\n\
1028where the BODY is made of Lisp expressions.\n\n\
1029A handler is applicable to an error\n\
1030if CONDITION-NAME is one of the error's condition names.\n\
1031If an error happens, the first applicable handler is run.\n\
1032\n\
633357d4
RS
1033The car of a handler may be a list of condition names\n\
1034instead of a single condition name.\n\
1035\n\
db9f0278
JB
1036When a handler handles an error,\n\
1037control returns to the condition-case and the handler BODY... is executed\n\
1038with VAR bound to (SIGNALED-CONDITIONS . SIGNAL-DATA).\n\
1039VAR may be nil; then you do not get access to the signal information.\n\
1040\n\
1041The value of the last BODY form is returned from the condition-case.\n\
1042See also the function `signal' for more info.")
1043 (args)
1044 Lisp_Object args;
1045{
1046 Lisp_Object val;
1047 struct catchtag c;
1048 struct handler h;
82da7701 1049 register Lisp_Object var, bodyform, handlers;
db9f0278 1050
82da7701
JB
1051 var = Fcar (args);
1052 bodyform = Fcar (Fcdr (args));
1053 handlers = Fcdr (Fcdr (args));
1054 CHECK_SYMBOL (var, 0);
1055
1056 for (val = handlers; ! NILP (val); val = Fcdr (val))
1057 {
1058 Lisp_Object tem;
1059 tem = Fcar (val);
5f96776a
RS
1060 if (! (NILP (tem)
1061 || (CONSP (tem)
1062 && (SYMBOLP (XCONS (tem)->car)
1063 || CONSP (XCONS (tem)->car)))))
82da7701
JB
1064 error ("Invalid condition handler", tem);
1065 }
db9f0278
JB
1066
1067 c.tag = Qnil;
1068 c.val = Qnil;
1069 c.backlist = backtrace_list;
1070 c.handlerlist = handlerlist;
1071 c.lisp_eval_depth = lisp_eval_depth;
1072 c.pdlcount = specpdl_ptr - specpdl;
1073 c.poll_suppress_count = poll_suppress_count;
1074 c.gcpro = gcprolist;
1075 if (_setjmp (c.jmp))
1076 {
265a9e55 1077 if (!NILP (h.var))
9d58218c
RS
1078 specbind (h.var, c.val);
1079 val = Fprogn (Fcdr (h.chosen_clause));
82da7701
JB
1080
1081 /* Note that this just undoes the binding of h.var; whoever
1082 longjumped to us unwound the stack to c.pdlcount before
1083 throwing. */
db9f0278
JB
1084 unbind_to (c.pdlcount, Qnil);
1085 return val;
1086 }
1087 c.next = catchlist;
1088 catchlist = &c;
db9f0278 1089
82da7701
JB
1090 h.var = var;
1091 h.handler = handlers;
db9f0278 1092 h.next = handlerlist;
db9f0278
JB
1093 h.tag = &c;
1094 handlerlist = &h;
1095
82da7701 1096 val = Feval (bodyform);
db9f0278
JB
1097 catchlist = c.next;
1098 handlerlist = h.next;
1099 return val;
1100}
1101
f029ca5f
RS
1102/* Call the function BFUN with no arguments, catching errors within it
1103 according to HANDLERS. If there is an error, call HFUN with
1104 one argument which is the data that describes the error:
1105 (SIGNALNAME . DATA)
1106
1107 HANDLERS can be a list of conditions to catch.
1108 If HANDLERS is Qt, catch all errors.
1109 If HANDLERS is Qerror, catch all errors
1110 but allow the debugger to run if that is enabled. */
1111
db9f0278
JB
1112Lisp_Object
1113internal_condition_case (bfun, handlers, hfun)
1114 Lisp_Object (*bfun) ();
1115 Lisp_Object handlers;
1116 Lisp_Object (*hfun) ();
1117{
1118 Lisp_Object val;
1119 struct catchtag c;
1120 struct handler h;
1121
01591d17
RS
1122 /* Since Fsignal resets this to 0, it had better be 0 now
1123 or else we have a potential bug. */
1124 if (interrupt_input_blocked != 0)
1125 abort ();
1126
db9f0278
JB
1127 c.tag = Qnil;
1128 c.val = Qnil;
1129 c.backlist = backtrace_list;
1130 c.handlerlist = handlerlist;
1131 c.lisp_eval_depth = lisp_eval_depth;
1132 c.pdlcount = specpdl_ptr - specpdl;
1133 c.poll_suppress_count = poll_suppress_count;
1134 c.gcpro = gcprolist;
1135 if (_setjmp (c.jmp))
1136 {
9d58218c 1137 return (*hfun) (c.val);
db9f0278
JB
1138 }
1139 c.next = catchlist;
1140 catchlist = &c;
1141 h.handler = handlers;
1142 h.var = Qnil;
db9f0278
JB
1143 h.next = handlerlist;
1144 h.tag = &c;
1145 handlerlist = &h;
1146
1147 val = (*bfun) ();
1148 catchlist = c.next;
1149 handlerlist = h.next;
1150 return val;
1151}
1152
f029ca5f
RS
1153/* Like internal_condition_case but call HFUN with ARG as its argument. */
1154
d227775c
RS
1155Lisp_Object
1156internal_condition_case_1 (bfun, arg, handlers, hfun)
1157 Lisp_Object (*bfun) ();
1158 Lisp_Object arg;
1159 Lisp_Object handlers;
1160 Lisp_Object (*hfun) ();
1161{
1162 Lisp_Object val;
1163 struct catchtag c;
1164 struct handler h;
1165
1166 c.tag = Qnil;
1167 c.val = Qnil;
1168 c.backlist = backtrace_list;
1169 c.handlerlist = handlerlist;
1170 c.lisp_eval_depth = lisp_eval_depth;
1171 c.pdlcount = specpdl_ptr - specpdl;
1172 c.poll_suppress_count = poll_suppress_count;
1173 c.gcpro = gcprolist;
1174 if (_setjmp (c.jmp))
1175 {
9d58218c 1176 return (*hfun) (c.val);
d227775c
RS
1177 }
1178 c.next = catchlist;
1179 catchlist = &c;
1180 h.handler = handlers;
1181 h.var = Qnil;
1182 h.next = handlerlist;
1183 h.tag = &c;
1184 handlerlist = &h;
1185
1186 val = (*bfun) (arg);
1187 catchlist = c.next;
1188 handlerlist = h.next;
1189 return val;
1190}
1191\f
db9f0278
JB
1192static Lisp_Object find_handler_clause ();
1193
1194DEFUN ("signal", Fsignal, Ssignal, 2, 2, 0,
4200e719 1195 "Signal an error. Args are ERROR-SYMBOL and associated DATA.\n\
db9f0278 1196This function does not return.\n\n\
4200e719 1197An error symbol is a symbol with an `error-conditions' property\n\
db9f0278
JB
1198that is a list of condition names.\n\
1199A handler for any of those names will get to handle this signal.\n\
1200The symbol `error' should normally be one of them.\n\
1201\n\
1202DATA should be a list. Its elements are printed as part of the error message.\n\
1203If the signal is handled, DATA is made available to the handler.\n\
1204See also the function `condition-case'.")
4200e719
RS
1205 (error_symbol, data)
1206 Lisp_Object error_symbol, data;
db9f0278
JB
1207{
1208 register struct handler *allhandlers = handlerlist;
1209 Lisp_Object conditions;
1210 extern int gc_in_progress;
1211 extern int waiting_for_input;
1212 Lisp_Object debugger_value;
c11d3d17 1213 Lisp_Object string;
1ea9dec4
RS
1214 Lisp_Object real_error_symbol;
1215 Lisp_Object combined_data;
db9f0278
JB
1216
1217 quit_error_check ();
1218 immediate_quit = 0;
1219 if (gc_in_progress || waiting_for_input)
1220 abort ();
1221
5ae3ca1c 1222#ifdef HAVE_WINDOW_SYSTEM
db9f0278 1223 TOTALLY_UNBLOCK_INPUT;
e5d77022 1224#endif
db9f0278 1225
1ea9dec4
RS
1226 if (NILP (error_symbol))
1227 real_error_symbol = Fcar (data);
1228 else
1229 real_error_symbol = error_symbol;
1230
61ede770
RS
1231 /* This hook is used by edebug. */
1232 if (! NILP (Vsignal_hook_function))
f01a9c5b 1233 call2 (Vsignal_hook_function, error_symbol, data);
61ede770 1234
1ea9dec4 1235 conditions = Fget (real_error_symbol, Qerror_conditions);
db9f0278
JB
1236
1237 for (; handlerlist; handlerlist = handlerlist->next)
1238 {
1239 register Lisp_Object clause;
1240 clause = find_handler_clause (handlerlist->handler, conditions,
4200e719 1241 error_symbol, data, &debugger_value);
db9f0278
JB
1242
1243#if 0 /* Most callers are not prepared to handle gc if this returns.
1244 So, since this feature is not very useful, take it out. */
1245 /* If have called debugger and user wants to continue,
1246 just return nil. */
1247 if (EQ (clause, Qlambda))
1248 return debugger_value;
1249#else
1250 if (EQ (clause, Qlambda))
82da7701 1251 {
690337b7
KH
1252 /* We can't return values to code which signaled an error, but we
1253 can continue code which has signaled a quit. */
1ea9dec4 1254 if (EQ (real_error_symbol, Qquit))
82da7701
JB
1255 return Qnil;
1256 else
d3e6f8be 1257 error ("Cannot return from the debugger in an error");
82da7701 1258 }
db9f0278
JB
1259#endif
1260
265a9e55 1261 if (!NILP (clause))
db9f0278 1262 {
9d58218c 1263 Lisp_Object unwind_data;
db9f0278 1264 struct handler *h = handlerlist;
9d58218c 1265
db9f0278 1266 handlerlist = allhandlers;
1ea9dec4
RS
1267
1268 if (NILP (error_symbol))
1269 unwind_data = data;
9d58218c
RS
1270 else
1271 unwind_data = Fcons (error_symbol, data);
1272 h->chosen_clause = clause;
1273 unwind_to_catch (h->tag, unwind_data);
db9f0278
JB
1274 }
1275 }
1276
1277 handlerlist = allhandlers;
1278 /* If no handler is present now, try to run the debugger,
1279 and if that fails, throw to top level. */
4200e719 1280 find_handler_clause (Qerror, conditions, error_symbol, data, &debugger_value);
c11d3d17
RS
1281 if (catchlist != 0)
1282 Fthrow (Qtop_level, Qt);
1283
1ea9dec4 1284 if (! NILP (error_symbol))
c11d3d17
RS
1285 data = Fcons (error_symbol, data);
1286
1287 string = Ferror_message_string (data);
1288 fatal (XSTRING (string)->data, 0, 0);
db9f0278
JB
1289}
1290
128c0f66
RM
1291/* Return nonzero iff LIST is a non-nil atom or
1292 a list containing one of CONDITIONS. */
1293
1294static int
1295wants_debugger (list, conditions)
1296 Lisp_Object list, conditions;
1297{
4de86b16 1298 if (NILP (list))
128c0f66
RM
1299 return 0;
1300 if (! CONSP (list))
1301 return 1;
1302
ab67260b 1303 while (CONSP (conditions))
128c0f66 1304 {
ab67260b
RS
1305 Lisp_Object this, tail;
1306 this = XCONS (conditions)->car;
1307 for (tail = list; CONSP (tail); tail = XCONS (tail)->cdr)
1308 if (EQ (XCONS (tail)->car, this))
128c0f66 1309 return 1;
128c0f66
RM
1310 conditions = XCONS (conditions)->cdr;
1311 }
ab67260b 1312 return 0;
128c0f66
RM
1313}
1314
fc950e09
KH
1315/* Return 1 if an error with condition-symbols CONDITIONS,
1316 and described by SIGNAL-DATA, should skip the debugger
1317 according to debugger-ignore-errors. */
1318
1319static int
1320skip_debugger (conditions, data)
1321 Lisp_Object conditions, data;
1322{
1323 Lisp_Object tail;
1324 int first_string = 1;
1325 Lisp_Object error_message;
1326
1327 for (tail = Vdebug_ignored_errors; CONSP (tail);
1328 tail = XCONS (tail)->cdr)
1329 {
1330 if (STRINGP (XCONS (tail)->car))
1331 {
1332 if (first_string)
1333 {
1334 error_message = Ferror_message_string (data);
1335 first_string = 0;
1336 }
1337 if (fast_string_match (XCONS (tail)->car, error_message) >= 0)
1338 return 1;
1339 }
1340 else
1341 {
1342 Lisp_Object contail;
1343
1344 for (contail = conditions; CONSP (contail);
1345 contail = XCONS (contail)->cdr)
1346 if (EQ (XCONS (tail)->car, XCONS (contail)->car))
1347 return 1;
1348 }
1349 }
1350
1351 return 0;
1352}
1353
128c0f66 1354/* Value of Qlambda means we have called debugger and user has continued.
1ea9dec4
RS
1355 There are two ways to pass SIG and DATA:
1356 - SIG is the error symbol, and DATA is the rest of the data.
1357 = SIG is nil, and DATA is (SYMBOL . REST-OF-DATA).
1358
128c0f66 1359 Store value returned from debugger into *DEBUGGER_VALUE_PTR. */
db9f0278
JB
1360
1361static Lisp_Object
1362find_handler_clause (handlers, conditions, sig, data, debugger_value_ptr)
1363 Lisp_Object handlers, conditions, sig, data;
1364 Lisp_Object *debugger_value_ptr;
1365{
1366 register Lisp_Object h;
1367 register Lisp_Object tem;
db9f0278
JB
1368
1369 if (EQ (handlers, Qt)) /* t is used by handlers for all conditions, set up by C code. */
1370 return Qt;
61ede770
RS
1371 /* error is used similarly, but means print an error message
1372 and run the debugger if that is enabled. */
1373 if (EQ (handlers, Qerror)
57a6e758
RS
1374 || !NILP (Vdebug_on_signal)) /* This says call debugger even if
1375 there is a handler. */
db9f0278 1376 {
61ede770
RS
1377 int count = specpdl_ptr - specpdl;
1378 int debugger_called = 0;
1ea9dec4
RS
1379 Lisp_Object sig_symbol, combined_data;
1380
1381 if (NILP (sig))
1382 {
1383 combined_data = data;
1384 sig_symbol = Fcar (data);
1385 }
1386 else
1387 {
1388 combined_data = Fcons (sig, data);
1389 sig_symbol = sig;
1390 }
61ede770 1391
128c0f66 1392 if (wants_debugger (Vstack_trace_on_error, conditions))
db9f0278 1393 internal_with_output_to_temp_buffer ("*Backtrace*", Fbacktrace, Qnil);
1ea9dec4 1394 if ((EQ (sig_symbol, Qquit)
ba410f40
JB
1395 ? debug_on_quit
1396 : wants_debugger (Vdebug_on_error, conditions))
1ea9dec4 1397 && ! skip_debugger (conditions, combined_data)
be857679 1398 && when_entered_debugger < num_nonmacro_input_events)
db9f0278 1399 {
db9f0278 1400 specbind (Qdebug_on_error, Qnil);
fc950e09
KH
1401 *debugger_value_ptr
1402 = call_debugger (Fcons (Qerror,
1ea9dec4 1403 Fcons (combined_data, Qnil)));
61ede770
RS
1404 debugger_called = 1;
1405 }
1406 /* If there is no handler, return saying whether we ran the debugger. */
1407 if (EQ (handlers, Qerror))
1408 {
1409 if (debugger_called)
1410 return unbind_to (count, Qlambda);
1411 return Qt;
db9f0278 1412 }
db9f0278
JB
1413 }
1414 for (h = handlers; CONSP (h); h = Fcdr (h))
1415 {
5f96776a
RS
1416 Lisp_Object handler, condit;
1417
1418 handler = Fcar (h);
1419 if (!CONSP (handler))
db9f0278 1420 continue;
5f96776a
RS
1421 condit = Fcar (handler);
1422 /* Handle a single condition name in handler HANDLER. */
1423 if (SYMBOLP (condit))
1424 {
1425 tem = Fmemq (Fcar (handler), conditions);
1426 if (!NILP (tem))
1427 return handler;
1428 }
1429 /* Handle a list of condition names in handler HANDLER. */
1430 else if (CONSP (condit))
1431 {
1432 while (CONSP (condit))
1433 {
1434 tem = Fmemq (Fcar (condit), conditions);
1435 if (!NILP (tem))
1436 return handler;
1437 condit = XCONS (condit)->cdr;
1438 }
1439 }
db9f0278
JB
1440 }
1441 return Qnil;
1442}
1443
1444/* dump an error message; called like printf */
1445
1446/* VARARGS 1 */
1447void
1448error (m, a1, a2, a3)
1449 char *m;
9125da08 1450 char *a1, *a2, *a3;
db9f0278
JB
1451{
1452 char buf[200];
9125da08
RS
1453 int size = 200;
1454 int mlen;
1455 char *buffer = buf;
1456 char *args[3];
1457 int allocated = 0;
1458 Lisp_Object string;
1459
1460 args[0] = a1;
1461 args[1] = a2;
1462 args[2] = a3;
1463
1464 mlen = strlen (m);
db9f0278
JB
1465
1466 while (1)
9125da08
RS
1467 {
1468 int used = doprnt (buf, size, m, m + mlen, 3, args);
1469 if (used < size)
1470 break;
1471 size *= 2;
1472 if (allocated)
1473 buffer = (char *) xrealloc (buffer, size);
5ece1728
RS
1474 else
1475 {
1476 buffer = (char *) xmalloc (size);
1477 allocated = 1;
1478 }
9125da08
RS
1479 }
1480
1481 string = build_string (buf);
1482 if (allocated)
1483 free (buffer);
1484
1485 Fsignal (Qerror, Fcons (string, Qnil));
db9f0278
JB
1486}
1487\f
1488DEFUN ("commandp", Fcommandp, Scommandp, 1, 1, 0,
1489 "T if FUNCTION makes provisions for interactive calling.\n\
1490This means it contains a description for how to read arguments to give it.\n\
1491The value is nil for an invalid function or a symbol with no function\n\
1492definition.\n\
1493\n\
1494Interactively callable functions include strings and vectors (treated\n\
1495as keyboard macros), lambda-expressions that contain a top-level call\n\
1496to `interactive', autoload definitions made by `autoload' with non-nil\n\
1497fourth argument, and some of the built-in functions of Lisp.\n\
1498\n\
1499Also, a symbol satisfies `commandp' if its function definition does so.")
1500 (function)
1501 Lisp_Object function;
1502{
1503 register Lisp_Object fun;
1504 register Lisp_Object funcar;
1505 register Lisp_Object tem;
1506 register int i = 0;
1507
1508 fun = function;
1509
ffd56f97
JB
1510 fun = indirect_function (fun);
1511 if (EQ (fun, Qunbound))
1512 return Qnil;
db9f0278
JB
1513
1514 /* Emacs primitives are interactive if their DEFUN specifies an
1515 interactive spec. */
90165123 1516 if (SUBRP (fun))
db9f0278
JB
1517 {
1518 if (XSUBR (fun)->prompt)
1519 return Qt;
1520 else
1521 return Qnil;
1522 }
1523
1524 /* Bytecode objects are interactive if they are long enough to
1525 have an element whose index is COMPILED_INTERACTIVE, which is
1526 where the interactive spec is stored. */
90165123 1527 else if (COMPILEDP (fun))
f9b4aacf 1528 return ((XVECTOR (fun)->size & PSEUDOVECTOR_SIZE_MASK) > COMPILED_INTERACTIVE
db9f0278
JB
1529 ? Qt : Qnil);
1530
1531 /* Strings and vectors are keyboard macros. */
90165123 1532 if (STRINGP (fun) || VECTORP (fun))
db9f0278
JB
1533 return Qt;
1534
1535 /* Lists may represent commands. */
1536 if (!CONSP (fun))
1537 return Qnil;
1538 funcar = Fcar (fun);
90165123 1539 if (!SYMBOLP (funcar))
db9f0278
JB
1540 return Fsignal (Qinvalid_function, Fcons (fun, Qnil));
1541 if (EQ (funcar, Qlambda))
1542 return Fassq (Qinteractive, Fcdr (Fcdr (fun)));
1543 if (EQ (funcar, Qmocklisp))
1544 return Qt; /* All mocklisp functions can be called interactively */
1545 if (EQ (funcar, Qautoload))
1546 return Fcar (Fcdr (Fcdr (Fcdr (fun))));
1547 else
1548 return Qnil;
1549}
1550
1551/* ARGSUSED */
1552DEFUN ("autoload", Fautoload, Sautoload, 2, 5, 0,
1553 "Define FUNCTION to autoload from FILE.\n\
1554FUNCTION is a symbol; FILE is a file name string to pass to `load'.\n\
1555Third arg DOCSTRING is documentation for the function.\n\
1556Fourth arg INTERACTIVE if non-nil says function can be called interactively.\n\
ee9ee63c
JB
1557Fifth arg TYPE indicates the type of the object:\n\
1558 nil or omitted says FUNCTION is a function,\n\
1559 `keymap' says FUNCTION is really a keymap, and\n\
1560 `macro' or t says FUNCTION is really a macro.\n\
db9f0278
JB
1561Third through fifth args give info about the real definition.\n\
1562They default to nil.\n\
1563If FUNCTION is already defined other than as an autoload,\n\
1564this does nothing and returns nil.")
ee9ee63c
JB
1565 (function, file, docstring, interactive, type)
1566 Lisp_Object function, file, docstring, interactive, type;
db9f0278
JB
1567{
1568#ifdef NO_ARG_ARRAY
1569 Lisp_Object args[4];
1570#endif
1571
1572 CHECK_SYMBOL (function, 0);
1573 CHECK_STRING (file, 1);
1574
1575 /* If function is defined and not as an autoload, don't override */
1576 if (!EQ (XSYMBOL (function)->function, Qunbound)
90165123 1577 && !(CONSP (XSYMBOL (function)->function)
db9f0278
JB
1578 && EQ (XCONS (XSYMBOL (function)->function)->car, Qautoload)))
1579 return Qnil;
1580
1581#ifdef NO_ARG_ARRAY
1582 args[0] = file;
1583 args[1] = docstring;
1584 args[2] = interactive;
ee9ee63c 1585 args[3] = type;
db9f0278
JB
1586
1587 return Ffset (function, Fcons (Qautoload, Flist (4, &args[0])));
1588#else /* NO_ARG_ARRAY */
1589 return Ffset (function, Fcons (Qautoload, Flist (4, &file)));
1590#endif /* not NO_ARG_ARRAY */
1591}
1592
1593Lisp_Object
1594un_autoload (oldqueue)
1595 Lisp_Object oldqueue;
1596{
1597 register Lisp_Object queue, first, second;
1598
1599 /* Queue to unwind is current value of Vautoload_queue.
1600 oldqueue is the shadowed value to leave in Vautoload_queue. */
1601 queue = Vautoload_queue;
1602 Vautoload_queue = oldqueue;
1603 while (CONSP (queue))
1604 {
1605 first = Fcar (queue);
1606 second = Fcdr (first);
1607 first = Fcar (first);
1608 if (EQ (second, Qnil))
1609 Vfeatures = first;
1610 else
1611 Ffset (first, second);
1612 queue = Fcdr (queue);
1613 }
1614 return Qnil;
1615}
1616
ca20916b
RS
1617/* Load an autoloaded function.
1618 FUNNAME is the symbol which is the function's name.
1619 FUNDEF is the autoload definition (a list). */
1620
db9f0278
JB
1621do_autoload (fundef, funname)
1622 Lisp_Object fundef, funname;
1623{
1624 int count = specpdl_ptr - specpdl;
2a49b6e5 1625 Lisp_Object fun, val, queue, first, second;
ca20916b 1626 struct gcpro gcpro1, gcpro2, gcpro3;
db9f0278
JB
1627
1628 fun = funname;
1629 CHECK_SYMBOL (funname, 0);
ca20916b 1630 GCPRO3 (fun, funname, fundef);
db9f0278
JB
1631
1632 /* Value saved here is to be restored into Vautoload_queue */
1633 record_unwind_protect (un_autoload, Vautoload_queue);
1634 Vautoload_queue = Qt;
4aac2302 1635 Fload (Fcar (Fcdr (fundef)), Qnil, noninteractive ? Qt : Qnil, Qnil, Qt);
2a49b6e5
RS
1636
1637 /* Save the old autoloads, in case we ever do an unload. */
1638 queue = Vautoload_queue;
1639 while (CONSP (queue))
1640 {
1641 first = Fcar (queue);
1642 second = Fcdr (first);
1643 first = Fcar (first);
5739ce6b
ER
1644
1645 /* Note: This test is subtle. The cdr of an autoload-queue entry
1646 may be an atom if the autoload entry was generated by a defalias
1647 or fset. */
1648 if (CONSP (second))
03e267c2 1649 Fput (first, Qautoload, (Fcdr (second)));
5739ce6b 1650
2a49b6e5
RS
1651 queue = Fcdr (queue);
1652 }
1653
db9f0278
JB
1654 /* Once loading finishes, don't undo it. */
1655 Vautoload_queue = Qt;
1656 unbind_to (count, Qnil);
1657
ffd56f97
JB
1658 fun = Findirect_function (fun);
1659
76c2b0cc 1660 if (!NILP (Fequal (fun, fundef)))
db9f0278
JB
1661 error ("Autoloading failed to define function %s",
1662 XSYMBOL (funname)->name->data);
ca20916b 1663 UNGCPRO;
db9f0278
JB
1664}
1665\f
1666DEFUN ("eval", Feval, Seval, 1, 1, 0,
1667 "Evaluate FORM and return its value.")
1668 (form)
1669 Lisp_Object form;
1670{
1671 Lisp_Object fun, val, original_fun, original_args;
1672 Lisp_Object funcar;
1673 struct backtrace backtrace;
1674 struct gcpro gcpro1, gcpro2, gcpro3;
1675
90165123 1676 if (SYMBOLP (form))
db9f0278
JB
1677 {
1678 if (EQ (Vmocklisp_arguments, Qt))
1679 return Fsymbol_value (form);
1680 val = Fsymbol_value (form);
265a9e55 1681 if (NILP (val))
a631e24c 1682 XSETFASTINT (val, 0);
db9f0278 1683 else if (EQ (val, Qt))
a631e24c 1684 XSETFASTINT (val, 1);
db9f0278
JB
1685 return val;
1686 }
1687 if (!CONSP (form))
1688 return form;
1689
1690 QUIT;
1691 if (consing_since_gc > gc_cons_threshold)
1692 {
1693 GCPRO1 (form);
1694 Fgarbage_collect ();
1695 UNGCPRO;
1696 }
1697
1698 if (++lisp_eval_depth > max_lisp_eval_depth)
1699 {
1700 if (max_lisp_eval_depth < 100)
1701 max_lisp_eval_depth = 100;
1702 if (lisp_eval_depth > max_lisp_eval_depth)
1703 error ("Lisp nesting exceeds max-lisp-eval-depth");
1704 }
1705
1706 original_fun = Fcar (form);
1707 original_args = Fcdr (form);
1708
1709 backtrace.next = backtrace_list;
1710 backtrace_list = &backtrace;
1711 backtrace.function = &original_fun; /* This also protects them from gc */
1712 backtrace.args = &original_args;
1713 backtrace.nargs = UNEVALLED;
1714 backtrace.evalargs = 1;
1715 backtrace.debug_on_exit = 0;
1716
1717 if (debug_on_next_call)
1718 do_debug_on_call (Qt);
1719
1720 /* At this point, only original_fun and original_args
1721 have values that will be used below */
1722 retry:
ffd56f97 1723 fun = Findirect_function (original_fun);
db9f0278 1724
90165123 1725 if (SUBRP (fun))
db9f0278
JB
1726 {
1727 Lisp_Object numargs;
166c822d 1728 Lisp_Object argvals[8];
db9f0278
JB
1729 Lisp_Object args_left;
1730 register int i, maxargs;
1731
1732 args_left = original_args;
1733 numargs = Flength (args_left);
1734
1735 if (XINT (numargs) < XSUBR (fun)->min_args ||
1736 (XSUBR (fun)->max_args >= 0 && XSUBR (fun)->max_args < XINT (numargs)))
1737 return Fsignal (Qwrong_number_of_arguments, Fcons (fun, Fcons (numargs, Qnil)));
1738
1739 if (XSUBR (fun)->max_args == UNEVALLED)
1740 {
1741 backtrace.evalargs = 0;
1742 val = (*XSUBR (fun)->function) (args_left);
1743 goto done;
1744 }
1745
1746 if (XSUBR (fun)->max_args == MANY)
1747 {
1748 /* Pass a vector of evaluated arguments */
1749 Lisp_Object *vals;
1750 register int argnum = 0;
1751
1752 vals = (Lisp_Object *) alloca (XINT (numargs) * sizeof (Lisp_Object));
1753
1754 GCPRO3 (args_left, fun, fun);
1755 gcpro3.var = vals;
1756 gcpro3.nvars = 0;
1757
265a9e55 1758 while (!NILP (args_left))
db9f0278
JB
1759 {
1760 vals[argnum++] = Feval (Fcar (args_left));
1761 args_left = Fcdr (args_left);
1762 gcpro3.nvars = argnum;
1763 }
db9f0278
JB
1764
1765 backtrace.args = vals;
1766 backtrace.nargs = XINT (numargs);
1767
1768 val = (*XSUBR (fun)->function) (XINT (numargs), vals);
a6e3fa71 1769 UNGCPRO;
db9f0278
JB
1770 goto done;
1771 }
1772
1773 GCPRO3 (args_left, fun, fun);
1774 gcpro3.var = argvals;
1775 gcpro3.nvars = 0;
1776
1777 maxargs = XSUBR (fun)->max_args;
1778 for (i = 0; i < maxargs; args_left = Fcdr (args_left))
1779 {
1780 argvals[i] = Feval (Fcar (args_left));
1781 gcpro3.nvars = ++i;
1782 }
1783
1784 UNGCPRO;
1785
1786 backtrace.args = argvals;
1787 backtrace.nargs = XINT (numargs);
1788
1789 switch (i)
1790 {
1791 case 0:
1792 val = (*XSUBR (fun)->function) ();
1793 goto done;
1794 case 1:
1795 val = (*XSUBR (fun)->function) (argvals[0]);
1796 goto done;
1797 case 2:
1798 val = (*XSUBR (fun)->function) (argvals[0], argvals[1]);
1799 goto done;
1800 case 3:
1801 val = (*XSUBR (fun)->function) (argvals[0], argvals[1],
1802 argvals[2]);
1803 goto done;
1804 case 4:
1805 val = (*XSUBR (fun)->function) (argvals[0], argvals[1],
1806 argvals[2], argvals[3]);
1807 goto done;
1808 case 5:
1809 val = (*XSUBR (fun)->function) (argvals[0], argvals[1], argvals[2],
1810 argvals[3], argvals[4]);
1811 goto done;
1812 case 6:
1813 val = (*XSUBR (fun)->function) (argvals[0], argvals[1], argvals[2],
1814 argvals[3], argvals[4], argvals[5]);
1815 goto done;
15c65264
RS
1816 case 7:
1817 val = (*XSUBR (fun)->function) (argvals[0], argvals[1], argvals[2],
1818 argvals[3], argvals[4], argvals[5],
1819 argvals[6]);
1820 goto done;
db9f0278 1821
166c822d
KH
1822 case 8:
1823 val = (*XSUBR (fun)->function) (argvals[0], argvals[1], argvals[2],
1824 argvals[3], argvals[4], argvals[5],
1825 argvals[6], argvals[7]);
1826 goto done;
1827
db9f0278 1828 default:
08564963
JB
1829 /* Someone has created a subr that takes more arguments than
1830 is supported by this code. We need to either rewrite the
1831 subr to use a different argument protocol, or add more
1832 cases to this switch. */
1833 abort ();
db9f0278
JB
1834 }
1835 }
90165123 1836 if (COMPILEDP (fun))
db9f0278
JB
1837 val = apply_lambda (fun, original_args, 1);
1838 else
1839 {
1840 if (!CONSP (fun))
1841 return Fsignal (Qinvalid_function, Fcons (fun, Qnil));
1842 funcar = Fcar (fun);
90165123 1843 if (!SYMBOLP (funcar))
db9f0278
JB
1844 return Fsignal (Qinvalid_function, Fcons (fun, Qnil));
1845 if (EQ (funcar, Qautoload))
1846 {
1847 do_autoload (fun, original_fun);
1848 goto retry;
1849 }
1850 if (EQ (funcar, Qmacro))
1851 val = Feval (apply1 (Fcdr (fun), original_args));
1852 else if (EQ (funcar, Qlambda))
1853 val = apply_lambda (fun, original_args, 1);
1854 else if (EQ (funcar, Qmocklisp))
1855 val = ml_apply (fun, original_args);
1856 else
1857 return Fsignal (Qinvalid_function, Fcons (fun, Qnil));
1858 }
1859 done:
1860 if (!EQ (Vmocklisp_arguments, Qt))
1861 {
265a9e55 1862 if (NILP (val))
a631e24c 1863 XSETFASTINT (val, 0);
db9f0278 1864 else if (EQ (val, Qt))
a631e24c 1865 XSETFASTINT (val, 1);
db9f0278
JB
1866 }
1867 lisp_eval_depth--;
1868 if (backtrace.debug_on_exit)
1869 val = call_debugger (Fcons (Qexit, Fcons (val, Qnil)));
1870 backtrace_list = backtrace.next;
1871 return val;
1872}
1873\f
1874DEFUN ("apply", Fapply, Sapply, 2, MANY, 0,
1875 "Call FUNCTION with our remaining args, using our last arg as list of args.\n\
fd7fe9a1 1876Then return the value FUNCTION returns.\n\
db9f0278
JB
1877Thus, (apply '+ 1 2 '(3 4)) returns 10.")
1878 (nargs, args)
1879 int nargs;
1880 Lisp_Object *args;
1881{
1882 register int i, numargs;
1883 register Lisp_Object spread_arg;
1884 register Lisp_Object *funcall_args;
db9f0278 1885 Lisp_Object fun;
a6e3fa71 1886 struct gcpro gcpro1;
db9f0278
JB
1887
1888 fun = args [0];
1889 funcall_args = 0;
1890 spread_arg = args [nargs - 1];
1891 CHECK_LIST (spread_arg, nargs);
1892
1893 numargs = XINT (Flength (spread_arg));
1894
1895 if (numargs == 0)
1896 return Ffuncall (nargs - 1, args);
1897 else if (numargs == 1)
1898 {
1899 args [nargs - 1] = XCONS (spread_arg)->car;
1900 return Ffuncall (nargs, args);
1901 }
1902
a6e3fa71 1903 numargs += nargs - 2;
db9f0278 1904
ffd56f97
JB
1905 fun = indirect_function (fun);
1906 if (EQ (fun, Qunbound))
db9f0278 1907 {
ffd56f97
JB
1908 /* Let funcall get the error */
1909 fun = args[0];
1910 goto funcall;
db9f0278
JB
1911 }
1912
90165123 1913 if (SUBRP (fun))
db9f0278
JB
1914 {
1915 if (numargs < XSUBR (fun)->min_args
1916 || (XSUBR (fun)->max_args >= 0 && XSUBR (fun)->max_args < numargs))
1917 goto funcall; /* Let funcall get the error */
1918 else if (XSUBR (fun)->max_args > numargs)
1919 {
1920 /* Avoid making funcall cons up a yet another new vector of arguments
1921 by explicitly supplying nil's for optional values */
1922 funcall_args = (Lisp_Object *) alloca ((1 + XSUBR (fun)->max_args)
1923 * sizeof (Lisp_Object));
1924 for (i = numargs; i < XSUBR (fun)->max_args;)
1925 funcall_args[++i] = Qnil;
a6e3fa71
JB
1926 GCPRO1 (*funcall_args);
1927 gcpro1.nvars = 1 + XSUBR (fun)->max_args;
db9f0278
JB
1928 }
1929 }
1930 funcall:
1931 /* We add 1 to numargs because funcall_args includes the
1932 function itself as well as its arguments. */
1933 if (!funcall_args)
a6e3fa71
JB
1934 {
1935 funcall_args = (Lisp_Object *) alloca ((1 + numargs)
1936 * sizeof (Lisp_Object));
1937 GCPRO1 (*funcall_args);
1938 gcpro1.nvars = 1 + numargs;
1939 }
1940
db9f0278
JB
1941 bcopy (args, funcall_args, nargs * sizeof (Lisp_Object));
1942 /* Spread the last arg we got. Its first element goes in
1943 the slot that it used to occupy, hence this value of I. */
1944 i = nargs - 1;
265a9e55 1945 while (!NILP (spread_arg))
db9f0278
JB
1946 {
1947 funcall_args [i++] = XCONS (spread_arg)->car;
1948 spread_arg = XCONS (spread_arg)->cdr;
1949 }
a6e3fa71
JB
1950
1951 RETURN_UNGCPRO (Ffuncall (gcpro1.nvars, funcall_args));
db9f0278
JB
1952}
1953\f
ff936e53
SM
1954/* Run hook variables in various ways. */
1955
1956enum run_hooks_condition {to_completion, until_success, until_failure};
1957
1958DEFUN ("run-hooks", Frun_hooks, Srun_hooks, 1, MANY, 0,
1959 "Run each hook in HOOKS. Major mode functions use this.\n\
1960Each argument should be a symbol, a hook variable.\n\
1961These symbols are processed in the order specified.\n\
1962If a hook symbol has a non-nil value, that value may be a function\n\
1963or a list of functions to be called to run the hook.\n\
1964If the value is a function, it is called with no arguments.\n\
1965If it is a list, the elements are called, in order, with no arguments.\n\
1966\n\
1967To make a hook variable buffer-local, use `make-local-hook',\n\
1968not `make-local-variable'.")
1969 (nargs, args)
1970 int nargs;
1971 Lisp_Object *args;
1972{
1973 Lisp_Object hook[1];
1974 register int i;
1975
1976 for (i = 0; i < nargs; i++)
1977 {
1978 hook[0] = args[i];
1979 run_hook_with_args (1, hook, to_completion);
1980 }
1981
1982 return Qnil;
1983}
1984
a0d76c27
EN
1985DEFUN ("run-hook-with-args", Frun_hook_with_args,
1986 Srun_hook_with_args, 1, MANY, 0,
b0b667cb
KH
1987 "Run HOOK with the specified arguments ARGS.\n\
1988HOOK should be a symbol, a hook variable. If HOOK has a non-nil\n\
1989value, that value may be a function or a list of functions to be\n\
1990called to run the hook. If the value is a function, it is called with\n\
1991the given arguments and its return value is returned. If it is a list\n\
1992of functions, those functions are called, in order,\n\
1993with the given arguments ARGS.\n\
1994It is best not to depend on the value return by `run-hook-with-args',\n\
1995as that may change.\n\
1996\n\
ff936e53
SM
1997To make a hook variable buffer-local, use `make-local-hook',\n\
1998not `make-local-variable'.")
1999 (nargs, args)
2000 int nargs;
2001 Lisp_Object *args;
2002{
2003 return run_hook_with_args (nargs, args, to_completion);
2004}
2005
a0d76c27
EN
2006DEFUN ("run-hook-with-args-until-success", Frun_hook_with_args_until_success,
2007 Srun_hook_with_args_until_success, 1, MANY, 0,
ff936e53
SM
2008 "Run HOOK with the specified arguments ARGS.\n\
2009HOOK should be a symbol, a hook variable. Its value should\n\
2010be a list of functions. We call those functions, one by one,\n\
2011passing arguments ARGS to each of them, until one of them\n\
2012returns a non-nil value. Then we return that value.\n\
2013If all the functions return nil, we return nil.\n\
2014\n\
2015To make a hook variable buffer-local, use `make-local-hook',\n\
2016not `make-local-variable'.")
b0b667cb
KH
2017 (nargs, args)
2018 int nargs;
2019 Lisp_Object *args;
2020{
ff936e53
SM
2021 return run_hook_with_args (nargs, args, until_success);
2022}
2023
a0d76c27
EN
2024DEFUN ("run-hook-with-args-until-failure", Frun_hook_with_args_until_failure,
2025 Srun_hook_with_args_until_failure, 1, MANY, 0,
ff936e53
SM
2026 "Run HOOK with the specified arguments ARGS.\n\
2027HOOK should be a symbol, a hook variable. Its value should\n\
2028be a list of functions. We call those functions, one by one,\n\
2029passing arguments ARGS to each of them, until one of them\n\
2030returns nil. Then we return nil.\n\
2031If all the functions return non-nil, we return non-nil.\n\
2032\n\
2033To make a hook variable buffer-local, use `make-local-hook',\n\
2034not `make-local-variable'.")
2035 (nargs, args)
2036 int nargs;
2037 Lisp_Object *args;
2038{
2039 return run_hook_with_args (nargs, args, until_failure);
2040}
2041
c933ea05
RS
2042/* ARGS[0] should be a hook symbol.
2043 Call each of the functions in the hook value, passing each of them
2044 as arguments all the rest of ARGS (all NARGS - 1 elements).
2045 COND specifies a condition to test after each call
2046 to decide whether to stop.
2047 The caller (or its caller, etc) must gcpro all of ARGS,
2048 except that it isn't necessary to gcpro ARGS[0]. */
2049
ff936e53
SM
2050Lisp_Object
2051run_hook_with_args (nargs, args, cond)
2052 int nargs;
2053 Lisp_Object *args;
2054 enum run_hooks_condition cond;
2055{
2056 Lisp_Object sym, val, ret;
c933ea05 2057 struct gcpro gcpro1, gcpro2;
b0b667cb 2058
f029ca5f
RS
2059 /* If we are dying or still initializing,
2060 don't do anything--it would probably crash if we tried. */
2061 if (NILP (Vrun_hooks))
2062 return;
2063
b0b667cb 2064 sym = args[0];
aa681b51 2065 val = find_symbol_value (sym);
ff936e53
SM
2066 ret = (cond == until_failure ? Qt : Qnil);
2067
b0b667cb 2068 if (EQ (val, Qunbound) || NILP (val))
ff936e53 2069 return ret;
b0b667cb
KH
2070 else if (!CONSP (val) || EQ (XCONS (val)->car, Qlambda))
2071 {
2072 args[0] = val;
2073 return Ffuncall (nargs, args);
2074 }
2075 else
2076 {
cb9d21f8
RS
2077 GCPRO2 (sym, val);
2078
ff936e53
SM
2079 for (;
2080 CONSP (val) && ((cond == to_completion)
2081 || (cond == until_success ? NILP (ret)
2082 : !NILP (ret)));
2083 val = XCONS (val)->cdr)
b0b667cb
KH
2084 {
2085 if (EQ (XCONS (val)->car, Qt))
2086 {
2087 /* t indicates this hook has a local binding;
2088 it means to run the global binding too. */
2089 Lisp_Object globals;
2090
ff936e53
SM
2091 for (globals = Fdefault_value (sym);
2092 CONSP (globals) && ((cond == to_completion)
2093 || (cond == until_success ? NILP (ret)
2094 : !NILP (ret)));
b0b667cb
KH
2095 globals = XCONS (globals)->cdr)
2096 {
2097 args[0] = XCONS (globals)->car;
77d92e05
RS
2098 /* In a global value, t should not occur. If it does, we
2099 must ignore it to avoid an endless loop. */
2100 if (!EQ (args[0], Qt))
2101 ret = Ffuncall (nargs, args);
b0b667cb
KH
2102 }
2103 }
2104 else
2105 {
2106 args[0] = XCONS (val)->car;
ff936e53 2107 ret = Ffuncall (nargs, args);
b0b667cb
KH
2108 }
2109 }
cb9d21f8
RS
2110
2111 UNGCPRO;
ff936e53 2112 return ret;
b0b667cb
KH
2113 }
2114}
c933ea05
RS
2115
2116/* Run a hook symbol ARGS[0], but use FUNLIST instead of the actual
2117 present value of that symbol.
2118 Call each element of FUNLIST,
2119 passing each of them the rest of ARGS.
2120 The caller (or its caller, etc) must gcpro all of ARGS,
2121 except that it isn't necessary to gcpro ARGS[0]. */
2122
2123Lisp_Object
2124run_hook_list_with_args (funlist, nargs, args)
2125 Lisp_Object funlist;
2126 int nargs;
2127 Lisp_Object *args;
2128{
2129 Lisp_Object sym;
2130 Lisp_Object val;
2131 struct gcpro gcpro1, gcpro2;
2132
2133 sym = args[0];
2134 GCPRO2 (sym, val);
2135
2136 for (val = funlist; CONSP (val); val = XCONS (val)->cdr)
2137 {
2138 if (EQ (XCONS (val)->car, Qt))
2139 {
2140 /* t indicates this hook has a local binding;
2141 it means to run the global binding too. */
2142 Lisp_Object globals;
2143
2144 for (globals = Fdefault_value (sym);
2145 CONSP (globals);
2146 globals = XCONS (globals)->cdr)
2147 {
2148 args[0] = XCONS (globals)->car;
77d92e05
RS
2149 /* In a global value, t should not occur. If it does, we
2150 must ignore it to avoid an endless loop. */
2151 if (!EQ (args[0], Qt))
2152 Ffuncall (nargs, args);
c933ea05
RS
2153 }
2154 }
2155 else
2156 {
2157 args[0] = XCONS (val)->car;
2158 Ffuncall (nargs, args);
2159 }
2160 }
2161 UNGCPRO;
2162 return Qnil;
2163}
7d48558f
RS
2164
2165/* Run the hook HOOK, giving each function the two args ARG1 and ARG2. */
2166
2167void
2168run_hook_with_args_2 (hook, arg1, arg2)
2169 Lisp_Object hook, arg1, arg2;
2170{
2171 Lisp_Object temp[3];
2172 temp[0] = hook;
2173 temp[1] = arg1;
2174 temp[2] = arg2;
2175
2176 Frun_hook_with_args (3, temp);
2177}
ff936e53 2178\f
db9f0278
JB
2179/* Apply fn to arg */
2180Lisp_Object
2181apply1 (fn, arg)
2182 Lisp_Object fn, arg;
2183{
a6e3fa71
JB
2184 struct gcpro gcpro1;
2185
2186 GCPRO1 (fn);
265a9e55 2187 if (NILP (arg))
a6e3fa71
JB
2188 RETURN_UNGCPRO (Ffuncall (1, &fn));
2189 gcpro1.nvars = 2;
db9f0278
JB
2190#ifdef NO_ARG_ARRAY
2191 {
2192 Lisp_Object args[2];
2193 args[0] = fn;
2194 args[1] = arg;
a6e3fa71
JB
2195 gcpro1.var = args;
2196 RETURN_UNGCPRO (Fapply (2, args));
db9f0278
JB
2197 }
2198#else /* not NO_ARG_ARRAY */
a6e3fa71 2199 RETURN_UNGCPRO (Fapply (2, &fn));
db9f0278
JB
2200#endif /* not NO_ARG_ARRAY */
2201}
2202
2203/* Call function fn on no arguments */
2204Lisp_Object
2205call0 (fn)
2206 Lisp_Object fn;
2207{
a6e3fa71
JB
2208 struct gcpro gcpro1;
2209
2210 GCPRO1 (fn);
2211 RETURN_UNGCPRO (Ffuncall (1, &fn));
db9f0278
JB
2212}
2213
15285f9f 2214/* Call function fn with 1 argument arg1 */
db9f0278
JB
2215/* ARGSUSED */
2216Lisp_Object
15285f9f
RS
2217call1 (fn, arg1)
2218 Lisp_Object fn, arg1;
db9f0278 2219{
a6e3fa71 2220 struct gcpro gcpro1;
db9f0278 2221#ifdef NO_ARG_ARRAY
a6e3fa71
JB
2222 Lisp_Object args[2];
2223
db9f0278 2224 args[0] = fn;
15285f9f 2225 args[1] = arg1;
a6e3fa71
JB
2226 GCPRO1 (args[0]);
2227 gcpro1.nvars = 2;
2228 RETURN_UNGCPRO (Ffuncall (2, args));
db9f0278 2229#else /* not NO_ARG_ARRAY */
a6e3fa71
JB
2230 GCPRO1 (fn);
2231 gcpro1.nvars = 2;
2232 RETURN_UNGCPRO (Ffuncall (2, &fn));
db9f0278
JB
2233#endif /* not NO_ARG_ARRAY */
2234}
2235
15285f9f 2236/* Call function fn with 2 arguments arg1, arg2 */
db9f0278
JB
2237/* ARGSUSED */
2238Lisp_Object
15285f9f
RS
2239call2 (fn, arg1, arg2)
2240 Lisp_Object fn, arg1, arg2;
db9f0278 2241{
a6e3fa71 2242 struct gcpro gcpro1;
db9f0278
JB
2243#ifdef NO_ARG_ARRAY
2244 Lisp_Object args[3];
2245 args[0] = fn;
15285f9f
RS
2246 args[1] = arg1;
2247 args[2] = arg2;
a6e3fa71
JB
2248 GCPRO1 (args[0]);
2249 gcpro1.nvars = 3;
2250 RETURN_UNGCPRO (Ffuncall (3, args));
db9f0278 2251#else /* not NO_ARG_ARRAY */
a6e3fa71
JB
2252 GCPRO1 (fn);
2253 gcpro1.nvars = 3;
2254 RETURN_UNGCPRO (Ffuncall (3, &fn));
db9f0278
JB
2255#endif /* not NO_ARG_ARRAY */
2256}
2257
15285f9f 2258/* Call function fn with 3 arguments arg1, arg2, arg3 */
db9f0278
JB
2259/* ARGSUSED */
2260Lisp_Object
15285f9f
RS
2261call3 (fn, arg1, arg2, arg3)
2262 Lisp_Object fn, arg1, arg2, arg3;
db9f0278 2263{
a6e3fa71 2264 struct gcpro gcpro1;
db9f0278
JB
2265#ifdef NO_ARG_ARRAY
2266 Lisp_Object args[4];
2267 args[0] = fn;
15285f9f
RS
2268 args[1] = arg1;
2269 args[2] = arg2;
2270 args[3] = arg3;
a6e3fa71
JB
2271 GCPRO1 (args[0]);
2272 gcpro1.nvars = 4;
2273 RETURN_UNGCPRO (Ffuncall (4, args));
db9f0278 2274#else /* not NO_ARG_ARRAY */
a6e3fa71
JB
2275 GCPRO1 (fn);
2276 gcpro1.nvars = 4;
2277 RETURN_UNGCPRO (Ffuncall (4, &fn));
db9f0278
JB
2278#endif /* not NO_ARG_ARRAY */
2279}
2280
15285f9f 2281/* Call function fn with 4 arguments arg1, arg2, arg3, arg4 */
a5a44b91
JB
2282/* ARGSUSED */
2283Lisp_Object
15285f9f
RS
2284call4 (fn, arg1, arg2, arg3, arg4)
2285 Lisp_Object fn, arg1, arg2, arg3, arg4;
a5a44b91
JB
2286{
2287 struct gcpro gcpro1;
2288#ifdef NO_ARG_ARRAY
2289 Lisp_Object args[5];
2290 args[0] = fn;
15285f9f
RS
2291 args[1] = arg1;
2292 args[2] = arg2;
2293 args[3] = arg3;
2294 args[4] = arg4;
a5a44b91
JB
2295 GCPRO1 (args[0]);
2296 gcpro1.nvars = 5;
2297 RETURN_UNGCPRO (Ffuncall (5, args));
2298#else /* not NO_ARG_ARRAY */
2299 GCPRO1 (fn);
2300 gcpro1.nvars = 5;
2301 RETURN_UNGCPRO (Ffuncall (5, &fn));
2302#endif /* not NO_ARG_ARRAY */
2303}
2304
15285f9f
RS
2305/* Call function fn with 5 arguments arg1, arg2, arg3, arg4, arg5 */
2306/* ARGSUSED */
2307Lisp_Object
2308call5 (fn, arg1, arg2, arg3, arg4, arg5)
2309 Lisp_Object fn, arg1, arg2, arg3, arg4, arg5;
2310{
2311 struct gcpro gcpro1;
2312#ifdef NO_ARG_ARRAY
2313 Lisp_Object args[6];
2314 args[0] = fn;
2315 args[1] = arg1;
2316 args[2] = arg2;
2317 args[3] = arg3;
2318 args[4] = arg4;
2319 args[5] = arg5;
2320 GCPRO1 (args[0]);
2321 gcpro1.nvars = 6;
2322 RETURN_UNGCPRO (Ffuncall (6, args));
2323#else /* not NO_ARG_ARRAY */
2324 GCPRO1 (fn);
2325 gcpro1.nvars = 6;
2326 RETURN_UNGCPRO (Ffuncall (6, &fn));
2327#endif /* not NO_ARG_ARRAY */
2328}
2329
2330/* Call function fn with 6 arguments arg1, arg2, arg3, arg4, arg5, arg6 */
2331/* ARGSUSED */
2332Lisp_Object
2333call6 (fn, arg1, arg2, arg3, arg4, arg5, arg6)
2334 Lisp_Object fn, arg1, arg2, arg3, arg4, arg5, arg6;
2335{
2336 struct gcpro gcpro1;
2337#ifdef NO_ARG_ARRAY
2338 Lisp_Object args[7];
2339 args[0] = fn;
2340 args[1] = arg1;
2341 args[2] = arg2;
2342 args[3] = arg3;
2343 args[4] = arg4;
2344 args[5] = arg5;
2345 args[6] = arg6;
2346 GCPRO1 (args[0]);
2347 gcpro1.nvars = 7;
2348 RETURN_UNGCPRO (Ffuncall (7, args));
2349#else /* not NO_ARG_ARRAY */
2350 GCPRO1 (fn);
2351 gcpro1.nvars = 7;
2352 RETURN_UNGCPRO (Ffuncall (7, &fn));
2353#endif /* not NO_ARG_ARRAY */
2354}
2355
db9f0278
JB
2356DEFUN ("funcall", Ffuncall, Sfuncall, 1, MANY, 0,
2357 "Call first argument as a function, passing remaining arguments to it.\n\
fd7fe9a1 2358Return the value that function returns.\n\
db9f0278
JB
2359Thus, (funcall 'cons 'x 'y) returns (x . y).")
2360 (nargs, args)
2361 int nargs;
2362 Lisp_Object *args;
2363{
2364 Lisp_Object fun;
2365 Lisp_Object funcar;
2366 int numargs = nargs - 1;
2367 Lisp_Object lisp_numargs;
2368 Lisp_Object val;
2369 struct backtrace backtrace;
2370 register Lisp_Object *internal_args;
2371 register int i;
2372
2373 QUIT;
2374 if (consing_since_gc > gc_cons_threshold)
a6e3fa71 2375 Fgarbage_collect ();
db9f0278
JB
2376
2377 if (++lisp_eval_depth > max_lisp_eval_depth)
2378 {
2379 if (max_lisp_eval_depth < 100)
2380 max_lisp_eval_depth = 100;
2381 if (lisp_eval_depth > max_lisp_eval_depth)
2382 error ("Lisp nesting exceeds max-lisp-eval-depth");
2383 }
2384
2385 backtrace.next = backtrace_list;
2386 backtrace_list = &backtrace;
2387 backtrace.function = &args[0];
2388 backtrace.args = &args[1];
2389 backtrace.nargs = nargs - 1;
2390 backtrace.evalargs = 0;
2391 backtrace.debug_on_exit = 0;
2392
2393 if (debug_on_next_call)
2394 do_debug_on_call (Qlambda);
2395
2396 retry:
2397
2398 fun = args[0];
ffd56f97
JB
2399
2400 fun = Findirect_function (fun);
db9f0278 2401
90165123 2402 if (SUBRP (fun))
db9f0278
JB
2403 {
2404 if (numargs < XSUBR (fun)->min_args
2405 || (XSUBR (fun)->max_args >= 0 && XSUBR (fun)->max_args < numargs))
2406 {
a631e24c 2407 XSETFASTINT (lisp_numargs, numargs);
db9f0278
JB
2408 return Fsignal (Qwrong_number_of_arguments, Fcons (fun, Fcons (lisp_numargs, Qnil)));
2409 }
2410
2411 if (XSUBR (fun)->max_args == UNEVALLED)
2412 return Fsignal (Qinvalid_function, Fcons (fun, Qnil));
2413
2414 if (XSUBR (fun)->max_args == MANY)
2415 {
2416 val = (*XSUBR (fun)->function) (numargs, args + 1);
2417 goto done;
2418 }
2419
2420 if (XSUBR (fun)->max_args > numargs)
2421 {
2422 internal_args = (Lisp_Object *) alloca (XSUBR (fun)->max_args * sizeof (Lisp_Object));
2423 bcopy (args + 1, internal_args, numargs * sizeof (Lisp_Object));
2424 for (i = numargs; i < XSUBR (fun)->max_args; i++)
2425 internal_args[i] = Qnil;
2426 }
2427 else
2428 internal_args = args + 1;
2429 switch (XSUBR (fun)->max_args)
2430 {
2431 case 0:
2432 val = (*XSUBR (fun)->function) ();
2433 goto done;
2434 case 1:
2435 val = (*XSUBR (fun)->function) (internal_args[0]);
2436 goto done;
2437 case 2:
2438 val = (*XSUBR (fun)->function) (internal_args[0],
2439 internal_args[1]);
2440 goto done;
2441 case 3:
2442 val = (*XSUBR (fun)->function) (internal_args[0], internal_args[1],
2443 internal_args[2]);
2444 goto done;
2445 case 4:
2446 val = (*XSUBR (fun)->function) (internal_args[0], internal_args[1],
2447 internal_args[2],
2448 internal_args[3]);
2449 goto done;
2450 case 5:
2451 val = (*XSUBR (fun)->function) (internal_args[0], internal_args[1],
2452 internal_args[2], internal_args[3],
2453 internal_args[4]);
2454 goto done;
2455 case 6:
2456 val = (*XSUBR (fun)->function) (internal_args[0], internal_args[1],
2457 internal_args[2], internal_args[3],
2458 internal_args[4], internal_args[5]);
2459 goto done;
15c65264
RS
2460 case 7:
2461 val = (*XSUBR (fun)->function) (internal_args[0], internal_args[1],
2462 internal_args[2], internal_args[3],
2463 internal_args[4], internal_args[5],
2464 internal_args[6]);
2465 goto done;
db9f0278 2466
166c822d
KH
2467 case 8:
2468 val = (*XSUBR (fun)->function) (internal_args[0], internal_args[1],
2469 internal_args[2], internal_args[3],
2470 internal_args[4], internal_args[5],
2471 internal_args[6], internal_args[7]);
2472 goto done;
2473
db9f0278 2474 default:
70ee42f7 2475
166c822d 2476 /* If a subr takes more than 8 arguments without using MANY
70ee42f7
JB
2477 or UNEVALLED, we need to extend this function to support it.
2478 Until this is done, there is no way to call the function. */
2479 abort ();
db9f0278
JB
2480 }
2481 }
90165123 2482 if (COMPILEDP (fun))
db9f0278
JB
2483 val = funcall_lambda (fun, numargs, args + 1);
2484 else
2485 {
2486 if (!CONSP (fun))
2487 return Fsignal (Qinvalid_function, Fcons (fun, Qnil));
2488 funcar = Fcar (fun);
90165123 2489 if (!SYMBOLP (funcar))
db9f0278
JB
2490 return Fsignal (Qinvalid_function, Fcons (fun, Qnil));
2491 if (EQ (funcar, Qlambda))
2492 val = funcall_lambda (fun, numargs, args + 1);
2493 else if (EQ (funcar, Qmocklisp))
2494 val = ml_apply (fun, Flist (numargs, args + 1));
2495 else if (EQ (funcar, Qautoload))
2496 {
2497 do_autoload (fun, args[0]);
2498 goto retry;
2499 }
2500 else
2501 return Fsignal (Qinvalid_function, Fcons (fun, Qnil));
2502 }
2503 done:
2504 lisp_eval_depth--;
2505 if (backtrace.debug_on_exit)
2506 val = call_debugger (Fcons (Qexit, Fcons (val, Qnil)));
2507 backtrace_list = backtrace.next;
2508 return val;
2509}
2510\f
2511Lisp_Object
2512apply_lambda (fun, args, eval_flag)
2513 Lisp_Object fun, args;
2514 int eval_flag;
2515{
2516 Lisp_Object args_left;
2517 Lisp_Object numargs;
2518 register Lisp_Object *arg_vector;
2519 struct gcpro gcpro1, gcpro2, gcpro3;
2520 register int i;
2521 register Lisp_Object tem;
2522
2523 numargs = Flength (args);
2524 arg_vector = (Lisp_Object *) alloca (XINT (numargs) * sizeof (Lisp_Object));
2525 args_left = args;
2526
2527 GCPRO3 (*arg_vector, args_left, fun);
2528 gcpro1.nvars = 0;
2529
2530 for (i = 0; i < XINT (numargs);)
2531 {
2532 tem = Fcar (args_left), args_left = Fcdr (args_left);
2533 if (eval_flag) tem = Feval (tem);
2534 arg_vector[i++] = tem;
2535 gcpro1.nvars = i;
2536 }
2537
2538 UNGCPRO;
2539
2540 if (eval_flag)
2541 {
2542 backtrace_list->args = arg_vector;
2543 backtrace_list->nargs = i;
2544 }
2545 backtrace_list->evalargs = 0;
2546 tem = funcall_lambda (fun, XINT (numargs), arg_vector);
2547
2548 /* Do the debug-on-exit now, while arg_vector still exists. */
2549 if (backtrace_list->debug_on_exit)
2550 tem = call_debugger (Fcons (Qexit, Fcons (tem, Qnil)));
2551 /* Don't do it again when we return to eval. */
2552 backtrace_list->debug_on_exit = 0;
2553 return tem;
2554}
2555
2556/* Apply a Lisp function FUN to the NARGS evaluated arguments in ARG_VECTOR
2557 and return the result of evaluation.
2558 FUN must be either a lambda-expression or a compiled-code object. */
2559
2560Lisp_Object
2561funcall_lambda (fun, nargs, arg_vector)
2562 Lisp_Object fun;
2563 int nargs;
2564 register Lisp_Object *arg_vector;
2565{
2566 Lisp_Object val, tem;
2567 register Lisp_Object syms_left;
2568 Lisp_Object numargs;
2569 register Lisp_Object next;
2570 int count = specpdl_ptr - specpdl;
2571 register int i;
2572 int optional = 0, rest = 0;
2573
2574 specbind (Qmocklisp_arguments, Qt); /* t means NOT mocklisp! */
2575
a631e24c 2576 XSETFASTINT (numargs, nargs);
db9f0278 2577
90165123 2578 if (CONSP (fun))
db9f0278 2579 syms_left = Fcar (Fcdr (fun));
90165123 2580 else if (COMPILEDP (fun))
db9f0278
JB
2581 syms_left = XVECTOR (fun)->contents[COMPILED_ARGLIST];
2582 else abort ();
2583
2584 i = 0;
265a9e55 2585 for (; !NILP (syms_left); syms_left = Fcdr (syms_left))
db9f0278
JB
2586 {
2587 QUIT;
2588 next = Fcar (syms_left);
90165123 2589 while (!SYMBOLP (next))
9ffa21d4 2590 next = Fsignal (Qinvalid_function, Fcons (fun, Qnil));
db9f0278
JB
2591 if (EQ (next, Qand_rest))
2592 rest = 1;
2593 else if (EQ (next, Qand_optional))
2594 optional = 1;
2595 else if (rest)
2596 {
9ffa21d4 2597 specbind (next, Flist (nargs - i, &arg_vector[i]));
db9f0278
JB
2598 i = nargs;
2599 }
2600 else if (i < nargs)
2601 {
2602 tem = arg_vector[i++];
2603 specbind (next, tem);
2604 }
2605 else if (!optional)
2606 return Fsignal (Qwrong_number_of_arguments, Fcons (fun, Fcons (numargs, Qnil)));
2607 else
2608 specbind (next, Qnil);
2609 }
2610
2611 if (i < nargs)
2612 return Fsignal (Qwrong_number_of_arguments, Fcons (fun, Fcons (numargs, Qnil)));
2613
90165123 2614 if (CONSP (fun))
db9f0278
JB
2615 val = Fprogn (Fcdr (Fcdr (fun)));
2616 else
ca248607
RS
2617 {
2618 /* If we have not actually read the bytecode string
2619 and constants vector yet, fetch them from the file. */
2620 if (CONSP (XVECTOR (fun)->contents[COMPILED_BYTECODE]))
661c7d6e 2621 Ffetch_bytecode (fun);
ca248607
RS
2622 val = Fbyte_code (XVECTOR (fun)->contents[COMPILED_BYTECODE],
2623 XVECTOR (fun)->contents[COMPILED_CONSTANTS],
2624 XVECTOR (fun)->contents[COMPILED_STACK_DEPTH]);
2625 }
db9f0278
JB
2626 return unbind_to (count, val);
2627}
661c7d6e
KH
2628
2629DEFUN ("fetch-bytecode", Ffetch_bytecode, Sfetch_bytecode,
2630 1, 1, 0,
2631 "If byte-compiled OBJECT is lazy-loaded, fetch it now.")
2632 (object)
2633 Lisp_Object object;
2634{
2635 Lisp_Object tem;
2636
2637 if (COMPILEDP (object)
2638 && CONSP (XVECTOR (object)->contents[COMPILED_BYTECODE]))
2639 {
2640 tem = read_doc_string (XVECTOR (object)->contents[COMPILED_BYTECODE]);
5bbdb090
RS
2641 if (!CONSP (tem))
2642 error ("invalid byte code");
661c7d6e
KH
2643 XVECTOR (object)->contents[COMPILED_BYTECODE] = XCONS (tem)->car;
2644 XVECTOR (object)->contents[COMPILED_CONSTANTS] = XCONS (tem)->cdr;
2645 }
2646 return object;
2647}
db9f0278
JB
2648\f
2649void
2650grow_specpdl ()
2651{
2652 register int count = specpdl_ptr - specpdl;
2653 if (specpdl_size >= max_specpdl_size)
2654 {
2655 if (max_specpdl_size < 400)
2656 max_specpdl_size = 400;
2657 if (specpdl_size >= max_specpdl_size)
2658 {
debee8fe
RS
2659 if (!NILP (Vdebug_on_error))
2660 /* Leave room for some specpdl in the debugger. */
2661 max_specpdl_size = specpdl_size + 100;
db9f0278
JB
2662 Fsignal (Qerror,
2663 Fcons (build_string ("Variable binding depth exceeds max-specpdl-size"), Qnil));
db9f0278
JB
2664 }
2665 }
2666 specpdl_size *= 2;
2667 if (specpdl_size > max_specpdl_size)
2668 specpdl_size = max_specpdl_size;
2669 specpdl = (struct specbinding *) xrealloc (specpdl, specpdl_size * sizeof (struct specbinding));
2670 specpdl_ptr = specpdl + count;
2671}
2672
2673void
2674specbind (symbol, value)
2675 Lisp_Object symbol, value;
2676{
db9f0278
JB
2677 Lisp_Object ovalue;
2678
9ffa21d4
JB
2679 CHECK_SYMBOL (symbol, 0);
2680
db9f0278
JB
2681 if (specpdl_ptr == specpdl + specpdl_size)
2682 grow_specpdl ();
2683 specpdl_ptr->symbol = symbol;
2684 specpdl_ptr->func = 0;
d0f7cdc8 2685 specpdl_ptr->old_value = ovalue = find_symbol_value (symbol);
db9f0278 2686 specpdl_ptr++;
3d8585a1 2687 if (BUFFER_OBJFWDP (ovalue) || KBOARD_OBJFWDP (ovalue))
db9f0278
JB
2688 store_symval_forwarding (symbol, ovalue, value);
2689 else
ab07bca0 2690 set_internal (symbol, value, 1);
db9f0278
JB
2691}
2692
2693void
2694record_unwind_protect (function, arg)
2695 Lisp_Object (*function)();
2696 Lisp_Object arg;
2697{
2698 if (specpdl_ptr == specpdl + specpdl_size)
2699 grow_specpdl ();
2700 specpdl_ptr->func = function;
2701 specpdl_ptr->symbol = Qnil;
2702 specpdl_ptr->old_value = arg;
2703 specpdl_ptr++;
2704}
2705
2706Lisp_Object
2707unbind_to (count, value)
2708 int count;
2709 Lisp_Object value;
2710{
265a9e55 2711 int quitf = !NILP (Vquit_flag);
db9f0278
JB
2712 struct gcpro gcpro1;
2713
2714 GCPRO1 (value);
2715
2716 Vquit_flag = Qnil;
2717
2718 while (specpdl_ptr != specpdl + count)
2719 {
2720 --specpdl_ptr;
2721 if (specpdl_ptr->func != 0)
2722 (*specpdl_ptr->func) (specpdl_ptr->old_value);
2723 /* Note that a "binding" of nil is really an unwind protect,
2724 so in that case the "old value" is a list of forms to evaluate. */
265a9e55 2725 else if (NILP (specpdl_ptr->symbol))
db9f0278
JB
2726 Fprogn (specpdl_ptr->old_value);
2727 else
ab07bca0 2728 set_internal (specpdl_ptr->symbol, specpdl_ptr->old_value, 1);
db9f0278 2729 }
265a9e55 2730 if (NILP (Vquit_flag) && quitf) Vquit_flag = Qt;
db9f0278
JB
2731
2732 UNGCPRO;
2733
2734 return value;
2735}
2736\f
2737#if 0
2738
2739/* Get the value of symbol's global binding, even if that binding
2740 is not now dynamically visible. */
2741
2742Lisp_Object
2743top_level_value (symbol)
2744 Lisp_Object symbol;
2745{
2746 register struct specbinding *ptr = specpdl;
2747
2748 CHECK_SYMBOL (symbol, 0);
2749 for (; ptr != specpdl_ptr; ptr++)
2750 {
2751 if (EQ (ptr->symbol, symbol))
2752 return ptr->old_value;
2753 }
2754 return Fsymbol_value (symbol);
2755}
2756
2757Lisp_Object
2758top_level_set (symbol, newval)
2759 Lisp_Object symbol, newval;
2760{
2761 register struct specbinding *ptr = specpdl;
2762
2763 CHECK_SYMBOL (symbol, 0);
2764 for (; ptr != specpdl_ptr; ptr++)
2765 {
2766 if (EQ (ptr->symbol, symbol))
2767 {
2768 ptr->old_value = newval;
2769 return newval;
2770 }
2771 }
2772 return Fset (symbol, newval);
2773}
2774
2775#endif /* 0 */
2776\f
2777DEFUN ("backtrace-debug", Fbacktrace_debug, Sbacktrace_debug, 2, 2, 0,
2778 "Set the debug-on-exit flag of eval frame LEVEL levels down to FLAG.\n\
2779The debugger is entered when that frame exits, if the flag is non-nil.")
2780 (level, flag)
2781 Lisp_Object level, flag;
2782{
2783 register struct backtrace *backlist = backtrace_list;
2784 register int i;
2785
2786 CHECK_NUMBER (level, 0);
2787
2788 for (i = 0; backlist && i < XINT (level); i++)
2789 {
2790 backlist = backlist->next;
2791 }
2792
2793 if (backlist)
265a9e55 2794 backlist->debug_on_exit = !NILP (flag);
db9f0278
JB
2795
2796 return flag;
2797}
2798
2799DEFUN ("backtrace", Fbacktrace, Sbacktrace, 0, 0, "",
2800 "Print a trace of Lisp function calls currently active.\n\
2801Output stream used is value of `standard-output'.")
2802 ()
2803{
2804 register struct backtrace *backlist = backtrace_list;
2805 register int i;
2806 Lisp_Object tail;
2807 Lisp_Object tem;
2808 extern Lisp_Object Vprint_level;
2809 struct gcpro gcpro1;
2810
a631e24c 2811 XSETFASTINT (Vprint_level, 3);
db9f0278
JB
2812
2813 tail = Qnil;
2814 GCPRO1 (tail);
2815
2816 while (backlist)
2817 {
2818 write_string (backlist->debug_on_exit ? "* " : " ", 2);
2819 if (backlist->nargs == UNEVALLED)
2820 {
2821 Fprin1 (Fcons (*backlist->function, *backlist->args), Qnil);
b6703b02 2822 write_string ("\n", -1);
db9f0278
JB
2823 }
2824 else
2825 {
2826 tem = *backlist->function;
2827 Fprin1 (tem, Qnil); /* This can QUIT */
2828 write_string ("(", -1);
2829 if (backlist->nargs == MANY)
2830 {
2831 for (tail = *backlist->args, i = 0;
265a9e55 2832 !NILP (tail);
db9f0278
JB
2833 tail = Fcdr (tail), i++)
2834 {
2835 if (i) write_string (" ", -1);
2836 Fprin1 (Fcar (tail), Qnil);
2837 }
2838 }
2839 else
2840 {
2841 for (i = 0; i < backlist->nargs; i++)
2842 {
2843 if (i) write_string (" ", -1);
2844 Fprin1 (backlist->args[i], Qnil);
2845 }
2846 }
b6703b02 2847 write_string (")\n", -1);
db9f0278 2848 }
db9f0278
JB
2849 backlist = backlist->next;
2850 }
2851
2852 Vprint_level = Qnil;
2853 UNGCPRO;
2854 return Qnil;
2855}
2856
2857DEFUN ("backtrace-frame", Fbacktrace_frame, Sbacktrace_frame, 1, 1, "",
79e8bfbf 2858 "Return the function and arguments NFRAMES up from current execution point.\n\
db9f0278
JB
2859If that frame has not evaluated the arguments yet (or is a special form),\n\
2860the value is (nil FUNCTION ARG-FORMS...).\n\
2861If that frame has evaluated its arguments and called its function already,\n\
2862the value is (t FUNCTION ARG-VALUES...).\n\
2863A &rest arg is represented as the tail of the list ARG-VALUES.\n\
2864FUNCTION is whatever was supplied as car of evaluated list,\n\
2865or a lambda expression for macro calls.\n\
79e8bfbf 2866If NFRAMES is more than the number of frames, the value is nil.")
db9f0278
JB
2867 (nframes)
2868 Lisp_Object nframes;
2869{
2870 register struct backtrace *backlist = backtrace_list;
2871 register int i;
2872 Lisp_Object tem;
2873
2874 CHECK_NATNUM (nframes, 0);
2875
2876 /* Find the frame requested. */
b6703b02 2877 for (i = 0; backlist && i < XFASTINT (nframes); i++)
db9f0278
JB
2878 backlist = backlist->next;
2879
2880 if (!backlist)
2881 return Qnil;
2882 if (backlist->nargs == UNEVALLED)
2883 return Fcons (Qnil, Fcons (*backlist->function, *backlist->args));
2884 else
2885 {
2886 if (backlist->nargs == MANY)
2887 tem = *backlist->args;
2888 else
2889 tem = Flist (backlist->nargs, backlist->args);
2890
2891 return Fcons (Qt, Fcons (*backlist->function, tem));
2892 }
2893}
2894\f
2895syms_of_eval ()
2896{
2897 DEFVAR_INT ("max-specpdl-size", &max_specpdl_size,
7eaada67
RS
2898 "*Limit on number of Lisp variable bindings & unwind-protects.\n\
2899If Lisp code tries to make more than this many at once,\n\
2900an error is signaled.");
db9f0278
JB
2901
2902 DEFVAR_INT ("max-lisp-eval-depth", &max_lisp_eval_depth,
7eaada67 2903 "*Limit on depth in `eval', `apply' and `funcall' before error.\n\
db9f0278
JB
2904This limit is to catch infinite recursions for you before they cause\n\
2905actual stack overflow in C, which would be fatal for Emacs.\n\
2906You can safely make it considerably larger than its default value,\n\
2907if that proves inconveniently small.");
2908
2909 DEFVAR_LISP ("quit-flag", &Vquit_flag,
2910 "Non-nil causes `eval' to abort, unless `inhibit-quit' is non-nil.\n\
d0b68896 2911Typing C-g sets `quit-flag' non-nil, regardless of `inhibit-quit'.");
db9f0278
JB
2912 Vquit_flag = Qnil;
2913
2914 DEFVAR_LISP ("inhibit-quit", &Vinhibit_quit,
2915 "Non-nil inhibits C-g quitting from happening immediately.\n\
2916Note that `quit-flag' will still be set by typing C-g,\n\
690337b7 2917so a quit will be signaled as soon as `inhibit-quit' is nil.\n\
db9f0278
JB
2918To prevent this happening, set `quit-flag' to nil\n\
2919before making `inhibit-quit' nil.");
2920 Vinhibit_quit = Qnil;
2921
ad236261
JB
2922 Qinhibit_quit = intern ("inhibit-quit");
2923 staticpro (&Qinhibit_quit);
2924
db9f0278
JB
2925 Qautoload = intern ("autoload");
2926 staticpro (&Qautoload);
2927
2928 Qdebug_on_error = intern ("debug-on-error");
2929 staticpro (&Qdebug_on_error);
2930
2931 Qmacro = intern ("macro");
2932 staticpro (&Qmacro);
2933
2934 /* Note that the process handling also uses Qexit, but we don't want
2935 to staticpro it twice, so we just do it here. */
2936 Qexit = intern ("exit");
2937 staticpro (&Qexit);
2938
2939 Qinteractive = intern ("interactive");
2940 staticpro (&Qinteractive);
2941
2942 Qcommandp = intern ("commandp");
2943 staticpro (&Qcommandp);
2944
2945 Qdefun = intern ("defun");
2946 staticpro (&Qdefun);
2947
2948 Qand_rest = intern ("&rest");
2949 staticpro (&Qand_rest);
2950
2951 Qand_optional = intern ("&optional");
2952 staticpro (&Qand_optional);
2953
128c0f66 2954 DEFVAR_LISP ("stack-trace-on-error", &Vstack_trace_on_error,
db9f0278 2955 "*Non-nil means automatically display a backtrace buffer\n\
128c0f66
RM
2956after any error that is handled by the editor command loop.\n\
2957If the value is a list, an error only means to display a backtrace\n\
2958if one of its condition symbols appears in the list.");
2959 Vstack_trace_on_error = Qnil;
db9f0278 2960
128c0f66 2961 DEFVAR_LISP ("debug-on-error", &Vdebug_on_error,
db9f0278
JB
2962 "*Non-nil means enter debugger if an error is signaled.\n\
2963Does not apply to errors handled by `condition-case'.\n\
128c0f66
RM
2964If the value is a list, an error only means to enter the debugger\n\
2965if one of its condition symbols appears in the list.\n\
db9f0278 2966See also variable `debug-on-quit'.");
128c0f66 2967 Vdebug_on_error = Qnil;
db9f0278 2968
fc950e09
KH
2969 DEFVAR_LISP ("debug-ignored-errors", &Vdebug_ignored_errors,
2970 "*List of errors for which the debugger should not be called.\n\
2971Each element may be a condition-name or a regexp that matches error messages.\n\
2972If any element applies to a given error, that error skips the debugger\n\
2973and just returns to top level.\n\
2974This overrides the variable `debug-on-error'.\n\
2975It does not apply to errors handled by `condition-case'.");
2976 Vdebug_ignored_errors = Qnil;
2977
db9f0278 2978 DEFVAR_BOOL ("debug-on-quit", &debug_on_quit,
d0b68896 2979 "*Non-nil means enter debugger if quit is signaled (C-g, for example).\n\
1b7d8239 2980Does not apply if quit is handled by a `condition-case'.");
db9f0278
JB
2981 debug_on_quit = 0;
2982
2983 DEFVAR_BOOL ("debug-on-next-call", &debug_on_next_call,
2984 "Non-nil means enter debugger before next `eval', `apply' or `funcall'.");
2985
2986 DEFVAR_LISP ("debugger", &Vdebugger,
2987 "Function to call to invoke debugger.\n\
2988If due to frame exit, args are `exit' and the value being returned;\n\
2989 this function's value will be returned instead of that.\n\
2990If due to error, args are `error' and a list of the args to `signal'.\n\
2991If due to `apply' or `funcall' entry, one arg, `lambda'.\n\
2992If due to `eval' entry, one arg, t.");
2993 Vdebugger = Qnil;
2994
61ede770
RS
2995 DEFVAR_LISP ("signal-hook-function", &Vsignal_hook_function,
2996 "If non-nil, this is a function for `signal' to call.\n\
2997It receives the same arguments that `signal' was given.\n\
2998The Edebug package uses this to regain control.");
2999 Vsignal_hook_function = Qnil;
3000
db9f0278
JB
3001 Qmocklisp_arguments = intern ("mocklisp-arguments");
3002 staticpro (&Qmocklisp_arguments);
3003 DEFVAR_LISP ("mocklisp-arguments", &Vmocklisp_arguments,
3004 "While in a mocklisp function, the list of its unevaluated args.");
3005 Vmocklisp_arguments = Qt;
3006
57a6e758 3007 DEFVAR_LISP ("debug-on-signal", &Vdebug_on_signal,
61ede770
RS
3008 "*Non-nil means call the debugger regardless of condition handlers.\n\
3009Note that `debug-on-error', `debug-on-quit' and friends\n\
3010still determine whether to handle the particular condition.");
57a6e758 3011 Vdebug_on_signal = Qnil;
61ede770 3012
6e6e9f08
RS
3013 Vrun_hooks = intern ("run-hooks");
3014 staticpro (&Vrun_hooks);
db9f0278
JB
3015
3016 staticpro (&Vautoload_queue);
3017 Vautoload_queue = Qnil;
3018
3019 defsubr (&Sor);
3020 defsubr (&Sand);
3021 defsubr (&Sif);
3022 defsubr (&Scond);
3023 defsubr (&Sprogn);
3024 defsubr (&Sprog1);
3025 defsubr (&Sprog2);
3026 defsubr (&Ssetq);
3027 defsubr (&Squote);
3028 defsubr (&Sfunction);
3029 defsubr (&Sdefun);
3030 defsubr (&Sdefmacro);
3031 defsubr (&Sdefvar);
3032 defsubr (&Sdefconst);
3033 defsubr (&Suser_variable_p);
3034 defsubr (&Slet);
3035 defsubr (&SletX);
3036 defsubr (&Swhile);
3037 defsubr (&Smacroexpand);
3038 defsubr (&Scatch);
3039 defsubr (&Sthrow);
3040 defsubr (&Sunwind_protect);
3041 defsubr (&Scondition_case);
3042 defsubr (&Ssignal);
3043 defsubr (&Sinteractive_p);
3044 defsubr (&Scommandp);
3045 defsubr (&Sautoload);
3046 defsubr (&Seval);
3047 defsubr (&Sapply);
3048 defsubr (&Sfuncall);
ff936e53
SM
3049 defsubr (&Srun_hooks);
3050 defsubr (&Srun_hook_with_args);
3051 defsubr (&Srun_hook_with_args_until_success);
3052 defsubr (&Srun_hook_with_args_until_failure);
661c7d6e 3053 defsubr (&Sfetch_bytecode);
db9f0278
JB
3054 defsubr (&Sbacktrace_debug);
3055 defsubr (&Sbacktrace);
3056 defsubr (&Sbacktrace_frame);
3057}