Mercurial > hg > xemacs-beta
annotate src/eval.c @ 5313:5ed261fd2bd9
Unrool a load-time loop at macro expansion time, cl-macs.el
2010-12-29 Aidan Kehoe <kehoea@parhasard.net>
* cl-macs.el (inline-side-effect-free-compiler-macros):
Unroll a loop here at macro-expansion time, so these compiler
macros are compiled. Use #'eql instead of #'eq in a couple of
places for better style.
author | Aidan Kehoe <kehoea@parhasard.net> |
---|---|
date | Wed, 29 Dec 2010 23:43:10 +0000 |
parents | c096d8051f89 |
children | 39304a35b6b3 8d29f1c4bb98 |
rev | line source |
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428 | 1 /* Evaluator for XEmacs Lisp interpreter. |
2 Copyright (C) 1985-1987, 1992-1994 Free Software Foundation, Inc. | |
3 Copyright (C) 1995 Sun Microsystems, Inc. | |
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4 Copyright (C) 2000, 2001, 2002, 2003, 2004, 2010 Ben Wing. |
428 | 5 |
6 This file is part of XEmacs. | |
7 | |
8 XEmacs is free software; you can redistribute it and/or modify it | |
9 under the terms of the GNU General Public License as published by the | |
10 Free Software Foundation; either version 2, or (at your option) any | |
11 later version. | |
12 | |
13 XEmacs is distributed in the hope that it will be useful, but WITHOUT | |
14 ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or | |
15 FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License | |
16 for more details. | |
17 | |
18 You should have received a copy of the GNU General Public License | |
19 along with XEmacs; see the file COPYING. If not, write to | |
20 the Free Software Foundation, Inc., 59 Temple Place - Suite 330, | |
21 Boston, MA 02111-1307, USA. */ | |
22 | |
23 /* Synched up with: FSF 19.30 (except for Fsignal), Mule 2.0. */ | |
24 | |
853 | 25 /* Authorship: |
26 | |
27 Based on code from pre-release FSF 19, c. 1991. | |
28 Some work by Richard Mlynarik long ago (c. 1993?) -- | |
29 added call-with-condition-handler; synch. up to released FSF 19.7 | |
30 for lemacs 19.8. some signal changes. | |
31 Various work by Ben Wing, 1995-1996: | |
32 added all stuff dealing with trapping errors, suspended-errors, etc. | |
33 added most Fsignal front ends. | |
34 added warning code. | |
35 reworked the Fsignal code and synched the rest up to FSF 19.30. | |
36 Some changes by Martin Buchholz c. 1999? | |
37 e.g. PRIMITIVE_FUNCALL macros. | |
38 New call_trapping_problems code and large comments below | |
39 by Ben Wing, Mar-Apr 2000. | |
40 */ | |
41 | |
42 /* This file has been Mule-ized. */ | |
43 | |
44 /* What is in this file? | |
45 | |
46 This file contains the engine for the ELisp interpreter in XEmacs. | |
47 The engine does the actual work of implementing function calls, | |
48 form evaluation, non-local exits (catch, throw, signal, | |
49 condition-case, call-with-condition-handler), unwind-protects, | |
50 dynamic bindings, let constructs, backtraces, etc. You might say | |
51 that this module is the very heart of XEmacs, and everything else | |
52 in XEmacs is merely an auxiliary module implementing some specific | |
53 functionality that may be called from the heart at an appropriate | |
54 time. | |
55 | |
56 The only exception is the alloc.c module, which implements the | |
57 framework upon which this module (eval.c) works. alloc.c works | |
58 with creating the actual Lisp objects themselves and garbage | |
1960 | 59 collecting them as necessary, presenting a nice, high-level |
853 | 60 interface for object creation, deletion, access, and modification. |
61 | |
62 The only other exception that could be cited is the event-handling | |
63 module in event-stream.c. From its perspective, it is also the | |
64 heart of XEmacs, and controls exactly what gets done at what time. | |
65 From its perspective, eval.c is merely one of the auxiliary modules | |
66 out there that can be invoked by event-stream.c. | |
67 | |
68 Although the event-stream-centric view is a convenient fiction that | |
69 makes sense particularly from the user's perspective and from the | |
70 perspective of time, the engine-centric view is actually closest to | |
71 the truth, because anywhere within the event-stream module, you are | |
72 still somewhere in a Lisp backtrace, and event-loops are begun by | |
73 functions such as `command-loop-1', a Lisp function. | |
74 | |
75 As the Lisp engine is doing its thing, it maintains the state of | |
1960 | 76 the engine primarily in five list-like items, which are: |
853 | 77 |
78 -- the backtrace list | |
79 -- the catchtag list | |
80 -- the condition-handler list | |
81 -- the specbind list | |
82 -- the GCPRO list. | |
83 | |
84 These are described in detail in the next comment. | |
85 | |
86 --ben | |
87 */ | |
88 | |
89 /* Note that there are five separate lists used to maintain state in | |
90 the evaluator. All of them conceptually are stacks (last-in, | |
91 first-out). All non-local exits happen ultimately through the | |
92 catch/throw mechanism, which uses one of the five lists (the | |
93 catchtag list) and records the current state of the others in each | |
94 frame of the list (some other information is recorded and restored | |
95 as well, such as the current eval depth), so that all the state of | |
96 the evaluator is restored properly when a non-local exit occurs. | |
97 (Note that the current state of the condition-handler list is not | |
98 recorded in the catchtag list. Instead, when a condition-case or | |
99 call-with-condition-handler is set up, it installs an | |
100 unwind-protect on the specbind list to restore the appropriate | |
101 setting for the condition-handler list. During the course of | |
102 handling the non-local exit, all entries on the specbind list that | |
103 are past the location stored in the catch frame are "unwound" | |
104 (i.e. variable bindings are restored and unwind-protects are | |
105 executed), so the condition-handler list gets reset properly. | |
106 | |
107 The five lists are | |
108 | |
109 1. The backtrace list, which is chained through `struct backtrace's | |
110 declared in the stack frames of various primitives, and keeps | |
111 track of all Lisp function call entries and exits. | |
112 2. The catchtag list, which is chained through `struct catchtag's | |
113 declared in the stack frames of internal_catch and condition_case_1, | |
114 and keeps track of information needed to reset the internal state | |
115 of the evaluator to the state that was current when the catch or | |
116 condition-case were established, in the event of a non-local exit. | |
117 3. The condition-handler list, which is a simple Lisp list with new | |
118 entries consed onto the front of the list. It records condition-cases | |
119 and call-with-condition-handlers established either from C or from | |
120 Lisp. Unlike with the other lists (but similar to everything else | |
121 of a similar nature in the rest of the C and Lisp code), it takes care | |
122 of restoring itself appropriately in the event of a non-local exit | |
123 through the use of the unwind-protect mechanism. | |
124 4. The specbind list, which is a contiguous array of `struct specbinding's, | |
125 expanded as necessary using realloc(). It holds dynamic variable | |
126 bindings (the only kind we currently have in ELisp) and unwind-protects. | |
127 5. The GCPRO list, which is chained through `struct gcpro's declared in | |
128 the stack frames of any functions that need to GC-protect Lisp_Objects | |
129 declared on the stack. This is one of the most fragile areas of the | |
130 entire scheme -- you must not forget to UNGCPRO at the end of your | |
131 function, you must make sure you GCPRO in many circumstances you don't | |
132 think you have to, etc. See the internals manual for more information | |
133 about this. | |
134 | |
135 --ben | |
136 */ | |
137 | |
428 | 138 #include <config.h> |
139 #include "lisp.h" | |
140 | |
141 #include "commands.h" | |
142 #include "backtrace.h" | |
143 #include "bytecode.h" | |
144 #include "buffer.h" | |
872 | 145 #include "console-impl.h" |
853 | 146 #include "device.h" |
147 #include "frame.h" | |
148 #include "lstream.h" | |
428 | 149 #include "opaque.h" |
1292 | 150 #include "profile.h" |
853 | 151 #include "window.h" |
428 | 152 |
153 struct backtrace *backtrace_list; | |
154 | |
155 /* Macros for calling subrs with an argument list whose length is only | |
156 known at runtime. See EXFUN and DEFUN for similar hackery. */ | |
157 | |
158 #define AV_0(av) | |
159 #define AV_1(av) av[0] | |
160 #define AV_2(av) AV_1(av), av[1] | |
161 #define AV_3(av) AV_2(av), av[2] | |
162 #define AV_4(av) AV_3(av), av[3] | |
163 #define AV_5(av) AV_4(av), av[4] | |
164 #define AV_6(av) AV_5(av), av[5] | |
165 #define AV_7(av) AV_6(av), av[6] | |
166 #define AV_8(av) AV_7(av), av[7] | |
167 | |
168 #define PRIMITIVE_FUNCALL_1(fn, av, ac) \ | |
444 | 169 (((Lisp_Object (*)(EXFUN_##ac)) (fn)) (AV_##ac (av))) |
428 | 170 |
171 /* If subrs take more than 8 arguments, more cases need to be added | |
172 to this switch. (But wait - don't do it - if you really need | |
173 a SUBR with more than 8 arguments, use max_args == MANY. | |
853 | 174 Or better, considering using a property list as one of your args. |
428 | 175 See the DEFUN macro in lisp.h) */ |
176 #define PRIMITIVE_FUNCALL(rv, fn, av, ac) do { \ | |
177 void (*PF_fn)(void) = (void (*)(void)) fn; \ | |
178 Lisp_Object *PF_av = (av); \ | |
179 switch (ac) \ | |
180 { \ | |
436 | 181 default:rv = PRIMITIVE_FUNCALL_1(PF_fn, PF_av, 0); break; \ |
428 | 182 case 1: rv = PRIMITIVE_FUNCALL_1(PF_fn, PF_av, 1); break; \ |
183 case 2: rv = PRIMITIVE_FUNCALL_1(PF_fn, PF_av, 2); break; \ | |
184 case 3: rv = PRIMITIVE_FUNCALL_1(PF_fn, PF_av, 3); break; \ | |
185 case 4: rv = PRIMITIVE_FUNCALL_1(PF_fn, PF_av, 4); break; \ | |
186 case 5: rv = PRIMITIVE_FUNCALL_1(PF_fn, PF_av, 5); break; \ | |
187 case 6: rv = PRIMITIVE_FUNCALL_1(PF_fn, PF_av, 6); break; \ | |
188 case 7: rv = PRIMITIVE_FUNCALL_1(PF_fn, PF_av, 7); break; \ | |
189 case 8: rv = PRIMITIVE_FUNCALL_1(PF_fn, PF_av, 8); break; \ | |
190 } \ | |
191 } while (0) | |
192 | |
193 #define FUNCALL_SUBR(rv, subr, av, ac) \ | |
194 PRIMITIVE_FUNCALL (rv, subr_function (subr), av, ac); | |
195 | |
196 | |
197 /* This is the list of current catches (and also condition-cases). | |
853 | 198 This is a stack: the most recent catch is at the head of the list. |
199 The list is threaded through the stack frames of the C functions | |
200 that set up the catches; this is similar to the way the GCPRO list | |
201 is handled, but different from the condition-handler list (which is | |
202 a simple Lisp list) and the specbind stack, which is a contiguous | |
203 array of `struct specbinding's, grown (using realloc()) as | |
204 necessary. (Note that all four of these lists behave as a stacks.) | |
205 | |
3025 | 206 Catches are created by declaring a `struct catchtag' locally, |
853 | 207 filling the .TAG field in with the tag, and doing a setjmp() on |
208 .JMP. Fthrow() will store the value passed to it in .VAL and | |
209 longjmp() back to .JMP, back to the function that established the | |
210 catch. This will always be either internal_catch() (catches | |
211 established internally or through `catch') or condition_case_1 | |
212 (condition-cases established internally or through | |
213 `condition-case'). | |
428 | 214 |
215 The catchtag also records the current position in the | |
216 call stack (stored in BACKTRACE_LIST), the current position | |
217 in the specpdl stack (used for variable bindings and | |
218 unwind-protects), the value of LISP_EVAL_DEPTH, and the | |
219 current position in the GCPRO stack. All of these are | |
220 restored by Fthrow(). | |
853 | 221 */ |
428 | 222 |
223 struct catchtag *catchlist; | |
224 | |
853 | 225 /* A special tag that can be used internally from C code to catch |
226 every attempt to throw past this level. */ | |
227 Lisp_Object Vcatch_everything_tag; | |
228 | |
428 | 229 Lisp_Object Qautoload, Qmacro, Qexit; |
230 Lisp_Object Qinteractive, Qcommandp, Qdefun, Qprogn, Qvalues; | |
231 Lisp_Object Vquit_flag, Vinhibit_quit; | |
232 Lisp_Object Qand_rest, Qand_optional; | |
233 Lisp_Object Qdebug_on_error, Qstack_trace_on_error; | |
234 Lisp_Object Qdebug_on_signal, Qstack_trace_on_signal; | |
235 Lisp_Object Qdebugger; | |
236 Lisp_Object Qinhibit_quit; | |
887 | 237 Lisp_Object Qfinalize_list; |
428 | 238 Lisp_Object Qrun_hooks; |
239 Lisp_Object Qsetq; | |
240 Lisp_Object Qdisplay_warning; | |
241 Lisp_Object Vpending_warnings, Vpending_warnings_tail; | |
242 Lisp_Object Qif; | |
243 | |
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244 Lisp_Object Qthrow; |
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245 Lisp_Object Qobsolete_throw; |
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246 Lisp_Object Qmultiple_value_list_internal; |
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247 |
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248 static int first_desired_multiple_value; |
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249 /* Used outside this file, somewhat uncleanly, in the IGNORE_MULTIPLE_VALUES |
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250 macro: */ |
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251 int multiple_value_current_limit; |
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252 |
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253 Fixnum Vmultiple_values_limit; |
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254 |
853 | 255 /* Flags specifying which operations are currently inhibited. */ |
256 int inhibit_flags; | |
257 | |
258 /* Buffers, frames, windows, devices, and consoles created since most | |
259 recent active | |
260 call_trapping_problems (INHIBIT_EXISTING_PERMANENT_DISPLAY_OBJECT_DELETION). | |
261 */ | |
262 Lisp_Object Vdeletable_permanent_display_objects; | |
263 | |
264 /* Buffers created since most recent active | |
265 call_trapping_problems (INHIBIT_EXISTING_BUFFER_TEXT_MODIFICATION). */ | |
266 Lisp_Object Vmodifiable_buffers; | |
793 | 267 |
268 /* Minimum level at which warnings are logged. Below this, they're ignored | |
269 entirely -- not even generated. */ | |
270 Lisp_Object Vlog_warning_minimum_level; | |
271 | |
428 | 272 /* Non-nil means record all fset's and provide's, to be undone |
273 if the file being autoloaded is not fully loaded. | |
274 They are recorded by being consed onto the front of Vautoload_queue: | |
275 (FUN . ODEF) for a defun, (OFEATURES . nil) for a provide. */ | |
276 Lisp_Object Vautoload_queue; | |
277 | |
278 /* Current number of specbindings allocated in specpdl. */ | |
279 int specpdl_size; | |
280 | |
281 /* Pointer to beginning of specpdl. */ | |
282 struct specbinding *specpdl; | |
283 | |
284 /* Pointer to first unused element in specpdl. */ | |
285 struct specbinding *specpdl_ptr; | |
286 | |
287 /* specpdl_ptr - specpdl */ | |
288 int specpdl_depth_counter; | |
289 | |
290 /* Maximum size allowed for specpdl allocation */ | |
458 | 291 Fixnum max_specpdl_size; |
428 | 292 |
293 /* Depth in Lisp evaluations and function calls. */ | |
1292 | 294 int lisp_eval_depth; |
428 | 295 |
296 /* Maximum allowed depth in Lisp evaluations and function calls. */ | |
458 | 297 Fixnum max_lisp_eval_depth; |
428 | 298 |
299 /* Nonzero means enter debugger before next function call */ | |
300 static int debug_on_next_call; | |
301 | |
1292 | 302 int backtrace_with_internal_sections; |
303 | |
428 | 304 /* List of conditions (non-nil atom means all) which cause a backtrace |
305 if an error is handled by the command loop's error handler. */ | |
306 Lisp_Object Vstack_trace_on_error; | |
307 | |
308 /* List of conditions (non-nil atom means all) which enter the debugger | |
309 if an error is handled by the command loop's error handler. */ | |
310 Lisp_Object Vdebug_on_error; | |
311 | |
312 /* List of conditions and regexps specifying error messages which | |
313 do not enter the debugger even if Vdebug_on_error says they should. */ | |
314 Lisp_Object Vdebug_ignored_errors; | |
315 | |
316 /* List of conditions (non-nil atom means all) which cause a backtrace | |
317 if any error is signalled. */ | |
318 Lisp_Object Vstack_trace_on_signal; | |
319 | |
320 /* List of conditions (non-nil atom means all) which enter the debugger | |
321 if any error is signalled. */ | |
322 Lisp_Object Vdebug_on_signal; | |
323 | |
324 /* Nonzero means enter debugger if a quit signal | |
325 is handled by the command loop's error handler. | |
326 | |
327 From lisp, this is a boolean variable and may have the values 0 and 1. | |
328 But, eval.c temporarily uses the second bit of this variable to indicate | |
329 that a critical_quit is in progress. The second bit is reset immediately | |
330 after it is processed in signal_call_debugger(). */ | |
331 int debug_on_quit; | |
332 | |
333 #if 0 /* FSFmacs */ | |
334 /* entering_debugger is basically equivalent */ | |
335 /* The value of num_nonmacro_input_chars as of the last time we | |
336 started to enter the debugger. If we decide to enter the debugger | |
337 again when this is still equal to num_nonmacro_input_chars, then we | |
338 know that the debugger itself has an error, and we should just | |
339 signal the error instead of entering an infinite loop of debugger | |
340 invocations. */ | |
341 int when_entered_debugger; | |
342 #endif | |
343 | |
344 /* Nonzero means we are trying to enter the debugger. | |
345 This is to prevent recursive attempts. | |
346 Cleared by the debugger calling Fbacktrace */ | |
347 static int entering_debugger; | |
348 | |
349 /* Function to call to invoke the debugger */ | |
350 Lisp_Object Vdebugger; | |
351 | |
853 | 352 /* List of condition handlers currently in effect. |
353 The elements of this lists were at one point in the past | |
354 threaded through the stack frames of Fcondition_case and | |
355 related functions, but now are stored separately in a normal | |
356 stack. When an error is signaled (by calling Fsignal, below), | |
357 this list is searched for an element that applies. | |
428 | 358 |
359 Each element of this list is one of the following: | |
360 | |
853 | 361 -- A list of a handler function and possibly args to pass to the |
362 function. This is a handler established with the Lisp primitive | |
363 `call-with-condition-handler' or related C function | |
364 call_with_condition_handler(): | |
365 | |
366 If the handler function is an opaque ptr object, it is a handler | |
367 that was established in C using call_with_condition_handler(), | |
368 and the contents of the object are a function pointer which takes | |
369 three arguments, the signal name and signal data (same arguments | |
370 passed to `signal') and a third Lisp_Object argument, specified | |
371 in the call to call_with_condition_handler() and stored as the | |
372 second element of the list containing the handler functionl. | |
373 | |
374 If the handler function is a regular Lisp_Object, it is a handler | |
375 that was established using `call-with-condition-handler'. | |
376 Currently there are no more arguments in the list containing the | |
377 handler function, and only one argument is passed to the handler | |
378 function: a cons of the signal name and signal data arguments | |
379 passed to `signal'. | |
380 | |
381 -- A list whose car is Qunbound and whose cdr is Qt. This is a | |
382 special condition-case handler established by C code with | |
383 condition_case_1(). All errors are trapped; the debugger is not | |
384 invoked even if `debug-on-error' was set. | |
385 | |
386 -- A list whose car is Qunbound and whose cdr is Qerror. This is a | |
387 special condition-case handler established by C code with | |
388 condition_case_1(). It is like Qt except that the debugger is | |
389 invoked normally if it is called for. | |
390 | |
391 -- A list whose car is Qunbound and whose cdr is a list of lists | |
392 (CONDITION-NAME BODY ...) exactly as in `condition-case'. This is | |
393 a normal `condition-case' handler. | |
394 | |
395 Note that in all cases *except* the first, there is a corresponding | |
396 catch, whose TAG is the value of Vcondition_handlers just after the | |
397 handler data just described is pushed onto it. The reason is that | |
398 `condition-case' handlers need to throw back to the place where the | |
399 handler was installed before invoking it, while | |
400 `call-with-condition-handler' handlers are invoked in the | |
401 environment that `signal' was invoked in. */ | |
402 | |
403 | |
428 | 404 static Lisp_Object Vcondition_handlers; |
405 | |
853 | 406 /* I think we should keep this enabled all the time, not just when |
407 error checking is enabled, because if one of these puppies pops up, | |
408 it will trash the stack if not caught, making it that much harder to | |
409 debug. It doesn't cause speed loss. */ | |
442 | 410 #define DEFEND_AGAINST_THROW_RECURSION |
411 | |
412 #ifdef DEFEND_AGAINST_THROW_RECURSION | |
428 | 413 /* Used for error catching purposes by throw_or_bomb_out */ |
414 static int throw_level; | |
442 | 415 #endif |
416 | |
1123 | 417 static int warning_will_be_discarded (Lisp_Object level); |
2532 | 418 static Lisp_Object maybe_get_trapping_problems_backtrace (void); |
1123 | 419 |
428 | 420 |
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421 |
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422 /* When parsing keyword arguments; is some element of NARGS |
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423 :allow-other-keys, and is that element followed by a non-nil Lisp |
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424 object? */ |
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425 |
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426 Boolint |
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427 non_nil_allow_other_keys_p (Elemcount offset, int nargs, Lisp_Object *args) |
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428 { |
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429 Lisp_Object key, value; |
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430 while (offset + 1 < nargs) |
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431 { |
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432 key = args[offset++]; |
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433 value = args[offset++]; |
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434 if (EQ (key, Q_allow_other_keys)) |
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435 { |
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436 /* The ANSI Common Lisp standard says the first value for a given |
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437 keyword overrides. */ |
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438 return !NILP (value); |
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439 } |
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440 } |
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441 return 0; |
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442 } |
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443 |
428 | 444 /************************************************************************/ |
445 /* The subr object type */ | |
446 /************************************************************************/ | |
447 | |
448 static void | |
2286 | 449 print_subr (Lisp_Object obj, Lisp_Object printcharfun, int UNUSED (escapeflag)) |
428 | 450 { |
451 Lisp_Subr *subr = XSUBR (obj); | |
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452 const Ascbyte *header = |
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453 (subr->max_args == UNEVALLED) ? "#<special-operator " : "#<subr "; |
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454 const Ascbyte *name = subr_name (subr); |
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455 const Ascbyte *trailer = subr->prompt ? " (interactive)>" : ">"; |
428 | 456 |
457 if (print_readably) | |
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458 printing_unreadable_object_fmt ("%s%s%s", header, name, trailer); |
428 | 459 |
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460 write_ascstring (printcharfun, header); |
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461 write_ascstring (printcharfun, name); |
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462 write_ascstring (printcharfun, trailer); |
428 | 463 } |
464 | |
1204 | 465 static const struct memory_description subr_description[] = { |
2551 | 466 { XD_DOC_STRING, offsetof (Lisp_Subr, doc), 0, { 0 }, XD_FLAG_NO_KKCC }, |
428 | 467 { XD_END } |
468 }; | |
469 | |
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470 DEFINE_DUMPABLE_FROB_BLOCK_LISP_OBJECT ("subr", subr, |
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471 0, print_subr, 0, 0, 0, |
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472 subr_description, |
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473 Lisp_Subr); |
428 | 474 |
475 /************************************************************************/ | |
476 /* Entering the debugger */ | |
477 /************************************************************************/ | |
478 | |
853 | 479 static Lisp_Object |
480 current_warning_level (void) | |
481 { | |
482 if (inhibit_flags & ISSUE_WARNINGS_AT_DEBUG_LEVEL) | |
483 return Qdebug; | |
484 else | |
485 return Qwarning; | |
486 } | |
487 | |
428 | 488 /* Actually call the debugger. ARG is a list of args that will be |
489 passed to the debugger function, as follows; | |
490 | |
491 If due to frame exit, args are `exit' and the value being returned; | |
492 this function's value will be returned instead of that. | |
493 If due to error, args are `error' and a list of the args to `signal'. | |
494 If due to `apply' or `funcall' entry, one arg, `lambda'. | |
495 If due to `eval' entry, one arg, t. | |
496 | |
497 */ | |
498 | |
499 static Lisp_Object | |
500 call_debugger_259 (Lisp_Object arg) | |
501 { | |
502 return apply1 (Vdebugger, arg); | |
503 } | |
504 | |
505 /* Call the debugger, doing some encapsulation. We make sure we have | |
506 some room on the eval and specpdl stacks, and bind entering_debugger | |
507 to 1 during this call. This is used to trap errors that may occur | |
508 when entering the debugger (e.g. the value of `debugger' is invalid), | |
509 so that the debugger will not be recursively entered if debug-on-error | |
510 is set. (Otherwise, XEmacs would infinitely recurse, attempting to | |
511 enter the debugger.) entering_debugger gets reset to 0 as soon | |
512 as a backtrace is displayed, so that further errors can indeed be | |
513 handled normally. | |
514 | |
3025 | 515 We also establish a catch for `debugger'. If the debugger function |
428 | 516 throws to this instead of returning a value, it means that the user |
517 pressed 'c' (pretend like the debugger was never entered). The | |
518 function then returns Qunbound. (If the user pressed 'r', for | |
519 return a value, then the debugger function returns normally with | |
520 this value.) | |
521 | |
522 The difference between 'c' and 'r' is as follows: | |
523 | |
524 debug-on-call: | |
525 No difference. The call proceeds as normal. | |
526 debug-on-exit: | |
527 With 'r', the specified value is returned as the function's | |
528 return value. With 'c', the value that would normally be | |
529 returned is returned. | |
530 signal: | |
531 With 'r', the specified value is returned as the return | |
532 value of `signal'. (This is the only time that `signal' | |
533 can return, instead of making a non-local exit.) With `c', | |
534 `signal' will continue looking for handlers as if the | |
535 debugger was never entered, and will probably end up | |
536 throwing to a handler or to top-level. | |
537 */ | |
538 | |
539 static Lisp_Object | |
540 call_debugger (Lisp_Object arg) | |
541 { | |
542 int threw; | |
543 Lisp_Object val; | |
544 int speccount; | |
545 | |
853 | 546 debug_on_next_call = 0; |
547 | |
548 if (inhibit_flags & INHIBIT_ENTERING_DEBUGGER) | |
549 { | |
550 if (!(inhibit_flags & INHIBIT_WARNING_ISSUE)) | |
551 warn_when_safe | |
552 (Qdebugger, current_warning_level (), | |
553 "Unable to enter debugger within critical section"); | |
554 return Qunbound; | |
555 } | |
556 | |
428 | 557 if (lisp_eval_depth + 20 > max_lisp_eval_depth) |
558 max_lisp_eval_depth = lisp_eval_depth + 20; | |
559 if (specpdl_size + 40 > max_specpdl_size) | |
560 max_specpdl_size = specpdl_size + 40; | |
853 | 561 |
562 speccount = internal_bind_int (&entering_debugger, 1); | |
2532 | 563 val = internal_catch (Qdebugger, call_debugger_259, arg, &threw, 0, 0); |
428 | 564 |
771 | 565 return unbind_to_1 (speccount, ((threw) |
428 | 566 ? Qunbound /* Not returning a value */ |
567 : val)); | |
568 } | |
569 | |
570 /* Called when debug-on-exit behavior is called for. Enter the debugger | |
571 with the appropriate args for this. VAL is the exit value that is | |
572 about to be returned. */ | |
573 | |
574 static Lisp_Object | |
575 do_debug_on_exit (Lisp_Object val) | |
576 { | |
577 /* This is falsified by call_debugger */ | |
578 Lisp_Object v = call_debugger (list2 (Qexit, val)); | |
579 | |
580 return !UNBOUNDP (v) ? v : val; | |
581 } | |
582 | |
583 /* Called when debug-on-call behavior is called for. Enter the debugger | |
584 with the appropriate args for this. VAL is either t for a call | |
3025 | 585 through `eval' or `lambda' for a call through `funcall'. |
428 | 586 |
587 #### The differentiation here between EVAL and FUNCALL is bogus. | |
588 FUNCALL can be defined as | |
589 | |
590 (defmacro func (fun &rest args) | |
591 (cons (eval fun) args)) | |
592 | |
593 and should be treated as such. | |
594 */ | |
595 | |
596 static void | |
597 do_debug_on_call (Lisp_Object code) | |
598 { | |
599 debug_on_next_call = 0; | |
600 backtrace_list->debug_on_exit = 1; | |
601 call_debugger (list1 (code)); | |
602 } | |
603 | |
604 /* LIST is the value of one of the variables `debug-on-error', | |
605 `debug-on-signal', `stack-trace-on-error', or `stack-trace-on-signal', | |
606 and CONDITIONS is the list of error conditions associated with | |
607 the error being signalled. This returns non-nil if LIST | |
608 matches CONDITIONS. (A nil value for LIST does not match | |
609 CONDITIONS. A non-list value for LIST does match CONDITIONS. | |
610 A list matches CONDITIONS when one of the symbols in LIST is the | |
611 same as one of the symbols in CONDITIONS.) */ | |
612 | |
613 static int | |
614 wants_debugger (Lisp_Object list, Lisp_Object conditions) | |
615 { | |
616 if (NILP (list)) | |
617 return 0; | |
618 if (! CONSP (list)) | |
619 return 1; | |
620 | |
621 while (CONSP (conditions)) | |
622 { | |
2552 | 623 Lisp_Object curr, tail; |
624 curr = XCAR (conditions); | |
428 | 625 for (tail = list; CONSP (tail); tail = XCDR (tail)) |
2552 | 626 if (EQ (XCAR (tail), curr)) |
428 | 627 return 1; |
628 conditions = XCDR (conditions); | |
629 } | |
630 return 0; | |
631 } | |
632 | |
633 | |
634 /* Return 1 if an error with condition-symbols CONDITIONS, | |
635 and described by SIGNAL-DATA, should skip the debugger | |
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636 according to debug-ignored-errors. */ |
428 | 637 |
638 static int | |
639 skip_debugger (Lisp_Object conditions, Lisp_Object data) | |
640 { | |
641 /* This function can GC */ | |
642 Lisp_Object tail; | |
643 int first_string = 1; | |
644 Lisp_Object error_message = Qnil; | |
645 | |
646 for (tail = Vdebug_ignored_errors; CONSP (tail); tail = XCDR (tail)) | |
647 { | |
648 if (STRINGP (XCAR (tail))) | |
649 { | |
650 if (first_string) | |
651 { | |
652 error_message = Ferror_message_string (data); | |
653 first_string = 0; | |
654 } | |
655 if (fast_lisp_string_match (XCAR (tail), error_message) >= 0) | |
656 return 1; | |
657 } | |
658 else | |
659 { | |
660 Lisp_Object contail; | |
661 | |
662 for (contail = conditions; CONSP (contail); contail = XCDR (contail)) | |
663 if (EQ (XCAR (tail), XCAR (contail))) | |
664 return 1; | |
665 } | |
666 } | |
667 | |
668 return 0; | |
669 } | |
670 | |
671 /* Actually generate a backtrace on STREAM. */ | |
672 | |
673 static Lisp_Object | |
674 backtrace_259 (Lisp_Object stream) | |
675 { | |
676 return Fbacktrace (stream, Qt); | |
677 } | |
678 | |
1130 | 679 #ifdef DEBUG_XEMACS |
680 | |
681 static void | |
682 trace_out_and_die (Lisp_Object err) | |
683 { | |
684 Fdisplay_error (err, Qt); | |
685 backtrace_259 (Qnil); | |
686 stderr_out ("XEmacs exiting to debugger.\n"); | |
687 Fforce_debugging_signal (Qt); | |
688 /* Unlikely to be reached */ | |
689 } | |
690 | |
691 #endif | |
692 | |
428 | 693 /* An error was signaled. Maybe call the debugger, if the `debug-on-error' |
694 etc. variables call for this. CONDITIONS is the list of conditions | |
695 associated with the error being signalled. SIG is the actual error | |
696 being signalled, and DATA is the associated data (these are exactly | |
697 the same as the arguments to `signal'). ACTIVE_HANDLERS is the | |
698 list of error handlers that are to be put in place while the debugger | |
699 is called. This is generally the remaining handlers that are | |
700 outside of the innermost handler trapping this error. This way, | |
701 if the same error occurs inside of the debugger, you usually don't get | |
702 the debugger entered recursively. | |
703 | |
704 This function returns Qunbound if it didn't call the debugger or if | |
705 the user asked (through 'c') that XEmacs should pretend like the | |
706 debugger was never entered. Otherwise, it returns the value | |
707 that the user specified with `r'. (Note that much of the time, | |
708 the user will abort with C-], and we will never have a chance to | |
709 return anything at all.) | |
710 | |
711 SIGNAL_VARS_ONLY means we should only look at debug-on-signal | |
712 and stack-trace-on-signal to control whether we do anything. | |
713 This is so that debug-on-error doesn't make handled errors | |
714 cause the debugger to get invoked. | |
715 | |
716 STACK_TRACE_DISPLAYED and DEBUGGER_ENTERED are used so that | |
717 those functions aren't done more than once in a single `signal' | |
718 session. */ | |
719 | |
720 static Lisp_Object | |
721 signal_call_debugger (Lisp_Object conditions, | |
722 Lisp_Object sig, Lisp_Object data, | |
723 Lisp_Object active_handlers, | |
724 int signal_vars_only, | |
725 int *stack_trace_displayed, | |
726 int *debugger_entered) | |
727 { | |
853 | 728 #ifdef PIGS_FLY_AND_ALL_C_CODE_CAN_HANDLE_GC_OCCURRING_ALMOST_ANYWHERE |
428 | 729 /* This function can GC */ |
853 | 730 #else /* reality check */ |
731 /* This function cannot GC because it inhibits GC during its operation */ | |
732 #endif | |
733 | |
428 | 734 Lisp_Object val = Qunbound; |
735 Lisp_Object all_handlers = Vcondition_handlers; | |
736 Lisp_Object temp_data = Qnil; | |
853 | 737 int outer_speccount = specpdl_depth(); |
738 int speccount; | |
739 | |
740 #ifdef PIGS_FLY_AND_ALL_C_CODE_CAN_HANDLE_GC_OCCURRING_ALMOST_ANYWHERE | |
428 | 741 struct gcpro gcpro1, gcpro2; |
742 GCPRO2 (all_handlers, temp_data); | |
853 | 743 #else |
744 begin_gc_forbidden (); | |
745 #endif | |
746 | |
747 speccount = specpdl_depth(); | |
428 | 748 |
749 Vcondition_handlers = active_handlers; | |
750 | |
751 temp_data = Fcons (sig, data); /* needed for skip_debugger */ | |
752 | |
753 if (!entering_debugger && !*stack_trace_displayed && !signal_vars_only | |
754 && wants_debugger (Vstack_trace_on_error, conditions) | |
755 && !skip_debugger (conditions, temp_data)) | |
756 { | |
757 specbind (Qdebug_on_error, Qnil); | |
758 specbind (Qstack_trace_on_error, Qnil); | |
759 specbind (Qdebug_on_signal, Qnil); | |
760 specbind (Qstack_trace_on_signal, Qnil); | |
761 | |
442 | 762 if (!noninteractive) |
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763 internal_with_output_to_temp_buffer (build_ascstring ("*Backtrace*"), |
442 | 764 backtrace_259, |
765 Qnil, | |
766 Qnil); | |
767 else /* in batch mode, we want this going to stderr. */ | |
768 backtrace_259 (Qnil); | |
771 | 769 unbind_to (speccount); |
428 | 770 *stack_trace_displayed = 1; |
771 } | |
772 | |
773 if (!entering_debugger && !*debugger_entered && !signal_vars_only | |
774 && (EQ (sig, Qquit) | |
775 ? debug_on_quit | |
776 : wants_debugger (Vdebug_on_error, conditions)) | |
777 && !skip_debugger (conditions, temp_data)) | |
778 { | |
779 debug_on_quit &= ~2; /* reset critical bit */ | |
1123 | 780 |
428 | 781 specbind (Qdebug_on_error, Qnil); |
782 specbind (Qstack_trace_on_error, Qnil); | |
783 specbind (Qdebug_on_signal, Qnil); | |
784 specbind (Qstack_trace_on_signal, Qnil); | |
785 | |
1130 | 786 #ifdef DEBUG_XEMACS |
787 if (noninteractive) | |
788 trace_out_and_die (Fcons (sig, data)); | |
789 #endif | |
790 | |
428 | 791 val = call_debugger (list2 (Qerror, (Fcons (sig, data)))); |
853 | 792 unbind_to (speccount); |
428 | 793 *debugger_entered = 1; |
794 } | |
795 | |
796 if (!entering_debugger && !*stack_trace_displayed | |
797 && wants_debugger (Vstack_trace_on_signal, conditions)) | |
798 { | |
799 specbind (Qdebug_on_error, Qnil); | |
800 specbind (Qstack_trace_on_error, Qnil); | |
801 specbind (Qdebug_on_signal, Qnil); | |
802 specbind (Qstack_trace_on_signal, Qnil); | |
803 | |
442 | 804 if (!noninteractive) |
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805 internal_with_output_to_temp_buffer (build_ascstring ("*Backtrace*"), |
442 | 806 backtrace_259, |
807 Qnil, | |
808 Qnil); | |
809 else /* in batch mode, we want this going to stderr. */ | |
810 backtrace_259 (Qnil); | |
771 | 811 unbind_to (speccount); |
428 | 812 *stack_trace_displayed = 1; |
813 } | |
814 | |
815 if (!entering_debugger && !*debugger_entered | |
816 && (EQ (sig, Qquit) | |
817 ? debug_on_quit | |
818 : wants_debugger (Vdebug_on_signal, conditions))) | |
819 { | |
820 debug_on_quit &= ~2; /* reset critical bit */ | |
1123 | 821 |
428 | 822 specbind (Qdebug_on_error, Qnil); |
823 specbind (Qstack_trace_on_error, Qnil); | |
824 specbind (Qdebug_on_signal, Qnil); | |
825 specbind (Qstack_trace_on_signal, Qnil); | |
826 | |
1130 | 827 #ifdef DEBUG_XEMACS |
828 if (noninteractive) | |
829 trace_out_and_die (Fcons (sig, data)); | |
830 #endif | |
831 | |
428 | 832 val = call_debugger (list2 (Qerror, (Fcons (sig, data)))); |
833 *debugger_entered = 1; | |
834 } | |
835 | |
853 | 836 #ifdef PIGS_FLY_AND_ALL_C_CODE_CAN_HANDLE_GC_OCCURRING_ALMOST_ANYWHERE |
428 | 837 UNGCPRO; |
853 | 838 #endif |
428 | 839 Vcondition_handlers = all_handlers; |
853 | 840 return unbind_to_1 (outer_speccount, val); |
428 | 841 } |
842 | |
843 | |
844 /************************************************************************/ | |
845 /* The basic special forms */ | |
846 /************************************************************************/ | |
847 | |
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848 /* Except for Fprogn(), the basic special operators below are only called |
428 | 849 from interpreted code. The byte compiler turns them into bytecodes. */ |
850 | |
851 DEFUN ("or", For, 0, UNEVALLED, 0, /* | |
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852 Eval ARGS until one of them yields non-nil, then return that value. |
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853 The remaining ARGS are not evalled at all. |
428 | 854 If all args return nil, return nil. |
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855 |
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856 Any multiple values from the last form, and only from the last form, are |
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857 passed back. See `values' and `multiple-value-bind'. |
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858 |
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859 arguments: (&rest ARGS) |
428 | 860 */ |
861 (args)) | |
862 { | |
863 /* This function can GC */ | |
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864 Lisp_Object val = Qnil; |
428 | 865 |
4677
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866 LIST_LOOP_3 (arg, args, tail) |
428 | 867 { |
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868 if (!NILP (IGNORE_MULTIPLE_VALUES (val = Feval (arg)))) |
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869 { |
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870 if (NILP (XCDR (tail))) |
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Support full Common Lisp multiple values in C.
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|
871 { |
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872 /* Pass back multiple values if this is the last one: */ |
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873 return val; |
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|
874 } |
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875 |
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876 return IGNORE_MULTIPLE_VALUES (val); |
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877 } |
428 | 878 } |
879 | |
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880 return val; |
428 | 881 } |
882 | |
883 DEFUN ("and", Fand, 0, UNEVALLED, 0, /* | |
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884 Eval ARGS until one of them yields nil, then return nil. |
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885 The remaining ARGS are not evalled at all. |
428 | 886 If no arg yields nil, return the last arg's value. |
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887 |
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888 Any multiple values from the last form, and only from the last form, are |
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889 passed back. See `values' and `multiple-value-bind'. |
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890 |
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891 arguments: (&rest ARGS) |
428 | 892 */ |
893 (args)) | |
894 { | |
895 /* This function can GC */ | |
4686
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896 Lisp_Object val = Qt; |
428 | 897 |
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898 LIST_LOOP_3 (arg, args, tail) |
428 | 899 { |
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900 if (NILP (IGNORE_MULTIPLE_VALUES (val = Feval (arg)))) |
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901 { |
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902 if (NILP (XCDR (tail))) |
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903 { |
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904 /* Pass back any multiple values for the last form: */ |
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905 return val; |
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906 } |
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907 |
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908 return Qnil; |
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909 } |
428 | 910 } |
911 | |
912 return val; | |
913 } | |
914 | |
915 DEFUN ("if", Fif, 2, UNEVALLED, 0, /* | |
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916 If COND yields non-nil, do THEN, else do ELSE. |
428 | 917 Returns the value of THEN or the value of the last of the ELSE's. |
918 THEN must be one expression, but ELSE... can be zero or more expressions. | |
919 If COND yields nil, and there are no ELSE's, the value is nil. | |
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920 |
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921 arguments: (COND THEN &rest ELSE) |
428 | 922 */ |
923 (args)) | |
924 { | |
925 /* This function can GC */ | |
926 Lisp_Object condition = XCAR (args); | |
927 Lisp_Object then_form = XCAR (XCDR (args)); | |
928 Lisp_Object else_forms = XCDR (XCDR (args)); | |
929 | |
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930 if (!NILP (IGNORE_MULTIPLE_VALUES (Feval (condition)))) |
428 | 931 return Feval (then_form); |
932 else | |
933 return Fprogn (else_forms); | |
934 } | |
935 | |
936 /* Macros `when' and `unless' are trivially defined in Lisp, | |
937 but it helps for bootstrapping to have them ALWAYS defined. */ | |
938 | |
939 DEFUN ("when", Fwhen, 1, MANY, 0, /* | |
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940 If COND yields non-nil, do BODY, else return nil. |
428 | 941 BODY can be zero or more expressions. If BODY is nil, return nil. |
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942 |
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943 arguments: (COND &rest BODY) |
428 | 944 */ |
945 (int nargs, Lisp_Object *args)) | |
946 { | |
947 Lisp_Object cond = args[0]; | |
948 Lisp_Object body; | |
853 | 949 |
428 | 950 switch (nargs) |
951 { | |
952 case 1: body = Qnil; break; | |
953 case 2: body = args[1]; break; | |
954 default: body = Fcons (Qprogn, Flist (nargs-1, args+1)); break; | |
955 } | |
956 | |
957 return list3 (Qif, cond, body); | |
958 } | |
959 | |
960 DEFUN ("unless", Funless, 1, MANY, 0, /* | |
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961 If COND yields nil, do BODY, else return nil. |
428 | 962 BODY can be zero or more expressions. If BODY is nil, return nil. |
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963 |
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964 arguments: (COND &rest BODY) |
428 | 965 */ |
966 (int nargs, Lisp_Object *args)) | |
967 { | |
968 Lisp_Object cond = args[0]; | |
969 Lisp_Object body = Flist (nargs-1, args+1); | |
970 return Fcons (Qif, Fcons (cond, Fcons (Qnil, body))); | |
971 } | |
972 | |
973 DEFUN ("cond", Fcond, 0, UNEVALLED, 0, /* | |
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974 Try each clause until one succeeds. |
428 | 975 Each clause looks like (CONDITION BODY...). CONDITION is evaluated |
976 and, if the value is non-nil, this clause succeeds: | |
977 then the expressions in BODY are evaluated and the last one's | |
978 value is the value of the cond-form. | |
979 If no clause succeeds, cond returns nil. | |
980 If a clause has one element, as in (CONDITION), | |
981 CONDITION's value if non-nil is returned from the cond-form. | |
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982 |
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983 arguments: (&rest CLAUSES) |
428 | 984 */ |
985 (args)) | |
986 { | |
987 /* This function can GC */ | |
442 | 988 REGISTER Lisp_Object val; |
428 | 989 |
990 LIST_LOOP_2 (clause, args) | |
991 { | |
992 CHECK_CONS (clause); | |
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993 if (!NILP (val = IGNORE_MULTIPLE_VALUES (Feval (XCAR (clause))))) |
428 | 994 { |
995 if (!NILP (clause = XCDR (clause))) | |
996 { | |
997 CHECK_TRUE_LIST (clause); | |
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998 /* Pass back any multiple values here: */ |
428 | 999 val = Fprogn (clause); |
1000 } | |
1001 return val; | |
1002 } | |
1003 } | |
1004 | |
1005 return Qnil; | |
1006 } | |
1007 | |
1008 DEFUN ("progn", Fprogn, 0, UNEVALLED, 0, /* | |
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1009 Eval BODY forms sequentially and return value of last one. |
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1010 |
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1011 arguments: (&rest BODY) |
428 | 1012 */ |
1013 (args)) | |
1014 { | |
1015 /* This function can GC */ | |
1016 /* Caller must provide a true list in ARGS */ | |
442 | 1017 REGISTER Lisp_Object val = Qnil; |
428 | 1018 struct gcpro gcpro1; |
1019 | |
1020 GCPRO1 (args); | |
1021 | |
1022 { | |
1023 LIST_LOOP_2 (form, args) | |
1024 val = Feval (form); | |
1025 } | |
1026 | |
1027 UNGCPRO; | |
1028 return val; | |
1029 } | |
1030 | |
1031 /* Fprog1() is the canonical example of a function that must GCPRO a | |
1032 Lisp_Object across calls to Feval(). */ | |
1033 | |
1034 DEFUN ("prog1", Fprog1, 1, UNEVALLED, 0, /* | |
1035 Similar to `progn', but the value of the first form is returned. | |
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1036 |
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1037 All the arguments are evaluated sequentially. The value of FIRST is saved |
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1038 during evaluation of the remaining args, whose values are discarded. |
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1039 |
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1040 arguments: (FIRST &rest BODY) |
428 | 1041 */ |
1042 (args)) | |
1043 { | |
1849 | 1044 Lisp_Object val; |
428 | 1045 struct gcpro gcpro1; |
1046 | |
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1047 val = IGNORE_MULTIPLE_VALUES (Feval (Fcar (args))); |
428 | 1048 |
1049 GCPRO1 (val); | |
1050 | |
1051 { | |
1052 LIST_LOOP_2 (form, XCDR (args)) | |
1053 Feval (form); | |
1054 } | |
1055 | |
1056 UNGCPRO; | |
1057 return val; | |
1058 } | |
1059 | |
1060 DEFUN ("prog2", Fprog2, 2, UNEVALLED, 0, /* | |
1061 Similar to `progn', but the value of the second form is returned. | |
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1062 |
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1063 All the arguments are evaluated sequentially. The value of SECOND is saved |
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1064 during evaluation of the remaining args, whose values are discarded. |
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1065 |
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1066 arguments: (FIRST SECOND &rest BODY) |
428 | 1067 */ |
1068 (args)) | |
1069 { | |
1070 /* This function can GC */ | |
1849 | 1071 Lisp_Object val; |
428 | 1072 struct gcpro gcpro1; |
1073 | |
1074 Feval (XCAR (args)); | |
1075 args = XCDR (args); | |
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1076 |
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1077 val = IGNORE_MULTIPLE_VALUES (Feval (XCAR (args))); |
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1078 |
428 | 1079 args = XCDR (args); |
1080 | |
1081 GCPRO1 (val); | |
1082 | |
442 | 1083 { |
1084 LIST_LOOP_2 (form, args) | |
1085 Feval (form); | |
1086 } | |
428 | 1087 |
1088 UNGCPRO; | |
1089 return val; | |
1090 } | |
1091 | |
1092 DEFUN ("let*", FletX, 1, UNEVALLED, 0, /* | |
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1093 Bind variables according to VARLIST then eval BODY. |
428 | 1094 The value of the last form in BODY is returned. |
1095 Each element of VARLIST is a symbol (which is bound to nil) | |
1096 or a list (SYMBOL VALUEFORM) (which binds SYMBOL to the value of VALUEFORM). | |
1097 Each VALUEFORM can refer to the symbols already bound by this VARLIST. | |
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1098 |
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1099 arguments: (VARLIST &rest BODY) |
428 | 1100 */ |
1101 (args)) | |
1102 { | |
1103 /* This function can GC */ | |
1104 Lisp_Object varlist = XCAR (args); | |
1105 Lisp_Object body = XCDR (args); | |
1106 int speccount = specpdl_depth(); | |
1107 | |
1108 EXTERNAL_LIST_LOOP_3 (var, varlist, tail) | |
1109 { | |
1110 Lisp_Object symbol, value, tem; | |
1111 if (SYMBOLP (var)) | |
1112 symbol = var, value = Qnil; | |
1113 else | |
1114 { | |
1115 CHECK_CONS (var); | |
1116 symbol = XCAR (var); | |
1117 tem = XCDR (var); | |
1118 if (NILP (tem)) | |
1119 value = Qnil; | |
1120 else | |
1121 { | |
1122 CHECK_CONS (tem); | |
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1123 value = IGNORE_MULTIPLE_VALUES (Feval (XCAR (tem))); |
428 | 1124 if (!NILP (XCDR (tem))) |
563 | 1125 sferror |
428 | 1126 ("`let' bindings can have only one value-form", var); |
1127 } | |
1128 } | |
1129 specbind (symbol, value); | |
1130 } | |
771 | 1131 return unbind_to_1 (speccount, Fprogn (body)); |
428 | 1132 } |
1133 | |
1134 DEFUN ("let", Flet, 1, UNEVALLED, 0, /* | |
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1135 Bind variables according to VARLIST then eval BODY. |
428 | 1136 The value of the last form in BODY is returned. |
1137 Each element of VARLIST is a symbol (which is bound to nil) | |
1138 or a list (SYMBOL VALUEFORM) (which binds SYMBOL to the value of VALUEFORM). | |
1139 All the VALUEFORMs are evalled before any symbols are bound. | |
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1140 |
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1141 arguments: (VARLIST &rest BODY) |
428 | 1142 */ |
1143 (args)) | |
1144 { | |
1145 /* This function can GC */ | |
1146 Lisp_Object varlist = XCAR (args); | |
1147 Lisp_Object body = XCDR (args); | |
1148 int speccount = specpdl_depth(); | |
1149 Lisp_Object *temps; | |
1150 int idx; | |
1151 struct gcpro gcpro1; | |
1152 | |
1153 /* Make space to hold the values to give the bound variables. */ | |
1154 { | |
1155 int varcount; | |
1156 GET_EXTERNAL_LIST_LENGTH (varlist, varcount); | |
1157 temps = alloca_array (Lisp_Object, varcount); | |
1158 } | |
1159 | |
1160 /* Compute the values and store them in `temps' */ | |
1161 GCPRO1 (*temps); | |
1162 gcpro1.nvars = 0; | |
1163 | |
1164 idx = 0; | |
442 | 1165 { |
1166 LIST_LOOP_2 (var, varlist) | |
1167 { | |
1168 Lisp_Object *value = &temps[idx++]; | |
1169 if (SYMBOLP (var)) | |
1170 *value = Qnil; | |
1171 else | |
1172 { | |
1173 Lisp_Object tem; | |
1174 CHECK_CONS (var); | |
1175 tem = XCDR (var); | |
1176 if (NILP (tem)) | |
1177 *value = Qnil; | |
1178 else | |
1179 { | |
1180 CHECK_CONS (tem); | |
4677
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
1181 *value = IGNORE_MULTIPLE_VALUES (Feval (XCAR (tem))); |
442 | 1182 gcpro1.nvars = idx; |
1183 | |
1184 if (!NILP (XCDR (tem))) | |
563 | 1185 sferror |
442 | 1186 ("`let' bindings can have only one value-form", var); |
1187 } | |
1188 } | |
1189 } | |
1190 } | |
428 | 1191 |
1192 idx = 0; | |
442 | 1193 { |
1194 LIST_LOOP_2 (var, varlist) | |
1195 { | |
1196 specbind (SYMBOLP (var) ? var : XCAR (var), temps[idx++]); | |
1197 } | |
1198 } | |
428 | 1199 |
1200 UNGCPRO; | |
1201 | |
771 | 1202 return unbind_to_1 (speccount, Fprogn (body)); |
428 | 1203 } |
1204 | |
1205 DEFUN ("while", Fwhile, 1, UNEVALLED, 0, /* | |
4642
48b45a606961
Support #'function-arglist with built-in special forms.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4624
diff
changeset
|
1206 If TEST yields non-nil, eval BODY... and repeat. |
428 | 1207 The order of execution is thus TEST, BODY, TEST, BODY and so on |
1208 until TEST returns nil. | |
4642
48b45a606961
Support #'function-arglist with built-in special forms.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4624
diff
changeset
|
1209 |
48b45a606961
Support #'function-arglist with built-in special forms.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4624
diff
changeset
|
1210 arguments: (TEST &rest BODY) |
428 | 1211 */ |
1212 (args)) | |
1213 { | |
1214 /* This function can GC */ | |
1215 Lisp_Object test = XCAR (args); | |
1216 Lisp_Object body = XCDR (args); | |
1217 | |
4677
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
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4657
diff
changeset
|
1218 while (!NILP (IGNORE_MULTIPLE_VALUES (Feval (test)))) |
428 | 1219 { |
1220 QUIT; | |
1221 Fprogn (body); | |
1222 } | |
1223 | |
1224 return Qnil; | |
1225 } | |
1226 | |
1227 DEFUN ("setq", Fsetq, 0, UNEVALLED, 0, /* | |
1228 \(setq SYM VAL SYM VAL ...): set each SYM to the value of its VAL. | |
1229 The symbols SYM are variables; they are literal (not evaluated). | |
1230 The values VAL are expressions; they are evaluated. | |
1231 Thus, (setq x (1+ y)) sets `x' to the value of `(1+ y)'. | |
1232 The second VAL is not computed until after the first SYM is set, and so on; | |
1233 each VAL can use the new value of variables set earlier in the `setq'. | |
1234 The return value of the `setq' form is the value of the last VAL. | |
1235 */ | |
1236 (args)) | |
1237 { | |
1238 /* This function can GC */ | |
1239 int nargs; | |
2421 | 1240 Lisp_Object retval = Qnil; |
428 | 1241 |
1242 GET_LIST_LENGTH (args, nargs); | |
1243 | |
1244 if (nargs & 1) /* Odd number of arguments? */ | |
1245 Fsignal (Qwrong_number_of_arguments, list2 (Qsetq, make_int (nargs))); | |
1246 | |
2421 | 1247 GC_PROPERTY_LIST_LOOP_3 (symbol, val, args) |
428 | 1248 { |
1249 val = Feval (val); | |
4677
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
1250 val = IGNORE_MULTIPLE_VALUES (val); |
428 | 1251 Fset (symbol, val); |
2421 | 1252 retval = val; |
428 | 1253 } |
1254 | |
2421 | 1255 END_GC_PROPERTY_LIST_LOOP (symbol); |
1256 | |
1257 return retval; | |
428 | 1258 } |
1259 | |
1260 DEFUN ("quote", Fquote, 1, UNEVALLED, 0, /* | |
1261 Return the argument, without evaluating it. `(quote x)' yields `x'. | |
3794 | 1262 |
3842 | 1263 `quote' differs from `function' in that it is a hint that an expression is |
1264 data, not a function. In particular, under some circumstances the byte | |
1265 compiler will compile an expression quoted with `function', but it will | |
1266 never do so for an expression quoted with `quote'. These issues are most | |
1267 important for lambda expressions (see `lambda'). | |
1268 | |
1269 There is an alternative, more readable, reader syntax for `quote': a Lisp | |
1270 object preceded by `''. Thus, `'x' is equivalent to `(quote x)', in all | |
1271 contexts. A print function may use either. Internally the expression is | |
1272 represented as `(quote x)'). | |
5265
5663ae9a8989
Warn at compile time, error at runtime, with (quote X Y), (function X Y).
Aidan Kehoe <kehoea@parhasard.net>
parents:
5222
diff
changeset
|
1273 |
5663ae9a8989
Warn at compile time, error at runtime, with (quote X Y), (function X Y).
Aidan Kehoe <kehoea@parhasard.net>
parents:
5222
diff
changeset
|
1274 arguments: (OBJECT) |
428 | 1275 */ |
1276 (args)) | |
1277 { | |
5207
1096ef427b56
Error on too many arguments to #'function, #'quote.
Aidan Kehoe <kehoea@parhasard.net>
parents:
5146
diff
changeset
|
1278 int nargs; |
1096ef427b56
Error on too many arguments to #'function, #'quote.
Aidan Kehoe <kehoea@parhasard.net>
parents:
5146
diff
changeset
|
1279 |
1096ef427b56
Error on too many arguments to #'function, #'quote.
Aidan Kehoe <kehoea@parhasard.net>
parents:
5146
diff
changeset
|
1280 GET_LIST_LENGTH (args, nargs); |
1096ef427b56
Error on too many arguments to #'function, #'quote.
Aidan Kehoe <kehoea@parhasard.net>
parents:
5146
diff
changeset
|
1281 if (nargs != 1) |
1096ef427b56
Error on too many arguments to #'function, #'quote.
Aidan Kehoe <kehoea@parhasard.net>
parents:
5146
diff
changeset
|
1282 { |
1096ef427b56
Error on too many arguments to #'function, #'quote.
Aidan Kehoe <kehoea@parhasard.net>
parents:
5146
diff
changeset
|
1283 Fsignal (Qwrong_number_of_arguments, |
1096ef427b56
Error on too many arguments to #'function, #'quote.
Aidan Kehoe <kehoea@parhasard.net>
parents:
5146
diff
changeset
|
1284 list2 (Qquote, make_int (nargs))); |
1096ef427b56
Error on too many arguments to #'function, #'quote.
Aidan Kehoe <kehoea@parhasard.net>
parents:
5146
diff
changeset
|
1285 } |
1096ef427b56
Error on too many arguments to #'function, #'quote.
Aidan Kehoe <kehoea@parhasard.net>
parents:
5146
diff
changeset
|
1286 |
428 | 1287 return XCAR (args); |
1288 } | |
1289 | |
4744
17f7e9191c0b
Rationalise duplicated functionality, #'custom-quote, #'quote-maybe.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4693
diff
changeset
|
1290 /* Originally, this was just a function -- but `custom' used a garden- |
17f7e9191c0b
Rationalise duplicated functionality, #'custom-quote, #'quote-maybe.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4693
diff
changeset
|
1291 variety version, so why not make it a subr? */ |
17f7e9191c0b
Rationalise duplicated functionality, #'custom-quote, #'quote-maybe.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4693
diff
changeset
|
1292 DEFUN ("quote-maybe", Fquote_maybe, 1, 1, 0, /* |
17f7e9191c0b
Rationalise duplicated functionality, #'custom-quote, #'quote-maybe.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4693
diff
changeset
|
1293 Quote EXPR if it is not self quoting. |
17f7e9191c0b
Rationalise duplicated functionality, #'custom-quote, #'quote-maybe.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4693
diff
changeset
|
1294 |
17f7e9191c0b
Rationalise duplicated functionality, #'custom-quote, #'quote-maybe.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4693
diff
changeset
|
1295 In contrast with `quote', this is a function, not a special form; its |
17f7e9191c0b
Rationalise duplicated functionality, #'custom-quote, #'quote-maybe.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4693
diff
changeset
|
1296 argument is evaluated before `quote-maybe' is called. It returns either |
17f7e9191c0b
Rationalise duplicated functionality, #'custom-quote, #'quote-maybe.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4693
diff
changeset
|
1297 EXPR (if it is self-quoting) or a list `(quote EXPR)' if it is not |
17f7e9191c0b
Rationalise duplicated functionality, #'custom-quote, #'quote-maybe.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4693
diff
changeset
|
1298 self-quoting. Lists starting with the symbol `lambda' are regarded as |
17f7e9191c0b
Rationalise duplicated functionality, #'custom-quote, #'quote-maybe.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4693
diff
changeset
|
1299 self-quoting. |
17f7e9191c0b
Rationalise duplicated functionality, #'custom-quote, #'quote-maybe.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4693
diff
changeset
|
1300 */ |
17f7e9191c0b
Rationalise duplicated functionality, #'custom-quote, #'quote-maybe.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4693
diff
changeset
|
1301 (expr)) |
17f7e9191c0b
Rationalise duplicated functionality, #'custom-quote, #'quote-maybe.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4693
diff
changeset
|
1302 { |
17f7e9191c0b
Rationalise duplicated functionality, #'custom-quote, #'quote-maybe.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4693
diff
changeset
|
1303 if ((XTYPE (expr)) == Lisp_Type_Record) |
17f7e9191c0b
Rationalise duplicated functionality, #'custom-quote, #'quote-maybe.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4693
diff
changeset
|
1304 { |
17f7e9191c0b
Rationalise duplicated functionality, #'custom-quote, #'quote-maybe.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4693
diff
changeset
|
1305 switch (XRECORD_LHEADER (expr)->type) |
17f7e9191c0b
Rationalise duplicated functionality, #'custom-quote, #'quote-maybe.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4693
diff
changeset
|
1306 { |
17f7e9191c0b
Rationalise duplicated functionality, #'custom-quote, #'quote-maybe.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4693
diff
changeset
|
1307 case lrecord_type_symbol: |
17f7e9191c0b
Rationalise duplicated functionality, #'custom-quote, #'quote-maybe.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4693
diff
changeset
|
1308 if (NILP (expr) || (EQ (expr, Qt)) || SYMBOL_IS_KEYWORD (expr)) |
17f7e9191c0b
Rationalise duplicated functionality, #'custom-quote, #'quote-maybe.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4693
diff
changeset
|
1309 { |
17f7e9191c0b
Rationalise duplicated functionality, #'custom-quote, #'quote-maybe.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4693
diff
changeset
|
1310 return expr; |
17f7e9191c0b
Rationalise duplicated functionality, #'custom-quote, #'quote-maybe.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4693
diff
changeset
|
1311 } |
17f7e9191c0b
Rationalise duplicated functionality, #'custom-quote, #'quote-maybe.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4693
diff
changeset
|
1312 break; |
17f7e9191c0b
Rationalise duplicated functionality, #'custom-quote, #'quote-maybe.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4693
diff
changeset
|
1313 case lrecord_type_cons: |
17f7e9191c0b
Rationalise duplicated functionality, #'custom-quote, #'quote-maybe.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4693
diff
changeset
|
1314 if (EQ (XCAR (expr), Qlambda)) |
17f7e9191c0b
Rationalise duplicated functionality, #'custom-quote, #'quote-maybe.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4693
diff
changeset
|
1315 { |
17f7e9191c0b
Rationalise duplicated functionality, #'custom-quote, #'quote-maybe.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4693
diff
changeset
|
1316 return expr; |
17f7e9191c0b
Rationalise duplicated functionality, #'custom-quote, #'quote-maybe.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4693
diff
changeset
|
1317 } |
17f7e9191c0b
Rationalise duplicated functionality, #'custom-quote, #'quote-maybe.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4693
diff
changeset
|
1318 break; |
17f7e9191c0b
Rationalise duplicated functionality, #'custom-quote, #'quote-maybe.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4693
diff
changeset
|
1319 |
17f7e9191c0b
Rationalise duplicated functionality, #'custom-quote, #'quote-maybe.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4693
diff
changeset
|
1320 case lrecord_type_vector: |
17f7e9191c0b
Rationalise duplicated functionality, #'custom-quote, #'quote-maybe.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4693
diff
changeset
|
1321 case lrecord_type_string: |
17f7e9191c0b
Rationalise duplicated functionality, #'custom-quote, #'quote-maybe.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4693
diff
changeset
|
1322 case lrecord_type_compiled_function: |
17f7e9191c0b
Rationalise duplicated functionality, #'custom-quote, #'quote-maybe.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4693
diff
changeset
|
1323 case lrecord_type_bit_vector: |
17f7e9191c0b
Rationalise duplicated functionality, #'custom-quote, #'quote-maybe.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4693
diff
changeset
|
1324 case lrecord_type_float: |
17f7e9191c0b
Rationalise duplicated functionality, #'custom-quote, #'quote-maybe.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4693
diff
changeset
|
1325 case lrecord_type_hash_table: |
17f7e9191c0b
Rationalise duplicated functionality, #'custom-quote, #'quote-maybe.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4693
diff
changeset
|
1326 case lrecord_type_char_table: |
17f7e9191c0b
Rationalise duplicated functionality, #'custom-quote, #'quote-maybe.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4693
diff
changeset
|
1327 case lrecord_type_range_table: |
17f7e9191c0b
Rationalise duplicated functionality, #'custom-quote, #'quote-maybe.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4693
diff
changeset
|
1328 case lrecord_type_bignum: |
17f7e9191c0b
Rationalise duplicated functionality, #'custom-quote, #'quote-maybe.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4693
diff
changeset
|
1329 case lrecord_type_ratio: |
17f7e9191c0b
Rationalise duplicated functionality, #'custom-quote, #'quote-maybe.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4693
diff
changeset
|
1330 case lrecord_type_bigfloat: |
17f7e9191c0b
Rationalise duplicated functionality, #'custom-quote, #'quote-maybe.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4693
diff
changeset
|
1331 return expr; |
17f7e9191c0b
Rationalise duplicated functionality, #'custom-quote, #'quote-maybe.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4693
diff
changeset
|
1332 } |
17f7e9191c0b
Rationalise duplicated functionality, #'custom-quote, #'quote-maybe.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4693
diff
changeset
|
1333 return list2 (Qquote, expr); |
17f7e9191c0b
Rationalise duplicated functionality, #'custom-quote, #'quote-maybe.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4693
diff
changeset
|
1334 } |
17f7e9191c0b
Rationalise duplicated functionality, #'custom-quote, #'quote-maybe.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4693
diff
changeset
|
1335 |
17f7e9191c0b
Rationalise duplicated functionality, #'custom-quote, #'quote-maybe.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4693
diff
changeset
|
1336 /* Fixnums and characters are self-quoting: */ |
17f7e9191c0b
Rationalise duplicated functionality, #'custom-quote, #'quote-maybe.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4693
diff
changeset
|
1337 return expr; |
17f7e9191c0b
Rationalise duplicated functionality, #'custom-quote, #'quote-maybe.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4693
diff
changeset
|
1338 } |
17f7e9191c0b
Rationalise duplicated functionality, #'custom-quote, #'quote-maybe.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4693
diff
changeset
|
1339 |
428 | 1340 DEFUN ("function", Ffunction, 1, UNEVALLED, 0, /* |
3842 | 1341 Return the argument, without evaluating it. `(function x)' yields `x'. |
1342 | |
1343 `function' differs from `quote' in that it is a hint that an expression is | |
1344 a function, not data. In particular, under some circumstances the byte | |
1345 compiler will compile an expression quoted with `function', but it will | |
1346 never do so for an expression quoted with `quote'. However, the byte | |
1347 compiler will not compile an expression buried in a data structure such as | |
1348 a vector or a list which is not syntactically a function. These issues are | |
1349 most important for lambda expressions (see `lambda'). | |
1350 | |
1351 There is an alternative, more readable, reader syntax for `function': a Lisp | |
1352 object preceded by `#''. Thus, #'x is equivalent to (function x), in all | |
1353 contexts. A print function may use either. Internally the expression is | |
1354 represented as `(function x)'). | |
5265
5663ae9a8989
Warn at compile time, error at runtime, with (quote X Y), (function X Y).
Aidan Kehoe <kehoea@parhasard.net>
parents:
5222
diff
changeset
|
1355 |
5663ae9a8989
Warn at compile time, error at runtime, with (quote X Y), (function X Y).
Aidan Kehoe <kehoea@parhasard.net>
parents:
5222
diff
changeset
|
1356 arguments: (SYMBOL-OR-LAMBDA) |
428 | 1357 */ |
1358 (args)) | |
1359 { | |
5207
1096ef427b56
Error on too many arguments to #'function, #'quote.
Aidan Kehoe <kehoea@parhasard.net>
parents:
5146
diff
changeset
|
1360 int nargs; |
1096ef427b56
Error on too many arguments to #'function, #'quote.
Aidan Kehoe <kehoea@parhasard.net>
parents:
5146
diff
changeset
|
1361 |
1096ef427b56
Error on too many arguments to #'function, #'quote.
Aidan Kehoe <kehoea@parhasard.net>
parents:
5146
diff
changeset
|
1362 GET_LIST_LENGTH (args, nargs); |
1096ef427b56
Error on too many arguments to #'function, #'quote.
Aidan Kehoe <kehoea@parhasard.net>
parents:
5146
diff
changeset
|
1363 if (nargs != 1) |
1096ef427b56
Error on too many arguments to #'function, #'quote.
Aidan Kehoe <kehoea@parhasard.net>
parents:
5146
diff
changeset
|
1364 { |
1096ef427b56
Error on too many arguments to #'function, #'quote.
Aidan Kehoe <kehoea@parhasard.net>
parents:
5146
diff
changeset
|
1365 Fsignal (Qwrong_number_of_arguments, |
1096ef427b56
Error on too many arguments to #'function, #'quote.
Aidan Kehoe <kehoea@parhasard.net>
parents:
5146
diff
changeset
|
1366 list2 (Qfunction, make_int (nargs))); |
1096ef427b56
Error on too many arguments to #'function, #'quote.
Aidan Kehoe <kehoea@parhasard.net>
parents:
5146
diff
changeset
|
1367 } |
1096ef427b56
Error on too many arguments to #'function, #'quote.
Aidan Kehoe <kehoea@parhasard.net>
parents:
5146
diff
changeset
|
1368 |
428 | 1369 return XCAR (args); |
1370 } | |
1371 | |
1372 | |
1373 /************************************************************************/ | |
1374 /* Defining functions/variables */ | |
1375 /************************************************************************/ | |
1376 static Lisp_Object | |
1377 define_function (Lisp_Object name, Lisp_Object defn) | |
1378 { | |
1379 Ffset (name, defn); | |
4535
69a1eda3da06
Distinguish vars and functions in #'symbol-file, #'describe-{function,variable}
Aidan Kehoe <kehoea@parhasard.net>
parents:
4502
diff
changeset
|
1380 LOADHIST_ATTACH (Fcons (Qdefun, name)); |
428 | 1381 return name; |
1382 } | |
1383 | |
1384 DEFUN ("defun", Fdefun, 2, UNEVALLED, 0, /* | |
4693
80cd90837ac5
Add argument information to remaining MANY or UNEVALLED C subrs.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4686
diff
changeset
|
1385 Define NAME as a function. |
428 | 1386 The definition is (lambda ARGLIST [DOCSTRING] BODY...). |
1387 See also the function `interactive'. | |
4693
80cd90837ac5
Add argument information to remaining MANY or UNEVALLED C subrs.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4686
diff
changeset
|
1388 |
80cd90837ac5
Add argument information to remaining MANY or UNEVALLED C subrs.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4686
diff
changeset
|
1389 arguments: (NAME ARGLIST &optional DOCSTRING &rest BODY) |
428 | 1390 */ |
1391 (args)) | |
1392 { | |
1393 /* This function can GC */ | |
1394 return define_function (XCAR (args), | |
1395 Fcons (Qlambda, XCDR (args))); | |
1396 } | |
1397 | |
1398 DEFUN ("defmacro", Fdefmacro, 2, UNEVALLED, 0, /* | |
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1399 Define NAME as a macro. |
428 | 1400 The definition is (macro lambda ARGLIST [DOCSTRING] BODY...). |
1401 When the macro is called, as in (NAME ARGS...), | |
1402 the function (lambda ARGLIST BODY...) is applied to | |
1403 the list ARGS... as it appears in the expression, | |
1404 and the result should be a form to be evaluated instead of the original. | |
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1405 |
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1406 arguments: (NAME ARGLIST &optional DOCSTRING &rest BODY) |
428 | 1407 */ |
1408 (args)) | |
1409 { | |
1410 /* This function can GC */ | |
1411 return define_function (XCAR (args), | |
1412 Fcons (Qmacro, Fcons (Qlambda, XCDR (args)))); | |
1413 } | |
1414 | |
1415 DEFUN ("defvar", Fdefvar, 1, UNEVALLED, 0, /* | |
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1416 Define SYMBOL as a variable. |
428 | 1417 You are not required to define a variable in order to use it, |
1418 but the definition can supply documentation and an initial value | |
1419 in a way that tags can recognize. | |
1420 | |
1421 INITVALUE is evaluated, and used to set SYMBOL, only if SYMBOL's value is | |
1422 void. (However, when you evaluate a defvar interactively, it acts like a | |
1423 defconst: SYMBOL's value is always set regardless of whether it's currently | |
1424 void.) | |
1425 If SYMBOL is buffer-local, its default value is what is set; | |
1426 buffer-local values are not affected. | |
1427 INITVALUE and DOCSTRING are optional. | |
1428 If DOCSTRING starts with *, this variable is identified as a user option. | |
442 | 1429 This means that M-x set-variable recognizes it. |
428 | 1430 If INITVALUE is missing, SYMBOL's value is not set. |
1431 | |
1432 In lisp-interaction-mode defvar is treated as defconst. | |
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1433 |
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|
1434 arguments: (SYMBOL &optional INITVALUE DOCSTRING) |
428 | 1435 */ |
1436 (args)) | |
1437 { | |
1438 /* This function can GC */ | |
1439 Lisp_Object sym = XCAR (args); | |
1440 | |
1441 if (!NILP (args = XCDR (args))) | |
1442 { | |
1443 Lisp_Object val = XCAR (args); | |
1444 | |
1445 if (NILP (Fdefault_boundp (sym))) | |
1446 { | |
1447 struct gcpro gcpro1; | |
1448 GCPRO1 (val); | |
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1449 val = IGNORE_MULTIPLE_VALUES (Feval (val)); |
428 | 1450 Fset_default (sym, val); |
1451 UNGCPRO; | |
1452 } | |
1453 | |
1454 if (!NILP (args = XCDR (args))) | |
1455 { | |
1456 Lisp_Object doc = XCAR (args); | |
1457 Fput (sym, Qvariable_documentation, doc); | |
1458 if (!NILP (args = XCDR (args))) | |
563 | 1459 signal_error (Qwrong_number_of_arguments, "too many arguments", Qunbound); |
428 | 1460 } |
1461 } | |
1462 | |
1463 #ifdef I18N3 | |
1464 if (!NILP (Vfile_domain)) | |
1465 Fput (sym, Qvariable_domain, Vfile_domain); | |
1466 #endif | |
1467 | |
1468 LOADHIST_ATTACH (sym); | |
1469 return sym; | |
1470 } | |
1471 | |
1472 DEFUN ("defconst", Fdefconst, 2, UNEVALLED, 0, /* | |
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1473 Define SYMBOL as a constant variable. |
428 | 1474 The intent is that programs do not change this value, but users may. |
1475 Always sets the value of SYMBOL to the result of evalling INITVALUE. | |
1476 If SYMBOL is buffer-local, its default value is what is set; | |
1477 buffer-local values are not affected. | |
1478 DOCSTRING is optional. | |
1479 If DOCSTRING starts with *, this variable is identified as a user option. | |
442 | 1480 This means that M-x set-variable recognizes it. |
428 | 1481 |
1482 Note: do not use `defconst' for user options in libraries that are not | |
1483 normally loaded, since it is useful for users to be able to specify | |
1484 their own values for such variables before loading the library. | |
1485 Since `defconst' unconditionally assigns the variable, | |
1486 it would override the user's choice. | |
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1487 |
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1488 arguments: (SYMBOL &optional INITVALUE DOCSTRING) |
428 | 1489 */ |
1490 (args)) | |
1491 { | |
1492 /* This function can GC */ | |
1493 Lisp_Object sym = XCAR (args); | |
1494 Lisp_Object val = Feval (XCAR (args = XCDR (args))); | |
1495 struct gcpro gcpro1; | |
1496 | |
1497 GCPRO1 (val); | |
1498 | |
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1499 val = IGNORE_MULTIPLE_VALUES (val); |
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1500 |
428 | 1501 Fset_default (sym, val); |
1502 | |
1503 UNGCPRO; | |
1504 | |
1505 if (!NILP (args = XCDR (args))) | |
1506 { | |
1507 Lisp_Object doc = XCAR (args); | |
1508 Fput (sym, Qvariable_documentation, doc); | |
1509 if (!NILP (args = XCDR (args))) | |
563 | 1510 signal_error (Qwrong_number_of_arguments, "too many arguments", Qunbound); |
428 | 1511 } |
1512 | |
1513 #ifdef I18N3 | |
1514 if (!NILP (Vfile_domain)) | |
1515 Fput (sym, Qvariable_domain, Vfile_domain); | |
1516 #endif | |
1517 | |
1518 LOADHIST_ATTACH (sym); | |
1519 return sym; | |
1520 } | |
1521 | |
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1522 /* XEmacs: user-variable-p is in symbols.c, since it needs to mess around |
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1523 with the symbol variable aliases. */ |
428 | 1524 |
1525 DEFUN ("macroexpand-internal", Fmacroexpand_internal, 1, 2, 0, /* | |
1526 Return result of expanding macros at top level of FORM. | |
1527 If FORM is not a macro call, it is returned unchanged. | |
1528 Otherwise, the macro is expanded and the expansion is considered | |
1529 in place of FORM. When a non-macro-call results, it is returned. | |
1530 | |
442 | 1531 The second optional arg ENVIRONMENT specifies an environment of macro |
428 | 1532 definitions to shadow the loaded ones for use in file byte-compilation. |
1533 */ | |
442 | 1534 (form, environment)) |
428 | 1535 { |
1536 /* This function can GC */ | |
1537 /* With cleanups from Hallvard Furuseth. */ | |
1538 REGISTER Lisp_Object expander, sym, def, tem; | |
1539 | |
1540 while (1) | |
1541 { | |
1542 /* Come back here each time we expand a macro call, | |
1543 in case it expands into another macro call. */ | |
1544 if (!CONSP (form)) | |
1545 break; | |
1546 /* Set SYM, give DEF and TEM right values in case SYM is not a symbol. */ | |
1547 def = sym = XCAR (form); | |
1548 tem = Qnil; | |
1549 /* Trace symbols aliases to other symbols | |
1550 until we get a symbol that is not an alias. */ | |
1551 while (SYMBOLP (def)) | |
1552 { | |
1553 QUIT; | |
1554 sym = def; | |
442 | 1555 tem = Fassq (sym, environment); |
428 | 1556 if (NILP (tem)) |
1557 { | |
1558 def = XSYMBOL (sym)->function; | |
1559 if (!UNBOUNDP (def)) | |
1560 continue; | |
1561 } | |
1562 break; | |
1563 } | |
442 | 1564 /* Right now TEM is the result from SYM in ENVIRONMENT, |
428 | 1565 and if TEM is nil then DEF is SYM's function definition. */ |
1566 if (NILP (tem)) | |
1567 { | |
442 | 1568 /* SYM is not mentioned in ENVIRONMENT. |
428 | 1569 Look at its function definition. */ |
1570 if (UNBOUNDP (def) | |
1571 || !CONSP (def)) | |
1572 /* Not defined or definition not suitable */ | |
1573 break; | |
1574 if (EQ (XCAR (def), Qautoload)) | |
1575 { | |
1576 /* Autoloading function: will it be a macro when loaded? */ | |
1577 tem = Felt (def, make_int (4)); | |
1578 if (EQ (tem, Qt) || EQ (tem, Qmacro)) | |
1579 { | |
1580 /* Yes, load it and try again. */ | |
970 | 1581 /* do_autoload GCPROs both arguments */ |
428 | 1582 do_autoload (def, sym); |
1583 continue; | |
1584 } | |
1585 else | |
1586 break; | |
1587 } | |
1588 else if (!EQ (XCAR (def), Qmacro)) | |
1589 break; | |
1590 else expander = XCDR (def); | |
1591 } | |
1592 else | |
1593 { | |
1594 expander = XCDR (tem); | |
1595 if (NILP (expander)) | |
1596 break; | |
1597 } | |
1598 form = apply1 (expander, XCDR (form)); | |
1599 } | |
1600 return form; | |
1601 } | |
1602 | |
1603 | |
1604 /************************************************************************/ | |
1605 /* Non-local exits */ | |
1606 /************************************************************************/ | |
1607 | |
1318 | 1608 #ifdef ERROR_CHECK_TRAPPING_PROBLEMS |
1609 | |
1610 int | |
1611 proper_redisplay_wrapping_in_place (void) | |
1612 { | |
1613 return !in_display | |
1614 || ((get_inhibit_flags () & INTERNAL_INHIBIT_ERRORS) | |
1615 && (get_inhibit_flags () & INTERNAL_INHIBIT_THROWS)); | |
1616 } | |
1617 | |
1618 static void | |
1619 check_proper_critical_section_nonlocal_exit_protection (void) | |
1620 { | |
1621 assert_with_message | |
1622 (proper_redisplay_wrapping_in_place (), | |
1623 "Attempted non-local exit from within redisplay without being properly wrapped"); | |
1624 } | |
1625 | |
1626 static void | |
1627 check_proper_critical_section_lisp_protection (void) | |
1628 { | |
1629 assert_with_message | |
1630 (proper_redisplay_wrapping_in_place (), | |
1631 "Attempt to call Lisp code from within redisplay without being properly wrapped"); | |
1632 } | |
1633 | |
1634 #endif /* ERROR_CHECK_TRAPPING_PROBLEMS */ | |
1635 | |
428 | 1636 DEFUN ("catch", Fcatch, 1, UNEVALLED, 0, /* |
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1637 Eval BODY allowing nonlocal exits using `throw'. |
428 | 1638 TAG is evalled to get the tag to use. Then the BODY is executed. |
3577 | 1639 Within BODY, (throw TAG VAL) with same (`eq') tag exits BODY and this `catch'. |
428 | 1640 If no throw happens, `catch' returns the value of the last BODY form. |
1641 If a throw happens, it specifies the value to return from `catch'. | |
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1642 |
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|
1643 arguments: (TAG &rest BODY) |
428 | 1644 */ |
1645 (args)) | |
1646 { | |
1647 /* This function can GC */ | |
1648 Lisp_Object tag = Feval (XCAR (args)); | |
1649 Lisp_Object body = XCDR (args); | |
2532 | 1650 return internal_catch (tag, Fprogn, body, 0, 0, 0); |
428 | 1651 } |
1652 | |
1653 /* Set up a catch, then call C function FUNC on argument ARG. | |
1654 FUNC should return a Lisp_Object. | |
1655 This is how catches are done from within C code. */ | |
1656 | |
1657 Lisp_Object | |
1658 internal_catch (Lisp_Object tag, | |
1659 Lisp_Object (*func) (Lisp_Object arg), | |
1660 Lisp_Object arg, | |
853 | 1661 int * volatile threw, |
2532 | 1662 Lisp_Object * volatile thrown_tag, |
1663 Lisp_Object * volatile backtrace_before_throw) | |
428 | 1664 { |
1665 /* This structure is made part of the chain `catchlist'. */ | |
1666 struct catchtag c; | |
1667 | |
1668 /* Fill in the components of c, and put it on the list. */ | |
1669 c.next = catchlist; | |
1670 c.tag = tag; | |
853 | 1671 c.actual_tag = Qnil; |
2532 | 1672 c.backtrace = Qnil; |
428 | 1673 c.val = Qnil; |
1674 c.backlist = backtrace_list; | |
1675 #if 0 /* FSFmacs */ | |
1676 /* #### */ | |
1677 c.handlerlist = handlerlist; | |
1678 #endif | |
1679 c.lisp_eval_depth = lisp_eval_depth; | |
1680 c.pdlcount = specpdl_depth(); | |
1681 #if 0 /* FSFmacs */ | |
1682 c.poll_suppress_count = async_timer_suppress_count; | |
1683 #endif | |
1684 c.gcpro = gcprolist; | |
1685 catchlist = &c; | |
1686 | |
1687 /* Call FUNC. */ | |
1688 if (SETJMP (c.jmp)) | |
1689 { | |
1690 /* Throw works by a longjmp that comes right here. */ | |
1691 if (threw) *threw = 1; | |
853 | 1692 if (thrown_tag) *thrown_tag = c.actual_tag; |
2532 | 1693 if (backtrace_before_throw) *backtrace_before_throw = c.backtrace; |
428 | 1694 return c.val; |
1695 } | |
1696 c.val = (*func) (arg); | |
1697 if (threw) *threw = 0; | |
853 | 1698 if (thrown_tag) *thrown_tag = Qnil; |
428 | 1699 catchlist = c.next; |
853 | 1700 check_catchlist_sanity (); |
428 | 1701 return c.val; |
1702 } | |
1703 | |
1704 | |
1705 /* Unwind the specbind, catch, and handler stacks back to CATCH, and | |
1706 jump to that CATCH, returning VALUE as the value of that catch. | |
1707 | |
2297 | 1708 This is the guts of Fthrow and Fsignal; they differ only in the |
1709 way they choose the catch tag to throw to. A catch tag for a | |
428 | 1710 condition-case form has a TAG of Qnil. |
1711 | |
1712 Before each catch is discarded, unbind all special bindings and | |
1713 execute all unwind-protect clauses made above that catch. Unwind | |
1714 the handler stack as we go, so that the proper handlers are in | |
1715 effect for each unwind-protect clause we run. At the end, restore | |
1716 some static info saved in CATCH, and longjmp to the location | |
1717 specified in the | |
1718 | |
1719 This is used for correct unwinding in Fthrow and Fsignal. */ | |
1720 | |
2268 | 1721 static DECLARE_DOESNT_RETURN (unwind_to_catch (struct catchtag *, Lisp_Object, |
1722 Lisp_Object)); | |
1723 | |
1724 static DOESNT_RETURN | |
853 | 1725 unwind_to_catch (struct catchtag *c, Lisp_Object val, Lisp_Object tag) |
428 | 1726 { |
1727 REGISTER int last_time; | |
1728 | |
1729 /* Unwind the specbind, catch, and handler stacks back to CATCH | |
1730 Before each catch is discarded, unbind all special bindings | |
1731 and execute all unwind-protect clauses made above that catch. | |
1732 At the end, restore some static info saved in CATCH, | |
1733 and longjmp to the location specified. | |
1734 */ | |
1735 | |
1736 /* Save the value somewhere it will be GC'ed. | |
1737 (Can't overwrite tag slot because an unwind-protect may | |
1738 want to throw to this same tag, which isn't yet invalid.) */ | |
1739 c->val = val; | |
853 | 1740 c->actual_tag = tag; |
428 | 1741 |
1742 #if 0 /* FSFmacs */ | |
1743 /* Restore the polling-suppression count. */ | |
1744 set_poll_suppress_count (catch->poll_suppress_count); | |
1745 #endif | |
1746 | |
617 | 1747 #if 1 |
428 | 1748 do |
1749 { | |
1750 last_time = catchlist == c; | |
1751 | |
1752 /* Unwind the specpdl stack, and then restore the proper set of | |
1753 handlers. */ | |
771 | 1754 unbind_to (catchlist->pdlcount); |
428 | 1755 catchlist = catchlist->next; |
853 | 1756 check_catchlist_sanity (); |
428 | 1757 } |
1758 while (! last_time); | |
617 | 1759 #else |
1760 /* Former XEmacs code. This is definitely not as correct because | |
1761 there may be a number of catches we're unwinding, and a number | |
1762 of unwind-protects in the process. By not undoing the catches till | |
1763 the end, there may be invalid catches still current. (This would | |
1764 be a particular problem with code like this: | |
1765 | |
1766 (catch 'foo | |
1767 (call-some-code-which-does... | |
1768 (catch 'bar | |
1769 (unwind-protect | |
1770 (call-some-code-which-does... | |
1771 (catch 'bar | |
1772 (call-some-code-which-does... | |
1773 (throw 'foo nil)))) | |
1774 (throw 'bar nil))))) | |
1775 | |
1776 This would try to throw to the inner (catch 'bar)! | |
1777 | |
1778 --ben | |
1779 */ | |
428 | 1780 /* Unwind the specpdl stack */ |
771 | 1781 unbind_to (c->pdlcount); |
428 | 1782 catchlist = c->next; |
853 | 1783 check_catchlist_sanity (); |
617 | 1784 #endif /* Former code */ |
428 | 1785 |
1204 | 1786 UNWIND_GCPRO_TO (c->gcpro); |
1292 | 1787 if (profiling_active) |
1788 { | |
1789 while (backtrace_list != c->backlist) | |
1790 { | |
1791 profile_record_unwind (backtrace_list); | |
1792 backtrace_list = backtrace_list->next; | |
1793 } | |
1794 } | |
1795 else | |
1796 backtrace_list = c->backlist; | |
428 | 1797 lisp_eval_depth = c->lisp_eval_depth; |
1798 | |
442 | 1799 #ifdef DEFEND_AGAINST_THROW_RECURSION |
428 | 1800 throw_level = 0; |
1801 #endif | |
1802 LONGJMP (c->jmp, 1); | |
1803 } | |
1804 | |
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|
1805 DECLARE_DOESNT_RETURN (throw_or_bomb_out (Lisp_Object, Lisp_Object, int, |
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1806 Lisp_Object, Lisp_Object)); |
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|
1807 |
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1808 DOESNT_RETURN |
428 | 1809 throw_or_bomb_out (Lisp_Object tag, Lisp_Object val, int bomb_out_p, |
1810 Lisp_Object sig, Lisp_Object data) | |
1811 { | |
442 | 1812 #ifdef DEFEND_AGAINST_THROW_RECURSION |
428 | 1813 /* die if we recurse more than is reasonable */ |
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Ben Wing <ben@xemacs.org>
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1814 assert (++throw_level <= 20); |
428 | 1815 #endif |
1816 | |
1318 | 1817 #ifdef ERROR_CHECK_TRAPPING_PROBLEMS |
1123 | 1818 check_proper_critical_section_nonlocal_exit_protection (); |
1318 | 1819 #endif |
1123 | 1820 |
428 | 1821 /* If bomb_out_p is t, this is being called from Fsignal as a |
1822 "last resort" when there is no handler for this error and | |
1823 the debugger couldn't be invoked, so we are throwing to | |
3025 | 1824 `top-level'. If this tag doesn't exist (happens during the |
428 | 1825 initialization stages) we would get in an infinite recursive |
1826 Fsignal/Fthrow loop, so instead we bomb out to the | |
1827 really-early-error-handler. | |
1828 | |
1829 Note that in fact the only time that the "last resort" | |
3025 | 1830 occurs is when there's no catch for `top-level' -- the |
1831 `top-level' catch and the catch-all error handler are | |
428 | 1832 established at the same time, in initial_command_loop/ |
1833 top_level_1. | |
1834 | |
853 | 1835 [[#### Fix this horrifitude!]] |
1836 | |
1837 I don't think this is horrifitude, just defensive programming. --ben | |
428 | 1838 */ |
1839 | |
1840 while (1) | |
1841 { | |
1842 REGISTER struct catchtag *c; | |
1843 | |
1844 #if 0 /* FSFmacs */ | |
1845 if (!NILP (tag)) /* #### */ | |
1846 #endif | |
1847 for (c = catchlist; c; c = c->next) | |
1848 { | |
2532 | 1849 if (EQ (c->tag, Vcatch_everything_tag)) |
1850 c->backtrace = maybe_get_trapping_problems_backtrace (); | |
853 | 1851 if (EQ (c->tag, tag) || EQ (c->tag, Vcatch_everything_tag)) |
1852 unwind_to_catch (c, val, tag); | |
428 | 1853 } |
1854 if (!bomb_out_p) | |
1855 tag = Fsignal (Qno_catch, list2 (tag, val)); | |
1856 else | |
1857 call1 (Qreally_early_error_handler, Fcons (sig, data)); | |
1858 } | |
1859 } | |
1860 | |
1861 /* See above, where CATCHLIST is defined, for a description of how | |
1862 Fthrow() works. | |
1863 | |
1864 Fthrow() is also called by Fsignal(), to do a non-local jump | |
1865 back to the appropriate condition-case handler after (maybe) | |
1866 the debugger is entered. In that case, TAG is the value | |
1867 of Vcondition_handlers that was in place just after the | |
1868 condition-case handler was set up. The car of this will be | |
1869 some data referring to the handler: Its car will be Qunbound | |
1870 (thus, this tag can never be generated by Lisp code), and | |
1871 its CDR will be the HANDLERS argument to condition_case_1() | |
1872 (either Qerror, Qt, or a list of handlers as in `condition-case'). | |
1873 This works fine because Fthrow() does not care what TAG was | |
1874 passed to it: it just looks up the catch list for something | |
1875 that is EQ() to TAG. When it finds it, it will longjmp() | |
1876 back to the place that established the catch (in this case, | |
1877 condition_case_1). See below for more info. | |
1878 */ | |
1879 | |
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1880 DEFUN_NORETURN ("throw", Fthrow, 2, UNEVALLED, 0, /* |
444 | 1881 Throw to the catch for TAG and return VALUE from it. |
4677
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1882 |
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1883 Both TAG and VALUE are evalled, and multiple values in VALUE will be passed |
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1884 back. Tags are the same if and only if they are `eq'. |
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1885 |
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1886 arguments: (TAG VALUE) |
428 | 1887 */ |
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1888 (args)) |
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1889 { |
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1890 int nargs; |
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1891 Lisp_Object tag, value; |
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1892 |
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1893 GET_LIST_LENGTH (args, nargs); |
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1894 if (nargs != 2) |
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1895 { |
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1896 Fsignal (Qwrong_number_of_arguments, list2 (Qthrow, make_int (nargs))); |
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1897 } |
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1898 |
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1899 tag = IGNORE_MULTIPLE_VALUES (Feval (XCAR(args))); |
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1900 |
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1901 value = Feval (XCAR (XCDR (args))); |
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1902 |
444 | 1903 throw_or_bomb_out (tag, value, 0, Qnil, Qnil); /* Doesn't return */ |
2268 | 1904 RETURN_NOT_REACHED (Qnil); |
428 | 1905 } |
1906 | |
1907 DEFUN ("unwind-protect", Funwind_protect, 1, UNEVALLED, 0, /* | |
1908 Do BODYFORM, protecting with UNWINDFORMS. | |
1909 If BODYFORM completes normally, its value is returned | |
1910 after executing the UNWINDFORMS. | |
1911 If BODYFORM exits nonlocally, the UNWINDFORMS are executed anyway. | |
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1912 |
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1913 arguments: (BODYFORM &rest UNWINDFORMS) |
428 | 1914 */ |
1915 (args)) | |
1916 { | |
1917 /* This function can GC */ | |
1918 int speccount = specpdl_depth(); | |
1919 | |
1920 record_unwind_protect (Fprogn, XCDR (args)); | |
771 | 1921 return unbind_to_1 (speccount, Feval (XCAR (args))); |
428 | 1922 } |
1923 | |
1924 | |
1925 /************************************************************************/ | |
1292 | 1926 /* Trapping errors */ |
428 | 1927 /************************************************************************/ |
1928 | |
1929 static Lisp_Object | |
1930 condition_bind_unwind (Lisp_Object loser) | |
1931 { | |
617 | 1932 /* There is no problem freeing stuff here like there is in |
1933 condition_case_unwind(), because there are no outside pointers | |
1934 (like the tag below in the catchlist) pointing to the objects. */ | |
853 | 1935 |
428 | 1936 /* ((handler-fun . handler-args) ... other handlers) */ |
1937 Lisp_Object tem = XCAR (loser); | |
853 | 1938 int first = 1; |
428 | 1939 |
1940 while (CONSP (tem)) | |
1941 { | |
853 | 1942 Lisp_Object victim = tem; |
1943 if (first && OPAQUE_PTRP (XCAR (victim))) | |
1944 free_opaque_ptr (XCAR (victim)); | |
1945 first = 0; | |
1946 tem = XCDR (victim); | |
428 | 1947 free_cons (victim); |
1948 } | |
1949 | |
1950 if (EQ (loser, Vcondition_handlers)) /* may have been rebound to some tail */ | |
853 | 1951 Vcondition_handlers = XCDR (loser); |
1952 | |
1953 free_cons (loser); | |
428 | 1954 return Qnil; |
1955 } | |
1956 | |
1957 static Lisp_Object | |
1958 condition_case_unwind (Lisp_Object loser) | |
1959 { | |
1960 /* ((<unbound> . clauses) ... other handlers */ | |
617 | 1961 /* NO! Doing this now leaves the tag deleted in a still-active |
1962 catch. With the recent changes to unwind_to_catch(), the | |
1963 evil situation might not happen any more; it certainly could | |
1964 happen before because it did. But it's very precarious to rely | |
1965 on something like this. #### Instead we should rewrite, adopting | |
1966 the FSF's mechanism with a struct handler instead of | |
1967 Vcondition_handlers; then we have NO Lisp-object structures used | |
1968 to hold all of the values, and there's no possibility either of | |
1969 crashes from freeing objects too quickly, or objects not getting | |
1970 freed and hanging around till the next GC. | |
1971 | |
1972 In practice, the extra consing here should not matter because | |
1973 it only happens when we throw past the condition-case, which almost | |
1974 always is the result of an error. Most of the time, there will be | |
1975 no error, and we will free the objects below in the main function. | |
1976 | |
1977 --ben | |
1978 | |
1979 DO NOT DO: free_cons (XCAR (loser)); | |
1980 */ | |
1981 | |
428 | 1982 if (EQ (loser, Vcondition_handlers)) /* may have been rebound to some tail */ |
617 | 1983 Vcondition_handlers = XCDR (loser); |
1984 | |
1985 /* DO NOT DO: free_cons (loser); */ | |
428 | 1986 return Qnil; |
1987 } | |
1988 | |
1989 /* Split out from condition_case_3 so that primitive C callers | |
1990 don't have to cons up a lisp handler form to be evaluated. */ | |
1991 | |
1992 /* Call a function BFUN of one argument BARG, trapping errors as | |
1993 specified by HANDLERS. If no error occurs that is indicated by | |
1994 HANDLERS as something to be caught, the return value of this | |
1995 function is the return value from BFUN. If such an error does | |
1996 occur, HFUN is called, and its return value becomes the | |
1997 return value of condition_case_1(). The second argument passed | |
1998 to HFUN will always be HARG. The first argument depends on | |
1999 HANDLERS: | |
2000 | |
2001 If HANDLERS is Qt, all errors (this includes QUIT, but not | |
2002 non-local exits with `throw') cause HFUN to be invoked, and VAL | |
2003 (the first argument to HFUN) is a cons (SIG . DATA) of the | |
2004 arguments passed to `signal'. The debugger is not invoked even if | |
2005 `debug-on-error' was set. | |
2006 | |
2007 A HANDLERS value of Qerror is the same as Qt except that the | |
2008 debugger is invoked if `debug-on-error' was set. | |
2009 | |
2010 Otherwise, HANDLERS should be a list of lists (CONDITION-NAME BODY ...) | |
2011 exactly as in `condition-case', and errors will be trapped | |
2012 as indicated in HANDLERS. VAL (the first argument to HFUN) will | |
2013 be a cons whose car is the cons (SIG . DATA) and whose CDR is the | |
2014 list (BODY ...) from the appropriate slot in HANDLERS. | |
2015 | |
2016 This function pushes HANDLERS onto the front of Vcondition_handlers | |
2017 (actually with a Qunbound marker as well -- see Fthrow() above | |
2018 for why), establishes a catch whose tag is this new value of | |
2019 Vcondition_handlers, and calls BFUN. When Fsignal() is called, | |
2020 it calls Fthrow(), setting TAG to this same new value of | |
2021 Vcondition_handlers and setting VAL to the same thing that will | |
2022 be passed to HFUN, as above. Fthrow() longjmp()s back to the | |
2023 jump point we just established, and we in turn just call the | |
2024 HFUN and return its value. | |
2025 | |
2026 For a real condition-case, HFUN will always be | |
2027 run_condition_case_handlers() and HARG is the argument VAR | |
2028 to condition-case. That function just binds VAR to the cons | |
2029 (SIG . DATA) that is the CAR of VAL, and calls the handler | |
2030 (BODY ...) that is the CDR of VAL. Note that before calling | |
2031 Fthrow(), Fsignal() restored Vcondition_handlers to the value | |
2032 it had *before* condition_case_1() was called. This maintains | |
2033 consistency (so that the state of things at exit of | |
2034 condition_case_1() is the same as at entry), and implies | |
2035 that the handler can signal the same error again (possibly | |
2036 after processing of its own), without getting in an infinite | |
2037 loop. */ | |
2038 | |
2039 Lisp_Object | |
2040 condition_case_1 (Lisp_Object handlers, | |
2041 Lisp_Object (*bfun) (Lisp_Object barg), | |
2042 Lisp_Object barg, | |
2043 Lisp_Object (*hfun) (Lisp_Object val, Lisp_Object harg), | |
2044 Lisp_Object harg) | |
2045 { | |
2046 int speccount = specpdl_depth(); | |
2047 struct catchtag c; | |
617 | 2048 struct gcpro gcpro1, gcpro2, gcpro3; |
428 | 2049 |
2050 #if 0 /* FSFmacs */ | |
2051 c.tag = Qnil; | |
2052 #else | |
2053 /* Do consing now so out-of-memory error happens up front */ | |
2054 /* (unbound . stuff) is a special condition-case kludge marker | |
2055 which is known specially by Fsignal. | |
617 | 2056 [[ This is an abomination, but to fix it would require either |
428 | 2057 making condition_case cons (a union of the conditions of the clauses) |
617 | 2058 or changing the byte-compiler output (no thanks).]] |
2059 | |
2060 The above comment is clearly wrong. FSF does not do it this way | |
2061 and did not change the byte-compiler output. Instead they use a | |
2062 `struct handler' to hold the various values (in place of our | |
2063 Vcondition_handlers) and chain them together, with pointers from | |
2064 the `struct catchtag' to the `struct handler'. We should perhaps | |
2065 consider moving to something similar, but not before I merge my | |
2066 stderr-proc workspace, which contains changes to these | |
2067 functions. --ben */ | |
428 | 2068 c.tag = noseeum_cons (noseeum_cons (Qunbound, handlers), |
2069 Vcondition_handlers); | |
2070 #endif | |
2071 c.val = Qnil; | |
853 | 2072 c.actual_tag = Qnil; |
2532 | 2073 c.backtrace = Qnil; |
428 | 2074 c.backlist = backtrace_list; |
2075 #if 0 /* FSFmacs */ | |
2076 /* #### */ | |
2077 c.handlerlist = handlerlist; | |
2078 #endif | |
2079 c.lisp_eval_depth = lisp_eval_depth; | |
2080 c.pdlcount = specpdl_depth(); | |
2081 #if 0 /* FSFmacs */ | |
2082 c.poll_suppress_count = async_timer_suppress_count; | |
2083 #endif | |
2084 c.gcpro = gcprolist; | |
2085 /* #### FSFmacs does the following statement *after* the setjmp(). */ | |
2086 c.next = catchlist; | |
2087 | |
2088 if (SETJMP (c.jmp)) | |
2089 { | |
2090 /* throw does ungcpro, etc */ | |
2091 return (*hfun) (c.val, harg); | |
2092 } | |
2093 | |
2094 record_unwind_protect (condition_case_unwind, c.tag); | |
2095 | |
2096 catchlist = &c; | |
2097 #if 0 /* FSFmacs */ | |
2098 h.handler = handlers; | |
2099 h.var = Qnil; | |
2100 h.next = handlerlist; | |
2101 h.tag = &c; | |
2102 handlerlist = &h; | |
2103 #else | |
2104 Vcondition_handlers = c.tag; | |
2105 #endif | |
2106 GCPRO1 (harg); /* Somebody has to gc-protect */ | |
2107 c.val = ((*bfun) (barg)); | |
2108 UNGCPRO; | |
617 | 2109 |
2110 /* Once we change `catchlist' below, the stuff in c will not be GCPRO'd. */ | |
2111 GCPRO3 (harg, c.val, c.tag); | |
2112 | |
428 | 2113 catchlist = c.next; |
853 | 2114 check_catchlist_sanity (); |
617 | 2115 /* Note: The unbind also resets Vcondition_handlers. Maybe we should |
2116 delete this here. */ | |
428 | 2117 Vcondition_handlers = XCDR (c.tag); |
771 | 2118 unbind_to (speccount); |
617 | 2119 |
2120 UNGCPRO; | |
2121 /* free the conses *after* the unbind, because the unbind will run | |
2122 condition_case_unwind above. */ | |
853 | 2123 free_cons (XCAR (c.tag)); |
2124 free_cons (c.tag); | |
617 | 2125 return c.val; |
428 | 2126 } |
2127 | |
2128 static Lisp_Object | |
2129 run_condition_case_handlers (Lisp_Object val, Lisp_Object var) | |
2130 { | |
2131 /* This function can GC */ | |
2132 #if 0 /* FSFmacs */ | |
2133 if (!NILP (h.var)) | |
2134 specbind (h.var, c.val); | |
2135 val = Fprogn (Fcdr (h.chosen_clause)); | |
2136 | |
2137 /* Note that this just undoes the binding of h.var; whoever | |
2138 longjmp()ed to us unwound the stack to c.pdlcount before | |
2139 throwing. */ | |
771 | 2140 unbind_to (c.pdlcount); |
428 | 2141 return val; |
2142 #else | |
2143 int speccount; | |
2144 | |
2145 CHECK_TRUE_LIST (val); | |
2146 if (NILP (var)) | |
2147 return Fprogn (Fcdr (val)); /* tail call */ | |
2148 | |
2149 speccount = specpdl_depth(); | |
2150 specbind (var, Fcar (val)); | |
2151 val = Fprogn (Fcdr (val)); | |
771 | 2152 return unbind_to_1 (speccount, val); |
428 | 2153 #endif |
2154 } | |
2155 | |
2156 /* Here for bytecode to call non-consfully. This is exactly like | |
2157 condition-case except that it takes three arguments rather | |
2158 than a single list of arguments. */ | |
2159 Lisp_Object | |
2160 condition_case_3 (Lisp_Object bodyform, Lisp_Object var, Lisp_Object handlers) | |
2161 { | |
2162 /* This function can GC */ | |
2163 EXTERNAL_LIST_LOOP_2 (handler, handlers) | |
2164 { | |
2165 if (NILP (handler)) | |
2166 ; | |
2167 else if (CONSP (handler)) | |
2168 { | |
2169 Lisp_Object conditions = XCAR (handler); | |
2170 /* CONDITIONS must a condition name or a list of condition names */ | |
2171 if (SYMBOLP (conditions)) | |
2172 ; | |
2173 else | |
2174 { | |
2175 EXTERNAL_LIST_LOOP_2 (condition, conditions) | |
2176 if (!SYMBOLP (condition)) | |
2177 goto invalid_condition_handler; | |
2178 } | |
2179 } | |
2180 else | |
2181 { | |
2182 invalid_condition_handler: | |
563 | 2183 sferror ("Invalid condition handler", handler); |
428 | 2184 } |
2185 } | |
2186 | |
2187 CHECK_SYMBOL (var); | |
2188 | |
2189 return condition_case_1 (handlers, | |
2190 Feval, bodyform, | |
2191 run_condition_case_handlers, | |
2192 var); | |
2193 } | |
2194 | |
2195 DEFUN ("condition-case", Fcondition_case, 2, UNEVALLED, 0, /* | |
2196 Regain control when an error is signalled. | |
2197 Usage looks like (condition-case VAR BODYFORM HANDLERS...). | |
2198 Executes BODYFORM and returns its value if no error happens. | |
2199 Each element of HANDLERS looks like (CONDITION-NAME BODY...) | |
2200 where the BODY is made of Lisp expressions. | |
2201 | |
771 | 2202 A typical usage of `condition-case' looks like this: |
2203 | |
2204 (condition-case nil | |
2205 ;; you need a progn here if you want more than one statement ... | |
2206 (progn | |
2207 (do-something) | |
2208 (do-something-else)) | |
2209 (error | |
2210 (issue-warning-or) | |
2211 ;; but strangely, you don't need one here. | |
2212 (return-a-value-etc) | |
2213 )) | |
2214 | |
428 | 2215 A handler is applicable to an error if CONDITION-NAME is one of the |
2216 error's condition names. If an error happens, the first applicable | |
2217 handler is run. As a special case, a CONDITION-NAME of t matches | |
2218 all errors, even those without the `error' condition name on them | |
2219 \(e.g. `quit'). | |
2220 | |
2221 The car of a handler may be a list of condition names | |
2222 instead of a single condition name. | |
2223 | |
2224 When a handler handles an error, | |
2225 control returns to the condition-case and the handler BODY... is executed | |
2226 with VAR bound to (SIGNALED-CONDITIONS . SIGNAL-DATA). | |
2227 VAR may be nil; then you do not get access to the signal information. | |
2228 | |
2229 The value of the last BODY form is returned from the condition-case. | |
2230 See also the function `signal' for more info. | |
2231 | |
2232 Note that at the time the condition handler is invoked, the Lisp stack | |
2233 and the current catches, condition-cases, and bindings have all been | |
2234 popped back to the state they were in just before the call to | |
2235 `condition-case'. This means that resignalling the error from | |
2236 within the handler will not result in an infinite loop. | |
2237 | |
2238 If you want to establish an error handler that is called with the | |
2239 Lisp stack, bindings, etc. as they were when `signal' was called, | |
2240 rather than when the handler was set, use `call-with-condition-handler'. | |
2241 */ | |
2242 (args)) | |
2243 { | |
2244 /* This function can GC */ | |
2245 Lisp_Object var = XCAR (args); | |
2246 Lisp_Object bodyform = XCAR (XCDR (args)); | |
2247 Lisp_Object handlers = XCDR (XCDR (args)); | |
2248 return condition_case_3 (bodyform, var, handlers); | |
2249 } | |
2250 | |
2251 DEFUN ("call-with-condition-handler", Fcall_with_condition_handler, 2, MANY, 0, /* | |
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2252 Call FUNCTION with arguments ARGS, regaining control on error. |
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|
2253 |
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|
2254 This function is similar to `condition-case', but HANDLER is invoked |
428 | 2255 with the same environment (Lisp stack, bindings, catches, condition-cases) |
2256 that was current when `signal' was called, rather than when the handler | |
2257 was established. | |
2258 | |
2259 HANDLER should be a function of one argument, which is a cons of the args | |
2260 \(SIG . DATA) that were passed to `signal'. It is invoked whenever | |
2261 `signal' is called (this differs from `condition-case', which allows | |
2262 you to specify which errors are trapped). If the handler function | |
2263 returns, `signal' continues as if the handler were never invoked. | |
2264 \(It continues to look for handlers established earlier than this one, | |
2265 and invokes the standard error-handler if none is found.) | |
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2266 |
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|
2267 arguments: (HANDLER FUNCTION &rest ARGS) |
428 | 2268 */ |
2269 (int nargs, Lisp_Object *args)) /* Note! Args side-effected! */ | |
2270 { | |
2271 /* This function can GC */ | |
2272 int speccount = specpdl_depth(); | |
2273 Lisp_Object tem; | |
2274 | |
853 | 2275 tem = Ffunction_max_args (args[0]); |
2276 if (! (XINT (Ffunction_min_args (args[0])) <= 1 | |
2277 && (NILP (tem) || 1 <= XINT (tem)))) | |
2278 invalid_argument ("Must be function of one argument", args[0]); | |
2279 | |
2280 /* (handler-fun . handler-args) but currently there are no handler-args */ | |
428 | 2281 tem = noseeum_cons (list1 (args[0]), Vcondition_handlers); |
2282 record_unwind_protect (condition_bind_unwind, tem); | |
2283 Vcondition_handlers = tem; | |
2284 | |
2285 /* Caller should have GC-protected args */ | |
771 | 2286 return unbind_to_1 (speccount, Ffuncall (nargs - 1, args + 1)); |
428 | 2287 } |
2288 | |
853 | 2289 /* This is the C version of the above function. It calls FUN, passing it |
2290 ARG, first setting up HANDLER to catch signals in the environment in | |
2291 which they were signalled. (HANDLER is only invoked if there was no | |
2292 handler (either from condition-case or call-with-condition-handler) set | |
2293 later on that handled the signal; therefore, this is a real error. | |
2294 | |
2295 HANDLER is invoked with three arguments: the ERROR-SYMBOL and DATA as | |
2296 passed to `signal', and HANDLER_ARG. Originally I made HANDLER_ARG and | |
2297 ARG be void * to facilitate passing structures, but I changed to | |
2298 Lisp_Objects because all the other C interfaces to catch/condition-case/etc. | |
2299 take Lisp_Objects, and it is easy enough to use make_opaque_ptr() et al. | |
2300 to convert between Lisp_Objects and structure pointers. */ | |
2301 | |
2302 Lisp_Object | |
2303 call_with_condition_handler (Lisp_Object (*handler) (Lisp_Object, Lisp_Object, | |
2304 Lisp_Object), | |
2305 Lisp_Object handler_arg, | |
2306 Lisp_Object (*fun) (Lisp_Object), | |
2307 Lisp_Object arg) | |
2308 { | |
2309 /* This function can GC */ | |
1111 | 2310 int speccount = specpdl_depth (); |
853 | 2311 Lisp_Object tem; |
2312 | |
2313 /* ((handler-fun . (handler-arg . nil)) ... ) */ | |
1111 | 2314 tem = noseeum_cons (noseeum_cons (make_opaque_ptr ((void *) handler), |
853 | 2315 noseeum_cons (handler_arg, Qnil)), |
2316 Vcondition_handlers); | |
2317 record_unwind_protect (condition_bind_unwind, tem); | |
2318 Vcondition_handlers = tem; | |
2319 | |
2320 return unbind_to_1 (speccount, (*fun) (arg)); | |
2321 } | |
2322 | |
428 | 2323 static int |
2324 condition_type_p (Lisp_Object type, Lisp_Object conditions) | |
2325 { | |
2326 if (EQ (type, Qt)) | |
2327 /* (condition-case c # (t c)) catches -all- signals | |
2328 * Use with caution! */ | |
2329 return 1; | |
2330 | |
2331 if (SYMBOLP (type)) | |
2332 return !NILP (Fmemq (type, conditions)); | |
2333 | |
2334 for (; CONSP (type); type = XCDR (type)) | |
2335 if (!NILP (Fmemq (XCAR (type), conditions))) | |
2336 return 1; | |
2337 | |
2338 return 0; | |
2339 } | |
2340 | |
2341 static Lisp_Object | |
2342 return_from_signal (Lisp_Object value) | |
2343 { | |
2344 #if 1 | |
2345 /* Most callers are not prepared to handle gc if this | |
2346 returns. So, since this feature is not very useful, | |
2347 take it out. */ | |
2348 /* Have called debugger; return value to signaller */ | |
2349 return value; | |
2350 #else /* But the reality is that that stinks, because: */ | |
2351 /* GACK!!! Really want some way for debug-on-quit errors | |
2352 to be continuable!! */ | |
563 | 2353 signal_error (Qunimplemented, |
2354 "Returning a value from an error is no longer supported", | |
2355 Qunbound); | |
428 | 2356 #endif |
2357 } | |
2358 | |
2359 | |
2360 /************************************************************************/ | |
2361 /* the workhorse error-signaling function */ | |
2362 /************************************************************************/ | |
2363 | |
853 | 2364 /* This exists only for debugging purposes, as a place to put a breakpoint |
2365 that won't get signalled for errors occurring when | |
2366 call_with_suspended_errors() was invoked. */ | |
2367 | |
872 | 2368 /* Don't make static or it might be compiled away */ |
2369 void signal_1 (void); | |
2370 | |
2371 void | |
853 | 2372 signal_1 (void) |
2373 { | |
2374 } | |
2375 | |
428 | 2376 /* #### This function has not been synched with FSF. It diverges |
2377 significantly. */ | |
2378 | |
853 | 2379 /* The simplest external error function: it would be called |
2380 signal_continuable_error() in the terminology below, but it's | |
2381 Lisp-callable. */ | |
2382 | |
2383 DEFUN ("signal", Fsignal, 2, 2, 0, /* | |
2384 Signal a continuable error. Args are ERROR-SYMBOL, and associated DATA. | |
2385 An error symbol is a symbol defined using `define-error'. | |
2386 DATA should be a list. Its elements are printed as part of the error message. | |
2387 If the signal is handled, DATA is made available to the handler. | |
2388 See also the function `signal-error', and the functions to handle errors: | |
2389 `condition-case' and `call-with-condition-handler'. | |
2390 | |
2391 Note that this function can return, if the debugger is invoked and the | |
2392 user invokes the "return from signal" option. | |
2393 */ | |
2394 (error_symbol, data)) | |
428 | 2395 { |
2396 /* This function can GC */ | |
853 | 2397 struct gcpro gcpro1, gcpro2, gcpro3, gcpro4; |
2398 Lisp_Object conditions = Qnil; | |
2399 Lisp_Object handlers = Qnil; | |
428 | 2400 /* signal_call_debugger() could get called more than once |
2401 (once when a call-with-condition-handler is about to | |
2402 be dealt with, and another when a condition-case handler | |
2403 is about to be invoked). So make sure the debugger and/or | |
2404 stack trace aren't done more than once. */ | |
2405 int stack_trace_displayed = 0; | |
2406 int debugger_entered = 0; | |
853 | 2407 |
2408 /* Fsignal() is one of these functions that's called all the time | |
2409 with newly-created Lisp objects. We allow this; but we must GC- | |
2410 protect the objects because all sorts of weird stuff could | |
2411 happen. */ | |
2412 | |
2413 GCPRO4 (conditions, handlers, error_symbol, data); | |
2414 | |
2415 if (!(inhibit_flags & CALL_WITH_SUSPENDED_ERRORS)) | |
2416 signal_1 (); | |
428 | 2417 |
2418 if (!initialized) | |
2419 { | |
2420 /* who knows how much has been initialized? Safest bet is | |
2421 just to bomb out immediately. */ | |
771 | 2422 stderr_out ("Error before initialization is complete!\n"); |
2500 | 2423 ABORT (); |
428 | 2424 } |
2425 | |
3092 | 2426 #ifndef NEW_GC |
1123 | 2427 assert (!gc_in_progress); |
3092 | 2428 #endif /* not NEW_GC */ |
1123 | 2429 |
2430 /* We abort if in_display and we are not protected, as garbage | |
2431 collections and non-local exits will invariably be fatal, but in | |
2432 messy, difficult-to-debug ways. See enter_redisplay_critical_section(). | |
2433 */ | |
2434 | |
1318 | 2435 #ifdef ERROR_CHECK_TRAPPING_PROBLEMS |
1123 | 2436 check_proper_critical_section_nonlocal_exit_protection (); |
1318 | 2437 #endif |
428 | 2438 |
853 | 2439 conditions = Fget (error_symbol, Qerror_conditions, Qnil); |
428 | 2440 |
2441 for (handlers = Vcondition_handlers; | |
2442 CONSP (handlers); | |
2443 handlers = XCDR (handlers)) | |
2444 { | |
2445 Lisp_Object handler_fun = XCAR (XCAR (handlers)); | |
2446 Lisp_Object handler_data = XCDR (XCAR (handlers)); | |
2447 Lisp_Object outer_handlers = XCDR (handlers); | |
2448 | |
2449 if (!UNBOUNDP (handler_fun)) | |
2450 { | |
2451 /* call-with-condition-handler */ | |
2452 Lisp_Object tem; | |
2453 Lisp_Object all_handlers = Vcondition_handlers; | |
2454 struct gcpro ngcpro1; | |
2455 NGCPRO1 (all_handlers); | |
2456 Vcondition_handlers = outer_handlers; | |
2457 | |
853 | 2458 tem = signal_call_debugger (conditions, error_symbol, data, |
428 | 2459 outer_handlers, 1, |
2460 &stack_trace_displayed, | |
2461 &debugger_entered); | |
2462 if (!UNBOUNDP (tem)) | |
2463 RETURN_NUNGCPRO (return_from_signal (tem)); | |
2464 | |
853 | 2465 if (OPAQUE_PTRP (handler_fun)) |
2466 { | |
2467 if (NILP (handler_data)) | |
2468 { | |
2469 Lisp_Object (*hfun) (Lisp_Object, Lisp_Object) = | |
2470 (Lisp_Object (*) (Lisp_Object, Lisp_Object)) | |
2471 (get_opaque_ptr (handler_fun)); | |
2472 | |
2473 tem = (*hfun) (error_symbol, data); | |
2474 } | |
2475 else | |
2476 { | |
2477 Lisp_Object (*hfun) (Lisp_Object, Lisp_Object, Lisp_Object) = | |
2478 (Lisp_Object (*) (Lisp_Object, Lisp_Object, Lisp_Object)) | |
2479 (get_opaque_ptr (handler_fun)); | |
2480 | |
2481 assert (NILP (XCDR (handler_data))); | |
2482 tem = (*hfun) (error_symbol, data, XCAR (handler_data)); | |
2483 } | |
2484 } | |
2485 else | |
2486 { | |
2487 tem = Fcons (error_symbol, data); | |
2488 if (NILP (handler_data)) | |
2489 tem = call1 (handler_fun, tem); | |
2490 else | |
2491 { | |
2492 /* (This code won't be used (for now?).) */ | |
2493 struct gcpro nngcpro1; | |
2494 Lisp_Object args[3]; | |
2495 NNGCPRO1 (args[0]); | |
2496 nngcpro1.nvars = 3; | |
2497 args[0] = handler_fun; | |
2498 args[1] = tem; | |
2499 args[2] = handler_data; | |
2500 nngcpro1.var = args; | |
2501 tem = Fapply (3, args); | |
2502 NNUNGCPRO; | |
2503 } | |
2504 } | |
428 | 2505 NUNGCPRO; |
2506 #if 0 | |
2507 if (!EQ (tem, Qsignal)) | |
2508 return return_from_signal (tem); | |
2509 #endif | |
2510 /* If handler didn't throw, try another handler */ | |
2511 Vcondition_handlers = all_handlers; | |
2512 } | |
2513 | |
2514 /* It's a condition-case handler */ | |
2515 | |
2516 /* t is used by handlers for all conditions, set up by C code. | |
2517 * debugger is not called even if debug_on_error */ | |
2518 else if (EQ (handler_data, Qt)) | |
2519 { | |
2520 UNGCPRO; | |
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|
2521 throw_or_bomb_out (handlers, Fcons (error_symbol, data), |
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|
2522 0, Qnil, Qnil); |
428 | 2523 } |
2524 /* `error' is used similarly to the way `t' is used, but in | |
2525 addition it invokes the debugger if debug_on_error. | |
2526 This is normally used for the outer command-loop error | |
2527 handler. */ | |
2528 else if (EQ (handler_data, Qerror)) | |
2529 { | |
853 | 2530 Lisp_Object tem = signal_call_debugger (conditions, error_symbol, |
2531 data, | |
428 | 2532 outer_handlers, 0, |
2533 &stack_trace_displayed, | |
2534 &debugger_entered); | |
2535 | |
2536 UNGCPRO; | |
2537 if (!UNBOUNDP (tem)) | |
2538 return return_from_signal (tem); | |
2539 | |
853 | 2540 tem = Fcons (error_symbol, data); |
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changeset
|
2541 throw_or_bomb_out (handlers, tem, 0, Qnil, Qnil); |
428 | 2542 } |
2543 else | |
2544 { | |
2545 /* handler established by real (Lisp) condition-case */ | |
2546 Lisp_Object h; | |
2547 | |
2548 for (h = handler_data; CONSP (h); h = Fcdr (h)) | |
2549 { | |
2550 Lisp_Object clause = Fcar (h); | |
2551 Lisp_Object tem = Fcar (clause); | |
2552 | |
2553 if (condition_type_p (tem, conditions)) | |
2554 { | |
853 | 2555 tem = signal_call_debugger (conditions, error_symbol, data, |
428 | 2556 outer_handlers, 1, |
2557 &stack_trace_displayed, | |
2558 &debugger_entered); | |
2559 UNGCPRO; | |
2560 if (!UNBOUNDP (tem)) | |
2561 return return_from_signal (tem); | |
2562 | |
2563 /* Doesn't return */ | |
853 | 2564 tem = Fcons (Fcons (error_symbol, data), Fcdr (clause)); |
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2565 throw_or_bomb_out (handlers, tem, 0, Qnil, Qnil); |
428 | 2566 } |
2567 } | |
2568 } | |
2569 } | |
2570 | |
2571 /* If no handler is present now, try to run the debugger, | |
2572 and if that fails, throw to top level. | |
2573 | |
2574 #### The only time that no handler is present is during | |
2575 temacs or perhaps very early in XEmacs. In both cases, | |
3025 | 2576 there is no `top-level' catch. (That's why the |
428 | 2577 "bomb-out" hack was added.) |
2578 | |
853 | 2579 [[#### Fix this horrifitude!]] |
2580 | |
2581 I don't think this is horrifitude, but just defensive coding. --ben */ | |
2582 | |
2583 signal_call_debugger (conditions, error_symbol, data, Qnil, 0, | |
428 | 2584 &stack_trace_displayed, |
2585 &debugger_entered); | |
2586 UNGCPRO; | |
853 | 2587 throw_or_bomb_out (Qtop_level, Qt, 1, error_symbol, |
2588 data); /* Doesn't return */ | |
2268 | 2589 RETURN_NOT_REACHED (Qnil); |
428 | 2590 } |
2591 | |
2592 /****************** Error functions class 1 ******************/ | |
2593 | |
2594 /* Class 1: General functions that signal an error. | |
2595 These functions take an error type and a list of associated error | |
2596 data. */ | |
2597 | |
853 | 2598 /* No signal_continuable_error_1(); it's called Fsignal(). */ |
428 | 2599 |
2600 /* Signal a non-continuable error. */ | |
2601 | |
2602 DOESNT_RETURN | |
563 | 2603 signal_error_1 (Lisp_Object sig, Lisp_Object data) |
428 | 2604 { |
2605 for (;;) | |
2606 Fsignal (sig, data); | |
2607 } | |
853 | 2608 |
2609 #ifdef ERROR_CHECK_CATCH | |
2610 | |
2611 void | |
2612 check_catchlist_sanity (void) | |
2613 { | |
2614 #if 0 | |
2615 /* vou me tomar no cu! i just masked andy's missing-unbind | |
2616 bug! */ | |
442 | 2617 struct catchtag *c; |
2618 int found_error_tag = 0; | |
2619 | |
2620 for (c = catchlist; c; c = c->next) | |
2621 { | |
2622 if (EQ (c->tag, Qunbound_suspended_errors_tag)) | |
2623 { | |
2624 found_error_tag = 1; | |
2625 break; | |
2626 } | |
2627 } | |
2628 | |
2629 assert (found_error_tag || NILP (Vcurrent_error_state)); | |
853 | 2630 #endif /* vou me tomar no cul */ |
2631 } | |
2632 | |
2633 void | |
2634 check_specbind_stack_sanity (void) | |
2635 { | |
2636 } | |
2637 | |
2638 #endif /* ERROR_CHECK_CATCH */ | |
428 | 2639 |
2640 /* Signal a non-continuable error or display a warning or do nothing, | |
2641 according to ERRB. CLASS is the class of warning and should | |
2642 refer to what sort of operation is being done (e.g. Qtoolbar, | |
2643 Qresource, etc.). */ | |
2644 | |
2645 void | |
1204 | 2646 maybe_signal_error_1 (Lisp_Object sig, Lisp_Object data, Lisp_Object class_, |
578 | 2647 Error_Behavior errb) |
428 | 2648 { |
2649 if (ERRB_EQ (errb, ERROR_ME_NOT)) | |
2650 return; | |
793 | 2651 else if (ERRB_EQ (errb, ERROR_ME_DEBUG_WARN)) |
1204 | 2652 warn_when_safe_lispobj (class_, Qdebug, Fcons (sig, data)); |
428 | 2653 else if (ERRB_EQ (errb, ERROR_ME_WARN)) |
1204 | 2654 warn_when_safe_lispobj (class_, Qwarning, Fcons (sig, data)); |
428 | 2655 else |
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|
2656 signal_error_1 (sig, data); |
428 | 2657 } |
2658 | |
2659 /* Signal a continuable error or display a warning or do nothing, | |
2660 according to ERRB. */ | |
2661 | |
2662 Lisp_Object | |
563 | 2663 maybe_signal_continuable_error_1 (Lisp_Object sig, Lisp_Object data, |
1204 | 2664 Lisp_Object class_, Error_Behavior errb) |
428 | 2665 { |
2666 if (ERRB_EQ (errb, ERROR_ME_NOT)) | |
2667 return Qnil; | |
793 | 2668 else if (ERRB_EQ (errb, ERROR_ME_DEBUG_WARN)) |
2669 { | |
1204 | 2670 warn_when_safe_lispobj (class_, Qdebug, Fcons (sig, data)); |
793 | 2671 return Qnil; |
2672 } | |
428 | 2673 else if (ERRB_EQ (errb, ERROR_ME_WARN)) |
2674 { | |
1204 | 2675 warn_when_safe_lispobj (class_, Qwarning, Fcons (sig, data)); |
428 | 2676 return Qnil; |
2677 } | |
2678 else | |
2679 return Fsignal (sig, data); | |
2680 } | |
2681 | |
2682 | |
2683 /****************** Error functions class 2 ******************/ | |
2684 | |
563 | 2685 /* Class 2: Signal an error with a string and an associated object. |
2686 Normally these functions are used to attach one associated object, | |
2687 but to attach no objects, specify Qunbound for FROB, and for more | |
2688 than one object, make a list of the objects with Qunbound as the | |
2689 first element. (If you have specifically two objects to attach, | |
2690 consider using the function in class 3 below.) These functions | |
2691 signal an error of a specified type, whose data is one or more | |
2692 objects (usually two), a string the related Lisp object(s) | |
2693 specified as FROB. */ | |
2694 | |
2695 /* Out of REASON and FROB, return a list of elements suitable for passing | |
2696 to signal_error_1(). */ | |
2697 | |
2698 Lisp_Object | |
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2699 build_error_data (const Ascbyte *reason, Lisp_Object frob) |
563 | 2700 { |
2701 if (EQ (frob, Qunbound)) | |
2702 frob = Qnil; | |
2703 else if (CONSP (frob) && EQ (XCAR (frob), Qunbound)) | |
2704 frob = XCDR (frob); | |
2705 else | |
2706 frob = list1 (frob); | |
2707 if (!reason) | |
2708 return frob; | |
2709 else | |
771 | 2710 return Fcons (build_msg_string (reason), frob); |
563 | 2711 } |
2712 | |
2713 DOESNT_RETURN | |
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2714 signal_error (Lisp_Object type, const Ascbyte *reason, Lisp_Object frob) |
563 | 2715 { |
2716 signal_error_1 (type, build_error_data (reason, frob)); | |
2717 } | |
2718 | |
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|
2719 /* NOTE NOTE NOTE: If you feel you need signal_ierror() or something |
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|
2720 similar when reason is a non-ASCII message, you're probably doing |
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|
2721 something wrong. When you have an error message from an external |
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|
2722 source, you should put the error message as the first item in FROB and |
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diff
changeset
|
2723 put a string in REASON indicating what you were doing when the error |
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|
2724 message occurred. Use signal_error_2() for such a case. */ |
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|
2725 |
563 | 2726 void |
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|
2727 maybe_signal_error (Lisp_Object type, const Ascbyte *reason, |
1204 | 2728 Lisp_Object frob, Lisp_Object class_, |
578 | 2729 Error_Behavior errb) |
563 | 2730 { |
2731 /* Optimization: */ | |
2732 if (ERRB_EQ (errb, ERROR_ME_NOT)) | |
2733 return; | |
1204 | 2734 maybe_signal_error_1 (type, build_error_data (reason, frob), class_, errb); |
563 | 2735 } |
2736 | |
2737 Lisp_Object | |
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|
2738 signal_continuable_error (Lisp_Object type, const Ascbyte *reason, |
563 | 2739 Lisp_Object frob) |
2740 { | |
2741 return Fsignal (type, build_error_data (reason, frob)); | |
2742 } | |
2743 | |
2744 Lisp_Object | |
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|
2745 maybe_signal_continuable_error (Lisp_Object type, const Ascbyte *reason, |
1204 | 2746 Lisp_Object frob, Lisp_Object class_, |
578 | 2747 Error_Behavior errb) |
563 | 2748 { |
2749 /* Optimization: */ | |
2750 if (ERRB_EQ (errb, ERROR_ME_NOT)) | |
2751 return Qnil; | |
2752 return maybe_signal_continuable_error_1 (type, | |
2753 build_error_data (reason, frob), | |
1204 | 2754 class_, errb); |
563 | 2755 } |
2756 | |
2757 | |
2758 /****************** Error functions class 3 ******************/ | |
2759 | |
2760 /* Class 3: Signal an error with a string and two associated objects. | |
2761 These functions signal an error of a specified type, whose data | |
2762 is three objects, a string and two related Lisp objects. | |
2763 (The equivalent could be accomplished using the class 2 functions, | |
2764 but these are more convenient in this particular case.) */ | |
2765 | |
2766 DOESNT_RETURN | |
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|
2767 signal_error_2 (Lisp_Object type, const Ascbyte *reason, |
563 | 2768 Lisp_Object frob0, Lisp_Object frob1) |
2769 { | |
771 | 2770 signal_error_1 (type, list3 (build_msg_string (reason), frob0, |
563 | 2771 frob1)); |
2772 } | |
2773 | |
2774 void | |
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|
2775 maybe_signal_error_2 (Lisp_Object type, const Ascbyte *reason, |
563 | 2776 Lisp_Object frob0, Lisp_Object frob1, |
1204 | 2777 Lisp_Object class_, Error_Behavior errb) |
563 | 2778 { |
2779 /* Optimization: */ | |
2780 if (ERRB_EQ (errb, ERROR_ME_NOT)) | |
2781 return; | |
771 | 2782 maybe_signal_error_1 (type, list3 (build_msg_string (reason), frob0, |
1204 | 2783 frob1), class_, errb); |
563 | 2784 } |
2785 | |
2786 Lisp_Object | |
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|
2787 signal_continuable_error_2 (Lisp_Object type, const Ascbyte *reason, |
563 | 2788 Lisp_Object frob0, Lisp_Object frob1) |
2789 { | |
771 | 2790 return Fsignal (type, list3 (build_msg_string (reason), frob0, |
563 | 2791 frob1)); |
2792 } | |
2793 | |
2794 Lisp_Object | |
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|
2795 maybe_signal_continuable_error_2 (Lisp_Object type, const Ascbyte *reason, |
563 | 2796 Lisp_Object frob0, Lisp_Object frob1, |
1204 | 2797 Lisp_Object class_, Error_Behavior errb) |
563 | 2798 { |
2799 /* Optimization: */ | |
2800 if (ERRB_EQ (errb, ERROR_ME_NOT)) | |
2801 return Qnil; | |
2802 return maybe_signal_continuable_error_1 | |
771 | 2803 (type, list3 (build_msg_string (reason), frob0, frob1), |
1204 | 2804 class_, errb); |
563 | 2805 } |
2806 | |
2807 | |
2808 /****************** Error functions class 4 ******************/ | |
2809 | |
2810 /* Class 4: Printf-like functions that signal an error. | |
442 | 2811 These functions signal an error of a specified type, whose data |
428 | 2812 is a single string, created using the arguments. */ |
2813 | |
2814 DOESNT_RETURN | |
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|
2815 signal_ferror (Lisp_Object type, const Ascbyte *fmt, ...) |
442 | 2816 { |
2817 Lisp_Object obj; | |
2818 va_list args; | |
2819 | |
2820 va_start (args, fmt); | |
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|
2821 obj = emacs_vsprintf_string (GETTEXT (fmt), args); |
442 | 2822 va_end (args); |
2823 | |
2824 /* Fsignal GC-protects its args */ | |
563 | 2825 signal_error (type, 0, obj); |
442 | 2826 } |
2827 | |
2828 void | |
1204 | 2829 maybe_signal_ferror (Lisp_Object type, Lisp_Object class_, Error_Behavior errb, |
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|
2830 const Ascbyte *fmt, ...) |
442 | 2831 { |
2832 Lisp_Object obj; | |
2833 va_list args; | |
2834 | |
2835 /* Optimization: */ | |
2836 if (ERRB_EQ (errb, ERROR_ME_NOT)) | |
2837 return; | |
2838 | |
2839 va_start (args, fmt); | |
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|
2840 obj = emacs_vsprintf_string (GETTEXT (fmt), args); |
442 | 2841 va_end (args); |
2842 | |
2843 /* Fsignal GC-protects its args */ | |
1204 | 2844 maybe_signal_error (type, 0, obj, class_, errb); |
442 | 2845 } |
2846 | |
2847 Lisp_Object | |
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|
2848 signal_continuable_ferror (Lisp_Object type, const Ascbyte *fmt, ...) |
428 | 2849 { |
2850 Lisp_Object obj; | |
2851 va_list args; | |
2852 | |
2853 va_start (args, fmt); | |
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changeset
|
2854 obj = emacs_vsprintf_string (GETTEXT (fmt), args); |
442 | 2855 va_end (args); |
2856 | |
2857 /* Fsignal GC-protects its args */ | |
2858 return Fsignal (type, list1 (obj)); | |
2859 } | |
2860 | |
2861 Lisp_Object | |
1204 | 2862 maybe_signal_continuable_ferror (Lisp_Object type, Lisp_Object class_, |
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|
2863 Error_Behavior errb, const Ascbyte *fmt, ...) |
442 | 2864 { |
2865 Lisp_Object obj; | |
2866 va_list args; | |
2867 | |
2868 /* Optimization: */ | |
2869 if (ERRB_EQ (errb, ERROR_ME_NOT)) | |
2870 return Qnil; | |
2871 | |
2872 va_start (args, fmt); | |
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2873 obj = emacs_vsprintf_string (GETTEXT (fmt), args); |
442 | 2874 va_end (args); |
2875 | |
2876 /* Fsignal GC-protects its args */ | |
1204 | 2877 return maybe_signal_continuable_error (type, 0, obj, class_, errb); |
442 | 2878 } |
2879 | |
2880 | |
2881 /****************** Error functions class 5 ******************/ | |
2882 | |
563 | 2883 /* Class 5: Printf-like functions that signal an error. |
442 | 2884 These functions signal an error of a specified type, whose data |
563 | 2885 is a one or more objects, a string (created using the arguments) |
2886 and additional Lisp objects specified in FROB. (The syntax of FROB | |
2887 is the same as for class 2.) | |
2888 | |
2889 There is no need for a class 6 because you can always attach 2 | |
2890 objects using class 5 (for FROB, specify a list with three | |
2891 elements, the first of which is Qunbound), and these functions are | |
2892 not commonly used. | |
2893 */ | |
442 | 2894 |
2895 DOESNT_RETURN | |
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2896 signal_ferror_with_frob (Lisp_Object type, Lisp_Object frob, const Ascbyte *fmt, |
563 | 2897 ...) |
442 | 2898 { |
2899 Lisp_Object obj; | |
2900 va_list args; | |
2901 | |
2902 va_start (args, fmt); | |
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2903 obj = emacs_vsprintf_string (GETTEXT (fmt), args); |
442 | 2904 va_end (args); |
2905 | |
2906 /* Fsignal GC-protects its args */ | |
563 | 2907 signal_error_1 (type, Fcons (obj, build_error_data (0, frob))); |
442 | 2908 } |
2909 | |
2910 void | |
563 | 2911 maybe_signal_ferror_with_frob (Lisp_Object type, Lisp_Object frob, |
1204 | 2912 Lisp_Object class_, Error_Behavior errb, |
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2913 const Ascbyte *fmt, ...) |
442 | 2914 { |
2915 Lisp_Object obj; | |
2916 va_list args; | |
2917 | |
2918 /* Optimization: */ | |
2919 if (ERRB_EQ (errb, ERROR_ME_NOT)) | |
2920 return; | |
2921 | |
2922 va_start (args, fmt); | |
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2923 obj = emacs_vsprintf_string (GETTEXT (fmt), args); |
428 | 2924 va_end (args); |
2925 | |
2926 /* Fsignal GC-protects its args */ | |
1204 | 2927 maybe_signal_error_1 (type, Fcons (obj, build_error_data (0, frob)), class_, |
563 | 2928 errb); |
428 | 2929 } |
2930 | |
2931 Lisp_Object | |
563 | 2932 signal_continuable_ferror_with_frob (Lisp_Object type, Lisp_Object frob, |
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|
2933 const Ascbyte *fmt, ...) |
428 | 2934 { |
2935 Lisp_Object obj; | |
2936 va_list args; | |
2937 | |
2938 va_start (args, fmt); | |
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Mule-izing, various fixes related to char * arguments
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|
2939 obj = emacs_vsprintf_string (GETTEXT (fmt), args); |
428 | 2940 va_end (args); |
2941 | |
2942 /* Fsignal GC-protects its args */ | |
563 | 2943 return Fsignal (type, Fcons (obj, build_error_data (0, frob))); |
428 | 2944 } |
2945 | |
2946 Lisp_Object | |
563 | 2947 maybe_signal_continuable_ferror_with_frob (Lisp_Object type, Lisp_Object frob, |
1204 | 2948 Lisp_Object class_, |
578 | 2949 Error_Behavior errb, |
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Mule-izing, various fixes related to char * arguments
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|
2950 const Ascbyte *fmt, ...) |
428 | 2951 { |
2952 Lisp_Object obj; | |
2953 va_list args; | |
2954 | |
2955 /* Optimization: */ | |
2956 if (ERRB_EQ (errb, ERROR_ME_NOT)) | |
2957 return Qnil; | |
2958 | |
2959 va_start (args, fmt); | |
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Mule-izing, various fixes related to char * arguments
Ben Wing <ben@xemacs.org>
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|
2960 obj = emacs_vsprintf_string (GETTEXT (fmt), args); |
428 | 2961 va_end (args); |
2962 | |
2963 /* Fsignal GC-protects its args */ | |
563 | 2964 return maybe_signal_continuable_error_1 (type, |
2965 Fcons (obj, | |
2966 build_error_data (0, frob)), | |
1204 | 2967 class_, errb); |
428 | 2968 } |
2969 | |
2970 | |
2971 /* This is what the QUIT macro calls to signal a quit */ | |
2972 void | |
2973 signal_quit (void) | |
2974 { | |
853 | 2975 /* This function cannot GC. GC is prohibited because most callers do |
2976 not expect GC occurring in QUIT. Remove this if/when that gets fixed. | |
2977 --ben */ | |
2978 | |
2979 int count; | |
2980 | |
428 | 2981 if (EQ (Vquit_flag, Qcritical)) |
2982 debug_on_quit |= 2; /* set critical bit. */ | |
2983 Vquit_flag = Qnil; | |
853 | 2984 count = begin_gc_forbidden (); |
428 | 2985 /* note that this is continuable. */ |
2986 Fsignal (Qquit, Qnil); | |
853 | 2987 unbind_to (count); |
428 | 2988 } |
2989 | |
2990 | |
563 | 2991 /************************ convenience error functions ***********************/ |
2992 | |
436 | 2993 Lisp_Object |
428 | 2994 signal_void_function_error (Lisp_Object function) |
2995 { | |
436 | 2996 return Fsignal (Qvoid_function, list1 (function)); |
428 | 2997 } |
2998 | |
436 | 2999 Lisp_Object |
428 | 3000 signal_invalid_function_error (Lisp_Object function) |
3001 { | |
436 | 3002 return Fsignal (Qinvalid_function, list1 (function)); |
428 | 3003 } |
3004 | |
436 | 3005 Lisp_Object |
428 | 3006 signal_wrong_number_of_arguments_error (Lisp_Object function, int nargs) |
3007 { | |
436 | 3008 return Fsignal (Qwrong_number_of_arguments, |
3009 list2 (function, make_int (nargs))); | |
428 | 3010 } |
3011 | |
3012 /* Used in list traversal macros for efficiency. */ | |
436 | 3013 DOESNT_RETURN |
428 | 3014 signal_malformed_list_error (Lisp_Object list) |
3015 { | |
563 | 3016 signal_error (Qmalformed_list, 0, list); |
428 | 3017 } |
3018 | |
436 | 3019 DOESNT_RETURN |
428 | 3020 signal_malformed_property_list_error (Lisp_Object list) |
3021 { | |
563 | 3022 signal_error (Qmalformed_property_list, 0, list); |
428 | 3023 } |
3024 | |
436 | 3025 DOESNT_RETURN |
428 | 3026 signal_circular_list_error (Lisp_Object list) |
3027 { | |
563 | 3028 signal_error (Qcircular_list, 0, list); |
428 | 3029 } |
3030 | |
436 | 3031 DOESNT_RETURN |
428 | 3032 signal_circular_property_list_error (Lisp_Object list) |
3033 { | |
563 | 3034 signal_error (Qcircular_property_list, 0, list); |
428 | 3035 } |
442 | 3036 |
2267 | 3037 /* Called from within emacs_doprnt_1, so REASON is not formatted. */ |
442 | 3038 DOESNT_RETURN |
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Mule-izing, various fixes related to char * arguments
Ben Wing <ben@xemacs.org>
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changeset
|
3039 syntax_error (const Ascbyte *reason, Lisp_Object frob) |
442 | 3040 { |
563 | 3041 signal_error (Qsyntax_error, reason, frob); |
442 | 3042 } |
3043 | |
3044 DOESNT_RETURN | |
4952
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Mule-izing, various fixes related to char * arguments
Ben Wing <ben@xemacs.org>
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changeset
|
3045 syntax_error_2 (const Ascbyte *reason, Lisp_Object frob1, Lisp_Object frob2) |
442 | 3046 { |
563 | 3047 signal_error_2 (Qsyntax_error, reason, frob1, frob2); |
3048 } | |
3049 | |
3050 void | |
4952
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Mule-izing, various fixes related to char * arguments
Ben Wing <ben@xemacs.org>
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changeset
|
3051 maybe_syntax_error (const Ascbyte *reason, Lisp_Object frob, |
1204 | 3052 Lisp_Object class_, Error_Behavior errb) |
3053 { | |
3054 maybe_signal_error (Qsyntax_error, reason, frob, class_, errb); | |
563 | 3055 } |
3056 | |
3057 DOESNT_RETURN | |
4952
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Mule-izing, various fixes related to char * arguments
Ben Wing <ben@xemacs.org>
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changeset
|
3058 sferror (const Ascbyte *reason, Lisp_Object frob) |
563 | 3059 { |
3060 signal_error (Qstructure_formation_error, reason, frob); | |
3061 } | |
3062 | |
3063 DOESNT_RETURN | |
4952
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Mule-izing, various fixes related to char * arguments
Ben Wing <ben@xemacs.org>
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changeset
|
3064 sferror_2 (const Ascbyte *reason, Lisp_Object frob1, Lisp_Object frob2) |
563 | 3065 { |
3066 signal_error_2 (Qstructure_formation_error, reason, frob1, frob2); | |
3067 } | |
3068 | |
3069 void | |
4952
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Mule-izing, various fixes related to char * arguments
Ben Wing <ben@xemacs.org>
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changeset
|
3070 maybe_sferror (const Ascbyte *reason, Lisp_Object frob, |
1204 | 3071 Lisp_Object class_, Error_Behavior errb) |
3072 { | |
3073 maybe_signal_error (Qstructure_formation_error, reason, frob, class_, errb); | |
442 | 3074 } |
3075 | |
3076 DOESNT_RETURN | |
4952
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Mule-izing, various fixes related to char * arguments
Ben Wing <ben@xemacs.org>
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changeset
|
3077 invalid_argument (const Ascbyte *reason, Lisp_Object frob) |
442 | 3078 { |
563 | 3079 signal_error (Qinvalid_argument, reason, frob); |
442 | 3080 } |
3081 | |
3082 DOESNT_RETURN | |
4952
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Mule-izing, various fixes related to char * arguments
Ben Wing <ben@xemacs.org>
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changeset
|
3083 invalid_argument_2 (const Ascbyte *reason, Lisp_Object frob1, |
609 | 3084 Lisp_Object frob2) |
442 | 3085 { |
563 | 3086 signal_error_2 (Qinvalid_argument, reason, frob1, frob2); |
3087 } | |
3088 | |
3089 void | |
4952
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Mule-izing, various fixes related to char * arguments
Ben Wing <ben@xemacs.org>
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changeset
|
3090 maybe_invalid_argument (const Ascbyte *reason, Lisp_Object frob, |
1204 | 3091 Lisp_Object class_, Error_Behavior errb) |
3092 { | |
3093 maybe_signal_error (Qinvalid_argument, reason, frob, class_, errb); | |
563 | 3094 } |
3095 | |
3096 DOESNT_RETURN | |
5084
6afe991b8135
Add a PARSE_KEYWORDS macro, use it in #'make-hash-table.
Aidan Kehoe <kehoea@parhasard.net>
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5050
diff
changeset
|
3097 invalid_keyword_argument (Lisp_Object function, Lisp_Object keyword) |
6afe991b8135
Add a PARSE_KEYWORDS macro, use it in #'make-hash-table.
Aidan Kehoe <kehoea@parhasard.net>
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5050
diff
changeset
|
3098 { |
6afe991b8135
Add a PARSE_KEYWORDS macro, use it in #'make-hash-table.
Aidan Kehoe <kehoea@parhasard.net>
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5050
diff
changeset
|
3099 signal_error_1 (Qinvalid_keyword_argument, list2 (function, keyword)); |
6afe991b8135
Add a PARSE_KEYWORDS macro, use it in #'make-hash-table.
Aidan Kehoe <kehoea@parhasard.net>
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5050
diff
changeset
|
3100 } |
6afe991b8135
Add a PARSE_KEYWORDS macro, use it in #'make-hash-table.
Aidan Kehoe <kehoea@parhasard.net>
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5050
diff
changeset
|
3101 |
6afe991b8135
Add a PARSE_KEYWORDS macro, use it in #'make-hash-table.
Aidan Kehoe <kehoea@parhasard.net>
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5050
diff
changeset
|
3102 DOESNT_RETURN |
4952
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Mule-izing, various fixes related to char * arguments
Ben Wing <ben@xemacs.org>
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changeset
|
3103 invalid_constant (const Ascbyte *reason, Lisp_Object frob) |
563 | 3104 { |
3105 signal_error (Qinvalid_constant, reason, frob); | |
3106 } | |
3107 | |
3108 DOESNT_RETURN | |
4952
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Mule-izing, various fixes related to char * arguments
Ben Wing <ben@xemacs.org>
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changeset
|
3109 invalid_constant_2 (const Ascbyte *reason, Lisp_Object frob1, |
609 | 3110 Lisp_Object frob2) |
563 | 3111 { |
3112 signal_error_2 (Qinvalid_constant, reason, frob1, frob2); | |
3113 } | |
3114 | |
3115 void | |
4952
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Mule-izing, various fixes related to char * arguments
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changeset
|
3116 maybe_invalid_constant (const Ascbyte *reason, Lisp_Object frob, |
1204 | 3117 Lisp_Object class_, Error_Behavior errb) |
3118 { | |
3119 maybe_signal_error (Qinvalid_constant, reason, frob, class_, errb); | |
442 | 3120 } |
3121 | |
3122 DOESNT_RETURN | |
4952
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Mule-izing, various fixes related to char * arguments
Ben Wing <ben@xemacs.org>
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changeset
|
3123 invalid_operation (const Ascbyte *reason, Lisp_Object frob) |
442 | 3124 { |
563 | 3125 signal_error (Qinvalid_operation, reason, frob); |
442 | 3126 } |
3127 | |
3128 DOESNT_RETURN | |
4952
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Mule-izing, various fixes related to char * arguments
Ben Wing <ben@xemacs.org>
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changeset
|
3129 invalid_operation_2 (const Ascbyte *reason, Lisp_Object frob1, |
609 | 3130 Lisp_Object frob2) |
442 | 3131 { |
563 | 3132 signal_error_2 (Qinvalid_operation, reason, frob1, frob2); |
3133 } | |
3134 | |
3135 void | |
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Mule-izing, various fixes related to char * arguments
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changeset
|
3136 maybe_invalid_operation (const Ascbyte *reason, Lisp_Object frob, |
1204 | 3137 Lisp_Object class_, Error_Behavior errb) |
3138 { | |
3139 maybe_signal_error (Qinvalid_operation, reason, frob, class_, errb); | |
442 | 3140 } |
3141 | |
3142 DOESNT_RETURN | |
4952
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Mule-izing, various fixes related to char * arguments
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changeset
|
3143 invalid_change (const Ascbyte *reason, Lisp_Object frob) |
442 | 3144 { |
563 | 3145 signal_error (Qinvalid_change, reason, frob); |
442 | 3146 } |
3147 | |
3148 DOESNT_RETURN | |
4952
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Mule-izing, various fixes related to char * arguments
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changeset
|
3149 invalid_change_2 (const Ascbyte *reason, Lisp_Object frob1, Lisp_Object frob2) |
442 | 3150 { |
563 | 3151 signal_error_2 (Qinvalid_change, reason, frob1, frob2); |
3152 } | |
3153 | |
3154 void | |
4952
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Mule-izing, various fixes related to char * arguments
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changeset
|
3155 maybe_invalid_change (const Ascbyte *reason, Lisp_Object frob, |
1204 | 3156 Lisp_Object class_, Error_Behavior errb) |
3157 { | |
3158 maybe_signal_error (Qinvalid_change, reason, frob, class_, errb); | |
563 | 3159 } |
3160 | |
3161 DOESNT_RETURN | |
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changeset
|
3162 invalid_state (const Ascbyte *reason, Lisp_Object frob) |
563 | 3163 { |
3164 signal_error (Qinvalid_state, reason, frob); | |
3165 } | |
3166 | |
3167 DOESNT_RETURN | |
4952
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changeset
|
3168 invalid_state_2 (const Ascbyte *reason, Lisp_Object frob1, Lisp_Object frob2) |
563 | 3169 { |
3170 signal_error_2 (Qinvalid_state, reason, frob1, frob2); | |
3171 } | |
3172 | |
3173 void | |
4952
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Mule-izing, various fixes related to char * arguments
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changeset
|
3174 maybe_invalid_state (const Ascbyte *reason, Lisp_Object frob, |
1204 | 3175 Lisp_Object class_, Error_Behavior errb) |
3176 { | |
3177 maybe_signal_error (Qinvalid_state, reason, frob, class_, errb); | |
563 | 3178 } |
3179 | |
3180 DOESNT_RETURN | |
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changeset
|
3181 wtaerror (const Ascbyte *reason, Lisp_Object frob) |
563 | 3182 { |
3183 signal_error (Qwrong_type_argument, reason, frob); | |
3184 } | |
3185 | |
3186 DOESNT_RETURN | |
4952
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changeset
|
3187 stack_overflow (const Ascbyte *reason, Lisp_Object frob) |
563 | 3188 { |
3189 signal_error (Qstack_overflow, reason, frob); | |
3190 } | |
3191 | |
3192 DOESNT_RETURN | |
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changeset
|
3193 out_of_memory (const Ascbyte *reason, Lisp_Object frob) |
563 | 3194 { |
3195 signal_error (Qout_of_memory, reason, frob); | |
3196 } | |
3197 | |
428 | 3198 |
3199 /************************************************************************/ | |
3200 /* User commands */ | |
3201 /************************************************************************/ | |
3202 | |
3203 DEFUN ("commandp", Fcommandp, 1, 1, 0, /* | |
3204 Return t if FUNCTION makes provisions for interactive calling. | |
3205 This means it contains a description for how to read arguments to give it. | |
3206 The value is nil for an invalid function or a symbol with no function | |
3207 definition. | |
3208 | |
3209 Interactively callable functions include | |
3210 | |
3211 -- strings and vectors (treated as keyboard macros) | |
3212 -- lambda-expressions that contain a top-level call to `interactive' | |
3213 -- autoload definitions made by `autoload' with non-nil fourth argument | |
3214 (i.e. the interactive flag) | |
3215 -- compiled-function objects with a non-nil `compiled-function-interactive' | |
3216 value | |
3217 -- subrs (built-in functions) that are interactively callable | |
3218 | |
3219 Also, a symbol satisfies `commandp' if its function definition does so. | |
3220 */ | |
3221 (function)) | |
3222 { | |
3223 Lisp_Object fun = indirect_function (function, 0); | |
3224 | |
3225 if (COMPILED_FUNCTIONP (fun)) | |
3226 return XCOMPILED_FUNCTION (fun)->flags.interactivep ? Qt : Qnil; | |
3227 | |
3228 /* Lists may represent commands. */ | |
3229 if (CONSP (fun)) | |
3230 { | |
3231 Lisp_Object funcar = XCAR (fun); | |
3232 if (EQ (funcar, Qlambda)) | |
3233 return Fassq (Qinteractive, Fcdr (Fcdr (fun))); | |
3234 if (EQ (funcar, Qautoload)) | |
3235 return Fcar (Fcdr (Fcdr (Fcdr (fun)))); | |
3236 else | |
3237 return Qnil; | |
3238 } | |
3239 | |
3240 /* Emacs primitives are interactive if their DEFUN specifies an | |
3241 interactive spec. */ | |
3242 if (SUBRP (fun)) | |
3243 return XSUBR (fun)->prompt ? Qt : Qnil; | |
3244 | |
3245 /* Strings and vectors are keyboard macros. */ | |
3246 if (VECTORP (fun) || STRINGP (fun)) | |
3247 return Qt; | |
3248 | |
3249 /* Everything else (including Qunbound) is not a command. */ | |
3250 return Qnil; | |
3251 } | |
3252 | |
3253 DEFUN ("command-execute", Fcommand_execute, 1, 3, 0, /* | |
3254 Execute CMD as an editor command. | |
3255 CMD must be an object that satisfies the `commandp' predicate. | |
3256 Optional second arg RECORD-FLAG is as in `call-interactively'. | |
3257 The argument KEYS specifies the value to use instead of (this-command-keys) | |
3258 when reading the arguments. | |
3259 */ | |
444 | 3260 (cmd, record_flag, keys)) |
428 | 3261 { |
3262 /* This function can GC */ | |
3263 Lisp_Object prefixarg; | |
3264 Lisp_Object final = cmd; | |
4162 | 3265 PROFILE_DECLARE(); |
428 | 3266 struct console *con = XCONSOLE (Vselected_console); |
3267 | |
3268 prefixarg = con->prefix_arg; | |
3269 con->prefix_arg = Qnil; | |
3270 Vcurrent_prefix_arg = prefixarg; | |
3271 debug_on_next_call = 0; /* #### from FSFmacs; correct? */ | |
3272 | |
3273 if (SYMBOLP (cmd) && !NILP (Fget (cmd, Qdisabled, Qnil))) | |
733 | 3274 return run_hook (Qdisabled_command_hook); |
428 | 3275 |
3276 for (;;) | |
3277 { | |
3278 final = indirect_function (cmd, 1); | |
3279 if (CONSP (final) && EQ (Fcar (final), Qautoload)) | |
970 | 3280 { |
3281 /* do_autoload GCPROs both arguments */ | |
3282 do_autoload (final, cmd); | |
3283 } | |
428 | 3284 else |
3285 break; | |
3286 } | |
3287 | |
3288 if (CONSP (final) || SUBRP (final) || COMPILED_FUNCTIONP (final)) | |
3289 { | |
3290 backtrace.function = &Qcall_interactively; | |
3291 backtrace.args = &cmd; | |
3292 backtrace.nargs = 1; | |
3293 backtrace.evalargs = 0; | |
1292 | 3294 backtrace.pdlcount = specpdl_depth (); |
428 | 3295 backtrace.debug_on_exit = 0; |
1292 | 3296 backtrace.function_being_called = 0; |
428 | 3297 PUSH_BACKTRACE (backtrace); |
3298 | |
1292 | 3299 PROFILE_ENTER_FUNCTION (); |
444 | 3300 final = Fcall_interactively (cmd, record_flag, keys); |
1292 | 3301 PROFILE_EXIT_FUNCTION (); |
428 | 3302 |
3303 POP_BACKTRACE (backtrace); | |
3304 return final; | |
3305 } | |
3306 else if (STRINGP (final) || VECTORP (final)) | |
3307 { | |
3308 return Fexecute_kbd_macro (final, prefixarg); | |
3309 } | |
3310 else | |
3311 { | |
3312 Fsignal (Qwrong_type_argument, | |
3313 Fcons (Qcommandp, | |
3314 (EQ (cmd, final) | |
3315 ? list1 (cmd) | |
3316 : list2 (cmd, final)))); | |
3317 return Qnil; | |
3318 } | |
3319 } | |
3320 | |
3321 DEFUN ("interactive-p", Finteractive_p, 0, 0, 0, /* | |
3322 Return t if function in which this appears was called interactively. | |
3323 This means that the function was called with call-interactively (which | |
3324 includes being called as the binding of a key) | |
3325 and input is currently coming from the keyboard (not in keyboard macro). | |
3326 */ | |
3327 ()) | |
3328 { | |
3329 REGISTER struct backtrace *btp; | |
3330 REGISTER Lisp_Object fun; | |
3331 | |
3332 if (!INTERACTIVE) | |
3333 return Qnil; | |
3334 | |
3335 /* Unless the object was compiled, skip the frame of interactive-p itself | |
3336 (if interpreted) or the frame of byte-code (if called from a compiled | |
3337 function). Note that *btp->function may be a symbol pointing at a | |
3338 compiled function. */ | |
3339 btp = backtrace_list; | |
3340 | |
3341 #if 0 /* FSFmacs */ | |
3342 | |
3343 /* #### FSFmacs does the following instead. I can't figure | |
3344 out which one is more correct. */ | |
3345 /* If this isn't a byte-compiled function, there may be a frame at | |
3346 the top for Finteractive_p itself. If so, skip it. */ | |
3347 fun = Findirect_function (*btp->function); | |
3348 if (SUBRP (fun) && XSUBR (fun) == &Sinteractive_p) | |
3349 btp = btp->next; | |
3350 | |
3351 /* If we're running an Emacs 18-style byte-compiled function, there | |
3352 may be a frame for Fbyte_code. Now, given the strictest | |
3353 definition, this function isn't really being called | |
3354 interactively, but because that's the way Emacs 18 always builds | |
3355 byte-compiled functions, we'll accept it for now. */ | |
3356 if (EQ (*btp->function, Qbyte_code)) | |
3357 btp = btp->next; | |
3358 | |
3359 /* If this isn't a byte-compiled function, then we may now be | |
4905
755ae5b97edb
Change "special form" to "special operator" in our sources.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4846
diff
changeset
|
3360 looking at several frames for special operators. Skip past them. */ |
428 | 3361 while (btp && |
3362 btp->nargs == UNEVALLED) | |
3363 btp = btp->next; | |
3364 | |
3365 #else | |
3366 | |
3367 if (! (COMPILED_FUNCTIONP (Findirect_function (*btp->function)))) | |
3368 btp = btp->next; | |
3369 for (; | |
3370 btp && (btp->nargs == UNEVALLED | |
3371 || EQ (*btp->function, Qbyte_code)); | |
3372 btp = btp->next) | |
3373 {} | |
3374 /* btp now points at the frame of the innermost function | |
3375 that DOES eval its args. | |
3376 If it is a built-in function (such as load or eval-region) | |
3377 return nil. */ | |
3378 /* Beats me why this is necessary, but it is */ | |
3379 if (btp && EQ (*btp->function, Qcall_interactively)) | |
3380 return Qt; | |
3381 | |
3382 #endif | |
3383 | |
3384 fun = Findirect_function (*btp->function); | |
3385 if (SUBRP (fun)) | |
3386 return Qnil; | |
3387 /* btp points to the frame of a Lisp function that called interactive-p. | |
3388 Return t if that function was called interactively. */ | |
3389 if (btp && btp->next && EQ (*btp->next->function, Qcall_interactively)) | |
3390 return Qt; | |
3391 return Qnil; | |
3392 } | |
3393 | |
3394 | |
3395 /************************************************************************/ | |
3396 /* Autoloading */ | |
3397 /************************************************************************/ | |
3398 | |
3399 DEFUN ("autoload", Fautoload, 2, 5, 0, /* | |
444 | 3400 Define FUNCTION to autoload from FILENAME. |
3401 FUNCTION is a symbol; FILENAME is a file name string to pass to `load'. | |
3402 The remaining optional arguments provide additional info about the | |
3403 real definition. | |
3404 DOCSTRING is documentation for FUNCTION. | |
3405 INTERACTIVE, if non-nil, says FUNCTION can be called interactively. | |
3406 TYPE indicates the type of the object: | |
428 | 3407 nil or omitted says FUNCTION is a function, |
3408 `keymap' says FUNCTION is really a keymap, and | |
3409 `macro' or t says FUNCTION is really a macro. | |
444 | 3410 If FUNCTION already has a non-void function definition that is not an |
3411 autoload object, this function does nothing and returns nil. | |
428 | 3412 */ |
444 | 3413 (function, filename, docstring, interactive, type)) |
428 | 3414 { |
3415 /* This function can GC */ | |
3416 CHECK_SYMBOL (function); | |
444 | 3417 CHECK_STRING (filename); |
428 | 3418 |
3419 /* If function is defined and not as an autoload, don't override */ | |
3420 { | |
3421 Lisp_Object f = XSYMBOL (function)->function; | |
3422 if (!UNBOUNDP (f) && !(CONSP (f) && EQ (XCAR (f), Qautoload))) | |
3423 return Qnil; | |
3424 } | |
3425 | |
3426 if (purify_flag) | |
3427 { | |
3428 /* Attempt to avoid consing identical (string=) pure strings. */ | |
444 | 3429 filename = Fsymbol_name (Fintern (filename, Qnil)); |
428 | 3430 } |
440 | 3431 |
444 | 3432 return Ffset (function, Fcons (Qautoload, list4 (filename, |
428 | 3433 docstring, |
3434 interactive, | |
3435 type))); | |
3436 } | |
3437 | |
3438 Lisp_Object | |
3439 un_autoload (Lisp_Object oldqueue) | |
3440 { | |
3441 /* This function can GC */ | |
3442 REGISTER Lisp_Object queue, first, second; | |
3443 | |
3444 /* Queue to unwind is current value of Vautoload_queue. | |
3445 oldqueue is the shadowed value to leave in Vautoload_queue. */ | |
3446 queue = Vautoload_queue; | |
3447 Vautoload_queue = oldqueue; | |
3448 while (CONSP (queue)) | |
3449 { | |
3450 first = XCAR (queue); | |
3451 second = Fcdr (first); | |
3452 first = Fcar (first); | |
3453 if (NILP (second)) | |
3454 Vfeatures = first; | |
3455 else | |
3456 Ffset (first, second); | |
3457 queue = Fcdr (queue); | |
3458 } | |
3459 return Qnil; | |
3460 } | |
3461 | |
970 | 3462 /* do_autoload GCPROs both arguments */ |
428 | 3463 void |
3464 do_autoload (Lisp_Object fundef, | |
3465 Lisp_Object funname) | |
3466 { | |
3467 /* This function can GC */ | |
3468 int speccount = specpdl_depth(); | |
3469 Lisp_Object fun = funname; | |
970 | 3470 struct gcpro gcpro1, gcpro2, gcpro3; |
428 | 3471 |
3472 CHECK_SYMBOL (funname); | |
970 | 3473 GCPRO3 (fundef, funname, fun); |
428 | 3474 |
3475 /* Value saved here is to be restored into Vautoload_queue */ | |
3476 record_unwind_protect (un_autoload, Vautoload_queue); | |
3477 Vautoload_queue = Qt; | |
3478 call4 (Qload, Fcar (Fcdr (fundef)), Qnil, noninteractive ? Qt : Qnil, Qnil); | |
3479 | |
3480 { | |
3481 Lisp_Object queue; | |
3482 | |
3483 /* Save the old autoloads, in case we ever do an unload. */ | |
3484 for (queue = Vautoload_queue; CONSP (queue); queue = XCDR (queue)) | |
3485 { | |
3486 Lisp_Object first = XCAR (queue); | |
3487 Lisp_Object second = Fcdr (first); | |
3488 | |
3489 first = Fcar (first); | |
3490 | |
3491 /* Note: This test is subtle. The cdr of an autoload-queue entry | |
3492 may be an atom if the autoload entry was generated by a defalias | |
3493 or fset. */ | |
3494 if (CONSP (second)) | |
3495 Fput (first, Qautoload, (XCDR (second))); | |
3496 } | |
3497 } | |
3498 | |
3499 /* Once loading finishes, don't undo it. */ | |
3500 Vautoload_queue = Qt; | |
771 | 3501 unbind_to (speccount); |
428 | 3502 |
3503 fun = indirect_function (fun, 0); | |
3504 | |
3505 #if 0 /* FSFmacs */ | |
3506 if (!NILP (Fequal (fun, fundef))) | |
3507 #else | |
3508 if (UNBOUNDP (fun) | |
3509 || (CONSP (fun) | |
3510 && EQ (XCAR (fun), Qautoload))) | |
3511 #endif | |
563 | 3512 invalid_state ("Autoloading failed to define function", funname); |
428 | 3513 UNGCPRO; |
3514 } | |
3515 | |
3516 | |
3517 /************************************************************************/ | |
3518 /* eval, funcall, apply */ | |
3519 /************************************************************************/ | |
3520 | |
814 | 3521 /* NOTE: If you are hearing the endless complaint that function calls in |
3522 elisp are extremely slow, it just isn't true any more! The stuff below | |
3523 -- in particular, the calling of subrs and compiled functions, the most | |
3524 common cases -- has been highly optimized. There isn't a whole lot left | |
3525 to do to squeeze more speed out except by switching to lexical | |
3526 variables, which would eliminate the specbind loop. (But the real gain | |
3527 from lexical variables would come from better optimization -- with | |
3528 dynamic binding, you have the constant problem that any function call | |
3529 that you haven't explicitly proven to be side-effect-free might | |
3530 potentially side effect your local variables, which makes optimization | |
3531 extremely difficult when there are function calls anywhere in a chunk of | |
3532 code to be optimized. Even worse, you don't know that *your* local | |
3533 variables aren't side-effecting an outer function's local variables, so | |
3534 it's impossible to optimize away almost *any* variable assignment.) */ | |
3535 | |
428 | 3536 static Lisp_Object funcall_lambda (Lisp_Object fun, |
442 | 3537 int nargs, Lisp_Object args[]); |
428 | 3538 static int in_warnings; |
3539 | |
3540 | |
814 | 3541 void handle_compiled_function_with_and_rest (Lisp_Compiled_Function *f, |
3542 int nargs, | |
3543 Lisp_Object args[]); | |
3544 | |
3545 /* The theory behind making this a separate function is to shrink | |
3546 funcall_compiled_function() so as to increase the likelihood of a cache | |
3547 hit in the L1 cache -- &rest processing is not going to be fast anyway. | |
3548 The idea is the same as with execute_rare_opcode() in bytecode.c. We | |
3549 make this non-static to ensure the compiler doesn't inline it. */ | |
3550 | |
3551 void | |
3552 handle_compiled_function_with_and_rest (Lisp_Compiled_Function *f, int nargs, | |
3553 Lisp_Object args[]) | |
3554 { | |
3555 REGISTER int i = 0; | |
3556 int max_non_rest_args = f->args_in_array - 1; | |
3557 int bindargs = min (nargs, max_non_rest_args); | |
3558 | |
3559 for (i = 0; i < bindargs; i++) | |
3092 | 3560 #ifdef NEW_GC |
3561 SPECBIND_FAST_UNSAFE (XCOMPILED_FUNCTION_ARGS_DATA (f->arguments)[i], | |
3562 args[i]); | |
3563 #else /* not NEW_GC */ | |
814 | 3564 SPECBIND_FAST_UNSAFE (f->args[i], args[i]); |
3092 | 3565 #endif /* not NEW_GC */ |
814 | 3566 for (i = bindargs; i < max_non_rest_args; i++) |
3092 | 3567 #ifdef NEW_GC |
3568 SPECBIND_FAST_UNSAFE (XCOMPILED_FUNCTION_ARGS_DATA (f->arguments)[i], | |
3569 Qnil); | |
3570 #else /* not NEW_GC */ | |
814 | 3571 SPECBIND_FAST_UNSAFE (f->args[i], Qnil); |
3092 | 3572 #endif /* not NEW_GC */ |
3573 #ifdef NEW_GC | |
3574 SPECBIND_FAST_UNSAFE | |
3575 (XCOMPILED_FUNCTION_ARGS_DATA (f->arguments)[max_non_rest_args], | |
3576 nargs > max_non_rest_args ? | |
3577 Flist (nargs - max_non_rest_args, &args[max_non_rest_args]) : | |
3578 Qnil); | |
3579 #else /* not NEW_GC */ | |
814 | 3580 SPECBIND_FAST_UNSAFE |
3581 (f->args[max_non_rest_args], | |
3582 nargs > max_non_rest_args ? | |
3583 Flist (nargs - max_non_rest_args, &args[max_non_rest_args]) : | |
3584 Qnil); | |
3092 | 3585 #endif /* not NEW_GC */ |
814 | 3586 } |
3587 | |
3588 /* Apply compiled-function object FUN to the NARGS evaluated arguments | |
3589 in ARGS, and return the result of evaluation. */ | |
3590 inline static Lisp_Object | |
3591 funcall_compiled_function (Lisp_Object fun, int nargs, Lisp_Object args[]) | |
3592 { | |
3593 /* This function can GC */ | |
3594 int speccount = specpdl_depth(); | |
3595 REGISTER int i = 0; | |
3596 Lisp_Compiled_Function *f = XCOMPILED_FUNCTION (fun); | |
3597 | |
3598 if (!OPAQUEP (f->instructions)) | |
3599 /* Lazily munge the instructions into a more efficient form */ | |
3600 optimize_compiled_function (fun); | |
3601 | |
3602 /* optimize_compiled_function() guaranteed that f->specpdl_depth is | |
3603 the required space on the specbinding stack for binding the args | |
3604 and local variables of fun. So just reserve it once. */ | |
3605 SPECPDL_RESERVE (f->specpdl_depth); | |
3606 | |
3607 if (nargs == f->max_args) /* Optimize for the common case -- no unspecified | |
3608 optional arguments. */ | |
3609 { | |
3610 #if 1 | |
3611 for (i = 0; i < nargs; i++) | |
3092 | 3612 #ifdef NEW_GC |
3613 SPECBIND_FAST_UNSAFE (XCOMPILED_FUNCTION_ARGS_DATA (f->arguments)[i], | |
3614 args[i]); | |
3615 #else /* not NEW_GC */ | |
814 | 3616 SPECBIND_FAST_UNSAFE (f->args[i], args[i]); |
3092 | 3617 #endif /* not NEW_GC */ |
814 | 3618 #else |
3619 /* Here's an alternate way to write the loop that tries to further | |
3620 optimize funcalls for functions with few arguments by partially | |
3621 unrolling the loop. It's not clear whether this is a win since it | |
3622 increases the size of the function and the possibility of L1 cache | |
3623 misses. (Microsoft VC++ 6 with /O2 /G5 generates 0x90 == 144 bytes | |
3624 per SPECBIND_FAST_UNSAFE().) Tests under VC++ 6, running the byte | |
3625 compiler repeatedly and looking at the total time, show very | |
3626 little difference between the simple loop above, the unrolled code | |
3627 below, and a "partly unrolled" solution with only cases 0-2 below | |
3628 instead of 0-4. Therefore, I'm keeping it at the simple loop | |
3629 because it's smaller. */ | |
3630 switch (nargs) | |
3631 { | |
3632 default: | |
3633 for (i = nargs - 1; i >= 4; i--) | |
3634 SPECBIND_FAST_UNSAFE (f->args[i], args[i]); | |
3635 case 4: SPECBIND_FAST_UNSAFE (f->args[3], args[3]); | |
3636 case 3: SPECBIND_FAST_UNSAFE (f->args[2], args[2]); | |
3637 case 2: SPECBIND_FAST_UNSAFE (f->args[1], args[1]); | |
3638 case 1: SPECBIND_FAST_UNSAFE (f->args[0], args[0]); | |
3639 case 0: break; | |
3640 } | |
3641 #endif | |
3642 } | |
3643 else if (nargs < f->min_args) | |
3644 goto wrong_number_of_arguments; | |
3645 else if (nargs < f->max_args) | |
3646 { | |
3647 for (i = 0; i < nargs; i++) | |
3092 | 3648 #ifdef NEW_GC |
3649 SPECBIND_FAST_UNSAFE (XCOMPILED_FUNCTION_ARGS_DATA (f->arguments)[i], | |
3650 args[i]); | |
3651 #else /* not NEW_GC */ | |
814 | 3652 SPECBIND_FAST_UNSAFE (f->args[i], args[i]); |
3092 | 3653 #endif /* not NEW_GC */ |
814 | 3654 for (i = nargs; i < f->max_args; i++) |
3092 | 3655 #ifdef NEW_GC |
3656 SPECBIND_FAST_UNSAFE (XCOMPILED_FUNCTION_ARGS_DATA (f->arguments)[i], | |
3657 Qnil); | |
3658 #else /* not NEW_GC */ | |
814 | 3659 SPECBIND_FAST_UNSAFE (f->args[i], Qnil); |
3092 | 3660 #endif /* not NEW_GC */ |
814 | 3661 } |
3662 else if (f->max_args == MANY) | |
3663 handle_compiled_function_with_and_rest (f, nargs, args); | |
3664 else | |
3665 { | |
3666 wrong_number_of_arguments: | |
3667 /* The actual printed compiled_function object is incomprehensible. | |
3668 Check the backtrace to see if we can get a more meaningful symbol. */ | |
3669 if (EQ (fun, indirect_function (*backtrace_list->function, 0))) | |
3670 fun = *backtrace_list->function; | |
3671 return Fsignal (Qwrong_number_of_arguments, | |
3672 list2 (fun, make_int (nargs))); | |
3673 } | |
3674 | |
3675 { | |
3676 Lisp_Object value = | |
3677 execute_optimized_program ((Opbyte *) XOPAQUE_DATA (f->instructions), | |
4921
17362f371cc2
add more byte-code assertions and better failure output
Ben Wing <ben@xemacs.org>
parents:
4905
diff
changeset
|
3678 #ifdef ERROR_CHECK_BYTE_CODE |
17362f371cc2
add more byte-code assertions and better failure output
Ben Wing <ben@xemacs.org>
parents:
4905
diff
changeset
|
3679 XOPAQUE_SIZE (f->instructions) / |
17362f371cc2
add more byte-code assertions and better failure output
Ben Wing <ben@xemacs.org>
parents:
4905
diff
changeset
|
3680 sizeof (Opbyte), |
17362f371cc2
add more byte-code assertions and better failure output
Ben Wing <ben@xemacs.org>
parents:
4905
diff
changeset
|
3681 #endif |
814 | 3682 f->stack_depth, |
3683 XVECTOR_DATA (f->constants)); | |
3684 | |
3685 /* The attempt to optimize this by only unbinding variables failed | |
3686 because using buffer-local variables as function parameters | |
3687 leads to specpdl_ptr->func != 0 */ | |
3688 /* UNBIND_TO_GCPRO_VARIABLES_ONLY (speccount, value); */ | |
3689 UNBIND_TO_GCPRO (speccount, value); | |
3690 return value; | |
3691 } | |
3692 } | |
3693 | |
428 | 3694 DEFUN ("eval", Feval, 1, 1, 0, /* |
3695 Evaluate FORM and return its value. | |
3696 */ | |
3697 (form)) | |
3698 { | |
3699 /* This function can GC */ | |
3700 Lisp_Object fun, val, original_fun, original_args; | |
3701 int nargs; | |
4162 | 3702 PROFILE_DECLARE(); |
428 | 3703 |
1318 | 3704 #ifdef ERROR_CHECK_TRAPPING_PROBLEMS |
3705 check_proper_critical_section_lisp_protection (); | |
3706 #endif | |
3707 | |
3989 | 3708 if (!CONSP (form)) |
3709 { | |
3710 if (SYMBOLP (form)) | |
3711 { | |
3712 return Fsymbol_value (form); | |
3713 } | |
3714 | |
3715 return form; | |
3716 } | |
3717 | |
428 | 3718 /* I think this is a pretty safe place to call Lisp code, don't you? */ |
853 | 3719 while (!in_warnings && !NILP (Vpending_warnings) |
3720 /* well, perhaps not so safe after all! */ | |
3721 && !(inhibit_flags & INHIBIT_ANY_CHANGE_AFFECTING_REDISPLAY)) | |
428 | 3722 { |
3723 struct gcpro gcpro1, gcpro2, gcpro3, gcpro4; | |
1204 | 3724 Lisp_Object this_warning_cons, this_warning, class_, level, messij; |
853 | 3725 int speccount = internal_bind_int (&in_warnings, 1); |
3726 | |
428 | 3727 this_warning_cons = Vpending_warnings; |
3728 this_warning = XCAR (this_warning_cons); | |
3729 /* in case an error occurs in the warn function, at least | |
3730 it won't happen infinitely */ | |
3731 Vpending_warnings = XCDR (Vpending_warnings); | |
853 | 3732 free_cons (this_warning_cons); |
1204 | 3733 class_ = XCAR (this_warning); |
428 | 3734 level = XCAR (XCDR (this_warning)); |
3735 messij = XCAR (XCDR (XCDR (this_warning))); | |
3736 free_list (this_warning); | |
3737 | |
3738 if (NILP (Vpending_warnings)) | |
3739 Vpending_warnings_tail = Qnil; /* perhaps not strictly necessary, | |
3740 but safer */ | |
3741 | |
1204 | 3742 GCPRO4 (form, class_, level, messij); |
428 | 3743 if (!STRINGP (messij)) |
3744 messij = Fprin1_to_string (messij, Qnil); | |
1204 | 3745 call3 (Qdisplay_warning, class_, messij, level); |
428 | 3746 UNGCPRO; |
771 | 3747 unbind_to (speccount); |
428 | 3748 } |
3749 | |
3750 QUIT; | |
814 | 3751 if (need_to_garbage_collect) |
428 | 3752 { |
3753 struct gcpro gcpro1; | |
3754 GCPRO1 (form); | |
3092 | 3755 #ifdef NEW_GC |
3756 gc_incremental (); | |
3757 #else /* not NEW_GC */ | |
428 | 3758 garbage_collect_1 (); |
3092 | 3759 #endif /* not NEW_GC */ |
428 | 3760 UNGCPRO; |
3761 } | |
3762 | |
3763 if (++lisp_eval_depth > max_lisp_eval_depth) | |
3764 { | |
3765 if (max_lisp_eval_depth < 100) | |
3766 max_lisp_eval_depth = 100; | |
3767 if (lisp_eval_depth > max_lisp_eval_depth) | |
563 | 3768 stack_overflow ("Lisp nesting exceeds `max-lisp-eval-depth'", |
3769 Qunbound); | |
428 | 3770 } |
3771 | |
3772 /* We guaranteed CONSP (form) above */ | |
3773 original_fun = XCAR (form); | |
3774 original_args = XCDR (form); | |
3775 | |
3776 GET_EXTERNAL_LIST_LENGTH (original_args, nargs); | |
3777 | |
3778 backtrace.pdlcount = specpdl_depth(); | |
3779 backtrace.function = &original_fun; /* This also protects them from gc */ | |
3780 backtrace.args = &original_args; | |
3781 backtrace.nargs = UNEVALLED; | |
3782 backtrace.evalargs = 1; | |
3783 backtrace.debug_on_exit = 0; | |
1292 | 3784 backtrace.function_being_called = 0; |
428 | 3785 PUSH_BACKTRACE (backtrace); |
3786 | |
3787 if (debug_on_next_call) | |
3788 do_debug_on_call (Qt); | |
3789 | |
3790 /* At this point, only original_fun and original_args | |
3791 have values that will be used below. */ | |
3792 retry: | |
3989 | 3793 /* Optimise for no indirection. */ |
3794 fun = original_fun; | |
3795 if (SYMBOLP (fun) && !EQ (fun, Qunbound) | |
3796 && (fun = XSYMBOL (fun)->function, SYMBOLP (fun))) | |
3797 { | |
3798 fun = indirect_function(original_fun, 1); | |
3799 } | |
428 | 3800 |
3801 if (SUBRP (fun)) | |
3802 { | |
3803 Lisp_Subr *subr = XSUBR (fun); | |
3804 int max_args = subr->max_args; | |
3805 | |
3806 if (nargs < subr->min_args) | |
3807 goto wrong_number_of_arguments; | |
3808 | |
3809 if (max_args == UNEVALLED) /* Optimize for the common case */ | |
3810 { | |
3811 backtrace.evalargs = 0; | |
1292 | 3812 PROFILE_ENTER_FUNCTION (); |
428 | 3813 val = (((Lisp_Object (*) (Lisp_Object)) subr_function (subr)) |
3814 (original_args)); | |
1292 | 3815 PROFILE_EXIT_FUNCTION (); |
428 | 3816 } |
3817 else if (nargs <= max_args) | |
3818 { | |
3819 struct gcpro gcpro1; | |
3820 Lisp_Object args[SUBR_MAX_ARGS]; | |
3821 REGISTER Lisp_Object *p = args; | |
3822 | |
3823 GCPRO1 (args[0]); | |
3824 gcpro1.nvars = 0; | |
3825 | |
3826 { | |
3827 LIST_LOOP_2 (arg, original_args) | |
3828 { | |
4677
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
3829 *p++ = IGNORE_MULTIPLE_VALUES (Feval (arg)); |
428 | 3830 gcpro1.nvars++; |
3831 } | |
3832 } | |
3833 | |
3834 /* &optional args default to nil. */ | |
3835 while (p - args < max_args) | |
3836 *p++ = Qnil; | |
3837 | |
3838 backtrace.args = args; | |
3839 backtrace.nargs = nargs; | |
3840 | |
1292 | 3841 PROFILE_ENTER_FUNCTION (); |
428 | 3842 FUNCALL_SUBR (val, subr, args, max_args); |
1292 | 3843 PROFILE_EXIT_FUNCTION (); |
428 | 3844 |
3845 UNGCPRO; | |
3846 } | |
3847 else if (max_args == MANY) | |
3848 { | |
3849 /* Pass a vector of evaluated arguments */ | |
3850 struct gcpro gcpro1; | |
3851 Lisp_Object *args = alloca_array (Lisp_Object, nargs); | |
3852 REGISTER Lisp_Object *p = args; | |
3853 | |
3854 GCPRO1 (args[0]); | |
3855 gcpro1.nvars = 0; | |
3856 | |
3857 { | |
3858 LIST_LOOP_2 (arg, original_args) | |
3859 { | |
4677
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
3860 *p++ = IGNORE_MULTIPLE_VALUES (Feval (arg)); |
428 | 3861 gcpro1.nvars++; |
3862 } | |
3863 } | |
3864 | |
3865 backtrace.args = args; | |
3866 backtrace.nargs = nargs; | |
3867 | |
1292 | 3868 PROFILE_ENTER_FUNCTION (); |
428 | 3869 val = (((Lisp_Object (*) (int, Lisp_Object *)) subr_function (subr)) |
3870 (nargs, args)); | |
1292 | 3871 PROFILE_EXIT_FUNCTION (); |
428 | 3872 |
3873 UNGCPRO; | |
3874 } | |
3875 else | |
3876 { | |
3877 wrong_number_of_arguments: | |
440 | 3878 val = signal_wrong_number_of_arguments_error (original_fun, nargs); |
428 | 3879 } |
3880 } | |
3881 else if (COMPILED_FUNCTIONP (fun)) | |
3882 { | |
3883 struct gcpro gcpro1; | |
3884 Lisp_Object *args = alloca_array (Lisp_Object, nargs); | |
3885 REGISTER Lisp_Object *p = args; | |
3886 | |
3887 GCPRO1 (args[0]); | |
3888 gcpro1.nvars = 0; | |
3889 | |
3890 { | |
3891 LIST_LOOP_2 (arg, original_args) | |
3892 { | |
4677
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
3893 *p++ = IGNORE_MULTIPLE_VALUES (Feval (arg)); |
428 | 3894 gcpro1.nvars++; |
3895 } | |
3896 } | |
3897 | |
3898 backtrace.args = args; | |
3899 backtrace.nargs = nargs; | |
3900 backtrace.evalargs = 0; | |
3901 | |
1292 | 3902 PROFILE_ENTER_FUNCTION (); |
428 | 3903 val = funcall_compiled_function (fun, nargs, args); |
1292 | 3904 PROFILE_EXIT_FUNCTION (); |
428 | 3905 |
3906 /* Do the debug-on-exit now, while args is still GCPROed. */ | |
3907 if (backtrace.debug_on_exit) | |
3908 val = do_debug_on_exit (val); | |
3909 /* Don't do it again when we return to eval. */ | |
3910 backtrace.debug_on_exit = 0; | |
3911 | |
3912 UNGCPRO; | |
3913 } | |
3914 else if (CONSP (fun)) | |
3915 { | |
3916 Lisp_Object funcar = XCAR (fun); | |
3917 | |
3918 if (EQ (funcar, Qautoload)) | |
3919 { | |
970 | 3920 /* do_autoload GCPROs both arguments */ |
428 | 3921 do_autoload (fun, original_fun); |
3922 goto retry; | |
3923 } | |
3924 else if (EQ (funcar, Qmacro)) | |
3925 { | |
1292 | 3926 PROFILE_ENTER_FUNCTION (); |
428 | 3927 val = Feval (apply1 (XCDR (fun), original_args)); |
1292 | 3928 PROFILE_EXIT_FUNCTION (); |
428 | 3929 } |
3930 else if (EQ (funcar, Qlambda)) | |
3931 { | |
3932 struct gcpro gcpro1; | |
3933 Lisp_Object *args = alloca_array (Lisp_Object, nargs); | |
3934 REGISTER Lisp_Object *p = args; | |
3935 | |
3936 GCPRO1 (args[0]); | |
3937 gcpro1.nvars = 0; | |
3938 | |
3939 { | |
3940 LIST_LOOP_2 (arg, original_args) | |
3941 { | |
4677
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
3942 *p++ = IGNORE_MULTIPLE_VALUES (Feval (arg)); |
428 | 3943 gcpro1.nvars++; |
3944 } | |
3945 } | |
3946 | |
3947 UNGCPRO; | |
3948 | |
3949 backtrace.args = args; /* this also GCPROs `args' */ | |
3950 backtrace.nargs = nargs; | |
3951 backtrace.evalargs = 0; | |
3952 | |
1292 | 3953 PROFILE_ENTER_FUNCTION (); |
428 | 3954 val = funcall_lambda (fun, nargs, args); |
1292 | 3955 PROFILE_EXIT_FUNCTION (); |
428 | 3956 |
3957 /* Do the debug-on-exit now, while args is still GCPROed. */ | |
3958 if (backtrace.debug_on_exit) | |
3959 val = do_debug_on_exit (val); | |
3960 /* Don't do it again when we return to eval. */ | |
3961 backtrace.debug_on_exit = 0; | |
3962 } | |
3963 else | |
3964 { | |
3965 goto invalid_function; | |
3966 } | |
3967 } | |
4104 | 3968 else if (UNBOUNDP (fun)) |
3969 { | |
3970 val = signal_void_function_error (original_fun); | |
3971 } | |
3972 else /* ! (SUBRP (fun) || COMPILED_FUNCTIONP (fun) || CONSP (fun) | |
3973 UNBOUNDP (fun)) */ | |
428 | 3974 { |
3975 invalid_function: | |
436 | 3976 val = signal_invalid_function_error (fun); |
428 | 3977 } |
3978 | |
3979 lisp_eval_depth--; | |
3980 if (backtrace.debug_on_exit) | |
3981 val = do_debug_on_exit (val); | |
3982 POP_BACKTRACE (backtrace); | |
3983 return val; | |
3984 } | |
3985 | |
3986 | |
1111 | 3987 |
3988 static void | |
3989 run_post_gc_hook (void) | |
3990 { | |
3991 Lisp_Object args[2]; | |
3992 | |
3993 args[0] = Qpost_gc_hook; | |
3994 args[1] = Fcons (Fcons (Qfinalize_list, zap_finalize_list ()), Qnil); | |
3995 | |
3996 run_hook_with_args_trapping_problems | |
1333 | 3997 (Qgarbage_collecting, 2, args, RUN_HOOKS_TO_COMPLETION, |
1111 | 3998 INHIBIT_QUIT | NO_INHIBIT_ERRORS); |
3999 } | |
4000 | |
428 | 4001 DEFUN ("funcall", Ffuncall, 1, MANY, 0, /* |
4693
80cd90837ac5
Add argument information to remaining MANY or UNEVALLED C subrs.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4686
diff
changeset
|
4002 Call FUNCTION as a function, passing the remaining arguments to it. |
428 | 4003 Thus, (funcall 'cons 'x 'y) returns (x . y). |
4693
80cd90837ac5
Add argument information to remaining MANY or UNEVALLED C subrs.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4686
diff
changeset
|
4004 |
80cd90837ac5
Add argument information to remaining MANY or UNEVALLED C subrs.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4686
diff
changeset
|
4005 arguments: (FUNCTION &rest ARGS) |
428 | 4006 */ |
4007 (int nargs, Lisp_Object *args)) | |
4008 { | |
4009 /* This function can GC */ | |
4010 Lisp_Object fun; | |
4011 Lisp_Object val; | |
4162 | 4012 PROFILE_DECLARE(); |
428 | 4013 int fun_nargs = nargs - 1; |
4014 Lisp_Object *fun_args = args + 1; | |
4015 | |
1318 | 4016 /* QUIT will check for proper redisplay wrapping */ |
4017 | |
428 | 4018 QUIT; |
851 | 4019 |
4020 if (funcall_allocation_flag) | |
4021 { | |
4022 if (need_to_garbage_collect) | |
4023 /* Callers should gcpro lexpr args */ | |
3092 | 4024 #ifdef NEW_GC |
4025 gc_incremental (); | |
4026 #else /* not NEW_GC */ | |
851 | 4027 garbage_collect_1 (); |
3092 | 4028 #endif /* not NEW_GC */ |
851 | 4029 if (need_to_check_c_alloca) |
4030 { | |
4031 if (++funcall_alloca_count >= MAX_FUNCALLS_BETWEEN_ALLOCA_CLEANUP) | |
4032 { | |
4033 xemacs_c_alloca (0); | |
4034 funcall_alloca_count = 0; | |
4035 } | |
4036 } | |
887 | 4037 if (need_to_signal_post_gc) |
4038 { | |
4039 need_to_signal_post_gc = 0; | |
1111 | 4040 recompute_funcall_allocation_flag (); |
3263 | 4041 #ifdef NEW_GC |
4042 run_finalizers (); | |
4043 #endif /* NEW_GC */ | |
1111 | 4044 run_post_gc_hook (); |
887 | 4045 } |
851 | 4046 } |
428 | 4047 |
4048 if (++lisp_eval_depth > max_lisp_eval_depth) | |
4049 { | |
4050 if (max_lisp_eval_depth < 100) | |
4051 max_lisp_eval_depth = 100; | |
4052 if (lisp_eval_depth > max_lisp_eval_depth) | |
563 | 4053 stack_overflow ("Lisp nesting exceeds `max-lisp-eval-depth'", |
4054 Qunbound); | |
428 | 4055 } |
4056 | |
1292 | 4057 backtrace.pdlcount = specpdl_depth (); |
428 | 4058 backtrace.function = &args[0]; |
4059 backtrace.args = fun_args; | |
4060 backtrace.nargs = fun_nargs; | |
4061 backtrace.evalargs = 0; | |
4062 backtrace.debug_on_exit = 0; | |
1292 | 4063 backtrace.function_being_called = 0; |
428 | 4064 PUSH_BACKTRACE (backtrace); |
4065 | |
4066 if (debug_on_next_call) | |
4067 do_debug_on_call (Qlambda); | |
4068 | |
4069 retry: | |
4070 | |
4071 fun = args[0]; | |
4072 | |
4073 /* We could call indirect_function directly, but profiling shows | |
4074 this is worth optimizing by partially unrolling the loop. */ | |
4075 if (SYMBOLP (fun)) | |
4076 { | |
4077 fun = XSYMBOL (fun)->function; | |
4078 if (SYMBOLP (fun)) | |
4079 { | |
4080 fun = XSYMBOL (fun)->function; | |
4081 if (SYMBOLP (fun)) | |
4082 fun = indirect_function (fun, 1); | |
4083 } | |
4084 } | |
4085 | |
4086 if (SUBRP (fun)) | |
4087 { | |
4088 Lisp_Subr *subr = XSUBR (fun); | |
4089 int max_args = subr->max_args; | |
4090 Lisp_Object spacious_args[SUBR_MAX_ARGS]; | |
4091 | |
4092 if (fun_nargs == max_args) /* Optimize for the common case */ | |
4093 { | |
4094 funcall_subr: | |
1292 | 4095 PROFILE_ENTER_FUNCTION (); |
428 | 4096 FUNCALL_SUBR (val, subr, fun_args, max_args); |
1292 | 4097 PROFILE_EXIT_FUNCTION (); |
428 | 4098 } |
436 | 4099 else if (fun_nargs < subr->min_args) |
4100 { | |
4101 goto wrong_number_of_arguments; | |
4102 } | |
428 | 4103 else if (fun_nargs < max_args) |
4104 { | |
4105 Lisp_Object *p = spacious_args; | |
4106 | |
4107 /* Default optionals to nil */ | |
4108 while (fun_nargs--) | |
4109 *p++ = *fun_args++; | |
4110 while (p - spacious_args < max_args) | |
4111 *p++ = Qnil; | |
4112 | |
4113 fun_args = spacious_args; | |
4114 goto funcall_subr; | |
4115 } | |
4116 else if (max_args == MANY) | |
4117 { | |
1292 | 4118 PROFILE_ENTER_FUNCTION (); |
436 | 4119 val = SUBR_FUNCTION (subr, MANY) (fun_nargs, fun_args); |
1292 | 4120 PROFILE_EXIT_FUNCTION (); |
428 | 4121 } |
4905
755ae5b97edb
Change "special form" to "special operator" in our sources.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4846
diff
changeset
|
4122 else if (max_args == UNEVALLED) /* Can't funcall a special operator */ |
428 | 4123 { |
5222
18c0b5909d16
Use keywords in structure syntax; new #define, NEED_TO_HANDLE_21_4_CODE 1
Aidan Kehoe <kehoea@parhasard.net>
parents:
5207
diff
changeset
|
4124 |
18c0b5909d16
Use keywords in structure syntax; new #define, NEED_TO_HANDLE_21_4_CODE 1
Aidan Kehoe <kehoea@parhasard.net>
parents:
5207
diff
changeset
|
4125 #ifdef NEED_TO_HANDLE_21_4_CODE |
4677
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4126 /* Ugh, ugh, ugh. */ |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4127 if (EQ (fun, XSYMBOL_FUNCTION (Qthrow))) |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4128 { |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4129 args[0] = Qobsolete_throw; |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4130 goto retry; |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4131 } |
5222
18c0b5909d16
Use keywords in structure syntax; new #define, NEED_TO_HANDLE_21_4_CODE 1
Aidan Kehoe <kehoea@parhasard.net>
parents:
5207
diff
changeset
|
4132 #endif /* NEED_TO_HANDLE_21_4_CODE */ |
18c0b5909d16
Use keywords in structure syntax; new #define, NEED_TO_HANDLE_21_4_CODE 1
Aidan Kehoe <kehoea@parhasard.net>
parents:
5207
diff
changeset
|
4133 |
428 | 4134 goto invalid_function; |
4135 } | |
4136 else | |
4137 { | |
4138 wrong_number_of_arguments: | |
436 | 4139 val = signal_wrong_number_of_arguments_error (fun, fun_nargs); |
428 | 4140 } |
4141 } | |
4142 else if (COMPILED_FUNCTIONP (fun)) | |
4143 { | |
1292 | 4144 PROFILE_ENTER_FUNCTION (); |
428 | 4145 val = funcall_compiled_function (fun, fun_nargs, fun_args); |
1292 | 4146 PROFILE_EXIT_FUNCTION (); |
428 | 4147 } |
4148 else if (CONSP (fun)) | |
4149 { | |
4150 Lisp_Object funcar = XCAR (fun); | |
4151 | |
4152 if (EQ (funcar, Qlambda)) | |
4153 { | |
1292 | 4154 PROFILE_ENTER_FUNCTION (); |
428 | 4155 val = funcall_lambda (fun, fun_nargs, fun_args); |
1292 | 4156 PROFILE_EXIT_FUNCTION (); |
428 | 4157 } |
4158 else if (EQ (funcar, Qautoload)) | |
4159 { | |
970 | 4160 /* do_autoload GCPROs both arguments */ |
428 | 4161 do_autoload (fun, args[0]); |
4162 goto retry; | |
4163 } | |
4164 else /* Can't funcall a macro */ | |
4165 { | |
4166 goto invalid_function; | |
4167 } | |
4168 } | |
4169 else if (UNBOUNDP (fun)) | |
4170 { | |
436 | 4171 val = signal_void_function_error (args[0]); |
428 | 4172 } |
4173 else | |
4174 { | |
4175 invalid_function: | |
436 | 4176 val = signal_invalid_function_error (fun); |
428 | 4177 } |
4178 | |
4179 lisp_eval_depth--; | |
4180 if (backtrace.debug_on_exit) | |
4181 val = do_debug_on_exit (val); | |
4182 POP_BACKTRACE (backtrace); | |
4183 return val; | |
4184 } | |
4185 | |
4186 DEFUN ("functionp", Ffunctionp, 1, 1, 0, /* | |
4187 Return t if OBJECT can be called as a function, else nil. | |
4188 A function is an object that can be applied to arguments, | |
4189 using for example `funcall' or `apply'. | |
4190 */ | |
4191 (object)) | |
4192 { | |
4193 if (SYMBOLP (object)) | |
4194 object = indirect_function (object, 0); | |
4195 | |
4795
084056f46755
#'functionp gives nil for special forms, as in CL and GNU Emacs 23.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4744
diff
changeset
|
4196 if (COMPILED_FUNCTIONP (object) |
084056f46755
#'functionp gives nil for special forms, as in CL and GNU Emacs 23.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4744
diff
changeset
|
4197 || (SUBRP (object) |
084056f46755
#'functionp gives nil for special forms, as in CL and GNU Emacs 23.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4744
diff
changeset
|
4198 && (XSUBR (object)->max_args != UNEVALLED))) |
919 | 4199 return Qt; |
4200 if (CONSP (object)) | |
4201 { | |
4202 Lisp_Object car = XCAR (object); | |
4203 if (EQ (car, Qlambda)) | |
4204 return Qt; | |
4205 if (EQ (car, Qautoload) | |
4795
084056f46755
#'functionp gives nil for special forms, as in CL and GNU Emacs 23.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4744
diff
changeset
|
4206 && NILP (Fcar_safe (Fcdr_safe(Fcdr_safe |
084056f46755
#'functionp gives nil for special forms, as in CL and GNU Emacs 23.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4744
diff
changeset
|
4207 (Fcdr_safe (XCDR (object))))))) |
919 | 4208 return Qt; |
4209 } | |
4210 return Qnil; | |
428 | 4211 } |
4212 | |
4213 static Lisp_Object | |
4214 function_argcount (Lisp_Object function, int function_min_args_p) | |
4215 { | |
4216 Lisp_Object orig_function = function; | |
4217 Lisp_Object arglist; | |
4218 | |
4219 retry: | |
4220 | |
4221 if (SYMBOLP (function)) | |
4222 function = indirect_function (function, 1); | |
4223 | |
4224 if (SUBRP (function)) | |
4225 { | |
442 | 4226 /* Using return with the ?: operator tickles a DEC CC compiler bug. */ |
4227 if (function_min_args_p) | |
4228 return Fsubr_min_args (function); | |
4229 else | |
4230 return Fsubr_max_args (function); | |
428 | 4231 } |
4232 else if (COMPILED_FUNCTIONP (function)) | |
4233 { | |
814 | 4234 Lisp_Compiled_Function *f = XCOMPILED_FUNCTION (function); |
4235 | |
1737 | 4236 if (!OPAQUEP (f->instructions)) |
4237 /* Lazily munge the instructions into a more efficient form */ | |
4238 /* Needed to set max_args */ | |
4239 optimize_compiled_function (function); | |
4240 | |
814 | 4241 if (function_min_args_p) |
4242 return make_int (f->min_args); | |
4243 else if (f->max_args == MANY) | |
4244 return Qnil; | |
4245 else | |
4246 return make_int (f->max_args); | |
428 | 4247 } |
4248 else if (CONSP (function)) | |
4249 { | |
4250 Lisp_Object funcar = XCAR (function); | |
4251 | |
4252 if (EQ (funcar, Qmacro)) | |
4253 { | |
4254 function = XCDR (function); | |
4255 goto retry; | |
4256 } | |
4257 else if (EQ (funcar, Qautoload)) | |
4258 { | |
970 | 4259 /* do_autoload GCPROs both arguments */ |
428 | 4260 do_autoload (function, orig_function); |
442 | 4261 function = orig_function; |
428 | 4262 goto retry; |
4263 } | |
4264 else if (EQ (funcar, Qlambda)) | |
4265 { | |
4266 arglist = Fcar (XCDR (function)); | |
4267 } | |
4268 else | |
4269 { | |
4270 goto invalid_function; | |
4271 } | |
4272 } | |
4273 else | |
4274 { | |
4275 invalid_function: | |
442 | 4276 return signal_invalid_function_error (orig_function); |
428 | 4277 } |
4278 | |
4279 { | |
4280 int argcount = 0; | |
4281 | |
4282 EXTERNAL_LIST_LOOP_2 (arg, arglist) | |
4283 { | |
4284 if (EQ (arg, Qand_optional)) | |
4285 { | |
4286 if (function_min_args_p) | |
4287 break; | |
4288 } | |
4289 else if (EQ (arg, Qand_rest)) | |
4290 { | |
4291 if (function_min_args_p) | |
4292 break; | |
4293 else | |
4294 return Qnil; | |
4295 } | |
4296 else | |
4297 { | |
4298 argcount++; | |
4299 } | |
4300 } | |
4301 | |
4302 return make_int (argcount); | |
4303 } | |
4304 } | |
4305 | |
4306 DEFUN ("function-min-args", Ffunction_min_args, 1, 1, 0, /* | |
617 | 4307 Return the minimum number of arguments a function may be called with. |
428 | 4308 The function may be any form that can be passed to `funcall', |
4905
755ae5b97edb
Change "special form" to "special operator" in our sources.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4846
diff
changeset
|
4309 any special operator, or any macro. |
853 | 4310 |
4311 To check if a function can be called with a specified number of | |
4312 arguments, use `function-allows-args'. | |
428 | 4313 */ |
4314 (function)) | |
4315 { | |
4316 return function_argcount (function, 1); | |
4317 } | |
4318 | |
4319 DEFUN ("function-max-args", Ffunction_max_args, 1, 1, 0, /* | |
617 | 4320 Return the maximum number of arguments a function may be called with. |
428 | 4321 The function may be any form that can be passed to `funcall', |
4905
755ae5b97edb
Change "special form" to "special operator" in our sources.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4846
diff
changeset
|
4322 any special operator, or any macro. |
428 | 4323 If the function takes an arbitrary number of arguments or is |
4905
755ae5b97edb
Change "special form" to "special operator" in our sources.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4846
diff
changeset
|
4324 a built-in special operator, nil is returned. |
853 | 4325 |
4326 To check if a function can be called with a specified number of | |
4327 arguments, use `function-allows-args'. | |
428 | 4328 */ |
4329 (function)) | |
4330 { | |
4331 return function_argcount (function, 0); | |
4332 } | |
4333 | |
4334 | |
4335 DEFUN ("apply", Fapply, 2, MANY, 0, /* | |
4336 Call FUNCTION with the remaining args, using the last arg as a list of args. | |
4337 Thus, (apply '+ 1 2 '(3 4)) returns 10. | |
4693
80cd90837ac5
Add argument information to remaining MANY or UNEVALLED C subrs.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4686
diff
changeset
|
4338 |
80cd90837ac5
Add argument information to remaining MANY or UNEVALLED C subrs.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4686
diff
changeset
|
4339 arguments: (FUNCTION &rest ARGS) |
428 | 4340 */ |
4341 (int nargs, Lisp_Object *args)) | |
4342 { | |
4343 /* This function can GC */ | |
4344 Lisp_Object fun = args[0]; | |
4345 Lisp_Object spread_arg = args [nargs - 1]; | |
4346 int numargs; | |
4347 int funcall_nargs; | |
4348 | |
4349 GET_EXTERNAL_LIST_LENGTH (spread_arg, numargs); | |
4350 | |
4351 if (numargs == 0) | |
4352 /* (apply foo 0 1 '()) */ | |
4353 return Ffuncall (nargs - 1, args); | |
4354 else if (numargs == 1) | |
4355 { | |
4356 /* (apply foo 0 1 '(2)) */ | |
4357 args [nargs - 1] = XCAR (spread_arg); | |
4358 return Ffuncall (nargs, args); | |
4359 } | |
4360 | |
4361 /* -1 for function, -1 for spread arg */ | |
4362 numargs = nargs - 2 + numargs; | |
4363 /* +1 for function */ | |
4364 funcall_nargs = 1 + numargs; | |
4365 | |
4366 if (SYMBOLP (fun)) | |
4367 fun = indirect_function (fun, 0); | |
4368 | |
4369 if (SUBRP (fun)) | |
4370 { | |
4371 Lisp_Subr *subr = XSUBR (fun); | |
4372 int max_args = subr->max_args; | |
4373 | |
4374 if (numargs < subr->min_args | |
4375 || (max_args >= 0 && max_args < numargs)) | |
4376 { | |
4377 /* Let funcall get the error */ | |
4378 } | |
4379 else if (max_args > numargs) | |
4380 { | |
4381 /* Avoid having funcall cons up yet another new vector of arguments | |
4382 by explicitly supplying nil's for optional values */ | |
4383 funcall_nargs += (max_args - numargs); | |
4384 } | |
4385 } | |
4386 else if (UNBOUNDP (fun)) | |
4387 { | |
4388 /* Let funcall get the error */ | |
4389 fun = args[0]; | |
4390 } | |
4391 | |
4392 { | |
4393 REGISTER int i; | |
4394 Lisp_Object *funcall_args = alloca_array (Lisp_Object, funcall_nargs); | |
4395 struct gcpro gcpro1; | |
4396 | |
4397 GCPRO1 (*funcall_args); | |
4398 gcpro1.nvars = funcall_nargs; | |
4399 | |
4400 /* Copy in the unspread args */ | |
4401 memcpy (funcall_args, args, (nargs - 1) * sizeof (Lisp_Object)); | |
4402 /* Spread the last arg we got. Its first element goes in | |
4403 the slot that it used to occupy, hence this value of I. */ | |
4404 for (i = nargs - 1; | |
4405 !NILP (spread_arg); /* i < 1 + numargs */ | |
4406 i++, spread_arg = XCDR (spread_arg)) | |
4407 { | |
4408 funcall_args [i] = XCAR (spread_arg); | |
4409 } | |
4410 /* Supply nil for optional args (to subrs) */ | |
4411 for (; i < funcall_nargs; i++) | |
4412 funcall_args[i] = Qnil; | |
4413 | |
4414 | |
4415 RETURN_UNGCPRO (Ffuncall (funcall_nargs, funcall_args)); | |
4416 } | |
4417 } | |
4418 | |
4419 /* Apply lambda list FUN to the NARGS evaluated arguments in ARGS and | |
4420 return the result of evaluation. */ | |
4421 | |
4422 static Lisp_Object | |
4423 funcall_lambda (Lisp_Object fun, int nargs, Lisp_Object args[]) | |
4424 { | |
4425 /* This function can GC */ | |
442 | 4426 Lisp_Object arglist, body, tail; |
428 | 4427 int speccount = specpdl_depth(); |
4428 REGISTER int i = 0; | |
4429 | |
4430 tail = XCDR (fun); | |
4431 | |
4432 if (!CONSP (tail)) | |
4433 goto invalid_function; | |
4434 | |
4435 arglist = XCAR (tail); | |
4436 body = XCDR (tail); | |
4437 | |
4438 { | |
4439 int optional = 0, rest = 0; | |
4440 | |
442 | 4441 EXTERNAL_LIST_LOOP_2 (symbol, arglist) |
428 | 4442 { |
4443 if (!SYMBOLP (symbol)) | |
4444 goto invalid_function; | |
4445 if (EQ (symbol, Qand_rest)) | |
4446 rest = 1; | |
4447 else if (EQ (symbol, Qand_optional)) | |
4448 optional = 1; | |
4449 else if (rest) | |
4450 { | |
4451 specbind (symbol, Flist (nargs - i, &args[i])); | |
4452 i = nargs; | |
4453 } | |
4454 else if (i < nargs) | |
4455 specbind (symbol, args[i++]); | |
4456 else if (!optional) | |
4457 goto wrong_number_of_arguments; | |
4458 else | |
4459 specbind (symbol, Qnil); | |
4460 } | |
4461 } | |
4462 | |
4463 if (i < nargs) | |
4464 goto wrong_number_of_arguments; | |
4465 | |
771 | 4466 return unbind_to_1 (speccount, Fprogn (body)); |
428 | 4467 |
4468 wrong_number_of_arguments: | |
436 | 4469 return signal_wrong_number_of_arguments_error (fun, nargs); |
428 | 4470 |
4471 invalid_function: | |
436 | 4472 return signal_invalid_function_error (fun); |
428 | 4473 } |
4474 | |
4475 | |
4677
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4476 /* Multiple values. |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4477 |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4478 A multiple value object is returned by #'values if: |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4479 |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4480 -- The number of arguments to #'values is not one, and: |
4905
755ae5b97edb
Change "special form" to "special operator" in our sources.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4846
diff
changeset
|
4481 -- Some special operator in the call stack is prepared to handle more than |
4677
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4482 one multiple value. |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4483 |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4484 The return value of #'values-list is analogous to that of #'values. |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4485 |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4486 Henry Baker, in https://eprints.kfupm.edu.sa/31898/1/31898.pdf ("CONS |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4487 Should not CONS its Arguments, or, a Lazy Alloc is a Smart Alloc", ACM |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4488 Sigplan Notices 27,3 (March 1992),24-34.) says it should be possible to |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4489 allocate Common Lisp multiple-value objects on the stack, but this |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4490 assumes that variable-length records can be allocated on the stack, |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4491 something not true for us. As far as I can tell, it also ignores the |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4492 contexts where multiple-values need to be thrown, or maybe it thinks such |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4493 objects should be converted to heap allocation at that point. |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4494 |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4495 The specific multiple values saved and returned depend on how many |
4905
755ae5b97edb
Change "special form" to "special operator" in our sources.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4846
diff
changeset
|
4496 multiple-values special operators in the stack are interested in; for |
4677
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4497 example, if #'multiple-value-call is somewhere in the call stack, all |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4498 values passed to #'values will be saved and returned. If an expansion of |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4499 #'multiple-value-setq with 10 SYMS is the only part of the call stack |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4500 interested in multiple values, then a maximum of ten multiple values will |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4501 be saved and returned. |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4502 |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4503 (#'throw passes back multiple values in its VALUE argument; this is why |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4504 we can't just take the details of the most immediate |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4505 #'multiple-value-{whatever} call to work out which values to save, we |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4506 need to look at the whole stack, or, equivalently, the dynamic variables |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4507 we set to reflect the whole stack.) |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4508 |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4509 The first value passed to #'values will always be saved, since that is |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4510 needed to convert a multiple value object into a single value object, |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4511 something that is normally necessary independent of how many functions in |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4512 the call stack are interested in multiple values. |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4513 |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4514 However many values (for values of "however many" that are not one) are |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4515 saved and restored, the multiple value object knows how many arguments it |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4516 would contain were none to have been discarded, and will indicate this |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4517 on being printed from within GDB. |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4518 |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4519 In lisp-interaction-mode, no multiple values should be discarded (unless |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4520 they need to be for the sake of the correctness of the program); |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4521 #'eval-interactive-with-multiple-value-list in lisp-mode.el wraps its |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4522 #'eval calls with #'multiple-value-list calls to avoid this. This means |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4523 that there is a small performance and memory penalty for code evaluated |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4524 in *scratch*; use M-: EXPRESSION RET if you really need to avoid |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4525 this. Lisp code execution that is not ultimately from hitting C-j in |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4526 *scratch*--that is, the vast vast majority of Lisp code execution--does |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4527 not have this penalty. |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4528 |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4529 Probably the most important aspect of multiple values is stated with |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4530 admirable clarity by CLTL2: |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4531 |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4532 "No matter how many values a form produces, if the form is an argument |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4533 form in a function call, then exactly one value (the first one) is |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4534 used." |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4535 |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4536 This means that most contexts, most of the time, will never see multiple |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4537 values. There are important exceptions; search the web for that text in |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4538 quotation marks and read the related chapter. This code handles all of |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4539 them, to my knowledge. Aidan Kehoe, Mon Mar 16 00:17:39 GMT 2009. */ |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4540 |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4541 static Lisp_Object |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4542 make_multiple_value (Lisp_Object first_value, Elemcount count, |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4543 Elemcount first_desired, Elemcount upper_limit) |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4544 { |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4545 Bytecount sizem; |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4546 struct multiple_value *mv; |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4547 Elemcount i, allocated_count; |
5118
e0db3c197671
merge up to latest default branch, doesn't compile yet
Ben Wing <ben@xemacs.org>
diff
changeset
|
4548 Lisp_Object mvobj; |
4677
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4549 |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4550 assert (count != 1); |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4551 |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4552 if (1 != upper_limit && (0 == first_desired)) |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4553 { |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4554 /* We always allocate element zero, and that's taken into account when |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4555 working out allocated_count: */ |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4556 first_desired = 1; |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4557 } |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4558 |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4559 if (first_desired >= count) |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4560 { |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4561 /* We can't pass anything back that our caller is interested in. Only |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4562 allocate for the first argument. */ |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4563 allocated_count = 1; |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4564 } |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4565 else |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4566 { |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4567 allocated_count = 1 + ((upper_limit > count ? count : upper_limit) |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4568 - first_desired); |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4569 } |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4570 |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4571 sizem = FLEXIBLE_ARRAY_STRUCT_SIZEOF (multiple_value, |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4572 Lisp_Object, |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4573 contents, allocated_count); |
5118
e0db3c197671
merge up to latest default branch, doesn't compile yet
Ben Wing <ben@xemacs.org>
diff
changeset
|
4574 mvobj = ALLOC_SIZED_LISP_OBJECT (sizem, multiple_value); |
e0db3c197671
merge up to latest default branch, doesn't compile yet
Ben Wing <ben@xemacs.org>
diff
changeset
|
4575 mv = XMULTIPLE_VALUE (mvobj); |
4677
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4576 |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4577 mv->count = count; |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4578 mv->first_desired = first_desired; |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4579 mv->allocated_count = allocated_count; |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4580 mv->contents[0] = first_value; |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4581 |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4582 for (i = first_desired; i < upper_limit && i < count; ++i) |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4583 { |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4584 mv->contents[1 + (i - first_desired)] = Qunbound; |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4585 } |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4586 |
5118
e0db3c197671
merge up to latest default branch, doesn't compile yet
Ben Wing <ben@xemacs.org>
diff
changeset
|
4587 return mvobj; |
4677
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4588 } |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4589 |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4590 void |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4591 multiple_value_aset (Lisp_Object obj, Elemcount index, Lisp_Object value) |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4592 { |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4593 struct multiple_value *mv = XMULTIPLE_VALUE (obj); |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4594 Elemcount first_desired = mv->first_desired; |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4595 Elemcount allocated_count = mv->allocated_count; |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4596 |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4597 if (index != 0 && |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4598 (index < first_desired || index >= (first_desired + allocated_count))) |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4599 { |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4600 args_out_of_range (make_int (first_desired), |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4601 make_int (first_desired + allocated_count)); |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4602 } |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4603 |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4604 mv->contents[index == 0 ? 0 : 1 + (index - first_desired)] = value; |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4605 } |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4606 |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4607 Lisp_Object |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4608 multiple_value_aref (Lisp_Object obj, Elemcount index) |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4609 { |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4610 struct multiple_value *mv = XMULTIPLE_VALUE (obj); |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4611 Elemcount first_desired = mv->first_desired; |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4612 Elemcount allocated_count = mv->allocated_count; |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4613 |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4614 if (index != 0 && |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4615 (index < first_desired || index >= (first_desired + allocated_count))) |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4616 { |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4617 args_out_of_range (make_int (first_desired), |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4618 make_int (first_desired + allocated_count)); |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4619 } |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4620 |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4621 return mv->contents[index == 0 ? 0 : 1 + (index - first_desired)]; |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4622 } |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4623 |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4624 static void |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4625 print_multiple_value (Lisp_Object obj, Lisp_Object printcharfun, int escapeflag) |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4626 { |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4627 struct multiple_value *mv = XMULTIPLE_VALUE (obj); |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4628 Elemcount first_desired = mv->first_desired; |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4629 Elemcount allocated_count = mv->allocated_count; |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4630 Elemcount count = mv->count, index; |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4631 |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4632 if (print_readably) |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4633 { |
5146
88bd4f3ef8e4
make lrecord UID's have a separate UID space for each object, resurrect debug SOE code in extents.c
Ben Wing <ben@xemacs.org>
parents:
5142
diff
changeset
|
4634 printing_unreadable_object_fmt ("#<multiple values 0x%x>", |
88bd4f3ef8e4
make lrecord UID's have a separate UID space for each object, resurrect debug SOE code in extents.c
Ben Wing <ben@xemacs.org>
parents:
5142
diff
changeset
|
4635 LISP_OBJECT_UID (obj)); |
4677
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4636 } |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4637 |
5086
47bcef7b0b44
Print multiple values with #<INTERNAL OBJECT (XEmacs bug?) ...>, too
Aidan Kehoe <kehoea@parhasard.net>
parents:
5084
diff
changeset
|
4638 write_fmt_string (printcharfun, |
47bcef7b0b44
Print multiple values with #<INTERNAL OBJECT (XEmacs bug?) ...>, too
Aidan Kehoe <kehoea@parhasard.net>
parents:
5084
diff
changeset
|
4639 "#<INTERNAL OBJECT (XEmacs bug?) %d multiple values," |
47bcef7b0b44
Print multiple values with #<INTERNAL OBJECT (XEmacs bug?) ...>, too
Aidan Kehoe <kehoea@parhasard.net>
parents:
5084
diff
changeset
|
4640 " data (", count); |
4677
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4641 |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4642 for (index = 0; index < count;) |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4643 { |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4644 if (index != 0 && |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4645 (index < first_desired || |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4646 index >= (first_desired + (allocated_count - 1)))) |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4647 { |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4648 write_fmt_string (printcharfun, "#<discarded-multiple-value %d>", |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4649 index); |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4650 } |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4651 else |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4652 { |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4653 print_internal (multiple_value_aref (obj, index), |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4654 printcharfun, escapeflag); |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4655 } |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4656 |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4657 ++index; |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4658 |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4659 if (count > 1 && index < count) |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4660 { |
5086
47bcef7b0b44
Print multiple values with #<INTERNAL OBJECT (XEmacs bug?) ...>, too
Aidan Kehoe <kehoea@parhasard.net>
parents:
5084
diff
changeset
|
4661 write_ascstring (printcharfun, " "); |
4677
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4662 } |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4663 } |
5086
47bcef7b0b44
Print multiple values with #<INTERNAL OBJECT (XEmacs bug?) ...>, too
Aidan Kehoe <kehoea@parhasard.net>
parents:
5084
diff
changeset
|
4664 |
5146
88bd4f3ef8e4
make lrecord UID's have a separate UID space for each object, resurrect debug SOE code in extents.c
Ben Wing <ben@xemacs.org>
parents:
5142
diff
changeset
|
4665 write_fmt_string (printcharfun, ") 0x%x>", LISP_OBJECT_UID (obj)); |
4677
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4666 } |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4667 |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4668 static Lisp_Object |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4669 mark_multiple_value (Lisp_Object obj) |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4670 { |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4671 struct multiple_value *mv = XMULTIPLE_VALUE (obj); |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4672 Elemcount index, allocated_count = mv->allocated_count; |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4673 |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4674 for (index = 0; index < allocated_count; ++index) |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4675 { |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4676 mark_object (mv->contents[index]); |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4677 } |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4678 |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4679 return Qnil; |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4680 } |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4681 |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4682 static Bytecount |
5127
a9c41067dd88
more cleanups, terminology clarification, lots of doc work
Ben Wing <ben@xemacs.org>
parents:
5126
diff
changeset
|
4683 size_multiple_value (Lisp_Object obj) |
4677
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4684 { |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4685 return FLEXIBLE_ARRAY_STRUCT_SIZEOF (struct multiple_value, |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4686 Lisp_Object, contents, |
5127
a9c41067dd88
more cleanups, terminology clarification, lots of doc work
Ben Wing <ben@xemacs.org>
parents:
5126
diff
changeset
|
4687 XMULTIPLE_VALUE (obj)->allocated_count); |
4677
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4688 } |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4689 |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4690 static const struct memory_description multiple_value_description[] = { |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4691 { XD_LONG, offsetof (struct multiple_value, count) }, |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4692 { XD_ELEMCOUNT, offsetof (struct multiple_value, allocated_count) }, |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4693 { XD_LONG, offsetof (struct multiple_value, first_desired) }, |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4694 { XD_LISP_OBJECT_ARRAY, offsetof (struct multiple_value, contents), |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4695 XD_INDIRECT (1, 0) }, |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4696 { XD_END } |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4697 }; |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4698 |
5118
e0db3c197671
merge up to latest default branch, doesn't compile yet
Ben Wing <ben@xemacs.org>
diff
changeset
|
4699 DEFINE_DUMPABLE_SIZABLE_LISP_OBJECT ("multiple-value", multiple_value, |
5124
623d57b7fbe8
separate regular and disksave finalization, print method fixes.
Ben Wing <ben@xemacs.org>
parents:
5118
diff
changeset
|
4700 mark_multiple_value, |
623d57b7fbe8
separate regular and disksave finalization, print method fixes.
Ben Wing <ben@xemacs.org>
parents:
5118
diff
changeset
|
4701 print_multiple_value, 0, |
623d57b7fbe8
separate regular and disksave finalization, print method fixes.
Ben Wing <ben@xemacs.org>
parents:
5118
diff
changeset
|
4702 0, /* No equal method. */ |
623d57b7fbe8
separate regular and disksave finalization, print method fixes.
Ben Wing <ben@xemacs.org>
parents:
5118
diff
changeset
|
4703 0, /* No hash method. */ |
623d57b7fbe8
separate regular and disksave finalization, print method fixes.
Ben Wing <ben@xemacs.org>
parents:
5118
diff
changeset
|
4704 multiple_value_description, |
623d57b7fbe8
separate regular and disksave finalization, print method fixes.
Ben Wing <ben@xemacs.org>
parents:
5118
diff
changeset
|
4705 size_multiple_value, |
623d57b7fbe8
separate regular and disksave finalization, print method fixes.
Ben Wing <ben@xemacs.org>
parents:
5118
diff
changeset
|
4706 struct multiple_value); |
4677
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4707 |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4708 /* Given that FIRST and UPPER are the inclusive lower and exclusive upper |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4709 bounds for the multiple values we're interested in, modify (or don't) the |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4710 special variables used to indicate this to #'values and #'values-list. |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4711 Returns the specpdl_depth() value before any modification. */ |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4712 int |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4713 bind_multiple_value_limits (int first, int upper) |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4714 { |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4715 int result = specpdl_depth(); |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4716 |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4717 if (!(upper > first)) |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4718 { |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4719 invalid_argument ("MULTIPLE-VALUE-UPPER-LIMIT must be greater than " |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4720 " FIRST-DESIRED-MULTIPLE-VALUE", Qunbound); |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4721 } |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4722 |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4723 if (upper > Vmultiple_values_limit) |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4724 { |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4725 args_out_of_range (make_int (upper), make_int (Vmultiple_values_limit)); |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4726 } |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4727 |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4728 /* In the event that something back up the stack wants more multiple |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4729 values than we do, we need to keep its figures for |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4730 first_desired_multiple_value or multiple_value_current_limit both. It |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4731 may be that the form will throw past us. |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4732 |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4733 If first_desired_multiple_value is zero, this means it hasn't ever been |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4734 bound, and any value we have for first is appropriate to use. |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4735 |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4736 Zeroth element is always saved, no need to note that: */ |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4737 if (0 == first) |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4738 { |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4739 first = 1; |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4740 } |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4741 |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4742 if (0 == first_desired_multiple_value |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4743 || first < first_desired_multiple_value) |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4744 { |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4745 internal_bind_int (&first_desired_multiple_value, first); |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4746 } |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4747 |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4748 if (upper > multiple_value_current_limit) |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4749 { |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4750 internal_bind_int (&multiple_value_current_limit, upper); |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4751 } |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4752 |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4753 return result; |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4754 } |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4755 |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4756 Lisp_Object |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4757 multiple_value_call (int nargs, Lisp_Object *args) |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4758 { |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4759 /* The argument order here is horrible: */ |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4760 int i, speccount = XINT (args[3]); |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4761 Lisp_Object result = Qnil, head = Fcons (args[0], Qnil), list_offset; |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4762 struct gcpro gcpro1, gcpro2; |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4763 Lisp_Object apply_args[2]; |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4764 |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4765 GCPRO2 (head, result); |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4766 list_offset = head; |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4767 |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4768 assert (!(MULTIPLE_VALUEP (args[0]))); |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4769 CHECK_FUNCTION (args[0]); |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4770 |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4771 /* Start at 4, to ignore the function, the speccount, and the arguments to |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4772 multiple-values-limit (which we don't discard because |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4773 #'multiple-value-list-internal needs them): */ |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4774 for (i = 4; i < nargs; ++i) |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4775 { |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4776 result = args[i]; |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4777 if (MULTIPLE_VALUEP (result)) |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4778 { |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4779 Lisp_Object val; |
5016
2ade80e8c640
enable more warnings and fix them
Ben Wing <ben@xemacs.org>
parents:
5013
diff
changeset
|
4780 Elemcount j, count = XMULTIPLE_VALUE_COUNT (result); |
2ade80e8c640
enable more warnings and fix them
Ben Wing <ben@xemacs.org>
parents:
5013
diff
changeset
|
4781 |
2ade80e8c640
enable more warnings and fix them
Ben Wing <ben@xemacs.org>
parents:
5013
diff
changeset
|
4782 for (j = 0; j < count; j++) |
4677
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4783 { |
5016
2ade80e8c640
enable more warnings and fix them
Ben Wing <ben@xemacs.org>
parents:
5013
diff
changeset
|
4784 val = multiple_value_aref (result, j); |
4677
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4785 assert (!UNBOUNDP (val)); |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4786 |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4787 XSETCDR (list_offset, Fcons (val, Qnil)); |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4788 list_offset = XCDR (list_offset); |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4789 } |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4790 } |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4791 else |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4792 { |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4793 XSETCDR (list_offset, Fcons (result, Qnil)); |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4794 list_offset = XCDR (list_offset); |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4795 } |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4796 } |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4797 |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4798 apply_args [0] = XCAR (head); |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4799 apply_args [1] = XCDR (head); |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4800 |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4801 unbind_to (speccount); |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4802 |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4803 RETURN_UNGCPRO (Fapply (countof(apply_args), apply_args)); |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4804 } |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4805 |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4806 DEFUN ("multiple-value-call", Fmultiple_value_call, 1, UNEVALLED, 0, /* |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4807 Call FUNCTION with arguments FORMS, using multiple values when returned. |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4808 |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4809 All of the (possibly multiple) values returned by each form in FORMS are |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4810 gathered together, and given as arguments to FUNCTION; conceptually, this |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4811 function is a version of `apply' that by-passes the multiple values |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4812 infrastructure, treating multiple values as intercalated lists. |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4813 |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4814 arguments: (FUNCTION &rest FORMS) |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4815 */ |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4816 (args)) |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4817 { |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4818 int listcount, i = 0, speccount; |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4819 Lisp_Object *constructed_args; |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4820 struct gcpro gcpro1; |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4821 |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4822 GET_EXTERNAL_LIST_LENGTH (args, listcount); |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4823 |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4824 constructed_args = alloca_array (Lisp_Object, listcount + 3); |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4825 |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4826 /* Fcar so we error on non-cons: */ |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4827 constructed_args[i] = IGNORE_MULTIPLE_VALUES (Feval (Fcar (args))); |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4828 |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4829 GCPRO1 (*constructed_args); |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4830 gcpro1.nvars = ++i; |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4831 |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4832 /* The argument order is horrible here. */ |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4833 constructed_args[i] = make_int (0); |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4834 gcpro1.nvars = ++i; |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4835 constructed_args[i] = make_int (Vmultiple_values_limit); |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4836 gcpro1.nvars = ++i; |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4837 |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4838 speccount = bind_multiple_value_limits (0, Vmultiple_values_limit); |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4839 constructed_args[i] = make_int (speccount); |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4840 gcpro1.nvars = ++i; |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4841 |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4842 { |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4843 LIST_LOOP_2 (elt, XCDR (args)) |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4844 { |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4845 constructed_args[i] = Feval (elt); |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4846 gcpro1.nvars = ++i; |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4847 } |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4848 } |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4849 |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4850 RETURN_UNGCPRO (multiple_value_call (listcount + 3, constructed_args)); |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4851 } |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4852 |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4853 Lisp_Object |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4854 multiple_value_list_internal (int nargs, Lisp_Object *args) |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4855 { |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4856 int first = XINT (args[0]), upper = XINT (args[1]), |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4857 speccount = XINT(args[2]); |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4858 Lisp_Object result = Qnil; |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4859 |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4860 assert (nargs == 4); |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4861 |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4862 result = args[3]; |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4863 |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4864 unbind_to (speccount); |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4865 |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4866 if (MULTIPLE_VALUEP (result)) |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4867 { |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4868 Lisp_Object head = Fcons (Qnil, Qnil); |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4869 Lisp_Object list_offset = head, val; |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4870 Elemcount count = XMULTIPLE_VALUE_COUNT(result); |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4871 |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4872 for (; first < upper && first < count; ++first) |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4873 { |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4874 val = multiple_value_aref (result, first); |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4875 assert (!UNBOUNDP (val)); |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4876 |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4877 XSETCDR (list_offset, Fcons (val, Qnil)); |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4878 list_offset = XCDR (list_offset); |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4879 } |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4880 |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4881 return XCDR (head); |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4882 } |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4883 else |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4884 { |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4885 if (first == 0) |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4886 { |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4887 return Fcons (result, Qnil); |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4888 } |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4889 else |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4890 { |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4891 return Qnil; |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4892 } |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4893 } |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4894 } |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4895 |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4896 DEFUN ("multiple-value-list-internal", Fmultiple_value_list_internal, 3, |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4897 UNEVALLED, 0, /* |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4898 Evaluate FORM. Return a list of multiple vals reflecting the other two args. |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4899 |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4900 Don't use this. Use `multiple-value-list', the macro specified by Common |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4901 Lisp, instead. |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4902 |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4903 FIRST-DESIRED-MULTIPLE-VALUE is the first element in list of multiple values |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4904 to pass back. MULTIPLE-VALUE-UPPER-LIMIT is the exclusive upper limit on |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4905 the indexes within the values that may be passed back; this function will |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4906 never return a list longer than MULTIPLE-VALUE-UPPER-LIMIT - |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4907 FIRST-DESIRED-MULTIPLE-VALUE. It may return a list shorter than that, if |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4908 `values' or `values-list' do not supply enough elements. |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4909 |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4910 arguments: (FIRST-DESIRED-MULTIPLE-VALUE MULTIPLE-VALUE-UPPER-LIMIT FORM) |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4911 */ |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4912 (args)) |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4913 { |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4914 Lisp_Object argv[4]; |
4686
cdabd56ce1b5
Fix various small issues with the multiple-value implementation.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4677
diff
changeset
|
4915 int first, upper, nargs; |
4677
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4916 struct gcpro gcpro1; |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4917 |
4686
cdabd56ce1b5
Fix various small issues with the multiple-value implementation.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4677
diff
changeset
|
4918 GET_LIST_LENGTH (args, nargs); |
cdabd56ce1b5
Fix various small issues with the multiple-value implementation.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4677
diff
changeset
|
4919 if (nargs != 3) |
cdabd56ce1b5
Fix various small issues with the multiple-value implementation.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4677
diff
changeset
|
4920 { |
cdabd56ce1b5
Fix various small issues with the multiple-value implementation.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4677
diff
changeset
|
4921 Fsignal (Qwrong_number_of_arguments, |
cdabd56ce1b5
Fix various small issues with the multiple-value implementation.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4677
diff
changeset
|
4922 list2 (Qmultiple_value_list_internal, make_int (nargs))); |
cdabd56ce1b5
Fix various small issues with the multiple-value implementation.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4677
diff
changeset
|
4923 } |
cdabd56ce1b5
Fix various small issues with the multiple-value implementation.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4677
diff
changeset
|
4924 |
4677
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4925 argv[0] = IGNORE_MULTIPLE_VALUES (Feval (XCAR (args))); |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4926 |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4927 GCPRO1 (argv[0]); |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4928 gcpro1.nvars = 1; |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4929 |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4930 args = XCDR (args); |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4931 argv[1] = IGNORE_MULTIPLE_VALUES (Feval (XCAR (args))); |
5307
c096d8051f89
Have NATNUMP give t for positive bignums; check limits appropriately.
Aidan Kehoe <kehoea@parhasard.net>
parents:
5265
diff
changeset
|
4932 |
c096d8051f89
Have NATNUMP give t for positive bignums; check limits appropriately.
Aidan Kehoe <kehoea@parhasard.net>
parents:
5265
diff
changeset
|
4933 check_integer_range (argv[1], Qzero, make_int (EMACS_INT_MAX)); |
c096d8051f89
Have NATNUMP give t for positive bignums; check limits appropriately.
Aidan Kehoe <kehoea@parhasard.net>
parents:
5265
diff
changeset
|
4934 check_integer_range (argv[0], Qzero, argv[1]); |
c096d8051f89
Have NATNUMP give t for positive bignums; check limits appropriately.
Aidan Kehoe <kehoea@parhasard.net>
parents:
5265
diff
changeset
|
4935 |
4677
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4936 upper = XINT (argv[1]); |
5307
c096d8051f89
Have NATNUMP give t for positive bignums; check limits appropriately.
Aidan Kehoe <kehoea@parhasard.net>
parents:
5265
diff
changeset
|
4937 first = XINT (argv[0]); |
c096d8051f89
Have NATNUMP give t for positive bignums; check limits appropriately.
Aidan Kehoe <kehoea@parhasard.net>
parents:
5265
diff
changeset
|
4938 |
4677
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4939 gcpro1.nvars = 2; |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4940 |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4941 /* The unintuitive order of things here is for the sake of the bytecode; |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4942 the alternative would be to encode the number of arguments in the |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4943 bytecode stream, which complicates things if we have more than 255 |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4944 arguments. */ |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4945 argv[2] = make_int (bind_multiple_value_limits (first, upper)); |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4946 gcpro1.nvars = 3; |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4947 args = XCDR (args); |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4948 |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4949 /* GCPROing in this function is not strictly necessary, this Feval is the |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4950 only point that may cons up data that is not immediately discarded, and |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4951 within it is the only point (in Fmultiple_value_list_internal and |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4952 multiple_value_list) that we can garbage collect. But I'm conservative, |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4953 and this function is called so rarely (only from interpreted code) that |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4954 it doesn't matter for performance. */ |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4955 argv[3] = Feval (XCAR (args)); |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4956 gcpro1.nvars = 4; |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4957 |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4958 RETURN_UNGCPRO (multiple_value_list_internal (countof (argv), argv)); |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4959 } |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4960 |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4961 DEFUN ("multiple-value-prog1", Fmultiple_value_prog1, 1, UNEVALLED, 0, /* |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4962 Similar to `prog1', but return any multiple values from the first form. |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4963 `prog1' itself will never return multiple values. |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4964 |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4965 arguments: (FIRST &rest BODY) |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4966 */ |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4967 (args)) |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4968 { |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4969 /* This function can GC */ |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4970 Lisp_Object val; |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4971 struct gcpro gcpro1; |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4972 |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4973 val = Feval (XCAR (args)); |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4974 |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4975 GCPRO1 (val); |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4976 |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4977 { |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4978 LIST_LOOP_2 (form, XCDR (args)) |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4979 Feval (form); |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4980 } |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4981 |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4982 RETURN_UNGCPRO (val); |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4983 } |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4984 |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4985 DEFUN ("values", Fvalues, 0, MANY, 0, /* |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4986 Return all ARGS as multiple values. |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4987 |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4988 arguments: (&rest ARGS) |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4989 */ |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4990 (int nargs, Lisp_Object *args)) |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4991 { |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4992 Lisp_Object result = Qnil; |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4993 int counting = 1; |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4994 |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4995 /* Pathological cases, no need to cons up an object: */ |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4996 if (1 == nargs || 1 == multiple_value_current_limit) |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4997 { |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4998 return nargs ? args[0] : Qnil; |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
4999 } |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
5000 |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
5001 /* If nargs is zero, this code is correct and desirable. With |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
5002 #'multiple-value-call, we want zero-length multiple values in the |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
5003 argument list to be discarded entirely, and we can't do this if we |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
5004 transform them to nil. */ |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
5005 result = make_multiple_value (nargs ? args[0] : Qnil, nargs, |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
5006 first_desired_multiple_value, |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
5007 multiple_value_current_limit); |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
5008 |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
5009 for (; counting < nargs; ++counting) |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
5010 { |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
5011 if (counting >= first_desired_multiple_value && |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
5012 counting < multiple_value_current_limit) |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
5013 { |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
5014 multiple_value_aset (result, counting, args[counting]); |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
5015 } |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
5016 } |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
5017 |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
5018 return result; |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
5019 } |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
5020 |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
5021 DEFUN ("values-list", Fvalues_list, 1, 1, 0, /* |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
5022 Return all the elements of LIST as multiple values. |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
5023 */ |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
5024 (list)) |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
5025 { |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
5026 Lisp_Object result = Qnil; |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
5027 int counting = 1, listcount; |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
5028 |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
5029 GET_EXTERNAL_LIST_LENGTH (list, listcount); |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
5030 |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
5031 /* Pathological cases, no need to cons up an object: */ |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
5032 if (1 == listcount || 1 == multiple_value_current_limit) |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
5033 { |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
5034 return Fcar_safe (list); |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
5035 } |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
5036 |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
5037 result = make_multiple_value (Fcar_safe (list), listcount, |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
5038 first_desired_multiple_value, |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
5039 multiple_value_current_limit); |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
5040 |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
5041 list = Fcdr_safe (list); |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
5042 |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
5043 { |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
5044 EXTERNAL_LIST_LOOP_2 (elt, list) |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
5045 { |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
5046 if (counting >= first_desired_multiple_value && |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
5047 counting < multiple_value_current_limit) |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
5048 { |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
5049 multiple_value_aset (result, counting, elt); |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
5050 } |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
5051 ++counting; |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
5052 } |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
5053 } |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
5054 |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
5055 return result; |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
5056 } |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
5057 |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
5058 Lisp_Object |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
5059 values2 (Lisp_Object first, Lisp_Object second) |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
5060 { |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
5061 Lisp_Object argv[2]; |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
5062 |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
5063 argv[0] = first; |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
5064 argv[1] = second; |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
5065 |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
5066 return Fvalues (countof (argv), argv); |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
5067 } |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
5068 |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
5069 |
428 | 5070 /************************************************************************/ |
5071 /* Run hook variables in various ways. */ | |
5072 /************************************************************************/ | |
5073 | |
5074 DEFUN ("run-hooks", Frun_hooks, 1, MANY, 0, /* | |
5075 Run each hook in HOOKS. Major mode functions use this. | |
5076 Each argument should be a symbol, a hook variable. | |
5077 These symbols are processed in the order specified. | |
5078 If a hook symbol has a non-nil value, that value may be a function | |
5079 or a list of functions to be called to run the hook. | |
5080 If the value is a function, it is called with no arguments. | |
5081 If it is a list, the elements are called, in order, with no arguments. | |
5082 | |
5083 To make a hook variable buffer-local, use `make-local-hook', | |
5084 not `make-local-variable'. | |
4642
48b45a606961
Support #'function-arglist with built-in special forms.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4624
diff
changeset
|
5085 |
4693
80cd90837ac5
Add argument information to remaining MANY or UNEVALLED C subrs.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4686
diff
changeset
|
5086 arguments: (FIRST &rest REST) |
428 | 5087 */ |
5088 (int nargs, Lisp_Object *args)) | |
5089 { | |
5090 REGISTER int i; | |
5091 | |
5092 for (i = 0; i < nargs; i++) | |
5093 run_hook_with_args (1, args + i, RUN_HOOKS_TO_COMPLETION); | |
5094 | |
5095 return Qnil; | |
5096 } | |
5097 | |
5098 DEFUN ("run-hook-with-args", Frun_hook_with_args, 1, MANY, 0, /* | |
5099 Run HOOK with the specified arguments ARGS. | |
5100 HOOK should be a symbol, a hook variable. If HOOK has a non-nil | |
5101 value, that value may be a function or a list of functions to be | |
5102 called to run the hook. If the value is a function, it is called with | |
5103 the given arguments and its return value is returned. If it is a list | |
5104 of functions, those functions are called, in order, | |
5105 with the given arguments ARGS. | |
444 | 5106 It is best not to depend on the value returned by `run-hook-with-args', |
428 | 5107 as that may change. |
5108 | |
5109 To make a hook variable buffer-local, use `make-local-hook', | |
5110 not `make-local-variable'. | |
4642
48b45a606961
Support #'function-arglist with built-in special forms.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4624
diff
changeset
|
5111 |
48b45a606961
Support #'function-arglist with built-in special forms.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4624
diff
changeset
|
5112 arguments: (HOOK &rest ARGS) |
428 | 5113 */ |
5114 (int nargs, Lisp_Object *args)) | |
5115 { | |
5116 return run_hook_with_args (nargs, args, RUN_HOOKS_TO_COMPLETION); | |
5117 } | |
5118 | |
5119 DEFUN ("run-hook-with-args-until-success", Frun_hook_with_args_until_success, 1, MANY, 0, /* | |
5120 Run HOOK with the specified arguments ARGS. | |
5121 HOOK should be a symbol, a hook variable. Its value should | |
5122 be a list of functions. We call those functions, one by one, | |
5123 passing arguments ARGS to each of them, until one of them | |
5124 returns a non-nil value. Then we return that value. | |
5125 If all the functions return nil, we return nil. | |
5126 | |
5127 To make a hook variable buffer-local, use `make-local-hook', | |
5128 not `make-local-variable'. | |
4642
48b45a606961
Support #'function-arglist with built-in special forms.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4624
diff
changeset
|
5129 |
48b45a606961
Support #'function-arglist with built-in special forms.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4624
diff
changeset
|
5130 arguments: (HOOK &rest ARGS) |
428 | 5131 */ |
5132 (int nargs, Lisp_Object *args)) | |
5133 { | |
5134 return run_hook_with_args (nargs, args, RUN_HOOKS_UNTIL_SUCCESS); | |
5135 } | |
5136 | |
5137 DEFUN ("run-hook-with-args-until-failure", Frun_hook_with_args_until_failure, 1, MANY, 0, /* | |
5138 Run HOOK with the specified arguments ARGS. | |
5139 HOOK should be a symbol, a hook variable. Its value should | |
5140 be a list of functions. We call those functions, one by one, | |
5141 passing arguments ARGS to each of them, until one of them | |
5142 returns nil. Then we return nil. | |
5143 If all the functions return non-nil, we return non-nil. | |
5144 | |
5145 To make a hook variable buffer-local, use `make-local-hook', | |
5146 not `make-local-variable'. | |
4642
48b45a606961
Support #'function-arglist with built-in special forms.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4624
diff
changeset
|
5147 |
48b45a606961
Support #'function-arglist with built-in special forms.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4624
diff
changeset
|
5148 arguments: (HOOK &rest ARGS) |
428 | 5149 */ |
5150 (int nargs, Lisp_Object *args)) | |
5151 { | |
5152 return run_hook_with_args (nargs, args, RUN_HOOKS_UNTIL_FAILURE); | |
5153 } | |
5154 | |
5155 /* ARGS[0] should be a hook symbol. | |
5156 Call each of the functions in the hook value, passing each of them | |
5157 as arguments all the rest of ARGS (all NARGS - 1 elements). | |
5158 COND specifies a condition to test after each call | |
5159 to decide whether to stop. | |
5160 The caller (or its caller, etc) must gcpro all of ARGS, | |
5161 except that it isn't necessary to gcpro ARGS[0]. */ | |
5162 | |
5163 Lisp_Object | |
5164 run_hook_with_args_in_buffer (struct buffer *buf, int nargs, Lisp_Object *args, | |
5165 enum run_hooks_condition cond) | |
5166 { | |
5167 Lisp_Object sym, val, ret; | |
5168 | |
5169 if (!initialized || preparing_for_armageddon) | |
5170 /* We need to bail out of here pronto. */ | |
5171 return Qnil; | |
5172 | |
3092 | 5173 #ifndef NEW_GC |
428 | 5174 /* Whenever gc_in_progress is true, preparing_for_armageddon |
5175 will also be true unless something is really hosed. */ | |
5176 assert (!gc_in_progress); | |
3092 | 5177 #endif /* not NEW_GC */ |
428 | 5178 |
5179 sym = args[0]; | |
771 | 5180 val = symbol_value_in_buffer (sym, wrap_buffer (buf)); |
428 | 5181 ret = (cond == RUN_HOOKS_UNTIL_FAILURE ? Qt : Qnil); |
5182 | |
5183 if (UNBOUNDP (val) || NILP (val)) | |
5184 return ret; | |
5185 else if (!CONSP (val) || EQ (XCAR (val), Qlambda)) | |
5186 { | |
5187 args[0] = val; | |
5188 return Ffuncall (nargs, args); | |
5189 } | |
5190 else | |
5191 { | |
5192 struct gcpro gcpro1, gcpro2, gcpro3; | |
5193 Lisp_Object globals = Qnil; | |
5194 GCPRO3 (sym, val, globals); | |
5195 | |
5196 for (; | |
5197 CONSP (val) && ((cond == RUN_HOOKS_TO_COMPLETION) | |
5198 || (cond == RUN_HOOKS_UNTIL_SUCCESS ? NILP (ret) | |
5199 : !NILP (ret))); | |
5200 val = XCDR (val)) | |
5201 { | |
5202 if (EQ (XCAR (val), Qt)) | |
5203 { | |
5204 /* t indicates this hook has a local binding; | |
5205 it means to run the global binding too. */ | |
5206 globals = Fdefault_value (sym); | |
5207 | |
5208 if ((! CONSP (globals) || EQ (XCAR (globals), Qlambda)) && | |
5209 ! NILP (globals)) | |
5210 { | |
5211 args[0] = globals; | |
5212 ret = Ffuncall (nargs, args); | |
5213 } | |
5214 else | |
5215 { | |
5216 for (; | |
5217 CONSP (globals) && ((cond == RUN_HOOKS_TO_COMPLETION) | |
5218 || (cond == RUN_HOOKS_UNTIL_SUCCESS | |
5219 ? NILP (ret) | |
5220 : !NILP (ret))); | |
5221 globals = XCDR (globals)) | |
5222 { | |
5223 args[0] = XCAR (globals); | |
5224 /* In a global value, t should not occur. If it does, we | |
5225 must ignore it to avoid an endless loop. */ | |
5226 if (!EQ (args[0], Qt)) | |
5227 ret = Ffuncall (nargs, args); | |
5228 } | |
5229 } | |
5230 } | |
5231 else | |
5232 { | |
5233 args[0] = XCAR (val); | |
5234 ret = Ffuncall (nargs, args); | |
5235 } | |
5236 } | |
5237 | |
5238 UNGCPRO; | |
5239 return ret; | |
5240 } | |
5241 } | |
5242 | |
5243 Lisp_Object | |
5244 run_hook_with_args (int nargs, Lisp_Object *args, | |
5245 enum run_hooks_condition cond) | |
5246 { | |
5247 return run_hook_with_args_in_buffer (current_buffer, nargs, args, cond); | |
5248 } | |
5249 | |
5250 #if 0 | |
5251 | |
853 | 5252 /* From FSF 19.30, not currently used; seems like a big kludge. */ |
428 | 5253 |
5254 /* Run a hook symbol ARGS[0], but use FUNLIST instead of the actual | |
5255 present value of that symbol. | |
5256 Call each element of FUNLIST, | |
5257 passing each of them the rest of ARGS. | |
5258 The caller (or its caller, etc) must gcpro all of ARGS, | |
5259 except that it isn't necessary to gcpro ARGS[0]. */ | |
5260 | |
5261 Lisp_Object | |
5262 run_hook_list_with_args (Lisp_Object funlist, int nargs, Lisp_Object *args) | |
5263 { | |
853 | 5264 omitted; |
428 | 5265 } |
5266 | |
5267 #endif /* 0 */ | |
5268 | |
5269 void | |
5270 va_run_hook_with_args (Lisp_Object hook_var, int nargs, ...) | |
5271 { | |
5272 /* This function can GC */ | |
5273 struct gcpro gcpro1; | |
5274 int i; | |
5275 va_list vargs; | |
5276 Lisp_Object *funcall_args = alloca_array (Lisp_Object, 1 + nargs); | |
5277 | |
5278 va_start (vargs, nargs); | |
5279 funcall_args[0] = hook_var; | |
5280 for (i = 0; i < nargs; i++) | |
5281 funcall_args[i + 1] = va_arg (vargs, Lisp_Object); | |
5282 va_end (vargs); | |
5283 | |
5284 GCPRO1 (*funcall_args); | |
5285 gcpro1.nvars = nargs + 1; | |
5286 run_hook_with_args (nargs + 1, funcall_args, RUN_HOOKS_TO_COMPLETION); | |
5287 UNGCPRO; | |
5288 } | |
5289 | |
5290 void | |
5291 va_run_hook_with_args_in_buffer (struct buffer *buf, Lisp_Object hook_var, | |
5292 int nargs, ...) | |
5293 { | |
5294 /* This function can GC */ | |
5295 struct gcpro gcpro1; | |
5296 int i; | |
5297 va_list vargs; | |
5298 Lisp_Object *funcall_args = alloca_array (Lisp_Object, 1 + nargs); | |
5299 | |
5300 va_start (vargs, nargs); | |
5301 funcall_args[0] = hook_var; | |
5302 for (i = 0; i < nargs; i++) | |
5303 funcall_args[i + 1] = va_arg (vargs, Lisp_Object); | |
5304 va_end (vargs); | |
5305 | |
5306 GCPRO1 (*funcall_args); | |
5307 gcpro1.nvars = nargs + 1; | |
5308 run_hook_with_args_in_buffer (buf, nargs + 1, funcall_args, | |
5309 RUN_HOOKS_TO_COMPLETION); | |
5310 UNGCPRO; | |
5311 } | |
5312 | |
5313 Lisp_Object | |
5314 run_hook (Lisp_Object hook) | |
5315 { | |
853 | 5316 return run_hook_with_args (1, &hook, RUN_HOOKS_TO_COMPLETION); |
428 | 5317 } |
5318 | |
5319 | |
5320 /************************************************************************/ | |
5321 /* Front-ends to eval, funcall, apply */ | |
5322 /************************************************************************/ | |
5323 | |
5324 /* Apply fn to arg */ | |
5325 Lisp_Object | |
5326 apply1 (Lisp_Object fn, Lisp_Object arg) | |
5327 { | |
5328 /* This function can GC */ | |
5329 struct gcpro gcpro1; | |
5330 Lisp_Object args[2]; | |
5331 | |
5332 if (NILP (arg)) | |
5333 return Ffuncall (1, &fn); | |
5334 GCPRO1 (args[0]); | |
5335 gcpro1.nvars = 2; | |
5336 args[0] = fn; | |
5337 args[1] = arg; | |
5338 RETURN_UNGCPRO (Fapply (2, args)); | |
5339 } | |
5340 | |
5341 /* Call function fn on no arguments */ | |
5342 Lisp_Object | |
5343 call0 (Lisp_Object fn) | |
5344 { | |
5345 /* This function can GC */ | |
5346 struct gcpro gcpro1; | |
5347 | |
5348 GCPRO1 (fn); | |
5349 RETURN_UNGCPRO (Ffuncall (1, &fn)); | |
5350 } | |
5351 | |
5352 /* Call function fn with argument arg0 */ | |
5353 Lisp_Object | |
5354 call1 (Lisp_Object fn, | |
5355 Lisp_Object arg0) | |
5356 { | |
5357 /* This function can GC */ | |
5358 struct gcpro gcpro1; | |
5359 Lisp_Object args[2]; | |
5360 args[0] = fn; | |
5361 args[1] = arg0; | |
5362 GCPRO1 (args[0]); | |
5363 gcpro1.nvars = 2; | |
5364 RETURN_UNGCPRO (Ffuncall (2, args)); | |
5365 } | |
5366 | |
5367 /* Call function fn with arguments arg0, arg1 */ | |
5368 Lisp_Object | |
5369 call2 (Lisp_Object fn, | |
5370 Lisp_Object arg0, Lisp_Object arg1) | |
5371 { | |
5372 /* This function can GC */ | |
5373 struct gcpro gcpro1; | |
5374 Lisp_Object args[3]; | |
5375 args[0] = fn; | |
5376 args[1] = arg0; | |
5377 args[2] = arg1; | |
5378 GCPRO1 (args[0]); | |
5379 gcpro1.nvars = 3; | |
5380 RETURN_UNGCPRO (Ffuncall (3, args)); | |
5381 } | |
5382 | |
5383 /* Call function fn with arguments arg0, arg1, arg2 */ | |
5384 Lisp_Object | |
5385 call3 (Lisp_Object fn, | |
5386 Lisp_Object arg0, Lisp_Object arg1, Lisp_Object arg2) | |
5387 { | |
5388 /* This function can GC */ | |
5389 struct gcpro gcpro1; | |
5390 Lisp_Object args[4]; | |
5391 args[0] = fn; | |
5392 args[1] = arg0; | |
5393 args[2] = arg1; | |
5394 args[3] = arg2; | |
5395 GCPRO1 (args[0]); | |
5396 gcpro1.nvars = 4; | |
5397 RETURN_UNGCPRO (Ffuncall (4, args)); | |
5398 } | |
5399 | |
5400 /* Call function fn with arguments arg0, arg1, arg2, arg3 */ | |
5401 Lisp_Object | |
5402 call4 (Lisp_Object fn, | |
5403 Lisp_Object arg0, Lisp_Object arg1, Lisp_Object arg2, | |
5404 Lisp_Object arg3) | |
5405 { | |
5406 /* This function can GC */ | |
5407 struct gcpro gcpro1; | |
5408 Lisp_Object args[5]; | |
5409 args[0] = fn; | |
5410 args[1] = arg0; | |
5411 args[2] = arg1; | |
5412 args[3] = arg2; | |
5413 args[4] = arg3; | |
5414 GCPRO1 (args[0]); | |
5415 gcpro1.nvars = 5; | |
5416 RETURN_UNGCPRO (Ffuncall (5, args)); | |
5417 } | |
5418 | |
5419 /* Call function fn with arguments arg0, arg1, arg2, arg3, arg4 */ | |
5420 Lisp_Object | |
5421 call5 (Lisp_Object fn, | |
5422 Lisp_Object arg0, Lisp_Object arg1, Lisp_Object arg2, | |
5423 Lisp_Object arg3, Lisp_Object arg4) | |
5424 { | |
5425 /* This function can GC */ | |
5426 struct gcpro gcpro1; | |
5427 Lisp_Object args[6]; | |
5428 args[0] = fn; | |
5429 args[1] = arg0; | |
5430 args[2] = arg1; | |
5431 args[3] = arg2; | |
5432 args[4] = arg3; | |
5433 args[5] = arg4; | |
5434 GCPRO1 (args[0]); | |
5435 gcpro1.nvars = 6; | |
5436 RETURN_UNGCPRO (Ffuncall (6, args)); | |
5437 } | |
5438 | |
5439 Lisp_Object | |
5440 call6 (Lisp_Object fn, | |
5441 Lisp_Object arg0, Lisp_Object arg1, Lisp_Object arg2, | |
5442 Lisp_Object arg3, Lisp_Object arg4, Lisp_Object arg5) | |
5443 { | |
5444 /* This function can GC */ | |
5445 struct gcpro gcpro1; | |
5446 Lisp_Object args[7]; | |
5447 args[0] = fn; | |
5448 args[1] = arg0; | |
5449 args[2] = arg1; | |
5450 args[3] = arg2; | |
5451 args[4] = arg3; | |
5452 args[5] = arg4; | |
5453 args[6] = arg5; | |
5454 GCPRO1 (args[0]); | |
5455 gcpro1.nvars = 7; | |
5456 RETURN_UNGCPRO (Ffuncall (7, args)); | |
5457 } | |
5458 | |
5459 Lisp_Object | |
5460 call7 (Lisp_Object fn, | |
5461 Lisp_Object arg0, Lisp_Object arg1, Lisp_Object arg2, | |
5462 Lisp_Object arg3, Lisp_Object arg4, Lisp_Object arg5, | |
5463 Lisp_Object arg6) | |
5464 { | |
5465 /* This function can GC */ | |
5466 struct gcpro gcpro1; | |
5467 Lisp_Object args[8]; | |
5468 args[0] = fn; | |
5469 args[1] = arg0; | |
5470 args[2] = arg1; | |
5471 args[3] = arg2; | |
5472 args[4] = arg3; | |
5473 args[5] = arg4; | |
5474 args[6] = arg5; | |
5475 args[7] = arg6; | |
5476 GCPRO1 (args[0]); | |
5477 gcpro1.nvars = 8; | |
5478 RETURN_UNGCPRO (Ffuncall (8, args)); | |
5479 } | |
5480 | |
5481 Lisp_Object | |
5482 call8 (Lisp_Object fn, | |
5483 Lisp_Object arg0, Lisp_Object arg1, Lisp_Object arg2, | |
5484 Lisp_Object arg3, Lisp_Object arg4, Lisp_Object arg5, | |
5485 Lisp_Object arg6, Lisp_Object arg7) | |
5486 { | |
5487 /* This function can GC */ | |
5488 struct gcpro gcpro1; | |
5489 Lisp_Object args[9]; | |
5490 args[0] = fn; | |
5491 args[1] = arg0; | |
5492 args[2] = arg1; | |
5493 args[3] = arg2; | |
5494 args[4] = arg3; | |
5495 args[5] = arg4; | |
5496 args[6] = arg5; | |
5497 args[7] = arg6; | |
5498 args[8] = arg7; | |
5499 GCPRO1 (args[0]); | |
5500 gcpro1.nvars = 9; | |
5501 RETURN_UNGCPRO (Ffuncall (9, args)); | |
5502 } | |
5503 | |
5504 Lisp_Object | |
5505 call0_in_buffer (struct buffer *buf, Lisp_Object fn) | |
5506 { | |
5507 if (current_buffer == buf) | |
5508 return call0 (fn); | |
5509 else | |
5510 { | |
5511 Lisp_Object val; | |
5512 int speccount = specpdl_depth(); | |
5513 record_unwind_protect (Fset_buffer, Fcurrent_buffer ()); | |
5514 set_buffer_internal (buf); | |
5515 val = call0 (fn); | |
771 | 5516 unbind_to (speccount); |
428 | 5517 return val; |
5518 } | |
5519 } | |
5520 | |
5521 Lisp_Object | |
5522 call1_in_buffer (struct buffer *buf, Lisp_Object fn, | |
5523 Lisp_Object arg0) | |
5524 { | |
5525 if (current_buffer == buf) | |
5526 return call1 (fn, arg0); | |
5527 else | |
5528 { | |
5529 Lisp_Object val; | |
5530 int speccount = specpdl_depth(); | |
5531 record_unwind_protect (Fset_buffer, Fcurrent_buffer ()); | |
5532 set_buffer_internal (buf); | |
5533 val = call1 (fn, arg0); | |
771 | 5534 unbind_to (speccount); |
428 | 5535 return val; |
5536 } | |
5537 } | |
5538 | |
5539 Lisp_Object | |
5540 call2_in_buffer (struct buffer *buf, Lisp_Object fn, | |
5541 Lisp_Object arg0, Lisp_Object arg1) | |
5542 { | |
5543 if (current_buffer == buf) | |
5544 return call2 (fn, arg0, arg1); | |
5545 else | |
5546 { | |
5547 Lisp_Object val; | |
5548 int speccount = specpdl_depth(); | |
5549 record_unwind_protect (Fset_buffer, Fcurrent_buffer ()); | |
5550 set_buffer_internal (buf); | |
5551 val = call2 (fn, arg0, arg1); | |
771 | 5552 unbind_to (speccount); |
428 | 5553 return val; |
5554 } | |
5555 } | |
5556 | |
5557 Lisp_Object | |
5558 call3_in_buffer (struct buffer *buf, Lisp_Object fn, | |
5559 Lisp_Object arg0, Lisp_Object arg1, Lisp_Object arg2) | |
5560 { | |
5561 if (current_buffer == buf) | |
5562 return call3 (fn, arg0, arg1, arg2); | |
5563 else | |
5564 { | |
5565 Lisp_Object val; | |
5566 int speccount = specpdl_depth(); | |
5567 record_unwind_protect (Fset_buffer, Fcurrent_buffer ()); | |
5568 set_buffer_internal (buf); | |
5569 val = call3 (fn, arg0, arg1, arg2); | |
771 | 5570 unbind_to (speccount); |
428 | 5571 return val; |
5572 } | |
5573 } | |
5574 | |
5575 Lisp_Object | |
5576 call4_in_buffer (struct buffer *buf, Lisp_Object fn, | |
5577 Lisp_Object arg0, Lisp_Object arg1, Lisp_Object arg2, | |
5578 Lisp_Object arg3) | |
5579 { | |
5580 if (current_buffer == buf) | |
5581 return call4 (fn, arg0, arg1, arg2, arg3); | |
5582 else | |
5583 { | |
5584 Lisp_Object val; | |
5585 int speccount = specpdl_depth(); | |
5586 record_unwind_protect (Fset_buffer, Fcurrent_buffer ()); | |
5587 set_buffer_internal (buf); | |
5588 val = call4 (fn, arg0, arg1, arg2, arg3); | |
771 | 5589 unbind_to (speccount); |
428 | 5590 return val; |
5591 } | |
5592 } | |
5593 | |
5594 Lisp_Object | |
5595 eval_in_buffer (struct buffer *buf, Lisp_Object form) | |
5596 { | |
5597 if (current_buffer == buf) | |
5598 return Feval (form); | |
5599 else | |
5600 { | |
5601 Lisp_Object val; | |
5602 int speccount = specpdl_depth(); | |
5603 record_unwind_protect (Fset_buffer, Fcurrent_buffer ()); | |
5604 set_buffer_internal (buf); | |
5605 val = Feval (form); | |
771 | 5606 unbind_to (speccount); |
428 | 5607 return val; |
5608 } | |
5609 } | |
5610 | |
5611 | |
5612 /************************************************************************/ | |
5613 /* Error-catching front-ends to eval, funcall, apply */ | |
5614 /************************************************************************/ | |
5615 | |
853 | 5616 int |
5617 get_inhibit_flags (void) | |
5618 { | |
5619 return inhibit_flags; | |
5620 } | |
5621 | |
5622 void | |
2286 | 5623 check_allowed_operation (int what, Lisp_Object obj, Lisp_Object UNUSED (prop)) |
853 | 5624 { |
5625 if (inhibit_flags & INHIBIT_EXISTING_BUFFER_TEXT_MODIFICATION) | |
5626 { | |
5627 if (what == OPERATION_MODIFY_BUFFER_TEXT && BUFFERP (obj) | |
5628 && NILP (memq_no_quit (obj, Vmodifiable_buffers))) | |
5629 invalid_change | |
5630 ("Modification of this buffer not currently permitted", obj); | |
5631 } | |
5632 if (inhibit_flags & INHIBIT_EXISTING_PERMANENT_DISPLAY_OBJECT_DELETION) | |
5633 { | |
5634 if (what == OPERATION_DELETE_OBJECT | |
5635 && (BUFFERP (obj) || WINDOWP (obj) || FRAMEP (obj) || DEVICEP (obj) | |
5636 || CONSOLEP (obj)) | |
5637 && NILP (memq_no_quit (obj, Vdeletable_permanent_display_objects))) | |
5638 invalid_change | |
5639 ("Deletion of this object not currently permitted", obj); | |
5640 } | |
5641 } | |
5642 | |
5643 void | |
5644 note_object_created (Lisp_Object obj) | |
5645 { | |
5646 if (inhibit_flags & INHIBIT_EXISTING_BUFFER_TEXT_MODIFICATION) | |
5647 { | |
5648 if (BUFFERP (obj)) | |
5649 Vmodifiable_buffers = Fcons (obj, Vmodifiable_buffers); | |
5650 } | |
5651 if (inhibit_flags & INHIBIT_EXISTING_PERMANENT_DISPLAY_OBJECT_DELETION) | |
5652 { | |
5653 if (BUFFERP (obj) || WINDOWP (obj) || FRAMEP (obj) || DEVICEP (obj) | |
5654 || CONSOLEP (obj)) | |
5655 Vdeletable_permanent_display_objects = | |
5656 Fcons (obj, Vdeletable_permanent_display_objects); | |
5657 } | |
5658 } | |
5659 | |
5660 void | |
5661 note_object_deleted (Lisp_Object obj) | |
5662 { | |
5663 if (inhibit_flags & INHIBIT_EXISTING_BUFFER_TEXT_MODIFICATION) | |
5664 { | |
5665 if (BUFFERP (obj)) | |
5666 Vmodifiable_buffers = delq_no_quit (obj, Vmodifiable_buffers); | |
5667 } | |
5668 if (inhibit_flags & INHIBIT_EXISTING_PERMANENT_DISPLAY_OBJECT_DELETION) | |
5669 { | |
5670 if (BUFFERP (obj) || WINDOWP (obj) || FRAMEP (obj) || DEVICEP (obj) | |
5671 || CONSOLEP (obj)) | |
5672 Vdeletable_permanent_display_objects = | |
5673 delq_no_quit (obj, Vdeletable_permanent_display_objects); | |
5674 } | |
5675 } | |
5676 | |
5677 struct call_trapping_problems | |
5678 { | |
5679 Lisp_Object catchtag; | |
5680 Lisp_Object error_conditions; | |
5681 Lisp_Object data; | |
5682 Lisp_Object backtrace; | |
5683 Lisp_Object warning_class; | |
5684 | |
867 | 5685 const CIbyte *warning_string; |
853 | 5686 Lisp_Object (*fun) (void *); |
5687 void *arg; | |
5688 }; | |
428 | 5689 |
2532 | 5690 static Lisp_Object |
5691 maybe_get_trapping_problems_backtrace (void) | |
5692 { | |
5693 Lisp_Object backtrace; | |
853 | 5694 |
1123 | 5695 if (!(inhibit_flags & INHIBIT_WARNING_ISSUE) |
2532 | 5696 && !warning_will_be_discarded (current_warning_level ())) |
428 | 5697 { |
1333 | 5698 struct gcpro gcpro1; |
5699 Lisp_Object lstream = Qnil; | |
5700 int speccount = specpdl_depth (); | |
5701 | |
853 | 5702 /* We're no longer protected against errors or quit here, so at |
5703 least let's temporarily inhibit quit. We definitely do not | |
5704 want to inhibit quit during the calling of the function | |
5705 itself!!!!!!!!!!! */ | |
5706 | |
5707 specbind (Qinhibit_quit, Qt); | |
5708 | |
5709 GCPRO1 (lstream); | |
5710 lstream = make_resizing_buffer_output_stream (); | |
5711 Fbacktrace (lstream, Qt); | |
5712 Lstream_flush (XLSTREAM (lstream)); | |
2532 | 5713 backtrace = resizing_buffer_to_lisp_string (XLSTREAM (lstream)); |
853 | 5714 Lstream_delete (XLSTREAM (lstream)); |
5715 UNGCPRO; | |
5716 | |
5717 unbind_to (speccount); | |
428 | 5718 } |
853 | 5719 else |
2532 | 5720 backtrace = Qnil; |
5721 | |
5722 return backtrace; | |
5723 } | |
5724 | |
5725 static DECLARE_DOESNT_RETURN_TYPE | |
5726 (Lisp_Object, flagged_a_squirmer (Lisp_Object, Lisp_Object, Lisp_Object)); | |
5727 | |
5728 static DOESNT_RETURN_TYPE (Lisp_Object) | |
5729 flagged_a_squirmer (Lisp_Object error_conditions, Lisp_Object data, | |
5730 Lisp_Object opaque) | |
5731 { | |
5732 struct call_trapping_problems *p = | |
5733 (struct call_trapping_problems *) get_opaque_ptr (opaque); | |
5734 | |
5735 if (!EQ (error_conditions, Qquit)) | |
5736 p->backtrace = maybe_get_trapping_problems_backtrace (); | |
5737 else | |
853 | 5738 p->backtrace = Qnil; |
5739 p->error_conditions = error_conditions; | |
5740 p->data = data; | |
5741 | |
4677
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
5742 throw_or_bomb_out (p->catchtag, Qnil, 0, Qnil, Qnil); |
2268 | 5743 RETURN_NOT_REACHED (Qnil); |
853 | 5744 } |
5745 | |
5746 static Lisp_Object | |
5747 call_trapping_problems_2 (Lisp_Object opaque) | |
5748 { | |
5749 struct call_trapping_problems *p = | |
5750 (struct call_trapping_problems *) get_opaque_ptr (opaque); | |
5751 | |
5752 return (p->fun) (p->arg); | |
428 | 5753 } |
5754 | |
5755 static Lisp_Object | |
853 | 5756 call_trapping_problems_1 (Lisp_Object opaque) |
5757 { | |
5758 return call_with_condition_handler (flagged_a_squirmer, opaque, | |
5759 call_trapping_problems_2, opaque); | |
5760 } | |
5761 | |
1333 | 5762 static void |
5763 issue_call_trapping_problems_warning (Lisp_Object warning_class, | |
5764 const CIbyte *warning_string, | |
5765 struct call_trapping_problems_result *p) | |
5766 { | |
5767 if (!warning_will_be_discarded (current_warning_level ())) | |
5768 { | |
5769 int depth = specpdl_depth (); | |
5770 | |
5771 /* We're no longer protected against errors or quit here, so at | |
5772 least let's temporarily inhibit quit. */ | |
5773 specbind (Qinhibit_quit, Qt); | |
5774 | |
5775 if (p->caught_throw) | |
5776 { | |
5777 Lisp_Object errstr = | |
5778 emacs_sprintf_string_lisp | |
2532 | 5779 ("%s: Attempt to throw outside of function:" |
5780 "To catch `%s' with value `%s'\n\nBacktrace follows:\n\n%s", | |
2725 | 5781 Qnil, 4, |
4952
19a72041c5ed
Mule-izing, various fixes related to char * arguments
Ben Wing <ben@xemacs.org>
parents:
4846
diff
changeset
|
5782 build_msg_cistring (warning_string ? warning_string : "error"), |
2532 | 5783 p->thrown_tag, p->thrown_value, p->backtrace); |
1333 | 5784 warn_when_safe_lispobj (Qerror, current_warning_level (), errstr); |
5785 } | |
2421 | 5786 else if (p->caught_error && !EQ (p->error_conditions, Qquit)) |
1333 | 5787 { |
5788 Lisp_Object errstr; | |
5789 /* #### This should call | |
5790 (with-output-to-string (display-error (cons error_conditions | |
5791 data)) | |
5792 but that stuff is all in Lisp currently. */ | |
5793 errstr = | |
5794 emacs_sprintf_string_lisp | |
5795 ("%s: (%s %s)\n\nBacktrace follows:\n\n%s", | |
5796 Qnil, 4, | |
4952
19a72041c5ed
Mule-izing, various fixes related to char * arguments
Ben Wing <ben@xemacs.org>
parents:
4846
diff
changeset
|
5797 build_msg_cistring (warning_string ? warning_string : "error"), |
1333 | 5798 p->error_conditions, p->data, p->backtrace); |
5799 | |
5800 warn_when_safe_lispobj (warning_class, current_warning_level (), | |
5801 errstr); | |
5802 } | |
5803 | |
5804 unbind_to (depth); | |
5805 } | |
5806 } | |
5807 | |
1318 | 5808 /* Turn on the trapping flags in FLAGS -- see call_trapping_problems(). |
5809 This cannot handle INTERNAL_INHIBIT_THROWS() or INTERNAL_INHIBIT_ERRORS | |
5810 (because they ultimately boil down to a setjmp()!) -- you must directly | |
5811 use call_trapping_problems() for that. Turn the flags off with | |
5812 unbind_to(). Returns the "canonicalized" flags (particularly in the | |
5813 case of INHIBIT_ANY_CHANGE_AFFECTING_REDISPLAY, which is shorthand for | |
5814 various other flags). */ | |
5815 | |
5816 int | |
5817 set_trapping_problems_flags (int flags) | |
5818 { | |
5819 int new_inhibit_flags; | |
5820 | |
5821 if (flags & INHIBIT_ANY_CHANGE_AFFECTING_REDISPLAY) | |
5822 flags |= INHIBIT_EXISTING_PERMANENT_DISPLAY_OBJECT_DELETION | |
5823 | INHIBIT_EXISTING_BUFFER_TEXT_MODIFICATION | |
5824 | INHIBIT_ENTERING_DEBUGGER | |
5825 | INHIBIT_WARNING_ISSUE | |
5826 | INHIBIT_GC; | |
5827 | |
5828 new_inhibit_flags = inhibit_flags | flags; | |
5829 if (new_inhibit_flags != inhibit_flags) | |
5830 internal_bind_int (&inhibit_flags, new_inhibit_flags); | |
5831 | |
5832 if (flags & INHIBIT_QUIT) | |
5833 specbind (Qinhibit_quit, Qt); | |
5834 | |
5835 if (flags & UNINHIBIT_QUIT) | |
5836 begin_do_check_for_quit (); | |
5837 | |
5838 if (flags & INHIBIT_GC) | |
5839 begin_gc_forbidden (); | |
5840 | |
5841 /* #### If we have nested calls to call_trapping_problems(), and the | |
5842 inner one creates some buffers/etc., should the outer one be able | |
5843 to delete them? I think so, but it means we need to combine rather | |
5844 than just reset the value. */ | |
5845 if (flags & INHIBIT_EXISTING_PERMANENT_DISPLAY_OBJECT_DELETION) | |
5846 internal_bind_lisp_object (&Vdeletable_permanent_display_objects, Qnil); | |
5847 | |
5848 if (flags & INHIBIT_EXISTING_BUFFER_TEXT_MODIFICATION) | |
5849 internal_bind_lisp_object (&Vmodifiable_buffers, Qnil); | |
5850 | |
5851 return flags; | |
5852 } | |
5853 | |
853 | 5854 /* This is equivalent to (*fun) (arg), except that various conditions |
5855 can be trapped or inhibited, according to FLAGS. | |
5856 | |
5857 If FLAGS does not contain NO_INHIBIT_ERRORS, when an error occurs, | |
5858 the error is caught and a warning is issued, specifying the | |
5859 specific error that occurred and a backtrace. In that case, | |
5860 WARNING_STRING should be given, and will be printed at the | |
5861 beginning of the error to indicate where the error occurred. | |
5862 | |
5863 If FLAGS does not contain NO_INHIBIT_THROWS, all attempts to | |
5864 `throw' out of the function being called are trapped, and a warning | |
5865 issued. (Again, WARNING_STRING should be given.) | |
5866 | |
2367 | 5867 If FLAGS contains INHIBIT_WARNING_ISSUE, no warnings are issued; |
853 | 5868 this applies to recursive invocations of call_trapping_problems, too. |
5869 | |
1333 | 5870 If FLAGS contains POSTPONE_WARNING_ISSUE, no warnings are issued; |
5871 but values useful for generating a warning are still computed (in | |
5872 particular, the backtrace), so that the calling function can issue | |
5873 a warning. | |
5874 | |
853 | 5875 If FLAGS contains ISSUE_WARNINGS_AT_DEBUG_LEVEL, warnings will be |
5876 issued, but at level `debug', which normally is below the minimum | |
5877 specified by `log-warning-minimum-level', meaning such warnings will | |
5878 be ignored entirely. The user can change this variable, however, | |
5879 to see the warnings.) | |
5880 | |
5881 Note: If neither of NO_INHIBIT_THROWS or NO_INHIBIT_ERRORS is | |
5882 given, you are *guaranteed* that there will be no non-local exits | |
5883 out of this function. | |
5884 | |
5885 If FLAGS contains INHIBIT_QUIT, QUIT using C-g is inhibited. (This | |
5886 is *rarely* a good idea. Unless you use NO_INHIBIT_ERRORS, QUIT is | |
5887 automatically caught as well, and treated as an error; you can | |
5888 check for this using EQ (problems->error_conditions, Qquit). | |
5889 | |
5890 If FLAGS contains UNINHIBIT_QUIT, QUIT checking will be explicitly | |
5891 turned on. (It will abort the code being called, but will still be | |
5892 trapped and reported as an error, unless NO_INHIBIT_ERRORS is | |
5893 given.) This is useful when QUIT checking has been turned off by a | |
5894 higher-level caller. | |
5895 | |
5896 If FLAGS contains INHIBIT_GC, garbage collection is inhibited. | |
1123 | 5897 This is useful for Lisp called within redisplay, for example. |
853 | 5898 |
5899 If FLAGS contains INHIBIT_EXISTING_PERMANENT_DISPLAY_OBJECT_DELETION, | |
5900 Lisp code is not allowed to delete any window, buffers, frames, devices, | |
5901 or consoles that were already in existence at the time this function | |
5902 was called. (However, it's perfectly legal for code to create a new | |
5903 buffer and then delete it.) | |
5904 | |
5905 #### It might be useful to have a flag that inhibits deletion of a | |
5906 specific permanent display object and everything it's attached to | |
5907 (e.g. a window, and the buffer, frame, device, and console it's | |
5908 attached to. | |
5909 | |
5910 If FLAGS contains INHIBIT_EXISTING_BUFFER_TEXT_MODIFICATION, Lisp | |
5911 code is not allowed to modify the text of any buffers that were | |
5912 already in existence at the time this function was called. | |
5913 (However, it's perfectly legal for code to create a new buffer and | |
5914 then modify its text.) | |
5915 | |
5916 [These last two flags are implemented using global variables | |
5917 Vdeletable_permanent_display_objects and Vmodifiable_buffers, | |
5918 which keep track of a list of all buffers or permanent display | |
5919 objects created since the last time one of these flags was set. | |
5920 The code that deletes buffers, etc. and modifies buffers checks | |
5921 | |
5922 (1) if the corresponding flag is set (through the global variable | |
5923 inhibit_flags or its accessor function get_inhibit_flags()), and | |
5924 | |
5925 (2) if the object to be modified or deleted is not in the | |
5926 appropriate list. | |
5927 | |
5928 If so, it signals an error. | |
5929 | |
5930 Recursive calls to call_trapping_problems() are allowed. In | |
5931 the case of the two flags mentioned above, the current values | |
5932 of the global variables are stored in an unwind-protect, and | |
5933 they're reset to nil.] | |
5934 | |
5935 If FLAGS contains INHIBIT_ENTERING_DEBUGGER, the debugger will not | |
5936 be entered if an error occurs inside the Lisp code being called, | |
5937 even when the user has requested an error. In such case, a warning | |
5938 is issued stating that access to the debugger is denied, unless | |
5939 INHIBIT_WARNING_ISSUE has also been supplied. This is useful when | |
5940 calling Lisp code inside redisplay, in menu callbacks, etc. because | |
5941 in such cases either the display is in an inconsistent state or | |
5942 doing window operations is explicitly forbidden by the OS, and the | |
5943 debugger would causes visual changes on the screen and might create | |
5944 another frame. | |
5945 | |
5946 If FLAGS contains INHIBIT_ANY_CHANGE_AFFECTING_REDISPLAY, no | |
5947 changes of any sort to extents, faces, glyphs, buffer text, | |
5948 specifiers relating to display, other variables relating to | |
5949 display, splitting, deleting, or resizing windows or frames, | |
5950 deleting buffers, windows, frames, devices, or consoles, etc. is | |
5951 allowed. This is for things called absolutely in the middle of | |
5952 redisplay, which expects things to be *exactly* the same after the | |
5953 call as before. This isn't completely implemented and needs to be | |
5954 thought out some more to determine exactly what its semantics are. | |
5955 For the moment, turning on this flag also turns on | |
5956 | |
5957 INHIBIT_EXISTING_PERMANENT_DISPLAY_OBJECT_DELETION | |
5958 INHIBIT_EXISTING_BUFFER_TEXT_MODIFICATION | |
5959 INHIBIT_ENTERING_DEBUGGER | |
5960 INHIBIT_WARNING_ISSUE | |
5961 INHIBIT_GC | |
5962 | |
5963 #### The following five flags are defined, but unimplemented: | |
5964 | |
5965 #define INHIBIT_EXISTING_CODING_SYSTEM_DELETION (1<<6) | |
5966 #define INHIBIT_EXISTING_CHARSET_DELETION (1<<7) | |
5967 #define INHIBIT_PERMANENT_DISPLAY_OBJECT_CREATION (1<<8) | |
5968 #define INHIBIT_CODING_SYSTEM_CREATION (1<<9) | |
5969 #define INHIBIT_CHARSET_CREATION (1<<10) | |
5970 | |
5971 FLAGS containing CALL_WITH_SUSPENDED_ERRORS is a sign that | |
5972 call_with_suspended_errors() was invoked. This exists only for | |
5973 debugging purposes -- often we want to break when a signal happens, | |
5974 but ignore signals from call_with_suspended_errors(), because they | |
5975 occur often and for legitimate reasons. | |
5976 | |
5977 If PROBLEM is non-zero, it should be a pointer to a structure into | |
5978 which exact information about any occurring problems (either an | |
5979 error or an attempted throw past this boundary). | |
5980 | |
5981 If a problem occurred and aborted operation (error, quit, or | |
5982 invalid throw), Qunbound is returned. Otherwise the return value | |
5983 from the call to (*fun) (arg) is returned. */ | |
5984 | |
5985 Lisp_Object | |
5986 call_trapping_problems (Lisp_Object warning_class, | |
867 | 5987 const CIbyte *warning_string, |
853 | 5988 int flags, |
5989 struct call_trapping_problems_result *problem, | |
5990 Lisp_Object (*fun) (void *), | |
5991 void *arg) | |
5992 { | |
1318 | 5993 int speccount = specpdl_depth (); |
853 | 5994 struct gcpro gcpro1, gcpro2, gcpro3, gcpro4, gcpro5; |
5995 struct call_trapping_problems package; | |
1333 | 5996 struct call_trapping_problems_result real_problem; |
2532 | 5997 Lisp_Object opaque, thrown_tag, tem, thrown_backtrace; |
853 | 5998 int thrown = 0; |
5999 | |
6000 assert (SYMBOLP (warning_class)); /* sanity-check */ | |
6001 assert (!NILP (warning_class)); | |
6002 | |
6003 flags ^= INTERNAL_INHIBIT_ERRORS | INTERNAL_INHIBIT_THROWS; | |
6004 | |
6005 package.warning_class = warning_class; | |
6006 package.warning_string = warning_string; | |
6007 package.fun = fun; | |
6008 package.arg = arg; | |
6009 package.catchtag = | |
6010 flags & INTERNAL_INHIBIT_THROWS ? Vcatch_everything_tag : | |
6011 flags & INTERNAL_INHIBIT_ERRORS ? make_opaque_ptr (0) : | |
6012 Qnil; | |
6013 package.error_conditions = Qnil; | |
6014 package.data = Qnil; | |
6015 package.backtrace = Qnil; | |
6016 | |
1318 | 6017 flags = set_trapping_problems_flags (flags); |
853 | 6018 |
6019 if (flags & (INTERNAL_INHIBIT_THROWS | INTERNAL_INHIBIT_ERRORS)) | |
6020 opaque = make_opaque_ptr (&package); | |
6021 else | |
6022 opaque = Qnil; | |
6023 | |
6024 GCPRO5 (package.catchtag, package.error_conditions, package.data, | |
6025 package.backtrace, opaque); | |
6026 | |
6027 if (flags & INTERNAL_INHIBIT_ERRORS) | |
6028 /* We need a catch so that our condition-handler can throw back here | |
6029 after printing the warning. (We print the warning in the stack | |
6030 context of the error, so we can get a backtrace.) */ | |
6031 tem = internal_catch (package.catchtag, call_trapping_problems_1, opaque, | |
2532 | 6032 &thrown, &thrown_tag, &thrown_backtrace); |
853 | 6033 else if (flags & INTERNAL_INHIBIT_THROWS) |
6034 /* We skip over the first wrapper, which traps errors. */ | |
6035 tem = internal_catch (package.catchtag, call_trapping_problems_2, opaque, | |
2532 | 6036 &thrown, &thrown_tag, &thrown_backtrace); |
853 | 6037 else |
6038 /* Nothing special. */ | |
6039 tem = (fun) (arg); | |
6040 | |
1333 | 6041 if (!problem) |
6042 problem = &real_problem; | |
6043 | |
6044 if (!thrown) | |
853 | 6045 { |
1333 | 6046 problem->caught_error = 0; |
6047 problem->caught_throw = 0; | |
6048 problem->error_conditions = Qnil; | |
6049 problem->data = Qnil; | |
6050 problem->backtrace = Qnil; | |
6051 problem->thrown_tag = Qnil; | |
6052 problem->thrown_value = Qnil; | |
853 | 6053 } |
1333 | 6054 else if (EQ (thrown_tag, package.catchtag)) |
853 | 6055 { |
1333 | 6056 problem->caught_error = 1; |
6057 problem->caught_throw = 0; | |
6058 problem->error_conditions = package.error_conditions; | |
6059 problem->data = package.data; | |
6060 problem->backtrace = package.backtrace; | |
6061 problem->thrown_tag = Qnil; | |
6062 problem->thrown_value = Qnil; | |
853 | 6063 } |
1333 | 6064 else |
6065 { | |
6066 problem->caught_error = 0; | |
6067 problem->caught_throw = 1; | |
6068 problem->error_conditions = Qnil; | |
6069 problem->data = Qnil; | |
2532 | 6070 problem->backtrace = thrown_backtrace; |
1333 | 6071 problem->thrown_tag = thrown_tag; |
6072 problem->thrown_value = tem; | |
6073 } | |
6074 | |
6075 if (!(flags & INHIBIT_WARNING_ISSUE) && !(flags & POSTPONE_WARNING_ISSUE)) | |
6076 issue_call_trapping_problems_warning (warning_class, warning_string, | |
6077 problem); | |
853 | 6078 |
6079 if (!NILP (package.catchtag) && | |
6080 !EQ (package.catchtag, Vcatch_everything_tag)) | |
6081 free_opaque_ptr (package.catchtag); | |
6082 | |
6083 if (!NILP (opaque)) | |
6084 free_opaque_ptr (opaque); | |
6085 | |
6086 unbind_to (speccount); | |
6087 RETURN_UNGCPRO (thrown ? Qunbound : tem); | |
6088 } | |
6089 | |
6090 struct va_call_trapping_problems | |
6091 { | |
6092 lisp_fn_t fun; | |
6093 int nargs; | |
6094 Lisp_Object *args; | |
6095 }; | |
6096 | |
6097 static Lisp_Object | |
6098 va_call_trapping_problems_1 (void *ai_mi_madre) | |
6099 { | |
6100 struct va_call_trapping_problems *ai_no_corrida = | |
6101 (struct va_call_trapping_problems *) ai_mi_madre; | |
6102 Lisp_Object pegar_no_bumbum; | |
6103 | |
6104 PRIMITIVE_FUNCALL (pegar_no_bumbum, ai_no_corrida->fun, | |
6105 ai_no_corrida->args, ai_no_corrida->nargs); | |
6106 return pegar_no_bumbum; | |
6107 } | |
6108 | |
6109 /* #### document me. */ | |
6110 | |
6111 Lisp_Object | |
6112 va_call_trapping_problems (Lisp_Object warning_class, | |
867 | 6113 const CIbyte *warning_string, |
853 | 6114 int flags, |
6115 struct call_trapping_problems_result *problem, | |
6116 lisp_fn_t fun, int nargs, ...) | |
6117 { | |
6118 va_list vargs; | |
6119 Lisp_Object args[20]; | |
6120 int i; | |
6121 struct va_call_trapping_problems fazer_invocacao_atrapalhando_problemas; | |
6122 struct gcpro gcpro1; | |
6123 | |
6124 assert (nargs >= 0 && nargs < 20); | |
6125 | |
6126 va_start (vargs, nargs); | |
6127 for (i = 0; i < nargs; i++) | |
6128 args[i] = va_arg (vargs, Lisp_Object); | |
6129 va_end (vargs); | |
6130 | |
6131 fazer_invocacao_atrapalhando_problemas.fun = fun; | |
6132 fazer_invocacao_atrapalhando_problemas.nargs = nargs; | |
6133 fazer_invocacao_atrapalhando_problemas.args = args; | |
6134 | |
6135 GCPRO1_ARRAY (args, nargs); | |
6136 RETURN_UNGCPRO | |
6137 (call_trapping_problems | |
6138 (warning_class, warning_string, flags, problem, | |
6139 va_call_trapping_problems_1, &fazer_invocacao_atrapalhando_problemas)); | |
6140 } | |
6141 | |
6142 /* this is an older interface, barely different from | |
6143 va_call_trapping_problems. | |
6144 | |
6145 #### eliminate this or at least merge the ERROR_BEHAVIOR stuff into | |
6146 va_call_trapping_problems(). */ | |
6147 | |
6148 Lisp_Object | |
6149 call_with_suspended_errors (lisp_fn_t fun, Lisp_Object retval, | |
1204 | 6150 Lisp_Object class_, Error_Behavior errb, |
853 | 6151 int nargs, ...) |
6152 { | |
6153 va_list vargs; | |
6154 Lisp_Object args[20]; | |
6155 int i; | |
6156 struct va_call_trapping_problems fazer_invocacao_atrapalhando_problemas; | |
6157 int flags; | |
6158 struct gcpro gcpro1; | |
6159 | |
1204 | 6160 assert (SYMBOLP (class_)); /* sanity-check */ |
6161 assert (!NILP (class_)); | |
853 | 6162 assert (nargs >= 0 && nargs < 20); |
6163 | |
6164 va_start (vargs, nargs); | |
6165 for (i = 0; i < nargs; i++) | |
6166 args[i] = va_arg (vargs, Lisp_Object); | |
6167 va_end (vargs); | |
6168 | |
6169 /* If error-checking is not disabled, just call the function. */ | |
6170 | |
6171 if (ERRB_EQ (errb, ERROR_ME)) | |
6172 { | |
6173 Lisp_Object val; | |
6174 PRIMITIVE_FUNCALL (val, fun, args, nargs); | |
6175 return val; | |
6176 } | |
6177 | |
6178 if (ERRB_EQ (errb, ERROR_ME_NOT)) /* person wants no warnings */ | |
6179 flags = INHIBIT_WARNING_ISSUE | INHIBIT_ENTERING_DEBUGGER; | |
6180 else if (ERRB_EQ (errb, ERROR_ME_DEBUG_WARN)) | |
6181 flags = ISSUE_WARNINGS_AT_DEBUG_LEVEL | INHIBIT_ENTERING_DEBUGGER; | |
6182 else | |
6183 { | |
6184 assert (ERRB_EQ (errb, ERROR_ME_WARN)); | |
6185 flags = INHIBIT_ENTERING_DEBUGGER; | |
6186 } | |
6187 | |
6188 flags |= CALL_WITH_SUSPENDED_ERRORS; | |
6189 | |
6190 fazer_invocacao_atrapalhando_problemas.fun = fun; | |
6191 fazer_invocacao_atrapalhando_problemas.nargs = nargs; | |
6192 fazer_invocacao_atrapalhando_problemas.args = args; | |
6193 | |
6194 GCPRO1_ARRAY (args, nargs); | |
6195 { | |
6196 Lisp_Object its_way_too_goddamn_late = | |
6197 call_trapping_problems | |
1204 | 6198 (class_, 0, flags, 0, va_call_trapping_problems_1, |
853 | 6199 &fazer_invocacao_atrapalhando_problemas); |
6200 UNGCPRO; | |
6201 if (UNBOUNDP (its_way_too_goddamn_late)) | |
6202 return retval; | |
6203 else | |
6204 return its_way_too_goddamn_late; | |
6205 } | |
6206 } | |
6207 | |
6208 struct calln_trapping_problems | |
6209 { | |
6210 int nargs; | |
6211 Lisp_Object *args; | |
6212 }; | |
6213 | |
6214 static Lisp_Object | |
6215 calln_trapping_problems_1 (void *puta) | |
6216 { | |
6217 struct calln_trapping_problems *p = (struct calln_trapping_problems *) puta; | |
6218 | |
6219 return Ffuncall (p->nargs, p->args); | |
428 | 6220 } |
6221 | |
6222 static Lisp_Object | |
853 | 6223 calln_trapping_problems (Lisp_Object warning_class, |
867 | 6224 const CIbyte *warning_string, int flags, |
853 | 6225 struct call_trapping_problems_result *problem, |
6226 int nargs, Lisp_Object *args) | |
6227 { | |
6228 struct calln_trapping_problems foo; | |
6229 struct gcpro gcpro1; | |
6230 | |
6231 if (SYMBOLP (args[0])) | |
6232 { | |
6233 Lisp_Object tem = XSYMBOL (args[0])->function; | |
6234 if (NILP (tem) || UNBOUNDP (tem)) | |
6235 { | |
6236 if (problem) | |
6237 { | |
6238 problem->caught_error = 0; | |
6239 problem->caught_throw = 0; | |
6240 problem->error_conditions = Qnil; | |
6241 problem->data = Qnil; | |
6242 problem->backtrace = Qnil; | |
6243 problem->thrown_tag = Qnil; | |
6244 problem->thrown_value = Qnil; | |
6245 } | |
6246 return Qnil; | |
6247 } | |
6248 } | |
6249 | |
6250 foo.nargs = nargs; | |
6251 foo.args = args; | |
6252 | |
6253 GCPRO1_ARRAY (args, nargs); | |
6254 RETURN_UNGCPRO (call_trapping_problems (warning_class, warning_string, | |
6255 flags, problem, | |
6256 calln_trapping_problems_1, | |
6257 &foo)); | |
6258 } | |
6259 | |
6260 /* #### fix these functions to follow the calling convention of | |
6261 call_trapping_problems! */ | |
6262 | |
6263 Lisp_Object | |
867 | 6264 call0_trapping_problems (const CIbyte *warning_string, Lisp_Object function, |
853 | 6265 int flags) |
6266 { | |
6267 return calln_trapping_problems (Qerror, warning_string, flags, 0, 1, | |
6268 &function); | |
428 | 6269 } |
6270 | |
6271 Lisp_Object | |
867 | 6272 call1_trapping_problems (const CIbyte *warning_string, Lisp_Object function, |
853 | 6273 Lisp_Object object, int flags) |
6274 { | |
6275 Lisp_Object args[2]; | |
6276 | |
6277 args[0] = function; | |
6278 args[1] = object; | |
6279 | |
6280 return calln_trapping_problems (Qerror, warning_string, flags, 0, 2, | |
6281 args); | |
6282 } | |
6283 | |
6284 Lisp_Object | |
867 | 6285 call2_trapping_problems (const CIbyte *warning_string, Lisp_Object function, |
853 | 6286 Lisp_Object object1, Lisp_Object object2, |
6287 int flags) | |
6288 { | |
6289 Lisp_Object args[3]; | |
6290 | |
6291 args[0] = function; | |
6292 args[1] = object1; | |
6293 args[2] = object2; | |
6294 | |
6295 return calln_trapping_problems (Qerror, warning_string, flags, 0, 3, | |
6296 args); | |
6297 } | |
6298 | |
6299 Lisp_Object | |
867 | 6300 call3_trapping_problems (const CIbyte *warning_string, Lisp_Object function, |
853 | 6301 Lisp_Object object1, Lisp_Object object2, |
6302 Lisp_Object object3, int flags) | |
6303 { | |
6304 Lisp_Object args[4]; | |
6305 | |
6306 args[0] = function; | |
6307 args[1] = object1; | |
6308 args[2] = object2; | |
6309 args[3] = object3; | |
6310 | |
6311 return calln_trapping_problems (Qerror, warning_string, flags, 0, 4, | |
6312 args); | |
6313 } | |
6314 | |
6315 Lisp_Object | |
867 | 6316 call4_trapping_problems (const CIbyte *warning_string, Lisp_Object function, |
853 | 6317 Lisp_Object object1, Lisp_Object object2, |
6318 Lisp_Object object3, Lisp_Object object4, | |
6319 int flags) | |
6320 { | |
6321 Lisp_Object args[5]; | |
6322 | |
6323 args[0] = function; | |
6324 args[1] = object1; | |
6325 args[2] = object2; | |
6326 args[3] = object3; | |
6327 args[4] = object4; | |
6328 | |
6329 return calln_trapping_problems (Qerror, warning_string, flags, 0, 5, | |
6330 args); | |
6331 } | |
6332 | |
6333 Lisp_Object | |
867 | 6334 call5_trapping_problems (const CIbyte *warning_string, Lisp_Object function, |
853 | 6335 Lisp_Object object1, Lisp_Object object2, |
6336 Lisp_Object object3, Lisp_Object object4, | |
6337 Lisp_Object object5, int flags) | |
6338 { | |
6339 Lisp_Object args[6]; | |
6340 | |
6341 args[0] = function; | |
6342 args[1] = object1; | |
6343 args[2] = object2; | |
6344 args[3] = object3; | |
6345 args[4] = object4; | |
6346 args[5] = object5; | |
6347 | |
6348 return calln_trapping_problems (Qerror, warning_string, flags, 0, 6, | |
6349 args); | |
6350 } | |
6351 | |
6352 struct eval_in_buffer_trapping_problems | |
6353 { | |
6354 struct buffer *buf; | |
6355 Lisp_Object form; | |
6356 }; | |
6357 | |
6358 static Lisp_Object | |
6359 eval_in_buffer_trapping_problems_1 (void *arg) | |
6360 { | |
6361 struct eval_in_buffer_trapping_problems *p = | |
6362 (struct eval_in_buffer_trapping_problems *) arg; | |
6363 | |
6364 return eval_in_buffer (p->buf, p->form); | |
6365 } | |
6366 | |
6367 /* #### fix these functions to follow the calling convention of | |
6368 call_trapping_problems! */ | |
6369 | |
6370 Lisp_Object | |
867 | 6371 eval_in_buffer_trapping_problems (const CIbyte *warning_string, |
853 | 6372 struct buffer *buf, Lisp_Object form, |
6373 int flags) | |
6374 { | |
6375 struct eval_in_buffer_trapping_problems p; | |
6376 Lisp_Object buffer = wrap_buffer (buf); | |
428 | 6377 struct gcpro gcpro1, gcpro2; |
6378 | |
853 | 6379 GCPRO2 (buffer, form); |
6380 p.buf = buf; | |
6381 p.form = form; | |
6382 RETURN_UNGCPRO (call_trapping_problems (Qerror, warning_string, flags, 0, | |
6383 eval_in_buffer_trapping_problems_1, | |
6384 &p)); | |
6385 } | |
6386 | |
6387 Lisp_Object | |
1333 | 6388 run_hook_trapping_problems (Lisp_Object warning_class, |
853 | 6389 Lisp_Object hook_symbol, |
6390 int flags) | |
6391 { | |
1333 | 6392 return run_hook_with_args_trapping_problems (warning_class, 1, &hook_symbol, |
853 | 6393 RUN_HOOKS_TO_COMPLETION, |
6394 flags); | |
428 | 6395 } |
6396 | |
6397 static Lisp_Object | |
853 | 6398 safe_run_hook_trapping_problems_1 (void *puta) |
6399 { | |
5013 | 6400 Lisp_Object hook = GET_LISP_FROM_VOID (puta); |
853 | 6401 |
6402 run_hook (hook); | |
428 | 6403 return Qnil; |
6404 } | |
6405 | |
853 | 6406 /* Same as run_hook_trapping_problems() but also set the hook to nil |
6407 if an error occurs (but not a quit). */ | |
6408 | |
428 | 6409 Lisp_Object |
1333 | 6410 safe_run_hook_trapping_problems (Lisp_Object warning_class, |
6411 Lisp_Object hook_symbol, int flags) | |
853 | 6412 { |
428 | 6413 Lisp_Object tem; |
853 | 6414 struct gcpro gcpro1, gcpro2; |
6415 struct call_trapping_problems_result prob; | |
428 | 6416 |
6417 if (!initialized || preparing_for_armageddon) | |
6418 return Qnil; | |
6419 tem = find_symbol_value (hook_symbol); | |
6420 if (NILP (tem) || UNBOUNDP (tem)) | |
6421 return Qnil; | |
6422 | |
853 | 6423 GCPRO2 (hook_symbol, tem); |
1333 | 6424 tem = call_trapping_problems (Qerror, NULL, |
6425 flags | POSTPONE_WARNING_ISSUE, | |
853 | 6426 &prob, |
6427 safe_run_hook_trapping_problems_1, | |
5013 | 6428 STORE_LISP_IN_VOID (hook_symbol)); |
1333 | 6429 { |
6430 Lisp_Object hook_name = XSYMBOL_NAME (hook_symbol); | |
6431 Ibyte *hook_str = XSTRING_DATA (hook_name); | |
6432 Ibyte *err = alloca_ibytes (XSTRING_LENGTH (hook_name) + 100); | |
6433 | |
6434 if (prob.caught_throw || (prob.caught_error && !EQ (prob.error_conditions, | |
6435 Qquit))) | |
6436 { | |
6437 Fset (hook_symbol, Qnil); | |
6438 qxesprintf (err, "Error in `%s' (resetting to nil)", hook_str); | |
6439 } | |
6440 else | |
6441 qxesprintf (err, "Quit in `%s'", hook_str); | |
6442 | |
6443 | |
6444 issue_call_trapping_problems_warning (warning_class, (CIbyte *) err, | |
6445 &prob); | |
6446 } | |
6447 | |
6448 UNGCPRO; | |
6449 return tem; | |
853 | 6450 } |
6451 | |
6452 struct run_hook_with_args_in_buffer_trapping_problems | |
6453 { | |
6454 struct buffer *buf; | |
6455 int nargs; | |
6456 Lisp_Object *args; | |
6457 enum run_hooks_condition cond; | |
6458 }; | |
6459 | |
6460 static Lisp_Object | |
6461 run_hook_with_args_in_buffer_trapping_problems_1 (void *puta) | |
6462 { | |
6463 struct run_hook_with_args_in_buffer_trapping_problems *porra = | |
6464 (struct run_hook_with_args_in_buffer_trapping_problems *) puta; | |
6465 | |
6466 return run_hook_with_args_in_buffer (porra->buf, porra->nargs, porra->args, | |
6467 porra->cond); | |
6468 } | |
6469 | |
6470 /* #### fix these functions to follow the calling convention of | |
6471 call_trapping_problems! */ | |
428 | 6472 |
6473 Lisp_Object | |
1333 | 6474 run_hook_with_args_in_buffer_trapping_problems (Lisp_Object warning_class, |
853 | 6475 struct buffer *buf, int nargs, |
6476 Lisp_Object *args, | |
6477 enum run_hooks_condition cond, | |
6478 int flags) | |
6479 { | |
6480 Lisp_Object sym, val, ret; | |
6481 struct run_hook_with_args_in_buffer_trapping_problems diversity_and_distrust; | |
428 | 6482 struct gcpro gcpro1; |
1333 | 6483 Lisp_Object hook_name; |
6484 Ibyte *hook_str; | |
6485 Ibyte *err; | |
428 | 6486 |
6487 if (!initialized || preparing_for_armageddon) | |
853 | 6488 /* We need to bail out of here pronto. */ |
428 | 6489 return Qnil; |
6490 | |
853 | 6491 GCPRO1_ARRAY (args, nargs); |
6492 | |
6493 sym = args[0]; | |
6494 val = symbol_value_in_buffer (sym, wrap_buffer (buf)); | |
6495 ret = (cond == RUN_HOOKS_UNTIL_FAILURE ? Qt : Qnil); | |
6496 | |
6497 if (UNBOUNDP (val) || NILP (val)) | |
6498 RETURN_UNGCPRO (ret); | |
6499 | |
6500 diversity_and_distrust.buf = buf; | |
6501 diversity_and_distrust.nargs = nargs; | |
6502 diversity_and_distrust.args = args; | |
6503 diversity_and_distrust.cond = cond; | |
6504 | |
1333 | 6505 hook_name = XSYMBOL_NAME (args[0]); |
6506 hook_str = XSTRING_DATA (hook_name); | |
6507 err = alloca_ibytes (XSTRING_LENGTH (hook_name) + 100); | |
6508 qxesprintf (err, "Error in `%s'", hook_str); | |
853 | 6509 RETURN_UNGCPRO |
6510 (call_trapping_problems | |
1333 | 6511 (warning_class, (CIbyte *) err, flags, 0, |
853 | 6512 run_hook_with_args_in_buffer_trapping_problems_1, |
6513 &diversity_and_distrust)); | |
428 | 6514 } |
6515 | |
6516 Lisp_Object | |
1333 | 6517 run_hook_with_args_trapping_problems (Lisp_Object warning_class, |
853 | 6518 int nargs, |
6519 Lisp_Object *args, | |
6520 enum run_hooks_condition cond, | |
6521 int flags) | |
6522 { | |
6523 return run_hook_with_args_in_buffer_trapping_problems | |
1333 | 6524 (warning_class, current_buffer, nargs, args, cond, flags); |
428 | 6525 } |
6526 | |
6527 Lisp_Object | |
1333 | 6528 va_run_hook_with_args_trapping_problems (Lisp_Object warning_class, |
853 | 6529 Lisp_Object hook_var, |
6530 int nargs, ...) | |
6531 { | |
6532 /* This function can GC */ | |
6533 struct gcpro gcpro1; | |
6534 int i; | |
6535 va_list vargs; | |
6536 Lisp_Object *funcall_args = alloca_array (Lisp_Object, 1 + nargs); | |
6537 int flags; | |
6538 | |
6539 va_start (vargs, nargs); | |
6540 funcall_args[0] = hook_var; | |
6541 for (i = 0; i < nargs; i++) | |
6542 funcall_args[i + 1] = va_arg (vargs, Lisp_Object); | |
6543 flags = va_arg (vargs, int); | |
6544 va_end (vargs); | |
6545 | |
6546 GCPRO1_ARRAY (funcall_args, nargs + 1); | |
6547 RETURN_UNGCPRO (run_hook_with_args_in_buffer_trapping_problems | |
1333 | 6548 (warning_class, current_buffer, nargs + 1, funcall_args, |
853 | 6549 RUN_HOOKS_TO_COMPLETION, flags)); |
428 | 6550 } |
6551 | |
6552 Lisp_Object | |
1333 | 6553 va_run_hook_with_args_in_buffer_trapping_problems (Lisp_Object warning_class, |
853 | 6554 struct buffer *buf, |
6555 Lisp_Object hook_var, | |
6556 int nargs, ...) | |
6557 { | |
6558 /* This function can GC */ | |
6559 struct gcpro gcpro1; | |
6560 int i; | |
6561 va_list vargs; | |
6562 Lisp_Object *funcall_args = alloca_array (Lisp_Object, 1 + nargs); | |
6563 int flags; | |
6564 | |
6565 va_start (vargs, nargs); | |
6566 funcall_args[0] = hook_var; | |
6567 for (i = 0; i < nargs; i++) | |
6568 funcall_args[i + 1] = va_arg (vargs, Lisp_Object); | |
6569 flags = va_arg (vargs, int); | |
6570 va_end (vargs); | |
6571 | |
6572 GCPRO1_ARRAY (funcall_args, nargs + 1); | |
6573 RETURN_UNGCPRO (run_hook_with_args_in_buffer_trapping_problems | |
1333 | 6574 (warning_class, buf, nargs + 1, funcall_args, |
853 | 6575 RUN_HOOKS_TO_COMPLETION, flags)); |
428 | 6576 } |
6577 | |
6578 | |
6579 /************************************************************************/ | |
6580 /* The special binding stack */ | |
771 | 6581 /* Most C code should simply use specbind() and unbind_to_1(). */ |
428 | 6582 /* When performance is critical, use the macros in backtrace.h. */ |
6583 /************************************************************************/ | |
6584 | |
6585 #define min_max_specpdl_size 400 | |
6586 | |
6587 void | |
647 | 6588 grow_specpdl (EMACS_INT reserved) |
6589 { | |
6590 EMACS_INT size_needed = specpdl_depth() + reserved; | |
428 | 6591 if (size_needed >= max_specpdl_size) |
6592 { | |
6593 if (max_specpdl_size < min_max_specpdl_size) | |
6594 max_specpdl_size = min_max_specpdl_size; | |
6595 if (size_needed >= max_specpdl_size) | |
6596 { | |
1951 | 6597 /* Leave room for some specpdl in the debugger. */ |
6598 max_specpdl_size = size_needed + 100; | |
6599 if (max_specpdl_size > specpdl_size) | |
6600 { | |
6601 specpdl_size = max_specpdl_size; | |
6602 XREALLOC_ARRAY (specpdl, struct specbinding, specpdl_size); | |
6603 specpdl_ptr = specpdl + specpdl_depth(); | |
6604 } | |
563 | 6605 signal_continuable_error |
6606 (Qstack_overflow, | |
6607 "Variable binding depth exceeds max-specpdl-size", Qunbound); | |
428 | 6608 } |
6609 } | |
6610 while (specpdl_size < size_needed) | |
6611 { | |
6612 specpdl_size *= 2; | |
6613 if (specpdl_size > max_specpdl_size) | |
6614 specpdl_size = max_specpdl_size; | |
6615 } | |
6616 XREALLOC_ARRAY (specpdl, struct specbinding, specpdl_size); | |
6617 specpdl_ptr = specpdl + specpdl_depth(); | |
853 | 6618 check_specbind_stack_sanity (); |
428 | 6619 } |
6620 | |
6621 | |
6622 /* Handle unbinding buffer-local variables */ | |
6623 static Lisp_Object | |
6624 specbind_unwind_local (Lisp_Object ovalue) | |
6625 { | |
6626 Lisp_Object current = Fcurrent_buffer (); | |
6627 Lisp_Object symbol = specpdl_ptr->symbol; | |
853 | 6628 Lisp_Object victim = ovalue; |
6629 Lisp_Object buf = get_buffer (XCAR (victim), 0); | |
6630 ovalue = XCDR (victim); | |
428 | 6631 |
6632 free_cons (victim); | |
6633 | |
6634 if (NILP (buf)) | |
6635 { | |
6636 /* Deleted buffer -- do nothing */ | |
6637 } | |
6638 else if (symbol_value_buffer_local_info (symbol, XBUFFER (buf)) == 0) | |
6639 { | |
6640 /* Was buffer-local when binding was made, now no longer is. | |
6641 * (kill-local-variable can do this.) | |
6642 * Do nothing in this case. | |
6643 */ | |
6644 } | |
6645 else if (EQ (buf, current)) | |
6646 Fset (symbol, ovalue); | |
6647 else | |
6648 { | |
6649 /* Urk! Somebody switched buffers */ | |
6650 struct gcpro gcpro1; | |
6651 GCPRO1 (current); | |
6652 Fset_buffer (buf); | |
6653 Fset (symbol, ovalue); | |
6654 Fset_buffer (current); | |
6655 UNGCPRO; | |
6656 } | |
6657 return symbol; | |
6658 } | |
6659 | |
6660 static Lisp_Object | |
6661 specbind_unwind_wasnt_local (Lisp_Object buffer) | |
6662 { | |
6663 Lisp_Object current = Fcurrent_buffer (); | |
6664 Lisp_Object symbol = specpdl_ptr->symbol; | |
6665 | |
6666 buffer = get_buffer (buffer, 0); | |
6667 if (NILP (buffer)) | |
6668 { | |
6669 /* Deleted buffer -- do nothing */ | |
6670 } | |
6671 else if (symbol_value_buffer_local_info (symbol, XBUFFER (buffer)) == 0) | |
6672 { | |
6673 /* Was buffer-local when binding was made, now no longer is. | |
6674 * (kill-local-variable can do this.) | |
6675 * Do nothing in this case. | |
6676 */ | |
6677 } | |
6678 else if (EQ (buffer, current)) | |
6679 Fkill_local_variable (symbol); | |
6680 else | |
6681 { | |
6682 /* Urk! Somebody switched buffers */ | |
6683 struct gcpro gcpro1; | |
6684 GCPRO1 (current); | |
6685 Fset_buffer (buffer); | |
6686 Fkill_local_variable (symbol); | |
6687 Fset_buffer (current); | |
6688 UNGCPRO; | |
6689 } | |
6690 return symbol; | |
6691 } | |
6692 | |
6693 | |
6694 void | |
6695 specbind (Lisp_Object symbol, Lisp_Object value) | |
6696 { | |
6697 SPECBIND (symbol, value); | |
853 | 6698 |
6699 check_specbind_stack_sanity (); | |
428 | 6700 } |
6701 | |
6702 void | |
6703 specbind_magic (Lisp_Object symbol, Lisp_Object value) | |
6704 { | |
6705 int buffer_local = | |
6706 symbol_value_buffer_local_info (symbol, current_buffer); | |
6707 | |
6708 if (buffer_local == 0) | |
6709 { | |
6710 specpdl_ptr->old_value = find_symbol_value (symbol); | |
771 | 6711 specpdl_ptr->func = 0; /* Handled specially by unbind_to_1 */ |
428 | 6712 } |
6713 else if (buffer_local > 0) | |
6714 { | |
6715 /* Already buffer-local */ | |
6716 specpdl_ptr->old_value = noseeum_cons (Fcurrent_buffer (), | |
6717 find_symbol_value (symbol)); | |
6718 specpdl_ptr->func = specbind_unwind_local; | |
6719 } | |
6720 else | |
6721 { | |
6722 /* About to become buffer-local */ | |
6723 specpdl_ptr->old_value = Fcurrent_buffer (); | |
6724 specpdl_ptr->func = specbind_unwind_wasnt_local; | |
6725 } | |
6726 | |
6727 specpdl_ptr->symbol = symbol; | |
6728 specpdl_ptr++; | |
6729 specpdl_depth_counter++; | |
6730 | |
6731 Fset (symbol, value); | |
853 | 6732 |
6733 check_specbind_stack_sanity (); | |
428 | 6734 } |
6735 | |
771 | 6736 /* Record an unwind-protect -- FUNCTION will be called with ARG no matter |
6737 whether a normal or non-local exit occurs. (You need to call unbind_to_1() | |
6738 before your function returns normally, passing in the integer returned | |
6739 by this function.) Note: As long as the unwind-protect exists, ARG is | |
6740 automatically GCPRO'd. The return value from FUNCTION is completely | |
6741 ignored. #### We should eliminate it entirely. */ | |
6742 | |
6743 int | |
428 | 6744 record_unwind_protect (Lisp_Object (*function) (Lisp_Object arg), |
6745 Lisp_Object arg) | |
6746 { | |
6747 SPECPDL_RESERVE (1); | |
6748 specpdl_ptr->func = function; | |
6749 specpdl_ptr->symbol = Qnil; | |
6750 specpdl_ptr->old_value = arg; | |
6751 specpdl_ptr++; | |
6752 specpdl_depth_counter++; | |
853 | 6753 check_specbind_stack_sanity (); |
771 | 6754 return specpdl_depth_counter - 1; |
6755 } | |
6756 | |
6757 static Lisp_Object | |
802 | 6758 restore_lisp_object (Lisp_Object cons) |
6759 { | |
5013 | 6760 Lisp_Object laddr = XCAR (cons); |
6761 Lisp_Object *addr = (Lisp_Object *) GET_VOID_FROM_LISP (laddr); | |
802 | 6762 *addr = XCDR (cons); |
853 | 6763 free_cons (cons); |
802 | 6764 return Qnil; |
6765 } | |
6766 | |
6767 /* Establish an unwind-protect which will restore the Lisp_Object pointed to | |
6768 by ADDR with the value VAL. */ | |
814 | 6769 static int |
802 | 6770 record_unwind_protect_restoring_lisp_object (Lisp_Object *addr, |
6771 Lisp_Object val) | |
6772 { | |
5013 | 6773 /* We use a cons rather than a malloc()ed structure because we want the |
6774 Lisp object to have garbage-collection protection */ | |
6775 Lisp_Object laddr = STORE_VOID_IN_LISP (addr); | |
802 | 6776 return record_unwind_protect (restore_lisp_object, |
5013 | 6777 noseeum_cons (laddr, val)); |
802 | 6778 } |
6779 | |
6780 /* Similar to specbind() but for any C variable whose value is a | |
6781 Lisp_Object. Sets up an unwind-protect to restore the variable | |
6782 pointed to by ADDR to its existing value, and then changes its | |
6783 value to NEWVAL. Returns the previous value of specpdl_depth(); | |
6784 pass this to unbind_to() after you are done. */ | |
6785 int | |
6786 internal_bind_lisp_object (Lisp_Object *addr, Lisp_Object newval) | |
6787 { | |
6788 int count = specpdl_depth (); | |
6789 record_unwind_protect_restoring_lisp_object (addr, *addr); | |
6790 *addr = newval; | |
6791 return count; | |
6792 } | |
6793 | |
5013 | 6794 struct restore_int |
6795 { | |
6796 int *addr; | |
802 | 6797 int val; |
5013 | 6798 }; |
6799 | |
6800 static Lisp_Object | |
6801 restore_int (Lisp_Object obj) | |
6802 { | |
6803 struct restore_int *ri = (struct restore_int *) GET_VOID_FROM_LISP (obj); | |
6804 *(ri->addr) = ri->val; | |
6805 xfree (ri); | |
802 | 6806 return Qnil; |
6807 } | |
6808 | |
6809 /* Establish an unwind-protect which will restore the int pointed to | |
6810 by ADDR with the value VAL. This function works correctly with | |
6811 all ints, even those that don't fit into a Lisp integer. */ | |
1333 | 6812 int |
802 | 6813 record_unwind_protect_restoring_int (int *addr, int val) |
6814 { | |
5013 | 6815 struct restore_int *ri = xnew (struct restore_int); |
6816 ri->addr = addr; | |
6817 ri->val = val; | |
6818 return record_unwind_protect (restore_int, STORE_VOID_IN_LISP (ri)); | |
802 | 6819 } |
6820 | |
6821 /* Similar to specbind() but for any C variable whose value is an int. | |
6822 Sets up an unwind-protect to restore the variable pointed to by | |
6823 ADDR to its existing value, and then changes its value to NEWVAL. | |
6824 Returns the previous value of specpdl_depth(); pass this to | |
6825 unbind_to() after you are done. This function works correctly with | |
6826 all ints, even those that don't fit into a Lisp integer. */ | |
6827 int | |
6828 internal_bind_int (int *addr, int newval) | |
6829 { | |
6830 int count = specpdl_depth (); | |
6831 record_unwind_protect_restoring_int (addr, *addr); | |
6832 *addr = newval; | |
6833 return count; | |
6834 } | |
6835 | |
6836 static Lisp_Object | |
771 | 6837 free_pointer (Lisp_Object opaque) |
6838 { | |
5013 | 6839 void *ptr = GET_VOID_FROM_LISP (opaque); |
6840 xfree (ptr); | |
771 | 6841 return Qnil; |
6842 } | |
6843 | |
6844 /* Establish an unwind-protect which will free the specified block. | |
6845 */ | |
6846 int | |
6847 record_unwind_protect_freeing (void *ptr) | |
6848 { | |
5013 | 6849 return record_unwind_protect (free_pointer, STORE_VOID_IN_LISP (ptr)); |
771 | 6850 } |
6851 | |
6852 static Lisp_Object | |
6853 free_dynarr (Lisp_Object opaque) | |
6854 { | |
5013 | 6855 Dynarr_free (GET_VOID_FROM_LISP (opaque)); |
771 | 6856 return Qnil; |
6857 } | |
6858 | |
6859 int | |
6860 record_unwind_protect_freeing_dynarr (void *ptr) | |
6861 { | |
5013 | 6862 return record_unwind_protect (free_dynarr, STORE_VOID_IN_LISP (ptr)); |
771 | 6863 } |
428 | 6864 |
6865 /* Unwind the stack till specpdl_depth() == COUNT. | |
6866 VALUE is not used, except that, purely as a convenience to the | |
771 | 6867 caller, it is protected from garbage-protection and returned. */ |
428 | 6868 Lisp_Object |
771 | 6869 unbind_to_1 (int count, Lisp_Object value) |
428 | 6870 { |
6871 UNBIND_TO_GCPRO (count, value); | |
853 | 6872 check_specbind_stack_sanity (); |
428 | 6873 return value; |
6874 } | |
6875 | |
6876 /* Don't call this directly. | |
6877 Only for use by UNBIND_TO* macros in backtrace.h */ | |
6878 void | |
6879 unbind_to_hairy (int count) | |
6880 { | |
442 | 6881 ++specpdl_ptr; |
6882 ++specpdl_depth_counter; | |
6883 | |
428 | 6884 while (specpdl_depth_counter != count) |
6885 { | |
1313 | 6886 Lisp_Object oquit = Qunbound; |
6887 | |
6888 /* Do this check BEFORE decrementing the values below, because once | |
6889 they're decremented, GC protection is lost on | |
6890 specpdl_ptr->old_value. */ | |
1322 | 6891 if (specpdl_ptr[-1].func == Fprogn) |
1313 | 6892 { |
6893 /* Allow QUIT within unwind-protect routines, but defer any | |
6894 existing QUIT until afterwards. Only do this, however, for | |
6895 unwind-protects established by Lisp code, not by C code | |
6896 (e.g. free_opaque_ptr() or something), because the act of | |
6897 checking for QUIT can cause all sorts of weird things to | |
6898 happen, since it churns the event loop -- redisplay, running | |
6899 Lisp, etc. Code should not have to worry about this just | |
6900 because of establishing an unwind-protect. */ | |
6901 check_quit (); /* make Vquit_flag accurate */ | |
6902 oquit = Vquit_flag; | |
6903 Vquit_flag = Qnil; | |
6904 } | |
6905 | |
428 | 6906 --specpdl_ptr; |
6907 --specpdl_depth_counter; | |
6908 | |
1313 | 6909 /* #### At this point, there is no GC protection on old_value. This |
6910 could be a real problem, depending on what unwind-protect function | |
6911 is called. It looks like it just so happens that the ones | |
6912 actually called don't have a problem with this, e.g. Fprogn. But | |
6913 we should look into fixing this. (Many unwind-protect functions | |
6914 free values. Is it a problem if freed values are | |
6915 GC-protected?) */ | |
428 | 6916 if (specpdl_ptr->func != 0) |
1313 | 6917 { |
6918 /* An unwind-protect */ | |
6919 (*specpdl_ptr->func) (specpdl_ptr->old_value); | |
6920 } | |
6921 | |
428 | 6922 else |
6923 { | |
6924 /* We checked symbol for validity when we specbound it, | |
6925 so only need to call Fset if symbol has magic value. */ | |
440 | 6926 Lisp_Symbol *sym = XSYMBOL (specpdl_ptr->symbol); |
428 | 6927 if (!SYMBOL_VALUE_MAGIC_P (sym->value)) |
6928 sym->value = specpdl_ptr->old_value; | |
6929 else | |
6930 Fset (specpdl_ptr->symbol, specpdl_ptr->old_value); | |
6931 } | |
6932 | |
6933 #if 0 /* martin */ | |
6934 #ifndef EXCEEDINGLY_QUESTIONABLE_CODE | |
6935 /* There should never be anything here for us to remove. | |
6936 If so, it indicates a logic error in Emacs. Catches | |
6937 should get removed when a throw or signal occurs, or | |
6938 when a catch or condition-case exits normally. But | |
6939 it's too dangerous to just remove this code. --ben */ | |
6940 | |
6941 /* Furthermore, this code is not in FSFmacs!!! | |
6942 Braino on mly's part? */ | |
6943 /* If we're unwound past the pdlcount of a catch frame, | |
6944 that catch can't possibly still be valid. */ | |
6945 while (catchlist && catchlist->pdlcount > specpdl_depth_counter) | |
6946 { | |
6947 catchlist = catchlist->next; | |
6948 /* Don't mess with gcprolist, backtrace_list here */ | |
6949 } | |
6950 #endif | |
6951 #endif | |
1313 | 6952 |
6953 if (!UNBOUNDP (oquit)) | |
6954 Vquit_flag = oquit; | |
428 | 6955 } |
853 | 6956 check_specbind_stack_sanity (); |
428 | 6957 } |
6958 | |
6959 | |
6960 | |
6961 /* Get the value of symbol's global binding, even if that binding is | |
6962 not now dynamically visible. May return Qunbound or magic values. */ | |
6963 | |
6964 Lisp_Object | |
6965 top_level_value (Lisp_Object symbol) | |
6966 { | |
6967 REGISTER struct specbinding *ptr = specpdl; | |
6968 | |
6969 CHECK_SYMBOL (symbol); | |
6970 for (; ptr != specpdl_ptr; ptr++) | |
6971 { | |
6972 if (EQ (ptr->symbol, symbol)) | |
6973 return ptr->old_value; | |
6974 } | |
6975 return XSYMBOL (symbol)->value; | |
6976 } | |
6977 | |
6978 #if 0 | |
6979 | |
6980 Lisp_Object | |
6981 top_level_set (Lisp_Object symbol, Lisp_Object newval) | |
6982 { | |
6983 REGISTER struct specbinding *ptr = specpdl; | |
6984 | |
6985 CHECK_SYMBOL (symbol); | |
6986 for (; ptr != specpdl_ptr; ptr++) | |
6987 { | |
6988 if (EQ (ptr->symbol, symbol)) | |
6989 { | |
6990 ptr->old_value = newval; | |
6991 return newval; | |
6992 } | |
6993 } | |
6994 return Fset (symbol, newval); | |
6995 } | |
6996 | |
6997 #endif /* 0 */ | |
6998 | |
6999 | |
7000 /************************************************************************/ | |
7001 /* Backtraces */ | |
7002 /************************************************************************/ | |
7003 | |
7004 DEFUN ("backtrace-debug", Fbacktrace_debug, 2, 2, 0, /* | |
7005 Set the debug-on-exit flag of eval frame LEVEL levels down to FLAG. | |
7006 The debugger is entered when that frame exits, if the flag is non-nil. | |
7007 */ | |
7008 (level, flag)) | |
7009 { | |
7010 REGISTER struct backtrace *backlist = backtrace_list; | |
7011 REGISTER int i; | |
7012 | |
7013 CHECK_INT (level); | |
7014 | |
7015 for (i = 0; backlist && i < XINT (level); i++) | |
7016 { | |
7017 backlist = backlist->next; | |
7018 } | |
7019 | |
7020 if (backlist) | |
7021 backlist->debug_on_exit = !NILP (flag); | |
7022 | |
7023 return flag; | |
7024 } | |
7025 | |
7026 static void | |
7027 backtrace_specials (int speccount, int speclimit, Lisp_Object stream) | |
7028 { | |
7029 int printing_bindings = 0; | |
7030 | |
7031 for (; speccount > speclimit; speccount--) | |
7032 { | |
7033 if (specpdl[speccount - 1].func == 0 | |
7034 || specpdl[speccount - 1].func == specbind_unwind_local | |
7035 || specpdl[speccount - 1].func == specbind_unwind_wasnt_local) | |
7036 { | |
4952
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Mule-izing, various fixes related to char * arguments
Ben Wing <ben@xemacs.org>
parents:
4846
diff
changeset
|
7037 write_ascstring (stream, !printing_bindings ? " # bind (" : " "); |
428 | 7038 Fprin1 (specpdl[speccount - 1].symbol, stream); |
7039 printing_bindings = 1; | |
7040 } | |
7041 else | |
7042 { | |
4952
19a72041c5ed
Mule-izing, various fixes related to char * arguments
Ben Wing <ben@xemacs.org>
parents:
4846
diff
changeset
|
7043 if (printing_bindings) write_ascstring (stream, ")\n"); |
19a72041c5ed
Mule-izing, various fixes related to char * arguments
Ben Wing <ben@xemacs.org>
parents:
4846
diff
changeset
|
7044 write_ascstring (stream, " # (unwind-protect ...)\n"); |
428 | 7045 printing_bindings = 0; |
7046 } | |
7047 } | |
4952
19a72041c5ed
Mule-izing, various fixes related to char * arguments
Ben Wing <ben@xemacs.org>
parents:
4846
diff
changeset
|
7048 if (printing_bindings) write_ascstring (stream, ")\n"); |
428 | 7049 } |
7050 | |
1292 | 7051 static Lisp_Object |
7052 backtrace_unevalled_args (Lisp_Object *args) | |
7053 { | |
7054 if (args) | |
7055 return *args; | |
7056 else | |
4952
19a72041c5ed
Mule-izing, various fixes related to char * arguments
Ben Wing <ben@xemacs.org>
parents:
4846
diff
changeset
|
7057 return list1 (build_ascstring ("[internal]")); |
1292 | 7058 } |
7059 | |
428 | 7060 DEFUN ("backtrace", Fbacktrace, 0, 2, "", /* |
7061 Print a trace of Lisp function calls currently active. | |
438 | 7062 Optional arg STREAM specifies the output stream to send the backtrace to, |
444 | 7063 and defaults to the value of `standard-output'. |
7064 Optional second arg DETAILED non-nil means show places where currently | |
7065 active variable bindings, catches, condition-cases, and | |
7066 unwind-protects, as well as function calls, were made. | |
428 | 7067 */ |
7068 (stream, detailed)) | |
7069 { | |
7070 /* This function can GC */ | |
7071 struct backtrace *backlist = backtrace_list; | |
7072 struct catchtag *catches = catchlist; | |
7073 int speccount = specpdl_depth(); | |
7074 | |
7075 int old_nl = print_escape_newlines; | |
7076 int old_pr = print_readably; | |
7077 Lisp_Object old_level = Vprint_level; | |
7078 Lisp_Object oiq = Vinhibit_quit; | |
7079 struct gcpro gcpro1, gcpro2; | |
7080 | |
7081 /* We can't allow quits in here because that could cause the values | |
7082 of print_readably and print_escape_newlines to get screwed up. | |
7083 Normally we would use a record_unwind_protect but that would | |
7084 screw up the functioning of this function. */ | |
7085 Vinhibit_quit = Qt; | |
7086 | |
7087 entering_debugger = 0; | |
7088 | |
872 | 7089 if (!NILP (detailed)) |
7090 Vprint_level = make_int (50); | |
7091 else | |
7092 Vprint_level = make_int (3); | |
428 | 7093 print_readably = 0; |
7094 print_escape_newlines = 1; | |
7095 | |
7096 GCPRO2 (stream, old_level); | |
7097 | |
1261 | 7098 stream = canonicalize_printcharfun (stream); |
428 | 7099 |
7100 for (;;) | |
7101 { | |
7102 if (!NILP (detailed) && catches && catches->backlist == backlist) | |
7103 { | |
7104 int catchpdl = catches->pdlcount; | |
438 | 7105 if (speccount > catchpdl |
7106 && specpdl[catchpdl].func == condition_case_unwind) | |
428 | 7107 /* This is a condition-case catchpoint */ |
7108 catchpdl = catchpdl + 1; | |
7109 | |
7110 backtrace_specials (speccount, catchpdl, stream); | |
7111 | |
7112 speccount = catches->pdlcount; | |
7113 if (catchpdl == speccount) | |
7114 { | |
4952
19a72041c5ed
Mule-izing, various fixes related to char * arguments
Ben Wing <ben@xemacs.org>
parents:
4846
diff
changeset
|
7115 write_ascstring (stream, " # (catch "); |
428 | 7116 Fprin1 (catches->tag, stream); |
4952
19a72041c5ed
Mule-izing, various fixes related to char * arguments
Ben Wing <ben@xemacs.org>
parents:
4846
diff
changeset
|
7117 write_ascstring (stream, " ...)\n"); |
428 | 7118 } |
7119 else | |
7120 { | |
4952
19a72041c5ed
Mule-izing, various fixes related to char * arguments
Ben Wing <ben@xemacs.org>
parents:
4846
diff
changeset
|
7121 write_ascstring (stream, " # (condition-case ... . "); |
428 | 7122 Fprin1 (Fcdr (Fcar (catches->tag)), stream); |
4952
19a72041c5ed
Mule-izing, various fixes related to char * arguments
Ben Wing <ben@xemacs.org>
parents:
4846
diff
changeset
|
7123 write_ascstring (stream, ")\n"); |
428 | 7124 } |
7125 catches = catches->next; | |
7126 } | |
7127 else if (!backlist) | |
7128 break; | |
7129 else | |
7130 { | |
7131 if (!NILP (detailed) && backlist->pdlcount < speccount) | |
7132 { | |
7133 backtrace_specials (speccount, backlist->pdlcount, stream); | |
7134 speccount = backlist->pdlcount; | |
7135 } | |
4952
19a72041c5ed
Mule-izing, various fixes related to char * arguments
Ben Wing <ben@xemacs.org>
parents:
4846
diff
changeset
|
7136 write_ascstring (stream, backlist->debug_on_exit ? "* " : " "); |
428 | 7137 if (backlist->nargs == UNEVALLED) |
7138 { | |
1292 | 7139 Fprin1 (Fcons (*backlist->function, |
7140 backtrace_unevalled_args (backlist->args)), | |
7141 stream); | |
4952
19a72041c5ed
Mule-izing, various fixes related to char * arguments
Ben Wing <ben@xemacs.org>
parents:
4846
diff
changeset
|
7142 write_ascstring (stream, "\n"); /* from FSFmacs 19.30 */ |
428 | 7143 } |
7144 else | |
7145 { | |
7146 Lisp_Object tem = *backlist->function; | |
7147 Fprin1 (tem, stream); /* This can QUIT */ | |
4952
19a72041c5ed
Mule-izing, various fixes related to char * arguments
Ben Wing <ben@xemacs.org>
parents:
4846
diff
changeset
|
7148 write_ascstring (stream, "("); |
428 | 7149 if (backlist->nargs == MANY) |
7150 { | |
7151 int i; | |
7152 Lisp_Object tail = Qnil; | |
7153 struct gcpro ngcpro1; | |
7154 | |
7155 NGCPRO1 (tail); | |
7156 for (tail = *backlist->args, i = 0; | |
7157 !NILP (tail); | |
7158 tail = Fcdr (tail), i++) | |
7159 { | |
4952
19a72041c5ed
Mule-izing, various fixes related to char * arguments
Ben Wing <ben@xemacs.org>
parents:
4846
diff
changeset
|
7160 if (i != 0) write_ascstring (stream, " "); |
428 | 7161 Fprin1 (Fcar (tail), stream); |
7162 } | |
7163 NUNGCPRO; | |
7164 } | |
7165 else | |
7166 { | |
7167 int i; | |
7168 for (i = 0; i < backlist->nargs; i++) | |
7169 { | |
826 | 7170 if (!i && EQ (tem, Qbyte_code)) |
7171 { | |
4952
19a72041c5ed
Mule-izing, various fixes related to char * arguments
Ben Wing <ben@xemacs.org>
parents:
4846
diff
changeset
|
7172 write_ascstring (stream, "\"...\""); |
826 | 7173 continue; |
7174 } | |
4952
19a72041c5ed
Mule-izing, various fixes related to char * arguments
Ben Wing <ben@xemacs.org>
parents:
4846
diff
changeset
|
7175 if (i != 0) write_ascstring (stream, " "); |
428 | 7176 Fprin1 (backlist->args[i], stream); |
7177 } | |
7178 } | |
4952
19a72041c5ed
Mule-izing, various fixes related to char * arguments
Ben Wing <ben@xemacs.org>
parents:
4846
diff
changeset
|
7179 write_ascstring (stream, ")\n"); |
428 | 7180 } |
7181 backlist = backlist->next; | |
7182 } | |
7183 } | |
7184 Vprint_level = old_level; | |
7185 print_readably = old_pr; | |
7186 print_escape_newlines = old_nl; | |
7187 UNGCPRO; | |
7188 Vinhibit_quit = oiq; | |
7189 return Qnil; | |
7190 } | |
7191 | |
7192 | |
444 | 7193 DEFUN ("backtrace-frame", Fbacktrace_frame, 1, 1, 0, /* |
7194 Return the function and arguments NFRAMES up from current execution point. | |
4905
755ae5b97edb
Change "special form" to "special operator" in our sources.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4846
diff
changeset
|
7195 If that frame has not evaluated the arguments yet (or involves a special |
755ae5b97edb
Change "special form" to "special operator" in our sources.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4846
diff
changeset
|
7196 operator), the value is (nil FUNCTION ARG-FORMS...). |
428 | 7197 If that frame has evaluated its arguments and called its function already, |
7198 the value is (t FUNCTION ARG-VALUES...). | |
7199 A &rest arg is represented as the tail of the list ARG-VALUES. | |
7200 FUNCTION is whatever was supplied as car of evaluated list, | |
7201 or a lambda expression for macro calls. | |
444 | 7202 If NFRAMES is more than the number of frames, the value is nil. |
428 | 7203 */ |
7204 (nframes)) | |
7205 { | |
7206 REGISTER struct backtrace *backlist = backtrace_list; | |
7207 REGISTER int i; | |
7208 Lisp_Object tem; | |
7209 | |
5307
c096d8051f89
Have NATNUMP give t for positive bignums; check limits appropriately.
Aidan Kehoe <kehoea@parhasard.net>
parents:
5265
diff
changeset
|
7210 check_integer_range (nframes, Qzero, make_integer (EMACS_INT_MAX)); |
428 | 7211 |
7212 /* Find the frame requested. */ | |
7213 for (i = XINT (nframes); backlist && (i-- > 0);) | |
7214 backlist = backlist->next; | |
7215 | |
7216 if (!backlist) | |
7217 return Qnil; | |
7218 if (backlist->nargs == UNEVALLED) | |
1292 | 7219 return Fcons (Qnil, Fcons (*backlist->function, |
7220 backtrace_unevalled_args (backlist->args))); | |
428 | 7221 else |
7222 { | |
7223 if (backlist->nargs == MANY) | |
7224 tem = *backlist->args; | |
7225 else | |
7226 tem = Flist (backlist->nargs, backlist->args); | |
7227 | |
7228 return Fcons (Qt, Fcons (*backlist->function, tem)); | |
7229 } | |
7230 } | |
7231 | |
7232 | |
7233 /************************************************************************/ | |
7234 /* Warnings */ | |
7235 /************************************************************************/ | |
7236 | |
1123 | 7237 static int |
7238 warning_will_be_discarded (Lisp_Object level) | |
7239 { | |
7240 /* Don't even generate debug warnings if they're going to be discarded, | |
7241 to avoid excessive consing. */ | |
7242 return (EQ (level, Qdebug) && !NILP (Vlog_warning_minimum_level) && | |
7243 !EQ (Vlog_warning_minimum_level, Qdebug)); | |
7244 } | |
7245 | |
428 | 7246 void |
1204 | 7247 warn_when_safe_lispobj (Lisp_Object class_, Lisp_Object level, |
428 | 7248 Lisp_Object obj) |
7249 { | |
1123 | 7250 if (warning_will_be_discarded (level)) |
793 | 7251 return; |
1123 | 7252 |
1204 | 7253 obj = list1 (list3 (class_, level, obj)); |
428 | 7254 if (NILP (Vpending_warnings)) |
7255 Vpending_warnings = Vpending_warnings_tail = obj; | |
7256 else | |
7257 { | |
7258 Fsetcdr (Vpending_warnings_tail, obj); | |
7259 Vpending_warnings_tail = obj; | |
7260 } | |
7261 } | |
7262 | |
7263 /* #### This should probably accept Lisp objects; but then we have | |
7264 to make sure that Feval() isn't called, since it might not be safe. | |
7265 | |
7266 An alternative approach is to just pass some non-string type of | |
7267 Lisp_Object to warn_when_safe_lispobj(); `prin1-to-string' will | |
7268 automatically be called when it is safe to do so. */ | |
7269 | |
7270 void | |
4952
19a72041c5ed
Mule-izing, various fixes related to char * arguments
Ben Wing <ben@xemacs.org>
parents:
4846
diff
changeset
|
7271 warn_when_safe (Lisp_Object class_, Lisp_Object level, const Ascbyte *fmt, ...) |
428 | 7272 { |
7273 Lisp_Object obj; | |
7274 va_list args; | |
7275 | |
1123 | 7276 if (warning_will_be_discarded (level)) |
793 | 7277 return; |
1123 | 7278 |
428 | 7279 va_start (args, fmt); |
4952
19a72041c5ed
Mule-izing, various fixes related to char * arguments
Ben Wing <ben@xemacs.org>
parents:
4846
diff
changeset
|
7280 obj = emacs_vsprintf_string (GETTEXT (fmt), args); |
428 | 7281 va_end (args); |
7282 | |
1204 | 7283 warn_when_safe_lispobj (class_, level, obj); |
428 | 7284 } |
7285 | |
7286 | |
7287 | |
7288 | |
7289 /************************************************************************/ | |
7290 /* Initialization */ | |
7291 /************************************************************************/ | |
7292 | |
7293 void | |
7294 syms_of_eval (void) | |
7295 { | |
5117
3742ea8250b5
Checking in final CVS version of workspace 'ben-lisp-object'
Ben Wing <ben@xemacs.org>
parents:
3025
diff
changeset
|
7296 INIT_LISP_OBJECT (subr); |
5118
e0db3c197671
merge up to latest default branch, doesn't compile yet
Ben Wing <ben@xemacs.org>
diff
changeset
|
7297 INIT_LISP_OBJECT (multiple_value); |
442 | 7298 |
563 | 7299 DEFSYMBOL (Qinhibit_quit); |
7300 DEFSYMBOL (Qautoload); | |
7301 DEFSYMBOL (Qdebug_on_error); | |
7302 DEFSYMBOL (Qstack_trace_on_error); | |
7303 DEFSYMBOL (Qdebug_on_signal); | |
7304 DEFSYMBOL (Qstack_trace_on_signal); | |
7305 DEFSYMBOL (Qdebugger); | |
7306 DEFSYMBOL (Qmacro); | |
428 | 7307 defsymbol (&Qand_rest, "&rest"); |
7308 defsymbol (&Qand_optional, "&optional"); | |
7309 /* Note that the process code also uses Qexit */ | |
563 | 7310 DEFSYMBOL (Qexit); |
7311 DEFSYMBOL (Qsetq); | |
7312 DEFSYMBOL (Qinteractive); | |
7313 DEFSYMBOL (Qcommandp); | |
7314 DEFSYMBOL (Qdefun); | |
7315 DEFSYMBOL (Qprogn); | |
7316 DEFSYMBOL (Qvalues); | |
7317 DEFSYMBOL (Qdisplay_warning); | |
7318 DEFSYMBOL (Qrun_hooks); | |
887 | 7319 DEFSYMBOL (Qfinalize_list); |
563 | 7320 DEFSYMBOL (Qif); |
4677
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
7321 DEFSYMBOL (Qthrow); |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
7322 DEFSYMBOL (Qobsolete_throw); |
4686
cdabd56ce1b5
Fix various small issues with the multiple-value implementation.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4677
diff
changeset
|
7323 DEFSYMBOL (Qmultiple_value_list_internal); |
428 | 7324 |
7325 DEFSUBR (For); | |
7326 DEFSUBR (Fand); | |
7327 DEFSUBR (Fif); | |
7328 DEFSUBR_MACRO (Fwhen); | |
7329 DEFSUBR_MACRO (Funless); | |
7330 DEFSUBR (Fcond); | |
7331 DEFSUBR (Fprogn); | |
7332 DEFSUBR (Fprog1); | |
7333 DEFSUBR (Fprog2); | |
7334 DEFSUBR (Fsetq); | |
7335 DEFSUBR (Fquote); | |
4744
17f7e9191c0b
Rationalise duplicated functionality, #'custom-quote, #'quote-maybe.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4693
diff
changeset
|
7336 DEFSUBR (Fquote_maybe); |
428 | 7337 DEFSUBR (Ffunction); |
7338 DEFSUBR (Fdefun); | |
7339 DEFSUBR (Fdefmacro); | |
7340 DEFSUBR (Fdefvar); | |
7341 DEFSUBR (Fdefconst); | |
7342 DEFSUBR (Flet); | |
7343 DEFSUBR (FletX); | |
7344 DEFSUBR (Fwhile); | |
7345 DEFSUBR (Fmacroexpand_internal); | |
7346 DEFSUBR (Fcatch); | |
7347 DEFSUBR (Fthrow); | |
7348 DEFSUBR (Funwind_protect); | |
7349 DEFSUBR (Fcondition_case); | |
7350 DEFSUBR (Fcall_with_condition_handler); | |
7351 DEFSUBR (Fsignal); | |
7352 DEFSUBR (Finteractive_p); | |
7353 DEFSUBR (Fcommandp); | |
7354 DEFSUBR (Fcommand_execute); | |
7355 DEFSUBR (Fautoload); | |
7356 DEFSUBR (Feval); | |
7357 DEFSUBR (Fapply); | |
4677
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
7358 DEFSUBR (Fmultiple_value_call); |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
7359 DEFSUBR (Fmultiple_value_list_internal); |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
7360 DEFSUBR (Fmultiple_value_prog1); |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
7361 DEFSUBR (Fvalues); |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
7362 DEFSUBR (Fvalues_list); |
428 | 7363 DEFSUBR (Ffuncall); |
7364 DEFSUBR (Ffunctionp); | |
7365 DEFSUBR (Ffunction_min_args); | |
7366 DEFSUBR (Ffunction_max_args); | |
7367 DEFSUBR (Frun_hooks); | |
7368 DEFSUBR (Frun_hook_with_args); | |
7369 DEFSUBR (Frun_hook_with_args_until_success); | |
7370 DEFSUBR (Frun_hook_with_args_until_failure); | |
7371 DEFSUBR (Fbacktrace_debug); | |
7372 DEFSUBR (Fbacktrace); | |
7373 DEFSUBR (Fbacktrace_frame); | |
7374 } | |
7375 | |
7376 void | |
814 | 7377 init_eval_semi_early (void) |
428 | 7378 { |
7379 specpdl_ptr = specpdl; | |
7380 specpdl_depth_counter = 0; | |
7381 catchlist = 0; | |
7382 Vcondition_handlers = Qnil; | |
7383 backtrace_list = 0; | |
7384 Vquit_flag = Qnil; | |
7385 debug_on_next_call = 0; | |
7386 lisp_eval_depth = 0; | |
7387 entering_debugger = 0; | |
4677
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
7388 |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
7389 first_desired_multiple_value = 0; |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
7390 multiple_value_current_limit = 1; |
428 | 7391 } |
7392 | |
7393 void | |
7394 reinit_vars_of_eval (void) | |
7395 { | |
7396 preparing_for_armageddon = 0; | |
7397 in_warnings = 0; | |
7398 specpdl_size = 50; | |
7399 specpdl = xnew_array (struct specbinding, specpdl_size); | |
7400 /* XEmacs change: increase these values. */ | |
7401 max_specpdl_size = 3000; | |
442 | 7402 max_lisp_eval_depth = 1000; |
7403 #ifdef DEFEND_AGAINST_THROW_RECURSION | |
428 | 7404 throw_level = 0; |
7405 #endif | |
2367 | 7406 init_eval_semi_early (); |
428 | 7407 } |
7408 | |
7409 void | |
7410 vars_of_eval (void) | |
7411 { | |
7412 DEFVAR_INT ("max-specpdl-size", &max_specpdl_size /* | |
7413 Limit on number of Lisp variable bindings & unwind-protects before error. | |
7414 */ ); | |
7415 | |
7416 DEFVAR_INT ("max-lisp-eval-depth", &max_lisp_eval_depth /* | |
7417 Limit on depth in `eval', `apply' and `funcall' before error. | |
7418 This limit is to catch infinite recursions for you before they cause | |
7419 actual stack overflow in C, which would be fatal for Emacs. | |
7420 You can safely make it considerably larger than its default value, | |
7421 if that proves inconveniently small. | |
7422 */ ); | |
7423 | |
7424 DEFVAR_LISP ("quit-flag", &Vquit_flag /* | |
853 | 7425 t causes running Lisp code to abort, unless `inhibit-quit' is non-nil. |
7426 `critical' causes running Lisp code to abort regardless of `inhibit-quit'. | |
7427 Normally, you do not need to set this value yourself. It is set to | |
7428 t each time a Control-G is detected, and to `critical' each time a | |
7429 Shift-Control-G is detected. The XEmacs core C code is littered with | |
7430 calls to the QUIT; macro, which check the values of `quit-flag' and | |
2500 | 7431 `inhibit-quit' and ABORT (or more accurately, call (signal 'quit)) if |
853 | 7432 it's correct to do so. |
428 | 7433 */ ); |
7434 Vquit_flag = Qnil; | |
7435 | |
7436 DEFVAR_LISP ("inhibit-quit", &Vinhibit_quit /* | |
7437 Non-nil inhibits C-g quitting from happening immediately. | |
7438 Note that `quit-flag' will still be set by typing C-g, | |
7439 so a quit will be signalled as soon as `inhibit-quit' is nil. | |
7440 To prevent this happening, set `quit-flag' to nil | |
853 | 7441 before making `inhibit-quit' nil. |
7442 | |
7443 The value of `inhibit-quit' is ignored if a critical quit is | |
7444 requested by typing control-shift-G in a window-system frame; | |
7445 this is explained in more detail in `quit-flag'. | |
428 | 7446 */ ); |
7447 Vinhibit_quit = Qnil; | |
7448 | |
7449 DEFVAR_LISP ("stack-trace-on-error", &Vstack_trace_on_error /* | |
7450 *Non-nil means automatically display a backtrace buffer | |
7451 after any error that is not handled by a `condition-case'. | |
7452 If the value is a list, an error only means to display a backtrace | |
7453 if one of its condition symbols appears in the list. | |
7454 See also variable `stack-trace-on-signal'. | |
7455 */ ); | |
7456 Vstack_trace_on_error = Qnil; | |
7457 | |
7458 DEFVAR_LISP ("stack-trace-on-signal", &Vstack_trace_on_signal /* | |
7459 *Non-nil means automatically display a backtrace buffer | |
7460 after any error that is signalled, whether or not it is handled by | |
7461 a `condition-case'. | |
7462 If the value is a list, an error only means to display a backtrace | |
7463 if one of its condition symbols appears in the list. | |
7464 See also variable `stack-trace-on-error'. | |
7465 */ ); | |
7466 Vstack_trace_on_signal = Qnil; | |
7467 | |
7468 DEFVAR_LISP ("debug-ignored-errors", &Vdebug_ignored_errors /* | |
7469 *List of errors for which the debugger should not be called. | |
7470 Each element may be a condition-name or a regexp that matches error messages. | |
7471 If any element applies to a given error, that error skips the debugger | |
7472 and just returns to top level. | |
7473 This overrides the variable `debug-on-error'. | |
7474 It does not apply to errors handled by `condition-case'. | |
7475 */ ); | |
7476 Vdebug_ignored_errors = Qnil; | |
7477 | |
7478 DEFVAR_LISP ("debug-on-error", &Vdebug_on_error /* | |
7479 *Non-nil means enter debugger if an unhandled error is signalled. | |
7480 The debugger will not be entered if the error is handled by | |
7481 a `condition-case'. | |
7482 If the value is a list, an error only means to enter the debugger | |
7483 if one of its condition symbols appears in the list. | |
7484 This variable is overridden by `debug-ignored-errors'. | |
7485 See also variables `debug-on-quit' and `debug-on-signal'. | |
1123 | 7486 |
4657
f8d7d8202635
imported patch accept-process-output-docstring
Stephen J. Turnbull <stephen@xemacs.org>
parents:
4642
diff
changeset
|
7487 Process filters are considered to be outside of condition-case forms |
f8d7d8202635
imported patch accept-process-output-docstring
Stephen J. Turnbull <stephen@xemacs.org>
parents:
4642
diff
changeset
|
7488 (unless contained in the process filter itself). To prevent the |
f8d7d8202635
imported patch accept-process-output-docstring
Stephen J. Turnbull <stephen@xemacs.org>
parents:
4642
diff
changeset
|
7489 debugger from being called from a process filter, use a list value, or |
f8d7d8202635
imported patch accept-process-output-docstring
Stephen J. Turnbull <stephen@xemacs.org>
parents:
4642
diff
changeset
|
7490 put the expected error\(s) in `debug-ignored-errors'. |
f8d7d8202635
imported patch accept-process-output-docstring
Stephen J. Turnbull <stephen@xemacs.org>
parents:
4642
diff
changeset
|
7491 |
1123 | 7492 If this variable is set while XEmacs is running noninteractively (using |
7493 `-batch'), and XEmacs was configured with `--debug' (#define XEMACS_DEBUG | |
7494 in the C code), instead of trying to invoke the Lisp debugger (which | |
7495 obviously won't work), XEmacs will break out to a C debugger using | |
7496 \(force-debugging-signal t). This is useful because debugging | |
7497 noninteractive runs of XEmacs is often very difficult, since they typically | |
7498 happen as part of sometimes large and complex make suites (e.g. rebuilding | |
2500 | 7499 the XEmacs packages). NOTE: This runs ABORT()!!! (As well as and after |
1123 | 7500 executing INT 3 under MS Windows, which should invoke a debugger if it's |
7501 active.) This is guaranteed to kill XEmacs! (But in this situation, XEmacs | |
7502 is about to die anyway, and if no debugger is present, this will usefully | |
7503 dump core.) The most useful way to set this flag when debugging | |
7504 noninteractive runs, especially in makefiles, is using the environment | |
7505 variable XEMACSDEBUG, like this: | |
771 | 7506 |
7507 \(using csh) setenv XEMACSDEBUG '(setq debug-on-error t)' | |
7508 \(using bash) export XEMACSDEBUG='(setq debug-on-error t)' | |
428 | 7509 */ ); |
7510 Vdebug_on_error = Qnil; | |
7511 | |
7512 DEFVAR_LISP ("debug-on-signal", &Vdebug_on_signal /* | |
7513 *Non-nil means enter debugger if an error is signalled. | |
7514 The debugger will be entered whether or not the error is handled by | |
7515 a `condition-case'. | |
7516 If the value is a list, an error only means to enter the debugger | |
7517 if one of its condition symbols appears in the list. | |
7518 See also variable `debug-on-quit'. | |
1123 | 7519 |
7520 This will attempt to enter a C debugger when XEmacs is run noninteractively | |
7521 and under the same conditions as described in `debug-on-error'. | |
428 | 7522 */ ); |
7523 Vdebug_on_signal = Qnil; | |
7524 | |
7525 DEFVAR_BOOL ("debug-on-quit", &debug_on_quit /* | |
7526 *Non-nil means enter debugger if quit is signalled (C-G, for example). | |
7527 Does not apply if quit is handled by a `condition-case'. Entering the | |
7528 debugger can also be achieved at any time (for X11 console) by typing | |
7529 control-shift-G to signal a critical quit. | |
7530 */ ); | |
7531 debug_on_quit = 0; | |
7532 | |
7533 DEFVAR_BOOL ("debug-on-next-call", &debug_on_next_call /* | |
7534 Non-nil means enter debugger before next `eval', `apply' or `funcall'. | |
7535 */ ); | |
7536 | |
1292 | 7537 DEFVAR_BOOL ("backtrace-with-interal-sections", |
7538 &backtrace_with_internal_sections /* | |
7539 Non-nil means backtraces will contain additional information indicating | |
7540 when particular sections of the C code have been entered, e.g. redisplay(), | |
7541 byte-char conversion, internal-external conversion, etc. This can be | |
7542 particularly useful when XEmacs crashes, in helping to pinpoint the problem. | |
7543 */ ); | |
7544 #ifdef ERROR_CHECK_STRUCTURES | |
7545 backtrace_with_internal_sections = 1; | |
7546 #else | |
7547 backtrace_with_internal_sections = 0; | |
7548 #endif | |
7549 | |
428 | 7550 DEFVAR_LISP ("debugger", &Vdebugger /* |
7551 Function to call to invoke debugger. | |
7552 If due to frame exit, args are `exit' and the value being returned; | |
7553 this function's value will be returned instead of that. | |
7554 If due to error, args are `error' and a list of the args to `signal'. | |
7555 If due to `apply' or `funcall' entry, one arg, `lambda'. | |
7556 If due to `eval' entry, one arg, t. | |
7557 */ ); | |
7558 Vdebugger = Qnil; | |
7559 | |
4677
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
7560 DEFVAR_CONST_INT ("multiple-values-limit", &Vmultiple_values_limit /* |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
7561 The exclusive upper bound on the number of multiple values. |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
7562 |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
7563 This applies to `values', `values-list', `multiple-value-bind' and related |
4905
755ae5b97edb
Change "special form" to "special operator" in our sources.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4846
diff
changeset
|
7564 macros and special operators. |
4677
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
7565 */); |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
7566 Vmultiple_values_limit = EMACS_INT_MAX > INT_MAX ? INT_MAX : EMACS_INT_MAX; |
8f1ee2d15784
Support full Common Lisp multiple values in C.
Aidan Kehoe <kehoea@parhasard.net>
parents:
4657
diff
changeset
|
7567 |
853 | 7568 staticpro (&Vcatch_everything_tag); |
7569 Vcatch_everything_tag = make_opaque (OPAQUE_CLEAR, 0); | |
7570 | |
428 | 7571 staticpro (&Vpending_warnings); |
7572 Vpending_warnings = Qnil; | |
1204 | 7573 dump_add_root_lisp_object (&Vpending_warnings_tail); |
428 | 7574 Vpending_warnings_tail = Qnil; |
7575 | |
793 | 7576 DEFVAR_LISP ("log-warning-minimum-level", &Vlog_warning_minimum_level); |
7577 Vlog_warning_minimum_level = Qinfo; | |
7578 | |
428 | 7579 staticpro (&Vautoload_queue); |
7580 Vautoload_queue = Qnil; | |
7581 | |
7582 staticpro (&Vcondition_handlers); | |
7583 | |
853 | 7584 staticpro (&Vdeletable_permanent_display_objects); |
7585 Vdeletable_permanent_display_objects = Qnil; | |
7586 | |
7587 staticpro (&Vmodifiable_buffers); | |
7588 Vmodifiable_buffers = Qnil; | |
7589 | |
7590 inhibit_flags = 0; | |
7591 } |