(close_load_descs) [WINDOWS_NT]: Don't actually do anything.
[bpt/emacs.git] / src / lread.c
1 /* Lisp parsing and input streams.
2 Copyright (C) 1985, 1986, 1987, 1988, 1989,
3 1993, 1994, 1995 Free Software Foundation, Inc.
4
5 This file is part of GNU Emacs.
6
7 GNU Emacs is free software; you can redistribute it and/or modify
8 it under the terms of the GNU General Public License as published by
9 the Free Software Foundation; either version 2, or (at your option)
10 any later version.
11
12 GNU Emacs is distributed in the hope that it will be useful,
13 but WITHOUT ANY WARRANTY; without even the implied warranty of
14 MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
15 GNU General Public License for more details.
16
17 You should have received a copy of the GNU General Public License
18 along with GNU Emacs; see the file COPYING. If not, write to
19 the Free Software Foundation, Inc., 59 Temple Place - Suite 330,
20 Boston, MA 02111-1307, USA. */
21
22
23 #include <config.h>
24 #include <stdio.h>
25 #include <sys/types.h>
26 #include <sys/stat.h>
27 #include <sys/file.h>
28 #include <errno.h>
29 #include "lisp.h"
30
31 #ifndef standalone
32 #include "buffer.h"
33 #include <paths.h>
34 #include "commands.h"
35 #include "keyboard.h"
36 #include "termhooks.h"
37 #endif
38
39 #ifdef lint
40 #include <sys/inode.h>
41 #endif /* lint */
42
43 #ifdef MSDOS
44 #if __DJGPP__ < 2
45 #include <unistd.h> /* to get X_OK */
46 #endif
47 #include "msdos.h"
48 #endif
49
50 #ifndef X_OK
51 #define X_OK 01
52 #endif
53
54 #ifdef LISP_FLOAT_TYPE
55 #ifdef STDC_HEADERS
56 #include <stdlib.h>
57 #endif
58
59 #include <math.h>
60 #endif /* LISP_FLOAT_TYPE */
61
62 #ifdef HAVE_SETLOCALE
63 #include <locale.h>
64 #endif /* HAVE_SETLOCALE */
65
66 #ifndef O_RDONLY
67 #define O_RDONLY 0
68 #endif
69
70 extern int errno;
71
72 Lisp_Object Qread_char, Qget_file_char, Qstandard_input, Qcurrent_load_list;
73 Lisp_Object Qvariable_documentation, Vvalues, Vstandard_input, Vafter_load_alist;
74 Lisp_Object Qascii_character, Qload, Qload_file_name;
75 Lisp_Object Qbackquote, Qcomma, Qcomma_at, Qcomma_dot, Qfunction;
76
77 extern Lisp_Object Qevent_symbol_element_mask;
78
79 /* non-zero if inside `load' */
80 int load_in_progress;
81
82 /* Directory in which the sources were found. */
83 Lisp_Object Vsource_directory;
84
85 /* Search path for files to be loaded. */
86 Lisp_Object Vload_path;
87
88 /* This is the user-visible association list that maps features to
89 lists of defs in their load files. */
90 Lisp_Object Vload_history;
91
92 /* This is used to build the load history. */
93 Lisp_Object Vcurrent_load_list;
94
95 /* Name of file actually being read by `load'. */
96 Lisp_Object Vload_file_name;
97
98 /* Function to use for reading, in `load' and friends. */
99 Lisp_Object Vload_read_function;
100
101 /* Nonzero means load should forcibly load all dynamic doc strings. */
102 static int load_force_doc_strings;
103
104 /* List of descriptors now open for Fload. */
105 static Lisp_Object load_descriptor_list;
106
107 /* File for get_file_char to read from. Use by load. */
108 static FILE *instream;
109
110 /* When nonzero, read conses in pure space */
111 static int read_pure;
112
113 /* For use within read-from-string (this reader is non-reentrant!!) */
114 static int read_from_string_index;
115 static int read_from_string_limit;
116
117 /* This contains the last string skipped with #@. */
118 static char *saved_doc_string;
119 /* Length of buffer allocated in saved_doc_string. */
120 static int saved_doc_string_size;
121 /* Length of actual data in saved_doc_string. */
122 static int saved_doc_string_length;
123 /* This is the file position that string came from. */
124 static int saved_doc_string_position;
125
126 /* Nonzero means inside a new-style backquote
127 with no surrounding parentheses.
128 Fread initializes this to zero, so we need not specbind it
129 or worry about what happens to it when there is an error. */
130 static int new_backquote_flag;
131 \f
132 /* Handle unreading and rereading of characters.
133 Write READCHAR to read a character,
134 UNREAD(c) to unread c to be read again. */
135
136 #define READCHAR readchar (readcharfun)
137 #define UNREAD(c) unreadchar (readcharfun, c)
138
139 static int
140 readchar (readcharfun)
141 Lisp_Object readcharfun;
142 {
143 Lisp_Object tem;
144 register struct buffer *inbuffer;
145 register int c, mpos;
146
147 if (BUFFERP (readcharfun))
148 {
149 inbuffer = XBUFFER (readcharfun);
150
151 if (BUF_PT (inbuffer) >= BUF_ZV (inbuffer))
152 return -1;
153 c = *(unsigned char *) BUF_CHAR_ADDRESS (inbuffer, BUF_PT (inbuffer));
154 SET_BUF_PT (inbuffer, BUF_PT (inbuffer) + 1);
155
156 return c;
157 }
158 if (MARKERP (readcharfun))
159 {
160 inbuffer = XMARKER (readcharfun)->buffer;
161
162 mpos = marker_position (readcharfun);
163
164 if (mpos > BUF_ZV (inbuffer) - 1)
165 return -1;
166 c = *(unsigned char *) BUF_CHAR_ADDRESS (inbuffer, mpos);
167 if (mpos != BUF_GPT (inbuffer))
168 XMARKER (readcharfun)->bufpos++;
169 else
170 Fset_marker (readcharfun, make_number (mpos + 1),
171 Fmarker_buffer (readcharfun));
172 return c;
173 }
174 if (EQ (readcharfun, Qget_file_char))
175 {
176 c = getc (instream);
177 #ifdef EINTR
178 /* Interrupted reads have been observed while reading over the network */
179 while (c == EOF && ferror (instream) && errno == EINTR)
180 {
181 clearerr (instream);
182 c = getc (instream);
183 }
184 #endif
185 return c;
186 }
187
188 if (STRINGP (readcharfun))
189 {
190 register int c;
191 /* This used to be return of a conditional expression,
192 but that truncated -1 to a char on VMS. */
193 if (read_from_string_index < read_from_string_limit)
194 c = XSTRING (readcharfun)->data[read_from_string_index++];
195 else
196 c = -1;
197 return c;
198 }
199
200 tem = call0 (readcharfun);
201
202 if (NILP (tem))
203 return -1;
204 return XINT (tem);
205 }
206
207 /* Unread the character C in the way appropriate for the stream READCHARFUN.
208 If the stream is a user function, call it with the char as argument. */
209
210 static void
211 unreadchar (readcharfun, c)
212 Lisp_Object readcharfun;
213 int c;
214 {
215 if (c == -1)
216 /* Don't back up the pointer if we're unreading the end-of-input mark,
217 since readchar didn't advance it when we read it. */
218 ;
219 else if (BUFFERP (readcharfun))
220 {
221 if (XBUFFER (readcharfun) == current_buffer)
222 SET_PT (point - 1);
223 else
224 SET_BUF_PT (XBUFFER (readcharfun), BUF_PT (XBUFFER (readcharfun)) - 1);
225 }
226 else if (MARKERP (readcharfun))
227 XMARKER (readcharfun)->bufpos--;
228 else if (STRINGP (readcharfun))
229 read_from_string_index--;
230 else if (EQ (readcharfun, Qget_file_char))
231 ungetc (c, instream);
232 else
233 call1 (readcharfun, make_number (c));
234 }
235
236 static Lisp_Object read0 (), read1 (), read_list (), read_vector ();
237 \f
238 /* get a character from the tty */
239
240 extern Lisp_Object read_char ();
241
242 /* Read input events until we get one that's acceptable for our purposes.
243
244 If NO_SWITCH_FRAME is non-zero, switch-frame events are stashed
245 until we get a character we like, and then stuffed into
246 unread_switch_frame.
247
248 If ASCII_REQUIRED is non-zero, we check function key events to see
249 if the unmodified version of the symbol has a Qascii_character
250 property, and use that character, if present.
251
252 If ERROR_NONASCII is non-zero, we signal an error if the input we
253 get isn't an ASCII character with modifiers. If it's zero but
254 ASCII_REQUIRED is non-zero, we just re-read until we get an ASCII
255 character. */
256
257 Lisp_Object
258 read_filtered_event (no_switch_frame, ascii_required, error_nonascii)
259 int no_switch_frame, ascii_required, error_nonascii;
260 {
261 #ifdef standalone
262 return make_number (getchar ());
263 #else
264 register Lisp_Object val, delayed_switch_frame;
265
266 delayed_switch_frame = Qnil;
267
268 /* Read until we get an acceptable event. */
269 retry:
270 val = read_char (0, 0, 0, Qnil, 0);
271
272 if (BUFFERP (val))
273 goto retry;
274
275 /* switch-frame events are put off until after the next ASCII
276 character. This is better than signaling an error just because
277 the last characters were typed to a separate minibuffer frame,
278 for example. Eventually, some code which can deal with
279 switch-frame events will read it and process it. */
280 if (no_switch_frame
281 && EVENT_HAS_PARAMETERS (val)
282 && EQ (EVENT_HEAD (val), Qswitch_frame))
283 {
284 delayed_switch_frame = val;
285 goto retry;
286 }
287
288 if (ascii_required)
289 {
290 /* Convert certain symbols to their ASCII equivalents. */
291 if (SYMBOLP (val))
292 {
293 Lisp_Object tem, tem1, tem2;
294 tem = Fget (val, Qevent_symbol_element_mask);
295 if (!NILP (tem))
296 {
297 tem1 = Fget (Fcar (tem), Qascii_character);
298 /* Merge this symbol's modifier bits
299 with the ASCII equivalent of its basic code. */
300 if (!NILP (tem1))
301 XSETFASTINT (val, XINT (tem1) | XINT (Fcar (Fcdr (tem))));
302 }
303 }
304
305 /* If we don't have a character now, deal with it appropriately. */
306 if (!INTEGERP (val))
307 {
308 if (error_nonascii)
309 {
310 Vunread_command_events = Fcons (val, Qnil);
311 error ("Non-character input-event");
312 }
313 else
314 goto retry;
315 }
316 }
317
318 if (! NILP (delayed_switch_frame))
319 unread_switch_frame = delayed_switch_frame;
320
321 return val;
322 #endif
323 }
324
325 DEFUN ("read-char", Fread_char, Sread_char, 0, 0, 0,
326 "Read a character from the command input (keyboard or macro).\n\
327 It is returned as a number.\n\
328 If the user generates an event which is not a character (i.e. a mouse\n\
329 click or function key event), `read-char' signals an error. As an\n\
330 exception, switch-frame events are put off until non-ASCII events can\n\
331 be read.\n\
332 If you want to read non-character events, or ignore them, call\n\
333 `read-event' or `read-char-exclusive' instead.")
334 ()
335 {
336 return read_filtered_event (1, 1, 1);
337 }
338
339 DEFUN ("read-event", Fread_event, Sread_event, 0, 0, 0,
340 "Read an event object from the input stream.")
341 ()
342 {
343 return read_filtered_event (0, 0, 0);
344 }
345
346 DEFUN ("read-char-exclusive", Fread_char_exclusive, Sread_char_exclusive, 0, 0, 0,
347 "Read a character from the command input (keyboard or macro).\n\
348 It is returned as a number. Non-character events are ignored.")
349 ()
350 {
351 return read_filtered_event (1, 1, 0);
352 }
353
354 DEFUN ("get-file-char", Fget_file_char, Sget_file_char, 0, 0, 0,
355 "Don't use this yourself.")
356 ()
357 {
358 register Lisp_Object val;
359 XSETINT (val, getc (instream));
360 return val;
361 }
362 \f
363 static void readevalloop ();
364 static Lisp_Object load_unwind ();
365 static Lisp_Object load_descriptor_unwind ();
366
367 DEFUN ("load", Fload, Sload, 1, 4, 0,
368 "Execute a file of Lisp code named FILE.\n\
369 First try FILE with `.elc' appended, then try with `.el',\n\
370 then try FILE unmodified.\n\
371 This function searches the directories in `load-path'.\n\
372 If optional second arg NOERROR is non-nil,\n\
373 report no error if FILE doesn't exist.\n\
374 Print messages at start and end of loading unless\n\
375 optional third arg NOMESSAGE is non-nil.\n\
376 If optional fourth arg NOSUFFIX is non-nil, don't try adding\n\
377 suffixes `.elc' or `.el' to the specified name FILE.\n\
378 Return t if file exists.")
379 (file, noerror, nomessage, nosuffix)
380 Lisp_Object file, noerror, nomessage, nosuffix;
381 {
382 register FILE *stream;
383 register int fd = -1;
384 register Lisp_Object lispstream;
385 int count = specpdl_ptr - specpdl;
386 Lisp_Object temp;
387 struct gcpro gcpro1;
388 Lisp_Object found;
389 /* 1 means inhibit the message at the beginning. */
390 int nomessage1 = 0;
391 Lisp_Object handler;
392 #ifdef DOS_NT
393 char *dosmode = "rt";
394 #endif /* DOS_NT */
395
396 CHECK_STRING (file, 0);
397
398 /* If file name is magic, call the handler. */
399 handler = Ffind_file_name_handler (file, Qload);
400 if (!NILP (handler))
401 return call5 (handler, Qload, file, noerror, nomessage, nosuffix);
402
403 /* Do this after the handler to avoid
404 the need to gcpro noerror, nomessage and nosuffix.
405 (Below here, we care only whether they are nil or not.) */
406 file = Fsubstitute_in_file_name (file);
407
408 /* Avoid weird lossage with null string as arg,
409 since it would try to load a directory as a Lisp file */
410 if (XSTRING (file)->size > 0)
411 {
412 GCPRO1 (file);
413 fd = openp (Vload_path, file, !NILP (nosuffix) ? "" : ".elc:.el:",
414 &found, 0);
415 UNGCPRO;
416 }
417
418 if (fd < 0)
419 {
420 if (NILP (noerror))
421 while (1)
422 Fsignal (Qfile_error, Fcons (build_string ("Cannot open load file"),
423 Fcons (file, Qnil)));
424 else
425 return Qnil;
426 }
427
428 if (!bcmp (&(XSTRING (found)->data[XSTRING (found)->size - 4]),
429 ".elc", 4))
430 {
431 struct stat s1, s2;
432 int result;
433
434 #ifdef DOS_NT
435 dosmode = "rb";
436 #endif /* DOS_NT */
437 stat ((char *)XSTRING (found)->data, &s1);
438 XSTRING (found)->data[XSTRING (found)->size - 1] = 0;
439 result = stat ((char *)XSTRING (found)->data, &s2);
440 if (result >= 0 && (unsigned) s1.st_mtime < (unsigned) s2.st_mtime)
441 {
442 message ("Source file `%s' newer than byte-compiled file",
443 XSTRING (found)->data);
444 /* Don't immediately overwrite this message. */
445 if (!noninteractive)
446 nomessage1 = 1;
447 }
448 XSTRING (found)->data[XSTRING (found)->size - 1] = 'c';
449 }
450
451 #ifdef DOS_NT
452 close (fd);
453 stream = fopen ((char *) XSTRING (found)->data, dosmode);
454 #else /* not DOS_NT */
455 stream = fdopen (fd, "r");
456 #endif /* not DOS_NT */
457 if (stream == 0)
458 {
459 close (fd);
460 error ("Failure to create stdio stream for %s", XSTRING (file)->data);
461 }
462
463 if (NILP (nomessage) && !nomessage1)
464 message ("Loading %s...", XSTRING (file)->data);
465
466 GCPRO1 (file);
467 lispstream = Fcons (Qnil, Qnil);
468 XSETFASTINT (XCONS (lispstream)->car, (EMACS_UINT)stream >> 16);
469 XSETFASTINT (XCONS (lispstream)->cdr, (EMACS_UINT)stream & 0xffff);
470 record_unwind_protect (load_unwind, lispstream);
471 record_unwind_protect (load_descriptor_unwind, load_descriptor_list);
472 specbind (Qload_file_name, found);
473 load_descriptor_list
474 = Fcons (make_number (fileno (stream)), load_descriptor_list);
475 load_in_progress++;
476 readevalloop (Qget_file_char, stream, file, Feval, 0);
477 unbind_to (count, Qnil);
478
479 /* Run any load-hooks for this file. */
480 temp = Fassoc (file, Vafter_load_alist);
481 if (!NILP (temp))
482 Fprogn (Fcdr (temp));
483 UNGCPRO;
484
485 if (saved_doc_string)
486 free (saved_doc_string);
487 saved_doc_string = 0;
488 saved_doc_string_size = 0;
489
490 if (!noninteractive && NILP (nomessage))
491 message ("Loading %s...done", XSTRING (file)->data);
492 return Qt;
493 }
494
495 static Lisp_Object
496 load_unwind (stream) /* used as unwind-protect function in load */
497 Lisp_Object stream;
498 {
499 fclose ((FILE *) (XFASTINT (XCONS (stream)->car) << 16
500 | XFASTINT (XCONS (stream)->cdr)));
501 if (--load_in_progress < 0) load_in_progress = 0;
502 return Qnil;
503 }
504
505 static Lisp_Object
506 load_descriptor_unwind (oldlist)
507 Lisp_Object oldlist;
508 {
509 load_descriptor_list = oldlist;
510 return Qnil;
511 }
512
513 /* Close all descriptors in use for Floads.
514 This is used when starting a subprocess. */
515
516 void
517 close_load_descs ()
518 {
519 #ifndef WINDOWSNT
520 Lisp_Object tail;
521 for (tail = load_descriptor_list; !NILP (tail); tail = XCONS (tail)->cdr)
522 close (XFASTINT (XCONS (tail)->car));
523 #endif
524 }
525 \f
526 static int
527 complete_filename_p (pathname)
528 Lisp_Object pathname;
529 {
530 register unsigned char *s = XSTRING (pathname)->data;
531 return (IS_DIRECTORY_SEP (s[0])
532 || (XSTRING (pathname)->size > 2
533 && IS_DEVICE_SEP (s[1]) && IS_DIRECTORY_SEP (s[2]))
534 #ifdef ALTOS
535 || *s == '@'
536 #endif
537 #ifdef VMS
538 || index (s, ':')
539 #endif /* VMS */
540 );
541 }
542
543 /* Search for a file whose name is STR, looking in directories
544 in the Lisp list PATH, and trying suffixes from SUFFIX.
545 SUFFIX is a string containing possible suffixes separated by colons.
546 On success, returns a file descriptor. On failure, returns -1.
547
548 EXEC_ONLY nonzero means don't open the files,
549 just look for one that is executable. In this case,
550 returns 1 on success.
551
552 If STOREPTR is nonzero, it points to a slot where the name of
553 the file actually found should be stored as a Lisp string.
554 Nil is stored there on failure. */
555
556 int
557 openp (path, str, suffix, storeptr, exec_only)
558 Lisp_Object path, str;
559 char *suffix;
560 Lisp_Object *storeptr;
561 int exec_only;
562 {
563 register int fd;
564 int fn_size = 100;
565 char buf[100];
566 register char *fn = buf;
567 int absolute = 0;
568 int want_size;
569 register Lisp_Object filename;
570 struct stat st;
571 struct gcpro gcpro1;
572
573 GCPRO1 (str);
574 if (storeptr)
575 *storeptr = Qnil;
576
577 if (complete_filename_p (str))
578 absolute = 1;
579
580 for (; !NILP (path); path = Fcdr (path))
581 {
582 char *nsuffix;
583
584 filename = Fexpand_file_name (str, Fcar (path));
585 if (!complete_filename_p (filename))
586 /* If there are non-absolute elts in PATH (eg ".") */
587 /* Of course, this could conceivably lose if luser sets
588 default-directory to be something non-absolute... */
589 {
590 filename = Fexpand_file_name (filename, current_buffer->directory);
591 if (!complete_filename_p (filename))
592 /* Give up on this path element! */
593 continue;
594 }
595
596 /* Calculate maximum size of any filename made from
597 this path element/specified file name and any possible suffix. */
598 want_size = strlen (suffix) + XSTRING (filename)->size + 1;
599 if (fn_size < want_size)
600 fn = (char *) alloca (fn_size = 100 + want_size);
601
602 nsuffix = suffix;
603
604 /* Loop over suffixes. */
605 while (1)
606 {
607 char *esuffix = (char *) index (nsuffix, ':');
608 int lsuffix = esuffix ? esuffix - nsuffix : strlen (nsuffix);
609
610 /* Concatenate path element/specified name with the suffix. */
611 strncpy (fn, XSTRING (filename)->data, XSTRING (filename)->size);
612 fn[XSTRING (filename)->size] = 0;
613 if (lsuffix != 0) /* Bug happens on CCI if lsuffix is 0. */
614 strncat (fn, nsuffix, lsuffix);
615
616 /* Ignore file if it's a directory. */
617 if (stat (fn, &st) >= 0
618 && (st.st_mode & S_IFMT) != S_IFDIR)
619 {
620 /* Check that we can access or open it. */
621 if (exec_only)
622 fd = (access (fn, X_OK) == 0) ? 1 : -1;
623 else
624 fd = open (fn, O_RDONLY, 0);
625
626 if (fd >= 0)
627 {
628 /* We succeeded; return this descriptor and filename. */
629 if (storeptr)
630 *storeptr = build_string (fn);
631 UNGCPRO;
632 return fd;
633 }
634 }
635
636 /* Advance to next suffix. */
637 if (esuffix == 0)
638 break;
639 nsuffix += lsuffix + 1;
640 }
641 if (absolute)
642 break;
643 }
644
645 UNGCPRO;
646 return -1;
647 }
648
649 \f
650 /* Merge the list we've accumulated of globals from the current input source
651 into the load_history variable. The details depend on whether
652 the source has an associated file name or not. */
653
654 static void
655 build_load_history (stream, source)
656 FILE *stream;
657 Lisp_Object source;
658 {
659 register Lisp_Object tail, prev, newelt;
660 register Lisp_Object tem, tem2;
661 register int foundit, loading;
662
663 /* Don't bother recording anything for preloaded files. */
664 if (!NILP (Vpurify_flag))
665 return;
666
667 loading = stream || !NARROWED;
668
669 tail = Vload_history;
670 prev = Qnil;
671 foundit = 0;
672 while (!NILP (tail))
673 {
674 tem = Fcar (tail);
675
676 /* Find the feature's previous assoc list... */
677 if (!NILP (Fequal (source, Fcar (tem))))
678 {
679 foundit = 1;
680
681 /* If we're loading, remove it. */
682 if (loading)
683 {
684 if (NILP (prev))
685 Vload_history = Fcdr (tail);
686 else
687 Fsetcdr (prev, Fcdr (tail));
688 }
689
690 /* Otherwise, cons on new symbols that are not already members. */
691 else
692 {
693 tem2 = Vcurrent_load_list;
694
695 while (CONSP (tem2))
696 {
697 newelt = Fcar (tem2);
698
699 if (NILP (Fmemq (newelt, tem)))
700 Fsetcar (tail, Fcons (Fcar (tem),
701 Fcons (newelt, Fcdr (tem))));
702
703 tem2 = Fcdr (tem2);
704 QUIT;
705 }
706 }
707 }
708 else
709 prev = tail;
710 tail = Fcdr (tail);
711 QUIT;
712 }
713
714 /* If we're loading, cons the new assoc onto the front of load-history,
715 the most-recently-loaded position. Also do this if we didn't find
716 an existing member for the current source. */
717 if (loading || !foundit)
718 Vload_history = Fcons (Fnreverse (Vcurrent_load_list),
719 Vload_history);
720 }
721
722 Lisp_Object
723 unreadpure () /* Used as unwind-protect function in readevalloop */
724 {
725 read_pure = 0;
726 return Qnil;
727 }
728
729 static void
730 readevalloop (readcharfun, stream, sourcename, evalfun, printflag)
731 Lisp_Object readcharfun;
732 FILE *stream;
733 Lisp_Object sourcename;
734 Lisp_Object (*evalfun) ();
735 int printflag;
736 {
737 register int c;
738 register Lisp_Object val;
739 int count = specpdl_ptr - specpdl;
740 struct gcpro gcpro1;
741 struct buffer *b = 0;
742
743 if (BUFFERP (readcharfun))
744 b = XBUFFER (readcharfun);
745 else if (MARKERP (readcharfun))
746 b = XMARKER (readcharfun)->buffer;
747
748 specbind (Qstandard_input, readcharfun);
749 specbind (Qcurrent_load_list, Qnil);
750
751 GCPRO1 (sourcename);
752
753 LOADHIST_ATTACH (sourcename);
754
755 while (1)
756 {
757 if (b != 0 && NILP (b->name))
758 error ("Reading from killed buffer");
759
760 instream = stream;
761 c = READCHAR;
762 if (c == ';')
763 {
764 while ((c = READCHAR) != '\n' && c != -1);
765 continue;
766 }
767 if (c < 0) break;
768
769 /* Ignore whitespace here, so we can detect eof. */
770 if (c == ' ' || c == '\t' || c == '\n' || c == '\f' || c == '\r')
771 continue;
772
773 if (!NILP (Vpurify_flag) && c == '(')
774 {
775 int count1 = specpdl_ptr - specpdl;
776 record_unwind_protect (unreadpure, Qnil);
777 val = read_list (-1, readcharfun);
778 unbind_to (count1, Qnil);
779 }
780 else
781 {
782 UNREAD (c);
783 if (NILP (Vload_read_function))
784 val = read0 (readcharfun);
785 else
786 val = call1 (Vload_read_function, readcharfun);
787 }
788
789 val = (*evalfun) (val);
790 if (printflag)
791 {
792 Vvalues = Fcons (val, Vvalues);
793 if (EQ (Vstandard_output, Qt))
794 Fprin1 (val, Qnil);
795 else
796 Fprint (val, Qnil);
797 }
798 }
799
800 build_load_history (stream, sourcename);
801 UNGCPRO;
802
803 unbind_to (count, Qnil);
804 }
805
806 #ifndef standalone
807
808 DEFUN ("eval-buffer", Feval_buffer, Seval_buffer, 0, 2, "",
809 "Execute the current buffer as Lisp code.\n\
810 Programs can pass two arguments, BUFFER and PRINTFLAG.\n\
811 BUFFER is the buffer to evaluate (nil means use current buffer).\n\
812 PRINTFLAG controls printing of output:\n\
813 nil means discard it; anything else is stream for print.\n\
814 \n\
815 If there is no error, point does not move. If there is an error,\n\
816 point remains at the end of the last character read from the buffer.")
817 (buffer, printflag)
818 Lisp_Object buffer, printflag;
819 {
820 int count = specpdl_ptr - specpdl;
821 Lisp_Object tem, buf;
822
823 if (NILP (buffer))
824 buf = Fcurrent_buffer ();
825 else
826 buf = Fget_buffer (buffer);
827 if (NILP (buf))
828 error ("No such buffer.");
829
830 if (NILP (printflag))
831 tem = Qsymbolp;
832 else
833 tem = printflag;
834 specbind (Qstandard_output, tem);
835 record_unwind_protect (save_excursion_restore, save_excursion_save ());
836 BUF_SET_PT (XBUFFER (buf), BUF_BEGV (XBUFFER (buf)));
837 readevalloop (buf, 0, XBUFFER (buf)->filename, Feval, !NILP (printflag));
838 unbind_to (count, Qnil);
839
840 return Qnil;
841 }
842
843 #if 0
844 DEFUN ("eval-current-buffer", Feval_current_buffer, Seval_current_buffer, 0, 1, "",
845 "Execute the current buffer as Lisp code.\n\
846 Programs can pass argument PRINTFLAG which controls printing of output:\n\
847 nil means discard it; anything else is stream for print.\n\
848 \n\
849 If there is no error, point does not move. If there is an error,\n\
850 point remains at the end of the last character read from the buffer.")
851 (printflag)
852 Lisp_Object printflag;
853 {
854 int count = specpdl_ptr - specpdl;
855 Lisp_Object tem, cbuf;
856
857 cbuf = Fcurrent_buffer ()
858
859 if (NILP (printflag))
860 tem = Qsymbolp;
861 else
862 tem = printflag;
863 specbind (Qstandard_output, tem);
864 record_unwind_protect (save_excursion_restore, save_excursion_save ());
865 SET_PT (BEGV);
866 readevalloop (cbuf, 0, XBUFFER (cbuf)->filename, Feval, !NILP (printflag));
867 return unbind_to (count, Qnil);
868 }
869 #endif
870
871 DEFUN ("eval-region", Feval_region, Seval_region, 2, 3, "r",
872 "Execute the region as Lisp code.\n\
873 When called from programs, expects two arguments,\n\
874 giving starting and ending indices in the current buffer\n\
875 of the text to be executed.\n\
876 Programs can pass third argument PRINTFLAG which controls output:\n\
877 nil means discard it; anything else is stream for printing it.\n\
878 \n\
879 If there is no error, point does not move. If there is an error,\n\
880 point remains at the end of the last character read from the buffer.")
881 (start, end, printflag)
882 Lisp_Object start, end, printflag;
883 {
884 int count = specpdl_ptr - specpdl;
885 Lisp_Object tem, cbuf;
886
887 cbuf = Fcurrent_buffer ();
888
889 if (NILP (printflag))
890 tem = Qsymbolp;
891 else
892 tem = printflag;
893 specbind (Qstandard_output, tem);
894
895 if (NILP (printflag))
896 record_unwind_protect (save_excursion_restore, save_excursion_save ());
897 record_unwind_protect (save_restriction_restore, save_restriction_save ());
898
899 /* This both uses start and checks its type. */
900 Fgoto_char (start);
901 Fnarrow_to_region (make_number (BEGV), end);
902 readevalloop (cbuf, 0, XBUFFER (cbuf)->filename, Feval, !NILP (printflag));
903
904 return unbind_to (count, Qnil);
905 }
906
907 #endif /* standalone */
908 \f
909 DEFUN ("read", Fread, Sread, 0, 1, 0,
910 "Read one Lisp expression as text from STREAM, return as Lisp object.\n\
911 If STREAM is nil, use the value of `standard-input' (which see).\n\
912 STREAM or the value of `standard-input' may be:\n\
913 a buffer (read from point and advance it)\n\
914 a marker (read from where it points and advance it)\n\
915 a function (call it with no arguments for each character,\n\
916 call it with a char as argument to push a char back)\n\
917 a string (takes text from string, starting at the beginning)\n\
918 t (read text line using minibuffer and use it).")
919 (stream)
920 Lisp_Object stream;
921 {
922 extern Lisp_Object Fread_minibuffer ();
923
924 if (NILP (stream))
925 stream = Vstandard_input;
926 if (EQ (stream, Qt))
927 stream = Qread_char;
928
929 new_backquote_flag = 0;
930
931 #ifndef standalone
932 if (EQ (stream, Qread_char))
933 return Fread_minibuffer (build_string ("Lisp expression: "), Qnil);
934 #endif
935
936 if (STRINGP (stream))
937 return Fcar (Fread_from_string (stream, Qnil, Qnil));
938
939 return read0 (stream);
940 }
941
942 DEFUN ("read-from-string", Fread_from_string, Sread_from_string, 1, 3, 0,
943 "Read one Lisp expression which is represented as text by STRING.\n\
944 Returns a cons: (OBJECT-READ . FINAL-STRING-INDEX).\n\
945 START and END optionally delimit a substring of STRING from which to read;\n\
946 they default to 0 and (length STRING) respectively.")
947 (string, start, end)
948 Lisp_Object string, start, end;
949 {
950 int startval, endval;
951 Lisp_Object tem;
952
953 CHECK_STRING (string,0);
954
955 if (NILP (end))
956 endval = XSTRING (string)->size;
957 else
958 { CHECK_NUMBER (end,2);
959 endval = XINT (end);
960 if (endval < 0 || endval > XSTRING (string)->size)
961 args_out_of_range (string, end);
962 }
963
964 if (NILP (start))
965 startval = 0;
966 else
967 { CHECK_NUMBER (start,1);
968 startval = XINT (start);
969 if (startval < 0 || startval > endval)
970 args_out_of_range (string, start);
971 }
972
973 read_from_string_index = startval;
974 read_from_string_limit = endval;
975
976 new_backquote_flag = 0;
977
978 tem = read0 (string);
979 return Fcons (tem, make_number (read_from_string_index));
980 }
981 \f
982 /* Use this for recursive reads, in contexts where internal tokens
983 are not allowed. */
984 static Lisp_Object
985 read0 (readcharfun)
986 Lisp_Object readcharfun;
987 {
988 register Lisp_Object val;
989 char c;
990
991 val = read1 (readcharfun, &c, 0);
992 if (c)
993 Fsignal (Qinvalid_read_syntax, Fcons (make_string (&c, 1), Qnil));
994
995 return val;
996 }
997 \f
998 static int read_buffer_size;
999 static char *read_buffer;
1000
1001 static int
1002 read_escape (readcharfun)
1003 Lisp_Object readcharfun;
1004 {
1005 register int c = READCHAR;
1006 switch (c)
1007 {
1008 case -1:
1009 error ("End of file");
1010
1011 case 'a':
1012 return '\007';
1013 case 'b':
1014 return '\b';
1015 case 'd':
1016 return 0177;
1017 case 'e':
1018 return 033;
1019 case 'f':
1020 return '\f';
1021 case 'n':
1022 return '\n';
1023 case 'r':
1024 return '\r';
1025 case 't':
1026 return '\t';
1027 case 'v':
1028 return '\v';
1029 case '\n':
1030 return -1;
1031
1032 case 'M':
1033 c = READCHAR;
1034 if (c != '-')
1035 error ("Invalid escape character syntax");
1036 c = READCHAR;
1037 if (c == '\\')
1038 c = read_escape (readcharfun);
1039 return c | meta_modifier;
1040
1041 case 'S':
1042 c = READCHAR;
1043 if (c != '-')
1044 error ("Invalid escape character syntax");
1045 c = READCHAR;
1046 if (c == '\\')
1047 c = read_escape (readcharfun);
1048 return c | shift_modifier;
1049
1050 case 'H':
1051 c = READCHAR;
1052 if (c != '-')
1053 error ("Invalid escape character syntax");
1054 c = READCHAR;
1055 if (c == '\\')
1056 c = read_escape (readcharfun);
1057 return c | hyper_modifier;
1058
1059 case 'A':
1060 c = READCHAR;
1061 if (c != '-')
1062 error ("Invalid escape character syntax");
1063 c = READCHAR;
1064 if (c == '\\')
1065 c = read_escape (readcharfun);
1066 return c | alt_modifier;
1067
1068 case 's':
1069 c = READCHAR;
1070 if (c != '-')
1071 error ("Invalid escape character syntax");
1072 c = READCHAR;
1073 if (c == '\\')
1074 c = read_escape (readcharfun);
1075 return c | super_modifier;
1076
1077 case 'C':
1078 c = READCHAR;
1079 if (c != '-')
1080 error ("Invalid escape character syntax");
1081 case '^':
1082 c = READCHAR;
1083 if (c == '\\')
1084 c = read_escape (readcharfun);
1085 if ((c & 0177) == '?')
1086 return 0177 | c;
1087 /* ASCII control chars are made from letters (both cases),
1088 as well as the non-letters within 0100...0137. */
1089 else if ((c & 0137) >= 0101 && (c & 0137) <= 0132)
1090 return (c & (037 | ~0177));
1091 else if ((c & 0177) >= 0100 && (c & 0177) <= 0137)
1092 return (c & (037 | ~0177));
1093 else
1094 return c | ctrl_modifier;
1095
1096 case '0':
1097 case '1':
1098 case '2':
1099 case '3':
1100 case '4':
1101 case '5':
1102 case '6':
1103 case '7':
1104 /* An octal escape, as in ANSI C. */
1105 {
1106 register int i = c - '0';
1107 register int count = 0;
1108 while (++count < 3)
1109 {
1110 if ((c = READCHAR) >= '0' && c <= '7')
1111 {
1112 i *= 8;
1113 i += c - '0';
1114 }
1115 else
1116 {
1117 UNREAD (c);
1118 break;
1119 }
1120 }
1121 return i;
1122 }
1123
1124 case 'x':
1125 /* A hex escape, as in ANSI C. */
1126 {
1127 int i = 0;
1128 while (1)
1129 {
1130 c = READCHAR;
1131 if (c >= '0' && c <= '9')
1132 {
1133 i *= 16;
1134 i += c - '0';
1135 }
1136 else if ((c >= 'a' && c <= 'f')
1137 || (c >= 'A' && c <= 'F'))
1138 {
1139 i *= 16;
1140 if (c >= 'a' && c <= 'f')
1141 i += c - 'a' + 10;
1142 else
1143 i += c - 'A' + 10;
1144 }
1145 else
1146 {
1147 UNREAD (c);
1148 break;
1149 }
1150 }
1151 return i;
1152 }
1153
1154 default:
1155 return c;
1156 }
1157 }
1158
1159 /* If the next token is ')' or ']' or '.', we store that character
1160 in *PCH and the return value is not interesting. Else, we store
1161 zero in *PCH and we read and return one lisp object.
1162
1163 FIRST_IN_LIST is nonzero if this is the first element of a list. */
1164
1165 static Lisp_Object
1166 read1 (readcharfun, pch, first_in_list)
1167 register Lisp_Object readcharfun;
1168 char *pch;
1169 int first_in_list;
1170 {
1171 register int c;
1172 *pch = 0;
1173
1174 retry:
1175
1176 c = READCHAR;
1177 if (c < 0) return Fsignal (Qend_of_file, Qnil);
1178
1179 switch (c)
1180 {
1181 case '(':
1182 return read_list (0, readcharfun);
1183
1184 case '[':
1185 return read_vector (readcharfun);
1186
1187 case ')':
1188 case ']':
1189 {
1190 *pch = c;
1191 return Qnil;
1192 }
1193
1194 case '#':
1195 c = READCHAR;
1196 if (c == '^')
1197 {
1198 c = READCHAR;
1199 if (c == '[')
1200 {
1201 Lisp_Object tmp;
1202 tmp = read_vector (readcharfun);
1203 if (XVECTOR (tmp)->size < CHAR_TABLE_STANDARD_SLOTS
1204 || XVECTOR (tmp)->size > CHAR_TABLE_STANDARD_SLOTS + 10)
1205 error ("Invalid size char-table");
1206 XSETCHAR_TABLE (tmp, XCHAR_TABLE (tmp));
1207 return tmp;
1208 }
1209 Fsignal (Qinvalid_read_syntax, Fcons (make_string ("#^", 2), Qnil));
1210 }
1211 if (c == '&')
1212 {
1213 Lisp_Object length;
1214 length = read1 (readcharfun, pch, first_in_list);
1215 c = READCHAR;
1216 if (c == '"')
1217 {
1218 Lisp_Object tmp, val;
1219 int size_in_chars = ((XFASTINT (length) + BITS_PER_CHAR)
1220 / BITS_PER_CHAR);
1221
1222 UNREAD (c);
1223 tmp = read1 (readcharfun, pch, first_in_list);
1224 if (size_in_chars != XSTRING (tmp)->size)
1225 Fsignal (Qinvalid_read_syntax,
1226 Fcons (make_string ("#&", 2), Qnil));
1227
1228 val = Fmake_bool_vector (length, Qnil);
1229 bcopy (XSTRING (tmp)->data, XBOOL_VECTOR (val)->data,
1230 size_in_chars);
1231 return val;
1232 }
1233 Fsignal (Qinvalid_read_syntax, Fcons (make_string ("#&", 2), Qnil));
1234 }
1235 if (c == '[')
1236 {
1237 /* Accept compiled functions at read-time so that we don't have to
1238 build them using function calls. */
1239 Lisp_Object tmp;
1240 tmp = read_vector (readcharfun);
1241 return Fmake_byte_code (XVECTOR (tmp)->size,
1242 XVECTOR (tmp)->contents);
1243 }
1244 #ifdef USE_TEXT_PROPERTIES
1245 if (c == '(')
1246 {
1247 Lisp_Object tmp;
1248 struct gcpro gcpro1;
1249 char ch;
1250
1251 /* Read the string itself. */
1252 tmp = read1 (readcharfun, &ch, 0);
1253 if (ch != 0 || !STRINGP (tmp))
1254 Fsignal (Qinvalid_read_syntax, Fcons (make_string ("#", 1), Qnil));
1255 GCPRO1 (tmp);
1256 /* Read the intervals and their properties. */
1257 while (1)
1258 {
1259 Lisp_Object beg, end, plist;
1260
1261 beg = read1 (readcharfun, &ch, 0);
1262 if (ch == ')')
1263 break;
1264 if (ch == 0)
1265 end = read1 (readcharfun, &ch, 0);
1266 if (ch == 0)
1267 plist = read1 (readcharfun, &ch, 0);
1268 if (ch)
1269 Fsignal (Qinvalid_read_syntax,
1270 Fcons (build_string ("invalid string property list"),
1271 Qnil));
1272 Fset_text_properties (beg, end, plist, tmp);
1273 }
1274 UNGCPRO;
1275 return tmp;
1276 }
1277 #endif
1278 /* #@NUMBER is used to skip NUMBER following characters.
1279 That's used in .elc files to skip over doc strings
1280 and function definitions. */
1281 if (c == '@')
1282 {
1283 int i, nskip = 0;
1284
1285 /* Read a decimal integer. */
1286 while ((c = READCHAR) >= 0
1287 && c >= '0' && c <= '9')
1288 {
1289 nskip *= 10;
1290 nskip += c - '0';
1291 }
1292 if (c >= 0)
1293 UNREAD (c);
1294
1295 #ifndef DOS_NT /* I don't know if filepos works right on MSDOS and Windoze. */
1296 if (load_force_doc_strings && EQ (readcharfun, Qget_file_char))
1297 {
1298 /* If we are supposed to force doc strings into core right now,
1299 record the last string that we skipped,
1300 and record where in the file it comes from. */
1301 if (saved_doc_string_size == 0)
1302 {
1303 saved_doc_string_size = nskip + 100;
1304 saved_doc_string = (char *) xmalloc (saved_doc_string_size);
1305 }
1306 if (nskip > saved_doc_string_size)
1307 {
1308 saved_doc_string_size = nskip + 100;
1309 saved_doc_string = (char *) xrealloc (saved_doc_string,
1310 saved_doc_string_size);
1311 }
1312
1313 saved_doc_string_position = ftell (instream);
1314
1315 /* Copy that many characters into saved_doc_string. */
1316 for (i = 0; i < nskip && c >= 0; i++)
1317 saved_doc_string[i] = c = READCHAR;
1318
1319 saved_doc_string_length = i;
1320 }
1321 else
1322 #endif /* not DOS_NT */
1323 {
1324 /* Skip that many characters. */
1325 for (i = 0; i < nskip && c >= 0; i++)
1326 c = READCHAR;
1327 }
1328 goto retry;
1329 }
1330 if (c == '$')
1331 return Vload_file_name;
1332 if (c == '\'')
1333 return Fcons (Qfunction, Fcons (read0 (readcharfun), Qnil));
1334
1335
1336 UNREAD (c);
1337 Fsignal (Qinvalid_read_syntax, Fcons (make_string ("#", 1), Qnil));
1338
1339 case ';':
1340 while ((c = READCHAR) >= 0 && c != '\n');
1341 goto retry;
1342
1343 case '\'':
1344 {
1345 return Fcons (Qquote, Fcons (read0 (readcharfun), Qnil));
1346 }
1347
1348 case '`':
1349 if (first_in_list)
1350 goto default_label;
1351 else
1352 {
1353 Lisp_Object value;
1354
1355 new_backquote_flag = 1;
1356 value = read0 (readcharfun);
1357 new_backquote_flag = 0;
1358
1359 return Fcons (Qbackquote, Fcons (value, Qnil));
1360 }
1361
1362 case ',':
1363 if (new_backquote_flag)
1364 {
1365 Lisp_Object comma_type = Qnil;
1366 Lisp_Object value;
1367 int ch = READCHAR;
1368
1369 if (ch == '@')
1370 comma_type = Qcomma_at;
1371 else if (ch == '.')
1372 comma_type = Qcomma_dot;
1373 else
1374 {
1375 if (ch >= 0) UNREAD (ch);
1376 comma_type = Qcomma;
1377 }
1378
1379 new_backquote_flag = 0;
1380 value = read0 (readcharfun);
1381 new_backquote_flag = 1;
1382 return Fcons (comma_type, Fcons (value, Qnil));
1383 }
1384 else
1385 goto default_label;
1386
1387 case '?':
1388 {
1389 register Lisp_Object val;
1390
1391 c = READCHAR;
1392 if (c < 0) return Fsignal (Qend_of_file, Qnil);
1393
1394 if (c == '\\')
1395 XSETINT (val, read_escape (readcharfun));
1396 else
1397 XSETINT (val, c);
1398
1399 return val;
1400 }
1401
1402 case '\"':
1403 {
1404 register char *p = read_buffer;
1405 register char *end = read_buffer + read_buffer_size;
1406 register int c;
1407 int cancel = 0;
1408
1409 while ((c = READCHAR) >= 0
1410 && c != '\"')
1411 {
1412 if (p == end)
1413 {
1414 char *new = (char *) xrealloc (read_buffer, read_buffer_size *= 2);
1415 p += new - read_buffer;
1416 read_buffer += new - read_buffer;
1417 end = read_buffer + read_buffer_size;
1418 }
1419 if (c == '\\')
1420 c = read_escape (readcharfun);
1421 /* c is -1 if \ newline has just been seen */
1422 if (c == -1)
1423 {
1424 if (p == read_buffer)
1425 cancel = 1;
1426 }
1427 else
1428 {
1429 /* Allow `\C- ' and `\C-?'. */
1430 if (c == (CHAR_CTL | ' '))
1431 c = 0;
1432 else if (c == (CHAR_CTL | '?'))
1433 c = 127;
1434
1435 if (c & CHAR_META)
1436 /* Move the meta bit to the right place for a string. */
1437 c = (c & ~CHAR_META) | 0x80;
1438 if (c & ~0xff)
1439 error ("Invalid modifier in string");
1440 *p++ = c;
1441 }
1442 }
1443 if (c < 0) return Fsignal (Qend_of_file, Qnil);
1444
1445 /* If purifying, and string starts with \ newline,
1446 return zero instead. This is for doc strings
1447 that we are really going to find in etc/DOC.nn.nn */
1448 if (!NILP (Vpurify_flag) && NILP (Vdoc_file_name) && cancel)
1449 return make_number (0);
1450
1451 if (read_pure)
1452 return make_pure_string (read_buffer, p - read_buffer);
1453 else
1454 return make_string (read_buffer, p - read_buffer);
1455 }
1456
1457 case '.':
1458 {
1459 #ifdef LISP_FLOAT_TYPE
1460 /* If a period is followed by a number, then we should read it
1461 as a floating point number. Otherwise, it denotes a dotted
1462 pair. */
1463 int next_char = READCHAR;
1464 UNREAD (next_char);
1465
1466 if (! (next_char >= '0' && next_char <= '9'))
1467 #endif
1468 {
1469 *pch = c;
1470 return Qnil;
1471 }
1472
1473 /* Otherwise, we fall through! Note that the atom-reading loop
1474 below will now loop at least once, assuring that we will not
1475 try to UNREAD two characters in a row. */
1476 }
1477 default:
1478 default_label:
1479 if (c <= 040) goto retry;
1480 {
1481 register char *p = read_buffer;
1482 int quoted = 0;
1483
1484 {
1485 register char *end = read_buffer + read_buffer_size;
1486
1487 while (c > 040 &&
1488 !(c == '\"' || c == '\'' || c == ';' || c == '?'
1489 || c == '(' || c == ')'
1490 #ifndef LISP_FLOAT_TYPE
1491 /* If we have floating-point support, then we need
1492 to allow <digits><dot><digits>. */
1493 || c =='.'
1494 #endif /* not LISP_FLOAT_TYPE */
1495 || c == '[' || c == ']' || c == '#'
1496 ))
1497 {
1498 if (p == end)
1499 {
1500 register char *new = (char *) xrealloc (read_buffer, read_buffer_size *= 2);
1501 p += new - read_buffer;
1502 read_buffer += new - read_buffer;
1503 end = read_buffer + read_buffer_size;
1504 }
1505 if (c == '\\')
1506 {
1507 c = READCHAR;
1508 quoted = 1;
1509 }
1510 *p++ = c;
1511 c = READCHAR;
1512 }
1513
1514 if (p == end)
1515 {
1516 char *new = (char *) xrealloc (read_buffer, read_buffer_size *= 2);
1517 p += new - read_buffer;
1518 read_buffer += new - read_buffer;
1519 /* end = read_buffer + read_buffer_size; */
1520 }
1521 *p = 0;
1522 if (c >= 0)
1523 UNREAD (c);
1524 }
1525
1526 if (!quoted)
1527 {
1528 register char *p1;
1529 register Lisp_Object val;
1530 p1 = read_buffer;
1531 if (*p1 == '+' || *p1 == '-') p1++;
1532 /* Is it an integer? */
1533 if (p1 != p)
1534 {
1535 while (p1 != p && (c = *p1) >= '0' && c <= '9') p1++;
1536 #ifdef LISP_FLOAT_TYPE
1537 /* Integers can have trailing decimal points. */
1538 if (p1 > read_buffer && p1 < p && *p1 == '.') p1++;
1539 #endif
1540 if (p1 == p)
1541 /* It is an integer. */
1542 {
1543 #ifdef LISP_FLOAT_TYPE
1544 if (p1[-1] == '.')
1545 p1[-1] = '\0';
1546 #endif
1547 if (sizeof (int) == sizeof (EMACS_INT))
1548 XSETINT (val, atoi (read_buffer));
1549 else if (sizeof (long) == sizeof (EMACS_INT))
1550 XSETINT (val, atol (read_buffer));
1551 else
1552 abort ();
1553 return val;
1554 }
1555 }
1556 #ifdef LISP_FLOAT_TYPE
1557 if (isfloat_string (read_buffer))
1558 return make_float (atof (read_buffer));
1559 #endif
1560 }
1561
1562 return intern (read_buffer);
1563 }
1564 }
1565 }
1566 \f
1567 #ifdef LISP_FLOAT_TYPE
1568
1569 #define LEAD_INT 1
1570 #define DOT_CHAR 2
1571 #define TRAIL_INT 4
1572 #define E_CHAR 8
1573 #define EXP_INT 16
1574
1575 int
1576 isfloat_string (cp)
1577 register char *cp;
1578 {
1579 register state;
1580
1581 state = 0;
1582 if (*cp == '+' || *cp == '-')
1583 cp++;
1584
1585 if (*cp >= '0' && *cp <= '9')
1586 {
1587 state |= LEAD_INT;
1588 while (*cp >= '0' && *cp <= '9')
1589 cp++;
1590 }
1591 if (*cp == '.')
1592 {
1593 state |= DOT_CHAR;
1594 cp++;
1595 }
1596 if (*cp >= '0' && *cp <= '9')
1597 {
1598 state |= TRAIL_INT;
1599 while (*cp >= '0' && *cp <= '9')
1600 cp++;
1601 }
1602 if (*cp == 'e')
1603 {
1604 state |= E_CHAR;
1605 cp++;
1606 if (*cp == '+' || *cp == '-')
1607 cp++;
1608 }
1609
1610 if (*cp >= '0' && *cp <= '9')
1611 {
1612 state |= EXP_INT;
1613 while (*cp >= '0' && *cp <= '9')
1614 cp++;
1615 }
1616 return (((*cp == 0) || (*cp == ' ') || (*cp == '\t') || (*cp == '\n') || (*cp == '\r') || (*cp == '\f'))
1617 && (state == (LEAD_INT|DOT_CHAR|TRAIL_INT)
1618 || state == (DOT_CHAR|TRAIL_INT)
1619 || state == (LEAD_INT|E_CHAR|EXP_INT)
1620 || state == (LEAD_INT|DOT_CHAR|TRAIL_INT|E_CHAR|EXP_INT)
1621 || state == (DOT_CHAR|TRAIL_INT|E_CHAR|EXP_INT)));
1622 }
1623 #endif /* LISP_FLOAT_TYPE */
1624 \f
1625 static Lisp_Object
1626 read_vector (readcharfun)
1627 Lisp_Object readcharfun;
1628 {
1629 register int i;
1630 register int size;
1631 register Lisp_Object *ptr;
1632 register Lisp_Object tem, vector;
1633 register struct Lisp_Cons *otem;
1634 Lisp_Object len;
1635
1636 tem = read_list (1, readcharfun);
1637 len = Flength (tem);
1638 vector = (read_pure ? make_pure_vector (XINT (len)) : Fmake_vector (len, Qnil));
1639
1640
1641 size = XVECTOR (vector)->size;
1642 ptr = XVECTOR (vector)->contents;
1643 for (i = 0; i < size; i++)
1644 {
1645 ptr[i] = read_pure ? Fpurecopy (Fcar (tem)) : Fcar (tem);
1646 otem = XCONS (tem);
1647 tem = Fcdr (tem);
1648 free_cons (otem);
1649 }
1650 return vector;
1651 }
1652
1653 /* flag = 1 means check for ] to terminate rather than ) and .
1654 flag = -1 means check for starting with defun
1655 and make structure pure. */
1656
1657 static Lisp_Object
1658 read_list (flag, readcharfun)
1659 int flag;
1660 register Lisp_Object readcharfun;
1661 {
1662 /* -1 means check next element for defun,
1663 0 means don't check,
1664 1 means already checked and found defun. */
1665 int defunflag = flag < 0 ? -1 : 0;
1666 Lisp_Object val, tail;
1667 register Lisp_Object elt, tem;
1668 struct gcpro gcpro1, gcpro2;
1669 /* 0 is the normal case.
1670 1 means this list is a doc reference; replace it with the number 0.
1671 2 means this list is a doc reference; replace it with the doc string. */
1672 int doc_reference = 0;
1673
1674 /* Initialize this to 1 if we are reading a list. */
1675 int first_in_list = flag <= 0;
1676
1677 val = Qnil;
1678 tail = Qnil;
1679
1680 while (1)
1681 {
1682 char ch;
1683 GCPRO2 (val, tail);
1684 elt = read1 (readcharfun, &ch, first_in_list);
1685 UNGCPRO;
1686
1687 first_in_list = 0;
1688
1689 /* While building, if the list starts with #$, treat it specially. */
1690 if (EQ (elt, Vload_file_name)
1691 && !NILP (Vpurify_flag))
1692 {
1693 if (NILP (Vdoc_file_name))
1694 /* We have not yet called Snarf-documentation, so assume
1695 this file is described in the DOC-MM.NN file
1696 and Snarf-documentation will fill in the right value later.
1697 For now, replace the whole list with 0. */
1698 doc_reference = 1;
1699 else
1700 /* We have already called Snarf-documentation, so make a relative
1701 file name for this file, so it can be found properly
1702 in the installed Lisp directory.
1703 We don't use Fexpand_file_name because that would make
1704 the directory absolute now. */
1705 elt = concat2 (build_string ("../lisp/"),
1706 Ffile_name_nondirectory (elt));
1707 }
1708 else if (EQ (elt, Vload_file_name)
1709 && load_force_doc_strings)
1710 doc_reference = 2;
1711
1712 if (ch)
1713 {
1714 if (flag > 0)
1715 {
1716 if (ch == ']')
1717 return val;
1718 Fsignal (Qinvalid_read_syntax,
1719 Fcons (make_string (") or . in a vector", 18), Qnil));
1720 }
1721 if (ch == ')')
1722 return val;
1723 if (ch == '.')
1724 {
1725 GCPRO2 (val, tail);
1726 if (!NILP (tail))
1727 XCONS (tail)->cdr = read0 (readcharfun);
1728 else
1729 val = read0 (readcharfun);
1730 read1 (readcharfun, &ch, 0);
1731 UNGCPRO;
1732 if (ch == ')')
1733 {
1734 if (doc_reference == 1)
1735 return make_number (0);
1736 if (doc_reference == 2)
1737 {
1738 /* Get a doc string from the file we are loading.
1739 If it's in saved_doc_string, get it from there. */
1740 int pos = XINT (XCONS (val)->cdr);
1741 if (pos >= saved_doc_string_position
1742 && pos < (saved_doc_string_position
1743 + saved_doc_string_length))
1744 {
1745 int start = pos - saved_doc_string_position;
1746 int from, to;
1747
1748 /* Process quoting with ^A,
1749 and find the end of the string,
1750 which is marked with ^_ (037). */
1751 for (from = start, to = start;
1752 saved_doc_string[from] != 037;)
1753 {
1754 int c = saved_doc_string[from++];
1755 if (c == 1)
1756 {
1757 c = saved_doc_string[from++];
1758 if (c == 1)
1759 saved_doc_string[to++] = c;
1760 else if (c == '0')
1761 saved_doc_string[to++] = 0;
1762 else if (c == '_')
1763 saved_doc_string[to++] = 037;
1764 }
1765 else
1766 saved_doc_string[to++] = c;
1767 }
1768
1769 return make_string (saved_doc_string + start,
1770 to - start);
1771 }
1772 else
1773 return read_doc_string (val);
1774 }
1775
1776 return val;
1777 }
1778 return Fsignal (Qinvalid_read_syntax, Fcons (make_string (". in wrong context", 18), Qnil));
1779 }
1780 return Fsignal (Qinvalid_read_syntax, Fcons (make_string ("] in a list", 11), Qnil));
1781 }
1782 tem = (read_pure && flag <= 0
1783 ? pure_cons (elt, Qnil)
1784 : Fcons (elt, Qnil));
1785 if (!NILP (tail))
1786 XCONS (tail)->cdr = tem;
1787 else
1788 val = tem;
1789 tail = tem;
1790 if (defunflag < 0)
1791 defunflag = EQ (elt, Qdefun);
1792 else if (defunflag > 0)
1793 read_pure = 1;
1794 }
1795 }
1796 \f
1797 Lisp_Object Vobarray;
1798 Lisp_Object initial_obarray;
1799
1800 /* oblookup stores the bucket number here, for the sake of Funintern. */
1801
1802 int oblookup_last_bucket_number;
1803
1804 static int hash_string ();
1805 Lisp_Object oblookup ();
1806
1807 /* Get an error if OBARRAY is not an obarray.
1808 If it is one, return it. */
1809
1810 Lisp_Object
1811 check_obarray (obarray)
1812 Lisp_Object obarray;
1813 {
1814 while (!VECTORP (obarray) || XVECTOR (obarray)->size == 0)
1815 {
1816 /* If Vobarray is now invalid, force it to be valid. */
1817 if (EQ (Vobarray, obarray)) Vobarray = initial_obarray;
1818
1819 obarray = wrong_type_argument (Qvectorp, obarray);
1820 }
1821 return obarray;
1822 }
1823
1824 /* Intern the C string STR: return a symbol with that name,
1825 interned in the current obarray. */
1826
1827 Lisp_Object
1828 intern (str)
1829 char *str;
1830 {
1831 Lisp_Object tem;
1832 int len = strlen (str);
1833 Lisp_Object obarray;
1834
1835 obarray = Vobarray;
1836 if (!VECTORP (obarray) || XVECTOR (obarray)->size == 0)
1837 obarray = check_obarray (obarray);
1838 tem = oblookup (obarray, str, len);
1839 if (SYMBOLP (tem))
1840 return tem;
1841 return Fintern ((!NILP (Vpurify_flag)
1842 ? make_pure_string (str, len)
1843 : make_string (str, len)),
1844 obarray);
1845 }
1846 \f
1847 DEFUN ("intern", Fintern, Sintern, 1, 2, 0,
1848 "Return the canonical symbol whose name is STRING.\n\
1849 If there is none, one is created by this function and returned.\n\
1850 A second optional argument specifies the obarray to use;\n\
1851 it defaults to the value of `obarray'.")
1852 (string, obarray)
1853 Lisp_Object string, obarray;
1854 {
1855 register Lisp_Object tem, sym, *ptr;
1856
1857 if (NILP (obarray)) obarray = Vobarray;
1858 obarray = check_obarray (obarray);
1859
1860 CHECK_STRING (string, 0);
1861
1862 tem = oblookup (obarray, XSTRING (string)->data, XSTRING (string)->size);
1863 if (!INTEGERP (tem))
1864 return tem;
1865
1866 if (!NILP (Vpurify_flag))
1867 string = Fpurecopy (string);
1868 sym = Fmake_symbol (string);
1869
1870 ptr = &XVECTOR (obarray)->contents[XINT (tem)];
1871 if (SYMBOLP (*ptr))
1872 XSYMBOL (sym)->next = XSYMBOL (*ptr);
1873 else
1874 XSYMBOL (sym)->next = 0;
1875 *ptr = sym;
1876 return sym;
1877 }
1878
1879 DEFUN ("intern-soft", Fintern_soft, Sintern_soft, 1, 2, 0,
1880 "Return the canonical symbol whose name is STRING, or nil if none exists.\n\
1881 A second optional argument specifies the obarray to use;\n\
1882 it defaults to the value of `obarray'.")
1883 (string, obarray)
1884 Lisp_Object string, obarray;
1885 {
1886 register Lisp_Object tem;
1887
1888 if (NILP (obarray)) obarray = Vobarray;
1889 obarray = check_obarray (obarray);
1890
1891 CHECK_STRING (string, 0);
1892
1893 tem = oblookup (obarray, XSTRING (string)->data, XSTRING (string)->size);
1894 if (!INTEGERP (tem))
1895 return tem;
1896 return Qnil;
1897 }
1898 \f
1899 DEFUN ("unintern", Funintern, Sunintern, 1, 2, 0,
1900 "Delete the symbol named NAME, if any, from OBARRAY.\n\
1901 The value is t if a symbol was found and deleted, nil otherwise.\n\
1902 NAME may be a string or a symbol. If it is a symbol, that symbol\n\
1903 is deleted, if it belongs to OBARRAY--no other symbol is deleted.\n\
1904 OBARRAY defaults to the value of the variable `obarray'.")
1905 (name, obarray)
1906 Lisp_Object name, obarray;
1907 {
1908 register Lisp_Object string, tem;
1909 int hash;
1910
1911 if (NILP (obarray)) obarray = Vobarray;
1912 obarray = check_obarray (obarray);
1913
1914 if (SYMBOLP (name))
1915 XSETSTRING (string, XSYMBOL (name)->name);
1916 else
1917 {
1918 CHECK_STRING (name, 0);
1919 string = name;
1920 }
1921
1922 tem = oblookup (obarray, XSTRING (string)->data, XSTRING (string)->size);
1923 if (INTEGERP (tem))
1924 return Qnil;
1925 /* If arg was a symbol, don't delete anything but that symbol itself. */
1926 if (SYMBOLP (name) && !EQ (name, tem))
1927 return Qnil;
1928
1929 hash = oblookup_last_bucket_number;
1930
1931 if (EQ (XVECTOR (obarray)->contents[hash], tem))
1932 {
1933 if (XSYMBOL (tem)->next)
1934 XSETSYMBOL (XVECTOR (obarray)->contents[hash], XSYMBOL (tem)->next);
1935 else
1936 XSETINT (XVECTOR (obarray)->contents[hash], 0);
1937 }
1938 else
1939 {
1940 Lisp_Object tail, following;
1941
1942 for (tail = XVECTOR (obarray)->contents[hash];
1943 XSYMBOL (tail)->next;
1944 tail = following)
1945 {
1946 XSETSYMBOL (following, XSYMBOL (tail)->next);
1947 if (EQ (following, tem))
1948 {
1949 XSYMBOL (tail)->next = XSYMBOL (following)->next;
1950 break;
1951 }
1952 }
1953 }
1954
1955 return Qt;
1956 }
1957 \f
1958 /* Return the symbol in OBARRAY whose names matches the string
1959 of SIZE characters at PTR. If there is no such symbol in OBARRAY,
1960 return nil.
1961
1962 Also store the bucket number in oblookup_last_bucket_number. */
1963
1964 Lisp_Object
1965 oblookup (obarray, ptr, size)
1966 Lisp_Object obarray;
1967 register char *ptr;
1968 register int size;
1969 {
1970 int hash;
1971 int obsize;
1972 register Lisp_Object tail;
1973 Lisp_Object bucket, tem;
1974
1975 if (!VECTORP (obarray)
1976 || (obsize = XVECTOR (obarray)->size) == 0)
1977 {
1978 obarray = check_obarray (obarray);
1979 obsize = XVECTOR (obarray)->size;
1980 }
1981 /* This is sometimes needed in the middle of GC. */
1982 obsize &= ~ARRAY_MARK_FLAG;
1983 /* Combining next two lines breaks VMS C 2.3. */
1984 hash = hash_string (ptr, size);
1985 hash %= obsize;
1986 bucket = XVECTOR (obarray)->contents[hash];
1987 oblookup_last_bucket_number = hash;
1988 if (XFASTINT (bucket) == 0)
1989 ;
1990 else if (!SYMBOLP (bucket))
1991 error ("Bad data in guts of obarray"); /* Like CADR error message */
1992 else
1993 for (tail = bucket; ; XSETSYMBOL (tail, XSYMBOL (tail)->next))
1994 {
1995 if (XSYMBOL (tail)->name->size == size
1996 && !bcmp (XSYMBOL (tail)->name->data, ptr, size))
1997 return tail;
1998 else if (XSYMBOL (tail)->next == 0)
1999 break;
2000 }
2001 XSETINT (tem, hash);
2002 return tem;
2003 }
2004
2005 static int
2006 hash_string (ptr, len)
2007 unsigned char *ptr;
2008 int len;
2009 {
2010 register unsigned char *p = ptr;
2011 register unsigned char *end = p + len;
2012 register unsigned char c;
2013 register int hash = 0;
2014
2015 while (p != end)
2016 {
2017 c = *p++;
2018 if (c >= 0140) c -= 40;
2019 hash = ((hash<<3) + (hash>>28) + c);
2020 }
2021 return hash & 07777777777;
2022 }
2023 \f
2024 void
2025 map_obarray (obarray, fn, arg)
2026 Lisp_Object obarray;
2027 int (*fn) ();
2028 Lisp_Object arg;
2029 {
2030 register int i;
2031 register Lisp_Object tail;
2032 CHECK_VECTOR (obarray, 1);
2033 for (i = XVECTOR (obarray)->size - 1; i >= 0; i--)
2034 {
2035 tail = XVECTOR (obarray)->contents[i];
2036 if (XFASTINT (tail) != 0)
2037 while (1)
2038 {
2039 (*fn) (tail, arg);
2040 if (XSYMBOL (tail)->next == 0)
2041 break;
2042 XSETSYMBOL (tail, XSYMBOL (tail)->next);
2043 }
2044 }
2045 }
2046
2047 mapatoms_1 (sym, function)
2048 Lisp_Object sym, function;
2049 {
2050 call1 (function, sym);
2051 }
2052
2053 DEFUN ("mapatoms", Fmapatoms, Smapatoms, 1, 2, 0,
2054 "Call FUNCTION on every symbol in OBARRAY.\n\
2055 OBARRAY defaults to the value of `obarray'.")
2056 (function, obarray)
2057 Lisp_Object function, obarray;
2058 {
2059 Lisp_Object tem;
2060
2061 if (NILP (obarray)) obarray = Vobarray;
2062 obarray = check_obarray (obarray);
2063
2064 map_obarray (obarray, mapatoms_1, function);
2065 return Qnil;
2066 }
2067
2068 #define OBARRAY_SIZE 1511
2069
2070 void
2071 init_obarray ()
2072 {
2073 Lisp_Object oblength;
2074 int hash;
2075 Lisp_Object *tem;
2076
2077 XSETFASTINT (oblength, OBARRAY_SIZE);
2078
2079 Qnil = Fmake_symbol (make_pure_string ("nil", 3));
2080 Vobarray = Fmake_vector (oblength, make_number (0));
2081 initial_obarray = Vobarray;
2082 staticpro (&initial_obarray);
2083 /* Intern nil in the obarray */
2084 /* These locals are to kludge around a pyramid compiler bug. */
2085 hash = hash_string ("nil", 3);
2086 /* Separate statement here to avoid VAXC bug. */
2087 hash %= OBARRAY_SIZE;
2088 tem = &XVECTOR (Vobarray)->contents[hash];
2089 *tem = Qnil;
2090
2091 Qunbound = Fmake_symbol (make_pure_string ("unbound", 7));
2092 XSYMBOL (Qnil)->function = Qunbound;
2093 XSYMBOL (Qunbound)->value = Qunbound;
2094 XSYMBOL (Qunbound)->function = Qunbound;
2095
2096 Qt = intern ("t");
2097 XSYMBOL (Qnil)->value = Qnil;
2098 XSYMBOL (Qnil)->plist = Qnil;
2099 XSYMBOL (Qt)->value = Qt;
2100
2101 /* Qt is correct even if CANNOT_DUMP. loadup.el will set to nil at end. */
2102 Vpurify_flag = Qt;
2103
2104 Qvariable_documentation = intern ("variable-documentation");
2105
2106 read_buffer_size = 100;
2107 read_buffer = (char *) malloc (read_buffer_size);
2108 }
2109 \f
2110 void
2111 defsubr (sname)
2112 struct Lisp_Subr *sname;
2113 {
2114 Lisp_Object sym;
2115 sym = intern (sname->symbol_name);
2116 XSETSUBR (XSYMBOL (sym)->function, sname);
2117 }
2118
2119 #ifdef NOTDEF /* use fset in subr.el now */
2120 void
2121 defalias (sname, string)
2122 struct Lisp_Subr *sname;
2123 char *string;
2124 {
2125 Lisp_Object sym;
2126 sym = intern (string);
2127 XSETSUBR (XSYMBOL (sym)->function, sname);
2128 }
2129 #endif /* NOTDEF */
2130
2131 /* Define an "integer variable"; a symbol whose value is forwarded
2132 to a C variable of type int. Sample call: */
2133 /* DEFVAR_INT ("indent-tabs-mode", &indent_tabs_mode, "Documentation"); */
2134 void
2135 defvar_int (namestring, address)
2136 char *namestring;
2137 int *address;
2138 {
2139 Lisp_Object sym, val;
2140 sym = intern (namestring);
2141 val = allocate_misc ();
2142 XMISCTYPE (val) = Lisp_Misc_Intfwd;
2143 XINTFWD (val)->intvar = address;
2144 XSYMBOL (sym)->value = val;
2145 }
2146
2147 /* Similar but define a variable whose value is T if address contains 1,
2148 NIL if address contains 0 */
2149 void
2150 defvar_bool (namestring, address)
2151 char *namestring;
2152 int *address;
2153 {
2154 Lisp_Object sym, val;
2155 sym = intern (namestring);
2156 val = allocate_misc ();
2157 XMISCTYPE (val) = Lisp_Misc_Boolfwd;
2158 XBOOLFWD (val)->boolvar = address;
2159 XSYMBOL (sym)->value = val;
2160 }
2161
2162 /* Similar but define a variable whose value is the Lisp Object stored
2163 at address. Two versions: with and without gc-marking of the C
2164 variable. The nopro version is used when that variable will be
2165 gc-marked for some other reason, since marking the same slot twice
2166 can cause trouble with strings. */
2167 void
2168 defvar_lisp_nopro (namestring, address)
2169 char *namestring;
2170 Lisp_Object *address;
2171 {
2172 Lisp_Object sym, val;
2173 sym = intern (namestring);
2174 val = allocate_misc ();
2175 XMISCTYPE (val) = Lisp_Misc_Objfwd;
2176 XOBJFWD (val)->objvar = address;
2177 XSYMBOL (sym)->value = val;
2178 }
2179
2180 void
2181 defvar_lisp (namestring, address)
2182 char *namestring;
2183 Lisp_Object *address;
2184 {
2185 defvar_lisp_nopro (namestring, address);
2186 staticpro (address);
2187 }
2188
2189 #ifndef standalone
2190
2191 /* Similar but define a variable whose value is the Lisp Object stored in
2192 the current buffer. address is the address of the slot in the buffer
2193 that is current now. */
2194
2195 void
2196 defvar_per_buffer (namestring, address, type, doc)
2197 char *namestring;
2198 Lisp_Object *address;
2199 Lisp_Object type;
2200 char *doc;
2201 {
2202 Lisp_Object sym, val;
2203 int offset;
2204 extern struct buffer buffer_local_symbols;
2205
2206 sym = intern (namestring);
2207 val = allocate_misc ();
2208 offset = (char *)address - (char *)current_buffer;
2209
2210 XMISCTYPE (val) = Lisp_Misc_Buffer_Objfwd;
2211 XBUFFER_OBJFWD (val)->offset = offset;
2212 XSYMBOL (sym)->value = val;
2213 *(Lisp_Object *)(offset + (char *)&buffer_local_symbols) = sym;
2214 *(Lisp_Object *)(offset + (char *)&buffer_local_types) = type;
2215 if (XINT (*(Lisp_Object *)(offset + (char *)&buffer_local_flags)) == 0)
2216 /* Did a DEFVAR_PER_BUFFER without initializing the corresponding
2217 slot of buffer_local_flags */
2218 abort ();
2219 }
2220
2221 #endif /* standalone */
2222
2223 /* Similar but define a variable whose value is the Lisp Object stored
2224 at a particular offset in the current kboard object. */
2225
2226 void
2227 defvar_kboard (namestring, offset)
2228 char *namestring;
2229 int offset;
2230 {
2231 Lisp_Object sym, val;
2232 sym = intern (namestring);
2233 val = allocate_misc ();
2234 XMISCTYPE (val) = Lisp_Misc_Kboard_Objfwd;
2235 XKBOARD_OBJFWD (val)->offset = offset;
2236 XSYMBOL (sym)->value = val;
2237 }
2238 \f
2239 /* Record the value of load-path used at the start of dumping
2240 so we can see if the site changed it later during dumping. */
2241 static Lisp_Object dump_path;
2242
2243 init_lread ()
2244 {
2245 char *normal;
2246 int turn_off_warning = 0;
2247
2248 #ifdef HAVE_SETLOCALE
2249 /* Make sure numbers are parsed as we expect. */
2250 setlocale (LC_NUMERIC, "C");
2251 #endif /* HAVE_SETLOCALE */
2252
2253 /* Compute the default load-path. */
2254 #ifdef CANNOT_DUMP
2255 normal = PATH_LOADSEARCH;
2256 Vload_path = decode_env_path (0, normal);
2257 #else
2258 if (NILP (Vpurify_flag))
2259 normal = PATH_LOADSEARCH;
2260 else
2261 normal = PATH_DUMPLOADSEARCH;
2262
2263 /* In a dumped Emacs, we normally have to reset the value of
2264 Vload_path from PATH_LOADSEARCH, since the value that was dumped
2265 uses ../lisp, instead of the path of the installed elisp
2266 libraries. However, if it appears that Vload_path was changed
2267 from the default before dumping, don't override that value. */
2268 if (initialized)
2269 {
2270 if (! NILP (Fequal (dump_path, Vload_path)))
2271 {
2272 Vload_path = decode_env_path (0, normal);
2273 if (!NILP (Vinstallation_directory))
2274 {
2275 /* Add to the path the lisp subdir of the
2276 installation dir, if it exists. */
2277 Lisp_Object tem, tem1;
2278 tem = Fexpand_file_name (build_string ("lisp"),
2279 Vinstallation_directory);
2280 tem1 = Ffile_exists_p (tem);
2281 if (!NILP (tem1))
2282 {
2283 if (NILP (Fmember (tem, Vload_path)))
2284 {
2285 turn_off_warning = 1;
2286 Vload_path = nconc2 (Vload_path, Fcons (tem, Qnil));
2287 }
2288 }
2289 else
2290 /* That dir doesn't exist, so add the build-time
2291 Lisp dirs instead. */
2292 Vload_path = nconc2 (Vload_path, dump_path);
2293
2294 /* Add site-list under the installation dir, if it exists. */
2295 tem = Fexpand_file_name (build_string ("site-lisp"),
2296 Vinstallation_directory);
2297 tem1 = Ffile_exists_p (tem);
2298 if (!NILP (tem1))
2299 {
2300 if (NILP (Fmember (tem, Vload_path)))
2301 Vload_path = nconc2 (Vload_path, Fcons (tem, Qnil));
2302 }
2303 }
2304 }
2305 }
2306 else
2307 {
2308 /* ../lisp refers to the build directory.
2309 NORMAL refers to the lisp dir in the source directory. */
2310 Vload_path = Fcons (build_string ("../lisp"),
2311 decode_env_path (0, normal));
2312 dump_path = Vload_path;
2313 }
2314 #endif
2315
2316 #ifndef WINDOWSNT
2317 /* When Emacs is invoked over network shares on NT, PATH_LOADSEARCH is
2318 almost never correct, thereby causing a warning to be printed out that
2319 confuses users. Since PATH_LOADSEARCH is always overridden by the
2320 EMACSLOADPATH environment variable below, disable the warning on NT. */
2321
2322 /* Warn if dirs in the *standard* path don't exist. */
2323 if (!turn_off_warning)
2324 {
2325 Lisp_Object path_tail;
2326
2327 for (path_tail = Vload_path;
2328 !NILP (path_tail);
2329 path_tail = XCONS (path_tail)->cdr)
2330 {
2331 Lisp_Object dirfile;
2332 dirfile = Fcar (path_tail);
2333 if (STRINGP (dirfile))
2334 {
2335 dirfile = Fdirectory_file_name (dirfile);
2336 if (access (XSTRING (dirfile)->data, 0) < 0)
2337 fprintf (stderr,
2338 "Warning: Lisp directory `%s' does not exist.\n",
2339 XSTRING (Fcar (path_tail))->data);
2340 }
2341 }
2342 }
2343 #endif /* WINDOWSNT */
2344
2345 /* If the EMACSLOADPATH environment variable is set, use its value.
2346 This doesn't apply if we're dumping. */
2347 #ifndef CANNOT_DUMP
2348 if (NILP (Vpurify_flag)
2349 && egetenv ("EMACSLOADPATH"))
2350 #endif
2351 Vload_path = decode_env_path ("EMACSLOADPATH", normal);
2352
2353 Vvalues = Qnil;
2354
2355 load_in_progress = 0;
2356
2357 load_descriptor_list = Qnil;
2358 }
2359
2360 void
2361 syms_of_lread ()
2362 {
2363 defsubr (&Sread);
2364 defsubr (&Sread_from_string);
2365 defsubr (&Sintern);
2366 defsubr (&Sintern_soft);
2367 defsubr (&Sunintern);
2368 defsubr (&Sload);
2369 defsubr (&Seval_buffer);
2370 defsubr (&Seval_region);
2371 defsubr (&Sread_char);
2372 defsubr (&Sread_char_exclusive);
2373 defsubr (&Sread_event);
2374 defsubr (&Sget_file_char);
2375 defsubr (&Smapatoms);
2376
2377 DEFVAR_LISP ("obarray", &Vobarray,
2378 "Symbol table for use by `intern' and `read'.\n\
2379 It is a vector whose length ought to be prime for best results.\n\
2380 The vector's contents don't make sense if examined from Lisp programs;\n\
2381 to find all the symbols in an obarray, use `mapatoms'.");
2382
2383 DEFVAR_LISP ("values", &Vvalues,
2384 "List of values of all expressions which were read, evaluated and printed.\n\
2385 Order is reverse chronological.");
2386
2387 DEFVAR_LISP ("standard-input", &Vstandard_input,
2388 "Stream for read to get input from.\n\
2389 See documentation of `read' for possible values.");
2390 Vstandard_input = Qt;
2391
2392 DEFVAR_LISP ("load-path", &Vload_path,
2393 "*List of directories to search for files to load.\n\
2394 Each element is a string (directory name) or nil (try default directory).\n\
2395 Initialized based on EMACSLOADPATH environment variable, if any,\n\
2396 otherwise to default specified by file `paths.h' when Emacs was built.");
2397
2398 DEFVAR_BOOL ("load-in-progress", &load_in_progress,
2399 "Non-nil iff inside of `load'.");
2400
2401 DEFVAR_LISP ("after-load-alist", &Vafter_load_alist,
2402 "An alist of expressions to be evalled when particular files are loaded.\n\
2403 Each element looks like (FILENAME FORMS...).\n\
2404 When `load' is run and the file-name argument is FILENAME,\n\
2405 the FORMS in the corresponding element are executed at the end of loading.\n\n\
2406 FILENAME must match exactly! Normally FILENAME is the name of a library,\n\
2407 with no directory specified, since that is how `load' is normally called.\n\
2408 An error in FORMS does not undo the load,\n\
2409 but does prevent execution of the rest of the FORMS.");
2410 Vafter_load_alist = Qnil;
2411
2412 DEFVAR_LISP ("load-history", &Vload_history,
2413 "Alist mapping source file names to symbols and features.\n\
2414 Each alist element is a list that starts with a file name,\n\
2415 except for one element (optional) that starts with nil and describes\n\
2416 definitions evaluated from buffers not visiting files.\n\
2417 The remaining elements of each list are symbols defined as functions\n\
2418 or variables, and cons cells `(provide . FEATURE)' and `(require . FEATURE)'.");
2419 Vload_history = Qnil;
2420
2421 DEFVAR_LISP ("load-file-name", &Vload_file_name,
2422 "Full name of file being loaded by `load'.");
2423 Vload_file_name = Qnil;
2424
2425 DEFVAR_LISP ("current-load-list", &Vcurrent_load_list,
2426 "Used for internal purposes by `load'.");
2427 Vcurrent_load_list = Qnil;
2428
2429 DEFVAR_LISP ("load-read-function", &Vload_read_function,
2430 "Function used by `load' and `eval-region' for reading expressions.\n\
2431 The default is nil, which means use the function `read'.");
2432 Vload_read_function = Qnil;
2433
2434 DEFVAR_BOOL ("load-force-doc-strings", &load_force_doc_strings,
2435 "Non-nil means `load' should force-load all dynamic doc strings.\n\
2436 This is useful when the file being loaded is a temporary copy.");
2437 load_force_doc_strings = 0;
2438
2439 DEFVAR_LISP ("source-directory", &Vsource_directory,
2440 "Directory in which Emacs sources were found when Emacs was built.\n\
2441 You cannot count on them to still be there!");
2442 Vsource_directory
2443 = Fexpand_file_name (build_string ("../"),
2444 Fcar (decode_env_path (0, PATH_DUMPLOADSEARCH)));
2445
2446 /* Vsource_directory was initialized in init_lread. */
2447
2448 load_descriptor_list = Qnil;
2449 staticpro (&load_descriptor_list);
2450
2451 Qcurrent_load_list = intern ("current-load-list");
2452 staticpro (&Qcurrent_load_list);
2453
2454 Qstandard_input = intern ("standard-input");
2455 staticpro (&Qstandard_input);
2456
2457 Qread_char = intern ("read-char");
2458 staticpro (&Qread_char);
2459
2460 Qget_file_char = intern ("get-file-char");
2461 staticpro (&Qget_file_char);
2462
2463 Qbackquote = intern ("`");
2464 staticpro (&Qbackquote);
2465 Qcomma = intern (",");
2466 staticpro (&Qcomma);
2467 Qcomma_at = intern (",@");
2468 staticpro (&Qcomma_at);
2469 Qcomma_dot = intern (",.");
2470 staticpro (&Qcomma_dot);
2471
2472 Qascii_character = intern ("ascii-character");
2473 staticpro (&Qascii_character);
2474
2475 Qfunction = intern ("function");
2476 staticpro (&Qfunction);
2477
2478 Qload = intern ("load");
2479 staticpro (&Qload);
2480
2481 Qload_file_name = intern ("load-file-name");
2482 staticpro (&Qload_file_name);
2483
2484 staticpro (&dump_path);
2485 }