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1 /* Lisp parsing and input streams.
2 Copyright (C) 1985, 86, 87, 88, 89, 93, 94, 95, 97, 98, 99, 2000
3 Free Software Foundation, Inc.
4
5 This file is part of GNU Emacs.
6
7 GNU Emacs is free software; you can redistribute it and/or modify
8 it under the terms of the GNU General Public License as published by
9 the Free Software Foundation; either version 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 #include "intervals.h"
31 #include "buffer.h"
32 #include "charset.h"
33 #include <epaths.h>
34 #include "commands.h"
35 #include "keyboard.h"
36 #include "termhooks.h"
37
38 #ifdef lint
39 #include <sys/inode.h>
40 #endif /* lint */
41
42 #ifdef MSDOS
43 #if __DJGPP__ < 2
44 #include <unistd.h> /* to get X_OK */
45 #endif
46 #include "msdos.h"
47 #endif
48
49 #ifdef HAVE_UNISTD_H
50 #include <unistd.h>
51 #endif
52
53 #ifndef X_OK
54 #define X_OK 01
55 #endif
56
57 #include <math.h>
58
59 #ifdef HAVE_SETLOCALE
60 #include <locale.h>
61 #endif /* HAVE_SETLOCALE */
62
63 #ifndef O_RDONLY
64 #define O_RDONLY 0
65 #endif
66
67 #ifdef HAVE_FSEEKO
68 #define file_offset off_t
69 #define file_tell ftello
70 #else
71 #define file_offset long
72 #define file_tell ftell
73 #endif
74
75 #ifndef USE_CRT_DLL
76 extern int errno;
77 #endif
78
79 Lisp_Object Qread_char, Qget_file_char, Qstandard_input, Qcurrent_load_list;
80 Lisp_Object Qvariable_documentation, Vvalues, Vstandard_input, Vafter_load_alist;
81 Lisp_Object Qascii_character, Qload, Qload_file_name;
82 Lisp_Object Qbackquote, Qcomma, Qcomma_at, Qcomma_dot, Qfunction;
83 Lisp_Object Qinhibit_file_name_operation;
84
85 extern Lisp_Object Qevent_symbol_element_mask;
86 extern Lisp_Object Qfile_exists_p;
87
88 /* non-zero if inside `load' */
89 int load_in_progress;
90
91 /* Directory in which the sources were found. */
92 Lisp_Object Vsource_directory;
93
94 /* Search path for files to be loaded. */
95 Lisp_Object Vload_path;
96
97 /* File name of user's init file. */
98 Lisp_Object Vuser_init_file;
99
100 /* This is the user-visible association list that maps features to
101 lists of defs in their load files. */
102 Lisp_Object Vload_history;
103
104 /* This is used to build the load history. */
105 Lisp_Object Vcurrent_load_list;
106
107 /* List of files that were preloaded. */
108 Lisp_Object Vpreloaded_file_list;
109
110 /* Name of file actually being read by `load'. */
111 Lisp_Object Vload_file_name;
112
113 /* Function to use for reading, in `load' and friends. */
114 Lisp_Object Vload_read_function;
115
116 /* The association list of objects read with the #n=object form.
117 Each member of the list has the form (n . object), and is used to
118 look up the object for the corresponding #n# construct.
119 It must be set to nil before all top-level calls to read0. */
120 Lisp_Object read_objects;
121
122 /* Nonzero means load should forcibly load all dynamic doc strings. */
123 static int load_force_doc_strings;
124
125 /* Nonzero means read should convert strings to unibyte. */
126 static int load_convert_to_unibyte;
127
128 /* Function to use for loading an Emacs lisp source file (not
129 compiled) instead of readevalloop. */
130 Lisp_Object Vload_source_file_function;
131
132 /* List of all DEFVAR_BOOL variables. Used by the byte optimizer. */
133 Lisp_Object Vbyte_boolean_vars;
134
135 /* List of descriptors now open for Fload. */
136 static Lisp_Object load_descriptor_list;
137
138 /* File for get_file_char to read from. Use by load. */
139 static FILE *instream;
140
141 /* When nonzero, read conses in pure space */
142 static int read_pure;
143
144 /* For use within read-from-string (this reader is non-reentrant!!) */
145 static int read_from_string_index;
146 static int read_from_string_index_byte;
147 static int read_from_string_limit;
148
149 /* Number of bytes left to read in the buffer character
150 that `readchar' has already advanced over. */
151 static int readchar_backlog;
152
153 /* This contains the last string skipped with #@. */
154 static char *saved_doc_string;
155 /* Length of buffer allocated in saved_doc_string. */
156 static int saved_doc_string_size;
157 /* Length of actual data in saved_doc_string. */
158 static int saved_doc_string_length;
159 /* This is the file position that string came from. */
160 static file_offset saved_doc_string_position;
161
162 /* This contains the previous string skipped with #@.
163 We copy it from saved_doc_string when a new string
164 is put in saved_doc_string. */
165 static char *prev_saved_doc_string;
166 /* Length of buffer allocated in prev_saved_doc_string. */
167 static int prev_saved_doc_string_size;
168 /* Length of actual data in prev_saved_doc_string. */
169 static int prev_saved_doc_string_length;
170 /* This is the file position that string came from. */
171 static file_offset prev_saved_doc_string_position;
172
173 /* Nonzero means inside a new-style backquote
174 with no surrounding parentheses.
175 Fread initializes this to zero, so we need not specbind it
176 or worry about what happens to it when there is an error. */
177 static int new_backquote_flag;
178
179 /* A list of file names for files being loaded in Fload. Used to
180 check for recursive loads. */
181
182 static Lisp_Object Vloads_in_progress;
183
184 /* Limit of the depth of recursive loads. */
185
186 Lisp_Object Vrecursive_load_depth_limit;
187
188 /* Non-zero means load dangerous compiled Lisp files. */
189
190 int load_dangerous_libraries;
191
192 /* A regular expression used to detect files compiled with Emacs. */
193
194 static Lisp_Object Vbytecomp_version_regexp;
195
196 static void readevalloop P_ ((Lisp_Object, FILE*, Lisp_Object,
197 Lisp_Object (*) (), int,
198 Lisp_Object, Lisp_Object));
199 static Lisp_Object load_unwind P_ ((Lisp_Object));
200 static Lisp_Object load_descriptor_unwind P_ ((Lisp_Object));
201
202 \f
203 /* Handle unreading and rereading of characters.
204 Write READCHAR to read a character,
205 UNREAD(c) to unread c to be read again.
206
207 These macros actually read/unread a byte code, multibyte characters
208 are not handled here. The caller should manage them if necessary.
209 */
210
211 #define READCHAR readchar (readcharfun)
212 #define UNREAD(c) unreadchar (readcharfun, c)
213
214 static int
215 readchar (readcharfun)
216 Lisp_Object readcharfun;
217 {
218 Lisp_Object tem;
219 register int c;
220
221 if (BUFFERP (readcharfun))
222 {
223 register struct buffer *inbuffer = XBUFFER (readcharfun);
224
225 int pt_byte = BUF_PT_BYTE (inbuffer);
226 int orig_pt_byte = pt_byte;
227
228 if (readchar_backlog > 0)
229 /* We get the address of the byte just passed,
230 which is the last byte of the character.
231 The other bytes in this character are consecutive with it,
232 because the gap can't be in the middle of a character. */
233 return *(BUF_BYTE_ADDRESS (inbuffer, BUF_PT_BYTE (inbuffer) - 1)
234 - --readchar_backlog);
235
236 if (pt_byte >= BUF_ZV_BYTE (inbuffer))
237 return -1;
238
239 readchar_backlog = -1;
240
241 if (! NILP (inbuffer->enable_multibyte_characters))
242 {
243 /* Fetch the character code from the buffer. */
244 unsigned char *p = BUF_BYTE_ADDRESS (inbuffer, pt_byte);
245 BUF_INC_POS (inbuffer, pt_byte);
246 c = STRING_CHAR (p, pt_byte - orig_pt_byte);
247 }
248 else
249 {
250 c = BUF_FETCH_BYTE (inbuffer, pt_byte);
251 pt_byte++;
252 }
253 SET_BUF_PT_BOTH (inbuffer, BUF_PT (inbuffer) + 1, pt_byte);
254
255 return c;
256 }
257 if (MARKERP (readcharfun))
258 {
259 register struct buffer *inbuffer = XMARKER (readcharfun)->buffer;
260
261 int bytepos = marker_byte_position (readcharfun);
262 int orig_bytepos = bytepos;
263
264 if (readchar_backlog > 0)
265 /* We get the address of the byte just passed,
266 which is the last byte of the character.
267 The other bytes in this character are consecutive with it,
268 because the gap can't be in the middle of a character. */
269 return *(BUF_BYTE_ADDRESS (inbuffer, XMARKER (readcharfun)->bytepos - 1)
270 - --readchar_backlog);
271
272 if (bytepos >= BUF_ZV_BYTE (inbuffer))
273 return -1;
274
275 readchar_backlog = -1;
276
277 if (! NILP (inbuffer->enable_multibyte_characters))
278 {
279 /* Fetch the character code from the buffer. */
280 unsigned char *p = BUF_BYTE_ADDRESS (inbuffer, bytepos);
281 BUF_INC_POS (inbuffer, bytepos);
282 c = STRING_CHAR (p, bytepos - orig_bytepos);
283 }
284 else
285 {
286 c = BUF_FETCH_BYTE (inbuffer, bytepos);
287 bytepos++;
288 }
289
290 XMARKER (readcharfun)->bytepos = bytepos;
291 XMARKER (readcharfun)->charpos++;
292
293 return c;
294 }
295
296 if (EQ (readcharfun, Qlambda))
297 return read_bytecode_char (0);
298
299 if (EQ (readcharfun, Qget_file_char))
300 {
301 c = getc (instream);
302 #ifdef EINTR
303 /* Interrupted reads have been observed while reading over the network */
304 while (c == EOF && ferror (instream) && errno == EINTR)
305 {
306 clearerr (instream);
307 c = getc (instream);
308 }
309 #endif
310 return c;
311 }
312
313 if (STRINGP (readcharfun))
314 {
315 if (read_from_string_index >= read_from_string_limit)
316 c = -1;
317 else
318 FETCH_STRING_CHAR_ADVANCE (c, readcharfun,
319 read_from_string_index,
320 read_from_string_index_byte);
321
322 return c;
323 }
324
325 tem = call0 (readcharfun);
326
327 if (NILP (tem))
328 return -1;
329 return XINT (tem);
330 }
331
332 /* Unread the character C in the way appropriate for the stream READCHARFUN.
333 If the stream is a user function, call it with the char as argument. */
334
335 static void
336 unreadchar (readcharfun, c)
337 Lisp_Object readcharfun;
338 int c;
339 {
340 if (c == -1)
341 /* Don't back up the pointer if we're unreading the end-of-input mark,
342 since readchar didn't advance it when we read it. */
343 ;
344 else if (BUFFERP (readcharfun))
345 {
346 struct buffer *b = XBUFFER (readcharfun);
347 int bytepos = BUF_PT_BYTE (b);
348
349 if (readchar_backlog >= 0)
350 readchar_backlog++;
351 else
352 {
353 BUF_PT (b)--;
354 if (! NILP (b->enable_multibyte_characters))
355 BUF_DEC_POS (b, bytepos);
356 else
357 bytepos--;
358
359 BUF_PT_BYTE (b) = bytepos;
360 }
361 }
362 else if (MARKERP (readcharfun))
363 {
364 struct buffer *b = XMARKER (readcharfun)->buffer;
365 int bytepos = XMARKER (readcharfun)->bytepos;
366
367 if (readchar_backlog >= 0)
368 readchar_backlog++;
369 else
370 {
371 XMARKER (readcharfun)->charpos--;
372 if (! NILP (b->enable_multibyte_characters))
373 BUF_DEC_POS (b, bytepos);
374 else
375 bytepos--;
376
377 XMARKER (readcharfun)->bytepos = bytepos;
378 }
379 }
380 else if (STRINGP (readcharfun))
381 {
382 read_from_string_index--;
383 read_from_string_index_byte
384 = string_char_to_byte (readcharfun, read_from_string_index);
385 }
386 else if (EQ (readcharfun, Qlambda))
387 read_bytecode_char (1);
388 else if (EQ (readcharfun, Qget_file_char))
389 ungetc (c, instream);
390 else
391 call1 (readcharfun, make_number (c));
392 }
393
394 static Lisp_Object read0 (), read1 (), read_list (), read_vector ();
395 static int read_multibyte ();
396 static Lisp_Object substitute_object_recurse ();
397 static void substitute_object_in_subtree (), substitute_in_interval ();
398
399 \f
400 /* Get a character from the tty. */
401
402 extern Lisp_Object read_char ();
403
404 /* Read input events until we get one that's acceptable for our purposes.
405
406 If NO_SWITCH_FRAME is non-zero, switch-frame events are stashed
407 until we get a character we like, and then stuffed into
408 unread_switch_frame.
409
410 If ASCII_REQUIRED is non-zero, we check function key events to see
411 if the unmodified version of the symbol has a Qascii_character
412 property, and use that character, if present.
413
414 If ERROR_NONASCII is non-zero, we signal an error if the input we
415 get isn't an ASCII character with modifiers. If it's zero but
416 ASCII_REQUIRED is non-zero, we just re-read until we get an ASCII
417 character.
418
419 If INPUT_METHOD is nonzero, we invoke the current input method
420 if the character warrants that. */
421
422 Lisp_Object
423 read_filtered_event (no_switch_frame, ascii_required, error_nonascii,
424 input_method)
425 int no_switch_frame, ascii_required, error_nonascii, input_method;
426 {
427 register Lisp_Object val, delayed_switch_frame;
428
429 #ifdef HAVE_WINDOW_SYSTEM
430 if (display_busy_cursor_p)
431 cancel_busy_cursor ();
432 #endif
433
434 delayed_switch_frame = Qnil;
435
436 /* Read until we get an acceptable event. */
437 retry:
438 val = read_char (0, 0, 0,
439 (input_method ? Qnil : Qt),
440 0);
441
442 if (BUFFERP (val))
443 goto retry;
444
445 /* switch-frame events are put off until after the next ASCII
446 character. This is better than signaling an error just because
447 the last characters were typed to a separate minibuffer frame,
448 for example. Eventually, some code which can deal with
449 switch-frame events will read it and process it. */
450 if (no_switch_frame
451 && EVENT_HAS_PARAMETERS (val)
452 && EQ (EVENT_HEAD (val), Qswitch_frame))
453 {
454 delayed_switch_frame = val;
455 goto retry;
456 }
457
458 if (ascii_required)
459 {
460 /* Convert certain symbols to their ASCII equivalents. */
461 if (SYMBOLP (val))
462 {
463 Lisp_Object tem, tem1;
464 tem = Fget (val, Qevent_symbol_element_mask);
465 if (!NILP (tem))
466 {
467 tem1 = Fget (Fcar (tem), Qascii_character);
468 /* Merge this symbol's modifier bits
469 with the ASCII equivalent of its basic code. */
470 if (!NILP (tem1))
471 XSETFASTINT (val, XINT (tem1) | XINT (Fcar (Fcdr (tem))));
472 }
473 }
474
475 /* If we don't have a character now, deal with it appropriately. */
476 if (!INTEGERP (val))
477 {
478 if (error_nonascii)
479 {
480 Vunread_command_events = Fcons (val, Qnil);
481 error ("Non-character input-event");
482 }
483 else
484 goto retry;
485 }
486 }
487
488 if (! NILP (delayed_switch_frame))
489 unread_switch_frame = delayed_switch_frame;
490
491 #ifdef HAVE_WINDOW_SYSTEM
492 if (display_busy_cursor_p)
493 start_busy_cursor ();
494 #endif
495 return val;
496 }
497
498 DEFUN ("read-char", Fread_char, Sread_char, 0, 2, 0,
499 "Read a character from the command input (keyboard or macro).\n\
500 It is returned as a number.\n\
501 If the user generates an event which is not a character (i.e. a mouse\n\
502 click or function key event), `read-char' signals an error. As an\n\
503 exception, switch-frame events are put off until non-ASCII events can\n\
504 be read.\n\
505 If you want to read non-character events, or ignore them, call\n\
506 `read-event' or `read-char-exclusive' instead.\n\
507 \n\
508 If the optional argument PROMPT is non-nil, display that as a prompt.\n\
509 If the optional argument INHERIT-INPUT-METHOD is non-nil and some\n\
510 input method is turned on in the current buffer, that input method\n\
511 is used for reading a character.")
512 (prompt, inherit_input_method)
513 Lisp_Object prompt, inherit_input_method;
514 {
515 if (! NILP (prompt))
516 message_with_string ("%s", prompt, 0);
517 return read_filtered_event (1, 1, 1, ! NILP (inherit_input_method));
518 }
519
520 DEFUN ("read-event", Fread_event, Sread_event, 0, 2, 0,
521 "Read an event object from the input stream.\n\
522 If the optional argument PROMPT is non-nil, display that as a prompt.\n\
523 If the optional argument INHERIT-INPUT-METHOD is non-nil and some\n\
524 input method is turned on in the current buffer, that input method\n\
525 is used for reading a character.")
526 (prompt, inherit_input_method)
527 Lisp_Object prompt, inherit_input_method;
528 {
529 if (! NILP (prompt))
530 message_with_string ("%s", prompt, 0);
531 return read_filtered_event (0, 0, 0, ! NILP (inherit_input_method));
532 }
533
534 DEFUN ("read-char-exclusive", Fread_char_exclusive, Sread_char_exclusive, 0, 2, 0,
535 "Read a character from the command input (keyboard or macro).\n\
536 It is returned as a number. Non-character events are ignored.\n\
537 \n\
538 If the optional argument PROMPT is non-nil, display that as a prompt.\n\
539 If the optional argument INHERIT-INPUT-METHOD is non-nil and some\n\
540 input method is turned on in the current buffer, that input method\n\
541 is used for reading a character.")
542 (prompt, inherit_input_method)
543 Lisp_Object prompt, inherit_input_method;
544 {
545 if (! NILP (prompt))
546 message_with_string ("%s", prompt, 0);
547 return read_filtered_event (1, 1, 0, ! NILP (inherit_input_method));
548 }
549
550 DEFUN ("get-file-char", Fget_file_char, Sget_file_char, 0, 0, 0,
551 "Don't use this yourself.")
552 ()
553 {
554 register Lisp_Object val;
555 XSETINT (val, getc (instream));
556 return val;
557 }
558
559
560 \f
561 /* Value is non-zero if the file asswociated with file descriptor FD
562 is a compiled Lisp file that's safe to load. Only files compiled
563 with Emacs are safe to load. Files compiled with XEmacs can lead
564 to a crash in Fbyte_code because of an incompatible change in the
565 byte compiler. */
566
567 static int
568 safe_to_load_p (fd)
569 int fd;
570 {
571 char buf[512];
572 int nbytes, i;
573 int safe_p = 1;
574
575 /* Read the first few bytes from the file, and look for a line
576 specifying the byte compiler version used. */
577 nbytes = emacs_read (fd, buf, sizeof buf - 1);
578 if (nbytes > 0)
579 {
580 buf[nbytes] = '\0';
581
582 /* Skip to the next newline, skipping over the initial `ELC'
583 with NUL bytes following it. */
584 for (i = 0; i < nbytes && buf[i] != '\n'; ++i)
585 ;
586
587 if (i < nbytes
588 && fast_c_string_match_ignore_case (Vbytecomp_version_regexp,
589 buf + i) < 0)
590 safe_p = 0;
591 }
592
593 lseek (fd, 0, SEEK_SET);
594 return safe_p;
595 }
596
597
598 /* Callback for record_unwind_protect. Restore the old load list OLD,
599 after loading a file successfully. */
600
601 static Lisp_Object
602 record_load_unwind (old)
603 Lisp_Object old;
604 {
605 return Vloads_in_progress = old;
606 }
607
608
609 DEFUN ("load", Fload, Sload, 1, 5, 0,
610 "Execute a file of Lisp code named FILE.\n\
611 First try FILE with `.elc' appended, then try with `.el',\n\
612 then try FILE unmodified.\n\
613 This function searches the directories in `load-path'.\n\
614 If optional second arg NOERROR is non-nil,\n\
615 report no error if FILE doesn't exist.\n\
616 Print messages at start and end of loading unless\n\
617 optional third arg NOMESSAGE is non-nil.\n\
618 If optional fourth arg NOSUFFIX is non-nil, don't try adding\n\
619 suffixes `.elc' or `.el' to the specified name FILE.\n\
620 If optional fifth arg MUST-SUFFIX is non-nil, insist on\n\
621 the suffix `.elc' or `.el'; don't accept just FILE unless\n\
622 it ends in one of those suffixes or includes a directory name.\n\
623 Return t if file exists.")
624 (file, noerror, nomessage, nosuffix, must_suffix)
625 Lisp_Object file, noerror, nomessage, nosuffix, must_suffix;
626 {
627 register FILE *stream;
628 register int fd = -1;
629 register Lisp_Object lispstream;
630 int count = specpdl_ptr - specpdl;
631 Lisp_Object temp;
632 struct gcpro gcpro1;
633 Lisp_Object found;
634 /* 1 means we printed the ".el is newer" message. */
635 int newer = 0;
636 /* 1 means we are loading a compiled file. */
637 int compiled = 0;
638 Lisp_Object handler;
639 int safe_p = 1;
640 char *fmode = "r";
641 #ifdef DOS_NT
642 fmode = "rt";
643 #endif /* DOS_NT */
644
645 CHECK_STRING (file, 0);
646
647 /* If file name is magic, call the handler. */
648 handler = Ffind_file_name_handler (file, Qload);
649 if (!NILP (handler))
650 return call5 (handler, Qload, file, noerror, nomessage, nosuffix);
651
652 /* Do this after the handler to avoid
653 the need to gcpro noerror, nomessage and nosuffix.
654 (Below here, we care only whether they are nil or not.) */
655 file = Fsubstitute_in_file_name (file);
656
657 /* Avoid weird lossage with null string as arg,
658 since it would try to load a directory as a Lisp file */
659 if (XSTRING (file)->size > 0)
660 {
661 int size = STRING_BYTES (XSTRING (file));
662
663 GCPRO1 (file);
664
665 if (! NILP (must_suffix))
666 {
667 /* Don't insist on adding a suffix if FILE already ends with one. */
668 if (size > 3
669 && !strcmp (XSTRING (file)->data + size - 3, ".el"))
670 must_suffix = Qnil;
671 else if (size > 4
672 && !strcmp (XSTRING (file)->data + size - 4, ".elc"))
673 must_suffix = Qnil;
674 /* Don't insist on adding a suffix
675 if the argument includes a directory name. */
676 else if (! NILP (Ffile_name_directory (file)))
677 must_suffix = Qnil;
678 }
679
680 fd = openp (Vload_path, file,
681 (!NILP (nosuffix) ? ""
682 : ! NILP (must_suffix) ? ".elc.gz:.elc:.el.gz:.el"
683 : ".elc:.elc.gz:.el.gz:.el:"),
684 &found, 0);
685 UNGCPRO;
686 }
687
688 if (fd == -1)
689 {
690 if (NILP (noerror))
691 while (1)
692 Fsignal (Qfile_error, Fcons (build_string ("Cannot open load file"),
693 Fcons (file, Qnil)));
694 else
695 return Qnil;
696 }
697
698 /* Tell startup.el whether or not we found the user's init file. */
699 if (EQ (Qt, Vuser_init_file))
700 Vuser_init_file = found;
701
702 /* If FD is -2, that means openp found a magic file. */
703 if (fd == -2)
704 {
705 if (NILP (Fequal (found, file)))
706 /* If FOUND is a different file name from FILE,
707 find its handler even if we have already inhibited
708 the `load' operation on FILE. */
709 handler = Ffind_file_name_handler (found, Qt);
710 else
711 handler = Ffind_file_name_handler (found, Qload);
712 if (! NILP (handler))
713 return call5 (handler, Qload, found, noerror, nomessage, Qt);
714 }
715
716 /* Check if we're stuck in a recursive load cycle.
717
718 2000-09-21: It's not possible to just check for the file loaded
719 being a member of Vloads_in_progress. This fails because of the
720 way the byte compiler currently works; `provide's are not
721 evaluted, see font-lock.el/jit-lock.el as an example. This
722 leads to a certain amount of ``normal'' recursion.
723
724 Also, just loading a file recursively is not always an error in
725 the general case; the second load may do something different. */
726 if (INTEGERP (Vrecursive_load_depth_limit)
727 && XINT (Vrecursive_load_depth_limit) > 0)
728 {
729 Lisp_Object len = Flength (Vloads_in_progress);
730 if (XFASTINT (len) > XFASTINT (Vrecursive_load_depth_limit))
731 Fsignal (Qerror, Fcons (build_string ("Recursive load suspected"),
732 Fcons (found, Vloads_in_progress)));
733 record_unwind_protect (record_load_unwind, Vloads_in_progress);
734 Vloads_in_progress = Fcons (found, Vloads_in_progress);
735 }
736
737 if (!bcmp (&(XSTRING (found)->data[STRING_BYTES (XSTRING (found)) - 4]),
738 ".elc", 4))
739 /* Load .elc files directly, but not when they are
740 remote and have no handler! */
741 {
742 if (fd != -2)
743 {
744 struct stat s1, s2;
745 int result;
746
747 if (!safe_to_load_p (fd))
748 {
749 safe_p = 0;
750 if (!load_dangerous_libraries)
751 error ("File `%s' was not compiled in Emacs",
752 XSTRING (found)->data);
753 else if (!NILP (nomessage))
754 message_with_string ("File `%s' not compiled in Emacs", found, 1);
755 }
756
757 compiled = 1;
758
759 #ifdef DOS_NT
760 fmode = "rb";
761 #endif /* DOS_NT */
762 stat ((char *)XSTRING (found)->data, &s1);
763 XSTRING (found)->data[STRING_BYTES (XSTRING (found)) - 1] = 0;
764 result = stat ((char *)XSTRING (found)->data, &s2);
765 if (result >= 0 && (unsigned) s1.st_mtime < (unsigned) s2.st_mtime)
766 {
767 /* Make the progress messages mention that source is newer. */
768 newer = 1;
769
770 /* If we won't print another message, mention this anyway. */
771 if (! NILP (nomessage))
772 message_with_string ("Source file `%s' newer than byte-compiled file",
773 found, 1);
774 }
775 XSTRING (found)->data[STRING_BYTES (XSTRING (found)) - 1] = 'c';
776 }
777 }
778 else
779 {
780 load_source:
781
782 /* We are loading a source file (*.el). */
783 if (!NILP (Vload_source_file_function))
784 {
785 Lisp_Object val;
786
787 if (fd >= 0)
788 emacs_close (fd);
789 val = call4 (Vload_source_file_function, found, file,
790 NILP (noerror) ? Qnil : Qt,
791 NILP (nomessage) ? Qnil : Qt);
792 return unbind_to (count, val);
793 }
794 }
795
796 #ifdef WINDOWSNT
797 emacs_close (fd);
798 stream = fopen ((char *) XSTRING (found)->data, fmode);
799 #else /* not WINDOWSNT */
800 stream = fdopen (fd, fmode);
801 #endif /* not WINDOWSNT */
802 if (stream == 0)
803 {
804 emacs_close (fd);
805 error ("Failure to create stdio stream for %s", XSTRING (file)->data);
806 }
807
808 if (! NILP (Vpurify_flag))
809 Vpreloaded_file_list = Fcons (file, Vpreloaded_file_list);
810
811 if (NILP (nomessage))
812 {
813 if (!safe_p)
814 message_with_string ("Loading %s (compiled; note unsafe, not compiled in Emacs)...",
815 file, 1);
816 else if (!compiled)
817 message_with_string ("Loading %s (source)...", file, 1);
818 else if (newer)
819 message_with_string ("Loading %s (compiled; note, source file is newer)...",
820 file, 1);
821 else /* The typical case; compiled file newer than source file. */
822 message_with_string ("Loading %s...", file, 1);
823 }
824
825 GCPRO1 (file);
826 lispstream = Fcons (Qnil, Qnil);
827 XSETFASTINT (XCAR (lispstream), (EMACS_UINT)stream >> 16);
828 XSETFASTINT (XCDR (lispstream), (EMACS_UINT)stream & 0xffff);
829 record_unwind_protect (load_unwind, lispstream);
830 record_unwind_protect (load_descriptor_unwind, load_descriptor_list);
831 specbind (Qload_file_name, found);
832 specbind (Qinhibit_file_name_operation, Qnil);
833 load_descriptor_list
834 = Fcons (make_number (fileno (stream)), load_descriptor_list);
835 load_in_progress++;
836 readevalloop (Qget_file_char, stream, file, Feval, 0, Qnil, Qnil);
837 unbind_to (count, Qnil);
838
839 /* Run any load-hooks for this file. */
840 temp = Fassoc (file, Vafter_load_alist);
841 if (!NILP (temp))
842 Fprogn (Fcdr (temp));
843 UNGCPRO;
844
845 if (saved_doc_string)
846 free (saved_doc_string);
847 saved_doc_string = 0;
848 saved_doc_string_size = 0;
849
850 if (prev_saved_doc_string)
851 xfree (prev_saved_doc_string);
852 prev_saved_doc_string = 0;
853 prev_saved_doc_string_size = 0;
854
855 if (!noninteractive && NILP (nomessage))
856 {
857 if (!safe_p)
858 message_with_string ("Loading %s (compiled; note unsafe, not compiled in Emacs)...done",
859 file, 1);
860 else if (!compiled)
861 message_with_string ("Loading %s (source)...done", file, 1);
862 else if (newer)
863 message_with_string ("Loading %s (compiled; note, source file is newer)...done",
864 file, 1);
865 else /* The typical case; compiled file newer than source file. */
866 message_with_string ("Loading %s...done", file, 1);
867 }
868
869 return Qt;
870 }
871
872 static Lisp_Object
873 load_unwind (stream) /* used as unwind-protect function in load */
874 Lisp_Object stream;
875 {
876 fclose ((FILE *) (XFASTINT (XCAR (stream)) << 16
877 | XFASTINT (XCDR (stream))));
878 if (--load_in_progress < 0) load_in_progress = 0;
879 return Qnil;
880 }
881
882 static Lisp_Object
883 load_descriptor_unwind (oldlist)
884 Lisp_Object oldlist;
885 {
886 load_descriptor_list = oldlist;
887 return Qnil;
888 }
889
890 /* Close all descriptors in use for Floads.
891 This is used when starting a subprocess. */
892
893 void
894 close_load_descs ()
895 {
896 #ifndef WINDOWSNT
897 Lisp_Object tail;
898 for (tail = load_descriptor_list; !NILP (tail); tail = XCDR (tail))
899 emacs_close (XFASTINT (XCAR (tail)));
900 #endif
901 }
902 \f
903 static int
904 complete_filename_p (pathname)
905 Lisp_Object pathname;
906 {
907 register unsigned char *s = XSTRING (pathname)->data;
908 return (IS_DIRECTORY_SEP (s[0])
909 || (XSTRING (pathname)->size > 2
910 && IS_DEVICE_SEP (s[1]) && IS_DIRECTORY_SEP (s[2]))
911 #ifdef ALTOS
912 || *s == '@'
913 #endif
914 #ifdef VMS
915 || index (s, ':')
916 #endif /* VMS */
917 );
918 }
919
920 /* Search for a file whose name is STR, looking in directories
921 in the Lisp list PATH, and trying suffixes from SUFFIX.
922 SUFFIX is a string containing possible suffixes separated by colons.
923 On success, returns a file descriptor. On failure, returns -1.
924
925 EXEC_ONLY nonzero means don't open the files,
926 just look for one that is executable. In this case,
927 returns 1 on success.
928
929 If STOREPTR is nonzero, it points to a slot where the name of
930 the file actually found should be stored as a Lisp string.
931 nil is stored there on failure.
932
933 If the file we find is remote, return -2
934 but store the found remote file name in *STOREPTR.
935 We do not check for remote files if EXEC_ONLY is nonzero. */
936
937 int
938 openp (path, str, suffix, storeptr, exec_only)
939 Lisp_Object path, str;
940 char *suffix;
941 Lisp_Object *storeptr;
942 int exec_only;
943 {
944 register int fd;
945 int fn_size = 100;
946 char buf[100];
947 register char *fn = buf;
948 int absolute = 0;
949 int want_size;
950 Lisp_Object filename;
951 struct stat st;
952 struct gcpro gcpro1, gcpro2, gcpro3;
953 Lisp_Object string;
954
955 string = filename = Qnil;
956 GCPRO3 (str, string, filename);
957
958 if (storeptr)
959 *storeptr = Qnil;
960
961 if (complete_filename_p (str))
962 absolute = 1;
963
964 for (; !NILP (path); path = Fcdr (path))
965 {
966 char *nsuffix;
967
968 filename = Fexpand_file_name (str, Fcar (path));
969 if (!complete_filename_p (filename))
970 /* If there are non-absolute elts in PATH (eg ".") */
971 /* Of course, this could conceivably lose if luser sets
972 default-directory to be something non-absolute... */
973 {
974 filename = Fexpand_file_name (filename, current_buffer->directory);
975 if (!complete_filename_p (filename))
976 /* Give up on this path element! */
977 continue;
978 }
979
980 /* Calculate maximum size of any filename made from
981 this path element/specified file name and any possible suffix. */
982 want_size = strlen (suffix) + STRING_BYTES (XSTRING (filename)) + 1;
983 if (fn_size < want_size)
984 fn = (char *) alloca (fn_size = 100 + want_size);
985
986 nsuffix = suffix;
987
988 /* Loop over suffixes. */
989 while (1)
990 {
991 char *esuffix = (char *) index (nsuffix, ':');
992 int lsuffix = esuffix ? esuffix - nsuffix : strlen (nsuffix);
993 Lisp_Object handler;
994
995 /* Concatenate path element/specified name with the suffix.
996 If the directory starts with /:, remove that. */
997 if (XSTRING (filename)->size > 2
998 && XSTRING (filename)->data[0] == '/'
999 && XSTRING (filename)->data[1] == ':')
1000 {
1001 strncpy (fn, XSTRING (filename)->data + 2,
1002 STRING_BYTES (XSTRING (filename)) - 2);
1003 fn[STRING_BYTES (XSTRING (filename)) - 2] = 0;
1004 }
1005 else
1006 {
1007 strncpy (fn, XSTRING (filename)->data,
1008 STRING_BYTES (XSTRING (filename)));
1009 fn[STRING_BYTES (XSTRING (filename))] = 0;
1010 }
1011
1012 if (lsuffix != 0) /* Bug happens on CCI if lsuffix is 0. */
1013 strncat (fn, nsuffix, lsuffix);
1014
1015 /* Check that the file exists and is not a directory. */
1016 if (absolute)
1017 handler = Qnil;
1018 else
1019 handler = Ffind_file_name_handler (filename, Qfile_exists_p);
1020 if (! NILP (handler) && ! exec_only)
1021 {
1022 int exists;
1023
1024 string = build_string (fn);
1025 exists = ! NILP (exec_only ? Ffile_executable_p (string)
1026 : Ffile_readable_p (string));
1027 if (exists
1028 && ! NILP (Ffile_directory_p (build_string (fn))))
1029 exists = 0;
1030
1031 if (exists)
1032 {
1033 /* We succeeded; return this descriptor and filename. */
1034 if (storeptr)
1035 *storeptr = build_string (fn);
1036 UNGCPRO;
1037 return -2;
1038 }
1039 }
1040 else
1041 {
1042 int exists = (stat (fn, &st) >= 0
1043 && (st.st_mode & S_IFMT) != S_IFDIR);
1044 if (exists)
1045 {
1046 /* Check that we can access or open it. */
1047 if (exec_only)
1048 fd = (access (fn, X_OK) == 0) ? 1 : -1;
1049 else
1050 fd = emacs_open (fn, O_RDONLY, 0);
1051
1052 if (fd >= 0)
1053 {
1054 /* We succeeded; return this descriptor and filename. */
1055 if (storeptr)
1056 *storeptr = build_string (fn);
1057 UNGCPRO;
1058 return fd;
1059 }
1060 }
1061 }
1062
1063 /* Advance to next suffix. */
1064 if (esuffix == 0)
1065 break;
1066 nsuffix += lsuffix + 1;
1067 }
1068 if (absolute)
1069 break;
1070 }
1071
1072 UNGCPRO;
1073 return -1;
1074 }
1075
1076 \f
1077 /* Merge the list we've accumulated of globals from the current input source
1078 into the load_history variable. The details depend on whether
1079 the source has an associated file name or not. */
1080
1081 static void
1082 build_load_history (stream, source)
1083 FILE *stream;
1084 Lisp_Object source;
1085 {
1086 register Lisp_Object tail, prev, newelt;
1087 register Lisp_Object tem, tem2;
1088 register int foundit, loading;
1089
1090 loading = stream || !NARROWED;
1091
1092 tail = Vload_history;
1093 prev = Qnil;
1094 foundit = 0;
1095 while (!NILP (tail))
1096 {
1097 tem = Fcar (tail);
1098
1099 /* Find the feature's previous assoc list... */
1100 if (!NILP (Fequal (source, Fcar (tem))))
1101 {
1102 foundit = 1;
1103
1104 /* If we're loading, remove it. */
1105 if (loading)
1106 {
1107 if (NILP (prev))
1108 Vload_history = Fcdr (tail);
1109 else
1110 Fsetcdr (prev, Fcdr (tail));
1111 }
1112
1113 /* Otherwise, cons on new symbols that are not already members. */
1114 else
1115 {
1116 tem2 = Vcurrent_load_list;
1117
1118 while (CONSP (tem2))
1119 {
1120 newelt = Fcar (tem2);
1121
1122 if (NILP (Fmemq (newelt, tem)))
1123 Fsetcar (tail, Fcons (Fcar (tem),
1124 Fcons (newelt, Fcdr (tem))));
1125
1126 tem2 = Fcdr (tem2);
1127 QUIT;
1128 }
1129 }
1130 }
1131 else
1132 prev = tail;
1133 tail = Fcdr (tail);
1134 QUIT;
1135 }
1136
1137 /* If we're loading, cons the new assoc onto the front of load-history,
1138 the most-recently-loaded position. Also do this if we didn't find
1139 an existing member for the current source. */
1140 if (loading || !foundit)
1141 Vload_history = Fcons (Fnreverse (Vcurrent_load_list),
1142 Vload_history);
1143 }
1144
1145 Lisp_Object
1146 unreadpure (junk) /* Used as unwind-protect function in readevalloop */
1147 Lisp_Object junk;
1148 {
1149 read_pure = 0;
1150 return Qnil;
1151 }
1152
1153 static Lisp_Object
1154 readevalloop_1 (old)
1155 Lisp_Object old;
1156 {
1157 load_convert_to_unibyte = ! NILP (old);
1158 return Qnil;
1159 }
1160
1161 /* Signal an `end-of-file' error, if possible with file name
1162 information. */
1163
1164 static void
1165 end_of_file_error ()
1166 {
1167 Lisp_Object data;
1168
1169 if (STRINGP (Vload_file_name))
1170 data = Fcons (Vload_file_name, Qnil);
1171 else
1172 data = Qnil;
1173
1174 Fsignal (Qend_of_file, data);
1175 }
1176
1177 /* UNIBYTE specifies how to set load_convert_to_unibyte
1178 for this invocation.
1179 READFUN, if non-nil, is used instead of `read'. */
1180
1181 static void
1182 readevalloop (readcharfun, stream, sourcename, evalfun, printflag, unibyte, readfun)
1183 Lisp_Object readcharfun;
1184 FILE *stream;
1185 Lisp_Object sourcename;
1186 Lisp_Object (*evalfun) ();
1187 int printflag;
1188 Lisp_Object unibyte, readfun;
1189 {
1190 register int c;
1191 register Lisp_Object val;
1192 int count = specpdl_ptr - specpdl;
1193 struct gcpro gcpro1;
1194 struct buffer *b = 0;
1195 int continue_reading_p;
1196
1197 if (BUFFERP (readcharfun))
1198 b = XBUFFER (readcharfun);
1199 else if (MARKERP (readcharfun))
1200 b = XMARKER (readcharfun)->buffer;
1201
1202 specbind (Qstandard_input, readcharfun);
1203 specbind (Qcurrent_load_list, Qnil);
1204 record_unwind_protect (readevalloop_1, load_convert_to_unibyte ? Qt : Qnil);
1205 load_convert_to_unibyte = !NILP (unibyte);
1206
1207 readchar_backlog = -1;
1208
1209 GCPRO1 (sourcename);
1210
1211 LOADHIST_ATTACH (sourcename);
1212
1213 continue_reading_p = 1;
1214 while (continue_reading_p)
1215 {
1216 if (b != 0 && NILP (b->name))
1217 error ("Reading from killed buffer");
1218
1219 instream = stream;
1220 c = READCHAR;
1221 if (c == ';')
1222 {
1223 while ((c = READCHAR) != '\n' && c != -1);
1224 continue;
1225 }
1226 if (c < 0) break;
1227
1228 /* Ignore whitespace here, so we can detect eof. */
1229 if (c == ' ' || c == '\t' || c == '\n' || c == '\f' || c == '\r')
1230 continue;
1231
1232 if (!NILP (Vpurify_flag) && c == '(')
1233 {
1234 int count1 = specpdl_ptr - specpdl;
1235 record_unwind_protect (unreadpure, Qnil);
1236 val = read_list (-1, readcharfun);
1237 unbind_to (count1, Qnil);
1238 }
1239 else
1240 {
1241 UNREAD (c);
1242 read_objects = Qnil;
1243 if (!NILP (readfun))
1244 {
1245 val = call1 (readfun, readcharfun);
1246
1247 /* If READCHARFUN has set point to ZV, we should
1248 stop reading, even if the form read sets point
1249 to a different value when evaluated. */
1250 if (BUFFERP (readcharfun))
1251 {
1252 struct buffer *b = XBUFFER (readcharfun);
1253 if (BUF_PT (b) == BUF_ZV (b))
1254 continue_reading_p = 0;
1255 }
1256 }
1257 else if (! NILP (Vload_read_function))
1258 val = call1 (Vload_read_function, readcharfun);
1259 else
1260 val = read0 (readcharfun);
1261 }
1262
1263 val = (*evalfun) (val);
1264
1265 if (printflag)
1266 {
1267 Vvalues = Fcons (val, Vvalues);
1268 if (EQ (Vstandard_output, Qt))
1269 Fprin1 (val, Qnil);
1270 else
1271 Fprint (val, Qnil);
1272 }
1273 }
1274
1275 build_load_history (stream, sourcename);
1276 UNGCPRO;
1277
1278 unbind_to (count, Qnil);
1279 }
1280
1281 DEFUN ("eval-buffer", Feval_buffer, Seval_buffer, 0, 5, "",
1282 "Execute the current buffer as Lisp code.\n\
1283 Programs can pass two arguments, BUFFER and PRINTFLAG.\n\
1284 BUFFER is the buffer to evaluate (nil means use current buffer).\n\
1285 PRINTFLAG controls printing of output:\n\
1286 nil means discard it; anything else is stream for print.\n\
1287 \n\
1288 If the optional third argument FILENAME is non-nil,\n\
1289 it specifies the file name to use for `load-history'.\n\
1290 The optional fourth argument UNIBYTE specifies `load-convert-to-unibyte'\n\
1291 for this invocation.\n\
1292 \n\
1293 The optional fifth argument DO-ALLOW-PRINT, if not-nil, specifies that\n\
1294 `print' and related functions should work normally even if PRINTFLAG is nil.\n\
1295 \n\
1296 This function preserves the position of point.")
1297 (buffer, printflag, filename, unibyte, do_allow_print)
1298 Lisp_Object buffer, printflag, filename, unibyte, do_allow_print;
1299 {
1300 int count = specpdl_ptr - specpdl;
1301 Lisp_Object tem, buf;
1302
1303 if (NILP (buffer))
1304 buf = Fcurrent_buffer ();
1305 else
1306 buf = Fget_buffer (buffer);
1307 if (NILP (buf))
1308 error ("No such buffer");
1309
1310 if (NILP (printflag) && NILP (do_allow_print))
1311 tem = Qsymbolp;
1312 else
1313 tem = printflag;
1314
1315 if (NILP (filename))
1316 filename = XBUFFER (buf)->filename;
1317
1318 specbind (Qstandard_output, tem);
1319 record_unwind_protect (save_excursion_restore, save_excursion_save ());
1320 BUF_SET_PT (XBUFFER (buf), BUF_BEGV (XBUFFER (buf)));
1321 readevalloop (buf, 0, filename, Feval, !NILP (printflag), unibyte, Qnil);
1322 unbind_to (count, Qnil);
1323
1324 return Qnil;
1325 }
1326
1327 #if 0
1328 XDEFUN ("eval-current-buffer", Feval_current_buffer, Seval_current_buffer, 0, 1, "",
1329 "Execute the current buffer as Lisp code.\n\
1330 Programs can pass argument PRINTFLAG which controls printing of output:\n\
1331 nil means discard it; anything else is stream for print.\n\
1332 \n\
1333 If there is no error, point does not move. If there is an error,\n\
1334 point remains at the end of the last character read from the buffer.")
1335 (printflag)
1336 Lisp_Object printflag;
1337 {
1338 int count = specpdl_ptr - specpdl;
1339 Lisp_Object tem, cbuf;
1340
1341 cbuf = Fcurrent_buffer ()
1342
1343 if (NILP (printflag))
1344 tem = Qsymbolp;
1345 else
1346 tem = printflag;
1347 specbind (Qstandard_output, tem);
1348 record_unwind_protect (save_excursion_restore, save_excursion_save ());
1349 SET_PT (BEGV);
1350 readevalloop (cbuf, 0, XBUFFER (cbuf)->filename, Feval,
1351 !NILP (printflag), Qnil, Qnil);
1352 return unbind_to (count, Qnil);
1353 }
1354 #endif
1355
1356 DEFUN ("eval-region", Feval_region, Seval_region, 2, 4, "r",
1357 "Execute the region as Lisp code.\n\
1358 When called from programs, expects two arguments,\n\
1359 giving starting and ending indices in the current buffer\n\
1360 of the text to be executed.\n\
1361 Programs can pass third argument PRINTFLAG which controls output:\n\
1362 nil means discard it; anything else is stream for printing it.\n\
1363 Also the fourth argument READ-FUNCTION, if non-nil, is used\n\
1364 instead of `read' to read each expression. It gets one argument\n\
1365 which is the input stream for reading characters.\n\
1366 \n\
1367 This function does not move point.")
1368 (start, end, printflag, read_function)
1369 Lisp_Object start, end, printflag, read_function;
1370 {
1371 int count = specpdl_ptr - specpdl;
1372 Lisp_Object tem, cbuf;
1373
1374 cbuf = Fcurrent_buffer ();
1375
1376 if (NILP (printflag))
1377 tem = Qsymbolp;
1378 else
1379 tem = printflag;
1380 specbind (Qstandard_output, tem);
1381
1382 if (NILP (printflag))
1383 record_unwind_protect (save_excursion_restore, save_excursion_save ());
1384 record_unwind_protect (save_restriction_restore, save_restriction_save ());
1385
1386 /* This both uses start and checks its type. */
1387 Fgoto_char (start);
1388 Fnarrow_to_region (make_number (BEGV), end);
1389 readevalloop (cbuf, 0, XBUFFER (cbuf)->filename, Feval,
1390 !NILP (printflag), Qnil, read_function);
1391
1392 return unbind_to (count, Qnil);
1393 }
1394
1395 \f
1396 DEFUN ("read", Fread, Sread, 0, 1, 0,
1397 "Read one Lisp expression as text from STREAM, return as Lisp object.\n\
1398 If STREAM is nil, use the value of `standard-input' (which see).\n\
1399 STREAM or the value of `standard-input' may be:\n\
1400 a buffer (read from point and advance it)\n\
1401 a marker (read from where it points and advance it)\n\
1402 a function (call it with no arguments for each character,\n\
1403 call it with a char as argument to push a char back)\n\
1404 a string (takes text from string, starting at the beginning)\n\
1405 t (read text line using minibuffer and use it, or read from\n\
1406 standard input in batch mode).")
1407 (stream)
1408 Lisp_Object stream;
1409 {
1410 extern Lisp_Object Fread_minibuffer ();
1411
1412 if (NILP (stream))
1413 stream = Vstandard_input;
1414 if (EQ (stream, Qt))
1415 stream = Qread_char;
1416
1417 readchar_backlog = -1;
1418 new_backquote_flag = 0;
1419 read_objects = Qnil;
1420
1421 if (EQ (stream, Qread_char))
1422 return Fread_minibuffer (build_string ("Lisp expression: "), Qnil);
1423
1424 if (STRINGP (stream))
1425 return Fcar (Fread_from_string (stream, Qnil, Qnil));
1426
1427 return read0 (stream);
1428 }
1429
1430 DEFUN ("read-from-string", Fread_from_string, Sread_from_string, 1, 3, 0,
1431 "Read one Lisp expression which is represented as text by STRING.\n\
1432 Returns a cons: (OBJECT-READ . FINAL-STRING-INDEX).\n\
1433 START and END optionally delimit a substring of STRING from which to read;\n\
1434 they default to 0 and (length STRING) respectively.")
1435 (string, start, end)
1436 Lisp_Object string, start, end;
1437 {
1438 int startval, endval;
1439 Lisp_Object tem;
1440
1441 CHECK_STRING (string,0);
1442
1443 if (NILP (end))
1444 endval = XSTRING (string)->size;
1445 else
1446 {
1447 CHECK_NUMBER (end, 2);
1448 endval = XINT (end);
1449 if (endval < 0 || endval > XSTRING (string)->size)
1450 args_out_of_range (string, end);
1451 }
1452
1453 if (NILP (start))
1454 startval = 0;
1455 else
1456 {
1457 CHECK_NUMBER (start, 1);
1458 startval = XINT (start);
1459 if (startval < 0 || startval > endval)
1460 args_out_of_range (string, start);
1461 }
1462
1463 read_from_string_index = startval;
1464 read_from_string_index_byte = string_char_to_byte (string, startval);
1465 read_from_string_limit = endval;
1466
1467 new_backquote_flag = 0;
1468 read_objects = Qnil;
1469
1470 tem = read0 (string);
1471 return Fcons (tem, make_number (read_from_string_index));
1472 }
1473 \f
1474 /* Use this for recursive reads, in contexts where internal tokens
1475 are not allowed. */
1476
1477 static Lisp_Object
1478 read0 (readcharfun)
1479 Lisp_Object readcharfun;
1480 {
1481 register Lisp_Object val;
1482 int c;
1483
1484 val = read1 (readcharfun, &c, 0);
1485 if (c)
1486 Fsignal (Qinvalid_read_syntax, Fcons (Fmake_string (make_number (1),
1487 make_number (c)),
1488 Qnil));
1489
1490 return val;
1491 }
1492 \f
1493 static int read_buffer_size;
1494 static char *read_buffer;
1495
1496 /* Read multibyte form and return it as a character. C is a first
1497 byte of multibyte form, and rest of them are read from
1498 READCHARFUN. */
1499
1500 static int
1501 read_multibyte (c, readcharfun)
1502 register int c;
1503 Lisp_Object readcharfun;
1504 {
1505 /* We need the actual character code of this multibyte
1506 characters. */
1507 unsigned char str[MAX_MULTIBYTE_LENGTH];
1508 int len = 0;
1509
1510 str[len++] = c;
1511 while ((c = READCHAR) >= 0xA0
1512 && len < MAX_MULTIBYTE_LENGTH)
1513 str[len++] = c;
1514 UNREAD (c);
1515 return STRING_CHAR (str, len);
1516 }
1517
1518 /* Read a \-escape sequence, assuming we already read the `\'. */
1519
1520 static int
1521 read_escape (readcharfun, stringp)
1522 Lisp_Object readcharfun;
1523 int stringp;
1524 {
1525 register int c = READCHAR;
1526 switch (c)
1527 {
1528 case -1:
1529 error ("End of file");
1530
1531 case 'a':
1532 return '\007';
1533 case 'b':
1534 return '\b';
1535 case 'd':
1536 return 0177;
1537 case 'e':
1538 return 033;
1539 case 'f':
1540 return '\f';
1541 case 'n':
1542 return '\n';
1543 case 'r':
1544 return '\r';
1545 case 't':
1546 return '\t';
1547 case 'v':
1548 return '\v';
1549 case '\n':
1550 return -1;
1551 case ' ':
1552 if (stringp)
1553 return -1;
1554 return ' ';
1555
1556 case 'M':
1557 c = READCHAR;
1558 if (c != '-')
1559 error ("Invalid escape character syntax");
1560 c = READCHAR;
1561 if (c == '\\')
1562 c = read_escape (readcharfun, 0);
1563 return c | meta_modifier;
1564
1565 case 'S':
1566 c = READCHAR;
1567 if (c != '-')
1568 error ("Invalid escape character syntax");
1569 c = READCHAR;
1570 if (c == '\\')
1571 c = read_escape (readcharfun, 0);
1572 return c | shift_modifier;
1573
1574 case 'H':
1575 c = READCHAR;
1576 if (c != '-')
1577 error ("Invalid escape character syntax");
1578 c = READCHAR;
1579 if (c == '\\')
1580 c = read_escape (readcharfun, 0);
1581 return c | hyper_modifier;
1582
1583 case 'A':
1584 c = READCHAR;
1585 if (c != '-')
1586 error ("Invalid escape character syntax");
1587 c = READCHAR;
1588 if (c == '\\')
1589 c = read_escape (readcharfun, 0);
1590 return c | alt_modifier;
1591
1592 case 's':
1593 c = READCHAR;
1594 if (c != '-')
1595 error ("Invalid escape character syntax");
1596 c = READCHAR;
1597 if (c == '\\')
1598 c = read_escape (readcharfun, 0);
1599 return c | super_modifier;
1600
1601 case 'C':
1602 c = READCHAR;
1603 if (c != '-')
1604 error ("Invalid escape character syntax");
1605 case '^':
1606 c = READCHAR;
1607 if (c == '\\')
1608 c = read_escape (readcharfun, 0);
1609 if ((c & ~CHAR_MODIFIER_MASK) == '?')
1610 return 0177 | (c & CHAR_MODIFIER_MASK);
1611 else if (! SINGLE_BYTE_CHAR_P ((c & ~CHAR_MODIFIER_MASK)))
1612 return c | ctrl_modifier;
1613 /* ASCII control chars are made from letters (both cases),
1614 as well as the non-letters within 0100...0137. */
1615 else if ((c & 0137) >= 0101 && (c & 0137) <= 0132)
1616 return (c & (037 | ~0177));
1617 else if ((c & 0177) >= 0100 && (c & 0177) <= 0137)
1618 return (c & (037 | ~0177));
1619 else
1620 return c | ctrl_modifier;
1621
1622 case '0':
1623 case '1':
1624 case '2':
1625 case '3':
1626 case '4':
1627 case '5':
1628 case '6':
1629 case '7':
1630 /* An octal escape, as in ANSI C. */
1631 {
1632 register int i = c - '0';
1633 register int count = 0;
1634 while (++count < 3)
1635 {
1636 if ((c = READCHAR) >= '0' && c <= '7')
1637 {
1638 i *= 8;
1639 i += c - '0';
1640 }
1641 else
1642 {
1643 UNREAD (c);
1644 break;
1645 }
1646 }
1647 return i;
1648 }
1649
1650 case 'x':
1651 /* A hex escape, as in ANSI C. */
1652 {
1653 int i = 0;
1654 while (1)
1655 {
1656 c = READCHAR;
1657 if (c >= '0' && c <= '9')
1658 {
1659 i *= 16;
1660 i += c - '0';
1661 }
1662 else if ((c >= 'a' && c <= 'f')
1663 || (c >= 'A' && c <= 'F'))
1664 {
1665 i *= 16;
1666 if (c >= 'a' && c <= 'f')
1667 i += c - 'a' + 10;
1668 else
1669 i += c - 'A' + 10;
1670 }
1671 else
1672 {
1673 UNREAD (c);
1674 break;
1675 }
1676 }
1677 return i;
1678 }
1679
1680 default:
1681 if (BASE_LEADING_CODE_P (c))
1682 c = read_multibyte (c, readcharfun);
1683 return c;
1684 }
1685 }
1686
1687
1688 /* Read an integer in radix RADIX using READCHARFUN to read
1689 characters. RADIX must be in the interval [2..36]; if it isn't, a
1690 read error is signaled . Value is the integer read. Signals an
1691 error if encountering invalid read syntax or if RADIX is out of
1692 range. */
1693
1694 static Lisp_Object
1695 read_integer (readcharfun, radix)
1696 Lisp_Object readcharfun;
1697 int radix;
1698 {
1699 int number = 0, ndigits = 0, invalid_p, c, sign = 0;
1700
1701 if (radix < 2 || radix > 36)
1702 invalid_p = 1;
1703 else
1704 {
1705 number = ndigits = invalid_p = 0;
1706 sign = 1;
1707
1708 c = READCHAR;
1709 if (c == '-')
1710 {
1711 c = READCHAR;
1712 sign = -1;
1713 }
1714 else if (c == '+')
1715 c = READCHAR;
1716
1717 while (c >= 0)
1718 {
1719 int digit;
1720
1721 if (c >= '0' && c <= '9')
1722 digit = c - '0';
1723 else if (c >= 'a' && c <= 'z')
1724 digit = c - 'a' + 10;
1725 else if (c >= 'A' && c <= 'Z')
1726 digit = c - 'A' + 10;
1727 else
1728 {
1729 UNREAD (c);
1730 break;
1731 }
1732
1733 if (digit < 0 || digit >= radix)
1734 invalid_p = 1;
1735
1736 number = radix * number + digit;
1737 ++ndigits;
1738 c = READCHAR;
1739 }
1740 }
1741
1742 if (ndigits == 0 || invalid_p)
1743 {
1744 char buf[50];
1745 sprintf (buf, "integer, radix %d", radix);
1746 Fsignal (Qinvalid_read_syntax, Fcons (build_string (buf), Qnil));
1747 }
1748
1749 return make_number (sign * number);
1750 }
1751
1752
1753 /* If the next token is ')' or ']' or '.', we store that character
1754 in *PCH and the return value is not interesting. Else, we store
1755 zero in *PCH and we read and return one lisp object.
1756
1757 FIRST_IN_LIST is nonzero if this is the first element of a list. */
1758
1759 static Lisp_Object
1760 read1 (readcharfun, pch, first_in_list)
1761 register Lisp_Object readcharfun;
1762 int *pch;
1763 int first_in_list;
1764 {
1765 register int c;
1766 int uninterned_symbol = 0;
1767
1768 *pch = 0;
1769
1770 retry:
1771
1772 c = READCHAR;
1773 if (c < 0)
1774 end_of_file_error ();
1775
1776 switch (c)
1777 {
1778 case '(':
1779 return read_list (0, readcharfun);
1780
1781 case '[':
1782 return read_vector (readcharfun, 0);
1783
1784 case ')':
1785 case ']':
1786 {
1787 *pch = c;
1788 return Qnil;
1789 }
1790
1791 case '#':
1792 c = READCHAR;
1793 if (c == '^')
1794 {
1795 c = READCHAR;
1796 if (c == '[')
1797 {
1798 Lisp_Object tmp;
1799 tmp = read_vector (readcharfun, 0);
1800 if (XVECTOR (tmp)->size < CHAR_TABLE_STANDARD_SLOTS
1801 || XVECTOR (tmp)->size > CHAR_TABLE_STANDARD_SLOTS + 10)
1802 error ("Invalid size char-table");
1803 XSETCHAR_TABLE (tmp, XCHAR_TABLE (tmp));
1804 XCHAR_TABLE (tmp)->top = Qt;
1805 return tmp;
1806 }
1807 else if (c == '^')
1808 {
1809 c = READCHAR;
1810 if (c == '[')
1811 {
1812 Lisp_Object tmp;
1813 tmp = read_vector (readcharfun, 0);
1814 if (XVECTOR (tmp)->size != SUB_CHAR_TABLE_STANDARD_SLOTS)
1815 error ("Invalid size char-table");
1816 XSETCHAR_TABLE (tmp, XCHAR_TABLE (tmp));
1817 XCHAR_TABLE (tmp)->top = Qnil;
1818 return tmp;
1819 }
1820 Fsignal (Qinvalid_read_syntax,
1821 Fcons (make_string ("#^^", 3), Qnil));
1822 }
1823 Fsignal (Qinvalid_read_syntax, Fcons (make_string ("#^", 2), Qnil));
1824 }
1825 if (c == '&')
1826 {
1827 Lisp_Object length;
1828 length = read1 (readcharfun, pch, first_in_list);
1829 c = READCHAR;
1830 if (c == '"')
1831 {
1832 Lisp_Object tmp, val;
1833 int size_in_chars = ((XFASTINT (length) + BITS_PER_CHAR - 1)
1834 / BITS_PER_CHAR);
1835
1836 UNREAD (c);
1837 tmp = read1 (readcharfun, pch, first_in_list);
1838 if (size_in_chars != XSTRING (tmp)->size
1839 /* We used to print 1 char too many
1840 when the number of bits was a multiple of 8.
1841 Accept such input in case it came from an old version. */
1842 && ! (XFASTINT (length)
1843 == (XSTRING (tmp)->size - 1) * BITS_PER_CHAR))
1844 Fsignal (Qinvalid_read_syntax,
1845 Fcons (make_string ("#&...", 5), Qnil));
1846
1847 val = Fmake_bool_vector (length, Qnil);
1848 bcopy (XSTRING (tmp)->data, XBOOL_VECTOR (val)->data,
1849 size_in_chars);
1850 /* Clear the extraneous bits in the last byte. */
1851 if (XINT (length) != size_in_chars * BITS_PER_CHAR)
1852 XBOOL_VECTOR (val)->data[size_in_chars - 1]
1853 &= (1 << (XINT (length) % BITS_PER_CHAR)) - 1;
1854 return val;
1855 }
1856 Fsignal (Qinvalid_read_syntax, Fcons (make_string ("#&...", 5),
1857 Qnil));
1858 }
1859 if (c == '[')
1860 {
1861 /* Accept compiled functions at read-time so that we don't have to
1862 build them using function calls. */
1863 Lisp_Object tmp;
1864 tmp = read_vector (readcharfun, 1);
1865 return Fmake_byte_code (XVECTOR (tmp)->size,
1866 XVECTOR (tmp)->contents);
1867 }
1868 if (c == '(')
1869 {
1870 Lisp_Object tmp;
1871 struct gcpro gcpro1;
1872 int ch;
1873
1874 /* Read the string itself. */
1875 tmp = read1 (readcharfun, &ch, 0);
1876 if (ch != 0 || !STRINGP (tmp))
1877 Fsignal (Qinvalid_read_syntax, Fcons (make_string ("#", 1), Qnil));
1878 GCPRO1 (tmp);
1879 /* Read the intervals and their properties. */
1880 while (1)
1881 {
1882 Lisp_Object beg, end, plist;
1883
1884 beg = read1 (readcharfun, &ch, 0);
1885 end = plist = Qnil;
1886 if (ch == ')')
1887 break;
1888 if (ch == 0)
1889 end = read1 (readcharfun, &ch, 0);
1890 if (ch == 0)
1891 plist = read1 (readcharfun, &ch, 0);
1892 if (ch)
1893 Fsignal (Qinvalid_read_syntax,
1894 Fcons (build_string ("invalid string property list"),
1895 Qnil));
1896 Fset_text_properties (beg, end, plist, tmp);
1897 }
1898 UNGCPRO;
1899 return tmp;
1900 }
1901
1902 /* #@NUMBER is used to skip NUMBER following characters.
1903 That's used in .elc files to skip over doc strings
1904 and function definitions. */
1905 if (c == '@')
1906 {
1907 int i, nskip = 0;
1908
1909 /* Read a decimal integer. */
1910 while ((c = READCHAR) >= 0
1911 && c >= '0' && c <= '9')
1912 {
1913 nskip *= 10;
1914 nskip += c - '0';
1915 }
1916 if (c >= 0)
1917 UNREAD (c);
1918
1919 if (load_force_doc_strings && EQ (readcharfun, Qget_file_char))
1920 {
1921 /* If we are supposed to force doc strings into core right now,
1922 record the last string that we skipped,
1923 and record where in the file it comes from. */
1924
1925 /* But first exchange saved_doc_string
1926 with prev_saved_doc_string, so we save two strings. */
1927 {
1928 char *temp = saved_doc_string;
1929 int temp_size = saved_doc_string_size;
1930 file_offset temp_pos = saved_doc_string_position;
1931 int temp_len = saved_doc_string_length;
1932
1933 saved_doc_string = prev_saved_doc_string;
1934 saved_doc_string_size = prev_saved_doc_string_size;
1935 saved_doc_string_position = prev_saved_doc_string_position;
1936 saved_doc_string_length = prev_saved_doc_string_length;
1937
1938 prev_saved_doc_string = temp;
1939 prev_saved_doc_string_size = temp_size;
1940 prev_saved_doc_string_position = temp_pos;
1941 prev_saved_doc_string_length = temp_len;
1942 }
1943
1944 if (saved_doc_string_size == 0)
1945 {
1946 saved_doc_string_size = nskip + 100;
1947 saved_doc_string = (char *) xmalloc (saved_doc_string_size);
1948 }
1949 if (nskip > saved_doc_string_size)
1950 {
1951 saved_doc_string_size = nskip + 100;
1952 saved_doc_string = (char *) xrealloc (saved_doc_string,
1953 saved_doc_string_size);
1954 }
1955
1956 saved_doc_string_position = file_tell (instream);
1957
1958 /* Copy that many characters into saved_doc_string. */
1959 for (i = 0; i < nskip && c >= 0; i++)
1960 saved_doc_string[i] = c = READCHAR;
1961
1962 saved_doc_string_length = i;
1963 }
1964 else
1965 {
1966 /* Skip that many characters. */
1967 for (i = 0; i < nskip && c >= 0; i++)
1968 c = READCHAR;
1969 }
1970
1971 goto retry;
1972 }
1973 if (c == '$')
1974 return Vload_file_name;
1975 if (c == '\'')
1976 return Fcons (Qfunction, Fcons (read0 (readcharfun), Qnil));
1977 /* #:foo is the uninterned symbol named foo. */
1978 if (c == ':')
1979 {
1980 uninterned_symbol = 1;
1981 c = READCHAR;
1982 goto default_label;
1983 }
1984 /* Reader forms that can reuse previously read objects. */
1985 if (c >= '0' && c <= '9')
1986 {
1987 int n = 0;
1988 Lisp_Object tem;
1989
1990 /* Read a non-negative integer. */
1991 while (c >= '0' && c <= '9')
1992 {
1993 n *= 10;
1994 n += c - '0';
1995 c = READCHAR;
1996 }
1997 /* #n=object returns object, but associates it with n for #n#. */
1998 if (c == '=')
1999 {
2000 /* Make a placeholder for #n# to use temporarily */
2001 Lisp_Object placeholder;
2002 Lisp_Object cell;
2003
2004 placeholder = Fcons(Qnil, Qnil);
2005 cell = Fcons (make_number (n), placeholder);
2006 read_objects = Fcons (cell, read_objects);
2007
2008 /* Read the object itself. */
2009 tem = read0 (readcharfun);
2010
2011 /* Now put it everywhere the placeholder was... */
2012 substitute_object_in_subtree (tem, placeholder);
2013
2014 /* ...and #n# will use the real value from now on. */
2015 Fsetcdr (cell, tem);
2016
2017 return tem;
2018 }
2019 /* #n# returns a previously read object. */
2020 if (c == '#')
2021 {
2022 tem = Fassq (make_number (n), read_objects);
2023 if (CONSP (tem))
2024 return XCDR (tem);
2025 /* Fall through to error message. */
2026 }
2027 else if (c == 'r' || c == 'R')
2028 return read_integer (readcharfun, n);
2029
2030 /* Fall through to error message. */
2031 }
2032 else if (c == 'x' || c == 'X')
2033 return read_integer (readcharfun, 16);
2034 else if (c == 'o' || c == 'O')
2035 return read_integer (readcharfun, 8);
2036 else if (c == 'b' || c == 'B')
2037 return read_integer (readcharfun, 2);
2038
2039 UNREAD (c);
2040 Fsignal (Qinvalid_read_syntax, Fcons (make_string ("#", 1), Qnil));
2041
2042 case ';':
2043 while ((c = READCHAR) >= 0 && c != '\n');
2044 goto retry;
2045
2046 case '\'':
2047 {
2048 return Fcons (Qquote, Fcons (read0 (readcharfun), Qnil));
2049 }
2050
2051 case '`':
2052 if (first_in_list)
2053 goto default_label;
2054 else
2055 {
2056 Lisp_Object value;
2057
2058 new_backquote_flag = 1;
2059 value = read0 (readcharfun);
2060 new_backquote_flag = 0;
2061
2062 return Fcons (Qbackquote, Fcons (value, Qnil));
2063 }
2064
2065 case ',':
2066 if (new_backquote_flag)
2067 {
2068 Lisp_Object comma_type = Qnil;
2069 Lisp_Object value;
2070 int ch = READCHAR;
2071
2072 if (ch == '@')
2073 comma_type = Qcomma_at;
2074 else if (ch == '.')
2075 comma_type = Qcomma_dot;
2076 else
2077 {
2078 if (ch >= 0) UNREAD (ch);
2079 comma_type = Qcomma;
2080 }
2081
2082 new_backquote_flag = 0;
2083 value = read0 (readcharfun);
2084 new_backquote_flag = 1;
2085 return Fcons (comma_type, Fcons (value, Qnil));
2086 }
2087 else
2088 goto default_label;
2089
2090 case '?':
2091 {
2092 c = READCHAR;
2093 if (c < 0)
2094 end_of_file_error ();
2095
2096 if (c == '\\')
2097 c = read_escape (readcharfun, 0);
2098 else if (BASE_LEADING_CODE_P (c))
2099 c = read_multibyte (c, readcharfun);
2100
2101 return make_number (c);
2102 }
2103
2104 case '"':
2105 {
2106 register char *p = read_buffer;
2107 register char *end = read_buffer + read_buffer_size;
2108 register int c;
2109 /* Nonzero if we saw an escape sequence specifying
2110 a multibyte character. */
2111 int force_multibyte = 0;
2112 /* Nonzero if we saw an escape sequence specifying
2113 a single-byte character. */
2114 int force_singlebyte = 0;
2115 int cancel = 0;
2116 int nchars;
2117
2118 while ((c = READCHAR) >= 0
2119 && c != '\"')
2120 {
2121 if (end - p < MAX_MULTIBYTE_LENGTH)
2122 {
2123 int offset = p - read_buffer;
2124 read_buffer = (char *) xrealloc (read_buffer,
2125 read_buffer_size *= 2);
2126 p = read_buffer + offset;
2127 end = read_buffer + read_buffer_size;
2128 }
2129
2130 if (c == '\\')
2131 {
2132 c = read_escape (readcharfun, 1);
2133
2134 /* C is -1 if \ newline has just been seen */
2135 if (c == -1)
2136 {
2137 if (p == read_buffer)
2138 cancel = 1;
2139 continue;
2140 }
2141
2142 /* If an escape specifies a non-ASCII single-byte character,
2143 this must be a unibyte string. */
2144 if (SINGLE_BYTE_CHAR_P ((c & ~CHAR_MODIFIER_MASK))
2145 && ! ASCII_BYTE_P ((c & ~CHAR_MODIFIER_MASK)))
2146 force_singlebyte = 1;
2147 }
2148
2149 if (! SINGLE_BYTE_CHAR_P ((c & ~CHAR_MODIFIER_MASK)))
2150 {
2151 /* Any modifiers for a multibyte character are invalid. */
2152 if (c & CHAR_MODIFIER_MASK)
2153 error ("Invalid modifier in string");
2154 p += CHAR_STRING (c, p);
2155 force_multibyte = 1;
2156 }
2157 else
2158 {
2159 /* Allow `\C- ' and `\C-?'. */
2160 if (c == (CHAR_CTL | ' '))
2161 c = 0;
2162 else if (c == (CHAR_CTL | '?'))
2163 c = 127;
2164
2165 if (c & CHAR_SHIFT)
2166 {
2167 /* Shift modifier is valid only with [A-Za-z]. */
2168 if ((c & 0377) >= 'A' && (c & 0377) <= 'Z')
2169 c &= ~CHAR_SHIFT;
2170 else if ((c & 0377) >= 'a' && (c & 0377) <= 'z')
2171 c = (c & ~CHAR_SHIFT) - ('a' - 'A');
2172 }
2173
2174 if (c & CHAR_META)
2175 /* Move the meta bit to the right place for a string. */
2176 c = (c & ~CHAR_META) | 0x80;
2177 if (c & ~0xff)
2178 error ("Invalid modifier in string");
2179 *p++ = c;
2180 }
2181 }
2182 if (c < 0)
2183 end_of_file_error ();
2184
2185 /* If purifying, and string starts with \ newline,
2186 return zero instead. This is for doc strings
2187 that we are really going to find in etc/DOC.nn.nn */
2188 if (!NILP (Vpurify_flag) && NILP (Vdoc_file_name) && cancel)
2189 return make_number (0);
2190
2191 if (force_multibyte)
2192 p = read_buffer + str_as_multibyte (read_buffer, end - read_buffer,
2193 p - read_buffer, &nchars);
2194 else if (force_singlebyte)
2195 nchars = p - read_buffer;
2196 else if (load_convert_to_unibyte)
2197 {
2198 Lisp_Object string;
2199 p = read_buffer + str_as_multibyte (read_buffer, end - read_buffer,
2200 p - read_buffer, &nchars);
2201 if (p - read_buffer != nchars)
2202 {
2203 string = make_multibyte_string (read_buffer, nchars,
2204 p - read_buffer);
2205 return Fstring_make_unibyte (string);
2206 }
2207 }
2208 else if (EQ (readcharfun, Qget_file_char)
2209 || EQ (readcharfun, Qlambda))
2210 /* Nowadays, reading directly from a file is used only for
2211 compiled Emacs Lisp files, and those always use the
2212 Emacs internal encoding. Meanwhile, Qlambda is used
2213 for reading dynamic byte code (compiled with
2214 byte-compile-dynamic = t). */
2215 p = read_buffer + str_as_multibyte (read_buffer, end - read_buffer,
2216 p - read_buffer, &nchars);
2217 else
2218 /* In all other cases, if we read these bytes as
2219 separate characters, treat them as separate characters now. */
2220 nchars = p - read_buffer;
2221
2222 if (read_pure)
2223 return make_pure_string (read_buffer, nchars, p - read_buffer,
2224 (force_multibyte
2225 || (p - read_buffer != nchars)));
2226 return make_specified_string (read_buffer, nchars, p - read_buffer,
2227 (force_multibyte
2228 || (p - read_buffer != nchars)));
2229 }
2230
2231 case '.':
2232 {
2233 int next_char = READCHAR;
2234 UNREAD (next_char);
2235
2236 if (next_char <= 040
2237 || index ("\"'`,(", next_char))
2238 {
2239 *pch = c;
2240 return Qnil;
2241 }
2242
2243 /* Otherwise, we fall through! Note that the atom-reading loop
2244 below will now loop at least once, assuring that we will not
2245 try to UNREAD two characters in a row. */
2246 }
2247 default:
2248 default_label:
2249 if (c <= 040) goto retry;
2250 {
2251 char *p = read_buffer;
2252 int quoted = 0;
2253
2254 {
2255 char *end = read_buffer + read_buffer_size;
2256
2257 while (c > 040
2258 && !(c == '\"' || c == '\'' || c == ';'
2259 || c == '(' || c == ')'
2260 || c == '[' || c == ']' || c == '#'))
2261 {
2262 if (end - p < MAX_MULTIBYTE_LENGTH)
2263 {
2264 int offset = p - read_buffer;
2265 read_buffer = (char *) xrealloc (read_buffer,
2266 read_buffer_size *= 2);
2267 p = read_buffer + offset;
2268 end = read_buffer + read_buffer_size;
2269 }
2270
2271 if (c == '\\')
2272 {
2273 c = READCHAR;
2274 if (c == -1)
2275 end_of_file_error ();
2276 quoted = 1;
2277 }
2278
2279 if (! SINGLE_BYTE_CHAR_P (c))
2280 p += CHAR_STRING (c, p);
2281 else
2282 *p++ = c;
2283
2284 c = READCHAR;
2285 }
2286
2287 if (p == end)
2288 {
2289 int offset = p - read_buffer;
2290 read_buffer = (char *) xrealloc (read_buffer,
2291 read_buffer_size *= 2);
2292 p = read_buffer + offset;
2293 end = read_buffer + read_buffer_size;
2294 }
2295 *p = 0;
2296 if (c >= 0)
2297 UNREAD (c);
2298 }
2299
2300 if (!quoted && !uninterned_symbol)
2301 {
2302 register char *p1;
2303 register Lisp_Object val;
2304 p1 = read_buffer;
2305 if (*p1 == '+' || *p1 == '-') p1++;
2306 /* Is it an integer? */
2307 if (p1 != p)
2308 {
2309 while (p1 != p && (c = *p1) >= '0' && c <= '9') p1++;
2310 /* Integers can have trailing decimal points. */
2311 if (p1 > read_buffer && p1 < p && *p1 == '.') p1++;
2312 if (p1 == p)
2313 /* It is an integer. */
2314 {
2315 if (p1[-1] == '.')
2316 p1[-1] = '\0';
2317 if (sizeof (int) == sizeof (EMACS_INT))
2318 XSETINT (val, atoi (read_buffer));
2319 else if (sizeof (long) == sizeof (EMACS_INT))
2320 XSETINT (val, atol (read_buffer));
2321 else
2322 abort ();
2323 return val;
2324 }
2325 }
2326 if (isfloat_string (read_buffer))
2327 {
2328 /* Compute NaN and infinities using 0.0 in a variable,
2329 to cope with compilers that think they are smarter
2330 than we are. */
2331 double zero = 0.0;
2332
2333 double value;
2334
2335 /* Negate the value ourselves. This treats 0, NaNs,
2336 and infinity properly on IEEE floating point hosts,
2337 and works around a common bug where atof ("-0.0")
2338 drops the sign. */
2339 int negative = read_buffer[0] == '-';
2340
2341 /* The only way p[-1] can be 'F' or 'N', after isfloat_string
2342 returns 1, is if the input ends in e+INF or e+NaN. */
2343 switch (p[-1])
2344 {
2345 case 'F':
2346 value = 1.0 / zero;
2347 break;
2348 case 'N':
2349 value = zero / zero;
2350 break;
2351 default:
2352 value = atof (read_buffer + negative);
2353 break;
2354 }
2355
2356 return make_float (negative ? - value : value);
2357 }
2358 }
2359
2360 if (uninterned_symbol)
2361 return make_symbol (read_buffer);
2362 else
2363 return intern (read_buffer);
2364 }
2365 }
2366 }
2367 \f
2368
2369 /* List of nodes we've seen during substitute_object_in_subtree. */
2370 static Lisp_Object seen_list;
2371
2372 static void
2373 substitute_object_in_subtree (object, placeholder)
2374 Lisp_Object object;
2375 Lisp_Object placeholder;
2376 {
2377 Lisp_Object check_object;
2378
2379 /* We haven't seen any objects when we start. */
2380 seen_list = Qnil;
2381
2382 /* Make all the substitutions. */
2383 check_object
2384 = substitute_object_recurse (object, placeholder, object);
2385
2386 /* Clear seen_list because we're done with it. */
2387 seen_list = Qnil;
2388
2389 /* The returned object here is expected to always eq the
2390 original. */
2391 if (!EQ (check_object, object))
2392 error ("Unexpected mutation error in reader");
2393 }
2394
2395 /* Feval doesn't get called from here, so no gc protection is needed. */
2396 #define SUBSTITUTE(get_val, set_val) \
2397 { \
2398 Lisp_Object old_value = get_val; \
2399 Lisp_Object true_value \
2400 = substitute_object_recurse (object, placeholder,\
2401 old_value); \
2402 \
2403 if (!EQ (old_value, true_value)) \
2404 { \
2405 set_val; \
2406 } \
2407 }
2408
2409 static Lisp_Object
2410 substitute_object_recurse (object, placeholder, subtree)
2411 Lisp_Object object;
2412 Lisp_Object placeholder;
2413 Lisp_Object subtree;
2414 {
2415 /* If we find the placeholder, return the target object. */
2416 if (EQ (placeholder, subtree))
2417 return object;
2418
2419 /* If we've been to this node before, don't explore it again. */
2420 if (!EQ (Qnil, Fmemq (subtree, seen_list)))
2421 return subtree;
2422
2423 /* If this node can be the entry point to a cycle, remember that
2424 we've seen it. It can only be such an entry point if it was made
2425 by #n=, which means that we can find it as a value in
2426 read_objects. */
2427 if (!EQ (Qnil, Frassq (subtree, read_objects)))
2428 seen_list = Fcons (subtree, seen_list);
2429
2430 /* Recurse according to subtree's type.
2431 Every branch must return a Lisp_Object. */
2432 switch (XTYPE (subtree))
2433 {
2434 case Lisp_Vectorlike:
2435 {
2436 int i;
2437 int length = XINT (Flength(subtree));
2438 for (i = 0; i < length; i++)
2439 {
2440 Lisp_Object idx = make_number (i);
2441 SUBSTITUTE (Faref (subtree, idx),
2442 Faset (subtree, idx, true_value));
2443 }
2444 return subtree;
2445 }
2446
2447 case Lisp_Cons:
2448 {
2449 SUBSTITUTE (Fcar_safe (subtree),
2450 Fsetcar (subtree, true_value));
2451 SUBSTITUTE (Fcdr_safe (subtree),
2452 Fsetcdr (subtree, true_value));
2453 return subtree;
2454 }
2455
2456 case Lisp_String:
2457 {
2458 /* Check for text properties in each interval.
2459 substitute_in_interval contains part of the logic. */
2460
2461 INTERVAL root_interval = XSTRING (subtree)->intervals;
2462 Lisp_Object arg = Fcons (object, placeholder);
2463
2464 traverse_intervals (root_interval, 1, 0,
2465 &substitute_in_interval, arg);
2466
2467 return subtree;
2468 }
2469
2470 /* Other types don't recurse any further. */
2471 default:
2472 return subtree;
2473 }
2474 }
2475
2476 /* Helper function for substitute_object_recurse. */
2477 static void
2478 substitute_in_interval (interval, arg)
2479 INTERVAL interval;
2480 Lisp_Object arg;
2481 {
2482 Lisp_Object object = Fcar (arg);
2483 Lisp_Object placeholder = Fcdr (arg);
2484
2485 SUBSTITUTE(interval->plist, interval->plist = true_value);
2486 }
2487
2488 \f
2489 #define LEAD_INT 1
2490 #define DOT_CHAR 2
2491 #define TRAIL_INT 4
2492 #define E_CHAR 8
2493 #define EXP_INT 16
2494
2495 int
2496 isfloat_string (cp)
2497 register char *cp;
2498 {
2499 register int state;
2500
2501 char *start = cp;
2502
2503 state = 0;
2504 if (*cp == '+' || *cp == '-')
2505 cp++;
2506
2507 if (*cp >= '0' && *cp <= '9')
2508 {
2509 state |= LEAD_INT;
2510 while (*cp >= '0' && *cp <= '9')
2511 cp++;
2512 }
2513 if (*cp == '.')
2514 {
2515 state |= DOT_CHAR;
2516 cp++;
2517 }
2518 if (*cp >= '0' && *cp <= '9')
2519 {
2520 state |= TRAIL_INT;
2521 while (*cp >= '0' && *cp <= '9')
2522 cp++;
2523 }
2524 if (*cp == 'e' || *cp == 'E')
2525 {
2526 state |= E_CHAR;
2527 cp++;
2528 if (*cp == '+' || *cp == '-')
2529 cp++;
2530 }
2531
2532 if (*cp >= '0' && *cp <= '9')
2533 {
2534 state |= EXP_INT;
2535 while (*cp >= '0' && *cp <= '9')
2536 cp++;
2537 }
2538 else if (cp == start)
2539 ;
2540 else if (cp[-1] == '+' && cp[0] == 'I' && cp[1] == 'N' && cp[2] == 'F')
2541 {
2542 state |= EXP_INT;
2543 cp += 3;
2544 }
2545 else if (cp[-1] == '+' && cp[0] == 'N' && cp[1] == 'a' && cp[2] == 'N')
2546 {
2547 state |= EXP_INT;
2548 cp += 3;
2549 }
2550
2551 return (((*cp == 0) || (*cp == ' ') || (*cp == '\t') || (*cp == '\n') || (*cp == '\r') || (*cp == '\f'))
2552 && (state == (LEAD_INT|DOT_CHAR|TRAIL_INT)
2553 || state == (DOT_CHAR|TRAIL_INT)
2554 || state == (LEAD_INT|E_CHAR|EXP_INT)
2555 || state == (LEAD_INT|DOT_CHAR|TRAIL_INT|E_CHAR|EXP_INT)
2556 || state == (DOT_CHAR|TRAIL_INT|E_CHAR|EXP_INT)));
2557 }
2558
2559 \f
2560 static Lisp_Object
2561 read_vector (readcharfun, bytecodeflag)
2562 Lisp_Object readcharfun;
2563 int bytecodeflag;
2564 {
2565 register int i;
2566 register int size;
2567 register Lisp_Object *ptr;
2568 register Lisp_Object tem, item, vector;
2569 register struct Lisp_Cons *otem;
2570 Lisp_Object len;
2571
2572 tem = read_list (1, readcharfun);
2573 len = Flength (tem);
2574 vector = (read_pure ? make_pure_vector (XINT (len)) : Fmake_vector (len, Qnil));
2575
2576 size = XVECTOR (vector)->size;
2577 ptr = XVECTOR (vector)->contents;
2578 for (i = 0; i < size; i++)
2579 {
2580 item = Fcar (tem);
2581 /* If `load-force-doc-strings' is t when reading a lazily-loaded
2582 bytecode object, the docstring containing the bytecode and
2583 constants values must be treated as unibyte and passed to
2584 Fread, to get the actual bytecode string and constants vector. */
2585 if (bytecodeflag && load_force_doc_strings)
2586 {
2587 if (i == COMPILED_BYTECODE)
2588 {
2589 if (!STRINGP (item))
2590 error ("invalid byte code");
2591
2592 /* Delay handling the bytecode slot until we know whether
2593 it is lazily-loaded (we can tell by whether the
2594 constants slot is nil). */
2595 ptr[COMPILED_CONSTANTS] = item;
2596 item = Qnil;
2597 }
2598 else if (i == COMPILED_CONSTANTS)
2599 {
2600 Lisp_Object bytestr = ptr[COMPILED_CONSTANTS];
2601
2602 if (NILP (item))
2603 {
2604 /* Coerce string to unibyte (like string-as-unibyte,
2605 but without generating extra garbage and
2606 guaranteeing no change in the contents). */
2607 XSTRING (bytestr)->size = STRING_BYTES (XSTRING (bytestr));
2608 SET_STRING_BYTES (XSTRING (bytestr), -1);
2609
2610 item = Fread (bytestr);
2611 if (!CONSP (item))
2612 error ("invalid byte code");
2613
2614 otem = XCONS (item);
2615 bytestr = XCAR (item);
2616 item = XCDR (item);
2617 free_cons (otem);
2618 }
2619
2620 /* Now handle the bytecode slot. */
2621 ptr[COMPILED_BYTECODE] = read_pure ? Fpurecopy (bytestr) : bytestr;
2622 }
2623 }
2624 ptr[i] = read_pure ? Fpurecopy (item) : item;
2625 otem = XCONS (tem);
2626 tem = Fcdr (tem);
2627 free_cons (otem);
2628 }
2629 return vector;
2630 }
2631
2632 /* FLAG = 1 means check for ] to terminate rather than ) and .
2633 FLAG = -1 means check for starting with defun
2634 and make structure pure. */
2635
2636 static Lisp_Object
2637 read_list (flag, readcharfun)
2638 int flag;
2639 register Lisp_Object readcharfun;
2640 {
2641 /* -1 means check next element for defun,
2642 0 means don't check,
2643 1 means already checked and found defun. */
2644 int defunflag = flag < 0 ? -1 : 0;
2645 Lisp_Object val, tail;
2646 register Lisp_Object elt, tem;
2647 struct gcpro gcpro1, gcpro2;
2648 /* 0 is the normal case.
2649 1 means this list is a doc reference; replace it with the number 0.
2650 2 means this list is a doc reference; replace it with the doc string. */
2651 int doc_reference = 0;
2652
2653 /* Initialize this to 1 if we are reading a list. */
2654 int first_in_list = flag <= 0;
2655
2656 val = Qnil;
2657 tail = Qnil;
2658
2659 while (1)
2660 {
2661 int ch;
2662 GCPRO2 (val, tail);
2663 elt = read1 (readcharfun, &ch, first_in_list);
2664 UNGCPRO;
2665
2666 first_in_list = 0;
2667
2668 /* While building, if the list starts with #$, treat it specially. */
2669 if (EQ (elt, Vload_file_name)
2670 && ! NILP (elt)
2671 && !NILP (Vpurify_flag))
2672 {
2673 if (NILP (Vdoc_file_name))
2674 /* We have not yet called Snarf-documentation, so assume
2675 this file is described in the DOC-MM.NN file
2676 and Snarf-documentation will fill in the right value later.
2677 For now, replace the whole list with 0. */
2678 doc_reference = 1;
2679 else
2680 /* We have already called Snarf-documentation, so make a relative
2681 file name for this file, so it can be found properly
2682 in the installed Lisp directory.
2683 We don't use Fexpand_file_name because that would make
2684 the directory absolute now. */
2685 elt = concat2 (build_string ("../lisp/"),
2686 Ffile_name_nondirectory (elt));
2687 }
2688 else if (EQ (elt, Vload_file_name)
2689 && ! NILP (elt)
2690 && load_force_doc_strings)
2691 doc_reference = 2;
2692
2693 if (ch)
2694 {
2695 if (flag > 0)
2696 {
2697 if (ch == ']')
2698 return val;
2699 Fsignal (Qinvalid_read_syntax,
2700 Fcons (make_string (") or . in a vector", 18), Qnil));
2701 }
2702 if (ch == ')')
2703 return val;
2704 if (ch == '.')
2705 {
2706 GCPRO2 (val, tail);
2707 if (!NILP (tail))
2708 XCDR (tail) = read0 (readcharfun);
2709 else
2710 val = read0 (readcharfun);
2711 read1 (readcharfun, &ch, 0);
2712 UNGCPRO;
2713 if (ch == ')')
2714 {
2715 if (doc_reference == 1)
2716 return make_number (0);
2717 if (doc_reference == 2)
2718 {
2719 /* Get a doc string from the file we are loading.
2720 If it's in saved_doc_string, get it from there. */
2721 int pos = XINT (XCDR (val));
2722 /* Position is negative for user variables. */
2723 if (pos < 0) pos = -pos;
2724 if (pos >= saved_doc_string_position
2725 && pos < (saved_doc_string_position
2726 + saved_doc_string_length))
2727 {
2728 int start = pos - saved_doc_string_position;
2729 int from, to;
2730
2731 /* Process quoting with ^A,
2732 and find the end of the string,
2733 which is marked with ^_ (037). */
2734 for (from = start, to = start;
2735 saved_doc_string[from] != 037;)
2736 {
2737 int c = saved_doc_string[from++];
2738 if (c == 1)
2739 {
2740 c = saved_doc_string[from++];
2741 if (c == 1)
2742 saved_doc_string[to++] = c;
2743 else if (c == '0')
2744 saved_doc_string[to++] = 0;
2745 else if (c == '_')
2746 saved_doc_string[to++] = 037;
2747 }
2748 else
2749 saved_doc_string[to++] = c;
2750 }
2751
2752 return make_string (saved_doc_string + start,
2753 to - start);
2754 }
2755 /* Look in prev_saved_doc_string the same way. */
2756 else if (pos >= prev_saved_doc_string_position
2757 && pos < (prev_saved_doc_string_position
2758 + prev_saved_doc_string_length))
2759 {
2760 int start = pos - prev_saved_doc_string_position;
2761 int from, to;
2762
2763 /* Process quoting with ^A,
2764 and find the end of the string,
2765 which is marked with ^_ (037). */
2766 for (from = start, to = start;
2767 prev_saved_doc_string[from] != 037;)
2768 {
2769 int c = prev_saved_doc_string[from++];
2770 if (c == 1)
2771 {
2772 c = prev_saved_doc_string[from++];
2773 if (c == 1)
2774 prev_saved_doc_string[to++] = c;
2775 else if (c == '0')
2776 prev_saved_doc_string[to++] = 0;
2777 else if (c == '_')
2778 prev_saved_doc_string[to++] = 037;
2779 }
2780 else
2781 prev_saved_doc_string[to++] = c;
2782 }
2783
2784 return make_string (prev_saved_doc_string + start,
2785 to - start);
2786 }
2787 else
2788 return get_doc_string (val, 0, 0);
2789 }
2790
2791 return val;
2792 }
2793 return Fsignal (Qinvalid_read_syntax, Fcons (make_string (". in wrong context", 18), Qnil));
2794 }
2795 return Fsignal (Qinvalid_read_syntax, Fcons (make_string ("] in a list", 11), Qnil));
2796 }
2797 tem = (read_pure && flag <= 0
2798 ? pure_cons (elt, Qnil)
2799 : Fcons (elt, Qnil));
2800 if (!NILP (tail))
2801 XCDR (tail) = tem;
2802 else
2803 val = tem;
2804 tail = tem;
2805 if (defunflag < 0)
2806 defunflag = EQ (elt, Qdefun);
2807 else if (defunflag > 0)
2808 read_pure = 1;
2809 }
2810 }
2811 \f
2812 Lisp_Object Vobarray;
2813 Lisp_Object initial_obarray;
2814
2815 /* oblookup stores the bucket number here, for the sake of Funintern. */
2816
2817 int oblookup_last_bucket_number;
2818
2819 static int hash_string ();
2820 Lisp_Object oblookup ();
2821
2822 /* Get an error if OBARRAY is not an obarray.
2823 If it is one, return it. */
2824
2825 Lisp_Object
2826 check_obarray (obarray)
2827 Lisp_Object obarray;
2828 {
2829 while (!VECTORP (obarray) || XVECTOR (obarray)->size == 0)
2830 {
2831 /* If Vobarray is now invalid, force it to be valid. */
2832 if (EQ (Vobarray, obarray)) Vobarray = initial_obarray;
2833
2834 obarray = wrong_type_argument (Qvectorp, obarray);
2835 }
2836 return obarray;
2837 }
2838
2839 /* Intern the C string STR: return a symbol with that name,
2840 interned in the current obarray. */
2841
2842 Lisp_Object
2843 intern (str)
2844 char *str;
2845 {
2846 Lisp_Object tem;
2847 int len = strlen (str);
2848 Lisp_Object obarray;
2849
2850 obarray = Vobarray;
2851 if (!VECTORP (obarray) || XVECTOR (obarray)->size == 0)
2852 obarray = check_obarray (obarray);
2853 tem = oblookup (obarray, str, len, len);
2854 if (SYMBOLP (tem))
2855 return tem;
2856 return Fintern (make_string (str, len), obarray);
2857 }
2858
2859 /* Create an uninterned symbol with name STR. */
2860
2861 Lisp_Object
2862 make_symbol (str)
2863 char *str;
2864 {
2865 int len = strlen (str);
2866
2867 return Fmake_symbol ((!NILP (Vpurify_flag)
2868 ? make_pure_string (str, len, len, 0)
2869 : make_string (str, len)));
2870 }
2871 \f
2872 DEFUN ("intern", Fintern, Sintern, 1, 2, 0,
2873 "Return the canonical symbol whose name is STRING.\n\
2874 If there is none, one is created by this function and returned.\n\
2875 A second optional argument specifies the obarray to use;\n\
2876 it defaults to the value of `obarray'.")
2877 (string, obarray)
2878 Lisp_Object string, obarray;
2879 {
2880 register Lisp_Object tem, sym, *ptr;
2881
2882 if (NILP (obarray)) obarray = Vobarray;
2883 obarray = check_obarray (obarray);
2884
2885 CHECK_STRING (string, 0);
2886
2887 tem = oblookup (obarray, XSTRING (string)->data,
2888 XSTRING (string)->size,
2889 STRING_BYTES (XSTRING (string)));
2890 if (!INTEGERP (tem))
2891 return tem;
2892
2893 if (!NILP (Vpurify_flag))
2894 string = Fpurecopy (string);
2895 sym = Fmake_symbol (string);
2896 XSYMBOL (sym)->obarray = obarray;
2897
2898 if ((XSTRING (string)->data[0] == ':')
2899 && EQ (obarray, initial_obarray))
2900 XSYMBOL (sym)->value = sym;
2901
2902 ptr = &XVECTOR (obarray)->contents[XINT (tem)];
2903 if (SYMBOLP (*ptr))
2904 XSYMBOL (sym)->next = XSYMBOL (*ptr);
2905 else
2906 XSYMBOL (sym)->next = 0;
2907 *ptr = sym;
2908 return sym;
2909 }
2910
2911 DEFUN ("intern-soft", Fintern_soft, Sintern_soft, 1, 2, 0,
2912 "Return the canonical symbol named NAME, or nil if none exists.\n\
2913 NAME may be a string or a symbol. If it is a symbol, that exact\n\
2914 symbol is searched for.\n\
2915 A second optional argument specifies the obarray to use;\n\
2916 it defaults to the value of `obarray'.")
2917 (name, obarray)
2918 Lisp_Object name, obarray;
2919 {
2920 register Lisp_Object tem;
2921 struct Lisp_String *string;
2922
2923 if (NILP (obarray)) obarray = Vobarray;
2924 obarray = check_obarray (obarray);
2925
2926 if (!SYMBOLP (name))
2927 {
2928 CHECK_STRING (name, 0);
2929 string = XSTRING (name);
2930 }
2931 else
2932 string = XSYMBOL (name)->name;
2933
2934 tem = oblookup (obarray, string->data, string->size, STRING_BYTES (string));
2935 if (INTEGERP (tem) || (SYMBOLP (name) && !EQ (name, tem)))
2936 return Qnil;
2937 else
2938 return tem;
2939 }
2940 \f
2941 DEFUN ("unintern", Funintern, Sunintern, 1, 2, 0,
2942 "Delete the symbol named NAME, if any, from OBARRAY.\n\
2943 The value is t if a symbol was found and deleted, nil otherwise.\n\
2944 NAME may be a string or a symbol. If it is a symbol, that symbol\n\
2945 is deleted, if it belongs to OBARRAY--no other symbol is deleted.\n\
2946 OBARRAY defaults to the value of the variable `obarray'.")
2947 (name, obarray)
2948 Lisp_Object name, obarray;
2949 {
2950 register Lisp_Object string, tem;
2951 int hash;
2952
2953 if (NILP (obarray)) obarray = Vobarray;
2954 obarray = check_obarray (obarray);
2955
2956 if (SYMBOLP (name))
2957 XSETSTRING (string, XSYMBOL (name)->name);
2958 else
2959 {
2960 CHECK_STRING (name, 0);
2961 string = name;
2962 }
2963
2964 tem = oblookup (obarray, XSTRING (string)->data,
2965 XSTRING (string)->size,
2966 STRING_BYTES (XSTRING (string)));
2967 if (INTEGERP (tem))
2968 return Qnil;
2969 /* If arg was a symbol, don't delete anything but that symbol itself. */
2970 if (SYMBOLP (name) && !EQ (name, tem))
2971 return Qnil;
2972
2973 XSYMBOL (tem)->obarray = Qnil;
2974
2975 hash = oblookup_last_bucket_number;
2976
2977 if (EQ (XVECTOR (obarray)->contents[hash], tem))
2978 {
2979 if (XSYMBOL (tem)->next)
2980 XSETSYMBOL (XVECTOR (obarray)->contents[hash], XSYMBOL (tem)->next);
2981 else
2982 XSETINT (XVECTOR (obarray)->contents[hash], 0);
2983 }
2984 else
2985 {
2986 Lisp_Object tail, following;
2987
2988 for (tail = XVECTOR (obarray)->contents[hash];
2989 XSYMBOL (tail)->next;
2990 tail = following)
2991 {
2992 XSETSYMBOL (following, XSYMBOL (tail)->next);
2993 if (EQ (following, tem))
2994 {
2995 XSYMBOL (tail)->next = XSYMBOL (following)->next;
2996 break;
2997 }
2998 }
2999 }
3000
3001 return Qt;
3002 }
3003 \f
3004 /* Return the symbol in OBARRAY whose names matches the string
3005 of SIZE characters (SIZE_BYTE bytes) at PTR.
3006 If there is no such symbol in OBARRAY, return nil.
3007
3008 Also store the bucket number in oblookup_last_bucket_number. */
3009
3010 Lisp_Object
3011 oblookup (obarray, ptr, size, size_byte)
3012 Lisp_Object obarray;
3013 register char *ptr;
3014 int size, size_byte;
3015 {
3016 int hash;
3017 int obsize;
3018 register Lisp_Object tail;
3019 Lisp_Object bucket, tem;
3020
3021 if (!VECTORP (obarray)
3022 || (obsize = XVECTOR (obarray)->size) == 0)
3023 {
3024 obarray = check_obarray (obarray);
3025 obsize = XVECTOR (obarray)->size;
3026 }
3027 /* This is sometimes needed in the middle of GC. */
3028 obsize &= ~ARRAY_MARK_FLAG;
3029 /* Combining next two lines breaks VMS C 2.3. */
3030 hash = hash_string (ptr, size_byte);
3031 hash %= obsize;
3032 bucket = XVECTOR (obarray)->contents[hash];
3033 oblookup_last_bucket_number = hash;
3034 if (XFASTINT (bucket) == 0)
3035 ;
3036 else if (!SYMBOLP (bucket))
3037 error ("Bad data in guts of obarray"); /* Like CADR error message */
3038 else
3039 for (tail = bucket; ; XSETSYMBOL (tail, XSYMBOL (tail)->next))
3040 {
3041 if (STRING_BYTES (XSYMBOL (tail)->name) == size_byte
3042 && XSYMBOL (tail)->name->size == size
3043 && !bcmp (XSYMBOL (tail)->name->data, ptr, size_byte))
3044 return tail;
3045 else if (XSYMBOL (tail)->next == 0)
3046 break;
3047 }
3048 XSETINT (tem, hash);
3049 return tem;
3050 }
3051
3052 static int
3053 hash_string (ptr, len)
3054 unsigned char *ptr;
3055 int len;
3056 {
3057 register unsigned char *p = ptr;
3058 register unsigned char *end = p + len;
3059 register unsigned char c;
3060 register int hash = 0;
3061
3062 while (p != end)
3063 {
3064 c = *p++;
3065 if (c >= 0140) c -= 40;
3066 hash = ((hash<<3) + (hash>>28) + c);
3067 }
3068 return hash & 07777777777;
3069 }
3070 \f
3071 void
3072 map_obarray (obarray, fn, arg)
3073 Lisp_Object obarray;
3074 void (*fn) P_ ((Lisp_Object, Lisp_Object));
3075 Lisp_Object arg;
3076 {
3077 register int i;
3078 register Lisp_Object tail;
3079 CHECK_VECTOR (obarray, 1);
3080 for (i = XVECTOR (obarray)->size - 1; i >= 0; i--)
3081 {
3082 tail = XVECTOR (obarray)->contents[i];
3083 if (SYMBOLP (tail))
3084 while (1)
3085 {
3086 (*fn) (tail, arg);
3087 if (XSYMBOL (tail)->next == 0)
3088 break;
3089 XSETSYMBOL (tail, XSYMBOL (tail)->next);
3090 }
3091 }
3092 }
3093
3094 void
3095 mapatoms_1 (sym, function)
3096 Lisp_Object sym, function;
3097 {
3098 call1 (function, sym);
3099 }
3100
3101 DEFUN ("mapatoms", Fmapatoms, Smapatoms, 1, 2, 0,
3102 "Call FUNCTION on every symbol in OBARRAY.\n\
3103 OBARRAY defaults to the value of `obarray'.")
3104 (function, obarray)
3105 Lisp_Object function, obarray;
3106 {
3107 if (NILP (obarray)) obarray = Vobarray;
3108 obarray = check_obarray (obarray);
3109
3110 map_obarray (obarray, mapatoms_1, function);
3111 return Qnil;
3112 }
3113
3114 #define OBARRAY_SIZE 1511
3115
3116 void
3117 init_obarray ()
3118 {
3119 Lisp_Object oblength;
3120 int hash;
3121 Lisp_Object *tem;
3122
3123 XSETFASTINT (oblength, OBARRAY_SIZE);
3124
3125 Qnil = Fmake_symbol (make_pure_string ("nil", 3, 3, 0));
3126 Vobarray = Fmake_vector (oblength, make_number (0));
3127 initial_obarray = Vobarray;
3128 staticpro (&initial_obarray);
3129 /* Intern nil in the obarray */
3130 XSYMBOL (Qnil)->obarray = Vobarray;
3131 /* These locals are to kludge around a pyramid compiler bug. */
3132 hash = hash_string ("nil", 3);
3133 /* Separate statement here to avoid VAXC bug. */
3134 hash %= OBARRAY_SIZE;
3135 tem = &XVECTOR (Vobarray)->contents[hash];
3136 *tem = Qnil;
3137
3138 Qunbound = Fmake_symbol (make_pure_string ("unbound", 7, 7, 0));
3139 XSYMBOL (Qnil)->function = Qunbound;
3140 XSYMBOL (Qunbound)->value = Qunbound;
3141 XSYMBOL (Qunbound)->function = Qunbound;
3142
3143 Qt = intern ("t");
3144 XSYMBOL (Qnil)->value = Qnil;
3145 XSYMBOL (Qnil)->plist = Qnil;
3146 XSYMBOL (Qt)->value = Qt;
3147
3148 /* Qt is correct even if CANNOT_DUMP. loadup.el will set to nil at end. */
3149 Vpurify_flag = Qt;
3150
3151 Qvariable_documentation = intern ("variable-documentation");
3152 staticpro (&Qvariable_documentation);
3153
3154 read_buffer_size = 100 + MAX_MULTIBYTE_LENGTH;
3155 read_buffer = (char *) xmalloc (read_buffer_size);
3156 }
3157 \f
3158 void
3159 defsubr (sname)
3160 struct Lisp_Subr *sname;
3161 {
3162 Lisp_Object sym;
3163 sym = intern (sname->symbol_name);
3164 XSETSUBR (XSYMBOL (sym)->function, sname);
3165 }
3166
3167 #ifdef NOTDEF /* use fset in subr.el now */
3168 void
3169 defalias (sname, string)
3170 struct Lisp_Subr *sname;
3171 char *string;
3172 {
3173 Lisp_Object sym;
3174 sym = intern (string);
3175 XSETSUBR (XSYMBOL (sym)->function, sname);
3176 }
3177 #endif /* NOTDEF */
3178
3179 /* Define an "integer variable"; a symbol whose value is forwarded
3180 to a C variable of type int. Sample call: */
3181 /* DEFVAR_INT ("indent-tabs-mode", &indent_tabs_mode, "Documentation"); */
3182 void
3183 defvar_int (namestring, address)
3184 char *namestring;
3185 int *address;
3186 {
3187 Lisp_Object sym, val;
3188 sym = intern (namestring);
3189 val = allocate_misc ();
3190 XMISCTYPE (val) = Lisp_Misc_Intfwd;
3191 XINTFWD (val)->intvar = address;
3192 XSYMBOL (sym)->value = val;
3193 }
3194
3195 /* Similar but define a variable whose value is T if address contains 1,
3196 NIL if address contains 0 */
3197 void
3198 defvar_bool (namestring, address)
3199 char *namestring;
3200 int *address;
3201 {
3202 Lisp_Object sym, val;
3203 sym = intern (namestring);
3204 val = allocate_misc ();
3205 XMISCTYPE (val) = Lisp_Misc_Boolfwd;
3206 XBOOLFWD (val)->boolvar = address;
3207 XSYMBOL (sym)->value = val;
3208 Vbyte_boolean_vars = Fcons (sym, Vbyte_boolean_vars);
3209 }
3210
3211 /* Similar but define a variable whose value is the Lisp Object stored
3212 at address. Two versions: with and without gc-marking of the C
3213 variable. The nopro version is used when that variable will be
3214 gc-marked for some other reason, since marking the same slot twice
3215 can cause trouble with strings. */
3216 void
3217 defvar_lisp_nopro (namestring, address)
3218 char *namestring;
3219 Lisp_Object *address;
3220 {
3221 Lisp_Object sym, val;
3222 sym = intern (namestring);
3223 val = allocate_misc ();
3224 XMISCTYPE (val) = Lisp_Misc_Objfwd;
3225 XOBJFWD (val)->objvar = address;
3226 XSYMBOL (sym)->value = val;
3227 }
3228
3229 void
3230 defvar_lisp (namestring, address)
3231 char *namestring;
3232 Lisp_Object *address;
3233 {
3234 defvar_lisp_nopro (namestring, address);
3235 staticpro (address);
3236 }
3237
3238 /* Similar but define a variable whose value is the Lisp Object stored in
3239 the current buffer. address is the address of the slot in the buffer
3240 that is current now. */
3241
3242 void
3243 defvar_per_buffer (namestring, address, type, doc)
3244 char *namestring;
3245 Lisp_Object *address;
3246 Lisp_Object type;
3247 char *doc;
3248 {
3249 Lisp_Object sym, val;
3250 int offset;
3251 extern struct buffer buffer_local_symbols;
3252
3253 sym = intern (namestring);
3254 val = allocate_misc ();
3255 offset = (char *)address - (char *)current_buffer;
3256
3257 XMISCTYPE (val) = Lisp_Misc_Buffer_Objfwd;
3258 XBUFFER_OBJFWD (val)->offset = offset;
3259 XSYMBOL (sym)->value = val;
3260 PER_BUFFER_SYMBOL (offset) = sym;
3261 PER_BUFFER_TYPE (offset) = type;
3262
3263 if (PER_BUFFER_IDX (offset) == 0)
3264 /* Did a DEFVAR_PER_BUFFER without initializing the corresponding
3265 slot of buffer_local_flags */
3266 abort ();
3267 }
3268
3269
3270 /* Similar but define a variable whose value is the Lisp Object stored
3271 at a particular offset in the current kboard object. */
3272
3273 void
3274 defvar_kboard (namestring, offset)
3275 char *namestring;
3276 int offset;
3277 {
3278 Lisp_Object sym, val;
3279 sym = intern (namestring);
3280 val = allocate_misc ();
3281 XMISCTYPE (val) = Lisp_Misc_Kboard_Objfwd;
3282 XKBOARD_OBJFWD (val)->offset = offset;
3283 XSYMBOL (sym)->value = val;
3284 }
3285 \f
3286 /* Record the value of load-path used at the start of dumping
3287 so we can see if the site changed it later during dumping. */
3288 static Lisp_Object dump_path;
3289
3290 void
3291 init_lread ()
3292 {
3293 char *normal;
3294 int turn_off_warning = 0;
3295
3296 /* Compute the default load-path. */
3297 #ifdef CANNOT_DUMP
3298 normal = PATH_LOADSEARCH;
3299 Vload_path = decode_env_path (0, normal);
3300 #else
3301 if (NILP (Vpurify_flag))
3302 normal = PATH_LOADSEARCH;
3303 else
3304 normal = PATH_DUMPLOADSEARCH;
3305
3306 /* In a dumped Emacs, we normally have to reset the value of
3307 Vload_path from PATH_LOADSEARCH, since the value that was dumped
3308 uses ../lisp, instead of the path of the installed elisp
3309 libraries. However, if it appears that Vload_path was changed
3310 from the default before dumping, don't override that value. */
3311 if (initialized)
3312 {
3313 if (! NILP (Fequal (dump_path, Vload_path)))
3314 {
3315 Vload_path = decode_env_path (0, normal);
3316 if (!NILP (Vinstallation_directory))
3317 {
3318 /* Add to the path the lisp subdir of the
3319 installation dir, if it exists. */
3320 Lisp_Object tem, tem1;
3321 tem = Fexpand_file_name (build_string ("lisp"),
3322 Vinstallation_directory);
3323 tem1 = Ffile_exists_p (tem);
3324 if (!NILP (tem1))
3325 {
3326 if (NILP (Fmember (tem, Vload_path)))
3327 {
3328 turn_off_warning = 1;
3329 Vload_path = nconc2 (Vload_path, Fcons (tem, Qnil));
3330 }
3331 }
3332 else
3333 /* That dir doesn't exist, so add the build-time
3334 Lisp dirs instead. */
3335 Vload_path = nconc2 (Vload_path, dump_path);
3336
3337 /* Add leim under the installation dir, if it exists. */
3338 tem = Fexpand_file_name (build_string ("leim"),
3339 Vinstallation_directory);
3340 tem1 = Ffile_exists_p (tem);
3341 if (!NILP (tem1))
3342 {
3343 if (NILP (Fmember (tem, Vload_path)))
3344 Vload_path = nconc2 (Vload_path, Fcons (tem, Qnil));
3345 }
3346
3347 /* Add site-list under the installation dir, if it exists. */
3348 tem = Fexpand_file_name (build_string ("site-lisp"),
3349 Vinstallation_directory);
3350 tem1 = Ffile_exists_p (tem);
3351 if (!NILP (tem1))
3352 {
3353 if (NILP (Fmember (tem, Vload_path)))
3354 Vload_path = nconc2 (Vload_path, Fcons (tem, Qnil));
3355 }
3356
3357 /* If Emacs was not built in the source directory,
3358 and it is run from where it was built, add to load-path
3359 the lisp, leim and site-lisp dirs under that directory. */
3360
3361 if (NILP (Fequal (Vinstallation_directory, Vsource_directory)))
3362 {
3363 Lisp_Object tem2;
3364
3365 tem = Fexpand_file_name (build_string ("src/Makefile"),
3366 Vinstallation_directory);
3367 tem1 = Ffile_exists_p (tem);
3368
3369 /* Don't be fooled if they moved the entire source tree
3370 AFTER dumping Emacs. If the build directory is indeed
3371 different from the source dir, src/Makefile.in and
3372 src/Makefile will not be found together. */
3373 tem = Fexpand_file_name (build_string ("src/Makefile.in"),
3374 Vinstallation_directory);
3375 tem2 = Ffile_exists_p (tem);
3376 if (!NILP (tem1) && NILP (tem2))
3377 {
3378 tem = Fexpand_file_name (build_string ("lisp"),
3379 Vsource_directory);
3380
3381 if (NILP (Fmember (tem, Vload_path)))
3382 Vload_path = nconc2 (Vload_path, Fcons (tem, Qnil));
3383
3384 tem = Fexpand_file_name (build_string ("leim"),
3385 Vsource_directory);
3386
3387 if (NILP (Fmember (tem, Vload_path)))
3388 Vload_path = nconc2 (Vload_path, Fcons (tem, Qnil));
3389
3390 tem = Fexpand_file_name (build_string ("site-lisp"),
3391 Vsource_directory);
3392
3393 if (NILP (Fmember (tem, Vload_path)))
3394 Vload_path = nconc2 (Vload_path, Fcons (tem, Qnil));
3395 }
3396 }
3397 }
3398 }
3399 }
3400 else
3401 {
3402 /* NORMAL refers to the lisp dir in the source directory. */
3403 /* We used to add ../lisp at the front here, but
3404 that caused trouble because it was copied from dump_path
3405 into Vload_path, aboe, when Vinstallation_directory was non-nil.
3406 It should be unnecessary. */
3407 Vload_path = decode_env_path (0, normal);
3408 dump_path = Vload_path;
3409 }
3410 #endif
3411
3412 #ifndef WINDOWSNT
3413 /* When Emacs is invoked over network shares on NT, PATH_LOADSEARCH is
3414 almost never correct, thereby causing a warning to be printed out that
3415 confuses users. Since PATH_LOADSEARCH is always overridden by the
3416 EMACSLOADPATH environment variable below, disable the warning on NT. */
3417
3418 /* Warn if dirs in the *standard* path don't exist. */
3419 if (!turn_off_warning)
3420 {
3421 Lisp_Object path_tail;
3422
3423 for (path_tail = Vload_path;
3424 !NILP (path_tail);
3425 path_tail = XCDR (path_tail))
3426 {
3427 Lisp_Object dirfile;
3428 dirfile = Fcar (path_tail);
3429 if (STRINGP (dirfile))
3430 {
3431 dirfile = Fdirectory_file_name (dirfile);
3432 if (access (XSTRING (dirfile)->data, 0) < 0)
3433 dir_warning ("Warning: Lisp directory `%s' does not exist.\n",
3434 XCAR (path_tail));
3435 }
3436 }
3437 }
3438 #endif /* WINDOWSNT */
3439
3440 /* If the EMACSLOADPATH environment variable is set, use its value.
3441 This doesn't apply if we're dumping. */
3442 #ifndef CANNOT_DUMP
3443 if (NILP (Vpurify_flag)
3444 && egetenv ("EMACSLOADPATH"))
3445 #endif
3446 Vload_path = decode_env_path ("EMACSLOADPATH", normal);
3447
3448 Vvalues = Qnil;
3449
3450 load_in_progress = 0;
3451 Vload_file_name = Qnil;
3452
3453 load_descriptor_list = Qnil;
3454
3455 Vstandard_input = Qt;
3456 Vloads_in_progress = Qnil;
3457 }
3458
3459 /* Print a warning, using format string FORMAT, that directory DIRNAME
3460 does not exist. Print it on stderr and put it in *Message*. */
3461
3462 void
3463 dir_warning (format, dirname)
3464 char *format;
3465 Lisp_Object dirname;
3466 {
3467 char *buffer
3468 = (char *) alloca (XSTRING (dirname)->size + strlen (format) + 5);
3469
3470 fprintf (stderr, format, XSTRING (dirname)->data);
3471 sprintf (buffer, format, XSTRING (dirname)->data);
3472 /* Don't log the warning before we've initialized!! */
3473 if (initialized)
3474 message_dolog (buffer, strlen (buffer), 0, STRING_MULTIBYTE (dirname));
3475 }
3476
3477 void
3478 syms_of_lread ()
3479 {
3480 defsubr (&Sread);
3481 defsubr (&Sread_from_string);
3482 defsubr (&Sintern);
3483 defsubr (&Sintern_soft);
3484 defsubr (&Sunintern);
3485 defsubr (&Sload);
3486 defsubr (&Seval_buffer);
3487 defsubr (&Seval_region);
3488 defsubr (&Sread_char);
3489 defsubr (&Sread_char_exclusive);
3490 defsubr (&Sread_event);
3491 defsubr (&Sget_file_char);
3492 defsubr (&Smapatoms);
3493
3494 DEFVAR_LISP ("obarray", &Vobarray,
3495 "Symbol table for use by `intern' and `read'.\n\
3496 It is a vector whose length ought to be prime for best results.\n\
3497 The vector's contents don't make sense if examined from Lisp programs;\n\
3498 to find all the symbols in an obarray, use `mapatoms'.");
3499
3500 DEFVAR_LISP ("values", &Vvalues,
3501 "List of values of all expressions which were read, evaluated and printed.\n\
3502 Order is reverse chronological.");
3503
3504 DEFVAR_LISP ("standard-input", &Vstandard_input,
3505 "Stream for read to get input from.\n\
3506 See documentation of `read' for possible values.");
3507 Vstandard_input = Qt;
3508
3509 DEFVAR_LISP ("load-path", &Vload_path,
3510 "*List of directories to search for files to load.\n\
3511 Each element is a string (directory name) or nil (try default directory).\n\
3512 Initialized based on EMACSLOADPATH environment variable, if any,\n\
3513 otherwise to default specified by file `epaths.h' when Emacs was built.");
3514
3515 DEFVAR_BOOL ("load-in-progress", &load_in_progress,
3516 "Non-nil iff inside of `load'.");
3517
3518 DEFVAR_LISP ("after-load-alist", &Vafter_load_alist,
3519 "An alist of expressions to be evalled when particular files are loaded.\n\
3520 Each element looks like (FILENAME FORMS...).\n\
3521 When `load' is run and the file-name argument is FILENAME,\n\
3522 the FORMS in the corresponding element are executed at the end of loading.\n\n\
3523 FILENAME must match exactly! Normally FILENAME is the name of a library,\n\
3524 with no directory specified, since that is how `load' is normally called.\n\
3525 An error in FORMS does not undo the load,\n\
3526 but does prevent execution of the rest of the FORMS.");
3527 Vafter_load_alist = Qnil;
3528
3529 DEFVAR_LISP ("load-history", &Vload_history,
3530 "Alist mapping source file names to symbols and features.\n\
3531 Each alist element is a list that starts with a file name,\n\
3532 except for one element (optional) that starts with nil and describes\n\
3533 definitions evaluated from buffers not visiting files.\n\
3534 The remaining elements of each list are symbols defined as functions\n\
3535 or variables, and cons cells `(provide . FEATURE)', `(require . FEATURE)',\n\
3536 and `(autoload . SYMBOL)'.");
3537 Vload_history = Qnil;
3538
3539 DEFVAR_LISP ("load-file-name", &Vload_file_name,
3540 "Full name of file being loaded by `load'.");
3541 Vload_file_name = Qnil;
3542
3543 DEFVAR_LISP ("user-init-file", &Vuser_init_file,
3544 "File name, including directory, of user's initialization file.\n\
3545 If the file loaded had extension `.elc' and there was a corresponding `.el'\n\
3546 file, this variable contains the name of the .el file, suitable for use\n\
3547 by functions like `custom-save-all' which edit the init file.");
3548 Vuser_init_file = Qnil;
3549
3550 DEFVAR_LISP ("current-load-list", &Vcurrent_load_list,
3551 "Used for internal purposes by `load'.");
3552 Vcurrent_load_list = Qnil;
3553
3554 DEFVAR_LISP ("load-read-function", &Vload_read_function,
3555 "Function used by `load' and `eval-region' for reading expressions.\n\
3556 The default is nil, which means use the function `read'.");
3557 Vload_read_function = Qnil;
3558
3559 DEFVAR_LISP ("load-source-file-function", &Vload_source_file_function,
3560 "Function called in `load' for loading an Emacs lisp source file.\n\
3561 This function is for doing code conversion before reading the source file.\n\
3562 If nil, loading is done without any code conversion.\n\
3563 Arguments are FULLNAME, FILE, NOERROR, NOMESSAGE, where\n\
3564 FULLNAME is the full name of FILE.\n\
3565 See `load' for the meaning of the remaining arguments.");
3566 Vload_source_file_function = Qnil;
3567
3568 DEFVAR_BOOL ("load-force-doc-strings", &load_force_doc_strings,
3569 "Non-nil means `load' should force-load all dynamic doc strings.\n\
3570 This is useful when the file being loaded is a temporary copy.");
3571 load_force_doc_strings = 0;
3572
3573 DEFVAR_BOOL ("load-convert-to-unibyte", &load_convert_to_unibyte,
3574 "Non-nil means `read' converts strings to unibyte whenever possible.\n\
3575 This is normally bound by `load' and `eval-buffer' to control `read',\n\
3576 and is not meant for users to change.");
3577 load_convert_to_unibyte = 0;
3578
3579 DEFVAR_LISP ("source-directory", &Vsource_directory,
3580 "Directory in which Emacs sources were found when Emacs was built.\n\
3581 You cannot count on them to still be there!");
3582 Vsource_directory
3583 = Fexpand_file_name (build_string ("../"),
3584 Fcar (decode_env_path (0, PATH_DUMPLOADSEARCH)));
3585
3586 DEFVAR_LISP ("preloaded-file-list", &Vpreloaded_file_list,
3587 "List of files that were preloaded (when dumping Emacs).");
3588 Vpreloaded_file_list = Qnil;
3589
3590 DEFVAR_LISP ("byte-boolean-vars", &Vbyte_boolean_vars,
3591 "List of all DEFVAR_BOOL variables, used by the byte code optimizer.");
3592 Vbyte_boolean_vars = Qnil;
3593
3594 DEFVAR_BOOL ("load-dangerous-libraries", &load_dangerous_libraries,
3595 "Non-nil means load dangerous compiled Lisp files.\n\
3596 Some versions of XEmacs use different byte codes than Emacs. These\n\
3597 incompatible byte codes can make Emacs crash when it tries to execute\n\
3598 them.");
3599 load_dangerous_libraries = 0;
3600
3601 DEFVAR_LISP ("bytecomp-version-regexp", &Vbytecomp_version_regexp,
3602 "Regular expression matching safe to load compiled Lisp files.\n\
3603 When Emacs loads a compiled Lisp file, it reads the first 512 bytes\n\
3604 from the file, and matches them against this regular expression.\n\
3605 When the regular expression matches, the file is considered to be safe\n\
3606 to load. See also `load-dangerous-libraries'.");
3607 Vbytecomp_version_regexp
3608 = build_string ("^;;;.\\(in Emacs version\\|bytecomp version FSF\\)");
3609
3610 DEFVAR_LISP ("recursive-load-depth-limit", &Vrecursive_load_depth_limit,
3611 "Limit for depth of recursive loads.\n\
3612 Value should be either an integer > 0 specifying the limit, or nil for\n\
3613 no limit.");
3614 Vrecursive_load_depth_limit = make_number (10);
3615
3616 /* Vsource_directory was initialized in init_lread. */
3617
3618 load_descriptor_list = Qnil;
3619 staticpro (&load_descriptor_list);
3620
3621 Qcurrent_load_list = intern ("current-load-list");
3622 staticpro (&Qcurrent_load_list);
3623
3624 Qstandard_input = intern ("standard-input");
3625 staticpro (&Qstandard_input);
3626
3627 Qread_char = intern ("read-char");
3628 staticpro (&Qread_char);
3629
3630 Qget_file_char = intern ("get-file-char");
3631 staticpro (&Qget_file_char);
3632
3633 Qbackquote = intern ("`");
3634 staticpro (&Qbackquote);
3635 Qcomma = intern (",");
3636 staticpro (&Qcomma);
3637 Qcomma_at = intern (",@");
3638 staticpro (&Qcomma_at);
3639 Qcomma_dot = intern (",.");
3640 staticpro (&Qcomma_dot);
3641
3642 Qinhibit_file_name_operation = intern ("inhibit-file-name-operation");
3643 staticpro (&Qinhibit_file_name_operation);
3644
3645 Qascii_character = intern ("ascii-character");
3646 staticpro (&Qascii_character);
3647
3648 Qfunction = intern ("function");
3649 staticpro (&Qfunction);
3650
3651 Qload = intern ("load");
3652 staticpro (&Qload);
3653
3654 Qload_file_name = intern ("load-file-name");
3655 staticpro (&Qload_file_name);
3656
3657 staticpro (&dump_path);
3658
3659 staticpro (&read_objects);
3660 read_objects = Qnil;
3661 staticpro (&seen_list);
3662
3663 Vloads_in_progress = Qnil;
3664 staticpro (&Vloads_in_progress);
3665 }