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1 /* GNU Emacs routines to deal with syntax tables; also word and list parsing.
2 Copyright (C) 1985, 1987, 1993-1995, 1997-1999, 2001-2015 Free
3 Software Foundation, Inc.
4
5 This file is part of GNU Emacs.
6
7 GNU Emacs is free software: you can redistribute it and/or modify
8 it under the terms of the GNU General Public License as published by
9 the Free Software Foundation, either version 3 of the License, or
10 (at your option) any later version.
11
12 GNU Emacs is distributed in the hope that it will be useful,
13 but WITHOUT ANY WARRANTY; without even the implied warranty of
14 MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
15 GNU General Public License for more details.
16
17 You should have received a copy of the GNU General Public License
18 along with GNU Emacs. If not, see <http://www.gnu.org/licenses/>. */
19
20
21 #include <config.h>
22
23 #include <sys/types.h>
24
25 #include "lisp.h"
26 #include "commands.h"
27 #include "character.h"
28 #include "buffer.h"
29 #include "keymap.h"
30 #include "regex.h"
31
32 #include "syntax.h"
33 #include "intervals.h"
34 #include "category.h"
35
36 /* Make syntax table lookup grant data in gl_state. */
37 #define SYNTAX(c) syntax_property (c, 1)
38 #define SYNTAX_ENTRY(c) syntax_property_entry (c, 1)
39 #define SYNTAX_WITH_FLAGS(c) syntax_property_with_flags (c, 1)
40
41 /* Eight single-bit flags have the following meanings:
42 1. This character is the first of a two-character comment-start sequence.
43 2. This character is the second of a two-character comment-start sequence.
44 3. This character is the first of a two-character comment-end sequence.
45 4. This character is the second of a two-character comment-end sequence.
46 5. This character is a prefix, for backward-prefix-chars.
47 6. The char is part of a delimiter for comments of style "b".
48 7. This character is part of a nestable comment sequence.
49 8. The char is part of a delimiter for comments of style "c".
50 Note that any two-character sequence whose first character has flag 1
51 and whose second character has flag 2 will be interpreted as a comment start.
52
53 Bits 6 and 8 discriminate among different comment styles.
54 Languages such as C++ allow two orthogonal syntax start/end pairs
55 and bit 6 determines whether a comment-end or Scommentend
56 ends style a or b. Comment markers can start style a, b, c, or bc.
57 Style a is always the default.
58 For 2-char comment markers, the style b flag is looked up only on the second
59 char of the comment marker and on the first char of the comment ender.
60 For style c (like the nested flag), the flag can be placed on any of
61 the chars. */
62
63 /* These functions extract specific flags from an integer
64 that holds the syntax code and the flags. */
65
66 static bool
67 SYNTAX_FLAGS_COMSTART_FIRST (int flags)
68 {
69 return (flags >> 16) & 1;
70 }
71 static bool
72 SYNTAX_FLAGS_COMSTART_SECOND (int flags)
73 {
74 return (flags >> 17) & 1;
75 }
76 static bool
77 SYNTAX_FLAGS_COMEND_FIRST (int flags)
78 {
79 return (flags >> 18) & 1;
80 }
81 static bool
82 SYNTAX_FLAGS_COMEND_SECOND (int flags)
83 {
84 return (flags >> 19) & 1;
85 }
86 static bool
87 SYNTAX_FLAGS_PREFIX (int flags)
88 {
89 return (flags >> 20) & 1;
90 }
91 static bool
92 SYNTAX_FLAGS_COMMENT_STYLEB (int flags)
93 {
94 return (flags >> 21) & 1;
95 }
96 static bool
97 SYNTAX_FLAGS_COMMENT_STYLEC (int flags)
98 {
99 return (flags >> 23) & 1;
100 }
101 static int
102 SYNTAX_FLAGS_COMMENT_STYLEC2 (int flags)
103 {
104 return (flags >> 22) & 2; /* SYNTAX_FLAGS_COMMENT_STYLEC (flags) * 2 */
105 }
106 static bool
107 SYNTAX_FLAGS_COMMENT_NESTED (int flags)
108 {
109 return (flags >> 22) & 1;
110 }
111
112 /* FLAGS should be the flags of the main char of the comment marker, e.g.
113 the second for comstart and the first for comend. */
114 static int
115 SYNTAX_FLAGS_COMMENT_STYLE (int flags, int other_flags)
116 {
117 return (SYNTAX_FLAGS_COMMENT_STYLEB (flags)
118 | SYNTAX_FLAGS_COMMENT_STYLEC2 (flags)
119 | SYNTAX_FLAGS_COMMENT_STYLEC2 (other_flags));
120 }
121
122 /* Extract a particular flag for a given character. */
123
124 static bool
125 SYNTAX_COMEND_FIRST (int c)
126 {
127 return SYNTAX_FLAGS_COMEND_FIRST (SYNTAX_WITH_FLAGS (c));
128 }
129
130 /* We use these constants in place for comment-style and
131 string-ender-char to distinguish comments/strings started by
132 comment_fence and string_fence codes. */
133
134 enum
135 {
136 ST_COMMENT_STYLE = 256 + 1,
137 ST_STRING_STYLE = 256 + 2
138 };
139
140 /* This is the internal form of the parse state used in parse-partial-sexp. */
141
142 struct lisp_parse_state
143 {
144 EMACS_INT depth; /* Depth at end of parsing. */
145 int instring; /* -1 if not within string, else desired terminator. */
146 EMACS_INT incomment; /* -1 if in unnestable comment else comment nesting */
147 int comstyle; /* comment style a=0, or b=1, or ST_COMMENT_STYLE. */
148 bool quoted; /* True if just after an escape char at end of parsing. */
149 EMACS_INT mindepth; /* Minimum depth seen while scanning. */
150 /* Char number of most recent start-of-expression at current level */
151 ptrdiff_t thislevelstart;
152 /* Char number of start of containing expression */
153 ptrdiff_t prevlevelstart;
154 ptrdiff_t location; /* Char number at which parsing stopped. */
155 ptrdiff_t location_byte; /* Corresponding byte position. */
156 ptrdiff_t comstr_start; /* Position of last comment/string starter. */
157 Lisp_Object levelstarts; /* Char numbers of starts-of-expression
158 of levels (starting from outermost). */
159 };
160 \f
161 /* These variables are a cache for finding the start of a defun.
162 find_start_pos is the place for which the defun start was found.
163 find_start_value is the defun start position found for it.
164 find_start_value_byte is the corresponding byte position.
165 find_start_buffer is the buffer it was found in.
166 find_start_begv is the BEGV value when it was found.
167 find_start_modiff is the value of MODIFF when it was found. */
168
169 static ptrdiff_t find_start_pos;
170 static ptrdiff_t find_start_value;
171 static ptrdiff_t find_start_value_byte;
172 static struct buffer *find_start_buffer;
173 static ptrdiff_t find_start_begv;
174 static EMACS_INT find_start_modiff;
175
176
177 static Lisp_Object skip_chars (bool, Lisp_Object, Lisp_Object, bool);
178 static Lisp_Object skip_syntaxes (bool, Lisp_Object, Lisp_Object);
179 static Lisp_Object scan_lists (EMACS_INT, EMACS_INT, EMACS_INT, bool);
180 static void scan_sexps_forward (struct lisp_parse_state *,
181 ptrdiff_t, ptrdiff_t, ptrdiff_t, EMACS_INT,
182 bool, Lisp_Object, int);
183 static bool in_classes (int, Lisp_Object);
184
185 /* This setter is used only in this file, so it can be private. */
186 static void
187 bset_syntax_table (struct buffer *b, Lisp_Object val)
188 {
189 b->syntax_table_ = val;
190 }
191 \f
192 /* Whether the syntax of the character C has the prefix flag set. */
193 bool
194 syntax_prefix_flag_p (int c)
195 {
196 return SYNTAX_FLAGS_PREFIX (SYNTAX_WITH_FLAGS (c));
197 }
198
199 struct gl_state_s gl_state; /* Global state of syntax parser. */
200
201 enum { INTERVALS_AT_ONCE = 10 }; /* 1 + max-number of intervals
202 to scan to property-change. */
203
204 /* Set the syntax entry VAL for char C in table TABLE. */
205
206 static void
207 SET_RAW_SYNTAX_ENTRY (Lisp_Object table, int c, Lisp_Object val)
208 {
209 CHAR_TABLE_SET (table, c, val);
210 }
211
212 /* Set the syntax entry VAL for char-range RANGE in table TABLE.
213 RANGE is a cons (FROM . TO) specifying the range of characters. */
214
215 static void
216 SET_RAW_SYNTAX_ENTRY_RANGE (Lisp_Object table, Lisp_Object range,
217 Lisp_Object val)
218 {
219 Fset_char_table_range (table, range, val);
220 }
221
222 /* Extract the information from the entry for character C
223 in the current syntax table. */
224
225 static Lisp_Object
226 SYNTAX_MATCH (int c)
227 {
228 Lisp_Object ent = SYNTAX_ENTRY (c);
229 return CONSP (ent) ? XCDR (ent) : Qnil;
230 }
231
232 /* This should be called with FROM at the start of forward
233 search, or after the last position of the backward search. It
234 makes sure that the first char is picked up with correct table, so
235 one does not need to call UPDATE_SYNTAX_TABLE immediately after the
236 call.
237 Sign of COUNT gives the direction of the search.
238 */
239
240 static void
241 SETUP_SYNTAX_TABLE (ptrdiff_t from, ptrdiff_t count)
242 {
243 SETUP_BUFFER_SYNTAX_TABLE ();
244 gl_state.b_property = BEGV;
245 gl_state.e_property = ZV + 1;
246 gl_state.object = Qnil;
247 gl_state.offset = 0;
248 if (parse_sexp_lookup_properties)
249 if (count > 0 || from > BEGV)
250 update_syntax_table (count > 0 ? from : from - 1, count, 1, Qnil);
251 }
252
253 /* Same as above, but in OBJECT. If OBJECT is nil, use current buffer.
254 If it is t (which is only used in fast_c_string_match_ignore_case),
255 ignore properties altogether.
256
257 This is meant for regex.c to use. For buffers, regex.c passes arguments
258 to the UPDATE_SYNTAX_TABLE functions which are relative to BEGV.
259 So if it is a buffer, we set the offset field to BEGV. */
260
261 void
262 SETUP_SYNTAX_TABLE_FOR_OBJECT (Lisp_Object object,
263 ptrdiff_t from, ptrdiff_t count)
264 {
265 SETUP_BUFFER_SYNTAX_TABLE ();
266 gl_state.object = object;
267 if (BUFFERP (gl_state.object))
268 {
269 struct buffer *buf = XBUFFER (gl_state.object);
270 gl_state.b_property = 1;
271 gl_state.e_property = BUF_ZV (buf) - BUF_BEGV (buf) + 1;
272 gl_state.offset = BUF_BEGV (buf) - 1;
273 }
274 else if (NILP (gl_state.object))
275 {
276 gl_state.b_property = 1;
277 gl_state.e_property = ZV - BEGV + 1;
278 gl_state.offset = BEGV - 1;
279 }
280 else if (EQ (gl_state.object, Qt))
281 {
282 gl_state.b_property = 0;
283 gl_state.e_property = PTRDIFF_MAX;
284 gl_state.offset = 0;
285 }
286 else
287 {
288 gl_state.b_property = 0;
289 gl_state.e_property = 1 + SCHARS (gl_state.object);
290 gl_state.offset = 0;
291 }
292 if (parse_sexp_lookup_properties)
293 update_syntax_table (from + gl_state.offset - (count <= 0),
294 count, 1, gl_state.object);
295 }
296
297 /* Update gl_state to an appropriate interval which contains CHARPOS. The
298 sign of COUNT give the relative position of CHARPOS wrt the previously
299 valid interval. If INIT, only [be]_property fields of gl_state are
300 valid at start, the rest is filled basing on OBJECT.
301
302 `gl_state.*_i' are the intervals, and CHARPOS is further in the search
303 direction than the intervals - or in an interval. We update the
304 current syntax-table basing on the property of this interval, and
305 update the interval to start further than CHARPOS - or be
306 NULL. We also update lim_property to be the next value of
307 charpos to call this subroutine again - or be before/after the
308 start/end of OBJECT. */
309
310 void
311 update_syntax_table (ptrdiff_t charpos, EMACS_INT count, bool init,
312 Lisp_Object object)
313 {
314 Lisp_Object tmp_table;
315 int cnt = 0;
316 bool invalidate = 1;
317 INTERVAL i;
318
319 if (init)
320 {
321 gl_state.old_prop = Qnil;
322 gl_state.start = gl_state.b_property;
323 gl_state.stop = gl_state.e_property;
324 i = interval_of (charpos, object);
325 gl_state.backward_i = gl_state.forward_i = i;
326 invalidate = 0;
327 if (!i)
328 return;
329 /* interval_of updates only ->position of the return value, so
330 update the parents manually to speed up update_interval. */
331 while (!NULL_PARENT (i))
332 {
333 if (AM_RIGHT_CHILD (i))
334 INTERVAL_PARENT (i)->position = i->position
335 - LEFT_TOTAL_LENGTH (i) + TOTAL_LENGTH (i) /* right end */
336 - TOTAL_LENGTH (INTERVAL_PARENT (i))
337 + LEFT_TOTAL_LENGTH (INTERVAL_PARENT (i));
338 else
339 INTERVAL_PARENT (i)->position = i->position - LEFT_TOTAL_LENGTH (i)
340 + TOTAL_LENGTH (i);
341 i = INTERVAL_PARENT (i);
342 }
343 i = gl_state.forward_i;
344 gl_state.b_property = i->position - gl_state.offset;
345 gl_state.e_property = INTERVAL_LAST_POS (i) - gl_state.offset;
346 goto update;
347 }
348 i = count > 0 ? gl_state.forward_i : gl_state.backward_i;
349
350 /* We are guaranteed to be called with CHARPOS either in i,
351 or further off. */
352 if (!i)
353 error ("Error in syntax_table logic for to-the-end intervals");
354 else if (charpos < i->position) /* Move left. */
355 {
356 if (count > 0)
357 error ("Error in syntax_table logic for intervals <-");
358 /* Update the interval. */
359 i = update_interval (i, charpos);
360 if (INTERVAL_LAST_POS (i) != gl_state.b_property)
361 {
362 invalidate = 0;
363 gl_state.forward_i = i;
364 gl_state.e_property = INTERVAL_LAST_POS (i) - gl_state.offset;
365 }
366 }
367 else if (charpos >= INTERVAL_LAST_POS (i)) /* Move right. */
368 {
369 if (count < 0)
370 error ("Error in syntax_table logic for intervals ->");
371 /* Update the interval. */
372 i = update_interval (i, charpos);
373 if (i->position != gl_state.e_property)
374 {
375 invalidate = 0;
376 gl_state.backward_i = i;
377 gl_state.b_property = i->position - gl_state.offset;
378 }
379 }
380
381 update:
382 tmp_table = textget (i->plist, Qsyntax_table);
383
384 if (invalidate)
385 invalidate = !EQ (tmp_table, gl_state.old_prop); /* Need to invalidate? */
386
387 if (invalidate) /* Did not get to adjacent interval. */
388 { /* with the same table => */
389 /* invalidate the old range. */
390 if (count > 0)
391 {
392 gl_state.backward_i = i;
393 gl_state.b_property = i->position - gl_state.offset;
394 }
395 else
396 {
397 gl_state.forward_i = i;
398 gl_state.e_property = INTERVAL_LAST_POS (i) - gl_state.offset;
399 }
400 }
401
402 if (!EQ (tmp_table, gl_state.old_prop))
403 {
404 gl_state.current_syntax_table = tmp_table;
405 gl_state.old_prop = tmp_table;
406 if (EQ (Fsyntax_table_p (tmp_table), Qt))
407 {
408 gl_state.use_global = 0;
409 }
410 else if (CONSP (tmp_table))
411 {
412 gl_state.use_global = 1;
413 gl_state.global_code = tmp_table;
414 }
415 else
416 {
417 gl_state.use_global = 0;
418 gl_state.current_syntax_table = BVAR (current_buffer, syntax_table);
419 }
420 }
421
422 while (i)
423 {
424 if (cnt && !EQ (tmp_table, textget (i->plist, Qsyntax_table)))
425 {
426 if (count > 0)
427 {
428 gl_state.e_property = i->position - gl_state.offset;
429 gl_state.forward_i = i;
430 }
431 else
432 {
433 gl_state.b_property
434 = i->position + LENGTH (i) - gl_state.offset;
435 gl_state.backward_i = i;
436 }
437 return;
438 }
439 else if (cnt == INTERVALS_AT_ONCE)
440 {
441 if (count > 0)
442 {
443 gl_state.e_property
444 = i->position + LENGTH (i) - gl_state.offset
445 /* e_property at EOB is not set to ZV but to ZV+1, so that
446 we can do INC(from);UPDATE_SYNTAX_TABLE_FORWARD without
447 having to check eob between the two. */
448 + (next_interval (i) ? 0 : 1);
449 gl_state.forward_i = i;
450 }
451 else
452 {
453 gl_state.b_property = i->position - gl_state.offset;
454 gl_state.backward_i = i;
455 }
456 return;
457 }
458 cnt++;
459 i = count > 0 ? next_interval (i) : previous_interval (i);
460 }
461 eassert (i == NULL); /* This property goes to the end. */
462 if (count > 0)
463 gl_state.e_property = gl_state.stop;
464 else
465 gl_state.b_property = gl_state.start;
466 }
467 \f
468 /* Returns true if char at CHARPOS is quoted.
469 Global syntax-table data should be set up already to be good at CHARPOS
470 or after. On return global syntax data is good for lookup at CHARPOS. */
471
472 static bool
473 char_quoted (ptrdiff_t charpos, ptrdiff_t bytepos)
474 {
475 enum syntaxcode code;
476 ptrdiff_t beg = BEGV;
477 bool quoted = 0;
478 ptrdiff_t orig = charpos;
479
480 while (charpos > beg)
481 {
482 int c;
483 DEC_BOTH (charpos, bytepos);
484
485 UPDATE_SYNTAX_TABLE_BACKWARD (charpos);
486 c = FETCH_CHAR_AS_MULTIBYTE (bytepos);
487 code = SYNTAX (c);
488 if (! (code == Scharquote || code == Sescape))
489 break;
490
491 quoted = !quoted;
492 }
493
494 UPDATE_SYNTAX_TABLE (orig);
495 return quoted;
496 }
497
498 /* Return the bytepos one character before BYTEPOS.
499 We assume that BYTEPOS is not at the start of the buffer. */
500
501 static ptrdiff_t
502 dec_bytepos (ptrdiff_t bytepos)
503 {
504 if (NILP (BVAR (current_buffer, enable_multibyte_characters)))
505 return bytepos - 1;
506
507 DEC_POS (bytepos);
508 return bytepos;
509 }
510 \f
511 /* Return a defun-start position before POS and not too far before.
512 It should be the last one before POS, or nearly the last.
513
514 When open_paren_in_column_0_is_defun_start is nonzero,
515 only the beginning of the buffer is treated as a defun-start.
516
517 We record the information about where the scan started
518 and what its result was, so that another call in the same area
519 can return the same value very quickly.
520
521 There is no promise at which position the global syntax data is
522 valid on return from the subroutine, so the caller should explicitly
523 update the global data. */
524
525 static ptrdiff_t
526 find_defun_start (ptrdiff_t pos, ptrdiff_t pos_byte)
527 {
528 ptrdiff_t opoint = PT, opoint_byte = PT_BYTE;
529
530 /* Use previous finding, if it's valid and applies to this inquiry. */
531 if (current_buffer == find_start_buffer
532 /* Reuse the defun-start even if POS is a little farther on.
533 POS might be in the next defun, but that's ok.
534 Our value may not be the best possible, but will still be usable. */
535 && pos <= find_start_pos + 1000
536 && pos >= find_start_value
537 && BEGV == find_start_begv
538 && MODIFF == find_start_modiff)
539 return find_start_value;
540
541 if (!open_paren_in_column_0_is_defun_start)
542 {
543 find_start_value = BEGV;
544 find_start_value_byte = BEGV_BYTE;
545 goto found;
546 }
547
548 /* Back up to start of line. */
549 scan_newline (pos, pos_byte, BEGV, BEGV_BYTE, -1, 1);
550
551 /* We optimize syntax-table lookup for rare updates. Thus we accept
552 only those `^\s(' which are good in global _and_ text-property
553 syntax-tables. */
554 SETUP_BUFFER_SYNTAX_TABLE ();
555 while (PT > BEGV)
556 {
557 int c;
558
559 /* Open-paren at start of line means we may have found our
560 defun-start. */
561 c = FETCH_CHAR_AS_MULTIBYTE (PT_BYTE);
562 if (SYNTAX (c) == Sopen)
563 {
564 SETUP_SYNTAX_TABLE (PT + 1, -1); /* Try again... */
565 c = FETCH_CHAR_AS_MULTIBYTE (PT_BYTE);
566 if (SYNTAX (c) == Sopen)
567 break;
568 /* Now fallback to the default value. */
569 SETUP_BUFFER_SYNTAX_TABLE ();
570 }
571 /* Move to beg of previous line. */
572 scan_newline (PT, PT_BYTE, BEGV, BEGV_BYTE, -2, 1);
573 }
574
575 /* Record what we found, for the next try. */
576 find_start_value = PT;
577 find_start_value_byte = PT_BYTE;
578 TEMP_SET_PT_BOTH (opoint, opoint_byte);
579
580 found:
581 find_start_buffer = current_buffer;
582 find_start_modiff = MODIFF;
583 find_start_begv = BEGV;
584 find_start_pos = pos;
585
586 return find_start_value;
587 }
588 \f
589 /* Return the SYNTAX_COMEND_FIRST of the character before POS, POS_BYTE. */
590
591 static bool
592 prev_char_comend_first (ptrdiff_t pos, ptrdiff_t pos_byte)
593 {
594 int c;
595 bool val;
596
597 DEC_BOTH (pos, pos_byte);
598 UPDATE_SYNTAX_TABLE_BACKWARD (pos);
599 c = FETCH_CHAR (pos_byte);
600 val = SYNTAX_COMEND_FIRST (c);
601 UPDATE_SYNTAX_TABLE_FORWARD (pos + 1);
602 return val;
603 }
604
605 /* Check whether charpos FROM is at the end of a comment.
606 FROM_BYTE is the bytepos corresponding to FROM.
607 Do not move back before STOP.
608
609 Return true if we find a comment ending at FROM/FROM_BYTE.
610
611 If successful, store the charpos of the comment's beginning
612 into *CHARPOS_PTR, and the bytepos into *BYTEPOS_PTR.
613
614 Global syntax data remains valid for backward search starting at
615 the returned value (or at FROM, if the search was not successful). */
616
617 static bool
618 back_comment (ptrdiff_t from, ptrdiff_t from_byte, ptrdiff_t stop,
619 bool comnested, int comstyle, ptrdiff_t *charpos_ptr,
620 ptrdiff_t *bytepos_ptr)
621 {
622 /* Look back, counting the parity of string-quotes,
623 and recording the comment-starters seen.
624 When we reach a safe place, assume that's not in a string;
625 then step the main scan to the earliest comment-starter seen
626 an even number of string quotes away from the safe place.
627
628 OFROM[I] is position of the earliest comment-starter seen
629 which is I+2X quotes from the comment-end.
630 PARITY is current parity of quotes from the comment end. */
631 int string_style = -1; /* Presumed outside of any string. */
632 bool string_lossage = 0;
633 /* Not a real lossage: indicates that we have passed a matching comment
634 starter plus a non-matching comment-ender, meaning that any matching
635 comment-starter we might see later could be a false positive (hidden
636 inside another comment).
637 Test case: { a (* b } c (* d *) */
638 bool comment_lossage = 0;
639 ptrdiff_t comment_end = from;
640 ptrdiff_t comment_end_byte = from_byte;
641 ptrdiff_t comstart_pos = 0;
642 ptrdiff_t comstart_byte IF_LINT (= 0);
643 /* Place where the containing defun starts,
644 or 0 if we didn't come across it yet. */
645 ptrdiff_t defun_start = 0;
646 ptrdiff_t defun_start_byte = 0;
647 enum syntaxcode code;
648 ptrdiff_t nesting = 1; /* current comment nesting */
649 int c;
650 int syntax = 0;
651
652 /* FIXME: A }} comment-ender style leads to incorrect behavior
653 in the case of {{ c }}} because we ignore the last two chars which are
654 assumed to be comment-enders although they aren't. */
655
656 /* At beginning of range to scan, we're outside of strings;
657 that determines quote parity to the comment-end. */
658 while (from != stop)
659 {
660 ptrdiff_t temp_byte;
661 int prev_syntax;
662 bool com2start, com2end, comstart;
663
664 /* Move back and examine a character. */
665 DEC_BOTH (from, from_byte);
666 UPDATE_SYNTAX_TABLE_BACKWARD (from);
667
668 prev_syntax = syntax;
669 c = FETCH_CHAR_AS_MULTIBYTE (from_byte);
670 syntax = SYNTAX_WITH_FLAGS (c);
671 code = SYNTAX (c);
672
673 /* Check for 2-char comment markers. */
674 com2start = (SYNTAX_FLAGS_COMSTART_FIRST (syntax)
675 && SYNTAX_FLAGS_COMSTART_SECOND (prev_syntax)
676 && (comstyle
677 == SYNTAX_FLAGS_COMMENT_STYLE (prev_syntax, syntax))
678 && (SYNTAX_FLAGS_COMMENT_NESTED (prev_syntax)
679 || SYNTAX_FLAGS_COMMENT_NESTED (syntax)) == comnested);
680 com2end = (SYNTAX_FLAGS_COMEND_FIRST (syntax)
681 && SYNTAX_FLAGS_COMEND_SECOND (prev_syntax));
682 comstart = (com2start || code == Scomment);
683
684 /* Nasty cases with overlapping 2-char comment markers:
685 - snmp-mode: -- c -- foo -- c --
686 --- c --
687 ------ c --
688 - c-mode: *||*
689 |* *|* *|
690 |*| |* |*|
691 /// */
692
693 /* If a 2-char comment sequence partly overlaps with another,
694 we don't try to be clever. E.g. |*| in C, or }% in modes that
695 have %..\n and %{..}%. */
696 if (from > stop && (com2end || comstart))
697 {
698 ptrdiff_t next = from, next_byte = from_byte;
699 int next_c, next_syntax;
700 DEC_BOTH (next, next_byte);
701 UPDATE_SYNTAX_TABLE_BACKWARD (next);
702 next_c = FETCH_CHAR_AS_MULTIBYTE (next_byte);
703 next_syntax = SYNTAX_WITH_FLAGS (next_c);
704 if (((comstart || comnested)
705 && SYNTAX_FLAGS_COMEND_SECOND (syntax)
706 && SYNTAX_FLAGS_COMEND_FIRST (next_syntax))
707 || ((com2end || comnested)
708 && SYNTAX_FLAGS_COMSTART_SECOND (syntax)
709 && (comstyle
710 == SYNTAX_FLAGS_COMMENT_STYLE (syntax, prev_syntax))
711 && SYNTAX_FLAGS_COMSTART_FIRST (next_syntax)))
712 goto lossage;
713 /* UPDATE_SYNTAX_TABLE_FORWARD (next + 1); */
714 }
715
716 if (com2start && comstart_pos == 0)
717 /* We're looking at a comment starter. But it might be a comment
718 ender as well (see snmp-mode). The first time we see one, we
719 need to consider it as a comment starter,
720 and the subsequent times as a comment ender. */
721 com2end = 0;
722
723 /* Turn a 2-char comment sequences into the appropriate syntax. */
724 if (com2end)
725 code = Sendcomment;
726 else if (com2start)
727 code = Scomment;
728 /* Ignore comment starters of a different style. */
729 else if (code == Scomment
730 && (comstyle != SYNTAX_FLAGS_COMMENT_STYLE (syntax, 0)
731 || SYNTAX_FLAGS_COMMENT_NESTED (syntax) != comnested))
732 continue;
733
734 /* Ignore escaped characters, except comment-enders. */
735 if (code != Sendcomment && char_quoted (from, from_byte))
736 continue;
737
738 switch (code)
739 {
740 case Sstring_fence:
741 case Scomment_fence:
742 c = (code == Sstring_fence ? ST_STRING_STYLE : ST_COMMENT_STYLE);
743 case Sstring:
744 /* Track parity of quotes. */
745 if (string_style == -1)
746 /* Entering a string. */
747 string_style = c;
748 else if (string_style == c)
749 /* Leaving the string. */
750 string_style = -1;
751 else
752 /* If we have two kinds of string delimiters.
753 There's no way to grok this scanning backwards. */
754 string_lossage = 1;
755 break;
756
757 case Scomment:
758 /* We've already checked that it is the relevant comstyle. */
759 if (string_style != -1 || comment_lossage || string_lossage)
760 /* There are odd string quotes involved, so let's be careful.
761 Test case in Pascal: " { " a { " } */
762 goto lossage;
763
764 if (!comnested)
765 {
766 /* Record best comment-starter so far. */
767 comstart_pos = from;
768 comstart_byte = from_byte;
769 }
770 else if (--nesting <= 0)
771 /* nested comments have to be balanced, so we don't need to
772 keep looking for earlier ones. We use here the same (slightly
773 incorrect) reasoning as below: since it is followed by uniform
774 paired string quotes, this comment-start has to be outside of
775 strings, else the comment-end itself would be inside a string. */
776 goto done;
777 break;
778
779 case Sendcomment:
780 if (SYNTAX_FLAGS_COMMENT_STYLE (syntax, 0) == comstyle
781 && ((com2end && SYNTAX_FLAGS_COMMENT_NESTED (prev_syntax))
782 || SYNTAX_FLAGS_COMMENT_NESTED (syntax)) == comnested)
783 /* This is the same style of comment ender as ours. */
784 {
785 if (comnested)
786 nesting++;
787 else
788 /* Anything before that can't count because it would match
789 this comment-ender rather than ours. */
790 from = stop; /* Break out of the loop. */
791 }
792 else if (comstart_pos != 0 || c != '\n')
793 /* We're mixing comment styles here, so we'd better be careful.
794 The (comstart_pos != 0 || c != '\n') check is not quite correct
795 (we should just always set comment_lossage), but removing it
796 would imply that any multiline comment in C would go through
797 lossage, which seems overkill.
798 The failure should only happen in the rare cases such as
799 { (* } *) */
800 comment_lossage = 1;
801 break;
802
803 case Sopen:
804 /* Assume a defun-start point is outside of strings. */
805 if (open_paren_in_column_0_is_defun_start
806 && (from == stop
807 || (temp_byte = dec_bytepos (from_byte),
808 FETCH_CHAR (temp_byte) == '\n')))
809 {
810 defun_start = from;
811 defun_start_byte = from_byte;
812 from = stop; /* Break out of the loop. */
813 }
814 break;
815
816 default:
817 break;
818 }
819 }
820
821 if (comstart_pos == 0)
822 {
823 from = comment_end;
824 from_byte = comment_end_byte;
825 UPDATE_SYNTAX_TABLE_FORWARD (comment_end);
826 }
827 /* If comstart_pos is set and we get here (ie. didn't jump to `lossage'
828 or `done'), then we've found the beginning of the non-nested comment. */
829 else if (1) /* !comnested */
830 {
831 from = comstart_pos;
832 from_byte = comstart_byte;
833 UPDATE_SYNTAX_TABLE_FORWARD (from - 1);
834 }
835 else lossage:
836 {
837 struct lisp_parse_state state;
838 bool adjusted = true;
839 /* We had two kinds of string delimiters mixed up
840 together. Decode this going forwards.
841 Scan fwd from a known safe place (beginning-of-defun)
842 to the one in question; this records where we
843 last passed a comment starter. */
844 /* If we did not already find the defun start, find it now. */
845 if (defun_start == 0)
846 {
847 defun_start = find_defun_start (comment_end, comment_end_byte);
848 defun_start_byte = find_start_value_byte;
849 adjusted = (defun_start > BEGV);
850 }
851 do
852 {
853 scan_sexps_forward (&state,
854 defun_start, defun_start_byte,
855 comment_end, TYPE_MINIMUM (EMACS_INT),
856 0, Qnil, 0);
857 defun_start = comment_end;
858 if (!adjusted)
859 {
860 adjusted = true;
861 find_start_value
862 = CONSP (state.levelstarts) ? XINT (XCAR (state.levelstarts))
863 : state.thislevelstart >= 0 ? state.thislevelstart
864 : find_start_value;
865 find_start_value_byte = CHAR_TO_BYTE (find_start_value);
866 }
867
868 if (state.incomment == (comnested ? 1 : -1)
869 && state.comstyle == comstyle)
870 from = state.comstr_start;
871 else
872 {
873 from = comment_end;
874 if (state.incomment)
875 /* If comment_end is inside some other comment, maybe ours
876 is nested, so we need to try again from within the
877 surrounding comment. Example: { a (* " *) */
878 {
879 /* FIXME: We should advance by one or two chars. */
880 defun_start = state.comstr_start + 2;
881 defun_start_byte = CHAR_TO_BYTE (defun_start);
882 }
883 }
884 } while (defun_start < comment_end);
885
886 from_byte = CHAR_TO_BYTE (from);
887 UPDATE_SYNTAX_TABLE_FORWARD (from - 1);
888 }
889
890 done:
891 *charpos_ptr = from;
892 *bytepos_ptr = from_byte;
893
894 return from != comment_end;
895 }
896 \f
897 DEFUN ("syntax-table-p", Fsyntax_table_p, Ssyntax_table_p, 1, 1, 0,
898 doc: /* Return t if OBJECT is a syntax table.
899 Currently, any char-table counts as a syntax table. */)
900 (Lisp_Object object)
901 {
902 if (CHAR_TABLE_P (object)
903 && EQ (XCHAR_TABLE (object)->purpose, Qsyntax_table))
904 return Qt;
905 return Qnil;
906 }
907
908 static void
909 check_syntax_table (Lisp_Object obj)
910 {
911 CHECK_TYPE (CHAR_TABLE_P (obj) && EQ (XCHAR_TABLE (obj)->purpose, Qsyntax_table),
912 Qsyntax_table_p, obj);
913 }
914
915 DEFUN ("syntax-table", Fsyntax_table, Ssyntax_table, 0, 0, 0,
916 doc: /* Return the current syntax table.
917 This is the one specified by the current buffer. */)
918 (void)
919 {
920 return BVAR (current_buffer, syntax_table);
921 }
922
923 DEFUN ("standard-syntax-table", Fstandard_syntax_table,
924 Sstandard_syntax_table, 0, 0, 0,
925 doc: /* Return the standard syntax table.
926 This is the one used for new buffers. */)
927 (void)
928 {
929 return Vstandard_syntax_table;
930 }
931
932 DEFUN ("copy-syntax-table", Fcopy_syntax_table, Scopy_syntax_table, 0, 1, 0,
933 doc: /* Construct a new syntax table and return it.
934 It is a copy of the TABLE, which defaults to the standard syntax table. */)
935 (Lisp_Object table)
936 {
937 Lisp_Object copy;
938
939 if (!NILP (table))
940 check_syntax_table (table);
941 else
942 table = Vstandard_syntax_table;
943
944 copy = Fcopy_sequence (table);
945
946 /* Only the standard syntax table should have a default element.
947 Other syntax tables should inherit from parents instead. */
948 set_char_table_defalt (copy, Qnil);
949
950 /* Copied syntax tables should all have parents.
951 If we copied one with no parent, such as the standard syntax table,
952 use the standard syntax table as the copy's parent. */
953 if (NILP (XCHAR_TABLE (copy)->parent))
954 Fset_char_table_parent (copy, Vstandard_syntax_table);
955 return copy;
956 }
957
958 DEFUN ("set-syntax-table", Fset_syntax_table, Sset_syntax_table, 1, 1, 0,
959 doc: /* Select a new syntax table for the current buffer.
960 One argument, a syntax table. */)
961 (Lisp_Object table)
962 {
963 int idx;
964 check_syntax_table (table);
965 bset_syntax_table (current_buffer, table);
966 /* Indicate that this buffer now has a specified syntax table. */
967 idx = PER_BUFFER_VAR_IDX (syntax_table);
968 SET_PER_BUFFER_VALUE_P (current_buffer, idx, 1);
969 return table;
970 }
971 \f
972 /* Convert a letter which signifies a syntax code
973 into the code it signifies.
974 This is used by modify-syntax-entry, and other things. */
975
976 unsigned char const syntax_spec_code[0400] =
977 { 0377, 0377, 0377, 0377, 0377, 0377, 0377, 0377,
978 0377, 0377, 0377, 0377, 0377, 0377, 0377, 0377,
979 0377, 0377, 0377, 0377, 0377, 0377, 0377, 0377,
980 0377, 0377, 0377, 0377, 0377, 0377, 0377, 0377,
981 Swhitespace, Scomment_fence, Sstring, 0377, Smath, 0377, 0377, Squote,
982 Sopen, Sclose, 0377, 0377, 0377, Swhitespace, Spunct, Scharquote,
983 0377, 0377, 0377, 0377, 0377, 0377, 0377, 0377,
984 0377, 0377, 0377, 0377, Scomment, 0377, Sendcomment, 0377,
985 Sinherit, 0377, 0377, 0377, 0377, 0377, 0377, 0377, /* @, A ... */
986 0377, 0377, 0377, 0377, 0377, 0377, 0377, 0377,
987 0377, 0377, 0377, 0377, 0377, 0377, 0377, Sword,
988 0377, 0377, 0377, 0377, Sescape, 0377, 0377, Ssymbol,
989 0377, 0377, 0377, 0377, 0377, 0377, 0377, 0377, /* `, a, ... */
990 0377, 0377, 0377, 0377, 0377, 0377, 0377, 0377,
991 0377, 0377, 0377, 0377, 0377, 0377, 0377, Sword,
992 0377, 0377, 0377, 0377, Sstring_fence, 0377, 0377, 0377
993 };
994
995 /* Indexed by syntax code, give the letter that describes it. */
996
997 char const syntax_code_spec[16] =
998 {
999 ' ', '.', 'w', '_', '(', ')', '\'', '\"', '$', '\\', '/', '<', '>', '@',
1000 '!', '|'
1001 };
1002
1003 /* Indexed by syntax code, give the object (cons of syntax code and
1004 nil) to be stored in syntax table. Since these objects can be
1005 shared among syntax tables, we generate them in advance. By
1006 sharing objects, the function `describe-syntax' can give a more
1007 compact listing. */
1008 static Lisp_Object Vsyntax_code_object;
1009
1010 \f
1011 DEFUN ("char-syntax", Fchar_syntax, Schar_syntax, 1, 1, 0,
1012 doc: /* Return the syntax code of CHARACTER, described by a character.
1013 For example, if CHARACTER is a word constituent, the
1014 character `w' (119) is returned.
1015 The characters that correspond to various syntax codes
1016 are listed in the documentation of `modify-syntax-entry'. */)
1017 (Lisp_Object character)
1018 {
1019 int char_int;
1020 CHECK_CHARACTER (character);
1021 char_int = XINT (character);
1022 SETUP_BUFFER_SYNTAX_TABLE ();
1023 return make_number (syntax_code_spec[SYNTAX (char_int)]);
1024 }
1025
1026 DEFUN ("matching-paren", Fmatching_paren, Smatching_paren, 1, 1, 0,
1027 doc: /* Return the matching parenthesis of CHARACTER, or nil if none. */)
1028 (Lisp_Object character)
1029 {
1030 int char_int;
1031 enum syntaxcode code;
1032 CHECK_CHARACTER (character);
1033 char_int = XINT (character);
1034 SETUP_BUFFER_SYNTAX_TABLE ();
1035 code = SYNTAX (char_int);
1036 if (code == Sopen || code == Sclose)
1037 return SYNTAX_MATCH (char_int);
1038 return Qnil;
1039 }
1040
1041 DEFUN ("string-to-syntax", Fstring_to_syntax, Sstring_to_syntax, 1, 1, 0,
1042 doc: /* Convert a syntax descriptor STRING into a raw syntax descriptor.
1043 STRING should be a string of the form allowed as argument of
1044 `modify-syntax-entry'. The return value is a raw syntax descriptor: a
1045 cons cell \(CODE . MATCHING-CHAR) which can be used, for example, as
1046 the value of a `syntax-table' text property. */)
1047 (Lisp_Object string)
1048 {
1049 const unsigned char *p;
1050 int val;
1051 Lisp_Object match;
1052
1053 CHECK_STRING (string);
1054
1055 p = SDATA (string);
1056 val = syntax_spec_code[*p++];
1057 if (val == 0377)
1058 error ("Invalid syntax description letter: %c", p[-1]);
1059
1060 if (val == Sinherit)
1061 return Qnil;
1062
1063 if (*p)
1064 {
1065 int len;
1066 int character = STRING_CHAR_AND_LENGTH (p, len);
1067 XSETINT (match, character);
1068 if (XFASTINT (match) == ' ')
1069 match = Qnil;
1070 p += len;
1071 }
1072 else
1073 match = Qnil;
1074
1075 while (*p)
1076 switch (*p++)
1077 {
1078 case '1':
1079 val |= 1 << 16;
1080 break;
1081
1082 case '2':
1083 val |= 1 << 17;
1084 break;
1085
1086 case '3':
1087 val |= 1 << 18;
1088 break;
1089
1090 case '4':
1091 val |= 1 << 19;
1092 break;
1093
1094 case 'p':
1095 val |= 1 << 20;
1096 break;
1097
1098 case 'b':
1099 val |= 1 << 21;
1100 break;
1101
1102 case 'n':
1103 val |= 1 << 22;
1104 break;
1105
1106 case 'c':
1107 val |= 1 << 23;
1108 break;
1109 }
1110
1111 if (val < ASIZE (Vsyntax_code_object) && NILP (match))
1112 return AREF (Vsyntax_code_object, val);
1113 else
1114 /* Since we can't use a shared object, let's make a new one. */
1115 return Fcons (make_number (val), match);
1116 }
1117
1118 /* I really don't know why this is interactive
1119 help-form should at least be made useful whilst reading the second arg. */
1120 DEFUN ("modify-syntax-entry", Fmodify_syntax_entry, Smodify_syntax_entry, 2, 3,
1121 "cSet syntax for character: \nsSet syntax for %s to: ",
1122 doc: /* Set syntax for character CHAR according to string NEWENTRY.
1123 The syntax is changed only for table SYNTAX-TABLE, which defaults to
1124 the current buffer's syntax table.
1125 CHAR may be a cons (MIN . MAX), in which case, syntaxes of all characters
1126 in the range MIN to MAX are changed.
1127 The first character of NEWENTRY should be one of the following:
1128 Space or - whitespace syntax. w word constituent.
1129 _ symbol constituent. . punctuation.
1130 ( open-parenthesis. ) close-parenthesis.
1131 " string quote. \\ escape.
1132 $ paired delimiter. ' expression quote or prefix operator.
1133 < comment starter. > comment ender.
1134 / character-quote. @ inherit from parent table.
1135 | generic string fence. ! generic comment fence.
1136
1137 Only single-character comment start and end sequences are represented thus.
1138 Two-character sequences are represented as described below.
1139 The second character of NEWENTRY is the matching parenthesis,
1140 used only if the first character is `(' or `)'.
1141 Any additional characters are flags.
1142 Defined flags are the characters 1, 2, 3, 4, b, p, and n.
1143 1 means CHAR is the start of a two-char comment start sequence.
1144 2 means CHAR is the second character of such a sequence.
1145 3 means CHAR is the start of a two-char comment end sequence.
1146 4 means CHAR is the second character of such a sequence.
1147
1148 There can be several orthogonal comment sequences. This is to support
1149 language modes such as C++. By default, all comment sequences are of style
1150 a, but you can set the comment sequence style to b (on the second character
1151 of a comment-start, and the first character of a comment-end sequence) and/or
1152 c (on any of its chars) using this flag:
1153 b means CHAR is part of comment sequence b.
1154 c means CHAR is part of comment sequence c.
1155 n means CHAR is part of a nestable comment sequence.
1156
1157 p means CHAR is a prefix character for `backward-prefix-chars';
1158 such characters are treated as whitespace when they occur
1159 between expressions.
1160 usage: (modify-syntax-entry CHAR NEWENTRY &optional SYNTAX-TABLE) */)
1161 (Lisp_Object c, Lisp_Object newentry, Lisp_Object syntax_table)
1162 {
1163 if (CONSP (c))
1164 {
1165 CHECK_CHARACTER_CAR (c);
1166 CHECK_CHARACTER_CDR (c);
1167 }
1168 else
1169 CHECK_CHARACTER (c);
1170
1171 if (NILP (syntax_table))
1172 syntax_table = BVAR (current_buffer, syntax_table);
1173 else
1174 check_syntax_table (syntax_table);
1175
1176 newentry = Fstring_to_syntax (newentry);
1177 if (CONSP (c))
1178 SET_RAW_SYNTAX_ENTRY_RANGE (syntax_table, c, newentry);
1179 else
1180 SET_RAW_SYNTAX_ENTRY (syntax_table, XINT (c), newentry);
1181
1182 /* We clear the regexp cache, since character classes can now have
1183 different values from those in the compiled regexps.*/
1184 clear_regexp_cache ();
1185
1186 return Qnil;
1187 }
1188 \f
1189 /* Dump syntax table to buffer in human-readable format */
1190
1191 DEFUN ("internal-describe-syntax-value", Finternal_describe_syntax_value,
1192 Sinternal_describe_syntax_value, 1, 1, 0,
1193 doc: /* Insert a description of the internal syntax description SYNTAX at point. */)
1194 (Lisp_Object syntax)
1195 {
1196 int code, syntax_code;
1197 bool start1, start2, end1, end2, prefix, comstyleb, comstylec, comnested;
1198 char str[2];
1199 Lisp_Object first, match_lisp, value = syntax;
1200
1201 if (NILP (value))
1202 {
1203 insert_string ("default");
1204 return syntax;
1205 }
1206
1207 if (CHAR_TABLE_P (value))
1208 {
1209 insert_string ("deeper char-table ...");
1210 return syntax;
1211 }
1212
1213 if (!CONSP (value))
1214 {
1215 insert_string ("invalid");
1216 return syntax;
1217 }
1218
1219 first = XCAR (value);
1220 match_lisp = XCDR (value);
1221
1222 if (!INTEGERP (first) || !(NILP (match_lisp) || CHARACTERP (match_lisp)))
1223 {
1224 insert_string ("invalid");
1225 return syntax;
1226 }
1227
1228 syntax_code = XINT (first) & INT_MAX;
1229 code = syntax_code & 0377;
1230 start1 = SYNTAX_FLAGS_COMSTART_FIRST (syntax_code);
1231 start2 = SYNTAX_FLAGS_COMSTART_SECOND (syntax_code);
1232 end1 = SYNTAX_FLAGS_COMEND_FIRST (syntax_code);
1233 end2 = SYNTAX_FLAGS_COMEND_SECOND (syntax_code);
1234 prefix = SYNTAX_FLAGS_PREFIX (syntax_code);
1235 comstyleb = SYNTAX_FLAGS_COMMENT_STYLEB (syntax_code);
1236 comstylec = SYNTAX_FLAGS_COMMENT_STYLEC (syntax_code);
1237 comnested = SYNTAX_FLAGS_COMMENT_NESTED (syntax_code);
1238
1239 if (Smax <= code)
1240 {
1241 insert_string ("invalid");
1242 return syntax;
1243 }
1244
1245 str[0] = syntax_code_spec[code], str[1] = 0;
1246 insert (str, 1);
1247
1248 if (NILP (match_lisp))
1249 insert (" ", 1);
1250 else
1251 insert_char (XINT (match_lisp));
1252
1253 if (start1)
1254 insert ("1", 1);
1255 if (start2)
1256 insert ("2", 1);
1257
1258 if (end1)
1259 insert ("3", 1);
1260 if (end2)
1261 insert ("4", 1);
1262
1263 if (prefix)
1264 insert ("p", 1);
1265 if (comstyleb)
1266 insert ("b", 1);
1267 if (comstylec)
1268 insert ("c", 1);
1269 if (comnested)
1270 insert ("n", 1);
1271
1272 insert_string ("\twhich means: ");
1273
1274 switch (code)
1275 {
1276 case Swhitespace:
1277 insert_string ("whitespace"); break;
1278 case Spunct:
1279 insert_string ("punctuation"); break;
1280 case Sword:
1281 insert_string ("word"); break;
1282 case Ssymbol:
1283 insert_string ("symbol"); break;
1284 case Sopen:
1285 insert_string ("open"); break;
1286 case Sclose:
1287 insert_string ("close"); break;
1288 case Squote:
1289 insert_string ("prefix"); break;
1290 case Sstring:
1291 insert_string ("string"); break;
1292 case Smath:
1293 insert_string ("math"); break;
1294 case Sescape:
1295 insert_string ("escape"); break;
1296 case Scharquote:
1297 insert_string ("charquote"); break;
1298 case Scomment:
1299 insert_string ("comment"); break;
1300 case Sendcomment:
1301 insert_string ("endcomment"); break;
1302 case Sinherit:
1303 insert_string ("inherit"); break;
1304 case Scomment_fence:
1305 insert_string ("comment fence"); break;
1306 case Sstring_fence:
1307 insert_string ("string fence"); break;
1308 default:
1309 insert_string ("invalid");
1310 return syntax;
1311 }
1312
1313 if (!NILP (match_lisp))
1314 {
1315 insert_string (", matches ");
1316 insert_char (XINT (match_lisp));
1317 }
1318
1319 if (start1)
1320 insert_string (",\n\t is the first character of a comment-start sequence");
1321 if (start2)
1322 insert_string (",\n\t is the second character of a comment-start sequence");
1323
1324 if (end1)
1325 insert_string (",\n\t is the first character of a comment-end sequence");
1326 if (end2)
1327 insert_string (",\n\t is the second character of a comment-end sequence");
1328 if (comstyleb)
1329 insert_string (" (comment style b)");
1330 if (comstylec)
1331 insert_string (" (comment style c)");
1332 if (comnested)
1333 insert_string (" (nestable)");
1334
1335 if (prefix)
1336 insert1 (CALLN (Fformat,
1337 (build_string
1338 (",\n\t is a prefix character for "
1339 uLSQM"backward-prefix-chars"uRSQM))));
1340
1341 return syntax;
1342 }
1343 \f
1344 /* Return the position across COUNT words from FROM.
1345 If that many words cannot be found before the end of the buffer, return 0.
1346 COUNT negative means scan backward and stop at word beginning. */
1347
1348 ptrdiff_t
1349 scan_words (register ptrdiff_t from, register EMACS_INT count)
1350 {
1351 register ptrdiff_t beg = BEGV;
1352 register ptrdiff_t end = ZV;
1353 register ptrdiff_t from_byte = CHAR_TO_BYTE (from);
1354 register enum syntaxcode code;
1355 int ch0, ch1;
1356 Lisp_Object func, pos;
1357
1358 immediate_quit = 1;
1359 QUIT;
1360
1361 SETUP_SYNTAX_TABLE (from, count);
1362
1363 while (count > 0)
1364 {
1365 while (1)
1366 {
1367 if (from == end)
1368 {
1369 immediate_quit = 0;
1370 return 0;
1371 }
1372 UPDATE_SYNTAX_TABLE_FORWARD (from);
1373 ch0 = FETCH_CHAR_AS_MULTIBYTE (from_byte);
1374 code = SYNTAX (ch0);
1375 INC_BOTH (from, from_byte);
1376 if (words_include_escapes
1377 && (code == Sescape || code == Scharquote))
1378 break;
1379 if (code == Sword)
1380 break;
1381 }
1382 /* Now CH0 is a character which begins a word and FROM is the
1383 position of the next character. */
1384 func = CHAR_TABLE_REF (Vfind_word_boundary_function_table, ch0);
1385 if (! NILP (Ffboundp (func)))
1386 {
1387 pos = call2 (func, make_number (from - 1), make_number (end));
1388 if (INTEGERP (pos) && from < XINT (pos) && XINT (pos) <= ZV)
1389 {
1390 from = XINT (pos);
1391 from_byte = CHAR_TO_BYTE (from);
1392 }
1393 }
1394 else
1395 {
1396 while (1)
1397 {
1398 if (from == end) break;
1399 UPDATE_SYNTAX_TABLE_FORWARD (from);
1400 ch1 = FETCH_CHAR_AS_MULTIBYTE (from_byte);
1401 code = SYNTAX (ch1);
1402 if ((code != Sword
1403 && (! words_include_escapes
1404 || (code != Sescape && code != Scharquote)))
1405 || word_boundary_p (ch0, ch1))
1406 break;
1407 INC_BOTH (from, from_byte);
1408 ch0 = ch1;
1409 }
1410 }
1411 count--;
1412 }
1413 while (count < 0)
1414 {
1415 while (1)
1416 {
1417 if (from == beg)
1418 {
1419 immediate_quit = 0;
1420 return 0;
1421 }
1422 DEC_BOTH (from, from_byte);
1423 UPDATE_SYNTAX_TABLE_BACKWARD (from);
1424 ch1 = FETCH_CHAR_AS_MULTIBYTE (from_byte);
1425 code = SYNTAX (ch1);
1426 if (words_include_escapes
1427 && (code == Sescape || code == Scharquote))
1428 break;
1429 if (code == Sword)
1430 break;
1431 }
1432 /* Now CH1 is a character which ends a word and FROM is the
1433 position of it. */
1434 func = CHAR_TABLE_REF (Vfind_word_boundary_function_table, ch1);
1435 if (! NILP (Ffboundp (func)))
1436 {
1437 pos = call2 (func, make_number (from), make_number (beg));
1438 if (INTEGERP (pos) && BEGV <= XINT (pos) && XINT (pos) < from)
1439 {
1440 from = XINT (pos);
1441 from_byte = CHAR_TO_BYTE (from);
1442 }
1443 }
1444 else
1445 {
1446 while (1)
1447 {
1448 if (from == beg)
1449 break;
1450 DEC_BOTH (from, from_byte);
1451 UPDATE_SYNTAX_TABLE_BACKWARD (from);
1452 ch0 = FETCH_CHAR_AS_MULTIBYTE (from_byte);
1453 code = SYNTAX (ch0);
1454 if ((code != Sword
1455 && (! words_include_escapes
1456 || (code != Sescape && code != Scharquote)))
1457 || word_boundary_p (ch0, ch1))
1458 {
1459 INC_BOTH (from, from_byte);
1460 break;
1461 }
1462 ch1 = ch0;
1463 }
1464 }
1465 count++;
1466 }
1467
1468 immediate_quit = 0;
1469
1470 return from;
1471 }
1472
1473 DEFUN ("forward-word", Fforward_word, Sforward_word, 0, 1, "^p",
1474 doc: /* Move point forward ARG words (backward if ARG is negative).
1475 If ARG is omitted or nil, move point forward one word.
1476 Normally returns t.
1477 If an edge of the buffer or a field boundary is reached, point is left there
1478 and the function returns nil. Field boundaries are not noticed if
1479 `inhibit-field-text-motion' is non-nil. */)
1480 (Lisp_Object arg)
1481 {
1482 Lisp_Object tmp;
1483 ptrdiff_t orig_val, val;
1484
1485 if (NILP (arg))
1486 XSETFASTINT (arg, 1);
1487 else
1488 CHECK_NUMBER (arg);
1489
1490 val = orig_val = scan_words (PT, XINT (arg));
1491 if (! orig_val)
1492 val = XINT (arg) > 0 ? ZV : BEGV;
1493
1494 /* Avoid jumping out of an input field. */
1495 tmp = Fconstrain_to_field (make_number (val), make_number (PT),
1496 Qnil, Qnil, Qnil);
1497 val = XFASTINT (tmp);
1498
1499 SET_PT (val);
1500 return val == orig_val ? Qt : Qnil;
1501 }
1502 \f
1503 DEFUN ("skip-chars-forward", Fskip_chars_forward, Sskip_chars_forward, 1, 2, 0,
1504 doc: /* Move point forward, stopping before a char not in STRING, or at pos LIM.
1505 STRING is like the inside of a `[...]' in a regular expression
1506 except that `]' is never special and `\\' quotes `^', `-' or `\\'
1507 (but not at the end of a range; quoting is never needed there).
1508 Thus, with arg "a-zA-Z", this skips letters stopping before first nonletter.
1509 With arg "^a-zA-Z", skips nonletters stopping before first letter.
1510 Char classes, e.g. `[:alpha:]', are supported.
1511
1512 Returns the distance traveled, either zero or positive. */)
1513 (Lisp_Object string, Lisp_Object lim)
1514 {
1515 return skip_chars (1, string, lim, 1);
1516 }
1517
1518 DEFUN ("skip-chars-backward", Fskip_chars_backward, Sskip_chars_backward, 1, 2, 0,
1519 doc: /* Move point backward, stopping after a char not in STRING, or at pos LIM.
1520 See `skip-chars-forward' for details.
1521 Returns the distance traveled, either zero or negative. */)
1522 (Lisp_Object string, Lisp_Object lim)
1523 {
1524 return skip_chars (0, string, lim, 1);
1525 }
1526
1527 DEFUN ("skip-syntax-forward", Fskip_syntax_forward, Sskip_syntax_forward, 1, 2, 0,
1528 doc: /* Move point forward across chars in specified syntax classes.
1529 SYNTAX is a string of syntax code characters.
1530 Stop before a char whose syntax is not in SYNTAX, or at position LIM.
1531 If SYNTAX starts with ^, skip characters whose syntax is NOT in SYNTAX.
1532 This function returns the distance traveled, either zero or positive. */)
1533 (Lisp_Object syntax, Lisp_Object lim)
1534 {
1535 return skip_syntaxes (1, syntax, lim);
1536 }
1537
1538 DEFUN ("skip-syntax-backward", Fskip_syntax_backward, Sskip_syntax_backward, 1, 2, 0,
1539 doc: /* Move point backward across chars in specified syntax classes.
1540 SYNTAX is a string of syntax code characters.
1541 Stop on reaching a char whose syntax is not in SYNTAX, or at position LIM.
1542 If SYNTAX starts with ^, skip characters whose syntax is NOT in SYNTAX.
1543 This function returns either zero or a negative number, and the absolute value
1544 of this is the distance traveled. */)
1545 (Lisp_Object syntax, Lisp_Object lim)
1546 {
1547 return skip_syntaxes (0, syntax, lim);
1548 }
1549
1550 static Lisp_Object
1551 skip_chars (bool forwardp, Lisp_Object string, Lisp_Object lim,
1552 bool handle_iso_classes)
1553 {
1554 int c;
1555 char fastmap[0400];
1556 /* Store the ranges of non-ASCII characters. */
1557 int *char_ranges IF_LINT (= NULL);
1558 int n_char_ranges = 0;
1559 bool negate = 0;
1560 ptrdiff_t i, i_byte;
1561 /* True if the current buffer is multibyte and the region contains
1562 non-ASCII chars. */
1563 bool multibyte;
1564 /* True if STRING is multibyte and it contains non-ASCII chars. */
1565 bool string_multibyte;
1566 ptrdiff_t size_byte;
1567 const unsigned char *str;
1568 int len;
1569 Lisp_Object iso_classes;
1570 USE_SAFE_ALLOCA;
1571
1572 CHECK_STRING (string);
1573 iso_classes = Qnil;
1574
1575 if (NILP (lim))
1576 XSETINT (lim, forwardp ? ZV : BEGV);
1577 else
1578 CHECK_NUMBER_COERCE_MARKER (lim);
1579
1580 /* In any case, don't allow scan outside bounds of buffer. */
1581 if (XINT (lim) > ZV)
1582 XSETFASTINT (lim, ZV);
1583 if (XINT (lim) < BEGV)
1584 XSETFASTINT (lim, BEGV);
1585
1586 multibyte = (!NILP (BVAR (current_buffer, enable_multibyte_characters))
1587 && (XINT (lim) - PT != CHAR_TO_BYTE (XINT (lim)) - PT_BYTE));
1588 string_multibyte = SBYTES (string) > SCHARS (string);
1589
1590 memset (fastmap, 0, sizeof fastmap);
1591
1592 str = SDATA (string);
1593 size_byte = SBYTES (string);
1594
1595 i_byte = 0;
1596 if (i_byte < size_byte
1597 && SREF (string, 0) == '^')
1598 {
1599 negate = 1; i_byte++;
1600 }
1601
1602 /* Find the characters specified and set their elements of fastmap.
1603 Handle backslashes and ranges specially.
1604
1605 If STRING contains non-ASCII characters, setup char_ranges for
1606 them and use fastmap only for their leading codes. */
1607
1608 if (! string_multibyte)
1609 {
1610 bool string_has_eight_bit = 0;
1611
1612 /* At first setup fastmap. */
1613 while (i_byte < size_byte)
1614 {
1615 c = str[i_byte++];
1616
1617 if (handle_iso_classes && c == '['
1618 && i_byte < size_byte
1619 && str[i_byte] == ':')
1620 {
1621 const unsigned char *class_beg = str + i_byte + 1;
1622 const unsigned char *class_end = class_beg;
1623 const unsigned char *class_limit = str + size_byte - 2;
1624 /* Leave room for the null. */
1625 unsigned char class_name[CHAR_CLASS_MAX_LENGTH + 1];
1626 re_wctype_t cc;
1627
1628 if (class_limit - class_beg > CHAR_CLASS_MAX_LENGTH)
1629 class_limit = class_beg + CHAR_CLASS_MAX_LENGTH;
1630
1631 while (class_end < class_limit
1632 && *class_end >= 'a' && *class_end <= 'z')
1633 class_end++;
1634
1635 if (class_end == class_beg
1636 || *class_end != ':' || class_end[1] != ']')
1637 goto not_a_class_name;
1638
1639 memcpy (class_name, class_beg, class_end - class_beg);
1640 class_name[class_end - class_beg] = 0;
1641
1642 cc = re_wctype (class_name);
1643 if (cc == 0)
1644 error ("Invalid ISO C character class");
1645
1646 iso_classes = Fcons (make_number (cc), iso_classes);
1647
1648 i_byte = class_end + 2 - str;
1649 continue;
1650 }
1651
1652 not_a_class_name:
1653 if (c == '\\')
1654 {
1655 if (i_byte == size_byte)
1656 break;
1657
1658 c = str[i_byte++];
1659 }
1660 /* Treat `-' as range character only if another character
1661 follows. */
1662 if (i_byte + 1 < size_byte
1663 && str[i_byte] == '-')
1664 {
1665 int c2;
1666
1667 /* Skip over the dash. */
1668 i_byte++;
1669
1670 /* Get the end of the range. */
1671 c2 = str[i_byte++];
1672 if (c2 == '\\'
1673 && i_byte < size_byte)
1674 c2 = str[i_byte++];
1675
1676 if (c <= c2)
1677 {
1678 int lim2 = c2 + 1;
1679 while (c < lim2)
1680 fastmap[c++] = 1;
1681 if (! ASCII_CHAR_P (c2))
1682 string_has_eight_bit = 1;
1683 }
1684 }
1685 else
1686 {
1687 fastmap[c] = 1;
1688 if (! ASCII_CHAR_P (c))
1689 string_has_eight_bit = 1;
1690 }
1691 }
1692
1693 /* If the current range is multibyte and STRING contains
1694 eight-bit chars, arrange fastmap and setup char_ranges for
1695 the corresponding multibyte chars. */
1696 if (multibyte && string_has_eight_bit)
1697 {
1698 char *p1;
1699 char himap[0200 + 1];
1700 memcpy (himap, fastmap + 0200, 0200);
1701 himap[0200] = 0;
1702 memset (fastmap + 0200, 0, 0200);
1703 SAFE_NALLOCA (char_ranges, 2, 128);
1704 i = 0;
1705
1706 while ((p1 = memchr (himap + i, 1, 0200 - i)))
1707 {
1708 /* Deduce the next range C..C2 from the next clump of 1s
1709 in HIMAP starting with &HIMAP[I]. HIMAP is the high
1710 order half of the old FASTMAP. */
1711 int c2, leading_code;
1712 i = p1 - himap;
1713 c = BYTE8_TO_CHAR (i + 0200);
1714 i += strlen (p1);
1715 c2 = BYTE8_TO_CHAR (i + 0200 - 1);
1716
1717 char_ranges[n_char_ranges++] = c;
1718 char_ranges[n_char_ranges++] = c2;
1719 leading_code = CHAR_LEADING_CODE (c);
1720 memset (fastmap + leading_code, 1,
1721 CHAR_LEADING_CODE (c2) - leading_code + 1);
1722 }
1723 }
1724 }
1725 else /* STRING is multibyte */
1726 {
1727 SAFE_NALLOCA (char_ranges, 2, SCHARS (string));
1728
1729 while (i_byte < size_byte)
1730 {
1731 int leading_code = str[i_byte];
1732 c = STRING_CHAR_AND_LENGTH (str + i_byte, len);
1733 i_byte += len;
1734
1735 if (handle_iso_classes && c == '['
1736 && i_byte < size_byte
1737 && STRING_CHAR (str + i_byte) == ':')
1738 {
1739 const unsigned char *class_beg = str + i_byte + 1;
1740 const unsigned char *class_end = class_beg;
1741 const unsigned char *class_limit = str + size_byte - 2;
1742 /* Leave room for the null. */
1743 unsigned char class_name[CHAR_CLASS_MAX_LENGTH + 1];
1744 re_wctype_t cc;
1745
1746 if (class_limit - class_beg > CHAR_CLASS_MAX_LENGTH)
1747 class_limit = class_beg + CHAR_CLASS_MAX_LENGTH;
1748
1749 while (class_end < class_limit
1750 && *class_end >= 'a' && *class_end <= 'z')
1751 class_end++;
1752
1753 if (class_end == class_beg
1754 || *class_end != ':' || class_end[1] != ']')
1755 goto not_a_class_name_multibyte;
1756
1757 memcpy (class_name, class_beg, class_end - class_beg);
1758 class_name[class_end - class_beg] = 0;
1759
1760 cc = re_wctype (class_name);
1761 if (cc == 0)
1762 error ("Invalid ISO C character class");
1763
1764 iso_classes = Fcons (make_number (cc), iso_classes);
1765
1766 i_byte = class_end + 2 - str;
1767 continue;
1768 }
1769
1770 not_a_class_name_multibyte:
1771 if (c == '\\')
1772 {
1773 if (i_byte == size_byte)
1774 break;
1775
1776 leading_code = str[i_byte];
1777 c = STRING_CHAR_AND_LENGTH (str + i_byte, len);
1778 i_byte += len;
1779 }
1780 /* Treat `-' as range character only if another character
1781 follows. */
1782 if (i_byte + 1 < size_byte
1783 && str[i_byte] == '-')
1784 {
1785 int c2, leading_code2;
1786
1787 /* Skip over the dash. */
1788 i_byte++;
1789
1790 /* Get the end of the range. */
1791 leading_code2 = str[i_byte];
1792 c2 = STRING_CHAR_AND_LENGTH (str + i_byte, len);
1793 i_byte += len;
1794
1795 if (c2 == '\\'
1796 && i_byte < size_byte)
1797 {
1798 leading_code2 = str[i_byte];
1799 c2 = STRING_CHAR_AND_LENGTH (str + i_byte, len);
1800 i_byte += len;
1801 }
1802
1803 if (c > c2)
1804 continue;
1805 if (ASCII_CHAR_P (c))
1806 {
1807 while (c <= c2 && c < 0x80)
1808 fastmap[c++] = 1;
1809 leading_code = CHAR_LEADING_CODE (c);
1810 }
1811 if (! ASCII_CHAR_P (c))
1812 {
1813 int lim2 = leading_code2 + 1;
1814 while (leading_code < lim2)
1815 fastmap[leading_code++] = 1;
1816 if (c <= c2)
1817 {
1818 char_ranges[n_char_ranges++] = c;
1819 char_ranges[n_char_ranges++] = c2;
1820 }
1821 }
1822 }
1823 else
1824 {
1825 if (ASCII_CHAR_P (c))
1826 fastmap[c] = 1;
1827 else
1828 {
1829 fastmap[leading_code] = 1;
1830 char_ranges[n_char_ranges++] = c;
1831 char_ranges[n_char_ranges++] = c;
1832 }
1833 }
1834 }
1835
1836 /* If the current range is unibyte and STRING contains non-ASCII
1837 chars, arrange fastmap for the corresponding unibyte
1838 chars. */
1839
1840 if (! multibyte && n_char_ranges > 0)
1841 {
1842 memset (fastmap + 0200, 0, 0200);
1843 for (i = 0; i < n_char_ranges; i += 2)
1844 {
1845 int c1 = char_ranges[i];
1846 int lim2 = char_ranges[i + 1] + 1;
1847
1848 for (; c1 < lim2; c1++)
1849 {
1850 int b = CHAR_TO_BYTE_SAFE (c1);
1851 if (b >= 0)
1852 fastmap[b] = 1;
1853 }
1854 }
1855 }
1856 }
1857
1858 /* If ^ was the first character, complement the fastmap. */
1859 if (negate)
1860 {
1861 if (! multibyte)
1862 for (i = 0; i < sizeof fastmap; i++)
1863 fastmap[i] ^= 1;
1864 else
1865 {
1866 for (i = 0; i < 0200; i++)
1867 fastmap[i] ^= 1;
1868 /* All non-ASCII chars possibly match. */
1869 for (; i < sizeof fastmap; i++)
1870 fastmap[i] = 1;
1871 }
1872 }
1873
1874 {
1875 ptrdiff_t start_point = PT;
1876 ptrdiff_t pos = PT;
1877 ptrdiff_t pos_byte = PT_BYTE;
1878 unsigned char *p = PT_ADDR, *endp, *stop;
1879
1880 if (forwardp)
1881 {
1882 endp = (XINT (lim) == GPT) ? GPT_ADDR : CHAR_POS_ADDR (XINT (lim));
1883 stop = (pos < GPT && GPT < XINT (lim)) ? GPT_ADDR : endp;
1884 }
1885 else
1886 {
1887 endp = CHAR_POS_ADDR (XINT (lim));
1888 stop = (pos >= GPT && GPT > XINT (lim)) ? GAP_END_ADDR : endp;
1889 }
1890
1891 immediate_quit = 1;
1892 /* This code may look up syntax tables using functions that rely on the
1893 gl_state object. To make sure this object is not out of date,
1894 let's initialize it manually.
1895 We ignore syntax-table text-properties for now, since that's
1896 what we've done in the past. */
1897 SETUP_BUFFER_SYNTAX_TABLE ();
1898 if (forwardp)
1899 {
1900 if (multibyte)
1901 while (1)
1902 {
1903 int nbytes;
1904
1905 if (p >= stop)
1906 {
1907 if (p >= endp)
1908 break;
1909 p = GAP_END_ADDR;
1910 stop = endp;
1911 }
1912 c = STRING_CHAR_AND_LENGTH (p, nbytes);
1913 if (! NILP (iso_classes) && in_classes (c, iso_classes))
1914 {
1915 if (negate)
1916 break;
1917 else
1918 goto fwd_ok;
1919 }
1920
1921 if (! fastmap[*p])
1922 break;
1923 if (! ASCII_CHAR_P (c))
1924 {
1925 /* As we are looking at a multibyte character, we
1926 must look up the character in the table
1927 CHAR_RANGES. If there's no data in the table,
1928 that character is not what we want to skip. */
1929
1930 /* The following code do the right thing even if
1931 n_char_ranges is zero (i.e. no data in
1932 CHAR_RANGES). */
1933 for (i = 0; i < n_char_ranges; i += 2)
1934 if (c >= char_ranges[i] && c <= char_ranges[i + 1])
1935 break;
1936 if (!(negate ^ (i < n_char_ranges)))
1937 break;
1938 }
1939 fwd_ok:
1940 p += nbytes, pos++, pos_byte += nbytes;
1941 }
1942 else
1943 while (1)
1944 {
1945 if (p >= stop)
1946 {
1947 if (p >= endp)
1948 break;
1949 p = GAP_END_ADDR;
1950 stop = endp;
1951 }
1952
1953 if (!NILP (iso_classes) && in_classes (*p, iso_classes))
1954 {
1955 if (negate)
1956 break;
1957 else
1958 goto fwd_unibyte_ok;
1959 }
1960
1961 if (!fastmap[*p])
1962 break;
1963 fwd_unibyte_ok:
1964 p++, pos++, pos_byte++;
1965 }
1966 }
1967 else
1968 {
1969 if (multibyte)
1970 while (1)
1971 {
1972 unsigned char *prev_p;
1973
1974 if (p <= stop)
1975 {
1976 if (p <= endp)
1977 break;
1978 p = GPT_ADDR;
1979 stop = endp;
1980 }
1981 prev_p = p;
1982 while (--p >= stop && ! CHAR_HEAD_P (*p));
1983 c = STRING_CHAR (p);
1984
1985 if (! NILP (iso_classes) && in_classes (c, iso_classes))
1986 {
1987 if (negate)
1988 break;
1989 else
1990 goto back_ok;
1991 }
1992
1993 if (! fastmap[*p])
1994 break;
1995 if (! ASCII_CHAR_P (c))
1996 {
1997 /* See the comment in the previous similar code. */
1998 for (i = 0; i < n_char_ranges; i += 2)
1999 if (c >= char_ranges[i] && c <= char_ranges[i + 1])
2000 break;
2001 if (!(negate ^ (i < n_char_ranges)))
2002 break;
2003 }
2004 back_ok:
2005 pos--, pos_byte -= prev_p - p;
2006 }
2007 else
2008 while (1)
2009 {
2010 if (p <= stop)
2011 {
2012 if (p <= endp)
2013 break;
2014 p = GPT_ADDR;
2015 stop = endp;
2016 }
2017
2018 if (! NILP (iso_classes) && in_classes (p[-1], iso_classes))
2019 {
2020 if (negate)
2021 break;
2022 else
2023 goto back_unibyte_ok;
2024 }
2025
2026 if (!fastmap[p[-1]])
2027 break;
2028 back_unibyte_ok:
2029 p--, pos--, pos_byte--;
2030 }
2031 }
2032
2033 SET_PT_BOTH (pos, pos_byte);
2034 immediate_quit = 0;
2035
2036 SAFE_FREE ();
2037 return make_number (PT - start_point);
2038 }
2039 }
2040
2041
2042 static Lisp_Object
2043 skip_syntaxes (bool forwardp, Lisp_Object string, Lisp_Object lim)
2044 {
2045 int c;
2046 unsigned char fastmap[0400];
2047 bool negate = 0;
2048 ptrdiff_t i, i_byte;
2049 bool multibyte;
2050 ptrdiff_t size_byte;
2051 unsigned char *str;
2052
2053 CHECK_STRING (string);
2054
2055 if (NILP (lim))
2056 XSETINT (lim, forwardp ? ZV : BEGV);
2057 else
2058 CHECK_NUMBER_COERCE_MARKER (lim);
2059
2060 /* In any case, don't allow scan outside bounds of buffer. */
2061 if (XINT (lim) > ZV)
2062 XSETFASTINT (lim, ZV);
2063 if (XINT (lim) < BEGV)
2064 XSETFASTINT (lim, BEGV);
2065
2066 if (forwardp ? (PT >= XFASTINT (lim)) : (PT <= XFASTINT (lim)))
2067 return make_number (0);
2068
2069 multibyte = (!NILP (BVAR (current_buffer, enable_multibyte_characters))
2070 && (XINT (lim) - PT != CHAR_TO_BYTE (XINT (lim)) - PT_BYTE));
2071
2072 memset (fastmap, 0, sizeof fastmap);
2073
2074 if (SBYTES (string) > SCHARS (string))
2075 /* As this is very rare case (syntax spec is ASCII only), don't
2076 consider efficiency. */
2077 string = string_make_unibyte (string);
2078
2079 str = SDATA (string);
2080 size_byte = SBYTES (string);
2081
2082 i_byte = 0;
2083 if (i_byte < size_byte
2084 && SREF (string, 0) == '^')
2085 {
2086 negate = 1; i_byte++;
2087 }
2088
2089 /* Find the syntaxes specified and set their elements of fastmap. */
2090
2091 while (i_byte < size_byte)
2092 {
2093 c = str[i_byte++];
2094 fastmap[syntax_spec_code[c]] = 1;
2095 }
2096
2097 /* If ^ was the first character, complement the fastmap. */
2098 if (negate)
2099 for (i = 0; i < sizeof fastmap; i++)
2100 fastmap[i] ^= 1;
2101
2102 {
2103 ptrdiff_t start_point = PT;
2104 ptrdiff_t pos = PT;
2105 ptrdiff_t pos_byte = PT_BYTE;
2106 unsigned char *p = PT_ADDR, *endp, *stop;
2107
2108 if (forwardp)
2109 {
2110 endp = (XINT (lim) == GPT) ? GPT_ADDR : CHAR_POS_ADDR (XINT (lim));
2111 stop = (pos < GPT && GPT < XINT (lim)) ? GPT_ADDR : endp;
2112 }
2113 else
2114 {
2115 endp = CHAR_POS_ADDR (XINT (lim));
2116 stop = (pos >= GPT && GPT > XINT (lim)) ? GAP_END_ADDR : endp;
2117 }
2118
2119 immediate_quit = 1;
2120 SETUP_SYNTAX_TABLE (pos, forwardp ? 1 : -1);
2121 if (forwardp)
2122 {
2123 if (multibyte)
2124 {
2125 while (1)
2126 {
2127 int nbytes;
2128
2129 if (p >= stop)
2130 {
2131 if (p >= endp)
2132 break;
2133 p = GAP_END_ADDR;
2134 stop = endp;
2135 }
2136 c = STRING_CHAR_AND_LENGTH (p, nbytes);
2137 if (! fastmap[SYNTAX (c)])
2138 break;
2139 p += nbytes, pos++, pos_byte += nbytes;
2140 UPDATE_SYNTAX_TABLE_FORWARD (pos);
2141 }
2142 }
2143 else
2144 {
2145 while (1)
2146 {
2147 if (p >= stop)
2148 {
2149 if (p >= endp)
2150 break;
2151 p = GAP_END_ADDR;
2152 stop = endp;
2153 }
2154 if (! fastmap[SYNTAX (*p)])
2155 break;
2156 p++, pos++, pos_byte++;
2157 UPDATE_SYNTAX_TABLE_FORWARD (pos);
2158 }
2159 }
2160 }
2161 else
2162 {
2163 if (multibyte)
2164 {
2165 while (1)
2166 {
2167 unsigned char *prev_p;
2168
2169 if (p <= stop)
2170 {
2171 if (p <= endp)
2172 break;
2173 p = GPT_ADDR;
2174 stop = endp;
2175 }
2176 UPDATE_SYNTAX_TABLE_BACKWARD (pos - 1);
2177 prev_p = p;
2178 while (--p >= stop && ! CHAR_HEAD_P (*p));
2179 c = STRING_CHAR (p);
2180 if (! fastmap[SYNTAX (c)])
2181 break;
2182 pos--, pos_byte -= prev_p - p;
2183 }
2184 }
2185 else
2186 {
2187 while (1)
2188 {
2189 if (p <= stop)
2190 {
2191 if (p <= endp)
2192 break;
2193 p = GPT_ADDR;
2194 stop = endp;
2195 }
2196 UPDATE_SYNTAX_TABLE_BACKWARD (pos - 1);
2197 if (! fastmap[SYNTAX (p[-1])])
2198 break;
2199 p--, pos--, pos_byte--;
2200 }
2201 }
2202 }
2203
2204 SET_PT_BOTH (pos, pos_byte);
2205 immediate_quit = 0;
2206
2207 return make_number (PT - start_point);
2208 }
2209 }
2210
2211 /* Return true if character C belongs to one of the ISO classes
2212 in the list ISO_CLASSES. Each class is represented by an
2213 integer which is its type according to re_wctype. */
2214
2215 static bool
2216 in_classes (int c, Lisp_Object iso_classes)
2217 {
2218 bool fits_class = 0;
2219
2220 while (CONSP (iso_classes))
2221 {
2222 Lisp_Object elt;
2223 elt = XCAR (iso_classes);
2224 iso_classes = XCDR (iso_classes);
2225
2226 if (re_iswctype (c, XFASTINT (elt)))
2227 fits_class = 1;
2228 }
2229
2230 return fits_class;
2231 }
2232 \f
2233 /* Jump over a comment, assuming we are at the beginning of one.
2234 FROM is the current position.
2235 FROM_BYTE is the bytepos corresponding to FROM.
2236 Do not move past STOP (a charpos).
2237 The comment over which we have to jump is of style STYLE
2238 (either SYNTAX_FLAGS_COMMENT_STYLE (foo) or ST_COMMENT_STYLE).
2239 NESTING should be positive to indicate the nesting at the beginning
2240 for nested comments and should be zero or negative else.
2241 ST_COMMENT_STYLE cannot be nested.
2242 PREV_SYNTAX is the SYNTAX_WITH_FLAGS of the previous character
2243 (or 0 If the search cannot start in the middle of a two-character).
2244
2245 If successful, return true and store the charpos of the comment's end
2246 into *CHARPOS_PTR and the corresponding bytepos into *BYTEPOS_PTR.
2247 Else, return false and store the charpos STOP into *CHARPOS_PTR, the
2248 corresponding bytepos into *BYTEPOS_PTR and the current nesting
2249 (as defined for state.incomment) in *INCOMMENT_PTR.
2250
2251 The comment end is the last character of the comment rather than the
2252 character just after the comment.
2253
2254 Global syntax data is assumed to initially be valid for FROM and
2255 remains valid for forward search starting at the returned position. */
2256
2257 static bool
2258 forw_comment (ptrdiff_t from, ptrdiff_t from_byte, ptrdiff_t stop,
2259 EMACS_INT nesting, int style, int prev_syntax,
2260 ptrdiff_t *charpos_ptr, ptrdiff_t *bytepos_ptr,
2261 EMACS_INT *incomment_ptr)
2262 {
2263 register int c, c1;
2264 register enum syntaxcode code;
2265 register int syntax, other_syntax;
2266
2267 if (nesting <= 0) nesting = -1;
2268
2269 /* Enter the loop in the middle so that we find
2270 a 2-char comment ender if we start in the middle of it. */
2271 syntax = prev_syntax;
2272 if (syntax != 0) goto forw_incomment;
2273
2274 while (1)
2275 {
2276 if (from == stop)
2277 {
2278 *incomment_ptr = nesting;
2279 *charpos_ptr = from;
2280 *bytepos_ptr = from_byte;
2281 return 0;
2282 }
2283 c = FETCH_CHAR_AS_MULTIBYTE (from_byte);
2284 syntax = SYNTAX_WITH_FLAGS (c);
2285 code = syntax & 0xff;
2286 if (code == Sendcomment
2287 && SYNTAX_FLAGS_COMMENT_STYLE (syntax, 0) == style
2288 && (SYNTAX_FLAGS_COMMENT_NESTED (syntax) ?
2289 (nesting > 0 && --nesting == 0) : nesting < 0))
2290 /* we have encountered a comment end of the same style
2291 as the comment sequence which began this comment
2292 section */
2293 break;
2294 if (code == Scomment_fence
2295 && style == ST_COMMENT_STYLE)
2296 /* we have encountered a comment end of the same style
2297 as the comment sequence which began this comment
2298 section. */
2299 break;
2300 if (nesting > 0
2301 && code == Scomment
2302 && SYNTAX_FLAGS_COMMENT_NESTED (syntax)
2303 && SYNTAX_FLAGS_COMMENT_STYLE (syntax, 0) == style)
2304 /* we have encountered a nested comment of the same style
2305 as the comment sequence which began this comment section */
2306 nesting++;
2307 INC_BOTH (from, from_byte);
2308 UPDATE_SYNTAX_TABLE_FORWARD (from);
2309
2310 forw_incomment:
2311 if (from < stop && SYNTAX_FLAGS_COMEND_FIRST (syntax)
2312 && (c1 = FETCH_CHAR_AS_MULTIBYTE (from_byte),
2313 other_syntax = SYNTAX_WITH_FLAGS (c1),
2314 SYNTAX_FLAGS_COMEND_SECOND (other_syntax))
2315 && SYNTAX_FLAGS_COMMENT_STYLE (syntax, other_syntax) == style
2316 && ((SYNTAX_FLAGS_COMMENT_NESTED (syntax) ||
2317 SYNTAX_FLAGS_COMMENT_NESTED (other_syntax))
2318 ? nesting > 0 : nesting < 0))
2319 {
2320 if (--nesting <= 0)
2321 /* we have encountered a comment end of the same style
2322 as the comment sequence which began this comment
2323 section */
2324 break;
2325 else
2326 {
2327 INC_BOTH (from, from_byte);
2328 UPDATE_SYNTAX_TABLE_FORWARD (from);
2329 }
2330 }
2331 if (nesting > 0
2332 && from < stop
2333 && SYNTAX_FLAGS_COMSTART_FIRST (syntax)
2334 && (c1 = FETCH_CHAR_AS_MULTIBYTE (from_byte),
2335 other_syntax = SYNTAX_WITH_FLAGS (c1),
2336 SYNTAX_FLAGS_COMMENT_STYLE (other_syntax, syntax) == style
2337 && SYNTAX_FLAGS_COMSTART_SECOND (other_syntax))
2338 && (SYNTAX_FLAGS_COMMENT_NESTED (syntax) ||
2339 SYNTAX_FLAGS_COMMENT_NESTED (other_syntax)))
2340 /* we have encountered a nested comment of the same style
2341 as the comment sequence which began this comment
2342 section */
2343 {
2344 INC_BOTH (from, from_byte);
2345 UPDATE_SYNTAX_TABLE_FORWARD (from);
2346 nesting++;
2347 }
2348 }
2349 *charpos_ptr = from;
2350 *bytepos_ptr = from_byte;
2351 return 1;
2352 }
2353
2354 DEFUN ("forward-comment", Fforward_comment, Sforward_comment, 1, 1, 0,
2355 doc: /*
2356 Move forward across up to COUNT comments. If COUNT is negative, move backward.
2357 Stop scanning if we find something other than a comment or whitespace.
2358 Set point to where scanning stops.
2359 If COUNT comments are found as expected, with nothing except whitespace
2360 between them, return t; otherwise return nil. */)
2361 (Lisp_Object count)
2362 {
2363 ptrdiff_t from, from_byte, stop;
2364 int c, c1;
2365 enum syntaxcode code;
2366 int comstyle = 0; /* style of comment encountered */
2367 bool comnested = 0; /* whether the comment is nestable or not */
2368 bool found;
2369 EMACS_INT count1;
2370 ptrdiff_t out_charpos, out_bytepos;
2371 EMACS_INT dummy;
2372
2373 CHECK_NUMBER (count);
2374 count1 = XINT (count);
2375 stop = count1 > 0 ? ZV : BEGV;
2376
2377 immediate_quit = 1;
2378 QUIT;
2379
2380 from = PT;
2381 from_byte = PT_BYTE;
2382
2383 SETUP_SYNTAX_TABLE (from, count1);
2384 while (count1 > 0)
2385 {
2386 do
2387 {
2388 bool comstart_first;
2389 int syntax, other_syntax;
2390
2391 if (from == stop)
2392 {
2393 SET_PT_BOTH (from, from_byte);
2394 immediate_quit = 0;
2395 return Qnil;
2396 }
2397 c = FETCH_CHAR_AS_MULTIBYTE (from_byte);
2398 syntax = SYNTAX_WITH_FLAGS (c);
2399 code = SYNTAX (c);
2400 comstart_first = SYNTAX_FLAGS_COMSTART_FIRST (syntax);
2401 comnested = SYNTAX_FLAGS_COMMENT_NESTED (syntax);
2402 comstyle = SYNTAX_FLAGS_COMMENT_STYLE (syntax, 0);
2403 INC_BOTH (from, from_byte);
2404 UPDATE_SYNTAX_TABLE_FORWARD (from);
2405 if (from < stop && comstart_first
2406 && (c1 = FETCH_CHAR_AS_MULTIBYTE (from_byte),
2407 other_syntax = SYNTAX_WITH_FLAGS (c1),
2408 SYNTAX_FLAGS_COMSTART_SECOND (other_syntax)))
2409 {
2410 /* We have encountered a comment start sequence and we
2411 are ignoring all text inside comments. We must record
2412 the comment style this sequence begins so that later,
2413 only a comment end of the same style actually ends
2414 the comment section. */
2415 code = Scomment;
2416 comstyle = SYNTAX_FLAGS_COMMENT_STYLE (other_syntax, syntax);
2417 comnested |= SYNTAX_FLAGS_COMMENT_NESTED (other_syntax);
2418 INC_BOTH (from, from_byte);
2419 UPDATE_SYNTAX_TABLE_FORWARD (from);
2420 }
2421 }
2422 while (code == Swhitespace || (code == Sendcomment && c == '\n'));
2423
2424 if (code == Scomment_fence)
2425 comstyle = ST_COMMENT_STYLE;
2426 else if (code != Scomment)
2427 {
2428 immediate_quit = 0;
2429 DEC_BOTH (from, from_byte);
2430 SET_PT_BOTH (from, from_byte);
2431 return Qnil;
2432 }
2433 /* We're at the start of a comment. */
2434 found = forw_comment (from, from_byte, stop, comnested, comstyle, 0,
2435 &out_charpos, &out_bytepos, &dummy);
2436 from = out_charpos; from_byte = out_bytepos;
2437 if (!found)
2438 {
2439 immediate_quit = 0;
2440 SET_PT_BOTH (from, from_byte);
2441 return Qnil;
2442 }
2443 INC_BOTH (from, from_byte);
2444 UPDATE_SYNTAX_TABLE_FORWARD (from);
2445 /* We have skipped one comment. */
2446 count1--;
2447 }
2448
2449 while (count1 < 0)
2450 {
2451 while (1)
2452 {
2453 bool quoted;
2454 int syntax;
2455
2456 if (from <= stop)
2457 {
2458 SET_PT_BOTH (BEGV, BEGV_BYTE);
2459 immediate_quit = 0;
2460 return Qnil;
2461 }
2462
2463 DEC_BOTH (from, from_byte);
2464 /* char_quoted does UPDATE_SYNTAX_TABLE_BACKWARD (from). */
2465 quoted = char_quoted (from, from_byte);
2466 c = FETCH_CHAR_AS_MULTIBYTE (from_byte);
2467 syntax = SYNTAX_WITH_FLAGS (c);
2468 code = SYNTAX (c);
2469 comstyle = 0;
2470 comnested = SYNTAX_FLAGS_COMMENT_NESTED (syntax);
2471 if (code == Sendcomment)
2472 comstyle = SYNTAX_FLAGS_COMMENT_STYLE (syntax, 0);
2473 if (from > stop && SYNTAX_FLAGS_COMEND_SECOND (syntax)
2474 && prev_char_comend_first (from, from_byte)
2475 && !char_quoted (from - 1, dec_bytepos (from_byte)))
2476 {
2477 int other_syntax;
2478 /* We must record the comment style encountered so that
2479 later, we can match only the proper comment begin
2480 sequence of the same style. */
2481 DEC_BOTH (from, from_byte);
2482 code = Sendcomment;
2483 /* Calling char_quoted, above, set up global syntax position
2484 at the new value of FROM. */
2485 c1 = FETCH_CHAR_AS_MULTIBYTE (from_byte);
2486 other_syntax = SYNTAX_WITH_FLAGS (c1);
2487 comstyle = SYNTAX_FLAGS_COMMENT_STYLE (other_syntax, syntax);
2488 comnested |= SYNTAX_FLAGS_COMMENT_NESTED (other_syntax);
2489 }
2490
2491 if (code == Scomment_fence)
2492 {
2493 /* Skip until first preceding unquoted comment_fence. */
2494 bool fence_found = 0;
2495 ptrdiff_t ini = from, ini_byte = from_byte;
2496
2497 while (1)
2498 {
2499 DEC_BOTH (from, from_byte);
2500 UPDATE_SYNTAX_TABLE_BACKWARD (from);
2501 c = FETCH_CHAR_AS_MULTIBYTE (from_byte);
2502 if (SYNTAX (c) == Scomment_fence
2503 && !char_quoted (from, from_byte))
2504 {
2505 fence_found = 1;
2506 break;
2507 }
2508 else if (from == stop)
2509 break;
2510 }
2511 if (fence_found == 0)
2512 {
2513 from = ini; /* Set point to ini + 1. */
2514 from_byte = ini_byte;
2515 goto leave;
2516 }
2517 else
2518 /* We have skipped one comment. */
2519 break;
2520 }
2521 else if (code == Sendcomment)
2522 {
2523 found = back_comment (from, from_byte, stop, comnested, comstyle,
2524 &out_charpos, &out_bytepos);
2525 if (!found)
2526 {
2527 if (c == '\n')
2528 /* This end-of-line is not an end-of-comment.
2529 Treat it like a whitespace.
2530 CC-mode (and maybe others) relies on this behavior. */
2531 ;
2532 else
2533 {
2534 /* Failure: we should go back to the end of this
2535 not-quite-endcomment. */
2536 if (SYNTAX (c) != code)
2537 /* It was a two-char Sendcomment. */
2538 INC_BOTH (from, from_byte);
2539 goto leave;
2540 }
2541 }
2542 else
2543 {
2544 /* We have skipped one comment. */
2545 from = out_charpos, from_byte = out_bytepos;
2546 break;
2547 }
2548 }
2549 else if (code != Swhitespace || quoted)
2550 {
2551 leave:
2552 immediate_quit = 0;
2553 INC_BOTH (from, from_byte);
2554 SET_PT_BOTH (from, from_byte);
2555 return Qnil;
2556 }
2557 }
2558
2559 count1++;
2560 }
2561
2562 SET_PT_BOTH (from, from_byte);
2563 immediate_quit = 0;
2564 return Qt;
2565 }
2566 \f
2567 /* Return syntax code of character C if C is an ASCII character
2568 or if MULTIBYTE_SYMBOL_P is false. Otherwise, return Ssymbol. */
2569
2570 static enum syntaxcode
2571 syntax_multibyte (int c, bool multibyte_symbol_p)
2572 {
2573 return ASCII_CHAR_P (c) || !multibyte_symbol_p ? SYNTAX (c) : Ssymbol;
2574 }
2575
2576 static Lisp_Object
2577 scan_lists (EMACS_INT from, EMACS_INT count, EMACS_INT depth, bool sexpflag)
2578 {
2579 Lisp_Object val;
2580 ptrdiff_t stop = count > 0 ? ZV : BEGV;
2581 int c, c1;
2582 int stringterm;
2583 bool quoted;
2584 bool mathexit = 0;
2585 enum syntaxcode code;
2586 EMACS_INT min_depth = depth; /* Err out if depth gets less than this. */
2587 int comstyle = 0; /* style of comment encountered */
2588 bool comnested = 0; /* whether the comment is nestable or not */
2589 ptrdiff_t temp_pos;
2590 EMACS_INT last_good = from;
2591 bool found;
2592 ptrdiff_t from_byte;
2593 ptrdiff_t out_bytepos, out_charpos;
2594 EMACS_INT dummy;
2595 bool multibyte_symbol_p = sexpflag && multibyte_syntax_as_symbol;
2596
2597 if (depth > 0) min_depth = 0;
2598
2599 if (from > ZV) from = ZV;
2600 if (from < BEGV) from = BEGV;
2601
2602 from_byte = CHAR_TO_BYTE (from);
2603
2604 immediate_quit = 1;
2605 QUIT;
2606
2607 SETUP_SYNTAX_TABLE (from, count);
2608 while (count > 0)
2609 {
2610 while (from < stop)
2611 {
2612 bool comstart_first, prefix;
2613 int syntax, other_syntax;
2614 UPDATE_SYNTAX_TABLE_FORWARD (from);
2615 c = FETCH_CHAR_AS_MULTIBYTE (from_byte);
2616 syntax = SYNTAX_WITH_FLAGS (c);
2617 code = syntax_multibyte (c, multibyte_symbol_p);
2618 comstart_first = SYNTAX_FLAGS_COMSTART_FIRST (syntax);
2619 comnested = SYNTAX_FLAGS_COMMENT_NESTED (syntax);
2620 comstyle = SYNTAX_FLAGS_COMMENT_STYLE (syntax, 0);
2621 prefix = SYNTAX_FLAGS_PREFIX (syntax);
2622 if (depth == min_depth)
2623 last_good = from;
2624 INC_BOTH (from, from_byte);
2625 UPDATE_SYNTAX_TABLE_FORWARD (from);
2626 if (from < stop && comstart_first
2627 && (c = FETCH_CHAR_AS_MULTIBYTE (from_byte),
2628 other_syntax = SYNTAX_WITH_FLAGS (c),
2629 SYNTAX_FLAGS_COMSTART_SECOND (other_syntax))
2630 && parse_sexp_ignore_comments)
2631 {
2632 /* we have encountered a comment start sequence and we
2633 are ignoring all text inside comments. We must record
2634 the comment style this sequence begins so that later,
2635 only a comment end of the same style actually ends
2636 the comment section */
2637 code = Scomment;
2638 comstyle = SYNTAX_FLAGS_COMMENT_STYLE (other_syntax, syntax);
2639 comnested |= SYNTAX_FLAGS_COMMENT_NESTED (other_syntax);
2640 INC_BOTH (from, from_byte);
2641 UPDATE_SYNTAX_TABLE_FORWARD (from);
2642 }
2643
2644 if (prefix)
2645 continue;
2646
2647 switch (code)
2648 {
2649 case Sescape:
2650 case Scharquote:
2651 if (from == stop)
2652 goto lose;
2653 INC_BOTH (from, from_byte);
2654 /* treat following character as a word constituent */
2655 case Sword:
2656 case Ssymbol:
2657 if (depth || !sexpflag) break;
2658 /* This word counts as a sexp; return at end of it. */
2659 while (from < stop)
2660 {
2661 UPDATE_SYNTAX_TABLE_FORWARD (from);
2662
2663 c = FETCH_CHAR_AS_MULTIBYTE (from_byte);
2664 switch (syntax_multibyte (c, multibyte_symbol_p))
2665 {
2666 case Scharquote:
2667 case Sescape:
2668 INC_BOTH (from, from_byte);
2669 if (from == stop)
2670 goto lose;
2671 break;
2672 case Sword:
2673 case Ssymbol:
2674 case Squote:
2675 break;
2676 default:
2677 goto done;
2678 }
2679 INC_BOTH (from, from_byte);
2680 }
2681 goto done;
2682
2683 case Scomment_fence:
2684 comstyle = ST_COMMENT_STYLE;
2685 /* FALLTHROUGH */
2686 case Scomment:
2687 if (!parse_sexp_ignore_comments) break;
2688 UPDATE_SYNTAX_TABLE_FORWARD (from);
2689 found = forw_comment (from, from_byte, stop,
2690 comnested, comstyle, 0,
2691 &out_charpos, &out_bytepos, &dummy);
2692 from = out_charpos, from_byte = out_bytepos;
2693 if (!found)
2694 {
2695 if (depth == 0)
2696 goto done;
2697 goto lose;
2698 }
2699 INC_BOTH (from, from_byte);
2700 UPDATE_SYNTAX_TABLE_FORWARD (from);
2701 break;
2702
2703 case Smath:
2704 if (!sexpflag)
2705 break;
2706 if (from != stop && c == FETCH_CHAR_AS_MULTIBYTE (from_byte))
2707 {
2708 INC_BOTH (from, from_byte);
2709 }
2710 if (mathexit)
2711 {
2712 mathexit = 0;
2713 goto close1;
2714 }
2715 mathexit = 1;
2716
2717 case Sopen:
2718 if (!++depth) goto done;
2719 break;
2720
2721 case Sclose:
2722 close1:
2723 if (!--depth) goto done;
2724 if (depth < min_depth)
2725 xsignal3 (Qscan_error,
2726 build_string ("Containing expression ends prematurely"),
2727 make_number (last_good), make_number (from));
2728 break;
2729
2730 case Sstring:
2731 case Sstring_fence:
2732 temp_pos = dec_bytepos (from_byte);
2733 stringterm = FETCH_CHAR_AS_MULTIBYTE (temp_pos);
2734 while (1)
2735 {
2736 enum syntaxcode c_code;
2737 if (from >= stop)
2738 goto lose;
2739 UPDATE_SYNTAX_TABLE_FORWARD (from);
2740 c = FETCH_CHAR_AS_MULTIBYTE (from_byte);
2741 c_code = syntax_multibyte (c, multibyte_symbol_p);
2742 if (code == Sstring
2743 ? c == stringterm && c_code == Sstring
2744 : c_code == Sstring_fence)
2745 break;
2746
2747 switch (c_code)
2748 {
2749 case Scharquote:
2750 case Sescape:
2751 INC_BOTH (from, from_byte);
2752 }
2753 INC_BOTH (from, from_byte);
2754 }
2755 INC_BOTH (from, from_byte);
2756 if (!depth && sexpflag) goto done;
2757 break;
2758 default:
2759 /* Ignore whitespace, punctuation, quote, endcomment. */
2760 break;
2761 }
2762 }
2763
2764 /* Reached end of buffer. Error if within object, return nil if between */
2765 if (depth)
2766 goto lose;
2767
2768 immediate_quit = 0;
2769 return Qnil;
2770
2771 /* End of object reached */
2772 done:
2773 count--;
2774 }
2775
2776 while (count < 0)
2777 {
2778 while (from > stop)
2779 {
2780 int syntax;
2781 DEC_BOTH (from, from_byte);
2782 UPDATE_SYNTAX_TABLE_BACKWARD (from);
2783 c = FETCH_CHAR_AS_MULTIBYTE (from_byte);
2784 syntax= SYNTAX_WITH_FLAGS (c);
2785 code = syntax_multibyte (c, multibyte_symbol_p);
2786 if (depth == min_depth)
2787 last_good = from;
2788 comstyle = 0;
2789 comnested = SYNTAX_FLAGS_COMMENT_NESTED (syntax);
2790 if (code == Sendcomment)
2791 comstyle = SYNTAX_FLAGS_COMMENT_STYLE (syntax, 0);
2792 if (from > stop && SYNTAX_FLAGS_COMEND_SECOND (syntax)
2793 && prev_char_comend_first (from, from_byte)
2794 && parse_sexp_ignore_comments)
2795 {
2796 /* We must record the comment style encountered so that
2797 later, we can match only the proper comment begin
2798 sequence of the same style. */
2799 int c2, other_syntax;
2800 DEC_BOTH (from, from_byte);
2801 UPDATE_SYNTAX_TABLE_BACKWARD (from);
2802 code = Sendcomment;
2803 c2 = FETCH_CHAR_AS_MULTIBYTE (from_byte);
2804 other_syntax = SYNTAX_WITH_FLAGS (c2);
2805 comstyle = SYNTAX_FLAGS_COMMENT_STYLE (other_syntax, syntax);
2806 comnested |= SYNTAX_FLAGS_COMMENT_NESTED (other_syntax);
2807 }
2808
2809 /* Quoting turns anything except a comment-ender
2810 into a word character. Note that this cannot be true
2811 if we decremented FROM in the if-statement above. */
2812 if (code != Sendcomment && char_quoted (from, from_byte))
2813 {
2814 DEC_BOTH (from, from_byte);
2815 code = Sword;
2816 }
2817 else if (SYNTAX_FLAGS_PREFIX (syntax))
2818 continue;
2819
2820 switch (code)
2821 {
2822 case Sword:
2823 case Ssymbol:
2824 case Sescape:
2825 case Scharquote:
2826 if (depth || !sexpflag) break;
2827 /* This word counts as a sexp; count object finished
2828 after passing it. */
2829 while (from > stop)
2830 {
2831 temp_pos = from_byte;
2832 if (! NILP (BVAR (current_buffer, enable_multibyte_characters)))
2833 DEC_POS (temp_pos);
2834 else
2835 temp_pos--;
2836 UPDATE_SYNTAX_TABLE_BACKWARD (from - 1);
2837 c1 = FETCH_CHAR_AS_MULTIBYTE (temp_pos);
2838 /* Don't allow comment-end to be quoted. */
2839 if (syntax_multibyte (c1, multibyte_symbol_p) == Sendcomment)
2840 goto done2;
2841 quoted = char_quoted (from - 1, temp_pos);
2842 if (quoted)
2843 {
2844 DEC_BOTH (from, from_byte);
2845 temp_pos = dec_bytepos (temp_pos);
2846 UPDATE_SYNTAX_TABLE_BACKWARD (from - 1);
2847 }
2848 c1 = FETCH_CHAR_AS_MULTIBYTE (temp_pos);
2849 if (! quoted)
2850 switch (syntax_multibyte (c1, multibyte_symbol_p))
2851 {
2852 case Sword: case Ssymbol: case Squote: break;
2853 default: goto done2;
2854 }
2855 DEC_BOTH (from, from_byte);
2856 }
2857 goto done2;
2858
2859 case Smath:
2860 if (!sexpflag)
2861 break;
2862 if (from > BEGV)
2863 {
2864 temp_pos = dec_bytepos (from_byte);
2865 UPDATE_SYNTAX_TABLE_BACKWARD (from - 1);
2866 if (from != stop && c == FETCH_CHAR_AS_MULTIBYTE (temp_pos))
2867 DEC_BOTH (from, from_byte);
2868 }
2869 if (mathexit)
2870 {
2871 mathexit = 0;
2872 goto open2;
2873 }
2874 mathexit = 1;
2875
2876 case Sclose:
2877 if (!++depth) goto done2;
2878 break;
2879
2880 case Sopen:
2881 open2:
2882 if (!--depth) goto done2;
2883 if (depth < min_depth)
2884 xsignal3 (Qscan_error,
2885 build_string ("Containing expression ends prematurely"),
2886 make_number (last_good), make_number (from));
2887 break;
2888
2889 case Sendcomment:
2890 if (!parse_sexp_ignore_comments)
2891 break;
2892 found = back_comment (from, from_byte, stop, comnested, comstyle,
2893 &out_charpos, &out_bytepos);
2894 /* FIXME: if !found, it really wasn't a comment-end.
2895 For single-char Sendcomment, we can't do much about it apart
2896 from skipping the char.
2897 For 2-char endcomments, we could try again, taking both
2898 chars as separate entities, but it's a lot of trouble
2899 for very little gain, so we don't bother either. -sm */
2900 if (found)
2901 from = out_charpos, from_byte = out_bytepos;
2902 break;
2903
2904 case Scomment_fence:
2905 case Sstring_fence:
2906 while (1)
2907 {
2908 if (from == stop)
2909 goto lose;
2910 DEC_BOTH (from, from_byte);
2911 UPDATE_SYNTAX_TABLE_BACKWARD (from);
2912 if (!char_quoted (from, from_byte))
2913 {
2914 c = FETCH_CHAR_AS_MULTIBYTE (from_byte);
2915 if (syntax_multibyte (c, multibyte_symbol_p) == code)
2916 break;
2917 }
2918 }
2919 if (code == Sstring_fence && !depth && sexpflag) goto done2;
2920 break;
2921
2922 case Sstring:
2923 stringterm = FETCH_CHAR_AS_MULTIBYTE (from_byte);
2924 while (1)
2925 {
2926 if (from == stop)
2927 goto lose;
2928 DEC_BOTH (from, from_byte);
2929 UPDATE_SYNTAX_TABLE_BACKWARD (from);
2930 if (!char_quoted (from, from_byte))
2931 {
2932 c = FETCH_CHAR_AS_MULTIBYTE (from_byte);
2933 if (c == stringterm
2934 && (syntax_multibyte (c, multibyte_symbol_p)
2935 == Sstring))
2936 break;
2937 }
2938 }
2939 if (!depth && sexpflag) goto done2;
2940 break;
2941 default:
2942 /* Ignore whitespace, punctuation, quote, endcomment. */
2943 break;
2944 }
2945 }
2946
2947 /* Reached start of buffer. Error if within object, return nil if between */
2948 if (depth)
2949 goto lose;
2950
2951 immediate_quit = 0;
2952 return Qnil;
2953
2954 done2:
2955 count++;
2956 }
2957
2958
2959 immediate_quit = 0;
2960 XSETFASTINT (val, from);
2961 return val;
2962
2963 lose:
2964 xsignal3 (Qscan_error,
2965 build_string ("Unbalanced parentheses"),
2966 make_number (last_good), make_number (from));
2967 }
2968
2969 DEFUN ("scan-lists", Fscan_lists, Sscan_lists, 3, 3, 0,
2970 doc: /* Scan from character number FROM by COUNT lists.
2971 Scan forward if COUNT is positive, backward if COUNT is negative.
2972 Return the character number of the position thus found.
2973
2974 A \"list", in this context, refers to a balanced parenthetical
2975 grouping, as determined by the syntax table.
2976
2977 If DEPTH is nonzero, treat that as the nesting depth of the starting
2978 point (i.e. the starting point is DEPTH parentheses deep). This
2979 function scans over parentheses until the depth goes to zero COUNT
2980 times. Hence, positive DEPTH moves out that number of levels of
2981 parentheses, while negative DEPTH moves to a deeper level.
2982
2983 Comments are ignored if `parse-sexp-ignore-comments' is non-nil.
2984
2985 If we reach the beginning or end of the accessible part of the buffer
2986 before we have scanned over COUNT lists, return nil if the depth at
2987 that point is zero, and signal a error if the depth is nonzero. */)
2988 (Lisp_Object from, Lisp_Object count, Lisp_Object depth)
2989 {
2990 CHECK_NUMBER (from);
2991 CHECK_NUMBER (count);
2992 CHECK_NUMBER (depth);
2993
2994 return scan_lists (XINT (from), XINT (count), XINT (depth), 0);
2995 }
2996
2997 DEFUN ("scan-sexps", Fscan_sexps, Sscan_sexps, 2, 2, 0,
2998 doc: /* Scan from character number FROM by COUNT balanced expressions.
2999 If COUNT is negative, scan backwards.
3000 Returns the character number of the position thus found.
3001
3002 Comments are ignored if `parse-sexp-ignore-comments' is non-nil.
3003
3004 If the beginning or end of (the accessible part of) the buffer is reached
3005 in the middle of a parenthetical grouping, an error is signaled.
3006 If the beginning or end is reached between groupings
3007 but before count is used up, nil is returned. */)
3008 (Lisp_Object from, Lisp_Object count)
3009 {
3010 CHECK_NUMBER (from);
3011 CHECK_NUMBER (count);
3012
3013 return scan_lists (XINT (from), XINT (count), 0, 1);
3014 }
3015
3016 DEFUN ("backward-prefix-chars", Fbackward_prefix_chars, Sbackward_prefix_chars,
3017 0, 0, 0,
3018 doc: /* Move point backward over any number of chars with prefix syntax.
3019 This includes chars with expression prefix syntax class (') and those with
3020 the prefix syntax flag (p). */)
3021 (void)
3022 {
3023 ptrdiff_t beg = BEGV;
3024 ptrdiff_t opoint = PT;
3025 ptrdiff_t opoint_byte = PT_BYTE;
3026 ptrdiff_t pos = PT;
3027 ptrdiff_t pos_byte = PT_BYTE;
3028 int c;
3029
3030 if (pos <= beg)
3031 {
3032 SET_PT_BOTH (opoint, opoint_byte);
3033
3034 return Qnil;
3035 }
3036
3037 SETUP_SYNTAX_TABLE (pos, -1);
3038
3039 DEC_BOTH (pos, pos_byte);
3040
3041 while (!char_quoted (pos, pos_byte)
3042 /* Previous statement updates syntax table. */
3043 && ((c = FETCH_CHAR_AS_MULTIBYTE (pos_byte), SYNTAX (c) == Squote)
3044 || syntax_prefix_flag_p (c)))
3045 {
3046 opoint = pos;
3047 opoint_byte = pos_byte;
3048
3049 if (pos + 1 > beg)
3050 DEC_BOTH (pos, pos_byte);
3051 }
3052
3053 SET_PT_BOTH (opoint, opoint_byte);
3054
3055 return Qnil;
3056 }
3057 \f
3058 /* Parse forward from FROM / FROM_BYTE to END,
3059 assuming that FROM has state OLDSTATE (nil means FROM is start of function),
3060 and return a description of the state of the parse at END.
3061 If STOPBEFORE, stop at the start of an atom.
3062 If COMMENTSTOP is 1, stop at the start of a comment.
3063 If COMMENTSTOP is -1, stop at the start or end of a comment,
3064 after the beginning of a string, or after the end of a string. */
3065
3066 static void
3067 scan_sexps_forward (struct lisp_parse_state *stateptr,
3068 ptrdiff_t from, ptrdiff_t from_byte, ptrdiff_t end,
3069 EMACS_INT targetdepth, bool stopbefore,
3070 Lisp_Object oldstate, int commentstop)
3071 {
3072 struct lisp_parse_state state;
3073 enum syntaxcode code;
3074 int c1;
3075 bool comnested;
3076 struct level { ptrdiff_t last, prev; };
3077 struct level levelstart[100];
3078 struct level *curlevel = levelstart;
3079 struct level *endlevel = levelstart + 100;
3080 EMACS_INT depth; /* Paren depth of current scanning location.
3081 level - levelstart equals this except
3082 when the depth becomes negative. */
3083 EMACS_INT mindepth; /* Lowest DEPTH value seen. */
3084 bool start_quoted = 0; /* True means starting after a char quote. */
3085 Lisp_Object tem;
3086 ptrdiff_t prev_from; /* Keep one character before FROM. */
3087 ptrdiff_t prev_from_byte;
3088 int prev_from_syntax;
3089 bool boundary_stop = commentstop == -1;
3090 bool nofence;
3091 bool found;
3092 ptrdiff_t out_bytepos, out_charpos;
3093 int temp;
3094
3095 prev_from = from;
3096 prev_from_byte = from_byte;
3097 if (from != BEGV)
3098 DEC_BOTH (prev_from, prev_from_byte);
3099
3100 /* Use this macro instead of `from++'. */
3101 #define INC_FROM \
3102 do { prev_from = from; \
3103 prev_from_byte = from_byte; \
3104 temp = FETCH_CHAR_AS_MULTIBYTE (prev_from_byte); \
3105 prev_from_syntax = SYNTAX_WITH_FLAGS (temp); \
3106 INC_BOTH (from, from_byte); \
3107 if (from < end) \
3108 UPDATE_SYNTAX_TABLE_FORWARD (from); \
3109 } while (0)
3110
3111 immediate_quit = 1;
3112 QUIT;
3113
3114 if (NILP (oldstate))
3115 {
3116 depth = 0;
3117 state.instring = -1;
3118 state.incomment = 0;
3119 state.comstyle = 0; /* comment style a by default. */
3120 state.comstr_start = -1; /* no comment/string seen. */
3121 }
3122 else
3123 {
3124 tem = Fcar (oldstate);
3125 if (!NILP (tem))
3126 depth = XINT (tem);
3127 else
3128 depth = 0;
3129
3130 oldstate = Fcdr (oldstate);
3131 oldstate = Fcdr (oldstate);
3132 oldstate = Fcdr (oldstate);
3133 tem = Fcar (oldstate);
3134 /* Check whether we are inside string_fence-style string: */
3135 state.instring = (!NILP (tem)
3136 ? (CHARACTERP (tem) ? XFASTINT (tem) : ST_STRING_STYLE)
3137 : -1);
3138
3139 oldstate = Fcdr (oldstate);
3140 tem = Fcar (oldstate);
3141 state.incomment = (!NILP (tem)
3142 ? (INTEGERP (tem) ? XINT (tem) : -1)
3143 : 0);
3144
3145 oldstate = Fcdr (oldstate);
3146 tem = Fcar (oldstate);
3147 start_quoted = !NILP (tem);
3148
3149 /* if the eighth element of the list is nil, we are in comment
3150 style a. If it is non-nil, we are in comment style b */
3151 oldstate = Fcdr (oldstate);
3152 oldstate = Fcdr (oldstate);
3153 tem = Fcar (oldstate);
3154 state.comstyle = (NILP (tem)
3155 ? 0
3156 : (RANGED_INTEGERP (0, tem, ST_COMMENT_STYLE)
3157 ? XINT (tem)
3158 : ST_COMMENT_STYLE));
3159
3160 oldstate = Fcdr (oldstate);
3161 tem = Fcar (oldstate);
3162 state.comstr_start =
3163 RANGED_INTEGERP (PTRDIFF_MIN, tem, PTRDIFF_MAX) ? XINT (tem) : -1;
3164 oldstate = Fcdr (oldstate);
3165 tem = Fcar (oldstate);
3166 while (!NILP (tem)) /* >= second enclosing sexps. */
3167 {
3168 Lisp_Object temhd = Fcar (tem);
3169 if (RANGED_INTEGERP (PTRDIFF_MIN, temhd, PTRDIFF_MAX))
3170 curlevel->last = XINT (temhd);
3171 if (++curlevel == endlevel)
3172 curlevel--; /* error ("Nesting too deep for parser"); */
3173 curlevel->prev = -1;
3174 curlevel->last = -1;
3175 tem = Fcdr (tem);
3176 }
3177 }
3178 state.quoted = 0;
3179 mindepth = depth;
3180
3181 curlevel->prev = -1;
3182 curlevel->last = -1;
3183
3184 SETUP_SYNTAX_TABLE (prev_from, 1);
3185 temp = FETCH_CHAR (prev_from_byte);
3186 prev_from_syntax = SYNTAX_WITH_FLAGS (temp);
3187 UPDATE_SYNTAX_TABLE_FORWARD (from);
3188
3189 /* Enter the loop at a place appropriate for initial state. */
3190
3191 if (state.incomment)
3192 goto startincomment;
3193 if (state.instring >= 0)
3194 {
3195 nofence = state.instring != ST_STRING_STYLE;
3196 if (start_quoted)
3197 goto startquotedinstring;
3198 goto startinstring;
3199 }
3200 else if (start_quoted)
3201 goto startquoted;
3202
3203 while (from < end)
3204 {
3205 int syntax;
3206 INC_FROM;
3207 code = prev_from_syntax & 0xff;
3208
3209 if (from < end
3210 && SYNTAX_FLAGS_COMSTART_FIRST (prev_from_syntax)
3211 && (c1 = FETCH_CHAR (from_byte),
3212 syntax = SYNTAX_WITH_FLAGS (c1),
3213 SYNTAX_FLAGS_COMSTART_SECOND (syntax)))
3214 /* Duplicate code to avoid a complex if-expression
3215 which causes trouble for the SGI compiler. */
3216 {
3217 /* Record the comment style we have entered so that only
3218 the comment-end sequence of the same style actually
3219 terminates the comment section. */
3220 state.comstyle
3221 = SYNTAX_FLAGS_COMMENT_STYLE (syntax, prev_from_syntax);
3222 comnested = (SYNTAX_FLAGS_COMMENT_NESTED (prev_from_syntax)
3223 | SYNTAX_FLAGS_COMMENT_NESTED (syntax));
3224 state.incomment = comnested ? 1 : -1;
3225 state.comstr_start = prev_from;
3226 INC_FROM;
3227 code = Scomment;
3228 }
3229 else if (code == Scomment_fence)
3230 {
3231 /* Record the comment style we have entered so that only
3232 the comment-end sequence of the same style actually
3233 terminates the comment section. */
3234 state.comstyle = ST_COMMENT_STYLE;
3235 state.incomment = -1;
3236 state.comstr_start = prev_from;
3237 code = Scomment;
3238 }
3239 else if (code == Scomment)
3240 {
3241 state.comstyle = SYNTAX_FLAGS_COMMENT_STYLE (prev_from_syntax, 0);
3242 state.incomment = (SYNTAX_FLAGS_COMMENT_NESTED (prev_from_syntax) ?
3243 1 : -1);
3244 state.comstr_start = prev_from;
3245 }
3246
3247 if (SYNTAX_FLAGS_PREFIX (prev_from_syntax))
3248 continue;
3249 switch (code)
3250 {
3251 case Sescape:
3252 case Scharquote:
3253 if (stopbefore) goto stop; /* this arg means stop at sexp start */
3254 curlevel->last = prev_from;
3255 startquoted:
3256 if (from == end) goto endquoted;
3257 INC_FROM;
3258 goto symstarted;
3259 /* treat following character as a word constituent */
3260 case Sword:
3261 case Ssymbol:
3262 if (stopbefore) goto stop; /* this arg means stop at sexp start */
3263 curlevel->last = prev_from;
3264 symstarted:
3265 while (from < end)
3266 {
3267 int symchar = FETCH_CHAR_AS_MULTIBYTE (from_byte);
3268 switch (SYNTAX (symchar))
3269 {
3270 case Scharquote:
3271 case Sescape:
3272 INC_FROM;
3273 if (from == end) goto endquoted;
3274 break;
3275 case Sword:
3276 case Ssymbol:
3277 case Squote:
3278 break;
3279 default:
3280 goto symdone;
3281 }
3282 INC_FROM;
3283 }
3284 symdone:
3285 curlevel->prev = curlevel->last;
3286 break;
3287
3288 case Scomment_fence: /* Can't happen because it's handled above. */
3289 case Scomment:
3290 if (commentstop || boundary_stop) goto done;
3291 startincomment:
3292 /* The (from == BEGV) test was to enter the loop in the middle so
3293 that we find a 2-char comment ender even if we start in the
3294 middle of it. We don't want to do that if we're just at the
3295 beginning of the comment (think of (*) ... (*)). */
3296 found = forw_comment (from, from_byte, end,
3297 state.incomment, state.comstyle,
3298 (from == BEGV || from < state.comstr_start + 3)
3299 ? 0 : prev_from_syntax,
3300 &out_charpos, &out_bytepos, &state.incomment);
3301 from = out_charpos; from_byte = out_bytepos;
3302 /* Beware! prev_from and friends are invalid now.
3303 Luckily, the `done' doesn't use them and the INC_FROM
3304 sets them to a sane value without looking at them. */
3305 if (!found) goto done;
3306 INC_FROM;
3307 state.incomment = 0;
3308 state.comstyle = 0; /* reset the comment style */
3309 if (boundary_stop) goto done;
3310 break;
3311
3312 case Sopen:
3313 if (stopbefore) goto stop; /* this arg means stop at sexp start */
3314 depth++;
3315 /* curlevel++->last ran into compiler bug on Apollo */
3316 curlevel->last = prev_from;
3317 if (++curlevel == endlevel)
3318 curlevel--; /* error ("Nesting too deep for parser"); */
3319 curlevel->prev = -1;
3320 curlevel->last = -1;
3321 if (targetdepth == depth) goto done;
3322 break;
3323
3324 case Sclose:
3325 depth--;
3326 if (depth < mindepth)
3327 mindepth = depth;
3328 if (curlevel != levelstart)
3329 curlevel--;
3330 curlevel->prev = curlevel->last;
3331 if (targetdepth == depth) goto done;
3332 break;
3333
3334 case Sstring:
3335 case Sstring_fence:
3336 state.comstr_start = from - 1;
3337 if (stopbefore) goto stop; /* this arg means stop at sexp start */
3338 curlevel->last = prev_from;
3339 state.instring = (code == Sstring
3340 ? (FETCH_CHAR_AS_MULTIBYTE (prev_from_byte))
3341 : ST_STRING_STYLE);
3342 if (boundary_stop) goto done;
3343 startinstring:
3344 {
3345 nofence = state.instring != ST_STRING_STYLE;
3346
3347 while (1)
3348 {
3349 int c;
3350 enum syntaxcode c_code;
3351
3352 if (from >= end) goto done;
3353 c = FETCH_CHAR_AS_MULTIBYTE (from_byte);
3354 c_code = SYNTAX (c);
3355
3356 /* Check C_CODE here so that if the char has
3357 a syntax-table property which says it is NOT
3358 a string character, it does not end the string. */
3359 if (nofence && c == state.instring && c_code == Sstring)
3360 break;
3361
3362 switch (c_code)
3363 {
3364 case Sstring_fence:
3365 if (!nofence) goto string_end;
3366 break;
3367 case Scharquote:
3368 case Sescape:
3369 INC_FROM;
3370 startquotedinstring:
3371 if (from >= end) goto endquoted;
3372 }
3373 INC_FROM;
3374 }
3375 }
3376 string_end:
3377 state.instring = -1;
3378 curlevel->prev = curlevel->last;
3379 INC_FROM;
3380 if (boundary_stop) goto done;
3381 break;
3382
3383 case Smath:
3384 /* FIXME: We should do something with it. */
3385 break;
3386 default:
3387 /* Ignore whitespace, punctuation, quote, endcomment. */
3388 break;
3389 }
3390 }
3391 goto done;
3392
3393 stop: /* Here if stopping before start of sexp. */
3394 from = prev_from; /* We have just fetched the char that starts it; */
3395 from_byte = prev_from_byte;
3396 goto done; /* but return the position before it. */
3397
3398 endquoted:
3399 state.quoted = 1;
3400 done:
3401 state.depth = depth;
3402 state.mindepth = mindepth;
3403 state.thislevelstart = curlevel->prev;
3404 state.prevlevelstart
3405 = (curlevel == levelstart) ? -1 : (curlevel - 1)->last;
3406 state.location = from;
3407 state.location_byte = from_byte;
3408 state.levelstarts = Qnil;
3409 while (curlevel > levelstart)
3410 state.levelstarts = Fcons (make_number ((--curlevel)->last),
3411 state.levelstarts);
3412 immediate_quit = 0;
3413
3414 *stateptr = state;
3415 }
3416
3417 DEFUN ("parse-partial-sexp", Fparse_partial_sexp, Sparse_partial_sexp, 2, 6, 0,
3418 doc: /* Parse Lisp syntax starting at FROM until TO; return status of parse at TO.
3419 Parsing stops at TO or when certain criteria are met;
3420 point is set to where parsing stops.
3421 If fifth arg OLDSTATE is omitted or nil,
3422 parsing assumes that FROM is the beginning of a function.
3423 Value is a list of elements describing final state of parsing:
3424 0. depth in parens.
3425 1. character address of start of innermost containing list; nil if none.
3426 2. character address of start of last complete sexp terminated.
3427 3. non-nil if inside a string.
3428 (it is the character that will terminate the string,
3429 or t if the string should be terminated by a generic string delimiter.)
3430 4. nil if outside a comment, t if inside a non-nestable comment,
3431 else an integer (the current comment nesting).
3432 5. t if following a quote character.
3433 6. the minimum paren-depth encountered during this scan.
3434 7. style of comment, if any.
3435 8. character address of start of comment or string; nil if not in one.
3436 9. Intermediate data for continuation of parsing (subject to change).
3437 If third arg TARGETDEPTH is non-nil, parsing stops if the depth
3438 in parentheses becomes equal to TARGETDEPTH.
3439 Fourth arg STOPBEFORE non-nil means stop when come to
3440 any character that starts a sexp.
3441 Fifth arg OLDSTATE is a list like what this function returns.
3442 It is used to initialize the state of the parse. Elements number 1, 2, 6
3443 are ignored.
3444 Sixth arg COMMENTSTOP non-nil means stop at the start of a comment.
3445 If it is symbol `syntax-table', stop after the start of a comment or a
3446 string, or after end of a comment or a string. */)
3447 (Lisp_Object from, Lisp_Object to, Lisp_Object targetdepth,
3448 Lisp_Object stopbefore, Lisp_Object oldstate, Lisp_Object commentstop)
3449 {
3450 struct lisp_parse_state state;
3451 EMACS_INT target;
3452
3453 if (!NILP (targetdepth))
3454 {
3455 CHECK_NUMBER (targetdepth);
3456 target = XINT (targetdepth);
3457 }
3458 else
3459 target = TYPE_MINIMUM (EMACS_INT); /* We won't reach this depth */
3460
3461 validate_region (&from, &to);
3462 scan_sexps_forward (&state, XINT (from), CHAR_TO_BYTE (XINT (from)),
3463 XINT (to),
3464 target, !NILP (stopbefore), oldstate,
3465 (NILP (commentstop)
3466 ? 0 : (EQ (commentstop, Qsyntax_table) ? -1 : 1)));
3467
3468 SET_PT_BOTH (state.location, state.location_byte);
3469
3470 return Fcons (make_number (state.depth),
3471 Fcons (state.prevlevelstart < 0
3472 ? Qnil : make_number (state.prevlevelstart),
3473 Fcons (state.thislevelstart < 0
3474 ? Qnil : make_number (state.thislevelstart),
3475 Fcons (state.instring >= 0
3476 ? (state.instring == ST_STRING_STYLE
3477 ? Qt : make_number (state.instring)) : Qnil,
3478 Fcons (state.incomment < 0 ? Qt :
3479 (state.incomment == 0 ? Qnil :
3480 make_number (state.incomment)),
3481 Fcons (state.quoted ? Qt : Qnil,
3482 Fcons (make_number (state.mindepth),
3483 Fcons ((state.comstyle
3484 ? (state.comstyle == ST_COMMENT_STYLE
3485 ? Qsyntax_table
3486 : make_number (state.comstyle))
3487 : Qnil),
3488 Fcons (((state.incomment
3489 || (state.instring >= 0))
3490 ? make_number (state.comstr_start)
3491 : Qnil),
3492 Fcons (state.levelstarts, Qnil))))))))));
3493 }
3494 \f
3495 void
3496 init_syntax_once (void)
3497 {
3498 register int i, c;
3499 Lisp_Object temp;
3500
3501 /* This has to be done here, before we call Fmake_char_table. */
3502 DEFSYM (Qsyntax_table, "syntax-table");
3503
3504 /* Create objects which can be shared among syntax tables. */
3505 Vsyntax_code_object = make_uninit_vector (Smax);
3506 for (i = 0; i < Smax; i++)
3507 ASET (Vsyntax_code_object, i, Fcons (make_number (i), Qnil));
3508
3509 /* Now we are ready to set up this property, so we can
3510 create syntax tables. */
3511 Fput (Qsyntax_table, Qchar_table_extra_slots, make_number (0));
3512
3513 temp = AREF (Vsyntax_code_object, Swhitespace);
3514
3515 Vstandard_syntax_table = Fmake_char_table (Qsyntax_table, temp);
3516
3517 /* Control characters should not be whitespace. */
3518 temp = AREF (Vsyntax_code_object, Spunct);
3519 for (i = 0; i <= ' ' - 1; i++)
3520 SET_RAW_SYNTAX_ENTRY (Vstandard_syntax_table, i, temp);
3521 SET_RAW_SYNTAX_ENTRY (Vstandard_syntax_table, 0177, temp);
3522
3523 /* Except that a few really are whitespace. */
3524 temp = AREF (Vsyntax_code_object, Swhitespace);
3525 SET_RAW_SYNTAX_ENTRY (Vstandard_syntax_table, ' ', temp);
3526 SET_RAW_SYNTAX_ENTRY (Vstandard_syntax_table, '\t', temp);
3527 SET_RAW_SYNTAX_ENTRY (Vstandard_syntax_table, '\n', temp);
3528 SET_RAW_SYNTAX_ENTRY (Vstandard_syntax_table, 015, temp);
3529 SET_RAW_SYNTAX_ENTRY (Vstandard_syntax_table, 014, temp);
3530
3531 temp = AREF (Vsyntax_code_object, Sword);
3532 for (i = 'a'; i <= 'z'; i++)
3533 SET_RAW_SYNTAX_ENTRY (Vstandard_syntax_table, i, temp);
3534 for (i = 'A'; i <= 'Z'; i++)
3535 SET_RAW_SYNTAX_ENTRY (Vstandard_syntax_table, i, temp);
3536 for (i = '0'; i <= '9'; i++)
3537 SET_RAW_SYNTAX_ENTRY (Vstandard_syntax_table, i, temp);
3538
3539 SET_RAW_SYNTAX_ENTRY (Vstandard_syntax_table, '$', temp);
3540 SET_RAW_SYNTAX_ENTRY (Vstandard_syntax_table, '%', temp);
3541
3542 SET_RAW_SYNTAX_ENTRY (Vstandard_syntax_table, '(',
3543 Fcons (make_number (Sopen), make_number (')')));
3544 SET_RAW_SYNTAX_ENTRY (Vstandard_syntax_table, ')',
3545 Fcons (make_number (Sclose), make_number ('(')));
3546 SET_RAW_SYNTAX_ENTRY (Vstandard_syntax_table, '[',
3547 Fcons (make_number (Sopen), make_number (']')));
3548 SET_RAW_SYNTAX_ENTRY (Vstandard_syntax_table, ']',
3549 Fcons (make_number (Sclose), make_number ('[')));
3550 SET_RAW_SYNTAX_ENTRY (Vstandard_syntax_table, '{',
3551 Fcons (make_number (Sopen), make_number ('}')));
3552 SET_RAW_SYNTAX_ENTRY (Vstandard_syntax_table, '}',
3553 Fcons (make_number (Sclose), make_number ('{')));
3554 SET_RAW_SYNTAX_ENTRY (Vstandard_syntax_table, '"',
3555 Fcons (make_number (Sstring), Qnil));
3556 SET_RAW_SYNTAX_ENTRY (Vstandard_syntax_table, '\\',
3557 Fcons (make_number (Sescape), Qnil));
3558
3559 temp = AREF (Vsyntax_code_object, Ssymbol);
3560 for (i = 0; i < 10; i++)
3561 {
3562 c = "_-+*/&|<>="[i];
3563 SET_RAW_SYNTAX_ENTRY (Vstandard_syntax_table, c, temp);
3564 }
3565
3566 temp = AREF (Vsyntax_code_object, Spunct);
3567 for (i = 0; i < 12; i++)
3568 {
3569 c = ".,;:?!#@~^'`"[i];
3570 SET_RAW_SYNTAX_ENTRY (Vstandard_syntax_table, c, temp);
3571 }
3572
3573 /* All multibyte characters have syntax `word' by default. */
3574 temp = AREF (Vsyntax_code_object, Sword);
3575 char_table_set_range (Vstandard_syntax_table, 0x80, MAX_CHAR, temp);
3576 }
3577
3578 void
3579 syms_of_syntax (void)
3580 {
3581 DEFSYM (Qsyntax_table_p, "syntax-table-p");
3582
3583 staticpro (&Vsyntax_code_object);
3584
3585 staticpro (&gl_state.object);
3586 staticpro (&gl_state.global_code);
3587 staticpro (&gl_state.current_syntax_table);
3588 staticpro (&gl_state.old_prop);
3589
3590 /* Defined in regex.c */
3591 staticpro (&re_match_object);
3592
3593 DEFSYM (Qscan_error, "scan-error");
3594 Fput (Qscan_error, Qerror_conditions,
3595 listn (CONSTYPE_PURE, 2, Qscan_error, Qerror));
3596 Fput (Qscan_error, Qerror_message,
3597 build_pure_c_string ("Scan error"));
3598
3599 DEFVAR_BOOL ("parse-sexp-ignore-comments", parse_sexp_ignore_comments,
3600 doc: /* Non-nil means `forward-sexp', etc., should treat comments as whitespace. */);
3601
3602 DEFVAR_BOOL ("parse-sexp-lookup-properties", parse_sexp_lookup_properties,
3603 doc: /* Non-nil means `forward-sexp', etc., obey `syntax-table' property.
3604 Otherwise, that text property is simply ignored.
3605 See the info node `(elisp)Syntax Properties' for a description of the
3606 `syntax-table' property. */);
3607
3608 words_include_escapes = 0;
3609 DEFVAR_BOOL ("words-include-escapes", words_include_escapes,
3610 doc: /* Non-nil means `forward-word', etc., should treat escape chars part of words. */);
3611
3612 DEFVAR_BOOL ("multibyte-syntax-as-symbol", multibyte_syntax_as_symbol,
3613 doc: /* Non-nil means `scan-sexps' treats all multibyte characters as symbol. */);
3614 multibyte_syntax_as_symbol = 0;
3615
3616 DEFVAR_BOOL ("open-paren-in-column-0-is-defun-start",
3617 open_paren_in_column_0_is_defun_start,
3618 doc: /* Non-nil means an open paren in column 0 denotes the start of a defun. */);
3619 open_paren_in_column_0_is_defun_start = 1;
3620
3621
3622 DEFVAR_LISP ("find-word-boundary-function-table",
3623 Vfind_word_boundary_function_table,
3624 doc: /*
3625 Char table of functions to search for the word boundary.
3626 Each function is called with two arguments; POS and LIMIT.
3627 POS and LIMIT are character positions in the current buffer.
3628
3629 If POS is less than LIMIT, POS is at the first character of a word,
3630 and the return value of a function is a position after the last
3631 character of that word.
3632
3633 If POS is not less than LIMIT, POS is at the last character of a word,
3634 and the return value of a function is a position at the first
3635 character of that word.
3636
3637 In both cases, LIMIT bounds the search. */);
3638 Vfind_word_boundary_function_table = Fmake_char_table (Qnil, Qnil);
3639
3640 defsubr (&Ssyntax_table_p);
3641 defsubr (&Ssyntax_table);
3642 defsubr (&Sstandard_syntax_table);
3643 defsubr (&Scopy_syntax_table);
3644 defsubr (&Sset_syntax_table);
3645 defsubr (&Schar_syntax);
3646 defsubr (&Smatching_paren);
3647 defsubr (&Sstring_to_syntax);
3648 defsubr (&Smodify_syntax_entry);
3649 defsubr (&Sinternal_describe_syntax_value);
3650
3651 defsubr (&Sforward_word);
3652
3653 defsubr (&Sskip_chars_forward);
3654 defsubr (&Sskip_chars_backward);
3655 defsubr (&Sskip_syntax_forward);
3656 defsubr (&Sskip_syntax_backward);
3657
3658 defsubr (&Sforward_comment);
3659 defsubr (&Sscan_lists);
3660 defsubr (&Sscan_sexps);
3661 defsubr (&Sbackward_prefix_chars);
3662 defsubr (&Sparse_partial_sexp);
3663 }