regcomp.c revision 1.31 1 /* $NetBSD: regcomp.c,v 1.31 2011/10/09 22:14:17 christos Exp $ */
2
3 /*-
4 * Copyright (c) 1992, 1993, 1994
5 * The Regents of the University of California. All rights reserved.
6 *
7 * This code is derived from software contributed to Berkeley by
8 * Henry Spencer.
9 *
10 * Redistribution and use in source and binary forms, with or without
11 * modification, are permitted provided that the following conditions
12 * are met:
13 * 1. Redistributions of source code must retain the above copyright
14 * notice, this list of conditions and the following disclaimer.
15 * 2. Redistributions in binary form must reproduce the above copyright
16 * notice, this list of conditions and the following disclaimer in the
17 * documentation and/or other materials provided with the distribution.
18 * 3. Neither the name of the University nor the names of its contributors
19 * may be used to endorse or promote products derived from this software
20 * without specific prior written permission.
21 *
22 * THIS SOFTWARE IS PROVIDED BY THE REGENTS AND CONTRIBUTORS ``AS IS'' AND
23 * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
24 * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
25 * ARE DISCLAIMED. IN NO EVENT SHALL THE REGENTS OR CONTRIBUTORS BE LIABLE
26 * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
27 * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
28 * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
29 * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
30 * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
31 * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
32 * SUCH DAMAGE.
33 *
34 * @(#)regcomp.c 8.5 (Berkeley) 3/20/94
35 */
36
37 /*-
38 * Copyright (c) 1992, 1993, 1994 Henry Spencer.
39 *
40 * This code is derived from software contributed to Berkeley by
41 * Henry Spencer.
42 *
43 * Redistribution and use in source and binary forms, with or without
44 * modification, are permitted provided that the following conditions
45 * are met:
46 * 1. Redistributions of source code must retain the above copyright
47 * notice, this list of conditions and the following disclaimer.
48 * 2. Redistributions in binary form must reproduce the above copyright
49 * notice, this list of conditions and the following disclaimer in the
50 * documentation and/or other materials provided with the distribution.
51 * 3. All advertising materials mentioning features or use of this software
52 * must display the following acknowledgement:
53 * This product includes software developed by the University of
54 * California, Berkeley and its contributors.
55 * 4. Neither the name of the University nor the names of its contributors
56 * may be used to endorse or promote products derived from this software
57 * without specific prior written permission.
58 *
59 * THIS SOFTWARE IS PROVIDED BY THE REGENTS AND CONTRIBUTORS ``AS IS'' AND
60 * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
61 * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
62 * ARE DISCLAIMED. IN NO EVENT SHALL THE REGENTS OR CONTRIBUTORS BE LIABLE
63 * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
64 * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
65 * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
66 * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
67 * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
68 * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
69 * SUCH DAMAGE.
70 *
71 * @(#)regcomp.c 8.5 (Berkeley) 3/20/94
72 */
73
74 #include <sys/cdefs.h>
75 #if defined(LIBC_SCCS) && !defined(lint)
76 #if 0
77 static char sccsid[] = "@(#)regcomp.c 8.5 (Berkeley) 3/20/94";
78 #else
79 __RCSID("$NetBSD: regcomp.c,v 1.31 2011/10/09 22:14:17 christos Exp $");
80 #endif
81 #endif /* LIBC_SCCS and not lint */
82
83 #include "namespace.h"
84 #include <sys/types.h>
85
86 #include <assert.h>
87 #include <ctype.h>
88 #include <limits.h>
89 #include <stdio.h>
90 #include <stdlib.h>
91 #include <string.h>
92 #include <regex.h>
93
94 #ifdef __weak_alias
95 __weak_alias(regcomp,_regcomp)
96 #endif
97
98 #include "utils.h"
99 #include "regex2.h"
100
101 #include "cclass.h"
102 #include "cname.h"
103
104 /*
105 * parse structure, passed up and down to avoid global variables and
106 * other clumsinesses
107 */
108 struct parse {
109 const char *next; /* next character in RE */
110 const char *end; /* end of string (-> NUL normally) */
111 int error; /* has an error been seen? */
112 sop *strip; /* malloced strip */
113 sopno ssize; /* malloced strip size (allocated) */
114 sopno slen; /* malloced strip length (used) */
115 int ncsalloc; /* number of csets allocated */
116 struct re_guts *g;
117 # define NPAREN 10 /* we need to remember () 1-9 for back refs */
118 sopno pbegin[NPAREN]; /* -> ( ([0] unused) */
119 sopno pend[NPAREN]; /* -> ) ([0] unused) */
120 };
121
122 /* ========= begin header generated by ./mkh ========= */
123 #ifdef __cplusplus
124 extern "C" {
125 #endif
126
127 /* === regcomp.c === */
128 static void p_ere(struct parse *p, int stop, size_t reclimit);
129 static void p_ere_exp(struct parse *p, size_t reclimit);
130 static void p_str(struct parse *p);
131 static void p_bre(struct parse *p, int end1, int end2, size_t reclimit);
132 static int p_simp_re(struct parse *p, int starordinary, size_t reclimit);
133 static int p_count(struct parse *p);
134 static void p_bracket(struct parse *p);
135 static void p_b_term(struct parse *p, cset *cs);
136 static void p_b_cclass(struct parse *p, cset *cs);
137 static void p_b_eclass(struct parse *p, cset *cs);
138 static char p_b_symbol(struct parse *p);
139 static char p_b_coll_elem(struct parse *p, int endc);
140 static int othercase(int ch);
141 static void bothcases(struct parse *p, int ch);
142 static void ordinary(struct parse *p, int ch);
143 static void nonnewline(struct parse *p);
144 static void repeat(struct parse *p, sopno start, int from, int to, size_t reclimit);
145 static int seterr(struct parse *p, int e);
146 static cset *allocset(struct parse *p);
147 static void freeset(struct parse *p, cset *cs);
148 static sopno freezeset(struct parse *p, cset *cs);
149 static int firstch(struct parse *p, cset *cs);
150 static int nch(struct parse *p, cset *cs);
151 static void mcadd(struct parse *p, cset *cs, const char *cp);
152 #if 0
153 static void mcsub(cset *cs, char *cp);
154 static int mcin(cset *cs, char *cp);
155 static char *mcfind(cset *cs, char *cp);
156 #endif
157 static void mcinvert(struct parse *p, cset *cs);
158 static void mccase(struct parse *p, cset *cs);
159 static int isinsets(struct re_guts *g, int c);
160 static int samesets(struct re_guts *g, int c1, int c2);
161 static void categorize(struct parse *p, struct re_guts *g);
162 static sopno dupl(struct parse *p, sopno start, sopno finish);
163 static void doemit(struct parse *p, sop op, sopno opnd);
164 static void doinsert(struct parse *p, sop op, sopno opnd, sopno pos);
165 static void dofwd(struct parse *p, sopno pos, sopno value);
166 static int enlarge(struct parse *p, sopno size);
167 static void stripsnug(struct parse *p, struct re_guts *g);
168 static void findmust(struct parse *p, struct re_guts *g);
169 static sopno pluscount(struct parse *p, struct re_guts *g);
170
171 #ifdef __cplusplus
172 }
173 #endif
174 /* ========= end header generated by ./mkh ========= */
175
176 static char nuls[10]; /* place to point scanner in event of error */
177
178 /*
179 * macros for use with parse structure
180 * BEWARE: these know that the parse structure is named `p' !!!
181 */
182 #define PEEK() (*p->next)
183 #define PEEK2() (*(p->next+1))
184 #define MORE() (p->next < p->end)
185 #define MORE2() (p->next+1 < p->end)
186 #define SEE(c) (MORE() && PEEK() == (c))
187 #define SEETWO(a, b) (MORE() && MORE2() && PEEK() == (a) && PEEK2() == (b))
188 #define EAT(c) ((SEE(c)) ? (NEXT(), 1) : 0)
189 #define EATTWO(a, b) ((SEETWO(a, b)) ? (NEXT2(), 1) : 0)
190 #define NEXT() (p->next++)
191 #define NEXT2() (p->next += 2)
192 #define NEXTn(n) (p->next += (n))
193 #define GETNEXT() (*p->next++)
194 #define SETERROR(e) seterr(p, (e))
195 #define REQUIRE(co, e) (void) ((co) || SETERROR(e))
196 #define MUSTSEE(c, e) (REQUIRE(MORE() && PEEK() == (c), e))
197 #define MUSTEAT(c, e) (void) (REQUIRE(MORE() && GETNEXT() == (c), e))
198 #define MUSTNOTSEE(c, e) (REQUIRE(!MORE() || PEEK() != (c), e))
199 #define EMIT(op, sopnd) doemit(p, (sop)(op), sopnd)
200 #define INSERT(op, pos) doinsert(p, (sop)(op), HERE()-(pos)+1, pos)
201 #define AHEAD(pos) dofwd(p, pos, HERE()-(pos))
202 #define ASTERN(sop, pos) EMIT(sop, HERE()-pos)
203 #define HERE() (p->slen)
204 #define THERE() (p->slen - 1)
205 #define THERETHERE() (p->slen - 2)
206 #define DROP(n) (p->slen -= (n))
207
208 #ifndef NDEBUG
209 static int never = 0; /* for use in asserts; shuts lint up */
210 #else
211 #define never 0 /* some <assert.h>s have bugs too */
212 #endif
213
214 #define MEMLIMIT 0x8000000
215 #define MEMSIZE(p) \
216 ((p)->ncsalloc / CHAR_BIT * (p)->g->csetsize + \
217 (p)->ncsalloc * sizeof(cset) + \
218 (p)->ssize * sizeof(sop))
219 #define RECLIMIT 256
220
221 /*
222 - regcomp - interface for parser and compilation
223 = extern int regcomp(regex_t *, const char *, int);
224 = #define REG_BASIC 0000
225 = #define REG_EXTENDED 0001
226 = #define REG_ICASE 0002
227 = #define REG_NOSUB 0004
228 = #define REG_NEWLINE 0010
229 = #define REG_NOSPEC 0020
230 = #define REG_PEND 0040
231 = #define REG_DUMP 0200
232 */
233 int /* 0 success, otherwise REG_something */
234 regcomp(
235 regex_t *preg,
236 const char *pattern,
237 int cflags)
238 {
239 struct parse pa;
240 struct re_guts *g;
241 struct parse *p = &pa;
242 int i;
243 size_t len;
244 #ifdef REDEBUG
245 # define GOODFLAGS(f) (f)
246 #else
247 # define GOODFLAGS(f) ((f)&~REG_DUMP)
248 #endif
249
250 _DIAGASSERT(preg != NULL);
251 _DIAGASSERT(pattern != NULL);
252
253 cflags = GOODFLAGS(cflags);
254 if ((cflags®_EXTENDED) && (cflags®_NOSPEC))
255 return(REG_INVARG);
256
257 if (cflags®_PEND) {
258 if (preg->re_endp < pattern)
259 return(REG_INVARG);
260 len = preg->re_endp - pattern;
261 } else
262 len = strlen(pattern);
263
264 /* do the mallocs early so failure handling is easy */
265 g = (struct re_guts *)malloc(sizeof(struct re_guts) +
266 (NC-1)*sizeof(cat_t));
267 if (g == NULL)
268 return(REG_ESPACE);
269 p->ssize = len/(size_t)2*(size_t)3 + (size_t)1; /* ugh */
270 p->strip = malloc(p->ssize * sizeof(sop));
271 p->slen = 0;
272 if (p->strip == NULL) {
273 free(g);
274 return(REG_ESPACE);
275 }
276
277 /* set things up */
278 p->g = g;
279 p->next = pattern;
280 p->end = p->next + len;
281 p->error = 0;
282 p->ncsalloc = 0;
283 for (i = 0; i < NPAREN; i++) {
284 p->pbegin[i] = 0;
285 p->pend[i] = 0;
286 }
287 g->csetsize = NC;
288 g->sets = NULL;
289 g->setbits = NULL;
290 g->ncsets = 0;
291 g->cflags = cflags;
292 g->iflags = 0;
293 g->nbol = 0;
294 g->neol = 0;
295 g->must = NULL;
296 g->mlen = 0;
297 g->nsub = 0;
298 g->ncategories = 1; /* category 0 is "everything else" */
299 g->categories = &g->catspace[-(CHAR_MIN)];
300 (void) memset((char *)g->catspace, 0, NC*sizeof(cat_t));
301 g->backrefs = 0;
302
303 /* do it */
304 EMIT(OEND, 0);
305 g->firststate = THERE();
306 if (cflags®_EXTENDED)
307 p_ere(p, OUT, 0);
308 else if (cflags®_NOSPEC)
309 p_str(p);
310 else
311 p_bre(p, OUT, OUT, 0);
312 EMIT(OEND, 0);
313 g->laststate = THERE();
314
315 /* tidy up loose ends and fill things in */
316 categorize(p, g);
317 stripsnug(p, g);
318 findmust(p, g);
319 g->nplus = pluscount(p, g);
320 g->magic = MAGIC2;
321 preg->re_nsub = g->nsub;
322 preg->re_g = g;
323 preg->re_magic = MAGIC1;
324 #ifndef REDEBUG
325 /* not debugging, so can't rely on the assert() in regexec() */
326 if (g->iflags&BAD)
327 SETERROR(REG_ASSERT);
328 #endif
329
330 /* win or lose, we're done */
331 if (p->error != 0) /* lose */
332 regfree(preg);
333 return(p->error);
334 }
335
336 /*
337 - p_ere - ERE parser top level, concatenation and alternation
338 == static void p_ere(struct parse *p, int stop, size_t reclimit);
339 */
340 static void
341 p_ere(
342 struct parse *p,
343 int stop, /* character this ERE should end at */
344 size_t reclimit)
345 {
346 char c;
347 sopno prevback = 0; /* pacify gcc */
348 sopno prevfwd = 0; /* pacify gcc */
349 sopno conc;
350 int first = 1; /* is this the first alternative? */
351
352 _DIAGASSERT(p != NULL);
353
354 if (reclimit++ > RECLIMIT || p->error == REG_ESPACE) {
355 p->error = REG_ESPACE;
356 return;
357 }
358
359 for (;;) {
360 /* do a bunch of concatenated expressions */
361 conc = HERE();
362 while (MORE() && (c = PEEK()) != '|' && c != stop)
363 p_ere_exp(p, reclimit);
364 REQUIRE(HERE() != conc, REG_EMPTY); /* require nonempty */
365
366 if (!EAT('|'))
367 break; /* NOTE BREAK OUT */
368
369 if (first) {
370 INSERT(OCH_, conc); /* offset is wrong */
371 prevfwd = conc;
372 prevback = conc;
373 first = 0;
374 }
375 ASTERN(OOR1, prevback);
376 prevback = THERE();
377 AHEAD(prevfwd); /* fix previous offset */
378 prevfwd = HERE();
379 EMIT(OOR2, 0); /* offset is very wrong */
380 }
381
382 if (!first) { /* tail-end fixups */
383 AHEAD(prevfwd);
384 ASTERN(O_CH, prevback);
385 }
386
387 assert(!MORE() || SEE(stop));
388 }
389
390 /*
391 - p_ere_exp - parse one subERE, an atom possibly followed by a repetition op
392 == static void p_ere_exp(struct parse *p, size_t reclimit);
393 */
394 static void
395 p_ere_exp(
396 struct parse *p,
397 size_t reclimit)
398 {
399 char c;
400 sopno pos;
401 int count;
402 int count2;
403 sopno subno;
404 int wascaret = 0;
405
406 _DIAGASSERT(p != NULL);
407
408 assert(MORE()); /* caller should have ensured this */
409 c = GETNEXT();
410
411 pos = HERE();
412 switch (c) {
413 case '(':
414 REQUIRE(MORE(), REG_EPAREN);
415 p->g->nsub++;
416 subno = p->g->nsub;
417 if (subno < NPAREN)
418 p->pbegin[subno] = HERE();
419 EMIT(OLPAREN, subno);
420 if (!SEE(')'))
421 p_ere(p, ')', reclimit);
422 if (subno < NPAREN) {
423 p->pend[subno] = HERE();
424 assert(p->pend[subno] != 0);
425 }
426 EMIT(ORPAREN, subno);
427 MUSTEAT(')', REG_EPAREN);
428 break;
429 #ifndef POSIX_MISTAKE
430 case ')': /* happens only if no current unmatched ( */
431 /*
432 * You may ask, why the ifndef? Because I didn't notice
433 * this until slightly too late for 1003.2, and none of the
434 * other 1003.2 regular-expression reviewers noticed it at
435 * all. So an unmatched ) is legal POSIX, at least until
436 * we can get it fixed.
437 */
438 SETERROR(REG_EPAREN);
439 break;
440 #endif
441 case '^':
442 EMIT(OBOL, 0);
443 p->g->iflags |= USEBOL;
444 p->g->nbol++;
445 wascaret = 1;
446 break;
447 case '$':
448 EMIT(OEOL, 0);
449 p->g->iflags |= USEEOL;
450 p->g->neol++;
451 break;
452 case '|':
453 SETERROR(REG_EMPTY);
454 break;
455 case '*':
456 case '+':
457 case '?':
458 SETERROR(REG_BADRPT);
459 break;
460 case '.':
461 if (p->g->cflags®_NEWLINE)
462 nonnewline(p);
463 else
464 EMIT(OANY, 0);
465 break;
466 case '[':
467 p_bracket(p);
468 break;
469 case '\\':
470 REQUIRE(MORE(), REG_EESCAPE);
471 c = GETNEXT();
472 ordinary(p, c);
473 break;
474 case '{': /* okay as ordinary except if digit follows */
475 REQUIRE(!MORE() || !isdigit((unsigned char)PEEK()), REG_BADRPT);
476 /* FALLTHROUGH */
477 default:
478 ordinary(p, c);
479 break;
480 }
481
482 if (!MORE())
483 return;
484 c = PEEK();
485 /* we call { a repetition if followed by a digit */
486 if (!( c == '*' || c == '+' || c == '?' ||
487 (c == '{' && MORE2() && isdigit((unsigned char)PEEK2())) ))
488 return; /* no repetition, we're done */
489 NEXT();
490
491 REQUIRE(!wascaret, REG_BADRPT);
492 switch (c) {
493 case '*': /* implemented as +? */
494 /* this case does not require the (y|) trick, noKLUDGE */
495 INSERT(OPLUS_, pos);
496 ASTERN(O_PLUS, pos);
497 INSERT(OQUEST_, pos);
498 ASTERN(O_QUEST, pos);
499 break;
500 case '+':
501 INSERT(OPLUS_, pos);
502 ASTERN(O_PLUS, pos);
503 break;
504 case '?':
505 /* KLUDGE: emit y? as (y|) until subtle bug gets fixed */
506 INSERT(OCH_, pos); /* offset slightly wrong */
507 ASTERN(OOR1, pos); /* this one's right */
508 AHEAD(pos); /* fix the OCH_ */
509 EMIT(OOR2, 0); /* offset very wrong... */
510 AHEAD(THERE()); /* ...so fix it */
511 ASTERN(O_CH, THERETHERE());
512 break;
513 case '{':
514 count = p_count(p);
515 if (EAT(',')) {
516 if (isdigit((unsigned char)PEEK())) {
517 count2 = p_count(p);
518 REQUIRE(count <= count2, REG_BADBR);
519 } else /* single number with comma */
520 count2 = INFINITY;
521 } else /* just a single number */
522 count2 = count;
523 repeat(p, pos, count, count2, 0);
524 if (!EAT('}')) { /* error heuristics */
525 while (MORE() && PEEK() != '}')
526 NEXT();
527 REQUIRE(MORE(), REG_EBRACE);
528 SETERROR(REG_BADBR);
529 }
530 break;
531 }
532
533 if (!MORE())
534 return;
535 c = PEEK();
536 if (!( c == '*' || c == '+' || c == '?' ||
537 (c == '{' && MORE2() && isdigit((unsigned char)PEEK2())) ) )
538 return;
539 SETERROR(REG_BADRPT);
540 }
541
542 /*
543 - p_str - string (no metacharacters) "parser"
544 == static void p_str(struct parse *p);
545 */
546 static void
547 p_str(
548 struct parse *p)
549 {
550
551 _DIAGASSERT(p != NULL);
552
553 REQUIRE(MORE(), REG_EMPTY);
554 while (MORE())
555 ordinary(p, GETNEXT());
556 }
557
558 /*
559 - p_bre - BRE parser top level, anchoring and concatenation
560 == static void p_bre(struct parse *p, int end1, \
561 == int end2, size_t reclimit);
562 * Giving end1 as OUT essentially eliminates the end1/end2 check.
563 *
564 * This implementation is a bit of a kludge, in that a trailing $ is first
565 * taken as an ordinary character and then revised to be an anchor. The
566 * only undesirable side effect is that '$' gets included as a character
567 * category in such cases. This is fairly harmless; not worth fixing.
568 * The amount of lookahead needed to avoid this kludge is excessive.
569 */
570 static void
571 p_bre(
572 struct parse *p,
573 int end1, /* first terminating character */
574 int end2, /* second terminating character */
575 size_t reclimit)
576 {
577 sopno start;
578 int first = 1; /* first subexpression? */
579 int wasdollar = 0;
580
581 _DIAGASSERT(p != NULL);
582
583 if (reclimit++ > RECLIMIT || p->error == REG_ESPACE) {
584 p->error = REG_ESPACE;
585 return;
586 }
587
588 start = HERE();
589
590 if (EAT('^')) {
591 EMIT(OBOL, 0);
592 p->g->iflags |= USEBOL;
593 p->g->nbol++;
594 }
595 while (MORE() && !SEETWO(end1, end2)) {
596 wasdollar = p_simp_re(p, first, reclimit);
597 first = 0;
598 }
599 if (wasdollar) { /* oops, that was a trailing anchor */
600 DROP(1);
601 EMIT(OEOL, 0);
602 p->g->iflags |= USEEOL;
603 p->g->neol++;
604 }
605
606 REQUIRE(HERE() != start, REG_EMPTY); /* require nonempty */
607 }
608
609 /*
610 - p_simp_re - parse a simple RE, an atom possibly followed by a repetition
611 == static int p_simp_re(struct parse *p, int starordinary, size_t reclimit);
612 */
613 static int /* was the simple RE an unbackslashed $? */
614 p_simp_re(
615 struct parse *p,
616 int starordinary, /* is a leading * an ordinary character? */
617 size_t reclimit)
618 {
619 int c;
620 int count;
621 int count2;
622 sopno pos, i;
623 sopno subno;
624 # define BACKSL (1<<CHAR_BIT)
625
626 _DIAGASSERT(p != NULL);
627
628 pos = HERE(); /* repetion op, if any, covers from here */
629
630 assert(MORE()); /* caller should have ensured this */
631 c = GETNEXT();
632 if (c == '\\') {
633 REQUIRE(MORE(), REG_EESCAPE);
634 c = BACKSL | (unsigned char)GETNEXT();
635 }
636 switch (c) {
637 case '.':
638 if (p->g->cflags®_NEWLINE)
639 nonnewline(p);
640 else
641 EMIT(OANY, 0);
642 break;
643 case '[':
644 p_bracket(p);
645 break;
646 case BACKSL|'{':
647 SETERROR(REG_BADRPT);
648 break;
649 case BACKSL|'(':
650 p->g->nsub++;
651 subno = p->g->nsub;
652 if (subno < NPAREN)
653 p->pbegin[subno] = HERE();
654 EMIT(OLPAREN, subno);
655 /* the MORE here is an error heuristic */
656 if (MORE() && !SEETWO('\\', ')'))
657 p_bre(p, '\\', ')', reclimit);
658 if (subno < NPAREN) {
659 p->pend[subno] = HERE();
660 assert(p->pend[subno] != 0);
661 }
662 EMIT(ORPAREN, subno);
663 REQUIRE(EATTWO('\\', ')'), REG_EPAREN);
664 break;
665 case BACKSL|')': /* should not get here -- must be user */
666 case BACKSL|'}':
667 SETERROR(REG_EPAREN);
668 break;
669 case BACKSL|'1':
670 case BACKSL|'2':
671 case BACKSL|'3':
672 case BACKSL|'4':
673 case BACKSL|'5':
674 case BACKSL|'6':
675 case BACKSL|'7':
676 case BACKSL|'8':
677 case BACKSL|'9':
678 i = (c&~BACKSL) - '0';
679 assert(i < NPAREN);
680 if (p->pend[i] != 0) {
681 assert(i <= p->g->nsub);
682 EMIT(OBACK_, i);
683 assert(p->pbegin[i] != 0);
684 assert(OP(p->strip[p->pbegin[i]]) == OLPAREN);
685 assert(OP(p->strip[p->pend[i]]) == ORPAREN);
686 (void) dupl(p, p->pbegin[i]+1, p->pend[i]);
687 EMIT(O_BACK, i);
688 } else
689 SETERROR(REG_ESUBREG);
690 p->g->backrefs = 1;
691 break;
692 case '*':
693 REQUIRE(starordinary, REG_BADRPT);
694 /* FALLTHROUGH */
695 default:
696 ordinary(p, c &~ BACKSL);
697 break;
698 }
699
700 if (EAT('*')) { /* implemented as +? */
701 /* this case does not require the (y|) trick, noKLUDGE */
702 INSERT(OPLUS_, pos);
703 ASTERN(O_PLUS, pos);
704 INSERT(OQUEST_, pos);
705 ASTERN(O_QUEST, pos);
706 } else if (EATTWO('\\', '{')) {
707 count = p_count(p);
708 if (EAT(',')) {
709 if (MORE() && isdigit((unsigned char)PEEK())) {
710 count2 = p_count(p);
711 REQUIRE(count <= count2, REG_BADBR);
712 } else /* single number with comma */
713 count2 = INFINITY;
714 } else /* just a single number */
715 count2 = count;
716 repeat(p, pos, count, count2, 0);
717 if (!EATTWO('\\', '}')) { /* error heuristics */
718 while (MORE() && !SEETWO('\\', '}'))
719 NEXT();
720 REQUIRE(MORE(), REG_EBRACE);
721 SETERROR(REG_BADBR);
722 }
723 } else if (c == (unsigned char)'$') /* $ (but not \$) ends it */
724 return(1);
725
726 return(0);
727 }
728
729 /*
730 - p_count - parse a repetition count
731 == static int p_count(struct parse *p);
732 */
733 static int /* the value */
734 p_count(
735 struct parse *p)
736 {
737 int count = 0;
738 int ndigits = 0;
739
740 _DIAGASSERT(p != NULL);
741
742 while (MORE() && isdigit((unsigned char)PEEK()) && count <= DUPMAX) {
743 count = count*10 + (GETNEXT() - '0');
744 ndigits++;
745 }
746
747 REQUIRE(ndigits > 0 && count <= DUPMAX, REG_BADBR);
748 return(count);
749 }
750
751 /*
752 - p_bracket - parse a bracketed character list
753 == static void p_bracket(struct parse *p);
754 *
755 * Note a significant property of this code: if the allocset() did SETERROR,
756 * no set operations are done.
757 */
758 static void
759 p_bracket(
760 struct parse *p)
761 {
762 cset *cs;
763 int invert = 0;
764
765 _DIAGASSERT(p != NULL);
766
767 cs = allocset(p);
768 if (cs == NULL)
769 return;
770
771 /* Dept of Truly Sickening Special-Case Kludges */
772 if (p->next + 5 < p->end && strncmp(p->next, "[:<:]]",
773 (size_t)6) == 0) {
774 EMIT(OBOW, 0);
775 NEXTn(6);
776 return;
777 }
778 if (p->next + 5 < p->end && strncmp(p->next, "[:>:]]",
779 (size_t)6) == 0) {
780 EMIT(OEOW, 0);
781 NEXTn(6);
782 return;
783 }
784
785 if (EAT('^'))
786 invert++; /* make note to invert set at end */
787 if (EAT(']'))
788 CHadd(cs, ']');
789 else if (EAT('-'))
790 CHadd(cs, '-');
791 while (MORE() && PEEK() != ']' && !SEETWO('-', ']'))
792 p_b_term(p, cs);
793 if (EAT('-'))
794 CHadd(cs, '-');
795 MUSTEAT(']', REG_EBRACK);
796
797 if (p->error != 0) /* don't mess things up further */
798 return;
799
800 if (p->g->cflags®_ICASE) {
801 int i;
802 int ci;
803
804 for (i = p->g->csetsize - 1; i >= 0; i--)
805 if (CHIN(cs, i) && isalpha(i)) {
806 ci = othercase(i);
807 if (ci != i)
808 CHadd(cs, ci);
809 }
810 if (cs->multis != NULL)
811 mccase(p, cs);
812 }
813 if (invert) {
814 int i;
815
816 for (i = p->g->csetsize - 1; i >= 0; i--)
817 if (CHIN(cs, i))
818 CHsub(cs, i);
819 else
820 CHadd(cs, i);
821 if (p->g->cflags®_NEWLINE)
822 CHsub(cs, '\n');
823 if (cs->multis != NULL)
824 mcinvert(p, cs);
825 }
826
827 assert(cs->multis == NULL); /* xxx */
828
829 if (nch(p, cs) == 1) { /* optimize singleton sets */
830 ordinary(p, firstch(p, cs));
831 freeset(p, cs);
832 } else
833 EMIT(OANYOF, freezeset(p, cs));
834 }
835
836 /*
837 - p_b_term - parse one term of a bracketed character list
838 == static void p_b_term(struct parse *p, cset *cs);
839 */
840 static void
841 p_b_term(
842 struct parse *p,
843 cset *cs)
844 {
845 char c;
846 char start, finish;
847 int i;
848
849 _DIAGASSERT(p != NULL);
850 _DIAGASSERT(cs != NULL);
851
852 /* classify what we've got */
853 switch ((MORE()) ? PEEK() : '\0') {
854 case '[':
855 c = (MORE2()) ? PEEK2() : '\0';
856 break;
857
858 case '-':
859 SETERROR(REG_ERANGE);
860 return; /* NOTE RETURN */
861
862 default:
863 c = '\0';
864 break;
865 }
866
867 switch (c) {
868 case ':': /* character class */
869 NEXT2();
870 REQUIRE(MORE(), REG_EBRACK);
871 c = PEEK();
872 REQUIRE(c != '-' && c != ']', REG_ECTYPE);
873 p_b_cclass(p, cs);
874 REQUIRE(MORE(), REG_EBRACK);
875 REQUIRE(EATTWO(':', ']'), REG_ECTYPE);
876 break;
877 case '=': /* equivalence class */
878 NEXT2();
879 REQUIRE(MORE(), REG_EBRACK);
880 c = PEEK();
881 REQUIRE(c != '-' && c != ']', REG_ECOLLATE);
882 p_b_eclass(p, cs);
883 REQUIRE(MORE(), REG_EBRACK);
884 REQUIRE(EATTWO('=', ']'), REG_ECOLLATE);
885 break;
886 default: /* symbol, ordinary character, or range */
887 /* xxx revision needed for multichar stuff */
888 start = p_b_symbol(p);
889 if (SEE('-') && MORE2() && PEEK2() != ']') {
890 /* range */
891 NEXT();
892 if (EAT('-'))
893 finish = '-';
894 else
895 finish = p_b_symbol(p);
896 } else
897 finish = start;
898 /* xxx what about signed chars here... */
899 REQUIRE(start <= finish, REG_ERANGE);
900 for (i = start; i <= finish; i++)
901 CHadd(cs, i);
902 break;
903 }
904 }
905
906 /*
907 - p_b_cclass - parse a character-class name and deal with it
908 == static void p_b_cclass(struct parse *p, cset *cs);
909 */
910 static void
911 p_b_cclass(
912 struct parse *p,
913 cset *cs)
914 {
915 const char *sp;
916 const struct cclass *cp;
917 size_t len;
918 const char *u;
919 char c;
920
921 _DIAGASSERT(p != NULL);
922 _DIAGASSERT(cs != NULL);
923
924 sp = p->next;
925
926 while (MORE() && isalpha((unsigned char)PEEK()))
927 NEXT();
928 len = p->next - sp;
929 for (cp = cclasses; cp->name != NULL; cp++)
930 if (strncmp(cp->name, sp, len) == 0 && cp->name[len] == '\0')
931 break;
932 if (cp->name == NULL) {
933 /* oops, didn't find it */
934 SETERROR(REG_ECTYPE);
935 return;
936 }
937
938 u = cp->chars;
939 while ((c = *u++) != '\0')
940 CHadd(cs, c);
941 for (u = cp->multis; *u != '\0'; u += strlen(u) + 1)
942 MCadd(p, cs, u);
943 }
944
945 /*
946 - p_b_eclass - parse an equivalence-class name and deal with it
947 == static void p_b_eclass(struct parse *p, cset *cs);
948 *
949 * This implementation is incomplete. xxx
950 */
951 static void
952 p_b_eclass(
953 struct parse *p,
954 cset *cs)
955 {
956 char c;
957
958 _DIAGASSERT(p != NULL);
959 _DIAGASSERT(cs != NULL);
960
961 c = p_b_coll_elem(p, '=');
962 CHadd(cs, c);
963 }
964
965 /*
966 - p_b_symbol - parse a character or [..]ed multicharacter collating symbol
967 == static char p_b_symbol(struct parse *p);
968 */
969 static char /* value of symbol */
970 p_b_symbol(
971 struct parse *p)
972 {
973 char value;
974
975 _DIAGASSERT(p != NULL);
976
977 REQUIRE(MORE(), REG_EBRACK);
978 if (!EATTWO('[', '.'))
979 return(GETNEXT());
980
981 /* collating symbol */
982 value = p_b_coll_elem(p, '.');
983 REQUIRE(EATTWO('.', ']'), REG_ECOLLATE);
984 return(value);
985 }
986
987 /*
988 - p_b_coll_elem - parse a collating-element name and look it up
989 == static char p_b_coll_elem(struct parse *p, int endc);
990 */
991 static char /* value of collating element */
992 p_b_coll_elem(
993 struct parse *p,
994 int endc) /* name ended by endc,']' */
995 {
996 const char *sp;
997 const struct cname *cp;
998 size_t len;
999
1000 _DIAGASSERT(p != NULL);
1001
1002 sp = p->next;
1003
1004 while (MORE() && !SEETWO(endc, ']'))
1005 NEXT();
1006 if (!MORE()) {
1007 SETERROR(REG_EBRACK);
1008 return(0);
1009 }
1010 len = p->next - sp;
1011 for (cp = cnames; cp->name != NULL; cp++)
1012 if (strncmp(cp->name, sp, len) == 0 && cp->name[len] == '\0')
1013 return(cp->code); /* known name */
1014 if (len == 1)
1015 return(*sp); /* single character */
1016 SETERROR(REG_ECOLLATE); /* neither */
1017 return(0);
1018 }
1019
1020 /*
1021 - othercase - return the case counterpart of an alphabetic
1022 == static int othercase(int ch);
1023 */
1024 static int /* if no counterpart, return ch */
1025 othercase(
1026 int ch)
1027 {
1028 assert(isalpha(ch));
1029 if (isupper(ch))
1030 return(tolower(ch));
1031 else if (islower(ch))
1032 return(toupper(ch));
1033 else /* peculiar, but could happen */
1034 return(ch);
1035 }
1036
1037 /*
1038 - bothcases - emit a dualcase version of a two-case character
1039 == static void bothcases(struct parse *p, int ch);
1040 *
1041 * Boy, is this implementation ever a kludge...
1042 */
1043 static void
1044 bothcases(
1045 struct parse *p,
1046 int ch)
1047 {
1048 const char *oldnext;
1049 const char *oldend;
1050 char bracket[3];
1051
1052 _DIAGASSERT(p != NULL);
1053
1054 oldnext = p->next;
1055 oldend = p->end;
1056
1057 assert(othercase(ch) != ch); /* p_bracket() would recurse */
1058 p->next = bracket;
1059 p->end = bracket+2;
1060 bracket[0] = ch;
1061 bracket[1] = ']';
1062 bracket[2] = '\0';
1063 p_bracket(p);
1064 assert(p->next == bracket+2);
1065 p->next = oldnext;
1066 p->end = oldend;
1067 }
1068
1069 /*
1070 - ordinary - emit an ordinary character
1071 == static void ordinary(struct parse *p, int ch);
1072 */
1073 static void
1074 ordinary(
1075 struct parse *p,
1076 int ch)
1077 {
1078 cat_t *cap;
1079
1080 _DIAGASSERT(p != NULL);
1081
1082 cap = p->g->categories;
1083 if ((p->g->cflags®_ICASE) && isalpha((unsigned char) ch)
1084 && othercase((unsigned char) ch) != (unsigned char) ch)
1085 bothcases(p, (unsigned char) ch);
1086 else {
1087 EMIT(OCHAR, (sopno)(unsigned char)ch);
1088 if (cap[ch] == 0)
1089 cap[ch] = p->g->ncategories++;
1090 }
1091 }
1092
1093 /*
1094 - nonnewline - emit REG_NEWLINE version of OANY
1095 == static void nonnewline(struct parse *p);
1096 *
1097 * Boy, is this implementation ever a kludge...
1098 */
1099 static void
1100 nonnewline(
1101 struct parse *p)
1102 {
1103 const char *oldnext;
1104 const char *oldend;
1105 char bracket[4];
1106
1107 _DIAGASSERT(p != NULL);
1108
1109 oldnext = p->next;
1110 oldend = p->end;
1111
1112 p->next = bracket;
1113 p->end = bracket+3;
1114 bracket[0] = '^';
1115 bracket[1] = '\n';
1116 bracket[2] = ']';
1117 bracket[3] = '\0';
1118 p_bracket(p);
1119 assert(p->next == bracket+3);
1120 p->next = oldnext;
1121 p->end = oldend;
1122 }
1123
1124 /*
1125 - repeat - generate code for a bounded repetition, recursively if needed
1126 == static void repeat(struct parse *p, sopno start, int from, int to,
1127 == size_t reclimit);
1128 */
1129 static void
1130 repeat(
1131 struct parse *p,
1132 sopno start, /* operand from here to end of strip */
1133 int from, /* repeated from this number */
1134 int to, /* to this number of times (maybe INFINITY) */
1135 size_t reclimit)
1136 {
1137 sopno finish;
1138 # define N 2
1139 # define INF 3
1140 # define REP(f, t) ((f)*8 + (t))
1141 # define MAP(n) (((n) <= 1) ? (n) : ((n) == INFINITY) ? INF : N)
1142 sopno copy;
1143
1144 _DIAGASSERT(p != NULL);
1145
1146 if (reclimit++ > RECLIMIT)
1147 p->error = REG_ESPACE;
1148 if (p->error)
1149 return;
1150
1151 finish = HERE();
1152
1153 assert(from <= to);
1154
1155 switch (REP(MAP(from), MAP(to))) {
1156 case REP(0, 0): /* must be user doing this */
1157 DROP(finish-start); /* drop the operand */
1158 break;
1159 case REP(0, 1): /* as x{1,1}? */
1160 case REP(0, N): /* as x{1,n}? */
1161 case REP(0, INF): /* as x{1,}? */
1162 /* KLUDGE: emit y? as (y|) until subtle bug gets fixed */
1163 INSERT(OCH_, start); /* offset is wrong... */
1164 repeat(p, start+1, 1, to, reclimit);
1165 ASTERN(OOR1, start);
1166 AHEAD(start); /* ... fix it */
1167 EMIT(OOR2, 0);
1168 AHEAD(THERE());
1169 ASTERN(O_CH, THERETHERE());
1170 break;
1171 case REP(1, 1): /* trivial case */
1172 /* done */
1173 break;
1174 case REP(1, N): /* as x?x{1,n-1} */
1175 /* KLUDGE: emit y? as (y|) until subtle bug gets fixed */
1176 INSERT(OCH_, start);
1177 ASTERN(OOR1, start);
1178 AHEAD(start);
1179 EMIT(OOR2, 0); /* offset very wrong... */
1180 AHEAD(THERE()); /* ...so fix it */
1181 ASTERN(O_CH, THERETHERE());
1182 copy = dupl(p, start+1, finish+1);
1183 assert(copy == finish+4);
1184 repeat(p, copy, 1, to-1, reclimit);
1185 break;
1186 case REP(1, INF): /* as x+ */
1187 INSERT(OPLUS_, start);
1188 ASTERN(O_PLUS, start);
1189 break;
1190 case REP(N, N): /* as xx{m-1,n-1} */
1191 copy = dupl(p, start, finish);
1192 repeat(p, copy, from-1, to-1, reclimit);
1193 break;
1194 case REP(N, INF): /* as xx{n-1,INF} */
1195 copy = dupl(p, start, finish);
1196 repeat(p, copy, from-1, to, reclimit);
1197 break;
1198 default: /* "can't happen" */
1199 SETERROR(REG_ASSERT); /* just in case */
1200 break;
1201 }
1202 }
1203
1204 /*
1205 - seterr - set an error condition
1206 == static int seterr(struct parse *p, int e);
1207 */
1208 static int /* useless but makes type checking happy */
1209 seterr(
1210 struct parse *p,
1211 int e)
1212 {
1213
1214 _DIAGASSERT(p != NULL);
1215
1216 if (p->error == 0) /* keep earliest error condition */
1217 p->error = e;
1218 p->next = nuls; /* try to bring things to a halt */
1219 p->end = nuls;
1220 return(0); /* make the return value well-defined */
1221 }
1222
1223 /*
1224 - allocset - allocate a set of characters for []
1225 == static cset *allocset(struct parse *p);
1226 */
1227 static cset *
1228 allocset(
1229 struct parse *p)
1230 {
1231 int no;
1232 size_t nc;
1233 size_t nbytes;
1234 cset *cs;
1235 size_t css;
1236 int i;
1237
1238 _DIAGASSERT(p != NULL);
1239
1240 no = p->g->ncsets++;
1241 css = (size_t)p->g->csetsize;
1242 if (no >= p->ncsalloc) { /* need another column of space */
1243 p->ncsalloc += CHAR_BIT;
1244 nc = p->ncsalloc;
1245 assert(nc % CHAR_BIT == 0);
1246 nbytes = nc / CHAR_BIT * css;
1247 if (MEMSIZE(p) > MEMLIMIT)
1248 goto oomem;
1249 if (p->g->sets == NULL)
1250 p->g->sets = malloc(nc * sizeof(cset));
1251 else
1252 p->g->sets = realloc(p->g->sets, nc * sizeof(cset));
1253 if (p->g->setbits == NULL)
1254 p->g->setbits = malloc(nbytes);
1255 else {
1256 p->g->setbits = realloc(p->g->setbits, nbytes);
1257 /* xxx this isn't right if setbits is now NULL */
1258 for (i = 0; i < no; i++)
1259 p->g->sets[i].ptr = p->g->setbits + css*(i/CHAR_BIT);
1260 }
1261 if (p->g->sets != NULL && p->g->setbits != NULL)
1262 (void) memset((char *)p->g->setbits + (nbytes - css),
1263 0, css);
1264 else {
1265 oomem:
1266 no = 0;
1267 SETERROR(REG_ESPACE);
1268 /* caller's responsibility not to do set ops */
1269 return NULL;
1270 }
1271 }
1272
1273 cs = &p->g->sets[no];
1274 cs->ptr = p->g->setbits + css*((no)/CHAR_BIT);
1275 cs->mask = 1 << ((no) % CHAR_BIT);
1276 cs->hash = 0;
1277 cs->smultis = 0;
1278 cs->multis = NULL;
1279
1280 return(cs);
1281 }
1282
1283 /*
1284 - freeset - free a now-unused set
1285 == static void freeset(struct parse *p, cset *cs);
1286 */
1287 static void
1288 freeset(
1289 struct parse *p,
1290 cset *cs)
1291 {
1292 size_t i;
1293 cset *top;
1294 size_t css;
1295
1296 _DIAGASSERT(p != NULL);
1297 _DIAGASSERT(cs != NULL);
1298
1299 top = &p->g->sets[p->g->ncsets];
1300 css = (size_t)p->g->csetsize;
1301
1302 for (i = 0; i < css; i++)
1303 CHsub(cs, i);
1304 if (cs == top-1) /* recover only the easy case */
1305 p->g->ncsets--;
1306 }
1307
1308 /*
1309 - freezeset - final processing on a set of characters
1310 == static int freezeset(struct parse *p, cset *cs);
1311 *
1312 * The main task here is merging identical sets. This is usually a waste
1313 * of time (although the hash code minimizes the overhead), but can win
1314 * big if REG_ICASE is being used. REG_ICASE, by the way, is why the hash
1315 * is done using addition rather than xor -- all ASCII [aA] sets xor to
1316 * the same value!
1317 */
1318 static sopno /* set number */
1319 freezeset(
1320 struct parse *p,
1321 cset *cs)
1322 {
1323 uch h;
1324 size_t i;
1325 cset *top;
1326 cset *cs2;
1327 size_t css;
1328
1329 _DIAGASSERT(p != NULL);
1330 _DIAGASSERT(cs != NULL);
1331
1332 h = cs->hash;
1333 top = &p->g->sets[p->g->ncsets];
1334 css = (size_t)p->g->csetsize;
1335
1336 /* look for an earlier one which is the same */
1337 for (cs2 = &p->g->sets[0]; cs2 < top; cs2++)
1338 if (cs2->hash == h && cs2 != cs) {
1339 /* maybe */
1340 for (i = 0; i < css; i++)
1341 if (!!CHIN(cs2, i) != !!CHIN(cs, i))
1342 break; /* no */
1343 if (i == css)
1344 break; /* yes */
1345 }
1346
1347 if (cs2 < top) { /* found one */
1348 freeset(p, cs);
1349 cs = cs2;
1350 }
1351
1352 return (sopno)(cs - p->g->sets);
1353 }
1354
1355 /*
1356 - firstch - return first character in a set (which must have at least one)
1357 == static int firstch(struct parse *p, cset *cs);
1358 */
1359 static int /* character; there is no "none" value */
1360 firstch(
1361 struct parse *p,
1362 cset *cs)
1363 {
1364 size_t i;
1365 size_t css;
1366
1367 _DIAGASSERT(p != NULL);
1368 _DIAGASSERT(cs != NULL);
1369
1370 css = (size_t)p->g->csetsize;
1371
1372 for (i = 0; i < css; i++)
1373 if (CHIN(cs, i))
1374 return((char)i);
1375 assert(never);
1376 return(0); /* arbitrary */
1377 }
1378
1379 /*
1380 - nch - number of characters in a set
1381 == static int nch(struct parse *p, cset *cs);
1382 */
1383 static int
1384 nch(
1385 struct parse *p,
1386 cset *cs)
1387 {
1388 size_t i;
1389 size_t css;
1390 int n = 0;
1391
1392 _DIAGASSERT(p != NULL);
1393 _DIAGASSERT(cs != NULL);
1394
1395 css = (size_t)p->g->csetsize;
1396
1397 for (i = 0; i < css; i++)
1398 if (CHIN(cs, i))
1399 n++;
1400 return(n);
1401 }
1402
1403 /*
1404 - mcadd - add a collating element to a cset
1405 == static void mcadd(struct parse *p, cset *cs, \
1406 == char *cp);
1407 */
1408 static void
1409 mcadd(
1410 struct parse *p,
1411 cset *cs,
1412 const char *cp)
1413 {
1414 size_t oldend;
1415
1416 _DIAGASSERT(p != NULL);
1417 _DIAGASSERT(cs != NULL);
1418 _DIAGASSERT(cp != NULL);
1419
1420 oldend = cs->smultis;
1421
1422 cs->smultis += strlen(cp) + 1;
1423 if (cs->multis == NULL)
1424 cs->multis = malloc(cs->smultis);
1425 else
1426 cs->multis = realloc(cs->multis, cs->smultis);
1427 if (cs->multis == NULL) {
1428 SETERROR(REG_ESPACE);
1429 return;
1430 }
1431
1432 (void) strcpy(cs->multis + oldend - 1, cp);
1433 cs->multis[cs->smultis - 1] = '\0';
1434 }
1435
1436 #if 0
1437 /*
1438 - mcsub - subtract a collating element from a cset
1439 == static void mcsub(cset *cs, char *cp);
1440 */
1441 static void
1442 mcsub(
1443 cset *cs,
1444 char *cp)
1445 {
1446 char *fp;
1447 size_t len;
1448
1449 _DIAGASSERT(cs != NULL);
1450 _DIAGASSERT(cp != NULL);
1451
1452 fp = mcfind(cs, cp);
1453 len = strlen(fp);
1454
1455 assert(fp != NULL);
1456 (void) memmove(fp, fp + len + 1,
1457 cs->smultis - (fp + len + 1 - cs->multis));
1458 cs->smultis -= len;
1459
1460 if (cs->smultis == 0) {
1461 free(cs->multis);
1462 cs->multis = NULL;
1463 return;
1464 }
1465
1466 cs->multis = realloc(cs->multis, cs->smultis);
1467 assert(cs->multis != NULL);
1468 }
1469
1470 /*
1471 - mcin - is a collating element in a cset?
1472 == static int mcin(cset *cs, char *cp);
1473 */
1474 static int
1475 mcin(
1476 cset *cs,
1477 char *cp)
1478 {
1479
1480 _DIAGASSERT(cs != NULL);
1481 _DIAGASSERT(cp != NULL);
1482
1483 return(mcfind(cs, cp) != NULL);
1484 }
1485
1486 /*
1487 - mcfind - find a collating element in a cset
1488 == static char *mcfind(cset *cs, char *cp);
1489 */
1490 static char *
1491 mcfind(
1492 cset *cs,
1493 char *cp)
1494 {
1495 char *p;
1496
1497 _DIAGASSERT(cs != NULL);
1498 _DIAGASSERT(cp != NULL);
1499
1500 if (cs->multis == NULL)
1501 return(NULL);
1502 for (p = cs->multis; *p != '\0'; p += strlen(p) + 1)
1503 if (strcmp(cp, p) == 0)
1504 return(p);
1505 return(NULL);
1506 }
1507 #endif
1508
1509 /*
1510 - mcinvert - invert the list of collating elements in a cset
1511 == static void mcinvert(struct parse *p, cset *cs);
1512 *
1513 * This would have to know the set of possibilities. Implementation
1514 * is deferred.
1515 */
1516 /* ARGSUSED */
1517 static void
1518 mcinvert(
1519 struct parse *p,
1520 cset *cs)
1521 {
1522
1523 _DIAGASSERT(p != NULL);
1524 _DIAGASSERT(cs != NULL);
1525
1526 assert(cs->multis == NULL); /* xxx */
1527 }
1528
1529 /*
1530 - mccase - add case counterparts of the list of collating elements in a cset
1531 == static void mccase(struct parse *p, cset *cs);
1532 *
1533 * This would have to know the set of possibilities. Implementation
1534 * is deferred.
1535 */
1536 /* ARGSUSED */
1537 static void
1538 mccase(
1539 struct parse *p,
1540 cset *cs)
1541 {
1542
1543 _DIAGASSERT(p != NULL);
1544 _DIAGASSERT(cs != NULL);
1545
1546 assert(cs->multis == NULL); /* xxx */
1547 }
1548
1549 /*
1550 - isinsets - is this character in any sets?
1551 == static int isinsets(struct re_guts *g, int c);
1552 */
1553 static int /* predicate */
1554 isinsets(
1555 struct re_guts *g,
1556 int c)
1557 {
1558 uch *col;
1559 int i;
1560 int ncols;
1561 unsigned uc = (unsigned char)c;
1562
1563 _DIAGASSERT(g != NULL);
1564
1565 ncols = (g->ncsets+(CHAR_BIT-1)) / CHAR_BIT;
1566
1567 for (i = 0, col = g->setbits; i < ncols; i++, col += g->csetsize)
1568 if (col[uc] != 0)
1569 return(1);
1570 return(0);
1571 }
1572
1573 /*
1574 - samesets - are these two characters in exactly the same sets?
1575 == static int samesets(struct re_guts *g, int c1, int c2);
1576 */
1577 static int /* predicate */
1578 samesets(
1579 struct re_guts *g,
1580 int c1,
1581 int c2)
1582 {
1583 uch *col;
1584 int i;
1585 int ncols;
1586 unsigned uc1 = (unsigned char)c1;
1587 unsigned uc2 = (unsigned char)c2;
1588
1589 _DIAGASSERT(g != NULL);
1590
1591 ncols = (g->ncsets+(CHAR_BIT-1)) / CHAR_BIT;
1592
1593 for (i = 0, col = g->setbits; i < ncols; i++, col += g->csetsize)
1594 if (col[uc1] != col[uc2])
1595 return(0);
1596 return(1);
1597 }
1598
1599 /*
1600 - categorize - sort out character categories
1601 == static void categorize(struct parse *p, struct re_guts *g);
1602 */
1603 static void
1604 categorize(
1605 struct parse *p,
1606 struct re_guts *g)
1607 {
1608 cat_t *cats;
1609 int c;
1610 int c2;
1611 cat_t cat;
1612
1613 _DIAGASSERT(p != NULL);
1614 _DIAGASSERT(g != NULL);
1615
1616 cats = g->categories;
1617
1618 /* avoid making error situations worse */
1619 if (p->error != 0)
1620 return;
1621
1622 for (c = CHAR_MIN; c <= CHAR_MAX; c++)
1623 if (cats[c] == 0 && isinsets(g, c)) {
1624 cat = g->ncategories++;
1625 cats[c] = cat;
1626 for (c2 = c+1; c2 <= CHAR_MAX; c2++)
1627 if (cats[c2] == 0 && samesets(g, c, c2))
1628 cats[c2] = cat;
1629 }
1630 }
1631
1632 /*
1633 - dupl - emit a duplicate of a bunch of sops
1634 == static sopno dupl(struct parse *p, sopno start, sopno finish);
1635 */
1636 static sopno /* start of duplicate */
1637 dupl(
1638 struct parse *p,
1639 sopno start, /* from here */
1640 sopno finish) /* to this less one */
1641 {
1642 sopno ret;
1643 sopno len = finish - start;
1644
1645 _DIAGASSERT(p != NULL);
1646
1647 ret = HERE();
1648
1649 assert(finish >= start);
1650 if (len == 0)
1651 return(ret);
1652 if (!enlarge(p, p->ssize + len))/* this many unexpected additions */
1653 return ret;
1654 (void)memcpy(p->strip + p->slen, p->strip + start,
1655 (size_t)len * sizeof(sop));
1656 p->slen += len;
1657 return(ret);
1658 }
1659
1660 /*
1661 - doemit - emit a strip operator
1662 == static void doemit(struct parse *p, sop op, size_t opnd);
1663 *
1664 * It might seem better to implement this as a macro with a function as
1665 * hard-case backup, but it's just too big and messy unless there are
1666 * some changes to the data structures. Maybe later.
1667 */
1668 static void
1669 doemit(
1670 struct parse *p,
1671 sop op,
1672 sopno opnd)
1673 {
1674
1675 _DIAGASSERT(p != NULL);
1676
1677 /* avoid making error situations worse */
1678 if (p->error != 0)
1679 return;
1680
1681 /* deal with oversize operands ("can't happen", more or less) */
1682 assert(opnd < 1<<OPSHIFT);
1683
1684 /* deal with undersized strip */
1685 if (p->slen >= p->ssize)
1686 if (!enlarge(p, (p->ssize+1) / 2 * 3)) /* +50% */
1687 return;
1688
1689 /* finally, it's all reduced to the easy case */
1690 p->strip[p->slen++] = SOP(op, opnd);
1691 }
1692
1693 /*
1694 - doinsert - insert a sop into the strip
1695 == static void doinsert(struct parse *p, sop op, size_t opnd, sopno pos);
1696 */
1697 static void
1698 doinsert(
1699 struct parse *p,
1700 sop op,
1701 sopno opnd,
1702 sopno pos)
1703 {
1704 sopno sn;
1705 sop s;
1706 int i;
1707
1708 _DIAGASSERT(p != NULL);
1709
1710 /* avoid making error situations worse */
1711 if (p->error != 0)
1712 return;
1713
1714 sn = HERE();
1715 EMIT(op, opnd); /* do checks, ensure space */
1716 assert(HERE() == sn+1);
1717 s = p->strip[sn];
1718
1719 /* adjust paren pointers */
1720 assert(pos > 0);
1721 for (i = 1; i < NPAREN; i++) {
1722 if (p->pbegin[i] >= pos) {
1723 p->pbegin[i]++;
1724 }
1725 if (p->pend[i] >= pos) {
1726 p->pend[i]++;
1727 }
1728 }
1729
1730 memmove(&p->strip[pos+1], &p->strip[pos], (HERE()-pos-1)*sizeof(sop));
1731 p->strip[pos] = s;
1732 }
1733
1734 /*
1735 - dofwd - complete a forward reference
1736 == static void dofwd(struct parse *p, sopno pos, sop value);
1737 */
1738 static void
1739 dofwd(
1740 struct parse *p,
1741 sopno pos,
1742 sopno value)
1743 {
1744
1745 _DIAGASSERT(p != NULL);
1746
1747 /* avoid making error situations worse */
1748 if (p->error != 0)
1749 return;
1750
1751 assert(value < 1<<OPSHIFT);
1752 p->strip[pos] = OP(p->strip[pos]) | value;
1753 }
1754
1755 /*
1756 - enlarge - enlarge the strip
1757 == static void enlarge(struct parse *p, sopno size);
1758 */
1759 static int
1760 enlarge(
1761 struct parse *p,
1762 sopno size)
1763 {
1764 sop *sp;
1765 sopno osize;
1766
1767 _DIAGASSERT(p != NULL);
1768
1769 if (p->ssize >= size)
1770 return 1;
1771
1772 osize = p->ssize;
1773 p->ssize = size;
1774 if (MEMSIZE(p) > MEMLIMIT)
1775 goto oomem;
1776 sp = realloc(p->strip, p->ssize * sizeof(sop));
1777 if (sp == NULL) {
1778 oomem:
1779 p->ssize = osize;
1780 SETERROR(REG_ESPACE);
1781 return 0;
1782 }
1783 p->strip = sp;
1784 return 1;
1785 }
1786
1787 /*
1788 - stripsnug - compact the strip
1789 == static void stripsnug(struct parse *p, struct re_guts *g);
1790 */
1791 static void
1792 stripsnug(
1793 struct parse *p,
1794 struct re_guts *g)
1795 {
1796
1797 _DIAGASSERT(p != NULL);
1798 _DIAGASSERT(g != NULL);
1799
1800 g->nstates = p->slen;
1801 g->strip = realloc(p->strip, p->slen * sizeof(sop));
1802 if (g->strip == NULL) {
1803 SETERROR(REG_ESPACE);
1804 g->strip = p->strip;
1805 }
1806 }
1807
1808 /*
1809 - findmust - fill in must and mlen with longest mandatory literal string
1810 == static void findmust(struct parse *p, struct re_guts *g);
1811 *
1812 * This algorithm could do fancy things like analyzing the operands of |
1813 * for common subsequences. Someday. This code is simple and finds most
1814 * of the interesting cases.
1815 *
1816 * Note that must and mlen got initialized during setup.
1817 */
1818 static void
1819 findmust(
1820 struct parse *p,
1821 struct re_guts *g)
1822 {
1823 sop *scan;
1824 sop *start = NULL;
1825 sop *newstart = NULL;
1826 sopno newlen;
1827 sop s;
1828 char *cp;
1829 sopno i;
1830
1831 _DIAGASSERT(p != NULL);
1832 _DIAGASSERT(g != NULL);
1833
1834 /* avoid making error situations worse */
1835 if (p->error != 0)
1836 return;
1837
1838 /* find the longest OCHAR sequence in strip */
1839 newlen = 0;
1840 scan = g->strip + 1;
1841 do {
1842 s = *scan++;
1843 switch (OP(s)) {
1844 case OCHAR: /* sequence member */
1845 if (newlen == 0) /* new sequence */
1846 newstart = scan - 1;
1847 newlen++;
1848 break;
1849 case OPLUS_: /* things that don't break one */
1850 case OLPAREN:
1851 case ORPAREN:
1852 break;
1853 case OQUEST_: /* things that must be skipped */
1854 case OCH_:
1855 scan--;
1856 do {
1857 scan += OPND(s);
1858 s = *scan;
1859 /* assert() interferes w debug printouts */
1860 if (OP(s) != O_QUEST && OP(s) != O_CH &&
1861 OP(s) != OOR2) {
1862 g->iflags |= BAD;
1863 return;
1864 }
1865 } while (OP(s) != O_QUEST && OP(s) != O_CH);
1866 /* FALLTHROUGH */
1867 default: /* things that break a sequence */
1868 if (newlen > g->mlen) { /* ends one */
1869 start = newstart;
1870 g->mlen = newlen;
1871 }
1872 newlen = 0;
1873 break;
1874 }
1875 } while (OP(s) != OEND);
1876
1877 if (start == NULL)
1878 g->mlen = 0;
1879
1880 if (g->mlen == 0) /* there isn't one */
1881 return;
1882
1883 /* turn it into a character string */
1884 g->must = malloc((size_t)g->mlen + 1);
1885 if (g->must == NULL) { /* argh; just forget it */
1886 g->mlen = 0;
1887 return;
1888 }
1889 cp = g->must;
1890 scan = start;
1891 for (i = g->mlen; i > 0; i--) {
1892 while (OP(s = *scan++) != OCHAR)
1893 continue;
1894 assert(cp < g->must + g->mlen);
1895 *cp++ = (char)OPND(s);
1896 }
1897 assert(cp == g->must + g->mlen);
1898 *cp++ = '\0'; /* just on general principles */
1899 }
1900
1901 /*
1902 - pluscount - count + nesting
1903 == static sopno pluscount(struct parse *p, struct re_guts *g);
1904 */
1905 static sopno /* nesting depth */
1906 pluscount(
1907 struct parse *p,
1908 struct re_guts *g)
1909 {
1910 sop *scan;
1911 sop s;
1912 sopno plusnest = 0;
1913 sopno maxnest = 0;
1914
1915 _DIAGASSERT(p != NULL);
1916 _DIAGASSERT(g != NULL);
1917
1918 if (p->error != 0)
1919 return(0); /* there may not be an OEND */
1920
1921 scan = g->strip + 1;
1922 do {
1923 s = *scan++;
1924 switch (OP(s)) {
1925 case OPLUS_:
1926 plusnest++;
1927 break;
1928 case O_PLUS:
1929 if (plusnest > maxnest)
1930 maxnest = plusnest;
1931 plusnest--;
1932 break;
1933 }
1934 } while (OP(s) != OEND);
1935 if (plusnest != 0)
1936 g->iflags |= BAD;
1937 return(maxnest);
1938 }
1939