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regcomp.c revision 1.16
      1  1.16   mycroft /*	$NetBSD: regcomp.c,v 1.16 2000/01/22 22:19:17 mycroft Exp $	*/
      2   1.6       cgd 
      3   1.5       cgd /*-
      4   1.5       cgd  * Copyright (c) 1992, 1993, 1994 Henry Spencer.
      5   1.5       cgd  * Copyright (c) 1992, 1993, 1994
      6   1.5       cgd  *	The Regents of the University of California.  All rights reserved.
      7   1.5       cgd  *
      8   1.5       cgd  * This code is derived from software contributed to Berkeley by
      9   1.5       cgd  * Henry Spencer.
     10   1.5       cgd  *
     11   1.5       cgd  * Redistribution and use in source and binary forms, with or without
     12   1.5       cgd  * modification, are permitted provided that the following conditions
     13   1.5       cgd  * are met:
     14   1.5       cgd  * 1. Redistributions of source code must retain the above copyright
     15   1.5       cgd  *    notice, this list of conditions and the following disclaimer.
     16   1.5       cgd  * 2. Redistributions in binary form must reproduce the above copyright
     17   1.5       cgd  *    notice, this list of conditions and the following disclaimer in the
     18   1.5       cgd  *    documentation and/or other materials provided with the distribution.
     19   1.5       cgd  * 3. All advertising materials mentioning features or use of this software
     20   1.5       cgd  *    must display the following acknowledgement:
     21   1.5       cgd  *	This product includes software developed by the University of
     22   1.5       cgd  *	California, Berkeley and its contributors.
     23   1.5       cgd  * 4. Neither the name of the University nor the names of its contributors
     24   1.5       cgd  *    may be used to endorse or promote products derived from this software
     25   1.5       cgd  *    without specific prior written permission.
     26   1.5       cgd  *
     27   1.5       cgd  * THIS SOFTWARE IS PROVIDED BY THE REGENTS AND CONTRIBUTORS ``AS IS'' AND
     28   1.5       cgd  * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
     29   1.5       cgd  * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
     30   1.5       cgd  * ARE DISCLAIMED.  IN NO EVENT SHALL THE REGENTS OR CONTRIBUTORS BE LIABLE
     31   1.5       cgd  * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
     32   1.5       cgd  * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
     33   1.5       cgd  * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
     34   1.5       cgd  * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
     35   1.5       cgd  * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
     36   1.5       cgd  * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
     37   1.5       cgd  * SUCH DAMAGE.
     38   1.5       cgd  *
     39   1.5       cgd  *	@(#)regcomp.c	8.5 (Berkeley) 3/20/94
     40   1.5       cgd  */
     41   1.5       cgd 
     42   1.7  christos #include <sys/cdefs.h>
     43   1.5       cgd #if defined(LIBC_SCCS) && !defined(lint)
     44   1.6       cgd #if 0
     45   1.5       cgd static char sccsid[] = "@(#)regcomp.c	8.5 (Berkeley) 3/20/94";
     46   1.6       cgd #else
     47  1.16   mycroft __RCSID("$NetBSD: regcomp.c,v 1.16 2000/01/22 22:19:17 mycroft Exp $");
     48   1.6       cgd #endif
     49   1.5       cgd #endif /* LIBC_SCCS and not lint */
     50   1.5       cgd 
     51   1.8       jtc #include "namespace.h"
     52   1.1       jtc #include <sys/types.h>
     53  1.14     lukem 
     54  1.14     lukem #include <assert.h>
     55   1.1       jtc #include <ctype.h>
     56   1.1       jtc #include <limits.h>
     57  1.14     lukem #include <regex.h>
     58  1.14     lukem #include <stdio.h>
     59   1.1       jtc #include <stdlib.h>
     60  1.14     lukem #include <string.h>
     61   1.8       jtc 
     62   1.8       jtc #ifdef __weak_alias
     63  1.16   mycroft __weak_alias(regcomp,_regcomp)
     64   1.8       jtc #endif
     65   1.1       jtc 
     66   1.1       jtc #include "utils.h"
     67   1.1       jtc #include "regex2.h"
     68   1.1       jtc 
     69   1.1       jtc #include "cclass.h"
     70   1.1       jtc #include "cname.h"
     71   1.1       jtc 
     72   1.1       jtc /*
     73   1.1       jtc  * parse structure, passed up and down to avoid global variables and
     74   1.1       jtc  * other clumsinesses
     75   1.1       jtc  */
     76   1.1       jtc struct parse {
     77   1.1       jtc 	char *next;		/* next character in RE */
     78   1.1       jtc 	char *end;		/* end of string (-> NUL normally) */
     79   1.1       jtc 	int error;		/* has an error been seen? */
     80   1.1       jtc 	sop *strip;		/* malloced strip */
     81   1.1       jtc 	sopno ssize;		/* malloced strip size (allocated) */
     82   1.1       jtc 	sopno slen;		/* malloced strip length (used) */
     83   1.1       jtc 	int ncsalloc;		/* number of csets allocated */
     84   1.1       jtc 	struct re_guts *g;
     85   1.1       jtc #	define	NPAREN	10	/* we need to remember () 1-9 for back refs */
     86   1.1       jtc 	sopno pbegin[NPAREN];	/* -> ( ([0] unused) */
     87   1.1       jtc 	sopno pend[NPAREN];	/* -> ) ([0] unused) */
     88   1.1       jtc };
     89   1.1       jtc 
     90   1.5       cgd /* ========= begin header generated by ./mkh ========= */
     91   1.5       cgd #ifdef __cplusplus
     92   1.5       cgd extern "C" {
     93   1.5       cgd #endif
     94   1.5       cgd 
     95   1.5       cgd /* === regcomp.c === */
     96   1.5       cgd static void p_ere __P((struct parse *p, int stop));
     97   1.5       cgd static void p_ere_exp __P((struct parse *p));
     98   1.5       cgd static void p_str __P((struct parse *p));
     99   1.5       cgd static void p_bre __P((struct parse *p, int end1, int end2));
    100   1.5       cgd static int p_simp_re __P((struct parse *p, int starordinary));
    101   1.5       cgd static int p_count __P((struct parse *p));
    102   1.5       cgd static void p_bracket __P((struct parse *p));
    103   1.5       cgd static void p_b_term __P((struct parse *p, cset *cs));
    104   1.5       cgd static void p_b_cclass __P((struct parse *p, cset *cs));
    105   1.5       cgd static void p_b_eclass __P((struct parse *p, cset *cs));
    106   1.5       cgd static char p_b_symbol __P((struct parse *p));
    107   1.5       cgd static char p_b_coll_elem __P((struct parse *p, int endc));
    108   1.5       cgd static char othercase __P((int ch));
    109   1.5       cgd static void bothcases __P((struct parse *p, int ch));
    110   1.5       cgd static void ordinary __P((struct parse *p, int ch));
    111   1.5       cgd static void nonnewline __P((struct parse *p));
    112   1.5       cgd static void repeat __P((struct parse *p, sopno start, int from, int to));
    113   1.5       cgd static int seterr __P((struct parse *p, int e));
    114   1.5       cgd static cset *allocset __P((struct parse *p));
    115   1.5       cgd static void freeset __P((struct parse *p, cset *cs));
    116   1.5       cgd static int freezeset __P((struct parse *p, cset *cs));
    117   1.5       cgd static int firstch __P((struct parse *p, cset *cs));
    118   1.5       cgd static int nch __P((struct parse *p, cset *cs));
    119  1.10   mycroft static void mcadd __P((struct parse *p, cset *cs, const char *cp));
    120   1.7  christos #if 0
    121   1.5       cgd static void mcsub __P((cset *cs, char *cp));
    122   1.5       cgd static int mcin __P((cset *cs, char *cp));
    123   1.5       cgd static char *mcfind __P((cset *cs, char *cp));
    124   1.7  christos #endif
    125   1.5       cgd static void mcinvert __P((struct parse *p, cset *cs));
    126   1.5       cgd static void mccase __P((struct parse *p, cset *cs));
    127   1.5       cgd static int isinsets __P((struct re_guts *g, int c));
    128   1.5       cgd static int samesets __P((struct re_guts *g, int c1, int c2));
    129   1.5       cgd static void categorize __P((struct parse *p, struct re_guts *g));
    130   1.5       cgd static sopno dupl __P((struct parse *p, sopno start, sopno finish));
    131  1.12  drochner static void doemit __P((struct parse *p, sop op, sopno opnd));
    132  1.12  drochner static void doinsert __P((struct parse *p, sop op, sopno opnd, sopno pos));
    133  1.12  drochner static void dofwd __P((struct parse *p, sopno pos, sopno value));
    134   1.5       cgd static void enlarge __P((struct parse *p, sopno size));
    135   1.5       cgd static void stripsnug __P((struct parse *p, struct re_guts *g));
    136   1.5       cgd static void findmust __P((struct parse *p, struct re_guts *g));
    137   1.5       cgd static sopno pluscount __P((struct parse *p, struct re_guts *g));
    138   1.5       cgd 
    139   1.5       cgd #ifdef __cplusplus
    140   1.5       cgd }
    141   1.5       cgd #endif
    142   1.5       cgd /* ========= end header generated by ./mkh ========= */
    143   1.1       jtc 
    144   1.1       jtc static char nuls[10];		/* place to point scanner in event of error */
    145   1.1       jtc 
    146   1.1       jtc /*
    147   1.1       jtc  * macros for use with parse structure
    148   1.1       jtc  * BEWARE:  these know that the parse structure is named `p' !!!
    149   1.1       jtc  */
    150   1.1       jtc #define	PEEK()	(*p->next)
    151   1.1       jtc #define	PEEK2()	(*(p->next+1))
    152   1.1       jtc #define	MORE()	(p->next < p->end)
    153   1.1       jtc #define	MORE2()	(p->next+1 < p->end)
    154   1.1       jtc #define	SEE(c)	(MORE() && PEEK() == (c))
    155   1.1       jtc #define	SEETWO(a, b)	(MORE() && MORE2() && PEEK() == (a) && PEEK2() == (b))
    156   1.1       jtc #define	EAT(c)	((SEE(c)) ? (NEXT(), 1) : 0)
    157   1.1       jtc #define	EATTWO(a, b)	((SEETWO(a, b)) ? (NEXT2(), 1) : 0)
    158   1.1       jtc #define	NEXT()	(p->next++)
    159   1.1       jtc #define	NEXT2()	(p->next += 2)
    160   1.1       jtc #define	NEXTn(n)	(p->next += (n))
    161   1.1       jtc #define	GETNEXT()	(*p->next++)
    162   1.1       jtc #define	SETERROR(e)	seterr(p, (e))
    163   1.7  christos #define	REQUIRE(co, e)	(void) ((co) || SETERROR(e))
    164   1.1       jtc #define	MUSTSEE(c, e)	(REQUIRE(MORE() && PEEK() == (c), e))
    165   1.7  christos #define	MUSTEAT(c, e)	(void) (REQUIRE(MORE() && GETNEXT() == (c), e))
    166   1.1       jtc #define	MUSTNOTSEE(c, e)	(REQUIRE(!MORE() || PEEK() != (c), e))
    167  1.12  drochner #define	EMIT(op, sopnd)	doemit(p, (sop)(op), sopnd)
    168  1.12  drochner #define	INSERT(op, pos)	doinsert(p, (sop)(op), HERE()-(pos)+1, pos)
    169  1.12  drochner #define	AHEAD(pos)		dofwd(p, pos, HERE()-(pos))
    170   1.1       jtc #define	ASTERN(sop, pos)	EMIT(sop, HERE()-pos)
    171   1.1       jtc #define	HERE()		(p->slen)
    172   1.1       jtc #define	THERE()		(p->slen - 1)
    173   1.4       jtc #define	THERETHERE()	(p->slen - 2)
    174   1.1       jtc #define	DROP(n)	(p->slen -= (n))
    175   1.1       jtc 
    176   1.1       jtc #ifndef NDEBUG
    177   1.1       jtc static int never = 0;		/* for use in asserts; shuts lint up */
    178   1.3       jtc #else
    179   1.3       jtc #define	never	0		/* some <assert.h>s have bugs too */
    180   1.1       jtc #endif
    181   1.1       jtc 
    182   1.1       jtc /*
    183   1.1       jtc  - regcomp - interface for parser and compilation
    184   1.2       jtc  = extern int regcomp(regex_t *, const char *, int);
    185   1.1       jtc  = #define	REG_BASIC	0000
    186   1.1       jtc  = #define	REG_EXTENDED	0001
    187   1.1       jtc  = #define	REG_ICASE	0002
    188   1.1       jtc  = #define	REG_NOSUB	0004
    189   1.1       jtc  = #define	REG_NEWLINE	0010
    190   1.1       jtc  = #define	REG_NOSPEC	0020
    191   1.1       jtc  = #define	REG_PEND	0040
    192   1.1       jtc  = #define	REG_DUMP	0200
    193   1.1       jtc  */
    194   1.1       jtc int				/* 0 success, otherwise REG_something */
    195   1.1       jtc regcomp(preg, pattern, cflags)
    196   1.1       jtc regex_t *preg;
    197   1.1       jtc const char *pattern;
    198   1.1       jtc int cflags;
    199   1.1       jtc {
    200   1.1       jtc 	struct parse pa;
    201   1.9     perry 	struct re_guts *g;
    202   1.9     perry 	struct parse *p = &pa;
    203   1.9     perry 	int i;
    204   1.9     perry 	size_t len;
    205   1.3       jtc #ifdef REDEBUG
    206   1.3       jtc #	define	GOODFLAGS(f)	(f)
    207   1.3       jtc #else
    208   1.3       jtc #	define	GOODFLAGS(f)	((f)&~REG_DUMP)
    209   1.3       jtc #endif
    210   1.1       jtc 
    211  1.14     lukem 	_DIAGASSERT(preg != NULL);
    212  1.14     lukem 	_DIAGASSERT(pattern != NULL);
    213  1.14     lukem 
    214   1.3       jtc 	cflags = GOODFLAGS(cflags);
    215   1.1       jtc 	if ((cflags&REG_EXTENDED) && (cflags&REG_NOSPEC))
    216   1.1       jtc 		return(REG_INVARG);
    217   1.1       jtc 
    218   1.1       jtc 	if (cflags&REG_PEND) {
    219   1.1       jtc 		if (preg->re_endp < pattern)
    220   1.1       jtc 			return(REG_INVARG);
    221   1.1       jtc 		len = preg->re_endp - pattern;
    222   1.1       jtc 	} else
    223  1.11  christos 		len = strlen(pattern);
    224   1.1       jtc 
    225   1.1       jtc 	/* do the mallocs early so failure handling is easy */
    226   1.1       jtc 	g = (struct re_guts *)malloc(sizeof(struct re_guts) +
    227   1.1       jtc 							(NC-1)*sizeof(cat_t));
    228   1.1       jtc 	if (g == NULL)
    229   1.1       jtc 		return(REG_ESPACE);
    230   1.1       jtc 	p->ssize = len/(size_t)2*(size_t)3 + (size_t)1;	/* ugh */
    231   1.1       jtc 	p->strip = (sop *)malloc(p->ssize * sizeof(sop));
    232   1.1       jtc 	p->slen = 0;
    233   1.1       jtc 	if (p->strip == NULL) {
    234  1.11  christos 		free(g);
    235   1.1       jtc 		return(REG_ESPACE);
    236   1.1       jtc 	}
    237   1.1       jtc 
    238   1.1       jtc 	/* set things up */
    239   1.1       jtc 	p->g = g;
    240  1.11  christos 	/* LINTED convenience; we do not modify it */
    241  1.11  christos 	p->next = (char *)pattern;
    242   1.1       jtc 	p->end = p->next + len;
    243   1.1       jtc 	p->error = 0;
    244   1.1       jtc 	p->ncsalloc = 0;
    245   1.1       jtc 	for (i = 0; i < NPAREN; i++) {
    246   1.1       jtc 		p->pbegin[i] = 0;
    247   1.1       jtc 		p->pend[i] = 0;
    248   1.1       jtc 	}
    249   1.1       jtc 	g->csetsize = NC;
    250   1.1       jtc 	g->sets = NULL;
    251   1.1       jtc 	g->setbits = NULL;
    252   1.1       jtc 	g->ncsets = 0;
    253   1.1       jtc 	g->cflags = cflags;
    254   1.1       jtc 	g->iflags = 0;
    255   1.1       jtc 	g->nbol = 0;
    256   1.1       jtc 	g->neol = 0;
    257   1.1       jtc 	g->must = NULL;
    258   1.1       jtc 	g->mlen = 0;
    259   1.1       jtc 	g->nsub = 0;
    260   1.1       jtc 	g->ncategories = 1;	/* category 0 is "everything else" */
    261   1.1       jtc 	g->categories = &g->catspace[-(CHAR_MIN)];
    262   1.1       jtc 	(void) memset((char *)g->catspace, 0, NC*sizeof(cat_t));
    263   1.1       jtc 	g->backrefs = 0;
    264   1.1       jtc 
    265   1.1       jtc 	/* do it */
    266   1.1       jtc 	EMIT(OEND, 0);
    267   1.1       jtc 	g->firststate = THERE();
    268   1.1       jtc 	if (cflags&REG_EXTENDED)
    269   1.1       jtc 		p_ere(p, OUT);
    270   1.1       jtc 	else if (cflags&REG_NOSPEC)
    271   1.1       jtc 		p_str(p);
    272   1.1       jtc 	else
    273   1.1       jtc 		p_bre(p, OUT, OUT);
    274   1.1       jtc 	EMIT(OEND, 0);
    275   1.1       jtc 	g->laststate = THERE();
    276   1.1       jtc 
    277   1.1       jtc 	/* tidy up loose ends and fill things in */
    278   1.1       jtc 	categorize(p, g);
    279   1.1       jtc 	stripsnug(p, g);
    280   1.1       jtc 	findmust(p, g);
    281   1.1       jtc 	g->nplus = pluscount(p, g);
    282   1.1       jtc 	g->magic = MAGIC2;
    283   1.1       jtc 	preg->re_nsub = g->nsub;
    284   1.1       jtc 	preg->re_g = g;
    285   1.1       jtc 	preg->re_magic = MAGIC1;
    286   1.1       jtc #ifndef REDEBUG
    287   1.1       jtc 	/* not debugging, so can't rely on the assert() in regexec() */
    288   1.1       jtc 	if (g->iflags&BAD)
    289   1.1       jtc 		SETERROR(REG_ASSERT);
    290   1.1       jtc #endif
    291   1.1       jtc 
    292   1.1       jtc 	/* win or lose, we're done */
    293   1.1       jtc 	if (p->error != 0)	/* lose */
    294   1.1       jtc 		regfree(preg);
    295   1.1       jtc 	return(p->error);
    296   1.1       jtc }
    297   1.1       jtc 
    298   1.1       jtc /*
    299   1.1       jtc  - p_ere - ERE parser top level, concatenation and alternation
    300   1.9     perry  == static void p_ere(struct parse *p, int stop);
    301   1.1       jtc  */
    302   1.1       jtc static void
    303   1.1       jtc p_ere(p, stop)
    304   1.9     perry struct parse *p;
    305   1.1       jtc int stop;			/* character this ERE should end at */
    306   1.1       jtc {
    307   1.9     perry 	char c;
    308   1.9     perry 	sopno prevback = 0;	/* pacify gcc */
    309   1.9     perry 	sopno prevfwd = 0; 	/* pacify gcc */
    310   1.9     perry 	sopno conc;
    311   1.9     perry 	int first = 1;		/* is this the first alternative? */
    312   1.1       jtc 
    313  1.14     lukem 	_DIAGASSERT(p != NULL);
    314  1.14     lukem 
    315   1.1       jtc 	for (;;) {
    316   1.1       jtc 		/* do a bunch of concatenated expressions */
    317   1.1       jtc 		conc = HERE();
    318   1.1       jtc 		while (MORE() && (c = PEEK()) != '|' && c != stop)
    319   1.1       jtc 			p_ere_exp(p);
    320   1.1       jtc 		REQUIRE(HERE() != conc, REG_EMPTY);	/* require nonempty */
    321   1.1       jtc 
    322   1.1       jtc 		if (!EAT('|'))
    323   1.1       jtc 			break;		/* NOTE BREAK OUT */
    324   1.1       jtc 
    325   1.1       jtc 		if (first) {
    326   1.1       jtc 			INSERT(OCH_, conc);	/* offset is wrong */
    327   1.1       jtc 			prevfwd = conc;
    328   1.1       jtc 			prevback = conc;
    329   1.1       jtc 			first = 0;
    330   1.1       jtc 		}
    331   1.1       jtc 		ASTERN(OOR1, prevback);
    332   1.1       jtc 		prevback = THERE();
    333   1.1       jtc 		AHEAD(prevfwd);			/* fix previous offset */
    334   1.1       jtc 		prevfwd = HERE();
    335   1.1       jtc 		EMIT(OOR2, 0);			/* offset is very wrong */
    336   1.1       jtc 	}
    337   1.1       jtc 
    338   1.1       jtc 	if (!first) {		/* tail-end fixups */
    339   1.1       jtc 		AHEAD(prevfwd);
    340   1.1       jtc 		ASTERN(O_CH, prevback);
    341   1.1       jtc 	}
    342   1.1       jtc 
    343   1.1       jtc 	assert(!MORE() || SEE(stop));
    344   1.1       jtc }
    345   1.1       jtc 
    346   1.1       jtc /*
    347   1.1       jtc  - p_ere_exp - parse one subERE, an atom possibly followed by a repetition op
    348   1.9     perry  == static void p_ere_exp(struct parse *p);
    349   1.1       jtc  */
    350   1.1       jtc static void
    351   1.1       jtc p_ere_exp(p)
    352   1.9     perry struct parse *p;
    353   1.1       jtc {
    354   1.9     perry 	char c;
    355   1.9     perry 	sopno pos;
    356   1.9     perry 	int count;
    357   1.9     perry 	int count2;
    358   1.9     perry 	sopno subno;
    359   1.1       jtc 	int wascaret = 0;
    360   1.1       jtc 
    361  1.14     lukem 	_DIAGASSERT(p != NULL);
    362  1.14     lukem 
    363   1.1       jtc 	assert(MORE());		/* caller should have ensured this */
    364   1.1       jtc 	c = GETNEXT();
    365   1.1       jtc 
    366   1.1       jtc 	pos = HERE();
    367   1.1       jtc 	switch (c) {
    368   1.1       jtc 	case '(':
    369   1.1       jtc 		REQUIRE(MORE(), REG_EPAREN);
    370   1.1       jtc 		p->g->nsub++;
    371   1.1       jtc 		subno = p->g->nsub;
    372   1.1       jtc 		if (subno < NPAREN)
    373   1.1       jtc 			p->pbegin[subno] = HERE();
    374   1.1       jtc 		EMIT(OLPAREN, subno);
    375   1.1       jtc 		if (!SEE(')'))
    376   1.1       jtc 			p_ere(p, ')');
    377   1.1       jtc 		if (subno < NPAREN) {
    378   1.1       jtc 			p->pend[subno] = HERE();
    379   1.1       jtc 			assert(p->pend[subno] != 0);
    380   1.1       jtc 		}
    381   1.1       jtc 		EMIT(ORPAREN, subno);
    382   1.1       jtc 		MUSTEAT(')', REG_EPAREN);
    383   1.1       jtc 		break;
    384   1.1       jtc #ifndef POSIX_MISTAKE
    385   1.1       jtc 	case ')':		/* happens only if no current unmatched ( */
    386   1.1       jtc 		/*
    387   1.1       jtc 		 * You may ask, why the ifndef?  Because I didn't notice
    388   1.1       jtc 		 * this until slightly too late for 1003.2, and none of the
    389   1.1       jtc 		 * other 1003.2 regular-expression reviewers noticed it at
    390   1.1       jtc 		 * all.  So an unmatched ) is legal POSIX, at least until
    391   1.1       jtc 		 * we can get it fixed.
    392   1.1       jtc 		 */
    393   1.1       jtc 		SETERROR(REG_EPAREN);
    394   1.1       jtc 		break;
    395   1.1       jtc #endif
    396   1.1       jtc 	case '^':
    397   1.1       jtc 		EMIT(OBOL, 0);
    398   1.1       jtc 		p->g->iflags |= USEBOL;
    399   1.1       jtc 		p->g->nbol++;
    400   1.1       jtc 		wascaret = 1;
    401   1.1       jtc 		break;
    402   1.1       jtc 	case '$':
    403   1.1       jtc 		EMIT(OEOL, 0);
    404   1.1       jtc 		p->g->iflags |= USEEOL;
    405   1.1       jtc 		p->g->neol++;
    406   1.1       jtc 		break;
    407   1.1       jtc 	case '|':
    408   1.1       jtc 		SETERROR(REG_EMPTY);
    409   1.1       jtc 		break;
    410   1.1       jtc 	case '*':
    411   1.1       jtc 	case '+':
    412   1.1       jtc 	case '?':
    413   1.1       jtc 		SETERROR(REG_BADRPT);
    414   1.1       jtc 		break;
    415   1.1       jtc 	case '.':
    416   1.1       jtc 		if (p->g->cflags&REG_NEWLINE)
    417   1.1       jtc 			nonnewline(p);
    418   1.1       jtc 		else
    419   1.1       jtc 			EMIT(OANY, 0);
    420   1.1       jtc 		break;
    421   1.1       jtc 	case '[':
    422   1.1       jtc 		p_bracket(p);
    423   1.1       jtc 		break;
    424   1.1       jtc 	case '\\':
    425   1.1       jtc 		REQUIRE(MORE(), REG_EESCAPE);
    426   1.1       jtc 		c = GETNEXT();
    427   1.1       jtc 		ordinary(p, c);
    428   1.1       jtc 		break;
    429   1.1       jtc 	case '{':		/* okay as ordinary except if digit follows */
    430   1.1       jtc 		REQUIRE(!MORE() || !isdigit(PEEK()), REG_BADRPT);
    431   1.1       jtc 		/* FALLTHROUGH */
    432   1.1       jtc 	default:
    433   1.1       jtc 		ordinary(p, c);
    434   1.1       jtc 		break;
    435   1.1       jtc 	}
    436   1.1       jtc 
    437   1.1       jtc 	if (!MORE())
    438   1.1       jtc 		return;
    439   1.1       jtc 	c = PEEK();
    440   1.1       jtc 	/* we call { a repetition if followed by a digit */
    441   1.1       jtc 	if (!( c == '*' || c == '+' || c == '?' ||
    442   1.1       jtc 				(c == '{' && MORE2() && isdigit(PEEK2())) ))
    443   1.1       jtc 		return;		/* no repetition, we're done */
    444   1.1       jtc 	NEXT();
    445   1.1       jtc 
    446   1.1       jtc 	REQUIRE(!wascaret, REG_BADRPT);
    447   1.1       jtc 	switch (c) {
    448   1.1       jtc 	case '*':	/* implemented as +? */
    449   1.4       jtc 		/* this case does not require the (y|) trick, noKLUDGE */
    450   1.1       jtc 		INSERT(OPLUS_, pos);
    451   1.1       jtc 		ASTERN(O_PLUS, pos);
    452   1.1       jtc 		INSERT(OQUEST_, pos);
    453   1.1       jtc 		ASTERN(O_QUEST, pos);
    454   1.1       jtc 		break;
    455   1.1       jtc 	case '+':
    456   1.1       jtc 		INSERT(OPLUS_, pos);
    457   1.1       jtc 		ASTERN(O_PLUS, pos);
    458   1.1       jtc 		break;
    459   1.1       jtc 	case '?':
    460   1.4       jtc 		/* KLUDGE: emit y? as (y|) until subtle bug gets fixed */
    461   1.4       jtc 		INSERT(OCH_, pos);		/* offset slightly wrong */
    462   1.4       jtc 		ASTERN(OOR1, pos);		/* this one's right */
    463   1.4       jtc 		AHEAD(pos);			/* fix the OCH_ */
    464   1.4       jtc 		EMIT(OOR2, 0);			/* offset very wrong... */
    465   1.4       jtc 		AHEAD(THERE());			/* ...so fix it */
    466   1.4       jtc 		ASTERN(O_CH, THERETHERE());
    467   1.1       jtc 		break;
    468   1.1       jtc 	case '{':
    469   1.1       jtc 		count = p_count(p);
    470   1.1       jtc 		if (EAT(',')) {
    471   1.1       jtc 			if (isdigit(PEEK())) {
    472   1.1       jtc 				count2 = p_count(p);
    473   1.1       jtc 				REQUIRE(count <= count2, REG_BADBR);
    474   1.1       jtc 			} else		/* single number with comma */
    475   1.1       jtc 				count2 = INFINITY;
    476   1.1       jtc 		} else		/* just a single number */
    477   1.1       jtc 			count2 = count;
    478   1.1       jtc 		repeat(p, pos, count, count2);
    479   1.1       jtc 		if (!EAT('}')) {	/* error heuristics */
    480   1.1       jtc 			while (MORE() && PEEK() != '}')
    481   1.1       jtc 				NEXT();
    482   1.1       jtc 			REQUIRE(MORE(), REG_EBRACE);
    483   1.1       jtc 			SETERROR(REG_BADBR);
    484   1.1       jtc 		}
    485   1.1       jtc 		break;
    486   1.1       jtc 	}
    487   1.1       jtc 
    488   1.1       jtc 	if (!MORE())
    489   1.1       jtc 		return;
    490   1.1       jtc 	c = PEEK();
    491   1.1       jtc 	if (!( c == '*' || c == '+' || c == '?' ||
    492   1.1       jtc 				(c == '{' && MORE2() && isdigit(PEEK2())) ) )
    493   1.1       jtc 		return;
    494   1.1       jtc 	SETERROR(REG_BADRPT);
    495   1.1       jtc }
    496   1.1       jtc 
    497   1.1       jtc /*
    498   1.1       jtc  - p_str - string (no metacharacters) "parser"
    499   1.9     perry  == static void p_str(struct parse *p);
    500   1.1       jtc  */
    501   1.1       jtc static void
    502   1.1       jtc p_str(p)
    503   1.9     perry struct parse *p;
    504   1.1       jtc {
    505  1.14     lukem 
    506  1.14     lukem 	_DIAGASSERT(p != NULL);
    507  1.14     lukem 
    508   1.1       jtc 	REQUIRE(MORE(), REG_EMPTY);
    509   1.1       jtc 	while (MORE())
    510   1.1       jtc 		ordinary(p, GETNEXT());
    511   1.1       jtc }
    512   1.1       jtc 
    513   1.1       jtc /*
    514   1.1       jtc  - p_bre - BRE parser top level, anchoring and concatenation
    515   1.9     perry  == static void p_bre(struct parse *p, int end1, \
    516   1.9     perry  ==	int end2);
    517   1.1       jtc  * Giving end1 as OUT essentially eliminates the end1/end2 check.
    518   1.1       jtc  *
    519   1.1       jtc  * This implementation is a bit of a kludge, in that a trailing $ is first
    520   1.1       jtc  * taken as an ordinary character and then revised to be an anchor.  The
    521   1.1       jtc  * only undesirable side effect is that '$' gets included as a character
    522   1.1       jtc  * category in such cases.  This is fairly harmless; not worth fixing.
    523   1.1       jtc  * The amount of lookahead needed to avoid this kludge is excessive.
    524   1.1       jtc  */
    525   1.1       jtc static void
    526   1.1       jtc p_bre(p, end1, end2)
    527   1.9     perry struct parse *p;
    528   1.9     perry int end1;		/* first terminating character */
    529   1.9     perry int end2;		/* second terminating character */
    530   1.9     perry {
    531  1.14     lukem 	sopno start;
    532   1.9     perry 	int first = 1;			/* first subexpression? */
    533   1.9     perry 	int wasdollar = 0;
    534   1.1       jtc 
    535  1.14     lukem 	_DIAGASSERT(p != NULL);
    536  1.14     lukem 
    537  1.14     lukem 	start = HERE();
    538  1.14     lukem 
    539   1.1       jtc 	if (EAT('^')) {
    540   1.1       jtc 		EMIT(OBOL, 0);
    541   1.1       jtc 		p->g->iflags |= USEBOL;
    542   1.1       jtc 		p->g->nbol++;
    543   1.1       jtc 	}
    544   1.1       jtc 	while (MORE() && !SEETWO(end1, end2)) {
    545   1.1       jtc 		wasdollar = p_simp_re(p, first);
    546   1.1       jtc 		first = 0;
    547   1.1       jtc 	}
    548   1.1       jtc 	if (wasdollar) {	/* oops, that was a trailing anchor */
    549   1.1       jtc 		DROP(1);
    550   1.1       jtc 		EMIT(OEOL, 0);
    551   1.1       jtc 		p->g->iflags |= USEEOL;
    552   1.1       jtc 		p->g->neol++;
    553   1.1       jtc 	}
    554   1.1       jtc 
    555   1.1       jtc 	REQUIRE(HERE() != start, REG_EMPTY);	/* require nonempty */
    556   1.1       jtc }
    557   1.1       jtc 
    558   1.1       jtc /*
    559   1.1       jtc  - p_simp_re - parse a simple RE, an atom possibly followed by a repetition
    560   1.9     perry  == static int p_simp_re(struct parse *p, int starordinary);
    561   1.1       jtc  */
    562   1.1       jtc static int			/* was the simple RE an unbackslashed $? */
    563   1.1       jtc p_simp_re(p, starordinary)
    564   1.9     perry struct parse *p;
    565   1.1       jtc int starordinary;		/* is a leading * an ordinary character? */
    566   1.1       jtc {
    567   1.9     perry 	int c;
    568   1.9     perry 	int count;
    569   1.9     perry 	int count2;
    570   1.9     perry 	sopno pos;
    571   1.9     perry 	int i;
    572   1.9     perry 	sopno subno;
    573   1.1       jtc #	define	BACKSL	(1<<CHAR_BIT)
    574   1.1       jtc 
    575  1.14     lukem 	_DIAGASSERT(p != NULL);
    576  1.14     lukem 
    577   1.1       jtc 	pos = HERE();		/* repetion op, if any, covers from here */
    578   1.1       jtc 
    579   1.1       jtc 	assert(MORE());		/* caller should have ensured this */
    580   1.1       jtc 	c = GETNEXT();
    581   1.1       jtc 	if (c == '\\') {
    582   1.1       jtc 		REQUIRE(MORE(), REG_EESCAPE);
    583   1.1       jtc 		c = BACKSL | (unsigned char)GETNEXT();
    584   1.1       jtc 	}
    585   1.1       jtc 	switch (c) {
    586   1.1       jtc 	case '.':
    587   1.1       jtc 		if (p->g->cflags&REG_NEWLINE)
    588   1.1       jtc 			nonnewline(p);
    589   1.1       jtc 		else
    590   1.1       jtc 			EMIT(OANY, 0);
    591   1.1       jtc 		break;
    592   1.1       jtc 	case '[':
    593   1.1       jtc 		p_bracket(p);
    594   1.1       jtc 		break;
    595   1.1       jtc 	case BACKSL|'{':
    596   1.1       jtc 		SETERROR(REG_BADRPT);
    597   1.1       jtc 		break;
    598   1.1       jtc 	case BACKSL|'(':
    599   1.1       jtc 		p->g->nsub++;
    600   1.1       jtc 		subno = p->g->nsub;
    601   1.1       jtc 		if (subno < NPAREN)
    602   1.1       jtc 			p->pbegin[subno] = HERE();
    603   1.1       jtc 		EMIT(OLPAREN, subno);
    604   1.1       jtc 		/* the MORE here is an error heuristic */
    605   1.1       jtc 		if (MORE() && !SEETWO('\\', ')'))
    606   1.1       jtc 			p_bre(p, '\\', ')');
    607   1.1       jtc 		if (subno < NPAREN) {
    608   1.1       jtc 			p->pend[subno] = HERE();
    609   1.1       jtc 			assert(p->pend[subno] != 0);
    610   1.1       jtc 		}
    611   1.1       jtc 		EMIT(ORPAREN, subno);
    612   1.1       jtc 		REQUIRE(EATTWO('\\', ')'), REG_EPAREN);
    613   1.1       jtc 		break;
    614   1.1       jtc 	case BACKSL|')':	/* should not get here -- must be user */
    615   1.1       jtc 	case BACKSL|'}':
    616   1.1       jtc 		SETERROR(REG_EPAREN);
    617   1.1       jtc 		break;
    618   1.1       jtc 	case BACKSL|'1':
    619   1.1       jtc 	case BACKSL|'2':
    620   1.1       jtc 	case BACKSL|'3':
    621   1.1       jtc 	case BACKSL|'4':
    622   1.1       jtc 	case BACKSL|'5':
    623   1.1       jtc 	case BACKSL|'6':
    624   1.1       jtc 	case BACKSL|'7':
    625   1.1       jtc 	case BACKSL|'8':
    626   1.1       jtc 	case BACKSL|'9':
    627   1.1       jtc 		i = (c&~BACKSL) - '0';
    628   1.1       jtc 		assert(i < NPAREN);
    629   1.1       jtc 		if (p->pend[i] != 0) {
    630   1.1       jtc 			assert(i <= p->g->nsub);
    631   1.1       jtc 			EMIT(OBACK_, i);
    632   1.1       jtc 			assert(p->pbegin[i] != 0);
    633   1.1       jtc 			assert(OP(p->strip[p->pbegin[i]]) == OLPAREN);
    634   1.1       jtc 			assert(OP(p->strip[p->pend[i]]) == ORPAREN);
    635   1.1       jtc 			(void) dupl(p, p->pbegin[i]+1, p->pend[i]);
    636   1.1       jtc 			EMIT(O_BACK, i);
    637   1.1       jtc 		} else
    638   1.1       jtc 			SETERROR(REG_ESUBREG);
    639   1.1       jtc 		p->g->backrefs = 1;
    640   1.1       jtc 		break;
    641   1.1       jtc 	case '*':
    642   1.1       jtc 		REQUIRE(starordinary, REG_BADRPT);
    643   1.1       jtc 		/* FALLTHROUGH */
    644   1.1       jtc 	default:
    645   1.1       jtc 		ordinary(p, c &~ BACKSL);
    646   1.1       jtc 		break;
    647   1.1       jtc 	}
    648   1.1       jtc 
    649   1.1       jtc 	if (EAT('*')) {		/* implemented as +? */
    650   1.4       jtc 		/* this case does not require the (y|) trick, noKLUDGE */
    651   1.1       jtc 		INSERT(OPLUS_, pos);
    652   1.1       jtc 		ASTERN(O_PLUS, pos);
    653   1.1       jtc 		INSERT(OQUEST_, pos);
    654   1.1       jtc 		ASTERN(O_QUEST, pos);
    655   1.1       jtc 	} else if (EATTWO('\\', '{')) {
    656   1.1       jtc 		count = p_count(p);
    657   1.1       jtc 		if (EAT(',')) {
    658   1.1       jtc 			if (MORE() && isdigit(PEEK())) {
    659   1.1       jtc 				count2 = p_count(p);
    660   1.1       jtc 				REQUIRE(count <= count2, REG_BADBR);
    661   1.1       jtc 			} else		/* single number with comma */
    662   1.1       jtc 				count2 = INFINITY;
    663   1.1       jtc 		} else		/* just a single number */
    664   1.1       jtc 			count2 = count;
    665   1.1       jtc 		repeat(p, pos, count, count2);
    666   1.1       jtc 		if (!EATTWO('\\', '}')) {	/* error heuristics */
    667   1.1       jtc 			while (MORE() && !SEETWO('\\', '}'))
    668   1.1       jtc 				NEXT();
    669   1.1       jtc 			REQUIRE(MORE(), REG_EBRACE);
    670   1.1       jtc 			SETERROR(REG_BADBR);
    671   1.1       jtc 		}
    672   1.1       jtc 	} else if (c == (unsigned char)'$')	/* $ (but not \$) ends it */
    673   1.1       jtc 		return(1);
    674   1.1       jtc 
    675   1.1       jtc 	return(0);
    676   1.1       jtc }
    677   1.1       jtc 
    678   1.1       jtc /*
    679   1.1       jtc  - p_count - parse a repetition count
    680   1.9     perry  == static int p_count(struct parse *p);
    681   1.1       jtc  */
    682   1.1       jtc static int			/* the value */
    683   1.1       jtc p_count(p)
    684   1.9     perry struct parse *p;
    685   1.1       jtc {
    686   1.9     perry 	int count = 0;
    687   1.9     perry 	int ndigits = 0;
    688   1.1       jtc 
    689  1.14     lukem 	_DIAGASSERT(p != NULL);
    690  1.14     lukem 
    691   1.1       jtc 	while (MORE() && isdigit(PEEK()) && count <= DUPMAX) {
    692   1.1       jtc 		count = count*10 + (GETNEXT() - '0');
    693   1.1       jtc 		ndigits++;
    694   1.1       jtc 	}
    695   1.1       jtc 
    696   1.1       jtc 	REQUIRE(ndigits > 0 && count <= DUPMAX, REG_BADBR);
    697   1.1       jtc 	return(count);
    698   1.1       jtc }
    699   1.1       jtc 
    700   1.1       jtc /*
    701   1.1       jtc  - p_bracket - parse a bracketed character list
    702   1.9     perry  == static void p_bracket(struct parse *p);
    703   1.1       jtc  *
    704   1.1       jtc  * Note a significant property of this code:  if the allocset() did SETERROR,
    705   1.1       jtc  * no set operations are done.
    706   1.1       jtc  */
    707   1.1       jtc static void
    708   1.1       jtc p_bracket(p)
    709   1.9     perry struct parse *p;
    710   1.1       jtc {
    711  1.14     lukem 	cset *cs;
    712   1.9     perry 	int invert = 0;
    713   1.1       jtc 
    714  1.14     lukem 	_DIAGASSERT(p != NULL);
    715  1.14     lukem 
    716  1.14     lukem 	cs = allocset(p);
    717  1.14     lukem 
    718   1.1       jtc 	/* Dept of Truly Sickening Special-Case Kludges */
    719  1.13  drochner 	if (p->next + 5 < p->end && strncmp(p->next, "[:<:]]",
    720  1.13  drochner 					    (size_t)6) == 0) {
    721   1.1       jtc 		EMIT(OBOW, 0);
    722   1.1       jtc 		NEXTn(6);
    723   1.1       jtc 		return;
    724   1.1       jtc 	}
    725  1.13  drochner 	if (p->next + 5 < p->end && strncmp(p->next, "[:>:]]",
    726  1.13  drochner 					    (size_t)6) == 0) {
    727   1.1       jtc 		EMIT(OEOW, 0);
    728   1.1       jtc 		NEXTn(6);
    729   1.1       jtc 		return;
    730   1.1       jtc 	}
    731   1.1       jtc 
    732   1.1       jtc 	if (EAT('^'))
    733   1.1       jtc 		invert++;	/* make note to invert set at end */
    734   1.1       jtc 	if (EAT(']'))
    735   1.1       jtc 		CHadd(cs, ']');
    736   1.1       jtc 	else if (EAT('-'))
    737   1.1       jtc 		CHadd(cs, '-');
    738   1.1       jtc 	while (MORE() && PEEK() != ']' && !SEETWO('-', ']'))
    739   1.1       jtc 		p_b_term(p, cs);
    740   1.1       jtc 	if (EAT('-'))
    741   1.1       jtc 		CHadd(cs, '-');
    742   1.1       jtc 	MUSTEAT(']', REG_EBRACK);
    743   1.1       jtc 
    744   1.1       jtc 	if (p->error != 0)	/* don't mess things up further */
    745   1.1       jtc 		return;
    746   1.1       jtc 
    747   1.1       jtc 	if (p->g->cflags&REG_ICASE) {
    748   1.9     perry 		int i;
    749   1.9     perry 		int ci;
    750   1.1       jtc 
    751   1.1       jtc 		for (i = p->g->csetsize - 1; i >= 0; i--)
    752   1.1       jtc 			if (CHIN(cs, i) && isalpha(i)) {
    753   1.1       jtc 				ci = othercase(i);
    754   1.1       jtc 				if (ci != i)
    755   1.1       jtc 					CHadd(cs, ci);
    756   1.1       jtc 			}
    757   1.1       jtc 		if (cs->multis != NULL)
    758   1.2       jtc 			mccase(p, cs);
    759   1.1       jtc 	}
    760   1.1       jtc 	if (invert) {
    761   1.9     perry 		int i;
    762   1.1       jtc 
    763   1.1       jtc 		for (i = p->g->csetsize - 1; i >= 0; i--)
    764   1.1       jtc 			if (CHIN(cs, i))
    765   1.1       jtc 				CHsub(cs, i);
    766   1.1       jtc 			else
    767   1.1       jtc 				CHadd(cs, i);
    768   1.1       jtc 		if (p->g->cflags&REG_NEWLINE)
    769   1.1       jtc 			CHsub(cs, '\n');
    770   1.1       jtc 		if (cs->multis != NULL)
    771   1.2       jtc 			mcinvert(p, cs);
    772   1.1       jtc 	}
    773   1.1       jtc 
    774   1.1       jtc 	assert(cs->multis == NULL);		/* xxx */
    775   1.1       jtc 
    776   1.1       jtc 	if (nch(p, cs) == 1) {		/* optimize singleton sets */
    777   1.1       jtc 		ordinary(p, firstch(p, cs));
    778   1.1       jtc 		freeset(p, cs);
    779   1.1       jtc 	} else
    780   1.1       jtc 		EMIT(OANYOF, freezeset(p, cs));
    781   1.1       jtc }
    782   1.1       jtc 
    783   1.1       jtc /*
    784   1.1       jtc  - p_b_term - parse one term of a bracketed character list
    785   1.9     perry  == static void p_b_term(struct parse *p, cset *cs);
    786   1.1       jtc  */
    787   1.1       jtc static void
    788   1.1       jtc p_b_term(p, cs)
    789   1.9     perry struct parse *p;
    790   1.9     perry cset *cs;
    791   1.1       jtc {
    792   1.9     perry 	char c;
    793   1.9     perry 	char start, finish;
    794   1.9     perry 	int i;
    795   1.1       jtc 
    796  1.14     lukem 	_DIAGASSERT(p != NULL);
    797  1.14     lukem 	_DIAGASSERT(cs != NULL);
    798  1.14     lukem 
    799   1.1       jtc 	/* classify what we've got */
    800   1.1       jtc 	switch ((MORE()) ? PEEK() : '\0') {
    801   1.1       jtc 	case '[':
    802   1.1       jtc 		c = (MORE2()) ? PEEK2() : '\0';
    803   1.1       jtc 		break;
    804  1.11  christos 
    805   1.1       jtc 	case '-':
    806   1.1       jtc 		SETERROR(REG_ERANGE);
    807   1.1       jtc 		return;			/* NOTE RETURN */
    808  1.11  christos 
    809   1.1       jtc 	default:
    810   1.1       jtc 		c = '\0';
    811   1.1       jtc 		break;
    812   1.1       jtc 	}
    813   1.1       jtc 
    814   1.1       jtc 	switch (c) {
    815   1.1       jtc 	case ':':		/* character class */
    816   1.1       jtc 		NEXT2();
    817   1.1       jtc 		REQUIRE(MORE(), REG_EBRACK);
    818   1.1       jtc 		c = PEEK();
    819   1.1       jtc 		REQUIRE(c != '-' && c != ']', REG_ECTYPE);
    820   1.1       jtc 		p_b_cclass(p, cs);
    821   1.1       jtc 		REQUIRE(MORE(), REG_EBRACK);
    822   1.1       jtc 		REQUIRE(EATTWO(':', ']'), REG_ECTYPE);
    823   1.1       jtc 		break;
    824   1.1       jtc 	case '=':		/* equivalence class */
    825   1.1       jtc 		NEXT2();
    826   1.1       jtc 		REQUIRE(MORE(), REG_EBRACK);
    827   1.1       jtc 		c = PEEK();
    828   1.1       jtc 		REQUIRE(c != '-' && c != ']', REG_ECOLLATE);
    829   1.1       jtc 		p_b_eclass(p, cs);
    830   1.1       jtc 		REQUIRE(MORE(), REG_EBRACK);
    831   1.1       jtc 		REQUIRE(EATTWO('=', ']'), REG_ECOLLATE);
    832   1.1       jtc 		break;
    833   1.1       jtc 	default:		/* symbol, ordinary character, or range */
    834   1.1       jtc /* xxx revision needed for multichar stuff */
    835   1.1       jtc 		start = p_b_symbol(p);
    836   1.1       jtc 		if (SEE('-') && MORE2() && PEEK2() != ']') {
    837   1.1       jtc 			/* range */
    838   1.1       jtc 			NEXT();
    839   1.1       jtc 			if (EAT('-'))
    840   1.1       jtc 				finish = '-';
    841   1.1       jtc 			else
    842   1.1       jtc 				finish = p_b_symbol(p);
    843   1.1       jtc 		} else
    844   1.1       jtc 			finish = start;
    845   1.1       jtc /* xxx what about signed chars here... */
    846   1.1       jtc 		REQUIRE(start <= finish, REG_ERANGE);
    847   1.1       jtc 		for (i = start; i <= finish; i++)
    848   1.1       jtc 			CHadd(cs, i);
    849   1.1       jtc 		break;
    850   1.1       jtc 	}
    851   1.1       jtc }
    852   1.1       jtc 
    853   1.1       jtc /*
    854   1.1       jtc  - p_b_cclass - parse a character-class name and deal with it
    855   1.9     perry  == static void p_b_cclass(struct parse *p, cset *cs);
    856   1.1       jtc  */
    857   1.1       jtc static void
    858   1.1       jtc p_b_cclass(p, cs)
    859   1.9     perry struct parse *p;
    860   1.9     perry cset *cs;
    861   1.1       jtc {
    862  1.14     lukem 	char *sp;
    863  1.10   mycroft 	const struct cclass *cp;
    864   1.9     perry 	size_t len;
    865  1.10   mycroft 	const char *u;
    866   1.9     perry 	char c;
    867   1.1       jtc 
    868  1.14     lukem 	_DIAGASSERT(p != NULL);
    869  1.14     lukem 	_DIAGASSERT(cs != NULL);
    870  1.14     lukem 
    871  1.14     lukem 	sp = p->next;
    872  1.14     lukem 
    873   1.1       jtc 	while (MORE() && isalpha(PEEK()))
    874   1.1       jtc 		NEXT();
    875   1.1       jtc 	len = p->next - sp;
    876   1.1       jtc 	for (cp = cclasses; cp->name != NULL; cp++)
    877   1.1       jtc 		if (strncmp(cp->name, sp, len) == 0 && cp->name[len] == '\0')
    878   1.1       jtc 			break;
    879   1.1       jtc 	if (cp->name == NULL) {
    880   1.1       jtc 		/* oops, didn't find it */
    881   1.1       jtc 		SETERROR(REG_ECTYPE);
    882   1.1       jtc 		return;
    883   1.1       jtc 	}
    884   1.1       jtc 
    885   1.1       jtc 	u = cp->chars;
    886   1.1       jtc 	while ((c = *u++) != '\0')
    887   1.1       jtc 		CHadd(cs, c);
    888   1.1       jtc 	for (u = cp->multis; *u != '\0'; u += strlen(u) + 1)
    889   1.2       jtc 		MCadd(p, cs, u);
    890   1.1       jtc }
    891   1.1       jtc 
    892   1.1       jtc /*
    893   1.1       jtc  - p_b_eclass - parse an equivalence-class name and deal with it
    894   1.9     perry  == static void p_b_eclass(struct parse *p, cset *cs);
    895   1.1       jtc  *
    896   1.1       jtc  * This implementation is incomplete. xxx
    897   1.1       jtc  */
    898   1.1       jtc static void
    899   1.1       jtc p_b_eclass(p, cs)
    900   1.9     perry struct parse *p;
    901   1.9     perry cset *cs;
    902   1.1       jtc {
    903   1.9     perry 	char c;
    904   1.1       jtc 
    905  1.14     lukem 	_DIAGASSERT(p != NULL);
    906  1.14     lukem 	_DIAGASSERT(cs != NULL);
    907  1.14     lukem 
    908   1.1       jtc 	c = p_b_coll_elem(p, '=');
    909   1.1       jtc 	CHadd(cs, c);
    910   1.1       jtc }
    911   1.1       jtc 
    912   1.1       jtc /*
    913   1.1       jtc  - p_b_symbol - parse a character or [..]ed multicharacter collating symbol
    914   1.9     perry  == static char p_b_symbol(struct parse *p);
    915   1.1       jtc  */
    916   1.1       jtc static char			/* value of symbol */
    917   1.1       jtc p_b_symbol(p)
    918   1.9     perry struct parse *p;
    919   1.1       jtc {
    920   1.9     perry 	char value;
    921   1.1       jtc 
    922  1.14     lukem 	_DIAGASSERT(p != NULL);
    923  1.14     lukem 
    924   1.1       jtc 	REQUIRE(MORE(), REG_EBRACK);
    925   1.1       jtc 	if (!EATTWO('[', '.'))
    926   1.1       jtc 		return(GETNEXT());
    927   1.1       jtc 
    928   1.1       jtc 	/* collating symbol */
    929   1.1       jtc 	value = p_b_coll_elem(p, '.');
    930   1.1       jtc 	REQUIRE(EATTWO('.', ']'), REG_ECOLLATE);
    931   1.1       jtc 	return(value);
    932   1.1       jtc }
    933   1.1       jtc 
    934   1.1       jtc /*
    935   1.1       jtc  - p_b_coll_elem - parse a collating-element name and look it up
    936   1.9     perry  == static char p_b_coll_elem(struct parse *p, int endc);
    937   1.1       jtc  */
    938   1.1       jtc static char			/* value of collating element */
    939   1.1       jtc p_b_coll_elem(p, endc)
    940   1.9     perry struct parse *p;
    941   1.1       jtc int endc;			/* name ended by endc,']' */
    942   1.1       jtc {
    943  1.14     lukem 	char *sp;
    944  1.10   mycroft 	const struct cname *cp;
    945  1.11  christos 	size_t len;
    946   1.1       jtc 
    947  1.14     lukem 	_DIAGASSERT(p != NULL);
    948  1.14     lukem 
    949  1.14     lukem 	sp = p->next;
    950  1.14     lukem 
    951   1.1       jtc 	while (MORE() && !SEETWO(endc, ']'))
    952   1.1       jtc 		NEXT();
    953   1.1       jtc 	if (!MORE()) {
    954   1.1       jtc 		SETERROR(REG_EBRACK);
    955   1.1       jtc 		return(0);
    956   1.1       jtc 	}
    957   1.1       jtc 	len = p->next - sp;
    958   1.1       jtc 	for (cp = cnames; cp->name != NULL; cp++)
    959   1.1       jtc 		if (strncmp(cp->name, sp, len) == 0 && cp->name[len] == '\0')
    960   1.1       jtc 			return(cp->code);	/* known name */
    961   1.1       jtc 	if (len == 1)
    962   1.1       jtc 		return(*sp);	/* single character */
    963   1.1       jtc 	SETERROR(REG_ECOLLATE);			/* neither */
    964   1.1       jtc 	return(0);
    965   1.1       jtc }
    966   1.1       jtc 
    967   1.1       jtc /*
    968   1.1       jtc  - othercase - return the case counterpart of an alphabetic
    969   1.1       jtc  == static char othercase(int ch);
    970   1.1       jtc  */
    971   1.1       jtc static char			/* if no counterpart, return ch */
    972   1.1       jtc othercase(ch)
    973   1.1       jtc int ch;
    974   1.1       jtc {
    975   1.1       jtc 	assert(isalpha(ch));
    976   1.1       jtc 	if (isupper(ch))
    977   1.1       jtc 		return(tolower(ch));
    978   1.1       jtc 	else if (islower(ch))
    979   1.1       jtc 		return(toupper(ch));
    980   1.1       jtc 	else			/* peculiar, but could happen */
    981   1.1       jtc 		return(ch);
    982   1.1       jtc }
    983   1.1       jtc 
    984   1.1       jtc /*
    985   1.1       jtc  - bothcases - emit a dualcase version of a two-case character
    986   1.9     perry  == static void bothcases(struct parse *p, int ch);
    987   1.1       jtc  *
    988   1.1       jtc  * Boy, is this implementation ever a kludge...
    989   1.1       jtc  */
    990   1.1       jtc static void
    991   1.1       jtc bothcases(p, ch)
    992   1.9     perry struct parse *p;
    993   1.1       jtc int ch;
    994   1.1       jtc {
    995  1.14     lukem 	char *oldnext;
    996  1.14     lukem 	char *oldend;
    997   1.1       jtc 	char bracket[3];
    998   1.1       jtc 
    999  1.14     lukem 	_DIAGASSERT(p != NULL);
   1000  1.14     lukem 
   1001  1.14     lukem 	oldnext = p->next;
   1002  1.14     lukem 	oldend = p->end;
   1003  1.14     lukem 
   1004   1.1       jtc 	assert(othercase(ch) != ch);	/* p_bracket() would recurse */
   1005   1.1       jtc 	p->next = bracket;
   1006   1.1       jtc 	p->end = bracket+2;
   1007   1.1       jtc 	bracket[0] = ch;
   1008   1.1       jtc 	bracket[1] = ']';
   1009   1.1       jtc 	bracket[2] = '\0';
   1010   1.1       jtc 	p_bracket(p);
   1011   1.1       jtc 	assert(p->next == bracket+2);
   1012   1.1       jtc 	p->next = oldnext;
   1013   1.1       jtc 	p->end = oldend;
   1014   1.1       jtc }
   1015   1.1       jtc 
   1016   1.1       jtc /*
   1017   1.1       jtc  - ordinary - emit an ordinary character
   1018   1.9     perry  == static void ordinary(struct parse *p, int ch);
   1019   1.1       jtc  */
   1020   1.1       jtc static void
   1021   1.1       jtc ordinary(p, ch)
   1022   1.9     perry struct parse *p;
   1023   1.9     perry int ch;
   1024   1.1       jtc {
   1025  1.14     lukem 	cat_t *cap;
   1026   1.1       jtc 
   1027  1.14     lukem 	_DIAGASSERT(p != NULL);
   1028  1.14     lukem 
   1029  1.14     lukem 	cap = p->g->categories;
   1030   1.1       jtc 	if ((p->g->cflags&REG_ICASE) && isalpha(ch) && othercase(ch) != ch)
   1031   1.1       jtc 		bothcases(p, ch);
   1032   1.1       jtc 	else {
   1033   1.1       jtc 		EMIT(OCHAR, (unsigned char)ch);
   1034   1.1       jtc 		if (cap[ch] == 0)
   1035   1.1       jtc 			cap[ch] = p->g->ncategories++;
   1036   1.1       jtc 	}
   1037   1.1       jtc }
   1038   1.1       jtc 
   1039   1.1       jtc /*
   1040   1.1       jtc  - nonnewline - emit REG_NEWLINE version of OANY
   1041   1.9     perry  == static void nonnewline(struct parse *p);
   1042   1.1       jtc  *
   1043   1.1       jtc  * Boy, is this implementation ever a kludge...
   1044   1.1       jtc  */
   1045   1.1       jtc static void
   1046   1.1       jtc nonnewline(p)
   1047   1.9     perry struct parse *p;
   1048   1.1       jtc {
   1049  1.14     lukem 	char *oldnext;
   1050  1.14     lukem 	char *oldend;
   1051   1.1       jtc 	char bracket[4];
   1052   1.1       jtc 
   1053  1.14     lukem 	_DIAGASSERT(p != NULL);
   1054  1.14     lukem 
   1055  1.14     lukem 	oldnext = p->next;
   1056  1.14     lukem 	oldend = p->end;
   1057  1.14     lukem 
   1058   1.1       jtc 	p->next = bracket;
   1059   1.1       jtc 	p->end = bracket+3;
   1060   1.1       jtc 	bracket[0] = '^';
   1061   1.1       jtc 	bracket[1] = '\n';
   1062   1.1       jtc 	bracket[2] = ']';
   1063   1.1       jtc 	bracket[3] = '\0';
   1064   1.1       jtc 	p_bracket(p);
   1065   1.1       jtc 	assert(p->next == bracket+3);
   1066   1.1       jtc 	p->next = oldnext;
   1067   1.1       jtc 	p->end = oldend;
   1068   1.1       jtc }
   1069   1.1       jtc 
   1070   1.1       jtc /*
   1071   1.1       jtc  - repeat - generate code for a bounded repetition, recursively if needed
   1072   1.9     perry  == static void repeat(struct parse *p, sopno start, int from, int to);
   1073   1.1       jtc  */
   1074   1.1       jtc static void
   1075   1.1       jtc repeat(p, start, from, to)
   1076   1.9     perry struct parse *p;
   1077   1.1       jtc sopno start;			/* operand from here to end of strip */
   1078   1.1       jtc int from;			/* repeated from this number */
   1079   1.1       jtc int to;				/* to this number of times (maybe INFINITY) */
   1080   1.1       jtc {
   1081  1.14     lukem 	sopno finish;
   1082   1.1       jtc #	define	N	2
   1083   1.1       jtc #	define	INF	3
   1084   1.1       jtc #	define	REP(f, t)	((f)*8 + (t))
   1085   1.1       jtc #	define	MAP(n)	(((n) <= 1) ? (n) : ((n) == INFINITY) ? INF : N)
   1086   1.9     perry 	sopno copy;
   1087   1.1       jtc 
   1088  1.14     lukem 	_DIAGASSERT(p != NULL);
   1089  1.14     lukem 
   1090  1.14     lukem 	finish = HERE();
   1091  1.14     lukem 
   1092   1.1       jtc 	if (p->error != 0)	/* head off possible runaway recursion */
   1093   1.1       jtc 		return;
   1094   1.1       jtc 
   1095   1.1       jtc 	assert(from <= to);
   1096   1.1       jtc 
   1097   1.1       jtc 	switch (REP(MAP(from), MAP(to))) {
   1098   1.1       jtc 	case REP(0, 0):			/* must be user doing this */
   1099   1.1       jtc 		DROP(finish-start);	/* drop the operand */
   1100   1.1       jtc 		break;
   1101   1.1       jtc 	case REP(0, 1):			/* as x{1,1}? */
   1102   1.1       jtc 	case REP(0, N):			/* as x{1,n}? */
   1103   1.1       jtc 	case REP(0, INF):		/* as x{1,}? */
   1104   1.4       jtc 		/* KLUDGE: emit y? as (y|) until subtle bug gets fixed */
   1105   1.4       jtc 		INSERT(OCH_, start);		/* offset is wrong... */
   1106   1.1       jtc 		repeat(p, start+1, 1, to);
   1107   1.4       jtc 		ASTERN(OOR1, start);
   1108   1.1       jtc 		AHEAD(start);			/* ... fix it */
   1109   1.4       jtc 		EMIT(OOR2, 0);
   1110   1.4       jtc 		AHEAD(THERE());
   1111   1.4       jtc 		ASTERN(O_CH, THERETHERE());
   1112   1.1       jtc 		break;
   1113   1.1       jtc 	case REP(1, 1):			/* trivial case */
   1114   1.1       jtc 		/* done */
   1115   1.1       jtc 		break;
   1116   1.1       jtc 	case REP(1, N):			/* as x?x{1,n-1} */
   1117   1.4       jtc 		/* KLUDGE: emit y? as (y|) until subtle bug gets fixed */
   1118   1.4       jtc 		INSERT(OCH_, start);
   1119   1.4       jtc 		ASTERN(OOR1, start);
   1120   1.4       jtc 		AHEAD(start);
   1121   1.4       jtc 		EMIT(OOR2, 0);			/* offset very wrong... */
   1122   1.4       jtc 		AHEAD(THERE());			/* ...so fix it */
   1123   1.4       jtc 		ASTERN(O_CH, THERETHERE());
   1124   1.1       jtc 		copy = dupl(p, start+1, finish+1);
   1125   1.4       jtc 		assert(copy == finish+4);
   1126   1.1       jtc 		repeat(p, copy, 1, to-1);
   1127   1.1       jtc 		break;
   1128   1.1       jtc 	case REP(1, INF):		/* as x+ */
   1129   1.1       jtc 		INSERT(OPLUS_, start);
   1130   1.1       jtc 		ASTERN(O_PLUS, start);
   1131   1.1       jtc 		break;
   1132   1.1       jtc 	case REP(N, N):			/* as xx{m-1,n-1} */
   1133   1.1       jtc 		copy = dupl(p, start, finish);
   1134   1.1       jtc 		repeat(p, copy, from-1, to-1);
   1135   1.1       jtc 		break;
   1136   1.1       jtc 	case REP(N, INF):		/* as xx{n-1,INF} */
   1137   1.1       jtc 		copy = dupl(p, start, finish);
   1138   1.1       jtc 		repeat(p, copy, from-1, to);
   1139   1.1       jtc 		break;
   1140   1.1       jtc 	default:			/* "can't happen" */
   1141   1.1       jtc 		SETERROR(REG_ASSERT);	/* just in case */
   1142   1.1       jtc 		break;
   1143   1.1       jtc 	}
   1144   1.1       jtc }
   1145   1.1       jtc 
   1146   1.1       jtc /*
   1147   1.1       jtc  - seterr - set an error condition
   1148   1.9     perry  == static int seterr(struct parse *p, int e);
   1149   1.1       jtc  */
   1150   1.1       jtc static int			/* useless but makes type checking happy */
   1151   1.1       jtc seterr(p, e)
   1152   1.9     perry struct parse *p;
   1153   1.1       jtc int e;
   1154   1.1       jtc {
   1155  1.14     lukem 
   1156  1.14     lukem 	_DIAGASSERT(p != NULL);
   1157  1.14     lukem 
   1158   1.1       jtc 	if (p->error == 0)	/* keep earliest error condition */
   1159   1.1       jtc 		p->error = e;
   1160   1.1       jtc 	p->next = nuls;		/* try to bring things to a halt */
   1161   1.1       jtc 	p->end = nuls;
   1162   1.1       jtc 	return(0);		/* make the return value well-defined */
   1163   1.1       jtc }
   1164   1.1       jtc 
   1165   1.1       jtc /*
   1166   1.1       jtc  - allocset - allocate a set of characters for []
   1167   1.9     perry  == static cset *allocset(struct parse *p);
   1168   1.1       jtc  */
   1169   1.1       jtc static cset *
   1170   1.1       jtc allocset(p)
   1171   1.9     perry struct parse *p;
   1172   1.1       jtc {
   1173  1.14     lukem 	int no;
   1174   1.9     perry 	size_t nc;
   1175   1.9     perry 	size_t nbytes;
   1176   1.9     perry 	cset *cs;
   1177  1.14     lukem 	size_t css;
   1178   1.9     perry 	int i;
   1179   1.1       jtc 
   1180  1.14     lukem 	_DIAGASSERT(p != NULL);
   1181  1.14     lukem 
   1182  1.14     lukem 	no = p->g->ncsets++;
   1183  1.14     lukem 	css = (size_t)p->g->csetsize;
   1184   1.1       jtc 	if (no >= p->ncsalloc) {	/* need another column of space */
   1185   1.1       jtc 		p->ncsalloc += CHAR_BIT;
   1186   1.1       jtc 		nc = p->ncsalloc;
   1187   1.1       jtc 		assert(nc % CHAR_BIT == 0);
   1188   1.1       jtc 		nbytes = nc / CHAR_BIT * css;
   1189   1.1       jtc 		if (p->g->sets == NULL)
   1190  1.11  christos 			p->g->sets = malloc(nc * sizeof(cset));
   1191   1.1       jtc 		else
   1192  1.11  christos 			p->g->sets = realloc(p->g->sets, nc * sizeof(cset));
   1193   1.1       jtc 		if (p->g->setbits == NULL)
   1194  1.11  christos 			p->g->setbits = malloc(nbytes);
   1195   1.2       jtc 		else {
   1196  1.11  christos 			p->g->setbits = realloc(p->g->setbits, nbytes);
   1197   1.2       jtc 			/* xxx this isn't right if setbits is now NULL */
   1198   1.2       jtc 			for (i = 0; i < no; i++)
   1199   1.2       jtc 				p->g->sets[i].ptr = p->g->setbits + css*(i/CHAR_BIT);
   1200   1.2       jtc 		}
   1201   1.1       jtc 		if (p->g->sets != NULL && p->g->setbits != NULL)
   1202   1.1       jtc 			(void) memset((char *)p->g->setbits + (nbytes - css),
   1203   1.1       jtc 								0, css);
   1204   1.1       jtc 		else {
   1205   1.1       jtc 			no = 0;
   1206   1.1       jtc 			SETERROR(REG_ESPACE);
   1207   1.1       jtc 			/* caller's responsibility not to do set ops */
   1208   1.1       jtc 		}
   1209   1.1       jtc 	}
   1210   1.1       jtc 
   1211   1.1       jtc 	assert(p->g->sets != NULL);	/* xxx */
   1212   1.1       jtc 	cs = &p->g->sets[no];
   1213   1.1       jtc 	cs->ptr = p->g->setbits + css*((no)/CHAR_BIT);
   1214   1.1       jtc 	cs->mask = 1 << ((no) % CHAR_BIT);
   1215   1.1       jtc 	cs->hash = 0;
   1216   1.1       jtc 	cs->smultis = 0;
   1217   1.1       jtc 	cs->multis = NULL;
   1218   1.1       jtc 
   1219   1.1       jtc 	return(cs);
   1220   1.1       jtc }
   1221   1.1       jtc 
   1222   1.1       jtc /*
   1223   1.1       jtc  - freeset - free a now-unused set
   1224   1.9     perry  == static void freeset(struct parse *p, cset *cs);
   1225   1.1       jtc  */
   1226   1.1       jtc static void
   1227   1.1       jtc freeset(p, cs)
   1228   1.9     perry struct parse *p;
   1229   1.9     perry cset *cs;
   1230   1.1       jtc {
   1231   1.9     perry 	int i;
   1232  1.14     lukem 	cset *top;
   1233  1.14     lukem 	size_t css;
   1234  1.14     lukem 
   1235  1.14     lukem 	_DIAGASSERT(p != NULL);
   1236  1.14     lukem 	_DIAGASSERT(cs != NULL);
   1237  1.14     lukem 
   1238  1.14     lukem 	top = &p->g->sets[p->g->ncsets];
   1239  1.14     lukem 	css = (size_t)p->g->csetsize;
   1240   1.1       jtc 
   1241   1.1       jtc 	for (i = 0; i < css; i++)
   1242   1.1       jtc 		CHsub(cs, i);
   1243   1.1       jtc 	if (cs == top-1)	/* recover only the easy case */
   1244   1.1       jtc 		p->g->ncsets--;
   1245   1.1       jtc }
   1246   1.1       jtc 
   1247   1.1       jtc /*
   1248   1.1       jtc  - freezeset - final processing on a set of characters
   1249   1.9     perry  == static int freezeset(struct parse *p, cset *cs);
   1250   1.1       jtc  *
   1251   1.1       jtc  * The main task here is merging identical sets.  This is usually a waste
   1252   1.1       jtc  * of time (although the hash code minimizes the overhead), but can win
   1253   1.1       jtc  * big if REG_ICASE is being used.  REG_ICASE, by the way, is why the hash
   1254   1.1       jtc  * is done using addition rather than xor -- all ASCII [aA] sets xor to
   1255   1.1       jtc  * the same value!
   1256   1.1       jtc  */
   1257   1.1       jtc static int			/* set number */
   1258   1.1       jtc freezeset(p, cs)
   1259   1.9     perry struct parse *p;
   1260   1.9     perry cset *cs;
   1261   1.1       jtc {
   1262  1.14     lukem 	uch h;
   1263   1.9     perry 	int i;
   1264  1.14     lukem 	cset *top;
   1265   1.9     perry 	cset *cs2;
   1266  1.14     lukem 	size_t css;
   1267  1.14     lukem 
   1268  1.14     lukem 	_DIAGASSERT(p != NULL);
   1269  1.14     lukem 	_DIAGASSERT(cs != NULL);
   1270  1.14     lukem 
   1271  1.14     lukem 	h = cs->hash;
   1272  1.14     lukem 	top = &p->g->sets[p->g->ncsets];
   1273  1.14     lukem 	css = (size_t)p->g->csetsize;
   1274   1.1       jtc 
   1275   1.1       jtc 	/* look for an earlier one which is the same */
   1276   1.1       jtc 	for (cs2 = &p->g->sets[0]; cs2 < top; cs2++)
   1277   1.1       jtc 		if (cs2->hash == h && cs2 != cs) {
   1278   1.1       jtc 			/* maybe */
   1279   1.1       jtc 			for (i = 0; i < css; i++)
   1280   1.1       jtc 				if (!!CHIN(cs2, i) != !!CHIN(cs, i))
   1281   1.1       jtc 					break;		/* no */
   1282   1.1       jtc 			if (i == css)
   1283   1.1       jtc 				break;			/* yes */
   1284   1.1       jtc 		}
   1285   1.1       jtc 
   1286   1.1       jtc 	if (cs2 < top) {	/* found one */
   1287   1.1       jtc 		freeset(p, cs);
   1288   1.1       jtc 		cs = cs2;
   1289   1.1       jtc 	}
   1290   1.1       jtc 
   1291   1.1       jtc 	return((int)(cs - p->g->sets));
   1292   1.1       jtc }
   1293   1.1       jtc 
   1294   1.1       jtc /*
   1295   1.1       jtc  - firstch - return first character in a set (which must have at least one)
   1296   1.9     perry  == static int firstch(struct parse *p, cset *cs);
   1297   1.1       jtc  */
   1298   1.1       jtc static int			/* character; there is no "none" value */
   1299   1.1       jtc firstch(p, cs)
   1300   1.9     perry struct parse *p;
   1301   1.9     perry cset *cs;
   1302   1.1       jtc {
   1303   1.9     perry 	int i;
   1304  1.14     lukem 	size_t css;
   1305  1.14     lukem 
   1306  1.14     lukem 	_DIAGASSERT(p != NULL);
   1307  1.14     lukem 	_DIAGASSERT(cs != NULL);
   1308  1.14     lukem 
   1309  1.14     lukem 	css = (size_t)p->g->csetsize;
   1310   1.1       jtc 
   1311   1.1       jtc 	for (i = 0; i < css; i++)
   1312   1.1       jtc 		if (CHIN(cs, i))
   1313   1.1       jtc 			return((char)i);
   1314   1.1       jtc 	assert(never);
   1315   1.1       jtc 	return(0);		/* arbitrary */
   1316   1.1       jtc }
   1317   1.1       jtc 
   1318   1.1       jtc /*
   1319   1.1       jtc  - nch - number of characters in a set
   1320   1.9     perry  == static int nch(struct parse *p, cset *cs);
   1321   1.1       jtc  */
   1322   1.1       jtc static int
   1323   1.1       jtc nch(p, cs)
   1324   1.9     perry struct parse *p;
   1325   1.9     perry cset *cs;
   1326   1.1       jtc {
   1327   1.9     perry 	int i;
   1328  1.14     lukem 	size_t css;
   1329   1.9     perry 	int n = 0;
   1330   1.1       jtc 
   1331  1.14     lukem 	_DIAGASSERT(p != NULL);
   1332  1.14     lukem 	_DIAGASSERT(cs != NULL);
   1333  1.14     lukem 
   1334  1.14     lukem 	css = (size_t)p->g->csetsize;
   1335  1.14     lukem 
   1336   1.1       jtc 	for (i = 0; i < css; i++)
   1337   1.1       jtc 		if (CHIN(cs, i))
   1338   1.1       jtc 			n++;
   1339   1.1       jtc 	return(n);
   1340   1.1       jtc }
   1341   1.1       jtc 
   1342   1.1       jtc /*
   1343   1.1       jtc  - mcadd - add a collating element to a cset
   1344   1.9     perry  == static void mcadd(struct parse *p, cset *cs, \
   1345   1.9     perry  ==	char *cp);
   1346   1.1       jtc  */
   1347   1.1       jtc static void
   1348   1.1       jtc mcadd(p, cs, cp)
   1349   1.9     perry struct parse *p;
   1350   1.9     perry cset *cs;
   1351  1.10   mycroft const char *cp;
   1352   1.1       jtc {
   1353  1.14     lukem 	size_t oldend;
   1354  1.14     lukem 
   1355  1.14     lukem 	_DIAGASSERT(p != NULL);
   1356  1.14     lukem 	_DIAGASSERT(cs != NULL);
   1357  1.14     lukem 	_DIAGASSERT(cp != NULL);
   1358  1.14     lukem 
   1359  1.14     lukem 	oldend = cs->smultis;
   1360   1.1       jtc 
   1361   1.1       jtc 	cs->smultis += strlen(cp) + 1;
   1362   1.1       jtc 	if (cs->multis == NULL)
   1363   1.1       jtc 		cs->multis = malloc(cs->smultis);
   1364   1.1       jtc 	else
   1365   1.1       jtc 		cs->multis = realloc(cs->multis, cs->smultis);
   1366   1.1       jtc 	if (cs->multis == NULL) {
   1367   1.1       jtc 		SETERROR(REG_ESPACE);
   1368   1.1       jtc 		return;
   1369   1.1       jtc 	}
   1370   1.1       jtc 
   1371   1.1       jtc 	(void) strcpy(cs->multis + oldend - 1, cp);
   1372   1.1       jtc 	cs->multis[cs->smultis - 1] = '\0';
   1373   1.1       jtc }
   1374   1.1       jtc 
   1375   1.7  christos #if 0
   1376   1.1       jtc /*
   1377   1.1       jtc  - mcsub - subtract a collating element from a cset
   1378   1.9     perry  == static void mcsub(cset *cs, char *cp);
   1379   1.1       jtc  */
   1380   1.1       jtc static void
   1381   1.1       jtc mcsub(cs, cp)
   1382   1.9     perry cset *cs;
   1383   1.9     perry char *cp;
   1384   1.1       jtc {
   1385  1.14     lukem 	char *fp;
   1386  1.14     lukem 	size_t len;
   1387  1.14     lukem 
   1388  1.14     lukem 	_DIAGASSERT(cs != NULL);
   1389  1.14     lukem 	_DIAGASSERT(cp != NULL);
   1390  1.14     lukem 
   1391  1.14     lukem 	fp = mcfind(cs, cp);
   1392  1.14     lukem 	len = strlen(fp);
   1393   1.1       jtc 
   1394   1.1       jtc 	assert(fp != NULL);
   1395   1.1       jtc 	(void) memmove(fp, fp + len + 1,
   1396   1.1       jtc 				cs->smultis - (fp + len + 1 - cs->multis));
   1397   1.1       jtc 	cs->smultis -= len;
   1398   1.1       jtc 
   1399   1.1       jtc 	if (cs->smultis == 0) {
   1400   1.1       jtc 		free(cs->multis);
   1401   1.1       jtc 		cs->multis = NULL;
   1402   1.1       jtc 		return;
   1403   1.1       jtc 	}
   1404   1.1       jtc 
   1405   1.1       jtc 	cs->multis = realloc(cs->multis, cs->smultis);
   1406   1.1       jtc 	assert(cs->multis != NULL);
   1407   1.1       jtc }
   1408   1.1       jtc 
   1409   1.1       jtc /*
   1410   1.1       jtc  - mcin - is a collating element in a cset?
   1411   1.9     perry  == static int mcin(cset *cs, char *cp);
   1412   1.1       jtc  */
   1413   1.1       jtc static int
   1414   1.1       jtc mcin(cs, cp)
   1415   1.9     perry cset *cs;
   1416   1.9     perry char *cp;
   1417   1.1       jtc {
   1418  1.14     lukem 
   1419  1.14     lukem 	_DIAGASSERT(cs != NULL);
   1420  1.14     lukem 	_DIAGASSERT(cp != NULL);
   1421  1.14     lukem 
   1422   1.1       jtc 	return(mcfind(cs, cp) != NULL);
   1423   1.1       jtc }
   1424   1.1       jtc 
   1425   1.1       jtc /*
   1426   1.1       jtc  - mcfind - find a collating element in a cset
   1427   1.9     perry  == static char *mcfind(cset *cs, char *cp);
   1428   1.1       jtc  */
   1429   1.1       jtc static char *
   1430   1.1       jtc mcfind(cs, cp)
   1431   1.9     perry cset *cs;
   1432   1.9     perry char *cp;
   1433   1.1       jtc {
   1434   1.9     perry 	char *p;
   1435   1.1       jtc 
   1436  1.14     lukem 	_DIAGASSERT(cs != NULL);
   1437  1.14     lukem 	_DIAGASSERT(cp != NULL);
   1438  1.14     lukem 
   1439   1.1       jtc 	if (cs->multis == NULL)
   1440   1.1       jtc 		return(NULL);
   1441   1.1       jtc 	for (p = cs->multis; *p != '\0'; p += strlen(p) + 1)
   1442   1.1       jtc 		if (strcmp(cp, p) == 0)
   1443   1.1       jtc 			return(p);
   1444   1.1       jtc 	return(NULL);
   1445   1.1       jtc }
   1446   1.7  christos #endif
   1447   1.1       jtc 
   1448   1.1       jtc /*
   1449   1.1       jtc  - mcinvert - invert the list of collating elements in a cset
   1450   1.9     perry  == static void mcinvert(struct parse *p, cset *cs);
   1451   1.1       jtc  *
   1452   1.1       jtc  * This would have to know the set of possibilities.  Implementation
   1453   1.1       jtc  * is deferred.
   1454   1.1       jtc  */
   1455  1.11  christos /* ARGSUSED */
   1456   1.1       jtc static void
   1457   1.2       jtc mcinvert(p, cs)
   1458   1.9     perry struct parse *p;
   1459   1.9     perry cset *cs;
   1460   1.1       jtc {
   1461  1.14     lukem 
   1462  1.14     lukem 	_DIAGASSERT(p != NULL);
   1463  1.14     lukem 	_DIAGASSERT(cs != NULL);
   1464  1.14     lukem 
   1465   1.1       jtc 	assert(cs->multis == NULL);	/* xxx */
   1466   1.1       jtc }
   1467   1.1       jtc 
   1468   1.1       jtc /*
   1469   1.1       jtc  - mccase - add case counterparts of the list of collating elements in a cset
   1470   1.9     perry  == static void mccase(struct parse *p, cset *cs);
   1471   1.1       jtc  *
   1472   1.1       jtc  * This would have to know the set of possibilities.  Implementation
   1473   1.1       jtc  * is deferred.
   1474   1.1       jtc  */
   1475  1.11  christos /* ARGSUSED */
   1476   1.1       jtc static void
   1477   1.2       jtc mccase(p, cs)
   1478   1.9     perry struct parse *p;
   1479   1.9     perry cset *cs;
   1480   1.1       jtc {
   1481  1.14     lukem 
   1482  1.14     lukem 	_DIAGASSERT(p != NULL);
   1483  1.14     lukem 	_DIAGASSERT(cs != NULL);
   1484  1.14     lukem 
   1485   1.1       jtc 	assert(cs->multis == NULL);	/* xxx */
   1486   1.1       jtc }
   1487   1.1       jtc 
   1488   1.1       jtc /*
   1489   1.1       jtc  - isinsets - is this character in any sets?
   1490   1.9     perry  == static int isinsets(struct re_guts *g, int c);
   1491   1.1       jtc  */
   1492   1.1       jtc static int			/* predicate */
   1493   1.1       jtc isinsets(g, c)
   1494   1.9     perry struct re_guts *g;
   1495   1.1       jtc int c;
   1496   1.1       jtc {
   1497   1.9     perry 	uch *col;
   1498   1.9     perry 	int i;
   1499  1.14     lukem 	int ncols;
   1500   1.9     perry 	unsigned uc = (unsigned char)c;
   1501   1.1       jtc 
   1502  1.14     lukem 	_DIAGASSERT(g != NULL);
   1503  1.14     lukem 
   1504  1.14     lukem 	ncols = (g->ncsets+(CHAR_BIT-1)) / CHAR_BIT;
   1505  1.14     lukem 
   1506   1.1       jtc 	for (i = 0, col = g->setbits; i < ncols; i++, col += g->csetsize)
   1507   1.1       jtc 		if (col[uc] != 0)
   1508   1.1       jtc 			return(1);
   1509   1.1       jtc 	return(0);
   1510   1.1       jtc }
   1511   1.1       jtc 
   1512   1.1       jtc /*
   1513   1.1       jtc  - samesets - are these two characters in exactly the same sets?
   1514   1.9     perry  == static int samesets(struct re_guts *g, int c1, int c2);
   1515   1.1       jtc  */
   1516   1.1       jtc static int			/* predicate */
   1517   1.1       jtc samesets(g, c1, c2)
   1518   1.9     perry struct re_guts *g;
   1519   1.1       jtc int c1;
   1520   1.1       jtc int c2;
   1521   1.1       jtc {
   1522   1.9     perry 	uch *col;
   1523   1.9     perry 	int i;
   1524  1.14     lukem 	int ncols;
   1525   1.9     perry 	unsigned uc1 = (unsigned char)c1;
   1526   1.9     perry 	unsigned uc2 = (unsigned char)c2;
   1527   1.1       jtc 
   1528  1.14     lukem 	_DIAGASSERT(g != NULL);
   1529  1.14     lukem 
   1530  1.14     lukem 	ncols = (g->ncsets+(CHAR_BIT-1)) / CHAR_BIT;
   1531  1.14     lukem 
   1532   1.1       jtc 	for (i = 0, col = g->setbits; i < ncols; i++, col += g->csetsize)
   1533   1.1       jtc 		if (col[uc1] != col[uc2])
   1534   1.1       jtc 			return(0);
   1535   1.1       jtc 	return(1);
   1536   1.1       jtc }
   1537   1.1       jtc 
   1538   1.1       jtc /*
   1539   1.1       jtc  - categorize - sort out character categories
   1540   1.9     perry  == static void categorize(struct parse *p, struct re_guts *g);
   1541   1.1       jtc  */
   1542   1.1       jtc static void
   1543   1.1       jtc categorize(p, g)
   1544   1.1       jtc struct parse *p;
   1545   1.9     perry struct re_guts *g;
   1546   1.1       jtc {
   1547  1.14     lukem 	cat_t *cats;
   1548   1.9     perry 	int c;
   1549   1.9     perry 	int c2;
   1550   1.9     perry 	cat_t cat;
   1551   1.1       jtc 
   1552  1.14     lukem 	_DIAGASSERT(p != NULL);
   1553  1.14     lukem 	_DIAGASSERT(g != NULL);
   1554  1.14     lukem 
   1555  1.14     lukem 	cats = g->categories;
   1556  1.14     lukem 
   1557   1.1       jtc 	/* avoid making error situations worse */
   1558   1.1       jtc 	if (p->error != 0)
   1559   1.1       jtc 		return;
   1560   1.1       jtc 
   1561   1.1       jtc 	for (c = CHAR_MIN; c <= CHAR_MAX; c++)
   1562   1.1       jtc 		if (cats[c] == 0 && isinsets(g, c)) {
   1563   1.1       jtc 			cat = g->ncategories++;
   1564   1.1       jtc 			cats[c] = cat;
   1565   1.1       jtc 			for (c2 = c+1; c2 <= CHAR_MAX; c2++)
   1566   1.1       jtc 				if (cats[c2] == 0 && samesets(g, c, c2))
   1567   1.1       jtc 					cats[c2] = cat;
   1568   1.1       jtc 		}
   1569   1.1       jtc }
   1570   1.1       jtc 
   1571   1.1       jtc /*
   1572   1.1       jtc  - dupl - emit a duplicate of a bunch of sops
   1573   1.9     perry  == static sopno dupl(struct parse *p, sopno start, sopno finish);
   1574   1.1       jtc  */
   1575   1.1       jtc static sopno			/* start of duplicate */
   1576   1.1       jtc dupl(p, start, finish)
   1577   1.9     perry struct parse *p;
   1578   1.1       jtc sopno start;			/* from here */
   1579   1.1       jtc sopno finish;			/* to this less one */
   1580   1.1       jtc {
   1581  1.14     lukem 	sopno ret;
   1582   1.9     perry 	sopno len = finish - start;
   1583   1.1       jtc 
   1584  1.14     lukem 	_DIAGASSERT(p != NULL);
   1585  1.14     lukem 
   1586  1.14     lukem 	ret = HERE();
   1587  1.14     lukem 
   1588   1.1       jtc 	assert(finish >= start);
   1589   1.1       jtc 	if (len == 0)
   1590   1.1       jtc 		return(ret);
   1591   1.1       jtc 	enlarge(p, p->ssize + len);	/* this many unexpected additions */
   1592   1.1       jtc 	assert(p->ssize >= p->slen + len);
   1593  1.12  drochner 	(void)memcpy(p->strip + p->slen, p->strip + start,
   1594  1.11  christos 	    (size_t)len * sizeof(sop));
   1595   1.1       jtc 	p->slen += len;
   1596   1.1       jtc 	return(ret);
   1597   1.1       jtc }
   1598   1.1       jtc 
   1599   1.1       jtc /*
   1600   1.1       jtc  - doemit - emit a strip operator
   1601   1.9     perry  == static void doemit(struct parse *p, sop op, size_t opnd);
   1602   1.1       jtc  *
   1603   1.1       jtc  * It might seem better to implement this as a macro with a function as
   1604   1.1       jtc  * hard-case backup, but it's just too big and messy unless there are
   1605   1.1       jtc  * some changes to the data structures.  Maybe later.
   1606   1.1       jtc  */
   1607   1.1       jtc static void
   1608   1.1       jtc doemit(p, op, opnd)
   1609   1.9     perry struct parse *p;
   1610   1.1       jtc sop op;
   1611  1.12  drochner sopno opnd;
   1612   1.1       jtc {
   1613  1.14     lukem 
   1614  1.14     lukem 	_DIAGASSERT(p != NULL);
   1615  1.14     lukem 
   1616   1.1       jtc 	/* avoid making error situations worse */
   1617   1.1       jtc 	if (p->error != 0)
   1618   1.1       jtc 		return;
   1619   1.1       jtc 
   1620   1.1       jtc 	/* deal with oversize operands ("can't happen", more or less) */
   1621   1.1       jtc 	assert(opnd < 1<<OPSHIFT);
   1622   1.1       jtc 
   1623   1.1       jtc 	/* deal with undersized strip */
   1624   1.1       jtc 	if (p->slen >= p->ssize)
   1625   1.1       jtc 		enlarge(p, (p->ssize+1) / 2 * 3);	/* +50% */
   1626   1.1       jtc 	assert(p->slen < p->ssize);
   1627   1.1       jtc 
   1628   1.1       jtc 	/* finally, it's all reduced to the easy case */
   1629   1.1       jtc 	p->strip[p->slen++] = SOP(op, opnd);
   1630   1.1       jtc }
   1631   1.1       jtc 
   1632   1.1       jtc /*
   1633   1.1       jtc  - doinsert - insert a sop into the strip
   1634   1.9     perry  == static void doinsert(struct parse *p, sop op, size_t opnd, sopno pos);
   1635   1.1       jtc  */
   1636   1.1       jtc static void
   1637   1.1       jtc doinsert(p, op, opnd, pos)
   1638   1.9     perry struct parse *p;
   1639   1.1       jtc sop op;
   1640  1.12  drochner sopno opnd;
   1641   1.1       jtc sopno pos;
   1642   1.1       jtc {
   1643   1.9     perry 	sopno sn;
   1644   1.9     perry 	sop s;
   1645   1.9     perry 	int i;
   1646   1.1       jtc 
   1647  1.14     lukem 	_DIAGASSERT(p != NULL);
   1648  1.14     lukem 
   1649   1.1       jtc 	/* avoid making error situations worse */
   1650   1.1       jtc 	if (p->error != 0)
   1651   1.1       jtc 		return;
   1652   1.1       jtc 
   1653   1.1       jtc 	sn = HERE();
   1654   1.1       jtc 	EMIT(op, opnd);		/* do checks, ensure space */
   1655   1.1       jtc 	assert(HERE() == sn+1);
   1656   1.1       jtc 	s = p->strip[sn];
   1657   1.1       jtc 
   1658   1.1       jtc 	/* adjust paren pointers */
   1659   1.1       jtc 	assert(pos > 0);
   1660   1.1       jtc 	for (i = 1; i < NPAREN; i++) {
   1661   1.1       jtc 		if (p->pbegin[i] >= pos) {
   1662   1.1       jtc 			p->pbegin[i]++;
   1663   1.1       jtc 		}
   1664   1.1       jtc 		if (p->pend[i] >= pos) {
   1665   1.1       jtc 			p->pend[i]++;
   1666   1.1       jtc 		}
   1667   1.1       jtc 	}
   1668   1.1       jtc 
   1669  1.11  christos 	memmove(&p->strip[pos+1], &p->strip[pos], (HERE()-pos-1)*sizeof(sop));
   1670   1.1       jtc 	p->strip[pos] = s;
   1671   1.1       jtc }
   1672   1.1       jtc 
   1673   1.1       jtc /*
   1674   1.1       jtc  - dofwd - complete a forward reference
   1675   1.9     perry  == static void dofwd(struct parse *p, sopno pos, sop value);
   1676   1.1       jtc  */
   1677   1.1       jtc static void
   1678   1.1       jtc dofwd(p, pos, value)
   1679   1.9     perry struct parse *p;
   1680   1.9     perry sopno pos;
   1681  1.12  drochner sopno value;
   1682   1.1       jtc {
   1683  1.14     lukem 
   1684  1.14     lukem 	_DIAGASSERT(p != NULL);
   1685  1.14     lukem 
   1686   1.1       jtc 	/* avoid making error situations worse */
   1687   1.1       jtc 	if (p->error != 0)
   1688   1.1       jtc 		return;
   1689   1.1       jtc 
   1690   1.1       jtc 	assert(value < 1<<OPSHIFT);
   1691   1.1       jtc 	p->strip[pos] = OP(p->strip[pos]) | value;
   1692   1.1       jtc }
   1693   1.1       jtc 
   1694   1.1       jtc /*
   1695   1.1       jtc  - enlarge - enlarge the strip
   1696   1.9     perry  == static void enlarge(struct parse *p, sopno size);
   1697   1.1       jtc  */
   1698   1.1       jtc static void
   1699   1.1       jtc enlarge(p, size)
   1700   1.9     perry struct parse *p;
   1701   1.9     perry sopno size;
   1702   1.1       jtc {
   1703   1.9     perry 	sop *sp;
   1704   1.1       jtc 
   1705  1.14     lukem 	_DIAGASSERT(p != NULL);
   1706  1.14     lukem 
   1707   1.1       jtc 	if (p->ssize >= size)
   1708   1.1       jtc 		return;
   1709   1.1       jtc 
   1710   1.1       jtc 	sp = (sop *)realloc(p->strip, size*sizeof(sop));
   1711   1.1       jtc 	if (sp == NULL) {
   1712   1.1       jtc 		SETERROR(REG_ESPACE);
   1713   1.1       jtc 		return;
   1714   1.1       jtc 	}
   1715   1.1       jtc 	p->strip = sp;
   1716   1.1       jtc 	p->ssize = size;
   1717   1.1       jtc }
   1718   1.1       jtc 
   1719   1.1       jtc /*
   1720   1.1       jtc  - stripsnug - compact the strip
   1721   1.9     perry  == static void stripsnug(struct parse *p, struct re_guts *g);
   1722   1.1       jtc  */
   1723   1.1       jtc static void
   1724   1.1       jtc stripsnug(p, g)
   1725   1.9     perry struct parse *p;
   1726   1.9     perry struct re_guts *g;
   1727   1.1       jtc {
   1728  1.14     lukem 
   1729  1.14     lukem 	_DIAGASSERT(p != NULL);
   1730  1.14     lukem 	_DIAGASSERT(g != NULL);
   1731  1.14     lukem 
   1732   1.1       jtc 	g->nstates = p->slen;
   1733  1.11  christos 	g->strip = realloc(p->strip, p->slen * sizeof(sop));
   1734   1.1       jtc 	if (g->strip == NULL) {
   1735   1.1       jtc 		SETERROR(REG_ESPACE);
   1736   1.1       jtc 		g->strip = p->strip;
   1737   1.1       jtc 	}
   1738   1.1       jtc }
   1739   1.1       jtc 
   1740   1.1       jtc /*
   1741   1.1       jtc  - findmust - fill in must and mlen with longest mandatory literal string
   1742   1.9     perry  == static void findmust(struct parse *p, struct re_guts *g);
   1743   1.1       jtc  *
   1744   1.1       jtc  * This algorithm could do fancy things like analyzing the operands of |
   1745   1.1       jtc  * for common subsequences.  Someday.  This code is simple and finds most
   1746   1.1       jtc  * of the interesting cases.
   1747   1.1       jtc  *
   1748   1.1       jtc  * Note that must and mlen got initialized during setup.
   1749   1.1       jtc  */
   1750   1.1       jtc static void
   1751   1.1       jtc findmust(p, g)
   1752   1.1       jtc struct parse *p;
   1753   1.9     perry struct re_guts *g;
   1754   1.1       jtc {
   1755   1.9     perry 	sop *scan;
   1756   1.7  christos 	sop *start = NULL;
   1757   1.9     perry 	sop *newstart = NULL;
   1758   1.9     perry 	sopno newlen;
   1759   1.9     perry 	sop s;
   1760   1.9     perry 	char *cp;
   1761   1.9     perry 	sopno i;
   1762   1.1       jtc 
   1763  1.14     lukem 	_DIAGASSERT(p != NULL);
   1764  1.14     lukem 	_DIAGASSERT(g != NULL);
   1765  1.14     lukem 
   1766   1.1       jtc 	/* avoid making error situations worse */
   1767   1.1       jtc 	if (p->error != 0)
   1768   1.1       jtc 		return;
   1769   1.1       jtc 
   1770   1.1       jtc 	/* find the longest OCHAR sequence in strip */
   1771   1.1       jtc 	newlen = 0;
   1772   1.1       jtc 	scan = g->strip + 1;
   1773   1.1       jtc 	do {
   1774   1.1       jtc 		s = *scan++;
   1775   1.1       jtc 		switch (OP(s)) {
   1776   1.1       jtc 		case OCHAR:		/* sequence member */
   1777   1.1       jtc 			if (newlen == 0)		/* new sequence */
   1778   1.1       jtc 				newstart = scan - 1;
   1779   1.1       jtc 			newlen++;
   1780   1.1       jtc 			break;
   1781   1.1       jtc 		case OPLUS_:		/* things that don't break one */
   1782   1.1       jtc 		case OLPAREN:
   1783   1.1       jtc 		case ORPAREN:
   1784   1.1       jtc 			break;
   1785   1.1       jtc 		case OQUEST_:		/* things that must be skipped */
   1786   1.1       jtc 		case OCH_:
   1787   1.1       jtc 			scan--;
   1788   1.1       jtc 			do {
   1789   1.1       jtc 				scan += OPND(s);
   1790   1.1       jtc 				s = *scan;
   1791   1.1       jtc 				/* assert() interferes w debug printouts */
   1792   1.1       jtc 				if (OP(s) != O_QUEST && OP(s) != O_CH &&
   1793   1.1       jtc 							OP(s) != OOR2) {
   1794   1.1       jtc 					g->iflags |= BAD;
   1795   1.1       jtc 					return;
   1796   1.1       jtc 				}
   1797   1.1       jtc 			} while (OP(s) != O_QUEST && OP(s) != O_CH);
   1798  1.11  christos 			/* FALLTHROUGH */
   1799   1.1       jtc 		default:		/* things that break a sequence */
   1800   1.1       jtc 			if (newlen > g->mlen) {		/* ends one */
   1801   1.1       jtc 				start = newstart;
   1802   1.1       jtc 				g->mlen = newlen;
   1803   1.1       jtc 			}
   1804   1.1       jtc 			newlen = 0;
   1805   1.1       jtc 			break;
   1806   1.1       jtc 		}
   1807   1.1       jtc 	} while (OP(s) != OEND);
   1808   1.1       jtc 
   1809   1.1       jtc 	if (g->mlen == 0)		/* there isn't one */
   1810   1.1       jtc 		return;
   1811   1.1       jtc 
   1812   1.1       jtc 	/* turn it into a character string */
   1813   1.1       jtc 	g->must = malloc((size_t)g->mlen + 1);
   1814   1.1       jtc 	if (g->must == NULL) {		/* argh; just forget it */
   1815   1.1       jtc 		g->mlen = 0;
   1816   1.1       jtc 		return;
   1817   1.1       jtc 	}
   1818   1.1       jtc 	cp = g->must;
   1819   1.1       jtc 	scan = start;
   1820   1.1       jtc 	for (i = g->mlen; i > 0; i--) {
   1821   1.1       jtc 		while (OP(s = *scan++) != OCHAR)
   1822   1.1       jtc 			continue;
   1823   1.2       jtc 		assert(cp < g->must + g->mlen);
   1824   1.1       jtc 		*cp++ = (char)OPND(s);
   1825   1.1       jtc 	}
   1826   1.2       jtc 	assert(cp == g->must + g->mlen);
   1827   1.1       jtc 	*cp++ = '\0';		/* just on general principles */
   1828   1.1       jtc }
   1829   1.1       jtc 
   1830   1.1       jtc /*
   1831   1.1       jtc  - pluscount - count + nesting
   1832   1.9     perry  == static sopno pluscount(struct parse *p, struct re_guts *g);
   1833   1.1       jtc  */
   1834   1.1       jtc static sopno			/* nesting depth */
   1835   1.1       jtc pluscount(p, g)
   1836   1.1       jtc struct parse *p;
   1837   1.9     perry struct re_guts *g;
   1838   1.1       jtc {
   1839   1.9     perry 	sop *scan;
   1840   1.9     perry 	sop s;
   1841   1.9     perry 	sopno plusnest = 0;
   1842   1.9     perry 	sopno maxnest = 0;
   1843  1.14     lukem 
   1844  1.14     lukem 	_DIAGASSERT(p != NULL);
   1845  1.14     lukem 	_DIAGASSERT(g != NULL);
   1846   1.1       jtc 
   1847   1.1       jtc 	if (p->error != 0)
   1848   1.1       jtc 		return(0);	/* there may not be an OEND */
   1849   1.1       jtc 
   1850   1.1       jtc 	scan = g->strip + 1;
   1851   1.1       jtc 	do {
   1852   1.1       jtc 		s = *scan++;
   1853   1.1       jtc 		switch (OP(s)) {
   1854   1.1       jtc 		case OPLUS_:
   1855   1.1       jtc 			plusnest++;
   1856   1.1       jtc 			break;
   1857   1.1       jtc 		case O_PLUS:
   1858   1.1       jtc 			if (plusnest > maxnest)
   1859   1.1       jtc 				maxnest = plusnest;
   1860   1.1       jtc 			plusnest--;
   1861   1.1       jtc 			break;
   1862   1.1       jtc 		}
   1863   1.1       jtc 	} while (OP(s) != OEND);
   1864   1.1       jtc 	if (plusnest != 0)
   1865   1.1       jtc 		g->iflags |= BAD;
   1866   1.1       jtc 	return(maxnest);
   1867   1.1       jtc }
   1868